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constraints.proto
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constraints.proto
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// Copyright 2021 Deepmind Technologies Limited.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
syntax = "proto3";
package deepmind.cad.protos;
import "common.proto";
message FixConstraint {
repeated uint32 entities = 1
[(nc_field_options).is_pointer = true, (nc_field_options).at_least = 1];
}
message CoincidentConstraint {
repeated uint32 entities = 1
[(nc_field_options).is_pointer = true, (nc_field_options).at_least = 2];
}
message ConcentricConstraint {
repeated uint32 entities = 1
[(nc_field_options).is_pointer = true, (nc_field_options).at_least = 2];
}
message EqualConstraint {
repeated uint32 entities = 1
[(nc_field_options).is_pointer = true, (nc_field_options).at_least = 2];
}
message ParallelConstraint {
repeated uint32 entities = 1
[(nc_field_options).is_pointer = true, (nc_field_options).at_least = 2];
}
message TangentConstraint {
uint32 first = 1 [(nc_field_options).is_pointer = true];
uint32 second = 2 [(nc_field_options).is_pointer = true];
}
message PerpendicularConstraint {
uint32 first = 1 [(nc_field_options).is_pointer = true];
uint32 second = 2 [(nc_field_options).is_pointer = true];
}
message MirrorConstraint {
uint32 mirror = 1 [(nc_field_options).is_pointer = true];
message MirroredPair {
uint32 first = 1 [(nc_field_options).is_pointer = true];
uint32 second = 2 [(nc_field_options).is_pointer = true];
}
repeated MirroredPair mirrored_pairs = 2 [(nc_field_options).at_least = 1];
}
message DistanceConstraint {
uint32 first = 1 [(nc_field_options).is_pointer = true];
uint32 second = 2 [(nc_field_options).is_pointer = true];
enum Direction {
HORIZONTAL = 0;
VERTICAL = 1;
MINIMUM = 2;
}
Direction direction = 3;
double length = 4;
enum Alignment {
ALIGNED = 0;
ANTI_ALIGNED = 1;
}
enum HalfSpace {
NOT_AVAILABLE = 0;
LEFT = 1;
RIGHT = 2;
}
message HalfSpaceParams {
HalfSpace half_space_first = 1;
HalfSpace half_space_second = 2;
}
oneof additional_params {
Alignment alignment = 5;
HalfSpaceParams half_space_params = 6;
}
}
message LengthConstraint {
uint32 entity = 1 [(nc_field_options).is_pointer = true];
double length = 2;
}
message DiameterConstraint {
uint32 entity = 1 [(nc_field_options).is_pointer = true];
double length = 2;
}
message RadiusConstraint {
uint32 entity = 1 [(nc_field_options).is_pointer = true];
double length = 2;
}
message AngleConstraint {
uint32 first = 1 [(nc_field_options).is_pointer = true];
uint32 second = 2 [(nc_field_options).is_pointer = true];
double angle = 3;
}
message HorizontalConstraint {
repeated uint32 entities = 1
[(nc_field_options).is_pointer = true, (nc_field_options).at_least = 1];
}
message VerticalConstraint {
repeated uint32 entities = 2
[(nc_field_options).is_pointer = true, (nc_field_options).at_least = 1];
}
message MidpointConstraint {
uint32 midpoint = 1 [(nc_field_options).is_pointer = true];
message Endpoints {
uint32 first = 1 [(nc_field_options).is_pointer = true];
uint32 second = 2 [(nc_field_options).is_pointer = true];
}
oneof additional_params {
Endpoints endpoints = 2;
uint32 entity = 3 [(nc_field_options).is_pointer = true];
}
}