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adapter-pickit2.c
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adapter-pickit2.c
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/*
* Interface to PIC32 ICSP port using Microchip PICkit2/PICkit3 USB adapter.
*
* To use PICkit3, you would need to upgrade the firmware
* using free PICkit 3 Scripting Tool from Microchip.
*
* Copyright (C) 2011-2013 Serge Vakulenko
*
* This file is part of PIC32PROG project, which is distributed
* under the terms of the GNU General Public License (GPL).
* See the accompanying file "COPYING" for more details.
*/
#include <stdio.h>
#include <stdlib.h>
#include <unistd.h>
#include <fcntl.h>
#include <string.h>
#include <errno.h>
#include "adapter.h"
#include "hidapi.h"
#include "pickit2.h"
#include "pic32.h"
typedef struct {
/* Common part */
adapter_t adapter;
int is_pk3;
const char *name;
/* Device handle for libusb. */
hid_device *hiddev;
unsigned char reply [64];
unsigned use_executive;
unsigned serial_execution_mode;
} pickit_adapter_t;
/*
* Programmable power voltages.
*/
#define VDD_VOLTAGE 3.3 /* Power supply */
#define VDD_LIMIT 2.81
#define VPP_VOLTAGE 3.28 /* Reset voltage */
#define VPP_LIMIT 2.26
/*
* Identifiers of USB adapter.
*/
#define MICROCHIP_VID 0x04d8
#define PICKIT2_PID 0x0033 /* Microchip PICkit 2 */
#define PICKIT3_PID 0x900a /* Microchip PICkit 3 */
#define ONBOARD_PID 0x8107 /* Onboard Programmer */
#define CHIPKIT_PID 0x8108 /* chipKIT Programmer */
/*
* USB endpoints.
*/
#define OUT_EP 0x01
#define IN_EP 0x81
#define IFACE 0
#define TIMO_MSEC 1000
#define WORD_AS_BYTES(w) (unsigned char) (w), \
(unsigned char) ((w) >> 8), \
(unsigned char) ((w) >> 16), \
(unsigned char) ((w) >> 24)
static void pickit_send_buf(pickit_adapter_t *a, unsigned char *buf, unsigned nbytes)
{
if (debug_level > 1) {
int k;
fprintf(stderr, "---Send");
for (k=0; k<nbytes; ++k) {
if (k != 0 && (k & 15) == 0)
fprintf(stderr, "\n ");
fprintf(stderr, " %02x", buf[k]);
}
fprintf(stderr, "\n");
}
hid_write(a->hiddev, buf, 64);
}
static void pickit_send(pickit_adapter_t *a, unsigned argc, ...)
{
va_list ap;
unsigned i;
unsigned char buf [64];
memset(buf, CMD_END_OF_BUFFER, 64);
va_start(ap, argc);
for (i=0; i<argc; ++i)
buf[i] = va_arg(ap, int);
va_end(ap);
pickit_send_buf(a, buf, i);
}
static void pickit_recv(pickit_adapter_t *a)
{
if (hid_read(a->hiddev, a->reply, 64) != 64) {
fprintf(stderr, "%s: error receiving packet\n", a->name);
exit(-1);
}
if (debug_level > 1) {
int k;
fprintf(stderr, "--->>>>");
for (k=0; k<64; ++k) {
if (k != 0 && (k & 15) == 0)
fprintf(stderr, "\n ");
fprintf(stderr, " %02x", a->reply[k]);
}
fprintf(stderr, "\n");
}
}
static void check_timeout(pickit_adapter_t *a, const char *message)
{
unsigned status;
pickit_send(a, 1, CMD_READ_STATUS);
pickit_recv(a);
status = a->reply[0] | a->reply[1] << 8;
if (status & STATUS_ICD_TIMEOUT) {
fprintf(stderr, "%s: timed out at %s, status = %04x\n",
a->name, message, status);
exit(-1);
}
}
/*
* Put device to serial execution mode.
*/
static void serial_execution(pickit_adapter_t *a)
{
if (a->serial_execution_mode)
return;
a->serial_execution_mode = 1;
// Enter serial execution.
if (debug_level > 0)
fprintf(stderr, "%s: enter serial execution\n", a->name);
pickit_send(a, 29, CMD_EXECUTE_SCRIPT, 27,
SCRIPT_JT2_SENDCMD, TAP_SW_MTAP,
SCRIPT_JT2_SENDCMD, MTAP_COMMAND,
SCRIPT_JT2_XFERDATA8_LIT, MCHP_STATUS,
SCRIPT_JT2_SENDCMD, TAP_SW_MTAP,
SCRIPT_JT2_SENDCMD, MTAP_COMMAND,
SCRIPT_JT2_XFERDATA8_LIT, MCHP_ASSERT_RST,
SCRIPT_JT2_SENDCMD, TAP_SW_ETAP,
SCRIPT_JT2_SETMODE, 6, 0x1F,
SCRIPT_JT2_SENDCMD, ETAP_EJTAGBOOT,
SCRIPT_JT2_SENDCMD, TAP_SW_MTAP,
SCRIPT_JT2_SENDCMD, MTAP_COMMAND,
SCRIPT_JT2_XFERDATA8_LIT, MCHP_DEASSERT_RST,
SCRIPT_JT2_XFERDATA8_LIT, MCHP_FLASH_ENABLE);
}
static void
step1_6_mm(pickit_adapter_t *a, unsigned nwords)
{
if (debug_level > 0)
fprintf(stderr, "%s: download PE loader\n", a->name);
pickit_send(a, 20, CMD_CLEAR_DOWNLOAD_BUFFER,
CMD_DOWNLOAD_DATA, 8, //----------------- step 1
WORD_AS_BYTES(0xa00041a4),
WORD_AS_BYTES(0x02005084),
CMD_EXECUTE_SCRIPT, 7, //----------------- execute
SCRIPT_JT2_SENDCMD, TAP_SW_ETAP,
SCRIPT_JT2_SETMODE, 6, 0x1F,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF);
check_timeout(a, "step1");
// Download the PE loader
int i;
for (i=0; i<PIC32_PEMM_LOADER_LEN; i+=2) {
pickit_send(a, 20, CMD_CLEAR_DOWNLOAD_BUFFER,
CMD_DOWNLOAD_DATA, 12, //------------- step 5
WORD_AS_BYTES((0x41A6
| pic32_pemm_loader[i] << 16)),
WORD_AS_BYTES((0x50c6
| pic32_pemm_loader[i+1] << 16)),
WORD_AS_BYTES(0x6e42eb40),
CMD_EXECUTE_SCRIPT, 3, //------------- execute
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF);
check_timeout(a, "step5");
}
// Jump to PE loader
pickit_send(a, 47, CMD_CLEAR_DOWNLOAD_BUFFER,
CMD_DOWNLOAD_DATA, 20, //----------------- step 6
WORD_AS_BYTES(0xa00041b9),
WORD_AS_BYTES(0x02015339),
WORD_AS_BYTES(0x0c004599),
WORD_AS_BYTES(0x0c000c00),
WORD_AS_BYTES(0x0c000c00),
CMD_EXECUTE_SCRIPT, 22, //----------------- execute
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_SENDCMD, TAP_SW_ETAP,
SCRIPT_JT2_SETMODE, 6, 0x1F,
SCRIPT_JT2_SENDCMD, ETAP_FASTDATA,
SCRIPT_JT2_XFRFASTDAT_LIT,
0, 3, 0, 0xA0, // PE_ADDRESS = 0xA000_0300
SCRIPT_JT2_XFRFASTDAT_LIT,
(unsigned char) nwords, // PE_SIZE
(unsigned char) (nwords >> 8),
0, 0);
check_timeout(a, "step6");
}
static void
step1_6_mz(pickit_adapter_t *a, unsigned nwords)
{
if (debug_level > 0)
fprintf(stderr, "%s: download PE loader\n", a->name);
pickit_send(a, 45, CMD_CLEAR_DOWNLOAD_BUFFER,
CMD_DOWNLOAD_DATA, 28, //----------------- step 1
WORD_AS_BYTES(0x3c04bf88), // lui a0, 0xbf88
WORD_AS_BYTES(0x34842000), // ori a0, 0x2000 - address of BMXCON
WORD_AS_BYTES(0x3c05001f), // lui a1, 0x1f
WORD_AS_BYTES(0x34a50040), // ori a1, 0x40 - a1 has 001f0040
WORD_AS_BYTES(0xac850000), // sw a1, 0(a0) - BMXCON initialized
//----------------- step 2
WORD_AS_BYTES(0x34050800), // li a1, 0x800 - a1 has 00000800
WORD_AS_BYTES(0xac850010), // sw a1, 16(a0) - BMXDKPBA initialized
CMD_EXECUTE_SCRIPT, 12, //----------------- execute
SCRIPT_JT2_SENDCMD, TAP_SW_ETAP,
SCRIPT_JT2_SETMODE, 6, 0x1F,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF);
check_timeout(a, "step1");
pickit_send(a, 30, CMD_CLEAR_DOWNLOAD_BUFFER,
CMD_DOWNLOAD_DATA, 20, //----------------- step 3
WORD_AS_BYTES(0x8c850040), // lw a1, 64(a0) - load BMXDMSZ
WORD_AS_BYTES(0xac850020), // sw a1, 32(a0) - BMXDUDBA initialized
WORD_AS_BYTES(0xac850030), // sw a1, 48(a0) - BMXDUPBA initialized
//----------------- step 4
WORD_AS_BYTES(0x3c04a000), // lui a0, 0xa000
WORD_AS_BYTES(0x34840800), // ori a0, 0x800 - a0 has a0000800
CMD_EXECUTE_SCRIPT, 5, //----------------- execute
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF);
check_timeout(a, "step3");
// Download the PE loader
int i;
for (i=0; i<PIC32_PE_LOADER_LEN; i+=2) {
pickit_send(a, 25, CMD_CLEAR_DOWNLOAD_BUFFER,
CMD_DOWNLOAD_DATA, 16, //------------- step 5
WORD_AS_BYTES((0x3c060000 // lui a2, PE_loader_hi++
| pic32_pe_loader[i])),
WORD_AS_BYTES((0x34c60000 // ori a2, PE_loader_lo++
| pic32_pe_loader[i+1])),
WORD_AS_BYTES(0xac860000), // sw a2, 0(a0)
WORD_AS_BYTES(0x24840004), // addiu a0, 4
CMD_EXECUTE_SCRIPT, 4, //------------- execute
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF);
check_timeout(a, "step5");
}
// Jump to PE loader
pickit_send(a, 42, CMD_CLEAR_DOWNLOAD_BUFFER,
CMD_DOWNLOAD_DATA, 16, //----------------- step 6
WORD_AS_BYTES(0x3c19a000), // lui t9, 0xa000
WORD_AS_BYTES(0x37390800), // ori t9, 0x800 - t9 has a0000800
WORD_AS_BYTES(0x03200008), // jr t9
WORD_AS_BYTES(0x00000000), // nop
CMD_EXECUTE_SCRIPT, 21, //----------------- execute
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_SENDCMD, TAP_SW_ETAP,
SCRIPT_JT2_SETMODE, 6, 0x1F,
SCRIPT_JT2_SENDCMD, ETAP_FASTDATA,
SCRIPT_JT2_XFRFASTDAT_LIT,
0, 9, 0, 0xA0, // PE_ADDRESS = 0xA000_0900
SCRIPT_JT2_XFRFASTDAT_LIT,
(unsigned char) nwords, // PE_SIZE
(unsigned char) (nwords >> 8),
0, 0);
check_timeout(a, "step6");
}
/*
* Download programming executive (PE).
*/
static void pickit_load_executive(adapter_t *adapter,
const unsigned *pe, unsigned nwords,
unsigned pe_version)
{
pickit_adapter_t *a = (pickit_adapter_t*) adapter;
int i;
a->name = a->adapter.family_name;
//fprintf(stderr, "%s: load_executive\n", a->name);
a->use_executive = 1;
serial_execution(a);
/* Round nwords to 10, to be compatible with routine below.
* This is why there are extra 0s in the executive file for padding. */
nwords = (nwords%10) == 0 ? nwords : nwords + 10 - (nwords%10);
if (a->adapter.family_name_short == FAMILY_MM)
step1_6_mm(a, nwords);
else
step1_6_mz(a, nwords);
// Download the PE itself (step 7-B)
if (debug_level > 0)
fprintf(stderr, "%s: download PE code\n", a->name);
int nloops = (nwords + 9) / 10;
for (i=0; i<nloops; i++, pe+=10) { // download 10 words at a time
pickit_send(a, 55, CMD_CLEAR_DOWNLOAD_BUFFER,
CMD_DOWNLOAD_DATA, 40,
WORD_AS_BYTES(pe[0]),
WORD_AS_BYTES(pe[1]),
WORD_AS_BYTES(pe[2]),
WORD_AS_BYTES(pe[3]),
WORD_AS_BYTES(pe[4]),
WORD_AS_BYTES(pe[5]),
WORD_AS_BYTES(pe[6]),
WORD_AS_BYTES(pe[7]),
WORD_AS_BYTES(pe[8]),
WORD_AS_BYTES(pe[9]),
CMD_EXECUTE_SCRIPT, 10, // execute
SCRIPT_JT2_XFRFASTDAT_BUF,
SCRIPT_JT2_XFRFASTDAT_BUF,
SCRIPT_JT2_XFRFASTDAT_BUF,
SCRIPT_JT2_XFRFASTDAT_BUF,
SCRIPT_JT2_XFRFASTDAT_BUF,
SCRIPT_JT2_XFRFASTDAT_BUF,
SCRIPT_JT2_XFRFASTDAT_BUF,
SCRIPT_JT2_XFRFASTDAT_BUF,
SCRIPT_JT2_XFRFASTDAT_BUF,
SCRIPT_JT2_XFRFASTDAT_BUF);
check_timeout(a, "step7");
}
mdelay(100);
// Download the PE instructions
pickit_send(a, 15, CMD_CLEAR_DOWNLOAD_BUFFER,
CMD_DOWNLOAD_DATA, 8,
WORD_AS_BYTES(0x00000000), // step 8 - jump to PE
WORD_AS_BYTES(0xDEAD0000),
CMD_EXECUTE_SCRIPT, 2, // execute
SCRIPT_JT2_XFRFASTDAT_BUF,
SCRIPT_JT2_XFRFASTDAT_BUF);
check_timeout(a, "step8");
mdelay(100);
pickit_send(a, 11, CMD_CLEAR_UPLOAD_BUFFER,
CMD_EXECUTE_SCRIPT, 8,
SCRIPT_JT2_SENDCMD, ETAP_FASTDATA,
SCRIPT_JT2_XFRFASTDAT_LIT,
0x00, 0x00, // length = 0
0x07, 0x00, // EXEC_VERSION
SCRIPT_JT2_GET_PE_RESP);
check_timeout(a, "EXEC_VERSION");
pickit_send(a, 1, CMD_UPLOAD_DATA);
pickit_recv(a);
unsigned version = a->reply[3] | (a->reply[4] << 8);
if (version != 0x0007) { // command echo
fprintf(stderr, "%s: bad PE reply = %04x\n", a->name, version);
exit(-1);
}
version = a->reply[1] | (a->reply[2] << 8);
if (version != pe_version) {
fprintf(stderr, "%s: bad PE version = %04x, expected %04x\n",
a->name, version, pe_version);
exit(-1);
}
if (debug_level > 0)
fprintf(stderr, "%s: PE version = %04x\n", a->name, version);
}
#if 0
int pe_blank_check(pickit_adapter_t *a,
unsigned int start, unsigned int nbytes)
{
pickit_send(a, 21, CMD_CLEAR_UPLOAD_BUFFER, CMD_EXECUTE_SCRIPT, 18,
SCRIPT_JT2_SENDCMD, ETAP_FASTDATA,
SCRIPT_JT2_XFRFASTDAT_LIT,
0x00, 0x00,
0x06, 0x00, // BLANK_CHECK
SCRIPT_JT2_XFRFASTDAT_LIT,
(unsigned char) start,
(unsigned char) (start >> 8),
(unsigned char) (start >> 16),
(unsigned char) (start >> 24),
SCRIPT_JT2_XFRFASTDAT_LIT,
(unsigned char) nbytes,
(unsigned char) (nbytes >> 8),
(unsigned char) (nbytes >> 16),
(unsigned char) (nbytes >> 24),
SCRIPT_JT2_GET_PE_RESP);
check_timeout(a, "BLANK_CHECK");
pickit_send(a, 1, CMD_UPLOAD_DATA);
pickit_recv(a);
if (a->reply[3] != 6 || a->reply[1] != 0) { // response code 0 = success
return 0;
}
return 1;
}
int pe_get_crc(pickit_adapter_t *a,
unsigned int start, unsigned int nbytes)
{
pickit_send(a, 22, CMD_CLEAR_UPLOAD_BUFFER, CMD_EXECUTE_SCRIPT, 19,
SCRIPT_JT2_SENDCMD, ETAP_FASTDATA,
SCRIPT_JT2_XFRFASTDAT_LIT,
0x00, 0x00,
0x08, 0x00, // GET_CRC
SCRIPT_JT2_XFRFASTDAT_LIT,
(unsigned char) start,
(unsigned char) (start >> 8),
(unsigned char) (start >> 16),
(unsigned char) (start >> 24),
SCRIPT_JT2_XFRFASTDAT_LIT,
(unsigned char) nbytes,
(unsigned char) (nbytes >> 8),
(unsigned char) (nbytes >> 16),
(unsigned char) (nbytes >> 24),
SCRIPT_JT2_GET_PE_RESP,
SCRIPT_JT2_GET_PE_RESP);
check_timeout(a, "GET_CRC");
pickit_send(a, 1, CMD_UPLOAD_DATA);
pickit_recv(a);
if (a->reply[3] != 8 || a->reply[1] != 0) { // response code 0 = success
return 0;
}
int crc = a->reply[5] | (a->reply[6] << 8);
return crc;
}
#endif
static void pickit_finish(pickit_adapter_t *a, int power_on)
{
/* Exit programming mode. */
pickit_send(a, 18, CMD_CLEAR_UPLOAD_BUFFER, CMD_EXECUTE_SCRIPT, 15,
SCRIPT_JT2_SETMODE, 5, 0x1f,
SCRIPT_VPP_OFF,
SCRIPT_MCLR_GND_ON,
SCRIPT_VPP_PWM_OFF,
SCRIPT_SET_ICSP_PINS, 6, // set PGC high, PGD input
SCRIPT_SET_ICSP_PINS, 2, // set PGC low, PGD input
SCRIPT_SET_ICSP_PINS, 3, // set PGC and PGD as input
SCRIPT_DELAY_LONG, 10, // 50 msec
SCRIPT_BUSY_LED_OFF);
if (! power_on) {
/* Detach power from the board. */
pickit_send(a, 4, CMD_EXECUTE_SCRIPT, 2,
SCRIPT_VDD_OFF,
SCRIPT_VDD_GND_ON);
}
/* Disable reset. */
pickit_send(a, 3, CMD_EXECUTE_SCRIPT, 1,
SCRIPT_MCLR_GND_OFF);
/* Read board status. */
check_timeout(a, "finish");
}
static void pickit_close(adapter_t *adapter, int power_on)
{
pickit_adapter_t *a = (pickit_adapter_t*) adapter;
//fprintf(stderr, "%s: close\n", a->name);
pickit_finish(a, power_on);
free(a);
}
/*
* Read the Device Identification code
*/
static unsigned pickit_get_idcode(adapter_t *adapter)
{
pickit_adapter_t *a = (pickit_adapter_t*) adapter;
unsigned idcode;
/* Read device id. */
pickit_send(a, 12, CMD_CLEAR_UPLOAD_BUFFER, CMD_EXECUTE_SCRIPT, 9,
SCRIPT_JT2_SENDCMD, TAP_SW_MTAP,
SCRIPT_JT2_SENDCMD, MTAP_IDCODE,
SCRIPT_JT2_XFERDATA32_LIT, 0, 0, 0, 0);
pickit_send(a, 1, CMD_UPLOAD_DATA);
pickit_recv(a);
//fprintf(stderr, "%s: read id, %d bytes: %02x %02x %02x %02x\n", a->name,
// a->reply[0], a->reply[1], a->reply[2], a->reply[3], a->reply[4]);
if (a->reply[0] != 4)
return 0;
idcode = a->reply[1] | a->reply[2] << 8 | a->reply[3] << 16 | a->reply[4] << 24;
return idcode;
}
/*
* Read a word from memory (without PE).
*/
static unsigned pickit_read_word(adapter_t *adapter, unsigned addr)
{
pickit_adapter_t *a = (pickit_adapter_t*) adapter;
unsigned times = (a->serial_execution_mode)?0:1;
serial_execution(a);
unsigned word1 = 0;
unsigned word2 = 0;
unsigned addr_lo = addr & 0xFFFF;
unsigned addr_hi = (addr >> 16) & 0xFFFF;
unsigned value = 0;
do{
if (FAMILY_MX1 == a->adapter.family_name_short
|| FAMILY_MX3 == a->adapter.family_name_short
|| FAMILY_MK == a->adapter.family_name_short
|| FAMILY_MZ == a->adapter.family_name_short
)
{
pickit_send(a, 49, CMD_CLEAR_DOWNLOAD_BUFFER,
CMD_CLEAR_UPLOAD_BUFFER,
CMD_DOWNLOAD_DATA, 24,
WORD_AS_BYTES(0x3c13ff20), // lui s3, 0xFF20
WORD_AS_BYTES(0x3c080000 | addr_hi), // lui t0, addr_hi
WORD_AS_BYTES(0x35080000 | addr_lo), // ori t0, addr_lo
WORD_AS_BYTES(0x8d090000), // lw t1, 0(t0)
WORD_AS_BYTES(0xae690000), // sw t1, 0(s3)
WORD_AS_BYTES(0), // nop
CMD_EXECUTE_SCRIPT, 18,
SCRIPT_JT2_SENDCMD, TAP_SW_ETAP,
SCRIPT_JT2_SETMODE, 6, 0x1F,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_SENDCMD, ETAP_FASTDATA, // read FastData
SCRIPT_JT2_XFERDATA32_LIT, 0, 0, 0, 0,
CMD_UPLOAD_DATA);
pickit_recv(a);
if (a->reply[0] != 4) {
fprintf(stderr, "%s: read word %08x: bad reply length=%u\n",
a->name, addr, a->reply[0]);
exit(-1);
}
word1 = a->reply[1] | (a->reply[2] << 8) |
(a->reply[3] << 16) | (a->reply[4] << 24);
pickit_send(a, 54, CMD_CLEAR_DOWNLOAD_BUFFER,
CMD_CLEAR_UPLOAD_BUFFER,
CMD_DOWNLOAD_DATA, 28,
WORD_AS_BYTES(0x3c13ff20), // lui s3, 0xFF20
WORD_AS_BYTES(0x3c080000 | addr_hi), // lui t0, addr_hi
WORD_AS_BYTES(0x35080000 | addr_lo), // ori t0, addr_lo
WORD_AS_BYTES(0x8d090000), // lw t1, 0(t0)
WORD_AS_BYTES(0x00094842), // srl t1, 1
WORD_AS_BYTES(0xae690004), // sw t1, 4(s3)
WORD_AS_BYTES(0), // nop
CMD_EXECUTE_SCRIPT, 19,
SCRIPT_JT2_SENDCMD, TAP_SW_ETAP,
SCRIPT_JT2_SETMODE, 6, 0x1F,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_SENDCMD, ETAP_FASTDATA, // read FastData
SCRIPT_JT2_XFERDATA32_LIT, 0, 0, 0, 0,
CMD_UPLOAD_DATA);
pickit_recv(a);
word2 = a->reply[1] | (a->reply[2] << 8) |
(a->reply[3] << 16) | (a->reply[4] << 24);
/* First word of reply contains 31 bits of value in MSB; LSB bit is garbage.
* Second word contains the MSB bit of the value. */
value = (word1 >> 1) | (word2 & 0x80000000);
}
else{
/* Else PIC32MM family */
/* Like above, get 31 bits, and then the one MSB separately.
* Issue could be how Pickit code transfers things - there is 1 CLK
* per packet (fastdata?) missing compared to reference implementation */
pickit_send(a, 54, CMD_CLEAR_DOWNLOAD_BUFFER,
CMD_CLEAR_UPLOAD_BUFFER,
CMD_DOWNLOAD_DATA, 28,
WORD_AS_BYTES(0xFF2041B3), // lui s3, FAST_DATA_REG(32:16). Set address of fastdata register
WORD_AS_BYTES(0x000041A8 | (addr_hi<<16)), // lui t0, DATA_ADDRESS(31:16)
WORD_AS_BYTES(0x00005108 | (addr_lo<<16)), // ori t0, DATA_ADDRESS(15:0)
WORD_AS_BYTES(0x0000FD28), // lw t1, 0(t0) - read data
WORD_AS_BYTES(0x0000F933), // sw t1, 0(s3) - store data to fast register
WORD_AS_BYTES(0x0c000c00), // nop
WORD_AS_BYTES(0x0c000c00), // nop
CMD_EXECUTE_SCRIPT, 19,
SCRIPT_JT2_SENDCMD, TAP_SW_ETAP,
SCRIPT_JT2_SETMODE, 6, 0x1F,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_SENDCMD, ETAP_FASTDATA, // read FastData
SCRIPT_JT2_XFERDATA32_LIT, 0, 0, 0, 0,
CMD_UPLOAD_DATA);
pickit_recv(a);
if (a->reply[0] != 4) {
fprintf(stderr, "%s: read word %08x: bad reply length=%u\n",
a->name, addr, a->reply[0]);
exit(-1);
}
word1 = a->reply[1] | (a->reply[2] << 8) |
(a->reply[3] << 16) | (a->reply[4] << 24);
pickit_send(a, 59, CMD_CLEAR_DOWNLOAD_BUFFER,
CMD_CLEAR_UPLOAD_BUFFER,
CMD_DOWNLOAD_DATA, 32,
WORD_AS_BYTES(0xFF2041B3), // lui s3, FAST_DATA_REG(32:16). Set address of fastdata register
WORD_AS_BYTES(0x000041A8 | (addr_hi<<16)), // lui t0, DATA_ADDRESS(31:16)
WORD_AS_BYTES(0x00005108 | (addr_lo<<16)), // ori t0, DATA_ADDRESS(15:0)
WORD_AS_BYTES(0x0000FD28), // lw t1, 0(t0) - read data
WORD_AS_BYTES(0x08400129), // srl t1, 1
WORD_AS_BYTES(0x0000F933), // sw t1, 0(s3) - store data to fast register
WORD_AS_BYTES(0x0c000c00), // nop
WORD_AS_BYTES(0x0c000c00), // nop
CMD_EXECUTE_SCRIPT, 20,
SCRIPT_JT2_SENDCMD, TAP_SW_ETAP,
SCRIPT_JT2_SETMODE, 6, 0x1F,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_XFERINST_BUF,
SCRIPT_JT2_SENDCMD, ETAP_FASTDATA, // read FastData
SCRIPT_JT2_XFERDATA32_LIT, 0, 0, 0, 0,
CMD_UPLOAD_DATA);
pickit_recv(a);
if (a->reply[0] != 4) {
fprintf(stderr, "%s: read word %08x: bad reply length=%u\n",
a->name, addr, a->reply[0]);
exit(-1);
}
word2 = a->reply[1] | (a->reply[2] << 8) |
(a->reply[3] << 16) | (a->reply[4] << 24);
value = (word1 >> 1) | (word2 & 0x80000000);
}
}while(times-- > 0);
if (a->reply[0] != 4) {
fprintf(stderr, "%s: read word %08x: bad reply length=%u\n",
a->name, addr, a->reply[0]);
exit(-1);
}
if (debug_level > 0)
fprintf(stderr, "%s: %08x -> %08x\n", __func__, addr, value);
return value;
}
/*
* Read a block of memory, multiple of 1 kbyte.
*/
static void pickit_read_data(adapter_t *adapter,
unsigned addr, unsigned nwords, unsigned *data)
{
pickit_adapter_t *a = (pickit_adapter_t*) adapter;
unsigned char buf [64];
unsigned words_read;
//fprintf(stderr, "%s: read %d bytes from %08x\n", a->name, nwords*4, addr);
if (! a->use_executive) {
/* Without PE. */
for (; nwords > 0; nwords--) {
*data++ = pickit_read_word(adapter, addr);
addr += 4;
}
return;
}
/* Use PE to read memory. */
for (words_read = 0; words_read < nwords; ) {
/* Download addresses for 8 script runs. */
unsigned i, k = 0;
memset(buf, CMD_END_OF_BUFFER, 64);
buf[k++] = CMD_CLEAR_DOWNLOAD_BUFFER;
buf[k++] = CMD_DOWNLOAD_DATA;
buf[k++] = 8 * 4;
for (i = 0; i < 8; i++) {
unsigned address = addr + words_read*4 + i*32*4;
buf[k++] = address;
buf[k++] = address >> 8;
buf[k++] = address >> 16;
buf[k++] = address >> 24;
}
pickit_send_buf(a, buf, k);
for (k = 0; k < 8; k++) {
/* Read progmem. */
pickit_send(a, 17, CMD_CLEAR_UPLOAD_BUFFER,
CMD_EXECUTE_SCRIPT, 13,
SCRIPT_JT2_SENDCMD, ETAP_FASTDATA,
SCRIPT_JT2_XFRFASTDAT_LIT,
0x20, 0, 1, 0, // READ
SCRIPT_JT2_XFRFASTDAT_BUF,
SCRIPT_JT2_WAIT_PE_RESP,
SCRIPT_JT2_GET_PE_RESP,
SCRIPT_LOOP, 1, 31,
CMD_UPLOAD_DATA_NOLEN);
pickit_recv(a);
memcpy(data, a->reply, 64);
//fprintf(stderr, " ...%08x...\n", data[0]);
data += 64/4;
words_read += 64/4;
/* Get second half of upload buffer. */
pickit_send(a, 1, CMD_UPLOAD_DATA_NOLEN);
pickit_recv(a);
memcpy(data, a->reply, 64);
data += 64/4;
words_read += 64/4;
}
}
}
/*
* Put data to download buffer.
* Max 15 words (60 bytes).
*/
static void download_data(pickit_adapter_t *a,
unsigned *data, unsigned nwords, int clear_flag)
{
unsigned char buf [64];
unsigned i, k = 0;
memset(buf, CMD_END_OF_BUFFER, 64);
if (clear_flag)
buf[k++] = CMD_CLEAR_DOWNLOAD_BUFFER;
buf[k++] = CMD_DOWNLOAD_DATA;
buf[k++] = nwords * 4;
for (i=0; i<nwords; i++) {
unsigned word = *data++;
buf[k++] = word;
buf[k++] = word >> 8;
buf[k++] = word >> 16;
buf[k++] = word >> 24;
}
pickit_send_buf(a, buf, k);
}
/*
* Write a word to flash memory.
*/
static void pickit_program_word(adapter_t *adapter,
unsigned addr, unsigned word)
{
pickit_adapter_t *a = (pickit_adapter_t*) adapter;
if (debug_level > 0)
fprintf(stderr, "%s: program word at %08x: %08x\n", a->name, addr, word);
if (! a->use_executive) {
/* Without PE. */
fprintf(stderr, "%s: slow flash write not implemented yet.\n", a->name);
exit(-1);
}
/* Use PE to write flash memory. */
pickit_send(a, 22, CMD_CLEAR_UPLOAD_BUFFER,
CMD_EXECUTE_SCRIPT, 18,
SCRIPT_JT2_SENDCMD, ETAP_FASTDATA,
SCRIPT_JT2_XFRFASTDAT_LIT,
2, 0, 3, 0, // WORD_PROGRAM
SCRIPT_JT2_XFRFASTDAT_LIT,
(unsigned char) addr,
(unsigned char) (addr >> 8),
(unsigned char) (addr >> 16),
(unsigned char) (addr >> 24),
SCRIPT_JT2_XFRFASTDAT_LIT,
(unsigned char) word,
(unsigned char) (word >> 8),
(unsigned char) (word >> 16),
(unsigned char) (word >> 24),
SCRIPT_JT2_GET_PE_RESP,
CMD_UPLOAD_DATA);
pickit_recv(a);
//fprintf(stderr, "%s: word program PE response %u bytes: %02x...\n",
// a->name, a->reply[0], a->reply[1]);
if (a->reply[0] != 4 || a->reply[1] != 0) { // response code 0 = success
fprintf(stderr, "%s: failed to program word %08x at %08x, reply = %02x-%02x-%02x-%02x-%02x\n",
a->name, word, addr, a->reply[0], a->reply[1], a->reply[2], a->reply[3], a->reply[4]);
exit(-1);
}
}
/*
* Write two words to flash memory.
*/
static void pickit_program_double_word(adapter_t *adapter,
unsigned addr, unsigned word0, unsigned word1)
{
pickit_adapter_t *a = (pickit_adapter_t*) adapter;
if (debug_level > 0)
fprintf(stderr, "%s: program words at %08x: %08x %08x\n", a->name, addr, word0, word1);
if (! a->use_executive) {
/* Without PE. */
fprintf(stderr, "%s: slow flash write not implemented yet.\n", a->name);
exit(-1);
}
/* Use PE to write flash memory. */
pickit_send(a, 27, CMD_CLEAR_UPLOAD_BUFFER,
CMD_EXECUTE_SCRIPT, 23,
SCRIPT_JT2_SENDCMD, ETAP_FASTDATA,
SCRIPT_JT2_XFRFASTDAT_LIT,
0, 0, PE_DOUBLE_WORD_PGRM, 0,
SCRIPT_JT2_XFRFASTDAT_LIT,
(unsigned char) addr,
(unsigned char) (addr >> 8),
(unsigned char) (addr >> 16),
(unsigned char) (addr >> 24),
SCRIPT_JT2_XFRFASTDAT_LIT,
(unsigned char) word0,
(unsigned char) (word0 >> 8),
(unsigned char) (word0 >> 16),
(unsigned char) (word0 >> 24),
SCRIPT_JT2_XFRFASTDAT_LIT,
(unsigned char) word1,
(unsigned char) (word1 >> 8),
(unsigned char) (word1 >> 16),
(unsigned char) (word1 >> 24),
SCRIPT_JT2_GET_PE_RESP,
CMD_UPLOAD_DATA);
pickit_recv(a);
//fprintf(stderr, "%s: word program PE response %u bytes: %02x...\n",
// a->name, a->reply[0], a->reply[1]);
if (a->reply[0] != 4 || a->reply[1] != 0) { // response code 0 = success
fprintf(stderr, "%s: failed to program words %08x %08x at %08x, reply = %02x-%02x-%02x-%02x-%02x\n",
a->name, word0, word1, addr, a->reply[0], a->reply[1], a->reply[2], a->reply[3], a->reply[4]);
exit(-1);
}
}
/*
* Write 4 words to flash memory.
*/
static void pickit_program_quad_word(adapter_t *adapter, unsigned addr,
unsigned word0, unsigned word1, unsigned word2, unsigned word3)
{
pickit_adapter_t *a = (pickit_adapter_t*) adapter;
if (debug_level > 0)
fprintf(stderr, "%s: program quad word at %08x: %08x-%08x-%08x-%08x\n",
a->name, addr, word0, word1, word2, word3);
if (! a->use_executive) {
/* Without PE. */
fprintf(stderr, "%s: slow flash write not implemented yet.\n", a->name);
exit(-1);
}
/* Use PE to write flash memory. */
pickit_send(a, 37, CMD_CLEAR_UPLOAD_BUFFER,
CMD_EXECUTE_SCRIPT, 33,
SCRIPT_JT2_SENDCMD, ETAP_FASTDATA,
SCRIPT_JT2_XFRFASTDAT_LIT,
0, 0, 13, 0, // QUAD_WORD_PROGRAM
SCRIPT_JT2_XFRFASTDAT_LIT,
(unsigned char) addr,
(unsigned char) (addr >> 8),
(unsigned char) (addr >> 16),
(unsigned char) (addr >> 24),
SCRIPT_JT2_XFRFASTDAT_LIT,
(unsigned char) word0,
(unsigned char) (word0 >> 8),
(unsigned char) (word0 >> 16),
(unsigned char) (word0 >> 24),
SCRIPT_JT2_XFRFASTDAT_LIT,
(unsigned char) word1,
(unsigned char) (word1 >> 8),
(unsigned char) (word1 >> 16),
(unsigned char) (word1 >> 24),
SCRIPT_JT2_XFRFASTDAT_LIT,
(unsigned char) word2,
(unsigned char) (word2 >> 8),
(unsigned char) (word2 >> 16),
(unsigned char) (word2 >> 24),
SCRIPT_JT2_XFRFASTDAT_LIT,
(unsigned char) word3,
(unsigned char) (word3 >> 8),
(unsigned char) (word3 >> 16),
(unsigned char) (word3 >> 24),
SCRIPT_JT2_GET_PE_RESP,
CMD_UPLOAD_DATA);
pickit_recv(a);
//fprintf(stderr, "%s: word program PE response %u bytes: %02x...\n",
// a->name, a->reply[0], a->reply[1]);
if (a->reply[0] != 4 || a->reply[1] != 0) { // response code 0 = success
fprintf(stderr, "%s: failed to program quad word at %08x, reply = %02x-%02x-%02x-%02x-%02x\n",
a->name, addr, a->reply[0], a->reply[1], a->reply[2], a->reply[3], a->reply[4]);
exit(-1);
}
}
/*
* Flash write row of memory.
*/
static void pickit_program_row(adapter_t *adapter, unsigned addr,
unsigned *data, unsigned words_per_row)
{
pickit_adapter_t *a = (pickit_adapter_t*) adapter;
unsigned i;
if (debug_level > 0)
fprintf(stderr, "%s: row program %u words at %08x\n",
a->name, words_per_row, addr);
if (! a->use_executive) {
/* Without PE. */
fprintf(stderr, "%s: slow flash write not implemented yet.\n", a->name);
exit(-1);
}
/* Use PE to write flash memory. */
pickit_send(a, 15, CMD_CLEAR_UPLOAD_BUFFER,
CMD_EXECUTE_SCRIPT, 12,
SCRIPT_JT2_SENDCMD, ETAP_FASTDATA,
SCRIPT_JT2_XFRFASTDAT_LIT,
words_per_row, 0, 0, 0, // PROGRAM ROW
SCRIPT_JT2_XFRFASTDAT_LIT,
(unsigned char) addr,
(unsigned char) (addr >> 8),
(unsigned char) (addr >> 16),
(unsigned char) (addr >> 24));
/* Download data. */
if (words_per_row == 32) {
/* MX1/2 family. */
download_data(a, data, 15, 1);
download_data(a, data+15, 15, 0);
pickit_send(a, 18,
CMD_DOWNLOAD_DATA, 2*4,
WORD_AS_BYTES(data[30]),
WORD_AS_BYTES(data[31]),
CMD_EXECUTE_SCRIPT, 6, // execute
SCRIPT_JT2_SENDCMD, ETAP_FASTDATA,
SCRIPT_JT2_XFRFASTDAT_BUF,
SCRIPT_LOOP, 1, 31);
} else {
/* MX3/4/5/6/7 or MZ family. */
for (i = 0; i < words_per_row/64; i++) {
/* Download 256 bytes of data. */
download_data(a, data, 15, 1);
download_data(a, data+15, 15, 0);
download_data(a, data+30, 15, 0);
download_data(a, data+45, 15, 0);
pickit_send(a, 26,
CMD_DOWNLOAD_DATA, 4*4,
WORD_AS_BYTES(data[60]),
WORD_AS_BYTES(data[61]),
WORD_AS_BYTES(data[62]),
WORD_AS_BYTES(data[63]),
CMD_EXECUTE_SCRIPT, 6, // execute
SCRIPT_JT2_SENDCMD, ETAP_FASTDATA,
SCRIPT_JT2_XFRFASTDAT_BUF,
SCRIPT_LOOP, 1, 63);
data += 64;
}
}