Merge branch 'avrdudes:main' into issue474
This commit is contained in:
commit
c4add116d6
3
NEWS
3
NEWS
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@ -29,6 +29,9 @@ Changes since version 7.0:
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to < 80 characters #1000
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to < 80 characters #1000
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- Dragon JTAG fix #979
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- Dragon JTAG fix #979
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- adding support for all Linux baud rates v.2 #993
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- adding support for all Linux baud rates v.2 #993
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- Replace internal knowledge in jtag3.c by a public API #996
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- JTAG3 UPDI EEPROM fix #1013
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- Treat x bits in .conf SPI commands as 0 #943
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* Internals:
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* Internals:
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12
src/avr.c
12
src/avr.c
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@ -439,16 +439,16 @@ int avr_read(PROGRAMMER * pgm, AVRPART * p, char * memtype,
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(vmem->tags[i] & TAG_ALLOCATED) != 0)
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(vmem->tags[i] & TAG_ALLOCATED) != 0)
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{
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{
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rc = pgm->read_byte(pgm, p, mem, i, mem->buf + i);
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rc = pgm->read_byte(pgm, p, mem, i, mem->buf + i);
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if (rc != 0) {
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if (rc != LIBAVRDUDE_SUCCESS) {
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avrdude_message(MSG_INFO, "avr_read(): error reading address 0x%04lx\n", i);
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avrdude_message(MSG_INFO, "avr_read(): error reading address 0x%04lx\n", i);
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if (rc == -1) {
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if (rc == LIBAVRDUDE_GENERAL_FAILURE) {
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avrdude_message(MSG_INFO, " read operation not supported for memory \"%s\"\n",
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avrdude_message(MSG_INFO, " read operation not supported for memory \"%s\"\n",
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memtype);
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memtype);
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return -2;
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return LIBAVRDUDE_NOTSUPPORTED;
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}
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}
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avrdude_message(MSG_INFO, " read operation failed for memory \"%s\"\n",
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avrdude_message(MSG_INFO, " read operation failed for memory \"%s\"\n",
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memtype);
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memtype);
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return rc;
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return LIBAVRDUDE_SOFTFAIL;
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}
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}
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}
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}
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report_progress(i, mem->size, NULL);
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report_progress(i, mem->size, NULL);
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@ -1035,14 +1035,14 @@ int avr_signature(PROGRAMMER * pgm, AVRPART * p)
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report_progress (0,1,"Reading");
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report_progress (0,1,"Reading");
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rc = avr_read(pgm, p, "signature", 0);
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rc = avr_read(pgm, p, "signature", 0);
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if (rc < 0) {
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if (rc < LIBAVRDUDE_SUCCESS) {
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avrdude_message(MSG_INFO, "%s: error reading signature data for part \"%s\", rc=%d\n",
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avrdude_message(MSG_INFO, "%s: error reading signature data for part \"%s\", rc=%d\n",
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progname, p->desc, rc);
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progname, p->desc, rc);
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return rc;
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return rc;
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}
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}
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report_progress (1,1,NULL);
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report_progress (1,1,NULL);
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return 0;
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return LIBAVRDUDE_SUCCESS;
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}
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}
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static uint8_t get_fuse_bitmask(AVRMEM * m) {
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static uint8_t get_fuse_bitmask(AVRMEM * m) {
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@ -82,11 +82,11 @@ int avr_set_bits(OPCODE * op, unsigned char * cmd)
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unsigned char mask;
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unsigned char mask;
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for (i=0; i<32; i++) {
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for (i=0; i<32; i++) {
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if (op->bit[i].type == AVR_CMDBIT_VALUE) {
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if (op->bit[i].type == AVR_CMDBIT_VALUE || op->bit[i].type == AVR_CMDBIT_IGNORE) {
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j = 3 - i / 8;
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j = 3 - i / 8;
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bit = i % 8;
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bit = i % 8;
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mask = 1 << bit;
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mask = 1 << bit;
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if (op->bit[i].value)
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if (op->bit[i].value && op->bit[i].type == AVR_CMDBIT_VALUE)
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cmd[j] = cmd[j] | mask;
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cmd[j] = cmd[j] | mask;
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else
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else
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cmd[j] = cmd[j] & ~mask;
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cmd[j] = cmd[j] & ~mask;
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25
src/jtag3.c
25
src/jtag3.c
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@ -313,6 +313,14 @@ static void jtag3_prmsg(PROGRAMMER * pgm, unsigned char * data, size_t len)
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}
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}
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}
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}
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static int jtag3_errcode(int reason)
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{
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if (reason == RSP3_FAIL_OCD_LOCKED ||
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reason == RSP3_FAIL_CRC_FAILURE)
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return LIBAVRDUDE_SOFTFAIL;
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return LIBAVRDUDE_GENERAL_FAILURE;
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}
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static void jtag3_prevent(PROGRAMMER * pgm, unsigned char * data, size_t len)
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static void jtag3_prevent(PROGRAMMER * pgm, unsigned char * data, size_t len)
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{
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{
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int i;
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int i;
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@ -834,7 +842,7 @@ int jtag3_recv(PROGRAMMER * pgm, unsigned char **msg) {
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}
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}
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}
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}
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int jtag3_command(PROGRAMMER *pgm, unsigned char *cmd, unsigned int cmdlen,
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int jtag3_command(PROGRAMMER *pgm, unsigned char *cmd, unsigned int cmdlen,
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unsigned char **resp, const char *descr)
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unsigned char **resp, const char *descr)
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{
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{
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int status;
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int status;
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@ -850,7 +858,7 @@ int jtag3_recv(PROGRAMMER * pgm, unsigned char **msg) {
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putc('\n', stderr);
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putc('\n', stderr);
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avrdude_message(MSG_NOTICE2, "%s: %s command: timeout/error communicating with programmer (status %d)\n",
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avrdude_message(MSG_NOTICE2, "%s: %s command: timeout/error communicating with programmer (status %d)\n",
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progname, descr, status);
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progname, descr, status);
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return -1;
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return LIBAVRDUDE_GENERAL_FAILURE;
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} else if (verbose >= 3) {
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} else if (verbose >= 3) {
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putc('\n', stderr);
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putc('\n', stderr);
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jtag3_prmsg(pgm, *resp, status);
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jtag3_prmsg(pgm, *resp, status);
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@ -858,9 +866,10 @@ int jtag3_recv(PROGRAMMER * pgm, unsigned char **msg) {
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avrdude_message(MSG_NOTICE2, "0x%02x (%d bytes msg)\n", (*resp)[1], status);
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avrdude_message(MSG_NOTICE2, "0x%02x (%d bytes msg)\n", (*resp)[1], status);
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}
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}
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c = (*resp)[1];
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c = (*resp)[1] & RSP3_STATUS_MASK;
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if ((c & RSP3_STATUS_MASK) != RSP3_OK) {
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if (c != RSP3_OK) {
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if ((c == RSP3_FAILED) && ((*resp)[3] == RSP3_FAIL_OCD_LOCKED)) {
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if ((c == RSP3_FAILED) && ((*resp)[3] == RSP3_FAIL_OCD_LOCKED ||
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(*resp)[3] == RSP3_FAIL_CRC_FAILURE)) {
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avrdude_message(MSG_INFO,
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avrdude_message(MSG_INFO,
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"%s: Device is locked! Chip erase required to unlock.\n",
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"%s: Device is locked! Chip erase required to unlock.\n",
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progname);
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progname);
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@ -871,7 +880,7 @@ int jtag3_recv(PROGRAMMER * pgm, unsigned char **msg) {
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status = (*resp)[3];
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status = (*resp)[3];
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free(*resp);
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free(*resp);
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resp = 0;
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resp = 0;
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return -status;
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return jtag3_errcode(status);
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}
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}
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return status;
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return status;
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@ -987,7 +996,7 @@ static int jtag3_program_enable(PROGRAMMER * pgm)
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free(resp);
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free(resp);
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PDATA(pgm)->prog_enabled = 1;
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PDATA(pgm)->prog_enabled = 1;
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return 0;
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return LIBAVRDUDE_SUCCESS;
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}
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}
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return status;
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return status;
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@ -1761,7 +1770,7 @@ static int jtag3_paged_write(PROGRAMMER * pgm, AVRPART * p, AVRMEM * m,
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free(cmd);
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free(cmd);
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return n_bytes;
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return n_bytes;
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}
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}
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cmd[3] = ( p->flags & AVRPART_HAS_PDI ) ? MTYPE_EEPROM_XMEGA : MTYPE_EEPROM_PAGE;
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cmd[3] = ( p->flags & AVRPART_HAS_PDI || p->flags & AVRPART_HAS_UPDI ) ? MTYPE_EEPROM_XMEGA : MTYPE_EEPROM_PAGE;
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PDATA(pgm)->eeprom_pageaddr = (unsigned long)-1L;
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PDATA(pgm)->eeprom_pageaddr = (unsigned long)-1L;
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} else if (strcmp(m->desc, "usersig") == 0 ||
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} else if (strcmp(m->desc, "usersig") == 0 ||
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strcmp(m->desc, "userrow") == 0) {
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strcmp(m->desc, "userrow") == 0) {
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@ -144,6 +144,7 @@
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# define RSP3_FAIL_WRONG_MODE 0x32 /* progmode vs. non-prog */
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# define RSP3_FAIL_WRONG_MODE 0x32 /* progmode vs. non-prog */
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# define RSP3_FAIL_UNSUPP_MEMORY 0x34 /* unsupported memory type */
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# define RSP3_FAIL_UNSUPP_MEMORY 0x34 /* unsupported memory type */
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# define RSP3_FAIL_WRONG_LENGTH 0x35 /* wrong lenth for mem access */
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# define RSP3_FAIL_WRONG_LENGTH 0x35 /* wrong lenth for mem access */
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# define RSP3_FAIL_CRC_FAILURE 0x43 /* CRC failure in device */
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# define RSP3_FAIL_OCD_LOCKED 0x44 /* device is locked */
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# define RSP3_FAIL_OCD_LOCKED 0x44 /* device is locked */
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# define RSP3_FAIL_NOT_UNDERSTOOD 0x91
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# define RSP3_FAIL_NOT_UNDERSTOOD 0x91
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@ -27,6 +27,16 @@
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#include <stdint.h>
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#include <stdint.h>
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typedef uint32_t pinmask_t;
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typedef uint32_t pinmask_t;
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/*
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* Values returned by library functions.
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* Some library functions also return a count, i.e. a positive
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* number greater than 0.
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*/
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#define LIBAVRDUDE_SUCCESS 0
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#define LIBAVRDUDE_GENERAL_FAILURE (-1)
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#define LIBAVRDUDE_NOTSUPPORTED (-2) // operation not supported
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#define LIBAVRDUDE_SOFTFAIL (-3) // returned by avr_signature() if caller
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// might proceed with chip erase
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/* formerly lists.h */
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/* formerly lists.h */
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@ -1116,9 +1116,8 @@ int main(int argc, char * argv [])
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usleep(waittime);
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usleep(waittime);
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if (init_ok) {
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if (init_ok) {
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rc = avr_signature(pgm, p);
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rc = avr_signature(pgm, p);
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if (rc != 0) {
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if (rc != LIBAVRDUDE_SUCCESS) {
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// -68 == -(0x44) == -(RSP3_FAIL_OCD_LOCKED)
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if ((rc == LIBAVRDUDE_SOFTFAIL) && (p->flags & AVRPART_HAS_UPDI) && (attempt < 1)) {
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if ((rc == -68) && (p->flags & AVRPART_HAS_UPDI) && (attempt < 1)) {
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attempt++;
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attempt++;
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if (pgm->read_sib) {
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if (pgm->read_sib) {
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// Read SIB and compare FamilyID
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// Read SIB and compare FamilyID
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