Added monitor commands for reading various nRF51 device parameters
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72ae78a185
commit
380f128d0a
97
src/nrf51.c
97
src/nrf51.c
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@ -35,9 +35,24 @@ static int nrf51_flash_write(struct target_s *target, uint32_t dest,
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const uint8_t *src, int len);
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static bool nrf51_cmd_erase_all(target *t);
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static bool nrf51_cmd_read_hwid(target *t);
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static bool nrf51_cmd_read_fwid(target *t);
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static bool nrf51_cmd_read_deviceid(target *t);
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static bool nrf51_cmd_read_deviceaddr(target *t);
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static bool nrf51_cmd_read_help();
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static bool nrf51_cmd_read(target *t, int argc, const char *argv[]);
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const struct command_s nrf51_cmd_list[] = {
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{"erase_mass", (cmd_handler)nrf51_cmd_erase_all, "Erase entire flash memory"},
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{"read", (cmd_handler)nrf51_cmd_read, "Read device parameters"},
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{NULL, NULL, NULL}
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};
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const struct command_s nrf51_read_cmd_list[] = {
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{"help", (cmd_handler)nrf51_cmd_read_help, "Display help for read commands"},
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{"hwid", (cmd_handler)nrf51_cmd_read_hwid, "Read hardware identification number"},
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{"fwid", (cmd_handler)nrf51_cmd_read_fwid, "Read pre-loaded firmware ID"},
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{"deviceid", (cmd_handler)nrf51_cmd_read_deviceid, "Read unique device ID"},
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{"deviceaddr", (cmd_handler)nrf51_cmd_read_deviceaddr, "Read device address"},
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{NULL, NULL, NULL}
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};
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@ -65,10 +80,15 @@ static const char nrf51_xml_memory_map[] = "<?xml version=\"1.0\"?>"
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#define NRF51_NVMC_CONFIG_EEN 0x2 // Erase enable
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/* Factory Information Configuration Registers (FICR) */
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#define NRF51_FICR 0x10000000
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#define NRF51_FICR_CODEPAGESIZE (NRF51_FICR + 0x010)
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#define NRF51_FICR 0x10000000
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#define NRF51_FICR_CODEPAGESIZE (NRF51_FICR + 0x010)
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#define NRF51_FICR_CODESIZE (NRF51_FICR + 0x014)
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#define NRF51_FICR_CONFIGID (NRF51_FICR + 0x05C)
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#define NRF51_FICR_DEVICEID_LOW (NRF51_FICR + 0x060)
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#define NRF51_FICR_DEVICEID_HIGH (NRF51_FICR + 0x064)
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#define NRF51_FICR_DEVICEADDRTYPE (NRF51_FICR + 0x0A0)
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#define NRF51_FICR_DEVICEADDR_LOW (NRF51_FICR + 0x0A4)
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#define NRF51_FICR_DEVICEADDR_HIGH (NRF51_FICR + 0x0A8)
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#define NRF51_PAGE_SIZE 1024
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@ -224,6 +244,8 @@ static bool nrf51_cmd_erase_all(target *t)
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{
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ADIv5_AP_t *ap = adiv5_target_ap(t);
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gdb_out("erase..\n");
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/* Enable erase */
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adiv5_ap_mem_write(ap, NRF51_NVMC_CONFIG, NRF51_NVMC_CONFIG_EEN);
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@ -242,3 +264,74 @@ static bool nrf51_cmd_erase_all(target *t)
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return true;
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}
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static bool nrf51_cmd_read_hwid(target *t)
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{
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ADIv5_AP_t *ap = adiv5_target_ap(t);
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uint32_t hwid = adiv5_ap_mem_read(ap, NRF51_FICR_CONFIGID) & 0xFFFF;
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gdb_outf("Hardware ID: 0x%04X\n", hwid);
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return true;
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}
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static bool nrf51_cmd_read_fwid(target *t)
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{
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ADIv5_AP_t *ap = adiv5_target_ap(t);
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uint32_t fwid = (adiv5_ap_mem_read(ap, NRF51_FICR_CONFIGID) >> 16) & 0xFFFF;
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gdb_outf("Firmware ID: 0x%04X\n", fwid);
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return true;
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}
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static bool nrf51_cmd_read_deviceid(target *t)
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{
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ADIv5_AP_t *ap = adiv5_target_ap(t);
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uint32_t deviceid_low = adiv5_ap_mem_read(ap, NRF51_FICR_DEVICEID_LOW);
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uint32_t deviceid_high = adiv5_ap_mem_read(ap, NRF51_FICR_DEVICEID_HIGH);
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gdb_outf("Device ID: 0x%08X%08X\n", deviceid_high, deviceid_low);
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return true;
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}
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static bool nrf51_cmd_read_deviceaddr(target *t)
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{
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ADIv5_AP_t *ap = adiv5_target_ap(t);
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uint32_t addr_type = adiv5_ap_mem_read(ap, NRF51_FICR_DEVICEADDRTYPE);
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uint32_t addr_low = adiv5_ap_mem_read(ap, NRF51_FICR_DEVICEADDR_LOW);
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uint32_t addr_high = adiv5_ap_mem_read(ap, NRF51_FICR_DEVICEADDR_HIGH) & 0xFFFF;
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if ((addr_type & 1) == 0) {
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gdb_outf("Publicly Listed Address: 0x%04X%08X\n", addr_high, addr_low);
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} else {
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gdb_outf("Randomly Assigned Address: 0x%04X%08X\n", addr_high, addr_low);
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}
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return true;
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}
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static bool nrf51_cmd_read_help()
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{
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const struct command_s *c;
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gdb_out("Read commands:\n");
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for(c = nrf51_read_cmd_list; c->cmd; c++)
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gdb_outf("\t%s -- %s\n", c->cmd, c->help);
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return true;
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}
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static bool nrf51_cmd_read(target *t, int argc, const char *argv[])
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{
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const struct command_s *c;
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for(c = nrf51_read_cmd_list; c->cmd; c++) {
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/* Accept a partial match as GDB does.
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* So 'mon ver' will match 'monitor version'
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*/
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if(!strncmp(argv[1], c->cmd, strlen(argv[1])))
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return !c->handler(t, argc - 1, &argv[1]);
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}
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return nrf51_cmd_read_help(t);
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}
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