X-Git-Url: https://git.gag.com/?a=blobdiff_plain;f=gdbserver%2Fgdb-server.c;h=f92fc05f06aa7c11f437c67ab252561fbccf85bc;hb=bbecbc1e81b15b85829149424d048d96bd844939;hp=6961cdcce7656cfe1b979448daadfb4494ab6570;hpb=82c638ed83f69e36439763c0e48074829178a24b;p=fw%2Fstlink diff --git a/gdbserver/gdb-server.c b/gdbserver/gdb-server.c index 6961cdc..f92fc05 100644 --- a/gdbserver/gdb-server.c +++ b/gdbserver/gdb-server.c @@ -12,10 +12,14 @@ #include #include #include +#ifdef __MINGW32__ +#include "mingw.h" +#else #include #include #include #include +#endif #include @@ -159,17 +163,27 @@ int main(int argc, char** argv) { if(sl == NULL) return 1; break; } - - stlink_reset(sl); - stlink_load_device_params(sl); + printf("Chip ID is %08x, Core ID is %08x.\n", sl->chip_id, sl->core_id); sl->verbose=0; current_memory_map = make_memory_map(sl); +#ifdef __MINGW32__ + WSADATA wsadata; + if (WSAStartup(MAKEWORD(2,2),&wsadata) !=0 ) { + goto winsock_error; + } +#endif + while(serve(sl, state.listen_port) == 0); +#ifdef __MINGW32__ +winsock_error: + WSACleanup(); +#endif + /* Switch back to mass storage mode before closing. */ stlink_run(sl); stlink_exit_debug_mode(sl); @@ -178,13 +192,79 @@ int main(int argc, char** argv) { return 0; } +static const char* const target_description_F4 = + "" + "" + "" + " arm" + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + " " + ""; + static const char* const memory_map_template_F4 = "" "" "" " " // code = sram, bootrom or flash; flash is bigger - " " // sram + " " // ccm ram + " " // sram " " //Sectors 0..3 " 0x4000" //16kB " " @@ -205,15 +285,15 @@ static const char* const memory_map_template = "" "" - " " // code = sram, bootrom or flash; flash is bigger - " " // sram 8k - " " - " 0x%x" + " " // code = sram, bootrom or flash; flash is bigger + " " // sram 8k + " " + " 0x%zx" " " " " // peripheral regs " " // cortex regs - " " // bootrom - " " // option byte area + " " // bootrom + " " // option byte area ""; char* make_memory_map(stlink_t *sl) { @@ -221,7 +301,7 @@ char* make_memory_map(stlink_t *sl) { char* map = malloc(4096); map[0] = '\0'; - if(sl->chip_id==STM32F4_CHIP_ID) { + if(sl->chip_id==STM32_CHIPID_F4) { strcpy(map, memory_map_template_F4); } else { snprintf(map, 4096, memory_map_template, @@ -234,7 +314,7 @@ char* make_memory_map(stlink_t *sl) { } -/* +/* * DWT_COMP0 0xE0001020 * DWT_MASK0 0xE0001024 * DWT_FUNCTION0 0xE0001028 @@ -267,15 +347,13 @@ static void init_data_watchpoints(stlink_t *sl) { #endif // set trcena in debug command to turn on dwt unit - stlink_read_mem32(sl, 0xE000EDFC, 4); - sl->q_buf[3] |= 1; - stlink_write_mem32(sl, 0xE000EDFC, 4); + stlink_write_debug32(sl, 0xE000EDFC, + stlink_read_debug32(sl, 0xE000EDFC) | (1<<24)); // make sure all watchpoints are cleared - memset(sl->q_buf, 0, 4); for(int i = 0; i < DATA_WATCH_NUM; i++) { data_watches[i].fun = WATCHDISABLED; - stlink_write_mem32(sl, 0xe0001028 + i * 16, 4); + stlink_write_debug32(sl, 0xe0001028 + i * 16, 0); } } @@ -295,7 +373,7 @@ static int add_data_watchpoint(stlink_t *sl, enum watchfun wf, stm32_addr_t addr mask++; } - if((mask != -1) && (mask < 16)) { + if((mask != (uint32_t)-1) && (mask < 16)) { for(i = 0; i < DATA_WATCH_NUM; i++) { // is this an empty slot ? if(data_watches[i].fun == WATCHDISABLED) { @@ -308,25 +386,16 @@ static int add_data_watchpoint(stlink_t *sl, enum watchfun wf, stm32_addr_t addr data_watches[i].mask = mask; // insert comparator address - sl->q_buf[0] = (addr & 0xff); - sl->q_buf[1] = ((addr >> 8) & 0xff); - sl->q_buf[2] = ((addr >> 16) & 0xff); - sl->q_buf[3] = ((addr >> 24) & 0xff); - - stlink_write_mem32(sl, 0xE0001020 + i * 16, 4); + stlink_write_debug32(sl, 0xE0001020 + i * 16, addr); // insert mask - memset(sl->q_buf, 0, 4); - sl->q_buf[0] = mask; - stlink_write_mem32(sl, 0xE0001024 + i * 16, 4); + stlink_write_debug32(sl, 0xE0001024 + i * 16, mask); // insert function - memset(sl->q_buf, 0, 4); - sl->q_buf[0] = wf; - stlink_write_mem32(sl, 0xE0001028 + i * 16, 4); + stlink_write_debug32(sl, 0xE0001028 + i * 16, wf); // just to make sure the matched bit is clear ! - stlink_read_mem32(sl, 0xE0001028 + i * 16, 4); + stlink_read_debug32(sl, 0xE0001028 + i * 16); return 0; } } @@ -348,9 +417,8 @@ static int delete_data_watchpoint(stlink_t *sl, stm32_addr_t addr) printf("delete watchpoint %d addr %x\n", i, addr); #endif - memset(sl->q_buf, 0, 4); data_watches[i].fun = WATCHDISABLED; - stlink_write_mem32(sl, 0xe0001028 + i * 16, 4); + stlink_write_debug32(sl, 0xe0001028 + i * 16, 0); return 0; } @@ -376,15 +444,13 @@ struct code_hw_breakpoint code_breaks[CODE_BREAK_NUM]; static void init_code_breakpoints(stlink_t *sl) { memset(sl->q_buf, 0, 4); - sl->q_buf[0] = 0x03; // KEY | ENABLE - stlink_write_mem32(sl, CM3_REG_FP_CTRL, 4); + stlink_write_debug32(sl, CM3_REG_FP_CTRL, 0x03 /*KEY | ENABLE4*/); printf("KARL - should read back as 0x03, not 60 02 00 00\n"); - stlink_read_mem32(sl, CM3_REG_FP_CTRL, 4); + stlink_read_debug32(sl, CM3_REG_FP_CTRL); - memset(sl->q_buf, 0, 4); for(int i = 0; i < CODE_BREAK_NUM; i++) { code_breaks[i].type = 0; - stlink_write_mem32(sl, CM3_REG_FP_COMP0 + i * 4, 4); + stlink_write_debug32(sl, CM3_REG_FP_COMP0 + i * 4, 0); } } @@ -418,28 +484,23 @@ static int update_code_breakpoint(stlink_t *sl, stm32_addr_t addr, int set) { if(set) brk->type |= type; else brk->type &= ~type; - memset(sl->q_buf, 0, 4); - if(brk->type == 0) { #ifdef DEBUG printf("clearing hw break %d\n", id); #endif - stlink_write_mem32(sl, 0xe0002008 + id * 4, 4); + stlink_write_debug32(sl, 0xe0002008 + id * 4, 0); } else { - sl->q_buf[0] = ( brk->addr & 0xff) | 1; - sl->q_buf[1] = ((brk->addr >> 8) & 0xff); - sl->q_buf[2] = ((brk->addr >> 16) & 0xff); - sl->q_buf[3] = ((brk->addr >> 24) & 0xff) | (brk->type << 6); + uint32_t mask = (brk->addr) | 1 | (brk->type << 30); #ifdef DEBUG printf("setting hw break %d at %08x (%d)\n", id, brk->addr, brk->type); - printf("reg %02x %02x %02x %02x\n", - sl->q_buf[3], sl->q_buf[2], sl->q_buf[1], sl->q_buf[0]); + printf("reg %08x \n", + mask); #endif - stlink_write_mem32(sl, 0xe0002008 + id * 4, 4); + stlink_write_debug32(sl, 0xe0002008 + id * 4, mask); } return 0; @@ -482,7 +543,7 @@ static int flash_add_block(stm32_addr_t addr, unsigned length, stlink_t *sl) { } static int flash_populate(stm32_addr_t addr, uint8_t* data, unsigned length) { - int fit_blocks = 0, fit_length = 0; + unsigned int fit_blocks = 0, fit_length = 0; for(struct flash_block* fb = flash_root; fb; fb = fb->next) { /* Block: ------X------Y-------- @@ -572,9 +633,10 @@ int serve(stlink_t *sl, int port) { } unsigned int val = 1; - setsockopt(sock, SOL_SOCKET, SO_REUSEADDR, &val, sizeof(val)); + setsockopt(sock, SOL_SOCKET, SO_REUSEADDR, (char *)&val, sizeof(val)); - struct sockaddr_in serv_addr = {0}; + struct sockaddr_in serv_addr; + memset(&serv_addr,0,sizeof(struct sockaddr_in)); serv_addr.sin_family = AF_INET; serv_addr.sin_addr.s_addr = inet_addr("127.0.0.1"); serv_addr.sin_port = htons(port); @@ -588,7 +650,8 @@ int serve(stlink_t *sl, int port) { perror("listen"); return 1; } - + +start_again: stlink_force_debug(sl); stlink_reset(sl); init_code_breakpoints(sl); @@ -597,7 +660,7 @@ int serve(stlink_t *sl, int port) { printf("Listening at *:%d...\n", port); int client = accept(sock, NULL, NULL); - signal (SIGINT, SIG_DFL); + //signal (SIGINT, SIG_DFL); if(client < 0) { perror("accept"); return 1; @@ -619,7 +682,7 @@ int serve(stlink_t *sl, int port) { int status = gdb_recv_packet(client, &packet); if(status < 0) { fprintf(stderr, "cannot recv: %d\n", status); - return 1; + goto start_again; } #ifdef DEBUG @@ -652,19 +715,24 @@ int serve(stlink_t *sl, int port) { #endif if(!strcmp(queryName, "Supported")) { - reply = strdup("PacketSize=3fff;qXfer:memory-map:read+"); + if(sl->chip_id==STM32_CHIPID_F4) { + reply = strdup("PacketSize=3fff;qXfer:memory-map:read+;qXfer:features:read+"); + } + else { + reply = strdup("PacketSize=3fff;qXfer:memory-map:read+"); + } } else if(!strcmp(queryName, "Xfer")) { - char *type, *op, *s_addr, *s_length; + char *type, *op, *__s_addr, *s_length; char *tok = params; char *annex __attribute__((unused)); type = strsep(&tok, ":"); op = strsep(&tok, ":"); annex = strsep(&tok, ":"); - s_addr = strsep(&tok, ","); + __s_addr = strsep(&tok, ","); s_length = tok; - unsigned addr = strtoul(s_addr, NULL, 16), + unsigned addr = strtoul(__s_addr, NULL, 16), length = strtoul(s_length, NULL, 16); #ifdef DEBUG @@ -677,6 +745,9 @@ int serve(stlink_t *sl, int port) { if(!strcmp(type, "memory-map") && !strcmp(op, "read")) data = current_memory_map; + if(!strcmp(type, "features") && !strcmp(op, "read")) + data = target_description_F4; + if(data) { unsigned data_length = strlen(data); if(addr + length > data_length) @@ -690,6 +761,59 @@ int serve(stlink_t *sl, int port) { strncpy(&reply[1], data, length); } } + } else if(!strncmp(queryName, "Rcmd,",4)) { + // Rcmd uses the wrong separator + char *separator = strstr(packet, ","), *params = ""; + if(separator == NULL) { + separator = packet + strlen(packet); + } else { + params = separator + 1; + } + + + if (!strncmp(params,"726573756d65",12)) {// resume +#ifdef DEBUG + printf("Rcmd: resume\n"); +#endif + stlink_run(sl); + + reply = strdup("OK"); + } else if (!strncmp(params,"68616c74",8)) { //halt + reply = strdup("OK"); + + stlink_force_debug(sl); + +#ifdef DEBUG + printf("Rcmd: halt\n"); +#endif + } else if (!strncmp(params,"6a7461675f7265736574",20)) { //jtag_reset + reply = strdup("OK"); + + stlink_jtag_reset(sl, 1); + stlink_jtag_reset(sl, 0); + stlink_force_debug(sl); + +#ifdef DEBUG + printf("Rcmd: jtag_reset\n"); +#endif + } else if (!strncmp(params,"7265736574",10)) { //reset + reply = strdup("OK"); + + stlink_force_debug(sl); + stlink_reset(sl); + init_code_breakpoints(sl); + init_data_watchpoints(sl); + +#ifdef DEBUG + printf("Rcmd: reset\n"); +#endif + } else { +#ifdef DEBUG + printf("Rcmd: %s\n", params); +#endif + + } + } if(reply == NULL) @@ -707,13 +831,13 @@ int serve(stlink_t *sl, int port) { cmdName++; // vCommand -> Command if(!strcmp(cmdName, "FlashErase")) { - char *s_addr, *s_length; + char *__s_addr, *s_length; char *tok = params; - s_addr = strsep(&tok, ","); + __s_addr = strsep(&tok, ","); s_length = tok; - unsigned addr = strtoul(s_addr, NULL, 16), + unsigned addr = strtoul(__s_addr, NULL, 16), length = strtoul(s_length, NULL, 16); #ifdef DEBUG @@ -727,13 +851,13 @@ int serve(stlink_t *sl, int port) { reply = strdup("OK"); } } else if(!strcmp(cmdName, "FlashWrite")) { - char *s_addr, *data; + char *__s_addr, *data; char *tok = params; - s_addr = strsep(&tok, ":"); + __s_addr = strsep(&tok, ":"); data = tok; - unsigned addr = strtoul(s_addr, NULL, 16); + unsigned addr = strtoul(__s_addr, NULL, 16); unsigned data_length = status - (data - packet); // Length of decoded data cannot be more than @@ -741,7 +865,7 @@ int serve(stlink_t *sl, int port) { // Additional byte is reserved for alignment fix. uint8_t *decoded = calloc(data_length + 1, 1); unsigned dec_index = 0; - for(int i = 0; i < data_length; i++) { + for(unsigned int i = 0; i < data_length; i++) { if(data[i] == 0x7d) { i++; decoded[dec_index++] = data[i] ^ 0x20; @@ -841,6 +965,30 @@ int serve(stlink_t *sl, int port) { } else if(id == 0x19) { stlink_read_reg(sl, 16, ®p); myreg = htonl(regp.xpsr); + } else if(id == 0x1A) { + stlink_read_reg(sl, 17, ®p); + myreg = htonl(regp.main_sp); + } else if(id == 0x1B) { + stlink_read_reg(sl, 18, ®p); + myreg = htonl(regp.process_sp); + } else if(id == 0x1C) { + stlink_read_unsupported_reg(sl, id, ®p); + myreg = htonl(regp.control); + } else if(id == 0x1D) { + stlink_read_unsupported_reg(sl, id, ®p); + myreg = htonl(regp.faultmask); + } else if(id == 0x1E) { + stlink_read_unsupported_reg(sl, id, ®p); + myreg = htonl(regp.basepri); + } else if(id == 0x1F) { + stlink_read_unsupported_reg(sl, id, ®p); + myreg = htonl(regp.primask); + } else if(id >= 0x20 && id < 0x40) { + stlink_read_unsupported_reg(sl, id, ®p); + myreg = htonl(regp.s[id-0x20]); + } else if(id == 0x40) { + stlink_read_unsupported_reg(sl, id, ®p); + myreg = htonl(regp.fpscr); } else { reply = strdup("E00"); } @@ -862,6 +1010,22 @@ int serve(stlink_t *sl, int port) { stlink_write_reg(sl, ntohl(value), reg); } else if(reg == 0x19) { stlink_write_reg(sl, ntohl(value), 16); + } else if(reg == 0x1A) { + stlink_write_reg(sl, ntohl(value), 17); + } else if(reg == 0x1B) { + stlink_write_reg(sl, ntohl(value), 18); + } else if(reg == 0x1C) { + stlink_write_unsupported_reg(sl, ntohl(value), reg, ®p); + } else if(reg == 0x1D) { + stlink_write_unsupported_reg(sl, ntohl(value), reg, ®p); + } else if(reg == 0x1E) { + stlink_write_unsupported_reg(sl, ntohl(value), reg, ®p); + } else if(reg == 0x1F) { + stlink_write_unsupported_reg(sl, ntohl(value), reg, ®p); + } else if(reg >= 0x20 && reg < 0x40) { + stlink_write_unsupported_reg(sl, ntohl(value), reg, ®p); + } else if(reg == 0x40) { + stlink_write_unsupported_reg(sl, ntohl(value), reg, ®p); } else { reply = strdup("E00"); } @@ -892,12 +1056,12 @@ int serve(stlink_t *sl, int port) { unsigned count = strtoul(s_count, NULL, 16); unsigned adj_start = start % 4; + unsigned count_rnd = (count + adj_start + 4 - 1) / 4 * 4; - stlink_read_mem32(sl, start - adj_start, (count % 4 == 0) ? - count : count + 4 - (count % 4)); + stlink_read_mem32(sl, start - adj_start, count_rnd); reply = calloc(count * 2 + 1, 1); - for(int i = 0; i < count; i++) { + for(unsigned int i = 0; i < count; i++) { reply[i * 2 + 0] = hex[sl->q_buf[i + adj_start] >> 4]; reply[i * 2 + 1] = hex[sl->q_buf[i + adj_start] & 0xf]; } @@ -913,20 +1077,43 @@ int serve(stlink_t *sl, int port) { stm32_addr_t start = strtoul(s_start, NULL, 16); unsigned count = strtoul(s_count, NULL, 16); - for(int i = 0; i < count; i ++) { + if(start % 4) { + unsigned align_count = 4 - start % 4; + if (align_count > count) align_count = count; + for(unsigned int i = 0; i < align_count; i ++) { char hex[3] = { hexdata[i*2], hexdata[i*2+1], 0 }; uint8_t byte = strtoul(hex, NULL, 16); sl->q_buf[i] = byte; + } + stlink_write_mem8(sl, start, align_count); + start += align_count; + count -= align_count; + hexdata += 2*align_count; } - if((count % 4) == 0 && (start % 4) == 0) { - stlink_write_mem32(sl, start, count); - } else { - stlink_write_mem8(sl, start, count); + if(count - count % 4) { + unsigned aligned_count = count - count % 4; + + for(unsigned int i = 0; i < aligned_count; i ++) { + char hex[3] = { hexdata[i*2], hexdata[i*2+1], 0 }; + uint8_t byte = strtoul(hex, NULL, 16); + sl->q_buf[i] = byte; + } + stlink_write_mem32(sl, start, aligned_count); + count -= aligned_count; + start += aligned_count; + hexdata += 2*aligned_count; } + if(count) { + for(unsigned int i = 0; i < count; i ++) { + char hex[3] = { hexdata[i*2], hexdata[i*2+1], 0 }; + uint8_t byte = strtoul(hex, NULL, 16); + sl->q_buf[i] = byte; + } + stlink_write_mem8(sl, start, count); + } reply = strdup("OK"); - break; } @@ -955,13 +1142,14 @@ int serve(stlink_t *sl, int port) { wf = WATCHREAD; } else { wf = WATCHACCESS; - if(add_data_watchpoint(sl, wf, addr, len) < 0) { - reply = strdup("E00"); - } else { - reply = strdup("OK"); - break; - } } + + if(add_data_watchpoint(sl, wf, addr, len) < 0) { + reply = strdup("E00"); + } else { + reply = strdup("OK"); + break; + } } default: @@ -1033,7 +1221,9 @@ int serve(stlink_t *sl, int port) { int result = gdb_send_packet(client, reply); if(result != 0) { fprintf(stderr, "cannot send: %d\n", result); - return 1; + free(reply); + free(packet); + goto start_again; } free(reply);