cli_commands.c 15 KB

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  1. #include "cli_commands.h"
  2. #include "cli_command_gpio.h"
  3. #include <furi_hal.h>
  4. #include <furi_hal_info.h>
  5. #include <task_control_block.h>
  6. #include <time.h>
  7. #include <notification/notification_messages.h>
  8. #include <loader/loader.h>
  9. #include <lib/toolbox/args.h>
  10. // Close to ISO, `date +'%Y-%m-%d %H:%M:%S %u'`
  11. #define CLI_DATE_FORMAT "%.4d-%.2d-%.2d %.2d:%.2d:%.2d %d"
  12. void cli_command_device_info_callback(const char* key, const char* value, bool last, void* context) {
  13. UNUSED(context);
  14. UNUSED(last);
  15. printf("%-30s: %s\r\n", key, value);
  16. }
  17. /*
  18. * Device Info Command
  19. * This command is intended to be used by humans
  20. */
  21. void cli_command_device_info(Cli* cli, FuriString* args, void* context) {
  22. UNUSED(cli);
  23. UNUSED(args);
  24. furi_hal_info_get(cli_command_device_info_callback, context);
  25. }
  26. void cli_command_help(Cli* cli, FuriString* args, void* context) {
  27. UNUSED(args);
  28. UNUSED(context);
  29. printf("Commands we have:");
  30. // Command count
  31. const size_t commands_count = CliCommandTree_size(cli->commands);
  32. const size_t commands_count_mid = commands_count / 2 + commands_count % 2;
  33. // Use 2 iterators from start and middle to show 2 columns
  34. CliCommandTree_it_t it_left;
  35. CliCommandTree_it(it_left, cli->commands);
  36. CliCommandTree_it_t it_right;
  37. CliCommandTree_it(it_right, cli->commands);
  38. for(size_t i = 0; i < commands_count_mid; i++) CliCommandTree_next(it_right);
  39. // Iterate throw tree
  40. for(size_t i = 0; i < commands_count_mid; i++) {
  41. printf("\r\n");
  42. // Left Column
  43. if(!CliCommandTree_end_p(it_left)) {
  44. printf("%-30s", furi_string_get_cstr(*CliCommandTree_ref(it_left)->key_ptr));
  45. CliCommandTree_next(it_left);
  46. }
  47. // Right Column
  48. if(!CliCommandTree_end_p(it_right)) {
  49. printf("%s", furi_string_get_cstr(*CliCommandTree_ref(it_right)->key_ptr));
  50. CliCommandTree_next(it_right);
  51. }
  52. };
  53. if(furi_string_size(args) > 0) {
  54. cli_nl();
  55. printf("Also I have no clue what '");
  56. printf("%s", furi_string_get_cstr(args));
  57. printf("' is.");
  58. }
  59. }
  60. void cli_command_date(Cli* cli, FuriString* args, void* context) {
  61. UNUSED(cli);
  62. UNUSED(context);
  63. FuriHalRtcDateTime datetime = {0};
  64. if(furi_string_size(args) > 0) {
  65. uint16_t hours, minutes, seconds, month, day, year, weekday;
  66. int ret = sscanf(
  67. furi_string_get_cstr(args),
  68. "%hu-%hu-%hu %hu:%hu:%hu %hu",
  69. &year,
  70. &month,
  71. &day,
  72. &hours,
  73. &minutes,
  74. &seconds,
  75. &weekday);
  76. // Some variables are going to discard upper byte
  77. // There will be some funky behaviour which is not breaking anything
  78. datetime.hour = hours;
  79. datetime.minute = minutes;
  80. datetime.second = seconds;
  81. datetime.weekday = weekday;
  82. datetime.month = month;
  83. datetime.day = day;
  84. datetime.year = year;
  85. if(ret != 7) {
  86. printf(
  87. "Invalid datetime format, use `%s`. sscanf %d %s",
  88. "%Y-%m-%d %H:%M:%S %u",
  89. ret,
  90. furi_string_get_cstr(args));
  91. return;
  92. }
  93. if(!furi_hal_rtc_validate_datetime(&datetime)) {
  94. printf("Invalid datetime data");
  95. return;
  96. }
  97. furi_hal_rtc_set_datetime(&datetime);
  98. // Verification
  99. furi_hal_rtc_get_datetime(&datetime);
  100. printf(
  101. "New datetime is: " CLI_DATE_FORMAT,
  102. datetime.year,
  103. datetime.month,
  104. datetime.day,
  105. datetime.hour,
  106. datetime.minute,
  107. datetime.second,
  108. datetime.weekday);
  109. } else {
  110. furi_hal_rtc_get_datetime(&datetime);
  111. printf(
  112. CLI_DATE_FORMAT,
  113. datetime.year,
  114. datetime.month,
  115. datetime.day,
  116. datetime.hour,
  117. datetime.minute,
  118. datetime.second,
  119. datetime.weekday);
  120. }
  121. }
  122. #define CLI_COMMAND_LOG_RING_SIZE 2048
  123. #define CLI_COMMAND_LOG_BUFFER_SIZE 64
  124. void cli_command_log_tx_callback(const uint8_t* buffer, size_t size, void* context) {
  125. furi_stream_buffer_send(context, buffer, size, 0);
  126. }
  127. void cli_command_log_level_set_from_string(FuriString* level) {
  128. if(furi_string_cmpi_str(level, "default") == 0) {
  129. furi_log_set_level(FuriLogLevelDefault);
  130. } else if(furi_string_cmpi_str(level, "none") == 0) {
  131. furi_log_set_level(FuriLogLevelNone);
  132. } else if(furi_string_cmpi_str(level, "error") == 0) {
  133. furi_log_set_level(FuriLogLevelError);
  134. } else if(furi_string_cmpi_str(level, "warn") == 0) {
  135. furi_log_set_level(FuriLogLevelWarn);
  136. } else if(furi_string_cmpi_str(level, "info") == 0) {
  137. furi_log_set_level(FuriLogLevelInfo);
  138. } else if(furi_string_cmpi_str(level, "debug") == 0) {
  139. furi_log_set_level(FuriLogLevelDebug);
  140. } else if(furi_string_cmpi_str(level, "trace") == 0) {
  141. furi_log_set_level(FuriLogLevelTrace);
  142. } else {
  143. printf("Unknown log level\r\n");
  144. }
  145. }
  146. void cli_command_log(Cli* cli, FuriString* args, void* context) {
  147. UNUSED(context);
  148. FuriStreamBuffer* ring = furi_stream_buffer_alloc(CLI_COMMAND_LOG_RING_SIZE, 1);
  149. uint8_t buffer[CLI_COMMAND_LOG_BUFFER_SIZE];
  150. FuriLogLevel previous_level = furi_log_get_level();
  151. bool restore_log_level = false;
  152. if(furi_string_size(args) > 0) {
  153. cli_command_log_level_set_from_string(args);
  154. restore_log_level = true;
  155. }
  156. furi_hal_console_set_tx_callback(cli_command_log_tx_callback, ring);
  157. printf("Press CTRL+C to stop...\r\n");
  158. while(!cli_cmd_interrupt_received(cli)) {
  159. size_t ret = furi_stream_buffer_receive(ring, buffer, CLI_COMMAND_LOG_BUFFER_SIZE, 50);
  160. cli_write(cli, buffer, ret);
  161. }
  162. furi_hal_console_set_tx_callback(NULL, NULL);
  163. if(restore_log_level) {
  164. // There will be strange behaviour if log level is set from settings while log command is running
  165. furi_log_set_level(previous_level);
  166. }
  167. furi_stream_buffer_free(ring);
  168. }
  169. void cli_command_sysctl_debug(Cli* cli, FuriString* args, void* context) {
  170. UNUSED(cli);
  171. UNUSED(context);
  172. if(!furi_string_cmp(args, "0")) {
  173. furi_hal_rtc_reset_flag(FuriHalRtcFlagDebug);
  174. loader_update_menu();
  175. printf("Debug disabled.");
  176. } else if(!furi_string_cmp(args, "1")) {
  177. furi_hal_rtc_set_flag(FuriHalRtcFlagDebug);
  178. loader_update_menu();
  179. printf("Debug enabled.");
  180. } else {
  181. cli_print_usage("sysctl debug", "<1|0>", furi_string_get_cstr(args));
  182. }
  183. }
  184. void cli_command_sysctl_heap_track(Cli* cli, FuriString* args, void* context) {
  185. UNUSED(cli);
  186. UNUSED(context);
  187. if(!furi_string_cmp(args, "none")) {
  188. furi_hal_rtc_set_heap_track_mode(FuriHalRtcHeapTrackModeNone);
  189. printf("Heap tracking disabled");
  190. } else if(!furi_string_cmp(args, "main")) {
  191. furi_hal_rtc_set_heap_track_mode(FuriHalRtcHeapTrackModeMain);
  192. printf("Heap tracking enabled for application main thread");
  193. #if FURI_DEBUG
  194. } else if(!furi_string_cmp(args, "tree")) {
  195. furi_hal_rtc_set_heap_track_mode(FuriHalRtcHeapTrackModeTree);
  196. printf("Heap tracking enabled for application main and child threads");
  197. } else if(!furi_string_cmp(args, "all")) {
  198. furi_hal_rtc_set_heap_track_mode(FuriHalRtcHeapTrackModeAll);
  199. printf("Heap tracking enabled for all threads");
  200. #endif
  201. } else {
  202. cli_print_usage("sysctl heap_track", "<none|main|tree|all>", furi_string_get_cstr(args));
  203. }
  204. }
  205. void cli_command_sysctl_print_usage() {
  206. printf("Usage:\r\n");
  207. printf("sysctl <cmd> <args>\r\n");
  208. printf("Cmd list:\r\n");
  209. printf("\tdebug <0|1>\t - Enable or disable system debug\r\n");
  210. #if FURI_DEBUG
  211. printf("\theap_track <none|main|tree|all>\t - Set heap allocation tracking mode\r\n");
  212. #else
  213. printf("\theap_track <none|main>\t - Set heap allocation tracking mode\r\n");
  214. #endif
  215. }
  216. void cli_command_sysctl(Cli* cli, FuriString* args, void* context) {
  217. FuriString* cmd;
  218. cmd = furi_string_alloc();
  219. do {
  220. if(!args_read_string_and_trim(args, cmd)) {
  221. cli_command_sysctl_print_usage();
  222. break;
  223. }
  224. if(furi_string_cmp_str(cmd, "debug") == 0) {
  225. cli_command_sysctl_debug(cli, args, context);
  226. break;
  227. }
  228. if(furi_string_cmp_str(cmd, "heap_track") == 0) {
  229. cli_command_sysctl_heap_track(cli, args, context);
  230. break;
  231. }
  232. cli_command_sysctl_print_usage();
  233. } while(false);
  234. furi_string_free(cmd);
  235. }
  236. void cli_command_vibro(Cli* cli, FuriString* args, void* context) {
  237. UNUSED(cli);
  238. UNUSED(context);
  239. if(!furi_string_cmp(args, "0")) {
  240. NotificationApp* notification = furi_record_open(RECORD_NOTIFICATION);
  241. notification_message_block(notification, &sequence_reset_vibro);
  242. furi_record_close(RECORD_NOTIFICATION);
  243. } else if(!furi_string_cmp(args, "1")) {
  244. NotificationApp* notification = furi_record_open(RECORD_NOTIFICATION);
  245. notification_message_block(notification, &sequence_set_vibro_on);
  246. furi_record_close(RECORD_NOTIFICATION);
  247. } else {
  248. cli_print_usage("vibro", "<1|0>", furi_string_get_cstr(args));
  249. }
  250. }
  251. void cli_command_led(Cli* cli, FuriString* args, void* context) {
  252. UNUSED(cli);
  253. UNUSED(context);
  254. // Get first word as light name
  255. NotificationMessage notification_led_message;
  256. FuriString* light_name;
  257. light_name = furi_string_alloc();
  258. size_t ws = furi_string_search_char(args, ' ');
  259. if(ws == FURI_STRING_FAILURE) {
  260. cli_print_usage("led", "<r|g|b|bl> <0-255>", furi_string_get_cstr(args));
  261. furi_string_free(light_name);
  262. return;
  263. } else {
  264. furi_string_set_n(light_name, args, 0, ws);
  265. furi_string_right(args, ws);
  266. furi_string_trim(args);
  267. }
  268. // Check light name
  269. if(!furi_string_cmp(light_name, "r")) {
  270. notification_led_message.type = NotificationMessageTypeLedRed;
  271. } else if(!furi_string_cmp(light_name, "g")) {
  272. notification_led_message.type = NotificationMessageTypeLedGreen;
  273. } else if(!furi_string_cmp(light_name, "b")) {
  274. notification_led_message.type = NotificationMessageTypeLedBlue;
  275. } else if(!furi_string_cmp(light_name, "bl")) {
  276. notification_led_message.type = NotificationMessageTypeLedDisplayBacklight;
  277. } else {
  278. cli_print_usage("led", "<r|g|b|bl> <0-255>", furi_string_get_cstr(args));
  279. furi_string_free(light_name);
  280. return;
  281. }
  282. furi_string_free(light_name);
  283. // Read light value from the rest of the string
  284. char* end_ptr;
  285. uint32_t value = strtoul(furi_string_get_cstr(args), &end_ptr, 0);
  286. if(!(value < 256 && *end_ptr == '\0')) {
  287. cli_print_usage("led", "<r|g|b|bl> <0-255>", furi_string_get_cstr(args));
  288. return;
  289. }
  290. // Set led value
  291. notification_led_message.data.led.value = value;
  292. // Form notification sequence
  293. const NotificationSequence notification_sequence = {
  294. &notification_led_message,
  295. NULL,
  296. };
  297. // Send notification
  298. NotificationApp* notification = furi_record_open(RECORD_NOTIFICATION);
  299. notification_internal_message_block(notification, &notification_sequence);
  300. furi_record_close(RECORD_NOTIFICATION);
  301. }
  302. void cli_command_ps(Cli* cli, FuriString* args, void* context) {
  303. UNUSED(cli);
  304. UNUSED(args);
  305. UNUSED(context);
  306. const uint8_t threads_num_max = 32;
  307. FuriThreadId threads_ids[threads_num_max];
  308. uint8_t thread_num = furi_thread_enumerate(threads_ids, threads_num_max);
  309. printf(
  310. "%-20s %-14s %-8s %-8s %s\r\n", "Name", "Stack start", "Heap", "Stack", "Stack min free");
  311. for(uint8_t i = 0; i < thread_num; i++) {
  312. TaskControlBlock* tcb = (TaskControlBlock*)threads_ids[i];
  313. printf(
  314. "%-20s 0x%-12lx %-8d %-8ld %-8ld\r\n",
  315. furi_thread_get_name(threads_ids[i]),
  316. (uint32_t)tcb->pxStack,
  317. memmgr_heap_get_thread_memory(threads_ids[i]),
  318. (uint32_t)(tcb->pxEndOfStack - tcb->pxStack + 1) * sizeof(StackType_t),
  319. furi_thread_get_stack_space(threads_ids[i]));
  320. }
  321. printf("\r\nTotal: %d", thread_num);
  322. }
  323. void cli_command_free(Cli* cli, FuriString* args, void* context) {
  324. UNUSED(cli);
  325. UNUSED(args);
  326. UNUSED(context);
  327. printf("Free heap size: %d\r\n", memmgr_get_free_heap());
  328. printf("Total heap size: %d\r\n", memmgr_get_total_heap());
  329. printf("Minimum heap size: %d\r\n", memmgr_get_minimum_free_heap());
  330. printf("Maximum heap block: %d\r\n", memmgr_heap_get_max_free_block());
  331. printf("Pool free: %d\r\n", memmgr_pool_get_free());
  332. printf("Maximum pool block: %d\r\n", memmgr_pool_get_max_block());
  333. }
  334. void cli_command_free_blocks(Cli* cli, FuriString* args, void* context) {
  335. UNUSED(cli);
  336. UNUSED(args);
  337. UNUSED(context);
  338. memmgr_heap_printf_free_blocks();
  339. }
  340. void cli_command_i2c(Cli* cli, FuriString* args, void* context) {
  341. UNUSED(cli);
  342. UNUSED(args);
  343. UNUSED(context);
  344. furi_hal_i2c_acquire(&furi_hal_i2c_handle_external);
  345. printf("Scanning external i2c on PC0(SCL)/PC1(SDA)\r\n"
  346. "Clock: 100khz, 7bit address\r\n"
  347. "\r\n");
  348. printf(" | 0 1 2 3 4 5 6 7 8 9 A B C D E F\r\n");
  349. printf("--+--------------------------------\r\n");
  350. for(uint8_t row = 0; row < 0x8; row++) {
  351. printf("%x | ", row);
  352. for(uint8_t column = 0; column <= 0xF; column++) {
  353. bool ret = furi_hal_i2c_is_device_ready(
  354. &furi_hal_i2c_handle_external, ((row << 4) + column) << 1, 2);
  355. printf("%c ", ret ? '#' : '-');
  356. }
  357. printf("\r\n");
  358. }
  359. furi_hal_i2c_release(&furi_hal_i2c_handle_external);
  360. }
  361. void cli_commands_init(Cli* cli) {
  362. cli_add_command(cli, "!", CliCommandFlagParallelSafe, cli_command_device_info, NULL);
  363. cli_add_command(cli, "device_info", CliCommandFlagParallelSafe, cli_command_device_info, NULL);
  364. cli_add_command(cli, "?", CliCommandFlagParallelSafe, cli_command_help, NULL);
  365. cli_add_command(cli, "help", CliCommandFlagParallelSafe, cli_command_help, NULL);
  366. cli_add_command(cli, "date", CliCommandFlagParallelSafe, cli_command_date, NULL);
  367. cli_add_command(cli, "log", CliCommandFlagParallelSafe, cli_command_log, NULL);
  368. cli_add_command(cli, "sysctl", CliCommandFlagDefault, cli_command_sysctl, NULL);
  369. cli_add_command(cli, "ps", CliCommandFlagParallelSafe, cli_command_ps, NULL);
  370. cli_add_command(cli, "free", CliCommandFlagParallelSafe, cli_command_free, NULL);
  371. cli_add_command(cli, "free_blocks", CliCommandFlagParallelSafe, cli_command_free_blocks, NULL);
  372. cli_add_command(cli, "vibro", CliCommandFlagDefault, cli_command_vibro, NULL);
  373. cli_add_command(cli, "led", CliCommandFlagDefault, cli_command_led, NULL);
  374. cli_add_command(cli, "gpio", CliCommandFlagDefault, cli_command_gpio, NULL);
  375. cli_add_command(cli, "i2c", CliCommandFlagDefault, cli_command_i2c, NULL);
  376. }