infrared_cli.c 17 KB

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  1. #include <cli/cli.h>
  2. #include <cli/cli_i.h>
  3. #include <infrared.h>
  4. #include <infrared_worker.h>
  5. #include <furi_hal_infrared.h>
  6. #include <flipper_format.h>
  7. #include <toolbox/args.h>
  8. #include <m-dict.h>
  9. #include "infrared_signal.h"
  10. #include "infrared_brute_force.h"
  11. #define INFRARED_CLI_BUF_SIZE 10
  12. #define INFRARED_ASSETS_FOLDER "infrared/assets"
  13. #define INFRARED_BRUTE_FORCE_DUMMY_INDEX 0
  14. DICT_DEF2(dict_signals, FuriString*, FURI_STRING_OPLIST, int, M_DEFAULT_OPLIST)
  15. static void infrared_cli_start_ir_rx(Cli* cli, FuriString* args);
  16. static void infrared_cli_start_ir_tx(Cli* cli, FuriString* args);
  17. static void infrared_cli_process_decode(Cli* cli, FuriString* args);
  18. static void infrared_cli_process_universal(Cli* cli, FuriString* args);
  19. static const struct {
  20. const char* cmd;
  21. void (*process_function)(Cli* cli, FuriString* args);
  22. } infrared_cli_commands[] = {
  23. {.cmd = "rx", .process_function = infrared_cli_start_ir_rx},
  24. {.cmd = "tx", .process_function = infrared_cli_start_ir_tx},
  25. {.cmd = "decode", .process_function = infrared_cli_process_decode},
  26. {.cmd = "universal", .process_function = infrared_cli_process_universal},
  27. };
  28. static void signal_received_callback(void* context, InfraredWorkerSignal* received_signal) {
  29. furi_assert(received_signal);
  30. char buf[100];
  31. size_t buf_cnt;
  32. Cli* cli = (Cli*)context;
  33. if(infrared_worker_signal_is_decoded(received_signal)) {
  34. const InfraredMessage* message = infrared_worker_get_decoded_signal(received_signal);
  35. buf_cnt = snprintf(
  36. buf,
  37. sizeof(buf),
  38. "%s, A:0x%0*lX, C:0x%0*lX%s\r\n",
  39. infrared_get_protocol_name(message->protocol),
  40. ROUND_UP_TO(infrared_get_protocol_address_length(message->protocol), 4),
  41. message->address,
  42. ROUND_UP_TO(infrared_get_protocol_command_length(message->protocol), 4),
  43. message->command,
  44. message->repeat ? " R" : "");
  45. cli_write(cli, (uint8_t*)buf, buf_cnt);
  46. } else {
  47. const uint32_t* timings;
  48. size_t timings_cnt;
  49. infrared_worker_get_raw_signal(received_signal, &timings, &timings_cnt);
  50. buf_cnt = snprintf(buf, sizeof(buf), "RAW, %zu samples:\r\n", timings_cnt);
  51. cli_write(cli, (uint8_t*)buf, buf_cnt);
  52. for(size_t i = 0; i < timings_cnt; ++i) {
  53. buf_cnt = snprintf(buf, sizeof(buf), "%lu ", timings[i]);
  54. cli_write(cli, (uint8_t*)buf, buf_cnt);
  55. }
  56. buf_cnt = snprintf(buf, sizeof(buf), "\r\n");
  57. cli_write(cli, (uint8_t*)buf, buf_cnt);
  58. }
  59. }
  60. static void infrared_cli_print_usage(void) {
  61. printf("Usage:\r\n");
  62. printf("\tir rx [raw]\r\n");
  63. printf("\tir tx <protocol> <address> <command>\r\n");
  64. printf("\t<command> and <address> are hex-formatted\r\n");
  65. printf("\tAvailable protocols:");
  66. for(int i = 0; infrared_is_protocol_valid((InfraredProtocol)i); ++i) {
  67. printf(" %s", infrared_get_protocol_name((InfraredProtocol)i));
  68. }
  69. printf("\r\n");
  70. printf("\tRaw format:\r\n");
  71. printf("\tir tx RAW F:<frequency> DC:<duty_cycle> <sample0> <sample1>...\r\n");
  72. printf(
  73. "\tFrequency (%d - %d), Duty cycle (0 - 100), max 512 samples\r\n",
  74. INFRARED_MIN_FREQUENCY,
  75. INFRARED_MAX_FREQUENCY);
  76. printf("\tir decode <input_file> [<output_file>]\r\n");
  77. printf("\tir universal <remote_name> <signal_name>\r\n");
  78. printf("\tir universal list <remote_name>\r\n");
  79. // TODO: Do not hardcode universal remote names
  80. printf("\tAvailable universal remotes: tv audio ac projector\r\n");
  81. }
  82. static void infrared_cli_start_ir_rx(Cli* cli, FuriString* args) {
  83. UNUSED(cli);
  84. bool enable_decoding = true;
  85. if(!furi_string_empty(args)) {
  86. if(!furi_string_cmp_str(args, "raw")) {
  87. enable_decoding = false;
  88. } else {
  89. printf("Wrong arguments.\r\n");
  90. infrared_cli_print_usage();
  91. return;
  92. }
  93. }
  94. InfraredWorker* worker = infrared_worker_alloc();
  95. infrared_worker_rx_enable_signal_decoding(worker, enable_decoding);
  96. infrared_worker_rx_start(worker);
  97. infrared_worker_rx_set_received_signal_callback(worker, signal_received_callback, cli);
  98. printf("Receiving %s INFRARED...\r\nPress Ctrl+C to abort\r\n", enable_decoding ? "" : "RAW");
  99. while(!cli_cmd_interrupt_received(cli)) {
  100. furi_delay_ms(50);
  101. }
  102. infrared_worker_rx_stop(worker);
  103. infrared_worker_free(worker);
  104. }
  105. static bool infrared_cli_parse_message(const char* str, InfraredSignal* signal) {
  106. char protocol_name[32];
  107. InfraredMessage message;
  108. int parsed = sscanf(str, "%31s %lX %lX", protocol_name, &message.address, &message.command);
  109. if(parsed != 3) {
  110. return false;
  111. }
  112. message.protocol = infrared_get_protocol_by_name(protocol_name);
  113. message.repeat = false;
  114. infrared_signal_set_message(signal, &message);
  115. return infrared_signal_is_valid(signal);
  116. }
  117. static bool infrared_cli_parse_raw(const char* str, InfraredSignal* signal) {
  118. char frequency_str[INFRARED_CLI_BUF_SIZE];
  119. char duty_cycle_str[INFRARED_CLI_BUF_SIZE];
  120. int parsed = sscanf(str, "RAW F:%9s DC:%9s", frequency_str, duty_cycle_str);
  121. if(parsed != 2) {
  122. return false;
  123. }
  124. uint32_t* timings = malloc(sizeof(uint32_t) * MAX_TIMINGS_AMOUNT);
  125. uint32_t frequency = atoi(frequency_str);
  126. float duty_cycle = (float)atoi(duty_cycle_str) / 100;
  127. str += strlen(frequency_str) + strlen(duty_cycle_str) + INFRARED_CLI_BUF_SIZE;
  128. size_t timings_size = 0;
  129. while(1) {
  130. while(*str == ' ') {
  131. ++str;
  132. }
  133. char timing_str[INFRARED_CLI_BUF_SIZE];
  134. if(sscanf(str, "%9s", timing_str) != 1) {
  135. break;
  136. }
  137. str += strlen(timing_str);
  138. uint32_t timing = atoi(timing_str);
  139. if((timing <= 0) || (timings_size >= MAX_TIMINGS_AMOUNT)) {
  140. break;
  141. }
  142. timings[timings_size] = timing;
  143. ++timings_size;
  144. }
  145. infrared_signal_set_raw_signal(signal, timings, timings_size, frequency, duty_cycle);
  146. free(timings);
  147. return infrared_signal_is_valid(signal);
  148. }
  149. static void infrared_cli_start_ir_tx(Cli* cli, FuriString* args) {
  150. UNUSED(cli);
  151. const char* str = furi_string_get_cstr(args);
  152. InfraredSignal* signal = infrared_signal_alloc();
  153. bool success = infrared_cli_parse_message(str, signal) || infrared_cli_parse_raw(str, signal);
  154. if(success) {
  155. infrared_signal_transmit(signal);
  156. } else {
  157. printf("Wrong arguments.\r\n");
  158. infrared_cli_print_usage();
  159. }
  160. infrared_signal_free(signal);
  161. }
  162. static bool
  163. infrared_cli_save_signal(InfraredSignal* signal, FlipperFormat* file, const char* name) {
  164. bool ret = infrared_signal_save(signal, file, name);
  165. if(!ret) {
  166. printf("Failed to save signal: \"%s\"\r\n", name);
  167. }
  168. return ret;
  169. }
  170. static bool infrared_cli_decode_raw_signal(
  171. InfraredRawSignal* raw_signal,
  172. InfraredDecoderHandler* decoder,
  173. FlipperFormat* output_file,
  174. const char* signal_name) {
  175. InfraredSignal* signal = infrared_signal_alloc();
  176. bool ret = false, level = true, is_decoded = false;
  177. size_t i;
  178. for(i = 0; i < raw_signal->timings_size; ++i) {
  179. // TODO: Any infrared_check_decoder_ready() magic?
  180. const InfraredMessage* message = infrared_decode(decoder, level, raw_signal->timings[i]);
  181. if(message) {
  182. is_decoded = true;
  183. printf(
  184. "Protocol: %s address: 0x%lX command: 0x%lX %s\r\n",
  185. infrared_get_protocol_name(message->protocol),
  186. message->address,
  187. message->command,
  188. (message->repeat ? "R" : ""));
  189. if(output_file && !message->repeat) {
  190. infrared_signal_set_message(signal, message);
  191. if(!infrared_cli_save_signal(signal, output_file, signal_name)) break;
  192. }
  193. }
  194. level = !level;
  195. }
  196. if(i == raw_signal->timings_size) {
  197. if(!is_decoded && output_file) {
  198. infrared_signal_set_raw_signal(
  199. signal,
  200. raw_signal->timings,
  201. raw_signal->timings_size,
  202. raw_signal->frequency,
  203. raw_signal->duty_cycle);
  204. ret = infrared_cli_save_signal(signal, output_file, signal_name);
  205. } else {
  206. ret = true;
  207. }
  208. }
  209. infrared_reset_decoder(decoder);
  210. infrared_signal_free(signal);
  211. return ret;
  212. }
  213. static bool infrared_cli_decode_file(FlipperFormat* input_file, FlipperFormat* output_file) {
  214. bool ret = false;
  215. InfraredSignal* signal = infrared_signal_alloc();
  216. InfraredDecoderHandler* decoder = infrared_alloc_decoder();
  217. FuriString* tmp;
  218. tmp = furi_string_alloc();
  219. while(infrared_signal_read(signal, input_file, tmp)) {
  220. ret = false;
  221. if(!infrared_signal_is_valid(signal)) {
  222. printf("Invalid signal\r\n");
  223. break;
  224. }
  225. if(!infrared_signal_is_raw(signal)) {
  226. if(output_file &&
  227. !infrared_cli_save_signal(signal, output_file, furi_string_get_cstr(tmp))) {
  228. break;
  229. } else {
  230. printf("Skipping decoded signal\r\n");
  231. continue;
  232. }
  233. }
  234. InfraredRawSignal* raw_signal = infrared_signal_get_raw_signal(signal);
  235. printf(
  236. "Raw signal: %s, %zu samples\r\n",
  237. furi_string_get_cstr(tmp),
  238. raw_signal->timings_size);
  239. if(!infrared_cli_decode_raw_signal(
  240. raw_signal, decoder, output_file, furi_string_get_cstr(tmp)))
  241. break;
  242. ret = true;
  243. }
  244. infrared_free_decoder(decoder);
  245. infrared_signal_free(signal);
  246. furi_string_free(tmp);
  247. return ret;
  248. }
  249. static void infrared_cli_process_decode(Cli* cli, FuriString* args) {
  250. UNUSED(cli);
  251. Storage* storage = furi_record_open(RECORD_STORAGE);
  252. FlipperFormat* input_file = flipper_format_buffered_file_alloc(storage);
  253. FlipperFormat* output_file = NULL;
  254. uint32_t version;
  255. FuriString *tmp, *header, *input_path, *output_path;
  256. tmp = furi_string_alloc();
  257. header = furi_string_alloc();
  258. input_path = furi_string_alloc();
  259. output_path = furi_string_alloc();
  260. do {
  261. if(!args_read_probably_quoted_string_and_trim(args, input_path)) {
  262. printf("Wrong arguments.\r\n");
  263. infrared_cli_print_usage();
  264. break;
  265. }
  266. args_read_probably_quoted_string_and_trim(args, output_path);
  267. if(!flipper_format_buffered_file_open_existing(
  268. input_file, furi_string_get_cstr(input_path))) {
  269. printf(
  270. "Failed to open file for reading: \"%s\"\r\n", furi_string_get_cstr(input_path));
  271. break;
  272. }
  273. if(!flipper_format_read_header(input_file, header, &version) ||
  274. (!furi_string_start_with_str(header, "IR")) || version != 1) {
  275. printf(
  276. "Invalid or corrupted input file: \"%s\"\r\n", furi_string_get_cstr(input_path));
  277. break;
  278. }
  279. if(!furi_string_empty(output_path)) {
  280. printf("Writing output to file: \"%s\"\r\n", furi_string_get_cstr(output_path));
  281. output_file = flipper_format_file_alloc(storage);
  282. }
  283. if(output_file &&
  284. !flipper_format_file_open_always(output_file, furi_string_get_cstr(output_path))) {
  285. printf(
  286. "Failed to open file for writing: \"%s\"\r\n", furi_string_get_cstr(output_path));
  287. break;
  288. }
  289. if(output_file && !flipper_format_write_header(output_file, header, version)) {
  290. printf(
  291. "Failed to write to the output file: \"%s\"\r\n",
  292. furi_string_get_cstr(output_path));
  293. break;
  294. }
  295. if(!infrared_cli_decode_file(input_file, output_file)) {
  296. break;
  297. }
  298. printf("File successfully decoded.\r\n");
  299. } while(false);
  300. furi_string_free(tmp);
  301. furi_string_free(header);
  302. furi_string_free(input_path);
  303. furi_string_free(output_path);
  304. flipper_format_free(input_file);
  305. if(output_file) flipper_format_free(output_file);
  306. furi_record_close(RECORD_STORAGE);
  307. }
  308. static void infrared_cli_list_remote_signals(FuriString* remote_name) {
  309. if(furi_string_empty(remote_name)) {
  310. printf("Missing remote name.\r\n");
  311. return;
  312. }
  313. Storage* storage = furi_record_open(RECORD_STORAGE);
  314. FlipperFormat* ff = flipper_format_buffered_file_alloc(storage);
  315. FuriString* remote_path = furi_string_alloc_printf(
  316. "%s/%s.ir", EXT_PATH(INFRARED_ASSETS_FOLDER), furi_string_get_cstr(remote_name));
  317. do {
  318. if(!flipper_format_buffered_file_open_existing(ff, furi_string_get_cstr(remote_path))) {
  319. printf("Invalid remote name.\r\n");
  320. break;
  321. }
  322. dict_signals_t signals_dict;
  323. dict_signals_init(signals_dict);
  324. FuriString* key = furi_string_alloc();
  325. FuriString* signal_name = furi_string_alloc();
  326. printf("Valid signals:\r\n");
  327. int max = 1;
  328. while(flipper_format_read_string(ff, "name", signal_name)) {
  329. furi_string_set_str(key, furi_string_get_cstr(signal_name));
  330. int* v = dict_signals_get(signals_dict, key);
  331. if(v != NULL) { //-V547
  332. (*v)++;
  333. max = M_MAX(*v, max);
  334. } else {
  335. dict_signals_set_at(signals_dict, key, 1);
  336. }
  337. }
  338. dict_signals_it_t it;
  339. for(dict_signals_it(it, signals_dict); !dict_signals_end_p(it); dict_signals_next(it)) {
  340. const struct dict_signals_pair_s* pair = dict_signals_cref(it);
  341. printf("\t%s\r\n", furi_string_get_cstr(pair->key));
  342. }
  343. furi_string_free(key);
  344. furi_string_free(signal_name);
  345. dict_signals_clear(signals_dict);
  346. } while(false);
  347. flipper_format_free(ff);
  348. furi_string_free(remote_path);
  349. furi_record_close(RECORD_STORAGE);
  350. }
  351. static void
  352. infrared_cli_brute_force_signals(Cli* cli, FuriString* remote_name, FuriString* signal_name) {
  353. InfraredBruteForce* brute_force = infrared_brute_force_alloc();
  354. FuriString* remote_path = furi_string_alloc_printf(
  355. "%s/%s.ir", EXT_PATH(INFRARED_ASSETS_FOLDER), furi_string_get_cstr(remote_name));
  356. infrared_brute_force_set_db_filename(brute_force, furi_string_get_cstr(remote_path));
  357. infrared_brute_force_add_record(
  358. brute_force, INFRARED_BRUTE_FORCE_DUMMY_INDEX, furi_string_get_cstr(signal_name));
  359. do {
  360. if(furi_string_empty(signal_name)) {
  361. printf("Missing signal name.\r\n");
  362. break;
  363. }
  364. if(!infrared_brute_force_calculate_messages(brute_force)) {
  365. printf("Invalid remote name.\r\n");
  366. break;
  367. }
  368. uint32_t record_count;
  369. bool running = infrared_brute_force_start(
  370. brute_force, INFRARED_BRUTE_FORCE_DUMMY_INDEX, &record_count);
  371. if(record_count <= 0) {
  372. printf("Invalid signal name.\r\n");
  373. break;
  374. }
  375. printf("Sending %lu signal(s)...\r\n", record_count);
  376. printf("Press Ctrl-C to stop.\r\n");
  377. int records_sent = 0;
  378. while(running) {
  379. running = infrared_brute_force_send_next(brute_force);
  380. if(cli_cmd_interrupt_received(cli)) break;
  381. printf("\r%d%% complete.", (int)((float)records_sent++ / (float)record_count * 100));
  382. fflush(stdout);
  383. }
  384. infrared_brute_force_stop(brute_force);
  385. } while(false);
  386. furi_string_free(remote_path);
  387. infrared_brute_force_reset(brute_force);
  388. infrared_brute_force_free(brute_force);
  389. }
  390. static void infrared_cli_process_universal(Cli* cli, FuriString* args) {
  391. FuriString* arg1 = furi_string_alloc();
  392. FuriString* arg2 = furi_string_alloc();
  393. do {
  394. if(!args_read_string_and_trim(args, arg1)) break;
  395. if(!args_read_string_and_trim(args, arg2)) break;
  396. } while(false);
  397. if(furi_string_empty(arg1)) {
  398. printf("Wrong arguments.\r\n");
  399. infrared_cli_print_usage();
  400. } else if(furi_string_equal_str(arg1, "list")) {
  401. infrared_cli_list_remote_signals(arg2);
  402. } else {
  403. infrared_cli_brute_force_signals(cli, arg1, arg2);
  404. }
  405. furi_string_free(arg1);
  406. furi_string_free(arg2);
  407. }
  408. static void infrared_cli_start_ir(Cli* cli, FuriString* args, void* context) {
  409. UNUSED(context);
  410. if(furi_hal_infrared_is_busy()) {
  411. printf("INFRARED is busy. Exiting.");
  412. return;
  413. }
  414. FuriString* command;
  415. command = furi_string_alloc();
  416. args_read_string_and_trim(args, command);
  417. size_t i = 0;
  418. for(; i < COUNT_OF(infrared_cli_commands); ++i) {
  419. size_t cmd_len = strlen(infrared_cli_commands[i].cmd);
  420. if(!strncmp(furi_string_get_cstr(command), infrared_cli_commands[i].cmd, cmd_len)) {
  421. break;
  422. }
  423. }
  424. if(i < COUNT_OF(infrared_cli_commands)) {
  425. infrared_cli_commands[i].process_function(cli, args);
  426. } else {
  427. infrared_cli_print_usage();
  428. }
  429. furi_string_free(command);
  430. }
  431. void infrared_on_system_start() {
  432. #ifdef SRV_CLI
  433. Cli* cli = (Cli*)furi_record_open(RECORD_CLI);
  434. cli_add_command(cli, "ir", CliCommandFlagDefault, infrared_cli_start_ir, NULL);
  435. furi_record_close(RECORD_CLI);
  436. #else
  437. UNUSED(infrared_cli_start_ir);
  438. #endif
  439. }