subbrute_worker.c 15 KB

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  1. #include "subbrute_worker_private.h"
  2. #include <string.h>
  3. #include <toolbox/stream/stream.h>
  4. #include <flipper_format.h>
  5. #include <flipper_format_i.h>
  6. #include <lib/subghz/subghz_protocol_registry.h>
  7. #define TAG "SubBruteWorker"
  8. #define SUBBRUTE_TX_TIMEOUT 6
  9. #define SUBBRUTE_MANUAL_TRANSMIT_INTERVAL 250
  10. SubBruteWorker* subbrute_worker_alloc(const SubGhzDevice* radio_device) {
  11. SubBruteWorker* instance = malloc(sizeof(SubBruteWorker));
  12. instance->state = SubBruteWorkerStateIDLE;
  13. instance->step = 0;
  14. instance->worker_running = false;
  15. instance->initiated = false;
  16. instance->last_time_tx_data = 0;
  17. instance->load_index = 0;
  18. instance->thread = furi_thread_alloc();
  19. furi_thread_set_name(instance->thread, "SubBruteAttackWorker");
  20. furi_thread_set_stack_size(instance->thread, 2048);
  21. furi_thread_set_context(instance->thread, instance);
  22. furi_thread_set_callback(instance->thread, subbrute_worker_thread);
  23. instance->context = NULL;
  24. instance->callback = NULL;
  25. instance->tx_timeout_ms = SUBBRUTE_TX_TIMEOUT;
  26. instance->decoder_result = NULL;
  27. instance->transmitter = NULL;
  28. instance->environment = subghz_environment_alloc();
  29. subghz_environment_set_protocol_registry(
  30. instance->environment, (void*)&subghz_protocol_registry);
  31. instance->transmit_mode = false;
  32. instance->radio_device = radio_device;
  33. return instance;
  34. }
  35. void subbrute_worker_free(SubBruteWorker* instance) {
  36. furi_assert(instance);
  37. // I don't know how to free this
  38. instance->decoder_result = NULL;
  39. if(instance->transmitter != NULL) {
  40. subghz_transmitter_free(instance->transmitter);
  41. instance->transmitter = NULL;
  42. }
  43. subghz_environment_free(instance->environment);
  44. instance->environment = NULL;
  45. furi_thread_free(instance->thread);
  46. subghz_devices_sleep(instance->radio_device);
  47. subbrute_radio_device_loader_end(instance->radio_device);
  48. free(instance);
  49. }
  50. uint64_t subbrute_worker_get_step(SubBruteWorker* instance) {
  51. return instance->step;
  52. }
  53. bool subbrute_worker_set_step(SubBruteWorker* instance, uint64_t step) {
  54. furi_assert(instance);
  55. if(!subbrute_worker_can_manual_transmit(instance)) {
  56. FURI_LOG_W(TAG, "Cannot set step during running mode");
  57. return false;
  58. }
  59. instance->step = step;
  60. return true;
  61. }
  62. bool subbrute_worker_init_default_attack(
  63. SubBruteWorker* instance,
  64. SubBruteAttacks attack_type,
  65. uint64_t step,
  66. const SubBruteProtocol* protocol,
  67. uint8_t repeats) {
  68. furi_assert(instance);
  69. if(instance->worker_running) {
  70. FURI_LOG_W(TAG, "Init Worker when it's running");
  71. subbrute_worker_stop(instance);
  72. }
  73. instance->attack = attack_type;
  74. instance->frequency = protocol->frequency;
  75. instance->preset = protocol->preset;
  76. instance->file = protocol->file;
  77. instance->step = step;
  78. instance->bits = protocol->bits;
  79. instance->te = protocol->te;
  80. instance->repeat = repeats;
  81. instance->load_index = 0;
  82. instance->file_key = 0;
  83. instance->two_bytes = false;
  84. instance->max_value =
  85. subbrute_protocol_calc_max_value(instance->attack, instance->bits, instance->two_bytes);
  86. instance->initiated = true;
  87. instance->state = SubBruteWorkerStateReady;
  88. subbrute_worker_send_callback(instance);
  89. #ifdef FURI_DEBUG
  90. FURI_LOG_I(
  91. TAG,
  92. "subbrute_worker_init_default_attack: %s, bits: %d, preset: %s, file: %s, te: %ld, repeat: %d, max_value: %lld",
  93. subbrute_protocol_name(instance->attack),
  94. instance->bits,
  95. subbrute_protocol_preset(instance->preset),
  96. subbrute_protocol_file(instance->file),
  97. instance->te,
  98. instance->repeat,
  99. instance->max_value);
  100. #endif
  101. return true;
  102. }
  103. bool subbrute_worker_init_file_attack(
  104. SubBruteWorker* instance,
  105. uint64_t step,
  106. uint8_t load_index,
  107. uint64_t file_key,
  108. SubBruteProtocol* protocol,
  109. uint8_t repeats,
  110. bool two_bytes) {
  111. furi_assert(instance);
  112. if(instance->worker_running) {
  113. FURI_LOG_W(TAG, "Init Worker when it's running");
  114. subbrute_worker_stop(instance);
  115. }
  116. instance->attack = SubBruteAttackLoadFile;
  117. instance->frequency = protocol->frequency;
  118. instance->preset = protocol->preset;
  119. instance->file = protocol->file;
  120. instance->step = step;
  121. instance->bits = protocol->bits;
  122. instance->te = protocol->te;
  123. instance->load_index = load_index;
  124. instance->repeat = repeats;
  125. instance->file_key = file_key;
  126. instance->two_bytes = two_bytes;
  127. instance->max_value =
  128. subbrute_protocol_calc_max_value(instance->attack, instance->bits, instance->two_bytes);
  129. instance->initiated = true;
  130. instance->state = SubBruteWorkerStateReady;
  131. subbrute_worker_send_callback(instance);
  132. #ifdef FURI_DEBUG
  133. FURI_LOG_I(
  134. TAG,
  135. "subbrute_worker_init_file_attack: %s, bits: %d, preset: %s, file: %s, te: %ld, repeat: %d, max_value: %lld, key: %llX",
  136. subbrute_protocol_name(instance->attack),
  137. instance->bits,
  138. subbrute_protocol_preset(instance->preset),
  139. subbrute_protocol_file(instance->file),
  140. instance->te,
  141. instance->repeat,
  142. instance->max_value,
  143. instance->file_key);
  144. #endif
  145. return true;
  146. }
  147. bool subbrute_worker_start(SubBruteWorker* instance) {
  148. furi_assert(instance);
  149. if(!instance->initiated) {
  150. FURI_LOG_W(TAG, "Worker not init!");
  151. return false;
  152. }
  153. if(instance->worker_running) {
  154. FURI_LOG_W(TAG, "Worker is already running!");
  155. return false;
  156. }
  157. if(instance->state != SubBruteWorkerStateReady &&
  158. instance->state != SubBruteWorkerStateFinished) {
  159. FURI_LOG_W(TAG, "Worker cannot start, invalid device state: %d", instance->state);
  160. return false;
  161. }
  162. instance->worker_running = true;
  163. furi_thread_start(instance->thread);
  164. return true;
  165. }
  166. void subbrute_worker_stop(SubBruteWorker* instance) {
  167. furi_assert(instance);
  168. if(!instance->worker_running) {
  169. return;
  170. }
  171. instance->worker_running = false;
  172. furi_thread_join(instance->thread);
  173. subghz_devices_idle(instance->radio_device);
  174. }
  175. bool subbrute_worker_transmit_current_key(SubBruteWorker* instance, uint64_t step) {
  176. furi_assert(instance);
  177. if(!instance->initiated) {
  178. FURI_LOG_W(TAG, "Worker not init!");
  179. return false;
  180. }
  181. if(instance->worker_running) {
  182. FURI_LOG_W(TAG, "Worker in running state!");
  183. return false;
  184. }
  185. if(instance->state != SubBruteWorkerStateReady &&
  186. instance->state != SubBruteWorkerStateFinished) {
  187. FURI_LOG_W(TAG, "Invalid state for running worker! State: %d", instance->state);
  188. return false;
  189. }
  190. uint32_t ticks = furi_get_tick();
  191. if((ticks - instance->last_time_tx_data) < SUBBRUTE_MANUAL_TRANSMIT_INTERVAL) {
  192. #if FURI_DEBUG
  193. FURI_LOG_D(TAG, "Need to wait, current: %ld", ticks - instance->last_time_tx_data);
  194. #endif
  195. return false;
  196. }
  197. instance->last_time_tx_data = ticks;
  198. instance->step = step;
  199. bool result;
  200. instance->protocol_name = subbrute_protocol_file(instance->file);
  201. FlipperFormat* flipper_format = flipper_format_string_alloc();
  202. Stream* stream = flipper_format_get_raw_stream(flipper_format);
  203. stream_clean(stream);
  204. if(instance->attack == SubBruteAttackLoadFile) {
  205. subbrute_protocol_file_payload(
  206. stream,
  207. step,
  208. instance->bits,
  209. instance->te,
  210. instance->repeat,
  211. instance->load_index,
  212. instance->file_key,
  213. instance->two_bytes);
  214. } else {
  215. subbrute_protocol_default_payload(
  216. stream, instance->file, step, instance->bits, instance->te, instance->repeat);
  217. }
  218. // size_t written = stream_write_string(stream, payload);
  219. // if(written <= 0) {
  220. // FURI_LOG_W(TAG, "Error creating packet! EXIT");
  221. // result = false;
  222. // } else {
  223. subbrute_worker_subghz_transmit(instance, flipper_format);
  224. result = true;
  225. #if FURI_DEBUG
  226. FURI_LOG_D(TAG, "Manual transmit done");
  227. #endif
  228. // }
  229. flipper_format_free(flipper_format);
  230. // furi_string_free(payload);
  231. return result;
  232. }
  233. bool subbrute_worker_is_running(SubBruteWorker* instance) {
  234. return instance->worker_running;
  235. }
  236. bool subbrute_worker_can_manual_transmit(SubBruteWorker* instance) {
  237. furi_assert(instance);
  238. if(!instance->initiated) {
  239. FURI_LOG_W(TAG, "Worker not init!");
  240. return false;
  241. }
  242. return !instance->worker_running && instance->state != SubBruteWorkerStateIDLE &&
  243. instance->state != SubBruteWorkerStateTx &&
  244. ((furi_get_tick() - instance->last_time_tx_data) > SUBBRUTE_MANUAL_TRANSMIT_INTERVAL);
  245. }
  246. void subbrute_worker_set_callback(
  247. SubBruteWorker* instance,
  248. SubBruteWorkerCallback callback,
  249. void* context) {
  250. furi_assert(instance);
  251. instance->callback = callback;
  252. instance->context = context;
  253. }
  254. void subbrute_worker_subghz_transmit(SubBruteWorker* instance, FlipperFormat* flipper_format) {
  255. const uint8_t timeout = instance->tx_timeout_ms;
  256. while(instance->transmit_mode) {
  257. furi_delay_ms(timeout);
  258. }
  259. instance->transmit_mode = true;
  260. if(instance->transmitter != NULL) {
  261. subghz_transmitter_free(instance->transmitter);
  262. instance->transmitter = NULL;
  263. }
  264. instance->transmitter =
  265. subghz_transmitter_alloc_init(instance->environment, instance->protocol_name);
  266. subghz_transmitter_deserialize(instance->transmitter, flipper_format);
  267. subghz_devices_reset(instance->radio_device);
  268. subghz_devices_idle(instance->radio_device);
  269. subghz_devices_load_preset(instance->radio_device, instance->preset, NULL);
  270. subghz_devices_set_frequency(
  271. instance->radio_device, instance->frequency); // TODO is freq valid check
  272. if(subghz_devices_set_tx(instance->radio_device)) {
  273. subghz_devices_start_async_tx(
  274. instance->radio_device, subghz_transmitter_yield, instance->transmitter);
  275. while(!subghz_devices_is_async_complete_tx(instance->radio_device)) {
  276. furi_delay_ms(timeout);
  277. }
  278. subghz_devices_stop_async_tx(instance->radio_device);
  279. }
  280. subghz_devices_idle(instance->radio_device);
  281. subghz_transmitter_stop(instance->transmitter);
  282. subghz_transmitter_free(instance->transmitter);
  283. instance->transmitter = NULL;
  284. instance->transmit_mode = false;
  285. }
  286. void subbrute_worker_send_callback(SubBruteWorker* instance) {
  287. if(instance->callback != NULL) {
  288. instance->callback(instance->context, instance->state);
  289. }
  290. }
  291. /**
  292. * Entrypoint for worker
  293. *
  294. * @param context SubBruteWorker*
  295. * @return 0 if ok
  296. */
  297. int32_t subbrute_worker_thread(void* context) {
  298. furi_assert(context);
  299. SubBruteWorker* instance = (SubBruteWorker*)context;
  300. if(!instance->worker_running) {
  301. FURI_LOG_W(TAG, "Worker is not set to running state!");
  302. return -1;
  303. }
  304. if(instance->state != SubBruteWorkerStateReady &&
  305. instance->state != SubBruteWorkerStateFinished) {
  306. FURI_LOG_W(TAG, "Invalid state for running worker! State: %d", instance->state);
  307. return -2;
  308. }
  309. #ifdef FURI_DEBUG
  310. FURI_LOG_I(TAG, "Worker start");
  311. #endif
  312. SubBruteWorkerState local_state = instance->state = SubBruteWorkerStateTx;
  313. subbrute_worker_send_callback(instance);
  314. instance->protocol_name = subbrute_protocol_file(instance->file);
  315. FlipperFormat* flipper_format = flipper_format_string_alloc();
  316. Stream* stream = flipper_format_get_raw_stream(flipper_format);
  317. while(instance->worker_running) {
  318. stream_clean(stream);
  319. if(instance->attack == SubBruteAttackLoadFile) {
  320. subbrute_protocol_file_payload(
  321. stream,
  322. instance->step,
  323. instance->bits,
  324. instance->te,
  325. instance->repeat,
  326. instance->load_index,
  327. instance->file_key,
  328. instance->two_bytes);
  329. } else {
  330. subbrute_protocol_default_payload(
  331. stream,
  332. instance->file,
  333. instance->step,
  334. instance->bits,
  335. instance->te,
  336. instance->repeat);
  337. }
  338. #ifdef FURI_DEBUG
  339. //FURI_LOG_I(TAG, "Payload: %s", furi_string_get_cstr(payload));
  340. //furi_delay_ms(SUBBRUTE_MANUAL_TRANSMIT_INTERVAL / 4);
  341. #endif
  342. // size_t written = stream_write_stream_write_string(stream, payload);
  343. // if(written <= 0) {
  344. // FURI_LOG_W(TAG, "Error creating packet! BREAK");
  345. // instance->worker_running = false;
  346. // local_state = SubBruteWorkerStateIDLE;
  347. // furi_string_free(payload);
  348. // break;
  349. // }
  350. subbrute_worker_subghz_transmit(instance, flipper_format);
  351. if(instance->step + 1 > instance->max_value) {
  352. #ifdef FURI_DEBUG
  353. FURI_LOG_I(TAG, "Worker finished to end");
  354. #endif
  355. local_state = SubBruteWorkerStateFinished;
  356. // furi_string_free(payload);
  357. break;
  358. }
  359. instance->step++;
  360. // furi_string_free(payload);
  361. furi_delay_ms(instance->tx_timeout_ms);
  362. }
  363. flipper_format_free(flipper_format);
  364. instance->worker_running = false; // Because we have error states
  365. instance->state = local_state == SubBruteWorkerStateTx ? SubBruteWorkerStateReady :
  366. local_state;
  367. subbrute_worker_send_callback(instance);
  368. #ifdef FURI_DEBUG
  369. FURI_LOG_I(TAG, "Worker stop");
  370. #endif
  371. return 0;
  372. }
  373. uint8_t subbrute_worker_get_timeout(SubBruteWorker* instance) {
  374. return instance->tx_timeout_ms;
  375. }
  376. void subbrute_worker_set_timeout(SubBruteWorker* instance, uint8_t timeout) {
  377. instance->tx_timeout_ms = timeout;
  378. }
  379. uint8_t subbrute_worker_get_repeats(SubBruteWorker* instance) {
  380. return instance->repeat;
  381. }
  382. void subbrute_worker_set_repeats(SubBruteWorker* instance, uint8_t repeats) {
  383. instance->repeat = repeats;
  384. }
  385. uint32_t subbrute_worker_get_te(SubBruteWorker* instance) {
  386. return instance->te;
  387. }
  388. void subbrute_worker_set_te(SubBruteWorker* instance, uint32_t te) {
  389. instance->te = te;
  390. }
  391. // void subbrute_worker_timeout_inc(SubBruteWorker* instance) {
  392. // if(instance->tx_timeout_ms < 255) {
  393. // instance->tx_timeout_ms++;
  394. // }
  395. // }
  396. // void subbrute_worker_timeout_dec(SubBruteWorker* instance) {
  397. // if(instance->tx_timeout_ms > 0) {
  398. // instance->tx_timeout_ms--;
  399. // }
  400. // }
  401. bool subbrute_worker_is_tx_allowed(SubBruteWorker* instance, uint32_t value) {
  402. furi_assert(instance);
  403. bool res = false;
  404. if(!subghz_devices_is_frequency_valid(instance->radio_device, value)) {
  405. return false;
  406. } else {
  407. subghz_devices_set_frequency(instance->radio_device, value);
  408. res = subghz_devices_set_tx(instance->radio_device);
  409. subghz_devices_idle(instance->radio_device);
  410. }
  411. return res;
  412. }