subghz_i.c 17 KB

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  1. #include "subghz_i.h"
  2. #include <math.h>
  3. #include <furi.h>
  4. #include <furi_hal.h>
  5. #include <input/input.h>
  6. #include <gui/elements.h>
  7. #include <notification/notification_messages.h>
  8. #include <flipper_format/flipper_format.h>
  9. #include "../notification/notification.h"
  10. #include "views/receiver.h"
  11. #include <flipper_format/flipper_format_i.h>
  12. #include <lib/toolbox/stream/stream.h>
  13. #include <lib/subghz/protocols/raw.h>
  14. #define TAG "SubGhz"
  15. bool subghz_set_preset(SubGhz* subghz, const char* preset) {
  16. if(!strcmp(preset, "FuriHalSubGhzPresetOok270Async")) {
  17. subghz->txrx->preset = FuriHalSubGhzPresetOok270Async;
  18. } else if(!strcmp(preset, "FuriHalSubGhzPresetOok650Async")) {
  19. subghz->txrx->preset = FuriHalSubGhzPresetOok650Async;
  20. } else if(!strcmp(preset, "FuriHalSubGhzPreset2FSKDev238Async")) {
  21. subghz->txrx->preset = FuriHalSubGhzPreset2FSKDev238Async;
  22. } else if(!strcmp(preset, "FuriHalSubGhzPreset2FSKDev476Async")) {
  23. subghz->txrx->preset = FuriHalSubGhzPreset2FSKDev476Async;
  24. } else {
  25. FURI_LOG_E(TAG, "Unknown preset");
  26. return false;
  27. }
  28. return true;
  29. }
  30. void subghz_get_frequency_modulation(SubGhz* subghz, string_t frequency, string_t modulation) {
  31. furi_assert(subghz);
  32. if(frequency != NULL) {
  33. string_printf(
  34. frequency,
  35. "%03ld.%02ld",
  36. subghz->txrx->frequency / 1000000 % 1000,
  37. subghz->txrx->frequency / 10000 % 100);
  38. }
  39. if(modulation != NULL) {
  40. if(subghz->txrx->preset == FuriHalSubGhzPresetOok650Async ||
  41. subghz->txrx->preset == FuriHalSubGhzPresetOok270Async) {
  42. string_set(modulation, "AM");
  43. } else if(
  44. subghz->txrx->preset == FuriHalSubGhzPreset2FSKDev238Async ||
  45. subghz->txrx->preset == FuriHalSubGhzPreset2FSKDev476Async) {
  46. string_set(modulation, "FM");
  47. } else {
  48. furi_crash("SugGhz: Modulation is incorrect.");
  49. }
  50. }
  51. }
  52. void subghz_begin(SubGhz* subghz, FuriHalSubGhzPreset preset) {
  53. furi_assert(subghz);
  54. furi_hal_subghz_reset();
  55. furi_hal_subghz_idle();
  56. furi_hal_subghz_load_preset(preset);
  57. furi_hal_gpio_init(&gpio_cc1101_g0, GpioModeInput, GpioPullNo, GpioSpeedLow);
  58. subghz->txrx->txrx_state = SubGhzTxRxStateIDLE;
  59. }
  60. uint32_t subghz_rx(SubGhz* subghz, uint32_t frequency) {
  61. furi_assert(subghz);
  62. if(!furi_hal_subghz_is_frequency_valid(frequency)) {
  63. furi_crash("SugGhz: Incorrect RX frequency.");
  64. }
  65. furi_assert(
  66. subghz->txrx->txrx_state != SubGhzTxRxStateRx &&
  67. subghz->txrx->txrx_state != SubGhzTxRxStateSleep);
  68. furi_hal_subghz_idle();
  69. uint32_t value = furi_hal_subghz_set_frequency_and_path(frequency);
  70. furi_hal_gpio_init(&gpio_cc1101_g0, GpioModeInput, GpioPullNo, GpioSpeedLow);
  71. furi_hal_subghz_flush_rx();
  72. furi_hal_subghz_rx();
  73. furi_hal_subghz_start_async_rx(subghz_worker_rx_callback, subghz->txrx->worker);
  74. subghz_worker_start(subghz->txrx->worker);
  75. subghz->txrx->txrx_state = SubGhzTxRxStateRx;
  76. return value;
  77. }
  78. static bool subghz_tx(SubGhz* subghz, uint32_t frequency) {
  79. furi_assert(subghz);
  80. if(!furi_hal_subghz_is_frequency_valid(frequency)) {
  81. furi_crash("SugGhz: Incorrect TX frequency.");
  82. }
  83. furi_assert(subghz->txrx->txrx_state != SubGhzTxRxStateSleep);
  84. furi_hal_subghz_idle();
  85. furi_hal_subghz_set_frequency_and_path(frequency);
  86. furi_hal_gpio_init(&gpio_cc1101_g0, GpioModeOutputPushPull, GpioPullNo, GpioSpeedLow);
  87. furi_hal_gpio_write(&gpio_cc1101_g0, true);
  88. bool ret = furi_hal_subghz_tx();
  89. subghz->txrx->txrx_state = SubGhzTxRxStateTx;
  90. return ret;
  91. }
  92. void subghz_idle(SubGhz* subghz) {
  93. furi_assert(subghz);
  94. furi_assert(subghz->txrx->txrx_state != SubGhzTxRxStateSleep);
  95. furi_hal_subghz_idle();
  96. subghz->txrx->txrx_state = SubGhzTxRxStateIDLE;
  97. }
  98. void subghz_rx_end(SubGhz* subghz) {
  99. furi_assert(subghz);
  100. furi_assert(subghz->txrx->txrx_state == SubGhzTxRxStateRx);
  101. if(subghz_worker_is_running(subghz->txrx->worker)) {
  102. subghz_worker_stop(subghz->txrx->worker);
  103. furi_hal_subghz_stop_async_rx();
  104. }
  105. furi_hal_subghz_idle();
  106. subghz->txrx->txrx_state = SubGhzTxRxStateIDLE;
  107. }
  108. void subghz_sleep(SubGhz* subghz) {
  109. furi_assert(subghz);
  110. furi_hal_subghz_sleep();
  111. subghz->txrx->txrx_state = SubGhzTxRxStateSleep;
  112. }
  113. bool subghz_tx_start(SubGhz* subghz, FlipperFormat* flipper_format) {
  114. furi_assert(subghz);
  115. bool ret = false;
  116. string_t temp_str;
  117. string_init(temp_str);
  118. uint32_t repeat = 200;
  119. do {
  120. if(!flipper_format_rewind(flipper_format)) {
  121. FURI_LOG_E(TAG, "Rewind error");
  122. break;
  123. }
  124. if(!flipper_format_read_string(flipper_format, "Protocol", temp_str)) {
  125. FURI_LOG_E(TAG, "Missing Protocol");
  126. break;
  127. }
  128. //ToDo FIX
  129. if(!flipper_format_insert_or_update_uint32(flipper_format, "Repeat", &repeat, 1)) {
  130. FURI_LOG_E(TAG, "Unable Repeat");
  131. break;
  132. }
  133. subghz->txrx->transmitter =
  134. subghz_transmitter_alloc_init(subghz->txrx->environment, string_get_cstr(temp_str));
  135. if(subghz->txrx->transmitter) {
  136. if(subghz_transmitter_deserialize(subghz->txrx->transmitter, flipper_format)) {
  137. if(subghz->txrx->preset) {
  138. subghz_begin(subghz, subghz->txrx->preset);
  139. } else {
  140. subghz_begin(subghz, FuriHalSubGhzPresetOok270Async);
  141. }
  142. if(subghz->txrx->frequency) {
  143. ret = subghz_tx(subghz, subghz->txrx->frequency);
  144. } else {
  145. ret = subghz_tx(subghz, 433920000);
  146. }
  147. if(ret) {
  148. //Start TX
  149. furi_hal_subghz_start_async_tx(
  150. subghz_transmitter_yield, subghz->txrx->transmitter);
  151. }
  152. }
  153. }
  154. if(!ret) {
  155. subghz_transmitter_free(subghz->txrx->transmitter);
  156. subghz_idle(subghz);
  157. }
  158. } while(false);
  159. string_clear(temp_str);
  160. return ret;
  161. }
  162. void subghz_tx_stop(SubGhz* subghz) {
  163. furi_assert(subghz);
  164. furi_assert(subghz->txrx->txrx_state == SubGhzTxRxStateTx);
  165. //Stop TX
  166. furi_hal_subghz_stop_async_tx();
  167. subghz_transmitter_stop(subghz->txrx->transmitter);
  168. subghz_transmitter_free(subghz->txrx->transmitter);
  169. //if protocol dynamic then we save the last upload
  170. if((subghz->txrx->decoder_result->protocol->type == SubGhzProtocolTypeDynamic) &&
  171. (strcmp(subghz->file_path, ""))) {
  172. subghz_save_protocol_to_file(subghz, subghz->txrx->fff_data, subghz->file_path);
  173. }
  174. subghz_idle(subghz);
  175. notification_message(subghz->notifications, &sequence_reset_red);
  176. }
  177. void subghz_dialog_message_show_only_rx(SubGhz* subghz) {
  178. DialogsApp* dialogs = subghz->dialogs;
  179. DialogMessage* message = dialog_message_alloc();
  180. dialog_message_set_text(
  181. message,
  182. "This frequency can\nonly be used for RX\nin your region",
  183. 38,
  184. 23,
  185. AlignCenter,
  186. AlignCenter);
  187. dialog_message_set_icon(message, &I_DolphinFirstStart7_61x51, 67, 12);
  188. dialog_message_set_buttons(message, "Back", NULL, NULL);
  189. dialog_message_show(dialogs, message);
  190. dialog_message_free(message);
  191. }
  192. bool subghz_key_load(SubGhz* subghz, const char* file_path) {
  193. furi_assert(subghz);
  194. furi_assert(file_path);
  195. Storage* storage = furi_record_open("storage");
  196. FlipperFormat* fff_data_file = flipper_format_file_alloc(storage);
  197. Stream* fff_data_stream = flipper_format_get_raw_stream(subghz->txrx->fff_data);
  198. SubGhzLoadKeyState load_key_state = SubGhzLoadKeyStateParseErr;
  199. string_t temp_str;
  200. string_init(temp_str);
  201. uint32_t temp_data32;
  202. do {
  203. stream_clean(fff_data_stream);
  204. if(!flipper_format_file_open_existing(fff_data_file, file_path)) {
  205. FURI_LOG_E(TAG, "Error open file %s", file_path);
  206. break;
  207. }
  208. if(!flipper_format_read_header(fff_data_file, temp_str, &temp_data32)) {
  209. FURI_LOG_E(TAG, "Missing or incorrect header");
  210. break;
  211. }
  212. if(((!strcmp(string_get_cstr(temp_str), SUBGHZ_KEY_FILE_TYPE)) ||
  213. (!strcmp(string_get_cstr(temp_str), SUBGHZ_RAW_FILE_TYPE))) &&
  214. temp_data32 == SUBGHZ_KEY_FILE_VERSION) {
  215. } else {
  216. FURI_LOG_E(TAG, "Type or version mismatch");
  217. break;
  218. }
  219. if(!flipper_format_read_uint32(fff_data_file, "Frequency", &temp_data32, 1)) {
  220. FURI_LOG_E(TAG, "Missing Frequency");
  221. break;
  222. }
  223. if(!furi_hal_subghz_is_frequency_valid(temp_data32)) {
  224. FURI_LOG_E(TAG, "Frequency not supported");
  225. break;
  226. }
  227. if(!furi_hal_subghz_is_tx_allowed(temp_data32)) {
  228. FURI_LOG_E(TAG, "This frequency can only be used for RX in your region");
  229. load_key_state = SubGhzLoadKeyStateOnlyRx;
  230. break;
  231. }
  232. subghz->txrx->frequency = temp_data32;
  233. if(!flipper_format_read_string(fff_data_file, "Preset", temp_str)) {
  234. FURI_LOG_E(TAG, "Missing Preset");
  235. break;
  236. }
  237. if(!subghz_set_preset(subghz, string_get_cstr(temp_str))) {
  238. break;
  239. }
  240. if(!flipper_format_read_string(fff_data_file, "Protocol", temp_str)) {
  241. FURI_LOG_E(TAG, "Missing Protocol");
  242. break;
  243. }
  244. if(!strcmp(string_get_cstr(temp_str), "RAW")) {
  245. //if RAW
  246. subghz_protocol_raw_gen_fff_data(subghz->txrx->fff_data, file_path);
  247. } else {
  248. stream_copy_full(
  249. flipper_format_get_raw_stream(fff_data_file),
  250. flipper_format_get_raw_stream(subghz->txrx->fff_data));
  251. }
  252. subghz->txrx->decoder_result = subghz_receiver_search_decoder_base_by_name(
  253. subghz->txrx->receiver, string_get_cstr(temp_str));
  254. if(subghz->txrx->decoder_result) {
  255. subghz_protocol_decoder_base_deserialize(
  256. subghz->txrx->decoder_result, subghz->txrx->fff_data);
  257. } else {
  258. FURI_LOG_E(TAG, "Protocol not found");
  259. break;
  260. }
  261. load_key_state = SubGhzLoadKeyStateOK;
  262. } while(0);
  263. string_clear(temp_str);
  264. flipper_format_free(fff_data_file);
  265. furi_record_close("storage");
  266. switch(load_key_state) {
  267. case SubGhzLoadKeyStateParseErr:
  268. dialog_message_show_storage_error(subghz->dialogs, "Cannot parse\nfile");
  269. return false;
  270. case SubGhzLoadKeyStateOnlyRx:
  271. subghz_dialog_message_show_only_rx(subghz);
  272. return false;
  273. case SubGhzLoadKeyStateOK:
  274. return true;
  275. default:
  276. furi_crash("SubGhz: Unknown load_key_state.");
  277. return false;
  278. }
  279. }
  280. bool subghz_get_next_name_file(SubGhz* subghz, uint8_t max_len) {
  281. furi_assert(subghz);
  282. Storage* storage = furi_record_open("storage");
  283. string_t temp_str;
  284. string_t file_name;
  285. string_t file_path;
  286. string_init(temp_str);
  287. string_init(file_name);
  288. string_init(file_path);
  289. bool res = false;
  290. if(strcmp(subghz->file_path, "")) {
  291. //get the name of the next free file
  292. path_extract_filename_no_ext(subghz->file_path, file_name);
  293. path_extract_dirname(subghz->file_path, file_path);
  294. storage_get_next_filename(
  295. storage,
  296. string_get_cstr(file_path),
  297. string_get_cstr(file_name),
  298. SUBGHZ_APP_EXTENSION,
  299. file_name,
  300. max_len);
  301. string_printf(
  302. temp_str,
  303. "%s/%s%s",
  304. string_get_cstr(file_path),
  305. string_get_cstr(file_name),
  306. SUBGHZ_APP_EXTENSION);
  307. strncpy(subghz->file_path, string_get_cstr(temp_str), SUBGHZ_MAX_LEN_NAME);
  308. res = true;
  309. }
  310. string_clear(temp_str);
  311. string_clear(file_path);
  312. string_clear(file_name);
  313. furi_record_close("storage");
  314. return res;
  315. }
  316. bool subghz_save_protocol_to_file(
  317. SubGhz* subghz,
  318. FlipperFormat* flipper_format,
  319. const char* dev_file_name) {
  320. furi_assert(subghz);
  321. furi_assert(flipper_format);
  322. furi_assert(dev_file_name);
  323. Storage* storage = furi_record_open("storage");
  324. Stream* flipper_format_stream = flipper_format_get_raw_stream(flipper_format);
  325. bool saved = false;
  326. string_t file_dir;
  327. string_init(file_dir);
  328. path_extract_dirname(dev_file_name, file_dir);
  329. do {
  330. //removing additional fields
  331. flipper_format_delete_key(flipper_format, "Repeat");
  332. flipper_format_delete_key(flipper_format, "Manufacture");
  333. // Create subghz folder directory if necessary
  334. if(!storage_simply_mkdir(storage, string_get_cstr(file_dir))) {
  335. dialog_message_show_storage_error(subghz->dialogs, "Cannot create\nfolder");
  336. break;
  337. }
  338. if(!storage_simply_remove(storage, dev_file_name)) {
  339. break;
  340. }
  341. //ToDo check Write
  342. stream_seek(flipper_format_stream, 0, StreamOffsetFromStart);
  343. stream_save_to_file(flipper_format_stream, storage, dev_file_name, FSOM_CREATE_ALWAYS);
  344. saved = true;
  345. } while(0);
  346. string_clear(file_dir);
  347. furi_record_close("storage");
  348. return saved;
  349. }
  350. bool subghz_load_protocol_from_file(SubGhz* subghz) {
  351. furi_assert(subghz);
  352. string_t file_path;
  353. string_init(file_path);
  354. // Input events and views are managed by file_select
  355. bool res = dialog_file_select_show(
  356. subghz->dialogs,
  357. SUBGHZ_APP_FOLDER,
  358. SUBGHZ_APP_EXTENSION,
  359. subghz->file_path,
  360. sizeof(subghz->file_path),
  361. NULL);
  362. if(res) {
  363. string_printf(
  364. file_path, "%s/%s%s", SUBGHZ_APP_FOLDER, subghz->file_path, SUBGHZ_APP_EXTENSION);
  365. strncpy(subghz->file_path, string_get_cstr(file_path), SUBGHZ_MAX_LEN_NAME);
  366. res = subghz_key_load(subghz, subghz->file_path);
  367. }
  368. string_clear(file_path);
  369. return res;
  370. }
  371. bool subghz_rename_file(SubGhz* subghz) {
  372. furi_assert(subghz);
  373. bool ret = true;
  374. Storage* storage = furi_record_open("storage");
  375. if(strcmp(subghz->file_path_tmp, subghz->file_path)) {
  376. FS_Error fs_result =
  377. storage_common_rename(storage, subghz->file_path_tmp, subghz->file_path);
  378. if(fs_result != FSE_OK) {
  379. dialog_message_show_storage_error(subghz->dialogs, "Cannot rename\n file/directory");
  380. ret = false;
  381. }
  382. }
  383. furi_record_close("storage");
  384. return ret;
  385. }
  386. bool subghz_delete_file(SubGhz* subghz) {
  387. furi_assert(subghz);
  388. Storage* storage = furi_record_open("storage");
  389. bool result = storage_simply_remove(storage, subghz->file_path_tmp);
  390. furi_record_close("storage");
  391. subghz_file_name_clear(subghz);
  392. return result;
  393. }
  394. void subghz_file_name_clear(SubGhz* subghz) {
  395. furi_assert(subghz);
  396. memset(subghz->file_path, 0, sizeof(subghz->file_path));
  397. memset(subghz->file_path_tmp, 0, sizeof(subghz->file_path_tmp));
  398. }
  399. uint32_t subghz_random_serial(void) {
  400. static bool rand_generator_inited = false;
  401. if(!rand_generator_inited) {
  402. srand(DWT->CYCCNT);
  403. rand_generator_inited = true;
  404. }
  405. return (uint32_t)rand();
  406. }
  407. void subghz_hopper_update(SubGhz* subghz) {
  408. furi_assert(subghz);
  409. switch(subghz->txrx->hopper_state) {
  410. case SubGhzHopperStateOFF:
  411. return;
  412. break;
  413. case SubGhzHopperStatePause:
  414. return;
  415. break;
  416. case SubGhzHopperStateRSSITimeOut:
  417. if(subghz->txrx->hopper_timeout != 0) {
  418. subghz->txrx->hopper_timeout--;
  419. return;
  420. }
  421. break;
  422. default:
  423. break;
  424. }
  425. float rssi = -127.0f;
  426. if(subghz->txrx->hopper_state != SubGhzHopperStateRSSITimeOut) {
  427. // See RSSI Calculation timings in CC1101 17.3 RSSI
  428. rssi = furi_hal_subghz_get_rssi();
  429. // Stay if RSSI is high enough
  430. if(rssi > -90.0f) {
  431. subghz->txrx->hopper_timeout = 10;
  432. subghz->txrx->hopper_state = SubGhzHopperStateRSSITimeOut;
  433. return;
  434. }
  435. } else {
  436. subghz->txrx->hopper_state = SubGhzHopperStateRunnig;
  437. }
  438. // Select next frequency
  439. if(subghz->txrx->hopper_idx_frequency <
  440. subghz_setting_get_hopper_frequency_count(subghz->setting) - 1) {
  441. subghz->txrx->hopper_idx_frequency++;
  442. } else {
  443. subghz->txrx->hopper_idx_frequency = 0;
  444. }
  445. if(subghz->txrx->txrx_state == SubGhzTxRxStateRx) {
  446. subghz_rx_end(subghz);
  447. };
  448. if(subghz->txrx->txrx_state == SubGhzTxRxStateIDLE) {
  449. subghz_receiver_reset(subghz->txrx->receiver);
  450. subghz->txrx->frequency = subghz_setting_get_hopper_frequency(
  451. subghz->setting, subghz->txrx->hopper_idx_frequency);
  452. subghz_rx(subghz, subghz->txrx->frequency);
  453. }
  454. }