subghz_test.c 29 KB

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  1. #include <furi.h>
  2. #include <furi_hal.h>
  3. #include "../minunit.h"
  4. #include <lib/subghz/receiver.h>
  5. #include <lib/subghz/transmitter.h>
  6. #include <lib/subghz/subghz_keystore.h>
  7. #include <lib/subghz/subghz_file_encoder_worker.h>
  8. #include <lib/subghz/protocols/protocol_items.h>
  9. #include <flipper_format/flipper_format_i.h>
  10. #define TAG "SubGhz TEST"
  11. #define KEYSTORE_DIR_NAME EXT_PATH("subghz/assets/keeloq_mfcodes")
  12. #define CAME_ATOMO_DIR_NAME EXT_PATH("subghz/assets/came_atomo")
  13. #define NICE_FLOR_S_DIR_NAME EXT_PATH("subghz/assets/nice_flor_s")
  14. #define TEST_RANDOM_DIR_NAME EXT_PATH("unit_tests/subghz/test_random_raw.sub")
  15. #define TEST_RANDOM_COUNT_PARSE 253
  16. #define TEST_TIMEOUT 10000
  17. static SubGhzEnvironment* environment_handler;
  18. static SubGhzReceiver* receiver_handler;
  19. //static SubGhzTransmitter* transmitter_handler;
  20. static SubGhzFileEncoderWorker* file_worker_encoder_handler;
  21. static uint16_t subghz_test_decoder_count = 0;
  22. static void subghz_test_rx_callback(
  23. SubGhzReceiver* receiver,
  24. SubGhzProtocolDecoderBase* decoder_base,
  25. void* context) {
  26. UNUSED(receiver);
  27. UNUSED(context);
  28. FuriString* text;
  29. text = furi_string_alloc();
  30. subghz_protocol_decoder_base_get_string(decoder_base, text);
  31. subghz_receiver_reset(receiver_handler);
  32. FURI_LOG_T(TAG, "\r\n%s", furi_string_get_cstr(text));
  33. furi_string_free(text);
  34. subghz_test_decoder_count++;
  35. }
  36. static void subghz_test_init(void) {
  37. environment_handler = subghz_environment_alloc();
  38. subghz_environment_set_came_atomo_rainbow_table_file_name(
  39. environment_handler, CAME_ATOMO_DIR_NAME);
  40. subghz_environment_set_nice_flor_s_rainbow_table_file_name(
  41. environment_handler, NICE_FLOR_S_DIR_NAME);
  42. subghz_environment_set_protocol_registry(
  43. environment_handler, (void*)&subghz_protocol_registry);
  44. receiver_handler = subghz_receiver_alloc_init(environment_handler);
  45. subghz_receiver_set_filter(receiver_handler, SubGhzProtocolFlag_Decodable);
  46. subghz_receiver_set_rx_callback(receiver_handler, subghz_test_rx_callback, NULL);
  47. }
  48. static void subghz_test_deinit(void) {
  49. subghz_receiver_free(receiver_handler);
  50. subghz_environment_free(environment_handler);
  51. }
  52. static bool subghz_decoder_test(const char* path, const char* name_decoder) {
  53. subghz_test_decoder_count = 0;
  54. uint32_t test_start = furi_get_tick();
  55. SubGhzProtocolDecoderBase* decoder =
  56. subghz_receiver_search_decoder_base_by_name(receiver_handler, name_decoder);
  57. if(decoder) {
  58. file_worker_encoder_handler = subghz_file_encoder_worker_alloc();
  59. if(subghz_file_encoder_worker_start(file_worker_encoder_handler, path)) {
  60. // the worker needs a file in order to open and read part of the file
  61. furi_delay_ms(100);
  62. LevelDuration level_duration;
  63. while(furi_get_tick() - test_start < TEST_TIMEOUT) {
  64. level_duration =
  65. subghz_file_encoder_worker_get_level_duration(file_worker_encoder_handler);
  66. if(!level_duration_is_reset(level_duration)) {
  67. bool level = level_duration_get_level(level_duration);
  68. uint32_t duration = level_duration_get_duration(level_duration);
  69. // Yield, to load data inside the worker
  70. furi_thread_yield();
  71. decoder->protocol->decoder->feed(decoder, level, duration);
  72. } else {
  73. break;
  74. }
  75. }
  76. furi_delay_ms(10);
  77. }
  78. if(subghz_file_encoder_worker_is_running(file_worker_encoder_handler)) {
  79. subghz_file_encoder_worker_stop(file_worker_encoder_handler);
  80. }
  81. subghz_file_encoder_worker_free(file_worker_encoder_handler);
  82. }
  83. FURI_LOG_T(TAG, "\r\n Decoder count parse \033[0;33m%d\033[0m ", subghz_test_decoder_count);
  84. if(furi_get_tick() - test_start > TEST_TIMEOUT) {
  85. printf("\033[0;31mTest decoder %s ERROR TimeOut\033[0m\r\n", name_decoder);
  86. return false;
  87. } else {
  88. return subghz_test_decoder_count ? true : false;
  89. }
  90. }
  91. static bool subghz_decode_random_test(const char* path) {
  92. subghz_test_decoder_count = 0;
  93. subghz_receiver_reset(receiver_handler);
  94. uint32_t test_start = furi_get_tick();
  95. file_worker_encoder_handler = subghz_file_encoder_worker_alloc();
  96. if(subghz_file_encoder_worker_start(file_worker_encoder_handler, path)) {
  97. // the worker needs a file in order to open and read part of the file
  98. furi_delay_ms(100);
  99. LevelDuration level_duration;
  100. while(furi_get_tick() - test_start < TEST_TIMEOUT * 10) {
  101. level_duration =
  102. subghz_file_encoder_worker_get_level_duration(file_worker_encoder_handler);
  103. if(!level_duration_is_reset(level_duration)) {
  104. bool level = level_duration_get_level(level_duration);
  105. uint32_t duration = level_duration_get_duration(level_duration);
  106. // Yield, to load data inside the worker
  107. furi_thread_yield();
  108. subghz_receiver_decode(receiver_handler, level, duration);
  109. } else {
  110. break;
  111. }
  112. }
  113. furi_delay_ms(10);
  114. if(subghz_file_encoder_worker_is_running(file_worker_encoder_handler)) {
  115. subghz_file_encoder_worker_stop(file_worker_encoder_handler);
  116. }
  117. subghz_file_encoder_worker_free(file_worker_encoder_handler);
  118. }
  119. FURI_LOG_D(TAG, "\r\n Decoder count parse \033[0;33m%d\033[0m ", subghz_test_decoder_count);
  120. if(furi_get_tick() - test_start > TEST_TIMEOUT * 10) {
  121. printf("\033[0;31mRandom test ERROR TimeOut\033[0m\r\n");
  122. return false;
  123. } else if(subghz_test_decoder_count == TEST_RANDOM_COUNT_PARSE) {
  124. return true;
  125. } else {
  126. return false;
  127. }
  128. }
  129. static bool subghz_encoder_test(const char* path) {
  130. subghz_test_decoder_count = 0;
  131. uint32_t test_start = furi_get_tick();
  132. FuriString* temp_str;
  133. temp_str = furi_string_alloc();
  134. bool file_load = false;
  135. Storage* storage = furi_record_open(RECORD_STORAGE);
  136. FlipperFormat* fff_data_file = flipper_format_file_alloc(storage);
  137. do {
  138. if(!flipper_format_file_open_existing(fff_data_file, path)) {
  139. FURI_LOG_E(TAG, "Error open file %s", path);
  140. break;
  141. }
  142. if(!flipper_format_read_string(fff_data_file, "Preset", temp_str)) {
  143. FURI_LOG_E(TAG, "Missing Preset");
  144. break;
  145. }
  146. if(!flipper_format_read_string(fff_data_file, "Protocol", temp_str)) {
  147. FURI_LOG_E(TAG, "Missing Protocol");
  148. break;
  149. }
  150. file_load = true;
  151. } while(false);
  152. if(file_load) {
  153. SubGhzTransmitter* transmitter =
  154. subghz_transmitter_alloc_init(environment_handler, furi_string_get_cstr(temp_str));
  155. subghz_transmitter_deserialize(transmitter, fff_data_file);
  156. SubGhzProtocolDecoderBase* decoder = subghz_receiver_search_decoder_base_by_name(
  157. receiver_handler, furi_string_get_cstr(temp_str));
  158. if(decoder) {
  159. LevelDuration level_duration;
  160. while(furi_get_tick() - test_start < TEST_TIMEOUT) {
  161. level_duration = subghz_transmitter_yield(transmitter);
  162. if(!level_duration_is_reset(level_duration)) {
  163. bool level = level_duration_get_level(level_duration);
  164. uint32_t duration = level_duration_get_duration(level_duration);
  165. decoder->protocol->decoder->feed(decoder, level, duration);
  166. } else {
  167. break;
  168. }
  169. }
  170. furi_delay_ms(10);
  171. }
  172. subghz_transmitter_free(transmitter);
  173. }
  174. flipper_format_free(fff_data_file);
  175. FURI_LOG_T(TAG, "\r\n Decoder count parse \033[0;33m%d\033[0m ", subghz_test_decoder_count);
  176. if(furi_get_tick() - test_start > TEST_TIMEOUT) {
  177. printf(
  178. "\033[0;31mTest encoder %s ERROR TimeOut\033[0m\r\n", furi_string_get_cstr(temp_str));
  179. subghz_test_decoder_count = 0;
  180. }
  181. furi_string_free(temp_str);
  182. return subghz_test_decoder_count ? true : false;
  183. }
  184. MU_TEST(subghz_keystore_test) {
  185. mu_assert(
  186. subghz_environment_load_keystore(environment_handler, KEYSTORE_DIR_NAME),
  187. "Test keystore error");
  188. }
  189. typedef enum {
  190. SubGhzHalAsyncTxTestTypeNormal,
  191. SubGhzHalAsyncTxTestTypeInvalidStart,
  192. SubGhzHalAsyncTxTestTypeInvalidMid,
  193. SubGhzHalAsyncTxTestTypeInvalidEnd,
  194. SubGhzHalAsyncTxTestTypeResetStart,
  195. SubGhzHalAsyncTxTestTypeResetMid,
  196. SubGhzHalAsyncTxTestTypeResetEnd,
  197. } SubGhzHalAsyncTxTestType;
  198. typedef struct {
  199. SubGhzHalAsyncTxTestType type;
  200. size_t pos;
  201. } SubGhzHalAsyncTxTest;
  202. #define SUBGHZ_HAL_TEST_DURATION 1
  203. static LevelDuration subghz_hal_async_tx_test_yield(void* context) {
  204. SubGhzHalAsyncTxTest* test = context;
  205. bool is_odd = test->pos % 2;
  206. if(test->type == SubGhzHalAsyncTxTestTypeNormal) {
  207. if(test->pos < API_HAL_SUBGHZ_ASYNC_TX_BUFFER_FULL * 8) {
  208. test->pos++;
  209. return level_duration_make(is_odd, SUBGHZ_HAL_TEST_DURATION);
  210. } else if(test->pos == API_HAL_SUBGHZ_ASYNC_TX_BUFFER_FULL * 8) {
  211. test->pos++;
  212. return level_duration_reset();
  213. } else {
  214. furi_crash("Yield after reset");
  215. }
  216. } else if(test->type == SubGhzHalAsyncTxTestTypeInvalidStart) {
  217. if(test->pos == 0) {
  218. test->pos++;
  219. return level_duration_make(!is_odd, SUBGHZ_HAL_TEST_DURATION);
  220. } else if(test->pos < API_HAL_SUBGHZ_ASYNC_TX_BUFFER_FULL * 8) {
  221. test->pos++;
  222. return level_duration_make(is_odd, SUBGHZ_HAL_TEST_DURATION);
  223. } else if(test->pos == API_HAL_SUBGHZ_ASYNC_TX_BUFFER_FULL * 8) {
  224. test->pos++;
  225. return level_duration_reset();
  226. } else {
  227. furi_crash("Yield after reset");
  228. }
  229. } else if(test->type == SubGhzHalAsyncTxTestTypeInvalidMid) {
  230. if(test->pos == API_HAL_SUBGHZ_ASYNC_TX_BUFFER_HALF / 2) {
  231. test->pos++;
  232. return level_duration_make(!is_odd, SUBGHZ_HAL_TEST_DURATION);
  233. } else if(test->pos < API_HAL_SUBGHZ_ASYNC_TX_BUFFER_FULL * 8) {
  234. test->pos++;
  235. return level_duration_make(is_odd, SUBGHZ_HAL_TEST_DURATION);
  236. } else if(test->pos == API_HAL_SUBGHZ_ASYNC_TX_BUFFER_FULL * 8) {
  237. test->pos++;
  238. return level_duration_reset();
  239. } else {
  240. furi_crash("Yield after reset");
  241. }
  242. } else if(test->type == SubGhzHalAsyncTxTestTypeInvalidEnd) {
  243. if(test->pos == API_HAL_SUBGHZ_ASYNC_TX_BUFFER_FULL - 1) {
  244. test->pos++;
  245. return level_duration_make(!is_odd, SUBGHZ_HAL_TEST_DURATION);
  246. } else if(test->pos < API_HAL_SUBGHZ_ASYNC_TX_BUFFER_FULL * 8) {
  247. test->pos++;
  248. return level_duration_make(is_odd, SUBGHZ_HAL_TEST_DURATION);
  249. } else if(test->pos == API_HAL_SUBGHZ_ASYNC_TX_BUFFER_FULL * 8) {
  250. test->pos++;
  251. return level_duration_reset();
  252. } else {
  253. furi_crash("Yield after reset");
  254. }
  255. } else if(test->type == SubGhzHalAsyncTxTestTypeResetStart) {
  256. if(test->pos == 0) {
  257. test->pos++;
  258. return level_duration_reset();
  259. } else {
  260. furi_crash("Yield after reset");
  261. }
  262. } else if(test->type == SubGhzHalAsyncTxTestTypeResetMid) {
  263. if(test->pos < API_HAL_SUBGHZ_ASYNC_TX_BUFFER_HALF / 2) {
  264. test->pos++;
  265. return level_duration_make(is_odd, SUBGHZ_HAL_TEST_DURATION);
  266. } else if(test->pos == API_HAL_SUBGHZ_ASYNC_TX_BUFFER_HALF / 2) {
  267. test->pos++;
  268. return level_duration_reset();
  269. } else {
  270. furi_crash("Yield after reset");
  271. }
  272. } else if(test->type == SubGhzHalAsyncTxTestTypeResetEnd) {
  273. if(test->pos < API_HAL_SUBGHZ_ASYNC_TX_BUFFER_FULL - 1) {
  274. test->pos++;
  275. return level_duration_make(is_odd, SUBGHZ_HAL_TEST_DURATION);
  276. } else if(test->pos == API_HAL_SUBGHZ_ASYNC_TX_BUFFER_FULL - 1) {
  277. test->pos++;
  278. return level_duration_reset();
  279. } else {
  280. furi_crash("Yield after reset");
  281. }
  282. } else {
  283. furi_crash("Programming error");
  284. }
  285. }
  286. bool subghz_hal_async_tx_test_run(SubGhzHalAsyncTxTestType type) {
  287. SubGhzHalAsyncTxTest test = {0};
  288. test.type = type;
  289. furi_hal_subghz_reset();
  290. furi_hal_subghz_load_preset(FuriHalSubGhzPresetOok650Async);
  291. furi_hal_subghz_set_frequency_and_path(433920000);
  292. furi_hal_subghz_start_async_tx(subghz_hal_async_tx_test_yield, &test);
  293. while(!furi_hal_subghz_is_async_tx_complete()) {
  294. furi_delay_ms(10);
  295. }
  296. furi_hal_subghz_stop_async_tx();
  297. furi_hal_subghz_sleep();
  298. return true;
  299. }
  300. MU_TEST(subghz_hal_async_tx_test) {
  301. mu_assert(
  302. subghz_hal_async_tx_test_run(SubGhzHalAsyncTxTestTypeNormal),
  303. "Test furi_hal_async_tx normal");
  304. mu_assert(
  305. subghz_hal_async_tx_test_run(SubGhzHalAsyncTxTestTypeInvalidStart),
  306. "Test furi_hal_async_tx invalid start");
  307. mu_assert(
  308. subghz_hal_async_tx_test_run(SubGhzHalAsyncTxTestTypeInvalidMid),
  309. "Test furi_hal_async_tx invalid mid");
  310. mu_assert(
  311. subghz_hal_async_tx_test_run(SubGhzHalAsyncTxTestTypeInvalidEnd),
  312. "Test furi_hal_async_tx invalid end");
  313. mu_assert(
  314. subghz_hal_async_tx_test_run(SubGhzHalAsyncTxTestTypeResetStart),
  315. "Test furi_hal_async_tx reset start");
  316. mu_assert(
  317. subghz_hal_async_tx_test_run(SubGhzHalAsyncTxTestTypeResetMid),
  318. "Test furi_hal_async_tx reset mid");
  319. mu_assert(
  320. subghz_hal_async_tx_test_run(SubGhzHalAsyncTxTestTypeResetEnd),
  321. "Test furi_hal_async_tx reset end");
  322. }
  323. //test decoders
  324. MU_TEST(subghz_decoder_came_atomo_test) {
  325. mu_assert(
  326. subghz_decoder_test(
  327. EXT_PATH("unit_tests/subghz/came_atomo_raw.sub"), SUBGHZ_PROTOCOL_CAME_ATOMO_NAME),
  328. "Test decoder " SUBGHZ_PROTOCOL_CAME_ATOMO_NAME " error\r\n");
  329. }
  330. MU_TEST(subghz_decoder_came_test) {
  331. mu_assert(
  332. subghz_decoder_test(EXT_PATH("unit_tests/subghz/came_raw.sub"), SUBGHZ_PROTOCOL_CAME_NAME),
  333. "Test decoder " SUBGHZ_PROTOCOL_CAME_NAME " error\r\n");
  334. }
  335. MU_TEST(subghz_decoder_came_twee_test) {
  336. mu_assert(
  337. subghz_decoder_test(
  338. EXT_PATH("unit_tests/subghz/came_twee_raw.sub"), SUBGHZ_PROTOCOL_CAME_TWEE_NAME),
  339. "Test decoder " SUBGHZ_PROTOCOL_CAME_TWEE_NAME " error\r\n");
  340. }
  341. MU_TEST(subghz_decoder_faac_slh_test) {
  342. mu_assert(
  343. subghz_decoder_test(
  344. EXT_PATH("unit_tests/subghz/faac_slh_raw.sub"), SUBGHZ_PROTOCOL_FAAC_SLH_NAME),
  345. "Test decoder " SUBGHZ_PROTOCOL_FAAC_SLH_NAME " error\r\n");
  346. }
  347. MU_TEST(subghz_decoder_gate_tx_test) {
  348. mu_assert(
  349. subghz_decoder_test(
  350. EXT_PATH("unit_tests/subghz/gate_tx_raw.sub"), SUBGHZ_PROTOCOL_GATE_TX_NAME),
  351. "Test decoder " SUBGHZ_PROTOCOL_GATE_TX_NAME " error\r\n");
  352. }
  353. MU_TEST(subghz_decoder_hormann_hsm_test) {
  354. mu_assert(
  355. subghz_decoder_test(
  356. EXT_PATH("unit_tests/subghz/hormann_hsm_raw.sub"), SUBGHZ_PROTOCOL_HORMANN_HSM_NAME),
  357. "Test decoder " SUBGHZ_PROTOCOL_HORMANN_HSM_NAME " error\r\n");
  358. }
  359. MU_TEST(subghz_decoder_ido_test) {
  360. mu_assert(
  361. subghz_decoder_test(
  362. EXT_PATH("unit_tests/subghz/ido_117_111_raw.sub"), SUBGHZ_PROTOCOL_IDO_NAME),
  363. "Test decoder " SUBGHZ_PROTOCOL_IDO_NAME " error\r\n");
  364. }
  365. MU_TEST(subghz_decoder_keelog_test) {
  366. mu_assert(
  367. subghz_decoder_test(
  368. EXT_PATH("unit_tests/subghz/doorhan_raw.sub"), SUBGHZ_PROTOCOL_KEELOQ_NAME),
  369. "Test decoder " SUBGHZ_PROTOCOL_KEELOQ_NAME " error\r\n");
  370. }
  371. MU_TEST(subghz_decoder_kia_seed_test) {
  372. mu_assert(
  373. subghz_decoder_test(
  374. EXT_PATH("unit_tests/subghz/kia_seed_raw.sub"), SUBGHZ_PROTOCOL_KIA_NAME),
  375. "Test decoder " SUBGHZ_PROTOCOL_KIA_NAME " error\r\n");
  376. }
  377. MU_TEST(subghz_decoder_nero_radio_test) {
  378. mu_assert(
  379. subghz_decoder_test(
  380. EXT_PATH("unit_tests/subghz/nero_radio_raw.sub"), SUBGHZ_PROTOCOL_NERO_RADIO_NAME),
  381. "Test decoder " SUBGHZ_PROTOCOL_NERO_RADIO_NAME " error\r\n");
  382. }
  383. MU_TEST(subghz_decoder_nero_sketch_test) {
  384. mu_assert(
  385. subghz_decoder_test(
  386. EXT_PATH("unit_tests/subghz/nero_sketch_raw.sub"), SUBGHZ_PROTOCOL_NERO_SKETCH_NAME),
  387. "Test decoder " SUBGHZ_PROTOCOL_NERO_SKETCH_NAME " error\r\n");
  388. }
  389. MU_TEST(subghz_decoder_nice_flo_test) {
  390. mu_assert(
  391. subghz_decoder_test(
  392. EXT_PATH("unit_tests/subghz/nice_flo_raw.sub"), SUBGHZ_PROTOCOL_NICE_FLO_NAME),
  393. "Test decoder " SUBGHZ_PROTOCOL_NICE_FLO_NAME " error\r\n");
  394. }
  395. MU_TEST(subghz_decoder_nice_flor_s_test) {
  396. mu_assert(
  397. subghz_decoder_test(
  398. EXT_PATH("unit_tests/subghz/nice_flor_s_raw.sub"), SUBGHZ_PROTOCOL_NICE_FLOR_S_NAME),
  399. "Test decoder " SUBGHZ_PROTOCOL_NICE_FLOR_S_NAME " error\r\n");
  400. }
  401. MU_TEST(subghz_decoder_princeton_test) {
  402. mu_assert(
  403. subghz_decoder_test(
  404. EXT_PATH("unit_tests/subghz/Princeton_raw.sub"), SUBGHZ_PROTOCOL_PRINCETON_NAME),
  405. "Test decoder " SUBGHZ_PROTOCOL_PRINCETON_NAME " error\r\n");
  406. }
  407. MU_TEST(subghz_decoder_scher_khan_magic_code_test) {
  408. mu_assert(
  409. subghz_decoder_test(
  410. EXT_PATH("unit_tests/subghz/scher_khan_magic_code.sub"),
  411. SUBGHZ_PROTOCOL_SCHER_KHAN_NAME),
  412. "Test decoder " SUBGHZ_PROTOCOL_SCHER_KHAN_NAME " error\r\n");
  413. }
  414. MU_TEST(subghz_decoder_somfy_keytis_test) {
  415. mu_assert(
  416. subghz_decoder_test(
  417. EXT_PATH("unit_tests/subghz/Somfy_keytis_raw.sub"), SUBGHZ_PROTOCOL_SOMFY_KEYTIS_NAME),
  418. "Test decoder " SUBGHZ_PROTOCOL_SOMFY_KEYTIS_NAME " error\r\n");
  419. }
  420. MU_TEST(subghz_decoder_somfy_telis_test) {
  421. mu_assert(
  422. subghz_decoder_test(
  423. EXT_PATH("unit_tests/subghz/somfy_telis_raw.sub"), SUBGHZ_PROTOCOL_SOMFY_TELIS_NAME),
  424. "Test decoder " SUBGHZ_PROTOCOL_SOMFY_TELIS_NAME " error\r\n");
  425. }
  426. MU_TEST(subghz_decoder_star_line_test) {
  427. mu_assert(
  428. subghz_decoder_test(
  429. EXT_PATH("unit_tests/subghz/cenmax_raw.sub"), SUBGHZ_PROTOCOL_STAR_LINE_NAME),
  430. "Test decoder " SUBGHZ_PROTOCOL_STAR_LINE_NAME " error\r\n");
  431. }
  432. MU_TEST(subghz_decoder_linear_test) {
  433. mu_assert(
  434. subghz_decoder_test(
  435. EXT_PATH("unit_tests/subghz/linear_raw.sub"), SUBGHZ_PROTOCOL_LINEAR_NAME),
  436. "Test decoder " SUBGHZ_PROTOCOL_LINEAR_NAME " error\r\n");
  437. }
  438. MU_TEST(subghz_decoder_megacode_test) {
  439. mu_assert(
  440. subghz_decoder_test(
  441. EXT_PATH("unit_tests/subghz/megacode_raw.sub"), SUBGHZ_PROTOCOL_MEGACODE_NAME),
  442. "Test decoder " SUBGHZ_PROTOCOL_MEGACODE_NAME " error\r\n");
  443. }
  444. MU_TEST(subghz_decoder_secplus_v1_test) {
  445. mu_assert(
  446. subghz_decoder_test(
  447. EXT_PATH("unit_tests/subghz/security_pls_1_0_raw.sub"),
  448. SUBGHZ_PROTOCOL_SECPLUS_V1_NAME),
  449. "Test decoder " SUBGHZ_PROTOCOL_SECPLUS_V1_NAME " error\r\n");
  450. }
  451. MU_TEST(subghz_decoder_secplus_v2_test) {
  452. mu_assert(
  453. subghz_decoder_test(
  454. EXT_PATH("unit_tests/subghz/security_pls_2_0_raw.sub"),
  455. SUBGHZ_PROTOCOL_SECPLUS_V2_NAME),
  456. "Test decoder " SUBGHZ_PROTOCOL_SECPLUS_V2_NAME " error\r\n");
  457. }
  458. MU_TEST(subghz_decoder_holtek_test) {
  459. mu_assert(
  460. subghz_decoder_test(
  461. EXT_PATH("unit_tests/subghz/holtek_raw.sub"), SUBGHZ_PROTOCOL_HOLTEK_NAME),
  462. "Test decoder " SUBGHZ_PROTOCOL_HOLTEK_NAME " error\r\n");
  463. }
  464. MU_TEST(subghz_decoder_power_smart_test) {
  465. mu_assert(
  466. subghz_decoder_test(
  467. EXT_PATH("unit_tests/subghz/power_smart_raw.sub"), SUBGHZ_PROTOCOL_POWER_SMART_NAME),
  468. "Test decoder " SUBGHZ_PROTOCOL_POWER_SMART_NAME " error\r\n");
  469. }
  470. MU_TEST(subghz_decoder_marantec_test) {
  471. mu_assert(
  472. subghz_decoder_test(
  473. EXT_PATH("unit_tests/subghz/marantec_raw.sub"), SUBGHZ_PROTOCOL_MARANTEC_NAME),
  474. "Test decoder " SUBGHZ_PROTOCOL_MARANTEC_NAME " error\r\n");
  475. }
  476. MU_TEST(subghz_decoder_bett_test) {
  477. mu_assert(
  478. subghz_decoder_test(EXT_PATH("unit_tests/subghz/bett_raw.sub"), SUBGHZ_PROTOCOL_BETT_NAME),
  479. "Test decoder " SUBGHZ_PROTOCOL_BETT_NAME " error\r\n");
  480. }
  481. MU_TEST(subghz_decoder_doitrand_test) {
  482. mu_assert(
  483. subghz_decoder_test(
  484. EXT_PATH("unit_tests/subghz/doitrand_raw.sub"), SUBGHZ_PROTOCOL_DOITRAND_NAME),
  485. "Test decoder " SUBGHZ_PROTOCOL_DOITRAND_NAME " error\r\n");
  486. }
  487. MU_TEST(subghz_decoder_phoenix_v2_test) {
  488. mu_assert(
  489. subghz_decoder_test(
  490. EXT_PATH("unit_tests/subghz/phoenix_v2_raw.sub"), SUBGHZ_PROTOCOL_PHOENIX_V2_NAME),
  491. "Test decoder " SUBGHZ_PROTOCOL_PHOENIX_V2_NAME " error\r\n");
  492. }
  493. MU_TEST(subghz_decoder_honeywell_wdb_test) {
  494. mu_assert(
  495. subghz_decoder_test(
  496. EXT_PATH("unit_tests/subghz/honeywell_wdb_raw.sub"),
  497. SUBGHZ_PROTOCOL_HONEYWELL_WDB_NAME),
  498. "Test decoder " SUBGHZ_PROTOCOL_HONEYWELL_WDB_NAME " error\r\n");
  499. }
  500. MU_TEST(subghz_decoder_magellan_test) {
  501. mu_assert(
  502. subghz_decoder_test(
  503. EXT_PATH("unit_tests/subghz/magellan_raw.sub"), SUBGHZ_PROTOCOL_MAGELLAN_NAME),
  504. "Test decoder " SUBGHZ_PROTOCOL_MAGELLAN_NAME " error\r\n");
  505. }
  506. MU_TEST(subghz_decoder_intertechno_v3_test) {
  507. mu_assert(
  508. subghz_decoder_test(
  509. EXT_PATH("unit_tests/subghz/intertechno_v3_raw.sub"),
  510. SUBGHZ_PROTOCOL_INTERTECHNO_V3_NAME),
  511. "Test decoder " SUBGHZ_PROTOCOL_INTERTECHNO_V3_NAME " error\r\n");
  512. }
  513. MU_TEST(subghz_decoder_clemsa_test) {
  514. mu_assert(
  515. subghz_decoder_test(
  516. EXT_PATH("unit_tests/subghz/clemsa_raw.sub"), SUBGHZ_PROTOCOL_CLEMSA_NAME),
  517. "Test decoder " SUBGHZ_PROTOCOL_CLEMSA_NAME " error\r\n");
  518. }
  519. MU_TEST(subghz_decoder_ansonic_test) {
  520. mu_assert(
  521. subghz_decoder_test(
  522. EXT_PATH("unit_tests/subghz/ansonic_raw.sub"), SUBGHZ_PROTOCOL_ANSONIC_NAME),
  523. "Test decoder " SUBGHZ_PROTOCOL_ANSONIC_NAME " error\r\n");
  524. }
  525. MU_TEST(subghz_decoder_smc5326_test) {
  526. mu_assert(
  527. subghz_decoder_test(
  528. EXT_PATH("unit_tests/subghz/smc5326_raw.sub"), SUBGHZ_PROTOCOL_SMC5326_NAME),
  529. "Test decoder " SUBGHZ_PROTOCOL_SMC5326_NAME " error\r\n");
  530. }
  531. //test encoders
  532. MU_TEST(subghz_encoder_princeton_test) {
  533. mu_assert(
  534. subghz_encoder_test(EXT_PATH("unit_tests/subghz/princeton.sub")),
  535. "Test encoder " SUBGHZ_PROTOCOL_PRINCETON_NAME " error\r\n");
  536. }
  537. MU_TEST(subghz_encoder_came_test) {
  538. mu_assert(
  539. subghz_encoder_test(EXT_PATH("unit_tests/subghz/came.sub")),
  540. "Test encoder " SUBGHZ_PROTOCOL_CAME_NAME " error\r\n");
  541. }
  542. MU_TEST(subghz_encoder_came_twee_test) {
  543. mu_assert(
  544. subghz_encoder_test(EXT_PATH("unit_tests/subghz/came_twee.sub")),
  545. "Test encoder " SUBGHZ_PROTOCOL_CAME_TWEE_NAME " error\r\n");
  546. }
  547. MU_TEST(subghz_encoder_gate_tx_test) {
  548. mu_assert(
  549. subghz_encoder_test(EXT_PATH("unit_tests/subghz/gate_tx.sub")),
  550. "Test encoder " SUBGHZ_PROTOCOL_GATE_TX_NAME " error\r\n");
  551. }
  552. MU_TEST(subghz_encoder_nice_flo_test) {
  553. mu_assert(
  554. subghz_encoder_test(EXT_PATH("unit_tests/subghz/nice_flo.sub")),
  555. "Test encoder " SUBGHZ_PROTOCOL_NICE_FLO_NAME " error\r\n");
  556. }
  557. MU_TEST(subghz_encoder_keelog_test) {
  558. mu_assert(
  559. subghz_encoder_test(EXT_PATH("unit_tests/subghz/doorhan.sub")),
  560. "Test encoder " SUBGHZ_PROTOCOL_KEELOQ_NAME " error\r\n");
  561. }
  562. MU_TEST(subghz_encoder_linear_test) {
  563. mu_assert(
  564. subghz_encoder_test(EXT_PATH("unit_tests/subghz/linear.sub")),
  565. "Test encoder " SUBGHZ_PROTOCOL_LINEAR_NAME " error\r\n");
  566. }
  567. MU_TEST(subghz_encoder_megacode_test) {
  568. mu_assert(
  569. subghz_encoder_test(EXT_PATH("unit_tests/subghz/megacode.sub")),
  570. "Test encoder " SUBGHZ_PROTOCOL_MEGACODE_NAME " error\r\n");
  571. }
  572. MU_TEST(subghz_encoder_holtek_test) {
  573. mu_assert(
  574. subghz_encoder_test(EXT_PATH("unit_tests/subghz/holtek.sub")),
  575. "Test encoder " SUBGHZ_PROTOCOL_HOLTEK_NAME " error\r\n");
  576. }
  577. MU_TEST(subghz_encoder_secplus_v1_test) {
  578. mu_assert(
  579. subghz_encoder_test(EXT_PATH("unit_tests/subghz/security_pls_1_0.sub")),
  580. "Test encoder " SUBGHZ_PROTOCOL_SECPLUS_V1_NAME " error\r\n");
  581. }
  582. MU_TEST(subghz_encoder_secplus_v2_test) {
  583. mu_assert(
  584. subghz_encoder_test(EXT_PATH("unit_tests/subghz/security_pls_2_0.sub")),
  585. "Test encoder " SUBGHZ_PROTOCOL_SECPLUS_V2_NAME " error\r\n");
  586. }
  587. MU_TEST(subghz_encoder_power_smart_test) {
  588. mu_assert(
  589. subghz_encoder_test(EXT_PATH("unit_tests/subghz/power_smart.sub")),
  590. "Test encoder " SUBGHZ_PROTOCOL_POWER_SMART_NAME " error\r\n");
  591. }
  592. MU_TEST(subghz_encoder_marantec_test) {
  593. mu_assert(
  594. subghz_encoder_test(EXT_PATH("unit_tests/subghz/marantec.sub")),
  595. "Test encoder " SUBGHZ_PROTOCOL_MARANTEC_NAME " error\r\n");
  596. }
  597. MU_TEST(subghz_encoder_bett_test) {
  598. mu_assert(
  599. subghz_encoder_test(EXT_PATH("unit_tests/subghz/bett.sub")),
  600. "Test encoder " SUBGHZ_PROTOCOL_BETT_NAME " error\r\n");
  601. }
  602. MU_TEST(subghz_encoder_doitrand_test) {
  603. mu_assert(
  604. subghz_encoder_test(EXT_PATH("unit_tests/subghz/doitrand.sub")),
  605. "Test encoder " SUBGHZ_PROTOCOL_DOITRAND_NAME " error\r\n");
  606. }
  607. MU_TEST(subghz_encoder_phoenix_v2_test) {
  608. mu_assert(
  609. subghz_encoder_test(EXT_PATH("unit_tests/subghz/phoenix_v2.sub")),
  610. "Test encoder " SUBGHZ_PROTOCOL_PHOENIX_V2_NAME " error\r\n");
  611. }
  612. MU_TEST(subghz_encoder_honeywell_wdb_test) {
  613. mu_assert(
  614. subghz_encoder_test(EXT_PATH("unit_tests/subghz/honeywell_wdb.sub")),
  615. "Test encoder " SUBGHZ_PROTOCOL_HONEYWELL_WDB_NAME " error\r\n");
  616. }
  617. MU_TEST(subghz_encoder_magellan_test) {
  618. mu_assert(
  619. subghz_encoder_test(EXT_PATH("unit_tests/subghz/magellan.sub")),
  620. "Test encoder " SUBGHZ_PROTOCOL_MAGELLAN_NAME " error\r\n");
  621. }
  622. MU_TEST(subghz_encoder_intertechno_v3_test) {
  623. mu_assert(
  624. subghz_encoder_test(EXT_PATH("unit_tests/subghz/intertechno_v3.sub")),
  625. "Test encoder " SUBGHZ_PROTOCOL_INTERTECHNO_V3_NAME " error\r\n");
  626. }
  627. MU_TEST(subghz_encoder_clemsa_test) {
  628. mu_assert(
  629. subghz_encoder_test(EXT_PATH("unit_tests/subghz/clemsa.sub")),
  630. "Test encoder " SUBGHZ_PROTOCOL_CLEMSA_NAME " error\r\n");
  631. }
  632. MU_TEST(subghz_encoder_ansonic_test) {
  633. mu_assert(
  634. subghz_encoder_test(EXT_PATH("unit_tests/subghz/ansonic.sub")),
  635. "Test encoder " SUBGHZ_PROTOCOL_ANSONIC_NAME " error\r\n");
  636. }
  637. MU_TEST(subghz_encoder_smc5326_test) {
  638. mu_assert(
  639. subghz_encoder_test(EXT_PATH("unit_tests/subghz/smc5326.sub")),
  640. "Test encoder " SUBGHZ_PROTOCOL_SMC5326_NAME " error\r\n");
  641. }
  642. MU_TEST(subghz_random_test) {
  643. mu_assert(subghz_decode_random_test(TEST_RANDOM_DIR_NAME), "Random test error\r\n");
  644. }
  645. MU_TEST_SUITE(subghz) {
  646. subghz_test_init();
  647. MU_RUN_TEST(subghz_keystore_test);
  648. MU_RUN_TEST(subghz_hal_async_tx_test);
  649. MU_RUN_TEST(subghz_decoder_came_atomo_test);
  650. MU_RUN_TEST(subghz_decoder_came_test);
  651. MU_RUN_TEST(subghz_decoder_came_twee_test);
  652. MU_RUN_TEST(subghz_decoder_faac_slh_test);
  653. MU_RUN_TEST(subghz_decoder_gate_tx_test);
  654. MU_RUN_TEST(subghz_decoder_hormann_hsm_test);
  655. MU_RUN_TEST(subghz_decoder_ido_test);
  656. MU_RUN_TEST(subghz_decoder_keelog_test);
  657. MU_RUN_TEST(subghz_decoder_kia_seed_test);
  658. MU_RUN_TEST(subghz_decoder_nero_radio_test);
  659. MU_RUN_TEST(subghz_decoder_nero_sketch_test);
  660. MU_RUN_TEST(subghz_decoder_nice_flo_test);
  661. MU_RUN_TEST(subghz_decoder_nice_flor_s_test);
  662. MU_RUN_TEST(subghz_decoder_princeton_test);
  663. MU_RUN_TEST(subghz_decoder_scher_khan_magic_code_test);
  664. MU_RUN_TEST(subghz_decoder_somfy_keytis_test);
  665. MU_RUN_TEST(subghz_decoder_somfy_telis_test);
  666. MU_RUN_TEST(subghz_decoder_star_line_test);
  667. MU_RUN_TEST(subghz_decoder_linear_test);
  668. MU_RUN_TEST(subghz_decoder_megacode_test);
  669. MU_RUN_TEST(subghz_decoder_secplus_v1_test);
  670. MU_RUN_TEST(subghz_decoder_secplus_v2_test);
  671. MU_RUN_TEST(subghz_decoder_holtek_test);
  672. MU_RUN_TEST(subghz_decoder_power_smart_test);
  673. MU_RUN_TEST(subghz_decoder_marantec_test);
  674. MU_RUN_TEST(subghz_decoder_bett_test);
  675. MU_RUN_TEST(subghz_decoder_doitrand_test);
  676. MU_RUN_TEST(subghz_decoder_phoenix_v2_test);
  677. MU_RUN_TEST(subghz_decoder_honeywell_wdb_test);
  678. MU_RUN_TEST(subghz_decoder_magellan_test);
  679. MU_RUN_TEST(subghz_decoder_intertechno_v3_test);
  680. MU_RUN_TEST(subghz_decoder_clemsa_test);
  681. MU_RUN_TEST(subghz_decoder_ansonic_test);
  682. MU_RUN_TEST(subghz_decoder_smc5326_test);
  683. MU_RUN_TEST(subghz_encoder_princeton_test);
  684. MU_RUN_TEST(subghz_encoder_came_test);
  685. MU_RUN_TEST(subghz_encoder_came_twee_test);
  686. MU_RUN_TEST(subghz_encoder_gate_tx_test);
  687. MU_RUN_TEST(subghz_encoder_nice_flo_test);
  688. MU_RUN_TEST(subghz_encoder_keelog_test);
  689. MU_RUN_TEST(subghz_encoder_linear_test);
  690. MU_RUN_TEST(subghz_encoder_megacode_test);
  691. MU_RUN_TEST(subghz_encoder_holtek_test);
  692. MU_RUN_TEST(subghz_encoder_secplus_v1_test);
  693. MU_RUN_TEST(subghz_encoder_secplus_v2_test);
  694. MU_RUN_TEST(subghz_encoder_power_smart_test);
  695. MU_RUN_TEST(subghz_encoder_marantec_test);
  696. MU_RUN_TEST(subghz_encoder_bett_test);
  697. MU_RUN_TEST(subghz_encoder_doitrand_test);
  698. MU_RUN_TEST(subghz_encoder_phoenix_v2_test);
  699. MU_RUN_TEST(subghz_encoder_honeywell_wdb_test);
  700. MU_RUN_TEST(subghz_encoder_magellan_test);
  701. MU_RUN_TEST(subghz_encoder_intertechno_v3_test);
  702. MU_RUN_TEST(subghz_encoder_clemsa_test);
  703. MU_RUN_TEST(subghz_encoder_ansonic_test);
  704. MU_RUN_TEST(subghz_encoder_smc5326_test);
  705. MU_RUN_TEST(subghz_random_test);
  706. subghz_test_deinit();
  707. }
  708. int run_minunit_test_subghz() {
  709. MU_RUN_SUITE(subghz);
  710. return MU_EXIT_CODE;
  711. }