subghz_frequency_analyzer.c 16 KB

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  1. #include "subghz_frequency_analyzer.h"
  2. #include "../subghz_i.h"
  3. #include <math.h>
  4. #include <furi.h>
  5. #include <furi_hal.h>
  6. #include <input/input.h>
  7. #include <gui/elements.h>
  8. #include <notification/notification_messages.h>
  9. #include "../helpers/subghz_frequency_analyzer_worker.h"
  10. #include "../helpers/subghz_frequency_analyzer_log_item_array.h"
  11. #include <assets_icons.h>
  12. #define LOG_FREQUENCY_MAX_ITEMS 60 // uint8_t (limited by 'seq' of SubGhzFrequencyAnalyzerLogItem)
  13. #define RSSI_OFFSET 74
  14. #define RSSI_MAX 53 // 127 - RSSI_OFFSET
  15. #define SNPRINTF_FREQUENCY(buff, freq) \
  16. snprintf(buff, sizeof(buff), "%03ld.%03ld", freq / 1000000 % 1000, freq / 1000 % 1000);
  17. typedef enum {
  18. SubGhzFrequencyAnalyzerStatusIDLE,
  19. } SubGhzFrequencyAnalyzerStatus;
  20. typedef enum {
  21. SubGhzFrequencyAnalyzerFragmentBottomTypeMain,
  22. SubGhzFrequencyAnalyzerFragmentBottomTypeLog,
  23. } SubGhzFrequencyAnalyzerFragmentBottomType;
  24. struct SubGhzFrequencyAnalyzer {
  25. View* view;
  26. SubGhzFrequencyAnalyzerWorker* worker;
  27. SubGhzFrequencyAnalyzerCallback callback;
  28. void* context;
  29. bool locked;
  30. uint32_t last_frequency;
  31. };
  32. typedef struct {
  33. uint32_t frequency;
  34. uint8_t rssi;
  35. uint32_t history_frequency[3];
  36. bool signal;
  37. SubGhzFrequencyAnalyzerLogItemArray_t log_frequency;
  38. SubGhzFrequencyAnalyzerFragmentBottomType fragment_bottom_type;
  39. SubGhzFrequencyAnalyzerLogOrderBy log_frequency_order_by;
  40. uint8_t log_frequency_scroll_offset;
  41. } SubGhzFrequencyAnalyzerModel;
  42. static inline uint8_t rssi_sanitize(float rssi) {
  43. return (rssi * -1.0f) - RSSI_OFFSET;
  44. }
  45. void subghz_frequency_analyzer_set_callback(
  46. SubGhzFrequencyAnalyzer* subghz_frequency_analyzer,
  47. SubGhzFrequencyAnalyzerCallback callback,
  48. void* context) {
  49. furi_assert(subghz_frequency_analyzer);
  50. furi_assert(callback);
  51. subghz_frequency_analyzer->callback = callback;
  52. subghz_frequency_analyzer->context = context;
  53. }
  54. void subghz_frequency_analyzer_draw_rssi(Canvas* canvas, uint8_t rssi, uint8_t x, uint8_t y) {
  55. uint8_t column_number = 0;
  56. if(rssi) {
  57. rssi = rssi / 3;
  58. for(uint8_t i = 1; i < rssi; i++) {
  59. if(i > 20) break;
  60. if(i % 4) {
  61. column_number++;
  62. canvas_draw_box(canvas, x + 2 * i, y - column_number, 2, 4 + column_number);
  63. }
  64. }
  65. }
  66. }
  67. static void subghz_frequency_analyzer_log_frequency_draw(
  68. Canvas* canvas,
  69. SubGhzFrequencyAnalyzerModel* model) {
  70. char buffer[64];
  71. const uint8_t offset_x = 0;
  72. const uint8_t offset_y = 43;
  73. canvas_set_font(canvas, FontKeyboard);
  74. const size_t items_count = SubGhzFrequencyAnalyzerLogItemArray_size(model->log_frequency);
  75. if(items_count == 0) {
  76. canvas_draw_rframe(canvas, offset_x + 27u, offset_y - 3u, 73u, 16u, 5u);
  77. canvas_draw_str_aligned(
  78. canvas, offset_x + 64u, offset_y + 8u, AlignCenter, AlignBottom, "No records");
  79. return;
  80. } else if(items_count > 3) {
  81. elements_scrollbar_pos(
  82. canvas,
  83. offset_x + 127,
  84. offset_y - 8,
  85. 29,
  86. model->log_frequency_scroll_offset,
  87. items_count - 2);
  88. }
  89. SubGhzFrequencyAnalyzerLogItem_t* log_frequency_item;
  90. for(uint8_t i = 0; i < 3; ++i) {
  91. const uint8_t item_pos = model->log_frequency_scroll_offset + i;
  92. if(item_pos >= items_count) {
  93. break;
  94. }
  95. log_frequency_item =
  96. SubGhzFrequencyAnalyzerLogItemArray_get(model->log_frequency, item_pos);
  97. // Frequency
  98. SNPRINTF_FREQUENCY(buffer, (*log_frequency_item)->frequency)
  99. canvas_draw_str(canvas, offset_x, offset_y + i * 10, buffer);
  100. // Count
  101. snprintf(buffer, sizeof(buffer), "%3d", (*log_frequency_item)->count);
  102. canvas_draw_str(canvas, offset_x + 48, offset_y + i * 10, buffer);
  103. // Max RSSI
  104. subghz_frequency_analyzer_draw_rssi(
  105. canvas, (*log_frequency_item)->rssi_max, offset_x + 69, (offset_y + i * 10));
  106. }
  107. canvas_set_font(canvas, FontSecondary);
  108. }
  109. static void subghz_frequency_analyzer_history_frequency_draw(
  110. Canvas* canvas,
  111. SubGhzFrequencyAnalyzerModel* model) {
  112. char buffer[64];
  113. uint8_t x = 66;
  114. uint8_t y = 43;
  115. canvas_set_font(canvas, FontKeyboard);
  116. for(uint8_t i = 0; i < 3; i++) {
  117. if(model->history_frequency[i]) {
  118. SNPRINTF_FREQUENCY(buffer, model->history_frequency[i])
  119. canvas_draw_str(canvas, x, y + i * 10, buffer);
  120. } else {
  121. canvas_draw_str(canvas, x, y + i * 10, "---.---");
  122. }
  123. canvas_draw_str(canvas, x + 44, y + i * 10, "MHz");
  124. }
  125. canvas_set_font(canvas, FontSecondary);
  126. }
  127. void subghz_frequency_analyzer_draw(Canvas* canvas, SubGhzFrequencyAnalyzerModel* model) {
  128. furi_assert(canvas);
  129. furi_assert(model);
  130. char buffer[64];
  131. canvas_set_color(canvas, ColorBlack);
  132. canvas_set_font(canvas, FontSecondary);
  133. if(model->fragment_bottom_type == SubGhzFrequencyAnalyzerFragmentBottomTypeLog) {
  134. const size_t items_count = SubGhzFrequencyAnalyzerLogItemArray_size(model->log_frequency);
  135. const char* log_order_by_name =
  136. subghz_frequency_analyzer_log_get_order_name(model->log_frequency_order_by);
  137. if(items_count < LOG_FREQUENCY_MAX_ITEMS) {
  138. snprintf(buffer, sizeof(buffer), "Frequency Analyzer [%s]", log_order_by_name);
  139. canvas_draw_str_aligned(canvas, 64, 8, AlignCenter, AlignBottom, buffer);
  140. } else {
  141. snprintf(buffer, sizeof(buffer), "The log is full! [%s]", log_order_by_name);
  142. canvas_draw_str(canvas, 2, 8, buffer);
  143. }
  144. subghz_frequency_analyzer_log_frequency_draw(canvas, model);
  145. } else {
  146. canvas_draw_str(canvas, 20, 8, "Frequency Analyzer");
  147. canvas_draw_str(canvas, 0, 64, "RSSI");
  148. subghz_frequency_analyzer_draw_rssi(canvas, model->rssi, 20u, 64u);
  149. subghz_frequency_analyzer_history_frequency_draw(canvas, model);
  150. }
  151. // Frequency
  152. canvas_set_font(canvas, FontBigNumbers);
  153. snprintf(
  154. buffer,
  155. sizeof(buffer),
  156. "%03ld.%03ld",
  157. model->frequency / 1000000 % 1000,
  158. model->frequency / 1000 % 1000);
  159. if(model->signal) {
  160. canvas_draw_box(canvas, 4, 12, 121, 22);
  161. canvas_set_color(canvas, ColorWhite);
  162. }
  163. canvas_draw_str(canvas, 8, 30, buffer);
  164. canvas_draw_icon(canvas, 96, 19, &I_MHz_25x11);
  165. }
  166. static void subghz_frequency_analyzer_log_frequency_sort(SubGhzFrequencyAnalyzerModel* model) {
  167. furi_assert(model);
  168. M_LET((cmp, model->log_frequency_order_by), SubGhzFrequencyAnalyzerLogItemArray_compare_by_t)
  169. SubGhzFrequencyAnalyzerLogItemArray_sort_fo(
  170. model->log_frequency, SubGhzFrequencyAnalyzerLogItemArray_compare_by_as_interface(cmp));
  171. }
  172. bool subghz_frequency_analyzer_input(InputEvent* event, void* context) {
  173. furi_assert(context);
  174. SubGhzFrequencyAnalyzer* instance = context;
  175. if(event->key == InputKeyBack) {
  176. return false;
  177. }
  178. if((event->type == InputTypeShort) &&
  179. ((event->key == InputKeyLeft) || (event->key == InputKeyRight))) {
  180. with_view_model(
  181. instance->view,
  182. SubGhzFrequencyAnalyzerModel * model,
  183. {
  184. if(event->key == InputKeyLeft) {
  185. if(model->fragment_bottom_type == 0) {
  186. model->fragment_bottom_type = SubGhzFrequencyAnalyzerFragmentBottomTypeLog;
  187. } else {
  188. --model->fragment_bottom_type;
  189. }
  190. } else if(event->key == InputKeyRight) {
  191. if(model->fragment_bottom_type ==
  192. SubGhzFrequencyAnalyzerFragmentBottomTypeLog) {
  193. model->fragment_bottom_type = 0;
  194. } else {
  195. ++model->fragment_bottom_type;
  196. }
  197. }
  198. },
  199. true);
  200. } else if((event->type == InputTypeShort) && (event->key == InputKeyOk)) {
  201. with_view_model(
  202. instance->view,
  203. SubGhzFrequencyAnalyzerModel * model,
  204. {
  205. if(model->fragment_bottom_type == SubGhzFrequencyAnalyzerFragmentBottomTypeLog) {
  206. ++model->log_frequency_order_by;
  207. if(model->log_frequency_order_by >
  208. SubGhzFrequencyAnalyzerLogOrderByFrequencyAsc) {
  209. model->log_frequency_order_by = 0;
  210. }
  211. subghz_frequency_analyzer_log_frequency_sort(model);
  212. }
  213. },
  214. true);
  215. } else if((event->type == InputTypeShort) || (event->type == InputTypeRepeat)) {
  216. with_view_model(
  217. instance->view,
  218. SubGhzFrequencyAnalyzerModel * model,
  219. {
  220. if(model->fragment_bottom_type == SubGhzFrequencyAnalyzerFragmentBottomTypeLog) {
  221. if(event->key == InputKeyUp) {
  222. if(model->log_frequency_scroll_offset > 0) {
  223. --model->log_frequency_scroll_offset;
  224. }
  225. } else if(event->key == InputKeyDown) {
  226. const size_t items_count =
  227. SubGhzFrequencyAnalyzerLogItemArray_size(model->log_frequency);
  228. if((model->log_frequency_scroll_offset + 3u) < items_count) {
  229. ++model->log_frequency_scroll_offset;
  230. }
  231. }
  232. }
  233. },
  234. true);
  235. }
  236. return true;
  237. }
  238. static void subghz_frequency_analyzer_log_frequency_search_it(
  239. SubGhzFrequencyAnalyzerLogItemArray_it_t* itref,
  240. SubGhzFrequencyAnalyzerLogItemArray_t* log_frequency,
  241. uint32_t frequency) {
  242. furi_assert(log_frequency);
  243. SubGhzFrequencyAnalyzerLogItemArray_it(*itref, *log_frequency);
  244. SubGhzFrequencyAnalyzerLogItem_t* item;
  245. while(!SubGhzFrequencyAnalyzerLogItemArray_end_p(*itref)) {
  246. item = SubGhzFrequencyAnalyzerLogItemArray_ref(*itref);
  247. if((*item)->frequency == frequency) {
  248. break;
  249. }
  250. SubGhzFrequencyAnalyzerLogItemArray_next(*itref);
  251. }
  252. }
  253. static bool subghz_frequency_analyzer_log_frequency_insert(SubGhzFrequencyAnalyzerModel* model) {
  254. furi_assert(model);
  255. const size_t items_count = SubGhzFrequencyAnalyzerLogItemArray_size(model->log_frequency);
  256. if(items_count < LOG_FREQUENCY_MAX_ITEMS) {
  257. SubGhzFrequencyAnalyzerLogItem_t* item =
  258. SubGhzFrequencyAnalyzerLogItemArray_push_new(model->log_frequency);
  259. if(item == NULL) {
  260. return false;
  261. }
  262. (*item)->frequency = model->frequency;
  263. (*item)->count = 1u;
  264. (*item)->rssi_max = model->rssi;
  265. (*item)->seq = items_count;
  266. return true;
  267. }
  268. return false;
  269. }
  270. static void subghz_frequency_analyzer_log_frequency_update(
  271. SubGhzFrequencyAnalyzerModel* model,
  272. bool need_insert) {
  273. furi_assert(model);
  274. if(!model->frequency) {
  275. return;
  276. }
  277. SubGhzFrequencyAnalyzerLogItemArray_it_t it;
  278. subghz_frequency_analyzer_log_frequency_search_it(
  279. &it, &model->log_frequency, model->frequency);
  280. if(!SubGhzFrequencyAnalyzerLogItemArray_end_p(it)) {
  281. SubGhzFrequencyAnalyzerLogItem_t* item = SubGhzFrequencyAnalyzerLogItemArray_ref(it);
  282. if((*item)->rssi_max < model->rssi) {
  283. (*item)->rssi_max = model->rssi;
  284. }
  285. if(need_insert && (*item)->count < UINT8_MAX) {
  286. ++(*item)->count;
  287. subghz_frequency_analyzer_log_frequency_sort(model);
  288. }
  289. } else if(need_insert) {
  290. if(subghz_frequency_analyzer_log_frequency_insert(model)) {
  291. subghz_frequency_analyzer_log_frequency_sort(model);
  292. }
  293. }
  294. }
  295. void subghz_frequency_analyzer_pair_callback(
  296. void* context,
  297. uint32_t frequency,
  298. float rssi,
  299. bool signal) {
  300. SubGhzFrequencyAnalyzer* instance = context;
  301. if((rssi == 0.f) && (instance->locked)) {
  302. if(instance->callback) {
  303. instance->callback(SubGhzCustomEventSceneAnalyzerUnlock, instance->context);
  304. }
  305. instance->last_frequency = 0;
  306. //update history
  307. with_view_model(
  308. instance->view,
  309. SubGhzFrequencyAnalyzerModel * model,
  310. {
  311. model->history_frequency[2] = model->history_frequency[1];
  312. model->history_frequency[1] = model->history_frequency[0];
  313. model->history_frequency[0] = model->frequency;
  314. },
  315. false);
  316. } else if((rssi != 0.f) && (!instance->locked)) {
  317. if(instance->callback) {
  318. instance->callback(SubGhzCustomEventSceneAnalyzerLock, instance->context);
  319. }
  320. }
  321. instance->locked = (rssi != 0.f);
  322. with_view_model(
  323. instance->view,
  324. SubGhzFrequencyAnalyzerModel * model,
  325. {
  326. model->rssi = rssi_sanitize(rssi);
  327. model->frequency = frequency;
  328. model->signal = signal;
  329. if(frequency) {
  330. subghz_frequency_analyzer_log_frequency_update(
  331. model, frequency != instance->last_frequency);
  332. instance->last_frequency = frequency;
  333. }
  334. },
  335. true);
  336. }
  337. void subghz_frequency_analyzer_enter(void* context) {
  338. furi_assert(context);
  339. SubGhzFrequencyAnalyzer* instance = context;
  340. //Start worker
  341. instance->worker = subghz_frequency_analyzer_worker_alloc(instance->context);
  342. subghz_frequency_analyzer_worker_set_pair_callback(
  343. instance->worker,
  344. (SubGhzFrequencyAnalyzerWorkerPairCallback)subghz_frequency_analyzer_pair_callback,
  345. instance);
  346. subghz_frequency_analyzer_worker_start(instance->worker);
  347. with_view_model(
  348. instance->view,
  349. SubGhzFrequencyAnalyzerModel * model,
  350. {
  351. model->rssi = 0u;
  352. model->frequency = 0;
  353. model->fragment_bottom_type = SubGhzFrequencyAnalyzerFragmentBottomTypeMain;
  354. model->log_frequency_order_by = SubGhzFrequencyAnalyzerLogOrderBySeqDesc;
  355. model->log_frequency_scroll_offset = 0u;
  356. model->history_frequency[0] = model->history_frequency[1] =
  357. model->history_frequency[2] = 0u;
  358. SubGhzFrequencyAnalyzerLogItemArray_init(model->log_frequency);
  359. },
  360. true);
  361. }
  362. void subghz_frequency_analyzer_exit(void* context) {
  363. furi_assert(context);
  364. SubGhzFrequencyAnalyzer* instance = context;
  365. //Stop worker
  366. if(subghz_frequency_analyzer_worker_is_running(instance->worker)) {
  367. subghz_frequency_analyzer_worker_stop(instance->worker);
  368. }
  369. subghz_frequency_analyzer_worker_free(instance->worker);
  370. with_view_model(
  371. instance->view,
  372. SubGhzFrequencyAnalyzerModel * model,
  373. {
  374. model->rssi = 0u;
  375. model->frequency = 0;
  376. model->fragment_bottom_type = SubGhzFrequencyAnalyzerFragmentBottomTypeMain;
  377. model->log_frequency_order_by = SubGhzFrequencyAnalyzerLogOrderBySeqDesc;
  378. model->log_frequency_scroll_offset = 0u;
  379. model->history_frequency[0] = model->history_frequency[1] =
  380. model->history_frequency[2] = 0u;
  381. SubGhzFrequencyAnalyzerLogItemArray_clear(model->log_frequency);
  382. },
  383. true);
  384. }
  385. SubGhzFrequencyAnalyzer* subghz_frequency_analyzer_alloc() {
  386. SubGhzFrequencyAnalyzer* instance = malloc(sizeof(SubGhzFrequencyAnalyzer));
  387. // View allocation and configuration
  388. instance->last_frequency = 0;
  389. instance->view = view_alloc();
  390. view_allocate_model(
  391. instance->view, ViewModelTypeLocking, sizeof(SubGhzFrequencyAnalyzerModel));
  392. view_set_context(instance->view, instance);
  393. view_set_draw_callback(instance->view, (ViewDrawCallback)subghz_frequency_analyzer_draw);
  394. view_set_input_callback(instance->view, subghz_frequency_analyzer_input);
  395. view_set_enter_callback(instance->view, subghz_frequency_analyzer_enter);
  396. view_set_exit_callback(instance->view, subghz_frequency_analyzer_exit);
  397. with_view_model(
  398. instance->view, SubGhzFrequencyAnalyzerModel * model, { model->rssi = 0; }, true);
  399. return instance;
  400. }
  401. void subghz_frequency_analyzer_free(SubGhzFrequencyAnalyzer* instance) {
  402. furi_assert(instance);
  403. view_free(instance->view);
  404. free(instance);
  405. }
  406. View* subghz_frequency_analyzer_get_view(SubGhzFrequencyAnalyzer* instance) {
  407. furi_assert(instance);
  408. return instance->view;
  409. }