nrf24scan.c 52 KB

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  1. //
  2. // Written by vad7, 20.11.2022.
  3. //
  4. #include "nrf24scan.h"
  5. #include <furi.h>
  6. #include <furi_hal.h>
  7. #include <gui/gui.h>
  8. #include <dialogs/dialogs.h>
  9. #include <input/input.h>
  10. #include <stdlib.h>
  11. #include <dolphin/dolphin.h>
  12. #include <nrf24.h>
  13. #include <u8g2.h>
  14. #define TAG "nrf24scan"
  15. #define VERSION "2.0"
  16. #define MAX_CHANNEL 125
  17. #define MAX_ADDR 6
  18. #define SCAN_APP_PATH_FOLDER "/ext/nrf24scan"
  19. #define SETTINGS_FILENAME "addresses.txt"// Settings file format (1 parameter per line):
  20. // SNIFF - if present then sniff mode
  21. // Rate: 0/1/2 - rate in Mbps (=0.25/1/2)
  22. // Ch: 0..125 - default channel
  23. // ESB: 0/1 (1 - Enhanced ShockBurst)
  24. // DPL: 0/1 (1 - Dynamic Payload Length)
  25. // CRC: 0/1/2 (CRC length)
  26. // Payload: 1..32 (bytes)
  27. // P0: address P0 in hex (5 byte, LSB last)
  28. // P1: address P1 in hex (5 byte, LSB last)
  29. // P2: address P2, LSB in hex (1 byte)
  30. // P3: address P3, LSB in hex (1 byte)
  31. // P4: address P4, LSB in hex (1 byte)
  32. // P5: address P5, LSB in hex (1 byte)
  33. // captured data:
  34. // first byte = { RAW packet flag (0x80/0x00) } + { channel number }
  35. // second byte = { Payload len 5 bits, 0 = 32 } + {{ RAW packet: ESB flag 0x04/0x00 + address size-2 if RAW packet } or { pipe #(0..5) }},
  36. // ... up to MAX_LOG_RECORDS-1
  37. #define SNIFF_FILENAME "sniff.txt" // settings for sniff mode
  38. #define LOG_FILENAME "log"
  39. #define LOG_FILEEXT ".txt"
  40. #define MAX_LOG_RECORDS 200
  41. #define MAX_FOUND_RECORDS 100
  42. #define LOG_REC_SIZE 34 // max packet size
  43. #define VIEW_LOG_MAX_X 22
  44. #define VIEW_LOG_WIDTH_B 10 // bytes
  45. const char SettingsFld_Rate[] = "Rate:";
  46. const char SettingsFld_Ch[] = "Ch:";
  47. const char SettingsFld_ESB[] = "ESB:";
  48. const char SettingsFld_DPL[] = "DPL:";
  49. const char SettingsFld_CRC[] = "CRC:";
  50. const char SettingsFld_Payload[] = "Payload:";
  51. const char SettingsFld_Sniff[] = "SNIFF";
  52. char SettingsFld_Addr = 'P';
  53. Nrf24Scan* APP;
  54. uint8_t what_doing = 0; // 0 - setup, 1 - view log, 2 - view addresses
  55. uint8_t what_to_do = 1; // 0 - view, 1 - view & sniff, 2 - view & read, 3 - view & read selected addr
  56. uint8_t save_settings = 0;
  57. char screen_buf[64];
  58. char addr_file_name[32];
  59. uint8_t NRF_rate = 2; // 0 - 250Kbps, 1 - 1Mbps, 2 - 2Mbps
  60. uint8_t NRF_channel = 0;// 0..125
  61. uint8_t NRF_ESB = 1; // 0 - ShockBurst, 1 - Enhanced ShockBurst
  62. uint8_t NRF_DPL = 0; // 1 - Dynamic Payload Length
  63. uint8_t NRF_CRC = 2; // 1 - No, 1 - CRC 1byte, 2 - CRC 2byte
  64. uint8_t NRF_Payload = 32;// Payload len in bytes or Minimum payload in sniff mode, 0..32
  65. uint8_t NRF_Payload_sniff_min = 0;
  66. uint8_t NRF_AA_OFF = 0; // Disable Auto Acknowledgement
  67. bool NRF_ERROR = 0;
  68. struct ADDRS {
  69. uint8_t addr_P0[5]; // MSB first
  70. uint8_t addr_P1[5]; // MSB first
  71. uint8_t addr_P2; // LSB only, MSB bytes equal addr_P1
  72. uint8_t addr_P3; // LSB only, MSB bytes equal addr_P1
  73. uint8_t addr_P4; // LSB only, MSB bytes equal addr_P1
  74. uint8_t addr_P5; // LSB only, MSB bytes equal addr_P1
  75. uint8_t addr_len; // 2..5
  76. uint8_t addr_count;
  77. };
  78. struct ADDRS addrs;
  79. struct ADDRS addrs_sniff;
  80. bool sniff_loaded = 0;
  81. int16_t found_total;
  82. int16_t view_found = -1;
  83. int8_t log_to_file = 0; // 0 - no, 1 - yes(new), 2 - append, -1 - only clear
  84. uint16_t log_arr_idx;
  85. uint16_t view_log_arr_idx = 0;
  86. uint16_t view_log_arr_x = 0;
  87. bool save_to_new_log = true;
  88. uint16_t last_packet_send = -1;
  89. uint8_t last_packet_send_st = 0;
  90. int16_t find_channel_period = 0; // sec
  91. uint8_t menu_selected = 0;
  92. uint32_t start_time;
  93. uint8_t view_log_decode_PCF = 0; // view log: 1 - decode packet control field (9b) when ESB off. After pipe # (hex): <Payload len 6b><PID_2b+NO_ACK_1b>
  94. uint8_t view_log_decode_CRC = 0; // CRC bytes - 1/2, 0 - none
  95. #define menu_selected_max 5
  96. enum {
  97. Menu_open_file = 0,
  98. Menu_enter_channel,
  99. Menu_enter_rate,
  100. Menu_enter_scan_period,
  101. Menu_log,
  102. Menu_ok
  103. };
  104. //#define MIN(a, b) ((a<b)?a:b)
  105. static uint8_t GetHexVal(char hex) {
  106. return (uint8_t)hex - ((uint8_t)hex < 58 ? 48 : ((uint8_t)hex < 97 ? 55 : 87));
  107. }
  108. // Return num bytes in array
  109. static uint8_t ConvertHexToArray(char * hex, uint8_t * array, uint8_t maxlen) {
  110. uint8_t len = 0;
  111. while(maxlen) {
  112. uint8_t ch = *hex++;
  113. if(ch == 0) break;
  114. if(ch < '0') continue;
  115. *array++ = (GetHexVal(ch) << 4) + GetHexVal(*hex++);
  116. len++;
  117. maxlen--;
  118. }
  119. return len;
  120. }
  121. static void add_to_str_hex_bytes(char *out, char *arr, int bytes)
  122. {
  123. if(bytes <= 0) return;
  124. out += strlen(out);
  125. do {
  126. snprintf(out, 3, "%02X", *arr++);
  127. out += 2;
  128. } while(--bytes);
  129. }
  130. static void add_to_furi_str_hex_bytes(FuriString* str, char *arr, int bytes)
  131. {
  132. if(!bytes) return;
  133. do {
  134. furi_string_cat_printf(str, "%02X", *arr++);
  135. } while(--bytes);
  136. }
  137. static void add_to_str_hex_bytes_shift_9b(char *out, char *arr, int bytes)
  138. {
  139. if(bytes <= 0) return;
  140. out += strlen(out);
  141. arr++; // +8b
  142. do {
  143. snprintf(out, 4, "%02X", ((uint8_t)(*arr << 1)) | (*(arr+1) >> 7));
  144. arr++;
  145. out += 2;
  146. } while(--bytes);
  147. }
  148. void clear_log()
  149. {
  150. log_arr_idx = 0;
  151. view_log_arr_idx = 0;
  152. last_packet_send = -1;
  153. found_total = 0;
  154. view_found = 0;
  155. }
  156. void write_to_log_file(Storage* storage, bool f_settings)
  157. {
  158. if(log_arr_idx == 0 && !f_settings) return;
  159. Stream* file_stream = file_stream_alloc(storage);
  160. FuriString* str = furi_string_alloc();
  161. furi_string_set(str, SCAN_APP_PATH_FOLDER);
  162. furi_string_cat(str, "/");
  163. bool fl;
  164. if(f_settings) {
  165. furi_string_cat(str, SETTINGS_FILENAME);
  166. fl = file_stream_open(file_stream, furi_string_get_cstr(str), FSAM_READ_WRITE, FSOM_CREATE_ALWAYS);
  167. if(!fl) file_stream_close(file_stream);
  168. } else {
  169. furi_string_cat(str, LOG_FILENAME);
  170. furi_string_cat(str, LOG_FILEEXT);
  171. if(save_to_new_log) {
  172. int cnt = 1;
  173. do {
  174. fl = file_stream_open(file_stream, furi_string_get_cstr(str), FSAM_READ_WRITE, FSOM_CREATE_NEW);
  175. if(fl) break;
  176. file_stream_close(file_stream);
  177. furi_string_set(str, SCAN_APP_PATH_FOLDER);
  178. furi_string_cat(str, "/");
  179. furi_string_cat(str, LOG_FILENAME);
  180. furi_string_cat_printf(str, "-%02d", cnt);
  181. furi_string_cat(str, LOG_FILEEXT);
  182. } while(++cnt < 100);
  183. if(!fl) {
  184. FURI_LOG_E(TAG, "Failed to create new log file");
  185. notification_message(APP->notification, &sequence_blink_red_100);
  186. }
  187. } else {
  188. fl = file_stream_open(file_stream, furi_string_get_cstr(str), FSAM_READ_WRITE, FSOM_OPEN_APPEND);
  189. if(fl) {
  190. if(stream_size(file_stream) == 0) save_to_new_log = true;
  191. } else file_stream_close(file_stream);
  192. }
  193. }
  194. if(fl) {
  195. FURI_LOG_D(TAG, "Save to %s", furi_string_get_cstr(str));
  196. if(save_to_new_log || f_settings) {
  197. //if(what_to_do == 1) furi_string_printf(str, "%s\n", SettingsFld_Sniff); else furi_string_reset(str);
  198. furi_string_printf(str, "%s %d\n%s %d\n%s %d\n", SettingsFld_Rate, NRF_rate, SettingsFld_Ch, NRF_channel, SettingsFld_ESB, NRF_ESB);
  199. furi_string_cat_printf(str, "%s %d\n%s %d\n%s %d\n", SettingsFld_DPL, NRF_DPL, SettingsFld_CRC, NRF_CRC, SettingsFld_Payload, what_to_do == 1 ? NRF_Payload_sniff_min : NRF_Payload);
  200. furi_string_cat_printf(str, "P0: ");
  201. add_to_furi_str_hex_bytes(str, (char*)addrs.addr_P0, addrs.addr_len); furi_string_cat(str, "\n");
  202. if(addrs.addr_count > 1) { furi_string_cat_printf(str, "P1: "); add_to_furi_str_hex_bytes(str, (char*)addrs.addr_P1, addrs.addr_len); furi_string_cat(str, "\n"); }
  203. if(addrs.addr_count > 2) { furi_string_cat_printf(str, "P2: "); furi_string_cat_printf(str, "%02X\n", addrs.addr_P2); }
  204. if(addrs.addr_count > 3) { furi_string_cat_printf(str, "P3: "); furi_string_cat_printf(str, "%02X\n", addrs.addr_P3); }
  205. if(addrs.addr_count > 4) { furi_string_cat_printf(str, "P4: "); furi_string_cat_printf(str, "%02X\n", addrs.addr_P4); }
  206. if(addrs.addr_count > 5) { furi_string_cat_printf(str, "P5: "); furi_string_cat_printf(str, "%02X\n", addrs.addr_P5); }
  207. if(!(fl = stream_write_string(file_stream, str) == furi_string_size(str))) {
  208. FURI_LOG_E(TAG, "Failed to write header to file!");
  209. notification_message(APP->notification, &sequence_blink_red_100);
  210. }
  211. }
  212. if(fl) {
  213. if(f_settings) {
  214. save_settings = 0;
  215. if(strcmp(addr_file_name, "NONE") == 0) strcpy(addr_file_name, SETTINGS_FILENAME);
  216. } else {
  217. int i = 0;
  218. for(; i < log_arr_idx; i++) {
  219. furi_string_reset(str);
  220. uint8_t *ptr = APP->log_arr + i * LOG_REC_SIZE;
  221. int len;
  222. if(ptr[0] & 0x80) { // RAW
  223. len = (ptr[1] & 0b11)+2 + ((ptr[1] & 0b100) ? 2 : 0) + (ptr[1] >> 3) + 2; // addr + PCF? + payload + crcmax
  224. } else {
  225. len = (ptr[1] >> 3);
  226. if(len == 0) len = 32;
  227. }
  228. //if(len < NRF_Payload) len = NRF_Payload;
  229. add_to_furi_str_hex_bytes(str, (char*)ptr, len + 2);
  230. furi_string_cat(str, "\n");
  231. if(stream_write_string(file_stream, str) != furi_string_size(str)) {
  232. FURI_LOG_E(TAG, "Failed to write to file!");
  233. break;
  234. }
  235. }
  236. if(i == log_arr_idx) {
  237. notification_message(APP->notification, &sequence_blink_yellow_100);
  238. FURI_LOG_D(TAG, "File saved");
  239. }
  240. save_to_new_log = false;
  241. }
  242. }
  243. file_stream_close(file_stream);
  244. } else {
  245. FURI_LOG_E(TAG, "Failed to open file %s", furi_string_get_cstr(str));
  246. notification_message(APP->notification, &sequence_blink_red_100);
  247. }
  248. stream_free(file_stream);
  249. furi_string_free(str);
  250. }
  251. static bool select_settings_file(Stream* stream) {
  252. DialogsApp* dialogs = furi_record_open("dialogs");
  253. bool result = false;
  254. FuriString* path;
  255. path = furi_string_alloc();
  256. furi_string_set(path, SCAN_APP_PATH_FOLDER);
  257. DialogsFileBrowserOptions browser_options;
  258. dialog_file_browser_set_basic_options(&browser_options, ".txt", NULL);
  259. browser_options.hide_ext = false;
  260. bool ret = dialog_file_browser_show(dialogs, path, path, &browser_options);
  261. furi_record_close("dialogs");
  262. if(ret) {
  263. if(!file_stream_open(stream, furi_string_get_cstr(path), FSAM_READ, FSOM_OPEN_EXISTING)) {
  264. FURI_LOG_D(TAG, "Cannot open file \"%s\"", furi_string_get_cstr(path));
  265. file_stream_close(stream);
  266. } else {
  267. FURI_LOG_D(TAG, "Open file \"%s\"", furi_string_get_cstr(path));
  268. strncpy(addr_file_name, furi_string_get_cstr(path) + sizeof(SCAN_APP_PATH_FOLDER), sizeof(addr_file_name));
  269. result = true;
  270. }
  271. }
  272. furi_string_free(path);
  273. return result;
  274. }
  275. // 0 - success, otherwise an error
  276. static uint8_t load_settings_file(Stream* file_stream) {
  277. size_t file_size = 0;
  278. char* file_buf;
  279. uint8_t err = 5;
  280. file_size = stream_size(file_stream);
  281. if(file_size == (size_t)0) {
  282. FURI_LOG_D(TAG, "load failed. file_size: %d", file_size);
  283. return 1;
  284. }
  285. file_size = MIN(file_size, (size_t) LOG_REC_SIZE * MAX_LOG_RECORDS * 2 + 100);
  286. file_buf = malloc(file_size + 1);
  287. if(file_buf == NULL) {
  288. FURI_LOG_D(TAG, "Memory low, need: %d", file_size);
  289. return 2;
  290. }
  291. memset(file_buf, 0, file_size + 1);
  292. if(stream_read(file_stream, (uint8_t*)file_buf, file_size) == file_size) {
  293. FURI_LOG_D(TAG, "Loading settings file");
  294. char* line_ptr = file_buf;
  295. int16_t line_num = 0;
  296. what_to_do = 2;
  297. sniff_loaded = 0;
  298. bool log_loaded = false;
  299. while(line_ptr && (size_t)(line_ptr - file_buf) < file_size) {
  300. char* end_ptr = strstr((char*)line_ptr, "\n");
  301. if(end_ptr == NULL) end_ptr = file_buf + file_size; else *end_ptr = '\0';
  302. int line_len = end_ptr - line_ptr;
  303. if(*line_ptr == '\r' || line_len == 0) {
  304. line_ptr = end_ptr + 1;
  305. continue;
  306. }
  307. if(*(end_ptr - 1) < '0') {
  308. *(end_ptr - 1) = '\0';
  309. line_len--;
  310. }
  311. //FURI_LOG_D(TAG, " L#%d: [%d]%s", line_num, line_len, line_ptr);
  312. if(strncmp(line_ptr, SettingsFld_Rate, sizeof(SettingsFld_Rate)-1) == 0) {
  313. NRF_rate = atoi(line_ptr + sizeof(SettingsFld_Rate));
  314. } else if(strncmp(line_ptr, SettingsFld_Ch, sizeof(SettingsFld_Ch)-1) == 0) {
  315. NRF_channel = atoi(line_ptr + sizeof(SettingsFld_Ch));
  316. } else if(strncmp(line_ptr, SettingsFld_ESB, sizeof(SettingsFld_ESB)-1) == 0) {
  317. NRF_ESB = atoi(line_ptr + sizeof(SettingsFld_ESB));
  318. } else if(strncmp(line_ptr, SettingsFld_DPL, sizeof(SettingsFld_DPL)-1) == 0) {
  319. NRF_DPL = atoi(line_ptr + sizeof(SettingsFld_DPL));
  320. } else if(strncmp(line_ptr, SettingsFld_CRC, sizeof(SettingsFld_CRC)-1) == 0) {
  321. NRF_CRC = atoi(line_ptr + sizeof(SettingsFld_CRC));
  322. if(what_to_do == 1) view_log_decode_CRC = NRF_CRC;
  323. } else if(strncmp(line_ptr, SettingsFld_Payload, sizeof(SettingsFld_Payload)-1) == 0) {
  324. uint8_t pld = atoi(line_ptr + sizeof(SettingsFld_Payload));
  325. if(pld > 32) pld = 32;
  326. if(sniff_loaded) {
  327. NRF_Payload_sniff_min = pld;
  328. } else {
  329. if(pld == 0) pld = 32;
  330. NRF_Payload = pld;
  331. }
  332. } else if(strncmp(line_ptr, SettingsFld_Sniff, sizeof(SettingsFld_Sniff)-1) == 0) {
  333. what_to_do = 1;
  334. sniff_loaded = 1;
  335. } else if(*line_ptr == SettingsFld_Addr) {
  336. char a = *(++line_ptr);
  337. struct ADDRS *adr = sniff_loaded ? &addrs_sniff : &addrs;
  338. line_ptr += 3;
  339. switch(a) {
  340. case '0':
  341. memset(adr, 0, sizeof(addrs));
  342. adr->addr_len = ConvertHexToArray(line_ptr, adr->addr_P0, sniff_loaded ? 3 : 5);
  343. if(adr->addr_len >= 2) err = 0;
  344. break;
  345. case '1':
  346. ConvertHexToArray(line_ptr, adr->addr_P1, what_to_do == 1 ? 3 : 5);
  347. break;
  348. case '2':
  349. ConvertHexToArray(line_ptr, &adr->addr_P2, 1);
  350. break;
  351. case '3':
  352. ConvertHexToArray(line_ptr, &adr->addr_P3, 1);
  353. break;
  354. case '4':
  355. ConvertHexToArray(line_ptr, &adr->addr_P4, 1);
  356. break;
  357. case '5':
  358. ConvertHexToArray(line_ptr, &adr->addr_P5, 1);
  359. break;
  360. default:
  361. a = 0;
  362. break;
  363. }
  364. if(err == 0 && a) adr->addr_count = a - '0' + 1;
  365. } else if(line_len >= 3 * 2) { // data
  366. if(!log_loaded) {
  367. clear_log();
  368. what_to_do = 0;
  369. log_loaded = true;
  370. }
  371. if(log_arr_idx < MAX_LOG_RECORDS - 1) {
  372. ConvertHexToArray(line_ptr, APP->log_arr + log_arr_idx * LOG_REC_SIZE, LOG_REC_SIZE);
  373. log_arr_idx++;
  374. }
  375. }
  376. line_ptr = end_ptr + 1;
  377. line_num++;
  378. }
  379. } else {
  380. FURI_LOG_D(TAG, "load failed. file size: %d", file_size);
  381. err = 4;
  382. }
  383. free(file_buf);
  384. return err;
  385. }
  386. static void input_callback(InputEvent* input_event, FuriMessageQueue* event_queue) {
  387. furi_assert(event_queue);
  388. PluginEvent event = {.type = EventTypeKey, .input = *input_event};
  389. furi_message_queue_put(event_queue, &event, FuriWaitForever);
  390. }
  391. static void prepare_nrf24(bool fsend_packet)
  392. {
  393. nrf24_write_reg(nrf24_HANDLE, REG_STATUS, 0x70); // clear interrupts
  394. nrf24_write_reg(nrf24_HANDLE, REG_RF_SETUP, NRF_rate);
  395. uint8_t erx_addr = (1<<0); // Enable RX_P0
  396. struct ADDRS *adr = what_to_do == 1 ? &addrs_sniff : &addrs;
  397. if(!fsend_packet) {
  398. if(adr->addr_count == 0) return;
  399. uint8_t payload = NRF_Payload;
  400. if(what_to_do == 1) { // SNIFF
  401. //payload += 5 + NRF_CRC; // + addr_max + CRC
  402. //if(NRF_ESB) payload += 2;
  403. //if(payload > 32) payload = 32;
  404. payload = 32;
  405. nrf24_write_reg(nrf24_HANDLE, REG_CONFIG, 0x70); // Mask all interrupts
  406. nrf24_write_reg(nrf24_HANDLE, REG_SETUP_RETR, 0); // Automatic Retransmission
  407. nrf24_write_reg(nrf24_HANDLE, REG_EN_AA, 0); // Auto acknowledgement
  408. nrf24_write_reg(nrf24_HANDLE, REG_FEATURE, 0); // Enables the W_TX_PAYLOAD_NOACK command, Disable Payload with ACK, set Dynamic Payload
  409. } else {
  410. nrf24_write_reg(nrf24_HANDLE, REG_CONFIG, 0x70 | ((NRF_CRC == 1 ? 0b1000 : NRF_CRC == 2 ? 0b1100 : 0))); // Mask all interrupts
  411. nrf24_write_reg(nrf24_HANDLE, REG_SETUP_RETR, NRF_ESB ? 0x01 : 0); // Automatic Retransmission
  412. nrf24_write_reg(nrf24_HANDLE, REG_EN_AA, NRF_AA_OFF || !NRF_ESB ? 0 : 0x3F); // Auto acknowledgement
  413. nrf24_write_reg(nrf24_HANDLE, REG_FEATURE, NRF_DPL ? 4+1 : 1); // Enables the W_TX_PAYLOAD_NOACK command, Disable Payload with ACK, set Dynamic Payload
  414. }
  415. if(what_to_do == 3) {
  416. uint8_t *p = APP->log_arr + view_log_arr_idx * LOG_REC_SIZE;
  417. uint8_t addr_size = (*(p + 1) & 0b11) + 2;
  418. nrf24_set_maclen(nrf24_HANDLE, addr_size);
  419. nrf24_set_mac(REG_RX_ADDR_P0, p + 2, addr_size);
  420. nrf24_write_reg(nrf24_HANDLE, RX_PW_P0, *(p + 1) >> 3);
  421. nrf24_write_reg(nrf24_HANDLE, REG_EN_RXADDR, erx_addr);
  422. nrf24_write_reg(nrf24_HANDLE, REG_RF_CH, *p & 0x7F);
  423. nrf24_write_reg(nrf24_HANDLE, REG_CONFIG, 0x70 | ((NRF_CRC == 1 ? 0b1000 : NRF_CRC == 2 ? 0b1100 : 0))); // Mask all interrupts
  424. if(*(p + 1) & 0b100) { // ESB
  425. nrf24_write_reg(nrf24_HANDLE, REG_SETUP_RETR, 0x01); // Automatic Retransmission
  426. nrf24_write_reg(nrf24_HANDLE, REG_EN_AA, 0x3F); // Auto acknowledgement
  427. nrf24_write_reg(nrf24_HANDLE, REG_FEATURE, *(p + 2 + addr_size) >> 2 != 0x33 ? 4+1 : 1); // Enables the W_TX_PAYLOAD_NOACK command, Disable Payload with ACK, set Dynamic Payload
  428. } else {
  429. nrf24_write_reg(nrf24_HANDLE, REG_SETUP_RETR, 0); // Automatic Retransmission
  430. nrf24_write_reg(nrf24_HANDLE, REG_EN_AA, 0); // Auto acknowledgement
  431. }
  432. } else {
  433. nrf24_set_maclen(nrf24_HANDLE, adr->addr_len);
  434. nrf24_set_mac(REG_RX_ADDR_P0, adr->addr_P0, adr->addr_len);
  435. uint8_t tmp[5] = { 0 };
  436. nrf24_read_reg(nrf24_HANDLE, REG_RX_ADDR_P0, tmp, adr->addr_len);
  437. for(uint8_t i = 0; i < adr->addr_len / 2; i++) {
  438. uint8_t tb = tmp[i];
  439. tmp[i] = tmp[adr->addr_len - i - 1];
  440. tmp[adr->addr_len - i - 1] = tb;
  441. }
  442. NRF_ERROR = memcmp(adr->addr_P0, tmp, adr->addr_len) != 0;
  443. FURI_LOG_D(TAG, "Payload: %d", payload);
  444. nrf24_write_reg(nrf24_HANDLE, RX_PW_P0, payload);
  445. if(adr->addr_count > 1) {
  446. nrf24_set_mac(REG_RX_ADDR_P1, adr->addr_P1, adr->addr_len);
  447. nrf24_write_reg(nrf24_HANDLE, RX_PW_P1, payload);
  448. erx_addr |= (1<<1); // Enable RX_P1
  449. } else nrf24_write_reg(nrf24_HANDLE, RX_PW_P1, 0);
  450. if(adr->addr_count > 2) {
  451. nrf24_write_buf_reg(nrf24_HANDLE, REG_RX_ADDR_P2, &adr->addr_P2, 1);
  452. nrf24_write_reg(nrf24_HANDLE, RX_PW_P2, payload);
  453. erx_addr |= (1<<2); // Enable RX_P2
  454. } else nrf24_write_reg(nrf24_HANDLE, RX_PW_P2, 0);
  455. if(adr->addr_count > 3) {
  456. nrf24_write_buf_reg(nrf24_HANDLE, REG_RX_ADDR_P3, &adr->addr_P3, 1);
  457. nrf24_write_reg(nrf24_HANDLE, RX_PW_P3, payload);
  458. erx_addr |= (1<<3); // Enable RX_P3
  459. } else nrf24_write_reg(nrf24_HANDLE, RX_PW_P3, 0);
  460. if(adr->addr_count > 4) {
  461. nrf24_write_buf_reg(nrf24_HANDLE, REG_RX_ADDR_P4, &adr->addr_P4, 1);
  462. nrf24_write_reg(nrf24_HANDLE, RX_PW_P4, payload);
  463. erx_addr |= (1<<4); // Enable RX_P4
  464. } else nrf24_write_reg(nrf24_HANDLE, RX_PW_P4, 0);
  465. if(adr->addr_count > 5) {
  466. nrf24_write_buf_reg(nrf24_HANDLE, REG_RX_ADDR_P5, &adr->addr_P5, 1);
  467. nrf24_write_reg(nrf24_HANDLE, RX_PW_P5, payload);
  468. erx_addr |= (1<<5); // Enable RX_P5
  469. } else nrf24_write_reg(nrf24_HANDLE, RX_PW_P5, 0);
  470. nrf24_write_reg(nrf24_HANDLE, REG_DYNPD, NRF_DPL ? 0x3F : 0); // Enable dynamic payload reg
  471. nrf24_write_reg(nrf24_HANDLE, REG_EN_RXADDR, erx_addr);
  472. nrf24_write_reg(nrf24_HANDLE, REG_RF_CH, NRF_channel);
  473. }
  474. }
  475. nrf24_flush_rx(nrf24_HANDLE);
  476. nrf24_flush_tx(nrf24_HANDLE);
  477. nrf24_set_idle(nrf24_HANDLE);
  478. }
  479. void correct_NRF_Payload_sniff_min()
  480. {
  481. uint8_t pld = 32 - 3 - (NRF_ESB ? 2 : 0) - NRF_CRC + (addrs_sniff.addr_len - 2);
  482. if(NRF_Payload_sniff_min > pld) NRF_Payload_sniff_min = pld;
  483. }
  484. static void start_scanning()
  485. {
  486. FURI_LOG_D(TAG, "Start proc-%d: Ch=%d Rate=%d", what_to_do, NRF_channel, NRF_rate);
  487. if(what_to_do == 1) { // SNIFF
  488. correct_NRF_Payload_sniff_min();
  489. view_log_decode_CRC = NRF_CRC;
  490. } else if(sniff_loaded) { // Switch from sniff to scan/view
  491. }
  492. prepare_nrf24(false);
  493. if(NRF_ERROR) {
  494. FURI_LOG_E(TAG, "NRF R/W ERROR!");
  495. return;
  496. }
  497. nrf24_set_rx_mode(nrf24_HANDLE);
  498. start_time = furi_get_tick();
  499. }
  500. /*
  501. bool check_addr_found(uint8_t *pkt)
  502. {
  503. uint8_t idx = 255;
  504. if(addrs_found.addr_count > 0 && memcmp(addrs_found.addr_P0, pkt, addrs_found.addr_len) == 0) { idx = 0; goto x_end; }
  505. if(addrs_found.addr_count > 1 && memcmp(addrs_found.addr_P1, pkt, addrs_found.addr_len - 1) == 0) {
  506. if(addrs_found.addr_P1[addrs_found.addr_len - 1] == pkt[addrs_found.addr_len - 1]) { idx = 1; goto x_end; }
  507. if(addrs_found.addr_count > 2 && addrs_found.addr_P2 == pkt[addrs_found.addr_len - 1]) { idx = 2; goto x_end; }
  508. if(addrs_found.addr_count > 3 && addrs_found.addr_P3 == pkt[addrs_found.addr_len - 1]) { idx = 3; goto x_end; }
  509. if(addrs_found.addr_count > 4 && addrs_found.addr_P4 == pkt[addrs_found.addr_len - 1]) { idx = 4; goto x_end; }
  510. if(addrs_found.addr_count > 5 && addrs_found.addr_P5 == pkt[addrs_found.addr_len - 1]) { idx = 5; goto x_end; }
  511. }
  512. x_end:
  513. if(idx < sizeof(found_total) / sizeof(found_total[0])) {
  514. found_total[idx]++;
  515. return true;
  516. } else return false;
  517. }
  518. */
  519. // start bitnum = 7
  520. uint32_t calc_crc(uint32_t crc, uint8_t *ptr, uint8_t bitnum, uint16_t bits)
  521. {
  522. //uint8_t bitnum = 7;
  523. uint32_t crc_high, polynom;
  524. if(view_log_decode_CRC == 2) {
  525. crc_high = (1<<16);
  526. polynom = 0x1021; // X^16+X^12+X^5+1 => 0x11021 & 0xFFFF = 0x1021
  527. } else {
  528. crc_high = (1<<8);
  529. polynom = 0x07; // x^8+x^2+x^1+1 => 0x107 & 0xFF = 0x07
  530. }
  531. while(bits--) {
  532. crc <<= 1;
  533. if(((crc & crc_high) != 0) ^ ((*ptr >> bitnum) & 1)) crc ^= polynom;
  534. if(bitnum == 0) {
  535. ptr++;
  536. bitnum = 7;
  537. } else bitnum--;
  538. }
  539. return crc & (view_log_decode_CRC == 2 ? 0xFFFF : 0xFF);
  540. }
  541. // shifted 1 bit right
  542. uint32_t get_shifted_crc(uint8_t *pcrc)
  543. {
  544. uint32_t crc = ((*pcrc << 1) & 0xFF) | (*(pcrc+1) >> 7);
  545. if(view_log_decode_CRC == 2) {
  546. crc = (crc << 8) | ((*(pcrc+1) << 1) & 0xFF) | (*(pcrc+2) >> 7);
  547. }
  548. return crc;
  549. }
  550. bool check_packet(uint8_t *pkt, uint16_t size)
  551. {
  552. if(size < 3 || size > 32) return false;
  553. uint8_t b = *pkt;
  554. if(b == 0x55 || b == 0xAA || b == 0x00 || b == 0xFF) return false; // skip pkt when address begin with
  555. uint32_t prevcrc = 0xFFFFFFFF;
  556. bool found = false;
  557. uint8_t addr_size = 3;
  558. for(; addr_size <= 5; addr_size++) {
  559. if(NRF_ESB){
  560. uint8_t _payload = *(pkt + addr_size) >> 2;
  561. if((_payload > size - addr_size - 2 - view_log_decode_CRC && _payload != 0x33)) continue;
  562. uint8_t *p = pkt + addr_size;
  563. if(prevcrc == 0xFFFFFFFF) {
  564. prevcrc = calc_crc(view_log_decode_CRC == 2 ? 0xFFFF : 0xFF, pkt, 7, 3 * 8); // crc for smallest addr
  565. }
  566. uint32_t crc;
  567. if(addr_size > 3) crc = calc_crc(prevcrc, p - (addr_size - 3), 7, 8 * (addr_size - 3)); else crc = prevcrc;
  568. if(_payload != 0x33) { // DPL
  569. crc = calc_crc(crc, p, 7, 9 + _payload * 8);
  570. if(crc == get_shifted_crc(p + _payload + 1)) {
  571. *(pkt - 1) = ((_payload & 0x1F) << 3) + 0b100 + (addr_size - 2);
  572. FURI_LOG_D(TAG, "VALID CRC %X: dpl: %d, addr: %d", (uint16_t)crc, _payload, addr_size);
  573. found = true;
  574. break;
  575. }
  576. } else {
  577. crc = calc_crc(crc, p++, 7, 9); // PCF
  578. if(crc == get_shifted_crc(p)) {
  579. _payload = 0;
  580. found = true;
  581. } else {
  582. for(uint8_t i = 1; i < size - addr_size - view_log_decode_CRC; i++) {
  583. crc = calc_crc(crc, p++, 6, 8);
  584. if(crc == get_shifted_crc(p)) {
  585. _payload = i;
  586. found = true;
  587. break;
  588. }
  589. }
  590. }
  591. if(found) {
  592. *(pkt - 1) = ((_payload & 0x1F) << 3) + 0b100 + (addr_size - 2);
  593. FURI_LOG_D(TAG, "VALID CRC %X: pl: %d, addr: %d", (uint16_t)crc, _payload, addr_size);
  594. break;
  595. }
  596. }
  597. } else {
  598. uint8_t *p;
  599. if(addr_size == 3) {
  600. prevcrc = calc_crc(view_log_decode_CRC == 2 ? 0xFFFF : 0xFF, pkt, 7, 3 * 8); // crc for smallest addr
  601. p = pkt + addr_size;
  602. } else {
  603. p = pkt + addr_size - 1;
  604. prevcrc = calc_crc(prevcrc, p++, 7, 8);
  605. }
  606. uint32_t crc = prevcrc;
  607. if((view_log_decode_CRC == 1 && crc == *p) || (view_log_decode_CRC == 2 && crc == (uint32_t)((*p<<8) | *(p+1)))) {
  608. *(pkt - 1) = ((0 & 0x1F) << 3) + 0b000 + (addr_size - 2);
  609. FURI_LOG_D(TAG, "VALID CRC %X: pl: %d, addr: %d", (uint16_t)crc, 0, addr_size);
  610. found = true;
  611. break;
  612. }
  613. for(uint8_t i = 1; i <= size - addr_size - view_log_decode_CRC; i++) {
  614. crc = calc_crc(crc, p++, 7, 8);
  615. if((view_log_decode_CRC == 1 && crc == *p) || (view_log_decode_CRC == 2 && crc == (uint32_t)((*p<<8) | *(p+1)))) {
  616. *(pkt - 1) = ((i & 0x1F) << 3) + 0b000 + (addr_size - 2);
  617. FURI_LOG_D(TAG, "VALID CRC %X: pl: %d, addr: %d", (uint16_t)crc, i, addr_size);
  618. found = true;
  619. break;
  620. }
  621. }
  622. if(found) break;
  623. }
  624. }
  625. if(found) {
  626. if(furi_log_get_level() == FuriLogLevelDebug) {
  627. char dbuf[65];
  628. dbuf[0] = 0;
  629. add_to_str_hex_bytes(dbuf, (char*)pkt, size);
  630. FURI_LOG_D(TAG, "PKT%02X: %s (%d)", *(pkt - 1), dbuf, size);
  631. }
  632. int16_t i = 0;
  633. for(; i < found_total; i++) {
  634. if(APP->found[i].addr_size != addr_size) continue;
  635. if(memcmp(APP->found[i].addr, pkt, addr_size) == 0) break;
  636. }
  637. if(i != found_total) { // found
  638. APP->found[i].total++;
  639. } else {
  640. uint8_t *p = APP->log_arr + 2;
  641. for(i = 0; i < log_arr_idx; i++, p += LOG_REC_SIZE) {
  642. if((*(p - 2) & 0x80) && (*(p - 1) & 0b11) + 2 == addr_size && pkt != p) {
  643. if(memcmp(p, pkt, addr_size) == 0) break;
  644. }
  645. }
  646. if(i != log_arr_idx && found_total < MAX_FOUND_RECORDS) { // found -> 2
  647. memset(&APP->found[found_total], 0, sizeof(struct FOUND));
  648. memcpy(APP->found[found_total].addr, pkt, addr_size);
  649. APP->found[found_total].addr_size = addr_size;
  650. APP->found[found_total].total = 2;
  651. if(found_total == 0) view_found = 0;
  652. found_total++;
  653. }
  654. }
  655. /*
  656. if(addrs_found.addr_count == 0) {
  657. memcpy(addrs_found.addr_P0, pkt, addr_size);
  658. addrs_found.addr_len = addr_size;
  659. found_total[0]++;
  660. addrs_found.addr_count++;
  661. } else if(addr_size == addrs_found.addr_len) {
  662. if(!check_addr_found(pkt)) {
  663. if(addrs_found.addr_count == 1) {
  664. memcpy(addrs_found.addr_P1, pkt, addr_size);
  665. found_total[1]++;
  666. addrs_found.addr_count++;
  667. } else if(addrs_found.addr_count == 2) {
  668. if(memcmp(addrs_found.addr_P1, pkt, addr_size - 1) == 0) {
  669. addrs_found.addr_P2 = pkt[addr_size - 1];
  670. found_total[2]++;
  671. addrs_found.addr_count++;
  672. } else if(memcmp(addrs_found.addr_P0, pkt, addr_size - 1) == 0) {
  673. uint8_t tmp[5];
  674. memcpy(tmp, addrs_found.addr_P1, addr_size); // swap P0-P1
  675. memcpy(addrs_found.addr_P1, addrs_found.addr_P0, addr_size);
  676. memcpy(addrs_found.addr_P0, tmp, addr_size);
  677. uint32_t n = found_total[0];
  678. found_total[0] = found_total[1];
  679. found_total[1] = n;
  680. addrs_found.addr_P2 = pkt[addr_size - 1];
  681. found_total[2]++;
  682. addrs_found.addr_count++;
  683. }
  684. } else if(addrs_found.addr_count >= 3) {
  685. if(memcmp(addrs_found.addr_P1, pkt, addr_size - 1) == 0) {
  686. if(addrs_found.addr_count == 3) {
  687. addrs_found.addr_P3 = pkt[addr_size - 1];
  688. found_total[3]++;
  689. addrs_found.addr_count++;
  690. } else if(addrs_found.addr_count == 4) {
  691. addrs_found.addr_P4 = pkt[addr_size - 1];
  692. found_total[4]++;
  693. addrs_found.addr_count++;
  694. } else if(addrs_found.addr_count == 5) {
  695. addrs_found.addr_P5 = pkt[addr_size - 1];
  696. found_total[5]++;
  697. addrs_found.addr_count++;
  698. }
  699. }
  700. }
  701. }
  702. }
  703. */
  704. }
  705. return found;
  706. }
  707. bool nrf24_read_newpacket() {
  708. if(APP->log_arr == NULL) return false;
  709. bool found = false;
  710. uint8_t packetsize;
  711. uint8_t *ptr = APP->log_arr + log_arr_idx * LOG_REC_SIZE;
  712. uint8_t st;
  713. /* test pkts
  714. static int iii = 0;
  715. char ppp[][65] = { "54A545109411544BAAE50110A3282512A9A1152A565B22AAA48AB751A5",
  716. "C8C8C0CE7A81018007202FFFFC",
  717. "EAEC8C8C2CE3C0101006FB737A",
  718. "BEBFFFEC8C8C1CC00542AF7CFF7DBEAFE3397FEAFEF1DDFA4AEF7FDBB7CDEABC",
  719. "FEAAAABEAAFEAAC8C8C28E1C810080490ABAF7FEEB76B7FDFEF7DFFB47FB97FE",
  720. "A8AAC8C8C1CE20163DF7DFFD00",
  721. "AFFEEFEC8C8C2CE4001010062F037F9BFFDF1DAD5EDBEF55DD9AB535FCB67F55",
  722. "AC8C8C1CE5F8102000D503D7ABF",
  723. "EE03080B4712555555550E80",
  724. "C8C8C41385818280127100",
  725. "AAC8C8C3CE05818280119000"
  726. "AC8C8C413858182801271000",
  727. "AAC8C8C40B0305028542"
  728. };
  729. if(iii < 13) {
  730. ConvertHexToArray(ppp[iii], ptr + 2, 32);
  731. st = RX_DR;
  732. packetsize = 32;
  733. iii++;
  734. } else
  735. //*/
  736. st = nrf24_rxpacket(nrf24_HANDLE, ptr + 2 + (what_to_do == 1 ? addrs_sniff.addr_len - 2 : 0), &packetsize, what_to_do == 1 ? 32 : !NRF_DPL);
  737. if(st & RX_DR) {
  738. st = (st >> 1) & 7; // pipe #
  739. if(what_to_do == 1) { // SNIFF
  740. *ptr++ = NRF_channel | 0x80;
  741. *ptr++ = st; // pipe #
  742. if(addrs_sniff.addr_len > 2) {
  743. *ptr = st == 0 ? addrs_sniff.addr_P0[2] : st == 1 ? addrs_sniff.addr_P1[2] : st == 2 ? addrs_sniff.addr_P2 : st == 3 ? addrs_sniff.addr_P3 : st == 4 ? addrs_sniff.addr_P4 : addrs_sniff.addr_P5;
  744. }
  745. if(!check_packet(ptr, packetsize)) {
  746. if(addrs_sniff.addr_len > 2) return false; // skip if mac MSB added to preamble
  747. uint8_t shifted = 0;
  748. uint8_t shift_max = (32 - 3 - NRF_Payload_sniff_min - NRF_CRC) * 8 - 1;
  749. while(shifted++ < shift_max) { // Shift packet left by one bit if minimum payload fits
  750. uint8_t i = 0;
  751. for(; i < packetsize - 1; i++) ptr[i] = (ptr[i] << 1) | (ptr[i + 1] >> 7);
  752. ptr[i] <<= 1;
  753. if(check_packet(ptr, packetsize - (shifted >> 3) - 1)) goto x_valid;
  754. }
  755. return false;
  756. }
  757. } else {
  758. *ptr++ = NRF_channel;
  759. *ptr++ = ((packetsize & 0x1F) << 3) | st; // payload size + pipe #
  760. }
  761. x_valid:
  762. if(packetsize < 32) memset(ptr + packetsize, 0, 32 - packetsize);
  763. if(log_arr_idx < MAX_LOG_RECORDS - 1) {
  764. log_arr_idx++;
  765. } else {
  766. if(log_to_file == 1 || log_to_file == 2) {
  767. write_to_log_file(APP->storage, false);
  768. clear_log();
  769. } else {
  770. memmove(APP->log_arr, APP->log_arr + LOG_REC_SIZE, log_arr_idx * LOG_REC_SIZE);
  771. }
  772. }
  773. FURI_LOG_D(TAG, "Found packet #%d pipe %d", log_arr_idx, st);
  774. notification_message(APP->notification, &sequence_blink_white_100);
  775. found = true;
  776. }
  777. return found;
  778. }
  779. bool nrf24_send_packet()
  780. {
  781. if(log_arr_idx == 0) return false;
  782. prepare_nrf24(!what_to_do);
  783. uint8_t *ptr = APP->log_arr + view_log_arr_idx * LOG_REC_SIZE;
  784. nrf24_write_reg(nrf24_HANDLE, REG_RF_CH, *ptr & 0x7F);
  785. if(*ptr & 0x80) { // RAW packet
  786. //uint8_t pktinfo = *(ptr + 1);
  787. //nrf24_set_maclen(nrf24_HANDLE, (pktinfo & 0b11) + 2);
  788. //if(pktinfo & 0b100) { // ESB
  789. nrf24_write_reg(nrf24_HANDLE, REG_SETUP_RETR, 0); // No Automatic Retransmission
  790. nrf24_write_reg(nrf24_HANDLE, REG_EN_AA, 0); // No Auto acknowledgement
  791. //}
  792. //uint8_t alen = (*(ptr + 2) & 0b11) + 2;
  793. uint8_t adr[2];
  794. adr[0] = ptr[2];
  795. adr[1] = ptr[3];
  796. nrf24_set_maclen(nrf24_HANDLE, 2);
  797. nrf24_set_mac(REG_RX_ADDR_P0, adr, 2);
  798. nrf24_set_mac(REG_TX_ADDR, adr, 2);
  799. last_packet_send_st = nrf24_txpacket(nrf24_HANDLE, ptr + 2 + 2, 32 - 2, false);
  800. } else {
  801. nrf24_write_reg(nrf24_HANDLE, REG_SETUP_RETR, NRF_ESB ? 0x11 : 0); // Automatic Retransmission
  802. nrf24_write_reg(nrf24_HANDLE, REG_EN_AA, NRF_AA_OFF || !NRF_ESB ? 0 : 0x3F); // Auto acknowledgement
  803. uint8_t *adr;
  804. uint8_t a = *(ptr + 1) & 0b111;
  805. if(a < 2) {
  806. if(a == 0) adr = addrs.addr_P0; else adr = addrs.addr_P1;
  807. nrf24_set_mac(REG_RX_ADDR_P0, adr, addrs.addr_len);
  808. nrf24_set_mac(REG_TX_ADDR, adr, addrs.addr_len);
  809. } else {
  810. uint8_t buf[5];
  811. memcpy(buf, addrs.addr_P1, addrs.addr_len - 1);
  812. buf[addrs.addr_len - 1] = a == 2 ? addrs.addr_P2 : a == 3 ? addrs.addr_P3 : a == 4 ? addrs.addr_P4 : addrs.addr_P5;
  813. nrf24_set_mac(REG_RX_ADDR_P0, buf, addrs.addr_len);
  814. nrf24_set_mac(REG_TX_ADDR, buf, addrs.addr_len);
  815. }
  816. a = *(ptr + 1) >> 3;
  817. if(a == 0) a = 32;
  818. nrf24_write_reg(nrf24_HANDLE, REG_CONFIG, 0x70 | ((NRF_CRC == 1 ? 0b1000 : NRF_CRC == 2 ? 0b1100 : 0))); // Mask all interrupts
  819. nrf24_write_reg(nrf24_HANDLE, REG_DYNPD, NRF_DPL ? 0x3F : 0); // Enable dynamic payload reg
  820. last_packet_send_st = nrf24_txpacket(nrf24_HANDLE, ptr + 2, a, false);
  821. }
  822. last_packet_send = view_log_arr_idx;
  823. notification_message(APP->notification, last_packet_send_st ? &sequence_blink_blue_100 : &sequence_blink_red_100);
  824. if(what_to_do) start_scanning();
  825. return last_packet_send_st;
  826. }
  827. static void render_callback(Canvas* const canvas, void* ctx) {
  828. const PluginState* plugin_state = acquire_mutex((ValueMutex*)ctx, 25);
  829. if(plugin_state == NULL) return;
  830. //canvas_draw_frame(canvas, 0, 0, 128, 64); // border around the edge of the screen
  831. if(what_doing == 0) {
  832. canvas_set_font(canvas, FontSecondary); // 8x10 font, 6 lines
  833. if(save_settings) snprintf(screen_buf, sizeof(screen_buf), "Save: %s", SETTINGS_FILENAME); // menu_selected = 0
  834. else snprintf(screen_buf, sizeof(screen_buf), "Load: %s", addr_file_name);
  835. canvas_draw_str(canvas, 10, 10, screen_buf);
  836. snprintf(screen_buf, sizeof(screen_buf), "Ch: %d", NRF_channel); // menu_selected = 1
  837. canvas_draw_str(canvas, 10, 20, screen_buf);
  838. if(NRF_ESB) {
  839. strcpy(screen_buf, "ESB");
  840. if(NRF_DPL) strcat(screen_buf, " DPL");
  841. canvas_draw_str(canvas, 78, 20, screen_buf);
  842. }
  843. if(NRF_AA_OFF) { canvas_draw_str(canvas, 61, 20, "AA"); canvas_draw_line(canvas, 60, 21, 72, 12); }
  844. snprintf(screen_buf, sizeof(screen_buf), "Rate: %sbps", NRF_rate == 2 ? "2M" : NRF_rate == 1 ? "1M" : "250K"); // menu_selected = 2
  845. canvas_draw_str(canvas, 10, 30, screen_buf);
  846. if(what_to_do == 1) snprintf(screen_buf, sizeof(screen_buf), "Min Payl: %d", NRF_Payload_sniff_min);
  847. else if(what_to_do == 3) {
  848. uint8_t *p = APP->log_arr + view_log_arr_idx * LOG_REC_SIZE;
  849. snprintf(screen_buf, sizeof(screen_buf), "Payload: %d", log_arr_idx && (*p & 0x80) ? *(p + 1) >> 3 : NRF_Payload);
  850. } else snprintf(screen_buf, sizeof(screen_buf), "Payload: %d", NRF_Payload);
  851. canvas_draw_str(canvas, 78, 30, screen_buf);
  852. strcpy(screen_buf, "Next Ch time: "); // menu_selected = 3
  853. if(find_channel_period == 0) strcat(screen_buf, "off"); else snprintf(screen_buf + strlen(screen_buf), sizeof(screen_buf), "%d s", find_channel_period);
  854. canvas_draw_str(canvas, 10, 40, screen_buf);
  855. if(NRF_CRC == 1) canvas_draw_str(canvas, 99, 40, "CRC1");
  856. else if(NRF_CRC == 2) canvas_draw_str(canvas, 99, 40, "CRC2");
  857. snprintf(screen_buf, sizeof(screen_buf), "Log: %s", log_to_file == 0 ? "No" : log_to_file == 1 ? "Yes" : log_to_file == 2 ? "Append" : "Clear");// menu_selected = 4
  858. canvas_draw_str(canvas, 10, 50, screen_buf);
  859. if(what_to_do) { // menu_selected = 5
  860. if(NRF_ERROR) snprintf(screen_buf, sizeof(screen_buf), "nRF24L01+ r/w ERROR!");
  861. else {
  862. if(what_to_do == 1) snprintf(screen_buf, sizeof(screen_buf), "Start sniff");
  863. else {
  864. uint8_t *p;
  865. if(what_to_do == 3 && log_arr_idx && *(p = APP->log_arr + view_log_arr_idx * LOG_REC_SIZE) & 0x80) { // +RAW
  866. snprintf(screen_buf, sizeof(screen_buf), "Start read: ");
  867. add_to_str_hex_bytes(screen_buf, (char*)p + 2, (*(p + 1) & 0b11) + 2);
  868. } else snprintf(screen_buf, sizeof(screen_buf), "Start scan (pipes: %d)", addrs.addr_count);
  869. }
  870. }
  871. } else snprintf(screen_buf, sizeof(screen_buf), "View log (pipes: %d)", addrs.addr_count);
  872. canvas_draw_str(canvas, 10, 60, screen_buf);
  873. canvas_draw_str(canvas, 0, menu_selected * 10 + 10, ">");
  874. } else if(what_doing == 1){
  875. canvas_set_font(canvas, FontBatteryPercent); // 5x7 font, 9 lines
  876. bool ch2 = false;
  877. screen_buf[0] = '\0';
  878. if(view_log_arr_x == 0) { strcat(screen_buf, " "); ch2 = true;
  879. } else {
  880. snprintf(screen_buf, sizeof(screen_buf), "<%d", view_log_arr_x);
  881. if(view_log_arr_x < VIEW_LOG_MAX_X) ch2 = true;
  882. }
  883. snprintf(screen_buf + strlen(screen_buf), sizeof(screen_buf), " %s ch: %d - %d.", what_to_do == 1 ? "Sniff" : what_to_do == 0 ? "View" : "Read", NRF_channel, log_arr_idx);
  884. canvas_draw_str(canvas, 0, 7, screen_buf);
  885. if(ch2) canvas_draw_str(canvas, 121, 7, ">");
  886. if(log_arr_idx) {
  887. if(view_log_arr_idx >= log_arr_idx) view_log_arr_idx = log_arr_idx - 1;
  888. uint16_t page = view_log_arr_idx & ~7;
  889. for(uint8_t i = 0; i < 8 && page + i < log_arr_idx; i++) {
  890. screen_buf[0] = (view_log_arr_idx & 7) != i ? ' ' : last_packet_send != view_log_arr_idx ? '>' : last_packet_send_st ? '*' : '!';
  891. screen_buf[1] = '\0';
  892. uint8_t *ptr = APP->log_arr + (page + i) * LOG_REC_SIZE;
  893. uint8_t channel = *ptr++;
  894. uint8_t *crcptr = NULL;
  895. uint8_t pre = 0;
  896. int count = 0;
  897. if(channel & 0x80) { // RAW packet: nn:>{.address..}-xxxxxxxx
  898. uint8_t pktinfo = *ptr++;
  899. bool _PCF = pktinfo & 0b100;
  900. uint8_t plen = count = (pktinfo >> 3);
  901. uint8_t adrsize = (pktinfo & 0b11) + 2;
  902. plen += adrsize;
  903. count += view_log_decode_CRC;
  904. if(view_log_arr_x > 0) count -= view_log_arr_x - 1;
  905. uint8_t max_width = VIEW_LOG_WIDTH_B;
  906. if(view_log_arr_x == 0) max_width -= 5;
  907. if(count > max_width) count = max_width;
  908. if(count > 0) {
  909. uint8_t *pcrc = ptr;
  910. uint32_t crc;
  911. crc = view_log_decode_CRC == 2 ? 0xFFFF : 0xFF;
  912. crc = calc_crc(crc, pcrc, 7, (_PCF? 9 : 0) + plen * 8);
  913. pcrc += plen;
  914. if(_PCF) { //ESB
  915. pcrc++;
  916. if(crc == get_shifted_crc(pcrc)) crcptr = pcrc;
  917. } else {
  918. if((view_log_decode_CRC == 1 && crc == *pcrc) || (view_log_decode_CRC == 2 && crc == (uint32_t)((*pcrc<<8) | *(pcrc+1)))) {
  919. crcptr = pcrc;
  920. }
  921. }
  922. if(view_log_arr_x == 0) {
  923. add_to_str_hex_bytes(screen_buf, (char*)ptr, adrsize);
  924. for(int8_t j = 5 - adrsize; j > 0; j--) strcat(screen_buf, " ");
  925. strcat(screen_buf, "-");
  926. pre += 5 * 2 + 1;
  927. } else {
  928. ptr += view_log_arr_x - 1;
  929. }
  930. ptr += adrsize;
  931. if(_PCF) add_to_str_hex_bytes_shift_9b(screen_buf, (char*)ptr++, count); else add_to_str_hex_bytes(screen_buf, (char*)ptr, count);
  932. }
  933. } else {
  934. uint8_t dpl = *ptr++;
  935. uint8_t pipe = dpl & 0b111;
  936. dpl >>= 3;
  937. if(dpl == 0) dpl = 32;
  938. count = dpl - view_log_arr_x;
  939. if(view_log_decode_PCF) count--;
  940. uint8_t max_width = VIEW_LOG_WIDTH_B;
  941. if(view_log_arr_x == 0) {
  942. if(addrs.addr_count > 1) max_width--;
  943. if(view_log_decode_PCF) max_width -= 2;
  944. }
  945. if(count > max_width) count = max_width;
  946. if(count > 0) {
  947. if(view_log_decode_CRC) {
  948. static uint16_t prev_addr_CRC;
  949. static int8_t prev_pipe = -1;
  950. uint8_t *pcrc = ptr;
  951. uint32_t crc;
  952. if(prev_pipe == pipe) { crc = prev_addr_CRC;
  953. } else {
  954. crc = view_log_decode_CRC == 2 ? 0xFFFF : 0xFF;
  955. if(pipe <= 1) { crc = calc_crc(crc, pipe == 0 ? addrs.addr_P0 : addrs.addr_P1, 7, addrs.addr_len * 8);
  956. } else {
  957. crc = calc_crc(crc, addrs.addr_P1, 7, (addrs.addr_len - 1) * 8);
  958. crc = calc_crc(crc, pipe == 2 ? &addrs.addr_P2 : pipe == 3 ? &addrs.addr_P3 : pipe == 4 ? &addrs.addr_P4 : &addrs.addr_P5, 7, 8);
  959. }
  960. prev_addr_CRC = crc;
  961. prev_pipe = pipe;
  962. }
  963. if(view_log_decode_PCF) {
  964. crc = calc_crc(crc, pcrc++, 7, 9);
  965. if(crc == get_shifted_crc(pcrc)) crcptr = pcrc;
  966. if(crcptr == NULL) {
  967. for(int8_t j = 0; j < (int8_t)dpl - view_log_decode_CRC - 1; j++) {
  968. crc = calc_crc(crc, pcrc++, 6, 8);
  969. if(crc == get_shifted_crc(pcrc)) {
  970. crcptr = pcrc;
  971. break;
  972. }
  973. }
  974. }
  975. } else {
  976. for(int8_t j = 0; j < (int8_t)dpl - view_log_decode_CRC; j++) {
  977. crc = calc_crc(crc, pcrc++, 7, 8);
  978. if((view_log_decode_CRC == 1 && crc == *pcrc) || (view_log_decode_CRC == 2 && crc == (uint32_t)((*pcrc<<8) | *(pcrc+1)))) {
  979. crcptr = pcrc;
  980. break;
  981. }
  982. }
  983. }
  984. }
  985. }
  986. ptr += view_log_arr_x;
  987. if(max_width < VIEW_LOG_WIDTH_B) {
  988. pre += snprintf(screen_buf + 1, 10, "%X-", pipe);
  989. if(view_log_decode_PCF) {
  990. pre += snprintf(screen_buf + strlen(screen_buf), 10, "%02X%01X-", *ptr >> 2, ((*ptr & 3) << 1) | (*(ptr+1) >> 7));
  991. }
  992. }
  993. if(view_log_decode_PCF) add_to_str_hex_bytes_shift_9b(screen_buf, (char*)ptr++, count); else add_to_str_hex_bytes(screen_buf, (char*)ptr, count);
  994. }
  995. uint16_t y = 14 + i * 7;
  996. canvas_draw_str(canvas, 3 * 5, y, screen_buf);
  997. uint16_t x = page + i + 1;
  998. if(x > 99) {
  999. snprintf(screen_buf, 16, "%d", x);
  1000. canvas_draw_str(canvas, 1, y, screen_buf + 1);
  1001. canvas_draw_frame(canvas, 0, y - 2, 1, 2);
  1002. x = 2;
  1003. } else {
  1004. x = snprintf(screen_buf, 16, "%d", x);
  1005. canvas_draw_str(canvas, 0, y, screen_buf);
  1006. }
  1007. if(crcptr) { // 5x7 font, 9 lines
  1008. canvas_draw_str(canvas, x * 5, y, "=");
  1009. int n = crcptr - (uint8_t*)ptr;
  1010. if(n > -view_log_decode_CRC && n < count) {
  1011. int len;
  1012. x = (4 + pre) * 5;
  1013. if(n < 0) {
  1014. len = view_log_decode_CRC + n;
  1015. n = 0;
  1016. } else {
  1017. len = MIN(view_log_decode_CRC, count - n);
  1018. x += n * 2 * 5;
  1019. canvas_draw_line(canvas, x - 1, y, x - 1, y - 1);
  1020. }
  1021. canvas_draw_line(canvas, x - 1, y, n = x + len * 2 * 5 - 1, y);
  1022. canvas_draw_line(canvas, n, y, n, y - 1);
  1023. }
  1024. } else canvas_draw_str(canvas, x * 5, y, ":");
  1025. }
  1026. }
  1027. } else {
  1028. canvas_set_font(canvas, FontBatteryPercent); // 5x7 font, 9 lines
  1029. if(view_found >= 0) {
  1030. snprintf(screen_buf, 50, "Found > 1: %d", found_total);
  1031. canvas_draw_str(canvas, 0, 1 * 7, screen_buf);
  1032. int16_t idx = view_found * 7;
  1033. for(uint8_t i = 0; i < 7; i++, idx++) {
  1034. if(idx >= found_total) break;
  1035. snprintf(screen_buf, 16, "%d. ", idx + 1);
  1036. add_to_str_hex_bytes(screen_buf, (char*)APP->found[idx].addr, APP->found[idx].addr_size);
  1037. if(APP->found[idx].addr_size == 3) strcat(screen_buf, " "); else if(APP->found[idx].addr_size == 4) strcat(screen_buf, " ");
  1038. snprintf(screen_buf + strlen(screen_buf), 16, " - %d", APP->found[idx].total);
  1039. canvas_draw_str(canvas, 0, (2 + i) * 7, screen_buf);
  1040. }
  1041. } else {
  1042. struct ADDRS *a;
  1043. if(what_to_do == 1) {
  1044. a = &addrs_sniff;
  1045. canvas_draw_str(canvas, 0, 1 * 7, "Sniff prefix:");
  1046. } else {
  1047. a = &addrs;
  1048. canvas_draw_str(canvas, 0, 1 * 7, "Addresses:");
  1049. }
  1050. if(a->addr_count > 0) {
  1051. snprintf(screen_buf, sizeof(screen_buf), "P0: ");
  1052. add_to_str_hex_bytes(screen_buf, (char*)a->addr_P0, a->addr_len);
  1053. canvas_draw_str(canvas, 0, 2 * 7, screen_buf);
  1054. }
  1055. if(a->addr_count > 1) {
  1056. snprintf(screen_buf, sizeof(screen_buf), "P1: ");
  1057. add_to_str_hex_bytes(screen_buf, (char*)a->addr_P1, a->addr_len);
  1058. canvas_draw_str(canvas, 0, 3 * 7, screen_buf);
  1059. }
  1060. if(a->addr_count > 2) {
  1061. canvas_draw_str(canvas, 0, 4 * 7, "P2: ");
  1062. snprintf(screen_buf, sizeof(screen_buf), "%02X", a->addr_P2);
  1063. canvas_draw_str(canvas, (4 + (a->addr_len - 1) * 2) * 5, 4 * 7, screen_buf);
  1064. }
  1065. if(a->addr_count > 3) {
  1066. canvas_draw_str(canvas, 0, 5 * 7, "P3: ");
  1067. snprintf(screen_buf, sizeof(screen_buf), "%02X", a->addr_P3);
  1068. canvas_draw_str(canvas, (4 + (a->addr_len - 1) * 2) * 5, 5 * 7, screen_buf);
  1069. }
  1070. if(a->addr_count > 4) {
  1071. canvas_draw_str(canvas, 0, 6 * 7, "P4: ");
  1072. snprintf(screen_buf, sizeof(screen_buf), "%02X", a->addr_P4);
  1073. canvas_draw_str(canvas, (4 + (a->addr_len - 1) * 2) * 5, 6 * 7, screen_buf);
  1074. }
  1075. if(a->addr_count > 5) {
  1076. canvas_draw_str(canvas, 0, 7 * 7, "P5: ");
  1077. snprintf(screen_buf, sizeof(screen_buf), "%02X", a->addr_P5);
  1078. canvas_draw_str(canvas, (4 + (a->addr_len - 1) * 2) * 5, 7 * 7, screen_buf);
  1079. }
  1080. }
  1081. if(log_arr_idx) {
  1082. uint8_t *ptr = APP->log_arr + view_log_arr_idx * LOG_REC_SIZE;
  1083. uint8_t pktinfo = *(ptr + 1);
  1084. snprintf(screen_buf, 32, ">Ch: %d L: %d", *ptr & 0x7F, pktinfo >> 3);
  1085. if(*ptr & 0x80) {
  1086. strcat(screen_buf, " RAW");
  1087. if(pktinfo & 0b100) {
  1088. snprintf(screen_buf + strlen(screen_buf), 16, " ESB %s", *(ptr + 2 + (pktinfo & 0b11) + 2) >> 2 != 0x33 ? "DPL" : "");
  1089. }
  1090. }
  1091. canvas_draw_str(canvas, 0, 8 * 7, screen_buf);
  1092. }
  1093. screen_buf[0] = 'v';
  1094. strcpy(screen_buf + 1, VERSION);
  1095. canvas_draw_str(canvas, 105, 7, screen_buf);
  1096. if(view_log_decode_PCF || view_log_decode_CRC) {
  1097. strcpy(screen_buf, "Decode: ");
  1098. if(view_log_decode_PCF) strcat(screen_buf, "ESB ");
  1099. if(view_log_decode_CRC == 1) strcat(screen_buf, "CRC1");
  1100. else if(view_log_decode_CRC == 2) strcat(screen_buf, "CRC2");
  1101. canvas_draw_str(canvas, 0, 64, screen_buf);
  1102. }
  1103. }
  1104. release_mutex((ValueMutex*)ctx, plugin_state);
  1105. }
  1106. int32_t nrf24scan_app(void* p) {
  1107. UNUSED(p);
  1108. APP = malloc(sizeof(Nrf24Scan));
  1109. APP->event_queue = furi_message_queue_alloc(8, sizeof(PluginEvent));
  1110. APP->plugin_state = malloc(sizeof(PluginState));
  1111. ValueMutex state_mutex;
  1112. if(!init_mutex(&state_mutex, APP->plugin_state, sizeof(PluginState))) {
  1113. furi_message_queue_free(APP->event_queue);
  1114. FURI_LOG_E(TAG, "cannot create mutex");
  1115. free(APP->plugin_state);
  1116. return 255;
  1117. }
  1118. APP->log_arr = malloc(LOG_REC_SIZE * MAX_LOG_RECORDS);
  1119. if(APP->log_arr == NULL) {
  1120. FURI_LOG_E(TAG, "Not enouch memory: %d", LOG_REC_SIZE * MAX_LOG_RECORDS);
  1121. strcpy(addr_file_name, "MEMORY LOW!");
  1122. }
  1123. clear_log();
  1124. APP->found = malloc(sizeof(struct FOUND) * MAX_FOUND_RECORDS);
  1125. if(APP->found == NULL) {
  1126. FURI_LOG_E(TAG, "Not enouch memory: %d", sizeof(struct FOUND) * MAX_FOUND_RECORDS);
  1127. strcpy(addr_file_name, "MEMORY LOW!!");
  1128. }
  1129. memset((uint8_t*)&addrs, 0, sizeof(addrs));
  1130. memset((uint8_t*)&addrs_sniff, 0, sizeof(addrs_sniff));
  1131. nrf24_init();
  1132. // Set system callbacks
  1133. APP->view_port = view_port_alloc();
  1134. view_port_draw_callback_set(APP->view_port, render_callback, &state_mutex);
  1135. view_port_input_callback_set(APP->view_port, input_callback, APP->event_queue);
  1136. // Open GUI and register view_port
  1137. APP->gui = furi_record_open(RECORD_GUI);
  1138. gui_add_view_port(APP->gui, APP->view_port, GuiLayerFullscreen);
  1139. APP->notification = furi_record_open(RECORD_NOTIFICATION);
  1140. APP->storage = furi_record_open(RECORD_STORAGE);
  1141. storage_common_mkdir(APP->storage, SCAN_APP_PATH_FOLDER);
  1142. Stream* file_stream = file_stream_alloc(APP->storage);
  1143. FuriString* path = furi_string_alloc();
  1144. furi_string_set(path, SCAN_APP_PATH_FOLDER);
  1145. furi_string_cat(path, "/");
  1146. furi_string_cat(path, SNIFF_FILENAME);
  1147. if(file_stream_open(file_stream, furi_string_get_cstr(path), FSAM_READ, FSOM_OPEN_EXISTING)) {
  1148. uint8_t err = load_settings_file(file_stream);
  1149. if(!err) strncpy(addr_file_name, furi_string_get_cstr(path) + sizeof(SCAN_APP_PATH_FOLDER), sizeof(addr_file_name));
  1150. else snprintf(addr_file_name, sizeof(addr_file_name), "LOAD ERROR#%d", err);
  1151. } else {
  1152. strcpy(addr_file_name, "NONE");
  1153. if(what_to_do == 1) {
  1154. addrs.addr_P0[0] = 0;
  1155. addrs.addr_P0[1] = 0x55;
  1156. addrs.addr_len = 2;
  1157. addrs.addr_count = 1;
  1158. view_log_decode_CRC = NRF_CRC = 2;
  1159. NRF_Payload_sniff_min = 0; // Min
  1160. }
  1161. }
  1162. file_stream_close(file_stream);
  1163. stream_free(file_stream);
  1164. furi_string_free(path);
  1165. PluginEvent event;
  1166. for(bool processing = true; processing;) {
  1167. FuriStatus event_status = furi_message_queue_get(APP->event_queue, &event, 100);
  1168. PluginState* plugin_state = (PluginState*)acquire_mutex_block(&state_mutex);
  1169. if(event_status == FuriStatusOk) {
  1170. // press events
  1171. if(event.type == EventTypeKey) {
  1172. //FURI_LOG_D(TAG, "Key: %d Type: %d Sec: %u", event.input.key, event.input.type, event.input.sequence);
  1173. switch(event.input.key) {
  1174. case InputKeyUp:
  1175. if(event.input.type == InputTypeShort || event.input.type == InputTypeRepeat) {
  1176. if(what_doing == 0) {
  1177. if(menu_selected > 0) menu_selected--; else menu_selected = menu_selected_max;
  1178. } else if(what_doing == 1) {
  1179. view_log_arr_idx -= event.input.type == InputTypeRepeat ? 10 : 1;
  1180. if(view_log_arr_idx >= log_arr_idx) view_log_arr_idx = 0;
  1181. } else if(what_doing == 2) {
  1182. if(view_found > -1) view_found--;
  1183. }
  1184. }
  1185. break;
  1186. case InputKeyDown:
  1187. if(event.input.type == InputTypeShort || event.input.type == InputTypeRepeat) {
  1188. if(what_doing == 0) {
  1189. if(menu_selected < menu_selected_max) menu_selected++; else menu_selected = 0;
  1190. } else if(what_doing == 1) {
  1191. view_log_arr_idx += event.input.type == InputTypeRepeat ? 10 : 1;
  1192. if(view_log_arr_idx >= log_arr_idx) view_log_arr_idx = log_arr_idx - 1;
  1193. } else if(what_doing == 2) {
  1194. if(view_found < found_total / 7) view_found++;
  1195. }
  1196. }
  1197. break;
  1198. case InputKeyLeft:
  1199. if(event.input.type == InputTypeShort || event.input.type == InputTypeRepeat) {
  1200. if(what_doing == 0) {
  1201. switch(menu_selected) {
  1202. case Menu_enter_channel:
  1203. NRF_channel -= event.input.type == InputTypeRepeat ? 10 : 1;
  1204. if(NRF_channel > MAX_CHANNEL) NRF_channel = MAX_CHANNEL;
  1205. break;
  1206. case Menu_enter_rate:
  1207. if(what_to_do == 1) { // SNIFF
  1208. NRF_Payload_sniff_min -= event.input.type == InputTypeRepeat ? 10 : 1;
  1209. correct_NRF_Payload_sniff_min();
  1210. } else {
  1211. NRF_Payload -= event.input.type == InputTypeRepeat ? 10 : 1;
  1212. if(NRF_Payload > 32) NRF_Payload = 0;
  1213. }
  1214. break;
  1215. case Menu_enter_scan_period:
  1216. find_channel_period -= event.input.type == InputTypeRepeat ? 10 : 1;
  1217. if(find_channel_period < 0) find_channel_period = 0;
  1218. break;
  1219. case Menu_log:
  1220. if(--log_to_file < -1) log_to_file = 2;
  1221. break;
  1222. case Menu_ok:
  1223. if(--what_to_do > 3) what_to_do = 3;
  1224. break;
  1225. }
  1226. } else if(what_doing == 1) {
  1227. if(view_log_arr_x > 0) view_log_arr_x--;
  1228. } else if(what_doing == 2) {
  1229. //if(NRF_ESB == 0)
  1230. view_log_decode_PCF ^= 1;
  1231. }
  1232. }
  1233. break;
  1234. case InputKeyRight:
  1235. if(event.input.type == InputTypeShort || event.input.type == InputTypeRepeat) {
  1236. if(what_doing == 0) {
  1237. switch(menu_selected) {
  1238. case Menu_open_file:
  1239. save_settings ^= 1;
  1240. break;
  1241. case Menu_enter_channel:
  1242. NRF_channel += event.input.type == InputTypeRepeat ? 10 : 1;
  1243. if(NRF_channel > MAX_CHANNEL) NRF_channel = 0;
  1244. break;
  1245. case Menu_enter_rate:
  1246. if(what_to_do == 1) { // SNIFF
  1247. NRF_Payload_sniff_min += event.input.type == InputTypeRepeat ? 10 : 1;
  1248. correct_NRF_Payload_sniff_min();
  1249. } else {
  1250. NRF_Payload += event.input.type == InputTypeRepeat ? 10 : 1;
  1251. if(NRF_Payload > 32) NRF_Payload = 32;
  1252. }
  1253. break;
  1254. case Menu_enter_scan_period:
  1255. find_channel_period += event.input.type == InputTypeRepeat ? 10 : 1;
  1256. break;
  1257. case Menu_log:
  1258. if(++log_to_file > 2) log_to_file = -1;
  1259. break;
  1260. case Menu_ok:
  1261. if(++what_to_do > 3) what_to_do = 0;
  1262. break;
  1263. }
  1264. } else if(what_doing == 1) {
  1265. if(view_log_arr_x < VIEW_LOG_MAX_X) view_log_arr_x++;
  1266. } else if(what_doing == 2) {
  1267. if(++view_log_decode_CRC > 2) view_log_decode_CRC = 0;
  1268. }
  1269. }
  1270. break;
  1271. case InputKeyOk:
  1272. if(event.input.type == InputTypeShort) {
  1273. if(what_doing == 0) {
  1274. switch(menu_selected) {
  1275. case Menu_open_file:
  1276. if(save_settings) {
  1277. write_to_log_file(APP->storage, true);
  1278. } else {
  1279. file_stream = file_stream_alloc(APP->storage);
  1280. if(select_settings_file(file_stream)) {
  1281. uint8_t err = load_settings_file(file_stream);
  1282. if(!err) save_to_new_log = true; else snprintf(addr_file_name, sizeof(addr_file_name), "LOAD ERROR#%d", err);
  1283. file_stream_close(file_stream);
  1284. menu_selected = Menu_ok;
  1285. }
  1286. stream_free(file_stream);
  1287. }
  1288. break;
  1289. case Menu_enter_channel:
  1290. if(what_to_do == 1) {
  1291. if(NRF_ESB) NRF_DPL = NRF_ESB = 0; else NRF_ESB = 1;
  1292. } else {
  1293. if(NRF_ESB) {
  1294. if(NRF_DPL) NRF_DPL = NRF_ESB = 0; else NRF_DPL = 1;
  1295. } else NRF_ESB = 1;
  1296. }
  1297. break;
  1298. case Menu_enter_rate:
  1299. NRF_rate++;
  1300. if(NRF_rate > 2) NRF_rate = 0;
  1301. break;
  1302. case Menu_enter_scan_period:
  1303. if(++NRF_CRC > 2) NRF_CRC = what_to_do == 1 ? 1 : 0;
  1304. break;
  1305. case Menu_ok:
  1306. if(what_to_do) {
  1307. if((addrs.addr_count || (what_to_do == 3 && log_arr_idx && *(APP->log_arr + view_log_arr_idx * LOG_REC_SIZE) & 0x80)) || what_to_do == 1) {
  1308. if(log_to_file == -1) {
  1309. log_to_file = 0;
  1310. clear_log();
  1311. save_to_new_log = true;
  1312. } else if(log_to_file == 1) save_to_new_log = true;
  1313. start_scanning();
  1314. if(!NRF_ERROR) what_doing = 1;
  1315. }
  1316. } else what_doing = 1;
  1317. break;
  1318. }
  1319. } else if(what_doing == 1) {
  1320. what_doing = 2;
  1321. } else if(what_doing == 2) {
  1322. what_doing = 1;
  1323. }
  1324. } else if(event.input.type == InputTypeLong) {
  1325. if(what_doing == 0) {
  1326. if(menu_selected == Menu_enter_channel) {
  1327. NRF_AA_OFF ^= 1;
  1328. } else if(menu_selected == Menu_log) { // Log
  1329. if(log_arr_idx && (log_to_file == 1 || log_to_file == 2)) {
  1330. write_to_log_file(APP->storage, false);
  1331. clear_log();
  1332. }
  1333. }
  1334. } else if(what_doing == 1 || what_doing == 2) {
  1335. nrf24_send_packet();
  1336. }
  1337. }
  1338. break;
  1339. case InputKeyBack:
  1340. if(event.input.type == InputTypeLong) processing = false;
  1341. else if(event.input.type == InputTypeShort) {
  1342. if(what_doing) what_doing--;
  1343. if(what_doing == 0) {
  1344. nrf24_set_idle(nrf24_HANDLE);
  1345. }
  1346. }
  1347. break;
  1348. default:
  1349. break;
  1350. }
  1351. }
  1352. }
  1353. if(what_doing && what_to_do) {
  1354. nrf24_read_newpacket();
  1355. if(find_channel_period && furi_get_tick() - start_time >= (uint32_t)find_channel_period * 1000UL) {
  1356. if(++NRF_channel > MAX_CHANNEL) NRF_channel = 0;
  1357. start_scanning();
  1358. }
  1359. }
  1360. view_port_update(APP->view_port);
  1361. release_mutex(&state_mutex, plugin_state);
  1362. }
  1363. nrf24_set_idle(nrf24_HANDLE);
  1364. if(log_arr_idx && (log_to_file == 1 || log_to_file == 2)) {
  1365. write_to_log_file(APP->storage, false);
  1366. }
  1367. nrf24_deinit();
  1368. view_port_enabled_set(APP->view_port, false);
  1369. gui_remove_view_port(APP->gui, APP->view_port);
  1370. furi_record_close(RECORD_GUI);
  1371. furi_record_close(RECORD_NOTIFICATION);
  1372. furi_record_close(RECORD_STORAGE);
  1373. view_port_free(APP->view_port);
  1374. furi_message_queue_free(APP->event_queue);
  1375. free(APP->plugin_state);
  1376. if(APP->log_arr) free(APP->log_arr);
  1377. if(APP->found) free(APP->found);
  1378. free(APP);
  1379. return 0;
  1380. }