nfc_device.c 18 KB

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  1. #include "nfc_device_i.h"
  2. #include <file-worker.h>
  3. #include <lib/toolbox/path.h>
  4. #include <lib/toolbox/hex.h>
  5. #define NFC_DEVICE_MAX_DATA_LEN 14
  6. static const char* nfc_app_folder = "/any/nfc";
  7. static const char* nfc_app_extension = ".nfc";
  8. static const char* nfc_app_shadow_extension = ".shd";
  9. static bool nfc_device_read_hex(string_t str, uint8_t* buff, uint16_t len, uint8_t delim_len) {
  10. string_strim(str);
  11. uint8_t nibble_high = 0;
  12. uint8_t nibble_low = 0;
  13. bool parsed = true;
  14. for(uint16_t i = 0; i < len; i++) {
  15. if(hex_char_to_hex_nibble(string_get_char(str, 0), &nibble_high) &&
  16. hex_char_to_hex_nibble(string_get_char(str, 1), &nibble_low)) {
  17. buff[i] = (nibble_high << 4) | nibble_low;
  18. string_right(str, delim_len + 2);
  19. } else {
  20. parsed = false;
  21. break;
  22. }
  23. }
  24. return parsed;
  25. }
  26. uint16_t nfc_device_prepare_format_string(NfcDevice* dev, string_t format_string) {
  27. if(dev->format == NfcDeviceSaveFormatUid) {
  28. string_set_str(format_string, "UID\n");
  29. } else if(dev->format == NfcDeviceSaveFormatBankCard) {
  30. string_set_str(format_string, "Bank card\n");
  31. } else if(dev->format == NfcDeviceSaveFormatMifareUl) {
  32. string_set_str(format_string, "Mifare Ultralight\n");
  33. } else {
  34. string_set_str(format_string, "Unknown\n");
  35. }
  36. return string_size(format_string);
  37. }
  38. bool nfc_device_parse_format_string(NfcDevice* dev, string_t format_string) {
  39. if(string_start_with_str_p(format_string, "UID")) {
  40. dev->format = NfcDeviceSaveFormatUid;
  41. dev->dev_data.nfc_data.protocol = NfcDeviceProtocolUnknown;
  42. return true;
  43. } else if(string_start_with_str_p(format_string, "Bank card")) {
  44. dev->format = NfcDeviceSaveFormatBankCard;
  45. dev->dev_data.nfc_data.protocol = NfcDeviceProtocolEMV;
  46. return true;
  47. } else if(string_start_with_str_p(format_string, "Mifare Ultralight")) {
  48. dev->format = NfcDeviceSaveFormatMifareUl;
  49. dev->dev_data.nfc_data.protocol = NfcDeviceProtocolMifareUl;
  50. return true;
  51. }
  52. return false;
  53. }
  54. uint16_t nfc_device_prepare_uid_string(NfcDevice* dev, string_t uid_string) {
  55. NfcDeviceCommonData* uid_data = &dev->dev_data.nfc_data;
  56. string_printf(uid_string, "UID len: %02X UID: ", dev->dev_data.nfc_data.uid_len);
  57. for(uint8_t i = 0; i < uid_data->uid_len; i++) {
  58. string_cat_printf(uid_string, "%02X ", uid_data->uid[i]);
  59. }
  60. string_cat_printf(
  61. uid_string,
  62. "ATQA: %02X %02X SAK: %02X\n",
  63. uid_data->atqa[0],
  64. uid_data->atqa[1],
  65. uid_data->sak);
  66. return string_size(uid_string);
  67. }
  68. bool nfc_device_parse_uid_string(NfcDevice* dev, string_t uid_string) {
  69. NfcDeviceCommonData* uid_data = &dev->dev_data.nfc_data;
  70. bool parsed = false;
  71. do {
  72. // strlen("UID len: ") = 9
  73. string_right(uid_string, 9);
  74. if(!nfc_device_read_hex(uid_string, &uid_data->uid_len, 1, 1)) {
  75. break;
  76. }
  77. // strlen("UID: ") = 5
  78. string_right(uid_string, 5);
  79. if(!nfc_device_read_hex(uid_string, uid_data->uid, uid_data->uid_len, 1)) {
  80. break;
  81. }
  82. // strlen("ATQA: ") = 6
  83. string_right(uid_string, 6);
  84. if(!nfc_device_read_hex(uid_string, uid_data->atqa, 2, 1)) {
  85. break;
  86. }
  87. // strlen("SAK: ") = 5
  88. string_right(uid_string, 5);
  89. if(!nfc_device_read_hex(uid_string, &uid_data->sak, 1, 1)) {
  90. break;
  91. }
  92. parsed = true;
  93. } while(0);
  94. return parsed;
  95. }
  96. uint16_t nfc_device_prepare_mifare_ul_string(NfcDevice* dev, string_t mifare_ul_string) {
  97. MifareUlData* data = &dev->dev_data.mf_ul_data;
  98. string_printf(mifare_ul_string, "Signature:");
  99. for(uint8_t i = 0; i < sizeof(data->signature); i++) {
  100. string_cat_printf(mifare_ul_string, " %02X", data->signature[i]);
  101. }
  102. string_cat_printf(mifare_ul_string, "\nVersion:");
  103. uint8_t* version = (uint8_t*)&data->version;
  104. for(uint8_t i = 0; i < sizeof(data->version); i++) {
  105. string_cat_printf(mifare_ul_string, " %02X", version[i]);
  106. }
  107. for(uint8_t i = 0; i < 3; i++) {
  108. string_cat_printf(
  109. mifare_ul_string,
  110. "\nCounter %d: %lu Tearing flag %d: %02X",
  111. i,
  112. data->counter[i],
  113. i,
  114. data->tearing[i]);
  115. }
  116. string_cat_printf(mifare_ul_string, "\nData size: %d\n", data->data_size);
  117. for(uint16_t i = 0; i < data->data_size; i += 4) {
  118. string_cat_printf(
  119. mifare_ul_string,
  120. "%02X %02X %02X %02X\n",
  121. data->data[i],
  122. data->data[i + 1],
  123. data->data[i + 2],
  124. data->data[i + 3]);
  125. }
  126. return string_size(mifare_ul_string);
  127. }
  128. bool nfc_device_parse_mifare_ul_string(NfcDevice* dev, string_t mifare_ul_string) {
  129. MifareUlData* data = &dev->dev_data.mf_ul_data;
  130. uint16_t tearing_tmp = 0;
  131. uint16_t cnt_num = 0;
  132. size_t ws = 0;
  133. int res = 0;
  134. bool parsed = false;
  135. do {
  136. // strlen("Signature: ") = 11
  137. string_right(mifare_ul_string, 11);
  138. if(!nfc_device_read_hex(mifare_ul_string, data->signature, sizeof(data->signature), 1)) {
  139. break;
  140. }
  141. // strlen("Version: ") = 9
  142. string_right(mifare_ul_string, 9);
  143. if(!nfc_device_read_hex(
  144. mifare_ul_string, (uint8_t*)&data->version, sizeof(data->version), 1)) {
  145. break;
  146. }
  147. string_strim(mifare_ul_string);
  148. // Read counters and tearing flags
  149. for(uint8_t i = 0; i < 3; i++) {
  150. res = sscanf(
  151. string_get_cstr(mifare_ul_string),
  152. "Counter %hX: %lu Tearing flag %hX: %02hX",
  153. &cnt_num,
  154. &data->counter[i],
  155. &cnt_num,
  156. &tearing_tmp);
  157. if(res != 4) {
  158. break;
  159. }
  160. data->tearing[i] = tearing_tmp;
  161. ws = string_search_char(mifare_ul_string, '\n');
  162. string_right(mifare_ul_string, ws + 1);
  163. }
  164. // Read data size
  165. res = sscanf(string_get_cstr(mifare_ul_string), "Data size: %hu", &data->data_size);
  166. if(res != 1) {
  167. break;
  168. }
  169. ws = string_search_char(mifare_ul_string, '\n');
  170. string_right(mifare_ul_string, ws + 1);
  171. // Read data
  172. for(uint16_t i = 0; i < data->data_size; i += 4) {
  173. if(!nfc_device_read_hex(mifare_ul_string, &data->data[i], 4, 1)) {
  174. break;
  175. }
  176. }
  177. parsed = true;
  178. } while(0);
  179. return parsed;
  180. }
  181. uint16_t nfc_device_prepare_bank_card_string(NfcDevice* dev, string_t bank_card_string) {
  182. NfcEmvData* data = &dev->dev_data.emv_data;
  183. string_printf(bank_card_string, "AID len: %d, AID:", data->aid_len);
  184. for(uint8_t i = 0; i < data->aid_len; i++) {
  185. string_cat_printf(bank_card_string, " %02X", data->aid[i]);
  186. }
  187. string_cat_printf(
  188. bank_card_string, "\nName: %s\nNumber len: %d\nNumber:", data->name, data->number_len);
  189. for(uint8_t i = 0; i < data->number_len; i++) {
  190. string_cat_printf(bank_card_string, " %02X", data->number[i]);
  191. }
  192. if(data->exp_mon) {
  193. string_cat_printf(
  194. bank_card_string, "\nExp date: %02X/%02X", data->exp_mon, data->exp_year);
  195. }
  196. if(data->country_code) {
  197. string_cat_printf(bank_card_string, "\nCountry code: %04X", data->country_code);
  198. }
  199. if(data->currency_code) {
  200. string_cat_printf(bank_card_string, "\nCurrency code: %04X", data->currency_code);
  201. }
  202. return string_size(bank_card_string);
  203. }
  204. bool nfc_device_parse_bank_card_string(NfcDevice* dev, string_t bank_card_string) {
  205. NfcEmvData* data = &dev->dev_data.emv_data;
  206. bool parsed = false;
  207. int res = 0;
  208. uint8_t code[2] = {};
  209. memset(data, 0, sizeof(NfcEmvData));
  210. do {
  211. res = sscanf(string_get_cstr(bank_card_string), "AID len: %hu", &data->aid_len);
  212. if(res != 1) {
  213. break;
  214. }
  215. // strlen("AID len: ") = 9
  216. string_right(bank_card_string, 9);
  217. size_t ws = string_search_char(bank_card_string, ':');
  218. string_right(bank_card_string, ws + 1);
  219. if(!nfc_device_read_hex(bank_card_string, data->aid, data->aid_len, 1)) {
  220. break;
  221. }
  222. res = sscanf(string_get_cstr(bank_card_string), "Name: %s\n", data->name);
  223. if(res != 1) {
  224. break;
  225. }
  226. ws = string_search_char(bank_card_string, '\n');
  227. string_right(bank_card_string, ws + 1);
  228. res = sscanf(string_get_cstr(bank_card_string), "Number len: %hhu", &data->number_len);
  229. if(res != 1) {
  230. break;
  231. }
  232. ws = string_search_char(bank_card_string, '\n');
  233. string_right(bank_card_string, ws + 1);
  234. // strlen("Number: ") = 8
  235. string_right(bank_card_string, 8);
  236. if(!nfc_device_read_hex(bank_card_string, data->number, data->number_len, 1)) {
  237. break;
  238. }
  239. parsed = true;
  240. // Check expiration date presence
  241. ws = string_search_str(bank_card_string, "Exp date: ");
  242. if(ws != STRING_FAILURE) {
  243. // strlen("Exp date: ") = 10
  244. string_right(bank_card_string, 10);
  245. nfc_device_read_hex(bank_card_string, &data->exp_mon, 1, 1);
  246. nfc_device_read_hex(bank_card_string, &data->exp_year, 1, 1);
  247. }
  248. // Check country code presence
  249. ws = string_search_str(bank_card_string, "Country code: ");
  250. if(ws != STRING_FAILURE) {
  251. // strlen("Country code: ") = 14
  252. string_right(bank_card_string, 14);
  253. nfc_device_read_hex(bank_card_string, code, 2, 0);
  254. data->country_code = code[0] << 8 | code[1];
  255. }
  256. // Check currency code presence
  257. ws = string_search_str(bank_card_string, "Currency code: ");
  258. if(ws != STRING_FAILURE) {
  259. // strlen("Currency code: ") = 15
  260. string_right(bank_card_string, 15);
  261. nfc_device_read_hex(bank_card_string, code, 2, 0);
  262. data->currency_code = code[0] << 8 | code[1];
  263. }
  264. } while(0);
  265. return parsed;
  266. }
  267. void nfc_device_set_name(NfcDevice* dev, const char* name) {
  268. furi_assert(dev);
  269. strlcpy(dev->dev_name, name, NFC_DEV_NAME_MAX_LEN);
  270. }
  271. static bool nfc_device_save_file(
  272. NfcDevice* dev,
  273. const char* dev_name,
  274. const char* folder,
  275. const char* extension) {
  276. furi_assert(dev);
  277. FileWorker* file_worker = file_worker_alloc(false);
  278. string_t dev_file_name;
  279. string_init(dev_file_name);
  280. string_t temp_str;
  281. string_init(temp_str);
  282. uint16_t string_len = 0;
  283. do {
  284. // Create nfc directory if necessary
  285. if(!file_worker_mkdir(file_worker, nfc_app_folder)) {
  286. break;
  287. };
  288. // First remove nfc device file if it was saved
  289. string_printf(dev_file_name, "%s/%s%s", folder, dev_name, extension);
  290. if(!file_worker_remove(file_worker, string_get_cstr(dev_file_name))) {
  291. break;
  292. };
  293. // Open file
  294. if(!file_worker_open(
  295. file_worker, string_get_cstr(dev_file_name), FSAM_WRITE, FSOM_CREATE_ALWAYS)) {
  296. break;
  297. }
  298. // Prepare and write format name on 1st line
  299. string_len = nfc_device_prepare_format_string(dev, temp_str);
  300. if(!file_worker_write(file_worker, string_get_cstr(temp_str), string_len)) {
  301. break;
  302. }
  303. // Prepare and write UID data on 2nd line
  304. string_len = nfc_device_prepare_uid_string(dev, temp_str);
  305. if(!file_worker_write(file_worker, string_get_cstr(temp_str), string_len)) {
  306. break;
  307. }
  308. // Save more data if necessary
  309. if(dev->format == NfcDeviceSaveFormatMifareUl) {
  310. string_len = nfc_device_prepare_mifare_ul_string(dev, temp_str);
  311. if(!file_worker_write(file_worker, string_get_cstr(temp_str), string_len)) {
  312. break;
  313. }
  314. } else if(dev->format == NfcDeviceSaveFormatBankCard) {
  315. string_len = nfc_device_prepare_bank_card_string(dev, temp_str);
  316. if(!file_worker_write(file_worker, string_get_cstr(temp_str), string_len)) {
  317. break;
  318. }
  319. }
  320. } while(0);
  321. string_clear(temp_str);
  322. string_clear(dev_file_name);
  323. file_worker_close(file_worker);
  324. file_worker_free(file_worker);
  325. return true;
  326. }
  327. bool nfc_device_save(NfcDevice* dev, const char* dev_name) {
  328. return nfc_device_save_file(dev, dev_name, nfc_app_folder, nfc_app_extension);
  329. }
  330. bool nfc_device_save_shadow(NfcDevice* dev, const char* dev_name) {
  331. dev->shadow_file_exist = true;
  332. return nfc_device_save_file(dev, dev_name, nfc_app_folder, nfc_app_shadow_extension);
  333. }
  334. static bool nfc_device_load_data(FileWorker* file_worker, string_t path, NfcDevice* dev) {
  335. string_t temp_string;
  336. string_init(temp_string);
  337. bool parsed = false;
  338. do {
  339. // Check existance of shadow file
  340. size_t ext_start = string_search_str(path, nfc_app_extension);
  341. string_set_n(temp_string, path, 0, ext_start);
  342. string_cat_printf(temp_string, "%s", nfc_app_shadow_extension);
  343. if(!file_worker_is_file_exist(
  344. file_worker, string_get_cstr(temp_string), &dev->shadow_file_exist)) {
  345. break;
  346. }
  347. // Open shadow file if it exists. If not - open original
  348. if(dev->shadow_file_exist) {
  349. if(!file_worker_open(
  350. file_worker, string_get_cstr(temp_string), FSAM_READ, FSOM_OPEN_EXISTING)) {
  351. break;
  352. }
  353. } else {
  354. if(!file_worker_open(
  355. file_worker, string_get_cstr(path), FSAM_READ, FSOM_OPEN_EXISTING)) {
  356. break;
  357. }
  358. }
  359. // Read and parse format from 1st line
  360. if(!file_worker_read_until(file_worker, temp_string, '\n')) {
  361. break;
  362. }
  363. if(!nfc_device_parse_format_string(dev, temp_string)) {
  364. break;
  365. }
  366. // Read and parse UID data from 2nd line
  367. if(!file_worker_read_until(file_worker, temp_string, '\n')) {
  368. break;
  369. }
  370. if(!nfc_device_parse_uid_string(dev, temp_string)) {
  371. break;
  372. }
  373. // Parse other data
  374. if(dev->format == NfcDeviceSaveFormatMifareUl) {
  375. // Read until EOF
  376. if(!file_worker_read_until(file_worker, temp_string, 0x05)) {
  377. break;
  378. }
  379. if(!nfc_device_parse_mifare_ul_string(dev, temp_string)) {
  380. break;
  381. }
  382. } else if(dev->format == NfcDeviceSaveFormatBankCard) {
  383. // Read until EOF
  384. if(!file_worker_read_until(file_worker, temp_string, 0x05)) {
  385. break;
  386. }
  387. if(!nfc_device_parse_bank_card_string(dev, temp_string)) {
  388. break;
  389. }
  390. }
  391. parsed = true;
  392. } while(0);
  393. if(!parsed) {
  394. file_worker_show_error(file_worker, "Can not parse\nfile");
  395. }
  396. string_clear(temp_string);
  397. return parsed;
  398. }
  399. bool nfc_device_load(NfcDevice* dev, const char* file_path) {
  400. furi_assert(dev);
  401. furi_assert(file_path);
  402. FileWorker* file_worker = file_worker_alloc(false);
  403. // Load device data
  404. string_t path;
  405. string_init_set_str(path, file_path);
  406. bool dev_load = nfc_device_load_data(file_worker, path, dev);
  407. if(dev_load) {
  408. // Set device name
  409. path_extract_filename_no_ext(file_path, path);
  410. nfc_device_set_name(dev, string_get_cstr(path));
  411. }
  412. string_clear(path);
  413. file_worker_close(file_worker);
  414. file_worker_free(file_worker);
  415. return dev_load;
  416. }
  417. bool nfc_file_select(NfcDevice* dev) {
  418. furi_assert(dev);
  419. FileWorker* file_worker = file_worker_alloc(false);
  420. // Input events and views are managed by file_select
  421. bool res = file_worker_file_select(
  422. file_worker,
  423. nfc_app_folder,
  424. nfc_app_extension,
  425. dev->file_name,
  426. sizeof(dev->file_name),
  427. dev->dev_name);
  428. if(res) {
  429. string_t dev_str;
  430. // Get key file path
  431. string_init_printf(dev_str, "%s/%s%s", nfc_app_folder, dev->file_name, nfc_app_extension);
  432. res = nfc_device_load_data(file_worker, dev_str, dev);
  433. if(res) {
  434. nfc_device_set_name(dev, dev->file_name);
  435. }
  436. string_clear(dev_str);
  437. }
  438. file_worker_close(file_worker);
  439. file_worker_free(file_worker);
  440. return res;
  441. }
  442. void nfc_device_clear(NfcDevice* dev) {
  443. furi_assert(dev);
  444. memset(&dev->dev_data, 0, sizeof(dev->dev_data));
  445. dev->format = NfcDeviceSaveFormatUid;
  446. }
  447. bool nfc_device_delete(NfcDevice* dev) {
  448. furi_assert(dev);
  449. bool result = true;
  450. FileWorker* file_worker = file_worker_alloc(false);
  451. string_t file_path;
  452. do {
  453. // Delete original file
  454. string_init_printf(file_path, "%s/%s%s", nfc_app_folder, dev->dev_name, nfc_app_extension);
  455. if(!file_worker_remove(file_worker, string_get_cstr(file_path))) {
  456. result = false;
  457. break;
  458. }
  459. // Delete shadow file if it exists
  460. if(dev->shadow_file_exist) {
  461. string_clean(file_path);
  462. string_printf(
  463. file_path, "%s/%s%s", nfc_app_folder, dev->dev_name, nfc_app_shadow_extension);
  464. if(!file_worker_remove(file_worker, string_get_cstr(file_path))) {
  465. result = false;
  466. break;
  467. }
  468. }
  469. } while(0);
  470. string_clear(file_path);
  471. file_worker_close(file_worker);
  472. file_worker_free(file_worker);
  473. return result;
  474. }
  475. bool nfc_device_restore(NfcDevice* dev) {
  476. furi_assert(dev);
  477. furi_assert(dev->shadow_file_exist);
  478. bool result = true;
  479. FileWorker* file_worker = file_worker_alloc(false);
  480. string_t path;
  481. do {
  482. string_init_printf(
  483. path, "%s/%s%s", nfc_app_folder, dev->dev_name, nfc_app_shadow_extension);
  484. if(!file_worker_remove(file_worker, string_get_cstr(path))) {
  485. result = false;
  486. break;
  487. }
  488. dev->shadow_file_exist = false;
  489. string_clean(path);
  490. string_printf(path, "%s/%s%s", nfc_app_folder, dev->dev_name, nfc_app_extension);
  491. if(!nfc_device_load_data(file_worker, path, dev)) {
  492. result = false;
  493. break;
  494. }
  495. } while(0);
  496. string_clear(path);
  497. file_worker_close(file_worker);
  498. file_worker_free(file_worker);
  499. return result;
  500. }