nfc_device.c 51 KB

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  1. #include "nfc_device.h"
  2. #include "assets_icons.h"
  3. #include "m-string.h"
  4. #include "nfc_types.h"
  5. #include <lib/toolbox/path.h>
  6. #include <lib/toolbox/hex.h>
  7. #include <lib/nfc/protocols/nfc_util.h>
  8. #include <flipper_format/flipper_format.h>
  9. #define NFC_DEVICE_KEYS_FOLDER EXT_PATH("nfc/cache")
  10. #define NFC_DEVICE_KEYS_EXTENSION ".keys"
  11. static const char* nfc_file_header = "Flipper NFC device";
  12. static const uint32_t nfc_file_version = 2;
  13. static const char* nfc_keys_file_header = "Flipper NFC keys";
  14. static const uint32_t nfc_keys_file_version = 1;
  15. // Protocols format versions
  16. static const uint32_t nfc_mifare_classic_data_format_version = 2;
  17. static const uint32_t nfc_mifare_ultralight_data_format_version = 1;
  18. NfcDevice* nfc_device_alloc() {
  19. NfcDevice* nfc_dev = malloc(sizeof(NfcDevice));
  20. nfc_dev->storage = furi_record_open(RECORD_STORAGE);
  21. nfc_dev->dialogs = furi_record_open(RECORD_DIALOGS);
  22. string_init(nfc_dev->load_path);
  23. string_init(nfc_dev->dev_data.parsed_data);
  24. return nfc_dev;
  25. }
  26. void nfc_device_free(NfcDevice* nfc_dev) {
  27. furi_assert(nfc_dev);
  28. nfc_device_clear(nfc_dev);
  29. furi_record_close(RECORD_STORAGE);
  30. furi_record_close(RECORD_DIALOGS);
  31. string_clear(nfc_dev->load_path);
  32. string_clear(nfc_dev->dev_data.parsed_data);
  33. free(nfc_dev);
  34. }
  35. static void nfc_device_prepare_format_string(NfcDevice* dev, string_t format_string) {
  36. if(dev->format == NfcDeviceSaveFormatUid) {
  37. string_set_str(format_string, "UID");
  38. } else if(dev->format == NfcDeviceSaveFormatBankCard) {
  39. string_set_str(format_string, "Bank card");
  40. } else if(dev->format == NfcDeviceSaveFormatMifareUl) {
  41. string_set_str(format_string, nfc_mf_ul_type(dev->dev_data.mf_ul_data.type, true));
  42. } else if(dev->format == NfcDeviceSaveFormatMifareClassic) {
  43. string_set_str(format_string, "Mifare Classic");
  44. } else if(dev->format == NfcDeviceSaveFormatMifareDesfire) {
  45. string_set_str(format_string, "Mifare DESFire");
  46. } else {
  47. string_set_str(format_string, "Unknown");
  48. }
  49. }
  50. static bool nfc_device_parse_format_string(NfcDevice* dev, string_t format_string) {
  51. if(string_start_with_str_p(format_string, "UID")) {
  52. dev->format = NfcDeviceSaveFormatUid;
  53. dev->dev_data.protocol = NfcDeviceProtocolUnknown;
  54. return true;
  55. }
  56. if(string_start_with_str_p(format_string, "Bank card")) {
  57. dev->format = NfcDeviceSaveFormatBankCard;
  58. dev->dev_data.protocol = NfcDeviceProtocolEMV;
  59. return true;
  60. }
  61. // Check Mifare Ultralight types
  62. for(MfUltralightType type = MfUltralightTypeUnknown; type < MfUltralightTypeNum; type++) {
  63. if(string_equal_str_p(format_string, nfc_mf_ul_type(type, true))) {
  64. dev->format = NfcDeviceSaveFormatMifareUl;
  65. dev->dev_data.protocol = NfcDeviceProtocolMifareUl;
  66. dev->dev_data.mf_ul_data.type = type;
  67. return true;
  68. }
  69. }
  70. if(string_start_with_str_p(format_string, "Mifare Classic")) {
  71. dev->format = NfcDeviceSaveFormatMifareClassic;
  72. dev->dev_data.protocol = NfcDeviceProtocolMifareClassic;
  73. return true;
  74. }
  75. if(string_start_with_str_p(format_string, "Mifare DESFire")) {
  76. dev->format = NfcDeviceSaveFormatMifareDesfire;
  77. dev->dev_data.protocol = NfcDeviceProtocolMifareDesfire;
  78. return true;
  79. }
  80. return false;
  81. }
  82. static bool nfc_device_save_mifare_ul_data(FlipperFormat* file, NfcDevice* dev) {
  83. bool saved = false;
  84. MfUltralightData* data = &dev->dev_data.mf_ul_data;
  85. string_t temp_str;
  86. string_init(temp_str);
  87. // Save Mifare Ultralight specific data
  88. do {
  89. if(!flipper_format_write_comment_cstr(file, "Mifare Ultralight specific data")) break;
  90. if(!flipper_format_write_uint32(
  91. file, "Data format version", &nfc_mifare_ultralight_data_format_version, 1))
  92. break;
  93. if(!flipper_format_write_hex(file, "Signature", data->signature, sizeof(data->signature)))
  94. break;
  95. if(!flipper_format_write_hex(
  96. file, "Mifare version", (uint8_t*)&data->version, sizeof(data->version)))
  97. break;
  98. // Write conters and tearing flags data
  99. bool counters_saved = true;
  100. for(uint8_t i = 0; i < 3; i++) {
  101. string_printf(temp_str, "Counter %d", i);
  102. if(!flipper_format_write_uint32(
  103. file, string_get_cstr(temp_str), &data->counter[i], 1)) {
  104. counters_saved = false;
  105. break;
  106. }
  107. string_printf(temp_str, "Tearing %d", i);
  108. if(!flipper_format_write_hex(file, string_get_cstr(temp_str), &data->tearing[i], 1)) {
  109. counters_saved = false;
  110. break;
  111. }
  112. }
  113. if(!counters_saved) break;
  114. // Write pages data
  115. uint32_t pages_total = data->data_size / 4;
  116. if(!flipper_format_write_uint32(file, "Pages total", &pages_total, 1)) break;
  117. uint32_t pages_read = data->data_read / 4;
  118. if(!flipper_format_write_uint32(file, "Pages read", &pages_read, 1)) break;
  119. bool pages_saved = true;
  120. for(uint16_t i = 0; i < data->data_size; i += 4) {
  121. string_printf(temp_str, "Page %d", i / 4);
  122. if(!flipper_format_write_hex(file, string_get_cstr(temp_str), &data->data[i], 4)) {
  123. pages_saved = false;
  124. break;
  125. }
  126. }
  127. if(!pages_saved) break;
  128. // Write authentication counter
  129. uint32_t auth_counter = data->curr_authlim;
  130. if(!flipper_format_write_uint32(file, "Failed authentication attempts", &auth_counter, 1))
  131. break;
  132. saved = true;
  133. } while(false);
  134. string_clear(temp_str);
  135. return saved;
  136. }
  137. bool nfc_device_load_mifare_ul_data(FlipperFormat* file, NfcDevice* dev) {
  138. bool parsed = false;
  139. MfUltralightData* data = &dev->dev_data.mf_ul_data;
  140. string_t temp_str;
  141. string_init(temp_str);
  142. uint32_t data_format_version = 0;
  143. do {
  144. // Read Mifare Ultralight format version
  145. if(!flipper_format_read_uint32(file, "Data format version", &data_format_version, 1)) {
  146. if(!flipper_format_rewind(file)) break;
  147. }
  148. // Read signature
  149. if(!flipper_format_read_hex(file, "Signature", data->signature, sizeof(data->signature)))
  150. break;
  151. // Read Mifare version
  152. if(!flipper_format_read_hex(
  153. file, "Mifare version", (uint8_t*)&data->version, sizeof(data->version)))
  154. break;
  155. // Read counters and tearing flags
  156. bool counters_parsed = true;
  157. for(uint8_t i = 0; i < 3; i++) {
  158. string_printf(temp_str, "Counter %d", i);
  159. if(!flipper_format_read_uint32(file, string_get_cstr(temp_str), &data->counter[i], 1)) {
  160. counters_parsed = false;
  161. break;
  162. }
  163. string_printf(temp_str, "Tearing %d", i);
  164. if(!flipper_format_read_hex(file, string_get_cstr(temp_str), &data->tearing[i], 1)) {
  165. counters_parsed = false;
  166. break;
  167. }
  168. }
  169. if(!counters_parsed) break;
  170. // Read pages
  171. uint32_t pages_total = 0;
  172. if(!flipper_format_read_uint32(file, "Pages total", &pages_total, 1)) break;
  173. uint32_t pages_read = 0;
  174. if(data_format_version < nfc_mifare_ultralight_data_format_version) {
  175. pages_read = pages_total;
  176. } else {
  177. if(!flipper_format_read_uint32(file, "Pages read", &pages_read, 1)) break;
  178. }
  179. data->data_size = pages_total * 4;
  180. data->data_read = pages_read * 4;
  181. bool pages_parsed = true;
  182. for(uint16_t i = 0; i < pages_total; i++) {
  183. string_printf(temp_str, "Page %d", i);
  184. if(!flipper_format_read_hex(file, string_get_cstr(temp_str), &data->data[i * 4], 4)) {
  185. pages_parsed = false;
  186. break;
  187. }
  188. }
  189. if(!pages_parsed) break;
  190. // Read authentication counter
  191. uint32_t auth_counter;
  192. if(!flipper_format_read_uint32(file, "Failed authentication attempts", &auth_counter, 1))
  193. auth_counter = 0;
  194. parsed = true;
  195. } while(false);
  196. string_clear(temp_str);
  197. return parsed;
  198. }
  199. static bool nfc_device_save_mifare_df_key_settings(
  200. FlipperFormat* file,
  201. MifareDesfireKeySettings* ks,
  202. const char* prefix) {
  203. bool saved = false;
  204. string_t key;
  205. string_init(key);
  206. do {
  207. string_printf(key, "%s Change Key ID", prefix);
  208. if(!flipper_format_write_hex(file, string_get_cstr(key), &ks->change_key_id, 1)) break;
  209. string_printf(key, "%s Config Changeable", prefix);
  210. if(!flipper_format_write_bool(file, string_get_cstr(key), &ks->config_changeable, 1))
  211. break;
  212. string_printf(key, "%s Free Create Delete", prefix);
  213. if(!flipper_format_write_bool(file, string_get_cstr(key), &ks->free_create_delete, 1))
  214. break;
  215. string_printf(key, "%s Free Directory List", prefix);
  216. if(!flipper_format_write_bool(file, string_get_cstr(key), &ks->free_directory_list, 1))
  217. break;
  218. string_printf(key, "%s Key Changeable", prefix);
  219. if(!flipper_format_write_bool(file, string_get_cstr(key), &ks->master_key_changeable, 1))
  220. break;
  221. if(ks->flags) {
  222. string_printf(key, "%s Flags", prefix);
  223. if(!flipper_format_write_hex(file, string_get_cstr(key), &ks->flags, 1)) break;
  224. }
  225. string_printf(key, "%s Max Keys", prefix);
  226. if(!flipper_format_write_hex(file, string_get_cstr(key), &ks->max_keys, 1)) break;
  227. for(MifareDesfireKeyVersion* kv = ks->key_version_head; kv; kv = kv->next) {
  228. string_printf(key, "%s Key %d Version", prefix, kv->id);
  229. if(!flipper_format_write_hex(file, string_get_cstr(key), &kv->version, 1)) break;
  230. }
  231. saved = true;
  232. } while(false);
  233. string_clear(key);
  234. return saved;
  235. }
  236. bool nfc_device_load_mifare_df_key_settings(
  237. FlipperFormat* file,
  238. MifareDesfireKeySettings* ks,
  239. const char* prefix) {
  240. bool parsed = false;
  241. string_t key;
  242. string_init(key);
  243. do {
  244. string_printf(key, "%s Change Key ID", prefix);
  245. if(!flipper_format_read_hex(file, string_get_cstr(key), &ks->change_key_id, 1)) break;
  246. string_printf(key, "%s Config Changeable", prefix);
  247. if(!flipper_format_read_bool(file, string_get_cstr(key), &ks->config_changeable, 1)) break;
  248. string_printf(key, "%s Free Create Delete", prefix);
  249. if(!flipper_format_read_bool(file, string_get_cstr(key), &ks->free_create_delete, 1))
  250. break;
  251. string_printf(key, "%s Free Directory List", prefix);
  252. if(!flipper_format_read_bool(file, string_get_cstr(key), &ks->free_directory_list, 1))
  253. break;
  254. string_printf(key, "%s Key Changeable", prefix);
  255. if(!flipper_format_read_bool(file, string_get_cstr(key), &ks->master_key_changeable, 1))
  256. break;
  257. string_printf(key, "%s Flags", prefix);
  258. if(flipper_format_key_exist(file, string_get_cstr(key))) {
  259. if(!flipper_format_read_hex(file, string_get_cstr(key), &ks->flags, 1)) break;
  260. }
  261. string_printf(key, "%s Max Keys", prefix);
  262. if(!flipper_format_read_hex(file, string_get_cstr(key), &ks->max_keys, 1)) break;
  263. ks->flags |= ks->max_keys >> 4;
  264. ks->max_keys &= 0xF;
  265. MifareDesfireKeyVersion** kv_head = &ks->key_version_head;
  266. for(int key_id = 0; key_id < ks->max_keys; key_id++) {
  267. string_printf(key, "%s Key %d Version", prefix, key_id);
  268. uint8_t version;
  269. if(flipper_format_read_hex(file, string_get_cstr(key), &version, 1)) {
  270. MifareDesfireKeyVersion* kv = malloc(sizeof(MifareDesfireKeyVersion));
  271. memset(kv, 0, sizeof(MifareDesfireKeyVersion));
  272. kv->id = key_id;
  273. kv->version = version;
  274. *kv_head = kv;
  275. kv_head = &kv->next;
  276. }
  277. }
  278. parsed = true;
  279. } while(false);
  280. string_clear(key);
  281. return parsed;
  282. }
  283. static bool nfc_device_save_mifare_df_app(FlipperFormat* file, MifareDesfireApplication* app) {
  284. bool saved = false;
  285. string_t prefix, key;
  286. string_init_printf(prefix, "Application %02x%02x%02x", app->id[0], app->id[1], app->id[2]);
  287. string_init(key);
  288. uint8_t* tmp = NULL;
  289. do {
  290. if(app->key_settings) {
  291. if(!nfc_device_save_mifare_df_key_settings(
  292. file, app->key_settings, string_get_cstr(prefix)))
  293. break;
  294. }
  295. if(!app->file_head) break;
  296. uint32_t n_files = 0;
  297. for(MifareDesfireFile* f = app->file_head; f; f = f->next) {
  298. n_files++;
  299. }
  300. tmp = malloc(n_files);
  301. int i = 0;
  302. for(MifareDesfireFile* f = app->file_head; f; f = f->next) {
  303. tmp[i++] = f->id;
  304. }
  305. string_printf(key, "%s File IDs", string_get_cstr(prefix));
  306. if(!flipper_format_write_hex(file, string_get_cstr(key), tmp, n_files)) break;
  307. bool saved_files = true;
  308. for(MifareDesfireFile* f = app->file_head; f; f = f->next) {
  309. saved_files = false;
  310. string_printf(key, "%s File %d Type", string_get_cstr(prefix), f->id);
  311. if(!flipper_format_write_hex(file, string_get_cstr(key), &f->type, 1)) break;
  312. string_printf(
  313. key, "%s File %d Communication Settings", string_get_cstr(prefix), f->id);
  314. if(!flipper_format_write_hex(file, string_get_cstr(key), &f->comm, 1)) break;
  315. string_printf(key, "%s File %d Access Rights", string_get_cstr(prefix), f->id);
  316. if(!flipper_format_write_hex(
  317. file, string_get_cstr(key), (uint8_t*)&f->access_rights, 2))
  318. break;
  319. uint16_t size = 0;
  320. if(f->type == MifareDesfireFileTypeStandard ||
  321. f->type == MifareDesfireFileTypeBackup) {
  322. size = f->settings.data.size;
  323. string_printf(key, "%s File %d Size", string_get_cstr(prefix), f->id);
  324. if(!flipper_format_write_uint32(
  325. file, string_get_cstr(key), &f->settings.data.size, 1))
  326. break;
  327. } else if(f->type == MifareDesfireFileTypeValue) {
  328. string_printf(key, "%s File %d Hi Limit", string_get_cstr(prefix), f->id);
  329. if(!flipper_format_write_uint32(
  330. file, string_get_cstr(key), &f->settings.value.hi_limit, 1))
  331. break;
  332. string_printf(key, "%s File %d Lo Limit", string_get_cstr(prefix), f->id);
  333. if(!flipper_format_write_uint32(
  334. file, string_get_cstr(key), &f->settings.value.lo_limit, 1))
  335. break;
  336. string_printf(
  337. key, "%s File %d Limited Credit Value", string_get_cstr(prefix), f->id);
  338. if(!flipper_format_write_uint32(
  339. file, string_get_cstr(key), &f->settings.value.limited_credit_value, 1))
  340. break;
  341. string_printf(
  342. key, "%s File %d Limited Credit Enabled", string_get_cstr(prefix), f->id);
  343. if(!flipper_format_write_bool(
  344. file, string_get_cstr(key), &f->settings.value.limited_credit_enabled, 1))
  345. break;
  346. size = 4;
  347. } else if(
  348. f->type == MifareDesfireFileTypeLinearRecord ||
  349. f->type == MifareDesfireFileTypeCyclicRecord) {
  350. string_printf(key, "%s File %d Size", string_get_cstr(prefix), f->id);
  351. if(!flipper_format_write_uint32(
  352. file, string_get_cstr(key), &f->settings.record.size, 1))
  353. break;
  354. string_printf(key, "%s File %d Max", string_get_cstr(prefix), f->id);
  355. if(!flipper_format_write_uint32(
  356. file, string_get_cstr(key), &f->settings.record.max, 1))
  357. break;
  358. string_printf(key, "%s File %d Cur", string_get_cstr(prefix), f->id);
  359. if(!flipper_format_write_uint32(
  360. file, string_get_cstr(key), &f->settings.record.cur, 1))
  361. break;
  362. size = f->settings.record.size * f->settings.record.cur;
  363. }
  364. if(f->contents) {
  365. string_printf(key, "%s File %d", string_get_cstr(prefix), f->id);
  366. if(!flipper_format_write_hex(file, string_get_cstr(key), f->contents, size)) break;
  367. }
  368. saved_files = true;
  369. }
  370. if(!saved_files) {
  371. break;
  372. }
  373. saved = true;
  374. } while(false);
  375. free(tmp);
  376. string_clear(prefix);
  377. string_clear(key);
  378. return saved;
  379. }
  380. bool nfc_device_load_mifare_df_app(FlipperFormat* file, MifareDesfireApplication* app) {
  381. bool parsed = false;
  382. string_t prefix, key;
  383. string_init_printf(prefix, "Application %02x%02x%02x", app->id[0], app->id[1], app->id[2]);
  384. string_init(key);
  385. uint8_t* tmp = NULL;
  386. MifareDesfireFile* f = NULL;
  387. do {
  388. app->key_settings = malloc(sizeof(MifareDesfireKeySettings));
  389. memset(app->key_settings, 0, sizeof(MifareDesfireKeySettings));
  390. if(!nfc_device_load_mifare_df_key_settings(
  391. file, app->key_settings, string_get_cstr(prefix))) {
  392. free(app->key_settings);
  393. app->key_settings = NULL;
  394. break;
  395. }
  396. string_printf(key, "%s File IDs", string_get_cstr(prefix));
  397. uint32_t n_files;
  398. if(!flipper_format_get_value_count(file, string_get_cstr(key), &n_files)) break;
  399. tmp = malloc(n_files);
  400. if(!flipper_format_read_hex(file, string_get_cstr(key), tmp, n_files)) break;
  401. MifareDesfireFile** file_head = &app->file_head;
  402. bool parsed_files = true;
  403. for(uint32_t i = 0; i < n_files; i++) {
  404. parsed_files = false;
  405. f = malloc(sizeof(MifareDesfireFile));
  406. memset(f, 0, sizeof(MifareDesfireFile));
  407. f->id = tmp[i];
  408. string_printf(key, "%s File %d Type", string_get_cstr(prefix), f->id);
  409. if(!flipper_format_read_hex(file, string_get_cstr(key), &f->type, 1)) break;
  410. string_printf(
  411. key, "%s File %d Communication Settings", string_get_cstr(prefix), f->id);
  412. if(!flipper_format_read_hex(file, string_get_cstr(key), &f->comm, 1)) break;
  413. string_printf(key, "%s File %d Access Rights", string_get_cstr(prefix), f->id);
  414. if(!flipper_format_read_hex(file, string_get_cstr(key), (uint8_t*)&f->access_rights, 2))
  415. break;
  416. if(f->type == MifareDesfireFileTypeStandard ||
  417. f->type == MifareDesfireFileTypeBackup) {
  418. string_printf(key, "%s File %d Size", string_get_cstr(prefix), f->id);
  419. if(!flipper_format_read_uint32(
  420. file, string_get_cstr(key), &f->settings.data.size, 1))
  421. break;
  422. } else if(f->type == MifareDesfireFileTypeValue) {
  423. string_printf(key, "%s File %d Hi Limit", string_get_cstr(prefix), f->id);
  424. if(!flipper_format_read_uint32(
  425. file, string_get_cstr(key), &f->settings.value.hi_limit, 1))
  426. break;
  427. string_printf(key, "%s File %d Lo Limit", string_get_cstr(prefix), f->id);
  428. if(!flipper_format_read_uint32(
  429. file, string_get_cstr(key), &f->settings.value.lo_limit, 1))
  430. break;
  431. string_printf(
  432. key, "%s File %d Limited Credit Value", string_get_cstr(prefix), f->id);
  433. if(!flipper_format_read_uint32(
  434. file, string_get_cstr(key), &f->settings.value.limited_credit_value, 1))
  435. break;
  436. string_printf(
  437. key, "%s File %d Limited Credit Enabled", string_get_cstr(prefix), f->id);
  438. if(!flipper_format_read_bool(
  439. file, string_get_cstr(key), &f->settings.value.limited_credit_enabled, 1))
  440. break;
  441. } else if(
  442. f->type == MifareDesfireFileTypeLinearRecord ||
  443. f->type == MifareDesfireFileTypeCyclicRecord) {
  444. string_printf(key, "%s File %d Size", string_get_cstr(prefix), f->id);
  445. if(!flipper_format_read_uint32(
  446. file, string_get_cstr(key), &f->settings.record.size, 1))
  447. break;
  448. string_printf(key, "%s File %d Max", string_get_cstr(prefix), f->id);
  449. if(!flipper_format_read_uint32(
  450. file, string_get_cstr(key), &f->settings.record.max, 1))
  451. break;
  452. string_printf(key, "%s File %d Cur", string_get_cstr(prefix), f->id);
  453. if(!flipper_format_read_uint32(
  454. file, string_get_cstr(key), &f->settings.record.cur, 1))
  455. break;
  456. }
  457. string_printf(key, "%s File %d", string_get_cstr(prefix), f->id);
  458. if(flipper_format_key_exist(file, string_get_cstr(key))) {
  459. uint32_t size;
  460. if(!flipper_format_get_value_count(file, string_get_cstr(key), &size)) break;
  461. f->contents = malloc(size);
  462. if(!flipper_format_read_hex(file, string_get_cstr(key), f->contents, size)) break;
  463. }
  464. *file_head = f;
  465. file_head = &f->next;
  466. f = NULL;
  467. parsed_files = true;
  468. }
  469. if(!parsed_files) {
  470. break;
  471. }
  472. parsed = true;
  473. } while(false);
  474. if(f) {
  475. free(f->contents);
  476. free(f);
  477. }
  478. free(tmp);
  479. string_clear(prefix);
  480. string_clear(key);
  481. return parsed;
  482. }
  483. static bool nfc_device_save_mifare_df_data(FlipperFormat* file, NfcDevice* dev) {
  484. bool saved = false;
  485. MifareDesfireData* data = &dev->dev_data.mf_df_data;
  486. uint8_t* tmp = NULL;
  487. do {
  488. if(!flipper_format_write_comment_cstr(file, "Mifare DESFire specific data")) break;
  489. if(!flipper_format_write_hex(
  490. file, "PICC Version", (uint8_t*)&data->version, sizeof(data->version)))
  491. break;
  492. if(data->free_memory) {
  493. if(!flipper_format_write_uint32(file, "PICC Free Memory", &data->free_memory->bytes, 1))
  494. break;
  495. }
  496. if(data->master_key_settings) {
  497. if(!nfc_device_save_mifare_df_key_settings(file, data->master_key_settings, "PICC"))
  498. break;
  499. }
  500. uint32_t n_apps = 0;
  501. for(MifareDesfireApplication* app = data->app_head; app; app = app->next) {
  502. n_apps++;
  503. }
  504. if(!flipper_format_write_uint32(file, "Application Count", &n_apps, 1)) break;
  505. if(n_apps) {
  506. tmp = malloc(n_apps * 3);
  507. int i = 0;
  508. for(MifareDesfireApplication* app = data->app_head; app; app = app->next) {
  509. memcpy(tmp + i, app->id, 3);
  510. i += 3;
  511. }
  512. if(!flipper_format_write_hex(file, "Application IDs", tmp, n_apps * 3)) break;
  513. for(MifareDesfireApplication* app = data->app_head; app; app = app->next) {
  514. if(!nfc_device_save_mifare_df_app(file, app)) break;
  515. }
  516. }
  517. saved = true;
  518. } while(false);
  519. free(tmp);
  520. return saved;
  521. }
  522. bool nfc_device_load_mifare_df_data(FlipperFormat* file, NfcDevice* dev) {
  523. bool parsed = false;
  524. MifareDesfireData* data = &dev->dev_data.mf_df_data;
  525. memset(data, 0, sizeof(MifareDesfireData));
  526. uint8_t* tmp = NULL;
  527. do {
  528. if(!flipper_format_read_hex(
  529. file, "PICC Version", (uint8_t*)&data->version, sizeof(data->version)))
  530. break;
  531. if(flipper_format_key_exist(file, "PICC Free Memory")) {
  532. data->free_memory = malloc(sizeof(MifareDesfireFreeMemory));
  533. memset(data->free_memory, 0, sizeof(MifareDesfireFreeMemory));
  534. if(!flipper_format_read_uint32(
  535. file, "PICC Free Memory", &data->free_memory->bytes, 1)) {
  536. free(data->free_memory);
  537. break;
  538. }
  539. }
  540. if(flipper_format_key_exist(file, "PICC Change Key ID")) {
  541. data->master_key_settings = malloc(sizeof(MifareDesfireKeySettings));
  542. memset(data->master_key_settings, 0, sizeof(MifareDesfireKeySettings));
  543. if(!nfc_device_load_mifare_df_key_settings(file, data->master_key_settings, "PICC")) {
  544. free(data->master_key_settings);
  545. data->master_key_settings = NULL;
  546. break;
  547. }
  548. }
  549. uint32_t n_apps;
  550. if(!flipper_format_read_uint32(file, "Application Count", &n_apps, 1)) break;
  551. if(n_apps) {
  552. tmp = malloc(n_apps * 3);
  553. if(!flipper_format_read_hex(file, "Application IDs", tmp, n_apps * 3)) break;
  554. bool parsed_apps = true;
  555. MifareDesfireApplication** app_head = &data->app_head;
  556. for(uint32_t i = 0; i < n_apps; i++) {
  557. MifareDesfireApplication* app = malloc(sizeof(MifareDesfireApplication));
  558. memset(app, 0, sizeof(MifareDesfireApplication));
  559. memcpy(app->id, &tmp[i * 3], 3);
  560. if(!nfc_device_load_mifare_df_app(file, app)) {
  561. free(app);
  562. parsed_apps = false;
  563. break;
  564. }
  565. *app_head = app;
  566. app_head = &app->next;
  567. }
  568. if(!parsed_apps) break;
  569. }
  570. parsed = true;
  571. } while(false);
  572. free(tmp);
  573. return parsed;
  574. }
  575. static bool nfc_device_save_bank_card_data(FlipperFormat* file, NfcDevice* dev) {
  576. bool saved = false;
  577. EmvData* data = &dev->dev_data.emv_data;
  578. uint32_t data_temp = 0;
  579. do {
  580. // Write Bank card specific data
  581. if(!flipper_format_write_comment_cstr(file, "Bank card specific data")) break;
  582. if(!flipper_format_write_hex(file, "AID", data->aid, data->aid_len)) break;
  583. if(!flipper_format_write_string_cstr(file, "Name", data->name)) break;
  584. if(!flipper_format_write_hex(file, "Number", data->number, data->number_len)) break;
  585. if(data->exp_mon) {
  586. uint8_t exp_data[2] = {data->exp_mon, data->exp_year};
  587. if(!flipper_format_write_hex(file, "Exp data", exp_data, sizeof(exp_data))) break;
  588. }
  589. if(data->country_code) {
  590. data_temp = data->country_code;
  591. if(!flipper_format_write_uint32(file, "Country code", &data_temp, 1)) break;
  592. }
  593. if(data->currency_code) {
  594. data_temp = data->currency_code;
  595. if(!flipper_format_write_uint32(file, "Currency code", &data_temp, 1)) break;
  596. }
  597. saved = true;
  598. } while(false);
  599. return saved;
  600. }
  601. bool nfc_device_load_bank_card_data(FlipperFormat* file, NfcDevice* dev) {
  602. bool parsed = false;
  603. EmvData* data = &dev->dev_data.emv_data;
  604. memset(data, 0, sizeof(EmvData));
  605. uint32_t data_cnt = 0;
  606. string_t temp_str;
  607. string_init(temp_str);
  608. do {
  609. // Load essential data
  610. if(!flipper_format_get_value_count(file, "AID", &data_cnt)) break;
  611. data->aid_len = data_cnt;
  612. if(!flipper_format_read_hex(file, "AID", data->aid, data->aid_len)) break;
  613. if(!flipper_format_read_string(file, "Name", temp_str)) break;
  614. strlcpy(data->name, string_get_cstr(temp_str), sizeof(data->name));
  615. if(!flipper_format_get_value_count(file, "Number", &data_cnt)) break;
  616. data->number_len = data_cnt;
  617. if(!flipper_format_read_hex(file, "Number", data->number, data->number_len)) break;
  618. parsed = true;
  619. // Load optional data
  620. uint8_t exp_data[2] = {};
  621. if(flipper_format_read_hex(file, "Exp data", exp_data, 2)) {
  622. data->exp_mon = exp_data[0];
  623. data->exp_year = exp_data[1];
  624. }
  625. if(flipper_format_read_uint32(file, "Country code", &data_cnt, 1)) {
  626. data->country_code = data_cnt;
  627. }
  628. if(flipper_format_read_uint32(file, "Currency code", &data_cnt, 1)) {
  629. data->currency_code = data_cnt;
  630. }
  631. } while(false);
  632. string_clear(temp_str);
  633. return parsed;
  634. }
  635. static void nfc_device_write_mifare_classic_block(
  636. string_t block_str,
  637. MfClassicData* data,
  638. uint8_t block_num) {
  639. string_reset(block_str);
  640. bool is_sec_trailer = mf_classic_is_sector_trailer(block_num);
  641. if(is_sec_trailer) {
  642. uint8_t sector_num = mf_classic_get_sector_by_block(block_num);
  643. MfClassicSectorTrailer* sec_tr = mf_classic_get_sector_trailer_by_sector(data, sector_num);
  644. // Write key A
  645. for(size_t i = 0; i < sizeof(sec_tr->key_a); i++) {
  646. if(mf_classic_is_key_found(data, sector_num, MfClassicKeyA)) {
  647. string_cat_printf(block_str, "%02X ", sec_tr->key_a[i]);
  648. } else {
  649. string_cat_printf(block_str, "?? ");
  650. }
  651. }
  652. // Write Access bytes
  653. for(size_t i = 0; i < MF_CLASSIC_ACCESS_BYTES_SIZE; i++) {
  654. if(mf_classic_is_block_read(data, block_num)) {
  655. string_cat_printf(block_str, "%02X ", sec_tr->access_bits[i]);
  656. } else {
  657. string_cat_printf(block_str, "?? ");
  658. }
  659. }
  660. // Write key B
  661. for(size_t i = 0; i < sizeof(sec_tr->key_b); i++) {
  662. if(mf_classic_is_key_found(data, sector_num, MfClassicKeyB)) {
  663. string_cat_printf(block_str, "%02X ", sec_tr->key_b[i]);
  664. } else {
  665. string_cat_printf(block_str, "?? ");
  666. }
  667. }
  668. } else {
  669. // Write data block
  670. for(size_t i = 0; i < MF_CLASSIC_BLOCK_SIZE; i++) {
  671. if(mf_classic_is_block_read(data, block_num)) {
  672. string_cat_printf(block_str, "%02X ", data->block[block_num].value[i]);
  673. } else {
  674. string_cat_printf(block_str, "?? ");
  675. }
  676. }
  677. }
  678. string_strim(block_str);
  679. }
  680. static bool nfc_device_save_mifare_classic_data(FlipperFormat* file, NfcDevice* dev) {
  681. bool saved = false;
  682. MfClassicData* data = &dev->dev_data.mf_classic_data;
  683. string_t temp_str;
  684. string_init(temp_str);
  685. uint16_t blocks = 0;
  686. // Save Mifare Classic specific data
  687. do {
  688. if(!flipper_format_write_comment_cstr(file, "Mifare Classic specific data")) break;
  689. if(data->type == MfClassicType1k) {
  690. if(!flipper_format_write_string_cstr(file, "Mifare Classic type", "1K")) break;
  691. blocks = 64;
  692. } else if(data->type == MfClassicType4k) {
  693. if(!flipper_format_write_string_cstr(file, "Mifare Classic type", "4K")) break;
  694. blocks = 256;
  695. }
  696. if(!flipper_format_write_uint32(
  697. file, "Data format version", &nfc_mifare_classic_data_format_version, 1))
  698. break;
  699. if(!flipper_format_write_comment_cstr(
  700. file, "Mifare Classic blocks, \'??\' means unknown data"))
  701. break;
  702. bool block_saved = true;
  703. string_t block_str;
  704. string_init(block_str);
  705. for(size_t i = 0; i < blocks; i++) {
  706. string_printf(temp_str, "Block %d", i);
  707. nfc_device_write_mifare_classic_block(block_str, data, i);
  708. if(!flipper_format_write_string(file, string_get_cstr(temp_str), block_str)) {
  709. block_saved = false;
  710. break;
  711. }
  712. }
  713. string_clear(block_str);
  714. if(!block_saved) break;
  715. saved = true;
  716. } while(false);
  717. string_clear(temp_str);
  718. return saved;
  719. }
  720. static void nfc_device_load_mifare_classic_block(
  721. string_t block_str,
  722. MfClassicData* data,
  723. uint8_t block_num) {
  724. string_strim(block_str);
  725. MfClassicBlock block_tmp = {};
  726. bool is_sector_trailer = mf_classic_is_sector_trailer(block_num);
  727. uint8_t sector_num = mf_classic_get_sector_by_block(block_num);
  728. uint16_t block_unknown_bytes_mask = 0;
  729. string_strim(block_str);
  730. for(size_t i = 0; i < MF_CLASSIC_BLOCK_SIZE; i++) {
  731. char hi = string_get_char(block_str, 3 * i);
  732. char low = string_get_char(block_str, 3 * i + 1);
  733. uint8_t byte = 0;
  734. if(hex_char_to_uint8(hi, low, &byte)) {
  735. block_tmp.value[i] = byte;
  736. } else {
  737. FURI_BIT_SET(block_unknown_bytes_mask, i);
  738. }
  739. }
  740. if(block_unknown_bytes_mask == 0xffff) {
  741. // All data is unknown, exit
  742. return;
  743. }
  744. if(is_sector_trailer) {
  745. MfClassicSectorTrailer* sec_tr_tmp = (MfClassicSectorTrailer*)&block_tmp;
  746. // Load Key A
  747. // Key A mask 0b0000000000111111 = 0x003f
  748. if((block_unknown_bytes_mask & 0x003f) == 0) {
  749. uint64_t key = nfc_util_bytes2num(sec_tr_tmp->key_a, sizeof(sec_tr_tmp->key_a));
  750. mf_classic_set_key_found(data, sector_num, MfClassicKeyA, key);
  751. }
  752. // Load Access Bits
  753. // Access bits mask 0b0000001111000000 = 0x03c0
  754. if((block_unknown_bytes_mask & 0x03c0) == 0) {
  755. mf_classic_set_block_read(data, block_num, &block_tmp);
  756. }
  757. // Load Key B
  758. // Key B mask 0b1111110000000000 = 0xfc00
  759. if((block_unknown_bytes_mask & 0xfc00) == 0) {
  760. uint64_t key = nfc_util_bytes2num(sec_tr_tmp->key_b, sizeof(sec_tr_tmp->key_b));
  761. mf_classic_set_key_found(data, sector_num, MfClassicKeyB, key);
  762. }
  763. } else {
  764. if(block_unknown_bytes_mask == 0) {
  765. mf_classic_set_block_read(data, block_num, &block_tmp);
  766. }
  767. }
  768. }
  769. static bool nfc_device_load_mifare_classic_data(FlipperFormat* file, NfcDevice* dev) {
  770. bool parsed = false;
  771. MfClassicData* data = &dev->dev_data.mf_classic_data;
  772. string_t temp_str;
  773. uint32_t data_format_version = 0;
  774. string_init(temp_str);
  775. uint16_t data_blocks = 0;
  776. memset(data, 0, sizeof(MfClassicData));
  777. do {
  778. // Read Mifare Classic type
  779. if(!flipper_format_read_string(file, "Mifare Classic type", temp_str)) break;
  780. if(!string_cmp_str(temp_str, "1K")) {
  781. data->type = MfClassicType1k;
  782. data_blocks = 64;
  783. } else if(!string_cmp_str(temp_str, "4K")) {
  784. data->type = MfClassicType4k;
  785. data_blocks = 256;
  786. } else {
  787. break;
  788. }
  789. bool old_format = false;
  790. // Read Mifare Classic format version
  791. if(!flipper_format_read_uint32(file, "Data format version", &data_format_version, 1)) {
  792. // Load unread sectors with zero keys access for backward compatability
  793. if(!flipper_format_rewind(file)) break;
  794. old_format = true;
  795. } else {
  796. if(data_format_version < nfc_mifare_classic_data_format_version) {
  797. old_format = true;
  798. }
  799. }
  800. // Read Mifare Classic blocks
  801. bool block_read = true;
  802. string_t block_str;
  803. string_init(block_str);
  804. for(size_t i = 0; i < data_blocks; i++) {
  805. string_printf(temp_str, "Block %d", i);
  806. if(!flipper_format_read_string(file, string_get_cstr(temp_str), block_str)) {
  807. block_read = false;
  808. break;
  809. }
  810. nfc_device_load_mifare_classic_block(block_str, data, i);
  811. }
  812. string_clear(block_str);
  813. if(!block_read) break;
  814. // Set keys and blocks as unknown for backward compatibility
  815. if(old_format) {
  816. data->key_a_mask = 0ULL;
  817. data->key_b_mask = 0ULL;
  818. memset(data->block_read_mask, 0, sizeof(data->block_read_mask));
  819. }
  820. parsed = true;
  821. } while(false);
  822. string_clear(temp_str);
  823. return parsed;
  824. }
  825. static void nfc_device_get_key_cache_file_path(NfcDevice* dev, string_t file_path) {
  826. uint8_t* uid = dev->dev_data.nfc_data.uid;
  827. uint8_t uid_len = dev->dev_data.nfc_data.uid_len;
  828. string_set_str(file_path, NFC_DEVICE_KEYS_FOLDER "/");
  829. for(size_t i = 0; i < uid_len; i++) {
  830. string_cat_printf(file_path, "%02X", uid[i]);
  831. }
  832. string_cat_printf(file_path, NFC_DEVICE_KEYS_EXTENSION);
  833. }
  834. static bool nfc_device_save_mifare_classic_keys(NfcDevice* dev) {
  835. FlipperFormat* file = flipper_format_file_alloc(dev->storage);
  836. MfClassicData* data = &dev->dev_data.mf_classic_data;
  837. string_t temp_str;
  838. string_init(temp_str);
  839. nfc_device_get_key_cache_file_path(dev, temp_str);
  840. bool save_success = false;
  841. do {
  842. if(!storage_simply_mkdir(dev->storage, NFC_DEVICE_KEYS_FOLDER)) break;
  843. if(!storage_simply_remove(dev->storage, string_get_cstr(temp_str))) break;
  844. if(!flipper_format_file_open_always(file, string_get_cstr(temp_str))) break;
  845. if(!flipper_format_write_header_cstr(file, nfc_keys_file_header, nfc_keys_file_version))
  846. break;
  847. if(data->type == MfClassicType1k) {
  848. if(!flipper_format_write_string_cstr(file, "Mifare Classic type", "1K")) break;
  849. } else if(data->type == MfClassicType4k) {
  850. if(!flipper_format_write_string_cstr(file, "Mifare Classic type", "4K")) break;
  851. }
  852. if(!flipper_format_write_hex_uint64(file, "Key A map", &data->key_a_mask, 1)) break;
  853. if(!flipper_format_write_hex_uint64(file, "Key B map", &data->key_b_mask, 1)) break;
  854. uint8_t sector_num = mf_classic_get_total_sectors_num(data->type);
  855. bool key_save_success = true;
  856. for(size_t i = 0; (i < sector_num) && (key_save_success); i++) {
  857. MfClassicSectorTrailer* sec_tr = mf_classic_get_sector_trailer_by_sector(data, i);
  858. if(FURI_BIT(data->key_a_mask, i)) {
  859. string_printf(temp_str, "Key A sector %d", i);
  860. key_save_success =
  861. flipper_format_write_hex(file, string_get_cstr(temp_str), sec_tr->key_a, 6);
  862. }
  863. if(!key_save_success) break;
  864. if(FURI_BIT(data->key_a_mask, i)) {
  865. string_printf(temp_str, "Key B sector %d", i);
  866. key_save_success =
  867. flipper_format_write_hex(file, string_get_cstr(temp_str), sec_tr->key_b, 6);
  868. }
  869. }
  870. save_success = key_save_success;
  871. } while(false);
  872. flipper_format_free(file);
  873. string_clear(temp_str);
  874. return save_success;
  875. }
  876. bool nfc_device_load_key_cache(NfcDevice* dev) {
  877. furi_assert(dev);
  878. string_t temp_str;
  879. string_init(temp_str);
  880. MfClassicData* data = &dev->dev_data.mf_classic_data;
  881. nfc_device_get_key_cache_file_path(dev, temp_str);
  882. FlipperFormat* file = flipper_format_file_alloc(dev->storage);
  883. bool load_success = false;
  884. do {
  885. if(storage_common_stat(dev->storage, string_get_cstr(temp_str), NULL) != FSE_OK) break;
  886. if(!flipper_format_file_open_existing(file, string_get_cstr(temp_str))) break;
  887. uint32_t version = 0;
  888. if(!flipper_format_read_header(file, temp_str, &version)) break;
  889. if(string_cmp_str(temp_str, nfc_keys_file_header)) break;
  890. if(version != nfc_keys_file_version) break;
  891. if(!flipper_format_read_string(file, "Mifare Classic type", temp_str)) break;
  892. if(!string_cmp_str(temp_str, "1K")) {
  893. data->type = MfClassicType1k;
  894. } else if(!string_cmp_str(temp_str, "4K")) {
  895. data->type = MfClassicType4k;
  896. } else {
  897. break;
  898. }
  899. if(!flipper_format_read_hex_uint64(file, "Key A map", &data->key_a_mask, 1)) break;
  900. if(!flipper_format_read_hex_uint64(file, "Key B map", &data->key_b_mask, 1)) break;
  901. uint8_t sectors = mf_classic_get_total_sectors_num(data->type);
  902. bool key_read_success = true;
  903. for(size_t i = 0; (i < sectors) && (key_read_success); i++) {
  904. MfClassicSectorTrailer* sec_tr = mf_classic_get_sector_trailer_by_sector(data, i);
  905. if(FURI_BIT(data->key_a_mask, i)) {
  906. string_printf(temp_str, "Key A sector %d", i);
  907. key_read_success =
  908. flipper_format_read_hex(file, string_get_cstr(temp_str), sec_tr->key_a, 6);
  909. }
  910. if(!key_read_success) break;
  911. if(FURI_BIT(data->key_b_mask, i)) {
  912. string_printf(temp_str, "Key B sector %d", i);
  913. key_read_success =
  914. flipper_format_read_hex(file, string_get_cstr(temp_str), sec_tr->key_b, 6);
  915. }
  916. }
  917. load_success = key_read_success;
  918. } while(false);
  919. string_clear(temp_str);
  920. flipper_format_free(file);
  921. return load_success;
  922. }
  923. void nfc_device_set_name(NfcDevice* dev, const char* name) {
  924. furi_assert(dev);
  925. strlcpy(dev->dev_name, name, NFC_DEV_NAME_MAX_LEN);
  926. }
  927. static void nfc_device_get_path_without_ext(string_t orig_path, string_t shadow_path) {
  928. // TODO: this won't work if there is ".nfc" anywhere in the path other than
  929. // at the end
  930. size_t ext_start = string_search_str(orig_path, NFC_APP_EXTENSION);
  931. string_set_n(shadow_path, orig_path, 0, ext_start);
  932. }
  933. static void nfc_device_get_shadow_path(string_t orig_path, string_t shadow_path) {
  934. nfc_device_get_path_without_ext(orig_path, shadow_path);
  935. string_cat_printf(shadow_path, "%s", NFC_APP_SHADOW_EXTENSION);
  936. }
  937. static bool nfc_device_save_file(
  938. NfcDevice* dev,
  939. const char* dev_name,
  940. const char* folder,
  941. const char* extension,
  942. bool use_load_path) {
  943. furi_assert(dev);
  944. bool saved = false;
  945. FlipperFormat* file = flipper_format_file_alloc(dev->storage);
  946. FuriHalNfcDevData* data = &dev->dev_data.nfc_data;
  947. string_t temp_str;
  948. string_init(temp_str);
  949. do {
  950. if(use_load_path && !string_empty_p(dev->load_path)) {
  951. // Get directory name
  952. path_extract_dirname(string_get_cstr(dev->load_path), temp_str);
  953. // Create nfc directory if necessary
  954. if(!storage_simply_mkdir(dev->storage, string_get_cstr(temp_str))) break;
  955. // Make path to file to save
  956. string_cat_printf(temp_str, "/%s%s", dev_name, extension);
  957. } else {
  958. // Create nfc directory if necessary
  959. if(!storage_simply_mkdir(dev->storage, NFC_APP_FOLDER)) break;
  960. // First remove nfc device file if it was saved
  961. string_printf(temp_str, "%s/%s%s", folder, dev_name, extension);
  962. }
  963. // Open file
  964. if(!flipper_format_file_open_always(file, string_get_cstr(temp_str))) break;
  965. // Write header
  966. if(!flipper_format_write_header_cstr(file, nfc_file_header, nfc_file_version)) break;
  967. // Write nfc device type
  968. if(!flipper_format_write_comment_cstr(
  969. file, "Nfc device type can be UID, Mifare Ultralight, Mifare Classic, Bank card"))
  970. break;
  971. nfc_device_prepare_format_string(dev, temp_str);
  972. if(!flipper_format_write_string(file, "Device type", temp_str)) break;
  973. // Write UID, ATQA, SAK
  974. if(!flipper_format_write_comment_cstr(file, "UID, ATQA and SAK are common for all formats"))
  975. break;
  976. if(!flipper_format_write_hex(file, "UID", data->uid, data->uid_len)) break;
  977. if(!flipper_format_write_hex(file, "ATQA", data->atqa, 2)) break;
  978. if(!flipper_format_write_hex(file, "SAK", &data->sak, 1)) break;
  979. // Save more data if necessary
  980. if(dev->format == NfcDeviceSaveFormatMifareUl) {
  981. if(!nfc_device_save_mifare_ul_data(file, dev)) break;
  982. } else if(dev->format == NfcDeviceSaveFormatMifareDesfire) {
  983. if(!nfc_device_save_mifare_df_data(file, dev)) break;
  984. } else if(dev->format == NfcDeviceSaveFormatBankCard) {
  985. if(!nfc_device_save_bank_card_data(file, dev)) break;
  986. } else if(dev->format == NfcDeviceSaveFormatMifareClassic) {
  987. // Save data
  988. if(!nfc_device_save_mifare_classic_data(file, dev)) break;
  989. // Save keys cache
  990. if(!nfc_device_save_mifare_classic_keys(dev)) break;
  991. }
  992. saved = true;
  993. } while(0);
  994. if(!saved) {
  995. dialog_message_show_storage_error(dev->dialogs, "Can not save\nkey file");
  996. }
  997. string_clear(temp_str);
  998. flipper_format_free(file);
  999. return saved;
  1000. }
  1001. bool nfc_device_save(NfcDevice* dev, const char* dev_name) {
  1002. return nfc_device_save_file(dev, dev_name, NFC_APP_FOLDER, NFC_APP_EXTENSION, true);
  1003. }
  1004. bool nfc_device_save_shadow(NfcDevice* dev, const char* dev_name) {
  1005. dev->shadow_file_exist = true;
  1006. return nfc_device_save_file(dev, dev_name, NFC_APP_FOLDER, NFC_APP_SHADOW_EXTENSION, true);
  1007. }
  1008. static bool nfc_device_load_data(NfcDevice* dev, string_t path, bool show_dialog) {
  1009. bool parsed = false;
  1010. FlipperFormat* file = flipper_format_file_alloc(dev->storage);
  1011. FuriHalNfcDevData* data = &dev->dev_data.nfc_data;
  1012. uint32_t data_cnt = 0;
  1013. string_t temp_str;
  1014. string_init(temp_str);
  1015. bool deprecated_version = false;
  1016. if(dev->loading_cb) {
  1017. dev->loading_cb(dev->loading_cb_ctx, true);
  1018. }
  1019. do {
  1020. // Check existance of shadow file
  1021. nfc_device_get_shadow_path(path, temp_str);
  1022. dev->shadow_file_exist =
  1023. storage_common_stat(dev->storage, string_get_cstr(temp_str), NULL) == FSE_OK;
  1024. // Open shadow file if it exists. If not - open original
  1025. if(dev->shadow_file_exist) {
  1026. if(!flipper_format_file_open_existing(file, string_get_cstr(temp_str))) break;
  1027. } else {
  1028. if(!flipper_format_file_open_existing(file, string_get_cstr(path))) break;
  1029. }
  1030. // Read and verify file header
  1031. uint32_t version = 0;
  1032. if(!flipper_format_read_header(file, temp_str, &version)) break;
  1033. if(string_cmp_str(temp_str, nfc_file_header) || (version != nfc_file_version)) {
  1034. deprecated_version = true;
  1035. break;
  1036. }
  1037. // Read Nfc device type
  1038. if(!flipper_format_read_string(file, "Device type", temp_str)) break;
  1039. if(!nfc_device_parse_format_string(dev, temp_str)) break;
  1040. // Read and parse UID, ATQA and SAK
  1041. if(!flipper_format_get_value_count(file, "UID", &data_cnt)) break;
  1042. if(!(data_cnt == 4 || data_cnt == 7)) break;
  1043. data->uid_len = data_cnt;
  1044. if(!flipper_format_read_hex(file, "UID", data->uid, data->uid_len)) break;
  1045. if(!flipper_format_read_hex(file, "ATQA", data->atqa, 2)) break;
  1046. if(!flipper_format_read_hex(file, "SAK", &data->sak, 1)) break;
  1047. // Parse other data
  1048. if(dev->format == NfcDeviceSaveFormatMifareUl) {
  1049. if(!nfc_device_load_mifare_ul_data(file, dev)) break;
  1050. } else if(dev->format == NfcDeviceSaveFormatMifareClassic) {
  1051. if(!nfc_device_load_mifare_classic_data(file, dev)) break;
  1052. } else if(dev->format == NfcDeviceSaveFormatMifareDesfire) {
  1053. if(!nfc_device_load_mifare_df_data(file, dev)) break;
  1054. } else if(dev->format == NfcDeviceSaveFormatBankCard) {
  1055. if(!nfc_device_load_bank_card_data(file, dev)) break;
  1056. }
  1057. parsed = true;
  1058. } while(false);
  1059. if(dev->loading_cb) {
  1060. dev->loading_cb(dev->loading_cb_ctx, false);
  1061. }
  1062. if((!parsed) && (show_dialog)) {
  1063. if(deprecated_version) {
  1064. dialog_message_show_storage_error(dev->dialogs, "File format deprecated");
  1065. } else {
  1066. dialog_message_show_storage_error(dev->dialogs, "Can not parse\nfile");
  1067. }
  1068. }
  1069. string_clear(temp_str);
  1070. flipper_format_free(file);
  1071. return parsed;
  1072. }
  1073. bool nfc_device_load(NfcDevice* dev, const char* file_path, bool show_dialog) {
  1074. furi_assert(dev);
  1075. furi_assert(file_path);
  1076. // Load device data
  1077. string_set_str(dev->load_path, file_path);
  1078. bool dev_load = nfc_device_load_data(dev, dev->load_path, show_dialog);
  1079. if(dev_load) {
  1080. // Set device name
  1081. string_t filename;
  1082. string_init(filename);
  1083. path_extract_filename_no_ext(file_path, filename);
  1084. nfc_device_set_name(dev, string_get_cstr(filename));
  1085. string_clear(filename);
  1086. }
  1087. return dev_load;
  1088. }
  1089. bool nfc_file_select(NfcDevice* dev) {
  1090. furi_assert(dev);
  1091. // Input events and views are managed by file_browser
  1092. string_t nfc_app_folder;
  1093. string_init_set_str(nfc_app_folder, NFC_APP_FOLDER);
  1094. bool res = dialog_file_browser_show(
  1095. dev->dialogs, dev->load_path, nfc_app_folder, NFC_APP_EXTENSION, true, &I_Nfc_10px, true);
  1096. string_clear(nfc_app_folder);
  1097. if(res) {
  1098. string_t filename;
  1099. string_init(filename);
  1100. path_extract_filename(dev->load_path, filename, true);
  1101. strncpy(dev->dev_name, string_get_cstr(filename), NFC_DEV_NAME_MAX_LEN);
  1102. res = nfc_device_load_data(dev, dev->load_path, true);
  1103. if(res) {
  1104. nfc_device_set_name(dev, dev->dev_name);
  1105. }
  1106. string_clear(filename);
  1107. }
  1108. return res;
  1109. }
  1110. void nfc_device_data_clear(NfcDeviceData* dev_data) {
  1111. if(dev_data->protocol == NfcDeviceProtocolMifareDesfire) {
  1112. mf_df_clear(&dev_data->mf_df_data);
  1113. } else if(dev_data->protocol == NfcDeviceProtocolMifareClassic) {
  1114. memset(&dev_data->mf_classic_data, 0, sizeof(MfClassicData));
  1115. } else if(dev_data->protocol == NfcDeviceProtocolMifareUl) {
  1116. mf_ul_reset(&dev_data->mf_ul_data);
  1117. } else if(dev_data->protocol == NfcDeviceProtocolEMV) {
  1118. memset(&dev_data->emv_data, 0, sizeof(EmvData));
  1119. }
  1120. memset(&dev_data->nfc_data, 0, sizeof(FuriHalNfcDevData));
  1121. dev_data->protocol = NfcDeviceProtocolUnknown;
  1122. string_reset(dev_data->parsed_data);
  1123. }
  1124. void nfc_device_clear(NfcDevice* dev) {
  1125. furi_assert(dev);
  1126. nfc_device_set_name(dev, "");
  1127. nfc_device_data_clear(&dev->dev_data);
  1128. dev->format = NfcDeviceSaveFormatUid;
  1129. string_reset(dev->load_path);
  1130. }
  1131. bool nfc_device_delete(NfcDevice* dev, bool use_load_path) {
  1132. furi_assert(dev);
  1133. bool deleted = false;
  1134. string_t file_path;
  1135. string_init(file_path);
  1136. do {
  1137. // Delete original file
  1138. if(use_load_path && !string_empty_p(dev->load_path)) {
  1139. string_set(file_path, dev->load_path);
  1140. } else {
  1141. string_printf(file_path, "%s/%s%s", NFC_APP_FOLDER, dev->dev_name, NFC_APP_EXTENSION);
  1142. }
  1143. if(!storage_simply_remove(dev->storage, string_get_cstr(file_path))) break;
  1144. // Delete shadow file if it exists
  1145. if(dev->shadow_file_exist) {
  1146. if(use_load_path && !string_empty_p(dev->load_path)) {
  1147. nfc_device_get_shadow_path(dev->load_path, file_path);
  1148. } else {
  1149. string_printf(
  1150. file_path, "%s/%s%s", NFC_APP_FOLDER, dev->dev_name, NFC_APP_SHADOW_EXTENSION);
  1151. }
  1152. if(!storage_simply_remove(dev->storage, string_get_cstr(file_path))) break;
  1153. }
  1154. deleted = true;
  1155. } while(0);
  1156. if(!deleted) {
  1157. dialog_message_show_storage_error(dev->dialogs, "Can not remove file");
  1158. }
  1159. string_clear(file_path);
  1160. return deleted;
  1161. }
  1162. bool nfc_device_restore(NfcDevice* dev, bool use_load_path) {
  1163. furi_assert(dev);
  1164. furi_assert(dev->shadow_file_exist);
  1165. bool restored = false;
  1166. string_t path;
  1167. string_init(path);
  1168. do {
  1169. if(use_load_path && !string_empty_p(dev->load_path)) {
  1170. nfc_device_get_shadow_path(dev->load_path, path);
  1171. } else {
  1172. string_printf(
  1173. path, "%s/%s%s", NFC_APP_FOLDER, dev->dev_name, NFC_APP_SHADOW_EXTENSION);
  1174. }
  1175. if(!storage_simply_remove(dev->storage, string_get_cstr(path))) break;
  1176. dev->shadow_file_exist = false;
  1177. if(use_load_path && !string_empty_p(dev->load_path)) {
  1178. string_set(path, dev->load_path);
  1179. } else {
  1180. string_printf(path, "%s/%s%s", NFC_APP_FOLDER, dev->dev_name, NFC_APP_EXTENSION);
  1181. }
  1182. if(!nfc_device_load_data(dev, path, true)) break;
  1183. restored = true;
  1184. } while(0);
  1185. string_clear(path);
  1186. return restored;
  1187. }
  1188. void nfc_device_set_loading_callback(NfcDevice* dev, NfcLoadingCallback callback, void* context) {
  1189. furi_assert(dev);
  1190. dev->loading_cb = callback;
  1191. dev->loading_cb_ctx = context;
  1192. }