picopass_worker.c 45 KB

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  1. #include "picopass_worker_i.h"
  2. #include <flipper_format/flipper_format.h>
  3. #include <lib/nfc/protocols/nfcv.h>
  4. #define TAG "PicopassWorker"
  5. #define HAS_MASK(x, b) ((x & b) == b)
  6. // CSNs from Proxmark3 repo
  7. static const uint8_t loclass_csns[LOCLASS_NUM_CSNS][RFAL_PICOPASS_BLOCK_LEN] = {
  8. {0x01, 0x0A, 0x0F, 0xFF, 0xF7, 0xFF, 0x12, 0xE0},
  9. {0x0C, 0x06, 0x0C, 0xFE, 0xF7, 0xFF, 0x12, 0xE0},
  10. {0x10, 0x97, 0x83, 0x7B, 0xF7, 0xFF, 0x12, 0xE0},
  11. {0x13, 0x97, 0x82, 0x7A, 0xF7, 0xFF, 0x12, 0xE0},
  12. {0x07, 0x0E, 0x0D, 0xF9, 0xF7, 0xFF, 0x12, 0xE0},
  13. {0x14, 0x96, 0x84, 0x76, 0xF7, 0xFF, 0x12, 0xE0},
  14. {0x17, 0x96, 0x85, 0x71, 0xF7, 0xFF, 0x12, 0xE0},
  15. {0xCE, 0xC5, 0x0F, 0x77, 0xF7, 0xFF, 0x12, 0xE0},
  16. {0xD2, 0x5A, 0x82, 0xF8, 0xF7, 0xFF, 0x12, 0xE0},
  17. };
  18. static void picopass_worker_enable_field() {
  19. furi_hal_nfc_exit_sleep();
  20. furi_hal_nfc_ll_txrx_on();
  21. furi_hal_nfc_ll_poll();
  22. }
  23. static ReturnCode picopass_worker_disable_field(ReturnCode rc) {
  24. furi_hal_nfc_ll_txrx_off();
  25. furi_hal_nfc_start_sleep();
  26. return rc;
  27. }
  28. /***************************** Picopass Worker API *******************************/
  29. PicopassWorker* picopass_worker_alloc() {
  30. PicopassWorker* picopass_worker = malloc(sizeof(PicopassWorker));
  31. // Worker thread attributes
  32. picopass_worker->thread =
  33. furi_thread_alloc_ex("PicopassWorker", 8 * 1024, picopass_worker_task, picopass_worker);
  34. picopass_worker->callback = NULL;
  35. picopass_worker->context = NULL;
  36. picopass_worker->storage = furi_record_open(RECORD_STORAGE);
  37. picopass_worker_change_state(picopass_worker, PicopassWorkerStateReady);
  38. return picopass_worker;
  39. }
  40. void picopass_worker_free(PicopassWorker* picopass_worker) {
  41. furi_assert(picopass_worker);
  42. furi_thread_free(picopass_worker->thread);
  43. furi_record_close(RECORD_STORAGE);
  44. free(picopass_worker);
  45. }
  46. PicopassWorkerState picopass_worker_get_state(PicopassWorker* picopass_worker) {
  47. return picopass_worker->state;
  48. }
  49. void picopass_worker_start(
  50. PicopassWorker* picopass_worker,
  51. PicopassWorkerState state,
  52. PicopassDeviceData* dev_data,
  53. PicopassWorkerCallback callback,
  54. void* context) {
  55. furi_assert(picopass_worker);
  56. furi_assert(dev_data);
  57. picopass_worker->callback = callback;
  58. picopass_worker->context = context;
  59. picopass_worker->dev_data = dev_data;
  60. picopass_worker_change_state(picopass_worker, state);
  61. furi_thread_start(picopass_worker->thread);
  62. }
  63. void picopass_worker_stop(PicopassWorker* picopass_worker) {
  64. furi_assert(picopass_worker);
  65. furi_assert(picopass_worker->thread);
  66. if(furi_thread_get_state(picopass_worker->thread) == FuriThreadStateStopped) {
  67. return;
  68. }
  69. if(picopass_worker->state == PicopassWorkerStateBroken ||
  70. picopass_worker->state == PicopassWorkerStateReady) {
  71. return;
  72. }
  73. if(picopass_worker->state != PicopassWorkerStateEmulate &&
  74. picopass_worker->state != PicopassWorkerStateLoclass) {
  75. // Can't do this while emulating in transparent mode as SPI isn't active
  76. picopass_worker_disable_field(ERR_NONE);
  77. }
  78. if(furi_thread_get_state(picopass_worker->thread) != FuriThreadStateStopped) {
  79. picopass_worker_change_state(picopass_worker, PicopassWorkerStateStop);
  80. furi_thread_join(picopass_worker->thread);
  81. }
  82. }
  83. void picopass_worker_change_state(PicopassWorker* picopass_worker, PicopassWorkerState state) {
  84. picopass_worker->state = state;
  85. }
  86. /***************************** Picopass Worker Thread *******************************/
  87. ReturnCode picopass_detect_card(int timeout) {
  88. UNUSED(timeout);
  89. ReturnCode err;
  90. err = rfalPicoPassPollerInitialize();
  91. if(err != ERR_NONE) {
  92. FURI_LOG_E(TAG, "rfalPicoPassPollerInitialize error %d", err);
  93. return err;
  94. }
  95. err = rfalFieldOnAndStartGT();
  96. if(err != ERR_NONE) {
  97. FURI_LOG_E(TAG, "rfalFieldOnAndStartGT error %d", err);
  98. return err;
  99. }
  100. err = rfalPicoPassPollerCheckPresence();
  101. if(err != ERR_RF_COLLISION) {
  102. FURI_LOG_E(TAG, "rfalPicoPassPollerCheckPresence error %d", err);
  103. return err;
  104. }
  105. return ERR_NONE;
  106. }
  107. ReturnCode picopass_read_preauth(PicopassBlock* AA1) {
  108. rfalPicoPassIdentifyRes idRes;
  109. rfalPicoPassSelectRes selRes;
  110. ReturnCode err;
  111. err = rfalPicoPassPollerIdentify(&idRes);
  112. if(err != ERR_NONE) {
  113. FURI_LOG_E(TAG, "rfalPicoPassPollerIdentify error %d", err);
  114. return err;
  115. }
  116. err = rfalPicoPassPollerSelect(idRes.CSN, &selRes);
  117. if(err != ERR_NONE) {
  118. FURI_LOG_E(TAG, "rfalPicoPassPollerSelect error %d", err);
  119. return err;
  120. }
  121. memcpy(AA1[PICOPASS_CSN_BLOCK_INDEX].data, selRes.CSN, sizeof(selRes.CSN));
  122. FURI_LOG_D(
  123. TAG,
  124. "csn %02x%02x%02x%02x%02x%02x%02x%02x",
  125. AA1[PICOPASS_CSN_BLOCK_INDEX].data[0],
  126. AA1[PICOPASS_CSN_BLOCK_INDEX].data[1],
  127. AA1[PICOPASS_CSN_BLOCK_INDEX].data[2],
  128. AA1[PICOPASS_CSN_BLOCK_INDEX].data[3],
  129. AA1[PICOPASS_CSN_BLOCK_INDEX].data[4],
  130. AA1[PICOPASS_CSN_BLOCK_INDEX].data[5],
  131. AA1[PICOPASS_CSN_BLOCK_INDEX].data[6],
  132. AA1[PICOPASS_CSN_BLOCK_INDEX].data[7]);
  133. rfalPicoPassReadBlockRes cfg = {0};
  134. rfalPicoPassPollerReadBlock(PICOPASS_CONFIG_BLOCK_INDEX, &cfg);
  135. memcpy(AA1[PICOPASS_CONFIG_BLOCK_INDEX].data, cfg.data, sizeof(cfg.data));
  136. FURI_LOG_D(
  137. TAG,
  138. "config %02x%02x%02x%02x%02x%02x%02x%02x",
  139. AA1[PICOPASS_CONFIG_BLOCK_INDEX].data[0],
  140. AA1[PICOPASS_CONFIG_BLOCK_INDEX].data[1],
  141. AA1[PICOPASS_CONFIG_BLOCK_INDEX].data[2],
  142. AA1[PICOPASS_CONFIG_BLOCK_INDEX].data[3],
  143. AA1[PICOPASS_CONFIG_BLOCK_INDEX].data[4],
  144. AA1[PICOPASS_CONFIG_BLOCK_INDEX].data[5],
  145. AA1[PICOPASS_CONFIG_BLOCK_INDEX].data[6],
  146. AA1[PICOPASS_CONFIG_BLOCK_INDEX].data[7]);
  147. rfalPicoPassReadBlockRes aia;
  148. rfalPicoPassPollerReadBlock(PICOPASS_SECURE_AIA_BLOCK_INDEX, &aia);
  149. memcpy(AA1[PICOPASS_SECURE_AIA_BLOCK_INDEX].data, aia.data, sizeof(aia.data));
  150. FURI_LOG_D(
  151. TAG,
  152. "aia %02x%02x%02x%02x%02x%02x%02x%02x",
  153. AA1[PICOPASS_SECURE_AIA_BLOCK_INDEX].data[0],
  154. AA1[PICOPASS_SECURE_AIA_BLOCK_INDEX].data[1],
  155. AA1[PICOPASS_SECURE_AIA_BLOCK_INDEX].data[2],
  156. AA1[PICOPASS_SECURE_AIA_BLOCK_INDEX].data[3],
  157. AA1[PICOPASS_SECURE_AIA_BLOCK_INDEX].data[4],
  158. AA1[PICOPASS_SECURE_AIA_BLOCK_INDEX].data[5],
  159. AA1[PICOPASS_SECURE_AIA_BLOCK_INDEX].data[6],
  160. AA1[PICOPASS_SECURE_AIA_BLOCK_INDEX].data[7]);
  161. return ERR_NONE;
  162. }
  163. static ReturnCode
  164. picopass_auth_dict(PicopassWorker* picopass_worker, IclassEliteDictType dict_type) {
  165. rfalPicoPassReadCheckRes rcRes;
  166. rfalPicoPassCheckRes chkRes;
  167. bool elite = (dict_type != IclassStandardDictTypeFlipper);
  168. PicopassDeviceData* dev_data = picopass_worker->dev_data;
  169. PicopassBlock* AA1 = dev_data->AA1;
  170. PicopassPacs* pacs = &dev_data->pacs;
  171. uint8_t* csn = AA1[PICOPASS_CSN_BLOCK_INDEX].data;
  172. uint8_t* div_key = AA1[PICOPASS_SECURE_KD_BLOCK_INDEX].data;
  173. ReturnCode err = ERR_PARAM;
  174. uint8_t mac[4] = {0};
  175. uint8_t ccnr[12] = {0};
  176. size_t index = 0;
  177. uint8_t key[RFAL_PICOPASS_BLOCK_LEN] = {0};
  178. if(!iclass_elite_dict_check_presence(dict_type)) {
  179. FURI_LOG_E(TAG, "Dictionary not found");
  180. return ERR_PARAM;
  181. }
  182. IclassEliteDict* dict = iclass_elite_dict_alloc(dict_type);
  183. if(!dict) {
  184. FURI_LOG_E(TAG, "Dictionary not allocated");
  185. return ERR_PARAM;
  186. }
  187. FURI_LOG_D(TAG, "Loaded %lu keys", iclass_elite_dict_get_total_keys(dict));
  188. while(iclass_elite_dict_get_next_key(dict, key)) {
  189. FURI_LOG_D(
  190. TAG,
  191. "Try to %s auth with key %zu %02x%02x%02x%02x%02x%02x%02x%02x",
  192. elite ? "elite" : "standard",
  193. index++,
  194. key[0],
  195. key[1],
  196. key[2],
  197. key[3],
  198. key[4],
  199. key[5],
  200. key[6],
  201. key[7]);
  202. err = rfalPicoPassPollerReadCheck(&rcRes);
  203. if(err != ERR_NONE) {
  204. FURI_LOG_E(TAG, "rfalPicoPassPollerReadCheck error %d", err);
  205. break;
  206. }
  207. memcpy(ccnr, rcRes.CCNR, sizeof(rcRes.CCNR)); // last 4 bytes left 0
  208. loclass_iclass_calc_div_key(csn, key, div_key, elite);
  209. loclass_opt_doReaderMAC(ccnr, div_key, mac);
  210. err = rfalPicoPassPollerCheck(mac, &chkRes);
  211. if(err == ERR_NONE) {
  212. memcpy(pacs->key, key, RFAL_PICOPASS_BLOCK_LEN);
  213. break;
  214. }
  215. if(picopass_worker->state != PicopassWorkerStateDetect) break;
  216. }
  217. iclass_elite_dict_free(dict);
  218. return err;
  219. }
  220. ReturnCode picopass_auth(PicopassWorker* picopass_worker) {
  221. ReturnCode err;
  222. FURI_LOG_I(TAG, "Starting system dictionary attack [Standard KDF]");
  223. err = picopass_auth_dict(picopass_worker, IclassStandardDictTypeFlipper);
  224. if(err == ERR_NONE) {
  225. return ERR_NONE;
  226. }
  227. /* Because size of the user dictionary and could introduce confusing delay
  228. * to the read screen (since there is no feedback), we omit checking it.
  229. * It will be checked when the user uses Elite Dict. Attack, which has a progress bar
  230. */
  231. FURI_LOG_I(TAG, "Starting system dictionary attack [Elite KDF]");
  232. err = picopass_auth_dict(picopass_worker, IclassEliteDictTypeFlipper);
  233. if(err == ERR_NONE) {
  234. return ERR_NONE;
  235. }
  236. return err;
  237. }
  238. ReturnCode picopass_read_card(PicopassBlock* AA1) {
  239. ReturnCode err;
  240. size_t app_limit = AA1[PICOPASS_CONFIG_BLOCK_INDEX].data[0] < PICOPASS_MAX_APP_LIMIT ?
  241. AA1[PICOPASS_CONFIG_BLOCK_INDEX].data[0] :
  242. PICOPASS_MAX_APP_LIMIT;
  243. for(size_t i = 2; i < app_limit; i++) {
  244. if(i == PICOPASS_SECURE_KD_BLOCK_INDEX) {
  245. // Skip over Kd block which is populated earlier (READ of Kd returns all FF's)
  246. continue;
  247. }
  248. rfalPicoPassReadBlockRes block;
  249. err = rfalPicoPassPollerReadBlock(i, &block);
  250. if(err != ERR_NONE) {
  251. FURI_LOG_E(TAG, "rfalPicoPassPollerReadBlock error %d", err);
  252. return err;
  253. }
  254. FURI_LOG_D(
  255. TAG,
  256. "rfalPicoPassPollerReadBlock %d %02x%02x%02x%02x%02x%02x%02x%02x",
  257. i,
  258. block.data[0],
  259. block.data[1],
  260. block.data[2],
  261. block.data[3],
  262. block.data[4],
  263. block.data[5],
  264. block.data[6],
  265. block.data[7]);
  266. memcpy(AA1[i].data, block.data, sizeof(block.data));
  267. }
  268. return ERR_NONE;
  269. }
  270. ReturnCode picopass_write_card(PicopassBlock* AA1) {
  271. rfalPicoPassIdentifyRes idRes;
  272. rfalPicoPassSelectRes selRes;
  273. rfalPicoPassReadCheckRes rcRes;
  274. rfalPicoPassCheckRes chkRes;
  275. ReturnCode err;
  276. uint8_t div_key[8] = {0};
  277. uint8_t mac[4] = {0};
  278. uint8_t ccnr[12] = {0};
  279. err = rfalPicoPassPollerIdentify(&idRes);
  280. if(err != ERR_NONE) {
  281. FURI_LOG_E(TAG, "rfalPicoPassPollerIdentify error %d", err);
  282. return err;
  283. }
  284. err = rfalPicoPassPollerSelect(idRes.CSN, &selRes);
  285. if(err != ERR_NONE) {
  286. FURI_LOG_E(TAG, "rfalPicoPassPollerSelect error %d", err);
  287. return err;
  288. }
  289. err = rfalPicoPassPollerReadCheck(&rcRes);
  290. if(err != ERR_NONE) {
  291. FURI_LOG_E(TAG, "rfalPicoPassPollerReadCheck error %d", err);
  292. return err;
  293. }
  294. memcpy(ccnr, rcRes.CCNR, sizeof(rcRes.CCNR)); // last 4 bytes left 0
  295. loclass_iclass_calc_div_key(selRes.CSN, (uint8_t*)picopass_iclass_key, div_key, false);
  296. loclass_opt_doReaderMAC(ccnr, div_key, mac);
  297. err = rfalPicoPassPollerCheck(mac, &chkRes);
  298. if(err != ERR_NONE) {
  299. FURI_LOG_E(TAG, "rfalPicoPassPollerCheck error %d", err);
  300. return err;
  301. }
  302. for(size_t i = 6; i < 10; i++) {
  303. FURI_LOG_D(TAG, "rfalPicoPassPollerWriteBlock %d", i);
  304. uint8_t data[9] = {0};
  305. data[0] = i;
  306. memcpy(data + 1, AA1[i].data, RFAL_PICOPASS_BLOCK_LEN);
  307. loclass_doMAC_N(data, sizeof(data), div_key, mac);
  308. FURI_LOG_D(
  309. TAG,
  310. "loclass_doMAC_N %d %02x%02x%02x%02x%02x%02x%02x%02x %02x%02x%02x%02x",
  311. i,
  312. data[1],
  313. data[2],
  314. data[3],
  315. data[4],
  316. data[5],
  317. data[6],
  318. data[7],
  319. data[8],
  320. mac[0],
  321. mac[1],
  322. mac[2],
  323. mac[3]);
  324. err = rfalPicoPassPollerWriteBlock(i, AA1[i].data, mac);
  325. if(err != ERR_NONE) {
  326. FURI_LOG_E(TAG, "rfalPicoPassPollerWriteBlock error %d", err);
  327. return err;
  328. }
  329. }
  330. return ERR_NONE;
  331. }
  332. ReturnCode picopass_write_block(PicopassBlock* AA1, uint8_t blockNo, uint8_t* newBlock) {
  333. rfalPicoPassIdentifyRes idRes;
  334. rfalPicoPassSelectRes selRes;
  335. rfalPicoPassReadCheckRes rcRes;
  336. rfalPicoPassCheckRes chkRes;
  337. ReturnCode err;
  338. uint8_t mac[4] = {0};
  339. uint8_t ccnr[12] = {0};
  340. err = rfalPicoPassPollerIdentify(&idRes);
  341. if(err != ERR_NONE) {
  342. FURI_LOG_E(TAG, "rfalPicoPassPollerIdentify error %d", err);
  343. return err;
  344. }
  345. err = rfalPicoPassPollerSelect(idRes.CSN, &selRes);
  346. if(err != ERR_NONE) {
  347. FURI_LOG_E(TAG, "rfalPicoPassPollerSelect error %d", err);
  348. return err;
  349. }
  350. err = rfalPicoPassPollerReadCheck(&rcRes);
  351. if(err != ERR_NONE) {
  352. FURI_LOG_E(TAG, "rfalPicoPassPollerReadCheck error %d", err);
  353. return err;
  354. }
  355. memcpy(ccnr, rcRes.CCNR, sizeof(rcRes.CCNR)); // last 4 bytes left 0
  356. if(memcmp(selRes.CSN, AA1[PICOPASS_CSN_BLOCK_INDEX].data, RFAL_PICOPASS_BLOCK_LEN) != 0) {
  357. FURI_LOG_E(TAG, "Wrong CSN for write");
  358. return ERR_REQUEST;
  359. }
  360. loclass_opt_doReaderMAC(ccnr, AA1[PICOPASS_SECURE_KD_BLOCK_INDEX].data, mac);
  361. err = rfalPicoPassPollerCheck(mac, &chkRes);
  362. if(err != ERR_NONE) {
  363. FURI_LOG_E(TAG, "rfalPicoPassPollerCheck error %d", err);
  364. return err;
  365. }
  366. FURI_LOG_D(TAG, "rfalPicoPassPollerWriteBlock %d", blockNo);
  367. uint8_t data[9] = {
  368. blockNo,
  369. newBlock[0],
  370. newBlock[1],
  371. newBlock[2],
  372. newBlock[3],
  373. newBlock[4],
  374. newBlock[5],
  375. newBlock[6],
  376. newBlock[7]};
  377. loclass_doMAC_N(data, sizeof(data), AA1[PICOPASS_SECURE_KD_BLOCK_INDEX].data, mac);
  378. FURI_LOG_D(
  379. TAG,
  380. "loclass_doMAC_N %d %02x%02x%02x%02x%02x%02x%02x%02x %02x%02x%02x%02x",
  381. blockNo,
  382. data[1],
  383. data[2],
  384. data[3],
  385. data[4],
  386. data[5],
  387. data[6],
  388. data[7],
  389. data[8],
  390. mac[0],
  391. mac[1],
  392. mac[2],
  393. mac[3]);
  394. err = rfalPicoPassPollerWriteBlock(data[0], data + 1, mac);
  395. if(err != ERR_NONE) {
  396. FURI_LOG_E(TAG, "rfalPicoPassPollerWriteBlock error %d", err);
  397. return err;
  398. }
  399. return ERR_NONE;
  400. }
  401. void picopass_worker_elite_dict_attack(PicopassWorker* picopass_worker) {
  402. furi_assert(picopass_worker);
  403. furi_assert(picopass_worker->callback);
  404. picopass_device_data_clear(picopass_worker->dev_data);
  405. PicopassDeviceData* dev_data = picopass_worker->dev_data;
  406. PicopassBlock* AA1 = dev_data->AA1;
  407. PicopassPacs* pacs = &dev_data->pacs;
  408. for(size_t i = 0; i < PICOPASS_MAX_APP_LIMIT; i++) {
  409. memset(AA1[i].data, 0, sizeof(AA1[i].data));
  410. }
  411. memset(pacs, 0, sizeof(PicopassPacs));
  412. IclassEliteDictAttackData* dict_attack_data =
  413. &picopass_worker->dev_data->iclass_elite_dict_attack_data;
  414. bool elite = (dict_attack_data->type != IclassStandardDictTypeFlipper);
  415. rfalPicoPassReadCheckRes rcRes;
  416. rfalPicoPassCheckRes chkRes;
  417. ReturnCode err;
  418. uint8_t mac[4] = {0};
  419. uint8_t ccnr[12] = {0};
  420. size_t index = 0;
  421. uint8_t key[RFAL_PICOPASS_BLOCK_LEN] = {0};
  422. // Load dictionary
  423. IclassEliteDict* dict = dict_attack_data->dict;
  424. if(!dict) {
  425. FURI_LOG_E(TAG, "Dictionary not found");
  426. picopass_worker->callback(PicopassWorkerEventNoDictFound, picopass_worker->context);
  427. return;
  428. }
  429. do {
  430. if(picopass_detect_card(1000) == ERR_NONE) {
  431. picopass_worker->callback(PicopassWorkerEventCardDetected, picopass_worker->context);
  432. // Process first found device
  433. err = picopass_read_preauth(AA1);
  434. if(err != ERR_NONE) {
  435. FURI_LOG_E(TAG, "picopass_read_preauth error %d", err);
  436. picopass_worker->callback(PicopassWorkerEventAborted, picopass_worker->context);
  437. return;
  438. }
  439. // Thank you proxmark!
  440. pacs->legacy = picopass_is_memset(AA1[5].data, 0xFF, 8);
  441. pacs->se_enabled = (memcmp(AA1[5].data, "\xff\xff\xff\x00\x06\xff\xff\xff", 8) == 0);
  442. if(pacs->se_enabled) {
  443. FURI_LOG_D(TAG, "SE enabled");
  444. picopass_worker->callback(PicopassWorkerEventAborted, picopass_worker->context);
  445. return;
  446. }
  447. break;
  448. } else {
  449. picopass_worker->callback(PicopassWorkerEventNoCardDetected, picopass_worker->context);
  450. }
  451. if(picopass_worker->state != PicopassWorkerStateEliteDictAttack) break;
  452. furi_delay_ms(100);
  453. } while(true);
  454. FURI_LOG_D(
  455. TAG, "Start Dictionary attack, Key Count %lu", iclass_elite_dict_get_total_keys(dict));
  456. while(iclass_elite_dict_get_next_key(dict, key)) {
  457. FURI_LOG_T(TAG, "Key %zu", index);
  458. if(++index % PICOPASS_DICT_KEY_BATCH_SIZE == 0) {
  459. picopass_worker->callback(
  460. PicopassWorkerEventNewDictKeyBatch, picopass_worker->context);
  461. }
  462. err = rfalPicoPassPollerReadCheck(&rcRes);
  463. if(err != ERR_NONE) {
  464. FURI_LOG_E(TAG, "rfalPicoPassPollerReadCheck error %d", err);
  465. break;
  466. }
  467. memcpy(ccnr, rcRes.CCNR, sizeof(rcRes.CCNR)); // last 4 bytes left 0
  468. uint8_t* csn = AA1[PICOPASS_CSN_BLOCK_INDEX].data;
  469. uint8_t* div_key = AA1[PICOPASS_SECURE_KD_BLOCK_INDEX].data;
  470. loclass_iclass_calc_div_key(csn, key, div_key, elite);
  471. loclass_opt_doReaderMAC(ccnr, div_key, mac);
  472. err = rfalPicoPassPollerCheck(mac, &chkRes);
  473. if(err == ERR_NONE) {
  474. FURI_LOG_I(
  475. TAG,
  476. "Found key: %02x%02x%02x%02x%02x%02x%02x%02x",
  477. key[0],
  478. key[1],
  479. key[2],
  480. key[3],
  481. key[4],
  482. key[5],
  483. key[6],
  484. key[7]);
  485. memcpy(pacs->key, key, RFAL_PICOPASS_BLOCK_LEN);
  486. pacs->elite_kdf = elite;
  487. err = picopass_read_card(AA1);
  488. if(err != ERR_NONE) {
  489. FURI_LOG_E(TAG, "picopass_read_card error %d", err);
  490. picopass_worker->callback(PicopassWorkerEventFail, picopass_worker->context);
  491. break;
  492. }
  493. err = picopass_device_parse_credential(AA1, pacs);
  494. if(err != ERR_NONE) {
  495. FURI_LOG_E(TAG, "picopass_device_parse_credential error %d", err);
  496. picopass_worker->callback(PicopassWorkerEventFail, picopass_worker->context);
  497. break;
  498. }
  499. err = picopass_device_parse_wiegand(pacs->credential, pacs);
  500. if(err != ERR_NONE) {
  501. FURI_LOG_E(TAG, "picopass_device_parse_wiegand error %d", err);
  502. picopass_worker->callback(PicopassWorkerEventFail, picopass_worker->context);
  503. break;
  504. }
  505. picopass_worker->callback(PicopassWorkerEventAborted, picopass_worker->context);
  506. break;
  507. }
  508. if(picopass_worker->state != PicopassWorkerStateEliteDictAttack) break;
  509. }
  510. FURI_LOG_D(TAG, "Dictionary complete");
  511. if(picopass_worker->state == PicopassWorkerStateEliteDictAttack) {
  512. picopass_worker->callback(PicopassWorkerEventSuccess, picopass_worker->context);
  513. } else {
  514. picopass_worker->callback(PicopassWorkerEventAborted, picopass_worker->context);
  515. }
  516. }
  517. int32_t picopass_worker_task(void* context) {
  518. PicopassWorker* picopass_worker = context;
  519. if(picopass_worker->state == PicopassWorkerStateDetect) {
  520. picopass_worker_enable_field();
  521. picopass_worker_detect(picopass_worker);
  522. } else if(picopass_worker->state == PicopassWorkerStateWrite) {
  523. picopass_worker_enable_field();
  524. picopass_worker_write(picopass_worker);
  525. } else if(picopass_worker->state == PicopassWorkerStateWriteKey) {
  526. picopass_worker_enable_field();
  527. picopass_worker_write_key(picopass_worker);
  528. } else if(picopass_worker->state == PicopassWorkerStateEliteDictAttack) {
  529. picopass_worker_enable_field();
  530. picopass_worker_elite_dict_attack(picopass_worker);
  531. } else if(picopass_worker->state == PicopassWorkerStateEmulate) {
  532. picopass_worker_emulate(picopass_worker, false);
  533. } else if(picopass_worker->state == PicopassWorkerStateLoclass) {
  534. picopass_worker_emulate(picopass_worker, true);
  535. } else if(picopass_worker->state == PicopassWorkerStateStop) {
  536. FURI_LOG_D(TAG, "Worker state stop");
  537. // no-op
  538. } else {
  539. FURI_LOG_W(TAG, "Unknown state %d", picopass_worker->state);
  540. }
  541. picopass_worker_disable_field(ERR_NONE);
  542. picopass_worker_change_state(picopass_worker, PicopassWorkerStateReady);
  543. return 0;
  544. }
  545. void picopass_worker_detect(PicopassWorker* picopass_worker) {
  546. picopass_device_data_clear(picopass_worker->dev_data);
  547. PicopassDeviceData* dev_data = picopass_worker->dev_data;
  548. PicopassBlock* AA1 = dev_data->AA1;
  549. PicopassPacs* pacs = &dev_data->pacs;
  550. ReturnCode err;
  551. // reset device data
  552. for(size_t i = 0; i < PICOPASS_MAX_APP_LIMIT; i++) {
  553. memset(AA1[i].data, 0, sizeof(AA1[i].data));
  554. }
  555. memset(pacs, 0, sizeof(PicopassPacs));
  556. PicopassWorkerEvent nextState = PicopassWorkerEventSuccess;
  557. while(picopass_worker->state == PicopassWorkerStateDetect) {
  558. if(picopass_detect_card(1000) == ERR_NONE) {
  559. // Process first found device
  560. err = picopass_read_preauth(AA1);
  561. if(err != ERR_NONE) {
  562. FURI_LOG_E(TAG, "picopass_read_preauth error %d", err);
  563. nextState = PicopassWorkerEventFail;
  564. }
  565. // Thank you proxmark!
  566. pacs->legacy = picopass_is_memset(AA1[5].data, 0xFF, 8);
  567. pacs->se_enabled = (memcmp(AA1[5].data, "\xff\xff\xff\x00\x06\xff\xff\xff", 8) == 0);
  568. if(pacs->se_enabled) {
  569. FURI_LOG_D(TAG, "SE enabled");
  570. nextState = PicopassWorkerEventFail;
  571. }
  572. if(nextState == PicopassWorkerEventSuccess) {
  573. err = picopass_auth(picopass_worker);
  574. if(err != ERR_NONE) {
  575. FURI_LOG_E(TAG, "picopass_try_auth error %d", err);
  576. nextState = PicopassWorkerEventFail;
  577. }
  578. }
  579. if(nextState == PicopassWorkerEventSuccess) {
  580. err = picopass_read_card(AA1);
  581. if(err != ERR_NONE) {
  582. FURI_LOG_E(TAG, "picopass_read_card error %d", err);
  583. nextState = PicopassWorkerEventFail;
  584. }
  585. }
  586. if(nextState == PicopassWorkerEventSuccess) {
  587. err = picopass_device_parse_credential(AA1, pacs);
  588. if(err != ERR_NONE) {
  589. FURI_LOG_E(TAG, "picopass_device_parse_credential error %d", err);
  590. nextState = PicopassWorkerEventFail;
  591. }
  592. }
  593. if(nextState == PicopassWorkerEventSuccess) {
  594. err = picopass_device_parse_wiegand(pacs->credential, pacs);
  595. if(err != ERR_NONE) {
  596. FURI_LOG_E(TAG, "picopass_device_parse_wiegand error %d", err);
  597. nextState = PicopassWorkerEventFail;
  598. }
  599. }
  600. // Notify caller and exit
  601. if(picopass_worker->callback) {
  602. picopass_worker->callback(nextState, picopass_worker->context);
  603. }
  604. break;
  605. }
  606. furi_delay_ms(100);
  607. }
  608. }
  609. void picopass_worker_write(PicopassWorker* picopass_worker) {
  610. PicopassDeviceData* dev_data = picopass_worker->dev_data;
  611. PicopassBlock* AA1 = dev_data->AA1;
  612. ReturnCode err;
  613. PicopassWorkerEvent nextState = PicopassWorkerEventSuccess;
  614. while(picopass_worker->state == PicopassWorkerStateWrite) {
  615. if(picopass_detect_card(1000) == ERR_NONE) {
  616. err = picopass_write_card(AA1);
  617. if(err != ERR_NONE) {
  618. FURI_LOG_E(TAG, "picopass_write_card error %d", err);
  619. nextState = PicopassWorkerEventFail;
  620. }
  621. // Notify caller and exit
  622. if(picopass_worker->callback) {
  623. picopass_worker->callback(nextState, picopass_worker->context);
  624. }
  625. break;
  626. }
  627. furi_delay_ms(100);
  628. }
  629. }
  630. void picopass_worker_write_key(PicopassWorker* picopass_worker) {
  631. PicopassDeviceData* dev_data = picopass_worker->dev_data;
  632. PicopassBlock* AA1 = dev_data->AA1;
  633. PicopassPacs* pacs = &dev_data->pacs;
  634. ReturnCode err;
  635. PicopassWorkerEvent nextState = PicopassWorkerEventSuccess;
  636. uint8_t* csn = AA1[PICOPASS_CSN_BLOCK_INDEX].data;
  637. uint8_t* configBlock = AA1[PICOPASS_CONFIG_BLOCK_INDEX].data;
  638. uint8_t fuses = configBlock[7];
  639. uint8_t* oldKey = AA1[PICOPASS_SECURE_KD_BLOCK_INDEX].data;
  640. uint8_t newKey[RFAL_PICOPASS_BLOCK_LEN] = {0};
  641. loclass_iclass_calc_div_key(csn, pacs->key, newKey, pacs->elite_kdf);
  642. if((fuses & 0x80) == 0x80) {
  643. FURI_LOG_D(TAG, "Plain write for personalized mode key change");
  644. } else {
  645. FURI_LOG_D(TAG, "XOR write for application mode key change");
  646. // XOR when in application mode
  647. for(size_t i = 0; i < RFAL_PICOPASS_BLOCK_LEN; i++) {
  648. newKey[i] ^= oldKey[i];
  649. }
  650. }
  651. while(picopass_worker->state == PicopassWorkerStateWriteKey) {
  652. if(picopass_detect_card(1000) == ERR_NONE) {
  653. err = picopass_write_block(AA1, PICOPASS_SECURE_KD_BLOCK_INDEX, newKey);
  654. if(err != ERR_NONE) {
  655. FURI_LOG_E(TAG, "picopass_write_block error %d", err);
  656. nextState = PicopassWorkerEventFail;
  657. }
  658. // Notify caller and exit
  659. if(picopass_worker->callback) {
  660. picopass_worker->callback(nextState, picopass_worker->context);
  661. }
  662. break;
  663. }
  664. furi_delay_ms(100);
  665. }
  666. }
  667. // from proxmark3 armsrc/iclass.c rotateCSN
  668. static void picopass_anticoll_csn(uint8_t* rotated_csn, const uint8_t* original_csn) {
  669. for(uint8_t i = 0; i < 8; i++) {
  670. rotated_csn[i] = (original_csn[i] >> 3) | (original_csn[(i + 1) % 8] << 5);
  671. }
  672. }
  673. static void picopass_append_crc(uint8_t* buf, uint16_t size) {
  674. uint16_t crc = rfalPicoPassCalculateCcitt(0xE012, buf, size);
  675. buf[size] = crc & 0xFF;
  676. buf[size + 1] = crc >> 8;
  677. }
  678. static inline void picopass_emu_read_blocks(
  679. NfcVData* nfcv_data,
  680. uint8_t* buf,
  681. uint8_t block_num,
  682. uint8_t block_count) {
  683. memcpy(
  684. buf,
  685. nfcv_data->data + (block_num * RFAL_PICOPASS_BLOCK_LEN),
  686. block_count * RFAL_PICOPASS_BLOCK_LEN);
  687. }
  688. static inline void picopass_emu_write_blocks(
  689. NfcVData* nfcv_data,
  690. const uint8_t* buf,
  691. uint8_t block_num,
  692. uint8_t block_count) {
  693. memcpy(
  694. nfcv_data->data + (block_num * RFAL_PICOPASS_BLOCK_LEN),
  695. buf,
  696. block_count * RFAL_PICOPASS_BLOCK_LEN);
  697. }
  698. static void picopass_init_cipher_state(NfcVData* nfcv_data, PicopassEmulatorCtx* ctx) {
  699. uint8_t cc[RFAL_PICOPASS_BLOCK_LEN];
  700. uint8_t key[RFAL_PICOPASS_BLOCK_LEN];
  701. picopass_emu_read_blocks(nfcv_data, cc, PICOPASS_SECURE_EPURSE_BLOCK_INDEX, 1);
  702. picopass_emu_read_blocks(nfcv_data, key, ctx->key_block_num, 1);
  703. ctx->cipher_state = loclass_opt_doTagMAC_1(cc, key);
  704. }
  705. static void
  706. loclass_update_csn(FuriHalNfcDevData* nfc_data, NfcVData* nfcv_data, PicopassEmulatorCtx* ctx) {
  707. // collect two nonces in a row for each CSN
  708. uint8_t csn_num = (ctx->key_block_num / 2) % LOCLASS_NUM_CSNS;
  709. memcpy(nfc_data->uid, loclass_csns[csn_num], RFAL_PICOPASS_BLOCK_LEN);
  710. picopass_emu_write_blocks(nfcv_data, loclass_csns[csn_num], PICOPASS_CSN_BLOCK_INDEX, 1);
  711. }
  712. static void picopass_emu_handle_packet(
  713. FuriHalNfcTxRxContext* tx_rx,
  714. FuriHalNfcDevData* nfc_data,
  715. void* nfcv_data_in) {
  716. NfcVData* nfcv_data = (NfcVData*)nfcv_data_in;
  717. PicopassEmulatorCtx* ctx = nfcv_data->emu_protocol_ctx;
  718. uint8_t response[34];
  719. uint8_t response_length = 0;
  720. uint8_t key_block_num = PICOPASS_SECURE_KD_BLOCK_INDEX;
  721. const uint8_t block_ff[8] = {0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF};
  722. if(nfcv_data->frame_length < 1) {
  723. return;
  724. }
  725. switch(nfcv_data->frame[0]) {
  726. case RFAL_PICOPASS_CMD_ACTALL: // No args
  727. if(nfcv_data->frame_length != 1) {
  728. return;
  729. }
  730. if(ctx->state != PicopassEmulatorStateHalt) {
  731. ctx->state = PicopassEmulatorStateActive;
  732. }
  733. // Send SOF only
  734. break;
  735. case RFAL_PICOPASS_CMD_ACT: // No args
  736. if(nfcv_data->frame_length != 1 || ctx->state != PicopassEmulatorStateActive) {
  737. return;
  738. }
  739. // Send SOF only
  740. break;
  741. case RFAL_PICOPASS_CMD_HALT: // No args
  742. if(nfcv_data->frame_length != 1 || ctx->state != PicopassEmulatorStateSelected) {
  743. return;
  744. }
  745. // Technically we should go to StateHalt, but since we can't detect the field dropping we drop to idle instead
  746. ctx->state = PicopassEmulatorStateIdle;
  747. // Send SOF only
  748. break;
  749. case RFAL_PICOPASS_CMD_READ_OR_IDENTIFY:
  750. if(nfcv_data->frame_length == 1 &&
  751. ctx->state == PicopassEmulatorStateActive) { // PICOPASS_CMD_IDENTIFY
  752. // ASNB(8) CRC16(2)
  753. picopass_anticoll_csn(response, nfc_data->uid);
  754. picopass_append_crc(response, RFAL_PICOPASS_BLOCK_LEN);
  755. response_length = RFAL_PICOPASS_BLOCK_LEN + 2;
  756. break;
  757. } else if(
  758. nfcv_data->frame_length == 4 &&
  759. ctx->state == PicopassEmulatorStateSelected) { // PICOPASS_CMD_READ ADDRESS(1) CRC16(2)
  760. if(nfcv_data->frame[1] >= PICOPASS_MAX_APP_LIMIT) {
  761. return;
  762. }
  763. // TODO: Check CRC?
  764. // TODO: Check auth?
  765. // DATA(8) CRC16(2)
  766. if(nfcv_data->frame[1] == PICOPASS_SECURE_KD_BLOCK_INDEX ||
  767. nfcv_data->frame[1] == PICOPASS_SECURE_KC_BLOCK_INDEX) {
  768. // Reading Kd or Kc blocks always returns FF's
  769. memcpy(response, block_ff, RFAL_PICOPASS_BLOCK_LEN);
  770. } else {
  771. picopass_emu_read_blocks(nfcv_data, response, nfcv_data->frame[1], 1);
  772. }
  773. picopass_append_crc(response, RFAL_PICOPASS_BLOCK_LEN);
  774. response_length = RFAL_PICOPASS_BLOCK_LEN + 2;
  775. break;
  776. }
  777. return;
  778. case RFAL_PICOPASS_CMD_READ4: // ADDRESS(1) CRC16(2)
  779. if(nfcv_data->frame_length != 4 || ctx->state != PicopassEmulatorStateSelected ||
  780. nfcv_data->frame[1] + 4 >= PICOPASS_MAX_APP_LIMIT) {
  781. return;
  782. }
  783. // TODO: Check CRC?
  784. // TODO: Check auth?
  785. uint8_t blockNum = nfcv_data->frame[1];
  786. // DATA(32) CRC16(2)
  787. picopass_emu_read_blocks(nfcv_data, response, blockNum, 4);
  788. if(blockNum == 4) {
  789. // Kc is block 4, so just redact first block of response
  790. memcpy(response, block_ff, RFAL_PICOPASS_BLOCK_LEN);
  791. } else if(blockNum < 4) {
  792. // Kd is block 3
  793. uint8_t* kdOffset = response + ((3 - blockNum) * RFAL_PICOPASS_BLOCK_LEN);
  794. memcpy(kdOffset, block_ff, RFAL_PICOPASS_BLOCK_LEN);
  795. if(blockNum != 0) {
  796. // Redact Kc
  797. memcpy(kdOffset + RFAL_PICOPASS_BLOCK_LEN, block_ff, RFAL_PICOPASS_BLOCK_LEN);
  798. }
  799. }
  800. picopass_append_crc(response, RFAL_PICOPASS_BLOCK_LEN * 4);
  801. response_length = (RFAL_PICOPASS_BLOCK_LEN * 4) + 2;
  802. break;
  803. case RFAL_PICOPASS_CMD_SELECT: // ASNB(8)|SERIALNB(8)
  804. if(nfcv_data->frame_length != 9) {
  805. return;
  806. }
  807. uint8_t select_csn[RFAL_PICOPASS_BLOCK_LEN];
  808. if(ctx->state == PicopassEmulatorStateHalt || ctx->state == PicopassEmulatorStateIdle) {
  809. memcpy(select_csn, nfc_data->uid, RFAL_PICOPASS_BLOCK_LEN);
  810. } else {
  811. picopass_anticoll_csn(select_csn, nfc_data->uid);
  812. }
  813. if(memcmp(nfcv_data->frame + 1, select_csn, RFAL_PICOPASS_BLOCK_LEN)) {
  814. if(ctx->state == PicopassEmulatorStateActive) {
  815. ctx->state = PicopassEmulatorStateIdle;
  816. } else if(ctx->state == PicopassEmulatorStateSelected) {
  817. // Technically we should go to StateHalt, but since we can't detect the field dropping we drop to idle instead
  818. ctx->state = PicopassEmulatorStateIdle;
  819. }
  820. return;
  821. }
  822. ctx->state = PicopassEmulatorStateSelected;
  823. // SERIALNB(8) CRC16(2)
  824. memcpy(response, nfc_data->uid, RFAL_PICOPASS_BLOCK_LEN);
  825. picopass_append_crc(response, RFAL_PICOPASS_BLOCK_LEN);
  826. response_length = RFAL_PICOPASS_BLOCK_LEN + 2;
  827. break;
  828. case RFAL_PICOPASS_CMD_READCHECK_KC: // ADDRESS(1)
  829. key_block_num = PICOPASS_SECURE_KC_BLOCK_INDEX;
  830. // fallthrough
  831. case RFAL_PICOPASS_CMD_READCHECK_KD: // ADDRESS(1)
  832. if(nfcv_data->frame_length != 2 ||
  833. nfcv_data->frame[1] != PICOPASS_SECURE_EPURSE_BLOCK_INDEX ||
  834. ctx->state != PicopassEmulatorStateSelected) {
  835. return;
  836. }
  837. if(ctx->key_block_num != key_block_num && !ctx->loclass_mode) {
  838. ctx->key_block_num = key_block_num;
  839. picopass_init_cipher_state(nfcv_data, ctx);
  840. }
  841. // DATA(8)
  842. picopass_emu_read_blocks(nfcv_data, response, nfcv_data->frame[1], 1);
  843. response_length = RFAL_PICOPASS_BLOCK_LEN;
  844. break;
  845. case RFAL_PICOPASS_CMD_CHECK: // CHALLENGE(4) READERSIGNATURE(4)
  846. if(nfcv_data->frame_length != 9 || ctx->state != PicopassEmulatorStateSelected) {
  847. return;
  848. }
  849. if(ctx->loclass_mode) {
  850. // LOCLASS Reader attack mode
  851. // Copy EPURSE
  852. uint8_t cc[RFAL_PICOPASS_BLOCK_LEN];
  853. picopass_emu_read_blocks(nfcv_data, cc, PICOPASS_SECURE_EPURSE_BLOCK_INDEX, 1);
  854. // Check if the nonce is from a standard key
  855. uint8_t key[RFAL_PICOPASS_BLOCK_LEN];
  856. loclass_iclass_calc_div_key(nfc_data->uid, picopass_iclass_key, key, false);
  857. ctx->cipher_state = loclass_opt_doTagMAC_1(cc, key);
  858. uint8_t rmac[4];
  859. loclass_opt_doBothMAC_2(ctx->cipher_state, nfcv_data->frame + 1, rmac, response, key);
  860. if(!memcmp(nfcv_data->frame + 5, rmac, 4)) {
  861. // MAC from reader matches Standard Key, keyroll mode or non-elite keyed reader.
  862. // Either way no point logging it.
  863. FURI_LOG_W(TAG, "loclass: standard key detected during collection");
  864. ctx->loclass_got_std_key = true;
  865. ctx->state = PicopassEmulatorStateIdle;
  866. return;
  867. }
  868. // Copy CHALLENGE (nr) and READERSIGNATURE (mac) from frame
  869. uint8_t nr[4];
  870. memcpy(nr, nfcv_data->frame + 1, 4);
  871. uint8_t mac[4];
  872. memcpy(mac, nfcv_data->frame + 5, 4);
  873. FURI_LOG_I(TAG, "loclass: got nr/mac pair");
  874. loclass_writer_write_params(
  875. ctx->loclass_writer, ctx->key_block_num, nfc_data->uid, cc, nr, mac);
  876. // Rotate to the next CSN
  877. ctx->key_block_num = (ctx->key_block_num + 1) % (LOCLASS_NUM_CSNS * 2);
  878. loclass_update_csn(nfc_data, nfcv_data, ctx);
  879. ctx->state = PicopassEmulatorStateIdle;
  880. return;
  881. }
  882. uint8_t key[RFAL_PICOPASS_BLOCK_LEN];
  883. picopass_emu_read_blocks(nfcv_data, key, ctx->key_block_num, 1);
  884. uint8_t rmac[4];
  885. loclass_opt_doBothMAC_2(ctx->cipher_state, nfcv_data->frame + 1, rmac, response, key);
  886. #ifndef PICOPASS_DEBUG_IGNORE_BAD_RMAC
  887. if(memcmp(nfcv_data->frame + 5, rmac, 4)) {
  888. // Bad MAC from reader, do not send a response.
  889. FURI_LOG_I(TAG, "Got bad MAC from reader");
  890. // Reset the cipher state since we don't do it in READCHECK
  891. picopass_init_cipher_state(nfcv_data, ctx);
  892. return;
  893. }
  894. #endif
  895. // CHIPRESPONSE(4)
  896. response_length = 4;
  897. break;
  898. case RFAL_PICOPASS_CMD_UPDATE: // ADDRESS(1) DATA(8) SIGN(4)|CRC16(2)
  899. if((nfcv_data->frame_length != 12 && nfcv_data->frame_length != 14) ||
  900. ctx->state != PicopassEmulatorStateSelected) {
  901. return;
  902. }
  903. if(nfcv_data->frame[1] >= PICOPASS_MAX_APP_LIMIT) {
  904. return;
  905. }
  906. uint8_t cfgBlock[RFAL_PICOPASS_BLOCK_LEN];
  907. picopass_emu_read_blocks(nfcv_data, cfgBlock, PICOPASS_CONFIG_BLOCK_INDEX, 1);
  908. bool persMode = HAS_MASK(cfgBlock[7], PICOPASS_FUSE_PERS);
  909. if((nfcv_data->frame[1] == PICOPASS_CSN_BLOCK_INDEX) // CSN is always read only
  910. ||
  911. (!persMode &&
  912. !HAS_MASK(cfgBlock[3], 0x80)) // Chip is in RO mode, no updated possible (even ePurse)
  913. || (!persMode &&
  914. nfcv_data->frame[1] ==
  915. PICOPASS_SECURE_AIA_BLOCK_INDEX) // AIA can only be set in personalisation mode
  916. || (!persMode &&
  917. (nfcv_data->frame[1] == PICOPASS_SECURE_KD_BLOCK_INDEX ||
  918. nfcv_data->frame[1] == PICOPASS_SECURE_KC_BLOCK_INDEX) &&
  919. (!HAS_MASK(cfgBlock[7], PICOPASS_FUSE_CRYPT10)))) {
  920. return; // TODO: Is this the right response?
  921. }
  922. if(nfcv_data->frame[1] >= 6 && nfcv_data->frame[1] <= 12) {
  923. if(!HAS_MASK(
  924. cfgBlock[3],
  925. 1 << (nfcv_data->frame[1] - 6))) { // bit0 is block6, up to bit6 being block12
  926. // Block is marked as read-only, deny writing
  927. return; // TODO: Is this the right response?
  928. }
  929. }
  930. // TODO: Check CRC/SIGN depending on if in secure mode
  931. // Check correct key
  932. // -> Kd only allows decrementing e-Purse
  933. // -> per-app controlled by key access config
  934. //bool keyAccess = HAS_MASK(cfgBlock[5], 0x01);
  935. // -> must auth with that key to change it
  936. uint8_t blockOffset = nfcv_data->frame[1];
  937. uint8_t block[RFAL_PICOPASS_BLOCK_LEN];
  938. switch(nfcv_data->frame[1]) {
  939. case PICOPASS_CONFIG_BLOCK_INDEX:
  940. block[0] = cfgBlock[0]; // Applications Limit
  941. block[1] = cfgBlock[1] & nfcv_data->frame[3]; // OTP
  942. block[2] = cfgBlock[2] & nfcv_data->frame[4]; // OTP
  943. block[3] = cfgBlock[3] & nfcv_data->frame[5]; // Block Write Lock
  944. block[4] = cfgBlock[4]; // Chip Config
  945. block[5] = cfgBlock[5]; // Memory Config
  946. block[6] = nfcv_data->frame[8]; // EAS
  947. block[7] = cfgBlock[7]; // Fuses
  948. // Some parts allow w (but not e) if in persMode
  949. if(persMode) {
  950. block[0] &= nfcv_data->frame[2]; // Applications Limit
  951. block[4] &= nfcv_data->frame[6]; // Chip Config
  952. block[5] &= nfcv_data->frame[7]; // Memory Config
  953. block[7] &= nfcv_data->frame[9]; // Fuses
  954. } else {
  955. // Fuses allows setting Crypt1/0 from 1 to 0 only during application mode
  956. block[7] &= nfcv_data->frame[9] | ~PICOPASS_FUSE_CRYPT10;
  957. }
  958. break;
  959. case PICOPASS_SECURE_EPURSE_BLOCK_INDEX:
  960. // ePurse updates swap first and second half of the block each update
  961. memcpy(block + 4, nfcv_data->frame + 2, 4);
  962. memcpy(block, nfcv_data->frame + 6, 4);
  963. break;
  964. case PICOPASS_SECURE_KD_BLOCK_INDEX:
  965. // fallthrough
  966. case PICOPASS_SECURE_KC_BLOCK_INDEX:
  967. if(!persMode) {
  968. picopass_emu_read_blocks(nfcv_data, block, blockOffset, 1);
  969. for(uint8_t i = 0; i < sizeof(RFAL_PICOPASS_BLOCK_LEN); i++)
  970. block[i] ^= nfcv_data->frame[i + 2];
  971. break;
  972. }
  973. // Use default case when in personalisation mode
  974. // fallthrough
  975. default:
  976. memcpy(block, nfcv_data->frame + 2, RFAL_PICOPASS_BLOCK_LEN);
  977. break;
  978. }
  979. picopass_emu_write_blocks(nfcv_data, block, blockOffset, 1);
  980. if((nfcv_data->frame[1] == ctx->key_block_num ||
  981. nfcv_data->frame[1] == PICOPASS_SECURE_EPURSE_BLOCK_INDEX) &&
  982. !ctx->loclass_mode)
  983. picopass_init_cipher_state(nfcv_data, ctx);
  984. // DATA(8) CRC16(2)
  985. if(nfcv_data->frame[1] == PICOPASS_SECURE_KD_BLOCK_INDEX ||
  986. nfcv_data->frame[1] == PICOPASS_SECURE_KD_BLOCK_INDEX) {
  987. // Key updates always return FF's
  988. memcpy(response, block_ff, RFAL_PICOPASS_BLOCK_LEN);
  989. } else {
  990. memcpy(response, block, RFAL_PICOPASS_BLOCK_LEN);
  991. }
  992. picopass_append_crc(response, RFAL_PICOPASS_BLOCK_LEN);
  993. response_length = RFAL_PICOPASS_BLOCK_LEN + 2;
  994. break;
  995. case RFAL_PICOPASS_CMD_PAGESEL: // PAGE(1) CRC16(2)
  996. // Chips with a single page do not answer to this command
  997. // BLOCK1(8) CRC16(2)
  998. return;
  999. case RFAL_PICOPASS_CMD_DETECT:
  1000. // TODO - not used by iClass though
  1001. return;
  1002. default:
  1003. return;
  1004. }
  1005. NfcVSendFlags flags = NfcVSendFlagsSof | NfcVSendFlagsOneSubcarrier | NfcVSendFlagsHighRate;
  1006. if(response_length > 0) {
  1007. flags |= NfcVSendFlagsEof;
  1008. }
  1009. nfcv_emu_send(
  1010. tx_rx,
  1011. nfcv_data,
  1012. response,
  1013. response_length,
  1014. flags,
  1015. nfcv_data->eof_timestamp + NFCV_FDT_FC(4000)); // 3650 is ~254uS 4000 is ~283uS
  1016. }
  1017. void picopass_worker_emulate(PicopassWorker* picopass_worker, bool loclass_mode) {
  1018. furi_hal_nfc_exit_sleep();
  1019. FuriHalNfcTxRxContext tx_rx = {};
  1020. PicopassEmulatorCtx emu_ctx = {
  1021. .state = PicopassEmulatorStateIdle,
  1022. .key_block_num = PICOPASS_SECURE_KD_BLOCK_INDEX,
  1023. .loclass_mode = loclass_mode,
  1024. .loclass_got_std_key = false,
  1025. .loclass_writer = NULL,
  1026. };
  1027. FuriHalNfcDevData nfc_data = {
  1028. .uid_len = RFAL_PICOPASS_UID_LEN,
  1029. };
  1030. NfcVData* nfcv_data = malloc(sizeof(NfcVData));
  1031. nfcv_data->block_size = RFAL_PICOPASS_BLOCK_LEN;
  1032. nfcv_data->emu_protocol_ctx = &emu_ctx;
  1033. nfcv_data->emu_protocol_handler = &picopass_emu_handle_packet;
  1034. PicopassDeviceData* dev_data = picopass_worker->dev_data;
  1035. PicopassBlock* blocks = dev_data->AA1;
  1036. if(loclass_mode) {
  1037. emu_ctx.loclass_writer = loclass_writer_alloc();
  1038. if(emu_ctx.loclass_writer == NULL) {
  1039. picopass_worker->callback(
  1040. PicopassWorkerEventLoclassFileError, picopass_worker->context);
  1041. while(picopass_worker->state == PicopassWorkerStateEmulate ||
  1042. picopass_worker->state == PicopassWorkerStateLoclass) {
  1043. furi_delay_ms(1);
  1044. }
  1045. free(nfcv_data);
  1046. return;
  1047. }
  1048. // Setup blocks for loclass attack
  1049. emu_ctx.key_block_num = 0;
  1050. loclass_update_csn(&nfc_data, nfcv_data, &emu_ctx);
  1051. uint8_t conf[8] = {0x12, 0xFF, 0xFF, 0xFF, 0x7F, 0x1F, 0xFF, 0x3C};
  1052. picopass_emu_write_blocks(nfcv_data, conf, PICOPASS_CONFIG_BLOCK_INDEX, 1);
  1053. uint8_t epurse[8] = {0xFE, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF};
  1054. picopass_emu_write_blocks(nfcv_data, epurse, PICOPASS_SECURE_EPURSE_BLOCK_INDEX, 1);
  1055. uint8_t aia[8] = {0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF};
  1056. picopass_emu_write_blocks(nfcv_data, aia, PICOPASS_SECURE_AIA_BLOCK_INDEX, 1);
  1057. loclass_writer_write_start_stop(emu_ctx.loclass_writer, true);
  1058. } else {
  1059. memcpy(nfc_data.uid, blocks[PICOPASS_CSN_BLOCK_INDEX].data, RFAL_PICOPASS_BLOCK_LEN);
  1060. memcpy(nfcv_data->data, blocks, sizeof(dev_data->AA1));
  1061. picopass_init_cipher_state(nfcv_data, &emu_ctx);
  1062. }
  1063. uint8_t last_loclass_csn_num = 0;
  1064. bool loclass_got_std_key = false;
  1065. nfcv_emu_init(&nfc_data, nfcv_data);
  1066. while(picopass_worker->state == PicopassWorkerStateEmulate ||
  1067. picopass_worker->state == PicopassWorkerStateLoclass) {
  1068. if(nfcv_emu_loop(&tx_rx, &nfc_data, nfcv_data, 500)) {
  1069. if(picopass_worker->callback) {
  1070. if((loclass_mode) && (last_loclass_csn_num != emu_ctx.key_block_num)) {
  1071. last_loclass_csn_num = emu_ctx.key_block_num;
  1072. picopass_worker->callback(
  1073. PicopassWorkerEventLoclassGotMac, picopass_worker->context);
  1074. } else if((loclass_mode) && !loclass_got_std_key && emu_ctx.loclass_got_std_key) {
  1075. loclass_got_std_key = true;
  1076. picopass_worker->callback(
  1077. PicopassWorkerEventLoclassGotStandardKey, picopass_worker->context);
  1078. } else {
  1079. picopass_worker->callback(
  1080. PicopassWorkerEventSuccess, picopass_worker->context);
  1081. }
  1082. }
  1083. }
  1084. furi_delay_us(1);
  1085. }
  1086. if(emu_ctx.loclass_writer) {
  1087. loclass_writer_write_start_stop(emu_ctx.loclass_writer, false);
  1088. loclass_writer_free(emu_ctx.loclass_writer);
  1089. }
  1090. nfcv_emu_deinit(nfcv_data);
  1091. free(nfcv_data);
  1092. }