passy_reader.c 20 KB

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  1. #include "passy_reader.h"
  2. #define TAG "PassyReader"
  3. #define PASSY_READER_DG1_CHUNK_SIZE 0x20
  4. #define PASSY_READER_DG2_CHUNK_SIZE 0x20
  5. #define ASN_EMIT_DEBUG 0
  6. #include <lib/asn1/COM.h>
  7. static uint8_t passport_aid[] = {0xA0, 0x00, 0x00, 0x02, 0x47, 0x10, 0x01};
  8. static uint8_t select_header[] = {0x00, 0xA4, 0x04, 0x0C};
  9. static uint8_t get_challenge[] = {0x00, 0x84, 0x00, 0x00, 0x08};
  10. static uint8_t SW_success[] = {0x90, 0x00};
  11. static const uint8_t jpeg_header[4] = {0xFF, 0xD8, 0xFF, 0xE0};
  12. static const uint8_t jpeg2k_header[6] = {0x00, 0x00, 0x00, 0x0C, 0x6A, 0x50};
  13. static const uint8_t jpeg2k_cs_header[4] = {0xFF, 0x4F, 0xFF, 0x51};
  14. size_t asn1_length(uint8_t data[3]) {
  15. if(data[0] <= 0x7F) {
  16. return data[0];
  17. } else if(data[0] == 0x81) {
  18. return data[1];
  19. } else if(data[0] == 0x82) {
  20. return (data[1] << 8) | data[2];
  21. }
  22. return 0;
  23. }
  24. size_t asn1_length_length(uint8_t data[3]) {
  25. if(data[0] <= 0x7F) {
  26. return 1;
  27. } else if(data[0] == 0x81) {
  28. return 2;
  29. } else if(data[0] == 0x82) {
  30. return 3;
  31. }
  32. return 0;
  33. }
  34. PassyReader* passy_reader_alloc(Passy* passy) {
  35. PassyReader* passy_reader = malloc(sizeof(PassyReader));
  36. memset(passy_reader, 0, sizeof(PassyReader));
  37. furi_assert(passy);
  38. passy_reader->passy = passy;
  39. passy_reader->DG1 = passy->DG1;
  40. passy_reader->COM = passy->COM;
  41. passy_reader->dg_header = passy->dg_header;
  42. passy_reader->tx_buffer = bit_buffer_alloc(PASSY_READER_MAX_BUFFER_SIZE);
  43. passy_reader->rx_buffer = bit_buffer_alloc(PASSY_READER_MAX_BUFFER_SIZE);
  44. char passport_number[11];
  45. memset(passport_number, 0, sizeof(passport_number));
  46. memcpy(passport_number, passy->passport_number, strlen(passy->passport_number));
  47. passport_number[strlen(passy->passport_number)] = passy_checksum(passy->passport_number);
  48. FURI_LOG_I(TAG, "Passport number: %s", passport_number);
  49. char date_of_birth[8];
  50. memset(date_of_birth, 0, sizeof(date_of_birth));
  51. memcpy(date_of_birth, passy->date_of_birth, strlen(passy->date_of_birth));
  52. date_of_birth[strlen(passy->date_of_birth)] = passy_checksum(passy->date_of_birth);
  53. FURI_LOG_I(TAG, "Date of birth: %s", date_of_birth);
  54. char date_of_expiry[8];
  55. memset(date_of_expiry, 0, sizeof(date_of_expiry));
  56. memcpy(date_of_expiry, passy->date_of_expiry, strlen(passy->date_of_expiry));
  57. date_of_expiry[strlen(passy->date_of_expiry)] = passy_checksum(passy->date_of_expiry);
  58. FURI_LOG_I(TAG, "Date of expiry: %s", date_of_expiry);
  59. passy_reader->secure_messaging = secure_messaging_alloc(
  60. (uint8_t*)passport_number, (uint8_t*)date_of_birth, (uint8_t*)date_of_expiry);
  61. return passy_reader;
  62. }
  63. void passy_reader_free(PassyReader* passy_reader) {
  64. furi_assert(passy_reader);
  65. bit_buffer_free(passy_reader->tx_buffer);
  66. bit_buffer_free(passy_reader->rx_buffer);
  67. if(passy_reader->secure_messaging) {
  68. secure_messaging_free(passy_reader->secure_messaging);
  69. }
  70. free(passy_reader);
  71. }
  72. NfcCommand passy_reader_send(PassyReader* passy_reader) {
  73. NfcCommand ret = NfcCommandContinue;
  74. BitBuffer* tx_buffer = passy_reader->tx_buffer;
  75. BitBuffer* rx_buffer = passy_reader->rx_buffer;
  76. Iso14443_4bPoller* iso14443_4b_poller = passy_reader->iso14443_4b_poller;
  77. Iso14443_4bError error;
  78. // passy_log_bitbuffer(TAG, "NFC transmit", tx_buffer);
  79. error = iso14443_4b_poller_send_block(iso14443_4b_poller, tx_buffer, rx_buffer);
  80. if(error != Iso14443_4bErrorNone) {
  81. FURI_LOG_W(TAG, "iso14443_4b_poller_send_block error %d", error);
  82. return NfcCommandStop;
  83. }
  84. bit_buffer_reset(tx_buffer);
  85. // passy_log_bitbuffer(TAG, "NFC response", rx_buffer);
  86. // Check SW
  87. size_t length = bit_buffer_get_size_bytes(rx_buffer);
  88. const uint8_t* data = bit_buffer_get_data(rx_buffer);
  89. if(length < 2) {
  90. FURI_LOG_W(TAG, "Invalid response length %d", length);
  91. return NfcCommandStop;
  92. }
  93. passy_reader->last_sw = (data[length - 2] << 8) | data[length - 1];
  94. if(memcmp(data + length - 2, SW_success, sizeof(SW_success)) != 0) {
  95. FURI_LOG_W(TAG, "Invalid SW %02x %02x", data[length - 2], data[length - 1]);
  96. return NfcCommandStop;
  97. }
  98. return ret;
  99. }
  100. NfcCommand passy_reader_select_application(PassyReader* passy_reader) {
  101. NfcCommand ret = NfcCommandContinue;
  102. BitBuffer* tx_buffer = passy_reader->tx_buffer;
  103. bit_buffer_append_bytes(tx_buffer, select_header, sizeof(select_header));
  104. bit_buffer_append_byte(tx_buffer, sizeof(passport_aid));
  105. bit_buffer_append_bytes(tx_buffer, passport_aid, sizeof(passport_aid));
  106. bit_buffer_append_byte(tx_buffer, 0x00); // Le
  107. ret = passy_reader_send(passy_reader);
  108. if(ret != NfcCommandContinue) {
  109. return ret;
  110. }
  111. return ret;
  112. }
  113. NfcCommand passy_reader_get_challenge(PassyReader* passy_reader) {
  114. NfcCommand ret = NfcCommandContinue;
  115. bit_buffer_append_bytes(passy_reader->tx_buffer, get_challenge, sizeof(get_challenge));
  116. ret = passy_reader_send(passy_reader);
  117. if(ret != NfcCommandContinue) {
  118. return ret;
  119. }
  120. const uint8_t* data = bit_buffer_get_data(passy_reader->rx_buffer);
  121. SecureMessaging* secure_messaging = passy_reader->secure_messaging;
  122. const uint8_t* rnd_icc = data;
  123. memcpy(secure_messaging->rndICC, rnd_icc, 8);
  124. return ret;
  125. }
  126. NfcCommand passy_reader_authenticate(PassyReader* passy_reader) {
  127. NfcCommand ret = NfcCommandContinue;
  128. BitBuffer* tx_buffer = passy_reader->tx_buffer;
  129. // TODO: move into secure_messaging
  130. SecureMessaging* secure_messaging = passy_reader->secure_messaging;
  131. uint8_t S[32];
  132. memset(S, 0, sizeof(S));
  133. uint8_t eifd[32];
  134. memcpy(S, secure_messaging->rndIFD, sizeof(secure_messaging->rndIFD));
  135. memcpy(
  136. S + sizeof(secure_messaging->rndIFD),
  137. secure_messaging->rndICC,
  138. sizeof(secure_messaging->rndICC));
  139. memcpy(
  140. S + sizeof(secure_messaging->rndIFD) + sizeof(secure_messaging->rndICC),
  141. secure_messaging->Kifd,
  142. sizeof(secure_messaging->Kifd));
  143. uint8_t iv[8];
  144. memset(iv, 0, sizeof(iv));
  145. mbedtls_des3_context ctx;
  146. mbedtls_des3_init(&ctx);
  147. mbedtls_des3_set2key_enc(&ctx, secure_messaging->KENC);
  148. mbedtls_des3_crypt_cbc(&ctx, MBEDTLS_DES_ENCRYPT, sizeof(S), iv, S, eifd);
  149. mbedtls_des3_free(&ctx);
  150. passy_log_buffer(TAG, "S", S, sizeof(S));
  151. passy_log_buffer(TAG, "eifd", eifd, sizeof(eifd));
  152. uint8_t mifd[8];
  153. passy_mac(secure_messaging->KMAC, eifd, sizeof(eifd), mifd, false);
  154. passy_log_buffer(TAG, "mifd", mifd, sizeof(mifd));
  155. uint8_t authenticate_header[] = {0x00, 0x82, 0x00, 0x00};
  156. bit_buffer_append_bytes(tx_buffer, authenticate_header, sizeof(authenticate_header));
  157. bit_buffer_append_byte(tx_buffer, sizeof(eifd) + sizeof(mifd));
  158. bit_buffer_append_bytes(tx_buffer, eifd, sizeof(eifd));
  159. bit_buffer_append_bytes(tx_buffer, mifd, sizeof(mifd));
  160. bit_buffer_append_byte(tx_buffer, 0x28); // Le
  161. ret = passy_reader_send(passy_reader);
  162. if(ret != NfcCommandContinue) {
  163. return ret;
  164. }
  165. const uint8_t* data = bit_buffer_get_data(passy_reader->rx_buffer);
  166. size_t length = bit_buffer_get_size_bytes(passy_reader->rx_buffer);
  167. const uint8_t* mac = data + length - 2 - 8;
  168. uint8_t calculated_mac[8];
  169. passy_mac(secure_messaging->KMAC, (uint8_t*)data, length - 8 - 2, calculated_mac, false);
  170. if(memcmp(mac, calculated_mac, sizeof(calculated_mac)) != 0) {
  171. FURI_LOG_W(TAG, "Invalid MAC");
  172. return NfcCommandStop;
  173. }
  174. uint8_t decrypted[32];
  175. do {
  176. uint8_t iv[8];
  177. memset(iv, 0, sizeof(iv));
  178. mbedtls_des3_context ctx;
  179. mbedtls_des3_init(&ctx);
  180. mbedtls_des3_set2key_dec(&ctx, secure_messaging->KENC);
  181. mbedtls_des3_crypt_cbc(&ctx, MBEDTLS_DES_DECRYPT, length - 2 - 8, iv, data, decrypted);
  182. mbedtls_des3_free(&ctx);
  183. } while(false);
  184. passy_log_buffer(TAG, "decrypted", decrypted, sizeof(decrypted));
  185. uint8_t* rnd_icc = decrypted;
  186. uint8_t* rnd_ifd = decrypted + 8;
  187. uint8_t* Kicc = decrypted + 16;
  188. if(memcmp(rnd_icc, secure_messaging->rndICC, sizeof(secure_messaging->rndICC)) != 0) {
  189. FURI_LOG_W(TAG, "Invalid rndICC");
  190. return NfcCommandStop;
  191. }
  192. memcpy(secure_messaging->Kicc, Kicc, sizeof(secure_messaging->Kicc));
  193. memcpy(secure_messaging->SSC + 0, rnd_icc + 4, 4);
  194. memcpy(secure_messaging->SSC + 4, rnd_ifd + 4, 4);
  195. return ret;
  196. }
  197. NfcCommand passy_reader_select_file(PassyReader* passy_reader, uint16_t file_id) {
  198. NfcCommand ret = NfcCommandContinue;
  199. uint8_t select_0101[] = {0x00, 0xa4, 0x02, 0x0c, 0x02, 0x00, 0x00};
  200. select_0101[5] = (file_id >> 8) & 0xFF;
  201. select_0101[6] = file_id & 0xFF;
  202. secure_messaging_wrap_apdu(
  203. passy_reader->secure_messaging, select_0101, sizeof(select_0101), passy_reader->tx_buffer);
  204. ret = passy_reader_send(passy_reader);
  205. if(ret != NfcCommandContinue) {
  206. return ret;
  207. }
  208. secure_messaging_unwrap_rapdu(passy_reader->secure_messaging, passy_reader->rx_buffer);
  209. passy_log_bitbuffer(TAG, "NFC response (decrypted)", passy_reader->rx_buffer);
  210. return ret;
  211. }
  212. NfcCommand passy_reader_read_binary(
  213. PassyReader* passy_reader,
  214. uint16_t offset,
  215. uint8_t Le,
  216. uint8_t* output_buffer) {
  217. NfcCommand ret = NfcCommandContinue;
  218. if(offset & 0x8000) {
  219. FURI_LOG_W(TAG, "Invalid offset %04x", offset);
  220. }
  221. uint8_t read_binary[] = {0x00, 0xB0, (offset >> 8) & 0xff, (offset >> 0) & 0xff, Le};
  222. secure_messaging_wrap_apdu(
  223. passy_reader->secure_messaging, read_binary, sizeof(read_binary), passy_reader->tx_buffer);
  224. ret = passy_reader_send(passy_reader);
  225. if(ret != NfcCommandContinue) {
  226. return ret;
  227. }
  228. secure_messaging_unwrap_rapdu(passy_reader->secure_messaging, passy_reader->rx_buffer);
  229. const uint8_t* decrypted_data = bit_buffer_get_data(passy_reader->rx_buffer);
  230. memcpy(output_buffer, decrypted_data, Le);
  231. return ret;
  232. }
  233. NfcCommand passy_reader_state_machine(PassyReader* passy_reader) {
  234. furi_assert(passy_reader);
  235. Passy* passy = passy_reader->passy;
  236. NfcCommand ret = NfcCommandContinue;
  237. do {
  238. ret = passy_reader_select_application(passy_reader);
  239. if(ret != NfcCommandContinue) {
  240. view_dispatcher_send_custom_event(passy->view_dispatcher, PassyCustomEventReaderError);
  241. break;
  242. }
  243. ret = passy_reader_get_challenge(passy_reader);
  244. if(ret != NfcCommandContinue) {
  245. view_dispatcher_send_custom_event(passy->view_dispatcher, PassyCustomEventReaderError);
  246. break;
  247. }
  248. ret = passy_reader_authenticate(passy_reader);
  249. if(ret != NfcCommandContinue) {
  250. view_dispatcher_send_custom_event(passy->view_dispatcher, PassyCustomEventReaderError);
  251. break;
  252. }
  253. FURI_LOG_I(TAG, "Mututal authentication success");
  254. secure_messaging_calculate_session_keys(passy_reader->secure_messaging);
  255. view_dispatcher_send_custom_event(
  256. passy->view_dispatcher, PassyCustomEventReaderAuthenticated);
  257. ret = passy_reader_select_file(passy_reader, passy->read_type);
  258. if(ret != NfcCommandContinue) {
  259. view_dispatcher_send_custom_event(passy->view_dispatcher, PassyCustomEventReaderError);
  260. break;
  261. }
  262. if(passy->read_type == PassyReadCOM) {
  263. bit_buffer_reset(passy_reader->COM);
  264. uint8_t header[4];
  265. ret = passy_reader_read_binary(passy_reader, 0x00, sizeof(header), header);
  266. if(ret != NfcCommandContinue) {
  267. view_dispatcher_send_custom_event(
  268. passy->view_dispatcher, PassyCustomEventReaderError);
  269. break;
  270. }
  271. size_t body_size = 1 + asn1_length_length(header + 1) + asn1_length(header + 1);
  272. uint8_t body_offset = sizeof(header);
  273. bit_buffer_append_bytes(passy_reader->COM, header, sizeof(header));
  274. do {
  275. view_dispatcher_send_custom_event(
  276. passy->view_dispatcher, PassyCustomEventReaderReading);
  277. uint8_t chunk[PASSY_READER_DG1_CHUNK_SIZE];
  278. uint8_t Le = MIN(sizeof(chunk), (size_t)(body_size - body_offset));
  279. ret = passy_reader_read_binary(passy_reader, body_offset, Le, chunk);
  280. if(ret != NfcCommandContinue) {
  281. view_dispatcher_send_custom_event(
  282. passy->view_dispatcher, PassyCustomEventReaderError);
  283. break;
  284. }
  285. bit_buffer_append_bytes(passy_reader->COM, chunk, Le);
  286. body_offset += Le;
  287. } while(body_offset < body_size);
  288. } else if(passy->read_type == PassyReadDG1) {
  289. bit_buffer_reset(passy->DG1);
  290. uint8_t header[4];
  291. ret = passy_reader_read_binary(passy_reader, 0x00, sizeof(header), header);
  292. if(ret != NfcCommandContinue) {
  293. view_dispatcher_send_custom_event(
  294. passy->view_dispatcher, PassyCustomEventReaderError);
  295. break;
  296. }
  297. size_t body_size = 1 + asn1_length_length(header + 1) + asn1_length(header + 1);
  298. uint8_t body_offset = sizeof(header);
  299. bit_buffer_append_bytes(passy_reader->DG1, header, sizeof(header));
  300. do {
  301. view_dispatcher_send_custom_event(
  302. passy->view_dispatcher, PassyCustomEventReaderReading);
  303. uint8_t chunk[PASSY_READER_DG1_CHUNK_SIZE];
  304. uint8_t Le = MIN(sizeof(chunk), (size_t)(body_size - body_offset));
  305. ret = passy_reader_read_binary(passy_reader, body_offset, Le, chunk);
  306. if(ret != NfcCommandContinue) {
  307. view_dispatcher_send_custom_event(
  308. passy->view_dispatcher, PassyCustomEventReaderError);
  309. break;
  310. }
  311. bit_buffer_append_bytes(passy_reader->DG1, chunk, Le);
  312. body_offset += Le;
  313. } while(body_offset < body_size);
  314. passy_log_bitbuffer(TAG, "DG1", passy_reader->DG1);
  315. } else if(passy->read_type == PassyReadDG2 || passy->read_type == PassyReadDG7) {
  316. uint8_t header[100];
  317. ret = passy_reader_read_binary(passy_reader, 0x00, sizeof(header), header);
  318. if(ret != NfcCommandContinue) {
  319. view_dispatcher_send_custom_event(
  320. passy->view_dispatcher, PassyCustomEventReaderError);
  321. break;
  322. }
  323. view_dispatcher_send_custom_event(
  324. passy->view_dispatcher, PassyCustomEventReaderReading);
  325. size_t body_size = 1 + asn1_length_length(header + 1) + asn1_length(header + 1);
  326. FURI_LOG_I(
  327. TAG, "%s length: %d", passy->read_type == PassyReadDG2 ? "DG2" : "DG7", body_size);
  328. void* jpeg = memmem(header, sizeof(header), jpeg_header, sizeof(jpeg_header));
  329. void* jpeg2k = memmem(header, sizeof(header), jpeg2k_header, sizeof(jpeg2k_header));
  330. void* jpeg2k_cs =
  331. memmem(header, sizeof(header), jpeg2k_cs_header, sizeof(jpeg2k_cs_header));
  332. FuriString* path = furi_string_alloc();
  333. uint8_t start = 0;
  334. const char* dg_type = passy->read_type == PassyReadDG2 ? "DG2" : "DG7";
  335. if(jpeg) {
  336. furi_string_printf(
  337. path, "%s/%s%s", STORAGE_APP_DATA_PATH_PREFIX, dg_type, ".jpeg");
  338. start = (uint8_t*)jpeg - header;
  339. } else if(jpeg2k) {
  340. furi_string_printf(path, "%s/%s%s", STORAGE_APP_DATA_PATH_PREFIX, dg_type, ".jp2");
  341. start = (uint8_t*)jpeg2k - header;
  342. } else if(jpeg2k_cs) {
  343. furi_string_printf(path, "%s/%s%s", STORAGE_APP_DATA_PATH_PREFIX, dg_type, ".jpc");
  344. start = (uint8_t*)jpeg2k_cs - header;
  345. } else {
  346. furi_string_printf(path, "%s/%s%s", STORAGE_APP_DATA_PATH_PREFIX, dg_type, ".bin");
  347. start = 0;
  348. passy_log_buffer(TAG, "header", header, sizeof(header));
  349. }
  350. FURI_LOG_I(TAG, "Writing offset %d to %s", start, furi_string_get_cstr(path));
  351. Storage* storage = furi_record_open(RECORD_STORAGE);
  352. Stream* stream = file_stream_alloc(storage);
  353. file_stream_open(stream, furi_string_get_cstr(path), FSAM_WRITE, FSOM_OPEN_ALWAYS);
  354. uint8_t chunk[PASSY_READER_DG2_CHUNK_SIZE];
  355. passy->offset = start;
  356. passy->bytes_total = body_size;
  357. do {
  358. memset(chunk, 0, sizeof(chunk));
  359. uint8_t Le = MIN(sizeof(chunk), (size_t)(body_size - passy->offset));
  360. ret = passy_reader_read_binary(passy_reader, passy->offset, Le, chunk);
  361. if(ret != NfcCommandContinue) {
  362. view_dispatcher_send_custom_event(
  363. passy->view_dispatcher, PassyCustomEventReaderError);
  364. break;
  365. }
  366. passy->offset += Le;
  367. // passy_log_buffer(TAG, "chunk", chunk, sizeof(chunk));
  368. stream_write(stream, chunk, Le);
  369. view_dispatcher_send_custom_event(
  370. passy->view_dispatcher, PassyCustomEventReaderReading);
  371. } while(passy->offset < body_size);
  372. file_stream_close(stream);
  373. furi_record_close(RECORD_STORAGE);
  374. furi_string_free(path);
  375. } else {
  376. // Until file specific handling is implemented, we just read the header
  377. bit_buffer_reset(passy_reader->dg_header);
  378. uint8_t header[4];
  379. ret = passy_reader_read_binary(passy_reader, 0x00, sizeof(header), header);
  380. if(ret != NfcCommandContinue) {
  381. view_dispatcher_send_custom_event(
  382. passy->view_dispatcher, PassyCustomEventReaderError);
  383. break;
  384. }
  385. bit_buffer_append_bytes(passy_reader->dg_header, header, sizeof(header));
  386. }
  387. // Everything done
  388. ret = NfcCommandStop;
  389. view_dispatcher_send_custom_event(passy->view_dispatcher, PassyCustomEventReaderSuccess);
  390. } while(false);
  391. return ret;
  392. }
  393. NfcCommand passy_reader_poller_callback(NfcGenericEvent event, void* context) {
  394. furi_assert(event.protocol == NfcProtocolIso14443_4b);
  395. PassyReader* passy_reader = context;
  396. NfcCommand ret = NfcCommandContinue;
  397. const Iso14443_4bPollerEvent* iso14443_4b_event = event.event_data;
  398. Iso14443_4bPoller* iso14443_4b_poller = event.instance;
  399. FURI_LOG_D(TAG, "iso14443_4b_event->type %i", iso14443_4b_event->type);
  400. passy_reader->iso14443_4b_poller = iso14443_4b_poller;
  401. if(iso14443_4b_event->type == Iso14443_4bPollerEventTypeReady) {
  402. view_dispatcher_send_custom_event(
  403. passy_reader->passy->view_dispatcher, PassyCustomEventReaderDetected);
  404. nfc_device_set_data(
  405. passy_reader->passy->nfc_device,
  406. NfcProtocolIso14443_4b,
  407. nfc_poller_get_data(passy_reader->passy->poller));
  408. ret = passy_reader_state_machine(passy_reader);
  409. furi_thread_set_current_priority(FuriThreadPriorityLowest);
  410. } else if(iso14443_4b_event->type == Iso14443_4bPollerEventTypeError) {
  411. Iso14443_4bPollerEventData* data = iso14443_4b_event->data;
  412. Iso14443_4bError error = data->error;
  413. FURI_LOG_W(TAG, "Iso14443_4bError %i", error);
  414. switch(error) {
  415. case Iso14443_4bErrorNone:
  416. break;
  417. case Iso14443_4bErrorNotPresent:
  418. break;
  419. case Iso14443_4bErrorProtocol:
  420. ret = NfcCommandStop;
  421. break;
  422. case Iso14443_4bErrorTimeout:
  423. break;
  424. }
  425. }
  426. return ret;
  427. }