seader_worker.c 24 KB

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  1. #include "seader_worker_i.h"
  2. #include <flipper_format/flipper_format.h>
  3. #define TAG "SeaderWorker"
  4. #define APDU_HEADER_LEN 5
  5. #define ASN1_PREFIX 6
  6. #define RFAL_PICOPASS_TXRX_FLAGS \
  7. (FURI_HAL_NFC_LL_TXRX_FLAGS_CRC_TX_MANUAL | FURI_HAL_NFC_LL_TXRX_FLAGS_AGC_ON | \
  8. FURI_HAL_NFC_LL_TXRX_FLAGS_PAR_RX_REMV | FURI_HAL_NFC_LL_TXRX_FLAGS_CRC_RX_KEEP)
  9. // TODO: const
  10. uint8_t GET_RESPONSE[] = {0x00, 0xc0, 0x00, 0x00, 0xff};
  11. char payloadDebug[384] = {0};
  12. char display[SEADER_UART_RX_BUF_SIZE * 2 + 1] = {0};
  13. char asn1_log[SEADER_UART_RX_BUF_SIZE] = {0};
  14. bool requestPacs = true;
  15. // Forward declaration
  16. void sendCardDetected(SeaderUartBridge* seader_uart, CardDetails_t* cardDetails);
  17. static void seader_worker_enable_field() {
  18. furi_hal_nfc_ll_txrx_on();
  19. furi_hal_nfc_exit_sleep();
  20. furi_hal_nfc_ll_poll();
  21. }
  22. static ReturnCode seader_worker_disable_field(ReturnCode rc) {
  23. furi_hal_nfc_ll_txrx_off();
  24. furi_hal_nfc_start_sleep();
  25. return rc;
  26. }
  27. /***************************** Seader Worker API *******************************/
  28. SeaderWorker* seader_worker_alloc() {
  29. SeaderWorker* seader_worker = malloc(sizeof(SeaderWorker));
  30. // Worker thread attributes
  31. seader_worker->thread =
  32. furi_thread_alloc_ex("SeaderWorker", 8192, seader_worker_task, seader_worker);
  33. seader_worker->callback = NULL;
  34. seader_worker->context = NULL;
  35. seader_worker->storage = furi_record_open(RECORD_STORAGE);
  36. seader_worker_change_state(seader_worker, SeaderWorkerStateReady);
  37. return seader_worker;
  38. }
  39. void seader_worker_free(SeaderWorker* seader_worker) {
  40. furi_assert(seader_worker);
  41. furi_thread_free(seader_worker->thread);
  42. furi_record_close(RECORD_STORAGE);
  43. free(seader_worker);
  44. }
  45. SeaderWorkerState seader_worker_get_state(SeaderWorker* seader_worker) {
  46. return seader_worker->state;
  47. }
  48. void seader_worker_start(
  49. SeaderWorker* seader_worker,
  50. SeaderWorkerState state,
  51. SeaderUartBridge* uart,
  52. SeaderCredential* credential,
  53. SeaderWorkerCallback callback,
  54. void* context) {
  55. furi_assert(seader_worker);
  56. furi_assert(uart);
  57. furi_assert(credential);
  58. seader_worker->callback = callback;
  59. seader_worker->context = context;
  60. seader_worker->uart = uart;
  61. seader_worker->credential = credential;
  62. seader_worker_change_state(seader_worker, state);
  63. furi_thread_start(seader_worker->thread);
  64. }
  65. void seader_worker_stop(SeaderWorker* seader_worker) {
  66. furi_assert(seader_worker);
  67. if(seader_worker->state == SeaderWorkerStateBroken ||
  68. seader_worker->state == SeaderWorkerStateReady) {
  69. return;
  70. }
  71. seader_worker_disable_field(ERR_NONE);
  72. seader_worker_change_state(seader_worker, SeaderWorkerStateStop);
  73. furi_thread_join(seader_worker->thread);
  74. }
  75. void seader_worker_change_state(SeaderWorker* seader_worker, SeaderWorkerState state) {
  76. seader_worker->state = state;
  77. }
  78. /***************************** Seader Worker Thread *******************************/
  79. void* calloc(size_t count, size_t size) {
  80. return malloc(count * size);
  81. }
  82. void nfc_scene_field_on_enter() {
  83. furi_hal_nfc_field_on();
  84. furi_hal_nfc_exit_sleep();
  85. }
  86. void nfc_scene_field_on_exit() {
  87. furi_hal_nfc_sleep();
  88. furi_hal_nfc_field_off();
  89. }
  90. bool sendAPDU(
  91. SeaderUartBridge* seader_uart,
  92. uint8_t CLA,
  93. uint8_t INS,
  94. uint8_t P1,
  95. uint8_t P2,
  96. uint8_t* payload,
  97. uint8_t length) {
  98. if(APDU_HEADER_LEN + length > SEADER_UART_RX_BUF_SIZE) {
  99. FURI_LOG_E(TAG, "Cannot send message, too long: %d", APDU_HEADER_LEN + length);
  100. return false;
  101. }
  102. uint8_t* apdu = malloc(APDU_HEADER_LEN + length);
  103. apdu[0] = CLA;
  104. apdu[1] = INS;
  105. apdu[2] = P1;
  106. apdu[3] = P2;
  107. apdu[4] = length;
  108. memcpy(apdu + APDU_HEADER_LEN, payload, length);
  109. PC_to_RDR_XfrBlock(seader_uart, apdu, APDU_HEADER_LEN + length);
  110. free(apdu);
  111. return true;
  112. }
  113. static int toString(const void* buffer, size_t size, void* app_key) {
  114. if(app_key) {
  115. char* str = (char*)app_key;
  116. uint8_t next = strlen(str);
  117. strncpy(str + next, buffer, size);
  118. } else {
  119. uint8_t next = strlen(asn1_log);
  120. strncpy(asn1_log + next, buffer, size);
  121. }
  122. return 0;
  123. }
  124. bool mf_df_check_card_type(uint8_t ATQA0, uint8_t ATQA1, uint8_t SAK) {
  125. return ATQA0 == 0x44 && ATQA1 == 0x03 && SAK == 0x20;
  126. }
  127. bool read_nfc(SeaderUartBridge* seader_uart) {
  128. FuriHalNfcDevData nfc_data = {};
  129. bool rtn = false;
  130. if(furi_hal_nfc_detect(&nfc_data, 300)) {
  131. // Process first found device
  132. if(nfc_data.type == FuriHalNfcTypeA) {
  133. CardDetails_t* cardDetails = 0;
  134. cardDetails = calloc(1, sizeof *cardDetails);
  135. assert(cardDetails);
  136. OCTET_STRING_fromBuf(&cardDetails->csn, (const char*)nfc_data.uid, nfc_data.uid_len);
  137. uint8_t protocolBytes[] = {0x00, FrameProtocol_nfc};
  138. OCTET_STRING_fromBuf(
  139. &cardDetails->protocol, (const char*)protocolBytes, sizeof(protocolBytes));
  140. OCTET_STRING_t sak = {.buf = &(nfc_data.sak), .size = 1};
  141. cardDetails->sak = &sak;
  142. uint8_t fake_seos_ats[] = {0x78, 0x77, 0x80, 0x02};
  143. uint8_t fake_desfire_ats[] = {0x75, 0x77, 0x81, 0x02, 0x80};
  144. if(mf_df_check_card_type(nfc_data.atqa[0], nfc_data.atqa[1], nfc_data.sak)) {
  145. FURI_LOG_D(TAG, "Desfire");
  146. OCTET_STRING_t atqa = {.buf = fake_desfire_ats, .size = sizeof(fake_desfire_ats)};
  147. cardDetails->atqa = &atqa;
  148. sendCardDetected(seader_uart, cardDetails);
  149. rtn = true;
  150. } else if(nfc_data.interface == FuriHalNfcInterfaceIsoDep) {
  151. FURI_LOG_D(TAG, "ISO-DEP");
  152. OCTET_STRING_t atqa = {.buf = fake_seos_ats, .size = sizeof(fake_seos_ats)};
  153. cardDetails->atqa = &atqa;
  154. sendCardDetected(seader_uart, cardDetails);
  155. rtn = true;
  156. }
  157. ASN_STRUCT_FREE(asn_DEF_CardDetails, cardDetails);
  158. }
  159. }
  160. return rtn;
  161. }
  162. bool detect_nfc(SeaderWorker* seader_worker) {
  163. SeaderUartBridge* seader_uart = seader_worker->uart;
  164. while(seader_worker->state == SeaderWorkerStateRead14a) {
  165. // Card found
  166. if(read_nfc(seader_uart)) {
  167. return true;
  168. }
  169. furi_delay_ms(100);
  170. }
  171. return false;
  172. }
  173. void sendPayload(
  174. SeaderUartBridge* seader_uart,
  175. Payload_t* payload,
  176. uint8_t to,
  177. uint8_t from,
  178. uint8_t replyTo) {
  179. uint8_t rBuffer[SEADER_UART_RX_BUF_SIZE] = {0};
  180. asn_enc_rval_t er = der_encode_to_buffer(
  181. &asn_DEF_Payload, payload, rBuffer + ASN1_PREFIX, sizeof(rBuffer) - ASN1_PREFIX);
  182. #ifdef ASN1_DEBUG
  183. if(er.encoded > -1) {
  184. memset(payloadDebug, 0, sizeof(payloadDebug));
  185. (&asn_DEF_Payload)->op->print_struct(&asn_DEF_Payload, payload, 1, toString, payloadDebug);
  186. if(strlen(payloadDebug) > 0) {
  187. FURI_LOG_D(TAG, "Sending payload: %s", payloadDebug);
  188. }
  189. }
  190. #endif
  191. //0xa0, 0xda, 0x02, 0x63, 0x00, 0x00, 0x0a,
  192. //0x44, 0x0a, 0x44, 0x00, 0x00, 0x00, 0xa0, 0x02, 0x96, 0x00
  193. rBuffer[0] = to;
  194. rBuffer[1] = from;
  195. rBuffer[2] = replyTo;
  196. sendAPDU(seader_uart, 0xA0, 0xDA, 0x02, 0x63, rBuffer, 6 + er.encoded);
  197. }
  198. void sendResponse(
  199. SeaderUartBridge* seader_uart,
  200. Response_t* response,
  201. uint8_t to,
  202. uint8_t from,
  203. uint8_t replyTo) {
  204. Payload_t* payload = 0;
  205. payload = calloc(1, sizeof *payload);
  206. assert(payload);
  207. payload->present = Payload_PR_response;
  208. payload->choice.response = *response;
  209. sendPayload(seader_uart, payload, to, from, replyTo);
  210. ASN_STRUCT_FREE(asn_DEF_Payload, payload);
  211. }
  212. void sendRequestPacs(SeaderUartBridge* seader_uart) {
  213. RequestPacs_t* requestPacs = 0;
  214. requestPacs = calloc(1, sizeof *requestPacs);
  215. assert(requestPacs);
  216. requestPacs->contentElementTag = ContentElementTag_implicitFormatPhysicalAccessBits;
  217. SamCommand_t* samCommand = 0;
  218. samCommand = calloc(1, sizeof *samCommand);
  219. assert(samCommand);
  220. samCommand->present = SamCommand_PR_requestPacs;
  221. samCommand->choice.requestPacs = *requestPacs;
  222. Payload_t* payload = 0;
  223. payload = calloc(1, sizeof *payload);
  224. assert(payload);
  225. payload->present = Payload_PR_samCommand;
  226. payload->choice.samCommand = *samCommand;
  227. sendPayload(seader_uart, payload, 0x44, 0x0a, 0x44);
  228. ASN_STRUCT_FREE(asn_DEF_RequestPacs, requestPacs);
  229. ASN_STRUCT_FREE(asn_DEF_SamCommand, samCommand);
  230. ASN_STRUCT_FREE(asn_DEF_Payload, payload);
  231. }
  232. void sendCardDetected(SeaderUartBridge* seader_uart, CardDetails_t* cardDetails) {
  233. CardDetected_t* cardDetected = 0;
  234. cardDetected = calloc(1, sizeof *cardDetected);
  235. assert(cardDetected);
  236. cardDetected->detectedCardDetails = *cardDetails;
  237. SamCommand_t* samCommand = 0;
  238. samCommand = calloc(1, sizeof *samCommand);
  239. assert(samCommand);
  240. samCommand->present = SamCommand_PR_cardDetected;
  241. samCommand->choice.cardDetected = *cardDetected;
  242. Payload_t* payload = 0;
  243. payload = calloc(1, sizeof *payload);
  244. assert(payload);
  245. payload->present = Payload_PR_samCommand;
  246. payload->choice.samCommand = *samCommand;
  247. sendPayload(seader_uart, payload, 0x44, 0x0a, 0x44);
  248. ASN_STRUCT_FREE(asn_DEF_CardDetected, cardDetected);
  249. ASN_STRUCT_FREE(asn_DEF_SamCommand, samCommand);
  250. ASN_STRUCT_FREE(asn_DEF_Payload, payload);
  251. }
  252. bool unpack_pacs(SeaderCredential* seader_credential, uint8_t* buf, size_t size) {
  253. PAC_t* pac = 0;
  254. pac = calloc(1, sizeof *pac);
  255. assert(pac);
  256. bool rtn = false;
  257. asn_dec_rval_t rval = asn_decode(0, ATS_DER, &asn_DEF_PAC, (void**)&pac, buf, size);
  258. if(rval.code == RC_OK) {
  259. char pacDebug[384] = {0};
  260. (&asn_DEF_PAC)->op->print_struct(&asn_DEF_PAC, pac, 1, toString, pacDebug);
  261. if(strlen(pacDebug) > 0) {
  262. FURI_LOG_D(TAG, "Received pac: %s", pacDebug);
  263. }
  264. if(pac->size <= sizeof(seader_credential->credential)) {
  265. seader_credential->bit_length = pac->size * 8 - pac->bits_unused;
  266. memcpy(&seader_credential->credential, pac->buf, pac->size);
  267. seader_credential->credential = __builtin_bswap64(seader_credential->credential);
  268. seader_credential->credential = seader_credential->credential >>
  269. (64 - seader_credential->bit_length);
  270. rtn = true;
  271. }
  272. // TODO: make credential into a 12 byte array
  273. }
  274. ASN_STRUCT_FREE(asn_DEF_PAC, pac);
  275. return rtn;
  276. }
  277. bool parseSamResponse(SeaderWorker* seader_worker, SamResponse_t* samResponse) {
  278. SeaderUartBridge* seader_uart = seader_worker->uart;
  279. SeaderCredential* credential = seader_worker->credential;
  280. if(samResponse->size == 0) {
  281. if(requestPacs) {
  282. // FURI_LOG_D(TAG, "samResponse %d => requesting PACS", samResponse->size);
  283. sendRequestPacs(seader_uart);
  284. requestPacs = false;
  285. } else {
  286. // FURI_LOG_D(TAG, "samResponse %d, no action", samResponse->size);
  287. if(seader_worker->callback) {
  288. seader_worker->callback(SeaderWorkerEventFail, seader_worker->context);
  289. }
  290. }
  291. } else if(unpack_pacs(credential, samResponse->buf, samResponse->size)) {
  292. if(seader_worker->callback) {
  293. seader_worker->callback(SeaderWorkerEventSuccess, seader_worker->context);
  294. }
  295. } else {
  296. memset(display, 0, sizeof(display));
  297. for(uint8_t i = 0; i < samResponse->size; i++) {
  298. snprintf(display + (i * 2), sizeof(display), "%02x", samResponse->buf[i]);
  299. }
  300. FURI_LOG_D(TAG, "unknown samResponse %d: %s", samResponse->size, display);
  301. }
  302. return false;
  303. }
  304. bool parseResponse(SeaderWorker* seader_worker, Response_t* response) {
  305. switch(response->present) {
  306. case Response_PR_samResponse:
  307. parseSamResponse(seader_worker, &response->choice.samResponse);
  308. break;
  309. default:
  310. break;
  311. };
  312. return false;
  313. }
  314. void sendNFCRx(SeaderUartBridge* seader_uart, uint8_t* buffer, size_t len) {
  315. OCTET_STRING_t rxData = {.buf = buffer, .size = len};
  316. uint8_t status[] = {0x00, 0x00};
  317. RfStatus_t rfStatus = {.buf = status, .size = 2};
  318. NFCRx_t* nfcRx = 0;
  319. nfcRx = calloc(1, sizeof *nfcRx);
  320. assert(nfcRx);
  321. nfcRx->rfStatus = rfStatus;
  322. nfcRx->data = &rxData;
  323. NFCResponse_t* nfcResponse = 0;
  324. nfcResponse = calloc(1, sizeof *nfcResponse);
  325. assert(nfcResponse);
  326. nfcResponse->present = NFCResponse_PR_nfcRx;
  327. nfcResponse->choice.nfcRx = *nfcRx;
  328. Response_t* response = 0;
  329. response = calloc(1, sizeof *response);
  330. assert(response);
  331. response->present = Response_PR_nfcResponse;
  332. response->choice.nfcResponse = *nfcResponse;
  333. sendResponse(seader_uart, response, 0x14, 0x0a, 0x0);
  334. ASN_STRUCT_FREE(asn_DEF_NFCRx, nfcRx);
  335. ASN_STRUCT_FREE(asn_DEF_NFCResponse, nfcResponse);
  336. ASN_STRUCT_FREE(asn_DEF_Response, response);
  337. }
  338. bool iso14443aTransmit(SeaderUartBridge* seader_uart, uint8_t* buffer, size_t len) {
  339. FuriHalNfcTxRxContext tx_rx = {.tx_rx_type = FuriHalNfcTxRxTypeDefault};
  340. memcpy(&tx_rx.tx_data, buffer, len);
  341. tx_rx.tx_bits = len * 8;
  342. if(furi_hal_nfc_tx_rx_full(&tx_rx)) {
  343. furi_delay_ms(1);
  344. size_t length = tx_rx.rx_bits / 8;
  345. memset(display, 0, sizeof(display));
  346. for(uint8_t i = 0; i < length; i++) {
  347. snprintf(display + (i * 2), sizeof(display), "%02x", tx_rx.rx_data[i]);
  348. }
  349. // FURI_LOG_D(TAG, "NFC Response %d: %s", length, display);
  350. sendNFCRx(seader_uart, tx_rx.rx_data, length);
  351. } else {
  352. FURI_LOG_W(TAG, "Bad exchange");
  353. }
  354. return false;
  355. }
  356. bool iso15693Transmit(SeaderWorker* seader_worker, uint8_t* buffer, size_t len) {
  357. SeaderUartBridge* seader_uart = seader_worker->uart;
  358. char display[SEADER_UART_RX_BUF_SIZE * 2 + 1] = {0};
  359. FuriHalNfcReturn ret;
  360. uint16_t recvLen = 0;
  361. uint32_t flags = RFAL_PICOPASS_TXRX_FLAGS;
  362. uint32_t fwt = furi_hal_nfc_ll_ms2fc(20);
  363. uint8_t rxBuffer[64] = {0};
  364. ret = furi_hal_nfc_ll_txrx(buffer, len, rxBuffer, sizeof(rxBuffer), &recvLen, flags, fwt);
  365. if(ret == FuriHalNfcReturnOk) {
  366. memset(display, 0, sizeof(display));
  367. for(uint8_t i = 0; i < recvLen; i++) {
  368. snprintf(display + (i * 2), sizeof(display), "%02x", rxBuffer[i]);
  369. }
  370. // FURI_LOG_D(TAG, "Result %d %s", recvLen, display);
  371. sendNFCRx(seader_uart, rxBuffer, recvLen);
  372. } else if(ret == FuriHalNfcReturnCrc) {
  373. memset(display, 0, sizeof(display));
  374. for(uint8_t i = 0; i < recvLen; i++) {
  375. snprintf(display + (i * 2), sizeof(display), "%02x", rxBuffer[i]);
  376. }
  377. // FURI_LOG_D(TAG, "[CRC error] Result %d %s", recvLen, display);
  378. sendNFCRx(seader_uart, rxBuffer, recvLen);
  379. return true;
  380. } else {
  381. FURI_LOG_E(TAG, "furi_hal_nfc_ll_txrx Error %d", ret);
  382. if(seader_worker->callback) {
  383. seader_worker->callback(SeaderWorkerEventFail, seader_worker->context);
  384. }
  385. }
  386. return ret == FuriHalNfcReturnOk;
  387. }
  388. bool parseNfcCommandTransmit(SeaderWorker* seader_worker, NFCSend_t* nfcSend) {
  389. SeaderUartBridge* seader_uart = seader_worker->uart;
  390. long timeOut = nfcSend->timeOut;
  391. Protocol_t protocol = nfcSend->protocol;
  392. FrameProtocol_t frameProtocol = protocol.buf[1];
  393. char display[SEADER_UART_RX_BUF_SIZE * 2 + 1] = {0};
  394. for(uint8_t i = 0; i < nfcSend->data.size; i++) {
  395. snprintf(display + (i * 2), sizeof(display), "%02x", nfcSend->data.buf[i]);
  396. }
  397. #ifdef ASN1_DEBUG
  398. char protocolName[32] = {0};
  399. (&asn_DEF_FrameProtocol)
  400. ->op->print_struct(&asn_DEF_FrameProtocol, &frameProtocol, 1, toString, protocolName);
  401. FURI_LOG_D(
  402. TAG,
  403. "Transmit (%ld timeout) %d bytes [%s] via %s",
  404. timeOut,
  405. nfcSend->data.size,
  406. display,
  407. protocolName);
  408. #else
  409. UNUSED(timeOut);
  410. #endif
  411. if(frameProtocol == FrameProtocol_iclass) {
  412. return iso15693Transmit(seader_worker, nfcSend->data.buf, nfcSend->data.size);
  413. } else if(frameProtocol == FrameProtocol_nfc) {
  414. return iso14443aTransmit(seader_uart, nfcSend->data.buf, nfcSend->data.size);
  415. }
  416. return false;
  417. }
  418. bool parseNfcOff(SeaderUartBridge* seader_uart) {
  419. FURI_LOG_D(TAG, "Set Field Off");
  420. seader_worker_disable_field(ERR_NONE);
  421. nfc_scene_field_on_exit();
  422. NFCResponse_t* nfcResponse = 0;
  423. nfcResponse = calloc(1, sizeof *nfcResponse);
  424. assert(nfcResponse);
  425. nfcResponse->present = NFCResponse_PR_nfcAck;
  426. Response_t* response = 0;
  427. response = calloc(1, sizeof *response);
  428. assert(response);
  429. response->present = Response_PR_nfcResponse;
  430. response->choice.nfcResponse = *nfcResponse;
  431. sendResponse(seader_uart, response, 0x44, 0x0a, 0);
  432. ASN_STRUCT_FREE(asn_DEF_Response, response);
  433. ASN_STRUCT_FREE(asn_DEF_NFCResponse, nfcResponse);
  434. return false;
  435. }
  436. bool parseNfcCommand(SeaderWorker* seader_worker, NFCCommand_t* nfcCommand) {
  437. SeaderUartBridge* seader_uart = seader_worker->uart;
  438. switch(nfcCommand->present) {
  439. case NFCCommand_PR_nfcSend:
  440. parseNfcCommandTransmit(seader_worker, &nfcCommand->choice.nfcSend);
  441. break;
  442. case NFCCommand_PR_nfcOff:
  443. parseNfcOff(seader_uart);
  444. break;
  445. default:
  446. FURI_LOG_W(TAG, "unparsed NFCCommand");
  447. break;
  448. };
  449. return false;
  450. }
  451. bool stateMachine(SeaderWorker* seader_worker, Payload_t* payload) {
  452. switch(payload->present) {
  453. case Payload_PR_response:
  454. parseResponse(seader_worker, &payload->choice.response);
  455. break;
  456. case Payload_PR_nfcCommand:
  457. parseNfcCommand(seader_worker, &payload->choice.nfcCommand);
  458. break;
  459. case Payload_PR_errorResponse:
  460. // TODO: screen saying this was a failure, or maybe start over?
  461. if(seader_worker->callback) {
  462. seader_worker->callback(SeaderWorkerEventFail, seader_worker->context);
  463. }
  464. break;
  465. default:
  466. FURI_LOG_W(TAG, "unhandled payload");
  467. break;
  468. };
  469. return false;
  470. }
  471. bool processSuccessResponse(SeaderWorker* seader_worker, uint8_t* apdu, size_t len) {
  472. Payload_t* payload = 0;
  473. payload = calloc(1, sizeof *payload);
  474. assert(payload);
  475. asn_dec_rval_t rval =
  476. asn_decode(0, ATS_DER, &asn_DEF_Payload, (void**)&payload, apdu + 6, len - 6);
  477. if(rval.code == RC_OK) {
  478. #ifdef ASN1_DEBUG
  479. memset(payloadDebug, 0, sizeof(payloadDebug));
  480. (&asn_DEF_Payload)->op->print_struct(&asn_DEF_Payload, payload, 1, toString, payloadDebug);
  481. if(strlen(payloadDebug) > 0) {
  482. FURI_LOG_D(TAG, "Received payload: %s", payloadDebug);
  483. }
  484. #endif
  485. stateMachine(seader_worker, payload);
  486. }
  487. ASN_STRUCT_FREE(asn_DEF_Payload, payload);
  488. return (rval.code == RC_OK);
  489. }
  490. bool processAPDU(SeaderWorker* seader_worker, uint8_t* apdu, size_t len) {
  491. SeaderUartBridge* seader_uart = seader_worker->uart;
  492. if(len < 2) {
  493. return false;
  494. }
  495. /*
  496. memset(display, 0, sizeof(display));
  497. for(uint8_t i = 0; i < len; i++) {
  498. snprintf(display + (i * 2), sizeof(display), "%02x", apdu[i]);
  499. }
  500. FURI_LOG_I(TAG, "APDU: %s", display);
  501. */
  502. uint8_t SW1 = apdu[len - 2];
  503. uint8_t SW2 = apdu[len - 1];
  504. switch(SW1) {
  505. case 0x61:
  506. // FURI_LOG_I(TAG, "Request %d bytes", SW2);
  507. GET_RESPONSE[4] = SW2;
  508. PC_to_RDR_XfrBlock(seader_uart, GET_RESPONSE, sizeof(GET_RESPONSE));
  509. return true;
  510. break;
  511. case 0x90:
  512. if(SW2 == 0x00) {
  513. if(len > 2) {
  514. return processSuccessResponse(seader_worker, apdu, len - 2);
  515. }
  516. }
  517. break;
  518. }
  519. return false;
  520. }
  521. ReturnCode picopass_card_init(SeaderUartBridge* seader_uart) {
  522. rfalPicoPassIdentifyRes idRes;
  523. rfalPicoPassSelectRes selRes;
  524. ReturnCode err;
  525. err = rfalPicoPassPollerIdentify(&idRes);
  526. if(err != ERR_NONE) {
  527. FURI_LOG_E(TAG, "rfalPicoPassPollerIdentify error %d", err);
  528. return err;
  529. }
  530. err = rfalPicoPassPollerSelect(idRes.CSN, &selRes);
  531. if(err != ERR_NONE) {
  532. FURI_LOG_E(TAG, "rfalPicoPassPollerSelect error %d", err);
  533. return err;
  534. }
  535. memset(display, 0, sizeof(display));
  536. for(uint8_t i = 0; i < RFAL_PICOPASS_MAX_BLOCK_LEN; i++) {
  537. snprintf(display + (i * 2), sizeof(display), "%02x", selRes.CSN[i]);
  538. }
  539. FURI_LOG_D(TAG, "Sending card detected info: %s", display);
  540. CardDetails_t* cardDetails = 0;
  541. cardDetails = calloc(1, sizeof *cardDetails);
  542. assert(cardDetails);
  543. uint8_t protocolBytes[] = {0x00, FrameProtocol_iclass};
  544. OCTET_STRING_fromBuf(
  545. &cardDetails->protocol, (const char*)protocolBytes, sizeof(protocolBytes));
  546. OCTET_STRING_fromBuf(&cardDetails->csn, (const char*)selRes.CSN, RFAL_PICOPASS_MAX_BLOCK_LEN);
  547. sendCardDetected(seader_uart, cardDetails);
  548. ASN_STRUCT_FREE(asn_DEF_CardDetails, cardDetails);
  549. return ERR_NONE;
  550. }
  551. ReturnCode picopass_card_detect() {
  552. ReturnCode err;
  553. err = rfalPicoPassPollerInitialize();
  554. if(err != ERR_NONE) {
  555. FURI_LOG_E(TAG, "rfalPicoPassPollerInitialize error %d", err);
  556. return err;
  557. }
  558. err = rfalFieldOnAndStartGT();
  559. if(err != ERR_NONE) {
  560. FURI_LOG_E(TAG, "rfalFieldOnAndStartGT error %d", err);
  561. return err;
  562. }
  563. err = rfalPicoPassPollerCheckPresence();
  564. if(err != ERR_RF_COLLISION) {
  565. if(err != ERR_TIMEOUT) {
  566. FURI_LOG_E(TAG, "rfalPicoPassPollerCheckPresence error %d", err);
  567. }
  568. return err;
  569. }
  570. return ERR_NONE;
  571. }
  572. ReturnCode picopass_card_read(SeaderWorker* seader_worker) {
  573. SeaderUartBridge* seader_uart = seader_worker->uart;
  574. ReturnCode err = ERR_TIMEOUT;
  575. while(seader_worker->state == SeaderWorkerStateReadPicopass) {
  576. // Card found
  577. if(picopass_card_detect() == ERR_NONE) {
  578. err = picopass_card_init(seader_uart);
  579. if(err != ERR_NONE) {
  580. FURI_LOG_E(TAG, "picopass_card_init error %d", err);
  581. }
  582. break;
  583. }
  584. furi_delay_ms(100);
  585. }
  586. return err;
  587. }
  588. void seader_worker_process_message(SeaderWorker* seader_worker, CCID_Message* message) {
  589. if(processAPDU(seader_worker, message->payload, message->dwLength)) {
  590. // no-op
  591. } else {
  592. memset(display, 0, sizeof(display));
  593. for(uint8_t i = 0; i < message->dwLength; i++) {
  594. snprintf(display + (i * 2), sizeof(display), "%02x", message->payload[i]);
  595. }
  596. FURI_LOG_W(TAG, "Unknown block: [%ld] %s", message->dwLength, display);
  597. if(seader_worker->callback) {
  598. seader_worker->callback(SeaderWorkerEventFail, seader_worker->context);
  599. }
  600. }
  601. }
  602. int32_t seader_worker_task(void* context) {
  603. SeaderWorker* seader_worker = context;
  604. SeaderUartBridge* seader_uart = seader_worker->uart;
  605. if(seader_worker->state == SeaderWorkerStateCheckSam) {
  606. furi_delay_ms(1000);
  607. FURI_LOG_D(TAG, "PC_to_RDR_GetSlotStatus");
  608. PC_to_RDR_GetSlotStatus(seader_uart);
  609. } else if(seader_worker->state == SeaderWorkerStateReadPicopass) {
  610. FURI_LOG_D(TAG, "Read Picopass");
  611. requestPacs = true;
  612. seader_credential_clear(seader_worker->credential);
  613. seader_worker_enable_field();
  614. if(picopass_card_read(seader_worker) != ERR_NONE) {
  615. // Turn off if cancelled / no card found
  616. seader_worker_disable_field(ERR_NONE);
  617. }
  618. } else if(seader_worker->state == SeaderWorkerStateRead14a) {
  619. FURI_LOG_D(TAG, "Read 14a");
  620. requestPacs = true;
  621. seader_credential_clear(seader_worker->credential);
  622. nfc_scene_field_on_enter();
  623. if(!detect_nfc(seader_worker)) {
  624. // Turn off if cancelled / no card found
  625. nfc_scene_field_on_exit();
  626. }
  627. }
  628. FURI_LOG_D(TAG, "Worker Task Complete");
  629. seader_worker_change_state(seader_worker, SeaderWorkerStateReady);
  630. return 0;
  631. }