nfc_worker.c 25 KB

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  1. #include "nfc_worker_i.h"
  2. #include <api-hal.h>
  3. #include "nfc_protocols/emv_decoder.h"
  4. #include "nfc_protocols/mifare_ultralight.h"
  5. #define NFC_WORKER_TAG "nfc worker"
  6. /***************************** NFC Worker API *******************************/
  7. NfcWorker* nfc_worker_alloc() {
  8. NfcWorker* nfc_worker = furi_alloc(sizeof(NfcWorker));
  9. // Worker thread attributes
  10. nfc_worker->thread_attr.name = "nfc_worker";
  11. nfc_worker->thread_attr.stack_size = 8192;
  12. nfc_worker->callback = NULL;
  13. nfc_worker->context = NULL;
  14. // Initialize rfal
  15. nfc_worker->error = api_hal_nfc_init();
  16. if(nfc_worker->error == ERR_NONE) {
  17. api_hal_nfc_start_sleep();
  18. nfc_worker_change_state(nfc_worker, NfcWorkerStateReady);
  19. } else {
  20. nfc_worker_change_state(nfc_worker, NfcWorkerStateBroken);
  21. }
  22. return nfc_worker;
  23. }
  24. void nfc_worker_free(NfcWorker* nfc_worker) {
  25. furi_assert(nfc_worker);
  26. free(nfc_worker);
  27. }
  28. NfcWorkerState nfc_worker_get_state(NfcWorker* nfc_worker) {
  29. return nfc_worker->state;
  30. }
  31. ReturnCode nfc_worker_get_error(NfcWorker* nfc_worker) {
  32. return nfc_worker->error;
  33. }
  34. void nfc_worker_start(
  35. NfcWorker* nfc_worker,
  36. NfcWorkerState state,
  37. NfcDeviceData* dev_data,
  38. NfcWorkerCallback callback,
  39. void* context) {
  40. furi_assert(nfc_worker);
  41. furi_assert(dev_data);
  42. while(nfc_worker->state != NfcWorkerStateReady) {
  43. osDelay(10);
  44. }
  45. nfc_worker->callback = callback;
  46. nfc_worker->context = context;
  47. nfc_worker->dev_data = dev_data;
  48. nfc_worker_change_state(nfc_worker, state);
  49. nfc_worker->thread = osThreadNew(nfc_worker_task, nfc_worker, &nfc_worker->thread_attr);
  50. }
  51. void nfc_worker_stop(NfcWorker* nfc_worker) {
  52. furi_assert(nfc_worker);
  53. if(nfc_worker->state == NfcWorkerStateBroken || nfc_worker->state == NfcWorkerStateReady) {
  54. return;
  55. }
  56. nfc_worker_change_state(nfc_worker, NfcWorkerStateStop);
  57. }
  58. void nfc_worker_change_state(NfcWorker* nfc_worker, NfcWorkerState state) {
  59. nfc_worker->state = state;
  60. }
  61. /***************************** NFC Worker Thread *******************************/
  62. void nfc_worker_task(void* context) {
  63. NfcWorker* nfc_worker = context;
  64. api_hal_power_insomnia_enter();
  65. api_hal_nfc_exit_sleep();
  66. if(nfc_worker->state == NfcWorkerStateDetect) {
  67. nfc_worker_detect(nfc_worker);
  68. } else if(nfc_worker->state == NfcWorkerStateEmulate) {
  69. nfc_worker_emulate(nfc_worker);
  70. } else if(nfc_worker->state == NfcWorkerStateReadEMVApp) {
  71. nfc_worker_read_emv_app(nfc_worker);
  72. } else if(nfc_worker->state == NfcWorkerStateReadEMV) {
  73. nfc_worker_read_emv(nfc_worker);
  74. } else if(nfc_worker->state == NfcWorkerStateEmulateEMV) {
  75. nfc_worker_emulate_emv(nfc_worker);
  76. } else if(nfc_worker->state == NfcWorkerStateReadMifareUl) {
  77. nfc_worker_read_mifare_ul(nfc_worker);
  78. } else if(nfc_worker->state == NfcWorkerStateEmulateMifareUl) {
  79. nfc_worker_emulate_mifare_ul(nfc_worker);
  80. } else if(nfc_worker->state == NfcWorkerStateField) {
  81. nfc_worker_field(nfc_worker);
  82. }
  83. api_hal_nfc_deactivate();
  84. nfc_worker_change_state(nfc_worker, NfcWorkerStateReady);
  85. api_hal_power_insomnia_exit();
  86. osThreadExit();
  87. }
  88. void nfc_worker_detect(NfcWorker* nfc_worker) {
  89. rfalNfcDevice* dev_list;
  90. rfalNfcDevice* dev;
  91. uint8_t dev_cnt;
  92. NfcDeviceCommomData* result = &nfc_worker->dev_data->nfc_data;
  93. while(nfc_worker->state == NfcWorkerStateDetect) {
  94. if(api_hal_nfc_detect(&dev_list, &dev_cnt, 1000, true)) {
  95. // Process first found device
  96. dev = &dev_list[0];
  97. result->uid_len = dev->nfcidLen;
  98. memcpy(result->uid, dev->nfcid, dev->nfcidLen);
  99. if(dev->type == RFAL_NFC_LISTEN_TYPE_NFCA) {
  100. result->device = NfcDeviceNfca;
  101. result->atqa[0] = dev->dev.nfca.sensRes.anticollisionInfo;
  102. result->atqa[1] = dev->dev.nfca.sensRes.platformInfo;
  103. result->sak = dev->dev.nfca.selRes.sak;
  104. if(mf_ul_check_card_type(
  105. dev->dev.nfca.sensRes.anticollisionInfo,
  106. dev->dev.nfca.sensRes.platformInfo,
  107. dev->dev.nfca.selRes.sak)) {
  108. result->protocol = NfcDeviceProtocolMifareUl;
  109. } else if(dev->rfInterface == RFAL_NFC_INTERFACE_ISODEP) {
  110. result->protocol = NfcDeviceProtocolEMV;
  111. } else {
  112. result->protocol = NfcDeviceProtocolUnknown;
  113. }
  114. } else if(dev->type == RFAL_NFC_LISTEN_TYPE_NFCB) {
  115. result->device = NfcDeviceNfcb;
  116. } else if(dev->type == RFAL_NFC_LISTEN_TYPE_NFCF) {
  117. result->device = NfcDeviceNfcf;
  118. } else if(dev->type == RFAL_NFC_LISTEN_TYPE_NFCV) {
  119. result->device = NfcDeviceNfcv;
  120. }
  121. // Notify caller and exit
  122. if(nfc_worker->callback) {
  123. nfc_worker->callback(nfc_worker->context);
  124. }
  125. break;
  126. }
  127. osDelay(100);
  128. }
  129. }
  130. void nfc_worker_emulate(NfcWorker* nfc_worker) {
  131. NfcDeviceCommomData* data = &nfc_worker->dev_data->nfc_data;
  132. while(nfc_worker->state == NfcWorkerStateEmulate) {
  133. if(api_hal_nfc_listen(data->uid, data->uid_len, data->atqa, data->sak, 100)) {
  134. FURI_LOG_I(NFC_WORKER_TAG, "Reader detected");
  135. }
  136. osDelay(10);
  137. }
  138. }
  139. void nfc_worker_read_emv_app(NfcWorker* nfc_worker) {
  140. ReturnCode err;
  141. rfalNfcDevice* dev_list;
  142. EmvApplication emv_app = {};
  143. uint8_t dev_cnt = 0;
  144. uint8_t tx_buff[255] = {};
  145. uint16_t tx_len = 0;
  146. uint8_t* rx_buff;
  147. uint16_t* rx_len;
  148. NfcDeviceData* result = nfc_worker->dev_data;
  149. while(nfc_worker->state == NfcWorkerStateReadEMVApp) {
  150. memset(&emv_app, 0, sizeof(emv_app));
  151. if(api_hal_nfc_detect(&dev_list, &dev_cnt, 1000, false)) {
  152. // Card was found. Check that it supports EMV
  153. if(dev_list[0].rfInterface == RFAL_NFC_INTERFACE_ISODEP) {
  154. result->nfc_data.uid_len = dev_list[0].dev.nfca.nfcId1Len;
  155. result->nfc_data.atqa[0] = dev_list[0].dev.nfca.sensRes.anticollisionInfo;
  156. result->nfc_data.atqa[1] = dev_list[0].dev.nfca.sensRes.platformInfo;
  157. result->nfc_data.sak = dev_list[0].dev.nfca.selRes.sak;
  158. memcpy(
  159. result->nfc_data.uid, dev_list[0].dev.nfca.nfcId1, result->nfc_data.uid_len);
  160. result->nfc_data.protocol = NfcDeviceProtocolEMV;
  161. FURI_LOG_I(NFC_WORKER_TAG, "Send select PPSE command");
  162. tx_len = emv_prepare_select_ppse(tx_buff);
  163. err = api_hal_nfc_data_exchange(tx_buff, tx_len, &rx_buff, &rx_len, false);
  164. if(err != ERR_NONE) {
  165. FURI_LOG_E(NFC_WORKER_TAG, "Error during selection PPSE request: %d", err);
  166. api_hal_nfc_deactivate();
  167. continue;
  168. }
  169. FURI_LOG_I(
  170. NFC_WORKER_TAG, "Select PPSE response received. Start parsing response");
  171. if(emv_decode_ppse_response(rx_buff, *rx_len, &emv_app)) {
  172. FURI_LOG_I(NFC_WORKER_TAG, "Select PPSE responce parced");
  173. // Notify caller and exit
  174. result->emv_data.aid_len = emv_app.aid_len;
  175. memcpy(result->emv_data.aid, emv_app.aid, emv_app.aid_len);
  176. if(nfc_worker->callback) {
  177. nfc_worker->callback(nfc_worker->context);
  178. }
  179. break;
  180. } else {
  181. FURI_LOG_E(NFC_WORKER_TAG, "Can't find pay application");
  182. api_hal_nfc_deactivate();
  183. continue;
  184. }
  185. } else {
  186. // Can't find EMV card
  187. FURI_LOG_W(NFC_WORKER_TAG, "Card doesn't support EMV");
  188. api_hal_nfc_deactivate();
  189. }
  190. } else {
  191. // Can't find EMV card
  192. FURI_LOG_W(NFC_WORKER_TAG, "Can't find any cards");
  193. api_hal_nfc_deactivate();
  194. }
  195. osDelay(20);
  196. }
  197. }
  198. void nfc_worker_read_emv(NfcWorker* nfc_worker) {
  199. ReturnCode err;
  200. rfalNfcDevice* dev_list;
  201. EmvApplication emv_app = {};
  202. uint8_t dev_cnt = 0;
  203. uint8_t tx_buff[255] = {};
  204. uint16_t tx_len = 0;
  205. uint8_t* rx_buff;
  206. uint16_t* rx_len;
  207. NfcDeviceData* result = nfc_worker->dev_data;
  208. while(nfc_worker->state == NfcWorkerStateReadEMV) {
  209. memset(&emv_app, 0, sizeof(emv_app));
  210. if(api_hal_nfc_detect(&dev_list, &dev_cnt, 1000, false)) {
  211. // Card was found. Check that it supports EMV
  212. if(dev_list[0].rfInterface == RFAL_NFC_INTERFACE_ISODEP) {
  213. result->nfc_data.uid_len = dev_list[0].dev.nfca.nfcId1Len;
  214. result->nfc_data.atqa[0] = dev_list[0].dev.nfca.sensRes.anticollisionInfo;
  215. result->nfc_data.atqa[1] = dev_list[0].dev.nfca.sensRes.platformInfo;
  216. result->nfc_data.sak = dev_list[0].dev.nfca.selRes.sak;
  217. memcpy(
  218. result->nfc_data.uid, dev_list[0].dev.nfca.nfcId1, result->nfc_data.uid_len);
  219. result->nfc_data.protocol = NfcDeviceProtocolEMV;
  220. FURI_LOG_I(NFC_WORKER_TAG, "Send select PPSE command");
  221. tx_len = emv_prepare_select_ppse(tx_buff);
  222. err = api_hal_nfc_data_exchange(tx_buff, tx_len, &rx_buff, &rx_len, false);
  223. if(err != ERR_NONE) {
  224. FURI_LOG_E(NFC_WORKER_TAG, "Error during selection PPSE request: %d", err);
  225. api_hal_nfc_deactivate();
  226. continue;
  227. }
  228. FURI_LOG_I(
  229. NFC_WORKER_TAG, "Select PPSE response received. Start parsing response");
  230. if(emv_decode_ppse_response(rx_buff, *rx_len, &emv_app)) {
  231. FURI_LOG_I(NFC_WORKER_TAG, "Select PPSE responce parced");
  232. } else {
  233. FURI_LOG_E(NFC_WORKER_TAG, "Can't find pay application");
  234. api_hal_nfc_deactivate();
  235. continue;
  236. }
  237. FURI_LOG_I(NFC_WORKER_TAG, "Starting application ...");
  238. tx_len = emv_prepare_select_app(tx_buff, &emv_app);
  239. err = api_hal_nfc_data_exchange(tx_buff, tx_len, &rx_buff, &rx_len, false);
  240. if(err != ERR_NONE) {
  241. FURI_LOG_E(
  242. NFC_WORKER_TAG, "Error during application selection request: %d", err);
  243. api_hal_nfc_deactivate();
  244. continue;
  245. }
  246. FURI_LOG_I(
  247. NFC_WORKER_TAG,
  248. "Select application response received. Start parsing response");
  249. if(emv_decode_select_app_response(rx_buff, *rx_len, &emv_app)) {
  250. FURI_LOG_I(NFC_WORKER_TAG, "Card name: %s", emv_app.name);
  251. memcpy(result->emv_data.name, emv_app.name, sizeof(emv_app.name));
  252. } else {
  253. FURI_LOG_E(NFC_WORKER_TAG, "Can't read card name");
  254. api_hal_nfc_deactivate();
  255. continue;
  256. }
  257. FURI_LOG_I(NFC_WORKER_TAG, "Starting Get Processing Options command ...");
  258. tx_len = emv_prepare_get_proc_opt(tx_buff, &emv_app);
  259. err = api_hal_nfc_data_exchange(tx_buff, tx_len, &rx_buff, &rx_len, false);
  260. if(err != ERR_NONE) {
  261. FURI_LOG_E(
  262. NFC_WORKER_TAG, "Error during Get Processing Options command: %d", err);
  263. api_hal_nfc_deactivate();
  264. continue;
  265. }
  266. if(emv_decode_get_proc_opt(rx_buff, *rx_len, &emv_app)) {
  267. FURI_LOG_I(NFC_WORKER_TAG, "Card number parsed");
  268. memcpy(
  269. result->emv_data.number, emv_app.card_number, sizeof(emv_app.card_number));
  270. // Notify caller and exit
  271. if(nfc_worker->callback) {
  272. nfc_worker->callback(nfc_worker->context);
  273. }
  274. break;
  275. } else {
  276. // Mastercard doesn't give PAN / card number as GPO response
  277. // Iterate over all files found in application
  278. bool pan_found = false;
  279. for(uint8_t i = 0; (i < emv_app.afl.size) && !pan_found; i += 4) {
  280. uint8_t sfi = emv_app.afl.data[i] >> 3;
  281. uint8_t record_start = emv_app.afl.data[i + 1];
  282. uint8_t record_end = emv_app.afl.data[i + 2];
  283. // Iterate over all records in file
  284. for(uint8_t record = record_start; record <= record_end; ++record) {
  285. tx_len = emv_prepare_read_sfi_record(tx_buff, sfi, record);
  286. err = api_hal_nfc_data_exchange(
  287. tx_buff, tx_len, &rx_buff, &rx_len, false);
  288. if(err != ERR_NONE) {
  289. FURI_LOG_E(
  290. NFC_WORKER_TAG,
  291. "Error reading application sfi %d, record %d",
  292. sfi,
  293. record);
  294. }
  295. if(emv_decode_read_sfi_record(rx_buff, *rx_len, &emv_app)) {
  296. pan_found = true;
  297. break;
  298. }
  299. }
  300. }
  301. if(pan_found) {
  302. FURI_LOG_I(NFC_WORKER_TAG, "Card PAN found");
  303. memcpy(
  304. result->emv_data.number,
  305. emv_app.card_number,
  306. sizeof(emv_app.card_number));
  307. // Notify caller and exit
  308. if(nfc_worker->callback) {
  309. nfc_worker->callback(nfc_worker->context);
  310. }
  311. break;
  312. } else {
  313. FURI_LOG_E(NFC_WORKER_TAG, "Can't read card number");
  314. }
  315. api_hal_nfc_deactivate();
  316. }
  317. } else {
  318. // Can't find EMV card
  319. FURI_LOG_W(NFC_WORKER_TAG, "Card doesn't support EMV");
  320. api_hal_nfc_deactivate();
  321. }
  322. } else {
  323. // Can't find EMV card
  324. FURI_LOG_W(NFC_WORKER_TAG, "Can't find any cards");
  325. api_hal_nfc_deactivate();
  326. }
  327. osDelay(20);
  328. }
  329. }
  330. void nfc_worker_emulate_emv(NfcWorker* nfc_worker) {
  331. ReturnCode err;
  332. uint8_t tx_buff[255] = {};
  333. uint16_t tx_len = 0;
  334. uint8_t* rx_buff;
  335. uint16_t* rx_len;
  336. NfcDeviceCommomData params = {
  337. .uid = {0xCF, 0x72, 0xd4, 0x40},
  338. .uid_len = 4,
  339. .atqa = {0x00, 0x04},
  340. .sak = 0x20,
  341. .device = NfcDeviceNfca,
  342. .protocol = NfcDeviceProtocolEMV,
  343. };
  344. while(nfc_worker->state == NfcWorkerStateEmulateEMV) {
  345. if(api_hal_nfc_listen(params.uid, params.uid_len, params.atqa, params.sak, 100)) {
  346. FURI_LOG_I(NFC_WORKER_TAG, "POS terminal detected");
  347. // Read data from POS terminal
  348. err = api_hal_nfc_data_exchange(NULL, 0, &rx_buff, &rx_len, false);
  349. if(err == ERR_NONE) {
  350. FURI_LOG_I(NFC_WORKER_TAG, "Received Select PPSE");
  351. } else {
  352. FURI_LOG_E(NFC_WORKER_TAG, "Error in 1st data exchange: select PPSE");
  353. api_hal_nfc_deactivate();
  354. continue;
  355. }
  356. FURI_LOG_I(NFC_WORKER_TAG, "Transive SELECT PPSE ANS");
  357. tx_len = emv_select_ppse_ans(tx_buff);
  358. err = api_hal_nfc_data_exchange(tx_buff, tx_len, &rx_buff, &rx_len, false);
  359. if(err == ERR_NONE) {
  360. FURI_LOG_I(NFC_WORKER_TAG, "Received Select APP");
  361. } else {
  362. FURI_LOG_E(NFC_WORKER_TAG, "Error in 2nd data exchange: select APP");
  363. api_hal_nfc_deactivate();
  364. continue;
  365. }
  366. FURI_LOG_I(NFC_WORKER_TAG, "Transive SELECT APP ANS");
  367. tx_len = emv_select_app_ans(tx_buff);
  368. err = api_hal_nfc_data_exchange(tx_buff, tx_len, &rx_buff, &rx_len, false);
  369. if(err == ERR_NONE) {
  370. FURI_LOG_I(NFC_WORKER_TAG, "Received PDOL");
  371. } else {
  372. FURI_LOG_E(NFC_WORKER_TAG, "Error in 3rd data exchange: receive PDOL");
  373. api_hal_nfc_deactivate();
  374. continue;
  375. }
  376. FURI_LOG_I(NFC_WORKER_TAG, "Transive PDOL ANS");
  377. tx_len = emv_get_proc_opt_ans(tx_buff);
  378. err = api_hal_nfc_data_exchange(tx_buff, tx_len, &rx_buff, &rx_len, false);
  379. if(err == ERR_NONE) {
  380. FURI_LOG_I(NFC_WORKER_TAG, "Received PDOL");
  381. }
  382. api_hal_nfc_deactivate();
  383. } else {
  384. FURI_LOG_W(NFC_WORKER_TAG, "Can't find reader");
  385. }
  386. osDelay(20);
  387. }
  388. }
  389. void nfc_worker_read_mifare_ul(NfcWorker* nfc_worker) {
  390. ReturnCode err;
  391. rfalNfcDevice* dev_list;
  392. uint8_t dev_cnt = 0;
  393. uint8_t tx_buff[255] = {};
  394. uint16_t tx_len = 0;
  395. uint8_t* rx_buff;
  396. uint16_t* rx_len;
  397. MifareUlDevice mf_ul_read;
  398. NfcDeviceData* result = nfc_worker->dev_data;
  399. while(nfc_worker->state == NfcWorkerStateReadMifareUl) {
  400. api_hal_nfc_deactivate();
  401. memset(&mf_ul_read, 0, sizeof(mf_ul_read));
  402. if(api_hal_nfc_detect(&dev_list, &dev_cnt, 300, false)) {
  403. if(dev_list[0].type == RFAL_NFC_LISTEN_TYPE_NFCA &&
  404. mf_ul_check_card_type(
  405. dev_list[0].dev.nfca.sensRes.anticollisionInfo,
  406. dev_list[0].dev.nfca.sensRes.platformInfo,
  407. dev_list[0].dev.nfca.selRes.sak)) {
  408. // Get Mifare Ultralight version
  409. FURI_LOG_I(NFC_WORKER_TAG, "Found Mifare Ultralight tag. Reading tag version");
  410. tx_len = mf_ul_prepare_get_version(tx_buff);
  411. err = api_hal_nfc_data_exchange(tx_buff, tx_len, &rx_buff, &rx_len, false);
  412. if(err == ERR_NONE) {
  413. mf_ul_parse_get_version_response(rx_buff, &mf_ul_read);
  414. FURI_LOG_I(
  415. NFC_WORKER_TAG,
  416. "Mifare Ultralight Type: %d, Pages: %d",
  417. mf_ul_read.type,
  418. mf_ul_read.pages_to_read);
  419. } else if(err == ERR_TIMEOUT) {
  420. FURI_LOG_W(
  421. NFC_WORKER_TAG,
  422. "Card doesn't respond to GET VERSION command. Setting default read parameters");
  423. err = ERR_NONE;
  424. mf_ul_set_default_version(&mf_ul_read);
  425. // Reinit device
  426. api_hal_nfc_deactivate();
  427. if(!api_hal_nfc_detect(&dev_list, &dev_cnt, 300, false)) {
  428. FURI_LOG_E(NFC_WORKER_TAG, "Lost connection. Restarting search");
  429. continue;
  430. }
  431. } else {
  432. FURI_LOG_E(
  433. NFC_WORKER_TAG,
  434. "Error getting Mifare Ultralight version. Error code: %d",
  435. err);
  436. continue;
  437. }
  438. if(mf_ul_read.support_fast_read) {
  439. FURI_LOG_I(NFC_WORKER_TAG, "Reading pages ...");
  440. tx_len = mf_ul_prepare_fast_read(tx_buff, 0x00, mf_ul_read.pages_to_read - 1);
  441. if(api_hal_nfc_data_exchange(tx_buff, tx_len, &rx_buff, &rx_len, false)) {
  442. FURI_LOG_E(NFC_WORKER_TAG, "Failed reading pages");
  443. continue;
  444. } else {
  445. mf_ul_parse_fast_read_response(
  446. rx_buff, 0x00, mf_ul_read.pages_to_read - 1, &mf_ul_read);
  447. }
  448. FURI_LOG_I(NFC_WORKER_TAG, "Reading signature ...");
  449. tx_len = mf_ul_prepare_read_signature(tx_buff);
  450. if(api_hal_nfc_data_exchange(tx_buff, tx_len, &rx_buff, &rx_len, false)) {
  451. FURI_LOG_W(NFC_WORKER_TAG, "Failed reading signature");
  452. memset(mf_ul_read.data.signature, 0, sizeof(mf_ul_read.data.signature));
  453. } else {
  454. mf_ul_parse_read_signature_response(rx_buff, &mf_ul_read);
  455. }
  456. FURI_LOG_I(NFC_WORKER_TAG, "Reading 3 counters ...");
  457. for(uint8_t i = 0; i < 3; i++) {
  458. tx_len = mf_ul_prepare_read_cnt(tx_buff, i);
  459. if(api_hal_nfc_data_exchange(tx_buff, tx_len, &rx_buff, &rx_len, false)) {
  460. FURI_LOG_W(NFC_WORKER_TAG, "Failed reading Counter %d", i);
  461. mf_ul_read.data.counter[i] = 0;
  462. } else {
  463. mf_ul_parse_read_cnt_response(rx_buff, i, &mf_ul_read);
  464. }
  465. }
  466. FURI_LOG_I(NFC_WORKER_TAG, "Checking tearing flags ...");
  467. for(uint8_t i = 0; i < 3; i++) {
  468. tx_len = mf_ul_prepare_check_tearing(tx_buff, i);
  469. if(api_hal_nfc_data_exchange(tx_buff, tx_len, &rx_buff, &rx_len, false)) {
  470. FURI_LOG_E(NFC_WORKER_TAG, "Error checking tearing flag %d", i);
  471. mf_ul_read.data.tearing[i] = MF_UL_TEARING_FLAG_DEFAULT;
  472. } else {
  473. mf_ul_parse_check_tearing_response(rx_buff, i, &mf_ul_read);
  474. }
  475. }
  476. } else {
  477. // READ card with READ command (4 pages at a time)
  478. for(uint8_t page = 0; page < mf_ul_read.pages_to_read; page += 4) {
  479. FURI_LOG_I(NFC_WORKER_TAG, "Reading pages %d - %d ...", page, page + 3);
  480. tx_len = mf_ul_prepare_read(tx_buff, page);
  481. if(api_hal_nfc_data_exchange(tx_buff, tx_len, &rx_buff, &rx_len, false)) {
  482. FURI_LOG_E(
  483. NFC_WORKER_TAG, "Read pages %d - %d failed", page, page + 3);
  484. continue;
  485. } else {
  486. mf_ul_parse_read_response(rx_buff, page, &mf_ul_read);
  487. }
  488. }
  489. }
  490. // Fill result data
  491. result->nfc_data.uid_len = dev_list[0].dev.nfca.nfcId1Len;
  492. result->nfc_data.atqa[0] = dev_list[0].dev.nfca.sensRes.anticollisionInfo;
  493. result->nfc_data.atqa[1] = dev_list[0].dev.nfca.sensRes.platformInfo;
  494. result->nfc_data.sak = dev_list[0].dev.nfca.selRes.sak;
  495. result->nfc_data.protocol = NfcDeviceProtocolMifareUl;
  496. memcpy(
  497. result->nfc_data.uid, dev_list[0].dev.nfca.nfcId1, result->nfc_data.uid_len);
  498. result->mf_ul_data = mf_ul_read.data;
  499. // Notify caller and exit
  500. if(nfc_worker->callback) {
  501. nfc_worker->callback(nfc_worker->context);
  502. }
  503. break;
  504. } else {
  505. FURI_LOG_W(NFC_WORKER_TAG, "Tag does not support Mifare Ultralight");
  506. }
  507. } else {
  508. FURI_LOG_W(NFC_WORKER_TAG, "Can't find any tags");
  509. }
  510. osDelay(100);
  511. }
  512. }
  513. void nfc_worker_emulate_mifare_ul(NfcWorker* nfc_worker) {
  514. ReturnCode err;
  515. uint8_t tx_buff[255] = {};
  516. uint16_t tx_len = 0;
  517. uint8_t* rx_buff;
  518. uint16_t* rx_len;
  519. NfcDeviceData* data = nfc_worker->dev_data;
  520. while(nfc_worker->state == NfcWorkerStateEmulateMifareUl) {
  521. if(api_hal_nfc_listen(
  522. data->nfc_data.uid,
  523. data->nfc_data.uid_len,
  524. data->nfc_data.atqa,
  525. data->nfc_data.sak,
  526. 1000)) {
  527. FURI_LOG_I(NFC_WORKER_TAG, "Hello my dudes");
  528. // Prepare version answer
  529. tx_len = sizeof(data->mf_ul_data.version);
  530. memcpy(tx_buff, &data->mf_ul_data.version, tx_len);
  531. err = api_hal_nfc_data_exchange(tx_buff, tx_len, &rx_buff, &rx_len, false);
  532. if(err == ERR_NONE) {
  533. FURI_LOG_I(NFC_WORKER_TAG, "Received 1st message:");
  534. for(uint16_t i = 0; i < *rx_len; i++) {
  535. printf("%02X ", rx_buff[i]);
  536. }
  537. printf("\r\n");
  538. } else {
  539. FURI_LOG_E(NFC_WORKER_TAG, "Error in 1st data exchange: select PPSE");
  540. api_hal_nfc_deactivate();
  541. continue;
  542. }
  543. }
  544. FURI_LOG_W(NFC_WORKER_TAG, "Hello my dudes");
  545. osDelay(10);
  546. }
  547. }
  548. void nfc_worker_field(NfcWorker* nfc_worker) {
  549. api_hal_nfc_field_on();
  550. while(nfc_worker->state == NfcWorkerStateField) {
  551. osDelay(50);
  552. }
  553. api_hal_nfc_field_off();
  554. }