uhf_worker.c 8.6 KB

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  1. #include "uhf_worker.h"
  2. #include "uhf_cmd.h"
  3. #define CB_DELAY 50
  4. // uart callback functions
  5. void module_rx_callback(UartIrqEvent event, uint8_t data, void* ctx) {
  6. UNUSED(event);
  7. UHFData* uhf_data = ctx;
  8. uhf_data_append(uhf_data, data);
  9. }
  10. // yrm100 module commands
  11. UHFWorkerEvent verify_module_connected(UHFWorker* uhf_worker) {
  12. UHFResponseData* uhf_response_data = uhf_worker->response_data;
  13. uhf_response_data_reset(uhf_response_data);
  14. // FURI_LOG_E("log", "freeing done");
  15. UHFData* hardware_version = uhf_response_data->head;
  16. UHFData* software_version = uhf_response_data_add_new_uhf_data(uhf_response_data);
  17. UHFData* manufacturer = uhf_response_data_add_new_uhf_data(uhf_response_data);
  18. // FURI_LOG_E("log", "alloc done");
  19. furi_hal_uart_set_br(FuriHalUartIdUSART1, DEFAULT_BAUD_RATE);
  20. // read hardware version
  21. furi_hal_uart_set_irq_cb(FuriHalUartIdUSART1, module_rx_callback, hardware_version);
  22. furi_hal_uart_tx(FuriHalUartIdUSART1, CMD_HARDWARE_VERSION.cmd, CMD_HARDWARE_VERSION.length);
  23. furi_delay_ms(CB_DELAY);
  24. // read software version
  25. furi_hal_uart_set_irq_cb(FuriHalUartIdUSART1, module_rx_callback, software_version);
  26. furi_hal_uart_tx(FuriHalUartIdUSART1, CMD_SOFTWARE_VERSION.cmd, CMD_SOFTWARE_VERSION.length);
  27. furi_delay_ms(CB_DELAY);
  28. // read manufacturer
  29. furi_hal_uart_set_irq_cb(FuriHalUartIdUSART1, module_rx_callback, manufacturer);
  30. furi_hal_uart_tx(FuriHalUartIdUSART1, CMD_MANUFACTURERS.cmd, CMD_MANUFACTURERS.length);
  31. furi_delay_ms(CB_DELAY);
  32. // verify that we received all data
  33. if(!hardware_version->end || !software_version->end || !manufacturer->end) {
  34. return UHFWorkerEventFail;
  35. }
  36. // verify all data was received correctly
  37. if(!uhf_data_verfiy_checksum(hardware_version) ||
  38. !uhf_data_verfiy_checksum(software_version) || !uhf_data_verfiy_checksum(manufacturer))
  39. return UHFWorkerEventFail;
  40. return UHFWorkerEventSuccess;
  41. }
  42. static uint8_t get_epc_length_in_bits(uint8_t pc) {
  43. uint8_t epc_length = pc;
  44. epc_length >>= 3;
  45. return (uint8_t)epc_length * 16; // x-words * 16 bits
  46. }
  47. static bool send_set_select_command(UHFData* selected_tag, UHFBank bank) {
  48. bool success = false;
  49. // Set select
  50. UHFData* select_cmd = uhf_data_alloc();
  51. select_cmd->start = true;
  52. select_cmd->length = CMD_SET_SELECT_PARAMETER.length;
  53. memcpy((void*)&select_cmd->data, (void*)&CMD_SET_SELECT_PARAMETER.cmd[0], select_cmd->length);
  54. // set select param
  55. size_t mask_length_bits = (size_t)get_epc_length_in_bits(selected_tag->data[6]);
  56. size_t mask_length_bytes = (size_t)mask_length_bits / 8;
  57. select_cmd->data[5] = bank; // 0x00=rfu, 0x01=epc, 0x10=tid, 0x11=user
  58. // set ptr
  59. select_cmd->data[9] = 0x20; // epc data begins after 0x20
  60. // set mask length
  61. select_cmd->data[10] = mask_length_bits;
  62. // set mask starting position
  63. select_cmd->length = 12;
  64. // set mask
  65. for(size_t i = 0; i < mask_length_bytes; i++) {
  66. uhf_data_append(select_cmd, selected_tag->data[8 + i]);
  67. }
  68. uhf_data_append(select_cmd, 0x00); // add checksum section
  69. uhf_data_append(select_cmd, FRAME_END); // command end
  70. // add checksum
  71. select_cmd->data[select_cmd->length - 2] = uhf_data_calculate_checksum(select_cmd);
  72. UHFData* select_response = uhf_data_alloc();
  73. furi_hal_uart_set_irq_cb(FuriHalUartIdUSART1, module_rx_callback, select_response);
  74. furi_hal_uart_tx(FuriHalUartIdUSART1, select_cmd->data, select_cmd->length);
  75. furi_delay_ms(CB_DELAY);
  76. success = select_response->data[5] == 0x00;
  77. uhf_data_free(select_cmd);
  78. uhf_data_free(select_response);
  79. return success;
  80. }
  81. static bool read_bank(UHFData* read_bank_cmd, UHFData* response_bank, UHFBank bank) {
  82. furi_hal_uart_set_irq_cb(FuriHalUartIdUSART1, module_rx_callback, response_bank);
  83. read_bank_cmd->data[9] = bank;
  84. read_bank_cmd->data[read_bank_cmd->length - 2] = uhf_data_calculate_checksum(read_bank_cmd);
  85. uhf_data_reset(response_bank);
  86. furi_hal_uart_tx(FuriHalUartIdUSART1, read_bank_cmd->data, read_bank_cmd->length);
  87. furi_delay_ms(CB_DELAY);
  88. return response_bank->data[2] == read_bank_cmd->data[2];
  89. }
  90. UHFWorkerEvent read_single_card(UHFWorker* uhf_worker) {
  91. FuriString* temp_str;
  92. temp_str = furi_string_alloc();
  93. UHFResponseData* uhf_response_data = uhf_worker->response_data;
  94. uhf_response_data_reset(uhf_response_data);
  95. UHFData* raw_read_data = uhf_response_data_get_uhf_data(uhf_response_data, 0);
  96. furi_hal_uart_set_br(FuriHalUartIdUSART1, DEFAULT_BAUD_RATE);
  97. furi_hal_uart_set_irq_cb(FuriHalUartIdUSART1, module_rx_callback, raw_read_data);
  98. uhf_data_reset(raw_read_data);
  99. // read epc bank
  100. while(true) {
  101. furi_hal_uart_tx(FuriHalUartIdUSART1, CMD_SINGLE_POLLING.cmd, CMD_SINGLE_POLLING.length);
  102. furi_delay_ms(100);
  103. if(uhf_worker->state == UHFWorkerStateStop) {
  104. return UHFWorkerEventAborted;
  105. }
  106. if(raw_read_data->end) {
  107. if(raw_read_data->data[1] == 0x01 && raw_read_data->data[5] == 0x15) {
  108. uhf_data_reset(raw_read_data);
  109. continue;
  110. } else if(raw_read_data->data[1] == 0x02)
  111. break; // read success
  112. }
  113. }
  114. // todo : rfu ?
  115. UHFTag* uhf_tag = uhf_worker->uhf_tag;
  116. // add to tag object
  117. UHFData* raw_bank_data = uhf_data_alloc();
  118. size_t epc_length = (size_t)get_epc_length_in_bits(raw_read_data->data[6]) / 8;
  119. size_t offset = (size_t)(8 + epc_length);
  120. UHFData* read_bank_cmd = uhf_data_alloc();
  121. read_bank_cmd->length = CMD_READ_LABEL_DATA_STORAGE.length;
  122. memcpy(
  123. (void*)&read_bank_cmd->data[0],
  124. (void*)&CMD_READ_LABEL_DATA_STORAGE.cmd[0],
  125. read_bank_cmd->length);
  126. send_set_select_command(raw_read_data, EPC_BANK);
  127. int retry = 3;
  128. do {
  129. if(read_bank(read_bank_cmd, raw_bank_data, EPC_BANK)) {
  130. uhf_tag_set_epc(uhf_tag, raw_bank_data->data + offset, epc_length + 2);
  131. break;
  132. }
  133. } while(retry--);
  134. furi_string_reset(temp_str);
  135. for(size_t i = 0; i < raw_bank_data->length; i++) {
  136. furi_string_cat_printf(temp_str, "%02x ", raw_bank_data->data[i]);
  137. }
  138. uhf_data_reset(raw_bank_data);
  139. retry = 3;
  140. do {
  141. if(read_bank(read_bank_cmd, raw_bank_data, TID_BANK)) {
  142. uhf_tag_set_tid(uhf_tag, raw_bank_data->data + offset, 16);
  143. break;
  144. }
  145. } while(retry--);
  146. furi_string_reset(temp_str);
  147. for(size_t i = 0; i < raw_bank_data->length; i++) {
  148. furi_string_cat_printf(temp_str, "%02x ", raw_bank_data->data[i]);
  149. }
  150. uhf_data_reset(raw_bank_data);
  151. retry = 3;
  152. if(raw_read_data->data[6] & 0x04) {
  153. do {
  154. if(read_bank(read_bank_cmd, raw_bank_data, USER_BANK)) {
  155. uhf_tag_set_user(uhf_tag, raw_bank_data->data + offset, 16);
  156. break;
  157. }
  158. } while(retry--);
  159. }
  160. uhf_data_reset(raw_bank_data);
  161. uhf_data_free(raw_bank_data);
  162. uhf_data_free(read_bank_cmd);
  163. furi_string_free(temp_str);
  164. return UHFWorkerEventSuccess;
  165. }
  166. int32_t uhf_worker_task(void* ctx) {
  167. UHFWorker* uhf_worker = ctx;
  168. if(uhf_worker->state == UHFWorkerStateVerify) {
  169. UHFWorkerEvent event = verify_module_connected(uhf_worker);
  170. uhf_worker->callback(event, uhf_worker->ctx);
  171. }
  172. if(uhf_worker->state == UHFWorkerStateDetectSingle) {
  173. UHFWorkerEvent event = read_single_card(uhf_worker);
  174. uhf_worker->callback(event, uhf_worker->ctx);
  175. }
  176. return 0;
  177. }
  178. UHFWorker* uhf_worker_alloc() {
  179. UHFWorker* uhf_worker = (UHFWorker*)malloc(sizeof(UHFWorker));
  180. uhf_worker->thread = furi_thread_alloc_ex("UHFWorker", 8 * 1024, uhf_worker_task, uhf_worker);
  181. uhf_worker->response_data = uhf_response_data_alloc();
  182. uhf_worker->callback = NULL;
  183. uhf_worker->ctx = NULL;
  184. return uhf_worker;
  185. }
  186. void uhf_worker_change_state(UHFWorker* worker, UHFWorkerState state) {
  187. worker->state = state;
  188. }
  189. void uhf_worker_start(
  190. UHFWorker* uhf_worker,
  191. UHFWorkerState state,
  192. UHFWorkerCallback callback,
  193. void* ctx) {
  194. uhf_worker->state = state;
  195. uhf_worker->callback = callback;
  196. uhf_worker->ctx = ctx;
  197. furi_thread_start(uhf_worker->thread);
  198. }
  199. void uhf_worker_stop(UHFWorker* uhf_worker) {
  200. furi_assert(uhf_worker);
  201. furi_assert(uhf_worker->thread);
  202. if(furi_thread_get_state(uhf_worker->thread) != FuriThreadStateStopped) {
  203. uhf_worker_change_state(uhf_worker, UHFWorkerStateStop);
  204. furi_thread_join(uhf_worker->thread);
  205. }
  206. }
  207. void uhf_worker_free(UHFWorker* uhf_worker) {
  208. furi_assert(uhf_worker);
  209. furi_thread_free(uhf_worker->thread);
  210. uhf_response_data_free(uhf_worker->response_data);
  211. free(uhf_worker);
  212. }