irda-cli.cpp 5.2 KB

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  1. #include <furi-hal-delay.h>
  2. #include <irda.h>
  3. #include <app-template.h>
  4. #include <cli/cli.h>
  5. #include <cmsis_os2.h>
  6. #include <irda_worker.h>
  7. #include <furi.h>
  8. #include <furi-hal-irda.h>
  9. #include <sstream>
  10. #include <string>
  11. #include <m-string.h>
  12. #include <irda_transmit.h>
  13. #include <sys/types.h>
  14. static void signal_received_callback(void* context, IrdaWorkerSignal* received_signal) {
  15. furi_assert(received_signal);
  16. char buf[100];
  17. size_t buf_cnt;
  18. Cli* cli = (Cli*)context;
  19. if(irda_worker_signal_is_decoded(received_signal)) {
  20. const IrdaMessage* message = irda_worker_get_decoded_message(received_signal);
  21. buf_cnt = sniprintf(
  22. buf,
  23. sizeof(buf),
  24. "%s, A:0x%0*lX, C:0x%0*lX%s\r\n",
  25. irda_get_protocol_name(message->protocol),
  26. irda_get_protocol_address_length(message->protocol),
  27. message->address,
  28. irda_get_protocol_command_length(message->protocol),
  29. message->command,
  30. message->repeat ? " R" : "");
  31. cli_write(cli, (uint8_t*)buf, buf_cnt);
  32. } else {
  33. const uint32_t* timings;
  34. size_t timings_cnt;
  35. irda_worker_get_raw_signal(received_signal, &timings, &timings_cnt);
  36. buf_cnt = sniprintf(buf, sizeof(buf), "RAW, %d samples:\r\n", timings_cnt);
  37. cli_write(cli, (uint8_t*)buf, buf_cnt);
  38. for(size_t i = 0; i < timings_cnt; ++i) {
  39. buf_cnt = sniprintf(buf, sizeof(buf), "%lu ", timings[i]);
  40. cli_write(cli, (uint8_t*)buf, buf_cnt);
  41. }
  42. buf_cnt = sniprintf(buf, sizeof(buf), "\r\n");
  43. cli_write(cli, (uint8_t*)buf, buf_cnt);
  44. }
  45. }
  46. static void irda_cli_start_ir_rx(Cli* cli, string_t args, void* context) {
  47. if(furi_hal_irda_is_busy()) {
  48. printf("IRDA is busy. Exit.");
  49. return;
  50. }
  51. IrdaWorker* worker = irda_worker_alloc();
  52. irda_worker_set_context(worker, cli);
  53. irda_worker_start(worker);
  54. irda_worker_set_received_signal_callback(worker, signal_received_callback);
  55. printf("Receiving IRDA...\r\nPress Ctrl+C to abort\r\n");
  56. while(!cli_cmd_interrupt_received(cli)) {
  57. delay(50);
  58. }
  59. irda_worker_stop(worker);
  60. irda_worker_free(worker);
  61. }
  62. static void irda_cli_print_usage(void) {
  63. printf("Usage:\r\n\tir_tx <protocol> <address> <command>\r\n");
  64. printf("\t<command> and <address> are hex-formatted\r\n");
  65. printf("\tAvailable protocols:");
  66. for(int i = 0; irda_is_protocol_valid((IrdaProtocol)i); ++i) {
  67. printf(" %s", irda_get_protocol_name((IrdaProtocol)i));
  68. }
  69. printf("\r\n");
  70. }
  71. static bool parse_message(const char* str, IrdaMessage* message) {
  72. uint32_t command = 0;
  73. uint32_t address = 0;
  74. char protocol_name[32];
  75. int parsed = sscanf(str, "%31s %lX %lX", protocol_name, &address, &command);
  76. if(parsed != 3) {
  77. return false;
  78. }
  79. IrdaProtocol protocol = irda_get_protocol_by_name(protocol_name);
  80. if(!irda_is_protocol_valid(protocol)) {
  81. return false;
  82. }
  83. message->protocol = protocol;
  84. message->address = address;
  85. message->command = command;
  86. message->repeat = false;
  87. return true;
  88. }
  89. static bool parse_signal_raw(
  90. const char* str,
  91. uint32_t* timings,
  92. uint32_t* timings_cnt,
  93. float* duty_cycle,
  94. uint32_t* frequency) {
  95. char frequency_str[10];
  96. char duty_cycle_str[10];
  97. int parsed = sscanf(str, "RAW F:%9s DC:%9s", frequency_str, duty_cycle_str);
  98. if(parsed != 2) return false;
  99. *frequency = atoi(frequency_str);
  100. *duty_cycle = (float)atoi(duty_cycle_str) / 100;
  101. str += strlen(frequency_str) + strlen(duty_cycle_str) + 10;
  102. uint32_t timings_cnt_max = *timings_cnt;
  103. *timings_cnt = 0;
  104. while(1) {
  105. char timing_str[10];
  106. for(; *str == ' '; ++str)
  107. ;
  108. if(1 != sscanf(str, "%9s", timing_str)) break;
  109. str += strlen(timing_str);
  110. uint32_t timing = atoi(timing_str);
  111. if(timing <= 0) break;
  112. if(*timings_cnt >= timings_cnt_max) break;
  113. timings[*timings_cnt] = timing;
  114. ++*timings_cnt;
  115. }
  116. printf("\r\nTransmit:");
  117. for(size_t i = 0; i < *timings_cnt; ++i) {
  118. printf(" %ld", timings[i]);
  119. }
  120. printf("\r\n");
  121. return true;
  122. }
  123. static void irda_cli_start_ir_tx(Cli* cli, string_t args, void* context) {
  124. if(furi_hal_irda_is_busy()) {
  125. printf("IRDA is busy. Exit.");
  126. return;
  127. }
  128. IrdaMessage message;
  129. const char* str = string_get_cstr(args);
  130. uint32_t frequency;
  131. float duty_cycle;
  132. uint32_t* timings = (uint32_t*)furi_alloc(sizeof(uint32_t) * 1000);
  133. uint32_t timings_cnt = 1000;
  134. if(parse_message(str, &message)) {
  135. irda_send(&message, 1);
  136. } else if(parse_signal_raw(str, timings, &timings_cnt, &duty_cycle, &frequency)) {
  137. irda_send_raw_ext(timings, timings_cnt, true, frequency, duty_cycle);
  138. } else {
  139. printf("Wrong arguments.\r\n");
  140. irda_cli_print_usage();
  141. }
  142. free(timings);
  143. }
  144. extern "C" void irda_cli_init() {
  145. Cli* cli = (Cli*)furi_record_open("cli");
  146. cli_add_command(cli, "ir_rx", CliCommandFlagDefault, irda_cli_start_ir_rx, NULL);
  147. cli_add_command(cli, "ir_tx", CliCommandFlagDefault, irda_cli_start_ir_tx, NULL);
  148. furi_record_close("cli");
  149. }