irda_parser.cpp 5.6 KB

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  1. #include "../irda_app_signal.h"
  2. #include "irda.h"
  3. #include "irda/helpers/irda_parser.h"
  4. #include "irda_worker.h"
  5. #include "m-string.h"
  6. #include <flipper_file.h>
  7. #include <memory>
  8. #include <string>
  9. #include <furi_hal_irda.h>
  10. #define TAG "IrdaParser"
  11. bool irda_parser_save_signal(FlipperFile* ff, const IrdaAppSignal& signal, const std::string& name) {
  12. furi_assert(ff);
  13. furi_assert(!name.empty());
  14. bool result = false;
  15. do {
  16. if(!flipper_file_write_comment_cstr(ff, "")) break;
  17. if(!flipper_file_write_string_cstr(ff, "name", name.c_str())) break;
  18. if(signal.is_raw()) {
  19. furi_assert(signal.get_raw_signal().timings_cnt <= MAX_TIMINGS_AMOUNT);
  20. auto raw_signal = signal.get_raw_signal();
  21. if(!flipper_file_write_string_cstr(ff, "type", "raw")) break;
  22. if(!flipper_file_write_uint32(ff, "frequency", &raw_signal.frequency, 1)) break;
  23. if(!flipper_file_write_float(ff, "duty_cycle", &raw_signal.duty_cycle, 1)) break;
  24. if(!flipper_file_write_uint32(ff, "data", raw_signal.timings, raw_signal.timings_cnt))
  25. break;
  26. } else {
  27. auto parsed_signal = signal.get_message();
  28. const char* protocol_name = irda_get_protocol_name(parsed_signal.protocol);
  29. if(!flipper_file_write_string_cstr(ff, "type", "parsed")) break;
  30. if(!flipper_file_write_string_cstr(ff, "protocol", protocol_name)) break;
  31. if(!flipper_file_write_hex(ff, "address", (uint8_t*)&parsed_signal.address, 4)) break;
  32. if(!flipper_file_write_hex(ff, "command", (uint8_t*)&parsed_signal.command, 4)) break;
  33. }
  34. result = true;
  35. } while(0);
  36. return result;
  37. }
  38. bool irda_parser_read_signal(FlipperFile* ff, IrdaAppSignal& signal, std::string& name) {
  39. furi_assert(ff);
  40. bool result = false;
  41. string_t read_string;
  42. string_init(read_string);
  43. do {
  44. if(!flipper_file_read_string(ff, "name", read_string)) break;
  45. name = string_get_cstr(read_string);
  46. if(!flipper_file_read_string(ff, "type", read_string)) break;
  47. if(!string_cmp_str(read_string, "raw")) {
  48. uint32_t* timings = nullptr;
  49. uint32_t timings_cnt = 0;
  50. uint32_t frequency = 0;
  51. float duty_cycle = 0;
  52. if(!flipper_file_read_uint32(ff, "frequency", &frequency, 1)) break;
  53. if(!flipper_file_read_float(ff, "duty_cycle", &duty_cycle, 1)) break;
  54. if(!flipper_file_get_value_count(ff, "data", &timings_cnt)) break;
  55. if(timings_cnt > MAX_TIMINGS_AMOUNT) break;
  56. timings = (uint32_t*)furi_alloc(sizeof(uint32_t) * timings_cnt);
  57. if(flipper_file_read_uint32(ff, "data", timings, timings_cnt)) {
  58. signal.set_raw_signal(timings, timings_cnt, frequency, duty_cycle);
  59. result = true;
  60. }
  61. free(timings);
  62. } else if(!string_cmp_str(read_string, "parsed")) {
  63. IrdaMessage parsed_signal;
  64. if(!flipper_file_read_string(ff, "protocol", read_string)) break;
  65. parsed_signal.protocol = irda_get_protocol_by_name(string_get_cstr(read_string));
  66. if(!flipper_file_read_hex(ff, "address", (uint8_t*)&parsed_signal.address, 4)) break;
  67. if(!flipper_file_read_hex(ff, "command", (uint8_t*)&parsed_signal.command, 4)) break;
  68. if(!irda_parser_is_parsed_signal_valid(&parsed_signal)) break;
  69. signal.set_message(&parsed_signal);
  70. result = true;
  71. } else {
  72. FURI_LOG_E(TAG, "Unknown type of signal (allowed - raw/parsed) ");
  73. }
  74. } while(0);
  75. string_clear(read_string);
  76. return result;
  77. }
  78. bool irda_parser_is_parsed_signal_valid(const IrdaMessage* signal) {
  79. furi_assert(signal);
  80. bool result = true;
  81. if(!irda_is_protocol_valid(signal->protocol)) {
  82. FURI_LOG_E(TAG, "Unknown protocol");
  83. result = false;
  84. }
  85. if(result) {
  86. uint32_t address_length = irda_get_protocol_address_length(signal->protocol);
  87. uint32_t address_mask = (1LU << address_length) - 1;
  88. if(signal->address != (signal->address & address_mask)) {
  89. FURI_LOG_E(
  90. TAG,
  91. "Address is out of range (mask 0x%08lX): 0x%lX\r\n",
  92. address_mask,
  93. signal->address);
  94. result = false;
  95. }
  96. }
  97. if(result) {
  98. uint32_t command_length = irda_get_protocol_command_length(signal->protocol);
  99. uint32_t command_mask = (1LU << command_length) - 1;
  100. if(signal->command != (signal->command & command_mask)) {
  101. FURI_LOG_E(
  102. TAG,
  103. "Command is out of range (mask 0x%08lX): 0x%lX\r\n",
  104. command_mask,
  105. signal->command);
  106. result = false;
  107. }
  108. }
  109. return result;
  110. }
  111. bool irda_parser_is_raw_signal_valid(uint32_t frequency, float duty_cycle, uint32_t timings_cnt) {
  112. bool result = true;
  113. if((frequency > IRDA_MAX_FREQUENCY) || (frequency < IRDA_MIN_FREQUENCY)) {
  114. FURI_LOG_E(
  115. TAG,
  116. "Frequency is out of range (%lX - %lX): %lX",
  117. IRDA_MIN_FREQUENCY,
  118. IRDA_MAX_FREQUENCY,
  119. frequency);
  120. result = false;
  121. } else if((duty_cycle <= 0) || (duty_cycle > 1)) {
  122. FURI_LOG_E(TAG, "Duty cycle is out of range (0 - 1): %f", duty_cycle);
  123. result = false;
  124. } else if((timings_cnt <= 0) || (timings_cnt > MAX_TIMINGS_AMOUNT)) {
  125. FURI_LOG_E(
  126. TAG, "Timings amount is out of range (0 - %lX): %lX", MAX_TIMINGS_AMOUNT, timings_cnt);
  127. result = false;
  128. }
  129. return result;
  130. }