subghz_frequency_analyzer_worker.c 6.1 KB

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  1. #include "subghz_frequency_analyzer_worker.h"
  2. #include <lib/drivers/cc1101_regs.h>
  3. #include <furi.h>
  4. #include "../subghz_i.h"
  5. static const uint8_t subghz_preset_ook_58khz[][2] = {
  6. {CC1101_FIFOTHR, 0x47}, // The only important bit is ADC_RETENTION, FIFO Tx=33 Rx=32
  7. {CC1101_MDMCFG4, 0xF5}, // Rx BW filter is 58.035714kHz
  8. {CC1101_TEST2, 0x81}, // FIFOTHR ADC_RETENTION=1 matched value
  9. {CC1101_TEST1, 0x35}, // FIFOTHR ADC_RETENTION=1 matched value
  10. /* End */
  11. {0, 0},
  12. };
  13. static const uint8_t subghz_preset_ook_650khz[][2] = {
  14. {CC1101_FIFOTHR, 0x07}, // The only important bit is ADC_RETENTION
  15. {CC1101_MDMCFG4, 0x17}, // Rx BW filter is 650.000kHz
  16. {CC1101_TEST2, 0x88},
  17. {CC1101_TEST1, 0x31},
  18. /* End */
  19. {0, 0},
  20. };
  21. struct SubGhzFrequencyAnalyzerWorker {
  22. FuriThread* thread;
  23. volatile bool worker_running;
  24. uint8_t count_repet;
  25. FrequencyRSSI frequency_rssi_buf;
  26. float filVal;
  27. SubGhzFrequencyAnalyzerWorkerPairCallback pair_callback;
  28. void* context;
  29. };
  30. // running average with adaptive coefficient
  31. static uint32_t subghz_frequency_analyzer_worker_expRunningAverageAdaptive(
  32. SubGhzFrequencyAnalyzerWorker* instance,
  33. uint32_t newVal) {
  34. float k;
  35. float newValFloat = newVal;
  36. // the sharpness of the filter depends on the absolute value of the difference
  37. if(abs(newValFloat - instance->filVal) > 500000)
  38. k = 0.9;
  39. else
  40. k = 0.03;
  41. instance->filVal += (newValFloat - instance->filVal) * k;
  42. return (uint32_t)instance->filVal;
  43. }
  44. /** Worker thread
  45. *
  46. * @param context
  47. * @return exit code
  48. */
  49. static int32_t subghz_frequency_analyzer_worker_thread(void* context) {
  50. SubGhzFrequencyAnalyzerWorker* instance = context;
  51. FrequencyRSSI frequency_rssi = {.frequency = 0, .rssi = 0};
  52. float rssi;
  53. uint32_t frequency;
  54. uint32_t frequency_start;
  55. //Start CC1101
  56. furi_hal_subghz_reset();
  57. furi_hal_subghz_load_preset(FuriHalSubGhzPresetOok650Async);
  58. furi_hal_subghz_set_frequency(433920000);
  59. furi_hal_subghz_flush_rx();
  60. furi_hal_subghz_rx();
  61. while(instance->worker_running) {
  62. osDelay(10);
  63. frequency_rssi.rssi = -127.0f;
  64. furi_hal_subghz_idle();
  65. furi_hal_subghz_load_registers(subghz_preset_ook_650khz);
  66. for(size_t i = 0; i < subghz_frequencies_count; i++) {
  67. if(furi_hal_subghz_is_frequency_valid(subghz_frequencies[i])) {
  68. furi_hal_subghz_idle();
  69. frequency = furi_hal_subghz_set_frequency(subghz_frequencies[i]);
  70. furi_hal_subghz_rx();
  71. osDelay(3);
  72. rssi = furi_hal_subghz_get_rssi();
  73. if(frequency_rssi.rssi < rssi) {
  74. frequency_rssi.rssi = rssi;
  75. frequency_rssi.frequency = frequency;
  76. }
  77. }
  78. }
  79. if(frequency_rssi.rssi > -90.0) {
  80. // -0.5 ... 433.92 ... +0.5
  81. frequency_start = frequency_rssi.frequency - 250000;
  82. //step 10KHz
  83. frequency_rssi.rssi = -127.0;
  84. furi_hal_subghz_idle();
  85. furi_hal_subghz_load_registers(subghz_preset_ook_58khz);
  86. for(uint32_t i = frequency_start; i < frequency_start + 500000; i += 10000) {
  87. if(furi_hal_subghz_is_frequency_valid(i)) {
  88. furi_hal_subghz_idle();
  89. frequency = furi_hal_subghz_set_frequency(i);
  90. furi_hal_subghz_rx();
  91. osDelay(3);
  92. rssi = furi_hal_subghz_get_rssi();
  93. if(frequency_rssi.rssi < rssi) {
  94. frequency_rssi.rssi = rssi;
  95. frequency_rssi.frequency = frequency;
  96. }
  97. }
  98. }
  99. }
  100. if(frequency_rssi.rssi > -90.0) {
  101. instance->count_repet = 20;
  102. if(instance->filVal) {
  103. frequency_rssi.frequency =
  104. subghz_frequency_analyzer_worker_expRunningAverageAdaptive(
  105. instance, frequency_rssi.frequency);
  106. }
  107. if(instance->pair_callback)
  108. instance->pair_callback(
  109. instance->context, frequency_rssi.frequency, frequency_rssi.rssi);
  110. } else {
  111. if(instance->count_repet > 0) {
  112. instance->count_repet--;
  113. } else {
  114. instance->filVal = 0;
  115. if(instance->pair_callback) instance->pair_callback(instance->context, 0, 0);
  116. }
  117. }
  118. }
  119. //Stop CC1101
  120. furi_hal_subghz_idle();
  121. furi_hal_subghz_sleep();
  122. return 0;
  123. }
  124. SubGhzFrequencyAnalyzerWorker* subghz_frequency_analyzer_worker_alloc() {
  125. SubGhzFrequencyAnalyzerWorker* instance = malloc(sizeof(SubGhzFrequencyAnalyzerWorker));
  126. instance->thread = furi_thread_alloc();
  127. furi_thread_set_name(instance->thread, "SubGhzFAWorker");
  128. furi_thread_set_stack_size(instance->thread, 2048);
  129. furi_thread_set_context(instance->thread, instance);
  130. furi_thread_set_callback(instance->thread, subghz_frequency_analyzer_worker_thread);
  131. return instance;
  132. }
  133. void subghz_frequency_analyzer_worker_free(SubGhzFrequencyAnalyzerWorker* instance) {
  134. furi_assert(instance);
  135. furi_thread_free(instance->thread);
  136. free(instance);
  137. }
  138. void subghz_frequency_analyzer_worker_set_pair_callback(
  139. SubGhzFrequencyAnalyzerWorker* instance,
  140. SubGhzFrequencyAnalyzerWorkerPairCallback callback,
  141. void* context) {
  142. furi_assert(instance);
  143. furi_assert(context);
  144. instance->pair_callback = callback;
  145. instance->context = context;
  146. }
  147. void subghz_frequency_analyzer_worker_start(SubGhzFrequencyAnalyzerWorker* instance) {
  148. furi_assert(instance);
  149. furi_assert(!instance->worker_running);
  150. instance->worker_running = true;
  151. furi_thread_start(instance->thread);
  152. }
  153. void subghz_frequency_analyzer_worker_stop(SubGhzFrequencyAnalyzerWorker* instance) {
  154. furi_assert(instance);
  155. furi_assert(instance->worker_running);
  156. instance->worker_running = false;
  157. furi_thread_join(instance->thread);
  158. }
  159. bool subghz_frequency_analyzer_worker_is_running(SubGhzFrequencyAnalyzerWorker* instance) {
  160. furi_assert(instance);
  161. return instance->worker_running;
  162. }