app_subghz.c 5.7 KB

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  1. /* Copyright (C) 2022-2023 Salvatore Sanfilippo -- All Rights Reserved
  2. * See the LICENSE file for information about the license. */
  3. #include "app.h"
  4. #include "custom_presets.h"
  5. #include <flipper_format/flipper_format_i.h>
  6. #include <furi_hal_rtc.h>
  7. #include <furi_hal_spi.h>
  8. #include <furi_hal_interrupt.h>
  9. void raw_sampling_worker_start(ProtoViewApp *app);
  10. void raw_sampling_worker_stop(ProtoViewApp *app);
  11. ProtoViewModulation ProtoViewModulations[] = {
  12. {"OOK 650Khz", FuriHalSubGhzPresetOok650Async, NULL},
  13. {"OOK 270Khz", FuriHalSubGhzPresetOok270Async, NULL},
  14. {"2FSK 2.38Khz", FuriHalSubGhzPreset2FSKDev238Async, NULL},
  15. {"2FSK 47.6Khz", FuriHalSubGhzPreset2FSKDev476Async, NULL},
  16. {"MSK", FuriHalSubGhzPresetMSK99_97KbAsync, NULL},
  17. {"GFSK", FuriHalSubGhzPresetGFSK9_99KbAsync, NULL},
  18. {"TPMS 1 (FSK)", 0, (uint8_t*)protoview_subghz_tpms1_fsk_async_regs},
  19. {"TPMS 2 (OOK)", 0, (uint8_t*)protoview_subghz_tpms2_ook_async_regs},
  20. {"TPMS 3 (FSK)", 0, (uint8_t*)protoview_subghz_tpms3_fsk_async_regs},
  21. {"TPMS 4 (FSK)", 0, (uint8_t*)protoview_subghz_tpms4_fsk_async_regs},
  22. {NULL, 0, NULL} /* End of list sentinel. */
  23. };
  24. /* Called after the application initialization in order to setup the
  25. * subghz system and put it into idle state. If the user wants to start
  26. * receiving we will call radio_rx() to start a receiving worker and
  27. * associated thread. */
  28. void radio_begin(ProtoViewApp* app) {
  29. furi_assert(app);
  30. furi_hal_subghz_reset();
  31. furi_hal_subghz_idle();
  32. /* The CC1101 preset can be either one of the standard presets, if
  33. * the modulation "custom" field is NULL, or a custom preset we
  34. * defined in custom_presets.h. */
  35. if (ProtoViewModulations[app->modulation].custom == NULL)
  36. furi_hal_subghz_load_preset(ProtoViewModulations[app->modulation].preset);
  37. else
  38. furi_hal_subghz_load_custom_preset(ProtoViewModulations[app->modulation].custom);
  39. furi_hal_gpio_init(&gpio_cc1101_g0, GpioModeInput, GpioPullNo, GpioSpeedLow);
  40. app->txrx->txrx_state = TxRxStateIDLE;
  41. }
  42. /* Setup subghz to start receiving using a background worker. */
  43. uint32_t radio_rx(ProtoViewApp* app) {
  44. furi_assert(app);
  45. if(!furi_hal_subghz_is_frequency_valid(app->frequency)) {
  46. furi_crash(TAG" Incorrect RX frequency.");
  47. }
  48. if (app->txrx->txrx_state == TxRxStateRx) return app->frequency;
  49. furi_hal_subghz_idle(); /* Put it into idle state in case it is sleeping. */
  50. uint32_t value = furi_hal_subghz_set_frequency_and_path(app->frequency);
  51. FURI_LOG_E(TAG, "Switched to frequency: %lu", value);
  52. furi_hal_gpio_init(&gpio_cc1101_g0, GpioModeInput, GpioPullNo, GpioSpeedLow);
  53. furi_hal_subghz_flush_rx();
  54. furi_hal_subghz_rx();
  55. if (!app->txrx->debug_timer_sampling) {
  56. furi_hal_subghz_start_async_rx(subghz_worker_rx_callback,
  57. app->txrx->worker);
  58. subghz_worker_start(app->txrx->worker);
  59. } else {
  60. raw_sampling_worker_start(app);
  61. }
  62. app->txrx->txrx_state = TxRxStateRx;
  63. return value;
  64. }
  65. /* Stop subghz worker (if active), put radio on idle state. */
  66. void radio_rx_end(ProtoViewApp* app) {
  67. furi_assert(app);
  68. if (app->txrx->txrx_state == TxRxStateRx) {
  69. if (!app->txrx->debug_timer_sampling) {
  70. if(subghz_worker_is_running(app->txrx->worker)) {
  71. subghz_worker_stop(app->txrx->worker);
  72. furi_hal_subghz_stop_async_rx();
  73. }
  74. } else {
  75. raw_sampling_worker_stop(app);
  76. }
  77. }
  78. furi_hal_subghz_idle();
  79. app->txrx->txrx_state = TxRxStateIDLE;
  80. }
  81. /* Put radio on sleep. */
  82. void radio_sleep(ProtoViewApp* app) {
  83. furi_assert(app);
  84. if (app->txrx->txrx_state == TxRxStateRx) {
  85. /* We can't go from having an active RX worker to sleeping.
  86. * Stop the RX subsystems first. */
  87. radio_rx_end(app);
  88. }
  89. furi_hal_subghz_sleep();
  90. app->txrx->txrx_state = TxRxStateSleep;
  91. }
  92. /* ============================= Raw sampling mode =============================
  93. * This is a special mode that uses a high frequency timer to sample the
  94. * CC1101 pin directly. It's useful for debugging purposes when we want
  95. * to get the raw data from the chip and completely bypass the subghz
  96. * Flipper system.
  97. * ===========================================================================*/
  98. void protoview_timer_isr(void *ctx) {
  99. ProtoViewApp *app = ctx;
  100. bool level = furi_hal_gpio_read(&gpio_cc1101_g0);
  101. if (app->txrx->last_g0_value != level) {
  102. uint32_t now = DWT->CYCCNT;
  103. uint32_t dur = now - app->txrx->last_g0_change_time;
  104. dur /= furi_hal_cortex_instructions_per_microsecond();
  105. if (dur > 15000) dur = 15000;
  106. raw_samples_add(RawSamples, app->txrx->last_g0_value, dur);
  107. app->txrx->last_g0_value = level;
  108. app->txrx->last_g0_change_time = now;
  109. }
  110. LL_TIM_ClearFlag_UPDATE(TIM2);
  111. }
  112. void raw_sampling_worker_start(ProtoViewApp *app) {
  113. UNUSED(app);
  114. LL_TIM_InitTypeDef tim_init = {
  115. .Prescaler = 63, /* CPU frequency is ~64Mhz. */
  116. .CounterMode = LL_TIM_COUNTERMODE_UP,
  117. .Autoreload = 5, /* Sample every 5 us */
  118. };
  119. LL_TIM_Init(TIM2, &tim_init);
  120. LL_TIM_SetClockSource(TIM2, LL_TIM_CLOCKSOURCE_INTERNAL);
  121. LL_TIM_DisableCounter(TIM2);
  122. LL_TIM_SetCounter(TIM2, 0);
  123. furi_hal_interrupt_set_isr(FuriHalInterruptIdTIM2, protoview_timer_isr, app);
  124. LL_TIM_EnableIT_UPDATE(TIM2);
  125. LL_TIM_EnableCounter(TIM2);
  126. FURI_LOG_E(TAG, "Timer enabled");
  127. }
  128. void raw_sampling_worker_stop(ProtoViewApp *app) {
  129. UNUSED(app);
  130. FURI_CRITICAL_ENTER();
  131. LL_TIM_DisableCounter(TIM2);
  132. LL_TIM_DisableIT_UPDATE(TIM2);
  133. furi_hal_interrupt_set_isr(FuriHalInterruptIdTIM2, NULL, NULL);
  134. LL_TIM_DeInit(TIM2);
  135. FURI_CRITICAL_EXIT();
  136. }