CPUUsageTracker.cpp 1.5 KB

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  1. #ifdef ESP32
  2. #include "CPUUsageTracker.h"
  3. #include "esp_freertos_hooks.h"
  4. volatile uint32_t CPUUsageTracker::s_idle_ticks = 0;
  5. volatile uint32_t CPUUsageTracker::s_busy_ticks = 0;
  6. TaskHandle_t CPUUsageTracker::s_idle_handle = nullptr;
  7. void IRAM_ATTR CPUUsageTracker::s_tick_hook() {
  8. if (xTaskGetCurrentTaskHandle() == s_idle_handle) {
  9. s_idle_ticks++;
  10. } else {
  11. s_busy_ticks++;
  12. }
  13. }
  14. void CPUUsageTracker::s_sample_cb(void* arg) {
  15. static_cast<CPUUsageTracker*>(arg)->_onSample();
  16. }
  17. void CPUUsageTracker::_onSample() {
  18. const uint32_t busy = s_busy_ticks;
  19. const uint32_t idle = s_idle_ticks;
  20. const uint32_t db = busy - _last_busy;
  21. const uint32_t di = idle - _last_idle;
  22. _last_busy = busy;
  23. _last_idle = idle;
  24. const uint32_t total = db + di;
  25. const float sample = (total > 0) ? (float)db / (float)total : 0.0f;
  26. const uint8_t s8 = (uint8_t)(sample * 255.0f + 0.5f);
  27. _sma_sum -= _sma_buf[_sma_idx];
  28. _sma_buf[_sma_idx] = s8;
  29. _sma_sum += s8;
  30. _sma_idx = (_sma_idx + 1) & (SMA_WINDOW - 1);
  31. _sma_avg = (float)_sma_sum * (1.0f / (SMA_WINDOW * 255.0f));
  32. }
  33. void CPUUsageTracker::begin() {
  34. s_idle_handle = xTaskGetIdleTaskHandleForCPU(0);
  35. esp_register_freertos_tick_hook_for_cpu(s_tick_hook, 0);
  36. esp_timer_create_args_t args = {
  37. .callback = s_sample_cb,
  38. .arg = this,
  39. .dispatch_method = ESP_TIMER_TASK,
  40. .name = "cpu_sample"
  41. };
  42. esp_timer_create(&args, &_timer);
  43. esp_timer_start_periodic(_timer, 60000000ULL / SMA_WINDOW); // SMA_WINDOW samples per minute
  44. }
  45. #endif