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pulse_counter_ulp: Record and dump all config items
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parent
8b66ff90d8
commit
67b746693f
3 changed files with 29 additions and 22 deletions
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@ -28,8 +28,7 @@ const char *to_string(CountMode count_mode) {
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extern const uint8_t ulp_main_bin_start[] asm("_binary_ulp_main_bin_start");
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extern const uint8_t ulp_main_bin_end[] asm("_binary_ulp_main_bin_end");
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std::unique_ptr<UlpProgram> UlpProgram::start(gpio_num_t gpio_num, microseconds sleep_duration,
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CountMode rising_edge_mode, CountMode falling_edge_mode) {
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std::unique_ptr<UlpProgram> UlpProgram::start(const Config &config) {
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esp_err_t error = ulp_load_binary(0, ulp_main_bin_start, (ulp_main_bin_end - ulp_main_bin_start) / sizeof(uint32_t));
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if (error != ESP_OK) {
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ESP_LOGE(TAG, "Loading ULP binary failed: %s", esp_err_to_name(error));
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@ -37,6 +36,7 @@ std::unique_ptr<UlpProgram> UlpProgram::start(gpio_num_t gpio_num, microseconds
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}
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/* GPIO used for pulse counting. */
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gpio_num_t gpio_num = static_cast<gpio_num_t>(config.pin_->get_pin());
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int rtcio_num = rtc_io_number_get(gpio_num);
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if (!rtc_gpio_is_valid_gpio(gpio_num)) {
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ESP_LOGE(TAG, "GPIO used for pulse counting must be an RTC IO");
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@ -54,10 +54,10 @@ std::unique_ptr<UlpProgram> UlpProgram::start(gpio_num_t gpio_num, microseconds
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ulp_edge_count = 0;
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ulp_run_count = 0;
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ulp_debounce_counter = 3;
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ulp_debounce_max_count = 3;
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ulp_debounce_max_count = config.debounce_;
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ulp_next_edge = 0;
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ulp_io_number = rtcio_num; /* map from GPIO# to RTC_IO# */
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ulp_mean_exec_time = sleep_duration / microseconds{1};
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ulp_mean_exec_time = config.sleep_duration_ / microseconds{1};
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/* Initialize selected GPIO as RTC IO, enable input */
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rtc_gpio_init(gpio_num);
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@ -67,7 +67,7 @@ std::unique_ptr<UlpProgram> UlpProgram::start(gpio_num_t gpio_num, microseconds
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/* Set ULP wake up period T
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* Minimum pulse width has to be T * (ulp_debounce_counter + 1).
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*/
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ulp_set_wakeup_period(0, sleep_duration / std::chrono::microseconds{1});
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ulp_set_wakeup_period(0, config.sleep_duration_ / std::chrono::microseconds{1});
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/* Start the program */
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error = ulp_run(&ulp_entry - RTC_SLOW_MEM);
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@ -103,12 +103,11 @@ void UlpProgram::set_mean_exec_time(microseconds mean_exec_time) {
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void PulseCounterUlpSensor::setup() {
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ESP_LOGCONFIG(TAG, "Setting up pulse counter '%s'...", this->name_.c_str());
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this->pin_->setup();
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this->config_.pin_->setup();
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if (esp_sleep_get_wakeup_cause() == ESP_SLEEP_WAKEUP_UNDEFINED) {
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ESP_LOGD(TAG, "Did not wake up from sleep, assuming restart or first boot and setting up ULP program");
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this->storage_ = UlpProgram::start(static_cast<gpio_num_t>(this->pin_->get_pin()), this->sleep_duration_,
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this->rising_edge_mode, this->falling_edge_mode);
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this->storage_ = UlpProgram::start(this->config_);
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} else {
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ESP_LOGD(TAG, "Woke up from sleep, skipping set-up of ULP program");
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this->storage_ = std::unique_ptr<UlpProgram>(new UlpProgram);
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@ -129,9 +128,11 @@ void PulseCounterUlpSensor::set_total_pulses(uint32_t pulses) {
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void PulseCounterUlpSensor::dump_config() {
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LOG_SENSOR("", "Pulse Counter", this);
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LOG_PIN(" Pin: ", this->pin_);
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ESP_LOGCONFIG(TAG, " Rising Edge: %s", to_string(this->rising_edge_mode));
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ESP_LOGCONFIG(TAG, " Falling Edge: %s", to_string(this->falling_edge_mode));
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LOG_PIN(" Pin: ", this->config_.pin_);
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ESP_LOGCONFIG(TAG, " Rising Edge: %s", to_string(this->config_.rising_edge_mode_));
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ESP_LOGCONFIG(TAG, " Falling Edge: %s", to_string(this->config_.falling_edge_mode_));
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ESP_LOGCONFIG(TAG, " Sleep Duration: " PRIu32 " µs", this->config_.sleep_duration_ / microseconds{1});
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ESP_LOGCONFIG(TAG, " Debounce: " PRIu16, this->config_.debounce_);
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LOG_UPDATE_INTERVAL(this);
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}
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@ -20,6 +20,13 @@ using microseconds = std::chrono::duration<uint32_t, std::micro>;
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class UlpProgram {
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public:
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struct Config {
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InternalGPIOPin *pin_;
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CountMode rising_edge_mode_;
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CountMode falling_edge_mode_;
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microseconds sleep_duration_;
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uint16_t debounce_;
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};
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struct State {
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uint16_t edge_count;
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uint16_t run_count;
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@ -29,18 +36,18 @@ class UlpProgram {
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State peek_state() const;
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void set_mean_exec_time(microseconds mean_exec_time);
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static std::unique_ptr<UlpProgram> start(gpio_num_t gpio_num, microseconds sleep_duration, CountMode rising_edge_mode,
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CountMode falling_edge_mode);
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static std::unique_ptr<UlpProgram> start(const Config &config);
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};
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class PulseCounterUlpSensor : public sensor::Sensor, public PollingComponent {
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public:
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explicit PulseCounterUlpSensor() {}
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void set_pin(InternalGPIOPin *pin) { pin_ = pin; }
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void set_rising_edge_mode(CountMode mode) { this->rising_edge_mode = mode; }
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void set_falling_edge_mode(CountMode mode) { this->falling_edge_mode = mode; }
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void set_sleep_duration(uint32_t duration_us) { this->sleep_duration_ = duration_us * microseconds{1}; }
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void set_pin(InternalGPIOPin *pin) { this->config_.pin_ = pin; }
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void set_rising_edge_mode(CountMode mode) { this->config_.rising_edge_mode_ = mode; }
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void set_falling_edge_mode(CountMode mode) { this->config_.falling_edge_mode_ = mode; }
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void set_sleep_duration(uint32_t duration_us) { this->config_.sleep_duration_ = duration_us * microseconds{1}; }
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void set_debounce(uint16_t debounce) { this->config_.debounce_ = debounce; }
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void set_total_sensor(sensor::Sensor *total_sensor) { total_sensor_ = total_sensor; }
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void set_total_pulses(uint32_t pulses);
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@ -52,14 +59,12 @@ class PulseCounterUlpSensor : public sensor::Sensor, public PollingComponent {
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void dump_config() override;
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protected:
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InternalGPIOPin *pin_;
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CountMode rising_edge_mode{CountMode::increment};
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CountMode falling_edge_mode{CountMode::disable};
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UlpProgram::Config config_{};
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sensor::Sensor *total_sensor_{nullptr};
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std::unique_ptr<UlpProgram> storage_{};
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clock::time_point last_time_{};
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microseconds sleep_duration_{20000};
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uint32_t current_total_{0};
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sensor::Sensor *total_sensor_{nullptr};
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};
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} // namespace pulse_counter_ulp
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@ -126,6 +126,7 @@ async def to_code(config):
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cg.add(var.set_rising_edge_mode(count[CONF_RISING_EDGE]))
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cg.add(var.set_falling_edge_mode(count[CONF_FALLING_EDGE]))
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cg.add(var.set_sleep_duration(config[CONF_SLEEP_DURATION]))
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cg.add(var.set_debounce(config[CONF_DEBOUNCE]))
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if CONF_TOTAL in config:
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sens = await sensor.new_sensor(config[CONF_TOTAL])
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