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slow_pwm: allow to restart a cycle on state change (#3004)
Co-authored-by: Oxan van Leeuwen <oxan@oxanvanleeuwen.nl>
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c6cbe2748e
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@ -15,6 +15,7 @@ slow_pwm_ns = cg.esphome_ns.namespace("slow_pwm")
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SlowPWMOutput = slow_pwm_ns.class_("SlowPWMOutput", output.FloatOutput, cg.Component)
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CONF_STATE_CHANGE_ACTION = "state_change_action"
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CONF_RESTART_CYCLE_ON_STATE_CHANGE = "restart_cycle_on_state_change"
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CONFIG_SCHEMA = output.FLOAT_OUTPUT_SCHEMA.extend(
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{
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@ -37,6 +38,7 @@ CONFIG_SCHEMA = output.FLOAT_OUTPUT_SCHEMA.extend(
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cv.positive_time_period_milliseconds,
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cv.Range(min=core.TimePeriod(milliseconds=100)),
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),
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cv.Optional(CONF_RESTART_CYCLE_ON_STATE_CHANGE, default=False): cv.boolean,
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}
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).extend(cv.COMPONENT_SCHEMA)
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@ -63,3 +65,8 @@ async def to_code(config):
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)
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cg.add(var.set_period(config[CONF_PERIOD]))
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cg.add(
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var.set_restart_cycle_on_state_change(
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config[CONF_RESTART_CYCLE_ON_STATE_CHANGE]
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)
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)
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@ -18,6 +18,12 @@ void SlowPWMOutput::set_output_state_(bool new_state) {
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this->pin_->digital_write(new_state);
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}
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if (new_state != current_state_) {
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if (this->pin_) {
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ESP_LOGV(TAG, "Switching output pin %s to %s", this->pin_->dump_summary().c_str(), ONOFF(new_state));
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} else {
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ESP_LOGV(TAG, "Switching to %s", ONOFF(new_state));
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}
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if (this->state_change_trigger_) {
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this->state_change_trigger_->trigger(new_state);
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}
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@ -36,16 +42,12 @@ void SlowPWMOutput::loop() {
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uint32_t now = millis();
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float scaled_state = this->state_ * this->period_;
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if (now - this->period_start_time_ >= this->period_) {
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if (now >= this->period_start_time_ + this->period_) {
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ESP_LOGVV(TAG, "End of period. State: %f, Scaled state: %f", this->state_, scaled_state);
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this->period_start_time_ += this->period_;
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}
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if (scaled_state > now - this->period_start_time_) {
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this->set_output_state_(true);
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} else {
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this->set_output_state_(false);
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}
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this->set_output_state_(now < this->period_start_time_ + scaled_state);
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}
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void SlowPWMOutput::dump_config() {
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@ -58,8 +60,15 @@ void SlowPWMOutput::dump_config() {
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if (this->turn_off_trigger_)
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ESP_LOGCONFIG(TAG, " Turn off automation configured");
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ESP_LOGCONFIG(TAG, " Period: %d ms", this->period_);
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ESP_LOGCONFIG(TAG, " Restart cycle on state change: %s", YESNO(this->restart_cycle_on_state_change_));
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LOG_FLOAT_OUTPUT(this);
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}
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void SlowPWMOutput::write_state(float state) {
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this->state_ = state;
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if (this->restart_cycle_on_state_change_)
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this->period_start_time_ = millis();
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}
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} // namespace slow_pwm
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} // namespace esphome
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@ -11,6 +11,10 @@ class SlowPWMOutput : public output::FloatOutput, public Component {
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public:
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void set_pin(GPIOPin *pin) { pin_ = pin; };
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void set_period(unsigned int period) { period_ = period; };
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void set_restart_cycle_on_state_change(bool restart_cycle_on_state_change) {
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restart_cycle_on_state_change_ = restart_cycle_on_state_change;
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}
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/// Initialize pin
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void setup() override;
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void dump_config() override;
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@ -37,7 +41,7 @@ class SlowPWMOutput : public output::FloatOutput, public Component {
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protected:
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void loop() override;
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void write_state(float state) override { state_ = state; }
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void write_state(float state) override;
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/// turn on/off the configured output
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void set_output_state_(bool state);
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@ -48,7 +52,8 @@ class SlowPWMOutput : public output::FloatOutput, public Component {
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float state_{0};
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bool current_state_{false};
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unsigned int period_start_time_{0};
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unsigned int period_{5000};
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unsigned int period_;
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bool restart_cycle_on_state_change_;
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};
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} // namespace slow_pwm
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@ -1148,6 +1148,7 @@ output:
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pin: GPIO5
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id: my_slow_pwm
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period: 15s
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restart_cycle_on_state_change: false
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- platform: sm2135
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id: sm2135_0
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channel: 0
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