small updates to treppe
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@ -1,9 +1,8 @@
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#include "treppe.h"
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/*
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dimm_stufe
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- dimmt stufe (0 - 15, PCA9685 outputs) mit linearen ticks
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von idle bis active brightness
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von idle bis active pwm
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- return false solange gedimmt wird
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- return true bei nächster stufe
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*/
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@ -22,8 +21,21 @@ bool Treppe::dimm_stufe(uint8_t stufe)
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return true;
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}
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/*
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- dimmt treppe (all PCA9685 outputs) mit linearen ticks
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von idle bis active brightness
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- return false solange gedimmt wird
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- return true bei ende
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*/
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bool Treppe::dimm_treppe()
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{
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// needs to be in state machine
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return true;
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}
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/*
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animation tick
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- nach dem dimmen einer stufe wird die stufe weitergezählt
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- abbruch am ende => anim_beendet = true;
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*/
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@ -69,13 +81,13 @@ void Treppe::start_animation()
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if (fsm_outputs.dimmrichtung == DR_AUFDIMMEN)
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{
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start_pwm = idle_bright_internal;
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ziel_pwm = active_brightness;
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start_pwm = idle_pwm_internal;
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ziel_pwm = active_pwm;
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}
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else
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{
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start_pwm = active_brightness;
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ziel_pwm = idle_bright_internal;
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start_pwm = active_pwm;
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ziel_pwm = idle_pwm_internal;
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}
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current_tick = 0;
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@ -217,7 +229,7 @@ void Treppe::task()
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fsm_outputs.status == ST_ABDIMMEN_HOCH ||
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fsm_outputs.status == ST_AUFDIMMEN_RUNTER ||
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fsm_outputs.status == ST_ABDIMMEN_RUNTER)
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)
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)
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{
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start_animation();
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}
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@ -229,7 +241,9 @@ void Treppe::task()
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void Treppe::berechne_dimmer()
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{
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ticks_pro_stufe = time_per_stair / INT_TIME; // [ms]
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differenz_pwm_pro_tick = (float)(active_brightness - idle_bright_internal) / (float)ticks_pro_stufe;
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differenz_pwm_pro_tick = (float)(active_pwm - idle_pwm_internal)
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/ (float)ticks_pro_stufe;
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}
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void Treppe::setup()
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@ -241,7 +255,7 @@ void Treppe::setup()
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pwmController.init(PCA9685_PhaseBalancer_None);
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//pwmController.init(PCA9685_PhaseBalancer_Linear);
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pwmController.setPWMFrequency(100);
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//pwmController.setAllChannelsPWM(idle_brightness);
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//pwmController.setAllChannelsPWM(idle_pwm);
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pinMode(A0, INPUT);
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pinMode(SENSOR_OBEN, INPUT);
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@ -253,27 +267,24 @@ void Treppe::setup()
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Serial.printf("Treppe: initial parameters: stufen=%d\n", stufen);
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}
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void Treppe::set_idle_prozent(int prozent) {
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uint16_t new_pwm = 0xFFF * prozent / 100;
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set_idle_pwm(new_pwm);
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}
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void Treppe::set_idle_pwm(uint16_t _idle_brightness)
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void Treppe::set_idle_pwm(uint16_t new_idle_pwm)
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{
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if(_idle_brightness > active_brightness) {
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idle_bright_internal = active_brightness;
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if(new_idle_pwm > active_pwm) {
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idle_pwm = active_pwm;
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} else {
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idle_bright_internal = _idle_brightness;
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idle_pwm = new_idle_pwm;
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}
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Serial.printf("Treppe: idle_bright_internal=%d\n", idle_bright_internal);
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Serial.printf("Treppe: idle_pwm=%d\n", idle_pwm);
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berechne_dimmer();
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pwmController.setAllChannelsPWM(idle_bright_internal);
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activate_idle_pwm(true);
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}
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void Treppe::activate_idle_pwm(bool active)
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{
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static uint8_t former_active = 0;
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@ -282,19 +293,19 @@ void Treppe::activate_idle_pwm(bool active)
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{
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if (active != former_active)
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{
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idle_bright_internal = idle_brightness * active;
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idle_pwm_internal = idle_pwm * active;
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// Dimming Function for all LEDS ?
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pwmController.setAllChannelsPWM(idle_bright_internal);
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pwmController.setAllChannelsPWM(idle_pwm_internal);
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former_active = active;
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}
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}
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}
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void Treppe::set_active_pwm(uint16_t _active_brightness)
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void Treppe::set_active_pwm(uint16_t _active_pwm)
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{
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active_brightness = _active_brightness;
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active_pwm = _active_pwm;
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berechne_dimmer();
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Serial.printf("Treppe: active_brightness=%d\n", active_brightness);
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Serial.printf("Treppe: active_pwm=%d\n", active_pwm);
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}
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void Treppe::set_time_per_stair(uint16_t _time_per_stair)
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{
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@ -17,10 +17,9 @@ class Treppe {
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private:
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const uint8_t stufen;
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uint16_t time_per_stair = 300; // dimmtime per stair [ms]
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uint16_t idle_brightness = 100;
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uint16_t idle_bright_internal = 0;
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uint16_t active_brightness = 700;
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uint16_t idle_pwm = 100;
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uint16_t idle_pwm_internal = 0;
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uint16_t active_pwm = 700;
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uint16_t ldr_schwelle = 7; // activation value for FSM [lx]
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@ -60,6 +59,7 @@ private:
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/* DIMM */
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bool dimm_stufe(uint8_t stufe);
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bool dimm_treppe();
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void anim_tick();
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void start_animation();
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void berechne_dimmer();
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@ -83,8 +83,8 @@ public:
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// Parameter section
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void set_idle_prozent(int prozent);
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void set_idle_pwm(uint16_t _idle_brightness);
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void set_idle_pwm(uint16_t _idle_pwm);
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void activate_idle_pwm(bool active);
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void set_active_pwm(uint16_t _active_brightness);
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void set_active_pwm(uint16_t _active_pwm);
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void set_time_per_stair(uint16_t _time_per_stair);
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};
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