Restore LED light color after pid tuning (#12082)
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9f77df2590
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@ -48,7 +48,7 @@
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);
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#endif
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#if ENABLED(LED_CONTROL_MENU)
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#if ENABLED(LED_CONTROL_MENU) || ENABLED(PRINTER_EVENT_LEDS)
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LEDColor LEDLights::color;
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bool LEDLights::lights_on;
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#endif
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@ -72,7 +72,9 @@ void LEDLights::set_color(const LEDColor &incol
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#if ENABLED(NEOPIXEL_LED)
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const uint32_t neocolor = pixels.Color(incol.r, incol.g, incol.b, incol.w);
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const uint32_t neocolor = LEDColorWhite() == incol
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? pixels.Color(NEO_WHITE)
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: pixels.Color(incol.r, incol.g, incol.b, incol.w);
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static uint16_t nextLed = 0;
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pixels.setBrightness(incol.i);
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@ -117,22 +119,13 @@ void LEDLights::set_color(const LEDColor &incol
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pca9632_set_led_color(incol);
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#endif
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#if ENABLED(LED_CONTROL_MENU)
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#if ENABLED(LED_CONTROL_MENU) || ENABLED(PRINTER_EVENT_LEDS)
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// Don't update the color when OFF
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lights_on = !incol.is_off();
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if (lights_on) color = incol;
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#endif
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}
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void LEDLights::set_white() {
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#if ENABLED(RGB_LED) || ENABLED(RGBW_LED) || ENABLED(BLINKM) || ENABLED(PCA9632)
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set_color(LEDColorWhite());
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#endif
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#if ENABLED(NEOPIXEL_LED)
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set_neopixel_color(pixels.Color(NEO_WHITE));
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#endif
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}
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#if ENABLED(LED_CONTROL_MENU)
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void LEDLights::toggle() { if (lights_on) set_off(); else update(); }
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#endif
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@ -115,12 +115,12 @@ typedef struct LEDColor {
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* Color helpers and presets
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*/
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#if HAS_WHITE_LED
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#define LEDColorWhite() LEDColor(0, 0, 0, 255)
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#if ENABLED(NEOPIXEL_LED)
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#define MakeLEDColor(R,G,B,W,I) LEDColor(R, G, B, W, I)
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#else
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#define MakeLEDColor(R,G,B,W,I) LEDColor(R, G, B, W)
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#endif
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#define LEDColorWhite() LEDColor(0, 0, 0, 255)
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#else
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#define MakeLEDColor(R,G,B,W,I) LEDColor(R, G, B)
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#define LEDColorWhite() LEDColor(255, 255, 255)
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@ -164,9 +164,9 @@ public:
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);
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}
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static void set_white();
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FORCE_INLINE static void set_off() { set_color(LEDColorOff()); }
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FORCE_INLINE static void set_green() { set_color(LEDColorGreen()); }
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FORCE_INLINE static void set_white() { set_color(LEDColorWhite()); }
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#if ENABLED(LED_COLOR_PRESETS)
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static const LEDColor defaultLEDColor;
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@ -179,9 +179,15 @@ public:
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FORCE_INLINE static void set_violet() { set_color(LEDColorViolet()); }
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#endif
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#if ENABLED(LED_CONTROL_MENU)
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#if ENABLED(PRINTER_EVENT_LEDS)
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FORCE_INLINE static LEDColor get_color() { return lights_on ? color : LEDColorOff(); }
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#endif
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#if ENABLED(LED_CONTROL_MENU) || ENABLED(PRINTER_EVENT_LEDS)
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static LEDColor color; // last non-off color
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static bool lights_on; // the last set color was "on"
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#endif
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#if ENABLED(LED_CONTROL_MENU)
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static void toggle(); // swap "off" with color
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FORCE_INLINE static void update() { set_color(color); }
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#endif
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@ -38,18 +38,18 @@ private:
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public:
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#if HAS_TEMP_HOTEND
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FORCE_INLINE static void onHotendHeatingStart() { old_intensity = 0; }
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FORCE_INLINE static LEDColor onHotendHeatingStart() { old_intensity = 0; return leds.get_color(); }
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static void onHotendHeating(const float &start, const float ¤t, const float &target);
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#endif
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#if HAS_HEATED_BED
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FORCE_INLINE static void onBedHeatingStart() { old_intensity = 127; }
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FORCE_INLINE static LEDColor onBedHeatingStart() { old_intensity = 127; return leds.get_color(); }
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static void onBedHeating(const float &start, const float ¤t, const float &target);
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#endif
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#if HAS_TEMP_HOTEND || HAS_HEATED_BED
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FORCE_INLINE static void onHeated() { leds.set_white(); }
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FORCE_INLINE static void onHeatersOff() { leds.set_off(); }
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FORCE_INLINE static void onHeated() { leds.set_color(LEDColorWhite()); }
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FORCE_INLINE static void onPidTuningDone(LEDColor c) { leds.set_color(c); }
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#endif
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#if ENABLED(SDSUPPORT)
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@ -251,7 +251,7 @@ uint8_t Temperature::soft_pwm_amount[HOTENDS];
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#if HAS_PID_FOR_BOTH
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#define GHV(B,H) (hotend < 0 ? (B) : (H))
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#define SHV(S,B,H) do{ if (hotend < 0) S##_bed = B; else S [hotend] = H; }while(0)
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#define ONHEATINGSTART() do{ if (hotend < 0) printerEventLEDs.onBedHeatingStart(); else printerEventLEDs.onHotendHeatingStart(); }while(0)
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#define ONHEATINGSTART() (hotend < 0 ? printerEventLEDs.onBedHeatingStart() : printerEventLEDs.onHotendHeatingStart())
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#define ONHEATING(S,C,T) do{ if (hotend < 0) printerEventLEDs.onBedHeating(S,C,T); else printerEventLEDs.onHotendHeating(S,C,T); }while(0)
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#elif ENABLED(PIDTEMPBED)
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#define GHV(B,H) B
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@ -311,7 +311,7 @@ uint8_t Temperature::soft_pwm_amount[HOTENDS];
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wait_for_heatup = true; // Can be interrupted with M108
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#if ENABLED(PRINTER_EVENT_LEDS)
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const float start_temp = GHV(current_temperature_bed, current_temperature[hotend]);
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ONHEATINGSTART();
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LEDColor color = ONHEATINGSTART();
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#endif
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// PID Tuning loop
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@ -492,13 +492,17 @@ uint8_t Temperature::soft_pwm_amount[HOTENDS];
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_SET_BED_PID();
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#endif
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}
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#if ENABLED(PRINTER_EVENT_LEDS)
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printerEventLEDs.onPidTuningDone(color);
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#endif
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return;
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}
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lcd_update();
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}
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disable_all_heaters();
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#if ENABLED(PRINTER_EVENT_LEDS)
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printerEventLEDs.onHeatersOff();
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printerEventLEDs.onPidTuningDone(color);
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#endif
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}
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@ -2525,7 +2529,7 @@ void Temperature::isr() {
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if (wait_for_heatup) {
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lcd_reset_status();
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#if ENABLED(PRINTER_EVENT_LEDS)
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printerEventLEDs.onHeated();
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printerEventLEDs.onHeatingDone();
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#endif
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}
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