✨ RGB_STARTUP_TEST
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@ -3251,16 +3251,19 @@
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* luminance values can be set from 0 to 255.
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* luminance values can be set from 0 to 255.
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* For NeoPixel LED an overall brightness parameter is also available.
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* For NeoPixel LED an overall brightness parameter is also available.
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*
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*
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* *** CAUTION ***
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* === CAUTION ===
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* LED Strips require a MOSFET Chip between PWM lines and LEDs,
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* LED Strips require a MOSFET Chip between PWM lines and LEDs,
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* as the Arduino cannot handle the current the LEDs will require.
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* as the Arduino cannot handle the current the LEDs will require.
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* Failure to follow this precaution can destroy your Arduino!
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* Failure to follow this precaution can destroy your Arduino!
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*
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* NOTE: A separate 5V power supply is required! The NeoPixel LED needs
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* NOTE: A separate 5V power supply is required! The NeoPixel LED needs
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* more current than the Arduino 5V linear regulator can produce.
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* more current than the Arduino 5V linear regulator can produce.
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* *** CAUTION ***
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*
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*
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* LED Type. Enable only one of the following two options.
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* Requires PWM frequency between 50 <> 100Hz (Check HAL or variant)
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* Use FAST_PWM_FAN, if possible, to reduce fan noise.
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*/
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*/
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// LED Type. Enable only one of the following two options:
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//#define RGB_LED
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//#define RGB_LED
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//#define RGBW_LED
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//#define RGBW_LED
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@ -3269,6 +3272,10 @@
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//#define RGB_LED_G_PIN 43
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//#define RGB_LED_G_PIN 43
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//#define RGB_LED_B_PIN 35
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//#define RGB_LED_B_PIN 35
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//#define RGB_LED_W_PIN -1
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//#define RGB_LED_W_PIN -1
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//#define RGB_STARTUP_TEST // For PWM pins, fade between all colors
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#if ENABLED(RGB_STARTUP_TEST)
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#define RGB_STARTUP_TEST_INNER_MS 10 // (ms) Reduce or increase fading speed
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#endif
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#endif
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#endif
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// Support for Adafruit NeoPixel LED driver
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// Support for Adafruit NeoPixel LED driver
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@ -69,6 +69,44 @@ void LEDLights::setup() {
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#if ENABLED(RGBW_LED)
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#if ENABLED(RGBW_LED)
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if (PWM_PIN(RGB_LED_W_PIN)) SET_PWM(RGB_LED_W_PIN); else SET_OUTPUT(RGB_LED_W_PIN);
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if (PWM_PIN(RGB_LED_W_PIN)) SET_PWM(RGB_LED_W_PIN); else SET_OUTPUT(RGB_LED_W_PIN);
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#endif
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#endif
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#if ENABLED(RGB_STARTUP_TEST)
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int8_t led_pin_count = 0;
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if (PWM_PIN(RGB_LED_R_PIN) && PWM_PIN(RGB_LED_G_PIN) && PWM_PIN(RGB_LED_B_PIN)) led_pin_count = 3;
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#if ENABLED(RGBW_LED)
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if (PWM_PIN(RGB_LED_W_PIN) && led_pin_count) led_pin_count++;
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#endif
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// Startup animation
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if (led_pin_count) {
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// blackout
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if (PWM_PIN(RGB_LED_R_PIN)) hal.set_pwm_duty(pin_t(RGB_LED_R_PIN), 0); else WRITE(RGB_LED_R_PIN, LOW);
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if (PWM_PIN(RGB_LED_G_PIN)) hal.set_pwm_duty(pin_t(RGB_LED_G_PIN), 0); else WRITE(RGB_LED_G_PIN, LOW);
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if (PWM_PIN(RGB_LED_B_PIN)) hal.set_pwm_duty(pin_t(RGB_LED_B_PIN), 0); else WRITE(RGB_LED_B_PIN, LOW);
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#if ENABLED(RGBW_LED)
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if (PWM_PIN(RGB_LED_W_PIN)) hal.set_pwm_duty(pin_t(RGB_LED_W_PIN), 0);
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else WRITE(RGB_LED_W_PIN, LOW);
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#endif
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delay(200);
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LOOP_L_N(i, led_pin_count) {
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LOOP_LE_N(b, 200) {
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const uint16_t led_pwm = b <= 100 ? b : 200 - b;
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if (i == 0 && PWM_PIN(RGB_LED_R_PIN)) hal.set_pwm_duty(pin_t(RGB_LED_R_PIN), led_pwm); else WRITE(RGB_LED_R_PIN, b < 100 ? HIGH : LOW);
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if (i == 1 && PWM_PIN(RGB_LED_G_PIN)) hal.set_pwm_duty(pin_t(RGB_LED_G_PIN), led_pwm); else WRITE(RGB_LED_G_PIN, b < 100 ? HIGH : LOW);
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if (i == 2 && PWM_PIN(RGB_LED_B_PIN)) hal.set_pwm_duty(pin_t(RGB_LED_B_PIN), led_pwm); else WRITE(RGB_LED_B_PIN, b < 100 ? HIGH : LOW);
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#if ENABLED(RGBW_LED)
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if (i == 3){
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if (PWM_PIN(RGB_LED_W_PIN)) hal.set_pwm_duty(pin_t(RGB_LED_W_PIN), led_pwm);
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else WRITE(RGB_LED_W_PIN, b < 100 ? HIGH : LOW);
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delay(RGB_STARTUP_TEST_INNER_MS);//More slowing for ending
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}
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#endif
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delay(RGB_STARTUP_TEST_INNER_MS);
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}
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}
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delay(500);
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}
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#endif // RGB_STARTUP_TEST
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#endif
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#endif
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TERN_(NEOPIXEL_LED, neo.init());
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TERN_(NEOPIXEL_LED, neo.init());
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TERN_(PCA9533, PCA9533_init());
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TERN_(PCA9533, PCA9533_init());
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