commit
65154e48cb
@ -7,7 +7,7 @@ data_dir = ./wled00/data
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;lib_extra_dirs = ./wled00/src
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lib_dir = ./wled00/src
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; Please uncomment one of the 5 lines below to select your board
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; env_default = nodemcuv2
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env_default = nodemcuv2
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; env_default = esp01
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; env_default = esp01_1m
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; env_default = esp07
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@ -39,7 +39,7 @@ lib_deps_external =
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AsyncTCP@1.0.3
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Esp Async WebServer@1.2.0
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#ArduinoJson@5.13.5
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IRremoteESP8266@2.5.5
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IRremoteESP8266@2.7.2
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#Time@1.5
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#Timezone@1.2.1
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#For use SSD1306 0.91" OLED display uncomment following
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@ -105,7 +105,6 @@ platform = espressif32@1.11.1
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build_flags =
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-D PIO_FRAMEWORK_ARDUINO_LWIP2_HIGHER_BANDWIDTH
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-D ARDUINO_ARCH_ESP32
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-D WLED_DISABLE_INFRARED
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# see: http://docs.platformio.org/en/latest/platforms/espressif8266.html
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[env:nodemcuv2]
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@ -184,7 +183,6 @@ build_flags =
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lib_deps =
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${common.lib_deps_external}
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lib_ignore =
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IRremoteESP8266
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ESPAsyncUDP
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[env:esp8285_4CH_MagicHome]
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@ -197,7 +195,7 @@ build_flags =
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${common.build_flags}
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${common:esp8266_1M.build_flags}
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-D WLED_DISABLE_HUESYNC
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-D WLED_ENABLE_ANALOG_LEDS
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-D WLED_USE_ANALOG_LEDS
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lib_deps =
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${common.lib_deps_external}
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@ -211,7 +209,7 @@ build_flags =
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${common.build_flags}
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${common:esp8266_1M.build_flags}
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-D WLED_DISABLE_HUESYNC
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-D WLED_ENABLE_ANALOG_LEDS
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-D WLED_USE_ANALOG_LEDS
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-D WLED_USE_H801
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lib_deps =
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${common.lib_deps_external}
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@ -226,7 +224,7 @@ build_flags =
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${common.build_flags}
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${common:esp8266_1M.build_flags}
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-D WLED_DISABLE_HUESYNC
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-D WLED_ENABLE_ANALOG_LEDS
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-D WLED_USE_ANALOG_LEDS
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-D WLED_USE_H801
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-D WLED_ENABLE_5CH_LEDS
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lib_deps =
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@ -130,41 +130,72 @@ public:
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_pGrbw = new NeoPixelBrightnessBus<PIXELFEATURE4,PIXELMETHOD>(countPixels, LEDPIN);
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#endif
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_pGrbw->Begin();
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#ifdef WLED_USE_ANALOG_LEDS
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pinMode(WPIN, OUTPUT);
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#ifdef WLED_USE_5CH_LEDS
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pinMode(W2PIN, OUTPUT);
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#endif
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#endif
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break;
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}
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#ifdef WLED_USE_ANALOG_LEDS
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//init PWM pins - PINs 5,12,13,15 are used with Magic Home LED Controller
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pinMode(RPIN, OUTPUT);
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pinMode(GPIN, OUTPUT);
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pinMode(BPIN, OUTPUT);
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analogWriteRange(255); //same range as one RGB channel
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analogWriteFreq(880); //PWM frequency proven as good for LEDs
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#ifdef ARDUINO_ARCH_ESP32
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ledcSetup(0, 5000, 8);
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ledcAttachPin(RPIN, 0);
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ledcSetup(1, 5000, 8);
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ledcAttachPin(GPIN, 1);
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ledcSetup(2, 5000, 8);
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ledcAttachPin(BPIN, 2);
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if(_type == NeoPixelType_Grbw)
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{
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ledcSetup(3, 5000, 8);
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ledcAttachPin(WPIN, 3);
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#ifdef WLED_USE_5CH_LEDS
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ledcSetup(4, 5000, 8);
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ledcAttachPin(W2PIN, 4);
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#endif
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}
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#else // ESP8266
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//init PWM pins - PINs 5,12,13,15 are used with Magic Home LED Controller
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pinMode(RPIN, OUTPUT);
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pinMode(GPIN, OUTPUT);
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pinMode(BPIN, OUTPUT);
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if(_type == NeoPixelType_Grbw)
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{
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pinMode(WPIN, OUTPUT);
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#ifdef WLED_USE_5CH_LEDS
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pinMode(W2PIN, OUTPUT);
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#endif
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}
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analogWriteRange(255); //same range as one RGB channel
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analogWriteFreq(880); //PWM frequency proven as good for LEDs
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#endif
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#endif
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}
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#ifdef WLED_USE_ANALOG_LEDS
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void SetRgbwPwm(uint8_t r, uint8_t g, uint8_t b, uint8_t w, uint8_t w2=0)
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{
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analogWrite(RPIN, r);
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analogWrite(GPIN, g);
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analogWrite(BPIN, b);
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switch (_type) {
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case NeoPixelType_Grb: break;
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#ifdef WLED_USE_5CH_LEDS
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case NeoPixelType_Grbw: analogWrite(WPIN, w); analogWrite(W2PIN, w2); break;
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#else
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case NeoPixelType_Grbw: analogWrite(WPIN, w); break;
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#endif
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}
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#ifdef ARDUINO_ARCH_ESP32
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ledcWrite(0, r); //RPIN
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ledcWrite(1, g); //GPIN
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ledcWrite(2, b); //BPIN
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switch (_type) {
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case NeoPixelType_Grb: break;
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#ifdef WLED_USE_5CH_LEDS
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case NeoPixelType_Grbw: ledcWrite(3, w); ledcWrite(4, w2); break;
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#else
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case NeoPixelType_Grbw: ledcWrite(3, w); break;
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#endif
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}
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#else
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analogWrite(RPIN, r);
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analogWrite(GPIN, g);
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analogWrite(BPIN, b);
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switch (_type) {
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case NeoPixelType_Grb: break;
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#ifdef WLED_USE_5CH_LEDS
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case NeoPixelType_Grbw: analogWrite(WPIN, w); analogWrite(W2PIN, w2); break;
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#else
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case NeoPixelType_Grbw: analogWrite(WPIN, w); break;
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#endif
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}
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#endif
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}
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#endif
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@ -187,7 +187,7 @@ const char PAGE_settings_sync[] PROGMEM = R"=====(<!DOCTYPE html>
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<h2>Sync setup</h2>
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<h3>Button setup</h3>
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On/Off button enabled: <input type="checkbox" name="BT"><br>
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Infrared receiver enabled: <input type="checkbox" name="IR"><br>
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Infrared receiver type (0 = disabled): <input name="IR" type="number" min="0" max="4" required><br>
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<a href="https://github.com/Aircoookie/WLED/wiki/Infrared-Control" target="_blank">IR info</a>
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<h3>WLED Broadcast</h3>
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UDP Port: <input name="UP" type="number" min="1" max="65535" required><br>
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@ -30,52 +30,145 @@
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#define IR24_FADE 0xF7C837
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#define IR24_SMOOTH 0xF7E817
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/* 44-key defs, to be done later
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#define IR44_BPlus 0xFF3AC5 //
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#define IR44_BMinus 0xFFBA45 //
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#define IR44_ON 0xFF827D //
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#define IR44_OFF 0xFF02FD //
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#define IR44_R 0xFF1AE5 //
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#define IR44_G 0xFF9A65 //
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#define IR44_B 0xFFA25D //
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#define IR44_W 0xFF22DD //
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#define IR44_B1 0xFF2AD5 //
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#define IR44_B2 0xFFAA55 //
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#define IR44_B3 0xFF926D //
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#define IR44_B4 0xFF12ED //
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#define IR44_B5 0xFF0AF5 //
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#define IR44_B6 0xFF8A75 //
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#define IR44_B7 0xFFB24D //
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#define IR44_B8 0xFF32CD //
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#define IR44_B9 0xFF38C7 //
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#define IR44_B10 0xFFB847 //
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#define IR44_B11 0xFF7887 //
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#define IR44_B12 0xFFF807 //
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#define IR44_B13 0xFF18E7 //
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#define IR44_B14 0xFF9867 //
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#define IR44_B15 0xFF58A7 //
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#define IR44_B16 0xFFD827 //
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#define IR44_UPR 0xFF28D7 //
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#define IR44_UPG 0xFFA857 //
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#define IR44_UPB 0xFF6897 //
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#define IR44_QUICK 0xFFE817 //
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#define IR44_DOWNR 0xFF08F7 //
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#define IR44_DOWNG 0xFF8877 //
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#define IR44_DOWNB 0xFF48B7 //
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#define IR44_SLOW 0xFFC837 //
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#define IR44_DIY1 0xFF30CF //
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#define IR44_DIY2 0xFFB04F //
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#define IR44_DIY3 0xFF708F //
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#define IR44_AUTO 0xFFF00F //
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#define IR44_DIY4 0xFF10EF //
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#define IR44_DIY5 0xFF906F //
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#define IR44_DIY6 0xFF50AF //
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#define IR44_FLASH 0xFFD02F //
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#define IR44_JUMP3 0xFF20DF //
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#define IR44_JUMP7 0xFFA05F //
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#define IR44_FADE3 0xFF609F //
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#define IR44_FADE7 0xFFE01F //
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*/
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// 24-key defs for white remote control with CW / WW / CT+ and CT- keys (from ALDI LED pillar lamp)
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#define IR24_CT_BRIGHTER 0xF700FF // BRI +
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#define IR24_CT_DARKER 0xF7807F // BRI -
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#define IR24_CT_OFF 0xF740BF // OFF
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#define IR24_CT_ON 0xF7C03F // ON
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#define IR24_CT_RED 0xF720DF // RED
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#define IR24_CT_REDDISH 0xF710EF // REDDISH
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#define IR24_CT_ORANGE 0xF730CF // ORANGE
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#define IR24_CT_YELLOWISH 0xF708F7 // YELLOWISH
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#define IR24_CT_YELLOW 0xF728D7 // YELLOW
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#define IR24_CT_GREEN 0xF7A05F // GREEN
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#define IR24_CT_GREENISH 0xF7906F // GREENISH
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#define IR24_CT_TURQUOISE 0xF7B04F // TURQUOISE
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#define IR24_CT_CYAN 0xF78877 // CYAN
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#define IR24_CT_AQUA 0xF7A857 // AQUA
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#define IR24_CT_BLUE 0xF7609F // BLUE
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#define IR24_CT_DEEPBLUE 0xF750AF // DEEPBLUE
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#define IR24_CT_PURPLE 0xF7708F // PURPLE
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#define IR24_CT_MAGENTA 0xF748B7 // MAGENTA
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#define IR24_CT_PINK 0xF76897 // PINK
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#define IR24_CT_COLDWHITE 0xF7E01F // CW
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#define IR24_CT_WARMWHITE 0xF7D02F // WW
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#define IR24_CT_CTPLUS 0xF7F00F // CT+
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#define IR24_CT_CTMINUS 0xF7C837 // CT-
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#define IR24_CT_MEMORY 0xF7E817 // MEMORY
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// 24-key defs for old remote control
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#define IR24_OLD_BRIGHTER 0xFF906F // Brightness Up
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#define IR24_OLD_DARKER 0xFFB847 // Brightness Down
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#define IR24_OLD_OFF 0xFFF807 // Power OFF
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#define IR24_OLD_ON 0xFFB04F // Power On
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#define IR24_OLD_RED 0xFF9867 // RED
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#define IR24_OLD_REDDISH 0xFFE817 // Light RED
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#define IR24_OLD_ORANGE 0xFF02FD // Orange
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#define IR24_OLD_YELLOWISH 0xFF50AF // Light Orange
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#define IR24_OLD_YELLOW 0xFF38C7 // YELLOW
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#define IR24_OLD_GREEN 0xFFD827 // GREEN
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#define IR24_OLD_GREENISH 0xFF48B7 // Light GREEN
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#define IR24_OLD_TURQUOISE 0xFF32CD // TURQUOISE
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#define IR24_OLD_CYAN 0xFF7887 // CYAN
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#define IR24_OLD_AQUA 0xFF28D7 // AQUA
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#define IR24_OLD_BLUE 0xFF8877 // BLUE
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#define IR24_OLD_DEEPBLUE 0xFF6897 // Dark BLUE
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#define IR24_OLD_PURPLE 0xFF20DF // PURPLE
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#define IR24_OLD_MAGENTA 0xFF708F // MAGENTA
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#define IR24_OLD_PINK 0xFFF00F // PINK
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#define IR24_OLD_WHITE 0xFFA857 // WHITE
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#define IR24_OLD_FLASH 0xFFB24D // FLASH Mode
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#define IR24_OLD_STROBE 0xFF00FF // STROBE Mode
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#define IR24_OLD_FADE 0xFF58A7 // FADE Mode
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#define IR24_OLD_SMOOTH 0xFF30CF // SMOOTH Mode
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// 40-key defs for blue remote control
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#define IR40_BPLUS 0xFF3AC5 //
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#define IR40_BMINUS 0xFFBA45 //
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#define IR40_OFF 0xFF827D //
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#define IR40_ON 0xFF02FD //
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#define IR40_RED 0xFF1AE5 //
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#define IR40_GREEN 0xFF9A65 //
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#define IR40_BLUE 0xFFA25D //
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#define IR40_WHITE 0xFF22DD // natural white
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#define IR40_REDDISH 0xFF2AD5 //
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#define IR40_GREENISH 0xFFAA55 //
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#define IR40_DEEPBLUE 0xFF926D //
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#define IR40_WARMWHITE2 0xFF12ED // warmest white
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#define IR40_ORANGE 0xFF0AF5 //
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#define IR40_TURQUOISE 0xFF8A75 //
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#define IR40_PURPLE 0xFFB24D //
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#define IR40_WARMWHITE 0xFF32CD // warm white
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#define IR40_YELLOWISH 0xFF38C7 //
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#define IR40_CYAN 0xFFB847 //
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#define IR40_MAGENTA 0xFF7887 //
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#define IR40_COLDWHITE 0xFFF807 // cold white
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#define IR40_YELLOW 0xFF18E7 //
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#define IR40_AQUA 0xFF9867 //
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#define IR40_PINK 0xFF58A7 //
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#define IR40_COLDWHITE2 0xFFD827 // coldest white
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#define IR40_WPLUS 0xFF28D7 // white chanel bright plus
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#define IR40_WMINUS 0xFFA857 // white chanel bright minus
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#define IR40_WOFF 0xFF6897 // white chanel on
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#define IR40_WON 0xFFE817 // white chanel off
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#define IR40_W25 0xFF08F7 // white chanel 25%
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#define IR40_W50 0xFF8877 // white chanel 50%
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#define IR40_W75 0xFF48B7 // white chanel 75%
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#define IR40_W100 0xFFC837 // white chanel 100%
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#define IR40_JUMP3 0xFF30CF // JUMP3
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#define IR40_FADE3 0xFFB04F // FADE3
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#define IR40_JUMP7 0xFF708F // JUMP7
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#define IR40_QUICK 0xFFF00F // QUICK
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#define IR40_FADE7 0xFF10EF // FADE7
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#define IR40_FLASH 0xFF906F // FLASH
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#define IR40_AUTO 0xFF50AF // AUTO
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#define IR40_SLOW 0xFFD02F // SLOW
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// 44-key defs, to be done later
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#define IR44_BPLUS 0xFF3AC5 //
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#define IR44_BMINUS 0xFFBA45 //
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#define IR44_OFF 0xFF827D //
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#define IR44_ON 0xFF02FD //
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#define IR44_RED 0xFF1AE5 //
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#define IR44_GREEN 0xFF9A65 //
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#define IR44_BLUE 0xFFA25D //
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#define IR44_WHITE 0xFF22DD // natural white
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#define IR44_REDDISH 0xFF2AD5 //
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#define IR44_GREENISH 0xFFAA55 //
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#define IR44_DEEPBLUE 0xFF926D //
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#define IR44_WARMWHITE2 0xFF12ED // warmest white
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#define IR44_ORANGE 0xFF0AF5 //
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#define IR44_TURQUOISE 0xFF8A75 //
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#define IR44_PURPLE 0xFFB24D //
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#define IR44_WARMWHITE 0xFF32CD // warm white
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#define IR44_YELLOWISH 0xFF38C7 //
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#define IR44_CYAN 0xFFB847 //
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#define IR44_MAGENTA 0xFF7887 //
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#define IR44_COLDWHITE 0xFFF807 // cold white
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#define IR44_YELLOW 0xFF18E7 //
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#define IR44_AQUA 0xFF9867 //
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#define IR44_PINK 0xFF58A7 //
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#define IR44_COLDWHITE2 0xFFD827 // coldest white
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#define IR44_REDPLUS 0xFF28D7 //
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#define IR44_GREENPLUS 0xFFA857 //
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#define IR44_BLUEPLUS 0xFF6897 //
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#define IR44_QUICK 0xFFE817 //
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#define IR44_REDMINUS 0xFF08F7 //
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#define IR44_GREENMINUS 0xFF8877 //
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#define IR44_BLUEMINUS 0xFF48B7 //
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#define IR44_SLOW 0xFFC837 //
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#define IR44_DIY1 0xFF30CF //
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#define IR44_DIY2 0xFFB04F //
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#define IR44_DIY3 0xFF708F //
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#define IR44_AUTO 0xFFF00F //
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#define IR44_DIY4 0xFF10EF //
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#define IR44_DIY5 0xFF906F //
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#define IR44_DIY6 0xFF50AF //
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#define IR44_FLASH 0xFFD02F //
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#define IR44_JUMP3 0xFF20DF //
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#define IR44_JUMP7 0xFFA05F //
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#define IR44_FADE3 0xFF609F //
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#define IR44_FADE7 0xFFE01F //
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#define COLOR_RED 0xFF0000
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#define COLOR_REDDISH 0xFF7800
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@ -93,3 +186,13 @@
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#define COLOR_MAGENTA 0xFF00DC
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#define COLOR_PINK 0xFF00A0
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#define COLOR_WHITE 0xFFFFDC
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#define COLOR_WARMWHITE2 0xFFAA69
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#define COLOR_WARMWHITE 0xFFBF8E
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#define COLOR_NEUTRALWHITE 0xFFD4B4
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#define COLOR_COLDWHITE 0xFFE9D9
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#define COLOR_COLDWHITE2 0xFFFFFF
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#define COLOR2_WARMWHITE2 0xFFFF9900
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#define COLOR2_WARMWHITE 0xFF825A00
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#define COLOR2_NEUTRALWHITE 0xFF000000
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#define COLOR2_COLDWHITE 0xFF7F7F7F
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#define COLOR2_COLDWHITE2 0xFFFFFFFF
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|
@ -83,19 +83,11 @@
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#endif
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#endif
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#ifdef ARDUINO_ARCH_ESP32
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#undef WLED_USE_ANALOG_LEDS // Solid RGBW not implemented for ESP32 yet
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/*#ifndef WLED_DISABLE_INFRARED
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#include <IRremote.h>
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#endif*/ //there are issues with ESP32 infrared, so it is disabled for now
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#else
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#ifndef WLED_DISABLE_INFRARED
|
||||
#include <IRremoteESP8266.h>
|
||||
#include <IRrecv.h>
|
||||
#include <IRutils.h>
|
||||
#endif
|
||||
#endif
|
||||
|
||||
|
||||
//version code in format yymmddb (b = daily build)
|
||||
#define VERSION 2001071
|
||||
@ -144,6 +136,7 @@ byte briS = 128; //default brightness
|
||||
byte nightlightTargetBri = 0; //brightness after nightlight is over
|
||||
byte nightlightDelayMins = 60;
|
||||
bool nightlightFade = true; //if enabled, light will gradually dim towards the target bri. Otherwise, it will instantly set after delay over
|
||||
bool nightlightColorFade = false; //if enabled, light will gradually fade color from primary to secondary color.
|
||||
bool fadeTransition = true; //enable crossfading color transition
|
||||
bool enableSecTransition = true; //also enable transition for secondary color
|
||||
uint16_t transitionDelay = 750; //default crossfade duration in ms
|
||||
@ -160,7 +153,7 @@ bool syncToggleReceive = false; //UIs which only have a single but
|
||||
|
||||
//Sync CONFIG
|
||||
bool buttonEnabled = true;
|
||||
bool irEnabled = false; //Infrared receiver
|
||||
byte irEnabled = 0; //Infrared receiver
|
||||
|
||||
uint16_t udpPort = 21324; //WLED notifier default port
|
||||
uint16_t udpRgbPort = 19446; //Hyperion port
|
||||
@ -279,6 +272,7 @@ uint32_t nightlightDelayMs = 10;
|
||||
uint8_t nightlightDelayMinsDefault = nightlightDelayMins;
|
||||
unsigned long nightlightStartTime;
|
||||
byte briNlT = 0; //current nightlight brightness
|
||||
byte colNlT[]{0, 0, 0, 0}; //current nightlight color
|
||||
|
||||
//brightness
|
||||
unsigned long lastOnTime = 0;
|
||||
@ -288,6 +282,7 @@ byte briOld = 0;
|
||||
byte briT = 0;
|
||||
byte briIT = 0;
|
||||
byte briLast = 128; //brightness before turned off. Used for toggle function
|
||||
byte whiteLast = 128; //white channel before turned off. Used for toggle function
|
||||
|
||||
//button
|
||||
bool buttonPressedBefore = false;
|
||||
@ -507,6 +502,7 @@ void setup() {
|
||||
|
||||
//main program loop
|
||||
void loop() {
|
||||
handleIR(); //2nd call to function needed for ESP32 to return valid results -- should be good for ESP8266, too
|
||||
handleConnection();
|
||||
handleSerial();
|
||||
handleNotifications();
|
||||
|
@ -249,7 +249,7 @@ void getSettingsJS(byte subPage, char* dest)
|
||||
if (subPage == 4)
|
||||
{
|
||||
sappend('c',"BT",buttonEnabled);
|
||||
sappend('c',"IR",irEnabled);
|
||||
sappend('v',"IR",irEnabled);
|
||||
sappend('v',"UP",udpPort);
|
||||
sappend('c',"RB",receiveNotificationBrightness);
|
||||
sappend('c',"RC",receiveNotificationColor);
|
||||
|
@ -120,7 +120,7 @@ void handleSettingsSet(AsyncWebServerRequest *request, byte subPage)
|
||||
if (subPage == 4)
|
||||
{
|
||||
buttonEnabled = request->hasArg("BT");
|
||||
irEnabled = request->hasArg("IR");
|
||||
irEnabled = request->arg("IR").toInt();
|
||||
int t = request->arg("UP").toInt();
|
||||
if (t > 0) udpPort = t;
|
||||
receiveNotificationBrightness = request->hasArg("RB");
|
||||
@ -511,6 +511,7 @@ bool handleSet(AsyncWebServerRequest *request, const String& req)
|
||||
if (pos > 0)
|
||||
{
|
||||
nightlightFade = (req.charAt(pos+3) != '0');
|
||||
nightlightColorFade = (req.charAt(pos+3) == '2'); //NighLightColorFade can only be enabled via API or Macro with "NF=2"
|
||||
nightlightActiveOld = false; //re-init
|
||||
}
|
||||
|
||||
|
@ -217,11 +217,16 @@ void handleNightlight()
|
||||
nightlightDelayMs = (int)(nightlightDelayMins*60000);
|
||||
nightlightActiveOld = true;
|
||||
briNlT = bri;
|
||||
for (byte i=0; i<4; i++) colNlT[i] = col[i]; // remember starting color
|
||||
}
|
||||
float nper = (millis() - nightlightStartTime)/((float)nightlightDelayMs);
|
||||
if (nightlightFade)
|
||||
{
|
||||
bri = briNlT + ((nightlightTargetBri - briNlT)*nper);
|
||||
if (nightlightColorFade) // color fading only is enabled with "NF=2"
|
||||
{
|
||||
for (byte i=0; i<4; i++) col[i] = colNlT[i]+ ((colSec[i] - colNlT[i])*nper); // fading from actual color to secondary color
|
||||
}
|
||||
colorUpdated(5);
|
||||
}
|
||||
if (nper >= 1)
|
||||
|
@ -17,6 +17,29 @@ void colorFromUint32(uint32_t in, bool secondary)
|
||||
}
|
||||
}
|
||||
|
||||
//load a color without affecting the white channel
|
||||
void colorFromUint24(uint32_t in, bool secondary = false)
|
||||
{
|
||||
if (secondary) {
|
||||
colSec[0] = in >> 16 & 0xFF;
|
||||
colSec[1] = in >> 8 & 0xFF;
|
||||
colSec[2] = in & 0xFF;
|
||||
} else {
|
||||
col[0] = in >> 16 & 0xFF;
|
||||
col[1] = in >> 8 & 0xFF;
|
||||
col[2] = in & 0xFF;
|
||||
}
|
||||
}
|
||||
|
||||
//relatively change white brightness, minumum A=5
|
||||
void relativeChangeWhite(int8_t amount, byte lowerBoundary =0)
|
||||
{
|
||||
int16_t new_val = (int16_t) col[3] + amount;
|
||||
if (new_val > 0xFF) new_val = 0xFF;
|
||||
else if (new_val < lowerBoundary) new_val = lowerBoundary;
|
||||
col[3] = new_val;
|
||||
}
|
||||
|
||||
void colorHStoRGB(uint16_t hue, byte sat, byte* rgb) //hue, sat to rgb
|
||||
{
|
||||
float h = ((float)hue)/65535.0;
|
||||
|
@ -1,8 +1,8 @@
|
||||
/*
|
||||
* Infrared sensor support for generic 24 key RGB remote
|
||||
* Infrared sensor support for generic 24/40/44 key RGB remotes
|
||||
*/
|
||||
|
||||
#if defined(WLED_DISABLE_INFRARED) || defined(ARDUINO_ARCH_ESP32)
|
||||
#if defined(WLED_DISABLE_INFRARED)
|
||||
void handleIR(){}
|
||||
#else
|
||||
|
||||
@ -48,15 +48,23 @@ void decodeIR(uint32_t code)
|
||||
if (code == 0xFFFFFFFF) //repeated code, continue brightness up/down
|
||||
{
|
||||
irTimesRepeated++;
|
||||
if (lastValidCode == IR24_BRIGHTER)
|
||||
if (lastValidCode == IR24_BRIGHTER || lastValidCode == IR40_BPLUS )
|
||||
{
|
||||
relativeChange(&bri, 10); colorUpdated(2);
|
||||
}
|
||||
else if (lastValidCode == IR24_DARKER)
|
||||
else if (lastValidCode == IR24_DARKER || lastValidCode == IR40_BMINUS )
|
||||
{
|
||||
relativeChange(&bri, -10, 5); colorUpdated(2);
|
||||
}
|
||||
else if (lastValidCode == IR24_ON && irTimesRepeated > 7)
|
||||
if (lastValidCode == IR40_WPLUS)
|
||||
{
|
||||
relativeChangeWhite(10); colorUpdated(2);
|
||||
}
|
||||
else if (lastValidCode == IR40_WMINUS)
|
||||
{
|
||||
relativeChangeWhite(-10, 5); colorUpdated(2);
|
||||
}
|
||||
else if ((lastValidCode == IR24_ON || lastValidCode == IR40_ON) && irTimesRepeated > 7 )
|
||||
{
|
||||
nightlightActive = true;
|
||||
nightlightStartTime = millis();
|
||||
@ -68,8 +76,16 @@ void decodeIR(uint32_t code)
|
||||
|
||||
if (decodeIRCustom(code)) return;
|
||||
if (code > 0xFFFFFF) return; //invalid code
|
||||
else if (code > 0xFF0000) decodeIR44(code); //is in 44-key remote range
|
||||
else if (code > 0xF70000 && code < 0xF80000) decodeIR24(code); //is in 24-key remote range
|
||||
else if (code > 0xFF0000) {
|
||||
switch (irEnabled) {
|
||||
case 1: decodeIR24OLD(code); break; // white 24-key remote (old) - it sends 0xFF0000 values
|
||||
case 2: decodeIR24CT(code); break; // white 24-key remote with CW, WW, CT+ and CT- keys
|
||||
case 3: decodeIR40(code); break; // blue 40-key remote with 25%, 50%, 75% and 100% keys
|
||||
case 4: decodeIR44(code); break; // white 44-key remote with color-up/down keys and DIY1 to 6 keys
|
||||
default: return;
|
||||
}
|
||||
}
|
||||
//code <= 0xF70000 also invalid
|
||||
}
|
||||
|
||||
@ -107,16 +123,202 @@ void decodeIR24(uint32_t code)
|
||||
colorUpdated(2); //for notifier, IR is considered a button input
|
||||
}
|
||||
|
||||
void decodeIR24OLD(uint32_t code)
|
||||
{
|
||||
switch (code) {
|
||||
case IR24_OLD_BRIGHTER : relativeChange(&bri, 10); break;
|
||||
case IR24_OLD_DARKER : relativeChange(&bri, -10, 5); break;
|
||||
case IR24_OLD_OFF : briLast = bri; bri = 0; break;
|
||||
case IR24_OLD_ON : bri = briLast; break;
|
||||
case IR24_OLD_RED : colorFromUint32(COLOR_RED); break;
|
||||
case IR24_OLD_REDDISH : colorFromUint32(COLOR_REDDISH); break;
|
||||
case IR24_OLD_ORANGE : colorFromUint32(COLOR_ORANGE); break;
|
||||
case IR24_OLD_YELLOWISH : colorFromUint32(COLOR_YELLOWISH); break;
|
||||
case IR24_OLD_YELLOW : colorFromUint32(COLOR_YELLOW); break;
|
||||
case IR24_OLD_GREEN : colorFromUint32(COLOR_GREEN); break;
|
||||
case IR24_OLD_GREENISH : colorFromUint32(COLOR_GREENISH); break;
|
||||
case IR24_OLD_TURQUOISE : colorFromUint32(COLOR_TURQUOISE); break;
|
||||
case IR24_OLD_CYAN : colorFromUint32(COLOR_CYAN); break;
|
||||
case IR24_OLD_AQUA : colorFromUint32(COLOR_AQUA); break;
|
||||
case IR24_OLD_BLUE : colorFromUint32(COLOR_BLUE); break;
|
||||
case IR24_OLD_DEEPBLUE : colorFromUint32(COLOR_DEEPBLUE); break;
|
||||
case IR24_OLD_PURPLE : colorFromUint32(COLOR_PURPLE); break;
|
||||
case IR24_OLD_MAGENTA : colorFromUint32(COLOR_MAGENTA); break;
|
||||
case IR24_OLD_PINK : colorFromUint32(COLOR_PINK); break;
|
||||
case IR24_OLD_WHITE : colorFromUint32(COLOR_WHITE); effectCurrent = 0; break;
|
||||
case IR24_OLD_FLASH : if (!applyPreset(1)) effectCurrent = FX_MODE_COLORTWINKLE; effectPalette = 0; break;
|
||||
case IR24_OLD_STROBE : if (!applyPreset(2)) effectCurrent = FX_MODE_RAINBOW_CYCLE; effectPalette = 0; break;
|
||||
case IR24_OLD_FADE : if (!applyPreset(3)) effectCurrent = FX_MODE_BREATH; effectPalette = 0; break;
|
||||
case IR24_OLD_SMOOTH : if (!applyPreset(4)) effectCurrent = FX_MODE_RAINBOW; effectPalette = 0; break;
|
||||
default: return;
|
||||
}
|
||||
lastValidCode = code;
|
||||
colorUpdated(2); //for notifier, IR is considered a button input
|
||||
}
|
||||
|
||||
|
||||
void decodeIR24CT(uint32_t code)
|
||||
{
|
||||
switch (code) {
|
||||
case IR24_CT_BRIGHTER : relativeChange(&bri, 10); break;
|
||||
case IR24_CT_DARKER : relativeChange(&bri, -10, 5); break;
|
||||
case IR24_CT_OFF : briLast = bri; bri = 0; break;
|
||||
case IR24_CT_ON : bri = briLast; break;
|
||||
case IR24_CT_RED : colorFromUint32(COLOR_RED); break;
|
||||
case IR24_CT_REDDISH : colorFromUint32(COLOR_REDDISH); break;
|
||||
case IR24_CT_ORANGE : colorFromUint32(COLOR_ORANGE); break;
|
||||
case IR24_CT_YELLOWISH : colorFromUint32(COLOR_YELLOWISH); break;
|
||||
case IR24_CT_YELLOW : colorFromUint32(COLOR_YELLOW); break;
|
||||
case IR24_CT_GREEN : colorFromUint32(COLOR_GREEN); break;
|
||||
case IR24_CT_GREENISH : colorFromUint32(COLOR_GREENISH); break;
|
||||
case IR24_CT_TURQUOISE : colorFromUint32(COLOR_TURQUOISE); break;
|
||||
case IR24_CT_CYAN : colorFromUint32(COLOR_CYAN); break;
|
||||
case IR24_CT_AQUA : colorFromUint32(COLOR_AQUA); break;
|
||||
case IR24_CT_BLUE : colorFromUint32(COLOR_BLUE); break;
|
||||
case IR24_CT_DEEPBLUE : colorFromUint32(COLOR_DEEPBLUE); break;
|
||||
case IR24_CT_PURPLE : colorFromUint32(COLOR_PURPLE); break;
|
||||
case IR24_CT_MAGENTA : colorFromUint32(COLOR_MAGENTA); break;
|
||||
case IR24_CT_PINK : colorFromUint32(COLOR_PINK); break;
|
||||
case IR24_CT_COLDWHITE : colorFromUint32(COLOR_COLDWHITE); effectCurrent = 0; break;
|
||||
case IR24_CT_WARMWHITE : colorFromUint32(COLOR_WARMWHITE); effectCurrent = 0; break;
|
||||
case IR24_CT_CTPLUS : colorFromUint32(COLOR_COLDWHITE2); effectCurrent = 0; break;
|
||||
case IR24_CT_CTMINUS : colorFromUint32(COLOR_WARMWHITE2); effectCurrent = 0; break;
|
||||
case IR24_CT_MEMORY : {
|
||||
if (col[3] > 0) col[3] = 0;
|
||||
else colorFromUint32(COLOR_NEUTRALWHITE); effectCurrent = 0; } break;
|
||||
default: return;
|
||||
}
|
||||
lastValidCode = code;
|
||||
colorUpdated(2); //for notifier, IR is considered a button input
|
||||
}
|
||||
|
||||
|
||||
void decodeIR40(uint32_t code)
|
||||
{
|
||||
switch (code) {
|
||||
case IR40_BPLUS : relativeChange(&bri, 10); break;
|
||||
case IR40_BMINUS : relativeChange(&bri, -10, 5); break;
|
||||
case IR40_OFF : briLast = bri; bri = 0; break;
|
||||
case IR40_ON : bri = briLast; break;
|
||||
case IR40_RED : colorFromUint24(COLOR_RED); break;
|
||||
case IR40_REDDISH : colorFromUint24(COLOR_REDDISH); break;
|
||||
case IR40_ORANGE : colorFromUint24(COLOR_ORANGE); break;
|
||||
case IR40_YELLOWISH : colorFromUint24(COLOR_YELLOWISH); break;
|
||||
case IR40_YELLOW : colorFromUint24(COLOR_YELLOW); break;
|
||||
case IR40_GREEN : colorFromUint24(COLOR_GREEN); break;
|
||||
case IR40_GREENISH : colorFromUint24(COLOR_GREENISH); break;
|
||||
case IR40_TURQUOISE : colorFromUint24(COLOR_TURQUOISE); break;
|
||||
case IR40_CYAN : colorFromUint24(COLOR_CYAN); break;
|
||||
case IR40_AQUA : colorFromUint24(COLOR_AQUA); break;
|
||||
case IR40_BLUE : colorFromUint24(COLOR_BLUE); break;
|
||||
case IR40_DEEPBLUE : colorFromUint24(COLOR_DEEPBLUE); break;
|
||||
case IR40_PURPLE : colorFromUint24(COLOR_PURPLE); break;
|
||||
case IR40_MAGENTA : colorFromUint24(COLOR_MAGENTA); break;
|
||||
case IR40_PINK : colorFromUint24(COLOR_PINK); break;
|
||||
case IR40_WARMWHITE2 : {
|
||||
if (useRGBW) { colorFromUint32(COLOR2_WARMWHITE2); effectCurrent = 0; }
|
||||
else colorFromUint24(COLOR_WARMWHITE2); } break;
|
||||
case IR40_WARMWHITE : {
|
||||
if (useRGBW) { colorFromUint32(COLOR2_WARMWHITE); effectCurrent = 0; }
|
||||
else colorFromUint24(COLOR_WARMWHITE); } break;
|
||||
case IR40_WHITE : {
|
||||
if (useRGBW) { colorFromUint32(COLOR2_NEUTRALWHITE); effectCurrent = 0; }
|
||||
else colorFromUint24(COLOR_NEUTRALWHITE); } break;
|
||||
case IR40_COLDWHITE : {
|
||||
if (useRGBW) { colorFromUint32(COLOR2_COLDWHITE); effectCurrent = 0; }
|
||||
else colorFromUint24(COLOR_COLDWHITE); } break;
|
||||
case IR40_COLDWHITE2 : {
|
||||
if (useRGBW) { colorFromUint32(COLOR2_COLDWHITE2); effectCurrent = 0; }
|
||||
else colorFromUint24(COLOR_COLDWHITE2); } break;
|
||||
case IR40_WPLUS : relativeChangeWhite(10); break;
|
||||
case IR40_WMINUS : relativeChangeWhite(-10, 5); break;
|
||||
case IR40_WOFF : whiteLast = col[3]; col[3] = 0; break;
|
||||
case IR40_WON : col[3] = whiteLast; break;
|
||||
case IR40_W25 : bri = 63; break;
|
||||
case IR40_W50 : bri = 127; break;
|
||||
case IR40_W75 : bri = 191; break;
|
||||
case IR40_W100 : bri = 255; break;
|
||||
case IR40_QUICK : relativeChange(&effectSpeed, 10); break;
|
||||
case IR40_SLOW : relativeChange(&effectSpeed, -10, 5); break;
|
||||
case IR40_JUMP7 : relativeChange(&effectIntensity, 10); break;
|
||||
case IR40_AUTO : relativeChange(&effectIntensity, -10, 5); break;
|
||||
case IR40_JUMP3 : if (!applyPreset(1)) effectCurrent = FX_MODE_STATIC; effectPalette = 0; break;
|
||||
case IR40_FADE3 : if (!applyPreset(2)) effectCurrent = FX_MODE_BREATH; effectPalette = 0; break;
|
||||
case IR40_FADE7 : if (!applyPreset(3)) effectCurrent = FX_MODE_FIRE_FLICKER; effectPalette = 0; break;
|
||||
case IR40_FLASH : if (!applyPreset(4)) effectCurrent = FX_MODE_RAINBOW; effectPalette = 0; break;
|
||||
}
|
||||
lastValidCode = code;
|
||||
colorUpdated(2); //for notifier, IR is considered a button input
|
||||
}
|
||||
|
||||
void decodeIR44(uint32_t code)
|
||||
{
|
||||
//not implemented for now
|
||||
switch (code) {
|
||||
case IR44_BPLUS : relativeChange(&bri, 10); break;
|
||||
case IR44_BMINUS : relativeChange(&bri, -10, 5); break;
|
||||
case IR44_OFF : briLast = bri; bri = 0; break;
|
||||
case IR44_ON : bri = briLast; break;
|
||||
case IR44_RED : colorFromUint24(COLOR_RED); break;
|
||||
case IR44_REDDISH : colorFromUint24(COLOR_REDDISH); break;
|
||||
case IR44_ORANGE : colorFromUint24(COLOR_ORANGE); break;
|
||||
case IR44_YELLOWISH : colorFromUint24(COLOR_YELLOWISH); break;
|
||||
case IR44_YELLOW : colorFromUint24(COLOR_YELLOW); break;
|
||||
case IR44_GREEN : colorFromUint24(COLOR_GREEN); break;
|
||||
case IR44_GREENISH : colorFromUint24(COLOR_GREENISH); break;
|
||||
case IR44_TURQUOISE : colorFromUint24(COLOR_TURQUOISE); break;
|
||||
case IR44_CYAN : colorFromUint24(COLOR_CYAN); break;
|
||||
case IR44_AQUA : colorFromUint24(COLOR_AQUA); break;
|
||||
case IR44_BLUE : colorFromUint24(COLOR_BLUE); break;
|
||||
case IR44_DEEPBLUE : colorFromUint24(COLOR_DEEPBLUE); break;
|
||||
case IR44_PURPLE : colorFromUint24(COLOR_PURPLE); break;
|
||||
case IR44_MAGENTA : colorFromUint24(COLOR_MAGENTA); break;
|
||||
case IR44_PINK : colorFromUint24(COLOR_PINK); break;
|
||||
case IR44_WHITE : {
|
||||
if (useRGBW) {
|
||||
if (col[3] > 0) col[3] = 0;
|
||||
else { colorFromUint32(COLOR2_NEUTRALWHITE); effectCurrent = 0; }
|
||||
} else colorFromUint24(COLOR_NEUTRALWHITE); } break;
|
||||
case IR44_WARMWHITE2 : {
|
||||
if (useRGBW) { colorFromUint32(COLOR2_WARMWHITE2); effectCurrent = 0; }
|
||||
else colorFromUint24(COLOR_WARMWHITE2); } break;
|
||||
case IR44_WARMWHITE : {
|
||||
if (useRGBW) { colorFromUint32(COLOR2_WARMWHITE); effectCurrent = 0; }
|
||||
else colorFromUint24(COLOR_WARMWHITE); } break;
|
||||
case IR44_COLDWHITE : {
|
||||
if (useRGBW) { colorFromUint32(COLOR2_COLDWHITE); effectCurrent = 0; }
|
||||
else colorFromUint24(COLOR_COLDWHITE); } break;
|
||||
case IR44_COLDWHITE2 : {
|
||||
if (useRGBW) { colorFromUint32(COLOR2_COLDWHITE2); effectCurrent = 0; }
|
||||
else colorFromUint24(COLOR_COLDWHITE2); } break;
|
||||
case IR44_REDPLUS : relativeChange(&effectCurrent, 1); break;
|
||||
case IR44_REDMINUS : relativeChange(&effectCurrent, -1, 0); break;
|
||||
case IR44_GREENPLUS : relativeChange(&effectPalette, 1); break;
|
||||
case IR44_GREENMINUS : relativeChange(&effectPalette, -1, 0); break;
|
||||
case IR44_BLUEPLUS : relativeChange(&effectIntensity, 10); break;
|
||||
case IR44_BLUEMINUS : relativeChange(&effectIntensity, -10, 5); break;
|
||||
case IR44_QUICK : relativeChange(&effectSpeed, 10); break;
|
||||
case IR44_SLOW : relativeChange(&effectSpeed, -10, 5); break;
|
||||
case IR44_DIY1 : if (!applyPreset(1)) effectCurrent = FX_MODE_STATIC; effectPalette = 0; break;
|
||||
case IR44_DIY2 : if (!applyPreset(2)) effectCurrent = FX_MODE_BREATH; effectPalette = 0; break;
|
||||
case IR44_DIY3 : if (!applyPreset(3)) effectCurrent = FX_MODE_FIRE_FLICKER; effectPalette = 0; break;
|
||||
case IR44_DIY4 : if (!applyPreset(4)) effectCurrent = FX_MODE_RAINBOW; effectPalette = 0; break;
|
||||
case IR44_DIY5 : if (!applyPreset(5)) effectCurrent = FX_MODE_METEOR_SMOOTH; effectPalette = 0; break;
|
||||
case IR44_DIY6 : if (!applyPreset(6)) effectCurrent = FX_MODE_RAIN; effectPalette = 0; break;
|
||||
case IR44_AUTO : effectCurrent = FX_MODE_STATIC; break;
|
||||
case IR44_FLASH : effectCurrent = FX_MODE_PALETTE; break;
|
||||
case IR44_JUMP3 : bri = 63; break;
|
||||
case IR44_JUMP7 : bri = 127; break;
|
||||
case IR44_FADE3 : bri = 191; break;
|
||||
case IR44_FADE7 : bri = 255; break;
|
||||
}
|
||||
lastValidCode = code;
|
||||
colorUpdated(2); //for notifier, IR is considered a button input
|
||||
}
|
||||
|
||||
|
||||
void initIR()
|
||||
{
|
||||
if (irEnabled)
|
||||
if (irEnabled > 0)
|
||||
{
|
||||
irrecv = new IRrecv(IR_PIN);
|
||||
irrecv->enableIRIn();
|
||||
@ -126,10 +328,10 @@ void initIR()
|
||||
|
||||
void handleIR()
|
||||
{
|
||||
if (irEnabled && millis() - irCheckedTime > 120)
|
||||
if (irEnabled > 0 && millis() - irCheckedTime > 120)
|
||||
{
|
||||
irCheckedTime = millis();
|
||||
if (irEnabled)
|
||||
if (irEnabled > 0)
|
||||
{
|
||||
if (irrecv == NULL)
|
||||
{
|
||||
@ -138,9 +340,12 @@ void handleIR()
|
||||
|
||||
if (irrecv->decode(&results))
|
||||
{
|
||||
Serial.print("IR recv\r\n0x");
|
||||
Serial.println((uint32_t)results.value, HEX);
|
||||
Serial.println();
|
||||
if (results.value != 0) // only print results if anything is received ( != 0 )
|
||||
{
|
||||
Serial.print("IR recv\r\n0x");
|
||||
Serial.println((uint32_t)results.value, HEX);
|
||||
Serial.println();
|
||||
}
|
||||
decodeIR(results.value);
|
||||
irrecv->resume();
|
||||
}
|
||||
|
Loading…
Reference in New Issue
Block a user