c01dd232c5
...in cfg.cpp the if statement used "IRPIN" (which is consistent to all other PIN names), but on the declaration-side "IR_PIN" was used. Changed all occurences of "IR_PIN" to "IRPIN".
425 lines
13 KiB
C++
425 lines
13 KiB
C++
//this code is a modified version of https://github.com/Makuna/NeoPixelBus/issues/103
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#ifndef NpbWrapper_h
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#define NpbWrapper_h
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//PIN CONFIGURATION
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#ifndef LEDPIN
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#define LEDPIN 2 //strip pin. Any for ESP32, gpio2 or 3 is recommended for ESP8266 (gpio2/3 are labeled D4/RX on NodeMCU and Wemos)
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#endif
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//#define USE_APA102 // Uncomment for using APA102 LEDs.
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//#define USE_WS2801 // Uncomment for using WS2801 LEDs (make sure you have NeoPixelBus v2.5.6 or newer)
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//#define USE_LPD8806 // Uncomment for using LPD8806
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//#define USE_TM1814 // Uncomment for using TM1814 LEDs (make sure you have NeoPixelBus v2.5.7 or newer)
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//#define USE_P9813 // Uncomment for using P9813 LEDs (make sure you have NeoPixelBus v2.5.8 or newer)
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//#define WLED_USE_ANALOG_LEDS //Uncomment for using "dumb" PWM controlled LEDs (see pins below, default R: gpio5, G: 12, B: 15, W: 13)
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//#define WLED_USE_H801 //H801 controller. Please uncomment #define WLED_USE_ANALOG_LEDS as well
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//#define WLED_USE_5CH_LEDS //5 Channel H801 for cold and warm white
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//#define WLED_USE_BWLT11
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//#define WLED_USE_SHOJO_PCB
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#ifndef BTNPIN
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#define BTNPIN 0 //button pin. Needs to have pullup (gpio0 recommended)
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#endif
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#ifndef TOUCHPIN
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//#define TOUCHPIN T0 //touch pin. Behaves the same as button. ESP32 only.
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#endif
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#ifndef IRPIN
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#define IRPIN 4 //infrared pin (-1 to disable) MagicHome: 4, H801 Wifi: 0
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#endif
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#ifndef RLYPIN
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#define RLYPIN 12 //pin for relay, will be set HIGH if LEDs are on (-1 to disable). Also usable for standby leds, triggers,...
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#endif
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#ifndef AUXPIN
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#define AUXPIN -1 //debug auxiliary output pin (-1 to disable)
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#endif
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#ifndef RLYMDE
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#define RLYMDE 1 //mode for relay, 0: LOW if LEDs are on 1: HIGH if LEDs are on
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#endif
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//enable color order override for a specific range of the strip
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//This can be useful if you want to chain multiple strings with incompatible color order
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//#define COLOR_ORDER_OVERRIDE
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#define COO_MIN 0
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#define COO_MAX 27 //not inclusive, this would set the override for LEDs 0-26
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#define COO_ORDER COL_ORDER_GRB
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//END CONFIGURATION
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#if defined(USE_APA102) || defined(USE_WS2801) || defined(USE_LPD8806) || defined(USE_P9813)
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#ifndef CLKPIN
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#define CLKPIN 0
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#endif
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#ifndef DATAPIN
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#define DATAPIN 2
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#endif
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#if BTNPIN == CLKPIN || BTNPIN == DATAPIN
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#undef BTNPIN // Deactivate button pin if it conflicts with one of the APA102 pins.
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#endif
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#endif
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#ifdef WLED_USE_ANALOG_LEDS
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//PWM pins - PINs 15,13,12,14 (W2 = 04)are used with H801 Wifi LED Controller
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#ifdef WLED_USE_H801
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#define RPIN 15 //R pin for analog LED strip
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#define GPIN 13 //G pin for analog LED strip
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#define BPIN 12 //B pin for analog LED strip
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#define WPIN 14 //W pin for analog LED strip
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#define W2PIN 04 //W2 pin for analog LED strip
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#undef BTNPIN
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#undef IRPIN
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#define IRPIN 0 //infrared pin (-1 to disable) MagicHome: 4, H801 Wifi: 0
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#elif defined(WLED_USE_BWLT11)
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//PWM pins - to use with BW-LT11
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#define RPIN 12 //R pin for analog LED strip
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#define GPIN 4 //G pin for analog LED strip
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#define BPIN 14 //B pin for analog LED strip
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#define WPIN 5 //W pin for analog LED strip
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#elif defined(WLED_USE_SHOJO_PCB)
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//PWM pins - to use with Shojo PCB (https://www.bastelbunker.de/esp-rgbww-wifi-led-controller-vbs-edition/)
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#define RPIN 14 //R pin for analog LED strip
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#define GPIN 4 //G pin for analog LED strip
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#define BPIN 5 //B pin for analog LED strip
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#define WPIN 15 //W pin for analog LED strip
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#define W2PIN 12 //W2 pin for analog LED strip
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#elif defined(WLED_USE_PLJAKOBS_PCB)
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// PWM pins - to use with esp_rgbww_controller from patrickjahns/pljakobs (https://github.com/pljakobs/esp_rgbww_controller)
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#define RPIN 12 //R pin for analog LED strip
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#define GPIN 13 //G pin for analog LED strip
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#define BPIN 14 //B pin for analog LED strip
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#define WPIN 4 //W pin for analog LED strip
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#define W2PIN 5 //W2 pin for analog LED strip
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#undef IRPIN
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#else
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//Enable override of Pins by using the platformio_override.ini file
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//PWM pins - PINs 5,12,13,15 are used with Magic Home LED Controller
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#ifndef RPIN
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#define RPIN 5 //R pin for analog LED strip
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#endif
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#ifndef GPIN
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#define GPIN 12 //G pin for analog LED strip
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#endif
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#ifndef BPIN
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#define BPIN 15 //B pin for analog LED strip
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#endif
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#ifndef WPIN
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#define WPIN 13 //W pin for analog LED strip
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#endif
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#endif
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#undef RLYPIN
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#define RLYPIN -1 //disable as pin 12 is used by analog LEDs
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#endif
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//automatically uses the right driver method for each platform
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#ifdef ARDUINO_ARCH_ESP32
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#ifdef USE_APA102
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#define PIXELMETHOD DotStarMethod
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#elif defined(USE_WS2801)
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#define PIXELMETHOD NeoWs2801Method
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#elif defined(USE_LPD8806)
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#define PIXELMETHOD Lpd8806Method
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#elif defined(USE_TM1814)
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#define PIXELMETHOD NeoTm1814Method
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#elif defined(USE_P9813)
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#define PIXELMETHOD P9813Method
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#else
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#define PIXELMETHOD NeoEsp32Rmt0Ws2812xMethod
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#endif
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#else //esp8266
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//autoselect the right method depending on strip pin
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#ifdef USE_APA102
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#define PIXELMETHOD DotStarMethod
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#elif defined(USE_WS2801)
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#define PIXELMETHOD NeoWs2801Method
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#elif defined(USE_LPD8806)
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#define PIXELMETHOD Lpd8806Method
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#elif defined(USE_TM1814)
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#define PIXELMETHOD NeoTm1814Method
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#elif defined(USE_P9813)
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#define PIXELMETHOD P9813Method
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#elif LEDPIN == 2
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#define PIXELMETHOD NeoEsp8266Uart1Ws2813Method //if you get an error here, try to change to NeoEsp8266UartWs2813Method or update Neopixelbus
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#elif LEDPIN == 3
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#define PIXELMETHOD NeoEsp8266Dma800KbpsMethod
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#else
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#define PIXELMETHOD NeoEsp8266BitBang800KbpsMethod
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#pragma message "Software BitBang will be used because of your selected LED pin. This may cause flicker. Use GPIO 2 or 3 for best results."
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#endif
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#endif
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//you can now change the color order in the web settings
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#ifdef USE_APA102
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#define PIXELFEATURE3 DotStarBgrFeature
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#define PIXELFEATURE4 DotStarLbgrFeature
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#elif defined(USE_LPD8806)
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#define PIXELFEATURE3 Lpd8806GrbFeature
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#define PIXELFEATURE4 Lpd8806GrbFeature
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#elif defined(USE_WS2801)
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#define PIXELFEATURE3 NeoRbgFeature
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#define PIXELFEATURE4 NeoRbgFeature
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#elif defined(USE_TM1814)
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#define PIXELFEATURE3 NeoWrgbTm1814Feature
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#define PIXELFEATURE4 NeoWrgbTm1814Feature
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#elif defined(USE_P9813)
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#define PIXELFEATURE3 P9813BgrFeature
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#define PIXELFEATURE4 NeoGrbwFeature
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#else
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#define PIXELFEATURE3 NeoGrbFeature
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#define PIXELFEATURE4 NeoGrbwFeature
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#endif
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#include <NeoPixelBrightnessBus.h>
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#include "const.h"
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enum NeoPixelType
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{
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NeoPixelType_None = 0,
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NeoPixelType_Grb = 1,
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NeoPixelType_Grbw = 2,
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NeoPixelType_End = 3
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};
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class NeoPixelWrapper
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{
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public:
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NeoPixelWrapper() :
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// initialize each member to null
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_pGrb(NULL),
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_pGrbw(NULL),
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_type(NeoPixelType_None)
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{
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}
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~NeoPixelWrapper()
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{
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cleanup();
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}
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void Begin(NeoPixelType type, uint16_t countPixels)
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{
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cleanup();
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_type = type;
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switch (_type)
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{
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case NeoPixelType_Grb:
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#if defined(USE_APA102) || defined(USE_WS2801) || defined(USE_LPD8806) || defined(USE_P9813)
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_pGrb = new NeoPixelBrightnessBus<PIXELFEATURE3,PIXELMETHOD>(countPixels, CLKPIN, DATAPIN);
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#else
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_pGrb = new NeoPixelBrightnessBus<PIXELFEATURE3,PIXELMETHOD>(countPixels, LEDPIN);
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#endif
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_pGrb->Begin();
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break;
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case NeoPixelType_Grbw:
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#if defined(USE_APA102) || defined(USE_WS2801) || defined(USE_LPD8806) || defined(USE_P9813)
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_pGrbw = new NeoPixelBrightnessBus<PIXELFEATURE4,PIXELMETHOD>(countPixels, CLKPIN, DATAPIN);
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#else
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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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break;
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}
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#ifdef WLED_USE_ANALOG_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
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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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#ifdef ARDUINO_ARCH_ESP32
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ledcWrite(0, r);
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ledcWrite(1, g);
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ledcWrite(2, 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: 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 // ESP8266
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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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void Show()
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{
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byte b;
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switch (_type)
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{
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case NeoPixelType_Grb: _pGrb->Show(); break;
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case NeoPixelType_Grbw: _pGrbw->Show(); break;
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}
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}
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void SetPixelColor(uint16_t indexPixel, RgbwColor c)
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{
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RgbwColor col;
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uint8_t co = _colorOrder;
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#ifdef COLOR_ORDER_OVERRIDE
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if (indexPixel >= COO_MIN && indexPixel < COO_MAX) co = COO_ORDER;
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#endif
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//reorder channels to selected order
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switch (co)
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{
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case 0: col.G = c.G; col.R = c.R; col.B = c.B; break; //0 = GRB, default
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case 1: col.G = c.R; col.R = c.G; col.B = c.B; break; //1 = RGB, common for WS2811
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case 2: col.G = c.B; col.R = c.R; col.B = c.G; break; //2 = BRG
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case 3: col.G = c.R; col.R = c.B; col.B = c.G; break; //3 = RBG
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case 4: col.G = c.B; col.R = c.G; col.B = c.R; break; //4 = BGR
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default: col.G = c.G; col.R = c.B; col.B = c.R; break; //5 = GBR
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}
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col.W = c.W;
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switch (_type) {
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case NeoPixelType_Grb: {
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_pGrb->SetPixelColor(indexPixel, RgbColor(col.R,col.G,col.B));
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}
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break;
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case NeoPixelType_Grbw: {
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#if defined(USE_LPD8806) || defined(USE_WS2801)
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_pGrbw->SetPixelColor(indexPixel, RgbColor(col.R,col.G,col.B));
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#else
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_pGrbw->SetPixelColor(indexPixel, col);
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#endif
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}
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break;
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}
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}
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void SetBrightness(byte b)
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{
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switch (_type) {
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case NeoPixelType_Grb: _pGrb->SetBrightness(b); break;
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case NeoPixelType_Grbw:_pGrbw->SetBrightness(b); break;
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}
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}
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void SetColorOrder(byte colorOrder) {
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_colorOrder = colorOrder;
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}
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uint8_t GetColorOrder() {
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return _colorOrder;
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}
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RgbwColor GetPixelColorRaw(uint16_t indexPixel) const
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{
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switch (_type) {
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case NeoPixelType_Grb: return _pGrb->GetPixelColor(indexPixel); break;
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case NeoPixelType_Grbw: return _pGrbw->GetPixelColor(indexPixel); break;
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}
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return 0;
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}
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// NOTE: Due to feature differences, some support RGBW but the method name
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// here needs to be unique, thus GetPixeColorRgbw
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uint32_t GetPixelColorRgbw(uint16_t indexPixel) const
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{
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RgbwColor col(0,0,0,0);
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switch (_type) {
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case NeoPixelType_Grb: col = _pGrb->GetPixelColor(indexPixel); break;
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case NeoPixelType_Grbw: col = _pGrbw->GetPixelColor(indexPixel); break;
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}
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uint8_t co = _colorOrder;
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#ifdef COLOR_ORDER_OVERRIDE
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if (indexPixel >= COO_MIN && indexPixel < COO_MAX) co = COO_ORDER;
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#endif
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switch (co)
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{
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// W G R B
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case 0: return ((col.W << 24) | (col.G << 8) | (col.R << 16) | (col.B)); //0 = GRB, default
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case 1: return ((col.W << 24) | (col.R << 8) | (col.G << 16) | (col.B)); //1 = RGB, common for WS2811
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case 2: return ((col.W << 24) | (col.B << 8) | (col.R << 16) | (col.G)); //2 = BRG
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case 3: return ((col.W << 24) | (col.B << 8) | (col.G << 16) | (col.R)); //3 = RBG
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case 4: return ((col.W << 24) | (col.R << 8) | (col.B << 16) | (col.G)); //4 = BGR
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case 5: return ((col.W << 24) | (col.G << 8) | (col.B << 16) | (col.R)); //5 = GBR
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}
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return 0;
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}
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uint8_t* GetPixels(void)
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{
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switch (_type) {
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case NeoPixelType_Grb: return _pGrb->Pixels(); break;
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case NeoPixelType_Grbw: return _pGrbw->Pixels(); break;
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}
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return 0;
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}
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private:
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NeoPixelType _type;
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// have a member for every possible type
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NeoPixelBrightnessBus<PIXELFEATURE3,PIXELMETHOD>* _pGrb;
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NeoPixelBrightnessBus<PIXELFEATURE4,PIXELMETHOD>* _pGrbw;
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byte _colorOrder = 0;
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void cleanup()
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{
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switch (_type) {
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case NeoPixelType_Grb: delete _pGrb ; _pGrb = NULL; break;
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case NeoPixelType_Grbw: delete _pGrbw; _pGrbw = NULL; break;
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}
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}
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};
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#endif
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