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NeoPixelBus/src/internal/NeoColorFeatures.h
T
2021-10-10 17:45:48 -07:00

674 lines
18 KiB
C++

/*-------------------------------------------------------------------------
NeoColorFeatures provides feature classes to describe color order and
color depth for NeoPixelBus template class
Written by Michael C. Miller.
I invest time and resources providing this open source code,
please support me by dontating (see https://github.com/Makuna/NeoPixelBus)
-------------------------------------------------------------------------
This file is part of the Makuna/NeoPixelBus library.
NeoPixelBus is free software: you can redistribute it and/or modify
it under the terms of the GNU Lesser General Public License as
published by the Free Software Foundation, either version 3 of
the License, or (at your option) any later version.
NeoPixelBus is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with NeoPixel. If not, see
<http://www.gnu.org/licenses/>.
-------------------------------------------------------------------------*/
#pragma once
class Neo3ByteElements
{
public:
static const size_t PixelSize = 3;
static uint8_t* getPixelAddress(uint8_t* pPixels, uint16_t indexPixel)
{
return pPixels + indexPixel * PixelSize;
}
static const uint8_t* getPixelAddress(const uint8_t* pPixels, uint16_t indexPixel)
{
return pPixels + indexPixel * PixelSize;
}
static void replicatePixel(uint8_t* pPixelDest, const uint8_t* pPixelSrc, uint16_t count)
{
uint8_t* pEnd = pPixelDest + (count * PixelSize);
while (pPixelDest < pEnd)
{
for (uint8_t iElement = 0; iElement < PixelSize; iElement++)
{
*pPixelDest++ = pPixelSrc[iElement];
}
}
}
static void movePixelsInc(uint8_t* pPixelDest, const uint8_t* pPixelSrc, uint16_t count)
{
uint8_t* pEnd = pPixelDest + (count * PixelSize);
while (pPixelDest < pEnd)
{
*pPixelDest++ = *pPixelSrc++;
}
}
static void movePixelsInc_P(uint8_t* pPixelDest, PGM_VOID_P pPixelSrc, uint16_t count)
{
uint8_t* pEnd = pPixelDest + (count * PixelSize);
const uint8_t* pSrc = reinterpret_cast<const uint8_t*>(pPixelSrc);
while (pPixelDest < pEnd)
{
*pPixelDest++ = pgm_read_byte(pSrc++);
}
}
static void movePixelsDec(uint8_t* pPixelDest, const uint8_t* pPixelSrc, uint16_t count)
{
uint8_t* pDestBack = pPixelDest + (count * PixelSize);
const uint8_t* pSrcBack = pPixelSrc + (count * PixelSize);
while (pDestBack > pPixelDest)
{
*--pDestBack = *--pSrcBack;
}
}
typedef RgbColor ColorObject;
};
class Neo4ByteElements
{
public:
static const size_t PixelSize = 4;
static uint8_t* getPixelAddress(uint8_t* pPixels, uint16_t indexPixel)
{
return pPixels + indexPixel * PixelSize;
}
static const uint8_t* getPixelAddress(const uint8_t* pPixels, uint16_t indexPixel)
{
return pPixels + indexPixel * PixelSize;
}
static void replicatePixel(uint8_t* pPixelDest, const uint8_t* pPixelSrc, uint16_t count)
{
uint32_t* pDest = reinterpret_cast<uint32_t*>(pPixelDest);
const uint32_t* pSrc = reinterpret_cast<const uint32_t*>(pPixelSrc);
uint32_t* pEnd = pDest + count;
while (pDest < pEnd)
{
*pDest++ = *pSrc;
}
}
static void movePixelsInc(uint8_t* pPixelDest, const uint8_t* pPixelSrc, uint16_t count)
{
uint32_t* pDest = reinterpret_cast<uint32_t*>(pPixelDest);
const uint32_t* pSrc = reinterpret_cast<const uint32_t*>(pPixelSrc);
uint32_t* pEnd = pDest + count;
while (pDest < pEnd)
{
*pDest++ = *pSrc++;
}
}
static void movePixelsInc_P(uint8_t* pPixelDest, PGM_VOID_P pPixelSrc, uint16_t count)
{
uint32_t* pDest = reinterpret_cast<uint32_t*>(pPixelDest);
const uint32_t* pSrc = reinterpret_cast<const uint32_t*>(pPixelSrc);
uint32_t* pEnd = pDest + count;
while (pDest < pEnd)
{
*pDest++ = pgm_read_dword(pSrc++);
}
}
static void movePixelsDec(uint8_t* pPixelDest, const uint8_t* pPixelSrc, uint16_t count)
{
uint32_t* pDest = reinterpret_cast<uint32_t*>(pPixelDest);
const uint32_t* pSrc = reinterpret_cast<const uint32_t*>(pPixelSrc);
uint32_t* pDestBack = pDest + count;
const uint32_t* pSrcBack = pSrc + count;
while (pDestBack > pDest)
{
*--pDestBack = *--pSrcBack;
}
}
typedef RgbwColor ColorObject;
};
class Neo6ByteElements
{
public:
static const size_t PixelSize = 6;
static uint8_t* getPixelAddress(uint8_t* pPixels, uint16_t indexPixel)
{
return pPixels + indexPixel * PixelSize;
}
static const uint8_t* getPixelAddress(const uint8_t* pPixels, uint16_t indexPixel)
{
return pPixels + indexPixel * PixelSize;
}
static void replicatePixel(uint8_t* pPixelDest, const uint8_t* pPixelSrc, uint16_t count)
{
uint16_t* pDest = reinterpret_cast<uint16_t*>(pPixelDest);
const uint16_t* pSrc = reinterpret_cast<const uint16_t*>(pPixelSrc);
uint16_t* pEnd = pDest + (count * PixelSize / 2);
while (pDest < pEnd)
{
*pDest++ = *pSrc;
}
}
static void movePixelsInc(uint8_t* pPixelDest, const uint8_t* pPixelSrc, uint16_t count)
{
uint16_t* pDest = reinterpret_cast<uint16_t*>(pPixelDest);
const uint16_t* pSrc = reinterpret_cast<const uint16_t*>(pPixelSrc);
uint16_t* pEnd = pDest + (count * PixelSize / 2);
while (pDest < pEnd)
{
*pDest++ = *pSrc++;
}
}
static void movePixelsInc_P(uint8_t* pPixelDest, PGM_VOID_P pPixelSrc, uint16_t count)
{
uint16_t* pDest = reinterpret_cast<uint16_t*>(pPixelDest);
const uint16_t* pSrc = reinterpret_cast<const uint16_t*>(pPixelSrc);
uint16_t* pEnd = pDest + (count * PixelSize / 2);
while (pDest < pEnd)
{
*pDest++ = pgm_read_word(pSrc++);
}
}
static void movePixelsDec(uint8_t* pPixelDest, const uint8_t* pPixelSrc, uint16_t count)
{
uint16_t* pDest = reinterpret_cast<uint16_t*>(pPixelDest);
const uint16_t* pSrc = reinterpret_cast<const uint16_t*>(pPixelSrc);
uint16_t* pDestBack = pDest + (count * PixelSize / 2);
const uint16_t* pSrcBack = pSrc + (count * PixelSize / 2);
while (pDestBack > pDest)
{
*--pDestBack = *--pSrcBack;
}
}
typedef Rgb48Color ColorObject;
};
class Neo8ByteElements
{
public:
static const size_t PixelSize = 8;
static uint8_t* getPixelAddress(uint8_t* pPixels, uint16_t indexPixel)
{
return pPixels + indexPixel * PixelSize;
}
static const uint8_t* getPixelAddress(const uint8_t* pPixels, uint16_t indexPixel)
{
return pPixels + indexPixel * PixelSize;
}
static void replicatePixel(uint8_t* pPixelDest, const uint8_t* pPixelSrc, uint16_t count)
{
uint32_t* pDest = reinterpret_cast<uint32_t*>(pPixelDest);
const uint32_t* pSrc = reinterpret_cast<const uint32_t*>(pPixelSrc);
uint32_t* pEnd = pDest + (count * PixelSize);
while (pDest < pEnd)
{
*pDest++ = *pSrc;
}
}
static void movePixelsInc(uint8_t* pPixelDest, const uint8_t* pPixelSrc, uint16_t count)
{
uint32_t* pDest = reinterpret_cast<uint32_t*>(pPixelDest);
const uint32_t* pSrc = reinterpret_cast<const uint32_t*>(pPixelSrc);
uint32_t* pEnd = pDest + (count * PixelSize);
while (pDest < pEnd)
{
*pDest++ = *pSrc++;
}
}
static void movePixelsInc_P(uint8_t* pPixelDest, PGM_VOID_P pPixelSrc, uint16_t count)
{
uint32_t* pDest = reinterpret_cast<uint32_t*>(pPixelDest);
const uint32_t* pSrc = reinterpret_cast<const uint32_t*>(pPixelSrc);
uint32_t* pEnd = pDest + (count * PixelSize);
while (pDest < pEnd)
{
*pDest++ = pgm_read_dword(pSrc++);
}
}
static void movePixelsDec(uint8_t* pPixelDest, const uint8_t* pPixelSrc, uint16_t count)
{
uint32_t* pDest = reinterpret_cast<uint32_t*>(pPixelDest);
const uint32_t* pSrc = reinterpret_cast<const uint32_t*>(pPixelSrc);
uint32_t* pDestBack = pDest + (count * PixelSize);
const uint32_t* pSrcBack = pSrc + (count * PixelSize);
while (pDestBack > pDest)
{
*--pDestBack = *--pSrcBack;
}
}
typedef Rgbw64Color ColorObject;
};
class Neo3ByteElementsNoSettings : public Neo3ByteElements
{
public:
typedef NeoNoSettings SettingsObject;
static const size_t SettingsSize = 0;
static void applySettings(uint8_t*, const SettingsObject&)
{
}
static uint8_t* pixels(uint8_t* pData)
{
return pData;
}
static const uint8_t* pixels(const uint8_t* pData)
{
return pData;
}
};
class Neo4ByteElementsNoSettings : public Neo4ByteElements
{
public:
typedef NeoNoSettings SettingsObject;
static const size_t SettingsSize = 0;
static void applySettings(uint8_t*, const SettingsObject&)
{
}
static uint8_t* pixels(uint8_t* pData)
{
return pData;
}
static const uint8_t* pixels(const uint8_t* pData)
{
return pData;
}
};
class Neo6ByteElementsNoSettings : public Neo6ByteElements
{
public:
typedef NeoNoSettings SettingsObject;
static const size_t SettingsSize = 0;
static void applySettings(uint8_t*, const SettingsObject&)
{
}
static uint8_t* pixels(uint8_t* pData)
{
return pData;
}
static const uint8_t* pixels(const uint8_t* pData)
{
return pData;
}
};
class Neo8ByteElementsNoSettings : public Neo8ByteElements
{
public:
typedef NeoNoSettings SettingsObject;
static const size_t SettingsSize = 0;
static void applySettings(uint8_t*, const SettingsObject&)
{
}
static uint8_t* pixels(uint8_t* pData)
{
return pData;
}
static const uint8_t* pixels(const uint8_t* pData)
{
return pData;
}
};
class NeoGrbFeature : public Neo3ByteElementsNoSettings
{
public:
static void applyPixelColor(uint8_t* pPixels, uint16_t indexPixel, ColorObject color)
{
uint8_t* p = getPixelAddress(pPixels, indexPixel);
*p++ = color.G;
*p++ = color.R;
*p = color.B;
}
static ColorObject retrievePixelColor(const uint8_t* pPixels, uint16_t indexPixel)
{
ColorObject color;
const uint8_t* p = getPixelAddress(pPixels, indexPixel);
color.G = *p++;
color.R = *p++;
color.B = *p;
return color;
}
static ColorObject retrievePixelColor_P(PGM_VOID_P pPixels, uint16_t indexPixel)
{
ColorObject color;
const uint8_t* p = getPixelAddress(reinterpret_cast<const uint8_t*>(pPixels), indexPixel);
color.G = pgm_read_byte(p++);
color.R = pgm_read_byte(p++);
color.B = pgm_read_byte(p);
return color;
}
};
class NeoGrbwFeature : public Neo4ByteElementsNoSettings
{
public:
static void applyPixelColor(uint8_t* pPixels, uint16_t indexPixel, ColorObject color)
{
uint8_t* p = getPixelAddress(pPixels, indexPixel);
*p++ = color.G;
*p++ = color.R;
*p++ = color.B;
*p = color.W;
}
static ColorObject retrievePixelColor(const uint8_t* pPixels, uint16_t indexPixel)
{
ColorObject color;
const uint8_t* p = getPixelAddress(pPixels, indexPixel);
color.G = *p++;
color.R = *p++;
color.B = *p++;
color.W = *p;
return color;
}
static ColorObject retrievePixelColor_P(PGM_VOID_P pPixels, uint16_t indexPixel)
{
ColorObject color;
const uint8_t* p = getPixelAddress(reinterpret_cast<const uint8_t*>(pPixels), indexPixel);
color.G = pgm_read_byte(p++);
color.R = pgm_read_byte(p++);
color.B = pgm_read_byte(p++);
color.W = pgm_read_byte(p);
return color;
}
};
class NeoRgbwFeature : public Neo4ByteElementsNoSettings
{
public:
static void applyPixelColor(uint8_t* pPixels, uint16_t indexPixel, ColorObject color)
{
uint8_t* p = getPixelAddress(pPixels, indexPixel);
*p++ = color.R;
*p++ = color.G;
*p++ = color.B;
*p = color.W;
}
static ColorObject retrievePixelColor(const uint8_t* pPixels, uint16_t indexPixel)
{
ColorObject color;
const uint8_t* p = getPixelAddress(pPixels, indexPixel);
color.R = *p++;
color.G = *p++;
color.B = *p++;
color.W = *p;
return color;
}
static ColorObject retrievePixelColor_P(PGM_VOID_P pPixels, uint16_t indexPixel)
{
ColorObject color;
const uint8_t* p = getPixelAddress(reinterpret_cast<const uint8_t*>(pPixels), indexPixel);
color.R = pgm_read_byte(p++);
color.G = pgm_read_byte(p++);
color.B = pgm_read_byte(p++);
color.W = pgm_read_byte(p);
return color;
}
};
class NeoRgbFeature : public Neo3ByteElementsNoSettings
{
public:
static void applyPixelColor(uint8_t* pPixels, uint16_t indexPixel, ColorObject color)
{
uint8_t* p = getPixelAddress(pPixels, indexPixel);
*p++ = color.R;
*p++ = color.G;
*p = color.B;
}
static ColorObject retrievePixelColor(const uint8_t* pPixels, uint16_t indexPixel)
{
ColorObject color;
const uint8_t* p = getPixelAddress(pPixels, indexPixel);
color.R = *p++;
color.G = *p++;
color.B = *p;
return color;
}
static ColorObject retrievePixelColor_P(PGM_VOID_P pPixels, uint16_t indexPixel)
{
ColorObject color;
const uint8_t* p = getPixelAddress(reinterpret_cast<const uint8_t*>(pPixels), indexPixel);
color.R = pgm_read_byte(p++);
color.G = pgm_read_byte(p++);
color.B = pgm_read_byte(p);
return color;
}
};
class NeoBrgFeature : public Neo3ByteElementsNoSettings
{
public:
static void applyPixelColor(uint8_t* pPixels, uint16_t indexPixel, ColorObject color)
{
uint8_t* p = getPixelAddress(pPixels, indexPixel);
*p++ = color.B;
*p++ = color.R;
*p = color.G;
}
static ColorObject retrievePixelColor(const uint8_t* pPixels, uint16_t indexPixel)
{
ColorObject color;
const uint8_t* p = getPixelAddress(pPixels, indexPixel);
color.B = *p++;
color.R = *p++;
color.G = *p;
return color;
}
static ColorObject retrievePixelColor_P(PGM_VOID_P pPixels, uint16_t indexPixel)
{
ColorObject color;
const uint8_t* p = getPixelAddress(reinterpret_cast<const uint8_t*>(pPixels), indexPixel);
color.B = pgm_read_byte(p++);
color.R = pgm_read_byte(p++);
color.G = pgm_read_byte(p);
return color;
}
};
class NeoRbgFeature : public Neo3ByteElementsNoSettings
{
public:
static void applyPixelColor(uint8_t* pPixels, uint16_t indexPixel, ColorObject color)
{
uint8_t* p = getPixelAddress(pPixels, indexPixel);
*p++ = color.R;
*p++ = color.B;
*p = color.G;
}
static ColorObject retrievePixelColor(const uint8_t* pPixels, uint16_t indexPixel)
{
ColorObject color;
const uint8_t* p = getPixelAddress(pPixels, indexPixel);
color.R = *p++;
color.B = *p++;
color.G = *p;
return color;
}
static ColorObject retrievePixelColor_P(PGM_VOID_P pPixels, uint16_t indexPixel)
{
ColorObject color;
const uint8_t* p = getPixelAddress(reinterpret_cast<const uint8_t*>(pPixels), indexPixel);
color.R = pgm_read_byte(p++);
color.B = pgm_read_byte(p++);
color.G = pgm_read_byte(p);
return color;
}
};
class NeoRgbw64Feature : public Neo8ByteElementsNoSettings
{
public:
static void applyPixelColor(uint8_t* pPixels, uint16_t indexPixel, ColorObject color)
{
uint16_t* p = reinterpret_cast<uint16_t *>(getPixelAddress(pPixels, indexPixel));
*p++ = color.R;
*p++ = color.G;
*p++ = color.B;
*p = color.W;
}
static ColorObject retrievePixelColor(const uint8_t* pPixels, uint16_t indexPixel)
{
ColorObject color;
const uint16_t* p = reinterpret_cast<const uint16_t*>(getPixelAddress(pPixels, indexPixel));
color.R = *p++;
color.G = *p++;
color.B = *p++;
color.W = *p;
return color;
}
static ColorObject retrievePixelColor_P(PGM_VOID_P pPixels, uint16_t indexPixel)
{
ColorObject color;
const uint16_t* p = reinterpret_cast<const uint16_t*>(getPixelAddress(reinterpret_cast<const uint8_t*>(pPixels), indexPixel));
color.R = pgm_read_word(p++);
color.G = pgm_read_word(p++);
color.B = pgm_read_word(p++);
color.W = pgm_read_word(p);
return color;
}
};
class NeoRgb48Feature : public Neo6ByteElementsNoSettings
{
public:
static void applyPixelColor(uint8_t* pPixels, uint16_t indexPixel, ColorObject color)
{
uint16_t* p = reinterpret_cast<uint16_t*>(getPixelAddress(pPixels, indexPixel));
*p++ = color.R;
*p++ = color.G;
*p = color.B;
}
static ColorObject retrievePixelColor(const uint8_t* pPixels, uint16_t indexPixel)
{
ColorObject color;
const uint16_t* p = reinterpret_cast<const uint16_t*>(getPixelAddress(pPixels, indexPixel));
color.R = *p++;
color.G = *p++;
color.B = *p;
return color;
}
static ColorObject retrievePixelColor_P(PGM_VOID_P pPixels, uint16_t indexPixel)
{
ColorObject color;
const uint16_t* p = reinterpret_cast<const uint16_t*>(getPixelAddress(reinterpret_cast<const uint8_t*>(pPixels), indexPixel));
color.R = pgm_read_word(p++);
color.G = pgm_read_word(p++);
color.B = pgm_read_word(p);
return color;
}
};
typedef NeoRgb48Feature NeoRgbUcs8903Feature;
typedef NeoRgbw64Feature NeoRgbwUcs8904Feature;