300 lines
8.0 KiB
C++
300 lines
8.0 KiB
C++
// Copyright (C) 2024 Jérôme "SirLynix" Leclercq (lynix680@gmail.com)
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// This file is part of the "Nazara Engine - Utility module"
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// For conditions of distribution and use, see copyright notice in Config.hpp
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#include <Nazara/Core/Algorithm.hpp>
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#include <Nazara/Core/Error.hpp>
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#include <array>
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#include <cstring>
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#include <Nazara/Utility/Debug.hpp>
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namespace Nz
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{
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inline PixelFormatDescription::PixelFormatDescription() :
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content(PixelFormatContent::Undefined),
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bitsPerPixel(0)
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{
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}
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inline PixelFormatDescription::PixelFormatDescription(PixelFormatContent formatContent, UInt8 bpp, PixelFormatSubType subType) :
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content(formatContent),
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redType(subType),
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greenType(subType),
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blueType(subType),
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alphaType(subType),
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bitsPerPixel(bpp)
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{
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}
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inline PixelFormatDescription::PixelFormatDescription(std::string_view formatName, PixelFormatContent formatContent, UInt8 bpp, PixelFormatSubType subType) :
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name(formatName),
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content(formatContent),
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redType(subType),
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greenType(subType),
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blueType(subType),
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alphaType(subType),
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bitsPerPixel(bpp)
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{
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}
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inline PixelFormatDescription::PixelFormatDescription(std::string_view formatName, PixelFormatContent formatContent, Bitset<> rMask, Bitset<> gMask, Bitset<> bMask, Bitset<> aMask, PixelFormatSubType subType) :
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PixelFormatDescription(formatName, formatContent, subType, rMask, subType, gMask, subType, bMask, subType, aMask)
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{
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}
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inline PixelFormatDescription::PixelFormatDescription(std::string_view formatName, PixelFormatContent formatContent, PixelFormatSubType rType, Bitset<> rMask, PixelFormatSubType gType, Bitset<> gMask, PixelFormatSubType bType, Bitset<> bMask, PixelFormatSubType aType, Bitset<> aMask, UInt8 bpp) :
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name(formatName),
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redMask(rMask),
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greenMask(gMask),
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blueMask(bMask),
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alphaMask(aMask),
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content(formatContent),
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redType(rType),
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greenType(gType),
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blueType(bType),
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alphaType(aType)
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{
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redMask.Reverse();
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greenMask.Reverse();
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blueMask.Reverse();
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alphaMask.Reverse();
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if (bpp == 0)
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RecomputeBitsPerPixel();
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}
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inline void PixelFormatDescription::Clear()
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{
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bitsPerPixel = 0;
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alphaMask.Clear();
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blueMask.Clear();
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greenMask.Clear();
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redMask.Clear();
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name = "";
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}
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inline bool PixelFormatDescription::IsCompressed() const
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{
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return redType == PixelFormatSubType::Compressed ||
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greenType == PixelFormatSubType::Compressed ||
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blueType == PixelFormatSubType::Compressed ||
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alphaType == PixelFormatSubType::Compressed;
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}
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inline bool PixelFormatDescription::IsValid() const
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{
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return bitsPerPixel != 0;
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}
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inline void PixelFormatDescription::RecomputeBitsPerPixel()
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{
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Bitset<> counter;
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counter |= redMask;
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counter |= greenMask;
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counter |= blueMask;
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counter |= alphaMask;
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bitsPerPixel = static_cast<UInt8>(counter.Count());
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}
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inline bool PixelFormatDescription::Validate() const
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{
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if (!IsValid())
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return false;
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if (content <= PixelFormatContent::Undefined || content > PixelFormatContent::Max)
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return false;
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std::array<const Nz::Bitset<>*, 4> masks = { {&redMask, &greenMask, &blueMask, &alphaMask} };
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std::array<PixelFormatSubType, 4> types = { {redType, greenType, blueType, alphaType} };
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for (unsigned int i = 0; i < 4; ++i)
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{
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UInt8 usedBits = static_cast<UInt8>(masks[i]->Count());
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if (usedBits == 0)
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continue;
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if (usedBits > bitsPerPixel)
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return false;
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if (usedBits > 64) //< Currently, formats with over 64 bits per component are not supported
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return false;
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switch (types[i])
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{
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case PixelFormatSubType::Half:
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if (usedBits != 16)
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return false;
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break;
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case PixelFormatSubType::Float:
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if (usedBits != 32)
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return false;
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break;
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default:
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break;
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}
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}
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return true;
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}
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inline std::size_t PixelFormatInfo::ComputeSize(PixelFormat format, unsigned int width, unsigned int height, unsigned int depth)
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{
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if (IsCompressed(format))
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{
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switch (format)
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{
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case PixelFormat::DXT1:
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case PixelFormat::DXT3:
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case PixelFormat::DXT5:
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return (((width + 3) / 4) * ((height + 3) / 4) * ((format == PixelFormat::DXT1) ? 8 : 16)) * depth;
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default:
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NazaraError("unsupported format");
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return 0;
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}
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}
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else
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return width * height * depth * GetBytesPerPixel(format);
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}
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inline bool PixelFormatInfo::Convert(PixelFormat srcFormat, PixelFormat dstFormat, const void* src, void* dst)
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{
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if (srcFormat == dstFormat)
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{
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std::memcpy(dst, src, GetBytesPerPixel(srcFormat));
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return true;
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}
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#if NAZARA_UTILITY_SAFE
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if (IsCompressed(srcFormat))
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{
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NazaraError("cannot convert single pixel from compressed format");
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return false;
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}
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if (IsCompressed(dstFormat))
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{
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NazaraError("cannot convert single pixel to compressed format");
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return false;
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}
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#endif
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return Convert(srcFormat, dstFormat, src, static_cast<const UInt8*>(src) + GetBytesPerPixel(srcFormat), dst);
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}
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inline bool PixelFormatInfo::Convert(PixelFormat srcFormat, PixelFormat dstFormat, const void* start, const void* end, void* dst)
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{
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if (srcFormat == dstFormat)
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{
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std::memcpy(dst, start, reinterpret_cast<const UInt8*>(end) - reinterpret_cast<const UInt8*>(start));
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return true;
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}
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ConvertFunction func = s_convertFunctions[srcFormat][dstFormat];
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if (!func)
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{
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NazaraErrorFmt("pixel format conversion from {0} to {1} is not supported", GetName(srcFormat), GetName(dstFormat));
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return false;
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}
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if (!func(reinterpret_cast<const UInt8*>(start), reinterpret_cast<const UInt8*>(end), reinterpret_cast<UInt8*>(dst)))
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{
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NazaraErrorFmt("pixel format conversion from {0} to {1} failed", GetName(srcFormat), GetName(dstFormat));
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return false;
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}
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return true;
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}
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inline UInt8 PixelFormatInfo::GetBitsPerPixel(PixelFormat format)
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{
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return s_pixelFormatInfos[format].bitsPerPixel;
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}
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inline UInt8 PixelFormatInfo::GetBytesPerPixel(PixelFormat format)
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{
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return GetBitsPerPixel(format)/8;
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}
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inline PixelFormatContent PixelFormatInfo::GetContent(PixelFormat format)
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{
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return s_pixelFormatInfos[format].content;
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}
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inline const PixelFormatDescription& PixelFormatInfo::GetInfo(PixelFormat format)
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{
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return s_pixelFormatInfos[format];
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}
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inline std::string_view PixelFormatInfo::GetName(PixelFormat format)
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{
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return s_pixelFormatInfos[format].name;
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}
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inline bool PixelFormatInfo::HasAlpha(PixelFormat format)
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{
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return s_pixelFormatInfos[format].alphaMask.TestAny();
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}
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inline PixelFormat PixelFormatInfo::IdentifyFormat(const PixelFormatDescription& info)
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{
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for (auto&& [format, formatDesc] : s_pixelFormatInfos.iter_kv())
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{
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if (info.bitsPerPixel == formatDesc.bitsPerPixel && info.content == formatDesc.content &&
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info.redMask == formatDesc.redMask && info.greenMask == formatDesc.greenMask && info.blueMask == formatDesc.blueMask && info.alphaMask == formatDesc.alphaMask &&
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info.redType == formatDesc.redType && info.greenType == formatDesc.greenType && info.blueType == formatDesc.blueType && info.alphaType == formatDesc.alphaType)
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return format;
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}
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return PixelFormat::Undefined;
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}
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inline PixelFormat PixelFormatInfo::IdentifyFormat(std::string_view formatName)
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{
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for (auto&& [format, formatDesc] : s_pixelFormatInfos.iter_kv())
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{
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if (formatDesc.name == formatName)
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return format;
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}
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return PixelFormat::Undefined;
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}
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inline bool PixelFormatInfo::IsCompressed(PixelFormat format)
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{
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return s_pixelFormatInfos[format].IsCompressed();
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}
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inline bool PixelFormatInfo::IsConversionSupported(PixelFormat srcFormat, PixelFormat dstFormat)
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{
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if (srcFormat == dstFormat)
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return true;
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return s_convertFunctions[srcFormat][dstFormat] != nullptr;
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}
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inline bool PixelFormatInfo::IsValid(PixelFormat format)
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{
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return format != PixelFormat::Undefined;
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}
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inline void PixelFormatInfo::SetConvertFunction(PixelFormat srcFormat, PixelFormat dstFormat, ConvertFunction func)
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{
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s_convertFunctions[srcFormat][dstFormat] = func;
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}
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inline void PixelFormatInfo::SetFlipFunction(PixelFlipping flipping, PixelFormat format, FlipFunction func)
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{
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s_flipFunctions[format][flipping] = func;
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}
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}
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#include <Nazara/Utility/DebugOff.hpp>
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