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684 lines
27 KiB
C++
684 lines
27 KiB
C++
/*
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* Copyright (c) Contributors to the Open 3D Engine Project. For complete copyright and license terms please see the LICENSE at the root of this distribution.
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*
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* SPDX-License-Identifier: Apache-2.0 OR MIT
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*
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*/
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#include <AzCore/Debug/Trace.h>
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#include <AzCore/Math/MathUtils.h>
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#include <AzFramework/StringFunc/StringFunc.h>
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#include <ImageLoader/ImageLoaders.h>
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#include <Atom/ImageProcessing/ImageObject.h>
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#include <Processing/PixelFormatInfo.h>
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#include <Processing/DDSHeader.h>
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#include <Processing/ImageFlags.h>
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#include <QString>
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namespace ImageProcessingAtom
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{
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namespace DdsLoader
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{
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IImageObject* CreateImageFromHeaderLegacy(DDS_HEADER_LEGACY& header, DDS_HEADER_DXT10& exthead)
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{
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EPixelFormat eFormat = ePixelFormat_Unknown;
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AZ::u32 dwWidth, dwMips, dwHeight;
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AZ::u32 imageFlags = header.dwReserved1;
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AZ::Color colMinARGB, colMaxARGB;
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dwWidth = header.dwWidth;
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dwHeight = header.dwHeight;
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dwMips = 1;
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if (header.dwHeaderFlags & DDS_HEADER_FLAGS_MIPMAP)
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{
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dwMips = header.dwMipMapCount;
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}
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if ((header.dwSurfaceFlags & DDS_SURFACE_FLAGS_CUBEMAP) && (header.dwCubemapFlags & DDS_CUBEMAP_ALLFACES))
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{
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AZ_Assert(header.dwReserved1 & EIF_Cubemap, "Image flag should have cubemap flag");
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dwHeight *= 6;
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}
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colMinARGB = AZ::Color(header.cMinColor[0], header.cMinColor[1], header.cMinColor[2], header.cMinColor[3]);
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colMaxARGB = AZ::Color(header.cMaxColor[0], header.cMaxColor[1], header.cMaxColor[2], header.cMaxColor[3]);
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//get pixel format
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{
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// DX10 formats
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if (header.ddspf.dwFourCC == FOURCC_DX10)
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{
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AZ::u32 dxgiFormat = exthead.dxgiFormat;
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//remove the SRGB from dxgi format and add sRGB to image flag
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if (dxgiFormat == DXGI_FORMAT_R8G8B8A8_UNORM_SRGB)
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{
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dxgiFormat = DXGI_FORMAT_R8G8B8A8_UNORM;
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}
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else if (dxgiFormat == DXGI_FORMAT_BC1_UNORM_SRGB)
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{
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dxgiFormat = DXGI_FORMAT_BC1_UNORM;
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}
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else if (dxgiFormat == DXGI_FORMAT_BC2_UNORM_SRGB)
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{
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dxgiFormat = DXGI_FORMAT_BC2_UNORM;
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}
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else if (dxgiFormat == DXGI_FORMAT_BC3_UNORM_SRGB)
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{
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dxgiFormat = DXGI_FORMAT_BC3_UNORM;
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}
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else if (dxgiFormat == DXGI_FORMAT_BC7_UNORM_SRGB)
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{
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dxgiFormat = DXGI_FORMAT_BC7_UNORM;
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}
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//add rgb flag if the dxgiformat was changed (which means it was sRGB format) above
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if (dxgiFormat != exthead.dxgiFormat)
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{
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AZ_Assert(imageFlags & EIF_SRGBRead, "Image flags should have SRGBRead flag");
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imageFlags |= EIF_SRGBRead;
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}
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//check all the pixel formats and find matching one
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if (dxgiFormat != DXGI_FORMAT_UNKNOWN)
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{
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int i = 0;
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for (i; i < ePixelFormat_Count; i++)
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{
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const PixelFormatInfo* info = CPixelFormats::GetInstance().GetPixelFormatInfo((EPixelFormat)i);
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if (info->d3d10Format == dxgiFormat)
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{
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eFormat = (EPixelFormat)i;
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break;
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}
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}
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if (i == ePixelFormat_Count)
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{
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AZ_Error("Image Processing", false, "Unhandled d3d10 format: %d", dxgiFormat);
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return nullptr;
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}
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}
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}
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else
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{
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//for non-dx10 formats, use fourCC to find out its pixel formats
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//go through all pixel formats and find a match with the fourcc
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for (AZ::u32 formatIdx = 0; formatIdx < ePixelFormat_Count; formatIdx++)
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{
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const PixelFormatInfo* info = CPixelFormats::GetInstance().GetPixelFormatInfo((EPixelFormat)formatIdx);
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if (header.ddspf.dwFourCC == info->fourCC)
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{
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eFormat = (EPixelFormat)formatIdx;
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break;
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}
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}
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//legacy formats. This section is only used for load dds files converted by RC.exe
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//our save to dds file function won't use any of these fourcc
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if (eFormat == ePixelFormat_Unknown)
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{
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if (header.ddspf.dwFourCC == FOURCC_DXT1)
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{
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eFormat = ePixelFormat_BC1;
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}
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else if (header.ddspf.dwFourCC == FOURCC_DXT5)
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{
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eFormat = ePixelFormat_BC3;
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}
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else if (header.ddspf.dwFourCC == FOURCC_3DCP)
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{
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eFormat = ePixelFormat_BC4;
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}
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else if (header.ddspf.dwFourCC == FOURCC_3DC)
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{
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eFormat = ePixelFormat_BC5;
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}
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else if (header.ddspf.dwFourCC == DDS_FOURCC_R32F)
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{
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eFormat = ePixelFormat_R32F;
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}
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else if (header.ddspf.dwFourCC == DDS_FOURCC_G32R32F)
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{
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eFormat = ePixelFormat_R32G32F;
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}
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else if (header.ddspf.dwFourCC == DDS_FOURCC_A32B32G32R32F)
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{
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eFormat = ePixelFormat_R32G32B32A32F;
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}
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else if (header.ddspf.dwFourCC == DDS_FOURCC_R16F)
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{
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eFormat = ePixelFormat_R16F;
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}
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else if (header.ddspf.dwFourCC == DDS_FOURCC_G16R16F)
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{
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eFormat = ePixelFormat_R16G16F;
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}
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else if (header.ddspf.dwFourCC == DDS_FOURCC_A16B16G16R16F)
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{
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eFormat = ePixelFormat_R16G16B16A16F;
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}
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else if (header.ddspf.dwFourCC == DDS_FOURCC_A16B16G16R16)
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{
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eFormat = ePixelFormat_R16G16B16A16;
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}
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else if ((header.ddspf.dwFlags == DDS_RGBA || header.ddspf.dwFlags == DDS_RGB)
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&& header.ddspf.dwRGBBitCount == 32)
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{
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if (header.ddspf.dwRBitMask == 0x00ff0000)
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{
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eFormat = ePixelFormat_B8G8R8A8;
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}
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else
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{
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eFormat = ePixelFormat_R8G8B8A8;
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}
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}
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else if (header.ddspf.dwFlags == DDS_LUMINANCEA && header.ddspf.dwRGBBitCount == 8)
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{
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eFormat = ePixelFormat_R8G8;
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}
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else if (header.ddspf.dwFlags == DDS_LUMINANCE && header.ddspf.dwRGBBitCount == 8)
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{
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eFormat = ePixelFormat_A8;
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}
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else if ((header.ddspf.dwFlags == DDS_A || header.ddspf.dwFlags == DDS_A_ONLY || header.ddspf.dwFlags == (DDS_A | DDS_A_ONLY)) && header.ddspf.dwRGBBitCount == 8)
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{
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eFormat = ePixelFormat_A8;
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}
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}
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}
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}
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if (eFormat == ePixelFormat_Unknown)
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{
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AZ_Error("Image Processing", false, "Unhandled dds pixel format fourCC: %d, flags: %d",
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header.ddspf.dwFourCC, header.ddspf.dwFlags);
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return nullptr;
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}
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IImageObject* newImage = IImageObject::CreateImage(dwWidth, dwHeight, dwMips, eFormat);
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if (dwMips != newImage->GetMipCount())
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{
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AZ_Error("Image Processing", false, "Mipcount from image data doesn't match image size and pixelformat");
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delete newImage;
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return nullptr;
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}
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//set properties
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newImage->SetImageFlags(imageFlags);
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newImage->SetAverageBrightness(header.fAvgBrightness);
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newImage->SetColorRange(colMinARGB, colMaxARGB);
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newImage->SetNumPersistentMips(header.bNumPersistentMips);
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return newImage;
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}
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bool IsExtensionSupported(const char* extension)
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{
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QString ext = QString(extension).toLower();
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// This is the list of file extensions supported by this loader
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return ext == "dds";
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}
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IImageObject* LoadImageFromFileLegacy(const AZStd::string& filename)
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{
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AZ::IO::SystemFile file;
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file.Open(filename.c_str(), AZ::IO::SystemFile::SF_OPEN_READ_ONLY);
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AZ::IO::SystemFileStream fileLoadStream(&file, true);
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if (!fileLoadStream.IsOpen())
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{
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AZ_Warning("Image Processing", false, "%s: failed to open file %s", __FUNCTION__, filename.c_str());
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return nullptr;
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}
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AZStd::string ext = "";
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AzFramework::StringFunc::Path::GetExtension(filename.c_str(), ext, false);
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bool isAlphaImage = (ext == "a");
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IImageObject* imageObj = LoadImageFromFileStreamLegacy(fileLoadStream);
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//load mips from seperated files if it's splitted
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if (imageObj && imageObj->HasImageFlags(EIF_Splitted))
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{
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AZStd::string baseName;
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if (isAlphaImage)
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{
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baseName = filename.substr(0, filename.size() - 2);
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}
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else
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{
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baseName = filename;
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}
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AZ::u32 externalMipCount = 0;
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if (imageObj->GetNumPersistentMips() < imageObj->GetMipCount())
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{
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externalMipCount = imageObj->GetMipCount() - imageObj->GetNumPersistentMips();
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}
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//load other mips from files with number extensions
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for (AZ::u32 mipIdx = 1; mipIdx <= externalMipCount; mipIdx++)
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{
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AZ::u32 mip = externalMipCount - mipIdx;
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AZStd::string mipFileName = AZStd::string::format("%s.%d%s", baseName.c_str(), mipIdx, isAlphaImage ? "a" : "");
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AZ::IO::SystemFile mipFile;
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mipFile.Open(mipFileName.c_str(), AZ::IO::SystemFile::SF_OPEN_READ_ONLY);
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AZ::IO::SystemFileStream mipFileLoadStream(&mipFile, true);
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if (!mipFileLoadStream.IsOpen())
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{
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AZ_Warning("Image Processing", false, "%s: failed to open mip file %s", __FUNCTION__, mipFileName.c_str());
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break;
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}
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AZ::u32 pitch;
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AZ::u8* mem;
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imageObj->GetImagePointer(mip, mem, pitch);
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AZ::u32 bufSize = imageObj->GetMipBufSize(mip);
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mipFileLoadStream.Read(bufSize, mem);
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}
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}
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return imageObj;
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}
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IImageObject* LoadImageFromFileStreamLegacy(AZ::IO::SystemFileStream& fileLoadStream)
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{
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if (fileLoadStream.GetLength() - fileLoadStream.GetCurPos() < sizeof(DDS_FILE_DESC_LEGACY))
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{
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AZ_Error("Image Processing", false, "%s: Trying to load a none-DDS file", __FUNCTION__);
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return nullptr;
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}
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DDS_FILE_DESC_LEGACY desc;
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DDS_HEADER_DXT10 exthead;
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AZ::IO::SizeType startPos = fileLoadStream.GetCurPos();
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fileLoadStream.Read(sizeof(desc.dwMagic), &desc.dwMagic);
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if (desc.dwMagic != FOURCC_DDS)
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{
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desc.dwMagic = FOURCC_DDS;
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//the old cry .a file doesn't have "DDS " in the beginning of the file.
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//so reset to previous position
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fileLoadStream.Seek(startPos, AZ::IO::GenericStream::ST_SEEK_BEGIN);
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}
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fileLoadStream.Read(sizeof(desc.header), &desc.header);
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if (!desc.IsValid())
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{
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AZ_Error("Image Processing", false, "%s: Trying to load a none-DDS file", __FUNCTION__);
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return nullptr;
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}
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if (desc.header.IsDX10Ext())
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{
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fileLoadStream.Read(sizeof(exthead), &exthead);
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}
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IImageObject* outImage = CreateImageFromHeaderLegacy(desc.header, exthead);
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if (outImage == nullptr)
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{
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return nullptr;
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}
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//load mip data
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AZ::u32 mipStart = 0;
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//There are at least three lowest mips are in the file if it was splitted. This is to load splitted dds file exported by legacy rc.exe
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int numPersistentMips = outImage->GetNumPersistentMips();
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if (numPersistentMips == 0 && outImage->HasImageFlags(EIF_Splitted))
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{
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outImage->SetNumPersistentMips(3);
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}
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if (outImage->HasImageFlags(EIF_Splitted)
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&& outImage->GetMipCount() > outImage->GetNumPersistentMips())
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{
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mipStart = outImage->GetMipCount() - outImage->GetNumPersistentMips();
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}
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AZ::u32 faces = 1;
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if (outImage->HasImageFlags(EIF_Cubemap))
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{
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faces = 6;
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}
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for (AZ::u32 face = 0; face < faces; face++)
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{
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for (AZ::u32 mip = mipStart; mip < outImage->GetMipCount(); ++mip)
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{
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AZ::u32 pitch;
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AZ::u8* mem;
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outImage->GetImagePointer(mip, mem, pitch);
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AZ::u32 faceBufSize = outImage->GetMipBufSize(mip) / faces;
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fileLoadStream.Read(faceBufSize, mem + faceBufSize * face);
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}
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}
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return outImage;
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}
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IImageObject* LoadAttachedImageFromDdsFileLegacy(const AZStd::string& filename, IImageObjectPtr originImage)
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{
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if (originImage == nullptr)
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{
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return nullptr;
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}
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AZ_Assert(originImage->HasImageFlags(EIF_AttachedAlpha),
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"this function should only be called for origin image loaded from same file with attached alpha flag");
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AZ::IO::SystemFile file;
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file.Open(filename.c_str(), AZ::IO::SystemFile::SF_OPEN_READ_ONLY);
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AZ::IO::SystemFileStream fileLoadStream(&file, true);
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if (!fileLoadStream.IsOpen())
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{
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AZ_Warning("Image Processing", false, "%s: failed to open file %s", __FUNCTION__, filename.c_str());
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return nullptr;
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}
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DDS_FILE_DESC_LEGACY desc;
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DDS_HEADER_DXT10 exthead;
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fileLoadStream.Read(sizeof(desc), &desc);
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if (desc.dwMagic != FOURCC_DDS)
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{
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AZ_Error("Image Processing", false, "%s:Trying to load a none-DDS file", __FUNCTION__);
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return nullptr;
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}
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if (desc.header.IsDX10Ext())
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{
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fileLoadStream.Read(sizeof(exthead), &exthead);
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}
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//skip size for originImage's mip data
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for (AZ::u32 mip = 0; mip < originImage->GetMipCount(); ++mip)
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{
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AZ::u32 bufSize = originImage->GetMipBufSize(mip);
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fileLoadStream.Seek(bufSize, AZ::IO::GenericStream::ST_SEEK_CUR);
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}
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IImageObject* alphaImage = nullptr;
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AZ::u32 marker = 0;
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fileLoadStream.Read(4, &marker);
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if (marker == FOURCC_CExt) // marker for the start of O3DE Extended data
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{
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fileLoadStream.Read(4, &marker);
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if (FOURCC_AttC == marker) // Attached Channel chunk
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{
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AZ::u32 size = 0;
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fileLoadStream.Read(4, &size);
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alphaImage = LoadImageFromFileStreamLegacy(fileLoadStream);
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fileLoadStream.Read(4, &marker);
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}
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if (FOURCC_CEnd == marker) // marker for the end of O3DE Extended data
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{
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fileLoadStream.Read(4, &marker);
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}
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}
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return alphaImage;
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}
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// Create an image object from standard dds header
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IImageObject* CreateImageFromHeader(DDS_HEADER& header, DDS_HEADER_DXT10& exthead)
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{
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if ((header.dwCaps & DDS_SURFACE_FLAGS_TEXTURE) != DDS_SURFACE_FLAGS_TEXTURE ||
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(header.dwFlags & DDS_HEADER_FLAGS_TEXTURE) != DDS_HEADER_FLAGS_TEXTURE)
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{
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AZ_Error("Image Processing", false, "This dds file is not a valid texture");
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return nullptr;
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}
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EPixelFormat format = ePixelFormat_Unknown;
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uint32_t imageFlags = 0;
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uint32_t width = header.dwWidth;
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uint32_t height = header.dwHeight;
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uint32_t mips = 1;
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if (header.dwFlags & DDS_HEADER_FLAGS_MIPMAP)
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{
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mips = header.dwMipMapCount;
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}
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if ((header.dwCaps & DDS_SURFACE_FLAGS_CUBEMAP) && (header.dwCaps_2 & DDS_CUBEMAP))
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{
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if ((header.dwCaps_2 & DDS_CUBEMAP_ALLFACES) != DDS_CUBEMAP_ALLFACES)
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{
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AZ_Error("Image Processing", false, "Only support cubemap in dds file with all faces");
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return nullptr;
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}
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imageFlags |= EIF_Cubemap;
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height *= 6;
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}
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// Get pixel format
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if (header.ddspf.dwFlags & DDS_FOURCC)
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{
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// dx10 formats
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if (header.ddspf.dwFourCC == FOURCC_DX10)
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{
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uint32_t dxgiFormat = exthead.dxgiFormat;
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//remove the SRGB from dxgi format and add sRGB to image flag
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if (dxgiFormat == DXGI_FORMAT_R8G8B8A8_UNORM_SRGB)
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{
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dxgiFormat = DXGI_FORMAT_R8G8B8A8_UNORM;
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}
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else if (dxgiFormat == DXGI_FORMAT_BC1_UNORM_SRGB)
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{
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dxgiFormat = DXGI_FORMAT_BC1_UNORM;
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}
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else if (dxgiFormat == DXGI_FORMAT_BC2_UNORM_SRGB)
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{
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dxgiFormat = DXGI_FORMAT_BC2_UNORM;
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}
|
|
else if (dxgiFormat == DXGI_FORMAT_BC3_UNORM_SRGB)
|
|
{
|
|
dxgiFormat = DXGI_FORMAT_BC3_UNORM;
|
|
}
|
|
else if (dxgiFormat == DXGI_FORMAT_BC7_UNORM_SRGB)
|
|
{
|
|
dxgiFormat = DXGI_FORMAT_BC7_UNORM;
|
|
}
|
|
|
|
//add rgb flag if the dxgiformat was changed (which means it was sRGB format) above
|
|
if (dxgiFormat != exthead.dxgiFormat)
|
|
{
|
|
imageFlags |= EIF_SRGBRead;
|
|
}
|
|
|
|
//check all the pixel formats and find matching one
|
|
if (dxgiFormat != DXGI_FORMAT_UNKNOWN)
|
|
{
|
|
uint32_t i = 0;
|
|
for (i; i < ePixelFormat_Count; i++)
|
|
{
|
|
const PixelFormatInfo* info = CPixelFormats::GetInstance().GetPixelFormatInfo((EPixelFormat)i);
|
|
if (info->d3d10Format == dxgiFormat)
|
|
{
|
|
format = (EPixelFormat)i;
|
|
break;
|
|
}
|
|
}
|
|
if (i == ePixelFormat_Count)
|
|
{
|
|
AZ_Error("Image Processing", false, "Unhandled d3d10 format: %d", dxgiFormat);
|
|
return nullptr;
|
|
}
|
|
}
|
|
}
|
|
else if (header.ddspf.dwFourCC == FOURCC_DXT1)
|
|
{
|
|
format = ePixelFormat_BC1;
|
|
}
|
|
else if (header.ddspf.dwFourCC == FOURCC_DXT5)
|
|
{
|
|
format = ePixelFormat_BC3;
|
|
}
|
|
else if (header.ddspf.dwFourCC == FOURCC_3DCP)
|
|
{
|
|
format = ePixelFormat_BC4;
|
|
}
|
|
else if (header.ddspf.dwFourCC == FOURCC_3DC)
|
|
{
|
|
format = ePixelFormat_BC5;
|
|
}
|
|
else if (header.ddspf.dwFourCC == DDS_FOURCC_R32F)
|
|
{
|
|
format = ePixelFormat_R32F;
|
|
}
|
|
else if (header.ddspf.dwFourCC == DDS_FOURCC_G32R32F)
|
|
{
|
|
format = ePixelFormat_R32G32F;
|
|
}
|
|
else if (header.ddspf.dwFourCC == DDS_FOURCC_A32B32G32R32F)
|
|
{
|
|
format = ePixelFormat_R32G32B32A32F;
|
|
}
|
|
else if (header.ddspf.dwFourCC == DDS_FOURCC_R16F)
|
|
{
|
|
format = ePixelFormat_R16F;
|
|
}
|
|
else if (header.ddspf.dwFourCC == DDS_FOURCC_G16R16F)
|
|
{
|
|
format = ePixelFormat_R16G16F;
|
|
}
|
|
else if (header.ddspf.dwFourCC == DDS_FOURCC_A16B16G16R16F)
|
|
{
|
|
format = ePixelFormat_R16G16B16A16F;
|
|
}
|
|
else if (header.ddspf.dwFourCC == DDS_FOURCC_A16B16G16R16)
|
|
{
|
|
format = ePixelFormat_R16G16B16A16;
|
|
}
|
|
}
|
|
else
|
|
{
|
|
if ((header.ddspf.dwFlags == DDS_RGBA || header.ddspf.dwFlags == DDS_RGB))
|
|
{
|
|
if (header.ddspf.dwRBitMask == 0x00ff0000 || header.ddspf.dwGBitMask == 0x00ff0000 || header.ddspf.dwBBitMask == 0x00ff0000)
|
|
{
|
|
format = (header.ddspf.dwRGBBitCount == 32) ? ePixelFormat_B8G8R8A8 : ePixelFormat_B8G8R8;
|
|
}
|
|
else if (header.ddspf.dwBBitMask == 0x00ff0000 || header.ddspf.dwGBitMask == 0x00ff0000 || header.ddspf.dwRBitMask == 0x00ff0000)
|
|
{
|
|
format = (header.ddspf.dwRGBBitCount == 32) ? ePixelFormat_R8G8B8A8 : ePixelFormat_R8G8B8;
|
|
}
|
|
}
|
|
else if (header.ddspf.dwFlags == DDS_LUMINANCEA && header.ddspf.dwRGBBitCount == 8)
|
|
{
|
|
format = ePixelFormat_R8G8;
|
|
}
|
|
else if (header.ddspf.dwFlags == DDS_LUMINANCE && header.ddspf.dwRGBBitCount == 8)
|
|
{
|
|
format = ePixelFormat_A8;
|
|
}
|
|
else if ((header.ddspf.dwFlags == DDS_A || header.ddspf.dwFlags == DDS_A_ONLY || header.ddspf.dwFlags == (DDS_A | DDS_A_ONLY)) && header.ddspf.dwRGBBitCount == 8)
|
|
{
|
|
format = ePixelFormat_A8;
|
|
}
|
|
}
|
|
|
|
if (format == ePixelFormat_Unknown)
|
|
{
|
|
AZ_Error("Image Processing", false, "Unhandled dds pixel format fourCC: %d, flags: %d",
|
|
header.ddspf.dwFourCC, header.ddspf.dwFlags);
|
|
return nullptr;
|
|
}
|
|
|
|
// Resize to block size for compressed format. This could happened to those 1x1 bc1 dds files
|
|
// [GFX TODO] [ATOM-181] We may want to add padding support for bc formats so we can remove this temporary fix
|
|
const PixelFormatInfo* const pFormatInfo = CPixelFormats::GetInstance().GetPixelFormatInfo(format);
|
|
if (width < pFormatInfo->blockWidth && height < pFormatInfo->blockHeight)
|
|
{
|
|
width = pFormatInfo->blockWidth;
|
|
height = pFormatInfo->blockHeight;
|
|
}
|
|
|
|
IImageObject* newImage = IImageObject::CreateImage(width, height, mips, format);
|
|
|
|
//set properties
|
|
newImage->SetImageFlags(imageFlags);
|
|
|
|
return newImage;
|
|
}
|
|
|
|
IImageObject* LoadImageFromFile(const AZStd::string& filename)
|
|
{
|
|
AZ::IO::SystemFile file;
|
|
file.Open(filename.c_str(), AZ::IO::SystemFile::SF_OPEN_READ_ONLY);
|
|
|
|
AZ::IO::SystemFileStream fileLoadStream(&file, true);
|
|
if (!fileLoadStream.IsOpen())
|
|
{
|
|
AZ_Warning("Image Processing", false, "%s: failed to open file %s", __FUNCTION__, filename.c_str());
|
|
return nullptr;
|
|
}
|
|
|
|
DDS_FILE_DESC desc;
|
|
DDS_HEADER_DXT10 exthead;
|
|
|
|
fileLoadStream.Read(sizeof(desc), &desc);
|
|
|
|
if (desc.dwMagic != FOURCC_DDS || !desc.IsValid())
|
|
{
|
|
AZ_Error("Image Processing", false, "%s: Trying to load a none-DDS file", __FUNCTION__);
|
|
return nullptr;
|
|
}
|
|
|
|
if (desc.header.IsDX10Ext())
|
|
{
|
|
fileLoadStream.Read(sizeof(exthead), &exthead);
|
|
}
|
|
|
|
IImageObject* outImage = CreateImageFromHeader(desc.header, exthead);
|
|
|
|
if (outImage == nullptr)
|
|
{
|
|
return nullptr;
|
|
}
|
|
|
|
AZ::u32 faces = 1;
|
|
if (outImage->HasImageFlags(EIF_Cubemap))
|
|
{
|
|
faces = 6;
|
|
}
|
|
|
|
for (AZ::u32 face = 0; face < faces; face++)
|
|
{
|
|
for (AZ::u32 mip = 0; mip < outImage->GetMipCount(); ++mip)
|
|
{
|
|
AZ::u32 pitch;
|
|
AZ::u8* mem;
|
|
outImage->GetImagePointer(mip, mem, pitch);
|
|
AZ::u32 faceBufSize = outImage->GetMipBufSize(mip) / faces;
|
|
|
|
if (fileLoadStream.GetLength() - fileLoadStream.GetCurPos() < faceBufSize)
|
|
{
|
|
delete outImage;
|
|
AZ_Error("Image Processing", false, "DdsLoader: load mip data error");
|
|
return nullptr;
|
|
}
|
|
fileLoadStream.Read(faceBufSize, mem + faceBufSize * face);
|
|
}
|
|
}
|
|
|
|
return outImage;
|
|
}
|
|
}// namespace ImageDDS
|
|
} //namespace ImageProcessingAtom
|