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https://gitlab.winehq.org/wine/wine-gecko.git
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113 lines
4.8 KiB
C++
113 lines
4.8 KiB
C++
/* -*- Mode: C++; tab-width: 20; indent-tabs-mode: nil; c-basic-offset: 2 -*-
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* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#define SIMD_COMPILE_SSE2
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#include "FilterProcessingSIMD-inl.h"
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#ifndef USE_SSE2
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static_assert(false, "If this file is built, FilterProcessing.h should know about it!");
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#endif
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namespace mozilla {
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namespace gfx {
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void
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FilterProcessing::ExtractAlpha_SSE2(const IntSize& size, uint8_t* sourceData, int32_t sourceStride, uint8_t* alphaData, int32_t alphaStride)
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{
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ExtractAlpha_SIMD<__m128i>(size, sourceData, sourceStride, alphaData, alphaStride);
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}
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TemporaryRef<DataSourceSurface>
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FilterProcessing::ConvertToB8G8R8A8_SSE2(SourceSurface* aSurface)
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{
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return ConvertToB8G8R8A8_SIMD<__m128i>(aSurface);
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}
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TemporaryRef<DataSourceSurface>
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FilterProcessing::ApplyBlending_SSE2(DataSourceSurface* aInput1, DataSourceSurface* aInput2,
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BlendMode aBlendMode)
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{
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return ApplyBlending_SIMD<__m128i,__m128i,__m128i>(aInput1, aInput2, aBlendMode);
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}
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void
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FilterProcessing::ApplyMorphologyHorizontal_SSE2(uint8_t* aSourceData, int32_t aSourceStride,
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uint8_t* aDestData, int32_t aDestStride,
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const IntRect& aDestRect, int32_t aRadius,
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MorphologyOperator aOp)
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{
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ApplyMorphologyHorizontal_SIMD<__m128i,__m128i>(
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aSourceData, aSourceStride, aDestData, aDestStride, aDestRect, aRadius, aOp);
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}
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void
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FilterProcessing::ApplyMorphologyVertical_SSE2(uint8_t* aSourceData, int32_t aSourceStride,
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uint8_t* aDestData, int32_t aDestStride,
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const IntRect& aDestRect, int32_t aRadius,
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MorphologyOperator aOp)
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{
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ApplyMorphologyVertical_SIMD<__m128i,__m128i>(
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aSourceData, aSourceStride, aDestData, aDestStride, aDestRect, aRadius, aOp);
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}
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TemporaryRef<DataSourceSurface>
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FilterProcessing::ApplyColorMatrix_SSE2(DataSourceSurface* aInput, const Matrix5x4 &aMatrix)
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{
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return ApplyColorMatrix_SIMD<__m128i,__m128i,__m128i>(aInput, aMatrix);
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}
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void
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FilterProcessing::ApplyComposition_SSE2(DataSourceSurface* aSource, DataSourceSurface* aDest,
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CompositeOperator aOperator)
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{
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return ApplyComposition_SIMD<__m128i,__m128i,__m128i>(aSource, aDest, aOperator);
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}
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void
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FilterProcessing::SeparateColorChannels_SSE2(const IntSize &size, uint8_t* sourceData, int32_t sourceStride, uint8_t* channel0Data, uint8_t* channel1Data, uint8_t* channel2Data, uint8_t* channel3Data, int32_t channelStride)
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{
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SeparateColorChannels_SIMD<__m128i>(size, sourceData, sourceStride, channel0Data, channel1Data, channel2Data, channel3Data, channelStride);
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}
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void
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FilterProcessing::CombineColorChannels_SSE2(const IntSize &size, int32_t resultStride, uint8_t* resultData, int32_t channelStride, uint8_t* channel0Data, uint8_t* channel1Data, uint8_t* channel2Data, uint8_t* channel3Data)
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{
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CombineColorChannels_SIMD<__m128i>(size, resultStride, resultData, channelStride, channel0Data, channel1Data, channel2Data, channel3Data);
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}
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void
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FilterProcessing::DoPremultiplicationCalculation_SSE2(const IntSize& aSize,
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uint8_t* aTargetData, int32_t aTargetStride,
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uint8_t* aSourceData, int32_t aSourceStride)
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{
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DoPremultiplicationCalculation_SIMD<__m128i,__m128i,__m128i>(aSize, aTargetData, aTargetStride, aSourceData, aSourceStride);
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}
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void
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FilterProcessing::DoUnpremultiplicationCalculation_SSE2(
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const IntSize& aSize,
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uint8_t* aTargetData, int32_t aTargetStride,
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uint8_t* aSourceData, int32_t aSourceStride)
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{
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DoUnpremultiplicationCalculation_SIMD<__m128i,__m128i>(aSize, aTargetData, aTargetStride, aSourceData, aSourceStride);
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}
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TemporaryRef<DataSourceSurface>
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FilterProcessing::RenderTurbulence_SSE2(const IntSize &aSize, const Point &aOffset, const Size &aBaseFrequency,
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int32_t aSeed, int aNumOctaves, TurbulenceType aType, bool aStitch, const Rect &aTileRect)
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{
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return RenderTurbulence_SIMD<__m128,__m128i,__m128i>(aSize, aOffset, aBaseFrequency, aSeed, aNumOctaves, aType, aStitch, aTileRect);
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}
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TemporaryRef<DataSourceSurface>
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FilterProcessing::ApplyArithmeticCombine_SSE2(DataSourceSurface* aInput1, DataSourceSurface* aInput2, Float aK1, Float aK2, Float aK3, Float aK4)
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{
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return ApplyArithmeticCombine_SIMD<__m128i,__m128i,__m128i>(aInput1, aInput2, aK1, aK2, aK3, aK4);
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}
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} // namespace mozilla
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} // namespace gfx
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