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https://gitlab.winehq.org/wine/wine-gecko.git
synced 2024-09-13 09:24:08 -07:00
Backed out 2 changesets (bug 919936) for Windows build bustage
Backed out changeset 2f879cfc861f (bug 919936) Backed out changeset 8ce7c4424b8a (bug 919936)
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@ -1,159 +0,0 @@
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/* vim:set ts=2 sw=2 sts=2 et: */
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/* Any copyright is dedicated to the Public Domain.
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* http://creativecommons.org/publicdomain/zero/1.0/
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*/
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#include "gtest/gtest.h"
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#include "gmock/gmock.h"
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#include "gfx2DGlue.h"
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#include "gfxImageSurface.h"
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#include "gfxTypes.h"
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#include "ImageContainer.h"
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#include "mozilla/layers/Compositor.h"
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#include "LayerTestUtils.h"
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#include "mozilla/layers/CompositorOGL.h"
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#include "mozilla/layers/BasicCompositor.h"
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#ifdef XP_WIN
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#include "mozilla/layers/CompositorD3D11.h"
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#include "mozilla/layers/CompositorD3D9.h"
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#endif
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namespace mozilla {
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namespace layers {
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Compositor*
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CreateCompositor(LayersBackend aBackend, nsIWidget* aWidget)
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{
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switch (aBackend) {
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case LAYERS_BASIC: return new BasicCompositor(aWidget);
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case LAYERS_OPENGL: return new CompositorOGL(aWidget, 800, 600, false);
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#ifdef XP_WIN
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case LAYERS_D3D11: return new CompositorD3D11(aWidget);
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case LAYERS_D3D9: return new CompositorD3D9(aWidget);
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#endif
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}
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return nullptr;
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}
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// fills the surface with values betwee 0 and 100.
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void
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SetupSurface(gfx::DataSourceSurface* surface)
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{
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int bpp = gfx::BytesPerPixel(surface->GetFormat());
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int stride = surface->Stride();
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uint8_t val = 0;
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uint8_t* data = surface->GetData();
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for (int y = 0; y < surface->GetSize().height; ++y) {
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for (int x = 0; x < surface->GetSize().width; ++x) {
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for (int b = 0; b < bpp; ++b) {
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data[y*stride + x*bpp + b] = val;
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if (val == 100) {
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val = 0;
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} else {
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++val;
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}
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}
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}
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}
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}
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// fills the surface with values betwee 0 and 100.
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void
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SetupSurface(gfxImageSurface* surface)
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{
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int bpp = gfxASurface::BytePerPixelFromFormat(surface->Format());
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int stride = surface->Stride();
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uint8_t val = 0;
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uint8_t* data = surface->Data();
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for (int y = 0; y < surface->Height(); ++y) {
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for (int x = 0; x < surface->Width(); ++x) {
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for (int b = 0; b < bpp; ++b) {
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data[y*stride + x*bpp + b] = val;
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if (val == 100) {
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val = 0;
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} else {
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++val;
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}
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}
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}
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}
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}
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// return true if two surfaces contain the same data
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void
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AssertSurfacesEqual(gfx::DataSourceSurface* surface1,
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gfx::DataSourceSurface* surface2)
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{
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ASSERT_EQ(surface1->GetSize(), surface2->GetSize());
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ASSERT_EQ(surface1->GetFormat(), surface2->GetFormat());
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uint8_t* data1 = surface1->GetData();
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uint8_t* data2 = surface2->GetData();
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int stride1 = surface1->Stride();
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int stride2 = surface2->Stride();
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int bpp = gfx::BytesPerPixel(surface1->GetFormat());
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for (int y = 0; y < surface1->GetSize().height; ++y) {
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for (int x = 0; x < surface1->GetSize().width; ++x) {
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for (int b = 0; b < bpp; ++b) {
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ASSERT_EQ(data1[y*stride1 + x*bpp + b],
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data2[y*stride2 + x*bpp + b]);
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}
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}
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}
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}
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// return true if two surfaces contain the same data
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void
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AssertSurfacesEqual(gfxImageSurface* surface1,
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gfxImageSurface* surface2)
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{
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ASSERT_EQ(surface1->GetSize(), surface2->GetSize());
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ASSERT_EQ(surface1->Format(), surface2->Format());
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uint8_t* data1 = surface1->Data();
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uint8_t* data2 = surface2->Data();
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int stride1 = surface1->Stride();
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int stride2 = surface2->Stride();
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int bpp = gfxASurface::BytePerPixelFromFormat(surface1->Format());
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for (int y = 0; y < surface1->Height(); ++y) {
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for (int x = 0; x < surface1->Width(); ++x) {
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for (int b = 0; b < bpp; ++b) {
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ASSERT_EQ(data1[y*stride1 + x*bpp + b],
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data2[y*stride2 + x*bpp + b]);
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}
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}
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}
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}
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// Same as above, for YCbCr surfaces
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void
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AssertYCbCrSurfacesEqual(PlanarYCbCrData* surface1,
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PlanarYCbCrData* surface2)
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{
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ASSERT_EQ(surface1->mYSize, surface2->mYSize);
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ASSERT_EQ(surface1->mCbCrSize, surface2->mCbCrSize);
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ASSERT_EQ(surface1->mStereoMode, surface2->mStereoMode);
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ASSERT_EQ(surface1->mPicSize, surface2->mPicSize);
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for (int y = 0; y < surface1->mYSize.height; ++y) {
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for (int x = 0; x < surface1->mYSize.width; ++x) {
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ASSERT_EQ(surface1->mYChannel[y*surface1->mYStride + x*(1+surface1->mYSkip)],
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surface2->mYChannel[y*surface2->mYStride + x*(1+surface2->mYSkip)]);
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}
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}
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for (int y = 0; y < surface1->mCbCrSize.height; ++y) {
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for (int x = 0; x < surface1->mCbCrSize.width; ++x) {
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ASSERT_EQ(surface1->mCbChannel[y*surface1->mCbCrStride + x*(1+surface1->mCbSkip)],
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surface2->mCbChannel[y*surface2->mCbCrStride + x*(1+surface2->mCbSkip)]);
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ASSERT_EQ(surface1->mCrChannel[y*surface1->mCbCrStride + x*(1+surface1->mCrSkip)],
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surface2->mCrChannel[y*surface2->mCbCrStride + x*(1+surface2->mCrSkip)]);
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}
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}
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}
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} // layers
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} // mozilla
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@ -1,48 +0,0 @@
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/* vim:set ts=2 sw=2 sts=2 et: */
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/* Any copyright is dedicated to the Public Domain.
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* http://creativecommons.org/publicdomain/zero/1.0/
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*/
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#ifndef TEST_GFX_TEXTURES
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#define TEST_GFX_TEXTURES
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#include "CompositorTypes.h"
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class gfxImageSurface;
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class nsIWidget;
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namespace mozilla {
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namespace gfx {
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class DataSourceSurface;
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}
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namespace layers {
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class PlanarYCbCrData;
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class Compositor;
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Compositor* CreateCompositor(LayersBackend aBakend, nsIWidget* aWidget);
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/// Fills the surface with values between 0 and 100.
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void SetupSurface(gfxImageSurface* surface);
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/// Fills the surface with values between 0 and 100.
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void SetupSurface(gfx::DataSourceSurface* surface);
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/// Returns true if two surfaces contain the same data
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void AssertSurfacesEqual(gfx::DataSourceSurface* surface1,
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gfx::DataSourceSurface* surface2);
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/// Returns true if two surfaces contain the same data
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void AssertSurfacesEqual(gfxImageSurface* surface1,
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gfxImageSurface* surface2);
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/// Same as above, for YCbCr surfaces
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void AssertYCbCrSurfacesEqual(PlanarYCbCrData* surface1,
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PlanarYCbCrData* surface2);
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} // layers
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} // mozilla
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#endif
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#include "gfx2DGlue.h"
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#include "gfxImageSurface.h"
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#include "gfxTypes.h"
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#include "ImageContainer.h"
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#include "LayerTestUtils.h"
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#include "mozilla/layers/YCbCrImageDataSerializer.h"
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using namespace gfx;
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using namespace mozilla;
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using namespace mozilla::layers;
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@ -31,6 +29,50 @@ using namespace mozilla::layers;
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* image formats.
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*/
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// fills the surface with values betwee 0 and 100.
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void SetupSurface(gfxImageSurface* surface) {
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int bpp = gfxASurface::BytePerPixelFromFormat(surface->Format());
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int stride = surface->Stride();
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uint8_t val = 0;
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uint8_t* data = surface->Data();
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for (int y = 0; y < surface->Height(); ++y) {
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for (int x = 0; x < surface->Height(); ++x) {
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for (int b = 0; b < bpp; ++b) {
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data[y*stride + x*bpp + b] = val;
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if (val == 100) {
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val = 0;
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} else {
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++val;
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}
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}
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}
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}
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}
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// return true if two surfaces contain the same data
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void AssertSurfacesEqual(gfxImageSurface* surface1,
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gfxImageSurface* surface2)
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{
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ASSERT_EQ(surface1->GetSize(), surface2->GetSize());
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ASSERT_EQ(surface1->Format(), surface2->Format());
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uint8_t* data1 = surface1->Data();
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uint8_t* data2 = surface2->Data();
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int stride1 = surface1->Stride();
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int stride2 = surface2->Stride();
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int bpp = gfxASurface::BytePerPixelFromFormat(surface1->Format());
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for (int y = 0; y < surface1->Height(); ++y) {
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for (int x = 0; x < surface1->Width(); ++x) {
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for (int b = 0; b < bpp; ++b) {
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ASSERT_EQ(data1[y*stride1 + x*bpp + b],
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data2[y*stride2 + x*bpp + b]);
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}
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}
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}
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}
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// Run the test for a texture client and a surface
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void TestTextureClientSurface(TextureClient* texture, gfxImageSurface* surface) {
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@ -77,74 +119,6 @@ void TestTextureClientSurface(TextureClient* texture, gfxImageSurface* surface)
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host->DeallocateSharedData();
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}
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// Same as above, for YCbCr surfaces
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void TestTextureClientYCbCr(TextureClient* client, PlanarYCbCrData& ycbcrData) {
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// client allocation
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ASSERT_TRUE(client->AsTextureClientYCbCr() != nullptr);
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TextureClientYCbCr* texture = client->AsTextureClientYCbCr();
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texture->AllocateForYCbCr(ToIntSize(ycbcrData.mYSize),
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ToIntSize(ycbcrData.mCbCrSize),
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ycbcrData.mStereoMode);
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ASSERT_TRUE(client->IsAllocated());
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// client painting
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texture->UpdateYCbCr(ycbcrData);
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ASSERT_TRUE(client->Lock(OPEN_READ_ONLY));
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client->Unlock();
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// client serialization
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client->SetID(1);
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SurfaceDescriptor descriptor;
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ASSERT_TRUE(client->ToSurfaceDescriptor(descriptor));
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ASSERT_NE(descriptor.type(), SurfaceDescriptor::Tnull_t);
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// host deserialization
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RefPtr<TextureHost> textureHost = CreateBackendIndependentTextureHost(client->GetID(),
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descriptor, nullptr,
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client->GetFlags());
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RefPtr<BufferTextureHost> host = static_cast<BufferTextureHost*>(textureHost.get());
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ASSERT_TRUE(host.get() != nullptr);
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ASSERT_EQ(host->GetFlags(), client->GetFlags());
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ASSERT_EQ(host->GetID(), client->GetID());
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// This will work iff the compositor is not BasicCompositor
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ASSERT_EQ(host->GetFormat(), mozilla::gfx::FORMAT_YUV);
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// host read
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ASSERT_TRUE(host->Lock());
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ASSERT_TRUE(host->GetFormat() == mozilla::gfx::FORMAT_YUV);
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YCbCrImageDataDeserializer yuvDeserializer(host->GetBuffer());
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ASSERT_TRUE(yuvDeserializer.IsValid());
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PlanarYCbCrData data;
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data.mYChannel = yuvDeserializer.GetYData();
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data.mCbChannel = yuvDeserializer.GetCbData();
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data.mCrChannel = yuvDeserializer.GetCrData();
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data.mYStride = yuvDeserializer.GetYStride();
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data.mCbCrStride = yuvDeserializer.GetCbCrStride();
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data.mStereoMode = yuvDeserializer.GetStereoMode();
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data.mYSize = yuvDeserializer.GetYSize();
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data.mCbCrSize = yuvDeserializer.GetCbCrSize();
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data.mYSkip = 0;
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data.mCbSkip = 0;
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data.mCrSkip = 0;
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data.mPicSize = data.mYSize;
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data.mPicX = 0;
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data.mPicY = 0;
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AssertYCbCrSurfacesEqual(&ycbcrData, &data);
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host->Unlock();
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// host deallocation
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host->DeallocateSharedData();
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}
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TEST(Layers, TextureSerialization) {
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// the test is run on all the following image formats
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gfxImageFormat formats[3] = {
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@ -168,38 +142,3 @@ TEST(Layers, TextureSerialization) {
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// XXX - Test more texture client types.
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}
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}
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TEST(Layers, TextureYCbCrSerialization) {
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RefPtr<gfxImageSurface> ySurface = new gfxImageSurface(gfxIntSize(400,300), gfxImageFormatA8);
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RefPtr<gfxImageSurface> cbSurface = new gfxImageSurface(gfxIntSize(200,150), gfxImageFormatA8);
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RefPtr<gfxImageSurface> crSurface = new gfxImageSurface(gfxIntSize(200,150), gfxImageFormatA8);
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SetupSurface(ySurface.get());
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SetupSurface(cbSurface.get());
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SetupSurface(crSurface.get());
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PlanarYCbCrData clientData;
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clientData.mYChannel = ySurface->Data();
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clientData.mCbChannel = cbSurface->Data();
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clientData.mCrChannel = crSurface->Data();
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clientData.mYSize = ySurface->GetSize();
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clientData.mPicSize = ySurface->GetSize();
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clientData.mCbCrSize = cbSurface->GetSize();
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clientData.mYStride = ySurface->Stride();
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clientData.mCbCrStride = cbSurface->Stride();
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clientData.mStereoMode = STEREO_MODE_MONO;
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clientData.mYSkip = 0;
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clientData.mCbSkip = 0;
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clientData.mCrSkip = 0;
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clientData.mCrSkip = 0;
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clientData.mPicX = 0;
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clientData.mPicX = 0;
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RefPtr<TextureClient> client
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= new MemoryTextureClient(nullptr,
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mozilla::gfx::FORMAT_YUV,
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TEXTURE_FLAGS_DEFAULT);
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TestTextureClientYCbCr(client, clientData);
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// XXX - Test more texture client types.
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}
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# Test works but it doesn't assert anything
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#'gfxTextRunPerfTest.cpp',
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'gfxWordCacheTest.cpp',
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'LayerTestUtils.cpp',
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'TestAsyncPanZoomController.cpp',
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'TestLayers.cpp',
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'TestTiledLayerBuffer.cpp',
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