4e18413b78
The general SkImage features seem to be tested in ImageTest instead of SurfaceTest. Helps in reviewing further reformatting of SurfaceTest. BUG=skia:2992 Review URL: https://codereview.chromium.org/1452123002
611 lines
24 KiB
C++
611 lines
24 KiB
C++
/*
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* Copyright 2013 Google Inc.
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*
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* Use of this source code is governed by a BSD-style license that can be
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* found in the LICENSE file.
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*/
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#include "SkCanvas.h"
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#include "SkData.h"
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#include "SkDevice.h"
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#include "SkImageEncoder.h"
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#include "SkImage_Base.h"
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#include "SkPath.h"
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#include "SkRRect.h"
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#include "SkSurface.h"
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#include "SkUtils.h"
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#include "Test.h"
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#if SK_SUPPORT_GPU
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#include "GrContextFactory.h"
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#include "GrTest.h"
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#else
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class GrContextFactory;
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class GrContext;
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#endif
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enum SurfaceType {
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kRaster_SurfaceType,
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kRasterDirect_SurfaceType,
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kGpu_SurfaceType,
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kGpuScratch_SurfaceType,
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kLastSurfaceType = kGpuScratch_SurfaceType
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};
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static const int kSurfaceTypeCnt = kLastSurfaceType + 1;
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static void release_storage(void* pixels, void* context) {
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SkASSERT(pixels == context);
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sk_free(pixels);
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}
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static SkSurface* create_surface(SurfaceType surfaceType, GrContext* context,
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SkAlphaType at = kPremul_SkAlphaType,
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SkImageInfo* requestedInfo = nullptr) {
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const SkImageInfo info = SkImageInfo::MakeN32(10, 10, at);
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if (requestedInfo) {
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*requestedInfo = info;
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}
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switch (surfaceType) {
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case kRaster_SurfaceType:
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return SkSurface::NewRaster(info);
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case kRasterDirect_SurfaceType: {
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const size_t rowBytes = info.minRowBytes();
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void* storage = sk_malloc_throw(info.getSafeSize(rowBytes));
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return SkSurface::NewRasterDirectReleaseProc(info, storage, rowBytes,
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release_storage, storage);
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}
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case kGpu_SurfaceType:
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return SkSurface::NewRenderTarget(context, SkSurface::kNo_Budgeted, info, 0, nullptr);
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case kGpuScratch_SurfaceType:
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return SkSurface::NewRenderTarget(context, SkSurface::kYes_Budgeted, info, 0, nullptr);
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}
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return nullptr;
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}
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static void test_empty_surface(skiatest::Reporter* reporter, GrContext* ctx) {
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const SkImageInfo info = SkImageInfo::Make(0, 0, kN32_SkColorType, kPremul_SkAlphaType);
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REPORTER_ASSERT(reporter, nullptr == SkSurface::NewRaster(info));
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REPORTER_ASSERT(reporter, nullptr == SkSurface::NewRasterDirect(info, nullptr, 0));
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if (ctx) {
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REPORTER_ASSERT(reporter, nullptr ==
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SkSurface::NewRenderTarget(ctx, SkSurface::kNo_Budgeted, info, 0, nullptr));
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}
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}
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#if SK_SUPPORT_GPU
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static void test_wrapped_texture_surface(skiatest::Reporter* reporter, GrContext* ctx) {
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if (nullptr == ctx) {
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return;
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}
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const GrGpu* gpu = ctx->getGpu();
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if (!gpu) {
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return;
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}
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// Test the wrapped factory for SkSurface by creating a backend texture and then wrap it in
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// a SkSurface.
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static const int kW = 100;
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static const int kH = 100;
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static const uint32_t kOrigColor = 0xFFAABBCC;
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SkAutoTArray<uint32_t> pixels(kW * kH);
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sk_memset32(pixels.get(), kOrigColor, kW * kH);
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GrBackendObject texHandle = gpu->createTestingOnlyBackendTexture(pixels.get(), kW, kH,
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kRGBA_8888_GrPixelConfig);
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GrBackendTextureDesc wrappedDesc;
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wrappedDesc.fConfig = kRGBA_8888_GrPixelConfig;
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wrappedDesc.fWidth = kW;
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wrappedDesc.fHeight = kH;
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wrappedDesc.fOrigin = kBottomLeft_GrSurfaceOrigin;
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wrappedDesc.fSampleCnt = 0;
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wrappedDesc.fFlags = kRenderTarget_GrBackendTextureFlag;
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wrappedDesc.fTextureHandle = texHandle;
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SkAutoTUnref<SkSurface> surface(SkSurface::NewWrappedRenderTarget(ctx, wrappedDesc, nullptr));
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REPORTER_ASSERT(reporter, surface);
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if (surface) {
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// Validate that we can draw to the canvas and that the original texture color is preserved
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// in pixels that aren't rendered to via the surface.
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SkPaint paint;
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static const SkColor kRectColor = ~kOrigColor | 0xFF000000;
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paint.setColor(kRectColor);
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surface->getCanvas()->drawRect(SkRect::MakeWH(SkIntToScalar(kW), SkIntToScalar(kH)/2),
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paint);
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SkImageInfo readInfo = SkImageInfo::MakeN32Premul(kW, kH);
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surface->readPixels(readInfo, pixels.get(), kW * sizeof(uint32_t), 0, 0);
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bool stop = false;
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SkPMColor origColorPM = SkPackARGB32((kOrigColor >> 24 & 0xFF),
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(kOrigColor >> 0 & 0xFF),
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(kOrigColor >> 8 & 0xFF),
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(kOrigColor >> 16 & 0xFF));
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SkPMColor rectColorPM = SkPackARGB32((kRectColor >> 24 & 0xFF),
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(kRectColor >> 16 & 0xFF),
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(kRectColor >> 8 & 0xFF),
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(kRectColor >> 0 & 0xFF));
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for (int y = 0; y < kH/2 && !stop; ++y) {
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for (int x = 0; x < kW && !stop; ++x) {
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REPORTER_ASSERT(reporter, rectColorPM == pixels[x + y * kW]);
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if (rectColorPM != pixels[x + y * kW]) {
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stop = true;
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}
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}
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}
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stop = false;
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for (int y = kH/2; y < kH && !stop; ++y) {
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for (int x = 0; x < kW && !stop; ++x) {
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REPORTER_ASSERT(reporter, origColorPM == pixels[x + y * kW]);
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if (origColorPM != pixels[x + y * kW]) {
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stop = true;
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}
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}
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}
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}
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gpu->deleteTestingOnlyBackendTexture(texHandle);
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}
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#endif
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static void test_canvaspeek(skiatest::Reporter* reporter,
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GrContextFactory* factory) {
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static const struct {
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SurfaceType fType;
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bool fPeekShouldSucceed;
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} gRec[] = {
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{ kRaster_SurfaceType, true },
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{ kRasterDirect_SurfaceType, true },
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#if SK_SUPPORT_GPU
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{ kGpu_SurfaceType, false },
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{ kGpuScratch_SurfaceType, false },
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#endif
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};
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const SkColor color = SK_ColorRED;
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const SkPMColor pmcolor = SkPreMultiplyColor(color);
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int cnt;
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#if SK_SUPPORT_GPU
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cnt = GrContextFactory::kGLContextTypeCnt;
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#else
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cnt = 1;
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#endif
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for (int i= 0; i < cnt; ++i) {
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GrContext* context = nullptr;
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#if SK_SUPPORT_GPU
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GrContextFactory::GLContextType glCtxType = (GrContextFactory::GLContextType) i;
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if (!GrContextFactory::IsRenderingGLContext(glCtxType)) {
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continue;
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}
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context = factory->get(glCtxType);
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if (nullptr == context) {
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continue;
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}
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#endif
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for (size_t i = 0; i < SK_ARRAY_COUNT(gRec); ++i) {
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SkImageInfo info, requestInfo;
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size_t rowBytes;
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SkAutoTUnref<SkSurface> surface(create_surface(gRec[i].fType, context,
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kPremul_SkAlphaType, &requestInfo));
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surface->getCanvas()->clear(color);
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const void* addr = surface->getCanvas()->peekPixels(&info, &rowBytes);
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bool success = SkToBool(addr);
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REPORTER_ASSERT(reporter, gRec[i].fPeekShouldSucceed == success);
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SkImageInfo info2;
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size_t rb2;
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const void* addr2 = surface->peekPixels(&info2, &rb2);
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if (success) {
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REPORTER_ASSERT(reporter, requestInfo == info);
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REPORTER_ASSERT(reporter, requestInfo.minRowBytes() <= rowBytes);
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REPORTER_ASSERT(reporter, pmcolor == *(const SkPMColor*)addr);
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REPORTER_ASSERT(reporter, addr2 == addr);
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REPORTER_ASSERT(reporter, info2 == info);
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REPORTER_ASSERT(reporter, rb2 == rowBytes);
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} else {
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REPORTER_ASSERT(reporter, nullptr == addr2);
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}
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}
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}
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}
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// For compatibility with clients that still call accessBitmap(), we need to ensure that we bump
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// the bitmap's genID when we draw to it, else they won't know it has new values. When they are
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// exclusively using surface/image, and we can hide accessBitmap from device, we can remove this
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// test.
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static void test_accessPixels(skiatest::Reporter* reporter, GrContextFactory* factory) {
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static const struct {
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SurfaceType fType;
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bool fPeekShouldSucceed;
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} gRec[] = {
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{ kRaster_SurfaceType, true },
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{ kRasterDirect_SurfaceType, true },
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#if SK_SUPPORT_GPU
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{ kGpu_SurfaceType, false },
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{ kGpuScratch_SurfaceType, false },
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#endif
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};
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int cnt;
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#if SK_SUPPORT_GPU
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cnt = GrContextFactory::kGLContextTypeCnt;
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#else
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cnt = 1;
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#endif
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for (int i= 0; i < cnt; ++i) {
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GrContext* context = nullptr;
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#if SK_SUPPORT_GPU
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GrContextFactory::GLContextType glCtxType = (GrContextFactory::GLContextType) i;
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if (!GrContextFactory::IsRenderingGLContext(glCtxType)) {
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continue;
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}
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context = factory->get(glCtxType);
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if (nullptr == context) {
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continue;
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}
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#endif
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for (size_t j = 0; j < SK_ARRAY_COUNT(gRec); ++j) {
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SkImageInfo info, requestInfo;
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SkAutoTUnref<SkSurface> surface(create_surface(gRec[j].fType, context,
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kPremul_SkAlphaType, &requestInfo));
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SkCanvas* canvas = surface->getCanvas();
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canvas->clear(0);
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SkBaseDevice* device = canvas->getDevice_just_for_deprecated_compatibility_testing();
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SkBitmap bm = device->accessBitmap(false);
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uint32_t genID0 = bm.getGenerationID();
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// Now we draw something, which needs to "dirty" the genID (sorta like copy-on-write)
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canvas->drawColor(SK_ColorBLUE);
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// Now check that we get a different genID
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uint32_t genID1 = bm.getGenerationID();
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REPORTER_ASSERT(reporter, genID0 != genID1);
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}
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}
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}
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static void test_snap_alphatype(skiatest::Reporter* reporter, GrContextFactory* factory) {
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GrContext* context = nullptr;
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#if SK_SUPPORT_GPU
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context = factory->get(GrContextFactory::kNative_GLContextType);
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if (nullptr == context) {
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return;
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}
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#endif
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for (int opaque = 0; opaque < 2; ++opaque) {
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SkAlphaType atype = SkToBool(opaque) ? kOpaque_SkAlphaType : kPremul_SkAlphaType;
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for (int st = 0; st < kSurfaceTypeCnt; ++st) {
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SurfaceType stype = (SurfaceType)st;
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SkAutoTUnref<SkSurface> surface(create_surface(stype, context, atype));
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REPORTER_ASSERT(reporter, surface);
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if (surface) {
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SkAutoTUnref<SkImage> image(surface->newImageSnapshot());
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REPORTER_ASSERT(reporter, image);
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if (image) {
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REPORTER_ASSERT(reporter, image->isOpaque() == SkToBool(opaque));
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}
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}
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}
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}
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}
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static void test_backend_cow(skiatest::Reporter* reporter, SkSurface* surface,
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SkSurface::BackendHandleAccess mode,
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GrBackendObject (*func)(SkSurface*, SkSurface::BackendHandleAccess)) {
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GrBackendObject obj1 = func(surface, mode);
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SkAutoTUnref<SkImage> snap1(surface->newImageSnapshot());
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GrBackendObject obj2 = func(surface, mode);
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SkAutoTUnref<SkImage> snap2(surface->newImageSnapshot());
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// If the access mode triggers CoW, then the backend objects should reflect it.
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REPORTER_ASSERT(reporter, (obj1 == obj2) == (snap1 == snap2));
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}
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static void TestSurfaceCopyOnWrite(skiatest::Reporter* reporter, SurfaceType surfaceType,
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GrContext* context) {
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// Verify that the right canvas commands trigger a copy on write
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SkSurface* surface = create_surface(surfaceType, context);
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SkAutoTUnref<SkSurface> aur_surface(surface);
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SkCanvas* canvas = surface->getCanvas();
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const SkRect testRect =
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SkRect::MakeXYWH(SkIntToScalar(0), SkIntToScalar(0),
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SkIntToScalar(4), SkIntToScalar(5));
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SkPath testPath;
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testPath.addRect(SkRect::MakeXYWH(SkIntToScalar(0), SkIntToScalar(0),
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SkIntToScalar(2), SkIntToScalar(1)));
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const SkIRect testIRect = SkIRect::MakeXYWH(0, 0, 2, 1);
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SkRegion testRegion;
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testRegion.setRect(testIRect);
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const SkColor testColor = 0x01020304;
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const SkPaint testPaint;
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const SkPoint testPoints[3] = {
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{SkIntToScalar(0), SkIntToScalar(0)},
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{SkIntToScalar(2), SkIntToScalar(1)},
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{SkIntToScalar(0), SkIntToScalar(2)}
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};
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const size_t testPointCount = 3;
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SkBitmap testBitmap;
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testBitmap.allocN32Pixels(10, 10);
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testBitmap.eraseColor(0);
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SkRRect testRRect;
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testRRect.setRectXY(testRect, SK_Scalar1, SK_Scalar1);
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SkString testText("Hello World");
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const SkPoint testPoints2[] = {
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{ SkIntToScalar(0), SkIntToScalar(1) },
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{ SkIntToScalar(1), SkIntToScalar(1) },
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{ SkIntToScalar(2), SkIntToScalar(1) },
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{ SkIntToScalar(3), SkIntToScalar(1) },
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{ SkIntToScalar(4), SkIntToScalar(1) },
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{ SkIntToScalar(5), SkIntToScalar(1) },
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{ SkIntToScalar(6), SkIntToScalar(1) },
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{ SkIntToScalar(7), SkIntToScalar(1) },
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{ SkIntToScalar(8), SkIntToScalar(1) },
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{ SkIntToScalar(9), SkIntToScalar(1) },
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{ SkIntToScalar(10), SkIntToScalar(1) },
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};
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#define EXPECT_COPY_ON_WRITE(command) \
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{ \
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SkImage* imageBefore = surface->newImageSnapshot(); \
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SkAutoTUnref<SkImage> aur_before(imageBefore); \
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canvas-> command ; \
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SkImage* imageAfter = surface->newImageSnapshot(); \
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SkAutoTUnref<SkImage> aur_after(imageAfter); \
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REPORTER_ASSERT(reporter, imageBefore != imageAfter); \
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}
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EXPECT_COPY_ON_WRITE(clear(testColor))
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EXPECT_COPY_ON_WRITE(drawPaint(testPaint))
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EXPECT_COPY_ON_WRITE(drawPoints(SkCanvas::kPoints_PointMode, testPointCount, testPoints, \
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testPaint))
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EXPECT_COPY_ON_WRITE(drawOval(testRect, testPaint))
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EXPECT_COPY_ON_WRITE(drawRect(testRect, testPaint))
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EXPECT_COPY_ON_WRITE(drawRRect(testRRect, testPaint))
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EXPECT_COPY_ON_WRITE(drawPath(testPath, testPaint))
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EXPECT_COPY_ON_WRITE(drawBitmap(testBitmap, 0, 0))
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EXPECT_COPY_ON_WRITE(drawBitmapRect(testBitmap, testRect, nullptr))
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EXPECT_COPY_ON_WRITE(drawBitmapNine(testBitmap, testIRect, testRect, nullptr))
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EXPECT_COPY_ON_WRITE(drawSprite(testBitmap, 0, 0, nullptr))
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EXPECT_COPY_ON_WRITE(drawText(testText.c_str(), testText.size(), 0, 1, testPaint))
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EXPECT_COPY_ON_WRITE(drawPosText(testText.c_str(), testText.size(), testPoints2, \
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testPaint))
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EXPECT_COPY_ON_WRITE(drawTextOnPath(testText.c_str(), testText.size(), testPath, nullptr, \
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testPaint))
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const SkSurface::BackendHandleAccess accessModes[] = {
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SkSurface::kFlushRead_BackendHandleAccess,
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SkSurface::kFlushWrite_BackendHandleAccess,
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SkSurface::kDiscardWrite_BackendHandleAccess,
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};
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for (auto access : accessModes) {
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test_backend_cow(reporter, surface, access,
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[](SkSurface* s, SkSurface::BackendHandleAccess a) -> GrBackendObject {
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return s->getTextureHandle(a);
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});
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test_backend_cow(reporter, surface, access,
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[](SkSurface* s, SkSurface::BackendHandleAccess a) -> GrBackendObject {
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GrBackendObject result;
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if (!s->getRenderTargetHandle(&result, a)) {
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return 0;
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}
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return result;
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});
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}
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}
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static void TestSurfaceWritableAfterSnapshotRelease(skiatest::Reporter* reporter,
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SurfaceType surfaceType,
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GrContext* context) {
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// This test succeeds by not triggering an assertion.
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// The test verifies that the surface remains writable (usable) after
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// acquiring and releasing a snapshot without triggering a copy on write.
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SkAutoTUnref<SkSurface> surface(create_surface(surfaceType, context));
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SkCanvas* canvas = surface->getCanvas();
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canvas->clear(1);
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surface->newImageSnapshot()->unref(); // Create and destroy SkImage
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canvas->clear(2); // Must not assert internally
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}
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#if SK_SUPPORT_GPU
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static void Test_crbug263329(skiatest::Reporter* reporter,
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SurfaceType surfaceType,
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GrContext* context) {
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// This is a regression test for crbug.com/263329
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// Bug was caused by onCopyOnWrite releasing the old surface texture
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// back to the scratch texture pool even though the texture is used
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// by and active SkImage_Gpu.
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SkAutoTUnref<SkSurface> surface1(create_surface(surfaceType, context));
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SkAutoTUnref<SkSurface> surface2(create_surface(surfaceType, context));
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SkCanvas* canvas1 = surface1->getCanvas();
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SkCanvas* canvas2 = surface2->getCanvas();
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canvas1->clear(1);
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SkAutoTUnref<SkImage> image1(surface1->newImageSnapshot());
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// Trigger copy on write, new backing is a scratch texture
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canvas1->clear(2);
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SkAutoTUnref<SkImage> image2(surface1->newImageSnapshot());
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// Trigger copy on write, old backing should not be returned to scratch
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// pool because it is held by image2
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canvas1->clear(3);
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canvas2->clear(4);
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SkAutoTUnref<SkImage> image3(surface2->newImageSnapshot());
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// Trigger copy on write on surface2. The new backing store should not
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// be recycling a texture that is held by an existing image.
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canvas2->clear(5);
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SkAutoTUnref<SkImage> image4(surface2->newImageSnapshot());
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REPORTER_ASSERT(reporter, as_IB(image4)->getTexture() != as_IB(image3)->getTexture());
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// The following assertion checks crbug.com/263329
|
|
REPORTER_ASSERT(reporter, as_IB(image4)->getTexture() != as_IB(image2)->getTexture());
|
|
REPORTER_ASSERT(reporter, as_IB(image4)->getTexture() != as_IB(image1)->getTexture());
|
|
REPORTER_ASSERT(reporter, as_IB(image3)->getTexture() != as_IB(image2)->getTexture());
|
|
REPORTER_ASSERT(reporter, as_IB(image3)->getTexture() != as_IB(image1)->getTexture());
|
|
REPORTER_ASSERT(reporter, as_IB(image2)->getTexture() != as_IB(image1)->getTexture());
|
|
}
|
|
|
|
static void TestGetTexture(skiatest::Reporter* reporter,
|
|
SurfaceType surfaceType,
|
|
GrContext* context) {
|
|
SkAutoTUnref<SkSurface> surface(create_surface(surfaceType, context));
|
|
SkAutoTUnref<SkImage> image(surface->newImageSnapshot());
|
|
GrTexture* texture = as_IB(image)->getTexture();
|
|
if (surfaceType == kGpu_SurfaceType || surfaceType == kGpuScratch_SurfaceType) {
|
|
REPORTER_ASSERT(reporter, texture);
|
|
REPORTER_ASSERT(reporter, 0 != texture->getTextureHandle());
|
|
} else {
|
|
REPORTER_ASSERT(reporter, nullptr == texture);
|
|
}
|
|
surface->notifyContentWillChange(SkSurface::kDiscard_ContentChangeMode);
|
|
REPORTER_ASSERT(reporter, as_IB(image)->getTexture() == texture);
|
|
}
|
|
|
|
#include "GrGpuResourcePriv.h"
|
|
#include "SkGpuDevice.h"
|
|
#include "SkImage_Gpu.h"
|
|
#include "SkSurface_Gpu.h"
|
|
|
|
SkSurface::Budgeted is_budgeted(SkSurface* surf) {
|
|
return ((SkSurface_Gpu*)surf)->getDevice()->accessRenderTarget()->resourcePriv().isBudgeted() ?
|
|
SkSurface::kYes_Budgeted : SkSurface::kNo_Budgeted;
|
|
}
|
|
|
|
SkSurface::Budgeted is_budgeted(SkImage* image) {
|
|
return ((SkImage_Gpu*)image)->getTexture()->resourcePriv().isBudgeted() ?
|
|
SkSurface::kYes_Budgeted : SkSurface::kNo_Budgeted;
|
|
}
|
|
|
|
static void test_surface_budget(skiatest::Reporter* reporter, GrContext* context) {
|
|
SkImageInfo info = SkImageInfo::MakeN32Premul(8,8);
|
|
for (int i = 0; i < 2; ++i) {
|
|
SkSurface::Budgeted sbudgeted = i ? SkSurface::kYes_Budgeted : SkSurface::kNo_Budgeted;
|
|
for (int j = 0; j < 2; ++j) {
|
|
SkSurface::Budgeted ibudgeted = j ? SkSurface::kYes_Budgeted : SkSurface::kNo_Budgeted;
|
|
SkAutoTUnref<SkSurface>
|
|
surface(SkSurface::NewRenderTarget(context, sbudgeted, info, 0));
|
|
SkASSERT(surface);
|
|
REPORTER_ASSERT(reporter, sbudgeted == is_budgeted(surface));
|
|
|
|
SkAutoTUnref<SkImage> image(surface->newImageSnapshot(ibudgeted));
|
|
|
|
// Initially the image shares a texture with the surface, and the surface decides
|
|
// whether it is budgeted or not.
|
|
REPORTER_ASSERT(reporter, sbudgeted == is_budgeted(surface));
|
|
REPORTER_ASSERT(reporter, sbudgeted == is_budgeted(image));
|
|
|
|
// Now trigger copy-on-write
|
|
surface->getCanvas()->clear(SK_ColorBLUE);
|
|
|
|
// They don't share a texture anymore. They should each have made their own budget
|
|
// decision.
|
|
REPORTER_ASSERT(reporter, sbudgeted == is_budgeted(surface));
|
|
REPORTER_ASSERT(reporter, ibudgeted == is_budgeted(image));
|
|
}
|
|
}
|
|
}
|
|
|
|
#endif
|
|
|
|
static void TestSurfaceNoCanvas(skiatest::Reporter* reporter,
|
|
SurfaceType surfaceType,
|
|
GrContext* context,
|
|
SkSurface::ContentChangeMode mode) {
|
|
// Verifies the robustness of SkSurface for handling use cases where calls
|
|
// are made before a canvas is created.
|
|
{
|
|
// Test passes by not asserting
|
|
SkSurface* surface = create_surface(surfaceType, context);
|
|
SkAutoTUnref<SkSurface> aur_surface(surface);
|
|
surface->notifyContentWillChange(mode);
|
|
SkDEBUGCODE(surface->validate();)
|
|
}
|
|
{
|
|
SkSurface* surface = create_surface(surfaceType, context);
|
|
SkAutoTUnref<SkSurface> aur_surface(surface);
|
|
SkImage* image1 = surface->newImageSnapshot();
|
|
SkAutoTUnref<SkImage> aur_image1(image1);
|
|
SkDEBUGCODE(image1->validate();)
|
|
SkDEBUGCODE(surface->validate();)
|
|
surface->notifyContentWillChange(mode);
|
|
SkDEBUGCODE(image1->validate();)
|
|
SkDEBUGCODE(surface->validate();)
|
|
SkImage* image2 = surface->newImageSnapshot();
|
|
SkAutoTUnref<SkImage> aur_image2(image2);
|
|
SkDEBUGCODE(image2->validate();)
|
|
SkDEBUGCODE(surface->validate();)
|
|
REPORTER_ASSERT(reporter, image1 != image2);
|
|
}
|
|
|
|
}
|
|
|
|
DEF_GPUTEST(Surface, reporter, factory) {
|
|
TestSurfaceCopyOnWrite(reporter, kRaster_SurfaceType, nullptr);
|
|
TestSurfaceWritableAfterSnapshotRelease(reporter, kRaster_SurfaceType, nullptr);
|
|
TestSurfaceNoCanvas(reporter, kRaster_SurfaceType, nullptr, SkSurface::kDiscard_ContentChangeMode);
|
|
TestSurfaceNoCanvas(reporter, kRaster_SurfaceType, nullptr, SkSurface::kRetain_ContentChangeMode);
|
|
|
|
|
|
test_empty_surface(reporter, nullptr);
|
|
|
|
|
|
test_canvaspeek(reporter, factory);
|
|
|
|
test_accessPixels(reporter, factory);
|
|
|
|
test_snap_alphatype(reporter, factory);
|
|
|
|
#if SK_SUPPORT_GPU
|
|
TestGetTexture(reporter, kRaster_SurfaceType, nullptr);
|
|
if (factory) {
|
|
for (int i= 0; i < GrContextFactory::kGLContextTypeCnt; ++i) {
|
|
GrContextFactory::GLContextType glCtxType = (GrContextFactory::GLContextType) i;
|
|
if (!GrContextFactory::IsRenderingGLContext(glCtxType)) {
|
|
continue;
|
|
}
|
|
GrContext* context = factory->get(glCtxType);
|
|
if (context) {
|
|
Test_crbug263329(reporter, kGpu_SurfaceType, context);
|
|
Test_crbug263329(reporter, kGpuScratch_SurfaceType, context);
|
|
TestSurfaceCopyOnWrite(reporter, kGpu_SurfaceType, context);
|
|
TestSurfaceCopyOnWrite(reporter, kGpuScratch_SurfaceType, context);
|
|
TestSurfaceWritableAfterSnapshotRelease(reporter, kGpu_SurfaceType, context);
|
|
TestSurfaceWritableAfterSnapshotRelease(reporter, kGpuScratch_SurfaceType, context);
|
|
TestSurfaceNoCanvas(reporter, kGpu_SurfaceType, context, SkSurface::kDiscard_ContentChangeMode);
|
|
TestSurfaceNoCanvas(reporter, kGpuScratch_SurfaceType, context, SkSurface::kDiscard_ContentChangeMode);
|
|
TestSurfaceNoCanvas(reporter, kGpu_SurfaceType, context, SkSurface::kRetain_ContentChangeMode);
|
|
TestSurfaceNoCanvas(reporter, kGpuScratch_SurfaceType, context, SkSurface::kRetain_ContentChangeMode);
|
|
TestGetTexture(reporter, kGpu_SurfaceType, context);
|
|
TestGetTexture(reporter, kGpuScratch_SurfaceType, context);
|
|
test_empty_surface(reporter, context);
|
|
test_surface_budget(reporter, context);
|
|
test_wrapped_texture_surface(reporter, context);
|
|
}
|
|
}
|
|
}
|
|
#endif
|
|
}
|
|
|
|
|