Lots of progress on switching to SkColorSpace rather than SkColorProfileType

Fixed a bunch of code in Ganesh, as well as usage of SkColorProfileType in most of our tools (DM, SampleApp, Viewer, nanobench, skiaserve, HelloWorld).

BUG=skia:
GOLD_TRYBOT_URL= https://gold.skia.org/search?issue=2069173002

Committed: https://skia.googlesource.com/skia/+/6a61a875467646f8dbc37cfecf49e12d1f475170
Review-Url: https://codereview.chromium.org/2069173002
This commit is contained in:
brianosman 2016-06-16 13:03:24 -07:00 committed by Commit bot
parent 8811e40850
commit b109b8c5ec
34 changed files with 144 additions and 134 deletions

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@ -37,7 +37,7 @@ protected:
return;
}
SkImageInfo info = SkImageInfo::Make(fW, fH, kN32_SkColorType, kPremul_SkAlphaType,
kSRGB_SkColorProfileType);
SkColorSpace::NewNamed(SkColorSpace::kSRGB_Named));
fSurface = SkSurface::MakeRenderTarget(context, SkBudgeted::kNo, info);
}

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@ -424,7 +424,7 @@ static void create_config(const SkCommandLineConfig* config, SkTArray<Config>* c
Benchmark::kGPU_Backend,
kN32_SkColorType,
kPremul_SkAlphaType,
kLinear_SkColorProfileType,
nullptr,
sampleCount,
ctxType,
ctxOptions,
@ -436,28 +436,29 @@ static void create_config(const SkCommandLineConfig* config, SkTArray<Config>* c
}
#endif
#define CPU_CONFIG(name, backend, color, alpha, profile) \
if (config->getTag().equals(#name)) { \
Config config = { \
SkString(#name), Benchmark::backend, color, alpha, profile, \
0, kBogusContextType, kBogusContextOptions, false \
}; \
configs->push_back(config); \
return; \
#define CPU_CONFIG(name, backend, color, alpha, colorSpace) \
if (config->getTag().equals(#name)) { \
Config config = { \
SkString(#name), Benchmark::backend, color, alpha, colorSpace, \
0, kBogusContextType, kBogusContextOptions, false \
}; \
configs->push_back(config); \
return; \
}
if (FLAGS_cpu) {
CPU_CONFIG(nonrendering, kNonRendering_Backend,
kUnknown_SkColorType, kUnpremul_SkAlphaType, kLinear_SkColorProfileType);
kUnknown_SkColorType, kUnpremul_SkAlphaType, nullptr)
CPU_CONFIG(8888, kRaster_Backend,
kN32_SkColorType, kPremul_SkAlphaType, kLinear_SkColorProfileType)
kN32_SkColorType, kPremul_SkAlphaType, nullptr)
CPU_CONFIG(565, kRaster_Backend,
kRGB_565_SkColorType, kOpaque_SkAlphaType, kLinear_SkColorProfileType)
kRGB_565_SkColorType, kOpaque_SkAlphaType, nullptr)
auto srgbColorSpace = SkColorSpace::NewNamed(SkColorSpace::kSRGB_Named);
CPU_CONFIG(srgb, kRaster_Backend,
kN32_SkColorType, kPremul_SkAlphaType, kSRGB_SkColorProfileType)
kN32_SkColorType, kPremul_SkAlphaType, srgbColorSpace)
CPU_CONFIG(f16, kRaster_Backend,
kRGBA_F16_SkColorType, kPremul_SkAlphaType, kLinear_SkColorProfileType)
kRGBA_F16_SkColorType, kPremul_SkAlphaType, nullptr)
}
#undef CPU_CONFIG
@ -465,7 +466,7 @@ static void create_config(const SkCommandLineConfig* config, SkTArray<Config>* c
#ifdef SK_BUILD_FOR_ANDROID_FRAMEWORK
if (config->getTag().equals("hwui")) {
Config config = { SkString("hwui"), Benchmark::kHWUI_Backend,
kRGBA_8888_SkColorType, kPremul_SkAlphaType, kLinear_SkColorProfileType,
kRGBA_8888_SkColorType, kPremul_SkAlphaType, nullptr,
0, kBogusContextType, kBogusContextOptions, false };
configs->push_back(config);
}
@ -488,7 +489,7 @@ static Target* is_enabled(Benchmark* bench, const Config& config) {
}
SkImageInfo info = SkImageInfo::Make(bench->getSize().fX, bench->getSize().fY,
config.color, config.alpha, config.profile);
config.color, config.alpha, config.colorSpace);
Target* target = nullptr;

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@ -26,7 +26,7 @@ struct Config {
Benchmark::Backend backend;
SkColorType color;
SkAlphaType alpha;
SkColorProfileType profile;
sk_sp<SkColorSpace> colorSpace;
int samples;
#if SK_SUPPORT_GPU
sk_gpu_test::GrContextFactory::ContextType ctxType;

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@ -802,8 +802,8 @@ static Sink* create_sink(const SkCommandLineConfig* config) {
contextOptions = static_cast<GrContextFactory::ContextOptions>(
contextOptions | GrContextFactory::kEnableNVPR_ContextOptions);
}
if (SkColorAndProfileAreGammaCorrect(gpuConfig->getColorType(),
gpuConfig->getProfileType())) {
if (SkColorAndColorSpaceAreGammaCorrect(gpuConfig->getColorType(),
gpuConfig->getColorSpace())) {
contextOptions = static_cast<GrContextFactory::ContextOptions>(
contextOptions | GrContextFactory::kRequireSRGBSupport_ContextOptions);
}
@ -815,7 +815,7 @@ static Sink* create_sink(const SkCommandLineConfig* config) {
}
return new GPUSink(contextType, contextOptions, gpuConfig->getSamples(),
gpuConfig->getUseDIText(), gpuConfig->getColorType(),
gpuConfig->getProfileType(), FLAGS_gpu_threading);
sk_ref_sp(gpuConfig->getColorSpace()), FLAGS_gpu_threading);
}
}
#endif
@ -827,9 +827,11 @@ static Sink* create_sink(const SkCommandLineConfig* config) {
#endif
if (FLAGS_cpu) {
auto srgbColorSpace = SkColorSpace::NewNamed(SkColorSpace::kSRGB_Named);
SINK("565", RasterSink, kRGB_565_SkColorType);
SINK("8888", RasterSink, kN32_SkColorType);
SINK("srgb", RasterSink, kN32_SkColorType, kSRGB_SkColorProfileType);
SINK("srgb", RasterSink, kN32_SkColorType, srgbColorSpace);
SINK("f16", RasterSink, kRGBA_F16_SkColorType);
SINK("pdf", PDFSink);
SINK("skp", SKPSink);

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@ -1060,14 +1060,14 @@ GPUSink::GPUSink(GrContextFactory::ContextType ct,
int samples,
bool diText,
SkColorType colorType,
SkColorProfileType profileType,
sk_sp<SkColorSpace> colorSpace,
bool threaded)
: fContextType(ct)
, fContextOptions(options)
, fSampleCount(samples)
, fUseDIText(diText)
, fColorType(colorType)
, fProfileType(profileType)
, fColorSpace(std::move(colorSpace))
, fThreaded(threaded) {}
void PreAbandonGpuContextErrorHandler(SkError, void*) {}
@ -1093,7 +1093,7 @@ Error GPUSink::draw(const Src& src, SkBitmap* dst, SkWStream*, SkString* log) co
const SkISize size = src.size();
const SkImageInfo info =
SkImageInfo::Make(size.width(), size.height(), fColorType,
kPremul_SkAlphaType, fProfileType);
kPremul_SkAlphaType, fColorSpace);
#if SK_SUPPORT_GPU
GrContext* context = factory.getContextInfo(fContextType, fContextOptions).grContext();
const int maxDimension = context->caps()->maxTextureSize();
@ -1213,9 +1213,9 @@ Error SVGSink::draw(const Src& src, SkBitmap*, SkWStream* dst, SkString*) const
/*~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~*/
RasterSink::RasterSink(SkColorType colorType, SkColorProfileType profileType)
RasterSink::RasterSink(SkColorType colorType, sk_sp<SkColorSpace> colorSpace)
: fColorType(colorType)
, fProfileType(profileType) {}
, fColorSpace(std::move(colorSpace)) {}
Error RasterSink::draw(const Src& src, SkBitmap* dst, SkWStream*, SkString*) const {
const SkISize size = src.size();
@ -1225,7 +1225,7 @@ Error RasterSink::draw(const Src& src, SkBitmap* dst, SkWStream*, SkString*) con
SkMallocPixelRef::ZeroedPRFactory factory;
dst->allocPixels(SkImageInfo::Make(size.width(), size.height(),
fColorType, alphaType, fProfileType),
fColorType, alphaType, fColorSpace),
&factory,
nullptr/*colortable*/);
SkCanvas canvas(*dst);

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@ -281,7 +281,7 @@ class GPUSink : public Sink {
public:
GPUSink(sk_gpu_test::GrContextFactory::ContextType,
sk_gpu_test::GrContextFactory::ContextOptions,
int samples, bool diText, SkColorType colorType, SkColorProfileType profileType,
int samples, bool diText, SkColorType colorType, sk_sp<SkColorSpace> colorSpace,
bool threaded);
Error draw(const Src&, SkBitmap*, SkWStream*, SkString*) const override;
@ -294,7 +294,7 @@ private:
int fSampleCount;
bool fUseDIText;
SkColorType fColorType;
SkColorProfileType fProfileType;
sk_sp<SkColorSpace> fColorSpace;
bool fThreaded;
};
@ -318,14 +318,14 @@ public:
class RasterSink : public Sink {
public:
explicit RasterSink(SkColorType, SkColorProfileType=kLinear_SkColorProfileType);
explicit RasterSink(SkColorType, sk_sp<SkColorSpace> = nullptr);
Error draw(const Src&, SkBitmap*, SkWStream*, SkString*) const override;
const char* fileExtension() const override { return "png"; }
SinkFlags flags() const override { return SinkFlags{ SinkFlags::kRaster, SinkFlags::kDirect }; }
private:
SkColorType fColorType;
SkColorProfileType fProfileType;
SkColorType fColorType;
sk_sp<SkColorSpace> fColorSpace;
};
class SKPSink : public Sink {

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@ -155,13 +155,9 @@ void HelloWorldWindow::draw(SkCanvas* canvas) {
if (snap->peekPixels(&pmap)) {
const SkImageInfo& info = pmap.info();
fRenderTarget->writePixels(0, 0, snap->width(), snap->height(),
SkImageInfo2GrPixelConfig(info.colorType(),
info.alphaType(),
info.profileType(),
*fContext->caps()),
pmap.addr(),
pmap.rowBytes(),
GrContext::kFlushWrites_PixelOp);
SkImageInfo2GrPixelConfig(info, *fContext->caps()),
pmap.addr(), pmap.rowBytes(),
GrContext::kFlushWrites_PixelOp);
}
}
INHERITED::present();

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@ -85,6 +85,7 @@ public:
int height() const { return fInfo.height(); }
SkColorType colorType() const { return fInfo.colorType(); }
SkAlphaType alphaType() const { return fInfo.alphaType(); }
SkColorSpace* colorSpace() const { return fInfo.colorSpace(); }
SkColorProfileType profileType() const { return fInfo.profileType(); }
/**

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@ -379,12 +379,14 @@ private:
///////////////////////////////////////////////////////////////////////////////
static inline bool SkColorAndProfileAreGammaCorrect(SkColorType ct, SkColorProfileType pt) {
return kSRGB_SkColorProfileType == pt || kRGBA_F16_SkColorType == ct;
static inline bool SkColorAndColorSpaceAreGammaCorrect(SkColorType ct, SkColorSpace* cs) {
// Anything with a color-space attached is gamma-correct, as is F16.
// To get legacy behavior, you need to ask for non-F16, with a nullptr color space.
return (cs != nullptr) || kRGBA_F16_SkColorType == ct;
}
static inline bool SkImageInfoIsGammaCorrect(const SkImageInfo& info) {
return SkColorAndProfileAreGammaCorrect(info.colorType(), info.profileType());
return SkColorAndColorSpaceAreGammaCorrect(info.colorType(), info.colorSpace());
}
#endif

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@ -248,7 +248,7 @@ public:
* not be created with the given config), or this PixelRef does not support deep
* copies.
*/
virtual SkPixelRef* deepCopy(SkColorType, SkColorProfileType, const SkIRect* /*subset*/) {
virtual SkPixelRef* deepCopy(SkColorType, SkColorSpace*, const SkIRect* /*subset*/) {
return NULL;
}

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@ -72,10 +72,11 @@ GrTexture* GrRefCachedBitmapTexture(GrContext*, const SkBitmap&, const GrTexture
SkSourceGammaTreatment);
// TODO: Move SkImageInfo2GrPixelConfig to SkGrPriv.h (requires cleanup to SkWindow its subclasses).
GrPixelConfig SkImageInfo2GrPixelConfig(SkColorType, SkAlphaType, SkColorProfileType, const GrCaps&);
GrPixelConfig SkImageInfo2GrPixelConfig(SkColorType, SkAlphaType, const SkColorSpace*,
const GrCaps&);
static inline GrPixelConfig SkImageInfo2GrPixelConfig(const SkImageInfo& info, const GrCaps& caps) {
return SkImageInfo2GrPixelConfig(info.colorType(), info.alphaType(), info.profileType(), caps);
return SkImageInfo2GrPixelConfig(info.colorType(), info.alphaType(), info.colorSpace(), caps);
}
GrTextureParams::FilterMode GrSkFilterQualityToGrFilterMode(SkFilterQuality paintFilterQuality,

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@ -50,8 +50,7 @@ public:
protected:
// overrides from SkPixelRef
bool onReadPixels(SkBitmap* dst, SkColorType, const SkIRect* subset) override;
SkPixelRef* deepCopy(SkColorType, SkColorProfileType,
const SkIRect* subset) override;
SkPixelRef* deepCopy(SkColorType, SkColorSpace*, const SkIRect* subset) override;
void onNotifyPixelsChanged() override;
private:

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@ -52,7 +52,7 @@ public:
void resize(int width, int height);
void resize(const SkImageInfo&);
void setColorType(SkColorType, SkColorProfileType);
void setColorType(SkColorType, sk_sp<SkColorSpace>);
bool isDirty() const { return !fDirtyRgn.isEmpty(); }
bool update(SkIRect* updateArea);

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@ -48,17 +48,18 @@ class GrContext;
const struct {
SkColorType fColorType;
SkColorProfileType fProfileType;
bool fSRGB;
const char* fName;
} gConfig[] = {
{ kN32_SkColorType, kLinear_SkColorProfileType, "L32" },
{ kN32_SkColorType, kSRGB_SkColorProfileType, "S32" },
{ kRGBA_F16_SkColorType, kLinear_SkColorProfileType, "F16" },
{ kN32_SkColorType, false, "L32" },
{ kN32_SkColorType, true, "S32" },
{ kRGBA_F16_SkColorType, false, "F16" },
};
static const char* find_config_name(const SkImageInfo& info) {
for (const auto& config : gConfig) {
if (config.fColorType == info.colorType() && config.fProfileType == info.profileType()) {
if (config.fColorType == info.colorType() &&
config.fSRGB == (info.colorSpace() != nullptr)) {
return config.fName;
}
}
@ -1532,7 +1533,9 @@ bool SampleWindow::onEvent(const SkEvent& evt) {
return true;
}
if (SkOSMenu::FindListIndex(evt, "ColorType", &selected)) {
this->setDeviceColorType(gConfig[selected].fColorType, gConfig[selected].fProfileType);
auto srgbColorSpace = SkColorSpace::NewNamed(SkColorSpace::kSRGB_Named);
this->setDeviceColorType(gConfig[selected].fColorType,
gConfig[selected].fSRGB ? srgbColorSpace : nullptr);
return true;
}
if (SkOSMenu::FindSwitchState(evt, "Slide Show", nullptr)) {
@ -1747,8 +1750,8 @@ void SampleWindow::setDeviceType(DeviceType type) {
this->inval(nullptr);
}
void SampleWindow::setDeviceColorType(SkColorType ct, SkColorProfileType pt) {
this->setColorType(ct, pt);
void SampleWindow::setDeviceColorType(SkColorType ct, sk_sp<SkColorSpace> cs) {
this->setColorType(ct, std::move(cs));
fDevManager->tearDownBackend(this);
fDevManager->setUpBackend(this, fMSAASampleCount, fDeepColor);

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@ -116,7 +116,7 @@ public:
void draw(SkCanvas*) override;
void setDeviceType(DeviceType type);
void setDeviceColorType(SkColorType, SkColorProfileType);
void setDeviceColorType(SkColorType, sk_sp<SkColorSpace>);
void toggleRendering();
void toggleSlideshow();
void toggleFPS();

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@ -742,7 +742,7 @@ bool SkBitmap::extractSubset(SkBitmap* result, const SkIRect& subset) const {
if (fPixelRef->getTexture() != nullptr) {
// Do a deep copy
SkPixelRef* pixelRef = fPixelRef->deepCopy(this->colorType(), this->profileType(), &subset);
SkPixelRef* pixelRef = fPixelRef->deepCopy(this->colorType(), this->colorSpace(), &subset);
if (pixelRef != nullptr) {
SkBitmap dst;
dst.setInfo(this->info().makeWH(subset.width(), subset.height()));
@ -911,7 +911,7 @@ bool SkBitmap::copyTo(SkBitmap* dst, SkColorType dstColorType, Allocator* alloc)
bool SkBitmap::deepCopyTo(SkBitmap* dst) const {
const SkColorType dstCT = this->colorType();
const SkColorProfileType dstPT = this->profileType();
SkColorSpace* dstCS = this->colorSpace();
if (!this->canCopyTo(dstCT)) {
return false;
@ -920,10 +920,10 @@ bool SkBitmap::deepCopyTo(SkBitmap* dst) const {
// If we have a PixelRef, and it supports deep copy, use it.
// Currently supported only by texture-backed bitmaps.
if (fPixelRef) {
SkPixelRef* pixelRef = fPixelRef->deepCopy(dstCT, dstPT, nullptr);
SkPixelRef* pixelRef = fPixelRef->deepCopy(dstCT, dstCS, nullptr);
if (pixelRef) {
uint32_t rowBytes;
if (this->colorType() == dstCT && this->profileType() == dstPT) {
if (this->colorType() == dstCT && this->colorSpace() == dstCS) {
// Since there is no subset to pass to deepCopy, and deepCopy
// succeeded, the new pixel ref must be identical.
SkASSERT(fPixelRef->info() == pixelRef->info());

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@ -213,7 +213,7 @@ sk_sp<GrDrawContext> SkGpuDevice::CreateDrawContext(GrContext* context,
SkColorType ct = origInfo.colorType();
SkAlphaType at = origInfo.alphaType();
SkColorProfileType pt = origInfo.profileType();
SkColorSpace* cs = origInfo.colorSpace();
if (kRGB_565_SkColorType == ct || kGray_8_SkColorType == ct) {
at = kOpaque_SkAlphaType; // force this setting
}
@ -221,13 +221,13 @@ sk_sp<GrDrawContext> SkGpuDevice::CreateDrawContext(GrContext* context,
at = kPremul_SkAlphaType; // force this setting
}
GrPixelConfig origConfig = SkImageInfo2GrPixelConfig(ct, at, pt, *context->caps());
GrPixelConfig origConfig = SkImageInfo2GrPixelConfig(ct, at, cs, *context->caps());
if (!context->caps()->isConfigRenderable(origConfig, sampleCount > 0)) {
// Fall back from whatever ct was to default of kRGBA or kBGRA which is aliased as kN32
ct = kN32_SkColorType;
}
GrPixelConfig config = SkImageInfo2GrPixelConfig(ct, at, pt, *context->caps());
GrPixelConfig config = SkImageInfo2GrPixelConfig(ct, at, cs, *context->caps());
return context->newDrawContext(SkBackingFit::kExact, // Why exact?
origInfo.width(), origInfo.height(),

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@ -243,8 +243,8 @@ GrTexture* GrUploadPixmapToTexture(GrContext* ctx, const SkPixmap& pixmap, SkBud
GrSurfaceDesc desc = GrImageInfoToSurfaceDesc(pixmap.info(), *caps);
if (caps->srgbSupport() && !GrPixelConfigIsSRGB(desc.fConfig) &&
kSRGB_SkColorProfileType == pixmap.info().profileType()) {
// We were supplied sRGB as the profile type, but we don't have a suitable pixel config.
pixmap.info().colorSpace() && pixmap.info().colorSpace()->gammaCloseToSRGB()) {
// We were supplied an sRGB-like color space, but we don't have a suitable pixel config.
// Convert to 8888 sRGB so we can handle the data correctly. The raster backend doesn't
// handle sRGB Index8 -> sRGB 8888 correctly (yet), so lie about both the source and
// destination (claim they're linear):
@ -252,8 +252,10 @@ GrTexture* GrUploadPixmapToTexture(GrContext* ctx, const SkPixmap& pixmap, SkBud
pixmap.colorType(), pixmap.alphaType());
SkPixmap linSrcPixmap(linSrcInfo, pixmap.addr(), pixmap.rowBytes(), pixmap.ctable());
SkImageInfo dstInfo = SkImageInfo::MakeN32Premul(pixmap.width(), pixmap.height(),
kSRGB_SkColorProfileType);
SkImageInfo dstInfo = SkImageInfo::Make(pixmap.width(), pixmap.height(),
kN32_SkColorType, kPremul_SkAlphaType,
sk_ref_sp(pixmap.info().colorSpace()));
tmpBitmap.allocPixels(dstInfo);
SkImageInfo linDstInfo = SkImageInfo::MakeN32Premul(pixmap.width(), pixmap.height());
@ -270,7 +272,8 @@ GrTexture* GrUploadPixmapToTexture(GrContext* ctx, const SkPixmap& pixmap, SkBud
// We don't have Gray8 support as a pixel config, so expand to 8888
// We should have converted sRGB Gray8 above (if we have sRGB support):
SkASSERT(!caps->srgbSupport() || kLinear_SkColorProfileType == pixmap.info().profileType());
SkASSERT(!caps->srgbSupport() || !pixmap.info().colorSpace() ||
!pixmap.info().colorSpace()->gammaCloseToSRGB());
SkImageInfo info = SkImageInfo::MakeN32(pixmap.width(), pixmap.height(),
kOpaque_SkAlphaType);
@ -418,7 +421,7 @@ GrTexture* GrRefCachedBitmapTexture(GrContext* ctx, const SkBitmap& bitmap,
// alphatype is ignore for now, but if GrPixelConfig is expanded to encompass
// alpha info, that will be considered.
GrPixelConfig SkImageInfo2GrPixelConfig(SkColorType ct, SkAlphaType, SkColorProfileType pt,
GrPixelConfig SkImageInfo2GrPixelConfig(SkColorType ct, SkAlphaType, const SkColorSpace* cs,
const GrCaps& caps) {
// We intentionally ignore profile type for non-8888 formats. Anything we can't support
// in hardware will be expanded to sRGB 8888 in GrUploadPixmapToTexture.
@ -432,10 +435,10 @@ GrPixelConfig SkImageInfo2GrPixelConfig(SkColorType ct, SkAlphaType, SkColorProf
case kARGB_4444_SkColorType:
return kRGBA_4444_GrPixelConfig;
case kRGBA_8888_SkColorType:
return (kSRGB_SkColorProfileType == pt && caps.srgbSupport())
return (caps.srgbSupport() && cs && cs->gammaCloseToSRGB())
? kSRGBA_8888_GrPixelConfig : kRGBA_8888_GrPixelConfig;
case kBGRA_8888_SkColorType:
return (kSRGB_SkColorProfileType == pt && caps.srgbSupport())
return (caps.srgbSupport() && cs && cs->gammaCloseToSRGB())
? kSBGRA_8888_GrPixelConfig : kBGRA_8888_GrPixelConfig;
case kIndex_8_SkColorType:
return kIndex_8_GrPixelConfig;

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@ -50,7 +50,7 @@ bool SkROLockPixelsPixelRef::onLockPixelsAreWritable() const {
///////////////////////////////////////////////////////////////////////////////
static SkGrPixelRef* copy_to_new_texture_pixelref(GrTexture* texture, SkColorType dstCT,
SkColorProfileType dstPT, const SkIRect* subset) {
SkColorSpace* dstCS, const SkIRect* subset) {
if (nullptr == texture || kUnknown_SkColorType == dstCT) {
return nullptr;
}
@ -74,7 +74,7 @@ static SkGrPixelRef* copy_to_new_texture_pixelref(GrTexture* texture, SkColorTyp
srcRect = *subset;
}
desc.fFlags = kRenderTarget_GrSurfaceFlag;
desc.fConfig = SkImageInfo2GrPixelConfig(dstCT, kPremul_SkAlphaType, dstPT, *context->caps());
desc.fConfig = SkImageInfo2GrPixelConfig(dstCT, kPremul_SkAlphaType, dstCS, *context->caps());
desc.fIsMipMapped = false;
GrTexture* dst = context->textureProvider()->createTexture(desc, SkBudgeted::kNo, nullptr, 0);
@ -89,7 +89,7 @@ static SkGrPixelRef* copy_to_new_texture_pixelref(GrTexture* texture, SkColorTyp
context->flushSurfaceWrites(dst);
SkImageInfo info = SkImageInfo::Make(desc.fWidth, desc.fHeight, dstCT, kPremul_SkAlphaType,
dstPT);
sk_ref_sp(dstCS));
SkGrPixelRef* pixelRef = new SkGrPixelRef(info, dst);
SkSafeUnref(dst);
return pixelRef;
@ -130,8 +130,7 @@ void SkGrPixelRef::onNotifyPixelsChanged() {
}
}
SkPixelRef* SkGrPixelRef::deepCopy(SkColorType dstCT, SkColorProfileType dstPT,
const SkIRect* subset) {
SkPixelRef* SkGrPixelRef::deepCopy(SkColorType dstCT, SkColorSpace* dstCS, const SkIRect* subset) {
if (nullptr == fSurface) {
return nullptr;
}
@ -142,7 +141,7 @@ SkPixelRef* SkGrPixelRef::deepCopy(SkColorType dstCT, SkColorProfileType dstPT,
// a GrTexture owned elsewhere (e.g., SkGpuDevice), and cannot live
// independently of that texture. Texture-backed pixel refs, on the other
// hand, own their GrTextures, and are thus self-contained.
return copy_to_new_texture_pixelref(fSurface->asTexture(), dstCT, dstPT, subset);
return copy_to_new_texture_pixelref(fSurface->asTexture(), dstCT, dstCS, subset);
}
static bool tryAllocBitmapPixels(SkBitmap* bitmap) {
@ -183,7 +182,7 @@ bool SkGrPixelRef::onReadPixels(SkBitmap* dst, SkColorType colorType, const SkIR
SkBitmap cachedBitmap;
cachedBitmap.setInfo(SkImageInfo::Make(bounds.width(), bounds.height(), colorType,
this->info().alphaType(),
this->info().profileType()));
sk_ref_sp(this->info().colorSpace())));
// If we can't alloc the pixels, then fail
if (!tryAllocBitmapPixels(&cachedBitmap)) {

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@ -111,9 +111,7 @@ static void apply_premul(const SkImageInfo& info, void* pixels, size_t rowBytes)
bool SkImage_Gpu::onReadPixels(const SkImageInfo& info, void* pixels, size_t rowBytes,
int srcX, int srcY, CachingHint) const {
GrPixelConfig config = SkImageInfo2GrPixelConfig(info.colorType(), info.alphaType(),
info.profileType(),
*fTexture->getContext()->caps());
GrPixelConfig config = SkImageInfo2GrPixelConfig(info, *fTexture->getContext()->caps());
uint32_t flags = 0;
if (kUnpremul_SkAlphaType == info.alphaType() && kPremul_SkAlphaType == fAlphaType) {
// let the GPU perform this transformation for us

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@ -67,15 +67,16 @@ void SkWindow::resize(int width, int height) {
this->resize(fBitmap.info().makeWH(width, height));
}
void SkWindow::setColorType(SkColorType ct, SkColorProfileType pt) {
void SkWindow::setColorType(SkColorType ct, sk_sp<SkColorSpace> cs) {
const SkImageInfo& info = fBitmap.info();
this->resize(SkImageInfo::Make(info.width(), info.height(), ct, kPremul_SkAlphaType, pt));
this->resize(SkImageInfo::Make(info.width(), info.height(), ct, kPremul_SkAlphaType, cs));
// Set the global flag that enables or disables "legacy" mode, depending on our format.
// With sRGB 32-bit or linear FP 16, we turn on gamma-correct handling of inputs:
SkSurfaceProps props = this->getSurfaceProps();
uint32_t flags = (props.flags() & ~SkSurfaceProps::kGammaCorrect_Flag) |
(SkColorAndProfileAreGammaCorrect(ct, pt) ? SkSurfaceProps::kGammaCorrect_Flag : 0);
(SkColorAndColorSpaceAreGammaCorrect(ct, cs.get())
? SkSurfaceProps::kGammaCorrect_Flag : 0);
this->setSurfaceProps(SkSurfaceProps(flags, props.pixelGeometry()));
}

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@ -424,7 +424,7 @@ static void test_readpixels_texture(skiatest::Reporter* reporter, GrTexture* tex
GrPixelConfig dstConfig =
SkImageInfo2GrPixelConfig(gReadPixelsConfigs[c].fColorType,
gReadPixelsConfigs[c].fAlphaType,
kLinear_SkColorProfileType,
nullptr,
*texture->getContext()->caps());
uint32_t flags = 0;
if (gReadPixelsConfigs[c].fAlphaType == kUnpremul_SkAlphaType) {

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@ -46,8 +46,7 @@ DEF_TEST(ParseConfigs_Gpu, reporter) {
REPORTER_ASSERT(reporter, configs[0]->asConfigGpu()->getUseDIText() == false);
REPORTER_ASSERT(reporter, configs[0]->asConfigGpu()->getSamples() == 0);
REPORTER_ASSERT(reporter, configs[0]->asConfigGpu()->getColorType() == kN32_SkColorType);
REPORTER_ASSERT(reporter, configs[0]->asConfigGpu()->getProfileType()
== kLinear_SkColorProfileType);
REPORTER_ASSERT(reporter, configs[0]->asConfigGpu()->getColorSpace() == nullptr);
#endif
}
@ -83,6 +82,8 @@ DEF_TEST(ParseConfigs_DefaultConfigs, reporter) {
SkCommandLineConfigArray configs;
ParseConfigs(config1, &configs);
auto srgbColorSpace = SkColorSpace::NewNamed(SkColorSpace::kSRGB_Named);
REPORTER_ASSERT(reporter, configs.count() == config1.count());
for (int i = 0; i < config1.count(); ++i) {
REPORTER_ASSERT(reporter, configs[i]->getTag().equals(config1[i]));
@ -118,14 +119,11 @@ DEF_TEST(ParseConfigs_DefaultConfigs, reporter) {
REPORTER_ASSERT(reporter, !configs[18]->asConfigGpu());
REPORTER_ASSERT(reporter, !configs[19]->asConfigGpu());
REPORTER_ASSERT(reporter, !configs[24]->asConfigGpu());
REPORTER_ASSERT(reporter, configs[25]->asConfigGpu()->getColorType()
== kRGBA_F16_SkColorType);
REPORTER_ASSERT(reporter, configs[25]->asConfigGpu()->getProfileType()
== kLinear_SkColorProfileType);
REPORTER_ASSERT(reporter, configs[26]->asConfigGpu()->getColorType()
== kN32_SkColorType);
REPORTER_ASSERT(reporter, configs[26]->asConfigGpu()->getProfileType()
== kSRGB_SkColorProfileType);
REPORTER_ASSERT(reporter, configs[25]->asConfigGpu()->getColorType() == kRGBA_F16_SkColorType);
REPORTER_ASSERT(reporter, configs[25]->asConfigGpu()->getColorSpace() == nullptr);
REPORTER_ASSERT(reporter, configs[26]->asConfigGpu()->getColorType() == kN32_SkColorType);
REPORTER_ASSERT(reporter, configs[26]->asConfigGpu()->getColorSpace() == srgbColorSpace.get());
#if SK_ANGLE
#ifdef SK_BUILD_FOR_WIN
REPORTER_ASSERT(reporter, configs[20]->asConfigGpu());
@ -157,8 +155,7 @@ DEF_TEST(ParseConfigs_DefaultConfigs, reporter) {
REPORTER_ASSERT(reporter, configs[29]->asConfigGpu()->getUseDIText());
REPORTER_ASSERT(reporter, configs[30]->asConfigGpu());
REPORTER_ASSERT(reporter, configs[30]->asConfigGpu()->getColorType() == kN32_SkColorType);
REPORTER_ASSERT(reporter, configs[30]->asConfigGpu()->getProfileType() ==
kSRGB_SkColorProfileType);
REPORTER_ASSERT(reporter, configs[30]->asConfigGpu()->getColorSpace() == srgbColorSpace.get());
REPORTER_ASSERT(reporter, configs[31]->asConfigGpu());
REPORTER_ASSERT(reporter, configs[31]->asConfigGpu()->getSamples() == 4);
#ifdef SK_VULKAN

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@ -192,14 +192,14 @@ SkCommandLineConfig::~SkCommandLineConfig() {
SkCommandLineConfigGpu::SkCommandLineConfigGpu(
const SkString& tag, const SkTArray<SkString>& viaParts,
ContextType contextType, bool useNVPR, bool useDIText, int samples,
SkColorType colorType, SkColorProfileType profileType)
SkColorType colorType, sk_sp<SkColorSpace> colorSpace)
: SkCommandLineConfig(tag, SkString("gpu"), viaParts)
, fContextType(contextType)
, fUseNVPR(useNVPR)
, fUseDIText(useDIText)
, fSamples(samples)
, fColorType(colorType)
, fProfileType(profileType) {
, fColorSpace(std::move(colorSpace)) {
}
static bool parse_option_int(const SkString& value, int* outInt) {
if (value.isEmpty()) {
@ -276,20 +276,20 @@ static bool parse_option_gpu_api(const SkString& value,
}
static bool parse_option_gpu_color(const SkString& value,
SkColorType* outColorType,
SkColorProfileType* outProfileType) {
sk_sp<SkColorSpace>* outColorSpace) {
if (value.equals("8888")) {
*outColorType = kN32_SkColorType;
*outProfileType = kLinear_SkColorProfileType;
*outColorSpace = nullptr;
return true;
}
if (value.equals("f16")) {
*outColorType = kRGBA_F16_SkColorType;
*outProfileType = kLinear_SkColorProfileType;
*outColorSpace = nullptr;
return true;
}
if (value.equals("srgb")) {
*outColorType = kN32_SkColorType;
*outProfileType = kSRGB_SkColorProfileType;
*outColorSpace = SkColorSpace::NewNamed(SkColorSpace::kSRGB_Named);
return true;
}
return false;
@ -309,7 +309,7 @@ SkCommandLineConfigGpu* parse_command_line_config_gpu(const SkString& tag,
int samples = 0;
bool seenColor = false;
SkColorType colorType = kN32_SkColorType;
SkColorProfileType profileType = kLinear_SkColorProfileType;
sk_sp<SkColorSpace> colorSpace = nullptr;
SkTArray<SkString> optionParts;
SkStrSplit(options.c_str(), ",", kStrict_SkStrSplitMode, &optionParts);
@ -335,7 +335,7 @@ SkCommandLineConfigGpu* parse_command_line_config_gpu(const SkString& tag,
valueOk = parse_option_int(value, &samples);
seenSamples = true;
} else if (key.equals("color") && !seenColor) {
valueOk = parse_option_gpu_color(value, &colorType, &profileType);
valueOk = parse_option_gpu_color(value, &colorType, &colorSpace);
seenColor = true;
}
if (!valueOk) {
@ -343,7 +343,7 @@ SkCommandLineConfigGpu* parse_command_line_config_gpu(const SkString& tag,
}
}
return new SkCommandLineConfigGpu(tag, vias, contextType, useNVPR, useDIText, samples,
colorType, profileType);
colorType, colorSpace);
}
#endif

View File

@ -53,14 +53,14 @@ class SkCommandLineConfigGpu : public SkCommandLineConfig {
typedef sk_gpu_test::GrContextFactory::ContextType ContextType;
SkCommandLineConfigGpu(const SkString& tag, const SkTArray<SkString>& viaParts,
ContextType contextType, bool useNVPR, bool useDIText, int samples,
SkColorType colorType, SkColorProfileType profileType);
SkColorType colorType, sk_sp<SkColorSpace> colorSpace);
const SkCommandLineConfigGpu* asConfigGpu() const override { return this; }
ContextType getContextType() const { return fContextType; }
bool getUseNVPR() const { return fUseNVPR; }
bool getUseDIText() const { return fUseDIText; }
int getSamples() const { return fSamples; }
SkColorType getColorType() const { return fColorType; }
SkColorProfileType getProfileType() const { return fProfileType; }
SkColorSpace* getColorSpace() const { return fColorSpace.get(); }
private:
ContextType fContextType;
@ -68,7 +68,7 @@ class SkCommandLineConfigGpu : public SkCommandLineConfig {
bool fUseDIText;
int fSamples;
SkColorType fColorType;
SkColorProfileType fProfileType;
sk_sp<SkColorSpace> fColorSpace;
};
#endif

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@ -80,8 +80,9 @@ namespace sk_tools {
SkAutoTMalloc<uint32_t> rgba(w*h);
if (bitmap. colorType() == kN32_SkColorType &&
bitmap.profileType() == kSRGB_SkColorProfileType) {
auto srgbColorSpace = SkColorSpace::NewNamed(SkColorSpace::kSRGB_Named);
if (bitmap. colorType() == kN32_SkColorType &&
bitmap.colorSpace() == srgbColorSpace.get()) {
// These are premul sRGB 8-bit pixels in SkPMColor order.
// We want unpremul sRGB 8-bit pixels in RGBA order. We'll get there via floats.
bitmap.lockPixels();

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@ -159,14 +159,14 @@ namespace {
struct ColorAndProfile {
SkColorType fColorType;
SkColorProfileType fProfileType;
bool fSRGB;
bool fGammaCorrect;
};
ColorAndProfile ColorModes[] = {
{ kN32_SkColorType, kLinear_SkColorProfileType, false },
{ kN32_SkColorType, kSRGB_SkColorProfileType, true },
{ kRGBA_F16_SkColorType, kLinear_SkColorProfileType, true },
{ kN32_SkColorType, false, false },
{ kN32_SkColorType, true, true },
{ kRGBA_F16_SkColorType, false, true },
};
}
@ -174,8 +174,9 @@ ColorAndProfile ColorModes[] = {
SkSurface* Request::createCPUSurface() {
SkIRect bounds = this->getBounds();
ColorAndProfile cap = ColorModes[fColorMode];
auto srgbColorSpace = SkColorSpace::NewNamed(SkColorSpace::kSRGB_Named);
SkImageInfo info = SkImageInfo::Make(bounds.width(), bounds.height(), cap.fColorType,
kPremul_SkAlphaType, cap.fProfileType);
kPremul_SkAlphaType, cap.fSRGB ? srgbColorSpace : nullptr);
uint32_t flags = cap.fGammaCorrect ? SkSurfaceProps::kGammaCorrect_Flag : 0;
SkSurfaceProps props(flags, SkSurfaceProps::kLegacyFontHost_InitType);
return SkSurface::MakeRaster(info, &props).release();
@ -185,8 +186,9 @@ SkSurface* Request::createGPUSurface() {
GrContext* context = this->getContext();
SkIRect bounds = this->getBounds();
ColorAndProfile cap = ColorModes[fColorMode];
auto srgbColorSpace = SkColorSpace::NewNamed(SkColorSpace::kSRGB_Named);
SkImageInfo info = SkImageInfo::Make(bounds.width(), bounds.height(), cap.fColorType,
kPremul_SkAlphaType, cap.fProfileType);
kPremul_SkAlphaType, cap.fSRGB ? srgbColorSpace : nullptr);
uint32_t flags = cap.fGammaCorrect ? SkSurfaceProps::kGammaCorrect_Flag : 0;
SkSurfaceProps props(flags, SkSurfaceProps::kLegacyFontHost_InitType);
SkSurface* surface = SkSurface::MakeRenderTarget(context, SkBudgeted::kNo, info, 0,

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@ -122,8 +122,8 @@ Viewer::Viewer(int argc, char** argv, void* platformData)
});
fCommands.addCommand('c', "Modes", "Toggle sRGB color mode", [this]() {
DisplayParams params = fWindow->getDisplayParams();
params.fProfileType = (kLinear_SkColorProfileType == params.fProfileType)
? kSRGB_SkColorProfileType : kLinear_SkColorProfileType;
params.fColorSpace = (nullptr == params.fColorSpace)
? SkColorSpace::NewNamed(SkColorSpace::kSRGB_Named) : nullptr;
fWindow->setDisplayParams(params);
this->updateTitle();
fWindow->inval();
@ -266,7 +266,9 @@ Viewer::~Viewer() {
void Viewer::updateTitle() {
SkString title("Viewer: ");
title.append(fSlides[fCurrentSlide]->getName());
if (kSRGB_SkColorProfileType == fWindow->getDisplayParams().fProfileType) {
// TODO: For now, any color-space on the window means sRGB
if (fWindow->getDisplayParams().fColorSpace) {
title.append(" sRGB");
}
title.append(kBackendTypeStrings[fBackendType]);

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@ -14,14 +14,14 @@ namespace sk_app {
struct DisplayParams {
DisplayParams()
: fColorType(kN32_SkColorType)
, fProfileType(kLinear_SkColorProfileType)
, fColorSpace(nullptr)
, fMSAASampleCount(0)
, fDeepColor(false) {}
SkColorType fColorType;
SkColorProfileType fProfileType;
int fMSAASampleCount;
bool fDeepColor;
SkColorType fColorType;
sk_sp<SkColorSpace> fColorSpace;
int fMSAASampleCount;
bool fDeepColor;
};
} // namespace sk_app

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@ -47,8 +47,8 @@ void GLWindowContext::initializeContext(void* platformData, const DisplayParams&
// ... and, if we're using a 10-bit/channel FB0, it doesn't do sRGB conversion on write,
// so pretend that it's non-sRGB 8888:
fPixelConfig = fContext->caps()->srgbSupport() &&
SkColorAndProfileAreGammaCorrect(fDisplayParams.fColorType,
fDisplayParams.fProfileType) &&
SkColorAndColorSpaceAreGammaCorrect(fDisplayParams.fColorType,
fDisplayParams.fColorSpace.get()) &&
(fColorBits != 30) ? kSkiaGamma8888_GrPixelConfig : kSkia8888_GrPixelConfig;
}

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@ -173,7 +173,8 @@ bool VulkanWindowContext::createSwapchain(uint32_t width, uint32_t height,
// Pick our surface format. For now, just make sure it matches our sRGB request:
VkFormat surfaceFormat = VK_FORMAT_UNDEFINED;
VkColorSpaceKHR colorSpace = VK_COLORSPACE_SRGB_NONLINEAR_KHR;
bool wantSRGB = kSRGB_SkColorProfileType == params.fProfileType;
auto srgbColorSpace = SkColorSpace::NewNamed(SkColorSpace::kSRGB_Named);
bool wantSRGB = srgbColorSpace == params.fColorSpace;
for (uint32_t i = 0; i < surfaceFormatCount; ++i) {
GrPixelConfig config;
if (GrVkFormatToPixelConfig(surfaceFormats[i].format, &config) &&

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@ -36,7 +36,7 @@ sk_sp<SkSurface> WindowContext::createRenderSurface(sk_sp<GrRenderTarget> rt, in
SkImageInfo info = SkImageInfo::Make(fWidth, fHeight,
fDisplayParams.fColorType,
kUnknown_SkAlphaType,
fDisplayParams.fProfileType);
fDisplayParams.fColorSpace);
return SkSurface::MakeRenderTarget(fContext, SkBudgeted::kNo, info,
fDisplayParams.fMSAASampleCount, &props);
} else {
@ -52,7 +52,7 @@ void WindowContext::presentRenderSurface(sk_sp<SkSurface> renderSurface, sk_sp<G
SkImageInfo info = SkImageInfo::Make(fWidth, fHeight,
fDisplayParams.fColorType,
kUnknown_SkAlphaType,
fDisplayParams.fProfileType);
fDisplayParams.fColorSpace);
SkBitmap bm;
bm.allocPixels(info);
renderSurface->getCanvas()->readPixels(&bm, 0, 0);

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@ -99,7 +99,8 @@ void GLWindowContext_android::onInitializeContext(void* platformData, const Disp
EGL_NONE,
};
const EGLint* windowAttribs = nullptr;
if (kSRGB_SkColorProfileType == params.fProfileType && majorVersion == 1 && minorVersion >= 2) {
auto srgbColorSpace = SkColorSpace::NewNamed(SkColorSpace::kSRGB_Named);
if (srgbColorSpace == params.fColorSpace && majorVersion == 1 && minorVersion >= 2) {
windowAttribs = srgbWindowAttribs;
}

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@ -68,7 +68,7 @@ sk_sp<SkSurface> RasterWindowContext_android::getBackbufferSurface() {
SkImageInfo info = SkImageInfo::Make(fWidth, fHeight,
fDisplayParams.fColorType,
kOpaque_SkAlphaType,
fDisplayParams.fProfileType);
fDisplayParams.fColorSpace);
fBackbufferSurface = SkSurface::MakeRasterDirect(
info, fBuffer.bits, fBuffer.stride * bytePerPixel, nullptr);
}