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1 /*
2  * Copyright 2012 Google Inc.
3  *
4  * Use of this source code is governed by a BSD-style license that can be
5  * found in the LICENSE file.
6  */
7 
8 #include "include/core/SkBitmap.h"
9 #include "include/core/SkData.h"
10 #include "include/core/SkImageEncoder.h"
11 #include "include/core/SkImageFilter.h"
12 #include "include/core/SkImageGenerator.h"
13 #include "include/core/SkPicture.h"
14 #include "include/core/SkSurface.h"
15 #include "src/core/SkBitmapCache.h"
16 #include "src/core/SkCachedData.h"
17 #include "src/core/SkColorSpacePriv.h"
18 #include "src/core/SkImageFilterCache.h"
19 #include "src/core/SkImageFilter_Base.h"
20 #include "src/core/SkImagePriv.h"
21 #include "src/core/SkMipmap.h"
22 #include "src/core/SkMipmapBuilder.h"
23 #include "src/core/SkNextID.h"
24 #include "src/core/SkSpecialImage.h"
25 #include "src/image/SkImage_Base.h"
26 #include "src/image/SkReadPixelsRec.h"
27 #include "src/image/SkRescaleAndReadPixels.h"
28 #include "src/shaders/SkImageShader.h"
29 
30 #if SK_SUPPORT_GPU
31 #include "include/gpu/GrBackendSurface.h"
32 #include "include/gpu/GrContextThreadSafeProxy.h"
33 #include "include/gpu/GrDirectContext.h"
34 #include "src/gpu/GrDirectContextPriv.h"
35 #include "src/gpu/GrFragmentProcessor.h"
36 #include "src/gpu/GrImageContextPriv.h"
37 #include "src/gpu/GrProxyProvider.h"
38 #include "src/gpu/GrRecordingContextPriv.h"
39 #include "src/gpu/SkGr.h"
40 #include "src/gpu/effects/GrBicubicEffect.h"
41 #include "src/gpu/effects/GrTextureEffect.h"
42 #include "src/image/SkImage_Gpu.h"
43 #endif
44 
SkImage(const SkImageInfo & info,uint32_t uniqueID)45 SkImage::SkImage(const SkImageInfo& info, uint32_t uniqueID)
46         : fInfo(info)
47         , fUniqueID(kNeedNewImageUniqueID == uniqueID ? SkNextID::ImageID() : uniqueID) {
48     SkASSERT(info.width() > 0);
49     SkASSERT(info.height() > 0);
50 }
51 
peekPixels(SkPixmap * pm) const52 bool SkImage::peekPixels(SkPixmap* pm) const {
53     SkPixmap tmp;
54     if (!pm) {
55         pm = &tmp;
56     }
57     return as_IB(this)->onPeekPixels(pm);
58 }
59 
readPixels(GrDirectContext * dContext,const SkImageInfo & dstInfo,void * dstPixels,size_t dstRowBytes,int srcX,int srcY,CachingHint chint) const60 bool SkImage::readPixels(GrDirectContext* dContext, const SkImageInfo& dstInfo, void* dstPixels,
61                          size_t dstRowBytes, int srcX, int srcY, CachingHint chint) const {
62     return as_IB(this)->onReadPixels(dContext, dstInfo, dstPixels, dstRowBytes, srcX, srcY, chint);
63 }
64 
65 #ifndef SK_IMAGE_READ_PIXELS_DISABLE_LEGACY_API
readPixels(const SkImageInfo & dstInfo,void * dstPixels,size_t dstRowBytes,int srcX,int srcY,CachingHint chint) const66 bool SkImage::readPixels(const SkImageInfo& dstInfo, void* dstPixels,
67                          size_t dstRowBytes, int srcX, int srcY, CachingHint chint) const {
68     auto dContext = as_IB(this)->directContext();
69     return this->readPixels(dContext, dstInfo, dstPixels, dstRowBytes, srcX, srcY, chint);
70 }
71 #endif
72 
asyncRescaleAndReadPixels(const SkImageInfo & info,const SkIRect & srcRect,RescaleGamma rescaleGamma,RescaleMode rescaleMode,ReadPixelsCallback callback,ReadPixelsContext context) const73 void SkImage::asyncRescaleAndReadPixels(const SkImageInfo& info,
74                                         const SkIRect& srcRect,
75                                         RescaleGamma rescaleGamma,
76                                         RescaleMode rescaleMode,
77                                         ReadPixelsCallback callback,
78                                         ReadPixelsContext context) const {
79     if (!SkIRect::MakeWH(this->width(), this->height()).contains(srcRect) ||
80         !SkImageInfoIsValid(info)) {
81         callback(context, nullptr);
82         return;
83     }
84     as_IB(this)->onAsyncRescaleAndReadPixels(
85             info, srcRect, rescaleGamma, rescaleMode, callback, context);
86 }
87 
asyncRescaleAndReadPixelsYUV420(SkYUVColorSpace yuvColorSpace,sk_sp<SkColorSpace> dstColorSpace,const SkIRect & srcRect,const SkISize & dstSize,RescaleGamma rescaleGamma,RescaleMode rescaleMode,ReadPixelsCallback callback,ReadPixelsContext context) const88 void SkImage::asyncRescaleAndReadPixelsYUV420(SkYUVColorSpace yuvColorSpace,
89                                               sk_sp<SkColorSpace> dstColorSpace,
90                                               const SkIRect& srcRect,
91                                               const SkISize& dstSize,
92                                               RescaleGamma rescaleGamma,
93                                               RescaleMode rescaleMode,
94                                               ReadPixelsCallback callback,
95                                               ReadPixelsContext context) const {
96     if (!SkIRect::MakeWH(this->width(), this->height()).contains(srcRect) || dstSize.isZero() ||
97         (dstSize.width() & 0b1) || (dstSize.height() & 0b1)) {
98         callback(context, nullptr);
99         return;
100     }
101     as_IB(this)->onAsyncRescaleAndReadPixelsYUV420(yuvColorSpace,
102                                                    std::move(dstColorSpace),
103                                                    srcRect,
104                                                    dstSize,
105                                                    rescaleGamma,
106                                                    rescaleMode,
107                                                    callback,
108                                                    context);
109 }
110 
scalePixels(const SkPixmap & dst,const SkSamplingOptions & sampling,CachingHint chint) const111 bool SkImage::scalePixels(const SkPixmap& dst, const SkSamplingOptions& sampling,
112                           CachingHint chint) const {
113     // Context TODO: Elevate GrDirectContext requirement to public API.
114     auto dContext = as_IB(this)->directContext();
115     if (this->width() == dst.width() && this->height() == dst.height()) {
116         return this->readPixels(dContext, dst, 0, 0, chint);
117     }
118 
119     // Idea: If/when SkImageGenerator supports a native-scaling API (where the generator itself
120     //       can scale more efficiently) we should take advantage of it here.
121     //
122     SkBitmap bm;
123     if (as_IB(this)->getROPixels(dContext, &bm, chint)) {
124         SkPixmap pmap;
125         // Note: By calling the pixmap scaler, we never cache the final result, so the chint
126         //       is (currently) only being applied to the getROPixels. If we get a request to
127         //       also attempt to cache the final (scaled) result, we would add that logic here.
128         //
129         return bm.peekPixels(&pmap) && pmap.scalePixels(dst, sampling);
130     }
131     return false;
132 }
133 
134 ///////////////////////////////////////////////////////////////////////////////////////////////////
135 
colorType() const136 SkColorType SkImage::colorType() const { return fInfo.colorType(); }
137 
alphaType() const138 SkAlphaType SkImage::alphaType() const { return fInfo.alphaType(); }
139 
colorSpace() const140 SkColorSpace* SkImage::colorSpace() const { return fInfo.colorSpace(); }
141 
refColorSpace() const142 sk_sp<SkColorSpace> SkImage::refColorSpace() const { return fInfo.refColorSpace(); }
143 
makeShader(SkTileMode tmx,SkTileMode tmy,const SkSamplingOptions & sampling,const SkMatrix * localMatrix) const144 sk_sp<SkShader> SkImage::makeShader(SkTileMode tmx, SkTileMode tmy,
145                                     const SkSamplingOptions& sampling,
146                                     const SkMatrix* localMatrix) const {
147     return SkImageShader::Make(sk_ref_sp(const_cast<SkImage*>(this)), tmx, tmy,
148                                sampling, localMatrix);
149 }
150 
makeRawShader(SkTileMode tmx,SkTileMode tmy,const SkSamplingOptions & sampling,const SkMatrix * localMatrix) const151 sk_sp<SkShader> SkImage::makeRawShader(SkTileMode tmx, SkTileMode tmy,
152                                        const SkSamplingOptions& sampling,
153                                        const SkMatrix* localMatrix) const {
154     return SkImageShader::MakeRaw(sk_ref_sp(const_cast<SkImage*>(this)), tmx, tmy,
155                                   sampling, localMatrix);
156 }
157 
encodeToData(SkEncodedImageFormat type,int quality) const158 sk_sp<SkData> SkImage::encodeToData(SkEncodedImageFormat type, int quality) const {
159     // Context TODO: Elevate GrDirectContext requirement to public API.
160     auto dContext = as_IB(this)->directContext();
161     SkBitmap bm;
162     if (as_IB(this)->getROPixels(dContext, &bm)) {
163         return SkEncodeBitmap(bm, type, quality);
164     }
165     return nullptr;
166 }
167 
encodeToData() const168 sk_sp<SkData> SkImage::encodeToData() const {
169     if (auto encoded = this->refEncodedData()) {
170         return encoded;
171     }
172 
173     return this->encodeToData(SkEncodedImageFormat::kPNG, 100);
174 }
175 
refEncodedData() const176 sk_sp<SkData> SkImage::refEncodedData() const {
177     return sk_sp<SkData>(as_IB(this)->onRefEncoded());
178 }
179 
MakeFromEncoded(sk_sp<SkData> encoded,std::optional<SkAlphaType> alphaType)180 sk_sp<SkImage> SkImage::MakeFromEncoded(sk_sp<SkData> encoded,
181                                         std::optional<SkAlphaType> alphaType) {
182     if (nullptr == encoded || 0 == encoded->size()) {
183         return nullptr;
184     }
185     return SkImage::MakeFromGenerator(
186             SkImageGenerator::MakeFromEncoded(std::move(encoded), alphaType));
187 }
188 
189 ///////////////////////////////////////////////////////////////////////////////////////////////////
190 
makeSubset(const SkIRect & subset,GrDirectContext * direct) const191 sk_sp<SkImage> SkImage::makeSubset(const SkIRect& subset, GrDirectContext* direct) const {
192     if (subset.isEmpty()) {
193         return nullptr;
194     }
195 
196     const SkIRect bounds = SkIRect::MakeWH(this->width(), this->height());
197     if (!bounds.contains(subset)) {
198         return nullptr;
199     }
200 
201 #if SK_SUPPORT_GPU
202     auto myContext = as_IB(this)->context();
203     // This check is also performed in the subclass, but we do it here for the short-circuit below.
204     if (myContext && !myContext->priv().matches(direct)) {
205         return nullptr;
206     }
207 #endif
208 
209     // optimization : return self if the subset == our bounds
210     if (bounds == subset) {
211         return sk_ref_sp(const_cast<SkImage*>(this));
212     }
213 
214     return as_IB(this)->onMakeSubset(subset, direct);
215 }
216 
217 #if SK_SUPPORT_GPU
218 
isTextureBacked() const219 bool SkImage::isTextureBacked() const { return as_IB(this)->onIsTextureBacked(); }
220 
textureSize() const221 size_t SkImage::textureSize() const { return as_IB(this)->onTextureSize(); }
222 
getBackendTexture(bool flushPendingGrContextIO,GrSurfaceOrigin * origin) const223 GrBackendTexture SkImage::getBackendTexture(bool flushPendingGrContextIO,
224                                             GrSurfaceOrigin* origin) const {
225     return as_IB(this)->onGetBackendTexture(flushPendingGrContextIO, origin);
226 }
227 
isValid(GrRecordingContext * rContext) const228 bool SkImage::isValid(GrRecordingContext* rContext) const {
229     if (rContext && rContext->abandoned()) {
230         return false;
231     }
232     return as_IB(this)->onIsValid(rContext);
233 }
234 
flush(GrDirectContext * dContext,const GrFlushInfo & flushInfo) const235 GrSemaphoresSubmitted SkImage::flush(GrDirectContext* dContext,
236                                      const GrFlushInfo& flushInfo) const {
237     return as_IB(this)->onFlush(dContext, flushInfo);
238 }
239 
flushAndSubmit(GrDirectContext * dContext) const240 void SkImage::flushAndSubmit(GrDirectContext* dContext) const {
241     this->flush(dContext, {});
242     dContext->submit();
243 }
244 
245 #else
246 
isTextureBacked() const247 bool SkImage::isTextureBacked() const { return false; }
248 
isValid(GrRecordingContext * rContext) const249 bool SkImage::isValid(GrRecordingContext* rContext) const {
250     if (rContext) {
251         return false;
252     }
253     return as_IB(this)->onIsValid(nullptr);
254 }
255 
256 #endif
257 
258 ///////////////////////////////////////////////////////////////////////////////
259 
SkImage_Base(const SkImageInfo & info,uint32_t uniqueID)260 SkImage_Base::SkImage_Base(const SkImageInfo& info, uint32_t uniqueID)
261         : INHERITED(info, uniqueID), fAddedToRasterCache(false) {}
262 
~SkImage_Base()263 SkImage_Base::~SkImage_Base() {
264     if (fAddedToRasterCache.load()) {
265         SkNotifyBitmapGenIDIsStale(this->uniqueID());
266     }
267 }
268 
onAsyncRescaleAndReadPixels(const SkImageInfo & info,const SkIRect & origSrcRect,RescaleGamma rescaleGamma,RescaleMode rescaleMode,ReadPixelsCallback callback,ReadPixelsContext context) const269 void SkImage_Base::onAsyncRescaleAndReadPixels(const SkImageInfo& info,
270                                                const SkIRect& origSrcRect,
271                                                RescaleGamma rescaleGamma,
272                                                RescaleMode rescaleMode,
273                                                ReadPixelsCallback callback,
274                                                ReadPixelsContext context) const {
275     SkBitmap src;
276     SkPixmap peek;
277     SkIRect srcRect;
278     if (this->peekPixels(&peek)) {
279         src.installPixels(peek);
280         srcRect = origSrcRect;
281     } else {
282         // Context TODO: Elevate GrDirectContext requirement to public API.
283         auto dContext = as_IB(this)->directContext();
284         src.setInfo(this->imageInfo().makeDimensions(origSrcRect.size()));
285         src.allocPixels();
286         if (!this->readPixels(dContext, src.pixmap(), origSrcRect.x(), origSrcRect.y())) {
287             callback(context, nullptr);
288             return;
289         }
290         srcRect = SkIRect::MakeSize(src.dimensions());
291     }
292     return SkRescaleAndReadPixels(src, info, srcRect, rescaleGamma, rescaleMode, callback, context);
293 }
294 
onAsyncRescaleAndReadPixelsYUV420(SkYUVColorSpace,sk_sp<SkColorSpace> dstColorSpace,const SkIRect & srcRect,const SkISize & dstSize,RescaleGamma,RescaleMode,ReadPixelsCallback callback,ReadPixelsContext context) const295 void SkImage_Base::onAsyncRescaleAndReadPixelsYUV420(SkYUVColorSpace,
296                                                      sk_sp<SkColorSpace> dstColorSpace,
297                                                      const SkIRect& srcRect,
298                                                      const SkISize& dstSize,
299                                                      RescaleGamma,
300                                                      RescaleMode,
301                                                      ReadPixelsCallback callback,
302                                                      ReadPixelsContext context) const {
303     // TODO: Call non-YUV asyncRescaleAndReadPixels and then make our callback convert to YUV and
304     // call client's callback.
305     callback(context, nullptr);
306 }
307 
308 #if SK_SUPPORT_GPU
asView(GrRecordingContext * context,GrMipmapped mipmapped,GrImageTexGenPolicy policy) const309 std::tuple<GrSurfaceProxyView, GrColorType> SkImage_Base::asView(GrRecordingContext* context,
310                                                                  GrMipmapped mipmapped,
311                                                                  GrImageTexGenPolicy policy) const {
312     if (!context) {
313         return {};
314     }
315     if (!context->priv().caps()->mipmapSupport() || this->dimensions().area() <= 1) {
316         mipmapped = GrMipmapped::kNo;
317     }
318     return this->onAsView(context, mipmapped, policy);
319 }
320 
asFragmentProcessor(GrRecordingContext * rContext,SkSamplingOptions sampling,const SkTileMode tileModes[2],const SkMatrix & m,const SkRect * subset,const SkRect * domain) const321 std::unique_ptr<GrFragmentProcessor> SkImage_Base::asFragmentProcessor(
322         GrRecordingContext* rContext,
323         SkSamplingOptions sampling,
324         const SkTileMode tileModes[2],
325         const SkMatrix& m,
326         const SkRect* subset,
327         const SkRect* domain) const {
328     if (!rContext) {
329         return {};
330     }
331     if (sampling.useCubic && !GrValidCubicResampler(sampling.cubic)) {
332         return {};
333     }
334     if (sampling.mipmap != SkMipmapMode::kNone &&
335         (!rContext->priv().caps()->mipmapSupport() || this->dimensions().area() <= 1)) {
336         sampling = SkSamplingOptions(sampling.filter);
337     }
338     return this->onAsFragmentProcessor(rContext, sampling, tileModes, m, subset, domain);
339 }
340 
MakeFragmentProcessorFromView(GrRecordingContext * rContext,GrSurfaceProxyView view,SkAlphaType at,SkSamplingOptions sampling,const SkTileMode tileModes[2],const SkMatrix & m,const SkRect * subset,const SkRect * domain)341 std::unique_ptr<GrFragmentProcessor> SkImage_Base::MakeFragmentProcessorFromView(
342         GrRecordingContext* rContext,
343         GrSurfaceProxyView view,
344         SkAlphaType at,
345         SkSamplingOptions sampling,
346         const SkTileMode tileModes[2],
347         const SkMatrix& m,
348         const SkRect* subset,
349         const SkRect* domain) {
350     if (!view) {
351         return nullptr;
352     }
353     const GrCaps& caps = *rContext->priv().caps();
354     auto wmx = SkTileModeToWrapMode(tileModes[0]);
355     auto wmy = SkTileModeToWrapMode(tileModes[1]);
356     if (sampling.useCubic) {
357         if (subset) {
358             if (domain) {
359                 return GrBicubicEffect::MakeSubset(std::move(view),
360                                                    at,
361                                                    m,
362                                                    wmx,
363                                                    wmy,
364                                                    *subset,
365                                                    *domain,
366                                                    sampling.cubic,
367                                                    GrBicubicEffect::Direction::kXY,
368                                                    *rContext->priv().caps());
369             }
370             return GrBicubicEffect::MakeSubset(std::move(view),
371                                                at,
372                                                m,
373                                                wmx,
374                                                wmy,
375                                                *subset,
376                                                sampling.cubic,
377                                                GrBicubicEffect::Direction::kXY,
378                                                *rContext->priv().caps());
379         }
380         return GrBicubicEffect::Make(std::move(view),
381                                      at,
382                                      m,
383                                      wmx,
384                                      wmy,
385                                      sampling.cubic,
386                                      GrBicubicEffect::Direction::kXY,
387                                      *rContext->priv().caps());
388     }
389     if (view.proxy()->asTextureProxy()->mipmapped() == GrMipmapped::kNo) {
390         sampling = SkSamplingOptions(sampling.filter);
391     }
392     GrSamplerState sampler(wmx, wmy, sampling.filter, sampling.mipmap);
393     if (subset) {
394         if (domain) {
395             return GrTextureEffect::MakeSubset(std::move(view),
396                                                at,
397                                                m,
398                                                sampler,
399                                                *subset,
400                                                *domain,
401                                                caps);
402         }
403         return GrTextureEffect::MakeSubset(std::move(view),
404                                            at,
405                                            m,
406                                            sampler,
407                                            *subset,
408                                            caps);
409     } else {
410         return GrTextureEffect::Make(std::move(view), at, m, sampler, caps);
411     }
412 }
413 
FindOrMakeCachedMipmappedView(GrRecordingContext * rContext,GrSurfaceProxyView view,uint32_t imageUniqueID)414 GrSurfaceProxyView SkImage_Base::FindOrMakeCachedMipmappedView(GrRecordingContext* rContext,
415                                                                GrSurfaceProxyView view,
416                                                                uint32_t imageUniqueID) {
417     SkASSERT(rContext);
418     SkASSERT(imageUniqueID != SK_InvalidUniqueID);
419 
420     if (!view || view.proxy()->asTextureProxy()->mipmapped() == GrMipmapped::kYes) {
421         return view;
422     }
423     GrProxyProvider* proxyProvider = rContext->priv().proxyProvider();
424 
425     skgpu::UniqueKey baseKey;
426     GrMakeKeyFromImageID(&baseKey, imageUniqueID, SkIRect::MakeSize(view.dimensions()));
427     SkASSERT(baseKey.isValid());
428     skgpu::UniqueKey mipmappedKey;
429     static const skgpu::UniqueKey::Domain kMipmappedDomain = skgpu::UniqueKey::GenerateDomain();
430     {  // No extra values beyond the domain are required. Must name the var to please
431        // clang-tidy.
432         skgpu::UniqueKey::Builder b(&mipmappedKey, baseKey, kMipmappedDomain, 0);
433     }
434     SkASSERT(mipmappedKey.isValid());
435     if (sk_sp<GrTextureProxy> cachedMippedView =
436                 proxyProvider->findOrCreateProxyByUniqueKey(mipmappedKey)) {
437         return {std::move(cachedMippedView), view.origin(), view.swizzle()};
438     }
439 
440     auto copy = GrCopyBaseMipMapToView(rContext, view);
441     if (!copy) {
442         return view;
443     }
444     // TODO: If we move listeners up from SkImage_Lazy to SkImage_Base then add one here.
445     proxyProvider->assignUniqueKeyToProxy(mipmappedKey, copy.asTextureProxy());
446     return copy;
447 }
448 
onGetBackendTexture(bool flushPendingGrContextIO,GrSurfaceOrigin * origin) const449 GrBackendTexture SkImage_Base::onGetBackendTexture(bool flushPendingGrContextIO,
450                                                    GrSurfaceOrigin* origin) const {
451     return GrBackendTexture(); // invalid
452 }
453 
454 #endif // SK_SUPPORT_GPU
455 
directContext() const456 GrDirectContext* SkImage_Base::directContext() const {
457 #if SK_SUPPORT_GPU
458     return GrAsDirectContext(this->context());
459 #else
460     return nullptr;
461 #endif
462 }
463 
readPixels(GrDirectContext * dContext,const SkPixmap & pmap,int srcX,int srcY,CachingHint chint) const464 bool SkImage::readPixels(GrDirectContext* dContext, const SkPixmap& pmap, int srcX, int srcY,
465                          CachingHint chint) const {
466     return this->readPixels(dContext, pmap.info(), pmap.writable_addr(), pmap.rowBytes(), srcX,
467                             srcY, chint);
468 }
469 
470 #ifndef SK_IMAGE_READ_PIXELS_DISABLE_LEGACY_API
readPixels(const SkPixmap & pmap,int srcX,int srcY,CachingHint chint) const471 bool SkImage::readPixels(const SkPixmap& pmap, int srcX, int srcY, CachingHint chint) const {
472     auto dContext = as_IB(this)->directContext();
473     return this->readPixels(dContext, pmap, srcX, srcY, chint);
474 }
475 #endif
476 
477 ///////////////////////////////////////////////////////////////////////////////////////////////////
478 
MakeFromBitmap(const SkBitmap & bm)479 sk_sp<SkImage> SkImage::MakeFromBitmap(const SkBitmap& bm) {
480     if (!bm.pixelRef()) {
481         return nullptr;
482     }
483 
484     return SkMakeImageFromRasterBitmap(bm, kIfMutable_SkCopyPixelsMode);
485 }
486 
asLegacyBitmap(SkBitmap * bitmap,LegacyBitmapMode) const487 bool SkImage::asLegacyBitmap(SkBitmap* bitmap, LegacyBitmapMode ) const {
488     // Context TODO: Elevate GrDirectContext requirement to public API.
489     auto dContext = as_IB(this)->directContext();
490     return as_IB(this)->onAsLegacyBitmap(dContext, bitmap);
491 }
492 
onAsLegacyBitmap(GrDirectContext * dContext,SkBitmap * bitmap) const493 bool SkImage_Base::onAsLegacyBitmap(GrDirectContext* dContext, SkBitmap* bitmap) const {
494     // As the base-class, all we can do is make a copy (regardless of mode).
495     // Subclasses that want to be more optimal should override.
496     SkImageInfo info = fInfo.makeColorType(kN32_SkColorType).makeColorSpace(nullptr);
497     if (!bitmap->tryAllocPixels(info)) {
498         return false;
499     }
500 
501     if (!this->readPixels(dContext, bitmap->info(), bitmap->getPixels(), bitmap->rowBytes(),
502                           0, 0)) {
503         bitmap->reset();
504         return false;
505     }
506 
507     bitmap->setImmutable();
508     return true;
509 }
510 
MakeFromPicture(sk_sp<SkPicture> picture,const SkISize & dimensions,const SkMatrix * matrix,const SkPaint * paint,BitDepth bitDepth,sk_sp<SkColorSpace> colorSpace)511 sk_sp<SkImage> SkImage::MakeFromPicture(sk_sp<SkPicture> picture, const SkISize& dimensions,
512                                         const SkMatrix* matrix, const SkPaint* paint,
513                                         BitDepth bitDepth, sk_sp<SkColorSpace> colorSpace) {
514     return MakeFromGenerator(SkImageGenerator::MakeFromPicture(dimensions, std::move(picture),
515                                                                matrix, paint, bitDepth,
516                                                                std::move(colorSpace)));
517 }
518 
makeWithFilter(GrRecordingContext * rContext,const SkImageFilter * filter,const SkIRect & subset,const SkIRect & clipBounds,SkIRect * outSubset,SkIPoint * offset) const519 sk_sp<SkImage> SkImage::makeWithFilter(GrRecordingContext* rContext, const SkImageFilter* filter,
520                                        const SkIRect& subset, const SkIRect& clipBounds,
521                                        SkIRect* outSubset, SkIPoint* offset) const {
522 
523     if (!filter || !outSubset || !offset || !this->bounds().contains(subset)) {
524         return nullptr;
525     }
526     sk_sp<SkSpecialImage> srcSpecialImage;
527 #if SK_SUPPORT_GPU
528     auto myContext = as_IB(this)->context();
529     if (myContext && !myContext->priv().matches(rContext)) {
530         return nullptr;
531     }
532     srcSpecialImage = SkSpecialImage::MakeFromImage(rContext, subset,
533                                                     sk_ref_sp(const_cast<SkImage*>(this)),
534                                                     SkSurfaceProps());
535 #else
536     srcSpecialImage = SkSpecialImage::MakeFromImage(nullptr, subset,
537                                                     sk_ref_sp(const_cast<SkImage*>(this)),
538                                                     SkSurfaceProps());
539 #endif
540     if (!srcSpecialImage) {
541         return nullptr;
542     }
543 
544     sk_sp<SkImageFilterCache> cache(
545         SkImageFilterCache::Create(SkImageFilterCache::kDefaultTransientSize));
546 
547     // The filters operate in the local space of the src image, where (0,0) corresponds to the
548     // subset's top left corner. But the clip bounds and any crop rects on the filters are in the
549     // original coordinate system, so configure the CTM to correct crop rects and explicitly adjust
550     // the clip bounds (since it is assumed to already be in image space).
551     SkImageFilter_Base::Context context(SkMatrix::Translate(-subset.x(), -subset.y()),
552                                         clipBounds.makeOffset(-subset.topLeft()),
553                                         cache.get(), fInfo.colorType(), fInfo.colorSpace(),
554                                         srcSpecialImage.get());
555 
556     sk_sp<SkSpecialImage> result = as_IFB(filter)->filterImage(context).imageAndOffset(offset);
557     if (!result) {
558         return nullptr;
559     }
560 
561     // The output image and offset are relative to the subset rectangle, so the offset needs to
562     // be shifted to put it in the correct spot with respect to the original coordinate system
563     offset->fX += subset.x();
564     offset->fY += subset.y();
565 
566     // Final clip against the exact clipBounds (the clip provided in the context gets adjusted
567     // to account for pixel-moving filters so doesn't always exactly match when finished). The
568     // clipBounds are translated into the clippedDstRect coordinate space, including the
569     // result->subset() ensures that the result's image pixel origin does not affect results.
570     SkIRect dstRect = result->subset();
571     SkIRect clippedDstRect = dstRect;
572     if (!clippedDstRect.intersect(clipBounds.makeOffset(result->subset().topLeft() - *offset))) {
573         return nullptr;
574     }
575 
576     // Adjust the geometric offset if the top-left corner moved as well
577     offset->fX += (clippedDstRect.x() - dstRect.x());
578     offset->fY += (clippedDstRect.y() - dstRect.y());
579     *outSubset = clippedDstRect;
580     return result->asImage();
581 }
582 
isLazyGenerated() const583 bool SkImage::isLazyGenerated() const {
584     return as_IB(this)->onIsLazyGenerated();
585 }
586 
isAlphaOnly() const587 bool SkImage::isAlphaOnly() const { return SkColorTypeIsAlphaOnly(fInfo.colorType()); }
588 
makeColorSpace(sk_sp<SkColorSpace> target,GrDirectContext * direct) const589 sk_sp<SkImage> SkImage::makeColorSpace(sk_sp<SkColorSpace> target, GrDirectContext* direct) const {
590     return this->makeColorTypeAndColorSpace(this->colorType(), std::move(target), direct);
591 }
592 
makeColorTypeAndColorSpace(SkColorType targetColorType,sk_sp<SkColorSpace> targetColorSpace,GrDirectContext * dContext) const593 sk_sp<SkImage> SkImage::makeColorTypeAndColorSpace(SkColorType targetColorType,
594                                                    sk_sp<SkColorSpace> targetColorSpace,
595                                                    GrDirectContext* dContext) const {
596     if (kUnknown_SkColorType == targetColorType || !targetColorSpace) {
597         return nullptr;
598     }
599 
600 #if SK_SUPPORT_GPU
601     auto myContext = as_IB(this)->context();
602     // This check is also performed in the subclass, but we do it here for the short-circuit below.
603     if (myContext && !myContext->priv().matches(dContext)) {
604         return nullptr;
605     }
606 #endif
607 
608     SkColorType colorType = this->colorType();
609     SkColorSpace* colorSpace = this->colorSpace();
610     if (!colorSpace) {
611         colorSpace = sk_srgb_singleton();
612     }
613     if (colorType == targetColorType &&
614         (SkColorSpace::Equals(colorSpace, targetColorSpace.get()) || this->isAlphaOnly())) {
615         return sk_ref_sp(const_cast<SkImage*>(this));
616     }
617 
618     return as_IB(this)->onMakeColorTypeAndColorSpace(targetColorType,
619                                                      std::move(targetColorSpace), dContext);
620 }
621 
reinterpretColorSpace(sk_sp<SkColorSpace> target) const622 sk_sp<SkImage> SkImage::reinterpretColorSpace(sk_sp<SkColorSpace> target) const {
623     if (!target) {
624         return nullptr;
625     }
626 
627     // No need to create a new image if:
628     // (1) The color spaces are equal.
629     // (2) The color type is kAlpha8.
630     SkColorSpace* colorSpace = this->colorSpace();
631     if (!colorSpace) {
632         colorSpace = sk_srgb_singleton();
633     }
634     if (SkColorSpace::Equals(colorSpace, target.get()) || this->isAlphaOnly()) {
635         return sk_ref_sp(const_cast<SkImage*>(this));
636     }
637 
638     return as_IB(this)->onReinterpretColorSpace(std::move(target));
639 }
640 
makeNonTextureImage() const641 sk_sp<SkImage> SkImage::makeNonTextureImage() const {
642     if (!this->isTextureBacked()) {
643         return sk_ref_sp(const_cast<SkImage*>(this));
644     }
645     return this->makeRasterImage();
646 }
647 
makeRasterImage(CachingHint chint) const648 sk_sp<SkImage> SkImage::makeRasterImage(CachingHint chint) const {
649     SkPixmap pm;
650     if (this->peekPixels(&pm)) {
651         return sk_ref_sp(const_cast<SkImage*>(this));
652     }
653 
654     const size_t rowBytes = fInfo.minRowBytes();
655     size_t size = fInfo.computeByteSize(rowBytes);
656     if (SkImageInfo::ByteSizeOverflowed(size)) {
657         return nullptr;
658     }
659 
660     // Context TODO: Elevate GrDirectContext requirement to public API.
661     auto dContext = as_IB(this)->directContext();
662     sk_sp<SkData> data = SkData::MakeUninitialized(size);
663     pm = {fInfo.makeColorSpace(nullptr), data->writable_data(), fInfo.minRowBytes()};
664     if (!this->readPixels(dContext, pm, 0, 0, chint)) {
665         return nullptr;
666     }
667 
668     return SkImage::MakeRasterData(fInfo, std::move(data), rowBytes);
669 }
670 
SkImage_pinAsTexture(const SkImage * image,GrRecordingContext * rContext)671 bool SkImage_pinAsTexture(const SkImage* image, GrRecordingContext* rContext) {
672     SkASSERT(image);
673     SkASSERT(rContext);
674     return as_IB(image)->onPinAsTexture(rContext);
675 }
676 
SkImage_unpinAsTexture(const SkImage * image,GrRecordingContext * rContext)677 void SkImage_unpinAsTexture(const SkImage* image, GrRecordingContext* rContext) {
678     SkASSERT(image);
679     SkASSERT(rContext);
680     as_IB(image)->onUnpinAsTexture(rContext);
681 }
682 
683 ///////////////////////////////////////////////////////////////////////////////////////////////////
684 
SkMipmapBuilder(const SkImageInfo & info)685 SkMipmapBuilder::SkMipmapBuilder(const SkImageInfo& info) {
686     fMM = sk_sp<SkMipmap>(SkMipmap::Build({info, nullptr, 0}, nullptr, false));
687 }
688 
~SkMipmapBuilder()689 SkMipmapBuilder::~SkMipmapBuilder() {}
690 
countLevels() const691 int SkMipmapBuilder::countLevels() const {
692     return fMM ? fMM->countLevels() : 0;
693 }
694 
level(int index) const695 SkPixmap SkMipmapBuilder::level(int index) const {
696     SkPixmap pm;
697 
698     SkMipmap::Level level;
699     if (fMM && fMM->getLevel(index, &level)) {
700         pm = level.fPixmap;
701     }
702     return pm;
703 }
704 
hasMipmaps() const705 bool SkImage::hasMipmaps() const { return as_IB(this)->onHasMipmaps(); }
706 
withMipmaps(sk_sp<SkMipmap> mips) const707 sk_sp<SkImage> SkImage::withMipmaps(sk_sp<SkMipmap> mips) const {
708     if (mips == nullptr || mips->validForRootLevel(this->imageInfo())) {
709         if (auto result = as_IB(this)->onMakeWithMipmaps(std::move(mips))) {
710             return result;
711         }
712     }
713     return sk_ref_sp((const_cast<SkImage*>(this)));
714 }
715 
withDefaultMipmaps() const716 sk_sp<SkImage> SkImage::withDefaultMipmaps() const {
717     return this->withMipmaps(nullptr);
718 }
719 
attachTo(const SkImage * src)720 sk_sp<SkImage> SkMipmapBuilder::attachTo(const SkImage* src) {
721     return src->withMipmaps(fMM);
722 }
723 
724 //////////////////////////////////////////////////////////////////////////////////////////////////
725 
726 #include "src/core/SkReadBuffer.h"
727 #include "src/core/SkSamplingPriv.h"
728 #include "src/core/SkWriteBuffer.h"
729 
FromFQ(SkLegacyFQ fq,SkMediumAs behavior)730 SkSamplingOptions SkSamplingPriv::FromFQ(SkLegacyFQ fq, SkMediumAs behavior) {
731     switch (fq) {
732         case kHigh_SkLegacyFQ:
733             return SkSamplingOptions(SkCubicResampler{1/3.0f, 1/3.0f});
734         case kMedium_SkLegacyFQ:
735             return SkSamplingOptions(SkFilterMode::kLinear,
736                                       behavior == kNearest_SkMediumAs ? SkMipmapMode::kNearest
737                                                                       : SkMipmapMode::kLinear);
738         case kLow_SkLegacyFQ:
739             return SkSamplingOptions(SkFilterMode::kLinear, SkMipmapMode::kNone);
740         case kNone_SkLegacyFQ:
741             break;
742     }
743     return SkSamplingOptions(SkFilterMode::kNearest, SkMipmapMode::kNone);
744 }
745 
Read(SkReadBuffer & buffer)746 SkSamplingOptions SkSamplingPriv::Read(SkReadBuffer& buffer) {
747     if (buffer.readBool()) {
748         SkScalar B = buffer.readScalar(),
749                  C = buffer.readScalar();
750         return SkSamplingOptions({B,C});
751     } else {
752         auto filter = buffer.read32LE<SkFilterMode>(SkFilterMode::kLinear);
753         auto mipmap = buffer.read32LE<SkMipmapMode>(SkMipmapMode::kLinear);
754         return SkSamplingOptions(filter, mipmap);
755     }
756 }
757 
Write(SkWriteBuffer & buffer,const SkSamplingOptions & sampling)758 void SkSamplingPriv::Write(SkWriteBuffer& buffer, const SkSamplingOptions& sampling) {
759     buffer.writeBool(sampling.useCubic);
760     if (sampling.useCubic) {
761         buffer.writeScalar(sampling.cubic.B);
762         buffer.writeScalar(sampling.cubic.C);
763     } else {
764         buffer.writeUInt((unsigned)sampling.filter);
765         buffer.writeUInt((unsigned)sampling.mipmap);
766     }
767 }
768