Revert of Fix layer hoisting image filter corner cases (patchset #3 id:40001 of https://codereview.chromium.org/803183003/)

Reason for revert:
Breaking DM

Original issue's description:
> Fix layer hoisting image filter corner cases
>
> This CL fixes 5 bugs related to hoisting image filters:
>
> For image filters the src layer (the one prior to filtering) often needs to be
> smaller then the final layer. This requires the saveLayer's optional bounds
> to be stored (in SkLayerInfo.h and SkRecordDraw.cpp) and then used in
> compute_source_rect and carried around in GrCachedLayer.
>
> The image filters can add an extra offset to the final draw operation.
> This is now computed in GrLayerHoister::FilterLayer and  carried around in
> GrCachedLayer.
>
> Filtered layers must use exact matches. This is now done in GrLayerCache::lock.
>
> The filter cache requires a valid matrix so it can compute the correct offset.
> This is now done in GrLayerHoister::FilterLayer.
>
> Filtered layers need to be drawn with drawSprite while unfiltered (and therefore
> hopefully atlased) layers can be drawn with drawBitmap. This is now done in
> draw_replacement_bitmap.
>
> Committed: https://skia.googlesource.com/skia/+/702eb9622102599d94ab6798e6227cf29f48c2d3

TBR=bsalomon@google.com
NOTREECHECKS=true
NOTRY=true

Review URL: https://codereview.chromium.org/790643009
This commit is contained in:
robertphillips 2014-12-16 07:41:37 -08:00 committed by Commit bot
parent 861e103701
commit 86f032832f
10 changed files with 70 additions and 176 deletions

View File

@ -655,21 +655,18 @@ public:
}
}
static void generate_image_from_picture(GM* gm, const ConfigData& config,
GrSurface* gpuTarget,
static void generate_image_from_picture(GM* gm, const ConfigData& gRec,
SkPicture* pict, SkBitmap* bitmap,
SkScalar scale = SK_Scalar1,
bool tile = false) {
const SkISize size = gm->getISize();
SkISize size = gm->getISize();
setup_bitmap(gRec, size, bitmap);
SkAutoTUnref<SkSurface> surf(CreateSurface(config, size, gpuTarget));
SkAutoTUnref<SkSurface> surf(SkSurface::NewRasterDirect(bitmap->info(),
bitmap->getPixels(),
bitmap->rowBytes()));
DrawPictureToSurface(surf, pict, scale, tile, false);
setup_bitmap(config, size, bitmap);
surf->readPixels(bitmap->info(), bitmap->getPixels(), bitmap->rowBytes(), 0, 0);
complete_bitmap(bitmap);
}
@ -1633,12 +1630,10 @@ template <typename T> void appendUnique(SkTDArray<T>* array, const T& value) {
*
* Returns all errors encountered while doing so.
*/
ErrorCombination run_multiple_modes(GMMain &gmmain, GM *gm,
const ConfigData &compareConfig, GrSurface* gpuTarget,
ErrorCombination run_multiple_modes(GMMain &gmmain, GM *gm, const ConfigData &compareConfig,
const SkBitmap &comparisonBitmap,
const SkTDArray<SkScalar> &tileGridReplayScales);
ErrorCombination run_multiple_modes(GMMain &gmmain, GM *gm,
const ConfigData &compareConfig, GrSurface* gpuTarget,
ErrorCombination run_multiple_modes(GMMain &gmmain, GM *gm, const ConfigData &compareConfig,
const SkBitmap &comparisonBitmap,
const SkTDArray<SkScalar> &tileGridReplayScales) {
ErrorCombination errorsForAllModes;
@ -1656,8 +1651,7 @@ ErrorCombination run_multiple_modes(GMMain &gmmain, GM *gm,
errorsForAllModes.add(kIntentionallySkipped_ErrorType);
} else {
SkBitmap bitmap;
gmmain.generate_image_from_picture(gm, compareConfig, gpuTarget, pict, &bitmap);
gmmain.generate_image_from_picture(gm, compareConfig, pict, &bitmap);
errorsForAllModes.add(gmmain.compare_test_results_to_reference_bitmap(
gm->getName(), compareConfig.fName, renderModeDescriptor, bitmap,
&comparisonBitmap));
@ -1674,7 +1668,7 @@ ErrorCombination run_multiple_modes(GMMain &gmmain, GM *gm,
SkPicture* repict = gmmain.stream_to_new_picture(*pict);
SkAutoTUnref<SkPicture> aurr(repict);
SkBitmap bitmap;
gmmain.generate_image_from_picture(gm, compareConfig, gpuTarget, repict, &bitmap);
gmmain.generate_image_from_picture(gm, compareConfig, repict, &bitmap);
errorsForAllModes.add(gmmain.compare_test_results_to_reference_bitmap(
gm->getName(), compareConfig.fName, renderModeDescriptor, bitmap,
&comparisonBitmap));
@ -1707,7 +1701,7 @@ ErrorCombination run_multiple_modes(GMMain &gmmain, GM *gm,
SkPicture* pict = gmmain.generate_new_picture(gm, kRTree_BbhType, 0);
SkAutoTUnref<SkPicture> aur(pict);
SkBitmap bitmap;
gmmain.generate_image_from_picture(gm, compareConfig, gpuTarget, pict, &bitmap);
gmmain.generate_image_from_picture(gm, compareConfig, pict, &bitmap);
errorsForAllModes.add(gmmain.compare_test_results_to_reference_bitmap(
gm->getName(), compareConfig.fName, renderModeDescriptor, bitmap,
&comparisonBitmap));
@ -1740,7 +1734,7 @@ ErrorCombination run_multiple_modes(GMMain &gmmain, GM *gm,
// We cannot yet pass 'true' to generate_image_from_picture to
// perform actual tiled rendering (see Issue 1198 -
// https://code.google.com/p/skia/issues/detail?id=1198)
gmmain.generate_image_from_picture(gm, compareConfig, gpuTarget, pict, &bitmap,
gmmain.generate_image_from_picture(gm, compareConfig, pict, &bitmap,
replayScale /*, true */);
errorsForAllModes.add(gmmain.compare_test_results_to_reference_bitmap(
gm->getName(), compareConfig.fName, renderModeDescriptor.c_str(), bitmap,
@ -1881,7 +1875,7 @@ ErrorCombination run_multiple_configs(GMMain &gmmain, GM *gm,
// TODO: run only if gmmain.test_drawing succeeded.
if (kRaster_Backend == config.fBackend) {
run_multiple_modes(gmmain, gm, config, gpuTarget, comparisonBitmap, tileGridReplayScales);
run_multiple_modes(gmmain, gm, config, comparisonBitmap, tileGridReplayScales);
}
if (FLAGS_deferred && errorsForThisConfig.isEmpty() &&

View File

@ -28,9 +28,6 @@ public:
const SkPicture* fPicture;
// The device space bounds of this layer.
SkRect fBounds;
// If not-empty, the optional bounds parameter passed in to the saveLayer
// call.
SkRect fSrcBounds;
// The pre-matrix begins as the identity and accumulates the transforms
// of the containing SkPictures (if any). This matrix state has to be
// part of the initial matrix during replay so that it will be

View File

@ -608,26 +608,24 @@ public:
private:
struct SaveLayerInfo {
SaveLayerInfo() { }
SaveLayerInfo(int opIndex, bool isSaveLayer, const SkRect* bounds, const SkPaint* paint)
SaveLayerInfo(int opIndex, bool isSaveLayer, const SkPaint* paint)
: fStartIndex(opIndex)
, fIsSaveLayer(isSaveLayer)
, fHasNestedSaveLayer(false)
, fBounds(bounds ? *bounds : SkRect::MakeEmpty())
, fPaint(paint) {
}
int fStartIndex;
bool fIsSaveLayer;
bool fHasNestedSaveLayer;
SkRect fBounds;
const SkPaint* fPaint;
};
template <typename T> void trackSaveLayers(const T& op) {
/* most ops aren't involved in saveLayers */
}
void trackSaveLayers(const Save& s) { this->pushSaveLayerInfo(false, NULL, NULL); }
void trackSaveLayers(const SaveLayer& sl) { this->pushSaveLayerInfo(true, sl.bounds, sl.paint); }
void trackSaveLayers(const Save& s) { this->pushSaveLayerInfo(false, NULL); }
void trackSaveLayers(const SaveLayer& sl) { this->pushSaveLayerInfo(true, sl.paint); }
void trackSaveLayers(const Restore& r) { this->popSaveLayerInfo(); }
void trackSaveLayersForPicture(const SkPicture* picture, const SkPaint* paint) {
@ -664,7 +662,6 @@ private:
dst.fPicture = src.fPicture ? src.fPicture : picture;
dst.fPicture->ref();
dst.fBounds = newBound;
dst.fSrcBounds = src.fSrcBounds;
dst.fLocalMat = src.fLocalMat;
dst.fPreMat = src.fPreMat;
dst.fPreMat.postConcat(fFillBounds.ctm());
@ -710,14 +707,14 @@ private:
}
}
void pushSaveLayerInfo(bool isSaveLayer, const SkRect* bounds, const SkPaint* paint) {
void pushSaveLayerInfo(bool isSaveLayer, const SkPaint* paint) {
if (isSaveLayer) {
this->updateStackForSaveLayer();
++fSaveLayersInStack;
fSaveLayerOpStack.push(fFillBounds.currentOp());
}
fSaveLayerStack.push(SaveLayerInfo(fFillBounds.currentOp(), isSaveLayer, bounds, paint));
fSaveLayerStack.push(SaveLayerInfo(fFillBounds.currentOp(), isSaveLayer, paint));
}
void popSaveLayerInfo() {
@ -747,8 +744,6 @@ private:
if (sli.fPaint) {
block.fPaint = SkNEW_ARGS(SkPaint, (*sli.fPaint));
}
block.fSrcBounds = sli.fBounds;
block.fSaveLayerOpID = sli.fStartIndex;
block.fRestoreOpID = fFillBounds.currentOp();
block.fHasNestedLayers = sli.fHasNestedSaveLayer;

View File

@ -123,16 +123,14 @@ void GrLayerCache::freeAll() {
GrCachedLayer* GrLayerCache::createLayer(uint32_t pictureID,
int start, int stop,
const SkIRect& srcIR,
const SkIRect& dstIR,
const SkIRect& bounds,
const SkMatrix& initialMat,
const unsigned* key,
int keySize,
const SkPaint* paint) {
SkASSERT(pictureID != SK_InvalidGenID && start >= 0 && stop > 0);
GrCachedLayer* layer = SkNEW_ARGS(GrCachedLayer, (pictureID, start, stop,
srcIR, dstIR, initialMat,
GrCachedLayer* layer = SkNEW_ARGS(GrCachedLayer, (pictureID, start, stop, bounds, initialMat,
key, keySize, paint));
fLayerHash.add(layer);
return layer;
@ -146,8 +144,7 @@ GrCachedLayer* GrLayerCache::findLayer(uint32_t pictureID, const SkMatrix& initi
GrCachedLayer* GrLayerCache::findLayerOrCreate(uint32_t pictureID,
int start, int stop,
const SkIRect& srcIR,
const SkIRect& dstIR,
const SkIRect& bounds,
const SkMatrix& initialMat,
const unsigned* key,
int keySize,
@ -155,9 +152,7 @@ GrCachedLayer* GrLayerCache::findLayerOrCreate(uint32_t pictureID,
SkASSERT(pictureID != SK_InvalidGenID && start >= 0 && stop > 0);
GrCachedLayer* layer = fLayerHash.find(GrCachedLayer::Key(pictureID, initialMat, key, keySize));
if (NULL == layer) {
layer = this->createLayer(pictureID, start, stop,
srcIR, dstIR, initialMat,
key, keySize, paint);
layer = this->createLayer(pictureID, start, stop, bounds, initialMat, key, keySize, paint);
}
return layer;
@ -247,14 +242,8 @@ bool GrLayerCache::lock(GrCachedLayer* layer, const GrSurfaceDesc& desc, bool* n
return true;
}
// TODO: make the test for exact match depend on the image filters themselves
GrContext::ScratchTexMatch usage = GrContext::kApprox_ScratchTexMatch;
if (layer->fFilter) {
usage = GrContext::kExact_ScratchTexMatch;
}
SkAutoTUnref<GrTexture> tex(
fContext->refScratchTexture(desc, usage));
fContext->refScratchTexture(desc, GrContext::kApprox_ScratchTexMatch));
if (!tex) {
return false;

View File

@ -144,16 +144,13 @@ public:
// GrCachedLayer proper
GrCachedLayer(uint32_t pictureID, unsigned start, unsigned stop,
const SkIRect& srcIR, const SkIRect& dstIR,
const SkMatrix& ctm,
const SkIRect& bounds, const SkMatrix& ctm,
const unsigned* key, int keySize,
const SkPaint* paint)
: fKey(pictureID, ctm, key, keySize, true)
, fStart(start)
, fStop(stop)
, fSrcIR(srcIR)
, fDstIR(dstIR)
, fOffset(SkIPoint::Make(0, 0))
, fBounds(bounds)
, fPaint(paint ? SkNEW_ARGS(SkPaint, (*paint)) : NULL)
, fFilter(NULL)
, fTexture(NULL)
@ -164,10 +161,8 @@ public:
SkASSERT(SK_InvalidGenID != pictureID);
if (fPaint) {
if (fPaint->getImageFilter() && fPaint->getImageFilter()->canFilterImageGPU()) {
fFilter = SkSafeRef(fPaint->getImageFilter());
fPaint->setImageFilter(NULL);
}
fFilter = SkSafeRef(fPaint->getImageFilter());
fPaint->setImageFilter(NULL);
}
}
@ -184,8 +179,7 @@ public:
unsigned start() const { return fStart; }
// TODO: make bound debug only
const SkIRect& srcIR() const { return fSrcIR; }
const SkIRect& dstIR() const { return fDstIR; }
const SkIRect& bound() const { return fBounds; }
unsigned stop() const { return fStop; }
void setTexture(GrTexture* texture, const SkIRect& rect) {
SkRefCnt_SafeAssign(fTexture, texture);
@ -196,9 +190,6 @@ public:
const SkImageFilter* filter() const { return fFilter; }
const SkIRect& rect() const { return fRect; }
void setOffset(const SkIPoint& offset) { fOffset = offset; }
const SkIPoint& offset() const { return fOffset; }
void setPlot(GrPlot* plot) {
SkASSERT(NULL == plot || NULL == fPlot);
fPlot = plot;
@ -221,13 +212,7 @@ private:
// The final "restore" operation index of the cached layer
const unsigned fStop;
// The layer's src rect (i.e., the portion of the source scene required
// for filtering).
const SkIRect fSrcIR;
// The layer's dest rect (i.e., where it will land in device space)
const SkIRect fDstIR;
// Offset sometimes required by image filters
SkIPoint fOffset;
const SkIRect fBounds;
// The paint used when dropping the layer down into the owning canvas.
// Can be NULL. This class makes a copy for itself.
@ -291,8 +276,7 @@ public:
const unsigned* key, int keySize);
GrCachedLayer* findLayerOrCreate(uint32_t pictureID,
int start, int stop,
const SkIRect& srcIR,
const SkIRect& dstIR,
const SkIRect& bounds,
const SkMatrix& initialMat,
const unsigned* key, int keySize,
const SkPaint* paint);
@ -376,8 +360,7 @@ private:
void initAtlas();
GrCachedLayer* createLayer(uint32_t pictureID, int start, int stop,
const SkIRect& srcIR, const SkIRect& dstIR,
const SkMatrix& initialMat,
const SkIRect& bounds, const SkMatrix& initialMat,
const unsigned* key, int keySize,
const SkPaint* paint);

View File

@ -23,8 +23,7 @@ static void prepare_for_hoisting(GrLayerCache* layerCache,
const SkPicture* topLevelPicture,
const SkMatrix& initialMat,
const SkLayerInfo::BlockInfo& info,
const SkIRect& srcIR,
const SkIRect& dstIR,
const SkIRect& layerRect,
SkTDArray<GrHoistedLayer>* needRendering,
SkTDArray<GrHoistedLayer>* recycled,
bool attemptToAtlas,
@ -34,16 +33,15 @@ static void prepare_for_hoisting(GrLayerCache* layerCache,
GrCachedLayer* layer = layerCache->findLayerOrCreate(topLevelPicture->uniqueID(),
SkToInt(info.fSaveLayerOpID),
SkToInt(info.fRestoreOpID),
srcIR,
dstIR,
layerRect,
initialMat,
info.fKey,
info.fKeySize,
info.fPaint);
GrSurfaceDesc desc;
desc.fFlags = kRenderTarget_GrSurfaceFlag;
desc.fWidth = srcIR.width();
desc.fHeight = srcIR.height();
desc.fWidth = layerRect.width();
desc.fHeight = layerRect.height();
desc.fConfig = kSkia8888_GrPixelConfig;
desc.fSampleCnt = numSamples;
@ -82,40 +80,6 @@ static void prepare_for_hoisting(GrLayerCache* layerCache,
hl->fPreMat.preConcat(info.fPreMat);
}
// Compute the source rect if possible and return false if further processing
// on the layer should be abandoned based on its source rect.
static bool compute_source_rect(const SkLayerInfo::BlockInfo& info, const SkMatrix& initialMat,
const SkIRect& dstIR, SkIRect* srcIR) {
SkIRect clipBounds = dstIR;
SkMatrix totMat = initialMat;
totMat.preConcat(info.fPreMat);
totMat.preConcat(info.fLocalMat);
if (info.fPaint && info.fPaint->getImageFilter()) {
info.fPaint->getImageFilter()->filterBounds(clipBounds, totMat, &clipBounds);
}
if (!info.fSrcBounds.isEmpty()) {
SkRect r;
totMat.mapRect(&r, info.fSrcBounds);
r.roundOut(srcIR);
if (!srcIR->intersect(clipBounds)) {
return false;
}
} else {
*srcIR = clipBounds;
}
if (!GrLayerCache::PlausiblyAtlasable(srcIR->width(), srcIR->height())) {
return false;
}
return true;
}
// Atlased layers must be small enough to fit in the atlas, not have a
// paint with an image filter and be neither nested nor nesting.
// TODO: allow leaf nested layers to appear in the atlas.
@ -166,16 +130,14 @@ void GrLayerHoister::FindLayersToAtlas(GrContext* context,
continue;
}
const SkIRect dstIR = layerRect.roundOut();
const SkIRect ir = layerRect.roundOut();
SkIRect srcIR;
if (!compute_source_rect(info, initialMat, dstIR, &srcIR)) {
if (!GrLayerCache::PlausiblyAtlasable(ir.width(), ir.height())) {
continue;
}
prepare_for_hoisting(layerCache, topLevelPicture, initialMat,
info, srcIR, dstIR, atlased, recycled, true, 0);
info, ir, atlased, recycled, true, 0);
}
}
@ -217,14 +179,9 @@ void GrLayerHoister::FindLayersToHoist(GrContext* context,
continue;
}
const SkIRect dstIR = layerRect.roundOut();
const SkIRect ir = layerRect.roundOut();
SkIRect srcIR;
if (!compute_source_rect(info, initialMat, dstIR, &srcIR)) {
continue;
}
prepare_for_hoisting(layerCache, topLevelPicture, initialMat, info, srcIR, dstIR,
prepare_for_hoisting(layerCache, topLevelPicture, initialMat, info, ir,
needRendering, recycled, false, numSamples);
}
}
@ -241,7 +198,7 @@ void GrLayerHoister::DrawLayersToAtlas(GrContext* context,
for (int i = 0; i < atlased.count(); ++i) {
const GrCachedLayer* layer = atlased[i].fLayer;
const SkPicture* pict = atlased[i].fPicture;
const SkIPoint offset = SkIPoint::Make(layer->srcIR().fLeft, layer->srcIR().fTop);
const SkIPoint offset = SkIPoint::Make(layer->bound().fLeft, layer->bound().fTop);
SkDEBUGCODE(const SkPaint* layerPaint = layer->paint();)
SkASSERT(!layerPaint || !layerPaint->getImageFilter());
@ -277,51 +234,42 @@ void GrLayerHoister::DrawLayersToAtlas(GrContext* context,
}
}
void GrLayerHoister::FilterLayer(GrContext* context,
SkGpuDevice* device,
const GrHoistedLayer& info) {
GrCachedLayer* layer = info.fLayer;
void GrLayerHoister::FilterLayer(GrContext* context, SkGpuDevice* device, GrCachedLayer* layer) {
SkASSERT(layer->filter());
SkASSERT(layer->filter()->canFilterImageGPU());
static const int kDefaultCacheSize = 32 * 1024 * 1024;
SkBitmap filteredBitmap;
SkIPoint offset = SkIPoint::Make(0, 0);
if (layer->filter()->canFilterImageGPU()) {
SkBitmap filteredBitmap;
SkIPoint offset = SkIPoint::Make(0, 0);
const SkIPoint filterOffset = SkIPoint::Make(layer->srcIR().fLeft, layer->srcIR().fTop);
SkASSERT(0 == layer->rect().fLeft && 0 == layer->rect().fTop);
SkIRect clipBounds = layer->rect();
SkMatrix totMat = SkMatrix::I();
totMat.preConcat(info.fPreMat);
totMat.preConcat(info.fLocalMat);
totMat.postTranslate(-SkIntToScalar(filterOffset.fX), -SkIntToScalar(filterOffset.fY));
// This cache is transient, and is freed (along with all its contained
// textures) when it goes out of scope.
SkAutoTUnref<SkImageFilter::Cache> cache(SkImageFilter::Cache::Create(kDefaultCacheSize));
SkImageFilter::Context filterContext(SkMatrix::I(), clipBounds, cache);
if (!device->filterTexture(context, layer->texture(), layer->filter(),
filterContext, &filteredBitmap, &offset)) {
// Filtering failed. Press on with the unfiltered version
return;
}
SkASSERT(0 == layer->rect().fLeft && 0 == layer->rect().fTop);
SkIRect clipBounds = layer->rect();
// TODO: need to fix up offset
SkASSERT(0 == offset.fX && 0 == offset.fY);
// This cache is transient, and is freed (along with all its contained
// textures) when it goes out of scope.
SkAutoTUnref<SkImageFilter::Cache> cache(SkImageFilter::Cache::Create(kDefaultCacheSize));
SkImageFilter::Context filterContext(totMat, clipBounds, cache);
if (!device->filterTexture(context, layer->texture(), layer->filter(),
filterContext, &filteredBitmap, &offset)) {
// Filtering failed. Press on with the unfiltered version
return;
SkIRect newRect = SkIRect::MakeWH(filteredBitmap.width(), filteredBitmap.height());
layer->setTexture(filteredBitmap.getTexture(), newRect);
}
SkIRect newRect = SkIRect::MakeWH(filteredBitmap.width(), filteredBitmap.height());
layer->setTexture(filteredBitmap.getTexture(), newRect);
layer->setOffset(offset);
}
void GrLayerHoister::DrawLayers(GrContext* context, const SkTDArray<GrHoistedLayer>& layers) {
for (int i = 0; i < layers.count(); ++i) {
GrCachedLayer* layer = layers[i].fLayer;
const SkPicture* pict = layers[i].fPicture;
const SkIPoint offset = SkIPoint::Make(layer->srcIR().fLeft, layer->srcIR().fTop);
const SkIPoint offset = SkIPoint::Make(layer->bound().fLeft, layer->bound().fTop);
// Each non-atlased layer has its own GrTexture
SkAutoTUnref<SkSurface> surface(SkSurface::NewRenderTargetDirect(
@ -353,7 +301,7 @@ void GrLayerHoister::DrawLayers(GrContext* context, const SkTDArray<GrHoistedLay
if (layer->filter()) {
SkSurface_Gpu* gpuSurf = static_cast<SkSurface_Gpu*>(surface.get());
FilterLayer(context, gpuSurf->getDevice(), layers[i]);
FilterLayer(context, gpuSurf->getDevice(), layer);
}
}
}

View File

@ -108,9 +108,9 @@ private:
/** Update the GrTexture in 'layer' with its filtered version
@param context Owner of the layer cache (and thus the layers)
@param device Required by the filtering code
@param info Layer info for a layer needing filtering prior to being composited
@param layer A layer needing filtering prior to being composited
*/
static void FilterLayer(GrContext* context, SkGpuDevice* device, const GrHoistedLayer& info);
static void FilterLayer(GrContext* context, SkGpuDevice* device, GrCachedLayer* layer);
};

View File

@ -21,6 +21,8 @@ static inline void wrap_texture(GrTexture* texture, int width, int height, SkBit
}
static inline void draw_replacement_bitmap(GrCachedLayer* layer, SkCanvas* canvas) {
const SkRect src = SkRect::Make(layer->rect());
const SkRect dst = SkRect::Make(layer->bound());
SkBitmap bm;
wrap_texture(layer->texture(),
@ -28,22 +30,10 @@ static inline void draw_replacement_bitmap(GrCachedLayer* layer, SkCanvas* canva
!layer->isAtlased() ? layer->rect().height() : layer->texture()->height(),
&bm);
if (layer->isAtlased()) {
const SkRect src = SkRect::Make(layer->rect());
const SkRect dst = SkRect::Make(layer->srcIR());
SkASSERT(layer->offset().isZero());
canvas->save();
canvas->setMatrix(SkMatrix::I());
canvas->drawBitmapRectToRect(bm, &src, dst, layer->paint());
canvas->restore();
} else {
canvas->drawSprite(bm,
layer->srcIR().fLeft + layer->offset().fX,
layer->srcIR().fTop + layer->offset().fY,
layer->paint());
}
canvas->save();
canvas->setMatrix(SkMatrix::I());
canvas->drawBitmapRectToRect(bm, &src, dst, layer->paint());
canvas->restore();
}
// Used by GrRecordReplaceDraw. It intercepts nested drawPicture calls and

View File

@ -43,7 +43,6 @@ static void create_layers(skiatest::Reporter* reporter,
GrCachedLayer* layer = cache->findLayerOrCreate(picture.uniqueID(),
idOffset+i+1, idOffset+i+2,
SkIRect::MakeEmpty(),
SkIRect::MakeEmpty(),
SkMatrix::I(),
indices, 1,
NULL);

View File

@ -113,7 +113,6 @@ void test_replacements(skiatest::Reporter* r, GrContext* context, bool useBBH) {
SkPaint paint;
GrLayerCache* layerCache = context->getLayerCache();
GrCachedLayer* layer = layerCache->findLayerOrCreate(pic->uniqueID(), 0, 2,
SkIRect::MakeWH(kWidth, kHeight),
SkIRect::MakeWH(kWidth, kHeight),
SkMatrix::I(), key, 1, &paint);