Revert of Override SkCanvas::drawImage() in SkDeferredCanvas and SkGPipe (patchset #8 id:140001 of https://codereview.chromium.org/613673005/)
Reason for revert: The patch is breaking the telemetry blink build on some windows configurations Original issue's description: > Override SkCanvas::drawImage() in SkDeferredCanvas and SkGPipe > > Depend on https://codereview.chromium.org/663233002 > > BUG=skia:2947 > > Committed: https://skia.googlesource.com/skia/+/687732fe046c9cfec940f2d7f661cd97651d10a8 > > Committed: https://skia.googlesource.com/skia/+/9bb7539a59ab15749fe26fecfec05330cffae684 BUG=skia:2947, 426708 Review URL: https://codereview.chromium.org/705633002
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@ -164,12 +164,8 @@ public:
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virtual void drawBitmapMatrix(const SkBitmap& bitmap, const SkMatrix& m,
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const SkPaint* paint) SK_OVERRIDE;
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virtual void drawBitmapNine(const SkBitmap& bitmap, const SkIRect& center,
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const SkRect& dst, const SkPaint* paint) SK_OVERRIDE;
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virtual void drawImage(const SkImage* image, SkScalar left, SkScalar top,
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const SkPaint* paint) SK_OVERRIDE;
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virtual void drawImageRect(const SkImage* image, const SkRect* src,
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const SkRect& dst,
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const SkPaint* paint) SK_OVERRIDE;
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const SkRect& dst, const SkPaint* paint)
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SK_OVERRIDE;
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virtual void drawSprite(const SkBitmap& bitmap, int left, int top,
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const SkPaint* paint) SK_OVERRIDE;
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virtual void drawVertices(VertexMode vmode, int vertexCount,
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@ -46,8 +46,6 @@ enum DrawOps {
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kDrawClear_DrawOp,
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kDrawData_DrawOp,
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kDrawDRRect_DrawOp,
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kDrawImage_DrawOp,
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kDrawImageRect_DrawOp,
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kDrawOval_DrawOp,
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kDrawPaint_DrawOp,
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kDrawPatch_DrawOp,
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@ -158,10 +156,6 @@ enum {
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// converted into and out of this flag to save space
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kDrawBitmap_Bleed_DrawOpFlag = 1 << 2,
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};
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enum {
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kDrawImage_HasPaint_DrawOpFlag = 1 << 0,
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kDrawImage_HasSrcRect_DrawOpFlag = 1 << 1,
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};
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enum {
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kClip_HasAntiAlias_DrawOpFlag = 1 << 0,
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};
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@ -651,40 +651,6 @@ static void drawSprite_rp(SkCanvas* canvas, SkReader32* reader, uint32_t op32,
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}
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}
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static void drawImage_rp(SkCanvas* canvas, SkReader32* reader, uint32_t op32,
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SkGPipeState* state) {
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bool hasPaint = SkToBool(DrawOp_unpackFlags(op32) & kDrawBitmap_HasPaint_DrawOpFlag);
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// Balances call to ref() in SkGPipeWrite
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SkAutoTUnref<const SkImage> image (static_cast<const SkImage*>(reader->readPtr()));
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SkScalar left = reader->readScalar();
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SkScalar top = reader->readScalar();
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if (state->shouldDraw()) {
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canvas->drawImage(image, left, top, hasPaint ? &state->paint() : NULL);
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}
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}
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static void drawImageRect_rp(SkCanvas* canvas, SkReader32* reader,
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uint32_t op32, SkGPipeState* state) {
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unsigned flags = DrawOp_unpackFlags(op32);
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bool hasPaint = SkToBool(flags & kDrawBitmap_HasPaint_DrawOpFlag);
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bool hasSrc = SkToBool(flags & kDrawBitmap_HasSrcRect_DrawOpFlag);
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// Balances call to ref() in SkGPipeWrite
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SkAutoTUnref<const SkImage> image (static_cast<const SkImage*>(reader->readPtr()));
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const SkRect* src;
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if (hasSrc) {
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src = skip<SkRect>(reader);
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} else {
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src = NULL;
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}
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const SkRect* dst = skip<SkRect>(reader);
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if (state->shouldDraw()) {
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canvas->drawImageRect(image, src, *dst, hasPaint ? &state->paint() : NULL);
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}
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}
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///////////////////////////////////////////////////////////////////////////////
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static void drawData_rp(SkCanvas* canvas, SkReader32* reader, uint32_t op32,
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@ -865,8 +831,6 @@ static const ReadProc gReadTable[] = {
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drawClear_rp,
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drawData_rp,
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drawDRRect_rp,
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drawImage_rp,
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drawImageRect_rp,
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drawOval_rp,
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drawPaint_rp,
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drawPatch_rp,
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@ -250,11 +250,6 @@ public:
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const SkPaint*) SK_OVERRIDE;
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virtual void drawBitmapNine(const SkBitmap& bitmap, const SkIRect& center,
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const SkRect& dst, const SkPaint* paint = NULL) SK_OVERRIDE;
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virtual void drawImage(const SkImage* image, SkScalar left, SkScalar top,
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const SkPaint* paint) SK_OVERRIDE;
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virtual void drawImageRect(const SkImage* image, const SkRect* src,
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const SkRect& dst,
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const SkPaint* paint) SK_OVERRIDE;
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virtual void drawSprite(const SkBitmap&, int left, int top,
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const SkPaint*) SK_OVERRIDE;
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virtual void drawVertices(VertexMode, int vertexCount,
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@ -364,9 +359,6 @@ private:
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bool commonDrawBitmap(const SkBitmap& bm, DrawOps op, unsigned flags,
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size_t opBytesNeeded, const SkPaint* paint);
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bool commonDrawImage(const SkImage* image, DrawOps op, unsigned flags,
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size_t opBytesNeeded, const SkPaint* paint);
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SkPaint fPaint;
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void writePaint(const SkPaint&);
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@ -479,7 +471,6 @@ SkGPipeCanvas::SkGPipeCanvas(SkGPipeController* controller,
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}
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}
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fFlattenableHeap.setBitmapStorage(fBitmapHeap);
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this->doNotify();
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}
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@ -808,79 +799,6 @@ bool SkGPipeCanvas::commonDrawBitmap(const SkBitmap& bm, DrawOps op,
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return false;
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}
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bool SkGPipeCanvas::commonDrawImage(const SkImage* image, DrawOps op,
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unsigned flags,
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size_t opBytesNeeded,
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const SkPaint* paint) {
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if (fDone) {
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return false;
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}
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if (paint != NULL) {
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flags |= kDrawBitmap_HasPaint_DrawOpFlag;
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this->writePaint(*paint);
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}
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opBytesNeeded += sizeof (SkImage*);
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if (this->needOpBytes(opBytesNeeded)) {
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this->writeOp(op, flags, 0);
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image->ref(); // The SkGPipeReader will have to call unref()
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fWriter.writePtr(static_cast<void*>(const_cast<SkImage*>(image)));
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return true;
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}
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return false;
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}
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void SkGPipeCanvas::drawImage(const SkImage* image, SkScalar left, SkScalar top,
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const SkPaint* paint) {
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if (is_cross_process(fFlags)){
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// If the SkGPipe is cross-process, we will have to flatten the data in the SkImage, so
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// fallback to the default implementation in SkCanvas (which calls SkImage::draw())
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// https://code.google.com//p/skia/issues/detail?id=2985
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this->INHERITED::drawImage(image, left, top, paint);
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} else {
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NOTIFY_SETUP(this);
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size_t opBytesNeeded = sizeof(SkScalar) * 2;
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if (this->commonDrawImage(image, kDrawImage_DrawOp, 0, opBytesNeeded, paint)) {
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fWriter.writeScalar(left);
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fWriter.writeScalar(top);
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}
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}
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}
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void SkGPipeCanvas::drawImageRect(const SkImage* image, const SkRect* src,
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const SkRect& dst,
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const SkPaint* paint) {
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if (is_cross_process(fFlags)){
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// If the SkGPipe is cross-process, we will have to flatten the data in the SkImage, so
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// fallback to the default implementation in SkCanvas (which calls SkImage::drawRect())
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// https://code.google.com//p/skia/issues/detail?id=2985
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this->INHERITED::drawImageRect(image, src, dst, paint);
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} else {
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NOTIFY_SETUP(this);
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size_t opBytesNeeded = sizeof (SkRect);
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bool hasSrc = src != NULL;
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unsigned flags;
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if (hasSrc) {
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flags = kDrawImage_HasSrcRect_DrawOpFlag;
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opBytesNeeded += sizeof (SkRect);
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} else {
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flags = 0;
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}
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if (this->commonDrawImage(image, kDrawImageRect_DrawOp, flags, opBytesNeeded, paint)) {
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if (hasSrc) {
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fWriter.writeRect(*src);
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}
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fWriter.writeRect(dst);
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}
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}
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}
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void SkGPipeCanvas::drawBitmap(const SkBitmap& bm, SkScalar left, SkScalar top,
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const SkPaint* paint) {
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NOTIFY_SETUP(this);
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@ -866,43 +866,6 @@ void SkDeferredCanvas::drawBitmapNine(const SkBitmap& bitmap,
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this->recordedDrawCommand();
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}
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void SkDeferredCanvas::drawImage(const SkImage* image, SkScalar left, SkScalar top,
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const SkPaint* paint) {
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SkRect imageRect = SkRect::MakeXYWH(left, top,
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SkIntToScalar(image->width()), SkIntToScalar(image->height()));
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bool isImageOpaque = image->isOpaque();
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SkPaintBitmapOpacity pct = isImageOpaque
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? kOpaque_SkPaintBitmapOpacity : kUnknown_SkPaintBitmapOpacity;
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if (fDeferredDrawing &&
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this->isFullFrame(&imageRect, paint) &&
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(isImageOpaque ||isPaintOpaque(paint, pct))) {
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this->getDeferredDevice()->skipPendingCommands();
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}
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AutoImmediateDrawIfNeeded autoDraw(*this, paint);
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this->drawingCanvas()->drawImage(image, left, top, paint);
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this->recordedDrawCommand();
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}
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void SkDeferredCanvas::drawImageRect(const SkImage* image, const SkRect* src,
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const SkRect& dst,
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const SkPaint* paint) {
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bool isImageOpaque = image->isOpaque();
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SkPaintBitmapOpacity pct = isImageOpaque
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? kOpaque_SkPaintBitmapOpacity : kUnknown_SkPaintBitmapOpacity;
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if (fDeferredDrawing &&
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this->isFullFrame(&dst, paint) &&
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(isImageOpaque || isPaintOpaque(paint, pct))) {
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this->getDeferredDevice()->skipPendingCommands();
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}
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AutoImmediateDrawIfNeeded autoDraw(*this, paint);
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this->drawingCanvas()->drawImageRect(image, src, dst, paint);
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this->recordedDrawCommand();
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}
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void SkDeferredCanvas::drawSprite(const SkBitmap& bitmap, int left, int top,
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const SkPaint* paint) {
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SkRect bitmapRect = SkRect::MakeXYWH(
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