Index: src/effects/SkDropShadowImageFilter.cpp |
diff --git a/src/effects/SkDropShadowImageFilter.cpp b/src/effects/SkDropShadowImageFilter.cpp |
index 22bee9dade72c6f75438863f08925d3567b96b49..a0b0038a4fa6e5b38fd68972137c58ee68b3eb35 100644 |
--- a/src/effects/SkDropShadowImageFilter.cpp |
+++ b/src/effects/SkDropShadowImageFilter.cpp |
@@ -11,7 +11,7 @@ |
#include "SkBlurImageFilter.h" |
#include "SkCanvas.h" |
#include "SkColorMatrixFilter.h" |
-#include "SkDevice.h" |
+#include "SkSurface.h" |
#include "SkReadBuffer.h" |
#include "SkWriteBuffer.h" |
@@ -53,25 +53,25 @@ void SkDropShadowImageFilter::flatten(SkWriteBuffer& buffer) const { |
buffer.writeInt(static_cast<int>(fShadowMode)); |
} |
-bool SkDropShadowImageFilter::onFilterImage(Proxy* proxy, const SkBitmap& source, |
+bool SkDropShadowImageFilter::onFilterImage(Proxy* proxy, SkImage& source, |
const Context& ctx, |
- SkBitmap* result, SkIPoint* offset) const |
+ SkAutoTUnref<SkImage>& result, SkIPoint* offset) const |
{ |
- SkBitmap src = source; |
+ SkAutoTUnref<SkImage> src(&source); |
SkIPoint srcOffset = SkIPoint::Make(0, 0); |
- if (getInput(0) && !getInput(0)->filterImage(proxy, source, ctx, &src, &srcOffset)) |
+ if (getInput(0) && !getInput(0)->filterImage(proxy, source, ctx, src, &srcOffset)) |
return false; |
SkIRect bounds; |
- if (!this->applyCropRect(ctx, src, srcOffset, &bounds)) { |
+ if (!this->applyCropRect(ctx, *src, srcOffset, &bounds)) { |
return false; |
} |
- SkAutoTUnref<SkBaseDevice> device(proxy->createDevice(bounds.width(), bounds.height())); |
- if (NULL == device.get()) { |
+ SkAutoTUnref<SkSurface> surface(proxy->createSurface(bounds.width(), bounds.height())); |
+ if (NULL == surface.get()) { |
return false; |
} |
- SkCanvas canvas(device.get()); |
+ SkCanvas* canvas = surface->getCanvas(); |
SkVector sigma = SkVector::Make(fSigmaX, fSigmaY); |
ctx.ctm().mapVectors(&sigma, 1); |
@@ -86,13 +86,19 @@ bool SkDropShadowImageFilter::onFilterImage(Proxy* proxy, const SkBitmap& source |
paint.setXfermodeMode(SkXfermode::kSrcOver_Mode); |
SkVector offsetVec = SkVector::Make(fDx, fDy); |
ctx.ctm().mapVectors(&offsetVec, 1); |
- canvas.translate(SkIntToScalar(srcOffset.fX - bounds.fLeft), |
+ canvas->translate(SkIntToScalar(srcOffset.fX - bounds.fLeft), |
SkIntToScalar(srcOffset.fY - bounds.fTop)); |
- canvas.drawBitmap(src, offsetVec.fX, offsetVec.fY, &paint); |
+ canvas->drawImage(src, offsetVec.fX, offsetVec.fY, &paint); |
if (fShadowMode == kDrawShadowAndForeground_ShadowMode) { |
- canvas.drawBitmap(src, 0, 0); |
+ canvas->drawImage(src, 0, 0); |
} |
- *result = device->accessBitmap(false); |
+ |
+ SkImage* image = surface->newImageSnapshot(SkSurface::kYes_Budgeted); |
+ if (NULL == image) { |
+ return false; |
+ } |
+ result.reset(image); |
+ |
offset->fX = bounds.fLeft; |
offset->fY = bounds.fTop; |
return true; |