| Index: src/gpu/SkGpuDevice.cpp
|
| diff --git a/src/gpu/SkGpuDevice.cpp b/src/gpu/SkGpuDevice.cpp
|
| index 3f1908be20f9d3dc191082369af97a064f50118c..3a9acb265d22b9c7d26bf8a245d2b7b6cb766e3b 100644
|
| --- a/src/gpu/SkGpuDevice.cpp
|
| +++ b/src/gpu/SkGpuDevice.cpp
|
| @@ -1963,21 +1963,18 @@ bool SkGpuDevice::EXPERIMENTAL_drawPicture(SkCanvas* canvas, const SkPicture* pi
|
|
|
| layerInfo->fBM = SkNEW(SkBitmap); // fBM is allocated so ReplacementInfo can be POD
|
| wrap_texture(layer->texture(),
|
| - layer->rect().isEmpty() ? desc.fWidth : layer->texture()->width(),
|
| - layer->rect().isEmpty() ? desc.fHeight : layer->texture()->height(),
|
| + !layer->isAtlased() ? desc.fWidth : layer->texture()->width(),
|
| + !layer->isAtlased() ? desc.fHeight : layer->texture()->height(),
|
| layerInfo->fBM);
|
|
|
| SkASSERT(info.fPaint);
|
| layerInfo->fPaint = info.fPaint;
|
|
|
| - if (layer->rect().isEmpty()) {
|
| - layerInfo->fSrcRect = SkIRect::MakeWH(desc.fWidth, desc.fHeight);
|
| - } else {
|
| - layerInfo->fSrcRect = SkIRect::MakeXYWH(layer->rect().fLeft,
|
| - layer->rect().fTop,
|
| - layer->rect().width(),
|
| - layer->rect().height());
|
| - }
|
| + layerInfo->fSrcRect = SkIRect::MakeXYWH(layer->rect().fLeft,
|
| + layer->rect().fTop,
|
| + layer->rect().width(),
|
| + layer->rect().height());
|
| +
|
|
|
| if (needsRendering) {
|
| SkAutoTUnref<SkSurface> surface(SkSurface::NewRenderTargetDirect(
|
| @@ -1987,14 +1984,12 @@ bool SkGpuDevice::EXPERIMENTAL_drawPicture(SkCanvas* canvas, const SkPicture* pi
|
|
|
| SkCanvas* canvas = surface->getCanvas();
|
|
|
| - if (!layer->rect().isEmpty()) {
|
| - // Add a rect clip to make sure the rendering doesn't
|
| - // extend beyond the boundaries of the atlased sub-rect
|
| - SkRect bound = SkRect::MakeXYWH(SkIntToScalar(layer->rect().fLeft),
|
| - SkIntToScalar(layer->rect().fTop),
|
| - SkIntToScalar(layer->rect().width()),
|
| - SkIntToScalar(layer->rect().height()));
|
| - canvas->clipRect(bound);
|
| + // Add a rect clip to make sure the rendering doesn't
|
| + // extend beyond the boundaries of the atlased sub-rect
|
| + SkRect bound = SkRect::Make(layerInfo->fSrcRect);
|
| + canvas->clipRect(bound);
|
| +
|
| + if (layer->isAtlased()) {
|
| // Since 'clear' doesn't respect the clip we need to draw a rect
|
| // TODO: ensure none of the atlased layers contain a clear call!
|
| SkPaint paint;
|
| @@ -2004,16 +1999,12 @@ bool SkGpuDevice::EXPERIMENTAL_drawPicture(SkCanvas* canvas, const SkPicture* pi
|
| canvas->clear(SK_ColorTRANSPARENT);
|
| }
|
|
|
| - canvas->setMatrix(info.fCTM);
|
| -
|
| - if (!layer->rect().isEmpty()) {
|
| - // info.fCTM maps the layer's top/left to the origin.
|
| - // Since this layer is atlased the top/left corner needs
|
| - // to be offset to some arbitrary location in the backing
|
| - // texture.
|
| - canvas->translate(SkIntToScalar(layer->rect().fLeft),
|
| - SkIntToScalar(layer->rect().fTop));
|
| - }
|
| + // info.fCTM maps the layer's top/left to the origin.
|
| + // If this layer is atlased the top/left corner needs
|
| + // to be offset to some arbitrary location in the backing
|
| + // texture.
|
| + canvas->translate(bound.fLeft, bound.fTop);
|
| + canvas->concat(info.fCTM);
|
|
|
| SkPictureRangePlayback rangePlayback(picture,
|
| info.fSaveLayerOpID,
|
|
|