зеркало из https://github.com/mozilla/gecko-dev.git
217 строки
7.8 KiB
C++
217 строки
7.8 KiB
C++
/* -*- Mode: C++; tab-width: 20; indent-tabs-mode: nil; c-basic-offset: 2 -*-
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* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#include "gfxDrawable.h"
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#include "gfxASurface.h"
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#include "gfxContext.h"
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#include "gfxPlatform.h"
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#include "gfx2DGlue.h"
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#ifdef MOZ_X11
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# include "cairo.h"
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# include "gfxXlibSurface.h"
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#endif
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#include "mozilla/gfx/Logging.h"
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using namespace mozilla;
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using namespace mozilla::gfx;
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gfxSurfaceDrawable::gfxSurfaceDrawable(SourceSurface* aSurface,
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const IntSize aSize,
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const gfxMatrix aTransform)
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: gfxDrawable(aSize), mSourceSurface(aSurface), mTransform(aTransform) {
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if (!mSourceSurface) {
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gfxWarning() << "Creating gfxSurfaceDrawable with null SourceSurface";
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}
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}
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bool gfxSurfaceDrawable::DrawWithSamplingRect(
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DrawTarget* aDrawTarget, CompositionOp aOp, AntialiasMode aAntialiasMode,
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const gfxRect& aFillRect, const gfxRect& aSamplingRect,
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ExtendMode aExtendMode, const SamplingFilter aSamplingFilter,
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gfxFloat aOpacity) {
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if (!mSourceSurface) {
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return true;
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}
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// When drawing with CLAMP we can expand the sampling rect to the nearest
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// pixel without changing the result.
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IntRect intRect =
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IntRect::RoundOut(aSamplingRect.X(), aSamplingRect.Y(),
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aSamplingRect.Width(), aSamplingRect.Height());
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IntSize size = mSourceSurface->GetSize();
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if (!IntRect(IntPoint(), size).Contains(intRect)) {
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return false;
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}
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DrawInternal(aDrawTarget, aOp, aAntialiasMode, aFillRect, intRect,
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ExtendMode::CLAMP, aSamplingFilter, aOpacity, gfxMatrix());
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return true;
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}
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bool gfxSurfaceDrawable::Draw(gfxContext* aContext, const gfxRect& aFillRect,
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ExtendMode aExtendMode,
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const SamplingFilter aSamplingFilter,
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gfxFloat aOpacity, const gfxMatrix& aTransform)
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{
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if (!mSourceSurface) {
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return true;
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}
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DrawInternal(aContext->GetDrawTarget(), aContext->CurrentOp(),
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aContext->CurrentAntialiasMode(), aFillRect, IntRect(),
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aExtendMode, aSamplingFilter, aOpacity, aTransform);
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return true;
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}
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void gfxSurfaceDrawable::DrawInternal(
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DrawTarget* aDrawTarget, CompositionOp aOp, AntialiasMode aAntialiasMode,
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const gfxRect& aFillRect, const IntRect& aSamplingRect,
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ExtendMode aExtendMode, const SamplingFilter aSamplingFilter,
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gfxFloat aOpacity, const gfxMatrix& aTransform) {
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Matrix patternTransform = ToMatrix(aTransform * mTransform);
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patternTransform.Invert();
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SurfacePattern pattern(mSourceSurface, aExtendMode, patternTransform,
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aSamplingFilter, aSamplingRect);
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Rect fillRect = ToRect(aFillRect);
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if (aOp == CompositionOp::OP_SOURCE && aOpacity == 1.0) {
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// Emulate cairo operator source which is bound by mask!
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aDrawTarget->ClearRect(fillRect);
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aDrawTarget->FillRect(fillRect, pattern);
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} else {
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aDrawTarget->FillRect(fillRect, pattern,
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DrawOptions(aOpacity, aOp, aAntialiasMode));
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}
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}
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gfxCallbackDrawable::gfxCallbackDrawable(gfxDrawingCallback* aCallback,
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const IntSize aSize)
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: gfxDrawable(aSize), mCallback(aCallback) {}
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already_AddRefed<gfxSurfaceDrawable> gfxCallbackDrawable::MakeSurfaceDrawable(
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gfxContext* aContext, const SamplingFilter aSamplingFilter) {
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SurfaceFormat format = gfxPlatform::GetPlatform()->Optimal2DFormatForContent(
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gfxContentType::COLOR_ALPHA);
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if (!aContext->GetDrawTarget()->CanCreateSimilarDrawTarget(mSize, format)) {
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return nullptr;
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}
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RefPtr<DrawTarget> dt =
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aContext->GetDrawTarget()->CreateSimilarDrawTarget(mSize, format);
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if (!dt || !dt->IsValid()) return nullptr;
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RefPtr<gfxContext> ctx = gfxContext::CreateOrNull(dt);
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MOZ_ASSERT(ctx); // already checked for target above
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Draw(ctx, gfxRect(0, 0, mSize.width, mSize.height), ExtendMode::CLAMP,
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aSamplingFilter);
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RefPtr<SourceSurface> surface = dt->Snapshot();
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if (surface) {
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RefPtr<gfxSurfaceDrawable> drawable =
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new gfxSurfaceDrawable(surface, mSize);
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return drawable.forget();
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}
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return nullptr;
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}
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static bool IsRepeatingExtendMode(ExtendMode aExtendMode) {
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switch (aExtendMode) {
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case ExtendMode::REPEAT:
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case ExtendMode::REPEAT_X:
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case ExtendMode::REPEAT_Y:
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return true;
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default:
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return false;
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}
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}
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bool gfxCallbackDrawable::Draw(gfxContext* aContext, const gfxRect& aFillRect,
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ExtendMode aExtendMode,
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const SamplingFilter aSamplingFilter,
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gfxFloat aOpacity, const gfxMatrix& aTransform) {
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if ((IsRepeatingExtendMode(aExtendMode) || aOpacity != 1.0 ||
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aContext->CurrentOp() != CompositionOp::OP_OVER) &&
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!mSurfaceDrawable) {
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mSurfaceDrawable = MakeSurfaceDrawable(aContext, aSamplingFilter);
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}
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if (mSurfaceDrawable)
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return mSurfaceDrawable->Draw(aContext, aFillRect, aExtendMode,
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aSamplingFilter, aOpacity, aTransform);
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if (mCallback)
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return (*mCallback)(aContext, aFillRect, aSamplingFilter, aTransform);
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return false;
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}
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gfxPatternDrawable::gfxPatternDrawable(gfxPattern* aPattern,
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const IntSize aSize)
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: gfxDrawable(aSize), mPattern(aPattern) {}
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gfxPatternDrawable::~gfxPatternDrawable() = default;
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class DrawingCallbackFromDrawable : public gfxDrawingCallback {
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public:
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explicit DrawingCallbackFromDrawable(gfxDrawable* aDrawable)
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: mDrawable(aDrawable) {
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NS_ASSERTION(aDrawable, "aDrawable is null!");
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}
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virtual ~DrawingCallbackFromDrawable() = default;
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bool operator()(gfxContext* aContext, const gfxRect& aFillRect,
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const SamplingFilter aSamplingFilter,
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const gfxMatrix& aTransform = gfxMatrix()) override {
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return mDrawable->Draw(aContext, aFillRect, ExtendMode::CLAMP,
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aSamplingFilter, 1.0, aTransform);
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}
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private:
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RefPtr<gfxDrawable> mDrawable;
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};
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already_AddRefed<gfxCallbackDrawable>
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gfxPatternDrawable::MakeCallbackDrawable() {
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RefPtr<gfxDrawingCallback> callback = new DrawingCallbackFromDrawable(this);
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RefPtr<gfxCallbackDrawable> callbackDrawable =
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new gfxCallbackDrawable(callback, mSize);
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return callbackDrawable.forget();
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}
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bool gfxPatternDrawable::Draw(gfxContext* aContext, const gfxRect& aFillRect,
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ExtendMode aExtendMode,
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const SamplingFilter aSamplingFilter,
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gfxFloat aOpacity, const gfxMatrix& aTransform) {
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DrawTarget& aDrawTarget = *aContext->GetDrawTarget();
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if (!mPattern) return false;
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if (IsRepeatingExtendMode(aExtendMode)) {
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// We can't use mPattern directly: We want our repeated tiles to have
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// the size mSize, which might not be the case in mPattern.
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// So we need to draw mPattern into a surface of size mSize, create
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// a pattern from the surface and draw that pattern.
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// gfxCallbackDrawable and gfxSurfaceDrawable already know how to do
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// those things, so we use them here. Drawing mPattern into the surface
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// will happen through this Draw() method with aRepeat = false.
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RefPtr<gfxCallbackDrawable> callbackDrawable = MakeCallbackDrawable();
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return callbackDrawable->Draw(aContext, aFillRect, aExtendMode,
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aSamplingFilter, aOpacity, aTransform);
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}
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gfxMatrix oldMatrix = mPattern->GetMatrix();
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mPattern->SetMatrix(aTransform * oldMatrix);
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DrawOptions drawOptions(aOpacity);
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aDrawTarget.FillRect(ToRect(aFillRect), *mPattern->GetPattern(&aDrawTarget),
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drawOptions);
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mPattern->SetMatrix(oldMatrix);
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return true;
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}
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