225 lines
8.4 KiB
C++
225 lines
8.4 KiB
C++
/*
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* Copyright (C) 2014 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you mPrimitiveFields.may not use this file except in compliance with the License.
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* You mPrimitiveFields.may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include "RenderProperties.h"
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#include <utils/Trace.h>
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#include <SkColorFilter.h>
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#include <SkMatrix.h>
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#include <SkPath.h>
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#include <SkPathOps.h>
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#include "Matrix.h"
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#include "hwui/Canvas.h"
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#include "utils/MathUtils.h"
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namespace android {
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namespace uirenderer {
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LayerProperties::LayerProperties() {
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reset();
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}
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LayerProperties::~LayerProperties() {
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setType(LayerType::None);
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}
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void LayerProperties::reset() {
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mOpaque = false;
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setFromPaint(nullptr);
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}
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bool LayerProperties::setColorFilter(SkColorFilter* filter) {
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if (mColorFilter == filter) return false;
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SkRefCnt_SafeAssign(mColorFilter, filter);
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return true;
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}
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bool LayerProperties::setFromPaint(const SkPaint* paint) {
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bool changed = false;
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changed |= setAlpha(static_cast<uint8_t>(PaintUtils::getAlphaDirect(paint)));
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changed |= setXferMode(PaintUtils::getBlendModeDirect(paint));
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changed |= setColorFilter(paint ? paint->getColorFilter() : nullptr);
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return changed;
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}
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LayerProperties& LayerProperties::operator=(const LayerProperties& other) {
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setType(other.type());
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setOpaque(other.opaque());
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setAlpha(other.alpha());
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setXferMode(other.xferMode());
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setColorFilter(other.colorFilter());
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return *this;
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}
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RenderProperties::ComputedFields::ComputedFields()
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: mTransformMatrix(nullptr) {
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}
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RenderProperties::ComputedFields::~ComputedFields() {
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delete mTransformMatrix;
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}
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RenderProperties::RenderProperties()
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: mStaticMatrix(nullptr)
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, mAnimationMatrix(nullptr) {
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}
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RenderProperties::~RenderProperties() {
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delete mStaticMatrix;
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delete mAnimationMatrix;
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}
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RenderProperties& RenderProperties::operator=(const RenderProperties& other) {
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if (this != &other) {
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mPrimitiveFields = other.mPrimitiveFields;
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setStaticMatrix(other.getStaticMatrix());
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setAnimationMatrix(other.getAnimationMatrix());
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setCameraDistance(other.getCameraDistance());
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mLayerProperties = other.layerProperties();
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// Force recalculation of the matrix, since other's dirty bit may be clear
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mPrimitiveFields.mMatrixOrPivotDirty = true;
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updateMatrix();
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}
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return *this;
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}
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static void dumpMatrix(std::ostream& output, std::string& indent,
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const char* label, SkMatrix* matrix) {
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if (matrix) {
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output << indent << "(" << label << " " << matrix << ": ";
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output << std::fixed << std::setprecision(2);
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output << "[" << matrix->get(0) << " "<< matrix->get(1) << " " << matrix->get(2) << "]";
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output << " [" << matrix->get(3) << " "<< matrix->get(4) << " " << matrix->get(5) << "]";
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output << " [" << matrix->get(6) << " "<< matrix->get(7) << " " << matrix->get(8) << "]";
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output << ")" << std::endl;
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}
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}
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void RenderProperties::debugOutputProperties(std::ostream& output, const int level) const {
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auto indent = std::string(level * 2, ' ');
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if (mPrimitiveFields.mLeft != 0 || mPrimitiveFields.mTop != 0) {
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output << indent << "(Translate (left, top) " << mPrimitiveFields.mLeft
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<< ", " << mPrimitiveFields.mTop << ")" << std::endl;
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}
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dumpMatrix(output, indent, "ConcatMatrix (static)", mStaticMatrix);
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dumpMatrix(output, indent, "ConcatMatrix (animation)", mAnimationMatrix);
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output << std::fixed << std::setprecision(2);
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if (hasTransformMatrix()) {
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if (isTransformTranslateOnly()) {
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output << indent << "(Translate " << getTranslationX() << ", " << getTranslationY()
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<< ", " << getZ() << ")" << std::endl;
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} else {
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dumpMatrix(output, indent, "ConcatMatrix ", mComputedFields.mTransformMatrix);
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}
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}
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const bool isLayer = effectiveLayerType() != LayerType::None;
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int clipFlags = getClippingFlags();
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if (mPrimitiveFields.mAlpha < 1
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&& !MathUtils::isZero(mPrimitiveFields.mAlpha)) {
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if (isLayer) {
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clipFlags &= ~CLIP_TO_BOUNDS; // bounds clipping done by layer
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}
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if (CC_LIKELY(isLayer || !getHasOverlappingRendering())) {
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// simply scale rendering content's alpha
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output << indent << "(ScaleAlpha " << mPrimitiveFields.mAlpha << ")" << std::endl;
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} else {
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// savelayeralpha to create an offscreen buffer to apply alpha
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Rect layerBounds(0, 0, getWidth(), getHeight());
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if (clipFlags) {
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getClippingRectForFlags(clipFlags, &layerBounds);
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clipFlags = 0; // all clipping done by savelayer
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}
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output << indent << "(SaveLayerAlpha "
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<< (int)layerBounds.left << ", " << (int)layerBounds.top << ", "
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<< (int)layerBounds.right << ", " << (int)layerBounds.bottom << ", "
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<< (int)(mPrimitiveFields.mAlpha * 255) << ", 0x" << std::hex
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<< (SaveFlags::HasAlphaLayer | SaveFlags::ClipToLayer) << ")" << std::dec
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<< std::endl;
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}
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}
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if (clipFlags) {
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Rect clipRect;
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getClippingRectForFlags(clipFlags, &clipRect);
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output << indent << "(ClipRect "
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<< (int)clipRect.left << ", " << (int)clipRect.top << ", "
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<< (int)clipRect.right << ", " << (int)clipRect.bottom << ")" << std::endl;
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}
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if (getRevealClip().willClip()) {
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Rect bounds;
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getRevealClip().getBounds(&bounds);
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output << indent << "(Clip to reveal clip with bounds "
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<< bounds.left << ", " << bounds.top << ", "
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<< bounds.right << ", " << bounds.bottom << ")" << std::endl;
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}
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auto& outline = mPrimitiveFields.mOutline;
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if (outline.getShouldClip()) {
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if (outline.isEmpty()) {
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output << indent << "(Clip to empty outline)";
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} else if (outline.willClip()) {
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const Rect& bounds = outline.getBounds();
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output << indent << "(Clip to outline with bounds "
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<< bounds.left << ", " << bounds.top << ", "
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<< bounds.right << ", " << bounds.bottom << ")" << std::endl;
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}
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}
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}
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void RenderProperties::updateMatrix() {
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if (mPrimitiveFields.mMatrixOrPivotDirty) {
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if (!mComputedFields.mTransformMatrix) {
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// only allocate a mPrimitiveFields.matrix if we have a complex transform
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mComputedFields.mTransformMatrix = new SkMatrix();
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}
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if (!mPrimitiveFields.mPivotExplicitlySet) {
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mPrimitiveFields.mPivotX = mPrimitiveFields.mWidth / 2.0f;
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mPrimitiveFields.mPivotY = mPrimitiveFields.mHeight / 2.0f;
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}
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SkMatrix* transform = mComputedFields.mTransformMatrix;
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transform->reset();
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if (MathUtils::isZero(getRotationX()) && MathUtils::isZero(getRotationY())) {
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transform->setTranslate(getTranslationX(), getTranslationY());
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transform->preRotate(getRotation(), getPivotX(), getPivotY());
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transform->preScale(getScaleX(), getScaleY(), getPivotX(), getPivotY());
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} else {
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SkMatrix transform3D;
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mComputedFields.mTransformCamera.save();
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transform->preScale(getScaleX(), getScaleY(), getPivotX(), getPivotY());
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mComputedFields.mTransformCamera.rotateX(mPrimitiveFields.mRotationX);
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mComputedFields.mTransformCamera.rotateY(mPrimitiveFields.mRotationY);
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mComputedFields.mTransformCamera.rotateZ(-mPrimitiveFields.mRotation);
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mComputedFields.mTransformCamera.getMatrix(&transform3D);
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transform3D.preTranslate(-getPivotX(), -getPivotY());
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transform3D.postTranslate(getPivotX() + getTranslationX(),
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getPivotY() + getTranslationY());
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transform->postConcat(transform3D);
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mComputedFields.mTransformCamera.restore();
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}
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mPrimitiveFields.mMatrixOrPivotDirty = false;
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}
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}
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} /* namespace uirenderer */
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} /* namespace android */
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