Test: No code changes, just ran through clang-format Change-Id: Id23aa4ec7eebc0446fe3a30260f33e7fd455bb8c
174 lines
7.9 KiB
C++
174 lines
7.9 KiB
C++
/*
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* Copyright (C) 2015 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 may not use this file except in compliance with the License.
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* You 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 "BakedOpState.h"
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#include "ClipArea.h"
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namespace android {
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namespace uirenderer {
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static int computeClipSideFlags(const Rect& clip, const Rect& bounds) {
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int clipSideFlags = 0;
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if (clip.left > bounds.left) clipSideFlags |= OpClipSideFlags::Left;
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if (clip.top > bounds.top) clipSideFlags |= OpClipSideFlags::Top;
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if (clip.right < bounds.right) clipSideFlags |= OpClipSideFlags::Right;
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if (clip.bottom < bounds.bottom) clipSideFlags |= OpClipSideFlags::Bottom;
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return clipSideFlags;
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}
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ResolvedRenderState::ResolvedRenderState(LinearAllocator& allocator, Snapshot& snapshot,
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const RecordedOp& recordedOp, bool expandForStroke,
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bool expandForPathTexture) {
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// resolvedMatrix = parentMatrix * localMatrix
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transform.loadMultiply(*snapshot.transform, recordedOp.localMatrix);
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// resolvedClippedBounds = intersect(resolvedMatrix * opBounds, resolvedClipRect)
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clippedBounds = recordedOp.unmappedBounds;
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if (CC_UNLIKELY(expandForStroke)) {
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// account for non-hairline stroke
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clippedBounds.outset(recordedOp.paint->getStrokeWidth() * 0.5f);
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} else if (CC_UNLIKELY(expandForPathTexture)) {
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clippedBounds.outset(1);
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}
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transform.mapRect(clippedBounds);
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if (CC_UNLIKELY(expandForStroke &&
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(!transform.isPureTranslate() || recordedOp.paint->getStrokeWidth() < 1.0f))) {
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// account for hairline stroke when stroke may be < 1 scaled pixel
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// Non translate || strokeWidth < 1 is conservative, but will cover all cases
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clippedBounds.outset(0.5f);
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}
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// resolvedClipRect = intersect(parentMatrix * localClip, parentClip)
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clipState = snapshot.serializeIntersectedClip(allocator, recordedOp.localClip,
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*(snapshot.transform));
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LOG_ALWAYS_FATAL_IF(!clipState, "must clip!");
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const Rect& clipRect = clipState->rect;
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if (CC_UNLIKELY(clipRect.isEmpty() || !clippedBounds.intersects(clipRect))) {
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// Rejected based on either empty clip, or bounds not intersecting with clip
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// Note: we could rewind the clipState object in situations where the clipRect is empty,
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// but *only* if the caching logic within ClipArea was aware of the rewind.
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clipState = nullptr;
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clippedBounds.setEmpty();
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} else {
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// Not rejected! compute true clippedBounds, clipSideFlags, and path mask
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clipSideFlags = computeClipSideFlags(clipRect, clippedBounds);
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clippedBounds.doIntersect(clipRect);
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if (CC_UNLIKELY(snapshot.projectionPathMask)) {
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// map projection path mask from render target space into op space,
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// so intersection with op geometry is possible
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Matrix4 inverseTransform;
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inverseTransform.loadInverse(transform);
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SkMatrix skInverseTransform;
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inverseTransform.copyTo(skInverseTransform);
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auto localMask = allocator.create<SkPath>();
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snapshot.projectionPathMask->transform(skInverseTransform, localMask);
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localProjectionPathMask = localMask;
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}
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}
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}
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ResolvedRenderState::ResolvedRenderState(LinearAllocator& allocator, Snapshot& snapshot,
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const Matrix4& localTransform, const ClipBase* localClip) {
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transform.loadMultiply(*snapshot.transform, localTransform);
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clipState = snapshot.serializeIntersectedClip(allocator, localClip, *(snapshot.transform));
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clippedBounds = clipState->rect;
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clipSideFlags = OpClipSideFlags::Full;
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localProjectionPathMask = nullptr;
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}
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ResolvedRenderState::ResolvedRenderState(LinearAllocator& allocator, Snapshot& snapshot)
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: transform(*snapshot.transform)
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, clipState(snapshot.mutateClipArea().serializeClip(allocator))
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, clippedBounds(clipState->rect)
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, clipSideFlags(OpClipSideFlags::Full)
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, localProjectionPathMask(nullptr) {}
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ResolvedRenderState::ResolvedRenderState(const ClipRect* clipRect, const Rect& dstRect)
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: transform(Matrix4::identity())
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, clipState(clipRect)
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, clippedBounds(dstRect)
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, clipSideFlags(computeClipSideFlags(clipRect->rect, dstRect))
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, localProjectionPathMask(nullptr) {
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clippedBounds.doIntersect(clipRect->rect);
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}
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BakedOpState* BakedOpState::tryConstruct(LinearAllocator& allocator, Snapshot& snapshot,
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const RecordedOp& recordedOp) {
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if (CC_UNLIKELY(snapshot.getRenderTargetClip().isEmpty())) return nullptr;
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BakedOpState* bakedState =
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allocator.create_trivial<BakedOpState>(allocator, snapshot, recordedOp, false, false);
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if (bakedState->computedState.clippedBounds.isEmpty()) {
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// bounds are empty, so op is rejected
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allocator.rewindIfLastAlloc(bakedState);
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return nullptr;
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}
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return bakedState;
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}
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BakedOpState* BakedOpState::tryConstructUnbounded(LinearAllocator& allocator, Snapshot& snapshot,
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const RecordedOp& recordedOp) {
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if (CC_UNLIKELY(snapshot.getRenderTargetClip().isEmpty())) return nullptr;
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return allocator.create_trivial<BakedOpState>(allocator, snapshot, recordedOp);
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}
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BakedOpState* BakedOpState::tryStrokeableOpConstruct(LinearAllocator& allocator, Snapshot& snapshot,
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const RecordedOp& recordedOp,
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StrokeBehavior strokeBehavior,
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bool expandForPathTexture) {
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if (CC_UNLIKELY(snapshot.getRenderTargetClip().isEmpty())) return nullptr;
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bool expandForStroke =
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(strokeBehavior == StrokeBehavior::Forced ||
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(recordedOp.paint && recordedOp.paint->getStyle() != SkPaint::kFill_Style));
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BakedOpState* bakedState = allocator.create_trivial<BakedOpState>(
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allocator, snapshot, recordedOp, expandForStroke, expandForPathTexture);
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if (bakedState->computedState.clippedBounds.isEmpty()) {
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// bounds are empty, so op is rejected
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// NOTE: this won't succeed if a clip was allocated
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allocator.rewindIfLastAlloc(bakedState);
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return nullptr;
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}
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return bakedState;
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}
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BakedOpState* BakedOpState::tryShadowOpConstruct(LinearAllocator& allocator, Snapshot& snapshot,
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const ShadowOp* shadowOpPtr) {
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if (CC_UNLIKELY(snapshot.getRenderTargetClip().isEmpty())) return nullptr;
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// clip isn't empty, so construct the op
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return allocator.create_trivial<BakedOpState>(allocator, snapshot, shadowOpPtr);
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}
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BakedOpState* BakedOpState::directConstruct(LinearAllocator& allocator, const ClipRect* clip,
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const Rect& dstRect, const RecordedOp& recordedOp) {
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return allocator.create_trivial<BakedOpState>(clip, dstRect, recordedOp);
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}
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void BakedOpState::setupOpacity(const SkPaint* paint) {
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computedState.opaqueOverClippedBounds = computedState.transform.isSimple() &&
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computedState.clipState->mode == ClipMode::Rectangle &&
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MathUtils::areEqual(alpha, 1.0f) &&
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!roundRectClipState && PaintUtils::isOpaquePaint(paint);
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}
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} // namespace uirenderer
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} // namespace android
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