зеркало из https://github.com/mozilla/gecko-dev.git
464 строки
16 KiB
C++
464 строки
16 KiB
C++
/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim: set ts=8 sts=2 et sw=2 tw=80: */
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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 "mozilla/layers/ContentCompositorBridgeParent.h"
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#include <stdint.h> // for uint64_t
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#include "apz/src/APZCTreeManager.h" // for APZCTreeManager
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#include "gfxUtils.h"
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#ifdef XP_WIN
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# include "mozilla/gfx/DeviceManagerDx.h" // for DeviceManagerDx
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# include "mozilla/layers/ImageDataSerializer.h"
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#endif
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#include "mozilla/ipc/Transport.h" // for Transport
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#include "mozilla/layers/AnimationHelper.h" // for CompositorAnimationStorage
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#include "mozilla/layers/APZCTreeManagerParent.h" // for APZCTreeManagerParent
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#include "mozilla/layers/APZUpdater.h" // for APZUpdater
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#include "mozilla/layers/CompositorOptions.h"
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#include "mozilla/layers/CompositorThread.h"
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#include "mozilla/layers/LayerTreeOwnerTracker.h"
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#include "mozilla/layers/RemoteContentController.h"
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#include "mozilla/layers/WebRenderBridgeParent.h"
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#include "mozilla/layers/AsyncImagePipelineManager.h"
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#include "mozilla/webgpu/WebGPUParent.h"
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#include "mozilla/mozalloc.h" // for operator new, etc
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#include "nsDebug.h" // for NS_ASSERTION, etc
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#include "nsTArray.h" // for nsTArray
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#include "nsXULAppAPI.h" // for XRE_GetIOMessageLoop
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#include "mozilla/Unused.h"
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#include "mozilla/StaticPrefs_dom.h"
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#include "mozilla/StaticPtr.h"
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#include "mozilla/Telemetry.h"
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#include "mozilla/BaseProfilerMarkerTypes.h"
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#include "GeckoProfiler.h"
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namespace mozilla {
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namespace layers {
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// defined in CompositorBridgeParent.cpp
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typedef std::map<LayersId, CompositorBridgeParent::LayerTreeState> LayerTreeMap;
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extern LayerTreeMap sIndirectLayerTrees;
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extern StaticAutoPtr<mozilla::Monitor> sIndirectLayerTreesLock;
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void EraseLayerState(LayersId aId);
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void ContentCompositorBridgeParent::ActorDestroy(ActorDestroyReason aWhy) {
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mCanSend = false;
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// We must keep this object alive untill the code handling message
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// reception is finished on this thread.
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GetCurrentSerialEventTarget()->Dispatch(NewRunnableMethod(
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"layers::ContentCompositorBridgeParent::DeferredDestroy", this,
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&ContentCompositorBridgeParent::DeferredDestroy));
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}
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PAPZCTreeManagerParent*
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ContentCompositorBridgeParent::AllocPAPZCTreeManagerParent(
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const LayersId& aLayersId) {
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// Check to see if this child process has access to this layer tree.
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if (!LayerTreeOwnerTracker::Get()->IsMapped(aLayersId, OtherPid())) {
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NS_ERROR(
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"Unexpected layers id in AllocPAPZCTreeManagerParent; dropping "
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"message...");
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return nullptr;
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}
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MonitorAutoLock lock(*sIndirectLayerTreesLock);
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CompositorBridgeParent::LayerTreeState& state =
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sIndirectLayerTrees[aLayersId];
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// If the widget has shutdown its compositor, we may not have had a chance yet
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// to unmap our layers id, and we could get here without a parent compositor.
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// In this case return an empty APZCTM.
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if (!state.mParent) {
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// Note: we immediately call ClearTree since otherwise the APZCTM will
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// retain a reference to itself, through the checkerboard observer.
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LayersId dummyId{0};
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const bool useWebRender = false;
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RefPtr<APZCTreeManager> temp = new APZCTreeManager(dummyId);
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RefPtr<APZUpdater> tempUpdater = new APZUpdater(temp, useWebRender);
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tempUpdater->ClearTree(dummyId);
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return new APZCTreeManagerParent(aLayersId, temp, tempUpdater);
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}
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state.mParent->AllocateAPZCTreeManagerParent(lock, aLayersId, state);
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return state.mApzcTreeManagerParent;
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}
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bool ContentCompositorBridgeParent::DeallocPAPZCTreeManagerParent(
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PAPZCTreeManagerParent* aActor) {
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APZCTreeManagerParent* parent = static_cast<APZCTreeManagerParent*>(aActor);
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MonitorAutoLock lock(*sIndirectLayerTreesLock);
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auto iter = sIndirectLayerTrees.find(parent->GetLayersId());
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if (iter != sIndirectLayerTrees.end()) {
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CompositorBridgeParent::LayerTreeState& state = iter->second;
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MOZ_ASSERT(state.mApzcTreeManagerParent == parent);
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state.mApzcTreeManagerParent = nullptr;
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}
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delete parent;
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return true;
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}
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PAPZParent* ContentCompositorBridgeParent::AllocPAPZParent(
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const LayersId& aLayersId) {
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// Check to see if this child process has access to this layer tree.
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if (!LayerTreeOwnerTracker::Get()->IsMapped(aLayersId, OtherPid())) {
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NS_ERROR("Unexpected layers id in AllocPAPZParent; dropping message...");
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return nullptr;
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}
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RemoteContentController* controller = new RemoteContentController();
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// Increment the controller's refcount before we return it. This will keep the
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// controller alive until it is released by IPDL in DeallocPAPZParent.
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controller->AddRef();
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MonitorAutoLock lock(*sIndirectLayerTreesLock);
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CompositorBridgeParent::LayerTreeState& state =
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sIndirectLayerTrees[aLayersId];
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MOZ_ASSERT(!state.mController);
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state.mController = controller;
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return controller;
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}
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bool ContentCompositorBridgeParent::DeallocPAPZParent(PAPZParent* aActor) {
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RemoteContentController* controller =
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static_cast<RemoteContentController*>(aActor);
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controller->Release();
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return true;
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}
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PWebRenderBridgeParent*
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ContentCompositorBridgeParent::AllocPWebRenderBridgeParent(
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const wr::PipelineId& aPipelineId, const LayoutDeviceIntSize& aSize,
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const WindowKind& aWindowKind) {
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LayersId layersId = wr::AsLayersId(aPipelineId);
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// Check to see if this child process has access to this layer tree.
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if (!LayerTreeOwnerTracker::Get()->IsMapped(layersId, OtherPid())) {
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NS_ERROR(
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"Unexpected layers id in AllocPWebRenderBridgeParent; dropping "
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"message...");
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return nullptr;
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}
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RefPtr<CompositorBridgeParent> cbp = nullptr;
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RefPtr<WebRenderBridgeParent> root = nullptr;
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{ // scope lock
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MonitorAutoLock lock(*sIndirectLayerTreesLock);
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MOZ_ASSERT(sIndirectLayerTrees.find(layersId) != sIndirectLayerTrees.end());
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MOZ_ASSERT(sIndirectLayerTrees[layersId].mWrBridge == nullptr);
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cbp = sIndirectLayerTrees[layersId].mParent;
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if (cbp) {
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root = sIndirectLayerTrees[cbp->RootLayerTreeId()].mWrBridge;
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}
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}
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RefPtr<wr::WebRenderAPI> api;
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if (root) {
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api = root->GetWebRenderAPI();
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}
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if (!root || !api) {
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// This could happen when this function is called after
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// CompositorBridgeParent destruction. This was observed during Tab move
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// between different windows.
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NS_WARNING(
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nsPrintfCString("Created child without a matching parent? root %p",
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root.get())
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.get());
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nsCString error("NO_PARENT");
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WebRenderBridgeParent* parent =
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WebRenderBridgeParent::CreateDestroyed(aPipelineId, std::move(error));
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parent->AddRef(); // IPDL reference
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return parent;
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}
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api = api->Clone();
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RefPtr<AsyncImagePipelineManager> holder = root->AsyncImageManager();
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WebRenderBridgeParent* parent = new WebRenderBridgeParent(
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this, aPipelineId, nullptr, root->CompositorScheduler(), std::move(api),
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std::move(holder), cbp->GetVsyncInterval());
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parent->AddRef(); // IPDL reference
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{ // scope lock
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MonitorAutoLock lock(*sIndirectLayerTreesLock);
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sIndirectLayerTrees[layersId].mContentCompositorBridgeParent = this;
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sIndirectLayerTrees[layersId].mWrBridge = parent;
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}
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return parent;
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}
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bool ContentCompositorBridgeParent::DeallocPWebRenderBridgeParent(
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PWebRenderBridgeParent* aActor) {
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WebRenderBridgeParent* parent = static_cast<WebRenderBridgeParent*>(aActor);
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EraseLayerState(wr::AsLayersId(parent->PipelineId()));
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parent->Release(); // IPDL reference
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return true;
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}
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webgpu::PWebGPUParent* ContentCompositorBridgeParent::AllocPWebGPUParent() {
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webgpu::WebGPUParent* parent = new webgpu::WebGPUParent();
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parent->AddRef(); // IPDL reference
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return parent;
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}
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bool ContentCompositorBridgeParent::DeallocPWebGPUParent(
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webgpu::PWebGPUParent* aActor) {
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webgpu::WebGPUParent* parent = static_cast<webgpu::WebGPUParent*>(aActor);
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parent->Release(); // IPDL reference
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return true;
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}
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mozilla::ipc::IPCResult ContentCompositorBridgeParent::RecvNotifyChildCreated(
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const LayersId& child, CompositorOptions* aOptions) {
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MonitorAutoLock lock(*sIndirectLayerTreesLock);
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for (LayerTreeMap::iterator it = sIndirectLayerTrees.begin();
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it != sIndirectLayerTrees.end(); it++) {
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CompositorBridgeParent::LayerTreeState* lts = &it->second;
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if (lts->mParent && lts->mContentCompositorBridgeParent == this) {
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lts->mParent->NotifyChildCreated(child);
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*aOptions = lts->mParent->GetOptions();
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return IPC_OK();
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}
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}
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return IPC_FAIL_NO_REASON(this);
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}
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mozilla::ipc::IPCResult
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ContentCompositorBridgeParent::RecvMapAndNotifyChildCreated(
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const LayersId& child, const base::ProcessId& pid,
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CompositorOptions* aOptions) {
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// This can only be called from the browser process, as the mapping
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// ensures proper window ownership of layer trees.
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return IPC_FAIL_NO_REASON(this);
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}
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mozilla::ipc::IPCResult ContentCompositorBridgeParent::RecvCheckContentOnlyTDR(
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const uint32_t& sequenceNum, bool* isContentOnlyTDR) {
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*isContentOnlyTDR = false;
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#ifdef XP_WIN
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gfx::ContentDeviceData compositor;
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gfx::DeviceManagerDx* dm = gfx::DeviceManagerDx::Get();
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// Check that the D3D11 device sequence numbers match.
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gfx::D3D11DeviceStatus status;
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dm->ExportDeviceInfo(&status);
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if (sequenceNum == status.sequenceNumber() && !dm->HasDeviceReset()) {
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*isContentOnlyTDR = true;
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}
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#endif
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return IPC_OK();
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};
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void ContentCompositorBridgeParent::DidCompositeLocked(
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LayersId aId, const VsyncId& aVsyncId, TimeStamp& aCompositeStart,
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TimeStamp& aCompositeEnd) {
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sIndirectLayerTreesLock->AssertCurrentThreadOwns();
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if (sIndirectLayerTrees[aId].mWrBridge) {
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MOZ_ASSERT(false); // this should never get called for a WR compositor
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}
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}
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bool ContentCompositorBridgeParent::SetTestSampleTime(const LayersId& aId,
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const TimeStamp& aTime) {
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MOZ_ASSERT(aId.IsValid());
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const CompositorBridgeParent::LayerTreeState* state =
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CompositorBridgeParent::GetIndirectShadowTree(aId);
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if (!state) {
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return false;
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}
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MOZ_ASSERT(state->mParent);
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return state->mParent->SetTestSampleTime(aId, aTime);
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}
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void ContentCompositorBridgeParent::LeaveTestMode(const LayersId& aId) {
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MOZ_ASSERT(aId.IsValid());
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const CompositorBridgeParent::LayerTreeState* state =
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CompositorBridgeParent::GetIndirectShadowTree(aId);
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if (!state) {
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return;
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}
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MOZ_ASSERT(state->mParent);
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state->mParent->LeaveTestMode(aId);
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}
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void ContentCompositorBridgeParent::SetTestAsyncScrollOffset(
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const LayersId& aLayersId, const ScrollableLayerGuid::ViewID& aScrollId,
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const CSSPoint& aPoint) {
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MOZ_ASSERT(aLayersId.IsValid());
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const CompositorBridgeParent::LayerTreeState* state =
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CompositorBridgeParent::GetIndirectShadowTree(aLayersId);
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if (!state) {
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return;
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}
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MOZ_ASSERT(state->mParent);
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state->mParent->SetTestAsyncScrollOffset(aLayersId, aScrollId, aPoint);
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}
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void ContentCompositorBridgeParent::SetTestAsyncZoom(
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const LayersId& aLayersId, const ScrollableLayerGuid::ViewID& aScrollId,
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const LayerToParentLayerScale& aZoom) {
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MOZ_ASSERT(aLayersId.IsValid());
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const CompositorBridgeParent::LayerTreeState* state =
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CompositorBridgeParent::GetIndirectShadowTree(aLayersId);
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if (!state) {
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return;
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}
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MOZ_ASSERT(state->mParent);
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state->mParent->SetTestAsyncZoom(aLayersId, aScrollId, aZoom);
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}
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void ContentCompositorBridgeParent::FlushApzRepaints(
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const LayersId& aLayersId) {
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MOZ_ASSERT(aLayersId.IsValid());
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const CompositorBridgeParent::LayerTreeState* state =
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CompositorBridgeParent::GetIndirectShadowTree(aLayersId);
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if (!state || !state->mParent) {
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return;
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}
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state->mParent->FlushApzRepaints(aLayersId);
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}
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void ContentCompositorBridgeParent::GetAPZTestData(const LayersId& aLayersId,
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APZTestData* aOutData) {
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MOZ_ASSERT(aLayersId.IsValid());
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const CompositorBridgeParent::LayerTreeState* state =
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CompositorBridgeParent::GetIndirectShadowTree(aLayersId);
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if (!state || !state->mParent) {
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return;
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}
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state->mParent->GetAPZTestData(aLayersId, aOutData);
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}
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void ContentCompositorBridgeParent::GetFrameUniformity(
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const LayersId& aLayersId, FrameUniformityData* aOutData) {
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MOZ_ASSERT(aLayersId.IsValid());
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const CompositorBridgeParent::LayerTreeState* state =
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CompositorBridgeParent::GetIndirectShadowTree(aLayersId);
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if (!state || !state->mParent) {
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return;
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}
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state->mParent->GetFrameUniformity(aLayersId, aOutData);
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}
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void ContentCompositorBridgeParent::SetConfirmedTargetAPZC(
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const LayersId& aLayersId, const uint64_t& aInputBlockId,
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nsTArray<ScrollableLayerGuid>&& aTargets) {
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MOZ_ASSERT(aLayersId.IsValid());
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const CompositorBridgeParent::LayerTreeState* state =
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CompositorBridgeParent::GetIndirectShadowTree(aLayersId);
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if (!state || !state->mParent) {
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return;
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}
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state->mParent->SetConfirmedTargetAPZC(aLayersId, aInputBlockId,
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std::move(aTargets));
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}
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void ContentCompositorBridgeParent::DeferredDestroy() { mSelfRef = nullptr; }
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ContentCompositorBridgeParent::~ContentCompositorBridgeParent() {
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MOZ_ASSERT(XRE_GetIOMessageLoop());
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}
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PTextureParent* ContentCompositorBridgeParent::AllocPTextureParent(
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const SurfaceDescriptor& aSharedData, ReadLockDescriptor& aReadLock,
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const LayersBackend& aLayersBackend, const TextureFlags& aFlags,
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const LayersId& aId, const uint64_t& aSerial,
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const wr::MaybeExternalImageId& aExternalImageId) {
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CompositorBridgeParent::LayerTreeState* state = nullptr;
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LayerTreeMap::iterator itr = sIndirectLayerTrees.find(aId);
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if (sIndirectLayerTrees.end() != itr) {
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state = &itr->second;
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}
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TextureFlags flags = aFlags;
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LayersBackend actualBackend = LayersBackend::LAYERS_NONE;
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if (!state) {
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// The compositor was recreated, and we're receiving layers updates for a
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// a layer manager that will soon be discarded or invalidated. We can't
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// return null because this will mess up deserialization later and we'll
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// kill the content process. Instead, we signal that the underlying
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// TextureHost should not attempt to access the compositor.
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flags |= TextureFlags::INVALID_COMPOSITOR;
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} else if (actualBackend != LayersBackend::LAYERS_NONE &&
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aLayersBackend != actualBackend) {
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gfxDevCrash(gfx::LogReason::PAllocTextureBackendMismatch)
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<< "Texture backend is wrong";
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}
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return TextureHost::CreateIPDLActor(this, aSharedData, std::move(aReadLock),
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aLayersBackend, aFlags, aSerial,
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aExternalImageId);
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}
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bool ContentCompositorBridgeParent::DeallocPTextureParent(
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PTextureParent* actor) {
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return TextureHost::DestroyIPDLActor(actor);
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}
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mozilla::ipc::IPCResult ContentCompositorBridgeParent::RecvInitPCanvasParent(
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Endpoint<PCanvasParent>&& aEndpoint) {
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MOZ_RELEASE_ASSERT(!mCanvasTranslator,
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"mCanvasTranslator must be released before recreating.");
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mCanvasTranslator = CanvasTranslator::Create(std::move(aEndpoint));
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return IPC_OK();
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}
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mozilla::ipc::IPCResult
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ContentCompositorBridgeParent::RecvReleasePCanvasParent() {
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MOZ_RELEASE_ASSERT(mCanvasTranslator,
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"mCanvasTranslator hasn't been created.");
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mCanvasTranslator = nullptr;
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return IPC_OK();
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}
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UniquePtr<SurfaceDescriptor>
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ContentCompositorBridgeParent::LookupSurfaceDescriptorForClientTexture(
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const int64_t aTextureId) {
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return mCanvasTranslator->WaitForSurfaceDescriptor(aTextureId);
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}
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bool ContentCompositorBridgeParent::IsSameProcess() const {
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return OtherPid() == base::GetCurrentProcId();
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}
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void ContentCompositorBridgeParent::ObserveLayersUpdate(
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LayersId aLayersId, LayersObserverEpoch aEpoch, bool aActive) {
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MOZ_ASSERT(aLayersId.IsValid());
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CompositorBridgeParent::LayerTreeState* state =
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CompositorBridgeParent::GetIndirectShadowTree(aLayersId);
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if (!state || !state->mParent) {
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return;
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}
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Unused << state->mParent->SendObserveLayersUpdate(aLayersId, aEpoch, aActive);
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}
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} // namespace layers
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} // namespace mozilla
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