зеркало из https://github.com/mozilla/gecko-dev.git
1088 строки
33 KiB
C++
1088 строки
33 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 "base/task.h"
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#include "GeckoProfiler.h"
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#include "GLContext.h"
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#include "RenderThread.h"
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#include "nsThreadUtils.h"
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#include "mtransport/runnable_utils.h"
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#include "mozilla/layers/AsyncImagePipelineManager.h"
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#include "mozilla/gfx/gfxVars.h"
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#include "mozilla/gfx/GPUParent.h"
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#include "mozilla/layers/CompositorThread.h"
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#include "mozilla/layers/CompositorBridgeParent.h"
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#include "mozilla/layers/CompositorManagerParent.h"
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#include "mozilla/layers/WebRenderBridgeParent.h"
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#include "mozilla/layers/SharedSurfacesParent.h"
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#include "mozilla/StaticPtr.h"
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#include "mozilla/Telemetry.h"
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#include "mozilla/webrender/RendererOGL.h"
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#include "mozilla/webrender/RenderTextureHost.h"
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#include "mozilla/widget/CompositorWidget.h"
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#ifdef XP_WIN
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# include "GLLibraryEGL.h"
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# include "mozilla/widget/WinCompositorWindowThread.h"
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#endif
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#ifdef MOZ_WIDGET_ANDROID
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# include "GLLibraryEGL.h"
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# include "GeneratedJNIWrappers.h"
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# include "mozilla/webrender/RenderAndroidSurfaceTextureHostOGL.h"
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#endif
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#ifdef MOZ_WIDGET_GTK
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# include <gdk/gdkx.h>
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#endif
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#ifdef MOZ_WAYLAND
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# include "GLLibraryEGL.h"
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#endif
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using namespace mozilla;
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static already_AddRefed<gl::GLContext> CreateGLContext();
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MOZ_DEFINE_MALLOC_SIZE_OF(WebRenderRendererMallocSizeOf)
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namespace mozilla {
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namespace wr {
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static StaticRefPtr<RenderThread> sRenderThread;
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RenderThread::RenderThread(base::Thread* aThread)
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: mThread(aThread),
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mThreadPool(false),
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mThreadPoolLP(true),
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mWindowInfos("RenderThread.mWindowInfos"),
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mRenderTextureMapLock("RenderThread.mRenderTextureMapLock"),
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mHasShutdown(false),
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mHandlingDeviceReset(false),
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mHandlingWebRenderError(false) {}
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RenderThread::~RenderThread() {
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MOZ_ASSERT(mRenderTexturesDeferred.empty());
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delete mThread;
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}
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// static
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RenderThread* RenderThread::Get() { return sRenderThread; }
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// static
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void RenderThread::Start() {
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MOZ_ASSERT(NS_IsMainThread());
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MOZ_ASSERT(!sRenderThread);
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base::Thread* thread = new base::Thread("Renderer");
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base::Thread::Options options;
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// TODO(nical): The compositor thread has a bunch of specific options, see
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// which ones make sense here.
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if (!thread->StartWithOptions(options)) {
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delete thread;
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return;
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}
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sRenderThread = new RenderThread(thread);
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#ifdef XP_WIN
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widget::WinCompositorWindowThread::Start();
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#endif
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layers::SharedSurfacesParent::Initialize();
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RefPtr<Runnable> runnable = WrapRunnable(
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RefPtr<RenderThread>(sRenderThread.get()), &RenderThread::InitDeviceTask);
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sRenderThread->Loop()->PostTask(runnable.forget());
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}
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// static
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void RenderThread::ShutDown() {
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MOZ_ASSERT(NS_IsMainThread());
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MOZ_ASSERT(sRenderThread);
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{
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MutexAutoLock lock(sRenderThread->mRenderTextureMapLock);
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sRenderThread->mHasShutdown = true;
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}
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layers::SynchronousTask task("RenderThread");
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RefPtr<Runnable> runnable =
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WrapRunnable(RefPtr<RenderThread>(sRenderThread.get()),
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&RenderThread::ShutDownTask, &task);
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sRenderThread->Loop()->PostTask(runnable.forget());
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task.Wait();
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sRenderThread = nullptr;
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#ifdef XP_WIN
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if (widget::WinCompositorWindowThread::Get()) {
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widget::WinCompositorWindowThread::ShutDown();
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}
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#endif
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}
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extern void ClearAllBlobImageResources();
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void RenderThread::ShutDownTask(layers::SynchronousTask* aTask) {
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layers::AutoCompleteTask complete(aTask);
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MOZ_ASSERT(IsInRenderThread());
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// Let go of our handle to the (internally ref-counted) thread pool.
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mThreadPool.Release();
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mThreadPoolLP.Release();
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// Releasing on the render thread will allow us to avoid dispatching to remove
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// remaining textures from the texture map.
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layers::SharedSurfacesParent::Shutdown();
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ClearAllBlobImageResources();
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ClearSharedGL();
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ClearSharedSurfacePool();
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}
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// static
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MessageLoop* RenderThread::Loop() {
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return sRenderThread ? sRenderThread->mThread->message_loop() : nullptr;
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}
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// static
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bool RenderThread::IsInRenderThread() {
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return sRenderThread &&
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sRenderThread->mThread->thread_id() == PlatformThread::CurrentId();
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}
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void RenderThread::DoAccumulateMemoryReport(
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MemoryReport aReport,
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const RefPtr<MemoryReportPromise::Private>& aPromise) {
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MOZ_ASSERT(IsInRenderThread());
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for (auto& r : mRenderers) {
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r.second->AccumulateMemoryReport(&aReport);
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}
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// Note memory used by the shader cache, which is shared across all WR
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// instances.
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MOZ_ASSERT(aReport.shader_cache == 0);
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if (mProgramCache) {
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aReport.shader_cache = wr_program_cache_report_memory(
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mProgramCache->Raw(), &WebRenderRendererMallocSizeOf);
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}
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aPromise->Resolve(aReport, __func__);
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}
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// static
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RefPtr<MemoryReportPromise> RenderThread::AccumulateMemoryReport(
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MemoryReport aInitial) {
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RefPtr<MemoryReportPromise::Private> p =
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new MemoryReportPromise::Private(__func__);
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MOZ_ASSERT(!IsInRenderThread());
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if (!Get() || !Get()->Loop()) {
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// This happens when the GPU process fails to start and we fall back to the
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// basic compositor in the parent process. We could assert against this if
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// we made the webrender detection code in gfxPlatform.cpp smarter. See bug
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// 1494430 comment 12.
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NS_WARNING("No render thread, returning empty memory report");
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p->Resolve(aInitial, __func__);
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return p;
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}
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Get()->Loop()->PostTask(
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NewRunnableMethod<MemoryReport, RefPtr<MemoryReportPromise::Private>>(
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"wr::RenderThread::DoAccumulateMemoryReport", Get(),
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&RenderThread::DoAccumulateMemoryReport, aInitial, p));
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return p;
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}
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void RenderThread::AddRenderer(wr::WindowId aWindowId,
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UniquePtr<RendererOGL> aRenderer) {
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MOZ_ASSERT(IsInRenderThread());
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if (mHasShutdown) {
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return;
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}
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mRenderers[aWindowId] = std::move(aRenderer);
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auto windows = mWindowInfos.Lock();
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windows->emplace(AsUint64(aWindowId), new WindowInfo());
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}
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void RenderThread::RemoveRenderer(wr::WindowId aWindowId) {
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MOZ_ASSERT(IsInRenderThread());
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if (mHasShutdown) {
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return;
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}
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mRenderers.erase(aWindowId);
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mCompositionRecorders.erase(aWindowId);
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if (mRenderers.size() == 0 && mHandlingDeviceReset) {
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mHandlingDeviceReset = false;
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}
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auto windows = mWindowInfos.Lock();
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auto it = windows->find(AsUint64(aWindowId));
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MOZ_ASSERT(it != windows->end());
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WindowInfo* toDelete = it->second;
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windows->erase(it);
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delete toDelete;
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}
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RendererOGL* RenderThread::GetRenderer(wr::WindowId aWindowId) {
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MOZ_ASSERT(IsInRenderThread());
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auto it = mRenderers.find(aWindowId);
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MOZ_ASSERT(it != mRenderers.end());
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if (it == mRenderers.end()) {
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return nullptr;
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}
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return it->second.get();
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}
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size_t RenderThread::RendererCount() {
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MOZ_ASSERT(IsInRenderThread());
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return mRenderers.size();
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}
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void RenderThread::SetCompositionRecorderForWindow(
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wr::WindowId aWindowId,
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UniquePtr<layers::WebRenderCompositionRecorder> aCompositionRecorder) {
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MOZ_ASSERT(IsInRenderThread());
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MOZ_ASSERT(GetRenderer(aWindowId));
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MOZ_ASSERT(mCompositionRecorders.find(aWindowId) ==
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mCompositionRecorders.end());
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mCompositionRecorders[aWindowId] = std::move(aCompositionRecorder);
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}
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void RenderThread::WriteCollectedFramesForWindow(wr::WindowId aWindowId) {
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MOZ_ASSERT(IsInRenderThread());
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RendererOGL* renderer = GetRenderer(aWindowId);
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MOZ_ASSERT(renderer);
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auto it = mCompositionRecorders.find(aWindowId);
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MOZ_DIAGNOSTIC_ASSERT(
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it != mCompositionRecorders.end(),
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"Attempted to write frames from a window that was not recording.");
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if (it != mCompositionRecorders.end()) {
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it->second->WriteCollectedFrames();
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if (renderer) {
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wr_renderer_release_composition_recorder_structures(
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renderer->GetRenderer());
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}
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mCompositionRecorders.erase(it);
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}
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}
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Maybe<layers::CollectedFrames> RenderThread::GetCollectedFramesForWindow(
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wr::WindowId aWindowId) {
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MOZ_ASSERT(IsInRenderThread());
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RendererOGL* renderer = GetRenderer(aWindowId);
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MOZ_ASSERT(renderer);
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auto it = mCompositionRecorders.find(aWindowId);
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MOZ_DIAGNOSTIC_ASSERT(
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it != mCompositionRecorders.end(),
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"Attempted to get frames from a window that was not recording.");
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Maybe<layers::CollectedFrames> maybeFrames;
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if (it != mCompositionRecorders.end()) {
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maybeFrames.emplace(it->second->GetCollectedFrames());
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if (renderer) {
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wr_renderer_release_composition_recorder_structures(
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renderer->GetRenderer());
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}
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mCompositionRecorders.erase(it);
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}
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return maybeFrames;
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}
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void RenderThread::HandleFrameOneDoc(wr::WindowId aWindowId, bool aRender) {
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if (mHasShutdown) {
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return;
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}
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if (!IsInRenderThread()) {
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Loop()->PostTask(NewRunnableMethod<wr::WindowId, bool>(
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"wr::RenderThread::HandleFrameOneDoc", this,
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&RenderThread::HandleFrameOneDoc, aWindowId, aRender));
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return;
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}
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if (IsDestroyed(aWindowId)) {
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return;
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}
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if (mHandlingDeviceReset) {
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return;
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}
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bool render = false;
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PendingFrameInfo frame;
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{ // scope lock
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auto windows = mWindowInfos.Lock();
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auto it = windows->find(AsUint64(aWindowId));
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if (it == windows->end()) {
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MOZ_ASSERT(false);
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return;
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}
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WindowInfo* info = it->second;
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PendingFrameInfo& frameInfo = info->mPendingFrames.front();
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frameInfo.mDocFramesSeen++;
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frameInfo.mFrameNeedsRender |= aRender;
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if (frameInfo.mDocFramesSeen < frameInfo.mDocFramesTotal) {
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return;
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}
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MOZ_ASSERT(frameInfo.mDocFramesSeen == frameInfo.mDocFramesTotal);
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render = frameInfo.mFrameNeedsRender;
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frame = frameInfo;
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}
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// It is for ensuring that PrepareForUse() is called before
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// RenderTextureHost::Lock().
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HandlePrepareForUse();
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UpdateAndRender(aWindowId, frame.mStartId, frame.mStartTime, render,
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/* aReadbackSize */ Nothing(),
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/* aReadbackFormat */ Nothing(),
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/* aReadbackBuffer */ Nothing());
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{ // scope lock
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auto windows = mWindowInfos.Lock();
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auto it = windows->find(AsUint64(aWindowId));
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if (it == windows->end()) {
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MOZ_ASSERT(false);
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return;
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}
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WindowInfo* info = it->second;
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info->mPendingFrames.pop();
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}
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// The start time is from WebRenderBridgeParent::CompositeToTarget. From that
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// point until now (when the frame is finally pushed to the screen) is
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// equivalent to the COMPOSITE_TIME metric in the non-WR codepath.
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mozilla::Telemetry::AccumulateTimeDelta(mozilla::Telemetry::COMPOSITE_TIME,
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frame.mStartTime);
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}
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void RenderThread::WakeUp(wr::WindowId aWindowId) {
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if (mHasShutdown) {
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return;
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}
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if (!IsInRenderThread()) {
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Loop()->PostTask(NewRunnableMethod<wr::WindowId>(
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"wr::RenderThread::WakeUp", this, &RenderThread::WakeUp, aWindowId));
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return;
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}
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if (IsDestroyed(aWindowId)) {
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return;
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}
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if (mHandlingDeviceReset) {
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return;
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}
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auto it = mRenderers.find(aWindowId);
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MOZ_ASSERT(it != mRenderers.end());
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if (it != mRenderers.end()) {
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it->second->Update();
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}
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}
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void RenderThread::RunEvent(wr::WindowId aWindowId,
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UniquePtr<RendererEvent> aEvent) {
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if (!IsInRenderThread()) {
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Loop()->PostTask(
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NewRunnableMethod<wr::WindowId, UniquePtr<RendererEvent>&&>(
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"wr::RenderThread::RunEvent", this, &RenderThread::RunEvent,
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aWindowId, std::move(aEvent)));
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return;
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}
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aEvent->Run(*this, aWindowId);
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aEvent = nullptr;
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}
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static void NotifyDidRender(layers::CompositorBridgeParent* aBridge,
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RefPtr<const WebRenderPipelineInfo> aInfo,
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VsyncId aCompositeStartId,
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TimeStamp aCompositeStart, TimeStamp aRenderStart,
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TimeStamp aEnd, bool aRender,
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RendererStats aStats) {
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if (aRender && aBridge->GetWrBridge()) {
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// We call this here to mimic the behavior in LayerManagerComposite, as to
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// not change what Talos measures. That is, we do not record an empty frame
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// as a frame.
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aBridge->GetWrBridge()->RecordFrame();
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}
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auto info = aInfo->Raw();
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for (const auto& epoch : info.epochs) {
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aBridge->NotifyPipelineRendered(epoch.pipeline_id, epoch.epoch,
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aCompositeStartId, aCompositeStart,
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aRenderStart, aEnd, &aStats);
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}
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if (aBridge->GetWrBridge()) {
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aBridge->GetWrBridge()->CompositeIfNeeded();
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}
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}
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static void NotifyDidStartRender(layers::CompositorBridgeParent* aBridge) {
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// Starting a render will change mIsRendering, and potentially
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// change whether we can allow the bridge to intiate another frame.
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if (aBridge->GetWrBridge()) {
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aBridge->GetWrBridge()->CompositeIfNeeded();
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}
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}
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void RenderThread::UpdateAndRender(
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wr::WindowId aWindowId, const VsyncId& aStartId,
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const TimeStamp& aStartTime, bool aRender,
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const Maybe<gfx::IntSize>& aReadbackSize,
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const Maybe<wr::ImageFormat>& aReadbackFormat,
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const Maybe<Range<uint8_t>>& aReadbackBuffer) {
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AUTO_PROFILER_TRACING_MARKER("Paint", "Composite", GRAPHICS);
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MOZ_ASSERT(IsInRenderThread());
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MOZ_ASSERT(aRender || aReadbackBuffer.isNothing());
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auto it = mRenderers.find(aWindowId);
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MOZ_ASSERT(it != mRenderers.end());
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if (it == mRenderers.end()) {
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return;
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}
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TimeStamp start = TimeStamp::Now();
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auto& renderer = it->second;
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layers::CompositorThreadHolder::Loop()->PostTask(
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NewRunnableFunction("NotifyDidStartRenderRunnable", &NotifyDidStartRender,
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renderer->GetCompositorBridge()));
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wr::RenderedFrameId latestFrameId;
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RendererStats stats = {0};
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if (aRender) {
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latestFrameId = renderer->UpdateAndRender(aReadbackSize, aReadbackFormat,
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aReadbackBuffer, &stats);
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} else {
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renderer->Update();
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}
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// Check graphics reset status even when rendering is skipped.
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renderer->CheckGraphicsResetStatus();
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TimeStamp end = TimeStamp::Now();
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RefPtr<const WebRenderPipelineInfo> info = renderer->FlushPipelineInfo();
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layers::CompositorThreadHolder::Loop()->PostTask(
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NewRunnableFunction("NotifyDidRenderRunnable", &NotifyDidRender,
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renderer->GetCompositorBridge(), info, aStartId,
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aStartTime, start, end, aRender, stats));
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if (latestFrameId.IsValid()) {
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auto recorderIt = mCompositionRecorders.find(aWindowId);
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if (recorderIt != mCompositionRecorders.end() &&
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renderer->EnsureAsyncScreenshot()) {
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recorderIt->second->MaybeRecordFrame(renderer->GetRenderer(), info.get());
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}
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}
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if (latestFrameId.IsValid()) {
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// Wait for GPU after posting NotifyDidRender, since the wait is not
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// necessary for the NotifyDidRender.
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// The wait is necessary for Textures recycling of AsyncImagePipelineManager
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// and for avoiding GPU queue is filled with too much tasks.
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// WaitForGPU's implementation is different for each platform.
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renderer->WaitForGPU();
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}
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if (!aRender) {
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// Update frame id for NotifyPipelinesUpdated() when rendering does not
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// happen.
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latestFrameId = renderer->UpdateFrameId();
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}
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RenderedFrameId lastCompletedFrameId = renderer->GetLastCompletedFrameId();
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RefPtr<layers::AsyncImagePipelineManager> pipelineMgr =
|
|
renderer->GetCompositorBridge()->GetAsyncImagePipelineManager();
|
|
// pipelineMgr should always be non-null here because it is only nulled out
|
|
// after the WebRenderAPI instance for the CompositorBridgeParent is
|
|
// destroyed, and that destruction blocks until the renderer thread has
|
|
// removed the relevant renderer. And after that happens we should never reach
|
|
// this code at all; it would bail out at the mRenderers.find check above.
|
|
MOZ_ASSERT(pipelineMgr);
|
|
pipelineMgr->NotifyPipelinesUpdated(info, latestFrameId,
|
|
lastCompletedFrameId);
|
|
}
|
|
|
|
void RenderThread::Pause(wr::WindowId aWindowId) {
|
|
MOZ_ASSERT(IsInRenderThread());
|
|
|
|
auto it = mRenderers.find(aWindowId);
|
|
MOZ_ASSERT(it != mRenderers.end());
|
|
if (it == mRenderers.end()) {
|
|
return;
|
|
}
|
|
auto& renderer = it->second;
|
|
renderer->Pause();
|
|
}
|
|
|
|
bool RenderThread::Resume(wr::WindowId aWindowId) {
|
|
MOZ_ASSERT(IsInRenderThread());
|
|
|
|
auto it = mRenderers.find(aWindowId);
|
|
MOZ_ASSERT(it != mRenderers.end());
|
|
if (it == mRenderers.end()) {
|
|
return false;
|
|
}
|
|
auto& renderer = it->second;
|
|
return renderer->Resume();
|
|
}
|
|
|
|
bool RenderThread::TooManyPendingFrames(wr::WindowId aWindowId) {
|
|
const int64_t maxFrameCount = 1;
|
|
|
|
// Too many pending frames if pending frames exit more than maxFrameCount
|
|
// or if RenderBackend is still processing a frame.
|
|
|
|
auto windows = mWindowInfos.Lock();
|
|
auto it = windows->find(AsUint64(aWindowId));
|
|
if (it == windows->end()) {
|
|
MOZ_ASSERT(false);
|
|
return true;
|
|
}
|
|
WindowInfo* info = it->second;
|
|
|
|
if (info->PendingCount() > maxFrameCount) {
|
|
return true;
|
|
}
|
|
// If there is no ongoing frame build, we accept a new frame.
|
|
return info->mPendingFrameBuild > 0;
|
|
}
|
|
|
|
bool RenderThread::IsDestroyed(wr::WindowId aWindowId) {
|
|
auto windows = mWindowInfos.Lock();
|
|
auto it = windows->find(AsUint64(aWindowId));
|
|
if (it == windows->end()) {
|
|
return true;
|
|
}
|
|
|
|
return it->second->mIsDestroyed;
|
|
}
|
|
|
|
void RenderThread::SetDestroyed(wr::WindowId aWindowId) {
|
|
auto windows = mWindowInfos.Lock();
|
|
auto it = windows->find(AsUint64(aWindowId));
|
|
if (it == windows->end()) {
|
|
MOZ_ASSERT(false);
|
|
return;
|
|
}
|
|
it->second->mIsDestroyed = true;
|
|
}
|
|
|
|
void RenderThread::IncPendingFrameCount(wr::WindowId aWindowId,
|
|
const VsyncId& aStartId,
|
|
const TimeStamp& aStartTime,
|
|
uint8_t aDocFrameCount) {
|
|
auto windows = mWindowInfos.Lock();
|
|
auto it = windows->find(AsUint64(aWindowId));
|
|
if (it == windows->end()) {
|
|
MOZ_ASSERT(false);
|
|
return;
|
|
}
|
|
it->second->mPendingFrameBuild += aDocFrameCount;
|
|
it->second->mPendingFrames.push(
|
|
PendingFrameInfo{aStartTime, aStartId, 0, aDocFrameCount, false});
|
|
}
|
|
|
|
void RenderThread::DecPendingFrameBuildCount(wr::WindowId aWindowId) {
|
|
auto windows = mWindowInfos.Lock();
|
|
auto it = windows->find(AsUint64(aWindowId));
|
|
if (it == windows->end()) {
|
|
MOZ_ASSERT(false);
|
|
return;
|
|
}
|
|
WindowInfo* info = it->second;
|
|
MOZ_RELEASE_ASSERT(info->mPendingFrameBuild >= 1);
|
|
info->mPendingFrameBuild--;
|
|
}
|
|
|
|
void RenderThread::RegisterExternalImage(
|
|
uint64_t aExternalImageId, already_AddRefed<RenderTextureHost> aTexture) {
|
|
MutexAutoLock lock(mRenderTextureMapLock);
|
|
|
|
if (mHasShutdown) {
|
|
return;
|
|
}
|
|
MOZ_ASSERT(mRenderTextures.find(aExternalImageId) == mRenderTextures.end());
|
|
mRenderTextures.emplace(aExternalImageId, std::move(aTexture));
|
|
}
|
|
|
|
void RenderThread::UnregisterExternalImage(uint64_t aExternalImageId) {
|
|
MutexAutoLock lock(mRenderTextureMapLock);
|
|
if (mHasShutdown) {
|
|
return;
|
|
}
|
|
auto it = mRenderTextures.find(aExternalImageId);
|
|
MOZ_ASSERT(it != mRenderTextures.end());
|
|
if (it == mRenderTextures.end()) {
|
|
return;
|
|
}
|
|
if (!IsInRenderThread()) {
|
|
// The RenderTextureHost should be released in render thread. So, post the
|
|
// deletion task here.
|
|
// The shmem and raw buffer are owned by compositor ipc channel. It's
|
|
// possible that RenderTextureHost is still exist after the shmem/raw buffer
|
|
// deletion. Then the buffer in RenderTextureHost becomes invalid. It's fine
|
|
// for this situation. Gecko will only release the buffer if WR doesn't need
|
|
// it. So, no one will access the invalid buffer in RenderTextureHost.
|
|
RefPtr<RenderTextureHost> texture = it->second;
|
|
mRenderTextures.erase(it);
|
|
mRenderTexturesDeferred.emplace_back(std::move(texture));
|
|
Loop()->PostTask(NewRunnableMethod(
|
|
"RenderThread::DeferredRenderTextureHostDestroy", this,
|
|
&RenderThread::DeferredRenderTextureHostDestroy));
|
|
} else {
|
|
mRenderTextures.erase(it);
|
|
}
|
|
}
|
|
|
|
void RenderThread::PrepareForUse(uint64_t aExternalImageId) {
|
|
MOZ_ASSERT(!IsInRenderThread());
|
|
|
|
MutexAutoLock lock(mRenderTextureMapLock);
|
|
if (mHasShutdown) {
|
|
return;
|
|
}
|
|
|
|
auto it = mRenderTextures.find(aExternalImageId);
|
|
MOZ_ASSERT(it != mRenderTextures.end());
|
|
if (it == mRenderTextures.end()) {
|
|
return;
|
|
}
|
|
|
|
RefPtr<RenderTextureHost> texture = it->second;
|
|
mRenderTexturesPrepareForUse.emplace_back(std::move(texture));
|
|
Loop()->PostTask(NewRunnableMethod("RenderThread::HandlePrepareForUse", this,
|
|
&RenderThread::HandlePrepareForUse));
|
|
}
|
|
|
|
void RenderThread::NotifyNotUsed(uint64_t aExternalImageId) {
|
|
MOZ_ASSERT(!IsInRenderThread());
|
|
|
|
MutexAutoLock lock(mRenderTextureMapLock);
|
|
if (mHasShutdown) {
|
|
return;
|
|
}
|
|
|
|
auto it = mRenderTextures.find(aExternalImageId);
|
|
MOZ_ASSERT(it != mRenderTextures.end());
|
|
if (it == mRenderTextures.end()) {
|
|
return;
|
|
}
|
|
RefPtr<RenderTextureHost> texture = it->second;
|
|
RefPtr<Runnable> task =
|
|
NS_NewRunnableFunction("RenderThread::DoNotifyNotUsed",
|
|
[renderTexture = std::move(texture)]() -> void {
|
|
renderTexture->NotifyNotUsed();
|
|
});
|
|
Loop()->PostTask(task.forget());
|
|
}
|
|
|
|
void RenderThread::UnregisterExternalImageDuringShutdown(
|
|
uint64_t aExternalImageId) {
|
|
MOZ_ASSERT(IsInRenderThread());
|
|
MutexAutoLock lock(mRenderTextureMapLock);
|
|
MOZ_ASSERT(mHasShutdown);
|
|
MOZ_ASSERT(mRenderTextures.find(aExternalImageId) != mRenderTextures.end());
|
|
mRenderTextures.erase(aExternalImageId);
|
|
}
|
|
|
|
void RenderThread::NotifyAllAndroidSurfaceTexturesDetatched() {
|
|
MOZ_ASSERT(IsInRenderThread());
|
|
#ifdef MOZ_WIDGET_ANDROID
|
|
MutexAutoLock lock(mRenderTextureMapLock);
|
|
for (const auto& entry : mRenderTextures) {
|
|
RenderAndroidSurfaceTextureHostOGL* host =
|
|
entry.second->AsRenderAndroidSurfaceTextureHostOGL();
|
|
if (host) {
|
|
host->DetachedFromGLContext();
|
|
}
|
|
}
|
|
#endif
|
|
}
|
|
|
|
void RenderThread::HandlePrepareForUse() {
|
|
MOZ_ASSERT(IsInRenderThread());
|
|
MutexAutoLock lock(mRenderTextureMapLock);
|
|
for (auto& texture : mRenderTexturesPrepareForUse) {
|
|
texture->PrepareForUse();
|
|
}
|
|
mRenderTexturesPrepareForUse.clear();
|
|
}
|
|
|
|
void RenderThread::DeferredRenderTextureHostDestroy() {
|
|
MutexAutoLock lock(mRenderTextureMapLock);
|
|
mRenderTexturesDeferred.clear();
|
|
}
|
|
|
|
RenderTextureHost* RenderThread::GetRenderTexture(
|
|
wr::ExternalImageId aExternalImageId) {
|
|
MOZ_ASSERT(IsInRenderThread());
|
|
|
|
MutexAutoLock lock(mRenderTextureMapLock);
|
|
auto it = mRenderTextures.find(AsUint64(aExternalImageId));
|
|
MOZ_ASSERT(it != mRenderTextures.end());
|
|
if (it == mRenderTextures.end()) {
|
|
return nullptr;
|
|
}
|
|
return it->second;
|
|
}
|
|
|
|
void RenderThread::InitDeviceTask() {
|
|
MOZ_ASSERT(IsInRenderThread());
|
|
MOZ_ASSERT(!mSharedGL);
|
|
|
|
mSharedGL = CreateGLContext();
|
|
if (gfx::gfxVars::UseWebRenderProgramBinaryDisk() &&
|
|
!gfx::gfxVars::UseSoftwareWebRender()) {
|
|
mProgramCache = MakeUnique<WebRenderProgramCache>(ThreadPool().Raw());
|
|
}
|
|
// Query the shared GL context to force the
|
|
// lazy initialization to happen now.
|
|
SharedGL();
|
|
}
|
|
|
|
void RenderThread::HandleDeviceReset(const char* aWhere, bool aNotify) {
|
|
MOZ_ASSERT(IsInRenderThread());
|
|
|
|
if (mHandlingDeviceReset) {
|
|
return;
|
|
}
|
|
|
|
if (aNotify) {
|
|
gfxCriticalNote << "GFX: RenderThread detected a device reset in "
|
|
<< aWhere;
|
|
if (XRE_IsGPUProcess()) {
|
|
gfx::GPUParent::GetSingleton()->NotifyDeviceReset();
|
|
}
|
|
}
|
|
|
|
{
|
|
MutexAutoLock lock(mRenderTextureMapLock);
|
|
mRenderTexturesDeferred.clear();
|
|
for (const auto& entry : mRenderTextures) {
|
|
entry.second->ClearCachedResources();
|
|
}
|
|
}
|
|
|
|
mHandlingDeviceReset = true;
|
|
// All RenderCompositors will be destroyed by
|
|
// GPUChild::RecvNotifyDeviceReset()
|
|
}
|
|
|
|
bool RenderThread::IsHandlingDeviceReset() {
|
|
MOZ_ASSERT(IsInRenderThread());
|
|
return mHandlingDeviceReset;
|
|
}
|
|
|
|
void RenderThread::SimulateDeviceReset() {
|
|
if (!IsInRenderThread()) {
|
|
Loop()->PostTask(NewRunnableMethod("RenderThread::SimulateDeviceReset",
|
|
this,
|
|
&RenderThread::SimulateDeviceReset));
|
|
} else {
|
|
// When this function is called GPUProcessManager::SimulateDeviceReset()
|
|
// already triggers destroying all CompositorSessions before re-creating
|
|
// them.
|
|
HandleDeviceReset("SimulateDeviceReset", /* aNotify */ false);
|
|
}
|
|
}
|
|
|
|
static void DoNotifyWebRenderError(WebRenderError aError) {
|
|
layers::CompositorManagerParent::NotifyWebRenderError(aError);
|
|
}
|
|
|
|
void RenderThread::HandleWebRenderError(WebRenderError aError) {
|
|
if (mHandlingWebRenderError) {
|
|
return;
|
|
}
|
|
|
|
layers::CompositorThreadHolder::Loop()->PostTask(NewRunnableFunction(
|
|
"DoNotifyWebRenderErrorRunnable", &DoNotifyWebRenderError, aError));
|
|
{
|
|
MutexAutoLock lock(mRenderTextureMapLock);
|
|
mRenderTexturesDeferred.clear();
|
|
for (const auto& entry : mRenderTextures) {
|
|
entry.second->ClearCachedResources();
|
|
}
|
|
}
|
|
mHandlingWebRenderError = true;
|
|
// WebRender is going to be disabled by
|
|
// GPUProcessManager::NotifyWebRenderError()
|
|
}
|
|
|
|
bool RenderThread::IsHandlingWebRenderError() {
|
|
MOZ_ASSERT(IsInRenderThread());
|
|
return mHandlingWebRenderError;
|
|
}
|
|
|
|
gl::GLContext* RenderThread::SharedGL() {
|
|
MOZ_ASSERT(IsInRenderThread());
|
|
if (!mSharedGL) {
|
|
mSharedGL = CreateGLContext();
|
|
mShaders = nullptr;
|
|
}
|
|
if (mSharedGL && !mShaders && !gfx::gfxVars::UseSoftwareWebRender()) {
|
|
mShaders = MakeUnique<WebRenderShaders>(mSharedGL, mProgramCache.get());
|
|
}
|
|
|
|
return mSharedGL.get();
|
|
}
|
|
|
|
void RenderThread::ClearSharedGL() {
|
|
MOZ_ASSERT(IsInRenderThread());
|
|
if (mSurfacePool) {
|
|
mSurfacePool->DestroyGLResourcesForContext(mSharedGL);
|
|
}
|
|
mShaders = nullptr;
|
|
mSharedGL = nullptr;
|
|
}
|
|
|
|
RefPtr<layers::SurfacePool> RenderThread::SharedSurfacePool() {
|
|
#ifdef XP_MACOSX
|
|
if (!mSurfacePool) {
|
|
size_t poolSizeLimit =
|
|
StaticPrefs::gfx_webrender_compositor_surface_pool_size_AtStartup();
|
|
mSurfacePool = layers::SurfacePool::Create(poolSizeLimit);
|
|
}
|
|
#endif
|
|
return mSurfacePool;
|
|
}
|
|
|
|
void RenderThread::ClearSharedSurfacePool() { mSurfacePool = nullptr; }
|
|
|
|
WebRenderShaders::WebRenderShaders(gl::GLContext* gl,
|
|
WebRenderProgramCache* programCache) {
|
|
mGL = gl;
|
|
mShaders = wr_shaders_new(gl, programCache ? programCache->Raw() : nullptr);
|
|
}
|
|
|
|
WebRenderShaders::~WebRenderShaders() {
|
|
wr_shaders_delete(mShaders, mGL.get());
|
|
}
|
|
|
|
WebRenderThreadPool::WebRenderThreadPool(bool low_priority) {
|
|
mThreadPool = wr_thread_pool_new(low_priority);
|
|
}
|
|
|
|
WebRenderThreadPool::~WebRenderThreadPool() { Release(); }
|
|
|
|
void WebRenderThreadPool::Release() {
|
|
if (mThreadPool) {
|
|
wr_thread_pool_delete(mThreadPool);
|
|
mThreadPool = nullptr;
|
|
}
|
|
}
|
|
|
|
WebRenderProgramCache::WebRenderProgramCache(wr::WrThreadPool* aThreadPool) {
|
|
MOZ_ASSERT(aThreadPool);
|
|
|
|
nsAutoString path;
|
|
if (gfx::gfxVars::UseWebRenderProgramBinaryDisk()) {
|
|
path.Append(gfx::gfxVars::ProfDirectory());
|
|
}
|
|
mProgramCache = wr_program_cache_new(&path, aThreadPool);
|
|
if (gfx::gfxVars::UseWebRenderProgramBinaryDisk()) {
|
|
wr_try_load_startup_shaders_from_disk(mProgramCache);
|
|
}
|
|
}
|
|
|
|
WebRenderProgramCache::~WebRenderProgramCache() {
|
|
wr_program_cache_delete(mProgramCache);
|
|
}
|
|
|
|
} // namespace wr
|
|
} // namespace mozilla
|
|
|
|
#ifdef XP_WIN
|
|
static already_AddRefed<gl::GLContext> CreateGLContextANGLE() {
|
|
nsCString discardFailureId;
|
|
if (!gl::GLLibraryEGL::EnsureInitialized(/* forceAccel */ true,
|
|
&discardFailureId)) {
|
|
gfxCriticalNote << "Failed to load EGL library: " << discardFailureId.get();
|
|
return nullptr;
|
|
}
|
|
|
|
auto* egl = gl::GLLibraryEGL::Get();
|
|
gl::CreateContextFlags flags = gl::CreateContextFlags::PREFER_ES3 |
|
|
gl::CreateContextFlags::PREFER_ROBUSTNESS;
|
|
|
|
if (egl->IsExtensionSupported(
|
|
gl::GLLibraryEGL::MOZ_create_context_provoking_vertex_dont_care)) {
|
|
flags |= gl::CreateContextFlags::PROVOKING_VERTEX_DONT_CARE;
|
|
}
|
|
|
|
// Create GLContext with dummy EGLSurface, the EGLSurface is not used.
|
|
// Instread we override it with EGLSurface of SwapChain's back buffer.
|
|
RefPtr<gl::GLContext> gl =
|
|
gl::GLContextProviderEGL::CreateHeadless(flags, &discardFailureId);
|
|
if (!gl || !gl->IsANGLE()) {
|
|
gfxCriticalNote << "Failed ANGLE GL context creation for WebRender: "
|
|
<< gfx::hexa(gl.get());
|
|
return nullptr;
|
|
}
|
|
|
|
if (!gl->MakeCurrent()) {
|
|
gfxCriticalNote << "Failed GL context creation for WebRender: "
|
|
<< gfx::hexa(gl.get());
|
|
return nullptr;
|
|
}
|
|
|
|
return gl.forget();
|
|
}
|
|
#endif
|
|
|
|
#if defined(MOZ_WIDGET_ANDROID) || defined(MOZ_WAYLAND)
|
|
static already_AddRefed<gl::GLContext> CreateGLContextEGL() {
|
|
nsCString discardFailureId;
|
|
if (!gl::GLLibraryEGL::EnsureInitialized(/* forceAccel */ true,
|
|
&discardFailureId)) {
|
|
gfxCriticalNote << "Failed to load EGL library: " << discardFailureId.get();
|
|
return nullptr;
|
|
}
|
|
// Create GLContext with dummy EGLSurface.
|
|
RefPtr<gl::GLContext> gl =
|
|
gl::GLContextProviderEGL::CreateForCompositorWidget(
|
|
nullptr, /* aWebRender */ true, /* aForceAccelerated */ true);
|
|
if (!gl || !gl->MakeCurrent()) {
|
|
gfxCriticalNote << "Failed GL context creation for WebRender: "
|
|
<< gfx::hexa(gl.get());
|
|
return nullptr;
|
|
}
|
|
return gl.forget();
|
|
}
|
|
#endif
|
|
|
|
#ifdef XP_MACOSX
|
|
static already_AddRefed<gl::GLContext> CreateGLContextCGL() {
|
|
nsCString failureUnused;
|
|
return gl::GLContextProvider::CreateHeadless(
|
|
gl::CreateContextFlags::ALLOW_OFFLINE_RENDERER |
|
|
gl::CreateContextFlags::FORCE_ENABLE_HARDWARE,
|
|
&failureUnused);
|
|
}
|
|
#endif
|
|
|
|
static already_AddRefed<gl::GLContext> CreateGLContext() {
|
|
#ifdef XP_WIN
|
|
if (gfx::gfxVars::UseWebRenderANGLE()) {
|
|
return CreateGLContextANGLE();
|
|
}
|
|
#endif
|
|
|
|
#if defined(MOZ_WIDGET_ANDROID)
|
|
return CreateGLContextEGL();
|
|
#elif defined(MOZ_WAYLAND)
|
|
if (gdk_display_get_default() &&
|
|
!GDK_IS_X11_DISPLAY(gdk_display_get_default())) {
|
|
return CreateGLContextEGL();
|
|
}
|
|
#endif
|
|
|
|
#ifdef XP_MACOSX
|
|
return CreateGLContextCGL();
|
|
#endif
|
|
|
|
return nullptr;
|
|
}
|
|
|
|
extern "C" {
|
|
|
|
void wr_notifier_wake_up(mozilla::wr::WrWindowId aWindowId) {
|
|
mozilla::wr::RenderThread::Get()->WakeUp(aWindowId);
|
|
}
|
|
|
|
void wr_notifier_new_frame_ready(mozilla::wr::WrWindowId aWindowId) {
|
|
mozilla::wr::RenderThread::Get()->DecPendingFrameBuildCount(aWindowId);
|
|
mozilla::wr::RenderThread::Get()->HandleFrameOneDoc(aWindowId,
|
|
/* aRender */ true);
|
|
}
|
|
|
|
void wr_notifier_nop_frame_done(mozilla::wr::WrWindowId aWindowId) {
|
|
mozilla::wr::RenderThread::Get()->DecPendingFrameBuildCount(aWindowId);
|
|
mozilla::wr::RenderThread::Get()->HandleFrameOneDoc(aWindowId,
|
|
/* aRender */ false);
|
|
}
|
|
|
|
void wr_notifier_external_event(mozilla::wr::WrWindowId aWindowId,
|
|
size_t aRawEvent) {
|
|
mozilla::UniquePtr<mozilla::wr::RendererEvent> evt(
|
|
reinterpret_cast<mozilla::wr::RendererEvent*>(aRawEvent));
|
|
mozilla::wr::RenderThread::Get()->RunEvent(mozilla::wr::WindowId(aWindowId),
|
|
std::move(evt));
|
|
}
|
|
|
|
void wr_schedule_render(mozilla::wr::WrWindowId aWindowId,
|
|
const mozilla::wr::WrDocumentId* aDocumentIds,
|
|
size_t aDocumentIdsCount) {
|
|
RefPtr<mozilla::layers::CompositorBridgeParent> cbp = mozilla::layers::
|
|
CompositorBridgeParent::GetCompositorBridgeParentFromWindowId(aWindowId);
|
|
if (cbp) {
|
|
wr::RenderRootSet renderRoots;
|
|
for (size_t i = 0; i < aDocumentIdsCount; ++i) {
|
|
renderRoots += wr::RenderRootFromId(aDocumentIds[i]);
|
|
}
|
|
cbp->ScheduleRenderOnCompositorThread(renderRoots);
|
|
}
|
|
}
|
|
|
|
static void NotifyDidSceneBuild(RefPtr<layers::CompositorBridgeParent> aBridge,
|
|
const nsTArray<wr::RenderRoot>& aRenderRoots,
|
|
RefPtr<const wr::WebRenderPipelineInfo> aInfo) {
|
|
aBridge->NotifyDidSceneBuild(aRenderRoots, aInfo);
|
|
}
|
|
|
|
void wr_finished_scene_build(mozilla::wr::WrWindowId aWindowId,
|
|
const mozilla::wr::WrDocumentId* aDocumentIds,
|
|
size_t aDocumentIdsCount,
|
|
mozilla::wr::WrPipelineInfo* aInfo) {
|
|
RefPtr<mozilla::layers::CompositorBridgeParent> cbp = mozilla::layers::
|
|
CompositorBridgeParent::GetCompositorBridgeParentFromWindowId(aWindowId);
|
|
RefPtr<wr::WebRenderPipelineInfo> info = new wr::WebRenderPipelineInfo();
|
|
info->Raw() = std::move(*aInfo);
|
|
if (cbp) {
|
|
nsTArray<wr::RenderRoot> renderRoots;
|
|
renderRoots.SetLength(aDocumentIdsCount);
|
|
for (size_t i = 0; i < aDocumentIdsCount; ++i) {
|
|
renderRoots[i] = wr::RenderRootFromId(aDocumentIds[i]);
|
|
}
|
|
layers::CompositorThreadHolder::Loop()->PostTask(NewRunnableFunction(
|
|
"NotifyDidSceneBuild", &NotifyDidSceneBuild, cbp, renderRoots, info));
|
|
}
|
|
}
|
|
|
|
} // extern C
|