Files
palemoon27/gfx/layers/client/ClientLayerManager.cpp
T
roytam1 f5a7b27f3d import changes from `dev' branch of rmottola/Arctic-Fox:
- Bug 1211204 - Remove possible false-negative with D3D9 texture memory reporting. r=mattwoodrow (74adbcad19)
- Bug 1200595 - D3D9 TextureData implementation. r=Bas (2624bd59a3)
- Bug 1200595 - MacIOSurface TextureData implementation. r=mattwoodrow (98130b5d6b)
- Bug 1200595 - EGLImage TextureData implementation. r=mattwoodrow (8b732af2da)
- Bug 1200595 - AndroidSurface TextureData implementation. r=mattwoodrow (79443ff5d7)
- Bug 1200595 - SharedSurface TextureData implementation. r=jgilbert (aadc8c5601)
- Bug 1200595 - DIB TextureData implementation. r=Bas (d7bae178ad)
- Bug 1200595 - Merge TextureClient and ClientTexture back into TextureClient. r=mattwoodrow (890d76ff9b)
- Bug 1200595 - Consolidate the TextureClient's destruction logic. r=mattwoodrow (fa9ac2e414)
- Allow asynchronous D3D11 TextureClients on the main thread. (bug 1217665 part 5, r=nical) (cb77fa88cc)
- Implement the direct bitmap drawing model for plugins. (bug 1217665 part 6, r=mattwoodrow) (82f9015e5a)
- Implement the direct DXGI drawing model for plugins. (bug 1217665 part 7, r=mattwoodrow) (cdeeb52a91)
- Implement the DidComposite NPAPI callback. (bug 1217665 part 8, r=mattwoodrow) (4eb2a790ae)
- Add an NPN_GetValue query to find the browser's DXGI adapter. (bug 1217665 part 10, r=aklotz,mattwoodrow) (84af4e525a)
- Create a D3D11 content device even if D2D is blocked. (bug 1217665 part 11, r=jrmuizel) (142441808e)
- Bug 1229665 - Convert widget clip regions to LayoutDevicePixels. r=botond. (edf746b278)
- Bug 1204715 - Move browser/app/profile/extensions/{972ce4c6-7e08-4474-a285-3208198ce6fd} to moz.build. r=mshal (8c6b4709bc)
- Bug 1212773 - Pass a base directory to jar maker, instead of a chrome directory. r=gps (1f644706c6)
- Bustage fix for bug 1210687 on a CLOSED TREE. r=me (4cd7000101)
- Bug 1212773 - Extend jar maker syntax for jar file location. r=gps (8119aa2b98)
- Bug 1164039 - moved TelemetryTimestamps.jsm and tests to toolkit/componets/telemetry/. r=dexter (942145656e)
- Bug 1184705 - Search A/B testing cohort identifier should be recorded in FHR, r=rnewman. (b5cf397cf0)
- Bug 1230047 (part 2) - Make several PaintWindow() functions use LayoutDevice coordinates. r=kats. (246e1321ca)
- Bug 1218454 - part 1 - move DialogValueHolder::Get out-of-line; r=bz (2d65438b37)
- Bug 1218454 - part 2 - don't #include nsContentUtils.h from CallbackObject.h; r=bz (59e3b60749)
- Bug 1205945 part.1 Remove unnecessary member of IMEInputHandler, mLastDispatchedCompositionString r=smichaud (2223df8aec)
- Bug 1205945 part.2 Add DispatchCompositionStartEvent() and move the code of OnStartIMEComposition() into it r=smichaud (25449c2bca)
- Bug 1205945 part.3 Move the code of OnUpdateIMEComposition() into DispatchCompositionChangeEvent() r=smichaud (e85a65f2f7)
- Bug 1205945 part.4 Move the code of OnEndIMEComposition() into DispatchCompositionCommitEvent() r=smichaud (21e6218c06)
- Bug 1205945 part.5 Emulate mSelectedRange at dispatching compositionchange or compositioncommit event until OnSelectionChange() is called r=smichaud (f82baaea8e)
- Bug 1205945 part.6 IMEInputHandler::GetAttributedSubstringFromRange() should return stored composition string if the range is in the composition string r=smichaud (53eabe028b)
- Bug 1205399 - Follow-up to fix build bustage for platforms without OS X 10.10 and -Wswitch enabled. r=mstange (c2e8eda9b5)
- Bug 1220337 - Don't show alternate notification actions on OS X 10.8. r=MattN (5ef8449dcc)
- Bug 1224738 - Fix alternate action index getter name on OS X. r=MattN (a6f83ce706)
- Bug 1225908 - AsmSimdTypeToLaneType. r=bbouvier (f850c10bff)
- Bug 1224389 - Odin: refactor types/signatures/values (r=bbouvier) (31bc615781)
- Bug 1224389 - Odin: simplify AsmJSModule global data allocation (r=bbouvier) (3ba518183a)
- Bug 1222684 - IonMonkey: MIPS: Implement callWithPatch and patchCall. r=luke (0ede7a61c3)
- Bug 1224814 - "TraceLogger: Remove redundant checks in BaselineJIT". r=hv1989 (b3865fbdf0)
- Bug 1228369: Rename CodeOffsetLabel into CodeOffset; r=luke (1d0aba3710)
- Bug 1224389 - Odin: refactor stubs, func-ptrs, and masm use (r=bbouvier) (2834725644)
- Bug 1228340: Get rid of the js_ prefix for CodeSpec, CodeName, NumCodeSpecs; r=jorendorff (8ff2b3bcd5)
- Bug 1176214 - Part 2: Preliminary adjustments. r=waldo (f9e2adca8a)
- Bug 1176214 - Part 3: VM core changes. r=waldo (cf5b24fe18)
- Bug 1176214 - Part 4: VM built-in lib changes. r=waldo (603335d2aa)
- Bug 1176214 - Part 5: Ion changes. r=h4writer (b589713e1c)
- Bug 1176214 - Part 6: Odin changes. r=luke (f1dcb025d2)
- Bug 1176214 - Part 7: Ctypes, shell, xpconnect, etc. r=waldo (bdc78e0558)
- Bug 1199578 - test case. r=waldo (6a94fd455a)
- Bug 1211409 - load/store exclusive for ARM-32. r=jolesen (38efc4882e)
- Bug 1205390 - guard against asm.js compilation not being available. r=me (aeefe98cfd)
- Make test runnable on non-Nightly (no bug) r=me (27930210ed)
- Bug 1176214 - Part 8: jit-test changes. r=bbouvier (31c4f42eea)
- Bug 1176214 - Part 9: tests changes. r=bbouvier (a245687f43)
- Bug 1176214 - Part 10: jsapi-tests changes. r=bbouvier (610e0002a2)
- bug 1198656 remove unnecessary reinterpret_casts r=padenot (bc5a67d521)
- bug 1198656 refactor acquiring the content into an object method r=padenot (b7b062fbf1)
- bug 1198656 clear references in mJSChannels on successful content acquire r=padenot (65e5ee1856)
- bug 1198656 delay AudioBuffer allocation until required r=padenot (57d0fd0d01)
- bug 1199559 remove now unused SetRawChannelContents r=padenot (40685ef783)
- Bug 1203616 - Properly scale the input buffer of a WaveShaperNode before processing it with the curve. r=karlt (12e9592a9e)
- Bug 1186343: Throw an InvalidStateError when we set the curve attribute of a WaveShaperNode with a Float32Array of length less than 2; r=padenot,smaug (df83b21fd0)
- bug 1188244 throw in SetCurve() on OOM r=padenot (17967b7b58)
- Bug 1176214 - Part 11: Changes to DOM, except for WebGL. r=bz, r=clb (c40e5c2a68)
- Bug 1176214 - Part 12: Changes to WebGL. r=bz, r=clb (228c90da3c)
- Bug 1176214 - Part 13: Changes to ipc. r=mrbkap (4b11d4e509)
- Bug 1176214 - Part 14: Changes to netwerk. r=jduell (91568c8444)
- Bug 1176214 - Part 15: Changes to xpcom. r=nfroyd (df8d080070)
- Revert "Bug 1176214 - Part 14: Changes to netwerk. r=jduell" (d0aedbac94)
- improved backport of PM because of newer JS_GetArrayBufferData (9d8188ff5e)
- bug 1199559 write decodeAudioData buffer in a format suitable for direct use by AudioBuffer r=padenot (da00bab1a1)
- bug 1225003 null-check mBuffer in SizeOfExcludingThis() r=padenot (c01d389f10)
- Bug 1225365 - Fix assertion in the nsScriptNameSpaceManager memory reporter. r=bz. (a5605a8923)
- Bug 1229458 - Remove SizeOfIncludingThisMustBeUnshared() from string classes. r=mccr8. (26abcea276)
- Bug 1214506. Ensure OggReader sets proper IDs for its tracks. r=jya (a270b02301)
- bits of Bug 1188812 - Obtain CDM can render capability and store into MediaInfo (321388180e)
- Bug 1226450 - Report audio/video codecs used in HTMLMediaElement and WebAudio via telemetry. r=jya (e722b409b7)
2023-04-11 11:15:41 +08:00

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/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*-
* This Source Code Form is subject to the terms of the Mozilla Public
* License, v. 2.0. If a copy of the MPL was not distributed with this
* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
#include "ClientLayerManager.h"
#include "GeckoProfiler.h" // for PROFILER_LABEL
#include "gfxPrefs.h" // for gfxPrefs::LayersTile...
#include "mozilla/Assertions.h" // for MOZ_ASSERT, etc
#include "mozilla/Hal.h"
#include "mozilla/dom/ScreenOrientation.h" // for ScreenOrientation
#include "mozilla/dom/TabChild.h" // for TabChild
#include "mozilla/hal_sandbox/PHal.h" // for ScreenConfiguration
#include "mozilla/layers/CompositableClient.h"
#include "mozilla/layers/CompositorChild.h" // for CompositorChild
#include "mozilla/layers/ContentClient.h"
#include "mozilla/layers/FrameUniformityData.h"
#include "mozilla/layers/ISurfaceAllocator.h"
#include "mozilla/layers/LayersMessages.h" // for EditReply, etc
#include "mozilla/layers/LayersSurfaces.h" // for SurfaceDescriptor
#include "mozilla/layers/PLayerChild.h" // for PLayerChild
#include "mozilla/layers/LayerTransactionChild.h"
#include "mozilla/layers/ShadowLayerChild.h"
#include "mozilla/layers/TextureClientPool.h" // for TextureClientPool
#include "mozilla/layers/PersistentBufferProvider.h"
#include "ClientReadbackLayer.h" // for ClientReadbackLayer
#include "nsAString.h"
#include "nsIWidgetListener.h"
#include "nsTArray.h" // for AutoInfallibleTArray
#include "nsXULAppAPI.h" // for XRE_GetProcessType, etc
#include "TiledLayerBuffer.h"
#include "mozilla/dom/WindowBinding.h" // for Overfill Callback
#include "FrameLayerBuilder.h" // for FrameLayerbuilder
#ifdef MOZ_WIDGET_ANDROID
#include "AndroidBridge.h"
#include "LayerMetricsWrapper.h"
#endif
#ifdef XP_WIN
#include "gfxWindowsPlatform.h"
#endif
namespace mozilla {
namespace layers {
using namespace mozilla::gfx;
void
ClientLayerManager::MemoryPressureObserver::Destroy()
{
UnregisterMemoryPressureEvent();
mClientLayerManager = nullptr;
}
NS_IMETHODIMP
ClientLayerManager::MemoryPressureObserver::Observe(nsISupports* aSubject,
const char* aTopic,
const char16_t* aSomeData)
{
if (!mClientLayerManager || strcmp(aTopic, "memory-pressure")) {
return NS_OK;
}
mClientLayerManager->HandleMemoryPressure();
return NS_OK;
}
void
ClientLayerManager::MemoryPressureObserver::RegisterMemoryPressureEvent()
{
nsCOMPtr<nsIObserverService> observerService =
mozilla::services::GetObserverService();
MOZ_ASSERT(observerService);
if (observerService) {
observerService->AddObserver(this, "memory-pressure", false);
}
}
void
ClientLayerManager::MemoryPressureObserver::UnregisterMemoryPressureEvent()
{
nsCOMPtr<nsIObserverService> observerService =
mozilla::services::GetObserverService();
if (observerService) {
observerService->RemoveObserver(this, "memory-pressure");
}
}
NS_IMPL_ISUPPORTS(ClientLayerManager::MemoryPressureObserver, nsIObserver)
ClientLayerManager::ClientLayerManager(nsIWidget* aWidget)
: mPhase(PHASE_NONE)
, mWidget(aWidget)
, mLatestTransactionId(0)
, mTargetRotation(ROTATION_0)
, mRepeatTransaction(false)
, mIsRepeatTransaction(false)
, mTransactionIncomplete(false)
, mCompositorMightResample(false)
, mNeedsComposite(false)
, mPaintSequenceNumber(0)
, mForwarder(new ShadowLayerForwarder)
{
MOZ_COUNT_CTOR(ClientLayerManager);
mMemoryPressureObserver = new MemoryPressureObserver(this);
}
ClientLayerManager::~ClientLayerManager()
{
if (mTransactionIdAllocator) {
TimeStamp now = TimeStamp::Now();
DidComposite(mLatestTransactionId, now, now);
}
mMemoryPressureObserver->Destroy();
ClearCachedResources();
// Stop receiveing AsyncParentMessage at Forwarder.
// After the call, the message is directly handled by LayerTransactionChild.
// Basically this function should be called in ShadowLayerForwarder's
// destructor. But when the destructor is triggered by
// CompositorChild::Destroy(), the destructor can not handle it correctly.
// See Bug 1000525.
mForwarder->StopReceiveAsyncParentMessge();
mRoot = nullptr;
MOZ_COUNT_DTOR(ClientLayerManager);
}
int32_t
ClientLayerManager::GetMaxTextureSize() const
{
return mForwarder->GetMaxTextureSize();
}
void
ClientLayerManager::SetDefaultTargetConfiguration(BufferMode aDoubleBuffering,
ScreenRotation aRotation)
{
mTargetRotation = aRotation;
}
void
ClientLayerManager::SetRoot(Layer* aLayer)
{
if (mRoot != aLayer) {
// Have to hold the old root and its children in order to
// maintain the same view of the layer tree in this process as
// the parent sees. Otherwise layers can be destroyed
// mid-transaction and bad things can happen (v. bug 612573)
if (mRoot) {
Hold(mRoot);
}
mForwarder->SetRoot(Hold(aLayer));
NS_ASSERTION(aLayer, "Root can't be null");
NS_ASSERTION(aLayer->Manager() == this, "Wrong manager");
NS_ASSERTION(InConstruction(), "Only allowed in construction phase");
mRoot = aLayer;
}
}
void
ClientLayerManager::Mutated(Layer* aLayer)
{
LayerManager::Mutated(aLayer);
NS_ASSERTION(InConstruction() || InDrawing(), "wrong phase");
mForwarder->Mutated(Hold(aLayer));
}
already_AddRefed<ReadbackLayer>
ClientLayerManager::CreateReadbackLayer()
{
RefPtr<ReadbackLayer> layer = new ClientReadbackLayer(this);
return layer.forget();
}
void
ClientLayerManager::BeginTransactionWithTarget(gfxContext* aTarget)
{
mInTransaction = true;
mTransactionStart = TimeStamp::Now();
#ifdef MOZ_LAYERS_HAVE_LOG
MOZ_LAYERS_LOG(("[----- BeginTransaction"));
Log();
#endif
NS_ASSERTION(!InTransaction(), "Nested transactions not allowed");
mPhase = PHASE_CONSTRUCTION;
MOZ_ASSERT(mKeepAlive.IsEmpty(), "uncommitted txn?");
RefPtr<gfxContext> targetContext = aTarget;
// If the last transaction was incomplete (a failed DoEmptyTransaction),
// don't signal a new transaction to ShadowLayerForwarder. Carry on adding
// to the previous transaction.
dom::ScreenOrientationInternal orientation;
if (dom::TabChild* window = mWidget->GetOwningTabChild()) {
orientation = window->GetOrientation();
} else {
hal::ScreenConfiguration currentConfig;
hal::GetCurrentScreenConfiguration(&currentConfig);
orientation = currentConfig.orientation();
}
LayoutDeviceIntRect targetBounds = mWidget->GetNaturalBounds();
targetBounds.x = targetBounds.y = 0;
mForwarder->BeginTransaction(targetBounds.ToUnknownRect(), mTargetRotation,
orientation);
// If we're drawing on behalf of a context with async pan/zoom
// enabled, then the entire buffer of painted layers might be
// composited (including resampling) asynchronously before we get
// a chance to repaint, so we have to ensure that it's all valid
// and not rotated.
//
// Desktop does not support async zoom yet, so we ignore this for those
// platforms.
#if defined(MOZ_WIDGET_ANDROID) || defined(MOZ_WIDGET_GONK) || defined(MOZ_WIDGET_UIKIT)
if (mWidget && mWidget->GetOwningTabChild()) {
mCompositorMightResample = AsyncPanZoomEnabled();
}
#endif
// If we have a non-default target, we need to let our shadow manager draw
// to it. This will happen at the end of the transaction.
if (aTarget && XRE_IsParentProcess()) {
mShadowTarget = aTarget;
} else {
NS_ASSERTION(!aTarget,
"Content-process ClientLayerManager::BeginTransactionWithTarget not supported");
}
// If this is a new paint, increment the paint sequence number.
if (!mIsRepeatTransaction) {
// Increment the paint sequence number even if test logging isn't
// enabled in this process; it may be enabled in the parent process,
// and the parent process expects unique sequence numbers.
++mPaintSequenceNumber;
if (gfxPrefs::APZTestLoggingEnabled()) {
mApzTestData.StartNewPaint(mPaintSequenceNumber);
}
}
}
void
ClientLayerManager::BeginTransaction()
{
BeginTransactionWithTarget(nullptr);
}
bool
ClientLayerManager::EndTransactionInternal(DrawPaintedLayerCallback aCallback,
void* aCallbackData,
EndTransactionFlags)
{
PROFILER_LABEL("ClientLayerManager", "EndTransactionInternal",
js::ProfileEntry::Category::GRAPHICS);
#ifdef MOZ_LAYERS_HAVE_LOG
MOZ_LAYERS_LOG((" ----- (beginning paint)"));
Log();
#endif
profiler_tracing("Paint", "Rasterize", TRACING_INTERVAL_START);
NS_ASSERTION(InConstruction(), "Should be in construction phase");
mPhase = PHASE_DRAWING;
ClientLayer* root = ClientLayer::ToClientLayer(GetRoot());
mTransactionIncomplete = false;
// Apply pending tree updates before recomputing effective
// properties.
GetRoot()->ApplyPendingUpdatesToSubtree();
mPaintedLayerCallback = aCallback;
mPaintedLayerCallbackData = aCallbackData;
GetRoot()->ComputeEffectiveTransforms(Matrix4x4());
root->RenderLayer();
if (!mRepeatTransaction && !GetRoot()->GetInvalidRegion().IsEmpty()) {
GetRoot()->Mutated();
}
if (!mIsRepeatTransaction) {
mAnimationReadyTime = TimeStamp::Now();
GetRoot()->StartPendingAnimations(mAnimationReadyTime);
}
mPaintedLayerCallback = nullptr;
mPaintedLayerCallbackData = nullptr;
// Go back to the construction phase if the transaction isn't complete.
// Layout will update the layer tree and call EndTransaction().
mPhase = mTransactionIncomplete ? PHASE_CONSTRUCTION : PHASE_NONE;
NS_ASSERTION(!aCallback || !mTransactionIncomplete,
"If callback is not null, transaction must be complete");
if (gfxPlatform::GetPlatform()->DidRenderingDeviceReset()) {
FrameLayerBuilder::InvalidateAllLayers(this);
}
return !mTransactionIncomplete;
}
void
ClientLayerManager::StorePluginWidgetConfigurations(const nsTArray<nsIWidget::Configuration>& aConfigurations)
{
if (mForwarder) {
mForwarder->StorePluginWidgetConfigurations(aConfigurations);
}
}
void
ClientLayerManager::EndTransaction(DrawPaintedLayerCallback aCallback,
void* aCallbackData,
EndTransactionFlags aFlags)
{
if (mWidget) {
mWidget->PrepareWindowEffects();
}
EndTransactionInternal(aCallback, aCallbackData, aFlags);
ForwardTransaction(!(aFlags & END_NO_REMOTE_COMPOSITE));
if (mRepeatTransaction) {
mRepeatTransaction = false;
mIsRepeatTransaction = true;
BeginTransaction();
ClientLayerManager::EndTransaction(aCallback, aCallbackData, aFlags);
mIsRepeatTransaction = false;
} else {
MakeSnapshotIfRequired();
}
for (size_t i = 0; i < mTexturePools.Length(); i++) {
mTexturePools[i]->ReturnDeferredClients();
}
mInTransaction = false;
mTransactionStart = TimeStamp();
}
bool
ClientLayerManager::EndEmptyTransaction(EndTransactionFlags aFlags)
{
mInTransaction = false;
if (!mRoot) {
return false;
}
if (!EndTransactionInternal(nullptr, nullptr, aFlags)) {
// Return without calling ForwardTransaction. This leaves the
// ShadowLayerForwarder transaction open; the following
// EndTransaction will complete it.
return false;
}
if (mWidget) {
mWidget->PrepareWindowEffects();
}
ForwardTransaction(!(aFlags & END_NO_REMOTE_COMPOSITE));
MakeSnapshotIfRequired();
return true;
}
CompositorChild *
ClientLayerManager::GetRemoteRenderer()
{
if (!mWidget) {
return nullptr;
}
return mWidget->GetRemoteRenderer();
}
CompositorChild*
ClientLayerManager::GetCompositorChild()
{
if (!XRE_IsParentProcess()) {
return CompositorChild::Get();
}
return GetRemoteRenderer();
}
void
ClientLayerManager::Composite()
{
mForwarder->Composite();
}
void
ClientLayerManager::DidComposite(uint64_t aTransactionId,
const TimeStamp& aCompositeStart,
const TimeStamp& aCompositeEnd)
{
MOZ_ASSERT(mWidget);
// |aTransactionId| will be > 0 if the compositor is acknowledging a shadow
// layers transaction.
if (aTransactionId) {
nsIWidgetListener *listener = mWidget->GetWidgetListener();
if (listener) {
listener->DidCompositeWindow(aCompositeStart, aCompositeEnd);
}
listener = mWidget->GetAttachedWidgetListener();
if (listener) {
listener->DidCompositeWindow(aCompositeStart, aCompositeEnd);
}
mTransactionIdAllocator->NotifyTransactionCompleted(aTransactionId);
}
// These observers fire whether or not we were in a transaction.
for (size_t i = 0; i < mDidCompositeObservers.Length(); i++) {
mDidCompositeObservers[i]->DidComposite();
}
}
void
ClientLayerManager::GetCompositorSideAPZTestData(APZTestData* aData) const
{
if (mForwarder->HasShadowManager()) {
if (!mForwarder->GetShadowManager()->SendGetAPZTestData(aData)) {
NS_WARNING("Call to PLayerTransactionChild::SendGetAPZTestData() failed");
}
}
}
float
ClientLayerManager::RequestProperty(const nsAString& aProperty)
{
if (mForwarder->HasShadowManager()) {
float value;
if (!mForwarder->GetShadowManager()->SendRequestProperty(nsString(aProperty), &value)) {
NS_WARNING("Call to PLayerTransactionChild::SendGetAPZTestData() failed");
}
return value;
}
return -1;
}
void
ClientLayerManager::StartNewRepaintRequest(SequenceNumber aSequenceNumber)
{
if (gfxPrefs::APZTestLoggingEnabled()) {
mApzTestData.StartNewRepaintRequest(aSequenceNumber);
}
}
void
ClientLayerManager::GetFrameUniformity(FrameUniformityData* aOutData)
{
MOZ_ASSERT(XRE_IsParentProcess(), "Frame Uniformity only supported in parent process");
if (HasShadowManager()) {
CompositorChild* child = GetRemoteRenderer();
child->SendGetFrameUniformity(aOutData);
return;
}
return LayerManager::GetFrameUniformity(aOutData);
}
bool
ClientLayerManager::RequestOverfill(mozilla::dom::OverfillCallback* aCallback)
{
MOZ_ASSERT(aCallback != nullptr);
MOZ_ASSERT(HasShadowManager(), "Request Overfill only supported on b2g for now");
if (HasShadowManager()) {
CompositorChild* child = GetRemoteRenderer();
NS_ASSERTION(child, "Could not get CompositorChild");
child->AddOverfillObserver(this);
child->SendRequestOverfill();
mOverfillCallbacks.AppendElement(aCallback);
}
return true;
}
void
ClientLayerManager::RunOverfillCallback(const uint32_t aOverfill)
{
for (size_t i = 0; i < mOverfillCallbacks.Length(); i++) {
ErrorResult error;
mOverfillCallbacks[i]->Call(aOverfill, error);
}
mOverfillCallbacks.Clear();
}
void
ClientLayerManager::MakeSnapshotIfRequired()
{
if (!mShadowTarget) {
return;
}
if (mWidget) {
if (CompositorChild* remoteRenderer = GetRemoteRenderer()) {
// The compositor doesn't draw to a different sized surface
// when there's a rotation. Instead we rotate the result
// when drawing into dt
LayoutDeviceIntRect outerBounds;
mWidget->GetBounds(outerBounds);
IntRect bounds = ToOutsideIntRect(mShadowTarget->GetClipExtents());
if (mTargetRotation) {
bounds =
RotateRect(bounds, outerBounds.ToUnknownRect(), mTargetRotation);
}
SurfaceDescriptor inSnapshot;
if (!bounds.IsEmpty() &&
mForwarder->AllocSurfaceDescriptor(bounds.Size(),
gfxContentType::COLOR_ALPHA,
&inSnapshot) &&
remoteRenderer->SendMakeSnapshot(inSnapshot, bounds)) {
RefPtr<DataSourceSurface> surf = GetSurfaceForDescriptor(inSnapshot);
DrawTarget* dt = mShadowTarget->GetDrawTarget();
Rect dstRect(bounds.x, bounds.y, bounds.width, bounds.height);
Rect srcRect(0, 0, bounds.width, bounds.height);
gfx::Matrix rotate =
ComputeTransformForUnRotation(outerBounds.ToUnknownRect(),
mTargetRotation);
gfx::Matrix oldMatrix = dt->GetTransform();
dt->SetTransform(rotate * oldMatrix);
dt->DrawSurface(surf, dstRect, srcRect,
DrawSurfaceOptions(),
DrawOptions(1.0f, CompositionOp::OP_OVER));
dt->SetTransform(oldMatrix);
}
mForwarder->DestroySharedSurface(&inSnapshot);
}
}
mShadowTarget = nullptr;
}
void
ClientLayerManager::FlushRendering()
{
if (mWidget) {
if (CompositorChild* remoteRenderer = mWidget->GetRemoteRenderer()) {
remoteRenderer->SendFlushRendering();
}
}
}
void
ClientLayerManager::SendInvalidRegion(const nsIntRegion& aRegion)
{
if (mWidget) {
if (CompositorChild* remoteRenderer = mWidget->GetRemoteRenderer()) {
remoteRenderer->SendNotifyRegionInvalidated(aRegion);
}
}
}
uint32_t
ClientLayerManager::StartFrameTimeRecording(int32_t aBufferSize)
{
CompositorChild* renderer = GetRemoteRenderer();
if (renderer) {
uint32_t startIndex;
renderer->SendStartFrameTimeRecording(aBufferSize, &startIndex);
return startIndex;
}
return -1;
}
void
ClientLayerManager::StopFrameTimeRecording(uint32_t aStartIndex,
nsTArray<float>& aFrameIntervals)
{
CompositorChild* renderer = GetRemoteRenderer();
if (renderer) {
renderer->SendStopFrameTimeRecording(aStartIndex, &aFrameIntervals);
}
}
void
ClientLayerManager::ForwardTransaction(bool aScheduleComposite)
{
TimeStamp start = TimeStamp::Now();
if (mForwarder->GetSyncObject()) {
mForwarder->GetSyncObject()->FinalizeFrame();
}
if (!mTransactionIdAllocator) {
// We are being called without a transaction ID manager.
// Probably incorrect application init. Clean up as well as we are
// able to at this point and return.
mForwarder->RemoveTexturesIfNecessary();
mKeepAlive.Clear();
return;
}
mPhase = PHASE_FORWARD;
mLatestTransactionId = mTransactionIdAllocator->GetTransactionId();
TimeStamp transactionStart;
if (!mTransactionIdAllocator->GetTransactionStart().IsNull()) {
transactionStart = mTransactionIdAllocator->GetTransactionStart();
} else {
transactionStart = mTransactionStart;
}
// forward this transaction's changeset to our LayerManagerComposite
bool sent;
AutoInfallibleTArray<EditReply, 10> replies;
if (mForwarder->EndTransaction(&replies, mRegionToClear,
mLatestTransactionId, aScheduleComposite, mPaintSequenceNumber,
mIsRepeatTransaction, transactionStart, &sent)) {
for (nsTArray<EditReply>::size_type i = 0; i < replies.Length(); ++i) {
const EditReply& reply = replies[i];
switch (reply.type()) {
case EditReply::TOpContentBufferSwap: {
MOZ_LAYERS_LOG(("[LayersForwarder] DoubleBufferSwap"));
const OpContentBufferSwap& obs = reply.get_OpContentBufferSwap();
CompositableClient* compositable =
CompositableClient::FromIPDLActor(obs.compositableChild());
ContentClientRemote* contentClient =
static_cast<ContentClientRemote*>(compositable);
MOZ_ASSERT(contentClient);
contentClient->SwapBuffers(obs.frontUpdatedRegion());
break;
}
default:
NS_RUNTIMEABORT("not reached");
}
}
if (sent) {
mNeedsComposite = false;
}
} else if (HasShadowManager()) {
NS_WARNING("failed to forward Layers transaction");
}
if (!sent) {
// Clear the transaction id so that it doesn't get returned
// unless we forwarded to somewhere that doesn't actually
// have a compositor.
mTransactionIdAllocator->RevokeTransactionId(mLatestTransactionId);
}
mForwarder->RemoveTexturesIfNecessary();
mForwarder->SendPendingAsyncMessges();
mPhase = PHASE_NONE;
// this may result in Layers being deleted, which results in
// PLayer::Send__delete__() and DeallocShmem()
mKeepAlive.Clear();
TabChild* window = mWidget->GetOwningTabChild();
if (window) {
TimeStamp end = TimeStamp::Now();
window->DidRequestComposite(start, end);
}
}
ShadowableLayer*
ClientLayerManager::Hold(Layer* aLayer)
{
MOZ_ASSERT(HasShadowManager(),
"top-level tree, no shadow tree to remote to");
ShadowableLayer* shadowable = ClientLayer::ToClientLayer(aLayer);
MOZ_ASSERT(shadowable, "trying to remote an unshadowable layer");
mKeepAlive.AppendElement(aLayer);
return shadowable;
}
bool
ClientLayerManager::IsCompositingCheap()
{
// Whether compositing is cheap depends on the parent backend.
return mForwarder->mShadowManager &&
LayerManager::IsCompositingCheap(mForwarder->GetCompositorBackendType());
}
bool
ClientLayerManager::AreComponentAlphaLayersEnabled()
{
return GetCompositorBackendType() != LayersBackend::LAYERS_BASIC &&
LayerManager::AreComponentAlphaLayersEnabled();
}
void
ClientLayerManager::SetIsFirstPaint()
{
mForwarder->SetIsFirstPaint();
}
TextureClientPool*
ClientLayerManager::GetTexturePool(SurfaceFormat aFormat, TextureFlags aFlags)
{
for (size_t i = 0; i < mTexturePools.Length(); i++) {
if (mTexturePools[i]->GetFormat() == aFormat &&
mTexturePools[i]->GetFlags() == aFlags) {
return mTexturePools[i];
}
}
mTexturePools.AppendElement(
new TextureClientPool(aFormat, aFlags,
IntSize(gfxPlatform::GetPlatform()->GetTileWidth(),
gfxPlatform::GetPlatform()->GetTileHeight()),
gfxPrefs::LayersTileMaxPoolSize(),
gfxPrefs::LayersTileShrinkPoolTimeout(),
mForwarder));
return mTexturePools.LastElement();
}
void
ClientLayerManager::ReturnTextureClientDeferred(TextureClient& aClient) {
GetTexturePool(aClient.GetFormat(),
aClient.GetFlags())->ReturnTextureClientDeferred(&aClient);
}
void
ClientLayerManager::ReturnTextureClient(TextureClient& aClient) {
GetTexturePool(aClient.GetFormat(),
aClient.GetFlags())->ReturnTextureClient(&aClient);
}
void
ClientLayerManager::ReportClientLost(TextureClient& aClient) {
GetTexturePool(aClient.GetFormat(),
aClient.GetFlags())->ReportClientLost();
}
void
ClientLayerManager::ClearCachedResources(Layer* aSubtree)
{
if (mDestroyed) {
// ClearCachedResource was already called by ClientLayerManager::Destroy
return;
}
MOZ_ASSERT(!HasShadowManager() || !aSubtree);
mForwarder->ClearCachedResources();
if (aSubtree) {
ClearLayer(aSubtree);
} else if (mRoot) {
ClearLayer(mRoot);
}
for (size_t i = 0; i < mTexturePools.Length(); i++) {
mTexturePools[i]->Clear();
}
}
void
ClientLayerManager::HandleMemoryPressure()
{
for (size_t i = 0; i < mTexturePools.Length(); i++) {
mTexturePools[i]->ShrinkToMinimumSize();
}
}
void
ClientLayerManager::ClearLayer(Layer* aLayer)
{
ClientLayer::ToClientLayer(aLayer)->ClearCachedResources();
for (Layer* child = aLayer->GetFirstChild(); child;
child = child->GetNextSibling()) {
ClearLayer(child);
}
}
void
ClientLayerManager::GetBackendName(nsAString& aName)
{
switch (mForwarder->GetCompositorBackendType()) {
case LayersBackend::LAYERS_NONE: aName.AssignLiteral("None"); return;
case LayersBackend::LAYERS_BASIC: aName.AssignLiteral("Basic"); return;
case LayersBackend::LAYERS_OPENGL: aName.AssignLiteral("OpenGL"); return;
case LayersBackend::LAYERS_D3D9: aName.AssignLiteral("Direct3D 9"); return;
case LayersBackend::LAYERS_D3D11: {
#ifdef XP_WIN
if (gfxWindowsPlatform::GetPlatform()->IsWARP()) {
aName.AssignLiteral("Direct3D 11 WARP");
} else {
aName.AssignLiteral("Direct3D 11");
}
#endif
return;
}
case LayersBackend::LAYERS_CLIENT:
case LayersBackend::LAYERS_LAST: aName.AssignLiteral("Reserved"); return;
default: NS_RUNTIMEABORT("Invalid backend");
}
}
bool
ClientLayerManager::ProgressiveUpdateCallback(bool aHasPendingNewThebesContent,
FrameMetrics& aMetrics,
bool aDrawingCritical)
{
#ifdef MOZ_WIDGET_ANDROID
MOZ_ASSERT(aMetrics.IsScrollable());
// This is derived from the code in
// gfx/layers/ipc/CompositorParent.cpp::TransformShadowTree.
CSSToLayerScale paintScale = aMetrics.LayersPixelsPerCSSPixel().ToScaleFactor();
const CSSRect& metricsDisplayPort =
(aDrawingCritical && !aMetrics.GetCriticalDisplayPort().IsEmpty()) ?
aMetrics.GetCriticalDisplayPort() : aMetrics.GetDisplayPort();
LayerRect displayPort = (metricsDisplayPort + aMetrics.GetScrollOffset()) * paintScale;
ParentLayerPoint scrollOffset;
CSSToParentLayerScale zoom;
bool ret = AndroidBridge::Bridge()->ProgressiveUpdateCallback(
aHasPendingNewThebesContent, displayPort, paintScale.scale, aDrawingCritical,
scrollOffset, zoom);
aMetrics.SetScrollOffset(scrollOffset / zoom);
aMetrics.SetZoom(CSSToParentLayerScale2D(zoom));
return ret;
#else
return false;
#endif
}
bool
ClientLayerManager::AsyncPanZoomEnabled() const
{
return mWidget && mWidget->AsyncPanZoomEnabled();
}
void
ClientLayerManager::SetNextPaintSyncId(int32_t aSyncId)
{
mForwarder->SetPaintSyncId(aSyncId);
}
void
ClientLayerManager::AddDidCompositeObserver(DidCompositeObserver* aObserver)
{
if (!mDidCompositeObservers.Contains(aObserver)) {
mDidCompositeObservers.AppendElement(aObserver);
}
}
void
ClientLayerManager::RemoveDidCompositeObserver(DidCompositeObserver* aObserver)
{
mDidCompositeObservers.RemoveElement(aObserver);
}
ClientLayer::~ClientLayer()
{
if (HasShadow()) {
PLayerChild::Send__delete__(GetShadow());
}
MOZ_COUNT_DTOR(ClientLayer);
}
} // namespace layers
} // namespace mozilla