Files
palemoon27/dom/base/nsDOMMutationObserver.cpp
T
roytam1 2e02aab9a7 import changes from `dev' branch of rmottola/Arctic-Fox:
- Bug 1198458: Webrtc updated to branch 43; pull made 2015-09-29 09:00AM PDT rs=jesup (c45a789c99)
- Bug 1159489: WebRTC bitrate limits for video depend on input resolution and framerate r=pkerr (e3691a247c)
- Bug 1132318: merge SelectSendFrameRate with SelectSendResolution r=bwc (bcc232994c)
- Bug 1182289: Clean up dispatches in WebrtcGmpVideoEncoder/Decoder. r=jesup, a=abillings (b5e2030b07)
- Bug 1167306: Fix preprocessor goof that disabled the load manager and some preference handling. r=jesup (0cc0dee688)
- Bug 1198458: Rollup of changes previously applied to media/webrtc/trunk/webrtc and fixes to those rs=jesup r=froyd,jib,bwc,jesup,gcp,sotaro,pkerr,pehrsons (fe384d5e63)
- Bug 1198458 Unbreak build on BSDs by fixing non-POSIX thread includes/usage. r=jesup (4ad8e88c17)
- Bug 1198458: Fix typo in merges in OMX rs=bustage,kwierso on a CLOSED TREE (211b3b1a3f)
- Bug 1226146: fix sndio audio_device backend after webrtc 43 landing in bug 1198458 r=jesup NPOTB (2b10ba3e86)
- Bug 1231106 - Make BSDs fall-through to ASSERT as well. r=jesup (775d4fedae)
- Bug 1231109 - Drop FreeBSD checks for unsupported versions. r=jld r=jesup (3cd55166fd)
- Bug 1161079: Fix VideoCodecStats to allow for collecting encoder and decoder stats r=jib (1f98af8939)
- add limits to fix gcc12 compile (d78098980f)
- Bug 1193495 - Part 1: Test case. r=mt (add2ded009)
- Bug 1193495 - Part 2: Maintain clones of supported codecs for each level, and do necessary checking to prevent payload-type clashes. r=mt (d45a24dba7)
- Bug 1191301 - Re-enable the use of media.navigator.video.use_tmmbr pref. r=bwc (d2723821d4)
- Bug 1094447 - Use UDP/TLS/RTP/SAVPF for audio/video m-lines. r=drno (e8e1dafd0a)
- Bug 1173599 - a=imageattr support. r=mt (612fc343d7)
- Bug 1173601 - Add a=simulcast support. r=mt (7c5303bacb)
- Bug 1203246 - Factor track negotiation stuff out of JsepSessionImpl, and other simplification. r=mt (b71c809b78)
- Bug 1212907 - a=rid support. r=mt (7479ab6984)
- Bug 1212908 - Update a=simulcast to match new grammar in 03 draft. r=mt (e205d3b0dd)
- Bug 1192390 - Part 1: Lay architectural groundwork for simulcast negotiation. r=mt r=jesup (e75dda3139)
- Bug 1223160 - added SDP parser file reader. r=bwc (6752195791)
- Bug 1192390 - Part 2: Simulcast and RID negotiation. r=mt (51b151ef52)
- fix some warnings stuff (fed8f513a8)
- Bug 1161317: Fix bug where sendonly video RTCP would be treated as outgoing RTP r=jesup (e24371fbe0)
- Bug 1226347: Import cherry-pick of AEC changes from 43->48 (delay-agnostic AEC). r=pkerr (d3a074f4d8)
- Bug 1226347 - Part 2: Allow control of AEC via prefs. r=rjesup (58f142005b)
- Bug 1228788 - Force QT device release to happen on the main thread. r=jesup (885e9d1236)
- Bug 1162218 - Make worker idle thread timeouts more strict, r=baku. (a7d2106987)
- No bug. Remove a stray debugging printf of mine. r=me. (77b84cda62)
- minor (22564a666e)
- Bug 1224237 - Remove the !baseURL check from ServiceWorkerContainer::Register;r=bkelly (8b13c4dc49)
- Bug 1196157 - Marks left by performance marks should print the domain of the application and not the complete URL. r=baku (d133708d8d)
- Bug 1211970 - "Muted errors in workers are not correctly reported to the console". r=bz (42c15275f4)
- Bug 1208559 - Tests. r=bholley (e16a30caa5)
-  Bug 1045891 - Tests for child-src r=ckerschb (90aa832cd0)
- Bug 1223647: CSP erroneously inherited into dedicated workers. r=ckerschb (6fd8d9bfc9)
- Bug 1218433 - Use AsyncOpen2 in dom/workers/ScriptLoader.cpp - part 1, r=sicking (a7e9187e52)
- Bug 1218433 - Use AsyncOpen2 in dom/workers/ScriptLoader.cpp - part 3 - WPT, r=sicking, r=Ms2ger (e5e3c69f6a)
- Bug 1218433 - Use AsyncOpen2 in dom/workers/ScriptLoader.cpp - part 2 - WPT, r=sicking, r=Ms2ger (1dd2d871ec)
- Bug 1211967 - Fix how we report errors when loading a worker from a data url, r=bz (8517368daa)
- nsRefPtr - RefPtr (34bb404530)
- Bug 1231055 - Fix tags usage in PluginProvider. r=dtownsend (870b0e71eb)
- bug 1228792 - remove use of array comprehensions r=mossop (3e31f18e83)
- bug 1228792 - use standard version of catch r=mossop (f306557ca2)
- Bug 1228009. Geolocation code needs to handle failures on its ErrorResults. r=smaug (8778a9e264)
- Bug 1228707. Add a away to call Web IDL callbacks while ignoring any errors from them, and use it in a few places. r=smaug (a414e0d711)
- Bug 1201692. Add a fast path to ExplicitChildIterator::Seek for the common case of seeking an actual DOM child of the parent node. r=wchen (01234ad43a)
- Bug 1202186 - use nsISensitiveInfoHidden for console methods, r=baku (888b4506ad)
- Bug 1223774 - Console API should check if the outer window exists, r=smaug (e0d7f408dc)
- Bug 1200551 - Handle multiple %c formatters without a string between them by using only the last one for styling;r=baku,r=past (463550117a)
- Bug 1213719 - Back out bug 1170314 for duplicate functionality. r=smaug (ae74e0ad52)
- Bug 1154076 followup: Mark ConsoleRunnable::Run() as override. rs=ehsan (337181faab)
- Bug 1127703 - "Support iteration on FormData" r=bz (4ddd461e99)
- Bug 1230509 - BlobImplFile should return false in IsDateUnknown and IsSizeUnknown, r=bz (1079bfe2ab)
- Bug 1198095 - FileReader should dispatch an error if the blob changes size in the meantime the read is executed, r=bz (263993a172)
- Bug 1231094 - patch 1 - nsDOMFileReader to mozilla::dom::FileReader, r=sicking (aa8c3ff373)
- Bug 1231094 - patch 2 - Get rid of FileIOObject, r=sicking (44af1e17dd)
- Bug 1231100 - Get rid of nsIDOMFileReader - patch 1, r=sicking (c909d9d793)
- Bug 1231100 - Get rid of nsIDOMFileReader - patch 2, r=sicking (4d3da1c566)
- Bug 1161183: Don't show the add-on version in the list view. r=dao (002d8f6fb1)
- Bug 1229519: Fix toolkit/modules to pass eslint checks. r=mak (8bbd9c8fe0)
2023-04-06 15:48:27 +08:00

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/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
/* vim: set ts=8 sts=2 et sw=2 tw=80: */
/* 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 "nsDOMMutationObserver.h"
#include "mozilla/OwningNonNull.h"
#include "mozilla/dom/Animation.h"
#include "mozilla/dom/KeyframeEffect.h"
#include "nsContentUtils.h"
#include "nsError.h"
#include "nsIDOMMutationEvent.h"
#include "nsIScriptGlobalObject.h"
#include "nsServiceManagerUtils.h"
#include "nsTextFragment.h"
#include "nsThreadUtils.h"
using mozilla::dom::TreeOrderComparator;
using mozilla::dom::Animation;
nsAutoTArray<RefPtr<nsDOMMutationObserver>, 4>*
nsDOMMutationObserver::sScheduledMutationObservers = nullptr;
nsDOMMutationObserver* nsDOMMutationObserver::sCurrentObserver = nullptr;
uint32_t nsDOMMutationObserver::sMutationLevel = 0;
uint64_t nsDOMMutationObserver::sCount = 0;
nsAutoTArray<nsAutoTArray<RefPtr<nsDOMMutationObserver>, 4>, 4>*
nsDOMMutationObserver::sCurrentlyHandlingObservers = nullptr;
nsINodeList*
nsDOMMutationRecord::AddedNodes()
{
if (!mAddedNodes) {
mAddedNodes = new nsSimpleContentList(mTarget);
}
return mAddedNodes;
}
nsINodeList*
nsDOMMutationRecord::RemovedNodes()
{
if (!mRemovedNodes) {
mRemovedNodes = new nsSimpleContentList(mTarget);
}
return mRemovedNodes;
}
NS_INTERFACE_MAP_BEGIN_CYCLE_COLLECTION(nsDOMMutationRecord)
NS_WRAPPERCACHE_INTERFACE_MAP_ENTRY
NS_INTERFACE_MAP_ENTRY(nsISupports)
NS_INTERFACE_MAP_END
NS_IMPL_CYCLE_COLLECTING_ADDREF(nsDOMMutationRecord)
NS_IMPL_CYCLE_COLLECTING_RELEASE(nsDOMMutationRecord)
NS_IMPL_CYCLE_COLLECTION_WRAPPERCACHE(nsDOMMutationRecord,
mTarget,
mPreviousSibling, mNextSibling,
mAddedNodes, mRemovedNodes,
mAddedAnimations, mRemovedAnimations,
mChangedAnimations,
mNext, mOwner)
// Observer
bool
nsMutationReceiverBase::IsObservable(nsIContent* aContent)
{
return !aContent->ChromeOnlyAccess() &&
(Observer()->IsChrome() || !aContent->IsInAnonymousSubtree());
}
NS_IMPL_ADDREF(nsMutationReceiver)
NS_IMPL_RELEASE(nsMutationReceiver)
NS_INTERFACE_MAP_BEGIN(nsMutationReceiver)
NS_INTERFACE_MAP_ENTRY(nsISupports)
NS_INTERFACE_MAP_ENTRY(nsIMutationObserver)
NS_INTERFACE_MAP_END
nsMutationReceiver::nsMutationReceiver(nsINode* aTarget,
nsDOMMutationObserver* aObserver)
: nsMutationReceiverBase(aTarget, aObserver)
{
mTarget->BindObject(aObserver);
}
void
nsMutationReceiver::Disconnect(bool aRemoveFromObserver)
{
if (mRegisterTarget) {
mRegisterTarget->RemoveMutationObserver(this);
mRegisterTarget = nullptr;
}
mParent = nullptr;
nsINode* target = mTarget;
mTarget = nullptr;
nsDOMMutationObserver* observer = mObserver;
mObserver = nullptr;
RemoveClones();
if (target && observer) {
if (aRemoveFromObserver) {
static_cast<nsDOMMutationObserver*>(observer)->RemoveReceiver(this);
}
// UnbindObject may delete 'this'!
target->UnbindObject(observer);
}
}
void
nsMutationReceiver::NativeAnonymousChildListChange(nsIDocument* aDocument,
nsIContent* aContent,
bool aIsRemove) {
if (!NativeAnonymousChildList()) {
return;
}
nsINode* parent = aContent->GetParentNode();
if (!parent ||
(!Subtree() && Target() != parent) ||
(Subtree() && RegisterTarget()->SubtreeRoot() != parent->SubtreeRoot())) {
return;
}
nsDOMMutationRecord* m =
Observer()->CurrentRecord(nsGkAtoms::nativeAnonymousChildList);
if (m->mTarget) {
return;
}
m->mTarget = parent;
if (aIsRemove) {
m->mRemovedNodes = new nsSimpleContentList(parent);
m->mRemovedNodes->AppendElement(aContent);
} else {
m->mAddedNodes = new nsSimpleContentList(parent);
m->mAddedNodes->AppendElement(aContent);
}
}
void
nsMutationReceiver::AttributeWillChange(nsIDocument* aDocument,
mozilla::dom::Element* aElement,
int32_t aNameSpaceID,
nsIAtom* aAttribute,
int32_t aModType,
const nsAttrValue* aNewValue)
{
if (nsAutoMutationBatch::IsBatching() ||
!ObservesAttr(RegisterTarget(), aElement, aNameSpaceID, aAttribute)) {
return;
}
nsDOMMutationRecord* m =
Observer()->CurrentRecord(nsGkAtoms::attributes);
NS_ASSERTION(!m->mTarget || m->mTarget == aElement,
"Wrong target!");
NS_ASSERTION(!m->mAttrName || m->mAttrName == aAttribute,
"Wrong attribute!");
if (!m->mTarget) {
m->mTarget = aElement;
m->mAttrName = aAttribute;
if (aNameSpaceID == kNameSpaceID_None) {
m->mAttrNamespace.SetIsVoid(true);
} else {
nsContentUtils::NameSpaceManager()->GetNameSpaceURI(aNameSpaceID,
m->mAttrNamespace);
}
}
if (AttributeOldValue() && m->mPrevValue.IsVoid()) {
if (!aElement->GetAttr(aNameSpaceID, aAttribute, m->mPrevValue)) {
m->mPrevValue.SetIsVoid(true);
}
}
}
void
nsMutationReceiver::CharacterDataWillChange(nsIDocument *aDocument,
nsIContent* aContent,
CharacterDataChangeInfo* aInfo)
{
if (nsAutoMutationBatch::IsBatching() ||
!CharacterData() ||
(!Subtree() && aContent != Target()) ||
(Subtree() && RegisterTarget()->SubtreeRoot() != aContent->SubtreeRoot()) ||
!IsObservable(aContent)) {
return;
}
nsDOMMutationRecord* m =
Observer()->CurrentRecord(nsGkAtoms::characterData);
NS_ASSERTION(!m->mTarget || m->mTarget == aContent,
"Wrong target!");
if (!m->mTarget) {
m->mTarget = aContent;
}
if (CharacterDataOldValue() && m->mPrevValue.IsVoid()) {
aContent->GetText()->AppendTo(m->mPrevValue);
}
}
void
nsMutationReceiver::ContentAppended(nsIDocument* aDocument,
nsIContent* aContainer,
nsIContent* aFirstNewContent,
int32_t aNewIndexInContainer)
{
nsINode* parent = NODE_FROM(aContainer, aDocument);
bool wantsChildList =
ChildList() &&
((Subtree() && RegisterTarget()->SubtreeRoot() == parent->SubtreeRoot()) ||
parent == Target());
if (!wantsChildList || !IsObservable(aFirstNewContent)) {
return;
}
if (nsAutoMutationBatch::IsBatching()) {
if (parent == nsAutoMutationBatch::GetBatchTarget()) {
nsAutoMutationBatch::UpdateObserver(Observer(), wantsChildList);
}
return;
}
nsDOMMutationRecord* m =
Observer()->CurrentRecord(nsGkAtoms::childList);
NS_ASSERTION(!m->mTarget || m->mTarget == parent,
"Wrong target!");
if (m->mTarget) {
// Already handled case.
return;
}
m->mTarget = parent;
m->mAddedNodes = new nsSimpleContentList(parent);
nsINode* n = aFirstNewContent;
while (n) {
m->mAddedNodes->AppendElement(static_cast<nsIContent*>(n));
n = n->GetNextSibling();
}
m->mPreviousSibling = aFirstNewContent->GetPreviousSibling();
}
void
nsMutationReceiver::ContentInserted(nsIDocument* aDocument,
nsIContent* aContainer,
nsIContent* aChild,
int32_t aIndexInContainer)
{
nsINode* parent = NODE_FROM(aContainer, aDocument);
bool wantsChildList =
ChildList() &&
((Subtree() && RegisterTarget()->SubtreeRoot() == parent->SubtreeRoot()) ||
parent == Target());
if (!wantsChildList || !IsObservable(aChild)) {
return;
}
if (nsAutoMutationBatch::IsBatching()) {
if (parent == nsAutoMutationBatch::GetBatchTarget()) {
nsAutoMutationBatch::UpdateObserver(Observer(), wantsChildList);
}
return;
}
nsDOMMutationRecord* m =
Observer()->CurrentRecord(nsGkAtoms::childList);
if (m->mTarget) {
// Already handled case.
return;
}
m->mTarget = parent;
m->mAddedNodes = new nsSimpleContentList(parent);
m->mAddedNodes->AppendElement(aChild);
m->mPreviousSibling = aChild->GetPreviousSibling();
m->mNextSibling = aChild->GetNextSibling();
}
void
nsMutationReceiver::ContentRemoved(nsIDocument* aDocument,
nsIContent* aContainer,
nsIContent* aChild,
int32_t aIndexInContainer,
nsIContent* aPreviousSibling)
{
if (!IsObservable(aChild)) {
return;
}
nsINode* parent = NODE_FROM(aContainer, aDocument);
if (Subtree() && parent->SubtreeRoot() != RegisterTarget()->SubtreeRoot()) {
return;
}
if (nsAutoMutationBatch::IsBatching()) {
if (nsAutoMutationBatch::IsRemovalDone()) {
// This can happen for example if HTML parser parses to
// context node, but needs to move elements around.
return;
}
if (nsAutoMutationBatch::GetBatchTarget() != parent) {
return;
}
bool wantsChildList = ChildList() && (Subtree() || parent == Target());
if (wantsChildList || Subtree()) {
nsAutoMutationBatch::NodeRemoved(aChild);
nsAutoMutationBatch::UpdateObserver(Observer(), wantsChildList);
}
return;
}
if (Subtree()) {
// Try to avoid creating transient observer if the node
// already has an observer observing the same set of nodes.
nsMutationReceiver* orig = GetParent() ? GetParent() : this;
if (Observer()->GetReceiverFor(aChild, false, false) != orig) {
bool transientExists = false;
nsCOMArray<nsMutationReceiver>* transientReceivers = nullptr;
Observer()->mTransientReceivers.Get(aChild, &transientReceivers);
if (!transientReceivers) {
transientReceivers = new nsCOMArray<nsMutationReceiver>();
Observer()->mTransientReceivers.Put(aChild, transientReceivers);
} else {
for (int32_t i = 0; i < transientReceivers->Count(); ++i) {
nsMutationReceiver* r = transientReceivers->ObjectAt(i);
if (r->GetParent() == orig) {
transientExists = true;
}
}
}
if (!transientExists) {
// Make sure the elements which are removed from the
// subtree are kept in the same observation set.
nsMutationReceiver* tr;
if (orig->Animations()) {
tr = nsAnimationReceiver::Create(aChild, orig);
} else {
tr = nsMutationReceiver::Create(aChild, orig);
}
transientReceivers->AppendObject(tr);
}
}
}
if (ChildList() && (Subtree() || parent == Target())) {
nsDOMMutationRecord* m =
Observer()->CurrentRecord(nsGkAtoms::childList);
if (m->mTarget) {
// Already handled case.
return;
}
m->mTarget = parent;
m->mRemovedNodes = new nsSimpleContentList(parent);
m->mRemovedNodes->AppendElement(aChild);
m->mPreviousSibling = aPreviousSibling;
m->mNextSibling = parent->GetChildAt(aIndexInContainer);
}
// We need to schedule always, so that after microtask mTransientReceivers
// can be cleared correctly.
Observer()->ScheduleForRun();
}
void nsMutationReceiver::NodeWillBeDestroyed(const nsINode *aNode)
{
NS_ASSERTION(!mParent, "Shouldn't have mParent here!");
Disconnect(true);
}
void
nsAnimationReceiver::RecordAnimationMutation(Animation* aAnimation,
AnimationMutation aMutationType)
{
mozilla::dom::KeyframeEffectReadOnly* effect = aAnimation->GetEffect();
if (!effect) {
return;
}
mozilla::dom::Element* animationTarget = effect->GetTarget();
if (!animationTarget) {
return;
}
if (!Animations() || !(Subtree() || animationTarget == Target()) ||
animationTarget->ChromeOnlyAccess()) {
return;
}
if (nsAutoAnimationMutationBatch::IsBatching()) {
switch (aMutationType) {
case eAnimationMutation_Added:
nsAutoAnimationMutationBatch::AnimationAdded(aAnimation,
animationTarget);
break;
case eAnimationMutation_Changed:
nsAutoAnimationMutationBatch::AnimationChanged(aAnimation,
animationTarget);
break;
case eAnimationMutation_Removed:
nsAutoAnimationMutationBatch::AnimationRemoved(aAnimation,
animationTarget);
break;
}
nsAutoAnimationMutationBatch::AddObserver(Observer());
return;
}
nsDOMMutationRecord* m =
Observer()->CurrentRecord(nsGkAtoms::animations);
NS_ASSERTION(!m->mTarget, "Wrong target!");
m->mTarget = animationTarget;
switch (aMutationType) {
case eAnimationMutation_Added:
m->mAddedAnimations.AppendElement(aAnimation);
break;
case eAnimationMutation_Changed:
m->mChangedAnimations.AppendElement(aAnimation);
break;
case eAnimationMutation_Removed:
m->mRemovedAnimations.AppendElement(aAnimation);
break;
}
}
void
nsAnimationReceiver::AnimationAdded(Animation* aAnimation)
{
RecordAnimationMutation(aAnimation, eAnimationMutation_Added);
}
void
nsAnimationReceiver::AnimationChanged(Animation* aAnimation)
{
RecordAnimationMutation(aAnimation, eAnimationMutation_Changed);
}
void
nsAnimationReceiver::AnimationRemoved(Animation* aAnimation)
{
RecordAnimationMutation(aAnimation, eAnimationMutation_Removed);
}
NS_IMPL_ISUPPORTS_INHERITED(nsAnimationReceiver, nsMutationReceiver,
nsIAnimationObserver)
// Observer
NS_INTERFACE_MAP_BEGIN_CYCLE_COLLECTION(nsDOMMutationObserver)
NS_WRAPPERCACHE_INTERFACE_MAP_ENTRY
NS_INTERFACE_MAP_ENTRY(nsISupports)
NS_INTERFACE_MAP_ENTRY(nsDOMMutationObserver)
NS_INTERFACE_MAP_END
NS_IMPL_CYCLE_COLLECTING_ADDREF(nsDOMMutationObserver)
NS_IMPL_CYCLE_COLLECTING_RELEASE(nsDOMMutationObserver)
NS_IMPL_CYCLE_COLLECTION_CLASS(nsDOMMutationObserver)
NS_IMPL_CYCLE_COLLECTION_TRACE_BEGIN(nsDOMMutationObserver)
NS_IMPL_CYCLE_COLLECTION_TRACE_PRESERVED_WRAPPER
NS_IMPL_CYCLE_COLLECTION_TRACE_END
NS_IMPL_CYCLE_COLLECTION_UNLINK_BEGIN(nsDOMMutationObserver)
NS_IMPL_CYCLE_COLLECTION_UNLINK_PRESERVED_WRAPPER
NS_IMPL_CYCLE_COLLECTION_UNLINK(mOwner)
for (int32_t i = 0; i < tmp->mReceivers.Count(); ++i) {
tmp->mReceivers[i]->Disconnect(false);
}
tmp->mReceivers.Clear();
tmp->ClearPendingRecords();
NS_IMPL_CYCLE_COLLECTION_UNLINK(mCallback)
// No need to handle mTransientReceivers
NS_IMPL_CYCLE_COLLECTION_UNLINK_END
NS_IMPL_CYCLE_COLLECTION_TRAVERSE_BEGIN(nsDOMMutationObserver)
NS_IMPL_CYCLE_COLLECTION_TRAVERSE_SCRIPT_OBJECTS
NS_IMPL_CYCLE_COLLECTION_TRAVERSE(mOwner)
NS_IMPL_CYCLE_COLLECTION_TRAVERSE(mReceivers)
NS_IMPL_CYCLE_COLLECTION_TRAVERSE(mFirstPendingMutation)
NS_IMPL_CYCLE_COLLECTION_TRAVERSE(mCallback)
// No need to handle mTransientReceivers
NS_IMPL_CYCLE_COLLECTION_TRAVERSE_END
nsMutationReceiver*
nsDOMMutationObserver::GetReceiverFor(nsINode* aNode, bool aMayCreate,
bool aWantsAnimations)
{
MOZ_ASSERT(aMayCreate || !aWantsAnimations,
"the value of aWantsAnimations doesn't matter when aMayCreate is "
"false, so just pass in false for it");
if (!aMayCreate && !aNode->MayHaveDOMMutationObserver()) {
return nullptr;
}
for (int32_t i = 0; i < mReceivers.Count(); ++i) {
if (mReceivers[i]->Target() == aNode) {
return mReceivers[i];
}
}
if (!aMayCreate) {
return nullptr;
}
nsMutationReceiver* r;
if (aWantsAnimations) {
r = nsAnimationReceiver::Create(aNode, this);
} else {
r = nsMutationReceiver::Create(aNode, this);
}
mReceivers.AppendObject(r);
return r;
}
void
nsDOMMutationObserver::RemoveReceiver(nsMutationReceiver* aReceiver)
{
mReceivers.RemoveObject(aReceiver);
}
void
nsDOMMutationObserver::GetAllSubtreeObserversFor(nsINode* aNode,
nsTArray<nsMutationReceiver*>&
aReceivers)
{
nsINode* n = aNode;
while (n) {
if (n->MayHaveDOMMutationObserver()) {
nsMutationReceiver* r = GetReceiverFor(n, false, false);
if (r && r->Subtree() && !aReceivers.Contains(r)) {
aReceivers.AppendElement(r);
// If we've found all the receivers the observer has,
// no need to search for more.
if (mReceivers.Count() == int32_t(aReceivers.Length())) {
return;
}
}
nsCOMArray<nsMutationReceiver>* transientReceivers = nullptr;
if (mTransientReceivers.Get(n, &transientReceivers) && transientReceivers) {
for (int32_t i = 0; i < transientReceivers->Count(); ++i) {
nsMutationReceiver* r = transientReceivers->ObjectAt(i);
nsMutationReceiver* parent = r->GetParent();
if (r->Subtree() && parent && !aReceivers.Contains(parent)) {
aReceivers.AppendElement(parent);
}
}
if (mReceivers.Count() == int32_t(aReceivers.Length())) {
return;
}
}
}
n = n->GetParentNode();
}
}
void
nsDOMMutationObserver::ScheduleForRun()
{
nsDOMMutationObserver::AddCurrentlyHandlingObserver(this, sMutationLevel);
if (mWaitingForRun) {
return;
}
mWaitingForRun = true;
RescheduleForRun();
}
void
nsDOMMutationObserver::RescheduleForRun()
{
if (!sScheduledMutationObservers) {
sScheduledMutationObservers = new nsAutoTArray<RefPtr<nsDOMMutationObserver>, 4>;
}
bool didInsert = false;
for (uint32_t i = 0; i < sScheduledMutationObservers->Length(); ++i) {
if (static_cast<nsDOMMutationObserver*>((*sScheduledMutationObservers)[i])
->mId > mId) {
sScheduledMutationObservers->InsertElementAt(i, this);
didInsert = true;
break;
}
}
if (!didInsert) {
sScheduledMutationObservers->AppendElement(this);
}
}
void
nsDOMMutationObserver::Observe(nsINode& aTarget,
const mozilla::dom::MutationObserverInit& aOptions,
mozilla::ErrorResult& aRv)
{
bool childList = aOptions.mChildList;
bool attributes =
aOptions.mAttributes.WasPassed() &&
aOptions.mAttributes.Value();
bool characterData =
aOptions.mCharacterData.WasPassed() &&
aOptions.mCharacterData.Value();
bool subtree = aOptions.mSubtree;
bool attributeOldValue =
aOptions.mAttributeOldValue.WasPassed() &&
aOptions.mAttributeOldValue.Value();
bool nativeAnonymousChildList = aOptions.mNativeAnonymousChildList &&
nsContentUtils::ThreadsafeIsCallerChrome();
bool characterDataOldValue =
aOptions.mCharacterDataOldValue.WasPassed() &&
aOptions.mCharacterDataOldValue.Value();
bool animations =
aOptions.mAnimations.WasPassed() &&
aOptions.mAnimations.Value() &&
nsContentUtils::ThreadsafeIsCallerChrome();
if (!aOptions.mAttributes.WasPassed() &&
(aOptions.mAttributeOldValue.WasPassed() ||
aOptions.mAttributeFilter.WasPassed())) {
attributes = true;
}
if (!aOptions.mCharacterData.WasPassed() &&
aOptions.mCharacterDataOldValue.WasPassed()) {
characterData = true;
}
if (!(childList || attributes || characterData || animations ||
nativeAnonymousChildList)) {
aRv.Throw(NS_ERROR_DOM_TYPE_ERR);
return;
}
if (aOptions.mAttributeOldValue.WasPassed() &&
aOptions.mAttributeOldValue.Value() &&
aOptions.mAttributes.WasPassed() &&
!aOptions.mAttributes.Value()) {
aRv.Throw(NS_ERROR_DOM_TYPE_ERR);
return;
}
if (aOptions.mAttributeFilter.WasPassed() &&
aOptions.mAttributes.WasPassed() &&
!aOptions.mAttributes.Value()) {
aRv.Throw(NS_ERROR_DOM_TYPE_ERR);
return;
}
if (aOptions.mCharacterDataOldValue.WasPassed() &&
aOptions.mCharacterDataOldValue.Value() &&
aOptions.mCharacterData.WasPassed() &&
!aOptions.mCharacterData.Value()) {
aRv.Throw(NS_ERROR_DOM_TYPE_ERR);
return;
}
nsCOMArray<nsIAtom> filters;
bool allAttrs = true;
if (aOptions.mAttributeFilter.WasPassed()) {
allAttrs = false;
const mozilla::dom::Sequence<nsString>& filtersAsString =
aOptions.mAttributeFilter.Value();
uint32_t len = filtersAsString.Length();
filters.SetCapacity(len);
for (uint32_t i = 0; i < len; ++i) {
nsCOMPtr<nsIAtom> a = do_GetAtom(filtersAsString[i]);
filters.AppendObject(a);
}
}
nsMutationReceiver* r = GetReceiverFor(&aTarget, true, animations);
r->SetChildList(childList);
r->SetAttributes(attributes);
r->SetCharacterData(characterData);
r->SetSubtree(subtree);
r->SetAttributeOldValue(attributeOldValue);
r->SetCharacterDataOldValue(characterDataOldValue);
r->SetNativeAnonymousChildList(nativeAnonymousChildList);
r->SetAttributeFilter(filters);
r->SetAllAttributes(allAttrs);
r->SetAnimations(animations);
r->RemoveClones();
#ifdef DEBUG
for (int32_t i = 0; i < mReceivers.Count(); ++i) {
NS_WARN_IF_FALSE(mReceivers[i]->Target(),
"All the receivers should have a target!");
}
#endif
}
void
nsDOMMutationObserver::Disconnect()
{
for (int32_t i = 0; i < mReceivers.Count(); ++i) {
mReceivers[i]->Disconnect(false);
}
mReceivers.Clear();
mCurrentMutations.Clear();
ClearPendingRecords();
}
void
nsDOMMutationObserver::TakeRecords(
nsTArray<RefPtr<nsDOMMutationRecord> >& aRetVal)
{
aRetVal.Clear();
aRetVal.SetCapacity(mPendingMutationCount);
RefPtr<nsDOMMutationRecord> current;
current.swap(mFirstPendingMutation);
for (uint32_t i = 0; i < mPendingMutationCount; ++i) {
RefPtr<nsDOMMutationRecord> next;
current->mNext.swap(next);
if (!mMergeAttributeRecords ||
!MergeableAttributeRecord(aRetVal.SafeLastElement(nullptr),
current)) {
*aRetVal.AppendElement() = current.forget();
}
current.swap(next);
}
ClearPendingRecords();
}
void
nsDOMMutationObserver::GetObservingInfo(
nsTArray<Nullable<MutationObservingInfo>>& aResult,
mozilla::ErrorResult& aRv)
{
aResult.SetCapacity(mReceivers.Count());
for (int32_t i = 0; i < mReceivers.Count(); ++i) {
MutationObservingInfo& info = aResult.AppendElement()->SetValue();
nsMutationReceiver* mr = mReceivers[i];
info.mChildList = mr->ChildList();
info.mAttributes.Construct(mr->Attributes());
info.mCharacterData.Construct(mr->CharacterData());
info.mSubtree = mr->Subtree();
info.mAttributeOldValue.Construct(mr->AttributeOldValue());
info.mCharacterDataOldValue.Construct(mr->CharacterDataOldValue());
info.mNativeAnonymousChildList = mr->NativeAnonymousChildList();
info.mAnimations.Construct(mr->Animations());
nsCOMArray<nsIAtom>& filters = mr->AttributeFilter();
if (filters.Count()) {
info.mAttributeFilter.Construct();
mozilla::dom::Sequence<nsString>& filtersAsStrings =
info.mAttributeFilter.Value();
for (int32_t j = 0; j < filters.Count(); ++j) {
if (!filtersAsStrings.AppendElement(nsDependentAtomString(filters[j]),
mozilla::fallible)) {
aRv.Throw(NS_ERROR_OUT_OF_MEMORY);
return;
}
}
}
info.mObservedNode = mr->Target();
}
}
// static
already_AddRefed<nsDOMMutationObserver>
nsDOMMutationObserver::Constructor(const mozilla::dom::GlobalObject& aGlobal,
mozilla::dom::MutationCallback& aCb,
mozilla::ErrorResult& aRv)
{
nsCOMPtr<nsPIDOMWindow> window = do_QueryInterface(aGlobal.GetAsSupports());
if (!window) {
aRv.Throw(NS_ERROR_FAILURE);
return nullptr;
}
MOZ_ASSERT(window->IsInnerWindow());
bool isChrome = nsContentUtils::IsChromeDoc(window->GetExtantDoc());
RefPtr<nsDOMMutationObserver> observer =
new nsDOMMutationObserver(window.forget(), aCb, isChrome);
return observer.forget();
}
bool
nsDOMMutationObserver::MergeableAttributeRecord(nsDOMMutationRecord* aOldRecord,
nsDOMMutationRecord* aRecord)
{
MOZ_ASSERT(mMergeAttributeRecords);
return
aOldRecord &&
aOldRecord->mType == nsGkAtoms::attributes &&
aOldRecord->mType == aRecord->mType &&
aOldRecord->mTarget == aRecord->mTarget &&
aOldRecord->mAttrName == aRecord->mAttrName &&
aOldRecord->mAttrNamespace.Equals(aRecord->mAttrNamespace);
}
void
nsDOMMutationObserver::HandleMutation()
{
NS_ASSERTION(nsContentUtils::IsSafeToRunScript(), "Whaat!");
NS_ASSERTION(mCurrentMutations.IsEmpty(),
"Still generating MutationRecords?");
mWaitingForRun = false;
for (int32_t i = 0; i < mReceivers.Count(); ++i) {
mReceivers[i]->RemoveClones();
}
mTransientReceivers.Clear();
nsPIDOMWindow* outer = mOwner->GetOuterWindow();
if (!mPendingMutationCount || !outer ||
outer->GetCurrentInnerWindow() != mOwner) {
ClearPendingRecords();
return;
}
mozilla::dom::Sequence<mozilla::OwningNonNull<nsDOMMutationRecord> >
mutations;
if (mutations.SetCapacity(mPendingMutationCount, mozilla::fallible)) {
// We can't use TakeRecords easily here, because it deals with a
// different type of array, and we want to optimize out any extra copying.
RefPtr<nsDOMMutationRecord> current;
current.swap(mFirstPendingMutation);
for (uint32_t i = 0; i < mPendingMutationCount; ++i) {
RefPtr<nsDOMMutationRecord> next;
current->mNext.swap(next);
if (!mMergeAttributeRecords ||
!MergeableAttributeRecord(mutations.Length() ?
mutations.LastElement().get() : nullptr,
current)) {
*mutations.AppendElement(mozilla::fallible) = current;
}
current.swap(next);
}
}
ClearPendingRecords();
mCallback->Call(this, mutations, *this);
}
class AsyncMutationHandler : public nsRunnable
{
public:
NS_IMETHOD Run()
{
nsDOMMutationObserver::HandleMutations();
return NS_OK;
}
};
void
nsDOMMutationObserver::HandleMutationsInternal()
{
if (!nsContentUtils::IsSafeToRunScript()) {
nsContentUtils::AddScriptRunner(new AsyncMutationHandler());
return;
}
static RefPtr<nsDOMMutationObserver> sCurrentObserver;
if (sCurrentObserver && !sCurrentObserver->Suppressed()) {
// In normal cases sScheduledMutationObservers will be handled
// after previous mutations are handled. But in case some
// callback calls a sync API, which spins the eventloop, we need to still
// process other mutations happening during that sync call.
// This does *not* catch all cases, but should work for stuff running
// in separate tabs.
return;
}
nsTArray<RefPtr<nsDOMMutationObserver> >* suppressedObservers = nullptr;
while (sScheduledMutationObservers) {
nsAutoTArray<RefPtr<nsDOMMutationObserver>, 4>* observers =
sScheduledMutationObservers;
sScheduledMutationObservers = nullptr;
for (uint32_t i = 0; i < observers->Length(); ++i) {
sCurrentObserver = static_cast<nsDOMMutationObserver*>((*observers)[i]);
if (!sCurrentObserver->Suppressed()) {
sCurrentObserver->HandleMutation();
} else {
if (!suppressedObservers) {
suppressedObservers = new nsTArray<RefPtr<nsDOMMutationObserver> >;
}
if (!suppressedObservers->Contains(sCurrentObserver)) {
suppressedObservers->AppendElement(sCurrentObserver);
}
}
}
delete observers;
}
if (suppressedObservers) {
for (uint32_t i = 0; i < suppressedObservers->Length(); ++i) {
static_cast<nsDOMMutationObserver*>(suppressedObservers->ElementAt(i))->
RescheduleForRun();
}
delete suppressedObservers;
suppressedObservers = nullptr;
}
sCurrentObserver = nullptr;
}
nsDOMMutationRecord*
nsDOMMutationObserver::CurrentRecord(nsIAtom* aType)
{
NS_ASSERTION(sMutationLevel > 0, "Unexpected mutation level!");
while (mCurrentMutations.Length() < sMutationLevel) {
mCurrentMutations.AppendElement(static_cast<nsDOMMutationRecord*>(nullptr));
}
uint32_t last = sMutationLevel - 1;
if (!mCurrentMutations[last]) {
RefPtr<nsDOMMutationRecord> r = new nsDOMMutationRecord(aType, GetParentObject());
mCurrentMutations[last] = r;
AppendMutationRecord(r.forget());
ScheduleForRun();
}
#ifdef DEBUG
MOZ_ASSERT(sCurrentlyHandlingObservers->Length() == sMutationLevel);
for (size_t i = 0; i < sCurrentlyHandlingObservers->Length(); ++i) {
MOZ_ASSERT(sCurrentlyHandlingObservers->ElementAt(i).Contains(this),
"MutationObserver should be added as an observer of all the "
"nested mutations!");
}
#endif
NS_ASSERTION(mCurrentMutations[last]->mType == aType,
"Unexpected MutationRecord type!");
return mCurrentMutations[last];
}
nsDOMMutationObserver::~nsDOMMutationObserver()
{
for (int32_t i = 0; i < mReceivers.Count(); ++i) {
mReceivers[i]->RemoveClones();
}
}
void
nsDOMMutationObserver::EnterMutationHandling()
{
++sMutationLevel;
}
// Leave the current mutation level (there can be several levels if in case
// of nested calls to the nsIMutationObserver methods).
// The most recent mutation record is removed from mCurrentMutations, so
// that is doesn't get modified anymore by receivers.
void
nsDOMMutationObserver::LeaveMutationHandling()
{
if (sCurrentlyHandlingObservers &&
sCurrentlyHandlingObservers->Length() == sMutationLevel) {
nsTArray<RefPtr<nsDOMMutationObserver> >& obs =
sCurrentlyHandlingObservers->ElementAt(sMutationLevel - 1);
for (uint32_t i = 0; i < obs.Length(); ++i) {
nsDOMMutationObserver* o =
static_cast<nsDOMMutationObserver*>(obs[i]);
if (o->mCurrentMutations.Length() == sMutationLevel) {
// It is already in pending mutations.
o->mCurrentMutations.RemoveElementAt(sMutationLevel - 1);
}
}
sCurrentlyHandlingObservers->RemoveElementAt(sMutationLevel - 1);
}
--sMutationLevel;
}
void
nsDOMMutationObserver::AddCurrentlyHandlingObserver(nsDOMMutationObserver* aObserver,
uint32_t aMutationLevel)
{
NS_ASSERTION(aMutationLevel > 0, "Unexpected mutation level!");
if (aMutationLevel > 1) {
// MutationObserver must be in the currently handling observer list
// in all the nested levels.
AddCurrentlyHandlingObserver(aObserver, aMutationLevel - 1);
}
if (!sCurrentlyHandlingObservers) {
sCurrentlyHandlingObservers =
new nsAutoTArray<nsAutoTArray<RefPtr<nsDOMMutationObserver>, 4>, 4>;
}
while (sCurrentlyHandlingObservers->Length() < aMutationLevel) {
sCurrentlyHandlingObservers->InsertElementAt(
sCurrentlyHandlingObservers->Length());
}
uint32_t index = aMutationLevel - 1;
if (!sCurrentlyHandlingObservers->ElementAt(index).Contains(aObserver)) {
sCurrentlyHandlingObservers->ElementAt(index).AppendElement(aObserver);
}
}
void
nsDOMMutationObserver::Shutdown()
{
delete sCurrentlyHandlingObservers;
sCurrentlyHandlingObservers = nullptr;
delete sScheduledMutationObservers;
sScheduledMutationObservers = nullptr;
}
nsAutoMutationBatch*
nsAutoMutationBatch::sCurrentBatch = nullptr;
void
nsAutoMutationBatch::Done()
{
if (sCurrentBatch != this) {
return;
}
sCurrentBatch = mPreviousBatch;
if (mObservers.IsEmpty()) {
nsDOMMutationObserver::LeaveMutationHandling();
// Nothing to do.
return;
}
uint32_t len = mObservers.Length();
for (uint32_t i = 0; i < len; ++i) {
nsDOMMutationObserver* ob = mObservers[i].mObserver;
bool wantsChildList = mObservers[i].mWantsChildList;
RefPtr<nsSimpleContentList> removedList;
if (wantsChildList) {
removedList = new nsSimpleContentList(mBatchTarget);
}
nsTArray<nsMutationReceiver*> allObservers;
ob->GetAllSubtreeObserversFor(mBatchTarget, allObservers);
int32_t j = mFromFirstToLast ? 0 : mRemovedNodes.Length() - 1;
int32_t end = mFromFirstToLast ? mRemovedNodes.Length() : -1;
for (; j != end; mFromFirstToLast ? ++j : --j) {
nsCOMPtr<nsIContent> removed = mRemovedNodes[j];
if (removedList) {
removedList->AppendElement(removed);
}
if (allObservers.Length()) {
nsCOMArray<nsMutationReceiver>* transientReceivers = nullptr;
ob->mTransientReceivers.Get(removed, &transientReceivers);
if (!transientReceivers) {
transientReceivers = new nsCOMArray<nsMutationReceiver>();
ob->mTransientReceivers.Put(removed, transientReceivers);
}
for (uint32_t k = 0; k < allObservers.Length(); ++k) {
nsMutationReceiver* r = allObservers[k];
nsMutationReceiver* orig = r->GetParent() ? r->GetParent() : r;
if (ob->GetReceiverFor(removed, false, false) != orig) {
// Make sure the elements which are removed from the
// subtree are kept in the same observation set.
nsMutationReceiver* tr;
if (orig->Animations()) {
tr = nsAnimationReceiver::Create(removed, orig);
} else {
tr = nsMutationReceiver::Create(removed, orig);
}
transientReceivers->AppendObject(tr);
}
}
}
}
if (wantsChildList && (mRemovedNodes.Length() || mAddedNodes.Length())) {
RefPtr<nsSimpleContentList> addedList =
new nsSimpleContentList(mBatchTarget);
for (uint32_t i = 0; i < mAddedNodes.Length(); ++i) {
addedList->AppendElement(mAddedNodes[i]);
}
RefPtr<nsDOMMutationRecord> m =
new nsDOMMutationRecord(nsGkAtoms::childList,
ob->GetParentObject());
m->mTarget = mBatchTarget;
m->mRemovedNodes = removedList;
m->mAddedNodes = addedList;
m->mPreviousSibling = mPrevSibling;
m->mNextSibling = mNextSibling;
ob->AppendMutationRecord(m.forget());
}
// Always schedule the observer so that transient receivers are
// removed correctly.
ob->ScheduleForRun();
}
nsDOMMutationObserver::LeaveMutationHandling();
}
nsAutoAnimationMutationBatch*
nsAutoAnimationMutationBatch::sCurrentBatch = nullptr;
void
nsAutoAnimationMutationBatch::Done()
{
if (sCurrentBatch != this) {
return;
}
sCurrentBatch = nullptr;
if (mObservers.IsEmpty()) {
nsDOMMutationObserver::LeaveMutationHandling();
// Nothing to do.
return;
}
mBatchTargets.Sort(TreeOrderComparator());
for (nsDOMMutationObserver* ob : mObservers) {
bool didAddRecords = false;
for (nsINode* target : mBatchTargets) {
EntryArray* entries = mEntryTable.Get(target);
MOZ_ASSERT(entries,
"Targets in entry table and targets list should match");
RefPtr<nsDOMMutationRecord> m =
new nsDOMMutationRecord(nsGkAtoms::animations, ob->GetParentObject());
m->mTarget = target;
for (const Entry& e : *entries) {
if (e.mState == eState_Added) {
m->mAddedAnimations.AppendElement(e.mAnimation);
} else if (e.mState == eState_Removed) {
m->mRemovedAnimations.AppendElement(e.mAnimation);
} else if (e.mState == eState_RemainedPresent && e.mChanged) {
m->mChangedAnimations.AppendElement(e.mAnimation);
}
}
if (!m->mAddedAnimations.IsEmpty() ||
!m->mChangedAnimations.IsEmpty() ||
!m->mRemovedAnimations.IsEmpty()) {
ob->AppendMutationRecord(m.forget());
didAddRecords = true;
}
}
if (didAddRecords) {
ob->ScheduleForRun();
}
}
nsDOMMutationObserver::LeaveMutationHandling();
}