зеркало из https://github.com/mozilla/gecko-dev.git
219 строки
6.1 KiB
C++
219 строки
6.1 KiB
C++
/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*-
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* vim: set sw=2 ts=8 et tw=80 :
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*/
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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 "ChannelEventQueue.h"
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#include "mozilla/Assertions.h"
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#include "mozilla/Unused.h"
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#include "nsIChannel.h"
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#include "mozilla/dom/Document.h"
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#include "nsThreadUtils.h"
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namespace mozilla {
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namespace net {
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ChannelEvent* ChannelEventQueue::TakeEvent() {
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mMutex.AssertCurrentThreadOwns();
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MOZ_ASSERT(mFlushing);
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if (mSuspended || mEventQueue.IsEmpty()) {
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return nullptr;
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}
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UniquePtr<ChannelEvent> event(std::move(mEventQueue[0]));
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mEventQueue.RemoveElementAt(0);
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return event.release();
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}
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void ChannelEventQueue::FlushQueue() {
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// Events flushed could include destruction of channel (and our own
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// destructor) unless we make sure its refcount doesn't drop to 0 while this
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// method is running.
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nsCOMPtr<nsISupports> kungFuDeathGrip(mOwner);
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mozilla::Unused << kungFuDeathGrip; // Not used in this function
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#ifdef DEBUG
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{
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MutexAutoLock lock(mMutex);
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MOZ_ASSERT(mFlushing);
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}
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#endif // DEBUG
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bool needResumeOnOtherThread = false;
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while (true) {
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UniquePtr<ChannelEvent> event;
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{
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MutexAutoLock lock(mMutex);
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event.reset(TakeEvent());
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if (!event) {
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MOZ_ASSERT(mFlushing);
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mFlushing = false;
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MOZ_ASSERT(mEventQueue.IsEmpty() || (mSuspended || !!mForcedCount));
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break;
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}
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}
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nsCOMPtr<nsIEventTarget> target = event->GetEventTarget();
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MOZ_ASSERT(target);
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bool isCurrentThread = false;
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nsresult rv = target->IsOnCurrentThread(&isCurrentThread);
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if (NS_WARN_IF(NS_FAILED(rv))) {
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// Simply run this event on current thread if we are not sure about it
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// in release channel, or assert in Aurora/Nightly channel.
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MOZ_DIAGNOSTIC_ASSERT(false);
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isCurrentThread = true;
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}
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if (!isCurrentThread) {
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// Next event needs to run on another thread. Put it back to
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// the front of the queue can try resume on that thread.
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Suspend();
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PrependEvent(std::move(event));
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needResumeOnOtherThread = true;
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{
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MutexAutoLock lock(mMutex);
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MOZ_ASSERT(mFlushing);
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mFlushing = false;
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MOZ_ASSERT(!mEventQueue.IsEmpty());
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}
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break;
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}
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event->Run();
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} // end of while(true)
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// The flush procedure is aborted because next event cannot be run on current
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// thread. We need to resume the event processing right after flush procedure
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// is finished.
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// Note: we cannot call Resume() while "mFlushing == true" because
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// CompleteResume will not trigger FlushQueue while there is an ongoing flush.
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if (needResumeOnOtherThread) {
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Resume();
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}
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}
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void ChannelEventQueue::Suspend() {
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MutexAutoLock lock(mMutex);
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SuspendInternal();
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}
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void ChannelEventQueue::SuspendInternal() {
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mMutex.AssertCurrentThreadOwns();
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mSuspended = true;
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mSuspendCount++;
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}
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void ChannelEventQueue::Resume() {
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MutexAutoLock lock(mMutex);
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ResumeInternal();
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}
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void ChannelEventQueue::ResumeInternal() {
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mMutex.AssertCurrentThreadOwns();
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// Resuming w/o suspend: error in debug mode, ignore in build
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MOZ_ASSERT(mSuspendCount > 0);
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if (mSuspendCount <= 0) {
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return;
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}
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if (!--mSuspendCount) {
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if (mEventQueue.IsEmpty() || !!mForcedCount) {
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// Nothing in queue to flush or waiting for AutoEventEnqueuer to
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// finish the force enqueue period, simply clear the flag.
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mSuspended = false;
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return;
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}
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// Hold a strong reference of mOwner to avoid the channel release
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// before CompleteResume was executed.
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class CompleteResumeRunnable : public CancelableRunnable {
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public:
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explicit CompleteResumeRunnable(ChannelEventQueue* aQueue,
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nsISupports* aOwner)
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: CancelableRunnable("CompleteResumeRunnable"),
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mQueue(aQueue),
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mOwner(aOwner) {}
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NS_IMETHOD Run() override {
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mQueue->CompleteResume();
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return NS_OK;
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}
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private:
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virtual ~CompleteResumeRunnable() = default;
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RefPtr<ChannelEventQueue> mQueue;
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nsCOMPtr<nsISupports> mOwner;
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};
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// Worker thread requires a CancelableRunnable.
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RefPtr<Runnable> event = new CompleteResumeRunnable(this, mOwner);
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nsCOMPtr<nsIEventTarget> target;
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target = mEventQueue[0]->GetEventTarget();
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MOZ_ASSERT(target);
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Unused << NS_WARN_IF(
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NS_FAILED(target->Dispatch(event.forget(), NS_DISPATCH_NORMAL)));
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}
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}
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bool ChannelEventQueue::MaybeSuspendIfEventsAreSuppressed() {
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// We only ever need to suppress events on the main thread, since this is
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// where content scripts can run.
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if (!NS_IsMainThread()) {
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return false;
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}
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// Only suppress events for queues associated with XHRs, as these can cause
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// content scripts to run.
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if (mHasCheckedForXMLHttpRequest && !mForXMLHttpRequest) {
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return false;
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}
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nsCOMPtr<nsIChannel> channel(do_QueryInterface(mOwner));
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if (!channel) {
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return false;
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}
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nsCOMPtr<nsILoadInfo> loadInfo = channel->LoadInfo();
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// Figure out if this is for an XHR, if we haven't done so already.
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if (!mHasCheckedForXMLHttpRequest) {
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nsContentPolicyType contentType = loadInfo->InternalContentPolicyType();
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mForXMLHttpRequest =
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(contentType == nsIContentPolicy::TYPE_INTERNAL_XMLHTTPREQUEST);
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mHasCheckedForXMLHttpRequest = true;
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if (!mForXMLHttpRequest) {
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return false;
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}
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}
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// Suspend the queue if the associated document has suppressed event handling,
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// *and* it is not in the middle of a synchronous operation that might require
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// XHR events to be processed (such as a synchronous XHR).
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RefPtr<dom::Document> document;
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loadInfo->GetLoadingDocument(getter_AddRefs(document));
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if (document && document->EventHandlingSuppressed() &&
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!document->IsInSyncOperation()) {
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document->AddSuspendedChannelEventQueue(this);
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SuspendInternal();
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return true;
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}
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return false;
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}
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} // namespace net
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} // namespace mozilla
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