зеркало из https://github.com/mozilla/gecko-dev.git
1674 строки
51 KiB
C++
1674 строки
51 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 "ServiceWorkerOp.h"
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#include <utility>
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#include "jsapi.h"
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#include "nsCOMPtr.h"
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#include "nsContentUtils.h"
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#include "nsDebug.h"
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#include "nsError.h"
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#include "nsINamed.h"
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#include "nsIPushErrorReporter.h"
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#include "nsISupportsImpl.h"
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#include "nsITimer.h"
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#include "nsProxyRelease.h"
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#include "nsServiceManagerUtils.h"
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#include "nsTArray.h"
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#include "nsThreadUtils.h"
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#include "ServiceWorkerCloneData.h"
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#include "mozilla/Assertions.h"
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#include "mozilla/CycleCollectedJSContext.h"
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#include "mozilla/DebugOnly.h"
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#include "mozilla/ErrorResult.h"
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#include "mozilla/OwningNonNull.h"
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#include "mozilla/ScopeExit.h"
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#include "mozilla/SystemGroup.h"
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#include "mozilla/Telemetry.h"
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#include "mozilla/Unused.h"
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#include "mozilla/dom/BindingDeclarations.h"
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#include "mozilla/dom/Client.h"
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#include "mozilla/dom/ExtendableMessageEventBinding.h"
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#include "mozilla/dom/FetchEventBinding.h"
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#include "mozilla/dom/FetchEventOpProxyChild.h"
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#include "mozilla/dom/InternalHeaders.h"
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#include "mozilla/dom/InternalRequest.h"
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#include "mozilla/dom/InternalResponse.h"
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#include "mozilla/dom/Notification.h"
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#include "mozilla/dom/PushEventBinding.h"
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#include "mozilla/dom/RemoteWorkerChild.h"
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#include "mozilla/dom/RemoteWorkerService.h"
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#include "mozilla/dom/Request.h"
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#include "mozilla/dom/Response.h"
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#include "mozilla/dom/RootedDictionary.h"
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#include "mozilla/dom/ServiceWorkerBinding.h"
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#include "mozilla/dom/WorkerCommon.h"
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#include "mozilla/dom/WorkerRef.h"
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#include "mozilla/ipc/IPCStreamUtils.h"
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namespace mozilla {
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namespace dom {
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namespace {
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class ExtendableEventKeepAliveHandler final
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: public ExtendableEvent::ExtensionsHandler,
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public PromiseNativeHandler {
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public:
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NS_DECL_ISUPPORTS
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static RefPtr<ExtendableEventKeepAliveHandler> Create(
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RefPtr<ExtendableEventCallback> aCallback) {
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MOZ_ASSERT(IsCurrentThreadRunningWorker());
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RefPtr<ExtendableEventKeepAliveHandler> self =
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new ExtendableEventKeepAliveHandler(std::move(aCallback));
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self->mWorkerRef = StrongWorkerRef::Create(
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GetCurrentThreadWorkerPrivate(), "ExtendableEventKeepAliveHandler",
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[self]() { self->Cleanup(); });
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if (NS_WARN_IF(!self->mWorkerRef)) {
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return nullptr;
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}
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return self;
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}
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/**
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* ExtendableEvent::ExtensionsHandler interface
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*/
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bool WaitOnPromise(Promise& aPromise) override {
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if (!mAcceptingPromises) {
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MOZ_ASSERT(!mSelfRef, "We shouldn't be holding a self reference!");
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return false;
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}
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if (!mSelfRef) {
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MOZ_ASSERT(!mPendingPromisesCount);
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mSelfRef = this;
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}
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++mPendingPromisesCount;
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aPromise.AppendNativeHandler(this);
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return true;
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}
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/**
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* PromiseNativeHandler interface
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*/
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void ResolvedCallback(JSContext* aCx, JS::Handle<JS::Value> aValue) override {
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RemovePromise(Resolved);
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}
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void RejectedCallback(JSContext* aCx, JS::Handle<JS::Value> aValue) override {
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RemovePromise(Rejected);
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}
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void MaybeDone() {
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MOZ_ASSERT(IsCurrentThreadRunningWorker());
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if (mPendingPromisesCount) {
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return;
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}
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if (mCallback) {
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mCallback->FinishedWithResult(mRejected ? Rejected : Resolved);
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}
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Cleanup();
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}
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private:
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/**
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* This class is useful for the case where pending microtasks will continue
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* extending the event, which means that the event is not "done." For example:
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*
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* // `e` is an ExtendableEvent, `p` is a Promise
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* e.waitUntil(p);
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* p.then(() => e.waitUntil(otherPromise));
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*/
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class MaybeDoneRunner : public MicroTaskRunnable {
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public:
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explicit MaybeDoneRunner(RefPtr<ExtendableEventKeepAliveHandler> aHandler)
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: mHandler(std::move(aHandler)) {}
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void Run(AutoSlowOperation& /* unused */) override {
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mHandler->MaybeDone();
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}
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private:
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RefPtr<ExtendableEventKeepAliveHandler> mHandler;
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};
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explicit ExtendableEventKeepAliveHandler(
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RefPtr<ExtendableEventCallback> aCallback)
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: mCallback(std::move(aCallback)) {}
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~ExtendableEventKeepAliveHandler() { Cleanup(); }
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void Cleanup() {
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MOZ_ASSERT(IsCurrentThreadRunningWorker());
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mSelfRef = nullptr;
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mWorkerRef = nullptr;
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mCallback = nullptr;
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mAcceptingPromises = false;
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}
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void RemovePromise(ExtendableEventResult aResult) {
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MOZ_ASSERT(IsCurrentThreadRunningWorker());
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MOZ_DIAGNOSTIC_ASSERT(mPendingPromisesCount > 0);
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// NOTE: mSelfRef can be nullptr here if MaybeCleanup() was just called
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// before a promise settled. This can happen, for example, if the worker
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// thread is being terminated for running too long, browser shutdown, etc.
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mRejected |= (aResult == Rejected);
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--mPendingPromisesCount;
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if (mPendingPromisesCount) {
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return;
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}
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CycleCollectedJSContext* cx = CycleCollectedJSContext::Get();
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MOZ_ASSERT(cx);
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RefPtr<MaybeDoneRunner> r = new MaybeDoneRunner(this);
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cx->DispatchToMicroTask(r.forget());
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}
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/**
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* We start holding a self reference when the first extension promise is
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* added, and this reference is released when the last promise settles or
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* when the worker is shutting down.
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*
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* This is needed in the case that we're waiting indefinitely on a to-be-GC'ed
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* promise that's no longer reachable and will never be settled.
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*/
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RefPtr<ExtendableEventKeepAliveHandler> mSelfRef;
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RefPtr<StrongWorkerRef> mWorkerRef;
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RefPtr<ExtendableEventCallback> mCallback;
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uint32_t mPendingPromisesCount = 0;
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bool mRejected = false;
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bool mAcceptingPromises = true;
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};
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NS_IMPL_ISUPPORTS0(ExtendableEventKeepAliveHandler)
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nsresult DispatchExtendableEventOnWorkerScope(
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JSContext* aCx, WorkerGlobalScope* aWorkerScope, ExtendableEvent* aEvent,
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RefPtr<ExtendableEventCallback> aCallback) {
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MOZ_ASSERT(aCx);
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MOZ_ASSERT(aWorkerScope);
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MOZ_ASSERT(aEvent);
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nsCOMPtr<nsIGlobalObject> globalObject = aWorkerScope;
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WidgetEvent* internalEvent = aEvent->WidgetEventPtr();
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RefPtr<ExtendableEventKeepAliveHandler> keepAliveHandler =
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ExtendableEventKeepAliveHandler::Create(std::move(aCallback));
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if (NS_WARN_IF(!keepAliveHandler)) {
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return NS_ERROR_FAILURE;
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}
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// This must be always set *before* dispatching the event, otherwise
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// waitUntil() calls will fail.
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aEvent->SetKeepAliveHandler(keepAliveHandler);
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ErrorResult result;
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aWorkerScope->DispatchEvent(*aEvent, result);
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if (NS_WARN_IF(result.Failed())) {
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result.SuppressException();
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return NS_ERROR_FAILURE;
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}
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keepAliveHandler->MaybeDone();
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// We don't block the event when getting an exception but still report the
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// error message. NOTE: this will not stop the event.
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if (internalEvent->mFlags.mExceptionWasRaised) {
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return NS_ERROR_XPC_JS_THREW_EXCEPTION;
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}
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return NS_OK;
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}
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bool DispatchFailed(nsresult aStatus) {
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return NS_FAILED(aStatus) && aStatus != NS_ERROR_XPC_JS_THREW_EXCEPTION;
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}
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} // anonymous namespace
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class ServiceWorkerOp::ServiceWorkerOpRunnable : public WorkerDebuggeeRunnable {
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public:
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NS_DECL_ISUPPORTS_INHERITED
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ServiceWorkerOpRunnable(RefPtr<ServiceWorkerOp> aOwner,
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WorkerPrivate* aWorkerPrivate)
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: WorkerDebuggeeRunnable(aWorkerPrivate, WorkerThreadModifyBusyCount),
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mOwner(std::move(aOwner)) {
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AssertIsOnMainThread();
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MOZ_ASSERT(mOwner);
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MOZ_ASSERT(aWorkerPrivate);
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}
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private:
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~ServiceWorkerOpRunnable() = default;
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bool WorkerRun(JSContext* aCx, WorkerPrivate* aWorkerPrivate) override {
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MOZ_ASSERT(aWorkerPrivate);
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aWorkerPrivate->AssertIsOnWorkerThread();
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MOZ_ASSERT(aWorkerPrivate->IsServiceWorker());
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MOZ_ASSERT(mOwner);
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bool rv = mOwner->Exec(aCx, aWorkerPrivate);
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Unused << NS_WARN_IF(!rv);
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mOwner = nullptr;
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return rv;
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}
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nsresult Cancel() override {
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MOZ_ASSERT(mOwner);
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mOwner->RejectAll(NS_ERROR_DOM_ABORT_ERR);
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mOwner = nullptr;
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return WorkerRunnable::Cancel();
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}
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RefPtr<ServiceWorkerOp> mOwner;
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};
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NS_IMPL_ISUPPORTS_INHERITED0(ServiceWorkerOp::ServiceWorkerOpRunnable,
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WorkerRunnable)
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bool ServiceWorkerOp::MaybeStart(RemoteWorkerChild* aOwner,
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RemoteWorkerChild::State& aState) {
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MOZ_ASSERT(!mStarted);
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MOZ_ASSERT(aOwner);
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MOZ_ASSERT(aOwner->GetOwningEventTarget()->IsOnCurrentThread());
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MOZ_ACCESS_THREAD_BOUND(aOwner->mLauncherData, launcherData);
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if (NS_WARN_IF(!launcherData->mIPCActive)) {
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RejectAll(NS_ERROR_DOM_ABORT_ERR);
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mStarted = true;
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return true;
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}
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// Allow termination to happen while the Service Worker is initializing.
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if (aState.is<Pending>() && !IsTerminationOp()) {
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return false;
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}
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if (NS_WARN_IF(aState.is<RemoteWorkerChild::PendingTerminated>()) ||
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NS_WARN_IF(aState.is<RemoteWorkerChild::Terminated>())) {
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RejectAll(NS_ERROR_DOM_INVALID_STATE_ERR);
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mStarted = true;
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return true;
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}
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MOZ_ASSERT(aState.is<RemoteWorkerChild::Running>() || IsTerminationOp());
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RefPtr<ServiceWorkerOp> self = this;
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if (IsTerminationOp()) {
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aOwner->GetTerminationPromise()->Then(
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GetCurrentThreadSerialEventTarget(), __func__,
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[self](
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const GenericNonExclusivePromise::ResolveOrRejectValue& aResult) {
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MOZ_ASSERT(!self->mPromiseHolder.IsEmpty());
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if (NS_WARN_IF(aResult.IsReject())) {
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self->mPromiseHolder.Reject(aResult.RejectValue(), __func__);
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return;
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}
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self->mPromiseHolder.Resolve(NS_OK, __func__);
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});
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}
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RefPtr<RemoteWorkerChild> owner = aOwner;
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nsCOMPtr<nsIRunnable> r = NS_NewRunnableFunction(
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__func__, [self = std::move(self), owner = std::move(owner)]() mutable {
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auto lock = owner->mState.Lock();
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auto& state = lock.ref();
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if (NS_WARN_IF(!state.is<Running>() && !self->IsTerminationOp())) {
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self->RejectAll(NS_ERROR_DOM_INVALID_STATE_ERR);
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return;
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}
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if (self->IsTerminationOp()) {
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owner->CloseWorkerOnMainThread(state);
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} else {
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MOZ_ASSERT(state.is<Running>());
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RefPtr<WorkerRunnable> workerRunnable =
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self->GetRunnable(state.as<Running>().mWorkerPrivate);
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if (NS_WARN_IF(!workerRunnable->Dispatch())) {
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self->RejectAll(NS_ERROR_FAILURE);
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}
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}
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nsCOMPtr<nsIEventTarget> target = owner->GetOwningEventTarget();
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NS_ProxyRelease(__func__, target, owner.forget());
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});
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mStarted = true;
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MOZ_ALWAYS_SUCCEEDS(SystemGroup::Dispatch(TaskCategory::Other, r.forget()));
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return true;
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}
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void ServiceWorkerOp::Cancel() { RejectAll(NS_ERROR_DOM_ABORT_ERR); }
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ServiceWorkerOp::ServiceWorkerOp(
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const ServiceWorkerOpArgs& aArgs,
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std::function<void(const ServiceWorkerOpResult&)>&& aCallback)
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: mArgs(aArgs) {
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MOZ_ASSERT(RemoteWorkerService::Thread()->IsOnCurrentThread());
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RefPtr<ServiceWorkerOpPromise> promise = mPromiseHolder.Ensure(__func__);
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promise->Then(
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GetCurrentThreadSerialEventTarget(), __func__,
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[callback = std::move(aCallback)](
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ServiceWorkerOpPromise::ResolveOrRejectValue&& aResult) mutable {
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if (NS_WARN_IF(aResult.IsReject())) {
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MOZ_ASSERT(NS_FAILED(aResult.RejectValue()));
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callback(aResult.RejectValue());
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return;
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}
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callback(aResult.ResolveValue());
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});
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}
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ServiceWorkerOp::~ServiceWorkerOp() {
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Unused << NS_WARN_IF(!mPromiseHolder.IsEmpty());
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mPromiseHolder.RejectIfExists(NS_ERROR_DOM_ABORT_ERR, __func__);
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}
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bool ServiceWorkerOp::Started() const {
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MOZ_ASSERT(RemoteWorkerService::Thread()->IsOnCurrentThread());
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return mStarted;
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}
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bool ServiceWorkerOp::IsTerminationOp() const {
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return mArgs.type() ==
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ServiceWorkerOpArgs::TServiceWorkerTerminateWorkerOpArgs;
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}
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RefPtr<WorkerRunnable> ServiceWorkerOp::GetRunnable(
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WorkerPrivate* aWorkerPrivate) {
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AssertIsOnMainThread();
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MOZ_ASSERT(aWorkerPrivate);
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return new ServiceWorkerOpRunnable(this, aWorkerPrivate);
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}
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void ServiceWorkerOp::RejectAll(nsresult aStatus) {
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MOZ_ASSERT(!mPromiseHolder.IsEmpty());
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mPromiseHolder.Reject(aStatus, __func__);
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}
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class CheckScriptEvaluationOp final : public ServiceWorkerOp {
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using ServiceWorkerOp::ServiceWorkerOp;
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public:
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NS_INLINE_DECL_THREADSAFE_REFCOUNTING(CheckScriptEvaluationOp, override)
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private:
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~CheckScriptEvaluationOp() = default;
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bool Exec(JSContext* aCx, WorkerPrivate* aWorkerPrivate) override {
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MOZ_ASSERT(aWorkerPrivate);
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aWorkerPrivate->AssertIsOnWorkerThread();
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MOZ_ASSERT(aWorkerPrivate->IsServiceWorker());
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MOZ_ASSERT(!mPromiseHolder.IsEmpty());
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ServiceWorkerCheckScriptEvaluationOpResult result;
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result.workerScriptExecutedSuccessfully() =
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aWorkerPrivate->WorkerScriptExecutedSuccessfully();
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result.fetchHandlerWasAdded() = aWorkerPrivate->FetchHandlerWasAdded();
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mPromiseHolder.Resolve(result, __func__);
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return true;
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}
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};
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class TerminateServiceWorkerOp final : public ServiceWorkerOp {
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using ServiceWorkerOp::ServiceWorkerOp;
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public:
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NS_INLINE_DECL_THREADSAFE_REFCOUNTING(TerminateServiceWorkerOp, override)
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private:
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~TerminateServiceWorkerOp() = default;
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bool Exec(JSContext*, WorkerPrivate*) override {
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MOZ_ASSERT_UNREACHABLE(
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"Worker termination should be handled in "
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"`ServiceWorkerOp::MaybeStart()`");
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return false;
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}
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};
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class UpdateServiceWorkerStateOp final : public ServiceWorkerOp {
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using ServiceWorkerOp::ServiceWorkerOp;
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public:
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NS_INLINE_DECL_THREADSAFE_REFCOUNTING(UpdateServiceWorkerStateOp, override);
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private:
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class UpdateStateOpRunnable final : public MainThreadWorkerControlRunnable {
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public:
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NS_DECL_ISUPPORTS_INHERITED
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UpdateStateOpRunnable(RefPtr<UpdateServiceWorkerStateOp> aOwner,
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WorkerPrivate* aWorkerPrivate)
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: MainThreadWorkerControlRunnable(aWorkerPrivate),
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mOwner(std::move(aOwner)) {
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AssertIsOnMainThread();
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MOZ_ASSERT(mOwner);
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MOZ_ASSERT(aWorkerPrivate);
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}
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private:
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~UpdateStateOpRunnable() = default;
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bool WorkerRun(JSContext* aCx, WorkerPrivate* aWorkerPrivate) override {
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MOZ_ASSERT(aWorkerPrivate);
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aWorkerPrivate->AssertIsOnWorkerThread();
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MOZ_ASSERT(aWorkerPrivate->IsServiceWorker());
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MOZ_ASSERT(mOwner);
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Unused << mOwner->Exec(aCx, aWorkerPrivate);
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mOwner = nullptr;
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return true;
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}
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nsresult Cancel() override {
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MOZ_ASSERT(mOwner);
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mOwner->RejectAll(NS_ERROR_DOM_ABORT_ERR);
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mOwner = nullptr;
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return MainThreadWorkerControlRunnable::Cancel();
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}
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RefPtr<UpdateServiceWorkerStateOp> mOwner;
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};
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|
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~UpdateServiceWorkerStateOp() = default;
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RefPtr<WorkerRunnable> GetRunnable(WorkerPrivate* aWorkerPrivate) override {
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AssertIsOnMainThread();
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MOZ_ASSERT(aWorkerPrivate);
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MOZ_ASSERT(mArgs.type() ==
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ServiceWorkerOpArgs::TServiceWorkerUpdateStateOpArgs);
|
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return new UpdateStateOpRunnable(this, aWorkerPrivate);
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}
|
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|
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bool Exec(JSContext* aCx, WorkerPrivate* aWorkerPrivate) override {
|
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MOZ_ASSERT(aWorkerPrivate);
|
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aWorkerPrivate->AssertIsOnWorkerThread();
|
||
MOZ_ASSERT(aWorkerPrivate->IsServiceWorker());
|
||
MOZ_ASSERT(!mPromiseHolder.IsEmpty());
|
||
|
||
ServiceWorkerState state =
|
||
mArgs.get_ServiceWorkerUpdateStateOpArgs().state();
|
||
aWorkerPrivate->UpdateServiceWorkerState(state);
|
||
|
||
mPromiseHolder.Resolve(NS_OK, __func__);
|
||
|
||
return true;
|
||
}
|
||
};
|
||
|
||
NS_IMPL_ISUPPORTS_INHERITED0(UpdateServiceWorkerStateOp::UpdateStateOpRunnable,
|
||
MainThreadWorkerControlRunnable)
|
||
|
||
void ExtendableEventOp::FinishedWithResult(ExtendableEventResult aResult) {
|
||
MOZ_ASSERT(IsCurrentThreadRunningWorker());
|
||
MOZ_ASSERT(!mPromiseHolder.IsEmpty());
|
||
|
||
mPromiseHolder.Resolve(aResult == Resolved ? NS_OK : NS_ERROR_FAILURE,
|
||
__func__);
|
||
}
|
||
|
||
class LifeCycleEventOp final : public ExtendableEventOp {
|
||
using ExtendableEventOp::ExtendableEventOp;
|
||
|
||
public:
|
||
NS_INLINE_DECL_THREADSAFE_REFCOUNTING(LifeCycleEventOp, override)
|
||
|
||
private:
|
||
~LifeCycleEventOp() = default;
|
||
|
||
bool Exec(JSContext* aCx, WorkerPrivate* aWorkerPrivate) override {
|
||
MOZ_ASSERT(aWorkerPrivate);
|
||
aWorkerPrivate->AssertIsOnWorkerThread();
|
||
MOZ_ASSERT(aWorkerPrivate->IsServiceWorker());
|
||
MOZ_ASSERT(!mPromiseHolder.IsEmpty());
|
||
|
||
RefPtr<ExtendableEvent> event;
|
||
RefPtr<EventTarget> target = aWorkerPrivate->GlobalScope();
|
||
|
||
const nsString& eventName =
|
||
mArgs.get_ServiceWorkerLifeCycleEventOpArgs().eventName();
|
||
|
||
if (eventName.EqualsASCII("install") || eventName.EqualsASCII("activate")) {
|
||
ExtendableEventInit init;
|
||
init.mBubbles = false;
|
||
init.mCancelable = false;
|
||
event = ExtendableEvent::Constructor(target, eventName, init);
|
||
} else {
|
||
MOZ_CRASH("Unexpected lifecycle event");
|
||
}
|
||
|
||
event->SetTrusted(true);
|
||
|
||
nsresult rv = DispatchExtendableEventOnWorkerScope(
|
||
aCx, aWorkerPrivate->GlobalScope(), event, this);
|
||
|
||
if (NS_WARN_IF(DispatchFailed(rv))) {
|
||
RejectAll(rv);
|
||
}
|
||
|
||
return DispatchFailed(rv);
|
||
}
|
||
};
|
||
|
||
/**
|
||
* PushEventOp
|
||
*/
|
||
class PushEventOp final : public ExtendableEventOp {
|
||
using ExtendableEventOp::ExtendableEventOp;
|
||
|
||
public:
|
||
NS_INLINE_DECL_THREADSAFE_REFCOUNTING(PushEventOp, override)
|
||
|
||
private:
|
||
~PushEventOp() = default;
|
||
|
||
bool Exec(JSContext* aCx, WorkerPrivate* aWorkerPrivate) override {
|
||
MOZ_ASSERT(aWorkerPrivate);
|
||
aWorkerPrivate->AssertIsOnWorkerThread();
|
||
MOZ_ASSERT(aWorkerPrivate->IsServiceWorker());
|
||
MOZ_ASSERT(!mPromiseHolder.IsEmpty());
|
||
|
||
ErrorResult result;
|
||
|
||
auto scopeExit = MakeScopeExit([&] {
|
||
MOZ_ASSERT(result.Failed());
|
||
|
||
RejectAll(result.StealNSResult());
|
||
ReportError(aWorkerPrivate);
|
||
});
|
||
|
||
const ServiceWorkerPushEventOpArgs& args =
|
||
mArgs.get_ServiceWorkerPushEventOpArgs();
|
||
|
||
PushEventInit pushEventInit;
|
||
|
||
if (args.data().type() != OptionalPushData::Tvoid_t) {
|
||
auto& bytes = args.data().get_ArrayOfuint8_t();
|
||
JSObject* data =
|
||
Uint8Array::Create(aCx, bytes.Length(), bytes.Elements());
|
||
|
||
if (!data) {
|
||
result = ErrorResult(NS_ERROR_FAILURE);
|
||
return false;
|
||
}
|
||
|
||
DebugOnly<bool> inited =
|
||
pushEventInit.mData.Construct().SetAsArrayBufferView().Init(data);
|
||
MOZ_ASSERT(inited);
|
||
}
|
||
|
||
pushEventInit.mBubbles = false;
|
||
pushEventInit.mCancelable = false;
|
||
|
||
GlobalObject globalObj(aCx, aWorkerPrivate->GlobalScope()->GetWrapper());
|
||
RefPtr<PushEvent> pushEvent = PushEvent::Constructor(
|
||
globalObj, NS_LITERAL_STRING("push"), pushEventInit, result);
|
||
|
||
if (NS_WARN_IF(result.Failed())) {
|
||
return false;
|
||
}
|
||
|
||
pushEvent->SetTrusted(true);
|
||
|
||
scopeExit.release();
|
||
|
||
nsresult rv = DispatchExtendableEventOnWorkerScope(
|
||
aCx, aWorkerPrivate->GlobalScope(), pushEvent, this);
|
||
|
||
if (NS_FAILED(rv)) {
|
||
if (NS_WARN_IF(DispatchFailed(rv))) {
|
||
RejectAll(rv);
|
||
}
|
||
|
||
// We don't cancel WorkerPrivate when catching an exception.
|
||
ReportError(aWorkerPrivate,
|
||
nsIPushErrorReporter::DELIVERY_UNCAUGHT_EXCEPTION);
|
||
}
|
||
|
||
return DispatchFailed(rv);
|
||
}
|
||
|
||
void FinishedWithResult(ExtendableEventResult aResult) override {
|
||
MOZ_ASSERT(IsCurrentThreadRunningWorker());
|
||
|
||
WorkerPrivate* workerPrivate = GetCurrentThreadWorkerPrivate();
|
||
|
||
if (aResult == Rejected) {
|
||
ReportError(workerPrivate,
|
||
nsIPushErrorReporter::DELIVERY_UNHANDLED_REJECTION);
|
||
}
|
||
|
||
ExtendableEventOp::FinishedWithResult(aResult);
|
||
}
|
||
|
||
void ReportError(
|
||
WorkerPrivate* aWorkerPrivate,
|
||
uint16_t aError = nsIPushErrorReporter::DELIVERY_INTERNAL_ERROR) {
|
||
MOZ_ASSERT(aWorkerPrivate);
|
||
aWorkerPrivate->AssertIsOnWorkerThread();
|
||
MOZ_ASSERT(aWorkerPrivate->IsServiceWorker());
|
||
|
||
if (NS_WARN_IF(aError > nsIPushErrorReporter::DELIVERY_INTERNAL_ERROR) ||
|
||
mArgs.get_ServiceWorkerPushEventOpArgs().messageId().IsEmpty()) {
|
||
return;
|
||
}
|
||
|
||
nsString messageId = mArgs.get_ServiceWorkerPushEventOpArgs().messageId();
|
||
nsCOMPtr<nsIRunnable> r = NS_NewRunnableFunction(
|
||
__func__, [messageId = std::move(messageId), error = aError] {
|
||
nsCOMPtr<nsIPushErrorReporter> reporter =
|
||
do_GetService("@mozilla.org/push/Service;1");
|
||
|
||
if (reporter) {
|
||
nsresult rv = reporter->ReportDeliveryError(messageId, error);
|
||
Unused << NS_WARN_IF(NS_FAILED(rv));
|
||
}
|
||
});
|
||
|
||
MOZ_ALWAYS_SUCCEEDS(aWorkerPrivate->DispatchToMainThread(r.forget()));
|
||
}
|
||
};
|
||
|
||
class PushSubscriptionChangeEventOp final : public ExtendableEventOp {
|
||
using ExtendableEventOp::ExtendableEventOp;
|
||
|
||
public:
|
||
NS_INLINE_DECL_THREADSAFE_REFCOUNTING(PushSubscriptionChangeEventOp, override)
|
||
|
||
private:
|
||
~PushSubscriptionChangeEventOp() = default;
|
||
|
||
bool Exec(JSContext* aCx, WorkerPrivate* aWorkerPrivate) override {
|
||
MOZ_ASSERT(aWorkerPrivate);
|
||
aWorkerPrivate->AssertIsOnWorkerThread();
|
||
MOZ_ASSERT(aWorkerPrivate->IsServiceWorker());
|
||
MOZ_ASSERT(!mPromiseHolder.IsEmpty());
|
||
|
||
RefPtr<EventTarget> target = aWorkerPrivate->GlobalScope();
|
||
|
||
ExtendableEventInit init;
|
||
init.mBubbles = false;
|
||
init.mCancelable = false;
|
||
|
||
RefPtr<ExtendableEvent> event = ExtendableEvent::Constructor(
|
||
target, NS_LITERAL_STRING("pushsubscriptionchange"), init);
|
||
event->SetTrusted(true);
|
||
|
||
nsresult rv = DispatchExtendableEventOnWorkerScope(
|
||
aCx, aWorkerPrivate->GlobalScope(), event, this);
|
||
|
||
if (NS_WARN_IF(DispatchFailed(rv))) {
|
||
RejectAll(rv);
|
||
}
|
||
|
||
return DispatchFailed(rv);
|
||
}
|
||
};
|
||
|
||
class NotificationEventOp : public ExtendableEventOp,
|
||
public nsITimerCallback,
|
||
public nsINamed {
|
||
using ExtendableEventOp::ExtendableEventOp;
|
||
|
||
public:
|
||
NS_DECL_THREADSAFE_ISUPPORTS
|
||
|
||
private:
|
||
~NotificationEventOp() {
|
||
MOZ_DIAGNOSTIC_ASSERT(!mTimer);
|
||
MOZ_DIAGNOSTIC_ASSERT(!mWorkerRef);
|
||
}
|
||
|
||
void ClearWindowAllowed(WorkerPrivate* aWorkerPrivate) {
|
||
MOZ_ASSERT(aWorkerPrivate);
|
||
aWorkerPrivate->AssertIsOnWorkerThread();
|
||
MOZ_ASSERT(aWorkerPrivate->IsServiceWorker());
|
||
|
||
if (!mTimer) {
|
||
return;
|
||
}
|
||
|
||
// This might be executed after the global was unrooted, in which case
|
||
// GlobalScope() will return null. Making the check here just to be safe.
|
||
WorkerGlobalScope* globalScope = aWorkerPrivate->GlobalScope();
|
||
if (!globalScope) {
|
||
return;
|
||
}
|
||
|
||
globalScope->ConsumeWindowInteraction();
|
||
mTimer->Cancel();
|
||
mTimer = nullptr;
|
||
|
||
mWorkerRef = nullptr;
|
||
}
|
||
|
||
void StartClearWindowTimer(WorkerPrivate* aWorkerPrivate) {
|
||
MOZ_ASSERT(aWorkerPrivate);
|
||
aWorkerPrivate->AssertIsOnWorkerThread();
|
||
MOZ_ASSERT(!mTimer);
|
||
|
||
nsresult rv;
|
||
nsCOMPtr<nsITimer> timer =
|
||
NS_NewTimer(aWorkerPrivate->ControlEventTarget());
|
||
if (NS_WARN_IF(!timer)) {
|
||
return;
|
||
}
|
||
|
||
MOZ_ASSERT(!mWorkerRef);
|
||
RefPtr<NotificationEventOp> self = this;
|
||
mWorkerRef = StrongWorkerRef::Create(
|
||
aWorkerPrivate, "NotificationEventOp", [self = std::move(self)] {
|
||
// We could try to hold the worker alive until the timer fires, but
|
||
// other APIs are not likely to work in this partially shutdown state.
|
||
// We might as well let the worker thread exit.
|
||
self->ClearWindowAllowed(self->mWorkerRef->Private());
|
||
});
|
||
|
||
if (!mWorkerRef) {
|
||
return;
|
||
}
|
||
|
||
aWorkerPrivate->GlobalScope()->AllowWindowInteraction();
|
||
timer.swap(mTimer);
|
||
|
||
// We swap first and then initialize the timer so that even if initializing
|
||
// fails, we still clean the busy count and interaction count correctly.
|
||
// The timer can't be initialized before modyfing the busy count since the
|
||
// timer thread could run and call the timeout but the worker may
|
||
// already be terminating and modifying the busy count could fail.
|
||
uint32_t delay = mArgs.get_ServiceWorkerNotificationEventOpArgs()
|
||
.disableOpenClickDelay();
|
||
rv = mTimer->InitWithCallback(this, delay, nsITimer::TYPE_ONE_SHOT);
|
||
|
||
if (NS_WARN_IF(NS_FAILED(rv))) {
|
||
ClearWindowAllowed(aWorkerPrivate);
|
||
return;
|
||
}
|
||
}
|
||
|
||
// ExtendableEventOp interface
|
||
bool Exec(JSContext* aCx, WorkerPrivate* aWorkerPrivate) override {
|
||
MOZ_ASSERT(aWorkerPrivate);
|
||
aWorkerPrivate->AssertIsOnWorkerThread();
|
||
MOZ_ASSERT(aWorkerPrivate->IsServiceWorker());
|
||
MOZ_ASSERT(!mPromiseHolder.IsEmpty());
|
||
|
||
RefPtr<EventTarget> target = aWorkerPrivate->GlobalScope();
|
||
|
||
ServiceWorkerNotificationEventOpArgs& args =
|
||
mArgs.get_ServiceWorkerNotificationEventOpArgs();
|
||
|
||
ErrorResult result;
|
||
RefPtr<Notification> notification = Notification::ConstructFromFields(
|
||
aWorkerPrivate->GlobalScope(), args.id(), args.title(), args.dir(),
|
||
args.lang(), args.body(), args.tag(), args.icon(), args.data(),
|
||
args.scope(), result);
|
||
|
||
if (NS_WARN_IF(result.Failed())) {
|
||
return false;
|
||
}
|
||
|
||
NotificationEventInit init;
|
||
init.mNotification = notification;
|
||
init.mBubbles = false;
|
||
init.mCancelable = false;
|
||
|
||
RefPtr<NotificationEvent> notificationEvent =
|
||
NotificationEvent::Constructor(target, args.eventName(), init);
|
||
|
||
notificationEvent->SetTrusted(true);
|
||
|
||
if (args.eventName().EqualsLiteral("notificationclick")) {
|
||
StartClearWindowTimer(aWorkerPrivate);
|
||
}
|
||
|
||
nsresult rv = DispatchExtendableEventOnWorkerScope(
|
||
aCx, aWorkerPrivate->GlobalScope(), notificationEvent, this);
|
||
|
||
if (NS_WARN_IF(DispatchFailed(rv))) {
|
||
// This will reject mPromiseHolder.
|
||
FinishedWithResult(Rejected);
|
||
}
|
||
|
||
return DispatchFailed(rv);
|
||
}
|
||
|
||
void FinishedWithResult(ExtendableEventResult aResult) override {
|
||
MOZ_ASSERT(IsCurrentThreadRunningWorker());
|
||
|
||
WorkerPrivate* workerPrivate = GetCurrentThreadWorkerPrivate();
|
||
MOZ_ASSERT(workerPrivate);
|
||
|
||
ClearWindowAllowed(workerPrivate);
|
||
|
||
ExtendableEventOp::FinishedWithResult(aResult);
|
||
}
|
||
|
||
// nsITimerCallback interface
|
||
NS_IMETHOD Notify(nsITimer* aTimer) override {
|
||
MOZ_DIAGNOSTIC_ASSERT(mTimer == aTimer);
|
||
WorkerPrivate* workerPrivate = GetCurrentThreadWorkerPrivate();
|
||
ClearWindowAllowed(workerPrivate);
|
||
return NS_OK;
|
||
}
|
||
|
||
// nsINamed interface
|
||
NS_IMETHOD GetName(nsACString& aName) override {
|
||
aName.AssignLiteral("NotificationEventOp");
|
||
return NS_OK;
|
||
}
|
||
|
||
nsCOMPtr<nsITimer> mTimer;
|
||
RefPtr<StrongWorkerRef> mWorkerRef;
|
||
};
|
||
|
||
NS_IMPL_ISUPPORTS(NotificationEventOp, nsITimerCallback, nsINamed)
|
||
|
||
class MessageEventOp final : public ExtendableEventOp {
|
||
using ExtendableEventOp::ExtendableEventOp;
|
||
|
||
public:
|
||
NS_INLINE_DECL_THREADSAFE_REFCOUNTING(MessageEventOp, override)
|
||
|
||
MessageEventOp(const ServiceWorkerOpArgs& aArgs,
|
||
std::function<void(const ServiceWorkerOpResult&)>&& aCallback)
|
||
: ExtendableEventOp(aArgs, std::move(aCallback)),
|
||
mData(new ServiceWorkerCloneData()) {
|
||
mData->CopyFromClonedMessageDataForBackgroundChild(
|
||
mArgs.get_ServiceWorkerMessageEventOpArgs().clonedData());
|
||
}
|
||
|
||
private:
|
||
~MessageEventOp() = default;
|
||
|
||
bool Exec(JSContext* aCx, WorkerPrivate* aWorkerPrivate) override {
|
||
MOZ_ASSERT(aWorkerPrivate);
|
||
aWorkerPrivate->AssertIsOnWorkerThread();
|
||
MOZ_ASSERT(aWorkerPrivate->IsServiceWorker());
|
||
MOZ_ASSERT(!mPromiseHolder.IsEmpty());
|
||
|
||
JS::Rooted<JS::Value> messageData(aCx);
|
||
nsCOMPtr<nsIGlobalObject> sgo = aWorkerPrivate->GlobalScope();
|
||
ErrorResult rv;
|
||
mData->Read(aCx, &messageData, rv);
|
||
|
||
// If deserialization fails, we will fire a messageerror event
|
||
bool deserializationFailed = rv.ErrorCodeIs(NS_ERROR_DOM_DATA_CLONE_ERR);
|
||
|
||
if (!deserializationFailed && NS_WARN_IF(rv.Failed())) {
|
||
RejectAll(rv.StealNSResult());
|
||
return true;
|
||
}
|
||
|
||
Sequence<OwningNonNull<MessagePort>> ports;
|
||
if (!mData->TakeTransferredPortsAsSequence(ports)) {
|
||
RejectAll(NS_ERROR_FAILURE);
|
||
rv.SuppressException();
|
||
return true;
|
||
}
|
||
|
||
RootedDictionary<ExtendableMessageEventInit> init(aCx);
|
||
|
||
init.mBubbles = false;
|
||
init.mCancelable = false;
|
||
|
||
// On a messageerror event, we disregard ports:
|
||
// https://w3c.github.io/ServiceWorker/#service-worker-postmessage
|
||
if (!deserializationFailed) {
|
||
init.mData = messageData;
|
||
init.mPorts = ports;
|
||
}
|
||
|
||
init.mSource.SetValue().SetAsClient() = new Client(
|
||
sgo, mArgs.get_ServiceWorkerMessageEventOpArgs().clientInfoAndState());
|
||
|
||
rv.SuppressException();
|
||
RefPtr<EventTarget> target = aWorkerPrivate->GlobalScope();
|
||
RefPtr<ExtendableMessageEvent> extendableEvent =
|
||
ExtendableMessageEvent::Constructor(
|
||
target,
|
||
deserializationFailed ? NS_LITERAL_STRING("messageerror")
|
||
: NS_LITERAL_STRING("message"),
|
||
init);
|
||
|
||
extendableEvent->SetTrusted(true);
|
||
|
||
nsresult rv2 = DispatchExtendableEventOnWorkerScope(
|
||
aCx, aWorkerPrivate->GlobalScope(), extendableEvent, this);
|
||
|
||
if (NS_WARN_IF(DispatchFailed(rv2))) {
|
||
RejectAll(rv2);
|
||
}
|
||
|
||
return DispatchFailed(rv2);
|
||
}
|
||
|
||
RefPtr<ServiceWorkerCloneData> mData;
|
||
};
|
||
|
||
/**
|
||
* Used for ScopeExit-style network request cancelation in
|
||
* `ResolvedCallback()` (e.g. if `FetchEvent::RespondWith()` is resolved with
|
||
* a non-JS object).
|
||
*/
|
||
class MOZ_STACK_CLASS FetchEventOp::AutoCancel {
|
||
public:
|
||
explicit AutoCancel(FetchEventOp* aOwner)
|
||
: mOwner(aOwner),
|
||
mLine(0),
|
||
mColumn(0),
|
||
mMessageName(NS_LITERAL_CSTRING("InterceptionFailedWithURL")) {
|
||
MOZ_ASSERT(IsCurrentThreadRunningWorker());
|
||
MOZ_ASSERT(mOwner);
|
||
|
||
nsAutoString requestURL;
|
||
mOwner->GetRequestURL(requestURL);
|
||
mParams.AppendElement(requestURL);
|
||
}
|
||
|
||
~AutoCancel() {
|
||
if (mOwner) {
|
||
if (mSourceSpec.IsEmpty()) {
|
||
mOwner->AsyncLog(mMessageName, std::move(mParams));
|
||
} else {
|
||
mOwner->AsyncLog(mSourceSpec, mLine, mColumn, mMessageName,
|
||
std::move(mParams));
|
||
}
|
||
|
||
MOZ_ASSERT(!mOwner->mRespondWithPromiseHolder.IsEmpty());
|
||
mOwner->mRespondWithPromiseHolder.Reject(NS_ERROR_INTERCEPTION_FAILED,
|
||
__func__);
|
||
}
|
||
}
|
||
|
||
// This function steals the error message from a ErrorResult.
|
||
void SetCancelErrorResult(JSContext* aCx, ErrorResult& aRv) {
|
||
MOZ_DIAGNOSTIC_ASSERT(aRv.Failed());
|
||
MOZ_DIAGNOSTIC_ASSERT(!JS_IsExceptionPending(aCx));
|
||
|
||
// Storing the error as exception in the JSContext.
|
||
if (!aRv.MaybeSetPendingException(aCx)) {
|
||
return;
|
||
}
|
||
|
||
MOZ_ASSERT(!aRv.Failed());
|
||
|
||
// Let's take the pending exception.
|
||
JS::Rooted<JS::Value> exn(aCx);
|
||
if (!JS_GetPendingException(aCx, &exn)) {
|
||
return;
|
||
}
|
||
|
||
JS_ClearPendingException(aCx);
|
||
|
||
// Converting the exception in a js::ErrorReport.
|
||
js::ErrorReport report(aCx);
|
||
if (!report.init(aCx, exn, js::ErrorReport::WithSideEffects)) {
|
||
JS_ClearPendingException(aCx);
|
||
return;
|
||
}
|
||
|
||
MOZ_ASSERT(mOwner);
|
||
MOZ_ASSERT(mMessageName.EqualsLiteral("InterceptionFailedWithURL"));
|
||
MOZ_ASSERT(mParams.Length() == 1);
|
||
|
||
// Let's store the error message here.
|
||
mMessageName.Assign(report.toStringResult().c_str());
|
||
mParams.Clear();
|
||
}
|
||
|
||
template <typename... Params>
|
||
void SetCancelMessage(const nsACString& aMessageName, Params&&... aParams) {
|
||
MOZ_ASSERT(mOwner);
|
||
MOZ_ASSERT(mMessageName.EqualsLiteral("InterceptionFailedWithURL"));
|
||
MOZ_ASSERT(mParams.Length() == 1);
|
||
mMessageName = aMessageName;
|
||
mParams.Clear();
|
||
StringArrayAppender::Append(mParams, sizeof...(Params),
|
||
std::forward<Params>(aParams)...);
|
||
}
|
||
|
||
template <typename... Params>
|
||
void SetCancelMessageAndLocation(const nsACString& aSourceSpec,
|
||
uint32_t aLine, uint32_t aColumn,
|
||
const nsACString& aMessageName,
|
||
Params&&... aParams) {
|
||
MOZ_ASSERT(mOwner);
|
||
MOZ_ASSERT(mMessageName.EqualsLiteral("InterceptionFailedWithURL"));
|
||
MOZ_ASSERT(mParams.Length() == 1);
|
||
|
||
mSourceSpec = aSourceSpec;
|
||
mLine = aLine;
|
||
mColumn = aColumn;
|
||
|
||
mMessageName = aMessageName;
|
||
mParams.Clear();
|
||
StringArrayAppender::Append(mParams, sizeof...(Params),
|
||
std::forward<Params>(aParams)...);
|
||
}
|
||
|
||
void Reset() { mOwner = nullptr; }
|
||
|
||
private:
|
||
FetchEventOp* MOZ_NON_OWNING_REF mOwner;
|
||
nsCString mSourceSpec;
|
||
uint32_t mLine;
|
||
uint32_t mColumn;
|
||
nsCString mMessageName;
|
||
nsTArray<nsString> mParams;
|
||
};
|
||
|
||
NS_IMPL_ISUPPORTS0(FetchEventOp)
|
||
|
||
void FetchEventOp::SetActor(RefPtr<FetchEventOpProxyChild> aActor) {
|
||
MOZ_ASSERT(RemoteWorkerService::Thread()->IsOnCurrentThread());
|
||
MOZ_ASSERT(!Started());
|
||
MOZ_ASSERT(!mActor);
|
||
|
||
mActor = std::move(aActor);
|
||
}
|
||
|
||
void FetchEventOp::RevokeActor(FetchEventOpProxyChild* aActor) {
|
||
MOZ_ASSERT(aActor);
|
||
MOZ_ASSERT_IF(mActor, mActor == aActor);
|
||
|
||
mActor = nullptr;
|
||
}
|
||
|
||
RefPtr<FetchEventRespondWithPromise> FetchEventOp::GetRespondWithPromise() {
|
||
MOZ_ASSERT(RemoteWorkerService::Thread()->IsOnCurrentThread());
|
||
MOZ_ASSERT(!Started());
|
||
MOZ_ASSERT(mRespondWithPromiseHolder.IsEmpty());
|
||
|
||
return mRespondWithPromiseHolder.Ensure(__func__);
|
||
}
|
||
|
||
void FetchEventOp::RespondWithCalledAt(const nsCString& aRespondWithScriptSpec,
|
||
uint32_t aRespondWithLineNumber,
|
||
uint32_t aRespondWithColumnNumber) {
|
||
MOZ_ASSERT(IsCurrentThreadRunningWorker());
|
||
MOZ_ASSERT(!mRespondWithClosure);
|
||
|
||
mRespondWithClosure.emplace(aRespondWithScriptSpec, aRespondWithLineNumber,
|
||
aRespondWithColumnNumber);
|
||
}
|
||
|
||
void FetchEventOp::ReportCanceled(const nsCString& aPreventDefaultScriptSpec,
|
||
uint32_t aPreventDefaultLineNumber,
|
||
uint32_t aPreventDefaultColumnNumber) {
|
||
MOZ_ASSERT(IsCurrentThreadRunningWorker());
|
||
MOZ_ASSERT(mActor);
|
||
MOZ_ASSERT(!mPromiseHolder.IsEmpty());
|
||
|
||
nsString requestURL;
|
||
GetRequestURL(requestURL);
|
||
|
||
AsyncLog(aPreventDefaultScriptSpec, aPreventDefaultLineNumber,
|
||
aPreventDefaultColumnNumber,
|
||
NS_LITERAL_CSTRING("InterceptionCanceledWithURL"),
|
||
{std::move(requestURL)});
|
||
}
|
||
|
||
FetchEventOp::~FetchEventOp() {
|
||
mRespondWithPromiseHolder.RejectIfExists(NS_ERROR_DOM_ABORT_ERR, __func__);
|
||
|
||
if (mActor) {
|
||
NS_ProxyRelease("FetchEventOp::mActor", RemoteWorkerService::Thread(),
|
||
mActor.forget());
|
||
}
|
||
}
|
||
|
||
void FetchEventOp::RejectAll(nsresult aStatus) {
|
||
MOZ_ASSERT(!mRespondWithPromiseHolder.IsEmpty());
|
||
MOZ_ASSERT(!mPromiseHolder.IsEmpty());
|
||
|
||
mRespondWithPromiseHolder.Reject(aStatus, __func__);
|
||
mPromiseHolder.Reject(aStatus, __func__);
|
||
}
|
||
|
||
void FetchEventOp::FinishedWithResult(ExtendableEventResult aResult) {
|
||
MOZ_ASSERT(IsCurrentThreadRunningWorker());
|
||
MOZ_ASSERT(!mPromiseHolder.IsEmpty());
|
||
MOZ_ASSERT(!mResult);
|
||
|
||
mResult.emplace(aResult);
|
||
|
||
/**
|
||
* This should only return early if neither waitUntil() nor respondWith()
|
||
* are called. The early return is so that mRespondWithPromiseHolder has a
|
||
* chance to settle before mPromiseHolder does.
|
||
*/
|
||
if (!mPostDispatchChecksDone) {
|
||
return;
|
||
}
|
||
|
||
MaybeFinished();
|
||
}
|
||
|
||
void FetchEventOp::MaybeFinished() {
|
||
MOZ_ASSERT(IsCurrentThreadRunningWorker());
|
||
MOZ_ASSERT(!mPromiseHolder.IsEmpty());
|
||
|
||
if (mResult) {
|
||
// mRespondWithPromiseHolder should have been settled in
|
||
// {Resolve,Reject}Callback by now.
|
||
MOZ_DIAGNOSTIC_ASSERT(mRespondWithPromiseHolder.IsEmpty());
|
||
|
||
ServiceWorkerFetchEventOpResult result(
|
||
mResult.value() == Resolved ? NS_OK : NS_ERROR_FAILURE);
|
||
|
||
mPromiseHolder.Resolve(result, __func__);
|
||
}
|
||
}
|
||
|
||
bool FetchEventOp::Exec(JSContext* aCx, WorkerPrivate* aWorkerPrivate) {
|
||
aWorkerPrivate->AssertIsOnWorkerThread();
|
||
MOZ_ASSERT(aWorkerPrivate->IsServiceWorker());
|
||
MOZ_ASSERT(!mRespondWithPromiseHolder.IsEmpty());
|
||
MOZ_ASSERT(!mPromiseHolder.IsEmpty());
|
||
|
||
nsresult rv = DispatchFetchEvent(aCx, aWorkerPrivate);
|
||
|
||
if (NS_WARN_IF(NS_FAILED(rv))) {
|
||
RejectAll(rv);
|
||
}
|
||
|
||
return NS_SUCCEEDED(rv);
|
||
}
|
||
|
||
void FetchEventOp::AsyncLog(const nsCString& aMessageName,
|
||
nsTArray<nsString> aParams) {
|
||
MOZ_ASSERT(mActor);
|
||
MOZ_ASSERT(!mPromiseHolder.IsEmpty());
|
||
MOZ_ASSERT(mRespondWithClosure);
|
||
|
||
const FetchEventRespondWithClosure& closure = mRespondWithClosure.ref();
|
||
|
||
AsyncLog(closure.respondWithScriptSpec(), closure.respondWithLineNumber(),
|
||
closure.respondWithColumnNumber(), aMessageName, std::move(aParams));
|
||
}
|
||
|
||
void FetchEventOp::AsyncLog(const nsCString& aScriptSpec, uint32_t aLineNumber,
|
||
uint32_t aColumnNumber,
|
||
const nsCString& aMessageName,
|
||
nsTArray<nsString> aParams) {
|
||
MOZ_ASSERT(mActor);
|
||
MOZ_ASSERT(!mPromiseHolder.IsEmpty());
|
||
|
||
// Capture `this` because FetchEventOpProxyChild (mActor) is not thread
|
||
// safe, so an AddRef from RefPtr<FetchEventOpProxyChild>'s constructor will
|
||
// assert.
|
||
RefPtr<FetchEventOp> self = this;
|
||
|
||
nsCOMPtr<nsIRunnable> r = NS_NewRunnableFunction(
|
||
__func__, [self = std::move(self), spec = aScriptSpec, line = aLineNumber,
|
||
column = aColumnNumber, messageName = aMessageName,
|
||
params = std::move(aParams)] {
|
||
if (NS_WARN_IF(!self->mActor)) {
|
||
return;
|
||
}
|
||
|
||
Unused << self->mActor->SendAsyncLog(spec, line, column, messageName,
|
||
params);
|
||
});
|
||
|
||
MOZ_ALWAYS_SUCCEEDS(
|
||
RemoteWorkerService::Thread()->Dispatch(r.forget(), NS_DISPATCH_NORMAL));
|
||
}
|
||
|
||
void FetchEventOp::GetRequestURL(nsAString& aOutRequestURL) {
|
||
nsTArray<nsCString>& urls =
|
||
mArgs.get_ServiceWorkerFetchEventOpArgs().internalRequest().urlList();
|
||
MOZ_ASSERT(!urls.IsEmpty());
|
||
|
||
aOutRequestURL = NS_ConvertUTF8toUTF16(urls.LastElement());
|
||
}
|
||
|
||
void FetchEventOp::ResolvedCallback(JSContext* aCx,
|
||
JS::Handle<JS::Value> aValue) {
|
||
MOZ_ASSERT(IsCurrentThreadRunningWorker());
|
||
MOZ_ASSERT(mRespondWithClosure);
|
||
MOZ_ASSERT(!mRespondWithPromiseHolder.IsEmpty());
|
||
MOZ_ASSERT(!mPromiseHolder.IsEmpty());
|
||
|
||
nsAutoString requestURL;
|
||
GetRequestURL(requestURL);
|
||
|
||
AutoCancel autoCancel(this);
|
||
|
||
if (!aValue.isObject()) {
|
||
NS_WARNING(
|
||
"FetchEvent::RespondWith was passed a promise resolved to a "
|
||
"non-Object "
|
||
"value");
|
||
|
||
nsCString sourceSpec;
|
||
uint32_t line = 0;
|
||
uint32_t column = 0;
|
||
nsString valueString;
|
||
nsContentUtils::ExtractErrorValues(aCx, aValue, sourceSpec, &line, &column,
|
||
valueString);
|
||
|
||
autoCancel.SetCancelMessageAndLocation(
|
||
sourceSpec, line, column,
|
||
NS_LITERAL_CSTRING("InterceptedNonResponseWithURL"), requestURL,
|
||
valueString);
|
||
return;
|
||
}
|
||
|
||
RefPtr<Response> response;
|
||
nsresult rv = UNWRAP_OBJECT(Response, &aValue.toObject(), response);
|
||
if (NS_FAILED(rv)) {
|
||
nsCString sourceSpec;
|
||
uint32_t line = 0;
|
||
uint32_t column = 0;
|
||
nsString valueString;
|
||
nsContentUtils::ExtractErrorValues(aCx, aValue, sourceSpec, &line, &column,
|
||
valueString);
|
||
|
||
autoCancel.SetCancelMessageAndLocation(
|
||
sourceSpec, line, column,
|
||
NS_LITERAL_CSTRING("InterceptedNonResponseWithURL"), requestURL,
|
||
valueString);
|
||
return;
|
||
}
|
||
|
||
WorkerPrivate* worker = GetCurrentThreadWorkerPrivate();
|
||
MOZ_ASSERT(worker);
|
||
worker->AssertIsOnWorkerThread();
|
||
|
||
// Section "HTTP Fetch", step 3.3:
|
||
// If one of the following conditions is true, return a network error:
|
||
// * response's type is "error".
|
||
// * request's mode is not "no-cors" and response's type is "opaque".
|
||
// * request's redirect mode is not "manual" and response's type is
|
||
// "opaqueredirect".
|
||
// * request's redirect mode is not "follow" and response's url list
|
||
// has more than one item.
|
||
|
||
if (response->Type() == ResponseType::Error) {
|
||
autoCancel.SetCancelMessage(
|
||
NS_LITERAL_CSTRING("InterceptedErrorResponseWithURL"), requestURL);
|
||
return;
|
||
}
|
||
|
||
const ServiceWorkerFetchEventOpArgs& args =
|
||
mArgs.get_ServiceWorkerFetchEventOpArgs();
|
||
const RequestMode requestMode = args.internalRequest().requestMode();
|
||
|
||
if (response->Type() == ResponseType::Opaque &&
|
||
requestMode != RequestMode::No_cors) {
|
||
NS_ConvertASCIItoUTF16 modeString(
|
||
RequestModeValues::GetString(requestMode));
|
||
|
||
nsAutoString requestURL;
|
||
GetRequestURL(requestURL);
|
||
|
||
autoCancel.SetCancelMessage(
|
||
NS_LITERAL_CSTRING("BadOpaqueInterceptionRequestModeWithURL"),
|
||
requestURL, modeString);
|
||
return;
|
||
}
|
||
|
||
const RequestRedirect requestRedirectMode =
|
||
args.internalRequest().requestRedirect();
|
||
|
||
if (requestRedirectMode != RequestRedirect::Manual &&
|
||
response->Type() == ResponseType::Opaqueredirect) {
|
||
autoCancel.SetCancelMessage(
|
||
NS_LITERAL_CSTRING("BadOpaqueRedirectInterceptionWithURL"), requestURL);
|
||
return;
|
||
}
|
||
|
||
if (requestRedirectMode != RequestRedirect::Follow &&
|
||
response->Redirected()) {
|
||
autoCancel.SetCancelMessage(
|
||
NS_LITERAL_CSTRING("BadRedirectModeInterceptionWithURL"), requestURL);
|
||
return;
|
||
}
|
||
|
||
{
|
||
ErrorResult error;
|
||
bool bodyUsed = response->GetBodyUsed(error);
|
||
error.WouldReportJSException();
|
||
if (NS_WARN_IF(error.Failed())) {
|
||
autoCancel.SetCancelErrorResult(aCx, error);
|
||
return;
|
||
}
|
||
if (NS_WARN_IF(bodyUsed)) {
|
||
autoCancel.SetCancelMessage(
|
||
NS_LITERAL_CSTRING("InterceptedUsedResponseWithURL"), requestURL);
|
||
return;
|
||
}
|
||
}
|
||
|
||
RefPtr<InternalResponse> ir = response->GetInternalResponse();
|
||
if (NS_WARN_IF(!ir)) {
|
||
return;
|
||
}
|
||
|
||
// An extra safety check to make sure our invariant that opaque and cors
|
||
// responses always have a URL does not break.
|
||
if (NS_WARN_IF((response->Type() == ResponseType::Opaque ||
|
||
response->Type() == ResponseType::Cors) &&
|
||
ir->GetUnfilteredURL().IsEmpty())) {
|
||
MOZ_DIAGNOSTIC_ASSERT(false, "Cors or opaque Response without a URL");
|
||
return;
|
||
}
|
||
|
||
Telemetry::ScalarAdd(Telemetry::ScalarID::SW_SYNTHESIZED_RES_COUNT, 1);
|
||
|
||
if (requestMode == RequestMode::Same_origin &&
|
||
response->Type() == ResponseType::Cors) {
|
||
Telemetry::ScalarAdd(Telemetry::ScalarID::SW_CORS_RES_FOR_SO_REQ_COUNT, 1);
|
||
|
||
// XXXtt: Will have a pref to enable the quirk response in bug 1419684.
|
||
// The variadic template provided by StringArrayAppender requires exactly
|
||
// an nsString.
|
||
NS_ConvertUTF8toUTF16 responseURL(ir->GetUnfilteredURL());
|
||
autoCancel.SetCancelMessage(
|
||
NS_LITERAL_CSTRING("CorsResponseForSameOriginRequest"), requestURL,
|
||
responseURL);
|
||
return;
|
||
}
|
||
|
||
nsCOMPtr<nsIInputStream> body;
|
||
ir->GetUnfilteredBody(getter_AddRefs(body));
|
||
// Errors and redirects may not have a body.
|
||
if (body) {
|
||
ErrorResult error;
|
||
response->SetBodyUsed(aCx, error);
|
||
error.WouldReportJSException();
|
||
if (NS_WARN_IF(error.Failed())) {
|
||
autoCancel.SetCancelErrorResult(aCx, error);
|
||
return;
|
||
}
|
||
}
|
||
|
||
if (!ir->GetChannelInfo().IsInitialized()) {
|
||
// This is a synthetic response (I think and hope so).
|
||
ir->InitChannelInfo(worker->GetChannelInfo());
|
||
}
|
||
|
||
autoCancel.Reset();
|
||
|
||
mRespondWithPromiseHolder.Resolve(
|
||
FetchEventRespondWithResult(
|
||
SynthesizeResponseArgs(ir, mRespondWithClosure.ref())),
|
||
__func__);
|
||
}
|
||
|
||
void FetchEventOp::RejectedCallback(JSContext* aCx,
|
||
JS::Handle<JS::Value> aValue) {
|
||
MOZ_ASSERT(IsCurrentThreadRunningWorker());
|
||
MOZ_ASSERT(mRespondWithClosure);
|
||
MOZ_ASSERT(!mRespondWithPromiseHolder.IsEmpty());
|
||
MOZ_ASSERT(!mPromiseHolder.IsEmpty());
|
||
|
||
FetchEventRespondWithClosure& closure = mRespondWithClosure.ref();
|
||
|
||
nsCString sourceSpec = closure.respondWithScriptSpec();
|
||
uint32_t line = closure.respondWithLineNumber();
|
||
uint32_t column = closure.respondWithColumnNumber();
|
||
nsString valueString;
|
||
|
||
nsContentUtils::ExtractErrorValues(aCx, aValue, sourceSpec, &line, &column,
|
||
valueString);
|
||
|
||
nsString requestURL;
|
||
GetRequestURL(requestURL);
|
||
|
||
AsyncLog(sourceSpec, line, column,
|
||
NS_LITERAL_CSTRING("InterceptionRejectedResponseWithURL"),
|
||
{std::move(requestURL), valueString});
|
||
|
||
mRespondWithPromiseHolder.Resolve(
|
||
FetchEventRespondWithResult(
|
||
CancelInterceptionArgs(NS_ERROR_INTERCEPTION_FAILED)),
|
||
__func__);
|
||
}
|
||
|
||
nsresult FetchEventOp::DispatchFetchEvent(JSContext* aCx,
|
||
WorkerPrivate* aWorkerPrivate) {
|
||
MOZ_ASSERT(aCx);
|
||
MOZ_ASSERT(aWorkerPrivate);
|
||
aWorkerPrivate->AssertIsOnWorkerThread();
|
||
MOZ_ASSERT(aWorkerPrivate->IsServiceWorker());
|
||
|
||
ServiceWorkerFetchEventOpArgs& args =
|
||
mArgs.get_ServiceWorkerFetchEventOpArgs();
|
||
|
||
/**
|
||
* Step 1: get the InternalRequest. The InternalRequest can't be constructed
|
||
* here from mArgs because the IPCStream has to be deserialized on the
|
||
* thread receiving the ServiceWorkerFetchEventOpArgs.
|
||
* FetchEventOpProxyChild will have already deserialized the stream on the
|
||
* correct thread before creating this op, so we can take its saved
|
||
* InternalRequest.
|
||
*/
|
||
RefPtr<InternalRequest> internalRequest = mActor->ExtractInternalRequest();
|
||
|
||
/**
|
||
* Step 2: get the worker's global object
|
||
*/
|
||
GlobalObject globalObject(aCx, aWorkerPrivate->GlobalScope()->GetWrapper());
|
||
nsCOMPtr<nsIGlobalObject> globalObjectAsSupports =
|
||
do_QueryInterface(globalObject.GetAsSupports());
|
||
if (NS_WARN_IF(!globalObjectAsSupports)) {
|
||
return NS_ERROR_DOM_INVALID_STATE_ERR;
|
||
}
|
||
|
||
/**
|
||
* Step 3: create the public DOM Request object
|
||
* TODO: this Request object should be created with an AbortSignal object
|
||
* which should be aborted if the loading is aborted. See but 1394102.
|
||
*/
|
||
RefPtr<Request> request =
|
||
new Request(globalObjectAsSupports, internalRequest, nullptr);
|
||
MOZ_ASSERT_IF(internalRequest->IsNavigationRequest(),
|
||
request->Redirect() == RequestRedirect::Manual);
|
||
|
||
/**
|
||
* Step 4a: create the FetchEventInit
|
||
*/
|
||
RootedDictionary<FetchEventInit> fetchEventInit(aCx);
|
||
fetchEventInit.mRequest = request;
|
||
fetchEventInit.mBubbles = false;
|
||
fetchEventInit.mCancelable = true;
|
||
fetchEventInit.mIsReload = args.isReload();
|
||
|
||
/**
|
||
* TODO: only expose the FetchEvent.clientId on subresource requests for
|
||
* now. Once we implement .targetClientId we can then start exposing
|
||
* .clientId on non-subresource requests as well. See bug 1487534.
|
||
*/
|
||
if (!args.clientId().IsEmpty() && !internalRequest->IsNavigationRequest()) {
|
||
fetchEventInit.mClientId = args.clientId();
|
||
}
|
||
|
||
/*
|
||
* https://w3c.github.io/ServiceWorker/#on-fetch-request-algorithm
|
||
*
|
||
* "If request is a non-subresource request and request’s
|
||
* destination is not "report", initialize e’s resultingClientId attribute
|
||
* to reservedClient’s [resultingClient's] id, and to the empty string
|
||
* otherwise." (Step 18.8)
|
||
*/
|
||
if (!args.resultingClientId().IsEmpty() && args.isNonSubresourceRequest() &&
|
||
internalRequest->Destination() != RequestDestination::Report) {
|
||
fetchEventInit.mResultingClientId = args.resultingClientId();
|
||
}
|
||
|
||
/**
|
||
* Step 4b: create the FetchEvent
|
||
*/
|
||
RefPtr<FetchEvent> fetchEvent = FetchEvent::Constructor(
|
||
globalObject, NS_LITERAL_STRING("fetch"), fetchEventInit);
|
||
fetchEvent->SetTrusted(true);
|
||
fetchEvent->PostInit(args.workerScriptSpec(), this);
|
||
|
||
/**
|
||
* Step 5: Dispatch the FetchEvent to the worker's global object
|
||
*/
|
||
nsresult rv = DispatchExtendableEventOnWorkerScope(
|
||
aCx, aWorkerPrivate->GlobalScope(), fetchEvent, this);
|
||
bool dispatchFailed = NS_FAILED(rv) && rv != NS_ERROR_XPC_JS_THREW_EXCEPTION;
|
||
|
||
if (NS_WARN_IF(dispatchFailed)) {
|
||
return rv;
|
||
}
|
||
|
||
/**
|
||
* At this point, there are 4 (legal) scenarios:
|
||
*
|
||
* 1) If neither waitUntil() nor respondWith() are called,
|
||
* DispatchExtendableEventOnWorkerScope() will have already called
|
||
* FinishedWithResult(), but this call will have recorded the result
|
||
* (mResult) and returned early so that mRespondWithPromiseHolder can be
|
||
* settled first. mRespondWithPromiseHolder will be settled below, followed
|
||
* by a call to MaybeFinished() which settles mPromiseHolder.
|
||
*
|
||
* 2) If waitUntil() is called at least once, and respondWith() is not
|
||
* called, DispatchExtendableEventOnWorkerScope() will NOT have called
|
||
* FinishedWithResult(). We'll settle mRespondWithPromiseHolder first, and
|
||
* at some point in the future when the last waitUntil() promise settles,
|
||
* FinishedWithResult() will be called, settling mPromiseHolder.
|
||
*
|
||
* 3) If waitUntil() is not called, and respondWith() is called,
|
||
* DispatchExtendableEventOnWorkerScope() will NOT have called
|
||
* FinishedWithResult(). We can also guarantee that
|
||
* mRespondWithPromiseHolder will be settled before mPromiseHolder, due to
|
||
* the Promise::AppendNativeHandler() call ordering in
|
||
* FetchEvent::RespondWith().
|
||
*
|
||
* 4) If waitUntil() is called at least once, and respondWith() is also
|
||
* called, the effect is similar to scenario 3), with the most imporant
|
||
* property being mRespondWithPromiseHolder settling before mPromiseHolder.
|
||
*
|
||
* Note that if mPromiseHolder is settled before mRespondWithPromiseHolder,
|
||
* FetchEventOpChild will cancel the interception.
|
||
*/
|
||
if (!fetchEvent->WaitToRespond()) {
|
||
MOZ_ASSERT(!mRespondWithPromiseHolder.IsEmpty());
|
||
MOZ_ASSERT(!aWorkerPrivate->UsesSystemPrincipal(),
|
||
"We don't support system-principal serviceworkers");
|
||
|
||
if (fetchEvent->DefaultPrevented(CallerType::NonSystem)) {
|
||
mRespondWithPromiseHolder.Resolve(
|
||
FetchEventRespondWithResult(
|
||
CancelInterceptionArgs(NS_ERROR_INTERCEPTION_FAILED)),
|
||
__func__);
|
||
} else {
|
||
mRespondWithPromiseHolder.Resolve(
|
||
FetchEventRespondWithResult(ResetInterceptionArgs()), __func__);
|
||
}
|
||
} else {
|
||
MOZ_ASSERT(mRespondWithClosure);
|
||
}
|
||
|
||
mPostDispatchChecksDone = true;
|
||
MaybeFinished();
|
||
|
||
return NS_OK;
|
||
}
|
||
|
||
/* static */ already_AddRefed<ServiceWorkerOp> ServiceWorkerOp::Create(
|
||
const ServiceWorkerOpArgs& aArgs,
|
||
std::function<void(const ServiceWorkerOpResult&)>&& aCallback) {
|
||
MOZ_ASSERT(RemoteWorkerService::Thread()->IsOnCurrentThread());
|
||
|
||
RefPtr<ServiceWorkerOp> op;
|
||
|
||
switch (aArgs.type()) {
|
||
case ServiceWorkerOpArgs::TServiceWorkerCheckScriptEvaluationOpArgs:
|
||
op = MakeRefPtr<CheckScriptEvaluationOp>(aArgs, std::move(aCallback));
|
||
break;
|
||
case ServiceWorkerOpArgs::TServiceWorkerUpdateStateOpArgs:
|
||
op = MakeRefPtr<UpdateServiceWorkerStateOp>(aArgs, std::move(aCallback));
|
||
break;
|
||
case ServiceWorkerOpArgs::TServiceWorkerTerminateWorkerOpArgs:
|
||
op = MakeRefPtr<TerminateServiceWorkerOp>(aArgs, std::move(aCallback));
|
||
break;
|
||
case ServiceWorkerOpArgs::TServiceWorkerLifeCycleEventOpArgs:
|
||
op = MakeRefPtr<LifeCycleEventOp>(aArgs, std::move(aCallback));
|
||
break;
|
||
case ServiceWorkerOpArgs::TServiceWorkerPushEventOpArgs:
|
||
op = MakeRefPtr<PushEventOp>(aArgs, std::move(aCallback));
|
||
break;
|
||
case ServiceWorkerOpArgs::TServiceWorkerPushSubscriptionChangeEventOpArgs:
|
||
op = MakeRefPtr<PushSubscriptionChangeEventOp>(aArgs,
|
||
std::move(aCallback));
|
||
break;
|
||
case ServiceWorkerOpArgs::TServiceWorkerNotificationEventOpArgs:
|
||
op = MakeRefPtr<NotificationEventOp>(aArgs, std::move(aCallback));
|
||
break;
|
||
case ServiceWorkerOpArgs::TServiceWorkerMessageEventOpArgs:
|
||
op = MakeRefPtr<MessageEventOp>(aArgs, std::move(aCallback));
|
||
break;
|
||
case ServiceWorkerOpArgs::TServiceWorkerFetchEventOpArgs:
|
||
op = MakeRefPtr<FetchEventOp>(aArgs, std::move(aCallback));
|
||
break;
|
||
default:
|
||
MOZ_CRASH("Unknown Service Worker operation!");
|
||
return nullptr;
|
||
}
|
||
|
||
return op.forget();
|
||
}
|
||
|
||
} // namespace dom
|
||
} // namespace mozilla
|