forked from mirrors/gecko-dev
		
	
		
			
				
	
	
		
			137 lines
		
	
	
	
		
			4.6 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			137 lines
		
	
	
	
		
			4.6 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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#ifndef mozilla_dom_RefMessageBodyService_h
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#define mozilla_dom_RefMessageBodyService_h
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#include <cstdint>
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#include "js/TypeDecls.h"
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#include "mozilla/Maybe.h"
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#include "mozilla/Mutex.h"
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#include "mozilla/StaticMutex.h"
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#include "mozilla/UniquePtr.h"
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#include "nsHashKeys.h"
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#include "nsID.h"
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#include "nsISupports.h"
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#include "nsRefPtrHashtable.h"
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namespace JS {
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class CloneDataPolicy;
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}  // namespace JS
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namespace mozilla {
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class ErrorResult;
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template <class T>
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class OwningNonNull;
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namespace dom {
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class MessagePort;
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template <typename T>
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class Sequence;
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namespace ipc {
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class StructuredCloneData;
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}
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/**
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 * At the time a BroadcastChannel or MessagePort sends messages, we don't know
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 * which process is going to receive it. Because of this, we need to check if
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 * the message is able to cross the process boundary.
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 * If the message contains objects such as SharedArrayBuffers, WASM modules or
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 * ImageBitmaps, it can be delivered on the current process only.
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 * Instead of sending the whole message via IPC, we send a unique ID, while the
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 * message is kept alive by RefMessageBodyService, on the current process using
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 * a ref-counted RefMessageBody object.
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 * When the receiver obtains the message ID, it checks if the local
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 * RefMessageBodyService knows that ID. If yes, the sender and the receiver are
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 * on the same process and the delivery can be completed; if not, a
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 * messageerror event has to be dispatched instead.
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 *
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 * For MessagePort communication is 1-to-1 and because of this, the
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 * receiver takes ownership of the message (RefMessageBodyService::Steal()).
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 * If the receiver port is on a different process, RefMessageBodyService will
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 * return a nullptr and a messageerror event will be dispatched.
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 * For BroadcastChannel, the life-time of a message is a bit different than for
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 * MessagePort. It has a 1-to-many communication and we could have multiple
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 * receivers. Each one needs to deliver the message without taking full
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 * ownership of it.
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 * In order to support this feature, BroadcastChannel needs to call
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 * RefMessageBodyService::SetMaxCount() to inform how many ports are allowed to
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 * retrieve the current message, on the current process. Receivers on other
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 * processes are not kept in consideration because they will not be able to
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 * retrieve the message from RefMessageBodyService. When the last allowed
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 * port has called RefMessageBodyService::GetAndCount(), the message is
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 * released.
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 */
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class RefMessageBody final {
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  friend class RefMessageBodyService;
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 public:
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  NS_INLINE_DECL_THREADSAFE_REFCOUNTING(RefMessageBody)
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  RefMessageBody(const nsID& aPortID,
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                 UniquePtr<ipc::StructuredCloneData>&& aCloneData);
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  const nsID& PortID() const { return mPortID; }
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  void Read(JSContext* aCx, JS::MutableHandle<JS::Value> aValue,
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            const JS::CloneDataPolicy& aCloneDataPolicy, ErrorResult& aRv);
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  // This method can be called only if the RefMessageBody is not supposed to be
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  // ref-counted (see mMaxCount).
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  bool TakeTransferredPortsAsSequence(
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      Sequence<OwningNonNull<mozilla::dom::MessagePort>>& aPorts);
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 private:
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  ~RefMessageBody();
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  const nsID mPortID;
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  // In case the RefMessageBody is shared and refcounted (see mCount/mMaxCount),
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  // we must enforce that the reading does not happen simultaneously on
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  // different threads.
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  Mutex mMutex;
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  UniquePtr<ipc::StructuredCloneData> mCloneData;
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  // When mCount reaches mMaxCount, this object is released by the service.
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  Maybe<uint32_t> mMaxCount;
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  uint32_t mCount;
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};
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class RefMessageBodyService final {
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 public:
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  NS_INLINE_DECL_THREADSAFE_REFCOUNTING(RefMessageBodyService)
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  static already_AddRefed<RefMessageBodyService> GetOrCreate();
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  void ForgetPort(const nsID& aPortID);
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  const nsID Register(already_AddRefed<RefMessageBody> aBody, ErrorResult& aRv);
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  already_AddRefed<RefMessageBody> Steal(const nsID& aID);
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  already_AddRefed<RefMessageBody> GetAndCount(const nsID& aID);
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  void SetMaxCount(const nsID& aID, uint32_t aMaxCount);
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 private:
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  explicit RefMessageBodyService(const StaticMutexAutoLock& aProofOfLock);
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  ~RefMessageBodyService();
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  static RefMessageBodyService* GetOrCreateInternal(
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      const StaticMutexAutoLock& aProofOfLock);
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  nsRefPtrHashtable<nsIDHashKey, RefMessageBody> mMessages;
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};
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}  // namespace dom
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}  // namespace mozilla
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#endif  // mozilla_dom_RefMessageBodyService_h
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