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e4e2da55c9
The bulk of this commit was generated with a script, executed at the top level of a typical source code checkout. The only non-machine-generated part was modifying MFBT's moz.build to reflect the new naming. CLOSED TREE makes big refactorings like this a piece of cake. # The main substitution. find . -name '*.cpp' -o -name '*.cc' -o -name '*.h' -o -name '*.mm' -o -name '*.idl'| \ xargs perl -p -i -e ' s/nsRefPtr\.h/RefPtr\.h/g; # handle includes s/nsRefPtr ?</RefPtr</g; # handle declarations and variables ' # Handle a special friend declaration in gfx/layers/AtomicRefCountedWithFinalize.h. perl -p -i -e 's/::nsRefPtr;/::RefPtr;/' gfx/layers/AtomicRefCountedWithFinalize.h # Handle nsRefPtr.h itself, a couple places that define constructors # from nsRefPtr, and code generators specially. We do this here, rather # than indiscriminantly s/nsRefPtr/RefPtr/, because that would rename # things like nsRefPtrHashtable. perl -p -i -e 's/nsRefPtr/RefPtr/g' \ mfbt/nsRefPtr.h \ xpcom/glue/nsCOMPtr.h \ xpcom/base/OwningNonNull.h \ ipc/ipdl/ipdl/lower.py \ ipc/ipdl/ipdl/builtin.py \ dom/bindings/Codegen.py \ python/lldbutils/lldbutils/utils.py # In our indiscriminate substitution above, we renamed # nsRefPtrGetterAddRefs, the class behind getter_AddRefs. Fix that up. find . -name '*.cpp' -o -name '*.h' -o -name '*.idl' | \ xargs perl -p -i -e 's/nsRefPtrGetterAddRefs/RefPtrGetterAddRefs/g' if [ -d .git ]; then git mv mfbt/nsRefPtr.h mfbt/RefPtr.h else hg mv mfbt/nsRefPtr.h mfbt/RefPtr.h fi
256 lines
9.0 KiB
C++
256 lines
9.0 KiB
C++
/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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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 file,
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* You can obtain one at http://mozilla.org/MPL/2.0/. */
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#ifndef mozilla_dom_TCPSocket_h
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#define mozilla_dom_TCPSocket_h
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#include "mozilla/dom/TCPSocketBinding.h"
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#include "mozilla/DOMEventTargetHelper.h"
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#include "nsITransport.h"
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#include "nsIStreamListener.h"
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#include "nsIAsyncInputStream.h"
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#include "nsISupportsImpl.h"
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#include "nsIObserver.h"
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#include "nsWeakReference.h"
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#include "nsITCPSocketCallback.h"
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#include "js/RootingAPI.h"
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class nsISocketTransport;
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class nsIInputStreamPump;
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class nsIScriptableInputStream;
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class nsIBinaryInputStream;
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class nsIMultiplexInputStream;
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class nsIAsyncStreamCopier;
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class nsIInputStream;
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class nsINetworkInfo;
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namespace mozilla {
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class ErrorResult;
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namespace dom {
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class DOMError;
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struct ServerSocketOptions;
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class TCPServerSocket;
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class TCPSocketChild;
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class TCPSocketParent;
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// This interface is only used for legacy navigator.mozTCPSocket API compatibility.
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class LegacyMozTCPSocket : public nsISupports
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{
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public:
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NS_DECL_CYCLE_COLLECTING_ISUPPORTS
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NS_DECL_CYCLE_COLLECTION_CLASS(LegacyMozTCPSocket)
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explicit LegacyMozTCPSocket(nsPIDOMWindow* aWindow);
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already_AddRefed<TCPServerSocket>
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Listen(uint16_t aPort,
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const ServerSocketOptions& aOptions,
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uint16_t aBacklog,
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ErrorResult& aRv);
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already_AddRefed<TCPSocket>
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Open(const nsAString& aHost,
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uint16_t aPort,
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const SocketOptions& aOptions,
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ErrorResult& aRv);
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bool WrapObject(JSContext* aCx,
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JS::Handle<JSObject*> aGivenProto,
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JS::MutableHandle<JSObject*> aReflector);
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private:
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virtual ~LegacyMozTCPSocket();
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nsCOMPtr<nsIGlobalObject> mGlobal;
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};
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class TCPSocket final : public DOMEventTargetHelper
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, public nsIStreamListener
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, public nsITransportEventSink
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, public nsIInputStreamCallback
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, public nsIObserver
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, public nsSupportsWeakReference
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, public nsITCPSocketCallback
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{
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public:
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TCPSocket(nsIGlobalObject* aGlobal, const nsAString& aHost, uint16_t aPort,
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bool aSsl, bool aUseArrayBuffers);
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NS_DECL_ISUPPORTS_INHERITED
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NS_DECL_CYCLE_COLLECTION_SCRIPT_HOLDER_CLASS_INHERITED(TCPSocket, DOMEventTargetHelper)
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NS_DECL_NSIREQUESTOBSERVER
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NS_DECL_NSISTREAMLISTENER
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NS_DECL_NSITRANSPORTEVENTSINK
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NS_DECL_NSIINPUTSTREAMCALLBACK
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NS_DECL_NSIOBSERVER
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NS_DECL_NSITCPSOCKETCALLBACK
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virtual JSObject* WrapObject(JSContext* aCx, JS::Handle<JSObject*> aGivenProto) override;
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static bool ShouldTCPSocketExist(JSContext* aCx, JSObject* aGlobal);
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void GetHost(nsAString& aHost);
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uint32_t Port();
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bool Ssl();
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uint64_t BufferedAmount();
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void Suspend();
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void Resume(ErrorResult& aRv);
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void Close();
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bool Send(JSContext* aCx, const nsACString& aData, ErrorResult& aRv);
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bool Send(JSContext* aCx,
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const ArrayBuffer& aData,
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uint32_t aByteOffset,
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const Optional<uint32_t>& aByteLength,
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ErrorResult& aRv);
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TCPReadyState ReadyState();
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TCPSocketBinaryType BinaryType();
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void UpgradeToSecure(ErrorResult& aRv);
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static already_AddRefed<TCPSocket>
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Constructor(const GlobalObject& aGlobal,
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const nsAString& aHost,
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uint16_t aPort,
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const SocketOptions& aOptions,
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ErrorResult& aRv);
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// Perform a send operation that's asssociated with a sequence number. Used in
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// IPC scenarios to track the number of bytes buffered at any given time.
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void SendWithTrackingNumber(const nsACString& aData,
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const uint32_t& aTrackingNumber,
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ErrorResult& aRv);
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void SendWithTrackingNumber(JSContext* aCx,
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const ArrayBuffer& aData,
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uint32_t aByteOffset,
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const Optional<uint32_t>& aByteLength,
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const uint32_t& aTrackingNumber,
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ErrorResult& aRv);
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// Create a TCPSocket object from an existing low-level socket connection.
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// Used by the TCPServerSocket implementation when a new connection is accepted.
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static already_AddRefed<TCPSocket>
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CreateAcceptedSocket(nsIGlobalObject* aGlobal, nsISocketTransport* aTransport, bool aUseArrayBuffers);
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// Create a TCPSocket object from an existing child-side IPC actor.
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// Used by the TCPServerSocketChild implementation when a new connection is accepted.
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static already_AddRefed<TCPSocket>
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CreateAcceptedSocket(nsIGlobalObject* aGlobal, TCPSocketChild* aSocketBridge, bool aUseArrayBuffers);
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// Initialize this socket's associated app and browser information.
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void SetAppIdAndBrowser(uint32_t aAppId, bool aInBrowser);
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// Initialize this socket's associated IPC actor in the parent process.
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void SetSocketBridgeParent(TCPSocketParent* aBridgeParent);
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static bool SocketEnabled();
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IMPL_EVENT_HANDLER(open);
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IMPL_EVENT_HANDLER(drain);
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IMPL_EVENT_HANDLER(data);
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IMPL_EVENT_HANDLER(error);
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IMPL_EVENT_HANDLER(close);
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nsresult Init();
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// Inform this socket that a buffered send() has completed sending.
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void NotifyCopyComplete(nsresult aStatus);
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// Initialize this socket from a low-level connection that hasn't connected yet
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// (called from RecvOpenBind() in TCPSocketParent).
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nsresult InitWithUnconnectedTransport(nsISocketTransport* aTransport);
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private:
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~TCPSocket();
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// Initialize this socket with an existing IPC actor.
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void InitWithSocketChild(TCPSocketChild* aBridge);
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// Initialize this socket from an existing low-level connection.
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nsresult InitWithTransport(nsISocketTransport* aTransport);
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// Initialize the input/output streams for this socket object.
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nsresult CreateStream();
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// Initialize the asynchronous read operation from this socket's input stream.
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nsresult CreateInputStreamPump();
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// Send the contents of the provided input stream, which is assumed to be the given length
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// for reporting and buffering purposes.
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bool Send(nsIInputStream* aStream, uint32_t aByteLength);
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// Begin an asynchronous copy operation if one is not already in progress.
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nsresult EnsureCopying();
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// Enable TLS on this socket.
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void ActivateTLS();
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// Dispatch an error event if necessary, then dispatch a "close" event.
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nsresult MaybeReportErrorAndCloseIfOpen(nsresult status);
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#ifdef MOZ_WIDGET_GONK
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// Store and reset any saved network stats for this socket.
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void SaveNetworkStats(bool aEnforce);
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#endif
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TCPReadyState mReadyState;
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// Whether to use strings or array buffers for the "data" event.
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bool mUseArrayBuffers;
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nsString mHost;
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uint16_t mPort;
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// Whether this socket is using a secure transport.
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bool mSsl;
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// The associated IPC actor in a child process.
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RefPtr<TCPSocketChild> mSocketBridgeChild;
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// The associated IPC actor in a parent process.
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RefPtr<TCPSocketParent> mSocketBridgeParent;
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// Raw socket streams
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nsCOMPtr<nsISocketTransport> mTransport;
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nsCOMPtr<nsIInputStream> mSocketInputStream;
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nsCOMPtr<nsIOutputStream> mSocketOutputStream;
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// Input stream machinery
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nsCOMPtr<nsIInputStreamPump> mInputStreamPump;
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nsCOMPtr<nsIScriptableInputStream> mInputStreamScriptable;
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nsCOMPtr<nsIBinaryInputStream> mInputStreamBinary;
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// Output stream machinery
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nsCOMPtr<nsIMultiplexInputStream> mMultiplexStream;
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nsCOMPtr<nsIAsyncStreamCopier> mMultiplexStreamCopier;
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// Is there an async copy operation in progress?
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bool mAsyncCopierActive;
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// True if the buffer is full and a "drain" event is expected by the client.
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bool mWaitingForDrain;
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// The id of the window that created this socket.
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uint64_t mInnerWindowID;
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// The current number of buffered bytes. Only used in content processes when IPC is enabled.
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uint64_t mBufferedAmount;
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// The number of times this socket has had `Suspend` called without a corresponding `Resume`.
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uint32_t mSuspendCount;
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// The current sequence number (ie. number of send operations) that have been processed.
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// This is used in the IPC scenario by the child process to filter out outdated notifications
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// about the amount of buffered data present in the parent process.
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uint32_t mTrackingNumber;
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// True if this socket has been upgraded to secure after the initial connection,
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// but the actual upgrade is waiting for an in-progress copy operation to complete.
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bool mWaitingForStartTLS;
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// The buffered data awaiting the TLS upgrade to finish.
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nsTArray<nsCOMPtr<nsIInputStream>> mPendingDataAfterStartTLS;
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#ifdef MOZ_WIDGET_GONK
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// Number of bytes sent.
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uint32_t mTxBytes;
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// Number of bytes received.
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uint32_t mRxBytes;
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// The app that owns this socket.
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uint32_t mAppId;
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// Was this socket created inside of a mozbrowser frame?
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bool mInBrowser;
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// The name of the active network used by this socket.
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nsCOMPtr<nsINetworkInfo> mActiveNetworkInfo;
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#endif
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};
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} // namespace dom
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} // namespace mozilla
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#endif // mozilla_dom_TCPSocket_h
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