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352 lines
11 KiB
352 lines
11 KiB
// Copyright 2014 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "ipc/ipc_channel_mojo.h"
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#include <stddef.h>
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#include <stdint.h>
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#include <memory>
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#include <utility>
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#include "base/bind.h"
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#include "base/bind_helpers.h"
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#include "base/command_line.h"
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#include "base/lazy_instance.h"
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#include "base/macros.h"
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#include "base/memory/ptr_util.h"
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#include "base/process/process_handle.h"
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#include "base/threading/thread_task_runner_handle.h"
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#include "build/build_config.h"
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#include "ipc/ipc_listener.h"
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#include "ipc/ipc_logging.h"
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#include "ipc/ipc_message_attachment_set.h"
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#include "ipc/ipc_message_macros.h"
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#include "ipc/ipc_mojo_bootstrap.h"
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#include "ipc/ipc_mojo_handle_attachment.h"
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#include "ipc/native_handle_type_converters.h"
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#include "mojo/public/cpp/bindings/binding.h"
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#include "mojo/public/cpp/system/platform_handle.h"
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namespace IPC {
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namespace {
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class MojoChannelFactory : public ChannelFactory {
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public:
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MojoChannelFactory(
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mojo::ScopedMessagePipeHandle handle,
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Channel::Mode mode,
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const scoped_refptr<base::SingleThreadTaskRunner>& ipc_task_runner,
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const scoped_refptr<base::SingleThreadTaskRunner>& proxy_task_runner)
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: handle_(std::move(handle)),
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mode_(mode),
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ipc_task_runner_(ipc_task_runner),
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proxy_task_runner_(proxy_task_runner) {}
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std::unique_ptr<Channel> BuildChannel(Listener* listener) override {
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return ChannelMojo::Create(std::move(handle_), mode_, listener,
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ipc_task_runner_, proxy_task_runner_);
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}
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scoped_refptr<base::SingleThreadTaskRunner> GetIPCTaskRunner() override {
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return ipc_task_runner_;
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}
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private:
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mojo::ScopedMessagePipeHandle handle_;
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const Channel::Mode mode_;
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scoped_refptr<base::SingleThreadTaskRunner> ipc_task_runner_;
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scoped_refptr<base::SingleThreadTaskRunner> proxy_task_runner_;
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DISALLOW_COPY_AND_ASSIGN(MojoChannelFactory);
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};
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base::ProcessId GetSelfPID() {
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#if defined(OS_LINUX)
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if (int global_pid = Channel::GetGlobalPid())
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return global_pid;
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#endif // OS_LINUX
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#if defined(OS_NACL)
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return -1;
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#else
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return base::GetCurrentProcId();
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#endif // defined(OS_NACL)
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}
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} // namespace
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//------------------------------------------------------------------------------
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// static
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std::unique_ptr<ChannelMojo> ChannelMojo::Create(
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mojo::ScopedMessagePipeHandle handle,
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Mode mode,
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Listener* listener,
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const scoped_refptr<base::SingleThreadTaskRunner>& ipc_task_runner,
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const scoped_refptr<base::SingleThreadTaskRunner>& proxy_task_runner) {
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return base::WrapUnique(new ChannelMojo(std::move(handle), mode, listener,
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ipc_task_runner, proxy_task_runner));
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}
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// static
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std::unique_ptr<ChannelFactory> ChannelMojo::CreateServerFactory(
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mojo::ScopedMessagePipeHandle handle,
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const scoped_refptr<base::SingleThreadTaskRunner>& ipc_task_runner,
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const scoped_refptr<base::SingleThreadTaskRunner>& proxy_task_runner) {
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return std::make_unique<MojoChannelFactory>(
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std::move(handle), Channel::MODE_SERVER, ipc_task_runner,
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proxy_task_runner);
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}
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// static
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std::unique_ptr<ChannelFactory> ChannelMojo::CreateClientFactory(
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mojo::ScopedMessagePipeHandle handle,
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const scoped_refptr<base::SingleThreadTaskRunner>& ipc_task_runner,
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const scoped_refptr<base::SingleThreadTaskRunner>& proxy_task_runner) {
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return std::make_unique<MojoChannelFactory>(
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std::move(handle), Channel::MODE_CLIENT, ipc_task_runner,
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proxy_task_runner);
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}
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ChannelMojo::ChannelMojo(
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mojo::ScopedMessagePipeHandle handle,
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Mode mode,
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Listener* listener,
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const scoped_refptr<base::SingleThreadTaskRunner>& ipc_task_runner,
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const scoped_refptr<base::SingleThreadTaskRunner>& proxy_task_runner)
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: task_runner_(ipc_task_runner),
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pipe_(handle.get()),
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listener_(listener),
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weak_factory_(this) {
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weak_ptr_ = weak_factory_.GetWeakPtr();
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bootstrap_ = MojoBootstrap::Create(std::move(handle), mode, ipc_task_runner,
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proxy_task_runner);
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}
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void ChannelMojo::ForwardMessageFromThreadSafePtr(mojo::Message message) {
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DCHECK(task_runner_->RunsTasksInCurrentSequence());
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if (!message_reader_ || !message_reader_->sender().is_bound())
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return;
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message_reader_->sender().internal_state()->ForwardMessage(
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std::move(message));
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}
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void ChannelMojo::ForwardMessageWithResponderFromThreadSafePtr(
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mojo::Message message,
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std::unique_ptr<mojo::MessageReceiver> responder) {
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DCHECK(task_runner_->RunsTasksInCurrentSequence());
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if (!message_reader_ || !message_reader_->sender().is_bound())
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return;
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message_reader_->sender().internal_state()->ForwardMessageWithResponder(
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std::move(message), std::move(responder));
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}
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ChannelMojo::~ChannelMojo() {
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DCHECK(task_runner_->RunsTasksInCurrentSequence());
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Close();
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}
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bool ChannelMojo::Connect() {
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DCHECK(task_runner_->RunsTasksInCurrentSequence());
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WillConnect();
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mojom::ChannelAssociatedPtr sender;
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mojom::ChannelAssociatedRequest receiver;
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bootstrap_->Connect(&sender, &receiver);
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DCHECK(!message_reader_);
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sender->SetPeerPid(GetSelfPID());
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message_reader_.reset(new internal::MessagePipeReader(
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pipe_, std::move(sender), std::move(receiver), this));
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return true;
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}
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void ChannelMojo::Pause() {
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bootstrap_->Pause();
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}
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void ChannelMojo::Unpause(bool flush) {
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bootstrap_->Unpause();
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if (flush)
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Flush();
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}
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void ChannelMojo::Flush() {
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bootstrap_->Flush();
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}
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void ChannelMojo::Close() {
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// NOTE: The MessagePipeReader's destructor may re-enter this function. Use
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// caution when changing this method.
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std::unique_ptr<internal::MessagePipeReader> reader =
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std::move(message_reader_);
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reader.reset();
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base::AutoLock lock(associated_interface_lock_);
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associated_interfaces_.clear();
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}
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void ChannelMojo::OnPipeError() {
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DCHECK(task_runner_);
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if (task_runner_->RunsTasksInCurrentSequence()) {
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listener_->OnChannelError();
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} else {
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task_runner_->PostTask(FROM_HERE,
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base::Bind(&ChannelMojo::OnPipeError, weak_ptr_));
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}
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}
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void ChannelMojo::OnAssociatedInterfaceRequest(
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const std::string& name,
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mojo::ScopedInterfaceEndpointHandle handle) {
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GenericAssociatedInterfaceFactory factory;
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{
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base::AutoLock locker(associated_interface_lock_);
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auto iter = associated_interfaces_.find(name);
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if (iter != associated_interfaces_.end())
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factory = iter->second;
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}
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if (!factory.is_null())
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factory.Run(std::move(handle));
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else
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listener_->OnAssociatedInterfaceRequest(name, std::move(handle));
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}
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bool ChannelMojo::Send(Message* message) {
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DVLOG(2) << "sending message @" << message << " on channel @" << this
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<< " with type " << message->type();
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#if BUILDFLAG(IPC_MESSAGE_LOG_ENABLED)
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Logging::GetInstance()->OnSendMessage(message);
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#endif
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std::unique_ptr<Message> scoped_message = base::WrapUnique(message);
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if (!message_reader_)
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return false;
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// Comment copied from ipc_channel_posix.cc:
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// We can't close the pipe here, because calling OnChannelError may destroy
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// this object, and that would be bad if we are called from Send(). Instead,
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// we return false and hope the caller will close the pipe. If they do not,
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// the pipe will still be closed next time OnFileCanReadWithoutBlocking is
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// called.
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//
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// With Mojo, there's no OnFileCanReadWithoutBlocking, but we expect the
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// pipe's connection error handler will be invoked in its place.
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return message_reader_->Send(std::move(scoped_message));
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}
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Channel::AssociatedInterfaceSupport*
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ChannelMojo::GetAssociatedInterfaceSupport() { return this; }
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std::unique_ptr<mojo::ThreadSafeForwarder<mojom::Channel>>
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ChannelMojo::CreateThreadSafeChannel() {
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return std::make_unique<mojo::ThreadSafeForwarder<mojom::Channel>>(
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task_runner_,
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base::Bind(&ChannelMojo::ForwardMessageFromThreadSafePtr, weak_ptr_),
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base::Bind(&ChannelMojo::ForwardMessageWithResponderFromThreadSafePtr,
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weak_ptr_),
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*bootstrap_->GetAssociatedGroup());
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}
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void ChannelMojo::OnPeerPidReceived(int32_t peer_pid) {
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listener_->OnChannelConnected(peer_pid);
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}
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void ChannelMojo::OnMessageReceived(const Message& message) {
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TRACE_EVENT2("ipc,toplevel", "ChannelMojo::OnMessageReceived",
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"class", IPC_MESSAGE_ID_CLASS(message.type()),
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"line", IPC_MESSAGE_ID_LINE(message.type()));
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listener_->OnMessageReceived(message);
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if (message.dispatch_error())
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listener_->OnBadMessageReceived(message);
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}
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void ChannelMojo::OnBrokenDataReceived() {
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listener_->OnBadMessageReceived(Message());
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}
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// static
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MojoResult ChannelMojo::ReadFromMessageAttachmentSet(
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Message* message,
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base::Optional<std::vector<mojo::native::SerializedHandlePtr>>* handles) {
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DCHECK(!*handles);
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MojoResult result = MOJO_RESULT_OK;
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if (!message->HasAttachments())
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return result;
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std::vector<mojo::native::SerializedHandlePtr> output_handles;
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MessageAttachmentSet* set = message->attachment_set();
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for (unsigned i = 0; result == MOJO_RESULT_OK && i < set->size(); ++i) {
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auto attachment = set->GetAttachmentAt(i);
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auto serialized_handle = mojo::native::SerializedHandle::New();
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serialized_handle->the_handle = attachment->TakeMojoHandle();
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serialized_handle->type =
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mojo::ConvertTo<mojo::native::SerializedHandle::Type>(
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attachment->GetType());
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output_handles.emplace_back(std::move(serialized_handle));
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}
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set->CommitAllDescriptors();
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if (!output_handles.empty())
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*handles = std::move(output_handles);
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return result;
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}
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// static
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MojoResult ChannelMojo::WriteToMessageAttachmentSet(
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base::Optional<std::vector<mojo::native::SerializedHandlePtr>> handles,
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Message* message) {
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if (!handles)
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return MOJO_RESULT_OK;
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for (size_t i = 0; i < handles->size(); ++i) {
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auto& handle = handles->at(i);
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scoped_refptr<MessageAttachment> unwrapped_attachment =
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MessageAttachment::CreateFromMojoHandle(
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std::move(handle->the_handle),
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mojo::ConvertTo<MessageAttachment::Type>(handle->type));
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if (!unwrapped_attachment) {
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DLOG(WARNING) << "Pipe failed to unwrap handles.";
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return MOJO_RESULT_UNKNOWN;
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}
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bool ok = message->attachment_set()->AddAttachment(
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std::move(unwrapped_attachment));
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DCHECK(ok);
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if (!ok) {
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LOG(ERROR) << "Failed to add new Mojo handle.";
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return MOJO_RESULT_UNKNOWN;
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}
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}
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return MOJO_RESULT_OK;
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}
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void ChannelMojo::AddGenericAssociatedInterface(
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const std::string& name,
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const GenericAssociatedInterfaceFactory& factory) {
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base::AutoLock locker(associated_interface_lock_);
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auto result = associated_interfaces_.insert({ name, factory });
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DCHECK(result.second);
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}
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void ChannelMojo::GetGenericRemoteAssociatedInterface(
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const std::string& name,
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mojo::ScopedInterfaceEndpointHandle handle) {
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if (message_reader_) {
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message_reader_->GetRemoteInterface(name, std::move(handle));
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} else {
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// Attach the associated interface to a disconnected pipe, so that the
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// associated interface pointer can be used to make calls (which are
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// dropped).
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mojo::AssociateWithDisconnectedPipe(std::move(handle));
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}
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}
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} // namespace IPC
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