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201 lines
8.1 KiB
C++
201 lines
8.1 KiB
C++
// Copyright 2013 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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#ifndef BASE_MESSAGE_LOOP_MESSAGE_LOOP_H_
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#define BASE_MESSAGE_LOOP_MESSAGE_LOOP_H_
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#include <memory>
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#include <string>
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#include "base/base_export.h"
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#include "base/callback_forward.h"
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#include "base/gtest_prod_util.h"
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#include "base/macros.h"
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#include "base/memory/scoped_refptr.h"
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#include "base/message_loop/message_pump_type.h"
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#include "base/message_loop/timer_slack.h"
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#include "base/pending_task.h"
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#include "base/run_loop.h"
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#include "base/threading/thread_checker.h"
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#include "base/time/time.h"
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#include "build/build_config.h"
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namespace base {
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class MessagePump;
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class TaskObserver;
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namespace sequence_manager {
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class TaskQueue;
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namespace internal {
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class SequenceManagerImpl;
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} // namespace internal
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} // namespace sequence_manager
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// A MessageLoop is used to process events for a particular thread. There is
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// at most one MessageLoop instance per thread.
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//
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// Events include at a minimum Task instances submitted to the MessageLoop's
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// TaskRunner. Depending on the Type of message pump used by the MessageLoop
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// other events such as UI messages may be processed. On Windows APC calls (as
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// time permits) and signals sent to a registered set of HANDLEs may also be
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// processed.
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//
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// The MessageLoop's API should only be used directly by its owner (and users
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// which the owner opts to share a MessageLoop* with). Other ways to access
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// subsets of the MessageLoop API:
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// - base::RunLoop : Drive the MessageLoop from the thread it's bound to.
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// - base::Thread/SequencedTaskRunnerHandle : Post back to the MessageLoop
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// from a task running on it.
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// - SequenceLocalStorageSlot : Bind external state to this MessageLoop.
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// - base::MessageLoopCurrent : Access statically exposed APIs of this
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// MessageLoop.
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// - Embedders may provide their own static accessors to post tasks on
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// specific loops (e.g. content::BrowserThreads).
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//
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// NOTE: Unless otherwise specified, a MessageLoop's methods may only be called
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// on the thread where the MessageLoop's Run method executes.
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//
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// NOTE: MessageLoop has task reentrancy protection. This means that if a
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// task is being processed, a second task cannot start until the first task is
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// finished. Reentrancy can happen when processing a task, and an inner
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// message pump is created. That inner pump then processes native messages
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// which could implicitly start an inner task. Inner message pumps are created
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// with dialogs (DialogBox), common dialogs (GetOpenFileName), OLE functions
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// (DoDragDrop), printer functions (StartDoc) and *many* others.
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//
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// Sample workaround when inner task processing is needed:
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// HRESULT hr;
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// {
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// MessageLoopCurrent::ScopedNestableTaskAllower allow;
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// hr = DoDragDrop(...); // Implicitly runs a modal message loop.
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// }
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// // Process |hr| (the result returned by DoDragDrop()).
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//
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// Please be SURE your task is reentrant (nestable) and all global variables
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// are stable and accessible before calling SetNestableTasksAllowed(true).
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//
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// DEPRECATED: Use a SingleThreadTaskExecutor instead or TaskEnvironment
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// for tests. TODO(https://crbug.com/891670/) remove this class.
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class BASE_EXPORT MessageLoop {
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public:
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// Normally, it is not necessary to instantiate a MessageLoop. Instead, it
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// is typical to make use of the current thread's MessageLoop instance.
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explicit MessageLoop(MessagePumpType type = MessagePumpType::DEFAULT);
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// Creates a MessageLoop with the supplied MessagePump, which must be
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// non-null.
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explicit MessageLoop(std::unique_ptr<MessagePump> custom_pump);
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virtual ~MessageLoop();
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// Set the timer slack for this message loop.
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void SetTimerSlack(TimerSlack timer_slack);
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// Returns true if this loop's pump is |type|. This allows subclasses
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// (especially those in tests) to specialize how they are identified.
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virtual bool IsType(MessagePumpType type) const;
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// Returns the type passed to the constructor.
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MessagePumpType type() const { return type_; }
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// Sets a new TaskRunner for this message loop. If the message loop was
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// already bound, this must be called on the thread to which it is bound.
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void SetTaskRunner(scoped_refptr<SingleThreadTaskRunner> task_runner);
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// Gets the TaskRunner associated with this message loop.
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scoped_refptr<SingleThreadTaskRunner> task_runner() const;
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// These functions can only be called on the same thread that |this| is
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// running on.
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// These functions must not be called from a TaskObserver callback.
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void AddTaskObserver(TaskObserver* task_observer);
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void RemoveTaskObserver(TaskObserver* task_observer);
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// Returns true if the message loop is idle (ignoring delayed tasks). This is
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// the same condition which triggers DoWork() to return false: i.e.
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// out of tasks which can be processed at the current run-level -- there might
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// be deferred non-nestable tasks remaining if currently in a nested run
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// level.
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// TODO(alexclarke): Make this const when MessageLoopImpl goes away.
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bool IsIdleForTesting();
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//----------------------------------------------------------------------------
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protected:
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// Returns true if this is the active MessageLoop for the current thread.
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bool IsBoundToCurrentThread() const;
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using MessagePumpFactoryCallback =
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OnceCallback<std::unique_ptr<MessagePump>()>;
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// Common protected constructor. Other constructors delegate the
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// initialization to this constructor.
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// A subclass can invoke this constructor to create a message_loop of a
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// specific type with a custom loop. The implementation does not call
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// BindToCurrentThread. If this constructor is invoked directly by a subclass,
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// then the subclass must subsequently bind the message loop.
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MessageLoop(MessagePumpType type, std::unique_ptr<MessagePump> pump);
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// Configure various members and bind this message loop to the current thread.
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void BindToCurrentThread();
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// A raw pointer to the MessagePump handed-off to |sequence_manager_|.
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// Valid for the lifetime of |sequence_manager_|.
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MessagePump* pump_ = nullptr;
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// TODO(crbug.com/891670): We shouldn't publicly expose all of
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// SequenceManagerImpl.
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const std::unique_ptr<sequence_manager::internal::SequenceManagerImpl>
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sequence_manager_;
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// SequenceManager requires an explicit initialisation of the default task
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// queue.
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const scoped_refptr<sequence_manager::TaskQueue> default_task_queue_;
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private:
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friend class MessageLoopTypedTest;
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friend class ScheduleWorkTest;
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friend class Thread;
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friend class sequence_manager::internal::SequenceManagerImpl;
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FRIEND_TEST_ALL_PREFIXES(MessageLoopTest, DeleteUnboundLoop);
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// Creates a MessageLoop without binding to a thread.
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//
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// It is valid to call this to create a new message loop on one thread,
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// and then pass it to the thread where the message loop actually runs.
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// The message loop's BindToCurrentThread() method must be called on the
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// thread the message loop runs on, before calling Run().
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// Before BindToCurrentThread() is called, only Post*Task() functions can
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// be called on the message loop.
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static std::unique_ptr<MessageLoop> CreateUnbound(MessagePumpType type);
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static std::unique_ptr<MessageLoop> CreateUnbound(
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std::unique_ptr<MessagePump> pump);
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scoped_refptr<sequence_manager::TaskQueue> CreateDefaultTaskQueue();
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std::unique_ptr<MessagePump> CreateMessagePump();
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sequence_manager::internal::SequenceManagerImpl* GetSequenceManagerImpl()
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const {
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return sequence_manager_.get();
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}
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const MessagePumpType type_;
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// If set this will be returned by the next call to CreateMessagePump().
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// This is only set if |type_| is TYPE_CUSTOM and |pump_| is null.
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std::unique_ptr<MessagePump> custom_pump_;
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// Id of the thread this message loop is bound to. Initialized once when the
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// MessageLoop is bound to its thread and constant forever after.
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PlatformThreadId thread_id_ = kInvalidThreadId;
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// Verifies that calls are made on the thread on which BindToCurrentThread()
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// was invoked.
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THREAD_CHECKER(bound_thread_checker_);
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DISALLOW_COPY_AND_ASSIGN(MessageLoop);
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};
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} // namespace base
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#endif // BASE_MESSAGE_LOOP_MESSAGE_LOOP_H_
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