203 lines
6.0 KiB
C++
203 lines
6.0 KiB
C++
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// Copyright (c) 2012 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 "base/threading/worker_pool_posix.h"
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#include "base/bind.h"
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#include "base/callback.h"
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#include "base/debug/trace_event.h"
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#include "base/lazy_instance.h"
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#include "base/logging.h"
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#include "base/memory/ref_counted.h"
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#include "base/strings/stringprintf.h"
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#include "base/threading/platform_thread.h"
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#include "base/threading/thread_local.h"
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#include "base/threading/worker_pool.h"
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#include "base/tracked_objects.h"
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using tracked_objects::TrackedTime;
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namespace base {
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namespace {
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base::LazyInstance<ThreadLocalBoolean>::Leaky
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g_worker_pool_running_on_this_thread = LAZY_INSTANCE_INITIALIZER;
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const int kIdleSecondsBeforeExit = 10 * 60;
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#ifdef ADDRESS_SANITIZER
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const int kWorkerThreadStackSize = 256 * 1024;
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#else
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// A stack size of 64 KB is too small for the CERT_PKIXVerifyCert
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// function of NSS because of NSS bug 439169.
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const int kWorkerThreadStackSize = 128 * 1024;
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#endif
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class WorkerPoolImpl {
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public:
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WorkerPoolImpl();
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~WorkerPoolImpl();
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void PostTask(const tracked_objects::Location& from_here,
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const base::Closure& task, bool task_is_slow);
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private:
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scoped_refptr<base::PosixDynamicThreadPool> pool_;
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};
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WorkerPoolImpl::WorkerPoolImpl()
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: pool_(new base::PosixDynamicThreadPool("WorkerPool",
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kIdleSecondsBeforeExit)) {
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}
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WorkerPoolImpl::~WorkerPoolImpl() {
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pool_->Terminate();
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}
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void WorkerPoolImpl::PostTask(const tracked_objects::Location& from_here,
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const base::Closure& task, bool task_is_slow) {
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pool_->PostTask(from_here, task);
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}
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base::LazyInstance<WorkerPoolImpl> g_lazy_worker_pool =
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LAZY_INSTANCE_INITIALIZER;
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class WorkerThread : public PlatformThread::Delegate {
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public:
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WorkerThread(const std::string& name_prefix,
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base::PosixDynamicThreadPool* pool)
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: name_prefix_(name_prefix),
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pool_(pool) {}
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virtual void ThreadMain() OVERRIDE;
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private:
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const std::string name_prefix_;
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scoped_refptr<base::PosixDynamicThreadPool> pool_;
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DISALLOW_COPY_AND_ASSIGN(WorkerThread);
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};
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void WorkerThread::ThreadMain() {
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g_worker_pool_running_on_this_thread.Get().Set(true);
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const std::string name = base::StringPrintf(
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"%s/%d", name_prefix_.c_str(), PlatformThread::CurrentId());
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// Note |name.c_str()| must remain valid for for the whole life of the thread.
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PlatformThread::SetName(name.c_str());
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for (;;) {
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PendingTask pending_task = pool_->WaitForTask();
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if (pending_task.task.is_null())
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break;
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TRACE_EVENT2("task", "WorkerThread::ThreadMain::Run",
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"src_file", pending_task.posted_from.file_name(),
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"src_func", pending_task.posted_from.function_name());
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TrackedTime start_time =
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tracked_objects::ThreadData::NowForStartOfRun(pending_task.birth_tally);
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pending_task.task.Run();
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tracked_objects::ThreadData::TallyRunOnWorkerThreadIfTracking(
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pending_task.birth_tally, TrackedTime(pending_task.time_posted),
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start_time, tracked_objects::ThreadData::NowForEndOfRun());
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}
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// The WorkerThread is non-joinable, so it deletes itself.
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delete this;
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}
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} // namespace
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// static
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bool WorkerPool::PostTask(const tracked_objects::Location& from_here,
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const base::Closure& task, bool task_is_slow) {
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g_lazy_worker_pool.Pointer()->PostTask(from_here, task, task_is_slow);
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return true;
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}
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// static
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bool WorkerPool::RunsTasksOnCurrentThread() {
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return g_worker_pool_running_on_this_thread.Get().Get();
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}
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PosixDynamicThreadPool::PosixDynamicThreadPool(const std::string& name_prefix,
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int idle_seconds_before_exit)
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: name_prefix_(name_prefix),
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idle_seconds_before_exit_(idle_seconds_before_exit),
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pending_tasks_available_cv_(&lock_),
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num_idle_threads_(0),
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terminated_(false) {}
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PosixDynamicThreadPool::~PosixDynamicThreadPool() {
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while (!pending_tasks_.empty())
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pending_tasks_.pop();
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}
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void PosixDynamicThreadPool::Terminate() {
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{
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AutoLock locked(lock_);
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DCHECK(!terminated_) << "Thread pool is already terminated.";
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terminated_ = true;
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}
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pending_tasks_available_cv_.Broadcast();
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}
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void PosixDynamicThreadPool::PostTask(
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const tracked_objects::Location& from_here,
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const base::Closure& task) {
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PendingTask pending_task(from_here, task);
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AddTask(&pending_task);
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}
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void PosixDynamicThreadPool::AddTask(PendingTask* pending_task) {
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AutoLock locked(lock_);
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DCHECK(!terminated_) <<
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"This thread pool is already terminated. Do not post new tasks.";
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pending_tasks_.push(*pending_task);
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pending_task->task.Reset();
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// We have enough worker threads.
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if (static_cast<size_t>(num_idle_threads_) >= pending_tasks_.size()) {
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pending_tasks_available_cv_.Signal();
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} else {
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// The new PlatformThread will take ownership of the WorkerThread object,
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// which will delete itself on exit.
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WorkerThread* worker =
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new WorkerThread(name_prefix_, this);
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PlatformThread::CreateNonJoinable(kWorkerThreadStackSize, worker);
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}
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}
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PendingTask PosixDynamicThreadPool::WaitForTask() {
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AutoLock locked(lock_);
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if (terminated_)
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return PendingTask(FROM_HERE, base::Closure());
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if (pending_tasks_.empty()) { // No work available, wait for work.
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num_idle_threads_++;
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if (num_idle_threads_cv_.get())
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num_idle_threads_cv_->Signal();
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pending_tasks_available_cv_.TimedWait(
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TimeDelta::FromSeconds(idle_seconds_before_exit_));
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num_idle_threads_--;
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if (num_idle_threads_cv_.get())
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num_idle_threads_cv_->Signal();
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if (pending_tasks_.empty()) {
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// We waited for work, but there's still no work. Return NULL to signal
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// the thread to terminate.
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return PendingTask(FROM_HERE, base::Closure());
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}
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}
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PendingTask pending_task = pending_tasks_.front();
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pending_tasks_.pop();
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return pending_task;
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}
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} // namespace base
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