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/* threadpool.cpp
*/

/*    Copyright 2009 10gen Inc.
 *
 *    Licensed under the Apache License, Version 2.0 (the "License");
 *    you may not use this file except in compliance with the License.
 *    You may obtain a copy of the License at
 *
 *    http://www.apache.org/licenses/LICENSE-2.0
 *
 *    Unless required by applicable law or agreed to in writing, software
 *    distributed under the License is distributed on an "AS IS" BASIS,
 *    WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
 *    See the License for the specific language governing permissions and
 *    limitations under the License.
 */

#include "stdafx.h"
#include "thread_pool.h"
#include "mvar.h"


namespace mongo{
namespace threadpool{

// Worker thread
class Worker : boost::noncopyable {
public:
    explicit Worker(ThreadPool& owner)
        : _owner(owner)
        , _is_done(true)
        , _thread(boost::bind(&Worker::loop, this))
    {}

    // destructor will block until current operation is completed
    // Acts as a "join" on this thread
    ~Worker(){
        _task.put(Task());
        _thread.join();
    }

    void set_task(Task& func){
        assert(!func.empty());
        assert(_is_done);
        _is_done = false;

        _task.put(func);
    }

    private:
    ThreadPool& _owner;
    MVar<Task> _task;
    bool _is_done; // only used for error detection
    boost::thread _thread;

    void loop(){
        while (true) {
            Task task = _task.take();
            if (task.empty())
                break; // ends the thread

            try {
                task();
            } catch (std::exception e){
                log() << "Unhandled exception in worker thread: " << e.what() << endl;;
            } catch (...){
                log() << "Unhandled non-exception in worker thread" << endl;
            }
            _is_done = true;
            _owner.task_done(this);
        }
    }
};

ThreadPool::ThreadPool(int nThreads)
    : _tasksRemaining(0)
    , _nThreads(nThreads)
{
    boostlock lock(_mutex);
    while (nThreads-- > 0){
        Worker* worker = new Worker(*this);
        _freeWorkers.push_front(worker);
    }
}

ThreadPool::~ThreadPool(){
    join();

    assert(_tasks.empty());

    // O(n) but n should be small
    assert(_freeWorkers.size() == (unsigned)_nThreads);

    while(!_freeWorkers.empty()){
        delete _freeWorkers.front();
        _freeWorkers.pop_front();
    }
}

void ThreadPool::join(){
    while(_tasksRemaining){
        boostlock lock(_mutex);
        _condition.wait(lock);
    }
}

void ThreadPool::schedule(Task task){
    boostlock lock(_mutex);

    _tasksRemaining++;

    if (!_freeWorkers.empty()){
        _freeWorkers.front()->set_task(task);
        _freeWorkers.pop_front();
    }else{
        _tasks.push_back(task);
    }
}

// should only be called by a worker from the worker thread
void ThreadPool::task_done(Worker* worker){
    boostlock lock(_mutex);

    if (!_tasks.empty()){
        worker->set_task(_tasks.front());
        _tasks.pop_front();
    }else{
        _freeWorkers.push_back(worker);
    }

    _tasksRemaining--;

    if(_tasksRemaining == 0)
        _condition.notify_all();
}

} //namespace threadpool
} //namespace mongo