Remove need to have a mutex per idle thread.
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d7bf2a4bcd
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@ -43,17 +43,20 @@ public:
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}
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// Signal the event.
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void signal()
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template <typename Lock>
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void signal(Lock&)
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{
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}
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// Reset the event.
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void clear()
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template <typename Lock>
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void clear(Lock&)
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{
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}
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// Wait for the event to become signalled.
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void wait()
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template <typename Lock>
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void wait(Lock&)
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{
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}
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};
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@ -24,6 +24,7 @@
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#if defined(BOOST_HAS_PTHREADS)
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#include "asio/detail/push_options.hpp"
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#include <boost/assert.hpp>
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#include <boost/throw_exception.hpp>
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#include <pthread.h>
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#include "asio/detail/pop_options.hpp"
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@ -42,7 +43,7 @@ public:
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posix_event()
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: signalled_(false)
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{
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int error = ::pthread_mutex_init(&mutex_, 0);
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int error = ::pthread_cond_init(&cond_, 0);
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if (error != 0)
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{
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asio::system_error e(
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@ -50,53 +51,43 @@ public:
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"event");
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boost::throw_exception(e);
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}
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error = ::pthread_cond_init(&cond_, 0);
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if (error != 0)
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{
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::pthread_mutex_destroy(&mutex_);
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asio::system_error e(
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asio::error_code(error, asio::native_ecat),
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"event");
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boost::throw_exception(e);
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}
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}
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// Destructor.
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~posix_event()
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{
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::pthread_cond_destroy(&cond_);
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::pthread_mutex_destroy(&mutex_);
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}
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// Signal the event.
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void signal()
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template <typename Lock>
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void signal(Lock& lock)
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{
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::pthread_mutex_lock(&mutex_); // Ignore EINVAL and EDEADLK.
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BOOST_ASSERT(lock.locked());
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(void)lock;
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signalled_ = true;
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::pthread_cond_signal(&cond_); // Ignore EINVAL.
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::pthread_mutex_unlock(&mutex_); // Ignore EINVAL and EPERM.
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}
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// Reset the event.
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void clear()
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template <typename Lock>
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void clear(Lock& lock)
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{
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::pthread_mutex_lock(&mutex_); // Ignore EINVAL and EDEADLK.
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BOOST_ASSERT(lock.locked());
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(void)lock;
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signalled_ = false;
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::pthread_mutex_unlock(&mutex_); // Ignore EINVAL and EPERM.
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}
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// Wait for the event to become signalled.
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void wait()
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template <typename Lock>
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void wait(Lock& lock)
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{
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::pthread_mutex_lock(&mutex_); // Ignore EINVAL and EDEADLK.
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BOOST_ASSERT(lock.locked());
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while (!signalled_)
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::pthread_cond_wait(&cond_, &mutex_); // Ignore EINVAL.
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::pthread_mutex_unlock(&mutex_); // Ignore EINVAL and EPERM.
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::pthread_cond_wait(&cond_, &lock.mutex().mutex_); // Ignore EINVAL.
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}
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private:
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::pthread_mutex_t mutex_;
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::pthread_cond_t cond_;
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bool signalled_;
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};
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@ -35,6 +35,8 @@
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namespace asio {
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namespace detail {
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class posix_event;
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class posix_mutex
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: private noncopyable
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{
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@ -87,6 +89,7 @@ public:
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}
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private:
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friend class posix_event;
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::pthread_mutex_t mutex_;
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};
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@ -63,6 +63,18 @@ public:
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}
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}
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// Test whether the lock is held.
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bool locked() const
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{
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return locked_;
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}
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// Get the underlying mutex.
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Mutex& mutex()
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{
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return mutex_;
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}
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private:
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// The underlying mutex.
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Mutex& mutex_;
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@ -132,7 +132,7 @@ public:
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void stop()
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{
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asio::detail::mutex::scoped_lock lock(mutex_);
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stop_all_threads();
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stop_all_threads(lock);
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}
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// Reset in preparation for a subsequent run invocation.
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@ -154,7 +154,7 @@ public:
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{
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asio::detail::mutex::scoped_lock lock(mutex_);
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if (--outstanding_work_ == 0)
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stop_all_threads();
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stop_all_threads(lock);
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}
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// Request invocation of the given handler.
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@ -199,7 +199,7 @@ public:
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++outstanding_work_;
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// Wake up a thread to execute the handler.
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if (!interrupt_one_idle_thread())
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if (!interrupt_one_idle_thread(lock))
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if (task_handler_.next_ == 0 && handler_queue_end_ != &task_handler_)
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task_.interrupt();
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}
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@ -212,7 +212,7 @@ private:
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{
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if (outstanding_work_ == 0 && !stopped_)
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{
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stop_all_threads();
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stop_all_threads(lock);
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ec = asio::error_code();
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return 0;
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}
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@ -267,10 +267,8 @@ private:
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// Nothing to run right now, so just wait for work to do.
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this_idle_thread->next = first_idle_thread_;
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first_idle_thread_ = this_idle_thread;
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this_idle_thread->wakeup_event.clear();
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lock.unlock();
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this_idle_thread->wakeup_event.wait();
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lock.lock();
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this_idle_thread->wakeup_event.clear(lock);
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this_idle_thread->wakeup_event.wait(lock);
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}
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else
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{
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@ -284,38 +282,41 @@ private:
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}
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// Stop the task and all idle threads.
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void stop_all_threads()
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void stop_all_threads(
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asio::detail::mutex::scoped_lock& lock)
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{
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stopped_ = true;
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interrupt_all_idle_threads();
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interrupt_all_idle_threads(lock);
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if (task_handler_.next_ == 0 && handler_queue_end_ != &task_handler_)
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task_.interrupt();
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}
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// Interrupt a single idle thread. Returns true if a thread was interrupted,
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// false if no running thread could be found to interrupt.
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bool interrupt_one_idle_thread()
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bool interrupt_one_idle_thread(
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asio::detail::mutex::scoped_lock& lock)
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{
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if (first_idle_thread_)
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{
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idle_thread_info* idle_thread = first_idle_thread_;
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first_idle_thread_ = idle_thread->next;
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idle_thread->next = 0;
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idle_thread->wakeup_event.signal();
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idle_thread->wakeup_event.signal(lock);
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return true;
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}
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return false;
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}
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// Interrupt all idle threads.
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void interrupt_all_idle_threads()
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void interrupt_all_idle_threads(
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asio::detail::mutex::scoped_lock& lock)
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{
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while (first_idle_thread_)
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{
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idle_thread_info* idle_thread = first_idle_thread_;
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first_idle_thread_ = idle_thread->next;
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idle_thread->next = 0;
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idle_thread->wakeup_event.signal();
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idle_thread->wakeup_event.signal(lock);
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}
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}
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@ -459,7 +460,7 @@ private:
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{
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lock_.lock();
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if (--task_io_service_.outstanding_work_ == 0)
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task_io_service_.stop_all_threads();
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task_io_service_.stop_all_threads(lock_);
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}
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private:
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@ -28,6 +28,7 @@
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#include "asio/detail/socket_types.hpp"
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#include "asio/detail/push_options.hpp"
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#include <boost/assert.hpp>
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#include <boost/throw_exception.hpp>
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#include "asio/detail/pop_options.hpp"
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@ -59,21 +60,31 @@ public:
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}
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// Signal the event.
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void signal()
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template <typename Lock>
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void signal(Lock& lock)
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{
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BOOST_ASSERT(lock.locked());
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(void)lock;
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::SetEvent(event_);
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}
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// Reset the event.
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void clear()
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template <typename Lock>
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void clear(Lock& lock)
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{
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BOOST_ASSERT(lock.locked());
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(void)lock;
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::ResetEvent(event_);
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}
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// Wait for the event to become signalled.
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void wait()
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template <typename Lock>
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void wait(Lock& lock)
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{
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BOOST_ASSERT(lock.locked());
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lock.unlock();
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::WaitForSingleObject(event_, INFINITE);
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lock.lock();
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}
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private:
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