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[/] [openrisc/] [tags/] [gnu-dev/] [fsf-gcc-snapshot-1-mar-12/] [or1k-gcc/] [libstdc++-v3/] [include/] [std/] [condition_variable] - Blame information for rev 742

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1 742 jeremybenn
//  -*- C++ -*-
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// Copyright (C) 2008, 2009, 2010 Free Software Foundation, Inc.
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//
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// This file is part of the GNU ISO C++ Library.  This library is free
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// software; you can redistribute it and/or modify it under the
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// terms of the GNU General Public License as published by the
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// Free Software Foundation; either version 3, or (at your option)
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// any later version.
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// This library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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// GNU General Public License for more details.
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// Under Section 7 of GPL version 3, you are granted additional
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// permissions described in the GCC Runtime Library Exception, version
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// 3.1, as published by the Free Software Foundation.
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// You should have received a copy of the GNU General Public License and
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// a copy of the GCC Runtime Library Exception along with this program;
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// see the files COPYING3 and COPYING.RUNTIME respectively.  If not, see
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// .
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/** @file include/condition_variable
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 *  This is a Standard C++ Library header.
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 */
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#ifndef _GLIBCXX_CONDITION_VARIABLE
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#define _GLIBCXX_CONDITION_VARIABLE 1
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#pragma GCC system_header
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#ifndef __GXX_EXPERIMENTAL_CXX0X__
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# include 
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#else
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#include 
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#include  // unique_lock
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#if defined(_GLIBCXX_HAS_GTHREADS) && defined(_GLIBCXX_USE_C99_STDINT_TR1)
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namespace std _GLIBCXX_VISIBILITY(default)
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{
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_GLIBCXX_BEGIN_NAMESPACE_VERSION
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  /**
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   * @defgroup condition_variables Condition Variables
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   * @ingroup concurrency
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   *
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   * Classes for condition_variable support.
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   * @{
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   */
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  /// cv_status
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  enum class cv_status { no_timeout, timeout };
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  /// condition_variable
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  class condition_variable
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  {
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    typedef chrono::system_clock        __clock_t;
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    typedef __gthread_cond_t            __native_type;
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#ifdef __GTHREAD_COND_INIT
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    __native_type                       _M_cond = __GTHREAD_COND_INIT;
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#else
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    __native_type                       _M_cond;
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#endif
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  public:
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    typedef __native_type*              native_handle_type;
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    condition_variable() noexcept;
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    ~condition_variable() noexcept;
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    condition_variable(const condition_variable&) = delete;
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    condition_variable& operator=(const condition_variable&) = delete;
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    void
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    notify_one() noexcept;
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    void
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    notify_all() noexcept;
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    void
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    wait(unique_lock& __lock);
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    template
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      void
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      wait(unique_lock& __lock, _Predicate __p)
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      {
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        while (!__p())
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          wait(__lock);
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      }
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    template
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      cv_status
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      wait_until(unique_lock& __lock,
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                 const chrono::time_point<__clock_t, _Duration>& __atime)
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      { return __wait_until_impl(__lock, __atime); }
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    template
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      cv_status
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      wait_until(unique_lock& __lock,
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                 const chrono::time_point<_Clock, _Duration>& __atime)
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      {
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        // DR 887 - Sync unknown clock to known clock.
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        const typename _Clock::time_point __c_entry = _Clock::now();
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        const __clock_t::time_point __s_entry = __clock_t::now();
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        const chrono::nanoseconds __delta = __atime - __c_entry;
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        const __clock_t::time_point __s_atime = __s_entry + __delta;
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        return __wait_until_impl(__lock, __s_atime);
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      }
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    template
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      bool
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      wait_until(unique_lock& __lock,
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                 const chrono::time_point<_Clock, _Duration>& __atime,
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                 _Predicate __p)
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      {
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        while (!__p())
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          if (wait_until(__lock, __atime) == cv_status::timeout)
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            return __p();
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        return true;
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      }
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    template
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      cv_status
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      wait_for(unique_lock& __lock,
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               const chrono::duration<_Rep, _Period>& __rtime)
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      { return wait_until(__lock, __clock_t::now() + __rtime); }
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    template
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      bool
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      wait_for(unique_lock& __lock,
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               const chrono::duration<_Rep, _Period>& __rtime,
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               _Predicate __p)
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      { return wait_until(__lock, __clock_t::now() + __rtime, std::move(__p)); }
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    native_handle_type
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    native_handle()
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    { return &_M_cond; }
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  private:
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    template
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      cv_status
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      __wait_until_impl(unique_lock& __lock,
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                        const chrono::time_point<_Clock, _Duration>& __atime)
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      {
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        chrono::time_point<__clock_t, chrono::seconds> __s =
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          chrono::time_point_cast(__atime);
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        chrono::nanoseconds __ns =
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          chrono::duration_cast(__atime - __s);
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        __gthread_time_t __ts =
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          {
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            static_cast(__s.time_since_epoch().count()),
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            static_cast(__ns.count())
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          };
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        __gthread_cond_timedwait(&_M_cond, __lock.mutex()->native_handle(),
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                                 &__ts);
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        return (_Clock::now() < __atime
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                ? cv_status::no_timeout : cv_status::timeout);
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      }
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  };
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  /// condition_variable_any
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  // Like above, but mutex is not required to have try_lock.
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  class condition_variable_any
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  {
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    typedef chrono::system_clock        __clock_t;
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    condition_variable                  _M_cond;
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    mutex                               _M_mutex;
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  public:
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    condition_variable_any() noexcept;
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    ~condition_variable_any() noexcept;
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    condition_variable_any(const condition_variable_any&) = delete;
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    condition_variable_any& operator=(const condition_variable_any&) = delete;
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    void
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    notify_one() noexcept
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    {
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      lock_guard __lock(_M_mutex);
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      _M_cond.notify_one();
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    }
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    void
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    notify_all() noexcept
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    {
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      lock_guard __lock(_M_mutex);
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      _M_cond.notify_all();
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    }
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    template
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      void
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      wait(_Lock& __lock)
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      {
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        // scoped unlock - unlocks in ctor, re-locks in dtor
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        struct _Unlock {
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          explicit _Unlock(_Lock& __lk) : _M_lock(__lk) { __lk.unlock(); }
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          ~_Unlock() noexcept(false)
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          {
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            if (uncaught_exception())
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              __try { _M_lock.lock(); } __catch(...) { }
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            else
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              _M_lock.lock();
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          }
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          _Lock& _M_lock;
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        };
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        unique_lock __my_lock(_M_mutex);
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        _Unlock __unlock(__lock);
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        // _M_mutex must be unlocked before re-locking __lock so move
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        // ownership of _M_mutex lock to an object with shorter lifetime.
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        unique_lock __my_lock2(std::move(__my_lock));
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        _M_cond.wait(__my_lock2);
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      }
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    template
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      void
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      wait(_Lock& __lock, _Predicate __p)
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      {
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        while (!__p())
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          wait(__lock);
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      }
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    template
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      cv_status
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      wait_until(_Lock& __lock,
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                 const chrono::time_point<_Clock, _Duration>& __atime)
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      {
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        unique_lock __my_lock(_M_mutex);
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        __lock.unlock();
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        cv_status __status = _M_cond.wait_until(__my_lock, __atime);
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        __lock.lock();
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        return __status;
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      }
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    template
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             typename _Duration, typename _Predicate>
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      bool
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      wait_until(_Lock& __lock,
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                 const chrono::time_point<_Clock, _Duration>& __atime,
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                 _Predicate __p)
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      {
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        while (!__p())
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          if (wait_until(__lock, __atime) == cv_status::timeout)
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            return __p();
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        return true;
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      }
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    template
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      cv_status
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      wait_for(_Lock& __lock, const chrono::duration<_Rep, _Period>& __rtime)
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      { return wait_until(__lock, __clock_t::now() + __rtime); }
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    template
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             typename _Period, typename _Predicate>
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      bool
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      wait_for(_Lock& __lock,
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               const chrono::duration<_Rep, _Period>& __rtime, _Predicate __p)
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      { return wait_until(__lock, __clock_t::now() + __rtime, std::move(__p)); }
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  };
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  // @} group condition_variables
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_GLIBCXX_END_NAMESPACE_VERSION
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} // namespace
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#endif // _GLIBCXX_HAS_GTHREADS && _GLIBCXX_USE_C99_STDINT_TR1
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#endif // __GXX_EXPERIMENTAL_CXX0X__
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#endif // _GLIBCXX_CONDITION_VARIABLE

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