540 lines
22 KiB
C++
540 lines
22 KiB
C++
//////////////////////////////////////////////////////////////////////////////
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//
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// (C) Copyright Ion Gaztanaga 2005-2012. Distributed under the Boost
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// Software License, Version 1.0. (See accompanying file
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// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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//
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// See http://www.boost.org/libs/interprocess for documentation.
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//
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//////////////////////////////////////////////////////////////////////////////
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#ifndef BOOST_INTERPROCESS_named_upgradable_mutex_HPP
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#define BOOST_INTERPROCESS_named_upgradable_mutex_HPP
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#ifndef BOOST_CONFIG_HPP
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# include <boost/config.hpp>
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#endif
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#
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#if defined(BOOST_HAS_PRAGMA_ONCE)
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# pragma once
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#endif
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#include <boost/interprocess/detail/config_begin.hpp>
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#include <boost/interprocess/detail/workaround.hpp>
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#include <boost/interprocess/creation_tags.hpp>
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#include <boost/interprocess/exceptions.hpp>
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#include <boost/interprocess/shared_memory_object.hpp>
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#include <boost/interprocess/detail/managed_open_or_create_impl.hpp>
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#include <boost/interprocess/sync/interprocess_upgradable_mutex.hpp>
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#include <boost/interprocess/sync/shm/named_creation_functor.hpp>
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#include <boost/interprocess/permissions.hpp>
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//!\file
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//!Describes a named upgradable mutex class for inter-process synchronization
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namespace boost {
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namespace interprocess {
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#if !defined(BOOST_INTERPROCESS_DOXYGEN_INVOKED)
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namespace ipcdetail{ class interprocess_tester; }
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#endif //#ifndef BOOST_INTERPROCESS_DOXYGEN_INVOKED
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class named_condition;
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//!A upgradable mutex with a global name, so it can be found from different
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//!processes. This mutex can't be placed in shared memory, and
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//!each process should have it's own named upgradable mutex.
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class named_upgradable_mutex
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{
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#if !defined(BOOST_INTERPROCESS_DOXYGEN_INVOKED)
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//Non-copyable
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named_upgradable_mutex();
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named_upgradable_mutex(const named_upgradable_mutex &);
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named_upgradable_mutex &operator=(const named_upgradable_mutex &);
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friend class named_condition;
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#endif //#ifndef BOOST_INTERPROCESS_DOXYGEN_INVOKED
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public:
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//!Creates a global upgradable mutex with a name.
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//!If the upgradable mutex can't be created throws interprocess_exception
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named_upgradable_mutex(create_only_t, const char *name, const permissions &perm = permissions());
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//!Opens or creates a global upgradable mutex with a name.
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//!If the upgradable mutex is created, this call is equivalent to
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//!named_upgradable_mutex(create_only_t, ...)
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//!If the upgradable mutex is already created, this call is equivalent to
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//!named_upgradable_mutex(open_only_t, ... ).
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named_upgradable_mutex(open_or_create_t, const char *name, const permissions &perm = permissions());
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//!Opens a global upgradable mutex with a name if that upgradable mutex
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//!is previously.
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//!created. If it is not previously created this function throws
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//!interprocess_exception.
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named_upgradable_mutex(open_only_t, const char *name);
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#if defined(BOOST_INTERPROCESS_WCHAR_NAMED_RESOURCES) || defined(BOOST_INTERPROCESS_DOXYGEN_INVOKED)
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//!Creates a global upgradable mutex with a name.
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//!If the upgradable mutex can't be created throws interprocess_exception
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//!
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//!Note: This function is only available on operating systems with
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//! native wchar_t APIs (e.g. Windows).
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named_upgradable_mutex(create_only_t, const wchar_t *name, const permissions &perm = permissions());
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//!Opens or creates a global upgradable mutex with a name.
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//!If the upgradable mutex is created, this call is equivalent to
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//!named_upgradable_mutex(create_only_t, ...)
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//!If the upgradable mutex is already created, this call is equivalent to
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//!named_upgradable_mutex(open_only_t, ... ).
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//!
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//!Note: This function is only available on operating systems with
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//! native wchar_t APIs (e.g. Windows).
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named_upgradable_mutex(open_or_create_t, const wchar_t *name, const permissions &perm = permissions());
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//!Opens a global upgradable mutex with a name if that upgradable mutex
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//!is previously.
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//!created. If it is not previously created this function throws
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//!interprocess_exception.
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//!
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//!Note: This function is only available on operating systems with
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//! native wchar_t APIs (e.g. Windows).
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named_upgradable_mutex(open_only_t, const wchar_t *name);
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#endif //defined(BOOST_INTERPROCESS_WCHAR_NAMED_RESOURCES) || defined(BOOST_INTERPROCESS_DOXYGEN_INVOKED)
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//!Destroys *this and indicates that the calling process is finished using
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//!the resource. The destructor function will deallocate
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//!any system resources allocated by the system for use by this process for
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//!this resource. The resource can still be opened again calling
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//!the open constructor overload. To erase the resource from the system
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//!use remove().
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~named_upgradable_mutex();
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//Exclusive locking
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//!Requires: The calling thread does not own the mutex.
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//!
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//!Effects: The calling thread tries to obtain exclusive ownership of the mutex,
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//! and if another thread has exclusive, sharable or upgradable ownership of
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//! the mutex, it waits until it can obtain the ownership.
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//!Throws: interprocess_exception on error.
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//!
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//!Note: A program may deadlock if the thread that has ownership calls
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//! this function. If the implementation can detect the deadlock,
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//! an exception could be thrown
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void lock();
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//!Requires: The calling thread does not own the mutex.
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//!
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//!Effects: The calling thread tries to acquire exclusive ownership of the mutex
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//! without waiting. If no other thread has exclusive, sharable or upgradable
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//! ownership of the mutex this succeeds.
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//!Returns: If it can acquire exclusive ownership immediately returns true.
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//! If it has to wait, returns false.
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//!Throws: interprocess_exception on error.
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//!
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//!Note: A program may deadlock if the thread that has ownership calls
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//! this function. If the implementation can detect the deadlock,
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//! an exception could be thrown
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bool try_lock();
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//!Requires: The calling thread does not own the mutex.
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//!
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//!Effects: The calling thread tries to acquire exclusive ownership of the mutex
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//! waiting if necessary until no other thread has exclusive, sharable or
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//! upgradable ownership of the mutex or abs_time is reached.
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//!Returns: If acquires exclusive ownership, returns true. Otherwise returns false.
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//!Throws: interprocess_exception on error.
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//!
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//!Note: A program may deadlock if the thread that has ownership calls
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//! this function. If the implementation can detect the deadlock,
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//! an exception could be thrown
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template<class TimePoint>
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bool timed_lock(const TimePoint &abs_time);
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//!Same as `timed_lock`, but this function is modeled after the
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//!standard library interface.
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template<class TimePoint> bool try_lock_until(const TimePoint &abs_time)
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{ return this->timed_lock(abs_time); }
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//!Same as `timed_lock`, but this function is modeled after the
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//!standard library interface.
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template<class Duration> bool try_lock_for(const Duration &dur)
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{ return this->timed_lock(ipcdetail::duration_to_ustime(dur)); }
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//!Precondition: The thread must have exclusive ownership of the mutex.
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//!Effects: The calling thread releases the exclusive ownership of the mutex.
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//!Throws: An exception derived from interprocess_exception on error.
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void unlock();
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//Sharable locking
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//!Requires: The calling thread does not own the mutex.
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//!
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//!Effects: The calling thread tries to obtain sharable ownership of the mutex,
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//! and if another thread has exclusive ownership of the mutex,
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//! waits until it can obtain the ownership.
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//!Throws: interprocess_exception on error.
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//!
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//!Note: A program may deadlock if the thread that has ownership calls
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//! this function. If the implementation can detect the deadlock,
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//! an exception could be thrown
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void lock_sharable();
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//!Same as `lock_sharable` but with a std-compatible interface
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//!
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void lock_shared()
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{ this->lock_sharable(); }
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//!Requires: The calling thread does not own the mutex.
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//!
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//!Effects: The calling thread tries to acquire sharable ownership of the mutex
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//! without waiting. If no other thread has exclusive ownership
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//! of the mutex this succeeds.
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//!Returns: If it can acquire sharable ownership immediately returns true. If it
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//! has to wait, returns false.
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//!Throws: interprocess_exception on error.
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//!
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//!Note: A program may deadlock if the thread that has ownership calls
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//! this function. If the implementation can detect the deadlock,
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//! an exception could be thrown
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bool try_lock_sharable();
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//!Same as `try_lock_sharable` but with a std-compatible interface
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//!
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bool try_lock_shared()
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{ return this->try_lock_sharable(); }
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//!Requires: The calling thread does not own the mutex.
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//!
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//!Effects: The calling thread tries to acquire sharable ownership of the mutex
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//! waiting if necessary until no other thread has exclusive
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//! ownership of the mutex or abs_time is reached.
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//!Returns: If acquires sharable ownership, returns true. Otherwise returns false.
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//!Throws: interprocess_exception on error.
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//!
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//!Note: A program may deadlock if the thread that has ownership calls
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//! this function. If the implementation can detect the deadlock,
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//! an exception could be thrown
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template<class TimePoint>
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bool timed_lock_sharable(const TimePoint &abs_time);
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//!Same as `timed_lock_sharable`, but this function is modeled after the
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//!standard library interface.
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template<class TimePoint> bool try_lock_shared_until(const TimePoint &abs_time)
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{ return this->timed_lock_sharable(abs_time); }
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//!Same as `timed_lock_sharable`, but this function is modeled after the
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//!standard library interface.
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template<class Duration> bool try_lock_shared_for(const Duration &dur)
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{ return this->timed_lock_sharable(ipcdetail::duration_to_ustime(dur)); }
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//!Precondition: The thread must have sharable ownership of the mutex.
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//!Effects: The calling thread releases the sharable ownership of the mutex.
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//!Throws: An exception derived from interprocess_exception on error.
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void unlock_sharable();
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//!Same as `unlock_sharable` but with a std-compatible interface
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//!
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void unlock_shared()
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{ this->unlock_sharable(); }
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//Upgradable locking
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//!Requires: The calling thread does not own the mutex.
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//!
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//!Effects: The calling thread tries to obtain upgradable ownership of the mutex,
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//! and if another thread has exclusive or upgradable ownership of the mutex,
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//! waits until it can obtain the ownership.
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//!Throws: interprocess_exception on error.
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//!
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//!Note: A program may deadlock if the thread that has ownership calls
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//! this function. If the implementation can detect the deadlock,
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//! an exception could be thrown
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void lock_upgradable();
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//!Requires: The calling thread does not own the mutex.
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//!
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//!Effects: The calling thread tries to acquire upgradable ownership of the mutex
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//! without waiting. If no other thread has exclusive or upgradable ownership
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//! of the mutex this succeeds.
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//!Returns: If it can acquire upgradable ownership immediately returns true.
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//! If it has to wait, returns false.
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//!Throws: interprocess_exception on error.
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//!
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//!Note: A program may deadlock if the thread that has ownership calls
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//! this function. If the implementation can detect the deadlock,
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//! an exception could be thrown
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bool try_lock_upgradable();
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//!Requires: The calling thread does not own the mutex.
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//!
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//!Effects: The calling thread tries to acquire upgradable ownership of the mutex
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//! waiting if necessary until no other thread has exclusive or upgradable
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//! ownership of the mutex or abs_time is reached.
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//!Returns: If acquires upgradable ownership, returns true. Otherwise returns false.
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//!Throws: interprocess_exception on error.
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//!
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//!Note: A program may deadlock if the thread that has ownership calls
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//! this function. If the implementation can detect the deadlock,
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//! an exception could be thrown
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template<class TimePoint>
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bool timed_lock_upgradable(const TimePoint &abs_time);
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//!Precondition: The thread must have upgradable ownership of the mutex.
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//!Effects: The calling thread releases the upgradable ownership of the mutex.
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//!Throws: An exception derived from interprocess_exception on error.
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void unlock_upgradable();
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//Demotions
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//!Precondition: The thread must have exclusive ownership of the mutex.
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//!Effects: The thread atomically releases exclusive ownership and acquires
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//! upgradable ownership. This operation is non-blocking.
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//!Throws: An exception derived from interprocess_exception on error.
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void unlock_and_lock_upgradable();
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//!Precondition: The thread must have exclusive ownership of the mutex.
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//!Effects: The thread atomically releases exclusive ownership and acquires
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//! sharable ownership. This operation is non-blocking.
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//!Throws: An exception derived from interprocess_exception on error.
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void unlock_and_lock_sharable();
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//!Precondition: The thread must have upgradable ownership of the mutex.
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//!Effects: The thread atomically releases upgradable ownership and acquires
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//! sharable ownership. This operation is non-blocking.
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//!Throws: An exception derived from interprocess_exception on error.
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void unlock_upgradable_and_lock_sharable();
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//Promotions
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//!Precondition: The thread must have upgradable ownership of the mutex.
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//!Effects: The thread atomically releases upgradable ownership and acquires
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//! exclusive ownership. This operation will block until all threads with
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//! sharable ownership release it.
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//!Throws: An exception derived from interprocess_exception on error.
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void unlock_upgradable_and_lock();
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//!Precondition: The thread must have upgradable ownership of the mutex.
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//!Effects: The thread atomically releases upgradable ownership and tries to
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//! acquire exclusive ownership. This operation will fail if there are threads
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//! with sharable ownership, but it will maintain upgradable ownership.
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//!Returns: If acquires exclusive ownership, returns true. Otherwise returns false.
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//!Throws: An exception derived from interprocess_exception on error.
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bool try_unlock_upgradable_and_lock();
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//!Precondition: The thread must have upgradable ownership of the mutex.
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//!Effects: The thread atomically releases upgradable ownership and tries to acquire
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//! exclusive ownership, waiting if necessary until abs_time. This operation will
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//! fail if there are threads with sharable ownership or timeout reaches, but it
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//! will maintain upgradable ownership.
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//!Returns: If acquires exclusive ownership, returns true. Otherwise returns false.
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//!Throws: An exception derived from interprocess_exception on error.
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template<class TimePoint>
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bool timed_unlock_upgradable_and_lock(const TimePoint &abs_time);
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//!Precondition: The thread must have sharable ownership of the mutex.
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//!Effects: The thread atomically releases sharable ownership and tries to acquire
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//! exclusive ownership. This operation will fail if there are threads with sharable
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//! or upgradable ownership, but it will maintain sharable ownership.
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//!Returns: If acquires exclusive ownership, returns true. Otherwise returns false.
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//!Throws: An exception derived from interprocess_exception on error.
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bool try_unlock_sharable_and_lock();
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//!Precondition: The thread must have sharable ownership of the mutex.
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//!Effects: The thread atomically releases sharable ownership and tries to acquire
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//! upgradable ownership. This operation will fail if there are threads with sharable
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//! or upgradable ownership, but it will maintain sharable ownership.
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//!Returns: If acquires upgradable ownership, returns true. Otherwise returns false.
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//!Throws: An exception derived from interprocess_exception on error.
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bool try_unlock_sharable_and_lock_upgradable();
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//!Erases a named upgradable mutex from the system.
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//!Returns false on error. Never throws.
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static bool remove(const char *name);
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#if defined(BOOST_INTERPROCESS_WCHAR_NAMED_RESOURCES) || defined(BOOST_INTERPROCESS_DOXYGEN_INVOKED)
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//!Erases a named upgradable mutex from the system.
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//!Returns false on error. Never throws.
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//!
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//!Note: This function is only available on operating systems with
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//! native wchar_t APIs (e.g. Windows).
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static bool remove(const wchar_t *name);
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#endif
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#if !defined(BOOST_INTERPROCESS_DOXYGEN_INVOKED)
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private:
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friend class ipcdetail::interprocess_tester;
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void dont_close_on_destruction();
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interprocess_upgradable_mutex *mutex() const
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{ return static_cast<interprocess_upgradable_mutex*>(m_shmem.get_user_address()); }
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typedef ipcdetail::managed_open_or_create_impl<shared_memory_object, 0, true, false> open_create_impl_t;
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open_create_impl_t m_shmem;
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typedef ipcdetail::named_creation_functor<interprocess_upgradable_mutex> construct_func_t;
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#endif //#ifndef BOOST_INTERPROCESS_DOXYGEN_INVOKED
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};
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#if !defined(BOOST_INTERPROCESS_DOXYGEN_INVOKED)
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inline named_upgradable_mutex::~named_upgradable_mutex()
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{}
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inline named_upgradable_mutex::named_upgradable_mutex
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(create_only_t, const char *name, const permissions &perm)
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: m_shmem (create_only
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,name
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,sizeof(interprocess_upgradable_mutex) +
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open_create_impl_t::ManagedOpenOrCreateUserOffset
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,read_write
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,0
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,construct_func_t(ipcdetail::DoCreate)
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,perm)
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{}
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inline named_upgradable_mutex::named_upgradable_mutex
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(open_or_create_t, const char *name, const permissions &perm)
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: m_shmem (open_or_create
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,name
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,sizeof(interprocess_upgradable_mutex) +
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open_create_impl_t::ManagedOpenOrCreateUserOffset
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,read_write
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,0
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,construct_func_t(ipcdetail::DoOpenOrCreate)
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,perm)
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{}
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inline named_upgradable_mutex::named_upgradable_mutex
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(open_only_t, const char *name)
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: m_shmem (open_only
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,name
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,read_write
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,0
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,construct_func_t(ipcdetail::DoOpen))
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{}
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#if defined(BOOST_INTERPROCESS_WCHAR_NAMED_RESOURCES) || defined(BOOST_INTERPROCESS_DOXYGEN_INVOKED)
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inline named_upgradable_mutex::named_upgradable_mutex
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(create_only_t, const wchar_t *name, const permissions &perm)
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: m_shmem (create_only
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,name
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,sizeof(interprocess_upgradable_mutex) +
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open_create_impl_t::ManagedOpenOrCreateUserOffset
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,read_write
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,0
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,construct_func_t(ipcdetail::DoCreate)
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,perm)
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{}
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inline named_upgradable_mutex::named_upgradable_mutex
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(open_or_create_t, const wchar_t *name, const permissions &perm)
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: m_shmem (open_or_create
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,name
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,sizeof(interprocess_upgradable_mutex) +
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open_create_impl_t::ManagedOpenOrCreateUserOffset
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,read_write
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,0
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,construct_func_t(ipcdetail::DoOpenOrCreate)
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,perm)
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{}
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inline named_upgradable_mutex::named_upgradable_mutex
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(open_only_t, const wchar_t *name)
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: m_shmem (open_only
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,name
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,read_write
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,0
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,construct_func_t(ipcdetail::DoOpen))
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{}
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#endif
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inline void named_upgradable_mutex::dont_close_on_destruction()
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{ ipcdetail::interprocess_tester::dont_close_on_destruction(m_shmem); }
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inline void named_upgradable_mutex::lock()
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{ this->mutex()->lock(); }
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inline void named_upgradable_mutex::unlock()
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{ this->mutex()->unlock(); }
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inline bool named_upgradable_mutex::try_lock()
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{ return this->mutex()->try_lock(); }
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template<class TimePoint>
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inline bool named_upgradable_mutex::timed_lock(const TimePoint &abs_time)
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{ return this->mutex()->timed_lock(abs_time); }
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inline void named_upgradable_mutex::lock_upgradable()
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{ this->mutex()->lock_upgradable(); }
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inline void named_upgradable_mutex::unlock_upgradable()
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{ this->mutex()->unlock_upgradable(); }
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inline bool named_upgradable_mutex::try_lock_upgradable()
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{ return this->mutex()->try_lock_upgradable(); }
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template<class TimePoint>
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inline bool named_upgradable_mutex::timed_lock_upgradable(const TimePoint &abs_time)
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{ return this->mutex()->timed_lock_upgradable(abs_time); }
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inline void named_upgradable_mutex::lock_sharable()
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{ this->mutex()->lock_sharable(); }
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inline void named_upgradable_mutex::unlock_sharable()
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{ this->mutex()->unlock_sharable(); }
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inline bool named_upgradable_mutex::try_lock_sharable()
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{ return this->mutex()->try_lock_sharable(); }
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template<class TimePoint>
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inline bool named_upgradable_mutex::timed_lock_sharable(const TimePoint &abs_time)
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{ return this->mutex()->timed_lock_sharable(abs_time); }
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inline void named_upgradable_mutex::unlock_and_lock_upgradable()
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{ this->mutex()->unlock_and_lock_upgradable(); }
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inline void named_upgradable_mutex::unlock_and_lock_sharable()
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{ this->mutex()->unlock_and_lock_sharable(); }
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inline void named_upgradable_mutex::unlock_upgradable_and_lock_sharable()
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{ this->mutex()->unlock_upgradable_and_lock_sharable(); }
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inline void named_upgradable_mutex::unlock_upgradable_and_lock()
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{ this->mutex()->unlock_upgradable_and_lock(); }
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inline bool named_upgradable_mutex::try_unlock_upgradable_and_lock()
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{ return this->mutex()->try_unlock_upgradable_and_lock(); }
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template<class TimePoint>
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inline bool named_upgradable_mutex::timed_unlock_upgradable_and_lock(const TimePoint &abs_time)
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{ return this->mutex()->timed_unlock_upgradable_and_lock(abs_time); }
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inline bool named_upgradable_mutex::try_unlock_sharable_and_lock()
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{ return this->mutex()->try_unlock_sharable_and_lock(); }
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inline bool named_upgradable_mutex::try_unlock_sharable_and_lock_upgradable()
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{ return this->mutex()->try_unlock_sharable_and_lock_upgradable(); }
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inline bool named_upgradable_mutex::remove(const char *name)
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{ return shared_memory_object::remove(name); }
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#if defined(BOOST_INTERPROCESS_WCHAR_NAMED_RESOURCES) || defined(BOOST_INTERPROCESS_DOXYGEN_INVOKED)
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inline bool named_upgradable_mutex::remove(const wchar_t *name)
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{ return shared_memory_object::remove(name); }
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#endif
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#endif //#ifndef BOOST_INTERPROCESS_DOXYGEN_INVOKED
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} //namespace interprocess {
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} //namespace boost {
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#include <boost/interprocess/detail/config_end.hpp>
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#endif //BOOST_INTERPROCESS_named_upgradable_mutex_HPP
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