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							192 lines
						
					
					
						
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							192 lines
						
					
					
						
							6.1 KiB
						
					
					
				
								/*
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								    Copyright 2005-2013 Intel Corporation.  All Rights Reserved.
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								    This file is part of Threading Building Blocks.
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								    Threading Building Blocks is free software; you can redistribute it
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								    and/or modify it under the terms of the GNU General Public License
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								    version 2 as published by the Free Software Foundation.
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								    Threading Building Blocks is distributed in the hope that it will be
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								    useful, but WITHOUT ANY WARRANTY; without even the implied warranty
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								    of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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								    GNU General Public License for more details.
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								    You should have received a copy of the GNU General Public License
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								    along with Threading Building Blocks; if not, write to the Free Software
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								    Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA
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								    As a special exception, you may use this file as part of a free software
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								    library without restriction.  Specifically, if other files instantiate
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								    templates or use macros or inline functions from this file, or you compile
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								    this file and link it with other files to produce an executable, this
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								    file does not by itself cause the resulting executable to be covered by
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								    the GNU General Public License.  This exception does not however
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								    invalidate any other reasons why the executable file might be covered by
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								    the GNU General Public License.
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								*/
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								#ifndef __TBB_spin_mutex_H
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								#define __TBB_spin_mutex_H
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								#include <cstddef>
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								#include <new>
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								#include "aligned_space.h"
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								#include "tbb_stddef.h"
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								#include "tbb_machine.h"
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								#include "tbb_profiling.h"
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								namespace tbb {
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								//! A lock that occupies a single byte.
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								/** A spin_mutex is a spin mutex that fits in a single byte.  
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								    It should be used only for locking short critical sections 
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								    (typically less than 20 instructions) when fairness is not an issue.  
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								    If zero-initialized, the mutex is considered unheld.
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								    @ingroup synchronization */
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								class spin_mutex {
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								    //! 0 if lock is released, 1 if lock is acquired.
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								    __TBB_atomic_flag flag;
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								public:
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								    //! Construct unacquired lock.
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								    /** Equivalent to zero-initialization of *this. */
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								    spin_mutex() : flag(0) {
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								#if TBB_USE_THREADING_TOOLS
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								        internal_construct();
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								#endif
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								    }
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								    //! Represents acquisition of a mutex.
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								    class scoped_lock : internal::no_copy {
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								    private:
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								        //! Points to currently held mutex, or NULL if no lock is held.
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								        spin_mutex* my_mutex; 
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								        //! Value to store into spin_mutex::flag to unlock the mutex. 
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								        /** This variable is no longer used. Instead, 0 and 1 are used to 
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								            represent that the lock is free and acquired, respectively. 
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								            We keep the member variable here to ensure backward compatibility */
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								        __TBB_Flag my_unlock_value;
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								        //! Like acquire, but with ITT instrumentation.
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								        void __TBB_EXPORTED_METHOD internal_acquire( spin_mutex& m );
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								        //! Like try_acquire, but with ITT instrumentation.
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								        bool __TBB_EXPORTED_METHOD internal_try_acquire( spin_mutex& m );
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								        //! Like release, but with ITT instrumentation.
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								        void __TBB_EXPORTED_METHOD internal_release();
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								        friend class spin_mutex;
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								    public:
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								        //! Construct without acquiring a mutex.
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								        scoped_lock() : my_mutex(NULL), my_unlock_value(0) {}
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								        //! Construct and acquire lock on a mutex.
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								        scoped_lock( spin_mutex& m ) : my_unlock_value(0) { 
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								#if TBB_USE_THREADING_TOOLS||TBB_USE_ASSERT
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								            my_mutex=NULL;
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								            internal_acquire(m);
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								#else
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								            __TBB_LockByte(m.flag);
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								            my_mutex=&m;
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								#endif /* TBB_USE_THREADING_TOOLS||TBB_USE_ASSERT*/
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								        }
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								        //! Acquire lock.
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								        void acquire( spin_mutex& m ) {
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								#if TBB_USE_THREADING_TOOLS||TBB_USE_ASSERT
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								            internal_acquire(m);
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								#else
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								            __TBB_LockByte(m.flag);
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								            my_mutex = &m;
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								#endif /* TBB_USE_THREADING_TOOLS||TBB_USE_ASSERT*/
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								        }
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								        //! Try acquiring lock (non-blocking)
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								        /** Return true if lock acquired; false otherwise. */
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								        bool try_acquire( spin_mutex& m ) {
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								#if TBB_USE_THREADING_TOOLS||TBB_USE_ASSERT
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								            return internal_try_acquire(m);
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								#else
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								            bool result = __TBB_TryLockByte(m.flag);
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								            if( result )
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								                my_mutex = &m;
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								            return result;
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								#endif /* TBB_USE_THREADING_TOOLS||TBB_USE_ASSERT*/
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								        }
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								        //! Release lock
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								        void release() {
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								#if TBB_USE_THREADING_TOOLS||TBB_USE_ASSERT
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								            internal_release();
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								#else
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								            __TBB_UnlockByte(my_mutex->flag, 0);
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								            my_mutex = NULL;
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								#endif /* TBB_USE_THREADING_TOOLS||TBB_USE_ASSERT */
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								        }
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								        //! Destroy lock.  If holding a lock, releases the lock first.
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								        ~scoped_lock() {
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								            if( my_mutex ) {
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								#if TBB_USE_THREADING_TOOLS||TBB_USE_ASSERT
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								                internal_release();
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								#else
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								                __TBB_UnlockByte(my_mutex->flag, 0);
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								#endif /* TBB_USE_THREADING_TOOLS||TBB_USE_ASSERT */
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								            }
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								        }
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								    };
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								    void __TBB_EXPORTED_METHOD internal_construct();
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								    // Mutex traits
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								    static const bool is_rw_mutex = false;
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								    static const bool is_recursive_mutex = false;
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								    static const bool is_fair_mutex = false;
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								    // ISO C++0x compatibility methods
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								    //! Acquire lock
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								    void lock() {
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								#if TBB_USE_THREADING_TOOLS
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								        aligned_space<scoped_lock,1> tmp;
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								        new(tmp.begin()) scoped_lock(*this);
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								#else
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								        __TBB_LockByte(flag);
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								#endif /* TBB_USE_THREADING_TOOLS*/
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								    }
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								    //! Try acquiring lock (non-blocking)
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								    /** Return true if lock acquired; false otherwise. */
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								    bool try_lock() {
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								#if TBB_USE_THREADING_TOOLS
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								        aligned_space<scoped_lock,1> tmp;
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								        return (new(tmp.begin()) scoped_lock)->internal_try_acquire(*this);
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								#else
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								        return __TBB_TryLockByte(flag);
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								#endif /* TBB_USE_THREADING_TOOLS*/
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								    }
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								    //! Release lock
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								    void unlock() {
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								#if TBB_USE_THREADING_TOOLS
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								        aligned_space<scoped_lock,1> tmp;
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								        scoped_lock& s = *tmp.begin();
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								        s.my_mutex = this;
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								        s.internal_release();
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								#else
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								        __TBB_store_with_release(flag, 0);
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								#endif /* TBB_USE_THREADING_TOOLS */
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								    }
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								    friend class scoped_lock;
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								};
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								__TBB_DEFINE_PROFILING_SET_NAME(spin_mutex)
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								} // namespace tbb
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								#endif /* __TBB_spin_mutex_H */
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