23ade9b6f0
git-svn-id: svn://svn.code.sf.net/p/loki-lib/code/trunk@321 7ec92016-0320-0410-acc4-a06ded1c099a
332 lines
10 KiB
C++
332 lines
10 KiB
C++
#ifndef LOKI_THREADS_H_
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#define LOKI_THREADS_H_
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////////////////////////////////////////////////////////////////////////////////
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// macro LOKI_DEFAULT_THREADING
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// Selects the default threading model for certain components of Loki
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// If you don't define it, it defaults to single-threaded
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// All classes in Loki have configurable threading model; LOKI_DEFAULT_THREADING
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// affects only default template arguments
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////////////////////////////////////////////////////////////////////////////////
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// $Header$
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#if defined(LOKI_CLASS_LEVEL_THREADING) || defined(LOKI_OBJECT_LEVEL_THREADING)
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#define LOKI_DEFAULT_THREADING_NO_OBJ_LEVEL ::Loki::ClassLevelLockable
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#if defined(LOKI_CLASS_LEVEL_THREADING) && !defined(LOKI_OBJECT_LEVEL_THREADING)
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#define LOKI_DEFAULT_THREADING ::Loki::ClassLevelLockable
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#else
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#define LOKI_DEFAULT_THREADING ::Loki::ObjectLevelLockable
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#endif
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#if defined(_WIN32)
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#include <windows.h>
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#else
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#include <pthread.h>
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#endif
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#else
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#define LOKI_DEFAULT_THREADING ::Loki::SingleThreaded
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#define LOKI_DEFAULT_THREADING_NO_OBJ_LEVEL ::Loki::SingleThreaded
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#endif
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#include <cassert>
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namespace Loki
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{
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////////////////////////////////////////////////////////////////////////////////
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// class template SingleThreaded
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// Implementation of the ThreadingModel policy used by various classes
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// Implements a single-threaded model; no synchronization
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////////////////////////////////////////////////////////////////////////////////
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template <class Host>
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class SingleThreaded
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{
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public:
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struct Lock
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{
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Lock() {}
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explicit Lock(const SingleThreaded&) {}
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explicit Lock(const SingleThreaded*) {}
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};
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typedef Host VolatileType;
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typedef int IntType;
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static IntType AtomicAdd(volatile IntType& lval, IntType val)
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{ return lval += val; }
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static IntType AtomicSubtract(volatile IntType& lval, IntType val)
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{ return lval -= val; }
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static IntType AtomicMultiply(volatile IntType& lval, IntType val)
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{ return lval *= val; }
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static IntType AtomicDivide(volatile IntType& lval, IntType val)
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{ return lval /= val; }
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static IntType AtomicIncrement(volatile IntType& lval)
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{ return ++lval; }
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static IntType AtomicDecrement(volatile IntType& lval)
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{ return --lval; }
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static void AtomicAssign(volatile IntType & lval, IntType val)
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{ lval = val; }
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static void AtomicAssign(IntType & lval, volatile IntType & val)
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{ lval = val; }
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};
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#if defined(_WINDOWS_) || defined(_WINDOWS_H)
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#define LOKI_THREADS_MUTEX CRITICAL_SECTION
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#define LOKI_THREADS_MUTEX_INIT ::InitializeCriticalSection
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#define LOKI_THREADS_MUTEX_DELETE ::DeleteCriticalSection
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#define LOKI_THREADS_MUTEX_LOCK ::EnterCriticalSection
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#define LOKI_THREADS_MUTEX_UNLOCK ::LeaveCriticalSection
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#define LOKI_THREADS_LONG LONG
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#define LOKI_THREADS_ATOMIC_FUNCTIONS \
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static IntType AtomicIncrement(volatile IntType& lval) \
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{ return InterlockedIncrement(&const_cast<IntType&>(lval)); } \
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\
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static IntType AtomicDecrement(volatile IntType& lval) \
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{ return InterlockedDecrement(&const_cast<IntType&>(lval)); } \
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\
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static void AtomicAssign(volatile IntType& lval, IntType val) \
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{ InterlockedExchange(&const_cast<IntType&>(lval), val); } \
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\
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static void AtomicAssign(IntType& lval, volatile IntType& val) \
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{ InterlockedExchange(&lval, val); }
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#elif defined(_PTHREAD_H) //POSIX threads (pthread.h)
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#define LOKI_THREADS_MUTEX pthread_mutex_t
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#define LOKI_THREADS_MUTEX_INIT(x) ::pthread_mutex_init(x,0)
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#define LOKI_THREADS_MUTEX_DELETE ::pthread_mutex_destroy
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#define LOKI_THREADS_MUTEX_LOCK ::pthread_mutex_lock
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#define LOKI_THREADS_MUTEX_UNLOCK ::pthread_mutex_unlock
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#define LOKI_THREADS_LONG long
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#define LOKI_THREADS_ATOMIC(x) \
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pthread_mutex_lock(&atomic_mutex_); \
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x; \
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pthread_mutex_unlock(&atomic_mutex_)
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#define LOKI_THREADS_ATOMIC_FUNCTIONS \
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private: \
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static pthread_mutex_t atomic_mutex_; \
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public: \
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static IntType AtomicIncrement(volatile IntType& lval) \
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{ LOKI_THREADS_ATOMIC( lval++ ); return lval; } \
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\
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static IntType AtomicDecrement(volatile IntType& lval) \
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{ LOKI_THREADS_ATOMIC(lval-- ); return lval; } \
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\
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static void AtomicAssign(volatile IntType& lval, IntType val) \
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{ LOKI_THREADS_ATOMIC( lval = val ); } \
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\
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static void AtomicAssign(IntType& lval, volatile IntType& val) \
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{ LOKI_THREADS_ATOMIC( lval = val ); }
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#endif
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#if defined(_WINDOWS_) || defined(_WINDOWS_H) || defined(_PTHREAD_H)
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////////////////////////////////////////////////////////////////////////////////
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// class template ObjectLevelLockable
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// Implementation of the ThreadingModel policy used by various classes
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// Implements a object-level locking scheme
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////////////////////////////////////////////////////////////////////////////////
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template <class Host>
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class ObjectLevelLockable
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{
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mutable LOKI_THREADS_MUTEX mtx_;
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public:
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ObjectLevelLockable()
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{
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LOKI_THREADS_MUTEX_INIT(&mtx_);
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}
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ObjectLevelLockable(const ObjectLevelLockable&)
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{
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LOKI_THREADS_MUTEX_INIT(&mtx_);
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}
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~ObjectLevelLockable()
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{
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LOKI_THREADS_MUTEX_DELETE(&mtx_);
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}
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class Lock;
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friend class Lock;
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class Lock
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{
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public:
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explicit Lock(const ObjectLevelLockable& host) : host_(host)
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{
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LOKI_THREADS_MUTEX_LOCK(&host_.mtx_);
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}
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explicit Lock(const ObjectLevelLockable* host) : host_(*host)
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{
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LOKI_THREADS_MUTEX_LOCK(&host_.mtx_);
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}
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~Lock()
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{
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LOKI_THREADS_MUTEX_UNLOCK(&host_.mtx_);
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}
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private:
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Lock();
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Lock(const Lock&);
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Lock& operator=(const Lock&);
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const ObjectLevelLockable& host_;
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};
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typedef volatile Host VolatileType;
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typedef LOKI_THREADS_LONG IntType;
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LOKI_THREADS_ATOMIC_FUNCTIONS
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};
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#if defined(_PTHREAD_H)
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template <class Host>
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pthread_mutex_t ObjectLevelLockable<Host>::atomic_mutex_(PTHREAD_MUTEX_INITIALIZER);
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#endif
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////////////////////////////////////////////////////////////////////////////////
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// class template ClassLevelLockable
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// Implementation of the ThreadingModel policy used by various classes
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// Implements a class-level locking scheme
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////////////////////////////////////////////////////////////////////////////////
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template <class Host>
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class ClassLevelLockable
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{
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struct Initializer
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{
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LOKI_THREADS_MUTEX mtx_;
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bool init_;
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Initializer() : init_(false)
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{
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LOKI_THREADS_MUTEX_INIT(&mtx_);
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init_ = true;
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}
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~Initializer()
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{
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assert(init_);
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LOKI_THREADS_MUTEX_DELETE(&mtx_);
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}
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};
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static Initializer initializer_;
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public:
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class Lock;
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friend class Lock;
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class Lock
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{
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public:
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Lock()
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{
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assert(initializer_.init_);
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LOKI_THREADS_MUTEX_LOCK(&initializer_.mtx_);
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}
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explicit Lock(const ClassLevelLockable&)
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{
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assert(initializer_.init_);
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LOKI_THREADS_MUTEX_LOCK(&initializer_.mtx_);
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}
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explicit Lock(const ClassLevelLockable*)
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{
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assert(initializer_.init_);
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LOKI_THREADS_MUTEX_LOCK(&initializer_.mtx_);
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}
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~Lock()
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{
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assert(initializer_.init_);
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LOKI_THREADS_MUTEX_UNLOCK(&initializer_.mtx_);
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}
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private:
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Lock(const Lock&);
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Lock& operator=(const Lock&);
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};
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typedef volatile Host VolatileType;
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typedef LOKI_THREADS_LONG IntType;
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LOKI_THREADS_ATOMIC_FUNCTIONS
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};
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#if defined(_PTHREAD_H)
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template <class Host>
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pthread_mutex_t ClassLevelLockable<Host>::atomic_mutex_(PTHREAD_MUTEX_INITIALIZER);
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#endif
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template <class Host>
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typename ClassLevelLockable<Host>::Initializer
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ClassLevelLockable<Host>::initializer_;
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#endif // defined(_WINDOWS_) || defined(_WINDOWS_H) || defined(_PTHREAD_H)
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} // namespace Loki
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////////////////////////////////////////////////////////////////////////////////
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// Change log:
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// June 20, 2001: ported by Nick Thurn to gcc 2.95.3. Kudos, Nick!!!
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// July 26, 2005: some asserts by Peter K<>mmel
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////////////////////////////////////////////////////////////////////////////////
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#endif
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// $Log$
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// Revision 1.15 2005/10/24 20:35:12 syntheticpp
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// small changes for Threads; add compile test for Threads.h
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//
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// Revision 1.14 2005/10/24 15:05:24 syntheticpp
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// adding support for POSIX threads (pthreads.h), Thanks to Ilya Volvovski
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//
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// Revision 1.13 2005/09/26 07:33:04 syntheticpp
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// move macros into LOKI_ namespace
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//
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// Revision 1.12 2005/07/31 14:00:48 syntheticpp
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// make object level threading possible
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//
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// Revision 1.11 2005/07/28 14:26:09 syntheticpp
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// add cvs Header/Log
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//
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