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// **********************************************************************
//
// Copyright (c) 2003-2005 ZeroC, Inc. All rights reserved.
//
// This copy of Ice is licensed to you under the terms described in the
// ICE_LICENSE file included in this distribution.
//
// **********************************************************************
#ifndef ICE_UTIL_THREAD_H
#define ICE_UTIL_THREAD_H
#include <IceUtil/Shared.h>
#include <IceUtil/Handle.h>
#include <IceUtil/Mutex.h>
namespace IceUtil
{
class Time;
class ICE_UTIL_API ThreadControl
{
public:
ThreadControl();
#ifdef _WIN32
ThreadControl(HANDLE, DWORD);
#else
ThreadControl(pthread_t);
#endif
ThreadControl(const ThreadControl&);
~ThreadControl();
ThreadControl& operator=(const ThreadControl&);
bool operator==(const ThreadControl&) const;
bool operator!=(const ThreadControl&) const;
//
// Wait until the controlled thread terminates. The call has POSIX
// semantics.
//
// At most one thread can wait for the termination of a given
// thread. Calling join on a thread on which another thread is
// already waiting for termination results in undefined behaviour,
// as does joining with a thread after having joined with it
// previously, or joining with a detached thread.
//
void join();
//
// Detach a thread. Once a thread is detached, it cannot be
// detached again, nor can it be joined with. Every thread that
// was created using the IceUtil::Thread class must either be
// joined with or detached exactly once. Detaching a thread a
// second time, or detaching a thread that was previously joined
// with results in undefined behavior.
//
void detach();
static void sleep(const Time&);
static void yield();
private:
#ifdef _WIN32
HANDLE _handle;
DWORD _id;
#else
pthread_t _thread;
#endif
};
class ICE_UTIL_API Thread : virtual public IceUtil::Shared
{
public:
Thread();
virtual ~Thread();
virtual void run() = 0;
ThreadControl start(size_t = 0);
ThreadControl getThreadControl() const;
bool operator==(const Thread&) const;
bool operator!=(const Thread&) const;
bool operator<(const Thread&) const;
//
// Check whether a thread is still alive. This is useful to implement
// a non-blocking join().
//
bool isAlive() const;
//
// This function is an implementation detail;
// do not call it.
//
void _done();
protected:
Mutex _stateMutex;
bool _started;
bool _running;
#ifdef _WIN32
HANDLE _handle;
DWORD _id;
#else
pthread_t _thread;
#endif
private:
Thread(const Thread&); // Copying is forbidden
void operator=(const Thread&); // Assignment is forbidden
};
typedef Handle<Thread> ThreadPtr;
}
#endif
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