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cuberite-2a/source/OSSupport/IsThread.h

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// IsThread.h
// Interfaces to the cIsThread class representing an OS-independent wrapper for a class that implements a thread.
// This class will eventually suupersede the old cThread class
/*
Usage:
To have a new thread, declare a class descending from cIsClass.
Then override its Execute() method to provide your thread processing.
In the descending class' constructor call the Start() method to start the thread once you're finished with initialization.
*/
#pragma once
#ifndef CISTHREAD_H_INCLUDED
#define CISTHREAD_H_INCLUDED
class cIsThread
{
protected:
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/// This is the main thread entrypoint
virtual void Execute(void) = 0;
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/// The overriden Execute() method should check this value periodically and terminate if this is true
volatile bool m_ShouldTerminate;
public:
cIsThread(const AString & iThreadName);
~cIsThread();
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/// Starts the thread; returns without waiting for the actual start
bool Start(void);
/// Signals the thread to terminate and waits until it's finished
void Stop(void);
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/// Waits for the thread to finish. Doesn't signalize the ShouldTerminate flag
bool Wait(void);
/// Returns the OS-dependent thread ID for the caller's thread
static unsigned long GetCurrentID(void);
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protected:
AString m_ThreadName;
// Value used for "no handle":
#ifdef _WIN32
#define NULL_HANDLE NULL
#else
#define NULL_HANDLE 0
#endif
#ifdef _WIN32
HANDLE m_Handle;
static DWORD_PTR __stdcall thrExecute(LPVOID a_Param)
{
// Create a window so that the thread can be identified by 3rd party tools:
HWND IdentificationWnd = CreateWindow("STATIC", ((cIsThread *)a_Param)->m_ThreadName.c_str(), 0, 0, 0, 0, WS_OVERLAPPED, NULL, NULL, NULL, NULL);
// Run the thread:
((cIsThread *)a_Param)->Execute();
// Destroy the identification window:
DestroyWindow(IdentificationWnd);
return 0;
}
#else // _WIN32
pthread_t m_Handle;
static void * thrExecute(void * a_Param)
{
((cIsThread *)a_Param)->Execute();
return NULL;
}
#endif // else _WIN32
} ;
#endif // CISTHREAD_H_INCLUDED