view src/thread/epoc/SDL_syssem.cpp @ 3846:66fb40445587 SDL-ryan-multiple-audio-device

Removed distinction between "available" and "init" in audio backends, since both had to be checked for success as a pair at the higher level and several of the Available methods were just always-succeed placeholders anyhow. Now the availability check is done in the init code, and the higher level tries all possible drivers until one manages to initialize successfully.
author Ryan C. Gordon <icculus@icculus.org>
date Tue, 17 Oct 2006 09:09:21 +0000
parents 92947e3a18db
children
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/*
    SDL - Simple DirectMedia Layer
    Copyright (C) 1997-2006 Sam Lantinga

    This library is free software; you can redistribute it and/or
    modify it under the terms of the GNU Lesser General Public
    License as published by the Free Software Foundation; either
    version 2.1 of the License, or (at your option) any later version.

    This library is distributed in the hope that it will be useful,
    but WITHOUT ANY WARRANTY; without even the implied warranty of
    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
    Lesser General Public License for more details.

    You should have received a copy of the GNU Lesser General Public
    License along with this library; if not, write to the Free Software
    Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA

    Sam Lantinga
    slouken@libsdl.org
*/
#include "SDL_config.h"

/*
    SDL_syssem.cpp

    Epoc version by Markus Mertama  (w@iki.fi)
*/

/* Semaphore functions using the Win32 API */

#include <e32std.h>

#include "SDL_error.h"
#include "SDL_thread.h"


#define SDL_MUTEX_TIMEOUT -2

struct SDL_semaphore
 {
 TInt handle;
 TInt count;
 };

extern TInt CreateUnique(TInt (*aFunc)(const TDesC& aName, TAny*, TAny*), TAny*, TAny*);
extern TInt NewThread(const TDesC& aName, TAny* aPtr1, TAny* aPtr2);

TInt NewSema(const TDesC& aName, TAny* aPtr1, TAny* aPtr2) 
    {
    TInt value = *((TInt*) aPtr2);
    return ((RSemaphore*)aPtr1)->CreateGlobal(aName, value);
    }

/* Create a semaphore */
SDL_sem *SDL_CreateSemaphore(Uint32 initial_value)
{
   RSemaphore s;
   TInt status = CreateUnique(NewSema, &s, &initial_value);
   if(status != KErrNone)
	 {
			SDL_SetError("Couldn't create semaphore");
	}
    SDL_semaphore* sem = new /*(ELeave)*/ SDL_semaphore;  
    sem->handle = s.Handle();
	sem->count = initial_value;
	return(sem);
}

/* Free the semaphore */
void SDL_DestroySemaphore(SDL_sem *sem)
{
	if ( sem ) 
	{
    RSemaphore sema;
    sema.SetHandle(sem->handle);
	sema.Signal(sema.Count());
    sema.Close();
    delete sem;
	sem = NULL;
	}
}


  struct TInfo
    {
        TInfo(TInt aTime, TInt aHandle) : 
        iTime(aTime), iHandle(aHandle), iVal(0) {}
        TInt iTime;
        TInt iHandle;
        TInt iVal; 
    };

TBool ThreadRun(TAny* aInfo)
    {
        TInfo* info = STATIC_CAST(TInfo*, aInfo);
        User::After(info->iTime);
        RSemaphore sema;
        sema.SetHandle(info->iHandle);
        sema.Signal();
        info->iVal = SDL_MUTEX_TIMEOUT;
        return 0;
    }
    
  
    
    
void _WaitAll(SDL_sem *sem)
    {
       //since SemTryWait may changed the counter.
       //this may not be atomic, but hopes it works.
    RSemaphore sema;
    sema.SetHandle(sem->handle);
    sema.Wait();
    while(sem->count < 0)
        {
        sema.Wait();
        }    
    }

int SDL_SemWaitTimeout(SDL_sem *sem, Uint32 timeout)
{
	if ( ! sem ) {
		SDL_SetError("Passed a NULL sem");
		return -1;
	}

	if ( timeout == SDL_MUTEX_MAXWAIT )
	    {
	    _WaitAll(sem);
		return SDL_MUTEX_MAXWAIT;
	    } 
	
	
	RThread thread;
	
	TInfo* info = new (ELeave)TInfo(timeout, sem->handle);
	
    TInt status = CreateUnique(NewThread, &thread, info);
  
	if(status != KErrNone)
	    return status;
	
	thread.Resume();
	
	_WaitAll(sem);
	
	if(thread.ExitType() == EExitPending)
	    {
	        thread.Kill(SDL_MUTEX_TIMEOUT);
	    }
	
	thread.Close();
	
	return info->iVal;
}

int SDL_SemTryWait(SDL_sem *sem)
{
    if(sem->count > 0)
        {
        sem->count--;
        }
    return SDL_MUTEX_TIMEOUT;
}

int SDL_SemWait(SDL_sem *sem)
{
	return SDL_SemWaitTimeout(sem, SDL_MUTEX_MAXWAIT);
}

/* Returns the current count of the semaphore */
Uint32 SDL_SemValue(SDL_sem *sem)
{
	if ( ! sem ) {
		SDL_SetError("Passed a NULL sem");
		return 0;
	}
	return sem->count;
}

int SDL_SemPost(SDL_sem *sem)
{
	if ( ! sem ) {
		SDL_SetError("Passed a NULL sem");
		return -1;
	}
	sem->count++;
    RSemaphore sema;
    sema.SetHandle(sem->handle);
	sema.Signal();
	return 0;
}