Files
MiniGUI/src/libc/nucleus_mutex.c
T

254 lines
6.2 KiB
C

///////////////////////////////////////////////////////////////////////////////
//
// IMPORTANT NOTICE
//
// The following open source license statement does not apply to any
// entity in the Exception List published by FMSoft.
//
// For more information, please visit:
//
// https://www.fmsoft.cn/exception-list
//
//////////////////////////////////////////////////////////////////////////////
/*
* This file is part of MiniGUI, a mature cross-platform windowing
* and Graphics User Interface (GUI) support system for embedded systems
* and smart IoT devices.
*
* Copyright (C) 2002~2018, Beijing FMSoft Technologies Co., Ltd.
* Copyright (C) 1998~2002, WEI Yongming
*
* This program is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* This program 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 General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*
* Or,
*
* As this program is a library, any link to this program must follow
* GNU General Public License version 3 (GPLv3). If you cannot accept
* GPLv3, you need to be licensed from FMSoft.
*
* If you have got a commercial license of this program, please use it
* under the terms and conditions of the commercial license.
*
* For more information about the commercial license, please refer to
* <http://www.minigui.com/blog/minigui-licensing-policy/>.
*/
/*
** nucleus_mutex.c: Implementation of the POSIX pthread mutex functions
** for Nucleus.
**
** Create Date: 2005-03-03
*/
#include "mgconfig.h"
#if defined (__NUCLEUS__) && defined (_MGUSE_OWN_PTHREAD)
#include <nucleus.h>
#include "common.h"
#include "nucleus_pprivate.h"
#define NU_INHERIT 0
#define NU_NO_INHERIT 1
//=============================================================================
// Mutexes
//-----------------------------------------------------------------------------
// Mutex attributes manipulation functions
//-----------------------------------------------------------------------------
// Initialize attribute object
int pthread_mutexattr_init ( pthread_mutexattr_t *attr)
{
PTHREAD_ENTRY ();
PTHREAD_CHECK (attr);
attr->protocol = NU_NO_INHERIT;
PTHREAD_RETURN (0);
}
//set priority inherit protocol
int pthread_mutexattr_setprotocol (pthread_mutexattr_t *attr, int protocol)
{
PTHREAD_ENTRY ();
PTHREAD_CHECK (attr);
if (protocol != NU_NO_INHERIT && protocol != NU_INHERIT)
PTHREAD_RETURN (EINVAL);
attr->protocol = protocol;
PTHREAD_RETURN (0);
}
//get priority inherit protocol
int pthread_mutexattr_getprotocol (pthread_mutexattr_t *attr, int* protocol)
{
PTHREAD_ENTRY ();
PTHREAD_CHECK (attr);
*protocol = attr->protocol;
PTHREAD_RETURN (0);
}
//-----------------------------------------------------------------------------
// Destroy attribute object
int pthread_mutexattr_destroy ( pthread_mutexattr_t *attr)
{
PTHREAD_ENTRY();
PTHREAD_CHECK(attr);
// Nothing to do here...
PTHREAD_RETURN(0);
}
// ----------------------------------------------------------------------------
//
//-----------------------------------------------------------------------------
// Mutex functions
//-----------------------------------------------------------------------------
// Initialize mutex. If mutex_attr is NULL, use default attributes.
int pthread_mutex_init (pthread_mutex_t *mutex,
const pthread_mutexattr_t *mutex_attr)
{
pthread_mutexattr_t use_attr;
UINT status;
// Set up the attributes we are going to use
if (mutex_attr == NULL)
pthread_mutexattr_init (&use_attr);
else
use_attr = *mutex_attr;
__nupth_get_name (mutex->name, NAME_TYPE_MUTEX, 1);
//create mutex
status = NU_Create_Semaphore ((NU_SEMAPHORE *)&mutex->nu_mutex, mutex->name,
1, NU_PRIORITY);
if (status == NU_SUCCESS)
PTHREAD_RETURN (0);
PTHREAD_RETURN (EINVAL);
}
//-----------------------------------------------------------------------------
// Destroy mutex.
int pthread_mutex_destroy (pthread_mutex_t *mutex)
{
UINT status;
PTHREAD_ENTRY ();
PTHREAD_CHECK (mutex);
/*
if (mutex->nu_mutex.nu_mutex_ownership_count > 0)
PTHREAD_RETURN (EBUSY);
*/
status = NU_Delete_Semaphore ((NU_SEMAPHORE *)&mutex->nu_mutex);
if (status == NU_SUCCESS)
PTHREAD_RETURN (0);
PTHREAD_RETURN (EINVAL);
}
//-----------------------------------------------------------------------------
// Lock mutex, waiting for it if necessary.
int pthread_mutex_lock (pthread_mutex_t *mutex)
{
UINT status;
PTHREAD_ENTRY ();
PTHREAD_CHECK (mutex);
status = NU_Obtain_Semaphore ((NU_SEMAPHORE *)&mutex->nu_mutex, NU_SUSPEND);
if (status == NU_SUCCESS)
PTHREAD_RETURN (0);
PTHREAD_RETURN (EINVAL);
}
//-----------------------------------------------------------------------------
// Try to lock mutex.
int pthread_mutex_trylock (pthread_mutex_t *mutex)
{
int ret;
UINT status;
PTHREAD_ENTRY ();
PTHREAD_CHECK (mutex);
status = NU_Obtain_Semaphore ((NU_SEMAPHORE *)&mutex->nu_mutex, NU_NO_SUSPEND);
switch (status) {
case NU_SUCCESS:
ret = 0;
break;
case NU_UNAVAILABLE:
ret = EBUSY;
break;
default:
ret = EINVAL;
break;
}
PTHREAD_RETURN (ret);
}
//-----------------------------------------------------------------------------
// Unlock mutex.
int pthread_mutex_unlock (pthread_mutex_t *mutex)
{
UINT status;
PTHREAD_ENTRY ();
PTHREAD_CHECK (mutex);
status = NU_Release_Semaphore ((NU_SEMAPHORE *)&mutex->nu_mutex);
if (status == NU_SUCCESS)
PTHREAD_RETURN (0);
PTHREAD_RETURN (EINVAL);
}
#endif /* __NUCLEUS__ && _MGUSE_OWN_PTHREAD */