ipc.c 47.8 KB
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/*
 * File      : ipc.c
 * This file is part of RT-Thread RTOS
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 * COPYRIGHT (C) 2006 - 2011, RT-Thread Development Team
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 *
 * The license and distribution terms for this file may be
 * found in the file LICENSE in this distribution or at
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 * http://www.rt-thread.org/license/LICENSE
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 *
 * Change Logs:
 * Date           Author       Notes
 * 2006-03-14     Bernard      the first version
 * 2006-04-25     Bernard      implement semaphore
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 * 2006-05-03     Bernard      add RT_IPC_DEBUG
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 *                             modify the type of IPC waiting time to rt_int32_t
 * 2006-05-10     Bernard      fix the semaphore take bug and add IPC object
 * 2006-05-12     Bernard      implement mailbox and message queue
 * 2006-05-20     Bernard      implement mutex
 * 2006-05-23     Bernard      implement fast event
 * 2006-05-24     Bernard      implement event
 * 2006-06-03     Bernard      fix the thread timer init bug
 * 2006-06-05     Bernard      fix the mutex release bug
 * 2006-06-07     Bernard      fix the message queue send bug
 * 2006-08-04     Bernard      add hook support
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 * 2009-05-21     Yi.qiu       fix the sem release bug
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 * 2009-07-18     Bernard      fix the event clear bug
 * 2009-09-09     Bernard      remove fast event and fix ipc release bug
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 * 2009-10-10     Bernard      change semaphore and mutex value to unsigned value
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 * 2009-10-25     Bernard      change the mb/mq receive timeout to 0 if the
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 *                             re-calculated delta tick is a negative number.
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 * 2009-12-16     Bernard      fix the rt_ipc_object_suspend issue when IPC flag
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 *                             is RT_IPC_FLAG_PRIO
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 * 2010-01-20     mbbill       remove rt_ipc_object_decrease function.
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 * 2010-04-20     Bernard      move memcpy outside interrupt disable in mq
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 * 2010-10-26     yi.qiu       add module support in rt_mp_delete and rt_mq_delete
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 * 2010-11-10     Bernard      add IPC reset command implementation.
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 */

#include <rtthread.h>
#include <rthw.h>

#include "kservice.h"

#ifdef RT_USING_HOOK
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extern void (*rt_object_trytake_hook)(struct rt_object *object);
extern void (*rt_object_take_hook)(struct rt_object *object);
extern void (*rt_object_put_hook)(struct rt_object *object);
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#endif

/**
 * @addtogroup IPC
 */

/*@{*/

/**
 * This function will initialize an IPC object
 *
 * @param ipc the IPC object
 *
 * @return the operation status, RT_EOK on successful
 */
rt_inline rt_err_t rt_ipc_object_init(struct rt_ipc_object *ipc)
{
	/* init ipc object */
	rt_list_init(&(ipc->suspend_thread));

	return RT_EOK;
}

/**
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 * This function will suspend a thread to a specified list. IPC object or some double-queue
 * object (mailbox etc.) contains this kind of list.
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 *
 * @param ipc the IPC object
 * @param thread the thread object to be suspended
 *
 * @return the operation status, RT_EOK on successful
 */
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rt_inline rt_err_t rt_ipc_list_suspend(rt_list_t *list, struct rt_thread *thread, rt_uint8_t flag)
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{
	/* suspend thread */
	rt_thread_suspend(thread);

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	switch (flag)
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	{
	case RT_IPC_FLAG_FIFO:
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		rt_list_insert_before(list, &(thread->tlist));
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		break;

	case RT_IPC_FLAG_PRIO:
		{
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			struct rt_list_node *n;
			struct rt_thread *sthread;
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			/* find a suitable position */
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			for (n = list->next; n != list; n = n->next)
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			{
				sthread = rt_list_entry(n, struct rt_thread, tlist);

				/* find out */
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				if (thread->current_priority < sthread->current_priority)
				{
					/* insert this thread before the sthread */
					rt_list_insert_before(&(sthread->tlist), &(thread->tlist));
					break;
				}
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			}
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			/* not found a suitable position, append to the end of suspend_thread list */
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			if (n == list)
				rt_list_insert_before(list, &(thread->tlist));
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		}
		break;
	}

	return RT_EOK;
}

/**
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 * This function will resume the first thread in the list of a IPC object:
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 * - remove the thread from suspend queue of IPC object
 * - put the thread into system ready queue
 *
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 * @param list the thread list
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 *
 * @return the operation status, RT_EOK on successful
 */
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rt_inline rt_err_t rt_ipc_list_resume(rt_list_t *list)
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{
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	struct rt_thread *thread;
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	/* get thread entry */
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	thread = rt_list_entry(list->next, struct rt_thread, tlist);
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	RT_DEBUG_LOG(RT_DEBUG_IPC, ("resume thread:%s\n", thread->name));
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	/* resume it */
	rt_thread_resume(thread);

	return RT_EOK;
}

/**
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 * This function will resume all suspended threads in a list, including
 * suspend list of IPC object and private list of mailbox etc.
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 *
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 * @param list of the threads to resume
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 *
 * @return the operation status, RT_EOK on successful
 */
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rt_inline rt_err_t rt_ipc_list_resume_all(rt_list_t *list)
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{
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	struct rt_thread *thread;
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	register rt_ubase_t temp;

	/* wakeup all suspend threads */
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	while (!rt_list_isempty(list))
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	{
		/* disable interrupt */
		temp = rt_hw_interrupt_disable();

		/* get next suspend thread */
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		thread = rt_list_entry(list->next, struct rt_thread, tlist);
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		/* set error code to RT_ERROR */
		thread->error = -RT_ERROR;

		/*
		 * resume thread
		 * In rt_thread_resume function, it will remove current thread from
		 * suspend list
		 */
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		rt_thread_resume(thread);
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		/* enable interrupt */
		rt_hw_interrupt_enable(temp);
	}

	return RT_EOK;
}

#ifdef RT_USING_SEMAPHORE
/**
 * This function will initialize a semaphore and put it under control of resource
 * management.
 *
 * @param sem the semaphore object
 * @param name the name of semaphore
 * @param value the init value of semaphore
 * @param flag the flag of semaphore
 *
 * @return the operation status, RT_EOK on successful
 */
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rt_err_t rt_sem_init(rt_sem_t sem, const char *name, rt_uint32_t value, rt_uint8_t flag)
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{
	RT_ASSERT(sem != RT_NULL);

	/* init object */
	rt_object_init(&(sem->parent.parent), RT_Object_Class_Semaphore, name);

	/* init ipc object */
	rt_ipc_object_init(&(sem->parent));

	/* set init value */
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	sem->value = value;
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	/* set parent */
	sem->parent.parent.flag = flag;

	return RT_EOK;
}

/**
 * This function will detach a semaphore from resource management
 *
 * @param sem the semaphore object
 *
 * @return the operation status, RT_EOK on successful
 *
 * @see rt_sem_delete
 */
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rt_err_t rt_sem_detach(rt_sem_t sem)
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{
	RT_ASSERT(sem != RT_NULL);

	/* wakeup all suspend threads */
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	rt_ipc_list_resume_all(&(sem->parent.suspend_thread));
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	/* detach semaphore object */
	rt_object_detach(&(sem->parent.parent));

	return RT_EOK;
}

#ifdef RT_USING_HEAP
/**
 * This function will create a semaphore from system resource
 *
 * @param name the name of semaphore
 * @param value the init value of semaphore
 * @param flag the flag of semaphore
 *
 * @return the created semaphore, RT_NULL on error happen
 *
 * @see rt_sem_init
 */
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rt_sem_t rt_sem_create(const char *name, rt_uint32_t value, rt_uint8_t flag)
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{
	rt_sem_t sem;

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	RT_DEBUG_NOT_IN_INTERRUPT;
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	/* allocate object */
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	sem = (rt_sem_t)rt_object_allocate(RT_Object_Class_Semaphore, name);
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	if (sem == RT_NULL)
		return sem;
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	/* init ipc object */
	rt_ipc_object_init(&(sem->parent));

	/* set init value */
	sem->value	= value;

	/* set parent */
	sem->parent.parent.flag = flag;

	return sem;
}

/**
 * This function will delete a semaphore object and release the memory
 *
 * @param sem the semaphore object
 *
 * @return the error code
 *
 * @see rt_sem_detach
 */
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rt_err_t rt_sem_delete(rt_sem_t sem)
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{
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	RT_DEBUG_NOT_IN_INTERRUPT;
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	RT_ASSERT(sem != RT_NULL);

	/* wakeup all suspend threads */
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	rt_ipc_list_resume_all(&(sem->parent.suspend_thread));
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	/* delete semaphore object */
	rt_object_delete(&(sem->parent.parent));

	return RT_EOK;
}
#endif

/**
 * This function will take a semaphore, if the semaphore is unavailable, the
 * thread shall wait for a specified time.
 *
 * @param sem the semaphore object
 * @param time the waiting time
 *
 * @return the error code
 */
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rt_err_t rt_sem_take(rt_sem_t sem, rt_int32_t time)
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{
	register rt_base_t temp;
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	struct rt_thread *thread;
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	RT_ASSERT(sem != RT_NULL);

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	RT_OBJECT_HOOK_CALL(rt_object_trytake_hook, (&(sem->parent.parent)));
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	/* disable interrupt */
	temp = rt_hw_interrupt_disable();

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	RT_DEBUG_LOG(RT_DEBUG_IPC,
		("thread %s take sem:%s, which value is: %d\n", rt_thread_self()->name,
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		((struct rt_object *)sem)->name, sem->value));
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	if (sem->value > 0)
	{
		/* semaphore is available */
		sem->value --;

		/* enable interrupt */
		rt_hw_interrupt_enable(temp);
	}
	else
	{
		/* no waiting, return with timeout */
		if (time == 0 )
		{
			rt_hw_interrupt_enable(temp);
			return -RT_ETIMEOUT;
		}
		else
		{
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			/* current context checking */
			RT_DEBUG_NOT_IN_INTERRUPT;
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			/* semaphore is unavailable, push to suspend list */
			/* get current thread */
			thread = rt_thread_self();

			/* reset thread error number */
			thread->error = RT_EOK;

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			RT_DEBUG_LOG(RT_DEBUG_IPC, ("sem take: suspend thread - %s\n", thread->name));
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			/* suspend thread */
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			rt_ipc_list_suspend(&(sem->parent.suspend_thread),
				thread, sem->parent.parent.flag);
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			/* has waiting time, start thread timer */
			if (time > 0)
			{
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				RT_DEBUG_LOG(RT_DEBUG_IPC, ("set thread:%s to timer list\n", thread->name));
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				/* reset the timeout of thread timer and start it */
				rt_timer_control(&(thread->thread_timer), RT_TIMER_CTRL_SET_TIME, &time);
				rt_timer_start(&(thread->thread_timer));
			}

			/* enable interrupt */
			rt_hw_interrupt_enable(temp);

			/* do schedule */
			rt_schedule();

			if (thread->error != RT_EOK)
			{
				return thread->error;
			}
		}
	}

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	RT_OBJECT_HOOK_CALL(rt_object_take_hook, (&(sem->parent.parent)));
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	return RT_EOK;
}

/**
 * This function will try to take a semaphore and immediately return
 *
 * @param sem the semaphore object
 *
 * @return the error code
 */
rt_err_t rt_sem_trytake(rt_sem_t sem)
{
	return rt_sem_take(sem, 0);
}

/**
 * This function will release a semaphore, if there are threads suspended on
 * semaphore, it will be waked up.
 *
 * @param sem the semaphore object
 *
 * @return the error code
 */
rt_err_t rt_sem_release(rt_sem_t sem)
{
	register rt_base_t temp;
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	register rt_bool_t need_schedule;
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	RT_OBJECT_HOOK_CALL(rt_object_put_hook, (&(sem->parent.parent)));
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	need_schedule = RT_FALSE;

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	/* disable interrupt */
	temp = rt_hw_interrupt_disable();

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	RT_DEBUG_LOG(RT_DEBUG_IPC,
		("thread %s releases sem:%s, which value is: %d\n", rt_thread_self()->name,
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		((struct rt_object *)sem)->name, sem->value));
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	if (!rt_list_isempty(&sem->parent.suspend_thread))
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	{
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		/* resume the suspended thread */
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		rt_ipc_list_resume(&(sem->parent.suspend_thread));
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		need_schedule = RT_TRUE;
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	}
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	else sem->value ++; /* increase value */
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	/* enable interrupt */
	rt_hw_interrupt_enable(temp);

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	/* resume a thread, re-schedule */
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	if (need_schedule == RT_TRUE)
		rt_schedule();
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	return RT_EOK;
}

/**
 * This function can get or set some extra attributions of a semaphore object.
 *
 * @param sem the semaphore object
 * @param cmd the execution command
 * @param arg the execution argument
 *
 * @return the error code
 */
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rt_err_t rt_sem_control(rt_sem_t sem, rt_uint8_t cmd, void *arg)
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{
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	rt_ubase_t level;
	RT_ASSERT(sem != RT_NULL);

	if (cmd == RT_IPC_CMD_RESET)
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	{
		rt_uint32_t value;

		/* get value */
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		value = (rt_uint32_t)arg;
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		/* disable interrupt */
		level = rt_hw_interrupt_disable();

		/* resume all waiting thread */
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		rt_ipc_list_resume_all(&sem->parent.suspend_thread);
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		/* set new value */
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		sem->value = (rt_uint16_t)value;
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		/* enable interrupt */
		rt_hw_interrupt_enable(level);

		return RT_EOK;
	}

	return -RT_ERROR;
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}
#endif /* end of RT_USING_SEMAPHORE */

#ifdef RT_USING_MUTEX
/**
 * This function will initialize a mutex and put it under control of resource
 * management.
 *
 * @param mutex the mutex object
 * @param name the name of mutex
 * @param flag the flag of mutex
 *
 * @return the operation status, RT_EOK on successful
 */
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rt_err_t rt_mutex_init(rt_mutex_t mutex, const char *name, rt_uint8_t flag)
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{
	RT_ASSERT(mutex != RT_NULL);

	/* init object */
	rt_object_init(&(mutex->parent.parent), RT_Object_Class_Mutex, name);

	/* init ipc object */
	rt_ipc_object_init(&(mutex->parent));

	mutex->value = 1;
	mutex->owner = RT_NULL;
	mutex->original_priority = 0xFF;
	mutex->hold  = 0;

	/* set flag */
	mutex->parent.parent.flag = flag;

	return RT_EOK;
}

/**
 * This function will detach a mutex from resource management
 *
 * @param mutex the mutex object
 *
 * @return the operation status, RT_EOK on successful
 *
 * @see rt_mutex_delete
 */
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rt_err_t rt_mutex_detach(rt_mutex_t mutex)
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{
	RT_ASSERT(mutex != RT_NULL);

	/* wakeup all suspend threads */
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	rt_ipc_list_resume_all(&(mutex->parent.suspend_thread));
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	/* detach semaphore object */
	rt_object_detach(&(mutex->parent.parent));

	return RT_EOK;
}

#ifdef RT_USING_HEAP
/**
 * This function will create a mutex from system resource
 *
 * @param name the name of mutex
 * @param flag the flag of mutex
 *
 * @return the created mutex, RT_NULL on error happen
 *
 * @see rt_mutex_init
 */
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rt_mutex_t rt_mutex_create(const char *name, rt_uint8_t flag)
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{
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	struct rt_mutex *mutex;
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	RT_DEBUG_NOT_IN_INTERRUPT;
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	/* allocate object */
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	mutex = (rt_mutex_t)rt_object_allocate(RT_Object_Class_Mutex, name);
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	if (mutex == RT_NULL)
		return mutex;
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	/* init ipc object */
	rt_ipc_object_init(&(mutex->parent));

	mutex->value = 1;
	mutex->owner = RT_NULL;
	mutex->original_priority = 0xFF;
	mutex->hold  = 0;

	/* set flag */
	mutex->parent.parent.flag = flag;

	return mutex;
}

/**
 * This function will delete a mutex object and release the memory
 *
 * @param mutex the mutex object
 *
 * @return the error code
 *
 * @see rt_mutex_detach
 */
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rt_err_t rt_mutex_delete(rt_mutex_t mutex)
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{
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	RT_DEBUG_NOT_IN_INTERRUPT;
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	RT_ASSERT(mutex != RT_NULL);

	/* wakeup all suspend threads */
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	rt_ipc_list_resume_all(&(mutex->parent.suspend_thread));
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	/* delete semaphore object */
	rt_object_delete(&(mutex->parent.parent));

	return RT_EOK;
}
#endif

/**
 * This function will take a mutex, if the mutex is unavailable, the
 * thread shall wait for a specified time.
 *
 * @param mutex the mutex object
 * @param time the waiting time
 *
 * @return the error code
 */
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rt_err_t rt_mutex_take(rt_mutex_t mutex, rt_int32_t time)
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{
	register rt_base_t temp;
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	struct rt_thread *thread;
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	/* this function must not be used in interrupt even if time = 0 */
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	RT_DEBUG_NOT_IN_INTERRUPT;
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	RT_ASSERT(mutex != RT_NULL);

	/* disable interrupt */
	temp = rt_hw_interrupt_disable();

	/* get current thread */
	thread = rt_thread_self();

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	RT_OBJECT_HOOK_CALL(rt_object_trytake_hook, (&(mutex->parent.parent)));
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	RT_DEBUG_LOG(RT_DEBUG_IPC,
		("mutex_take: current thread %s, mutex value: %d, hold: %d\n",
		thread->name, mutex->value, mutex->hold));
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	/* reset thread error */
	thread->error = RT_EOK;

	if (mutex->owner == thread)
	{
		/* it's the same thread */
		mutex->hold ++;
	}
	else
	{
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		/* The value of mutex is 1 in initial status. Therefore, if the
		 * value is great than 0, it indicates the mutex is avaible.
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		 */
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		if (mutex->value > 0)
		{
			/* mutex is available */
			mutex->value --;

			/* set mutex owner and original priority */
			mutex->owner = thread;
			mutex->original_priority = thread->current_priority;
			mutex->hold ++;
		}
		else
		{
			/* no waiting, return with timeout */
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			if (time == 0)
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			{
				/* set error as timeout */
				thread->error = -RT_ETIMEOUT;

				/* enable interrupt */
				rt_hw_interrupt_enable(temp);

				return -RT_ETIMEOUT;
			}
			else
			{
				/* mutex is unavailable, push to suspend list */
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				RT_DEBUG_LOG(RT_DEBUG_IPC,
					("mutex_take: suspend thread: %s\n", thread->name));

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				/* change the owner thread priority of mutex */
				if (thread->current_priority < mutex->owner->current_priority)
				{
					/* change the owner thread priority */
					rt_thread_control(mutex->owner, RT_THREAD_CTRL_CHANGE_PRIORITY,
						&thread->current_priority);
				}

				/* suspend current thread */
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				rt_ipc_list_suspend(&(mutex->parent.suspend_thread),
				thread, mutex->parent.parent.flag);
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				/* has waiting time, start thread timer */
				if (time > 0)
				{
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					RT_DEBUG_LOG(RT_DEBUG_IPC,
						("mutex_take: start the timer of thread:%s\n", thread->name));

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					/* reset the timeout of thread timer and start it */
					rt_timer_control(&(thread->thread_timer), RT_TIMER_CTRL_SET_TIME, &time);
					rt_timer_start(&(thread->thread_timer));
				}

				/* enable interrupt */
				rt_hw_interrupt_enable(temp);

				/* do schedule */
				rt_schedule();

				if (thread->error != RT_EOK)
				{
					/* return error */
					return thread->error;
				}
				else
				{
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					/* the mutex is taken successfully. */
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					/* disable interrupt */
					temp = rt_hw_interrupt_disable();
				}
			}
		}
	}

	/* enable interrupt */
	rt_hw_interrupt_enable(temp);

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	RT_OBJECT_HOOK_CALL(rt_object_take_hook, (&(mutex->parent.parent)));
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	return RT_EOK;
}

/**
 * This function will release a mutex, if there are threads suspended on mutex,
 * it will be waked up.
 *
 * @param mutex the mutex object
 *
 * @return the error code
 */
rt_err_t rt_mutex_release(rt_mutex_t mutex)
{
	register rt_base_t temp;
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	struct rt_thread *thread;
727
	rt_bool_t need_schedule;
728

729
	need_schedule = RT_FALSE;
730

731 732 733
	/* get current thread */
	thread = rt_thread_self();

734 735 736
	/* disable interrupt */
	temp = rt_hw_interrupt_disable();

737 738 739
	RT_DEBUG_LOG(RT_DEBUG_IPC,
		("mutex_release:current thread %s, mutex value: %d, hold: %d\n",
		thread->name, mutex->value, mutex->hold));
740

741
	RT_OBJECT_HOOK_CALL(rt_object_put_hook, (&(mutex->parent.parent)));
742

743
	/* mutex only can be released by owner */
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	if (thread != mutex->owner)
	{
		thread->error = -RT_ERROR;

		/* enable interrupt */
		rt_hw_interrupt_enable(temp);

		return -RT_ERROR;
	}

	/* decrease hold */
	mutex->hold --;
	/* if no hold */
	if (mutex->hold == 0)
	{
		/* change the owner thread to original priority */
760
		if (mutex->original_priority != mutex->owner->current_priority)
761 762
		{
			rt_thread_control(mutex->owner, RT_THREAD_CTRL_CHANGE_PRIORITY,
763
				&(mutex->original_priority));
764 765
		}

766
		/* wakeup suspended thread */
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		if (!rt_list_isempty(&mutex->parent.suspend_thread))
768
		{
769
			/* get suspended thread */
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			thread = rt_list_entry(mutex->parent.suspend_thread.next, struct rt_thread, tlist);

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			RT_DEBUG_LOG(RT_DEBUG_IPC, ("mutex_release: resume thread: %s\n", thread->name));
773

774 775 776 777
			/* set new owner and priority */
			mutex->owner = thread;
			mutex->original_priority = thread->current_priority;
			mutex->hold ++;
778 779

			/* resume thread */
780
			rt_ipc_list_resume(&(mutex->parent.suspend_thread));
781 782

			need_schedule = RT_TRUE;
783
		}
784 785
		else
		{
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			/* increase value */
			mutex->value ++;

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			/* clear owner */
			mutex->owner = RT_NULL;
791
			mutex->original_priority = 0xff;
792
		}
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	}

	/* enable interrupt */
	rt_hw_interrupt_enable(temp);

798
	/* perform a schedule */
799 800
	if (need_schedule == RT_TRUE)
		rt_schedule();
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	return RT_EOK;
}

/**
 * This function can get or set some extra attributions of a mutex object.
 *
 * @param mutex the mutex object
 * @param cmd the execution command
 * @param arg the execution argument
 *
 * @return the error code
 */
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rt_err_t rt_mutex_control(rt_mutex_t mutex, rt_uint8_t cmd, void *arg)
815
{
816
	return -RT_ERROR;
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}
#endif /* end of RT_USING_MUTEX */

#ifdef RT_USING_EVENT
/**
 * This function will initialize an event and put it under control of resource
 * management.
 *
 * @param event the event object
 * @param name the name of event
 * @param flag the flag of event
 *
 * @return the operation status, RT_EOK on successful
 */
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rt_err_t rt_event_init(rt_event_t event, const char *name, rt_uint8_t flag)
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{
	RT_ASSERT(event != RT_NULL);

	/* init object */
	rt_object_init(&(event->parent.parent), RT_Object_Class_Event, name);

	/* set parent flag */
	event->parent.parent.flag = flag;

	/* init ipc object */
	rt_ipc_object_init(&(event->parent));

	/* init event */
	event->set = 0;

	return RT_EOK;
}

/**
 * This function will detach an event object from resource management
 *
 * @param event the event object
 *
 * @return the operation status, RT_EOK on successful
 */
rt_err_t rt_event_detach(rt_event_t event)
{
	/* parameter check */
	RT_ASSERT(event != RT_NULL);

	/* resume all suspended thread */
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	rt_ipc_list_resume_all(&(event->parent.suspend_thread));
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	/* detach event object */
	rt_object_detach(&(event->parent.parent));

	return RT_EOK;
}

#ifdef RT_USING_HEAP
/**
 * This function will create an event object from system resource
 *
 * @param name the name of event
 * @param flag the flag of event
 *
 * @return the created event, RT_NULL on error happen
 */
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rt_event_t rt_event_create(const char *name, rt_uint8_t flag)
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{
	rt_event_t event;

884
	RT_DEBUG_NOT_IN_INTERRUPT;
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886
	/* allocate object */
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	event = (rt_event_t)rt_object_allocate(RT_Object_Class_Event, name);
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	if (event == RT_NULL)
		return event;
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	/* set parent */
	event->parent.parent.flag = flag;

	/* init ipc object */
	rt_ipc_object_init(&(event->parent));

	/* init event */
	event->set = 0;

	return event;
}

/**
 * This function will delete an event object and release the memory
 *
 * @param event the event object
 *
 * @return the error code
 */
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rt_err_t rt_event_delete(rt_event_t event)
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{
	/* parameter check */
	RT_ASSERT(event != RT_NULL);

915
	RT_DEBUG_NOT_IN_INTERRUPT;
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917
	/* resume all suspended thread */
918
	rt_ipc_list_resume_all(&(event->parent.suspend_thread));
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	/* delete event object */
	rt_object_delete(&(event->parent.parent));

	return RT_EOK;
}
#endif

/**
 * This function will send an event to the event object, if there are threads
 * suspended on event object, it will be waked up.
 *
 * @param event the event object
 * @param set the event set
 *
 * @return the error code
 */
rt_err_t rt_event_send(rt_event_t event, rt_uint32_t set)
{
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	struct rt_list_node *n;
	struct rt_thread *thread;
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	register rt_ubase_t level;
	register rt_base_t status;
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	rt_bool_t need_schedule;
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	/* parameter check */
	RT_ASSERT(event != RT_NULL);
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	if (set == 0)
		return -RT_ERROR;
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	need_schedule = RT_FALSE;
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	RT_OBJECT_HOOK_CALL(rt_object_put_hook, (&(event->parent.parent)));
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	/* disable interrupt */
	level = rt_hw_interrupt_disable();

	/* set event */
	event->set |= set;
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	if (!rt_list_isempty(&event->parent.suspend_thread))
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	{
		/* search thread list to resume thread */
		n = event->parent.suspend_thread.next;
		while (n != &(event->parent.suspend_thread))
		{
			/* get thread */
			thread = rt_list_entry(n, struct rt_thread, tlist);

			status = -RT_ERROR;
			if (thread->event_info & RT_EVENT_FLAG_AND)
			{
				if ((thread->event_set & event->set) == thread->event_set)
				{
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					/* received an AND event */
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					status = RT_EOK;
				}
			}
			else if (thread->event_info & RT_EVENT_FLAG_OR)
			{
				if (thread->event_set & event->set)
				{
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					/* save recieved event set */
					thread->event_set = thread->event_set & event->set;

					/* received an OR event */
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					status = RT_EOK;
				}
			}

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			/* move node to the next */
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			n = n->next;

			/* condition is satisfied, resume thread */
			if (status == RT_EOK)
			{
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				/* clear event */
				if (thread->event_info & RT_EVENT_FLAG_CLEAR)
					event->set &= ~thread->event_set;

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				/* resume thread, and thread list breaks out */
				rt_thread_resume(thread);

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				/* need do a scheduling */
				need_schedule = RT_TRUE;
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			}
		}
	}

	/* enable interrupt */
	rt_hw_interrupt_enable(level);

	/* do a schedule */
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	if (need_schedule == RT_TRUE)
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		rt_schedule();
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	return RT_EOK;
}

/**
 * This function will receive an event from event object, if the event is unavailable,
 * the thread shall wait for a specified time.
 *
 * @param event the fast event object
 * @param set the interested event set
 * @param option the receive option
 * @param timeout the waiting time
 * @param recved the received event
 *
 * @return the error code
 */
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rt_err_t rt_event_recv(rt_event_t event, rt_uint32_t set, rt_uint8_t option, rt_int32_t timeout, rt_uint32_t *recved)
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{
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	struct rt_thread *thread;
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	register rt_ubase_t level;
	register rt_base_t status;

1035
	RT_DEBUG_NOT_IN_INTERRUPT;
1036

1037 1038
	/* parameter check */
	RT_ASSERT(event != RT_NULL);
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	if (set == 0)
		return -RT_ERROR;
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	/* init status */
	status = -RT_ERROR;
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	/* get current thread */
	thread = rt_thread_self();
	/* reset thread error */
	thread->error = RT_EOK;
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1049
	RT_OBJECT_HOOK_CALL(rt_object_trytake_hook, (&(event->parent.parent)));
1050 1051 1052 1053 1054 1055 1056

	/* disable interrupt */
	level = rt_hw_interrupt_disable();

	/* check event set */
	if (option & RT_EVENT_FLAG_AND)
	{
1057 1058
		if ((event->set & set) == set)
			status = RT_EOK;
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	}
	else if (option & RT_EVENT_FLAG_OR)
	{
1062 1063
		if (event->set & set)
			status = RT_EOK;
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	}

	if (status == RT_EOK)
	{
		/* set received event */
1069
		*recved = (event->set & set);
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		/* received event */
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		if (option & RT_EVENT_FLAG_CLEAR)
			event->set &= ~set;
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	}
	else if (timeout == 0)
	{
		/* no waiting */
		thread->error = -RT_ETIMEOUT;
	}
	else
	{
		/* fill thread event info */
		thread->event_set  = set;
		thread->event_info = option;

		/* put thread to suspended thread list */
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		rt_ipc_list_suspend(&(event->parent.suspend_thread), thread, event->parent.parent.flag);
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		/* if there is a waiting timeout, active thread timer */
		if (timeout > 0)
		{
			/* reset the timeout of thread timer and start it */
			rt_timer_control(&(thread->thread_timer), RT_TIMER_CTRL_SET_TIME, &timeout);
			rt_timer_start(&(thread->thread_timer));
		}

		/* enable interrupt */
		rt_hw_interrupt_enable(level);

		/* do a schedule */
		rt_schedule();

		if (thread->error != RT_EOK)
		{
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			/* return error */
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			return thread->error;
		}

1109
		/* received an event, disable interrupt to protect */
1110 1111
		level = rt_hw_interrupt_disable();

1112 1113
		/* set received event */
		*recved = thread->event_set;
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	}

	/* enable interrupt */
	rt_hw_interrupt_enable(level);

1119
	RT_OBJECT_HOOK_CALL(rt_object_take_hook, (&(event->parent.parent)));
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	return thread->error;
}

/**
 * This function can get or set some extra attributions of an event object.
 *
 * @param event the event object
 * @param cmd the execution command
 * @param arg the execution argument
 *
 * @return the error code
 */
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rt_err_t rt_event_control(rt_event_t event, rt_uint8_t cmd, void *arg)
1134
{
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	rt_ubase_t level;
	RT_ASSERT(event != RT_NULL);

	if (cmd == RT_IPC_CMD_RESET)
	{
		/* disable interrupt */
		level = rt_hw_interrupt_disable();

		/* resume all waiting thread */
1144
		rt_ipc_list_resume_all(&event->parent.suspend_thread);
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		/* init event set */
		event->set = 0;

		/* enable interrupt */
		rt_hw_interrupt_enable(level);

		return RT_EOK;
	}

	return -RT_ERROR;
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}
#endif /* end of RT_USING_EVENT */

#ifdef RT_USING_MAILBOX
/**
 * This function will initialize a mailbox and put it under control of resource
 * management.
 *
 * @param mb the mailbox object
 * @param name the name of mailbox
 * @param msgpool the begin address of buffer to save received mail
 * @param size the size of mailbox
 * @param flag the flag of mailbox
 *
 * @return the operation status, RT_EOK on successful
 */
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rt_err_t rt_mb_init(rt_mailbox_t mb, const char *name, void *msgpool, rt_size_t size, rt_uint8_t flag)
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{
	RT_ASSERT(mb != RT_NULL);

	/* init object */
	rt_object_init(&(mb->parent.parent), RT_Object_Class_MailBox, name);

	/* set parent flag */
	mb->parent.parent.flag = flag;

	/* init ipc object */
	rt_ipc_object_init(&(mb->parent));

	/* init mailbox */
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	mb->msg_pool   = msgpool;
	mb->size       = size;
	mb->entry      = 0;
	mb->in_offset  = 0;
	mb->out_offset = 0;
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1192
	/* init an additional list of sender suspend thread */
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	rt_list_init(&(mb->suspend_sender_thread));

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	return RT_EOK;
}

/**
 * This function will detach a mailbox from resource management
 *
 * @param mb the mailbox object
 *
 * @return the operation status, RT_EOK on successful
 */
rt_err_t rt_mb_detach(rt_mailbox_t mb)
{
	/* parameter check */
	RT_ASSERT(mb != RT_NULL);

	/* resume all suspended thread */
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	rt_ipc_list_resume_all(&(mb->parent.suspend_thread));
	/* also resume all mailbox private suspended thread */
	rt_ipc_list_resume_all(&(mb->suspend_sender_thread));
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	/* detach mailbox object */
	rt_object_detach(&(mb->parent.parent));

	return RT_EOK;
}

#ifdef RT_USING_HEAP
/**
 * This function will create a mailbox object from system resource
 *
 * @param name the name of mailbox
 * @param size the size of mailbox
 * @param flag the flag of mailbox
 *
 * @return the created mailbox, RT_NULL on error happen
 */
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rt_mailbox_t rt_mb_create(const char *name, rt_size_t size, rt_uint8_t flag)
1232 1233 1234
{
	rt_mailbox_t mb;

1235
	RT_DEBUG_NOT_IN_INTERRUPT;
1236

1237
	/* allocate object */
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	mb = (rt_mailbox_t)rt_object_allocate(RT_Object_Class_MailBox, name);
1239 1240
	if (mb == RT_NULL)
		return mb;
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	/* set parent */
	mb->parent.parent.flag = flag;

	/* init ipc object */
	rt_ipc_object_init(&(mb->parent));

	/* init mailbox */
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	mb->size     = size;
	mb->msg_pool = rt_malloc(mb->size * sizeof(rt_uint32_t));
1251 1252 1253 1254 1255 1256 1257
	if (mb->msg_pool == RT_NULL)
	{
		/* delete mailbox object */
		rt_object_delete(&(mb->parent.parent));

		return RT_NULL;
	}
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	mb->entry = 0;
	mb->in_offset  = 0;
	mb->out_offset = 0;
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	/* init an additional list of sender suspend thread */
	rt_list_init(&(mb->suspend_sender_thread));

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	return mb;
}

/**
 * This function will delete a mailbox object and release the memory
 *
 * @param mb the mailbox object
 *
 * @return the error code
 */
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rt_err_t rt_mb_delete(rt_mailbox_t mb)
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{
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	RT_DEBUG_NOT_IN_INTERRUPT;
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1279 1280 1281 1282
	/* parameter check */
	RT_ASSERT(mb != RT_NULL);

	/* resume all suspended thread */
1283
	rt_ipc_list_resume_all(&(mb->parent.suspend_thread));
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1285 1286
	/* also resume all mailbox private suspended thread */
	rt_ipc_list_resume_all(&(mb->suspend_sender_thread));
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#if defined(RT_USING_MODULE) && defined(RT_USING_SLAB)
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	/* the mb object belongs to an application module */
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	if (mb->parent.parent.flag & RT_OBJECT_FLAG_MODULE)
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		rt_module_free(mb->parent.parent.module_id, mb->msg_pool);
	else
#endif

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	/* free mailbox pool */
	rt_free(mb->msg_pool);

	/* delete mailbox object */
	rt_object_delete(&(mb->parent.parent));

	return RT_EOK;
}
#endif

/**
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 * This function will send a mail to mailbox object. If the mailbox is full,
 * current thread will be suspended until timeout.
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 *
 * @param mb the mailbox object
 * @param value the mail
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 * @param timeout the waiting time
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 *
 * @return the error code
 */
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rt_err_t rt_mb_send_wait(rt_mailbox_t mb, rt_uint32_t value, rt_int32_t timeout)
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{
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	struct rt_thread *thread;
1318
	register rt_ubase_t temp;
1319
	rt_uint32_t tick_delta;
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	/* parameter check */
1322
	RT_ASSERT(mb != RT_NULL);
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	/* initialize delta tick */
1325
	tick_delta = 0;
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	/* get current thread */
	thread = rt_thread_self();

1329
	RT_OBJECT_HOOK_CALL(rt_object_put_hook, (&(mb->parent.parent)));
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	/* disable interrupt */
	temp = rt_hw_interrupt_disable();

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	/* for non-blocking call */
	if (mb->entry == mb->size && timeout == 0)
	{
		rt_hw_interrupt_enable(temp);
		return -RT_EFULL;
	}

1341
	/* mailbox is full */
1342
	while (mb->entry == mb->size)
1343
	{
1344 1345 1346 1347 1348 1349
		/* reset error number in thread */
		thread->error = RT_EOK;

		/* no waiting, return timeout */
		if (timeout == 0)
		{
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			/* enable interrupt */
			rt_hw_interrupt_enable(temp);
			return -RT_EFULL;
		}
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		RT_DEBUG_NOT_IN_INTERRUPT;
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		/* suspend current thread */
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		rt_ipc_list_suspend(&(mb->suspend_sender_thread), thread, mb->parent.parent.flag);
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		/* has waiting time, start thread timer */
		if (timeout > 0)
		{
			/* get the start tick of timer */
			tick_delta = rt_tick_get();

1365 1366 1367
			RT_DEBUG_LOG(RT_DEBUG_IPC,
				("mb_send_wait: start timer of thread:%s\n", thread->name));

1368 1369 1370 1371 1372
			/* reset the timeout of thread timer and start it */
			rt_timer_control(&(thread->thread_timer), RT_TIMER_CTRL_SET_TIME, &timeout);
			rt_timer_start(&(thread->thread_timer));
		}

1373 1374 1375
		/* enable interrupt */
		rt_hw_interrupt_enable(temp);

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		/* re-schedule */
		rt_schedule();

		/* resume from suspend state */
		if (thread->error != RT_EOK)
		{
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			/* return error */
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			return thread->error;
		}

		/* disable interrupt */
		temp = rt_hw_interrupt_disable();

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		/* if it's not waiting forever and then re-calculate timeout tick */
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		if (timeout > 0)
		{
			tick_delta = rt_tick_get() - tick_delta;
			timeout -= tick_delta;
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			if (timeout < 0)
				timeout = 0;
1396
		}
1397 1398 1399 1400 1401 1402
	}

	/* set ptr */
	mb->msg_pool[mb->in_offset] = value;
	/* increase input offset */
	++ mb->in_offset;
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	if (mb->in_offset >= mb->size)
		mb->in_offset = 0;
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	/* increase message entry */
	mb->entry ++;

1408
	/* resume suspended thread */
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	if (!rt_list_isempty(&mb->parent.suspend_thread))
1410
	{
1411
		rt_ipc_list_resume(&(mb->parent.suspend_thread));
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		/* enable interrupt */
		rt_hw_interrupt_enable(temp);

		rt_schedule();
		return RT_EOK;
	}

	/* enable interrupt */
	rt_hw_interrupt_enable(temp);

	return RT_EOK;
}

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/**
 * This function will send a mail to mailbox object, if there are threads suspended
 * on mailbox object, it will be waked up. This function will return immediately, if
 * you want blocking send, use rt_mb_send_wait instead.
 *
 * @param mb the mailbox object
 * @param value the mail
 *
 * @return the error code
 */
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rt_err_t rt_mb_send(rt_mailbox_t mb, rt_uint32_t value)
1437
{
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	return rt_mb_send_wait(mb, value, 0);
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}

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/**
 * This function will receive a mail from mailbox object, if there is no mail in
 * mailbox object, the thread shall wait for a specified time.
 *
 * @param mb the mailbox object
 * @param value the received mail will be saved in
 * @param timeout the waiting time
 *
 * @return the error code
 */
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rt_err_t rt_mb_recv(rt_mailbox_t mb, rt_uint32_t *value, rt_int32_t timeout)
1452
{
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	struct rt_thread *thread;
1454
	register rt_ubase_t temp;
1455
	rt_uint32_t tick_delta;
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	/* parameter check */
	RT_ASSERT(mb != RT_NULL);

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	/* initialize delta tick */
	tick_delta = 0;
	/* get current thread */
	thread = rt_thread_self();

1465
	RT_OBJECT_HOOK_CALL(rt_object_trytake_hook, (&(mb->parent.parent)));
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	/* disable interrupt */
	temp = rt_hw_interrupt_disable();

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	/* for non-blocking call */
	if (mb->entry == 0 && timeout == 0)
	{
		rt_hw_interrupt_enable(temp);
		return -RT_ETIMEOUT;
	}

1477
	/* mailbox is empty */
1478
	while (mb->entry == 0)
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	{
		/* reset error number in thread */
		thread->error = RT_EOK;

		/* no waiting, return timeout */
		if (timeout == 0)
		{
			/* enable interrupt */
			rt_hw_interrupt_enable(temp);

			thread->error = -RT_ETIMEOUT;
			return -RT_ETIMEOUT;
		}

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		RT_DEBUG_NOT_IN_INTERRUPT;
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		/* suspend current thread */
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		rt_ipc_list_suspend(&(mb->parent.suspend_thread), thread, mb->parent.parent.flag);
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		/* has waiting time, start thread timer */
		if (timeout > 0)
		{
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			/* get the start tick of timer */
			tick_delta = rt_tick_get();

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			RT_DEBUG_LOG(RT_DEBUG_IPC,
				("mb_recv: start timer of thread:%s\n", thread->name));

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			/* reset the timeout of thread timer and start it */
			rt_timer_control(&(thread->thread_timer), RT_TIMER_CTRL_SET_TIME, &timeout);
			rt_timer_start(&(thread->thread_timer));
		}

		/* enable interrupt */
		rt_hw_interrupt_enable(temp);

		/* re-schedule */
		rt_schedule();

1517
		/* resume from suspend state */
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		if (thread->error != RT_EOK)
		{
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			/* return error */
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			return thread->error;
		}

		/* disable interrupt */
		temp = rt_hw_interrupt_disable();
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		/* if it's not waiting forever and then re-calculate timeout tick */
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		if (timeout > 0)
		{
			tick_delta = rt_tick_get() - tick_delta;
			timeout -= tick_delta;
1532 1533
			if (timeout < 0)
				timeout = 0;
1534
		}
1535 1536 1537 1538 1539 1540
	}

	/* fill ptr */
	*value = mb->msg_pool[mb->out_offset];

	/* increase output offset */
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	++ mb->out_offset;
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	if (mb->out_offset >= mb->size)
		mb->out_offset = 0;
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	/* decrease message entry */
	mb->entry --;

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	/* resume suspended thread */
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	if (!rt_list_isempty(&(mb->suspend_sender_thread)))
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	{
		rt_ipc_list_resume(&(mb->suspend_sender_thread));

		/* enable interrupt */
		rt_hw_interrupt_enable(temp);

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		RT_OBJECT_HOOK_CALL(rt_object_take_hook, (&(mb->parent.parent)));

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		rt_schedule();

		return RT_EOK;
	}

1562 1563 1564
	/* enable interrupt */
	rt_hw_interrupt_enable(temp);

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	RT_OBJECT_HOOK_CALL(rt_object_take_hook, (&(mb->parent.parent)));
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	return RT_EOK;
}

/**
 * This function can get or set some extra attributions of a mailbox object.
 *
 * @param mb the mailbox object
 * @param cmd the execution command
 * @param arg the execution argument
 *
 * @return the error code
 */
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rt_err_t rt_mb_control(rt_mailbox_t mb, rt_uint8_t cmd, void *arg)
1580
{
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	rt_ubase_t level;
	RT_ASSERT(mb != RT_NULL);

	if (cmd == RT_IPC_CMD_RESET)
	{
		/* disable interrupt */
		level = rt_hw_interrupt_disable();

		/* resume all waiting thread */
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		rt_ipc_list_resume_all(&(mb->parent.suspend_thread));
1591

1592 1593 1594
		/* also resume all mailbox private suspended thread */
		rt_ipc_list_resume_all(&(mb->suspend_sender_thread));

1595
		/* re-init mailbox */
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		mb->entry      = 0;
		mb->in_offset  = 0;
		mb->out_offset = 0;
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		/* enable interrupt */
		rt_hw_interrupt_enable(level);

		return RT_EOK;
	}

	return -RT_ERROR;
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}
#endif /* end of RT_USING_MAILBOX */

#ifdef RT_USING_MESSAGEQUEUE
struct rt_mq_message
{
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	struct rt_mq_message *next;
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};

/**
 * This function will initialize a message queue and put it under control of resource
 * management.
 *
 * @param mq the message object
 * @param name the name of message queue
 * @param msgpool the beginning address of buffer to save messages
 * @param msg_size the maximum size of message
 * @param pool_size the size of buffer to save messages
 * @param flag the flag of message queue
 *
 * @return the operation status, RT_EOK on successful
 */
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rt_err_t rt_mq_init(rt_mq_t mq, const char *name, void *msgpool, rt_size_t msg_size, rt_size_t pool_size, rt_uint8_t flag)
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{
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	struct rt_mq_message *head;
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	register rt_base_t temp;

	/* parameter check */
	RT_ASSERT(mq != RT_NULL);

	/* init object */
	rt_object_init(&(mq->parent.parent), RT_Object_Class_MessageQueue, name);

	/* set parent flag */
	mq->parent.parent.flag = flag;

	/* init ipc object */
	rt_ipc_object_init(&(mq->parent));

	/* set messasge pool */
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	mq->msg_pool = msgpool;
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	/* get correct message size */
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	mq->msg_size = RT_ALIGN(msg_size, RT_ALIGN_SIZE);
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	mq->max_msgs = pool_size / (mq->msg_size + sizeof(struct rt_mq_message));
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	/* init message list */
	mq->msg_queue_head = RT_NULL;
	mq->msg_queue_tail = RT_NULL;

	/* init message empty list */
	mq->msg_queue_free = RT_NULL;
	for (temp = 0; temp < mq->max_msgs; temp ++)
	{
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		head = (struct rt_mq_message *)((rt_uint8_t *)mq->msg_pool +
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			temp * (mq->msg_size + sizeof(struct rt_mq_message)));
		head->next = mq->msg_queue_free;
		mq->msg_queue_free = head;
	}

	/* the initial entry is zero */
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	mq->entry = 0;
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	return RT_EOK;
}

/**
 * This function will detach a message queue object from resource management
 *
 * @param mq the message queue object
 *
 * @return the operation status, RT_EOK on successful
 */
rt_err_t rt_mq_detach(rt_mq_t mq)
{
	/* parameter check */
	RT_ASSERT(mq != RT_NULL);

	/* resume all suspended thread */
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	rt_ipc_list_resume_all(&mq->parent.suspend_thread);
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	/* detach message queue object */
	rt_object_detach(&(mq->parent.parent));

	return RT_EOK;
}

#ifdef RT_USING_HEAP
/**
 * This function will create a message queue object from system resource
 *
 * @param name the name of message queue
 * @param msg_size the size of message
 * @param max_msgs the maximum number of message in queue
 * @param flag the flag of message queue
 *
 * @return the created message queue, RT_NULL on error happen
 */
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rt_mq_t rt_mq_create(const char *name, rt_size_t msg_size, rt_size_t max_msgs, rt_uint8_t flag)
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{
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	struct rt_messagequeue *mq;
	struct rt_mq_message *head;
1709 1710
	register rt_base_t temp;

1711
	RT_DEBUG_NOT_IN_INTERRUPT;
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1713
	/* allocate object */
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	mq = (rt_mq_t)rt_object_allocate(RT_Object_Class_MessageQueue, name);
1715 1716
	if (mq == RT_NULL)
		return mq;
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	/* set parent */
	mq->parent.parent.flag = flag;

	/* init ipc object */
	rt_ipc_object_init(&(mq->parent));

	/* init message queue */

	/* get correct message size */
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	mq->msg_size = RT_ALIGN(msg_size, RT_ALIGN_SIZE);
	mq->max_msgs = max_msgs;
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	/* allocate message pool */
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	mq->msg_pool = rt_malloc((mq->msg_size + sizeof(struct rt_mq_message))* mq->max_msgs);
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	if (mq->msg_pool == RT_NULL)
	{
		rt_mq_delete(mq);
		return RT_NULL;
	}

	/* init message list */
	mq->msg_queue_head = RT_NULL;
	mq->msg_queue_tail = RT_NULL;

	/* init message empty list */
	mq->msg_queue_free = RT_NULL;
	for (temp = 0; temp < mq->max_msgs; temp ++)
	{
		head = (struct rt_mq_message*)((rt_uint8_t*)mq->msg_pool +
			temp * (mq->msg_size + sizeof(struct rt_mq_message)));
		head->next = mq->msg_queue_free;
		mq->msg_queue_free = head;
	}

	/* the initial entry is zero */
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	mq->entry = 0;
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	return mq;
}

/**
 * This function will delete a message queue object and release the memory
 *
 * @param mq the message queue object
 *
 * @return the error code
 */
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rt_err_t rt_mq_delete(rt_mq_t mq)
1766
{
1767
	RT_DEBUG_NOT_IN_INTERRUPT;
1768

1769 1770 1771 1772
	/* parameter check */
	RT_ASSERT(mq != RT_NULL);

	/* resume all suspended thread */
1773
	rt_ipc_list_resume_all(&(mq->parent.suspend_thread));
1774

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#if defined(RT_USING_MODULE) && defined(RT_USING_SLAB)
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	/* the mq object belongs to an application module */
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	if (mq->parent.parent.flag & RT_OBJECT_FLAG_MODULE)
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		rt_module_free(mq->parent.parent.module_id, mq->msg_pool);
	else
#endif

	/* free message queue pool */
1783 1784
	rt_free(mq->msg_pool);

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	/* delete message queue object */
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	rt_object_delete(&(mq->parent.parent));

	return RT_EOK;
}
#endif

/**
 * This function will send a message to message queue object, if there are threads
 * suspended on message queue object, it will be waked up.
 *
 * @param mq the message queue object
 * @param buffer the message
 * @param size the size of buffer
 *
 * @return the error code
 */
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rt_err_t rt_mq_send(rt_mq_t mq, void *buffer, rt_size_t size)
1803 1804
{
	register rt_ubase_t temp;
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	struct rt_mq_message *msg;
1806 1807

	/* greater than one message size */
1808 1809
	if (size > mq->msg_size)
		return -RT_ERROR;
1810

1811
	RT_OBJECT_HOOK_CALL(rt_object_put_hook, (&(mq->parent.parent)));
1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828

	/* disable interrupt */
	temp = rt_hw_interrupt_disable();

	/* get a free list, there must be an empty item */
	msg = (struct rt_mq_message*)mq->msg_queue_free;
	/* message queue is full */
	if (msg == RT_NULL)
	{
		/* enable interrupt */
		rt_hw_interrupt_enable(temp);

		return -RT_EFULL;
	}
	/* move free list pointer */
	mq->msg_queue_free = msg->next;

1829 1830 1831
	/* enable interrupt */
	rt_hw_interrupt_enable(temp);

1832 1833
	/* the msg is the new tailer of list, the next shall be NULL */
	msg->next = RT_NULL;
1834 1835 1836
	/* copy buffer */
	rt_memcpy(msg + 1, buffer, size);

1837 1838
	/* disable interrupt */
	temp = rt_hw_interrupt_disable();
1839 1840 1841 1842
	/* link msg to message queue */
	if (mq->msg_queue_tail != RT_NULL)
	{
		/* if the tail exists, */
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		((struct rt_mq_message *)mq->msg_queue_tail)->next = msg;
1844 1845 1846 1847 1848 1849 1850 1851 1852 1853
	}

	/* set new tail */
	mq->msg_queue_tail = msg;
	/* if the head is empty, set head */
	if (mq->msg_queue_head == RT_NULL)mq->msg_queue_head = msg;

	/* increase message entry */
	mq->entry ++;

1854
	/* resume suspended thread */
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	if (!rt_list_isempty(&mq->parent.suspend_thread))
1856
	{
1857
		rt_ipc_list_resume(&(mq->parent.suspend_thread));
1858 1859 1860 1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874 1875 1876 1877 1878 1879 1880 1881 1882

		/* enable interrupt */
		rt_hw_interrupt_enable(temp);

		rt_schedule();
		return RT_EOK;
	}

	/* enable interrupt */
	rt_hw_interrupt_enable(temp);

	return RT_EOK;
}

/**
 * This function will send urgently a message to message queue object, which means
 * the message will be inserted to the head of message queue. If there are threads
 * suspended on message queue object, it will be waked up.
 *
 * @param mq the message queue object
 * @param buffer the message
 * @param size the size of buffer
 *
 * @return the error code
 */
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rt_err_t rt_mq_urgent(rt_mq_t mq, void *buffer, rt_size_t size)
1884 1885
{
	register rt_ubase_t temp;
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	struct rt_mq_message *msg;
1887 1888

	/* greater than one message size */
1889 1890
	if (size > mq->msg_size)
		return -RT_ERROR;
1891

1892
	RT_OBJECT_HOOK_CALL(rt_object_put_hook, (&(mq->parent.parent)));
1893 1894 1895 1896 1897

	/* disable interrupt */
	temp = rt_hw_interrupt_disable();

	/* get a free list, there must be an empty item */
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	msg = (struct rt_mq_message *)mq->msg_queue_free;
1899 1900 1901 1902 1903 1904 1905 1906 1907 1908 1909
	/* message queue is full */
	if (msg == RT_NULL)
	{
		/* enable interrupt */
		rt_hw_interrupt_enable(temp);

		return -RT_EFULL;
	}
	/* move free list pointer */
	mq->msg_queue_free = msg->next;

1910 1911 1912
	/* enable interrupt */
	rt_hw_interrupt_enable(temp);

1913 1914 1915
	/* copy buffer */
	rt_memcpy(msg + 1, buffer, size);

1916 1917 1918
	/* disable interrupt */
	temp = rt_hw_interrupt_disable();

1919 1920 1921 1922 1923
	/* link msg to the beginning of message queue */
	msg->next = mq->msg_queue_head;
	mq->msg_queue_head = msg;

	/* if there is no tail */
1924 1925
	if (mq->msg_queue_tail == RT_NULL)
		mq->msg_queue_tail = msg;
1926 1927 1928 1929

	/* increase message entry */
	mq->entry ++;

1930
	/* resume suspended thread */
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	if (!rt_list_isempty(&mq->parent.suspend_thread))
1932
	{
1933
		rt_ipc_list_resume(&(mq->parent.suspend_thread));
1934 1935 1936 1937 1938 1939 1940 1941 1942 1943 1944 1945 1946 1947 1948 1949 1950 1951 1952 1953 1954 1955 1956 1957 1958

		/* enable interrupt */
		rt_hw_interrupt_enable(temp);

		rt_schedule();
		return RT_EOK;
	}

	/* enable interrupt */
	rt_hw_interrupt_enable(temp);

	return RT_EOK;
}

/**
 * This function will receive a message from message queue object, if there is no
 * message in message queue object, the thread shall wait for a specified time.
 *
 * @param mq the message queue object
 * @param buffer the received message will be saved in
 * @param size the size of buffer
 * @param timeout the waiting time
 *
 * @return the error code
 */
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rt_err_t rt_mq_recv(rt_mq_t mq, void *buffer, rt_size_t size, rt_int32_t timeout)
1960
{
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	struct rt_thread *thread;
1962
	register rt_ubase_t temp;
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	struct rt_mq_message *msg;
1964
	rt_uint32_t tick_delta;
1965

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	/* initialize delta tick */
	tick_delta = 0;
	/* get current thread */
	thread = rt_thread_self();
1970
	RT_OBJECT_HOOK_CALL(rt_object_trytake_hook, (&(mq->parent.parent)));
1971

1972 1973 1974 1975 1976 1977 1978 1979 1980 1981
	/* disable interrupt */
	temp = rt_hw_interrupt_disable();

	/* for non-blocking call */
	if (mq->entry == 0 && timeout == 0)
	{
		rt_hw_interrupt_enable(temp);
		return -RT_ETIMEOUT;
	}

1982 1983
	/* message queue is empty */
	while (mq->entry == 0)
1984
	{
1985 1986
		RT_DEBUG_NOT_IN_INTERRUPT;

1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000
		/* reset error number in thread */
		thread->error = RT_EOK;

		/* no waiting, return timeout */
		if (timeout == 0)
		{
			/* enable interrupt */
			rt_hw_interrupt_enable(temp);

			thread->error = -RT_ETIMEOUT;
			return -RT_ETIMEOUT;
		}

		/* suspend current thread */
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		rt_ipc_list_suspend(&(mq->parent.suspend_thread), thread, mq->parent.parent.flag);
2002 2003 2004 2005

		/* has waiting time, start thread timer */
		if (timeout > 0)
		{
2006 2007
			/* get the start tick of timer */
			tick_delta = rt_tick_get();
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			RT_DEBUG_LOG(RT_DEBUG_IPC, ("set thread:%s to timer list\n", thread->name));
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2011 2012 2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024
			/* reset the timeout of thread timer and start it */
			rt_timer_control(&(thread->thread_timer), RT_TIMER_CTRL_SET_TIME, &timeout);
			rt_timer_start(&(thread->thread_timer));
		}

		/* enable interrupt */
		rt_hw_interrupt_enable(temp);

		/* re-schedule */
		rt_schedule();

		/* recv message */
		if (thread->error != RT_EOK)
		{
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			/* return error */
2026 2027 2028 2029 2030
			return thread->error;
		}

		/* disable interrupt */
		temp = rt_hw_interrupt_disable();
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		/* if it's not waiting forever and then re-calculate timeout tick */
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		if (timeout > 0)
		{
			tick_delta = rt_tick_get() - tick_delta;
			timeout -= tick_delta;
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			if (timeout < 0)
				timeout = 0;
2039
		}
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	}

	/* get message from queue */
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	msg = (struct rt_mq_message *)mq->msg_queue_head;
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	/* move message queue head */
	mq->msg_queue_head = msg->next;
	/* reach queue tail, set to NULL */
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	if (mq->msg_queue_tail == msg)
		mq->msg_queue_tail = RT_NULL;
2050

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	/* decrease message entry */
	mq->entry --;

	/* enable interrupt */
	rt_hw_interrupt_enable(temp);

2057
	/* copy message */
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	rt_memcpy(buffer, msg + 1, size > mq->msg_size ? mq->msg_size : size);
2059

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	/* disable interrupt */
	temp = rt_hw_interrupt_disable();
2062
	/* put message to free list */
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	msg->next = (struct rt_mq_message *)mq->msg_queue_free;
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	mq->msg_queue_free = msg;
	/* enable interrupt */
	rt_hw_interrupt_enable(temp);

2068
	RT_OBJECT_HOOK_CALL(rt_object_take_hook, (&(mq->parent.parent)));
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	return RT_EOK;
}

/**
 * This function can get or set some extra attributions of a message queue object.
 *
 * @param mq the message queue object
 * @param cmd the execution command
 * @param arg the execution argument
 *
 * @return the error code
 */
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rt_err_t rt_mq_control(rt_mq_t mq, rt_uint8_t cmd, void *arg)
2083
{
2084
	rt_ubase_t level;
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	struct rt_mq_message *msg;
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	RT_ASSERT(mq != RT_NULL);

	if (cmd == RT_IPC_CMD_RESET)
	{
		/* disable interrupt */
		level = rt_hw_interrupt_disable();

		/* resume all waiting thread */
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		rt_ipc_list_resume_all(&mq->parent.suspend_thread);
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		/* release all message in the queue */
		while (mq->msg_queue_head != RT_NULL)
		{
			/* get message from queue */
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			msg = (struct rt_mq_message *)mq->msg_queue_head;
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			/* move message queue head */
			mq->msg_queue_head = msg->next;
			/* reach queue tail, set to NULL */
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			if (mq->msg_queue_tail == msg)
				mq->msg_queue_tail = RT_NULL;
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			/* put message to free list */
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			msg->next = (struct rt_mq_message *)mq->msg_queue_free;
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			mq->msg_queue_free = msg;
		}

		/* clean entry */
		mq->entry = 0;

		/* enable interrupt */
		rt_hw_interrupt_enable(level);

		return RT_EOK;
	}

	return -RT_ERROR;
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}
#endif /* end of RT_USING_MESSAGEQUEUE */
/*@}*/