ipc.c 48.4 KB
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/*
 * File      : ipc.c
 * This file is part of RT-Thread RTOS
 * COPYRIGHT (C) 2006, RT-Thread Development Team
 *
 * 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
 * 2006-05-03     Bernard      add IPC_DEBUG
 *                             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
 * 2009-08-31     Bernard      fix the fast event receive bug
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 */

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

#include "kservice.h"

/* #define IPC_DEBUG */

#ifdef RT_USING_HOOK
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);
#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));
	ipc->suspend_thread_count = 0;

	return RT_EOK;
}

/**
 * This function will suspend a thread for a specified IPC object and put the
 * thread into suspend queue of IPC object
 *
 * @param ipc the IPC object
 * @param thread the thread object to be suspended
 *
 * @return the operation status, RT_EOK on successful
 */
rt_inline rt_err_t rt_ipc_object_suspend(struct rt_ipc_object *ipc, struct rt_thread *thread)
{
	/* suspend thread */
	rt_thread_suspend(thread);
	ipc->suspend_thread_count ++;

	switch (ipc->parent.flag)
	{
	case RT_IPC_FLAG_FIFO:
		rt_list_insert_before(&(ipc->suspend_thread), &(thread->tlist));
		break;

	case RT_IPC_FLAG_PRIO:
		{
			struct rt_list_node* n;
			struct rt_thread* sthread;

			/* find a suitable position */
			for (n = ipc->suspend_thread.next; n != &(ipc->suspend_thread);
				n = n->next)
			{
				sthread = rt_list_entry(n, struct rt_thread, tlist);

				/* find out */
				if (thread->current_priority < sthread->current_priority) break;
			}

			rt_list_insert_before(&(ipc->suspend_thread), &(thread->tlist));
		}
		break;
	}

	return RT_EOK;
}

/**
 * This function will resume a thread from an IPC object:
 * - remove the thread from suspend queue of IPC object
 * - put the thread into system ready queue
 *
 * @param ipc the IPC object
 *
 * @return the operation status, RT_EOK on successful
 */
rt_inline rt_err_t rt_ipc_object_resume(struct rt_ipc_object* ipc)
{
	struct rt_thread *thread;

	/* get thread entry */
	thread = rt_list_entry(ipc->suspend_thread.next, struct rt_thread, tlist);

#ifdef IPC_DEBUG
	rt_kprintf("resume thread:%s\n", thread->name);
#endif

	/* resume it */
	rt_thread_resume(thread);

	/* decrease suspended thread count */
	ipc->suspend_thread_count --;

	return RT_EOK;
}

/**
 * This function will resume all suspended threads in an IPC object.
 *
 * @param ipc the IPC object
 *
 * @return the operation status, RT_EOK on successful
 */
rt_inline rt_err_t rt_ipc_object_resume_all(struct rt_ipc_object* ipc)
{
	struct rt_thread* thread;
	register rt_ubase_t temp;

	/* wakeup all suspend threads */
	while (!rt_list_isempty(&(ipc->suspend_thread)))
	{
		/* disable interrupt */
		temp = rt_hw_interrupt_disable();

		/* get next suspend thread */
		thread = rt_list_entry(ipc->suspend_thread.next, struct rt_thread, tlist);
		/* 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
		 */
		rt_thread_resume(thread);

		/* decrease suspended thread count */
		ipc->suspend_thread_count --;

		/* enable interrupt */
		rt_hw_interrupt_enable(temp);
	}

	return RT_EOK;
}

/* decrease ipc suspended thread number when thread can not take resource successfully */
rt_inline void rt_ipc_object_decrease(struct rt_ipc_object* ipc)
{
	register rt_ubase_t level;

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

	/* decrease suspended thread count */
	ipc->suspend_thread_count --;

	/* enable interrupt */
	rt_hw_interrupt_enable(level);
}
#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
 */
rt_err_t rt_sem_init (rt_sem_t sem, const char* name, rt_uint32_t value, rt_uint8_t flag)
{
	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 */
	sem->value	= value;

	/* 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
 */
rt_err_t rt_sem_detach (rt_sem_t sem)
{
	RT_ASSERT(sem != RT_NULL);

	/* wakeup all suspend threads */
	rt_ipc_object_resume_all(&(sem->parent));

	/* 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
 */
rt_sem_t rt_sem_create (const char* name, rt_uint32_t value, rt_uint8_t flag)
{
	rt_sem_t sem;

	/* allocate object */
	sem = (rt_sem_t) rt_object_allocate(RT_Object_Class_Semaphore, name);
	if (sem == RT_NULL) return sem;

	/* 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
 */
rt_err_t rt_sem_delete (rt_sem_t sem)
{
	RT_ASSERT(sem != RT_NULL);

	/* wakeup all suspend threads */
	rt_ipc_object_resume_all(&(sem->parent));

	/* 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
 */
rt_err_t rt_sem_take (rt_sem_t sem, rt_int32_t time)
{
	register rt_base_t temp;
	struct rt_thread* thread;

	RT_ASSERT(sem != RT_NULL);

#ifdef RT_USING_HOOK
	if (rt_object_trytake_hook != RT_NULL) rt_object_trytake_hook(&(sem->parent.parent));
#endif

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

#ifdef IPC_DEBUG
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	rt_kprintf("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);
#endif
	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
		{
			/* semaphore is unavailable, push to suspend list */
			sem->value --;

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

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

#ifdef IPC_DEBUG
			rt_kprintf("sem take: suspend thread - %s\n", thread->name);
#endif

			/* suspend thread */
			rt_ipc_object_suspend(&(sem->parent), thread);

			/* has waiting time, start thread timer */
			if (time > 0)
			{
#ifdef IPC_DEBUG
				rt_kprintf("set thread:%s to timer list\n", thread->name);
#endif
				/* 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)
			{
				/* decrease suspended thread count */
				rt_ipc_object_decrease(&(sem->parent));
				return thread->error;
			}
		}
	}

#ifdef RT_USING_HOOK
	if (rt_object_take_hook != RT_NULL) rt_object_take_hook(&(sem->parent.parent));
#endif

	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;

#ifdef RT_USING_HOOK
	if (rt_object_put_hook != RT_NULL) rt_object_put_hook(&(sem->parent.parent));
#endif

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

#ifdef IPC_DEBUG
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	rt_kprintf("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);
#endif
	/* increase value */
	sem->value ++;

	if (sem->value <= 0 && sem->parent.suspend_thread_count > 0)
	{
		rt_ipc_object_resume(&(sem->parent));

		/* enable interrupt */
		rt_hw_interrupt_enable(temp);

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

	/* enable interrupt */
	rt_hw_interrupt_enable(temp);

	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
 */
rt_err_t rt_sem_control(rt_sem_t sem, rt_uint8_t cmd, void* arg)
{
	return RT_EOK;
}

#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
 */
rt_err_t rt_mutex_init (rt_mutex_t mutex, const char* name, rt_uint8_t flag)
{
	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
 */
rt_err_t rt_mutex_detach (rt_mutex_t mutex)
{
	RT_ASSERT(mutex != RT_NULL);

	/* wakeup all suspend threads */
	rt_ipc_object_resume_all(&(mutex->parent));

	/* 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
 */
rt_mutex_t rt_mutex_create (const char* name, rt_uint8_t flag)
{
	struct rt_mutex *mutex;

	/* allocate object */
	mutex = (rt_mutex_t) rt_object_allocate(RT_Object_Class_Mutex, name);
	if (mutex == RT_NULL) return mutex;

	/* 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
 */
rt_err_t rt_mutex_delete (rt_mutex_t mutex)
{
	RT_ASSERT(mutex != RT_NULL);

	/* wakeup all suspend threads */
	rt_ipc_object_resume_all(&(mutex->parent));

	/* 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
 */
rt_err_t rt_mutex_take (rt_mutex_t mutex, rt_int32_t time)
{
	register rt_base_t temp;
	struct rt_thread* thread;

	RT_ASSERT(mutex != RT_NULL);

#ifdef RT_USING_HOOK
	if (rt_object_trytake_hook != RT_NULL) rt_object_trytake_hook(&(mutex->parent.parent));
#endif

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

#ifdef IPC_DEBUG
	rt_kprintf("mutex_take:mutex value: %d, hold: %d\n", mutex->value, mutex->hold);
#endif

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

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

	if (mutex->owner == thread)
	{
		/* it's the same thread */
		mutex->hold ++;
	}
	else
	{
		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 */
			if (time == 0 )
			{
				/* 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 */
				mutex->value --;

#ifdef IPC_DEBUG
				rt_kprintf("sem take: suspend thread: %s\n", thread->name);
#endif
				/* 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 */
				rt_ipc_object_suspend(&(mutex->parent), thread);

				/* has waiting time, start thread timer */
				if (time > 0)
				{
#ifdef IPC_DEBUG
					rt_kprintf("set thread:%s to timer list\n", thread->name);
#endif
					/* 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)
				{
					/* decrease suspended thread count */
					rt_ipc_object_decrease(&(mutex->parent));

					/* return error */
					return thread->error;
				}
				else
				{
					/* disable interrupt */
					temp = rt_hw_interrupt_disable();

					/* take mutex */
					mutex->owner = thread;
					mutex->hold ++;

					/* set thread error */
					thread->error = RT_EOK;
				}
			}
		}
	}

	/* enable interrupt */
	rt_hw_interrupt_enable(temp);

#ifdef RT_USING_HOOK
	if (rt_object_take_hook != RT_NULL) rt_object_take_hook(&(mutex->parent.parent));
#endif

	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;
	struct rt_thread* thread;

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

#ifdef IPC_DEBUG
	rt_kprintf("mutex_release:mutex value: %d, hold: %d\n", mutex->value, mutex->hold);
#endif

#ifdef RT_USING_HOOK
	if (rt_object_put_hook != RT_NULL) rt_object_put_hook(&(mutex->parent.parent));
#endif

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

	/* mutex is only released by owner */
	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 */
		if (mutex->owner->init_priority != mutex->owner->current_priority)
		{
			rt_thread_control(mutex->owner, RT_THREAD_CTRL_CHANGE_PRIORITY,
				&(mutex->owner->init_priority));
		}

		/* wakeup suspended thread */
		if (mutex->value <= 0 && mutex->parent.suspend_thread_count > 0)
		{
#ifdef IPC_DEBUG
		rt_kprintf("mutex release: resume thread: %s\n", thread->name);
#endif

			/* resume thread */
			rt_ipc_object_resume(&(mutex->parent));
		}

		/* increase value */
		mutex->value ++;

	/* enable interrupt */
	rt_hw_interrupt_enable(temp);

	rt_schedule();
		return RT_EOK;
	}

	/* enable interrupt */
	rt_hw_interrupt_enable(temp);

	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
 */
rt_err_t rt_mutex_control(rt_mutex_t mutex, rt_uint8_t cmd, void* arg)
{
	return RT_EOK;
}

#endif /* end of RT_USING_MUTEX */

#ifdef RT_USING_FASTEVENT

/**
 * This function will initialize a fast event and put it under control of resource
 * management.
 *
 * @param event the fast event object
 * @param name the name of fast event
 * @param flag the flag of fast event
 *
 * @return the operation status, RT_EOK on successful
 */
rt_err_t rt_fast_event_init(rt_fast_event_t event, const char* name, rt_uint8_t flag)
{
	register rt_base_t offset;
	RT_ASSERT(event != RT_NULL);

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

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

	/* clear event set */
	event->set = 0x00;

	/* init thread list */
	for (offset = 0; offset < 32; offset ++)
	{
		rt_list_init(&(event->thread_list[offset]));
	}

	return RT_EOK;
}

/**
 * This function will detach a fast event from resource management
 *
 * @param event the fast event object
 *
 * @return the operation status, RT_EOK on successful
 */
rt_err_t rt_fast_event_detach(rt_fast_event_t event)
{
	register rt_base_t bit;
	struct rt_thread* thread;
	register rt_ubase_t level;

	RT_ASSERT(event != RT_NULL);

	for (bit = 0; bit < RT_EVENT_LENGTH; bit ++)
	{
		/* resume all suspend thread */
		if (!rt_list_isempty(&(event->thread_list[bit])))
		{
			/* wakeup all suspend threads */
			while (!rt_list_isempty(&(event->thread_list[bit])))
			{
				/* disable interrupt */
				level = rt_hw_interrupt_disable();

				/* get next suspend thread */
				thread = rt_list_entry(event->thread_list[bit].next, struct rt_thread, tlist);
				/* set error code to RT_ERROR */
				thread->error = -RT_ERROR;

				/* resume thread */
				rt_thread_resume(thread);

				/* enable interrupt */
				rt_hw_interrupt_enable(level);
			}

		}
	}

	/* detach event object */
	rt_object_detach(&(event->parent));

	return RT_EOK;
}

#ifdef RT_USING_HEAP
/**
 * This function will create a fast event object from system resource
 *
 * @param name the name of fast event
 * @param flag the flag of fast event
 *
 * @return the created fast event, RT_NULL on error happen
 */
rt_fast_event_t rt_fast_event_create (const char* name, rt_uint8_t flag)
{
	rt_fast_event_t event;
	register rt_base_t offset;

	/* allocate object */
	event = (rt_fast_event_t) rt_object_allocate(RT_Object_Class_FastEvent, name);
	if (event == RT_NULL) return event;

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

	/* clear event set */
	event->set = 0x00;

	/* init thread list */
	for (offset = 0; offset < 32; offset ++)
	{
		rt_list_init(&(event->thread_list[offset]));
	}

	return event;
}

/**
 * This function will delete a fast event object and release the memory
 *
 * @param event the fast event object
 *
 * @return the error code
 */
rt_err_t rt_fast_event_delete (rt_fast_event_t event)
{
	register rt_base_t bit;
	struct rt_thread* thread;
	register rt_ubase_t level;

	RT_ASSERT(event != RT_NULL);

	for (bit = 0; bit < RT_EVENT_LENGTH; bit ++)
	{
		/* resume all suspend thread */
		if (!rt_list_isempty(&(event->thread_list[bit])))
		{
			/* wakeup all suspend threads */
			while (!rt_list_isempty(&(event->thread_list[bit])))
			{
				/* disable interrupt */
				level = rt_hw_interrupt_disable();

				/* get next suspend thread */
				thread = rt_list_entry(event->thread_list[bit].next, struct rt_thread, tlist);
				/* set error code to RT_ERROR */
				thread->error = -RT_ERROR;

				/* resume thread */
				rt_thread_resume(thread);

				/* enable interrupt */
				rt_hw_interrupt_enable(level);
			}

		}
	}

	/* detach semaphore object */
	rt_object_delete(&(event->parent));

	return RT_EOK;
}
#endif

/**
 * This function will send an event to the fast event object, if there are threads
 * suspended on fast event object, it will be waked up.
 *
 * @param event the fast event object
 * @param bit the event bit
 *
 * @return the error code
 */
rt_err_t rt_fast_event_send(rt_fast_event_t event, rt_uint8_t bit)
{
	rt_uint32_t offset;
	register rt_ubase_t level;
	struct rt_thread *thread;
	struct rt_list_node *n;
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	rt_bool_t need_schedule;
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	/* parameter check */
	RT_ASSERT(event != RT_NULL);
	RT_ASSERT(bit < RT_EVENT_LENGTH);

	offset = 1 << bit;

#ifdef RT_USING_HOOK
	if (rt_object_put_hook != RT_NULL) rt_object_put_hook(&(event->parent));
#endif

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

	event->set |= offset;
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	/* does not schedule */
	need_schedule = RT_FALSE;
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	/* if thread list at offset is not empty */
	n = event->thread_list[bit].next;
	while (n != &(event->thread_list[bit]))
	{
		/* get thread */
		thread = rt_list_entry(n, struct rt_thread, tlist);

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

		/* resume thread */
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		rt_thread_resume(thread);

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

	/* enable interrupt */
	rt_hw_interrupt_enable(level);

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

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

	/* parameter check */
	RT_ASSERT(event != RT_NULL);
	RT_ASSERT(bit < RT_EVENT_LENGTH);

	offset = 1 << bit;

#ifdef RT_USING_HOOK
	if (rt_object_trytake_hook != RT_NULL) rt_object_trytake_hook(&(event->parent));
#endif

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

	/* get current thread */
	thread = rt_thread_self();
	thread->error = RT_EOK;

	/* get event successfully */
	if (event->set & offset)
	{
		if (option & RT_EVENT_FLAG_CLEAR)
			event->set &= ~ offset;

		/* enable interrupt */
		rt_hw_interrupt_enable(level);

		return RT_EOK;
	}

	/* no event happen */

	/* check waiting time */
	if (timeout == 0)
	{
		/* no waiting */
		thread->error = -RT_ETIMEOUT;
	}
	else
	{
		/* there are no event, suspend thread */
		rt_thread_suspend(thread);

		/* set event info in thread */
		thread->event_info = option;

		switch (event->parent.flag)
		{
		case RT_IPC_FLAG_FIFO:
			rt_list_insert_after(&(event->thread_list[bit]), &(thread->tlist));
			break;

		case RT_IPC_FLAG_PRIO:
			{
				struct rt_list_node* n;
				struct rt_thread* sthread;

				/* find a suitable position */
				for (n = event->thread_list[bit].next; n != &(event->thread_list[bit]); n = n->next)
				{
					sthread = rt_list_entry(n, struct rt_thread, tlist);

					/* find out */
					if (thread->current_priority < sthread->current_priority) break;
				}

				/* insert thread */
				rt_list_insert_before(&(event->thread_list[bit]), &(thread->tlist));
			}
			break;
		}

		/* if there is 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));
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		}

		/* enable interrupt */
		rt_hw_interrupt_enable(level);

		/* do a schedule */
		rt_schedule();

		/* receive a fast event */
		if (thread->error != RT_EOK)
		{
			return thread->error;
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		}
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		/* received a event, disable interrupt to protect */
		level = rt_hw_interrupt_disable();

		/* clear event */
		if (option & RT_EVENT_FLAG_CLEAR)
			event->set &= ~offset;
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	}

	/* enable interrupt */
	rt_hw_interrupt_enable(level);

#ifdef RT_USING_HOOK
	if (rt_object_take_hook != RT_NULL) rt_object_take_hook(&(event->parent));
#endif

	return thread->error;
}

/**
 * This function can get or set some extra attributions of a fast event object.
 *
 * @param event the event object
 * @param cmd the execution command
 * @param arg the execution argument
 *
 * @return the error code
 */
rt_err_t rt_fast_event_control (rt_fast_event_t event, rt_uint8_t cmd, void* arg)
{
	return RT_EOK;
}
#endif

#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
 */
rt_err_t rt_event_init(rt_event_t event, const char* name, rt_uint8_t flag)
{
	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 */
	rt_ipc_object_resume_all(&(event->parent));

	/* 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
 */
rt_event_t rt_event_create (const char* name, rt_uint8_t flag)
{
	rt_event_t event;

	/* allocate object */
	event = (rt_event_t) rt_object_allocate(RT_Object_Class_Event, name);
	if (event == RT_NULL) return event;

	/* 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
 */
rt_err_t rt_event_delete (rt_event_t event)
{
	/* parameter check */
	RT_ASSERT(event != RT_NULL);

	/* resume all suspended thread */
	rt_ipc_object_resume_all(&(event->parent));

	/* 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)
{
	struct rt_list_node *n;
	struct rt_thread *thread;
	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);
	if (set == 0) return -RT_ERROR;

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	need_schedule = RT_FALSE;
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#ifdef RT_USING_HOOK
	if (rt_object_put_hook != RT_NULL) rt_object_put_hook(&(event->parent.parent));
#endif

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

	/* set event */
	event->set |= set;

	if (event->parent.suspend_thread_count > 0)
	{
		/* 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 a 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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					/* received a 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)
			{
				/* 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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				/* decrease suspended thread count */
				event->parent.suspend_thread_count--;
			}
		}
	}

	/* 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();

	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
 */
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)
{
	struct rt_thread *thread;
	register rt_ubase_t level;
	register rt_base_t status;

	/* parameter check */
	RT_ASSERT(event != RT_NULL);
	if (set == 0) return -RT_ERROR;

	/* 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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#ifdef RT_USING_HOOK
	if (rt_object_trytake_hook != RT_NULL) rt_object_trytake_hook(&(event->parent.parent));
#endif

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

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

	if (status == RT_EOK)
	{
		/* set received event */
		*recved = event->set;

		/* received event */
		if (option & RT_EVENT_FLAG_CLEAR) event->set &= ~set;
	}
	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 */
		rt_ipc_object_suspend(&(event->parent), thread);

		/* 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)
		{
			/* decrease suspended thread count */
			rt_ipc_object_decrease(&(event->parent));
			return thread->error;
		}

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		/* received a event, disable interrupt to protect */
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		level = rt_hw_interrupt_disable();

		/* get received event */
		*recved = event->set;
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		/* clear event */
		if (option & RT_EVENT_FLAG_CLEAR)
			event->set &= ~set;
1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843 1844 1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855 1856 1857 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 1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901 1902 1903 1904 1905 1906 1907 1908 1909 1910 1911 1912 1913 1914 1915 1916 1917 1918 1919 1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932 1933 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 1959 1960 1961 1962 1963 1964 1965 1966 1967 1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979 1980 1981 1982 1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036 2037 2038 2039 2040 2041 2042 2043 2044 2045 2046 2047 2048 2049 2050 2051 2052 2053 2054 2055 2056 2057 2058 2059 2060 2061 2062 2063 2064 2065 2066 2067 2068 2069 2070 2071 2072 2073 2074 2075 2076 2077 2078 2079 2080 2081 2082 2083 2084 2085 2086 2087 2088 2089 2090 2091 2092 2093 2094 2095 2096 2097 2098 2099 2100 2101 2102 2103 2104 2105 2106 2107 2108 2109 2110 2111 2112 2113 2114 2115 2116 2117 2118 2119 2120 2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135 2136 2137 2138 2139 2140 2141 2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156 2157 2158 2159 2160 2161 2162 2163 2164 2165 2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183 2184 2185 2186 2187 2188 2189 2190 2191 2192 2193 2194 2195 2196 2197 2198 2199 2200 2201 2202 2203 2204 2205 2206 2207 2208 2209 2210 2211 2212 2213 2214 2215 2216 2217 2218 2219 2220 2221 2222 2223 2224 2225 2226 2227 2228 2229 2230 2231 2232 2233
	}

	/* enable interrupt */
	rt_hw_interrupt_enable(level);

#ifdef RT_USING_HOOK
	if (rt_object_take_hook != RT_NULL) rt_object_take_hook(&(event->parent.parent));
#endif

	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
 */
rt_err_t rt_event_control (rt_event_t event, rt_uint8_t cmd, void* arg)
{
	return RT_EOK;
}

#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
 */
rt_err_t rt_mb_init(rt_mailbox_t mb, const char* name, void* msgpool, rt_size_t size, rt_uint8_t flag)
{
	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 */
	mb->msg_pool = msgpool;
	mb->size 	 = size;
	mb->entry 	 	= 0;
	mb->in_offset 	= 0;
	mb->out_offset 	= 0;

	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 */
	rt_ipc_object_resume_all(&(mb->parent));

	/* 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
 */
rt_mailbox_t rt_mb_create (const char* name, rt_size_t size, rt_uint8_t flag)
{
	rt_mailbox_t mb;

	/* allocate object */
	mb = (rt_mailbox_t) rt_object_allocate(RT_Object_Class_MailBox, name);
	if (mb == RT_NULL) return mb;

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

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

	/* init mailbox */
	mb->size 	 	= size;
	mb->msg_pool 	= rt_malloc(mb->size * sizeof(rt_uint32_t));
	if (mb->msg_pool == RT_NULL)
	{
		/* delete mailbox object */
		rt_object_delete(&(mb->parent.parent));

		return RT_NULL;
	}
	mb->entry  = 0;
	mb->in_offset 	= 0;
	mb->out_offset 	= 0;

	return mb;
}

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

	/* resume all suspended thread */
	rt_ipc_object_resume_all(&(mb->parent));

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

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

	return RT_EOK;
}
#endif

/**
 * This function will send a mail to mailbox object, if there are threads suspended
 * on mailbox object, it will be waked up.
 *
 * @param mb the mailbox object
 * @param value the mail
 *
 * @return the error code
 */
rt_err_t rt_mb_send (rt_mailbox_t mb, rt_uint32_t value)
{
	register rt_ubase_t temp;

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

#ifdef RT_USING_HOOK
	if (rt_object_put_hook != RT_NULL) rt_object_put_hook(&(mb->parent.parent));
#endif

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

	/* mailbox is full */
	if (mb->entry == mb->size)
	{
		/* enable interrupt */
		rt_hw_interrupt_enable(temp);

		return -RT_EFULL;
	}

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

	/* resume suspended thread */
	if (mb->parent.suspend_thread_count > 0)
	{
		rt_ipc_object_resume(&(mb->parent));

		/* 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 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
 */
rt_err_t rt_mb_recv (rt_mailbox_t mb, rt_uint32_t* value, rt_int32_t timeout)
{
	struct rt_thread *thread;
	register rt_ubase_t temp;

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

#ifdef RT_USING_HOOK
	if (rt_object_trytake_hook != RT_NULL) rt_object_trytake_hook(&(mb->parent.parent));
#endif

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

	/* mailbox is empty */
	if (mb->entry == 0)
	{
		/* get current thread */
		thread = rt_thread_self();

		/* 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 */
		rt_ipc_object_suspend(&(mb->parent), thread);

		/* has waiting time, start thread timer */
		if (timeout > 0)
		{
#ifdef IPC_DEBUG
			rt_kprintf("set thread:%s to timer list\n", thread->name);
#endif
			/* 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)
		{
			/* decrease suspended thread count */
			rt_ipc_object_decrease(&(mb->parent));
			return thread->error;
		}

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

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

	/* increase output offset */
	++mb->out_offset;
	mb->out_offset %= mb->size;
	/* decrease message entry */
	mb->entry --;

	/* enable interrupt */
	rt_hw_interrupt_enable(temp);

#ifdef RT_USING_HOOK
	if (rt_object_take_hook != RT_NULL) rt_object_take_hook(&(mb->parent.parent));
#endif

	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
 */
rt_err_t rt_mb_control(rt_mailbox_t mb, rt_uint8_t cmd, void* arg)
{
	return RT_EOK;
}

#endif /* end of RT_USING_MAILBOX */

#ifdef RT_USING_MESSAGEQUEUE

struct rt_mq_message
{
	struct rt_mq_message* next;
};

/**
 * 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
 */
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)
{
	struct rt_mq_message* head;
	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 */
	mq->msg_pool 	= msgpool;

	/* get correct message size */
	mq->msg_size	= RT_ALIGN(msg_size,  RT_ALIGN_SIZE);
	mq->max_msgs	= pool_size / (mq->msg_size + sizeof(struct rt_mq_message));

	/* 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 */
	mq->entry		= 0;

	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 */
	rt_ipc_object_resume_all((struct rt_ipc_object*)mq);

	/* 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
 */
rt_mq_t rt_mq_create (const char* name, rt_size_t msg_size, rt_size_t max_msgs, rt_uint8_t flag)
{
	struct rt_messagequeue* mq;
	struct rt_mq_message* head;
	register rt_base_t temp;

	/* allocate object */
	mq = (rt_mq_t) rt_object_allocate(RT_Object_Class_MessageQueue, name);
	if (mq == RT_NULL) return mq;

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

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

	/* init message queue */

	/* get correct message size */
	mq->msg_size	= RT_ALIGN(msg_size, RT_ALIGN_SIZE);
	mq->max_msgs	= max_msgs;

	/* allocate message pool */
	mq->msg_pool 	= rt_malloc((mq->msg_size + sizeof(struct rt_mq_message))* mq->max_msgs);
	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 */
	mq->entry		= 0;

	return mq;
}

/**
 * This function will delete a message queue object and release the memory
 *
 * @param mq the message queue object
 *
 * @return the error code
 */
rt_err_t rt_mq_delete (rt_mq_t mq)
{
	/* parameter check */
	RT_ASSERT(mq != RT_NULL);

	/* resume all suspended thread */
	rt_ipc_object_resume_all(&(mq->parent));

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

	/* delete mailbox object */
	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
 */
rt_err_t rt_mq_send (rt_mq_t mq, void* buffer, rt_size_t size)
{
	register rt_ubase_t temp;
	struct rt_mq_message *msg;

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

#ifdef RT_USING_HOOK
	if (rt_object_put_hook != RT_NULL) rt_object_put_hook(&(mq->parent.parent));
#endif

	/* 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;

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

	/* link msg to message queue */
	if (mq->msg_queue_tail != RT_NULL)
	{
		/* if the tail exists, */
		((struct rt_mq_message*)mq->msg_queue_tail)->next = msg;
	}
	/* the msg is the new tail of list, the next shall be NULL */
	msg->next = RT_NULL;

	/* 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 ++;

	/* resume suspended thread */
	if (mq->parent.suspend_thread_count > 0)
	{
		rt_ipc_object_resume(&(mq->parent));

		/* 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
 */
rt_err_t rt_mq_urgent(rt_mq_t mq, void* buffer, rt_size_t size)
{
	register rt_ubase_t temp;
	struct rt_mq_message *msg;

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

#ifdef RT_USING_HOOK
	if (rt_object_put_hook != RT_NULL) rt_object_put_hook(&(mq->parent.parent));
#endif

	/* 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;

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

	/* link msg to the beginning of message queue */
	msg->next = mq->msg_queue_head;
	mq->msg_queue_head = msg;

	/* if there is no tail */
	if (mq->msg_queue_tail == RT_NULL) mq->msg_queue_tail = msg;

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

	/* resume suspended thread */
	if (mq->parent.suspend_thread_count > 0)
	{
		rt_ipc_object_resume(&(mq->parent));

		/* 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
 */
rt_err_t rt_mq_recv (rt_mq_t mq, void* buffer, rt_size_t size, rt_int32_t timeout)
{
	struct rt_thread *thread;
	register rt_ubase_t temp;
	struct rt_mq_message *msg;

#ifdef RT_USING_HOOK
	if (rt_object_trytake_hook != RT_NULL) rt_object_trytake_hook(&(mq->parent.parent));
#endif

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

	/* mailbox is empty */
	if (mq->entry == 0)
	{
		/* get current thread */
		thread = rt_thread_self();

		/* 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 */
		rt_ipc_object_suspend(&(mq->parent), thread);

		/* has waiting time, start thread timer */
		if (timeout > 0)
		{
#ifdef IPC_DEBUG
			rt_kprintf("set thread:%s to timer list\n", thread->name);
#endif
			/* 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)
		{
			/* decrease suspended thread count */
			rt_ipc_object_decrease(&(mq->parent));
			return thread->error;
		}

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

	/* get message from queue */
	msg = (struct rt_mq_message*) mq->msg_queue_head;

	/* move message queue head */
	mq->msg_queue_head = msg->next;

	/* reach queue tail, set to NULL */
	if (mq->msg_queue_tail == msg) mq->msg_queue_tail = RT_NULL;

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

	/* put message to free list */
	msg->next = (struct rt_mq_message*)mq->msg_queue_free;
	mq->msg_queue_free = msg;

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

	/* enable interrupt */
	rt_hw_interrupt_enable(temp);

#ifdef RT_USING_HOOK
	if (rt_object_take_hook != RT_NULL) rt_object_take_hook(&(mq->parent.parent));
#endif

	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
 */
rt_err_t rt_mq_control(rt_mq_t mq, rt_uint8_t cmd, void* arg)
{
	return RT_EOK;
}

#endif /* end of RT_USING_MESSAGEQUEUE */

/**
 * @ingroup SystemInit
 * This function will init IPC module.
 */
void rt_system_ipc_init()
{
	/* nothing to be done */
}

/*@}*/