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📄 irq.c

📁 h内核
💻 C
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	   Since we set PENDING, if another processor is handling	   a different instance of this same irq, the other processor	   will take care of it.	 */	if (unlikely(!action))		goto out;	/*	 * Edge triggered interrupts need to remember	 * pending events.	 * This applies to any hw interrupts that allow a second	 * instance of the same irq to arrive while we are in do_IRQ	 * or in the handler. But the code here only handles the _second_	 * instance of the irq, not the third or fourth. So it is mostly	 * useful for irq hardware that does not mask cleanly in an	 * SMP environment.	 */	for (;;) {		irqreturn_t action_ret;		spin_unlock(&desc->lock);		action_ret = handle_IRQ_event(irq, &regs, action);		spin_lock(&desc->lock);		if (!noirqdebug)			note_interrupt(irq, desc, action_ret);		if (likely(!(desc->status & IRQ_PENDING)))			break;		desc->status &= ~IRQ_PENDING;	}	desc->status &= ~IRQ_INPROGRESS;out:	/*	 * The ->end() handler has to deal with interrupts which got	 * disabled while the handler was running.	 */	desc->handler->end(irq);	spin_unlock(&desc->lock);	irq_exit();#ifdef CONFIG_PREEMPT	/*	 * We're done with the handlers, interrupts should be	 * currently disabled; decrement preempt_count now so	 * as we return preemption may be allowed...	 */	preempt_enable_no_resched();#endif	return 1;}int request_irq(unsigned int irq, 		irqreturn_t (*handler)(int, void *, struct pt_regs *),		unsigned long irqflags, 		const char * devname,		void *dev_id){	int retval;	struct irqaction * action;	if (irq >= ACTUAL_NR_IRQS)		return -EINVAL;	if (!handler)		return -EINVAL;	action = (struct irqaction *)			kmalloc(sizeof(struct irqaction), GFP_ATOMIC);	if (!action)		return -ENOMEM;	action->handler = handler;	action->flags = irqflags;	cpus_clear(action->mask);	action->name = devname;	action->next = NULL;	action->dev_id = dev_id;	retval = setup_irq(irq, action);	if (retval)		kfree(action);	return retval;}EXPORT_SYMBOL(request_irq);void free_irq(unsigned int irq, void *dev_id){	irq_desc_t *desc;	struct irqaction **p;	unsigned long flags;	if (irq >= ACTUAL_NR_IRQS)		return;	desc = irq_desc + irq;	spin_lock_irqsave(&desc->lock,flags);	p = &desc->action;	for (;;) {		struct irqaction * action = *p;		if (action) {			struct irqaction **pp = p;			p = &action->next;			if (action->dev_id != dev_id)				continue;			/* Found it - now remove it from the list of entries */			*pp = action->next;			if (!desc->action) {				desc->status |= IRQ_DISABLED;				desc->handler->shutdown(irq);			}			spin_unlock_irqrestore(&desc->lock,flags);			synchronize_irq(irq);			kfree(action);			return;		}		printk("Trying to free free IRQ%d\n",irq);		spin_unlock_irqrestore(&desc->lock,flags);		return;	}}EXPORT_SYMBOL(free_irq);static DECLARE_MUTEX(probe_sem);/* * IRQ autodetection code.. * * This depends on the fact that any interrupt that * comes in on to an unassigned handler will get stuck * with "IRQ_WAITING" cleared and the interrupt * disabled. */unsigned long probe_irq_on(void){	unsigned int i;	irq_desc_t *desc;	unsigned long val;	unsigned long delay;	down(&probe_sem);	/* 	 * something may have generated an irq long ago and we want to	 * flush such a longstanding irq before considering it as spurious. 	 */	for (i = NR_IRQS-1; i > 0; i--) {		desc = irq_desc + i;		spin_lock_irq(&desc->lock);		if (!desc->action)			desc->handler->startup(i);		spin_unlock_irq(&desc->lock);	}	/* Wait for longstanding interrupts to trigger. */	for (delay = jiffies + HZ/50; time_after(delay, jiffies); )		/* about 20ms delay */ barrier();	/*	 * enable any unassigned irqs	 * (we must startup again here because if a longstanding irq	 * happened in the previous stage, it may have masked itself)	 */	for (i = NR_IRQS-1; i > 0; i--) {		desc = irq_desc + i;		spin_lock_irq(&desc->lock);		if (!desc->action) {			desc->status |= IRQ_AUTODETECT | IRQ_WAITING;			if (desc->handler->startup(i))				desc->status |= IRQ_PENDING;		}		spin_unlock_irq(&desc->lock);	}	/*	 * Wait for spurious interrupts to trigger	 */	for (delay = jiffies + HZ/10; time_after(delay, jiffies); )		/* about 100ms delay */ barrier();	/*	 * Now filter out any obviously spurious interrupts	 */	val = 0;	for (i=0; i<NR_IRQS; i++) {		unsigned int status;		desc = irq_desc + i;		spin_lock_irq(&desc->lock);		status = desc->status;		if (status & IRQ_AUTODETECT) {			/* It triggered already - consider it spurious. */			if (!(status & IRQ_WAITING)) {				desc->status = status & ~IRQ_AUTODETECT;				desc->handler->shutdown(i);			} else				if (i < 32)					val |= 1 << i;		}		spin_unlock_irq(&desc->lock);	}	return val;}EXPORT_SYMBOL(probe_irq_on);/* Return a mask of triggered interrupts (this * can handle only legacy ISA interrupts). *//* *	probe_irq_mask - scan a bitmap of interrupt lines *	@val:	mask of interrupts to consider * *	Scan the ISA bus interrupt lines and return a bitmap of *	active interrupts. The interrupt probe logic state is then *	returned to its previous value. * *	Note: we need to scan all the irq's even though we will *	only return ISA irq numbers - just so that we reset them *	all to a known state. */unsigned int probe_irq_mask(unsigned long val){	int i;	unsigned int mask;	mask = 0;	for (i = 0; i < NR_IRQS; i++) {		irq_desc_t *desc = irq_desc + i;		unsigned int status;		spin_lock_irq(&desc->lock);		status = desc->status;		if (status & IRQ_AUTODETECT) {			if (i < 16 && !(status & IRQ_WAITING))				mask |= 1 << i;			desc->status = status & ~IRQ_AUTODETECT;			desc->handler->shutdown(i);		}		spin_unlock_irq(&desc->lock);	}	up(&probe_sem);	return mask & val;}int probe_irq_off(unsigned long val){	int i, irq_found, nr_irqs;	nr_irqs = 0;	irq_found = 0;	for (i=0; i<NR_IRQS; i++) {		irq_desc_t *desc = irq_desc + i;		unsigned int status;		spin_lock_irq(&desc->lock);		status = desc->status;		if (status & IRQ_AUTODETECT) {			if (!(status & IRQ_WAITING)) {				if (!nr_irqs)					irq_found = i;				nr_irqs++;			}			desc->status = status & ~IRQ_AUTODETECT;			desc->handler->shutdown(i);		}		spin_unlock_irq(&desc->lock);	}	up(&probe_sem);	if (nr_irqs > 1)		irq_found = -irq_found;	return irq_found;}EXPORT_SYMBOL(probe_irq_off);int setup_irq(unsigned int irq, struct irqaction * new){	int shared = 0;	struct irqaction *old, **p;	unsigned long flags;	irq_desc_t *desc = irq_desc + irq;	if (desc->handler == &no_irq_type)		return -ENOSYS; 	/*	 * Some drivers like serial.c use request_irq() heavily,	 * so we have to be careful not to interfere with a	 * running system.	 */	if (new->flags & SA_SAMPLE_RANDOM) {		/*		 * This function might sleep, we want to call it first,		 * outside of the atomic block.		 * Yes, this might clear the entropy pool if the wrong		 * driver is attempted to be loaded, without actually		 * installing a new handler, but is this really a problem,		 * only the sysadmin is able to do this.		 */		rand_initialize_irq(irq);	}	/*	 * The following block of code has to be executed atomically	 */	spin_lock_irqsave(&desc->lock,flags);	p = &desc->action;	if ((old = *p) != NULL) {		/* Can't share interrupts unless both agree to */		if (!(old->flags & new->flags & SA_SHIRQ)) {			spin_unlock_irqrestore(&desc->lock,flags);			return -EBUSY;		}		/* add new interrupt at end of irq queue */		do {			p = &old->next;			old = *p;		} while (old);		shared = 1;	}	*p = new;	if (!shared) {		desc->depth = 0;		desc->status &= ~(IRQ_DISABLED | IRQ_AUTODETECT | IRQ_WAITING | IRQ_INPROGRESS);		desc->handler->startup(irq);	}	spin_unlock_irqrestore(&desc->lock,flags);	return 0;}#if defined(CONFIG_PROC_FS) && defined(CONFIG_SYSCTL)void init_irq_proc(void){}#endif/* Taken from the 2.5 alpha port */#ifdef CONFIG_SMPvoid synchronize_irq(unsigned int irq){	/* is there anything to synchronize with? */	if (!irq_desc[irq].action)		return;	while (irq_desc[irq].status & IRQ_INPROGRESS)		barrier();}#endif

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