2 * linux/kernel/irq/autoprobe.c
4 * Copyright (C) 1992, 1998-2004 Linus Torvalds, Ingo Molnar
6 * This file contains the interrupt probing code and driver APIs.
10 #include <linux/module.h>
11 #include <linux/interrupt.h>
14 * Autodetection depends on the fact that any interrupt that
15 * comes in on to an unassigned handler will get stuck with
16 * "IRQ_WAITING" cleared and the interrupt disabled.
18 static DECLARE_MUTEX(probe_sem
);
21 * probe_irq_on - begin an interrupt autodetect
23 * Commence probing for an interrupt. The interrupts are scanned
24 * and a mask of potential interrupt lines is returned.
27 unsigned long probe_irq_on(void)
29 unsigned long val
, delay
;
35 * something may have generated an irq long ago and we want to
36 * flush such a longstanding irq before considering it as spurious.
38 for (i
= NR_IRQS
-1; i
> 0; i
--) {
41 spin_lock_irq(&desc
->lock
);
42 if (!irq_desc
[i
].action
)
43 irq_desc
[i
].handler
->startup(i
);
44 spin_unlock_irq(&desc
->lock
);
47 /* Wait for longstanding interrupts to trigger. */
48 for (delay
= jiffies
+ HZ
/50; time_after(delay
, jiffies
); )
49 /* about 20ms delay */ barrier();
52 * enable any unassigned irqs
53 * (we must startup again here because if a longstanding irq
54 * happened in the previous stage, it may have masked itself)
56 for (i
= NR_IRQS
-1; i
> 0; i
--) {
59 spin_lock_irq(&desc
->lock
);
61 desc
->status
|= IRQ_AUTODETECT
| IRQ_WAITING
;
62 if (desc
->handler
->startup(i
))
63 desc
->status
|= IRQ_PENDING
;
65 spin_unlock_irq(&desc
->lock
);
69 * Wait for spurious interrupts to trigger
71 for (delay
= jiffies
+ HZ
/10; time_after(delay
, jiffies
); )
72 /* about 100ms delay */ barrier();
75 * Now filter out any obviously spurious interrupts
78 for (i
= 0; i
< NR_IRQS
; i
++) {
79 irq_desc_t
*desc
= irq_desc
+ i
;
82 spin_lock_irq(&desc
->lock
);
83 status
= desc
->status
;
85 if (status
& IRQ_AUTODETECT
) {
86 /* It triggered already - consider it spurious. */
87 if (!(status
& IRQ_WAITING
)) {
88 desc
->status
= status
& ~IRQ_AUTODETECT
;
89 desc
->handler
->shutdown(i
);
94 spin_unlock_irq(&desc
->lock
);
100 EXPORT_SYMBOL(probe_irq_on
);
103 * probe_irq_mask - scan a bitmap of interrupt lines
104 * @val: mask of interrupts to consider
106 * Scan the interrupt lines and return a bitmap of active
107 * autodetect interrupts. The interrupt probe logic state
108 * is then returned to its previous value.
110 * Note: we need to scan all the irq's even though we will
111 * only return autodetect irq numbers - just so that we reset
112 * them all to a known state.
114 unsigned int probe_irq_mask(unsigned long val
)
120 for (i
= 0; i
< NR_IRQS
; i
++) {
121 irq_desc_t
*desc
= irq_desc
+ i
;
124 spin_lock_irq(&desc
->lock
);
125 status
= desc
->status
;
127 if (status
& IRQ_AUTODETECT
) {
128 if (i
< 16 && !(status
& IRQ_WAITING
))
131 desc
->status
= status
& ~IRQ_AUTODETECT
;
132 desc
->handler
->shutdown(i
);
134 spin_unlock_irq(&desc
->lock
);
140 EXPORT_SYMBOL(probe_irq_mask
);
143 * probe_irq_off - end an interrupt autodetect
144 * @val: mask of potential interrupts (unused)
146 * Scans the unused interrupt lines and returns the line which
147 * appears to have triggered the interrupt. If no interrupt was
148 * found then zero is returned. If more than one interrupt is
149 * found then minus the first candidate is returned to indicate
152 * The interrupt probe logic state is returned to its previous
155 * BUGS: When used in a module (which arguably shouldn't happen)
156 * nothing prevents two IRQ probe callers from overlapping. The
157 * results of this are non-optimal.
159 int probe_irq_off(unsigned long val
)
161 int i
, irq_found
= 0, nr_irqs
= 0;
163 for (i
= 0; i
< NR_IRQS
; i
++) {
164 irq_desc_t
*desc
= irq_desc
+ i
;
167 spin_lock_irq(&desc
->lock
);
168 status
= desc
->status
;
170 if (status
& IRQ_AUTODETECT
) {
171 if (!(status
& IRQ_WAITING
)) {
176 desc
->status
= status
& ~IRQ_AUTODETECT
;
177 desc
->handler
->shutdown(i
);
179 spin_unlock_irq(&desc
->lock
);
184 irq_found
= -irq_found
;
188 EXPORT_SYMBOL(probe_irq_off
);