2 * Copyright 2005, Red Hat, Inc., Ingo Molnar
3 * Released under the General Public License (GPL).
5 * This file contains the spinlock/rwlock implementations for
9 #include <linux/config.h>
10 #include <linux/spinlock.h>
11 #include <linux/interrupt.h>
12 #include <linux/delay.h>
14 static void spin_bug(spinlock_t
*lock
, const char *msg
)
16 static long print_once
= 1;
17 struct task_struct
*owner
= NULL
;
19 if (xchg(&print_once
, 0)) {
20 if (lock
->owner
&& lock
->owner
!= SPINLOCK_OWNER_INIT
)
22 printk("BUG: spinlock %s on CPU#%d, %s/%d\n",
23 msg
, raw_smp_processor_id(),
24 current
->comm
, current
->pid
);
25 printk(" lock: %p, .magic: %08x, .owner: %s/%d, .owner_cpu: %d\n",
27 owner
? owner
->comm
: "<none>",
28 owner
? owner
->pid
: -1,
33 * We cannot continue on SMP:
35 // panic("bad locking");
40 #define SPIN_BUG_ON(cond, lock, msg) if (unlikely(cond)) spin_bug(lock, msg)
42 static inline void debug_spin_lock_before(spinlock_t
*lock
)
44 SPIN_BUG_ON(lock
->magic
!= SPINLOCK_MAGIC
, lock
, "bad magic");
45 SPIN_BUG_ON(lock
->owner
== current
, lock
, "recursion");
46 SPIN_BUG_ON(lock
->owner_cpu
== raw_smp_processor_id(),
47 lock
, "cpu recursion");
50 static inline void debug_spin_lock_after(spinlock_t
*lock
)
52 lock
->owner_cpu
= raw_smp_processor_id();
53 lock
->owner
= current
;
56 static inline void debug_spin_unlock(spinlock_t
*lock
)
58 SPIN_BUG_ON(lock
->magic
!= SPINLOCK_MAGIC
, lock
, "bad magic");
59 SPIN_BUG_ON(!spin_is_locked(lock
), lock
, "already unlocked");
60 SPIN_BUG_ON(lock
->owner
!= current
, lock
, "wrong owner");
61 SPIN_BUG_ON(lock
->owner_cpu
!= raw_smp_processor_id(),
63 lock
->owner
= SPINLOCK_OWNER_INIT
;
67 static void __spin_lock_debug(spinlock_t
*lock
)
73 for (i
= 0; i
< loops_per_jiffy
* HZ
; i
++) {
75 if (__raw_spin_trylock(&lock
->raw_lock
))
78 /* lockup suspected: */
81 printk("BUG: spinlock lockup on CPU#%d, %s/%d, %p\n",
82 raw_smp_processor_id(), current
->comm
,
89 void _raw_spin_lock(spinlock_t
*lock
)
91 debug_spin_lock_before(lock
);
92 if (unlikely(!__raw_spin_trylock(&lock
->raw_lock
)))
93 __spin_lock_debug(lock
);
94 debug_spin_lock_after(lock
);
97 int _raw_spin_trylock(spinlock_t
*lock
)
99 int ret
= __raw_spin_trylock(&lock
->raw_lock
);
102 debug_spin_lock_after(lock
);
105 * Must not happen on UP:
107 SPIN_BUG_ON(!ret
, lock
, "trylock failure on UP");
112 void _raw_spin_unlock(spinlock_t
*lock
)
114 debug_spin_unlock(lock
);
115 __raw_spin_unlock(&lock
->raw_lock
);
118 static void rwlock_bug(rwlock_t
*lock
, const char *msg
)
120 static long print_once
= 1;
122 if (xchg(&print_once
, 0)) {
123 printk("BUG: rwlock %s on CPU#%d, %s/%d, %p\n", msg
,
124 raw_smp_processor_id(), current
->comm
,
129 * We cannot continue on SMP:
131 panic("bad locking");
136 #define RWLOCK_BUG_ON(cond, lock, msg) if (unlikely(cond)) rwlock_bug(lock, msg)
138 static void __read_lock_debug(rwlock_t
*lock
)
144 for (i
= 0; i
< loops_per_jiffy
* HZ
; i
++) {
146 if (__raw_read_trylock(&lock
->raw_lock
))
149 /* lockup suspected: */
152 printk("BUG: read-lock lockup on CPU#%d, %s/%d, %p\n",
153 raw_smp_processor_id(), current
->comm
,
160 void _raw_read_lock(rwlock_t
*lock
)
162 RWLOCK_BUG_ON(lock
->magic
!= RWLOCK_MAGIC
, lock
, "bad magic");
163 if (unlikely(!__raw_read_trylock(&lock
->raw_lock
)))
164 __read_lock_debug(lock
);
167 int _raw_read_trylock(rwlock_t
*lock
)
169 int ret
= __raw_read_trylock(&lock
->raw_lock
);
173 * Must not happen on UP:
175 RWLOCK_BUG_ON(!ret
, lock
, "trylock failure on UP");
180 void _raw_read_unlock(rwlock_t
*lock
)
182 RWLOCK_BUG_ON(lock
->magic
!= RWLOCK_MAGIC
, lock
, "bad magic");
183 __raw_read_unlock(&lock
->raw_lock
);
186 static inline void debug_write_lock_before(rwlock_t
*lock
)
188 RWLOCK_BUG_ON(lock
->magic
!= RWLOCK_MAGIC
, lock
, "bad magic");
189 RWLOCK_BUG_ON(lock
->owner
== current
, lock
, "recursion");
190 RWLOCK_BUG_ON(lock
->owner_cpu
== raw_smp_processor_id(),
191 lock
, "cpu recursion");
194 static inline void debug_write_lock_after(rwlock_t
*lock
)
196 lock
->owner_cpu
= raw_smp_processor_id();
197 lock
->owner
= current
;
200 static inline void debug_write_unlock(rwlock_t
*lock
)
202 RWLOCK_BUG_ON(lock
->magic
!= RWLOCK_MAGIC
, lock
, "bad magic");
203 RWLOCK_BUG_ON(lock
->owner
!= current
, lock
, "wrong owner");
204 RWLOCK_BUG_ON(lock
->owner_cpu
!= raw_smp_processor_id(),
206 lock
->owner
= SPINLOCK_OWNER_INIT
;
207 lock
->owner_cpu
= -1;
210 static void __write_lock_debug(rwlock_t
*lock
)
216 for (i
= 0; i
< loops_per_jiffy
* HZ
; i
++) {
218 if (__raw_write_trylock(&lock
->raw_lock
))
221 /* lockup suspected: */
224 printk("BUG: write-lock lockup on CPU#%d, %s/%d, %p\n",
225 raw_smp_processor_id(), current
->comm
,
232 void _raw_write_lock(rwlock_t
*lock
)
234 debug_write_lock_before(lock
);
235 if (unlikely(!__raw_write_trylock(&lock
->raw_lock
)))
236 __write_lock_debug(lock
);
237 debug_write_lock_after(lock
);
240 int _raw_write_trylock(rwlock_t
*lock
)
242 int ret
= __raw_write_trylock(&lock
->raw_lock
);
245 debug_write_lock_after(lock
);
248 * Must not happen on UP:
250 RWLOCK_BUG_ON(!ret
, lock
, "trylock failure on UP");
255 void _raw_write_unlock(rwlock_t
*lock
)
257 debug_write_unlock(lock
);
258 __raw_write_unlock(&lock
->raw_lock
);