2 * Generic infrastructure for lifetime debugging of objects.
4 * Started by Thomas Gleixner
6 * Copyright (C) 2008, Thomas Gleixner <tglx@linutronix.de>
8 * For licencing details see kernel-base/COPYING
10 #include <linux/debugobjects.h>
11 #include <linux/interrupt.h>
12 #include <linux/sched.h>
13 #include <linux/seq_file.h>
14 #include <linux/debugfs.h>
15 #include <linux/slab.h>
16 #include <linux/hash.h>
18 #define ODEBUG_HASH_BITS 14
19 #define ODEBUG_HASH_SIZE (1 << ODEBUG_HASH_BITS)
21 #define ODEBUG_POOL_SIZE 512
22 #define ODEBUG_POOL_MIN_LEVEL 256
24 #define ODEBUG_CHUNK_SHIFT PAGE_SHIFT
25 #define ODEBUG_CHUNK_SIZE (1 << ODEBUG_CHUNK_SHIFT)
26 #define ODEBUG_CHUNK_MASK (~(ODEBUG_CHUNK_SIZE - 1))
29 struct hlist_head list
;
33 static struct debug_bucket obj_hash
[ODEBUG_HASH_SIZE
];
35 static struct debug_obj obj_static_pool
[ODEBUG_POOL_SIZE
] __initdata
;
37 static DEFINE_RAW_SPINLOCK(pool_lock
);
39 static HLIST_HEAD(obj_pool
);
41 static int obj_pool_min_free
= ODEBUG_POOL_SIZE
;
42 static int obj_pool_free
= ODEBUG_POOL_SIZE
;
43 static int obj_pool_used
;
44 static int obj_pool_max_used
;
45 static struct kmem_cache
*obj_cache
;
47 static int debug_objects_maxchain __read_mostly
;
48 static int debug_objects_fixups __read_mostly
;
49 static int debug_objects_warnings __read_mostly
;
50 static int debug_objects_enabled __read_mostly
51 = CONFIG_DEBUG_OBJECTS_ENABLE_DEFAULT
;
53 static struct debug_obj_descr
*descr_test __read_mostly
;
55 static void free_obj_work(struct work_struct
*work
);
56 static DECLARE_WORK(debug_obj_work
, free_obj_work
);
58 static int __init
enable_object_debug(char *str
)
60 debug_objects_enabled
= 1;
64 static int __init
disable_object_debug(char *str
)
66 debug_objects_enabled
= 0;
70 early_param("debug_objects", enable_object_debug
);
71 early_param("no_debug_objects", disable_object_debug
);
73 static const char *obj_states
[ODEBUG_STATE_MAX
] = {
74 [ODEBUG_STATE_NONE
] = "none",
75 [ODEBUG_STATE_INIT
] = "initialized",
76 [ODEBUG_STATE_INACTIVE
] = "inactive",
77 [ODEBUG_STATE_ACTIVE
] = "active",
78 [ODEBUG_STATE_DESTROYED
] = "destroyed",
79 [ODEBUG_STATE_NOTAVAILABLE
] = "not available",
82 static int fill_pool(void)
84 gfp_t gfp
= GFP_ATOMIC
| __GFP_NORETRY
| __GFP_NOWARN
;
85 struct debug_obj
*new;
88 if (likely(obj_pool_free
>= ODEBUG_POOL_MIN_LEVEL
))
91 if (unlikely(!obj_cache
))
94 while (obj_pool_free
< ODEBUG_POOL_MIN_LEVEL
) {
96 new = kmem_cache_zalloc(obj_cache
, gfp
);
100 raw_spin_lock_irqsave(&pool_lock
, flags
);
101 hlist_add_head(&new->node
, &obj_pool
);
103 raw_spin_unlock_irqrestore(&pool_lock
, flags
);
105 return obj_pool_free
;
109 * Lookup an object in the hash bucket.
111 static struct debug_obj
*lookup_object(void *addr
, struct debug_bucket
*b
)
113 struct hlist_node
*node
;
114 struct debug_obj
*obj
;
117 hlist_for_each_entry(obj
, node
, &b
->list
, node
) {
119 if (obj
->object
== addr
)
122 if (cnt
> debug_objects_maxchain
)
123 debug_objects_maxchain
= cnt
;
129 * Allocate a new object. If the pool is empty, switch off the debugger.
130 * Must be called with interrupts disabled.
132 static struct debug_obj
*
133 alloc_object(void *addr
, struct debug_bucket
*b
, struct debug_obj_descr
*descr
)
135 struct debug_obj
*obj
= NULL
;
137 raw_spin_lock(&pool_lock
);
138 if (obj_pool
.first
) {
139 obj
= hlist_entry(obj_pool
.first
, typeof(*obj
), node
);
143 obj
->state
= ODEBUG_STATE_NONE
;
145 hlist_del(&obj
->node
);
147 hlist_add_head(&obj
->node
, &b
->list
);
150 if (obj_pool_used
> obj_pool_max_used
)
151 obj_pool_max_used
= obj_pool_used
;
154 if (obj_pool_free
< obj_pool_min_free
)
155 obj_pool_min_free
= obj_pool_free
;
157 raw_spin_unlock(&pool_lock
);
163 * workqueue function to free objects.
165 static void free_obj_work(struct work_struct
*work
)
167 struct debug_obj
*obj
;
170 raw_spin_lock_irqsave(&pool_lock
, flags
);
171 while (obj_pool_free
> ODEBUG_POOL_SIZE
) {
172 obj
= hlist_entry(obj_pool
.first
, typeof(*obj
), node
);
173 hlist_del(&obj
->node
);
176 * We release pool_lock across kmem_cache_free() to
177 * avoid contention on pool_lock.
179 raw_spin_unlock_irqrestore(&pool_lock
, flags
);
180 kmem_cache_free(obj_cache
, obj
);
181 raw_spin_lock_irqsave(&pool_lock
, flags
);
183 raw_spin_unlock_irqrestore(&pool_lock
, flags
);
187 * Put the object back into the pool and schedule work to free objects
190 static void free_object(struct debug_obj
*obj
)
195 raw_spin_lock_irqsave(&pool_lock
, flags
);
197 * schedule work when the pool is filled and the cache is
200 if (obj_pool_free
> ODEBUG_POOL_SIZE
&& obj_cache
)
201 sched
= keventd_up() && !work_pending(&debug_obj_work
);
202 hlist_add_head(&obj
->node
, &obj_pool
);
205 raw_spin_unlock_irqrestore(&pool_lock
, flags
);
207 schedule_work(&debug_obj_work
);
211 * We run out of memory. That means we probably have tons of objects
214 static void debug_objects_oom(void)
216 struct debug_bucket
*db
= obj_hash
;
217 struct hlist_node
*node
, *tmp
;
218 HLIST_HEAD(freelist
);
219 struct debug_obj
*obj
;
223 printk(KERN_WARNING
"ODEBUG: Out of memory. ODEBUG disabled\n");
225 for (i
= 0; i
< ODEBUG_HASH_SIZE
; i
++, db
++) {
226 raw_spin_lock_irqsave(&db
->lock
, flags
);
227 hlist_move_list(&db
->list
, &freelist
);
228 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
231 hlist_for_each_entry_safe(obj
, node
, tmp
, &freelist
, node
) {
232 hlist_del(&obj
->node
);
239 * We use the pfn of the address for the hash. That way we can check
240 * for freed objects simply by checking the affected bucket.
242 static struct debug_bucket
*get_bucket(unsigned long addr
)
246 hash
= hash_long((addr
>> ODEBUG_CHUNK_SHIFT
), ODEBUG_HASH_BITS
);
247 return &obj_hash
[hash
];
250 static void debug_print_object(struct debug_obj
*obj
, char *msg
)
252 struct debug_obj_descr
*descr
= obj
->descr
;
255 if (limit
< 5 && descr
!= descr_test
) {
256 void *hint
= descr
->debug_hint
?
257 descr
->debug_hint(obj
->object
) : NULL
;
259 WARN(1, KERN_ERR
"ODEBUG: %s %s (active state %u) "
260 "object type: %s hint: %pS\n",
261 msg
, obj_states
[obj
->state
], obj
->astate
,
264 debug_objects_warnings
++;
268 * Try to repair the damage, so we have a better chance to get useful
272 debug_object_fixup(int (*fixup
)(void *addr
, enum debug_obj_state state
),
273 void * addr
, enum debug_obj_state state
)
276 debug_objects_fixups
+= fixup(addr
, state
);
279 static void debug_object_is_on_stack(void *addr
, int onstack
)
287 is_on_stack
= object_is_on_stack(addr
);
288 if (is_on_stack
== onstack
)
294 "ODEBUG: object is on stack, but not annotated\n");
297 "ODEBUG: object is not on stack, but annotated\n");
302 __debug_object_init(void *addr
, struct debug_obj_descr
*descr
, int onstack
)
304 enum debug_obj_state state
;
305 struct debug_bucket
*db
;
306 struct debug_obj
*obj
;
311 db
= get_bucket((unsigned long) addr
);
313 raw_spin_lock_irqsave(&db
->lock
, flags
);
315 obj
= lookup_object(addr
, db
);
317 obj
= alloc_object(addr
, db
, descr
);
319 debug_objects_enabled
= 0;
320 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
324 debug_object_is_on_stack(addr
, onstack
);
327 switch (obj
->state
) {
328 case ODEBUG_STATE_NONE
:
329 case ODEBUG_STATE_INIT
:
330 case ODEBUG_STATE_INACTIVE
:
331 obj
->state
= ODEBUG_STATE_INIT
;
334 case ODEBUG_STATE_ACTIVE
:
335 debug_print_object(obj
, "init");
337 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
338 debug_object_fixup(descr
->fixup_init
, addr
, state
);
341 case ODEBUG_STATE_DESTROYED
:
342 debug_print_object(obj
, "init");
348 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
352 * debug_object_init - debug checks when an object is initialized
353 * @addr: address of the object
354 * @descr: pointer to an object specific debug description structure
356 void debug_object_init(void *addr
, struct debug_obj_descr
*descr
)
358 if (!debug_objects_enabled
)
361 __debug_object_init(addr
, descr
, 0);
365 * debug_object_init_on_stack - debug checks when an object on stack is
367 * @addr: address of the object
368 * @descr: pointer to an object specific debug description structure
370 void debug_object_init_on_stack(void *addr
, struct debug_obj_descr
*descr
)
372 if (!debug_objects_enabled
)
375 __debug_object_init(addr
, descr
, 1);
379 * debug_object_activate - debug checks when an object is activated
380 * @addr: address of the object
381 * @descr: pointer to an object specific debug description structure
383 void debug_object_activate(void *addr
, struct debug_obj_descr
*descr
)
385 enum debug_obj_state state
;
386 struct debug_bucket
*db
;
387 struct debug_obj
*obj
;
390 if (!debug_objects_enabled
)
393 db
= get_bucket((unsigned long) addr
);
395 raw_spin_lock_irqsave(&db
->lock
, flags
);
397 obj
= lookup_object(addr
, db
);
399 switch (obj
->state
) {
400 case ODEBUG_STATE_INIT
:
401 case ODEBUG_STATE_INACTIVE
:
402 obj
->state
= ODEBUG_STATE_ACTIVE
;
405 case ODEBUG_STATE_ACTIVE
:
406 debug_print_object(obj
, "activate");
408 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
409 debug_object_fixup(descr
->fixup_activate
, addr
, state
);
412 case ODEBUG_STATE_DESTROYED
:
413 debug_print_object(obj
, "activate");
418 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
422 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
424 * This happens when a static object is activated. We
425 * let the type specific code decide whether this is
428 debug_object_fixup(descr
->fixup_activate
, addr
,
429 ODEBUG_STATE_NOTAVAILABLE
);
433 * debug_object_deactivate - debug checks when an object is deactivated
434 * @addr: address of the object
435 * @descr: pointer to an object specific debug description structure
437 void debug_object_deactivate(void *addr
, struct debug_obj_descr
*descr
)
439 struct debug_bucket
*db
;
440 struct debug_obj
*obj
;
443 if (!debug_objects_enabled
)
446 db
= get_bucket((unsigned long) addr
);
448 raw_spin_lock_irqsave(&db
->lock
, flags
);
450 obj
= lookup_object(addr
, db
);
452 switch (obj
->state
) {
453 case ODEBUG_STATE_INIT
:
454 case ODEBUG_STATE_INACTIVE
:
455 case ODEBUG_STATE_ACTIVE
:
457 obj
->state
= ODEBUG_STATE_INACTIVE
;
459 debug_print_object(obj
, "deactivate");
462 case ODEBUG_STATE_DESTROYED
:
463 debug_print_object(obj
, "deactivate");
469 struct debug_obj o
= { .object
= addr
,
470 .state
= ODEBUG_STATE_NOTAVAILABLE
,
473 debug_print_object(&o
, "deactivate");
476 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
480 * debug_object_destroy - debug checks when an object is destroyed
481 * @addr: address of the object
482 * @descr: pointer to an object specific debug description structure
484 void debug_object_destroy(void *addr
, struct debug_obj_descr
*descr
)
486 enum debug_obj_state state
;
487 struct debug_bucket
*db
;
488 struct debug_obj
*obj
;
491 if (!debug_objects_enabled
)
494 db
= get_bucket((unsigned long) addr
);
496 raw_spin_lock_irqsave(&db
->lock
, flags
);
498 obj
= lookup_object(addr
, db
);
502 switch (obj
->state
) {
503 case ODEBUG_STATE_NONE
:
504 case ODEBUG_STATE_INIT
:
505 case ODEBUG_STATE_INACTIVE
:
506 obj
->state
= ODEBUG_STATE_DESTROYED
;
508 case ODEBUG_STATE_ACTIVE
:
509 debug_print_object(obj
, "destroy");
511 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
512 debug_object_fixup(descr
->fixup_destroy
, addr
, state
);
515 case ODEBUG_STATE_DESTROYED
:
516 debug_print_object(obj
, "destroy");
522 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
526 * debug_object_free - debug checks when an object is freed
527 * @addr: address of the object
528 * @descr: pointer to an object specific debug description structure
530 void debug_object_free(void *addr
, struct debug_obj_descr
*descr
)
532 enum debug_obj_state state
;
533 struct debug_bucket
*db
;
534 struct debug_obj
*obj
;
537 if (!debug_objects_enabled
)
540 db
= get_bucket((unsigned long) addr
);
542 raw_spin_lock_irqsave(&db
->lock
, flags
);
544 obj
= lookup_object(addr
, db
);
548 switch (obj
->state
) {
549 case ODEBUG_STATE_ACTIVE
:
550 debug_print_object(obj
, "free");
552 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
553 debug_object_fixup(descr
->fixup_free
, addr
, state
);
556 hlist_del(&obj
->node
);
557 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
562 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
566 * debug_object_active_state - debug checks object usage state machine
567 * @addr: address of the object
568 * @descr: pointer to an object specific debug description structure
569 * @expect: expected state
570 * @next: state to move to if expected state is found
573 debug_object_active_state(void *addr
, struct debug_obj_descr
*descr
,
574 unsigned int expect
, unsigned int next
)
576 struct debug_bucket
*db
;
577 struct debug_obj
*obj
;
580 if (!debug_objects_enabled
)
583 db
= get_bucket((unsigned long) addr
);
585 raw_spin_lock_irqsave(&db
->lock
, flags
);
587 obj
= lookup_object(addr
, db
);
589 switch (obj
->state
) {
590 case ODEBUG_STATE_ACTIVE
:
591 if (obj
->astate
== expect
)
594 debug_print_object(obj
, "active_state");
598 debug_print_object(obj
, "active_state");
602 struct debug_obj o
= { .object
= addr
,
603 .state
= ODEBUG_STATE_NOTAVAILABLE
,
606 debug_print_object(&o
, "active_state");
609 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
612 #ifdef CONFIG_DEBUG_OBJECTS_FREE
613 static void __debug_check_no_obj_freed(const void *address
, unsigned long size
)
615 unsigned long flags
, oaddr
, saddr
, eaddr
, paddr
, chunks
;
616 struct hlist_node
*node
, *tmp
;
617 HLIST_HEAD(freelist
);
618 struct debug_obj_descr
*descr
;
619 enum debug_obj_state state
;
620 struct debug_bucket
*db
;
621 struct debug_obj
*obj
;
624 saddr
= (unsigned long) address
;
625 eaddr
= saddr
+ size
;
626 paddr
= saddr
& ODEBUG_CHUNK_MASK
;
627 chunks
= ((eaddr
- paddr
) + (ODEBUG_CHUNK_SIZE
- 1));
628 chunks
>>= ODEBUG_CHUNK_SHIFT
;
630 for (;chunks
> 0; chunks
--, paddr
+= ODEBUG_CHUNK_SIZE
) {
631 db
= get_bucket(paddr
);
635 raw_spin_lock_irqsave(&db
->lock
, flags
);
636 hlist_for_each_entry_safe(obj
, node
, tmp
, &db
->list
, node
) {
638 oaddr
= (unsigned long) obj
->object
;
639 if (oaddr
< saddr
|| oaddr
>= eaddr
)
642 switch (obj
->state
) {
643 case ODEBUG_STATE_ACTIVE
:
644 debug_print_object(obj
, "free");
647 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
648 debug_object_fixup(descr
->fixup_free
,
649 (void *) oaddr
, state
);
652 hlist_del(&obj
->node
);
653 hlist_add_head(&obj
->node
, &freelist
);
657 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
660 hlist_for_each_entry_safe(obj
, node
, tmp
, &freelist
, node
) {
661 hlist_del(&obj
->node
);
665 if (cnt
> debug_objects_maxchain
)
666 debug_objects_maxchain
= cnt
;
670 void debug_check_no_obj_freed(const void *address
, unsigned long size
)
672 if (debug_objects_enabled
)
673 __debug_check_no_obj_freed(address
, size
);
677 #ifdef CONFIG_DEBUG_FS
679 static int debug_stats_show(struct seq_file
*m
, void *v
)
681 seq_printf(m
, "max_chain :%d\n", debug_objects_maxchain
);
682 seq_printf(m
, "warnings :%d\n", debug_objects_warnings
);
683 seq_printf(m
, "fixups :%d\n", debug_objects_fixups
);
684 seq_printf(m
, "pool_free :%d\n", obj_pool_free
);
685 seq_printf(m
, "pool_min_free :%d\n", obj_pool_min_free
);
686 seq_printf(m
, "pool_used :%d\n", obj_pool_used
);
687 seq_printf(m
, "pool_max_used :%d\n", obj_pool_max_used
);
691 static int debug_stats_open(struct inode
*inode
, struct file
*filp
)
693 return single_open(filp
, debug_stats_show
, NULL
);
696 static const struct file_operations debug_stats_fops
= {
697 .open
= debug_stats_open
,
700 .release
= single_release
,
703 static int __init
debug_objects_init_debugfs(void)
705 struct dentry
*dbgdir
, *dbgstats
;
707 if (!debug_objects_enabled
)
710 dbgdir
= debugfs_create_dir("debug_objects", NULL
);
714 dbgstats
= debugfs_create_file("stats", 0444, dbgdir
, NULL
,
722 debugfs_remove(dbgdir
);
726 __initcall(debug_objects_init_debugfs
);
729 static inline void debug_objects_init_debugfs(void) { }
732 #ifdef CONFIG_DEBUG_OBJECTS_SELFTEST
734 /* Random data structure for the self test */
736 unsigned long dummy1
[6];
738 unsigned long dummy2
[3];
741 static __initdata
struct debug_obj_descr descr_type_test
;
744 * fixup_init is called when:
745 * - an active object is initialized
747 static int __init
fixup_init(void *addr
, enum debug_obj_state state
)
749 struct self_test
*obj
= addr
;
752 case ODEBUG_STATE_ACTIVE
:
753 debug_object_deactivate(obj
, &descr_type_test
);
754 debug_object_init(obj
, &descr_type_test
);
762 * fixup_activate is called when:
763 * - an active object is activated
764 * - an unknown object is activated (might be a statically initialized object)
766 static int __init
fixup_activate(void *addr
, enum debug_obj_state state
)
768 struct self_test
*obj
= addr
;
771 case ODEBUG_STATE_NOTAVAILABLE
:
772 if (obj
->static_init
== 1) {
773 debug_object_init(obj
, &descr_type_test
);
774 debug_object_activate(obj
, &descr_type_test
);
776 * Real code should return 0 here ! This is
777 * not a fixup of some bad behaviour. We
778 * merily call the debug_init function to keep
779 * track of the object.
783 /* Real code needs to emit a warning here */
787 case ODEBUG_STATE_ACTIVE
:
788 debug_object_deactivate(obj
, &descr_type_test
);
789 debug_object_activate(obj
, &descr_type_test
);
798 * fixup_destroy is called when:
799 * - an active object is destroyed
801 static int __init
fixup_destroy(void *addr
, enum debug_obj_state state
)
803 struct self_test
*obj
= addr
;
806 case ODEBUG_STATE_ACTIVE
:
807 debug_object_deactivate(obj
, &descr_type_test
);
808 debug_object_destroy(obj
, &descr_type_test
);
816 * fixup_free is called when:
817 * - an active object is freed
819 static int __init
fixup_free(void *addr
, enum debug_obj_state state
)
821 struct self_test
*obj
= addr
;
824 case ODEBUG_STATE_ACTIVE
:
825 debug_object_deactivate(obj
, &descr_type_test
);
826 debug_object_free(obj
, &descr_type_test
);
834 check_results(void *addr
, enum debug_obj_state state
, int fixups
, int warnings
)
836 struct debug_bucket
*db
;
837 struct debug_obj
*obj
;
841 db
= get_bucket((unsigned long) addr
);
843 raw_spin_lock_irqsave(&db
->lock
, flags
);
845 obj
= lookup_object(addr
, db
);
846 if (!obj
&& state
!= ODEBUG_STATE_NONE
) {
847 WARN(1, KERN_ERR
"ODEBUG: selftest object not found\n");
850 if (obj
&& obj
->state
!= state
) {
851 WARN(1, KERN_ERR
"ODEBUG: selftest wrong state: %d != %d\n",
855 if (fixups
!= debug_objects_fixups
) {
856 WARN(1, KERN_ERR
"ODEBUG: selftest fixups failed %d != %d\n",
857 fixups
, debug_objects_fixups
);
860 if (warnings
!= debug_objects_warnings
) {
861 WARN(1, KERN_ERR
"ODEBUG: selftest warnings failed %d != %d\n",
862 warnings
, debug_objects_warnings
);
867 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
869 debug_objects_enabled
= 0;
873 static __initdata
struct debug_obj_descr descr_type_test
= {
875 .fixup_init
= fixup_init
,
876 .fixup_activate
= fixup_activate
,
877 .fixup_destroy
= fixup_destroy
,
878 .fixup_free
= fixup_free
,
881 static __initdata
struct self_test obj
= { .static_init
= 0 };
883 static void __init
debug_objects_selftest(void)
885 int fixups
, oldfixups
, warnings
, oldwarnings
;
888 local_irq_save(flags
);
890 fixups
= oldfixups
= debug_objects_fixups
;
891 warnings
= oldwarnings
= debug_objects_warnings
;
892 descr_test
= &descr_type_test
;
894 debug_object_init(&obj
, &descr_type_test
);
895 if (check_results(&obj
, ODEBUG_STATE_INIT
, fixups
, warnings
))
897 debug_object_activate(&obj
, &descr_type_test
);
898 if (check_results(&obj
, ODEBUG_STATE_ACTIVE
, fixups
, warnings
))
900 debug_object_activate(&obj
, &descr_type_test
);
901 if (check_results(&obj
, ODEBUG_STATE_ACTIVE
, ++fixups
, ++warnings
))
903 debug_object_deactivate(&obj
, &descr_type_test
);
904 if (check_results(&obj
, ODEBUG_STATE_INACTIVE
, fixups
, warnings
))
906 debug_object_destroy(&obj
, &descr_type_test
);
907 if (check_results(&obj
, ODEBUG_STATE_DESTROYED
, fixups
, warnings
))
909 debug_object_init(&obj
, &descr_type_test
);
910 if (check_results(&obj
, ODEBUG_STATE_DESTROYED
, fixups
, ++warnings
))
912 debug_object_activate(&obj
, &descr_type_test
);
913 if (check_results(&obj
, ODEBUG_STATE_DESTROYED
, fixups
, ++warnings
))
915 debug_object_deactivate(&obj
, &descr_type_test
);
916 if (check_results(&obj
, ODEBUG_STATE_DESTROYED
, fixups
, ++warnings
))
918 debug_object_free(&obj
, &descr_type_test
);
919 if (check_results(&obj
, ODEBUG_STATE_NONE
, fixups
, warnings
))
923 debug_object_activate(&obj
, &descr_type_test
);
924 if (check_results(&obj
, ODEBUG_STATE_ACTIVE
, ++fixups
, warnings
))
926 debug_object_init(&obj
, &descr_type_test
);
927 if (check_results(&obj
, ODEBUG_STATE_INIT
, ++fixups
, ++warnings
))
929 debug_object_free(&obj
, &descr_type_test
);
930 if (check_results(&obj
, ODEBUG_STATE_NONE
, fixups
, warnings
))
933 #ifdef CONFIG_DEBUG_OBJECTS_FREE
934 debug_object_init(&obj
, &descr_type_test
);
935 if (check_results(&obj
, ODEBUG_STATE_INIT
, fixups
, warnings
))
937 debug_object_activate(&obj
, &descr_type_test
);
938 if (check_results(&obj
, ODEBUG_STATE_ACTIVE
, fixups
, warnings
))
940 __debug_check_no_obj_freed(&obj
, sizeof(obj
));
941 if (check_results(&obj
, ODEBUG_STATE_NONE
, ++fixups
, ++warnings
))
944 printk(KERN_INFO
"ODEBUG: selftest passed\n");
947 debug_objects_fixups
= oldfixups
;
948 debug_objects_warnings
= oldwarnings
;
951 local_irq_restore(flags
);
954 static inline void debug_objects_selftest(void) { }
958 * Called during early boot to initialize the hash buckets and link
959 * the static object pool objects into the poll list. After this call
960 * the object tracker is fully operational.
962 void __init
debug_objects_early_init(void)
966 for (i
= 0; i
< ODEBUG_HASH_SIZE
; i
++)
967 raw_spin_lock_init(&obj_hash
[i
].lock
);
969 for (i
= 0; i
< ODEBUG_POOL_SIZE
; i
++)
970 hlist_add_head(&obj_static_pool
[i
].node
, &obj_pool
);
974 * Convert the statically allocated objects to dynamic ones:
976 static int __init
debug_objects_replace_static_objects(void)
978 struct debug_bucket
*db
= obj_hash
;
979 struct hlist_node
*node
, *tmp
;
980 struct debug_obj
*obj
, *new;
984 for (i
= 0; i
< ODEBUG_POOL_SIZE
; i
++) {
985 obj
= kmem_cache_zalloc(obj_cache
, GFP_KERNEL
);
988 hlist_add_head(&obj
->node
, &objects
);
992 * When debug_objects_mem_init() is called we know that only
993 * one CPU is up, so disabling interrupts is enough
994 * protection. This avoids the lockdep hell of lock ordering.
998 /* Remove the statically allocated objects from the pool */
999 hlist_for_each_entry_safe(obj
, node
, tmp
, &obj_pool
, node
)
1000 hlist_del(&obj
->node
);
1001 /* Move the allocated objects to the pool */
1002 hlist_move_list(&objects
, &obj_pool
);
1004 /* Replace the active object references */
1005 for (i
= 0; i
< ODEBUG_HASH_SIZE
; i
++, db
++) {
1006 hlist_move_list(&db
->list
, &objects
);
1008 hlist_for_each_entry(obj
, node
, &objects
, node
) {
1009 new = hlist_entry(obj_pool
.first
, typeof(*obj
), node
);
1010 hlist_del(&new->node
);
1011 /* copy object data */
1013 hlist_add_head(&new->node
, &db
->list
);
1018 printk(KERN_DEBUG
"ODEBUG: %d of %d active objects replaced\n", cnt
,
1023 hlist_for_each_entry_safe(obj
, node
, tmp
, &objects
, node
) {
1024 hlist_del(&obj
->node
);
1025 kmem_cache_free(obj_cache
, obj
);
1031 * Called after the kmem_caches are functional to setup a dedicated
1032 * cache pool, which has the SLAB_DEBUG_OBJECTS flag set. This flag
1033 * prevents that the debug code is called on kmem_cache_free() for the
1034 * debug tracker objects to avoid recursive calls.
1036 void __init
debug_objects_mem_init(void)
1038 if (!debug_objects_enabled
)
1041 obj_cache
= kmem_cache_create("debug_objects_cache",
1042 sizeof (struct debug_obj
), 0,
1043 SLAB_DEBUG_OBJECTS
, NULL
);
1045 if (!obj_cache
|| debug_objects_replace_static_objects()) {
1046 debug_objects_enabled
= 0;
1048 kmem_cache_destroy(obj_cache
);
1049 printk(KERN_WARNING
"ODEBUG: out of memory.\n");
1051 debug_objects_selftest();