1 // SPDX-License-Identifier: GPL-2.0
3 * Generic infrastructure for lifetime debugging of objects.
5 * Copyright (C) 2008, Thomas Gleixner <tglx@linutronix.de>
8 #define pr_fmt(fmt) "ODEBUG: " fmt
10 #include <linux/debugobjects.h>
11 #include <linux/interrupt.h>
12 #include <linux/sched.h>
13 #include <linux/sched/task_stack.h>
14 #include <linux/seq_file.h>
15 #include <linux/debugfs.h>
16 #include <linux/slab.h>
17 #include <linux/hash.h>
18 #include <linux/kmemleak.h>
19 #include <linux/cpu.h>
21 #define ODEBUG_HASH_BITS 14
22 #define ODEBUG_HASH_SIZE (1 << ODEBUG_HASH_BITS)
24 #define ODEBUG_POOL_SIZE 1024
25 #define ODEBUG_POOL_MIN_LEVEL 256
26 #define ODEBUG_POOL_PERCPU_SIZE 64
27 #define ODEBUG_BATCH_SIZE 16
29 #define ODEBUG_CHUNK_SHIFT PAGE_SHIFT
30 #define ODEBUG_CHUNK_SIZE (1 << ODEBUG_CHUNK_SHIFT)
31 #define ODEBUG_CHUNK_MASK (~(ODEBUG_CHUNK_SIZE - 1))
34 * We limit the freeing of debug objects via workqueue at a maximum
35 * frequency of 10Hz and about 1024 objects for each freeing operation.
36 * So it is freeing at most 10k debug objects per second.
38 #define ODEBUG_FREE_WORK_MAX 1024
39 #define ODEBUG_FREE_WORK_DELAY DIV_ROUND_UP(HZ, 10)
42 struct hlist_head list
;
47 * Debug object percpu free list
48 * Access is protected by disabling irq
50 struct debug_percpu_free
{
51 struct hlist_head free_objs
;
55 static DEFINE_PER_CPU(struct debug_percpu_free
, percpu_obj_pool
);
57 static struct debug_bucket obj_hash
[ODEBUG_HASH_SIZE
];
59 static struct debug_obj obj_static_pool
[ODEBUG_POOL_SIZE
] __initdata
;
61 static DEFINE_RAW_SPINLOCK(pool_lock
);
63 static HLIST_HEAD(obj_pool
);
64 static HLIST_HEAD(obj_to_free
);
67 * Because of the presence of percpu free pools, obj_pool_free will
68 * under-count those in the percpu free pools. Similarly, obj_pool_used
69 * will over-count those in the percpu free pools. Adjustments will be
70 * made at debug_stats_show(). Both obj_pool_min_free and obj_pool_max_used
73 static int obj_pool_min_free
= ODEBUG_POOL_SIZE
;
74 static int obj_pool_free
= ODEBUG_POOL_SIZE
;
75 static int obj_pool_used
;
76 static int obj_pool_max_used
;
77 static bool obj_freeing
;
78 /* The number of objs on the global free list */
79 static int obj_nr_tofree
;
81 static int debug_objects_maxchain __read_mostly
;
82 static int __maybe_unused debug_objects_maxchecked __read_mostly
;
83 static int debug_objects_fixups __read_mostly
;
84 static int debug_objects_warnings __read_mostly
;
85 static int debug_objects_enabled __read_mostly
86 = CONFIG_DEBUG_OBJECTS_ENABLE_DEFAULT
;
87 static int debug_objects_pool_size __read_mostly
89 static int debug_objects_pool_min_level __read_mostly
90 = ODEBUG_POOL_MIN_LEVEL
;
91 static const struct debug_obj_descr
*descr_test __read_mostly
;
92 static struct kmem_cache
*obj_cache __ro_after_init
;
95 * Track numbers of kmem_cache_alloc()/free() calls done.
97 static int debug_objects_allocated
;
98 static int debug_objects_freed
;
100 static void free_obj_work(struct work_struct
*work
);
101 static DECLARE_DELAYED_WORK(debug_obj_work
, free_obj_work
);
103 static int __init
enable_object_debug(char *str
)
105 debug_objects_enabled
= 1;
109 static int __init
disable_object_debug(char *str
)
111 debug_objects_enabled
= 0;
115 early_param("debug_objects", enable_object_debug
);
116 early_param("no_debug_objects", disable_object_debug
);
118 static const char *obj_states
[ODEBUG_STATE_MAX
] = {
119 [ODEBUG_STATE_NONE
] = "none",
120 [ODEBUG_STATE_INIT
] = "initialized",
121 [ODEBUG_STATE_INACTIVE
] = "inactive",
122 [ODEBUG_STATE_ACTIVE
] = "active",
123 [ODEBUG_STATE_DESTROYED
] = "destroyed",
124 [ODEBUG_STATE_NOTAVAILABLE
] = "not available",
127 static void fill_pool(void)
129 gfp_t gfp
= __GFP_HIGH
| __GFP_NOWARN
;
130 struct debug_obj
*obj
;
133 if (likely(READ_ONCE(obj_pool_free
) >= debug_objects_pool_min_level
))
137 * Reuse objs from the global free list; they will be reinitialized
140 * Both obj_nr_tofree and obj_pool_free are checked locklessly; the
141 * READ_ONCE()s pair with the WRITE_ONCE()s in pool_lock critical
144 while (READ_ONCE(obj_nr_tofree
) && (READ_ONCE(obj_pool_free
) < obj_pool_min_free
)) {
145 raw_spin_lock_irqsave(&pool_lock
, flags
);
147 * Recheck with the lock held as the worker thread might have
148 * won the race and freed the global free list already.
150 while (obj_nr_tofree
&& (obj_pool_free
< obj_pool_min_free
)) {
151 obj
= hlist_entry(obj_to_free
.first
, typeof(*obj
), node
);
152 hlist_del(&obj
->node
);
153 WRITE_ONCE(obj_nr_tofree
, obj_nr_tofree
- 1);
154 hlist_add_head(&obj
->node
, &obj_pool
);
155 WRITE_ONCE(obj_pool_free
, obj_pool_free
+ 1);
157 raw_spin_unlock_irqrestore(&pool_lock
, flags
);
160 if (unlikely(!obj_cache
))
163 while (READ_ONCE(obj_pool_free
) < debug_objects_pool_min_level
) {
164 struct debug_obj
*new[ODEBUG_BATCH_SIZE
];
167 for (cnt
= 0; cnt
< ODEBUG_BATCH_SIZE
; cnt
++) {
168 new[cnt
] = kmem_cache_zalloc(obj_cache
, gfp
);
175 raw_spin_lock_irqsave(&pool_lock
, flags
);
177 hlist_add_head(&new[--cnt
]->node
, &obj_pool
);
178 debug_objects_allocated
++;
179 WRITE_ONCE(obj_pool_free
, obj_pool_free
+ 1);
181 raw_spin_unlock_irqrestore(&pool_lock
, flags
);
186 * Lookup an object in the hash bucket.
188 static struct debug_obj
*lookup_object(void *addr
, struct debug_bucket
*b
)
190 struct debug_obj
*obj
;
193 hlist_for_each_entry(obj
, &b
->list
, node
) {
195 if (obj
->object
== addr
)
198 if (cnt
> debug_objects_maxchain
)
199 debug_objects_maxchain
= cnt
;
205 * Allocate a new object from the hlist
207 static struct debug_obj
*__alloc_object(struct hlist_head
*list
)
209 struct debug_obj
*obj
= NULL
;
212 obj
= hlist_entry(list
->first
, typeof(*obj
), node
);
213 hlist_del(&obj
->node
);
219 static struct debug_obj
*
220 alloc_object(void *addr
, struct debug_bucket
*b
, const struct debug_obj_descr
*descr
)
222 struct debug_percpu_free
*percpu_pool
= this_cpu_ptr(&percpu_obj_pool
);
223 struct debug_obj
*obj
;
225 if (likely(obj_cache
)) {
226 obj
= __alloc_object(&percpu_pool
->free_objs
);
228 percpu_pool
->obj_free
--;
233 raw_spin_lock(&pool_lock
);
234 obj
= __alloc_object(&obj_pool
);
237 WRITE_ONCE(obj_pool_free
, obj_pool_free
- 1);
240 * Looking ahead, allocate one batch of debug objects and
241 * put them into the percpu free pool.
243 if (likely(obj_cache
)) {
246 for (i
= 0; i
< ODEBUG_BATCH_SIZE
; i
++) {
247 struct debug_obj
*obj2
;
249 obj2
= __alloc_object(&obj_pool
);
252 hlist_add_head(&obj2
->node
,
253 &percpu_pool
->free_objs
);
254 percpu_pool
->obj_free
++;
256 WRITE_ONCE(obj_pool_free
, obj_pool_free
- 1);
260 if (obj_pool_used
> obj_pool_max_used
)
261 obj_pool_max_used
= obj_pool_used
;
263 if (obj_pool_free
< obj_pool_min_free
)
264 obj_pool_min_free
= obj_pool_free
;
266 raw_spin_unlock(&pool_lock
);
272 obj
->state
= ODEBUG_STATE_NONE
;
274 hlist_add_head(&obj
->node
, &b
->list
);
280 * workqueue function to free objects.
282 * To reduce contention on the global pool_lock, the actual freeing of
283 * debug objects will be delayed if the pool_lock is busy.
285 static void free_obj_work(struct work_struct
*work
)
287 struct hlist_node
*tmp
;
288 struct debug_obj
*obj
;
292 WRITE_ONCE(obj_freeing
, false);
293 if (!raw_spin_trylock_irqsave(&pool_lock
, flags
))
296 if (obj_pool_free
>= debug_objects_pool_size
)
300 * The objs on the pool list might be allocated before the work is
301 * run, so recheck if pool list it full or not, if not fill pool
302 * list from the global free list. As it is likely that a workload
303 * may be gearing up to use more and more objects, don't free any
304 * of them until the next round.
306 while (obj_nr_tofree
&& obj_pool_free
< debug_objects_pool_size
) {
307 obj
= hlist_entry(obj_to_free
.first
, typeof(*obj
), node
);
308 hlist_del(&obj
->node
);
309 hlist_add_head(&obj
->node
, &obj_pool
);
310 WRITE_ONCE(obj_pool_free
, obj_pool_free
+ 1);
311 WRITE_ONCE(obj_nr_tofree
, obj_nr_tofree
- 1);
313 raw_spin_unlock_irqrestore(&pool_lock
, flags
);
318 * Pool list is already full and there are still objs on the free
319 * list. Move remaining free objs to a temporary list to free the
320 * memory outside the pool_lock held region.
323 hlist_move_list(&obj_to_free
, &tofree
);
324 debug_objects_freed
+= obj_nr_tofree
;
325 WRITE_ONCE(obj_nr_tofree
, 0);
327 raw_spin_unlock_irqrestore(&pool_lock
, flags
);
329 hlist_for_each_entry_safe(obj
, tmp
, &tofree
, node
) {
330 hlist_del(&obj
->node
);
331 kmem_cache_free(obj_cache
, obj
);
335 static void __free_object(struct debug_obj
*obj
)
337 struct debug_obj
*objs
[ODEBUG_BATCH_SIZE
];
338 struct debug_percpu_free
*percpu_pool
;
339 int lookahead_count
= 0;
343 local_irq_save(flags
);
345 goto free_to_obj_pool
;
348 * Try to free it into the percpu pool first.
350 percpu_pool
= this_cpu_ptr(&percpu_obj_pool
);
351 if (percpu_pool
->obj_free
< ODEBUG_POOL_PERCPU_SIZE
) {
352 hlist_add_head(&obj
->node
, &percpu_pool
->free_objs
);
353 percpu_pool
->obj_free
++;
354 local_irq_restore(flags
);
359 * As the percpu pool is full, look ahead and pull out a batch
360 * of objects from the percpu pool and free them as well.
362 for (; lookahead_count
< ODEBUG_BATCH_SIZE
; lookahead_count
++) {
363 objs
[lookahead_count
] = __alloc_object(&percpu_pool
->free_objs
);
364 if (!objs
[lookahead_count
])
366 percpu_pool
->obj_free
--;
370 raw_spin_lock(&pool_lock
);
371 work
= (obj_pool_free
> debug_objects_pool_size
) && obj_cache
&&
372 (obj_nr_tofree
< ODEBUG_FREE_WORK_MAX
);
376 WRITE_ONCE(obj_nr_tofree
, obj_nr_tofree
+ 1);
377 hlist_add_head(&obj
->node
, &obj_to_free
);
378 if (lookahead_count
) {
379 WRITE_ONCE(obj_nr_tofree
, obj_nr_tofree
+ lookahead_count
);
380 obj_pool_used
-= lookahead_count
;
381 while (lookahead_count
) {
382 hlist_add_head(&objs
[--lookahead_count
]->node
,
387 if ((obj_pool_free
> debug_objects_pool_size
) &&
388 (obj_nr_tofree
< ODEBUG_FREE_WORK_MAX
)) {
392 * Free one more batch of objects from obj_pool.
394 for (i
= 0; i
< ODEBUG_BATCH_SIZE
; i
++) {
395 obj
= __alloc_object(&obj_pool
);
396 hlist_add_head(&obj
->node
, &obj_to_free
);
397 WRITE_ONCE(obj_pool_free
, obj_pool_free
- 1);
398 WRITE_ONCE(obj_nr_tofree
, obj_nr_tofree
+ 1);
402 WRITE_ONCE(obj_pool_free
, obj_pool_free
+ 1);
403 hlist_add_head(&obj
->node
, &obj_pool
);
404 if (lookahead_count
) {
405 WRITE_ONCE(obj_pool_free
, obj_pool_free
+ lookahead_count
);
406 obj_pool_used
-= lookahead_count
;
407 while (lookahead_count
) {
408 hlist_add_head(&objs
[--lookahead_count
]->node
,
413 raw_spin_unlock(&pool_lock
);
414 local_irq_restore(flags
);
418 * Put the object back into the pool and schedule work to free objects
421 static void free_object(struct debug_obj
*obj
)
424 if (!READ_ONCE(obj_freeing
) && READ_ONCE(obj_nr_tofree
)) {
425 WRITE_ONCE(obj_freeing
, true);
426 schedule_delayed_work(&debug_obj_work
, ODEBUG_FREE_WORK_DELAY
);
430 #ifdef CONFIG_HOTPLUG_CPU
431 static int object_cpu_offline(unsigned int cpu
)
433 struct debug_percpu_free
*percpu_pool
;
434 struct hlist_node
*tmp
;
435 struct debug_obj
*obj
;
438 /* Remote access is safe as the CPU is dead already */
439 percpu_pool
= per_cpu_ptr(&percpu_obj_pool
, cpu
);
440 hlist_for_each_entry_safe(obj
, tmp
, &percpu_pool
->free_objs
, node
) {
441 hlist_del(&obj
->node
);
442 kmem_cache_free(obj_cache
, obj
);
445 raw_spin_lock_irqsave(&pool_lock
, flags
);
446 obj_pool_used
-= percpu_pool
->obj_free
;
447 debug_objects_freed
+= percpu_pool
->obj_free
;
448 raw_spin_unlock_irqrestore(&pool_lock
, flags
);
450 percpu_pool
->obj_free
= 0;
457 * We run out of memory. That means we probably have tons of objects
460 static void debug_objects_oom(void)
462 struct debug_bucket
*db
= obj_hash
;
463 struct hlist_node
*tmp
;
464 HLIST_HEAD(freelist
);
465 struct debug_obj
*obj
;
469 pr_warn("Out of memory. ODEBUG disabled\n");
471 for (i
= 0; i
< ODEBUG_HASH_SIZE
; i
++, db
++) {
472 raw_spin_lock_irqsave(&db
->lock
, flags
);
473 hlist_move_list(&db
->list
, &freelist
);
474 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
477 hlist_for_each_entry_safe(obj
, tmp
, &freelist
, node
) {
478 hlist_del(&obj
->node
);
485 * We use the pfn of the address for the hash. That way we can check
486 * for freed objects simply by checking the affected bucket.
488 static struct debug_bucket
*get_bucket(unsigned long addr
)
492 hash
= hash_long((addr
>> ODEBUG_CHUNK_SHIFT
), ODEBUG_HASH_BITS
);
493 return &obj_hash
[hash
];
496 static void debug_print_object(struct debug_obj
*obj
, char *msg
)
498 const struct debug_obj_descr
*descr
= obj
->descr
;
502 * Don't report if lookup_object_or_alloc() by the current thread
503 * failed because lookup_object_or_alloc()/debug_objects_oom() by a
504 * concurrent thread turned off debug_objects_enabled and cleared
507 if (!debug_objects_enabled
)
510 if (limit
< 5 && descr
!= descr_test
) {
511 void *hint
= descr
->debug_hint
?
512 descr
->debug_hint(obj
->object
) : NULL
;
514 WARN(1, KERN_ERR
"ODEBUG: %s %s (active state %u) "
515 "object: %p object type: %s hint: %pS\n",
516 msg
, obj_states
[obj
->state
], obj
->astate
,
517 obj
->object
, descr
->name
, hint
);
519 debug_objects_warnings
++;
523 * Try to repair the damage, so we have a better chance to get useful
527 debug_object_fixup(bool (*fixup
)(void *addr
, enum debug_obj_state state
),
528 void * addr
, enum debug_obj_state state
)
530 if (fixup
&& fixup(addr
, state
)) {
531 debug_objects_fixups
++;
537 static void debug_object_is_on_stack(void *addr
, int onstack
)
545 is_on_stack
= object_is_on_stack(addr
);
546 if (is_on_stack
== onstack
)
551 pr_warn("object %p is on stack %p, but NOT annotated.\n", addr
,
552 task_stack_page(current
));
554 pr_warn("object %p is NOT on stack %p, but annotated.\n", addr
,
555 task_stack_page(current
));
560 static struct debug_obj
*lookup_object_or_alloc(void *addr
, struct debug_bucket
*b
,
561 const struct debug_obj_descr
*descr
,
562 bool onstack
, bool alloc_ifstatic
)
564 struct debug_obj
*obj
= lookup_object(addr
, b
);
565 enum debug_obj_state state
= ODEBUG_STATE_NONE
;
571 * debug_object_init() unconditionally allocates untracked
572 * objects. It does not matter whether it is a static object or
575 * debug_object_assert_init() and debug_object_activate() allow
576 * allocation only if the descriptor callback confirms that the
577 * object is static and considered initialized. For non-static
578 * objects the allocation needs to be done from the fixup callback.
580 if (unlikely(alloc_ifstatic
)) {
581 if (!descr
->is_static_object
|| !descr
->is_static_object(addr
))
582 return ERR_PTR(-ENOENT
);
583 /* Statically allocated objects are considered initialized */
584 state
= ODEBUG_STATE_INIT
;
587 obj
= alloc_object(addr
, b
, descr
);
590 debug_object_is_on_stack(addr
, onstack
);
594 /* Out of memory. Do the cleanup outside of the locked region */
595 debug_objects_enabled
= 0;
599 static void debug_objects_fill_pool(void)
602 * On RT enabled kernels the pool refill must happen in preemptible
603 * context -- for !RT kernels we rely on the fact that spinlock_t and
604 * raw_spinlock_t are basically the same type and this lock-type
605 * inversion works just fine.
607 if (!IS_ENABLED(CONFIG_PREEMPT_RT
) || preemptible()) {
609 * Annotate away the spinlock_t inside raw_spinlock_t warning
610 * by temporarily raising the wait-type to WAIT_SLEEP, matching
611 * the preemptible() condition above.
613 static DEFINE_WAIT_OVERRIDE_MAP(fill_pool_map
, LD_WAIT_SLEEP
);
614 lock_map_acquire_try(&fill_pool_map
);
616 lock_map_release(&fill_pool_map
);
621 __debug_object_init(void *addr
, const struct debug_obj_descr
*descr
, int onstack
)
623 struct debug_obj
*obj
, o
;
624 struct debug_bucket
*db
;
627 debug_objects_fill_pool();
629 db
= get_bucket((unsigned long) addr
);
631 raw_spin_lock_irqsave(&db
->lock
, flags
);
633 obj
= lookup_object_or_alloc(addr
, db
, descr
, onstack
, false);
634 if (unlikely(!obj
)) {
635 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
640 switch (obj
->state
) {
641 case ODEBUG_STATE_NONE
:
642 case ODEBUG_STATE_INIT
:
643 case ODEBUG_STATE_INACTIVE
:
644 obj
->state
= ODEBUG_STATE_INIT
;
645 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
652 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
653 debug_print_object(&o
, "init");
655 if (o
.state
== ODEBUG_STATE_ACTIVE
)
656 debug_object_fixup(descr
->fixup_init
, addr
, o
.state
);
660 * debug_object_init - debug checks when an object is initialized
661 * @addr: address of the object
662 * @descr: pointer to an object specific debug description structure
664 void debug_object_init(void *addr
, const struct debug_obj_descr
*descr
)
666 if (!debug_objects_enabled
)
669 __debug_object_init(addr
, descr
, 0);
671 EXPORT_SYMBOL_GPL(debug_object_init
);
674 * debug_object_init_on_stack - debug checks when an object on stack is
676 * @addr: address of the object
677 * @descr: pointer to an object specific debug description structure
679 void debug_object_init_on_stack(void *addr
, const struct debug_obj_descr
*descr
)
681 if (!debug_objects_enabled
)
684 __debug_object_init(addr
, descr
, 1);
686 EXPORT_SYMBOL_GPL(debug_object_init_on_stack
);
689 * debug_object_activate - debug checks when an object is activated
690 * @addr: address of the object
691 * @descr: pointer to an object specific debug description structure
692 * Returns 0 for success, -EINVAL for check failed.
694 int debug_object_activate(void *addr
, const struct debug_obj_descr
*descr
)
696 struct debug_obj o
= { .object
= addr
, .state
= ODEBUG_STATE_NOTAVAILABLE
, .descr
= descr
};
697 struct debug_bucket
*db
;
698 struct debug_obj
*obj
;
701 if (!debug_objects_enabled
)
704 debug_objects_fill_pool();
706 db
= get_bucket((unsigned long) addr
);
708 raw_spin_lock_irqsave(&db
->lock
, flags
);
710 obj
= lookup_object_or_alloc(addr
, db
, descr
, false, true);
711 if (unlikely(!obj
)) {
712 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
715 } else if (likely(!IS_ERR(obj
))) {
716 switch (obj
->state
) {
717 case ODEBUG_STATE_ACTIVE
:
718 case ODEBUG_STATE_DESTROYED
:
721 case ODEBUG_STATE_INIT
:
722 case ODEBUG_STATE_INACTIVE
:
723 obj
->state
= ODEBUG_STATE_ACTIVE
;
726 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
731 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
732 debug_print_object(&o
, "activate");
735 case ODEBUG_STATE_ACTIVE
:
736 case ODEBUG_STATE_NOTAVAILABLE
:
737 if (debug_object_fixup(descr
->fixup_activate
, addr
, o
.state
))
744 EXPORT_SYMBOL_GPL(debug_object_activate
);
747 * debug_object_deactivate - debug checks when an object is deactivated
748 * @addr: address of the object
749 * @descr: pointer to an object specific debug description structure
751 void debug_object_deactivate(void *addr
, const struct debug_obj_descr
*descr
)
753 struct debug_obj o
= { .object
= addr
, .state
= ODEBUG_STATE_NOTAVAILABLE
, .descr
= descr
};
754 struct debug_bucket
*db
;
755 struct debug_obj
*obj
;
758 if (!debug_objects_enabled
)
761 db
= get_bucket((unsigned long) addr
);
763 raw_spin_lock_irqsave(&db
->lock
, flags
);
765 obj
= lookup_object(addr
, db
);
767 switch (obj
->state
) {
768 case ODEBUG_STATE_DESTROYED
:
770 case ODEBUG_STATE_INIT
:
771 case ODEBUG_STATE_INACTIVE
:
772 case ODEBUG_STATE_ACTIVE
:
775 obj
->state
= ODEBUG_STATE_INACTIVE
;
778 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
784 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
785 debug_print_object(&o
, "deactivate");
787 EXPORT_SYMBOL_GPL(debug_object_deactivate
);
790 * debug_object_destroy - debug checks when an object is destroyed
791 * @addr: address of the object
792 * @descr: pointer to an object specific debug description structure
794 void debug_object_destroy(void *addr
, const struct debug_obj_descr
*descr
)
796 struct debug_obj
*obj
, o
;
797 struct debug_bucket
*db
;
800 if (!debug_objects_enabled
)
803 db
= get_bucket((unsigned long) addr
);
805 raw_spin_lock_irqsave(&db
->lock
, flags
);
807 obj
= lookup_object(addr
, db
);
809 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
813 switch (obj
->state
) {
814 case ODEBUG_STATE_ACTIVE
:
815 case ODEBUG_STATE_DESTROYED
:
817 case ODEBUG_STATE_NONE
:
818 case ODEBUG_STATE_INIT
:
819 case ODEBUG_STATE_INACTIVE
:
820 obj
->state
= ODEBUG_STATE_DESTROYED
;
823 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
828 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
829 debug_print_object(&o
, "destroy");
831 if (o
.state
== ODEBUG_STATE_ACTIVE
)
832 debug_object_fixup(descr
->fixup_destroy
, addr
, o
.state
);
834 EXPORT_SYMBOL_GPL(debug_object_destroy
);
837 * debug_object_free - debug checks when an object is freed
838 * @addr: address of the object
839 * @descr: pointer to an object specific debug description structure
841 void debug_object_free(void *addr
, const struct debug_obj_descr
*descr
)
843 struct debug_obj
*obj
, o
;
844 struct debug_bucket
*db
;
847 if (!debug_objects_enabled
)
850 db
= get_bucket((unsigned long) addr
);
852 raw_spin_lock_irqsave(&db
->lock
, flags
);
854 obj
= lookup_object(addr
, db
);
856 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
860 switch (obj
->state
) {
861 case ODEBUG_STATE_ACTIVE
:
864 hlist_del(&obj
->node
);
865 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
871 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
872 debug_print_object(&o
, "free");
874 debug_object_fixup(descr
->fixup_free
, addr
, o
.state
);
876 EXPORT_SYMBOL_GPL(debug_object_free
);
879 * debug_object_assert_init - debug checks when object should be init-ed
880 * @addr: address of the object
881 * @descr: pointer to an object specific debug description structure
883 void debug_object_assert_init(void *addr
, const struct debug_obj_descr
*descr
)
885 struct debug_obj o
= { .object
= addr
, .state
= ODEBUG_STATE_NOTAVAILABLE
, .descr
= descr
};
886 struct debug_bucket
*db
;
887 struct debug_obj
*obj
;
890 if (!debug_objects_enabled
)
893 debug_objects_fill_pool();
895 db
= get_bucket((unsigned long) addr
);
897 raw_spin_lock_irqsave(&db
->lock
, flags
);
898 obj
= lookup_object_or_alloc(addr
, db
, descr
, false, true);
899 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
900 if (likely(!IS_ERR_OR_NULL(obj
)))
903 /* If NULL the allocation has hit OOM */
909 /* Object is neither tracked nor static. It's not initialized. */
910 debug_print_object(&o
, "assert_init");
911 debug_object_fixup(descr
->fixup_assert_init
, addr
, ODEBUG_STATE_NOTAVAILABLE
);
913 EXPORT_SYMBOL_GPL(debug_object_assert_init
);
916 * debug_object_active_state - debug checks object usage state machine
917 * @addr: address of the object
918 * @descr: pointer to an object specific debug description structure
919 * @expect: expected state
920 * @next: state to move to if expected state is found
923 debug_object_active_state(void *addr
, const struct debug_obj_descr
*descr
,
924 unsigned int expect
, unsigned int next
)
926 struct debug_obj o
= { .object
= addr
, .state
= ODEBUG_STATE_NOTAVAILABLE
, .descr
= descr
};
927 struct debug_bucket
*db
;
928 struct debug_obj
*obj
;
931 if (!debug_objects_enabled
)
934 db
= get_bucket((unsigned long) addr
);
936 raw_spin_lock_irqsave(&db
->lock
, flags
);
938 obj
= lookup_object(addr
, db
);
940 switch (obj
->state
) {
941 case ODEBUG_STATE_ACTIVE
:
942 if (obj
->astate
!= expect
)
945 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
953 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
954 debug_print_object(&o
, "active_state");
956 EXPORT_SYMBOL_GPL(debug_object_active_state
);
958 #ifdef CONFIG_DEBUG_OBJECTS_FREE
959 static void __debug_check_no_obj_freed(const void *address
, unsigned long size
)
961 unsigned long flags
, oaddr
, saddr
, eaddr
, paddr
, chunks
;
962 int cnt
, objs_checked
= 0;
963 struct debug_obj
*obj
, o
;
964 struct debug_bucket
*db
;
965 struct hlist_node
*tmp
;
967 saddr
= (unsigned long) address
;
968 eaddr
= saddr
+ size
;
969 paddr
= saddr
& ODEBUG_CHUNK_MASK
;
970 chunks
= ((eaddr
- paddr
) + (ODEBUG_CHUNK_SIZE
- 1));
971 chunks
>>= ODEBUG_CHUNK_SHIFT
;
973 for (;chunks
> 0; chunks
--, paddr
+= ODEBUG_CHUNK_SIZE
) {
974 db
= get_bucket(paddr
);
978 raw_spin_lock_irqsave(&db
->lock
, flags
);
979 hlist_for_each_entry_safe(obj
, tmp
, &db
->list
, node
) {
981 oaddr
= (unsigned long) obj
->object
;
982 if (oaddr
< saddr
|| oaddr
>= eaddr
)
985 switch (obj
->state
) {
986 case ODEBUG_STATE_ACTIVE
:
988 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
989 debug_print_object(&o
, "free");
990 debug_object_fixup(o
.descr
->fixup_free
, (void *)oaddr
, o
.state
);
993 hlist_del(&obj
->node
);
998 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
1000 if (cnt
> debug_objects_maxchain
)
1001 debug_objects_maxchain
= cnt
;
1003 objs_checked
+= cnt
;
1006 if (objs_checked
> debug_objects_maxchecked
)
1007 debug_objects_maxchecked
= objs_checked
;
1009 /* Schedule work to actually kmem_cache_free() objects */
1010 if (!READ_ONCE(obj_freeing
) && READ_ONCE(obj_nr_tofree
)) {
1011 WRITE_ONCE(obj_freeing
, true);
1012 schedule_delayed_work(&debug_obj_work
, ODEBUG_FREE_WORK_DELAY
);
1016 void debug_check_no_obj_freed(const void *address
, unsigned long size
)
1018 if (debug_objects_enabled
)
1019 __debug_check_no_obj_freed(address
, size
);
1023 #ifdef CONFIG_DEBUG_FS
1025 static int debug_stats_show(struct seq_file
*m
, void *v
)
1027 int cpu
, obj_percpu_free
= 0;
1029 for_each_possible_cpu(cpu
)
1030 obj_percpu_free
+= per_cpu(percpu_obj_pool
.obj_free
, cpu
);
1032 seq_printf(m
, "max_chain :%d\n", debug_objects_maxchain
);
1033 seq_printf(m
, "max_checked :%d\n", debug_objects_maxchecked
);
1034 seq_printf(m
, "warnings :%d\n", debug_objects_warnings
);
1035 seq_printf(m
, "fixups :%d\n", debug_objects_fixups
);
1036 seq_printf(m
, "pool_free :%d\n", READ_ONCE(obj_pool_free
) + obj_percpu_free
);
1037 seq_printf(m
, "pool_pcp_free :%d\n", obj_percpu_free
);
1038 seq_printf(m
, "pool_min_free :%d\n", obj_pool_min_free
);
1039 seq_printf(m
, "pool_used :%d\n", obj_pool_used
- obj_percpu_free
);
1040 seq_printf(m
, "pool_max_used :%d\n", obj_pool_max_used
);
1041 seq_printf(m
, "on_free_list :%d\n", READ_ONCE(obj_nr_tofree
));
1042 seq_printf(m
, "objs_allocated:%d\n", debug_objects_allocated
);
1043 seq_printf(m
, "objs_freed :%d\n", debug_objects_freed
);
1046 DEFINE_SHOW_ATTRIBUTE(debug_stats
);
1048 static int __init
debug_objects_init_debugfs(void)
1050 struct dentry
*dbgdir
;
1052 if (!debug_objects_enabled
)
1055 dbgdir
= debugfs_create_dir("debug_objects", NULL
);
1057 debugfs_create_file("stats", 0444, dbgdir
, NULL
, &debug_stats_fops
);
1061 __initcall(debug_objects_init_debugfs
);
1064 static inline void debug_objects_init_debugfs(void) { }
1067 #ifdef CONFIG_DEBUG_OBJECTS_SELFTEST
1069 /* Random data structure for the self test */
1071 unsigned long dummy1
[6];
1073 unsigned long dummy2
[3];
1076 static __initconst
const struct debug_obj_descr descr_type_test
;
1078 static bool __init
is_static_object(void *addr
)
1080 struct self_test
*obj
= addr
;
1082 return obj
->static_init
;
1086 * fixup_init is called when:
1087 * - an active object is initialized
1089 static bool __init
fixup_init(void *addr
, enum debug_obj_state state
)
1091 struct self_test
*obj
= addr
;
1094 case ODEBUG_STATE_ACTIVE
:
1095 debug_object_deactivate(obj
, &descr_type_test
);
1096 debug_object_init(obj
, &descr_type_test
);
1104 * fixup_activate is called when:
1105 * - an active object is activated
1106 * - an unknown non-static object is activated
1108 static bool __init
fixup_activate(void *addr
, enum debug_obj_state state
)
1110 struct self_test
*obj
= addr
;
1113 case ODEBUG_STATE_NOTAVAILABLE
:
1115 case ODEBUG_STATE_ACTIVE
:
1116 debug_object_deactivate(obj
, &descr_type_test
);
1117 debug_object_activate(obj
, &descr_type_test
);
1126 * fixup_destroy is called when:
1127 * - an active object is destroyed
1129 static bool __init
fixup_destroy(void *addr
, enum debug_obj_state state
)
1131 struct self_test
*obj
= addr
;
1134 case ODEBUG_STATE_ACTIVE
:
1135 debug_object_deactivate(obj
, &descr_type_test
);
1136 debug_object_destroy(obj
, &descr_type_test
);
1144 * fixup_free is called when:
1145 * - an active object is freed
1147 static bool __init
fixup_free(void *addr
, enum debug_obj_state state
)
1149 struct self_test
*obj
= addr
;
1152 case ODEBUG_STATE_ACTIVE
:
1153 debug_object_deactivate(obj
, &descr_type_test
);
1154 debug_object_free(obj
, &descr_type_test
);
1162 check_results(void *addr
, enum debug_obj_state state
, int fixups
, int warnings
)
1164 struct debug_bucket
*db
;
1165 struct debug_obj
*obj
;
1166 unsigned long flags
;
1169 db
= get_bucket((unsigned long) addr
);
1171 raw_spin_lock_irqsave(&db
->lock
, flags
);
1173 obj
= lookup_object(addr
, db
);
1174 if (!obj
&& state
!= ODEBUG_STATE_NONE
) {
1175 WARN(1, KERN_ERR
"ODEBUG: selftest object not found\n");
1178 if (obj
&& obj
->state
!= state
) {
1179 WARN(1, KERN_ERR
"ODEBUG: selftest wrong state: %d != %d\n",
1183 if (fixups
!= debug_objects_fixups
) {
1184 WARN(1, KERN_ERR
"ODEBUG: selftest fixups failed %d != %d\n",
1185 fixups
, debug_objects_fixups
);
1188 if (warnings
!= debug_objects_warnings
) {
1189 WARN(1, KERN_ERR
"ODEBUG: selftest warnings failed %d != %d\n",
1190 warnings
, debug_objects_warnings
);
1195 raw_spin_unlock_irqrestore(&db
->lock
, flags
);
1197 debug_objects_enabled
= 0;
1201 static __initconst
const struct debug_obj_descr descr_type_test
= {
1203 .is_static_object
= is_static_object
,
1204 .fixup_init
= fixup_init
,
1205 .fixup_activate
= fixup_activate
,
1206 .fixup_destroy
= fixup_destroy
,
1207 .fixup_free
= fixup_free
,
1210 static __initdata
struct self_test obj
= { .static_init
= 0 };
1212 static void __init
debug_objects_selftest(void)
1214 int fixups
, oldfixups
, warnings
, oldwarnings
;
1215 unsigned long flags
;
1217 local_irq_save(flags
);
1219 fixups
= oldfixups
= debug_objects_fixups
;
1220 warnings
= oldwarnings
= debug_objects_warnings
;
1221 descr_test
= &descr_type_test
;
1223 debug_object_init(&obj
, &descr_type_test
);
1224 if (check_results(&obj
, ODEBUG_STATE_INIT
, fixups
, warnings
))
1226 debug_object_activate(&obj
, &descr_type_test
);
1227 if (check_results(&obj
, ODEBUG_STATE_ACTIVE
, fixups
, warnings
))
1229 debug_object_activate(&obj
, &descr_type_test
);
1230 if (check_results(&obj
, ODEBUG_STATE_ACTIVE
, ++fixups
, ++warnings
))
1232 debug_object_deactivate(&obj
, &descr_type_test
);
1233 if (check_results(&obj
, ODEBUG_STATE_INACTIVE
, fixups
, warnings
))
1235 debug_object_destroy(&obj
, &descr_type_test
);
1236 if (check_results(&obj
, ODEBUG_STATE_DESTROYED
, fixups
, warnings
))
1238 debug_object_init(&obj
, &descr_type_test
);
1239 if (check_results(&obj
, ODEBUG_STATE_DESTROYED
, fixups
, ++warnings
))
1241 debug_object_activate(&obj
, &descr_type_test
);
1242 if (check_results(&obj
, ODEBUG_STATE_DESTROYED
, fixups
, ++warnings
))
1244 debug_object_deactivate(&obj
, &descr_type_test
);
1245 if (check_results(&obj
, ODEBUG_STATE_DESTROYED
, fixups
, ++warnings
))
1247 debug_object_free(&obj
, &descr_type_test
);
1248 if (check_results(&obj
, ODEBUG_STATE_NONE
, fixups
, warnings
))
1251 obj
.static_init
= 1;
1252 debug_object_activate(&obj
, &descr_type_test
);
1253 if (check_results(&obj
, ODEBUG_STATE_ACTIVE
, fixups
, warnings
))
1255 debug_object_init(&obj
, &descr_type_test
);
1256 if (check_results(&obj
, ODEBUG_STATE_INIT
, ++fixups
, ++warnings
))
1258 debug_object_free(&obj
, &descr_type_test
);
1259 if (check_results(&obj
, ODEBUG_STATE_NONE
, fixups
, warnings
))
1262 #ifdef CONFIG_DEBUG_OBJECTS_FREE
1263 debug_object_init(&obj
, &descr_type_test
);
1264 if (check_results(&obj
, ODEBUG_STATE_INIT
, fixups
, warnings
))
1266 debug_object_activate(&obj
, &descr_type_test
);
1267 if (check_results(&obj
, ODEBUG_STATE_ACTIVE
, fixups
, warnings
))
1269 __debug_check_no_obj_freed(&obj
, sizeof(obj
));
1270 if (check_results(&obj
, ODEBUG_STATE_NONE
, ++fixups
, ++warnings
))
1273 pr_info("selftest passed\n");
1276 debug_objects_fixups
= oldfixups
;
1277 debug_objects_warnings
= oldwarnings
;
1280 local_irq_restore(flags
);
1283 static inline void debug_objects_selftest(void) { }
1287 * Called during early boot to initialize the hash buckets and link
1288 * the static object pool objects into the poll list. After this call
1289 * the object tracker is fully operational.
1291 void __init
debug_objects_early_init(void)
1295 for (i
= 0; i
< ODEBUG_HASH_SIZE
; i
++)
1296 raw_spin_lock_init(&obj_hash
[i
].lock
);
1298 for (i
= 0; i
< ODEBUG_POOL_SIZE
; i
++)
1299 hlist_add_head(&obj_static_pool
[i
].node
, &obj_pool
);
1303 * Convert the statically allocated objects to dynamic ones:
1305 static int __init
debug_objects_replace_static_objects(void)
1307 struct debug_bucket
*db
= obj_hash
;
1308 struct hlist_node
*tmp
;
1309 struct debug_obj
*obj
, *new;
1310 HLIST_HEAD(objects
);
1313 for (i
= 0; i
< ODEBUG_POOL_SIZE
; i
++) {
1314 obj
= kmem_cache_zalloc(obj_cache
, GFP_KERNEL
);
1317 hlist_add_head(&obj
->node
, &objects
);
1320 debug_objects_allocated
+= i
;
1323 * debug_objects_mem_init() is now called early that only one CPU is up
1324 * and interrupts have been disabled, so it is safe to replace the
1325 * active object references.
1328 /* Remove the statically allocated objects from the pool */
1329 hlist_for_each_entry_safe(obj
, tmp
, &obj_pool
, node
)
1330 hlist_del(&obj
->node
);
1331 /* Move the allocated objects to the pool */
1332 hlist_move_list(&objects
, &obj_pool
);
1334 /* Replace the active object references */
1335 for (i
= 0; i
< ODEBUG_HASH_SIZE
; i
++, db
++) {
1336 hlist_move_list(&db
->list
, &objects
);
1338 hlist_for_each_entry(obj
, &objects
, node
) {
1339 new = hlist_entry(obj_pool
.first
, typeof(*obj
), node
);
1340 hlist_del(&new->node
);
1341 /* copy object data */
1343 hlist_add_head(&new->node
, &db
->list
);
1348 pr_debug("%d of %d active objects replaced\n",
1349 cnt
, obj_pool_used
);
1352 hlist_for_each_entry_safe(obj
, tmp
, &objects
, node
) {
1353 hlist_del(&obj
->node
);
1354 kmem_cache_free(obj_cache
, obj
);
1360 * Called after the kmem_caches are functional to setup a dedicated
1361 * cache pool, which has the SLAB_DEBUG_OBJECTS flag set. This flag
1362 * prevents that the debug code is called on kmem_cache_free() for the
1363 * debug tracker objects to avoid recursive calls.
1365 void __init
debug_objects_mem_init(void)
1369 if (!debug_objects_enabled
)
1373 * Initialize the percpu object pools
1375 * Initialization is not strictly necessary, but was done for
1378 for_each_possible_cpu(cpu
)
1379 INIT_HLIST_HEAD(&per_cpu(percpu_obj_pool
.free_objs
, cpu
));
1381 obj_cache
= kmem_cache_create("debug_objects_cache",
1382 sizeof (struct debug_obj
), 0,
1383 SLAB_DEBUG_OBJECTS
| SLAB_NOLEAKTRACE
,
1386 if (!obj_cache
|| debug_objects_replace_static_objects()) {
1387 debug_objects_enabled
= 0;
1388 kmem_cache_destroy(obj_cache
);
1389 pr_warn("out of memory.\n");
1392 debug_objects_selftest();
1394 #ifdef CONFIG_HOTPLUG_CPU
1395 cpuhp_setup_state_nocalls(CPUHP_DEBUG_OBJ_DEAD
, "object:offline", NULL
,
1396 object_cpu_offline
);
1400 * Increase the thresholds for allocating and freeing objects
1401 * according to the number of possible CPUs available in the system.
1403 extras
= num_possible_cpus() * ODEBUG_BATCH_SIZE
;
1404 debug_objects_pool_size
+= extras
;
1405 debug_objects_pool_min_level
+= extras
;