2 * Copyright (C) 2001 Momchil Velikov
3 * Portions Copyright (C) 2001 Christoph Hellwig
4 * Copyright (C) 2005 SGI, Christoph Lameter
5 * Copyright (C) 2006 Nick Piggin
7 * This program is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU General Public License as
9 * published by the Free Software Foundation; either version 2, or (at
10 * your option) any later version.
12 * This program is distributed in the hope that it will be useful, but
13 * WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * General Public License for more details.
17 * You should have received a copy of the GNU General Public License
18 * along with this program; if not, write to the Free Software
19 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
22 #include <linux/errno.h>
23 #include <linux/init.h>
24 #include <linux/kernel.h>
25 #include <linux/module.h>
26 #include <linux/radix-tree.h>
27 #include <linux/percpu.h>
28 #include <linux/slab.h>
29 #include <linux/notifier.h>
30 #include <linux/cpu.h>
31 #include <linux/string.h>
32 #include <linux/bitops.h>
33 #include <linux/rcupdate.h>
37 #define RADIX_TREE_MAP_SHIFT (CONFIG_BASE_SMALL ? 4 : 6)
39 #define RADIX_TREE_MAP_SHIFT 3 /* For more stressful testing */
42 #define RADIX_TREE_MAP_SIZE (1UL << RADIX_TREE_MAP_SHIFT)
43 #define RADIX_TREE_MAP_MASK (RADIX_TREE_MAP_SIZE-1)
45 #define RADIX_TREE_TAG_LONGS \
46 ((RADIX_TREE_MAP_SIZE + BITS_PER_LONG - 1) / BITS_PER_LONG)
48 struct radix_tree_node
{
49 unsigned int height
; /* Height from the bottom */
51 struct rcu_head rcu_head
;
52 void __rcu
*slots
[RADIX_TREE_MAP_SIZE
];
53 unsigned long tags
[RADIX_TREE_MAX_TAGS
][RADIX_TREE_TAG_LONGS
];
56 struct radix_tree_path
{
57 struct radix_tree_node
*node
;
61 #define RADIX_TREE_INDEX_BITS (8 /* CHAR_BIT */ * sizeof(unsigned long))
62 #define RADIX_TREE_MAX_PATH (DIV_ROUND_UP(RADIX_TREE_INDEX_BITS, \
63 RADIX_TREE_MAP_SHIFT))
66 * The height_to_maxindex array needs to be one deeper than the maximum
67 * path as height 0 holds only 1 entry.
69 static unsigned long height_to_maxindex
[RADIX_TREE_MAX_PATH
+ 1] __read_mostly
;
72 * Radix tree node cache.
74 static struct kmem_cache
*radix_tree_node_cachep
;
77 * Per-cpu pool of preloaded nodes
79 struct radix_tree_preload
{
81 struct radix_tree_node
*nodes
[RADIX_TREE_MAX_PATH
];
83 static DEFINE_PER_CPU(struct radix_tree_preload
, radix_tree_preloads
) = { 0, };
85 static inline void *ptr_to_indirect(void *ptr
)
87 return (void *)((unsigned long)ptr
| RADIX_TREE_INDIRECT_PTR
);
90 static inline void *indirect_to_ptr(void *ptr
)
92 return (void *)((unsigned long)ptr
& ~RADIX_TREE_INDIRECT_PTR
);
95 static inline gfp_t
root_gfp_mask(struct radix_tree_root
*root
)
97 return root
->gfp_mask
& __GFP_BITS_MASK
;
100 static inline void tag_set(struct radix_tree_node
*node
, unsigned int tag
,
103 __set_bit(offset
, node
->tags
[tag
]);
106 static inline void tag_clear(struct radix_tree_node
*node
, unsigned int tag
,
109 __clear_bit(offset
, node
->tags
[tag
]);
112 static inline int tag_get(struct radix_tree_node
*node
, unsigned int tag
,
115 return test_bit(offset
, node
->tags
[tag
]);
118 static inline void root_tag_set(struct radix_tree_root
*root
, unsigned int tag
)
120 root
->gfp_mask
|= (__force gfp_t
)(1 << (tag
+ __GFP_BITS_SHIFT
));
123 static inline void root_tag_clear(struct radix_tree_root
*root
, unsigned int tag
)
125 root
->gfp_mask
&= (__force gfp_t
)~(1 << (tag
+ __GFP_BITS_SHIFT
));
128 static inline void root_tag_clear_all(struct radix_tree_root
*root
)
130 root
->gfp_mask
&= __GFP_BITS_MASK
;
133 static inline int root_tag_get(struct radix_tree_root
*root
, unsigned int tag
)
135 return (__force
unsigned)root
->gfp_mask
& (1 << (tag
+ __GFP_BITS_SHIFT
));
139 * Returns 1 if any slot in the node has this tag set.
140 * Otherwise returns 0.
142 static inline int any_tag_set(struct radix_tree_node
*node
, unsigned int tag
)
145 for (idx
= 0; idx
< RADIX_TREE_TAG_LONGS
; idx
++) {
146 if (node
->tags
[tag
][idx
])
152 * This assumes that the caller has performed appropriate preallocation, and
153 * that the caller has pinned this thread of control to the current CPU.
155 static struct radix_tree_node
*
156 radix_tree_node_alloc(struct radix_tree_root
*root
)
158 struct radix_tree_node
*ret
= NULL
;
159 gfp_t gfp_mask
= root_gfp_mask(root
);
161 if (!(gfp_mask
& __GFP_WAIT
)) {
162 struct radix_tree_preload
*rtp
;
165 * Provided the caller has preloaded here, we will always
166 * succeed in getting a node here (and never reach
169 rtp
= &__get_cpu_var(radix_tree_preloads
);
171 ret
= rtp
->nodes
[rtp
->nr
- 1];
172 rtp
->nodes
[rtp
->nr
- 1] = NULL
;
177 ret
= kmem_cache_alloc(radix_tree_node_cachep
, gfp_mask
);
179 BUG_ON(radix_tree_is_indirect_ptr(ret
));
183 static void radix_tree_node_rcu_free(struct rcu_head
*head
)
185 struct radix_tree_node
*node
=
186 container_of(head
, struct radix_tree_node
, rcu_head
);
190 * must only free zeroed nodes into the slab. radix_tree_shrink
191 * can leave us with a non-NULL entry in the first slot, so clear
192 * that here to make sure.
194 for (i
= 0; i
< RADIX_TREE_MAX_TAGS
; i
++)
195 tag_clear(node
, i
, 0);
197 node
->slots
[0] = NULL
;
200 kmem_cache_free(radix_tree_node_cachep
, node
);
204 radix_tree_node_free(struct radix_tree_node
*node
)
206 call_rcu(&node
->rcu_head
, radix_tree_node_rcu_free
);
210 * Load up this CPU's radix_tree_node buffer with sufficient objects to
211 * ensure that the addition of a single element in the tree cannot fail. On
212 * success, return zero, with preemption disabled. On error, return -ENOMEM
213 * with preemption not disabled.
215 * To make use of this facility, the radix tree must be initialised without
216 * __GFP_WAIT being passed to INIT_RADIX_TREE().
218 int radix_tree_preload(gfp_t gfp_mask
)
220 struct radix_tree_preload
*rtp
;
221 struct radix_tree_node
*node
;
225 rtp
= &__get_cpu_var(radix_tree_preloads
);
226 while (rtp
->nr
< ARRAY_SIZE(rtp
->nodes
)) {
228 node
= kmem_cache_alloc(radix_tree_node_cachep
, gfp_mask
);
232 rtp
= &__get_cpu_var(radix_tree_preloads
);
233 if (rtp
->nr
< ARRAY_SIZE(rtp
->nodes
))
234 rtp
->nodes
[rtp
->nr
++] = node
;
236 kmem_cache_free(radix_tree_node_cachep
, node
);
242 EXPORT_SYMBOL(radix_tree_preload
);
245 * Return the maximum key which can be store into a
246 * radix tree with height HEIGHT.
248 static inline unsigned long radix_tree_maxindex(unsigned int height
)
250 return height_to_maxindex
[height
];
254 * Extend a radix tree so it can store key @index.
256 static int radix_tree_extend(struct radix_tree_root
*root
, unsigned long index
)
258 struct radix_tree_node
*node
;
262 /* Figure out what the height should be. */
263 height
= root
->height
+ 1;
264 while (index
> radix_tree_maxindex(height
))
267 if (root
->rnode
== NULL
) {
268 root
->height
= height
;
273 unsigned int newheight
;
274 if (!(node
= radix_tree_node_alloc(root
)))
277 /* Increase the height. */
278 node
->slots
[0] = indirect_to_ptr(root
->rnode
);
280 /* Propagate the aggregated tag info into the new root */
281 for (tag
= 0; tag
< RADIX_TREE_MAX_TAGS
; tag
++) {
282 if (root_tag_get(root
, tag
))
283 tag_set(node
, tag
, 0);
286 newheight
= root
->height
+1;
287 node
->height
= newheight
;
289 node
= ptr_to_indirect(node
);
290 rcu_assign_pointer(root
->rnode
, node
);
291 root
->height
= newheight
;
292 } while (height
> root
->height
);
298 * radix_tree_insert - insert into a radix tree
299 * @root: radix tree root
301 * @item: item to insert
303 * Insert an item into the radix tree at position @index.
305 int radix_tree_insert(struct radix_tree_root
*root
,
306 unsigned long index
, void *item
)
308 struct radix_tree_node
*node
= NULL
, *slot
;
309 unsigned int height
, shift
;
313 BUG_ON(radix_tree_is_indirect_ptr(item
));
315 /* Make sure the tree is high enough. */
316 if (index
> radix_tree_maxindex(root
->height
)) {
317 error
= radix_tree_extend(root
, index
);
322 slot
= indirect_to_ptr(root
->rnode
);
324 height
= root
->height
;
325 shift
= (height
-1) * RADIX_TREE_MAP_SHIFT
;
327 offset
= 0; /* uninitialised var warning */
330 /* Have to add a child node. */
331 if (!(slot
= radix_tree_node_alloc(root
)))
333 slot
->height
= height
;
335 rcu_assign_pointer(node
->slots
[offset
], slot
);
338 rcu_assign_pointer(root
->rnode
, ptr_to_indirect(slot
));
341 /* Go a level down */
342 offset
= (index
>> shift
) & RADIX_TREE_MAP_MASK
;
344 slot
= node
->slots
[offset
];
345 shift
-= RADIX_TREE_MAP_SHIFT
;
354 rcu_assign_pointer(node
->slots
[offset
], item
);
355 BUG_ON(tag_get(node
, 0, offset
));
356 BUG_ON(tag_get(node
, 1, offset
));
358 rcu_assign_pointer(root
->rnode
, item
);
359 BUG_ON(root_tag_get(root
, 0));
360 BUG_ON(root_tag_get(root
, 1));
365 EXPORT_SYMBOL(radix_tree_insert
);
368 * is_slot == 1 : search for the slot.
369 * is_slot == 0 : search for the node.
371 static void *radix_tree_lookup_element(struct radix_tree_root
*root
,
372 unsigned long index
, int is_slot
)
374 unsigned int height
, shift
;
375 struct radix_tree_node
*node
, **slot
;
377 node
= rcu_dereference_raw(root
->rnode
);
381 if (!radix_tree_is_indirect_ptr(node
)) {
384 return is_slot
? (void *)&root
->rnode
: node
;
386 node
= indirect_to_ptr(node
);
388 height
= node
->height
;
389 if (index
> radix_tree_maxindex(height
))
392 shift
= (height
-1) * RADIX_TREE_MAP_SHIFT
;
395 slot
= (struct radix_tree_node
**)
396 (node
->slots
+ ((index
>>shift
) & RADIX_TREE_MAP_MASK
));
397 node
= rcu_dereference_raw(*slot
);
401 shift
-= RADIX_TREE_MAP_SHIFT
;
403 } while (height
> 0);
405 return is_slot
? (void *)slot
: indirect_to_ptr(node
);
409 * radix_tree_lookup_slot - lookup a slot in a radix tree
410 * @root: radix tree root
413 * Returns: the slot corresponding to the position @index in the
414 * radix tree @root. This is useful for update-if-exists operations.
416 * This function can be called under rcu_read_lock iff the slot is not
417 * modified by radix_tree_replace_slot, otherwise it must be called
418 * exclusive from other writers. Any dereference of the slot must be done
419 * using radix_tree_deref_slot.
421 void **radix_tree_lookup_slot(struct radix_tree_root
*root
, unsigned long index
)
423 return (void **)radix_tree_lookup_element(root
, index
, 1);
425 EXPORT_SYMBOL(radix_tree_lookup_slot
);
428 * radix_tree_lookup - perform lookup operation on a radix tree
429 * @root: radix tree root
432 * Lookup the item at the position @index in the radix tree @root.
434 * This function can be called under rcu_read_lock, however the caller
435 * must manage lifetimes of leaf nodes (eg. RCU may also be used to free
436 * them safely). No RCU barriers are required to access or modify the
437 * returned item, however.
439 void *radix_tree_lookup(struct radix_tree_root
*root
, unsigned long index
)
441 return radix_tree_lookup_element(root
, index
, 0);
443 EXPORT_SYMBOL(radix_tree_lookup
);
446 * radix_tree_tag_set - set a tag on a radix tree node
447 * @root: radix tree root
451 * Set the search tag (which must be < RADIX_TREE_MAX_TAGS)
452 * corresponding to @index in the radix tree. From
453 * the root all the way down to the leaf node.
455 * Returns the address of the tagged item. Setting a tag on a not-present
458 void *radix_tree_tag_set(struct radix_tree_root
*root
,
459 unsigned long index
, unsigned int tag
)
461 unsigned int height
, shift
;
462 struct radix_tree_node
*slot
;
464 height
= root
->height
;
465 BUG_ON(index
> radix_tree_maxindex(height
));
467 slot
= indirect_to_ptr(root
->rnode
);
468 shift
= (height
- 1) * RADIX_TREE_MAP_SHIFT
;
473 offset
= (index
>> shift
) & RADIX_TREE_MAP_MASK
;
474 if (!tag_get(slot
, tag
, offset
))
475 tag_set(slot
, tag
, offset
);
476 slot
= slot
->slots
[offset
];
477 BUG_ON(slot
== NULL
);
478 shift
-= RADIX_TREE_MAP_SHIFT
;
482 /* set the root's tag bit */
483 if (slot
&& !root_tag_get(root
, tag
))
484 root_tag_set(root
, tag
);
488 EXPORT_SYMBOL(radix_tree_tag_set
);
491 * radix_tree_tag_clear - clear a tag on a radix tree node
492 * @root: radix tree root
496 * Clear the search tag (which must be < RADIX_TREE_MAX_TAGS)
497 * corresponding to @index in the radix tree. If
498 * this causes the leaf node to have no tags set then clear the tag in the
499 * next-to-leaf node, etc.
501 * Returns the address of the tagged item on success, else NULL. ie:
502 * has the same return value and semantics as radix_tree_lookup().
504 void *radix_tree_tag_clear(struct radix_tree_root
*root
,
505 unsigned long index
, unsigned int tag
)
508 * The radix tree path needs to be one longer than the maximum path
509 * since the "list" is null terminated.
511 struct radix_tree_path path
[RADIX_TREE_MAX_PATH
+ 1], *pathp
= path
;
512 struct radix_tree_node
*slot
= NULL
;
513 unsigned int height
, shift
;
515 height
= root
->height
;
516 if (index
> radix_tree_maxindex(height
))
519 shift
= (height
- 1) * RADIX_TREE_MAP_SHIFT
;
521 slot
= indirect_to_ptr(root
->rnode
);
529 offset
= (index
>> shift
) & RADIX_TREE_MAP_MASK
;
530 pathp
[1].offset
= offset
;
531 pathp
[1].node
= slot
;
532 slot
= slot
->slots
[offset
];
534 shift
-= RADIX_TREE_MAP_SHIFT
;
541 while (pathp
->node
) {
542 if (!tag_get(pathp
->node
, tag
, pathp
->offset
))
544 tag_clear(pathp
->node
, tag
, pathp
->offset
);
545 if (any_tag_set(pathp
->node
, tag
))
550 /* clear the root's tag bit */
551 if (root_tag_get(root
, tag
))
552 root_tag_clear(root
, tag
);
557 EXPORT_SYMBOL(radix_tree_tag_clear
);
560 * radix_tree_tag_get - get a tag on a radix tree node
561 * @root: radix tree root
563 * @tag: tag index (< RADIX_TREE_MAX_TAGS)
567 * 0: tag not present or not set
570 * Note that the return value of this function may not be relied on, even if
571 * the RCU lock is held, unless tag modification and node deletion are excluded
574 int radix_tree_tag_get(struct radix_tree_root
*root
,
575 unsigned long index
, unsigned int tag
)
577 unsigned int height
, shift
;
578 struct radix_tree_node
*node
;
579 int saw_unset_tag
= 0;
581 /* check the root's tag bit */
582 if (!root_tag_get(root
, tag
))
585 node
= rcu_dereference_raw(root
->rnode
);
589 if (!radix_tree_is_indirect_ptr(node
))
591 node
= indirect_to_ptr(node
);
593 height
= node
->height
;
594 if (index
> radix_tree_maxindex(height
))
597 shift
= (height
- 1) * RADIX_TREE_MAP_SHIFT
;
605 offset
= (index
>> shift
) & RADIX_TREE_MAP_MASK
;
608 * This is just a debug check. Later, we can bale as soon as
609 * we see an unset tag.
611 if (!tag_get(node
, tag
, offset
))
614 return !!tag_get(node
, tag
, offset
);
615 node
= rcu_dereference_raw(node
->slots
[offset
]);
616 shift
-= RADIX_TREE_MAP_SHIFT
;
620 EXPORT_SYMBOL(radix_tree_tag_get
);
623 * radix_tree_range_tag_if_tagged - for each item in given range set given
624 * tag if item has another tag set
625 * @root: radix tree root
626 * @first_indexp: pointer to a starting index of a range to scan
627 * @last_index: last index of a range to scan
628 * @nr_to_tag: maximum number items to tag
629 * @iftag: tag index to test
630 * @settag: tag index to set if tested tag is set
632 * This function scans range of radix tree from first_index to last_index
633 * (inclusive). For each item in the range if iftag is set, the function sets
634 * also settag. The function stops either after tagging nr_to_tag items or
635 * after reaching last_index.
637 * The tags must be set from the leaf level only and propagated back up the
638 * path to the root. We must do this so that we resolve the full path before
639 * setting any tags on intermediate nodes. If we set tags as we descend, then
640 * we can get to the leaf node and find that the index that has the iftag
641 * set is outside the range we are scanning. This reults in dangling tags and
642 * can lead to problems with later tag operations (e.g. livelocks on lookups).
644 * The function returns number of leaves where the tag was set and sets
645 * *first_indexp to the first unscanned index.
646 * WARNING! *first_indexp can wrap if last_index is ULONG_MAX. Caller must
647 * be prepared to handle that.
649 unsigned long radix_tree_range_tag_if_tagged(struct radix_tree_root
*root
,
650 unsigned long *first_indexp
, unsigned long last_index
,
651 unsigned long nr_to_tag
,
652 unsigned int iftag
, unsigned int settag
)
654 unsigned int height
= root
->height
;
655 struct radix_tree_path path
[height
];
656 struct radix_tree_path
*pathp
= path
;
657 struct radix_tree_node
*slot
;
659 unsigned long tagged
= 0;
660 unsigned long index
= *first_indexp
;
662 last_index
= min(last_index
, radix_tree_maxindex(height
));
663 if (index
> last_index
)
667 if (!root_tag_get(root
, iftag
)) {
668 *first_indexp
= last_index
+ 1;
672 *first_indexp
= last_index
+ 1;
673 root_tag_set(root
, settag
);
677 shift
= (height
- 1) * RADIX_TREE_MAP_SHIFT
;
678 slot
= indirect_to_ptr(root
->rnode
);
681 * we fill the path from (root->height - 2) to 0, leaving the index at
682 * (root->height - 1) as a terminator. Zero the node in the terminator
683 * so that we can use this to end walk loops back up the path.
685 path
[height
- 1].node
= NULL
;
690 offset
= (index
>> shift
) & RADIX_TREE_MAP_MASK
;
691 if (!slot
->slots
[offset
])
693 if (!tag_get(slot
, iftag
, offset
))
696 /* Go down one level */
698 shift
-= RADIX_TREE_MAP_SHIFT
;
699 path
[height
- 1].node
= slot
;
700 path
[height
- 1].offset
= offset
;
701 slot
= slot
->slots
[offset
];
707 tag_set(slot
, settag
, offset
);
709 /* walk back up the path tagging interior nodes */
711 while (pathp
->node
) {
712 /* stop if we find a node with the tag already set */
713 if (tag_get(pathp
->node
, settag
, pathp
->offset
))
715 tag_set(pathp
->node
, settag
, pathp
->offset
);
720 /* Go to next item at level determined by 'shift' */
721 index
= ((index
>> shift
) + 1) << shift
;
722 /* Overflow can happen when last_index is ~0UL... */
723 if (index
> last_index
|| !index
)
725 if (tagged
>= nr_to_tag
)
727 while (((index
>> shift
) & RADIX_TREE_MAP_MASK
) == 0) {
729 * We've fully scanned this node. Go up. Because
730 * last_index is guaranteed to be in the tree, what
731 * we do below cannot wander astray.
733 slot
= path
[height
- 1].node
;
735 shift
+= RADIX_TREE_MAP_SHIFT
;
739 * The iftag must have been set somewhere because otherwise
740 * we would return immediated at the beginning of the function
742 root_tag_set(root
, settag
);
743 *first_indexp
= index
;
747 EXPORT_SYMBOL(radix_tree_range_tag_if_tagged
);
751 * radix_tree_next_hole - find the next hole (not-present entry)
754 * @max_scan: maximum range to search
756 * Search the set [index, min(index+max_scan-1, MAX_INDEX)] for the lowest
759 * Returns: the index of the hole if found, otherwise returns an index
760 * outside of the set specified (in which case 'return - index >= max_scan'
761 * will be true). In rare cases of index wrap-around, 0 will be returned.
763 * radix_tree_next_hole may be called under rcu_read_lock. However, like
764 * radix_tree_gang_lookup, this will not atomically search a snapshot of
765 * the tree at a single point in time. For example, if a hole is created
766 * at index 5, then subsequently a hole is created at index 10,
767 * radix_tree_next_hole covering both indexes may return 10 if called
768 * under rcu_read_lock.
770 unsigned long radix_tree_next_hole(struct radix_tree_root
*root
,
771 unsigned long index
, unsigned long max_scan
)
775 for (i
= 0; i
< max_scan
; i
++) {
776 if (!radix_tree_lookup(root
, index
))
785 EXPORT_SYMBOL(radix_tree_next_hole
);
788 * radix_tree_prev_hole - find the prev hole (not-present entry)
791 * @max_scan: maximum range to search
793 * Search backwards in the range [max(index-max_scan+1, 0), index]
794 * for the first hole.
796 * Returns: the index of the hole if found, otherwise returns an index
797 * outside of the set specified (in which case 'index - return >= max_scan'
798 * will be true). In rare cases of wrap-around, ULONG_MAX will be returned.
800 * radix_tree_next_hole may be called under rcu_read_lock. However, like
801 * radix_tree_gang_lookup, this will not atomically search a snapshot of
802 * the tree at a single point in time. For example, if a hole is created
803 * at index 10, then subsequently a hole is created at index 5,
804 * radix_tree_prev_hole covering both indexes may return 5 if called under
807 unsigned long radix_tree_prev_hole(struct radix_tree_root
*root
,
808 unsigned long index
, unsigned long max_scan
)
812 for (i
= 0; i
< max_scan
; i
++) {
813 if (!radix_tree_lookup(root
, index
))
816 if (index
== ULONG_MAX
)
822 EXPORT_SYMBOL(radix_tree_prev_hole
);
825 __lookup(struct radix_tree_node
*slot
, void ***results
, unsigned long index
,
826 unsigned int max_items
, unsigned long *next_index
)
828 unsigned int nr_found
= 0;
829 unsigned int shift
, height
;
832 height
= slot
->height
;
835 shift
= (height
-1) * RADIX_TREE_MAP_SHIFT
;
837 for ( ; height
> 1; height
--) {
838 i
= (index
>> shift
) & RADIX_TREE_MAP_MASK
;
840 if (slot
->slots
[i
] != NULL
)
842 index
&= ~((1UL << shift
) - 1);
843 index
+= 1UL << shift
;
845 goto out
; /* 32-bit wraparound */
847 if (i
== RADIX_TREE_MAP_SIZE
)
851 shift
-= RADIX_TREE_MAP_SHIFT
;
852 slot
= rcu_dereference_raw(slot
->slots
[i
]);
857 /* Bottom level: grab some items */
858 for (i
= index
& RADIX_TREE_MAP_MASK
; i
< RADIX_TREE_MAP_SIZE
; i
++) {
860 if (slot
->slots
[i
]) {
861 results
[nr_found
++] = &(slot
->slots
[i
]);
862 if (nr_found
== max_items
)
872 * radix_tree_gang_lookup - perform multiple lookup on a radix tree
873 * @root: radix tree root
874 * @results: where the results of the lookup are placed
875 * @first_index: start the lookup from this key
876 * @max_items: place up to this many items at *results
878 * Performs an index-ascending scan of the tree for present items. Places
879 * them at *@results and returns the number of items which were placed at
882 * The implementation is naive.
884 * Like radix_tree_lookup, radix_tree_gang_lookup may be called under
885 * rcu_read_lock. In this case, rather than the returned results being
886 * an atomic snapshot of the tree at a single point in time, the semantics
887 * of an RCU protected gang lookup are as though multiple radix_tree_lookups
888 * have been issued in individual locks, and results stored in 'results'.
891 radix_tree_gang_lookup(struct radix_tree_root
*root
, void **results
,
892 unsigned long first_index
, unsigned int max_items
)
894 unsigned long max_index
;
895 struct radix_tree_node
*node
;
896 unsigned long cur_index
= first_index
;
899 node
= rcu_dereference_raw(root
->rnode
);
903 if (!radix_tree_is_indirect_ptr(node
)) {
909 node
= indirect_to_ptr(node
);
911 max_index
= radix_tree_maxindex(node
->height
);
914 while (ret
< max_items
) {
915 unsigned int nr_found
, slots_found
, i
;
916 unsigned long next_index
; /* Index of next search */
918 if (cur_index
> max_index
)
920 slots_found
= __lookup(node
, (void ***)results
+ ret
, cur_index
,
921 max_items
- ret
, &next_index
);
923 for (i
= 0; i
< slots_found
; i
++) {
924 struct radix_tree_node
*slot
;
925 slot
= *(((void ***)results
)[ret
+ i
]);
928 results
[ret
+ nr_found
] =
929 indirect_to_ptr(rcu_dereference_raw(slot
));
935 cur_index
= next_index
;
940 EXPORT_SYMBOL(radix_tree_gang_lookup
);
943 * radix_tree_gang_lookup_slot - perform multiple slot lookup on radix tree
944 * @root: radix tree root
945 * @results: where the results of the lookup are placed
946 * @first_index: start the lookup from this key
947 * @max_items: place up to this many items at *results
949 * Performs an index-ascending scan of the tree for present items. Places
950 * their slots at *@results and returns the number of items which were
951 * placed at *@results.
953 * The implementation is naive.
955 * Like radix_tree_gang_lookup as far as RCU and locking goes. Slots must
956 * be dereferenced with radix_tree_deref_slot, and if using only RCU
957 * protection, radix_tree_deref_slot may fail requiring a retry.
960 radix_tree_gang_lookup_slot(struct radix_tree_root
*root
, void ***results
,
961 unsigned long first_index
, unsigned int max_items
)
963 unsigned long max_index
;
964 struct radix_tree_node
*node
;
965 unsigned long cur_index
= first_index
;
968 node
= rcu_dereference_raw(root
->rnode
);
972 if (!radix_tree_is_indirect_ptr(node
)) {
975 results
[0] = (void **)&root
->rnode
;
978 node
= indirect_to_ptr(node
);
980 max_index
= radix_tree_maxindex(node
->height
);
983 while (ret
< max_items
) {
984 unsigned int slots_found
;
985 unsigned long next_index
; /* Index of next search */
987 if (cur_index
> max_index
)
989 slots_found
= __lookup(node
, results
+ ret
, cur_index
,
990 max_items
- ret
, &next_index
);
994 cur_index
= next_index
;
999 EXPORT_SYMBOL(radix_tree_gang_lookup_slot
);
1002 * FIXME: the two tag_get()s here should use find_next_bit() instead of
1003 * open-coding the search.
1006 __lookup_tag(struct radix_tree_node
*slot
, void ***results
, unsigned long index
,
1007 unsigned int max_items
, unsigned long *next_index
, unsigned int tag
)
1009 unsigned int nr_found
= 0;
1010 unsigned int shift
, height
;
1012 height
= slot
->height
;
1015 shift
= (height
-1) * RADIX_TREE_MAP_SHIFT
;
1017 while (height
> 0) {
1018 unsigned long i
= (index
>> shift
) & RADIX_TREE_MAP_MASK
;
1021 if (tag_get(slot
, tag
, i
))
1023 index
&= ~((1UL << shift
) - 1);
1024 index
+= 1UL << shift
;
1026 goto out
; /* 32-bit wraparound */
1028 if (i
== RADIX_TREE_MAP_SIZE
)
1032 if (height
== 0) { /* Bottom level: grab some items */
1033 unsigned long j
= index
& RADIX_TREE_MAP_MASK
;
1035 for ( ; j
< RADIX_TREE_MAP_SIZE
; j
++) {
1037 if (!tag_get(slot
, tag
, j
))
1040 * Even though the tag was found set, we need to
1041 * recheck that we have a non-NULL node, because
1042 * if this lookup is lockless, it may have been
1043 * subsequently deleted.
1045 * Similar care must be taken in any place that
1046 * lookup ->slots[x] without a lock (ie. can't
1047 * rely on its value remaining the same).
1049 if (slot
->slots
[j
]) {
1050 results
[nr_found
++] = &(slot
->slots
[j
]);
1051 if (nr_found
== max_items
)
1056 shift
-= RADIX_TREE_MAP_SHIFT
;
1057 slot
= rcu_dereference_raw(slot
->slots
[i
]);
1062 *next_index
= index
;
1067 * radix_tree_gang_lookup_tag - perform multiple lookup on a radix tree
1069 * @root: radix tree root
1070 * @results: where the results of the lookup are placed
1071 * @first_index: start the lookup from this key
1072 * @max_items: place up to this many items at *results
1073 * @tag: the tag index (< RADIX_TREE_MAX_TAGS)
1075 * Performs an index-ascending scan of the tree for present items which
1076 * have the tag indexed by @tag set. Places the items at *@results and
1077 * returns the number of items which were placed at *@results.
1080 radix_tree_gang_lookup_tag(struct radix_tree_root
*root
, void **results
,
1081 unsigned long first_index
, unsigned int max_items
,
1084 struct radix_tree_node
*node
;
1085 unsigned long max_index
;
1086 unsigned long cur_index
= first_index
;
1089 /* check the root's tag bit */
1090 if (!root_tag_get(root
, tag
))
1093 node
= rcu_dereference_raw(root
->rnode
);
1097 if (!radix_tree_is_indirect_ptr(node
)) {
1098 if (first_index
> 0)
1103 node
= indirect_to_ptr(node
);
1105 max_index
= radix_tree_maxindex(node
->height
);
1108 while (ret
< max_items
) {
1109 unsigned int nr_found
, slots_found
, i
;
1110 unsigned long next_index
; /* Index of next search */
1112 if (cur_index
> max_index
)
1114 slots_found
= __lookup_tag(node
, (void ***)results
+ ret
,
1115 cur_index
, max_items
- ret
, &next_index
, tag
);
1117 for (i
= 0; i
< slots_found
; i
++) {
1118 struct radix_tree_node
*slot
;
1119 slot
= *(((void ***)results
)[ret
+ i
]);
1122 results
[ret
+ nr_found
] =
1123 indirect_to_ptr(rcu_dereference_raw(slot
));
1127 if (next_index
== 0)
1129 cur_index
= next_index
;
1134 EXPORT_SYMBOL(radix_tree_gang_lookup_tag
);
1137 * radix_tree_gang_lookup_tag_slot - perform multiple slot lookup on a
1138 * radix tree based on a tag
1139 * @root: radix tree root
1140 * @results: where the results of the lookup are placed
1141 * @first_index: start the lookup from this key
1142 * @max_items: place up to this many items at *results
1143 * @tag: the tag index (< RADIX_TREE_MAX_TAGS)
1145 * Performs an index-ascending scan of the tree for present items which
1146 * have the tag indexed by @tag set. Places the slots at *@results and
1147 * returns the number of slots which were placed at *@results.
1150 radix_tree_gang_lookup_tag_slot(struct radix_tree_root
*root
, void ***results
,
1151 unsigned long first_index
, unsigned int max_items
,
1154 struct radix_tree_node
*node
;
1155 unsigned long max_index
;
1156 unsigned long cur_index
= first_index
;
1159 /* check the root's tag bit */
1160 if (!root_tag_get(root
, tag
))
1163 node
= rcu_dereference_raw(root
->rnode
);
1167 if (!radix_tree_is_indirect_ptr(node
)) {
1168 if (first_index
> 0)
1170 results
[0] = (void **)&root
->rnode
;
1173 node
= indirect_to_ptr(node
);
1175 max_index
= radix_tree_maxindex(node
->height
);
1178 while (ret
< max_items
) {
1179 unsigned int slots_found
;
1180 unsigned long next_index
; /* Index of next search */
1182 if (cur_index
> max_index
)
1184 slots_found
= __lookup_tag(node
, results
+ ret
,
1185 cur_index
, max_items
- ret
, &next_index
, tag
);
1187 if (next_index
== 0)
1189 cur_index
= next_index
;
1194 EXPORT_SYMBOL(radix_tree_gang_lookup_tag_slot
);
1198 * radix_tree_shrink - shrink height of a radix tree to minimal
1199 * @root radix tree root
1201 static inline void radix_tree_shrink(struct radix_tree_root
*root
)
1203 /* try to shrink tree height */
1204 while (root
->height
> 0) {
1205 struct radix_tree_node
*to_free
= root
->rnode
;
1208 BUG_ON(!radix_tree_is_indirect_ptr(to_free
));
1209 to_free
= indirect_to_ptr(to_free
);
1212 * The candidate node has more than one child, or its child
1213 * is not at the leftmost slot, we cannot shrink.
1215 if (to_free
->count
!= 1)
1217 if (!to_free
->slots
[0])
1221 * We don't need rcu_assign_pointer(), since we are simply
1222 * moving the node from one part of the tree to another: if it
1223 * was safe to dereference the old pointer to it
1224 * (to_free->slots[0]), it will be safe to dereference the new
1225 * one (root->rnode) as far as dependent read barriers go.
1227 newptr
= to_free
->slots
[0];
1228 if (root
->height
> 1)
1229 newptr
= ptr_to_indirect(newptr
);
1230 root
->rnode
= newptr
;
1234 * We have a dilemma here. The node's slot[0] must not be
1235 * NULLed in case there are concurrent lookups expecting to
1236 * find the item. However if this was a bottom-level node,
1237 * then it may be subject to the slot pointer being visible
1238 * to callers dereferencing it. If item corresponding to
1239 * slot[0] is subsequently deleted, these callers would expect
1240 * their slot to become empty sooner or later.
1242 * For example, lockless pagecache will look up a slot, deref
1243 * the page pointer, and if the page is 0 refcount it means it
1244 * was concurrently deleted from pagecache so try the deref
1245 * again. Fortunately there is already a requirement for logic
1246 * to retry the entire slot lookup -- the indirect pointer
1247 * problem (replacing direct root node with an indirect pointer
1248 * also results in a stale slot). So tag the slot as indirect
1249 * to force callers to retry.
1251 if (root
->height
== 0)
1252 *((unsigned long *)&to_free
->slots
[0]) |=
1253 RADIX_TREE_INDIRECT_PTR
;
1255 radix_tree_node_free(to_free
);
1260 * radix_tree_delete - delete an item from a radix tree
1261 * @root: radix tree root
1264 * Remove the item at @index from the radix tree rooted at @root.
1266 * Returns the address of the deleted item, or NULL if it was not present.
1268 void *radix_tree_delete(struct radix_tree_root
*root
, unsigned long index
)
1271 * The radix tree path needs to be one longer than the maximum path
1272 * since the "list" is null terminated.
1274 struct radix_tree_path path
[RADIX_TREE_MAX_PATH
+ 1], *pathp
= path
;
1275 struct radix_tree_node
*slot
= NULL
;
1276 struct radix_tree_node
*to_free
;
1277 unsigned int height
, shift
;
1281 height
= root
->height
;
1282 if (index
> radix_tree_maxindex(height
))
1287 root_tag_clear_all(root
);
1291 slot
= indirect_to_ptr(slot
);
1293 shift
= (height
- 1) * RADIX_TREE_MAP_SHIFT
;
1301 offset
= (index
>> shift
) & RADIX_TREE_MAP_MASK
;
1302 pathp
->offset
= offset
;
1304 slot
= slot
->slots
[offset
];
1305 shift
-= RADIX_TREE_MAP_SHIFT
;
1307 } while (height
> 0);
1313 * Clear all tags associated with the just-deleted item
1315 for (tag
= 0; tag
< RADIX_TREE_MAX_TAGS
; tag
++) {
1316 if (tag_get(pathp
->node
, tag
, pathp
->offset
))
1317 radix_tree_tag_clear(root
, index
, tag
);
1321 /* Now free the nodes we do not need anymore */
1322 while (pathp
->node
) {
1323 pathp
->node
->slots
[pathp
->offset
] = NULL
;
1324 pathp
->node
->count
--;
1326 * Queue the node for deferred freeing after the
1327 * last reference to it disappears (set NULL, above).
1330 radix_tree_node_free(to_free
);
1332 if (pathp
->node
->count
) {
1333 if (pathp
->node
== indirect_to_ptr(root
->rnode
))
1334 radix_tree_shrink(root
);
1338 /* Node with zero slots in use so free it */
1339 to_free
= pathp
->node
;
1343 root_tag_clear_all(root
);
1347 radix_tree_node_free(to_free
);
1352 EXPORT_SYMBOL(radix_tree_delete
);
1355 * radix_tree_tagged - test whether any items in the tree are tagged
1356 * @root: radix tree root
1359 int radix_tree_tagged(struct radix_tree_root
*root
, unsigned int tag
)
1361 return root_tag_get(root
, tag
);
1363 EXPORT_SYMBOL(radix_tree_tagged
);
1366 radix_tree_node_ctor(void *node
)
1368 memset(node
, 0, sizeof(struct radix_tree_node
));
1371 static __init
unsigned long __maxindex(unsigned int height
)
1373 unsigned int width
= height
* RADIX_TREE_MAP_SHIFT
;
1374 int shift
= RADIX_TREE_INDEX_BITS
- width
;
1378 if (shift
>= BITS_PER_LONG
)
1380 return ~0UL >> shift
;
1383 static __init
void radix_tree_init_maxindex(void)
1387 for (i
= 0; i
< ARRAY_SIZE(height_to_maxindex
); i
++)
1388 height_to_maxindex
[i
] = __maxindex(i
);
1391 static int radix_tree_callback(struct notifier_block
*nfb
,
1392 unsigned long action
,
1395 int cpu
= (long)hcpu
;
1396 struct radix_tree_preload
*rtp
;
1398 /* Free per-cpu pool of perloaded nodes */
1399 if (action
== CPU_DEAD
|| action
== CPU_DEAD_FROZEN
) {
1400 rtp
= &per_cpu(radix_tree_preloads
, cpu
);
1402 kmem_cache_free(radix_tree_node_cachep
,
1403 rtp
->nodes
[rtp
->nr
-1]);
1404 rtp
->nodes
[rtp
->nr
-1] = NULL
;
1411 void __init
radix_tree_init(void)
1413 radix_tree_node_cachep
= kmem_cache_create("radix_tree_node",
1414 sizeof(struct radix_tree_node
), 0,
1415 SLAB_PANIC
| SLAB_RECLAIM_ACCOUNT
,
1416 radix_tree_node_ctor
);
1417 radix_tree_init_maxindex();
1418 hotcpu_notifier(radix_tree_callback
, 0);