Merge tag 'dmaengine-fix-4.7-rc4' of git://git.infradead.org/users/vkoul/slave-dma
[linux-2.6-block.git] / include / linux / radix-tree.h
CommitLineData
1da177e4
LT
1/*
2 * Copyright (C) 2001 Momchil Velikov
3 * Portions Copyright (C) 2001 Christoph Hellwig
7cf9c2c7 4 * Copyright (C) 2006 Nick Piggin
78c1d784 5 * Copyright (C) 2012 Konstantin Khlebnikov
1da177e4
LT
6 *
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.
11 *
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.
16 *
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.
20 */
21#ifndef _LINUX_RADIX_TREE_H
22#define _LINUX_RADIX_TREE_H
23
f67c07f0 24#include <linux/bitops.h>
1da177e4
LT
25#include <linux/preempt.h>
26#include <linux/types.h>
187f1882 27#include <linux/bug.h>
7cf9c2c7
NP
28#include <linux/kernel.h>
29#include <linux/rcupdate.h>
30
31/*
3bcadd6f
MW
32 * The bottom two bits of the slot determine how the remaining bits in the
33 * slot are interpreted:
7cf9c2c7 34 *
3bcadd6f
MW
35 * 00 - data pointer
36 * 01 - internal entry
37 * 10 - exceptional entry
38 * 11 - locked exceptional entry
39 *
40 * The internal entry may be a pointer to the next level in the tree, a
41 * sibling entry, or an indicator that the entry in this slot has been moved
42 * to another location in the tree and the lookup should be restarted. While
43 * NULL fits the 'data pointer' pattern, it means that there is no entry in
44 * the tree for this index (no matter what level of the tree it is found at).
45 * This means that you cannot store NULL in the tree as a value for the index.
7cf9c2c7 46 */
3bcadd6f
MW
47#define RADIX_TREE_ENTRY_MASK 3UL
48#define RADIX_TREE_INTERNAL_NODE 1UL
30ff46cc 49
6328650b 50/*
3bcadd6f
MW
51 * Most users of the radix tree store pointers but shmem/tmpfs stores swap
52 * entries in the same tree. They are marked as exceptional entries to
53 * distinguish them from pointers to struct page.
6328650b
HD
54 * EXCEPTIONAL_ENTRY tests the bit, EXCEPTIONAL_SHIFT shifts content past it.
55 */
56#define RADIX_TREE_EXCEPTIONAL_ENTRY 2
57#define RADIX_TREE_EXCEPTIONAL_SHIFT 2
7cf9c2c7 58
3bcadd6f 59static inline bool radix_tree_is_internal_node(void *ptr)
7cf9c2c7 60{
3bcadd6f
MW
61 return ((unsigned long)ptr & RADIX_TREE_ENTRY_MASK) ==
62 RADIX_TREE_INTERNAL_NODE;
7cf9c2c7
NP
63}
64
65/*** radix-tree API starts here ***/
1da177e4 66
f446daae 67#define RADIX_TREE_MAX_TAGS 3
612d6c19 68
97d778b2 69#ifndef RADIX_TREE_MAP_SHIFT
139e5616 70#define RADIX_TREE_MAP_SHIFT (CONFIG_BASE_SMALL ? 4 : 6)
139e5616
JW
71#endif
72
73#define RADIX_TREE_MAP_SIZE (1UL << RADIX_TREE_MAP_SHIFT)
74#define RADIX_TREE_MAP_MASK (RADIX_TREE_MAP_SIZE-1)
75
76#define RADIX_TREE_TAG_LONGS \
77 ((RADIX_TREE_MAP_SIZE + BITS_PER_LONG - 1) / BITS_PER_LONG)
78
449dd698
JW
79#define RADIX_TREE_INDEX_BITS (8 /* CHAR_BIT */ * sizeof(unsigned long))
80#define RADIX_TREE_MAX_PATH (DIV_ROUND_UP(RADIX_TREE_INDEX_BITS, \
81 RADIX_TREE_MAP_SHIFT))
82
449dd698
JW
83/* Internally used bits of node->count */
84#define RADIX_TREE_COUNT_SHIFT (RADIX_TREE_MAP_SHIFT + 1)
85#define RADIX_TREE_COUNT_MASK ((1UL << RADIX_TREE_COUNT_SHIFT) - 1)
86
139e5616 87struct radix_tree_node {
c12e51b0 88 unsigned char shift; /* Bits remaining in each slot */
0c7fa0a8 89 unsigned char offset; /* Slot offset in parent */
139e5616
JW
90 unsigned int count;
91 union {
449dd698
JW
92 struct {
93 /* Used when ascending tree */
94 struct radix_tree_node *parent;
95 /* For tree user */
96 void *private_data;
97 };
98 /* Used when freeing node */
99 struct rcu_head rcu_head;
139e5616 100 };
449dd698
JW
101 /* For tree user */
102 struct list_head private_list;
139e5616
JW
103 void __rcu *slots[RADIX_TREE_MAP_SIZE];
104 unsigned long tags[RADIX_TREE_MAX_TAGS][RADIX_TREE_TAG_LONGS];
105};
106
612d6c19 107/* root tags are stored in gfp_mask, shifted by __GFP_BITS_SHIFT */
1da177e4 108struct radix_tree_root {
fd4f2df2 109 gfp_t gfp_mask;
a1115570 110 struct radix_tree_node __rcu *rnode;
1da177e4
LT
111};
112
113#define RADIX_TREE_INIT(mask) { \
1da177e4
LT
114 .gfp_mask = (mask), \
115 .rnode = NULL, \
116}
117
118#define RADIX_TREE(name, mask) \
119 struct radix_tree_root name = RADIX_TREE_INIT(mask)
120
121#define INIT_RADIX_TREE(root, mask) \
122do { \
1da177e4
LT
123 (root)->gfp_mask = (mask); \
124 (root)->rnode = NULL; \
125} while (0)
126
e9256efc
MW
127static inline bool radix_tree_empty(struct radix_tree_root *root)
128{
129 return root->rnode == NULL;
130}
131
7cf9c2c7
NP
132/**
133 * Radix-tree synchronization
134 *
135 * The radix-tree API requires that users provide all synchronisation (with
136 * specific exceptions, noted below).
137 *
138 * Synchronization of access to the data items being stored in the tree, and
139 * management of their lifetimes must be completely managed by API users.
140 *
141 * For API usage, in general,
59c51591 142 * - any function _modifying_ the tree or tags (inserting or deleting
eb8dc5e7 143 * items, setting or clearing tags) must exclude other modifications, and
7cf9c2c7 144 * exclude any functions reading the tree.
59c51591 145 * - any function _reading_ the tree or tags (looking up items or tags,
7cf9c2c7
NP
146 * gang lookups) must exclude modifications to the tree, but may occur
147 * concurrently with other readers.
148 *
149 * The notable exceptions to this rule are the following functions:
139e5616 150 * __radix_tree_lookup
7cf9c2c7 151 * radix_tree_lookup
47feff2c 152 * radix_tree_lookup_slot
7cf9c2c7
NP
153 * radix_tree_tag_get
154 * radix_tree_gang_lookup
47feff2c 155 * radix_tree_gang_lookup_slot
7cf9c2c7 156 * radix_tree_gang_lookup_tag
47feff2c 157 * radix_tree_gang_lookup_tag_slot
7cf9c2c7
NP
158 * radix_tree_tagged
159 *
243c2137 160 * The first 8 functions are able to be called locklessly, using RCU. The
7cf9c2c7
NP
161 * caller must ensure calls to these functions are made within rcu_read_lock()
162 * regions. Other readers (lock-free or otherwise) and modifications may be
163 * running concurrently.
164 *
165 * It is still required that the caller manage the synchronization and lifetimes
166 * of the items. So if RCU lock-free lookups are used, typically this would mean
167 * that the items have their own locks, or are amenable to lock-free access; and
168 * that the items are freed by RCU (or only freed after having been deleted from
169 * the radix tree *and* a synchronize_rcu() grace period).
170 *
171 * (Note, rcu_assign_pointer and rcu_dereference are not needed to control
172 * access to data items when inserting into or looking up from the radix tree)
173 *
ce82653d
DH
174 * Note that the value returned by radix_tree_tag_get() may not be relied upon
175 * if only the RCU read lock is held. Functions to set/clear tags and to
176 * delete nodes running concurrently with it may affect its result such that
177 * two consecutive reads in the same locked section may return different
178 * values. If reliability is required, modification functions must also be
179 * excluded from concurrency.
180 *
7cf9c2c7
NP
181 * radix_tree_tagged is able to be called without locking or RCU.
182 */
183
184/**
185 * radix_tree_deref_slot - dereference a slot
186 * @pslot: pointer to slot, returned by radix_tree_lookup_slot
187 * Returns: item that was stored in that slot with any direct pointer flag
188 * removed.
189 *
190 * For use with radix_tree_lookup_slot(). Caller must hold tree at least read
27d20fdd
NP
191 * locked across slot lookup and dereference. Not required if write lock is
192 * held (ie. items cannot be concurrently inserted).
193 *
194 * radix_tree_deref_retry must be used to confirm validity of the pointer if
195 * only the read lock is held.
7cf9c2c7
NP
196 */
197static inline void *radix_tree_deref_slot(void **pslot)
198{
27d20fdd 199 return rcu_dereference(*pslot);
7cf9c2c7 200}
27d20fdd 201
29c1f677
MG
202/**
203 * radix_tree_deref_slot_protected - dereference a slot without RCU lock but with tree lock held
204 * @pslot: pointer to slot, returned by radix_tree_lookup_slot
205 * Returns: item that was stored in that slot with any direct pointer flag
206 * removed.
207 *
208 * Similar to radix_tree_deref_slot but only used during migration when a pages
209 * mapping is being moved. The caller does not hold the RCU read lock but it
210 * must hold the tree lock to prevent parallel updates.
211 */
212static inline void *radix_tree_deref_slot_protected(void **pslot,
213 spinlock_t *treelock)
214{
215 return rcu_dereference_protected(*pslot, lockdep_is_held(treelock));
216}
217
27d20fdd
NP
218/**
219 * radix_tree_deref_retry - check radix_tree_deref_slot
220 * @arg: pointer returned by radix_tree_deref_slot
221 * Returns: 0 if retry is not required, otherwise retry is required
222 *
223 * radix_tree_deref_retry must be used with radix_tree_deref_slot.
224 */
225static inline int radix_tree_deref_retry(void *arg)
226{
b194d16c 227 return unlikely(radix_tree_is_internal_node(arg));
27d20fdd
NP
228}
229
6328650b
HD
230/**
231 * radix_tree_exceptional_entry - radix_tree_deref_slot gave exceptional entry?
232 * @arg: value returned by radix_tree_deref_slot
233 * Returns: 0 if well-aligned pointer, non-0 if exceptional entry.
234 */
235static inline int radix_tree_exceptional_entry(void *arg)
236{
237 /* Not unlikely because radix_tree_exception often tested first */
238 return (unsigned long)arg & RADIX_TREE_EXCEPTIONAL_ENTRY;
239}
240
241/**
242 * radix_tree_exception - radix_tree_deref_slot returned either exception?
243 * @arg: value returned by radix_tree_deref_slot
244 * Returns: 0 if well-aligned pointer, non-0 if either kind of exception.
245 */
246static inline int radix_tree_exception(void *arg)
247{
3bcadd6f 248 return unlikely((unsigned long)arg & RADIX_TREE_ENTRY_MASK);
6328650b
HD
249}
250
7cf9c2c7
NP
251/**
252 * radix_tree_replace_slot - replace item in a slot
253 * @pslot: pointer to slot, returned by radix_tree_lookup_slot
254 * @item: new item to store in the slot.
255 *
256 * For use with radix_tree_lookup_slot(). Caller must hold tree write locked
257 * across slot lookup and replacement.
258 */
259static inline void radix_tree_replace_slot(void **pslot, void *item)
260{
b194d16c 261 BUG_ON(radix_tree_is_internal_node(item));
c0bc9875 262 rcu_assign_pointer(*pslot, item);
7cf9c2c7
NP
263}
264
139e5616 265int __radix_tree_create(struct radix_tree_root *root, unsigned long index,
e6145236
MW
266 unsigned order, struct radix_tree_node **nodep,
267 void ***slotp);
268int __radix_tree_insert(struct radix_tree_root *, unsigned long index,
269 unsigned order, void *);
270static inline int radix_tree_insert(struct radix_tree_root *root,
271 unsigned long index, void *entry)
272{
273 return __radix_tree_insert(root, index, 0, entry);
274}
139e5616
JW
275void *__radix_tree_lookup(struct radix_tree_root *root, unsigned long index,
276 struct radix_tree_node **nodep, void ***slotp);
1da177e4 277void *radix_tree_lookup(struct radix_tree_root *, unsigned long);
a4331366 278void **radix_tree_lookup_slot(struct radix_tree_root *, unsigned long);
449dd698 279bool __radix_tree_delete_node(struct radix_tree_root *root,
139e5616 280 struct radix_tree_node *node);
53c59f26 281void *radix_tree_delete_item(struct radix_tree_root *, unsigned long, void *);
1da177e4 282void *radix_tree_delete(struct radix_tree_root *, unsigned long);
d604c324
MW
283struct radix_tree_node *radix_tree_replace_clear_tags(
284 struct radix_tree_root *root,
285 unsigned long index, void *entry);
286unsigned int radix_tree_gang_lookup(struct radix_tree_root *root,
287 void **results, unsigned long first_index,
288 unsigned int max_items);
6328650b
HD
289unsigned int radix_tree_gang_lookup_slot(struct radix_tree_root *root,
290 void ***results, unsigned long *indices,
47feff2c 291 unsigned long first_index, unsigned int max_items);
dd0fc66f 292int radix_tree_preload(gfp_t gfp_mask);
5e4c0d97 293int radix_tree_maybe_preload(gfp_t gfp_mask);
1da177e4
LT
294void radix_tree_init(void);
295void *radix_tree_tag_set(struct radix_tree_root *root,
daff89f3 296 unsigned long index, unsigned int tag);
1da177e4 297void *radix_tree_tag_clear(struct radix_tree_root *root,
daff89f3 298 unsigned long index, unsigned int tag);
1da177e4 299int radix_tree_tag_get(struct radix_tree_root *root,
daff89f3 300 unsigned long index, unsigned int tag);
1da177e4
LT
301unsigned int
302radix_tree_gang_lookup_tag(struct radix_tree_root *root, void **results,
daff89f3
JC
303 unsigned long first_index, unsigned int max_items,
304 unsigned int tag);
47feff2c
NP
305unsigned int
306radix_tree_gang_lookup_tag_slot(struct radix_tree_root *root, void ***results,
307 unsigned long first_index, unsigned int max_items,
308 unsigned int tag);
ebf8aa44
JK
309unsigned long radix_tree_range_tag_if_tagged(struct radix_tree_root *root,
310 unsigned long *first_indexp, unsigned long last_index,
311 unsigned long nr_to_tag,
312 unsigned int fromtag, unsigned int totag);
daff89f3 313int radix_tree_tagged(struct radix_tree_root *root, unsigned int tag);
e504f3fd 314unsigned long radix_tree_locate_item(struct radix_tree_root *root, void *item);
1da177e4
LT
315
316static inline void radix_tree_preload_end(void)
317{
318 preempt_enable();
319}
320
78c1d784
KK
321/**
322 * struct radix_tree_iter - radix tree iterator state
323 *
324 * @index: index of current slot
21ef5339 325 * @next_index: one beyond the last index for this chunk
78c1d784 326 * @tags: bit-mask for tag-iterating
21ef5339 327 * @shift: shift for the node that holds our slots
78c1d784
KK
328 *
329 * This radix tree iterator works in terms of "chunks" of slots. A chunk is a
330 * subinterval of slots contained within one radix tree leaf node. It is
331 * described by a pointer to its first slot and a struct radix_tree_iter
332 * which holds the chunk's position in the tree and its size. For tagged
333 * iteration radix_tree_iter also holds the slots' bit-mask for one chosen
334 * radix tree tag.
335 */
336struct radix_tree_iter {
337 unsigned long index;
338 unsigned long next_index;
339 unsigned long tags;
21ef5339
RZ
340#ifdef CONFIG_RADIX_TREE_MULTIORDER
341 unsigned int shift;
342#endif
78c1d784
KK
343};
344
21ef5339
RZ
345static inline unsigned int iter_shift(struct radix_tree_iter *iter)
346{
347#ifdef CONFIG_RADIX_TREE_MULTIORDER
348 return iter->shift;
349#else
350 return 0;
351#endif
352}
353
78c1d784
KK
354#define RADIX_TREE_ITER_TAG_MASK 0x00FF /* tag index in lower byte */
355#define RADIX_TREE_ITER_TAGGED 0x0100 /* lookup tagged slots */
356#define RADIX_TREE_ITER_CONTIG 0x0200 /* stop at first hole */
357
358/**
359 * radix_tree_iter_init - initialize radix tree iterator
360 *
361 * @iter: pointer to iterator state
362 * @start: iteration starting index
363 * Returns: NULL
364 */
365static __always_inline void **
366radix_tree_iter_init(struct radix_tree_iter *iter, unsigned long start)
367{
368 /*
369 * Leave iter->tags uninitialized. radix_tree_next_chunk() will fill it
370 * in the case of a successful tagged chunk lookup. If the lookup was
371 * unsuccessful or non-tagged then nobody cares about ->tags.
372 *
373 * Set index to zero to bypass next_index overflow protection.
374 * See the comment in radix_tree_next_chunk() for details.
375 */
376 iter->index = 0;
377 iter->next_index = start;
378 return NULL;
379}
380
381/**
382 * radix_tree_next_chunk - find next chunk of slots for iteration
383 *
384 * @root: radix tree root
385 * @iter: iterator state
386 * @flags: RADIX_TREE_ITER_* flags and tag index
387 * Returns: pointer to chunk first slot, or NULL if there no more left
388 *
389 * This function looks up the next chunk in the radix tree starting from
390 * @iter->next_index. It returns a pointer to the chunk's first slot.
391 * Also it fills @iter with data about chunk: position in the tree (index),
392 * its end (next_index), and constructs a bit mask for tagged iterating (tags).
393 */
394void **radix_tree_next_chunk(struct radix_tree_root *root,
395 struct radix_tree_iter *iter, unsigned flags);
396
46437f9a
MW
397/**
398 * radix_tree_iter_retry - retry this chunk of the iteration
399 * @iter: iterator state
400 *
401 * If we iterate over a tree protected only by the RCU lock, a race
402 * against deletion or creation may result in seeing a slot for which
403 * radix_tree_deref_retry() returns true. If so, call this function
404 * and continue the iteration.
405 */
406static inline __must_check
407void **radix_tree_iter_retry(struct radix_tree_iter *iter)
408{
409 iter->next_index = iter->index;
410 return NULL;
411}
412
21ef5339
RZ
413static inline unsigned long
414__radix_tree_iter_add(struct radix_tree_iter *iter, unsigned long slots)
415{
416 return iter->index + (slots << iter_shift(iter));
417}
418
7165092f
MW
419/**
420 * radix_tree_iter_next - resume iterating when the chunk may be invalid
421 * @iter: iterator state
422 *
423 * If the iterator needs to release then reacquire a lock, the chunk may
424 * have been invalidated by an insertion or deletion. Call this function
425 * to continue the iteration from the next index.
426 */
427static inline __must_check
428void **radix_tree_iter_next(struct radix_tree_iter *iter)
429{
21ef5339 430 iter->next_index = __radix_tree_iter_add(iter, 1);
7165092f
MW
431 iter->tags = 0;
432 return NULL;
433}
434
78c1d784
KK
435/**
436 * radix_tree_chunk_size - get current chunk size
437 *
438 * @iter: pointer to radix tree iterator
439 * Returns: current chunk size
440 */
73204282 441static __always_inline long
78c1d784
KK
442radix_tree_chunk_size(struct radix_tree_iter *iter)
443{
21ef5339
RZ
444 return (iter->next_index - iter->index) >> iter_shift(iter);
445}
446
4dd6c098 447static inline struct radix_tree_node *entry_to_node(void *ptr)
21ef5339 448{
30ff46cc 449 return (void *)((unsigned long)ptr & ~RADIX_TREE_INTERNAL_NODE);
78c1d784
KK
450}
451
452/**
453 * radix_tree_next_slot - find next slot in chunk
454 *
455 * @slot: pointer to current slot
456 * @iter: pointer to interator state
457 * @flags: RADIX_TREE_ITER_*, should be constant
458 * Returns: pointer to next slot, or NULL if there no more left
459 *
460 * This function updates @iter->index in the case of a successful lookup.
461 * For tagged lookup it also eats @iter->tags.
462 */
463static __always_inline void **
464radix_tree_next_slot(void **slot, struct radix_tree_iter *iter, unsigned flags)
465{
466 if (flags & RADIX_TREE_ITER_TAGGED) {
21ef5339
RZ
467 void *canon = slot;
468
78c1d784 469 iter->tags >>= 1;
21ef5339
RZ
470 if (unlikely(!iter->tags))
471 return NULL;
472 while (IS_ENABLED(CONFIG_RADIX_TREE_MULTIORDER) &&
b194d16c 473 radix_tree_is_internal_node(slot[1])) {
4dd6c098 474 if (entry_to_node(slot[1]) == canon) {
21ef5339
RZ
475 iter->tags >>= 1;
476 iter->index = __radix_tree_iter_add(iter, 1);
477 slot++;
478 continue;
479 }
480 iter->next_index = __radix_tree_iter_add(iter, 1);
481 return NULL;
482 }
78c1d784 483 if (likely(iter->tags & 1ul)) {
21ef5339 484 iter->index = __radix_tree_iter_add(iter, 1);
78c1d784
KK
485 return slot + 1;
486 }
21ef5339 487 if (!(flags & RADIX_TREE_ITER_CONTIG)) {
78c1d784
KK
488 unsigned offset = __ffs(iter->tags);
489
490 iter->tags >>= offset;
21ef5339 491 iter->index = __radix_tree_iter_add(iter, offset + 1);
78c1d784
KK
492 return slot + offset + 1;
493 }
494 } else {
21ef5339
RZ
495 long count = radix_tree_chunk_size(iter);
496 void *canon = slot;
78c1d784 497
21ef5339 498 while (--count > 0) {
78c1d784 499 slot++;
21ef5339
RZ
500 iter->index = __radix_tree_iter_add(iter, 1);
501
502 if (IS_ENABLED(CONFIG_RADIX_TREE_MULTIORDER) &&
b194d16c 503 radix_tree_is_internal_node(*slot)) {
4dd6c098 504 if (entry_to_node(*slot) == canon)
21ef5339 505 continue;
4dd6c098
MW
506 iter->next_index = iter->index;
507 break;
21ef5339
RZ
508 }
509
78c1d784
KK
510 if (likely(*slot))
511 return slot;
fffaee36
KK
512 if (flags & RADIX_TREE_ITER_CONTIG) {
513 /* forbid switching to the next chunk */
514 iter->next_index = 0;
78c1d784 515 break;
fffaee36 516 }
78c1d784
KK
517 }
518 }
519 return NULL;
520}
521
78c1d784
KK
522/**
523 * radix_tree_for_each_slot - iterate over non-empty slots
524 *
525 * @slot: the void** variable for pointer to slot
526 * @root: the struct radix_tree_root pointer
527 * @iter: the struct radix_tree_iter pointer
528 * @start: iteration starting index
529 *
530 * @slot points to radix tree slot, @iter->index contains its index.
531 */
532#define radix_tree_for_each_slot(slot, root, iter, start) \
533 for (slot = radix_tree_iter_init(iter, start) ; \
534 slot || (slot = radix_tree_next_chunk(root, iter, 0)) ; \
535 slot = radix_tree_next_slot(slot, iter, 0))
536
537/**
538 * radix_tree_for_each_contig - iterate over contiguous slots
539 *
540 * @slot: the void** variable for pointer to slot
541 * @root: the struct radix_tree_root pointer
542 * @iter: the struct radix_tree_iter pointer
543 * @start: iteration starting index
544 *
545 * @slot points to radix tree slot, @iter->index contains its index.
546 */
547#define radix_tree_for_each_contig(slot, root, iter, start) \
548 for (slot = radix_tree_iter_init(iter, start) ; \
549 slot || (slot = radix_tree_next_chunk(root, iter, \
550 RADIX_TREE_ITER_CONTIG)) ; \
551 slot = radix_tree_next_slot(slot, iter, \
552 RADIX_TREE_ITER_CONTIG))
553
554/**
555 * radix_tree_for_each_tagged - iterate over tagged slots
556 *
557 * @slot: the void** variable for pointer to slot
558 * @root: the struct radix_tree_root pointer
559 * @iter: the struct radix_tree_iter pointer
560 * @start: iteration starting index
561 * @tag: tag index
562 *
563 * @slot points to radix tree slot, @iter->index contains its index.
564 */
565#define radix_tree_for_each_tagged(slot, root, iter, start, tag) \
566 for (slot = radix_tree_iter_init(iter, start) ; \
567 slot || (slot = radix_tree_next_chunk(root, iter, \
568 RADIX_TREE_ITER_TAGGED | tag)) ; \
569 slot = radix_tree_next_slot(slot, iter, \
570 RADIX_TREE_ITER_TAGGED))
571
1da177e4 572#endif /* _LINUX_RADIX_TREE_H */