xref: /linux/include/linux/rhashtable.h (revision 9d796e66230205cd3366f5660387bd9ecca9d336)
1 /*
2  * Resizable, Scalable, Concurrent Hash Table
3  *
4  * Copyright (c) 2015 Herbert Xu <herbert@gondor.apana.org.au>
5  * Copyright (c) 2014-2015 Thomas Graf <tgraf@suug.ch>
6  * Copyright (c) 2008-2014 Patrick McHardy <kaber@trash.net>
7  *
8  * Code partially derived from nft_hash
9  * Rewritten with rehash code from br_multicast plus single list
10  * pointer as suggested by Josh Triplett
11  *
12  * This program is free software; you can redistribute it and/or modify
13  * it under the terms of the GNU General Public License version 2 as
14  * published by the Free Software Foundation.
15  */
16 
17 #ifndef _LINUX_RHASHTABLE_H
18 #define _LINUX_RHASHTABLE_H
19 
20 #include <linux/compiler.h>
21 #include <linux/errno.h>
22 #include <linux/jhash.h>
23 #include <linux/list_nulls.h>
24 #include <linux/workqueue.h>
25 #include <linux/mutex.h>
26 #include <linux/rcupdate.h>
27 
28 /*
29  * The end of the chain is marked with a special nulls marks which has
30  * the following format:
31  *
32  * +-------+-----------------------------------------------------+-+
33  * | Base  |                      Hash                           |1|
34  * +-------+-----------------------------------------------------+-+
35  *
36  * Base (4 bits) : Reserved to distinguish between multiple tables.
37  *                 Specified via &struct rhashtable_params.nulls_base.
38  * Hash (27 bits): Full hash (unmasked) of first element added to bucket
39  * 1 (1 bit)     : Nulls marker (always set)
40  *
41  * The remaining bits of the next pointer remain unused for now.
42  */
43 #define RHT_BASE_BITS		4
44 #define RHT_HASH_BITS		27
45 #define RHT_BASE_SHIFT		RHT_HASH_BITS
46 
47 /* Base bits plus 1 bit for nulls marker */
48 #define RHT_HASH_RESERVED_SPACE	(RHT_BASE_BITS + 1)
49 
50 struct rhash_head {
51 	struct rhash_head __rcu		*next;
52 };
53 
54 /**
55  * struct bucket_table - Table of hash buckets
56  * @size: Number of hash buckets
57  * @rehash: Current bucket being rehashed
58  * @hash_rnd: Random seed to fold into hash
59  * @locks_mask: Mask to apply before accessing locks[]
60  * @locks: Array of spinlocks protecting individual buckets
61  * @walkers: List of active walkers
62  * @rcu: RCU structure for freeing the table
63  * @future_tbl: Table under construction during rehashing
64  * @buckets: size * hash buckets
65  */
66 struct bucket_table {
67 	unsigned int		size;
68 	unsigned int		rehash;
69 	u32			hash_rnd;
70 	unsigned int		locks_mask;
71 	spinlock_t		*locks;
72 	struct list_head	walkers;
73 	struct rcu_head		rcu;
74 
75 	struct bucket_table __rcu *future_tbl;
76 
77 	struct rhash_head __rcu	*buckets[] ____cacheline_aligned_in_smp;
78 };
79 
80 /**
81  * struct rhashtable_compare_arg - Key for the function rhashtable_compare
82  * @ht: Hash table
83  * @key: Key to compare against
84  */
85 struct rhashtable_compare_arg {
86 	struct rhashtable *ht;
87 	const void *key;
88 };
89 
90 typedef u32 (*rht_hashfn_t)(const void *data, u32 len, u32 seed);
91 typedef u32 (*rht_obj_hashfn_t)(const void *data, u32 len, u32 seed);
92 typedef int (*rht_obj_cmpfn_t)(struct rhashtable_compare_arg *arg,
93 			       const void *obj);
94 
95 struct rhashtable;
96 
97 /**
98  * struct rhashtable_params - Hash table construction parameters
99  * @nelem_hint: Hint on number of elements, should be 75% of desired size
100  * @key_len: Length of key
101  * @key_offset: Offset of key in struct to be hashed
102  * @head_offset: Offset of rhash_head in struct to be hashed
103  * @max_size: Maximum size while expanding
104  * @min_size: Minimum size while shrinking
105  * @nulls_base: Base value to generate nulls marker
106  * @insecure_elasticity: Set to true to disable chain length checks
107  * @automatic_shrinking: Enable automatic shrinking of tables
108  * @locks_mul: Number of bucket locks to allocate per cpu (default: 128)
109  * @hashfn: Hash function (default: jhash2 if !(key_len % 4), or jhash)
110  * @obj_hashfn: Function to hash object
111  * @obj_cmpfn: Function to compare key with object
112  */
113 struct rhashtable_params {
114 	size_t			nelem_hint;
115 	size_t			key_len;
116 	size_t			key_offset;
117 	size_t			head_offset;
118 	unsigned int		max_size;
119 	unsigned int		min_size;
120 	u32			nulls_base;
121 	bool			insecure_elasticity;
122 	bool			automatic_shrinking;
123 	size_t			locks_mul;
124 	rht_hashfn_t		hashfn;
125 	rht_obj_hashfn_t	obj_hashfn;
126 	rht_obj_cmpfn_t		obj_cmpfn;
127 };
128 
129 /**
130  * struct rhashtable - Hash table handle
131  * @tbl: Bucket table
132  * @nelems: Number of elements in table
133  * @key_len: Key length for hashfn
134  * @elasticity: Maximum chain length before rehash
135  * @p: Configuration parameters
136  * @run_work: Deferred worker to expand/shrink asynchronously
137  * @mutex: Mutex to protect current/future table swapping
138  * @lock: Spin lock to protect walker list
139  */
140 struct rhashtable {
141 	struct bucket_table __rcu	*tbl;
142 	atomic_t			nelems;
143 	unsigned int			key_len;
144 	unsigned int			elasticity;
145 	struct rhashtable_params	p;
146 	struct work_struct		run_work;
147 	struct mutex                    mutex;
148 	spinlock_t			lock;
149 };
150 
151 /**
152  * struct rhashtable_walker - Hash table walker
153  * @list: List entry on list of walkers
154  * @tbl: The table that we were walking over
155  */
156 struct rhashtable_walker {
157 	struct list_head list;
158 	struct bucket_table *tbl;
159 };
160 
161 /**
162  * struct rhashtable_iter - Hash table iterator, fits into netlink cb
163  * @ht: Table to iterate through
164  * @p: Current pointer
165  * @walker: Associated rhashtable walker
166  * @slot: Current slot
167  * @skip: Number of entries to skip in slot
168  */
169 struct rhashtable_iter {
170 	struct rhashtable *ht;
171 	struct rhash_head *p;
172 	struct rhashtable_walker *walker;
173 	unsigned int slot;
174 	unsigned int skip;
175 };
176 
177 static inline unsigned long rht_marker(const struct rhashtable *ht, u32 hash)
178 {
179 	return NULLS_MARKER(ht->p.nulls_base + hash);
180 }
181 
182 #define INIT_RHT_NULLS_HEAD(ptr, ht, hash) \
183 	((ptr) = (typeof(ptr)) rht_marker(ht, hash))
184 
185 static inline bool rht_is_a_nulls(const struct rhash_head *ptr)
186 {
187 	return ((unsigned long) ptr & 1);
188 }
189 
190 static inline unsigned long rht_get_nulls_value(const struct rhash_head *ptr)
191 {
192 	return ((unsigned long) ptr) >> 1;
193 }
194 
195 static inline void *rht_obj(const struct rhashtable *ht,
196 			    const struct rhash_head *he)
197 {
198 	return (char *)he - ht->p.head_offset;
199 }
200 
201 static inline unsigned int rht_bucket_index(const struct bucket_table *tbl,
202 					    unsigned int hash)
203 {
204 	return (hash >> RHT_HASH_RESERVED_SPACE) & (tbl->size - 1);
205 }
206 
207 static inline unsigned int rht_key_hashfn(
208 	struct rhashtable *ht, const struct bucket_table *tbl,
209 	const void *key, const struct rhashtable_params params)
210 {
211 	unsigned int hash;
212 
213 	/* params must be equal to ht->p if it isn't constant. */
214 	if (!__builtin_constant_p(params.key_len))
215 		hash = ht->p.hashfn(key, ht->key_len, tbl->hash_rnd);
216 	else if (params.key_len) {
217 		unsigned int key_len = params.key_len;
218 
219 		if (params.hashfn)
220 			hash = params.hashfn(key, key_len, tbl->hash_rnd);
221 		else if (key_len & (sizeof(u32) - 1))
222 			hash = jhash(key, key_len, tbl->hash_rnd);
223 		else
224 			hash = jhash2(key, key_len / sizeof(u32),
225 				      tbl->hash_rnd);
226 	} else {
227 		unsigned int key_len = ht->p.key_len;
228 
229 		if (params.hashfn)
230 			hash = params.hashfn(key, key_len, tbl->hash_rnd);
231 		else
232 			hash = jhash(key, key_len, tbl->hash_rnd);
233 	}
234 
235 	return rht_bucket_index(tbl, hash);
236 }
237 
238 static inline unsigned int rht_head_hashfn(
239 	struct rhashtable *ht, const struct bucket_table *tbl,
240 	const struct rhash_head *he, const struct rhashtable_params params)
241 {
242 	const char *ptr = rht_obj(ht, he);
243 
244 	return likely(params.obj_hashfn) ?
245 	       rht_bucket_index(tbl, params.obj_hashfn(ptr, params.key_len ?:
246 							    ht->p.key_len,
247 						       tbl->hash_rnd)) :
248 	       rht_key_hashfn(ht, tbl, ptr + params.key_offset, params);
249 }
250 
251 /**
252  * rht_grow_above_75 - returns true if nelems > 0.75 * table-size
253  * @ht:		hash table
254  * @tbl:	current table
255  */
256 static inline bool rht_grow_above_75(const struct rhashtable *ht,
257 				     const struct bucket_table *tbl)
258 {
259 	/* Expand table when exceeding 75% load */
260 	return atomic_read(&ht->nelems) > (tbl->size / 4 * 3) &&
261 	       (!ht->p.max_size || tbl->size < ht->p.max_size);
262 }
263 
264 /**
265  * rht_shrink_below_30 - returns true if nelems < 0.3 * table-size
266  * @ht:		hash table
267  * @tbl:	current table
268  */
269 static inline bool rht_shrink_below_30(const struct rhashtable *ht,
270 				       const struct bucket_table *tbl)
271 {
272 	/* Shrink table beneath 30% load */
273 	return atomic_read(&ht->nelems) < (tbl->size * 3 / 10) &&
274 	       tbl->size > ht->p.min_size;
275 }
276 
277 /**
278  * rht_grow_above_100 - returns true if nelems > table-size
279  * @ht:		hash table
280  * @tbl:	current table
281  */
282 static inline bool rht_grow_above_100(const struct rhashtable *ht,
283 				      const struct bucket_table *tbl)
284 {
285 	return atomic_read(&ht->nelems) > tbl->size;
286 }
287 
288 /* The bucket lock is selected based on the hash and protects mutations
289  * on a group of hash buckets.
290  *
291  * A maximum of tbl->size/2 bucket locks is allocated. This ensures that
292  * a single lock always covers both buckets which may both contains
293  * entries which link to the same bucket of the old table during resizing.
294  * This allows to simplify the locking as locking the bucket in both
295  * tables during resize always guarantee protection.
296  *
297  * IMPORTANT: When holding the bucket lock of both the old and new table
298  * during expansions and shrinking, the old bucket lock must always be
299  * acquired first.
300  */
301 static inline spinlock_t *rht_bucket_lock(const struct bucket_table *tbl,
302 					  unsigned int hash)
303 {
304 	return &tbl->locks[hash & tbl->locks_mask];
305 }
306 
307 #ifdef CONFIG_PROVE_LOCKING
308 int lockdep_rht_mutex_is_held(struct rhashtable *ht);
309 int lockdep_rht_bucket_is_held(const struct bucket_table *tbl, u32 hash);
310 #else
311 static inline int lockdep_rht_mutex_is_held(struct rhashtable *ht)
312 {
313 	return 1;
314 }
315 
316 static inline int lockdep_rht_bucket_is_held(const struct bucket_table *tbl,
317 					     u32 hash)
318 {
319 	return 1;
320 }
321 #endif /* CONFIG_PROVE_LOCKING */
322 
323 int rhashtable_init(struct rhashtable *ht,
324 		    const struct rhashtable_params *params);
325 
326 int rhashtable_insert_slow(struct rhashtable *ht, const void *key,
327 			   struct rhash_head *obj,
328 			   struct bucket_table *old_tbl);
329 int rhashtable_insert_rehash(struct rhashtable *ht);
330 
331 int rhashtable_walk_init(struct rhashtable *ht, struct rhashtable_iter *iter);
332 void rhashtable_walk_exit(struct rhashtable_iter *iter);
333 int rhashtable_walk_start(struct rhashtable_iter *iter) __acquires(RCU);
334 void *rhashtable_walk_next(struct rhashtable_iter *iter);
335 void rhashtable_walk_stop(struct rhashtable_iter *iter) __releases(RCU);
336 
337 void rhashtable_free_and_destroy(struct rhashtable *ht,
338 				 void (*free_fn)(void *ptr, void *arg),
339 				 void *arg);
340 void rhashtable_destroy(struct rhashtable *ht);
341 
342 #define rht_dereference(p, ht) \
343 	rcu_dereference_protected(p, lockdep_rht_mutex_is_held(ht))
344 
345 #define rht_dereference_rcu(p, ht) \
346 	rcu_dereference_check(p, lockdep_rht_mutex_is_held(ht))
347 
348 #define rht_dereference_bucket(p, tbl, hash) \
349 	rcu_dereference_protected(p, lockdep_rht_bucket_is_held(tbl, hash))
350 
351 #define rht_dereference_bucket_rcu(p, tbl, hash) \
352 	rcu_dereference_check(p, lockdep_rht_bucket_is_held(tbl, hash))
353 
354 #define rht_entry(tpos, pos, member) \
355 	({ tpos = container_of(pos, typeof(*tpos), member); 1; })
356 
357 /**
358  * rht_for_each_continue - continue iterating over hash chain
359  * @pos:	the &struct rhash_head to use as a loop cursor.
360  * @head:	the previous &struct rhash_head to continue from
361  * @tbl:	the &struct bucket_table
362  * @hash:	the hash value / bucket index
363  */
364 #define rht_for_each_continue(pos, head, tbl, hash) \
365 	for (pos = rht_dereference_bucket(head, tbl, hash); \
366 	     !rht_is_a_nulls(pos); \
367 	     pos = rht_dereference_bucket((pos)->next, tbl, hash))
368 
369 /**
370  * rht_for_each - iterate over hash chain
371  * @pos:	the &struct rhash_head to use as a loop cursor.
372  * @tbl:	the &struct bucket_table
373  * @hash:	the hash value / bucket index
374  */
375 #define rht_for_each(pos, tbl, hash) \
376 	rht_for_each_continue(pos, (tbl)->buckets[hash], tbl, hash)
377 
378 /**
379  * rht_for_each_entry_continue - continue iterating over hash chain
380  * @tpos:	the type * to use as a loop cursor.
381  * @pos:	the &struct rhash_head to use as a loop cursor.
382  * @head:	the previous &struct rhash_head to continue from
383  * @tbl:	the &struct bucket_table
384  * @hash:	the hash value / bucket index
385  * @member:	name of the &struct rhash_head within the hashable struct.
386  */
387 #define rht_for_each_entry_continue(tpos, pos, head, tbl, hash, member)	\
388 	for (pos = rht_dereference_bucket(head, tbl, hash);		\
389 	     (!rht_is_a_nulls(pos)) && rht_entry(tpos, pos, member);	\
390 	     pos = rht_dereference_bucket((pos)->next, tbl, hash))
391 
392 /**
393  * rht_for_each_entry - iterate over hash chain of given type
394  * @tpos:	the type * to use as a loop cursor.
395  * @pos:	the &struct rhash_head to use as a loop cursor.
396  * @tbl:	the &struct bucket_table
397  * @hash:	the hash value / bucket index
398  * @member:	name of the &struct rhash_head within the hashable struct.
399  */
400 #define rht_for_each_entry(tpos, pos, tbl, hash, member)		\
401 	rht_for_each_entry_continue(tpos, pos, (tbl)->buckets[hash],	\
402 				    tbl, hash, member)
403 
404 /**
405  * rht_for_each_entry_safe - safely iterate over hash chain of given type
406  * @tpos:	the type * to use as a loop cursor.
407  * @pos:	the &struct rhash_head to use as a loop cursor.
408  * @next:	the &struct rhash_head to use as next in loop cursor.
409  * @tbl:	the &struct bucket_table
410  * @hash:	the hash value / bucket index
411  * @member:	name of the &struct rhash_head within the hashable struct.
412  *
413  * This hash chain list-traversal primitive allows for the looped code to
414  * remove the loop cursor from the list.
415  */
416 #define rht_for_each_entry_safe(tpos, pos, next, tbl, hash, member)	    \
417 	for (pos = rht_dereference_bucket((tbl)->buckets[hash], tbl, hash), \
418 	     next = !rht_is_a_nulls(pos) ?				    \
419 		       rht_dereference_bucket(pos->next, tbl, hash) : NULL; \
420 	     (!rht_is_a_nulls(pos)) && rht_entry(tpos, pos, member);	    \
421 	     pos = next,						    \
422 	     next = !rht_is_a_nulls(pos) ?				    \
423 		       rht_dereference_bucket(pos->next, tbl, hash) : NULL)
424 
425 /**
426  * rht_for_each_rcu_continue - continue iterating over rcu hash chain
427  * @pos:	the &struct rhash_head to use as a loop cursor.
428  * @head:	the previous &struct rhash_head to continue from
429  * @tbl:	the &struct bucket_table
430  * @hash:	the hash value / bucket index
431  *
432  * This hash chain list-traversal primitive may safely run concurrently with
433  * the _rcu mutation primitives such as rhashtable_insert() as long as the
434  * traversal is guarded by rcu_read_lock().
435  */
436 #define rht_for_each_rcu_continue(pos, head, tbl, hash)			\
437 	for (({barrier(); }),						\
438 	     pos = rht_dereference_bucket_rcu(head, tbl, hash);		\
439 	     !rht_is_a_nulls(pos);					\
440 	     pos = rcu_dereference_raw(pos->next))
441 
442 /**
443  * rht_for_each_rcu - iterate over rcu hash chain
444  * @pos:	the &struct rhash_head to use as a loop cursor.
445  * @tbl:	the &struct bucket_table
446  * @hash:	the hash value / bucket index
447  *
448  * This hash chain list-traversal primitive may safely run concurrently with
449  * the _rcu mutation primitives such as rhashtable_insert() as long as the
450  * traversal is guarded by rcu_read_lock().
451  */
452 #define rht_for_each_rcu(pos, tbl, hash)				\
453 	rht_for_each_rcu_continue(pos, (tbl)->buckets[hash], tbl, hash)
454 
455 /**
456  * rht_for_each_entry_rcu_continue - continue iterating over rcu hash chain
457  * @tpos:	the type * to use as a loop cursor.
458  * @pos:	the &struct rhash_head to use as a loop cursor.
459  * @head:	the previous &struct rhash_head to continue from
460  * @tbl:	the &struct bucket_table
461  * @hash:	the hash value / bucket index
462  * @member:	name of the &struct rhash_head within the hashable struct.
463  *
464  * This hash chain list-traversal primitive may safely run concurrently with
465  * the _rcu mutation primitives such as rhashtable_insert() as long as the
466  * traversal is guarded by rcu_read_lock().
467  */
468 #define rht_for_each_entry_rcu_continue(tpos, pos, head, tbl, hash, member) \
469 	for (({barrier(); }),						    \
470 	     pos = rht_dereference_bucket_rcu(head, tbl, hash);		    \
471 	     (!rht_is_a_nulls(pos)) && rht_entry(tpos, pos, member);	    \
472 	     pos = rht_dereference_bucket_rcu(pos->next, tbl, hash))
473 
474 /**
475  * rht_for_each_entry_rcu - iterate over rcu hash chain of given type
476  * @tpos:	the type * to use as a loop cursor.
477  * @pos:	the &struct rhash_head to use as a loop cursor.
478  * @tbl:	the &struct bucket_table
479  * @hash:	the hash value / bucket index
480  * @member:	name of the &struct rhash_head within the hashable struct.
481  *
482  * This hash chain list-traversal primitive may safely run concurrently with
483  * the _rcu mutation primitives such as rhashtable_insert() as long as the
484  * traversal is guarded by rcu_read_lock().
485  */
486 #define rht_for_each_entry_rcu(tpos, pos, tbl, hash, member)		\
487 	rht_for_each_entry_rcu_continue(tpos, pos, (tbl)->buckets[hash],\
488 					tbl, hash, member)
489 
490 static inline int rhashtable_compare(struct rhashtable_compare_arg *arg,
491 				     const void *obj)
492 {
493 	struct rhashtable *ht = arg->ht;
494 	const char *ptr = obj;
495 
496 	return memcmp(ptr + ht->p.key_offset, arg->key, ht->p.key_len);
497 }
498 
499 /**
500  * rhashtable_lookup_fast - search hash table, inlined version
501  * @ht:		hash table
502  * @key:	the pointer to the key
503  * @params:	hash table parameters
504  *
505  * Computes the hash value for the key and traverses the bucket chain looking
506  * for a entry with an identical key. The first matching entry is returned.
507  *
508  * Returns the first entry on which the compare function returned true.
509  */
510 static inline void *rhashtable_lookup_fast(
511 	struct rhashtable *ht, const void *key,
512 	const struct rhashtable_params params)
513 {
514 	struct rhashtable_compare_arg arg = {
515 		.ht = ht,
516 		.key = key,
517 	};
518 	const struct bucket_table *tbl;
519 	struct rhash_head *he;
520 	unsigned int hash;
521 
522 	rcu_read_lock();
523 
524 	tbl = rht_dereference_rcu(ht->tbl, ht);
525 restart:
526 	hash = rht_key_hashfn(ht, tbl, key, params);
527 	rht_for_each_rcu(he, tbl, hash) {
528 		if (params.obj_cmpfn ?
529 		    params.obj_cmpfn(&arg, rht_obj(ht, he)) :
530 		    rhashtable_compare(&arg, rht_obj(ht, he)))
531 			continue;
532 		rcu_read_unlock();
533 		return rht_obj(ht, he);
534 	}
535 
536 	/* Ensure we see any new tables. */
537 	smp_rmb();
538 
539 	tbl = rht_dereference_rcu(tbl->future_tbl, ht);
540 	if (unlikely(tbl))
541 		goto restart;
542 	rcu_read_unlock();
543 
544 	return NULL;
545 }
546 
547 /* Internal function, please use rhashtable_insert_fast() instead */
548 static inline int __rhashtable_insert_fast(
549 	struct rhashtable *ht, const void *key, struct rhash_head *obj,
550 	const struct rhashtable_params params)
551 {
552 	struct rhashtable_compare_arg arg = {
553 		.ht = ht,
554 		.key = key,
555 	};
556 	struct bucket_table *tbl, *new_tbl;
557 	struct rhash_head *head;
558 	spinlock_t *lock;
559 	unsigned int elasticity;
560 	unsigned int hash;
561 	int err;
562 
563 restart:
564 	rcu_read_lock();
565 
566 	tbl = rht_dereference_rcu(ht->tbl, ht);
567 
568 	/* All insertions must grab the oldest table containing
569 	 * the hashed bucket that is yet to be rehashed.
570 	 */
571 	for (;;) {
572 		hash = rht_head_hashfn(ht, tbl, obj, params);
573 		lock = rht_bucket_lock(tbl, hash);
574 		spin_lock_bh(lock);
575 
576 		if (tbl->rehash <= hash)
577 			break;
578 
579 		spin_unlock_bh(lock);
580 		tbl = rht_dereference_rcu(tbl->future_tbl, ht);
581 	}
582 
583 	new_tbl = rht_dereference_rcu(tbl->future_tbl, ht);
584 	if (unlikely(new_tbl)) {
585 		err = rhashtable_insert_slow(ht, key, obj, new_tbl);
586 		if (err == -EAGAIN)
587 			goto slow_path;
588 		goto out;
589 	}
590 
591 	if (unlikely(rht_grow_above_100(ht, tbl))) {
592 slow_path:
593 		spin_unlock_bh(lock);
594 		err = rhashtable_insert_rehash(ht);
595 		rcu_read_unlock();
596 		if (err)
597 			return err;
598 
599 		goto restart;
600 	}
601 
602 	err = -EEXIST;
603 	elasticity = ht->elasticity;
604 	rht_for_each(head, tbl, hash) {
605 		if (key &&
606 		    unlikely(!(params.obj_cmpfn ?
607 			       params.obj_cmpfn(&arg, rht_obj(ht, head)) :
608 			       rhashtable_compare(&arg, rht_obj(ht, head)))))
609 			goto out;
610 		if (!--elasticity)
611 			goto slow_path;
612 	}
613 
614 	err = 0;
615 
616 	head = rht_dereference_bucket(tbl->buckets[hash], tbl, hash);
617 
618 	RCU_INIT_POINTER(obj->next, head);
619 
620 	rcu_assign_pointer(tbl->buckets[hash], obj);
621 
622 	atomic_inc(&ht->nelems);
623 	if (rht_grow_above_75(ht, tbl))
624 		schedule_work(&ht->run_work);
625 
626 out:
627 	spin_unlock_bh(lock);
628 	rcu_read_unlock();
629 
630 	return err;
631 }
632 
633 /**
634  * rhashtable_insert_fast - insert object into hash table
635  * @ht:		hash table
636  * @obj:	pointer to hash head inside object
637  * @params:	hash table parameters
638  *
639  * Will take a per bucket spinlock to protect against mutual mutations
640  * on the same bucket. Multiple insertions may occur in parallel unless
641  * they map to the same bucket lock.
642  *
643  * It is safe to call this function from atomic context.
644  *
645  * Will trigger an automatic deferred table resizing if the size grows
646  * beyond the watermark indicated by grow_decision() which can be passed
647  * to rhashtable_init().
648  */
649 static inline int rhashtable_insert_fast(
650 	struct rhashtable *ht, struct rhash_head *obj,
651 	const struct rhashtable_params params)
652 {
653 	return __rhashtable_insert_fast(ht, NULL, obj, params);
654 }
655 
656 /**
657  * rhashtable_lookup_insert_fast - lookup and insert object into hash table
658  * @ht:		hash table
659  * @obj:	pointer to hash head inside object
660  * @params:	hash table parameters
661  *
662  * Locks down the bucket chain in both the old and new table if a resize
663  * is in progress to ensure that writers can't remove from the old table
664  * and can't insert to the new table during the atomic operation of search
665  * and insertion. Searches for duplicates in both the old and new table if
666  * a resize is in progress.
667  *
668  * This lookup function may only be used for fixed key hash table (key_len
669  * parameter set). It will BUG() if used inappropriately.
670  *
671  * It is safe to call this function from atomic context.
672  *
673  * Will trigger an automatic deferred table resizing if the size grows
674  * beyond the watermark indicated by grow_decision() which can be passed
675  * to rhashtable_init().
676  */
677 static inline int rhashtable_lookup_insert_fast(
678 	struct rhashtable *ht, struct rhash_head *obj,
679 	const struct rhashtable_params params)
680 {
681 	const char *key = rht_obj(ht, obj);
682 
683 	BUG_ON(ht->p.obj_hashfn);
684 
685 	return __rhashtable_insert_fast(ht, key + ht->p.key_offset, obj,
686 					params);
687 }
688 
689 /**
690  * rhashtable_lookup_insert_key - search and insert object to hash table
691  *				  with explicit key
692  * @ht:		hash table
693  * @key:	key
694  * @obj:	pointer to hash head inside object
695  * @params:	hash table parameters
696  *
697  * Locks down the bucket chain in both the old and new table if a resize
698  * is in progress to ensure that writers can't remove from the old table
699  * and can't insert to the new table during the atomic operation of search
700  * and insertion. Searches for duplicates in both the old and new table if
701  * a resize is in progress.
702  *
703  * Lookups may occur in parallel with hashtable mutations and resizing.
704  *
705  * Will trigger an automatic deferred table resizing if the size grows
706  * beyond the watermark indicated by grow_decision() which can be passed
707  * to rhashtable_init().
708  *
709  * Returns zero on success.
710  */
711 static inline int rhashtable_lookup_insert_key(
712 	struct rhashtable *ht, const void *key, struct rhash_head *obj,
713 	const struct rhashtable_params params)
714 {
715 	BUG_ON(!ht->p.obj_hashfn || !key);
716 
717 	return __rhashtable_insert_fast(ht, key, obj, params);
718 }
719 
720 /* Internal function, please use rhashtable_remove_fast() instead */
721 static inline int __rhashtable_remove_fast(
722 	struct rhashtable *ht, struct bucket_table *tbl,
723 	struct rhash_head *obj, const struct rhashtable_params params)
724 {
725 	struct rhash_head __rcu **pprev;
726 	struct rhash_head *he;
727 	spinlock_t * lock;
728 	unsigned int hash;
729 	int err = -ENOENT;
730 
731 	hash = rht_head_hashfn(ht, tbl, obj, params);
732 	lock = rht_bucket_lock(tbl, hash);
733 
734 	spin_lock_bh(lock);
735 
736 	pprev = &tbl->buckets[hash];
737 	rht_for_each(he, tbl, hash) {
738 		if (he != obj) {
739 			pprev = &he->next;
740 			continue;
741 		}
742 
743 		rcu_assign_pointer(*pprev, obj->next);
744 		err = 0;
745 		break;
746 	}
747 
748 	spin_unlock_bh(lock);
749 
750 	return err;
751 }
752 
753 /**
754  * rhashtable_remove_fast - remove object from hash table
755  * @ht:		hash table
756  * @obj:	pointer to hash head inside object
757  * @params:	hash table parameters
758  *
759  * Since the hash chain is single linked, the removal operation needs to
760  * walk the bucket chain upon removal. The removal operation is thus
761  * considerable slow if the hash table is not correctly sized.
762  *
763  * Will automatically shrink the table via rhashtable_expand() if the
764  * shrink_decision function specified at rhashtable_init() returns true.
765  *
766  * Returns zero on success, -ENOENT if the entry could not be found.
767  */
768 static inline int rhashtable_remove_fast(
769 	struct rhashtable *ht, struct rhash_head *obj,
770 	const struct rhashtable_params params)
771 {
772 	struct bucket_table *tbl;
773 	int err;
774 
775 	rcu_read_lock();
776 
777 	tbl = rht_dereference_rcu(ht->tbl, ht);
778 
779 	/* Because we have already taken (and released) the bucket
780 	 * lock in old_tbl, if we find that future_tbl is not yet
781 	 * visible then that guarantees the entry to still be in
782 	 * the old tbl if it exists.
783 	 */
784 	while ((err = __rhashtable_remove_fast(ht, tbl, obj, params)) &&
785 	       (tbl = rht_dereference_rcu(tbl->future_tbl, ht)))
786 		;
787 
788 	if (err)
789 		goto out;
790 
791 	atomic_dec(&ht->nelems);
792 	if (unlikely(ht->p.automatic_shrinking &&
793 		     rht_shrink_below_30(ht, tbl)))
794 		schedule_work(&ht->run_work);
795 
796 out:
797 	rcu_read_unlock();
798 
799 	return err;
800 }
801 
802 #endif /* _LINUX_RHASHTABLE_H */
803