xref: /openbmc/linux/lib/rhashtable.c (revision 7ae9fb1b7ecbb5d85d07857943f677fd1a559b18)
1d2912cb1SThomas Gleixner // SPDX-License-Identifier: GPL-2.0-only
27e1e7763SThomas Graf /*
37e1e7763SThomas Graf  * Resizable, Scalable, Concurrent Hash Table
47e1e7763SThomas Graf  *
502fd97c3SHerbert Xu  * Copyright (c) 2015 Herbert Xu <herbert@gondor.apana.org.au>
6a5ec68e3SThomas Graf  * Copyright (c) 2014-2015 Thomas Graf <tgraf@suug.ch>
77e1e7763SThomas Graf  * Copyright (c) 2008-2014 Patrick McHardy <kaber@trash.net>
87e1e7763SThomas Graf  *
97e1e7763SThomas Graf  * Code partially derived from nft_hash
1002fd97c3SHerbert Xu  * Rewritten with rehash code from br_multicast plus single list
1102fd97c3SHerbert Xu  * pointer as suggested by Josh Triplett
127e1e7763SThomas Graf  */
137e1e7763SThomas Graf 
1407ee0722SHerbert Xu #include <linux/atomic.h>
157e1e7763SThomas Graf #include <linux/kernel.h>
167e1e7763SThomas Graf #include <linux/init.h>
177e1e7763SThomas Graf #include <linux/log2.h>
185beb5c90SEric Dumazet #include <linux/sched.h>
19b2d09103SIngo Molnar #include <linux/rculist.h>
207e1e7763SThomas Graf #include <linux/slab.h>
217e1e7763SThomas Graf #include <linux/vmalloc.h>
227e1e7763SThomas Graf #include <linux/mm.h>
2387545899SDaniel Borkmann #include <linux/jhash.h>
247e1e7763SThomas Graf #include <linux/random.h>
257e1e7763SThomas Graf #include <linux/rhashtable.h>
2661d7b097SStephen Rothwell #include <linux/err.h>
276d795413SHauke Mehrtens #include <linux/export.h>
287e1e7763SThomas Graf 
297e1e7763SThomas Graf #define HASH_DEFAULT_SIZE	64UL
30c2e213cfSHerbert Xu #define HASH_MIN_SIZE		4U
3197defe1eSThomas Graf 
32da20420fSHerbert Xu union nested_table {
33da20420fSHerbert Xu 	union nested_table __rcu *table;
34ce9b362bSHerbert Xu 	struct rhash_lock_head __rcu *bucket;
35da20420fSHerbert Xu };
36da20420fSHerbert Xu 
head_hashfn(struct rhashtable * ht,const struct bucket_table * tbl,const struct rhash_head * he)37988dfbd7SHerbert Xu static u32 head_hashfn(struct rhashtable *ht,
388d24c0b4SThomas Graf 		       const struct bucket_table *tbl,
398d24c0b4SThomas Graf 		       const struct rhash_head *he)
407e1e7763SThomas Graf {
4102fd97c3SHerbert Xu 	return rht_head_hashfn(ht, tbl, he, ht->p);
427e1e7763SThomas Graf }
437e1e7763SThomas Graf 
44a03eaec0SThomas Graf #ifdef CONFIG_PROVE_LOCKING
45a03eaec0SThomas Graf #define ASSERT_RHT_MUTEX(HT) BUG_ON(!lockdep_rht_mutex_is_held(HT))
46a03eaec0SThomas Graf 
lockdep_rht_mutex_is_held(struct rhashtable * ht)47a03eaec0SThomas Graf int lockdep_rht_mutex_is_held(struct rhashtable *ht)
48a03eaec0SThomas Graf {
49a03eaec0SThomas Graf 	return (debug_locks) ? lockdep_is_held(&ht->mutex) : 1;
50a03eaec0SThomas Graf }
51a03eaec0SThomas Graf EXPORT_SYMBOL_GPL(lockdep_rht_mutex_is_held);
52a03eaec0SThomas Graf 
lockdep_rht_bucket_is_held(const struct bucket_table * tbl,u32 hash)53a03eaec0SThomas Graf int lockdep_rht_bucket_is_held(const struct bucket_table *tbl, u32 hash)
54a03eaec0SThomas Graf {
558f0db018SNeilBrown 	if (!debug_locks)
568f0db018SNeilBrown 		return 1;
578f0db018SNeilBrown 	if (unlikely(tbl->nest))
588f0db018SNeilBrown 		return 1;
59ca0b709dSNeilBrown 	return bit_spin_is_locked(0, (unsigned long *)&tbl->buckets[hash]);
60a03eaec0SThomas Graf }
61a03eaec0SThomas Graf EXPORT_SYMBOL_GPL(lockdep_rht_bucket_is_held);
62a03eaec0SThomas Graf #else
63a03eaec0SThomas Graf #define ASSERT_RHT_MUTEX(HT)
64a03eaec0SThomas Graf #endif
65a03eaec0SThomas Graf 
nested_table_top(const struct bucket_table * tbl)664a3084aaSHerbert Xu static inline union nested_table *nested_table_top(
674a3084aaSHerbert Xu 	const struct bucket_table *tbl)
684a3084aaSHerbert Xu {
694a3084aaSHerbert Xu 	/* The top-level bucket entry does not need RCU protection
704a3084aaSHerbert Xu 	 * because it's set at the same time as tbl->nest.
714a3084aaSHerbert Xu 	 */
724a3084aaSHerbert Xu 	return (void *)rcu_dereference_protected(tbl->buckets[0], 1);
734a3084aaSHerbert Xu }
744a3084aaSHerbert Xu 
nested_table_free(union nested_table * ntbl,unsigned int size)75da20420fSHerbert Xu static void nested_table_free(union nested_table *ntbl, unsigned int size)
76da20420fSHerbert Xu {
77da20420fSHerbert Xu 	const unsigned int shift = PAGE_SHIFT - ilog2(sizeof(void *));
78da20420fSHerbert Xu 	const unsigned int len = 1 << shift;
79da20420fSHerbert Xu 	unsigned int i;
80da20420fSHerbert Xu 
814a3084aaSHerbert Xu 	ntbl = rcu_dereference_protected(ntbl->table, 1);
82da20420fSHerbert Xu 	if (!ntbl)
83da20420fSHerbert Xu 		return;
84da20420fSHerbert Xu 
85da20420fSHerbert Xu 	if (size > len) {
86da20420fSHerbert Xu 		size >>= shift;
87da20420fSHerbert Xu 		for (i = 0; i < len; i++)
88da20420fSHerbert Xu 			nested_table_free(ntbl + i, size);
89da20420fSHerbert Xu 	}
90da20420fSHerbert Xu 
91da20420fSHerbert Xu 	kfree(ntbl);
92da20420fSHerbert Xu }
93da20420fSHerbert Xu 
nested_bucket_table_free(const struct bucket_table * tbl)94da20420fSHerbert Xu static void nested_bucket_table_free(const struct bucket_table *tbl)
95da20420fSHerbert Xu {
96da20420fSHerbert Xu 	unsigned int size = tbl->size >> tbl->nest;
97da20420fSHerbert Xu 	unsigned int len = 1 << tbl->nest;
98da20420fSHerbert Xu 	union nested_table *ntbl;
99da20420fSHerbert Xu 	unsigned int i;
100da20420fSHerbert Xu 
1014a3084aaSHerbert Xu 	ntbl = nested_table_top(tbl);
102da20420fSHerbert Xu 
103da20420fSHerbert Xu 	for (i = 0; i < len; i++)
104da20420fSHerbert Xu 		nested_table_free(ntbl + i, size);
105da20420fSHerbert Xu 
106da20420fSHerbert Xu 	kfree(ntbl);
107da20420fSHerbert Xu }
108da20420fSHerbert Xu 
bucket_table_free(const struct bucket_table * tbl)10997defe1eSThomas Graf static void bucket_table_free(const struct bucket_table *tbl)
11097defe1eSThomas Graf {
111da20420fSHerbert Xu 	if (tbl->nest)
112da20420fSHerbert Xu 		nested_bucket_table_free(tbl);
113da20420fSHerbert Xu 
11497defe1eSThomas Graf 	kvfree(tbl);
11597defe1eSThomas Graf }
11697defe1eSThomas Graf 
bucket_table_free_rcu(struct rcu_head * head)1179d901bc0SHerbert Xu static void bucket_table_free_rcu(struct rcu_head *head)
1189d901bc0SHerbert Xu {
1199d901bc0SHerbert Xu 	bucket_table_free(container_of(head, struct bucket_table, rcu));
1209d901bc0SHerbert Xu }
1219d901bc0SHerbert Xu 
nested_table_alloc(struct rhashtable * ht,union nested_table __rcu ** prev,bool leaf)122da20420fSHerbert Xu static union nested_table *nested_table_alloc(struct rhashtable *ht,
123da20420fSHerbert Xu 					      union nested_table __rcu **prev,
1245af68ef7SNeilBrown 					      bool leaf)
125da20420fSHerbert Xu {
126da20420fSHerbert Xu 	union nested_table *ntbl;
127da20420fSHerbert Xu 	int i;
128da20420fSHerbert Xu 
129da20420fSHerbert Xu 	ntbl = rcu_dereference(*prev);
130da20420fSHerbert Xu 	if (ntbl)
131da20420fSHerbert Xu 		return ntbl;
132da20420fSHerbert Xu 
133da20420fSHerbert Xu 	ntbl = kzalloc(PAGE_SIZE, GFP_ATOMIC);
134da20420fSHerbert Xu 
1355af68ef7SNeilBrown 	if (ntbl && leaf) {
1365af68ef7SNeilBrown 		for (i = 0; i < PAGE_SIZE / sizeof(ntbl[0]); i++)
1379b4f64a2SNeilBrown 			INIT_RHT_NULLS_HEAD(ntbl[i].bucket);
138da20420fSHerbert Xu 	}
139da20420fSHerbert Xu 
140e9458a4eSHerbert Xu 	if (cmpxchg((union nested_table **)prev, NULL, ntbl) == NULL)
141da20420fSHerbert Xu 		return ntbl;
1427a41c294SNeilBrown 	/* Raced with another thread. */
1437a41c294SNeilBrown 	kfree(ntbl);
1447a41c294SNeilBrown 	return rcu_dereference(*prev);
145da20420fSHerbert Xu }
146da20420fSHerbert Xu 
nested_bucket_table_alloc(struct rhashtable * ht,size_t nbuckets,gfp_t gfp)147da20420fSHerbert Xu static struct bucket_table *nested_bucket_table_alloc(struct rhashtable *ht,
148da20420fSHerbert Xu 						      size_t nbuckets,
149da20420fSHerbert Xu 						      gfp_t gfp)
150da20420fSHerbert Xu {
151da20420fSHerbert Xu 	const unsigned int shift = PAGE_SHIFT - ilog2(sizeof(void *));
152da20420fSHerbert Xu 	struct bucket_table *tbl;
153da20420fSHerbert Xu 	size_t size;
154da20420fSHerbert Xu 
155da20420fSHerbert Xu 	if (nbuckets < (1 << (shift + 1)))
156da20420fSHerbert Xu 		return NULL;
157da20420fSHerbert Xu 
158da20420fSHerbert Xu 	size = sizeof(*tbl) + sizeof(tbl->buckets[0]);
159da20420fSHerbert Xu 
160da20420fSHerbert Xu 	tbl = kzalloc(size, gfp);
161da20420fSHerbert Xu 	if (!tbl)
162da20420fSHerbert Xu 		return NULL;
163da20420fSHerbert Xu 
164da20420fSHerbert Xu 	if (!nested_table_alloc(ht, (union nested_table __rcu **)tbl->buckets,
1655af68ef7SNeilBrown 				false)) {
166da20420fSHerbert Xu 		kfree(tbl);
167da20420fSHerbert Xu 		return NULL;
168da20420fSHerbert Xu 	}
169da20420fSHerbert Xu 
170da20420fSHerbert Xu 	tbl->nest = (ilog2(nbuckets) - 1) % shift + 1;
171da20420fSHerbert Xu 
172da20420fSHerbert Xu 	return tbl;
173da20420fSHerbert Xu }
174da20420fSHerbert Xu 
bucket_table_alloc(struct rhashtable * ht,size_t nbuckets,gfp_t gfp)17597defe1eSThomas Graf static struct bucket_table *bucket_table_alloc(struct rhashtable *ht,
176b9ecfdaaSHerbert Xu 					       size_t nbuckets,
177b9ecfdaaSHerbert Xu 					       gfp_t gfp)
1787e1e7763SThomas Graf {
179eb6d1abfSDaniel Borkmann 	struct bucket_table *tbl = NULL;
1808f0db018SNeilBrown 	size_t size;
181f89bd6f8SThomas Graf 	int i;
182149212f0SNeilBrown 	static struct lock_class_key __key;
1837e1e7763SThomas Graf 
184c252aa3eSGustavo A. R. Silva 	tbl = kvzalloc(struct_size(tbl, buckets, nbuckets), gfp);
185da20420fSHerbert Xu 
186da20420fSHerbert Xu 	size = nbuckets;
187da20420fSHerbert Xu 
1882d22ecf6SDavidlohr Bueso 	if (tbl == NULL && (gfp & ~__GFP_NOFAIL) != GFP_KERNEL) {
189da20420fSHerbert Xu 		tbl = nested_bucket_table_alloc(ht, nbuckets, gfp);
190da20420fSHerbert Xu 		nbuckets = 0;
191da20420fSHerbert Xu 	}
1922d22ecf6SDavidlohr Bueso 
1937e1e7763SThomas Graf 	if (tbl == NULL)
1947e1e7763SThomas Graf 		return NULL;
1957e1e7763SThomas Graf 
196149212f0SNeilBrown 	lockdep_init_map(&tbl->dep_map, "rhashtable_bucket", &__key, 0);
197149212f0SNeilBrown 
198da20420fSHerbert Xu 	tbl->size = size;
1997e1e7763SThomas Graf 
2004feb7c7aSNeilBrown 	rcu_head_init(&tbl->rcu);
201eddee5baSHerbert Xu 	INIT_LIST_HEAD(&tbl->walkers);
202eddee5baSHerbert Xu 
203d48ad080SJason A. Donenfeld 	tbl->hash_rnd = get_random_u32();
2045269b53dSHerbert Xu 
205f89bd6f8SThomas Graf 	for (i = 0; i < nbuckets; i++)
2069b4f64a2SNeilBrown 		INIT_RHT_NULLS_HEAD(tbl->buckets[i]);
207f89bd6f8SThomas Graf 
20897defe1eSThomas Graf 	return tbl;
2097e1e7763SThomas Graf }
2107e1e7763SThomas Graf 
rhashtable_last_table(struct rhashtable * ht,struct bucket_table * tbl)211b824478bSHerbert Xu static struct bucket_table *rhashtable_last_table(struct rhashtable *ht,
212b824478bSHerbert Xu 						  struct bucket_table *tbl)
213b824478bSHerbert Xu {
214b824478bSHerbert Xu 	struct bucket_table *new_tbl;
215b824478bSHerbert Xu 
216b824478bSHerbert Xu 	do {
217b824478bSHerbert Xu 		new_tbl = tbl;
218b824478bSHerbert Xu 		tbl = rht_dereference_rcu(tbl->future_tbl, ht);
219b824478bSHerbert Xu 	} while (tbl);
220b824478bSHerbert Xu 
221b824478bSHerbert Xu 	return new_tbl;
222b824478bSHerbert Xu }
223b824478bSHerbert Xu 
rhashtable_rehash_one(struct rhashtable * ht,struct rhash_lock_head __rcu ** bkt,unsigned int old_hash)2248f0db018SNeilBrown static int rhashtable_rehash_one(struct rhashtable *ht,
225ce9b362bSHerbert Xu 				 struct rhash_lock_head __rcu **bkt,
2268f0db018SNeilBrown 				 unsigned int old_hash)
227a5ec68e3SThomas Graf {
228aa34a6cbSHerbert Xu 	struct bucket_table *old_tbl = rht_dereference(ht->tbl, ht);
229c0690016SNeilBrown 	struct bucket_table *new_tbl = rhashtable_last_table(ht, old_tbl);
230da20420fSHerbert Xu 	int err = -EAGAIN;
231aa34a6cbSHerbert Xu 	struct rhash_head *head, *next, *entry;
232e4edbe3cSNeilBrown 	struct rhash_head __rcu **pprev = NULL;
233299e5c32SThomas Graf 	unsigned int new_hash;
234*e47877c7STejun Heo 	unsigned long flags;
235a5ec68e3SThomas Graf 
236da20420fSHerbert Xu 	if (new_tbl->nest)
237da20420fSHerbert Xu 		goto out;
238da20420fSHerbert Xu 
239da20420fSHerbert Xu 	err = -ENOENT;
240da20420fSHerbert Xu 
241adc6a3abSNeilBrown 	rht_for_each_from(entry, rht_ptr(bkt, old_tbl, old_hash),
242adc6a3abSNeilBrown 			  old_tbl, old_hash) {
243aa34a6cbSHerbert Xu 		err = 0;
244aa34a6cbSHerbert Xu 		next = rht_dereference_bucket(entry->next, old_tbl, old_hash);
245a5ec68e3SThomas Graf 
246aa34a6cbSHerbert Xu 		if (rht_is_a_nulls(next))
2477e1e7763SThomas Graf 			break;
24897defe1eSThomas Graf 
249aa34a6cbSHerbert Xu 		pprev = &entry->next;
2507e1e7763SThomas Graf 	}
2517e1e7763SThomas Graf 
252aa34a6cbSHerbert Xu 	if (err)
253aa34a6cbSHerbert Xu 		goto out;
25497defe1eSThomas Graf 
255aa34a6cbSHerbert Xu 	new_hash = head_hashfn(ht, new_tbl, entry);
256a5ec68e3SThomas Graf 
257*e47877c7STejun Heo 	flags = rht_lock_nested(new_tbl, &new_tbl->buckets[new_hash],
258*e47877c7STejun Heo 				SINGLE_DEPTH_NESTING);
259aa34a6cbSHerbert Xu 
260adc6a3abSNeilBrown 	head = rht_ptr(new_tbl->buckets + new_hash, new_tbl, new_hash);
261aa34a6cbSHerbert Xu 
262aa34a6cbSHerbert Xu 	RCU_INIT_POINTER(entry->next, head);
263aa34a6cbSHerbert Xu 
264*e47877c7STejun Heo 	rht_assign_unlock(new_tbl, &new_tbl->buckets[new_hash], entry, flags);
265aa34a6cbSHerbert Xu 
2668f0db018SNeilBrown 	if (pprev)
267aa34a6cbSHerbert Xu 		rcu_assign_pointer(*pprev, next);
2688f0db018SNeilBrown 	else
2698f0db018SNeilBrown 		/* Need to preserved the bit lock. */
270f4712b46SNeilBrown 		rht_assign_locked(bkt, next);
271aa34a6cbSHerbert Xu 
272aa34a6cbSHerbert Xu out:
273aa34a6cbSHerbert Xu 	return err;
27497defe1eSThomas Graf }
27597defe1eSThomas Graf 
rhashtable_rehash_chain(struct rhashtable * ht,unsigned int old_hash)276da20420fSHerbert Xu static int rhashtable_rehash_chain(struct rhashtable *ht,
277299e5c32SThomas Graf 				    unsigned int old_hash)
27897defe1eSThomas Graf {
279aa34a6cbSHerbert Xu 	struct bucket_table *old_tbl = rht_dereference(ht->tbl, ht);
280ce9b362bSHerbert Xu 	struct rhash_lock_head __rcu **bkt = rht_bucket_var(old_tbl, old_hash);
281*e47877c7STejun Heo 	unsigned long flags;
282da20420fSHerbert Xu 	int err;
2837cd10db8SThomas Graf 
2848f0db018SNeilBrown 	if (!bkt)
2858f0db018SNeilBrown 		return 0;
286*e47877c7STejun Heo 	flags = rht_lock(old_tbl, bkt);
287aa34a6cbSHerbert Xu 
2888f0db018SNeilBrown 	while (!(err = rhashtable_rehash_one(ht, bkt, old_hash)))
289aa34a6cbSHerbert Xu 		;
290da20420fSHerbert Xu 
2914feb7c7aSNeilBrown 	if (err == -ENOENT)
292da20420fSHerbert Xu 		err = 0;
293*e47877c7STejun Heo 	rht_unlock(old_tbl, bkt, flags);
294da20420fSHerbert Xu 
295da20420fSHerbert Xu 	return err;
296aa34a6cbSHerbert Xu }
297aa34a6cbSHerbert Xu 
rhashtable_rehash_attach(struct rhashtable * ht,struct bucket_table * old_tbl,struct bucket_table * new_tbl)298b824478bSHerbert Xu static int rhashtable_rehash_attach(struct rhashtable *ht,
299b824478bSHerbert Xu 				    struct bucket_table *old_tbl,
300aa34a6cbSHerbert Xu 				    struct bucket_table *new_tbl)
301aa34a6cbSHerbert Xu {
302aa34a6cbSHerbert Xu 	/* Make insertions go into the new, empty table right away. Deletions
303aa34a6cbSHerbert Xu 	 * and lookups will be attempted in both tables until we synchronize.
3040ad66449SNeilBrown 	 * As cmpxchg() provides strong barriers, we do not need
3050ad66449SNeilBrown 	 * rcu_assign_pointer().
306aa34a6cbSHerbert Xu 	 */
307aa34a6cbSHerbert Xu 
308e9458a4eSHerbert Xu 	if (cmpxchg((struct bucket_table **)&old_tbl->future_tbl, NULL,
309e9458a4eSHerbert Xu 		    new_tbl) != NULL)
3100ad66449SNeilBrown 		return -EEXIST;
311b824478bSHerbert Xu 
312b824478bSHerbert Xu 	return 0;
313b824478bSHerbert Xu }
314b824478bSHerbert Xu 
rhashtable_rehash_table(struct rhashtable * ht)315b824478bSHerbert Xu static int rhashtable_rehash_table(struct rhashtable *ht)
316b824478bSHerbert Xu {
317b824478bSHerbert Xu 	struct bucket_table *old_tbl = rht_dereference(ht->tbl, ht);
318b824478bSHerbert Xu 	struct bucket_table *new_tbl;
319b824478bSHerbert Xu 	struct rhashtable_walker *walker;
320299e5c32SThomas Graf 	unsigned int old_hash;
321da20420fSHerbert Xu 	int err;
322b824478bSHerbert Xu 
323b824478bSHerbert Xu 	new_tbl = rht_dereference(old_tbl->future_tbl, ht);
324b824478bSHerbert Xu 	if (!new_tbl)
325b824478bSHerbert Xu 		return 0;
326b824478bSHerbert Xu 
327da20420fSHerbert Xu 	for (old_hash = 0; old_hash < old_tbl->size; old_hash++) {
328da20420fSHerbert Xu 		err = rhashtable_rehash_chain(ht, old_hash);
329da20420fSHerbert Xu 		if (err)
330da20420fSHerbert Xu 			return err;
331ae6da1f5SEric Dumazet 		cond_resched();
332da20420fSHerbert Xu 	}
333aa34a6cbSHerbert Xu 
334aa34a6cbSHerbert Xu 	/* Publish the new table pointer. */
335aa34a6cbSHerbert Xu 	rcu_assign_pointer(ht->tbl, new_tbl);
336aa34a6cbSHerbert Xu 
337ba7c95eaSHerbert Xu 	spin_lock(&ht->lock);
338eddee5baSHerbert Xu 	list_for_each_entry(walker, &old_tbl->walkers, list)
339eddee5baSHerbert Xu 		walker->tbl = NULL;
340eddee5baSHerbert Xu 
341aa34a6cbSHerbert Xu 	/* Wait for readers. All new readers will see the new
342aa34a6cbSHerbert Xu 	 * table, and thus no references to the old table will
343aa34a6cbSHerbert Xu 	 * remain.
3444feb7c7aSNeilBrown 	 * We do this inside the locked region so that
3454feb7c7aSNeilBrown 	 * rhashtable_walk_stop() can use rcu_head_after_call_rcu()
3464feb7c7aSNeilBrown 	 * to check if it should not re-link the table.
347aa34a6cbSHerbert Xu 	 */
3489d901bc0SHerbert Xu 	call_rcu(&old_tbl->rcu, bucket_table_free_rcu);
3494feb7c7aSNeilBrown 	spin_unlock(&ht->lock);
350b824478bSHerbert Xu 
351b824478bSHerbert Xu 	return rht_dereference(new_tbl->future_tbl, ht) ? -EAGAIN : 0;
3527e1e7763SThomas Graf }
3537e1e7763SThomas Graf 
rhashtable_rehash_alloc(struct rhashtable * ht,struct bucket_table * old_tbl,unsigned int size)354da20420fSHerbert Xu static int rhashtable_rehash_alloc(struct rhashtable *ht,
355da20420fSHerbert Xu 				   struct bucket_table *old_tbl,
356da20420fSHerbert Xu 				   unsigned int size)
3577e1e7763SThomas Graf {
358da20420fSHerbert Xu 	struct bucket_table *new_tbl;
359b824478bSHerbert Xu 	int err;
3607e1e7763SThomas Graf 
3617e1e7763SThomas Graf 	ASSERT_RHT_MUTEX(ht);
3627e1e7763SThomas Graf 
363da20420fSHerbert Xu 	new_tbl = bucket_table_alloc(ht, size, GFP_KERNEL);
3647e1e7763SThomas Graf 	if (new_tbl == NULL)
3657e1e7763SThomas Graf 		return -ENOMEM;
3667e1e7763SThomas Graf 
367b824478bSHerbert Xu 	err = rhashtable_rehash_attach(ht, old_tbl, new_tbl);
368b824478bSHerbert Xu 	if (err)
369b824478bSHerbert Xu 		bucket_table_free(new_tbl);
370b824478bSHerbert Xu 
371b824478bSHerbert Xu 	return err;
3727e1e7763SThomas Graf }
3737e1e7763SThomas Graf 
3747e1e7763SThomas Graf /**
3757e1e7763SThomas Graf  * rhashtable_shrink - Shrink hash table while allowing concurrent lookups
3767e1e7763SThomas Graf  * @ht:		the hash table to shrink
3777e1e7763SThomas Graf  *
37818093d1cSHerbert Xu  * This function shrinks the hash table to fit, i.e., the smallest
37918093d1cSHerbert Xu  * size would not cause it to expand right away automatically.
3807e1e7763SThomas Graf  *
38197defe1eSThomas Graf  * The caller must ensure that no concurrent resizing occurs by holding
38297defe1eSThomas Graf  * ht->mutex.
38397defe1eSThomas Graf  *
3847e1e7763SThomas Graf  * The caller must ensure that no concurrent table mutations take place.
3857e1e7763SThomas Graf  * It is however valid to have concurrent lookups if they are RCU protected.
38697defe1eSThomas Graf  *
38797defe1eSThomas Graf  * It is valid to have concurrent insertions and deletions protected by per
38897defe1eSThomas Graf  * bucket locks or concurrent RCU protected lookups and traversals.
3897e1e7763SThomas Graf  */
rhashtable_shrink(struct rhashtable * ht)390b824478bSHerbert Xu static int rhashtable_shrink(struct rhashtable *ht)
3917e1e7763SThomas Graf {
392da20420fSHerbert Xu 	struct bucket_table *old_tbl = rht_dereference(ht->tbl, ht);
39312311959SVegard Nossum 	unsigned int nelems = atomic_read(&ht->nelems);
39412311959SVegard Nossum 	unsigned int size = 0;
3957e1e7763SThomas Graf 
39612311959SVegard Nossum 	if (nelems)
39712311959SVegard Nossum 		size = roundup_pow_of_two(nelems * 3 / 2);
39818093d1cSHerbert Xu 	if (size < ht->p.min_size)
39918093d1cSHerbert Xu 		size = ht->p.min_size;
40018093d1cSHerbert Xu 
40118093d1cSHerbert Xu 	if (old_tbl->size <= size)
40218093d1cSHerbert Xu 		return 0;
40318093d1cSHerbert Xu 
404b824478bSHerbert Xu 	if (rht_dereference(old_tbl->future_tbl, ht))
405b824478bSHerbert Xu 		return -EEXIST;
406b824478bSHerbert Xu 
407da20420fSHerbert Xu 	return rhashtable_rehash_alloc(ht, old_tbl, size);
4087e1e7763SThomas Graf }
4097e1e7763SThomas Graf 
rht_deferred_worker(struct work_struct * work)41097defe1eSThomas Graf static void rht_deferred_worker(struct work_struct *work)
41197defe1eSThomas Graf {
41297defe1eSThomas Graf 	struct rhashtable *ht;
41397defe1eSThomas Graf 	struct bucket_table *tbl;
414b824478bSHerbert Xu 	int err = 0;
41597defe1eSThomas Graf 
41657699a40SYing Xue 	ht = container_of(work, struct rhashtable, run_work);
41797defe1eSThomas Graf 	mutex_lock(&ht->mutex);
41828134a53SHerbert Xu 
41997defe1eSThomas Graf 	tbl = rht_dereference(ht->tbl, ht);
420b824478bSHerbert Xu 	tbl = rhashtable_last_table(ht, tbl);
42197defe1eSThomas Graf 
422a5b6846fSDaniel Borkmann 	if (rht_grow_above_75(ht, tbl))
423da20420fSHerbert Xu 		err = rhashtable_rehash_alloc(ht, tbl, tbl->size * 2);
424b5e2c150SThomas Graf 	else if (ht->p.automatic_shrinking && rht_shrink_below_30(ht, tbl))
425da20420fSHerbert Xu 		err = rhashtable_shrink(ht);
426da20420fSHerbert Xu 	else if (tbl->nest)
427da20420fSHerbert Xu 		err = rhashtable_rehash_alloc(ht, tbl, tbl->size);
428b824478bSHerbert Xu 
429408f13efSHerbert Xu 	if (!err || err == -EEXIST) {
430408f13efSHerbert Xu 		int nerr;
431408f13efSHerbert Xu 
432408f13efSHerbert Xu 		nerr = rhashtable_rehash_table(ht);
433408f13efSHerbert Xu 		err = err ?: nerr;
434408f13efSHerbert Xu 	}
435b824478bSHerbert Xu 
43697defe1eSThomas Graf 	mutex_unlock(&ht->mutex);
437b824478bSHerbert Xu 
438b824478bSHerbert Xu 	if (err)
439b824478bSHerbert Xu 		schedule_work(&ht->run_work);
44097defe1eSThomas Graf }
44197defe1eSThomas Graf 
rhashtable_insert_rehash(struct rhashtable * ht,struct bucket_table * tbl)442ca26893fSHerbert Xu static int rhashtable_insert_rehash(struct rhashtable *ht,
4433cf92222SHerbert Xu 				    struct bucket_table *tbl)
444ccd57b1bSHerbert Xu {
445ccd57b1bSHerbert Xu 	struct bucket_table *old_tbl;
446ccd57b1bSHerbert Xu 	struct bucket_table *new_tbl;
447ccd57b1bSHerbert Xu 	unsigned int size;
448ccd57b1bSHerbert Xu 	int err;
449ccd57b1bSHerbert Xu 
450ccd57b1bSHerbert Xu 	old_tbl = rht_dereference_rcu(ht->tbl, ht);
451ccd57b1bSHerbert Xu 
452ccd57b1bSHerbert Xu 	size = tbl->size;
453ccd57b1bSHerbert Xu 
4543cf92222SHerbert Xu 	err = -EBUSY;
4553cf92222SHerbert Xu 
456ccd57b1bSHerbert Xu 	if (rht_grow_above_75(ht, tbl))
457ccd57b1bSHerbert Xu 		size *= 2;
458a87b9ebfSThomas Graf 	/* Do not schedule more than one rehash */
459a87b9ebfSThomas Graf 	else if (old_tbl != tbl)
4603cf92222SHerbert Xu 		goto fail;
4613cf92222SHerbert Xu 
4623cf92222SHerbert Xu 	err = -ENOMEM;
463ccd57b1bSHerbert Xu 
46493f976b5SDavidlohr Bueso 	new_tbl = bucket_table_alloc(ht, size, GFP_ATOMIC | __GFP_NOWARN);
4653cf92222SHerbert Xu 	if (new_tbl == NULL)
4663cf92222SHerbert Xu 		goto fail;
467ccd57b1bSHerbert Xu 
468ccd57b1bSHerbert Xu 	err = rhashtable_rehash_attach(ht, tbl, new_tbl);
469ccd57b1bSHerbert Xu 	if (err) {
470ccd57b1bSHerbert Xu 		bucket_table_free(new_tbl);
471ccd57b1bSHerbert Xu 		if (err == -EEXIST)
472ccd57b1bSHerbert Xu 			err = 0;
473ccd57b1bSHerbert Xu 	} else
474ccd57b1bSHerbert Xu 		schedule_work(&ht->run_work);
475ccd57b1bSHerbert Xu 
476ccd57b1bSHerbert Xu 	return err;
4773cf92222SHerbert Xu 
4783cf92222SHerbert Xu fail:
4793cf92222SHerbert Xu 	/* Do not fail the insert if someone else did a rehash. */
480c0690016SNeilBrown 	if (likely(rcu_access_pointer(tbl->future_tbl)))
4813cf92222SHerbert Xu 		return 0;
4823cf92222SHerbert Xu 
4833cf92222SHerbert Xu 	/* Schedule async rehash to retry allocation in process context. */
4843cf92222SHerbert Xu 	if (err == -ENOMEM)
4853cf92222SHerbert Xu 		schedule_work(&ht->run_work);
4863cf92222SHerbert Xu 
4873cf92222SHerbert Xu 	return err;
488ccd57b1bSHerbert Xu }
489ccd57b1bSHerbert Xu 
rhashtable_lookup_one(struct rhashtable * ht,struct rhash_lock_head __rcu ** bkt,struct bucket_table * tbl,unsigned int hash,const void * key,struct rhash_head * obj)490ca26893fSHerbert Xu static void *rhashtable_lookup_one(struct rhashtable *ht,
491ce9b362bSHerbert Xu 				   struct rhash_lock_head __rcu **bkt,
492ca26893fSHerbert Xu 				   struct bucket_table *tbl, unsigned int hash,
493ca26893fSHerbert Xu 				   const void *key, struct rhash_head *obj)
49402fd97c3SHerbert Xu {
495ca26893fSHerbert Xu 	struct rhashtable_compare_arg arg = {
496ca26893fSHerbert Xu 		.ht = ht,
497ca26893fSHerbert Xu 		.key = key,
498ca26893fSHerbert Xu 	};
499e4edbe3cSNeilBrown 	struct rhash_head __rcu **pprev = NULL;
50002fd97c3SHerbert Xu 	struct rhash_head *head;
501ca26893fSHerbert Xu 	int elasticity;
50202fd97c3SHerbert Xu 
5035f8ddeabSFlorian Westphal 	elasticity = RHT_ELASTICITY;
504adc6a3abSNeilBrown 	rht_for_each_from(head, rht_ptr(bkt, tbl, hash), tbl, hash) {
505ca26893fSHerbert Xu 		struct rhlist_head *list;
506ca26893fSHerbert Xu 		struct rhlist_head *plist;
50702fd97c3SHerbert Xu 
508ca26893fSHerbert Xu 		elasticity--;
509ca26893fSHerbert Xu 		if (!key ||
510ca26893fSHerbert Xu 		    (ht->p.obj_cmpfn ?
511ca26893fSHerbert Xu 		     ht->p.obj_cmpfn(&arg, rht_obj(ht, head)) :
512d3dcf8ebSPaul Blakey 		     rhashtable_compare(&arg, rht_obj(ht, head)))) {
513d3dcf8ebSPaul Blakey 			pprev = &head->next;
514ca26893fSHerbert Xu 			continue;
515d3dcf8ebSPaul Blakey 		}
516ca26893fSHerbert Xu 
517ca26893fSHerbert Xu 		if (!ht->rhlist)
518ca26893fSHerbert Xu 			return rht_obj(ht, head);
519ca26893fSHerbert Xu 
520ca26893fSHerbert Xu 		list = container_of(obj, struct rhlist_head, rhead);
521ca26893fSHerbert Xu 		plist = container_of(head, struct rhlist_head, rhead);
522ca26893fSHerbert Xu 
523ca26893fSHerbert Xu 		RCU_INIT_POINTER(list->next, plist);
524ca26893fSHerbert Xu 		head = rht_dereference_bucket(head->next, tbl, hash);
525ca26893fSHerbert Xu 		RCU_INIT_POINTER(list->rhead.next, head);
5268f0db018SNeilBrown 		if (pprev)
527ca26893fSHerbert Xu 			rcu_assign_pointer(*pprev, obj);
5288f0db018SNeilBrown 		else
5298f0db018SNeilBrown 			/* Need to preserve the bit lock */
530f4712b46SNeilBrown 			rht_assign_locked(bkt, obj);
531ca26893fSHerbert Xu 
532ca26893fSHerbert Xu 		return NULL;
5335ca8cc5bSPablo Neira Ayuso 	}
53402fd97c3SHerbert Xu 
535ca26893fSHerbert Xu 	if (elasticity <= 0)
536ca26893fSHerbert Xu 		return ERR_PTR(-EAGAIN);
537ca26893fSHerbert Xu 
538ca26893fSHerbert Xu 	return ERR_PTR(-ENOENT);
539ca26893fSHerbert Xu }
540ca26893fSHerbert Xu 
rhashtable_insert_one(struct rhashtable * ht,struct rhash_lock_head __rcu ** bkt,struct bucket_table * tbl,unsigned int hash,struct rhash_head * obj,void * data)541ce9b362bSHerbert Xu static struct bucket_table *rhashtable_insert_one(
542ce9b362bSHerbert Xu 	struct rhashtable *ht, struct rhash_lock_head __rcu **bkt,
543ce9b362bSHerbert Xu 	struct bucket_table *tbl, unsigned int hash, struct rhash_head *obj,
544ca26893fSHerbert Xu 	void *data)
545ca26893fSHerbert Xu {
546ca26893fSHerbert Xu 	struct bucket_table *new_tbl;
547ca26893fSHerbert Xu 	struct rhash_head *head;
548ca26893fSHerbert Xu 
549ca26893fSHerbert Xu 	if (!IS_ERR_OR_NULL(data))
550ca26893fSHerbert Xu 		return ERR_PTR(-EEXIST);
551ca26893fSHerbert Xu 
552ca26893fSHerbert Xu 	if (PTR_ERR(data) != -EAGAIN && PTR_ERR(data) != -ENOENT)
553ca26893fSHerbert Xu 		return ERR_CAST(data);
554ca26893fSHerbert Xu 
555c0690016SNeilBrown 	new_tbl = rht_dereference_rcu(tbl->future_tbl, ht);
556ca26893fSHerbert Xu 	if (new_tbl)
557ca26893fSHerbert Xu 		return new_tbl;
558ca26893fSHerbert Xu 
559ca26893fSHerbert Xu 	if (PTR_ERR(data) != -ENOENT)
560ca26893fSHerbert Xu 		return ERR_CAST(data);
561ca26893fSHerbert Xu 
56207ee0722SHerbert Xu 	if (unlikely(rht_grow_above_max(ht, tbl)))
563ca26893fSHerbert Xu 		return ERR_PTR(-E2BIG);
56407ee0722SHerbert Xu 
565ca26893fSHerbert Xu 	if (unlikely(rht_grow_above_100(ht, tbl)))
566ca26893fSHerbert Xu 		return ERR_PTR(-EAGAIN);
56702fd97c3SHerbert Xu 
568adc6a3abSNeilBrown 	head = rht_ptr(bkt, tbl, hash);
56902fd97c3SHerbert Xu 
57002fd97c3SHerbert Xu 	RCU_INIT_POINTER(obj->next, head);
571ca26893fSHerbert Xu 	if (ht->rhlist) {
572ca26893fSHerbert Xu 		struct rhlist_head *list;
573ca26893fSHerbert Xu 
574ca26893fSHerbert Xu 		list = container_of(obj, struct rhlist_head, rhead);
575ca26893fSHerbert Xu 		RCU_INIT_POINTER(list->next, NULL);
576ca26893fSHerbert Xu 	}
57702fd97c3SHerbert Xu 
5788f0db018SNeilBrown 	/* bkt is always the head of the list, so it holds
5798f0db018SNeilBrown 	 * the lock, which we need to preserve
5808f0db018SNeilBrown 	 */
581f4712b46SNeilBrown 	rht_assign_locked(bkt, obj);
58202fd97c3SHerbert Xu 
58302fd97c3SHerbert Xu 	atomic_inc(&ht->nelems);
584ca26893fSHerbert Xu 	if (rht_grow_above_75(ht, tbl))
585ca26893fSHerbert Xu 		schedule_work(&ht->run_work);
58602fd97c3SHerbert Xu 
5873cf92222SHerbert Xu 	return NULL;
588ca26893fSHerbert Xu }
589ca26893fSHerbert Xu 
rhashtable_try_insert(struct rhashtable * ht,const void * key,struct rhash_head * obj)590ca26893fSHerbert Xu static void *rhashtable_try_insert(struct rhashtable *ht, const void *key,
591ca26893fSHerbert Xu 				   struct rhash_head *obj)
592ca26893fSHerbert Xu {
593ca26893fSHerbert Xu 	struct bucket_table *new_tbl;
594ca26893fSHerbert Xu 	struct bucket_table *tbl;
595ce9b362bSHerbert Xu 	struct rhash_lock_head __rcu **bkt;
596*e47877c7STejun Heo 	unsigned long flags;
597ca26893fSHerbert Xu 	unsigned int hash;
598ca26893fSHerbert Xu 	void *data;
599ca26893fSHerbert Xu 
6004feb7c7aSNeilBrown 	new_tbl = rcu_dereference(ht->tbl);
601ca26893fSHerbert Xu 
6024feb7c7aSNeilBrown 	do {
603ca26893fSHerbert Xu 		tbl = new_tbl;
604ca26893fSHerbert Xu 		hash = rht_head_hashfn(ht, tbl, obj, ht->p);
6058f0db018SNeilBrown 		if (rcu_access_pointer(tbl->future_tbl))
6068f0db018SNeilBrown 			/* Failure is OK */
6078f0db018SNeilBrown 			bkt = rht_bucket_var(tbl, hash);
6088f0db018SNeilBrown 		else
6098f0db018SNeilBrown 			bkt = rht_bucket_insert(ht, tbl, hash);
6108f0db018SNeilBrown 		if (bkt == NULL) {
6118f0db018SNeilBrown 			new_tbl = rht_dereference_rcu(tbl->future_tbl, ht);
6128f0db018SNeilBrown 			data = ERR_PTR(-EAGAIN);
6138f0db018SNeilBrown 		} else {
614*e47877c7STejun Heo 			flags = rht_lock(tbl, bkt);
6158f0db018SNeilBrown 			data = rhashtable_lookup_one(ht, bkt, tbl,
6168f0db018SNeilBrown 						     hash, key, obj);
6178f0db018SNeilBrown 			new_tbl = rhashtable_insert_one(ht, bkt, tbl,
6188f0db018SNeilBrown 							hash, obj, data);
619ca26893fSHerbert Xu 			if (PTR_ERR(new_tbl) != -EEXIST)
620ca26893fSHerbert Xu 				data = ERR_CAST(new_tbl);
621ca26893fSHerbert Xu 
622*e47877c7STejun Heo 			rht_unlock(tbl, bkt, flags);
6238f0db018SNeilBrown 		}
6244feb7c7aSNeilBrown 	} while (!IS_ERR_OR_NULL(new_tbl));
625ca26893fSHerbert Xu 
626ca26893fSHerbert Xu 	if (PTR_ERR(data) == -EAGAIN)
627ca26893fSHerbert Xu 		data = ERR_PTR(rhashtable_insert_rehash(ht, tbl) ?:
628ca26893fSHerbert Xu 			       -EAGAIN);
629ca26893fSHerbert Xu 
630ca26893fSHerbert Xu 	return data;
631ca26893fSHerbert Xu }
632ca26893fSHerbert Xu 
rhashtable_insert_slow(struct rhashtable * ht,const void * key,struct rhash_head * obj)633ca26893fSHerbert Xu void *rhashtable_insert_slow(struct rhashtable *ht, const void *key,
634ca26893fSHerbert Xu 			     struct rhash_head *obj)
635ca26893fSHerbert Xu {
636ca26893fSHerbert Xu 	void *data;
637ca26893fSHerbert Xu 
638ca26893fSHerbert Xu 	do {
639ca26893fSHerbert Xu 		rcu_read_lock();
640ca26893fSHerbert Xu 		data = rhashtable_try_insert(ht, key, obj);
641ca26893fSHerbert Xu 		rcu_read_unlock();
642ca26893fSHerbert Xu 	} while (PTR_ERR(data) == -EAGAIN);
643ca26893fSHerbert Xu 
644ca26893fSHerbert Xu 	return data;
64502fd97c3SHerbert Xu }
64602fd97c3SHerbert Xu EXPORT_SYMBOL_GPL(rhashtable_insert_slow);
64702fd97c3SHerbert Xu 
648f2dba9c6SHerbert Xu /**
649246779ddSHerbert Xu  * rhashtable_walk_enter - Initialise an iterator
650f2dba9c6SHerbert Xu  * @ht:		Table to walk over
651f2dba9c6SHerbert Xu  * @iter:	Hash table Iterator
652f2dba9c6SHerbert Xu  *
653f2dba9c6SHerbert Xu  * This function prepares a hash table walk.
654f2dba9c6SHerbert Xu  *
655f2dba9c6SHerbert Xu  * Note that if you restart a walk after rhashtable_walk_stop you
656f2dba9c6SHerbert Xu  * may see the same object twice.  Also, you may miss objects if
657f2dba9c6SHerbert Xu  * there are removals in between rhashtable_walk_stop and the next
658f2dba9c6SHerbert Xu  * call to rhashtable_walk_start.
659f2dba9c6SHerbert Xu  *
660f2dba9c6SHerbert Xu  * For a completely stable walk you should construct your own data
661f2dba9c6SHerbert Xu  * structure outside the hash table.
662f2dba9c6SHerbert Xu  *
66382266e98SNeilBrown  * This function may be called from any process context, including
66482266e98SNeilBrown  * non-preemptable context, but cannot be called from softirq or
66582266e98SNeilBrown  * hardirq context.
666f2dba9c6SHerbert Xu  *
667246779ddSHerbert Xu  * You must call rhashtable_walk_exit after this function returns.
668f2dba9c6SHerbert Xu  */
rhashtable_walk_enter(struct rhashtable * ht,struct rhashtable_iter * iter)669246779ddSHerbert Xu void rhashtable_walk_enter(struct rhashtable *ht, struct rhashtable_iter *iter)
670f2dba9c6SHerbert Xu {
671f2dba9c6SHerbert Xu 	iter->ht = ht;
672f2dba9c6SHerbert Xu 	iter->p = NULL;
673f2dba9c6SHerbert Xu 	iter->slot = 0;
674f2dba9c6SHerbert Xu 	iter->skip = 0;
6752db54b47STom Herbert 	iter->end_of_table = 0;
676f2dba9c6SHerbert Xu 
677c6ff5268SHerbert Xu 	spin_lock(&ht->lock);
678246779ddSHerbert Xu 	iter->walker.tbl =
679179ccc0aSHerbert Xu 		rcu_dereference_protected(ht->tbl, lockdep_is_held(&ht->lock));
680246779ddSHerbert Xu 	list_add(&iter->walker.list, &iter->walker.tbl->walkers);
681c6ff5268SHerbert Xu 	spin_unlock(&ht->lock);
682f2dba9c6SHerbert Xu }
683246779ddSHerbert Xu EXPORT_SYMBOL_GPL(rhashtable_walk_enter);
684f2dba9c6SHerbert Xu 
685f2dba9c6SHerbert Xu /**
686f2dba9c6SHerbert Xu  * rhashtable_walk_exit - Free an iterator
687f2dba9c6SHerbert Xu  * @iter:	Hash table Iterator
688f2dba9c6SHerbert Xu  *
6896c4128f6SHerbert Xu  * This function frees resources allocated by rhashtable_walk_enter.
690f2dba9c6SHerbert Xu  */
rhashtable_walk_exit(struct rhashtable_iter * iter)691f2dba9c6SHerbert Xu void rhashtable_walk_exit(struct rhashtable_iter *iter)
692f2dba9c6SHerbert Xu {
693c6ff5268SHerbert Xu 	spin_lock(&iter->ht->lock);
694246779ddSHerbert Xu 	if (iter->walker.tbl)
695246779ddSHerbert Xu 		list_del(&iter->walker.list);
696c6ff5268SHerbert Xu 	spin_unlock(&iter->ht->lock);
697f2dba9c6SHerbert Xu }
698f2dba9c6SHerbert Xu EXPORT_SYMBOL_GPL(rhashtable_walk_exit);
699f2dba9c6SHerbert Xu 
700f2dba9c6SHerbert Xu /**
70197a6ec4aSTom Herbert  * rhashtable_walk_start_check - Start a hash table walk
702f2dba9c6SHerbert Xu  * @iter:	Hash table iterator
703f2dba9c6SHerbert Xu  *
7040647169cSAndreas Gruenbacher  * Start a hash table walk at the current iterator position.  Note that we take
7050647169cSAndreas Gruenbacher  * the RCU lock in all cases including when we return an error.  So you must
7060647169cSAndreas Gruenbacher  * always call rhashtable_walk_stop to clean up.
707f2dba9c6SHerbert Xu  *
708f2dba9c6SHerbert Xu  * Returns zero if successful.
709f2dba9c6SHerbert Xu  *
7109dbbc3b9SZhen Lei  * Returns -EAGAIN if resize event occurred.  Note that the iterator
711f2dba9c6SHerbert Xu  * will rewind back to the beginning and you may use it immediately
712f2dba9c6SHerbert Xu  * by calling rhashtable_walk_next.
71397a6ec4aSTom Herbert  *
71497a6ec4aSTom Herbert  * rhashtable_walk_start is defined as an inline variant that returns
71597a6ec4aSTom Herbert  * void. This is preferred in cases where the caller would ignore
71697a6ec4aSTom Herbert  * resize events and always continue.
717f2dba9c6SHerbert Xu  */
rhashtable_walk_start_check(struct rhashtable_iter * iter)71897a6ec4aSTom Herbert int rhashtable_walk_start_check(struct rhashtable_iter *iter)
719db4374f4SThomas Graf 	__acquires(RCU)
720f2dba9c6SHerbert Xu {
721eddee5baSHerbert Xu 	struct rhashtable *ht = iter->ht;
7225d240a89SNeilBrown 	bool rhlist = ht->rhlist;
723eddee5baSHerbert Xu 
724f2dba9c6SHerbert Xu 	rcu_read_lock();
725f2dba9c6SHerbert Xu 
726c6ff5268SHerbert Xu 	spin_lock(&ht->lock);
727246779ddSHerbert Xu 	if (iter->walker.tbl)
728246779ddSHerbert Xu 		list_del(&iter->walker.list);
729c6ff5268SHerbert Xu 	spin_unlock(&ht->lock);
730eddee5baSHerbert Xu 
7315d240a89SNeilBrown 	if (iter->end_of_table)
7325d240a89SNeilBrown 		return 0;
7335d240a89SNeilBrown 	if (!iter->walker.tbl) {
734246779ddSHerbert Xu 		iter->walker.tbl = rht_dereference_rcu(ht->tbl, ht);
735b41cc04bSNeilBrown 		iter->slot = 0;
736b41cc04bSNeilBrown 		iter->skip = 0;
737f2dba9c6SHerbert Xu 		return -EAGAIN;
738f2dba9c6SHerbert Xu 	}
739f2dba9c6SHerbert Xu 
7405d240a89SNeilBrown 	if (iter->p && !rhlist) {
7415d240a89SNeilBrown 		/*
7425d240a89SNeilBrown 		 * We need to validate that 'p' is still in the table, and
7435d240a89SNeilBrown 		 * if so, update 'skip'
7445d240a89SNeilBrown 		 */
7455d240a89SNeilBrown 		struct rhash_head *p;
7465d240a89SNeilBrown 		int skip = 0;
7475d240a89SNeilBrown 		rht_for_each_rcu(p, iter->walker.tbl, iter->slot) {
7485d240a89SNeilBrown 			skip++;
7495d240a89SNeilBrown 			if (p == iter->p) {
7505d240a89SNeilBrown 				iter->skip = skip;
7515d240a89SNeilBrown 				goto found;
7525d240a89SNeilBrown 			}
7535d240a89SNeilBrown 		}
7545d240a89SNeilBrown 		iter->p = NULL;
7555d240a89SNeilBrown 	} else if (iter->p && rhlist) {
7565d240a89SNeilBrown 		/* Need to validate that 'list' is still in the table, and
7575d240a89SNeilBrown 		 * if so, update 'skip' and 'p'.
7585d240a89SNeilBrown 		 */
7595d240a89SNeilBrown 		struct rhash_head *p;
7605d240a89SNeilBrown 		struct rhlist_head *list;
7615d240a89SNeilBrown 		int skip = 0;
7625d240a89SNeilBrown 		rht_for_each_rcu(p, iter->walker.tbl, iter->slot) {
7635d240a89SNeilBrown 			for (list = container_of(p, struct rhlist_head, rhead);
7645d240a89SNeilBrown 			     list;
7655d240a89SNeilBrown 			     list = rcu_dereference(list->next)) {
7665d240a89SNeilBrown 				skip++;
7675d240a89SNeilBrown 				if (list == iter->list) {
7685d240a89SNeilBrown 					iter->p = p;
769c643ecf3SRishabh Bhatnagar 					iter->skip = skip;
7705d240a89SNeilBrown 					goto found;
7715d240a89SNeilBrown 				}
7725d240a89SNeilBrown 			}
7735d240a89SNeilBrown 		}
7745d240a89SNeilBrown 		iter->p = NULL;
7755d240a89SNeilBrown 	}
7765d240a89SNeilBrown found:
777f2dba9c6SHerbert Xu 	return 0;
778f2dba9c6SHerbert Xu }
77997a6ec4aSTom Herbert EXPORT_SYMBOL_GPL(rhashtable_walk_start_check);
780f2dba9c6SHerbert Xu 
781f2dba9c6SHerbert Xu /**
7822db54b47STom Herbert  * __rhashtable_walk_find_next - Find the next element in a table (or the first
7832db54b47STom Herbert  * one in case of a new walk).
7842db54b47STom Herbert  *
785f2dba9c6SHerbert Xu  * @iter:	Hash table iterator
786f2dba9c6SHerbert Xu  *
7872db54b47STom Herbert  * Returns the found object or NULL when the end of the table is reached.
788f2dba9c6SHerbert Xu  *
7892db54b47STom Herbert  * Returns -EAGAIN if resize event occurred.
790f2dba9c6SHerbert Xu  */
__rhashtable_walk_find_next(struct rhashtable_iter * iter)7912db54b47STom Herbert static void *__rhashtable_walk_find_next(struct rhashtable_iter *iter)
792f2dba9c6SHerbert Xu {
793246779ddSHerbert Xu 	struct bucket_table *tbl = iter->walker.tbl;
794ca26893fSHerbert Xu 	struct rhlist_head *list = iter->list;
795f2dba9c6SHerbert Xu 	struct rhashtable *ht = iter->ht;
796f2dba9c6SHerbert Xu 	struct rhash_head *p = iter->p;
797ca26893fSHerbert Xu 	bool rhlist = ht->rhlist;
798f2dba9c6SHerbert Xu 
7992db54b47STom Herbert 	if (!tbl)
8002db54b47STom Herbert 		return NULL;
801f2dba9c6SHerbert Xu 
802f2dba9c6SHerbert Xu 	for (; iter->slot < tbl->size; iter->slot++) {
803f2dba9c6SHerbert Xu 		int skip = iter->skip;
804f2dba9c6SHerbert Xu 
805f2dba9c6SHerbert Xu 		rht_for_each_rcu(p, tbl, iter->slot) {
806ca26893fSHerbert Xu 			if (rhlist) {
807ca26893fSHerbert Xu 				list = container_of(p, struct rhlist_head,
808ca26893fSHerbert Xu 						    rhead);
809ca26893fSHerbert Xu 				do {
810ca26893fSHerbert Xu 					if (!skip)
811ca26893fSHerbert Xu 						goto next;
812ca26893fSHerbert Xu 					skip--;
813ca26893fSHerbert Xu 					list = rcu_dereference(list->next);
814ca26893fSHerbert Xu 				} while (list);
815ca26893fSHerbert Xu 
816ca26893fSHerbert Xu 				continue;
817ca26893fSHerbert Xu 			}
818f2dba9c6SHerbert Xu 			if (!skip)
819f2dba9c6SHerbert Xu 				break;
820f2dba9c6SHerbert Xu 			skip--;
821f2dba9c6SHerbert Xu 		}
822f2dba9c6SHerbert Xu 
823f2dba9c6SHerbert Xu next:
824f2dba9c6SHerbert Xu 		if (!rht_is_a_nulls(p)) {
825f2dba9c6SHerbert Xu 			iter->skip++;
826f2dba9c6SHerbert Xu 			iter->p = p;
827ca26893fSHerbert Xu 			iter->list = list;
828ca26893fSHerbert Xu 			return rht_obj(ht, rhlist ? &list->rhead : p);
829f2dba9c6SHerbert Xu 		}
830f2dba9c6SHerbert Xu 
831f2dba9c6SHerbert Xu 		iter->skip = 0;
832f2dba9c6SHerbert Xu 	}
833f2dba9c6SHerbert Xu 
834142b942aSPhil Sutter 	iter->p = NULL;
835142b942aSPhil Sutter 
836d88252f9SHerbert Xu 	/* Ensure we see any new tables. */
837d88252f9SHerbert Xu 	smp_rmb();
838d88252f9SHerbert Xu 
839246779ddSHerbert Xu 	iter->walker.tbl = rht_dereference_rcu(tbl->future_tbl, ht);
840246779ddSHerbert Xu 	if (iter->walker.tbl) {
841eddee5baSHerbert Xu 		iter->slot = 0;
842eddee5baSHerbert Xu 		iter->skip = 0;
843eddee5baSHerbert Xu 		return ERR_PTR(-EAGAIN);
8442db54b47STom Herbert 	} else {
8452db54b47STom Herbert 		iter->end_of_table = true;
846eddee5baSHerbert Xu 	}
847eddee5baSHerbert Xu 
848c936a79fSThomas Graf 	return NULL;
849f2dba9c6SHerbert Xu }
8502db54b47STom Herbert 
8512db54b47STom Herbert /**
8522db54b47STom Herbert  * rhashtable_walk_next - Return the next object and advance the iterator
8532db54b47STom Herbert  * @iter:	Hash table iterator
8542db54b47STom Herbert  *
8552db54b47STom Herbert  * Note that you must call rhashtable_walk_stop when you are finished
8562db54b47STom Herbert  * with the walk.
8572db54b47STom Herbert  *
8582db54b47STom Herbert  * Returns the next object or NULL when the end of the table is reached.
8592db54b47STom Herbert  *
8602db54b47STom Herbert  * Returns -EAGAIN if resize event occurred.  Note that the iterator
8612db54b47STom Herbert  * will rewind back to the beginning and you may continue to use it.
8622db54b47STom Herbert  */
rhashtable_walk_next(struct rhashtable_iter * iter)8632db54b47STom Herbert void *rhashtable_walk_next(struct rhashtable_iter *iter)
8642db54b47STom Herbert {
8652db54b47STom Herbert 	struct rhlist_head *list = iter->list;
8662db54b47STom Herbert 	struct rhashtable *ht = iter->ht;
8672db54b47STom Herbert 	struct rhash_head *p = iter->p;
8682db54b47STom Herbert 	bool rhlist = ht->rhlist;
8692db54b47STom Herbert 
8702db54b47STom Herbert 	if (p) {
8712db54b47STom Herbert 		if (!rhlist || !(list = rcu_dereference(list->next))) {
8722db54b47STom Herbert 			p = rcu_dereference(p->next);
8732db54b47STom Herbert 			list = container_of(p, struct rhlist_head, rhead);
8742db54b47STom Herbert 		}
8752db54b47STom Herbert 		if (!rht_is_a_nulls(p)) {
8762db54b47STom Herbert 			iter->skip++;
8772db54b47STom Herbert 			iter->p = p;
8782db54b47STom Herbert 			iter->list = list;
8792db54b47STom Herbert 			return rht_obj(ht, rhlist ? &list->rhead : p);
8802db54b47STom Herbert 		}
8812db54b47STom Herbert 
8822db54b47STom Herbert 		/* At the end of this slot, switch to next one and then find
8832db54b47STom Herbert 		 * next entry from that point.
8842db54b47STom Herbert 		 */
8852db54b47STom Herbert 		iter->skip = 0;
8862db54b47STom Herbert 		iter->slot++;
8872db54b47STom Herbert 	}
8882db54b47STom Herbert 
8892db54b47STom Herbert 	return __rhashtable_walk_find_next(iter);
8902db54b47STom Herbert }
891f2dba9c6SHerbert Xu EXPORT_SYMBOL_GPL(rhashtable_walk_next);
892f2dba9c6SHerbert Xu 
893f2dba9c6SHerbert Xu /**
8942db54b47STom Herbert  * rhashtable_walk_peek - Return the next object but don't advance the iterator
8952db54b47STom Herbert  * @iter:	Hash table iterator
8962db54b47STom Herbert  *
8972db54b47STom Herbert  * Returns the next object or NULL when the end of the table is reached.
8982db54b47STom Herbert  *
8992db54b47STom Herbert  * Returns -EAGAIN if resize event occurred.  Note that the iterator
9002db54b47STom Herbert  * will rewind back to the beginning and you may continue to use it.
9012db54b47STom Herbert  */
rhashtable_walk_peek(struct rhashtable_iter * iter)9022db54b47STom Herbert void *rhashtable_walk_peek(struct rhashtable_iter *iter)
9032db54b47STom Herbert {
9042db54b47STom Herbert 	struct rhlist_head *list = iter->list;
9052db54b47STom Herbert 	struct rhashtable *ht = iter->ht;
9062db54b47STom Herbert 	struct rhash_head *p = iter->p;
9072db54b47STom Herbert 
9082db54b47STom Herbert 	if (p)
9092db54b47STom Herbert 		return rht_obj(ht, ht->rhlist ? &list->rhead : p);
9102db54b47STom Herbert 
9112db54b47STom Herbert 	/* No object found in current iter, find next one in the table. */
9122db54b47STom Herbert 
9132db54b47STom Herbert 	if (iter->skip) {
9142db54b47STom Herbert 		/* A nonzero skip value points to the next entry in the table
9152db54b47STom Herbert 		 * beyond that last one that was found. Decrement skip so
9162db54b47STom Herbert 		 * we find the current value. __rhashtable_walk_find_next
9172db54b47STom Herbert 		 * will restore the original value of skip assuming that
9182db54b47STom Herbert 		 * the table hasn't changed.
9192db54b47STom Herbert 		 */
9202db54b47STom Herbert 		iter->skip--;
9212db54b47STom Herbert 	}
9222db54b47STom Herbert 
9232db54b47STom Herbert 	return __rhashtable_walk_find_next(iter);
9242db54b47STom Herbert }
9252db54b47STom Herbert EXPORT_SYMBOL_GPL(rhashtable_walk_peek);
9262db54b47STom Herbert 
9272db54b47STom Herbert /**
928f2dba9c6SHerbert Xu  * rhashtable_walk_stop - Finish a hash table walk
929f2dba9c6SHerbert Xu  * @iter:	Hash table iterator
930f2dba9c6SHerbert Xu  *
9310647169cSAndreas Gruenbacher  * Finish a hash table walk.  Does not reset the iterator to the start of the
9320647169cSAndreas Gruenbacher  * hash table.
933f2dba9c6SHerbert Xu  */
rhashtable_walk_stop(struct rhashtable_iter * iter)934f2dba9c6SHerbert Xu void rhashtable_walk_stop(struct rhashtable_iter *iter)
935db4374f4SThomas Graf 	__releases(RCU)
936f2dba9c6SHerbert Xu {
937eddee5baSHerbert Xu 	struct rhashtable *ht;
938246779ddSHerbert Xu 	struct bucket_table *tbl = iter->walker.tbl;
939eddee5baSHerbert Xu 
940eddee5baSHerbert Xu 	if (!tbl)
941963ecbd4SHerbert Xu 		goto out;
942eddee5baSHerbert Xu 
943eddee5baSHerbert Xu 	ht = iter->ht;
944eddee5baSHerbert Xu 
945ba7c95eaSHerbert Xu 	spin_lock(&ht->lock);
9464feb7c7aSNeilBrown 	if (rcu_head_after_call_rcu(&tbl->rcu, bucket_table_free_rcu))
9474feb7c7aSNeilBrown 		/* This bucket table is being freed, don't re-link it. */
948246779ddSHerbert Xu 		iter->walker.tbl = NULL;
9494feb7c7aSNeilBrown 	else
9504feb7c7aSNeilBrown 		list_add(&iter->walker.list, &tbl->walkers);
951ba7c95eaSHerbert Xu 	spin_unlock(&ht->lock);
952eddee5baSHerbert Xu 
953963ecbd4SHerbert Xu out:
954963ecbd4SHerbert Xu 	rcu_read_unlock();
955f2dba9c6SHerbert Xu }
956f2dba9c6SHerbert Xu EXPORT_SYMBOL_GPL(rhashtable_walk_stop);
957f2dba9c6SHerbert Xu 
rounded_hashtable_size(const struct rhashtable_params * params)958488fb86eSHerbert Xu static size_t rounded_hashtable_size(const struct rhashtable_params *params)
9597e1e7763SThomas Graf {
960107d01f5SDavidlohr Bueso 	size_t retsize;
961107d01f5SDavidlohr Bueso 
962107d01f5SDavidlohr Bueso 	if (params->nelem_hint)
963107d01f5SDavidlohr Bueso 		retsize = max(roundup_pow_of_two(params->nelem_hint * 4 / 3),
964e2e21c1cSHerbert Xu 			      (unsigned long)params->min_size);
965107d01f5SDavidlohr Bueso 	else
966107d01f5SDavidlohr Bueso 		retsize = max(HASH_DEFAULT_SIZE,
967107d01f5SDavidlohr Bueso 			      (unsigned long)params->min_size);
968107d01f5SDavidlohr Bueso 
969107d01f5SDavidlohr Bueso 	return retsize;
9707e1e7763SThomas Graf }
9717e1e7763SThomas Graf 
rhashtable_jhash2(const void * key,u32 length,u32 seed)97231ccde2dSHerbert Xu static u32 rhashtable_jhash2(const void *key, u32 length, u32 seed)
97331ccde2dSHerbert Xu {
97431ccde2dSHerbert Xu 	return jhash2(key, length, seed);
97531ccde2dSHerbert Xu }
97631ccde2dSHerbert Xu 
9777e1e7763SThomas Graf /**
9787e1e7763SThomas Graf  * rhashtable_init - initialize a new hash table
9797e1e7763SThomas Graf  * @ht:		hash table to be initialized
9807e1e7763SThomas Graf  * @params:	configuration parameters
9817e1e7763SThomas Graf  *
9827e1e7763SThomas Graf  * Initializes a new hash table based on the provided configuration
9837e1e7763SThomas Graf  * parameters. A table can be configured either with a variable or
9847e1e7763SThomas Graf  * fixed length key:
9857e1e7763SThomas Graf  *
9867e1e7763SThomas Graf  * Configuration Example 1: Fixed length keys
9877e1e7763SThomas Graf  * struct test_obj {
9887e1e7763SThomas Graf  *	int			key;
9897e1e7763SThomas Graf  *	void *			my_member;
9907e1e7763SThomas Graf  *	struct rhash_head	node;
9917e1e7763SThomas Graf  * };
9927e1e7763SThomas Graf  *
9937e1e7763SThomas Graf  * struct rhashtable_params params = {
9947e1e7763SThomas Graf  *	.head_offset = offsetof(struct test_obj, node),
9957e1e7763SThomas Graf  *	.key_offset = offsetof(struct test_obj, key),
9967e1e7763SThomas Graf  *	.key_len = sizeof(int),
99787545899SDaniel Borkmann  *	.hashfn = jhash,
9987e1e7763SThomas Graf  * };
9997e1e7763SThomas Graf  *
10007e1e7763SThomas Graf  * Configuration Example 2: Variable length keys
10017e1e7763SThomas Graf  * struct test_obj {
10027e1e7763SThomas Graf  *	[...]
10037e1e7763SThomas Graf  *	struct rhash_head	node;
10047e1e7763SThomas Graf  * };
10057e1e7763SThomas Graf  *
100649f7b33eSPatrick McHardy  * u32 my_hash_fn(const void *data, u32 len, u32 seed)
10077e1e7763SThomas Graf  * {
10087e1e7763SThomas Graf  *	struct test_obj *obj = data;
10097e1e7763SThomas Graf  *
10107e1e7763SThomas Graf  *	return [... hash ...];
10117e1e7763SThomas Graf  * }
10127e1e7763SThomas Graf  *
10137e1e7763SThomas Graf  * struct rhashtable_params params = {
10147e1e7763SThomas Graf  *	.head_offset = offsetof(struct test_obj, node),
101587545899SDaniel Borkmann  *	.hashfn = jhash,
10167e1e7763SThomas Graf  *	.obj_hashfn = my_hash_fn,
10177e1e7763SThomas Graf  * };
10187e1e7763SThomas Graf  */
rhashtable_init(struct rhashtable * ht,const struct rhashtable_params * params)1019488fb86eSHerbert Xu int rhashtable_init(struct rhashtable *ht,
1020488fb86eSHerbert Xu 		    const struct rhashtable_params *params)
10217e1e7763SThomas Graf {
10227e1e7763SThomas Graf 	struct bucket_table *tbl;
10237e1e7763SThomas Graf 	size_t size;
10247e1e7763SThomas Graf 
102531ccde2dSHerbert Xu 	if ((!params->key_len && !params->obj_hashfn) ||
102602fd97c3SHerbert Xu 	    (params->obj_hashfn && !params->obj_cmpfn))
10277e1e7763SThomas Graf 		return -EINVAL;
10287e1e7763SThomas Graf 
102997defe1eSThomas Graf 	memset(ht, 0, sizeof(*ht));
103097defe1eSThomas Graf 	mutex_init(&ht->mutex);
1031ba7c95eaSHerbert Xu 	spin_lock_init(&ht->lock);
103297defe1eSThomas Graf 	memcpy(&ht->p, params, sizeof(*params));
103397defe1eSThomas Graf 
1034a998f712SThomas Graf 	if (params->min_size)
1035a998f712SThomas Graf 		ht->p.min_size = roundup_pow_of_two(params->min_size);
1036a998f712SThomas Graf 
10376d684e54SHerbert Xu 	/* Cap total entries at 2^31 to avoid nelems overflow. */
10386d684e54SHerbert Xu 	ht->max_elems = 1u << 31;
10392d2ab658SHerbert Xu 
10402d2ab658SHerbert Xu 	if (params->max_size) {
10412d2ab658SHerbert Xu 		ht->p.max_size = rounddown_pow_of_two(params->max_size);
10426d684e54SHerbert Xu 		if (ht->p.max_size < ht->max_elems / 2)
10436d684e54SHerbert Xu 			ht->max_elems = ht->p.max_size * 2;
10442d2ab658SHerbert Xu 	}
10456d684e54SHerbert Xu 
104648e75b43SFlorian Westphal 	ht->p.min_size = max_t(u16, ht->p.min_size, HASH_MIN_SIZE);
1047a998f712SThomas Graf 
10483a324606SHerbert Xu 	size = rounded_hashtable_size(&ht->p);
10493a324606SHerbert Xu 
105031ccde2dSHerbert Xu 	ht->key_len = ht->p.key_len;
105131ccde2dSHerbert Xu 	if (!params->hashfn) {
105231ccde2dSHerbert Xu 		ht->p.hashfn = jhash;
105331ccde2dSHerbert Xu 
105431ccde2dSHerbert Xu 		if (!(ht->key_len & (sizeof(u32) - 1))) {
105531ccde2dSHerbert Xu 			ht->key_len /= sizeof(u32);
105631ccde2dSHerbert Xu 			ht->p.hashfn = rhashtable_jhash2;
105731ccde2dSHerbert Xu 		}
105831ccde2dSHerbert Xu 	}
105931ccde2dSHerbert Xu 
10602d22ecf6SDavidlohr Bueso 	/*
10612d22ecf6SDavidlohr Bueso 	 * This is api initialization and thus we need to guarantee the
10622d22ecf6SDavidlohr Bueso 	 * initial rhashtable allocation. Upon failure, retry with the
10632d22ecf6SDavidlohr Bueso 	 * smallest possible size with __GFP_NOFAIL semantics.
10642d22ecf6SDavidlohr Bueso 	 */
1065b9ecfdaaSHerbert Xu 	tbl = bucket_table_alloc(ht, size, GFP_KERNEL);
10662d22ecf6SDavidlohr Bueso 	if (unlikely(tbl == NULL)) {
10672d22ecf6SDavidlohr Bueso 		size = max_t(u16, ht->p.min_size, HASH_MIN_SIZE);
10682d22ecf6SDavidlohr Bueso 		tbl = bucket_table_alloc(ht, size, GFP_KERNEL | __GFP_NOFAIL);
10692d22ecf6SDavidlohr Bueso 	}
10707e1e7763SThomas Graf 
1071545a148eSYing Xue 	atomic_set(&ht->nelems, 0);
1072a5b6846fSDaniel Borkmann 
10737e1e7763SThomas Graf 	RCU_INIT_POINTER(ht->tbl, tbl);
10747e1e7763SThomas Graf 
107557699a40SYing Xue 	INIT_WORK(&ht->run_work, rht_deferred_worker);
107697defe1eSThomas Graf 
10777e1e7763SThomas Graf 	return 0;
10787e1e7763SThomas Graf }
10797e1e7763SThomas Graf EXPORT_SYMBOL_GPL(rhashtable_init);
10807e1e7763SThomas Graf 
10817e1e7763SThomas Graf /**
1082ca26893fSHerbert Xu  * rhltable_init - initialize a new hash list table
1083ca26893fSHerbert Xu  * @hlt:	hash list table to be initialized
1084ca26893fSHerbert Xu  * @params:	configuration parameters
1085ca26893fSHerbert Xu  *
1086ca26893fSHerbert Xu  * Initializes a new hash list table.
1087ca26893fSHerbert Xu  *
1088ca26893fSHerbert Xu  * See documentation for rhashtable_init.
1089ca26893fSHerbert Xu  */
rhltable_init(struct rhltable * hlt,const struct rhashtable_params * params)1090ca26893fSHerbert Xu int rhltable_init(struct rhltable *hlt, const struct rhashtable_params *params)
1091ca26893fSHerbert Xu {
1092ca26893fSHerbert Xu 	int err;
1093ca26893fSHerbert Xu 
1094ca26893fSHerbert Xu 	err = rhashtable_init(&hlt->ht, params);
1095ca26893fSHerbert Xu 	hlt->ht.rhlist = true;
1096ca26893fSHerbert Xu 	return err;
1097ca26893fSHerbert Xu }
1098ca26893fSHerbert Xu EXPORT_SYMBOL_GPL(rhltable_init);
1099ca26893fSHerbert Xu 
rhashtable_free_one(struct rhashtable * ht,struct rhash_head * obj,void (* free_fn)(void * ptr,void * arg),void * arg)1100ca26893fSHerbert Xu static void rhashtable_free_one(struct rhashtable *ht, struct rhash_head *obj,
1101ca26893fSHerbert Xu 				void (*free_fn)(void *ptr, void *arg),
1102ca26893fSHerbert Xu 				void *arg)
1103ca26893fSHerbert Xu {
1104ca26893fSHerbert Xu 	struct rhlist_head *list;
1105ca26893fSHerbert Xu 
1106ca26893fSHerbert Xu 	if (!ht->rhlist) {
1107ca26893fSHerbert Xu 		free_fn(rht_obj(ht, obj), arg);
1108ca26893fSHerbert Xu 		return;
1109ca26893fSHerbert Xu 	}
1110ca26893fSHerbert Xu 
1111ca26893fSHerbert Xu 	list = container_of(obj, struct rhlist_head, rhead);
1112ca26893fSHerbert Xu 	do {
1113ca26893fSHerbert Xu 		obj = &list->rhead;
1114ca26893fSHerbert Xu 		list = rht_dereference(list->next, ht);
1115ca26893fSHerbert Xu 		free_fn(rht_obj(ht, obj), arg);
1116ca26893fSHerbert Xu 	} while (list);
1117ca26893fSHerbert Xu }
1118ca26893fSHerbert Xu 
1119ca26893fSHerbert Xu /**
11206b6f302cSThomas Graf  * rhashtable_free_and_destroy - free elements and destroy hash table
11217e1e7763SThomas Graf  * @ht:		the hash table to destroy
11226b6f302cSThomas Graf  * @free_fn:	callback to release resources of element
11236b6f302cSThomas Graf  * @arg:	pointer passed to free_fn
11247e1e7763SThomas Graf  *
11256b6f302cSThomas Graf  * Stops an eventual async resize. If defined, invokes free_fn for each
11266b6f302cSThomas Graf  * element to releasal resources. Please note that RCU protected
11276b6f302cSThomas Graf  * readers may still be accessing the elements. Releasing of resources
11286b6f302cSThomas Graf  * must occur in a compatible manner. Then frees the bucket array.
11296b6f302cSThomas Graf  *
11306b6f302cSThomas Graf  * This function will eventually sleep to wait for an async resize
11316b6f302cSThomas Graf  * to complete. The caller is responsible that no further write operations
11326b6f302cSThomas Graf  * occurs in parallel.
11337e1e7763SThomas Graf  */
rhashtable_free_and_destroy(struct rhashtable * ht,void (* free_fn)(void * ptr,void * arg),void * arg)11346b6f302cSThomas Graf void rhashtable_free_and_destroy(struct rhashtable *ht,
11356b6f302cSThomas Graf 				 void (*free_fn)(void *ptr, void *arg),
11366b6f302cSThomas Graf 				 void *arg)
11377e1e7763SThomas Graf {
11380026129cSTaehee Yoo 	struct bucket_table *tbl, *next_tbl;
11396b6f302cSThomas Graf 	unsigned int i;
114097defe1eSThomas Graf 
114157699a40SYing Xue 	cancel_work_sync(&ht->run_work);
114257699a40SYing Xue 
114397defe1eSThomas Graf 	mutex_lock(&ht->mutex);
11446b6f302cSThomas Graf 	tbl = rht_dereference(ht->tbl, ht);
11450026129cSTaehee Yoo restart:
11466b6f302cSThomas Graf 	if (free_fn) {
11476b6f302cSThomas Graf 		for (i = 0; i < tbl->size; i++) {
11486b6f302cSThomas Graf 			struct rhash_head *pos, *next;
11496b6f302cSThomas Graf 
1150ae6da1f5SEric Dumazet 			cond_resched();
1151adc6a3abSNeilBrown 			for (pos = rht_ptr_exclusive(rht_bucket(tbl, i)),
11526b6f302cSThomas Graf 			     next = !rht_is_a_nulls(pos) ?
11536b6f302cSThomas Graf 					rht_dereference(pos->next, ht) : NULL;
11546b6f302cSThomas Graf 			     !rht_is_a_nulls(pos);
11556b6f302cSThomas Graf 			     pos = next,
11566b6f302cSThomas Graf 			     next = !rht_is_a_nulls(pos) ?
11576b6f302cSThomas Graf 					rht_dereference(pos->next, ht) : NULL)
1158ca26893fSHerbert Xu 				rhashtable_free_one(ht, pos, free_fn, arg);
11596b6f302cSThomas Graf 		}
11606b6f302cSThomas Graf 	}
11616b6f302cSThomas Graf 
11620026129cSTaehee Yoo 	next_tbl = rht_dereference(tbl->future_tbl, ht);
11636b6f302cSThomas Graf 	bucket_table_free(tbl);
11640026129cSTaehee Yoo 	if (next_tbl) {
11650026129cSTaehee Yoo 		tbl = next_tbl;
11660026129cSTaehee Yoo 		goto restart;
11670026129cSTaehee Yoo 	}
116897defe1eSThomas Graf 	mutex_unlock(&ht->mutex);
11697e1e7763SThomas Graf }
11706b6f302cSThomas Graf EXPORT_SYMBOL_GPL(rhashtable_free_and_destroy);
11716b6f302cSThomas Graf 
rhashtable_destroy(struct rhashtable * ht)11726b6f302cSThomas Graf void rhashtable_destroy(struct rhashtable *ht)
11736b6f302cSThomas Graf {
11746b6f302cSThomas Graf 	return rhashtable_free_and_destroy(ht, NULL, NULL);
11756b6f302cSThomas Graf }
11767e1e7763SThomas Graf EXPORT_SYMBOL_GPL(rhashtable_destroy);
1177da20420fSHerbert Xu 
__rht_bucket_nested(const struct bucket_table * tbl,unsigned int hash)1178ce9b362bSHerbert Xu struct rhash_lock_head __rcu **__rht_bucket_nested(
1179ce9b362bSHerbert Xu 	const struct bucket_table *tbl, unsigned int hash)
1180da20420fSHerbert Xu {
1181da20420fSHerbert Xu 	const unsigned int shift = PAGE_SHIFT - ilog2(sizeof(void *));
1182da20420fSHerbert Xu 	unsigned int index = hash & ((1 << tbl->nest) - 1);
1183da20420fSHerbert Xu 	unsigned int size = tbl->size >> tbl->nest;
1184da20420fSHerbert Xu 	unsigned int subhash = hash;
1185da20420fSHerbert Xu 	union nested_table *ntbl;
1186da20420fSHerbert Xu 
11874a3084aaSHerbert Xu 	ntbl = nested_table_top(tbl);
1188c4d2603dSHerbert Xu 	ntbl = rht_dereference_bucket_rcu(ntbl[index].table, tbl, hash);
1189da20420fSHerbert Xu 	subhash >>= tbl->nest;
1190da20420fSHerbert Xu 
1191da20420fSHerbert Xu 	while (ntbl && size > (1 << shift)) {
1192da20420fSHerbert Xu 		index = subhash & ((1 << shift) - 1);
1193c4d2603dSHerbert Xu 		ntbl = rht_dereference_bucket_rcu(ntbl[index].table,
1194c4d2603dSHerbert Xu 						  tbl, hash);
1195da20420fSHerbert Xu 		size >>= shift;
1196da20420fSHerbert Xu 		subhash >>= shift;
1197da20420fSHerbert Xu 	}
1198da20420fSHerbert Xu 
1199ff302db9SNeilBrown 	if (!ntbl)
1200ff302db9SNeilBrown 		return NULL;
1201da20420fSHerbert Xu 
1202da20420fSHerbert Xu 	return &ntbl[subhash].bucket;
1203da20420fSHerbert Xu 
1204da20420fSHerbert Xu }
1205ff302db9SNeilBrown EXPORT_SYMBOL_GPL(__rht_bucket_nested);
1206ff302db9SNeilBrown 
rht_bucket_nested(const struct bucket_table * tbl,unsigned int hash)1207ce9b362bSHerbert Xu struct rhash_lock_head __rcu **rht_bucket_nested(
1208ce9b362bSHerbert Xu 	const struct bucket_table *tbl, unsigned int hash)
1209ff302db9SNeilBrown {
1210ce9b362bSHerbert Xu 	static struct rhash_lock_head __rcu *rhnull;
1211ff302db9SNeilBrown 
1212ff302db9SNeilBrown 	if (!rhnull)
1213ff302db9SNeilBrown 		INIT_RHT_NULLS_HEAD(rhnull);
1214ff302db9SNeilBrown 	return __rht_bucket_nested(tbl, hash) ?: &rhnull;
1215ff302db9SNeilBrown }
1216da20420fSHerbert Xu EXPORT_SYMBOL_GPL(rht_bucket_nested);
1217da20420fSHerbert Xu 
rht_bucket_nested_insert(struct rhashtable * ht,struct bucket_table * tbl,unsigned int hash)1218ce9b362bSHerbert Xu struct rhash_lock_head __rcu **rht_bucket_nested_insert(
1219ce9b362bSHerbert Xu 	struct rhashtable *ht, struct bucket_table *tbl, unsigned int hash)
1220da20420fSHerbert Xu {
1221da20420fSHerbert Xu 	const unsigned int shift = PAGE_SHIFT - ilog2(sizeof(void *));
1222da20420fSHerbert Xu 	unsigned int index = hash & ((1 << tbl->nest) - 1);
1223da20420fSHerbert Xu 	unsigned int size = tbl->size >> tbl->nest;
1224da20420fSHerbert Xu 	union nested_table *ntbl;
1225da20420fSHerbert Xu 
12264a3084aaSHerbert Xu 	ntbl = nested_table_top(tbl);
1227da20420fSHerbert Xu 	hash >>= tbl->nest;
1228da20420fSHerbert Xu 	ntbl = nested_table_alloc(ht, &ntbl[index].table,
12295af68ef7SNeilBrown 				  size <= (1 << shift));
1230da20420fSHerbert Xu 
1231da20420fSHerbert Xu 	while (ntbl && size > (1 << shift)) {
1232da20420fSHerbert Xu 		index = hash & ((1 << shift) - 1);
1233da20420fSHerbert Xu 		size >>= shift;
1234da20420fSHerbert Xu 		hash >>= shift;
1235da20420fSHerbert Xu 		ntbl = nested_table_alloc(ht, &ntbl[index].table,
12365af68ef7SNeilBrown 					  size <= (1 << shift));
1237da20420fSHerbert Xu 	}
1238da20420fSHerbert Xu 
1239da20420fSHerbert Xu 	if (!ntbl)
1240da20420fSHerbert Xu 		return NULL;
1241da20420fSHerbert Xu 
1242da20420fSHerbert Xu 	return &ntbl[hash].bucket;
1243da20420fSHerbert Xu 
1244da20420fSHerbert Xu }
1245da20420fSHerbert Xu EXPORT_SYMBOL_GPL(rht_bucket_nested_insert);
1246