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1 /* Copyright (c) 2011-2014 PLUMgrid, http://plumgrid.com
2  * Copyright (c) 2016 Facebook
3  *
4  * This program is free software; you can redistribute it and/or
5  * modify it under the terms of version 2 of the GNU General Public
6  * License as published by the Free Software Foundation.
7  *
8  * This program is distributed in the hope that it will be useful, but
9  * WITHOUT ANY WARRANTY; without even the implied warranty of
10  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
11  * General Public License for more details.
12  */
13 #include <linux/bpf.h>
14 #include <linux/jhash.h>
15 #include <linux/filter.h>
16 #include <linux/rculist_nulls.h>
17 #include "percpu_freelist.h"
18 #include "bpf_lru_list.h"
19 #include "map_in_map.h"
20 
21 #define HTAB_CREATE_FLAG_MASK						\
22 	(BPF_F_NO_PREALLOC | BPF_F_NO_COMMON_LRU | BPF_F_NUMA_NODE |	\
23 	 BPF_F_RDONLY | BPF_F_WRONLY)
24 
25 struct bucket {
26 	struct hlist_nulls_head head;
27 	raw_spinlock_t lock;
28 };
29 
30 struct bpf_htab {
31 	struct bpf_map map;
32 	struct bucket *buckets;
33 	void *elems;
34 	union {
35 		struct pcpu_freelist freelist;
36 		struct bpf_lru lru;
37 	};
38 	struct htab_elem *__percpu *extra_elems;
39 	atomic_t count;	/* number of elements in this hashtable */
40 	u32 n_buckets;	/* number of hash buckets */
41 	u32 elem_size;	/* size of each element in bytes */
42 };
43 
44 /* each htab element is struct htab_elem + key + value */
45 struct htab_elem {
46 	union {
47 		struct hlist_nulls_node hash_node;
48 		struct {
49 			void *padding;
50 			union {
51 				struct bpf_htab *htab;
52 				struct pcpu_freelist_node fnode;
53 			};
54 		};
55 	};
56 	union {
57 		struct rcu_head rcu;
58 		struct bpf_lru_node lru_node;
59 	};
60 	u32 hash;
61 	char key[0] __aligned(8);
62 };
63 
64 static bool htab_lru_map_delete_node(void *arg, struct bpf_lru_node *node);
65 
htab_is_lru(const struct bpf_htab * htab)66 static bool htab_is_lru(const struct bpf_htab *htab)
67 {
68 	return htab->map.map_type == BPF_MAP_TYPE_LRU_HASH ||
69 		htab->map.map_type == BPF_MAP_TYPE_LRU_PERCPU_HASH;
70 }
71 
htab_is_percpu(const struct bpf_htab * htab)72 static bool htab_is_percpu(const struct bpf_htab *htab)
73 {
74 	return htab->map.map_type == BPF_MAP_TYPE_PERCPU_HASH ||
75 		htab->map.map_type == BPF_MAP_TYPE_LRU_PERCPU_HASH;
76 }
77 
htab_is_prealloc(const struct bpf_htab * htab)78 static bool htab_is_prealloc(const struct bpf_htab *htab)
79 {
80 	return !(htab->map.map_flags & BPF_F_NO_PREALLOC);
81 }
82 
htab_elem_set_ptr(struct htab_elem * l,u32 key_size,void __percpu * pptr)83 static inline void htab_elem_set_ptr(struct htab_elem *l, u32 key_size,
84 				     void __percpu *pptr)
85 {
86 	*(void __percpu **)(l->key + key_size) = pptr;
87 }
88 
htab_elem_get_ptr(struct htab_elem * l,u32 key_size)89 static inline void __percpu *htab_elem_get_ptr(struct htab_elem *l, u32 key_size)
90 {
91 	return *(void __percpu **)(l->key + key_size);
92 }
93 
fd_htab_map_get_ptr(const struct bpf_map * map,struct htab_elem * l)94 static void *fd_htab_map_get_ptr(const struct bpf_map *map, struct htab_elem *l)
95 {
96 	return *(void **)(l->key + roundup(map->key_size, 8));
97 }
98 
get_htab_elem(struct bpf_htab * htab,int i)99 static struct htab_elem *get_htab_elem(struct bpf_htab *htab, int i)
100 {
101 	return (struct htab_elem *) (htab->elems + i * htab->elem_size);
102 }
103 
htab_free_elems(struct bpf_htab * htab)104 static void htab_free_elems(struct bpf_htab *htab)
105 {
106 	int i;
107 
108 	if (!htab_is_percpu(htab))
109 		goto free_elems;
110 
111 	for (i = 0; i < htab->map.max_entries; i++) {
112 		void __percpu *pptr;
113 
114 		pptr = htab_elem_get_ptr(get_htab_elem(htab, i),
115 					 htab->map.key_size);
116 		free_percpu(pptr);
117 	}
118 free_elems:
119 	bpf_map_area_free(htab->elems);
120 }
121 
prealloc_lru_pop(struct bpf_htab * htab,void * key,u32 hash)122 static struct htab_elem *prealloc_lru_pop(struct bpf_htab *htab, void *key,
123 					  u32 hash)
124 {
125 	struct bpf_lru_node *node = bpf_lru_pop_free(&htab->lru, hash);
126 	struct htab_elem *l;
127 
128 	if (node) {
129 		l = container_of(node, struct htab_elem, lru_node);
130 		memcpy(l->key, key, htab->map.key_size);
131 		return l;
132 	}
133 
134 	return NULL;
135 }
136 
prealloc_init(struct bpf_htab * htab)137 static int prealloc_init(struct bpf_htab *htab)
138 {
139 	u32 num_entries = htab->map.max_entries;
140 	int err = -ENOMEM, i;
141 
142 	if (!htab_is_percpu(htab) && !htab_is_lru(htab))
143 		num_entries += num_possible_cpus();
144 
145 	htab->elems = bpf_map_area_alloc(htab->elem_size * num_entries,
146 					 htab->map.numa_node);
147 	if (!htab->elems)
148 		return -ENOMEM;
149 
150 	if (!htab_is_percpu(htab))
151 		goto skip_percpu_elems;
152 
153 	for (i = 0; i < num_entries; i++) {
154 		u32 size = round_up(htab->map.value_size, 8);
155 		void __percpu *pptr;
156 
157 		pptr = __alloc_percpu_gfp(size, 8, GFP_USER | __GFP_NOWARN);
158 		if (!pptr)
159 			goto free_elems;
160 		htab_elem_set_ptr(get_htab_elem(htab, i), htab->map.key_size,
161 				  pptr);
162 	}
163 
164 skip_percpu_elems:
165 	if (htab_is_lru(htab))
166 		err = bpf_lru_init(&htab->lru,
167 				   htab->map.map_flags & BPF_F_NO_COMMON_LRU,
168 				   offsetof(struct htab_elem, hash) -
169 				   offsetof(struct htab_elem, lru_node),
170 				   htab_lru_map_delete_node,
171 				   htab);
172 	else
173 		err = pcpu_freelist_init(&htab->freelist);
174 
175 	if (err)
176 		goto free_elems;
177 
178 	if (htab_is_lru(htab))
179 		bpf_lru_populate(&htab->lru, htab->elems,
180 				 offsetof(struct htab_elem, lru_node),
181 				 htab->elem_size, num_entries);
182 	else
183 		pcpu_freelist_populate(&htab->freelist,
184 				       htab->elems + offsetof(struct htab_elem, fnode),
185 				       htab->elem_size, num_entries);
186 
187 	return 0;
188 
189 free_elems:
190 	htab_free_elems(htab);
191 	return err;
192 }
193 
prealloc_destroy(struct bpf_htab * htab)194 static void prealloc_destroy(struct bpf_htab *htab)
195 {
196 	htab_free_elems(htab);
197 
198 	if (htab_is_lru(htab))
199 		bpf_lru_destroy(&htab->lru);
200 	else
201 		pcpu_freelist_destroy(&htab->freelist);
202 }
203 
alloc_extra_elems(struct bpf_htab * htab)204 static int alloc_extra_elems(struct bpf_htab *htab)
205 {
206 	struct htab_elem *__percpu *pptr, *l_new;
207 	struct pcpu_freelist_node *l;
208 	int cpu;
209 
210 	pptr = __alloc_percpu_gfp(sizeof(struct htab_elem *), 8,
211 				  GFP_USER | __GFP_NOWARN);
212 	if (!pptr)
213 		return -ENOMEM;
214 
215 	for_each_possible_cpu(cpu) {
216 		l = pcpu_freelist_pop(&htab->freelist);
217 		/* pop will succeed, since prealloc_init()
218 		 * preallocated extra num_possible_cpus elements
219 		 */
220 		l_new = container_of(l, struct htab_elem, fnode);
221 		*per_cpu_ptr(pptr, cpu) = l_new;
222 	}
223 	htab->extra_elems = pptr;
224 	return 0;
225 }
226 
227 /* Called from syscall */
htab_map_alloc(union bpf_attr * attr)228 static struct bpf_map *htab_map_alloc(union bpf_attr *attr)
229 {
230 	bool percpu = (attr->map_type == BPF_MAP_TYPE_PERCPU_HASH ||
231 		       attr->map_type == BPF_MAP_TYPE_LRU_PERCPU_HASH);
232 	bool lru = (attr->map_type == BPF_MAP_TYPE_LRU_HASH ||
233 		    attr->map_type == BPF_MAP_TYPE_LRU_PERCPU_HASH);
234 	/* percpu_lru means each cpu has its own LRU list.
235 	 * it is different from BPF_MAP_TYPE_PERCPU_HASH where
236 	 * the map's value itself is percpu.  percpu_lru has
237 	 * nothing to do with the map's value.
238 	 */
239 	bool percpu_lru = (attr->map_flags & BPF_F_NO_COMMON_LRU);
240 	bool prealloc = !(attr->map_flags & BPF_F_NO_PREALLOC);
241 	int numa_node = bpf_map_attr_numa_node(attr);
242 	struct bpf_htab *htab;
243 	int err, i;
244 	u64 cost;
245 
246 	BUILD_BUG_ON(offsetof(struct htab_elem, htab) !=
247 		     offsetof(struct htab_elem, hash_node.pprev));
248 	BUILD_BUG_ON(offsetof(struct htab_elem, fnode.next) !=
249 		     offsetof(struct htab_elem, hash_node.pprev));
250 
251 	if (lru && !capable(CAP_SYS_ADMIN))
252 		/* LRU implementation is much complicated than other
253 		 * maps.  Hence, limit to CAP_SYS_ADMIN for now.
254 		 */
255 		return ERR_PTR(-EPERM);
256 
257 	if (attr->map_flags & ~HTAB_CREATE_FLAG_MASK)
258 		/* reserved bits should not be used */
259 		return ERR_PTR(-EINVAL);
260 
261 	if (!lru && percpu_lru)
262 		return ERR_PTR(-EINVAL);
263 
264 	if (lru && !prealloc)
265 		return ERR_PTR(-ENOTSUPP);
266 
267 	if (numa_node != NUMA_NO_NODE && (percpu || percpu_lru))
268 		return ERR_PTR(-EINVAL);
269 
270 	htab = kzalloc(sizeof(*htab), GFP_USER);
271 	if (!htab)
272 		return ERR_PTR(-ENOMEM);
273 
274 	/* mandatory map attributes */
275 	htab->map.map_type = attr->map_type;
276 	htab->map.key_size = attr->key_size;
277 	htab->map.value_size = attr->value_size;
278 	htab->map.max_entries = attr->max_entries;
279 	htab->map.map_flags = attr->map_flags;
280 	htab->map.numa_node = numa_node;
281 
282 	/* check sanity of attributes.
283 	 * value_size == 0 may be allowed in the future to use map as a set
284 	 */
285 	err = -EINVAL;
286 	if (htab->map.max_entries == 0 || htab->map.key_size == 0 ||
287 	    htab->map.value_size == 0)
288 		goto free_htab;
289 
290 	if (percpu_lru) {
291 		/* ensure each CPU's lru list has >=1 elements.
292 		 * since we are at it, make each lru list has the same
293 		 * number of elements.
294 		 */
295 		htab->map.max_entries = roundup(attr->max_entries,
296 						num_possible_cpus());
297 		if (htab->map.max_entries < attr->max_entries)
298 			htab->map.max_entries = rounddown(attr->max_entries,
299 							  num_possible_cpus());
300 	}
301 
302 	/* hash table size must be power of 2 */
303 	htab->n_buckets = roundup_pow_of_two(htab->map.max_entries);
304 
305 	err = -E2BIG;
306 	if (htab->map.key_size > MAX_BPF_STACK)
307 		/* eBPF programs initialize keys on stack, so they cannot be
308 		 * larger than max stack size
309 		 */
310 		goto free_htab;
311 
312 	if (htab->map.value_size >= KMALLOC_MAX_SIZE -
313 	    MAX_BPF_STACK - sizeof(struct htab_elem))
314 		/* if value_size is bigger, the user space won't be able to
315 		 * access the elements via bpf syscall. This check also makes
316 		 * sure that the elem_size doesn't overflow and it's
317 		 * kmalloc-able later in htab_map_update_elem()
318 		 */
319 		goto free_htab;
320 
321 	htab->elem_size = sizeof(struct htab_elem) +
322 			  round_up(htab->map.key_size, 8);
323 	if (percpu)
324 		htab->elem_size += sizeof(void *);
325 	else
326 		htab->elem_size += round_up(htab->map.value_size, 8);
327 
328 	/* prevent zero size kmalloc and check for u32 overflow */
329 	if (htab->n_buckets == 0 ||
330 	    htab->n_buckets > U32_MAX / sizeof(struct bucket))
331 		goto free_htab;
332 
333 	cost = (u64) htab->n_buckets * sizeof(struct bucket) +
334 	       (u64) htab->elem_size * htab->map.max_entries;
335 
336 	if (percpu)
337 		cost += (u64) round_up(htab->map.value_size, 8) *
338 			num_possible_cpus() * htab->map.max_entries;
339 	else
340 	       cost += (u64) htab->elem_size * num_possible_cpus();
341 
342 	if (cost >= U32_MAX - PAGE_SIZE)
343 		/* make sure page count doesn't overflow */
344 		goto free_htab;
345 
346 	htab->map.pages = round_up(cost, PAGE_SIZE) >> PAGE_SHIFT;
347 
348 	/* if map size is larger than memlock limit, reject it early */
349 	err = bpf_map_precharge_memlock(htab->map.pages);
350 	if (err)
351 		goto free_htab;
352 
353 	err = -ENOMEM;
354 	htab->buckets = bpf_map_area_alloc(htab->n_buckets *
355 					   sizeof(struct bucket),
356 					   htab->map.numa_node);
357 	if (!htab->buckets)
358 		goto free_htab;
359 
360 	for (i = 0; i < htab->n_buckets; i++) {
361 		INIT_HLIST_NULLS_HEAD(&htab->buckets[i].head, i);
362 		raw_spin_lock_init(&htab->buckets[i].lock);
363 	}
364 
365 	if (prealloc) {
366 		err = prealloc_init(htab);
367 		if (err)
368 			goto free_buckets;
369 
370 		if (!percpu && !lru) {
371 			/* lru itself can remove the least used element, so
372 			 * there is no need for an extra elem during map_update.
373 			 */
374 			err = alloc_extra_elems(htab);
375 			if (err)
376 				goto free_prealloc;
377 		}
378 	}
379 
380 	return &htab->map;
381 
382 free_prealloc:
383 	prealloc_destroy(htab);
384 free_buckets:
385 	bpf_map_area_free(htab->buckets);
386 free_htab:
387 	kfree(htab);
388 	return ERR_PTR(err);
389 }
390 
htab_map_hash(const void * key,u32 key_len)391 static inline u32 htab_map_hash(const void *key, u32 key_len)
392 {
393 	return jhash(key, key_len, 0);
394 }
395 
__select_bucket(struct bpf_htab * htab,u32 hash)396 static inline struct bucket *__select_bucket(struct bpf_htab *htab, u32 hash)
397 {
398 	return &htab->buckets[hash & (htab->n_buckets - 1)];
399 }
400 
select_bucket(struct bpf_htab * htab,u32 hash)401 static inline struct hlist_nulls_head *select_bucket(struct bpf_htab *htab, u32 hash)
402 {
403 	return &__select_bucket(htab, hash)->head;
404 }
405 
406 /* this lookup function can only be called with bucket lock taken */
lookup_elem_raw(struct hlist_nulls_head * head,u32 hash,void * key,u32 key_size)407 static struct htab_elem *lookup_elem_raw(struct hlist_nulls_head *head, u32 hash,
408 					 void *key, u32 key_size)
409 {
410 	struct hlist_nulls_node *n;
411 	struct htab_elem *l;
412 
413 	hlist_nulls_for_each_entry_rcu(l, n, head, hash_node)
414 		if (l->hash == hash && !memcmp(&l->key, key, key_size))
415 			return l;
416 
417 	return NULL;
418 }
419 
420 /* can be called without bucket lock. it will repeat the loop in
421  * the unlikely event when elements moved from one bucket into another
422  * while link list is being walked
423  */
lookup_nulls_elem_raw(struct hlist_nulls_head * head,u32 hash,void * key,u32 key_size,u32 n_buckets)424 static struct htab_elem *lookup_nulls_elem_raw(struct hlist_nulls_head *head,
425 					       u32 hash, void *key,
426 					       u32 key_size, u32 n_buckets)
427 {
428 	struct hlist_nulls_node *n;
429 	struct htab_elem *l;
430 
431 again:
432 	hlist_nulls_for_each_entry_rcu(l, n, head, hash_node)
433 		if (l->hash == hash && !memcmp(&l->key, key, key_size))
434 			return l;
435 
436 	if (unlikely(get_nulls_value(n) != (hash & (n_buckets - 1))))
437 		goto again;
438 
439 	return NULL;
440 }
441 
442 /* Called from syscall or from eBPF program directly, so
443  * arguments have to match bpf_map_lookup_elem() exactly.
444  * The return value is adjusted by BPF instructions
445  * in htab_map_gen_lookup().
446  */
__htab_map_lookup_elem(struct bpf_map * map,void * key)447 static void *__htab_map_lookup_elem(struct bpf_map *map, void *key)
448 {
449 	struct bpf_htab *htab = container_of(map, struct bpf_htab, map);
450 	struct hlist_nulls_head *head;
451 	struct htab_elem *l;
452 	u32 hash, key_size;
453 
454 	/* Must be called with rcu_read_lock. */
455 	WARN_ON_ONCE(!rcu_read_lock_held());
456 
457 	key_size = map->key_size;
458 
459 	hash = htab_map_hash(key, key_size);
460 
461 	head = select_bucket(htab, hash);
462 
463 	l = lookup_nulls_elem_raw(head, hash, key, key_size, htab->n_buckets);
464 
465 	return l;
466 }
467 
htab_map_lookup_elem(struct bpf_map * map,void * key)468 static void *htab_map_lookup_elem(struct bpf_map *map, void *key)
469 {
470 	struct htab_elem *l = __htab_map_lookup_elem(map, key);
471 
472 	if (l)
473 		return l->key + round_up(map->key_size, 8);
474 
475 	return NULL;
476 }
477 
478 /* inline bpf_map_lookup_elem() call.
479  * Instead of:
480  * bpf_prog
481  *   bpf_map_lookup_elem
482  *     map->ops->map_lookup_elem
483  *       htab_map_lookup_elem
484  *         __htab_map_lookup_elem
485  * do:
486  * bpf_prog
487  *   __htab_map_lookup_elem
488  */
htab_map_gen_lookup(struct bpf_map * map,struct bpf_insn * insn_buf)489 static u32 htab_map_gen_lookup(struct bpf_map *map, struct bpf_insn *insn_buf)
490 {
491 	struct bpf_insn *insn = insn_buf;
492 	const int ret = BPF_REG_0;
493 
494 	*insn++ = BPF_EMIT_CALL((u64 (*)(u64, u64, u64, u64, u64))__htab_map_lookup_elem);
495 	*insn++ = BPF_JMP_IMM(BPF_JEQ, ret, 0, 1);
496 	*insn++ = BPF_ALU64_IMM(BPF_ADD, ret,
497 				offsetof(struct htab_elem, key) +
498 				round_up(map->key_size, 8));
499 	return insn - insn_buf;
500 }
501 
__htab_lru_map_lookup_elem(struct bpf_map * map,void * key,const bool mark)502 static __always_inline void *__htab_lru_map_lookup_elem(struct bpf_map *map,
503 							void *key, const bool mark)
504 {
505 	struct htab_elem *l = __htab_map_lookup_elem(map, key);
506 
507 	if (l) {
508 		if (mark)
509 			bpf_lru_node_set_ref(&l->lru_node);
510 		return l->key + round_up(map->key_size, 8);
511 	}
512 
513 	return NULL;
514 }
515 
htab_lru_map_lookup_elem(struct bpf_map * map,void * key)516 static void *htab_lru_map_lookup_elem(struct bpf_map *map, void *key)
517 {
518 	return __htab_lru_map_lookup_elem(map, key, true);
519 }
520 
htab_lru_map_lookup_elem_sys(struct bpf_map * map,void * key)521 static void *htab_lru_map_lookup_elem_sys(struct bpf_map *map, void *key)
522 {
523 	return __htab_lru_map_lookup_elem(map, key, false);
524 }
525 
htab_lru_map_gen_lookup(struct bpf_map * map,struct bpf_insn * insn_buf)526 static u32 htab_lru_map_gen_lookup(struct bpf_map *map,
527 				   struct bpf_insn *insn_buf)
528 {
529 	struct bpf_insn *insn = insn_buf;
530 	const int ret = BPF_REG_0;
531 	const int ref_reg = BPF_REG_1;
532 
533 	*insn++ = BPF_EMIT_CALL((u64 (*)(u64, u64, u64, u64, u64))__htab_map_lookup_elem);
534 	*insn++ = BPF_JMP_IMM(BPF_JEQ, ret, 0, 4);
535 	*insn++ = BPF_LDX_MEM(BPF_B, ref_reg, ret,
536 			      offsetof(struct htab_elem, lru_node) +
537 			      offsetof(struct bpf_lru_node, ref));
538 	*insn++ = BPF_JMP_IMM(BPF_JNE, ref_reg, 0, 1);
539 	*insn++ = BPF_ST_MEM(BPF_B, ret,
540 			     offsetof(struct htab_elem, lru_node) +
541 			     offsetof(struct bpf_lru_node, ref),
542 			     1);
543 	*insn++ = BPF_ALU64_IMM(BPF_ADD, ret,
544 				offsetof(struct htab_elem, key) +
545 				round_up(map->key_size, 8));
546 	return insn - insn_buf;
547 }
548 
549 /* It is called from the bpf_lru_list when the LRU needs to delete
550  * older elements from the htab.
551  */
htab_lru_map_delete_node(void * arg,struct bpf_lru_node * node)552 static bool htab_lru_map_delete_node(void *arg, struct bpf_lru_node *node)
553 {
554 	struct bpf_htab *htab = (struct bpf_htab *)arg;
555 	struct htab_elem *l = NULL, *tgt_l;
556 	struct hlist_nulls_head *head;
557 	struct hlist_nulls_node *n;
558 	unsigned long flags;
559 	struct bucket *b;
560 
561 	tgt_l = container_of(node, struct htab_elem, lru_node);
562 	b = __select_bucket(htab, tgt_l->hash);
563 	head = &b->head;
564 
565 	raw_spin_lock_irqsave(&b->lock, flags);
566 
567 	hlist_nulls_for_each_entry_rcu(l, n, head, hash_node)
568 		if (l == tgt_l) {
569 			hlist_nulls_del_rcu(&l->hash_node);
570 			break;
571 		}
572 
573 	raw_spin_unlock_irqrestore(&b->lock, flags);
574 
575 	return l == tgt_l;
576 }
577 
578 /* Called from syscall */
htab_map_get_next_key(struct bpf_map * map,void * key,void * next_key)579 static int htab_map_get_next_key(struct bpf_map *map, void *key, void *next_key)
580 {
581 	struct bpf_htab *htab = container_of(map, struct bpf_htab, map);
582 	struct hlist_nulls_head *head;
583 	struct htab_elem *l, *next_l;
584 	u32 hash, key_size;
585 	int i = 0;
586 
587 	WARN_ON_ONCE(!rcu_read_lock_held());
588 
589 	key_size = map->key_size;
590 
591 	if (!key)
592 		goto find_first_elem;
593 
594 	hash = htab_map_hash(key, key_size);
595 
596 	head = select_bucket(htab, hash);
597 
598 	/* lookup the key */
599 	l = lookup_nulls_elem_raw(head, hash, key, key_size, htab->n_buckets);
600 
601 	if (!l)
602 		goto find_first_elem;
603 
604 	/* key was found, get next key in the same bucket */
605 	next_l = hlist_nulls_entry_safe(rcu_dereference_raw(hlist_nulls_next_rcu(&l->hash_node)),
606 				  struct htab_elem, hash_node);
607 
608 	if (next_l) {
609 		/* if next elem in this hash list is non-zero, just return it */
610 		memcpy(next_key, next_l->key, key_size);
611 		return 0;
612 	}
613 
614 	/* no more elements in this hash list, go to the next bucket */
615 	i = hash & (htab->n_buckets - 1);
616 	i++;
617 
618 find_first_elem:
619 	/* iterate over buckets */
620 	for (; i < htab->n_buckets; i++) {
621 		head = select_bucket(htab, i);
622 
623 		/* pick first element in the bucket */
624 		next_l = hlist_nulls_entry_safe(rcu_dereference_raw(hlist_nulls_first_rcu(head)),
625 					  struct htab_elem, hash_node);
626 		if (next_l) {
627 			/* if it's not empty, just return it */
628 			memcpy(next_key, next_l->key, key_size);
629 			return 0;
630 		}
631 	}
632 
633 	/* iterated over all buckets and all elements */
634 	return -ENOENT;
635 }
636 
htab_elem_free(struct bpf_htab * htab,struct htab_elem * l)637 static void htab_elem_free(struct bpf_htab *htab, struct htab_elem *l)
638 {
639 	if (htab->map.map_type == BPF_MAP_TYPE_PERCPU_HASH)
640 		free_percpu(htab_elem_get_ptr(l, htab->map.key_size));
641 	kfree(l);
642 }
643 
htab_elem_free_rcu(struct rcu_head * head)644 static void htab_elem_free_rcu(struct rcu_head *head)
645 {
646 	struct htab_elem *l = container_of(head, struct htab_elem, rcu);
647 	struct bpf_htab *htab = l->htab;
648 
649 	/* must increment bpf_prog_active to avoid kprobe+bpf triggering while
650 	 * we're calling kfree, otherwise deadlock is possible if kprobes
651 	 * are placed somewhere inside of slub
652 	 */
653 	preempt_disable();
654 	__this_cpu_inc(bpf_prog_active);
655 	htab_elem_free(htab, l);
656 	__this_cpu_dec(bpf_prog_active);
657 	preempt_enable();
658 }
659 
free_htab_elem(struct bpf_htab * htab,struct htab_elem * l)660 static void free_htab_elem(struct bpf_htab *htab, struct htab_elem *l)
661 {
662 	struct bpf_map *map = &htab->map;
663 
664 	if (map->ops->map_fd_put_ptr) {
665 		void *ptr = fd_htab_map_get_ptr(map, l);
666 
667 		map->ops->map_fd_put_ptr(ptr);
668 	}
669 
670 	if (htab_is_prealloc(htab)) {
671 		__pcpu_freelist_push(&htab->freelist, &l->fnode);
672 	} else {
673 		atomic_dec(&htab->count);
674 		l->htab = htab;
675 		call_rcu(&l->rcu, htab_elem_free_rcu);
676 	}
677 }
678 
pcpu_copy_value(struct bpf_htab * htab,void __percpu * pptr,void * value,bool onallcpus)679 static void pcpu_copy_value(struct bpf_htab *htab, void __percpu *pptr,
680 			    void *value, bool onallcpus)
681 {
682 	if (!onallcpus) {
683 		/* copy true value_size bytes */
684 		memcpy(this_cpu_ptr(pptr), value, htab->map.value_size);
685 	} else {
686 		u32 size = round_up(htab->map.value_size, 8);
687 		int off = 0, cpu;
688 
689 		for_each_possible_cpu(cpu) {
690 			bpf_long_memcpy(per_cpu_ptr(pptr, cpu),
691 					value + off, size);
692 			off += size;
693 		}
694 	}
695 }
696 
fd_htab_map_needs_adjust(const struct bpf_htab * htab)697 static bool fd_htab_map_needs_adjust(const struct bpf_htab *htab)
698 {
699 	return htab->map.map_type == BPF_MAP_TYPE_HASH_OF_MAPS &&
700 	       BITS_PER_LONG == 64;
701 }
702 
htab_size_value(const struct bpf_htab * htab,bool percpu)703 static u32 htab_size_value(const struct bpf_htab *htab, bool percpu)
704 {
705 	u32 size = htab->map.value_size;
706 
707 	if (percpu || fd_htab_map_needs_adjust(htab))
708 		size = round_up(size, 8);
709 	return size;
710 }
711 
alloc_htab_elem(struct bpf_htab * htab,void * key,void * value,u32 key_size,u32 hash,bool percpu,bool onallcpus,struct htab_elem * old_elem)712 static struct htab_elem *alloc_htab_elem(struct bpf_htab *htab, void *key,
713 					 void *value, u32 key_size, u32 hash,
714 					 bool percpu, bool onallcpus,
715 					 struct htab_elem *old_elem)
716 {
717 	u32 size = htab_size_value(htab, percpu);
718 	bool prealloc = htab_is_prealloc(htab);
719 	struct htab_elem *l_new, **pl_new;
720 	void __percpu *pptr;
721 
722 	if (prealloc) {
723 		if (old_elem) {
724 			/* if we're updating the existing element,
725 			 * use per-cpu extra elems to avoid freelist_pop/push
726 			 */
727 			pl_new = this_cpu_ptr(htab->extra_elems);
728 			l_new = *pl_new;
729 			*pl_new = old_elem;
730 		} else {
731 			struct pcpu_freelist_node *l;
732 
733 			l = __pcpu_freelist_pop(&htab->freelist);
734 			if (!l)
735 				return ERR_PTR(-E2BIG);
736 			l_new = container_of(l, struct htab_elem, fnode);
737 		}
738 	} else {
739 		if (atomic_inc_return(&htab->count) > htab->map.max_entries)
740 			if (!old_elem) {
741 				/* when map is full and update() is replacing
742 				 * old element, it's ok to allocate, since
743 				 * old element will be freed immediately.
744 				 * Otherwise return an error
745 				 */
746 				l_new = ERR_PTR(-E2BIG);
747 				goto dec_count;
748 			}
749 		l_new = kmalloc_node(htab->elem_size, GFP_ATOMIC | __GFP_NOWARN,
750 				     htab->map.numa_node);
751 		if (!l_new) {
752 			l_new = ERR_PTR(-ENOMEM);
753 			goto dec_count;
754 		}
755 	}
756 
757 	memcpy(l_new->key, key, key_size);
758 	if (percpu) {
759 		if (prealloc) {
760 			pptr = htab_elem_get_ptr(l_new, key_size);
761 		} else {
762 			/* alloc_percpu zero-fills */
763 			pptr = __alloc_percpu_gfp(size, 8,
764 						  GFP_ATOMIC | __GFP_NOWARN);
765 			if (!pptr) {
766 				kfree(l_new);
767 				l_new = ERR_PTR(-ENOMEM);
768 				goto dec_count;
769 			}
770 		}
771 
772 		pcpu_copy_value(htab, pptr, value, onallcpus);
773 
774 		if (!prealloc)
775 			htab_elem_set_ptr(l_new, key_size, pptr);
776 	} else {
777 		memcpy(l_new->key + round_up(key_size, 8), value, size);
778 	}
779 
780 	l_new->hash = hash;
781 	return l_new;
782 dec_count:
783 	atomic_dec(&htab->count);
784 	return l_new;
785 }
786 
check_flags(struct bpf_htab * htab,struct htab_elem * l_old,u64 map_flags)787 static int check_flags(struct bpf_htab *htab, struct htab_elem *l_old,
788 		       u64 map_flags)
789 {
790 	if (l_old && map_flags == BPF_NOEXIST)
791 		/* elem already exists */
792 		return -EEXIST;
793 
794 	if (!l_old && map_flags == BPF_EXIST)
795 		/* elem doesn't exist, cannot update it */
796 		return -ENOENT;
797 
798 	return 0;
799 }
800 
801 /* Called from syscall or from eBPF program */
htab_map_update_elem(struct bpf_map * map,void * key,void * value,u64 map_flags)802 static int htab_map_update_elem(struct bpf_map *map, void *key, void *value,
803 				u64 map_flags)
804 {
805 	struct bpf_htab *htab = container_of(map, struct bpf_htab, map);
806 	struct htab_elem *l_new = NULL, *l_old;
807 	struct hlist_nulls_head *head;
808 	unsigned long flags;
809 	struct bucket *b;
810 	u32 key_size, hash;
811 	int ret;
812 
813 	if (unlikely(map_flags > BPF_EXIST))
814 		/* unknown flags */
815 		return -EINVAL;
816 
817 	WARN_ON_ONCE(!rcu_read_lock_held());
818 
819 	key_size = map->key_size;
820 
821 	hash = htab_map_hash(key, key_size);
822 
823 	b = __select_bucket(htab, hash);
824 	head = &b->head;
825 
826 	/* bpf_map_update_elem() can be called in_irq() */
827 	raw_spin_lock_irqsave(&b->lock, flags);
828 
829 	l_old = lookup_elem_raw(head, hash, key, key_size);
830 
831 	ret = check_flags(htab, l_old, map_flags);
832 	if (ret)
833 		goto err;
834 
835 	l_new = alloc_htab_elem(htab, key, value, key_size, hash, false, false,
836 				l_old);
837 	if (IS_ERR(l_new)) {
838 		/* all pre-allocated elements are in use or memory exhausted */
839 		ret = PTR_ERR(l_new);
840 		goto err;
841 	}
842 
843 	/* add new element to the head of the list, so that
844 	 * concurrent search will find it before old elem
845 	 */
846 	hlist_nulls_add_head_rcu(&l_new->hash_node, head);
847 	if (l_old) {
848 		hlist_nulls_del_rcu(&l_old->hash_node);
849 		if (!htab_is_prealloc(htab))
850 			free_htab_elem(htab, l_old);
851 	}
852 	ret = 0;
853 err:
854 	raw_spin_unlock_irqrestore(&b->lock, flags);
855 	return ret;
856 }
857 
htab_lru_map_update_elem(struct bpf_map * map,void * key,void * value,u64 map_flags)858 static int htab_lru_map_update_elem(struct bpf_map *map, void *key, void *value,
859 				    u64 map_flags)
860 {
861 	struct bpf_htab *htab = container_of(map, struct bpf_htab, map);
862 	struct htab_elem *l_new, *l_old = NULL;
863 	struct hlist_nulls_head *head;
864 	unsigned long flags;
865 	struct bucket *b;
866 	u32 key_size, hash;
867 	int ret;
868 
869 	if (unlikely(map_flags > BPF_EXIST))
870 		/* unknown flags */
871 		return -EINVAL;
872 
873 	WARN_ON_ONCE(!rcu_read_lock_held());
874 
875 	key_size = map->key_size;
876 
877 	hash = htab_map_hash(key, key_size);
878 
879 	b = __select_bucket(htab, hash);
880 	head = &b->head;
881 
882 	/* For LRU, we need to alloc before taking bucket's
883 	 * spinlock because getting free nodes from LRU may need
884 	 * to remove older elements from htab and this removal
885 	 * operation will need a bucket lock.
886 	 */
887 	l_new = prealloc_lru_pop(htab, key, hash);
888 	if (!l_new)
889 		return -ENOMEM;
890 	memcpy(l_new->key + round_up(map->key_size, 8), value, map->value_size);
891 
892 	/* bpf_map_update_elem() can be called in_irq() */
893 	raw_spin_lock_irqsave(&b->lock, flags);
894 
895 	l_old = lookup_elem_raw(head, hash, key, key_size);
896 
897 	ret = check_flags(htab, l_old, map_flags);
898 	if (ret)
899 		goto err;
900 
901 	/* add new element to the head of the list, so that
902 	 * concurrent search will find it before old elem
903 	 */
904 	hlist_nulls_add_head_rcu(&l_new->hash_node, head);
905 	if (l_old) {
906 		bpf_lru_node_set_ref(&l_new->lru_node);
907 		hlist_nulls_del_rcu(&l_old->hash_node);
908 	}
909 	ret = 0;
910 
911 err:
912 	raw_spin_unlock_irqrestore(&b->lock, flags);
913 
914 	if (ret)
915 		bpf_lru_push_free(&htab->lru, &l_new->lru_node);
916 	else if (l_old)
917 		bpf_lru_push_free(&htab->lru, &l_old->lru_node);
918 
919 	return ret;
920 }
921 
__htab_percpu_map_update_elem(struct bpf_map * map,void * key,void * value,u64 map_flags,bool onallcpus)922 static int __htab_percpu_map_update_elem(struct bpf_map *map, void *key,
923 					 void *value, u64 map_flags,
924 					 bool onallcpus)
925 {
926 	struct bpf_htab *htab = container_of(map, struct bpf_htab, map);
927 	struct htab_elem *l_new = NULL, *l_old;
928 	struct hlist_nulls_head *head;
929 	unsigned long flags;
930 	struct bucket *b;
931 	u32 key_size, hash;
932 	int ret;
933 
934 	if (unlikely(map_flags > BPF_EXIST))
935 		/* unknown flags */
936 		return -EINVAL;
937 
938 	WARN_ON_ONCE(!rcu_read_lock_held());
939 
940 	key_size = map->key_size;
941 
942 	hash = htab_map_hash(key, key_size);
943 
944 	b = __select_bucket(htab, hash);
945 	head = &b->head;
946 
947 	/* bpf_map_update_elem() can be called in_irq() */
948 	raw_spin_lock_irqsave(&b->lock, flags);
949 
950 	l_old = lookup_elem_raw(head, hash, key, key_size);
951 
952 	ret = check_flags(htab, l_old, map_flags);
953 	if (ret)
954 		goto err;
955 
956 	if (l_old) {
957 		/* per-cpu hash map can update value in-place */
958 		pcpu_copy_value(htab, htab_elem_get_ptr(l_old, key_size),
959 				value, onallcpus);
960 	} else {
961 		l_new = alloc_htab_elem(htab, key, value, key_size,
962 					hash, true, onallcpus, NULL);
963 		if (IS_ERR(l_new)) {
964 			ret = PTR_ERR(l_new);
965 			goto err;
966 		}
967 		hlist_nulls_add_head_rcu(&l_new->hash_node, head);
968 	}
969 	ret = 0;
970 err:
971 	raw_spin_unlock_irqrestore(&b->lock, flags);
972 	return ret;
973 }
974 
__htab_lru_percpu_map_update_elem(struct bpf_map * map,void * key,void * value,u64 map_flags,bool onallcpus)975 static int __htab_lru_percpu_map_update_elem(struct bpf_map *map, void *key,
976 					     void *value, u64 map_flags,
977 					     bool onallcpus)
978 {
979 	struct bpf_htab *htab = container_of(map, struct bpf_htab, map);
980 	struct htab_elem *l_new = NULL, *l_old;
981 	struct hlist_nulls_head *head;
982 	unsigned long flags;
983 	struct bucket *b;
984 	u32 key_size, hash;
985 	int ret;
986 
987 	if (unlikely(map_flags > BPF_EXIST))
988 		/* unknown flags */
989 		return -EINVAL;
990 
991 	WARN_ON_ONCE(!rcu_read_lock_held());
992 
993 	key_size = map->key_size;
994 
995 	hash = htab_map_hash(key, key_size);
996 
997 	b = __select_bucket(htab, hash);
998 	head = &b->head;
999 
1000 	/* For LRU, we need to alloc before taking bucket's
1001 	 * spinlock because LRU's elem alloc may need
1002 	 * to remove older elem from htab and this removal
1003 	 * operation will need a bucket lock.
1004 	 */
1005 	if (map_flags != BPF_EXIST) {
1006 		l_new = prealloc_lru_pop(htab, key, hash);
1007 		if (!l_new)
1008 			return -ENOMEM;
1009 	}
1010 
1011 	/* bpf_map_update_elem() can be called in_irq() */
1012 	raw_spin_lock_irqsave(&b->lock, flags);
1013 
1014 	l_old = lookup_elem_raw(head, hash, key, key_size);
1015 
1016 	ret = check_flags(htab, l_old, map_flags);
1017 	if (ret)
1018 		goto err;
1019 
1020 	if (l_old) {
1021 		bpf_lru_node_set_ref(&l_old->lru_node);
1022 
1023 		/* per-cpu hash map can update value in-place */
1024 		pcpu_copy_value(htab, htab_elem_get_ptr(l_old, key_size),
1025 				value, onallcpus);
1026 	} else {
1027 		pcpu_copy_value(htab, htab_elem_get_ptr(l_new, key_size),
1028 				value, onallcpus);
1029 		hlist_nulls_add_head_rcu(&l_new->hash_node, head);
1030 		l_new = NULL;
1031 	}
1032 	ret = 0;
1033 err:
1034 	raw_spin_unlock_irqrestore(&b->lock, flags);
1035 	if (l_new)
1036 		bpf_lru_push_free(&htab->lru, &l_new->lru_node);
1037 	return ret;
1038 }
1039 
htab_percpu_map_update_elem(struct bpf_map * map,void * key,void * value,u64 map_flags)1040 static int htab_percpu_map_update_elem(struct bpf_map *map, void *key,
1041 				       void *value, u64 map_flags)
1042 {
1043 	return __htab_percpu_map_update_elem(map, key, value, map_flags, false);
1044 }
1045 
htab_lru_percpu_map_update_elem(struct bpf_map * map,void * key,void * value,u64 map_flags)1046 static int htab_lru_percpu_map_update_elem(struct bpf_map *map, void *key,
1047 					   void *value, u64 map_flags)
1048 {
1049 	return __htab_lru_percpu_map_update_elem(map, key, value, map_flags,
1050 						 false);
1051 }
1052 
1053 /* Called from syscall or from eBPF program */
htab_map_delete_elem(struct bpf_map * map,void * key)1054 static int htab_map_delete_elem(struct bpf_map *map, void *key)
1055 {
1056 	struct bpf_htab *htab = container_of(map, struct bpf_htab, map);
1057 	struct hlist_nulls_head *head;
1058 	struct bucket *b;
1059 	struct htab_elem *l;
1060 	unsigned long flags;
1061 	u32 hash, key_size;
1062 	int ret = -ENOENT;
1063 
1064 	WARN_ON_ONCE(!rcu_read_lock_held());
1065 
1066 	key_size = map->key_size;
1067 
1068 	hash = htab_map_hash(key, key_size);
1069 	b = __select_bucket(htab, hash);
1070 	head = &b->head;
1071 
1072 	raw_spin_lock_irqsave(&b->lock, flags);
1073 
1074 	l = lookup_elem_raw(head, hash, key, key_size);
1075 
1076 	if (l) {
1077 		hlist_nulls_del_rcu(&l->hash_node);
1078 		free_htab_elem(htab, l);
1079 		ret = 0;
1080 	}
1081 
1082 	raw_spin_unlock_irqrestore(&b->lock, flags);
1083 	return ret;
1084 }
1085 
htab_lru_map_delete_elem(struct bpf_map * map,void * key)1086 static int htab_lru_map_delete_elem(struct bpf_map *map, void *key)
1087 {
1088 	struct bpf_htab *htab = container_of(map, struct bpf_htab, map);
1089 	struct hlist_nulls_head *head;
1090 	struct bucket *b;
1091 	struct htab_elem *l;
1092 	unsigned long flags;
1093 	u32 hash, key_size;
1094 	int ret = -ENOENT;
1095 
1096 	WARN_ON_ONCE(!rcu_read_lock_held());
1097 
1098 	key_size = map->key_size;
1099 
1100 	hash = htab_map_hash(key, key_size);
1101 	b = __select_bucket(htab, hash);
1102 	head = &b->head;
1103 
1104 	raw_spin_lock_irqsave(&b->lock, flags);
1105 
1106 	l = lookup_elem_raw(head, hash, key, key_size);
1107 
1108 	if (l) {
1109 		hlist_nulls_del_rcu(&l->hash_node);
1110 		ret = 0;
1111 	}
1112 
1113 	raw_spin_unlock_irqrestore(&b->lock, flags);
1114 	if (l)
1115 		bpf_lru_push_free(&htab->lru, &l->lru_node);
1116 	return ret;
1117 }
1118 
delete_all_elements(struct bpf_htab * htab)1119 static void delete_all_elements(struct bpf_htab *htab)
1120 {
1121 	int i;
1122 
1123 	for (i = 0; i < htab->n_buckets; i++) {
1124 		struct hlist_nulls_head *head = select_bucket(htab, i);
1125 		struct hlist_nulls_node *n;
1126 		struct htab_elem *l;
1127 
1128 		hlist_nulls_for_each_entry_safe(l, n, head, hash_node) {
1129 			hlist_nulls_del_rcu(&l->hash_node);
1130 			htab_elem_free(htab, l);
1131 		}
1132 	}
1133 }
1134 
1135 /* Called when map->refcnt goes to zero, either from workqueue or from syscall */
htab_map_free(struct bpf_map * map)1136 static void htab_map_free(struct bpf_map *map)
1137 {
1138 	struct bpf_htab *htab = container_of(map, struct bpf_htab, map);
1139 
1140 	/* at this point bpf_prog->aux->refcnt == 0 and this map->refcnt == 0,
1141 	 * so the programs (can be more than one that used this map) were
1142 	 * disconnected from events. Wait for outstanding critical sections in
1143 	 * these programs to complete
1144 	 */
1145 	synchronize_rcu();
1146 
1147 	/* some of free_htab_elem() callbacks for elements of this map may
1148 	 * not have executed. Wait for them.
1149 	 */
1150 	rcu_barrier();
1151 	if (!htab_is_prealloc(htab))
1152 		delete_all_elements(htab);
1153 	else
1154 		prealloc_destroy(htab);
1155 
1156 	free_percpu(htab->extra_elems);
1157 	bpf_map_area_free(htab->buckets);
1158 	kfree(htab);
1159 }
1160 
1161 const struct bpf_map_ops htab_map_ops = {
1162 	.map_alloc = htab_map_alloc,
1163 	.map_free = htab_map_free,
1164 	.map_get_next_key = htab_map_get_next_key,
1165 	.map_lookup_elem = htab_map_lookup_elem,
1166 	.map_update_elem = htab_map_update_elem,
1167 	.map_delete_elem = htab_map_delete_elem,
1168 	.map_gen_lookup = htab_map_gen_lookup,
1169 };
1170 
1171 const struct bpf_map_ops htab_lru_map_ops = {
1172 	.map_alloc = htab_map_alloc,
1173 	.map_free = htab_map_free,
1174 	.map_get_next_key = htab_map_get_next_key,
1175 	.map_lookup_elem = htab_lru_map_lookup_elem,
1176 	.map_lookup_elem_sys_only = htab_lru_map_lookup_elem_sys,
1177 	.map_update_elem = htab_lru_map_update_elem,
1178 	.map_delete_elem = htab_lru_map_delete_elem,
1179 	.map_gen_lookup = htab_lru_map_gen_lookup,
1180 };
1181 
1182 /* Called from eBPF program */
htab_percpu_map_lookup_elem(struct bpf_map * map,void * key)1183 static void *htab_percpu_map_lookup_elem(struct bpf_map *map, void *key)
1184 {
1185 	struct htab_elem *l = __htab_map_lookup_elem(map, key);
1186 
1187 	if (l)
1188 		return this_cpu_ptr(htab_elem_get_ptr(l, map->key_size));
1189 	else
1190 		return NULL;
1191 }
1192 
htab_lru_percpu_map_lookup_elem(struct bpf_map * map,void * key)1193 static void *htab_lru_percpu_map_lookup_elem(struct bpf_map *map, void *key)
1194 {
1195 	struct htab_elem *l = __htab_map_lookup_elem(map, key);
1196 
1197 	if (l) {
1198 		bpf_lru_node_set_ref(&l->lru_node);
1199 		return this_cpu_ptr(htab_elem_get_ptr(l, map->key_size));
1200 	}
1201 
1202 	return NULL;
1203 }
1204 
bpf_percpu_hash_copy(struct bpf_map * map,void * key,void * value)1205 int bpf_percpu_hash_copy(struct bpf_map *map, void *key, void *value)
1206 {
1207 	struct htab_elem *l;
1208 	void __percpu *pptr;
1209 	int ret = -ENOENT;
1210 	int cpu, off = 0;
1211 	u32 size;
1212 
1213 	/* per_cpu areas are zero-filled and bpf programs can only
1214 	 * access 'value_size' of them, so copying rounded areas
1215 	 * will not leak any kernel data
1216 	 */
1217 	size = round_up(map->value_size, 8);
1218 	rcu_read_lock();
1219 	l = __htab_map_lookup_elem(map, key);
1220 	if (!l)
1221 		goto out;
1222 	/* We do not mark LRU map element here in order to not mess up
1223 	 * eviction heuristics when user space does a map walk.
1224 	 */
1225 	pptr = htab_elem_get_ptr(l, map->key_size);
1226 	for_each_possible_cpu(cpu) {
1227 		bpf_long_memcpy(value + off,
1228 				per_cpu_ptr(pptr, cpu), size);
1229 		off += size;
1230 	}
1231 	ret = 0;
1232 out:
1233 	rcu_read_unlock();
1234 	return ret;
1235 }
1236 
bpf_percpu_hash_update(struct bpf_map * map,void * key,void * value,u64 map_flags)1237 int bpf_percpu_hash_update(struct bpf_map *map, void *key, void *value,
1238 			   u64 map_flags)
1239 {
1240 	struct bpf_htab *htab = container_of(map, struct bpf_htab, map);
1241 	int ret;
1242 
1243 	rcu_read_lock();
1244 	if (htab_is_lru(htab))
1245 		ret = __htab_lru_percpu_map_update_elem(map, key, value,
1246 							map_flags, true);
1247 	else
1248 		ret = __htab_percpu_map_update_elem(map, key, value, map_flags,
1249 						    true);
1250 	rcu_read_unlock();
1251 
1252 	return ret;
1253 }
1254 
1255 const struct bpf_map_ops htab_percpu_map_ops = {
1256 	.map_alloc = htab_map_alloc,
1257 	.map_free = htab_map_free,
1258 	.map_get_next_key = htab_map_get_next_key,
1259 	.map_lookup_elem = htab_percpu_map_lookup_elem,
1260 	.map_update_elem = htab_percpu_map_update_elem,
1261 	.map_delete_elem = htab_map_delete_elem,
1262 };
1263 
1264 const struct bpf_map_ops htab_lru_percpu_map_ops = {
1265 	.map_alloc = htab_map_alloc,
1266 	.map_free = htab_map_free,
1267 	.map_get_next_key = htab_map_get_next_key,
1268 	.map_lookup_elem = htab_lru_percpu_map_lookup_elem,
1269 	.map_update_elem = htab_lru_percpu_map_update_elem,
1270 	.map_delete_elem = htab_lru_map_delete_elem,
1271 };
1272 
fd_htab_map_alloc(union bpf_attr * attr)1273 static struct bpf_map *fd_htab_map_alloc(union bpf_attr *attr)
1274 {
1275 	if (attr->value_size != sizeof(u32))
1276 		return ERR_PTR(-EINVAL);
1277 	return htab_map_alloc(attr);
1278 }
1279 
fd_htab_map_free(struct bpf_map * map)1280 static void fd_htab_map_free(struct bpf_map *map)
1281 {
1282 	struct bpf_htab *htab = container_of(map, struct bpf_htab, map);
1283 	struct hlist_nulls_node *n;
1284 	struct hlist_nulls_head *head;
1285 	struct htab_elem *l;
1286 	int i;
1287 
1288 	for (i = 0; i < htab->n_buckets; i++) {
1289 		head = select_bucket(htab, i);
1290 
1291 		hlist_nulls_for_each_entry_safe(l, n, head, hash_node) {
1292 			void *ptr = fd_htab_map_get_ptr(map, l);
1293 
1294 			map->ops->map_fd_put_ptr(ptr);
1295 		}
1296 	}
1297 
1298 	htab_map_free(map);
1299 }
1300 
1301 /* only called from syscall */
bpf_fd_htab_map_lookup_elem(struct bpf_map * map,void * key,u32 * value)1302 int bpf_fd_htab_map_lookup_elem(struct bpf_map *map, void *key, u32 *value)
1303 {
1304 	void **ptr;
1305 	int ret = 0;
1306 
1307 	if (!map->ops->map_fd_sys_lookup_elem)
1308 		return -ENOTSUPP;
1309 
1310 	rcu_read_lock();
1311 	ptr = htab_map_lookup_elem(map, key);
1312 	if (ptr)
1313 		*value = map->ops->map_fd_sys_lookup_elem(READ_ONCE(*ptr));
1314 	else
1315 		ret = -ENOENT;
1316 	rcu_read_unlock();
1317 
1318 	return ret;
1319 }
1320 
1321 /* only called from syscall */
bpf_fd_htab_map_update_elem(struct bpf_map * map,struct file * map_file,void * key,void * value,u64 map_flags)1322 int bpf_fd_htab_map_update_elem(struct bpf_map *map, struct file *map_file,
1323 				void *key, void *value, u64 map_flags)
1324 {
1325 	void *ptr;
1326 	int ret;
1327 	u32 ufd = *(u32 *)value;
1328 
1329 	ptr = map->ops->map_fd_get_ptr(map, map_file, ufd);
1330 	if (IS_ERR(ptr))
1331 		return PTR_ERR(ptr);
1332 
1333 	ret = htab_map_update_elem(map, key, &ptr, map_flags);
1334 	if (ret)
1335 		map->ops->map_fd_put_ptr(ptr);
1336 
1337 	return ret;
1338 }
1339 
htab_of_map_alloc(union bpf_attr * attr)1340 static struct bpf_map *htab_of_map_alloc(union bpf_attr *attr)
1341 {
1342 	struct bpf_map *map, *inner_map_meta;
1343 
1344 	inner_map_meta = bpf_map_meta_alloc(attr->inner_map_fd);
1345 	if (IS_ERR(inner_map_meta))
1346 		return inner_map_meta;
1347 
1348 	map = fd_htab_map_alloc(attr);
1349 	if (IS_ERR(map)) {
1350 		bpf_map_meta_free(inner_map_meta);
1351 		return map;
1352 	}
1353 
1354 	map->inner_map_meta = inner_map_meta;
1355 
1356 	return map;
1357 }
1358 
htab_of_map_lookup_elem(struct bpf_map * map,void * key)1359 static void *htab_of_map_lookup_elem(struct bpf_map *map, void *key)
1360 {
1361 	struct bpf_map **inner_map  = htab_map_lookup_elem(map, key);
1362 
1363 	if (!inner_map)
1364 		return NULL;
1365 
1366 	return READ_ONCE(*inner_map);
1367 }
1368 
htab_of_map_gen_lookup(struct bpf_map * map,struct bpf_insn * insn_buf)1369 static u32 htab_of_map_gen_lookup(struct bpf_map *map,
1370 				  struct bpf_insn *insn_buf)
1371 {
1372 	struct bpf_insn *insn = insn_buf;
1373 	const int ret = BPF_REG_0;
1374 
1375 	*insn++ = BPF_EMIT_CALL((u64 (*)(u64, u64, u64, u64, u64))__htab_map_lookup_elem);
1376 	*insn++ = BPF_JMP_IMM(BPF_JEQ, ret, 0, 2);
1377 	*insn++ = BPF_ALU64_IMM(BPF_ADD, ret,
1378 				offsetof(struct htab_elem, key) +
1379 				round_up(map->key_size, 8));
1380 	*insn++ = BPF_LDX_MEM(BPF_DW, ret, ret, 0);
1381 
1382 	return insn - insn_buf;
1383 }
1384 
htab_of_map_free(struct bpf_map * map)1385 static void htab_of_map_free(struct bpf_map *map)
1386 {
1387 	bpf_map_meta_free(map->inner_map_meta);
1388 	fd_htab_map_free(map);
1389 }
1390 
1391 const struct bpf_map_ops htab_of_maps_map_ops = {
1392 	.map_alloc = htab_of_map_alloc,
1393 	.map_free = htab_of_map_free,
1394 	.map_get_next_key = htab_map_get_next_key,
1395 	.map_lookup_elem = htab_of_map_lookup_elem,
1396 	.map_delete_elem = htab_map_delete_elem,
1397 	.map_fd_get_ptr = bpf_map_fd_get_ptr,
1398 	.map_fd_put_ptr = bpf_map_fd_put_ptr,
1399 	.map_fd_sys_lookup_elem = bpf_map_fd_sys_lookup_elem,
1400 	.map_gen_lookup = htab_of_map_gen_lookup,
1401 };
1402