xref: /linux/net/core/sock_map.c (revision 85cdaca6970028bf6f544c355c90035586836ddf)
1 // SPDX-License-Identifier: GPL-2.0
2 /* Copyright (c) 2017 - 2018 Covalent IO, Inc. http://covalent.io */
3 
4 #include <linux/bpf.h>
5 #include <linux/btf_ids.h>
6 #include <linux/filter.h>
7 #include <linux/errno.h>
8 #include <linux/file.h>
9 #include <linux/net.h>
10 #include <linux/workqueue.h>
11 #include <linux/skmsg.h>
12 #include <linux/list.h>
13 #include <linux/jhash.h>
14 #include <linux/sock_diag.h>
15 #include <net/udp.h>
16 
17 struct bpf_stab {
18 	struct bpf_map map;
19 	struct sock **sks;
20 	struct sk_psock_progs progs;
21 	spinlock_t lock;
22 };
23 
24 #define SOCK_CREATE_FLAG_MASK				\
25 	(BPF_F_NUMA_NODE | BPF_F_RDONLY | BPF_F_WRONLY)
26 
27 /* This mutex is used to
28  *  - protect race between prog/link attach/detach and link prog update, and
29  *  - protect race between releasing and accessing map in bpf_link.
30  * A single global mutex lock is used since it is expected contention is low.
31  */
32 static DEFINE_MUTEX(sockmap_mutex);
33 
34 static int sock_map_prog_update(struct bpf_map *map, struct bpf_prog *prog,
35 				struct bpf_prog *old, struct bpf_link *link,
36 				u32 which);
37 static struct sk_psock_progs *sock_map_progs(struct bpf_map *map);
38 
39 static struct bpf_map *sock_map_alloc(union bpf_attr *attr)
40 {
41 	struct bpf_stab *stab;
42 
43 	if (attr->max_entries == 0 ||
44 	    attr->key_size    != 4 ||
45 	    (attr->value_size != sizeof(u32) &&
46 	     attr->value_size != sizeof(u64)) ||
47 	    attr->map_flags & ~SOCK_CREATE_FLAG_MASK)
48 		return ERR_PTR(-EINVAL);
49 
50 	stab = bpf_map_area_alloc(sizeof(*stab), NUMA_NO_NODE);
51 	if (!stab)
52 		return ERR_PTR(-ENOMEM);
53 
54 	bpf_map_init_from_attr(&stab->map, attr);
55 	spin_lock_init(&stab->lock);
56 
57 	stab->sks = bpf_map_area_alloc((u64) stab->map.max_entries *
58 				       sizeof(struct sock *),
59 				       stab->map.numa_node);
60 	if (!stab->sks) {
61 		bpf_map_area_free(stab);
62 		return ERR_PTR(-ENOMEM);
63 	}
64 
65 	return &stab->map;
66 }
67 
68 int sock_map_get_from_fd(const union bpf_attr *attr, struct bpf_prog *prog)
69 {
70 	struct bpf_map *map;
71 	int ret;
72 
73 	if (attr->attach_flags || attr->replace_bpf_fd)
74 		return -EINVAL;
75 
76 	CLASS(fd, f)(attr->target_fd);
77 	map = __bpf_map_get(f);
78 	if (IS_ERR(map))
79 		return PTR_ERR(map);
80 	mutex_lock(&sockmap_mutex);
81 	ret = sock_map_prog_update(map, prog, NULL, NULL, attr->attach_type);
82 	mutex_unlock(&sockmap_mutex);
83 	return ret;
84 }
85 
86 int sock_map_prog_detach(const union bpf_attr *attr, enum bpf_prog_type ptype)
87 {
88 	struct bpf_prog *prog;
89 	struct bpf_map *map;
90 	int ret;
91 
92 	if (attr->attach_flags || attr->replace_bpf_fd)
93 		return -EINVAL;
94 
95 	CLASS(fd, f)(attr->target_fd);
96 	map = __bpf_map_get(f);
97 	if (IS_ERR(map))
98 		return PTR_ERR(map);
99 
100 	prog = bpf_prog_get(attr->attach_bpf_fd);
101 	if (IS_ERR(prog))
102 		return PTR_ERR(prog);
103 
104 	if (prog->type != ptype) {
105 		ret = -EINVAL;
106 		goto put_prog;
107 	}
108 
109 	mutex_lock(&sockmap_mutex);
110 	ret = sock_map_prog_update(map, NULL, prog, NULL, attr->attach_type);
111 	mutex_unlock(&sockmap_mutex);
112 put_prog:
113 	bpf_prog_put(prog);
114 	return ret;
115 }
116 
117 static void sock_map_sk_acquire(struct sock *sk)
118 	__acquires(&sk->sk_lock.slock)
119 {
120 	lock_sock(sk);
121 	rcu_read_lock();
122 }
123 
124 static void sock_map_sk_release(struct sock *sk)
125 	__releases(&sk->sk_lock.slock)
126 {
127 	rcu_read_unlock();
128 	release_sock(sk);
129 }
130 
131 static void sock_map_add_link(struct sk_psock *psock,
132 			      struct sk_psock_link *link,
133 			      struct bpf_map *map, void *link_raw)
134 {
135 	link->link_raw = link_raw;
136 	link->map = map;
137 	spin_lock_bh(&psock->link_lock);
138 	list_add_tail(&link->list, &psock->link);
139 	spin_unlock_bh(&psock->link_lock);
140 }
141 
142 static void sock_map_del_link(struct sock *sk,
143 			      struct sk_psock *psock, void *link_raw)
144 {
145 	bool strp_stop = false, verdict_stop = false;
146 	struct sk_psock_link *link, *tmp;
147 
148 	spin_lock_bh(&psock->link_lock);
149 	list_for_each_entry_safe(link, tmp, &psock->link, list) {
150 		if (link->link_raw == link_raw) {
151 			struct bpf_map *map = link->map;
152 			struct sk_psock_progs *progs = sock_map_progs(map);
153 
154 			if (psock->saved_data_ready && progs->stream_parser)
155 				strp_stop = true;
156 			if (psock->saved_data_ready && progs->stream_verdict)
157 				verdict_stop = true;
158 			if (psock->saved_data_ready && progs->skb_verdict)
159 				verdict_stop = true;
160 			list_del(&link->list);
161 			sk_psock_free_link(link);
162 			break;
163 		}
164 	}
165 	spin_unlock_bh(&psock->link_lock);
166 	if (strp_stop || verdict_stop) {
167 		write_lock_bh(&sk->sk_callback_lock);
168 		if (strp_stop)
169 			sk_psock_stop_strp(sk, psock);
170 		if (verdict_stop)
171 			sk_psock_stop_verdict(sk, psock);
172 
173 		if (psock->psock_update_sk_prot)
174 			psock->psock_update_sk_prot(sk, psock, false);
175 		write_unlock_bh(&sk->sk_callback_lock);
176 	}
177 }
178 
179 static void sock_map_unref(struct sock *sk, void *link_raw)
180 {
181 	struct sk_psock *psock = sk_psock(sk);
182 
183 	if (likely(psock)) {
184 		sock_map_del_link(sk, psock, link_raw);
185 		sk_psock_put(sk, psock);
186 	}
187 }
188 
189 static int sock_map_init_proto(struct sock *sk, struct sk_psock *psock)
190 {
191 	if (!sk->sk_prot->psock_update_sk_prot)
192 		return -EINVAL;
193 	psock->psock_update_sk_prot = sk->sk_prot->psock_update_sk_prot;
194 	return sk->sk_prot->psock_update_sk_prot(sk, psock, false);
195 }
196 
197 static struct sk_psock *sock_map_psock_get_checked(struct sock *sk)
198 {
199 	struct sk_psock *psock;
200 
201 	rcu_read_lock();
202 	psock = sk_psock(sk);
203 	if (psock) {
204 		if (sk->sk_prot->close != sock_map_close) {
205 			psock = ERR_PTR(-EBUSY);
206 			goto out;
207 		}
208 
209 		if (!refcount_inc_not_zero(&psock->refcnt))
210 			psock = ERR_PTR(-EBUSY);
211 	}
212 out:
213 	rcu_read_unlock();
214 	return psock;
215 }
216 
217 static int sock_map_link(struct bpf_map *map, struct sock *sk)
218 {
219 	struct sk_psock_progs *progs = sock_map_progs(map);
220 	struct bpf_prog *stream_verdict = NULL;
221 	struct bpf_prog *stream_parser = NULL;
222 	struct bpf_prog *skb_verdict = NULL;
223 	struct bpf_prog *msg_parser = NULL;
224 	struct sk_psock *psock;
225 	int ret;
226 
227 	stream_verdict = READ_ONCE(progs->stream_verdict);
228 	if (stream_verdict) {
229 		stream_verdict = bpf_prog_inc_not_zero(stream_verdict);
230 		if (IS_ERR(stream_verdict))
231 			return PTR_ERR(stream_verdict);
232 	}
233 
234 	stream_parser = READ_ONCE(progs->stream_parser);
235 	if (stream_parser) {
236 		stream_parser = bpf_prog_inc_not_zero(stream_parser);
237 		if (IS_ERR(stream_parser)) {
238 			ret = PTR_ERR(stream_parser);
239 			goto out_put_stream_verdict;
240 		}
241 	}
242 
243 	msg_parser = READ_ONCE(progs->msg_parser);
244 	if (msg_parser) {
245 		msg_parser = bpf_prog_inc_not_zero(msg_parser);
246 		if (IS_ERR(msg_parser)) {
247 			ret = PTR_ERR(msg_parser);
248 			goto out_put_stream_parser;
249 		}
250 	}
251 
252 	skb_verdict = READ_ONCE(progs->skb_verdict);
253 	if (skb_verdict) {
254 		skb_verdict = bpf_prog_inc_not_zero(skb_verdict);
255 		if (IS_ERR(skb_verdict)) {
256 			ret = PTR_ERR(skb_verdict);
257 			goto out_put_msg_parser;
258 		}
259 	}
260 
261 	psock = sock_map_psock_get_checked(sk);
262 	if (IS_ERR(psock)) {
263 		ret = PTR_ERR(psock);
264 		goto out_progs;
265 	}
266 
267 	if (psock) {
268 		if ((msg_parser && READ_ONCE(psock->progs.msg_parser)) ||
269 		    (stream_parser  && READ_ONCE(psock->progs.stream_parser)) ||
270 		    (skb_verdict && READ_ONCE(psock->progs.skb_verdict)) ||
271 		    (skb_verdict && READ_ONCE(psock->progs.stream_verdict)) ||
272 		    (stream_verdict && READ_ONCE(psock->progs.skb_verdict)) ||
273 		    (stream_verdict && READ_ONCE(psock->progs.stream_verdict))) {
274 			sk_psock_put(sk, psock);
275 			ret = -EBUSY;
276 			goto out_progs;
277 		}
278 	} else {
279 		psock = sk_psock_init(sk, map->numa_node);
280 		if (IS_ERR(psock)) {
281 			ret = PTR_ERR(psock);
282 			goto out_progs;
283 		}
284 	}
285 
286 	if (msg_parser)
287 		psock_set_prog(&psock->progs.msg_parser, msg_parser);
288 	if (stream_parser)
289 		psock_set_prog(&psock->progs.stream_parser, stream_parser);
290 	if (stream_verdict)
291 		psock_set_prog(&psock->progs.stream_verdict, stream_verdict);
292 	if (skb_verdict)
293 		psock_set_prog(&psock->progs.skb_verdict, skb_verdict);
294 
295 	/* msg_* and stream_* programs references tracked in psock after this
296 	 * point. Reference dec and cleanup will occur through psock destructor
297 	 */
298 	ret = sock_map_init_proto(sk, psock);
299 	if (ret < 0) {
300 		sk_psock_put(sk, psock);
301 		goto out;
302 	}
303 
304 	write_lock_bh(&sk->sk_callback_lock);
305 	if (stream_parser && stream_verdict && !psock->saved_data_ready) {
306 		if (sk_is_tcp(sk))
307 			ret = sk_psock_init_strp(sk, psock);
308 		else
309 			ret = -EOPNOTSUPP;
310 		if (ret) {
311 			write_unlock_bh(&sk->sk_callback_lock);
312 			sk_psock_put(sk, psock);
313 			goto out;
314 		}
315 		sk_psock_start_strp(sk, psock);
316 	} else if (!stream_parser && stream_verdict && !psock->saved_data_ready) {
317 		sk_psock_start_verdict(sk,psock);
318 	} else if (!stream_verdict && skb_verdict && !psock->saved_data_ready) {
319 		sk_psock_start_verdict(sk, psock);
320 	}
321 	write_unlock_bh(&sk->sk_callback_lock);
322 	return 0;
323 out_progs:
324 	if (skb_verdict)
325 		bpf_prog_put(skb_verdict);
326 out_put_msg_parser:
327 	if (msg_parser)
328 		bpf_prog_put(msg_parser);
329 out_put_stream_parser:
330 	if (stream_parser)
331 		bpf_prog_put(stream_parser);
332 out_put_stream_verdict:
333 	if (stream_verdict)
334 		bpf_prog_put(stream_verdict);
335 out:
336 	return ret;
337 }
338 
339 static void sock_map_free(struct bpf_map *map)
340 {
341 	struct bpf_stab *stab = container_of(map, struct bpf_stab, map);
342 	int i;
343 
344 	/* After the sync no updates or deletes will be in-flight so it
345 	 * is safe to walk map and remove entries without risking a race
346 	 * in EEXIST update case.
347 	 */
348 	synchronize_rcu();
349 	for (i = 0; i < stab->map.max_entries; i++) {
350 		struct sock **psk = &stab->sks[i];
351 		struct sock *sk;
352 
353 		sk = xchg(psk, NULL);
354 		if (sk) {
355 			sock_hold(sk);
356 			lock_sock(sk);
357 			rcu_read_lock();
358 			sock_map_unref(sk, psk);
359 			rcu_read_unlock();
360 			release_sock(sk);
361 			sock_put(sk);
362 		}
363 	}
364 
365 	/* wait for psock readers accessing its map link */
366 	synchronize_rcu();
367 
368 	bpf_map_area_free(stab->sks);
369 	bpf_map_area_free(stab);
370 }
371 
372 static void sock_map_release_progs(struct bpf_map *map)
373 {
374 	psock_progs_drop(&container_of(map, struct bpf_stab, map)->progs);
375 }
376 
377 static struct sock *__sock_map_lookup_elem(struct bpf_map *map, u32 key)
378 {
379 	struct bpf_stab *stab = container_of(map, struct bpf_stab, map);
380 
381 	WARN_ON_ONCE(!rcu_read_lock_held());
382 
383 	if (unlikely(key >= map->max_entries))
384 		return NULL;
385 	return READ_ONCE(stab->sks[key]);
386 }
387 
388 static void *sock_map_lookup(struct bpf_map *map, void *key)
389 {
390 	struct sock *sk;
391 
392 	sk = __sock_map_lookup_elem(map, *(u32 *)key);
393 	if (!sk)
394 		return NULL;
395 	if (sk_is_refcounted(sk) && !refcount_inc_not_zero(&sk->sk_refcnt))
396 		return NULL;
397 	return sk;
398 }
399 
400 static void *sock_map_lookup_sys(struct bpf_map *map, void *key)
401 {
402 	struct sock *sk;
403 
404 	if (map->value_size != sizeof(u64))
405 		return ERR_PTR(-ENOSPC);
406 
407 	sk = __sock_map_lookup_elem(map, *(u32 *)key);
408 	if (!sk)
409 		return ERR_PTR(-ENOENT);
410 
411 	__sock_gen_cookie(sk);
412 	return &sk->sk_cookie;
413 }
414 
415 static int __sock_map_delete(struct bpf_stab *stab, struct sock *sk_test,
416 			     struct sock **psk)
417 {
418 	struct sock *sk = NULL;
419 	int err = 0;
420 
421 	spin_lock_bh(&stab->lock);
422 	if (!sk_test || sk_test == *psk)
423 		sk = xchg(psk, NULL);
424 
425 	if (likely(sk))
426 		sock_map_unref(sk, psk);
427 	else
428 		err = -EINVAL;
429 
430 	spin_unlock_bh(&stab->lock);
431 	return err;
432 }
433 
434 static void sock_map_delete_from_link(struct bpf_map *map, struct sock *sk,
435 				      void *link_raw)
436 {
437 	struct bpf_stab *stab = container_of(map, struct bpf_stab, map);
438 
439 	__sock_map_delete(stab, sk, link_raw);
440 }
441 
442 static long sock_map_delete_elem(struct bpf_map *map, void *key)
443 {
444 	struct bpf_stab *stab = container_of(map, struct bpf_stab, map);
445 	u32 i = *(u32 *)key;
446 	struct sock **psk;
447 
448 	if (unlikely(i >= map->max_entries))
449 		return -EINVAL;
450 
451 	psk = &stab->sks[i];
452 	return __sock_map_delete(stab, NULL, psk);
453 }
454 
455 static int sock_map_get_next_key(struct bpf_map *map, void *key, void *next)
456 {
457 	struct bpf_stab *stab = container_of(map, struct bpf_stab, map);
458 	u32 i = key ? *(u32 *)key : U32_MAX;
459 	u32 *key_next = next;
460 
461 	if (i == stab->map.max_entries - 1)
462 		return -ENOENT;
463 	if (i >= stab->map.max_entries)
464 		*key_next = 0;
465 	else
466 		*key_next = i + 1;
467 	return 0;
468 }
469 
470 static int sock_map_update_common(struct bpf_map *map, u32 idx,
471 				  struct sock *sk, u64 flags)
472 {
473 	struct bpf_stab *stab = container_of(map, struct bpf_stab, map);
474 	struct sk_psock_link *link;
475 	struct sk_psock *psock;
476 	struct sock *osk;
477 	int ret;
478 
479 	WARN_ON_ONCE(!rcu_read_lock_held());
480 	if (unlikely(flags > BPF_EXIST))
481 		return -EINVAL;
482 	if (unlikely(idx >= map->max_entries))
483 		return -E2BIG;
484 
485 	link = sk_psock_init_link();
486 	if (!link)
487 		return -ENOMEM;
488 
489 	ret = sock_map_link(map, sk);
490 	if (ret < 0)
491 		goto out_free;
492 
493 	psock = sk_psock(sk);
494 	WARN_ON_ONCE(!psock);
495 
496 	spin_lock_bh(&stab->lock);
497 	osk = stab->sks[idx];
498 	if (osk && flags == BPF_NOEXIST) {
499 		ret = -EEXIST;
500 		goto out_unlock;
501 	} else if (!osk && flags == BPF_EXIST) {
502 		ret = -ENOENT;
503 		goto out_unlock;
504 	}
505 
506 	sock_map_add_link(psock, link, map, &stab->sks[idx]);
507 	stab->sks[idx] = sk;
508 	if (osk)
509 		sock_map_unref(osk, &stab->sks[idx]);
510 	spin_unlock_bh(&stab->lock);
511 	return 0;
512 out_unlock:
513 	spin_unlock_bh(&stab->lock);
514 	if (psock)
515 		sk_psock_put(sk, psock);
516 out_free:
517 	sk_psock_free_link(link);
518 	return ret;
519 }
520 
521 static bool sock_map_op_okay(const struct bpf_sock_ops_kern *ops)
522 {
523 	return ops->op == BPF_SOCK_OPS_PASSIVE_ESTABLISHED_CB ||
524 	       ops->op == BPF_SOCK_OPS_ACTIVE_ESTABLISHED_CB ||
525 	       ops->op == BPF_SOCK_OPS_TCP_LISTEN_CB;
526 }
527 
528 static bool sock_map_redirect_allowed(const struct sock *sk)
529 {
530 	if (sk_is_tcp(sk))
531 		return sk->sk_state != TCP_LISTEN;
532 	else
533 		return READ_ONCE(sk->sk_state) == TCP_ESTABLISHED;
534 }
535 
536 static bool sock_map_sk_is_suitable(const struct sock *sk)
537 {
538 	return !!sk->sk_prot->psock_update_sk_prot;
539 }
540 
541 static bool sock_map_sk_state_allowed(const struct sock *sk)
542 {
543 	if (sk_is_tcp(sk))
544 		return (1 << sk->sk_state) & (TCPF_ESTABLISHED | TCPF_LISTEN);
545 	if (sk_is_udp(sk))
546 		return sk_hashed(sk);
547 	if (sk_is_stream_unix(sk))
548 		return (1 << READ_ONCE(sk->sk_state)) & TCPF_ESTABLISHED;
549 	if (sk_is_vsock(sk) &&
550 	    (sk->sk_type == SOCK_STREAM || sk->sk_type == SOCK_SEQPACKET))
551 		return (1 << sk->sk_state) & TCPF_ESTABLISHED;
552 	return true;
553 }
554 
555 static int sock_hash_update_common(struct bpf_map *map, void *key,
556 				   struct sock *sk, u64 flags);
557 
558 int sock_map_update_elem_sys(struct bpf_map *map, void *key, void *value,
559 			     u64 flags)
560 {
561 	struct socket *sock;
562 	struct sock *sk;
563 	int ret;
564 	u64 ufd;
565 
566 	if (map->value_size == sizeof(u64))
567 		ufd = *(u64 *)value;
568 	else
569 		ufd = *(u32 *)value;
570 	if (ufd > S32_MAX)
571 		return -EINVAL;
572 
573 	sock = sockfd_lookup(ufd, &ret);
574 	if (!sock)
575 		return ret;
576 	sk = sock->sk;
577 	if (!sk) {
578 		ret = -EINVAL;
579 		goto out;
580 	}
581 	if (!sock_map_sk_is_suitable(sk)) {
582 		ret = -EOPNOTSUPP;
583 		goto out;
584 	}
585 
586 	sock_map_sk_acquire(sk);
587 	if (!sock_map_sk_state_allowed(sk))
588 		ret = -EOPNOTSUPP;
589 	else if (map->map_type == BPF_MAP_TYPE_SOCKMAP)
590 		ret = sock_map_update_common(map, *(u32 *)key, sk, flags);
591 	else
592 		ret = sock_hash_update_common(map, key, sk, flags);
593 	sock_map_sk_release(sk);
594 out:
595 	sockfd_put(sock);
596 	return ret;
597 }
598 
599 static long sock_map_update_elem(struct bpf_map *map, void *key,
600 				 void *value, u64 flags)
601 {
602 	struct sock *sk = (struct sock *)value;
603 	int ret;
604 
605 	if (unlikely(!sk || !sk_fullsock(sk)))
606 		return -EINVAL;
607 
608 	if (!sock_map_sk_is_suitable(sk))
609 		return -EOPNOTSUPP;
610 
611 	local_bh_disable();
612 	bh_lock_sock(sk);
613 	if (!sock_map_sk_state_allowed(sk))
614 		ret = -EOPNOTSUPP;
615 	else if (map->map_type == BPF_MAP_TYPE_SOCKMAP)
616 		ret = sock_map_update_common(map, *(u32 *)key, sk, flags);
617 	else
618 		ret = sock_hash_update_common(map, key, sk, flags);
619 	bh_unlock_sock(sk);
620 	local_bh_enable();
621 	return ret;
622 }
623 
624 BPF_CALL_4(bpf_sock_map_update, struct bpf_sock_ops_kern *, sops,
625 	   struct bpf_map *, map, void *, key, u64, flags)
626 {
627 	WARN_ON_ONCE(!rcu_read_lock_held());
628 
629 	if (likely(sock_map_sk_is_suitable(sops->sk) &&
630 		   sock_map_op_okay(sops)))
631 		return sock_map_update_common(map, *(u32 *)key, sops->sk,
632 					      flags);
633 	return -EOPNOTSUPP;
634 }
635 
636 const struct bpf_func_proto bpf_sock_map_update_proto = {
637 	.func		= bpf_sock_map_update,
638 	.gpl_only	= false,
639 	.pkt_access	= true,
640 	.ret_type	= RET_INTEGER,
641 	.arg1_type	= ARG_PTR_TO_CTX,
642 	.arg2_type	= ARG_CONST_MAP_PTR,
643 	.arg3_type	= ARG_PTR_TO_MAP_KEY,
644 	.arg4_type	= ARG_ANYTHING,
645 };
646 
647 BPF_CALL_4(bpf_sk_redirect_map, struct sk_buff *, skb,
648 	   struct bpf_map *, map, u32, key, u64, flags)
649 {
650 	struct sock *sk;
651 
652 	if (unlikely(flags & ~(BPF_F_INGRESS)))
653 		return SK_DROP;
654 
655 	sk = __sock_map_lookup_elem(map, key);
656 	if (unlikely(!sk || !sock_map_redirect_allowed(sk)))
657 		return SK_DROP;
658 	if ((flags & BPF_F_INGRESS) && sk_is_vsock(sk))
659 		return SK_DROP;
660 
661 	skb_bpf_set_redir(skb, sk, flags & BPF_F_INGRESS);
662 	return SK_PASS;
663 }
664 
665 const struct bpf_func_proto bpf_sk_redirect_map_proto = {
666 	.func           = bpf_sk_redirect_map,
667 	.gpl_only       = false,
668 	.ret_type       = RET_INTEGER,
669 	.arg1_type	= ARG_PTR_TO_CTX,
670 	.arg2_type      = ARG_CONST_MAP_PTR,
671 	.arg3_type      = ARG_ANYTHING,
672 	.arg4_type      = ARG_ANYTHING,
673 };
674 
675 BPF_CALL_4(bpf_msg_redirect_map, struct sk_msg *, msg,
676 	   struct bpf_map *, map, u32, key, u64, flags)
677 {
678 	struct sock *sk;
679 
680 	if (unlikely(flags & ~(BPF_F_INGRESS)))
681 		return SK_DROP;
682 
683 	sk = __sock_map_lookup_elem(map, key);
684 	if (unlikely(!sk || !sock_map_redirect_allowed(sk)))
685 		return SK_DROP;
686 	if (!(flags & BPF_F_INGRESS) && !sk_is_tcp(sk))
687 		return SK_DROP;
688 	if (sk_is_vsock(sk))
689 		return SK_DROP;
690 
691 	msg->flags = flags;
692 	msg->sk_redir = sk;
693 	return SK_PASS;
694 }
695 
696 const struct bpf_func_proto bpf_msg_redirect_map_proto = {
697 	.func           = bpf_msg_redirect_map,
698 	.gpl_only       = false,
699 	.ret_type       = RET_INTEGER,
700 	.arg1_type	= ARG_PTR_TO_CTX,
701 	.arg2_type      = ARG_CONST_MAP_PTR,
702 	.arg3_type      = ARG_ANYTHING,
703 	.arg4_type      = ARG_ANYTHING,
704 };
705 
706 struct sock_map_seq_info {
707 	struct bpf_map *map;
708 	struct sock *sk;
709 	u32 index;
710 };
711 
712 struct bpf_iter__sockmap {
713 	__bpf_md_ptr(struct bpf_iter_meta *, meta);
714 	__bpf_md_ptr(struct bpf_map *, map);
715 	__bpf_md_ptr(void *, key);
716 	__bpf_md_ptr(struct sock *, sk);
717 };
718 
719 DEFINE_BPF_ITER_FUNC(sockmap, struct bpf_iter_meta *meta,
720 		     struct bpf_map *map, void *key,
721 		     struct sock *sk)
722 
723 static void *sock_map_seq_lookup_elem(struct sock_map_seq_info *info)
724 {
725 	if (unlikely(info->index >= info->map->max_entries))
726 		return NULL;
727 
728 	info->sk = __sock_map_lookup_elem(info->map, info->index);
729 
730 	/* can't return sk directly, since that might be NULL */
731 	return info;
732 }
733 
734 static void *sock_map_seq_start(struct seq_file *seq, loff_t *pos)
735 	__acquires(rcu)
736 {
737 	struct sock_map_seq_info *info = seq->private;
738 
739 	if (*pos == 0)
740 		++*pos;
741 
742 	/* pairs with sock_map_seq_stop */
743 	rcu_read_lock();
744 	return sock_map_seq_lookup_elem(info);
745 }
746 
747 static void *sock_map_seq_next(struct seq_file *seq, void *v, loff_t *pos)
748 	__must_hold(rcu)
749 {
750 	struct sock_map_seq_info *info = seq->private;
751 
752 	++*pos;
753 	++info->index;
754 
755 	return sock_map_seq_lookup_elem(info);
756 }
757 
758 static int sock_map_seq_show(struct seq_file *seq, void *v)
759 	__must_hold(rcu)
760 {
761 	struct sock_map_seq_info *info = seq->private;
762 	struct bpf_iter__sockmap ctx = {};
763 	struct bpf_iter_meta meta;
764 	struct bpf_prog *prog;
765 
766 	meta.seq = seq;
767 	prog = bpf_iter_get_info(&meta, !v);
768 	if (!prog)
769 		return 0;
770 
771 	ctx.meta = &meta;
772 	ctx.map = info->map;
773 	if (v) {
774 		ctx.key = &info->index;
775 		ctx.sk = info->sk;
776 	}
777 
778 	return bpf_iter_run_prog(prog, &ctx);
779 }
780 
781 static void sock_map_seq_stop(struct seq_file *seq, void *v)
782 	__releases(rcu)
783 {
784 	if (!v)
785 		(void)sock_map_seq_show(seq, NULL);
786 
787 	/* pairs with sock_map_seq_start */
788 	rcu_read_unlock();
789 }
790 
791 static const struct seq_operations sock_map_seq_ops = {
792 	.start	= sock_map_seq_start,
793 	.next	= sock_map_seq_next,
794 	.stop	= sock_map_seq_stop,
795 	.show	= sock_map_seq_show,
796 };
797 
798 static int sock_map_init_seq_private(void *priv_data,
799 				     struct bpf_iter_aux_info *aux)
800 {
801 	struct sock_map_seq_info *info = priv_data;
802 
803 	bpf_map_inc_with_uref(aux->map);
804 	info->map = aux->map;
805 	return 0;
806 }
807 
808 static void sock_map_fini_seq_private(void *priv_data)
809 {
810 	struct sock_map_seq_info *info = priv_data;
811 
812 	bpf_map_put_with_uref(info->map);
813 }
814 
815 static u64 sock_map_mem_usage(const struct bpf_map *map)
816 {
817 	u64 usage = sizeof(struct bpf_stab);
818 
819 	usage += (u64)map->max_entries * sizeof(struct sock *);
820 	return usage;
821 }
822 
823 static const struct bpf_iter_seq_info sock_map_iter_seq_info = {
824 	.seq_ops		= &sock_map_seq_ops,
825 	.init_seq_private	= sock_map_init_seq_private,
826 	.fini_seq_private	= sock_map_fini_seq_private,
827 	.seq_priv_size		= sizeof(struct sock_map_seq_info),
828 };
829 
830 BTF_ID_LIST_SINGLE(sock_map_btf_ids, struct, bpf_stab)
831 const struct bpf_map_ops sock_map_ops = {
832 	.map_meta_equal		= bpf_map_meta_equal,
833 	.map_alloc		= sock_map_alloc,
834 	.map_free		= sock_map_free,
835 	.map_get_next_key	= sock_map_get_next_key,
836 	.map_lookup_elem_sys_only = sock_map_lookup_sys,
837 	.map_update_elem	= sock_map_update_elem,
838 	.map_delete_elem	= sock_map_delete_elem,
839 	.map_lookup_elem	= sock_map_lookup,
840 	.map_release_uref	= sock_map_release_progs,
841 	.map_check_btf		= map_check_no_btf,
842 	.map_mem_usage		= sock_map_mem_usage,
843 	.map_btf_id		= &sock_map_btf_ids[0],
844 	.iter_seq_info		= &sock_map_iter_seq_info,
845 };
846 
847 struct bpf_shtab_elem {
848 	struct rcu_head rcu;
849 	u32 hash;
850 	struct sock *sk;
851 	struct hlist_node node;
852 	u8 key[];
853 };
854 
855 struct bpf_shtab_bucket {
856 	struct hlist_head head;
857 	spinlock_t lock;
858 };
859 
860 struct bpf_shtab {
861 	struct bpf_map map;
862 	struct bpf_shtab_bucket *buckets;
863 	u32 buckets_num;
864 	u32 elem_size;
865 	struct sk_psock_progs progs;
866 	atomic_t count;
867 };
868 
869 static inline u32 sock_hash_bucket_hash(const void *key, u32 len)
870 {
871 	return jhash(key, len, 0);
872 }
873 
874 static struct bpf_shtab_bucket *sock_hash_select_bucket(struct bpf_shtab *htab,
875 							u32 hash)
876 {
877 	return &htab->buckets[hash & (htab->buckets_num - 1)];
878 }
879 
880 static struct bpf_shtab_elem *
881 sock_hash_lookup_elem_raw(struct hlist_head *head, u32 hash, void *key,
882 			  u32 key_size)
883 {
884 	struct bpf_shtab_elem *elem;
885 
886 	hlist_for_each_entry_rcu(elem, head, node) {
887 		if (elem->hash == hash &&
888 		    !memcmp(&elem->key, key, key_size))
889 			return elem;
890 	}
891 
892 	return NULL;
893 }
894 
895 static struct sock *__sock_hash_lookup_elem(struct bpf_map *map, void *key)
896 {
897 	struct bpf_shtab *htab = container_of(map, struct bpf_shtab, map);
898 	u32 key_size = map->key_size, hash;
899 	struct bpf_shtab_bucket *bucket;
900 	struct bpf_shtab_elem *elem;
901 
902 	WARN_ON_ONCE(!rcu_read_lock_held());
903 
904 	hash = sock_hash_bucket_hash(key, key_size);
905 	bucket = sock_hash_select_bucket(htab, hash);
906 	elem = sock_hash_lookup_elem_raw(&bucket->head, hash, key, key_size);
907 
908 	return elem ? elem->sk : NULL;
909 }
910 
911 static void sock_hash_free_elem(struct bpf_shtab *htab,
912 				struct bpf_shtab_elem *elem)
913 {
914 	atomic_dec(&htab->count);
915 	kfree_rcu(elem, rcu);
916 }
917 
918 static void sock_hash_delete_from_link(struct bpf_map *map, struct sock *sk,
919 				       void *link_raw)
920 {
921 	struct bpf_shtab *htab = container_of(map, struct bpf_shtab, map);
922 	struct bpf_shtab_elem *elem_probe, *elem = link_raw;
923 	struct bpf_shtab_bucket *bucket;
924 
925 	WARN_ON_ONCE(!rcu_read_lock_held());
926 	bucket = sock_hash_select_bucket(htab, elem->hash);
927 
928 	/* elem may be deleted in parallel from the map, but access here
929 	 * is okay since it's going away only after RCU grace period.
930 	 * However, we need to check whether it's still present.
931 	 */
932 	spin_lock_bh(&bucket->lock);
933 	elem_probe = sock_hash_lookup_elem_raw(&bucket->head, elem->hash,
934 					       elem->key, map->key_size);
935 	if (elem_probe && elem_probe == elem) {
936 		hlist_del_rcu(&elem->node);
937 		sock_map_unref(elem->sk, elem);
938 		sock_hash_free_elem(htab, elem);
939 	}
940 	spin_unlock_bh(&bucket->lock);
941 }
942 
943 static long sock_hash_delete_elem(struct bpf_map *map, void *key)
944 {
945 	struct bpf_shtab *htab = container_of(map, struct bpf_shtab, map);
946 	u32 hash, key_size = map->key_size;
947 	struct bpf_shtab_bucket *bucket;
948 	struct bpf_shtab_elem *elem;
949 	int ret = -ENOENT;
950 
951 	hash = sock_hash_bucket_hash(key, key_size);
952 	bucket = sock_hash_select_bucket(htab, hash);
953 
954 	spin_lock_bh(&bucket->lock);
955 	elem = sock_hash_lookup_elem_raw(&bucket->head, hash, key, key_size);
956 	if (elem) {
957 		hlist_del_rcu(&elem->node);
958 		sock_map_unref(elem->sk, elem);
959 		sock_hash_free_elem(htab, elem);
960 		ret = 0;
961 	}
962 	spin_unlock_bh(&bucket->lock);
963 	return ret;
964 }
965 
966 static struct bpf_shtab_elem *sock_hash_alloc_elem(struct bpf_shtab *htab,
967 						   void *key, u32 key_size,
968 						   u32 hash, struct sock *sk,
969 						   struct bpf_shtab_elem *old)
970 {
971 	struct bpf_shtab_elem *new;
972 
973 	if (atomic_inc_return(&htab->count) > htab->map.max_entries) {
974 		if (!old) {
975 			atomic_dec(&htab->count);
976 			return ERR_PTR(-E2BIG);
977 		}
978 	}
979 
980 	new = bpf_map_kmalloc_node(&htab->map, htab->elem_size,
981 				   GFP_ATOMIC | __GFP_NOWARN,
982 				   htab->map.numa_node);
983 	if (!new) {
984 		atomic_dec(&htab->count);
985 		return ERR_PTR(-ENOMEM);
986 	}
987 	memcpy(new->key, key, key_size);
988 	new->sk = sk;
989 	new->hash = hash;
990 	return new;
991 }
992 
993 static int sock_hash_update_common(struct bpf_map *map, void *key,
994 				   struct sock *sk, u64 flags)
995 {
996 	struct bpf_shtab *htab = container_of(map, struct bpf_shtab, map);
997 	u32 key_size = map->key_size, hash;
998 	struct bpf_shtab_elem *elem, *elem_new;
999 	struct bpf_shtab_bucket *bucket;
1000 	struct sk_psock_link *link;
1001 	struct sk_psock *psock;
1002 	int ret;
1003 
1004 	WARN_ON_ONCE(!rcu_read_lock_held());
1005 	if (unlikely(flags > BPF_EXIST))
1006 		return -EINVAL;
1007 
1008 	link = sk_psock_init_link();
1009 	if (!link)
1010 		return -ENOMEM;
1011 
1012 	ret = sock_map_link(map, sk);
1013 	if (ret < 0)
1014 		goto out_free;
1015 
1016 	psock = sk_psock(sk);
1017 	WARN_ON_ONCE(!psock);
1018 
1019 	hash = sock_hash_bucket_hash(key, key_size);
1020 	bucket = sock_hash_select_bucket(htab, hash);
1021 
1022 	spin_lock_bh(&bucket->lock);
1023 	elem = sock_hash_lookup_elem_raw(&bucket->head, hash, key, key_size);
1024 	if (elem && flags == BPF_NOEXIST) {
1025 		ret = -EEXIST;
1026 		goto out_unlock;
1027 	} else if (!elem && flags == BPF_EXIST) {
1028 		ret = -ENOENT;
1029 		goto out_unlock;
1030 	}
1031 
1032 	elem_new = sock_hash_alloc_elem(htab, key, key_size, hash, sk, elem);
1033 	if (IS_ERR(elem_new)) {
1034 		ret = PTR_ERR(elem_new);
1035 		goto out_unlock;
1036 	}
1037 
1038 	sock_map_add_link(psock, link, map, elem_new);
1039 	/* Add new element to the head of the list, so that
1040 	 * concurrent search will find it before old elem.
1041 	 */
1042 	hlist_add_head_rcu(&elem_new->node, &bucket->head);
1043 	if (elem) {
1044 		hlist_del_rcu(&elem->node);
1045 		sock_map_unref(elem->sk, elem);
1046 		sock_hash_free_elem(htab, elem);
1047 	}
1048 	spin_unlock_bh(&bucket->lock);
1049 	return 0;
1050 out_unlock:
1051 	spin_unlock_bh(&bucket->lock);
1052 	sk_psock_put(sk, psock);
1053 out_free:
1054 	sk_psock_free_link(link);
1055 	return ret;
1056 }
1057 
1058 static int sock_hash_get_next_key(struct bpf_map *map, void *key,
1059 				  void *key_next)
1060 {
1061 	struct bpf_shtab *htab = container_of(map, struct bpf_shtab, map);
1062 	struct bpf_shtab_elem *elem, *elem_next;
1063 	u32 hash, key_size = map->key_size;
1064 	struct hlist_head *head;
1065 	int i = 0;
1066 
1067 	if (!key)
1068 		goto find_first_elem;
1069 	hash = sock_hash_bucket_hash(key, key_size);
1070 	head = &sock_hash_select_bucket(htab, hash)->head;
1071 	elem = sock_hash_lookup_elem_raw(head, hash, key, key_size);
1072 	if (!elem)
1073 		goto find_first_elem;
1074 
1075 	elem_next = hlist_entry_safe(rcu_dereference(hlist_next_rcu(&elem->node)),
1076 				     struct bpf_shtab_elem, node);
1077 	if (elem_next) {
1078 		memcpy(key_next, elem_next->key, key_size);
1079 		return 0;
1080 	}
1081 
1082 	i = hash & (htab->buckets_num - 1);
1083 	i++;
1084 find_first_elem:
1085 	for (; i < htab->buckets_num; i++) {
1086 		head = &sock_hash_select_bucket(htab, i)->head;
1087 		elem_next = hlist_entry_safe(rcu_dereference(hlist_first_rcu(head)),
1088 					     struct bpf_shtab_elem, node);
1089 		if (elem_next) {
1090 			memcpy(key_next, elem_next->key, key_size);
1091 			return 0;
1092 		}
1093 	}
1094 
1095 	return -ENOENT;
1096 }
1097 
1098 static struct bpf_map *sock_hash_alloc(union bpf_attr *attr)
1099 {
1100 	struct bpf_shtab *htab;
1101 	int i, err;
1102 
1103 	if (attr->max_entries == 0 ||
1104 	    attr->key_size    == 0 ||
1105 	    (attr->value_size != sizeof(u32) &&
1106 	     attr->value_size != sizeof(u64)) ||
1107 	    attr->map_flags & ~SOCK_CREATE_FLAG_MASK)
1108 		return ERR_PTR(-EINVAL);
1109 	if (attr->key_size > MAX_BPF_STACK)
1110 		return ERR_PTR(-E2BIG);
1111 
1112 	htab = bpf_map_area_alloc(sizeof(*htab), NUMA_NO_NODE);
1113 	if (!htab)
1114 		return ERR_PTR(-ENOMEM);
1115 
1116 	bpf_map_init_from_attr(&htab->map, attr);
1117 
1118 	htab->buckets_num = roundup_pow_of_two(htab->map.max_entries);
1119 	htab->elem_size = sizeof(struct bpf_shtab_elem) +
1120 			  round_up(htab->map.key_size, 8);
1121 	if (htab->buckets_num == 0 ||
1122 	    htab->buckets_num > U32_MAX / sizeof(struct bpf_shtab_bucket)) {
1123 		err = -EINVAL;
1124 		goto free_htab;
1125 	}
1126 
1127 	htab->buckets = bpf_map_area_alloc(htab->buckets_num *
1128 					   sizeof(struct bpf_shtab_bucket),
1129 					   htab->map.numa_node);
1130 	if (!htab->buckets) {
1131 		err = -ENOMEM;
1132 		goto free_htab;
1133 	}
1134 
1135 	for (i = 0; i < htab->buckets_num; i++) {
1136 		INIT_HLIST_HEAD(&htab->buckets[i].head);
1137 		spin_lock_init(&htab->buckets[i].lock);
1138 	}
1139 
1140 	return &htab->map;
1141 free_htab:
1142 	bpf_map_area_free(htab);
1143 	return ERR_PTR(err);
1144 }
1145 
1146 static void sock_hash_free(struct bpf_map *map)
1147 {
1148 	struct bpf_shtab *htab = container_of(map, struct bpf_shtab, map);
1149 	struct bpf_shtab_bucket *bucket;
1150 	struct hlist_head unlink_list;
1151 	struct bpf_shtab_elem *elem;
1152 	struct hlist_node *node;
1153 	int i;
1154 
1155 	/* After the sync no updates or deletes will be in-flight so it
1156 	 * is safe to walk map and remove entries without risking a race
1157 	 * in EEXIST update case.
1158 	 */
1159 	synchronize_rcu();
1160 	for (i = 0; i < htab->buckets_num; i++) {
1161 		bucket = sock_hash_select_bucket(htab, i);
1162 
1163 		/* We are racing with sock_hash_delete_from_link to
1164 		 * enter the spin-lock critical section. Every socket on
1165 		 * the list is still linked to sockhash. Since link
1166 		 * exists, psock exists and holds a ref to socket. That
1167 		 * lets us to grab a socket ref too.
1168 		 */
1169 		spin_lock_bh(&bucket->lock);
1170 		hlist_for_each_entry(elem, &bucket->head, node)
1171 			sock_hold(elem->sk);
1172 		hlist_move_list(&bucket->head, &unlink_list);
1173 		spin_unlock_bh(&bucket->lock);
1174 
1175 		/* Process removed entries out of atomic context to
1176 		 * block for socket lock before deleting the psock's
1177 		 * link to sockhash.
1178 		 */
1179 		hlist_for_each_entry_safe(elem, node, &unlink_list, node) {
1180 			hlist_del(&elem->node);
1181 			lock_sock(elem->sk);
1182 			rcu_read_lock();
1183 			sock_map_unref(elem->sk, elem);
1184 			rcu_read_unlock();
1185 			release_sock(elem->sk);
1186 			sock_put(elem->sk);
1187 			sock_hash_free_elem(htab, elem);
1188 		}
1189 		cond_resched();
1190 	}
1191 
1192 	/* wait for psock readers accessing its map link */
1193 	synchronize_rcu();
1194 
1195 	bpf_map_area_free(htab->buckets);
1196 	bpf_map_area_free(htab);
1197 }
1198 
1199 static void *sock_hash_lookup_sys(struct bpf_map *map, void *key)
1200 {
1201 	struct sock *sk;
1202 
1203 	if (map->value_size != sizeof(u64))
1204 		return ERR_PTR(-ENOSPC);
1205 
1206 	sk = __sock_hash_lookup_elem(map, key);
1207 	if (!sk)
1208 		return ERR_PTR(-ENOENT);
1209 
1210 	__sock_gen_cookie(sk);
1211 	return &sk->sk_cookie;
1212 }
1213 
1214 static void *sock_hash_lookup(struct bpf_map *map, void *key)
1215 {
1216 	struct sock *sk;
1217 
1218 	sk = __sock_hash_lookup_elem(map, key);
1219 	if (!sk)
1220 		return NULL;
1221 	if (sk_is_refcounted(sk) && !refcount_inc_not_zero(&sk->sk_refcnt))
1222 		return NULL;
1223 	return sk;
1224 }
1225 
1226 static void sock_hash_release_progs(struct bpf_map *map)
1227 {
1228 	psock_progs_drop(&container_of(map, struct bpf_shtab, map)->progs);
1229 }
1230 
1231 BPF_CALL_4(bpf_sock_hash_update, struct bpf_sock_ops_kern *, sops,
1232 	   struct bpf_map *, map, void *, key, u64, flags)
1233 {
1234 	WARN_ON_ONCE(!rcu_read_lock_held());
1235 
1236 	if (likely(sock_map_sk_is_suitable(sops->sk) &&
1237 		   sock_map_op_okay(sops)))
1238 		return sock_hash_update_common(map, key, sops->sk, flags);
1239 	return -EOPNOTSUPP;
1240 }
1241 
1242 const struct bpf_func_proto bpf_sock_hash_update_proto = {
1243 	.func		= bpf_sock_hash_update,
1244 	.gpl_only	= false,
1245 	.pkt_access	= true,
1246 	.ret_type	= RET_INTEGER,
1247 	.arg1_type	= ARG_PTR_TO_CTX,
1248 	.arg2_type	= ARG_CONST_MAP_PTR,
1249 	.arg3_type	= ARG_PTR_TO_MAP_KEY,
1250 	.arg4_type	= ARG_ANYTHING,
1251 };
1252 
1253 BPF_CALL_4(bpf_sk_redirect_hash, struct sk_buff *, skb,
1254 	   struct bpf_map *, map, void *, key, u64, flags)
1255 {
1256 	struct sock *sk;
1257 
1258 	if (unlikely(flags & ~(BPF_F_INGRESS)))
1259 		return SK_DROP;
1260 
1261 	sk = __sock_hash_lookup_elem(map, key);
1262 	if (unlikely(!sk || !sock_map_redirect_allowed(sk)))
1263 		return SK_DROP;
1264 	if ((flags & BPF_F_INGRESS) && sk_is_vsock(sk))
1265 		return SK_DROP;
1266 
1267 	skb_bpf_set_redir(skb, sk, flags & BPF_F_INGRESS);
1268 	return SK_PASS;
1269 }
1270 
1271 const struct bpf_func_proto bpf_sk_redirect_hash_proto = {
1272 	.func           = bpf_sk_redirect_hash,
1273 	.gpl_only       = false,
1274 	.ret_type       = RET_INTEGER,
1275 	.arg1_type	= ARG_PTR_TO_CTX,
1276 	.arg2_type      = ARG_CONST_MAP_PTR,
1277 	.arg3_type      = ARG_PTR_TO_MAP_KEY,
1278 	.arg4_type      = ARG_ANYTHING,
1279 };
1280 
1281 BPF_CALL_4(bpf_msg_redirect_hash, struct sk_msg *, msg,
1282 	   struct bpf_map *, map, void *, key, u64, flags)
1283 {
1284 	struct sock *sk;
1285 
1286 	if (unlikely(flags & ~(BPF_F_INGRESS)))
1287 		return SK_DROP;
1288 
1289 	sk = __sock_hash_lookup_elem(map, key);
1290 	if (unlikely(!sk || !sock_map_redirect_allowed(sk)))
1291 		return SK_DROP;
1292 	if (!(flags & BPF_F_INGRESS) && !sk_is_tcp(sk))
1293 		return SK_DROP;
1294 	if (sk_is_vsock(sk))
1295 		return SK_DROP;
1296 
1297 	msg->flags = flags;
1298 	msg->sk_redir = sk;
1299 	return SK_PASS;
1300 }
1301 
1302 const struct bpf_func_proto bpf_msg_redirect_hash_proto = {
1303 	.func           = bpf_msg_redirect_hash,
1304 	.gpl_only       = false,
1305 	.ret_type       = RET_INTEGER,
1306 	.arg1_type	= ARG_PTR_TO_CTX,
1307 	.arg2_type      = ARG_CONST_MAP_PTR,
1308 	.arg3_type      = ARG_PTR_TO_MAP_KEY,
1309 	.arg4_type      = ARG_ANYTHING,
1310 };
1311 
1312 struct sock_hash_seq_info {
1313 	struct bpf_map *map;
1314 	struct bpf_shtab *htab;
1315 	u32 bucket_id;
1316 };
1317 
1318 static void *sock_hash_seq_find_next(struct sock_hash_seq_info *info,
1319 				     struct bpf_shtab_elem *prev_elem)
1320 {
1321 	const struct bpf_shtab *htab = info->htab;
1322 	struct bpf_shtab_bucket *bucket;
1323 	struct bpf_shtab_elem *elem;
1324 	struct hlist_node *node;
1325 
1326 	/* try to find next elem in the same bucket */
1327 	if (prev_elem) {
1328 		node = rcu_dereference(hlist_next_rcu(&prev_elem->node));
1329 		elem = hlist_entry_safe(node, struct bpf_shtab_elem, node);
1330 		if (elem)
1331 			return elem;
1332 
1333 		/* no more elements, continue in the next bucket */
1334 		info->bucket_id++;
1335 	}
1336 
1337 	for (; info->bucket_id < htab->buckets_num; info->bucket_id++) {
1338 		bucket = &htab->buckets[info->bucket_id];
1339 		node = rcu_dereference(hlist_first_rcu(&bucket->head));
1340 		elem = hlist_entry_safe(node, struct bpf_shtab_elem, node);
1341 		if (elem)
1342 			return elem;
1343 	}
1344 
1345 	return NULL;
1346 }
1347 
1348 static void *sock_hash_seq_start(struct seq_file *seq, loff_t *pos)
1349 	__acquires(rcu)
1350 {
1351 	struct sock_hash_seq_info *info = seq->private;
1352 
1353 	if (*pos == 0)
1354 		++*pos;
1355 
1356 	/* pairs with sock_hash_seq_stop */
1357 	rcu_read_lock();
1358 	return sock_hash_seq_find_next(info, NULL);
1359 }
1360 
1361 static void *sock_hash_seq_next(struct seq_file *seq, void *v, loff_t *pos)
1362 	__must_hold(rcu)
1363 {
1364 	struct sock_hash_seq_info *info = seq->private;
1365 
1366 	++*pos;
1367 	return sock_hash_seq_find_next(info, v);
1368 }
1369 
1370 static int sock_hash_seq_show(struct seq_file *seq, void *v)
1371 	__must_hold(rcu)
1372 {
1373 	struct sock_hash_seq_info *info = seq->private;
1374 	struct bpf_iter__sockmap ctx = {};
1375 	struct bpf_shtab_elem *elem = v;
1376 	struct bpf_iter_meta meta;
1377 	struct bpf_prog *prog;
1378 
1379 	meta.seq = seq;
1380 	prog = bpf_iter_get_info(&meta, !elem);
1381 	if (!prog)
1382 		return 0;
1383 
1384 	ctx.meta = &meta;
1385 	ctx.map = info->map;
1386 	if (elem) {
1387 		ctx.key = elem->key;
1388 		ctx.sk = elem->sk;
1389 	}
1390 
1391 	return bpf_iter_run_prog(prog, &ctx);
1392 }
1393 
1394 static void sock_hash_seq_stop(struct seq_file *seq, void *v)
1395 	__releases(rcu)
1396 {
1397 	if (!v)
1398 		(void)sock_hash_seq_show(seq, NULL);
1399 
1400 	/* pairs with sock_hash_seq_start */
1401 	rcu_read_unlock();
1402 }
1403 
1404 static const struct seq_operations sock_hash_seq_ops = {
1405 	.start	= sock_hash_seq_start,
1406 	.next	= sock_hash_seq_next,
1407 	.stop	= sock_hash_seq_stop,
1408 	.show	= sock_hash_seq_show,
1409 };
1410 
1411 static int sock_hash_init_seq_private(void *priv_data,
1412 				      struct bpf_iter_aux_info *aux)
1413 {
1414 	struct sock_hash_seq_info *info = priv_data;
1415 
1416 	bpf_map_inc_with_uref(aux->map);
1417 	info->map = aux->map;
1418 	info->htab = container_of(aux->map, struct bpf_shtab, map);
1419 	return 0;
1420 }
1421 
1422 static void sock_hash_fini_seq_private(void *priv_data)
1423 {
1424 	struct sock_hash_seq_info *info = priv_data;
1425 
1426 	bpf_map_put_with_uref(info->map);
1427 }
1428 
1429 static u64 sock_hash_mem_usage(const struct bpf_map *map)
1430 {
1431 	struct bpf_shtab *htab = container_of(map, struct bpf_shtab, map);
1432 	u64 usage = sizeof(*htab);
1433 
1434 	usage += htab->buckets_num * sizeof(struct bpf_shtab_bucket);
1435 	usage += atomic_read(&htab->count) * (u64)htab->elem_size;
1436 	return usage;
1437 }
1438 
1439 static const struct bpf_iter_seq_info sock_hash_iter_seq_info = {
1440 	.seq_ops		= &sock_hash_seq_ops,
1441 	.init_seq_private	= sock_hash_init_seq_private,
1442 	.fini_seq_private	= sock_hash_fini_seq_private,
1443 	.seq_priv_size		= sizeof(struct sock_hash_seq_info),
1444 };
1445 
1446 BTF_ID_LIST_SINGLE(sock_hash_map_btf_ids, struct, bpf_shtab)
1447 const struct bpf_map_ops sock_hash_ops = {
1448 	.map_meta_equal		= bpf_map_meta_equal,
1449 	.map_alloc		= sock_hash_alloc,
1450 	.map_free		= sock_hash_free,
1451 	.map_get_next_key	= sock_hash_get_next_key,
1452 	.map_update_elem	= sock_map_update_elem,
1453 	.map_delete_elem	= sock_hash_delete_elem,
1454 	.map_lookup_elem	= sock_hash_lookup,
1455 	.map_lookup_elem_sys_only = sock_hash_lookup_sys,
1456 	.map_release_uref	= sock_hash_release_progs,
1457 	.map_check_btf		= map_check_no_btf,
1458 	.map_mem_usage		= sock_hash_mem_usage,
1459 	.map_btf_id		= &sock_hash_map_btf_ids[0],
1460 	.iter_seq_info		= &sock_hash_iter_seq_info,
1461 };
1462 
1463 static struct sk_psock_progs *sock_map_progs(struct bpf_map *map)
1464 {
1465 	switch (map->map_type) {
1466 	case BPF_MAP_TYPE_SOCKMAP:
1467 		return &container_of(map, struct bpf_stab, map)->progs;
1468 	case BPF_MAP_TYPE_SOCKHASH:
1469 		return &container_of(map, struct bpf_shtab, map)->progs;
1470 	default:
1471 		break;
1472 	}
1473 
1474 	return NULL;
1475 }
1476 
1477 static int sock_map_prog_link_lookup(struct bpf_map *map, struct bpf_prog ***pprog,
1478 				     struct bpf_link ***plink, u32 which)
1479 {
1480 	struct sk_psock_progs *progs = sock_map_progs(map);
1481 	struct bpf_prog **cur_pprog;
1482 	struct bpf_link **cur_plink;
1483 
1484 	if (!progs)
1485 		return -EOPNOTSUPP;
1486 
1487 	switch (which) {
1488 	case BPF_SK_MSG_VERDICT:
1489 		cur_pprog = &progs->msg_parser;
1490 		cur_plink = &progs->msg_parser_link;
1491 		break;
1492 #if IS_ENABLED(CONFIG_BPF_STREAM_PARSER)
1493 	case BPF_SK_SKB_STREAM_PARSER:
1494 		cur_pprog = &progs->stream_parser;
1495 		cur_plink = &progs->stream_parser_link;
1496 		break;
1497 #endif
1498 	case BPF_SK_SKB_STREAM_VERDICT:
1499 		if (progs->skb_verdict)
1500 			return -EBUSY;
1501 		cur_pprog = &progs->stream_verdict;
1502 		cur_plink = &progs->stream_verdict_link;
1503 		break;
1504 	case BPF_SK_SKB_VERDICT:
1505 		if (progs->stream_verdict)
1506 			return -EBUSY;
1507 		cur_pprog = &progs->skb_verdict;
1508 		cur_plink = &progs->skb_verdict_link;
1509 		break;
1510 	default:
1511 		return -EOPNOTSUPP;
1512 	}
1513 
1514 	*pprog = cur_pprog;
1515 	if (plink)
1516 		*plink = cur_plink;
1517 	return 0;
1518 }
1519 
1520 static int sock_map_prog_attach_check(enum bpf_attach_type attach_type,
1521 				      struct bpf_prog *prog)
1522 {
1523 	/* A stream parser must not modify the skb, only measure it. */
1524 	if (prog && attach_type == BPF_SK_SKB_STREAM_PARSER &&
1525 	    prog->aux->changes_pkt_data)
1526 		return -EINVAL;
1527 
1528 	return 0;
1529 }
1530 
1531 /* Handle the following four cases:
1532  * prog_attach: prog != NULL, old == NULL, link == NULL
1533  * prog_detach: prog == NULL, old != NULL, link == NULL
1534  * link_attach: prog != NULL, old == NULL, link != NULL
1535  * link_detach: prog == NULL, old != NULL, link != NULL
1536  */
1537 static int sock_map_prog_update(struct bpf_map *map, struct bpf_prog *prog,
1538 				struct bpf_prog *old, struct bpf_link *link,
1539 				u32 which)
1540 {
1541 	struct bpf_prog **pprog;
1542 	struct bpf_link **plink;
1543 	int ret;
1544 
1545 	ret = sock_map_prog_link_lookup(map, &pprog, &plink, which);
1546 	if (ret)
1547 		return ret;
1548 
1549 	ret = sock_map_prog_attach_check(which, prog);
1550 	if (ret)
1551 		return ret;
1552 
1553 	/* for prog_attach/prog_detach/link_attach, return error if a bpf_link
1554 	 * exists for that prog.
1555 	 */
1556 	if ((!link || prog) && *plink)
1557 		return -EBUSY;
1558 
1559 	if (old) {
1560 		ret = psock_replace_prog(pprog, prog, old);
1561 		if (!ret)
1562 			*plink = NULL;
1563 	} else {
1564 		psock_set_prog(pprog, prog);
1565 		if (link)
1566 			*plink = link;
1567 	}
1568 
1569 	return ret;
1570 }
1571 
1572 int sock_map_bpf_prog_query(const union bpf_attr *attr,
1573 			    union bpf_attr __user *uattr)
1574 {
1575 	__u32 __user *prog_ids = u64_to_user_ptr(attr->query.prog_ids);
1576 	u32 prog_cnt = 0, flags = 0;
1577 	struct bpf_prog **pprog;
1578 	struct bpf_prog *prog;
1579 	struct bpf_map *map;
1580 	u32 id = 0;
1581 	int ret;
1582 
1583 	if (attr->query.query_flags)
1584 		return -EINVAL;
1585 
1586 	CLASS(fd, f)(attr->target_fd);
1587 	map = __bpf_map_get(f);
1588 	if (IS_ERR(map))
1589 		return PTR_ERR(map);
1590 
1591 	rcu_read_lock();
1592 
1593 	ret = sock_map_prog_link_lookup(map, &pprog, NULL, attr->query.attach_type);
1594 	if (ret)
1595 		goto end;
1596 
1597 	prog = *pprog;
1598 	prog_cnt = !prog ? 0 : 1;
1599 
1600 	if (!attr->query.prog_cnt || !prog_ids || !prog_cnt)
1601 		goto end;
1602 
1603 	/* we do not hold the refcnt, the bpf prog may be released
1604 	 * asynchronously and the id would be set to 0.
1605 	 */
1606 	id = data_race(prog->aux->id);
1607 	if (id == 0)
1608 		prog_cnt = 0;
1609 
1610 end:
1611 	rcu_read_unlock();
1612 
1613 	if (copy_to_user(&uattr->query.attach_flags, &flags, sizeof(flags)) ||
1614 	    (id != 0 && copy_to_user(prog_ids, &id, sizeof(u32))) ||
1615 	    copy_to_user(&uattr->query.prog_cnt, &prog_cnt, sizeof(prog_cnt)))
1616 		ret = -EFAULT;
1617 
1618 	return ret;
1619 }
1620 
1621 static void sock_map_unlink(struct sock *sk, struct sk_psock_link *link)
1622 {
1623 	switch (link->map->map_type) {
1624 	case BPF_MAP_TYPE_SOCKMAP:
1625 		return sock_map_delete_from_link(link->map, sk,
1626 						 link->link_raw);
1627 	case BPF_MAP_TYPE_SOCKHASH:
1628 		return sock_hash_delete_from_link(link->map, sk,
1629 						  link->link_raw);
1630 	default:
1631 		break;
1632 	}
1633 }
1634 
1635 static void sock_map_remove_links(struct sock *sk, struct sk_psock *psock)
1636 {
1637 	struct sk_psock_link *link;
1638 
1639 	while ((link = sk_psock_link_pop(psock))) {
1640 		sock_map_unlink(sk, link);
1641 		sk_psock_free_link(link);
1642 	}
1643 }
1644 
1645 void sock_map_unhash(struct sock *sk)
1646 {
1647 	void (*saved_unhash)(struct sock *sk);
1648 	struct sk_psock *psock;
1649 
1650 retry:
1651 	rcu_read_lock();
1652 	psock = sk_psock(sk);
1653 	if (unlikely(!psock)) {
1654 		rcu_read_unlock();
1655 		saved_unhash = READ_ONCE(sk->sk_prot)->unhash;
1656 		if (unlikely(saved_unhash == sock_map_unhash))
1657 			goto retry;
1658 	} else {
1659 		saved_unhash = psock->saved_unhash;
1660 		sock_map_remove_links(sk, psock);
1661 		rcu_read_unlock();
1662 
1663 		if (WARN_ON_ONCE(saved_unhash == sock_map_unhash))
1664 			return;
1665 	}
1666 
1667 	if (saved_unhash)
1668 		saved_unhash(sk);
1669 }
1670 EXPORT_SYMBOL_GPL(sock_map_unhash);
1671 
1672 void sock_map_destroy(struct sock *sk)
1673 {
1674 	void (*saved_destroy)(struct sock *sk);
1675 	struct sk_psock *psock;
1676 
1677 retry:
1678 	rcu_read_lock();
1679 	psock = sk_psock_get(sk);
1680 	if (unlikely(!psock)) {
1681 		rcu_read_unlock();
1682 		saved_destroy = READ_ONCE(sk->sk_prot)->destroy;
1683 		if (unlikely(saved_destroy == sock_map_destroy))
1684 			goto retry;
1685 	} else {
1686 		saved_destroy = psock->saved_destroy;
1687 		sock_map_remove_links(sk, psock);
1688 		rcu_read_unlock();
1689 		sk_psock_stop(psock);
1690 		sk_psock_put(sk, psock);
1691 
1692 		if (WARN_ON_ONCE(saved_destroy == sock_map_destroy))
1693 			return;
1694 	}
1695 
1696 	if (saved_destroy)
1697 		saved_destroy(sk);
1698 }
1699 EXPORT_SYMBOL_GPL(sock_map_destroy);
1700 
1701 void sock_map_close(struct sock *sk, long timeout)
1702 {
1703 	void (*saved_close)(struct sock *sk, long timeout);
1704 	struct sk_psock *psock;
1705 
1706 retry:
1707 	lock_sock(sk);
1708 	rcu_read_lock();
1709 	psock = sk_psock_get(sk);
1710 	if (likely(psock)) {
1711 		saved_close = psock->saved_close;
1712 		sock_map_remove_links(sk, psock);
1713 		rcu_read_unlock();
1714 		sk_psock_stop(psock);
1715 		release_sock(sk);
1716 		cancel_delayed_work_sync(&psock->work);
1717 		sk_psock_put(sk, psock);
1718 
1719 		/* Make sure we do not recurse. This is a bug.
1720 		 * Leak the socket instead of crashing on a stack overflow.
1721 		 */
1722 		if (WARN_ON_ONCE(saved_close == sock_map_close))
1723 			return;
1724 	} else {
1725 		saved_close = READ_ONCE(sk->sk_prot)->close;
1726 		rcu_read_unlock();
1727 		release_sock(sk);
1728 
1729 		if (unlikely(saved_close == sock_map_close))
1730 			goto retry;
1731 	}
1732 
1733 	saved_close(sk, timeout);
1734 }
1735 EXPORT_SYMBOL_GPL(sock_map_close);
1736 
1737 struct sockmap_link {
1738 	struct bpf_link link;
1739 	struct bpf_map *map;
1740 };
1741 
1742 static void sock_map_link_release(struct bpf_link *link)
1743 {
1744 	struct sockmap_link *sockmap_link = container_of(link, struct sockmap_link, link);
1745 
1746 	mutex_lock(&sockmap_mutex);
1747 	if (!sockmap_link->map)
1748 		goto out;
1749 
1750 	WARN_ON_ONCE(sock_map_prog_update(sockmap_link->map, NULL, link->prog, link,
1751 					  link->attach_type));
1752 
1753 	bpf_map_put_with_uref(sockmap_link->map);
1754 	sockmap_link->map = NULL;
1755 out:
1756 	mutex_unlock(&sockmap_mutex);
1757 }
1758 
1759 static int sock_map_link_detach(struct bpf_link *link)
1760 {
1761 	sock_map_link_release(link);
1762 	return 0;
1763 }
1764 
1765 static void sock_map_link_dealloc(struct bpf_link *link)
1766 {
1767 	kfree(link);
1768 }
1769 
1770 /* Handle the following two cases:
1771  * case 1: link != NULL, prog != NULL, old != NULL
1772  * case 2: link != NULL, prog != NULL, old == NULL
1773  */
1774 static int sock_map_link_update_prog(struct bpf_link *link,
1775 				     struct bpf_prog *prog,
1776 				     struct bpf_prog *old)
1777 {
1778 	const struct sockmap_link *sockmap_link = container_of(link, struct sockmap_link, link);
1779 	struct bpf_prog **pprog, *old_link_prog;
1780 	struct bpf_link **plink;
1781 	int ret = 0;
1782 
1783 	mutex_lock(&sockmap_mutex);
1784 
1785 	/* If old prog is not NULL, ensure old prog is the same as link->prog. */
1786 	if (old && link->prog != old) {
1787 		ret = -EPERM;
1788 		goto out;
1789 	}
1790 	/* Ensure link->prog has the same type/attach_type as the new prog. */
1791 	if (link->prog->type != prog->type ||
1792 	    link->prog->expected_attach_type != prog->expected_attach_type) {
1793 		ret = -EINVAL;
1794 		goto out;
1795 	}
1796 
1797 	ret = sock_map_prog_attach_check(link->attach_type, prog);
1798 	if (ret)
1799 		goto out;
1800 
1801 	if (!sockmap_link->map) {
1802 		ret = -ENOLINK;
1803 		goto out;
1804 	}
1805 
1806 	ret = sock_map_prog_link_lookup(sockmap_link->map, &pprog, &plink,
1807 					link->attach_type);
1808 	if (ret)
1809 		goto out;
1810 
1811 	/* return error if the stored bpf_link does not match the incoming bpf_link. */
1812 	if (link != *plink) {
1813 		ret = -EBUSY;
1814 		goto out;
1815 	}
1816 
1817 	if (old) {
1818 		ret = psock_replace_prog(pprog, prog, old);
1819 		if (ret)
1820 			goto out;
1821 	} else {
1822 		psock_set_prog(pprog, prog);
1823 	}
1824 
1825 	bpf_prog_inc(prog);
1826 	old_link_prog = xchg(&link->prog, prog);
1827 	bpf_prog_put(old_link_prog);
1828 
1829 out:
1830 	mutex_unlock(&sockmap_mutex);
1831 	return ret;
1832 }
1833 
1834 static u32 sock_map_link_get_map_id(const struct sockmap_link *sockmap_link)
1835 {
1836 	u32 map_id = 0;
1837 
1838 	mutex_lock(&sockmap_mutex);
1839 	if (sockmap_link->map)
1840 		map_id = sockmap_link->map->id;
1841 	mutex_unlock(&sockmap_mutex);
1842 	return map_id;
1843 }
1844 
1845 static int sock_map_link_fill_info(const struct bpf_link *link,
1846 				   struct bpf_link_info *info)
1847 {
1848 	const struct sockmap_link *sockmap_link = container_of(link, struct sockmap_link, link);
1849 	u32 map_id = sock_map_link_get_map_id(sockmap_link);
1850 
1851 	info->sockmap.map_id = map_id;
1852 	info->sockmap.attach_type = link->attach_type;
1853 	return 0;
1854 }
1855 
1856 static void sock_map_link_show_fdinfo(const struct bpf_link *link,
1857 				      struct seq_file *seq)
1858 {
1859 	const struct sockmap_link *sockmap_link = container_of(link, struct sockmap_link, link);
1860 	u32 map_id = sock_map_link_get_map_id(sockmap_link);
1861 
1862 	seq_printf(seq, "map_id:\t%u\n", map_id);
1863 	seq_printf(seq, "attach_type:\t%u\n", link->attach_type);
1864 }
1865 
1866 static const struct bpf_link_ops sock_map_link_ops = {
1867 	.release = sock_map_link_release,
1868 	.dealloc = sock_map_link_dealloc,
1869 	.detach = sock_map_link_detach,
1870 	.update_prog = sock_map_link_update_prog,
1871 	.fill_link_info = sock_map_link_fill_info,
1872 	.show_fdinfo = sock_map_link_show_fdinfo,
1873 };
1874 
1875 int sock_map_link_create(const union bpf_attr *attr, struct bpf_prog *prog)
1876 {
1877 	struct bpf_link_primer link_primer;
1878 	struct sockmap_link *sockmap_link;
1879 	enum bpf_attach_type attach_type;
1880 	struct bpf_map *map;
1881 	int ret;
1882 
1883 	if (attr->link_create.flags)
1884 		return -EINVAL;
1885 
1886 	map = bpf_map_get_with_uref(attr->link_create.target_fd);
1887 	if (IS_ERR(map))
1888 		return PTR_ERR(map);
1889 	if (map->map_type != BPF_MAP_TYPE_SOCKMAP && map->map_type != BPF_MAP_TYPE_SOCKHASH) {
1890 		ret = -EINVAL;
1891 		goto out;
1892 	}
1893 
1894 	sockmap_link = kzalloc_obj(*sockmap_link, GFP_USER);
1895 	if (!sockmap_link) {
1896 		ret = -ENOMEM;
1897 		goto out;
1898 	}
1899 
1900 	attach_type = attr->link_create.attach_type;
1901 	bpf_link_init(&sockmap_link->link, BPF_LINK_TYPE_SOCKMAP, &sock_map_link_ops, prog,
1902 		      attach_type);
1903 	sockmap_link->map = map;
1904 
1905 	ret = bpf_link_prime(&sockmap_link->link, &link_primer);
1906 	if (ret) {
1907 		kfree(sockmap_link);
1908 		goto out;
1909 	}
1910 
1911 	mutex_lock(&sockmap_mutex);
1912 	ret = sock_map_prog_update(map, prog, NULL, &sockmap_link->link, attach_type);
1913 	mutex_unlock(&sockmap_mutex);
1914 	if (ret) {
1915 		bpf_link_cleanup(&link_primer);
1916 		goto out;
1917 	}
1918 
1919 	/* Increase refcnt for the prog since when old prog is replaced with
1920 	 * psock_replace_prog() and psock_set_prog() its refcnt will be decreased.
1921 	 *
1922 	 * Actually, we do not need to increase refcnt for the prog since bpf_link
1923 	 * will hold a reference. But in order to have less complexity w.r.t.
1924 	 * replacing/setting prog, let us increase the refcnt to make things simpler.
1925 	 */
1926 	bpf_prog_inc(prog);
1927 
1928 	return bpf_link_settle(&link_primer);
1929 
1930 out:
1931 	bpf_map_put_with_uref(map);
1932 	return ret;
1933 }
1934 
1935 static int sock_map_iter_attach_target(struct bpf_prog *prog,
1936 				       union bpf_iter_link_info *linfo,
1937 				       struct bpf_iter_aux_info *aux)
1938 {
1939 	struct bpf_map *map;
1940 	int err = -EINVAL;
1941 
1942 	if (!linfo->map.map_fd)
1943 		return -EBADF;
1944 
1945 	map = bpf_map_get_with_uref(linfo->map.map_fd);
1946 	if (IS_ERR(map))
1947 		return PTR_ERR(map);
1948 
1949 	if (map->map_type != BPF_MAP_TYPE_SOCKMAP &&
1950 	    map->map_type != BPF_MAP_TYPE_SOCKHASH)
1951 		goto put_map;
1952 
1953 	if (prog->aux->max_rdonly_access > map->key_size) {
1954 		err = -EACCES;
1955 		goto put_map;
1956 	}
1957 
1958 	aux->map = map;
1959 	return 0;
1960 
1961 put_map:
1962 	bpf_map_put_with_uref(map);
1963 	return err;
1964 }
1965 
1966 static void sock_map_iter_detach_target(struct bpf_iter_aux_info *aux)
1967 {
1968 	bpf_map_put_with_uref(aux->map);
1969 }
1970 
1971 static struct bpf_iter_reg sock_map_iter_reg = {
1972 	.target			= "sockmap",
1973 	.attach_target		= sock_map_iter_attach_target,
1974 	.detach_target		= sock_map_iter_detach_target,
1975 	.show_fdinfo		= bpf_iter_map_show_fdinfo,
1976 	.fill_link_info		= bpf_iter_map_fill_link_info,
1977 	.ctx_arg_info_size	= 2,
1978 	.ctx_arg_info		= {
1979 		{ offsetof(struct bpf_iter__sockmap, key),
1980 		  PTR_TO_BUF | PTR_MAYBE_NULL | MEM_RDONLY },
1981 		{ offsetof(struct bpf_iter__sockmap, sk),
1982 		  PTR_TO_BTF_ID_OR_NULL },
1983 	},
1984 };
1985 
1986 static int __init bpf_sockmap_iter_init(void)
1987 {
1988 	sock_map_iter_reg.ctx_arg_info[1].btf_id =
1989 		btf_sock_ids[BTF_SOCK_TYPE_SOCK];
1990 	return bpf_iter_reg_target(&sock_map_iter_reg);
1991 }
1992 late_initcall(bpf_sockmap_iter_init);
1993