xref: /openbmc/linux/net/key/af_key.c (revision 4562236b)
1 /*
2  * net/key/af_key.c	An implementation of PF_KEYv2 sockets.
3  *
4  *		This program is free software; you can redistribute it and/or
5  *		modify it under the terms of the GNU General Public License
6  *		as published by the Free Software Foundation; either version
7  *		2 of the License, or (at your option) any later version.
8  *
9  * Authors:	Maxim Giryaev	<gem@asplinux.ru>
10  *		David S. Miller	<davem@redhat.com>
11  *		Alexey Kuznetsov <kuznet@ms2.inr.ac.ru>
12  *		Kunihiro Ishiguro <kunihiro@ipinfusion.com>
13  *		Kazunori MIYAZAWA / USAGI Project <miyazawa@linux-ipv6.org>
14  *		Derek Atkins <derek@ihtfp.com>
15  */
16 
17 #include <linux/capability.h>
18 #include <linux/module.h>
19 #include <linux/kernel.h>
20 #include <linux/socket.h>
21 #include <linux/pfkeyv2.h>
22 #include <linux/ipsec.h>
23 #include <linux/skbuff.h>
24 #include <linux/rtnetlink.h>
25 #include <linux/in.h>
26 #include <linux/in6.h>
27 #include <linux/proc_fs.h>
28 #include <linux/init.h>
29 #include <linux/slab.h>
30 #include <net/net_namespace.h>
31 #include <net/netns/generic.h>
32 #include <net/xfrm.h>
33 
34 #include <net/sock.h>
35 
36 #define _X2KEY(x) ((x) == XFRM_INF ? 0 : (x))
37 #define _KEY2X(x) ((x) == 0 ? XFRM_INF : (x))
38 
39 static unsigned int pfkey_net_id __read_mostly;
40 struct netns_pfkey {
41 	/* List of all pfkey sockets. */
42 	struct hlist_head table;
43 	atomic_t socks_nr;
44 };
45 static DEFINE_MUTEX(pfkey_mutex);
46 
47 #define DUMMY_MARK 0
48 static const struct xfrm_mark dummy_mark = {0, 0};
49 struct pfkey_sock {
50 	/* struct sock must be the first member of struct pfkey_sock */
51 	struct sock	sk;
52 	int		registered;
53 	int		promisc;
54 
55 	struct {
56 		uint8_t		msg_version;
57 		uint32_t	msg_portid;
58 		int		(*dump)(struct pfkey_sock *sk);
59 		void		(*done)(struct pfkey_sock *sk);
60 		union {
61 			struct xfrm_policy_walk	policy;
62 			struct xfrm_state_walk	state;
63 		} u;
64 		struct sk_buff	*skb;
65 	} dump;
66 	struct mutex dump_lock;
67 };
68 
69 static int parse_sockaddr_pair(struct sockaddr *sa, int ext_len,
70 			       xfrm_address_t *saddr, xfrm_address_t *daddr,
71 			       u16 *family);
72 
73 static inline struct pfkey_sock *pfkey_sk(struct sock *sk)
74 {
75 	return (struct pfkey_sock *)sk;
76 }
77 
78 static int pfkey_can_dump(const struct sock *sk)
79 {
80 	if (3 * atomic_read(&sk->sk_rmem_alloc) <= 2 * sk->sk_rcvbuf)
81 		return 1;
82 	return 0;
83 }
84 
85 static void pfkey_terminate_dump(struct pfkey_sock *pfk)
86 {
87 	if (pfk->dump.dump) {
88 		if (pfk->dump.skb) {
89 			kfree_skb(pfk->dump.skb);
90 			pfk->dump.skb = NULL;
91 		}
92 		pfk->dump.done(pfk);
93 		pfk->dump.dump = NULL;
94 		pfk->dump.done = NULL;
95 	}
96 }
97 
98 static void pfkey_sock_destruct(struct sock *sk)
99 {
100 	struct net *net = sock_net(sk);
101 	struct netns_pfkey *net_pfkey = net_generic(net, pfkey_net_id);
102 
103 	pfkey_terminate_dump(pfkey_sk(sk));
104 	skb_queue_purge(&sk->sk_receive_queue);
105 
106 	if (!sock_flag(sk, SOCK_DEAD)) {
107 		pr_err("Attempt to release alive pfkey socket: %p\n", sk);
108 		return;
109 	}
110 
111 	WARN_ON(atomic_read(&sk->sk_rmem_alloc));
112 	WARN_ON(refcount_read(&sk->sk_wmem_alloc));
113 
114 	atomic_dec(&net_pfkey->socks_nr);
115 }
116 
117 static const struct proto_ops pfkey_ops;
118 
119 static void pfkey_insert(struct sock *sk)
120 {
121 	struct net *net = sock_net(sk);
122 	struct netns_pfkey *net_pfkey = net_generic(net, pfkey_net_id);
123 
124 	mutex_lock(&pfkey_mutex);
125 	sk_add_node_rcu(sk, &net_pfkey->table);
126 	mutex_unlock(&pfkey_mutex);
127 }
128 
129 static void pfkey_remove(struct sock *sk)
130 {
131 	mutex_lock(&pfkey_mutex);
132 	sk_del_node_init_rcu(sk);
133 	mutex_unlock(&pfkey_mutex);
134 }
135 
136 static struct proto key_proto = {
137 	.name	  = "KEY",
138 	.owner	  = THIS_MODULE,
139 	.obj_size = sizeof(struct pfkey_sock),
140 };
141 
142 static int pfkey_create(struct net *net, struct socket *sock, int protocol,
143 			int kern)
144 {
145 	struct netns_pfkey *net_pfkey = net_generic(net, pfkey_net_id);
146 	struct sock *sk;
147 	struct pfkey_sock *pfk;
148 	int err;
149 
150 	if (!ns_capable(net->user_ns, CAP_NET_ADMIN))
151 		return -EPERM;
152 	if (sock->type != SOCK_RAW)
153 		return -ESOCKTNOSUPPORT;
154 	if (protocol != PF_KEY_V2)
155 		return -EPROTONOSUPPORT;
156 
157 	err = -ENOMEM;
158 	sk = sk_alloc(net, PF_KEY, GFP_KERNEL, &key_proto, kern);
159 	if (sk == NULL)
160 		goto out;
161 
162 	pfk = pfkey_sk(sk);
163 	mutex_init(&pfk->dump_lock);
164 
165 	sock->ops = &pfkey_ops;
166 	sock_init_data(sock, sk);
167 
168 	sk->sk_family = PF_KEY;
169 	sk->sk_destruct = pfkey_sock_destruct;
170 
171 	atomic_inc(&net_pfkey->socks_nr);
172 
173 	pfkey_insert(sk);
174 
175 	return 0;
176 out:
177 	return err;
178 }
179 
180 static int pfkey_release(struct socket *sock)
181 {
182 	struct sock *sk = sock->sk;
183 
184 	if (!sk)
185 		return 0;
186 
187 	pfkey_remove(sk);
188 
189 	sock_orphan(sk);
190 	sock->sk = NULL;
191 	skb_queue_purge(&sk->sk_write_queue);
192 
193 	synchronize_rcu();
194 	sock_put(sk);
195 
196 	return 0;
197 }
198 
199 static int pfkey_broadcast_one(struct sk_buff *skb, struct sk_buff **skb2,
200 			       gfp_t allocation, struct sock *sk)
201 {
202 	int err = -ENOBUFS;
203 
204 	sock_hold(sk);
205 	if (*skb2 == NULL) {
206 		if (refcount_read(&skb->users) != 1) {
207 			*skb2 = skb_clone(skb, allocation);
208 		} else {
209 			*skb2 = skb;
210 			refcount_inc(&skb->users);
211 		}
212 	}
213 	if (*skb2 != NULL) {
214 		if (atomic_read(&sk->sk_rmem_alloc) <= sk->sk_rcvbuf) {
215 			skb_set_owner_r(*skb2, sk);
216 			skb_queue_tail(&sk->sk_receive_queue, *skb2);
217 			sk->sk_data_ready(sk);
218 			*skb2 = NULL;
219 			err = 0;
220 		}
221 	}
222 	sock_put(sk);
223 	return err;
224 }
225 
226 /* Send SKB to all pfkey sockets matching selected criteria.  */
227 #define BROADCAST_ALL		0
228 #define BROADCAST_ONE		1
229 #define BROADCAST_REGISTERED	2
230 #define BROADCAST_PROMISC_ONLY	4
231 static int pfkey_broadcast(struct sk_buff *skb,
232 			   int broadcast_flags, struct sock *one_sk,
233 			   struct net *net)
234 {
235 	struct netns_pfkey *net_pfkey = net_generic(net, pfkey_net_id);
236 	struct sock *sk;
237 	struct sk_buff *skb2 = NULL;
238 	int err = -ESRCH;
239 
240 	/* XXX Do we need something like netlink_overrun?  I think
241 	 * XXX PF_KEY socket apps will not mind current behavior.
242 	 */
243 	if (!skb)
244 		return -ENOMEM;
245 
246 	rcu_read_lock();
247 	sk_for_each_rcu(sk, &net_pfkey->table) {
248 		struct pfkey_sock *pfk = pfkey_sk(sk);
249 		int err2;
250 
251 		/* Yes, it means that if you are meant to receive this
252 		 * pfkey message you receive it twice as promiscuous
253 		 * socket.
254 		 */
255 		if (pfk->promisc)
256 			pfkey_broadcast_one(skb, &skb2, GFP_ATOMIC, sk);
257 
258 		/* the exact target will be processed later */
259 		if (sk == one_sk)
260 			continue;
261 		if (broadcast_flags != BROADCAST_ALL) {
262 			if (broadcast_flags & BROADCAST_PROMISC_ONLY)
263 				continue;
264 			if ((broadcast_flags & BROADCAST_REGISTERED) &&
265 			    !pfk->registered)
266 				continue;
267 			if (broadcast_flags & BROADCAST_ONE)
268 				continue;
269 		}
270 
271 		err2 = pfkey_broadcast_one(skb, &skb2, GFP_ATOMIC, sk);
272 
273 		/* Error is cleared after successful sending to at least one
274 		 * registered KM */
275 		if ((broadcast_flags & BROADCAST_REGISTERED) && err)
276 			err = err2;
277 	}
278 	rcu_read_unlock();
279 
280 	if (one_sk != NULL)
281 		err = pfkey_broadcast_one(skb, &skb2, GFP_KERNEL, one_sk);
282 
283 	kfree_skb(skb2);
284 	kfree_skb(skb);
285 	return err;
286 }
287 
288 static int pfkey_do_dump(struct pfkey_sock *pfk)
289 {
290 	struct sadb_msg *hdr;
291 	int rc;
292 
293 	mutex_lock(&pfk->dump_lock);
294 	if (!pfk->dump.dump) {
295 		rc = 0;
296 		goto out;
297 	}
298 
299 	rc = pfk->dump.dump(pfk);
300 	if (rc == -ENOBUFS) {
301 		rc = 0;
302 		goto out;
303 	}
304 
305 	if (pfk->dump.skb) {
306 		if (!pfkey_can_dump(&pfk->sk)) {
307 			rc = 0;
308 			goto out;
309 		}
310 
311 		hdr = (struct sadb_msg *) pfk->dump.skb->data;
312 		hdr->sadb_msg_seq = 0;
313 		hdr->sadb_msg_errno = rc;
314 		pfkey_broadcast(pfk->dump.skb, BROADCAST_ONE,
315 				&pfk->sk, sock_net(&pfk->sk));
316 		pfk->dump.skb = NULL;
317 	}
318 
319 	pfkey_terminate_dump(pfk);
320 
321 out:
322 	mutex_unlock(&pfk->dump_lock);
323 	return rc;
324 }
325 
326 static inline void pfkey_hdr_dup(struct sadb_msg *new,
327 				 const struct sadb_msg *orig)
328 {
329 	*new = *orig;
330 }
331 
332 static int pfkey_error(const struct sadb_msg *orig, int err, struct sock *sk)
333 {
334 	struct sk_buff *skb = alloc_skb(sizeof(struct sadb_msg) + 16, GFP_KERNEL);
335 	struct sadb_msg *hdr;
336 
337 	if (!skb)
338 		return -ENOBUFS;
339 
340 	/* Woe be to the platform trying to support PFKEY yet
341 	 * having normal errnos outside the 1-255 range, inclusive.
342 	 */
343 	err = -err;
344 	if (err == ERESTARTSYS ||
345 	    err == ERESTARTNOHAND ||
346 	    err == ERESTARTNOINTR)
347 		err = EINTR;
348 	if (err >= 512)
349 		err = EINVAL;
350 	BUG_ON(err <= 0 || err >= 256);
351 
352 	hdr = skb_put(skb, sizeof(struct sadb_msg));
353 	pfkey_hdr_dup(hdr, orig);
354 	hdr->sadb_msg_errno = (uint8_t) err;
355 	hdr->sadb_msg_len = (sizeof(struct sadb_msg) /
356 			     sizeof(uint64_t));
357 
358 	pfkey_broadcast(skb, BROADCAST_ONE, sk, sock_net(sk));
359 
360 	return 0;
361 }
362 
363 static const u8 sadb_ext_min_len[] = {
364 	[SADB_EXT_RESERVED]		= (u8) 0,
365 	[SADB_EXT_SA]			= (u8) sizeof(struct sadb_sa),
366 	[SADB_EXT_LIFETIME_CURRENT]	= (u8) sizeof(struct sadb_lifetime),
367 	[SADB_EXT_LIFETIME_HARD]	= (u8) sizeof(struct sadb_lifetime),
368 	[SADB_EXT_LIFETIME_SOFT]	= (u8) sizeof(struct sadb_lifetime),
369 	[SADB_EXT_ADDRESS_SRC]		= (u8) sizeof(struct sadb_address),
370 	[SADB_EXT_ADDRESS_DST]		= (u8) sizeof(struct sadb_address),
371 	[SADB_EXT_ADDRESS_PROXY]	= (u8) sizeof(struct sadb_address),
372 	[SADB_EXT_KEY_AUTH]		= (u8) sizeof(struct sadb_key),
373 	[SADB_EXT_KEY_ENCRYPT]		= (u8) sizeof(struct sadb_key),
374 	[SADB_EXT_IDENTITY_SRC]		= (u8) sizeof(struct sadb_ident),
375 	[SADB_EXT_IDENTITY_DST]		= (u8) sizeof(struct sadb_ident),
376 	[SADB_EXT_SENSITIVITY]		= (u8) sizeof(struct sadb_sens),
377 	[SADB_EXT_PROPOSAL]		= (u8) sizeof(struct sadb_prop),
378 	[SADB_EXT_SUPPORTED_AUTH]	= (u8) sizeof(struct sadb_supported),
379 	[SADB_EXT_SUPPORTED_ENCRYPT]	= (u8) sizeof(struct sadb_supported),
380 	[SADB_EXT_SPIRANGE]		= (u8) sizeof(struct sadb_spirange),
381 	[SADB_X_EXT_KMPRIVATE]		= (u8) sizeof(struct sadb_x_kmprivate),
382 	[SADB_X_EXT_POLICY]		= (u8) sizeof(struct sadb_x_policy),
383 	[SADB_X_EXT_SA2]		= (u8) sizeof(struct sadb_x_sa2),
384 	[SADB_X_EXT_NAT_T_TYPE]		= (u8) sizeof(struct sadb_x_nat_t_type),
385 	[SADB_X_EXT_NAT_T_SPORT]	= (u8) sizeof(struct sadb_x_nat_t_port),
386 	[SADB_X_EXT_NAT_T_DPORT]	= (u8) sizeof(struct sadb_x_nat_t_port),
387 	[SADB_X_EXT_NAT_T_OA]		= (u8) sizeof(struct sadb_address),
388 	[SADB_X_EXT_SEC_CTX]		= (u8) sizeof(struct sadb_x_sec_ctx),
389 	[SADB_X_EXT_KMADDRESS]		= (u8) sizeof(struct sadb_x_kmaddress),
390 	[SADB_X_EXT_FILTER]		= (u8) sizeof(struct sadb_x_filter),
391 };
392 
393 /* Verify sadb_address_{len,prefixlen} against sa_family.  */
394 static int verify_address_len(const void *p)
395 {
396 	const struct sadb_address *sp = p;
397 	const struct sockaddr *addr = (const struct sockaddr *)(sp + 1);
398 	const struct sockaddr_in *sin;
399 #if IS_ENABLED(CONFIG_IPV6)
400 	const struct sockaddr_in6 *sin6;
401 #endif
402 	int len;
403 
404 	switch (addr->sa_family) {
405 	case AF_INET:
406 		len = DIV_ROUND_UP(sizeof(*sp) + sizeof(*sin), sizeof(uint64_t));
407 		if (sp->sadb_address_len != len ||
408 		    sp->sadb_address_prefixlen > 32)
409 			return -EINVAL;
410 		break;
411 #if IS_ENABLED(CONFIG_IPV6)
412 	case AF_INET6:
413 		len = DIV_ROUND_UP(sizeof(*sp) + sizeof(*sin6), sizeof(uint64_t));
414 		if (sp->sadb_address_len != len ||
415 		    sp->sadb_address_prefixlen > 128)
416 			return -EINVAL;
417 		break;
418 #endif
419 	default:
420 		/* It is user using kernel to keep track of security
421 		 * associations for another protocol, such as
422 		 * OSPF/RSVP/RIPV2/MIP.  It is user's job to verify
423 		 * lengths.
424 		 *
425 		 * XXX Actually, association/policy database is not yet
426 		 * XXX able to cope with arbitrary sockaddr families.
427 		 * XXX When it can, remove this -EINVAL.  -DaveM
428 		 */
429 		return -EINVAL;
430 	}
431 
432 	return 0;
433 }
434 
435 static inline int pfkey_sec_ctx_len(const struct sadb_x_sec_ctx *sec_ctx)
436 {
437 	return DIV_ROUND_UP(sizeof(struct sadb_x_sec_ctx) +
438 			    sec_ctx->sadb_x_ctx_len,
439 			    sizeof(uint64_t));
440 }
441 
442 static inline int verify_sec_ctx_len(const void *p)
443 {
444 	const struct sadb_x_sec_ctx *sec_ctx = p;
445 	int len = sec_ctx->sadb_x_ctx_len;
446 
447 	if (len > PAGE_SIZE)
448 		return -EINVAL;
449 
450 	len = pfkey_sec_ctx_len(sec_ctx);
451 
452 	if (sec_ctx->sadb_x_sec_len != len)
453 		return -EINVAL;
454 
455 	return 0;
456 }
457 
458 static inline struct xfrm_user_sec_ctx *pfkey_sadb2xfrm_user_sec_ctx(const struct sadb_x_sec_ctx *sec_ctx,
459 								     gfp_t gfp)
460 {
461 	struct xfrm_user_sec_ctx *uctx = NULL;
462 	int ctx_size = sec_ctx->sadb_x_ctx_len;
463 
464 	uctx = kmalloc((sizeof(*uctx)+ctx_size), gfp);
465 
466 	if (!uctx)
467 		return NULL;
468 
469 	uctx->len = pfkey_sec_ctx_len(sec_ctx);
470 	uctx->exttype = sec_ctx->sadb_x_sec_exttype;
471 	uctx->ctx_doi = sec_ctx->sadb_x_ctx_doi;
472 	uctx->ctx_alg = sec_ctx->sadb_x_ctx_alg;
473 	uctx->ctx_len = sec_ctx->sadb_x_ctx_len;
474 	memcpy(uctx + 1, sec_ctx + 1,
475 	       uctx->ctx_len);
476 
477 	return uctx;
478 }
479 
480 static int present_and_same_family(const struct sadb_address *src,
481 				   const struct sadb_address *dst)
482 {
483 	const struct sockaddr *s_addr, *d_addr;
484 
485 	if (!src || !dst)
486 		return 0;
487 
488 	s_addr = (const struct sockaddr *)(src + 1);
489 	d_addr = (const struct sockaddr *)(dst + 1);
490 	if (s_addr->sa_family != d_addr->sa_family)
491 		return 0;
492 	if (s_addr->sa_family != AF_INET
493 #if IS_ENABLED(CONFIG_IPV6)
494 	    && s_addr->sa_family != AF_INET6
495 #endif
496 		)
497 		return 0;
498 
499 	return 1;
500 }
501 
502 static int parse_exthdrs(struct sk_buff *skb, const struct sadb_msg *hdr, void **ext_hdrs)
503 {
504 	const char *p = (char *) hdr;
505 	int len = skb->len;
506 
507 	len -= sizeof(*hdr);
508 	p += sizeof(*hdr);
509 	while (len > 0) {
510 		const struct sadb_ext *ehdr = (const struct sadb_ext *) p;
511 		uint16_t ext_type;
512 		int ext_len;
513 
514 		ext_len  = ehdr->sadb_ext_len;
515 		ext_len *= sizeof(uint64_t);
516 		ext_type = ehdr->sadb_ext_type;
517 		if (ext_len < sizeof(uint64_t) ||
518 		    ext_len > len ||
519 		    ext_type == SADB_EXT_RESERVED)
520 			return -EINVAL;
521 
522 		if (ext_type <= SADB_EXT_MAX) {
523 			int min = (int) sadb_ext_min_len[ext_type];
524 			if (ext_len < min)
525 				return -EINVAL;
526 			if (ext_hdrs[ext_type-1] != NULL)
527 				return -EINVAL;
528 			if (ext_type == SADB_EXT_ADDRESS_SRC ||
529 			    ext_type == SADB_EXT_ADDRESS_DST ||
530 			    ext_type == SADB_EXT_ADDRESS_PROXY ||
531 			    ext_type == SADB_X_EXT_NAT_T_OA) {
532 				if (verify_address_len(p))
533 					return -EINVAL;
534 			}
535 			if (ext_type == SADB_X_EXT_SEC_CTX) {
536 				if (verify_sec_ctx_len(p))
537 					return -EINVAL;
538 			}
539 			ext_hdrs[ext_type-1] = (void *) p;
540 		}
541 		p   += ext_len;
542 		len -= ext_len;
543 	}
544 
545 	return 0;
546 }
547 
548 static uint16_t
549 pfkey_satype2proto(uint8_t satype)
550 {
551 	switch (satype) {
552 	case SADB_SATYPE_UNSPEC:
553 		return IPSEC_PROTO_ANY;
554 	case SADB_SATYPE_AH:
555 		return IPPROTO_AH;
556 	case SADB_SATYPE_ESP:
557 		return IPPROTO_ESP;
558 	case SADB_X_SATYPE_IPCOMP:
559 		return IPPROTO_COMP;
560 	default:
561 		return 0;
562 	}
563 	/* NOTREACHED */
564 }
565 
566 static uint8_t
567 pfkey_proto2satype(uint16_t proto)
568 {
569 	switch (proto) {
570 	case IPPROTO_AH:
571 		return SADB_SATYPE_AH;
572 	case IPPROTO_ESP:
573 		return SADB_SATYPE_ESP;
574 	case IPPROTO_COMP:
575 		return SADB_X_SATYPE_IPCOMP;
576 	default:
577 		return 0;
578 	}
579 	/* NOTREACHED */
580 }
581 
582 /* BTW, this scheme means that there is no way with PFKEY2 sockets to
583  * say specifically 'just raw sockets' as we encode them as 255.
584  */
585 
586 static uint8_t pfkey_proto_to_xfrm(uint8_t proto)
587 {
588 	return proto == IPSEC_PROTO_ANY ? 0 : proto;
589 }
590 
591 static uint8_t pfkey_proto_from_xfrm(uint8_t proto)
592 {
593 	return proto ? proto : IPSEC_PROTO_ANY;
594 }
595 
596 static inline int pfkey_sockaddr_len(sa_family_t family)
597 {
598 	switch (family) {
599 	case AF_INET:
600 		return sizeof(struct sockaddr_in);
601 #if IS_ENABLED(CONFIG_IPV6)
602 	case AF_INET6:
603 		return sizeof(struct sockaddr_in6);
604 #endif
605 	}
606 	return 0;
607 }
608 
609 static
610 int pfkey_sockaddr_extract(const struct sockaddr *sa, xfrm_address_t *xaddr)
611 {
612 	switch (sa->sa_family) {
613 	case AF_INET:
614 		xaddr->a4 =
615 			((struct sockaddr_in *)sa)->sin_addr.s_addr;
616 		return AF_INET;
617 #if IS_ENABLED(CONFIG_IPV6)
618 	case AF_INET6:
619 		memcpy(xaddr->a6,
620 		       &((struct sockaddr_in6 *)sa)->sin6_addr,
621 		       sizeof(struct in6_addr));
622 		return AF_INET6;
623 #endif
624 	}
625 	return 0;
626 }
627 
628 static
629 int pfkey_sadb_addr2xfrm_addr(const struct sadb_address *addr, xfrm_address_t *xaddr)
630 {
631 	return pfkey_sockaddr_extract((struct sockaddr *)(addr + 1),
632 				      xaddr);
633 }
634 
635 static struct  xfrm_state *pfkey_xfrm_state_lookup(struct net *net, const struct sadb_msg *hdr, void * const *ext_hdrs)
636 {
637 	const struct sadb_sa *sa;
638 	const struct sadb_address *addr;
639 	uint16_t proto;
640 	unsigned short family;
641 	xfrm_address_t *xaddr;
642 
643 	sa = ext_hdrs[SADB_EXT_SA - 1];
644 	if (sa == NULL)
645 		return NULL;
646 
647 	proto = pfkey_satype2proto(hdr->sadb_msg_satype);
648 	if (proto == 0)
649 		return NULL;
650 
651 	/* sadb_address_len should be checked by caller */
652 	addr = ext_hdrs[SADB_EXT_ADDRESS_DST - 1];
653 	if (addr == NULL)
654 		return NULL;
655 
656 	family = ((const struct sockaddr *)(addr + 1))->sa_family;
657 	switch (family) {
658 	case AF_INET:
659 		xaddr = (xfrm_address_t *)&((const struct sockaddr_in *)(addr + 1))->sin_addr;
660 		break;
661 #if IS_ENABLED(CONFIG_IPV6)
662 	case AF_INET6:
663 		xaddr = (xfrm_address_t *)&((const struct sockaddr_in6 *)(addr + 1))->sin6_addr;
664 		break;
665 #endif
666 	default:
667 		xaddr = NULL;
668 	}
669 
670 	if (!xaddr)
671 		return NULL;
672 
673 	return xfrm_state_lookup(net, DUMMY_MARK, xaddr, sa->sadb_sa_spi, proto, family);
674 }
675 
676 #define PFKEY_ALIGN8(a) (1 + (((a) - 1) | (8 - 1)))
677 
678 static int
679 pfkey_sockaddr_size(sa_family_t family)
680 {
681 	return PFKEY_ALIGN8(pfkey_sockaddr_len(family));
682 }
683 
684 static inline int pfkey_mode_from_xfrm(int mode)
685 {
686 	switch(mode) {
687 	case XFRM_MODE_TRANSPORT:
688 		return IPSEC_MODE_TRANSPORT;
689 	case XFRM_MODE_TUNNEL:
690 		return IPSEC_MODE_TUNNEL;
691 	case XFRM_MODE_BEET:
692 		return IPSEC_MODE_BEET;
693 	default:
694 		return -1;
695 	}
696 }
697 
698 static inline int pfkey_mode_to_xfrm(int mode)
699 {
700 	switch(mode) {
701 	case IPSEC_MODE_ANY:	/*XXX*/
702 	case IPSEC_MODE_TRANSPORT:
703 		return XFRM_MODE_TRANSPORT;
704 	case IPSEC_MODE_TUNNEL:
705 		return XFRM_MODE_TUNNEL;
706 	case IPSEC_MODE_BEET:
707 		return XFRM_MODE_BEET;
708 	default:
709 		return -1;
710 	}
711 }
712 
713 static unsigned int pfkey_sockaddr_fill(const xfrm_address_t *xaddr, __be16 port,
714 					struct sockaddr *sa,
715 					unsigned short family)
716 {
717 	switch (family) {
718 	case AF_INET:
719 	    {
720 		struct sockaddr_in *sin = (struct sockaddr_in *)sa;
721 		sin->sin_family = AF_INET;
722 		sin->sin_port = port;
723 		sin->sin_addr.s_addr = xaddr->a4;
724 		memset(sin->sin_zero, 0, sizeof(sin->sin_zero));
725 		return 32;
726 	    }
727 #if IS_ENABLED(CONFIG_IPV6)
728 	case AF_INET6:
729 	    {
730 		struct sockaddr_in6 *sin6 = (struct sockaddr_in6 *)sa;
731 		sin6->sin6_family = AF_INET6;
732 		sin6->sin6_port = port;
733 		sin6->sin6_flowinfo = 0;
734 		sin6->sin6_addr = xaddr->in6;
735 		sin6->sin6_scope_id = 0;
736 		return 128;
737 	    }
738 #endif
739 	}
740 	return 0;
741 }
742 
743 static struct sk_buff *__pfkey_xfrm_state2msg(const struct xfrm_state *x,
744 					      int add_keys, int hsc)
745 {
746 	struct sk_buff *skb;
747 	struct sadb_msg *hdr;
748 	struct sadb_sa *sa;
749 	struct sadb_lifetime *lifetime;
750 	struct sadb_address *addr;
751 	struct sadb_key *key;
752 	struct sadb_x_sa2 *sa2;
753 	struct sadb_x_sec_ctx *sec_ctx;
754 	struct xfrm_sec_ctx *xfrm_ctx;
755 	int ctx_size = 0;
756 	int size;
757 	int auth_key_size = 0;
758 	int encrypt_key_size = 0;
759 	int sockaddr_size;
760 	struct xfrm_encap_tmpl *natt = NULL;
761 	int mode;
762 
763 	/* address family check */
764 	sockaddr_size = pfkey_sockaddr_size(x->props.family);
765 	if (!sockaddr_size)
766 		return ERR_PTR(-EINVAL);
767 
768 	/* base, SA, (lifetime (HSC),) address(SD), (address(P),)
769 	   key(AE), (identity(SD),) (sensitivity)> */
770 	size = sizeof(struct sadb_msg) +sizeof(struct sadb_sa) +
771 		sizeof(struct sadb_lifetime) +
772 		((hsc & 1) ? sizeof(struct sadb_lifetime) : 0) +
773 		((hsc & 2) ? sizeof(struct sadb_lifetime) : 0) +
774 			sizeof(struct sadb_address)*2 +
775 				sockaddr_size*2 +
776 					sizeof(struct sadb_x_sa2);
777 
778 	if ((xfrm_ctx = x->security)) {
779 		ctx_size = PFKEY_ALIGN8(xfrm_ctx->ctx_len);
780 		size += sizeof(struct sadb_x_sec_ctx) + ctx_size;
781 	}
782 
783 	/* identity & sensitivity */
784 	if (!xfrm_addr_equal(&x->sel.saddr, &x->props.saddr, x->props.family))
785 		size += sizeof(struct sadb_address) + sockaddr_size;
786 
787 	if (add_keys) {
788 		if (x->aalg && x->aalg->alg_key_len) {
789 			auth_key_size =
790 				PFKEY_ALIGN8((x->aalg->alg_key_len + 7) / 8);
791 			size += sizeof(struct sadb_key) + auth_key_size;
792 		}
793 		if (x->ealg && x->ealg->alg_key_len) {
794 			encrypt_key_size =
795 				PFKEY_ALIGN8((x->ealg->alg_key_len+7) / 8);
796 			size += sizeof(struct sadb_key) + encrypt_key_size;
797 		}
798 	}
799 	if (x->encap)
800 		natt = x->encap;
801 
802 	if (natt && natt->encap_type) {
803 		size += sizeof(struct sadb_x_nat_t_type);
804 		size += sizeof(struct sadb_x_nat_t_port);
805 		size += sizeof(struct sadb_x_nat_t_port);
806 	}
807 
808 	skb =  alloc_skb(size + 16, GFP_ATOMIC);
809 	if (skb == NULL)
810 		return ERR_PTR(-ENOBUFS);
811 
812 	/* call should fill header later */
813 	hdr = skb_put(skb, sizeof(struct sadb_msg));
814 	memset(hdr, 0, size);	/* XXX do we need this ? */
815 	hdr->sadb_msg_len = size / sizeof(uint64_t);
816 
817 	/* sa */
818 	sa = skb_put(skb, sizeof(struct sadb_sa));
819 	sa->sadb_sa_len = sizeof(struct sadb_sa)/sizeof(uint64_t);
820 	sa->sadb_sa_exttype = SADB_EXT_SA;
821 	sa->sadb_sa_spi = x->id.spi;
822 	sa->sadb_sa_replay = x->props.replay_window;
823 	switch (x->km.state) {
824 	case XFRM_STATE_VALID:
825 		sa->sadb_sa_state = x->km.dying ?
826 			SADB_SASTATE_DYING : SADB_SASTATE_MATURE;
827 		break;
828 	case XFRM_STATE_ACQ:
829 		sa->sadb_sa_state = SADB_SASTATE_LARVAL;
830 		break;
831 	default:
832 		sa->sadb_sa_state = SADB_SASTATE_DEAD;
833 		break;
834 	}
835 	sa->sadb_sa_auth = 0;
836 	if (x->aalg) {
837 		struct xfrm_algo_desc *a = xfrm_aalg_get_byname(x->aalg->alg_name, 0);
838 		sa->sadb_sa_auth = (a && a->pfkey_supported) ?
839 					a->desc.sadb_alg_id : 0;
840 	}
841 	sa->sadb_sa_encrypt = 0;
842 	BUG_ON(x->ealg && x->calg);
843 	if (x->ealg) {
844 		struct xfrm_algo_desc *a = xfrm_ealg_get_byname(x->ealg->alg_name, 0);
845 		sa->sadb_sa_encrypt = (a && a->pfkey_supported) ?
846 					a->desc.sadb_alg_id : 0;
847 	}
848 	/* KAME compatible: sadb_sa_encrypt is overloaded with calg id */
849 	if (x->calg) {
850 		struct xfrm_algo_desc *a = xfrm_calg_get_byname(x->calg->alg_name, 0);
851 		sa->sadb_sa_encrypt = (a && a->pfkey_supported) ?
852 					a->desc.sadb_alg_id : 0;
853 	}
854 
855 	sa->sadb_sa_flags = 0;
856 	if (x->props.flags & XFRM_STATE_NOECN)
857 		sa->sadb_sa_flags |= SADB_SAFLAGS_NOECN;
858 	if (x->props.flags & XFRM_STATE_DECAP_DSCP)
859 		sa->sadb_sa_flags |= SADB_SAFLAGS_DECAP_DSCP;
860 	if (x->props.flags & XFRM_STATE_NOPMTUDISC)
861 		sa->sadb_sa_flags |= SADB_SAFLAGS_NOPMTUDISC;
862 
863 	/* hard time */
864 	if (hsc & 2) {
865 		lifetime = skb_put(skb, sizeof(struct sadb_lifetime));
866 		lifetime->sadb_lifetime_len =
867 			sizeof(struct sadb_lifetime)/sizeof(uint64_t);
868 		lifetime->sadb_lifetime_exttype = SADB_EXT_LIFETIME_HARD;
869 		lifetime->sadb_lifetime_allocations =  _X2KEY(x->lft.hard_packet_limit);
870 		lifetime->sadb_lifetime_bytes = _X2KEY(x->lft.hard_byte_limit);
871 		lifetime->sadb_lifetime_addtime = x->lft.hard_add_expires_seconds;
872 		lifetime->sadb_lifetime_usetime = x->lft.hard_use_expires_seconds;
873 	}
874 	/* soft time */
875 	if (hsc & 1) {
876 		lifetime = skb_put(skb, sizeof(struct sadb_lifetime));
877 		lifetime->sadb_lifetime_len =
878 			sizeof(struct sadb_lifetime)/sizeof(uint64_t);
879 		lifetime->sadb_lifetime_exttype = SADB_EXT_LIFETIME_SOFT;
880 		lifetime->sadb_lifetime_allocations =  _X2KEY(x->lft.soft_packet_limit);
881 		lifetime->sadb_lifetime_bytes = _X2KEY(x->lft.soft_byte_limit);
882 		lifetime->sadb_lifetime_addtime = x->lft.soft_add_expires_seconds;
883 		lifetime->sadb_lifetime_usetime = x->lft.soft_use_expires_seconds;
884 	}
885 	/* current time */
886 	lifetime = skb_put(skb, sizeof(struct sadb_lifetime));
887 	lifetime->sadb_lifetime_len =
888 		sizeof(struct sadb_lifetime)/sizeof(uint64_t);
889 	lifetime->sadb_lifetime_exttype = SADB_EXT_LIFETIME_CURRENT;
890 	lifetime->sadb_lifetime_allocations = x->curlft.packets;
891 	lifetime->sadb_lifetime_bytes = x->curlft.bytes;
892 	lifetime->sadb_lifetime_addtime = x->curlft.add_time;
893 	lifetime->sadb_lifetime_usetime = x->curlft.use_time;
894 	/* src address */
895 	addr = skb_put(skb, sizeof(struct sadb_address) + sockaddr_size);
896 	addr->sadb_address_len =
897 		(sizeof(struct sadb_address)+sockaddr_size)/
898 			sizeof(uint64_t);
899 	addr->sadb_address_exttype = SADB_EXT_ADDRESS_SRC;
900 	/* "if the ports are non-zero, then the sadb_address_proto field,
901 	   normally zero, MUST be filled in with the transport
902 	   protocol's number." - RFC2367 */
903 	addr->sadb_address_proto = 0;
904 	addr->sadb_address_reserved = 0;
905 
906 	addr->sadb_address_prefixlen =
907 		pfkey_sockaddr_fill(&x->props.saddr, 0,
908 				    (struct sockaddr *) (addr + 1),
909 				    x->props.family);
910 	if (!addr->sadb_address_prefixlen)
911 		BUG();
912 
913 	/* dst address */
914 	addr = skb_put(skb, sizeof(struct sadb_address) + sockaddr_size);
915 	addr->sadb_address_len =
916 		(sizeof(struct sadb_address)+sockaddr_size)/
917 			sizeof(uint64_t);
918 	addr->sadb_address_exttype = SADB_EXT_ADDRESS_DST;
919 	addr->sadb_address_proto = 0;
920 	addr->sadb_address_reserved = 0;
921 
922 	addr->sadb_address_prefixlen =
923 		pfkey_sockaddr_fill(&x->id.daddr, 0,
924 				    (struct sockaddr *) (addr + 1),
925 				    x->props.family);
926 	if (!addr->sadb_address_prefixlen)
927 		BUG();
928 
929 	if (!xfrm_addr_equal(&x->sel.saddr, &x->props.saddr,
930 			     x->props.family)) {
931 		addr = skb_put(skb,
932 			       sizeof(struct sadb_address) + sockaddr_size);
933 		addr->sadb_address_len =
934 			(sizeof(struct sadb_address)+sockaddr_size)/
935 			sizeof(uint64_t);
936 		addr->sadb_address_exttype = SADB_EXT_ADDRESS_PROXY;
937 		addr->sadb_address_proto =
938 			pfkey_proto_from_xfrm(x->sel.proto);
939 		addr->sadb_address_prefixlen = x->sel.prefixlen_s;
940 		addr->sadb_address_reserved = 0;
941 
942 		pfkey_sockaddr_fill(&x->sel.saddr, x->sel.sport,
943 				    (struct sockaddr *) (addr + 1),
944 				    x->props.family);
945 	}
946 
947 	/* auth key */
948 	if (add_keys && auth_key_size) {
949 		key = skb_put(skb, sizeof(struct sadb_key) + auth_key_size);
950 		key->sadb_key_len = (sizeof(struct sadb_key) + auth_key_size) /
951 			sizeof(uint64_t);
952 		key->sadb_key_exttype = SADB_EXT_KEY_AUTH;
953 		key->sadb_key_bits = x->aalg->alg_key_len;
954 		key->sadb_key_reserved = 0;
955 		memcpy(key + 1, x->aalg->alg_key, (x->aalg->alg_key_len+7)/8);
956 	}
957 	/* encrypt key */
958 	if (add_keys && encrypt_key_size) {
959 		key = skb_put(skb, sizeof(struct sadb_key) + encrypt_key_size);
960 		key->sadb_key_len = (sizeof(struct sadb_key) +
961 				     encrypt_key_size) / sizeof(uint64_t);
962 		key->sadb_key_exttype = SADB_EXT_KEY_ENCRYPT;
963 		key->sadb_key_bits = x->ealg->alg_key_len;
964 		key->sadb_key_reserved = 0;
965 		memcpy(key + 1, x->ealg->alg_key,
966 		       (x->ealg->alg_key_len+7)/8);
967 	}
968 
969 	/* sa */
970 	sa2 = skb_put(skb, sizeof(struct sadb_x_sa2));
971 	sa2->sadb_x_sa2_len = sizeof(struct sadb_x_sa2)/sizeof(uint64_t);
972 	sa2->sadb_x_sa2_exttype = SADB_X_EXT_SA2;
973 	if ((mode = pfkey_mode_from_xfrm(x->props.mode)) < 0) {
974 		kfree_skb(skb);
975 		return ERR_PTR(-EINVAL);
976 	}
977 	sa2->sadb_x_sa2_mode = mode;
978 	sa2->sadb_x_sa2_reserved1 = 0;
979 	sa2->sadb_x_sa2_reserved2 = 0;
980 	sa2->sadb_x_sa2_sequence = 0;
981 	sa2->sadb_x_sa2_reqid = x->props.reqid;
982 
983 	if (natt && natt->encap_type) {
984 		struct sadb_x_nat_t_type *n_type;
985 		struct sadb_x_nat_t_port *n_port;
986 
987 		/* type */
988 		n_type = skb_put(skb, sizeof(*n_type));
989 		n_type->sadb_x_nat_t_type_len = sizeof(*n_type)/sizeof(uint64_t);
990 		n_type->sadb_x_nat_t_type_exttype = SADB_X_EXT_NAT_T_TYPE;
991 		n_type->sadb_x_nat_t_type_type = natt->encap_type;
992 		n_type->sadb_x_nat_t_type_reserved[0] = 0;
993 		n_type->sadb_x_nat_t_type_reserved[1] = 0;
994 		n_type->sadb_x_nat_t_type_reserved[2] = 0;
995 
996 		/* source port */
997 		n_port = skb_put(skb, sizeof(*n_port));
998 		n_port->sadb_x_nat_t_port_len = sizeof(*n_port)/sizeof(uint64_t);
999 		n_port->sadb_x_nat_t_port_exttype = SADB_X_EXT_NAT_T_SPORT;
1000 		n_port->sadb_x_nat_t_port_port = natt->encap_sport;
1001 		n_port->sadb_x_nat_t_port_reserved = 0;
1002 
1003 		/* dest port */
1004 		n_port = skb_put(skb, sizeof(*n_port));
1005 		n_port->sadb_x_nat_t_port_len = sizeof(*n_port)/sizeof(uint64_t);
1006 		n_port->sadb_x_nat_t_port_exttype = SADB_X_EXT_NAT_T_DPORT;
1007 		n_port->sadb_x_nat_t_port_port = natt->encap_dport;
1008 		n_port->sadb_x_nat_t_port_reserved = 0;
1009 	}
1010 
1011 	/* security context */
1012 	if (xfrm_ctx) {
1013 		sec_ctx = skb_put(skb,
1014 				  sizeof(struct sadb_x_sec_ctx) + ctx_size);
1015 		sec_ctx->sadb_x_sec_len =
1016 		  (sizeof(struct sadb_x_sec_ctx) + ctx_size) / sizeof(uint64_t);
1017 		sec_ctx->sadb_x_sec_exttype = SADB_X_EXT_SEC_CTX;
1018 		sec_ctx->sadb_x_ctx_doi = xfrm_ctx->ctx_doi;
1019 		sec_ctx->sadb_x_ctx_alg = xfrm_ctx->ctx_alg;
1020 		sec_ctx->sadb_x_ctx_len = xfrm_ctx->ctx_len;
1021 		memcpy(sec_ctx + 1, xfrm_ctx->ctx_str,
1022 		       xfrm_ctx->ctx_len);
1023 	}
1024 
1025 	return skb;
1026 }
1027 
1028 
1029 static inline struct sk_buff *pfkey_xfrm_state2msg(const struct xfrm_state *x)
1030 {
1031 	struct sk_buff *skb;
1032 
1033 	skb = __pfkey_xfrm_state2msg(x, 1, 3);
1034 
1035 	return skb;
1036 }
1037 
1038 static inline struct sk_buff *pfkey_xfrm_state2msg_expire(const struct xfrm_state *x,
1039 							  int hsc)
1040 {
1041 	return __pfkey_xfrm_state2msg(x, 0, hsc);
1042 }
1043 
1044 static struct xfrm_state * pfkey_msg2xfrm_state(struct net *net,
1045 						const struct sadb_msg *hdr,
1046 						void * const *ext_hdrs)
1047 {
1048 	struct xfrm_state *x;
1049 	const struct sadb_lifetime *lifetime;
1050 	const struct sadb_sa *sa;
1051 	const struct sadb_key *key;
1052 	const struct sadb_x_sec_ctx *sec_ctx;
1053 	uint16_t proto;
1054 	int err;
1055 
1056 
1057 	sa = ext_hdrs[SADB_EXT_SA - 1];
1058 	if (!sa ||
1059 	    !present_and_same_family(ext_hdrs[SADB_EXT_ADDRESS_SRC-1],
1060 				     ext_hdrs[SADB_EXT_ADDRESS_DST-1]))
1061 		return ERR_PTR(-EINVAL);
1062 	if (hdr->sadb_msg_satype == SADB_SATYPE_ESP &&
1063 	    !ext_hdrs[SADB_EXT_KEY_ENCRYPT-1])
1064 		return ERR_PTR(-EINVAL);
1065 	if (hdr->sadb_msg_satype == SADB_SATYPE_AH &&
1066 	    !ext_hdrs[SADB_EXT_KEY_AUTH-1])
1067 		return ERR_PTR(-EINVAL);
1068 	if (!!ext_hdrs[SADB_EXT_LIFETIME_HARD-1] !=
1069 	    !!ext_hdrs[SADB_EXT_LIFETIME_SOFT-1])
1070 		return ERR_PTR(-EINVAL);
1071 
1072 	proto = pfkey_satype2proto(hdr->sadb_msg_satype);
1073 	if (proto == 0)
1074 		return ERR_PTR(-EINVAL);
1075 
1076 	/* default error is no buffer space */
1077 	err = -ENOBUFS;
1078 
1079 	/* RFC2367:
1080 
1081    Only SADB_SASTATE_MATURE SAs may be submitted in an SADB_ADD message.
1082    SADB_SASTATE_LARVAL SAs are created by SADB_GETSPI and it is not
1083    sensible to add a new SA in the DYING or SADB_SASTATE_DEAD state.
1084    Therefore, the sadb_sa_state field of all submitted SAs MUST be
1085    SADB_SASTATE_MATURE and the kernel MUST return an error if this is
1086    not true.
1087 
1088 	   However, KAME setkey always uses SADB_SASTATE_LARVAL.
1089 	   Hence, we have to _ignore_ sadb_sa_state, which is also reasonable.
1090 	 */
1091 	if (sa->sadb_sa_auth > SADB_AALG_MAX ||
1092 	    (hdr->sadb_msg_satype == SADB_X_SATYPE_IPCOMP &&
1093 	     sa->sadb_sa_encrypt > SADB_X_CALG_MAX) ||
1094 	    sa->sadb_sa_encrypt > SADB_EALG_MAX)
1095 		return ERR_PTR(-EINVAL);
1096 	key = ext_hdrs[SADB_EXT_KEY_AUTH - 1];
1097 	if (key != NULL &&
1098 	    sa->sadb_sa_auth != SADB_X_AALG_NULL &&
1099 	    ((key->sadb_key_bits+7) / 8 == 0 ||
1100 	     (key->sadb_key_bits+7) / 8 > key->sadb_key_len * sizeof(uint64_t)))
1101 		return ERR_PTR(-EINVAL);
1102 	key = ext_hdrs[SADB_EXT_KEY_ENCRYPT-1];
1103 	if (key != NULL &&
1104 	    sa->sadb_sa_encrypt != SADB_EALG_NULL &&
1105 	    ((key->sadb_key_bits+7) / 8 == 0 ||
1106 	     (key->sadb_key_bits+7) / 8 > key->sadb_key_len * sizeof(uint64_t)))
1107 		return ERR_PTR(-EINVAL);
1108 
1109 	x = xfrm_state_alloc(net);
1110 	if (x == NULL)
1111 		return ERR_PTR(-ENOBUFS);
1112 
1113 	x->id.proto = proto;
1114 	x->id.spi = sa->sadb_sa_spi;
1115 	x->props.replay_window = min_t(unsigned int, sa->sadb_sa_replay,
1116 					(sizeof(x->replay.bitmap) * 8));
1117 	if (sa->sadb_sa_flags & SADB_SAFLAGS_NOECN)
1118 		x->props.flags |= XFRM_STATE_NOECN;
1119 	if (sa->sadb_sa_flags & SADB_SAFLAGS_DECAP_DSCP)
1120 		x->props.flags |= XFRM_STATE_DECAP_DSCP;
1121 	if (sa->sadb_sa_flags & SADB_SAFLAGS_NOPMTUDISC)
1122 		x->props.flags |= XFRM_STATE_NOPMTUDISC;
1123 
1124 	lifetime = ext_hdrs[SADB_EXT_LIFETIME_HARD - 1];
1125 	if (lifetime != NULL) {
1126 		x->lft.hard_packet_limit = _KEY2X(lifetime->sadb_lifetime_allocations);
1127 		x->lft.hard_byte_limit = _KEY2X(lifetime->sadb_lifetime_bytes);
1128 		x->lft.hard_add_expires_seconds = lifetime->sadb_lifetime_addtime;
1129 		x->lft.hard_use_expires_seconds = lifetime->sadb_lifetime_usetime;
1130 	}
1131 	lifetime = ext_hdrs[SADB_EXT_LIFETIME_SOFT - 1];
1132 	if (lifetime != NULL) {
1133 		x->lft.soft_packet_limit = _KEY2X(lifetime->sadb_lifetime_allocations);
1134 		x->lft.soft_byte_limit = _KEY2X(lifetime->sadb_lifetime_bytes);
1135 		x->lft.soft_add_expires_seconds = lifetime->sadb_lifetime_addtime;
1136 		x->lft.soft_use_expires_seconds = lifetime->sadb_lifetime_usetime;
1137 	}
1138 
1139 	sec_ctx = ext_hdrs[SADB_X_EXT_SEC_CTX - 1];
1140 	if (sec_ctx != NULL) {
1141 		struct xfrm_user_sec_ctx *uctx = pfkey_sadb2xfrm_user_sec_ctx(sec_ctx, GFP_KERNEL);
1142 
1143 		if (!uctx)
1144 			goto out;
1145 
1146 		err = security_xfrm_state_alloc(x, uctx);
1147 		kfree(uctx);
1148 
1149 		if (err)
1150 			goto out;
1151 	}
1152 
1153 	err = -ENOBUFS;
1154 	key = ext_hdrs[SADB_EXT_KEY_AUTH - 1];
1155 	if (sa->sadb_sa_auth) {
1156 		int keysize = 0;
1157 		struct xfrm_algo_desc *a = xfrm_aalg_get_byid(sa->sadb_sa_auth);
1158 		if (!a || !a->pfkey_supported) {
1159 			err = -ENOSYS;
1160 			goto out;
1161 		}
1162 		if (key)
1163 			keysize = (key->sadb_key_bits + 7) / 8;
1164 		x->aalg = kmalloc(sizeof(*x->aalg) + keysize, GFP_KERNEL);
1165 		if (!x->aalg) {
1166 			err = -ENOMEM;
1167 			goto out;
1168 		}
1169 		strcpy(x->aalg->alg_name, a->name);
1170 		x->aalg->alg_key_len = 0;
1171 		if (key) {
1172 			x->aalg->alg_key_len = key->sadb_key_bits;
1173 			memcpy(x->aalg->alg_key, key+1, keysize);
1174 		}
1175 		x->aalg->alg_trunc_len = a->uinfo.auth.icv_truncbits;
1176 		x->props.aalgo = sa->sadb_sa_auth;
1177 		/* x->algo.flags = sa->sadb_sa_flags; */
1178 	}
1179 	if (sa->sadb_sa_encrypt) {
1180 		if (hdr->sadb_msg_satype == SADB_X_SATYPE_IPCOMP) {
1181 			struct xfrm_algo_desc *a = xfrm_calg_get_byid(sa->sadb_sa_encrypt);
1182 			if (!a || !a->pfkey_supported) {
1183 				err = -ENOSYS;
1184 				goto out;
1185 			}
1186 			x->calg = kmalloc(sizeof(*x->calg), GFP_KERNEL);
1187 			if (!x->calg) {
1188 				err = -ENOMEM;
1189 				goto out;
1190 			}
1191 			strcpy(x->calg->alg_name, a->name);
1192 			x->props.calgo = sa->sadb_sa_encrypt;
1193 		} else {
1194 			int keysize = 0;
1195 			struct xfrm_algo_desc *a = xfrm_ealg_get_byid(sa->sadb_sa_encrypt);
1196 			if (!a || !a->pfkey_supported) {
1197 				err = -ENOSYS;
1198 				goto out;
1199 			}
1200 			key = (struct sadb_key*) ext_hdrs[SADB_EXT_KEY_ENCRYPT-1];
1201 			if (key)
1202 				keysize = (key->sadb_key_bits + 7) / 8;
1203 			x->ealg = kmalloc(sizeof(*x->ealg) + keysize, GFP_KERNEL);
1204 			if (!x->ealg) {
1205 				err = -ENOMEM;
1206 				goto out;
1207 			}
1208 			strcpy(x->ealg->alg_name, a->name);
1209 			x->ealg->alg_key_len = 0;
1210 			if (key) {
1211 				x->ealg->alg_key_len = key->sadb_key_bits;
1212 				memcpy(x->ealg->alg_key, key+1, keysize);
1213 			}
1214 			x->props.ealgo = sa->sadb_sa_encrypt;
1215 			x->geniv = a->uinfo.encr.geniv;
1216 		}
1217 	}
1218 	/* x->algo.flags = sa->sadb_sa_flags; */
1219 
1220 	x->props.family = pfkey_sadb_addr2xfrm_addr((struct sadb_address *) ext_hdrs[SADB_EXT_ADDRESS_SRC-1],
1221 						    &x->props.saddr);
1222 	pfkey_sadb_addr2xfrm_addr((struct sadb_address *) ext_hdrs[SADB_EXT_ADDRESS_DST-1],
1223 				  &x->id.daddr);
1224 
1225 	if (ext_hdrs[SADB_X_EXT_SA2-1]) {
1226 		const struct sadb_x_sa2 *sa2 = ext_hdrs[SADB_X_EXT_SA2-1];
1227 		int mode = pfkey_mode_to_xfrm(sa2->sadb_x_sa2_mode);
1228 		if (mode < 0) {
1229 			err = -EINVAL;
1230 			goto out;
1231 		}
1232 		x->props.mode = mode;
1233 		x->props.reqid = sa2->sadb_x_sa2_reqid;
1234 	}
1235 
1236 	if (ext_hdrs[SADB_EXT_ADDRESS_PROXY-1]) {
1237 		const struct sadb_address *addr = ext_hdrs[SADB_EXT_ADDRESS_PROXY-1];
1238 
1239 		/* Nobody uses this, but we try. */
1240 		x->sel.family = pfkey_sadb_addr2xfrm_addr(addr, &x->sel.saddr);
1241 		x->sel.prefixlen_s = addr->sadb_address_prefixlen;
1242 	}
1243 
1244 	if (!x->sel.family)
1245 		x->sel.family = x->props.family;
1246 
1247 	if (ext_hdrs[SADB_X_EXT_NAT_T_TYPE-1]) {
1248 		const struct sadb_x_nat_t_type* n_type;
1249 		struct xfrm_encap_tmpl *natt;
1250 
1251 		x->encap = kmalloc(sizeof(*x->encap), GFP_KERNEL);
1252 		if (!x->encap) {
1253 			err = -ENOMEM;
1254 			goto out;
1255 		}
1256 
1257 		natt = x->encap;
1258 		n_type = ext_hdrs[SADB_X_EXT_NAT_T_TYPE-1];
1259 		natt->encap_type = n_type->sadb_x_nat_t_type_type;
1260 
1261 		if (ext_hdrs[SADB_X_EXT_NAT_T_SPORT-1]) {
1262 			const struct sadb_x_nat_t_port *n_port =
1263 				ext_hdrs[SADB_X_EXT_NAT_T_SPORT-1];
1264 			natt->encap_sport = n_port->sadb_x_nat_t_port_port;
1265 		}
1266 		if (ext_hdrs[SADB_X_EXT_NAT_T_DPORT-1]) {
1267 			const struct sadb_x_nat_t_port *n_port =
1268 				ext_hdrs[SADB_X_EXT_NAT_T_DPORT-1];
1269 			natt->encap_dport = n_port->sadb_x_nat_t_port_port;
1270 		}
1271 		memset(&natt->encap_oa, 0, sizeof(natt->encap_oa));
1272 	}
1273 
1274 	err = xfrm_init_state(x);
1275 	if (err)
1276 		goto out;
1277 
1278 	x->km.seq = hdr->sadb_msg_seq;
1279 	return x;
1280 
1281 out:
1282 	x->km.state = XFRM_STATE_DEAD;
1283 	xfrm_state_put(x);
1284 	return ERR_PTR(err);
1285 }
1286 
1287 static int pfkey_reserved(struct sock *sk, struct sk_buff *skb, const struct sadb_msg *hdr, void * const *ext_hdrs)
1288 {
1289 	return -EOPNOTSUPP;
1290 }
1291 
1292 static int pfkey_getspi(struct sock *sk, struct sk_buff *skb, const struct sadb_msg *hdr, void * const *ext_hdrs)
1293 {
1294 	struct net *net = sock_net(sk);
1295 	struct sk_buff *resp_skb;
1296 	struct sadb_x_sa2 *sa2;
1297 	struct sadb_address *saddr, *daddr;
1298 	struct sadb_msg *out_hdr;
1299 	struct sadb_spirange *range;
1300 	struct xfrm_state *x = NULL;
1301 	int mode;
1302 	int err;
1303 	u32 min_spi, max_spi;
1304 	u32 reqid;
1305 	u8 proto;
1306 	unsigned short family;
1307 	xfrm_address_t *xsaddr = NULL, *xdaddr = NULL;
1308 
1309 	if (!present_and_same_family(ext_hdrs[SADB_EXT_ADDRESS_SRC-1],
1310 				     ext_hdrs[SADB_EXT_ADDRESS_DST-1]))
1311 		return -EINVAL;
1312 
1313 	proto = pfkey_satype2proto(hdr->sadb_msg_satype);
1314 	if (proto == 0)
1315 		return -EINVAL;
1316 
1317 	if ((sa2 = ext_hdrs[SADB_X_EXT_SA2-1]) != NULL) {
1318 		mode = pfkey_mode_to_xfrm(sa2->sadb_x_sa2_mode);
1319 		if (mode < 0)
1320 			return -EINVAL;
1321 		reqid = sa2->sadb_x_sa2_reqid;
1322 	} else {
1323 		mode = 0;
1324 		reqid = 0;
1325 	}
1326 
1327 	saddr = ext_hdrs[SADB_EXT_ADDRESS_SRC-1];
1328 	daddr = ext_hdrs[SADB_EXT_ADDRESS_DST-1];
1329 
1330 	family = ((struct sockaddr *)(saddr + 1))->sa_family;
1331 	switch (family) {
1332 	case AF_INET:
1333 		xdaddr = (xfrm_address_t *)&((struct sockaddr_in *)(daddr + 1))->sin_addr.s_addr;
1334 		xsaddr = (xfrm_address_t *)&((struct sockaddr_in *)(saddr + 1))->sin_addr.s_addr;
1335 		break;
1336 #if IS_ENABLED(CONFIG_IPV6)
1337 	case AF_INET6:
1338 		xdaddr = (xfrm_address_t *)&((struct sockaddr_in6 *)(daddr + 1))->sin6_addr;
1339 		xsaddr = (xfrm_address_t *)&((struct sockaddr_in6 *)(saddr + 1))->sin6_addr;
1340 		break;
1341 #endif
1342 	}
1343 
1344 	if (hdr->sadb_msg_seq) {
1345 		x = xfrm_find_acq_byseq(net, DUMMY_MARK, hdr->sadb_msg_seq);
1346 		if (x && !xfrm_addr_equal(&x->id.daddr, xdaddr, family)) {
1347 			xfrm_state_put(x);
1348 			x = NULL;
1349 		}
1350 	}
1351 
1352 	if (!x)
1353 		x = xfrm_find_acq(net, &dummy_mark, mode, reqid, proto, xdaddr, xsaddr, 1, family);
1354 
1355 	if (x == NULL)
1356 		return -ENOENT;
1357 
1358 	min_spi = 0x100;
1359 	max_spi = 0x0fffffff;
1360 
1361 	range = ext_hdrs[SADB_EXT_SPIRANGE-1];
1362 	if (range) {
1363 		min_spi = range->sadb_spirange_min;
1364 		max_spi = range->sadb_spirange_max;
1365 	}
1366 
1367 	err = verify_spi_info(x->id.proto, min_spi, max_spi);
1368 	if (err) {
1369 		xfrm_state_put(x);
1370 		return err;
1371 	}
1372 
1373 	err = xfrm_alloc_spi(x, min_spi, max_spi);
1374 	resp_skb = err ? ERR_PTR(err) : pfkey_xfrm_state2msg(x);
1375 
1376 	if (IS_ERR(resp_skb)) {
1377 		xfrm_state_put(x);
1378 		return  PTR_ERR(resp_skb);
1379 	}
1380 
1381 	out_hdr = (struct sadb_msg *) resp_skb->data;
1382 	out_hdr->sadb_msg_version = hdr->sadb_msg_version;
1383 	out_hdr->sadb_msg_type = SADB_GETSPI;
1384 	out_hdr->sadb_msg_satype = pfkey_proto2satype(proto);
1385 	out_hdr->sadb_msg_errno = 0;
1386 	out_hdr->sadb_msg_reserved = 0;
1387 	out_hdr->sadb_msg_seq = hdr->sadb_msg_seq;
1388 	out_hdr->sadb_msg_pid = hdr->sadb_msg_pid;
1389 
1390 	xfrm_state_put(x);
1391 
1392 	pfkey_broadcast(resp_skb, BROADCAST_ONE, sk, net);
1393 
1394 	return 0;
1395 }
1396 
1397 static int pfkey_acquire(struct sock *sk, struct sk_buff *skb, const struct sadb_msg *hdr, void * const *ext_hdrs)
1398 {
1399 	struct net *net = sock_net(sk);
1400 	struct xfrm_state *x;
1401 
1402 	if (hdr->sadb_msg_len != sizeof(struct sadb_msg)/8)
1403 		return -EOPNOTSUPP;
1404 
1405 	if (hdr->sadb_msg_seq == 0 || hdr->sadb_msg_errno == 0)
1406 		return 0;
1407 
1408 	x = xfrm_find_acq_byseq(net, DUMMY_MARK, hdr->sadb_msg_seq);
1409 	if (x == NULL)
1410 		return 0;
1411 
1412 	spin_lock_bh(&x->lock);
1413 	if (x->km.state == XFRM_STATE_ACQ)
1414 		x->km.state = XFRM_STATE_ERROR;
1415 
1416 	spin_unlock_bh(&x->lock);
1417 	xfrm_state_put(x);
1418 	return 0;
1419 }
1420 
1421 static inline int event2poltype(int event)
1422 {
1423 	switch (event) {
1424 	case XFRM_MSG_DELPOLICY:
1425 		return SADB_X_SPDDELETE;
1426 	case XFRM_MSG_NEWPOLICY:
1427 		return SADB_X_SPDADD;
1428 	case XFRM_MSG_UPDPOLICY:
1429 		return SADB_X_SPDUPDATE;
1430 	case XFRM_MSG_POLEXPIRE:
1431 	//	return SADB_X_SPDEXPIRE;
1432 	default:
1433 		pr_err("pfkey: Unknown policy event %d\n", event);
1434 		break;
1435 	}
1436 
1437 	return 0;
1438 }
1439 
1440 static inline int event2keytype(int event)
1441 {
1442 	switch (event) {
1443 	case XFRM_MSG_DELSA:
1444 		return SADB_DELETE;
1445 	case XFRM_MSG_NEWSA:
1446 		return SADB_ADD;
1447 	case XFRM_MSG_UPDSA:
1448 		return SADB_UPDATE;
1449 	case XFRM_MSG_EXPIRE:
1450 		return SADB_EXPIRE;
1451 	default:
1452 		pr_err("pfkey: Unknown SA event %d\n", event);
1453 		break;
1454 	}
1455 
1456 	return 0;
1457 }
1458 
1459 /* ADD/UPD/DEL */
1460 static int key_notify_sa(struct xfrm_state *x, const struct km_event *c)
1461 {
1462 	struct sk_buff *skb;
1463 	struct sadb_msg *hdr;
1464 
1465 	skb = pfkey_xfrm_state2msg(x);
1466 
1467 	if (IS_ERR(skb))
1468 		return PTR_ERR(skb);
1469 
1470 	hdr = (struct sadb_msg *) skb->data;
1471 	hdr->sadb_msg_version = PF_KEY_V2;
1472 	hdr->sadb_msg_type = event2keytype(c->event);
1473 	hdr->sadb_msg_satype = pfkey_proto2satype(x->id.proto);
1474 	hdr->sadb_msg_errno = 0;
1475 	hdr->sadb_msg_reserved = 0;
1476 	hdr->sadb_msg_seq = c->seq;
1477 	hdr->sadb_msg_pid = c->portid;
1478 
1479 	pfkey_broadcast(skb, BROADCAST_ALL, NULL, xs_net(x));
1480 
1481 	return 0;
1482 }
1483 
1484 static int pfkey_add(struct sock *sk, struct sk_buff *skb, const struct sadb_msg *hdr, void * const *ext_hdrs)
1485 {
1486 	struct net *net = sock_net(sk);
1487 	struct xfrm_state *x;
1488 	int err;
1489 	struct km_event c;
1490 
1491 	x = pfkey_msg2xfrm_state(net, hdr, ext_hdrs);
1492 	if (IS_ERR(x))
1493 		return PTR_ERR(x);
1494 
1495 	xfrm_state_hold(x);
1496 	if (hdr->sadb_msg_type == SADB_ADD)
1497 		err = xfrm_state_add(x);
1498 	else
1499 		err = xfrm_state_update(x);
1500 
1501 	xfrm_audit_state_add(x, err ? 0 : 1, true);
1502 
1503 	if (err < 0) {
1504 		x->km.state = XFRM_STATE_DEAD;
1505 		__xfrm_state_put(x);
1506 		goto out;
1507 	}
1508 
1509 	if (hdr->sadb_msg_type == SADB_ADD)
1510 		c.event = XFRM_MSG_NEWSA;
1511 	else
1512 		c.event = XFRM_MSG_UPDSA;
1513 	c.seq = hdr->sadb_msg_seq;
1514 	c.portid = hdr->sadb_msg_pid;
1515 	km_state_notify(x, &c);
1516 out:
1517 	xfrm_state_put(x);
1518 	return err;
1519 }
1520 
1521 static int pfkey_delete(struct sock *sk, struct sk_buff *skb, const struct sadb_msg *hdr, void * const *ext_hdrs)
1522 {
1523 	struct net *net = sock_net(sk);
1524 	struct xfrm_state *x;
1525 	struct km_event c;
1526 	int err;
1527 
1528 	if (!ext_hdrs[SADB_EXT_SA-1] ||
1529 	    !present_and_same_family(ext_hdrs[SADB_EXT_ADDRESS_SRC-1],
1530 				     ext_hdrs[SADB_EXT_ADDRESS_DST-1]))
1531 		return -EINVAL;
1532 
1533 	x = pfkey_xfrm_state_lookup(net, hdr, ext_hdrs);
1534 	if (x == NULL)
1535 		return -ESRCH;
1536 
1537 	if ((err = security_xfrm_state_delete(x)))
1538 		goto out;
1539 
1540 	if (xfrm_state_kern(x)) {
1541 		err = -EPERM;
1542 		goto out;
1543 	}
1544 
1545 	err = xfrm_state_delete(x);
1546 
1547 	if (err < 0)
1548 		goto out;
1549 
1550 	c.seq = hdr->sadb_msg_seq;
1551 	c.portid = hdr->sadb_msg_pid;
1552 	c.event = XFRM_MSG_DELSA;
1553 	km_state_notify(x, &c);
1554 out:
1555 	xfrm_audit_state_delete(x, err ? 0 : 1, true);
1556 	xfrm_state_put(x);
1557 
1558 	return err;
1559 }
1560 
1561 static int pfkey_get(struct sock *sk, struct sk_buff *skb, const struct sadb_msg *hdr, void * const *ext_hdrs)
1562 {
1563 	struct net *net = sock_net(sk);
1564 	__u8 proto;
1565 	struct sk_buff *out_skb;
1566 	struct sadb_msg *out_hdr;
1567 	struct xfrm_state *x;
1568 
1569 	if (!ext_hdrs[SADB_EXT_SA-1] ||
1570 	    !present_and_same_family(ext_hdrs[SADB_EXT_ADDRESS_SRC-1],
1571 				     ext_hdrs[SADB_EXT_ADDRESS_DST-1]))
1572 		return -EINVAL;
1573 
1574 	x = pfkey_xfrm_state_lookup(net, hdr, ext_hdrs);
1575 	if (x == NULL)
1576 		return -ESRCH;
1577 
1578 	out_skb = pfkey_xfrm_state2msg(x);
1579 	proto = x->id.proto;
1580 	xfrm_state_put(x);
1581 	if (IS_ERR(out_skb))
1582 		return  PTR_ERR(out_skb);
1583 
1584 	out_hdr = (struct sadb_msg *) out_skb->data;
1585 	out_hdr->sadb_msg_version = hdr->sadb_msg_version;
1586 	out_hdr->sadb_msg_type = SADB_GET;
1587 	out_hdr->sadb_msg_satype = pfkey_proto2satype(proto);
1588 	out_hdr->sadb_msg_errno = 0;
1589 	out_hdr->sadb_msg_reserved = 0;
1590 	out_hdr->sadb_msg_seq = hdr->sadb_msg_seq;
1591 	out_hdr->sadb_msg_pid = hdr->sadb_msg_pid;
1592 	pfkey_broadcast(out_skb, BROADCAST_ONE, sk, sock_net(sk));
1593 
1594 	return 0;
1595 }
1596 
1597 static struct sk_buff *compose_sadb_supported(const struct sadb_msg *orig,
1598 					      gfp_t allocation)
1599 {
1600 	struct sk_buff *skb;
1601 	struct sadb_msg *hdr;
1602 	int len, auth_len, enc_len, i;
1603 
1604 	auth_len = xfrm_count_pfkey_auth_supported();
1605 	if (auth_len) {
1606 		auth_len *= sizeof(struct sadb_alg);
1607 		auth_len += sizeof(struct sadb_supported);
1608 	}
1609 
1610 	enc_len = xfrm_count_pfkey_enc_supported();
1611 	if (enc_len) {
1612 		enc_len *= sizeof(struct sadb_alg);
1613 		enc_len += sizeof(struct sadb_supported);
1614 	}
1615 
1616 	len = enc_len + auth_len + sizeof(struct sadb_msg);
1617 
1618 	skb = alloc_skb(len + 16, allocation);
1619 	if (!skb)
1620 		goto out_put_algs;
1621 
1622 	hdr = skb_put(skb, sizeof(*hdr));
1623 	pfkey_hdr_dup(hdr, orig);
1624 	hdr->sadb_msg_errno = 0;
1625 	hdr->sadb_msg_len = len / sizeof(uint64_t);
1626 
1627 	if (auth_len) {
1628 		struct sadb_supported *sp;
1629 		struct sadb_alg *ap;
1630 
1631 		sp = skb_put(skb, auth_len);
1632 		ap = (struct sadb_alg *) (sp + 1);
1633 
1634 		sp->sadb_supported_len = auth_len / sizeof(uint64_t);
1635 		sp->sadb_supported_exttype = SADB_EXT_SUPPORTED_AUTH;
1636 
1637 		for (i = 0; ; i++) {
1638 			struct xfrm_algo_desc *aalg = xfrm_aalg_get_byidx(i);
1639 			if (!aalg)
1640 				break;
1641 			if (!aalg->pfkey_supported)
1642 				continue;
1643 			if (aalg->available)
1644 				*ap++ = aalg->desc;
1645 		}
1646 	}
1647 
1648 	if (enc_len) {
1649 		struct sadb_supported *sp;
1650 		struct sadb_alg *ap;
1651 
1652 		sp = skb_put(skb, enc_len);
1653 		ap = (struct sadb_alg *) (sp + 1);
1654 
1655 		sp->sadb_supported_len = enc_len / sizeof(uint64_t);
1656 		sp->sadb_supported_exttype = SADB_EXT_SUPPORTED_ENCRYPT;
1657 
1658 		for (i = 0; ; i++) {
1659 			struct xfrm_algo_desc *ealg = xfrm_ealg_get_byidx(i);
1660 			if (!ealg)
1661 				break;
1662 			if (!ealg->pfkey_supported)
1663 				continue;
1664 			if (ealg->available)
1665 				*ap++ = ealg->desc;
1666 		}
1667 	}
1668 
1669 out_put_algs:
1670 	return skb;
1671 }
1672 
1673 static int pfkey_register(struct sock *sk, struct sk_buff *skb, const struct sadb_msg *hdr, void * const *ext_hdrs)
1674 {
1675 	struct pfkey_sock *pfk = pfkey_sk(sk);
1676 	struct sk_buff *supp_skb;
1677 
1678 	if (hdr->sadb_msg_satype > SADB_SATYPE_MAX)
1679 		return -EINVAL;
1680 
1681 	if (hdr->sadb_msg_satype != SADB_SATYPE_UNSPEC) {
1682 		if (pfk->registered&(1<<hdr->sadb_msg_satype))
1683 			return -EEXIST;
1684 		pfk->registered |= (1<<hdr->sadb_msg_satype);
1685 	}
1686 
1687 	xfrm_probe_algs();
1688 
1689 	supp_skb = compose_sadb_supported(hdr, GFP_KERNEL);
1690 	if (!supp_skb) {
1691 		if (hdr->sadb_msg_satype != SADB_SATYPE_UNSPEC)
1692 			pfk->registered &= ~(1<<hdr->sadb_msg_satype);
1693 
1694 		return -ENOBUFS;
1695 	}
1696 
1697 	pfkey_broadcast(supp_skb, BROADCAST_REGISTERED, sk, sock_net(sk));
1698 
1699 	return 0;
1700 }
1701 
1702 static int unicast_flush_resp(struct sock *sk, const struct sadb_msg *ihdr)
1703 {
1704 	struct sk_buff *skb;
1705 	struct sadb_msg *hdr;
1706 
1707 	skb = alloc_skb(sizeof(struct sadb_msg) + 16, GFP_ATOMIC);
1708 	if (!skb)
1709 		return -ENOBUFS;
1710 
1711 	hdr = skb_put_data(skb, ihdr, sizeof(struct sadb_msg));
1712 	hdr->sadb_msg_errno = (uint8_t) 0;
1713 	hdr->sadb_msg_len = (sizeof(struct sadb_msg) / sizeof(uint64_t));
1714 
1715 	return pfkey_broadcast(skb, BROADCAST_ONE, sk, sock_net(sk));
1716 }
1717 
1718 static int key_notify_sa_flush(const struct km_event *c)
1719 {
1720 	struct sk_buff *skb;
1721 	struct sadb_msg *hdr;
1722 
1723 	skb = alloc_skb(sizeof(struct sadb_msg) + 16, GFP_ATOMIC);
1724 	if (!skb)
1725 		return -ENOBUFS;
1726 	hdr = skb_put(skb, sizeof(struct sadb_msg));
1727 	hdr->sadb_msg_satype = pfkey_proto2satype(c->data.proto);
1728 	hdr->sadb_msg_type = SADB_FLUSH;
1729 	hdr->sadb_msg_seq = c->seq;
1730 	hdr->sadb_msg_pid = c->portid;
1731 	hdr->sadb_msg_version = PF_KEY_V2;
1732 	hdr->sadb_msg_errno = (uint8_t) 0;
1733 	hdr->sadb_msg_len = (sizeof(struct sadb_msg) / sizeof(uint64_t));
1734 	hdr->sadb_msg_reserved = 0;
1735 
1736 	pfkey_broadcast(skb, BROADCAST_ALL, NULL, c->net);
1737 
1738 	return 0;
1739 }
1740 
1741 static int pfkey_flush(struct sock *sk, struct sk_buff *skb, const struct sadb_msg *hdr, void * const *ext_hdrs)
1742 {
1743 	struct net *net = sock_net(sk);
1744 	unsigned int proto;
1745 	struct km_event c;
1746 	int err, err2;
1747 
1748 	proto = pfkey_satype2proto(hdr->sadb_msg_satype);
1749 	if (proto == 0)
1750 		return -EINVAL;
1751 
1752 	err = xfrm_state_flush(net, proto, true);
1753 	err2 = unicast_flush_resp(sk, hdr);
1754 	if (err || err2) {
1755 		if (err == -ESRCH) /* empty table - go quietly */
1756 			err = 0;
1757 		return err ? err : err2;
1758 	}
1759 
1760 	c.data.proto = proto;
1761 	c.seq = hdr->sadb_msg_seq;
1762 	c.portid = hdr->sadb_msg_pid;
1763 	c.event = XFRM_MSG_FLUSHSA;
1764 	c.net = net;
1765 	km_state_notify(NULL, &c);
1766 
1767 	return 0;
1768 }
1769 
1770 static int dump_sa(struct xfrm_state *x, int count, void *ptr)
1771 {
1772 	struct pfkey_sock *pfk = ptr;
1773 	struct sk_buff *out_skb;
1774 	struct sadb_msg *out_hdr;
1775 
1776 	if (!pfkey_can_dump(&pfk->sk))
1777 		return -ENOBUFS;
1778 
1779 	out_skb = pfkey_xfrm_state2msg(x);
1780 	if (IS_ERR(out_skb))
1781 		return PTR_ERR(out_skb);
1782 
1783 	out_hdr = (struct sadb_msg *) out_skb->data;
1784 	out_hdr->sadb_msg_version = pfk->dump.msg_version;
1785 	out_hdr->sadb_msg_type = SADB_DUMP;
1786 	out_hdr->sadb_msg_satype = pfkey_proto2satype(x->id.proto);
1787 	out_hdr->sadb_msg_errno = 0;
1788 	out_hdr->sadb_msg_reserved = 0;
1789 	out_hdr->sadb_msg_seq = count + 1;
1790 	out_hdr->sadb_msg_pid = pfk->dump.msg_portid;
1791 
1792 	if (pfk->dump.skb)
1793 		pfkey_broadcast(pfk->dump.skb, BROADCAST_ONE,
1794 				&pfk->sk, sock_net(&pfk->sk));
1795 	pfk->dump.skb = out_skb;
1796 
1797 	return 0;
1798 }
1799 
1800 static int pfkey_dump_sa(struct pfkey_sock *pfk)
1801 {
1802 	struct net *net = sock_net(&pfk->sk);
1803 	return xfrm_state_walk(net, &pfk->dump.u.state, dump_sa, (void *) pfk);
1804 }
1805 
1806 static void pfkey_dump_sa_done(struct pfkey_sock *pfk)
1807 {
1808 	struct net *net = sock_net(&pfk->sk);
1809 
1810 	xfrm_state_walk_done(&pfk->dump.u.state, net);
1811 }
1812 
1813 static int pfkey_dump(struct sock *sk, struct sk_buff *skb, const struct sadb_msg *hdr, void * const *ext_hdrs)
1814 {
1815 	u8 proto;
1816 	struct xfrm_address_filter *filter = NULL;
1817 	struct pfkey_sock *pfk = pfkey_sk(sk);
1818 
1819 	mutex_lock(&pfk->dump_lock);
1820 	if (pfk->dump.dump != NULL) {
1821 		mutex_unlock(&pfk->dump_lock);
1822 		return -EBUSY;
1823 	}
1824 
1825 	proto = pfkey_satype2proto(hdr->sadb_msg_satype);
1826 	if (proto == 0) {
1827 		mutex_unlock(&pfk->dump_lock);
1828 		return -EINVAL;
1829 	}
1830 
1831 	if (ext_hdrs[SADB_X_EXT_FILTER - 1]) {
1832 		struct sadb_x_filter *xfilter = ext_hdrs[SADB_X_EXT_FILTER - 1];
1833 
1834 		filter = kmalloc(sizeof(*filter), GFP_KERNEL);
1835 		if (filter == NULL) {
1836 			mutex_unlock(&pfk->dump_lock);
1837 			return -ENOMEM;
1838 		}
1839 
1840 		memcpy(&filter->saddr, &xfilter->sadb_x_filter_saddr,
1841 		       sizeof(xfrm_address_t));
1842 		memcpy(&filter->daddr, &xfilter->sadb_x_filter_daddr,
1843 		       sizeof(xfrm_address_t));
1844 		filter->family = xfilter->sadb_x_filter_family;
1845 		filter->splen = xfilter->sadb_x_filter_splen;
1846 		filter->dplen = xfilter->sadb_x_filter_dplen;
1847 	}
1848 
1849 	pfk->dump.msg_version = hdr->sadb_msg_version;
1850 	pfk->dump.msg_portid = hdr->sadb_msg_pid;
1851 	pfk->dump.dump = pfkey_dump_sa;
1852 	pfk->dump.done = pfkey_dump_sa_done;
1853 	xfrm_state_walk_init(&pfk->dump.u.state, proto, filter);
1854 	mutex_unlock(&pfk->dump_lock);
1855 
1856 	return pfkey_do_dump(pfk);
1857 }
1858 
1859 static int pfkey_promisc(struct sock *sk, struct sk_buff *skb, const struct sadb_msg *hdr, void * const *ext_hdrs)
1860 {
1861 	struct pfkey_sock *pfk = pfkey_sk(sk);
1862 	int satype = hdr->sadb_msg_satype;
1863 	bool reset_errno = false;
1864 
1865 	if (hdr->sadb_msg_len == (sizeof(*hdr) / sizeof(uint64_t))) {
1866 		reset_errno = true;
1867 		if (satype != 0 && satype != 1)
1868 			return -EINVAL;
1869 		pfk->promisc = satype;
1870 	}
1871 	if (reset_errno && skb_cloned(skb))
1872 		skb = skb_copy(skb, GFP_KERNEL);
1873 	else
1874 		skb = skb_clone(skb, GFP_KERNEL);
1875 
1876 	if (reset_errno && skb) {
1877 		struct sadb_msg *new_hdr = (struct sadb_msg *) skb->data;
1878 		new_hdr->sadb_msg_errno = 0;
1879 	}
1880 
1881 	pfkey_broadcast(skb, BROADCAST_ALL, NULL, sock_net(sk));
1882 	return 0;
1883 }
1884 
1885 static int check_reqid(struct xfrm_policy *xp, int dir, int count, void *ptr)
1886 {
1887 	int i;
1888 	u32 reqid = *(u32*)ptr;
1889 
1890 	for (i=0; i<xp->xfrm_nr; i++) {
1891 		if (xp->xfrm_vec[i].reqid == reqid)
1892 			return -EEXIST;
1893 	}
1894 	return 0;
1895 }
1896 
1897 static u32 gen_reqid(struct net *net)
1898 {
1899 	struct xfrm_policy_walk walk;
1900 	u32 start;
1901 	int rc;
1902 	static u32 reqid = IPSEC_MANUAL_REQID_MAX;
1903 
1904 	start = reqid;
1905 	do {
1906 		++reqid;
1907 		if (reqid == 0)
1908 			reqid = IPSEC_MANUAL_REQID_MAX+1;
1909 		xfrm_policy_walk_init(&walk, XFRM_POLICY_TYPE_MAIN);
1910 		rc = xfrm_policy_walk(net, &walk, check_reqid, (void*)&reqid);
1911 		xfrm_policy_walk_done(&walk, net);
1912 		if (rc != -EEXIST)
1913 			return reqid;
1914 	} while (reqid != start);
1915 	return 0;
1916 }
1917 
1918 static int
1919 parse_ipsecrequest(struct xfrm_policy *xp, struct sadb_x_ipsecrequest *rq)
1920 {
1921 	struct net *net = xp_net(xp);
1922 	struct xfrm_tmpl *t = xp->xfrm_vec + xp->xfrm_nr;
1923 	int mode;
1924 
1925 	if (xp->xfrm_nr >= XFRM_MAX_DEPTH)
1926 		return -ELOOP;
1927 
1928 	if (rq->sadb_x_ipsecrequest_mode == 0)
1929 		return -EINVAL;
1930 
1931 	t->id.proto = rq->sadb_x_ipsecrequest_proto; /* XXX check proto */
1932 	if ((mode = pfkey_mode_to_xfrm(rq->sadb_x_ipsecrequest_mode)) < 0)
1933 		return -EINVAL;
1934 	t->mode = mode;
1935 	if (rq->sadb_x_ipsecrequest_level == IPSEC_LEVEL_USE)
1936 		t->optional = 1;
1937 	else if (rq->sadb_x_ipsecrequest_level == IPSEC_LEVEL_UNIQUE) {
1938 		t->reqid = rq->sadb_x_ipsecrequest_reqid;
1939 		if (t->reqid > IPSEC_MANUAL_REQID_MAX)
1940 			t->reqid = 0;
1941 		if (!t->reqid && !(t->reqid = gen_reqid(net)))
1942 			return -ENOBUFS;
1943 	}
1944 
1945 	/* addresses present only in tunnel mode */
1946 	if (t->mode == XFRM_MODE_TUNNEL) {
1947 		int err;
1948 
1949 		err = parse_sockaddr_pair(
1950 			(struct sockaddr *)(rq + 1),
1951 			rq->sadb_x_ipsecrequest_len - sizeof(*rq),
1952 			&t->saddr, &t->id.daddr, &t->encap_family);
1953 		if (err)
1954 			return err;
1955 	} else
1956 		t->encap_family = xp->family;
1957 
1958 	/* No way to set this via kame pfkey */
1959 	t->allalgs = 1;
1960 	xp->xfrm_nr++;
1961 	return 0;
1962 }
1963 
1964 static int
1965 parse_ipsecrequests(struct xfrm_policy *xp, struct sadb_x_policy *pol)
1966 {
1967 	int err;
1968 	int len = pol->sadb_x_policy_len*8 - sizeof(struct sadb_x_policy);
1969 	struct sadb_x_ipsecrequest *rq = (void*)(pol+1);
1970 
1971 	if (pol->sadb_x_policy_len * 8 < sizeof(struct sadb_x_policy))
1972 		return -EINVAL;
1973 
1974 	while (len >= sizeof(*rq)) {
1975 		if (len < rq->sadb_x_ipsecrequest_len ||
1976 		    rq->sadb_x_ipsecrequest_len < sizeof(*rq))
1977 			return -EINVAL;
1978 
1979 		if ((err = parse_ipsecrequest(xp, rq)) < 0)
1980 			return err;
1981 		len -= rq->sadb_x_ipsecrequest_len;
1982 		rq = (void*)((u8*)rq + rq->sadb_x_ipsecrequest_len);
1983 	}
1984 	return 0;
1985 }
1986 
1987 static inline int pfkey_xfrm_policy2sec_ctx_size(const struct xfrm_policy *xp)
1988 {
1989   struct xfrm_sec_ctx *xfrm_ctx = xp->security;
1990 
1991 	if (xfrm_ctx) {
1992 		int len = sizeof(struct sadb_x_sec_ctx);
1993 		len += xfrm_ctx->ctx_len;
1994 		return PFKEY_ALIGN8(len);
1995 	}
1996 	return 0;
1997 }
1998 
1999 static int pfkey_xfrm_policy2msg_size(const struct xfrm_policy *xp)
2000 {
2001 	const struct xfrm_tmpl *t;
2002 	int sockaddr_size = pfkey_sockaddr_size(xp->family);
2003 	int socklen = 0;
2004 	int i;
2005 
2006 	for (i=0; i<xp->xfrm_nr; i++) {
2007 		t = xp->xfrm_vec + i;
2008 		socklen += pfkey_sockaddr_len(t->encap_family);
2009 	}
2010 
2011 	return sizeof(struct sadb_msg) +
2012 		(sizeof(struct sadb_lifetime) * 3) +
2013 		(sizeof(struct sadb_address) * 2) +
2014 		(sockaddr_size * 2) +
2015 		sizeof(struct sadb_x_policy) +
2016 		(xp->xfrm_nr * sizeof(struct sadb_x_ipsecrequest)) +
2017 		(socklen * 2) +
2018 		pfkey_xfrm_policy2sec_ctx_size(xp);
2019 }
2020 
2021 static struct sk_buff * pfkey_xfrm_policy2msg_prep(const struct xfrm_policy *xp)
2022 {
2023 	struct sk_buff *skb;
2024 	int size;
2025 
2026 	size = pfkey_xfrm_policy2msg_size(xp);
2027 
2028 	skb =  alloc_skb(size + 16, GFP_ATOMIC);
2029 	if (skb == NULL)
2030 		return ERR_PTR(-ENOBUFS);
2031 
2032 	return skb;
2033 }
2034 
2035 static int pfkey_xfrm_policy2msg(struct sk_buff *skb, const struct xfrm_policy *xp, int dir)
2036 {
2037 	struct sadb_msg *hdr;
2038 	struct sadb_address *addr;
2039 	struct sadb_lifetime *lifetime;
2040 	struct sadb_x_policy *pol;
2041 	struct sadb_x_sec_ctx *sec_ctx;
2042 	struct xfrm_sec_ctx *xfrm_ctx;
2043 	int i;
2044 	int size;
2045 	int sockaddr_size = pfkey_sockaddr_size(xp->family);
2046 	int socklen = pfkey_sockaddr_len(xp->family);
2047 
2048 	size = pfkey_xfrm_policy2msg_size(xp);
2049 
2050 	/* call should fill header later */
2051 	hdr = skb_put(skb, sizeof(struct sadb_msg));
2052 	memset(hdr, 0, size);	/* XXX do we need this ? */
2053 
2054 	/* src address */
2055 	addr = skb_put(skb, sizeof(struct sadb_address) + sockaddr_size);
2056 	addr->sadb_address_len =
2057 		(sizeof(struct sadb_address)+sockaddr_size)/
2058 			sizeof(uint64_t);
2059 	addr->sadb_address_exttype = SADB_EXT_ADDRESS_SRC;
2060 	addr->sadb_address_proto = pfkey_proto_from_xfrm(xp->selector.proto);
2061 	addr->sadb_address_prefixlen = xp->selector.prefixlen_s;
2062 	addr->sadb_address_reserved = 0;
2063 	if (!pfkey_sockaddr_fill(&xp->selector.saddr,
2064 				 xp->selector.sport,
2065 				 (struct sockaddr *) (addr + 1),
2066 				 xp->family))
2067 		BUG();
2068 
2069 	/* dst address */
2070 	addr = skb_put(skb, sizeof(struct sadb_address) + sockaddr_size);
2071 	addr->sadb_address_len =
2072 		(sizeof(struct sadb_address)+sockaddr_size)/
2073 			sizeof(uint64_t);
2074 	addr->sadb_address_exttype = SADB_EXT_ADDRESS_DST;
2075 	addr->sadb_address_proto = pfkey_proto_from_xfrm(xp->selector.proto);
2076 	addr->sadb_address_prefixlen = xp->selector.prefixlen_d;
2077 	addr->sadb_address_reserved = 0;
2078 
2079 	pfkey_sockaddr_fill(&xp->selector.daddr, xp->selector.dport,
2080 			    (struct sockaddr *) (addr + 1),
2081 			    xp->family);
2082 
2083 	/* hard time */
2084 	lifetime = skb_put(skb, sizeof(struct sadb_lifetime));
2085 	lifetime->sadb_lifetime_len =
2086 		sizeof(struct sadb_lifetime)/sizeof(uint64_t);
2087 	lifetime->sadb_lifetime_exttype = SADB_EXT_LIFETIME_HARD;
2088 	lifetime->sadb_lifetime_allocations =  _X2KEY(xp->lft.hard_packet_limit);
2089 	lifetime->sadb_lifetime_bytes = _X2KEY(xp->lft.hard_byte_limit);
2090 	lifetime->sadb_lifetime_addtime = xp->lft.hard_add_expires_seconds;
2091 	lifetime->sadb_lifetime_usetime = xp->lft.hard_use_expires_seconds;
2092 	/* soft time */
2093 	lifetime = skb_put(skb, sizeof(struct sadb_lifetime));
2094 	lifetime->sadb_lifetime_len =
2095 		sizeof(struct sadb_lifetime)/sizeof(uint64_t);
2096 	lifetime->sadb_lifetime_exttype = SADB_EXT_LIFETIME_SOFT;
2097 	lifetime->sadb_lifetime_allocations =  _X2KEY(xp->lft.soft_packet_limit);
2098 	lifetime->sadb_lifetime_bytes = _X2KEY(xp->lft.soft_byte_limit);
2099 	lifetime->sadb_lifetime_addtime = xp->lft.soft_add_expires_seconds;
2100 	lifetime->sadb_lifetime_usetime = xp->lft.soft_use_expires_seconds;
2101 	/* current time */
2102 	lifetime = skb_put(skb, sizeof(struct sadb_lifetime));
2103 	lifetime->sadb_lifetime_len =
2104 		sizeof(struct sadb_lifetime)/sizeof(uint64_t);
2105 	lifetime->sadb_lifetime_exttype = SADB_EXT_LIFETIME_CURRENT;
2106 	lifetime->sadb_lifetime_allocations = xp->curlft.packets;
2107 	lifetime->sadb_lifetime_bytes = xp->curlft.bytes;
2108 	lifetime->sadb_lifetime_addtime = xp->curlft.add_time;
2109 	lifetime->sadb_lifetime_usetime = xp->curlft.use_time;
2110 
2111 	pol = skb_put(skb, sizeof(struct sadb_x_policy));
2112 	pol->sadb_x_policy_len = sizeof(struct sadb_x_policy)/sizeof(uint64_t);
2113 	pol->sadb_x_policy_exttype = SADB_X_EXT_POLICY;
2114 	pol->sadb_x_policy_type = IPSEC_POLICY_DISCARD;
2115 	if (xp->action == XFRM_POLICY_ALLOW) {
2116 		if (xp->xfrm_nr)
2117 			pol->sadb_x_policy_type = IPSEC_POLICY_IPSEC;
2118 		else
2119 			pol->sadb_x_policy_type = IPSEC_POLICY_NONE;
2120 	}
2121 	pol->sadb_x_policy_dir = dir+1;
2122 	pol->sadb_x_policy_reserved = 0;
2123 	pol->sadb_x_policy_id = xp->index;
2124 	pol->sadb_x_policy_priority = xp->priority;
2125 
2126 	for (i=0; i<xp->xfrm_nr; i++) {
2127 		const struct xfrm_tmpl *t = xp->xfrm_vec + i;
2128 		struct sadb_x_ipsecrequest *rq;
2129 		int req_size;
2130 		int mode;
2131 
2132 		req_size = sizeof(struct sadb_x_ipsecrequest);
2133 		if (t->mode == XFRM_MODE_TUNNEL) {
2134 			socklen = pfkey_sockaddr_len(t->encap_family);
2135 			req_size += socklen * 2;
2136 		} else {
2137 			size -= 2*socklen;
2138 		}
2139 		rq = skb_put(skb, req_size);
2140 		pol->sadb_x_policy_len += req_size/8;
2141 		memset(rq, 0, sizeof(*rq));
2142 		rq->sadb_x_ipsecrequest_len = req_size;
2143 		rq->sadb_x_ipsecrequest_proto = t->id.proto;
2144 		if ((mode = pfkey_mode_from_xfrm(t->mode)) < 0)
2145 			return -EINVAL;
2146 		rq->sadb_x_ipsecrequest_mode = mode;
2147 		rq->sadb_x_ipsecrequest_level = IPSEC_LEVEL_REQUIRE;
2148 		if (t->reqid)
2149 			rq->sadb_x_ipsecrequest_level = IPSEC_LEVEL_UNIQUE;
2150 		if (t->optional)
2151 			rq->sadb_x_ipsecrequest_level = IPSEC_LEVEL_USE;
2152 		rq->sadb_x_ipsecrequest_reqid = t->reqid;
2153 
2154 		if (t->mode == XFRM_MODE_TUNNEL) {
2155 			u8 *sa = (void *)(rq + 1);
2156 			pfkey_sockaddr_fill(&t->saddr, 0,
2157 					    (struct sockaddr *)sa,
2158 					    t->encap_family);
2159 			pfkey_sockaddr_fill(&t->id.daddr, 0,
2160 					    (struct sockaddr *) (sa + socklen),
2161 					    t->encap_family);
2162 		}
2163 	}
2164 
2165 	/* security context */
2166 	if ((xfrm_ctx = xp->security)) {
2167 		int ctx_size = pfkey_xfrm_policy2sec_ctx_size(xp);
2168 
2169 		sec_ctx = skb_put(skb, ctx_size);
2170 		sec_ctx->sadb_x_sec_len = ctx_size / sizeof(uint64_t);
2171 		sec_ctx->sadb_x_sec_exttype = SADB_X_EXT_SEC_CTX;
2172 		sec_ctx->sadb_x_ctx_doi = xfrm_ctx->ctx_doi;
2173 		sec_ctx->sadb_x_ctx_alg = xfrm_ctx->ctx_alg;
2174 		sec_ctx->sadb_x_ctx_len = xfrm_ctx->ctx_len;
2175 		memcpy(sec_ctx + 1, xfrm_ctx->ctx_str,
2176 		       xfrm_ctx->ctx_len);
2177 	}
2178 
2179 	hdr->sadb_msg_len = size / sizeof(uint64_t);
2180 	hdr->sadb_msg_reserved = refcount_read(&xp->refcnt);
2181 
2182 	return 0;
2183 }
2184 
2185 static int key_notify_policy(struct xfrm_policy *xp, int dir, const struct km_event *c)
2186 {
2187 	struct sk_buff *out_skb;
2188 	struct sadb_msg *out_hdr;
2189 	int err;
2190 
2191 	out_skb = pfkey_xfrm_policy2msg_prep(xp);
2192 	if (IS_ERR(out_skb))
2193 		return PTR_ERR(out_skb);
2194 
2195 	err = pfkey_xfrm_policy2msg(out_skb, xp, dir);
2196 	if (err < 0)
2197 		return err;
2198 
2199 	out_hdr = (struct sadb_msg *) out_skb->data;
2200 	out_hdr->sadb_msg_version = PF_KEY_V2;
2201 
2202 	if (c->data.byid && c->event == XFRM_MSG_DELPOLICY)
2203 		out_hdr->sadb_msg_type = SADB_X_SPDDELETE2;
2204 	else
2205 		out_hdr->sadb_msg_type = event2poltype(c->event);
2206 	out_hdr->sadb_msg_errno = 0;
2207 	out_hdr->sadb_msg_seq = c->seq;
2208 	out_hdr->sadb_msg_pid = c->portid;
2209 	pfkey_broadcast(out_skb, BROADCAST_ALL, NULL, xp_net(xp));
2210 	return 0;
2211 
2212 }
2213 
2214 static int pfkey_spdadd(struct sock *sk, struct sk_buff *skb, const struct sadb_msg *hdr, void * const *ext_hdrs)
2215 {
2216 	struct net *net = sock_net(sk);
2217 	int err = 0;
2218 	struct sadb_lifetime *lifetime;
2219 	struct sadb_address *sa;
2220 	struct sadb_x_policy *pol;
2221 	struct xfrm_policy *xp;
2222 	struct km_event c;
2223 	struct sadb_x_sec_ctx *sec_ctx;
2224 
2225 	if (!present_and_same_family(ext_hdrs[SADB_EXT_ADDRESS_SRC-1],
2226 				     ext_hdrs[SADB_EXT_ADDRESS_DST-1]) ||
2227 	    !ext_hdrs[SADB_X_EXT_POLICY-1])
2228 		return -EINVAL;
2229 
2230 	pol = ext_hdrs[SADB_X_EXT_POLICY-1];
2231 	if (pol->sadb_x_policy_type > IPSEC_POLICY_IPSEC)
2232 		return -EINVAL;
2233 	if (!pol->sadb_x_policy_dir || pol->sadb_x_policy_dir >= IPSEC_DIR_MAX)
2234 		return -EINVAL;
2235 
2236 	xp = xfrm_policy_alloc(net, GFP_KERNEL);
2237 	if (xp == NULL)
2238 		return -ENOBUFS;
2239 
2240 	xp->action = (pol->sadb_x_policy_type == IPSEC_POLICY_DISCARD ?
2241 		      XFRM_POLICY_BLOCK : XFRM_POLICY_ALLOW);
2242 	xp->priority = pol->sadb_x_policy_priority;
2243 
2244 	sa = ext_hdrs[SADB_EXT_ADDRESS_SRC-1];
2245 	xp->family = pfkey_sadb_addr2xfrm_addr(sa, &xp->selector.saddr);
2246 	xp->selector.family = xp->family;
2247 	xp->selector.prefixlen_s = sa->sadb_address_prefixlen;
2248 	xp->selector.proto = pfkey_proto_to_xfrm(sa->sadb_address_proto);
2249 	xp->selector.sport = ((struct sockaddr_in *)(sa+1))->sin_port;
2250 	if (xp->selector.sport)
2251 		xp->selector.sport_mask = htons(0xffff);
2252 
2253 	sa = ext_hdrs[SADB_EXT_ADDRESS_DST-1];
2254 	pfkey_sadb_addr2xfrm_addr(sa, &xp->selector.daddr);
2255 	xp->selector.prefixlen_d = sa->sadb_address_prefixlen;
2256 
2257 	/* Amusing, we set this twice.  KAME apps appear to set same value
2258 	 * in both addresses.
2259 	 */
2260 	xp->selector.proto = pfkey_proto_to_xfrm(sa->sadb_address_proto);
2261 
2262 	xp->selector.dport = ((struct sockaddr_in *)(sa+1))->sin_port;
2263 	if (xp->selector.dport)
2264 		xp->selector.dport_mask = htons(0xffff);
2265 
2266 	sec_ctx = ext_hdrs[SADB_X_EXT_SEC_CTX - 1];
2267 	if (sec_ctx != NULL) {
2268 		struct xfrm_user_sec_ctx *uctx = pfkey_sadb2xfrm_user_sec_ctx(sec_ctx, GFP_KERNEL);
2269 
2270 		if (!uctx) {
2271 			err = -ENOBUFS;
2272 			goto out;
2273 		}
2274 
2275 		err = security_xfrm_policy_alloc(&xp->security, uctx, GFP_KERNEL);
2276 		kfree(uctx);
2277 
2278 		if (err)
2279 			goto out;
2280 	}
2281 
2282 	xp->lft.soft_byte_limit = XFRM_INF;
2283 	xp->lft.hard_byte_limit = XFRM_INF;
2284 	xp->lft.soft_packet_limit = XFRM_INF;
2285 	xp->lft.hard_packet_limit = XFRM_INF;
2286 	if ((lifetime = ext_hdrs[SADB_EXT_LIFETIME_HARD-1]) != NULL) {
2287 		xp->lft.hard_packet_limit = _KEY2X(lifetime->sadb_lifetime_allocations);
2288 		xp->lft.hard_byte_limit = _KEY2X(lifetime->sadb_lifetime_bytes);
2289 		xp->lft.hard_add_expires_seconds = lifetime->sadb_lifetime_addtime;
2290 		xp->lft.hard_use_expires_seconds = lifetime->sadb_lifetime_usetime;
2291 	}
2292 	if ((lifetime = ext_hdrs[SADB_EXT_LIFETIME_SOFT-1]) != NULL) {
2293 		xp->lft.soft_packet_limit = _KEY2X(lifetime->sadb_lifetime_allocations);
2294 		xp->lft.soft_byte_limit = _KEY2X(lifetime->sadb_lifetime_bytes);
2295 		xp->lft.soft_add_expires_seconds = lifetime->sadb_lifetime_addtime;
2296 		xp->lft.soft_use_expires_seconds = lifetime->sadb_lifetime_usetime;
2297 	}
2298 	xp->xfrm_nr = 0;
2299 	if (pol->sadb_x_policy_type == IPSEC_POLICY_IPSEC &&
2300 	    (err = parse_ipsecrequests(xp, pol)) < 0)
2301 		goto out;
2302 
2303 	err = xfrm_policy_insert(pol->sadb_x_policy_dir-1, xp,
2304 				 hdr->sadb_msg_type != SADB_X_SPDUPDATE);
2305 
2306 	xfrm_audit_policy_add(xp, err ? 0 : 1, true);
2307 
2308 	if (err)
2309 		goto out;
2310 
2311 	if (hdr->sadb_msg_type == SADB_X_SPDUPDATE)
2312 		c.event = XFRM_MSG_UPDPOLICY;
2313 	else
2314 		c.event = XFRM_MSG_NEWPOLICY;
2315 
2316 	c.seq = hdr->sadb_msg_seq;
2317 	c.portid = hdr->sadb_msg_pid;
2318 
2319 	km_policy_notify(xp, pol->sadb_x_policy_dir-1, &c);
2320 	xfrm_pol_put(xp);
2321 	return 0;
2322 
2323 out:
2324 	xp->walk.dead = 1;
2325 	xfrm_policy_destroy(xp);
2326 	return err;
2327 }
2328 
2329 static int pfkey_spddelete(struct sock *sk, struct sk_buff *skb, const struct sadb_msg *hdr, void * const *ext_hdrs)
2330 {
2331 	struct net *net = sock_net(sk);
2332 	int err;
2333 	struct sadb_address *sa;
2334 	struct sadb_x_policy *pol;
2335 	struct xfrm_policy *xp;
2336 	struct xfrm_selector sel;
2337 	struct km_event c;
2338 	struct sadb_x_sec_ctx *sec_ctx;
2339 	struct xfrm_sec_ctx *pol_ctx = NULL;
2340 
2341 	if (!present_and_same_family(ext_hdrs[SADB_EXT_ADDRESS_SRC-1],
2342 				     ext_hdrs[SADB_EXT_ADDRESS_DST-1]) ||
2343 	    !ext_hdrs[SADB_X_EXT_POLICY-1])
2344 		return -EINVAL;
2345 
2346 	pol = ext_hdrs[SADB_X_EXT_POLICY-1];
2347 	if (!pol->sadb_x_policy_dir || pol->sadb_x_policy_dir >= IPSEC_DIR_MAX)
2348 		return -EINVAL;
2349 
2350 	memset(&sel, 0, sizeof(sel));
2351 
2352 	sa = ext_hdrs[SADB_EXT_ADDRESS_SRC-1];
2353 	sel.family = pfkey_sadb_addr2xfrm_addr(sa, &sel.saddr);
2354 	sel.prefixlen_s = sa->sadb_address_prefixlen;
2355 	sel.proto = pfkey_proto_to_xfrm(sa->sadb_address_proto);
2356 	sel.sport = ((struct sockaddr_in *)(sa+1))->sin_port;
2357 	if (sel.sport)
2358 		sel.sport_mask = htons(0xffff);
2359 
2360 	sa = ext_hdrs[SADB_EXT_ADDRESS_DST-1];
2361 	pfkey_sadb_addr2xfrm_addr(sa, &sel.daddr);
2362 	sel.prefixlen_d = sa->sadb_address_prefixlen;
2363 	sel.proto = pfkey_proto_to_xfrm(sa->sadb_address_proto);
2364 	sel.dport = ((struct sockaddr_in *)(sa+1))->sin_port;
2365 	if (sel.dport)
2366 		sel.dport_mask = htons(0xffff);
2367 
2368 	sec_ctx = ext_hdrs[SADB_X_EXT_SEC_CTX - 1];
2369 	if (sec_ctx != NULL) {
2370 		struct xfrm_user_sec_ctx *uctx = pfkey_sadb2xfrm_user_sec_ctx(sec_ctx, GFP_KERNEL);
2371 
2372 		if (!uctx)
2373 			return -ENOMEM;
2374 
2375 		err = security_xfrm_policy_alloc(&pol_ctx, uctx, GFP_KERNEL);
2376 		kfree(uctx);
2377 		if (err)
2378 			return err;
2379 	}
2380 
2381 	xp = xfrm_policy_bysel_ctx(net, DUMMY_MARK, XFRM_POLICY_TYPE_MAIN,
2382 				   pol->sadb_x_policy_dir - 1, &sel, pol_ctx,
2383 				   1, &err);
2384 	security_xfrm_policy_free(pol_ctx);
2385 	if (xp == NULL)
2386 		return -ENOENT;
2387 
2388 	xfrm_audit_policy_delete(xp, err ? 0 : 1, true);
2389 
2390 	if (err)
2391 		goto out;
2392 
2393 	c.seq = hdr->sadb_msg_seq;
2394 	c.portid = hdr->sadb_msg_pid;
2395 	c.data.byid = 0;
2396 	c.event = XFRM_MSG_DELPOLICY;
2397 	km_policy_notify(xp, pol->sadb_x_policy_dir-1, &c);
2398 
2399 out:
2400 	xfrm_pol_put(xp);
2401 	if (err == 0)
2402 		xfrm_garbage_collect(net);
2403 	return err;
2404 }
2405 
2406 static int key_pol_get_resp(struct sock *sk, struct xfrm_policy *xp, const struct sadb_msg *hdr, int dir)
2407 {
2408 	int err;
2409 	struct sk_buff *out_skb;
2410 	struct sadb_msg *out_hdr;
2411 	err = 0;
2412 
2413 	out_skb = pfkey_xfrm_policy2msg_prep(xp);
2414 	if (IS_ERR(out_skb)) {
2415 		err =  PTR_ERR(out_skb);
2416 		goto out;
2417 	}
2418 	err = pfkey_xfrm_policy2msg(out_skb, xp, dir);
2419 	if (err < 0)
2420 		goto out;
2421 
2422 	out_hdr = (struct sadb_msg *) out_skb->data;
2423 	out_hdr->sadb_msg_version = hdr->sadb_msg_version;
2424 	out_hdr->sadb_msg_type = hdr->sadb_msg_type;
2425 	out_hdr->sadb_msg_satype = 0;
2426 	out_hdr->sadb_msg_errno = 0;
2427 	out_hdr->sadb_msg_seq = hdr->sadb_msg_seq;
2428 	out_hdr->sadb_msg_pid = hdr->sadb_msg_pid;
2429 	pfkey_broadcast(out_skb, BROADCAST_ONE, sk, xp_net(xp));
2430 	err = 0;
2431 
2432 out:
2433 	return err;
2434 }
2435 
2436 static int pfkey_sockaddr_pair_size(sa_family_t family)
2437 {
2438 	return PFKEY_ALIGN8(pfkey_sockaddr_len(family) * 2);
2439 }
2440 
2441 static int parse_sockaddr_pair(struct sockaddr *sa, int ext_len,
2442 			       xfrm_address_t *saddr, xfrm_address_t *daddr,
2443 			       u16 *family)
2444 {
2445 	int af, socklen;
2446 
2447 	if (ext_len < 2 || ext_len < pfkey_sockaddr_pair_size(sa->sa_family))
2448 		return -EINVAL;
2449 
2450 	af = pfkey_sockaddr_extract(sa, saddr);
2451 	if (!af)
2452 		return -EINVAL;
2453 
2454 	socklen = pfkey_sockaddr_len(af);
2455 	if (pfkey_sockaddr_extract((struct sockaddr *) (((u8 *)sa) + socklen),
2456 				   daddr) != af)
2457 		return -EINVAL;
2458 
2459 	*family = af;
2460 	return 0;
2461 }
2462 
2463 #ifdef CONFIG_NET_KEY_MIGRATE
2464 static int ipsecrequests_to_migrate(struct sadb_x_ipsecrequest *rq1, int len,
2465 				    struct xfrm_migrate *m)
2466 {
2467 	int err;
2468 	struct sadb_x_ipsecrequest *rq2;
2469 	int mode;
2470 
2471 	if (len < sizeof(*rq1) ||
2472 	    len < rq1->sadb_x_ipsecrequest_len ||
2473 	    rq1->sadb_x_ipsecrequest_len < sizeof(*rq1))
2474 		return -EINVAL;
2475 
2476 	/* old endoints */
2477 	err = parse_sockaddr_pair((struct sockaddr *)(rq1 + 1),
2478 				  rq1->sadb_x_ipsecrequest_len - sizeof(*rq1),
2479 				  &m->old_saddr, &m->old_daddr,
2480 				  &m->old_family);
2481 	if (err)
2482 		return err;
2483 
2484 	rq2 = (struct sadb_x_ipsecrequest *)((u8 *)rq1 + rq1->sadb_x_ipsecrequest_len);
2485 	len -= rq1->sadb_x_ipsecrequest_len;
2486 
2487 	if (len <= sizeof(*rq2) ||
2488 	    len < rq2->sadb_x_ipsecrequest_len ||
2489 	    rq2->sadb_x_ipsecrequest_len < sizeof(*rq2))
2490 		return -EINVAL;
2491 
2492 	/* new endpoints */
2493 	err = parse_sockaddr_pair((struct sockaddr *)(rq2 + 1),
2494 				  rq2->sadb_x_ipsecrequest_len - sizeof(*rq2),
2495 				  &m->new_saddr, &m->new_daddr,
2496 				  &m->new_family);
2497 	if (err)
2498 		return err;
2499 
2500 	if (rq1->sadb_x_ipsecrequest_proto != rq2->sadb_x_ipsecrequest_proto ||
2501 	    rq1->sadb_x_ipsecrequest_mode != rq2->sadb_x_ipsecrequest_mode ||
2502 	    rq1->sadb_x_ipsecrequest_reqid != rq2->sadb_x_ipsecrequest_reqid)
2503 		return -EINVAL;
2504 
2505 	m->proto = rq1->sadb_x_ipsecrequest_proto;
2506 	if ((mode = pfkey_mode_to_xfrm(rq1->sadb_x_ipsecrequest_mode)) < 0)
2507 		return -EINVAL;
2508 	m->mode = mode;
2509 	m->reqid = rq1->sadb_x_ipsecrequest_reqid;
2510 
2511 	return ((int)(rq1->sadb_x_ipsecrequest_len +
2512 		      rq2->sadb_x_ipsecrequest_len));
2513 }
2514 
2515 static int pfkey_migrate(struct sock *sk, struct sk_buff *skb,
2516 			 const struct sadb_msg *hdr, void * const *ext_hdrs)
2517 {
2518 	int i, len, ret, err = -EINVAL;
2519 	u8 dir;
2520 	struct sadb_address *sa;
2521 	struct sadb_x_kmaddress *kma;
2522 	struct sadb_x_policy *pol;
2523 	struct sadb_x_ipsecrequest *rq;
2524 	struct xfrm_selector sel;
2525 	struct xfrm_migrate m[XFRM_MAX_DEPTH];
2526 	struct xfrm_kmaddress k;
2527 	struct net *net = sock_net(sk);
2528 
2529 	if (!present_and_same_family(ext_hdrs[SADB_EXT_ADDRESS_SRC - 1],
2530 				     ext_hdrs[SADB_EXT_ADDRESS_DST - 1]) ||
2531 	    !ext_hdrs[SADB_X_EXT_POLICY - 1]) {
2532 		err = -EINVAL;
2533 		goto out;
2534 	}
2535 
2536 	kma = ext_hdrs[SADB_X_EXT_KMADDRESS - 1];
2537 	pol = ext_hdrs[SADB_X_EXT_POLICY - 1];
2538 
2539 	if (pol->sadb_x_policy_dir >= IPSEC_DIR_MAX) {
2540 		err = -EINVAL;
2541 		goto out;
2542 	}
2543 
2544 	if (kma) {
2545 		/* convert sadb_x_kmaddress to xfrm_kmaddress */
2546 		k.reserved = kma->sadb_x_kmaddress_reserved;
2547 		ret = parse_sockaddr_pair((struct sockaddr *)(kma + 1),
2548 					  8*(kma->sadb_x_kmaddress_len) - sizeof(*kma),
2549 					  &k.local, &k.remote, &k.family);
2550 		if (ret < 0) {
2551 			err = ret;
2552 			goto out;
2553 		}
2554 	}
2555 
2556 	dir = pol->sadb_x_policy_dir - 1;
2557 	memset(&sel, 0, sizeof(sel));
2558 
2559 	/* set source address info of selector */
2560 	sa = ext_hdrs[SADB_EXT_ADDRESS_SRC - 1];
2561 	sel.family = pfkey_sadb_addr2xfrm_addr(sa, &sel.saddr);
2562 	sel.prefixlen_s = sa->sadb_address_prefixlen;
2563 	sel.proto = pfkey_proto_to_xfrm(sa->sadb_address_proto);
2564 	sel.sport = ((struct sockaddr_in *)(sa + 1))->sin_port;
2565 	if (sel.sport)
2566 		sel.sport_mask = htons(0xffff);
2567 
2568 	/* set destination address info of selector */
2569 	sa = ext_hdrs[SADB_EXT_ADDRESS_DST - 1];
2570 	pfkey_sadb_addr2xfrm_addr(sa, &sel.daddr);
2571 	sel.prefixlen_d = sa->sadb_address_prefixlen;
2572 	sel.proto = pfkey_proto_to_xfrm(sa->sadb_address_proto);
2573 	sel.dport = ((struct sockaddr_in *)(sa + 1))->sin_port;
2574 	if (sel.dport)
2575 		sel.dport_mask = htons(0xffff);
2576 
2577 	rq = (struct sadb_x_ipsecrequest *)(pol + 1);
2578 
2579 	/* extract ipsecrequests */
2580 	i = 0;
2581 	len = pol->sadb_x_policy_len * 8 - sizeof(struct sadb_x_policy);
2582 
2583 	while (len > 0 && i < XFRM_MAX_DEPTH) {
2584 		ret = ipsecrequests_to_migrate(rq, len, &m[i]);
2585 		if (ret < 0) {
2586 			err = ret;
2587 			goto out;
2588 		} else {
2589 			rq = (struct sadb_x_ipsecrequest *)((u8 *)rq + ret);
2590 			len -= ret;
2591 			i++;
2592 		}
2593 	}
2594 
2595 	if (!i || len > 0) {
2596 		err = -EINVAL;
2597 		goto out;
2598 	}
2599 
2600 	return xfrm_migrate(&sel, dir, XFRM_POLICY_TYPE_MAIN, m, i,
2601 			    kma ? &k : NULL, net, NULL);
2602 
2603  out:
2604 	return err;
2605 }
2606 #else
2607 static int pfkey_migrate(struct sock *sk, struct sk_buff *skb,
2608 			 const struct sadb_msg *hdr, void * const *ext_hdrs)
2609 {
2610 	return -ENOPROTOOPT;
2611 }
2612 #endif
2613 
2614 
2615 static int pfkey_spdget(struct sock *sk, struct sk_buff *skb, const struct sadb_msg *hdr, void * const *ext_hdrs)
2616 {
2617 	struct net *net = sock_net(sk);
2618 	unsigned int dir;
2619 	int err = 0, delete;
2620 	struct sadb_x_policy *pol;
2621 	struct xfrm_policy *xp;
2622 	struct km_event c;
2623 
2624 	if ((pol = ext_hdrs[SADB_X_EXT_POLICY-1]) == NULL)
2625 		return -EINVAL;
2626 
2627 	dir = xfrm_policy_id2dir(pol->sadb_x_policy_id);
2628 	if (dir >= XFRM_POLICY_MAX)
2629 		return -EINVAL;
2630 
2631 	delete = (hdr->sadb_msg_type == SADB_X_SPDDELETE2);
2632 	xp = xfrm_policy_byid(net, DUMMY_MARK, XFRM_POLICY_TYPE_MAIN,
2633 			      dir, pol->sadb_x_policy_id, delete, &err);
2634 	if (xp == NULL)
2635 		return -ENOENT;
2636 
2637 	if (delete) {
2638 		xfrm_audit_policy_delete(xp, err ? 0 : 1, true);
2639 
2640 		if (err)
2641 			goto out;
2642 		c.seq = hdr->sadb_msg_seq;
2643 		c.portid = hdr->sadb_msg_pid;
2644 		c.data.byid = 1;
2645 		c.event = XFRM_MSG_DELPOLICY;
2646 		km_policy_notify(xp, dir, &c);
2647 	} else {
2648 		err = key_pol_get_resp(sk, xp, hdr, dir);
2649 	}
2650 
2651 out:
2652 	xfrm_pol_put(xp);
2653 	if (delete && err == 0)
2654 		xfrm_garbage_collect(net);
2655 	return err;
2656 }
2657 
2658 static int dump_sp(struct xfrm_policy *xp, int dir, int count, void *ptr)
2659 {
2660 	struct pfkey_sock *pfk = ptr;
2661 	struct sk_buff *out_skb;
2662 	struct sadb_msg *out_hdr;
2663 	int err;
2664 
2665 	if (!pfkey_can_dump(&pfk->sk))
2666 		return -ENOBUFS;
2667 
2668 	out_skb = pfkey_xfrm_policy2msg_prep(xp);
2669 	if (IS_ERR(out_skb))
2670 		return PTR_ERR(out_skb);
2671 
2672 	err = pfkey_xfrm_policy2msg(out_skb, xp, dir);
2673 	if (err < 0)
2674 		return err;
2675 
2676 	out_hdr = (struct sadb_msg *) out_skb->data;
2677 	out_hdr->sadb_msg_version = pfk->dump.msg_version;
2678 	out_hdr->sadb_msg_type = SADB_X_SPDDUMP;
2679 	out_hdr->sadb_msg_satype = SADB_SATYPE_UNSPEC;
2680 	out_hdr->sadb_msg_errno = 0;
2681 	out_hdr->sadb_msg_seq = count + 1;
2682 	out_hdr->sadb_msg_pid = pfk->dump.msg_portid;
2683 
2684 	if (pfk->dump.skb)
2685 		pfkey_broadcast(pfk->dump.skb, BROADCAST_ONE,
2686 				&pfk->sk, sock_net(&pfk->sk));
2687 	pfk->dump.skb = out_skb;
2688 
2689 	return 0;
2690 }
2691 
2692 static int pfkey_dump_sp(struct pfkey_sock *pfk)
2693 {
2694 	struct net *net = sock_net(&pfk->sk);
2695 	return xfrm_policy_walk(net, &pfk->dump.u.policy, dump_sp, (void *) pfk);
2696 }
2697 
2698 static void pfkey_dump_sp_done(struct pfkey_sock *pfk)
2699 {
2700 	struct net *net = sock_net((struct sock *)pfk);
2701 
2702 	xfrm_policy_walk_done(&pfk->dump.u.policy, net);
2703 }
2704 
2705 static int pfkey_spddump(struct sock *sk, struct sk_buff *skb, const struct sadb_msg *hdr, void * const *ext_hdrs)
2706 {
2707 	struct pfkey_sock *pfk = pfkey_sk(sk);
2708 
2709 	mutex_lock(&pfk->dump_lock);
2710 	if (pfk->dump.dump != NULL) {
2711 		mutex_unlock(&pfk->dump_lock);
2712 		return -EBUSY;
2713 	}
2714 
2715 	pfk->dump.msg_version = hdr->sadb_msg_version;
2716 	pfk->dump.msg_portid = hdr->sadb_msg_pid;
2717 	pfk->dump.dump = pfkey_dump_sp;
2718 	pfk->dump.done = pfkey_dump_sp_done;
2719 	xfrm_policy_walk_init(&pfk->dump.u.policy, XFRM_POLICY_TYPE_MAIN);
2720 	mutex_unlock(&pfk->dump_lock);
2721 
2722 	return pfkey_do_dump(pfk);
2723 }
2724 
2725 static int key_notify_policy_flush(const struct km_event *c)
2726 {
2727 	struct sk_buff *skb_out;
2728 	struct sadb_msg *hdr;
2729 
2730 	skb_out = alloc_skb(sizeof(struct sadb_msg) + 16, GFP_ATOMIC);
2731 	if (!skb_out)
2732 		return -ENOBUFS;
2733 	hdr = skb_put(skb_out, sizeof(struct sadb_msg));
2734 	hdr->sadb_msg_type = SADB_X_SPDFLUSH;
2735 	hdr->sadb_msg_seq = c->seq;
2736 	hdr->sadb_msg_pid = c->portid;
2737 	hdr->sadb_msg_version = PF_KEY_V2;
2738 	hdr->sadb_msg_errno = (uint8_t) 0;
2739 	hdr->sadb_msg_satype = SADB_SATYPE_UNSPEC;
2740 	hdr->sadb_msg_len = (sizeof(struct sadb_msg) / sizeof(uint64_t));
2741 	hdr->sadb_msg_reserved = 0;
2742 	pfkey_broadcast(skb_out, BROADCAST_ALL, NULL, c->net);
2743 	return 0;
2744 
2745 }
2746 
2747 static int pfkey_spdflush(struct sock *sk, struct sk_buff *skb, const struct sadb_msg *hdr, void * const *ext_hdrs)
2748 {
2749 	struct net *net = sock_net(sk);
2750 	struct km_event c;
2751 	int err, err2;
2752 
2753 	err = xfrm_policy_flush(net, XFRM_POLICY_TYPE_MAIN, true);
2754 	if (!err)
2755 		xfrm_garbage_collect(net);
2756 	err2 = unicast_flush_resp(sk, hdr);
2757 	if (err || err2) {
2758 		if (err == -ESRCH) /* empty table - old silent behavior */
2759 			return 0;
2760 		return err;
2761 	}
2762 
2763 	c.data.type = XFRM_POLICY_TYPE_MAIN;
2764 	c.event = XFRM_MSG_FLUSHPOLICY;
2765 	c.portid = hdr->sadb_msg_pid;
2766 	c.seq = hdr->sadb_msg_seq;
2767 	c.net = net;
2768 	km_policy_notify(NULL, 0, &c);
2769 
2770 	return 0;
2771 }
2772 
2773 typedef int (*pfkey_handler)(struct sock *sk, struct sk_buff *skb,
2774 			     const struct sadb_msg *hdr, void * const *ext_hdrs);
2775 static const pfkey_handler pfkey_funcs[SADB_MAX + 1] = {
2776 	[SADB_RESERVED]		= pfkey_reserved,
2777 	[SADB_GETSPI]		= pfkey_getspi,
2778 	[SADB_UPDATE]		= pfkey_add,
2779 	[SADB_ADD]		= pfkey_add,
2780 	[SADB_DELETE]		= pfkey_delete,
2781 	[SADB_GET]		= pfkey_get,
2782 	[SADB_ACQUIRE]		= pfkey_acquire,
2783 	[SADB_REGISTER]		= pfkey_register,
2784 	[SADB_EXPIRE]		= NULL,
2785 	[SADB_FLUSH]		= pfkey_flush,
2786 	[SADB_DUMP]		= pfkey_dump,
2787 	[SADB_X_PROMISC]	= pfkey_promisc,
2788 	[SADB_X_PCHANGE]	= NULL,
2789 	[SADB_X_SPDUPDATE]	= pfkey_spdadd,
2790 	[SADB_X_SPDADD]		= pfkey_spdadd,
2791 	[SADB_X_SPDDELETE]	= pfkey_spddelete,
2792 	[SADB_X_SPDGET]		= pfkey_spdget,
2793 	[SADB_X_SPDACQUIRE]	= NULL,
2794 	[SADB_X_SPDDUMP]	= pfkey_spddump,
2795 	[SADB_X_SPDFLUSH]	= pfkey_spdflush,
2796 	[SADB_X_SPDSETIDX]	= pfkey_spdadd,
2797 	[SADB_X_SPDDELETE2]	= pfkey_spdget,
2798 	[SADB_X_MIGRATE]	= pfkey_migrate,
2799 };
2800 
2801 static int pfkey_process(struct sock *sk, struct sk_buff *skb, const struct sadb_msg *hdr)
2802 {
2803 	void *ext_hdrs[SADB_EXT_MAX];
2804 	int err;
2805 
2806 	pfkey_broadcast(skb_clone(skb, GFP_KERNEL),
2807 			BROADCAST_PROMISC_ONLY, NULL, sock_net(sk));
2808 
2809 	memset(ext_hdrs, 0, sizeof(ext_hdrs));
2810 	err = parse_exthdrs(skb, hdr, ext_hdrs);
2811 	if (!err) {
2812 		err = -EOPNOTSUPP;
2813 		if (pfkey_funcs[hdr->sadb_msg_type])
2814 			err = pfkey_funcs[hdr->sadb_msg_type](sk, skb, hdr, ext_hdrs);
2815 	}
2816 	return err;
2817 }
2818 
2819 static struct sadb_msg *pfkey_get_base_msg(struct sk_buff *skb, int *errp)
2820 {
2821 	struct sadb_msg *hdr = NULL;
2822 
2823 	if (skb->len < sizeof(*hdr)) {
2824 		*errp = -EMSGSIZE;
2825 	} else {
2826 		hdr = (struct sadb_msg *) skb->data;
2827 		if (hdr->sadb_msg_version != PF_KEY_V2 ||
2828 		    hdr->sadb_msg_reserved != 0 ||
2829 		    (hdr->sadb_msg_type <= SADB_RESERVED ||
2830 		     hdr->sadb_msg_type > SADB_MAX)) {
2831 			hdr = NULL;
2832 			*errp = -EINVAL;
2833 		} else if (hdr->sadb_msg_len != (skb->len /
2834 						 sizeof(uint64_t)) ||
2835 			   hdr->sadb_msg_len < (sizeof(struct sadb_msg) /
2836 						sizeof(uint64_t))) {
2837 			hdr = NULL;
2838 			*errp = -EMSGSIZE;
2839 		} else {
2840 			*errp = 0;
2841 		}
2842 	}
2843 	return hdr;
2844 }
2845 
2846 static inline int aalg_tmpl_set(const struct xfrm_tmpl *t,
2847 				const struct xfrm_algo_desc *d)
2848 {
2849 	unsigned int id = d->desc.sadb_alg_id;
2850 
2851 	if (id >= sizeof(t->aalgos) * 8)
2852 		return 0;
2853 
2854 	return (t->aalgos >> id) & 1;
2855 }
2856 
2857 static inline int ealg_tmpl_set(const struct xfrm_tmpl *t,
2858 				const struct xfrm_algo_desc *d)
2859 {
2860 	unsigned int id = d->desc.sadb_alg_id;
2861 
2862 	if (id >= sizeof(t->ealgos) * 8)
2863 		return 0;
2864 
2865 	return (t->ealgos >> id) & 1;
2866 }
2867 
2868 static int count_ah_combs(const struct xfrm_tmpl *t)
2869 {
2870 	int i, sz = 0;
2871 
2872 	for (i = 0; ; i++) {
2873 		const struct xfrm_algo_desc *aalg = xfrm_aalg_get_byidx(i);
2874 		if (!aalg)
2875 			break;
2876 		if (!aalg->pfkey_supported)
2877 			continue;
2878 		if (aalg_tmpl_set(t, aalg) && aalg->available)
2879 			sz += sizeof(struct sadb_comb);
2880 	}
2881 	return sz + sizeof(struct sadb_prop);
2882 }
2883 
2884 static int count_esp_combs(const struct xfrm_tmpl *t)
2885 {
2886 	int i, k, sz = 0;
2887 
2888 	for (i = 0; ; i++) {
2889 		const struct xfrm_algo_desc *ealg = xfrm_ealg_get_byidx(i);
2890 		if (!ealg)
2891 			break;
2892 
2893 		if (!ealg->pfkey_supported)
2894 			continue;
2895 
2896 		if (!(ealg_tmpl_set(t, ealg) && ealg->available))
2897 			continue;
2898 
2899 		for (k = 1; ; k++) {
2900 			const struct xfrm_algo_desc *aalg = xfrm_aalg_get_byidx(k);
2901 			if (!aalg)
2902 				break;
2903 
2904 			if (!aalg->pfkey_supported)
2905 				continue;
2906 
2907 			if (aalg_tmpl_set(t, aalg) && aalg->available)
2908 				sz += sizeof(struct sadb_comb);
2909 		}
2910 	}
2911 	return sz + sizeof(struct sadb_prop);
2912 }
2913 
2914 static void dump_ah_combs(struct sk_buff *skb, const struct xfrm_tmpl *t)
2915 {
2916 	struct sadb_prop *p;
2917 	int i;
2918 
2919 	p = skb_put(skb, sizeof(struct sadb_prop));
2920 	p->sadb_prop_len = sizeof(struct sadb_prop)/8;
2921 	p->sadb_prop_exttype = SADB_EXT_PROPOSAL;
2922 	p->sadb_prop_replay = 32;
2923 	memset(p->sadb_prop_reserved, 0, sizeof(p->sadb_prop_reserved));
2924 
2925 	for (i = 0; ; i++) {
2926 		const struct xfrm_algo_desc *aalg = xfrm_aalg_get_byidx(i);
2927 		if (!aalg)
2928 			break;
2929 
2930 		if (!aalg->pfkey_supported)
2931 			continue;
2932 
2933 		if (aalg_tmpl_set(t, aalg) && aalg->available) {
2934 			struct sadb_comb *c;
2935 			c = skb_put_zero(skb, sizeof(struct sadb_comb));
2936 			p->sadb_prop_len += sizeof(struct sadb_comb)/8;
2937 			c->sadb_comb_auth = aalg->desc.sadb_alg_id;
2938 			c->sadb_comb_auth_minbits = aalg->desc.sadb_alg_minbits;
2939 			c->sadb_comb_auth_maxbits = aalg->desc.sadb_alg_maxbits;
2940 			c->sadb_comb_hard_addtime = 24*60*60;
2941 			c->sadb_comb_soft_addtime = 20*60*60;
2942 			c->sadb_comb_hard_usetime = 8*60*60;
2943 			c->sadb_comb_soft_usetime = 7*60*60;
2944 		}
2945 	}
2946 }
2947 
2948 static void dump_esp_combs(struct sk_buff *skb, const struct xfrm_tmpl *t)
2949 {
2950 	struct sadb_prop *p;
2951 	int i, k;
2952 
2953 	p = skb_put(skb, sizeof(struct sadb_prop));
2954 	p->sadb_prop_len = sizeof(struct sadb_prop)/8;
2955 	p->sadb_prop_exttype = SADB_EXT_PROPOSAL;
2956 	p->sadb_prop_replay = 32;
2957 	memset(p->sadb_prop_reserved, 0, sizeof(p->sadb_prop_reserved));
2958 
2959 	for (i=0; ; i++) {
2960 		const struct xfrm_algo_desc *ealg = xfrm_ealg_get_byidx(i);
2961 		if (!ealg)
2962 			break;
2963 
2964 		if (!ealg->pfkey_supported)
2965 			continue;
2966 
2967 		if (!(ealg_tmpl_set(t, ealg) && ealg->available))
2968 			continue;
2969 
2970 		for (k = 1; ; k++) {
2971 			struct sadb_comb *c;
2972 			const struct xfrm_algo_desc *aalg = xfrm_aalg_get_byidx(k);
2973 			if (!aalg)
2974 				break;
2975 			if (!aalg->pfkey_supported)
2976 				continue;
2977 			if (!(aalg_tmpl_set(t, aalg) && aalg->available))
2978 				continue;
2979 			c = skb_put(skb, sizeof(struct sadb_comb));
2980 			memset(c, 0, sizeof(*c));
2981 			p->sadb_prop_len += sizeof(struct sadb_comb)/8;
2982 			c->sadb_comb_auth = aalg->desc.sadb_alg_id;
2983 			c->sadb_comb_auth_minbits = aalg->desc.sadb_alg_minbits;
2984 			c->sadb_comb_auth_maxbits = aalg->desc.sadb_alg_maxbits;
2985 			c->sadb_comb_encrypt = ealg->desc.sadb_alg_id;
2986 			c->sadb_comb_encrypt_minbits = ealg->desc.sadb_alg_minbits;
2987 			c->sadb_comb_encrypt_maxbits = ealg->desc.sadb_alg_maxbits;
2988 			c->sadb_comb_hard_addtime = 24*60*60;
2989 			c->sadb_comb_soft_addtime = 20*60*60;
2990 			c->sadb_comb_hard_usetime = 8*60*60;
2991 			c->sadb_comb_soft_usetime = 7*60*60;
2992 		}
2993 	}
2994 }
2995 
2996 static int key_notify_policy_expire(struct xfrm_policy *xp, const struct km_event *c)
2997 {
2998 	return 0;
2999 }
3000 
3001 static int key_notify_sa_expire(struct xfrm_state *x, const struct km_event *c)
3002 {
3003 	struct sk_buff *out_skb;
3004 	struct sadb_msg *out_hdr;
3005 	int hard;
3006 	int hsc;
3007 
3008 	hard = c->data.hard;
3009 	if (hard)
3010 		hsc = 2;
3011 	else
3012 		hsc = 1;
3013 
3014 	out_skb = pfkey_xfrm_state2msg_expire(x, hsc);
3015 	if (IS_ERR(out_skb))
3016 		return PTR_ERR(out_skb);
3017 
3018 	out_hdr = (struct sadb_msg *) out_skb->data;
3019 	out_hdr->sadb_msg_version = PF_KEY_V2;
3020 	out_hdr->sadb_msg_type = SADB_EXPIRE;
3021 	out_hdr->sadb_msg_satype = pfkey_proto2satype(x->id.proto);
3022 	out_hdr->sadb_msg_errno = 0;
3023 	out_hdr->sadb_msg_reserved = 0;
3024 	out_hdr->sadb_msg_seq = 0;
3025 	out_hdr->sadb_msg_pid = 0;
3026 
3027 	pfkey_broadcast(out_skb, BROADCAST_REGISTERED, NULL, xs_net(x));
3028 	return 0;
3029 }
3030 
3031 static int pfkey_send_notify(struct xfrm_state *x, const struct km_event *c)
3032 {
3033 	struct net *net = x ? xs_net(x) : c->net;
3034 	struct netns_pfkey *net_pfkey = net_generic(net, pfkey_net_id);
3035 
3036 	if (atomic_read(&net_pfkey->socks_nr) == 0)
3037 		return 0;
3038 
3039 	switch (c->event) {
3040 	case XFRM_MSG_EXPIRE:
3041 		return key_notify_sa_expire(x, c);
3042 	case XFRM_MSG_DELSA:
3043 	case XFRM_MSG_NEWSA:
3044 	case XFRM_MSG_UPDSA:
3045 		return key_notify_sa(x, c);
3046 	case XFRM_MSG_FLUSHSA:
3047 		return key_notify_sa_flush(c);
3048 	case XFRM_MSG_NEWAE: /* not yet supported */
3049 		break;
3050 	default:
3051 		pr_err("pfkey: Unknown SA event %d\n", c->event);
3052 		break;
3053 	}
3054 
3055 	return 0;
3056 }
3057 
3058 static int pfkey_send_policy_notify(struct xfrm_policy *xp, int dir, const struct km_event *c)
3059 {
3060 	if (xp && xp->type != XFRM_POLICY_TYPE_MAIN)
3061 		return 0;
3062 
3063 	switch (c->event) {
3064 	case XFRM_MSG_POLEXPIRE:
3065 		return key_notify_policy_expire(xp, c);
3066 	case XFRM_MSG_DELPOLICY:
3067 	case XFRM_MSG_NEWPOLICY:
3068 	case XFRM_MSG_UPDPOLICY:
3069 		return key_notify_policy(xp, dir, c);
3070 	case XFRM_MSG_FLUSHPOLICY:
3071 		if (c->data.type != XFRM_POLICY_TYPE_MAIN)
3072 			break;
3073 		return key_notify_policy_flush(c);
3074 	default:
3075 		pr_err("pfkey: Unknown policy event %d\n", c->event);
3076 		break;
3077 	}
3078 
3079 	return 0;
3080 }
3081 
3082 static u32 get_acqseq(void)
3083 {
3084 	u32 res;
3085 	static atomic_t acqseq;
3086 
3087 	do {
3088 		res = atomic_inc_return(&acqseq);
3089 	} while (!res);
3090 	return res;
3091 }
3092 
3093 static bool pfkey_is_alive(const struct km_event *c)
3094 {
3095 	struct netns_pfkey *net_pfkey = net_generic(c->net, pfkey_net_id);
3096 	struct sock *sk;
3097 	bool is_alive = false;
3098 
3099 	rcu_read_lock();
3100 	sk_for_each_rcu(sk, &net_pfkey->table) {
3101 		if (pfkey_sk(sk)->registered) {
3102 			is_alive = true;
3103 			break;
3104 		}
3105 	}
3106 	rcu_read_unlock();
3107 
3108 	return is_alive;
3109 }
3110 
3111 static int pfkey_send_acquire(struct xfrm_state *x, struct xfrm_tmpl *t, struct xfrm_policy *xp)
3112 {
3113 	struct sk_buff *skb;
3114 	struct sadb_msg *hdr;
3115 	struct sadb_address *addr;
3116 	struct sadb_x_policy *pol;
3117 	int sockaddr_size;
3118 	int size;
3119 	struct sadb_x_sec_ctx *sec_ctx;
3120 	struct xfrm_sec_ctx *xfrm_ctx;
3121 	int ctx_size = 0;
3122 
3123 	sockaddr_size = pfkey_sockaddr_size(x->props.family);
3124 	if (!sockaddr_size)
3125 		return -EINVAL;
3126 
3127 	size = sizeof(struct sadb_msg) +
3128 		(sizeof(struct sadb_address) * 2) +
3129 		(sockaddr_size * 2) +
3130 		sizeof(struct sadb_x_policy);
3131 
3132 	if (x->id.proto == IPPROTO_AH)
3133 		size += count_ah_combs(t);
3134 	else if (x->id.proto == IPPROTO_ESP)
3135 		size += count_esp_combs(t);
3136 
3137 	if ((xfrm_ctx = x->security)) {
3138 		ctx_size = PFKEY_ALIGN8(xfrm_ctx->ctx_len);
3139 		size +=  sizeof(struct sadb_x_sec_ctx) + ctx_size;
3140 	}
3141 
3142 	skb =  alloc_skb(size + 16, GFP_ATOMIC);
3143 	if (skb == NULL)
3144 		return -ENOMEM;
3145 
3146 	hdr = skb_put(skb, sizeof(struct sadb_msg));
3147 	hdr->sadb_msg_version = PF_KEY_V2;
3148 	hdr->sadb_msg_type = SADB_ACQUIRE;
3149 	hdr->sadb_msg_satype = pfkey_proto2satype(x->id.proto);
3150 	hdr->sadb_msg_len = size / sizeof(uint64_t);
3151 	hdr->sadb_msg_errno = 0;
3152 	hdr->sadb_msg_reserved = 0;
3153 	hdr->sadb_msg_seq = x->km.seq = get_acqseq();
3154 	hdr->sadb_msg_pid = 0;
3155 
3156 	/* src address */
3157 	addr = skb_put(skb, sizeof(struct sadb_address) + sockaddr_size);
3158 	addr->sadb_address_len =
3159 		(sizeof(struct sadb_address)+sockaddr_size)/
3160 			sizeof(uint64_t);
3161 	addr->sadb_address_exttype = SADB_EXT_ADDRESS_SRC;
3162 	addr->sadb_address_proto = 0;
3163 	addr->sadb_address_reserved = 0;
3164 	addr->sadb_address_prefixlen =
3165 		pfkey_sockaddr_fill(&x->props.saddr, 0,
3166 				    (struct sockaddr *) (addr + 1),
3167 				    x->props.family);
3168 	if (!addr->sadb_address_prefixlen)
3169 		BUG();
3170 
3171 	/* dst address */
3172 	addr = skb_put(skb, sizeof(struct sadb_address) + sockaddr_size);
3173 	addr->sadb_address_len =
3174 		(sizeof(struct sadb_address)+sockaddr_size)/
3175 			sizeof(uint64_t);
3176 	addr->sadb_address_exttype = SADB_EXT_ADDRESS_DST;
3177 	addr->sadb_address_proto = 0;
3178 	addr->sadb_address_reserved = 0;
3179 	addr->sadb_address_prefixlen =
3180 		pfkey_sockaddr_fill(&x->id.daddr, 0,
3181 				    (struct sockaddr *) (addr + 1),
3182 				    x->props.family);
3183 	if (!addr->sadb_address_prefixlen)
3184 		BUG();
3185 
3186 	pol = skb_put(skb, sizeof(struct sadb_x_policy));
3187 	pol->sadb_x_policy_len = sizeof(struct sadb_x_policy)/sizeof(uint64_t);
3188 	pol->sadb_x_policy_exttype = SADB_X_EXT_POLICY;
3189 	pol->sadb_x_policy_type = IPSEC_POLICY_IPSEC;
3190 	pol->sadb_x_policy_dir = XFRM_POLICY_OUT + 1;
3191 	pol->sadb_x_policy_reserved = 0;
3192 	pol->sadb_x_policy_id = xp->index;
3193 	pol->sadb_x_policy_priority = xp->priority;
3194 
3195 	/* Set sadb_comb's. */
3196 	if (x->id.proto == IPPROTO_AH)
3197 		dump_ah_combs(skb, t);
3198 	else if (x->id.proto == IPPROTO_ESP)
3199 		dump_esp_combs(skb, t);
3200 
3201 	/* security context */
3202 	if (xfrm_ctx) {
3203 		sec_ctx = skb_put(skb,
3204 				  sizeof(struct sadb_x_sec_ctx) + ctx_size);
3205 		sec_ctx->sadb_x_sec_len =
3206 		  (sizeof(struct sadb_x_sec_ctx) + ctx_size) / sizeof(uint64_t);
3207 		sec_ctx->sadb_x_sec_exttype = SADB_X_EXT_SEC_CTX;
3208 		sec_ctx->sadb_x_ctx_doi = xfrm_ctx->ctx_doi;
3209 		sec_ctx->sadb_x_ctx_alg = xfrm_ctx->ctx_alg;
3210 		sec_ctx->sadb_x_ctx_len = xfrm_ctx->ctx_len;
3211 		memcpy(sec_ctx + 1, xfrm_ctx->ctx_str,
3212 		       xfrm_ctx->ctx_len);
3213 	}
3214 
3215 	return pfkey_broadcast(skb, BROADCAST_REGISTERED, NULL, xs_net(x));
3216 }
3217 
3218 static struct xfrm_policy *pfkey_compile_policy(struct sock *sk, int opt,
3219 						u8 *data, int len, int *dir)
3220 {
3221 	struct net *net = sock_net(sk);
3222 	struct xfrm_policy *xp;
3223 	struct sadb_x_policy *pol = (struct sadb_x_policy*)data;
3224 	struct sadb_x_sec_ctx *sec_ctx;
3225 
3226 	switch (sk->sk_family) {
3227 	case AF_INET:
3228 		if (opt != IP_IPSEC_POLICY) {
3229 			*dir = -EOPNOTSUPP;
3230 			return NULL;
3231 		}
3232 		break;
3233 #if IS_ENABLED(CONFIG_IPV6)
3234 	case AF_INET6:
3235 		if (opt != IPV6_IPSEC_POLICY) {
3236 			*dir = -EOPNOTSUPP;
3237 			return NULL;
3238 		}
3239 		break;
3240 #endif
3241 	default:
3242 		*dir = -EINVAL;
3243 		return NULL;
3244 	}
3245 
3246 	*dir = -EINVAL;
3247 
3248 	if (len < sizeof(struct sadb_x_policy) ||
3249 	    pol->sadb_x_policy_len*8 > len ||
3250 	    pol->sadb_x_policy_type > IPSEC_POLICY_BYPASS ||
3251 	    (!pol->sadb_x_policy_dir || pol->sadb_x_policy_dir > IPSEC_DIR_OUTBOUND))
3252 		return NULL;
3253 
3254 	xp = xfrm_policy_alloc(net, GFP_ATOMIC);
3255 	if (xp == NULL) {
3256 		*dir = -ENOBUFS;
3257 		return NULL;
3258 	}
3259 
3260 	xp->action = (pol->sadb_x_policy_type == IPSEC_POLICY_DISCARD ?
3261 		      XFRM_POLICY_BLOCK : XFRM_POLICY_ALLOW);
3262 
3263 	xp->lft.soft_byte_limit = XFRM_INF;
3264 	xp->lft.hard_byte_limit = XFRM_INF;
3265 	xp->lft.soft_packet_limit = XFRM_INF;
3266 	xp->lft.hard_packet_limit = XFRM_INF;
3267 	xp->family = sk->sk_family;
3268 
3269 	xp->xfrm_nr = 0;
3270 	if (pol->sadb_x_policy_type == IPSEC_POLICY_IPSEC &&
3271 	    (*dir = parse_ipsecrequests(xp, pol)) < 0)
3272 		goto out;
3273 
3274 	/* security context too */
3275 	if (len >= (pol->sadb_x_policy_len*8 +
3276 	    sizeof(struct sadb_x_sec_ctx))) {
3277 		char *p = (char *)pol;
3278 		struct xfrm_user_sec_ctx *uctx;
3279 
3280 		p += pol->sadb_x_policy_len*8;
3281 		sec_ctx = (struct sadb_x_sec_ctx *)p;
3282 		if (len < pol->sadb_x_policy_len*8 +
3283 		    sec_ctx->sadb_x_sec_len*8) {
3284 			*dir = -EINVAL;
3285 			goto out;
3286 		}
3287 		if ((*dir = verify_sec_ctx_len(p)))
3288 			goto out;
3289 		uctx = pfkey_sadb2xfrm_user_sec_ctx(sec_ctx, GFP_ATOMIC);
3290 		*dir = security_xfrm_policy_alloc(&xp->security, uctx, GFP_ATOMIC);
3291 		kfree(uctx);
3292 
3293 		if (*dir)
3294 			goto out;
3295 	}
3296 
3297 	*dir = pol->sadb_x_policy_dir-1;
3298 	return xp;
3299 
3300 out:
3301 	xp->walk.dead = 1;
3302 	xfrm_policy_destroy(xp);
3303 	return NULL;
3304 }
3305 
3306 static int pfkey_send_new_mapping(struct xfrm_state *x, xfrm_address_t *ipaddr, __be16 sport)
3307 {
3308 	struct sk_buff *skb;
3309 	struct sadb_msg *hdr;
3310 	struct sadb_sa *sa;
3311 	struct sadb_address *addr;
3312 	struct sadb_x_nat_t_port *n_port;
3313 	int sockaddr_size;
3314 	int size;
3315 	__u8 satype = (x->id.proto == IPPROTO_ESP ? SADB_SATYPE_ESP : 0);
3316 	struct xfrm_encap_tmpl *natt = NULL;
3317 
3318 	sockaddr_size = pfkey_sockaddr_size(x->props.family);
3319 	if (!sockaddr_size)
3320 		return -EINVAL;
3321 
3322 	if (!satype)
3323 		return -EINVAL;
3324 
3325 	if (!x->encap)
3326 		return -EINVAL;
3327 
3328 	natt = x->encap;
3329 
3330 	/* Build an SADB_X_NAT_T_NEW_MAPPING message:
3331 	 *
3332 	 * HDR | SA | ADDRESS_SRC (old addr) | NAT_T_SPORT (old port) |
3333 	 * ADDRESS_DST (new addr) | NAT_T_DPORT (new port)
3334 	 */
3335 
3336 	size = sizeof(struct sadb_msg) +
3337 		sizeof(struct sadb_sa) +
3338 		(sizeof(struct sadb_address) * 2) +
3339 		(sockaddr_size * 2) +
3340 		(sizeof(struct sadb_x_nat_t_port) * 2);
3341 
3342 	skb =  alloc_skb(size + 16, GFP_ATOMIC);
3343 	if (skb == NULL)
3344 		return -ENOMEM;
3345 
3346 	hdr = skb_put(skb, sizeof(struct sadb_msg));
3347 	hdr->sadb_msg_version = PF_KEY_V2;
3348 	hdr->sadb_msg_type = SADB_X_NAT_T_NEW_MAPPING;
3349 	hdr->sadb_msg_satype = satype;
3350 	hdr->sadb_msg_len = size / sizeof(uint64_t);
3351 	hdr->sadb_msg_errno = 0;
3352 	hdr->sadb_msg_reserved = 0;
3353 	hdr->sadb_msg_seq = x->km.seq = get_acqseq();
3354 	hdr->sadb_msg_pid = 0;
3355 
3356 	/* SA */
3357 	sa = skb_put(skb, sizeof(struct sadb_sa));
3358 	sa->sadb_sa_len = sizeof(struct sadb_sa)/sizeof(uint64_t);
3359 	sa->sadb_sa_exttype = SADB_EXT_SA;
3360 	sa->sadb_sa_spi = x->id.spi;
3361 	sa->sadb_sa_replay = 0;
3362 	sa->sadb_sa_state = 0;
3363 	sa->sadb_sa_auth = 0;
3364 	sa->sadb_sa_encrypt = 0;
3365 	sa->sadb_sa_flags = 0;
3366 
3367 	/* ADDRESS_SRC (old addr) */
3368 	addr = skb_put(skb, sizeof(struct sadb_address) + sockaddr_size);
3369 	addr->sadb_address_len =
3370 		(sizeof(struct sadb_address)+sockaddr_size)/
3371 			sizeof(uint64_t);
3372 	addr->sadb_address_exttype = SADB_EXT_ADDRESS_SRC;
3373 	addr->sadb_address_proto = 0;
3374 	addr->sadb_address_reserved = 0;
3375 	addr->sadb_address_prefixlen =
3376 		pfkey_sockaddr_fill(&x->props.saddr, 0,
3377 				    (struct sockaddr *) (addr + 1),
3378 				    x->props.family);
3379 	if (!addr->sadb_address_prefixlen)
3380 		BUG();
3381 
3382 	/* NAT_T_SPORT (old port) */
3383 	n_port = skb_put(skb, sizeof(*n_port));
3384 	n_port->sadb_x_nat_t_port_len = sizeof(*n_port)/sizeof(uint64_t);
3385 	n_port->sadb_x_nat_t_port_exttype = SADB_X_EXT_NAT_T_SPORT;
3386 	n_port->sadb_x_nat_t_port_port = natt->encap_sport;
3387 	n_port->sadb_x_nat_t_port_reserved = 0;
3388 
3389 	/* ADDRESS_DST (new addr) */
3390 	addr = skb_put(skb, sizeof(struct sadb_address) + sockaddr_size);
3391 	addr->sadb_address_len =
3392 		(sizeof(struct sadb_address)+sockaddr_size)/
3393 			sizeof(uint64_t);
3394 	addr->sadb_address_exttype = SADB_EXT_ADDRESS_DST;
3395 	addr->sadb_address_proto = 0;
3396 	addr->sadb_address_reserved = 0;
3397 	addr->sadb_address_prefixlen =
3398 		pfkey_sockaddr_fill(ipaddr, 0,
3399 				    (struct sockaddr *) (addr + 1),
3400 				    x->props.family);
3401 	if (!addr->sadb_address_prefixlen)
3402 		BUG();
3403 
3404 	/* NAT_T_DPORT (new port) */
3405 	n_port = skb_put(skb, sizeof(*n_port));
3406 	n_port->sadb_x_nat_t_port_len = sizeof(*n_port)/sizeof(uint64_t);
3407 	n_port->sadb_x_nat_t_port_exttype = SADB_X_EXT_NAT_T_DPORT;
3408 	n_port->sadb_x_nat_t_port_port = sport;
3409 	n_port->sadb_x_nat_t_port_reserved = 0;
3410 
3411 	return pfkey_broadcast(skb, BROADCAST_REGISTERED, NULL, xs_net(x));
3412 }
3413 
3414 #ifdef CONFIG_NET_KEY_MIGRATE
3415 static int set_sadb_address(struct sk_buff *skb, int sasize, int type,
3416 			    const struct xfrm_selector *sel)
3417 {
3418 	struct sadb_address *addr;
3419 	addr = skb_put(skb, sizeof(struct sadb_address) + sasize);
3420 	addr->sadb_address_len = (sizeof(struct sadb_address) + sasize)/8;
3421 	addr->sadb_address_exttype = type;
3422 	addr->sadb_address_proto = sel->proto;
3423 	addr->sadb_address_reserved = 0;
3424 
3425 	switch (type) {
3426 	case SADB_EXT_ADDRESS_SRC:
3427 		addr->sadb_address_prefixlen = sel->prefixlen_s;
3428 		pfkey_sockaddr_fill(&sel->saddr, 0,
3429 				    (struct sockaddr *)(addr + 1),
3430 				    sel->family);
3431 		break;
3432 	case SADB_EXT_ADDRESS_DST:
3433 		addr->sadb_address_prefixlen = sel->prefixlen_d;
3434 		pfkey_sockaddr_fill(&sel->daddr, 0,
3435 				    (struct sockaddr *)(addr + 1),
3436 				    sel->family);
3437 		break;
3438 	default:
3439 		return -EINVAL;
3440 	}
3441 
3442 	return 0;
3443 }
3444 
3445 
3446 static int set_sadb_kmaddress(struct sk_buff *skb, const struct xfrm_kmaddress *k)
3447 {
3448 	struct sadb_x_kmaddress *kma;
3449 	u8 *sa;
3450 	int family = k->family;
3451 	int socklen = pfkey_sockaddr_len(family);
3452 	int size_req;
3453 
3454 	size_req = (sizeof(struct sadb_x_kmaddress) +
3455 		    pfkey_sockaddr_pair_size(family));
3456 
3457 	kma = skb_put_zero(skb, size_req);
3458 	kma->sadb_x_kmaddress_len = size_req / 8;
3459 	kma->sadb_x_kmaddress_exttype = SADB_X_EXT_KMADDRESS;
3460 	kma->sadb_x_kmaddress_reserved = k->reserved;
3461 
3462 	sa = (u8 *)(kma + 1);
3463 	if (!pfkey_sockaddr_fill(&k->local, 0, (struct sockaddr *)sa, family) ||
3464 	    !pfkey_sockaddr_fill(&k->remote, 0, (struct sockaddr *)(sa+socklen), family))
3465 		return -EINVAL;
3466 
3467 	return 0;
3468 }
3469 
3470 static int set_ipsecrequest(struct sk_buff *skb,
3471 			    uint8_t proto, uint8_t mode, int level,
3472 			    uint32_t reqid, uint8_t family,
3473 			    const xfrm_address_t *src, const xfrm_address_t *dst)
3474 {
3475 	struct sadb_x_ipsecrequest *rq;
3476 	u8 *sa;
3477 	int socklen = pfkey_sockaddr_len(family);
3478 	int size_req;
3479 
3480 	size_req = sizeof(struct sadb_x_ipsecrequest) +
3481 		   pfkey_sockaddr_pair_size(family);
3482 
3483 	rq = skb_put_zero(skb, size_req);
3484 	rq->sadb_x_ipsecrequest_len = size_req;
3485 	rq->sadb_x_ipsecrequest_proto = proto;
3486 	rq->sadb_x_ipsecrequest_mode = mode;
3487 	rq->sadb_x_ipsecrequest_level = level;
3488 	rq->sadb_x_ipsecrequest_reqid = reqid;
3489 
3490 	sa = (u8 *) (rq + 1);
3491 	if (!pfkey_sockaddr_fill(src, 0, (struct sockaddr *)sa, family) ||
3492 	    !pfkey_sockaddr_fill(dst, 0, (struct sockaddr *)(sa + socklen), family))
3493 		return -EINVAL;
3494 
3495 	return 0;
3496 }
3497 #endif
3498 
3499 #ifdef CONFIG_NET_KEY_MIGRATE
3500 static int pfkey_send_migrate(const struct xfrm_selector *sel, u8 dir, u8 type,
3501 			      const struct xfrm_migrate *m, int num_bundles,
3502 			      const struct xfrm_kmaddress *k,
3503 			      const struct xfrm_encap_tmpl *encap)
3504 {
3505 	int i;
3506 	int sasize_sel;
3507 	int size = 0;
3508 	int size_pol = 0;
3509 	struct sk_buff *skb;
3510 	struct sadb_msg *hdr;
3511 	struct sadb_x_policy *pol;
3512 	const struct xfrm_migrate *mp;
3513 
3514 	if (type != XFRM_POLICY_TYPE_MAIN)
3515 		return 0;
3516 
3517 	if (num_bundles <= 0 || num_bundles > XFRM_MAX_DEPTH)
3518 		return -EINVAL;
3519 
3520 	if (k != NULL) {
3521 		/* addresses for KM */
3522 		size += PFKEY_ALIGN8(sizeof(struct sadb_x_kmaddress) +
3523 				     pfkey_sockaddr_pair_size(k->family));
3524 	}
3525 
3526 	/* selector */
3527 	sasize_sel = pfkey_sockaddr_size(sel->family);
3528 	if (!sasize_sel)
3529 		return -EINVAL;
3530 	size += (sizeof(struct sadb_address) + sasize_sel) * 2;
3531 
3532 	/* policy info */
3533 	size_pol += sizeof(struct sadb_x_policy);
3534 
3535 	/* ipsecrequests */
3536 	for (i = 0, mp = m; i < num_bundles; i++, mp++) {
3537 		/* old locator pair */
3538 		size_pol += sizeof(struct sadb_x_ipsecrequest) +
3539 			    pfkey_sockaddr_pair_size(mp->old_family);
3540 		/* new locator pair */
3541 		size_pol += sizeof(struct sadb_x_ipsecrequest) +
3542 			    pfkey_sockaddr_pair_size(mp->new_family);
3543 	}
3544 
3545 	size += sizeof(struct sadb_msg) + size_pol;
3546 
3547 	/* alloc buffer */
3548 	skb = alloc_skb(size, GFP_ATOMIC);
3549 	if (skb == NULL)
3550 		return -ENOMEM;
3551 
3552 	hdr = skb_put(skb, sizeof(struct sadb_msg));
3553 	hdr->sadb_msg_version = PF_KEY_V2;
3554 	hdr->sadb_msg_type = SADB_X_MIGRATE;
3555 	hdr->sadb_msg_satype = pfkey_proto2satype(m->proto);
3556 	hdr->sadb_msg_len = size / 8;
3557 	hdr->sadb_msg_errno = 0;
3558 	hdr->sadb_msg_reserved = 0;
3559 	hdr->sadb_msg_seq = 0;
3560 	hdr->sadb_msg_pid = 0;
3561 
3562 	/* Addresses to be used by KM for negotiation, if ext is available */
3563 	if (k != NULL && (set_sadb_kmaddress(skb, k) < 0))
3564 		goto err;
3565 
3566 	/* selector src */
3567 	set_sadb_address(skb, sasize_sel, SADB_EXT_ADDRESS_SRC, sel);
3568 
3569 	/* selector dst */
3570 	set_sadb_address(skb, sasize_sel, SADB_EXT_ADDRESS_DST, sel);
3571 
3572 	/* policy information */
3573 	pol = skb_put(skb, sizeof(struct sadb_x_policy));
3574 	pol->sadb_x_policy_len = size_pol / 8;
3575 	pol->sadb_x_policy_exttype = SADB_X_EXT_POLICY;
3576 	pol->sadb_x_policy_type = IPSEC_POLICY_IPSEC;
3577 	pol->sadb_x_policy_dir = dir + 1;
3578 	pol->sadb_x_policy_reserved = 0;
3579 	pol->sadb_x_policy_id = 0;
3580 	pol->sadb_x_policy_priority = 0;
3581 
3582 	for (i = 0, mp = m; i < num_bundles; i++, mp++) {
3583 		/* old ipsecrequest */
3584 		int mode = pfkey_mode_from_xfrm(mp->mode);
3585 		if (mode < 0)
3586 			goto err;
3587 		if (set_ipsecrequest(skb, mp->proto, mode,
3588 				     (mp->reqid ?  IPSEC_LEVEL_UNIQUE : IPSEC_LEVEL_REQUIRE),
3589 				     mp->reqid, mp->old_family,
3590 				     &mp->old_saddr, &mp->old_daddr) < 0)
3591 			goto err;
3592 
3593 		/* new ipsecrequest */
3594 		if (set_ipsecrequest(skb, mp->proto, mode,
3595 				     (mp->reqid ? IPSEC_LEVEL_UNIQUE : IPSEC_LEVEL_REQUIRE),
3596 				     mp->reqid, mp->new_family,
3597 				     &mp->new_saddr, &mp->new_daddr) < 0)
3598 			goto err;
3599 	}
3600 
3601 	/* broadcast migrate message to sockets */
3602 	pfkey_broadcast(skb, BROADCAST_ALL, NULL, &init_net);
3603 
3604 	return 0;
3605 
3606 err:
3607 	kfree_skb(skb);
3608 	return -EINVAL;
3609 }
3610 #else
3611 static int pfkey_send_migrate(const struct xfrm_selector *sel, u8 dir, u8 type,
3612 			      const struct xfrm_migrate *m, int num_bundles,
3613 			      const struct xfrm_kmaddress *k,
3614 			      const struct xfrm_encap_tmpl *encap)
3615 {
3616 	return -ENOPROTOOPT;
3617 }
3618 #endif
3619 
3620 static int pfkey_sendmsg(struct socket *sock, struct msghdr *msg, size_t len)
3621 {
3622 	struct sock *sk = sock->sk;
3623 	struct sk_buff *skb = NULL;
3624 	struct sadb_msg *hdr = NULL;
3625 	int err;
3626 	struct net *net = sock_net(sk);
3627 
3628 	err = -EOPNOTSUPP;
3629 	if (msg->msg_flags & MSG_OOB)
3630 		goto out;
3631 
3632 	err = -EMSGSIZE;
3633 	if ((unsigned int)len > sk->sk_sndbuf - 32)
3634 		goto out;
3635 
3636 	err = -ENOBUFS;
3637 	skb = alloc_skb(len, GFP_KERNEL);
3638 	if (skb == NULL)
3639 		goto out;
3640 
3641 	err = -EFAULT;
3642 	if (memcpy_from_msg(skb_put(skb,len), msg, len))
3643 		goto out;
3644 
3645 	hdr = pfkey_get_base_msg(skb, &err);
3646 	if (!hdr)
3647 		goto out;
3648 
3649 	mutex_lock(&net->xfrm.xfrm_cfg_mutex);
3650 	err = pfkey_process(sk, skb, hdr);
3651 	mutex_unlock(&net->xfrm.xfrm_cfg_mutex);
3652 
3653 out:
3654 	if (err && hdr && pfkey_error(hdr, err, sk) == 0)
3655 		err = 0;
3656 	kfree_skb(skb);
3657 
3658 	return err ? : len;
3659 }
3660 
3661 static int pfkey_recvmsg(struct socket *sock, struct msghdr *msg, size_t len,
3662 			 int flags)
3663 {
3664 	struct sock *sk = sock->sk;
3665 	struct pfkey_sock *pfk = pfkey_sk(sk);
3666 	struct sk_buff *skb;
3667 	int copied, err;
3668 
3669 	err = -EINVAL;
3670 	if (flags & ~(MSG_PEEK|MSG_DONTWAIT|MSG_TRUNC|MSG_CMSG_COMPAT))
3671 		goto out;
3672 
3673 	skb = skb_recv_datagram(sk, flags, flags & MSG_DONTWAIT, &err);
3674 	if (skb == NULL)
3675 		goto out;
3676 
3677 	copied = skb->len;
3678 	if (copied > len) {
3679 		msg->msg_flags |= MSG_TRUNC;
3680 		copied = len;
3681 	}
3682 
3683 	skb_reset_transport_header(skb);
3684 	err = skb_copy_datagram_msg(skb, 0, msg, copied);
3685 	if (err)
3686 		goto out_free;
3687 
3688 	sock_recv_ts_and_drops(msg, sk, skb);
3689 
3690 	err = (flags & MSG_TRUNC) ? skb->len : copied;
3691 
3692 	if (pfk->dump.dump != NULL &&
3693 	    3 * atomic_read(&sk->sk_rmem_alloc) <= sk->sk_rcvbuf)
3694 		pfkey_do_dump(pfk);
3695 
3696 out_free:
3697 	skb_free_datagram(sk, skb);
3698 out:
3699 	return err;
3700 }
3701 
3702 static const struct proto_ops pfkey_ops = {
3703 	.family		=	PF_KEY,
3704 	.owner		=	THIS_MODULE,
3705 	/* Operations that make no sense on pfkey sockets. */
3706 	.bind		=	sock_no_bind,
3707 	.connect	=	sock_no_connect,
3708 	.socketpair	=	sock_no_socketpair,
3709 	.accept		=	sock_no_accept,
3710 	.getname	=	sock_no_getname,
3711 	.ioctl		=	sock_no_ioctl,
3712 	.listen		=	sock_no_listen,
3713 	.shutdown	=	sock_no_shutdown,
3714 	.setsockopt	=	sock_no_setsockopt,
3715 	.getsockopt	=	sock_no_getsockopt,
3716 	.mmap		=	sock_no_mmap,
3717 	.sendpage	=	sock_no_sendpage,
3718 
3719 	/* Now the operations that really occur. */
3720 	.release	=	pfkey_release,
3721 	.poll		=	datagram_poll,
3722 	.sendmsg	=	pfkey_sendmsg,
3723 	.recvmsg	=	pfkey_recvmsg,
3724 };
3725 
3726 static const struct net_proto_family pfkey_family_ops = {
3727 	.family	=	PF_KEY,
3728 	.create	=	pfkey_create,
3729 	.owner	=	THIS_MODULE,
3730 };
3731 
3732 #ifdef CONFIG_PROC_FS
3733 static int pfkey_seq_show(struct seq_file *f, void *v)
3734 {
3735 	struct sock *s = sk_entry(v);
3736 
3737 	if (v == SEQ_START_TOKEN)
3738 		seq_printf(f ,"sk       RefCnt Rmem   Wmem   User   Inode\n");
3739 	else
3740 		seq_printf(f, "%pK %-6d %-6u %-6u %-6u %-6lu\n",
3741 			       s,
3742 			       refcount_read(&s->sk_refcnt),
3743 			       sk_rmem_alloc_get(s),
3744 			       sk_wmem_alloc_get(s),
3745 			       from_kuid_munged(seq_user_ns(f), sock_i_uid(s)),
3746 			       sock_i_ino(s)
3747 			       );
3748 	return 0;
3749 }
3750 
3751 static void *pfkey_seq_start(struct seq_file *f, loff_t *ppos)
3752 	__acquires(rcu)
3753 {
3754 	struct net *net = seq_file_net(f);
3755 	struct netns_pfkey *net_pfkey = net_generic(net, pfkey_net_id);
3756 
3757 	rcu_read_lock();
3758 	return seq_hlist_start_head_rcu(&net_pfkey->table, *ppos);
3759 }
3760 
3761 static void *pfkey_seq_next(struct seq_file *f, void *v, loff_t *ppos)
3762 {
3763 	struct net *net = seq_file_net(f);
3764 	struct netns_pfkey *net_pfkey = net_generic(net, pfkey_net_id);
3765 
3766 	return seq_hlist_next_rcu(v, &net_pfkey->table, ppos);
3767 }
3768 
3769 static void pfkey_seq_stop(struct seq_file *f, void *v)
3770 	__releases(rcu)
3771 {
3772 	rcu_read_unlock();
3773 }
3774 
3775 static const struct seq_operations pfkey_seq_ops = {
3776 	.start	= pfkey_seq_start,
3777 	.next	= pfkey_seq_next,
3778 	.stop	= pfkey_seq_stop,
3779 	.show	= pfkey_seq_show,
3780 };
3781 
3782 static int pfkey_seq_open(struct inode *inode, struct file *file)
3783 {
3784 	return seq_open_net(inode, file, &pfkey_seq_ops,
3785 			    sizeof(struct seq_net_private));
3786 }
3787 
3788 static const struct file_operations pfkey_proc_ops = {
3789 	.open	 = pfkey_seq_open,
3790 	.read	 = seq_read,
3791 	.llseek	 = seq_lseek,
3792 	.release = seq_release_net,
3793 };
3794 
3795 static int __net_init pfkey_init_proc(struct net *net)
3796 {
3797 	struct proc_dir_entry *e;
3798 
3799 	e = proc_create("pfkey", 0, net->proc_net, &pfkey_proc_ops);
3800 	if (e == NULL)
3801 		return -ENOMEM;
3802 
3803 	return 0;
3804 }
3805 
3806 static void __net_exit pfkey_exit_proc(struct net *net)
3807 {
3808 	remove_proc_entry("pfkey", net->proc_net);
3809 }
3810 #else
3811 static inline int pfkey_init_proc(struct net *net)
3812 {
3813 	return 0;
3814 }
3815 
3816 static inline void pfkey_exit_proc(struct net *net)
3817 {
3818 }
3819 #endif
3820 
3821 static struct xfrm_mgr pfkeyv2_mgr =
3822 {
3823 	.notify		= pfkey_send_notify,
3824 	.acquire	= pfkey_send_acquire,
3825 	.compile_policy	= pfkey_compile_policy,
3826 	.new_mapping	= pfkey_send_new_mapping,
3827 	.notify_policy	= pfkey_send_policy_notify,
3828 	.migrate	= pfkey_send_migrate,
3829 	.is_alive	= pfkey_is_alive,
3830 };
3831 
3832 static int __net_init pfkey_net_init(struct net *net)
3833 {
3834 	struct netns_pfkey *net_pfkey = net_generic(net, pfkey_net_id);
3835 	int rv;
3836 
3837 	INIT_HLIST_HEAD(&net_pfkey->table);
3838 	atomic_set(&net_pfkey->socks_nr, 0);
3839 
3840 	rv = pfkey_init_proc(net);
3841 
3842 	return rv;
3843 }
3844 
3845 static void __net_exit pfkey_net_exit(struct net *net)
3846 {
3847 	struct netns_pfkey *net_pfkey = net_generic(net, pfkey_net_id);
3848 
3849 	pfkey_exit_proc(net);
3850 	BUG_ON(!hlist_empty(&net_pfkey->table));
3851 }
3852 
3853 static struct pernet_operations pfkey_net_ops = {
3854 	.init = pfkey_net_init,
3855 	.exit = pfkey_net_exit,
3856 	.id   = &pfkey_net_id,
3857 	.size = sizeof(struct netns_pfkey),
3858 };
3859 
3860 static void __exit ipsec_pfkey_exit(void)
3861 {
3862 	xfrm_unregister_km(&pfkeyv2_mgr);
3863 	sock_unregister(PF_KEY);
3864 	unregister_pernet_subsys(&pfkey_net_ops);
3865 	proto_unregister(&key_proto);
3866 }
3867 
3868 static int __init ipsec_pfkey_init(void)
3869 {
3870 	int err = proto_register(&key_proto, 0);
3871 
3872 	if (err != 0)
3873 		goto out;
3874 
3875 	err = register_pernet_subsys(&pfkey_net_ops);
3876 	if (err != 0)
3877 		goto out_unregister_key_proto;
3878 	err = sock_register(&pfkey_family_ops);
3879 	if (err != 0)
3880 		goto out_unregister_pernet;
3881 	err = xfrm_register_km(&pfkeyv2_mgr);
3882 	if (err != 0)
3883 		goto out_sock_unregister;
3884 out:
3885 	return err;
3886 
3887 out_sock_unregister:
3888 	sock_unregister(PF_KEY);
3889 out_unregister_pernet:
3890 	unregister_pernet_subsys(&pfkey_net_ops);
3891 out_unregister_key_proto:
3892 	proto_unregister(&key_proto);
3893 	goto out;
3894 }
3895 
3896 module_init(ipsec_pfkey_init);
3897 module_exit(ipsec_pfkey_exit);
3898 MODULE_LICENSE("GPL");
3899 MODULE_ALIAS_NETPROTO(PF_KEY);
3900