1 /* xfrm_user.c: User interface to configure xfrm engine.
3 * Copyright (C) 2002 David S. Miller (davem@redhat.com)
7 * Kazunori MIYAZAWA @USAGI
8 * Kunihiro Ishiguro <kunihiro@ipinfusion.com>
13 #include <linux/crypto.h>
14 #include <linux/module.h>
15 #include <linux/kernel.h>
16 #include <linux/types.h>
17 #include <linux/slab.h>
18 #include <linux/socket.h>
19 #include <linux/string.h>
20 #include <linux/net.h>
21 #include <linux/skbuff.h>
22 #include <linux/rtnetlink.h>
23 #include <linux/pfkeyv2.h>
24 #include <linux/ipsec.h>
25 #include <linux/init.h>
26 #include <linux/security.h>
29 #include <net/netlink.h>
30 #include <asm/uaccess.h>
32 static int verify_one_alg(struct rtattr **xfrma, enum xfrm_attr_type_t type)
34 struct rtattr *rt = xfrma[type - 1];
35 struct xfrm_algo *algp;
41 len = (rt->rta_len - sizeof(*rt)) - sizeof(*algp);
47 len -= (algp->alg_key_len + 7U) / 8;
53 if (!algp->alg_key_len &&
54 strcmp(algp->alg_name, "digest_null") != 0)
59 if (!algp->alg_key_len &&
60 strcmp(algp->alg_name, "cipher_null") != 0)
65 /* Zero length keys are legal. */
72 algp->alg_name[CRYPTO_MAX_ALG_NAME - 1] = '\0';
76 static int verify_encap_tmpl(struct rtattr **xfrma)
78 struct rtattr *rt = xfrma[XFRMA_ENCAP - 1];
79 struct xfrm_encap_tmpl *encap;
84 if ((rt->rta_len - sizeof(*rt)) < sizeof(*encap))
90 static int verify_one_addr(struct rtattr **xfrma, enum xfrm_attr_type_t type,
91 xfrm_address_t **addrp)
93 struct rtattr *rt = xfrma[type - 1];
98 if ((rt->rta_len - sizeof(*rt)) < sizeof(**addrp))
102 *addrp = RTA_DATA(rt);
107 static inline int verify_sec_ctx_len(struct rtattr **xfrma)
109 struct rtattr *rt = xfrma[XFRMA_SEC_CTX - 1];
110 struct xfrm_user_sec_ctx *uctx;
116 if (rt->rta_len < sizeof(*uctx))
121 len += sizeof(struct xfrm_user_sec_ctx);
122 len += uctx->ctx_len;
124 if (uctx->len != len)
131 static int verify_newsa_info(struct xfrm_usersa_info *p,
132 struct rtattr **xfrma)
142 #if defined(CONFIG_IPV6) || defined(CONFIG_IPV6_MODULE)
154 switch (p->id.proto) {
156 if (!xfrma[XFRMA_ALG_AUTH-1] ||
157 xfrma[XFRMA_ALG_CRYPT-1] ||
158 xfrma[XFRMA_ALG_COMP-1])
163 if ((!xfrma[XFRMA_ALG_AUTH-1] &&
164 !xfrma[XFRMA_ALG_CRYPT-1]) ||
165 xfrma[XFRMA_ALG_COMP-1])
170 if (!xfrma[XFRMA_ALG_COMP-1] ||
171 xfrma[XFRMA_ALG_AUTH-1] ||
172 xfrma[XFRMA_ALG_CRYPT-1])
180 if ((err = verify_one_alg(xfrma, XFRMA_ALG_AUTH)))
182 if ((err = verify_one_alg(xfrma, XFRMA_ALG_CRYPT)))
184 if ((err = verify_one_alg(xfrma, XFRMA_ALG_COMP)))
186 if ((err = verify_encap_tmpl(xfrma)))
188 if ((err = verify_sec_ctx_len(xfrma)))
190 if ((err = verify_one_addr(xfrma, XFRMA_COADDR, NULL)))
195 case XFRM_MODE_TRANSPORT:
196 case XFRM_MODE_TUNNEL:
197 case XFRM_MODE_ROUTEOPTIMIZATION:
210 static int attach_one_algo(struct xfrm_algo **algpp, u8 *props,
211 struct xfrm_algo_desc *(*get_byname)(char *, int),
212 struct rtattr *u_arg)
214 struct rtattr *rta = u_arg;
215 struct xfrm_algo *p, *ualg;
216 struct xfrm_algo_desc *algo;
222 ualg = RTA_DATA(rta);
224 algo = get_byname(ualg->alg_name, 1);
227 *props = algo->desc.sadb_alg_id;
229 len = sizeof(*ualg) + (ualg->alg_key_len + 7U) / 8;
230 p = kmalloc(len, GFP_KERNEL);
234 memcpy(p, ualg, len);
235 strcpy(p->alg_name, algo->name);
240 static int attach_encap_tmpl(struct xfrm_encap_tmpl **encapp, struct rtattr *u_arg)
242 struct rtattr *rta = u_arg;
243 struct xfrm_encap_tmpl *p, *uencap;
248 uencap = RTA_DATA(rta);
249 p = kmalloc(sizeof(*p), GFP_KERNEL);
253 memcpy(p, uencap, sizeof(*p));
259 static inline int xfrm_user_sec_ctx_size(struct xfrm_policy *xp)
261 struct xfrm_sec_ctx *xfrm_ctx = xp->security;
265 len += sizeof(struct xfrm_user_sec_ctx);
266 len += xfrm_ctx->ctx_len;
271 static int attach_sec_ctx(struct xfrm_state *x, struct rtattr *u_arg)
273 struct xfrm_user_sec_ctx *uctx;
278 uctx = RTA_DATA(u_arg);
279 return security_xfrm_state_alloc(x, uctx);
282 static int attach_one_addr(xfrm_address_t **addrpp, struct rtattr *u_arg)
284 struct rtattr *rta = u_arg;
285 xfrm_address_t *p, *uaddrp;
290 uaddrp = RTA_DATA(rta);
291 p = kmalloc(sizeof(*p), GFP_KERNEL);
295 memcpy(p, uaddrp, sizeof(*p));
300 static void copy_from_user_state(struct xfrm_state *x, struct xfrm_usersa_info *p)
302 memcpy(&x->id, &p->id, sizeof(x->id));
303 memcpy(&x->sel, &p->sel, sizeof(x->sel));
304 memcpy(&x->lft, &p->lft, sizeof(x->lft));
305 x->props.mode = p->mode;
306 x->props.replay_window = p->replay_window;
307 x->props.reqid = p->reqid;
308 x->props.family = p->family;
309 x->props.saddr = p->saddr;
310 x->props.flags = p->flags;
314 * someday when pfkey also has support, we could have the code
315 * somehow made shareable and move it to xfrm_state.c - JHS
318 static int xfrm_update_ae_params(struct xfrm_state *x, struct rtattr **xfrma)
321 struct rtattr *rp = xfrma[XFRMA_REPLAY_VAL-1];
322 struct rtattr *lt = xfrma[XFRMA_LTIME_VAL-1];
323 struct rtattr *et = xfrma[XFRMA_ETIMER_THRESH-1];
324 struct rtattr *rt = xfrma[XFRMA_REPLAY_THRESH-1];
327 struct xfrm_replay_state *replay;
328 if (RTA_PAYLOAD(rp) < sizeof(*replay))
330 replay = RTA_DATA(rp);
331 memcpy(&x->replay, replay, sizeof(*replay));
332 memcpy(&x->preplay, replay, sizeof(*replay));
336 struct xfrm_lifetime_cur *ltime;
337 if (RTA_PAYLOAD(lt) < sizeof(*ltime))
339 ltime = RTA_DATA(lt);
340 x->curlft.bytes = ltime->bytes;
341 x->curlft.packets = ltime->packets;
342 x->curlft.add_time = ltime->add_time;
343 x->curlft.use_time = ltime->use_time;
347 if (RTA_PAYLOAD(et) < sizeof(u32))
349 x->replay_maxage = *(u32*)RTA_DATA(et);
353 if (RTA_PAYLOAD(rt) < sizeof(u32))
355 x->replay_maxdiff = *(u32*)RTA_DATA(rt);
363 static struct xfrm_state *xfrm_state_construct(struct xfrm_usersa_info *p,
364 struct rtattr **xfrma,
367 struct xfrm_state *x = xfrm_state_alloc();
373 copy_from_user_state(x, p);
375 if ((err = attach_one_algo(&x->aalg, &x->props.aalgo,
376 xfrm_aalg_get_byname,
377 xfrma[XFRMA_ALG_AUTH-1])))
379 if ((err = attach_one_algo(&x->ealg, &x->props.ealgo,
380 xfrm_ealg_get_byname,
381 xfrma[XFRMA_ALG_CRYPT-1])))
383 if ((err = attach_one_algo(&x->calg, &x->props.calgo,
384 xfrm_calg_get_byname,
385 xfrma[XFRMA_ALG_COMP-1])))
387 if ((err = attach_encap_tmpl(&x->encap, xfrma[XFRMA_ENCAP-1])))
389 if ((err = attach_one_addr(&x->coaddr, xfrma[XFRMA_COADDR-1])))
391 err = xfrm_init_state(x);
395 if ((err = attach_sec_ctx(x, xfrma[XFRMA_SEC_CTX-1])))
399 x->replay_maxdiff = sysctl_xfrm_aevent_rseqth;
400 /* sysctl_xfrm_aevent_etime is in 100ms units */
401 x->replay_maxage = (sysctl_xfrm_aevent_etime*HZ)/XFRM_AE_ETH_M;
402 x->preplay.bitmap = 0;
403 x->preplay.seq = x->replay.seq+x->replay_maxdiff;
404 x->preplay.oseq = x->replay.oseq +x->replay_maxdiff;
406 /* override default values from above */
408 err = xfrm_update_ae_params(x, (struct rtattr **)xfrma);
415 x->km.state = XFRM_STATE_DEAD;
422 static int xfrm_add_sa(struct sk_buff *skb, struct nlmsghdr *nlh, void **xfrma)
424 struct xfrm_usersa_info *p = NLMSG_DATA(nlh);
425 struct xfrm_state *x;
429 err = verify_newsa_info(p, (struct rtattr **)xfrma);
433 x = xfrm_state_construct(p, (struct rtattr **)xfrma, &err);
438 if (nlh->nlmsg_type == XFRM_MSG_NEWSA)
439 err = xfrm_state_add(x);
441 err = xfrm_state_update(x);
444 x->km.state = XFRM_STATE_DEAD;
449 c.seq = nlh->nlmsg_seq;
450 c.pid = nlh->nlmsg_pid;
451 c.event = nlh->nlmsg_type;
453 km_state_notify(x, &c);
459 static struct xfrm_state *xfrm_user_state_lookup(struct xfrm_usersa_id *p,
460 struct rtattr **xfrma,
463 struct xfrm_state *x = NULL;
466 if (xfrm_id_proto_match(p->proto, IPSEC_PROTO_ANY)) {
468 x = xfrm_state_lookup(&p->daddr, p->spi, p->proto, p->family);
470 xfrm_address_t *saddr = NULL;
472 err = verify_one_addr(xfrma, XFRMA_SRCADDR, &saddr);
481 x = xfrm_state_lookup_byaddr(&p->daddr, saddr, p->proto,
491 static int xfrm_del_sa(struct sk_buff *skb, struct nlmsghdr *nlh, void **xfrma)
493 struct xfrm_state *x;
496 struct xfrm_usersa_id *p = NLMSG_DATA(nlh);
498 x = xfrm_user_state_lookup(p, (struct rtattr **)xfrma, &err);
502 if ((err = security_xfrm_state_delete(x)) != 0)
505 if (xfrm_state_kern(x)) {
510 err = xfrm_state_delete(x);
514 c.seq = nlh->nlmsg_seq;
515 c.pid = nlh->nlmsg_pid;
516 c.event = nlh->nlmsg_type;
517 km_state_notify(x, &c);
524 static void copy_to_user_state(struct xfrm_state *x, struct xfrm_usersa_info *p)
526 memcpy(&p->id, &x->id, sizeof(p->id));
527 memcpy(&p->sel, &x->sel, sizeof(p->sel));
528 memcpy(&p->lft, &x->lft, sizeof(p->lft));
529 memcpy(&p->curlft, &x->curlft, sizeof(p->curlft));
530 memcpy(&p->stats, &x->stats, sizeof(p->stats));
531 p->saddr = x->props.saddr;
532 p->mode = x->props.mode;
533 p->replay_window = x->props.replay_window;
534 p->reqid = x->props.reqid;
535 p->family = x->props.family;
536 p->flags = x->props.flags;
540 struct xfrm_dump_info {
541 struct sk_buff *in_skb;
542 struct sk_buff *out_skb;
549 static int dump_one_state(struct xfrm_state *x, int count, void *ptr)
551 struct xfrm_dump_info *sp = ptr;
552 struct sk_buff *in_skb = sp->in_skb;
553 struct sk_buff *skb = sp->out_skb;
554 struct xfrm_usersa_info *p;
555 struct nlmsghdr *nlh;
556 unsigned char *b = skb->tail;
558 if (sp->this_idx < sp->start_idx)
561 nlh = NLMSG_PUT(skb, NETLINK_CB(in_skb).pid,
563 XFRM_MSG_NEWSA, sizeof(*p));
564 nlh->nlmsg_flags = sp->nlmsg_flags;
567 copy_to_user_state(x, p);
570 RTA_PUT(skb, XFRMA_ALG_AUTH,
571 sizeof(*(x->aalg))+(x->aalg->alg_key_len+7)/8, x->aalg);
573 RTA_PUT(skb, XFRMA_ALG_CRYPT,
574 sizeof(*(x->ealg))+(x->ealg->alg_key_len+7)/8, x->ealg);
576 RTA_PUT(skb, XFRMA_ALG_COMP, sizeof(*(x->calg)), x->calg);
579 RTA_PUT(skb, XFRMA_ENCAP, sizeof(*x->encap), x->encap);
582 int ctx_size = sizeof(struct xfrm_sec_ctx) +
583 x->security->ctx_len;
584 struct rtattr *rt = __RTA_PUT(skb, XFRMA_SEC_CTX, ctx_size);
585 struct xfrm_user_sec_ctx *uctx = RTA_DATA(rt);
587 uctx->exttype = XFRMA_SEC_CTX;
588 uctx->len = ctx_size;
589 uctx->ctx_doi = x->security->ctx_doi;
590 uctx->ctx_alg = x->security->ctx_alg;
591 uctx->ctx_len = x->security->ctx_len;
592 memcpy(uctx + 1, x->security->ctx_str, x->security->ctx_len);
596 RTA_PUT(skb, XFRMA_COADDR, sizeof(*x->coaddr), x->coaddr);
599 RTA_PUT(skb, XFRMA_LASTUSED, sizeof(x->lastused), &x->lastused);
601 nlh->nlmsg_len = skb->tail - b;
608 skb_trim(skb, b - skb->data);
612 static int xfrm_dump_sa(struct sk_buff *skb, struct netlink_callback *cb)
614 struct xfrm_dump_info info;
616 info.in_skb = cb->skb;
618 info.nlmsg_seq = cb->nlh->nlmsg_seq;
619 info.nlmsg_flags = NLM_F_MULTI;
621 info.start_idx = cb->args[0];
622 (void) xfrm_state_walk(0, dump_one_state, &info);
623 cb->args[0] = info.this_idx;
628 static struct sk_buff *xfrm_state_netlink(struct sk_buff *in_skb,
629 struct xfrm_state *x, u32 seq)
631 struct xfrm_dump_info info;
634 skb = alloc_skb(NLMSG_GOODSIZE, GFP_ATOMIC);
636 return ERR_PTR(-ENOMEM);
638 NETLINK_CB(skb).dst_pid = NETLINK_CB(in_skb).pid;
639 info.in_skb = in_skb;
641 info.nlmsg_seq = seq;
642 info.nlmsg_flags = 0;
643 info.this_idx = info.start_idx = 0;
645 if (dump_one_state(x, 0, &info)) {
653 static int xfrm_get_sa(struct sk_buff *skb, struct nlmsghdr *nlh, void **xfrma)
655 struct xfrm_usersa_id *p = NLMSG_DATA(nlh);
656 struct xfrm_state *x;
657 struct sk_buff *resp_skb;
660 x = xfrm_user_state_lookup(p, (struct rtattr **)xfrma, &err);
664 resp_skb = xfrm_state_netlink(skb, x, nlh->nlmsg_seq);
665 if (IS_ERR(resp_skb)) {
666 err = PTR_ERR(resp_skb);
668 err = netlink_unicast(xfrm_nl, resp_skb,
669 NETLINK_CB(skb).pid, MSG_DONTWAIT);
676 static int verify_userspi_info(struct xfrm_userspi_info *p)
678 switch (p->info.id.proto) {
684 /* IPCOMP spi is 16-bits. */
685 if (p->max >= 0x10000)
699 static int xfrm_alloc_userspi(struct sk_buff *skb, struct nlmsghdr *nlh, void **xfrma)
701 struct xfrm_state *x;
702 struct xfrm_userspi_info *p;
703 struct sk_buff *resp_skb;
704 xfrm_address_t *daddr;
709 err = verify_userspi_info(p);
713 family = p->info.family;
714 daddr = &p->info.id.daddr;
718 x = xfrm_find_acq_byseq(p->info.seq);
719 if (x && xfrm_addr_cmp(&x->id.daddr, daddr, family)) {
726 x = xfrm_find_acq(p->info.mode, p->info.reqid,
727 p->info.id.proto, daddr,
734 resp_skb = ERR_PTR(-ENOENT);
736 spin_lock_bh(&x->lock);
737 if (x->km.state != XFRM_STATE_DEAD) {
738 xfrm_alloc_spi(x, htonl(p->min), htonl(p->max));
740 resp_skb = xfrm_state_netlink(skb, x, nlh->nlmsg_seq);
742 spin_unlock_bh(&x->lock);
744 if (IS_ERR(resp_skb)) {
745 err = PTR_ERR(resp_skb);
749 err = netlink_unicast(xfrm_nl, resp_skb,
750 NETLINK_CB(skb).pid, MSG_DONTWAIT);
758 static int verify_policy_dir(__u8 dir)
762 case XFRM_POLICY_OUT:
763 case XFRM_POLICY_FWD:
773 static int verify_newpolicy_info(struct xfrm_userpolicy_info *p)
777 case XFRM_SHARE_SESSION:
778 case XFRM_SHARE_USER:
779 case XFRM_SHARE_UNIQUE:
787 case XFRM_POLICY_ALLOW:
788 case XFRM_POLICY_BLOCK:
795 switch (p->sel.family) {
800 #if defined(CONFIG_IPV6) || defined(CONFIG_IPV6_MODULE)
803 return -EAFNOSUPPORT;
810 return verify_policy_dir(p->dir);
813 static int copy_from_user_sec_ctx(struct xfrm_policy *pol, struct rtattr **xfrma)
815 struct rtattr *rt = xfrma[XFRMA_SEC_CTX-1];
816 struct xfrm_user_sec_ctx *uctx;
822 return security_xfrm_policy_alloc(pol, uctx);
825 static void copy_templates(struct xfrm_policy *xp, struct xfrm_user_tmpl *ut,
831 for (i = 0; i < nr; i++, ut++) {
832 struct xfrm_tmpl *t = &xp->xfrm_vec[i];
834 memcpy(&t->id, &ut->id, sizeof(struct xfrm_id));
835 memcpy(&t->saddr, &ut->saddr,
836 sizeof(xfrm_address_t));
837 t->reqid = ut->reqid;
839 t->share = ut->share;
840 t->optional = ut->optional;
841 t->aalgos = ut->aalgos;
842 t->ealgos = ut->ealgos;
843 t->calgos = ut->calgos;
847 static int copy_from_user_tmpl(struct xfrm_policy *pol, struct rtattr **xfrma)
849 struct rtattr *rt = xfrma[XFRMA_TMPL-1];
850 struct xfrm_user_tmpl *utmpl;
856 nr = (rt->rta_len - sizeof(*rt)) / sizeof(*utmpl);
858 if (nr > XFRM_MAX_DEPTH)
861 copy_templates(pol, RTA_DATA(rt), nr);
866 static void copy_from_user_policy(struct xfrm_policy *xp, struct xfrm_userpolicy_info *p)
868 xp->priority = p->priority;
869 xp->index = p->index;
870 memcpy(&xp->selector, &p->sel, sizeof(xp->selector));
871 memcpy(&xp->lft, &p->lft, sizeof(xp->lft));
872 xp->action = p->action;
873 xp->flags = p->flags;
874 xp->family = p->sel.family;
875 /* XXX xp->share = p->share; */
878 static void copy_to_user_policy(struct xfrm_policy *xp, struct xfrm_userpolicy_info *p, int dir)
880 memcpy(&p->sel, &xp->selector, sizeof(p->sel));
881 memcpy(&p->lft, &xp->lft, sizeof(p->lft));
882 memcpy(&p->curlft, &xp->curlft, sizeof(p->curlft));
883 p->priority = xp->priority;
884 p->index = xp->index;
885 p->sel.family = xp->family;
887 p->action = xp->action;
888 p->flags = xp->flags;
889 p->share = XFRM_SHARE_ANY; /* XXX xp->share */
892 static struct xfrm_policy *xfrm_policy_construct(struct xfrm_userpolicy_info *p, struct rtattr **xfrma, int *errp)
894 struct xfrm_policy *xp = xfrm_policy_alloc(GFP_KERNEL);
902 copy_from_user_policy(xp, p);
904 if (!(err = copy_from_user_tmpl(xp, xfrma)))
905 err = copy_from_user_sec_ctx(xp, xfrma);
916 static int xfrm_add_policy(struct sk_buff *skb, struct nlmsghdr *nlh, void **xfrma)
918 struct xfrm_userpolicy_info *p = NLMSG_DATA(nlh);
919 struct xfrm_policy *xp;
924 err = verify_newpolicy_info(p);
927 err = verify_sec_ctx_len((struct rtattr **)xfrma);
931 xp = xfrm_policy_construct(p, (struct rtattr **)xfrma, &err);
935 /* shouldnt excl be based on nlh flags??
936 * Aha! this is anti-netlink really i.e more pfkey derived
937 * in netlink excl is a flag and you wouldnt need
938 * a type XFRM_MSG_UPDPOLICY - JHS */
939 excl = nlh->nlmsg_type == XFRM_MSG_NEWPOLICY;
940 err = xfrm_policy_insert(p->dir, xp, excl);
942 security_xfrm_policy_free(xp);
947 c.event = nlh->nlmsg_type;
948 c.seq = nlh->nlmsg_seq;
949 c.pid = nlh->nlmsg_pid;
950 km_policy_notify(xp, p->dir, &c);
957 static int copy_to_user_tmpl(struct xfrm_policy *xp, struct sk_buff *skb)
959 struct xfrm_user_tmpl vec[XFRM_MAX_DEPTH];
962 if (xp->xfrm_nr == 0)
965 for (i = 0; i < xp->xfrm_nr; i++) {
966 struct xfrm_user_tmpl *up = &vec[i];
967 struct xfrm_tmpl *kp = &xp->xfrm_vec[i];
969 memcpy(&up->id, &kp->id, sizeof(up->id));
970 up->family = xp->family;
971 memcpy(&up->saddr, &kp->saddr, sizeof(up->saddr));
972 up->reqid = kp->reqid;
974 up->share = kp->share;
975 up->optional = kp->optional;
976 up->aalgos = kp->aalgos;
977 up->ealgos = kp->ealgos;
978 up->calgos = kp->calgos;
980 RTA_PUT(skb, XFRMA_TMPL,
981 (sizeof(struct xfrm_user_tmpl) * xp->xfrm_nr),
990 static int copy_sec_ctx(struct xfrm_sec_ctx *s, struct sk_buff *skb)
992 int ctx_size = sizeof(struct xfrm_sec_ctx) + s->ctx_len;
993 struct rtattr *rt = __RTA_PUT(skb, XFRMA_SEC_CTX, ctx_size);
994 struct xfrm_user_sec_ctx *uctx = RTA_DATA(rt);
996 uctx->exttype = XFRMA_SEC_CTX;
997 uctx->len = ctx_size;
998 uctx->ctx_doi = s->ctx_doi;
999 uctx->ctx_alg = s->ctx_alg;
1000 uctx->ctx_len = s->ctx_len;
1001 memcpy(uctx + 1, s->ctx_str, s->ctx_len);
1008 static inline int copy_to_user_state_sec_ctx(struct xfrm_state *x, struct sk_buff *skb)
1011 return copy_sec_ctx(x->security, skb);
1016 static inline int copy_to_user_sec_ctx(struct xfrm_policy *xp, struct sk_buff *skb)
1019 return copy_sec_ctx(xp->security, skb);
1024 static int dump_one_policy(struct xfrm_policy *xp, int dir, int count, void *ptr)
1026 struct xfrm_dump_info *sp = ptr;
1027 struct xfrm_userpolicy_info *p;
1028 struct sk_buff *in_skb = sp->in_skb;
1029 struct sk_buff *skb = sp->out_skb;
1030 struct nlmsghdr *nlh;
1031 unsigned char *b = skb->tail;
1033 if (sp->this_idx < sp->start_idx)
1036 nlh = NLMSG_PUT(skb, NETLINK_CB(in_skb).pid,
1038 XFRM_MSG_NEWPOLICY, sizeof(*p));
1039 p = NLMSG_DATA(nlh);
1040 nlh->nlmsg_flags = sp->nlmsg_flags;
1042 copy_to_user_policy(xp, p, dir);
1043 if (copy_to_user_tmpl(xp, skb) < 0)
1045 if (copy_to_user_sec_ctx(xp, skb))
1048 nlh->nlmsg_len = skb->tail - b;
1054 skb_trim(skb, b - skb->data);
1058 static int xfrm_dump_policy(struct sk_buff *skb, struct netlink_callback *cb)
1060 struct xfrm_dump_info info;
1062 info.in_skb = cb->skb;
1064 info.nlmsg_seq = cb->nlh->nlmsg_seq;
1065 info.nlmsg_flags = NLM_F_MULTI;
1067 info.start_idx = cb->args[0];
1068 (void) xfrm_policy_walk(dump_one_policy, &info);
1069 cb->args[0] = info.this_idx;
1074 static struct sk_buff *xfrm_policy_netlink(struct sk_buff *in_skb,
1075 struct xfrm_policy *xp,
1078 struct xfrm_dump_info info;
1079 struct sk_buff *skb;
1081 skb = alloc_skb(NLMSG_GOODSIZE, GFP_KERNEL);
1083 return ERR_PTR(-ENOMEM);
1085 NETLINK_CB(skb).dst_pid = NETLINK_CB(in_skb).pid;
1086 info.in_skb = in_skb;
1088 info.nlmsg_seq = seq;
1089 info.nlmsg_flags = 0;
1090 info.this_idx = info.start_idx = 0;
1092 if (dump_one_policy(xp, dir, 0, &info) < 0) {
1100 static int xfrm_get_policy(struct sk_buff *skb, struct nlmsghdr *nlh, void **xfrma)
1102 struct xfrm_policy *xp;
1103 struct xfrm_userpolicy_id *p;
1108 p = NLMSG_DATA(nlh);
1109 delete = nlh->nlmsg_type == XFRM_MSG_DELPOLICY;
1111 err = verify_policy_dir(p->dir);
1116 xp = xfrm_policy_byid(p->dir, p->index, delete);
1118 struct rtattr **rtattrs = (struct rtattr **)xfrma;
1119 struct rtattr *rt = rtattrs[XFRMA_SEC_CTX-1];
1120 struct xfrm_policy tmp;
1122 err = verify_sec_ctx_len(rtattrs);
1126 memset(&tmp, 0, sizeof(struct xfrm_policy));
1128 struct xfrm_user_sec_ctx *uctx = RTA_DATA(rt);
1130 if ((err = security_xfrm_policy_alloc(&tmp, uctx)))
1133 xp = xfrm_policy_bysel_ctx(p->dir, &p->sel, tmp.security, delete);
1134 security_xfrm_policy_free(&tmp);
1140 struct sk_buff *resp_skb;
1142 resp_skb = xfrm_policy_netlink(skb, xp, p->dir, nlh->nlmsg_seq);
1143 if (IS_ERR(resp_skb)) {
1144 err = PTR_ERR(resp_skb);
1146 err = netlink_unicast(xfrm_nl, resp_skb,
1147 NETLINK_CB(skb).pid,
1151 if ((err = security_xfrm_policy_delete(xp)) != 0)
1153 c.data.byid = p->index;
1154 c.event = nlh->nlmsg_type;
1155 c.seq = nlh->nlmsg_seq;
1156 c.pid = nlh->nlmsg_pid;
1157 km_policy_notify(xp, p->dir, &c);
1166 static int xfrm_flush_sa(struct sk_buff *skb, struct nlmsghdr *nlh, void **xfrma)
1169 struct xfrm_usersa_flush *p = NLMSG_DATA(nlh);
1171 xfrm_state_flush(p->proto);
1172 c.data.proto = p->proto;
1173 c.event = nlh->nlmsg_type;
1174 c.seq = nlh->nlmsg_seq;
1175 c.pid = nlh->nlmsg_pid;
1176 km_state_notify(NULL, &c);
1182 static int build_aevent(struct sk_buff *skb, struct xfrm_state *x, struct km_event *c)
1184 struct xfrm_aevent_id *id;
1185 struct nlmsghdr *nlh;
1186 struct xfrm_lifetime_cur ltime;
1187 unsigned char *b = skb->tail;
1189 nlh = NLMSG_PUT(skb, c->pid, c->seq, XFRM_MSG_NEWAE, sizeof(*id));
1190 id = NLMSG_DATA(nlh);
1191 nlh->nlmsg_flags = 0;
1193 id->sa_id.daddr = x->id.daddr;
1194 id->sa_id.spi = x->id.spi;
1195 id->sa_id.family = x->props.family;
1196 id->sa_id.proto = x->id.proto;
1197 id->flags = c->data.aevent;
1199 RTA_PUT(skb, XFRMA_REPLAY_VAL, sizeof(x->replay), &x->replay);
1201 ltime.bytes = x->curlft.bytes;
1202 ltime.packets = x->curlft.packets;
1203 ltime.add_time = x->curlft.add_time;
1204 ltime.use_time = x->curlft.use_time;
1206 RTA_PUT(skb, XFRMA_LTIME_VAL, sizeof(struct xfrm_lifetime_cur), <ime);
1208 if (id->flags&XFRM_AE_RTHR) {
1209 RTA_PUT(skb,XFRMA_REPLAY_THRESH,sizeof(u32),&x->replay_maxdiff);
1212 if (id->flags&XFRM_AE_ETHR) {
1213 u32 etimer = x->replay_maxage*10/HZ;
1214 RTA_PUT(skb,XFRMA_ETIMER_THRESH,sizeof(u32),&etimer);
1217 nlh->nlmsg_len = skb->tail - b;
1222 skb_trim(skb, b - skb->data);
1226 static int xfrm_get_ae(struct sk_buff *skb, struct nlmsghdr *nlh, void **xfrma)
1228 struct xfrm_state *x;
1229 struct sk_buff *r_skb;
1232 struct xfrm_aevent_id *p = NLMSG_DATA(nlh);
1233 int len = NLMSG_LENGTH(sizeof(struct xfrm_aevent_id));
1234 struct xfrm_usersa_id *id = &p->sa_id;
1236 len += RTA_SPACE(sizeof(struct xfrm_replay_state));
1237 len += RTA_SPACE(sizeof(struct xfrm_lifetime_cur));
1239 if (p->flags&XFRM_AE_RTHR)
1240 len+=RTA_SPACE(sizeof(u32));
1242 if (p->flags&XFRM_AE_ETHR)
1243 len+=RTA_SPACE(sizeof(u32));
1245 r_skb = alloc_skb(len, GFP_ATOMIC);
1249 x = xfrm_state_lookup(&id->daddr, id->spi, id->proto, id->family);
1256 * XXX: is this lock really needed - none of the other
1257 * gets lock (the concern is things getting updated
1258 * while we are still reading) - jhs
1260 spin_lock_bh(&x->lock);
1261 c.data.aevent = p->flags;
1262 c.seq = nlh->nlmsg_seq;
1263 c.pid = nlh->nlmsg_pid;
1265 if (build_aevent(r_skb, x, &c) < 0)
1267 err = netlink_unicast(xfrm_nl, r_skb,
1268 NETLINK_CB(skb).pid, MSG_DONTWAIT);
1269 spin_unlock_bh(&x->lock);
1274 static int xfrm_new_ae(struct sk_buff *skb, struct nlmsghdr *nlh, void **xfrma)
1276 struct xfrm_state *x;
1279 struct xfrm_aevent_id *p = NLMSG_DATA(nlh);
1280 struct rtattr *rp = xfrma[XFRMA_REPLAY_VAL-1];
1281 struct rtattr *lt = xfrma[XFRMA_LTIME_VAL-1];
1286 /* pedantic mode - thou shalt sayeth replaceth */
1287 if (!(nlh->nlmsg_flags&NLM_F_REPLACE))
1290 x = xfrm_state_lookup(&p->sa_id.daddr, p->sa_id.spi, p->sa_id.proto, p->sa_id.family);
1294 if (x->km.state != XFRM_STATE_VALID)
1297 spin_lock_bh(&x->lock);
1298 err = xfrm_update_ae_params(x,(struct rtattr **)xfrma);
1299 spin_unlock_bh(&x->lock);
1303 c.event = nlh->nlmsg_type;
1304 c.seq = nlh->nlmsg_seq;
1305 c.pid = nlh->nlmsg_pid;
1306 c.data.aevent = XFRM_AE_CU;
1307 km_state_notify(x, &c);
1314 static int xfrm_flush_policy(struct sk_buff *skb, struct nlmsghdr *nlh, void **xfrma)
1318 xfrm_policy_flush();
1319 c.event = nlh->nlmsg_type;
1320 c.seq = nlh->nlmsg_seq;
1321 c.pid = nlh->nlmsg_pid;
1322 km_policy_notify(NULL, 0, &c);
1326 static int xfrm_add_pol_expire(struct sk_buff *skb, struct nlmsghdr *nlh, void **xfrma)
1328 struct xfrm_policy *xp;
1329 struct xfrm_user_polexpire *up = NLMSG_DATA(nlh);
1330 struct xfrm_userpolicy_info *p = &up->pol;
1334 xp = xfrm_policy_byid(p->dir, p->index, 0);
1336 struct rtattr **rtattrs = (struct rtattr **)xfrma;
1337 struct rtattr *rt = rtattrs[XFRMA_SEC_CTX-1];
1338 struct xfrm_policy tmp;
1340 err = verify_sec_ctx_len(rtattrs);
1344 memset(&tmp, 0, sizeof(struct xfrm_policy));
1346 struct xfrm_user_sec_ctx *uctx = RTA_DATA(rt);
1348 if ((err = security_xfrm_policy_alloc(&tmp, uctx)))
1351 xp = xfrm_policy_bysel_ctx(p->dir, &p->sel, tmp.security, 0);
1352 security_xfrm_policy_free(&tmp);
1357 read_lock(&xp->lock);
1359 read_unlock(&xp->lock);
1363 read_unlock(&xp->lock);
1366 xfrm_policy_delete(xp, p->dir);
1368 // reset the timers here?
1369 printk("Dont know what to do with soft policy expire\n");
1371 km_policy_expired(xp, p->dir, up->hard, current->pid);
1378 static int xfrm_add_sa_expire(struct sk_buff *skb, struct nlmsghdr *nlh, void **xfrma)
1380 struct xfrm_state *x;
1382 struct xfrm_user_expire *ue = NLMSG_DATA(nlh);
1383 struct xfrm_usersa_info *p = &ue->state;
1385 x = xfrm_state_lookup(&p->id.daddr, p->id.spi, p->id.proto, p->family);
1393 spin_lock_bh(&x->lock);
1394 if (x->km.state != XFRM_STATE_VALID)
1396 km_state_expired(x, ue->hard, current->pid);
1399 __xfrm_state_delete(x);
1401 spin_unlock_bh(&x->lock);
1406 static int xfrm_add_acquire(struct sk_buff *skb, struct nlmsghdr *nlh, void **xfrma)
1408 struct xfrm_policy *xp;
1409 struct xfrm_user_tmpl *ut;
1411 struct rtattr *rt = xfrma[XFRMA_TMPL-1];
1413 struct xfrm_user_acquire *ua = NLMSG_DATA(nlh);
1414 struct xfrm_state *x = xfrm_state_alloc();
1420 err = verify_newpolicy_info(&ua->policy);
1422 printk("BAD policy passed\n");
1428 xp = xfrm_policy_construct(&ua->policy, (struct rtattr **) xfrma, &err); if (!xp) {
1433 memcpy(&x->id, &ua->id, sizeof(ua->id));
1434 memcpy(&x->props.saddr, &ua->saddr, sizeof(ua->saddr));
1435 memcpy(&x->sel, &ua->sel, sizeof(ua->sel));
1438 /* extract the templates and for each call km_key */
1439 for (i = 0; i < xp->xfrm_nr; i++, ut++) {
1440 struct xfrm_tmpl *t = &xp->xfrm_vec[i];
1441 memcpy(&x->id, &t->id, sizeof(x->id));
1442 x->props.mode = t->mode;
1443 x->props.reqid = t->reqid;
1444 x->props.family = ut->family;
1445 t->aalgos = ua->aalgos;
1446 t->ealgos = ua->ealgos;
1447 t->calgos = ua->calgos;
1448 err = km_query(x, t, xp);
1459 #define XMSGSIZE(type) NLMSG_LENGTH(sizeof(struct type))
1461 static const int xfrm_msg_min[XFRM_NR_MSGTYPES] = {
1462 [XFRM_MSG_NEWSA - XFRM_MSG_BASE] = XMSGSIZE(xfrm_usersa_info),
1463 [XFRM_MSG_DELSA - XFRM_MSG_BASE] = XMSGSIZE(xfrm_usersa_id),
1464 [XFRM_MSG_GETSA - XFRM_MSG_BASE] = XMSGSIZE(xfrm_usersa_id),
1465 [XFRM_MSG_NEWPOLICY - XFRM_MSG_BASE] = XMSGSIZE(xfrm_userpolicy_info),
1466 [XFRM_MSG_DELPOLICY - XFRM_MSG_BASE] = XMSGSIZE(xfrm_userpolicy_id),
1467 [XFRM_MSG_GETPOLICY - XFRM_MSG_BASE] = XMSGSIZE(xfrm_userpolicy_id),
1468 [XFRM_MSG_ALLOCSPI - XFRM_MSG_BASE] = XMSGSIZE(xfrm_userspi_info),
1469 [XFRM_MSG_ACQUIRE - XFRM_MSG_BASE] = XMSGSIZE(xfrm_user_acquire),
1470 [XFRM_MSG_EXPIRE - XFRM_MSG_BASE] = XMSGSIZE(xfrm_user_expire),
1471 [XFRM_MSG_UPDPOLICY - XFRM_MSG_BASE] = XMSGSIZE(xfrm_userpolicy_info),
1472 [XFRM_MSG_UPDSA - XFRM_MSG_BASE] = XMSGSIZE(xfrm_usersa_info),
1473 [XFRM_MSG_POLEXPIRE - XFRM_MSG_BASE] = XMSGSIZE(xfrm_user_polexpire),
1474 [XFRM_MSG_FLUSHSA - XFRM_MSG_BASE] = XMSGSIZE(xfrm_usersa_flush),
1475 [XFRM_MSG_FLUSHPOLICY - XFRM_MSG_BASE] = NLMSG_LENGTH(0),
1476 [XFRM_MSG_NEWAE - XFRM_MSG_BASE] = XMSGSIZE(xfrm_aevent_id),
1477 [XFRM_MSG_GETAE - XFRM_MSG_BASE] = XMSGSIZE(xfrm_aevent_id),
1482 static struct xfrm_link {
1483 int (*doit)(struct sk_buff *, struct nlmsghdr *, void **);
1484 int (*dump)(struct sk_buff *, struct netlink_callback *);
1485 } xfrm_dispatch[XFRM_NR_MSGTYPES] = {
1486 [XFRM_MSG_NEWSA - XFRM_MSG_BASE] = { .doit = xfrm_add_sa },
1487 [XFRM_MSG_DELSA - XFRM_MSG_BASE] = { .doit = xfrm_del_sa },
1488 [XFRM_MSG_GETSA - XFRM_MSG_BASE] = { .doit = xfrm_get_sa,
1489 .dump = xfrm_dump_sa },
1490 [XFRM_MSG_NEWPOLICY - XFRM_MSG_BASE] = { .doit = xfrm_add_policy },
1491 [XFRM_MSG_DELPOLICY - XFRM_MSG_BASE] = { .doit = xfrm_get_policy },
1492 [XFRM_MSG_GETPOLICY - XFRM_MSG_BASE] = { .doit = xfrm_get_policy,
1493 .dump = xfrm_dump_policy },
1494 [XFRM_MSG_ALLOCSPI - XFRM_MSG_BASE] = { .doit = xfrm_alloc_userspi },
1495 [XFRM_MSG_ACQUIRE - XFRM_MSG_BASE] = { .doit = xfrm_add_acquire },
1496 [XFRM_MSG_EXPIRE - XFRM_MSG_BASE] = { .doit = xfrm_add_sa_expire },
1497 [XFRM_MSG_UPDPOLICY - XFRM_MSG_BASE] = { .doit = xfrm_add_policy },
1498 [XFRM_MSG_UPDSA - XFRM_MSG_BASE] = { .doit = xfrm_add_sa },
1499 [XFRM_MSG_POLEXPIRE - XFRM_MSG_BASE] = { .doit = xfrm_add_pol_expire},
1500 [XFRM_MSG_FLUSHSA - XFRM_MSG_BASE] = { .doit = xfrm_flush_sa },
1501 [XFRM_MSG_FLUSHPOLICY - XFRM_MSG_BASE] = { .doit = xfrm_flush_policy },
1502 [XFRM_MSG_NEWAE - XFRM_MSG_BASE] = { .doit = xfrm_new_ae },
1503 [XFRM_MSG_GETAE - XFRM_MSG_BASE] = { .doit = xfrm_get_ae },
1506 static int xfrm_user_rcv_msg(struct sk_buff *skb, struct nlmsghdr *nlh, int *errp)
1508 struct rtattr *xfrma[XFRMA_MAX];
1509 struct xfrm_link *link;
1512 if (!(nlh->nlmsg_flags & NLM_F_REQUEST))
1515 type = nlh->nlmsg_type;
1517 /* A control message: ignore them */
1518 if (type < XFRM_MSG_BASE)
1521 /* Unknown message: reply with EINVAL */
1522 if (type > XFRM_MSG_MAX)
1525 type -= XFRM_MSG_BASE;
1526 link = &xfrm_dispatch[type];
1528 /* All operations require privileges, even GET */
1529 if (security_netlink_recv(skb, CAP_NET_ADMIN)) {
1534 if ((type == (XFRM_MSG_GETSA - XFRM_MSG_BASE) ||
1535 type == (XFRM_MSG_GETPOLICY - XFRM_MSG_BASE)) &&
1536 (nlh->nlmsg_flags & NLM_F_DUMP)) {
1537 if (link->dump == NULL)
1540 if ((*errp = netlink_dump_start(xfrm_nl, skb, nlh,
1541 link->dump, NULL)) != 0) {
1545 netlink_queue_skip(nlh, skb);
1549 memset(xfrma, 0, sizeof(xfrma));
1551 if (nlh->nlmsg_len < (min_len = xfrm_msg_min[type]))
1554 if (nlh->nlmsg_len > min_len) {
1555 int attrlen = nlh->nlmsg_len - NLMSG_ALIGN(min_len);
1556 struct rtattr *attr = (void *) nlh + NLMSG_ALIGN(min_len);
1558 while (RTA_OK(attr, attrlen)) {
1559 unsigned short flavor = attr->rta_type;
1561 if (flavor > XFRMA_MAX)
1563 xfrma[flavor - 1] = attr;
1565 attr = RTA_NEXT(attr, attrlen);
1569 if (link->doit == NULL)
1571 *errp = link->doit(skb, nlh, (void **) &xfrma);
1580 static void xfrm_netlink_rcv(struct sock *sk, int len)
1582 unsigned int qlen = 0;
1585 mutex_lock(&xfrm_cfg_mutex);
1586 netlink_run_queue(sk, &qlen, &xfrm_user_rcv_msg);
1587 mutex_unlock(&xfrm_cfg_mutex);
1592 static int build_expire(struct sk_buff *skb, struct xfrm_state *x, struct km_event *c)
1594 struct xfrm_user_expire *ue;
1595 struct nlmsghdr *nlh;
1596 unsigned char *b = skb->tail;
1598 nlh = NLMSG_PUT(skb, c->pid, 0, XFRM_MSG_EXPIRE,
1600 ue = NLMSG_DATA(nlh);
1601 nlh->nlmsg_flags = 0;
1603 copy_to_user_state(x, &ue->state);
1604 ue->hard = (c->data.hard != 0) ? 1 : 0;
1606 nlh->nlmsg_len = skb->tail - b;
1610 skb_trim(skb, b - skb->data);
1614 static int xfrm_exp_state_notify(struct xfrm_state *x, struct km_event *c)
1616 struct sk_buff *skb;
1617 int len = NLMSG_LENGTH(sizeof(struct xfrm_user_expire));
1619 skb = alloc_skb(len, GFP_ATOMIC);
1623 if (build_expire(skb, x, c) < 0)
1626 NETLINK_CB(skb).dst_group = XFRMNLGRP_EXPIRE;
1627 return netlink_broadcast(xfrm_nl, skb, 0, XFRMNLGRP_EXPIRE, GFP_ATOMIC);
1630 static int xfrm_aevent_state_notify(struct xfrm_state *x, struct km_event *c)
1632 struct sk_buff *skb;
1633 int len = NLMSG_LENGTH(sizeof(struct xfrm_aevent_id));
1635 len += RTA_SPACE(sizeof(struct xfrm_replay_state));
1636 len += RTA_SPACE(sizeof(struct xfrm_lifetime_cur));
1637 skb = alloc_skb(len, GFP_ATOMIC);
1641 if (build_aevent(skb, x, c) < 0)
1644 NETLINK_CB(skb).dst_group = XFRMNLGRP_AEVENTS;
1645 return netlink_broadcast(xfrm_nl, skb, 0, XFRMNLGRP_AEVENTS, GFP_ATOMIC);
1648 static int xfrm_notify_sa_flush(struct km_event *c)
1650 struct xfrm_usersa_flush *p;
1651 struct nlmsghdr *nlh;
1652 struct sk_buff *skb;
1654 int len = NLMSG_LENGTH(sizeof(struct xfrm_usersa_flush));
1656 skb = alloc_skb(len, GFP_ATOMIC);
1661 nlh = NLMSG_PUT(skb, c->pid, c->seq,
1662 XFRM_MSG_FLUSHSA, sizeof(*p));
1663 nlh->nlmsg_flags = 0;
1665 p = NLMSG_DATA(nlh);
1666 p->proto = c->data.proto;
1668 nlh->nlmsg_len = skb->tail - b;
1670 NETLINK_CB(skb).dst_group = XFRMNLGRP_SA;
1671 return netlink_broadcast(xfrm_nl, skb, 0, XFRMNLGRP_SA, GFP_ATOMIC);
1678 static int inline xfrm_sa_len(struct xfrm_state *x)
1682 l += RTA_SPACE(sizeof(*x->aalg) + (x->aalg->alg_key_len+7)/8);
1684 l += RTA_SPACE(sizeof(*x->ealg) + (x->ealg->alg_key_len+7)/8);
1686 l += RTA_SPACE(sizeof(*x->calg));
1688 l += RTA_SPACE(sizeof(*x->encap));
1693 static int xfrm_notify_sa(struct xfrm_state *x, struct km_event *c)
1695 struct xfrm_usersa_info *p;
1696 struct xfrm_usersa_id *id;
1697 struct nlmsghdr *nlh;
1698 struct sk_buff *skb;
1700 int len = xfrm_sa_len(x);
1703 headlen = sizeof(*p);
1704 if (c->event == XFRM_MSG_DELSA) {
1705 len += RTA_SPACE(headlen);
1706 headlen = sizeof(*id);
1708 len += NLMSG_SPACE(headlen);
1710 skb = alloc_skb(len, GFP_ATOMIC);
1715 nlh = NLMSG_PUT(skb, c->pid, c->seq, c->event, headlen);
1716 nlh->nlmsg_flags = 0;
1718 p = NLMSG_DATA(nlh);
1719 if (c->event == XFRM_MSG_DELSA) {
1720 id = NLMSG_DATA(nlh);
1721 memcpy(&id->daddr, &x->id.daddr, sizeof(id->daddr));
1722 id->spi = x->id.spi;
1723 id->family = x->props.family;
1724 id->proto = x->id.proto;
1726 p = RTA_DATA(__RTA_PUT(skb, XFRMA_SA, sizeof(*p)));
1729 copy_to_user_state(x, p);
1732 RTA_PUT(skb, XFRMA_ALG_AUTH,
1733 sizeof(*(x->aalg))+(x->aalg->alg_key_len+7)/8, x->aalg);
1735 RTA_PUT(skb, XFRMA_ALG_CRYPT,
1736 sizeof(*(x->ealg))+(x->ealg->alg_key_len+7)/8, x->ealg);
1738 RTA_PUT(skb, XFRMA_ALG_COMP, sizeof(*(x->calg)), x->calg);
1741 RTA_PUT(skb, XFRMA_ENCAP, sizeof(*x->encap), x->encap);
1743 nlh->nlmsg_len = skb->tail - b;
1745 NETLINK_CB(skb).dst_group = XFRMNLGRP_SA;
1746 return netlink_broadcast(xfrm_nl, skb, 0, XFRMNLGRP_SA, GFP_ATOMIC);
1754 static int xfrm_send_state_notify(struct xfrm_state *x, struct km_event *c)
1758 case XFRM_MSG_EXPIRE:
1759 return xfrm_exp_state_notify(x, c);
1760 case XFRM_MSG_NEWAE:
1761 return xfrm_aevent_state_notify(x, c);
1762 case XFRM_MSG_DELSA:
1763 case XFRM_MSG_UPDSA:
1764 case XFRM_MSG_NEWSA:
1765 return xfrm_notify_sa(x, c);
1766 case XFRM_MSG_FLUSHSA:
1767 return xfrm_notify_sa_flush(c);
1769 printk("xfrm_user: Unknown SA event %d\n", c->event);
1777 static int build_acquire(struct sk_buff *skb, struct xfrm_state *x,
1778 struct xfrm_tmpl *xt, struct xfrm_policy *xp,
1781 struct xfrm_user_acquire *ua;
1782 struct nlmsghdr *nlh;
1783 unsigned char *b = skb->tail;
1784 __u32 seq = xfrm_get_acqseq();
1786 nlh = NLMSG_PUT(skb, 0, 0, XFRM_MSG_ACQUIRE,
1788 ua = NLMSG_DATA(nlh);
1789 nlh->nlmsg_flags = 0;
1791 memcpy(&ua->id, &x->id, sizeof(ua->id));
1792 memcpy(&ua->saddr, &x->props.saddr, sizeof(ua->saddr));
1793 memcpy(&ua->sel, &x->sel, sizeof(ua->sel));
1794 copy_to_user_policy(xp, &ua->policy, dir);
1795 ua->aalgos = xt->aalgos;
1796 ua->ealgos = xt->ealgos;
1797 ua->calgos = xt->calgos;
1798 ua->seq = x->km.seq = seq;
1800 if (copy_to_user_tmpl(xp, skb) < 0)
1802 if (copy_to_user_state_sec_ctx(x, skb))
1805 nlh->nlmsg_len = skb->tail - b;
1809 skb_trim(skb, b - skb->data);
1813 static int xfrm_send_acquire(struct xfrm_state *x, struct xfrm_tmpl *xt,
1814 struct xfrm_policy *xp, int dir)
1816 struct sk_buff *skb;
1819 len = RTA_SPACE(sizeof(struct xfrm_user_tmpl) * xp->xfrm_nr);
1820 len += NLMSG_SPACE(sizeof(struct xfrm_user_acquire));
1821 len += RTA_SPACE(xfrm_user_sec_ctx_size(xp));
1822 skb = alloc_skb(len, GFP_ATOMIC);
1826 if (build_acquire(skb, x, xt, xp, dir) < 0)
1829 NETLINK_CB(skb).dst_group = XFRMNLGRP_ACQUIRE;
1830 return netlink_broadcast(xfrm_nl, skb, 0, XFRMNLGRP_ACQUIRE, GFP_ATOMIC);
1833 /* User gives us xfrm_user_policy_info followed by an array of 0
1834 * or more templates.
1836 static struct xfrm_policy *xfrm_compile_policy(struct sock *sk, int opt,
1837 u8 *data, int len, int *dir)
1839 struct xfrm_userpolicy_info *p = (struct xfrm_userpolicy_info *)data;
1840 struct xfrm_user_tmpl *ut = (struct xfrm_user_tmpl *) (p + 1);
1841 struct xfrm_policy *xp;
1844 switch (sk->sk_family) {
1846 if (opt != IP_XFRM_POLICY) {
1851 #if defined(CONFIG_IPV6) || defined(CONFIG_IPV6_MODULE)
1853 if (opt != IPV6_XFRM_POLICY) {
1866 if (len < sizeof(*p) ||
1867 verify_newpolicy_info(p))
1870 nr = ((len - sizeof(*p)) / sizeof(*ut));
1871 if (nr > XFRM_MAX_DEPTH)
1874 if (p->dir > XFRM_POLICY_OUT)
1877 xp = xfrm_policy_alloc(GFP_KERNEL);
1883 copy_from_user_policy(xp, p);
1884 copy_templates(xp, ut, nr);
1886 if (!xp->security) {
1887 int err = security_xfrm_sock_policy_alloc(xp, sk);
1900 static int build_polexpire(struct sk_buff *skb, struct xfrm_policy *xp,
1901 int dir, struct km_event *c)
1903 struct xfrm_user_polexpire *upe;
1904 struct nlmsghdr *nlh;
1905 int hard = c->data.hard;
1906 unsigned char *b = skb->tail;
1908 nlh = NLMSG_PUT(skb, c->pid, 0, XFRM_MSG_POLEXPIRE, sizeof(*upe));
1909 upe = NLMSG_DATA(nlh);
1910 nlh->nlmsg_flags = 0;
1912 copy_to_user_policy(xp, &upe->pol, dir);
1913 if (copy_to_user_tmpl(xp, skb) < 0)
1915 if (copy_to_user_sec_ctx(xp, skb))
1919 nlh->nlmsg_len = skb->tail - b;
1923 skb_trim(skb, b - skb->data);
1927 static int xfrm_exp_policy_notify(struct xfrm_policy *xp, int dir, struct km_event *c)
1929 struct sk_buff *skb;
1932 len = RTA_SPACE(sizeof(struct xfrm_user_tmpl) * xp->xfrm_nr);
1933 len += NLMSG_SPACE(sizeof(struct xfrm_user_polexpire));
1934 len += RTA_SPACE(xfrm_user_sec_ctx_size(xp));
1935 skb = alloc_skb(len, GFP_ATOMIC);
1939 if (build_polexpire(skb, xp, dir, c) < 0)
1942 NETLINK_CB(skb).dst_group = XFRMNLGRP_EXPIRE;
1943 return netlink_broadcast(xfrm_nl, skb, 0, XFRMNLGRP_EXPIRE, GFP_ATOMIC);
1946 static int xfrm_notify_policy(struct xfrm_policy *xp, int dir, struct km_event *c)
1948 struct xfrm_userpolicy_info *p;
1949 struct xfrm_userpolicy_id *id;
1950 struct nlmsghdr *nlh;
1951 struct sk_buff *skb;
1953 int len = RTA_SPACE(sizeof(struct xfrm_user_tmpl) * xp->xfrm_nr);
1956 headlen = sizeof(*p);
1957 if (c->event == XFRM_MSG_DELPOLICY) {
1958 len += RTA_SPACE(headlen);
1959 headlen = sizeof(*id);
1961 len += NLMSG_SPACE(headlen);
1963 skb = alloc_skb(len, GFP_ATOMIC);
1968 nlh = NLMSG_PUT(skb, c->pid, c->seq, c->event, headlen);
1970 p = NLMSG_DATA(nlh);
1971 if (c->event == XFRM_MSG_DELPOLICY) {
1972 id = NLMSG_DATA(nlh);
1973 memset(id, 0, sizeof(*id));
1976 id->index = xp->index;
1978 memcpy(&id->sel, &xp->selector, sizeof(id->sel));
1980 p = RTA_DATA(__RTA_PUT(skb, XFRMA_POLICY, sizeof(*p)));
1983 nlh->nlmsg_flags = 0;
1985 copy_to_user_policy(xp, p, dir);
1986 if (copy_to_user_tmpl(xp, skb) < 0)
1989 nlh->nlmsg_len = skb->tail - b;
1991 NETLINK_CB(skb).dst_group = XFRMNLGRP_POLICY;
1992 return netlink_broadcast(xfrm_nl, skb, 0, XFRMNLGRP_POLICY, GFP_ATOMIC);
2000 static int xfrm_notify_policy_flush(struct km_event *c)
2002 struct nlmsghdr *nlh;
2003 struct sk_buff *skb;
2005 int len = NLMSG_LENGTH(0);
2007 skb = alloc_skb(len, GFP_ATOMIC);
2013 nlh = NLMSG_PUT(skb, c->pid, c->seq, XFRM_MSG_FLUSHPOLICY, 0);
2015 nlh->nlmsg_len = skb->tail - b;
2017 NETLINK_CB(skb).dst_group = XFRMNLGRP_POLICY;
2018 return netlink_broadcast(xfrm_nl, skb, 0, XFRMNLGRP_POLICY, GFP_ATOMIC);
2025 static int xfrm_send_policy_notify(struct xfrm_policy *xp, int dir, struct km_event *c)
2029 case XFRM_MSG_NEWPOLICY:
2030 case XFRM_MSG_UPDPOLICY:
2031 case XFRM_MSG_DELPOLICY:
2032 return xfrm_notify_policy(xp, dir, c);
2033 case XFRM_MSG_FLUSHPOLICY:
2034 return xfrm_notify_policy_flush(c);
2035 case XFRM_MSG_POLEXPIRE:
2036 return xfrm_exp_policy_notify(xp, dir, c);
2038 printk("xfrm_user: Unknown Policy event %d\n", c->event);
2045 static struct xfrm_mgr netlink_mgr = {
2047 .notify = xfrm_send_state_notify,
2048 .acquire = xfrm_send_acquire,
2049 .compile_policy = xfrm_compile_policy,
2050 .notify_policy = xfrm_send_policy_notify,
2053 static int __init xfrm_user_init(void)
2057 printk(KERN_INFO "Initializing IPsec netlink socket\n");
2059 nlsk = netlink_kernel_create(NETLINK_XFRM, XFRMNLGRP_MAX,
2060 xfrm_netlink_rcv, THIS_MODULE);
2063 rcu_assign_pointer(xfrm_nl, nlsk);
2065 xfrm_register_km(&netlink_mgr);
2070 static void __exit xfrm_user_exit(void)
2072 struct sock *nlsk = xfrm_nl;
2074 xfrm_unregister_km(&netlink_mgr);
2075 rcu_assign_pointer(xfrm_nl, NULL);
2077 sock_release(nlsk->sk_socket);
2080 module_init(xfrm_user_init);
2081 module_exit(xfrm_user_exit);
2082 MODULE_LICENSE("GPL");
2083 MODULE_ALIAS_NET_PF_PROTO(PF_NETLINK, NETLINK_XFRM);