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/pfkeyv2.h>
23 #include <linux/ipsec.h>
24 #include <linux/init.h>
25 #include <linux/security.h>
28 #include <net/netlink.h>
30 #include <linux/uaccess.h>
31 #if IS_ENABLED(CONFIG_IPV6)
32 #include <linux/in6.h>
34 #include <asm/unaligned.h>
36 static int verify_one_alg(struct nlattr
**attrs
, enum xfrm_attr_type_t type
)
38 struct nlattr
*rt
= attrs
[type
];
39 struct xfrm_algo
*algp
;
45 if (nla_len(rt
) < (int)xfrm_alg_len(algp
))
58 algp
->alg_name
[sizeof(algp
->alg_name
) - 1] = '\0';
62 static int verify_auth_trunc(struct nlattr
**attrs
)
64 struct nlattr
*rt
= attrs
[XFRMA_ALG_AUTH_TRUNC
];
65 struct xfrm_algo_auth
*algp
;
71 if (nla_len(rt
) < (int)xfrm_alg_auth_len(algp
))
74 algp
->alg_name
[sizeof(algp
->alg_name
) - 1] = '\0';
78 static int verify_aead(struct nlattr
**attrs
)
80 struct nlattr
*rt
= attrs
[XFRMA_ALG_AEAD
];
81 struct xfrm_algo_aead
*algp
;
87 if (nla_len(rt
) < (int)aead_len(algp
))
90 algp
->alg_name
[sizeof(algp
->alg_name
) - 1] = '\0';
94 static void verify_one_addr(struct nlattr
**attrs
, enum xfrm_attr_type_t type
,
95 xfrm_address_t
**addrp
)
97 struct nlattr
*rt
= attrs
[type
];
100 *addrp
= nla_data(rt
);
103 static inline int verify_sec_ctx_len(struct nlattr
**attrs
)
105 struct nlattr
*rt
= attrs
[XFRMA_SEC_CTX
];
106 struct xfrm_user_sec_ctx
*uctx
;
112 if (uctx
->len
!= (sizeof(struct xfrm_user_sec_ctx
) + uctx
->ctx_len
))
118 static inline int verify_replay(struct xfrm_usersa_info
*p
,
119 struct nlattr
**attrs
)
121 struct nlattr
*rt
= attrs
[XFRMA_REPLAY_ESN_VAL
];
122 struct xfrm_replay_state_esn
*rs
;
124 if (p
->flags
& XFRM_STATE_ESN
) {
130 if (rs
->bmp_len
> XFRMA_REPLAY_ESN_MAX
/ sizeof(rs
->bmp
[0]) / 8)
133 if (nla_len(rt
) < (int)xfrm_replay_state_esn_len(rs
) &&
134 nla_len(rt
) != sizeof(*rs
))
141 /* As only ESP and AH support ESN feature. */
142 if ((p
->id
.proto
!= IPPROTO_ESP
) && (p
->id
.proto
!= IPPROTO_AH
))
145 if (p
->replay_window
!= 0)
151 static int verify_newsa_info(struct xfrm_usersa_info
*p
,
152 struct nlattr
**attrs
)
162 #if IS_ENABLED(CONFIG_IPV6)
174 switch (p
->id
.proto
) {
176 if ((!attrs
[XFRMA_ALG_AUTH
] &&
177 !attrs
[XFRMA_ALG_AUTH_TRUNC
]) ||
178 attrs
[XFRMA_ALG_AEAD
] ||
179 attrs
[XFRMA_ALG_CRYPT
] ||
180 attrs
[XFRMA_ALG_COMP
] ||
186 if (attrs
[XFRMA_ALG_COMP
])
188 if (!attrs
[XFRMA_ALG_AUTH
] &&
189 !attrs
[XFRMA_ALG_AUTH_TRUNC
] &&
190 !attrs
[XFRMA_ALG_CRYPT
] &&
191 !attrs
[XFRMA_ALG_AEAD
])
193 if ((attrs
[XFRMA_ALG_AUTH
] ||
194 attrs
[XFRMA_ALG_AUTH_TRUNC
] ||
195 attrs
[XFRMA_ALG_CRYPT
]) &&
196 attrs
[XFRMA_ALG_AEAD
])
198 if (attrs
[XFRMA_TFCPAD
] &&
199 p
->mode
!= XFRM_MODE_TUNNEL
)
204 if (!attrs
[XFRMA_ALG_COMP
] ||
205 attrs
[XFRMA_ALG_AEAD
] ||
206 attrs
[XFRMA_ALG_AUTH
] ||
207 attrs
[XFRMA_ALG_AUTH_TRUNC
] ||
208 attrs
[XFRMA_ALG_CRYPT
] ||
209 attrs
[XFRMA_TFCPAD
] ||
210 (ntohl(p
->id
.spi
) >= 0x10000))
214 #if IS_ENABLED(CONFIG_IPV6)
215 case IPPROTO_DSTOPTS
:
216 case IPPROTO_ROUTING
:
217 if (attrs
[XFRMA_ALG_COMP
] ||
218 attrs
[XFRMA_ALG_AUTH
] ||
219 attrs
[XFRMA_ALG_AUTH_TRUNC
] ||
220 attrs
[XFRMA_ALG_AEAD
] ||
221 attrs
[XFRMA_ALG_CRYPT
] ||
222 attrs
[XFRMA_ENCAP
] ||
223 attrs
[XFRMA_SEC_CTX
] ||
224 attrs
[XFRMA_TFCPAD
] ||
225 !attrs
[XFRMA_COADDR
])
234 if ((err
= verify_aead(attrs
)))
236 if ((err
= verify_auth_trunc(attrs
)))
238 if ((err
= verify_one_alg(attrs
, XFRMA_ALG_AUTH
)))
240 if ((err
= verify_one_alg(attrs
, XFRMA_ALG_CRYPT
)))
242 if ((err
= verify_one_alg(attrs
, XFRMA_ALG_COMP
)))
244 if ((err
= verify_sec_ctx_len(attrs
)))
246 if ((err
= verify_replay(p
, attrs
)))
251 case XFRM_MODE_TRANSPORT
:
252 case XFRM_MODE_TUNNEL
:
253 case XFRM_MODE_ROUTEOPTIMIZATION
:
267 static int attach_one_algo(struct xfrm_algo
**algpp
, u8
*props
,
268 struct xfrm_algo_desc
*(*get_byname
)(const char *, int),
271 struct xfrm_algo
*p
, *ualg
;
272 struct xfrm_algo_desc
*algo
;
277 ualg
= nla_data(rta
);
279 algo
= get_byname(ualg
->alg_name
, 1);
282 *props
= algo
->desc
.sadb_alg_id
;
284 p
= kmemdup(ualg
, xfrm_alg_len(ualg
), GFP_KERNEL
);
288 strcpy(p
->alg_name
, algo
->name
);
293 static int attach_crypt(struct xfrm_state
*x
, struct nlattr
*rta
)
295 struct xfrm_algo
*p
, *ualg
;
296 struct xfrm_algo_desc
*algo
;
301 ualg
= nla_data(rta
);
303 algo
= xfrm_ealg_get_byname(ualg
->alg_name
, 1);
306 x
->props
.ealgo
= algo
->desc
.sadb_alg_id
;
308 p
= kmemdup(ualg
, xfrm_alg_len(ualg
), GFP_KERNEL
);
312 strcpy(p
->alg_name
, algo
->name
);
314 x
->geniv
= algo
->uinfo
.encr
.geniv
;
318 static int attach_auth(struct xfrm_algo_auth
**algpp
, u8
*props
,
321 struct xfrm_algo
*ualg
;
322 struct xfrm_algo_auth
*p
;
323 struct xfrm_algo_desc
*algo
;
328 ualg
= nla_data(rta
);
330 algo
= xfrm_aalg_get_byname(ualg
->alg_name
, 1);
333 *props
= algo
->desc
.sadb_alg_id
;
335 p
= kmalloc(sizeof(*p
) + (ualg
->alg_key_len
+ 7) / 8, GFP_KERNEL
);
339 strcpy(p
->alg_name
, algo
->name
);
340 p
->alg_key_len
= ualg
->alg_key_len
;
341 p
->alg_trunc_len
= algo
->uinfo
.auth
.icv_truncbits
;
342 memcpy(p
->alg_key
, ualg
->alg_key
, (ualg
->alg_key_len
+ 7) / 8);
348 static int attach_auth_trunc(struct xfrm_algo_auth
**algpp
, u8
*props
,
351 struct xfrm_algo_auth
*p
, *ualg
;
352 struct xfrm_algo_desc
*algo
;
357 ualg
= nla_data(rta
);
359 algo
= xfrm_aalg_get_byname(ualg
->alg_name
, 1);
362 if (ualg
->alg_trunc_len
> algo
->uinfo
.auth
.icv_fullbits
)
364 *props
= algo
->desc
.sadb_alg_id
;
366 p
= kmemdup(ualg
, xfrm_alg_auth_len(ualg
), GFP_KERNEL
);
370 strcpy(p
->alg_name
, algo
->name
);
371 if (!p
->alg_trunc_len
)
372 p
->alg_trunc_len
= algo
->uinfo
.auth
.icv_truncbits
;
378 static int attach_aead(struct xfrm_state
*x
, struct nlattr
*rta
)
380 struct xfrm_algo_aead
*p
, *ualg
;
381 struct xfrm_algo_desc
*algo
;
386 ualg
= nla_data(rta
);
388 algo
= xfrm_aead_get_byname(ualg
->alg_name
, ualg
->alg_icv_len
, 1);
391 x
->props
.ealgo
= algo
->desc
.sadb_alg_id
;
393 p
= kmemdup(ualg
, aead_len(ualg
), GFP_KERNEL
);
397 strcpy(p
->alg_name
, algo
->name
);
399 x
->geniv
= algo
->uinfo
.aead
.geniv
;
403 static inline int xfrm_replay_verify_len(struct xfrm_replay_state_esn
*replay_esn
,
406 struct xfrm_replay_state_esn
*up
;
409 if (!replay_esn
|| !rp
)
413 ulen
= xfrm_replay_state_esn_len(up
);
415 /* Check the overall length and the internal bitmap length to avoid
416 * potential overflow. */
417 if (nla_len(rp
) < (int)ulen
||
418 xfrm_replay_state_esn_len(replay_esn
) != ulen
||
419 replay_esn
->bmp_len
!= up
->bmp_len
)
422 if (up
->replay_window
> up
->bmp_len
* sizeof(__u32
) * 8)
428 static int xfrm_alloc_replay_state_esn(struct xfrm_replay_state_esn
**replay_esn
,
429 struct xfrm_replay_state_esn
**preplay_esn
,
432 struct xfrm_replay_state_esn
*p
, *pp
, *up
;
433 unsigned int klen
, ulen
;
439 klen
= xfrm_replay_state_esn_len(up
);
440 ulen
= nla_len(rta
) >= (int)klen
? klen
: sizeof(*up
);
442 p
= kzalloc(klen
, GFP_KERNEL
);
446 pp
= kzalloc(klen
, GFP_KERNEL
);
453 memcpy(pp
, up
, ulen
);
461 static inline unsigned int xfrm_user_sec_ctx_size(struct xfrm_sec_ctx
*xfrm_ctx
)
463 unsigned int len
= 0;
466 len
+= sizeof(struct xfrm_user_sec_ctx
);
467 len
+= xfrm_ctx
->ctx_len
;
472 static void copy_from_user_state(struct xfrm_state
*x
, struct xfrm_usersa_info
*p
)
474 memcpy(&x
->id
, &p
->id
, sizeof(x
->id
));
475 memcpy(&x
->sel
, &p
->sel
, sizeof(x
->sel
));
476 memcpy(&x
->lft
, &p
->lft
, sizeof(x
->lft
));
477 x
->props
.mode
= p
->mode
;
478 x
->props
.replay_window
= min_t(unsigned int, p
->replay_window
,
479 sizeof(x
->replay
.bitmap
) * 8);
480 x
->props
.reqid
= p
->reqid
;
481 x
->props
.family
= p
->family
;
482 memcpy(&x
->props
.saddr
, &p
->saddr
, sizeof(x
->props
.saddr
));
483 x
->props
.flags
= p
->flags
;
485 if (!x
->sel
.family
&& !(p
->flags
& XFRM_STATE_AF_UNSPEC
))
486 x
->sel
.family
= p
->family
;
490 * someday when pfkey also has support, we could have the code
491 * somehow made shareable and move it to xfrm_state.c - JHS
494 static void xfrm_update_ae_params(struct xfrm_state
*x
, struct nlattr
**attrs
,
497 struct nlattr
*rp
= attrs
[XFRMA_REPLAY_VAL
];
498 struct nlattr
*re
= update_esn
? attrs
[XFRMA_REPLAY_ESN_VAL
] : NULL
;
499 struct nlattr
*lt
= attrs
[XFRMA_LTIME_VAL
];
500 struct nlattr
*et
= attrs
[XFRMA_ETIMER_THRESH
];
501 struct nlattr
*rt
= attrs
[XFRMA_REPLAY_THRESH
];
504 struct xfrm_replay_state_esn
*replay_esn
;
505 replay_esn
= nla_data(re
);
506 memcpy(x
->replay_esn
, replay_esn
,
507 xfrm_replay_state_esn_len(replay_esn
));
508 memcpy(x
->preplay_esn
, replay_esn
,
509 xfrm_replay_state_esn_len(replay_esn
));
513 struct xfrm_replay_state
*replay
;
514 replay
= nla_data(rp
);
515 memcpy(&x
->replay
, replay
, sizeof(*replay
));
516 memcpy(&x
->preplay
, replay
, sizeof(*replay
));
520 struct xfrm_lifetime_cur
*ltime
;
521 ltime
= nla_data(lt
);
522 x
->curlft
.bytes
= ltime
->bytes
;
523 x
->curlft
.packets
= ltime
->packets
;
524 x
->curlft
.add_time
= ltime
->add_time
;
525 x
->curlft
.use_time
= ltime
->use_time
;
529 x
->replay_maxage
= nla_get_u32(et
);
532 x
->replay_maxdiff
= nla_get_u32(rt
);
535 static struct xfrm_state
*xfrm_state_construct(struct net
*net
,
536 struct xfrm_usersa_info
*p
,
537 struct nlattr
**attrs
,
540 struct xfrm_state
*x
= xfrm_state_alloc(net
);
546 copy_from_user_state(x
, p
);
548 if (attrs
[XFRMA_SA_EXTRA_FLAGS
])
549 x
->props
.extra_flags
= nla_get_u32(attrs
[XFRMA_SA_EXTRA_FLAGS
]);
551 if ((err
= attach_aead(x
, attrs
[XFRMA_ALG_AEAD
])))
553 if ((err
= attach_auth_trunc(&x
->aalg
, &x
->props
.aalgo
,
554 attrs
[XFRMA_ALG_AUTH_TRUNC
])))
556 if (!x
->props
.aalgo
) {
557 if ((err
= attach_auth(&x
->aalg
, &x
->props
.aalgo
,
558 attrs
[XFRMA_ALG_AUTH
])))
561 if ((err
= attach_crypt(x
, attrs
[XFRMA_ALG_CRYPT
])))
563 if ((err
= attach_one_algo(&x
->calg
, &x
->props
.calgo
,
564 xfrm_calg_get_byname
,
565 attrs
[XFRMA_ALG_COMP
])))
568 if (attrs
[XFRMA_ENCAP
]) {
569 x
->encap
= kmemdup(nla_data(attrs
[XFRMA_ENCAP
]),
570 sizeof(*x
->encap
), GFP_KERNEL
);
571 if (x
->encap
== NULL
)
575 if (attrs
[XFRMA_TFCPAD
])
576 x
->tfcpad
= nla_get_u32(attrs
[XFRMA_TFCPAD
]);
578 if (attrs
[XFRMA_COADDR
]) {
579 x
->coaddr
= kmemdup(nla_data(attrs
[XFRMA_COADDR
]),
580 sizeof(*x
->coaddr
), GFP_KERNEL
);
581 if (x
->coaddr
== NULL
)
585 xfrm_mark_get(attrs
, &x
->mark
);
587 if (attrs
[XFRMA_OUTPUT_MARK
])
588 x
->props
.output_mark
= nla_get_u32(attrs
[XFRMA_OUTPUT_MARK
]);
590 err
= __xfrm_init_state(x
, false, attrs
[XFRMA_OFFLOAD_DEV
]);
594 if (attrs
[XFRMA_SEC_CTX
]) {
595 err
= security_xfrm_state_alloc(x
,
596 nla_data(attrs
[XFRMA_SEC_CTX
]));
601 if (attrs
[XFRMA_OFFLOAD_DEV
]) {
602 err
= xfrm_dev_state_add(net
, x
,
603 nla_data(attrs
[XFRMA_OFFLOAD_DEV
]));
608 if ((err
= xfrm_alloc_replay_state_esn(&x
->replay_esn
, &x
->preplay_esn
,
609 attrs
[XFRMA_REPLAY_ESN_VAL
])))
613 x
->replay_maxdiff
= net
->xfrm
.sysctl_aevent_rseqth
;
614 /* sysctl_xfrm_aevent_etime is in 100ms units */
615 x
->replay_maxage
= (net
->xfrm
.sysctl_aevent_etime
*HZ
)/XFRM_AE_ETH_M
;
617 if ((err
= xfrm_init_replay(x
)))
620 /* override default values from above */
621 xfrm_update_ae_params(x
, attrs
, 0);
626 x
->km
.state
= XFRM_STATE_DEAD
;
633 static int xfrm_add_sa(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
634 struct nlattr
**attrs
)
636 struct net
*net
= sock_net(skb
->sk
);
637 struct xfrm_usersa_info
*p
= nlmsg_data(nlh
);
638 struct xfrm_state
*x
;
642 err
= verify_newsa_info(p
, attrs
);
646 x
= xfrm_state_construct(net
, p
, attrs
, &err
);
651 if (nlh
->nlmsg_type
== XFRM_MSG_NEWSA
)
652 err
= xfrm_state_add(x
);
654 err
= xfrm_state_update(x
);
656 xfrm_audit_state_add(x
, err
? 0 : 1, true);
659 x
->km
.state
= XFRM_STATE_DEAD
;
660 xfrm_dev_state_delete(x
);
665 c
.seq
= nlh
->nlmsg_seq
;
666 c
.portid
= nlh
->nlmsg_pid
;
667 c
.event
= nlh
->nlmsg_type
;
669 km_state_notify(x
, &c
);
675 static struct xfrm_state
*xfrm_user_state_lookup(struct net
*net
,
676 struct xfrm_usersa_id
*p
,
677 struct nlattr
**attrs
,
680 struct xfrm_state
*x
= NULL
;
683 u32 mark
= xfrm_mark_get(attrs
, &m
);
685 if (xfrm_id_proto_match(p
->proto
, IPSEC_PROTO_ANY
)) {
687 x
= xfrm_state_lookup(net
, mark
, &p
->daddr
, p
->spi
, p
->proto
, p
->family
);
689 xfrm_address_t
*saddr
= NULL
;
691 verify_one_addr(attrs
, XFRMA_SRCADDR
, &saddr
);
698 x
= xfrm_state_lookup_byaddr(net
, mark
,
700 p
->proto
, p
->family
);
709 static int xfrm_del_sa(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
710 struct nlattr
**attrs
)
712 struct net
*net
= sock_net(skb
->sk
);
713 struct xfrm_state
*x
;
716 struct xfrm_usersa_id
*p
= nlmsg_data(nlh
);
718 x
= xfrm_user_state_lookup(net
, p
, attrs
, &err
);
722 if ((err
= security_xfrm_state_delete(x
)) != 0)
725 if (xfrm_state_kern(x
)) {
730 err
= xfrm_state_delete(x
);
735 c
.seq
= nlh
->nlmsg_seq
;
736 c
.portid
= nlh
->nlmsg_pid
;
737 c
.event
= nlh
->nlmsg_type
;
738 km_state_notify(x
, &c
);
741 xfrm_audit_state_delete(x
, err
? 0 : 1, true);
746 static void copy_to_user_state(struct xfrm_state
*x
, struct xfrm_usersa_info
*p
)
748 memset(p
, 0, sizeof(*p
));
749 memcpy(&p
->id
, &x
->id
, sizeof(p
->id
));
750 memcpy(&p
->sel
, &x
->sel
, sizeof(p
->sel
));
751 memcpy(&p
->lft
, &x
->lft
, sizeof(p
->lft
));
752 memcpy(&p
->curlft
, &x
->curlft
, sizeof(p
->curlft
));
753 put_unaligned(x
->stats
.replay_window
, &p
->stats
.replay_window
);
754 put_unaligned(x
->stats
.replay
, &p
->stats
.replay
);
755 put_unaligned(x
->stats
.integrity_failed
, &p
->stats
.integrity_failed
);
756 memcpy(&p
->saddr
, &x
->props
.saddr
, sizeof(p
->saddr
));
757 p
->mode
= x
->props
.mode
;
758 p
->replay_window
= x
->props
.replay_window
;
759 p
->reqid
= x
->props
.reqid
;
760 p
->family
= x
->props
.family
;
761 p
->flags
= x
->props
.flags
;
765 struct xfrm_dump_info
{
766 struct sk_buff
*in_skb
;
767 struct sk_buff
*out_skb
;
772 static int copy_sec_ctx(struct xfrm_sec_ctx
*s
, struct sk_buff
*skb
)
774 struct xfrm_user_sec_ctx
*uctx
;
776 int ctx_size
= sizeof(*uctx
) + s
->ctx_len
;
778 attr
= nla_reserve(skb
, XFRMA_SEC_CTX
, ctx_size
);
782 uctx
= nla_data(attr
);
783 uctx
->exttype
= XFRMA_SEC_CTX
;
784 uctx
->len
= ctx_size
;
785 uctx
->ctx_doi
= s
->ctx_doi
;
786 uctx
->ctx_alg
= s
->ctx_alg
;
787 uctx
->ctx_len
= s
->ctx_len
;
788 memcpy(uctx
+ 1, s
->ctx_str
, s
->ctx_len
);
793 static int copy_user_offload(struct xfrm_state_offload
*xso
, struct sk_buff
*skb
)
795 struct xfrm_user_offload
*xuo
;
798 attr
= nla_reserve(skb
, XFRMA_OFFLOAD_DEV
, sizeof(*xuo
));
802 xuo
= nla_data(attr
);
803 memset(xuo
, 0, sizeof(*xuo
));
804 xuo
->ifindex
= xso
->dev
->ifindex
;
805 xuo
->flags
= xso
->flags
;
810 static int copy_to_user_auth(struct xfrm_algo_auth
*auth
, struct sk_buff
*skb
)
812 struct xfrm_algo
*algo
;
815 nla
= nla_reserve(skb
, XFRMA_ALG_AUTH
,
816 sizeof(*algo
) + (auth
->alg_key_len
+ 7) / 8);
820 algo
= nla_data(nla
);
821 strncpy(algo
->alg_name
, auth
->alg_name
, sizeof(algo
->alg_name
));
822 memcpy(algo
->alg_key
, auth
->alg_key
, (auth
->alg_key_len
+ 7) / 8);
823 algo
->alg_key_len
= auth
->alg_key_len
;
828 /* Don't change this without updating xfrm_sa_len! */
829 static int copy_to_user_state_extra(struct xfrm_state
*x
,
830 struct xfrm_usersa_info
*p
,
835 copy_to_user_state(x
, p
);
837 if (x
->props
.extra_flags
) {
838 ret
= nla_put_u32(skb
, XFRMA_SA_EXTRA_FLAGS
,
839 x
->props
.extra_flags
);
845 ret
= nla_put(skb
, XFRMA_COADDR
, sizeof(*x
->coaddr
), x
->coaddr
);
850 ret
= nla_put_u64_64bit(skb
, XFRMA_LASTUSED
, x
->lastused
,
856 ret
= nla_put(skb
, XFRMA_ALG_AEAD
, aead_len(x
->aead
), x
->aead
);
861 ret
= copy_to_user_auth(x
->aalg
, skb
);
863 ret
= nla_put(skb
, XFRMA_ALG_AUTH_TRUNC
,
864 xfrm_alg_auth_len(x
->aalg
), x
->aalg
);
869 ret
= nla_put(skb
, XFRMA_ALG_CRYPT
, xfrm_alg_len(x
->ealg
), x
->ealg
);
874 ret
= nla_put(skb
, XFRMA_ALG_COMP
, sizeof(*(x
->calg
)), x
->calg
);
879 ret
= nla_put(skb
, XFRMA_ENCAP
, sizeof(*x
->encap
), x
->encap
);
884 ret
= nla_put_u32(skb
, XFRMA_TFCPAD
, x
->tfcpad
);
888 ret
= xfrm_mark_put(skb
, &x
->mark
);
892 ret
= nla_put(skb
, XFRMA_REPLAY_ESN_VAL
,
893 xfrm_replay_state_esn_len(x
->replay_esn
),
896 ret
= nla_put(skb
, XFRMA_REPLAY_VAL
, sizeof(x
->replay
),
901 ret
= copy_user_offload(&x
->xso
, skb
);
904 if (x
->props
.output_mark
) {
905 ret
= nla_put_u32(skb
, XFRMA_OUTPUT_MARK
, x
->props
.output_mark
);
910 ret
= copy_sec_ctx(x
->security
, skb
);
915 static int dump_one_state(struct xfrm_state
*x
, int count
, void *ptr
)
917 struct xfrm_dump_info
*sp
= ptr
;
918 struct sk_buff
*in_skb
= sp
->in_skb
;
919 struct sk_buff
*skb
= sp
->out_skb
;
920 struct xfrm_usersa_info
*p
;
921 struct nlmsghdr
*nlh
;
924 nlh
= nlmsg_put(skb
, NETLINK_CB(in_skb
).portid
, sp
->nlmsg_seq
,
925 XFRM_MSG_NEWSA
, sizeof(*p
), sp
->nlmsg_flags
);
931 err
= copy_to_user_state_extra(x
, p
, skb
);
933 nlmsg_cancel(skb
, nlh
);
940 static int xfrm_dump_sa_done(struct netlink_callback
*cb
)
942 struct xfrm_state_walk
*walk
= (struct xfrm_state_walk
*) &cb
->args
[1];
943 struct sock
*sk
= cb
->skb
->sk
;
944 struct net
*net
= sock_net(sk
);
947 xfrm_state_walk_done(walk
, net
);
951 static const struct nla_policy xfrma_policy
[XFRMA_MAX
+1];
952 static int xfrm_dump_sa(struct sk_buff
*skb
, struct netlink_callback
*cb
)
954 struct net
*net
= sock_net(skb
->sk
);
955 struct xfrm_state_walk
*walk
= (struct xfrm_state_walk
*) &cb
->args
[1];
956 struct xfrm_dump_info info
;
958 BUILD_BUG_ON(sizeof(struct xfrm_state_walk
) >
959 sizeof(cb
->args
) - sizeof(cb
->args
[0]));
961 info
.in_skb
= cb
->skb
;
963 info
.nlmsg_seq
= cb
->nlh
->nlmsg_seq
;
964 info
.nlmsg_flags
= NLM_F_MULTI
;
967 struct nlattr
*attrs
[XFRMA_MAX
+1];
968 struct xfrm_address_filter
*filter
= NULL
;
972 err
= nlmsg_parse(cb
->nlh
, 0, attrs
, XFRMA_MAX
, xfrma_policy
,
977 if (attrs
[XFRMA_ADDRESS_FILTER
]) {
978 filter
= kmemdup(nla_data(attrs
[XFRMA_ADDRESS_FILTER
]),
979 sizeof(*filter
), GFP_KERNEL
);
984 if (attrs
[XFRMA_PROTO
])
985 proto
= nla_get_u8(attrs
[XFRMA_PROTO
]);
987 xfrm_state_walk_init(walk
, proto
, filter
);
991 (void) xfrm_state_walk(net
, walk
, dump_one_state
, &info
);
996 static struct sk_buff
*xfrm_state_netlink(struct sk_buff
*in_skb
,
997 struct xfrm_state
*x
, u32 seq
)
999 struct xfrm_dump_info info
;
1000 struct sk_buff
*skb
;
1003 skb
= nlmsg_new(NLMSG_DEFAULT_SIZE
, GFP_ATOMIC
);
1005 return ERR_PTR(-ENOMEM
);
1007 info
.in_skb
= in_skb
;
1009 info
.nlmsg_seq
= seq
;
1010 info
.nlmsg_flags
= 0;
1012 err
= dump_one_state(x
, 0, &info
);
1015 return ERR_PTR(err
);
1021 /* A wrapper for nlmsg_multicast() checking that nlsk is still available.
1022 * Must be called with RCU read lock.
1024 static inline int xfrm_nlmsg_multicast(struct net
*net
, struct sk_buff
*skb
,
1025 u32 pid
, unsigned int group
)
1027 struct sock
*nlsk
= rcu_dereference(net
->xfrm
.nlsk
);
1030 return nlmsg_multicast(nlsk
, skb
, pid
, group
, GFP_ATOMIC
);
1035 static inline unsigned int xfrm_spdinfo_msgsize(void)
1037 return NLMSG_ALIGN(4)
1038 + nla_total_size(sizeof(struct xfrmu_spdinfo
))
1039 + nla_total_size(sizeof(struct xfrmu_spdhinfo
))
1040 + nla_total_size(sizeof(struct xfrmu_spdhthresh
))
1041 + nla_total_size(sizeof(struct xfrmu_spdhthresh
));
1044 static int build_spdinfo(struct sk_buff
*skb
, struct net
*net
,
1045 u32 portid
, u32 seq
, u32 flags
)
1047 struct xfrmk_spdinfo si
;
1048 struct xfrmu_spdinfo spc
;
1049 struct xfrmu_spdhinfo sph
;
1050 struct xfrmu_spdhthresh spt4
, spt6
;
1051 struct nlmsghdr
*nlh
;
1056 nlh
= nlmsg_put(skb
, portid
, seq
, XFRM_MSG_NEWSPDINFO
, sizeof(u32
), 0);
1057 if (nlh
== NULL
) /* shouldn't really happen ... */
1060 f
= nlmsg_data(nlh
);
1062 xfrm_spd_getinfo(net
, &si
);
1063 spc
.incnt
= si
.incnt
;
1064 spc
.outcnt
= si
.outcnt
;
1065 spc
.fwdcnt
= si
.fwdcnt
;
1066 spc
.inscnt
= si
.inscnt
;
1067 spc
.outscnt
= si
.outscnt
;
1068 spc
.fwdscnt
= si
.fwdscnt
;
1069 sph
.spdhcnt
= si
.spdhcnt
;
1070 sph
.spdhmcnt
= si
.spdhmcnt
;
1073 lseq
= read_seqbegin(&net
->xfrm
.policy_hthresh
.lock
);
1075 spt4
.lbits
= net
->xfrm
.policy_hthresh
.lbits4
;
1076 spt4
.rbits
= net
->xfrm
.policy_hthresh
.rbits4
;
1077 spt6
.lbits
= net
->xfrm
.policy_hthresh
.lbits6
;
1078 spt6
.rbits
= net
->xfrm
.policy_hthresh
.rbits6
;
1079 } while (read_seqretry(&net
->xfrm
.policy_hthresh
.lock
, lseq
));
1081 err
= nla_put(skb
, XFRMA_SPD_INFO
, sizeof(spc
), &spc
);
1083 err
= nla_put(skb
, XFRMA_SPD_HINFO
, sizeof(sph
), &sph
);
1085 err
= nla_put(skb
, XFRMA_SPD_IPV4_HTHRESH
, sizeof(spt4
), &spt4
);
1087 err
= nla_put(skb
, XFRMA_SPD_IPV6_HTHRESH
, sizeof(spt6
), &spt6
);
1089 nlmsg_cancel(skb
, nlh
);
1093 nlmsg_end(skb
, nlh
);
1097 static int xfrm_set_spdinfo(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
1098 struct nlattr
**attrs
)
1100 struct net
*net
= sock_net(skb
->sk
);
1101 struct xfrmu_spdhthresh
*thresh4
= NULL
;
1102 struct xfrmu_spdhthresh
*thresh6
= NULL
;
1104 /* selector prefixlen thresholds to hash policies */
1105 if (attrs
[XFRMA_SPD_IPV4_HTHRESH
]) {
1106 struct nlattr
*rta
= attrs
[XFRMA_SPD_IPV4_HTHRESH
];
1108 if (nla_len(rta
) < sizeof(*thresh4
))
1110 thresh4
= nla_data(rta
);
1111 if (thresh4
->lbits
> 32 || thresh4
->rbits
> 32)
1114 if (attrs
[XFRMA_SPD_IPV6_HTHRESH
]) {
1115 struct nlattr
*rta
= attrs
[XFRMA_SPD_IPV6_HTHRESH
];
1117 if (nla_len(rta
) < sizeof(*thresh6
))
1119 thresh6
= nla_data(rta
);
1120 if (thresh6
->lbits
> 128 || thresh6
->rbits
> 128)
1124 if (thresh4
|| thresh6
) {
1125 write_seqlock(&net
->xfrm
.policy_hthresh
.lock
);
1127 net
->xfrm
.policy_hthresh
.lbits4
= thresh4
->lbits
;
1128 net
->xfrm
.policy_hthresh
.rbits4
= thresh4
->rbits
;
1131 net
->xfrm
.policy_hthresh
.lbits6
= thresh6
->lbits
;
1132 net
->xfrm
.policy_hthresh
.rbits6
= thresh6
->rbits
;
1134 write_sequnlock(&net
->xfrm
.policy_hthresh
.lock
);
1136 xfrm_policy_hash_rebuild(net
);
1142 static int xfrm_get_spdinfo(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
1143 struct nlattr
**attrs
)
1145 struct net
*net
= sock_net(skb
->sk
);
1146 struct sk_buff
*r_skb
;
1147 u32
*flags
= nlmsg_data(nlh
);
1148 u32 sportid
= NETLINK_CB(skb
).portid
;
1149 u32 seq
= nlh
->nlmsg_seq
;
1152 r_skb
= nlmsg_new(xfrm_spdinfo_msgsize(), GFP_ATOMIC
);
1156 err
= build_spdinfo(r_skb
, net
, sportid
, seq
, *flags
);
1159 return nlmsg_unicast(net
->xfrm
.nlsk
, r_skb
, sportid
);
1162 static inline unsigned int xfrm_sadinfo_msgsize(void)
1164 return NLMSG_ALIGN(4)
1165 + nla_total_size(sizeof(struct xfrmu_sadhinfo
))
1166 + nla_total_size(4); /* XFRMA_SAD_CNT */
1169 static int build_sadinfo(struct sk_buff
*skb
, struct net
*net
,
1170 u32 portid
, u32 seq
, u32 flags
)
1172 struct xfrmk_sadinfo si
;
1173 struct xfrmu_sadhinfo sh
;
1174 struct nlmsghdr
*nlh
;
1178 nlh
= nlmsg_put(skb
, portid
, seq
, XFRM_MSG_NEWSADINFO
, sizeof(u32
), 0);
1179 if (nlh
== NULL
) /* shouldn't really happen ... */
1182 f
= nlmsg_data(nlh
);
1184 xfrm_sad_getinfo(net
, &si
);
1186 sh
.sadhmcnt
= si
.sadhmcnt
;
1187 sh
.sadhcnt
= si
.sadhcnt
;
1189 err
= nla_put_u32(skb
, XFRMA_SAD_CNT
, si
.sadcnt
);
1191 err
= nla_put(skb
, XFRMA_SAD_HINFO
, sizeof(sh
), &sh
);
1193 nlmsg_cancel(skb
, nlh
);
1197 nlmsg_end(skb
, nlh
);
1201 static int xfrm_get_sadinfo(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
1202 struct nlattr
**attrs
)
1204 struct net
*net
= sock_net(skb
->sk
);
1205 struct sk_buff
*r_skb
;
1206 u32
*flags
= nlmsg_data(nlh
);
1207 u32 sportid
= NETLINK_CB(skb
).portid
;
1208 u32 seq
= nlh
->nlmsg_seq
;
1211 r_skb
= nlmsg_new(xfrm_sadinfo_msgsize(), GFP_ATOMIC
);
1215 err
= build_sadinfo(r_skb
, net
, sportid
, seq
, *flags
);
1218 return nlmsg_unicast(net
->xfrm
.nlsk
, r_skb
, sportid
);
1221 static int xfrm_get_sa(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
1222 struct nlattr
**attrs
)
1224 struct net
*net
= sock_net(skb
->sk
);
1225 struct xfrm_usersa_id
*p
= nlmsg_data(nlh
);
1226 struct xfrm_state
*x
;
1227 struct sk_buff
*resp_skb
;
1230 x
= xfrm_user_state_lookup(net
, p
, attrs
, &err
);
1234 resp_skb
= xfrm_state_netlink(skb
, x
, nlh
->nlmsg_seq
);
1235 if (IS_ERR(resp_skb
)) {
1236 err
= PTR_ERR(resp_skb
);
1238 err
= nlmsg_unicast(net
->xfrm
.nlsk
, resp_skb
, NETLINK_CB(skb
).portid
);
1245 static int xfrm_alloc_userspi(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
1246 struct nlattr
**attrs
)
1248 struct net
*net
= sock_net(skb
->sk
);
1249 struct xfrm_state
*x
;
1250 struct xfrm_userspi_info
*p
;
1251 struct sk_buff
*resp_skb
;
1252 xfrm_address_t
*daddr
;
1258 p
= nlmsg_data(nlh
);
1259 err
= verify_spi_info(p
->info
.id
.proto
, p
->min
, p
->max
);
1263 family
= p
->info
.family
;
1264 daddr
= &p
->info
.id
.daddr
;
1268 mark
= xfrm_mark_get(attrs
, &m
);
1270 x
= xfrm_find_acq_byseq(net
, mark
, p
->info
.seq
);
1271 if (x
&& !xfrm_addr_equal(&x
->id
.daddr
, daddr
, family
)) {
1278 x
= xfrm_find_acq(net
, &m
, p
->info
.mode
, p
->info
.reqid
,
1279 p
->info
.id
.proto
, daddr
,
1286 err
= xfrm_alloc_spi(x
, p
->min
, p
->max
);
1290 resp_skb
= xfrm_state_netlink(skb
, x
, nlh
->nlmsg_seq
);
1291 if (IS_ERR(resp_skb
)) {
1292 err
= PTR_ERR(resp_skb
);
1296 err
= nlmsg_unicast(net
->xfrm
.nlsk
, resp_skb
, NETLINK_CB(skb
).portid
);
1304 static int verify_policy_dir(u8 dir
)
1307 case XFRM_POLICY_IN
:
1308 case XFRM_POLICY_OUT
:
1309 case XFRM_POLICY_FWD
:
1319 static int verify_policy_type(u8 type
)
1322 case XFRM_POLICY_TYPE_MAIN
:
1323 #ifdef CONFIG_XFRM_SUB_POLICY
1324 case XFRM_POLICY_TYPE_SUB
:
1335 static int verify_newpolicy_info(struct xfrm_userpolicy_info
*p
)
1340 case XFRM_SHARE_ANY
:
1341 case XFRM_SHARE_SESSION
:
1342 case XFRM_SHARE_USER
:
1343 case XFRM_SHARE_UNIQUE
:
1350 switch (p
->action
) {
1351 case XFRM_POLICY_ALLOW
:
1352 case XFRM_POLICY_BLOCK
:
1359 switch (p
->sel
.family
) {
1364 #if IS_ENABLED(CONFIG_IPV6)
1367 return -EAFNOSUPPORT
;
1374 ret
= verify_policy_dir(p
->dir
);
1377 if (p
->index
&& ((p
->index
& XFRM_POLICY_MAX
) != p
->dir
))
1383 static int copy_from_user_sec_ctx(struct xfrm_policy
*pol
, struct nlattr
**attrs
)
1385 struct nlattr
*rt
= attrs
[XFRMA_SEC_CTX
];
1386 struct xfrm_user_sec_ctx
*uctx
;
1391 uctx
= nla_data(rt
);
1392 return security_xfrm_policy_alloc(&pol
->security
, uctx
, GFP_KERNEL
);
1395 static void copy_templates(struct xfrm_policy
*xp
, struct xfrm_user_tmpl
*ut
,
1401 for (i
= 0; i
< nr
; i
++, ut
++) {
1402 struct xfrm_tmpl
*t
= &xp
->xfrm_vec
[i
];
1404 memcpy(&t
->id
, &ut
->id
, sizeof(struct xfrm_id
));
1405 memcpy(&t
->saddr
, &ut
->saddr
,
1406 sizeof(xfrm_address_t
));
1407 t
->reqid
= ut
->reqid
;
1409 t
->share
= ut
->share
;
1410 t
->optional
= ut
->optional
;
1411 t
->aalgos
= ut
->aalgos
;
1412 t
->ealgos
= ut
->ealgos
;
1413 t
->calgos
= ut
->calgos
;
1414 /* If all masks are ~0, then we allow all algorithms. */
1415 t
->allalgs
= !~(t
->aalgos
& t
->ealgos
& t
->calgos
);
1416 t
->encap_family
= ut
->family
;
1420 static int validate_tmpl(int nr
, struct xfrm_user_tmpl
*ut
, u16 family
)
1425 if (nr
> XFRM_MAX_DEPTH
)
1428 prev_family
= family
;
1430 for (i
= 0; i
< nr
; i
++) {
1431 /* We never validated the ut->family value, so many
1432 * applications simply leave it at zero. The check was
1433 * never made and ut->family was ignored because all
1434 * templates could be assumed to have the same family as
1435 * the policy itself. Now that we will have ipv4-in-ipv6
1436 * and ipv6-in-ipv4 tunnels, this is no longer true.
1439 ut
[i
].family
= family
;
1441 if ((ut
[i
].mode
== XFRM_MODE_TRANSPORT
) &&
1442 (ut
[i
].family
!= prev_family
))
1445 prev_family
= ut
[i
].family
;
1447 switch (ut
[i
].family
) {
1450 #if IS_ENABLED(CONFIG_IPV6)
1458 switch (ut
[i
].id
.proto
) {
1462 #if IS_ENABLED(CONFIG_IPV6)
1463 case IPPROTO_ROUTING
:
1464 case IPPROTO_DSTOPTS
:
1466 case IPSEC_PROTO_ANY
:
1477 static int copy_from_user_tmpl(struct xfrm_policy
*pol
, struct nlattr
**attrs
)
1479 struct nlattr
*rt
= attrs
[XFRMA_TMPL
];
1484 struct xfrm_user_tmpl
*utmpl
= nla_data(rt
);
1485 int nr
= nla_len(rt
) / sizeof(*utmpl
);
1488 err
= validate_tmpl(nr
, utmpl
, pol
->family
);
1492 copy_templates(pol
, utmpl
, nr
);
1497 static int copy_from_user_policy_type(u8
*tp
, struct nlattr
**attrs
)
1499 struct nlattr
*rt
= attrs
[XFRMA_POLICY_TYPE
];
1500 struct xfrm_userpolicy_type
*upt
;
1501 u8 type
= XFRM_POLICY_TYPE_MAIN
;
1509 err
= verify_policy_type(type
);
1517 static void copy_from_user_policy(struct xfrm_policy
*xp
, struct xfrm_userpolicy_info
*p
)
1519 xp
->priority
= p
->priority
;
1520 xp
->index
= p
->index
;
1521 memcpy(&xp
->selector
, &p
->sel
, sizeof(xp
->selector
));
1522 memcpy(&xp
->lft
, &p
->lft
, sizeof(xp
->lft
));
1523 xp
->action
= p
->action
;
1524 xp
->flags
= p
->flags
;
1525 xp
->family
= p
->sel
.family
;
1526 /* XXX xp->share = p->share; */
1529 static void copy_to_user_policy(struct xfrm_policy
*xp
, struct xfrm_userpolicy_info
*p
, int dir
)
1531 memset(p
, 0, sizeof(*p
));
1532 memcpy(&p
->sel
, &xp
->selector
, sizeof(p
->sel
));
1533 memcpy(&p
->lft
, &xp
->lft
, sizeof(p
->lft
));
1534 memcpy(&p
->curlft
, &xp
->curlft
, sizeof(p
->curlft
));
1535 p
->priority
= xp
->priority
;
1536 p
->index
= xp
->index
;
1537 p
->sel
.family
= xp
->family
;
1539 p
->action
= xp
->action
;
1540 p
->flags
= xp
->flags
;
1541 p
->share
= XFRM_SHARE_ANY
; /* XXX xp->share */
1544 static struct xfrm_policy
*xfrm_policy_construct(struct net
*net
, struct xfrm_userpolicy_info
*p
, struct nlattr
**attrs
, int *errp
)
1546 struct xfrm_policy
*xp
= xfrm_policy_alloc(net
, GFP_KERNEL
);
1554 copy_from_user_policy(xp
, p
);
1556 err
= copy_from_user_policy_type(&xp
->type
, attrs
);
1560 if (!(err
= copy_from_user_tmpl(xp
, attrs
)))
1561 err
= copy_from_user_sec_ctx(xp
, attrs
);
1565 xfrm_mark_get(attrs
, &xp
->mark
);
1571 xfrm_policy_destroy(xp
);
1575 static int xfrm_add_policy(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
1576 struct nlattr
**attrs
)
1578 struct net
*net
= sock_net(skb
->sk
);
1579 struct xfrm_userpolicy_info
*p
= nlmsg_data(nlh
);
1580 struct xfrm_policy
*xp
;
1585 err
= verify_newpolicy_info(p
);
1588 err
= verify_sec_ctx_len(attrs
);
1592 xp
= xfrm_policy_construct(net
, p
, attrs
, &err
);
1596 /* shouldn't excl be based on nlh flags??
1597 * Aha! this is anti-netlink really i.e more pfkey derived
1598 * in netlink excl is a flag and you wouldnt need
1599 * a type XFRM_MSG_UPDPOLICY - JHS */
1600 excl
= nlh
->nlmsg_type
== XFRM_MSG_NEWPOLICY
;
1601 err
= xfrm_policy_insert(p
->dir
, xp
, excl
);
1602 xfrm_audit_policy_add(xp
, err
? 0 : 1, true);
1605 security_xfrm_policy_free(xp
->security
);
1610 c
.event
= nlh
->nlmsg_type
;
1611 c
.seq
= nlh
->nlmsg_seq
;
1612 c
.portid
= nlh
->nlmsg_pid
;
1613 km_policy_notify(xp
, p
->dir
, &c
);
1620 static int copy_to_user_tmpl(struct xfrm_policy
*xp
, struct sk_buff
*skb
)
1622 struct xfrm_user_tmpl vec
[XFRM_MAX_DEPTH
];
1625 if (xp
->xfrm_nr
== 0)
1628 for (i
= 0; i
< xp
->xfrm_nr
; i
++) {
1629 struct xfrm_user_tmpl
*up
= &vec
[i
];
1630 struct xfrm_tmpl
*kp
= &xp
->xfrm_vec
[i
];
1632 memset(up
, 0, sizeof(*up
));
1633 memcpy(&up
->id
, &kp
->id
, sizeof(up
->id
));
1634 up
->family
= kp
->encap_family
;
1635 memcpy(&up
->saddr
, &kp
->saddr
, sizeof(up
->saddr
));
1636 up
->reqid
= kp
->reqid
;
1637 up
->mode
= kp
->mode
;
1638 up
->share
= kp
->share
;
1639 up
->optional
= kp
->optional
;
1640 up
->aalgos
= kp
->aalgos
;
1641 up
->ealgos
= kp
->ealgos
;
1642 up
->calgos
= kp
->calgos
;
1645 return nla_put(skb
, XFRMA_TMPL
,
1646 sizeof(struct xfrm_user_tmpl
) * xp
->xfrm_nr
, vec
);
1649 static inline int copy_to_user_state_sec_ctx(struct xfrm_state
*x
, struct sk_buff
*skb
)
1652 return copy_sec_ctx(x
->security
, skb
);
1657 static inline int copy_to_user_sec_ctx(struct xfrm_policy
*xp
, struct sk_buff
*skb
)
1660 return copy_sec_ctx(xp
->security
, skb
);
1663 static inline unsigned int userpolicy_type_attrsize(void)
1665 #ifdef CONFIG_XFRM_SUB_POLICY
1666 return nla_total_size(sizeof(struct xfrm_userpolicy_type
));
1672 #ifdef CONFIG_XFRM_SUB_POLICY
1673 static int copy_to_user_policy_type(u8 type
, struct sk_buff
*skb
)
1675 struct xfrm_userpolicy_type upt
= {
1679 return nla_put(skb
, XFRMA_POLICY_TYPE
, sizeof(upt
), &upt
);
1683 static inline int copy_to_user_policy_type(u8 type
, struct sk_buff
*skb
)
1689 static int dump_one_policy(struct xfrm_policy
*xp
, int dir
, int count
, void *ptr
)
1691 struct xfrm_dump_info
*sp
= ptr
;
1692 struct xfrm_userpolicy_info
*p
;
1693 struct sk_buff
*in_skb
= sp
->in_skb
;
1694 struct sk_buff
*skb
= sp
->out_skb
;
1695 struct nlmsghdr
*nlh
;
1698 nlh
= nlmsg_put(skb
, NETLINK_CB(in_skb
).portid
, sp
->nlmsg_seq
,
1699 XFRM_MSG_NEWPOLICY
, sizeof(*p
), sp
->nlmsg_flags
);
1703 p
= nlmsg_data(nlh
);
1704 copy_to_user_policy(xp
, p
, dir
);
1705 err
= copy_to_user_tmpl(xp
, skb
);
1707 err
= copy_to_user_sec_ctx(xp
, skb
);
1709 err
= copy_to_user_policy_type(xp
->type
, skb
);
1711 err
= xfrm_mark_put(skb
, &xp
->mark
);
1713 nlmsg_cancel(skb
, nlh
);
1716 nlmsg_end(skb
, nlh
);
1720 static int xfrm_dump_policy_done(struct netlink_callback
*cb
)
1722 struct xfrm_policy_walk
*walk
= (struct xfrm_policy_walk
*)cb
->args
;
1723 struct net
*net
= sock_net(cb
->skb
->sk
);
1725 xfrm_policy_walk_done(walk
, net
);
1729 static int xfrm_dump_policy_start(struct netlink_callback
*cb
)
1731 struct xfrm_policy_walk
*walk
= (struct xfrm_policy_walk
*)cb
->args
;
1733 BUILD_BUG_ON(sizeof(*walk
) > sizeof(cb
->args
));
1735 xfrm_policy_walk_init(walk
, XFRM_POLICY_TYPE_ANY
);
1739 static int xfrm_dump_policy(struct sk_buff
*skb
, struct netlink_callback
*cb
)
1741 struct net
*net
= sock_net(skb
->sk
);
1742 struct xfrm_policy_walk
*walk
= (struct xfrm_policy_walk
*)cb
->args
;
1743 struct xfrm_dump_info info
;
1745 info
.in_skb
= cb
->skb
;
1747 info
.nlmsg_seq
= cb
->nlh
->nlmsg_seq
;
1748 info
.nlmsg_flags
= NLM_F_MULTI
;
1750 (void) xfrm_policy_walk(net
, walk
, dump_one_policy
, &info
);
1755 static struct sk_buff
*xfrm_policy_netlink(struct sk_buff
*in_skb
,
1756 struct xfrm_policy
*xp
,
1759 struct xfrm_dump_info info
;
1760 struct sk_buff
*skb
;
1763 skb
= nlmsg_new(NLMSG_DEFAULT_SIZE
, GFP_KERNEL
);
1765 return ERR_PTR(-ENOMEM
);
1767 info
.in_skb
= in_skb
;
1769 info
.nlmsg_seq
= seq
;
1770 info
.nlmsg_flags
= 0;
1772 err
= dump_one_policy(xp
, dir
, 0, &info
);
1775 return ERR_PTR(err
);
1781 static int xfrm_get_policy(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
1782 struct nlattr
**attrs
)
1784 struct net
*net
= sock_net(skb
->sk
);
1785 struct xfrm_policy
*xp
;
1786 struct xfrm_userpolicy_id
*p
;
1787 u8 type
= XFRM_POLICY_TYPE_MAIN
;
1792 u32 mark
= xfrm_mark_get(attrs
, &m
);
1794 p
= nlmsg_data(nlh
);
1795 delete = nlh
->nlmsg_type
== XFRM_MSG_DELPOLICY
;
1797 err
= copy_from_user_policy_type(&type
, attrs
);
1801 err
= verify_policy_dir(p
->dir
);
1806 xp
= xfrm_policy_byid(net
, mark
, type
, p
->dir
, p
->index
, delete, &err
);
1808 struct nlattr
*rt
= attrs
[XFRMA_SEC_CTX
];
1809 struct xfrm_sec_ctx
*ctx
;
1811 err
= verify_sec_ctx_len(attrs
);
1817 struct xfrm_user_sec_ctx
*uctx
= nla_data(rt
);
1819 err
= security_xfrm_policy_alloc(&ctx
, uctx
, GFP_KERNEL
);
1823 xp
= xfrm_policy_bysel_ctx(net
, mark
, type
, p
->dir
, &p
->sel
,
1825 security_xfrm_policy_free(ctx
);
1831 struct sk_buff
*resp_skb
;
1833 resp_skb
= xfrm_policy_netlink(skb
, xp
, p
->dir
, nlh
->nlmsg_seq
);
1834 if (IS_ERR(resp_skb
)) {
1835 err
= PTR_ERR(resp_skb
);
1837 err
= nlmsg_unicast(net
->xfrm
.nlsk
, resp_skb
,
1838 NETLINK_CB(skb
).portid
);
1841 xfrm_audit_policy_delete(xp
, err
? 0 : 1, true);
1846 c
.data
.byid
= p
->index
;
1847 c
.event
= nlh
->nlmsg_type
;
1848 c
.seq
= nlh
->nlmsg_seq
;
1849 c
.portid
= nlh
->nlmsg_pid
;
1850 km_policy_notify(xp
, p
->dir
, &c
);
1858 static int xfrm_flush_sa(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
1859 struct nlattr
**attrs
)
1861 struct net
*net
= sock_net(skb
->sk
);
1863 struct xfrm_usersa_flush
*p
= nlmsg_data(nlh
);
1866 err
= xfrm_state_flush(net
, p
->proto
, true);
1868 if (err
== -ESRCH
) /* empty table */
1872 c
.data
.proto
= p
->proto
;
1873 c
.event
= nlh
->nlmsg_type
;
1874 c
.seq
= nlh
->nlmsg_seq
;
1875 c
.portid
= nlh
->nlmsg_pid
;
1877 km_state_notify(NULL
, &c
);
1882 static inline unsigned int xfrm_aevent_msgsize(struct xfrm_state
*x
)
1884 unsigned int replay_size
= x
->replay_esn
?
1885 xfrm_replay_state_esn_len(x
->replay_esn
) :
1886 sizeof(struct xfrm_replay_state
);
1888 return NLMSG_ALIGN(sizeof(struct xfrm_aevent_id
))
1889 + nla_total_size(replay_size
)
1890 + nla_total_size_64bit(sizeof(struct xfrm_lifetime_cur
))
1891 + nla_total_size(sizeof(struct xfrm_mark
))
1892 + nla_total_size(4) /* XFRM_AE_RTHR */
1893 + nla_total_size(4); /* XFRM_AE_ETHR */
1896 static int build_aevent(struct sk_buff
*skb
, struct xfrm_state
*x
, const struct km_event
*c
)
1898 struct xfrm_aevent_id
*id
;
1899 struct nlmsghdr
*nlh
;
1902 nlh
= nlmsg_put(skb
, c
->portid
, c
->seq
, XFRM_MSG_NEWAE
, sizeof(*id
), 0);
1906 id
= nlmsg_data(nlh
);
1907 memset(&id
->sa_id
, 0, sizeof(id
->sa_id
));
1908 memcpy(&id
->sa_id
.daddr
, &x
->id
.daddr
, sizeof(x
->id
.daddr
));
1909 id
->sa_id
.spi
= x
->id
.spi
;
1910 id
->sa_id
.family
= x
->props
.family
;
1911 id
->sa_id
.proto
= x
->id
.proto
;
1912 memcpy(&id
->saddr
, &x
->props
.saddr
, sizeof(x
->props
.saddr
));
1913 id
->reqid
= x
->props
.reqid
;
1914 id
->flags
= c
->data
.aevent
;
1916 if (x
->replay_esn
) {
1917 err
= nla_put(skb
, XFRMA_REPLAY_ESN_VAL
,
1918 xfrm_replay_state_esn_len(x
->replay_esn
),
1921 err
= nla_put(skb
, XFRMA_REPLAY_VAL
, sizeof(x
->replay
),
1926 err
= nla_put_64bit(skb
, XFRMA_LTIME_VAL
, sizeof(x
->curlft
), &x
->curlft
,
1931 if (id
->flags
& XFRM_AE_RTHR
) {
1932 err
= nla_put_u32(skb
, XFRMA_REPLAY_THRESH
, x
->replay_maxdiff
);
1936 if (id
->flags
& XFRM_AE_ETHR
) {
1937 err
= nla_put_u32(skb
, XFRMA_ETIMER_THRESH
,
1938 x
->replay_maxage
* 10 / HZ
);
1942 err
= xfrm_mark_put(skb
, &x
->mark
);
1946 nlmsg_end(skb
, nlh
);
1950 nlmsg_cancel(skb
, nlh
);
1954 static int xfrm_get_ae(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
1955 struct nlattr
**attrs
)
1957 struct net
*net
= sock_net(skb
->sk
);
1958 struct xfrm_state
*x
;
1959 struct sk_buff
*r_skb
;
1964 struct xfrm_aevent_id
*p
= nlmsg_data(nlh
);
1965 struct xfrm_usersa_id
*id
= &p
->sa_id
;
1967 mark
= xfrm_mark_get(attrs
, &m
);
1969 x
= xfrm_state_lookup(net
, mark
, &id
->daddr
, id
->spi
, id
->proto
, id
->family
);
1973 r_skb
= nlmsg_new(xfrm_aevent_msgsize(x
), GFP_ATOMIC
);
1974 if (r_skb
== NULL
) {
1980 * XXX: is this lock really needed - none of the other
1981 * gets lock (the concern is things getting updated
1982 * while we are still reading) - jhs
1984 spin_lock_bh(&x
->lock
);
1985 c
.data
.aevent
= p
->flags
;
1986 c
.seq
= nlh
->nlmsg_seq
;
1987 c
.portid
= nlh
->nlmsg_pid
;
1989 err
= build_aevent(r_skb
, x
, &c
);
1992 err
= nlmsg_unicast(net
->xfrm
.nlsk
, r_skb
, NETLINK_CB(skb
).portid
);
1993 spin_unlock_bh(&x
->lock
);
1998 static int xfrm_new_ae(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
1999 struct nlattr
**attrs
)
2001 struct net
*net
= sock_net(skb
->sk
);
2002 struct xfrm_state
*x
;
2007 struct xfrm_aevent_id
*p
= nlmsg_data(nlh
);
2008 struct nlattr
*rp
= attrs
[XFRMA_REPLAY_VAL
];
2009 struct nlattr
*re
= attrs
[XFRMA_REPLAY_ESN_VAL
];
2010 struct nlattr
*lt
= attrs
[XFRMA_LTIME_VAL
];
2011 struct nlattr
*et
= attrs
[XFRMA_ETIMER_THRESH
];
2012 struct nlattr
*rt
= attrs
[XFRMA_REPLAY_THRESH
];
2014 if (!lt
&& !rp
&& !re
&& !et
&& !rt
)
2017 /* pedantic mode - thou shalt sayeth replaceth */
2018 if (!(nlh
->nlmsg_flags
&NLM_F_REPLACE
))
2021 mark
= xfrm_mark_get(attrs
, &m
);
2023 x
= xfrm_state_lookup(net
, mark
, &p
->sa_id
.daddr
, p
->sa_id
.spi
, p
->sa_id
.proto
, p
->sa_id
.family
);
2027 if (x
->km
.state
!= XFRM_STATE_VALID
)
2030 err
= xfrm_replay_verify_len(x
->replay_esn
, re
);
2034 spin_lock_bh(&x
->lock
);
2035 xfrm_update_ae_params(x
, attrs
, 1);
2036 spin_unlock_bh(&x
->lock
);
2038 c
.event
= nlh
->nlmsg_type
;
2039 c
.seq
= nlh
->nlmsg_seq
;
2040 c
.portid
= nlh
->nlmsg_pid
;
2041 c
.data
.aevent
= XFRM_AE_CU
;
2042 km_state_notify(x
, &c
);
2049 static int xfrm_flush_policy(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
2050 struct nlattr
**attrs
)
2052 struct net
*net
= sock_net(skb
->sk
);
2054 u8 type
= XFRM_POLICY_TYPE_MAIN
;
2057 err
= copy_from_user_policy_type(&type
, attrs
);
2061 err
= xfrm_policy_flush(net
, type
, true);
2063 if (err
== -ESRCH
) /* empty table */
2069 c
.event
= nlh
->nlmsg_type
;
2070 c
.seq
= nlh
->nlmsg_seq
;
2071 c
.portid
= nlh
->nlmsg_pid
;
2073 km_policy_notify(NULL
, 0, &c
);
2077 static int xfrm_add_pol_expire(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
2078 struct nlattr
**attrs
)
2080 struct net
*net
= sock_net(skb
->sk
);
2081 struct xfrm_policy
*xp
;
2082 struct xfrm_user_polexpire
*up
= nlmsg_data(nlh
);
2083 struct xfrm_userpolicy_info
*p
= &up
->pol
;
2084 u8 type
= XFRM_POLICY_TYPE_MAIN
;
2087 u32 mark
= xfrm_mark_get(attrs
, &m
);
2089 err
= copy_from_user_policy_type(&type
, attrs
);
2093 err
= verify_policy_dir(p
->dir
);
2098 xp
= xfrm_policy_byid(net
, mark
, type
, p
->dir
, p
->index
, 0, &err
);
2100 struct nlattr
*rt
= attrs
[XFRMA_SEC_CTX
];
2101 struct xfrm_sec_ctx
*ctx
;
2103 err
= verify_sec_ctx_len(attrs
);
2109 struct xfrm_user_sec_ctx
*uctx
= nla_data(rt
);
2111 err
= security_xfrm_policy_alloc(&ctx
, uctx
, GFP_KERNEL
);
2115 xp
= xfrm_policy_bysel_ctx(net
, mark
, type
, p
->dir
,
2116 &p
->sel
, ctx
, 0, &err
);
2117 security_xfrm_policy_free(ctx
);
2122 if (unlikely(xp
->walk
.dead
))
2127 xfrm_policy_delete(xp
, p
->dir
);
2128 xfrm_audit_policy_delete(xp
, 1, true);
2130 km_policy_expired(xp
, p
->dir
, up
->hard
, nlh
->nlmsg_pid
);
2137 static int xfrm_add_sa_expire(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
2138 struct nlattr
**attrs
)
2140 struct net
*net
= sock_net(skb
->sk
);
2141 struct xfrm_state
*x
;
2143 struct xfrm_user_expire
*ue
= nlmsg_data(nlh
);
2144 struct xfrm_usersa_info
*p
= &ue
->state
;
2146 u32 mark
= xfrm_mark_get(attrs
, &m
);
2148 x
= xfrm_state_lookup(net
, mark
, &p
->id
.daddr
, p
->id
.spi
, p
->id
.proto
, p
->family
);
2154 spin_lock_bh(&x
->lock
);
2156 if (x
->km
.state
!= XFRM_STATE_VALID
)
2158 km_state_expired(x
, ue
->hard
, nlh
->nlmsg_pid
);
2161 __xfrm_state_delete(x
);
2162 xfrm_audit_state_delete(x
, 1, true);
2166 spin_unlock_bh(&x
->lock
);
2171 static int xfrm_add_acquire(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
2172 struct nlattr
**attrs
)
2174 struct net
*net
= sock_net(skb
->sk
);
2175 struct xfrm_policy
*xp
;
2176 struct xfrm_user_tmpl
*ut
;
2178 struct nlattr
*rt
= attrs
[XFRMA_TMPL
];
2179 struct xfrm_mark mark
;
2181 struct xfrm_user_acquire
*ua
= nlmsg_data(nlh
);
2182 struct xfrm_state
*x
= xfrm_state_alloc(net
);
2188 xfrm_mark_get(attrs
, &mark
);
2190 err
= verify_newpolicy_info(&ua
->policy
);
2195 xp
= xfrm_policy_construct(net
, &ua
->policy
, attrs
, &err
);
2199 memcpy(&x
->id
, &ua
->id
, sizeof(ua
->id
));
2200 memcpy(&x
->props
.saddr
, &ua
->saddr
, sizeof(ua
->saddr
));
2201 memcpy(&x
->sel
, &ua
->sel
, sizeof(ua
->sel
));
2202 xp
->mark
.m
= x
->mark
.m
= mark
.m
;
2203 xp
->mark
.v
= x
->mark
.v
= mark
.v
;
2205 /* extract the templates and for each call km_key */
2206 for (i
= 0; i
< xp
->xfrm_nr
; i
++, ut
++) {
2207 struct xfrm_tmpl
*t
= &xp
->xfrm_vec
[i
];
2208 memcpy(&x
->id
, &t
->id
, sizeof(x
->id
));
2209 x
->props
.mode
= t
->mode
;
2210 x
->props
.reqid
= t
->reqid
;
2211 x
->props
.family
= ut
->family
;
2212 t
->aalgos
= ua
->aalgos
;
2213 t
->ealgos
= ua
->ealgos
;
2214 t
->calgos
= ua
->calgos
;
2215 err
= km_query(x
, t
, xp
);
2230 #ifdef CONFIG_XFRM_MIGRATE
2231 static int copy_from_user_migrate(struct xfrm_migrate
*ma
,
2232 struct xfrm_kmaddress
*k
,
2233 struct nlattr
**attrs
, int *num
)
2235 struct nlattr
*rt
= attrs
[XFRMA_MIGRATE
];
2236 struct xfrm_user_migrate
*um
;
2240 struct xfrm_user_kmaddress
*uk
;
2242 uk
= nla_data(attrs
[XFRMA_KMADDRESS
]);
2243 memcpy(&k
->local
, &uk
->local
, sizeof(k
->local
));
2244 memcpy(&k
->remote
, &uk
->remote
, sizeof(k
->remote
));
2245 k
->family
= uk
->family
;
2246 k
->reserved
= uk
->reserved
;
2250 num_migrate
= nla_len(rt
) / sizeof(*um
);
2252 if (num_migrate
<= 0 || num_migrate
> XFRM_MAX_DEPTH
)
2255 for (i
= 0; i
< num_migrate
; i
++, um
++, ma
++) {
2256 memcpy(&ma
->old_daddr
, &um
->old_daddr
, sizeof(ma
->old_daddr
));
2257 memcpy(&ma
->old_saddr
, &um
->old_saddr
, sizeof(ma
->old_saddr
));
2258 memcpy(&ma
->new_daddr
, &um
->new_daddr
, sizeof(ma
->new_daddr
));
2259 memcpy(&ma
->new_saddr
, &um
->new_saddr
, sizeof(ma
->new_saddr
));
2261 ma
->proto
= um
->proto
;
2262 ma
->mode
= um
->mode
;
2263 ma
->reqid
= um
->reqid
;
2265 ma
->old_family
= um
->old_family
;
2266 ma
->new_family
= um
->new_family
;
2273 static int xfrm_do_migrate(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
2274 struct nlattr
**attrs
)
2276 struct xfrm_userpolicy_id
*pi
= nlmsg_data(nlh
);
2277 struct xfrm_migrate m
[XFRM_MAX_DEPTH
];
2278 struct xfrm_kmaddress km
, *kmp
;
2282 struct net
*net
= sock_net(skb
->sk
);
2283 struct xfrm_encap_tmpl
*encap
= NULL
;
2285 if (attrs
[XFRMA_MIGRATE
] == NULL
)
2288 kmp
= attrs
[XFRMA_KMADDRESS
] ? &km
: NULL
;
2290 err
= copy_from_user_policy_type(&type
, attrs
);
2294 err
= copy_from_user_migrate((struct xfrm_migrate
*)m
, kmp
, attrs
, &n
);
2301 if (attrs
[XFRMA_ENCAP
]) {
2302 encap
= kmemdup(nla_data(attrs
[XFRMA_ENCAP
]),
2303 sizeof(*encap
), GFP_KERNEL
);
2308 err
= xfrm_migrate(&pi
->sel
, pi
->dir
, type
, m
, n
, kmp
, net
, encap
);
2315 static int xfrm_do_migrate(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
2316 struct nlattr
**attrs
)
2318 return -ENOPROTOOPT
;
2322 #ifdef CONFIG_XFRM_MIGRATE
2323 static int copy_to_user_migrate(const struct xfrm_migrate
*m
, struct sk_buff
*skb
)
2325 struct xfrm_user_migrate um
;
2327 memset(&um
, 0, sizeof(um
));
2328 um
.proto
= m
->proto
;
2330 um
.reqid
= m
->reqid
;
2331 um
.old_family
= m
->old_family
;
2332 memcpy(&um
.old_daddr
, &m
->old_daddr
, sizeof(um
.old_daddr
));
2333 memcpy(&um
.old_saddr
, &m
->old_saddr
, sizeof(um
.old_saddr
));
2334 um
.new_family
= m
->new_family
;
2335 memcpy(&um
.new_daddr
, &m
->new_daddr
, sizeof(um
.new_daddr
));
2336 memcpy(&um
.new_saddr
, &m
->new_saddr
, sizeof(um
.new_saddr
));
2338 return nla_put(skb
, XFRMA_MIGRATE
, sizeof(um
), &um
);
2341 static int copy_to_user_kmaddress(const struct xfrm_kmaddress
*k
, struct sk_buff
*skb
)
2343 struct xfrm_user_kmaddress uk
;
2345 memset(&uk
, 0, sizeof(uk
));
2346 uk
.family
= k
->family
;
2347 uk
.reserved
= k
->reserved
;
2348 memcpy(&uk
.local
, &k
->local
, sizeof(uk
.local
));
2349 memcpy(&uk
.remote
, &k
->remote
, sizeof(uk
.remote
));
2351 return nla_put(skb
, XFRMA_KMADDRESS
, sizeof(uk
), &uk
);
2354 static inline unsigned int xfrm_migrate_msgsize(int num_migrate
, int with_kma
,
2357 return NLMSG_ALIGN(sizeof(struct xfrm_userpolicy_id
))
2358 + (with_kma
? nla_total_size(sizeof(struct xfrm_kmaddress
)) : 0)
2359 + (with_encp
? nla_total_size(sizeof(struct xfrm_encap_tmpl
)) : 0)
2360 + nla_total_size(sizeof(struct xfrm_user_migrate
) * num_migrate
)
2361 + userpolicy_type_attrsize();
2364 static int build_migrate(struct sk_buff
*skb
, const struct xfrm_migrate
*m
,
2365 int num_migrate
, const struct xfrm_kmaddress
*k
,
2366 const struct xfrm_selector
*sel
,
2367 const struct xfrm_encap_tmpl
*encap
, u8 dir
, u8 type
)
2369 const struct xfrm_migrate
*mp
;
2370 struct xfrm_userpolicy_id
*pol_id
;
2371 struct nlmsghdr
*nlh
;
2374 nlh
= nlmsg_put(skb
, 0, 0, XFRM_MSG_MIGRATE
, sizeof(*pol_id
), 0);
2378 pol_id
= nlmsg_data(nlh
);
2379 /* copy data from selector, dir, and type to the pol_id */
2380 memset(pol_id
, 0, sizeof(*pol_id
));
2381 memcpy(&pol_id
->sel
, sel
, sizeof(pol_id
->sel
));
2385 err
= copy_to_user_kmaddress(k
, skb
);
2390 err
= nla_put(skb
, XFRMA_ENCAP
, sizeof(*encap
), encap
);
2394 err
= copy_to_user_policy_type(type
, skb
);
2397 for (i
= 0, mp
= m
; i
< num_migrate
; i
++, mp
++) {
2398 err
= copy_to_user_migrate(mp
, skb
);
2403 nlmsg_end(skb
, nlh
);
2407 nlmsg_cancel(skb
, nlh
);
2411 static int xfrm_send_migrate(const struct xfrm_selector
*sel
, u8 dir
, u8 type
,
2412 const struct xfrm_migrate
*m
, int num_migrate
,
2413 const struct xfrm_kmaddress
*k
,
2414 const struct xfrm_encap_tmpl
*encap
)
2416 struct net
*net
= &init_net
;
2417 struct sk_buff
*skb
;
2420 skb
= nlmsg_new(xfrm_migrate_msgsize(num_migrate
, !!k
, !!encap
),
2426 err
= build_migrate(skb
, m
, num_migrate
, k
, sel
, encap
, dir
, type
);
2429 return xfrm_nlmsg_multicast(net
, skb
, 0, XFRMNLGRP_MIGRATE
);
2432 static int xfrm_send_migrate(const struct xfrm_selector
*sel
, u8 dir
, u8 type
,
2433 const struct xfrm_migrate
*m
, int num_migrate
,
2434 const struct xfrm_kmaddress
*k
,
2435 const struct xfrm_encap_tmpl
*encap
)
2437 return -ENOPROTOOPT
;
2441 #define XMSGSIZE(type) sizeof(struct type)
2443 static const int xfrm_msg_min
[XFRM_NR_MSGTYPES
] = {
2444 [XFRM_MSG_NEWSA
- XFRM_MSG_BASE
] = XMSGSIZE(xfrm_usersa_info
),
2445 [XFRM_MSG_DELSA
- XFRM_MSG_BASE
] = XMSGSIZE(xfrm_usersa_id
),
2446 [XFRM_MSG_GETSA
- XFRM_MSG_BASE
] = XMSGSIZE(xfrm_usersa_id
),
2447 [XFRM_MSG_NEWPOLICY
- XFRM_MSG_BASE
] = XMSGSIZE(xfrm_userpolicy_info
),
2448 [XFRM_MSG_DELPOLICY
- XFRM_MSG_BASE
] = XMSGSIZE(xfrm_userpolicy_id
),
2449 [XFRM_MSG_GETPOLICY
- XFRM_MSG_BASE
] = XMSGSIZE(xfrm_userpolicy_id
),
2450 [XFRM_MSG_ALLOCSPI
- XFRM_MSG_BASE
] = XMSGSIZE(xfrm_userspi_info
),
2451 [XFRM_MSG_ACQUIRE
- XFRM_MSG_BASE
] = XMSGSIZE(xfrm_user_acquire
),
2452 [XFRM_MSG_EXPIRE
- XFRM_MSG_BASE
] = XMSGSIZE(xfrm_user_expire
),
2453 [XFRM_MSG_UPDPOLICY
- XFRM_MSG_BASE
] = XMSGSIZE(xfrm_userpolicy_info
),
2454 [XFRM_MSG_UPDSA
- XFRM_MSG_BASE
] = XMSGSIZE(xfrm_usersa_info
),
2455 [XFRM_MSG_POLEXPIRE
- XFRM_MSG_BASE
] = XMSGSIZE(xfrm_user_polexpire
),
2456 [XFRM_MSG_FLUSHSA
- XFRM_MSG_BASE
] = XMSGSIZE(xfrm_usersa_flush
),
2457 [XFRM_MSG_FLUSHPOLICY
- XFRM_MSG_BASE
] = 0,
2458 [XFRM_MSG_NEWAE
- XFRM_MSG_BASE
] = XMSGSIZE(xfrm_aevent_id
),
2459 [XFRM_MSG_GETAE
- XFRM_MSG_BASE
] = XMSGSIZE(xfrm_aevent_id
),
2460 [XFRM_MSG_REPORT
- XFRM_MSG_BASE
] = XMSGSIZE(xfrm_user_report
),
2461 [XFRM_MSG_MIGRATE
- XFRM_MSG_BASE
] = XMSGSIZE(xfrm_userpolicy_id
),
2462 [XFRM_MSG_GETSADINFO
- XFRM_MSG_BASE
] = sizeof(u32
),
2463 [XFRM_MSG_NEWSPDINFO
- XFRM_MSG_BASE
] = sizeof(u32
),
2464 [XFRM_MSG_GETSPDINFO
- XFRM_MSG_BASE
] = sizeof(u32
),
2469 static const struct nla_policy xfrma_policy
[XFRMA_MAX
+1] = {
2470 [XFRMA_SA
] = { .len
= sizeof(struct xfrm_usersa_info
)},
2471 [XFRMA_POLICY
] = { .len
= sizeof(struct xfrm_userpolicy_info
)},
2472 [XFRMA_LASTUSED
] = { .type
= NLA_U64
},
2473 [XFRMA_ALG_AUTH_TRUNC
] = { .len
= sizeof(struct xfrm_algo_auth
)},
2474 [XFRMA_ALG_AEAD
] = { .len
= sizeof(struct xfrm_algo_aead
) },
2475 [XFRMA_ALG_AUTH
] = { .len
= sizeof(struct xfrm_algo
) },
2476 [XFRMA_ALG_CRYPT
] = { .len
= sizeof(struct xfrm_algo
) },
2477 [XFRMA_ALG_COMP
] = { .len
= sizeof(struct xfrm_algo
) },
2478 [XFRMA_ENCAP
] = { .len
= sizeof(struct xfrm_encap_tmpl
) },
2479 [XFRMA_TMPL
] = { .len
= sizeof(struct xfrm_user_tmpl
) },
2480 [XFRMA_SEC_CTX
] = { .len
= sizeof(struct xfrm_sec_ctx
) },
2481 [XFRMA_LTIME_VAL
] = { .len
= sizeof(struct xfrm_lifetime_cur
) },
2482 [XFRMA_REPLAY_VAL
] = { .len
= sizeof(struct xfrm_replay_state
) },
2483 [XFRMA_REPLAY_THRESH
] = { .type
= NLA_U32
},
2484 [XFRMA_ETIMER_THRESH
] = { .type
= NLA_U32
},
2485 [XFRMA_SRCADDR
] = { .len
= sizeof(xfrm_address_t
) },
2486 [XFRMA_COADDR
] = { .len
= sizeof(xfrm_address_t
) },
2487 [XFRMA_POLICY_TYPE
] = { .len
= sizeof(struct xfrm_userpolicy_type
)},
2488 [XFRMA_MIGRATE
] = { .len
= sizeof(struct xfrm_user_migrate
) },
2489 [XFRMA_KMADDRESS
] = { .len
= sizeof(struct xfrm_user_kmaddress
) },
2490 [XFRMA_MARK
] = { .len
= sizeof(struct xfrm_mark
) },
2491 [XFRMA_TFCPAD
] = { .type
= NLA_U32
},
2492 [XFRMA_REPLAY_ESN_VAL
] = { .len
= sizeof(struct xfrm_replay_state_esn
) },
2493 [XFRMA_SA_EXTRA_FLAGS
] = { .type
= NLA_U32
},
2494 [XFRMA_PROTO
] = { .type
= NLA_U8
},
2495 [XFRMA_ADDRESS_FILTER
] = { .len
= sizeof(struct xfrm_address_filter
) },
2496 [XFRMA_OFFLOAD_DEV
] = { .len
= sizeof(struct xfrm_user_offload
) },
2497 [XFRMA_OUTPUT_MARK
] = { .type
= NLA_U32
},
2500 static const struct nla_policy xfrma_spd_policy
[XFRMA_SPD_MAX
+1] = {
2501 [XFRMA_SPD_IPV4_HTHRESH
] = { .len
= sizeof(struct xfrmu_spdhthresh
) },
2502 [XFRMA_SPD_IPV6_HTHRESH
] = { .len
= sizeof(struct xfrmu_spdhthresh
) },
2505 static const struct xfrm_link
{
2506 int (*doit
)(struct sk_buff
*, struct nlmsghdr
*, struct nlattr
**);
2507 int (*start
)(struct netlink_callback
*);
2508 int (*dump
)(struct sk_buff
*, struct netlink_callback
*);
2509 int (*done
)(struct netlink_callback
*);
2510 const struct nla_policy
*nla_pol
;
2512 } xfrm_dispatch
[XFRM_NR_MSGTYPES
] = {
2513 [XFRM_MSG_NEWSA
- XFRM_MSG_BASE
] = { .doit
= xfrm_add_sa
},
2514 [XFRM_MSG_DELSA
- XFRM_MSG_BASE
] = { .doit
= xfrm_del_sa
},
2515 [XFRM_MSG_GETSA
- XFRM_MSG_BASE
] = { .doit
= xfrm_get_sa
,
2516 .dump
= xfrm_dump_sa
,
2517 .done
= xfrm_dump_sa_done
},
2518 [XFRM_MSG_NEWPOLICY
- XFRM_MSG_BASE
] = { .doit
= xfrm_add_policy
},
2519 [XFRM_MSG_DELPOLICY
- XFRM_MSG_BASE
] = { .doit
= xfrm_get_policy
},
2520 [XFRM_MSG_GETPOLICY
- XFRM_MSG_BASE
] = { .doit
= xfrm_get_policy
,
2521 .start
= xfrm_dump_policy_start
,
2522 .dump
= xfrm_dump_policy
,
2523 .done
= xfrm_dump_policy_done
},
2524 [XFRM_MSG_ALLOCSPI
- XFRM_MSG_BASE
] = { .doit
= xfrm_alloc_userspi
},
2525 [XFRM_MSG_ACQUIRE
- XFRM_MSG_BASE
] = { .doit
= xfrm_add_acquire
},
2526 [XFRM_MSG_EXPIRE
- XFRM_MSG_BASE
] = { .doit
= xfrm_add_sa_expire
},
2527 [XFRM_MSG_UPDPOLICY
- XFRM_MSG_BASE
] = { .doit
= xfrm_add_policy
},
2528 [XFRM_MSG_UPDSA
- XFRM_MSG_BASE
] = { .doit
= xfrm_add_sa
},
2529 [XFRM_MSG_POLEXPIRE
- XFRM_MSG_BASE
] = { .doit
= xfrm_add_pol_expire
},
2530 [XFRM_MSG_FLUSHSA
- XFRM_MSG_BASE
] = { .doit
= xfrm_flush_sa
},
2531 [XFRM_MSG_FLUSHPOLICY
- XFRM_MSG_BASE
] = { .doit
= xfrm_flush_policy
},
2532 [XFRM_MSG_NEWAE
- XFRM_MSG_BASE
] = { .doit
= xfrm_new_ae
},
2533 [XFRM_MSG_GETAE
- XFRM_MSG_BASE
] = { .doit
= xfrm_get_ae
},
2534 [XFRM_MSG_MIGRATE
- XFRM_MSG_BASE
] = { .doit
= xfrm_do_migrate
},
2535 [XFRM_MSG_GETSADINFO
- XFRM_MSG_BASE
] = { .doit
= xfrm_get_sadinfo
},
2536 [XFRM_MSG_NEWSPDINFO
- XFRM_MSG_BASE
] = { .doit
= xfrm_set_spdinfo
,
2537 .nla_pol
= xfrma_spd_policy
,
2538 .nla_max
= XFRMA_SPD_MAX
},
2539 [XFRM_MSG_GETSPDINFO
- XFRM_MSG_BASE
] = { .doit
= xfrm_get_spdinfo
},
2542 static int xfrm_user_rcv_msg(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
2543 struct netlink_ext_ack
*extack
)
2545 struct net
*net
= sock_net(skb
->sk
);
2546 struct nlattr
*attrs
[XFRMA_MAX
+1];
2547 const struct xfrm_link
*link
;
2550 #ifdef CONFIG_COMPAT
2551 if (in_compat_syscall())
2555 type
= nlh
->nlmsg_type
;
2556 if (type
> XFRM_MSG_MAX
)
2559 type
-= XFRM_MSG_BASE
;
2560 link
= &xfrm_dispatch
[type
];
2562 /* All operations require privileges, even GET */
2563 if (!netlink_net_capable(skb
, CAP_NET_ADMIN
))
2566 if ((type
== (XFRM_MSG_GETSA
- XFRM_MSG_BASE
) ||
2567 type
== (XFRM_MSG_GETPOLICY
- XFRM_MSG_BASE
)) &&
2568 (nlh
->nlmsg_flags
& NLM_F_DUMP
)) {
2569 if (link
->dump
== NULL
)
2573 struct netlink_dump_control c
= {
2574 .start
= link
->start
,
2578 return netlink_dump_start(net
->xfrm
.nlsk
, skb
, nlh
, &c
);
2582 err
= nlmsg_parse(nlh
, xfrm_msg_min
[type
], attrs
,
2583 link
->nla_max
? : XFRMA_MAX
,
2584 link
->nla_pol
? : xfrma_policy
, extack
);
2588 if (link
->doit
== NULL
)
2591 return link
->doit(skb
, nlh
, attrs
);
2594 static void xfrm_netlink_rcv(struct sk_buff
*skb
)
2596 struct net
*net
= sock_net(skb
->sk
);
2598 mutex_lock(&net
->xfrm
.xfrm_cfg_mutex
);
2599 netlink_rcv_skb(skb
, &xfrm_user_rcv_msg
);
2600 mutex_unlock(&net
->xfrm
.xfrm_cfg_mutex
);
2603 static inline unsigned int xfrm_expire_msgsize(void)
2605 return NLMSG_ALIGN(sizeof(struct xfrm_user_expire
))
2606 + nla_total_size(sizeof(struct xfrm_mark
));
2609 static int build_expire(struct sk_buff
*skb
, struct xfrm_state
*x
, const struct km_event
*c
)
2611 struct xfrm_user_expire
*ue
;
2612 struct nlmsghdr
*nlh
;
2615 nlh
= nlmsg_put(skb
, c
->portid
, 0, XFRM_MSG_EXPIRE
, sizeof(*ue
), 0);
2619 ue
= nlmsg_data(nlh
);
2620 copy_to_user_state(x
, &ue
->state
);
2621 ue
->hard
= (c
->data
.hard
!= 0) ? 1 : 0;
2622 /* clear the padding bytes */
2623 memset(&ue
->hard
+ 1, 0, sizeof(*ue
) - offsetofend(typeof(*ue
), hard
));
2625 err
= xfrm_mark_put(skb
, &x
->mark
);
2629 nlmsg_end(skb
, nlh
);
2633 static int xfrm_exp_state_notify(struct xfrm_state
*x
, const struct km_event
*c
)
2635 struct net
*net
= xs_net(x
);
2636 struct sk_buff
*skb
;
2638 skb
= nlmsg_new(xfrm_expire_msgsize(), GFP_ATOMIC
);
2642 if (build_expire(skb
, x
, c
) < 0) {
2647 return xfrm_nlmsg_multicast(net
, skb
, 0, XFRMNLGRP_EXPIRE
);
2650 static int xfrm_aevent_state_notify(struct xfrm_state
*x
, const struct km_event
*c
)
2652 struct net
*net
= xs_net(x
);
2653 struct sk_buff
*skb
;
2656 skb
= nlmsg_new(xfrm_aevent_msgsize(x
), GFP_ATOMIC
);
2660 err
= build_aevent(skb
, x
, c
);
2663 return xfrm_nlmsg_multicast(net
, skb
, 0, XFRMNLGRP_AEVENTS
);
2666 static int xfrm_notify_sa_flush(const struct km_event
*c
)
2668 struct net
*net
= c
->net
;
2669 struct xfrm_usersa_flush
*p
;
2670 struct nlmsghdr
*nlh
;
2671 struct sk_buff
*skb
;
2672 int len
= NLMSG_ALIGN(sizeof(struct xfrm_usersa_flush
));
2674 skb
= nlmsg_new(len
, GFP_ATOMIC
);
2678 nlh
= nlmsg_put(skb
, c
->portid
, c
->seq
, XFRM_MSG_FLUSHSA
, sizeof(*p
), 0);
2684 p
= nlmsg_data(nlh
);
2685 p
->proto
= c
->data
.proto
;
2687 nlmsg_end(skb
, nlh
);
2689 return xfrm_nlmsg_multicast(net
, skb
, 0, XFRMNLGRP_SA
);
2692 static inline unsigned int xfrm_sa_len(struct xfrm_state
*x
)
2696 l
+= nla_total_size(aead_len(x
->aead
));
2698 l
+= nla_total_size(sizeof(struct xfrm_algo
) +
2699 (x
->aalg
->alg_key_len
+ 7) / 8);
2700 l
+= nla_total_size(xfrm_alg_auth_len(x
->aalg
));
2703 l
+= nla_total_size(xfrm_alg_len(x
->ealg
));
2705 l
+= nla_total_size(sizeof(*x
->calg
));
2707 l
+= nla_total_size(sizeof(*x
->encap
));
2709 l
+= nla_total_size(sizeof(x
->tfcpad
));
2711 l
+= nla_total_size(xfrm_replay_state_esn_len(x
->replay_esn
));
2713 l
+= nla_total_size(sizeof(struct xfrm_replay_state
));
2715 l
+= nla_total_size(sizeof(struct xfrm_user_sec_ctx
) +
2716 x
->security
->ctx_len
);
2718 l
+= nla_total_size(sizeof(*x
->coaddr
));
2719 if (x
->props
.extra_flags
)
2720 l
+= nla_total_size(sizeof(x
->props
.extra_flags
));
2722 l
+= nla_total_size(sizeof(x
->xso
));
2723 if (x
->props
.output_mark
)
2724 l
+= nla_total_size(sizeof(x
->props
.output_mark
));
2726 /* Must count x->lastused as it may become non-zero behind our back. */
2727 l
+= nla_total_size_64bit(sizeof(u64
));
2732 static int xfrm_notify_sa(struct xfrm_state
*x
, const struct km_event
*c
)
2734 struct net
*net
= xs_net(x
);
2735 struct xfrm_usersa_info
*p
;
2736 struct xfrm_usersa_id
*id
;
2737 struct nlmsghdr
*nlh
;
2738 struct sk_buff
*skb
;
2739 unsigned int len
= xfrm_sa_len(x
);
2740 unsigned int headlen
;
2743 headlen
= sizeof(*p
);
2744 if (c
->event
== XFRM_MSG_DELSA
) {
2745 len
+= nla_total_size(headlen
);
2746 headlen
= sizeof(*id
);
2747 len
+= nla_total_size(sizeof(struct xfrm_mark
));
2749 len
+= NLMSG_ALIGN(headlen
);
2751 skb
= nlmsg_new(len
, GFP_ATOMIC
);
2755 nlh
= nlmsg_put(skb
, c
->portid
, c
->seq
, c
->event
, headlen
, 0);
2760 p
= nlmsg_data(nlh
);
2761 if (c
->event
== XFRM_MSG_DELSA
) {
2762 struct nlattr
*attr
;
2764 id
= nlmsg_data(nlh
);
2765 memset(id
, 0, sizeof(*id
));
2766 memcpy(&id
->daddr
, &x
->id
.daddr
, sizeof(id
->daddr
));
2767 id
->spi
= x
->id
.spi
;
2768 id
->family
= x
->props
.family
;
2769 id
->proto
= x
->id
.proto
;
2771 attr
= nla_reserve(skb
, XFRMA_SA
, sizeof(*p
));
2778 err
= copy_to_user_state_extra(x
, p
, skb
);
2782 nlmsg_end(skb
, nlh
);
2784 return xfrm_nlmsg_multicast(net
, skb
, 0, XFRMNLGRP_SA
);
2791 static int xfrm_send_state_notify(struct xfrm_state
*x
, const struct km_event
*c
)
2795 case XFRM_MSG_EXPIRE
:
2796 return xfrm_exp_state_notify(x
, c
);
2797 case XFRM_MSG_NEWAE
:
2798 return xfrm_aevent_state_notify(x
, c
);
2799 case XFRM_MSG_DELSA
:
2800 case XFRM_MSG_UPDSA
:
2801 case XFRM_MSG_NEWSA
:
2802 return xfrm_notify_sa(x
, c
);
2803 case XFRM_MSG_FLUSHSA
:
2804 return xfrm_notify_sa_flush(c
);
2806 printk(KERN_NOTICE
"xfrm_user: Unknown SA event %d\n",
2815 static inline unsigned int xfrm_acquire_msgsize(struct xfrm_state
*x
,
2816 struct xfrm_policy
*xp
)
2818 return NLMSG_ALIGN(sizeof(struct xfrm_user_acquire
))
2819 + nla_total_size(sizeof(struct xfrm_user_tmpl
) * xp
->xfrm_nr
)
2820 + nla_total_size(sizeof(struct xfrm_mark
))
2821 + nla_total_size(xfrm_user_sec_ctx_size(x
->security
))
2822 + userpolicy_type_attrsize();
2825 static int build_acquire(struct sk_buff
*skb
, struct xfrm_state
*x
,
2826 struct xfrm_tmpl
*xt
, struct xfrm_policy
*xp
)
2828 __u32 seq
= xfrm_get_acqseq();
2829 struct xfrm_user_acquire
*ua
;
2830 struct nlmsghdr
*nlh
;
2833 nlh
= nlmsg_put(skb
, 0, 0, XFRM_MSG_ACQUIRE
, sizeof(*ua
), 0);
2837 ua
= nlmsg_data(nlh
);
2838 memcpy(&ua
->id
, &x
->id
, sizeof(ua
->id
));
2839 memcpy(&ua
->saddr
, &x
->props
.saddr
, sizeof(ua
->saddr
));
2840 memcpy(&ua
->sel
, &x
->sel
, sizeof(ua
->sel
));
2841 copy_to_user_policy(xp
, &ua
->policy
, XFRM_POLICY_OUT
);
2842 ua
->aalgos
= xt
->aalgos
;
2843 ua
->ealgos
= xt
->ealgos
;
2844 ua
->calgos
= xt
->calgos
;
2845 ua
->seq
= x
->km
.seq
= seq
;
2847 err
= copy_to_user_tmpl(xp
, skb
);
2849 err
= copy_to_user_state_sec_ctx(x
, skb
);
2851 err
= copy_to_user_policy_type(xp
->type
, skb
);
2853 err
= xfrm_mark_put(skb
, &xp
->mark
);
2855 nlmsg_cancel(skb
, nlh
);
2859 nlmsg_end(skb
, nlh
);
2863 static int xfrm_send_acquire(struct xfrm_state
*x
, struct xfrm_tmpl
*xt
,
2864 struct xfrm_policy
*xp
)
2866 struct net
*net
= xs_net(x
);
2867 struct sk_buff
*skb
;
2870 skb
= nlmsg_new(xfrm_acquire_msgsize(x
, xp
), GFP_ATOMIC
);
2874 err
= build_acquire(skb
, x
, xt
, xp
);
2877 return xfrm_nlmsg_multicast(net
, skb
, 0, XFRMNLGRP_ACQUIRE
);
2880 /* User gives us xfrm_user_policy_info followed by an array of 0
2881 * or more templates.
2883 static struct xfrm_policy
*xfrm_compile_policy(struct sock
*sk
, int opt
,
2884 u8
*data
, int len
, int *dir
)
2886 struct net
*net
= sock_net(sk
);
2887 struct xfrm_userpolicy_info
*p
= (struct xfrm_userpolicy_info
*)data
;
2888 struct xfrm_user_tmpl
*ut
= (struct xfrm_user_tmpl
*) (p
+ 1);
2889 struct xfrm_policy
*xp
;
2892 switch (sk
->sk_family
) {
2894 if (opt
!= IP_XFRM_POLICY
) {
2899 #if IS_ENABLED(CONFIG_IPV6)
2901 if (opt
!= IPV6_XFRM_POLICY
) {
2914 if (len
< sizeof(*p
) ||
2915 verify_newpolicy_info(p
))
2918 nr
= ((len
- sizeof(*p
)) / sizeof(*ut
));
2919 if (validate_tmpl(nr
, ut
, p
->sel
.family
))
2922 if (p
->dir
> XFRM_POLICY_OUT
)
2925 xp
= xfrm_policy_alloc(net
, GFP_ATOMIC
);
2931 copy_from_user_policy(xp
, p
);
2932 xp
->type
= XFRM_POLICY_TYPE_MAIN
;
2933 copy_templates(xp
, ut
, nr
);
2940 static inline unsigned int xfrm_polexpire_msgsize(struct xfrm_policy
*xp
)
2942 return NLMSG_ALIGN(sizeof(struct xfrm_user_polexpire
))
2943 + nla_total_size(sizeof(struct xfrm_user_tmpl
) * xp
->xfrm_nr
)
2944 + nla_total_size(xfrm_user_sec_ctx_size(xp
->security
))
2945 + nla_total_size(sizeof(struct xfrm_mark
))
2946 + userpolicy_type_attrsize();
2949 static int build_polexpire(struct sk_buff
*skb
, struct xfrm_policy
*xp
,
2950 int dir
, const struct km_event
*c
)
2952 struct xfrm_user_polexpire
*upe
;
2953 int hard
= c
->data
.hard
;
2954 struct nlmsghdr
*nlh
;
2957 nlh
= nlmsg_put(skb
, c
->portid
, 0, XFRM_MSG_POLEXPIRE
, sizeof(*upe
), 0);
2961 upe
= nlmsg_data(nlh
);
2962 copy_to_user_policy(xp
, &upe
->pol
, dir
);
2963 err
= copy_to_user_tmpl(xp
, skb
);
2965 err
= copy_to_user_sec_ctx(xp
, skb
);
2967 err
= copy_to_user_policy_type(xp
->type
, skb
);
2969 err
= xfrm_mark_put(skb
, &xp
->mark
);
2971 nlmsg_cancel(skb
, nlh
);
2976 nlmsg_end(skb
, nlh
);
2980 static int xfrm_exp_policy_notify(struct xfrm_policy
*xp
, int dir
, const struct km_event
*c
)
2982 struct net
*net
= xp_net(xp
);
2983 struct sk_buff
*skb
;
2986 skb
= nlmsg_new(xfrm_polexpire_msgsize(xp
), GFP_ATOMIC
);
2990 err
= build_polexpire(skb
, xp
, dir
, c
);
2993 return xfrm_nlmsg_multicast(net
, skb
, 0, XFRMNLGRP_EXPIRE
);
2996 static int xfrm_notify_policy(struct xfrm_policy
*xp
, int dir
, const struct km_event
*c
)
2998 unsigned int len
= nla_total_size(sizeof(struct xfrm_user_tmpl
) * xp
->xfrm_nr
);
2999 struct net
*net
= xp_net(xp
);
3000 struct xfrm_userpolicy_info
*p
;
3001 struct xfrm_userpolicy_id
*id
;
3002 struct nlmsghdr
*nlh
;
3003 struct sk_buff
*skb
;
3004 unsigned int headlen
;
3007 headlen
= sizeof(*p
);
3008 if (c
->event
== XFRM_MSG_DELPOLICY
) {
3009 len
+= nla_total_size(headlen
);
3010 headlen
= sizeof(*id
);
3012 len
+= userpolicy_type_attrsize();
3013 len
+= nla_total_size(sizeof(struct xfrm_mark
));
3014 len
+= NLMSG_ALIGN(headlen
);
3016 skb
= nlmsg_new(len
, GFP_ATOMIC
);
3020 nlh
= nlmsg_put(skb
, c
->portid
, c
->seq
, c
->event
, headlen
, 0);
3025 p
= nlmsg_data(nlh
);
3026 if (c
->event
== XFRM_MSG_DELPOLICY
) {
3027 struct nlattr
*attr
;
3029 id
= nlmsg_data(nlh
);
3030 memset(id
, 0, sizeof(*id
));
3033 id
->index
= xp
->index
;
3035 memcpy(&id
->sel
, &xp
->selector
, sizeof(id
->sel
));
3037 attr
= nla_reserve(skb
, XFRMA_POLICY
, sizeof(*p
));
3045 copy_to_user_policy(xp
, p
, dir
);
3046 err
= copy_to_user_tmpl(xp
, skb
);
3048 err
= copy_to_user_policy_type(xp
->type
, skb
);
3050 err
= xfrm_mark_put(skb
, &xp
->mark
);
3054 nlmsg_end(skb
, nlh
);
3056 return xfrm_nlmsg_multicast(net
, skb
, 0, XFRMNLGRP_POLICY
);
3063 static int xfrm_notify_policy_flush(const struct km_event
*c
)
3065 struct net
*net
= c
->net
;
3066 struct nlmsghdr
*nlh
;
3067 struct sk_buff
*skb
;
3070 skb
= nlmsg_new(userpolicy_type_attrsize(), GFP_ATOMIC
);
3074 nlh
= nlmsg_put(skb
, c
->portid
, c
->seq
, XFRM_MSG_FLUSHPOLICY
, 0, 0);
3078 err
= copy_to_user_policy_type(c
->data
.type
, skb
);
3082 nlmsg_end(skb
, nlh
);
3084 return xfrm_nlmsg_multicast(net
, skb
, 0, XFRMNLGRP_POLICY
);
3091 static int xfrm_send_policy_notify(struct xfrm_policy
*xp
, int dir
, const struct km_event
*c
)
3095 case XFRM_MSG_NEWPOLICY
:
3096 case XFRM_MSG_UPDPOLICY
:
3097 case XFRM_MSG_DELPOLICY
:
3098 return xfrm_notify_policy(xp
, dir
, c
);
3099 case XFRM_MSG_FLUSHPOLICY
:
3100 return xfrm_notify_policy_flush(c
);
3101 case XFRM_MSG_POLEXPIRE
:
3102 return xfrm_exp_policy_notify(xp
, dir
, c
);
3104 printk(KERN_NOTICE
"xfrm_user: Unknown Policy event %d\n",
3112 static inline unsigned int xfrm_report_msgsize(void)
3114 return NLMSG_ALIGN(sizeof(struct xfrm_user_report
));
3117 static int build_report(struct sk_buff
*skb
, u8 proto
,
3118 struct xfrm_selector
*sel
, xfrm_address_t
*addr
)
3120 struct xfrm_user_report
*ur
;
3121 struct nlmsghdr
*nlh
;
3123 nlh
= nlmsg_put(skb
, 0, 0, XFRM_MSG_REPORT
, sizeof(*ur
), 0);
3127 ur
= nlmsg_data(nlh
);
3129 memcpy(&ur
->sel
, sel
, sizeof(ur
->sel
));
3132 int err
= nla_put(skb
, XFRMA_COADDR
, sizeof(*addr
), addr
);
3134 nlmsg_cancel(skb
, nlh
);
3138 nlmsg_end(skb
, nlh
);
3142 static int xfrm_send_report(struct net
*net
, u8 proto
,
3143 struct xfrm_selector
*sel
, xfrm_address_t
*addr
)
3145 struct sk_buff
*skb
;
3148 skb
= nlmsg_new(xfrm_report_msgsize(), GFP_ATOMIC
);
3152 err
= build_report(skb
, proto
, sel
, addr
);
3155 return xfrm_nlmsg_multicast(net
, skb
, 0, XFRMNLGRP_REPORT
);
3158 static inline unsigned int xfrm_mapping_msgsize(void)
3160 return NLMSG_ALIGN(sizeof(struct xfrm_user_mapping
));
3163 static int build_mapping(struct sk_buff
*skb
, struct xfrm_state
*x
,
3164 xfrm_address_t
*new_saddr
, __be16 new_sport
)
3166 struct xfrm_user_mapping
*um
;
3167 struct nlmsghdr
*nlh
;
3169 nlh
= nlmsg_put(skb
, 0, 0, XFRM_MSG_MAPPING
, sizeof(*um
), 0);
3173 um
= nlmsg_data(nlh
);
3175 memcpy(&um
->id
.daddr
, &x
->id
.daddr
, sizeof(um
->id
.daddr
));
3176 um
->id
.spi
= x
->id
.spi
;
3177 um
->id
.family
= x
->props
.family
;
3178 um
->id
.proto
= x
->id
.proto
;
3179 memcpy(&um
->new_saddr
, new_saddr
, sizeof(um
->new_saddr
));
3180 memcpy(&um
->old_saddr
, &x
->props
.saddr
, sizeof(um
->old_saddr
));
3181 um
->new_sport
= new_sport
;
3182 um
->old_sport
= x
->encap
->encap_sport
;
3183 um
->reqid
= x
->props
.reqid
;
3185 nlmsg_end(skb
, nlh
);
3189 static int xfrm_send_mapping(struct xfrm_state
*x
, xfrm_address_t
*ipaddr
,
3192 struct net
*net
= xs_net(x
);
3193 struct sk_buff
*skb
;
3196 if (x
->id
.proto
!= IPPROTO_ESP
)
3202 skb
= nlmsg_new(xfrm_mapping_msgsize(), GFP_ATOMIC
);
3206 err
= build_mapping(skb
, x
, ipaddr
, sport
);
3209 return xfrm_nlmsg_multicast(net
, skb
, 0, XFRMNLGRP_MAPPING
);
3212 static bool xfrm_is_alive(const struct km_event
*c
)
3214 return (bool)xfrm_acquire_is_on(c
->net
);
3217 static struct xfrm_mgr netlink_mgr
= {
3218 .notify
= xfrm_send_state_notify
,
3219 .acquire
= xfrm_send_acquire
,
3220 .compile_policy
= xfrm_compile_policy
,
3221 .notify_policy
= xfrm_send_policy_notify
,
3222 .report
= xfrm_send_report
,
3223 .migrate
= xfrm_send_migrate
,
3224 .new_mapping
= xfrm_send_mapping
,
3225 .is_alive
= xfrm_is_alive
,
3228 static int __net_init
xfrm_user_net_init(struct net
*net
)
3231 struct netlink_kernel_cfg cfg
= {
3232 .groups
= XFRMNLGRP_MAX
,
3233 .input
= xfrm_netlink_rcv
,
3236 nlsk
= netlink_kernel_create(net
, NETLINK_XFRM
, &cfg
);
3239 net
->xfrm
.nlsk_stash
= nlsk
; /* Don't set to NULL */
3240 rcu_assign_pointer(net
->xfrm
.nlsk
, nlsk
);
3244 static void __net_exit
xfrm_user_net_exit(struct list_head
*net_exit_list
)
3247 list_for_each_entry(net
, net_exit_list
, exit_list
)
3248 RCU_INIT_POINTER(net
->xfrm
.nlsk
, NULL
);
3250 list_for_each_entry(net
, net_exit_list
, exit_list
)
3251 netlink_kernel_release(net
->xfrm
.nlsk_stash
);
3254 static struct pernet_operations xfrm_user_net_ops
= {
3255 .init
= xfrm_user_net_init
,
3256 .exit_batch
= xfrm_user_net_exit
,
3259 static int __init
xfrm_user_init(void)
3263 printk(KERN_INFO
"Initializing XFRM netlink socket\n");
3265 rv
= register_pernet_subsys(&xfrm_user_net_ops
);
3268 rv
= xfrm_register_km(&netlink_mgr
);
3270 unregister_pernet_subsys(&xfrm_user_net_ops
);
3274 static void __exit
xfrm_user_exit(void)
3276 xfrm_unregister_km(&netlink_mgr
);
3277 unregister_pernet_subsys(&xfrm_user_net_ops
);
3280 module_init(xfrm_user_init
);
3281 module_exit(xfrm_user_exit
);
3282 MODULE_LICENSE("GPL");
3283 MODULE_ALIAS_NET_PF_PROTO(PF_NETLINK
, NETLINK_XFRM
);