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2 * Copyright (c) 2007-2013 Apple Inc. All rights reserved.
4 * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
6 * This file contains Original Code and/or Modifications of Original Code
7 * as defined in and that are subject to the Apple Public Source License
8 * Version 2.0 (the 'License'). You may not use this file except in
9 * compliance with the License. The rights granted to you under the License
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13 * terms of an Apple operating system software license agreement.
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29 /* $apfw: pf_if.c,v 1.4 2008/08/27 00:01:32 jhw Exp $ */
30 /* $OpenBSD: pf_if.c,v 1.46 2006/12/13 09:01:59 itojun Exp $ */
33 * Copyright 2005 Henning Brauer <henning@openbsd.org>
34 * Copyright 2005 Ryan McBride <mcbride@openbsd.org>
35 * Copyright (c) 2001 Daniel Hartmeier
36 * Copyright (c) 2003 Cedric Berger
37 * All rights reserved.
39 * Redistribution and use in source and binary forms, with or without
40 * modification, are permitted provided that the following conditions
43 * - Redistributions of source code must retain the above copyright
44 * notice, this list of conditions and the following disclaimer.
45 * - Redistributions in binary form must reproduce the above
46 * copyright notice, this list of conditions and the following
47 * disclaimer in the documentation and/or other materials provided
48 * with the distribution.
50 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
51 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
52 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
53 * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
54 * COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
55 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
56 * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
57 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
58 * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
59 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
60 * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
61 * POSSIBILITY OF SUCH DAMAGE.
64 #include <sys/param.h>
65 #include <sys/systm.h>
67 #include <sys/filio.h>
68 #include <sys/socket.h>
69 #include <sys/socketvar.h>
70 #include <sys/kernel.h>
72 #include <sys/malloc.h>
75 #include <net/if_types.h>
76 #include <net/if_var.h>
78 #include <netinet/in.h>
79 #include <netinet/in_var.h>
80 #include <netinet/in_systm.h>
81 #include <netinet/ip.h>
82 #include <netinet/ip_var.h>
85 #include <netinet/ip6.h>
88 #include <net/pfvar.h>
90 struct pfi_kif
*pfi_all
= NULL
;
92 static struct pool pfi_addr_pl
;
93 static struct pfi_ifhead pfi_ifs
;
94 static u_int32_t pfi_update
= 1;
95 static struct pfr_addr
*pfi_buffer
;
96 static int pfi_buffer_cnt
;
97 static int pfi_buffer_max
;
99 __private_extern__
void pfi_kifaddr_update(void *);
101 static void pfi_kif_update(struct pfi_kif
*);
102 static void pfi_dynaddr_update(struct pfi_dynaddr
*dyn
);
103 static void pfi_table_update(struct pfr_ktable
*, struct pfi_kif
*, int, int);
104 static void pfi_instance_add(struct ifnet
*, int, int);
105 static void pfi_address_add(struct sockaddr
*, int, int);
106 static int pfi_if_compare(struct pfi_kif
*, struct pfi_kif
*);
107 static int pfi_skip_if(const char *, struct pfi_kif
*);
108 static int pfi_unmask(void *);
110 RB_PROTOTYPE_SC(static, pfi_ifhead
, pfi_kif
, pfik_tree
, pfi_if_compare
);
111 RB_GENERATE(pfi_ifhead
, pfi_kif
, pfik_tree
, pfi_if_compare
);
113 #define PFI_BUFFER_MAX 0x10000
114 #define PFI_MTYPE M_IFADDR
116 #define IFG_ALL "ALL"
121 if (pfi_all
!= NULL
) /* already initialized */
124 pool_init(&pfi_addr_pl
, sizeof (struct pfi_dynaddr
), 0, 0, 0,
127 pfi_buffer
= _MALLOC(pfi_buffer_max
* sizeof (*pfi_buffer
),
128 PFI_MTYPE
, M_WAITOK
);
130 if ((pfi_all
= pfi_kif_get(IFG_ALL
)) == NULL
)
131 panic("pfi_kif_get for pfi_all failed");
138 pool_destroy(&pfi_addr_pl
);
139 _FREE(pfi_buffer
, PFI_MTYPE
);
144 pfi_kif_get(const char *kif_name
)
147 struct pfi_kif_cmp s
;
149 bzero(&s
, sizeof (s
));
150 strlcpy(s
.pfik_name
, kif_name
, sizeof (s
.pfik_name
));
151 if ((kif
= RB_FIND(pfi_ifhead
, &pfi_ifs
,
152 (struct pfi_kif
*)(void *)&s
)) != NULL
)
156 if ((kif
= _MALLOC(sizeof (*kif
), PFI_MTYPE
, M_WAITOK
|M_ZERO
)) == NULL
)
159 strlcpy(kif
->pfik_name
, kif_name
, sizeof (kif
->pfik_name
));
160 kif
->pfik_tzero
= pf_calendar_time_second();
161 TAILQ_INIT(&kif
->pfik_dynaddrs
);
163 RB_INSERT(pfi_ifhead
, &pfi_ifs
, kif
);
168 pfi_kif_ref(struct pfi_kif
*kif
, enum pfi_kif_refs what
)
171 case PFI_KIF_REF_RULE
:
174 case PFI_KIF_REF_STATE
:
178 panic("pfi_kif_ref with unknown type");
183 pfi_kif_unref(struct pfi_kif
*kif
, enum pfi_kif_refs what
)
189 case PFI_KIF_REF_NONE
:
191 case PFI_KIF_REF_RULE
:
192 if (kif
->pfik_rules
<= 0) {
193 printf("pfi_kif_unref: rules refcount <= 0\n");
198 case PFI_KIF_REF_STATE
:
199 if (kif
->pfik_states
<= 0) {
200 printf("pfi_kif_unref: state refcount <= 0\n");
206 panic("pfi_kif_unref with unknown type");
209 if (kif
->pfik_ifp
!= NULL
|| kif
== pfi_all
)
212 if (kif
->pfik_rules
|| kif
->pfik_states
)
215 RB_REMOVE(pfi_ifhead
, &pfi_ifs
, kif
);
216 _FREE(kif
, PFI_MTYPE
);
220 pfi_kif_match(struct pfi_kif
*rule_kif
, struct pfi_kif
*packet_kif
)
223 if (rule_kif
== NULL
|| rule_kif
== packet_kif
)
230 pfi_attach_ifnet(struct ifnet
*ifp
)
234 lck_mtx_assert(pf_lock
, LCK_MTX_ASSERT_OWNED
);
237 if ((kif
= pfi_kif_get(if_name(ifp
))) == NULL
)
238 panic("pfi_kif_get failed");
240 ifnet_lock_exclusive(ifp
);
242 ifp
->if_pf_kif
= kif
;
243 ifnet_lock_done(ifp
);
249 * Caller holds ifnet lock as writer (exclusive);
252 pfi_detach_ifnet(struct ifnet
*ifp
)
256 lck_mtx_assert(pf_lock
, LCK_MTX_ASSERT_OWNED
);
258 if ((kif
= (struct pfi_kif
*)ifp
->if_pf_kif
) == NULL
)
264 ifnet_lock_exclusive(ifp
);
265 kif
->pfik_ifp
= NULL
;
266 ifp
->if_pf_kif
= NULL
;
267 ifnet_lock_done(ifp
);
269 pfi_kif_unref(kif
, PFI_KIF_REF_NONE
);
273 pfi_match_addr(struct pfi_dynaddr
*dyn
, struct pf_addr
*a
, sa_family_t af
)
278 switch (dyn
->pfid_acnt4
) {
282 return (PF_MATCHA(0, &dyn
->pfid_addr4
,
283 &dyn
->pfid_mask4
, a
, AF_INET
));
285 return (pfr_match_addr(dyn
->pfid_kt
, a
, AF_INET
));
291 switch (dyn
->pfid_acnt6
) {
295 return (PF_MATCHA(0, &dyn
->pfid_addr6
,
296 &dyn
->pfid_mask6
, a
, AF_INET6
));
298 return (pfr_match_addr(dyn
->pfid_kt
, a
, AF_INET6
));
308 pfi_dynaddr_setup(struct pf_addr_wrap
*aw
, sa_family_t af
)
310 struct pfi_dynaddr
*dyn
;
311 char tblname
[PF_TABLE_NAME_SIZE
];
312 struct pf_ruleset
*ruleset
= NULL
;
315 lck_mtx_assert(pf_lock
, LCK_MTX_ASSERT_OWNED
);
317 if (aw
->type
!= PF_ADDR_DYNIFTL
)
319 if ((dyn
= pool_get(&pfi_addr_pl
, PR_WAITOK
)) == NULL
)
321 bzero(dyn
, sizeof (*dyn
));
323 if (strcmp(aw
->v
.ifname
, "self") == 0)
324 dyn
->pfid_kif
= pfi_kif_get(IFG_ALL
);
326 dyn
->pfid_kif
= pfi_kif_get(aw
->v
.ifname
);
327 if (dyn
->pfid_kif
== NULL
) {
331 pfi_kif_ref(dyn
->pfid_kif
, PFI_KIF_REF_RULE
);
333 dyn
->pfid_net
= pfi_unmask(&aw
->v
.a
.mask
);
334 if (af
== AF_INET
&& dyn
->pfid_net
== 32)
336 strlcpy(tblname
, aw
->v
.ifname
, sizeof (tblname
));
337 if (aw
->iflags
& PFI_AFLAG_NETWORK
)
338 strlcat(tblname
, ":network", sizeof (tblname
));
339 if (aw
->iflags
& PFI_AFLAG_BROADCAST
)
340 strlcat(tblname
, ":broadcast", sizeof (tblname
));
341 if (aw
->iflags
& PFI_AFLAG_PEER
)
342 strlcat(tblname
, ":peer", sizeof (tblname
));
343 if (aw
->iflags
& PFI_AFLAG_NOALIAS
)
344 strlcat(tblname
, ":0", sizeof (tblname
));
345 if (dyn
->pfid_net
!= 128)
346 snprintf(tblname
+ strlen(tblname
),
347 sizeof (tblname
) - strlen(tblname
), "/%d", dyn
->pfid_net
);
348 if ((ruleset
= pf_find_or_create_ruleset(PF_RESERVED_ANCHOR
)) == NULL
) {
353 if ((dyn
->pfid_kt
= pfr_attach_table(ruleset
, tblname
)) == NULL
) {
358 dyn
->pfid_kt
->pfrkt_flags
|= PFR_TFLAG_ACTIVE
;
359 dyn
->pfid_iflags
= aw
->iflags
;
362 TAILQ_INSERT_TAIL(&dyn
->pfid_kif
->pfik_dynaddrs
, dyn
, entry
);
364 pfi_kif_update(dyn
->pfid_kif
);
368 if (dyn
->pfid_kt
!= NULL
)
369 pfr_detach_table(dyn
->pfid_kt
);
371 pf_remove_if_empty_ruleset(ruleset
);
372 if (dyn
->pfid_kif
!= NULL
)
373 pfi_kif_unref(dyn
->pfid_kif
, PFI_KIF_REF_RULE
);
374 pool_put(&pfi_addr_pl
, dyn
);
379 pfi_kif_update(struct pfi_kif
*kif
)
381 struct pfi_dynaddr
*p
;
383 lck_mtx_assert(pf_lock
, LCK_MTX_ASSERT_OWNED
);
385 /* update all dynaddr */
386 TAILQ_FOREACH(p
, &kif
->pfik_dynaddrs
, entry
)
387 pfi_dynaddr_update(p
);
391 pfi_dynaddr_update(struct pfi_dynaddr
*dyn
)
394 struct pfr_ktable
*kt
;
396 if (dyn
== NULL
|| dyn
->pfid_kif
== NULL
|| dyn
->pfid_kt
== NULL
)
397 panic("pfi_dynaddr_update");
402 if (kt
->pfrkt_larg
!= pfi_update
) {
403 /* this table needs to be brought up-to-date */
404 pfi_table_update(kt
, kif
, dyn
->pfid_net
, dyn
->pfid_iflags
);
405 kt
->pfrkt_larg
= pfi_update
;
407 pfr_dynaddr_update(kt
, dyn
);
411 pfi_table_update(struct pfr_ktable
*kt
, struct pfi_kif
*kif
, int net
, int flags
)
417 if (kif
->pfik_ifp
!= NULL
)
418 pfi_instance_add(kif
->pfik_ifp
, net
, flags
);
420 if ((e
= pfr_set_addrs(&kt
->pfrkt_t
, CAST_USER_ADDR_T(pfi_buffer
),
421 pfi_buffer_cnt
, &size2
, NULL
, NULL
, NULL
, 0, PFR_TFLAG_ALLMASK
)))
422 printf("pfi_table_update: cannot set %d new addresses "
423 "into table %s: %d\n", pfi_buffer_cnt
, kt
->pfrkt_name
, e
);
427 pfi_instance_add(struct ifnet
*ifp
, int net
, int flags
)
430 int got4
= 0, got6
= 0;
435 ifnet_lock_shared(ifp
);
436 TAILQ_FOREACH(ia
, &ifp
->if_addrhead
, ifa_link
) {
438 if (ia
->ifa_addr
== NULL
) {
442 af
= ia
->ifa_addr
->sa_family
;
443 if (af
!= AF_INET
&& af
!= AF_INET6
) {
447 if ((flags
& PFI_AFLAG_BROADCAST
) && af
== AF_INET6
) {
451 if ((flags
& PFI_AFLAG_BROADCAST
) &&
452 !(ifp
->if_flags
& IFF_BROADCAST
)) {
456 if ((flags
& PFI_AFLAG_PEER
) &&
457 !(ifp
->if_flags
& IFF_POINTOPOINT
)) {
461 if ((flags
& PFI_AFLAG_NETWORK
) && af
== AF_INET6
&&
462 IN6_IS_ADDR_LINKLOCAL(&((struct sockaddr_in6
*)
463 (void *)ia
->ifa_addr
)->sin6_addr
)) {
467 if (flags
& PFI_AFLAG_NOALIAS
) {
468 if (af
== AF_INET
&& got4
) {
472 if (af
== AF_INET6
&& got6
) {
479 else if (af
== AF_INET6
)
482 if (net2
== 128 && (flags
& PFI_AFLAG_NETWORK
)) {
484 net2
= pfi_unmask(&((struct sockaddr_in
*)
485 (void *)ia
->ifa_netmask
)->sin_addr
);
486 else if (af
== AF_INET6
)
487 net2
= pfi_unmask(&((struct sockaddr_in6
*)
488 (void *)ia
->ifa_netmask
)->sin6_addr
);
490 if (af
== AF_INET
&& net2
> 32)
492 if (flags
& PFI_AFLAG_BROADCAST
)
493 pfi_address_add(ia
->ifa_broadaddr
, af
, net2
);
494 else if (flags
& PFI_AFLAG_PEER
)
495 pfi_address_add(ia
->ifa_dstaddr
, af
, net2
);
497 pfi_address_add(ia
->ifa_addr
, af
, net2
);
500 ifnet_lock_done(ifp
);
504 pfi_address_add(struct sockaddr
*sa
, int af
, int net
)
509 if (pfi_buffer_cnt
>= pfi_buffer_max
) {
510 int new_max
= pfi_buffer_max
* 2;
512 if (new_max
> PFI_BUFFER_MAX
) {
513 printf("pfi_address_add: address buffer full (%d/%d)\n",
514 pfi_buffer_cnt
, PFI_BUFFER_MAX
);
517 p
= _MALLOC(new_max
* sizeof (*pfi_buffer
), PFI_MTYPE
,
520 printf("pfi_address_add: no memory to grow buffer "
521 "(%d/%d)\n", pfi_buffer_cnt
, PFI_BUFFER_MAX
);
524 memcpy(pfi_buffer
, p
, pfi_buffer_cnt
* sizeof (*pfi_buffer
));
525 /* no need to zero buffer */
526 _FREE(pfi_buffer
, PFI_MTYPE
);
528 pfi_buffer_max
= new_max
;
530 if (af
== AF_INET
&& net
> 32)
532 p
= pfi_buffer
+ pfi_buffer_cnt
++;
533 bzero(p
, sizeof (*p
));
537 p
->pfra_ip4addr
= ((struct sockaddr_in
*)(void *)sa
)->sin_addr
;
538 else if (af
== AF_INET6
) {
540 ((struct sockaddr_in6
*)(void *)sa
)->sin6_addr
;
541 if (IN6_IS_SCOPE_EMBED(&p
->pfra_ip6addr
))
542 p
->pfra_ip6addr
.s6_addr16
[1] = 0;
544 /* mask network address bits */
546 ((caddr_t
)p
)[p
->pfra_net
/8] &= ~(0xFF >> (p
->pfra_net%8
));
547 for (i
= (p
->pfra_net
+7)/8; i
< (int)sizeof (p
->pfra_u
); i
++)
552 pfi_dynaddr_remove(struct pf_addr_wrap
*aw
)
554 if (aw
->type
!= PF_ADDR_DYNIFTL
|| aw
->p
.dyn
== NULL
||
555 aw
->p
.dyn
->pfid_kif
== NULL
|| aw
->p
.dyn
->pfid_kt
== NULL
)
558 TAILQ_REMOVE(&aw
->p
.dyn
->pfid_kif
->pfik_dynaddrs
, aw
->p
.dyn
, entry
);
559 pfi_kif_unref(aw
->p
.dyn
->pfid_kif
, PFI_KIF_REF_RULE
);
560 aw
->p
.dyn
->pfid_kif
= NULL
;
561 pfr_detach_table(aw
->p
.dyn
->pfid_kt
);
562 aw
->p
.dyn
->pfid_kt
= NULL
;
563 pool_put(&pfi_addr_pl
, aw
->p
.dyn
);
568 pfi_dynaddr_copyout(struct pf_addr_wrap
*aw
)
570 if (aw
->type
!= PF_ADDR_DYNIFTL
|| aw
->p
.dyn
== NULL
||
571 aw
->p
.dyn
->pfid_kif
== NULL
)
573 aw
->p
.dyncnt
= aw
->p
.dyn
->pfid_acnt4
+ aw
->p
.dyn
->pfid_acnt6
;
577 pfi_kifaddr_update(void *v
)
579 struct pfi_kif
*kif
= (struct pfi_kif
*)v
;
581 lck_mtx_assert(pf_lock
, LCK_MTX_ASSERT_OWNED
);
588 pfi_if_compare(struct pfi_kif
*p
, struct pfi_kif
*q
)
590 return (strncmp(p
->pfik_name
, q
->pfik_name
, IFNAMSIZ
));
594 pfi_update_status(const char *name
, struct pf_status
*pfs
)
597 struct pfi_kif_cmp key
;
600 lck_mtx_assert(pf_lock
, LCK_MTX_ASSERT_OWNED
);
602 strlcpy(key
.pfik_name
, name
, sizeof (key
.pfik_name
));
603 p
= RB_FIND(pfi_ifhead
, &pfi_ifs
, (struct pfi_kif
*)(void *)&key
);
608 bzero(pfs
->pcounters
, sizeof (pfs
->pcounters
));
609 bzero(pfs
->bcounters
, sizeof (pfs
->bcounters
));
611 /* just clear statistics */
613 bzero(p
->pfik_packets
, sizeof (p
->pfik_packets
));
614 bzero(p
->pfik_bytes
, sizeof (p
->pfik_bytes
));
615 p
->pfik_tzero
= pf_calendar_time_second();
617 for (i
= 0; i
< 2; i
++)
618 for (j
= 0; j
< 2; j
++)
619 for (k
= 0; k
< 2; k
++) {
620 pfs
->pcounters
[i
][j
][k
] +=
621 p
->pfik_packets
[i
][j
][k
];
622 pfs
->bcounters
[i
][j
] +=
623 p
->pfik_bytes
[i
][j
][k
];
628 pfi_get_ifaces(const char *name
, user_addr_t buf
, int *size
)
630 struct pfi_kif
*p
, *nextp
;
633 lck_mtx_assert(pf_lock
, LCK_MTX_ASSERT_OWNED
);
635 for (p
= RB_MIN(pfi_ifhead
, &pfi_ifs
); p
; p
= nextp
) {
636 nextp
= RB_NEXT(pfi_ifhead
, &pfi_ifs
, p
);
637 if (pfi_skip_if(name
, p
))
643 p
->pfik_tzero
= pf_calendar_time_second();
644 pfi_kif_ref(p
, PFI_KIF_REF_RULE
);
646 /* return the user space version of pfi_kif */
647 bzero(&u
, sizeof (u
));
648 bcopy(p
->pfik_name
, &u
.pfik_name
, sizeof (u
.pfik_name
));
649 bcopy(p
->pfik_packets
, &u
.pfik_packets
,
650 sizeof (u
.pfik_packets
));
651 bcopy(p
->pfik_bytes
, &u
.pfik_bytes
,
652 sizeof (u
.pfik_bytes
));
653 u
.pfik_tzero
= p
->pfik_tzero
;
654 u
.pfik_flags
= p
->pfik_flags
;
655 u
.pfik_states
= p
->pfik_states
;
656 u
.pfik_rules
= p
->pfik_rules
;
658 if (copyout(&u
, buf
, sizeof (u
))) {
659 pfi_kif_unref(p
, PFI_KIF_REF_RULE
);
663 nextp
= RB_NEXT(pfi_ifhead
, &pfi_ifs
, p
);
664 pfi_kif_unref(p
, PFI_KIF_REF_RULE
);
672 pfi_skip_if(const char *filter
, struct pfi_kif
*p
)
676 if (filter
== NULL
|| !*filter
)
678 if (strcmp(p
->pfik_name
, filter
) == 0)
679 return (0); /* exact match */
681 if (n
< 1 || n
>= IFNAMSIZ
)
682 return (1); /* sanity check */
683 if (filter
[n
-1] >= '0' && filter
[n
-1] <= '9')
684 return (1); /* only do exact match in that case */
685 if (strncmp(p
->pfik_name
, filter
, n
))
686 return (1); /* prefix doesn't match */
687 return (p
->pfik_name
[n
] < '0' || p
->pfik_name
[n
] > '9');
691 pfi_set_flags(const char *name
, int flags
)
695 lck_mtx_assert(pf_lock
, LCK_MTX_ASSERT_OWNED
);
697 RB_FOREACH(p
, pfi_ifhead
, &pfi_ifs
) {
698 if (pfi_skip_if(name
, p
))
700 p
->pfik_flags
|= flags
;
706 pfi_clear_flags(const char *name
, int flags
)
710 lck_mtx_assert(pf_lock
, LCK_MTX_ASSERT_OWNED
);
712 RB_FOREACH(p
, pfi_ifhead
, &pfi_ifs
) {
713 if (pfi_skip_if(name
, p
))
715 p
->pfik_flags
&= ~flags
;
720 /* from pf_print_state.c */
722 pfi_unmask(void *addr
)
724 struct pf_addr
*m
= addr
;
725 int i
= 31, j
= 0, b
= 0;
728 while (j
< 4 && m
->addr32
[j
] == 0xffffffff) {
733 tmp
= ntohl(m
->addr32
[j
]);
734 for (i
= 31; tmp
& (1 << i
); --i
)