2 * Copyright (c) 2000-2017 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
10 * may not be used to create, or enable the creation or redistribution of,
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13 * terms of an Apple operating system software license agreement.
15 * Please obtain a copy of the License at
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29 /* $FreeBSD: src/sys/netinet6/icmp6.c,v 1.6.2.6 2001/07/10 09:44:16 ume Exp $ */
30 /* $KAME: icmp6.c,v 1.211 2001/04/04 05:56:20 itojun Exp $ */
33 * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
34 * All rights reserved.
36 * Redistribution and use in source and binary forms, with or without
37 * modification, are permitted provided that the following conditions
39 * 1. Redistributions of source code must retain the above copyright
40 * notice, this list of conditions and the following disclaimer.
41 * 2. Redistributions in binary form must reproduce the above copyright
42 * notice, this list of conditions and the following disclaimer in the
43 * documentation and/or other materials provided with the distribution.
44 * 3. Neither the name of the project nor the names of its contributors
45 * may be used to endorse or promote products derived from this software
46 * without specific prior written permission.
48 * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
49 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
50 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
51 * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
52 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
53 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
54 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
55 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
56 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
57 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
62 * Copyright (c) 1982, 1986, 1988, 1993
63 * The Regents of the University of California. All rights reserved.
65 * Redistribution and use in source and binary forms, with or without
66 * modification, are permitted provided that the following conditions
68 * 1. Redistributions of source code must retain the above copyright
69 * notice, this list of conditions and the following disclaimer.
70 * 2. Redistributions in binary form must reproduce the above copyright
71 * notice, this list of conditions and the following disclaimer in the
72 * documentation and/or other materials provided with the distribution.
73 * 3. All advertising materials mentioning features or use of this software
74 * must display the following acknowledgement:
75 * This product includes software developed by the University of
76 * California, Berkeley and its contributors.
77 * 4. Neither the name of the University nor the names of its contributors
78 * may be used to endorse or promote products derived from this software
79 * without specific prior written permission.
81 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
82 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
83 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
84 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
85 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
86 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
87 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
88 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
89 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
90 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
93 * @(#)ip_icmp.c 8.2 (Berkeley) 1/4/94
97 #include <sys/param.h>
98 #include <sys/systm.h>
100 #include <sys/malloc.h>
101 #include <sys/mcache.h>
102 #include <sys/mbuf.h>
103 #include <sys/protosw.h>
104 #include <sys/socket.h>
105 #include <sys/socketvar.h>
106 #include <sys/time.h>
107 #include <sys/kernel.h>
108 #include <sys/syslog.h>
109 #include <sys/domain.h>
110 #include <sys/kauth.h>
113 #include <net/route.h>
114 #include <net/if_dl.h>
115 #include <net/if_types.h>
117 #include <netinet/in.h>
118 #include <netinet/in_var.h>
119 #include <netinet/ip6.h>
120 #include <netinet6/ip6_var.h>
121 #include <netinet/icmp6.h>
122 #include <netinet6/mld6_var.h>
123 #include <netinet/in_pcb.h>
124 #include <netinet6/in6_pcb.h>
125 #include <netinet6/in6_var.h>
126 #include <netinet6/nd6.h>
127 #include <netinet6/in6_ifattach.h>
128 #include <netinet6/ip6protosw.h>
129 #include <netinet6/scope6_var.h>
132 #include <netinet6/ipsec.h>
133 #include <netkey/key.h>
136 #include <net/net_osdep.h>
139 #include <net/necp.h>
142 extern struct ip6protosw
*ip6_protox
[];
144 extern uint32_t rip_sendspace
;
145 extern uint32_t rip_recvspace
;
147 struct icmp6stat icmp6stat
;
149 extern struct inpcbhead ripcb
;
150 extern int icmp6errppslim
;
151 extern int icmp6rappslim
;
152 static int icmp6errpps_count
= 0;
153 static int icmp6rapps_count
= 0;
154 static struct timeval icmp6errppslim_last
;
155 static struct timeval icmp6rappslim_last
;
156 extern int icmp6_nodeinfo
;
157 extern struct inpcbinfo ripcbinfo
;
159 static void icmp6_errcount(struct icmp6errstat
*, int, int);
160 static int icmp6_rip6_input(struct mbuf
**, int);
161 static int icmp6_ratelimit(const struct in6_addr
*, const int, const int);
162 static const char *icmp6_redirect_diag(struct in6_addr
*,
163 struct in6_addr
*, struct in6_addr
*);
164 static struct mbuf
*ni6_input(struct mbuf
*, int);
165 static struct mbuf
*ni6_nametodns(const char *, int, int);
166 static int ni6_dnsmatch(const char *, int, const char *, int);
167 static int ni6_addrs(struct icmp6_nodeinfo
*,
168 struct ifnet
**, char *);
169 static int ni6_store_addrs(struct icmp6_nodeinfo
*, struct icmp6_nodeinfo
*,
170 struct ifnet
*, int);
171 static int icmp6_notify_error(struct mbuf
*, int, int, int);
176 icmp6_init(struct ip6protosw
*pp
, struct domain
*dp
)
179 static int icmp6_initialized
= 0;
181 /* Also called from ip6_init() without pp */
183 (pp
->pr_flags
& (PR_INITIALIZED
|PR_ATTACHED
)) == PR_ATTACHED
);
185 /* This gets called by more than one protocols, so initialize once */
186 if (!icmp6_initialized
) {
187 icmp6_initialized
= 1;
193 icmp6_errcount(struct icmp6errstat
*stat
, int type
, int code
)
196 case ICMP6_DST_UNREACH
:
198 case ICMP6_DST_UNREACH_NOROUTE
:
199 stat
->icp6errs_dst_unreach_noroute
++;
201 case ICMP6_DST_UNREACH_ADMIN
:
202 stat
->icp6errs_dst_unreach_admin
++;
204 case ICMP6_DST_UNREACH_BEYONDSCOPE
:
205 stat
->icp6errs_dst_unreach_beyondscope
++;
207 case ICMP6_DST_UNREACH_ADDR
:
208 stat
->icp6errs_dst_unreach_addr
++;
210 case ICMP6_DST_UNREACH_NOPORT
:
211 stat
->icp6errs_dst_unreach_noport
++;
215 case ICMP6_PACKET_TOO_BIG
:
216 stat
->icp6errs_packet_too_big
++;
218 case ICMP6_TIME_EXCEEDED
:
220 case ICMP6_TIME_EXCEED_TRANSIT
:
221 stat
->icp6errs_time_exceed_transit
++;
223 case ICMP6_TIME_EXCEED_REASSEMBLY
:
224 stat
->icp6errs_time_exceed_reassembly
++;
228 case ICMP6_PARAM_PROB
:
230 case ICMP6_PARAMPROB_HEADER
:
231 stat
->icp6errs_paramprob_header
++;
233 case ICMP6_PARAMPROB_NEXTHEADER
:
234 stat
->icp6errs_paramprob_nextheader
++;
236 case ICMP6_PARAMPROB_OPTION
:
237 stat
->icp6errs_paramprob_option
++;
242 stat
->icp6errs_redirect
++;
245 stat
->icp6errs_unknown
++;
249 * A wrapper function for icmp6_error() necessary when the erroneous packet
250 * may not contain enough scope zone information.
253 icmp6_error2(struct mbuf
*m
, int type
, int code
, int param
,
261 #ifndef PULLDOWN_TEST
262 IP6_EXTHDR_CHECK(m
, 0, sizeof(struct ip6_hdr
),return );
264 if (m
->m_len
< sizeof(struct ip6_hdr
)) {
265 m
= m_pullup(m
, sizeof(struct ip6_hdr
));
271 ip6
= mtod(m
, struct ip6_hdr
*);
273 if (in6_setscope(&ip6
->ip6_src
, ifp
, NULL
) != 0)
275 if (in6_setscope(&ip6
->ip6_dst
, ifp
, NULL
) != 0)
278 icmp6_error(m
, type
, code
, param
);
282 * Generate an error packet of type error in response to bad IP6 packet.
285 icmp6_error(struct mbuf
*m
, int type
, int code
, int param
) {
286 icmp6_error_flag(m
, type
, code
, param
, ICMP6_ERROR_RST_MRCVIF
);
289 void icmp6_error_flag (struct mbuf
*m
, int type
, int code
, int param
, int flags
)
291 struct ip6_hdr
*oip6
, *nip6
;
292 struct icmp6_hdr
*icmp6
;
297 icmp6stat
.icp6s_error
++;
299 /* count per-type-code statistics */
300 icmp6_errcount(&icmp6stat
.icp6s_outerrhist
, type
, code
);
302 #ifdef M_DECRYPTED /*not openbsd*/
303 if (m
->m_flags
& M_DECRYPTED
) {
304 icmp6stat
.icp6s_canterror
++;
309 #ifndef PULLDOWN_TEST
310 IP6_EXTHDR_CHECK(m
, 0, sizeof(struct ip6_hdr
), return);
312 if (m
->m_len
< sizeof(struct ip6_hdr
)) {
313 m
= m_pullup(m
, sizeof(struct ip6_hdr
));
318 oip6
= mtod(m
, struct ip6_hdr
*);
321 * If the destination address of the erroneous packet is a multicast
322 * address, or the packet was sent using link-layer multicast,
323 * we should basically suppress sending an error (RFC 2463, Section
325 * We have two exceptions (the item e.2 in that section):
326 * - the Pakcet Too Big message can be sent for path MTU discovery.
327 * - the Parameter Problem Message that can be allowed an icmp6 error
328 * in the option type field. This check has been done in
329 * ip6_unknown_opt(), so we can just check the type and code.
331 if ((m
->m_flags
& (M_BCAST
|M_MCAST
) ||
332 IN6_IS_ADDR_MULTICAST(&oip6
->ip6_dst
)) &&
333 (type
!= ICMP6_PACKET_TOO_BIG
&&
334 (type
!= ICMP6_PARAM_PROB
||
335 code
!= ICMP6_PARAMPROB_OPTION
)))
339 * RFC 2463, 2.4 (e.5): source address check.
340 * XXX: the case of anycast source?
342 if (IN6_IS_ADDR_UNSPECIFIED(&oip6
->ip6_src
) ||
343 IN6_IS_ADDR_MULTICAST(&oip6
->ip6_src
))
347 * If we are about to send ICMPv6 against ICMPv6 error/redirect,
351 off
= ip6_lasthdr(m
, 0, IPPROTO_IPV6
, &nxt
);
352 if (off
>= 0 && nxt
== IPPROTO_ICMPV6
) {
353 struct icmp6_hdr
*icp
;
355 #ifndef PULLDOWN_TEST
356 IP6_EXTHDR_CHECK(m
, 0, off
+ sizeof(struct icmp6_hdr
), return);
357 icp
= (struct icmp6_hdr
*)(mtod(m
, caddr_t
) + off
);
359 IP6_EXTHDR_GET(icp
, struct icmp6_hdr
*, m
, off
,
362 icmp6stat
.icp6s_tooshort
++;
366 if (icp
->icmp6_type
< ICMP6_ECHO_REQUEST
||
367 icp
->icmp6_type
== ND_REDIRECT
) {
370 * Special case: for redirect (which is
371 * informational) we must not send icmp6 error.
373 icmp6stat
.icp6s_canterror
++;
376 /* ICMPv6 informational - send the error */
379 /* non-ICMPv6 - send the error */
382 oip6
= mtod(m
, struct ip6_hdr
*); /* adjust pointer */
384 /* Finally, do rate limitation check. */
385 if (icmp6_ratelimit(&oip6
->ip6_src
, type
, code
)) {
386 icmp6stat
.icp6s_toofreq
++;
391 * OK, ICMP6 can be generated.
394 if (m
->m_pkthdr
.len
>= ICMPV6_PLD_MAXLEN
)
395 m_adj(m
, ICMPV6_PLD_MAXLEN
- m
->m_pkthdr
.len
);
397 preplen
= sizeof(struct ip6_hdr
) + sizeof(struct icmp6_hdr
);
398 M_PREPEND(m
, preplen
, M_DONTWAIT
, 1);
399 if (m
&& m
->m_len
< preplen
)
400 m
= m_pullup(m
, preplen
);
402 nd6log((LOG_DEBUG
, "ENOBUFS in icmp6_error %d\n", __LINE__
));
406 nip6
= mtod(m
, struct ip6_hdr
*);
407 nip6
->ip6_src
= oip6
->ip6_src
;
408 nip6
->ip6_dst
= oip6
->ip6_dst
;
410 in6_clearscope(&oip6
->ip6_src
);
411 in6_clearscope(&oip6
->ip6_dst
);
413 icmp6
= (struct icmp6_hdr
*)(nip6
+ 1);
414 icmp6
->icmp6_type
= type
;
415 icmp6
->icmp6_code
= code
;
416 icmp6
->icmp6_pptr
= htonl((u_int32_t
)param
);
419 * icmp6_reflect() is designed to be in the input path.
420 * icmp6_error() can be called from both input and output path,
421 * and if we are in output path rcvif could contain bogus value.
422 * clear m->m_pkthdr.rcvif for safety, we should have enough scope
423 * information in ip header (nip6).
425 if (flags
& ICMP6_ERROR_RST_MRCVIF
) {
426 m
->m_pkthdr
.rcvif
= NULL
;
429 icmp6stat
.icp6s_outhist
[type
]++;
430 icmp6_reflect(m
, sizeof(struct ip6_hdr
)); /* header order: IPv6 - ICMPv6 */
436 * If we can't tell whether or not we can generate ICMP6, free it.
442 * Process a received ICMP6 message.
445 icmp6_input(struct mbuf
**mp
, int *offp
, int proto
)
447 #pragma unused(proto)
448 struct mbuf
*m
= *mp
, *n
;
450 struct ip6_hdr
*ip6
, *nip6
;
451 struct icmp6_hdr
*icmp6
, *nicmp6
;
453 int icmp6len
= m
->m_pkthdr
.len
- *offp
;
454 int code
, sum
, noff
, proxy
= 0;
456 ifp
= m
->m_pkthdr
.rcvif
;
458 #ifndef PULLDOWN_TEST
459 IP6_EXTHDR_CHECK(m
, off
, sizeof(struct icmp6_hdr
), return IPPROTO_DONE
);
460 /* m might change if M_LOOP. So, call mtod after this */
463 /* Expect 32-bit aligned data pointer on strict-align platforms */
464 MBUF_STRICT_DATA_ALIGNMENT_CHECK_32(m
);
467 * Locate icmp6 structure in mbuf, and check
468 * that not corrupted and of at least minimum length
470 ip6
= mtod(m
, struct ip6_hdr
*);
471 if (icmp6len
< sizeof(struct icmp6_hdr
)) {
472 icmp6stat
.icp6s_tooshort
++;
476 #ifndef PULLDOWN_TEST
477 icmp6
= (struct icmp6_hdr
*)((caddr_t
)ip6
+ off
);
479 IP6_EXTHDR_GET(icmp6
, struct icmp6_hdr
*, m
, off
, sizeof(*icmp6
));
481 icmp6stat
.icp6s_tooshort
++;
485 code
= icmp6
->icmp6_code
;
488 * Early check for RFC 6980
489 * Drop certain NDP packets if they came in fragmented
491 switch (icmp6
->icmp6_type
) {
492 case ND_ROUTER_SOLICIT
:
493 case ND_ROUTER_ADVERT
:
494 case ND_NEIGHBOR_SOLICIT
:
495 case ND_NEIGHBOR_ADVERT
:
497 if (m
->m_pkthdr
.pkt_flags
& PKTF_REASSEMBLED
) {
498 icmp6stat
.icp6s_rfc6980_drop
++;
506 /* Apply rate limit before checksum validation. */
507 if (icmp6_ratelimit(&ip6
->ip6_dst
, icmp6
->icmp6_type
, code
)) {
508 icmp6stat
.icp6s_toofreq
++;
513 * Check multicast group membership.
514 * Note: SSM filters are not applied for ICMPv6 traffic.
516 if (IN6_IS_ADDR_MULTICAST(&ip6
->ip6_dst
)) {
517 struct in6_multi
*inm
;
519 in6_multihead_lock_shared();
520 IN6_LOOKUP_MULTI(&ip6
->ip6_dst
, ifp
, inm
);
521 in6_multihead_lock_done();
525 * Don't discard if this is a Neighbor Solicitation
526 * that needs to be proxied (see check down below.)
528 if (!(m
->m_pkthdr
.pkt_flags
& PKTF_PROXY_DST
)) {
529 ip6stat
.ip6s_notmember
++;
530 in6_ifstat_inc(m
->m_pkthdr
.rcvif
,
540 * calculate the checksum
542 if ((sum
= in6_cksum(m
, IPPROTO_ICMPV6
, off
, icmp6len
)) != 0) {
544 "ICMP6 checksum error(%d|%x) %s\n",
545 icmp6
->icmp6_type
, sum
, ip6_sprintf(&ip6
->ip6_src
)));
546 icmp6stat
.icp6s_checksum
++;
550 if (m
->m_pkthdr
.pkt_flags
& PKTF_PROXY_DST
) {
552 * This is the special case of proxying NS (dst is either
553 * solicited-node multicast or unicast); process it locally
554 * but don't deliver it to sockets. It practically lets us
555 * steer the packet to nd6_prproxy_ns_input, where more
556 * specific tests and actions will be taken.
558 switch (icmp6
->icmp6_type
) {
559 case ND_NEIGHBOR_SOLICIT
:
567 icmp6stat
.icp6s_inhist
[icmp6
->icmp6_type
]++;
568 icmp6_ifstat_inc(m
->m_pkthdr
.rcvif
, ifs6_in_msg
);
569 if (icmp6
->icmp6_type
< ICMP6_INFOMSG_MASK
)
570 icmp6_ifstat_inc(m
->m_pkthdr
.rcvif
, ifs6_in_error
);
572 switch (icmp6
->icmp6_type
) {
573 case ICMP6_DST_UNREACH
:
574 icmp6_ifstat_inc(m
->m_pkthdr
.rcvif
, ifs6_in_dstunreach
);
576 case ICMP6_DST_UNREACH_NOROUTE
:
577 case ICMP6_DST_UNREACH_ADDR
: /* PRC_HOSTDEAD is a DOS */
578 code
= PRC_UNREACH_NET
;
580 case ICMP6_DST_UNREACH_ADMIN
:
581 icmp6_ifstat_inc(m
->m_pkthdr
.rcvif
, ifs6_in_adminprohib
);
582 code
= PRC_UNREACH_PROTOCOL
; /* is this a good code? */
584 case ICMP6_DST_UNREACH_BEYONDSCOPE
:
585 /* I mean "source address was incorrect." */
586 code
= PRC_PARAMPROB
;
588 case ICMP6_DST_UNREACH_NOPORT
:
589 code
= PRC_UNREACH_PORT
;
596 case ICMP6_PACKET_TOO_BIG
:
597 icmp6_ifstat_inc(m
->m_pkthdr
.rcvif
, ifs6_in_pkttoobig
);
602 * Updating the path MTU will be done after examining
603 * intermediate extension headers.
607 case ICMP6_TIME_EXCEEDED
:
608 icmp6_ifstat_inc(m
->m_pkthdr
.rcvif
, ifs6_in_timeexceed
);
610 case ICMP6_TIME_EXCEED_TRANSIT
:
611 code
= PRC_TIMXCEED_INTRANS
;
613 case ICMP6_TIME_EXCEED_REASSEMBLY
:
614 code
= PRC_TIMXCEED_REASS
;
621 case ICMP6_PARAM_PROB
:
622 icmp6_ifstat_inc(m
->m_pkthdr
.rcvif
, ifs6_in_paramprob
);
624 case ICMP6_PARAMPROB_NEXTHEADER
:
625 code
= PRC_UNREACH_PROTOCOL
;
627 case ICMP6_PARAMPROB_HEADER
:
628 case ICMP6_PARAMPROB_OPTION
:
629 code
= PRC_PARAMPROB
;
636 case ICMP6_ECHO_REQUEST
:
637 icmp6_ifstat_inc(m
->m_pkthdr
.rcvif
, ifs6_in_echo
);
641 if ((n
= m_copy(m
, 0, M_COPYALL
)) == NULL
) {
643 goto rate_limit_checked
;
645 if ((n
->m_flags
& M_EXT
) != 0
646 || n
->m_len
< off
+ sizeof(struct icmp6_hdr
)) {
648 const int maxlen
= sizeof(*nip6
) + sizeof(*nicmp6
);
651 * Prepare an internal mbuf. m_pullup() doesn't
652 * always copy the length we specified.
654 if (maxlen
>= MCLBYTES
) {
657 goto rate_limit_checked
;
659 MGETHDR(n
, M_DONTWAIT
, n0
->m_type
); /* MAC-OK */
660 if (n
&& maxlen
>= MHLEN
) {
661 MCLGET(n
, M_DONTWAIT
);
662 if ((n
->m_flags
& M_EXT
) == 0) {
670 goto rate_limit_checked
;
672 M_COPY_PKTHDR(n
, n0
);
674 * Copy IPv6 and ICMPv6 only.
676 nip6
= mtod(n
, struct ip6_hdr
*);
677 bcopy(ip6
, nip6
, sizeof(struct ip6_hdr
));
678 nicmp6
= (struct icmp6_hdr
*)(nip6
+ 1);
679 bcopy(icmp6
, nicmp6
, sizeof(struct icmp6_hdr
));
680 noff
= sizeof(struct ip6_hdr
);
681 n
->m_pkthdr
.len
= n
->m_len
=
682 noff
+ sizeof(struct icmp6_hdr
);
684 * Adjust mbuf. ip6_plen will be adjusted in
687 m_adj(n0
, off
+ sizeof(struct icmp6_hdr
));
688 n
->m_pkthdr
.len
+= n0
->m_pkthdr
.len
;
690 n0
->m_flags
&= ~M_PKTHDR
;
692 nip6
= mtod(n
, struct ip6_hdr
*);
693 IP6_EXTHDR_GET(nicmp6
, struct icmp6_hdr
*, n
, off
,
698 panic("nicmp6 is NULL in %s, which isn't good!\n", __FUNCTION__
);
700 nicmp6
->icmp6_type
= ICMP6_ECHO_REPLY
;
701 nicmp6
->icmp6_code
= 0;
704 icmp6stat
.icp6s_reflect
++;
705 icmp6stat
.icp6s_outhist
[ICMP6_ECHO_REPLY
]++;
706 icmp6_reflect(n
, noff
);
708 goto rate_limit_checked
;
710 case ICMP6_ECHO_REPLY
:
711 icmp6_ifstat_inc(m
->m_pkthdr
.rcvif
, ifs6_in_echoreply
);
716 case MLD_LISTENER_QUERY
:
717 case MLD_LISTENER_REPORT
:
719 if (icmp6len
< sizeof(struct mld_hdr
))
721 if (icmp6
->icmp6_type
== MLD_LISTENER_QUERY
) /* XXX: ugly... */
722 icmp6_ifstat_inc(m
->m_pkthdr
.rcvif
, ifs6_in_mldquery
);
724 icmp6_ifstat_inc(m
->m_pkthdr
.rcvif
, ifs6_in_mldreport
);
726 if ((n
= m_copym(m
, 0, M_COPYALL
, M_DONTWAIT
)) == NULL
) {
728 if (mld_input(m
, off
, icmp6len
) == IPPROTO_DONE
)
732 if (mld_input(n
, off
, icmp6len
) != IPPROTO_DONE
)
735 goto rate_limit_checked
;
737 case MLD_LISTENER_DONE
:
738 icmp6_ifstat_inc(m
->m_pkthdr
.rcvif
, ifs6_in_mlddone
);
739 if (icmp6len
< sizeof(struct mld_hdr
)) /* necessary? */
741 break; /* nothing to be done in kernel */
743 case MLD_MTRACE_RESP
:
745 /* XXX: these two are experimental. not officially defined. */
746 /* XXX: per-interface statistics? */
747 break; /* just pass it to applications */
752 //### LD 10/20 Check fbsd differences here. Not sure we're more advanced or not.
753 /* By RFC 4620 refuse to answer queries from global scope addresses */
754 if ((icmp6_nodeinfo
& 8) != 8 && in6_addrscope(&ip6
->ip6_src
) == IPV6_ADDR_SCOPE_GLOBAL
)
757 if (icmp6len
< sizeof(struct icmp6_nodeinfo
))
760 #ifndef PULLDOWN_TEST
761 IP6_EXTHDR_CHECK(m
, off
, sizeof(struct icmp6_nodeinfo
),
762 return IPPROTO_DONE
);
765 n
= m_copy(m
, 0, M_COPYALL
);
767 n
= ni6_input(n
, off
);
769 noff
= sizeof(struct ip6_hdr
);
770 icmp6stat
.icp6s_reflect
++;
771 icmp6stat
.icp6s_outhist
[ICMP6_WRUREPLY
]++;
772 icmp6_reflect(n
, noff
);
774 goto rate_limit_checked
;
781 case ND_ROUTER_SOLICIT
:
782 icmp6_ifstat_inc(m
->m_pkthdr
.rcvif
, ifs6_in_routersolicit
);
785 if (icmp6len
< sizeof(struct nd_router_solicit
))
788 if ((n
= m_copym(m
, 0, M_COPYALL
, M_DONTWAIT
)) == NULL
) {
790 nd6_rs_input(m
, off
, icmp6len
);
794 nd6_rs_input(n
, off
, icmp6len
);
796 goto rate_limit_checked
;
798 case ND_ROUTER_ADVERT
:
799 icmp6_ifstat_inc(m
->m_pkthdr
.rcvif
, ifs6_in_routeradvert
);
802 if (icmp6len
< sizeof(struct nd_router_advert
))
805 if ((n
= m_copym(m
, 0, M_COPYALL
, M_DONTWAIT
)) == NULL
) {
807 nd6_ra_input(m
, off
, icmp6len
);
811 nd6_ra_input(n
, off
, icmp6len
);
813 goto rate_limit_checked
;
815 case ND_NEIGHBOR_SOLICIT
:
816 icmp6_ifstat_inc(m
->m_pkthdr
.rcvif
, ifs6_in_neighborsolicit
);
819 if (icmp6len
< sizeof(struct nd_neighbor_solicit
))
823 ((n
= m_copym(m
, 0, M_COPYALL
, M_DONTWAIT
)) == NULL
)) {
825 nd6_ns_input(m
, off
, icmp6len
);
829 nd6_ns_input(n
, off
, icmp6len
);
831 goto rate_limit_checked
;
833 case ND_NEIGHBOR_ADVERT
:
834 icmp6_ifstat_inc(m
->m_pkthdr
.rcvif
, ifs6_in_neighboradvert
);
837 if (icmp6len
< sizeof(struct nd_neighbor_advert
))
840 if ((n
= m_copym(m
, 0, M_COPYALL
, M_DONTWAIT
)) == NULL
) {
842 nd6_na_input(m
, off
, icmp6len
);
846 nd6_na_input(n
, off
, icmp6len
);
848 goto rate_limit_checked
;
851 icmp6_ifstat_inc(m
->m_pkthdr
.rcvif
, ifs6_in_redirect
);
854 if (icmp6len
< sizeof(struct nd_redirect
))
857 if ((n
= m_copym(m
, 0, M_COPYALL
, M_DONTWAIT
)) == NULL
) {
859 icmp6_redirect_input(m
, off
);
863 icmp6_redirect_input(n
, off
);
865 goto rate_limit_checked
;
867 case ICMP6_ROUTER_RENUMBERING
:
868 if (code
!= ICMP6_ROUTER_RENUMBERING_COMMAND
&&
869 code
!= ICMP6_ROUTER_RENUMBERING_RESULT
)
871 if (icmp6len
< sizeof(struct icmp6_router_renum
))
877 "icmp6_input: unknown type %d(src=%s, dst=%s, ifid=%d)\n",
878 icmp6
->icmp6_type
, ip6_sprintf(&ip6
->ip6_src
),
879 ip6_sprintf(&ip6
->ip6_dst
),
880 m
->m_pkthdr
.rcvif
? m
->m_pkthdr
.rcvif
->if_index
: 0));
881 if (icmp6
->icmp6_type
< ICMP6_ECHO_REQUEST
) {
882 /* ICMPv6 error: MUST deliver it by spec... */
886 /* ICMPv6 informational: MUST not deliver */
887 goto rate_limit_checked
;
890 if (icmp6_notify_error(m
, off
, icmp6len
, code
)) {
891 /* In this case, m should've been freed. */
892 return(IPPROTO_DONE
);
897 icmp6stat
.icp6s_badcode
++;
901 icmp6stat
.icp6s_badlen
++;
906 icmp6_rip6_input(&m
, *offp
);
915 icmp6_notify_error(struct mbuf
*m
, int off
, int icmp6len
, int code
)
917 struct icmp6_hdr
*icmp6
;
918 struct ip6_hdr
*eip6
;
920 struct sockaddr_in6 icmp6src
, icmp6dst
;
922 if (icmp6len
< sizeof(struct icmp6_hdr
) + sizeof(struct ip6_hdr
)) {
923 icmp6stat
.icp6s_tooshort
++;
926 #ifndef PULLDOWN_TEST
927 IP6_EXTHDR_CHECK(m
, off
,
928 sizeof(struct icmp6_hdr
) + sizeof(struct ip6_hdr
),
930 icmp6
= (struct icmp6_hdr
*)(mtod(m
, caddr_t
) + off
);
932 IP6_EXTHDR_GET(icmp6
, struct icmp6_hdr
*, m
, off
,
933 sizeof(*icmp6
) + sizeof(struct ip6_hdr
));
935 icmp6stat
.icp6s_tooshort
++;
939 eip6
= (struct ip6_hdr
*)(icmp6
+ 1);
941 /* Detect the upper level protocol */
943 void (*ctlfunc
)(int, struct sockaddr
*, void *, struct ifnet
*);
944 u_int8_t nxt
= eip6
->ip6_nxt
;
945 int eoff
= off
+ sizeof(struct icmp6_hdr
) +
946 sizeof(struct ip6_hdr
);
947 struct ip6ctlparam ip6cp
;
948 struct in6_addr
*finaldst
= NULL
;
949 int icmp6type
= icmp6
->icmp6_type
;
951 struct ip6_rthdr
*rth
;
952 struct ip6_rthdr0
*rth0
;
955 while (1) { /* XXX: should avoid infinite loop explicitly? */
959 case IPPROTO_HOPOPTS
:
960 case IPPROTO_DSTOPTS
:
962 #ifndef PULLDOWN_TEST
963 IP6_EXTHDR_CHECK(m
, 0, eoff
+
964 sizeof(struct ip6_ext
),
966 eh
= (struct ip6_ext
*)(mtod(m
, caddr_t
)
969 IP6_EXTHDR_GET(eh
, struct ip6_ext
*, m
,
972 icmp6stat
.icp6s_tooshort
++;
977 if (nxt
== IPPROTO_AH
)
978 eoff
+= (eh
->ip6e_len
+ 2) << 2;
980 eoff
+= (eh
->ip6e_len
+ 1) << 3;
983 case IPPROTO_ROUTING
:
985 * When the erroneous packet contains a
986 * routing header, we should examine the
987 * header to determine the final destination.
988 * Otherwise, we can't properly update
989 * information that depends on the final
990 * destination (e.g. path MTU).
992 #ifndef PULLDOWN_TEST
993 IP6_EXTHDR_CHECK(m
, 0, eoff
+ sizeof(*rth
),
995 rth
= (struct ip6_rthdr
*)(mtod(m
, caddr_t
)
998 IP6_EXTHDR_GET(rth
, struct ip6_rthdr
*, m
,
1001 icmp6stat
.icp6s_tooshort
++;
1005 rthlen
= (rth
->ip6r_len
+ 1) << 3;
1007 * XXX: currently there is no
1008 * officially defined type other
1010 * Note that if the segment left field
1011 * is 0, all intermediate hops must
1014 if (rth
->ip6r_segleft
&&
1015 rth
->ip6r_type
== IPV6_RTHDR_TYPE_0
) {
1018 #ifndef PULLDOWN_TEST
1019 IP6_EXTHDR_CHECK(m
, 0, eoff
+ rthlen
,
1021 rth0
= (struct ip6_rthdr0
*)(mtod(m
, caddr_t
) + eoff
);
1023 IP6_EXTHDR_GET(rth0
,
1024 struct ip6_rthdr0
*, m
,
1027 icmp6stat
.icp6s_tooshort
++;
1031 /* just ignore a bogus header */
1032 if ((rth0
->ip6r0_len
% 2) == 0 &&
1033 (hops
= rth0
->ip6r0_len
/2))
1034 finaldst
= (struct in6_addr
*)(void *)(rth0
+ 1) + (hops
- 1);
1037 nxt
= rth
->ip6r_nxt
;
1039 case IPPROTO_FRAGMENT
:
1040 #ifndef PULLDOWN_TEST
1041 IP6_EXTHDR_CHECK(m
, 0, eoff
+
1042 sizeof(struct ip6_frag
),
1044 fh
= (struct ip6_frag
*)(mtod(m
, caddr_t
)
1047 IP6_EXTHDR_GET(fh
, struct ip6_frag
*, m
,
1050 icmp6stat
.icp6s_tooshort
++;
1055 * Data after a fragment header is meaningless
1056 * unless it is the first fragment, but
1057 * we'll go to the notify label for path MTU
1060 if (fh
->ip6f_offlg
& IP6F_OFF_MASK
)
1063 eoff
+= sizeof(struct ip6_frag
);
1068 * This case includes ESP and the No Next
1069 * Header. In such cases going to the notify
1070 * label does not have any meaning
1071 * (i.e. ctlfunc will be NULL), but we go
1072 * anyway since we might have to update
1073 * path MTU information.
1079 #ifndef PULLDOWN_TEST
1080 icmp6
= (struct icmp6_hdr
*)(mtod(m
, caddr_t
) + off
);
1082 IP6_EXTHDR_GET(icmp6
, struct icmp6_hdr
*, m
, off
,
1083 sizeof(*icmp6
) + sizeof(struct ip6_hdr
));
1084 if (icmp6
== NULL
) {
1085 icmp6stat
.icp6s_tooshort
++;
1091 * retrieve parameters from the inner IPv6 header, and convert
1092 * them into sockaddr structures.
1093 * XXX: there is no guarantee that the source or destination
1094 * addresses of the inner packet are in the same scope as
1095 * the addresses of the icmp packet. But there is no other
1096 * way to determine the zone.
1098 eip6
= (struct ip6_hdr
*)(icmp6
+ 1);
1100 bzero(&icmp6dst
, sizeof(icmp6dst
));
1101 icmp6dst
.sin6_len
= sizeof(struct sockaddr_in6
);
1102 icmp6dst
.sin6_family
= AF_INET6
;
1103 if (finaldst
== NULL
)
1104 icmp6dst
.sin6_addr
= eip6
->ip6_dst
;
1106 icmp6dst
.sin6_addr
= *finaldst
;
1107 if (in6_setscope(&icmp6dst
.sin6_addr
, m
->m_pkthdr
.rcvif
, NULL
))
1109 bzero(&icmp6src
, sizeof(icmp6src
));
1110 icmp6src
.sin6_len
= sizeof(struct sockaddr_in6
);
1111 icmp6src
.sin6_family
= AF_INET6
;
1112 icmp6src
.sin6_addr
= eip6
->ip6_src
;
1113 if (in6_setscope(&icmp6src
.sin6_addr
, m
->m_pkthdr
.rcvif
, NULL
))
1115 icmp6src
.sin6_flowinfo
=
1116 (eip6
->ip6_flow
& IPV6_FLOWLABEL_MASK
);
1118 if (finaldst
== NULL
)
1119 finaldst
= &eip6
->ip6_dst
;
1121 ip6cp
.ip6c_icmp6
= icmp6
;
1122 ip6cp
.ip6c_ip6
= (struct ip6_hdr
*)(icmp6
+ 1);
1123 ip6cp
.ip6c_off
= eoff
;
1124 ip6cp
.ip6c_finaldst
= finaldst
;
1125 ip6cp
.ip6c_src
= &icmp6src
;
1126 ip6cp
.ip6c_nxt
= nxt
;
1128 if (icmp6type
== ICMP6_PACKET_TOO_BIG
) {
1129 notifymtu
= ntohl(icmp6
->icmp6_mtu
);
1130 ip6cp
.ip6c_cmdarg
= (void *)¬ifymtu
;
1131 icmp6_mtudisc_update(&ip6cp
, 1); /*XXX*/
1134 ctlfunc
= ip6_protox
[nxt
]->pr_ctlinput
;
1136 LCK_MTX_ASSERT(inet6_domain_mutex
, LCK_MTX_ASSERT_OWNED
);
1138 lck_mtx_unlock(inet6_domain_mutex
);
1140 (void) (*ctlfunc
)(code
, (struct sockaddr
*)&icmp6dst
,
1141 &ip6cp
, m
->m_pkthdr
.rcvif
);
1143 lck_mtx_lock(inet6_domain_mutex
);
1154 icmp6_mtudisc_update(struct ip6ctlparam
*ip6cp
, int validated
)
1156 struct in6_addr
*dst
= ip6cp
->ip6c_finaldst
;
1157 struct icmp6_hdr
*icmp6
= ip6cp
->ip6c_icmp6
;
1158 struct mbuf
*m
= ip6cp
->ip6c_m
; /* will be necessary for scope issue */
1159 u_int mtu
= ntohl(icmp6
->icmp6_mtu
);
1160 struct rtentry
*rt
= NULL
;
1161 struct sockaddr_in6 sin6
;
1163 * we reject ICMPv6 too big with abnormally small value.
1164 * XXX what is the good definition of "abnormally small"?
1166 if (mtu
< sizeof(struct ip6_hdr
) + sizeof(struct ip6_frag
) + 8)
1173 * In case the suggested mtu is less than IPV6_MMTU, we
1174 * only need to remember that it was for above mentioned
1175 * "alwaysfrag" case.
1176 * Try to be as close to the spec as possible.
1178 if (mtu
< IPV6_MMTU
)
1179 mtu
= IPV6_MMTU
- 8;
1181 bzero(&sin6
, sizeof(sin6
));
1182 sin6
.sin6_family
= PF_INET6
;
1183 sin6
.sin6_len
= sizeof(struct sockaddr_in6
);
1184 sin6
.sin6_addr
= *dst
;
1185 /* XXX normally, this won't happen */
1186 if (IN6_IS_ADDR_LINKLOCAL(dst
)) {
1187 sin6
.sin6_addr
.s6_addr16
[1] =
1188 htons(m
->m_pkthdr
.rcvif
->if_index
);
1190 /* sin6.sin6_scope_id = XXX: should be set if DST is a scoped addr */
1192 * XXX On a side note, for asymmetric data-path
1193 * the lookup on receive interace is probably not
1194 * what we want to do.
1195 * That requires looking at the cached route for the
1196 * protocol control block.
1198 rt
= rtalloc1_scoped((struct sockaddr
*)&sin6
, 0,
1199 RTF_CLONING
| RTF_PRCLONING
, m
->m_pkthdr
.rcvif
->if_index
);
1202 if ((rt
->rt_flags
& RTF_HOST
) &&
1203 !(rt
->rt_rmx
.rmx_locks
& RTV_MTU
) &&
1204 mtu
< IN6_LINKMTU(rt
->rt_ifp
) &&
1205 rt
->rt_rmx
.rmx_mtu
> mtu
) {
1206 icmp6stat
.icp6s_pmtuchg
++;
1207 rt
->rt_rmx
.rmx_mtu
= mtu
;
1215 * Process a Node Information Query packet, based on
1216 * draft-ietf-ipngwg-icmp-name-lookups-07.
1218 * Spec incompatibilities:
1219 * - IPv6 Subject address handling
1220 * - IPv4 Subject address handling support missing
1221 * - Proxy reply (answer even if it's not for me)
1222 * - joins NI group address at in6_ifattach() time only, does not cope
1223 * with hostname changes by sethostname(3)
1225 #define hostnamelen strlen(hostname)
1226 static struct mbuf
*
1227 ni6_input(struct mbuf
*m
, int off
)
1229 struct icmp6_nodeinfo
*ni6
, *nni6
;
1230 struct mbuf
*n
= NULL
;
1233 int replylen
= sizeof(struct ip6_hdr
) + sizeof(struct icmp6_nodeinfo
);
1234 struct ni_reply_fqdn
*fqdn
;
1235 int addrs
; /* for NI_QTYPE_NODEADDR */
1236 struct ifnet
*ifp
= NULL
; /* for NI_QTYPE_NODEADDR */
1237 struct sockaddr_in6 sin6
; /* double meaning; ip6_dst and subjectaddr */
1238 struct sockaddr_in6 sin6_d
; /* XXX: we should retrieve this from m_aux */
1239 struct ip6_hdr
*ip6
;
1240 int oldfqdn
= 0; /* if 1, return pascal string (03 draft) */
1243 ip6
= mtod(m
, struct ip6_hdr
*);
1244 #ifndef PULLDOWN_TEST
1245 ni6
= (struct icmp6_nodeinfo
*)(mtod(m
, caddr_t
) + off
);
1247 IP6_EXTHDR_GET(ni6
, struct icmp6_nodeinfo
*, m
, off
, sizeof(*ni6
));
1249 /* m is already reclaimed */
1255 * Validate IPv6 source address.
1256 * The default configuration MUST be to refuse answering queries from
1257 * global-scope addresses according to RFC4602.
1259 * - it's not very clear what "refuse" means; this implementation
1261 * - it's not very easy to identify global-scope (unicast) addresses
1262 * since there are many prefixes for them. It should be safer
1263 * and in practice sufficient to check "all" but loopback and
1264 * link-local (note that site-local unicast was deprecated and
1265 * ULA is defined as global scope-wise)
1267 if ((icmp6_nodeinfo
& ICMP6_NODEINFO_GLOBALOK
) == 0 &&
1268 !IN6_IS_ADDR_LOOPBACK(&ip6
->ip6_src
) &&
1269 !IN6_IS_ADDR_LINKLOCAL(&ip6
->ip6_src
))
1273 * Validate IPv6 destination address.
1275 * The Responder must discard the Query without further processing
1276 * unless it is one of the Responder's unicast or anycast addresses, or
1277 * a link-local scope multicast address which the Responder has joined.
1278 * [RFC4602, Section 5.]
1280 if (IN6_IS_ADDR_MULTICAST(&ip6
->ip6_dst
)) {
1281 if (!IN6_IS_ADDR_MC_LINKLOCAL(&ip6
->ip6_dst
))
1283 /* else it's a link-local multicast, fine */
1284 } else { /* unicast or anycast */
1287 if (ip6_getdstifaddr_info(m
, NULL
, &ia6_flags
) != 0)
1288 goto bad
; /* XXX impossible */
1290 if ((ia6_flags
& IN6_IFF_TEMPORARY
) &&
1291 !(icmp6_nodeinfo
& ICMP6_NODEINFO_TMPADDROK
)) {
1292 nd6log((LOG_DEBUG
, "ni6_input: ignore node info to "
1293 "a temporary address in %s:%d",
1294 __func__
, __LINE__
));
1299 /* validate query Subject field. */
1300 qtype
= ntohs(ni6
->ni_qtype
);
1301 subjlen
= m
->m_pkthdr
.len
- off
- sizeof(struct icmp6_nodeinfo
);
1304 case NI_QTYPE_SUPTYPES
:
1306 if (ni6
->ni_code
== ICMP6_NI_SUBJ_FQDN
&& subjlen
== 0)
1310 case NI_QTYPE_NODEADDR
:
1311 case NI_QTYPE_IPV4ADDR
:
1312 switch (ni6
->ni_code
) {
1313 case ICMP6_NI_SUBJ_IPV6
:
1314 #if ICMP6_NI_SUBJ_IPV6 != 0
1318 * backward compatibility - try to accept 03 draft
1319 * format, where no Subject is present.
1321 if (qtype
== NI_QTYPE_FQDN
&& ni6
->ni_code
== 0 &&
1326 #if ICMP6_NI_SUBJ_IPV6 != 0
1327 if (ni6
->ni_code
!= ICMP6_NI_SUBJ_IPV6
)
1331 if (subjlen
!= sizeof(struct in6_addr
))
1335 * Validate Subject address.
1337 * Not sure what exactly "address belongs to the node"
1338 * means in the spec, is it just unicast, or what?
1340 * At this moment we consider Subject address as
1341 * "belong to the node" if the Subject address equals
1342 * to the IPv6 destination address; validation for
1343 * IPv6 destination address should have done enough
1346 * We do not do proxy at this moment.
1348 /* m_pulldown instead of copy? */
1349 m_copydata(m
, off
+ sizeof(struct icmp6_nodeinfo
),
1350 subjlen
, (caddr_t
)&sin6
.sin6_addr
);
1351 sin6
.sin6_scope_id
= in6_addr2scopeid(m
->m_pkthdr
.rcvif
,
1353 in6_embedscope(&sin6
.sin6_addr
, &sin6
, NULL
, NULL
,
1355 bzero(&sin6_d
, sizeof(sin6_d
));
1356 sin6_d
.sin6_family
= AF_INET6
; /* not used, actually */
1357 sin6_d
.sin6_len
= sizeof(sin6_d
); /* ditto */
1358 sin6_d
.sin6_addr
= ip6
->ip6_dst
;
1359 sin6_d
.sin6_scope_id
= in6_addr2scopeid(m
->m_pkthdr
.rcvif
,
1361 in6_embedscope(&sin6_d
.sin6_addr
, &sin6_d
, NULL
, NULL
,
1363 subj
= (char *)&sin6
;
1364 if (SA6_ARE_ADDR_EQUAL(&sin6
, &sin6_d
))
1368 * XXX if we are to allow other cases, we should really
1369 * be careful about scope here.
1370 * basically, we should disallow queries toward IPv6
1371 * destination X with subject Y,
1372 * if scope(X) > scope(Y).
1373 * if we allow scope(X) > scope(Y), it will result in
1374 * information leakage across scope boundary.
1378 case ICMP6_NI_SUBJ_FQDN
:
1380 * Validate Subject name with gethostname(3).
1382 * The behavior may need some debate, since:
1383 * - we are not sure if the node has FQDN as
1384 * hostname (returned by gethostname(3)).
1385 * - the code does wildcard match for truncated names.
1386 * however, we are not sure if we want to perform
1387 * wildcard match, if gethostname(3) side has
1388 * truncated hostname.
1390 n
= ni6_nametodns(hostname
, hostnamelen
, 0);
1391 if (!n
|| n
->m_next
|| n
->m_len
== 0)
1393 IP6_EXTHDR_GET(subj
, char *, m
,
1394 off
+ sizeof(struct icmp6_nodeinfo
), subjlen
);
1397 if (!ni6_dnsmatch(subj
, subjlen
, mtod(n
, const char *),
1405 case ICMP6_NI_SUBJ_IPV4
: /* XXX: to be implemented? */
1412 /* refuse based on configuration. XXX ICMP6_NI_REFUSED? */
1415 if ((icmp6_nodeinfo
& ICMP6_NODEINFO_FQDNOK
) == 0)
1418 case NI_QTYPE_NODEADDR
:
1419 case NI_QTYPE_IPV4ADDR
:
1420 if ((icmp6_nodeinfo
& ICMP6_NODEINFO_NODEADDROK
) == 0)
1425 /* guess reply length */
1428 break; /* no reply data */
1429 case NI_QTYPE_SUPTYPES
:
1430 replylen
+= sizeof(u_int32_t
);
1433 /* XXX will append an mbuf */
1434 replylen
+= offsetof(struct ni_reply_fqdn
, ni_fqdn_namelen
);
1436 case NI_QTYPE_NODEADDR
:
1437 addrs
= ni6_addrs(ni6
, &ifp
, subj
);
1438 if ((replylen
+= addrs
* (sizeof(struct in6_addr
) +
1439 sizeof(u_int32_t
))) > MCLBYTES
)
1440 replylen
= MCLBYTES
; /* XXX: will truncate pkt later */
1442 case NI_QTYPE_IPV4ADDR
:
1443 /* unsupported - should respond with unknown Qtype? */
1447 * XXX: We must return a reply with the ICMP6 code
1448 * `unknown Qtype' in this case. However we regard the case
1449 * as an FQDN query for backward compatibility.
1450 * Older versions set a random value to this field,
1451 * so it rarely varies in the defined qtypes.
1452 * But the mechanism is not reliable...
1453 * maybe we should obsolete older versions.
1455 qtype
= NI_QTYPE_FQDN
;
1456 /* XXX will append an mbuf */
1457 replylen
+= offsetof(struct ni_reply_fqdn
, ni_fqdn_namelen
);
1462 /* allocate an mbuf to reply. */
1463 MGETHDR(n
, M_DONTWAIT
, m
->m_type
); /* MAC-OK */
1470 M_COPY_PKTHDR(n
, m
); /* just for recvif */
1471 if (replylen
> MHLEN
) {
1472 if (replylen
> MCLBYTES
) {
1474 * XXX: should we try to allocate more? But MCLBYTES
1475 * is probably much larger than IPV6_MMTU...
1479 MCLGET(n
, M_DONTWAIT
);
1480 if ((n
->m_flags
& M_EXT
) == 0) {
1484 n
->m_pkthdr
.len
= n
->m_len
= replylen
;
1486 /* copy mbuf header and IPv6 + Node Information base headers */
1487 bcopy(mtod(m
, caddr_t
), mtod(n
, caddr_t
), sizeof(struct ip6_hdr
));
1488 nni6
= (struct icmp6_nodeinfo
*)(mtod(n
, struct ip6_hdr
*) + 1);
1489 bcopy((caddr_t
)ni6
, (caddr_t
)nni6
, sizeof(struct icmp6_nodeinfo
));
1491 /* qtype dependent procedure */
1494 nni6
->ni_code
= ICMP6_NI_SUCCESS
;
1497 case NI_QTYPE_SUPTYPES
:
1500 nni6
->ni_code
= ICMP6_NI_SUCCESS
;
1501 nni6
->ni_flags
= htons(0x0000); /* raw bitmap */
1502 /* supports NOOP, SUPTYPES, FQDN, and NODEADDR */
1503 v
= (u_int32_t
)htonl(0x0000000f);
1504 bcopy(&v
, nni6
+ 1, sizeof(u_int32_t
));
1508 nni6
->ni_code
= ICMP6_NI_SUCCESS
;
1509 fqdn
= (struct ni_reply_fqdn
*)(mtod(n
, caddr_t
) +
1510 sizeof(struct ip6_hdr
) +
1511 sizeof(struct icmp6_nodeinfo
));
1512 nni6
->ni_flags
= 0; /* XXX: meaningless TTL */
1513 fqdn
->ni_fqdn_ttl
= 0; /* ditto. */
1515 * XXX do we really have FQDN in variable "hostname"?
1517 n
->m_next
= ni6_nametodns(hostname
, hostnamelen
, oldfqdn
);
1518 if (n
->m_next
== NULL
)
1520 /* XXX we assume that n->m_next is not a chain */
1521 if (n
->m_next
->m_next
!= NULL
)
1523 n
->m_pkthdr
.len
+= n
->m_next
->m_len
;
1525 case NI_QTYPE_NODEADDR
:
1529 nni6
->ni_code
= ICMP6_NI_SUCCESS
;
1530 n
->m_pkthdr
.len
= n
->m_len
=
1531 sizeof(struct ip6_hdr
) + sizeof(struct icmp6_nodeinfo
);
1532 lenlim
= M_TRAILINGSPACE(n
);
1533 copied
= ni6_store_addrs(ni6
, nni6
, ifp
, lenlim
);
1534 /* XXX: reset mbuf length */
1535 n
->m_pkthdr
.len
= n
->m_len
= sizeof(struct ip6_hdr
) +
1536 sizeof(struct icmp6_nodeinfo
) + copied
;
1540 break; /* XXX impossible! */
1543 nni6
->ni_type
= ICMP6_NI_REPLY
;
1560 * make a mbuf with DNS-encoded string. no compression support.
1562 * XXX names with less than 2 dots (like "foo" or "foo.section") will be
1563 * treated as truncated name (two \0 at the end). this is a wild guess.
1565 static struct mbuf
*
1569 int old
) /* return pascal string if non-zero */
1581 /* because MAXHOSTNAMELEN is usually 256, we use cluster mbuf */
1582 MGET(m
, M_DONTWAIT
, MT_DATA
);
1583 if (m
&& len
> MLEN
) {
1584 MCLGET(m
, M_DONTWAIT
);
1585 if ((m
->m_flags
& M_EXT
) == 0)
1594 *mtod(m
, char *) = namelen
;
1595 bcopy(name
, mtod(m
, char *) + 1, namelen
);
1599 cp
= mtod(m
, char *);
1600 ep
= mtod(m
, char *) + M_TRAILINGSPACE(m
);
1602 /* if not certain about my name, return empty buffer */
1607 * guess if it looks like shortened hostname, or FQDN.
1608 * shortened hostname needs two trailing "\0".
1611 for (p
= name
; p
< name
+ namelen
; p
++) {
1612 if (*p
&& *p
== '.')
1621 while (cp
< ep
&& p
< name
+ namelen
) {
1623 for (q
= p
; q
< name
+ namelen
&& *q
&& *q
!= '.'; q
++)
1625 /* result does not fit into mbuf */
1626 if (cp
+ i
+ 1 >= ep
)
1629 * DNS label length restriction, RFC1035 page 8.
1630 * "i == 0" case is included here to avoid returning
1631 * 0-length label on "foo..bar".
1633 if (i
<= 0 || i
>= 64)
1639 if (p
< name
+ namelen
&& *p
== '.')
1643 if (cp
+ nterm
>= ep
)
1647 m
->m_len
= cp
- mtod(m
, char *);
1651 panic("should not reach here");
1661 * check if two DNS-encoded string matches. takes care of truncated
1662 * form (with \0\0 at the end). no compression support.
1663 * XXX upper/lowercase match (see RFC2065)
1666 ni6_dnsmatch(const char *a
, int alen
, const char *b
, int blen
)
1668 const char *a0
, *b0
;
1671 /* simplest case - need validation? */
1672 if (alen
== blen
&& bcmp(a
, b
, alen
) == 0)
1678 /* termination is mandatory */
1679 if (alen
< 2 || blen
< 2)
1681 if (a0
[alen
- 1] != '\0' || b0
[blen
- 1] != '\0')
1686 while (a
- a0
< alen
&& b
- b0
< blen
) {
1687 if (a
- a0
+ 1 > alen
|| b
- b0
+ 1 > blen
)
1690 if ((signed char)a
[0] < 0 || (signed char)b
[0] < 0)
1692 /* we don't support compression yet */
1693 if (a
[0] >= 64 || b
[0] >= 64)
1696 /* truncated case */
1697 if (a
[0] == 0 && a
- a0
== alen
- 1)
1699 if (b
[0] == 0 && b
- b0
== blen
- 1)
1701 if (a
[0] == 0 || b
[0] == 0)
1707 if (a
- a0
+ 1 + l
> alen
|| b
- b0
+ 1 + l
> blen
)
1709 if (bcmp(a
+ 1, b
+ 1, l
) != 0)
1716 if (a
- a0
== alen
&& b
- b0
== blen
)
1723 * calculate the number of addresses to be returned in the node info reply.
1726 ni6_addrs(struct icmp6_nodeinfo
*ni6
, struct ifnet
**ifpp
, char *subj
)
1729 struct in6_ifaddr
*ifa6
;
1731 struct sockaddr_in6
*subj_ip6
= NULL
; /* XXX pedant */
1732 int addrs
= 0, addrsofif
, iffound
= 0;
1733 int niflags
= ni6
->ni_flags
;
1738 if ((niflags
& NI_NODEADDR_FLAG_ALL
) == 0) {
1739 switch (ni6
->ni_code
) {
1740 case ICMP6_NI_SUBJ_IPV6
:
1741 if (subj
== NULL
) /* must be impossible... */
1743 subj_ip6
= (struct sockaddr_in6
*)(void *)subj
;
1747 * XXX: we only support IPv6 subject address for
1754 ifnet_head_lock_shared();
1755 TAILQ_FOREACH(ifp
, &ifnet_head
, if_list
) {
1757 ifnet_lock_shared(ifp
);
1758 TAILQ_FOREACH(ifa
, &ifp
->if_addrlist
, ifa_list
)
1761 if (ifa
->ifa_addr
->sa_family
!= AF_INET6
) {
1765 ifa6
= (struct in6_ifaddr
*)ifa
;
1767 if ((niflags
& NI_NODEADDR_FLAG_ALL
) == 0 &&
1768 IN6_ARE_ADDR_EQUAL(&subj_ip6
->sin6_addr
,
1769 &ifa6
->ia_addr
.sin6_addr
))
1773 * IPv4-mapped addresses can only be returned by a
1774 * Node Information proxy, since they represent
1775 * addresses of IPv4-only nodes, which perforce do
1776 * not implement this protocol.
1777 * [icmp-name-lookups-07, Section 5.4]
1778 * So we don't support NI_NODEADDR_FLAG_COMPAT in
1779 * this function at this moment.
1782 /* What do we have to do about ::1? */
1783 switch (in6_addrscope(&ifa6
->ia_addr
.sin6_addr
)) {
1784 case IPV6_ADDR_SCOPE_LINKLOCAL
:
1785 if ((niflags
& NI_NODEADDR_FLAG_LINKLOCAL
) == 0) {
1790 case IPV6_ADDR_SCOPE_SITELOCAL
:
1791 if ((niflags
& NI_NODEADDR_FLAG_SITELOCAL
) == 0) {
1796 case IPV6_ADDR_SCOPE_GLOBAL
:
1797 if ((niflags
& NI_NODEADDR_FLAG_GLOBAL
) == 0) {
1808 * check if anycast is okay.
1809 * XXX: just experimental. not in the spec.
1811 if ((ifa6
->ia6_flags
& IN6_IFF_ANYCAST
) != 0 &&
1812 (niflags
& NI_NODEADDR_FLAG_ANYCAST
) == 0) {
1814 continue; /* we need only unicast addresses */
1816 if ((ifa6
->ia6_flags
& IN6_IFF_TEMPORARY
) != 0 &&
1817 (icmp6_nodeinfo
& ICMP6_NODEINFO_TMPADDROK
) == 0) {
1821 addrsofif
++; /* count the address */
1824 ifnet_lock_done(ifp
);
1828 ifnet_reference(ifp
);
1842 ni6_store_addrs(struct icmp6_nodeinfo
*ni6
, struct icmp6_nodeinfo
*nni6
,
1843 struct ifnet
*ifp0
, int resid
)
1845 struct ifnet
*ifp
= ifp0
;
1846 struct in6_ifaddr
*ifa6
;
1848 struct ifnet
*ifp_dep
= NULL
;
1849 int copied
= 0, allow_deprecated
= 0;
1850 u_char
*cp
= (u_char
*)(nni6
+ 1);
1851 int niflags
= ni6
->ni_flags
;
1853 uint64_t now
= net_uptime();
1855 if (ifp0
== NULL
&& !(niflags
& NI_NODEADDR_FLAG_ALL
))
1856 return (0); /* needless to copy */
1860 ifnet_head_lock_shared();
1862 ifp
= TAILQ_FIRST(&ifnet_head
);
1864 for (; ifp
; ifp
= TAILQ_NEXT(ifp
, if_list
)) {
1865 ifnet_lock_shared(ifp
);
1866 for (ifa
= ifp
->if_addrlist
.tqh_first
; ifa
;
1867 ifa
= ifa
->ifa_list
.tqe_next
) {
1868 struct in6_addrlifetime_i
*lt
;
1871 if (ifa
->ifa_addr
->sa_family
!= AF_INET6
) {
1875 ifa6
= (struct in6_ifaddr
*)ifa
;
1877 if ((ifa6
->ia6_flags
& IN6_IFF_DEPRECATED
) != 0 &&
1878 allow_deprecated
== 0) {
1880 * prefererred address should be put before
1881 * deprecated addresses.
1884 /* record the interface for later search */
1885 if (ifp_dep
== NULL
)
1890 } else if ((ifa6
->ia6_flags
& IN6_IFF_DEPRECATED
) == 0 &&
1891 allow_deprecated
!= 0) {
1893 continue; /* we now collect deprecated addrs */
1895 /* What do we have to do about ::1? */
1896 switch (in6_addrscope(&ifa6
->ia_addr
.sin6_addr
)) {
1897 case IPV6_ADDR_SCOPE_LINKLOCAL
:
1898 if ((niflags
& NI_NODEADDR_FLAG_LINKLOCAL
) == 0) {
1903 case IPV6_ADDR_SCOPE_SITELOCAL
:
1904 if ((niflags
& NI_NODEADDR_FLAG_SITELOCAL
) == 0) {
1909 case IPV6_ADDR_SCOPE_GLOBAL
:
1910 if ((niflags
& NI_NODEADDR_FLAG_GLOBAL
) == 0) {
1921 * check if anycast is okay.
1922 * XXX: just experimental. not in the spec.
1924 if ((ifa6
->ia6_flags
& IN6_IFF_ANYCAST
) != 0 &&
1925 (niflags
& NI_NODEADDR_FLAG_ANYCAST
) == 0) {
1929 if ((ifa6
->ia6_flags
& IN6_IFF_TEMPORARY
) != 0 &&
1930 (icmp6_nodeinfo
& ICMP6_NODEINFO_TMPADDROK
) == 0) {
1935 /* now we can copy the address */
1936 if (resid
< sizeof(struct in6_addr
) +
1937 sizeof(u_int32_t
)) {
1940 * We give up much more copy.
1941 * Set the truncate flag and return.
1944 NI_NODEADDR_FLAG_TRUNCATE
;
1945 ifnet_lock_done(ifp
);
1951 * Set the TTL of the address.
1952 * The TTL value should be one of the following
1953 * according to the specification:
1955 * 1. The remaining lifetime of a DHCP lease on the
1957 * 2. The remaining Valid Lifetime of a prefix from
1958 * which the address was derived through Stateless
1959 * Autoconfiguration.
1961 * Note that we currently do not support stateful
1962 * address configuration by DHCPv6, so the former
1963 * case can't happen.
1965 lt
= &ifa6
->ia6_lifetime
;
1966 if (lt
->ia6ti_expire
== 0) {
1967 ltime
= ND6_INFINITE_LIFETIME
;
1969 if (lt
->ia6ti_expire
> now
)
1970 ltime
= htonl(lt
->ia6ti_expire
- now
);
1975 bcopy(<ime
, cp
, sizeof(u_int32_t
));
1976 cp
+= sizeof(u_int32_t
);
1978 /* copy the address itself */
1979 bcopy(&ifa6
->ia_addr
.sin6_addr
, cp
,
1980 sizeof(struct in6_addr
));
1981 /* XXX: KAME link-local hack; remove ifindex */
1982 if (IN6_IS_ADDR_LINKLOCAL(&ifa6
->ia_addr
.sin6_addr
))
1983 ((struct in6_addr
*)(void *)cp
)->s6_addr16
[1] = 0;
1984 cp
+= sizeof(struct in6_addr
);
1986 resid
-= (sizeof(struct in6_addr
) + sizeof(u_int32_t
));
1987 copied
+= (sizeof(struct in6_addr
) +
1991 ifnet_lock_done(ifp
);
1992 if (ifp0
) /* we need search only on the specified IF */
1997 if (allow_deprecated
== 0 && ifp_dep
!= NULL
) {
1999 allow_deprecated
= 1;
2008 * XXX almost dup'ed code with rip6_input.
2011 icmp6_rip6_input(struct mbuf
**mp
, int off
)
2013 struct mbuf
*m
= *mp
;
2014 struct ip6_hdr
*ip6
= mtod(m
, struct ip6_hdr
*);
2015 struct in6pcb
*in6p
;
2016 struct in6pcb
*last
= NULL
;
2017 struct sockaddr_in6 rip6src
;
2018 struct icmp6_hdr
*icmp6
;
2019 struct mbuf
*opts
= NULL
;
2021 struct ifnet
*ifp
= m
->m_pkthdr
.rcvif
;
2023 #ifndef PULLDOWN_TEST
2024 /* this is assumed to be safe. */
2025 icmp6
= (struct icmp6_hdr
*)((caddr_t
)ip6
+ off
);
2027 IP6_EXTHDR_GET(icmp6
, struct icmp6_hdr
*, m
, off
, sizeof(*icmp6
));
2028 if (icmp6
== NULL
) {
2029 /* m is already reclaimed */
2030 return IPPROTO_DONE
;
2035 * XXX: the address may have embedded scope zone ID, which should be
2036 * hidden from applications.
2038 bzero(&rip6src
, sizeof(rip6src
));
2039 rip6src
.sin6_family
= AF_INET6
;
2040 rip6src
.sin6_len
= sizeof(struct sockaddr_in6
);
2041 rip6src
.sin6_addr
= ip6
->ip6_src
;
2042 if (sa6_recoverscope(&rip6src
, TRUE
))
2043 return (IPPROTO_DONE
);
2045 lck_rw_lock_shared(ripcbinfo
.ipi_lock
);
2046 LIST_FOREACH(in6p
, &ripcb
, inp_list
)
2048 if ((in6p
->inp_vflag
& INP_IPV6
) == 0)
2050 if (in6p
->in6p_ip6_nxt
!= IPPROTO_ICMPV6
)
2052 if (!IN6_IS_ADDR_UNSPECIFIED(&in6p
->in6p_laddr
) &&
2053 !IN6_ARE_ADDR_EQUAL(&in6p
->in6p_laddr
, &ip6
->ip6_dst
))
2055 if (!IN6_IS_ADDR_UNSPECIFIED(&in6p
->in6p_faddr
) &&
2056 !IN6_ARE_ADDR_EQUAL(&in6p
->in6p_faddr
, &ip6
->ip6_src
))
2058 if (in6p
->in6p_icmp6filt
2059 && ICMP6_FILTER_WILLBLOCK(icmp6
->icmp6_type
,
2060 in6p
->in6p_icmp6filt
))
2063 if (inp_restricted_recv(in6p
, ifp
))
2068 if ((n
= m_copy(m
, 0, (int)M_COPYALL
)) != NULL
) {
2069 if ((last
->in6p_flags
& INP_CONTROLOPTS
) != 0 ||
2070 (last
->in6p_socket
->so_options
& SO_TIMESTAMP
) != 0 ||
2071 (last
->in6p_socket
->so_options
& SO_TIMESTAMP_MONOTONIC
) != 0) {
2072 ret
= ip6_savecontrol(last
, n
, &opts
);
2080 /* strip intermediate headers */
2082 so_recv_data_stat(last
->in6p_socket
, m
, 0);
2083 if (sbappendaddr(&last
->in6p_socket
->so_rcv
,
2084 (struct sockaddr
*)&rip6src
,
2085 n
, opts
, NULL
) != 0) {
2086 sorwakeup(last
->in6p_socket
);
2094 if ((last
->in6p_flags
& INP_CONTROLOPTS
) != 0 ||
2095 (last
->in6p_socket
->so_options
& SO_TIMESTAMP
) != 0 ||
2096 (last
->in6p_socket
->so_options
& SO_TIMESTAMP_MONOTONIC
) != 0) {
2097 ret
= ip6_savecontrol(last
, m
, &opts
);
2102 /* strip intermediate headers */
2104 so_recv_data_stat(last
->in6p_socket
, m
, 0);
2105 if (sbappendaddr(&last
->in6p_socket
->so_rcv
,
2106 (struct sockaddr
*)&rip6src
, m
, opts
, NULL
) != 0) {
2107 sorwakeup(last
->in6p_socket
);
2112 lck_rw_done(ripcbinfo
.ipi_lock
);
2113 return IPPROTO_DONE
;
2116 lck_rw_done(ripcbinfo
.ipi_lock
);
2119 ip6stat
.ip6s_delivered
--;
2120 return IPPROTO_DONE
;
2124 * Reflect the ip6 packet back to the source.
2125 * OFF points to the icmp6 header, counted from the top of the mbuf.
2128 icmp6_reflect(struct mbuf
*m
, size_t off
)
2130 struct mbuf
*m_ip6hdr
= m
;
2131 struct ip6_hdr
*ip6
;
2132 struct icmp6_hdr
*icmp6
;
2133 struct in6_ifaddr
*ia
;
2134 struct in6_addr t
, src_storage
, *src
= 0;
2137 struct ifnet
*outif
= NULL
;
2138 struct sockaddr_in6 sa6_src
, sa6_dst
;
2139 struct nd_ifinfo
*ndi
= NULL
;
2141 struct ip6_out_args ip6oa
= { IFSCOPE_NONE
, { 0 },
2142 IP6OAF_SELECT_SRCIF
| IP6OAF_BOUND_SRCADDR
|
2143 IP6OAF_INTCOPROC_ALLOWED
| IP6OAF_AWDL_UNRESTRICTED
, 0,
2144 SO_TC_UNSPEC
, _NET_SERVICE_TYPE_UNSPEC
};
2146 if (!(m
->m_pkthdr
.pkt_flags
& PKTF_LOOP
) && m
->m_pkthdr
.rcvif
!= NULL
) {
2147 ip6oa
.ip6oa_boundif
= m
->m_pkthdr
.rcvif
->if_index
;
2148 ip6oa
.ip6oa_flags
|= IP6OAF_BOUND_IF
;
2151 /* too short to reflect */
2152 if (off
< sizeof(struct ip6_hdr
)) {
2154 "sanity fail: off=%lx, sizeof(ip6)=%lx in %s:%d\n",
2155 (u_int32_t
)off
, (u_int32_t
)sizeof(struct ip6_hdr
),
2156 __func__
, __LINE__
));
2161 * If there are extra headers between IPv6 and ICMPv6, strip
2162 * off that header first.
2164 if (off
> sizeof(struct ip6_hdr
)) {
2166 struct ip6_hdr nip6
;
2168 l
= off
- sizeof(struct ip6_hdr
);
2169 m_copydata(m
, 0, sizeof(nip6
), (caddr_t
)&nip6
);
2171 l
= sizeof(struct ip6_hdr
) + sizeof(struct icmp6_hdr
);
2173 if ((m_ip6hdr
= m_pulldown(m
, 0, l
, NULL
)) == NULL
)
2176 bcopy((caddr_t
)&nip6
, mtod(m
, caddr_t
), sizeof(nip6
));
2177 } else /* off == sizeof(struct ip6_hdr) */ {
2179 l
= sizeof(struct ip6_hdr
) + sizeof(struct icmp6_hdr
);
2181 if ((m_ip6hdr
= m_pulldown(m
, 0, l
, NULL
)) == NULL
)
2185 plen
= m
->m_pkthdr
.len
- sizeof(struct ip6_hdr
);
2186 ip6
= mtod(m_ip6hdr
, struct ip6_hdr
*);
2187 ip6
->ip6_nxt
= IPPROTO_ICMPV6
;
2188 icmp6
= (struct icmp6_hdr
*)(ip6
+ 1);
2189 type
= icmp6
->icmp6_type
; /* keep type for statistics */
2190 code
= icmp6
->icmp6_code
; /* ditto. */
2194 * ip6_input() drops a packet if its src is multicast.
2195 * So, the src is never multicast.
2197 ip6
->ip6_dst
= ip6
->ip6_src
;
2200 * XXX: make sure to embed scope zone information, using
2201 * already embedded IDs or the received interface (if any).
2202 * Note that rcvif may be NULL.
2204 bzero(&sa6_src
, sizeof(sa6_src
));
2205 sa6_src
.sin6_family
= AF_INET6
;
2206 sa6_src
.sin6_len
= sizeof(sa6_src
);
2207 sa6_src
.sin6_addr
= ip6
->ip6_dst
;
2208 in6_recoverscope(&sa6_src
, &ip6
->ip6_dst
, m
->m_pkthdr
.rcvif
);
2209 in6_embedscope(&ip6
->ip6_dst
, &sa6_src
, NULL
, NULL
, NULL
);
2210 bzero(&sa6_dst
, sizeof(sa6_dst
));
2211 sa6_dst
.sin6_family
= AF_INET6
;
2212 sa6_dst
.sin6_len
= sizeof(sa6_dst
);
2213 sa6_dst
.sin6_addr
= t
;
2214 in6_recoverscope(&sa6_dst
, &t
, m
->m_pkthdr
.rcvif
);
2215 in6_embedscope(&t
, &sa6_dst
, NULL
, NULL
, NULL
);
2218 * If the incoming packet was addressed directly to us(i.e. unicast),
2219 * use dst as the src for the reply.
2220 * The IN6_IFF_NOTREADY case should be VERY rare, but is possible
2221 * (for example) when we encounter an error while forwarding procedure
2222 * destined to a duplicated address of ours.
2223 * Note that ip6_getdstifaddr() may fail if we are in an error handling
2224 * procedure of an outgoing packet of our own, in which case we need
2225 * to search in the ifaddr list.
2227 lck_rw_lock_shared(&in6_ifaddr_rwlock
);
2228 for (ia
= in6_ifaddrs
; ia
; ia
= ia
->ia_next
) {
2229 IFA_LOCK(&ia
->ia_ifa
);
2230 if (IN6_ARE_ADDR_EQUAL(&t
, &ia
->ia_addr
.sin6_addr
) &&
2231 (ia
->ia6_flags
& (IN6_IFF_ANYCAST
|IN6_IFF_NOTREADY
)) == 0) {
2232 IFA_UNLOCK(&ia
->ia_ifa
);
2236 IFA_UNLOCK(&ia
->ia_ifa
);
2238 lck_rw_done(&in6_ifaddr_rwlock
);
2239 if (ia
== NULL
&& IN6_IS_ADDR_LINKLOCAL(&t
) &&
2240 ((m
->m_flags
& M_LOOP
) || (m
->m_pkthdr
.pkt_flags
& PKTF_LOOP
))) {
2242 * This is the case if the dst is our link-local address
2243 * and the sender is also ourselves. Here we test for both
2244 * M_LOOP and PKTF_LOOP, since the former may have been set
2245 * in ip6_output() and that we get here as part of callling
2246 * ip6_process_hopopts(). See comments in <sys/mbuf.h>
2253 struct sockaddr_in6 sin6
;
2254 struct route_in6 ro
;
2257 * This case matches to multicasts, our anycast, or unicasts
2258 * that we do not own. Select a source address based on the
2259 * source address of the erroneous packet.
2261 bzero(&sin6
, sizeof(sin6
));
2262 sin6
.sin6_family
= AF_INET6
;
2263 sin6
.sin6_len
= sizeof(sin6
);
2264 sin6
.sin6_addr
= ip6
->ip6_dst
; /* zone ID should be embedded */
2266 bzero(&ro
, sizeof(ro
));
2268 * in6_selectsrc() might return outif with its reference held
2269 * even in the error case, so we always need to release it
2272 src
= in6_selectsrc(&sin6
, NULL
, NULL
, &ro
, &outif
,
2273 &src_storage
, ip6oa
.ip6oa_boundif
, &e
);
2277 "icmp6_reflect: source can't be determined: "
2278 "dst=%s, error=%d\n",
2279 ip6_sprintf(&sa6_src
.sin6_addr
), e
));
2283 oflow
= ip6
->ip6_flow
; /* Save for later */
2284 ip6
->ip6_src
= *src
;
2286 ip6
->ip6_vfc
&= ~IPV6_VERSION_MASK
;
2287 ip6
->ip6_vfc
|= IPV6_VERSION
;
2288 if (icmp6
->icmp6_type
== ICMP6_ECHO_REPLY
&& icmp6
->icmp6_code
== 0) {
2289 ip6
->ip6_flow
|= (oflow
& htonl(0x0ff00000));
2291 ip6
->ip6_nxt
= IPPROTO_ICMPV6
;
2292 if (outif
!= NULL
&& (ndi
= ND_IFINFO(outif
)) != NULL
&&
2294 lck_mtx_lock(&ndi
->lock
);
2295 ip6
->ip6_hlim
= ndi
->chlim
;
2296 lck_mtx_unlock(&ndi
->lock
);
2298 if (m
->m_pkthdr
.rcvif
!= NULL
&&
2299 (ndi
= ND_IFINFO(m
->m_pkthdr
.rcvif
)) != NULL
&&
2301 /* XXX: This may not be the outgoing interface */
2302 lck_mtx_lock(&ndi
->lock
);
2303 ip6
->ip6_hlim
= ndi
->chlim
;
2304 lck_mtx_unlock(&ndi
->lock
);
2306 ip6
->ip6_hlim
= ip6_defhlim
;
2308 /* Use the same traffic class as in the request to match IPv4 */
2309 icmp6
->icmp6_cksum
= 0;
2310 icmp6
->icmp6_cksum
= in6_cksum(m
, IPPROTO_ICMPV6
,
2311 sizeof(struct ip6_hdr
), plen
);
2314 * XXX option handling
2316 m
->m_flags
&= ~(M_BCAST
|M_MCAST
);
2318 if (outif
!= NULL
) {
2319 ifnet_release(outif
);
2323 m
->m_pkthdr
.csum_data
= 0;
2324 m
->m_pkthdr
.csum_flags
= 0;
2325 ip6_output(m
, NULL
, NULL
, IPV6_OUTARGS
, NULL
, &outif
, &ip6oa
);
2326 if (outif
!= NULL
) {
2327 icmp6_ifoutstat_inc(outif
, type
, code
);
2328 ifnet_release(outif
);
2335 ifnet_release(outif
);
2340 icmp6_redirect_diag(struct in6_addr
*src6
,
2341 struct in6_addr
*dst6
,
2342 struct in6_addr
*tgt6
)
2344 static char buf
[1024];
2345 snprintf(buf
, sizeof(buf
), "(src=%s dst=%s tgt=%s)",
2346 ip6_sprintf(src6
), ip6_sprintf(dst6
), ip6_sprintf(tgt6
));
2351 icmp6_redirect_input(struct mbuf
*m
, int off
)
2353 struct ifnet
*ifp
= m
->m_pkthdr
.rcvif
;
2354 struct ip6_hdr
*ip6
= mtod(m
, struct ip6_hdr
*);
2355 struct nd_redirect
*nd_rd
;
2356 int icmp6len
= ntohs(ip6
->ip6_plen
);
2357 char *lladdr
= NULL
;
2359 u_char
*redirhdr
= NULL
;
2360 int redirhdrlen
= 0;
2361 struct rtentry
*rt
= NULL
;
2364 struct in6_addr src6
= ip6
->ip6_src
;
2365 struct in6_addr redtgt6
;
2366 struct in6_addr reddst6
;
2367 union nd_opts ndopts
;
2373 * If we are an advertising router on this interface,
2374 * don't update route by icmp6 redirect.
2376 if (ifp
->if_eflags
& IFEF_IPV6_ROUTER
)
2378 if (!icmp6_rediraccept
)
2381 #ifndef PULLDOWN_TEST
2382 IP6_EXTHDR_CHECK(m
, off
, icmp6len
, return);
2383 nd_rd
= (struct nd_redirect
*)((caddr_t
)ip6
+ off
);
2385 IP6_EXTHDR_GET(nd_rd
, struct nd_redirect
*, m
, off
, icmp6len
);
2386 if (nd_rd
== NULL
) {
2387 icmp6stat
.icp6s_tooshort
++;
2391 redtgt6
= nd_rd
->nd_rd_target
;
2392 reddst6
= nd_rd
->nd_rd_dst
;
2394 if (in6_setscope(&redtgt6
, m
->m_pkthdr
.rcvif
, NULL
) ||
2395 in6_setscope(&reddst6
, m
->m_pkthdr
.rcvif
, NULL
)) {
2400 if (!IN6_IS_ADDR_LINKLOCAL(&src6
)) {
2402 "ICMP6 redirect sent from %s rejected; "
2403 "must be from linklocal\n", ip6_sprintf(&src6
)));
2406 if (ip6
->ip6_hlim
!= 255) {
2408 "ICMP6 redirect sent from %s rejected; "
2409 "hlim=%d (must be 255)\n",
2410 ip6_sprintf(&src6
), ip6
->ip6_hlim
));
2414 /* ip6->ip6_src must be equal to gw for icmp6->icmp6_reddst */
2415 struct sockaddr_in6 sin6
;
2416 struct in6_addr
*gw6
;
2418 bzero(&sin6
, sizeof(sin6
));
2419 sin6
.sin6_family
= AF_INET6
;
2420 sin6
.sin6_len
= sizeof(struct sockaddr_in6
);
2421 bcopy(&reddst6
, &sin6
.sin6_addr
, sizeof(reddst6
));
2422 rt
= rtalloc1_scoped((struct sockaddr
*)&sin6
, 0, 0, ifp
->if_index
);
2425 if (rt
->rt_gateway
== NULL
||
2426 rt
->rt_gateway
->sa_family
!= AF_INET6
) {
2428 "ICMP6 redirect rejected; no route "
2429 "with inet6 gateway found for redirect dst: %s\n",
2430 icmp6_redirect_diag(&src6
, &reddst6
, &redtgt6
)));
2436 gw6
= &(((struct sockaddr_in6
*)(void *)
2437 rt
->rt_gateway
)->sin6_addr
);
2438 if (bcmp(&src6
, gw6
, sizeof(struct in6_addr
)) != 0) {
2440 "ICMP6 redirect rejected; "
2441 "not equal to gw-for-src=%s (must be same): "
2444 icmp6_redirect_diag(&src6
, &reddst6
, &redtgt6
)));
2451 "ICMP6 redirect rejected; "
2452 "no route found for redirect dst: %s\n",
2453 icmp6_redirect_diag(&src6
, &reddst6
, &redtgt6
)));
2460 if (IN6_IS_ADDR_MULTICAST(&reddst6
)) {
2462 "ICMP6 redirect rejected; "
2463 "redirect dst must be unicast: %s\n",
2464 icmp6_redirect_diag(&src6
, &reddst6
, &redtgt6
)));
2468 is_router
= is_onlink
= 0;
2469 if (IN6_IS_ADDR_LINKLOCAL(&redtgt6
))
2470 is_router
= 1; /* router case */
2471 if (bcmp(&redtgt6
, &reddst6
, sizeof(redtgt6
)) == 0)
2472 is_onlink
= 1; /* on-link destination case */
2473 if (!is_router
&& !is_onlink
) {
2475 "ICMP6 redirect rejected; "
2476 "neither router case nor onlink case: %s\n",
2477 icmp6_redirect_diag(&src6
, &reddst6
, &redtgt6
)));
2480 /* validation passed */
2482 icmp6len
-= sizeof(*nd_rd
);
2483 nd6_option_init(nd_rd
+ 1, icmp6len
, &ndopts
);
2484 if (nd6_options(&ndopts
) < 0) {
2485 nd6log((LOG_INFO
, "icmp6_redirect_input: "
2486 "invalid ND option, rejected: %s\n",
2487 icmp6_redirect_diag(&src6
, &reddst6
, &redtgt6
)));
2488 /* nd6_options have incremented stats */
2492 if (ndopts
.nd_opts_tgt_lladdr
) {
2493 lladdr
= (char *)(ndopts
.nd_opts_tgt_lladdr
+ 1);
2494 lladdrlen
= ndopts
.nd_opts_tgt_lladdr
->nd_opt_len
<< 3;
2497 if (ndopts
.nd_opts_rh
) {
2498 redirhdrlen
= ndopts
.nd_opts_rh
->nd_opt_rh_len
;
2499 redirhdr
= (u_char
*)(ndopts
.nd_opts_rh
+ 1); /* xxx */
2502 if (lladdr
&& ((ifp
->if_addrlen
+ 2 + 7) & ~7) != lladdrlen
) {
2504 "icmp6_redirect_input: lladdrlen mismatch for %s "
2505 "(if %d, icmp6 packet %d): %s\n",
2506 ip6_sprintf(&redtgt6
), ifp
->if_addrlen
, lladdrlen
- 2,
2507 icmp6_redirect_diag(&src6
, &reddst6
, &redtgt6
)));
2512 nd6_cache_lladdr(ifp
, &redtgt6
, lladdr
, lladdrlen
, ND_REDIRECT
,
2513 is_onlink
? ND_REDIRECT_ONLINK
: ND_REDIRECT_ROUTER
);
2515 if (!is_onlink
) { /* better router case. perform rtredirect. */
2516 /* perform rtredirect */
2517 struct sockaddr_in6 sdst
;
2518 struct sockaddr_in6 sgw
;
2519 struct sockaddr_in6 ssrc
;
2521 bzero(&sdst
, sizeof(sdst
));
2522 bzero(&sgw
, sizeof(sgw
));
2523 bzero(&ssrc
, sizeof(ssrc
));
2524 sdst
.sin6_family
= sgw
.sin6_family
= ssrc
.sin6_family
= AF_INET6
;
2525 sdst
.sin6_len
= sgw
.sin6_len
= ssrc
.sin6_len
=
2526 sizeof(struct sockaddr_in6
);
2527 bcopy(&redtgt6
, &sgw
.sin6_addr
, sizeof(struct in6_addr
));
2528 bcopy(&reddst6
, &sdst
.sin6_addr
, sizeof(struct in6_addr
));
2529 bcopy(&src6
, &ssrc
.sin6_addr
, sizeof(struct in6_addr
));
2530 rtredirect(ifp
, (struct sockaddr
*)&sdst
,
2531 (struct sockaddr
*)&sgw
, NULL
, RTF_GATEWAY
| RTF_HOST
,
2532 (struct sockaddr
*)&ssrc
, NULL
);
2534 /* finally update cached route in each socket via pfctlinput */
2536 struct sockaddr_in6 sdst
;
2538 bzero(&sdst
, sizeof(sdst
));
2539 sdst
.sin6_family
= AF_INET6
;
2540 sdst
.sin6_len
= sizeof(struct sockaddr_in6
);
2541 bcopy(&reddst6
, &sdst
.sin6_addr
, sizeof(struct in6_addr
));
2543 pfctlinput(PRC_REDIRECT_HOST
, (struct sockaddr
*)&sdst
);
2545 key_sa_routechange((struct sockaddr
*)&sdst
);
2554 icmp6stat
.icp6s_badredirect
++;
2559 icmp6_redirect_output(struct mbuf
*m0
, struct rtentry
*rt
)
2561 struct ifnet
*ifp
; /* my outgoing interface */
2562 struct in6_addr ifp_ll6
;
2563 struct in6_addr
*router_ll6
;
2564 struct ip6_hdr
*sip6
; /* m0 as struct ip6_hdr */
2565 struct mbuf
*m
= NULL
; /* newly allocated one */
2566 struct ip6_hdr
*ip6
; /* m as struct ip6_hdr */
2567 struct nd_redirect
*nd_rd
;
2570 struct ifnet
*outif
= NULL
;
2571 struct sockaddr_in6 src_sa
;
2572 struct ip6_out_args ip6oa
= { IFSCOPE_NONE
, { 0 },
2573 IP6OAF_SELECT_SRCIF
| IP6OAF_BOUND_SRCADDR
, 0,
2574 SO_TC_UNSPEC
, _NET_SERVICE_TYPE_UNSPEC
};
2576 icmp6_errcount(&icmp6stat
.icp6s_outerrhist
, ND_REDIRECT
, 0);
2582 if (!m0
|| !rt
|| !(rt
->rt_flags
& RTF_UP
) || !(ifp
= rt
->rt_ifp
))
2586 * If we are not a router to begin with, or not an advertising
2587 * router on this interface, don't send icmp6 redirect.
2589 if (!ip6_forwarding
|| !(ifp
->if_eflags
& IFEF_IPV6_ROUTER
))
2594 * the source address must identify a neighbor, and
2595 * the destination address must not be a multicast address
2596 * [RFC 2461, sec 8.2]
2598 sip6
= mtod(m0
, struct ip6_hdr
*);
2599 bzero(&src_sa
, sizeof(src_sa
));
2600 src_sa
.sin6_family
= AF_INET6
;
2601 src_sa
.sin6_len
= sizeof(src_sa
);
2602 src_sa
.sin6_addr
= sip6
->ip6_src
;
2603 /* we don't currently use sin6_scope_id, but eventually use it */
2604 src_sa
.sin6_scope_id
= in6_addr2scopeid(ifp
, &sip6
->ip6_src
);
2606 if (nd6_is_addr_neighbor(&src_sa
, ifp
, 0) == 0) {
2607 /* already unlocked */
2612 if (IN6_IS_ADDR_MULTICAST(&sip6
->ip6_dst
))
2613 goto fail
; /* what should we do here? */
2616 if (icmp6_ratelimit(&sip6
->ip6_src
, ND_REDIRECT
, 0))
2620 * Since we are going to append up to 1280 bytes (= IPV6_MMTU),
2621 * we almost always ask for an mbuf cluster for simplicity.
2622 * (MHLEN < IPV6_MMTU is almost always true)
2624 #if IPV6_MMTU >= MCLBYTES
2625 # error assumption failed about IPV6_MMTU and MCLBYTES
2627 MGETHDR(m
, M_DONTWAIT
, MT_HEADER
); /* MAC-OK */
2628 if (m
&& IPV6_MMTU
>= MHLEN
)
2629 MCLGET(m
, M_DONTWAIT
);
2632 m
->m_pkthdr
.rcvif
= NULL
;
2634 maxlen
= M_TRAILINGSPACE(m
);
2635 maxlen
= min(IPV6_MMTU
, maxlen
);
2636 /* just for safety */
2637 if (maxlen
< sizeof(struct ip6_hdr
) + sizeof(struct icmp6_hdr
) +
2638 ((sizeof(struct nd_opt_hdr
) + ifp
->if_addrlen
+ 7) & ~7)) {
2643 /* get ip6 linklocal address for ifp(my outgoing interface). */
2644 struct in6_ifaddr
*ia
;
2645 if ((ia
= in6ifa_ifpforlinklocal(ifp
,
2647 IN6_IFF_ANYCAST
)) == NULL
)
2649 IFA_LOCK(&ia
->ia_ifa
);
2650 ifp_ll6
= ia
->ia_addr
.sin6_addr
;
2651 IFA_UNLOCK(&ia
->ia_ifa
);
2652 IFA_REMREF(&ia
->ia_ifa
);
2655 /* get ip6 linklocal address for the router. */
2656 if (rt
->rt_gateway
&& (rt
->rt_flags
& RTF_GATEWAY
)) {
2657 struct sockaddr_in6
*sin6
;
2658 sin6
= (struct sockaddr_in6
*)(void *)rt
->rt_gateway
;
2659 router_ll6
= &sin6
->sin6_addr
;
2660 if (!IN6_IS_ADDR_LINKLOCAL(router_ll6
))
2661 router_ll6
= (struct in6_addr
*)NULL
;
2663 router_ll6
= (struct in6_addr
*)NULL
;
2666 ip6
= mtod(m
, struct ip6_hdr
*);
2668 ip6
->ip6_vfc
&= ~IPV6_VERSION_MASK
;
2669 ip6
->ip6_vfc
|= IPV6_VERSION
;
2670 /* ip6->ip6_plen will be set later */
2671 ip6
->ip6_nxt
= IPPROTO_ICMPV6
;
2672 ip6
->ip6_hlim
= 255;
2673 /* ip6->ip6_src must be linklocal addr for my outgoing if. */
2674 bcopy(&ifp_ll6
, &ip6
->ip6_src
, sizeof(struct in6_addr
));
2675 bcopy(&sip6
->ip6_src
, &ip6
->ip6_dst
, sizeof(struct in6_addr
));
2678 nd_rd
= (struct nd_redirect
*)(ip6
+ 1);
2679 nd_rd
->nd_rd_type
= ND_REDIRECT
;
2680 nd_rd
->nd_rd_code
= 0;
2681 nd_rd
->nd_rd_reserved
= 0;
2682 if (rt
->rt_flags
& RTF_GATEWAY
) {
2684 * nd_rd->nd_rd_target must be a link-local address in
2685 * better router cases.
2689 bcopy(router_ll6
, &nd_rd
->nd_rd_target
,
2690 sizeof(nd_rd
->nd_rd_target
));
2691 bcopy(&sip6
->ip6_dst
, &nd_rd
->nd_rd_dst
,
2692 sizeof(nd_rd
->nd_rd_dst
));
2694 /* make sure redtgt == reddst */
2695 bcopy(&sip6
->ip6_dst
, &nd_rd
->nd_rd_target
,
2696 sizeof(nd_rd
->nd_rd_target
));
2697 bcopy(&sip6
->ip6_dst
, &nd_rd
->nd_rd_dst
,
2698 sizeof(nd_rd
->nd_rd_dst
));
2703 p
= (u_char
*)(nd_rd
+ 1);
2709 /* target lladdr option */
2710 struct rtentry
*rt_router
= NULL
;
2712 struct sockaddr_dl
*sdl
;
2713 struct nd_opt_hdr
*nd_opt
;
2716 /* Callee returns a locked route upon success */
2717 rt_router
= nd6_lookup(router_ll6
, 0, ifp
, 0);
2720 RT_LOCK_ASSERT_HELD(rt_router
);
2721 len
= sizeof(*nd_opt
) + ifp
->if_addrlen
;
2722 len
= (len
+ 7) & ~7; /* round by 8 */
2724 if (len
+ (p
- (u_char
*)ip6
) > maxlen
) {
2725 RT_REMREF_LOCKED(rt_router
);
2726 RT_UNLOCK(rt_router
);
2730 if (!(rt_router
->rt_flags
& RTF_GATEWAY
) &&
2731 (rt_router
->rt_flags
& RTF_LLINFO
) &&
2732 (rt_router
->rt_gateway
->sa_family
== AF_LINK
) &&
2733 (sdl
= (struct sockaddr_dl
*)(void *)
2734 rt_router
->rt_gateway
) && sdl
->sdl_alen
) {
2735 nd_opt
= (struct nd_opt_hdr
*)p
;
2736 nd_opt
->nd_opt_type
= ND_OPT_TARGET_LINKADDR
;
2737 nd_opt
->nd_opt_len
= len
>> 3;
2738 lladdr
= (char *)(nd_opt
+ 1);
2739 bcopy(LLADDR(sdl
), lladdr
, ifp
->if_addrlen
);
2742 RT_REMREF_LOCKED(rt_router
);
2743 RT_UNLOCK(rt_router
);
2748 m
->m_pkthdr
.len
= m
->m_len
= p
- (u_char
*)ip6
;
2750 /* just to be safe */
2751 #ifdef M_DECRYPTED /*not openbsd*/
2752 if (m0
->m_flags
& M_DECRYPTED
)
2755 if (p
- (u_char
*)ip6
> maxlen
)
2759 /* redirected header option */
2761 struct nd_opt_rd_hdr
*nd_opt_rh
;
2764 * compute the maximum size for icmp6 redirect header option.
2765 * XXX room for auth header?
2767 len
= maxlen
- (p
- (u_char
*)ip6
);
2770 /* This is just for simplicity. */
2771 if (m0
->m_pkthdr
.len
!= m0
->m_len
) {
2773 m_freem(m0
->m_next
);
2776 m0
->m_pkthdr
.len
= m0
->m_len
;
2780 * Redirected header option spec (RFC2461 4.6.3) talks nothing
2781 * about padding/truncate rule for the original IP packet.
2782 * From the discussion on IPv6imp in Feb 1999, the consensus was:
2783 * - "attach as much as possible" is the goal
2784 * - pad if not aligned (original size can be guessed by original
2786 * Following code adds the padding if it is simple enough,
2787 * and truncates if not.
2789 if (m0
->m_next
|| m0
->m_pkthdr
.len
!= m0
->m_len
)
2790 panic("assumption failed in %s:%d\n", __func__
, __LINE__
);
2792 if (len
- sizeof(*nd_opt_rh
) < m0
->m_pkthdr
.len
) {
2793 /* not enough room, truncate */
2794 m0
->m_pkthdr
.len
= m0
->m_len
= len
- sizeof(*nd_opt_rh
);
2796 /* enough room, pad or truncate */
2799 extra
= m0
->m_pkthdr
.len
% 8;
2801 /* pad if easy enough, truncate if not */
2802 if (8 - extra
<= M_TRAILINGSPACE(m0
)) {
2804 m0
->m_len
+= (8 - extra
);
2805 m0
->m_pkthdr
.len
+= (8 - extra
);
2808 m0
->m_pkthdr
.len
-= extra
;
2812 len
= m0
->m_pkthdr
.len
+ sizeof(*nd_opt_rh
);
2813 m0
->m_pkthdr
.len
= m0
->m_len
= len
- sizeof(*nd_opt_rh
);
2816 nd_opt_rh
= (struct nd_opt_rd_hdr
*)p
;
2817 bzero(nd_opt_rh
, sizeof(*nd_opt_rh
));
2818 nd_opt_rh
->nd_opt_rh_type
= ND_OPT_REDIRECTED_HEADER
;
2819 nd_opt_rh
->nd_opt_rh_len
= len
>> 3;
2820 p
+= sizeof(*nd_opt_rh
);
2821 m
->m_pkthdr
.len
= m
->m_len
= p
- (u_char
*)ip6
;
2823 /* connect m0 to m */
2825 m
->m_pkthdr
.len
= m
->m_len
+ m0
->m_len
;
2829 /* XXX: clear embedded link IDs in the inner header */
2830 in6_clearscope(&sip6
->ip6_src
);
2831 in6_clearscope(&sip6
->ip6_dst
);
2832 in6_clearscope(&nd_rd
->nd_rd_target
);
2833 in6_clearscope(&nd_rd
->nd_rd_dst
);
2835 ip6
->ip6_plen
= htons(m
->m_pkthdr
.len
- sizeof(struct ip6_hdr
));
2837 nd_rd
->nd_rd_cksum
= 0;
2839 = in6_cksum(m
, IPPROTO_ICMPV6
, sizeof(*ip6
), ntohs(ip6
->ip6_plen
));
2841 /* send the packet to outside... */
2842 ip6oa
.ip6oa_boundif
= ifp
->if_index
;
2843 ip6oa
.ip6oa_flags
|= IP6OAF_BOUND_IF
;
2845 ip6_output(m
, NULL
, NULL
, IPV6_OUTARGS
, NULL
, &outif
, &ip6oa
);
2847 icmp6_ifstat_inc(outif
, ifs6_out_msg
);
2848 icmp6_ifstat_inc(outif
, ifs6_out_redirect
);
2849 ifnet_release(outif
);
2851 icmp6stat
.icp6s_outhist
[ND_REDIRECT
]++;
2865 * ICMPv6 socket option processing.
2868 icmp6_ctloutput(struct socket
*so
, struct sockopt
*sopt
)
2872 struct inpcb
*inp
= sotoinpcb(so
);
2873 int level
, op
, optname
;
2876 level
= sopt
->sopt_level
;
2877 op
= sopt
->sopt_dir
;
2878 optname
= sopt
->sopt_name
;
2879 optlen
= sopt
->sopt_valsize
;
2881 level
= op
= optname
= optlen
= 0;
2883 if (level
!= IPPROTO_ICMPV6
) {
2892 struct icmp6_filter
*p
;
2894 if (optlen
!= 0 && optlen
!= sizeof(*p
)) {
2898 if (inp
->in6p_icmp6filt
== NULL
) {
2904 /* According to RFC 3542, an installed filter can be
2905 * cleared by issuing a setsockopt for ICMP6_FILTER
2906 * with a zero length.
2908 ICMP6_FILTER_SETPASSALL(inp
->in6p_icmp6filt
);
2910 error
= sooptcopyin(sopt
, inp
->in6p_icmp6filt
, optlen
,
2917 error
= ENOPROTOOPT
;
2926 if (inp
->in6p_icmp6filt
== NULL
) {
2930 error
= sooptcopyout(sopt
, inp
->in6p_icmp6filt
,
2931 min(sizeof(struct icmp6_filter
), optlen
));
2936 error
= ENOPROTOOPT
;
2946 * ICMPv6 socket datagram option processing.
2949 icmp6_dgram_ctloutput(struct socket
*so
, struct sockopt
*sopt
)
2951 if (kauth_cred_issuser(so
->so_cred
))
2952 return icmp6_ctloutput(so
, sopt
);
2954 if (sopt
->sopt_level
== IPPROTO_ICMPV6
) {
2955 switch (sopt
->sopt_name
) {
2957 return icmp6_ctloutput(so
, sopt
);
2963 if (sopt
->sopt_level
!= IPPROTO_IPV6
)
2966 switch (sopt
->sopt_name
) {
2967 case IPV6_UNICAST_HOPS
:
2970 case IPV6_USE_MIN_MTU
:
2971 case IPV6_RECVRTHDR
:
2972 case IPV6_RECVPKTINFO
:
2973 case IPV6_RECVHOPLIMIT
:
2979 case IPV6_MULTICAST_IF
:
2980 case IPV6_MULTICAST_HOPS
:
2981 case IPV6_MULTICAST_LOOP
:
2982 case IPV6_JOIN_GROUP
:
2983 case IPV6_LEAVE_GROUP
:
2984 case IPV6_PORTRANGE
:
2985 case IPV6_IPSEC_POLICY
:
2986 case IPV6_RECVTCLASS
:
2988 case IPV6_2292PKTOPTIONS
:
2989 case IPV6_2292PKTINFO
:
2990 case IPV6_2292HOPLIMIT
:
2991 case IPV6_2292HOPOPTS
:
2992 case IPV6_2292DSTOPTS
:
2993 case IPV6_2292RTHDR
:
2995 case IPV6_NO_IFT_CELLULAR
:
2997 return ip6_ctloutput(so
, sopt
);
3004 __private_extern__
int
3005 icmp6_dgram_send(struct socket
*so
, int flags
, struct mbuf
*m
,
3006 struct sockaddr
*nam
, struct mbuf
*control
, struct proc
*p
)
3008 #pragma unused(flags, p)
3010 struct inpcb
*inp
= sotoinpcb(so
);
3011 struct sockaddr_in6 tmp
;
3012 struct sockaddr_in6
*dst
= (struct sockaddr_in6
*)(void *)nam
;
3013 struct icmp6_hdr
*icmp6
;
3017 || (necp_socket_should_use_flow_divert(inp
))
3020 error
= (inp
== NULL
? EINVAL
: EPROTOTYPE
);
3024 if (kauth_cred_issuser(so
->so_cred
))
3025 return (rip6_output(m
, so
, SIN6(nam
), control
, 0));
3027 /* always copy sockaddr to avoid overwrites */
3028 if (so
->so_state
& SS_ISCONNECTED
) {
3034 bzero(&tmp
, sizeof(tmp
));
3035 tmp
.sin6_family
= AF_INET6
;
3036 tmp
.sin6_len
= sizeof(struct sockaddr_in6
);
3037 bcopy(&inp
->in6p_faddr
, &tmp
.sin6_addr
,
3038 sizeof(struct in6_addr
));
3045 tmp
= *(struct sockaddr_in6
*)(void *)nam
;
3050 * For an ICMPv6 packet, we should know its type and code
3052 if (SOCK_PROTO(so
) == IPPROTO_ICMPV6
) {
3053 if (m
->m_len
< sizeof(struct icmp6_hdr
) &&
3054 (m
= m_pullup(m
, sizeof(struct icmp6_hdr
))) == NULL
) {
3058 icmp6
= mtod(m
, struct icmp6_hdr
*);
3061 * Allow only to send echo request and node information request
3062 * See RFC 2463 for Echo Request Message format
3064 if ((icmp6
->icmp6_type
== ICMP6_ECHO_REQUEST
&&
3065 icmp6
->icmp6_code
== 0) ||
3066 (icmp6
->icmp6_type
== ICMP6_NI_QUERY
&&
3067 (icmp6
->icmp6_code
== ICMP6_NI_SUBJ_IPV6
||
3068 icmp6
->icmp6_code
== ICMP6_NI_SUBJ_FQDN
))) {
3077 #if ENABLE_DEFAULT_SCOPE
3078 if (dst
->sin6_scope_id
== 0) { /* not change if specified */
3079 dst
->sin6_scope_id
= scope6_addr2default(&dst
->sin6_addr
);
3083 return (rip6_output(m
, so
, dst
, control
, 0));
3089 if (control
!= NULL
)
3095 /* Like rip6_attach but without root privilege enforcement */
3096 __private_extern__
int
3097 icmp6_dgram_attach(struct socket
*so
, int proto
, struct proc
*p
)
3102 inp
= sotoinpcb(so
);
3104 panic("icmp6_dgram_attach");
3106 if (proto
!= IPPROTO_ICMPV6
)
3109 error
= soreserve(so
, rip_sendspace
, rip_recvspace
);
3112 error
= in_pcballoc(so
, &ripcbinfo
, p
);
3115 inp
= (struct inpcb
*)so
->so_pcb
;
3116 inp
->inp_vflag
|= INP_IPV6
;
3117 inp
->in6p_ip6_nxt
= IPPROTO_ICMPV6
;
3118 inp
->in6p_hops
= -1; /* use kernel default */
3119 inp
->in6p_cksum
= -1;
3120 MALLOC(inp
->in6p_icmp6filt
, struct icmp6_filter
*,
3121 sizeof(struct icmp6_filter
), M_PCB
, M_WAITOK
);
3122 if (inp
->in6p_icmp6filt
== NULL
)
3124 ICMP6_FILTER_SETPASSALL(inp
->in6p_icmp6filt
);
3130 * Perform rate limit check.
3131 * Returns 0 if it is okay to send the icmp6 packet.
3132 * Returns 1 if the router SHOULD NOT send this icmp6 packet due to rate
3135 * XXX per-destination check necessary?
3139 __unused
const struct in6_addr
*dst
, /* not used at this moment */
3141 __unused
const int code
)
3145 ret
= 0; /* okay to send */
3148 if (type
== ND_ROUTER_ADVERT
) {
3149 if (!ppsratecheck(&icmp6rappslim_last
, &icmp6rapps_count
,
3152 } else if (!ppsratecheck(&icmp6errppslim_last
, &icmp6errpps_count
,
3154 /* The packet is subject to rate limit */