xref: /xnu-8020.101.4/bsd/netinet6/nd6_nbr.c (revision e7776783b89a353188416a9a346c6cdb4928faad)
1 /*
2  * Copyright (c) 2000-2021 Apple Inc. All rights reserved.
3  *
4  * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
5  *
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,
11  * unlawful or unlicensed copies of an Apple operating system, or to
12  * circumvent, violate, or enable the circumvention or violation of, any
13  * terms of an Apple operating system software license agreement.
14  *
15  * Please obtain a copy of the License at
16  * http://www.opensource.apple.com/apsl/ and read it before using this file.
17  *
18  * The Original Code and all software distributed under the License are
19  * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
20  * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
21  * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
22  * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
23  * Please see the License for the specific language governing rights and
24  * limitations under the License.
25  *
26  * @APPLE_OSREFERENCE_LICENSE_HEADER_END@
27  */
28 
29 /*
30  * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
31  * All rights reserved.
32  *
33  * Redistribution and use in source and binary forms, with or without
34  * modification, are permitted provided that the following conditions
35  * are met:
36  * 1. Redistributions of source code must retain the above copyright
37  *    notice, this list of conditions and the following disclaimer.
38  * 2. Redistributions in binary form must reproduce the above copyright
39  *    notice, this list of conditions and the following disclaimer in the
40  *    documentation and/or other materials provided with the distribution.
41  * 3. Neither the name of the project nor the names of its contributors
42  *    may be used to endorse or promote products derived from this software
43  *    without specific prior written permission.
44  *
45  * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
46  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
47  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
48  * ARE DISCLAIMED.  IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
49  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
50  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
51  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
52  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
53  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
54  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
55  * SUCH DAMAGE.
56  */
57 
58 #include <sys/param.h>
59 #include <sys/systm.h>
60 #include <sys/malloc.h>
61 #include <sys/mbuf.h>
62 #include <sys/socket.h>
63 #include <sys/sockio.h>
64 #include <sys/time.h>
65 #include <sys/kernel.h>
66 #include <sys/errno.h>
67 #include <sys/syslog.h>
68 #include <sys/sysctl.h>
69 #include <sys/mcache.h>
70 #include <sys/protosw.h>
71 #include <kern/queue.h>
72 #include <dev/random/randomdev.h>
73 
74 #include <kern/locks.h>
75 #include <kern/zalloc.h>
76 
77 #include <net/if.h>
78 #include <net/if_var.h>
79 #include <net/if_types.h>
80 #include <net/if_dl.h>
81 #include <net/if_llreach.h>
82 #include <net/route.h>
83 #include <net/dlil.h>
84 #include <net/nwk_wq.h>
85 
86 #include <netinet/in.h>
87 #include <netinet/in_var.h>
88 #include <netinet6/in6_var.h>
89 #include <netinet6/in6_ifattach.h>
90 #include <netinet/ip6.h>
91 #include <netinet6/ip6_var.h>
92 #include <netinet6/nd6.h>
93 #include <netinet6/scope6_var.h>
94 #include <netinet/icmp6.h>
95 
96 #if IPSEC
97 #include <netinet6/ipsec.h>
98 #include <netinet6/ipsec6.h>
99 #endif
100 
101 struct dadq;
102 static struct dadq *nd6_dad_find(struct ifaddr *, struct nd_opt_nonce *);
103 void nd6_dad_stoptimer(struct ifaddr *);
104 static void nd6_dad_timer(struct ifaddr *);
105 static void nd6_dad_ns_output(struct dadq *, struct ifaddr *);
106 static void nd6_dad_ns_input(struct ifaddr *, char *, int, struct nd_opt_nonce *);
107 static struct mbuf *nd6_dad_na_input(struct mbuf *, struct ifnet *,
108     struct in6_addr *, caddr_t, int);
109 static void dad_addref(struct dadq *, int);
110 static void dad_remref(struct dadq *);
111 static struct dadq *nd6_dad_attach(struct dadq *, struct ifaddr *);
112 static void nd6_dad_detach(struct dadq *, struct ifaddr *);
113 static void nd6_dad_duplicated(struct ifaddr *);
114 
115 static int dad_maxtry = 15;     /* max # of *tries* to transmit DAD packet */
116 
117 #define DAD_LOCK_ASSERT_HELD(_dp)                                       \
118 	LCK_MTX_ASSERT(&(_dp)->dad_lock, LCK_MTX_ASSERT_OWNED)
119 
120 #define DAD_LOCK_ASSERT_NOTHELD(_dp)                                    \
121 	LCK_MTX_ASSERT(&(_dp)->dad_lock, LCK_MTX_ASSERT_NOTOWNED)
122 
123 #define DAD_LOCK(_dp)                                                   \
124 	lck_mtx_lock(&(_dp)->dad_lock)
125 
126 #define DAD_LOCK_SPIN(_dp)                                              \
127 	lck_mtx_lock_spin(&(_dp)->dad_lock)
128 
129 #define DAD_CONVERT_LOCK(_dp) do {                                      \
130 	DAD_LOCK_ASSERT_HELD(_dp);                                      \
131 	lck_mtx_convert_spin(&(_dp)->dad_lock);                         \
132 } while (0)
133 
134 #define DAD_UNLOCK(_dp)                                                 \
135 	lck_mtx_unlock(&(_dp)->dad_lock)
136 
137 #define DAD_ADDREF(_dp)                                                 \
138 	dad_addref(_dp, 0)
139 
140 #define DAD_ADDREF_LOCKED(_dp)                                          \
141 	dad_addref(_dp, 1)
142 
143 #define DAD_REMREF(_dp)                                                 \
144 	dad_remref(_dp)
145 
146 static LCK_MTX_DECLARE_ATTR(dad6_mutex, &ip6_mutex_grp, &ip6_mutex_attr);
147 
148 static int nd6_llreach_base = 30;        /* seconds */
149 
150 static struct sockaddr_in6 hostrtmask;
151 
152 SYSCTL_DECL(_net_inet6_icmp6);
153 SYSCTL_INT(_net_inet6_icmp6, OID_AUTO, nd6_llreach_base,
154     CTLFLAG_RW | CTLFLAG_LOCKED, &nd6_llreach_base, 0,
155     "default ND6 link-layer reachability max lifetime (in seconds)");
156 
157 int dad_enhanced = ND6_DAD_ENHANCED_DEFAULT;
158 SYSCTL_DECL(_net_inet6_ip6);
159 SYSCTL_INT(_net_inet6_ip6, OID_AUTO, dad_enhanced, CTLFLAG_RW | CTLFLAG_LOCKED,
160     &dad_enhanced, 0,
161     "Enable Enhanced DAD, which adds a random nonce to NS messages for DAD.");
162 
163 #if DEBUG || DEVELOPMENT
164 static int  ip6_p2p_debug = 0;
165 SYSCTL_INT(_net_inet6_ip6, OID_AUTO, ip6_p2p_debug, CTLFLAG_RW | CTLFLAG_LOCKED,
166     &ip6_p2p_debug, 0,
167     "Enable more instrumentation for IPv6 P2P use-case");
168 #endif
169 
170 /*
171  * Obtain a link-layer source cache entry for the sender.
172  *
173  * NOTE: This is currently only for ND6/Ethernet.
174  */
175 void
nd6_llreach_alloc(struct rtentry * rt,struct ifnet * ifp,void * addr,unsigned int alen,boolean_t solicited)176 nd6_llreach_alloc(struct rtentry *rt, struct ifnet *ifp, void *addr,
177     unsigned int alen, boolean_t solicited)
178 {
179 	struct llinfo_nd6 *ln = rt->rt_llinfo;
180 
181 	if (nd6_llreach_base != 0 &&
182 	    (ln->ln_expire != 0 || (ifp->if_eflags & IFEF_IPV6_ND6ALT) != 0) &&
183 	    !(rt->rt_ifp->if_flags & IFF_LOOPBACK) &&
184 	    ifp->if_addrlen == IF_LLREACH_MAXLEN &&     /* Ethernet */
185 	    alen == ifp->if_addrlen) {
186 		struct if_llreach *lr;
187 		const char *why = NULL, *type = "";
188 
189 		/* Become a regular mutex, just in case */
190 		RT_CONVERT_LOCK(rt);
191 
192 		if ((lr = ln->ln_llreach) != NULL) {
193 			type = (solicited ? "ND6 advertisement" :
194 			    "ND6 unsolicited announcement");
195 			/*
196 			 * If target has changed, create a new record;
197 			 * otherwise keep existing record.
198 			 */
199 			IFLR_LOCK(lr);
200 			if (bcmp(addr, lr->lr_key.addr, alen) != 0) {
201 				IFLR_UNLOCK(lr);
202 				/* Purge any link-layer info caching */
203 				VERIFY(rt->rt_llinfo_purge != NULL);
204 				rt->rt_llinfo_purge(rt);
205 				lr = NULL;
206 				why = " for different target HW address; "
207 				    "using new llreach record";
208 			} else {
209 				lr->lr_probes = 0;      /* reset probe count */
210 				IFLR_UNLOCK(lr);
211 				if (solicited) {
212 					why = " for same target HW address; "
213 					    "keeping existing llreach record";
214 				}
215 			}
216 		}
217 
218 		if (lr == NULL) {
219 			lr = ln->ln_llreach = ifnet_llreach_alloc(ifp,
220 			    ETHERTYPE_IPV6, addr, alen, nd6_llreach_base);
221 			if (lr != NULL) {
222 				lr->lr_probes = 0;      /* reset probe count */
223 				if (why == NULL) {
224 					why = "creating new llreach record";
225 				}
226 			}
227 		}
228 
229 		if (nd6_debug && lr != NULL && why != NULL) {
230 			char tmp[MAX_IPv6_STR_LEN];
231 
232 			nd6log(debug, "%s: %s%s for %s\n", if_name(ifp),
233 			    type, why, inet_ntop(AF_INET6,
234 			    &SIN6(rt_key(rt))->sin6_addr, tmp, sizeof(tmp)));
235 		}
236 	}
237 }
238 
239 void
nd6_llreach_use(struct llinfo_nd6 * ln)240 nd6_llreach_use(struct llinfo_nd6 *ln)
241 {
242 	if (ln->ln_llreach != NULL) {
243 		ln->ln_lastused = net_uptime();
244 	}
245 }
246 
247 /*
248  * Input a Neighbor Solicitation Message.
249  *
250  * Based on RFC 4861
251  * Based on RFC 4862 (duplicate address detection)
252  */
253 void
nd6_ns_input(struct mbuf * m,int off,int icmp6len)254 nd6_ns_input(
255 	struct mbuf *m,
256 	int off,
257 	int icmp6len)
258 {
259 	struct ifnet *ifp = m->m_pkthdr.rcvif;
260 	struct ip6_hdr *ip6 = mtod(m, struct ip6_hdr *);
261 	struct nd_neighbor_solicit *nd_ns = NULL;
262 	struct in6_addr saddr6 = ip6->ip6_src;
263 	struct in6_addr daddr6 = ip6->ip6_dst;
264 	uint32_t saddr_ifscope = IN6_IS_SCOPE_EMBED(&saddr6) ? ip6_input_getsrcifscope(m) : IFSCOPE_NONE;
265 	struct in6_addr taddr6 = {};
266 	struct in6_addr myaddr6 = {};
267 	uint32_t myaddr_ifscope = IFSCOPE_NONE;
268 	char *lladdr = NULL;
269 	struct ifaddr *ifa = NULL;
270 	int lladdrlen = 0;
271 	int anycast = 0, proxy = 0, dadprogress = 0;
272 	int tlladdr = 0;
273 	union nd_opts ndopts = {};
274 	struct sockaddr_dl proxydl = {};
275 	boolean_t advrouter = FALSE;
276 	boolean_t is_dad_probe = FALSE;
277 	int oflgclr = 0;
278 	uint32_t taddr_ifscope;
279 
280 	/* Expect 32-bit aligned data pointer on strict-align platforms */
281 	MBUF_STRICT_DATA_ALIGNMENT_CHECK_32(m);
282 
283 	IP6_EXTHDR_CHECK(m, off, icmp6len, return );
284 	ip6 = mtod(m, struct ip6_hdr *);
285 	nd_ns = (struct nd_neighbor_solicit *)((caddr_t)ip6 + off);
286 	m->m_pkthdr.pkt_flags |= PKTF_INET6_RESOLVE;
287 
288 	taddr6 = nd_ns->nd_ns_target;
289 	if (in6_setscope(&taddr6, ifp, &taddr_ifscope) != 0) {
290 		goto bad;
291 	}
292 
293 	if (ip6->ip6_hlim != IPV6_MAXHLIM) {
294 		nd6log(error,
295 		    "nd6_ns_input: invalid hlim (%d) from %s to %s on %s\n",
296 		    ip6->ip6_hlim, ip6_sprintf(&ip6->ip6_src),
297 		    ip6_sprintf(&ip6->ip6_dst), if_name(ifp));
298 		goto bad;
299 	}
300 
301 	is_dad_probe = IN6_IS_ADDR_UNSPECIFIED(&saddr6);
302 	if (is_dad_probe) {
303 		/* dst has to be a solicited node multicast address. */
304 		if (daddr6.s6_addr16[0] == IPV6_ADDR_INT16_MLL &&
305 		    /* don't check ifindex portion */
306 		    daddr6.s6_addr32[1] == 0 &&
307 		    daddr6.s6_addr32[2] == IPV6_ADDR_INT32_ONE &&
308 		    daddr6.s6_addr8[12] == 0xff) {
309 			; /* good */
310 		} else {
311 			nd6log(info, "nd6_ns_input: bad DAD packet "
312 			    "(wrong ip6 dst)\n");
313 			goto bad;
314 		}
315 	} else if (!nd6_onlink_ns_rfc4861) {
316 		struct sockaddr_in6 src_sa6;
317 
318 		/*
319 		 * According to recent IETF discussions, it is not a good idea
320 		 * to accept a NS from an address which would not be deemed
321 		 * to be a neighbor otherwise.  This point is expected to be
322 		 * clarified in future revisions of the specification.
323 		 */
324 		bzero(&src_sa6, sizeof(src_sa6));
325 		src_sa6.sin6_family = AF_INET6;
326 		src_sa6.sin6_len = sizeof(src_sa6);
327 		src_sa6.sin6_addr = saddr6;
328 		if (!in6_embedded_scope) {
329 			src_sa6.sin6_scope_id = saddr_ifscope;
330 		}
331 		if (!nd6_is_addr_neighbor(&src_sa6, ifp, 0)) {
332 			nd6log(info, "nd6_ns_input: "
333 			    "NS packet from non-neighbor\n");
334 			goto bad;
335 		}
336 	}
337 
338 	if (IN6_IS_ADDR_MULTICAST(&taddr6)) {
339 		nd6log(info, "nd6_ns_input: bad NS target (multicast)\n");
340 		goto bad;
341 	}
342 
343 	icmp6len -= sizeof(*nd_ns);
344 	nd6_option_init(nd_ns + 1, icmp6len, &ndopts);
345 	if (nd6_options(&ndopts) < 0) {
346 		nd6log(info,
347 		    "nd6_ns_input: invalid ND option, ignored\n");
348 		/* nd6_options have incremented stats */
349 		goto freeit;
350 	}
351 
352 	if (ndopts.nd_opts_src_lladdr) {
353 		lladdr = (char *)(ndopts.nd_opts_src_lladdr + 1);
354 		lladdrlen = ndopts.nd_opts_src_lladdr->nd_opt_len << 3;
355 	}
356 
357 	if (is_dad_probe && lladdr) {
358 		nd6log(info, "nd6_ns_input: bad DAD packet "
359 		    "(link-layer address option)\n");
360 		goto bad;
361 	}
362 
363 	/*
364 	 * Attaching target link-layer address to the NA?
365 	 * (RFC 2461 7.2.4)
366 	 *
367 	 * NS IP dst is unicast/anycast			MUST NOT add
368 	 * NS IP dst is solicited-node multicast	MUST add
369 	 *
370 	 * In implementation, we add target link-layer address by default.
371 	 * We do not add one in MUST NOT cases.
372 	 */
373 	if (!IN6_IS_ADDR_MULTICAST(&daddr6)) {
374 		tlladdr = 0;
375 	} else {
376 		tlladdr = 1;
377 	}
378 
379 	/*
380 	 * Target address (taddr6) must be either:
381 	 * (1) Valid unicast/anycast address for my receiving interface,
382 	 * (2) Unicast address for which I'm offering proxy service, or
383 	 * (3) "tentative" or "optimistic" address [DAD is in progress].
384 	 */
385 	/* (1) and (3) check. */
386 	ifa = (struct ifaddr *)in6ifa_ifpwithaddr(ifp, &taddr6);
387 
388 	/* (2) check. */
389 	if (ifa == NULL) {
390 		struct rtentry *rt;
391 		struct sockaddr_in6 tsin6;
392 
393 		bzero(&tsin6, sizeof tsin6);
394 		tsin6.sin6_len = sizeof(struct sockaddr_in6);
395 		tsin6.sin6_family = AF_INET6;
396 		tsin6.sin6_addr = taddr6;
397 
398 		rt = rtalloc1_scoped((struct sockaddr *)&tsin6, 0, 0,
399 		    ifp->if_index);
400 
401 		if (rt != NULL) {
402 			RT_LOCK(rt);
403 			if ((rt->rt_flags & RTF_ANNOUNCE) != 0 &&
404 			    rt->rt_gateway->sa_family == AF_LINK) {
405 				/*
406 				 * proxy NDP for single entry
407 				 */
408 				ifa = (struct ifaddr *)in6ifa_ifpforlinklocal(
409 					ifp, IN6_IFF_NOTREADY | IN6_IFF_ANYCAST);
410 				if (ifa) {
411 					proxy = 1;
412 					proxydl = *SDL(rt->rt_gateway);
413 				}
414 			}
415 			RT_UNLOCK(rt);
416 			rtfree(rt);
417 		}
418 	}
419 	if (ifa == NULL && ip6_forwarding && nd6_prproxy) {
420 		/*
421 		 * Is the target address part of the prefix that is being
422 		 * proxied and installed on another interface?
423 		 */
424 		ifa = (struct ifaddr *)in6ifa_prproxyaddr(&taddr6, taddr_ifscope);
425 	}
426 	if (ifa == NULL) {
427 		/*
428 		 * We've got an NS packet, and we don't have that address
429 		 * assigned for us.  We MUST silently ignore it on this
430 		 * interface, c.f. RFC 4861 7.2.3.
431 		 *
432 		 * Forwarding associated with NDPRF_PRPROXY may apply.
433 		 */
434 		if (ip6_forwarding && nd6_prproxy) {
435 			nd6_prproxy_ns_input(ifp, &saddr6, lladdr,
436 			    lladdrlen, &daddr6, &taddr6,
437 			    (ndopts.nd_opts_nonce == NULL) ? NULL :
438 			    ndopts.nd_opts_nonce->nd_opt_nonce);
439 		}
440 		goto freeit;
441 	}
442 	IFA_LOCK(ifa);
443 	myaddr6 = *IFA_IN6(ifa);
444 	myaddr_ifscope = IFA_SIN6_SCOPE(ifa);
445 	anycast = ((struct in6_ifaddr *)ifa)->ia6_flags & IN6_IFF_ANYCAST;
446 	dadprogress =
447 	    ((struct in6_ifaddr *)ifa)->ia6_flags & IN6_IFF_DADPROGRESS;
448 	if (((struct in6_ifaddr *)ifa)->ia6_flags & IN6_IFF_DUPLICATED) {
449 		IFA_UNLOCK(ifa);
450 		goto freeit;
451 	}
452 	IFA_UNLOCK(ifa);
453 
454 	if (lladdr && ((ifp->if_addrlen + 2 + 7) & ~7) != lladdrlen) {
455 		nd6log(info,
456 		    "nd6_ns_input: lladdrlen mismatch for %s "
457 		    "(if %d, NS packet %d)\n",
458 		    ip6_sprintf(&taddr6), ifp->if_addrlen, lladdrlen - 2);
459 		goto bad;
460 	}
461 
462 	if (in6_are_addr_equal_scoped(&myaddr6, &saddr6, myaddr_ifscope, saddr_ifscope)) {
463 		nd6log(info,
464 		    "nd6_ns_input: duplicate IP6 address %s\n",
465 		    ip6_sprintf(&saddr6));
466 		goto freeit;
467 	}
468 
469 	/*
470 	 * We have neighbor solicitation packet, with target address equals to
471 	 * one of my DAD in-progress addresses.
472 	 *
473 	 * src addr	how to process?
474 	 * ---		---
475 	 * multicast	of course, invalid (rejected in ip6_input)
476 	 * unicast	somebody is doing address resolution
477 	 * unspec	dup address detection
478 	 *
479 	 * The processing is defined in the "draft standard" RFC 4862 (and by
480 	 * RFC 4429, which is a "proposed standard" update to its obsolete
481 	 * predecessor, RFC 2462)  The reason optimistic DAD is not included
482 	 * in RFC 4862 is entirely due to IETF procedural considerations.
483 	 */
484 	if (dadprogress) {
485 		/*
486 		 * If source address is unspecified address, it is for
487 		 * duplicate address detection.
488 		 *
489 		 * If not, the packet is for addess resolution;
490 		 * silently ignore it when not optimistic
491 		 *
492 		 * Per RFC 4429 the reply for an optimistic address must
493 		 * have the Override flag cleared
494 		 */
495 		if (!is_dad_probe && (dadprogress & IN6_IFF_OPTIMISTIC) != 0) {
496 			oflgclr = 1;
497 		} else {
498 			if (is_dad_probe) {
499 				nd6_dad_ns_input(ifa, lladdr, lladdrlen, ndopts.nd_opts_nonce);
500 			}
501 
502 			goto freeit;
503 		}
504 	}
505 
506 	/* Are we an advertising router on this interface? */
507 	advrouter = (ifp->if_ipv6_router_mode != IPV6_ROUTER_MODE_DISABLED);
508 
509 	/*
510 	 * If the source address is unspecified address, entries must not
511 	 * be created or updated.
512 	 * It looks that sender is performing DAD.  If I'm using the address,
513 	 * and it's a "preferred" address, i.e. not optimistic, then output NA
514 	 * toward all-node multicast address, to tell the sender that I'm using
515 	 * the address.
516 	 * S bit ("solicited") must be zero.
517 	 */
518 	if (is_dad_probe) {
519 		saddr6 = in6addr_linklocal_allnodes;
520 		if (in6_setscope(&saddr6, ifp, NULL) != 0) {
521 			goto bad;
522 		}
523 		if ((dadprogress & IN6_IFF_OPTIMISTIC) == 0) {
524 			nd6_na_output(ifp, &saddr6, &taddr6,
525 			    ((anycast || proxy || !tlladdr) ? 0 :
526 			    ND_NA_FLAG_OVERRIDE) | (advrouter ?
527 			    ND_NA_FLAG_ROUTER : 0), tlladdr, proxy ?
528 			    (struct sockaddr *)&proxydl : NULL);
529 		}
530 		goto freeit;
531 	}
532 
533 	nd6_cache_lladdr(ifp, &saddr6, lladdr, lladdrlen,
534 	    ND_NEIGHBOR_SOLICIT, 0, NULL);
535 
536 	nd6_na_output(ifp, &saddr6, &taddr6,
537 	    ((anycast || proxy || !tlladdr || oflgclr) ? 0 : ND_NA_FLAG_OVERRIDE) |
538 	    (advrouter ? ND_NA_FLAG_ROUTER : 0) | ND_NA_FLAG_SOLICITED,
539 	    tlladdr, proxy ? (struct sockaddr *)&proxydl : NULL);
540 freeit:
541 	m_freem(m);
542 	if (ifa != NULL) {
543 		IFA_REMREF(ifa);
544 	}
545 	return;
546 
547 bad:
548 	nd6log(error, "nd6_ns_input: src=%s\n", ip6_sprintf(&saddr6));
549 	nd6log(error, "nd6_ns_input: dst=%s\n", ip6_sprintf(&daddr6));
550 	nd6log(error, "nd6_ns_input: tgt=%s\n", ip6_sprintf(&taddr6));
551 	icmp6stat.icp6s_badns++;
552 	m_freem(m);
553 	if (ifa != NULL) {
554 		IFA_REMREF(ifa);
555 	}
556 }
557 
558 /*
559  * Output a Neighbor Solicitation Message. Caller specifies:
560  *	- ICMP6 header source IP6 address
561  *	- ND6 header target IP6 address
562  *	- ND6 header source datalink address
563  *
564  * Based on RFC 4861
565  * Based on RFC 4862 (duplicate address detection)
566  * Based on RFC 4429 (optimistic duplicate address detection)
567  *
568  * Caller must bump up ln->ln_rt refcnt to make sure 'ln' doesn't go
569  * away if there is a llinfo_nd6 passed in.
570  */
571 void
nd6_ns_output(struct ifnet * ifp,const struct in6_addr * daddr6,const struct in6_addr * taddr6,struct llinfo_nd6 * ln,uint8_t * nonce)572 nd6_ns_output(
573 	struct ifnet *ifp,
574 	const struct in6_addr *daddr6,
575 	const struct in6_addr *taddr6,
576 	struct llinfo_nd6 *ln,  /* for source address determination */
577 	uint8_t *nonce) /* duplicated address detection */
578 {
579 	struct mbuf *m;
580 	struct ip6_hdr *ip6;
581 	struct nd_neighbor_solicit *nd_ns;
582 	struct in6_ifaddr *ia = NULL;
583 	struct in6_addr *src, src_in, src_storage;
584 	struct ip6_moptions *im6o = NULL;
585 	struct ifnet *outif = NULL;
586 	int icmp6len;
587 	int maxlen;
588 	int flags;
589 	caddr_t mac;
590 	struct route_in6 ro;
591 	struct ip6_out_args ip6oa;
592 	u_int32_t rtflags = 0;
593 	boolean_t is_optimistic = FALSE;
594 
595 	if ((ifp->if_eflags & IFEF_IPV6_ND6ALT) || IN6_IS_ADDR_MULTICAST(taddr6)) {
596 		return;
597 	}
598 
599 	bzero(&ro, sizeof(ro));
600 	bzero(&ip6oa, sizeof(ip6oa));
601 	ip6oa.ip6oa_boundif = ifp->if_index;
602 	ip6oa.ip6oa_flags = IP6OAF_SELECT_SRCIF | IP6OAF_BOUND_SRCADDR |
603 	    IP6OAF_AWDL_UNRESTRICTED | IP6OAF_INTCOPROC_ALLOWED;
604 	ip6oa.ip6oa_sotc = SO_TC_UNSPEC;
605 	ip6oa.ip6oa_netsvctype = _NET_SERVICE_TYPE_UNSPEC;
606 
607 	ip6oa.ip6oa_flags |= IP6OAF_BOUND_IF;
608 
609 	/* estimate the size of message */
610 	maxlen = sizeof(*ip6) + sizeof(*nd_ns);
611 	maxlen += (sizeof(struct nd_opt_hdr) + ifp->if_addrlen + 7) & ~7;
612 	if (max_linkhdr + maxlen >= MCLBYTES) {
613 #if DIAGNOSTIC
614 		printf("nd6_ns_output: max_linkhdr + maxlen >= MCLBYTES "
615 		    "(%d + %d > %d)\n", max_linkhdr, maxlen, MCLBYTES);
616 #endif
617 		return;
618 	}
619 
620 	MGETHDR(m, M_DONTWAIT, MT_DATA);        /* XXXMAC: mac_create_mbuf_linklayer() probably */
621 	if (m && max_linkhdr + maxlen >= MHLEN) {
622 		MCLGET(m, M_DONTWAIT);
623 		if ((m->m_flags & M_EXT) == 0) {
624 			m_free(m);
625 			m = NULL;
626 		}
627 	}
628 	if (m == NULL) {
629 		return;
630 	}
631 	m->m_pkthdr.rcvif = NULL;
632 
633 	if (daddr6 == NULL || IN6_IS_ADDR_MULTICAST(daddr6)) {
634 		m->m_flags |= M_MCAST;
635 
636 		im6o = ip6_allocmoptions(Z_NOWAIT);
637 		if (im6o == NULL) {
638 			m_freem(m);
639 			return;
640 		}
641 
642 		im6o->im6o_multicast_ifp = ifp;
643 		im6o->im6o_multicast_hlim = IPV6_MAXHLIM;
644 		im6o->im6o_multicast_loop = 0;
645 	}
646 
647 	icmp6len = sizeof(*nd_ns);
648 	m->m_pkthdr.len = m->m_len = sizeof(*ip6) + icmp6len;
649 	m->m_data += max_linkhdr;       /* or MH_ALIGN() equivalent? */
650 
651 	/* fill neighbor solicitation packet */
652 	ip6 = mtod(m, struct ip6_hdr *);
653 	ip6->ip6_flow = 0;
654 	ip6->ip6_vfc &= ~IPV6_VERSION_MASK;
655 	ip6->ip6_vfc |= IPV6_VERSION;
656 	/* ip6->ip6_plen will be set later */
657 	ip6->ip6_nxt = IPPROTO_ICMPV6;
658 	ip6->ip6_hlim = IPV6_MAXHLIM;
659 	if (daddr6) {
660 		ip6->ip6_dst = *daddr6;
661 		ip6_output_setdstifscope(m, ifp->if_index, NULL);
662 	} else {
663 		ip6->ip6_dst.s6_addr16[0] = IPV6_ADDR_INT16_MLL;
664 		ip6->ip6_dst.s6_addr16[1] = 0;
665 		ip6->ip6_dst.s6_addr32[1] = 0;
666 		ip6->ip6_dst.s6_addr32[2] = IPV6_ADDR_INT32_ONE;
667 		ip6->ip6_dst.s6_addr32[3] = taddr6->s6_addr32[3];
668 		ip6->ip6_dst.s6_addr8[12] = 0xff;
669 		ip6_output_setdstifscope(m, ifp->if_index, NULL);
670 		if (in6_setscope(&ip6->ip6_dst, ifp, NULL) != 0) {
671 			goto bad;
672 		}
673 	}
674 	if (nonce == NULL) {
675 		/*
676 		 * RFC2461 7.2.2:
677 		 * "If the source address of the packet prompting the
678 		 * solicitation is the same as one of the addresses assigned
679 		 * to the outgoing interface, that address SHOULD be placed
680 		 * in the IP Source Address of the outgoing solicitation.
681 		 * Otherwise, any one of the addresses assigned to the
682 		 * interface should be used."
683 		 *
684 		 * We use the source address for the prompting packet
685 		 * (saddr6), if:
686 		 * - saddr6 is given from the caller (by giving "ln"), and
687 		 * - saddr6 belongs to the outgoing interface.
688 		 * Otherwise, we perform the source address selection as usual.
689 		 */
690 		struct ip6_hdr *hip6;           /* hold ip6 */
691 		struct in6_addr *hsrc = NULL;
692 
693 		/* Caller holds ref on this route */
694 		if (ln != NULL) {
695 			RT_LOCK(ln->ln_rt);
696 			/*
697 			 * assuming every packet in ln_hold has the same IP
698 			 * header
699 			 */
700 			if (ln->ln_hold != NULL) {
701 				hip6 = mtod(ln->ln_hold, struct ip6_hdr *);
702 				/* XXX pullup? */
703 				if (sizeof(*hip6) < ln->ln_hold->m_len) {
704 					hsrc = &hip6->ip6_src;
705 				} else {
706 					hsrc = NULL;
707 				}
708 			}
709 			/* Update probe count, if applicable */
710 			if (ln->ln_llreach != NULL) {
711 				IFLR_LOCK_SPIN(ln->ln_llreach);
712 				ln->ln_llreach->lr_probes++;
713 				IFLR_UNLOCK(ln->ln_llreach);
714 			}
715 			rtflags = ln->ln_rt->rt_flags;
716 			RT_UNLOCK(ln->ln_rt);
717 		}
718 		if (hsrc != NULL && (ia = in6ifa_ifpwithaddr(ifp, hsrc)) &&
719 		    (ia->ia6_flags & IN6_IFF_OPTIMISTIC) == 0) {
720 			src = hsrc;
721 		} else {
722 			int error;
723 			struct sockaddr_in6 dst_sa;
724 
725 			bzero(&dst_sa, sizeof(dst_sa));
726 			dst_sa.sin6_family = AF_INET6;
727 			dst_sa.sin6_len = sizeof(dst_sa);
728 			dst_sa.sin6_addr = ip6->ip6_dst;
729 
730 			src = in6_selectsrc(&dst_sa, NULL,
731 			    NULL, &ro, NULL, &src_storage, ip6oa.ip6oa_boundif,
732 			    &error);
733 			if (src == NULL) {
734 				nd6log(debug,
735 				    "nd6_ns_output: source can't be "
736 				    "determined: dst=%s, error=%d\n",
737 				    ip6_sprintf(&dst_sa.sin6_addr),
738 				    error);
739 				goto bad;
740 			}
741 
742 			if (ia != NULL) {
743 				IFA_REMREF(&ia->ia_ifa);
744 				ia = NULL;
745 			}
746 			/*
747 			 * RFC 4429 section 3.2:
748 			 * When a node has a unicast packet to send
749 			 * from an Optimistic Address to a neighbor,
750 			 * but does not know the neighbor's link-layer
751 			 * address, it MUST NOT perform Address
752 			 * Resolution.
753 			 */
754 			ia = in6ifa_ifpwithaddr(ifp, src);
755 			if (ia == NULL) {
756 				nd6log(debug,
757 				    "nd6_ns_output: no preferred source "
758 				    "available: dst=%s\n",
759 				    ip6_sprintf(&dst_sa.sin6_addr));
760 				goto bad;
761 			}
762 			if (ia->ia6_flags & IN6_IFF_OPTIMISTIC) {
763 				is_optimistic = TRUE;
764 				nd6log(debug,
765 				    "nd6_ns_output: preferred source "
766 				    "available is optimistic: dst=%s\n",
767 				    ip6_sprintf(&dst_sa.sin6_addr));
768 			}
769 		}
770 	} else {
771 		/*
772 		 * Source address for DAD packet must always be IPv6
773 		 * unspecified address. (0::0)
774 		 * We actually don't have to 0-clear the address (we did it
775 		 * above), but we do so here explicitly to make the intention
776 		 * clearer.
777 		 */
778 		bzero(&src_in, sizeof(src_in));
779 		src = &src_in;
780 		ip6oa.ip6oa_flags &= ~IP6OAF_BOUND_SRCADDR;
781 	}
782 	ip6->ip6_src = *src;
783 	ip6_output_setsrcifscope(m, ifp->if_index, ia);
784 	nd_ns = (struct nd_neighbor_solicit *)(ip6 + 1);
785 	nd_ns->nd_ns_type = ND_NEIGHBOR_SOLICIT;
786 	nd_ns->nd_ns_code = 0;
787 	nd_ns->nd_ns_reserved = 0;
788 	nd_ns->nd_ns_target = *taddr6;
789 	in6_clearscope(&nd_ns->nd_ns_target); /* XXX */
790 
791 	/*
792 	 * Add source link-layer address option.
793 	 *
794 	 *				spec		implementation
795 	 *				---		---
796 	 * DAD packet			MUST NOT	do not add the option
797 	 * Source is optimistic         MUST NOT        do not add the option
798 	 * there's no link layer address:
799 	 *				impossible	do not add the option
800 	 * there's link layer address:
801 	 *	Multicast NS		MUST add one	add the option
802 	 *	Unicast NS		SHOULD add one	add the option
803 	 *
804 	 * XXX We deviate from RFC 4429 and still use optimistic DAD as source
805 	 * for address resolution. However to ensure that we do not interfere
806 	 * with neighbor cache entries of other neighbors, we MUST ensure
807 	 * that SLLAO is not sent. Also note, sending multicast NS without SLLAO
808 	 * is also a deviation from RFC 4861.
809 	 */
810 	if (nonce == NULL && (mac = nd6_ifptomac(ifp)) && !is_optimistic) {
811 		int optlen = sizeof(struct nd_opt_hdr) + ifp->if_addrlen;
812 		struct nd_opt_hdr *nd_opt = (struct nd_opt_hdr *)(nd_ns + 1);
813 		/* 8 byte alignments... */
814 		optlen = (optlen + 7) & ~7;
815 
816 		m->m_pkthdr.len += optlen;
817 		m->m_len += optlen;
818 		icmp6len += optlen;
819 		bzero((caddr_t)nd_opt, optlen);
820 		nd_opt->nd_opt_type = ND_OPT_SOURCE_LINKADDR;
821 		nd_opt->nd_opt_len = (uint8_t)(optlen >> 3);
822 		bcopy(mac, (caddr_t)(nd_opt + 1), ifp->if_addrlen);
823 	}
824 	/*
825 	 * Add a Nonce option (RFC 3971) to detect looped back NS messages.
826 	 * This behavior is documented as Enhanced Duplicate Address
827 	 * Detection in draft-ietf-6man-enhanced-dad-13.
828 	 * net.inet6.ip6.dad_enhanced=0 disables this.
829 	 */
830 	if (dad_enhanced != 0 && nonce != NULL && !(ifp->if_flags & IFF_POINTOPOINT)) {
831 		int optlen = sizeof(struct nd_opt_hdr) + ND_OPT_NONCE_LEN;
832 		struct nd_opt_hdr *nd_opt = (struct nd_opt_hdr *)(nd_ns + 1);
833 		/* 8-byte alignment is required. */
834 		optlen = (optlen + 7) & ~7;
835 
836 		m->m_pkthdr.len += optlen;
837 		m->m_len += optlen;
838 		icmp6len += optlen;
839 		bzero((caddr_t)nd_opt, optlen);
840 		nd_opt->nd_opt_type = ND_OPT_NONCE;
841 		nd_opt->nd_opt_len = (uint8_t)(optlen >> 3);
842 		bcopy(nonce, (caddr_t)(nd_opt + 1), ND_OPT_NONCE_LEN);
843 	}
844 	ip6->ip6_plen = htons((u_short)icmp6len);
845 	nd_ns->nd_ns_cksum = 0;
846 	nd_ns->nd_ns_cksum
847 	        = in6_cksum(m, IPPROTO_ICMPV6, sizeof(*ip6), icmp6len);
848 
849 	flags = nonce ? IPV6_UNSPECSRC : 0;
850 	flags |= IPV6_OUTARGS;
851 
852 	/*
853 	 * PKTF_{INET,INET6}_RESOLVE_RTR are mutually exclusive, so make
854 	 * sure only one of them is set (just in case.)
855 	 */
856 	m->m_pkthdr.pkt_flags &= ~(PKTF_INET_RESOLVE | PKTF_RESOLVE_RTR);
857 	m->m_pkthdr.pkt_flags |= PKTF_INET6_RESOLVE;
858 	/*
859 	 * If this is a NS for resolving the (default) router, mark
860 	 * the packet accordingly so that the driver can find out,
861 	 * in case it needs to perform driver-specific action(s).
862 	 */
863 	if (rtflags & RTF_ROUTER) {
864 		m->m_pkthdr.pkt_flags |= PKTF_RESOLVE_RTR;
865 	}
866 
867 	if (ifp->if_eflags & IFEF_TXSTART) {
868 		/*
869 		 * Use control service class if the interface
870 		 * supports transmit-start model
871 		 */
872 		(void) m_set_service_class(m, MBUF_SC_CTL);
873 	}
874 
875 	ip6oa.ip6oa_flags |= IP6OAF_SKIP_PF;
876 	ip6oa.ip6oa_flags |= IP6OAF_DONT_FRAG;
877 	ip6_output(m, NULL, NULL, flags, im6o, &outif, &ip6oa);
878 	if (outif) {
879 		icmp6_ifstat_inc(outif, ifs6_out_msg);
880 		icmp6_ifstat_inc(outif, ifs6_out_neighborsolicit);
881 		ifnet_release(outif);
882 	}
883 	icmp6stat.icp6s_outhist[ND_NEIGHBOR_SOLICIT]++;
884 
885 exit:
886 	if (im6o != NULL) {
887 		IM6O_REMREF(im6o);
888 	}
889 
890 	ROUTE_RELEASE(&ro);     /* we don't cache this route. */
891 
892 	if (ia != NULL) {
893 		IFA_REMREF(&ia->ia_ifa);
894 	}
895 	return;
896 
897 bad:
898 	m_freem(m);
899 	goto exit;
900 }
901 
902 /*
903  * Neighbor advertisement input handling.
904  *
905  * Based on RFC 4861
906  * Based on RFC 4862 (duplicate address detection)
907  *
908  * the following items are not implemented yet:
909  * - anycast advertisement delay rule (RFC 4861 7.2.7, SHOULD)
910  * - proxy advertisement delay rule (RFC 4861 7.2.8, last paragraph, "should")
911  */
912 void
nd6_na_input(struct mbuf * m,int off,int icmp6len)913 nd6_na_input(struct mbuf *m, int off, int icmp6len)
914 {
915 	struct ifnet *ifp = m->m_pkthdr.rcvif;
916 	struct ip6_hdr *ip6 = mtod(m, struct ip6_hdr *);
917 	struct nd_neighbor_advert *nd_na;
918 	struct in6_addr saddr6 = ip6->ip6_src;
919 	struct in6_addr daddr6 = ip6->ip6_dst;
920 	struct in6_addr taddr6;
921 	int flags;
922 	int is_router;
923 	int is_solicited;
924 	int is_override;
925 	char *lladdr = NULL;
926 	int lladdrlen = 0;
927 	struct llinfo_nd6 *ln;
928 	struct rtentry *rt;
929 	struct sockaddr_dl *sdl;
930 	union nd_opts ndopts;
931 	uint64_t timenow;
932 	bool send_nc_alive_kev = false;
933 
934 	if ((ifp->if_eflags & IFEF_IPV6_ND6ALT) != 0) {
935 		nd6log(info, "nd6_na_input: on ND6ALT interface!\n");
936 		goto freeit;
937 	}
938 
939 	/* Expect 32-bit aligned data pointer on strict-align platforms */
940 	MBUF_STRICT_DATA_ALIGNMENT_CHECK_32(m);
941 
942 	if (ip6->ip6_hlim != IPV6_MAXHLIM) {
943 		nd6log(error,
944 		    "nd6_na_input: invalid hlim (%d) from %s to %s on %s\n",
945 		    ip6->ip6_hlim, ip6_sprintf(&ip6->ip6_src),
946 		    ip6_sprintf(&ip6->ip6_dst), if_name(ifp));
947 		goto bad;
948 	}
949 
950 	IP6_EXTHDR_CHECK(m, off, icmp6len, return );
951 	ip6 = mtod(m, struct ip6_hdr *);
952 	nd_na = (struct nd_neighbor_advert *)((caddr_t)ip6 + off);
953 	m->m_pkthdr.pkt_flags |= PKTF_INET6_RESOLVE;
954 
955 	flags = nd_na->nd_na_flags_reserved;
956 	is_router = ((flags & ND_NA_FLAG_ROUTER) != 0);
957 	is_solicited = ((flags & ND_NA_FLAG_SOLICITED) != 0);
958 	is_override = ((flags & ND_NA_FLAG_OVERRIDE) != 0);
959 
960 	taddr6 = nd_na->nd_na_target;
961 	if (in6_setscope(&taddr6, ifp, NULL)) {
962 		goto bad;       /* XXX: impossible */
963 	}
964 	if (IN6_IS_ADDR_MULTICAST(&taddr6)) {
965 		nd6log(error,
966 		    "nd6_na_input: invalid target address %s\n",
967 		    ip6_sprintf(&taddr6));
968 		goto bad;
969 	}
970 	if (IN6_IS_ADDR_MULTICAST(&daddr6)) {
971 		if (is_solicited) {
972 			nd6log(error,
973 			    "nd6_na_input: a solicited adv is multicasted\n");
974 			goto bad;
975 		}
976 	}
977 
978 	icmp6len -= sizeof(*nd_na);
979 	nd6_option_init(nd_na + 1, icmp6len, &ndopts);
980 	if (nd6_options(&ndopts) < 0) {
981 		nd6log(info,
982 		    "nd6_na_input: invalid ND option, ignored\n");
983 		/* nd6_options have incremented stats */
984 		goto freeit;
985 	}
986 
987 	if (ndopts.nd_opts_tgt_lladdr) {
988 		lladdr = (char *)(ndopts.nd_opts_tgt_lladdr + 1);
989 		lladdrlen = ndopts.nd_opts_tgt_lladdr->nd_opt_len << 3;
990 
991 		if (((ifp->if_addrlen + 2 + 7) & ~7) != lladdrlen) {
992 			nd6log(info,
993 			    "nd6_na_input: lladdrlen mismatch for %s "
994 			    "(if %d, NA packet %d)\n",
995 			    ip6_sprintf(&taddr6), ifp->if_addrlen,
996 			    lladdrlen - 2);
997 			goto bad;
998 		}
999 	}
1000 
1001 	m = nd6_dad_na_input(m, ifp, &taddr6, lladdr, lladdrlen);
1002 	if (m == NULL) {
1003 		return;
1004 	}
1005 
1006 	/* Forwarding associated with NDPRF_PRPROXY may apply. */
1007 	if (ip6_forwarding && nd6_prproxy) {
1008 		nd6_prproxy_na_input(ifp, &saddr6, &daddr6, &taddr6, flags);
1009 	}
1010 
1011 	/*
1012 	 * If no neighbor cache entry is found, NA SHOULD silently be
1013 	 * discarded.  If we are forwarding (and Scoped Routing is in
1014 	 * effect), try to see if there is a neighbor cache entry on
1015 	 * another interface (in case we are doing prefix proxying.)
1016 	 */
1017 	if ((rt = nd6_lookup(&taddr6, 0, ifp, 0)) == NULL) {
1018 		if (!ip6_forwarding || !nd6_prproxy) {
1019 			goto freeit;
1020 		}
1021 
1022 		if ((rt = nd6_lookup(&taddr6, 0, NULL, 0)) == NULL) {
1023 			goto freeit;
1024 		}
1025 
1026 		RT_LOCK_ASSERT_HELD(rt);
1027 		if (rt->rt_ifp != ifp) {
1028 			/*
1029 			 * Purge any link-layer info caching.
1030 			 */
1031 			if (rt->rt_llinfo_purge != NULL) {
1032 				rt->rt_llinfo_purge(rt);
1033 			}
1034 
1035 			/* Adjust route ref count for the interfaces */
1036 			if (rt->rt_if_ref_fn != NULL) {
1037 				rt->rt_if_ref_fn(ifp, 1);
1038 				rt->rt_if_ref_fn(rt->rt_ifp, -1);
1039 			}
1040 
1041 			/* Change the interface when the existing route is on */
1042 			rt->rt_ifp = ifp;
1043 
1044 			/*
1045 			 * If rmx_mtu is not locked, update it
1046 			 * to the MTU used by the new interface.
1047 			 */
1048 			if (!(rt->rt_rmx.rmx_locks & RTV_MTU)) {
1049 				rt->rt_rmx.rmx_mtu = rt->rt_ifp->if_mtu;
1050 			}
1051 		}
1052 	}
1053 
1054 	RT_LOCK_ASSERT_HELD(rt);
1055 	if ((ln = rt->rt_llinfo) == NULL ||
1056 	    (sdl = SDL(rt->rt_gateway)) == NULL) {
1057 		RT_REMREF_LOCKED(rt);
1058 		RT_UNLOCK(rt);
1059 		goto freeit;
1060 	}
1061 
1062 	timenow = net_uptime();
1063 
1064 	if (ln->ln_state == ND6_LLINFO_INCOMPLETE) {
1065 		/*
1066 		 * If the link-layer has address, and no lladdr option came,
1067 		 * discard the packet.
1068 		 */
1069 		if (ifp->if_addrlen && !lladdr) {
1070 			RT_REMREF_LOCKED(rt);
1071 			RT_UNLOCK(rt);
1072 			goto freeit;
1073 		}
1074 
1075 		/*
1076 		 * Record link-layer address, and update the state.
1077 		 */
1078 		sdl->sdl_alen = ifp->if_addrlen;
1079 		bcopy(lladdr, LLADDR(sdl), ifp->if_addrlen);
1080 		if (is_solicited) {
1081 			send_nc_alive_kev = (rt->rt_flags & RTF_ROUTER) ? true : false;
1082 			ND6_CACHE_STATE_TRANSITION(ln, ND6_LLINFO_REACHABLE);
1083 			if (ln->ln_expire != 0) {
1084 				struct nd_ifinfo *ndi = NULL;
1085 
1086 				ndi = ND_IFINFO(rt->rt_ifp);
1087 				VERIFY(ndi != NULL && ndi->initialized);
1088 				lck_mtx_lock(&ndi->lock);
1089 				ln_setexpire(ln, timenow + ndi->reachable);
1090 				lck_mtx_unlock(&ndi->lock);
1091 				RT_UNLOCK(rt);
1092 				lck_mtx_lock(rnh_lock);
1093 				nd6_sched_timeout(NULL, NULL);
1094 				lck_mtx_unlock(rnh_lock);
1095 				RT_LOCK(rt);
1096 			}
1097 		} else {
1098 			ND6_CACHE_STATE_TRANSITION(ln, ND6_LLINFO_STALE);
1099 			ln_setexpire(ln, timenow + nd6_gctimer);
1100 		}
1101 
1102 
1103 		/*
1104 		 * Enqueue work item to invoke callback for this
1105 		 * route entry
1106 		 */
1107 		route_event_enqueue_nwk_wq_entry(rt, NULL,
1108 		    ROUTE_LLENTRY_RESOLVED, NULL, TRUE);
1109 
1110 		if ((ln->ln_router = (short)is_router) != 0) {
1111 			struct radix_node_head  *rnh = NULL;
1112 			struct route_event rt_ev;
1113 			route_event_init(&rt_ev, rt, NULL, ROUTE_LLENTRY_RESOLVED);
1114 			/*
1115 			 * This means a router's state has changed from
1116 			 * non-reachable to probably reachable, and might
1117 			 * affect the status of associated prefixes..
1118 			 * We already have a reference on rt. Don't need to
1119 			 * take one for the unlock/lock.
1120 			 */
1121 			RT_UNLOCK(rt);
1122 			lck_mtx_lock(rnh_lock);
1123 			rnh = rt_tables[AF_INET6];
1124 
1125 			if (rnh != NULL) {
1126 				(void) rnh->rnh_walktree(rnh, route_event_walktree,
1127 				    (void *)&rt_ev);
1128 			}
1129 			lck_mtx_unlock(rnh_lock);
1130 			lck_mtx_lock(nd6_mutex);
1131 			pfxlist_onlink_check();
1132 			lck_mtx_unlock(nd6_mutex);
1133 			RT_LOCK(rt);
1134 		}
1135 	} else {
1136 		int llchange = 0;
1137 
1138 		/*
1139 		 * Check if the link-layer address has changed or not.
1140 		 */
1141 		if (lladdr == NULL) {
1142 			llchange = 0;
1143 		} else {
1144 			if (sdl->sdl_alen) {
1145 				if (bcmp(lladdr, LLADDR(sdl), ifp->if_addrlen)) {
1146 					llchange = 1;
1147 				} else {
1148 					llchange = 0;
1149 				}
1150 			} else {
1151 				llchange = 1;
1152 			}
1153 		}
1154 
1155 		/*
1156 		 * This is VERY complex. Look at it with care.
1157 		 *
1158 		 * override solicit lladdr llchange	action
1159 		 *					(L: record lladdr)
1160 		 *
1161 		 *	0	0	n	--	(2c)
1162 		 *	0	0	y	n	(2b) L
1163 		 *	0	0	y	y	(1)    REACHABLE->STALE
1164 		 *	0	1	n	--	(2c)   *->REACHABLE
1165 		 *	0	1	y	n	(2b) L *->REACHABLE
1166 		 *	0	1	y	y	(1)    REACHABLE->STALE
1167 		 *	1	0	n	--	(2a)
1168 		 *	1	0	y	n	(2a) L
1169 		 *	1	0	y	y	(2a) L *->STALE
1170 		 *	1	1	n	--	(2a)   *->REACHABLE
1171 		 *	1	1	y	n	(2a) L *->REACHABLE
1172 		 *	1	1	y	y	(2a) L *->REACHABLE
1173 		 */
1174 		if (!is_override && (lladdr != NULL && llchange)) {  /* (1) */
1175 			/*
1176 			 * If state is REACHABLE, make it STALE.
1177 			 * no other updates should be done.
1178 			 */
1179 			if (ln->ln_state == ND6_LLINFO_REACHABLE) {
1180 				ND6_CACHE_STATE_TRANSITION(ln, ND6_LLINFO_STALE);
1181 				ln_setexpire(ln, timenow + nd6_gctimer);
1182 			}
1183 			RT_REMREF_LOCKED(rt);
1184 			RT_UNLOCK(rt);
1185 			goto freeit;
1186 		} else if (is_override                             /* (2a) */
1187 		    || (!is_override && (lladdr && !llchange))     /* (2b) */
1188 		    || !lladdr) {                                  /* (2c) */
1189 			/*
1190 			 * Update link-local address, if any.
1191 			 */
1192 			if (lladdr) {
1193 				sdl->sdl_alen = ifp->if_addrlen;
1194 				bcopy(lladdr, LLADDR(sdl), ifp->if_addrlen);
1195 			}
1196 
1197 			/*
1198 			 * If solicited, make the state REACHABLE.
1199 			 * If not solicited and the link-layer address was
1200 			 * changed, make it STALE.
1201 			 */
1202 			if (is_solicited) {
1203 				ND6_CACHE_STATE_TRANSITION(ln, ND6_LLINFO_REACHABLE);
1204 				if (ln->ln_expire != 0) {
1205 					struct nd_ifinfo *ndi = NULL;
1206 
1207 					ndi = ND_IFINFO(ifp);
1208 					VERIFY(ndi != NULL && ndi->initialized);
1209 					lck_mtx_lock(&ndi->lock);
1210 					ln_setexpire(ln,
1211 					    timenow + ndi->reachable);
1212 					lck_mtx_unlock(&ndi->lock);
1213 					RT_UNLOCK(rt);
1214 					lck_mtx_lock(rnh_lock);
1215 					nd6_sched_timeout(NULL, NULL);
1216 					lck_mtx_unlock(rnh_lock);
1217 					RT_LOCK(rt);
1218 				}
1219 			} else {
1220 				if (lladdr && llchange) {
1221 					ND6_CACHE_STATE_TRANSITION(ln, ND6_LLINFO_STALE);
1222 					ln_setexpire(ln, timenow + nd6_gctimer);
1223 				}
1224 			}
1225 
1226 			/*
1227 			 * XXX
1228 			 * The above is somewhat convoluted, for now just
1229 			 * issue a callback for LLENTRY changed.
1230 			 */
1231 			/* Enqueue work item to invoke callback for this route entry */
1232 			if (llchange) {
1233 				route_event_enqueue_nwk_wq_entry(rt, NULL,
1234 				    ROUTE_LLENTRY_CHANGED, NULL, TRUE);
1235 			}
1236 
1237 			/*
1238 			 * If the router's link-layer address has changed,
1239 			 * notify routes using this as gateway so they can
1240 			 * update any cached information.
1241 			 */
1242 			if (ln->ln_router && is_router && llchange) {
1243 				struct radix_node_head  *rnh = NULL;
1244 				struct route_event rt_ev;
1245 				route_event_init(&rt_ev, rt, NULL, ROUTE_LLENTRY_CHANGED);
1246 				/*
1247 				 * This means a router's state has changed from
1248 				 * non-reachable to probably reachable, and might
1249 				 * affect the status of associated prefixes..
1250 				 *
1251 				 * We already have a valid rt reference here.
1252 				 * We don't need to take another one for unlock/lock.
1253 				 */
1254 				RT_UNLOCK(rt);
1255 				lck_mtx_lock(rnh_lock);
1256 				rnh = rt_tables[AF_INET6];
1257 
1258 				if (rnh != NULL) {
1259 					(void) rnh->rnh_walktree(rnh, route_event_walktree,
1260 					    (void *)&rt_ev);
1261 				}
1262 				lck_mtx_unlock(rnh_lock);
1263 				RT_LOCK(rt);
1264 			}
1265 		}
1266 
1267 		if (ln->ln_router && !is_router) {
1268 			/*
1269 			 * The peer dropped the router flag.
1270 			 * Remove the sender from the Default Router List and
1271 			 * update the Destination Cache entries.
1272 			 */
1273 			struct nd_defrouter *dr;
1274 			struct in6_addr *in6;
1275 			struct ifnet *rt_ifp = rt->rt_ifp;
1276 
1277 			in6 = &((struct sockaddr_in6 *)
1278 			    (void *)rt_key(rt))->sin6_addr;
1279 
1280 			RT_UNLOCK(rt);
1281 			lck_mtx_lock(nd6_mutex);
1282 			/*
1283 			 * XXX Handle router lists for route information option
1284 			 * as well.
1285 			 */
1286 			dr = defrouter_lookup(NULL, in6, rt_ifp);
1287 			if (dr) {
1288 				TAILQ_REMOVE(&nd_defrouter_list, dr, dr_entry);
1289 				defrtrlist_del(dr, NULL);
1290 				NDDR_REMREF(dr);        /* remove list reference */
1291 				NDDR_REMREF(dr);
1292 				lck_mtx_unlock(nd6_mutex);
1293 			} else {
1294 				lck_mtx_unlock(nd6_mutex);
1295 				/*
1296 				 * Even if the neighbor is not in the
1297 				 * default router list, the neighbor
1298 				 * may be used as a next hop for some
1299 				 * destinations (e.g. redirect case).
1300 				 * So we must call rt6_flush explicitly.
1301 				 */
1302 				rt6_flush(&ip6->ip6_src, rt_ifp);
1303 			}
1304 			RT_LOCK(rt);
1305 		}
1306 		ln->ln_router = (short)is_router;
1307 	}
1308 
1309 	if (send_nc_alive_kev && (ifp->if_addrlen == IF_LLREACH_MAXLEN)) {
1310 		struct kev_msg ev_msg;
1311 		struct kev_nd6_ndalive nd6_ndalive;
1312 		bzero(&ev_msg, sizeof(ev_msg));
1313 		bzero(&nd6_ndalive, sizeof(nd6_ndalive));
1314 		ev_msg.vendor_code      = KEV_VENDOR_APPLE;
1315 		ev_msg.kev_class        = KEV_NETWORK_CLASS;
1316 		ev_msg.kev_subclass     = KEV_ND6_SUBCLASS;
1317 		ev_msg.event_code       = KEV_ND6_NDALIVE;
1318 
1319 		nd6_ndalive.link_data.if_family = ifp->if_family;
1320 		nd6_ndalive.link_data.if_unit = ifp->if_unit;
1321 		strlcpy(nd6_ndalive.link_data.if_name,
1322 		    ifp->if_name,
1323 		    sizeof(nd6_ndalive.link_data.if_name));
1324 		ev_msg.dv[0].data_ptr = &nd6_ndalive;
1325 		ev_msg.dv[0].data_length =
1326 		    sizeof(nd6_ndalive);
1327 		dlil_post_complete_msg(NULL, &ev_msg);
1328 	}
1329 
1330 	RT_LOCK_ASSERT_HELD(rt);
1331 	rt->rt_flags &= ~RTF_REJECT;
1332 
1333 	/* cache the gateway (sender HW) address */
1334 	nd6_llreach_alloc(rt, ifp, LLADDR(sdl), sdl->sdl_alen, TRUE);
1335 
1336 	/* update the llinfo, send a queued packet if there is one */
1337 	ln->ln_asked = 0;
1338 	if (ln->ln_hold != NULL) {
1339 		struct mbuf *m_hold, *m_hold_next;
1340 		struct sockaddr_in6 sin6;
1341 
1342 		rtkey_to_sa6(rt, &sin6);
1343 		/*
1344 		 * reset the ln_hold in advance, to explicitly
1345 		 * prevent a ln_hold lookup in nd6_output()
1346 		 * (wouldn't happen, though...)
1347 		 */
1348 		m_hold = ln->ln_hold;
1349 		ln->ln_hold = NULL;
1350 		for (; m_hold; m_hold = m_hold_next) {
1351 			m_hold_next = m_hold->m_nextpkt;
1352 			m_hold->m_nextpkt = NULL;
1353 			/*
1354 			 * we assume ifp is not a loopback here, so just set
1355 			 * the 2nd argument as the 1st one.
1356 			 */
1357 			RT_UNLOCK(rt);
1358 			nd6_output(ifp, ifp, m_hold, &sin6, rt, NULL);
1359 			RT_LOCK_SPIN(rt);
1360 		}
1361 	}
1362 	RT_REMREF_LOCKED(rt);
1363 	RT_UNLOCK(rt);
1364 	m_freem(m);
1365 	return;
1366 
1367 bad:
1368 	icmp6stat.icp6s_badna++;
1369 	/* fall through */
1370 freeit:
1371 	m_freem(m);
1372 	return;
1373 }
1374 
1375 /*
1376  * Neighbor advertisement output handling.
1377  *
1378  * Based on RFC 2461
1379  *
1380  * the following items are not implemented yet:
1381  * - proxy advertisement delay rule (RFC2461 7.2.8, last paragraph, SHOULD)
1382  * - anycast advertisement delay rule (RFC2461 7.2.7, SHOULD)
1383  *
1384  * tlladdr - 1 if include target link-layer address
1385  * sdl0 - sockaddr_dl (= proxy NA) or NULL
1386  */
1387 void
nd6_na_output(struct ifnet * ifp,const struct in6_addr * daddr6_0,const struct in6_addr * taddr6,uint32_t flags,int tlladdr,struct sockaddr * sdl0)1388 nd6_na_output(
1389 	struct ifnet *ifp,
1390 	const struct in6_addr *daddr6_0,
1391 	const struct in6_addr *taddr6,
1392 	uint32_t flags,
1393 	int tlladdr,            /* 1 if include target link-layer address */
1394 	struct sockaddr *sdl0)  /* sockaddr_dl (= proxy NA) or NULL */
1395 {
1396 	struct mbuf *m;
1397 	struct ip6_hdr *ip6;
1398 	struct nd_neighbor_advert *nd_na;
1399 	struct ip6_moptions *im6o = NULL;
1400 	caddr_t mac = NULL;
1401 	struct route_in6 ro;
1402 	struct in6_addr *src, src_storage, daddr6;
1403 	struct in6_ifaddr *ia;
1404 	struct sockaddr_in6 dst_sa;
1405 	int icmp6len, maxlen, error;
1406 	struct ifnet *outif = NULL;
1407 
1408 	struct ip6_out_args ip6oa;
1409 	bzero(&ro, sizeof(ro));
1410 
1411 	daddr6 = *daddr6_0;     /* make a local copy for modification */
1412 
1413 	bzero(&ip6oa, sizeof(ip6oa));
1414 	ip6oa.ip6oa_boundif = ifp->if_index;
1415 	ip6oa.ip6oa_flags = IP6OAF_SELECT_SRCIF | IP6OAF_BOUND_SRCADDR |
1416 	    IP6OAF_AWDL_UNRESTRICTED | IP6OAF_INTCOPROC_ALLOWED;
1417 	ip6oa.ip6oa_sotc = SO_TC_UNSPEC;
1418 	ip6oa.ip6oa_netsvctype = _NET_SERVICE_TYPE_UNSPEC;
1419 
1420 	ip6oa.ip6oa_flags |= IP6OAF_BOUND_IF;
1421 
1422 	/* estimate the size of message */
1423 	maxlen = sizeof(*ip6) + sizeof(*nd_na);
1424 	maxlen += (sizeof(struct nd_opt_hdr) + ifp->if_addrlen + 7) & ~7;
1425 	if (max_linkhdr + maxlen >= MCLBYTES) {
1426 #if DIAGNOSTIC
1427 		printf("nd6_na_output: max_linkhdr + maxlen >= MCLBYTES "
1428 		    "(%d + %d > %d)\n", max_linkhdr, maxlen, MCLBYTES);
1429 #endif
1430 		return;
1431 	}
1432 
1433 	MGETHDR(m, M_DONTWAIT, MT_DATA);        /* XXXMAC: mac_create_mbuf_linklayer() probably */
1434 	if (m && max_linkhdr + maxlen >= MHLEN) {
1435 		MCLGET(m, M_DONTWAIT);
1436 		if ((m->m_flags & M_EXT) == 0) {
1437 			m_free(m);
1438 			m = NULL;
1439 		}
1440 	}
1441 	if (m == NULL) {
1442 		return;
1443 	}
1444 	m->m_pkthdr.rcvif = NULL;
1445 
1446 	if (IN6_IS_ADDR_MULTICAST(&daddr6)) {
1447 		m->m_flags |= M_MCAST;
1448 
1449 		im6o = ip6_allocmoptions(Z_NOWAIT);
1450 		if (im6o == NULL) {
1451 			m_freem(m);
1452 			return;
1453 		}
1454 
1455 		im6o->im6o_multicast_ifp = ifp;
1456 		im6o->im6o_multicast_hlim = IPV6_MAXHLIM;
1457 		im6o->im6o_multicast_loop = 0;
1458 	}
1459 
1460 	icmp6len = sizeof(*nd_na);
1461 	m->m_pkthdr.len = m->m_len = sizeof(struct ip6_hdr) + icmp6len;
1462 	m->m_data += max_linkhdr;       /* or MH_ALIGN() equivalent? */
1463 
1464 	/* fill neighbor advertisement packet */
1465 	ip6 = mtod(m, struct ip6_hdr *);
1466 	ip6->ip6_flow = 0;
1467 	ip6->ip6_vfc &= ~IPV6_VERSION_MASK;
1468 	ip6->ip6_vfc |= IPV6_VERSION;
1469 	ip6->ip6_nxt = IPPROTO_ICMPV6;
1470 	ip6->ip6_hlim = IPV6_MAXHLIM;
1471 	if (IN6_IS_ADDR_UNSPECIFIED(&daddr6)) {
1472 		/* reply to DAD */
1473 		daddr6.s6_addr16[0] = IPV6_ADDR_INT16_MLL;
1474 		daddr6.s6_addr16[1] = 0;
1475 		daddr6.s6_addr32[1] = 0;
1476 		daddr6.s6_addr32[2] = 0;
1477 		daddr6.s6_addr32[3] = IPV6_ADDR_INT32_ONE;
1478 		if (in6_setscope(&daddr6, ifp, NULL)) {
1479 			goto bad;
1480 		}
1481 
1482 		flags &= ~ND_NA_FLAG_SOLICITED;
1483 	} else {
1484 		ip6->ip6_dst = daddr6;
1485 		ip6_output_setdstifscope(m, ifp->if_index, NULL);
1486 	}
1487 
1488 	bzero(&dst_sa, sizeof(struct sockaddr_in6));
1489 	dst_sa.sin6_family = AF_INET6;
1490 	dst_sa.sin6_len = sizeof(struct sockaddr_in6);
1491 	dst_sa.sin6_addr = daddr6;
1492 
1493 	/*
1494 	 * Select a source whose scope is the same as that of the dest.
1495 	 */
1496 	bcopy(&dst_sa, &ro.ro_dst, sizeof(dst_sa));
1497 	src = in6_selectsrc(&dst_sa, NULL, NULL, &ro, NULL, &src_storage,
1498 	    ip6oa.ip6oa_boundif, &error);
1499 	if (src == NULL) {
1500 		nd6log(debug, "nd6_na_output: source can't be "
1501 		    "determined: dst=%s, error=%d\n",
1502 		    ip6_sprintf(&dst_sa.sin6_addr), error);
1503 		goto bad;
1504 	}
1505 	ip6->ip6_src = *src;
1506 
1507 	/*
1508 	 * RFC 4429 requires not setting "override" flag on NA packets sent
1509 	 * from optimistic addresses.
1510 	 */
1511 	ia = in6ifa_ifpwithaddr(ifp, src);
1512 	ip6_output_setsrcifscope(m, ifp->if_index, ia);
1513 	if (ia != NULL) {
1514 		if (ia->ia6_flags & IN6_IFF_OPTIMISTIC) {
1515 			flags &= ~ND_NA_FLAG_OVERRIDE;
1516 		}
1517 		IFA_REMREF(&ia->ia_ifa);
1518 	}
1519 
1520 	nd_na = (struct nd_neighbor_advert *)(ip6 + 1);
1521 	nd_na->nd_na_type = ND_NEIGHBOR_ADVERT;
1522 	nd_na->nd_na_code = 0;
1523 	nd_na->nd_na_target = *taddr6;
1524 	in6_clearscope(&nd_na->nd_na_target); /* XXX */
1525 
1526 	/*
1527 	 * "tlladdr" indicates NS's condition for adding tlladdr or not.
1528 	 * see nd6_ns_input() for details.
1529 	 * Basically, if NS packet is sent to unicast/anycast addr,
1530 	 * target lladdr option SHOULD NOT be included.
1531 	 */
1532 	if (tlladdr) {
1533 		/*
1534 		 * sdl0 != NULL indicates proxy NA.  If we do proxy, use
1535 		 * lladdr in sdl0.  If we are not proxying (sending NA for
1536 		 * my address) use lladdr configured for the interface.
1537 		 */
1538 		if (sdl0 == NULL) {
1539 			mac = nd6_ifptomac(ifp);
1540 		} else if (sdl0->sa_family == AF_LINK) {
1541 			struct sockaddr_dl *sdl;
1542 			sdl = (struct sockaddr_dl *)(void *)sdl0;
1543 			if (sdl->sdl_alen == ifp->if_addrlen) {
1544 				mac = LLADDR(sdl);
1545 			}
1546 		}
1547 	}
1548 	if (tlladdr && mac) {
1549 		int optlen = sizeof(struct nd_opt_hdr) + ifp->if_addrlen;
1550 		struct nd_opt_hdr *nd_opt = (struct nd_opt_hdr *)(nd_na + 1);
1551 
1552 		/* roundup to 8 bytes alignment! */
1553 		optlen = (optlen + 7) & ~7;
1554 
1555 		m->m_pkthdr.len += optlen;
1556 		m->m_len += optlen;
1557 		icmp6len += optlen;
1558 		bzero((caddr_t)nd_opt, optlen);
1559 		nd_opt->nd_opt_type = ND_OPT_TARGET_LINKADDR;
1560 		nd_opt->nd_opt_len = (uint8_t)(optlen >> 3);
1561 		bcopy(mac, (caddr_t)(nd_opt + 1), ifp->if_addrlen);
1562 	} else {
1563 		flags &= ~ND_NA_FLAG_OVERRIDE;
1564 	}
1565 
1566 	ip6->ip6_plen = htons((u_short)icmp6len);
1567 	nd_na->nd_na_flags_reserved = flags;
1568 	nd_na->nd_na_cksum = 0;
1569 	nd_na->nd_na_cksum =
1570 	    in6_cksum(m, IPPROTO_ICMPV6, sizeof(struct ip6_hdr), icmp6len);
1571 
1572 	m->m_pkthdr.pkt_flags |= PKTF_INET6_RESOLVE;
1573 
1574 	if (ifp->if_eflags & IFEF_TXSTART) {
1575 		/* Use control service class if the interface supports
1576 		 * transmit-start model.
1577 		 */
1578 		(void) m_set_service_class(m, MBUF_SC_CTL);
1579 	}
1580 
1581 	ip6oa.ip6oa_flags |= IP6OAF_SKIP_PF;
1582 	ip6oa.ip6oa_flags |= IP6OAF_DONT_FRAG;
1583 	ip6_output(m, NULL, NULL, IPV6_OUTARGS, im6o, &outif, &ip6oa);
1584 	if (outif) {
1585 		icmp6_ifstat_inc(outif, ifs6_out_msg);
1586 		icmp6_ifstat_inc(outif, ifs6_out_neighboradvert);
1587 		ifnet_release(outif);
1588 	}
1589 	icmp6stat.icp6s_outhist[ND_NEIGHBOR_ADVERT]++;
1590 
1591 exit:
1592 	if (im6o != NULL) {
1593 		IM6O_REMREF(im6o);
1594 	}
1595 
1596 	ROUTE_RELEASE(&ro);
1597 	return;
1598 
1599 bad:
1600 	m_freem(m);
1601 	goto exit;
1602 }
1603 
1604 caddr_t
nd6_ifptomac(struct ifnet * ifp)1605 nd6_ifptomac(
1606 	struct ifnet *ifp)
1607 {
1608 	switch (ifp->if_type) {
1609 	case IFT_ARCNET:
1610 	case IFT_ETHER:
1611 	case IFT_IEEE8023ADLAG:
1612 	case IFT_FDDI:
1613 	case IFT_IEEE1394:
1614 #ifdef IFT_L2VLAN
1615 	case IFT_L2VLAN:
1616 #endif
1617 #ifdef IFT_IEEE80211
1618 	case IFT_IEEE80211:
1619 #endif
1620 #ifdef IFT_CARP
1621 	case IFT_CARP:
1622 #endif
1623 	case IFT_BRIDGE:
1624 	case IFT_ISO88025:
1625 	case IFT_6LOWPAN:
1626 		return (caddr_t)IF_LLADDR(ifp);
1627 	default:
1628 		return NULL;
1629 	}
1630 }
1631 
1632 TAILQ_HEAD(dadq_head, dadq);
1633 struct dadq {
1634 	decl_lck_mtx_data(, dad_lock);
1635 	u_int32_t dad_refcount; /* reference count */
1636 	int dad_attached;
1637 	TAILQ_ENTRY(dadq) dad_list;
1638 	struct ifaddr *dad_ifa;
1639 	int dad_count;          /* max NS to send */
1640 	int dad_ns_tcount;      /* # of trials to send NS */
1641 	int dad_ns_ocount;      /* NS sent so far */
1642 	int dad_ns_icount;
1643 	int dad_na_icount;
1644 	int dad_ns_lcount;      /* looped back NS */
1645 	int dad_loopbackprobe;  /* probing state for loopback detection */
1646 	uint8_t dad_lladdr[ETHER_ADDR_LEN];
1647 	uint8_t dad_lladdrlen;
1648 #define ND_OPT_NONCE_LEN32 \
1649     ((ND_OPT_NONCE_LEN + sizeof(uint32_t) - 1)/sizeof(uint32_t))
1650 	uint32_t dad_nonce[ND_OPT_NONCE_LEN32];
1651 };
1652 
1653 static ZONE_DEFINE_TYPE(dad_zone, "nd6_dad", struct dadq, ZC_ZFREE_CLEARMEM);
1654 static struct dadq_head dadq;
1655 
1656 void
nd6_nbr_init(void)1657 nd6_nbr_init(void)
1658 {
1659 	int i;
1660 
1661 	TAILQ_INIT(&dadq);
1662 
1663 	bzero(&hostrtmask, sizeof hostrtmask);
1664 	hostrtmask.sin6_family = AF_INET6;
1665 	hostrtmask.sin6_len = sizeof hostrtmask;
1666 	for (i = 0; i < sizeof hostrtmask.sin6_addr; ++i) {
1667 		hostrtmask.sin6_addr.s6_addr[i] = 0xff;
1668 	}
1669 }
1670 
1671 static struct dadq *
nd6_dad_find(struct ifaddr * ifa,struct nd_opt_nonce * nonce)1672 nd6_dad_find(struct ifaddr *ifa, struct nd_opt_nonce *nonce)
1673 {
1674 	struct dadq *dp;
1675 
1676 	lck_mtx_lock(&dad6_mutex);
1677 	for (dp = dadq.tqh_first; dp; dp = dp->dad_list.tqe_next) {
1678 		DAD_LOCK_SPIN(dp);
1679 		if (dp->dad_ifa != ifa) {
1680 			DAD_UNLOCK(dp);
1681 			continue;
1682 		}
1683 
1684 		/*
1685 		 * Skip if the nonce matches the received one.
1686 		 * +2 in the length is required because of type and
1687 		 * length fields are included in a header.
1688 		 */
1689 		if (nonce != NULL &&
1690 		    nonce->nd_opt_nonce_len == (ND_OPT_NONCE_LEN + 2) / 8 &&
1691 		    memcmp(&nonce->nd_opt_nonce[0], &dp->dad_nonce[0],
1692 		    ND_OPT_NONCE_LEN) == 0) {
1693 			nd6log(error, "%s: a looped back NS message is "
1694 			    "detected during DAD for %s. Ignoring.\n",
1695 			    if_name(ifa->ifa_ifp),
1696 			    ip6_sprintf(IFA_IN6(ifa)));
1697 			dp->dad_ns_lcount++;
1698 			++ip6stat.ip6s_dad_loopcount;
1699 			DAD_UNLOCK(dp);
1700 			continue;
1701 		}
1702 
1703 		DAD_ADDREF_LOCKED(dp);
1704 		DAD_UNLOCK(dp);
1705 		break;
1706 	}
1707 	lck_mtx_unlock(&dad6_mutex);
1708 	return dp;
1709 }
1710 
1711 void
nd6_dad_stoptimer(struct ifaddr * ifa)1712 nd6_dad_stoptimer(
1713 	struct ifaddr *ifa)
1714 {
1715 	untimeout((void (*)(void *))nd6_dad_timer, (void *)ifa);
1716 }
1717 
1718 /*
1719  * Start Duplicate Address Detection (DAD) for specified interface address.
1720  */
1721 void
nd6_dad_start(struct ifaddr * ifa,int * tick_delay)1722 nd6_dad_start(
1723 	struct ifaddr *ifa,
1724 	int *tick_delay)        /* minimum delay ticks for IFF_UP event */
1725 {
1726 	struct in6_ifaddr *ia = (struct in6_ifaddr *)ifa;
1727 	struct dadq *dp;
1728 
1729 	if (ifa->ifa_ifp == NULL) {
1730 		panic("nd6_dad_start: ifa->ifa_ifp == NULL");
1731 	}
1732 
1733 	nd6log2(debug, "%s - %s ifp %s ia6_flags 0x%x\n",
1734 	    __func__,
1735 	    ip6_sprintf(&ia->ia_addr.sin6_addr),
1736 	    if_name(ia->ia_ifp),
1737 	    ia->ia6_flags);
1738 
1739 	/*
1740 	 * If we don't need DAD, don't do it.
1741 	 * There are several cases:
1742 	 * - DAD is disabled (ip6_dad_count == 0)
1743 	 * - the interface address is anycast
1744 	 */
1745 	IFA_LOCK(&ia->ia_ifa);
1746 	if (!(ia->ia6_flags & IN6_IFF_DADPROGRESS)) {
1747 		nd6log0(debug,
1748 		    "nd6_dad_start: not a tentative or optimistic address "
1749 		    "%s(%s)\n",
1750 		    ip6_sprintf(&ia->ia_addr.sin6_addr),
1751 		    ifa->ifa_ifp ? if_name(ifa->ifa_ifp) : "???");
1752 		IFA_UNLOCK(&ia->ia_ifa);
1753 		return;
1754 	}
1755 	if (!ip6_dad_count || (ia->ia6_flags & IN6_IFF_ANYCAST) != 0) {
1756 		ia->ia6_flags &= ~IN6_IFF_DADPROGRESS;
1757 		IFA_UNLOCK(&ia->ia_ifa);
1758 		return;
1759 	}
1760 	IFA_UNLOCK(&ia->ia_ifa);
1761 
1762 	if (!(ifa->ifa_ifp->if_flags & IFF_UP) ||
1763 	    (ifa->ifa_ifp->if_eflags & IFEF_IPV6_ND6ALT)) {
1764 		return;
1765 	}
1766 	if ((dp = nd6_dad_find(ifa, NULL)) != NULL) {
1767 		DAD_REMREF(dp);
1768 		/* DAD already in progress */
1769 		return;
1770 	}
1771 
1772 	dp = zalloc_flags(dad_zone, Z_WAITOK | Z_ZERO);
1773 	lck_mtx_init(&dp->dad_lock, &ifa_mtx_grp, &ifa_mtx_attr);
1774 
1775 	/* Callee adds one reference for us */
1776 	dp = nd6_dad_attach(dp, ifa);
1777 
1778 	nd6log0(debug, "%s: starting %sDAD %sfor %s\n",
1779 	    if_name(ifa->ifa_ifp),
1780 	    (ia->ia6_flags & IN6_IFF_OPTIMISTIC) ? "optimistic " : "",
1781 	    (tick_delay == NULL) ? "immediately " : "",
1782 	    ip6_sprintf(&ia->ia_addr.sin6_addr));
1783 
1784 	/*
1785 	 * Send NS packet for DAD, ip6_dad_count times.
1786 	 * Note that we must delay the first transmission, if this is the
1787 	 * first packet to be sent from the interface after interface
1788 	 * (re)initialization.
1789 	 */
1790 	if (tick_delay == NULL) {
1791 		u_int32_t retrans;
1792 		struct nd_ifinfo *ndi = NULL;
1793 
1794 		nd6_dad_ns_output(dp, ifa);
1795 		ndi = ND_IFINFO(ifa->ifa_ifp);
1796 		VERIFY(ndi != NULL && ndi->initialized);
1797 		lck_mtx_lock(&ndi->lock);
1798 		retrans = ndi->retrans * hz / 1000;
1799 		lck_mtx_unlock(&ndi->lock);
1800 		timeout((void (*)(void *))nd6_dad_timer, (void *)ifa, retrans);
1801 	} else {
1802 		int ntick;
1803 
1804 		if (*tick_delay == 0) {
1805 			ntick = random() % (MAX_RTR_SOLICITATION_DELAY * hz);
1806 		} else {
1807 			ntick = *tick_delay + random() % (hz / 2);
1808 		}
1809 		*tick_delay = ntick;
1810 		timeout((void (*)(void *))nd6_dad_timer, (void *)ifa,
1811 		    ntick);
1812 	}
1813 
1814 	DAD_REMREF(dp);         /* drop our reference */
1815 }
1816 
1817 static struct dadq *
nd6_dad_attach(struct dadq * dp,struct ifaddr * ifa)1818 nd6_dad_attach(struct dadq *dp, struct ifaddr *ifa)
1819 {
1820 	lck_mtx_lock(&dad6_mutex);
1821 	DAD_LOCK(dp);
1822 	dp->dad_ifa = ifa;
1823 	IFA_ADDREF(ifa);        /* for dad_ifa */
1824 	dp->dad_count = ip6_dad_count;
1825 	dp->dad_ns_icount = dp->dad_na_icount = 0;
1826 	dp->dad_ns_ocount = dp->dad_ns_tcount = 0;
1827 	dp->dad_ns_lcount = dp->dad_loopbackprobe = 0;
1828 	VERIFY(!dp->dad_attached);
1829 	dp->dad_attached = 1;
1830 	dp->dad_lladdrlen = 0;
1831 	DAD_ADDREF_LOCKED(dp);  /* for caller */
1832 	DAD_ADDREF_LOCKED(dp);  /* for dadq_head list */
1833 	TAILQ_INSERT_TAIL(&dadq, (struct dadq *)dp, dad_list);
1834 	DAD_UNLOCK(dp);
1835 	lck_mtx_unlock(&dad6_mutex);
1836 
1837 	return dp;
1838 }
1839 
1840 static void
nd6_dad_detach(struct dadq * dp,struct ifaddr * ifa)1841 nd6_dad_detach(struct dadq *dp, struct ifaddr *ifa)
1842 {
1843 	int detached;
1844 
1845 	lck_mtx_lock(&dad6_mutex);
1846 	DAD_LOCK(dp);
1847 	if ((detached = dp->dad_attached)) {
1848 		VERIFY(dp->dad_ifa == ifa);
1849 		TAILQ_REMOVE(&dadq, (struct dadq *)dp, dad_list);
1850 		dp->dad_list.tqe_next = NULL;
1851 		dp->dad_list.tqe_prev = NULL;
1852 		dp->dad_attached = 0;
1853 	}
1854 	DAD_UNLOCK(dp);
1855 	lck_mtx_unlock(&dad6_mutex);
1856 	if (detached) {
1857 		DAD_REMREF(dp);         /* drop dadq_head reference */
1858 	}
1859 }
1860 
1861 /*
1862  * terminate DAD unconditionally.  used for address removals.
1863  */
1864 void
nd6_dad_stop(struct ifaddr * ifa)1865 nd6_dad_stop(struct ifaddr *ifa)
1866 {
1867 	struct dadq *dp;
1868 
1869 	dp = nd6_dad_find(ifa, NULL);
1870 	if (!dp) {
1871 		/* DAD wasn't started yet */
1872 		return;
1873 	}
1874 
1875 	untimeout((void (*)(void *))nd6_dad_timer, (void *)ifa);
1876 
1877 	nd6_dad_detach(dp, ifa);
1878 	DAD_REMREF(dp);         /* drop our reference */
1879 }
1880 
1881 static void
nd6_unsol_na_output(struct ifaddr * ifa)1882 nd6_unsol_na_output(struct ifaddr *ifa)
1883 {
1884 	struct in6_ifaddr *ia = (struct in6_ifaddr *)ifa;
1885 	struct ifnet *ifp = ifa->ifa_ifp;
1886 	struct in6_addr saddr6, taddr6;
1887 
1888 	if ((ifp->if_flags & IFF_UP) == 0 ||
1889 	    (ifp->if_flags & IFF_RUNNING) == 0 ||
1890 	    (ifp->if_eflags & IFEF_IPV6_ND6ALT) != 0) {
1891 		return;
1892 	}
1893 
1894 	IFA_LOCK_SPIN(&ia->ia_ifa);
1895 	taddr6 = ia->ia_addr.sin6_addr;
1896 	IFA_UNLOCK(&ia->ia_ifa);
1897 	if (in6_setscope(&taddr6, ifp, NULL) != 0) {
1898 		return;
1899 	}
1900 	saddr6 = in6addr_linklocal_allnodes;
1901 	if (in6_setscope(&saddr6, ifp, NULL) != 0) {
1902 		return;
1903 	}
1904 
1905 	nd6log(info, "%s: sending unsolicited NA\n",
1906 	    if_name(ifa->ifa_ifp));
1907 
1908 	nd6_na_output(ifp, &saddr6, &taddr6, ND_NA_FLAG_OVERRIDE, 1, NULL);
1909 }
1910 
1911 static void
nd6_dad_timer(struct ifaddr * ifa)1912 nd6_dad_timer(struct ifaddr *ifa)
1913 {
1914 	struct in6_ifaddr *ia = (struct in6_ifaddr *)ifa;
1915 	struct dadq *dp = NULL;
1916 	struct nd_ifinfo *ndi = NULL;
1917 	u_int32_t retrans;
1918 
1919 	/* Sanity check */
1920 	if (ia == NULL) {
1921 		nd6log0(error, "nd6_dad_timer: called with null parameter\n");
1922 		goto done;
1923 	}
1924 
1925 	nd6log2(debug, "%s - %s ifp %s ia6_flags 0x%x\n",
1926 	    __func__,
1927 	    ip6_sprintf(&ia->ia_addr.sin6_addr),
1928 	    if_name(ia->ia_ifp),
1929 	    ia->ia6_flags);
1930 
1931 	dp = nd6_dad_find(ifa, NULL);
1932 	if (dp == NULL) {
1933 		nd6log0(error, "nd6_dad_timer: DAD structure not found\n");
1934 		goto done;
1935 	}
1936 	IFA_LOCK(&ia->ia_ifa);
1937 	if (ia->ia6_flags & IN6_IFF_DUPLICATED) {
1938 		nd6log0(error, "nd6_dad_timer: called with duplicated address "
1939 		    "%s(%s)\n",
1940 		    ip6_sprintf(&ia->ia_addr.sin6_addr),
1941 		    ifa->ifa_ifp ? if_name(ifa->ifa_ifp) : "???");
1942 		IFA_UNLOCK(&ia->ia_ifa);
1943 		goto done;
1944 	}
1945 	if ((ia->ia6_flags & IN6_IFF_DADPROGRESS) == 0) {
1946 		nd6log0(error, "nd6_dad_timer: not a tentative or optimistic "
1947 		    "address %s(%s)\n",
1948 		    ip6_sprintf(&ia->ia_addr.sin6_addr),
1949 		    ifa->ifa_ifp ? if_name(ifa->ifa_ifp) : "???");
1950 		IFA_UNLOCK(&ia->ia_ifa);
1951 		goto done;
1952 	}
1953 	IFA_UNLOCK(&ia->ia_ifa);
1954 
1955 	/* timeouted with IFF_{RUNNING,UP} check */
1956 	DAD_LOCK(dp);
1957 	if (dp->dad_ns_tcount > dad_maxtry) {
1958 		DAD_UNLOCK(dp);
1959 		nd6log0(info, "%s: could not run DAD, driver problem?\n",
1960 		    if_name(ifa->ifa_ifp));
1961 
1962 		nd6_dad_detach(dp, ifa);
1963 		goto done;
1964 	}
1965 
1966 	/* Need more checks? */
1967 	if (dp->dad_ns_ocount < dp->dad_count) {
1968 		DAD_UNLOCK(dp);
1969 		/*
1970 		 * We have more NS to go.  Send NS packet for DAD.
1971 		 */
1972 		nd6_dad_ns_output(dp, ifa);
1973 		ndi = ND_IFINFO(ifa->ifa_ifp);
1974 		VERIFY(ndi != NULL && ndi->initialized);
1975 		lck_mtx_lock(&ndi->lock);
1976 		retrans = ndi->retrans * hz / 1000;
1977 		lck_mtx_unlock(&ndi->lock);
1978 		timeout((void (*)(void *))nd6_dad_timer, (void *)ifa, retrans);
1979 	} else {
1980 		/*
1981 		 * We have transmitted sufficient number of DAD packets.
1982 		 * See what we've got.
1983 		 */
1984 		if (dp->dad_na_icount > 0 || dp->dad_ns_icount) {
1985 			/* We've seen NS or NA, means DAD has failed. */
1986 			DAD_UNLOCK(dp);
1987 			nd6log0(info,
1988 			    "%s: duplicate IPv6 address %s if:%s [timer]\n",
1989 			    __func__, ip6_sprintf(&ia->ia_addr.sin6_addr),
1990 			    if_name(ia->ia_ifp));
1991 			nd6_dad_duplicated(ifa);
1992 			/* (*dp) will be freed in nd6_dad_duplicated() */
1993 #if SKYWALK
1994 			SK_NXS_MS_IF_ADDR_GENCNT_INC(ia->ia_ifp);
1995 #endif /* SKYWALK */
1996 		} else if (dad_enhanced != 0 &&
1997 		    dp->dad_ns_lcount > 0 &&
1998 		    dp->dad_ns_lcount > dp->dad_loopbackprobe) {
1999 			dp->dad_loopbackprobe = dp->dad_ns_lcount;
2000 			dp->dad_count =
2001 			    dp->dad_ns_ocount + dad_maxtry - 1;
2002 			DAD_UNLOCK(dp);
2003 			ndi = ND_IFINFO(ifa->ifa_ifp);
2004 			VERIFY(ndi != NULL && ndi->initialized);
2005 			lck_mtx_lock(&ndi->lock);
2006 			retrans = ndi->retrans * hz / 1000;
2007 			lck_mtx_unlock(&ndi->lock);
2008 
2009 			/*
2010 			 * Sec. 4.1 in RFC 7527 requires transmission of
2011 			 * additional probes until the loopback condition
2012 			 * becomes clear when a looped back probe is detected.
2013 			 */
2014 			nd6log0(info,
2015 			    "%s: a looped back NS message is detected during DAD for %s. Another DAD probe is being sent on interface %s.\n",
2016 			    __func__, ip6_sprintf(&ia->ia_addr.sin6_addr),
2017 			    if_name(ia->ia_ifp));
2018 			/*
2019 			 * Send an NS immediately and increase dad_count by
2020 			 * nd6_mmaxtries - 1.
2021 			 */
2022 			nd6_dad_ns_output(dp, ifa);
2023 			timeout((void (*)(void *))nd6_dad_timer, (void *)ifa, retrans);
2024 			goto done;
2025 		} else {
2026 			boolean_t txunsolna;
2027 			DAD_UNLOCK(dp);
2028 			/*
2029 			 * We are done with DAD.  No NA came, no NS came.
2030 			 * No duplicate address found.
2031 			 */
2032 			IFA_LOCK_SPIN(&ia->ia_ifa);
2033 			ia->ia6_flags &= ~IN6_IFF_DADPROGRESS;
2034 			IFA_UNLOCK(&ia->ia_ifa);
2035 
2036 			ndi = ND_IFINFO(ifa->ifa_ifp);
2037 			VERIFY(ndi != NULL && ndi->initialized);
2038 			lck_mtx_lock(&ndi->lock);
2039 			txunsolna = (ndi->flags & ND6_IFF_REPLICATED) != 0;
2040 			lck_mtx_unlock(&ndi->lock);
2041 
2042 			if (txunsolna) {
2043 				nd6_unsol_na_output(ifa);
2044 			}
2045 
2046 			nd6log0(debug,
2047 			    "%s: DAD complete for %s - no duplicates found %s\n",
2048 			    if_name(ifa->ifa_ifp),
2049 			    ip6_sprintf(&ia->ia_addr.sin6_addr),
2050 			    txunsolna ? ", tx unsolicited NA with O=1" : ".");
2051 
2052 			if (dp->dad_ns_lcount > 0) {
2053 				nd6log0(debug,
2054 				    "%s: DAD completed while "
2055 				    "a looped back NS message is detected "
2056 				    "during DAD for %s om interface %s\n",
2057 				    __func__,
2058 				    ip6_sprintf(&ia->ia_addr.sin6_addr),
2059 				    if_name(ia->ia_ifp));
2060 			}
2061 
2062 			in6_post_msg(ia->ia_ifp, KEV_INET6_NEW_USER_ADDR, ia,
2063 			    dp->dad_lladdr);
2064 			nd6_dad_detach(dp, ifa);
2065 #if SKYWALK
2066 			SK_NXS_MS_IF_ADDR_GENCNT_INC(ia->ia_ifp);
2067 #endif /* SKYWALK */
2068 		}
2069 	}
2070 
2071 done:
2072 	if (dp != NULL) {
2073 		DAD_REMREF(dp);         /* drop our reference */
2074 	}
2075 }
2076 
2077 static void
nd6_dad_duplicated(struct ifaddr * ifa)2078 nd6_dad_duplicated(struct ifaddr *ifa)
2079 {
2080 	struct in6_ifaddr *ia = (struct in6_ifaddr *)ifa;
2081 	struct dadq *dp;
2082 	struct ifnet *ifp = ifa->ifa_ifp;
2083 	boolean_t candisable;
2084 
2085 	dp = nd6_dad_find(ifa, NULL);
2086 	if (dp == NULL) {
2087 		log(LOG_ERR, "%s: DAD structure not found.\n", __func__);
2088 		return;
2089 	}
2090 	IFA_LOCK(&ia->ia_ifa);
2091 	DAD_LOCK(dp);
2092 	nd6log(error, "%s: NS in/out/loopback=%d/%d/%d, NA in=%d\n",
2093 	    __func__, dp->dad_ns_icount, dp->dad_ns_ocount, dp->dad_ns_lcount,
2094 	    dp->dad_na_icount);
2095 	candisable = FALSE;
2096 
2097 	if (IN6_IS_ADDR_LINKLOCAL(&ia->ia_addr.sin6_addr) &&
2098 	    !(ia->ia6_flags & IN6_IFF_SECURED)) {
2099 		struct in6_addr in6;
2100 		struct ifaddr *llifa = NULL;
2101 		struct sockaddr_dl *sdl = NULL;
2102 		uint8_t *lladdr = dp->dad_lladdr;
2103 		uint8_t lladdrlen = dp->dad_lladdrlen;
2104 
2105 		/*
2106 		 * To avoid over-reaction, we only apply this logic when we are
2107 		 * very sure that hardware addresses are supposed to be unique.
2108 		 */
2109 		switch (ifp->if_type) {
2110 		case IFT_BRIDGE:
2111 		case IFT_ETHER:
2112 		case IFT_FDDI:
2113 		case IFT_ATM:
2114 		case IFT_IEEE1394:
2115 #ifdef IFT_IEEE80211
2116 		case IFT_IEEE80211:
2117 #endif
2118 			/*
2119 			 * Check if our hardware address matches the
2120 			 * link layer information received in the
2121 			 * NS/NA
2122 			 */
2123 			llifa = ifp->if_lladdr;
2124 			IFA_LOCK(llifa);
2125 			sdl = (struct sockaddr_dl *)(void *)
2126 			    llifa->ifa_addr;
2127 			if (lladdrlen == sdl->sdl_alen &&
2128 			    bcmp(lladdr, LLADDR(sdl), lladdrlen) == 0) {
2129 				candisable = TRUE;
2130 			}
2131 			IFA_UNLOCK(llifa);
2132 
2133 			in6 = ia->ia_addr.sin6_addr;
2134 			if (in6_iid_from_hw(ifp, &in6) != 0) {
2135 				break;
2136 			}
2137 
2138 			/* Refine decision about whether IPv6 can be disabled */
2139 			if (candisable &&
2140 			    !IN6_ARE_ADDR_EQUAL(&ia->ia_addr.sin6_addr, &in6)) {
2141 				/*
2142 				 * Apply this logic only to the embedded MAC
2143 				 * address form of link-local IPv6 address.
2144 				 */
2145 				candisable = FALSE;
2146 			} else if (lladdr == NULL &&
2147 			    IN6_ARE_ADDR_EQUAL(&ia->ia_addr.sin6_addr, &in6)) {
2148 				/*
2149 				 * We received a NA with no target link-layer
2150 				 * address option. This means that someone else
2151 				 * has our address. Mark it as a hardware
2152 				 * duplicate so we disable IPv6 later on.
2153 				 */
2154 				candisable = TRUE;
2155 			}
2156 			break;
2157 		default:
2158 			break;
2159 		}
2160 	}
2161 	DAD_UNLOCK(dp);
2162 
2163 	ia->ia6_flags &= ~IN6_IFF_DADPROGRESS;
2164 	ia->ia6_flags |= IN6_IFF_DUPLICATED;
2165 	in6_event_enqueue_nwk_wq_entry(IN6_ADDR_MARKED_DUPLICATED,
2166 	    ia->ia_ifa.ifa_ifp, &ia->ia_addr.sin6_addr,
2167 	    0);
2168 	IFA_UNLOCK(&ia->ia_ifa);
2169 
2170 	/* increment DAD collision counter */
2171 	++ip6stat.ip6s_dad_collide;
2172 
2173 	/* We are done with DAD, with duplicated address found. (failure) */
2174 	untimeout((void (*)(void *))nd6_dad_timer, (void *)ifa);
2175 
2176 	IFA_LOCK(&ia->ia_ifa);
2177 	log(LOG_ERR, "%s: DAD complete for %s - duplicate found.\n",
2178 	    if_name(ifp), ip6_sprintf(&ia->ia_addr.sin6_addr));
2179 	IFA_UNLOCK(&ia->ia_ifa);
2180 
2181 	if (candisable) {
2182 		struct nd_ifinfo *ndi =  ND_IFINFO(ifp);
2183 		log(LOG_ERR, "%s: possible hardware address duplication "
2184 		    "detected, disabling IPv6 for interface.\n", if_name(ifp));
2185 
2186 		VERIFY((NULL != ndi) && (TRUE == ndi->initialized));
2187 		ndi->flags |= ND6_IFF_IFDISABLED;
2188 		/* Make sure to set IFEF_IPV6_DISABLED too */
2189 		nd6_if_disable(ifp, TRUE);
2190 	}
2191 
2192 	log(LOG_ERR,
2193 	    "%s: manual intervention may be required.\n",
2194 	    if_name(ifp));
2195 
2196 	/* Send an event to the configuration agent so that the
2197 	 * duplicate address will be notified to the user and will
2198 	 * be removed.
2199 	 */
2200 	in6_post_msg(ifp, KEV_INET6_NEW_USER_ADDR, ia, dp->dad_lladdr);
2201 	nd6_dad_detach(dp, ifa);
2202 	DAD_REMREF(dp);         /* drop our reference */
2203 }
2204 
2205 static void
nd6_dad_ns_output(struct dadq * dp,struct ifaddr * ifa)2206 nd6_dad_ns_output(struct dadq *dp, struct ifaddr *ifa)
2207 {
2208 	struct in6_ifaddr *ia = (struct in6_ifaddr *)ifa;
2209 	struct ifnet *ifp = ifa->ifa_ifp;
2210 	int i = 0;
2211 	struct in6_addr taddr6;
2212 
2213 	DAD_LOCK(dp);
2214 	dp->dad_ns_tcount++;
2215 	if ((ifp->if_flags & IFF_UP) == 0) {
2216 		DAD_UNLOCK(dp);
2217 		return;
2218 	}
2219 	if ((ifp->if_flags & IFF_RUNNING) == 0) {
2220 		DAD_UNLOCK(dp);
2221 		return;
2222 	}
2223 
2224 	dp->dad_ns_ocount++;
2225 	DAD_UNLOCK(dp);
2226 	IFA_LOCK_SPIN(&ia->ia_ifa);
2227 	taddr6 = ia->ia_addr.sin6_addr;
2228 	IFA_UNLOCK(&ia->ia_ifa);
2229 	if (dad_enhanced != 0 && !(ifp->if_flags & IFF_POINTOPOINT)) {
2230 		for (i = 0; i < ND_OPT_NONCE_LEN32; i++) {
2231 			dp->dad_nonce[i] = RandomULong();
2232 		}
2233 		/*
2234 		 * XXXHRS: Note that in the case that
2235 		 * DupAddrDetectTransmits > 1, multiple NS messages with
2236 		 * different nonces can be looped back in an unexpected
2237 		 * order.  The current implementation recognizes only
2238 		 * the latest nonce on the sender side.  Practically it
2239 		 * should work well in almost all cases.
2240 		 */
2241 	}
2242 	nd6_ns_output(ifp, NULL, &taddr6, NULL,
2243 	    (uint8_t *)&dp->dad_nonce[0]);
2244 }
2245 
2246 /*
2247  * @brief       Called to process DAD NS
2248  *
2249  * @param       ifa is the pointer to the interface's address
2250  * @param       lladdr is source link layer information
2251  * @param       lladdrlen is source's linklayer length
2252  *
2253  * @return      void
2254  */
2255 static void
nd6_dad_ns_input(struct ifaddr * ifa,char * lladdr,int lladdrlen,struct nd_opt_nonce * ndopt_nonce)2256 nd6_dad_ns_input(struct ifaddr *ifa, char *lladdr,
2257     int lladdrlen, struct nd_opt_nonce *ndopt_nonce)
2258 {
2259 	struct dadq *dp;
2260 	VERIFY(ifa != NULL);
2261 
2262 	/* Ignore Nonce option when Enhanced DAD is disabled. */
2263 	if (dad_enhanced == 0) {
2264 		ndopt_nonce = NULL;
2265 	}
2266 
2267 	dp = nd6_dad_find(ifa, ndopt_nonce);
2268 	if (dp == NULL) {
2269 		return;
2270 	}
2271 
2272 	DAD_LOCK(dp);
2273 	++dp->dad_ns_icount;
2274 	if (lladdr && lladdrlen >= ETHER_ADDR_LEN) {
2275 		memcpy(dp->dad_lladdr, lladdr, ETHER_ADDR_LEN);
2276 		/* fine to truncate as it is compared against sdl_alen */
2277 		dp->dad_lladdrlen = (uint8_t)lladdrlen;
2278 	}
2279 	DAD_UNLOCK(dp);
2280 	DAD_REMREF(dp);
2281 }
2282 
2283 /*
2284  * @brief	Called to process received NA for DAD
2285  *
2286  * @param	m is the pointer to the packet's mbuf
2287  * @param	ifp is the pointer to the interface on which packet
2288  *              was receicved.
2289  * @param	taddr is pointer to target's IPv6 address
2290  * @param	lladdr is target's link layer information
2291  * @param	lladdrlen is target's linklayer length
2292  *
2293  * @return	NULL if the packet is consumed by DAD processing, else
2294  *              pointer to the mbuf.
2295  */
2296 static struct mbuf *
nd6_dad_na_input(struct mbuf * m,struct ifnet * ifp,struct in6_addr * taddr,caddr_t lladdr,int lladdrlen)2297 nd6_dad_na_input(struct mbuf *m, struct ifnet *ifp, struct in6_addr *taddr,
2298     caddr_t lladdr, int lladdrlen)
2299 {
2300 	struct ifaddr *ifa = NULL;
2301 	struct in6_ifaddr *ia = NULL;
2302 	struct dadq *dp = NULL;
2303 	struct nd_ifinfo *ndi = NULL;
2304 	boolean_t replicated;
2305 
2306 	ifa = (struct ifaddr *) in6ifa_ifpwithaddr(ifp, taddr);
2307 	if (ifa == NULL) {
2308 		return m;
2309 	}
2310 
2311 	replicated = FALSE;
2312 
2313 	/* Get the ND6_IFF_REPLICATED flag. */
2314 	ndi = ND_IFINFO(ifp);
2315 	if (ndi != NULL && ndi->initialized) {
2316 		lck_mtx_lock(&ndi->lock);
2317 		replicated = !!(ndi->flags & ND6_IFF_REPLICATED);
2318 		lck_mtx_unlock(&ndi->lock);
2319 	}
2320 
2321 	if (replicated) {
2322 		nd6log(info, "%s: ignoring duplicate NA on "
2323 		    "replicated interface %s\n", __func__, if_name(ifp));
2324 		goto done;
2325 	}
2326 
2327 	/* Lock the interface address until done (see label below). */
2328 	IFA_LOCK(ifa);
2329 	ia = (struct in6_ifaddr *) ifa;
2330 
2331 	if (!(ia->ia6_flags & IN6_IFF_DADPROGRESS)) {
2332 		IFA_UNLOCK(ifa);
2333 		nd6log(info, "%s: ignoring duplicate NA on "
2334 		    "%s [DAD not in progress]\n", __func__,
2335 		    if_name(ifp));
2336 		goto done;
2337 	}
2338 
2339 	/* Some sleep proxies improperly send the client's Ethernet address in
2340 	 * the target link-layer address option, so detect this by comparing
2341 	 * the L2-header source address, if we have seen it, with the target
2342 	 * address, and ignoring the NA if they don't match.
2343 	 */
2344 	if (lladdr != NULL && lladdrlen >= ETHER_ADDR_LEN) {
2345 		struct ip6aux *ip6a = ip6_findaux(m);
2346 		if (ip6a && (ip6a->ip6a_flags & IP6A_HASEEN) != 0 &&
2347 		    bcmp(ip6a->ip6a_ehsrc, lladdr, ETHER_ADDR_LEN) != 0) {
2348 			IFA_UNLOCK(ifa);
2349 			nd6log(error, "%s: ignoring duplicate NA on %s "
2350 			    "[eh_src != tgtlladdr]\n", __func__, if_name(ifp));
2351 			goto done;
2352 		}
2353 	}
2354 
2355 	IFA_UNLOCK(ifa);
2356 
2357 	dp = nd6_dad_find(ifa, NULL);
2358 	if (dp == NULL) {
2359 		nd6log(info, "%s: no DAD structure for %s on %s.\n",
2360 		    __func__, ip6_sprintf(taddr), if_name(ifp));
2361 		goto done;
2362 	}
2363 
2364 	DAD_LOCK_SPIN(dp);
2365 	if (lladdr != NULL && lladdrlen >= ETHER_ADDR_LEN) {
2366 		memcpy(dp->dad_lladdr, lladdr, ETHER_ADDR_LEN);
2367 		dp->dad_lladdrlen = (uint8_t)lladdrlen;
2368 	}
2369 	dp->dad_na_icount++;
2370 	DAD_UNLOCK(dp);
2371 	DAD_REMREF(dp);
2372 
2373 	/* remove the address. */
2374 	nd6log(info,
2375 	    "%s: duplicate IPv6 address %s [processing NA on %s]\n", __func__,
2376 	    ip6_sprintf(taddr), if_name(ifp));
2377 done:
2378 	IFA_LOCK_ASSERT_NOTHELD(ifa);
2379 	IFA_REMREF(ifa);
2380 	m_freem(m);
2381 	return NULL;
2382 }
2383 
2384 static void
dad_addref(struct dadq * dp,int locked)2385 dad_addref(struct dadq *dp, int locked)
2386 {
2387 	if (!locked) {
2388 		DAD_LOCK_SPIN(dp);
2389 	} else {
2390 		DAD_LOCK_ASSERT_HELD(dp);
2391 	}
2392 
2393 	if (++dp->dad_refcount == 0) {
2394 		panic("%s: dad %p wraparound refcnt", __func__, dp);
2395 		/* NOTREACHED */
2396 	}
2397 	if (!locked) {
2398 		DAD_UNLOCK(dp);
2399 	}
2400 }
2401 
2402 static void
dad_remref(struct dadq * dp)2403 dad_remref(struct dadq *dp)
2404 {
2405 	struct ifaddr *ifa;
2406 
2407 	DAD_LOCK_SPIN(dp);
2408 	if (dp->dad_refcount == 0) {
2409 		panic("%s: dad %p negative refcnt", __func__, dp);
2410 	}
2411 	--dp->dad_refcount;
2412 	if (dp->dad_refcount > 0) {
2413 		DAD_UNLOCK(dp);
2414 		return;
2415 	}
2416 	DAD_UNLOCK(dp);
2417 
2418 	if (dp->dad_attached ||
2419 	    dp->dad_list.tqe_next != NULL || dp->dad_list.tqe_prev != NULL) {
2420 		panic("%s: attached dad=%p is being freed", __func__, dp);
2421 		/* NOTREACHED */
2422 	}
2423 
2424 	if ((ifa = dp->dad_ifa) != NULL) {
2425 		IFA_REMREF(ifa);        /* drop dad_ifa reference */
2426 		dp->dad_ifa = NULL;
2427 	}
2428 
2429 	lck_mtx_destroy(&dp->dad_lock, &ifa_mtx_grp);
2430 	zfree(dad_zone, dp);
2431 }
2432 
2433 void
nd6_llreach_set_reachable(struct ifnet * ifp,void * addr,unsigned int alen)2434 nd6_llreach_set_reachable(struct ifnet *ifp, void *addr, unsigned int alen)
2435 {
2436 	/* Nothing more to do if it's disabled */
2437 	if (nd6_llreach_base == 0) {
2438 		return;
2439 	}
2440 
2441 	ifnet_llreach_set_reachable(ifp, ETHERTYPE_IPV6, addr, alen);
2442 }
2443 
2444 void
nd6_alt_node_addr_decompose(struct ifnet * ifp,struct sockaddr * sa,struct sockaddr_dl * sdl,struct sockaddr_in6 * sin6)2445 nd6_alt_node_addr_decompose(struct ifnet *ifp, struct sockaddr *sa,
2446     struct sockaddr_dl* sdl, struct sockaddr_in6 *sin6)
2447 {
2448 	static const size_t EUI64_LENGTH = 8;
2449 
2450 	VERIFY(nd6_need_cache(ifp));
2451 	VERIFY(sa);
2452 	VERIFY(sdl && (void *)sa != (void *)sdl);
2453 	VERIFY(sin6 && (void *)sa != (void *)sin6);
2454 
2455 	bzero(sin6, sizeof(*sin6));
2456 	sin6->sin6_len = sizeof *sin6;
2457 	sin6->sin6_family = AF_INET6;
2458 
2459 	bzero(sdl, sizeof(*sdl));
2460 	sdl->sdl_len = sizeof *sdl;
2461 	sdl->sdl_family = AF_LINK;
2462 	sdl->sdl_type = ifp->if_type;
2463 	sdl->sdl_index = ifp->if_index;
2464 
2465 	switch (sa->sa_family) {
2466 	case AF_INET6: {
2467 		struct sockaddr_in6 *sin6a = (struct sockaddr_in6 *)(void *)sa;
2468 		struct in6_addr *in6 = &sin6a->sin6_addr;
2469 
2470 		VERIFY(sa->sa_len == sizeof *sin6);
2471 		VERIFY(strlen(ifp->if_name) <= IFNAMSIZ);
2472 
2473 		sdl->sdl_nlen = (u_char)strlen(ifp->if_name);
2474 		bcopy(ifp->if_name, sdl->sdl_data, sdl->sdl_nlen);
2475 		if (in6->s6_addr[11] == 0xff && in6->s6_addr[12] == 0xfe) {
2476 			sdl->sdl_alen = ETHER_ADDR_LEN;
2477 			LLADDR(sdl)[0] = (in6->s6_addr[8] ^ ND6_EUI64_UBIT);
2478 			LLADDR(sdl)[1] = in6->s6_addr[9];
2479 			LLADDR(sdl)[2] = in6->s6_addr[10];
2480 			LLADDR(sdl)[3] = in6->s6_addr[13];
2481 			LLADDR(sdl)[4] = in6->s6_addr[14];
2482 			LLADDR(sdl)[5] = in6->s6_addr[15];
2483 		} else {
2484 			sdl->sdl_alen = EUI64_LENGTH;
2485 			bcopy(&in6->s6_addr[8], LLADDR(sdl), EUI64_LENGTH);
2486 		}
2487 
2488 		sdl->sdl_slen = 0;
2489 		break;
2490 	}
2491 	case AF_LINK: {
2492 		struct sockaddr_dl *sdla = (struct sockaddr_dl *)(void *)sa;
2493 		struct in6_addr *in6 = &sin6->sin6_addr;
2494 		caddr_t lla = LLADDR(sdla);
2495 
2496 		VERIFY(sa->sa_len <= sizeof(*sdl));
2497 		bcopy(sa, sdl, sa->sa_len);
2498 
2499 		sin6->sin6_scope_id = sdla->sdl_index;
2500 		if (sin6->sin6_scope_id == 0) {
2501 			sin6->sin6_scope_id = ifp->if_index;
2502 		}
2503 		in6->s6_addr[0] = 0xfe;
2504 		in6->s6_addr[1] = 0x80;
2505 		if (sdla->sdl_alen == EUI64_LENGTH) {
2506 			bcopy(lla, &in6->s6_addr[8], EUI64_LENGTH);
2507 		} else {
2508 			VERIFY(sdla->sdl_alen == ETHER_ADDR_LEN);
2509 
2510 			in6->s6_addr[8] = ((uint8_t) lla[0] ^ ND6_EUI64_UBIT);
2511 			in6->s6_addr[9] = (uint8_t) lla[1];
2512 			in6->s6_addr[10] = (uint8_t) lla[2];
2513 			in6->s6_addr[11] = 0xff;
2514 			in6->s6_addr[12] = 0xfe;
2515 			in6->s6_addr[13] = (uint8_t) lla[3];
2516 			in6->s6_addr[14] = (uint8_t) lla[4];
2517 			in6->s6_addr[15] = (uint8_t) lla[5];
2518 		}
2519 
2520 		break;
2521 	}
2522 	default:
2523 		VERIFY(false);
2524 		break;
2525 	}
2526 }
2527 
2528 int
nd6_alt_node_present(struct ifnet * ifp,struct sockaddr_in6 * sin6,struct sockaddr_dl * sdl,int32_t rssi,int lqm,int npm)2529 nd6_alt_node_present(struct ifnet *ifp, struct sockaddr_in6 *sin6,
2530     struct sockaddr_dl *sdl, int32_t rssi, int lqm, int npm)
2531 {
2532 	struct rtentry *rt = NULL;
2533 	struct llinfo_nd6 *ln = NULL;
2534 	struct  if_llreach *lr = NULL;
2535 	int nd6_nc_updated = 0;
2536 	const uint32_t temp_embedded_id = sin6->sin6_addr.s6_addr16[1];
2537 	const uint32_t temp_ifscope_id = sin6->sin6_scope_id;
2538 
2539 	if (IN6_IS_SCOPE_LINKLOCAL(&sin6->sin6_addr)) {
2540 		if (in6_embedded_scope) {
2541 			if (temp_embedded_id == 0) {
2542 				sin6->sin6_addr.s6_addr16[1] = htons(ifp->if_index);
2543 			}
2544 		} else if (temp_ifscope_id == 0) {
2545 			sin6->sin6_scope_id = ifp->if_index;
2546 		}
2547 	}
2548 
2549 	nd6_cache_lladdr(ifp, &sin6->sin6_addr, LLADDR(sdl), sdl->sdl_alen,
2550 	    ND_NEIGHBOR_ADVERT, 0, &nd6_nc_updated);
2551 
2552 	LCK_MTX_ASSERT(rnh_lock, LCK_MTX_ASSERT_NOTOWNED);
2553 	lck_mtx_lock(rnh_lock);
2554 
2555 	rt = rtalloc1_scoped_locked((struct sockaddr *)sin6, 1, 0,
2556 	    ifp->if_index);
2557 
2558 	/* Restore the address that was passed to us */
2559 	if (in6_embedded_scope) {
2560 		if (temp_embedded_id == 0) {
2561 			sin6->sin6_addr.s6_addr16[1] = 0;
2562 		}
2563 	} else if (temp_ifscope_id == 0) {
2564 		sin6->sin6_scope_id = 0;
2565 	}
2566 
2567 	if (rt != NULL) {
2568 		RT_LOCK(rt);
2569 		VERIFY(rt->rt_flags & RTF_LLINFO);
2570 		VERIFY(rt->rt_llinfo);
2571 
2572 		ln = rt->rt_llinfo;
2573 		ND6_CACHE_STATE_TRANSITION(ln, ND6_LLINFO_REACHABLE);
2574 		ln_setexpire(ln, 0);
2575 
2576 		lr = ln->ln_llreach;
2577 		if (lr) {
2578 			IFLR_LOCK(lr);
2579 			lr->lr_rssi = rssi;
2580 			lr->lr_lqm = (int32_t) lqm;
2581 			lr->lr_npm = (int32_t) npm;
2582 			IFLR_UNLOCK(lr);
2583 		}
2584 
2585 		RT_UNLOCK(rt);
2586 		RT_REMREF(rt);
2587 	}
2588 
2589 	lck_mtx_unlock(rnh_lock);
2590 
2591 	if (rt == NULL) {
2592 		log(LOG_ERR, "%s: failed to add/update host route to %s.\n",
2593 		    __func__, ip6_sprintf(&sin6->sin6_addr));
2594 #if DEBUG || DEVELOPMENT
2595 		if (ip6_p2p_debug) {
2596 			panic("%s: failed to add/update host route to %s.\n",
2597 			    __func__, ip6_sprintf(&sin6->sin6_addr));
2598 		}
2599 #endif
2600 		return EHOSTUNREACH;
2601 	}
2602 
2603 	nd6log(debug, "%s: Successfully added/updated host route to %s [lr=0x%llx]\n",
2604 	    __func__, ip6_sprintf(&sin6->sin6_addr),
2605 	    (uint64_t)VM_KERNEL_ADDRPERM(lr));
2606 	/*
2607 	 * nd6_nc_updated not set implies that nothing was updated
2608 	 * in the neighbor cache. Convey that as EEXIST to callers.
2609 	 */
2610 	if (nd6_nc_updated == 0) {
2611 		return EEXIST;
2612 	}
2613 	return 0;
2614 }
2615 
2616 int
nd6_alt_node_absent(struct ifnet * ifp,struct sockaddr_in6 * sin6,struct sockaddr_dl * sdl)2617 nd6_alt_node_absent(struct ifnet *ifp, struct sockaddr_in6 *sin6, struct sockaddr_dl *sdl)
2618 {
2619 	struct rtentry *rt = NULL;
2620 	int error = 0;
2621 	const uint32_t temp_embedded_id = sin6->sin6_addr.s6_addr16[1];
2622 	const uint32_t temp_ifscope_id = sin6->sin6_scope_id;
2623 
2624 	nd6log(debug, "%s: host route to %s\n", __func__,
2625 	    ip6_sprintf(&sin6->sin6_addr));
2626 
2627 	if (IN6_IS_SCOPE_LINKLOCAL(&sin6->sin6_addr)) {
2628 		if (in6_embedded_scope) {
2629 			if (temp_embedded_id == 0) {
2630 				sin6->sin6_addr.s6_addr16[1] = htons(ifp->if_index);
2631 			}
2632 		} else if (temp_ifscope_id == 0) {
2633 			sin6->sin6_scope_id = ifp->if_index;
2634 		}
2635 	}
2636 
2637 	LCK_MTX_ASSERT(rnh_lock, LCK_MTX_ASSERT_NOTOWNED);
2638 	lck_mtx_lock(rnh_lock);
2639 
2640 	rt = rtalloc1_scoped_locked((struct sockaddr *)sin6, 0, 0,
2641 	    ifp->if_index);
2642 
2643 	/* Restore the address that was passed to us */
2644 	if (in6_embedded_scope) {
2645 		if (temp_embedded_id == 0) {
2646 			sin6->sin6_addr.s6_addr16[1] = 0;
2647 		}
2648 	} else if (temp_ifscope_id == 0) {
2649 		sin6->sin6_scope_id = 0;
2650 	}
2651 
2652 	if (rt != NULL) {
2653 		RT_LOCK(rt);
2654 		if (IS_DYNAMIC_DIRECT_HOSTROUTE(rt)) {
2655 			/*
2656 			 * Copy the link layer information in SDL when present
2657 			 * as it later gets used to issue the kernel event for
2658 			 * node absence.
2659 			 */
2660 			if (sdl != NULL && rt->rt_gateway != NULL &&
2661 			    rt->rt_gateway->sa_family == AF_LINK &&
2662 			    SDL(rt->rt_gateway)->sdl_len <= sizeof(*sdl)) {
2663 				bcopy(rt->rt_gateway, sdl, SDL(rt->rt_gateway)->sdl_len);
2664 			}
2665 
2666 			rt->rt_flags |= RTF_CONDEMNED;
2667 			RT_UNLOCK(rt);
2668 
2669 			error = rtrequest_locked(RTM_DELETE, rt_key(rt),
2670 			    (struct sockaddr *)NULL, rt_mask(rt), 0,
2671 			    (struct rtentry **)NULL);
2672 
2673 			rtfree_locked(rt);
2674 		} else {
2675 			error = EHOSTUNREACH;
2676 			RT_REMREF_LOCKED(rt);
2677 			RT_UNLOCK(rt);
2678 		}
2679 	} else {
2680 		error = EHOSTUNREACH;
2681 	}
2682 
2683 	if (error == 0) {
2684 		nd6log(debug, "%s: Successfully deleted host route to %s "
2685 		    "for interface %s.\n", __func__, ip6_sprintf(&sin6->sin6_addr),
2686 		    ifp->if_xname);
2687 	} else {
2688 		nd6log(error, "%s: Failed to delete host route to %s "
2689 		    "for interface %s with error :%d.\n", __func__,
2690 		    ip6_sprintf(&sin6->sin6_addr),
2691 		    ifp->if_xname, error);
2692 	}
2693 
2694 	lck_mtx_unlock(rnh_lock);
2695 	return error;
2696 }
2697