nd6.c revision 1.264 1 1.264 ozaki /* $NetBSD: nd6.c,v 1.264 2019/09/25 09:52:32 ozaki-r Exp $ */
2 1.65 itojun /* $KAME: nd6.c,v 1.279 2002/06/08 11:16:51 itojun Exp $ */
3 1.4 thorpej
4 1.2 itojun /*
5 1.2 itojun * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
6 1.2 itojun * All rights reserved.
7 1.25 itojun *
8 1.2 itojun * Redistribution and use in source and binary forms, with or without
9 1.2 itojun * modification, are permitted provided that the following conditions
10 1.2 itojun * are met:
11 1.2 itojun * 1. Redistributions of source code must retain the above copyright
12 1.2 itojun * notice, this list of conditions and the following disclaimer.
13 1.2 itojun * 2. Redistributions in binary form must reproduce the above copyright
14 1.2 itojun * notice, this list of conditions and the following disclaimer in the
15 1.2 itojun * documentation and/or other materials provided with the distribution.
16 1.2 itojun * 3. Neither the name of the project nor the names of its contributors
17 1.2 itojun * may be used to endorse or promote products derived from this software
18 1.2 itojun * without specific prior written permission.
19 1.25 itojun *
20 1.2 itojun * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
21 1.2 itojun * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
22 1.2 itojun * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
23 1.2 itojun * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
24 1.2 itojun * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
25 1.2 itojun * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
26 1.2 itojun * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
27 1.2 itojun * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
28 1.2 itojun * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
29 1.2 itojun * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
30 1.2 itojun * SUCH DAMAGE.
31 1.2 itojun */
32 1.2 itojun
33 1.55 lukem #include <sys/cdefs.h>
34 1.264 ozaki __KERNEL_RCSID(0, "$NetBSD: nd6.c,v 1.264 2019/09/25 09:52:32 ozaki-r Exp $");
35 1.162 ozaki
36 1.169 pooka #ifdef _KERNEL_OPT
37 1.162 ozaki #include "opt_net_mpsafe.h"
38 1.169 pooka #endif
39 1.87 itojun
40 1.153 roy #include "bridge.h"
41 1.153 roy #include "carp.h"
42 1.2 itojun
43 1.2 itojun #include <sys/param.h>
44 1.2 itojun #include <sys/systm.h>
45 1.20 thorpej #include <sys/callout.h>
46 1.229 ozaki #include <sys/kmem.h>
47 1.2 itojun #include <sys/mbuf.h>
48 1.2 itojun #include <sys/socket.h>
49 1.126 ad #include <sys/socketvar.h>
50 1.2 itojun #include <sys/sockio.h>
51 1.2 itojun #include <sys/time.h>
52 1.2 itojun #include <sys/kernel.h>
53 1.2 itojun #include <sys/errno.h>
54 1.2 itojun #include <sys/ioctl.h>
55 1.2 itojun #include <sys/syslog.h>
56 1.2 itojun #include <sys/queue.h>
57 1.138 tls #include <sys/cprng.h>
58 1.203 ozaki #include <sys/workqueue.h>
59 1.2 itojun
60 1.2 itojun #include <net/if.h>
61 1.2 itojun #include <net/if_dl.h>
62 1.181 ozaki #include <net/if_llatbl.h>
63 1.2 itojun #include <net/if_types.h>
64 1.2 itojun #include <net/route.h>
65 1.62 itojun #include <net/if_ether.h>
66 1.62 itojun #include <net/if_fddi.h>
67 1.62 itojun #include <net/if_arc.h>
68 1.2 itojun
69 1.2 itojun #include <netinet/in.h>
70 1.2 itojun #include <netinet6/in6_var.h>
71 1.17 itojun #include <netinet/ip6.h>
72 1.2 itojun #include <netinet6/ip6_var.h>
73 1.96 rpaulo #include <netinet6/scope6_var.h>
74 1.2 itojun #include <netinet6/nd6.h>
75 1.151 roy #include <netinet6/in6_ifattach.h>
76 1.17 itojun #include <netinet/icmp6.h>
77 1.125 thorpej #include <netinet6/icmp6_private.h>
78 1.87 itojun
79 1.2 itojun #define ND6_SLOWTIMER_INTERVAL (60 * 60) /* 1 hour */
80 1.2 itojun #define ND6_RECALC_REACHTM_INTERVAL (60 * 120) /* 2 hours */
81 1.2 itojun
82 1.2 itojun /* timer values */
83 1.2 itojun int nd6_prune = 1; /* walk list every 1 seconds */
84 1.2 itojun int nd6_delay = 5; /* delay first probe time 5 second */
85 1.2 itojun int nd6_umaxtries = 3; /* maximum unicast query */
86 1.2 itojun int nd6_mmaxtries = 3; /* maximum multicast query */
87 1.2 itojun int nd6_useloopback = 1; /* use loopback interface for local traffic */
88 1.42 itojun int nd6_gctimer = (60 * 60 * 24); /* 1 day: garbage collection timer */
89 1.2 itojun
90 1.12 itojun /* preventing too many loops in ND option parsing */
91 1.12 itojun int nd6_maxndopt = 10; /* max # of ND options allowed */
92 1.12 itojun
93 1.31 itojun int nd6_maxnudhint = 0; /* max # of subsequent upper layer hints */
94 1.31 itojun
95 1.99 rpaulo int nd6_maxqueuelen = 1; /* max # of packets cached in unresolved ND entries */
96 1.99 rpaulo
97 1.36 itojun #ifdef ND6_DEBUG
98 1.36 itojun int nd6_debug = 1;
99 1.36 itojun #else
100 1.36 itojun int nd6_debug = 0;
101 1.36 itojun #endif
102 1.36 itojun
103 1.220 ozaki krwlock_t nd6_lock __cacheline_aligned;
104 1.220 ozaki
105 1.12 itojun struct nd_drhead nd_defrouter;
106 1.2 itojun struct nd_prhead nd_prefix = { 0 };
107 1.2 itojun
108 1.2 itojun int nd6_recalc_reachtm_interval = ND6_RECALC_REACHTM_INTERVAL;
109 1.2 itojun
110 1.121 dyoung static void nd6_setmtu0(struct ifnet *, struct nd_ifinfo *);
111 1.121 dyoung static void nd6_slowtimo(void *);
112 1.201 ozaki static int regen_tmpaddr(const struct in6_ifaddr *);
113 1.188 ozaki static void nd6_free(struct llentry *, int);
114 1.121 dyoung static void nd6_llinfo_timer(void *);
115 1.186 ozaki static void nd6_timer(void *);
116 1.203 ozaki static void nd6_timer_work(struct work *, void *);
117 1.181 ozaki static void clear_llinfo_pqueue(struct llentry *);
118 1.217 ozaki static struct nd_opt_hdr *nd6_option(union nd_opts *);
119 1.2 itojun
120 1.186 ozaki static callout_t nd6_slowtimo_ch;
121 1.186 ozaki static callout_t nd6_timer_ch;
122 1.203 ozaki static struct workqueue *nd6_timer_wq;
123 1.203 ozaki static struct work nd6_timer_wk;
124 1.20 thorpej
125 1.241 pgoyette static int fill_drlist(void *, size_t *);
126 1.241 pgoyette static int fill_prlist(void *, size_t *);
127 1.79 thorpej
128 1.212 ozaki static struct ifnet *nd6_defifp;
129 1.212 ozaki static int nd6_defifindex;
130 1.212 ozaki
131 1.212 ozaki static int nd6_setdefaultiface(int);
132 1.212 ozaki
133 1.79 thorpej MALLOC_DEFINE(M_IP6NDP, "NDP", "IPv6 Neighbour Discovery");
134 1.65 itojun
135 1.2 itojun void
136 1.112 dyoung nd6_init(void)
137 1.2 itojun {
138 1.203 ozaki int error;
139 1.12 itojun
140 1.264 ozaki nd6_nbr_init();
141 1.264 ozaki
142 1.220 ozaki rw_init(&nd6_lock);
143 1.220 ozaki
144 1.12 itojun /* initialization of the default router list */
145 1.214 ozaki ND_DEFROUTER_LIST_INIT();
146 1.12 itojun
147 1.126 ad callout_init(&nd6_slowtimo_ch, CALLOUT_MPSAFE);
148 1.126 ad callout_init(&nd6_timer_ch, CALLOUT_MPSAFE);
149 1.116 ad
150 1.203 ozaki error = workqueue_create(&nd6_timer_wq, "nd6_timer",
151 1.203 ozaki nd6_timer_work, NULL, PRI_SOFTNET, IPL_SOFTNET, WQ_MPSAFE);
152 1.203 ozaki if (error)
153 1.203 ozaki panic("%s: workqueue_create failed (%d)\n", __func__, error);
154 1.203 ozaki
155 1.2 itojun /* start timer */
156 1.20 thorpej callout_reset(&nd6_slowtimo_ch, ND6_SLOWTIMER_INTERVAL * hz,
157 1.20 thorpej nd6_slowtimo, NULL);
158 1.186 ozaki callout_reset(&nd6_timer_ch, hz, nd6_timer, NULL);
159 1.2 itojun }
160 1.2 itojun
161 1.58 itojun struct nd_ifinfo *
162 1.112 dyoung nd6_ifattach(struct ifnet *ifp)
163 1.2 itojun {
164 1.58 itojun struct nd_ifinfo *nd;
165 1.2 itojun
166 1.229 ozaki nd = kmem_zalloc(sizeof(*nd), KM_SLEEP);
167 1.2 itojun
168 1.58 itojun nd->initialized = 1;
169 1.2 itojun
170 1.58 itojun nd->chlim = IPV6_DEFHLIM;
171 1.58 itojun nd->basereachable = REACHABLE_TIME;
172 1.58 itojun nd->reachable = ND_COMPUTE_RTIME(nd->basereachable);
173 1.58 itojun nd->retrans = RETRANS_TIMER;
174 1.151 roy
175 1.135 dyoung nd->flags = ND6_IFF_PERFORMNUD | ND6_IFF_ACCEPT_RTADV;
176 1.61 itojun
177 1.151 roy /* A loopback interface always has ND6_IFF_AUTO_LINKLOCAL.
178 1.151 roy * A bridge interface should not have ND6_IFF_AUTO_LINKLOCAL
179 1.154 snj * because one of its members should. */
180 1.151 roy if ((ip6_auto_linklocal && ifp->if_type != IFT_BRIDGE) ||
181 1.151 roy (ifp->if_flags & IFF_LOOPBACK))
182 1.151 roy nd->flags |= ND6_IFF_AUTO_LINKLOCAL;
183 1.151 roy
184 1.151 roy /* A loopback interface does not need to accept RTADV.
185 1.151 roy * A bridge interface should not accept RTADV
186 1.154 snj * because one of its members should. */
187 1.151 roy if (ip6_accept_rtadv &&
188 1.151 roy !(ifp->if_flags & IFF_LOOPBACK) &&
189 1.151 roy !(ifp->if_type != IFT_BRIDGE))
190 1.151 roy nd->flags |= ND6_IFF_ACCEPT_RTADV;
191 1.151 roy
192 1.61 itojun /* XXX: we cannot call nd6_setmtu since ifp is not fully initialized */
193 1.61 itojun nd6_setmtu0(ifp, nd);
194 1.2 itojun
195 1.58 itojun return nd;
196 1.58 itojun }
197 1.21 itojun
198 1.58 itojun void
199 1.158 martin nd6_ifdetach(struct ifnet *ifp, struct in6_ifextra *ext)
200 1.58 itojun {
201 1.21 itojun
202 1.219 ozaki /* Ensure all IPv6 addresses are purged before calling nd6_purge */
203 1.219 ozaki if_purgeaddrs(ifp, AF_INET6, in6_purgeaddr);
204 1.158 martin nd6_purge(ifp, ext);
205 1.229 ozaki kmem_free(ext->nd_ifinfo, sizeof(struct nd_ifinfo));
206 1.2 itojun }
207 1.2 itojun
208 1.2 itojun void
209 1.112 dyoung nd6_setmtu(struct ifnet *ifp)
210 1.61 itojun {
211 1.61 itojun nd6_setmtu0(ifp, ND_IFINFO(ifp));
212 1.61 itojun }
213 1.61 itojun
214 1.61 itojun void
215 1.112 dyoung nd6_setmtu0(struct ifnet *ifp, struct nd_ifinfo *ndi)
216 1.2 itojun {
217 1.61 itojun u_int32_t omaxmtu;
218 1.61 itojun
219 1.61 itojun omaxmtu = ndi->maxmtu;
220 1.2 itojun
221 1.40 itojun switch (ifp->if_type) {
222 1.62 itojun case IFT_ARCNET:
223 1.62 itojun ndi->maxmtu = MIN(ARC_PHDS_MAXMTU, ifp->if_mtu); /* RFC2497 */
224 1.39 itojun break;
225 1.58 itojun case IFT_FDDI:
226 1.58 itojun ndi->maxmtu = MIN(FDDIIPMTU, ifp->if_mtu);
227 1.58 itojun break;
228 1.39 itojun default:
229 1.39 itojun ndi->maxmtu = ifp->if_mtu;
230 1.39 itojun break;
231 1.2 itojun }
232 1.2 itojun
233 1.61 itojun /*
234 1.61 itojun * Decreasing the interface MTU under IPV6 minimum MTU may cause
235 1.61 itojun * undesirable situation. We thus notify the operator of the change
236 1.61 itojun * explicitly. The check for omaxmtu is necessary to restrict the
237 1.63 itojun * log to the case of changing the MTU, not initializing it.
238 1.61 itojun */
239 1.61 itojun if (omaxmtu >= IPV6_MMTU && ndi->maxmtu < IPV6_MMTU) {
240 1.81 christos log(LOG_NOTICE, "nd6_setmtu0: new link MTU on %s (%lu) is too"
241 1.81 christos " small for IPv6 which needs %lu\n",
242 1.81 christos if_name(ifp), (unsigned long)ndi->maxmtu, (unsigned long)
243 1.81 christos IPV6_MMTU);
244 1.2 itojun }
245 1.58 itojun
246 1.58 itojun if (ndi->maxmtu > in6_maxmtu)
247 1.58 itojun in6_setmaxmtu(); /* check all interfaces just in case */
248 1.2 itojun }
249 1.2 itojun
250 1.2 itojun void
251 1.112 dyoung nd6_option_init(void *opt, int icmp6len, union nd_opts *ndopts)
252 1.2 itojun {
253 1.58 itojun
254 1.129 dyoung memset(ndopts, 0, sizeof(*ndopts));
255 1.2 itojun ndopts->nd_opts_search = (struct nd_opt_hdr *)opt;
256 1.2 itojun ndopts->nd_opts_last
257 1.2 itojun = (struct nd_opt_hdr *)(((u_char *)opt) + icmp6len);
258 1.2 itojun
259 1.2 itojun if (icmp6len == 0) {
260 1.2 itojun ndopts->nd_opts_done = 1;
261 1.2 itojun ndopts->nd_opts_search = NULL;
262 1.2 itojun }
263 1.2 itojun }
264 1.2 itojun
265 1.2 itojun /*
266 1.2 itojun * Take one ND option.
267 1.2 itojun */
268 1.217 ozaki static struct nd_opt_hdr *
269 1.112 dyoung nd6_option(union nd_opts *ndopts)
270 1.2 itojun {
271 1.2 itojun struct nd_opt_hdr *nd_opt;
272 1.2 itojun int olen;
273 1.2 itojun
274 1.163 ozaki KASSERT(ndopts != NULL);
275 1.163 ozaki KASSERT(ndopts->nd_opts_last != NULL);
276 1.163 ozaki
277 1.99 rpaulo if (ndopts->nd_opts_search == NULL)
278 1.2 itojun return NULL;
279 1.2 itojun if (ndopts->nd_opts_done)
280 1.2 itojun return NULL;
281 1.2 itojun
282 1.2 itojun nd_opt = ndopts->nd_opts_search;
283 1.2 itojun
284 1.40 itojun /* make sure nd_opt_len is inside the buffer */
285 1.111 christos if ((void *)&nd_opt->nd_opt_len >= (void *)ndopts->nd_opts_last) {
286 1.129 dyoung memset(ndopts, 0, sizeof(*ndopts));
287 1.40 itojun return NULL;
288 1.40 itojun }
289 1.40 itojun
290 1.2 itojun olen = nd_opt->nd_opt_len << 3;
291 1.2 itojun if (olen == 0) {
292 1.2 itojun /*
293 1.2 itojun * Message validation requires that all included
294 1.2 itojun * options have a length that is greater than zero.
295 1.2 itojun */
296 1.129 dyoung memset(ndopts, 0, sizeof(*ndopts));
297 1.2 itojun return NULL;
298 1.2 itojun }
299 1.2 itojun
300 1.111 christos ndopts->nd_opts_search = (struct nd_opt_hdr *)((char *)nd_opt + olen);
301 1.40 itojun if (ndopts->nd_opts_search > ndopts->nd_opts_last) {
302 1.40 itojun /* option overruns the end of buffer, invalid */
303 1.129 dyoung memset(ndopts, 0, sizeof(*ndopts));
304 1.40 itojun return NULL;
305 1.40 itojun } else if (ndopts->nd_opts_search == ndopts->nd_opts_last) {
306 1.40 itojun /* reached the end of options chain */
307 1.2 itojun ndopts->nd_opts_done = 1;
308 1.2 itojun ndopts->nd_opts_search = NULL;
309 1.2 itojun }
310 1.2 itojun return nd_opt;
311 1.2 itojun }
312 1.2 itojun
313 1.2 itojun /*
314 1.2 itojun * Parse multiple ND options.
315 1.2 itojun * This function is much easier to use, for ND routines that do not need
316 1.2 itojun * multiple options of the same type.
317 1.2 itojun */
318 1.2 itojun int
319 1.112 dyoung nd6_options(union nd_opts *ndopts)
320 1.2 itojun {
321 1.2 itojun struct nd_opt_hdr *nd_opt;
322 1.2 itojun int i = 0;
323 1.2 itojun
324 1.163 ozaki KASSERT(ndopts != NULL);
325 1.163 ozaki KASSERT(ndopts->nd_opts_last != NULL);
326 1.163 ozaki
327 1.99 rpaulo if (ndopts->nd_opts_search == NULL)
328 1.2 itojun return 0;
329 1.99 rpaulo
330 1.2 itojun while (1) {
331 1.2 itojun nd_opt = nd6_option(ndopts);
332 1.99 rpaulo if (nd_opt == NULL && ndopts->nd_opts_last == NULL) {
333 1.2 itojun /*
334 1.2 itojun * Message validation requires that all included
335 1.2 itojun * options have a length that is greater than zero.
336 1.2 itojun */
337 1.125 thorpej ICMP6_STATINC(ICMP6_STAT_ND_BADOPT);
338 1.129 dyoung memset(ndopts, 0, sizeof(*ndopts));
339 1.2 itojun return -1;
340 1.2 itojun }
341 1.2 itojun
342 1.99 rpaulo if (nd_opt == NULL)
343 1.2 itojun goto skip1;
344 1.2 itojun
345 1.2 itojun switch (nd_opt->nd_opt_type) {
346 1.2 itojun case ND_OPT_SOURCE_LINKADDR:
347 1.2 itojun case ND_OPT_TARGET_LINKADDR:
348 1.2 itojun case ND_OPT_MTU:
349 1.2 itojun case ND_OPT_REDIRECTED_HEADER:
350 1.247 roy case ND_OPT_NONCE:
351 1.2 itojun if (ndopts->nd_opt_array[nd_opt->nd_opt_type]) {
352 1.187 ozaki nd6log(LOG_INFO,
353 1.36 itojun "duplicated ND6 option found (type=%d)\n",
354 1.187 ozaki nd_opt->nd_opt_type);
355 1.2 itojun /* XXX bark? */
356 1.2 itojun } else {
357 1.2 itojun ndopts->nd_opt_array[nd_opt->nd_opt_type]
358 1.2 itojun = nd_opt;
359 1.2 itojun }
360 1.2 itojun break;
361 1.2 itojun case ND_OPT_PREFIX_INFORMATION:
362 1.2 itojun if (ndopts->nd_opt_array[nd_opt->nd_opt_type] == 0) {
363 1.2 itojun ndopts->nd_opt_array[nd_opt->nd_opt_type]
364 1.2 itojun = nd_opt;
365 1.2 itojun }
366 1.2 itojun ndopts->nd_opts_pi_end =
367 1.2 itojun (struct nd_opt_prefix_info *)nd_opt;
368 1.2 itojun break;
369 1.2 itojun default:
370 1.2 itojun /*
371 1.2 itojun * Unknown options must be silently ignored,
372 1.109 christos * to accommodate future extension to the protocol.
373 1.2 itojun */
374 1.187 ozaki nd6log(LOG_DEBUG,
375 1.2 itojun "nd6_options: unsupported option %d - "
376 1.187 ozaki "option ignored\n", nd_opt->nd_opt_type);
377 1.2 itojun }
378 1.2 itojun
379 1.2 itojun skip1:
380 1.2 itojun i++;
381 1.12 itojun if (i > nd6_maxndopt) {
382 1.125 thorpej ICMP6_STATINC(ICMP6_STAT_ND_TOOMANYOPT);
383 1.187 ozaki nd6log(LOG_INFO, "too many loop in nd opt\n");
384 1.2 itojun break;
385 1.2 itojun }
386 1.2 itojun
387 1.2 itojun if (ndopts->nd_opts_done)
388 1.2 itojun break;
389 1.2 itojun }
390 1.2 itojun
391 1.2 itojun return 0;
392 1.2 itojun }
393 1.2 itojun
394 1.2 itojun /*
395 1.86 itojun * ND6 timer routine to handle ND6 entries
396 1.2 itojun */
397 1.2 itojun void
398 1.188 ozaki nd6_llinfo_settimer(struct llentry *ln, time_t xtick)
399 1.86 itojun {
400 1.86 itojun
401 1.182 ozaki CTASSERT(sizeof(time_t) > sizeof(int));
402 1.181 ozaki LLE_WLOCK_ASSERT(ln);
403 1.86 itojun
404 1.222 ozaki KASSERT(xtick >= 0);
405 1.222 ozaki
406 1.246 ozaki /*
407 1.246 ozaki * We have to take care of a reference leak which occurs if
408 1.246 ozaki * callout_reset overwrites a pending callout schedule. Unfortunately
409 1.246 ozaki * we don't have a mean to know the overwrite, so we need to know it
410 1.246 ozaki * using callout_stop. We need to call callout_pending first to exclude
411 1.246 ozaki * the case that the callout has never been scheduled.
412 1.246 ozaki */
413 1.246 ozaki if (callout_pending(&ln->la_timer)) {
414 1.246 ozaki bool expired = callout_stop(&ln->la_timer);
415 1.246 ozaki if (!expired)
416 1.246 ozaki LLE_REMREF(ln);
417 1.246 ozaki }
418 1.246 ozaki
419 1.222 ozaki ln->ln_expire = time_uptime + xtick / hz;
420 1.222 ozaki LLE_ADDREF(ln);
421 1.222 ozaki if (xtick > INT_MAX) {
422 1.222 ozaki ln->ln_ntick = xtick - INT_MAX;
423 1.222 ozaki callout_reset(&ln->ln_timer_ch, INT_MAX,
424 1.222 ozaki nd6_llinfo_timer, ln);
425 1.222 ozaki } else {
426 1.86 itojun ln->ln_ntick = 0;
427 1.222 ozaki callout_reset(&ln->ln_timer_ch, xtick,
428 1.222 ozaki nd6_llinfo_timer, ln);
429 1.86 itojun }
430 1.181 ozaki }
431 1.181 ozaki
432 1.179 ozaki /*
433 1.179 ozaki * Gets source address of the first packet in hold queue
434 1.179 ozaki * and stores it in @src.
435 1.179 ozaki * Returns pointer to @src (if hold queue is not empty) or NULL.
436 1.179 ozaki */
437 1.179 ozaki static struct in6_addr *
438 1.181 ozaki nd6_llinfo_get_holdsrc(struct llentry *ln, struct in6_addr *src)
439 1.179 ozaki {
440 1.179 ozaki struct ip6_hdr *hip6;
441 1.179 ozaki
442 1.179 ozaki if (ln == NULL || ln->ln_hold == NULL)
443 1.179 ozaki return NULL;
444 1.179 ozaki
445 1.179 ozaki /*
446 1.179 ozaki * assuming every packet in ln_hold has the same IP header
447 1.179 ozaki */
448 1.179 ozaki hip6 = mtod(ln->ln_hold, struct ip6_hdr *);
449 1.179 ozaki /* XXX pullup? */
450 1.179 ozaki if (sizeof(*hip6) < ln->ln_hold->m_len)
451 1.179 ozaki *src = hip6->ip6_src;
452 1.179 ozaki else
453 1.179 ozaki src = NULL;
454 1.179 ozaki
455 1.179 ozaki return src;
456 1.179 ozaki }
457 1.179 ozaki
458 1.86 itojun static void
459 1.112 dyoung nd6_llinfo_timer(void *arg)
460 1.2 itojun {
461 1.181 ozaki struct llentry *ln = arg;
462 1.65 itojun struct ifnet *ifp;
463 1.86 itojun struct nd_ifinfo *ndi = NULL;
464 1.178 ozaki bool send_ns = false;
465 1.178 ozaki const struct in6_addr *daddr6 = NULL;
466 1.262 roy const struct in6_addr *taddr6 = &ln->r_l3addr.addr6;
467 1.262 roy struct sockaddr_in6 sin6;
468 1.63 itojun
469 1.239 ozaki SOFTNET_KERNEL_LOCK_UNLESS_NET_MPSAFE();
470 1.246 ozaki
471 1.181 ozaki LLE_WLOCK(ln);
472 1.222 ozaki if ((ln->la_flags & LLE_LINKED) == 0)
473 1.222 ozaki goto out;
474 1.181 ozaki if (ln->ln_ntick > 0) {
475 1.188 ozaki nd6_llinfo_settimer(ln, ln->ln_ntick);
476 1.181 ozaki goto out;
477 1.181 ozaki }
478 1.86 itojun
479 1.181 ozaki ifp = ln->lle_tbl->llt_ifp;
480 1.173 ozaki KASSERT(ifp != NULL);
481 1.173 ozaki
482 1.86 itojun ndi = ND_IFINFO(ifp);
483 1.86 itojun
484 1.86 itojun switch (ln->ln_state) {
485 1.263 roy case ND6_LLINFO_WAITDELETE:
486 1.263 roy LLE_REMREF(ln);
487 1.263 roy nd6_free(ln, 0);
488 1.263 roy ln = NULL;
489 1.263 roy break;
490 1.263 roy
491 1.86 itojun case ND6_LLINFO_INCOMPLETE:
492 1.263 roy if (ln->ln_asked++ < nd6_mmaxtries) {
493 1.178 ozaki send_ns = true;
494 1.262 roy break;
495 1.262 roy }
496 1.262 roy
497 1.262 roy if (ln->ln_hold) {
498 1.262 roy struct mbuf *m = ln->ln_hold, *m0;
499 1.262 roy
500 1.262 roy /*
501 1.262 roy * assuming every packet in ln_hold has
502 1.262 roy * the same IP header
503 1.262 roy */
504 1.262 roy m0 = m->m_nextpkt;
505 1.262 roy m->m_nextpkt = NULL;
506 1.262 roy ln->ln_hold = m0;
507 1.262 roy clear_llinfo_pqueue(ln);
508 1.100 rpaulo
509 1.262 roy icmp6_error2(m, ICMP6_DST_UNREACH,
510 1.262 roy ICMP6_DST_UNREACH_ADDR, 0, ifp);
511 1.2 itojun }
512 1.262 roy
513 1.262 roy sockaddr_in6_init(&sin6, taddr6, 0, 0, 0);
514 1.262 roy rt_clonedmsg(RTM_MISS, sin6tosa(&sin6), NULL, ifp);
515 1.262 roy
516 1.263 roy /*
517 1.263 roy * Move to the ND6_LLINFO_WAITDELETE state for another
518 1.263 roy * interval at which point the llentry will be freed
519 1.263 roy * unless it's attempted to be used again and we'll
520 1.263 roy * resend NS again, rinse and repeat.
521 1.263 roy */
522 1.263 roy ln->ln_state = ND6_LLINFO_WAITDELETE;
523 1.263 roy if (ln->ln_asked == nd6_mmaxtries)
524 1.263 roy nd6_llinfo_settimer(ln, ndi->retrans * hz / 1000);
525 1.263 roy else
526 1.263 roy send_ns = true;
527 1.86 itojun break;
528 1.262 roy
529 1.86 itojun case ND6_LLINFO_REACHABLE:
530 1.86 itojun if (!ND6_LLINFO_PERMANENT(ln)) {
531 1.86 itojun ln->ln_state = ND6_LLINFO_STALE;
532 1.188 ozaki nd6_llinfo_settimer(ln, nd6_gctimer * hz);
533 1.2 itojun }
534 1.86 itojun break;
535 1.2 itojun
536 1.143 christos case ND6_LLINFO_PURGE:
537 1.86 itojun case ND6_LLINFO_STALE:
538 1.86 itojun /* Garbage Collection(RFC 2461 5.3) */
539 1.86 itojun if (!ND6_LLINFO_PERMANENT(ln)) {
540 1.256 christos LLE_REMREF(ln);
541 1.188 ozaki nd6_free(ln, 1);
542 1.86 itojun ln = NULL;
543 1.2 itojun }
544 1.86 itojun break;
545 1.54 itojun
546 1.86 itojun case ND6_LLINFO_DELAY:
547 1.86 itojun if (ndi && (ndi->flags & ND6_IFF_PERFORMNUD) != 0) {
548 1.86 itojun /* We need NUD */
549 1.86 itojun ln->ln_asked = 1;
550 1.86 itojun ln->ln_state = ND6_LLINFO_PROBE;
551 1.188 ozaki daddr6 = &ln->r_l3addr.addr6;
552 1.178 ozaki send_ns = true;
553 1.86 itojun } else {
554 1.86 itojun ln->ln_state = ND6_LLINFO_STALE; /* XXX */
555 1.188 ozaki nd6_llinfo_settimer(ln, nd6_gctimer * hz);
556 1.86 itojun }
557 1.86 itojun break;
558 1.86 itojun case ND6_LLINFO_PROBE:
559 1.86 itojun if (ln->ln_asked < nd6_umaxtries) {
560 1.86 itojun ln->ln_asked++;
561 1.188 ozaki daddr6 = &ln->r_l3addr.addr6;
562 1.178 ozaki send_ns = true;
563 1.86 itojun } else {
564 1.256 christos LLE_REMREF(ln);
565 1.188 ozaki nd6_free(ln, 0);
566 1.86 itojun ln = NULL;
567 1.86 itojun }
568 1.86 itojun break;
569 1.86 itojun }
570 1.65 itojun
571 1.178 ozaki if (send_ns) {
572 1.179 ozaki struct in6_addr src, *psrc;
573 1.179 ozaki
574 1.188 ozaki nd6_llinfo_settimer(ln, ndi->retrans * hz / 1000);
575 1.179 ozaki psrc = nd6_llinfo_get_holdsrc(ln, &src);
576 1.181 ozaki LLE_FREE_LOCKED(ln);
577 1.181 ozaki ln = NULL;
578 1.247 roy nd6_ns_output(ifp, daddr6, taddr6, psrc, NULL);
579 1.178 ozaki }
580 1.178 ozaki
581 1.181 ozaki out:
582 1.181 ozaki if (ln != NULL)
583 1.181 ozaki LLE_FREE_LOCKED(ln);
584 1.239 ozaki SOFTNET_KERNEL_UNLOCK_UNLESS_NET_MPSAFE();
585 1.86 itojun }
586 1.42 itojun
587 1.86 itojun /*
588 1.86 itojun * ND6 timer routine to expire default route list and prefix list
589 1.86 itojun */
590 1.186 ozaki static void
591 1.203 ozaki nd6_timer_work(struct work *wk, void *arg)
592 1.86 itojun {
593 1.108 dyoung struct nd_defrouter *next_dr, *dr;
594 1.108 dyoung struct nd_prefix *next_pr, *pr;
595 1.86 itojun struct in6_ifaddr *ia6, *nia6;
596 1.205 ozaki int s, bound;
597 1.205 ozaki struct psref psref;
598 1.42 itojun
599 1.86 itojun callout_reset(&nd6_timer_ch, nd6_prune * hz,
600 1.86 itojun nd6_timer, NULL);
601 1.63 itojun
602 1.239 ozaki SOFTNET_KERNEL_LOCK_UNLESS_NET_MPSAFE();
603 1.126 ad
604 1.43 itojun /* expire default router list */
605 1.220 ozaki
606 1.220 ozaki ND6_WLOCK();
607 1.214 ozaki ND_DEFROUTER_LIST_FOREACH_SAFE(dr, next_dr) {
608 1.166 ozaki if (dr->expire && dr->expire < time_uptime) {
609 1.213 ozaki nd6_defrtrlist_del(dr, NULL);
610 1.31 itojun }
611 1.2 itojun }
612 1.220 ozaki ND6_UNLOCK();
613 1.2 itojun
614 1.65 itojun /*
615 1.65 itojun * expire interface addresses.
616 1.65 itojun * in the past the loop was inside prefix expiry processing.
617 1.65 itojun * However, from a stricter speci-confrmance standpoint, we should
618 1.65 itojun * rather separate address lifetimes and prefix lifetimes.
619 1.65 itojun */
620 1.205 ozaki bound = curlwp_bind();
621 1.99 rpaulo addrloop:
622 1.205 ozaki s = pserialize_read_enter();
623 1.205 ozaki for (ia6 = IN6_ADDRLIST_READER_FIRST(); ia6; ia6 = nia6) {
624 1.205 ozaki nia6 = IN6_ADDRLIST_READER_NEXT(ia6);
625 1.205 ozaki
626 1.205 ozaki ia6_acquire(ia6, &psref);
627 1.205 ozaki pserialize_read_exit(s);
628 1.205 ozaki
629 1.65 itojun /* check address lifetime */
630 1.65 itojun if (IFA6_IS_INVALID(ia6)) {
631 1.99 rpaulo int regen = 0;
632 1.240 ozaki struct ifnet *ifp;
633 1.99 rpaulo
634 1.99 rpaulo /*
635 1.99 rpaulo * If the expiring address is temporary, try
636 1.99 rpaulo * regenerating a new one. This would be useful when
637 1.99 rpaulo * we suspended a laptop PC, then turned it on after a
638 1.99 rpaulo * period that could invalidate all temporary
639 1.99 rpaulo * addresses. Although we may have to restart the
640 1.99 rpaulo * loop (see below), it must be after purging the
641 1.99 rpaulo * address. Otherwise, we'd see an infinite loop of
642 1.99 rpaulo * regeneration.
643 1.99 rpaulo */
644 1.99 rpaulo if (ip6_use_tempaddr &&
645 1.99 rpaulo (ia6->ia6_flags & IN6_IFF_TEMPORARY) != 0) {
646 1.240 ozaki IFNET_LOCK(ia6->ia_ifa.ifa_ifp);
647 1.99 rpaulo if (regen_tmpaddr(ia6) == 0)
648 1.99 rpaulo regen = 1;
649 1.240 ozaki IFNET_UNLOCK(ia6->ia_ifa.ifa_ifp);
650 1.99 rpaulo }
651 1.99 rpaulo
652 1.240 ozaki ifp = ia6->ia_ifa.ifa_ifp;
653 1.240 ozaki IFNET_LOCK(ifp);
654 1.240 ozaki /*
655 1.240 ozaki * Need to take the lock first to prevent if_detach
656 1.240 ozaki * from running in6_purgeaddr concurrently.
657 1.240 ozaki */
658 1.240 ozaki if (!if_is_deactivated(ifp)) {
659 1.240 ozaki ia6_release(ia6, &psref);
660 1.240 ozaki in6_purgeaddr(&ia6->ia_ifa);
661 1.240 ozaki } else {
662 1.240 ozaki /*
663 1.240 ozaki * ifp is being destroyed, ia6 will be destroyed
664 1.240 ozaki * by if_detach.
665 1.240 ozaki */
666 1.240 ozaki ia6_release(ia6, &psref);
667 1.240 ozaki }
668 1.205 ozaki ia6 = NULL;
669 1.240 ozaki IFNET_UNLOCK(ifp);
670 1.99 rpaulo
671 1.99 rpaulo if (regen)
672 1.99 rpaulo goto addrloop; /* XXX: see below */
673 1.99 rpaulo } else if (IFA6_IS_DEPRECATED(ia6)) {
674 1.99 rpaulo int oldflags = ia6->ia6_flags;
675 1.99 rpaulo
676 1.145 roy if ((oldflags & IN6_IFF_DEPRECATED) == 0) {
677 1.145 roy ia6->ia6_flags |= IN6_IFF_DEPRECATED;
678 1.253 roy rt_addrmsg(RTM_NEWADDR, (struct ifaddr *)ia6);
679 1.145 roy }
680 1.99 rpaulo
681 1.99 rpaulo /*
682 1.99 rpaulo * If a temporary address has just become deprecated,
683 1.99 rpaulo * regenerate a new one if possible.
684 1.99 rpaulo */
685 1.99 rpaulo if (ip6_use_tempaddr &&
686 1.99 rpaulo (ia6->ia6_flags & IN6_IFF_TEMPORARY) != 0 &&
687 1.99 rpaulo (oldflags & IN6_IFF_DEPRECATED) == 0) {
688 1.257 ozaki int ret;
689 1.99 rpaulo
690 1.257 ozaki IFNET_LOCK(ia6->ia_ifa.ifa_ifp);
691 1.257 ozaki ret = regen_tmpaddr(ia6);
692 1.257 ozaki IFNET_UNLOCK(ia6->ia_ifa.ifa_ifp);
693 1.257 ozaki if (ret == 0) {
694 1.99 rpaulo /*
695 1.99 rpaulo * A new temporary address is
696 1.99 rpaulo * generated.
697 1.99 rpaulo * XXX: this means the address chain
698 1.99 rpaulo * has changed while we are still in
699 1.99 rpaulo * the loop. Although the change
700 1.99 rpaulo * would not cause disaster (because
701 1.99 rpaulo * it's not a deletion, but an
702 1.99 rpaulo * addition,) we'd rather restart the
703 1.99 rpaulo * loop just for safety. Or does this
704 1.99 rpaulo * significantly reduce performance??
705 1.99 rpaulo */
706 1.205 ozaki ia6_release(ia6, &psref);
707 1.99 rpaulo goto addrloop;
708 1.99 rpaulo }
709 1.99 rpaulo }
710 1.65 itojun } else {
711 1.65 itojun /*
712 1.65 itojun * A new RA might have made a deprecated address
713 1.65 itojun * preferred.
714 1.65 itojun */
715 1.145 roy if (ia6->ia6_flags & IN6_IFF_DEPRECATED) {
716 1.145 roy ia6->ia6_flags &= ~IN6_IFF_DEPRECATED;
717 1.253 roy rt_addrmsg(RTM_NEWADDR, (struct ifaddr *)ia6);
718 1.145 roy }
719 1.2 itojun }
720 1.205 ozaki s = pserialize_read_enter();
721 1.205 ozaki ia6_release(ia6, &psref);
722 1.65 itojun }
723 1.205 ozaki pserialize_read_exit(s);
724 1.205 ozaki curlwp_bindx(bound);
725 1.2 itojun
726 1.65 itojun /* expire prefix list */
727 1.220 ozaki ND6_WLOCK();
728 1.215 ozaki ND_PREFIX_LIST_FOREACH_SAFE(pr, next_pr) {
729 1.2 itojun /*
730 1.2 itojun * check prefix lifetime.
731 1.2 itojun * since pltime is just for autoconf, pltime processing for
732 1.2 itojun * prefix is not necessary.
733 1.2 itojun */
734 1.65 itojun if (pr->ndpr_vltime != ND6_INFINITE_LIFETIME &&
735 1.166 ozaki time_uptime - pr->ndpr_lastupdate > pr->ndpr_vltime) {
736 1.2 itojun /*
737 1.228 ozaki * Just invalidate the prefix here. Removing it
738 1.228 ozaki * will be done when purging an associated address.
739 1.2 itojun */
740 1.228 ozaki KASSERT(pr->ndpr_refcnt > 0);
741 1.228 ozaki nd6_invalidate_prefix(pr);
742 1.108 dyoung }
743 1.2 itojun }
744 1.220 ozaki ND6_UNLOCK();
745 1.126 ad
746 1.239 ozaki SOFTNET_KERNEL_UNLOCK_UNLESS_NET_MPSAFE();
747 1.16 itojun }
748 1.16 itojun
749 1.203 ozaki static void
750 1.203 ozaki nd6_timer(void *ignored_arg)
751 1.203 ozaki {
752 1.203 ozaki
753 1.203 ozaki workqueue_enqueue(nd6_timer_wq, &nd6_timer_wk, NULL);
754 1.203 ozaki }
755 1.203 ozaki
756 1.112 dyoung /* ia6: deprecated/invalidated temporary address */
757 1.99 rpaulo static int
758 1.201 ozaki regen_tmpaddr(const struct in6_ifaddr *ia6)
759 1.99 rpaulo {
760 1.99 rpaulo struct ifaddr *ifa;
761 1.99 rpaulo struct ifnet *ifp;
762 1.99 rpaulo struct in6_ifaddr *public_ifa6 = NULL;
763 1.205 ozaki int s;
764 1.99 rpaulo
765 1.99 rpaulo ifp = ia6->ia_ifa.ifa_ifp;
766 1.205 ozaki s = pserialize_read_enter();
767 1.202 ozaki IFADDR_READER_FOREACH(ifa, ifp) {
768 1.99 rpaulo struct in6_ifaddr *it6;
769 1.99 rpaulo
770 1.99 rpaulo if (ifa->ifa_addr->sa_family != AF_INET6)
771 1.99 rpaulo continue;
772 1.99 rpaulo
773 1.99 rpaulo it6 = (struct in6_ifaddr *)ifa;
774 1.99 rpaulo
775 1.99 rpaulo /* ignore no autoconf addresses. */
776 1.99 rpaulo if ((it6->ia6_flags & IN6_IFF_AUTOCONF) == 0)
777 1.99 rpaulo continue;
778 1.99 rpaulo
779 1.99 rpaulo /* ignore autoconf addresses with different prefixes. */
780 1.99 rpaulo if (it6->ia6_ndpr == NULL || it6->ia6_ndpr != ia6->ia6_ndpr)
781 1.99 rpaulo continue;
782 1.99 rpaulo
783 1.99 rpaulo /*
784 1.99 rpaulo * Now we are looking at an autoconf address with the same
785 1.99 rpaulo * prefix as ours. If the address is temporary and is still
786 1.99 rpaulo * preferred, do not create another one. It would be rare, but
787 1.99 rpaulo * could happen, for example, when we resume a laptop PC after
788 1.99 rpaulo * a long period.
789 1.99 rpaulo */
790 1.99 rpaulo if ((it6->ia6_flags & IN6_IFF_TEMPORARY) != 0 &&
791 1.99 rpaulo !IFA6_IS_DEPRECATED(it6)) {
792 1.99 rpaulo public_ifa6 = NULL;
793 1.99 rpaulo break;
794 1.99 rpaulo }
795 1.99 rpaulo
796 1.99 rpaulo /*
797 1.99 rpaulo * This is a public autoconf address that has the same prefix
798 1.99 rpaulo * as ours. If it is preferred, keep it. We can't break the
799 1.99 rpaulo * loop here, because there may be a still-preferred temporary
800 1.99 rpaulo * address with the prefix.
801 1.99 rpaulo */
802 1.99 rpaulo if (!IFA6_IS_DEPRECATED(it6))
803 1.200 ozaki public_ifa6 = it6;
804 1.99 rpaulo }
805 1.99 rpaulo
806 1.99 rpaulo if (public_ifa6 != NULL) {
807 1.99 rpaulo int e;
808 1.205 ozaki struct psref psref;
809 1.99 rpaulo
810 1.205 ozaki ia6_acquire(public_ifa6, &psref);
811 1.205 ozaki pserialize_read_exit(s);
812 1.99 rpaulo /*
813 1.99 rpaulo * Random factor is introduced in the preferred lifetime, so
814 1.99 rpaulo * we do not need additional delay (3rd arg to in6_tmpifadd).
815 1.99 rpaulo */
816 1.220 ozaki ND6_WLOCK();
817 1.220 ozaki e = in6_tmpifadd(public_ifa6, 0, 0);
818 1.220 ozaki ND6_UNLOCK();
819 1.220 ozaki if (e != 0) {
820 1.205 ozaki ia6_release(public_ifa6, &psref);
821 1.99 rpaulo log(LOG_NOTICE, "regen_tmpaddr: failed to create a new"
822 1.99 rpaulo " tmp addr, errno=%d\n", e);
823 1.112 dyoung return -1;
824 1.99 rpaulo }
825 1.205 ozaki ia6_release(public_ifa6, &psref);
826 1.112 dyoung return 0;
827 1.99 rpaulo }
828 1.208 ozaki pserialize_read_exit(s);
829 1.99 rpaulo
830 1.112 dyoung return -1;
831 1.99 rpaulo }
832 1.99 rpaulo
833 1.135 dyoung bool
834 1.135 dyoung nd6_accepts_rtadv(const struct nd_ifinfo *ndi)
835 1.135 dyoung {
836 1.135 dyoung switch (ndi->flags & (ND6_IFF_ACCEPT_RTADV|ND6_IFF_OVERRIDE_RTADV)) {
837 1.135 dyoung case ND6_IFF_OVERRIDE_RTADV|ND6_IFF_ACCEPT_RTADV:
838 1.135 dyoung return true;
839 1.135 dyoung case ND6_IFF_ACCEPT_RTADV:
840 1.135 dyoung return ip6_accept_rtadv != 0;
841 1.135 dyoung case ND6_IFF_OVERRIDE_RTADV:
842 1.135 dyoung case 0:
843 1.135 dyoung default:
844 1.135 dyoung return false;
845 1.135 dyoung }
846 1.135 dyoung }
847 1.135 dyoung
848 1.16 itojun /*
849 1.16 itojun * Nuke neighbor cache/prefix/default router management table, right before
850 1.16 itojun * ifp goes away.
851 1.16 itojun */
852 1.16 itojun void
853 1.158 martin nd6_purge(struct ifnet *ifp, struct in6_ifextra *ext)
854 1.16 itojun {
855 1.65 itojun struct nd_defrouter *dr, *ndr;
856 1.16 itojun struct nd_prefix *pr, *npr;
857 1.16 itojun
858 1.65 itojun /*
859 1.158 martin * During detach, the ND info might be already removed, but
860 1.158 martin * then is explitly passed as argument.
861 1.158 martin * Otherwise get it from ifp->if_afdata.
862 1.158 martin */
863 1.158 martin if (ext == NULL)
864 1.158 martin ext = ifp->if_afdata[AF_INET6];
865 1.158 martin if (ext == NULL)
866 1.158 martin return;
867 1.158 martin
868 1.220 ozaki ND6_WLOCK();
869 1.158 martin /*
870 1.65 itojun * Nuke default router list entries toward ifp.
871 1.65 itojun * We defer removal of default router list entries that is installed
872 1.65 itojun * in the routing table, in order to keep additional side effects as
873 1.65 itojun * small as possible.
874 1.65 itojun */
875 1.214 ozaki ND_DEFROUTER_LIST_FOREACH_SAFE(dr, ndr) {
876 1.65 itojun if (dr->installed)
877 1.65 itojun continue;
878 1.65 itojun
879 1.158 martin if (dr->ifp == ifp) {
880 1.158 martin KASSERT(ext != NULL);
881 1.213 ozaki nd6_defrtrlist_del(dr, ext);
882 1.158 martin }
883 1.65 itojun }
884 1.140 christos
885 1.214 ozaki ND_DEFROUTER_LIST_FOREACH_SAFE(dr, ndr) {
886 1.65 itojun if (!dr->installed)
887 1.65 itojun continue;
888 1.65 itojun
889 1.158 martin if (dr->ifp == ifp) {
890 1.158 martin KASSERT(ext != NULL);
891 1.213 ozaki nd6_defrtrlist_del(dr, ext);
892 1.158 martin }
893 1.16 itojun }
894 1.16 itojun
895 1.16 itojun /* Nuke prefix list entries toward ifp */
896 1.215 ozaki ND_PREFIX_LIST_FOREACH_SAFE(pr, npr) {
897 1.16 itojun if (pr->ndpr_ifp == ifp) {
898 1.65 itojun /*
899 1.219 ozaki * All addresses referencing pr should be already freed.
900 1.65 itojun */
901 1.219 ozaki KASSERT(pr->ndpr_refcnt == 0);
902 1.213 ozaki nd6_prelist_remove(pr);
903 1.16 itojun }
904 1.16 itojun }
905 1.16 itojun
906 1.16 itojun /* cancel default outgoing interface setting */
907 1.16 itojun if (nd6_defifindex == ifp->if_index)
908 1.16 itojun nd6_setdefaultiface(0);
909 1.16 itojun
910 1.132 tonnerre /* XXX: too restrictive? */
911 1.141 christos if (!ip6_forwarding && ifp->if_afdata[AF_INET6]) {
912 1.141 christos struct nd_ifinfo *ndi = ND_IFINFO(ifp);
913 1.141 christos if (ndi && nd6_accepts_rtadv(ndi)) {
914 1.141 christos /* refresh default router list */
915 1.213 ozaki nd6_defrouter_select();
916 1.141 christos }
917 1.48 itojun }
918 1.220 ozaki ND6_UNLOCK();
919 1.16 itojun
920 1.16 itojun /*
921 1.181 ozaki * We may not need to nuke the neighbor cache entries here
922 1.181 ozaki * because the neighbor cache is kept in if_afdata[AF_INET6].
923 1.181 ozaki * nd6_purge() is invoked by in6_ifdetach() which is called
924 1.181 ozaki * from if_detach() where everything gets purged. However
925 1.181 ozaki * in6_ifdetach is directly called from vlan(4), so we still
926 1.181 ozaki * need to purge entries here.
927 1.16 itojun */
928 1.181 ozaki if (ext->lltable != NULL)
929 1.181 ozaki lltable_purge_entries(ext->lltable);
930 1.2 itojun }
931 1.2 itojun
932 1.218 ozaki void
933 1.218 ozaki nd6_assert_purged(struct ifnet *ifp)
934 1.218 ozaki {
935 1.218 ozaki struct nd_defrouter *dr;
936 1.218 ozaki struct nd_prefix *pr;
937 1.225 ryo char ip6buf[INET6_ADDRSTRLEN] __diagused;
938 1.218 ozaki
939 1.220 ozaki ND6_RLOCK();
940 1.218 ozaki ND_DEFROUTER_LIST_FOREACH(dr) {
941 1.218 ozaki KASSERTMSG(dr->ifp != ifp,
942 1.218 ozaki "defrouter %s remains on %s",
943 1.226 christos IN6_PRINT(ip6buf, &dr->rtaddr), ifp->if_xname);
944 1.218 ozaki }
945 1.218 ozaki
946 1.218 ozaki ND_PREFIX_LIST_FOREACH(pr) {
947 1.218 ozaki KASSERTMSG(pr->ndpr_ifp != ifp,
948 1.218 ozaki "prefix %s/%d remains on %s",
949 1.226 christos IN6_PRINT(ip6buf, &pr->ndpr_prefix.sin6_addr),
950 1.218 ozaki pr->ndpr_plen, ifp->if_xname);
951 1.218 ozaki }
952 1.220 ozaki ND6_UNLOCK();
953 1.218 ozaki }
954 1.218 ozaki
955 1.188 ozaki struct llentry *
956 1.188 ozaki nd6_lookup(const struct in6_addr *addr6, const struct ifnet *ifp, bool wlock)
957 1.188 ozaki {
958 1.188 ozaki struct sockaddr_in6 sin6;
959 1.188 ozaki struct llentry *ln;
960 1.188 ozaki
961 1.188 ozaki sockaddr_in6_init(&sin6, addr6, 0, 0, 0);
962 1.188 ozaki
963 1.188 ozaki IF_AFDATA_RLOCK(ifp);
964 1.188 ozaki ln = lla_lookup(LLTABLE6(ifp), wlock ? LLE_EXCLUSIVE : 0,
965 1.188 ozaki sin6tosa(&sin6));
966 1.188 ozaki IF_AFDATA_RUNLOCK(ifp);
967 1.188 ozaki
968 1.188 ozaki return ln;
969 1.188 ozaki }
970 1.188 ozaki
971 1.188 ozaki struct llentry *
972 1.188 ozaki nd6_create(const struct in6_addr *addr6, const struct ifnet *ifp)
973 1.2 itojun {
974 1.2 itojun struct sockaddr_in6 sin6;
975 1.188 ozaki struct llentry *ln;
976 1.237 ozaki struct rtentry *rt;
977 1.2 itojun
978 1.122 dyoung sockaddr_in6_init(&sin6, addr6, 0, 0, 0);
979 1.237 ozaki rt = rtalloc1(sin6tosa(&sin6), 0);
980 1.188 ozaki
981 1.188 ozaki IF_AFDATA_WLOCK(ifp);
982 1.237 ozaki ln = lla_create(LLTABLE6(ifp), LLE_EXCLUSIVE, sin6tosa(&sin6), rt);
983 1.188 ozaki IF_AFDATA_WUNLOCK(ifp);
984 1.188 ozaki
985 1.237 ozaki if (rt != NULL)
986 1.237 ozaki rt_unref(rt);
987 1.188 ozaki if (ln != NULL)
988 1.188 ozaki ln->ln_state = ND6_LLINFO_NOSTATE;
989 1.188 ozaki
990 1.188 ozaki return ln;
991 1.188 ozaki }
992 1.188 ozaki
993 1.188 ozaki /*
994 1.188 ozaki * Test whether a given IPv6 address is a neighbor or not, ignoring
995 1.188 ozaki * the actual neighbor cache. The neighbor cache is ignored in order
996 1.188 ozaki * to not reenter the routing code from within itself.
997 1.188 ozaki */
998 1.188 ozaki static int
999 1.188 ozaki nd6_is_new_addr_neighbor(const struct sockaddr_in6 *addr, struct ifnet *ifp)
1000 1.188 ozaki {
1001 1.188 ozaki struct nd_prefix *pr;
1002 1.188 ozaki struct ifaddr *dstaddr;
1003 1.205 ozaki int s;
1004 1.188 ozaki
1005 1.188 ozaki /*
1006 1.188 ozaki * A link-local address is always a neighbor.
1007 1.188 ozaki * XXX: a link does not necessarily specify a single interface.
1008 1.188 ozaki */
1009 1.188 ozaki if (IN6_IS_ADDR_LINKLOCAL(&addr->sin6_addr)) {
1010 1.188 ozaki struct sockaddr_in6 sin6_copy;
1011 1.188 ozaki u_int32_t zone;
1012 1.188 ozaki
1013 1.2 itojun /*
1014 1.188 ozaki * We need sin6_copy since sa6_recoverscope() may modify the
1015 1.188 ozaki * content (XXX).
1016 1.188 ozaki */
1017 1.188 ozaki sin6_copy = *addr;
1018 1.188 ozaki if (sa6_recoverscope(&sin6_copy))
1019 1.188 ozaki return 0; /* XXX: should be impossible */
1020 1.188 ozaki if (in6_setscope(&sin6_copy.sin6_addr, ifp, &zone))
1021 1.188 ozaki return 0;
1022 1.188 ozaki if (sin6_copy.sin6_scope_id == zone)
1023 1.188 ozaki return 1;
1024 1.188 ozaki else
1025 1.188 ozaki return 0;
1026 1.188 ozaki }
1027 1.188 ozaki
1028 1.188 ozaki /*
1029 1.188 ozaki * If the address matches one of our addresses,
1030 1.188 ozaki * it should be a neighbor.
1031 1.188 ozaki * If the address matches one of our on-link prefixes, it should be a
1032 1.188 ozaki * neighbor.
1033 1.188 ozaki */
1034 1.220 ozaki ND6_RLOCK();
1035 1.215 ozaki ND_PREFIX_LIST_FOREACH(pr) {
1036 1.188 ozaki if (pr->ndpr_ifp != ifp)
1037 1.188 ozaki continue;
1038 1.25 itojun
1039 1.188 ozaki if (!(pr->ndpr_stateflags & NDPRF_ONLINK)) {
1040 1.188 ozaki struct rtentry *rt;
1041 1.2 itojun
1042 1.204 ozaki rt = rtalloc1(sin6tosa(&pr->ndpr_prefix), 0);
1043 1.188 ozaki if (rt == NULL)
1044 1.188 ozaki continue;
1045 1.188 ozaki /*
1046 1.188 ozaki * This is the case where multiple interfaces
1047 1.188 ozaki * have the same prefix, but only one is installed
1048 1.188 ozaki * into the routing table and that prefix entry
1049 1.188 ozaki * is not the one being examined here. In the case
1050 1.188 ozaki * where RADIX_MPATH is enabled, multiple route
1051 1.188 ozaki * entries (of the same rt_key value) will be
1052 1.188 ozaki * installed because the interface addresses all
1053 1.188 ozaki * differ.
1054 1.188 ozaki */
1055 1.188 ozaki if (!IN6_ARE_ADDR_EQUAL(&pr->ndpr_prefix.sin6_addr,
1056 1.188 ozaki &satocsin6(rt_getkey(rt))->sin6_addr)) {
1057 1.216 ozaki rt_unref(rt);
1058 1.188 ozaki continue;
1059 1.188 ozaki }
1060 1.216 ozaki rt_unref(rt);
1061 1.112 dyoung }
1062 1.188 ozaki
1063 1.188 ozaki if (IN6_ARE_MASKED_ADDR_EQUAL(&pr->ndpr_prefix.sin6_addr,
1064 1.220 ozaki &addr->sin6_addr, &pr->ndpr_mask)) {
1065 1.220 ozaki ND6_UNLOCK();
1066 1.188 ozaki return 1;
1067 1.220 ozaki }
1068 1.188 ozaki }
1069 1.220 ozaki ND6_UNLOCK();
1070 1.147 roy
1071 1.147 roy /*
1072 1.188 ozaki * If the address is assigned on the node of the other side of
1073 1.188 ozaki * a p2p interface, the address should be a neighbor.
1074 1.188 ozaki */
1075 1.205 ozaki s = pserialize_read_enter();
1076 1.204 ozaki dstaddr = ifa_ifwithdstaddr(sin6tocsa(addr));
1077 1.188 ozaki if (dstaddr != NULL) {
1078 1.188 ozaki if (dstaddr->ifa_ifp == ifp) {
1079 1.205 ozaki pserialize_read_exit(s);
1080 1.188 ozaki return 1;
1081 1.188 ozaki }
1082 1.188 ozaki }
1083 1.205 ozaki pserialize_read_exit(s);
1084 1.147 roy
1085 1.12 itojun /*
1086 1.188 ozaki * If the default router list is empty, all addresses are regarded
1087 1.188 ozaki * as on-link, and thus, as a neighbor.
1088 1.188 ozaki */
1089 1.220 ozaki ND6_RLOCK();
1090 1.188 ozaki if (ND_IFINFO(ifp)->flags & ND6_IFF_ACCEPT_RTADV &&
1091 1.220 ozaki ND_DEFROUTER_LIST_EMPTY() && nd6_defifindex == ifp->if_index) {
1092 1.220 ozaki ND6_UNLOCK();
1093 1.188 ozaki return 1;
1094 1.2 itojun }
1095 1.220 ozaki ND6_UNLOCK();
1096 1.6 itojun
1097 1.188 ozaki return 0;
1098 1.147 roy }
1099 1.147 roy
1100 1.6 itojun /*
1101 1.6 itojun * Detect if a given IPv6 address identifies a neighbor on a given link.
1102 1.25 itojun * XXX: should take care of the destination of a p2p link?
1103 1.6 itojun */
1104 1.6 itojun int
1105 1.110 dyoung nd6_is_addr_neighbor(const struct sockaddr_in6 *addr, struct ifnet *ifp)
1106 1.6 itojun {
1107 1.65 itojun struct nd_prefix *pr;
1108 1.188 ozaki struct llentry *ln;
1109 1.165 ozaki struct rtentry *rt;
1110 1.6 itojun
1111 1.29 itojun /*
1112 1.29 itojun * A link-local address is always a neighbor.
1113 1.52 itojun * XXX: a link does not necessarily specify a single interface.
1114 1.29 itojun */
1115 1.96 rpaulo if (IN6_IS_ADDR_LINKLOCAL(&addr->sin6_addr)) {
1116 1.96 rpaulo struct sockaddr_in6 sin6_copy;
1117 1.96 rpaulo u_int32_t zone;
1118 1.96 rpaulo
1119 1.96 rpaulo /*
1120 1.96 rpaulo * We need sin6_copy since sa6_recoverscope() may modify the
1121 1.96 rpaulo * content (XXX).
1122 1.96 rpaulo */
1123 1.96 rpaulo sin6_copy = *addr;
1124 1.96 rpaulo if (sa6_recoverscope(&sin6_copy))
1125 1.112 dyoung return 0; /* XXX: should be impossible */
1126 1.96 rpaulo if (in6_setscope(&sin6_copy.sin6_addr, ifp, &zone))
1127 1.112 dyoung return 0;
1128 1.96 rpaulo if (sin6_copy.sin6_scope_id == zone)
1129 1.112 dyoung return 1;
1130 1.96 rpaulo else
1131 1.112 dyoung return 0;
1132 1.96 rpaulo }
1133 1.6 itojun
1134 1.6 itojun /*
1135 1.65 itojun * If the address matches one of our on-link prefixes, it should be a
1136 1.65 itojun * neighbor.
1137 1.6 itojun */
1138 1.220 ozaki ND6_RLOCK();
1139 1.215 ozaki ND_PREFIX_LIST_FOREACH(pr) {
1140 1.65 itojun if (pr->ndpr_ifp != ifp)
1141 1.65 itojun continue;
1142 1.65 itojun
1143 1.65 itojun if (!(pr->ndpr_stateflags & NDPRF_ONLINK))
1144 1.65 itojun continue;
1145 1.65 itojun
1146 1.65 itojun if (IN6_ARE_MASKED_ADDR_EQUAL(&pr->ndpr_prefix.sin6_addr,
1147 1.220 ozaki &addr->sin6_addr, &pr->ndpr_mask)) {
1148 1.220 ozaki ND6_UNLOCK();
1149 1.112 dyoung return 1;
1150 1.220 ozaki }
1151 1.65 itojun }
1152 1.6 itojun
1153 1.65 itojun /*
1154 1.65 itojun * If the default router list is empty, all addresses are regarded
1155 1.65 itojun * as on-link, and thus, as a neighbor.
1156 1.65 itojun * XXX: we restrict the condition to hosts, because routers usually do
1157 1.65 itojun * not have the "default router list".
1158 1.65 itojun */
1159 1.214 ozaki if (!ip6_forwarding && ND_DEFROUTER_LIST_EMPTY() &&
1160 1.65 itojun nd6_defifindex == ifp->if_index) {
1161 1.220 ozaki ND6_UNLOCK();
1162 1.112 dyoung return 1;
1163 1.6 itojun }
1164 1.220 ozaki ND6_UNLOCK();
1165 1.6 itojun
1166 1.188 ozaki if (nd6_is_new_addr_neighbor(addr, ifp))
1167 1.188 ozaki return 1;
1168 1.188 ozaki
1169 1.6 itojun /*
1170 1.188 ozaki * Even if the address matches none of our addresses, it might be
1171 1.188 ozaki * in the neighbor cache or a connected route.
1172 1.6 itojun */
1173 1.188 ozaki ln = nd6_lookup(&addr->sin6_addr, ifp, false);
1174 1.188 ozaki if (ln != NULL) {
1175 1.188 ozaki LLE_RUNLOCK(ln);
1176 1.188 ozaki return 1;
1177 1.188 ozaki }
1178 1.188 ozaki
1179 1.188 ozaki rt = rtalloc1(sin6tocsa(addr), 0);
1180 1.188 ozaki if (rt == NULL)
1181 1.188 ozaki return 0;
1182 1.188 ozaki
1183 1.188 ozaki if ((rt->rt_flags & RTF_CONNECTED) && (rt->rt_ifp == ifp
1184 1.188 ozaki #if NBRIDGE > 0
1185 1.188 ozaki || rt->rt_ifp->if_bridge == ifp->if_bridge
1186 1.188 ozaki #endif
1187 1.188 ozaki #if NCARP > 0
1188 1.188 ozaki || (ifp->if_type == IFT_CARP && rt->rt_ifp == ifp->if_carpdev) ||
1189 1.188 ozaki (rt->rt_ifp->if_type == IFT_CARP && rt->rt_ifp->if_carpdev == ifp)||
1190 1.188 ozaki (ifp->if_type == IFT_CARP && rt->rt_ifp->if_type == IFT_CARP &&
1191 1.188 ozaki rt->rt_ifp->if_carpdev == ifp->if_carpdev)
1192 1.188 ozaki #endif
1193 1.188 ozaki )) {
1194 1.216 ozaki rt_unref(rt);
1195 1.112 dyoung return 1;
1196 1.165 ozaki }
1197 1.216 ozaki rt_unref(rt);
1198 1.6 itojun
1199 1.112 dyoung return 0;
1200 1.2 itojun }
1201 1.2 itojun
1202 1.2 itojun /*
1203 1.2 itojun * Free an nd6 llinfo entry.
1204 1.54 itojun * Since the function would cause significant changes in the kernel, DO NOT
1205 1.54 itojun * make it global, unless you have a strong reason for the change, and are sure
1206 1.54 itojun * that the change is safe.
1207 1.2 itojun */
1208 1.181 ozaki static void
1209 1.188 ozaki nd6_free(struct llentry *ln, int gc)
1210 1.2 itojun {
1211 1.188 ozaki struct ifnet *ifp;
1212 1.188 ozaki struct in6_addr *in6;
1213 1.2 itojun
1214 1.181 ozaki KASSERT(ln != NULL);
1215 1.181 ozaki LLE_WLOCK_ASSERT(ln);
1216 1.181 ozaki
1217 1.188 ozaki ifp = ln->lle_tbl->llt_ifp;
1218 1.188 ozaki in6 = &ln->r_l3addr.addr6;
1219 1.18 itojun /*
1220 1.54 itojun * we used to have pfctlinput(PRC_HOSTDEAD) here.
1221 1.54 itojun * even though it is not harmful, it was not really necessary.
1222 1.18 itojun */
1223 1.18 itojun
1224 1.260 roy if (!ip6_forwarding && ln->ln_router) {
1225 1.260 roy if (ln->ln_state == ND6_LLINFO_STALE && gc) {
1226 1.54 itojun /*
1227 1.54 itojun * If the reason for the deletion is just garbage
1228 1.260 roy * collection, and the neighbor is an active
1229 1.54 itojun * router, do not delete it. Instead, reset the GC
1230 1.54 itojun * timer using the router's lifetime.
1231 1.260 roy * Simply deleting the entry may affect default
1232 1.54 itojun * router selection, which is not necessarily a good
1233 1.54 itojun * thing, especially when we're using router preference
1234 1.54 itojun * values.
1235 1.54 itojun * XXX: the check for ln_state would be redundant,
1236 1.54 itojun * but we intentionally keep it just in case.
1237 1.54 itojun */
1238 1.260 roy if (ln->ln_expire > time_uptime)
1239 1.188 ozaki nd6_llinfo_settimer(ln,
1240 1.260 roy (ln->ln_expire - time_uptime) * hz);
1241 1.86 itojun else
1242 1.188 ozaki nd6_llinfo_settimer(ln, nd6_gctimer * hz);
1243 1.183 ozaki LLE_WUNLOCK(ln);
1244 1.181 ozaki return;
1245 1.54 itojun }
1246 1.54 itojun
1247 1.260 roy ND6_WLOCK();
1248 1.190 ozaki
1249 1.260 roy /*
1250 1.260 roy * We need to unlock to avoid a LOR with nd6_rt_flush()
1251 1.260 roy * with the rnh and for the calls to
1252 1.260 roy * nd6_pfxlist_onlink_check() and nd6_defrouter_select() in the
1253 1.260 roy * block further down for calls into nd6_lookup().
1254 1.260 roy * We still hold a ref.
1255 1.260 roy *
1256 1.260 roy * Temporarily fake the state to choose a new default
1257 1.260 roy * router and to perform on-link determination of
1258 1.260 roy * prefixes correctly.
1259 1.260 roy * Below the state will be set correctly,
1260 1.260 roy * or the entry itself will be deleted.
1261 1.260 roy */
1262 1.260 roy ln->ln_state = ND6_LLINFO_INCOMPLETE;
1263 1.260 roy LLE_WUNLOCK(ln);
1264 1.12 itojun
1265 1.260 roy /*
1266 1.260 roy * nd6_rt_flush must be called whether or not the neighbor
1267 1.260 roy * is in the Default Router List.
1268 1.260 roy * See a corresponding comment in nd6_na_input().
1269 1.260 roy */
1270 1.260 roy nd6_rt_flush(in6, ifp);
1271 1.12 itojun
1272 1.260 roy /*
1273 1.260 roy * Unreachablity of a router might affect the default
1274 1.260 roy * router selection and on-link detection of advertised
1275 1.260 roy * prefixes.
1276 1.260 roy *
1277 1.260 roy * Since nd6_defrouter_select() does not affect the
1278 1.260 roy * on-link determination and MIP6 needs the check
1279 1.260 roy * before the default router selection, we perform
1280 1.260 roy * the check now.
1281 1.260 roy */
1282 1.260 roy nd6_pfxlist_onlink_check();
1283 1.12 itojun
1284 1.260 roy /*
1285 1.260 roy * refresh default router list
1286 1.260 roy */
1287 1.260 roy nd6_defrouter_select();
1288 1.190 ozaki
1289 1.190 ozaki #ifdef __FreeBSD__
1290 1.190 ozaki /*
1291 1.190 ozaki * If this entry was added by an on-link redirect, remove the
1292 1.190 ozaki * corresponding host route.
1293 1.190 ozaki */
1294 1.190 ozaki if (ln->la_flags & LLE_REDIRECT)
1295 1.190 ozaki nd6_free_redirect(ln);
1296 1.190 ozaki #endif
1297 1.260 roy
1298 1.220 ozaki ND6_UNLOCK();
1299 1.260 roy LLE_WLOCK(ln);
1300 1.2 itojun }
1301 1.12 itojun
1302 1.262 roy if (ln->la_flags & LLE_VALID || gc) {
1303 1.262 roy struct sockaddr_in6 sin6;
1304 1.262 roy const char *lladdr;
1305 1.262 roy
1306 1.262 roy sockaddr_in6_init(&sin6, in6, 0, 0, 0);
1307 1.262 roy lladdr = ln->la_flags & LLE_VALID ?
1308 1.262 roy (const char *)&ln->ll_addr : NULL;
1309 1.262 roy rt_clonedmsg(RTM_DELETE, sin6tosa(&sin6), lladdr, ifp);
1310 1.262 roy }
1311 1.259 roy
1312 1.188 ozaki /*
1313 1.188 ozaki * Save to unlock. We still hold an extra reference and will not
1314 1.188 ozaki * free(9) in llentry_free() if someone else holds one as well.
1315 1.188 ozaki */
1316 1.181 ozaki LLE_WUNLOCK(ln);
1317 1.188 ozaki IF_AFDATA_LOCK(ifp);
1318 1.188 ozaki LLE_WLOCK(ln);
1319 1.188 ozaki
1320 1.222 ozaki lltable_free_entry(LLTABLE6(ifp), ln);
1321 1.188 ozaki
1322 1.188 ozaki IF_AFDATA_UNLOCK(ifp);
1323 1.2 itojun }
1324 1.2 itojun
1325 1.2 itojun /*
1326 1.2 itojun * Upper-layer reachability hint for Neighbor Unreachability Detection.
1327 1.2 itojun *
1328 1.98 rpaulo * XXX cost-effective methods?
1329 1.2 itojun */
1330 1.2 itojun void
1331 1.171 ozaki nd6_nud_hint(struct rtentry *rt)
1332 1.2 itojun {
1333 1.181 ozaki struct llentry *ln;
1334 1.188 ozaki struct ifnet *ifp;
1335 1.2 itojun
1336 1.164 ozaki if (rt == NULL)
1337 1.164 ozaki return;
1338 1.2 itojun
1339 1.188 ozaki ifp = rt->rt_ifp;
1340 1.188 ozaki ln = nd6_lookup(&(satocsin6(rt_getkey(rt)))->sin6_addr, ifp, true);
1341 1.188 ozaki if (ln == NULL)
1342 1.171 ozaki return;
1343 1.2 itojun
1344 1.22 itojun if (ln->ln_state < ND6_LLINFO_REACHABLE)
1345 1.188 ozaki goto done;
1346 1.2 itojun
1347 1.31 itojun /*
1348 1.31 itojun * if we get upper-layer reachability confirmation many times,
1349 1.31 itojun * it is possible we have false information.
1350 1.31 itojun */
1351 1.164 ozaki ln->ln_byhint++;
1352 1.164 ozaki if (ln->ln_byhint > nd6_maxnudhint)
1353 1.188 ozaki goto done;
1354 1.31 itojun
1355 1.2 itojun ln->ln_state = ND6_LLINFO_REACHABLE;
1356 1.188 ozaki if (!ND6_LLINFO_PERMANENT(ln))
1357 1.188 ozaki nd6_llinfo_settimer(ln, ND_IFINFO(rt->rt_ifp)->reachable * hz);
1358 1.188 ozaki
1359 1.188 ozaki done:
1360 1.188 ozaki LLE_WUNLOCK(ln);
1361 1.171 ozaki
1362 1.165 ozaki return;
1363 1.2 itojun }
1364 1.2 itojun
1365 1.207 ozaki struct gc_args {
1366 1.207 ozaki int gc_entries;
1367 1.207 ozaki const struct in6_addr *skip_in6;
1368 1.207 ozaki };
1369 1.207 ozaki
1370 1.181 ozaki static int
1371 1.181 ozaki nd6_purge_entry(struct lltable *llt, struct llentry *ln, void *farg)
1372 1.181 ozaki {
1373 1.207 ozaki struct gc_args *args = farg;
1374 1.207 ozaki int *n = &args->gc_entries;
1375 1.207 ozaki const struct in6_addr *skip_in6 = args->skip_in6;
1376 1.181 ozaki
1377 1.181 ozaki if (*n <= 0)
1378 1.181 ozaki return 0;
1379 1.181 ozaki
1380 1.181 ozaki if (ND6_LLINFO_PERMANENT(ln))
1381 1.181 ozaki return 0;
1382 1.181 ozaki
1383 1.207 ozaki if (IN6_ARE_ADDR_EQUAL(&ln->r_l3addr.addr6, skip_in6))
1384 1.207 ozaki return 0;
1385 1.207 ozaki
1386 1.181 ozaki LLE_WLOCK(ln);
1387 1.181 ozaki if (ln->ln_state > ND6_LLINFO_INCOMPLETE)
1388 1.181 ozaki ln->ln_state = ND6_LLINFO_STALE;
1389 1.181 ozaki else
1390 1.181 ozaki ln->ln_state = ND6_LLINFO_PURGE;
1391 1.188 ozaki nd6_llinfo_settimer(ln, 0);
1392 1.181 ozaki LLE_WUNLOCK(ln);
1393 1.181 ozaki
1394 1.181 ozaki (*n)--;
1395 1.181 ozaki return 0;
1396 1.181 ozaki }
1397 1.181 ozaki
1398 1.181 ozaki static void
1399 1.207 ozaki nd6_gc_neighbors(struct lltable *llt, const struct in6_addr *in6)
1400 1.181 ozaki {
1401 1.181 ozaki
1402 1.181 ozaki if (ip6_neighborgcthresh >= 0 &&
1403 1.181 ozaki lltable_get_entry_count(llt) >= ip6_neighborgcthresh) {
1404 1.207 ozaki struct gc_args gc_args = {10, in6};
1405 1.181 ozaki /*
1406 1.181 ozaki * XXX entries that are "less recently used" should be
1407 1.181 ozaki * freed first.
1408 1.181 ozaki */
1409 1.207 ozaki lltable_foreach_lle(llt, nd6_purge_entry, &gc_args);
1410 1.181 ozaki }
1411 1.181 ozaki }
1412 1.181 ozaki
1413 1.2 itojun void
1414 1.130 dyoung nd6_rtrequest(int req, struct rtentry *rt, const struct rt_addrinfo *info)
1415 1.2 itojun {
1416 1.2 itojun struct sockaddr *gate = rt->rt_gateway;
1417 1.2 itojun struct ifnet *ifp = rt->rt_ifp;
1418 1.119 dyoung uint8_t namelen = strlen(ifp->if_xname), addrlen = ifp->if_addrlen;
1419 1.2 itojun struct ifaddr *ifa;
1420 1.2 itojun
1421 1.144 joerg RT_DPRINTF("rt_getkey(rt) = %p\n", rt_getkey(rt));
1422 1.117 dyoung
1423 1.131 dyoung if (req == RTM_LLINFO_UPD) {
1424 1.131 dyoung int rc;
1425 1.131 dyoung struct in6_addr *in6;
1426 1.131 dyoung struct in6_addr in6_all;
1427 1.131 dyoung int anycast;
1428 1.131 dyoung
1429 1.131 dyoung if ((ifa = info->rti_ifa) == NULL)
1430 1.131 dyoung return;
1431 1.131 dyoung
1432 1.131 dyoung in6 = &ifatoia6(ifa)->ia_addr.sin6_addr;
1433 1.131 dyoung anycast = ifatoia6(ifa)->ia6_flags & IN6_IFF_ANYCAST;
1434 1.131 dyoung
1435 1.131 dyoung in6_all = in6addr_linklocal_allnodes;
1436 1.131 dyoung if ((rc = in6_setscope(&in6_all, ifa->ifa_ifp, NULL)) != 0) {
1437 1.131 dyoung log(LOG_ERR, "%s: failed to set scope %s "
1438 1.131 dyoung "(errno=%d)\n", __func__, if_name(ifp), rc);
1439 1.131 dyoung return;
1440 1.131 dyoung }
1441 1.131 dyoung
1442 1.131 dyoung /* XXX don't set Override for proxy addresses */
1443 1.131 dyoung nd6_na_output(ifa->ifa_ifp, &in6_all, in6,
1444 1.131 dyoung (anycast ? 0 : ND_NA_FLAG_OVERRIDE)
1445 1.131 dyoung #if 0
1446 1.131 dyoung | (ip6_forwarding ? ND_NA_FLAG_ROUTER : 0)
1447 1.131 dyoung #endif
1448 1.131 dyoung , 1, NULL);
1449 1.131 dyoung return;
1450 1.131 dyoung }
1451 1.131 dyoung
1452 1.65 itojun if ((rt->rt_flags & RTF_GATEWAY) != 0)
1453 1.2 itojun return;
1454 1.2 itojun
1455 1.54 itojun if (nd6_need_cache(ifp) == 0 && (rt->rt_flags & RTF_HOST) == 0) {
1456 1.144 joerg RT_DPRINTF("rt_getkey(rt) = %p\n", rt_getkey(rt));
1457 1.54 itojun /*
1458 1.54 itojun * This is probably an interface direct route for a link
1459 1.54 itojun * which does not need neighbor caches (e.g. fe80::%lo0/64).
1460 1.54 itojun * We do not need special treatment below for such a route.
1461 1.54 itojun * Moreover, the RTF_LLINFO flag which would be set below
1462 1.54 itojun * would annoy the ndp(8) command.
1463 1.54 itojun */
1464 1.54 itojun return;
1465 1.54 itojun }
1466 1.54 itojun
1467 1.2 itojun switch (req) {
1468 1.205 ozaki case RTM_ADD: {
1469 1.238 ozaki struct psref psref;
1470 1.205 ozaki
1471 1.144 joerg RT_DPRINTF("rt_getkey(rt) = %p\n", rt_getkey(rt));
1472 1.2 itojun /*
1473 1.2 itojun * There is no backward compatibility :)
1474 1.2 itojun *
1475 1.2 itojun * if ((rt->rt_flags & RTF_HOST) == 0 &&
1476 1.2 itojun * SIN(rt_mask(rt))->sin_addr.s_addr != 0xffffffff)
1477 1.2 itojun * rt->rt_flags |= RTF_CLONING;
1478 1.2 itojun */
1479 1.188 ozaki /* XXX should move to route.c? */
1480 1.188 ozaki if (rt->rt_flags & (RTF_CONNECTED | RTF_LOCAL)) {
1481 1.120 dyoung union {
1482 1.120 dyoung struct sockaddr sa;
1483 1.120 dyoung struct sockaddr_dl sdl;
1484 1.120 dyoung struct sockaddr_storage ss;
1485 1.120 dyoung } u;
1486 1.2 itojun /*
1487 1.84 itojun * Case 1: This route should come from a route to
1488 1.84 itojun * interface (RTF_CLONING case) or the route should be
1489 1.84 itojun * treated as on-link but is currently not
1490 1.129 dyoung * (RTF_LLINFO && ln == NULL case).
1491 1.2 itojun */
1492 1.136 dyoung if (sockaddr_dl_init(&u.sdl, sizeof(u.ss),
1493 1.120 dyoung ifp->if_index, ifp->if_type,
1494 1.136 dyoung NULL, namelen, NULL, addrlen) == NULL) {
1495 1.136 dyoung printf("%s.%d: sockaddr_dl_init(, %zu, ) "
1496 1.136 dyoung "failed on %s\n", __func__, __LINE__,
1497 1.136 dyoung sizeof(u.ss), if_name(ifp));
1498 1.136 dyoung }
1499 1.120 dyoung rt_setgate(rt, &u.sa);
1500 1.119 dyoung gate = rt->rt_gateway;
1501 1.144 joerg RT_DPRINTF("rt_getkey(rt) = %p\n", rt_getkey(rt));
1502 1.192 ozaki if (gate == NULL) {
1503 1.192 ozaki log(LOG_ERR,
1504 1.192 ozaki "%s: rt_setgate failed on %s\n", __func__,
1505 1.192 ozaki if_name(ifp));
1506 1.192 ozaki break;
1507 1.192 ozaki }
1508 1.188 ozaki
1509 1.144 joerg RT_DPRINTF("rt_getkey(rt) = %p\n", rt_getkey(rt));
1510 1.188 ozaki if ((rt->rt_flags & RTF_CONNECTED) != 0)
1511 1.2 itojun break;
1512 1.2 itojun }
1513 1.144 joerg RT_DPRINTF("rt_getkey(rt) = %p\n", rt_getkey(rt));
1514 1.18 itojun /*
1515 1.18 itojun * In IPv4 code, we try to annonuce new RTF_ANNOUNCE entry here.
1516 1.18 itojun * We don't do that here since llinfo is not ready yet.
1517 1.18 itojun *
1518 1.18 itojun * There are also couple of other things to be discussed:
1519 1.18 itojun * - unsolicited NA code needs improvement beforehand
1520 1.18 itojun * - RFC2461 says we MAY send multicast unsolicited NA
1521 1.18 itojun * (7.2.6 paragraph 4), however, it also says that we
1522 1.18 itojun * SHOULD provide a mechanism to prevent multicast NA storm.
1523 1.18 itojun * we don't have anything like it right now.
1524 1.38 itojun * note that the mechanism needs a mutual agreement
1525 1.18 itojun * between proxies, which means that we need to implement
1526 1.38 itojun * a new protocol, or a new kludge.
1527 1.38 itojun * - from RFC2461 6.2.4, host MUST NOT send an unsolicited NA.
1528 1.18 itojun * we need to check ip6forwarding before sending it.
1529 1.18 itojun * (or should we allow proxy ND configuration only for
1530 1.18 itojun * routers? there's no mention about proxy ND from hosts)
1531 1.18 itojun */
1532 1.18 itojun #if 0
1533 1.18 itojun /* XXX it does not work */
1534 1.2 itojun if (rt->rt_flags & RTF_ANNOUNCE)
1535 1.2 itojun nd6_na_output(ifp,
1536 1.118 dyoung &satocsin6(rt_getkey(rt))->sin6_addr,
1537 1.118 dyoung &satocsin6(rt_getkey(rt))->sin6_addr,
1538 1.18 itojun ip6_forwarding ? ND_NA_FLAG_ROUTER : 0,
1539 1.18 itojun 1, NULL);
1540 1.18 itojun #endif
1541 1.188 ozaki
1542 1.65 itojun if ((ifp->if_flags & (IFF_POINTOPOINT | IFF_LOOPBACK)) == 0) {
1543 1.144 joerg RT_DPRINTF("rt_getkey(rt) = %p\n", rt_getkey(rt));
1544 1.26 itojun /*
1545 1.26 itojun * Address resolution isn't necessary for a point to
1546 1.26 itojun * point link, so we can skip this test for a p2p link.
1547 1.26 itojun */
1548 1.26 itojun if (gate->sa_family != AF_LINK ||
1549 1.119 dyoung gate->sa_len <
1550 1.119 dyoung sockaddr_dl_measure(namelen, addrlen)) {
1551 1.26 itojun log(LOG_DEBUG,
1552 1.36 itojun "nd6_rtrequest: bad gateway value: %s\n",
1553 1.36 itojun if_name(ifp));
1554 1.26 itojun break;
1555 1.26 itojun }
1556 1.118 dyoung satosdl(gate)->sdl_type = ifp->if_type;
1557 1.118 dyoung satosdl(gate)->sdl_index = ifp->if_index;
1558 1.144 joerg RT_DPRINTF("rt_getkey(rt) = %p\n", rt_getkey(rt));
1559 1.2 itojun }
1560 1.144 joerg RT_DPRINTF("rt_getkey(rt) = %p\n", rt_getkey(rt));
1561 1.2 itojun
1562 1.143 christos /*
1563 1.198 ozaki * When called from rt_ifa_addlocal, we cannot depend on that
1564 1.198 ozaki * the address (rt_getkey(rt)) exits in the address list of the
1565 1.198 ozaki * interface. So check RTF_LOCAL instead.
1566 1.198 ozaki */
1567 1.198 ozaki if (rt->rt_flags & RTF_LOCAL) {
1568 1.198 ozaki if (nd6_useloopback)
1569 1.198 ozaki rt->rt_ifp = lo0ifp; /* XXX */
1570 1.198 ozaki break;
1571 1.198 ozaki }
1572 1.198 ozaki
1573 1.198 ozaki /*
1574 1.117 dyoung * check if rt_getkey(rt) is an address assigned
1575 1.2 itojun * to the interface.
1576 1.2 itojun */
1577 1.238 ozaki ifa = (struct ifaddr *)in6ifa_ifpwithaddr_psref(ifp,
1578 1.238 ozaki &satocsin6(rt_getkey(rt))->sin6_addr, &psref);
1579 1.129 dyoung if (ifa != NULL) {
1580 1.2 itojun if (nd6_useloopback) {
1581 1.195 ozaki rt->rt_ifp = lo0ifp; /* XXX */
1582 1.2 itojun /*
1583 1.2 itojun * Make sure rt_ifa be equal to the ifaddr
1584 1.2 itojun * corresponding to the address.
1585 1.2 itojun * We need this because when we refer
1586 1.2 itojun * rt_ifa->ia6_flags in ip6_input, we assume
1587 1.2 itojun * that the rt_ifa points to the address instead
1588 1.2 itojun * of the loopback address.
1589 1.2 itojun */
1590 1.251 ozaki if (!ISSET(info->rti_flags, RTF_DONTCHANGEIFA)
1591 1.251 ozaki && ifa != rt->rt_ifa)
1592 1.106 dyoung rt_replace_ifa(rt, ifa);
1593 1.2 itojun }
1594 1.18 itojun } else if (rt->rt_flags & RTF_ANNOUNCE) {
1595 1.18 itojun /* join solicited node multicast for proxy ND */
1596 1.18 itojun if (ifp->if_flags & IFF_MULTICAST) {
1597 1.18 itojun struct in6_addr llsol;
1598 1.18 itojun int error;
1599 1.18 itojun
1600 1.118 dyoung llsol = satocsin6(rt_getkey(rt))->sin6_addr;
1601 1.96 rpaulo llsol.s6_addr32[0] = htonl(0xff020000);
1602 1.18 itojun llsol.s6_addr32[1] = 0;
1603 1.18 itojun llsol.s6_addr32[2] = htonl(1);
1604 1.18 itojun llsol.s6_addr8[12] = 0xff;
1605 1.96 rpaulo if (in6_setscope(&llsol, ifp, NULL))
1606 1.188 ozaki goto out;
1607 1.99 rpaulo if (!in6_addmulti(&llsol, ifp, &error, 0)) {
1608 1.225 ryo char ip6buf[INET6_ADDRSTRLEN];
1609 1.187 ozaki nd6log(LOG_ERR, "%s: failed to join "
1610 1.54 itojun "%s (errno=%d)\n", if_name(ifp),
1611 1.226 christos IN6_PRINT(ip6buf, &llsol), error);
1612 1.46 itojun }
1613 1.18 itojun }
1614 1.2 itojun }
1615 1.188 ozaki out:
1616 1.238 ozaki ifa_release(ifa, &psref);
1617 1.181 ozaki /*
1618 1.181 ozaki * If we have too many cache entries, initiate immediate
1619 1.181 ozaki * purging for some entries.
1620 1.181 ozaki */
1621 1.188 ozaki if (rt->rt_ifp != NULL)
1622 1.207 ozaki nd6_gc_neighbors(LLTABLE6(rt->rt_ifp), NULL);
1623 1.2 itojun break;
1624 1.205 ozaki }
1625 1.2 itojun
1626 1.2 itojun case RTM_DELETE:
1627 1.18 itojun /* leave from solicited node multicast for proxy ND */
1628 1.18 itojun if ((rt->rt_flags & RTF_ANNOUNCE) != 0 &&
1629 1.18 itojun (ifp->if_flags & IFF_MULTICAST) != 0) {
1630 1.18 itojun struct in6_addr llsol;
1631 1.18 itojun
1632 1.118 dyoung llsol = satocsin6(rt_getkey(rt))->sin6_addr;
1633 1.96 rpaulo llsol.s6_addr32[0] = htonl(0xff020000);
1634 1.18 itojun llsol.s6_addr32[1] = 0;
1635 1.18 itojun llsol.s6_addr32[2] = htonl(1);
1636 1.18 itojun llsol.s6_addr8[12] = 0xff;
1637 1.249 ozaki if (in6_setscope(&llsol, ifp, NULL) == 0)
1638 1.249 ozaki in6_lookup_and_delete_multi(&llsol, ifp);
1639 1.18 itojun }
1640 1.188 ozaki break;
1641 1.2 itojun }
1642 1.2 itojun }
1643 1.2 itojun
1644 1.2 itojun int
1645 1.112 dyoung nd6_ioctl(u_long cmd, void *data, struct ifnet *ifp)
1646 1.2 itojun {
1647 1.2 itojun struct in6_drlist *drl = (struct in6_drlist *)data;
1648 1.65 itojun struct in6_oprlist *oprl = (struct in6_oprlist *)data;
1649 1.2 itojun struct in6_ndireq *ndi = (struct in6_ndireq *)data;
1650 1.2 itojun struct in6_nbrinfo *nbi = (struct in6_nbrinfo *)data;
1651 1.12 itojun struct in6_ndifreq *ndif = (struct in6_ndifreq *)data;
1652 1.65 itojun struct nd_defrouter *dr;
1653 1.2 itojun struct nd_prefix *pr;
1654 1.2 itojun int i = 0, error = 0;
1655 1.2 itojun
1656 1.2 itojun switch (cmd) {
1657 1.2 itojun case SIOCGDRLST_IN6:
1658 1.65 itojun /*
1659 1.65 itojun * obsolete API, use sysctl under net.inet6.icmp6
1660 1.65 itojun */
1661 1.129 dyoung memset(drl, 0, sizeof(*drl));
1662 1.220 ozaki ND6_RLOCK();
1663 1.214 ozaki ND_DEFROUTER_LIST_FOREACH(dr) {
1664 1.108 dyoung if (i >= DRLSTSIZ)
1665 1.108 dyoung break;
1666 1.2 itojun drl->defrouter[i].rtaddr = dr->rtaddr;
1667 1.96 rpaulo in6_clearscope(&drl->defrouter[i].rtaddr);
1668 1.2 itojun
1669 1.2 itojun drl->defrouter[i].flags = dr->flags;
1670 1.2 itojun drl->defrouter[i].rtlifetime = dr->rtlifetime;
1671 1.166 ozaki drl->defrouter[i].expire = dr->expire ?
1672 1.166 ozaki time_mono_to_wall(dr->expire) : 0;
1673 1.2 itojun drl->defrouter[i].if_index = dr->ifp->if_index;
1674 1.2 itojun i++;
1675 1.2 itojun }
1676 1.220 ozaki ND6_UNLOCK();
1677 1.2 itojun break;
1678 1.2 itojun case SIOCGPRLST_IN6:
1679 1.18 itojun /*
1680 1.65 itojun * obsolete API, use sysctl under net.inet6.icmp6
1681 1.65 itojun *
1682 1.65 itojun * XXX the structure in6_prlist was changed in backward-
1683 1.65 itojun * incompatible manner. in6_oprlist is used for SIOCGPRLST_IN6,
1684 1.65 itojun * in6_prlist is used for nd6_sysctl() - fill_prlist().
1685 1.65 itojun */
1686 1.65 itojun /*
1687 1.18 itojun * XXX meaning of fields, especialy "raflags", is very
1688 1.18 itojun * differnet between RA prefix list and RR/static prefix list.
1689 1.18 itojun * how about separating ioctls into two?
1690 1.18 itojun */
1691 1.129 dyoung memset(oprl, 0, sizeof(*oprl));
1692 1.220 ozaki ND6_RLOCK();
1693 1.215 ozaki ND_PREFIX_LIST_FOREACH(pr) {
1694 1.2 itojun struct nd_pfxrouter *pfr;
1695 1.2 itojun int j;
1696 1.2 itojun
1697 1.108 dyoung if (i >= PRLSTSIZ)
1698 1.108 dyoung break;
1699 1.65 itojun oprl->prefix[i].prefix = pr->ndpr_prefix.sin6_addr;
1700 1.65 itojun oprl->prefix[i].raflags = pr->ndpr_raf;
1701 1.65 itojun oprl->prefix[i].prefixlen = pr->ndpr_plen;
1702 1.65 itojun oprl->prefix[i].vltime = pr->ndpr_vltime;
1703 1.65 itojun oprl->prefix[i].pltime = pr->ndpr_pltime;
1704 1.65 itojun oprl->prefix[i].if_index = pr->ndpr_ifp->if_index;
1705 1.99 rpaulo if (pr->ndpr_vltime == ND6_INFINITE_LIFETIME)
1706 1.99 rpaulo oprl->prefix[i].expire = 0;
1707 1.99 rpaulo else {
1708 1.99 rpaulo time_t maxexpire;
1709 1.99 rpaulo
1710 1.99 rpaulo /* XXX: we assume time_t is signed. */
1711 1.99 rpaulo maxexpire = (-1) &
1712 1.99 rpaulo ~((time_t)1 <<
1713 1.99 rpaulo ((sizeof(maxexpire) * 8) - 1));
1714 1.99 rpaulo if (pr->ndpr_vltime <
1715 1.99 rpaulo maxexpire - pr->ndpr_lastupdate) {
1716 1.166 ozaki time_t expire;
1717 1.166 ozaki expire = pr->ndpr_lastupdate +
1718 1.166 ozaki pr->ndpr_vltime;
1719 1.166 ozaki oprl->prefix[i].expire = expire ?
1720 1.166 ozaki time_mono_to_wall(expire) : 0;
1721 1.99 rpaulo } else
1722 1.99 rpaulo oprl->prefix[i].expire = maxexpire;
1723 1.99 rpaulo }
1724 1.2 itojun
1725 1.2 itojun j = 0;
1726 1.108 dyoung LIST_FOREACH(pfr, &pr->ndpr_advrtrs, pfr_entry) {
1727 1.2 itojun if (j < DRLSTSIZ) {
1728 1.65 itojun #define RTRADDR oprl->prefix[i].advrtr[j]
1729 1.2 itojun RTRADDR = pfr->router->rtaddr;
1730 1.96 rpaulo in6_clearscope(&RTRADDR);
1731 1.2 itojun #undef RTRADDR
1732 1.2 itojun }
1733 1.2 itojun j++;
1734 1.2 itojun }
1735 1.65 itojun oprl->prefix[i].advrtrs = j;
1736 1.65 itojun oprl->prefix[i].origin = PR_ORIG_RA;
1737 1.2 itojun
1738 1.2 itojun i++;
1739 1.2 itojun }
1740 1.220 ozaki ND6_UNLOCK();
1741 1.12 itojun
1742 1.2 itojun break;
1743 1.58 itojun case OSIOCGIFINFO_IN6:
1744 1.99 rpaulo #define ND ndi->ndi
1745 1.58 itojun /* XXX: old ndp(8) assumes a positive value for linkmtu. */
1746 1.99 rpaulo memset(&ND, 0, sizeof(ND));
1747 1.99 rpaulo ND.linkmtu = IN6_LINKMTU(ifp);
1748 1.99 rpaulo ND.maxmtu = ND_IFINFO(ifp)->maxmtu;
1749 1.99 rpaulo ND.basereachable = ND_IFINFO(ifp)->basereachable;
1750 1.99 rpaulo ND.reachable = ND_IFINFO(ifp)->reachable;
1751 1.99 rpaulo ND.retrans = ND_IFINFO(ifp)->retrans;
1752 1.99 rpaulo ND.flags = ND_IFINFO(ifp)->flags;
1753 1.99 rpaulo ND.recalctm = ND_IFINFO(ifp)->recalctm;
1754 1.99 rpaulo ND.chlim = ND_IFINFO(ifp)->chlim;
1755 1.58 itojun break;
1756 1.2 itojun case SIOCGIFINFO_IN6:
1757 1.99 rpaulo ND = *ND_IFINFO(ifp);
1758 1.2 itojun break;
1759 1.99 rpaulo case SIOCSIFINFO_IN6:
1760 1.99 rpaulo /*
1761 1.99 rpaulo * used to change host variables from userland.
1762 1.99 rpaulo * intented for a use on router to reflect RA configurations.
1763 1.99 rpaulo */
1764 1.99 rpaulo /* 0 means 'unspecified' */
1765 1.99 rpaulo if (ND.linkmtu != 0) {
1766 1.99 rpaulo if (ND.linkmtu < IPV6_MMTU ||
1767 1.99 rpaulo ND.linkmtu > IN6_LINKMTU(ifp)) {
1768 1.99 rpaulo error = EINVAL;
1769 1.99 rpaulo break;
1770 1.99 rpaulo }
1771 1.99 rpaulo ND_IFINFO(ifp)->linkmtu = ND.linkmtu;
1772 1.99 rpaulo }
1773 1.99 rpaulo
1774 1.99 rpaulo if (ND.basereachable != 0) {
1775 1.99 rpaulo int obasereachable = ND_IFINFO(ifp)->basereachable;
1776 1.99 rpaulo
1777 1.99 rpaulo ND_IFINFO(ifp)->basereachable = ND.basereachable;
1778 1.99 rpaulo if (ND.basereachable != obasereachable)
1779 1.99 rpaulo ND_IFINFO(ifp)->reachable =
1780 1.99 rpaulo ND_COMPUTE_RTIME(ND.basereachable);
1781 1.99 rpaulo }
1782 1.99 rpaulo if (ND.retrans != 0)
1783 1.99 rpaulo ND_IFINFO(ifp)->retrans = ND.retrans;
1784 1.99 rpaulo if (ND.chlim != 0)
1785 1.99 rpaulo ND_IFINFO(ifp)->chlim = ND.chlim;
1786 1.99 rpaulo /* FALLTHROUGH */
1787 1.26 itojun case SIOCSIFINFO_FLAGS:
1788 1.148 roy {
1789 1.148 roy struct ifaddr *ifa;
1790 1.148 roy struct in6_ifaddr *ia;
1791 1.220 ozaki int s;
1792 1.148 roy
1793 1.148 roy if ((ND_IFINFO(ifp)->flags & ND6_IFF_IFDISABLED) &&
1794 1.148 roy !(ND.flags & ND6_IFF_IFDISABLED))
1795 1.148 roy {
1796 1.148 roy /*
1797 1.148 roy * If the interface is marked as ND6_IFF_IFDISABLED and
1798 1.148 roy * has a link-local address with IN6_IFF_DUPLICATED,
1799 1.148 roy * do not clear ND6_IFF_IFDISABLED.
1800 1.148 roy * See RFC 4862, section 5.4.5.
1801 1.148 roy */
1802 1.148 roy int duplicated_linklocal = 0;
1803 1.148 roy
1804 1.205 ozaki s = pserialize_read_enter();
1805 1.202 ozaki IFADDR_READER_FOREACH(ifa, ifp) {
1806 1.148 roy if (ifa->ifa_addr->sa_family != AF_INET6)
1807 1.148 roy continue;
1808 1.148 roy ia = (struct in6_ifaddr *)ifa;
1809 1.148 roy if ((ia->ia6_flags & IN6_IFF_DUPLICATED) &&
1810 1.148 roy IN6_IS_ADDR_LINKLOCAL(IA6_IN6(ia)))
1811 1.148 roy {
1812 1.148 roy duplicated_linklocal = 1;
1813 1.148 roy break;
1814 1.148 roy }
1815 1.148 roy }
1816 1.205 ozaki pserialize_read_exit(s);
1817 1.148 roy
1818 1.148 roy if (duplicated_linklocal) {
1819 1.148 roy ND.flags |= ND6_IFF_IFDISABLED;
1820 1.254 christos log(LOG_ERR, "%s: Cannot enable an interface"
1821 1.148 roy " with a link-local address marked"
1822 1.254 christos " duplicate.\n", if_name(ifp));
1823 1.148 roy } else {
1824 1.148 roy ND_IFINFO(ifp)->flags &= ~ND6_IFF_IFDISABLED;
1825 1.148 roy if (ifp->if_flags & IFF_UP)
1826 1.148 roy in6_if_up(ifp);
1827 1.148 roy }
1828 1.148 roy } else if (!(ND_IFINFO(ifp)->flags & ND6_IFF_IFDISABLED) &&
1829 1.205 ozaki (ND.flags & ND6_IFF_IFDISABLED)) {
1830 1.205 ozaki int bound = curlwp_bind();
1831 1.148 roy /* Mark all IPv6 addresses as tentative. */
1832 1.148 roy
1833 1.148 roy ND_IFINFO(ifp)->flags |= ND6_IFF_IFDISABLED;
1834 1.205 ozaki s = pserialize_read_enter();
1835 1.202 ozaki IFADDR_READER_FOREACH(ifa, ifp) {
1836 1.205 ozaki struct psref psref;
1837 1.148 roy if (ifa->ifa_addr->sa_family != AF_INET6)
1838 1.148 roy continue;
1839 1.205 ozaki ifa_acquire(ifa, &psref);
1840 1.205 ozaki pserialize_read_exit(s);
1841 1.205 ozaki
1842 1.148 roy nd6_dad_stop(ifa);
1843 1.205 ozaki
1844 1.148 roy ia = (struct in6_ifaddr *)ifa;
1845 1.148 roy ia->ia6_flags |= IN6_IFF_TENTATIVE;
1846 1.205 ozaki
1847 1.205 ozaki s = pserialize_read_enter();
1848 1.205 ozaki ifa_release(ifa, &psref);
1849 1.148 roy }
1850 1.205 ozaki pserialize_read_exit(s);
1851 1.205 ozaki curlwp_bindx(bound);
1852 1.148 roy }
1853 1.151 roy
1854 1.151 roy if (ND.flags & ND6_IFF_AUTO_LINKLOCAL) {
1855 1.151 roy if (!(ND_IFINFO(ifp)->flags & ND6_IFF_AUTO_LINKLOCAL)) {
1856 1.151 roy /* auto_linklocal 0->1 transition */
1857 1.151 roy
1858 1.151 roy ND_IFINFO(ifp)->flags |= ND6_IFF_AUTO_LINKLOCAL;
1859 1.151 roy in6_ifattach(ifp, NULL);
1860 1.151 roy } else if (!(ND.flags & ND6_IFF_IFDISABLED) &&
1861 1.151 roy ifp->if_flags & IFF_UP)
1862 1.151 roy {
1863 1.151 roy /*
1864 1.151 roy * When the IF already has
1865 1.151 roy * ND6_IFF_AUTO_LINKLOCAL, no link-local
1866 1.151 roy * address is assigned, and IFF_UP, try to
1867 1.151 roy * assign one.
1868 1.151 roy */
1869 1.205 ozaki int haslinklocal = 0;
1870 1.151 roy
1871 1.205 ozaki s = pserialize_read_enter();
1872 1.205 ozaki IFADDR_READER_FOREACH(ifa, ifp) {
1873 1.151 roy if (ifa->ifa_addr->sa_family !=AF_INET6)
1874 1.151 roy continue;
1875 1.151 roy ia = (struct in6_ifaddr *)ifa;
1876 1.151 roy if (IN6_IS_ADDR_LINKLOCAL(IA6_IN6(ia))){
1877 1.151 roy haslinklocal = 1;
1878 1.151 roy break;
1879 1.151 roy }
1880 1.205 ozaki }
1881 1.205 ozaki pserialize_read_exit(s);
1882 1.205 ozaki if (!haslinklocal)
1883 1.151 roy in6_ifattach(ifp, NULL);
1884 1.151 roy }
1885 1.151 roy }
1886 1.148 roy }
1887 1.99 rpaulo ND_IFINFO(ifp)->flags = ND.flags;
1888 1.26 itojun break;
1889 1.99 rpaulo #undef ND
1890 1.12 itojun case SIOCSNDFLUSH_IN6: /* XXX: the ioctl name is confusing... */
1891 1.65 itojun /* sync kernel routing table with the default router list */
1892 1.220 ozaki ND6_WLOCK();
1893 1.213 ozaki nd6_defrouter_reset();
1894 1.213 ozaki nd6_defrouter_select();
1895 1.220 ozaki ND6_UNLOCK();
1896 1.2 itojun break;
1897 1.2 itojun case SIOCSPFXFLUSH_IN6:
1898 1.65 itojun {
1899 1.2 itojun /* flush all the prefix advertised by routers */
1900 1.94 christos struct nd_prefix *pfx, *next;
1901 1.2 itojun
1902 1.220 ozaki restart:
1903 1.220 ozaki ND6_WLOCK();
1904 1.215 ozaki ND_PREFIX_LIST_FOREACH_SAFE(pfx, next) {
1905 1.65 itojun struct in6_ifaddr *ia, *ia_next;
1906 1.205 ozaki int _s;
1907 1.65 itojun
1908 1.252 roy /* Only flush prefixes for the given interface. */
1909 1.252 roy if (ifp != lo0ifp && ifp != pfx->ndpr_ifp)
1910 1.252 roy continue;
1911 1.252 roy
1912 1.94 christos if (IN6_IS_ADDR_LINKLOCAL(&pfx->ndpr_prefix.sin6_addr))
1913 1.65 itojun continue; /* XXX */
1914 1.65 itojun
1915 1.65 itojun /* do we really have to remove addresses as well? */
1916 1.205 ozaki _s = pserialize_read_enter();
1917 1.205 ozaki for (ia = IN6_ADDRLIST_READER_FIRST(); ia;
1918 1.199 ozaki ia = ia_next) {
1919 1.240 ozaki struct ifnet *ifa_ifp;
1920 1.240 ozaki int bound;
1921 1.240 ozaki struct psref psref;
1922 1.240 ozaki
1923 1.65 itojun /* ia might be removed. keep the next ptr. */
1924 1.205 ozaki ia_next = IN6_ADDRLIST_READER_NEXT(ia);
1925 1.65 itojun
1926 1.65 itojun if ((ia->ia6_flags & IN6_IFF_AUTOCONF) == 0)
1927 1.65 itojun continue;
1928 1.65 itojun
1929 1.240 ozaki if (ia->ia6_ndpr != pfx)
1930 1.240 ozaki continue;
1931 1.240 ozaki
1932 1.240 ozaki bound = curlwp_bind();
1933 1.240 ozaki ia6_acquire(ia, &psref);
1934 1.240 ozaki pserialize_read_exit(_s);
1935 1.240 ozaki ND6_UNLOCK();
1936 1.240 ozaki
1937 1.240 ozaki ifa_ifp = ia->ia_ifa.ifa_ifp;
1938 1.240 ozaki if (ifa_ifp == ifp) {
1939 1.240 ozaki /* Already have IFNET_LOCK(ifp) */
1940 1.240 ozaki KASSERT(!if_is_deactivated(ifp));
1941 1.240 ozaki ia6_release(ia, &psref);
1942 1.65 itojun in6_purgeaddr(&ia->ia_ifa);
1943 1.240 ozaki curlwp_bindx(bound);
1944 1.205 ozaki goto restart;
1945 1.205 ozaki }
1946 1.240 ozaki IFNET_LOCK(ifa_ifp);
1947 1.240 ozaki /*
1948 1.240 ozaki * Need to take the lock first to prevent
1949 1.240 ozaki * if_detach from running in6_purgeaddr
1950 1.240 ozaki * concurrently.
1951 1.240 ozaki */
1952 1.240 ozaki if (!if_is_deactivated(ifa_ifp)) {
1953 1.240 ozaki ia6_release(ia, &psref);
1954 1.240 ozaki in6_purgeaddr(&ia->ia_ifa);
1955 1.240 ozaki } else {
1956 1.240 ozaki /*
1957 1.240 ozaki * ifp is being destroyed, ia will be
1958 1.240 ozaki * destroyed by if_detach.
1959 1.240 ozaki */
1960 1.240 ozaki ia6_release(ia, &psref);
1961 1.240 ozaki /* XXX may cause busy loop */
1962 1.240 ozaki }
1963 1.240 ozaki IFNET_UNLOCK(ifa_ifp);
1964 1.240 ozaki curlwp_bindx(bound);
1965 1.240 ozaki goto restart;
1966 1.65 itojun }
1967 1.205 ozaki pserialize_read_exit(_s);
1968 1.220 ozaki
1969 1.220 ozaki KASSERT(pfx->ndpr_refcnt == 0);
1970 1.213 ozaki nd6_prelist_remove(pfx);
1971 1.2 itojun }
1972 1.220 ozaki ND6_UNLOCK();
1973 1.2 itojun break;
1974 1.65 itojun }
1975 1.2 itojun case SIOCSRTRFLUSH_IN6:
1976 1.65 itojun {
1977 1.2 itojun /* flush all the default routers */
1978 1.94 christos struct nd_defrouter *drtr, *next;
1979 1.2 itojun
1980 1.220 ozaki ND6_WLOCK();
1981 1.252 roy #if 0
1982 1.252 roy /* XXX Is this really needed? */
1983 1.213 ozaki nd6_defrouter_reset();
1984 1.252 roy #endif
1985 1.214 ozaki ND_DEFROUTER_LIST_FOREACH_SAFE(drtr, next) {
1986 1.252 roy /* Only flush routers for the given interface. */
1987 1.252 roy if (ifp != lo0ifp && ifp != drtr->ifp)
1988 1.252 roy continue;
1989 1.252 roy
1990 1.213 ozaki nd6_defrtrlist_del(drtr, NULL);
1991 1.2 itojun }
1992 1.213 ozaki nd6_defrouter_select();
1993 1.220 ozaki ND6_UNLOCK();
1994 1.2 itojun break;
1995 1.65 itojun }
1996 1.2 itojun case SIOCGNBRINFO_IN6:
1997 1.99 rpaulo {
1998 1.181 ozaki struct llentry *ln;
1999 1.12 itojun struct in6_addr nb_addr = nbi->addr; /* make local for safety */
2000 1.12 itojun
2001 1.96 rpaulo if ((error = in6_setscope(&nb_addr, ifp, NULL)) != 0)
2002 1.112 dyoung return error;
2003 1.2 itojun
2004 1.188 ozaki ln = nd6_lookup(&nb_addr, ifp, false);
2005 1.165 ozaki if (ln == NULL) {
2006 1.12 itojun error = EINVAL;
2007 1.12 itojun break;
2008 1.12 itojun }
2009 1.12 itojun nbi->state = ln->ln_state;
2010 1.12 itojun nbi->asked = ln->ln_asked;
2011 1.12 itojun nbi->isrouter = ln->ln_router;
2012 1.166 ozaki nbi->expire = ln->ln_expire ?
2013 1.166 ozaki time_mono_to_wall(ln->ln_expire) : 0;
2014 1.188 ozaki LLE_RUNLOCK(ln);
2015 1.63 itojun
2016 1.12 itojun break;
2017 1.65 itojun }
2018 1.12 itojun case SIOCGDEFIFACE_IN6: /* XXX: should be implemented as a sysctl? */
2019 1.12 itojun ndif->ifindex = nd6_defifindex;
2020 1.12 itojun break;
2021 1.12 itojun case SIOCSDEFIFACE_IN6: /* XXX: should be implemented as a sysctl? */
2022 1.112 dyoung return nd6_setdefaultiface(ndif->ifindex);
2023 1.2 itojun }
2024 1.112 dyoung return error;
2025 1.2 itojun }
2026 1.2 itojun
2027 1.115 dyoung void
2028 1.188 ozaki nd6_llinfo_release_pkts(struct llentry *ln, struct ifnet *ifp)
2029 1.115 dyoung {
2030 1.115 dyoung struct mbuf *m_hold, *m_hold_next;
2031 1.188 ozaki struct sockaddr_in6 sin6;
2032 1.188 ozaki
2033 1.188 ozaki LLE_WLOCK_ASSERT(ln);
2034 1.188 ozaki
2035 1.188 ozaki sockaddr_in6_init(&sin6, &ln->r_l3addr.addr6, 0, 0, 0);
2036 1.115 dyoung
2037 1.188 ozaki m_hold = ln->la_hold, ln->la_hold = NULL, ln->la_numheld = 0;
2038 1.188 ozaki
2039 1.188 ozaki LLE_WUNLOCK(ln);
2040 1.188 ozaki for (; m_hold != NULL; m_hold = m_hold_next) {
2041 1.115 dyoung m_hold_next = m_hold->m_nextpkt;
2042 1.115 dyoung m_hold->m_nextpkt = NULL;
2043 1.115 dyoung
2044 1.115 dyoung /*
2045 1.115 dyoung * we assume ifp is not a p2p here, so
2046 1.115 dyoung * just set the 2nd argument as the
2047 1.115 dyoung * 1st one.
2048 1.115 dyoung */
2049 1.227 ozaki ip6_if_output(ifp, ifp, m_hold, &sin6, NULL);
2050 1.115 dyoung }
2051 1.188 ozaki LLE_WLOCK(ln);
2052 1.115 dyoung }
2053 1.115 dyoung
2054 1.2 itojun /*
2055 1.2 itojun * Create neighbor cache entry and cache link-layer address,
2056 1.52 itojun * on reception of inbound ND6 packets. (RS/RA/NS/redirect)
2057 1.2 itojun */
2058 1.165 ozaki void
2059 1.105 christos nd6_cache_lladdr(
2060 1.105 christos struct ifnet *ifp,
2061 1.105 christos struct in6_addr *from,
2062 1.105 christos char *lladdr,
2063 1.107 christos int lladdrlen,
2064 1.105 christos int type, /* ICMP6 type */
2065 1.105 christos int code /* type dependent information */
2066 1.105 christos )
2067 1.2 itojun {
2068 1.132 tonnerre struct nd_ifinfo *ndi = ND_IFINFO(ifp);
2069 1.181 ozaki struct llentry *ln = NULL;
2070 1.2 itojun int is_newentry;
2071 1.2 itojun int do_update;
2072 1.2 itojun int olladdr;
2073 1.2 itojun int llchange;
2074 1.2 itojun int newstate = 0;
2075 1.188 ozaki uint16_t router = 0;
2076 1.2 itojun
2077 1.163 ozaki KASSERT(ifp != NULL);
2078 1.163 ozaki KASSERT(from != NULL);
2079 1.2 itojun
2080 1.2 itojun /* nothing must be updated for unspecified address */
2081 1.2 itojun if (IN6_IS_ADDR_UNSPECIFIED(from))
2082 1.165 ozaki return;
2083 1.2 itojun
2084 1.2 itojun /*
2085 1.2 itojun * Validation about ifp->if_addrlen and lladdrlen must be done in
2086 1.2 itojun * the caller.
2087 1.2 itojun *
2088 1.2 itojun * XXX If the link does not have link-layer adderss, what should
2089 1.2 itojun * we do? (ifp->if_addrlen == 0)
2090 1.2 itojun * Spec says nothing in sections for RA, RS and NA. There's small
2091 1.2 itojun * description on it in NS section (RFC 2461 7.2.3).
2092 1.2 itojun */
2093 1.2 itojun
2094 1.188 ozaki ln = nd6_lookup(from, ifp, true);
2095 1.188 ozaki if (ln == NULL) {
2096 1.2 itojun #if 0
2097 1.2 itojun /* nothing must be done if there's no lladdr */
2098 1.2 itojun if (!lladdr || !lladdrlen)
2099 1.2 itojun return NULL;
2100 1.2 itojun #endif
2101 1.2 itojun
2102 1.188 ozaki ln = nd6_create(from, ifp);
2103 1.2 itojun is_newentry = 1;
2104 1.43 itojun } else {
2105 1.43 itojun /* do nothing if static ndp is set */
2106 1.188 ozaki if (ln->la_flags & LLE_STATIC) {
2107 1.188 ozaki LLE_WUNLOCK(ln);
2108 1.165 ozaki return;
2109 1.165 ozaki }
2110 1.2 itojun is_newentry = 0;
2111 1.43 itojun }
2112 1.2 itojun
2113 1.188 ozaki if (ln == NULL)
2114 1.165 ozaki return;
2115 1.2 itojun
2116 1.188 ozaki olladdr = (ln->la_flags & LLE_VALID) ? 1 : 0;
2117 1.2 itojun if (olladdr && lladdr) {
2118 1.188 ozaki llchange = memcmp(lladdr, &ln->ll_addr, ifp->if_addrlen);
2119 1.2 itojun } else
2120 1.2 itojun llchange = 0;
2121 1.2 itojun
2122 1.2 itojun /*
2123 1.2 itojun * newentry olladdr lladdr llchange (*=record)
2124 1.2 itojun * 0 n n -- (1)
2125 1.2 itojun * 0 y n -- (2)
2126 1.2 itojun * 0 n y -- (3) * STALE
2127 1.2 itojun * 0 y y n (4) *
2128 1.2 itojun * 0 y y y (5) * STALE
2129 1.2 itojun * 1 -- n -- (6) NOSTATE(= PASSIVE)
2130 1.2 itojun * 1 -- y -- (7) * STALE
2131 1.2 itojun */
2132 1.2 itojun
2133 1.52 itojun if (lladdr) { /* (3-5) and (7) */
2134 1.2 itojun /*
2135 1.2 itojun * Record source link-layer address
2136 1.2 itojun * XXX is it dependent to ifp->if_type?
2137 1.2 itojun */
2138 1.188 ozaki memcpy(&ln->ll_addr, lladdr, ifp->if_addrlen);
2139 1.188 ozaki ln->la_flags |= LLE_VALID;
2140 1.2 itojun }
2141 1.2 itojun
2142 1.2 itojun if (!is_newentry) {
2143 1.65 itojun if ((!olladdr && lladdr) || /* (3) */
2144 1.65 itojun (olladdr && lladdr && llchange)) { /* (5) */
2145 1.2 itojun do_update = 1;
2146 1.2 itojun newstate = ND6_LLINFO_STALE;
2147 1.52 itojun } else /* (1-2,4) */
2148 1.2 itojun do_update = 0;
2149 1.2 itojun } else {
2150 1.2 itojun do_update = 1;
2151 1.99 rpaulo if (lladdr == NULL) /* (6) */
2152 1.2 itojun newstate = ND6_LLINFO_NOSTATE;
2153 1.52 itojun else /* (7) */
2154 1.2 itojun newstate = ND6_LLINFO_STALE;
2155 1.2 itojun }
2156 1.2 itojun
2157 1.2 itojun if (do_update) {
2158 1.2 itojun /*
2159 1.2 itojun * Update the state of the neighbor cache.
2160 1.2 itojun */
2161 1.2 itojun ln->ln_state = newstate;
2162 1.2 itojun
2163 1.2 itojun if (ln->ln_state == ND6_LLINFO_STALE) {
2164 1.44 itojun /*
2165 1.44 itojun * XXX: since nd6_output() below will cause
2166 1.44 itojun * state tansition to DELAY and reset the timer,
2167 1.44 itojun * we must set the timer now, although it is actually
2168 1.44 itojun * meaningless.
2169 1.44 itojun */
2170 1.182 ozaki nd6_llinfo_settimer(ln, nd6_gctimer * hz);
2171 1.44 itojun
2172 1.188 ozaki nd6_llinfo_release_pkts(ln, ifp);
2173 1.2 itojun } else if (ln->ln_state == ND6_LLINFO_INCOMPLETE) {
2174 1.2 itojun /* probe right away */
2175 1.86 itojun nd6_llinfo_settimer((void *)ln, 0);
2176 1.2 itojun }
2177 1.2 itojun }
2178 1.2 itojun
2179 1.2 itojun /*
2180 1.2 itojun * ICMP6 type dependent behavior.
2181 1.2 itojun *
2182 1.2 itojun * NS: clear IsRouter if new entry
2183 1.2 itojun * RS: clear IsRouter
2184 1.2 itojun * RA: set IsRouter if there's lladdr
2185 1.2 itojun * redir: clear IsRouter if new entry
2186 1.2 itojun *
2187 1.2 itojun * RA case, (1):
2188 1.2 itojun * The spec says that we must set IsRouter in the following cases:
2189 1.2 itojun * - If lladdr exist, set IsRouter. This means (1-5).
2190 1.2 itojun * - If it is old entry (!newentry), set IsRouter. This means (7).
2191 1.2 itojun * So, based on the spec, in (1-5) and (7) cases we must set IsRouter.
2192 1.2 itojun * A quetion arises for (1) case. (1) case has no lladdr in the
2193 1.2 itojun * neighbor cache, this is similar to (6).
2194 1.2 itojun * This case is rare but we figured that we MUST NOT set IsRouter.
2195 1.2 itojun *
2196 1.2 itojun * newentry olladdr lladdr llchange NS RS RA redir
2197 1.8 itojun * D R
2198 1.8 itojun * 0 n n -- (1) c ? s
2199 1.8 itojun * 0 y n -- (2) c s s
2200 1.8 itojun * 0 n y -- (3) c s s
2201 1.8 itojun * 0 y y n (4) c s s
2202 1.8 itojun * 0 y y y (5) c s s
2203 1.8 itojun * 1 -- n -- (6) c c c s
2204 1.8 itojun * 1 -- y -- (7) c c s c s
2205 1.2 itojun *
2206 1.2 itojun * (c=clear s=set)
2207 1.2 itojun */
2208 1.2 itojun switch (type & 0xff) {
2209 1.2 itojun case ND_NEIGHBOR_SOLICIT:
2210 1.2 itojun /*
2211 1.2 itojun * New entry must have is_router flag cleared.
2212 1.2 itojun */
2213 1.52 itojun if (is_newentry) /* (6-7) */
2214 1.8 itojun ln->ln_router = 0;
2215 1.8 itojun break;
2216 1.8 itojun case ND_REDIRECT:
2217 1.8 itojun /*
2218 1.8 itojun * If the icmp is a redirect to a better router, always set the
2219 1.52 itojun * is_router flag. Otherwise, if the entry is newly created,
2220 1.52 itojun * clear the flag. [RFC 2461, sec 8.3]
2221 1.8 itojun */
2222 1.8 itojun if (code == ND_REDIRECT_ROUTER)
2223 1.8 itojun ln->ln_router = 1;
2224 1.52 itojun else if (is_newentry) /* (6-7) */
2225 1.2 itojun ln->ln_router = 0;
2226 1.2 itojun break;
2227 1.2 itojun case ND_ROUTER_SOLICIT:
2228 1.2 itojun /*
2229 1.2 itojun * is_router flag must always be cleared.
2230 1.2 itojun */
2231 1.2 itojun ln->ln_router = 0;
2232 1.2 itojun break;
2233 1.2 itojun case ND_ROUTER_ADVERT:
2234 1.2 itojun /*
2235 1.2 itojun * Mark an entry with lladdr as a router.
2236 1.2 itojun */
2237 1.65 itojun if ((!is_newentry && (olladdr || lladdr)) || /* (2-5) */
2238 1.65 itojun (is_newentry && lladdr)) { /* (7) */
2239 1.2 itojun ln->ln_router = 1;
2240 1.2 itojun }
2241 1.2 itojun break;
2242 1.2 itojun }
2243 1.47 itojun
2244 1.262 roy if (do_update && lladdr != NULL) {
2245 1.259 roy struct sockaddr_in6 sin6;
2246 1.259 roy
2247 1.259 roy sockaddr_in6_init(&sin6, from, 0, 0, 0);
2248 1.259 roy rt_clonedmsg(is_newentry ? RTM_ADD : RTM_CHANGE,
2249 1.259 roy sin6tosa(&sin6), lladdr, ifp);
2250 1.259 roy }
2251 1.188 ozaki
2252 1.188 ozaki if (ln != NULL) {
2253 1.188 ozaki router = ln->ln_router;
2254 1.188 ozaki LLE_WUNLOCK(ln);
2255 1.188 ozaki }
2256 1.188 ozaki
2257 1.188 ozaki /*
2258 1.188 ozaki * If we have too many cache entries, initiate immediate
2259 1.188 ozaki * purging for some entries.
2260 1.188 ozaki */
2261 1.188 ozaki if (is_newentry)
2262 1.207 ozaki nd6_gc_neighbors(LLTABLE6(ifp), &ln->r_l3addr.addr6);
2263 1.156 roy
2264 1.47 itojun /*
2265 1.47 itojun * When the link-layer address of a router changes, select the
2266 1.47 itojun * best router again. In particular, when the neighbor entry is newly
2267 1.47 itojun * created, it might affect the selection policy.
2268 1.47 itojun * Question: can we restrict the first condition to the "is_newentry"
2269 1.47 itojun * case?
2270 1.47 itojun * XXX: when we hear an RA from a new router with the link-layer
2271 1.213 ozaki * address option, nd6_defrouter_select() is called twice, since
2272 1.47 itojun * defrtrlist_update called the function as well. However, I believe
2273 1.47 itojun * we can compromise the overhead, since it only happens the first
2274 1.47 itojun * time.
2275 1.213 ozaki * XXX: although nd6_defrouter_select() should not have a bad effect
2276 1.52 itojun * for those are not autoconfigured hosts, we explicitly avoid such
2277 1.52 itojun * cases for safety.
2278 1.47 itojun */
2279 1.188 ozaki if (do_update && router && !ip6_forwarding &&
2280 1.220 ozaki nd6_accepts_rtadv(ndi)) {
2281 1.220 ozaki ND6_WLOCK();
2282 1.213 ozaki nd6_defrouter_select();
2283 1.220 ozaki ND6_UNLOCK();
2284 1.220 ozaki }
2285 1.2 itojun }
2286 1.2 itojun
2287 1.2 itojun static void
2288 1.107 christos nd6_slowtimo(void *ignored_arg)
2289 1.2 itojun {
2290 1.38 itojun struct nd_ifinfo *nd6if;
2291 1.58 itojun struct ifnet *ifp;
2292 1.194 ozaki int s;
2293 1.2 itojun
2294 1.239 ozaki SOFTNET_KERNEL_LOCK_UNLESS_NET_MPSAFE();
2295 1.170 ozaki callout_reset(&nd6_slowtimo_ch, ND6_SLOWTIMER_INTERVAL * hz,
2296 1.20 thorpej nd6_slowtimo, NULL);
2297 1.194 ozaki
2298 1.194 ozaki s = pserialize_read_enter();
2299 1.194 ozaki IFNET_READER_FOREACH(ifp) {
2300 1.58 itojun nd6if = ND_IFINFO(ifp);
2301 1.2 itojun if (nd6if->basereachable && /* already initialized */
2302 1.2 itojun (nd6if->recalctm -= ND6_SLOWTIMER_INTERVAL) <= 0) {
2303 1.2 itojun /*
2304 1.2 itojun * Since reachable time rarely changes by router
2305 1.2 itojun * advertisements, we SHOULD insure that a new random
2306 1.2 itojun * value gets recomputed at least once every few hours.
2307 1.2 itojun * (RFC 2461, 6.3.4)
2308 1.2 itojun */
2309 1.2 itojun nd6if->recalctm = nd6_recalc_reachtm_interval;
2310 1.2 itojun nd6if->reachable = ND_COMPUTE_RTIME(nd6if->basereachable);
2311 1.2 itojun }
2312 1.2 itojun }
2313 1.194 ozaki pserialize_read_exit(s);
2314 1.194 ozaki
2315 1.239 ozaki SOFTNET_KERNEL_UNLOCK_UNLESS_NET_MPSAFE();
2316 1.2 itojun }
2317 1.2 itojun
2318 1.227 ozaki /*
2319 1.227 ozaki * Return 0 if a neighbor cache is found. Return EWOULDBLOCK if a cache is not
2320 1.227 ozaki * found and trying to resolve a neighbor; in this case the mbuf is queued in
2321 1.227 ozaki * the list. Otherwise return errno after freeing the mbuf.
2322 1.227 ozaki */
2323 1.188 ozaki int
2324 1.227 ozaki nd6_resolve(struct ifnet *ifp, const struct rtentry *rt, struct mbuf *m,
2325 1.227 ozaki const struct sockaddr *_dst, uint8_t *lldst, size_t dstsize)
2326 1.176 ozaki {
2327 1.181 ozaki struct llentry *ln = NULL;
2328 1.188 ozaki bool created = false;
2329 1.227 ozaki const struct sockaddr_in6 *dst = satocsin6(_dst);
2330 1.263 roy int error;
2331 1.193 ozaki
2332 1.227 ozaki /* discard the packet if IPv6 operation is disabled on the interface */
2333 1.227 ozaki if ((ND_IFINFO(ifp)->flags & ND6_IFF_IFDISABLED)) {
2334 1.227 ozaki m_freem(m);
2335 1.227 ozaki return ENETDOWN; /* better error? */
2336 1.193 ozaki }
2337 1.193 ozaki
2338 1.2 itojun /*
2339 1.2 itojun * Address resolution or Neighbor Unreachability Detection
2340 1.2 itojun * for the next hop.
2341 1.2 itojun * At this point, the destination of the packet must be a unicast
2342 1.2 itojun * or an anycast address(i.e. not a multicast).
2343 1.2 itojun */
2344 1.2 itojun
2345 1.2 itojun /* Look up the neighbor cache for the nexthop */
2346 1.227 ozaki ln = nd6_lookup(&dst->sin6_addr, ifp, false);
2347 1.227 ozaki
2348 1.255 ozaki if (ln != NULL && (ln->la_flags & LLE_VALID) != 0 &&
2349 1.255 ozaki ln->ln_state == ND6_LLINFO_REACHABLE) {
2350 1.227 ozaki /* Fast path */
2351 1.227 ozaki memcpy(lldst, &ln->ll_addr, MIN(dstsize, ifp->if_addrlen));
2352 1.227 ozaki LLE_RUNLOCK(ln);
2353 1.227 ozaki return 0;
2354 1.227 ozaki }
2355 1.227 ozaki if (ln != NULL)
2356 1.227 ozaki LLE_RUNLOCK(ln);
2357 1.227 ozaki
2358 1.227 ozaki /* Slow path */
2359 1.188 ozaki ln = nd6_lookup(&dst->sin6_addr, ifp, true);
2360 1.227 ozaki if (ln == NULL && nd6_is_addr_neighbor(dst, ifp)) {
2361 1.29 itojun /*
2362 1.29 itojun * Since nd6_is_addr_neighbor() internally calls nd6_lookup(),
2363 1.52 itojun * the condition below is not very efficient. But we believe
2364 1.29 itojun * it is tolerable, because this should be a rare case.
2365 1.29 itojun */
2366 1.188 ozaki ln = nd6_create(&dst->sin6_addr, ifp);
2367 1.227 ozaki if (ln == NULL) {
2368 1.225 ryo char ip6buf[INET6_ADDRSTRLEN];
2369 1.29 itojun log(LOG_DEBUG,
2370 1.227 ozaki "%s: can't allocate llinfo for %s "
2371 1.227 ozaki "(ln=%p, rt=%p)\n", __func__,
2372 1.226 christos IN6_PRINT(ip6buf, &dst->sin6_addr), ln, rt);
2373 1.227 ozaki m_freem(m);
2374 1.227 ozaki return ENOBUFS;
2375 1.29 itojun }
2376 1.227 ozaki created = true;
2377 1.2 itojun }
2378 1.2 itojun
2379 1.236 ozaki if (ln == NULL) {
2380 1.236 ozaki m_freem(m);
2381 1.236 ozaki return ENETDOWN; /* better error? */
2382 1.236 ozaki }
2383 1.236 ozaki
2384 1.188 ozaki LLE_WLOCK_ASSERT(ln);
2385 1.188 ozaki
2386 1.26 itojun /* We don't have to do link-layer address resolution on a p2p link. */
2387 1.26 itojun if ((ifp->if_flags & IFF_POINTOPOINT) != 0 &&
2388 1.42 itojun ln->ln_state < ND6_LLINFO_REACHABLE) {
2389 1.26 itojun ln->ln_state = ND6_LLINFO_STALE;
2390 1.182 ozaki nd6_llinfo_settimer(ln, nd6_gctimer * hz);
2391 1.42 itojun }
2392 1.2 itojun
2393 1.2 itojun /*
2394 1.2 itojun * The first time we send a packet to a neighbor whose entry is
2395 1.2 itojun * STALE, we have to change the state to DELAY and a sets a timer to
2396 1.2 itojun * expire in DELAY_FIRST_PROBE_TIME seconds to ensure do
2397 1.2 itojun * neighbor unreachability detection on expiration.
2398 1.2 itojun * (RFC 2461 7.3.3)
2399 1.2 itojun */
2400 1.2 itojun if (ln->ln_state == ND6_LLINFO_STALE) {
2401 1.2 itojun ln->ln_asked = 0;
2402 1.2 itojun ln->ln_state = ND6_LLINFO_DELAY;
2403 1.182 ozaki nd6_llinfo_settimer(ln, nd6_delay * hz);
2404 1.2 itojun }
2405 1.2 itojun
2406 1.2 itojun /*
2407 1.255 ozaki * If the neighbor cache entry has a state other than INCOMPLETE
2408 1.255 ozaki * (i.e. its link-layer address is already resolved), just
2409 1.255 ozaki * send the packet.
2410 1.255 ozaki */
2411 1.255 ozaki if (ln->ln_state > ND6_LLINFO_INCOMPLETE) {
2412 1.255 ozaki KASSERT((ln->la_flags & LLE_VALID) != 0);
2413 1.255 ozaki memcpy(lldst, &ln->ll_addr, MIN(dstsize, ifp->if_addrlen));
2414 1.255 ozaki LLE_WUNLOCK(ln);
2415 1.255 ozaki return 0;
2416 1.255 ozaki }
2417 1.255 ozaki
2418 1.255 ozaki /*
2419 1.2 itojun * There is a neighbor cache entry, but no ethernet address
2420 1.99 rpaulo * response yet. Append this latest packet to the end of the
2421 1.99 rpaulo * packet queue in the mbuf, unless the number of the packet
2422 1.99 rpaulo * does not exceed nd6_maxqueuelen. When it exceeds nd6_maxqueuelen,
2423 1.99 rpaulo * the oldest packet in the queue will be removed.
2424 1.2 itojun */
2425 1.263 roy if (ln->ln_state == ND6_LLINFO_NOSTATE ||
2426 1.263 roy ln->ln_state == ND6_LLINFO_WAITDELETE)
2427 1.2 itojun ln->ln_state = ND6_LLINFO_INCOMPLETE;
2428 1.99 rpaulo if (ln->ln_hold) {
2429 1.99 rpaulo struct mbuf *m_hold;
2430 1.99 rpaulo int i;
2431 1.99 rpaulo
2432 1.99 rpaulo i = 0;
2433 1.99 rpaulo for (m_hold = ln->ln_hold; m_hold; m_hold = m_hold->m_nextpkt) {
2434 1.99 rpaulo i++;
2435 1.99 rpaulo if (m_hold->m_nextpkt == NULL) {
2436 1.99 rpaulo m_hold->m_nextpkt = m;
2437 1.99 rpaulo break;
2438 1.99 rpaulo }
2439 1.99 rpaulo }
2440 1.99 rpaulo while (i >= nd6_maxqueuelen) {
2441 1.99 rpaulo m_hold = ln->ln_hold;
2442 1.99 rpaulo ln->ln_hold = ln->ln_hold->m_nextpkt;
2443 1.100 rpaulo m_freem(m_hold);
2444 1.99 rpaulo i--;
2445 1.99 rpaulo }
2446 1.99 rpaulo } else {
2447 1.99 rpaulo ln->ln_hold = m;
2448 1.99 rpaulo }
2449 1.99 rpaulo
2450 1.263 roy if (ln->ln_asked >= nd6_mmaxtries)
2451 1.263 roy error = (rt != NULL && rt->rt_flags & RTF_GATEWAY) ?
2452 1.263 roy EHOSTUNREACH : EHOSTDOWN;
2453 1.263 roy else
2454 1.263 roy error = EWOULDBLOCK;
2455 1.263 roy
2456 1.64 itojun /*
2457 1.64 itojun * If there has been no NS for the neighbor after entering the
2458 1.64 itojun * INCOMPLETE state, send the first solicitation.
2459 1.64 itojun */
2460 1.86 itojun if (!ND6_LLINFO_PERMANENT(ln) && ln->ln_asked == 0) {
2461 1.179 ozaki struct in6_addr src, *psrc;
2462 1.179 ozaki
2463 1.64 itojun ln->ln_asked++;
2464 1.188 ozaki nd6_llinfo_settimer(ln, ND_IFINFO(ifp)->retrans * hz / 1000);
2465 1.179 ozaki psrc = nd6_llinfo_get_holdsrc(ln, &src);
2466 1.188 ozaki LLE_WUNLOCK(ln);
2467 1.247 roy nd6_ns_output(ifp, NULL, &dst->sin6_addr, psrc, NULL);
2468 1.262 roy } else
2469 1.188 ozaki LLE_WUNLOCK(ln);
2470 1.188 ozaki
2471 1.188 ozaki if (created)
2472 1.207 ozaki nd6_gc_neighbors(LLTABLE6(ifp), &dst->sin6_addr);
2473 1.165 ozaki
2474 1.263 roy return error;
2475 1.63 itojun }
2476 1.54 itojun
2477 1.54 itojun int
2478 1.112 dyoung nd6_need_cache(struct ifnet *ifp)
2479 1.54 itojun {
2480 1.54 itojun /*
2481 1.54 itojun * XXX: we currently do not make neighbor cache on any interface
2482 1.54 itojun * other than ARCnet, Ethernet, FDDI and GIF.
2483 1.54 itojun *
2484 1.54 itojun * RFC2893 says:
2485 1.54 itojun * - unidirectional tunnels needs no ND
2486 1.54 itojun */
2487 1.54 itojun switch (ifp->if_type) {
2488 1.54 itojun case IFT_ARCNET:
2489 1.54 itojun case IFT_ETHER:
2490 1.54 itojun case IFT_FDDI:
2491 1.54 itojun case IFT_IEEE1394:
2492 1.102 liamjfoy case IFT_CARP:
2493 1.54 itojun case IFT_GIF: /* XXX need more cases? */
2494 1.99 rpaulo case IFT_PPP:
2495 1.99 rpaulo case IFT_TUNNEL:
2496 1.112 dyoung return 1;
2497 1.54 itojun default:
2498 1.112 dyoung return 0;
2499 1.54 itojun }
2500 1.54 itojun }
2501 1.2 itojun
2502 1.100 rpaulo static void
2503 1.181 ozaki clear_llinfo_pqueue(struct llentry *ln)
2504 1.100 rpaulo {
2505 1.100 rpaulo struct mbuf *m_hold, *m_hold_next;
2506 1.100 rpaulo
2507 1.100 rpaulo for (m_hold = ln->ln_hold; m_hold; m_hold = m_hold_next) {
2508 1.100 rpaulo m_hold_next = m_hold->m_nextpkt;
2509 1.100 rpaulo m_hold->m_nextpkt = NULL;
2510 1.100 rpaulo m_freem(m_hold);
2511 1.100 rpaulo }
2512 1.100 rpaulo
2513 1.100 rpaulo ln->ln_hold = NULL;
2514 1.100 rpaulo return;
2515 1.100 rpaulo }
2516 1.100 rpaulo
2517 1.65 itojun int
2518 1.105 christos nd6_sysctl(
2519 1.105 christos int name,
2520 1.105 christos void *oldp, /* syscall arg, need copyout */
2521 1.105 christos size_t *oldlenp,
2522 1.105 christos void *newp, /* syscall arg, need copyin */
2523 1.107 christos size_t newlen
2524 1.105 christos )
2525 1.65 itojun {
2526 1.241 pgoyette int (*fill_func)(void *, size_t *);
2527 1.65 itojun
2528 1.65 itojun if (newp)
2529 1.65 itojun return EPERM;
2530 1.241 pgoyette
2531 1.65 itojun switch (name) {
2532 1.65 itojun case ICMPV6CTL_ND6_DRLIST:
2533 1.241 pgoyette fill_func = fill_drlist;
2534 1.65 itojun break;
2535 1.65 itojun
2536 1.65 itojun case ICMPV6CTL_ND6_PRLIST:
2537 1.241 pgoyette fill_func = fill_prlist;
2538 1.65 itojun break;
2539 1.65 itojun
2540 1.99 rpaulo case ICMPV6CTL_ND6_MAXQLEN:
2541 1.242 pgoyette return 0;
2542 1.99 rpaulo
2543 1.65 itojun default:
2544 1.242 pgoyette return ENOPROTOOPT;
2545 1.65 itojun }
2546 1.241 pgoyette
2547 1.245 christos if (oldlenp == NULL)
2548 1.245 christos return EINVAL;
2549 1.245 christos
2550 1.245 christos size_t ol;
2551 1.245 christos int error = (*fill_func)(NULL, &ol); /* calc len needed */
2552 1.245 christos if (error)
2553 1.245 christos return error;
2554 1.245 christos
2555 1.245 christos if (oldp == NULL) {
2556 1.245 christos *oldlenp = ol;
2557 1.245 christos return 0;
2558 1.241 pgoyette }
2559 1.245 christos
2560 1.250 riastrad ol = *oldlenp = uimin(ol, *oldlenp);
2561 1.245 christos if (ol == 0)
2562 1.245 christos return 0;
2563 1.245 christos
2564 1.245 christos void *p = kmem_alloc(ol, KM_SLEEP);
2565 1.245 christos error = (*fill_func)(p, oldlenp);
2566 1.245 christos if (!error)
2567 1.245 christos error = copyout(p, oldp, *oldlenp);
2568 1.245 christos kmem_free(p, ol);
2569 1.65 itojun
2570 1.112 dyoung return error;
2571 1.65 itojun }
2572 1.65 itojun
2573 1.65 itojun static int
2574 1.241 pgoyette fill_drlist(void *oldp, size_t *oldlenp)
2575 1.65 itojun {
2576 1.220 ozaki int error = 0;
2577 1.65 itojun struct in6_defrouter *d = NULL, *de = NULL;
2578 1.65 itojun struct nd_defrouter *dr;
2579 1.65 itojun size_t l;
2580 1.65 itojun
2581 1.65 itojun if (oldp) {
2582 1.65 itojun d = (struct in6_defrouter *)oldp;
2583 1.111 christos de = (struct in6_defrouter *)((char *)oldp + *oldlenp);
2584 1.65 itojun }
2585 1.65 itojun l = 0;
2586 1.65 itojun
2587 1.220 ozaki ND6_RLOCK();
2588 1.214 ozaki ND_DEFROUTER_LIST_FOREACH(dr) {
2589 1.65 itojun
2590 1.65 itojun if (oldp && d + 1 <= de) {
2591 1.122 dyoung memset(d, 0, sizeof(*d));
2592 1.122 dyoung sockaddr_in6_init(&d->rtaddr, &dr->rtaddr, 0, 0, 0);
2593 1.96 rpaulo if (sa6_recoverscope(&d->rtaddr)) {
2594 1.225 ryo char ip6buf[INET6_ADDRSTRLEN];
2595 1.96 rpaulo log(LOG_ERR,
2596 1.96 rpaulo "scope error in router list (%s)\n",
2597 1.226 christos IN6_PRINT(ip6buf, &d->rtaddr.sin6_addr));
2598 1.96 rpaulo /* XXX: press on... */
2599 1.96 rpaulo }
2600 1.65 itojun d->flags = dr->flags;
2601 1.65 itojun d->rtlifetime = dr->rtlifetime;
2602 1.166 ozaki d->expire = dr->expire ?
2603 1.166 ozaki time_mono_to_wall(dr->expire) : 0;
2604 1.65 itojun d->if_index = dr->ifp->if_index;
2605 1.65 itojun }
2606 1.65 itojun
2607 1.65 itojun l += sizeof(*d);
2608 1.65 itojun if (d)
2609 1.65 itojun d++;
2610 1.65 itojun }
2611 1.220 ozaki ND6_UNLOCK();
2612 1.65 itojun
2613 1.245 christos *oldlenp = l; /* (void *)d - (void *)oldp */
2614 1.65 itojun
2615 1.112 dyoung return error;
2616 1.65 itojun }
2617 1.65 itojun
2618 1.65 itojun static int
2619 1.241 pgoyette fill_prlist(void *oldp, size_t *oldlenp)
2620 1.65 itojun {
2621 1.220 ozaki int error = 0;
2622 1.65 itojun struct nd_prefix *pr;
2623 1.146 martin uint8_t *p = NULL, *ps = NULL;
2624 1.146 martin uint8_t *pe = NULL;
2625 1.65 itojun size_t l;
2626 1.225 ryo char ip6buf[INET6_ADDRSTRLEN];
2627 1.65 itojun
2628 1.65 itojun if (oldp) {
2629 1.146 martin ps = p = (uint8_t*)oldp;
2630 1.146 martin pe = (uint8_t*)oldp + *oldlenp;
2631 1.65 itojun }
2632 1.65 itojun l = 0;
2633 1.65 itojun
2634 1.220 ozaki ND6_RLOCK();
2635 1.215 ozaki ND_PREFIX_LIST_FOREACH(pr) {
2636 1.65 itojun u_short advrtrs;
2637 1.146 martin struct sockaddr_in6 sin6;
2638 1.65 itojun struct nd_pfxrouter *pfr;
2639 1.146 martin struct in6_prefix pfx;
2640 1.65 itojun
2641 1.146 martin if (oldp && p + sizeof(struct in6_prefix) <= pe)
2642 1.65 itojun {
2643 1.146 martin memset(&pfx, 0, sizeof(pfx));
2644 1.146 martin ps = p;
2645 1.146 martin pfx.prefix = pr->ndpr_prefix;
2646 1.65 itojun
2647 1.146 martin if (sa6_recoverscope(&pfx.prefix)) {
2648 1.65 itojun log(LOG_ERR,
2649 1.65 itojun "scope error in prefix list (%s)\n",
2650 1.226 christos IN6_PRINT(ip6buf, &pfx.prefix.sin6_addr));
2651 1.96 rpaulo /* XXX: press on... */
2652 1.96 rpaulo }
2653 1.146 martin pfx.raflags = pr->ndpr_raf;
2654 1.146 martin pfx.prefixlen = pr->ndpr_plen;
2655 1.146 martin pfx.vltime = pr->ndpr_vltime;
2656 1.146 martin pfx.pltime = pr->ndpr_pltime;
2657 1.146 martin pfx.if_index = pr->ndpr_ifp->if_index;
2658 1.65 itojun if (pr->ndpr_vltime == ND6_INFINITE_LIFETIME)
2659 1.146 martin pfx.expire = 0;
2660 1.65 itojun else {
2661 1.65 itojun time_t maxexpire;
2662 1.65 itojun
2663 1.65 itojun /* XXX: we assume time_t is signed. */
2664 1.65 itojun maxexpire = (-1) &
2665 1.99 rpaulo ~((time_t)1 <<
2666 1.99 rpaulo ((sizeof(maxexpire) * 8) - 1));
2667 1.65 itojun if (pr->ndpr_vltime <
2668 1.65 itojun maxexpire - pr->ndpr_lastupdate) {
2669 1.146 martin pfx.expire = pr->ndpr_lastupdate +
2670 1.65 itojun pr->ndpr_vltime;
2671 1.65 itojun } else
2672 1.146 martin pfx.expire = maxexpire;
2673 1.65 itojun }
2674 1.146 martin pfx.refcnt = pr->ndpr_refcnt;
2675 1.146 martin pfx.flags = pr->ndpr_stateflags;
2676 1.146 martin pfx.origin = PR_ORIG_RA;
2677 1.146 martin
2678 1.146 martin p += sizeof(pfx); l += sizeof(pfx);
2679 1.146 martin
2680 1.65 itojun advrtrs = 0;
2681 1.108 dyoung LIST_FOREACH(pfr, &pr->ndpr_advrtrs, pfr_entry) {
2682 1.146 martin if (p + sizeof(sin6) > pe) {
2683 1.65 itojun advrtrs++;
2684 1.65 itojun continue;
2685 1.65 itojun }
2686 1.146 martin
2687 1.146 martin sockaddr_in6_init(&sin6, &pfr->router->rtaddr,
2688 1.225 ryo 0, 0, 0);
2689 1.146 martin if (sa6_recoverscope(&sin6)) {
2690 1.96 rpaulo log(LOG_ERR,
2691 1.96 rpaulo "scope error in "
2692 1.96 rpaulo "prefix list (%s)\n",
2693 1.226 christos IN6_PRINT(ip6buf,
2694 1.225 ryo &pfr->router->rtaddr));
2695 1.96 rpaulo }
2696 1.65 itojun advrtrs++;
2697 1.146 martin memcpy(p, &sin6, sizeof(sin6));
2698 1.146 martin p += sizeof(sin6);
2699 1.146 martin l += sizeof(sin6);
2700 1.65 itojun }
2701 1.146 martin pfx.advrtrs = advrtrs;
2702 1.146 martin memcpy(ps, &pfx, sizeof(pfx));
2703 1.65 itojun }
2704 1.65 itojun else {
2705 1.146 martin l += sizeof(pfx);
2706 1.65 itojun advrtrs = 0;
2707 1.146 martin LIST_FOREACH(pfr, &pr->ndpr_advrtrs, pfr_entry) {
2708 1.65 itojun advrtrs++;
2709 1.146 martin l += sizeof(sin6);
2710 1.146 martin }
2711 1.65 itojun }
2712 1.65 itojun }
2713 1.220 ozaki ND6_UNLOCK();
2714 1.65 itojun
2715 1.245 christos *oldlenp = l;
2716 1.65 itojun
2717 1.112 dyoung return error;
2718 1.2 itojun }
2719 1.212 ozaki
2720 1.212 ozaki static int
2721 1.212 ozaki nd6_setdefaultiface(int ifindex)
2722 1.212 ozaki {
2723 1.212 ozaki ifnet_t *ifp;
2724 1.212 ozaki int error = 0;
2725 1.212 ozaki int s;
2726 1.212 ozaki
2727 1.212 ozaki s = pserialize_read_enter();
2728 1.212 ozaki ifp = if_byindex(ifindex);
2729 1.212 ozaki if (ifp == NULL) {
2730 1.212 ozaki pserialize_read_exit(s);
2731 1.212 ozaki return EINVAL;
2732 1.212 ozaki }
2733 1.212 ozaki if (nd6_defifindex != ifindex) {
2734 1.212 ozaki nd6_defifindex = ifindex;
2735 1.212 ozaki nd6_defifp = nd6_defifindex > 0 ? ifp : NULL;
2736 1.212 ozaki
2737 1.212 ozaki /*
2738 1.212 ozaki * Our current implementation assumes one-to-one maping between
2739 1.212 ozaki * interfaces and links, so it would be natural to use the
2740 1.212 ozaki * default interface as the default link.
2741 1.212 ozaki */
2742 1.212 ozaki scope6_setdefault(nd6_defifp);
2743 1.212 ozaki }
2744 1.212 ozaki pserialize_read_exit(s);
2745 1.212 ozaki
2746 1.212 ozaki return (error);
2747 1.212 ozaki }
2748