in.c revision 1.246 1 1.246 yamt /* $NetBSD: in.c,v 1.246 2022/11/19 08:00:51 yamt Exp $ */
2 1.48 itojun
3 1.48 itojun /*
4 1.48 itojun * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
5 1.48 itojun * All rights reserved.
6 1.77 itojun *
7 1.48 itojun * Redistribution and use in source and binary forms, with or without
8 1.48 itojun * modification, are permitted provided that the following conditions
9 1.48 itojun * are met:
10 1.48 itojun * 1. Redistributions of source code must retain the above copyright
11 1.48 itojun * notice, this list of conditions and the following disclaimer.
12 1.48 itojun * 2. Redistributions in binary form must reproduce the above copyright
13 1.48 itojun * notice, this list of conditions and the following disclaimer in the
14 1.48 itojun * documentation and/or other materials provided with the distribution.
15 1.48 itojun * 3. Neither the name of the project nor the names of its contributors
16 1.48 itojun * may be used to endorse or promote products derived from this software
17 1.48 itojun * without specific prior written permission.
18 1.77 itojun *
19 1.48 itojun * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
20 1.48 itojun * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21 1.48 itojun * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22 1.48 itojun * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
23 1.48 itojun * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 1.48 itojun * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25 1.48 itojun * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 1.48 itojun * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 1.48 itojun * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 1.48 itojun * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 1.48 itojun * SUCH DAMAGE.
30 1.48 itojun */
31 1.14 cgd
32 1.46 thorpej /*-
33 1.46 thorpej * Copyright (c) 1998 The NetBSD Foundation, Inc.
34 1.46 thorpej * All rights reserved.
35 1.46 thorpej *
36 1.46 thorpej * This code is derived from software contributed to The NetBSD Foundation
37 1.46 thorpej * by Public Access Networks Corporation ("Panix"). It was developed under
38 1.46 thorpej * contract to Panix by Eric Haszlakiewicz and Thor Lancelot Simon.
39 1.46 thorpej *
40 1.46 thorpej * Redistribution and use in source and binary forms, with or without
41 1.46 thorpej * modification, are permitted provided that the following conditions
42 1.46 thorpej * are met:
43 1.46 thorpej * 1. Redistributions of source code must retain the above copyright
44 1.46 thorpej * notice, this list of conditions and the following disclaimer.
45 1.46 thorpej * 2. Redistributions in binary form must reproduce the above copyright
46 1.46 thorpej * notice, this list of conditions and the following disclaimer in the
47 1.46 thorpej * documentation and/or other materials provided with the distribution.
48 1.46 thorpej *
49 1.46 thorpej * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
50 1.46 thorpej * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
51 1.46 thorpej * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
52 1.46 thorpej * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
53 1.46 thorpej * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
54 1.46 thorpej * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
55 1.46 thorpej * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
56 1.46 thorpej * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
57 1.46 thorpej * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
58 1.46 thorpej * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
59 1.46 thorpej * POSSIBILITY OF SUCH DAMAGE.
60 1.46 thorpej */
61 1.46 thorpej
62 1.1 cgd /*
63 1.12 mycroft * Copyright (c) 1982, 1986, 1991, 1993
64 1.12 mycroft * The Regents of the University of California. All rights reserved.
65 1.1 cgd *
66 1.1 cgd * Redistribution and use in source and binary forms, with or without
67 1.1 cgd * modification, are permitted provided that the following conditions
68 1.1 cgd * are met:
69 1.1 cgd * 1. Redistributions of source code must retain the above copyright
70 1.1 cgd * notice, this list of conditions and the following disclaimer.
71 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
72 1.1 cgd * notice, this list of conditions and the following disclaimer in the
73 1.1 cgd * documentation and/or other materials provided with the distribution.
74 1.90 agc * 3. Neither the name of the University nor the names of its contributors
75 1.1 cgd * may be used to endorse or promote products derived from this software
76 1.1 cgd * without specific prior written permission.
77 1.1 cgd *
78 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
79 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
80 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
81 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
82 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
83 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
84 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
85 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
86 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
87 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
88 1.1 cgd * SUCH DAMAGE.
89 1.1 cgd *
90 1.36 thorpej * @(#)in.c 8.4 (Berkeley) 1/9/95
91 1.1 cgd */
92 1.71 lukem
93 1.71 lukem #include <sys/cdefs.h>
94 1.246 yamt __KERNEL_RCSID(0, "$NetBSD: in.c,v 1.246 2022/11/19 08:00:51 yamt Exp $");
95 1.37 scottr
96 1.154 joerg #include "arp.h"
97 1.157 pooka
98 1.157 pooka #ifdef _KERNEL_OPT
99 1.41 jonathan #include "opt_inet.h"
100 1.47 sommerfe #include "opt_inet_conf.h"
101 1.37 scottr #include "opt_mrouting.h"
102 1.187 ozaki #include "opt_net_mpsafe.h"
103 1.157 pooka #endif
104 1.1 cgd
105 1.6 mycroft #include <sys/param.h>
106 1.6 mycroft #include <sys/ioctl.h>
107 1.12 mycroft #include <sys/errno.h>
108 1.152 roy #include <sys/kernel.h>
109 1.12 mycroft #include <sys/malloc.h>
110 1.6 mycroft #include <sys/socket.h>
111 1.6 mycroft #include <sys/socketvar.h>
112 1.114 dyoung #include <sys/sysctl.h>
113 1.26 christos #include <sys/systm.h>
114 1.27 mycroft #include <sys/proc.h>
115 1.72 christos #include <sys/syslog.h>
116 1.108 elad #include <sys/kauth.h>
117 1.158 ozaki #include <sys/kmem.h>
118 1.6 mycroft
119 1.141 tls #include <sys/cprng.h>
120 1.141 tls
121 1.6 mycroft #include <net/if.h>
122 1.6 mycroft #include <net/route.h>
123 1.144 rmind #include <net/pfil.h>
124 1.6 mycroft
125 1.159 ozaki #include <net/if_arp.h>
126 1.34 is #include <net/if_ether.h>
127 1.158 ozaki #include <net/if_types.h>
128 1.158 ozaki #include <net/if_llatbl.h>
129 1.158 ozaki #include <net/if_dl.h>
130 1.34 is
131 1.12 mycroft #include <netinet/in_systm.h>
132 1.6 mycroft #include <netinet/in.h>
133 1.6 mycroft #include <netinet/in_var.h>
134 1.84 matt #include <netinet/ip.h>
135 1.84 matt #include <netinet/ip_var.h>
136 1.114 dyoung #include <netinet/in_ifattach.h>
137 1.84 matt #include <netinet/in_pcb.h>
138 1.158 ozaki #include <netinet/in_selsrc.h>
139 1.34 is #include <netinet/if_inarp.h>
140 1.19 mycroft #include <netinet/ip_mroute.h>
141 1.26 christos #include <netinet/igmp_var.h>
142 1.13 chopps
143 1.114 dyoung #ifdef IPSELSRC
144 1.114 dyoung #include <netinet/in_selsrc.h>
145 1.114 dyoung #endif
146 1.114 dyoung
147 1.145 rmind static u_int in_mask2len(struct in_addr *);
148 1.145 rmind static int in_lifaddr_ioctl(struct socket *, u_long, void *,
149 1.147 rtr struct ifnet *);
150 1.48 itojun
151 1.189 knakahar static void in_addrhash_insert_locked(struct in_ifaddr *);
152 1.189 knakahar static void in_addrhash_remove_locked(struct in_ifaddr *);
153 1.189 knakahar
154 1.145 rmind static int in_addprefix(struct in_ifaddr *, int);
155 1.183 roy static void in_scrubaddr(struct in_ifaddr *);
156 1.145 rmind static int in_scrubprefix(struct in_ifaddr *);
157 1.145 rmind static void in_sysctl_init(struct sysctllog **);
158 1.67 itojun
159 1.1 cgd #ifndef SUBNETSARELOCAL
160 1.1 cgd #define SUBNETSARELOCAL 1
161 1.1 cgd #endif
162 1.47 sommerfe
163 1.47 sommerfe #ifndef HOSTZEROBROADCAST
164 1.166 christos #define HOSTZEROBROADCAST 0
165 1.47 sommerfe #endif
166 1.47 sommerfe
167 1.146 rmind /* Note: 61, 127, 251, 509, 1021, 2039 are good. */
168 1.146 rmind #ifndef IN_MULTI_HASH_SIZE
169 1.146 rmind #define IN_MULTI_HASH_SIZE 509
170 1.146 rmind #endif
171 1.146 rmind
172 1.145 rmind static int subnetsarelocal = SUBNETSARELOCAL;
173 1.145 rmind static int hostzeroisbroadcast = HOSTZEROBROADCAST;
174 1.30 mrg
175 1.1 cgd /*
176 1.65 enami * This list is used to keep track of in_multi chains which belong to
177 1.65 enami * deleted interface addresses. We use in_ifaddr so that a chain head
178 1.65 enami * won't be deallocated until all multicast address record are deleted.
179 1.64 itojun */
180 1.146 rmind
181 1.146 rmind LIST_HEAD(in_multihashhead, in_multi); /* Type of the hash head */
182 1.145 rmind
183 1.145 rmind static struct pool inmulti_pool;
184 1.145 rmind static u_int in_multientries;
185 1.146 rmind static struct in_multihashhead *in_multihashtbl;
186 1.146 rmind static u_long in_multihash;
187 1.146 rmind static krwlock_t in_multilock;
188 1.146 rmind
189 1.146 rmind #define IN_MULTI_HASH(x, ifp) \
190 1.146 rmind (in_multihashtbl[(u_long)((x) ^ (ifp->if_index)) % IN_MULTI_HASH_SIZE])
191 1.145 rmind
192 1.171 ozaki /* XXX DEPRECATED. Keep them to avoid breaking kvm(3) users. */
193 1.145 rmind struct in_ifaddrhashhead * in_ifaddrhashtbl;
194 1.145 rmind u_long in_ifaddrhash;
195 1.145 rmind struct in_ifaddrhead in_ifaddrhead;
196 1.178 ozaki static kmutex_t in_ifaddr_lock;
197 1.145 rmind
198 1.188 knakahar pserialize_t in_ifaddrhash_psz;
199 1.170 ozaki struct pslist_head * in_ifaddrhashtbl_pslist;
200 1.170 ozaki u_long in_ifaddrhash_pslist;
201 1.171 ozaki struct pslist_head in_ifaddrhead_pslist;
202 1.170 ozaki
203 1.145 rmind void
204 1.145 rmind in_init(void)
205 1.145 rmind {
206 1.145 rmind pool_init(&inmulti_pool, sizeof(struct in_multi), 0, 0, 0, "inmltpl",
207 1.145 rmind NULL, IPL_SOFTNET);
208 1.145 rmind TAILQ_INIT(&in_ifaddrhead);
209 1.171 ozaki PSLIST_INIT(&in_ifaddrhead_pslist);
210 1.145 rmind
211 1.145 rmind in_ifaddrhashtbl = hashinit(IN_IFADDR_HASH_SIZE, HASH_LIST, true,
212 1.145 rmind &in_ifaddrhash);
213 1.178 ozaki
214 1.188 knakahar in_ifaddrhash_psz = pserialize_create();
215 1.170 ozaki in_ifaddrhashtbl_pslist = hashinit(IN_IFADDR_HASH_SIZE, HASH_PSLIST,
216 1.170 ozaki true, &in_ifaddrhash_pslist);
217 1.178 ozaki mutex_init(&in_ifaddr_lock, MUTEX_DEFAULT, IPL_NONE);
218 1.178 ozaki
219 1.145 rmind in_multihashtbl = hashinit(IN_IFADDR_HASH_SIZE, HASH_LIST, true,
220 1.145 rmind &in_multihash);
221 1.146 rmind rw_init(&in_multilock);
222 1.145 rmind
223 1.145 rmind in_sysctl_init(NULL);
224 1.145 rmind }
225 1.64 itojun
226 1.64 itojun /*
227 1.1 cgd * Return 1 if an internet address is for a ``local'' host
228 1.1 cgd * (one to which we have a connection). If subnetsarelocal
229 1.1 cgd * is true, this includes other subnets of the local net.
230 1.1 cgd * Otherwise, it includes only the directly-connected (sub)nets.
231 1.1 cgd */
232 1.8 mycroft int
233 1.103 perry in_localaddr(struct in_addr in)
234 1.1 cgd {
235 1.59 augustss struct in_ifaddr *ia;
236 1.178 ozaki int localaddr = 0;
237 1.178 ozaki int s = pserialize_read_enter();
238 1.1 cgd
239 1.1 cgd if (subnetsarelocal) {
240 1.171 ozaki IN_ADDRLIST_READER_FOREACH(ia) {
241 1.178 ozaki if ((in.s_addr & ia->ia_netmask) == ia->ia_net) {
242 1.178 ozaki localaddr = 1;
243 1.178 ozaki break;
244 1.178 ozaki }
245 1.171 ozaki }
246 1.1 cgd } else {
247 1.171 ozaki IN_ADDRLIST_READER_FOREACH(ia) {
248 1.178 ozaki if ((in.s_addr & ia->ia_subnetmask) == ia->ia_subnet) {
249 1.178 ozaki localaddr = 1;
250 1.178 ozaki break;
251 1.178 ozaki }
252 1.171 ozaki }
253 1.1 cgd }
254 1.178 ozaki pserialize_read_exit(s);
255 1.178 ozaki
256 1.178 ozaki return localaddr;
257 1.1 cgd }
258 1.1 cgd
259 1.1 cgd /*
260 1.207 ryo * like in_localaddr() but can specify ifp.
261 1.207 ryo */
262 1.207 ryo int
263 1.207 ryo in_direct(struct in_addr in, struct ifnet *ifp)
264 1.207 ryo {
265 1.207 ryo struct ifaddr *ifa;
266 1.207 ryo int localaddr = 0;
267 1.207 ryo int s;
268 1.207 ryo
269 1.207 ryo KASSERT(ifp != NULL);
270 1.207 ryo
271 1.207 ryo #define ia (ifatoia(ifa))
272 1.207 ryo s = pserialize_read_enter();
273 1.207 ryo if (subnetsarelocal) {
274 1.207 ryo IFADDR_READER_FOREACH(ifa, ifp) {
275 1.207 ryo if (ifa->ifa_addr->sa_family == AF_INET &&
276 1.207 ryo ((in.s_addr & ia->ia_netmask) == ia->ia_net)) {
277 1.207 ryo localaddr = 1;
278 1.207 ryo break;
279 1.207 ryo }
280 1.207 ryo }
281 1.207 ryo } else {
282 1.207 ryo IFADDR_READER_FOREACH(ifa, ifp) {
283 1.207 ryo if (ifa->ifa_addr->sa_family == AF_INET &&
284 1.207 ryo (in.s_addr & ia->ia_subnetmask) == ia->ia_subnet) {
285 1.207 ryo localaddr = 1;
286 1.207 ryo break;
287 1.207 ryo }
288 1.207 ryo }
289 1.207 ryo }
290 1.207 ryo pserialize_read_exit(s);
291 1.207 ryo
292 1.207 ryo return localaddr;
293 1.207 ryo #undef ia
294 1.207 ryo }
295 1.207 ryo
296 1.207 ryo /*
297 1.1 cgd * Determine whether an IP address is in a reserved set of addresses
298 1.1 cgd * that may not be forwarded, or whether datagrams to that destination
299 1.1 cgd * may be forwarded.
300 1.1 cgd */
301 1.8 mycroft int
302 1.103 perry in_canforward(struct in_addr in)
303 1.1 cgd {
304 1.59 augustss u_int32_t net;
305 1.1 cgd
306 1.20 mycroft if (IN_EXPERIMENTAL(in.s_addr) || IN_MULTICAST(in.s_addr))
307 1.1 cgd return (0);
308 1.20 mycroft if (IN_CLASSA(in.s_addr)) {
309 1.20 mycroft net = in.s_addr & IN_CLASSA_NET;
310 1.20 mycroft if (net == 0 || net == htonl(IN_LOOPBACKNET << IN_CLASSA_NSHIFT))
311 1.1 cgd return (0);
312 1.1 cgd }
313 1.1 cgd return (1);
314 1.1 cgd }
315 1.1 cgd
316 1.12 mycroft /*
317 1.12 mycroft * Trim a mask in a sockaddr
318 1.12 mycroft */
319 1.12 mycroft void
320 1.103 perry in_socktrim(struct sockaddr_in *ap)
321 1.12 mycroft {
322 1.59 augustss char *cplim = (char *) &ap->sin_addr;
323 1.59 augustss char *cp = (char *) (&ap->sin_addr + 1);
324 1.12 mycroft
325 1.12 mycroft ap->sin_len = 0;
326 1.15 mycroft while (--cp >= cplim)
327 1.12 mycroft if (*cp) {
328 1.12 mycroft (ap)->sin_len = cp - (char *) (ap) + 1;
329 1.12 mycroft break;
330 1.12 mycroft }
331 1.40 matt }
332 1.40 matt
333 1.40 matt /*
334 1.35 thorpej * Maintain the "in_maxmtu" variable, which is the largest
335 1.35 thorpej * mtu for non-local interfaces with AF_INET addresses assigned
336 1.35 thorpej * to them that are up.
337 1.35 thorpej */
338 1.35 thorpej unsigned long in_maxmtu;
339 1.35 thorpej
340 1.35 thorpej void
341 1.103 perry in_setmaxmtu(void)
342 1.35 thorpej {
343 1.59 augustss struct in_ifaddr *ia;
344 1.59 augustss struct ifnet *ifp;
345 1.35 thorpej unsigned long maxmtu = 0;
346 1.178 ozaki int s = pserialize_read_enter();
347 1.35 thorpej
348 1.171 ozaki IN_ADDRLIST_READER_FOREACH(ia) {
349 1.35 thorpej if ((ifp = ia->ia_ifp) == 0)
350 1.35 thorpej continue;
351 1.35 thorpej if ((ifp->if_flags & (IFF_UP|IFF_LOOPBACK)) != IFF_UP)
352 1.35 thorpej continue;
353 1.35 thorpej if (ifp->if_mtu > maxmtu)
354 1.38 tls maxmtu = ifp->if_mtu;
355 1.35 thorpej }
356 1.35 thorpej if (maxmtu)
357 1.35 thorpej in_maxmtu = maxmtu;
358 1.178 ozaki pserialize_read_exit(s);
359 1.35 thorpej }
360 1.35 thorpej
361 1.82 thorpej static u_int
362 1.103 perry in_mask2len(struct in_addr *mask)
363 1.48 itojun {
364 1.82 thorpej u_int x, y;
365 1.48 itojun u_char *p;
366 1.48 itojun
367 1.48 itojun p = (u_char *)mask;
368 1.48 itojun for (x = 0; x < sizeof(*mask); x++) {
369 1.48 itojun if (p[x] != 0xff)
370 1.48 itojun break;
371 1.48 itojun }
372 1.48 itojun y = 0;
373 1.48 itojun if (x < sizeof(*mask)) {
374 1.124 dyoung for (y = 0; y < NBBY; y++) {
375 1.48 itojun if ((p[x] & (0x80 >> y)) == 0)
376 1.48 itojun break;
377 1.48 itojun }
378 1.48 itojun }
379 1.124 dyoung return x * NBBY + y;
380 1.48 itojun }
381 1.48 itojun
382 1.237 riastrad void
383 1.103 perry in_len2mask(struct in_addr *mask, u_int len)
384 1.48 itojun {
385 1.82 thorpej u_int i;
386 1.48 itojun u_char *p;
387 1.48 itojun
388 1.48 itojun p = (u_char *)mask;
389 1.132 cegger memset(mask, 0, sizeof(*mask));
390 1.124 dyoung for (i = 0; i < len / NBBY; i++)
391 1.48 itojun p[i] = 0xff;
392 1.124 dyoung if (len % NBBY)
393 1.124 dyoung p[i] = (0xff00 >> (len % NBBY)) & 0xff;
394 1.48 itojun }
395 1.48 itojun
396 1.1 cgd /*
397 1.1 cgd * Generic internet control operations (ioctl's).
398 1.1 cgd * Ifp is 0 if not an interface-specific ioctl.
399 1.1 cgd */
400 1.1 cgd /* ARGSUSED */
401 1.177 ozaki static int
402 1.177 ozaki in_control0(struct socket *so, u_long cmd, void *data, struct ifnet *ifp)
403 1.1 cgd {
404 1.59 augustss struct ifreq *ifr = (struct ifreq *)data;
405 1.136 dyoung struct in_ifaddr *ia = NULL;
406 1.1 cgd struct in_aliasreq *ifra = (struct in_aliasreq *)data;
407 1.184 roy struct sockaddr_in oldaddr, *new_dstaddr;
408 1.1 cgd int error, hostIsNew, maskIsNew;
409 1.100 yamt int newifaddr = 0;
410 1.169 ozaki bool run_hook = false;
411 1.169 ozaki bool need_reinsert = false;
412 1.178 ozaki struct psref psref;
413 1.178 ozaki int bound;
414 1.48 itojun
415 1.48 itojun switch (cmd) {
416 1.48 itojun case SIOCALIFADDR:
417 1.48 itojun case SIOCDLIFADDR:
418 1.135 dyoung case SIOCGLIFADDR:
419 1.135 dyoung if (ifp == NULL)
420 1.135 dyoung return EINVAL;
421 1.147 rtr return in_lifaddr_ioctl(so, cmd, data, ifp);
422 1.135 dyoung case SIOCGIFADDRPREF:
423 1.114 dyoung case SIOCSIFADDRPREF:
424 1.117 dyoung if (ifp == NULL)
425 1.48 itojun return EINVAL;
426 1.147 rtr return ifaddrpref_ioctl(so, cmd, data, ifp);
427 1.240 roy #if NARP > 0
428 1.240 roy case SIOCGNBRINFO:
429 1.240 roy {
430 1.240 roy struct in_nbrinfo *nbi = (struct in_nbrinfo *)data;
431 1.240 roy struct llentry *ln;
432 1.240 roy struct in_addr nb_addr = nbi->addr; /* make local for safety */
433 1.240 roy
434 1.240 roy ln = arplookup(ifp, &nb_addr, NULL, 0);
435 1.240 roy if (ln == NULL)
436 1.240 roy return EINVAL;
437 1.240 roy nbi->state = ln->ln_state;
438 1.240 roy nbi->asked = ln->ln_asked;
439 1.240 roy nbi->expire = ln->ln_expire ?
440 1.240 roy time_mono_to_wall(ln->ln_expire) : 0;
441 1.240 roy LLE_RUNLOCK(ln);
442 1.240 roy return 0;
443 1.240 roy }
444 1.240 roy #endif
445 1.48 itojun }
446 1.48 itojun
447 1.178 ozaki bound = curlwp_bind();
448 1.1 cgd /*
449 1.1 cgd * Find address for this interface, if it exists.
450 1.1 cgd */
451 1.117 dyoung if (ifp != NULL)
452 1.178 ozaki ia = in_get_ia_from_ifp_psref(ifp, &psref);
453 1.1 cgd
454 1.153 roy hostIsNew = 1; /* moved here to appease gcc */
455 1.1 cgd switch (cmd) {
456 1.1 cgd case SIOCAIFADDR:
457 1.1 cgd case SIOCDIFADDR:
458 1.43 christos case SIOCGIFALIAS:
459 1.152 roy case SIOCGIFAFLAG_IN:
460 1.170 ozaki if (ifra->ifra_addr.sin_family == AF_INET) {
461 1.178 ozaki int s;
462 1.178 ozaki
463 1.178 ozaki if (ia != NULL)
464 1.178 ozaki ia4_release(ia, &psref);
465 1.178 ozaki s = pserialize_read_enter();
466 1.170 ozaki IN_ADDRHASH_READER_FOREACH(ia,
467 1.170 ozaki ifra->ifra_addr.sin_addr.s_addr) {
468 1.117 dyoung if (ia->ia_ifp == ifp &&
469 1.38 tls in_hosteq(ia->ia_addr.sin_addr,
470 1.38 tls ifra->ifra_addr.sin_addr))
471 1.28 mycroft break;
472 1.28 mycroft }
473 1.178 ozaki if (ia != NULL)
474 1.178 ozaki ia4_acquire(ia, &psref);
475 1.178 ozaki pserialize_read_exit(s);
476 1.170 ozaki }
477 1.152 roy if ((cmd == SIOCDIFADDR ||
478 1.152 roy cmd == SIOCGIFALIAS ||
479 1.152 roy cmd == SIOCGIFAFLAG_IN) &&
480 1.178 ozaki ia == NULL) {
481 1.178 ozaki error = EADDRNOTAVAIL;
482 1.178 ozaki goto out;
483 1.178 ozaki }
484 1.105 seanb
485 1.105 seanb if (cmd == SIOCDIFADDR &&
486 1.105 seanb ifra->ifra_addr.sin_family == AF_UNSPEC) {
487 1.105 seanb ifra->ifra_addr.sin_family = AF_INET;
488 1.105 seanb }
489 1.1 cgd /* FALLTHROUGH */
490 1.1 cgd case SIOCSIFADDR:
491 1.152 roy if (ia == NULL || ia->ia_addr.sin_family != AF_INET)
492 1.152 roy ;
493 1.152 roy else if (ifra->ifra_addr.sin_len == 0) {
494 1.152 roy ifra->ifra_addr = ia->ia_addr;
495 1.152 roy hostIsNew = 0;
496 1.152 roy } else if (in_hosteq(ia->ia_addr.sin_addr,
497 1.152 roy ifra->ifra_addr.sin_addr))
498 1.152 roy hostIsNew = 0;
499 1.230 knakahar if (ifra->ifra_addr.sin_family != AF_INET) {
500 1.230 knakahar error = EAFNOSUPPORT;
501 1.230 knakahar goto out;
502 1.230 knakahar }
503 1.152 roy /* FALLTHROUGH */
504 1.52 itojun case SIOCSIFDSTADDR:
505 1.230 knakahar if (cmd == SIOCSIFDSTADDR &&
506 1.230 knakahar ifreq_getaddr(cmd, ifr)->sa_family != AF_INET) {
507 1.178 ozaki error = EAFNOSUPPORT;
508 1.178 ozaki goto out;
509 1.178 ozaki }
510 1.54 itojun /* FALLTHROUGH */
511 1.1 cgd case SIOCSIFNETMASK:
512 1.117 dyoung if (ifp == NULL)
513 1.44 christos panic("in_control");
514 1.44 christos
515 1.152 roy if (cmd == SIOCGIFALIAS || cmd == SIOCGIFAFLAG_IN)
516 1.44 christos break;
517 1.44 christos
518 1.100 yamt if (ia == NULL &&
519 1.178 ozaki (cmd == SIOCSIFNETMASK || cmd == SIOCSIFDSTADDR)) {
520 1.178 ozaki error = EADDRNOTAVAIL;
521 1.178 ozaki goto out;
522 1.178 ozaki }
523 1.100 yamt
524 1.242 christos if (kauth_authorize_network(kauth_cred_get(),
525 1.242 christos KAUTH_NETWORK_INTERFACE,
526 1.113 elad KAUTH_REQ_NETWORK_INTERFACE_SETPRIV, ifp, (void *)cmd,
527 1.178 ozaki NULL) != 0) {
528 1.178 ozaki error = EPERM;
529 1.178 ozaki goto out;
530 1.178 ozaki }
531 1.1 cgd
532 1.136 dyoung if (ia == NULL) {
533 1.129 cegger ia = malloc(sizeof(*ia), M_IFADDR, M_WAITOK|M_ZERO);
534 1.178 ozaki if (ia == NULL) {
535 1.178 ozaki error = ENOBUFS;
536 1.178 ozaki goto out;
537 1.178 ozaki }
538 1.21 mycroft ia->ia_ifa.ifa_addr = sintosa(&ia->ia_addr);
539 1.21 mycroft ia->ia_ifa.ifa_dstaddr = sintosa(&ia->ia_dstaddr);
540 1.21 mycroft ia->ia_ifa.ifa_netmask = sintosa(&ia->ia_sockmask);
541 1.114 dyoung #ifdef IPSELSRC
542 1.114 dyoung ia->ia_ifa.ifa_getifa = in_getifa;
543 1.114 dyoung #else /* IPSELSRC */
544 1.114 dyoung ia->ia_ifa.ifa_getifa = NULL;
545 1.114 dyoung #endif /* IPSELSRC */
546 1.1 cgd ia->ia_sockmask.sin_len = 8;
547 1.149 christos ia->ia_sockmask.sin_family = AF_INET;
548 1.1 cgd if (ifp->if_flags & IFF_BROADCAST) {
549 1.1 cgd ia->ia_broadaddr.sin_len = sizeof(ia->ia_addr);
550 1.1 cgd ia->ia_broadaddr.sin_family = AF_INET;
551 1.1 cgd }
552 1.1 cgd ia->ia_ifp = ifp;
553 1.141 tls ia->ia_idsalt = cprng_fast32() % 65535;
554 1.24 mycroft LIST_INIT(&ia->ia_multiaddrs);
555 1.170 ozaki IN_ADDRHASH_ENTRY_INIT(ia);
556 1.171 ozaki IN_ADDRLIST_ENTRY_INIT(ia);
557 1.178 ozaki ifa_psref_init(&ia->ia_ifa);
558 1.202 ozaki /*
559 1.202 ozaki * We need a reference to make ia survive over in_ifinit
560 1.202 ozaki * that does ifaref and ifafree.
561 1.202 ozaki */
562 1.202 ozaki ifaref(&ia->ia_ifa);
563 1.169 ozaki
564 1.100 yamt newifaddr = 1;
565 1.81 simonb }
566 1.1 cgd break;
567 1.1 cgd
568 1.1 cgd case SIOCSIFBRDADDR:
569 1.242 christos if (kauth_authorize_network(kauth_cred_get(),
570 1.242 christos KAUTH_NETWORK_INTERFACE,
571 1.113 elad KAUTH_REQ_NETWORK_INTERFACE_SETPRIV, ifp, (void *)cmd,
572 1.178 ozaki NULL) != 0) {
573 1.178 ozaki error = EPERM;
574 1.178 ozaki goto out;
575 1.178 ozaki }
576 1.1 cgd /* FALLTHROUGH */
577 1.1 cgd
578 1.1 cgd case SIOCGIFADDR:
579 1.1 cgd case SIOCGIFNETMASK:
580 1.1 cgd case SIOCGIFDSTADDR:
581 1.1 cgd case SIOCGIFBRDADDR:
582 1.178 ozaki if (ia == NULL) {
583 1.178 ozaki error = EADDRNOTAVAIL;
584 1.178 ozaki goto out;
585 1.178 ozaki }
586 1.1 cgd break;
587 1.1 cgd }
588 1.100 yamt error = 0;
589 1.1 cgd switch (cmd) {
590 1.1 cgd
591 1.1 cgd case SIOCGIFADDR:
592 1.118 dyoung ifreq_setaddr(cmd, ifr, sintocsa(&ia->ia_addr));
593 1.1 cgd break;
594 1.1 cgd
595 1.1 cgd case SIOCGIFBRDADDR:
596 1.178 ozaki if ((ifp->if_flags & IFF_BROADCAST) == 0) {
597 1.178 ozaki error = EINVAL;
598 1.178 ozaki goto out;
599 1.178 ozaki }
600 1.118 dyoung ifreq_setdstaddr(cmd, ifr, sintocsa(&ia->ia_broadaddr));
601 1.1 cgd break;
602 1.1 cgd
603 1.1 cgd case SIOCGIFDSTADDR:
604 1.178 ozaki if ((ifp->if_flags & IFF_POINTOPOINT) == 0) {
605 1.178 ozaki error = EINVAL;
606 1.178 ozaki goto out;
607 1.178 ozaki }
608 1.118 dyoung ifreq_setdstaddr(cmd, ifr, sintocsa(&ia->ia_dstaddr));
609 1.1 cgd break;
610 1.1 cgd
611 1.1 cgd case SIOCGIFNETMASK:
612 1.149 christos /*
613 1.149 christos * We keep the number of trailing zero bytes the sin_len field
614 1.149 christos * of ia_sockmask, so we fix this before we pass it back to
615 1.149 christos * userland.
616 1.149 christos */
617 1.149 christos oldaddr = ia->ia_sockmask;
618 1.149 christos oldaddr.sin_len = sizeof(struct sockaddr_in);
619 1.149 christos ifreq_setaddr(cmd, ifr, (const void *)&oldaddr);
620 1.1 cgd break;
621 1.1 cgd
622 1.1 cgd case SIOCSIFDSTADDR:
623 1.178 ozaki if ((ifp->if_flags & IFF_POINTOPOINT) == 0) {
624 1.178 ozaki error = EINVAL;
625 1.178 ozaki goto out;
626 1.178 ozaki }
627 1.1 cgd oldaddr = ia->ia_dstaddr;
628 1.118 dyoung ia->ia_dstaddr = *satocsin(ifreq_getdstaddr(cmd, ifr));
629 1.139 dyoung if ((error = if_addr_init(ifp, &ia->ia_ifa, false)) != 0) {
630 1.1 cgd ia->ia_dstaddr = oldaddr;
631 1.178 ozaki goto out;
632 1.1 cgd }
633 1.1 cgd if (ia->ia_flags & IFA_ROUTE) {
634 1.21 mycroft ia->ia_ifa.ifa_dstaddr = sintosa(&oldaddr);
635 1.117 dyoung rtinit(&ia->ia_ifa, RTM_DELETE, RTF_HOST);
636 1.21 mycroft ia->ia_ifa.ifa_dstaddr = sintosa(&ia->ia_dstaddr);
637 1.117 dyoung rtinit(&ia->ia_ifa, RTM_ADD, RTF_HOST|RTF_UP);
638 1.1 cgd }
639 1.1 cgd break;
640 1.1 cgd
641 1.1 cgd case SIOCSIFBRDADDR:
642 1.178 ozaki if ((ifp->if_flags & IFF_BROADCAST) == 0) {
643 1.178 ozaki error = EINVAL;
644 1.178 ozaki goto out;
645 1.178 ozaki }
646 1.118 dyoung ia->ia_broadaddr = *satocsin(ifreq_getbroadaddr(cmd, ifr));
647 1.1 cgd break;
648 1.1 cgd
649 1.1 cgd case SIOCSIFADDR:
650 1.169 ozaki if (!newifaddr) {
651 1.189 knakahar in_addrhash_remove(ia);
652 1.169 ozaki need_reinsert = true;
653 1.169 ozaki }
654 1.184 roy error = in_ifinit(ifp, ia, satocsin(ifreq_getaddr(cmd, ifr)),
655 1.184 roy NULL, 1);
656 1.169 ozaki
657 1.169 ozaki run_hook = true;
658 1.100 yamt break;
659 1.1 cgd
660 1.1 cgd case SIOCSIFNETMASK:
661 1.185 roy in_scrubprefix(ia);
662 1.118 dyoung ia->ia_sockmask = *satocsin(ifreq_getaddr(cmd, ifr));
663 1.97 mycroft ia->ia_subnetmask = ia->ia_sockmask.sin_addr.s_addr;
664 1.169 ozaki if (!newifaddr) {
665 1.189 knakahar in_addrhash_remove(ia);
666 1.169 ozaki need_reinsert = true;
667 1.169 ozaki }
668 1.184 roy error = in_ifinit(ifp, ia, NULL, NULL, 0);
669 1.100 yamt break;
670 1.1 cgd
671 1.1 cgd case SIOCAIFADDR:
672 1.1 cgd maskIsNew = 0;
673 1.1 cgd if (ifra->ifra_mask.sin_len) {
674 1.185 roy in_scrubprefix(ia);
675 1.1 cgd ia->ia_sockmask = ifra->ifra_mask;
676 1.20 mycroft ia->ia_subnetmask = ia->ia_sockmask.sin_addr.s_addr;
677 1.1 cgd maskIsNew = 1;
678 1.1 cgd }
679 1.1 cgd if ((ifp->if_flags & IFF_POINTOPOINT) &&
680 1.1 cgd (ifra->ifra_dstaddr.sin_family == AF_INET)) {
681 1.184 roy new_dstaddr = &ifra->ifra_dstaddr;
682 1.1 cgd maskIsNew = 1; /* We lie; but the effect's the same */
683 1.184 roy } else
684 1.184 roy new_dstaddr = NULL;
685 1.1 cgd if (ifra->ifra_addr.sin_family == AF_INET &&
686 1.56 itojun (hostIsNew || maskIsNew)) {
687 1.169 ozaki if (!newifaddr) {
688 1.189 knakahar in_addrhash_remove(ia);
689 1.169 ozaki need_reinsert = true;
690 1.169 ozaki }
691 1.184 roy error = in_ifinit(ifp, ia, &ifra->ifra_addr,
692 1.184 roy new_dstaddr, 0);
693 1.56 itojun }
694 1.1 cgd if ((ifp->if_flags & IFF_BROADCAST) &&
695 1.1 cgd (ifra->ifra_broadaddr.sin_family == AF_INET))
696 1.1 cgd ia->ia_broadaddr = ifra->ifra_broadaddr;
697 1.169 ozaki run_hook = true;
698 1.100 yamt break;
699 1.43 christos
700 1.43 christos case SIOCGIFALIAS:
701 1.43 christos ifra->ifra_mask = ia->ia_sockmask;
702 1.43 christos if ((ifp->if_flags & IFF_POINTOPOINT) &&
703 1.43 christos (ia->ia_dstaddr.sin_family == AF_INET))
704 1.43 christos ifra->ifra_dstaddr = ia->ia_dstaddr;
705 1.43 christos else if ((ifp->if_flags & IFF_BROADCAST) &&
706 1.43 christos (ia->ia_broadaddr.sin_family == AF_INET))
707 1.43 christos ifra->ifra_broadaddr = ia->ia_broadaddr;
708 1.43 christos else
709 1.117 dyoung memset(&ifra->ifra_broadaddr, 0,
710 1.48 itojun sizeof(ifra->ifra_broadaddr));
711 1.100 yamt break;
712 1.1 cgd
713 1.152 roy case SIOCGIFAFLAG_IN:
714 1.152 roy ifr->ifr_addrflags = ia->ia4_flags;
715 1.152 roy break;
716 1.152 roy
717 1.1 cgd case SIOCDIFADDR:
718 1.178 ozaki ia4_release(ia, &psref);
719 1.195 christos ifaref(&ia->ia_ifa);
720 1.121 dyoung in_purgeaddr(&ia->ia_ifa);
721 1.195 christos pfil_run_addrhooks(if_pfil, cmd, &ia->ia_ifa);
722 1.195 christos ifafree(&ia->ia_ifa);
723 1.178 ozaki ia = NULL;
724 1.1 cgd break;
725 1.19 mycroft
726 1.19 mycroft #ifdef MROUTING
727 1.19 mycroft case SIOCGETVIFCNT:
728 1.19 mycroft case SIOCGETSGCNT:
729 1.100 yamt error = mrt_ioctl(so, cmd, data);
730 1.100 yamt break;
731 1.19 mycroft #endif /* MROUTING */
732 1.1 cgd
733 1.1 cgd default:
734 1.178 ozaki error = ENOTTY;
735 1.178 ozaki goto out;
736 1.100 yamt }
737 1.100 yamt
738 1.169 ozaki /*
739 1.169 ozaki * XXX insert regardless of error to make in_purgeaddr below work.
740 1.169 ozaki * Need to improve.
741 1.169 ozaki */
742 1.169 ozaki if (newifaddr) {
743 1.169 ozaki ifaref(&ia->ia_ifa);
744 1.169 ozaki ifa_insert(ifp, &ia->ia_ifa);
745 1.178 ozaki
746 1.178 ozaki mutex_enter(&in_ifaddr_lock);
747 1.178 ozaki TAILQ_INSERT_TAIL(&in_ifaddrhead, ia, ia_list);
748 1.171 ozaki IN_ADDRLIST_WRITER_INSERT_TAIL(ia);
749 1.189 knakahar in_addrhash_insert_locked(ia);
750 1.202 ozaki /* Release a reference that is held just after creation. */
751 1.202 ozaki ifafree(&ia->ia_ifa);
752 1.178 ozaki mutex_exit(&in_ifaddr_lock);
753 1.169 ozaki } else if (need_reinsert) {
754 1.189 knakahar in_addrhash_insert(ia);
755 1.169 ozaki }
756 1.169 ozaki
757 1.169 ozaki if (error == 0) {
758 1.169 ozaki if (run_hook)
759 1.195 christos pfil_run_addrhooks(if_pfil, cmd, &ia->ia_ifa);
760 1.169 ozaki } else if (newifaddr) {
761 1.100 yamt KASSERT(ia != NULL);
762 1.121 dyoung in_purgeaddr(&ia->ia_ifa);
763 1.178 ozaki ia = NULL;
764 1.1 cgd }
765 1.100 yamt
766 1.178 ozaki out:
767 1.178 ozaki if (!newifaddr && ia != NULL)
768 1.178 ozaki ia4_release(ia, &psref);
769 1.178 ozaki curlwp_bindx(bound);
770 1.100 yamt return error;
771 1.50 thorpej }
772 1.50 thorpej
773 1.177 ozaki int
774 1.177 ozaki in_control(struct socket *so, u_long cmd, void *data, struct ifnet *ifp)
775 1.177 ozaki {
776 1.177 ozaki int error;
777 1.177 ozaki
778 1.219 ozaki #ifndef NET_MPSAFE
779 1.219 ozaki KASSERT(KERNEL_LOCKED_P());
780 1.219 ozaki #endif
781 1.177 ozaki error = in_control0(so, cmd, data, ifp);
782 1.177 ozaki
783 1.177 ozaki return error;
784 1.177 ozaki }
785 1.177 ozaki
786 1.150 roy /* Add ownaddr as loopback rtentry. */
787 1.150 roy static void
788 1.150 roy in_ifaddlocal(struct ifaddr *ifa)
789 1.150 roy {
790 1.151 roy struct in_ifaddr *ia;
791 1.151 roy
792 1.151 roy ia = (struct in_ifaddr *)ifa;
793 1.151 roy if (ia->ia_addr.sin_addr.s_addr == INADDR_ANY ||
794 1.151 roy (ia->ia_ifp->if_flags & IFF_POINTOPOINT &&
795 1.151 roy in_hosteq(ia->ia_dstaddr.sin_addr, ia->ia_addr.sin_addr)))
796 1.151 roy {
797 1.234 roy rt_addrmsg(RTM_NEWADDR, ifa);
798 1.151 roy return;
799 1.151 roy }
800 1.150 roy
801 1.150 roy rt_ifa_addlocal(ifa);
802 1.150 roy }
803 1.150 roy
804 1.168 ozaki /* Remove loopback entry of ownaddr */
805 1.150 roy static void
806 1.150 roy in_ifremlocal(struct ifaddr *ifa)
807 1.150 roy {
808 1.150 roy struct in_ifaddr *ia, *p;
809 1.150 roy struct ifaddr *alt_ifa = NULL;
810 1.150 roy int ia_count = 0;
811 1.178 ozaki int s;
812 1.178 ozaki struct psref psref;
813 1.178 ozaki int bound = curlwp_bind();
814 1.150 roy
815 1.150 roy ia = (struct in_ifaddr *)ifa;
816 1.150 roy /* Delete the entry if exactly one ifaddr matches the
817 1.150 roy * address, ifa->ifa_addr. */
818 1.178 ozaki s = pserialize_read_enter();
819 1.171 ozaki IN_ADDRLIST_READER_FOREACH(p) {
820 1.150 roy if (!in_hosteq(p->ia_addr.sin_addr, ia->ia_addr.sin_addr))
821 1.150 roy continue;
822 1.150 roy if (p->ia_ifp != ia->ia_ifp)
823 1.150 roy alt_ifa = &p->ia_ifa;
824 1.150 roy if (++ia_count > 1 && alt_ifa != NULL)
825 1.150 roy break;
826 1.150 roy }
827 1.178 ozaki if (alt_ifa != NULL && ia_count > 1)
828 1.178 ozaki ifa_acquire(alt_ifa, &psref);
829 1.178 ozaki pserialize_read_exit(s);
830 1.150 roy
831 1.150 roy if (ia_count == 0)
832 1.178 ozaki goto out;
833 1.150 roy
834 1.150 roy rt_ifa_remlocal(ifa, ia_count == 1 ? NULL : alt_ifa);
835 1.178 ozaki if (alt_ifa != NULL && ia_count > 1)
836 1.178 ozaki ifa_release(alt_ifa, &psref);
837 1.178 ozaki out:
838 1.178 ozaki curlwp_bindx(bound);
839 1.150 roy }
840 1.150 roy
841 1.183 roy static void
842 1.183 roy in_scrubaddr(struct in_ifaddr *ia)
843 1.183 roy {
844 1.183 roy
845 1.183 roy /* stop DAD processing */
846 1.183 roy if (ia->ia_dad_stop != NULL)
847 1.183 roy ia->ia_dad_stop(&ia->ia_ifa);
848 1.183 roy
849 1.185 roy in_scrubprefix(ia);
850 1.183 roy in_ifremlocal(&ia->ia_ifa);
851 1.185 roy
852 1.198 ozaki mutex_enter(&in_ifaddr_lock);
853 1.183 roy if (ia->ia_allhosts != NULL) {
854 1.183 roy in_delmulti(ia->ia_allhosts);
855 1.183 roy ia->ia_allhosts = NULL;
856 1.183 roy }
857 1.198 ozaki mutex_exit(&in_ifaddr_lock);
858 1.183 roy }
859 1.183 roy
860 1.178 ozaki /*
861 1.178 ozaki * Depends on it isn't called in concurrent. It should be guaranteed
862 1.178 ozaki * by ifa->ifa_ifp's ioctl lock. The possible callers are in_control
863 1.178 ozaki * and if_purgeaddrs; the former is called iva ifa->ifa_ifp's ioctl
864 1.178 ozaki * and the latter is called via ifa->ifa_ifp's if_detach. The functions
865 1.178 ozaki * never be executed in concurrent.
866 1.178 ozaki */
867 1.50 thorpej void
868 1.121 dyoung in_purgeaddr(struct ifaddr *ifa)
869 1.50 thorpej {
870 1.183 roy struct in_ifaddr *ia = (void *) ifa;
871 1.121 dyoung struct ifnet *ifp = ifa->ifa_ifp;
872 1.50 thorpej
873 1.212 ozaki /* KASSERT(!ifa_held(ifa)); XXX need ifa_not_held (psref_not_held) */
874 1.178 ozaki
875 1.191 ozaki ifa->ifa_flags |= IFA_DESTROYING;
876 1.183 roy in_scrubaddr(ia);
877 1.178 ozaki
878 1.178 ozaki mutex_enter(&in_ifaddr_lock);
879 1.189 knakahar in_addrhash_remove_locked(ia);
880 1.93 jonathan TAILQ_REMOVE(&in_ifaddrhead, ia, ia_list);
881 1.171 ozaki IN_ADDRLIST_WRITER_REMOVE(ia);
882 1.178 ozaki ifa_remove(ifp, &ia->ia_ifa);
883 1.215 ozaki /* Assume ifa_remove called pserialize_perform and psref_destroy */
884 1.192 knakahar mutex_exit(&in_ifaddr_lock);
885 1.178 ozaki IN_ADDRHASH_ENTRY_DESTROY(ia);
886 1.171 ozaki IN_ADDRLIST_ENTRY_DESTROY(ia);
887 1.148 rmind ifafree(&ia->ia_ifa);
888 1.50 thorpej in_setmaxmtu();
889 1.51 thorpej }
890 1.51 thorpej
891 1.189 knakahar static void
892 1.189 knakahar in_addrhash_insert_locked(struct in_ifaddr *ia)
893 1.189 knakahar {
894 1.189 knakahar
895 1.189 knakahar KASSERT(mutex_owned(&in_ifaddr_lock));
896 1.189 knakahar
897 1.189 knakahar LIST_INSERT_HEAD(&IN_IFADDR_HASH(ia->ia_addr.sin_addr.s_addr), ia,
898 1.189 knakahar ia_hash);
899 1.189 knakahar IN_ADDRHASH_ENTRY_INIT(ia);
900 1.189 knakahar IN_ADDRHASH_WRITER_INSERT_HEAD(ia);
901 1.189 knakahar }
902 1.189 knakahar
903 1.189 knakahar void
904 1.189 knakahar in_addrhash_insert(struct in_ifaddr *ia)
905 1.189 knakahar {
906 1.189 knakahar
907 1.189 knakahar mutex_enter(&in_ifaddr_lock);
908 1.189 knakahar in_addrhash_insert_locked(ia);
909 1.189 knakahar mutex_exit(&in_ifaddr_lock);
910 1.189 knakahar }
911 1.189 knakahar
912 1.189 knakahar static void
913 1.189 knakahar in_addrhash_remove_locked(struct in_ifaddr *ia)
914 1.189 knakahar {
915 1.189 knakahar
916 1.189 knakahar KASSERT(mutex_owned(&in_ifaddr_lock));
917 1.189 knakahar
918 1.189 knakahar LIST_REMOVE(ia, ia_hash);
919 1.189 knakahar IN_ADDRHASH_WRITER_REMOVE(ia);
920 1.189 knakahar }
921 1.189 knakahar
922 1.189 knakahar void
923 1.189 knakahar in_addrhash_remove(struct in_ifaddr *ia)
924 1.189 knakahar {
925 1.189 knakahar
926 1.189 knakahar mutex_enter(&in_ifaddr_lock);
927 1.189 knakahar in_addrhash_remove_locked(ia);
928 1.189 knakahar #ifdef NET_MPSAFE
929 1.189 knakahar pserialize_perform(in_ifaddrhash_psz);
930 1.189 knakahar #endif
931 1.192 knakahar mutex_exit(&in_ifaddr_lock);
932 1.189 knakahar IN_ADDRHASH_ENTRY_DESTROY(ia);
933 1.189 knakahar }
934 1.189 knakahar
935 1.51 thorpej void
936 1.111 tls in_purgeif(struct ifnet *ifp) /* MUST be called at splsoftnet() */
937 1.51 thorpej {
938 1.211 ozaki
939 1.211 ozaki IFNET_LOCK(ifp);
940 1.121 dyoung if_purgeaddrs(ifp, AF_INET, in_purgeaddr);
941 1.111 tls igmp_purgeif(ifp); /* manipulates pools */
942 1.89 itojun #ifdef MROUTING
943 1.89 itojun ip_mrouter_detach(ifp);
944 1.89 itojun #endif
945 1.211 ozaki IFNET_UNLOCK(ifp);
946 1.48 itojun }
947 1.48 itojun
948 1.48 itojun /*
949 1.48 itojun * SIOC[GAD]LIFADDR.
950 1.48 itojun * SIOCGLIFADDR: get first address. (???)
951 1.48 itojun * SIOCGLIFADDR with IFLR_PREFIX:
952 1.48 itojun * get first address that matches the specified prefix.
953 1.48 itojun * SIOCALIFADDR: add the specified address.
954 1.48 itojun * SIOCALIFADDR with IFLR_PREFIX:
955 1.48 itojun * EINVAL since we can't deduce hostid part of the address.
956 1.48 itojun * SIOCDLIFADDR: delete the specified address.
957 1.48 itojun * SIOCDLIFADDR with IFLR_PREFIX:
958 1.48 itojun * delete the first address that matches the specified prefix.
959 1.48 itojun * return values:
960 1.48 itojun * EINVAL on invalid parameters
961 1.48 itojun * EADDRNOTAVAIL on prefix match failed/specified address not found
962 1.48 itojun * other values may be returned from in_ioctl()
963 1.48 itojun */
964 1.48 itojun static int
965 1.116 christos in_lifaddr_ioctl(struct socket *so, u_long cmd, void *data,
966 1.147 rtr struct ifnet *ifp)
967 1.48 itojun {
968 1.48 itojun struct if_laddrreq *iflr = (struct if_laddrreq *)data;
969 1.48 itojun struct ifaddr *ifa;
970 1.49 itojun struct sockaddr *sa;
971 1.48 itojun
972 1.48 itojun /* sanity checks */
973 1.119 dyoung if (data == NULL || ifp == NULL) {
974 1.48 itojun panic("invalid argument to in_lifaddr_ioctl");
975 1.48 itojun /*NOTRECHED*/
976 1.48 itojun }
977 1.48 itojun
978 1.48 itojun switch (cmd) {
979 1.48 itojun case SIOCGLIFADDR:
980 1.48 itojun /* address must be specified on GET with IFLR_PREFIX */
981 1.48 itojun if ((iflr->flags & IFLR_PREFIX) == 0)
982 1.48 itojun break;
983 1.48 itojun /*FALLTHROUGH*/
984 1.48 itojun case SIOCALIFADDR:
985 1.48 itojun case SIOCDLIFADDR:
986 1.48 itojun /* address must be specified on ADD and DELETE */
987 1.49 itojun sa = (struct sockaddr *)&iflr->addr;
988 1.49 itojun if (sa->sa_family != AF_INET)
989 1.48 itojun return EINVAL;
990 1.49 itojun if (sa->sa_len != sizeof(struct sockaddr_in))
991 1.48 itojun return EINVAL;
992 1.48 itojun /* XXX need improvement */
993 1.49 itojun sa = (struct sockaddr *)&iflr->dstaddr;
994 1.126 dyoung if (sa->sa_family != AF_UNSPEC && sa->sa_family != AF_INET)
995 1.48 itojun return EINVAL;
996 1.126 dyoung if (sa->sa_len != 0 && sa->sa_len != sizeof(struct sockaddr_in))
997 1.48 itojun return EINVAL;
998 1.48 itojun break;
999 1.48 itojun default: /*shouldn't happen*/
1000 1.48 itojun #if 0
1001 1.48 itojun panic("invalid cmd to in_lifaddr_ioctl");
1002 1.48 itojun /*NOTREACHED*/
1003 1.48 itojun #else
1004 1.48 itojun return EOPNOTSUPP;
1005 1.48 itojun #endif
1006 1.48 itojun }
1007 1.124 dyoung if (sizeof(struct in_addr) * NBBY < iflr->prefixlen)
1008 1.48 itojun return EINVAL;
1009 1.48 itojun
1010 1.48 itojun switch (cmd) {
1011 1.48 itojun case SIOCALIFADDR:
1012 1.48 itojun {
1013 1.48 itojun struct in_aliasreq ifra;
1014 1.48 itojun
1015 1.48 itojun if (iflr->flags & IFLR_PREFIX)
1016 1.48 itojun return EINVAL;
1017 1.48 itojun
1018 1.110 elad /* copy args to in_aliasreq, perform ioctl(SIOCAIFADDR). */
1019 1.132 cegger memset(&ifra, 0, sizeof(ifra));
1020 1.134 tsutsui memcpy(ifra.ifra_name, iflr->iflr_name,
1021 1.48 itojun sizeof(ifra.ifra_name));
1022 1.48 itojun
1023 1.134 tsutsui memcpy(&ifra.ifra_addr, &iflr->addr,
1024 1.49 itojun ((struct sockaddr *)&iflr->addr)->sa_len);
1025 1.48 itojun
1026 1.49 itojun if (((struct sockaddr *)&iflr->dstaddr)->sa_family) { /*XXX*/
1027 1.134 tsutsui memcpy(&ifra.ifra_dstaddr, &iflr->dstaddr,
1028 1.49 itojun ((struct sockaddr *)&iflr->dstaddr)->sa_len);
1029 1.48 itojun }
1030 1.48 itojun
1031 1.48 itojun ifra.ifra_mask.sin_family = AF_INET;
1032 1.48 itojun ifra.ifra_mask.sin_len = sizeof(struct sockaddr_in);
1033 1.48 itojun in_len2mask(&ifra.ifra_mask.sin_addr, iflr->prefixlen);
1034 1.48 itojun
1035 1.147 rtr return in_control(so, SIOCAIFADDR, &ifra, ifp);
1036 1.48 itojun }
1037 1.48 itojun case SIOCGLIFADDR:
1038 1.48 itojun case SIOCDLIFADDR:
1039 1.48 itojun {
1040 1.48 itojun struct in_ifaddr *ia;
1041 1.48 itojun struct in_addr mask, candidate, match;
1042 1.48 itojun struct sockaddr_in *sin;
1043 1.179 ozaki int cmp, s;
1044 1.48 itojun
1045 1.132 cegger memset(&mask, 0, sizeof(mask));
1046 1.132 cegger memset(&match, 0, sizeof(match)); /* XXX gcc */
1047 1.48 itojun if (iflr->flags & IFLR_PREFIX) {
1048 1.48 itojun /* lookup a prefix rather than address. */
1049 1.48 itojun in_len2mask(&mask, iflr->prefixlen);
1050 1.48 itojun
1051 1.48 itojun sin = (struct sockaddr_in *)&iflr->addr;
1052 1.48 itojun match.s_addr = sin->sin_addr.s_addr;
1053 1.48 itojun match.s_addr &= mask.s_addr;
1054 1.48 itojun
1055 1.48 itojun /* if you set extra bits, that's wrong */
1056 1.48 itojun if (match.s_addr != sin->sin_addr.s_addr)
1057 1.48 itojun return EINVAL;
1058 1.48 itojun
1059 1.48 itojun cmp = 1;
1060 1.48 itojun } else {
1061 1.48 itojun if (cmd == SIOCGLIFADDR) {
1062 1.48 itojun /* on getting an address, take the 1st match */
1063 1.48 itojun cmp = 0; /*XXX*/
1064 1.48 itojun } else {
1065 1.48 itojun /* on deleting an address, do exact match */
1066 1.48 itojun in_len2mask(&mask, 32);
1067 1.48 itojun sin = (struct sockaddr_in *)&iflr->addr;
1068 1.48 itojun match.s_addr = sin->sin_addr.s_addr;
1069 1.48 itojun
1070 1.48 itojun cmp = 1;
1071 1.48 itojun }
1072 1.48 itojun }
1073 1.48 itojun
1074 1.179 ozaki s = pserialize_read_enter();
1075 1.172 ozaki IFADDR_READER_FOREACH(ifa, ifp) {
1076 1.95 itojun if (ifa->ifa_addr->sa_family != AF_INET)
1077 1.48 itojun continue;
1078 1.119 dyoung if (cmp == 0)
1079 1.48 itojun break;
1080 1.143 gdt candidate.s_addr = ((struct sockaddr_in *)ifa->ifa_addr)->sin_addr.s_addr;
1081 1.48 itojun candidate.s_addr &= mask.s_addr;
1082 1.48 itojun if (candidate.s_addr == match.s_addr)
1083 1.48 itojun break;
1084 1.48 itojun }
1085 1.179 ozaki if (ifa == NULL) {
1086 1.179 ozaki pserialize_read_exit(s);
1087 1.48 itojun return EADDRNOTAVAIL;
1088 1.179 ozaki }
1089 1.48 itojun ia = (struct in_ifaddr *)ifa;
1090 1.48 itojun
1091 1.48 itojun if (cmd == SIOCGLIFADDR) {
1092 1.48 itojun /* fill in the if_laddrreq structure */
1093 1.134 tsutsui memcpy(&iflr->addr, &ia->ia_addr, ia->ia_addr.sin_len);
1094 1.48 itojun
1095 1.48 itojun if ((ifp->if_flags & IFF_POINTOPOINT) != 0) {
1096 1.134 tsutsui memcpy(&iflr->dstaddr, &ia->ia_dstaddr,
1097 1.48 itojun ia->ia_dstaddr.sin_len);
1098 1.48 itojun } else
1099 1.132 cegger memset(&iflr->dstaddr, 0, sizeof(iflr->dstaddr));
1100 1.48 itojun
1101 1.48 itojun iflr->prefixlen =
1102 1.48 itojun in_mask2len(&ia->ia_sockmask.sin_addr);
1103 1.48 itojun
1104 1.48 itojun iflr->flags = 0; /*XXX*/
1105 1.179 ozaki pserialize_read_exit(s);
1106 1.48 itojun
1107 1.48 itojun return 0;
1108 1.48 itojun } else {
1109 1.48 itojun struct in_aliasreq ifra;
1110 1.48 itojun
1111 1.110 elad /* fill in_aliasreq and do ioctl(SIOCDIFADDR) */
1112 1.132 cegger memset(&ifra, 0, sizeof(ifra));
1113 1.134 tsutsui memcpy(ifra.ifra_name, iflr->iflr_name,
1114 1.48 itojun sizeof(ifra.ifra_name));
1115 1.48 itojun
1116 1.134 tsutsui memcpy(&ifra.ifra_addr, &ia->ia_addr,
1117 1.48 itojun ia->ia_addr.sin_len);
1118 1.48 itojun if ((ifp->if_flags & IFF_POINTOPOINT) != 0) {
1119 1.134 tsutsui memcpy(&ifra.ifra_dstaddr, &ia->ia_dstaddr,
1120 1.48 itojun ia->ia_dstaddr.sin_len);
1121 1.48 itojun }
1122 1.134 tsutsui memcpy(&ifra.ifra_dstaddr, &ia->ia_sockmask,
1123 1.48 itojun ia->ia_sockmask.sin_len);
1124 1.179 ozaki pserialize_read_exit(s);
1125 1.48 itojun
1126 1.147 rtr return in_control(so, SIOCDIFADDR, &ifra, ifp);
1127 1.48 itojun }
1128 1.48 itojun }
1129 1.48 itojun }
1130 1.48 itojun
1131 1.48 itojun return EOPNOTSUPP; /*just for safety*/
1132 1.1 cgd }
1133 1.1 cgd
1134 1.1 cgd /*
1135 1.1 cgd * Initialize an interface's internet address
1136 1.1 cgd * and routing table entry.
1137 1.1 cgd */
1138 1.12 mycroft int
1139 1.103 perry in_ifinit(struct ifnet *ifp, struct in_ifaddr *ia,
1140 1.184 roy const struct sockaddr_in *sin, const struct sockaddr_in *dst, int scrub)
1141 1.1 cgd {
1142 1.97 mycroft u_int32_t i;
1143 1.184 roy struct sockaddr_in oldaddr, olddst;
1144 1.182 roy int s, oldflags, flags = RTF_UP, error, hostIsNew;
1145 1.1 cgd
1146 1.118 dyoung if (sin == NULL)
1147 1.97 mycroft sin = &ia->ia_addr;
1148 1.184 roy if (dst == NULL)
1149 1.184 roy dst = &ia->ia_dstaddr;
1150 1.97 mycroft
1151 1.32 mycroft /*
1152 1.32 mycroft * Set up new addresses.
1153 1.32 mycroft */
1154 1.1 cgd oldaddr = ia->ia_addr;
1155 1.184 roy olddst = ia->ia_dstaddr;
1156 1.182 roy oldflags = ia->ia4_flags;
1157 1.1 cgd ia->ia_addr = *sin;
1158 1.184 roy ia->ia_dstaddr = *dst;
1159 1.182 roy hostIsNew = oldaddr.sin_family != AF_INET ||
1160 1.182 roy !in_hosteq(ia->ia_addr.sin_addr, oldaddr.sin_addr);
1161 1.184 roy if (!scrub)
1162 1.184 roy scrub = oldaddr.sin_family != ia->ia_dstaddr.sin_family ||
1163 1.184 roy !in_hosteq(ia->ia_dstaddr.sin_addr, olddst.sin_addr);
1164 1.38 tls
1165 1.182 roy /*
1166 1.182 roy * Configure address flags.
1167 1.231 khorben * We need to do this early because they may be adjusted
1168 1.182 roy * by if_addr_init depending on the address.
1169 1.182 roy */
1170 1.226 ozaki if (ia->ia4_flags & IN_IFF_DUPLICATED) {
1171 1.226 ozaki ia->ia4_flags &= ~IN_IFF_DUPLICATED;
1172 1.182 roy hostIsNew = 1;
1173 1.225 ozaki }
1174 1.226 ozaki if (ifp->if_link_state == LINK_STATE_DOWN) {
1175 1.226 ozaki ia->ia4_flags |= IN_IFF_DETACHED;
1176 1.226 ozaki ia->ia4_flags &= ~IN_IFF_TENTATIVE;
1177 1.232 ozaki } else if (hostIsNew && if_do_dad(ifp) && ip_dad_enabled())
1178 1.226 ozaki ia->ia4_flags |= IN_IFF_TRYTENTATIVE;
1179 1.152 roy
1180 1.1 cgd /*
1181 1.1 cgd * Give the interface a chance to initialize
1182 1.1 cgd * if this is its first address,
1183 1.1 cgd * and to validate the address if necessary.
1184 1.1 cgd */
1185 1.197 ozaki s = splsoftnet();
1186 1.182 roy error = if_addr_init(ifp, &ia->ia_ifa, true);
1187 1.182 roy splx(s);
1188 1.206 uwe /* Now clear the try tentative flag, its job is done. */
1189 1.156 roy ia->ia4_flags &= ~IN_IFF_TRYTENTATIVE;
1190 1.182 roy if (error != 0) {
1191 1.182 roy ia->ia_addr = oldaddr;
1192 1.184 roy ia->ia_dstaddr = olddst;
1193 1.182 roy ia->ia4_flags = oldflags;
1194 1.182 roy return error;
1195 1.182 roy }
1196 1.156 roy
1197 1.245 knakahar /*
1198 1.245 knakahar * The interface which does not have IPv4 address is not required
1199 1.245 knakahar * to scrub old address. So, skip scrub such cases.
1200 1.245 knakahar */
1201 1.245 knakahar if (oldaddr.sin_family == AF_INET && (scrub || hostIsNew)) {
1202 1.182 roy int newflags = ia->ia4_flags;
1203 1.182 roy
1204 1.21 mycroft ia->ia_ifa.ifa_addr = sintosa(&oldaddr);
1205 1.184 roy ia->ia_ifa.ifa_dstaddr = sintosa(&olddst);
1206 1.182 roy ia->ia4_flags = oldflags;
1207 1.183 roy if (hostIsNew)
1208 1.183 roy in_scrubaddr(ia);
1209 1.183 roy else if (scrub)
1210 1.185 roy in_scrubprefix(ia);
1211 1.21 mycroft ia->ia_ifa.ifa_addr = sintosa(&ia->ia_addr);
1212 1.184 roy ia->ia_ifa.ifa_dstaddr = sintosa(&ia->ia_dstaddr);
1213 1.182 roy ia->ia4_flags = newflags;
1214 1.1 cgd }
1215 1.35 thorpej
1216 1.97 mycroft i = ia->ia_addr.sin_addr.s_addr;
1217 1.186 roy if (ifp->if_flags & IFF_POINTOPOINT)
1218 1.186 roy ia->ia_netmask = INADDR_BROADCAST; /* default to /32 */
1219 1.186 roy else if (IN_CLASSA(i))
1220 1.1 cgd ia->ia_netmask = IN_CLASSA_NET;
1221 1.1 cgd else if (IN_CLASSB(i))
1222 1.1 cgd ia->ia_netmask = IN_CLASSB_NET;
1223 1.1 cgd else
1224 1.1 cgd ia->ia_netmask = IN_CLASSC_NET;
1225 1.1 cgd /*
1226 1.12 mycroft * The subnet mask usually includes at least the standard network part,
1227 1.12 mycroft * but may may be smaller in the case of supernetting.
1228 1.12 mycroft * If it is set, we believe it.
1229 1.1 cgd */
1230 1.12 mycroft if (ia->ia_subnetmask == 0) {
1231 1.12 mycroft ia->ia_subnetmask = ia->ia_netmask;
1232 1.20 mycroft ia->ia_sockmask.sin_addr.s_addr = ia->ia_subnetmask;
1233 1.12 mycroft } else
1234 1.12 mycroft ia->ia_netmask &= ia->ia_subnetmask;
1235 1.35 thorpej
1236 1.12 mycroft ia->ia_net = i & ia->ia_netmask;
1237 1.1 cgd ia->ia_subnet = i & ia->ia_subnetmask;
1238 1.12 mycroft in_socktrim(&ia->ia_sockmask);
1239 1.199 roy
1240 1.35 thorpej /* re-calculate the "in_maxmtu" value */
1241 1.35 thorpej in_setmaxmtu();
1242 1.199 roy
1243 1.12 mycroft ia->ia_ifa.ifa_metric = ifp->if_metric;
1244 1.1 cgd if (ifp->if_flags & IFF_BROADCAST) {
1245 1.236 roy if (ia->ia_subnetmask == IN_RFC3021_MASK) {
1246 1.236 roy ia->ia_broadaddr.sin_addr.s_addr = INADDR_BROADCAST;
1247 1.236 roy ia->ia_netbroadcast.s_addr = INADDR_BROADCAST;
1248 1.236 roy } else {
1249 1.236 roy ia->ia_broadaddr.sin_addr.s_addr =
1250 1.236 roy ia->ia_subnet | ~ia->ia_subnetmask;
1251 1.236 roy ia->ia_netbroadcast.s_addr =
1252 1.236 roy ia->ia_net | ~ia->ia_netmask;
1253 1.236 roy }
1254 1.1 cgd } else if (ifp->if_flags & IFF_LOOPBACK) {
1255 1.83 onoe ia->ia_dstaddr = ia->ia_addr;
1256 1.1 cgd flags |= RTF_HOST;
1257 1.1 cgd } else if (ifp->if_flags & IFF_POINTOPOINT) {
1258 1.238 christos if (ia->ia_dstaddr.sin_family != AF_INET)
1259 1.238 christos return (0);
1260 1.238 christos flags |= RTF_HOST;
1261 1.1 cgd }
1262 1.199 roy
1263 1.199 roy /* Add the local route to the address */
1264 1.199 roy in_ifaddlocal(&ia->ia_ifa);
1265 1.199 roy
1266 1.199 roy /* Add the prefix route for the address */
1267 1.67 itojun error = in_addprefix(ia, flags);
1268 1.199 roy
1269 1.5 hpeyerl /*
1270 1.5 hpeyerl * If the interface supports multicast, join the "all hosts"
1271 1.5 hpeyerl * multicast group on that interface.
1272 1.5 hpeyerl */
1273 1.198 ozaki mutex_enter(&in_ifaddr_lock);
1274 1.65 enami if ((ifp->if_flags & IFF_MULTICAST) != 0 && ia->ia_allhosts == NULL) {
1275 1.5 hpeyerl struct in_addr addr;
1276 1.5 hpeyerl
1277 1.20 mycroft addr.s_addr = INADDR_ALLHOSTS_GROUP;
1278 1.65 enami ia->ia_allhosts = in_addmulti(&addr, ifp);
1279 1.5 hpeyerl }
1280 1.198 ozaki mutex_exit(&in_ifaddr_lock);
1281 1.152 roy
1282 1.182 roy if (hostIsNew &&
1283 1.182 roy ia->ia4_flags & IN_IFF_TENTATIVE &&
1284 1.182 roy if_do_dad(ifp))
1285 1.156 roy ia->ia_dad_start((struct ifaddr *)ia);
1286 1.152 roy
1287 1.182 roy return error;
1288 1.1 cgd }
1289 1.67 itojun
1290 1.67 itojun #define rtinitflags(x) \
1291 1.68 itojun ((((x)->ia_ifp->if_flags & (IFF_LOOPBACK | IFF_POINTOPOINT)) != 0) \
1292 1.68 itojun ? RTF_HOST : 0)
1293 1.67 itojun
1294 1.67 itojun /*
1295 1.67 itojun * add a route to prefix ("connected route" in cisco terminology).
1296 1.67 itojun * does nothing if there's some interface address with the same prefix already.
1297 1.67 itojun */
1298 1.67 itojun static int
1299 1.103 perry in_addprefix(struct in_ifaddr *target, int flags)
1300 1.67 itojun {
1301 1.67 itojun struct in_ifaddr *ia;
1302 1.67 itojun struct in_addr prefix, mask, p;
1303 1.67 itojun int error;
1304 1.178 ozaki int s;
1305 1.67 itojun
1306 1.67 itojun if ((flags & RTF_HOST) != 0)
1307 1.67 itojun prefix = target->ia_dstaddr.sin_addr;
1308 1.85 itojun else {
1309 1.67 itojun prefix = target->ia_addr.sin_addr;
1310 1.85 itojun mask = target->ia_sockmask.sin_addr;
1311 1.85 itojun prefix.s_addr &= mask.s_addr;
1312 1.85 itojun }
1313 1.67 itojun
1314 1.178 ozaki s = pserialize_read_enter();
1315 1.171 ozaki IN_ADDRLIST_READER_FOREACH(ia) {
1316 1.67 itojun if (rtinitflags(ia))
1317 1.67 itojun p = ia->ia_dstaddr.sin_addr;
1318 1.85 itojun else {
1319 1.67 itojun p = ia->ia_addr.sin_addr;
1320 1.85 itojun p.s_addr &= ia->ia_sockmask.sin_addr.s_addr;
1321 1.85 itojun }
1322 1.85 itojun
1323 1.67 itojun if (prefix.s_addr != p.s_addr)
1324 1.67 itojun continue;
1325 1.67 itojun
1326 1.67 itojun /*
1327 1.67 itojun * if we got a matching prefix route inserted by other
1328 1.69 martin * interface address, we don't need to bother
1329 1.114 dyoung *
1330 1.114 dyoung * XXX RADIX_MPATH implications here? -dyoung
1331 1.67 itojun */
1332 1.178 ozaki if (ia->ia_flags & IFA_ROUTE) {
1333 1.178 ozaki pserialize_read_exit(s);
1334 1.67 itojun return 0;
1335 1.178 ozaki }
1336 1.67 itojun }
1337 1.178 ozaki pserialize_read_exit(s);
1338 1.67 itojun
1339 1.67 itojun /*
1340 1.67 itojun * noone seem to have prefix route. insert it.
1341 1.67 itojun */
1342 1.119 dyoung error = rtinit(&target->ia_ifa, RTM_ADD, flags);
1343 1.119 dyoung if (error == 0)
1344 1.67 itojun target->ia_flags |= IFA_ROUTE;
1345 1.130 roy else if (error == EEXIST) {
1346 1.150 roy /*
1347 1.130 roy * the fact the route already exists is not an error.
1348 1.150 roy */
1349 1.130 roy error = 0;
1350 1.130 roy }
1351 1.67 itojun return error;
1352 1.67 itojun }
1353 1.67 itojun
1354 1.243 knakahar static int
1355 1.243 knakahar in_rt_ifa_matcher(struct rtentry *rt, void *v)
1356 1.243 knakahar {
1357 1.243 knakahar struct ifaddr *ifa = v;
1358 1.243 knakahar
1359 1.243 knakahar if (rt->rt_ifa == ifa)
1360 1.243 knakahar return 1;
1361 1.243 knakahar else
1362 1.243 knakahar return 0;
1363 1.243 knakahar }
1364 1.243 knakahar
1365 1.67 itojun /*
1366 1.67 itojun * remove a route to prefix ("connected route" in cisco terminology).
1367 1.67 itojun * re-installs the route by using another interface address, if there's one
1368 1.67 itojun * with the same prefix (otherwise we lose the route mistakenly).
1369 1.67 itojun */
1370 1.67 itojun static int
1371 1.103 perry in_scrubprefix(struct in_ifaddr *target)
1372 1.67 itojun {
1373 1.67 itojun struct in_ifaddr *ia;
1374 1.67 itojun struct in_addr prefix, mask, p;
1375 1.67 itojun int error;
1376 1.178 ozaki int s;
1377 1.67 itojun
1378 1.183 roy /* If we don't have IFA_ROUTE we have nothing to do */
1379 1.150 roy if ((target->ia_flags & IFA_ROUTE) == 0)
1380 1.67 itojun return 0;
1381 1.67 itojun
1382 1.67 itojun if (rtinitflags(target))
1383 1.67 itojun prefix = target->ia_dstaddr.sin_addr;
1384 1.85 itojun else {
1385 1.67 itojun prefix = target->ia_addr.sin_addr;
1386 1.85 itojun mask = target->ia_sockmask.sin_addr;
1387 1.85 itojun prefix.s_addr &= mask.s_addr;
1388 1.85 itojun }
1389 1.67 itojun
1390 1.178 ozaki s = pserialize_read_enter();
1391 1.171 ozaki IN_ADDRLIST_READER_FOREACH(ia) {
1392 1.67 itojun if (rtinitflags(ia))
1393 1.67 itojun p = ia->ia_dstaddr.sin_addr;
1394 1.85 itojun else {
1395 1.67 itojun p = ia->ia_addr.sin_addr;
1396 1.85 itojun p.s_addr &= ia->ia_sockmask.sin_addr.s_addr;
1397 1.85 itojun }
1398 1.85 itojun
1399 1.67 itojun if (prefix.s_addr != p.s_addr)
1400 1.67 itojun continue;
1401 1.67 itojun
1402 1.67 itojun /*
1403 1.67 itojun * if we got a matching prefix route, move IFA_ROUTE to him
1404 1.67 itojun */
1405 1.67 itojun if ((ia->ia_flags & IFA_ROUTE) == 0) {
1406 1.178 ozaki struct psref psref;
1407 1.178 ozaki int bound = curlwp_bind();
1408 1.178 ozaki
1409 1.178 ozaki ia4_acquire(ia, &psref);
1410 1.178 ozaki pserialize_read_exit(s);
1411 1.178 ozaki
1412 1.119 dyoung rtinit(&target->ia_ifa, RTM_DELETE,
1413 1.67 itojun rtinitflags(target));
1414 1.67 itojun target->ia_flags &= ~IFA_ROUTE;
1415 1.67 itojun
1416 1.119 dyoung error = rtinit(&ia->ia_ifa, RTM_ADD,
1417 1.67 itojun rtinitflags(ia) | RTF_UP);
1418 1.67 itojun if (error == 0)
1419 1.67 itojun ia->ia_flags |= IFA_ROUTE;
1420 1.178 ozaki
1421 1.243 knakahar if (!ISSET(target->ia_ifa.ifa_flags, IFA_DESTROYING))
1422 1.243 knakahar goto skip;
1423 1.243 knakahar /*
1424 1.243 knakahar * Replace rt_ifa of routes that have the removing address
1425 1.243 knakahar * with the new address.
1426 1.243 knakahar */
1427 1.243 knakahar rt_replace_ifa_matched_entries(AF_INET,
1428 1.243 knakahar in_rt_ifa_matcher, &target->ia_ifa, &ia->ia_ifa);
1429 1.243 knakahar
1430 1.243 knakahar skip:
1431 1.178 ozaki ia4_release(ia, &psref);
1432 1.178 ozaki curlwp_bindx(bound);
1433 1.178 ozaki
1434 1.67 itojun return error;
1435 1.67 itojun }
1436 1.67 itojun }
1437 1.178 ozaki pserialize_read_exit(s);
1438 1.67 itojun
1439 1.67 itojun /*
1440 1.67 itojun * noone seem to have prefix route. remove it.
1441 1.67 itojun */
1442 1.119 dyoung rtinit(&target->ia_ifa, RTM_DELETE, rtinitflags(target));
1443 1.67 itojun target->ia_flags &= ~IFA_ROUTE;
1444 1.243 knakahar
1445 1.243 knakahar if (ISSET(target->ia_ifa.ifa_flags, IFA_DESTROYING)) {
1446 1.243 knakahar /* Remove routes that have the removing address as rt_ifa. */
1447 1.243 knakahar rt_delete_matched_entries(AF_INET, in_rt_ifa_matcher,
1448 1.243 knakahar &target->ia_ifa, true);
1449 1.243 knakahar }
1450 1.243 knakahar
1451 1.67 itojun return 0;
1452 1.67 itojun }
1453 1.67 itojun
1454 1.67 itojun #undef rtinitflags
1455 1.1 cgd
1456 1.1 cgd /*
1457 1.1 cgd * Return 1 if the address might be a local broadcast address.
1458 1.1 cgd */
1459 1.8 mycroft int
1460 1.103 perry in_broadcast(struct in_addr in, struct ifnet *ifp)
1461 1.1 cgd {
1462 1.59 augustss struct ifaddr *ifa;
1463 1.178 ozaki int s;
1464 1.178 ozaki
1465 1.178 ozaki KASSERT(ifp != NULL);
1466 1.1 cgd
1467 1.12 mycroft if (in.s_addr == INADDR_BROADCAST ||
1468 1.32 mycroft in_nullhost(in))
1469 1.12 mycroft return 1;
1470 1.12 mycroft if ((ifp->if_flags & IFF_BROADCAST) == 0)
1471 1.12 mycroft return 0;
1472 1.1 cgd /*
1473 1.1 cgd * Look through the list of addresses for a match
1474 1.1 cgd * with a broadcast address.
1475 1.1 cgd */
1476 1.22 mycroft #define ia (ifatoia(ifa))
1477 1.178 ozaki s = pserialize_read_enter();
1478 1.178 ozaki IFADDR_READER_FOREACH(ifa, ifp) {
1479 1.12 mycroft if (ifa->ifa_addr->sa_family == AF_INET &&
1480 1.75 itojun !in_hosteq(in, ia->ia_addr.sin_addr) &&
1481 1.32 mycroft (in_hosteq(in, ia->ia_broadaddr.sin_addr) ||
1482 1.32 mycroft in_hosteq(in, ia->ia_netbroadcast) ||
1483 1.77 itojun (hostzeroisbroadcast &&
1484 1.47 sommerfe /*
1485 1.236 roy * Check for old-style (host 0) broadcast, but
1486 1.236 roy * taking into account that RFC 3021 obsoletes it.
1487 1.47 sommerfe */
1488 1.236 roy ia->ia_subnetmask != IN_RFC3021_MASK &&
1489 1.47 sommerfe (in.s_addr == ia->ia_subnet ||
1490 1.178 ozaki in.s_addr == ia->ia_net)))) {
1491 1.178 ozaki pserialize_read_exit(s);
1492 1.47 sommerfe return 1;
1493 1.178 ozaki }
1494 1.178 ozaki }
1495 1.178 ozaki pserialize_read_exit(s);
1496 1.1 cgd return (0);
1497 1.12 mycroft #undef ia
1498 1.64 itojun }
1499 1.64 itojun
1500 1.64 itojun /*
1501 1.152 roy * perform DAD when interface becomes IFF_UP.
1502 1.152 roy */
1503 1.152 roy void
1504 1.152 roy in_if_link_up(struct ifnet *ifp)
1505 1.152 roy {
1506 1.152 roy struct ifaddr *ifa;
1507 1.152 roy struct in_ifaddr *ia;
1508 1.179 ozaki int s, bound;
1509 1.152 roy
1510 1.152 roy /* Ensure it's sane to run DAD */
1511 1.152 roy if (ifp->if_link_state == LINK_STATE_DOWN)
1512 1.152 roy return;
1513 1.152 roy if ((ifp->if_flags & (IFF_UP|IFF_RUNNING)) != (IFF_UP|IFF_RUNNING))
1514 1.152 roy return;
1515 1.152 roy
1516 1.179 ozaki bound = curlwp_bind();
1517 1.179 ozaki s = pserialize_read_enter();
1518 1.172 ozaki IFADDR_READER_FOREACH(ifa, ifp) {
1519 1.179 ozaki struct psref psref;
1520 1.179 ozaki
1521 1.152 roy if (ifa->ifa_addr->sa_family != AF_INET)
1522 1.152 roy continue;
1523 1.179 ozaki ifa_acquire(ifa, &psref);
1524 1.179 ozaki pserialize_read_exit(s);
1525 1.179 ozaki
1526 1.152 roy ia = (struct in_ifaddr *)ifa;
1527 1.152 roy
1528 1.152 roy /* If detached then mark as tentative */
1529 1.152 roy if (ia->ia4_flags & IN_IFF_DETACHED) {
1530 1.152 roy ia->ia4_flags &= ~IN_IFF_DETACHED;
1531 1.233 ozaki if (ip_dad_enabled() && if_do_dad(ifp) &&
1532 1.233 ozaki ia->ia_dad_start != NULL)
1533 1.152 roy ia->ia4_flags |= IN_IFF_TENTATIVE;
1534 1.156 roy else if ((ia->ia4_flags & IN_IFF_TENTATIVE) == 0)
1535 1.234 roy rt_addrmsg(RTM_NEWADDR, ifa);
1536 1.152 roy }
1537 1.152 roy
1538 1.152 roy if (ia->ia4_flags & IN_IFF_TENTATIVE) {
1539 1.152 roy /* Clear the duplicated flag as we're starting DAD. */
1540 1.152 roy ia->ia4_flags &= ~IN_IFF_DUPLICATED;
1541 1.156 roy ia->ia_dad_start(ifa);
1542 1.152 roy }
1543 1.179 ozaki
1544 1.179 ozaki s = pserialize_read_enter();
1545 1.179 ozaki ifa_release(ifa, &psref);
1546 1.152 roy }
1547 1.179 ozaki pserialize_read_exit(s);
1548 1.179 ozaki curlwp_bindx(bound);
1549 1.152 roy }
1550 1.152 roy
1551 1.152 roy void
1552 1.152 roy in_if_up(struct ifnet *ifp)
1553 1.152 roy {
1554 1.152 roy
1555 1.152 roy /* interface may not support link state, so bring it up also */
1556 1.152 roy in_if_link_up(ifp);
1557 1.152 roy }
1558 1.152 roy
1559 1.152 roy /*
1560 1.152 roy * Mark all addresses as detached.
1561 1.152 roy */
1562 1.152 roy void
1563 1.152 roy in_if_link_down(struct ifnet *ifp)
1564 1.152 roy {
1565 1.152 roy struct ifaddr *ifa;
1566 1.152 roy struct in_ifaddr *ia;
1567 1.179 ozaki int s, bound;
1568 1.152 roy
1569 1.179 ozaki bound = curlwp_bind();
1570 1.179 ozaki s = pserialize_read_enter();
1571 1.172 ozaki IFADDR_READER_FOREACH(ifa, ifp) {
1572 1.179 ozaki struct psref psref;
1573 1.179 ozaki
1574 1.152 roy if (ifa->ifa_addr->sa_family != AF_INET)
1575 1.152 roy continue;
1576 1.179 ozaki ifa_acquire(ifa, &psref);
1577 1.179 ozaki pserialize_read_exit(s);
1578 1.179 ozaki
1579 1.152 roy ia = (struct in_ifaddr *)ifa;
1580 1.152 roy
1581 1.152 roy /* Stop DAD processing */
1582 1.156 roy if (ia->ia_dad_stop != NULL)
1583 1.156 roy ia->ia_dad_stop(ifa);
1584 1.152 roy
1585 1.152 roy /*
1586 1.152 roy * Mark the address as detached.
1587 1.152 roy */
1588 1.152 roy if (!(ia->ia4_flags & IN_IFF_DETACHED)) {
1589 1.152 roy ia->ia4_flags |= IN_IFF_DETACHED;
1590 1.152 roy ia->ia4_flags &=
1591 1.152 roy ~(IN_IFF_TENTATIVE | IN_IFF_DUPLICATED);
1592 1.234 roy rt_addrmsg(RTM_NEWADDR, ifa);
1593 1.152 roy }
1594 1.179 ozaki
1595 1.179 ozaki s = pserialize_read_enter();
1596 1.179 ozaki ifa_release(ifa, &psref);
1597 1.152 roy }
1598 1.179 ozaki pserialize_read_exit(s);
1599 1.179 ozaki curlwp_bindx(bound);
1600 1.152 roy }
1601 1.152 roy
1602 1.152 roy void
1603 1.152 roy in_if_down(struct ifnet *ifp)
1604 1.152 roy {
1605 1.152 roy
1606 1.152 roy in_if_link_down(ifp);
1607 1.217 ozaki #if NARP > 0
1608 1.205 ozaki lltable_purge_entries(LLTABLE(ifp));
1609 1.217 ozaki #endif
1610 1.152 roy }
1611 1.152 roy
1612 1.152 roy void
1613 1.152 roy in_if_link_state_change(struct ifnet *ifp, int link_state)
1614 1.152 roy {
1615 1.152 roy
1616 1.241 roy /*
1617 1.241 roy * Treat LINK_STATE_UNKNOWN as UP.
1618 1.241 roy * LINK_STATE_UNKNOWN transitions to LINK_STATE_DOWN when
1619 1.241 roy * if_link_state_change() transitions to LINK_STATE_UP.
1620 1.241 roy */
1621 1.241 roy if (link_state == LINK_STATE_DOWN)
1622 1.152 roy in_if_link_down(ifp);
1623 1.241 roy else
1624 1.152 roy in_if_link_up(ifp);
1625 1.152 roy }
1626 1.152 roy
1627 1.152 roy /*
1628 1.146 rmind * in_lookup_multi: look up the in_multi record for a given IP
1629 1.146 rmind * multicast address on a given interface. If no matching record is
1630 1.146 rmind * found, return NULL.
1631 1.146 rmind */
1632 1.146 rmind struct in_multi *
1633 1.146 rmind in_lookup_multi(struct in_addr addr, ifnet_t *ifp)
1634 1.146 rmind {
1635 1.146 rmind struct in_multi *inm;
1636 1.146 rmind
1637 1.146 rmind KASSERT(rw_lock_held(&in_multilock));
1638 1.146 rmind
1639 1.146 rmind LIST_FOREACH(inm, &IN_MULTI_HASH(addr.s_addr, ifp), inm_list) {
1640 1.146 rmind if (in_hosteq(inm->inm_addr, addr) && inm->inm_ifp == ifp)
1641 1.146 rmind break;
1642 1.146 rmind }
1643 1.146 rmind return inm;
1644 1.146 rmind }
1645 1.146 rmind
1646 1.146 rmind /*
1647 1.146 rmind * in_multi_group: check whether the address belongs to an IP multicast
1648 1.146 rmind * group we are joined on this interface. Returns true or false.
1649 1.146 rmind */
1650 1.146 rmind bool
1651 1.146 rmind in_multi_group(struct in_addr addr, ifnet_t *ifp, int flags)
1652 1.146 rmind {
1653 1.146 rmind bool ingroup;
1654 1.146 rmind
1655 1.146 rmind if (__predict_true(flags & IP_IGMP_MCAST) == 0) {
1656 1.146 rmind rw_enter(&in_multilock, RW_READER);
1657 1.146 rmind ingroup = in_lookup_multi(addr, ifp) != NULL;
1658 1.146 rmind rw_exit(&in_multilock);
1659 1.146 rmind } else {
1660 1.146 rmind /* XXX Recursive call from ip_output(). */
1661 1.146 rmind KASSERT(rw_lock_held(&in_multilock));
1662 1.146 rmind ingroup = in_lookup_multi(addr, ifp) != NULL;
1663 1.146 rmind }
1664 1.146 rmind return ingroup;
1665 1.146 rmind }
1666 1.146 rmind
1667 1.146 rmind /*
1668 1.5 hpeyerl * Add an address to the list of IP multicast addresses for a given interface.
1669 1.5 hpeyerl */
1670 1.5 hpeyerl struct in_multi *
1671 1.146 rmind in_addmulti(struct in_addr *ap, ifnet_t *ifp)
1672 1.5 hpeyerl {
1673 1.118 dyoung struct sockaddr_in sin;
1674 1.59 augustss struct in_multi *inm;
1675 1.5 hpeyerl
1676 1.5 hpeyerl /*
1677 1.5 hpeyerl * See if address already in list.
1678 1.5 hpeyerl */
1679 1.146 rmind rw_enter(&in_multilock, RW_WRITER);
1680 1.146 rmind inm = in_lookup_multi(*ap, ifp);
1681 1.5 hpeyerl if (inm != NULL) {
1682 1.5 hpeyerl /*
1683 1.5 hpeyerl * Found it; just increment the reference count.
1684 1.5 hpeyerl */
1685 1.146 rmind inm->inm_refcount++;
1686 1.146 rmind rw_exit(&in_multilock);
1687 1.146 rmind return inm;
1688 1.146 rmind }
1689 1.146 rmind
1690 1.146 rmind /*
1691 1.146 rmind * New address; allocate a new multicast record.
1692 1.146 rmind */
1693 1.146 rmind inm = pool_get(&inmulti_pool, PR_NOWAIT);
1694 1.146 rmind if (inm == NULL) {
1695 1.146 rmind rw_exit(&in_multilock);
1696 1.146 rmind return NULL;
1697 1.146 rmind }
1698 1.146 rmind inm->inm_addr = *ap;
1699 1.146 rmind inm->inm_ifp = ifp;
1700 1.146 rmind inm->inm_refcount = 1;
1701 1.146 rmind
1702 1.146 rmind /*
1703 1.146 rmind * Ask the network driver to update its multicast reception
1704 1.146 rmind * filter appropriately for the new address.
1705 1.146 rmind */
1706 1.146 rmind sockaddr_in_init(&sin, ap, 0);
1707 1.146 rmind if (if_mcast_op(ifp, SIOCADDMULTI, sintosa(&sin)) != 0) {
1708 1.146 rmind rw_exit(&in_multilock);
1709 1.146 rmind pool_put(&inmulti_pool, inm);
1710 1.146 rmind return NULL;
1711 1.146 rmind }
1712 1.146 rmind
1713 1.146 rmind /*
1714 1.146 rmind * Let IGMP know that we have joined a new IP multicast group.
1715 1.146 rmind */
1716 1.146 rmind if (igmp_joingroup(inm) != 0) {
1717 1.146 rmind rw_exit(&in_multilock);
1718 1.146 rmind pool_put(&inmulti_pool, inm);
1719 1.146 rmind return NULL;
1720 1.5 hpeyerl }
1721 1.146 rmind LIST_INSERT_HEAD(
1722 1.146 rmind &IN_MULTI_HASH(inm->inm_addr.s_addr, ifp),
1723 1.146 rmind inm, inm_list);
1724 1.146 rmind in_multientries++;
1725 1.146 rmind rw_exit(&in_multilock);
1726 1.146 rmind
1727 1.146 rmind return inm;
1728 1.5 hpeyerl }
1729 1.5 hpeyerl
1730 1.5 hpeyerl /*
1731 1.5 hpeyerl * Delete a multicast address record.
1732 1.5 hpeyerl */
1733 1.26 christos void
1734 1.103 perry in_delmulti(struct in_multi *inm)
1735 1.5 hpeyerl {
1736 1.118 dyoung struct sockaddr_in sin;
1737 1.5 hpeyerl
1738 1.146 rmind rw_enter(&in_multilock, RW_WRITER);
1739 1.146 rmind if (--inm->inm_refcount > 0) {
1740 1.146 rmind rw_exit(&in_multilock);
1741 1.146 rmind return;
1742 1.146 rmind }
1743 1.146 rmind
1744 1.146 rmind /*
1745 1.146 rmind * No remaining claims to this record; let IGMP know that
1746 1.146 rmind * we are leaving the multicast group.
1747 1.146 rmind */
1748 1.146 rmind igmp_leavegroup(inm);
1749 1.146 rmind
1750 1.146 rmind /*
1751 1.146 rmind * Notify the network driver to update its multicast reception
1752 1.146 rmind * filter.
1753 1.146 rmind */
1754 1.146 rmind sockaddr_in_init(&sin, &inm->inm_addr, 0);
1755 1.146 rmind if_mcast_op(inm->inm_ifp, SIOCDELMULTI, sintosa(&sin));
1756 1.146 rmind
1757 1.146 rmind /*
1758 1.146 rmind * Unlink from list.
1759 1.146 rmind */
1760 1.146 rmind LIST_REMOVE(inm, inm_list);
1761 1.146 rmind in_multientries--;
1762 1.146 rmind rw_exit(&in_multilock);
1763 1.146 rmind
1764 1.146 rmind pool_put(&inmulti_pool, inm);
1765 1.146 rmind }
1766 1.146 rmind
1767 1.146 rmind /*
1768 1.146 rmind * in_next_multi: step through all of the in_multi records, one at a time.
1769 1.146 rmind * The current position is remembered in "step", which the caller must
1770 1.146 rmind * provide. in_first_multi(), below, must be called to initialize "step"
1771 1.146 rmind * and get the first record. Both macros return a NULL "inm" when there
1772 1.146 rmind * are no remaining records.
1773 1.146 rmind */
1774 1.146 rmind struct in_multi *
1775 1.146 rmind in_next_multi(struct in_multistep *step)
1776 1.146 rmind {
1777 1.146 rmind struct in_multi *inm;
1778 1.146 rmind
1779 1.146 rmind KASSERT(rw_lock_held(&in_multilock));
1780 1.146 rmind
1781 1.146 rmind while (step->i_inm == NULL && step->i_n < IN_MULTI_HASH_SIZE) {
1782 1.146 rmind step->i_inm = LIST_FIRST(&in_multihashtbl[++step->i_n]);
1783 1.146 rmind }
1784 1.146 rmind if ((inm = step->i_inm) != NULL) {
1785 1.146 rmind step->i_inm = LIST_NEXT(inm, inm_list);
1786 1.5 hpeyerl }
1787 1.146 rmind return inm;
1788 1.146 rmind }
1789 1.146 rmind
1790 1.146 rmind struct in_multi *
1791 1.146 rmind in_first_multi(struct in_multistep *step)
1792 1.146 rmind {
1793 1.146 rmind KASSERT(rw_lock_held(&in_multilock));
1794 1.146 rmind
1795 1.146 rmind step->i_n = 0;
1796 1.146 rmind step->i_inm = LIST_FIRST(&in_multihashtbl[0]);
1797 1.146 rmind return in_next_multi(step);
1798 1.146 rmind }
1799 1.146 rmind
1800 1.146 rmind void
1801 1.146 rmind in_multi_lock(int op)
1802 1.146 rmind {
1803 1.146 rmind rw_enter(&in_multilock, op);
1804 1.146 rmind }
1805 1.146 rmind
1806 1.146 rmind void
1807 1.146 rmind in_multi_unlock(void)
1808 1.146 rmind {
1809 1.146 rmind rw_exit(&in_multilock);
1810 1.146 rmind }
1811 1.146 rmind
1812 1.146 rmind int
1813 1.146 rmind in_multi_lock_held(void)
1814 1.146 rmind {
1815 1.146 rmind return rw_lock_held(&in_multilock);
1816 1.5 hpeyerl }
1817 1.145 rmind
1818 1.178 ozaki struct in_ifaddr *
1819 1.145 rmind in_selectsrc(struct sockaddr_in *sin, struct route *ro,
1820 1.178 ozaki int soopts, struct ip_moptions *mopts, int *errorp, struct psref *psref)
1821 1.145 rmind {
1822 1.145 rmind struct rtentry *rt = NULL;
1823 1.145 rmind struct in_ifaddr *ia = NULL;
1824 1.145 rmind
1825 1.178 ozaki KASSERT(ISSET(curlwp->l_pflag, LP_BOUND));
1826 1.145 rmind /*
1827 1.145 rmind * If route is known or can be allocated now, take the
1828 1.145 rmind * source address from the interface. Otherwise, punt.
1829 1.145 rmind */
1830 1.145 rmind if ((soopts & SO_DONTROUTE) != 0)
1831 1.145 rmind rtcache_free(ro);
1832 1.145 rmind else {
1833 1.145 rmind union {
1834 1.145 rmind struct sockaddr dst;
1835 1.145 rmind struct sockaddr_in dst4;
1836 1.145 rmind } u;
1837 1.145 rmind
1838 1.145 rmind sockaddr_in_init(&u.dst4, &sin->sin_addr, 0);
1839 1.145 rmind rt = rtcache_lookup(ro, &u.dst);
1840 1.145 rmind }
1841 1.145 rmind /*
1842 1.145 rmind * If we found a route, use the address
1843 1.145 rmind * corresponding to the outgoing interface
1844 1.145 rmind * unless it is the loopback (in case a route
1845 1.145 rmind * to our address on another net goes to loopback).
1846 1.145 rmind *
1847 1.145 rmind * XXX Is this still true? Do we care?
1848 1.145 rmind */
1849 1.178 ozaki if (rt != NULL && (rt->rt_ifp->if_flags & IFF_LOOPBACK) == 0) {
1850 1.178 ozaki int s;
1851 1.178 ozaki struct ifaddr *ifa;
1852 1.178 ozaki /*
1853 1.178 ozaki * Just in case. May not need to do this workaround.
1854 1.178 ozaki * Revisit when working on rtentry MP-ification.
1855 1.178 ozaki */
1856 1.178 ozaki s = pserialize_read_enter();
1857 1.178 ozaki IFADDR_READER_FOREACH(ifa, rt->rt_ifp) {
1858 1.178 ozaki if (ifa == rt->rt_ifa)
1859 1.178 ozaki break;
1860 1.178 ozaki }
1861 1.178 ozaki if (ifa != NULL)
1862 1.178 ozaki ifa_acquire(ifa, psref);
1863 1.178 ozaki pserialize_read_exit(s);
1864 1.178 ozaki
1865 1.178 ozaki ia = ifatoia(ifa);
1866 1.178 ozaki }
1867 1.145 rmind if (ia == NULL) {
1868 1.244 ozaki in_port_t fport = sin->sin_port;
1869 1.178 ozaki struct ifaddr *ifa;
1870 1.178 ozaki int s;
1871 1.145 rmind
1872 1.145 rmind sin->sin_port = 0;
1873 1.178 ozaki ifa = ifa_ifwithladdr_psref(sintosa(sin), psref);
1874 1.145 rmind sin->sin_port = fport;
1875 1.178 ozaki if (ifa == NULL) {
1876 1.145 rmind /* Find 1st non-loopback AF_INET address */
1877 1.178 ozaki s = pserialize_read_enter();
1878 1.171 ozaki IN_ADDRLIST_READER_FOREACH(ia) {
1879 1.145 rmind if (!(ia->ia_ifp->if_flags & IFF_LOOPBACK))
1880 1.145 rmind break;
1881 1.145 rmind }
1882 1.178 ozaki if (ia != NULL)
1883 1.178 ozaki ia4_acquire(ia, psref);
1884 1.178 ozaki pserialize_read_exit(s);
1885 1.178 ozaki } else {
1886 1.178 ozaki /* ia is already referenced by psref */
1887 1.178 ozaki ia = ifatoia(ifa);
1888 1.145 rmind }
1889 1.145 rmind if (ia == NULL) {
1890 1.145 rmind *errorp = EADDRNOTAVAIL;
1891 1.190 ozaki goto out;
1892 1.145 rmind }
1893 1.145 rmind }
1894 1.145 rmind /*
1895 1.145 rmind * If the destination address is multicast and an outgoing
1896 1.145 rmind * interface has been set as a multicast option, use the
1897 1.145 rmind * address of that interface as our source address.
1898 1.145 rmind */
1899 1.145 rmind if (IN_MULTICAST(sin->sin_addr.s_addr) && mopts != NULL) {
1900 1.145 rmind struct ip_moptions *imo;
1901 1.145 rmind
1902 1.145 rmind imo = mopts;
1903 1.167 ozaki if (imo->imo_multicast_if_index != 0) {
1904 1.167 ozaki struct ifnet *ifp;
1905 1.178 ozaki int s;
1906 1.167 ozaki
1907 1.178 ozaki if (ia != NULL)
1908 1.178 ozaki ia4_release(ia, psref);
1909 1.178 ozaki s = pserialize_read_enter();
1910 1.167 ozaki ifp = if_byindex(imo->imo_multicast_if_index);
1911 1.167 ozaki if (ifp != NULL) {
1912 1.178 ozaki /* XXX */
1913 1.178 ozaki ia = in_get_ia_from_ifp_psref(ifp, psref);
1914 1.167 ozaki } else
1915 1.167 ozaki ia = NULL;
1916 1.167 ozaki if (ia == NULL || ia->ia4_flags & IN_IFF_NOTREADY) {
1917 1.167 ozaki pserialize_read_exit(s);
1918 1.178 ozaki if (ia != NULL)
1919 1.178 ozaki ia4_release(ia, psref);
1920 1.145 rmind *errorp = EADDRNOTAVAIL;
1921 1.190 ozaki ia = NULL;
1922 1.190 ozaki goto out;
1923 1.145 rmind }
1924 1.167 ozaki pserialize_read_exit(s);
1925 1.145 rmind }
1926 1.145 rmind }
1927 1.145 rmind if (ia->ia_ifa.ifa_getifa != NULL) {
1928 1.145 rmind ia = ifatoia((*ia->ia_ifa.ifa_getifa)(&ia->ia_ifa,
1929 1.145 rmind sintosa(sin)));
1930 1.152 roy if (ia == NULL) {
1931 1.152 roy *errorp = EADDRNOTAVAIL;
1932 1.190 ozaki goto out;
1933 1.152 roy }
1934 1.178 ozaki /* FIXME NOMPSAFE */
1935 1.178 ozaki ia4_acquire(ia, psref);
1936 1.145 rmind }
1937 1.145 rmind #ifdef GETIFA_DEBUG
1938 1.145 rmind else
1939 1.145 rmind printf("%s: missing ifa_getifa\n", __func__);
1940 1.145 rmind #endif
1941 1.190 ozaki out:
1942 1.190 ozaki rtcache_unref(rt, ro);
1943 1.178 ozaki return ia;
1944 1.145 rmind }
1945 1.145 rmind
1946 1.214 knakahar int
1947 1.214 knakahar in_tunnel_validate(const struct ip *ip, struct in_addr src, struct in_addr dst)
1948 1.214 knakahar {
1949 1.214 knakahar struct in_ifaddr *ia4;
1950 1.214 knakahar int s;
1951 1.214 knakahar
1952 1.214 knakahar /* check for address match */
1953 1.214 knakahar if (src.s_addr != ip->ip_dst.s_addr ||
1954 1.214 knakahar dst.s_addr != ip->ip_src.s_addr)
1955 1.214 knakahar return 0;
1956 1.214 knakahar
1957 1.214 knakahar /* martian filters on outer source - NOT done in ip_input! */
1958 1.214 knakahar if (IN_MULTICAST(ip->ip_src.s_addr))
1959 1.214 knakahar return 0;
1960 1.214 knakahar switch ((ntohl(ip->ip_src.s_addr) & 0xff000000) >> 24) {
1961 1.214 knakahar case 0:
1962 1.214 knakahar case 127:
1963 1.214 knakahar case 255:
1964 1.214 knakahar return 0;
1965 1.214 knakahar }
1966 1.214 knakahar /* reject packets with broadcast on source */
1967 1.214 knakahar s = pserialize_read_enter();
1968 1.214 knakahar IN_ADDRLIST_READER_FOREACH(ia4) {
1969 1.214 knakahar if ((ia4->ia_ifa.ifa_ifp->if_flags & IFF_BROADCAST) == 0)
1970 1.214 knakahar continue;
1971 1.214 knakahar if (ip->ip_src.s_addr == ia4->ia_broadaddr.sin_addr.s_addr) {
1972 1.214 knakahar pserialize_read_exit(s);
1973 1.214 knakahar return 0;
1974 1.214 knakahar }
1975 1.214 knakahar }
1976 1.214 knakahar pserialize_read_exit(s);
1977 1.214 knakahar
1978 1.214 knakahar /* NOTE: packet may dropped by uRPF */
1979 1.214 knakahar
1980 1.214 knakahar /* return valid bytes length */
1981 1.214 knakahar return sizeof(src) + sizeof(dst);
1982 1.214 knakahar }
1983 1.214 knakahar
1984 1.163 ozaki #if NARP > 0
1985 1.161 ozaki
1986 1.158 ozaki #define IN_LLTBL_DEFAULT_HSIZE 32
1987 1.158 ozaki #define IN_LLTBL_HASH(k, h) \
1988 1.158 ozaki (((((((k >> 8) ^ k) >> 8) ^ k) >> 8) ^ k) & ((h) - 1))
1989 1.158 ozaki
1990 1.158 ozaki /*
1991 1.158 ozaki * Do actual deallocation of @lle.
1992 1.158 ozaki * Called by LLE_FREE_LOCKED when number of references
1993 1.158 ozaki * drops to zero.
1994 1.158 ozaki */
1995 1.158 ozaki static void
1996 1.158 ozaki in_lltable_destroy_lle(struct llentry *lle)
1997 1.158 ozaki {
1998 1.158 ozaki
1999 1.235 ozaki KASSERTMSG(lle->la_numheld == 0, "la_numheld=%d", lle->la_numheld);
2000 1.220 ozaki
2001 1.158 ozaki LLE_WUNLOCK(lle);
2002 1.158 ozaki LLE_LOCK_DESTROY(lle);
2003 1.223 ozaki llentry_pool_put(lle);
2004 1.158 ozaki }
2005 1.158 ozaki
2006 1.158 ozaki static struct llentry *
2007 1.158 ozaki in_lltable_new(struct in_addr addr4, u_int flags)
2008 1.158 ozaki {
2009 1.223 ozaki struct llentry *lle;
2010 1.158 ozaki
2011 1.223 ozaki lle = llentry_pool_get(PR_NOWAIT);
2012 1.158 ozaki if (lle == NULL) /* NB: caller generates msg */
2013 1.158 ozaki return NULL;
2014 1.158 ozaki
2015 1.223 ozaki lle->r_l3addr.addr4 = addr4;
2016 1.223 ozaki lle->lle_refcnt = 1;
2017 1.223 ozaki lle->lle_free = in_lltable_destroy_lle;
2018 1.223 ozaki LLE_LOCK_INIT(lle);
2019 1.223 ozaki callout_init(&lle->la_timer, CALLOUT_MPSAFE);
2020 1.158 ozaki
2021 1.223 ozaki return lle;
2022 1.158 ozaki }
2023 1.158 ozaki
2024 1.158 ozaki #define IN_ARE_MASKED_ADDR_EQUAL(d, a, m) ( \
2025 1.158 ozaki (((ntohl((d).s_addr) ^ (a)->sin_addr.s_addr) & (m)->sin_addr.s_addr)) == 0 )
2026 1.158 ozaki
2027 1.158 ozaki static int
2028 1.158 ozaki in_lltable_match_prefix(const struct sockaddr *prefix,
2029 1.158 ozaki const struct sockaddr *mask, u_int flags, struct llentry *lle)
2030 1.158 ozaki {
2031 1.158 ozaki const struct sockaddr_in *pfx = (const struct sockaddr_in *)prefix;
2032 1.158 ozaki const struct sockaddr_in *msk = (const struct sockaddr_in *)mask;
2033 1.204 ozaki struct in_addr lle_addr;
2034 1.204 ozaki
2035 1.204 ozaki lle_addr.s_addr = ntohl(lle->r_l3addr.addr4.s_addr);
2036 1.158 ozaki
2037 1.158 ozaki /*
2038 1.158 ozaki * (flags & LLE_STATIC) means deleting all entries
2039 1.158 ozaki * including static ARP entries.
2040 1.158 ozaki */
2041 1.204 ozaki if (IN_ARE_MASKED_ADDR_EQUAL(lle_addr, pfx, msk) &&
2042 1.158 ozaki ((flags & LLE_STATIC) || !(lle->la_flags & LLE_STATIC)))
2043 1.158 ozaki return (1);
2044 1.158 ozaki
2045 1.158 ozaki return (0);
2046 1.158 ozaki }
2047 1.158 ozaki
2048 1.158 ozaki static void
2049 1.158 ozaki in_lltable_free_entry(struct lltable *llt, struct llentry *lle)
2050 1.158 ozaki {
2051 1.158 ozaki size_t pkts_dropped;
2052 1.158 ozaki
2053 1.158 ozaki LLE_WLOCK_ASSERT(lle);
2054 1.158 ozaki KASSERT(llt != NULL);
2055 1.158 ozaki
2056 1.158 ozaki pkts_dropped = llentry_free(lle);
2057 1.159 ozaki arp_stat_add(ARP_STAT_DFRDROPPED, (uint64_t)pkts_dropped);
2058 1.158 ozaki }
2059 1.158 ozaki
2060 1.158 ozaki static int
2061 1.209 ozaki in_lltable_rtcheck(struct ifnet *ifp, u_int flags, const struct sockaddr *l3addr,
2062 1.209 ozaki const struct rtentry *rt)
2063 1.158 ozaki {
2064 1.158 ozaki int error = EINVAL;
2065 1.158 ozaki
2066 1.158 ozaki if (rt == NULL)
2067 1.158 ozaki return error;
2068 1.158 ozaki
2069 1.158 ozaki /*
2070 1.158 ozaki * If the gateway for an existing host route matches the target L3
2071 1.158 ozaki * address, which is a special route inserted by some implementation
2072 1.158 ozaki * such as MANET, and the interface is of the correct type, then
2073 1.158 ozaki * allow for ARP to proceed.
2074 1.158 ozaki */
2075 1.158 ozaki if (rt->rt_flags & RTF_GATEWAY) {
2076 1.158 ozaki if (!(rt->rt_flags & RTF_HOST) || !rt->rt_ifp ||
2077 1.158 ozaki rt->rt_ifp->if_type != IFT_ETHER ||
2078 1.158 ozaki (rt->rt_ifp->if_flags & IFF_NOARP) != 0 ||
2079 1.158 ozaki memcmp(rt->rt_gateway->sa_data, l3addr->sa_data,
2080 1.158 ozaki sizeof(in_addr_t)) != 0) {
2081 1.158 ozaki goto error;
2082 1.158 ozaki }
2083 1.158 ozaki }
2084 1.158 ozaki
2085 1.158 ozaki /*
2086 1.158 ozaki * Make sure that at least the destination address is covered
2087 1.158 ozaki * by the route. This is for handling the case where 2 or more
2088 1.158 ozaki * interfaces have the same prefix. An incoming packet arrives
2089 1.158 ozaki * on one interface and the corresponding outgoing packet leaves
2090 1.158 ozaki * another interface.
2091 1.158 ozaki */
2092 1.158 ozaki if (!(rt->rt_flags & RTF_HOST) && rt->rt_ifp != ifp) {
2093 1.158 ozaki const char *sa, *mask, *addr, *lim;
2094 1.158 ozaki int len;
2095 1.158 ozaki
2096 1.158 ozaki mask = (const char *)rt_mask(rt);
2097 1.158 ozaki /*
2098 1.158 ozaki * Just being extra cautious to avoid some custom
2099 1.158 ozaki * code getting into trouble.
2100 1.158 ozaki */
2101 1.158 ozaki if (mask == NULL)
2102 1.158 ozaki goto error;
2103 1.158 ozaki
2104 1.158 ozaki sa = (const char *)rt_getkey(rt);
2105 1.158 ozaki addr = (const char *)l3addr;
2106 1.158 ozaki len = ((const struct sockaddr_in *)l3addr)->sin_len;
2107 1.158 ozaki lim = addr + len;
2108 1.158 ozaki
2109 1.158 ozaki for ( ; addr < lim; sa++, mask++, addr++) {
2110 1.158 ozaki if ((*sa ^ *addr) & *mask) {
2111 1.158 ozaki #ifdef DIAGNOSTIC
2112 1.158 ozaki log(LOG_INFO, "IPv4 address: \"%s\" is not on the network\n",
2113 1.158 ozaki inet_ntoa(((const struct sockaddr_in *)l3addr)->sin_addr));
2114 1.158 ozaki #endif
2115 1.158 ozaki goto error;
2116 1.158 ozaki }
2117 1.158 ozaki }
2118 1.158 ozaki }
2119 1.158 ozaki
2120 1.158 ozaki error = 0;
2121 1.158 ozaki error:
2122 1.158 ozaki return error;
2123 1.158 ozaki }
2124 1.158 ozaki
2125 1.158 ozaki static inline uint32_t
2126 1.158 ozaki in_lltable_hash_dst(const struct in_addr dst, uint32_t hsize)
2127 1.158 ozaki {
2128 1.158 ozaki
2129 1.158 ozaki return (IN_LLTBL_HASH(dst.s_addr, hsize));
2130 1.158 ozaki }
2131 1.158 ozaki
2132 1.158 ozaki static uint32_t
2133 1.158 ozaki in_lltable_hash(const struct llentry *lle, uint32_t hsize)
2134 1.158 ozaki {
2135 1.158 ozaki
2136 1.158 ozaki return (in_lltable_hash_dst(lle->r_l3addr.addr4, hsize));
2137 1.158 ozaki }
2138 1.158 ozaki
2139 1.158 ozaki static void
2140 1.158 ozaki in_lltable_fill_sa_entry(const struct llentry *lle, struct sockaddr *sa)
2141 1.158 ozaki {
2142 1.158 ozaki struct sockaddr_in *sin;
2143 1.158 ozaki
2144 1.158 ozaki sin = (struct sockaddr_in *)sa;
2145 1.158 ozaki memset(sin, 0, sizeof(*sin));
2146 1.158 ozaki sin->sin_family = AF_INET;
2147 1.158 ozaki sin->sin_len = sizeof(*sin);
2148 1.158 ozaki sin->sin_addr = lle->r_l3addr.addr4;
2149 1.158 ozaki }
2150 1.158 ozaki
2151 1.158 ozaki static inline struct llentry *
2152 1.158 ozaki in_lltable_find_dst(struct lltable *llt, struct in_addr dst)
2153 1.158 ozaki {
2154 1.158 ozaki struct llentry *lle;
2155 1.158 ozaki struct llentries *lleh;
2156 1.158 ozaki u_int hashidx;
2157 1.158 ozaki
2158 1.158 ozaki hashidx = in_lltable_hash_dst(dst, llt->llt_hsize);
2159 1.158 ozaki lleh = &llt->lle_head[hashidx];
2160 1.158 ozaki LIST_FOREACH(lle, lleh, lle_next) {
2161 1.158 ozaki if (lle->la_flags & LLE_DELETED)
2162 1.158 ozaki continue;
2163 1.158 ozaki if (lle->r_l3addr.addr4.s_addr == dst.s_addr)
2164 1.158 ozaki break;
2165 1.158 ozaki }
2166 1.158 ozaki
2167 1.158 ozaki return (lle);
2168 1.158 ozaki }
2169 1.158 ozaki
2170 1.158 ozaki static int
2171 1.158 ozaki in_lltable_delete(struct lltable *llt, u_int flags,
2172 1.158 ozaki const struct sockaddr *l3addr)
2173 1.158 ozaki {
2174 1.158 ozaki const struct sockaddr_in *sin = (const struct sockaddr_in *)l3addr;
2175 1.160 ozaki struct ifnet *ifp __diagused = llt->llt_ifp;
2176 1.158 ozaki struct llentry *lle;
2177 1.158 ozaki
2178 1.158 ozaki IF_AFDATA_WLOCK_ASSERT(ifp);
2179 1.158 ozaki KASSERTMSG(l3addr->sa_family == AF_INET,
2180 1.158 ozaki "sin_family %d", l3addr->sa_family);
2181 1.158 ozaki
2182 1.158 ozaki lle = in_lltable_find_dst(llt, sin->sin_addr);
2183 1.158 ozaki if (lle == NULL) {
2184 1.216 ozaki #ifdef LLTABLE_DEBUG
2185 1.200 ozaki char buf[64];
2186 1.200 ozaki sockaddr_format(l3addr, buf, sizeof(buf));
2187 1.200 ozaki log(LOG_INFO, "%s: cache for %s is not found\n",
2188 1.200 ozaki __func__, buf);
2189 1.158 ozaki #endif
2190 1.158 ozaki return (ENOENT);
2191 1.158 ozaki }
2192 1.158 ozaki
2193 1.165 ozaki LLE_WLOCK(lle);
2194 1.216 ozaki #ifdef LLTABLE_DEBUG
2195 1.200 ozaki {
2196 1.200 ozaki char buf[64];
2197 1.200 ozaki sockaddr_format(l3addr, buf, sizeof(buf));
2198 1.200 ozaki log(LOG_INFO, "%s: cache for %s (%p) is deleted\n",
2199 1.200 ozaki __func__, buf, lle);
2200 1.200 ozaki }
2201 1.158 ozaki #endif
2202 1.222 ozaki llentry_free(lle);
2203 1.158 ozaki
2204 1.158 ozaki return (0);
2205 1.158 ozaki }
2206 1.158 ozaki
2207 1.158 ozaki static struct llentry *
2208 1.209 ozaki in_lltable_create(struct lltable *llt, u_int flags, const struct sockaddr *l3addr,
2209 1.209 ozaki const struct rtentry *rt)
2210 1.158 ozaki {
2211 1.158 ozaki const struct sockaddr_in *sin = (const struct sockaddr_in *)l3addr;
2212 1.158 ozaki struct ifnet *ifp = llt->llt_ifp;
2213 1.158 ozaki struct llentry *lle;
2214 1.158 ozaki
2215 1.158 ozaki IF_AFDATA_WLOCK_ASSERT(ifp);
2216 1.158 ozaki KASSERTMSG(l3addr->sa_family == AF_INET,
2217 1.158 ozaki "sin_family %d", l3addr->sa_family);
2218 1.158 ozaki
2219 1.158 ozaki lle = in_lltable_find_dst(llt, sin->sin_addr);
2220 1.158 ozaki
2221 1.158 ozaki if (lle != NULL) {
2222 1.158 ozaki LLE_WLOCK(lle);
2223 1.158 ozaki return (lle);
2224 1.158 ozaki }
2225 1.158 ozaki
2226 1.158 ozaki /* no existing record, we need to create new one */
2227 1.158 ozaki
2228 1.158 ozaki /*
2229 1.158 ozaki * A route that covers the given address must have
2230 1.158 ozaki * been installed 1st because we are doing a resolution,
2231 1.158 ozaki * verify this.
2232 1.158 ozaki */
2233 1.158 ozaki if (!(flags & LLE_IFADDR) &&
2234 1.209 ozaki in_lltable_rtcheck(ifp, flags, l3addr, rt) != 0)
2235 1.158 ozaki return (NULL);
2236 1.158 ozaki
2237 1.158 ozaki lle = in_lltable_new(sin->sin_addr, flags);
2238 1.158 ozaki if (lle == NULL) {
2239 1.158 ozaki log(LOG_INFO, "lla_lookup: new lle malloc failed\n");
2240 1.158 ozaki return (NULL);
2241 1.158 ozaki }
2242 1.158 ozaki lle->la_flags = flags;
2243 1.158 ozaki if ((flags & LLE_IFADDR) == LLE_IFADDR) {
2244 1.158 ozaki memcpy(&lle->ll_addr, CLLADDR(ifp->if_sadl), ifp->if_addrlen);
2245 1.158 ozaki lle->la_flags |= (LLE_VALID | LLE_STATIC);
2246 1.158 ozaki }
2247 1.158 ozaki
2248 1.158 ozaki lltable_link_entry(llt, lle);
2249 1.158 ozaki LLE_WLOCK(lle);
2250 1.158 ozaki
2251 1.158 ozaki return (lle);
2252 1.158 ozaki }
2253 1.158 ozaki
2254 1.158 ozaki /*
2255 1.158 ozaki * Return NULL if not found or marked for deletion.
2256 1.158 ozaki * If found return lle read locked.
2257 1.158 ozaki */
2258 1.158 ozaki static struct llentry *
2259 1.158 ozaki in_lltable_lookup(struct lltable *llt, u_int flags, const struct sockaddr *l3addr)
2260 1.158 ozaki {
2261 1.158 ozaki const struct sockaddr_in *sin = (const struct sockaddr_in *)l3addr;
2262 1.158 ozaki struct llentry *lle;
2263 1.158 ozaki
2264 1.158 ozaki IF_AFDATA_LOCK_ASSERT(llt->llt_ifp);
2265 1.158 ozaki KASSERTMSG(l3addr->sa_family == AF_INET,
2266 1.158 ozaki "sin_family %d", l3addr->sa_family);
2267 1.158 ozaki
2268 1.158 ozaki lle = in_lltable_find_dst(llt, sin->sin_addr);
2269 1.158 ozaki
2270 1.158 ozaki if (lle == NULL)
2271 1.158 ozaki return NULL;
2272 1.158 ozaki
2273 1.158 ozaki if (flags & LLE_EXCLUSIVE)
2274 1.158 ozaki LLE_WLOCK(lle);
2275 1.158 ozaki else
2276 1.158 ozaki LLE_RLOCK(lle);
2277 1.158 ozaki
2278 1.158 ozaki return lle;
2279 1.158 ozaki }
2280 1.158 ozaki
2281 1.165 ozaki static int
2282 1.165 ozaki in_lltable_dump_entry(struct lltable *llt, struct llentry *lle,
2283 1.165 ozaki struct rt_walkarg *w)
2284 1.165 ozaki {
2285 1.165 ozaki struct sockaddr_in sin;
2286 1.165 ozaki
2287 1.165 ozaki LLTABLE_LOCK_ASSERT();
2288 1.165 ozaki
2289 1.165 ozaki /* skip deleted entries */
2290 1.165 ozaki if (lle->la_flags & LLE_DELETED)
2291 1.165 ozaki return 0;
2292 1.165 ozaki
2293 1.165 ozaki sockaddr_in_init(&sin, &lle->r_l3addr.addr4, 0);
2294 1.165 ozaki
2295 1.165 ozaki return lltable_dump_entry(llt, lle, w, sintosa(&sin));
2296 1.165 ozaki }
2297 1.165 ozaki
2298 1.163 ozaki #endif /* NARP > 0 */
2299 1.161 ozaki
2300 1.175 christos static int
2301 1.175 christos in_multicast_sysctl(SYSCTLFN_ARGS)
2302 1.175 christos {
2303 1.175 christos struct ifnet *ifp;
2304 1.175 christos struct ifaddr *ifa;
2305 1.175 christos struct in_ifaddr *ifa4;
2306 1.175 christos struct in_multi *inm;
2307 1.175 christos uint32_t tmp;
2308 1.175 christos int error;
2309 1.175 christos size_t written;
2310 1.175 christos struct psref psref;
2311 1.175 christos int bound;
2312 1.175 christos
2313 1.175 christos if (namelen != 1)
2314 1.175 christos return EINVAL;
2315 1.175 christos
2316 1.175 christos bound = curlwp_bind();
2317 1.175 christos ifp = if_get_byindex(name[0], &psref);
2318 1.175 christos if (ifp == NULL) {
2319 1.175 christos curlwp_bindx(bound);
2320 1.175 christos return ENODEV;
2321 1.175 christos }
2322 1.175 christos
2323 1.175 christos if (oldp == NULL) {
2324 1.175 christos *oldlenp = 0;
2325 1.175 christos IFADDR_FOREACH(ifa, ifp) {
2326 1.175 christos if (ifa->ifa_addr->sa_family != AF_INET)
2327 1.175 christos continue;
2328 1.175 christos ifa4 = (void *)ifa;
2329 1.175 christos LIST_FOREACH(inm, &ifa4->ia_multiaddrs, inm_list) {
2330 1.175 christos *oldlenp += 2 * sizeof(struct in_addr) +
2331 1.175 christos sizeof(uint32_t);
2332 1.175 christos }
2333 1.175 christos }
2334 1.175 christos if_put(ifp, &psref);
2335 1.175 christos curlwp_bindx(bound);
2336 1.175 christos return 0;
2337 1.175 christos }
2338 1.175 christos
2339 1.175 christos error = 0;
2340 1.175 christos written = 0;
2341 1.175 christos IFADDR_FOREACH(ifa, ifp) {
2342 1.175 christos if (ifa->ifa_addr->sa_family != AF_INET)
2343 1.175 christos continue;
2344 1.175 christos ifa4 = (void *)ifa;
2345 1.175 christos LIST_FOREACH(inm, &ifa4->ia_multiaddrs, inm_list) {
2346 1.175 christos if (written + 2 * sizeof(struct in_addr) +
2347 1.175 christos sizeof(uint32_t) > *oldlenp)
2348 1.175 christos goto done;
2349 1.175 christos error = sysctl_copyout(l, &ifa4->ia_addr.sin_addr,
2350 1.175 christos oldp, sizeof(struct in_addr));
2351 1.175 christos if (error)
2352 1.175 christos goto done;
2353 1.175 christos oldp = (char *)oldp + sizeof(struct in_addr);
2354 1.175 christos written += sizeof(struct in_addr);
2355 1.175 christos error = sysctl_copyout(l, &inm->inm_addr,
2356 1.175 christos oldp, sizeof(struct in_addr));
2357 1.175 christos if (error)
2358 1.175 christos goto done;
2359 1.175 christos oldp = (char *)oldp + sizeof(struct in_addr);
2360 1.175 christos written += sizeof(struct in_addr);
2361 1.175 christos tmp = inm->inm_refcount;
2362 1.175 christos error = sysctl_copyout(l, &tmp, oldp, sizeof(tmp));
2363 1.175 christos if (error)
2364 1.175 christos goto done;
2365 1.175 christos oldp = (char *)oldp + sizeof(tmp);
2366 1.175 christos written += sizeof(tmp);
2367 1.175 christos }
2368 1.175 christos }
2369 1.175 christos done:
2370 1.175 christos if_put(ifp, &psref);
2371 1.175 christos curlwp_bindx(bound);
2372 1.175 christos *oldlenp = written;
2373 1.175 christos return error;
2374 1.175 christos }
2375 1.175 christos
2376 1.145 rmind static void
2377 1.145 rmind in_sysctl_init(struct sysctllog **clog)
2378 1.145 rmind {
2379 1.145 rmind sysctl_createv(clog, 0, NULL, NULL,
2380 1.145 rmind CTLFLAG_PERMANENT,
2381 1.145 rmind CTLTYPE_NODE, "inet",
2382 1.145 rmind SYSCTL_DESCR("PF_INET related settings"),
2383 1.145 rmind NULL, 0, NULL, 0,
2384 1.145 rmind CTL_NET, PF_INET, CTL_EOL);
2385 1.145 rmind sysctl_createv(clog, 0, NULL, NULL,
2386 1.145 rmind CTLFLAG_PERMANENT,
2387 1.175 christos CTLTYPE_NODE, "multicast",
2388 1.175 christos SYSCTL_DESCR("Multicast information"),
2389 1.175 christos in_multicast_sysctl, 0, NULL, 0,
2390 1.175 christos CTL_NET, PF_INET, CTL_CREATE, CTL_EOL);
2391 1.175 christos sysctl_createv(clog, 0, NULL, NULL,
2392 1.175 christos CTLFLAG_PERMANENT,
2393 1.145 rmind CTLTYPE_NODE, "ip",
2394 1.145 rmind SYSCTL_DESCR("IPv4 related settings"),
2395 1.145 rmind NULL, 0, NULL, 0,
2396 1.145 rmind CTL_NET, PF_INET, IPPROTO_IP, CTL_EOL);
2397 1.145 rmind
2398 1.145 rmind sysctl_createv(clog, 0, NULL, NULL,
2399 1.145 rmind CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
2400 1.145 rmind CTLTYPE_INT, "subnetsarelocal",
2401 1.145 rmind SYSCTL_DESCR("Whether logical subnets are considered "
2402 1.145 rmind "local"),
2403 1.145 rmind NULL, 0, &subnetsarelocal, 0,
2404 1.145 rmind CTL_NET, PF_INET, IPPROTO_IP,
2405 1.145 rmind IPCTL_SUBNETSARELOCAL, CTL_EOL);
2406 1.145 rmind sysctl_createv(clog, 0, NULL, NULL,
2407 1.145 rmind CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
2408 1.145 rmind CTLTYPE_INT, "hostzerobroadcast",
2409 1.145 rmind SYSCTL_DESCR("All zeroes address is broadcast address"),
2410 1.145 rmind NULL, 0, &hostzeroisbroadcast, 0,
2411 1.145 rmind CTL_NET, PF_INET, IPPROTO_IP,
2412 1.145 rmind IPCTL_HOSTZEROBROADCAST, CTL_EOL);
2413 1.145 rmind }
2414 1.158 ozaki
2415 1.163 ozaki #if NARP > 0
2416 1.163 ozaki
2417 1.158 ozaki static struct lltable *
2418 1.246 yamt in_lltattach(struct ifnet *ifp, struct in_ifinfo *ii)
2419 1.158 ozaki {
2420 1.158 ozaki struct lltable *llt;
2421 1.158 ozaki
2422 1.158 ozaki llt = lltable_allocate_htbl(IN_LLTBL_DEFAULT_HSIZE);
2423 1.158 ozaki llt->llt_af = AF_INET;
2424 1.158 ozaki llt->llt_ifp = ifp;
2425 1.158 ozaki
2426 1.158 ozaki llt->llt_lookup = in_lltable_lookup;
2427 1.158 ozaki llt->llt_create = in_lltable_create;
2428 1.158 ozaki llt->llt_delete = in_lltable_delete;
2429 1.158 ozaki llt->llt_dump_entry = in_lltable_dump_entry;
2430 1.158 ozaki llt->llt_hash = in_lltable_hash;
2431 1.158 ozaki llt->llt_fill_sa_entry = in_lltable_fill_sa_entry;
2432 1.158 ozaki llt->llt_free_entry = in_lltable_free_entry;
2433 1.158 ozaki llt->llt_match_prefix = in_lltable_match_prefix;
2434 1.246 yamt #ifdef MBUFTRACE
2435 1.246 yamt struct mowner *mowner = &ii->ii_mowner;
2436 1.246 yamt mowner_init_owner(mowner, ifp->if_xname, "arp");
2437 1.246 yamt MOWNER_ATTACH(mowner);
2438 1.246 yamt llt->llt_mowner = mowner;
2439 1.246 yamt #endif
2440 1.158 ozaki lltable_link(llt);
2441 1.158 ozaki
2442 1.158 ozaki return (llt);
2443 1.158 ozaki }
2444 1.163 ozaki
2445 1.163 ozaki #endif /* NARP > 0 */
2446 1.158 ozaki
2447 1.158 ozaki void *
2448 1.158 ozaki in_domifattach(struct ifnet *ifp)
2449 1.158 ozaki {
2450 1.158 ozaki struct in_ifinfo *ii;
2451 1.158 ozaki
2452 1.158 ozaki ii = kmem_zalloc(sizeof(struct in_ifinfo), KM_SLEEP);
2453 1.158 ozaki
2454 1.163 ozaki #if NARP > 0
2455 1.246 yamt ii->ii_llt = in_lltattach(ifp, ii);
2456 1.161 ozaki #endif
2457 1.158 ozaki
2458 1.158 ozaki #ifdef IPSELSRC
2459 1.158 ozaki ii->ii_selsrc = in_selsrc_domifattach(ifp);
2460 1.158 ozaki KASSERT(ii->ii_selsrc != NULL);
2461 1.158 ozaki #endif
2462 1.158 ozaki
2463 1.158 ozaki return ii;
2464 1.158 ozaki }
2465 1.158 ozaki
2466 1.158 ozaki void
2467 1.158 ozaki in_domifdetach(struct ifnet *ifp, void *aux)
2468 1.158 ozaki {
2469 1.158 ozaki struct in_ifinfo *ii = aux;
2470 1.158 ozaki
2471 1.158 ozaki #ifdef IPSELSRC
2472 1.158 ozaki in_selsrc_domifdetach(ifp, ii->ii_selsrc);
2473 1.158 ozaki #endif
2474 1.163 ozaki #if NARP > 0
2475 1.158 ozaki lltable_free(ii->ii_llt);
2476 1.246 yamt #ifdef MBUFTRACE
2477 1.246 yamt MOWNER_DETACH(&ii->ii_mowner);
2478 1.246 yamt #endif
2479 1.161 ozaki #endif
2480 1.158 ozaki kmem_free(ii, sizeof(struct in_ifinfo));
2481 1.158 ozaki }
2482