rtsock.c revision 1.82 1 1.82 christos /* $NetBSD: rtsock.c,v 1.82 2006/04/15 02:07:34 christos Exp $ */
2 1.30 itojun
3 1.30 itojun /*
4 1.30 itojun * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
5 1.30 itojun * All rights reserved.
6 1.75 perry *
7 1.30 itojun * Redistribution and use in source and binary forms, with or without
8 1.30 itojun * modification, are permitted provided that the following conditions
9 1.30 itojun * are met:
10 1.30 itojun * 1. Redistributions of source code must retain the above copyright
11 1.30 itojun * notice, this list of conditions and the following disclaimer.
12 1.30 itojun * 2. Redistributions in binary form must reproduce the above copyright
13 1.30 itojun * notice, this list of conditions and the following disclaimer in the
14 1.30 itojun * documentation and/or other materials provided with the distribution.
15 1.30 itojun * 3. Neither the name of the project nor the names of its contributors
16 1.30 itojun * may be used to endorse or promote products derived from this software
17 1.30 itojun * without specific prior written permission.
18 1.75 perry *
19 1.30 itojun * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
20 1.30 itojun * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21 1.30 itojun * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22 1.30 itojun * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
23 1.30 itojun * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 1.30 itojun * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25 1.30 itojun * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 1.30 itojun * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 1.30 itojun * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 1.30 itojun * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 1.30 itojun * SUCH DAMAGE.
30 1.30 itojun */
31 1.11 cgd
32 1.1 cgd /*
33 1.10 mycroft * Copyright (c) 1988, 1991, 1993
34 1.10 mycroft * The Regents of the University of California. All rights reserved.
35 1.1 cgd *
36 1.1 cgd * Redistribution and use in source and binary forms, with or without
37 1.1 cgd * modification, are permitted provided that the following conditions
38 1.1 cgd * are met:
39 1.1 cgd * 1. Redistributions of source code must retain the above copyright
40 1.1 cgd * notice, this list of conditions and the following disclaimer.
41 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
42 1.1 cgd * notice, this list of conditions and the following disclaimer in the
43 1.1 cgd * documentation and/or other materials provided with the distribution.
44 1.64 agc * 3. Neither the name of the University nor the names of its contributors
45 1.1 cgd * may be used to endorse or promote products derived from this software
46 1.1 cgd * without specific prior written permission.
47 1.1 cgd *
48 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
49 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
50 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
51 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
52 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
53 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
54 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
55 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
56 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
57 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
58 1.1 cgd * SUCH DAMAGE.
59 1.1 cgd *
60 1.26 fvdl * @(#)rtsock.c 8.7 (Berkeley) 10/12/95
61 1.1 cgd */
62 1.54 lukem
63 1.54 lukem #include <sys/cdefs.h>
64 1.82 christos __KERNEL_RCSID(0, "$NetBSD: rtsock.c,v 1.82 2006/04/15 02:07:34 christos Exp $");
65 1.31 thorpej
66 1.31 thorpej #include "opt_inet.h"
67 1.1 cgd
68 1.5 mycroft #include <sys/param.h>
69 1.5 mycroft #include <sys/systm.h>
70 1.10 mycroft #include <sys/proc.h>
71 1.5 mycroft #include <sys/mbuf.h>
72 1.5 mycroft #include <sys/socket.h>
73 1.5 mycroft #include <sys/socketvar.h>
74 1.5 mycroft #include <sys/domain.h>
75 1.5 mycroft #include <sys/protosw.h>
76 1.17 christos #include <sys/sysctl.h>
77 1.17 christos
78 1.5 mycroft #include <net/if.h>
79 1.5 mycroft #include <net/route.h>
80 1.5 mycroft #include <net/raw_cb.h>
81 1.1 cgd
82 1.17 christos #include <machine/stdarg.h>
83 1.17 christos
84 1.73 matt DOMAIN_DEFINE(routedomain); /* forward declare and add to link set */
85 1.58 matt
86 1.10 mycroft struct sockaddr route_dst = { 2, PF_ROUTE, };
87 1.10 mycroft struct sockaddr route_src = { 2, PF_ROUTE, };
88 1.10 mycroft struct sockproto route_proto = { PF_ROUTE, };
89 1.10 mycroft
90 1.10 mycroft struct walkarg {
91 1.29 chopps int w_op;
92 1.29 chopps int w_arg;
93 1.29 chopps int w_given;
94 1.29 chopps int w_needed;
95 1.29 chopps caddr_t w_where;
96 1.29 chopps int w_tmemsize;
97 1.29 chopps int w_tmemneeded;
98 1.29 chopps caddr_t w_tmem;
99 1.10 mycroft };
100 1.1 cgd
101 1.69 matt static struct mbuf *rt_msg1(int, struct rt_addrinfo *, caddr_t, int);
102 1.69 matt static int rt_msg2(int, struct rt_addrinfo *, caddr_t, struct walkarg *, int *);
103 1.72 christos static int rt_xaddrs(u_char, const char *, const char *, struct rt_addrinfo *);
104 1.78 dyoung static struct mbuf *rt_makeifannouncemsg(struct ifnet *, int, int,
105 1.78 dyoung struct rt_addrinfo *);
106 1.69 matt static int sysctl_dumpentry(struct radix_node *, void *);
107 1.69 matt static int sysctl_iflist(int, struct walkarg *, int);
108 1.69 matt static int sysctl_rtable(SYSCTLFN_PROTO);
109 1.80 perry static inline void rt_adjustcount(int, int);
110 1.10 mycroft
111 1.10 mycroft /* Sleazy use of local variables throughout file, warning!!!! */
112 1.10 mycroft #define dst info.rti_info[RTAX_DST]
113 1.10 mycroft #define gate info.rti_info[RTAX_GATEWAY]
114 1.10 mycroft #define netmask info.rti_info[RTAX_NETMASK]
115 1.10 mycroft #define genmask info.rti_info[RTAX_GENMASK]
116 1.10 mycroft #define ifpaddr info.rti_info[RTAX_IFP]
117 1.10 mycroft #define ifaaddr info.rti_info[RTAX_IFA]
118 1.10 mycroft #define brdaddr info.rti_info[RTAX_BRD]
119 1.1 cgd
120 1.80 perry static inline void
121 1.69 matt rt_adjustcount(int af, int cnt)
122 1.27 christos {
123 1.28 christos route_cb.any_count += cnt;
124 1.27 christos switch (af) {
125 1.27 christos case AF_INET:
126 1.27 christos route_cb.ip_count += cnt;
127 1.27 christos return;
128 1.30 itojun #ifdef INET6
129 1.30 itojun case AF_INET6:
130 1.30 itojun route_cb.ip6_count += cnt;
131 1.30 itojun return;
132 1.30 itojun #endif
133 1.27 christos case AF_IPX:
134 1.27 christos route_cb.ipx_count += cnt;
135 1.27 christos return;
136 1.27 christos case AF_NS:
137 1.27 christos route_cb.ns_count += cnt;
138 1.27 christos return;
139 1.27 christos case AF_ISO:
140 1.27 christos route_cb.iso_count += cnt;
141 1.27 christos return;
142 1.27 christos }
143 1.27 christos }
144 1.27 christos
145 1.1 cgd /*ARGSUSED*/
146 1.9 mycroft int
147 1.69 matt route_usrreq(struct socket *so, int req, struct mbuf *m, struct mbuf *nam,
148 1.79 christos struct mbuf *control, struct lwp *l)
149 1.1 cgd {
150 1.39 augustss int error = 0;
151 1.39 augustss struct rawcb *rp = sotorawcb(so);
152 1.1 cgd int s;
153 1.10 mycroft
154 1.1 cgd if (req == PRU_ATTACH) {
155 1.1 cgd MALLOC(rp, struct rawcb *, sizeof(*rp), M_PCB, M_WAITOK);
156 1.17 christos if ((so->so_pcb = rp) != NULL)
157 1.48 thorpej memset(so->so_pcb, 0, sizeof(*rp));
158 1.1 cgd
159 1.1 cgd }
160 1.27 christos if (req == PRU_DETACH && rp)
161 1.27 christos rt_adjustcount(rp->rcb_proto.sp_protocol, -1);
162 1.14 mycroft s = splsoftnet();
163 1.23 thorpej
164 1.23 thorpej /*
165 1.23 thorpej * Don't call raw_usrreq() in the attach case, because
166 1.23 thorpej * we want to allow non-privileged processes to listen on
167 1.23 thorpej * and send "safe" commands to the routing socket.
168 1.23 thorpej */
169 1.23 thorpej if (req == PRU_ATTACH) {
170 1.79 christos if (l == 0)
171 1.23 thorpej error = EACCES;
172 1.23 thorpej else
173 1.23 thorpej error = raw_attach(so, (int)(long)nam);
174 1.23 thorpej } else
175 1.79 christos error = raw_usrreq(so, req, m, nam, control, l);
176 1.23 thorpej
177 1.1 cgd rp = sotorawcb(so);
178 1.1 cgd if (req == PRU_ATTACH && rp) {
179 1.1 cgd if (error) {
180 1.1 cgd free((caddr_t)rp, M_PCB);
181 1.1 cgd splx(s);
182 1.1 cgd return (error);
183 1.1 cgd }
184 1.27 christos rt_adjustcount(rp->rcb_proto.sp_protocol, 1);
185 1.20 mycroft rp->rcb_laddr = &route_src;
186 1.20 mycroft rp->rcb_faddr = &route_dst;
187 1.1 cgd soisconnected(so);
188 1.1 cgd so->so_options |= SO_USELOOPBACK;
189 1.1 cgd }
190 1.1 cgd splx(s);
191 1.1 cgd return (error);
192 1.1 cgd }
193 1.1 cgd
194 1.1 cgd /*ARGSUSED*/
195 1.9 mycroft int
196 1.17 christos route_output(struct mbuf *m, ...)
197 1.1 cgd {
198 1.39 augustss struct rt_msghdr *rtm = 0;
199 1.39 augustss struct radix_node *rn = 0;
200 1.39 augustss struct rtentry *rt = 0;
201 1.1 cgd struct rtentry *saved_nrt = 0;
202 1.16 cgd struct radix_node_head *rnh;
203 1.10 mycroft struct rt_addrinfo info;
204 1.1 cgd int len, error = 0;
205 1.1 cgd struct ifnet *ifp = 0;
206 1.35 itojun struct ifaddr *ifa = 0;
207 1.17 christos struct socket *so;
208 1.17 christos va_list ap;
209 1.55 christos sa_family_t family;
210 1.17 christos
211 1.17 christos va_start(ap, m);
212 1.17 christos so = va_arg(ap, struct socket *);
213 1.17 christos va_end(ap);
214 1.17 christos
215 1.56 perry #define senderr(e) do { error = e; goto flush;} while (/*CONSTCOND*/ 0)
216 1.12 cgd if (m == 0 || ((m->m_len < sizeof(int32_t)) &&
217 1.21 christos (m = m_pullup(m, sizeof(int32_t))) == 0))
218 1.1 cgd return (ENOBUFS);
219 1.1 cgd if ((m->m_flags & M_PKTHDR) == 0)
220 1.1 cgd panic("route_output");
221 1.1 cgd len = m->m_pkthdr.len;
222 1.1 cgd if (len < sizeof(*rtm) ||
223 1.10 mycroft len != mtod(m, struct rt_msghdr *)->rtm_msglen) {
224 1.10 mycroft dst = 0;
225 1.1 cgd senderr(EINVAL);
226 1.10 mycroft }
227 1.1 cgd R_Malloc(rtm, struct rt_msghdr *, len);
228 1.10 mycroft if (rtm == 0) {
229 1.10 mycroft dst = 0;
230 1.1 cgd senderr(ENOBUFS);
231 1.10 mycroft }
232 1.1 cgd m_copydata(m, 0, len, (caddr_t)rtm);
233 1.10 mycroft if (rtm->rtm_version != RTM_VERSION) {
234 1.10 mycroft dst = 0;
235 1.1 cgd senderr(EPROTONOSUPPORT);
236 1.10 mycroft }
237 1.1 cgd rtm->rtm_pid = curproc->p_pid;
238 1.48 thorpej memset(&info, 0, sizeof(info));
239 1.10 mycroft info.rti_addrs = rtm->rtm_addrs;
240 1.72 christos if (rt_xaddrs(rtm->rtm_type, (caddr_t)(rtm + 1), len + (caddr_t)rtm, &info))
241 1.42 erh senderr(EINVAL);
242 1.45 itojun info.rti_flags = rtm->rtm_flags;
243 1.26 fvdl if (dst == 0 || (dst->sa_family >= AF_MAX))
244 1.26 fvdl senderr(EINVAL);
245 1.26 fvdl if (gate != 0 && (gate->sa_family >= AF_MAX))
246 1.1 cgd senderr(EINVAL);
247 1.10 mycroft if (genmask) {
248 1.10 mycroft struct radix_node *t;
249 1.76 christos t = rn_addmask(genmask, 0, 1);
250 1.76 christos if (t && genmask->sa_len >= ((const struct sockaddr *)t->rn_key)->sa_len &&
251 1.76 christos Bcmp((const char *const *)genmask + 1, (const char *const *)t->rn_key + 1,
252 1.76 christos ((const struct sockaddr *)t->rn_key)->sa_len) - 1)
253 1.76 christos genmask = (const struct sockaddr *)(t->rn_key);
254 1.1 cgd else
255 1.1 cgd senderr(ENOBUFS);
256 1.1 cgd }
257 1.23 thorpej
258 1.23 thorpej /*
259 1.23 thorpej * Verify that the caller has the appropriate privilege; RTM_GET
260 1.23 thorpej * is the only operation the non-superuser is allowed.
261 1.23 thorpej */
262 1.23 thorpej if (rtm->rtm_type != RTM_GET &&
263 1.23 thorpej suser(curproc->p_ucred, &curproc->p_acflag) != 0)
264 1.23 thorpej senderr(EACCES);
265 1.23 thorpej
266 1.1 cgd switch (rtm->rtm_type) {
267 1.10 mycroft
268 1.1 cgd case RTM_ADD:
269 1.1 cgd if (gate == 0)
270 1.1 cgd senderr(EINVAL);
271 1.45 itojun error = rtrequest1(rtm->rtm_type, &info, &saved_nrt);
272 1.1 cgd if (error == 0 && saved_nrt) {
273 1.1 cgd rt_setmetrics(rtm->rtm_inits,
274 1.21 christos &rtm->rtm_rmx, &saved_nrt->rt_rmx);
275 1.1 cgd saved_nrt->rt_refcnt--;
276 1.1 cgd saved_nrt->rt_genmask = genmask;
277 1.1 cgd }
278 1.1 cgd break;
279 1.1 cgd
280 1.1 cgd case RTM_DELETE:
281 1.45 itojun error = rtrequest1(rtm->rtm_type, &info, &saved_nrt);
282 1.16 cgd if (error == 0) {
283 1.16 cgd (rt = saved_nrt)->rt_refcnt++;
284 1.16 cgd goto report;
285 1.16 cgd }
286 1.1 cgd break;
287 1.1 cgd
288 1.1 cgd case RTM_GET:
289 1.1 cgd case RTM_CHANGE:
290 1.1 cgd case RTM_LOCK:
291 1.16 cgd if ((rnh = rt_tables[dst->sa_family]) == 0) {
292 1.16 cgd senderr(EAFNOSUPPORT);
293 1.37 itojun }
294 1.37 itojun rn = rnh->rnh_lookup(dst, netmask, rnh);
295 1.37 itojun if (rn == NULL || (rn->rn_flags & RNF_ROOT) != 0) {
296 1.1 cgd senderr(ESRCH);
297 1.37 itojun }
298 1.37 itojun rt = (struct rtentry *)rn;
299 1.37 itojun rt->rt_refcnt++;
300 1.61 itojun if (rtm->rtm_type != RTM_GET) {/* XXX: too grotty */
301 1.76 christos struct radix_node *rnn;
302 1.61 itojun extern struct radix_node_head *mask_rnhead;
303 1.61 itojun
304 1.61 itojun if (Bcmp(dst, rt_key(rt), dst->sa_len) != 0)
305 1.61 itojun senderr(ESRCH);
306 1.76 christos if (netmask && (rnn = rn_search(netmask,
307 1.61 itojun mask_rnhead->rnh_treetop)))
308 1.76 christos netmask = (const struct sockaddr *)rnn->rn_key;
309 1.76 christos for (rnn = rt->rt_nodes; rnn; rnn = rnn->rn_dupedkey)
310 1.76 christos if (netmask == (const struct sockaddr *)rnn->rn_mask)
311 1.61 itojun break;
312 1.76 christos if (rnn == 0)
313 1.61 itojun senderr(ETOOMANYREFS);
314 1.76 christos rt = (struct rtentry *)rnn;
315 1.61 itojun }
316 1.37 itojun
317 1.59 itojun switch (rtm->rtm_type) {
318 1.1 cgd case RTM_GET:
319 1.16 cgd report:
320 1.10 mycroft dst = rt_key(rt);
321 1.10 mycroft gate = rt->rt_gateway;
322 1.10 mycroft netmask = rt_mask(rt);
323 1.10 mycroft genmask = rt->rt_genmask;
324 1.1 cgd if (rtm->rtm_addrs & (RTA_IFP | RTA_IFA)) {
325 1.17 christos if ((ifp = rt->rt_ifp) != NULL) {
326 1.53 matt ifpaddr = TAILQ_FIRST(&ifp->if_addrlist)->ifa_addr;
327 1.1 cgd ifaaddr = rt->rt_ifa->ifa_addr;
328 1.16 cgd if (ifp->if_flags & IFF_POINTOPOINT)
329 1.16 cgd brdaddr = rt->rt_ifa->ifa_dstaddr;
330 1.16 cgd else
331 1.16 cgd brdaddr = 0;
332 1.10 mycroft rtm->rtm_index = ifp->if_index;
333 1.1 cgd } else {
334 1.10 mycroft ifpaddr = 0;
335 1.10 mycroft ifaaddr = 0;
336 1.37 itojun }
337 1.1 cgd }
338 1.29 chopps (void)rt_msg2(rtm->rtm_type, &info, (caddr_t)0,
339 1.29 chopps (struct walkarg *)0, &len);
340 1.1 cgd if (len > rtm->rtm_msglen) {
341 1.1 cgd struct rt_msghdr *new_rtm;
342 1.1 cgd R_Malloc(new_rtm, struct rt_msghdr *, len);
343 1.1 cgd if (new_rtm == 0)
344 1.1 cgd senderr(ENOBUFS);
345 1.1 cgd Bcopy(rtm, new_rtm, rtm->rtm_msglen);
346 1.1 cgd Free(rtm); rtm = new_rtm;
347 1.1 cgd }
348 1.22 mycroft (void)rt_msg2(rtm->rtm_type, &info, (caddr_t)rtm,
349 1.29 chopps (struct walkarg *)0, 0);
350 1.1 cgd rtm->rtm_flags = rt->rt_flags;
351 1.1 cgd rtm->rtm_rmx = rt->rt_rmx;
352 1.10 mycroft rtm->rtm_addrs = info.rti_addrs;
353 1.1 cgd break;
354 1.1 cgd
355 1.1 cgd case RTM_CHANGE:
356 1.45 itojun /*
357 1.45 itojun * new gateway could require new ifaddr, ifp;
358 1.45 itojun * flags may also be different; ifp may be specified
359 1.45 itojun * by ll sockaddr when protocol address is ambiguous
360 1.45 itojun */
361 1.45 itojun if ((error = rt_getifa(&info)) != 0)
362 1.45 itojun senderr(error);
363 1.10 mycroft if (gate && rt_setgate(rt, rt_key(rt), gate))
364 1.1 cgd senderr(EDQUOT);
365 1.35 itojun /* new gateway could require new ifaddr, ifp;
366 1.35 itojun flags may also be different; ifp may be specified
367 1.35 itojun by ll sockaddr when protocol address is ambiguous */
368 1.35 itojun if (ifpaddr && (ifa = ifa_ifwithnet(ifpaddr)) &&
369 1.35 itojun (ifp = ifa->ifa_ifp) && (ifaaddr || gate))
370 1.35 itojun ifa = ifaof_ifpforaddr(ifaaddr ? ifaaddr : gate,
371 1.35 itojun ifp);
372 1.35 itojun else if ((ifaaddr && (ifa = ifa_ifwithaddr(ifaaddr))) ||
373 1.35 itojun (gate && (ifa = ifa_ifwithroute(rt->rt_flags,
374 1.35 itojun rt_key(rt), gate))))
375 1.35 itojun ifp = ifa->ifa_ifp;
376 1.35 itojun if (ifa) {
377 1.39 augustss struct ifaddr *oifa = rt->rt_ifa;
378 1.35 itojun if (oifa != ifa) {
379 1.35 itojun if (oifa && oifa->ifa_rtrequest)
380 1.45 itojun oifa->ifa_rtrequest(RTM_DELETE, rt,
381 1.45 itojun &info);
382 1.35 itojun IFAFREE(rt->rt_ifa);
383 1.35 itojun rt->rt_ifa = ifa;
384 1.35 itojun IFAREF(rt->rt_ifa);
385 1.35 itojun rt->rt_ifp = ifp;
386 1.35 itojun }
387 1.35 itojun }
388 1.1 cgd rt_setmetrics(rtm->rtm_inits, &rtm->rtm_rmx,
389 1.21 christos &rt->rt_rmx);
390 1.35 itojun if (rt->rt_ifa && rt->rt_ifa->ifa_rtrequest)
391 1.45 itojun rt->rt_ifa->ifa_rtrequest(RTM_ADD, rt, &info);
392 1.1 cgd if (genmask)
393 1.1 cgd rt->rt_genmask = genmask;
394 1.1 cgd /*
395 1.1 cgd * Fall into
396 1.1 cgd */
397 1.1 cgd case RTM_LOCK:
398 1.10 mycroft rt->rt_rmx.rmx_locks &= ~(rtm->rtm_inits);
399 1.1 cgd rt->rt_rmx.rmx_locks |=
400 1.21 christos (rtm->rtm_inits & rtm->rtm_rmx.rmx_locks);
401 1.1 cgd break;
402 1.1 cgd }
403 1.10 mycroft break;
404 1.1 cgd
405 1.1 cgd default:
406 1.1 cgd senderr(EOPNOTSUPP);
407 1.1 cgd }
408 1.1 cgd
409 1.1 cgd flush:
410 1.1 cgd if (rtm) {
411 1.1 cgd if (error)
412 1.1 cgd rtm->rtm_errno = error;
413 1.75 perry else
414 1.1 cgd rtm->rtm_flags |= RTF_DONE;
415 1.1 cgd }
416 1.55 christos family = dst ? dst->sa_family : 0;
417 1.1 cgd if (rt)
418 1.1 cgd rtfree(rt);
419 1.1 cgd {
420 1.39 augustss struct rawcb *rp = 0;
421 1.1 cgd /*
422 1.1 cgd * Check to see if we don't want our own messages.
423 1.1 cgd */
424 1.1 cgd if ((so->so_options & SO_USELOOPBACK) == 0) {
425 1.1 cgd if (route_cb.any_count <= 1) {
426 1.1 cgd if (rtm)
427 1.1 cgd Free(rtm);
428 1.1 cgd m_freem(m);
429 1.1 cgd return (error);
430 1.1 cgd }
431 1.1 cgd /* There is another listener, so construct message */
432 1.1 cgd rp = sotorawcb(so);
433 1.1 cgd }
434 1.1 cgd if (rtm) {
435 1.47 itojun m_copyback(m, 0, rtm->rtm_msglen, (caddr_t)rtm);
436 1.47 itojun if (m->m_pkthdr.len < rtm->rtm_msglen) {
437 1.46 itojun m_freem(m);
438 1.46 itojun m = NULL;
439 1.47 itojun } else if (m->m_pkthdr.len > rtm->rtm_msglen)
440 1.46 itojun m_adj(m, rtm->rtm_msglen - m->m_pkthdr.len);
441 1.1 cgd Free(rtm);
442 1.1 cgd }
443 1.1 cgd if (rp)
444 1.1 cgd rp->rcb_proto.sp_family = 0; /* Avoid us */
445 1.55 christos if (family)
446 1.55 christos route_proto.sp_protocol = family;
447 1.46 itojun if (m)
448 1.46 itojun raw_input(m, &route_proto, &route_src, &route_dst);
449 1.1 cgd if (rp)
450 1.1 cgd rp->rcb_proto.sp_family = PF_ROUTE;
451 1.1 cgd }
452 1.1 cgd return (error);
453 1.1 cgd }
454 1.1 cgd
455 1.9 mycroft void
456 1.69 matt rt_setmetrics(u_long which, const struct rt_metrics *in, struct rt_metrics *out)
457 1.1 cgd {
458 1.1 cgd #define metric(f, e) if (which & (f)) out->e = in->e;
459 1.1 cgd metric(RTV_RPIPE, rmx_recvpipe);
460 1.1 cgd metric(RTV_SPIPE, rmx_sendpipe);
461 1.1 cgd metric(RTV_SSTHRESH, rmx_ssthresh);
462 1.1 cgd metric(RTV_RTT, rmx_rtt);
463 1.1 cgd metric(RTV_RTTVAR, rmx_rttvar);
464 1.1 cgd metric(RTV_HOPCOUNT, rmx_hopcount);
465 1.1 cgd metric(RTV_MTU, rmx_mtu);
466 1.1 cgd metric(RTV_EXPIRE, rmx_expire);
467 1.1 cgd #undef metric
468 1.1 cgd }
469 1.1 cgd
470 1.10 mycroft #define ROUNDUP(a) \
471 1.18 cgd ((a) > 0 ? (1 + (((a) - 1) | (sizeof(long) - 1))) : sizeof(long))
472 1.10 mycroft #define ADVANCE(x, n) (x += ROUNDUP((n)->sa_len))
473 1.10 mycroft
474 1.42 erh static int
475 1.72 christos rt_xaddrs(u_char rtmtype, const char *cp, const char *cplim, struct rt_addrinfo *rtinfo)
476 1.10 mycroft {
477 1.69 matt const struct sockaddr *sa = NULL; /* Quell compiler warning */
478 1.39 augustss int i;
479 1.10 mycroft
480 1.10 mycroft for (i = 0; (i < RTAX_MAX) && (cp < cplim); i++) {
481 1.10 mycroft if ((rtinfo->rti_addrs & (1 << i)) == 0)
482 1.10 mycroft continue;
483 1.76 christos rtinfo->rti_info[i] = sa = (const struct sockaddr *)cp;
484 1.10 mycroft ADVANCE(cp, sa);
485 1.10 mycroft }
486 1.44 enami
487 1.72 christos /* Check for extra addresses specified, except RTM_GET asking for interface info. */
488 1.72 christos if (rtmtype == RTM_GET) {
489 1.72 christos if (((rtinfo->rti_addrs & (~((1 << RTAX_IFP) | (1 << RTAX_IFA)))) & (~0 << i)) != 0)
490 1.72 christos return (1);
491 1.72 christos } else {
492 1.72 christos if ((rtinfo->rti_addrs & (~0 << i)) != 0)
493 1.72 christos return (1);
494 1.72 christos }
495 1.44 enami /* Check for bad data length. */
496 1.44 enami if (cp != cplim) {
497 1.82 christos if (i == RTAX_NETMASK + 1 && sa &&
498 1.44 enami cp - ROUNDUP(sa->sa_len) + sa->sa_len == cplim)
499 1.44 enami /*
500 1.44 enami * The last sockaddr was netmask.
501 1.44 enami * We accept this for now for the sake of old
502 1.44 enami * binaries or third party softwares.
503 1.44 enami */
504 1.44 enami ;
505 1.44 enami else
506 1.44 enami return (1);
507 1.44 enami }
508 1.44 enami return (0);
509 1.1 cgd }
510 1.1 cgd
511 1.10 mycroft static struct mbuf *
512 1.69 matt rt_msg1(int type, struct rt_addrinfo *rtinfo, caddr_t data, int datalen)
513 1.1 cgd {
514 1.39 augustss struct rt_msghdr *rtm;
515 1.39 augustss struct mbuf *m;
516 1.39 augustss int i;
517 1.68 matt const struct sockaddr *sa;
518 1.47 itojun int len, dlen;
519 1.1 cgd
520 1.47 itojun m = m_gethdr(M_DONTWAIT, MT_DATA);
521 1.47 itojun if (m == 0)
522 1.47 itojun return (m);
523 1.58 matt MCLAIM(m, &routedomain.dom_mowner);
524 1.10 mycroft switch (type) {
525 1.47 itojun
526 1.10 mycroft case RTM_DELADDR:
527 1.10 mycroft case RTM_NEWADDR:
528 1.47 itojun len = sizeof(struct ifa_msghdr);
529 1.10 mycroft break;
530 1.10 mycroft
531 1.32 bouyer #ifdef COMPAT_14
532 1.32 bouyer case RTM_OIFINFO:
533 1.47 itojun len = sizeof(struct if_msghdr14);
534 1.32 bouyer break;
535 1.32 bouyer #endif
536 1.32 bouyer
537 1.10 mycroft case RTM_IFINFO:
538 1.47 itojun len = sizeof(struct if_msghdr);
539 1.10 mycroft break;
540 1.10 mycroft
541 1.36 thorpej case RTM_IFANNOUNCE:
542 1.78 dyoung case RTM_IEEE80211:
543 1.47 itojun len = sizeof(struct if_announcemsghdr);
544 1.36 thorpej break;
545 1.36 thorpej
546 1.10 mycroft default:
547 1.47 itojun len = sizeof(struct rt_msghdr);
548 1.46 itojun }
549 1.47 itojun if (len > MHLEN + MLEN)
550 1.34 itojun panic("rt_msg1: message too long");
551 1.47 itojun else if (len > MHLEN) {
552 1.32 bouyer m->m_next = m_get(M_DONTWAIT, MT_DATA);
553 1.47 itojun if (m->m_next == NULL) {
554 1.32 bouyer m_freem(m);
555 1.32 bouyer return (NULL);
556 1.32 bouyer }
557 1.58 matt MCLAIM(m->m_next, m->m_owner);
558 1.47 itojun m->m_pkthdr.len = len;
559 1.47 itojun m->m_len = MHLEN;
560 1.47 itojun m->m_next->m_len = len - MHLEN;
561 1.47 itojun } else {
562 1.47 itojun m->m_pkthdr.len = m->m_len = len;
563 1.32 bouyer }
564 1.47 itojun m->m_pkthdr.rcvif = 0;
565 1.32 bouyer m_copyback(m, 0, datalen, data);
566 1.1 cgd rtm = mtod(m, struct rt_msghdr *);
567 1.10 mycroft for (i = 0; i < RTAX_MAX; i++) {
568 1.10 mycroft if ((sa = rtinfo->rti_info[i]) == NULL)
569 1.10 mycroft continue;
570 1.10 mycroft rtinfo->rti_addrs |= (1 << i);
571 1.10 mycroft dlen = ROUNDUP(sa->sa_len);
572 1.76 christos m_copyback(m, len, dlen, sa);
573 1.10 mycroft len += dlen;
574 1.47 itojun }
575 1.47 itojun if (m->m_pkthdr.len != len) {
576 1.47 itojun m_freem(m);
577 1.47 itojun return (NULL);
578 1.10 mycroft }
579 1.1 cgd rtm->rtm_msglen = len;
580 1.1 cgd rtm->rtm_version = RTM_VERSION;
581 1.1 cgd rtm->rtm_type = type;
582 1.10 mycroft return (m);
583 1.10 mycroft }
584 1.10 mycroft
585 1.29 chopps /*
586 1.29 chopps * rt_msg2
587 1.29 chopps *
588 1.29 chopps * fills 'cp' or 'w'.w_tmem with the routing socket message and
589 1.29 chopps * returns the length of the message in 'lenp'.
590 1.29 chopps *
591 1.29 chopps * if walkarg is 0, cp is expected to be 0 or a buffer large enough to hold
592 1.29 chopps * the message
593 1.29 chopps * otherwise walkarg's w_needed is updated and if the user buffer is
594 1.29 chopps * specified and w_needed indicates space exists the information is copied
595 1.29 chopps * into the temp space (w_tmem). w_tmem is [re]allocated if necessary,
596 1.29 chopps * if the allocation fails ENOBUFS is returned.
597 1.29 chopps */
598 1.10 mycroft static int
599 1.69 matt rt_msg2(int type, struct rt_addrinfo *rtinfo, caddr_t cp, struct walkarg *w,
600 1.69 matt int *lenp)
601 1.10 mycroft {
602 1.39 augustss int i;
603 1.10 mycroft int len, dlen, second_time = 0;
604 1.10 mycroft caddr_t cp0;
605 1.10 mycroft
606 1.10 mycroft rtinfo->rti_addrs = 0;
607 1.10 mycroft again:
608 1.10 mycroft switch (type) {
609 1.10 mycroft
610 1.10 mycroft case RTM_DELADDR:
611 1.10 mycroft case RTM_NEWADDR:
612 1.10 mycroft len = sizeof(struct ifa_msghdr);
613 1.10 mycroft break;
614 1.32 bouyer #ifdef COMPAT_14
615 1.32 bouyer case RTM_OIFINFO:
616 1.32 bouyer len = sizeof(struct if_msghdr14);
617 1.32 bouyer break;
618 1.32 bouyer #endif
619 1.10 mycroft
620 1.10 mycroft case RTM_IFINFO:
621 1.10 mycroft len = sizeof(struct if_msghdr);
622 1.10 mycroft break;
623 1.10 mycroft
624 1.10 mycroft default:
625 1.10 mycroft len = sizeof(struct rt_msghdr);
626 1.10 mycroft }
627 1.17 christos if ((cp0 = cp) != NULL)
628 1.10 mycroft cp += len;
629 1.10 mycroft for (i = 0; i < RTAX_MAX; i++) {
630 1.68 matt const struct sockaddr *sa;
631 1.10 mycroft
632 1.10 mycroft if ((sa = rtinfo->rti_info[i]) == 0)
633 1.10 mycroft continue;
634 1.10 mycroft rtinfo->rti_addrs |= (1 << i);
635 1.10 mycroft dlen = ROUNDUP(sa->sa_len);
636 1.10 mycroft if (cp) {
637 1.21 christos bcopy(sa, cp, (unsigned)dlen);
638 1.10 mycroft cp += dlen;
639 1.10 mycroft }
640 1.1 cgd len += dlen;
641 1.1 cgd }
642 1.10 mycroft if (cp == 0 && w != NULL && !second_time) {
643 1.39 augustss struct walkarg *rw = w;
644 1.10 mycroft
645 1.10 mycroft rw->w_needed += len;
646 1.10 mycroft if (rw->w_needed <= 0 && rw->w_where) {
647 1.10 mycroft if (rw->w_tmemsize < len) {
648 1.10 mycroft if (rw->w_tmem)
649 1.10 mycroft free(rw->w_tmem, M_RTABLE);
650 1.17 christos rw->w_tmem = (caddr_t) malloc(len, M_RTABLE,
651 1.21 christos M_NOWAIT);
652 1.17 christos if (rw->w_tmem)
653 1.10 mycroft rw->w_tmemsize = len;
654 1.10 mycroft }
655 1.10 mycroft if (rw->w_tmem) {
656 1.10 mycroft cp = rw->w_tmem;
657 1.10 mycroft second_time = 1;
658 1.10 mycroft goto again;
659 1.29 chopps } else {
660 1.29 chopps rw->w_tmemneeded = len;
661 1.29 chopps return (ENOBUFS);
662 1.29 chopps }
663 1.10 mycroft }
664 1.1 cgd }
665 1.10 mycroft if (cp) {
666 1.39 augustss struct rt_msghdr *rtm = (struct rt_msghdr *)cp0;
667 1.10 mycroft
668 1.10 mycroft rtm->rtm_version = RTM_VERSION;
669 1.10 mycroft rtm->rtm_type = type;
670 1.10 mycroft rtm->rtm_msglen = len;
671 1.1 cgd }
672 1.29 chopps if (lenp)
673 1.29 chopps *lenp = len;
674 1.29 chopps return (0);
675 1.10 mycroft }
676 1.10 mycroft
677 1.10 mycroft /*
678 1.10 mycroft * This routine is called to generate a message from the routing
679 1.51 wiz * socket indicating that a redirect has occurred, a routing lookup
680 1.10 mycroft * has failed, or that a protocol has detected timeouts to a particular
681 1.10 mycroft * destination.
682 1.10 mycroft */
683 1.10 mycroft void
684 1.69 matt rt_missmsg(int type, struct rt_addrinfo *rtinfo, int flags, int error)
685 1.10 mycroft {
686 1.32 bouyer struct rt_msghdr rtm;
687 1.39 augustss struct mbuf *m;
688 1.68 matt const struct sockaddr *sa = rtinfo->rti_info[RTAX_DST];
689 1.10 mycroft
690 1.10 mycroft if (route_cb.any_count == 0)
691 1.10 mycroft return;
692 1.48 thorpej memset(&rtm, 0, sizeof(rtm));
693 1.32 bouyer rtm.rtm_flags = RTF_DONE | flags;
694 1.32 bouyer rtm.rtm_errno = error;
695 1.32 bouyer m = rt_msg1(type, rtinfo, (caddr_t)&rtm, sizeof(rtm));
696 1.10 mycroft if (m == 0)
697 1.1 cgd return;
698 1.32 bouyer mtod(m, struct rt_msghdr *)->rtm_addrs = rtinfo->rti_addrs;
699 1.10 mycroft route_proto.sp_protocol = sa ? sa->sa_family : 0;
700 1.10 mycroft raw_input(m, &route_proto, &route_src, &route_dst);
701 1.10 mycroft }
702 1.10 mycroft
703 1.10 mycroft /*
704 1.10 mycroft * This routine is called to generate a message from the routing
705 1.10 mycroft * socket indicating that the status of a network interface has changed.
706 1.10 mycroft */
707 1.10 mycroft void
708 1.69 matt rt_ifmsg(struct ifnet *ifp)
709 1.10 mycroft {
710 1.32 bouyer struct if_msghdr ifm;
711 1.32 bouyer #ifdef COMPAT_14
712 1.32 bouyer struct if_msghdr14 oifm;
713 1.32 bouyer #endif
714 1.10 mycroft struct mbuf *m;
715 1.10 mycroft struct rt_addrinfo info;
716 1.10 mycroft
717 1.10 mycroft if (route_cb.any_count == 0)
718 1.10 mycroft return;
719 1.48 thorpej memset(&info, 0, sizeof(info));
720 1.48 thorpej memset(&ifm, 0, sizeof(ifm));
721 1.32 bouyer ifm.ifm_index = ifp->if_index;
722 1.32 bouyer ifm.ifm_flags = ifp->if_flags;
723 1.32 bouyer ifm.ifm_data = ifp->if_data;
724 1.32 bouyer ifm.ifm_addrs = 0;
725 1.32 bouyer m = rt_msg1(RTM_IFINFO, &info, (caddr_t)&ifm, sizeof(ifm));
726 1.32 bouyer if (m == 0)
727 1.32 bouyer return;
728 1.32 bouyer route_proto.sp_protocol = 0;
729 1.32 bouyer raw_input(m, &route_proto, &route_src, &route_dst);
730 1.32 bouyer #ifdef COMPAT_14
731 1.48 thorpej memset(&info, 0, sizeof(info));
732 1.48 thorpej memset(&oifm, 0, sizeof(oifm));
733 1.32 bouyer oifm.ifm_index = ifp->if_index;
734 1.32 bouyer oifm.ifm_flags = ifp->if_flags;
735 1.32 bouyer oifm.ifm_data.ifi_type = ifp->if_data.ifi_type;
736 1.32 bouyer oifm.ifm_data.ifi_addrlen = ifp->if_data.ifi_addrlen;
737 1.32 bouyer oifm.ifm_data.ifi_hdrlen = ifp->if_data.ifi_hdrlen;
738 1.32 bouyer oifm.ifm_data.ifi_mtu = ifp->if_data.ifi_mtu;
739 1.32 bouyer oifm.ifm_data.ifi_metric = ifp->if_data.ifi_metric;
740 1.32 bouyer oifm.ifm_data.ifi_baudrate = ifp->if_data.ifi_baudrate;
741 1.32 bouyer oifm.ifm_data.ifi_ipackets = ifp->if_data.ifi_ipackets;
742 1.32 bouyer oifm.ifm_data.ifi_ierrors = ifp->if_data.ifi_ierrors;
743 1.32 bouyer oifm.ifm_data.ifi_opackets = ifp->if_data.ifi_opackets;
744 1.32 bouyer oifm.ifm_data.ifi_oerrors = ifp->if_data.ifi_oerrors;
745 1.32 bouyer oifm.ifm_data.ifi_collisions = ifp->if_data.ifi_collisions;
746 1.32 bouyer oifm.ifm_data.ifi_ibytes = ifp->if_data.ifi_ibytes;
747 1.32 bouyer oifm.ifm_data.ifi_obytes = ifp->if_data.ifi_obytes;
748 1.32 bouyer oifm.ifm_data.ifi_imcasts = ifp->if_data.ifi_imcasts;
749 1.32 bouyer oifm.ifm_data.ifi_omcasts = ifp->if_data.ifi_omcasts;
750 1.32 bouyer oifm.ifm_data.ifi_iqdrops = ifp->if_data.ifi_iqdrops;
751 1.32 bouyer oifm.ifm_data.ifi_noproto = ifp->if_data.ifi_noproto;
752 1.32 bouyer oifm.ifm_data.ifi_lastchange = ifp->if_data.ifi_lastchange;
753 1.32 bouyer oifm.ifm_addrs = 0;
754 1.32 bouyer m = rt_msg1(RTM_OIFINFO, &info, (caddr_t)&oifm, sizeof(oifm));
755 1.10 mycroft if (m == 0)
756 1.10 mycroft return;
757 1.10 mycroft route_proto.sp_protocol = 0;
758 1.1 cgd raw_input(m, &route_proto, &route_src, &route_dst);
759 1.32 bouyer #endif
760 1.1 cgd }
761 1.1 cgd
762 1.1 cgd /*
763 1.10 mycroft * This is called to generate messages from the routing socket
764 1.10 mycroft * indicating a network interface has had addresses associated with it.
765 1.10 mycroft * if we ever reverse the logic and replace messages TO the routing
766 1.10 mycroft * socket indicate a request to configure interfaces, then it will
767 1.10 mycroft * be unnecessary as the routing socket will automatically generate
768 1.10 mycroft * copies of it.
769 1.10 mycroft */
770 1.10 mycroft void
771 1.69 matt rt_newaddrmsg(int cmd, struct ifaddr *ifa, int error, struct rtentry *rt)
772 1.10 mycroft {
773 1.10 mycroft struct rt_addrinfo info;
774 1.17 christos struct sockaddr *sa = NULL;
775 1.10 mycroft int pass;
776 1.17 christos struct mbuf *m = NULL;
777 1.10 mycroft struct ifnet *ifp = ifa->ifa_ifp;
778 1.10 mycroft
779 1.10 mycroft if (route_cb.any_count == 0)
780 1.10 mycroft return;
781 1.10 mycroft for (pass = 1; pass < 3; pass++) {
782 1.48 thorpej memset(&info, 0, sizeof(info));
783 1.10 mycroft if ((cmd == RTM_ADD && pass == 1) ||
784 1.10 mycroft (cmd == RTM_DELETE && pass == 2)) {
785 1.32 bouyer struct ifa_msghdr ifam;
786 1.10 mycroft int ncmd = cmd == RTM_ADD ? RTM_NEWADDR : RTM_DELADDR;
787 1.10 mycroft
788 1.10 mycroft ifaaddr = sa = ifa->ifa_addr;
789 1.53 matt ifpaddr = TAILQ_FIRST(&ifp->if_addrlist)->ifa_addr;
790 1.10 mycroft netmask = ifa->ifa_netmask;
791 1.10 mycroft brdaddr = ifa->ifa_dstaddr;
792 1.48 thorpej memset(&ifam, 0, sizeof(ifam));
793 1.32 bouyer ifam.ifam_index = ifp->if_index;
794 1.32 bouyer ifam.ifam_metric = ifa->ifa_metric;
795 1.32 bouyer ifam.ifam_flags = ifa->ifa_flags;
796 1.32 bouyer m = rt_msg1(ncmd, &info, (caddr_t)&ifam, sizeof(ifam));
797 1.32 bouyer if (m == NULL)
798 1.10 mycroft continue;
799 1.32 bouyer mtod(m, struct ifa_msghdr *)->ifam_addrs =
800 1.32 bouyer info.rti_addrs;
801 1.10 mycroft }
802 1.10 mycroft if ((cmd == RTM_ADD && pass == 2) ||
803 1.10 mycroft (cmd == RTM_DELETE && pass == 1)) {
804 1.32 bouyer struct rt_msghdr rtm;
805 1.75 perry
806 1.10 mycroft if (rt == 0)
807 1.10 mycroft continue;
808 1.10 mycroft netmask = rt_mask(rt);
809 1.10 mycroft dst = sa = rt_key(rt);
810 1.10 mycroft gate = rt->rt_gateway;
811 1.48 thorpej memset(&rtm, 0, sizeof(rtm));
812 1.32 bouyer rtm.rtm_index = ifp->if_index;
813 1.32 bouyer rtm.rtm_flags |= rt->rt_flags;
814 1.32 bouyer rtm.rtm_errno = error;
815 1.32 bouyer m = rt_msg1(cmd, &info, (caddr_t)&rtm, sizeof(rtm));
816 1.32 bouyer if (m == NULL)
817 1.10 mycroft continue;
818 1.32 bouyer mtod(m, struct rt_msghdr *)->rtm_addrs = info.rti_addrs;
819 1.10 mycroft }
820 1.10 mycroft route_proto.sp_protocol = sa ? sa->sa_family : 0;
821 1.10 mycroft raw_input(m, &route_proto, &route_src, &route_dst);
822 1.10 mycroft }
823 1.36 thorpej }
824 1.36 thorpej
825 1.78 dyoung static struct mbuf *
826 1.78 dyoung rt_makeifannouncemsg(struct ifnet *ifp, int type, int what,
827 1.78 dyoung struct rt_addrinfo *info)
828 1.78 dyoung {
829 1.78 dyoung struct if_announcemsghdr ifan;
830 1.78 dyoung
831 1.78 dyoung memset(info, 0, sizeof(*info));
832 1.78 dyoung memset(&ifan, 0, sizeof(ifan));
833 1.78 dyoung ifan.ifan_index = ifp->if_index;
834 1.78 dyoung strlcpy(ifan.ifan_name, ifp->if_xname, sizeof(ifan.ifan_name));
835 1.78 dyoung ifan.ifan_what = what;
836 1.78 dyoung return rt_msg1(type, info, (caddr_t)&ifan, sizeof(ifan));
837 1.78 dyoung }
838 1.78 dyoung
839 1.36 thorpej /*
840 1.36 thorpej * This is called to generate routing socket messages indicating
841 1.36 thorpej * network interface arrival and departure.
842 1.36 thorpej */
843 1.36 thorpej void
844 1.69 matt rt_ifannouncemsg(struct ifnet *ifp, int what)
845 1.36 thorpej {
846 1.36 thorpej struct mbuf *m;
847 1.36 thorpej struct rt_addrinfo info;
848 1.36 thorpej
849 1.36 thorpej if (route_cb.any_count == 0)
850 1.36 thorpej return;
851 1.78 dyoung m = rt_makeifannouncemsg(ifp, RTM_IFANNOUNCE, what, &info);
852 1.78 dyoung if (m == NULL)
853 1.78 dyoung return;
854 1.78 dyoung route_proto.sp_protocol = 0;
855 1.78 dyoung raw_input(m, &route_proto, &route_src, &route_dst);
856 1.78 dyoung }
857 1.78 dyoung
858 1.78 dyoung /*
859 1.78 dyoung * This is called to generate routing socket messages indicating
860 1.78 dyoung * IEEE80211 wireless events.
861 1.78 dyoung * XXX we piggyback on the RTM_IFANNOUNCE msg format in a clumsy way.
862 1.78 dyoung */
863 1.78 dyoung void
864 1.78 dyoung rt_ieee80211msg(struct ifnet *ifp, int what, void *data, size_t data_len)
865 1.78 dyoung {
866 1.78 dyoung struct mbuf *m;
867 1.78 dyoung struct rt_addrinfo info;
868 1.78 dyoung
869 1.78 dyoung if (route_cb.any_count == 0)
870 1.78 dyoung return;
871 1.78 dyoung m = rt_makeifannouncemsg(ifp, RTM_IEEE80211, what, &info);
872 1.78 dyoung if (m == NULL)
873 1.36 thorpej return;
874 1.78 dyoung /*
875 1.78 dyoung * Append the ieee80211 data. Try to stick it in the
876 1.78 dyoung * mbuf containing the ifannounce msg; otherwise allocate
877 1.78 dyoung * a new mbuf and append.
878 1.78 dyoung *
879 1.78 dyoung * NB: we assume m is a single mbuf.
880 1.78 dyoung */
881 1.78 dyoung if (data_len > M_TRAILINGSPACE(m)) {
882 1.78 dyoung struct mbuf *n = m_get(M_NOWAIT, MT_DATA);
883 1.78 dyoung if (n == NULL) {
884 1.78 dyoung m_freem(m);
885 1.78 dyoung return;
886 1.78 dyoung }
887 1.78 dyoung (void)memcpy(mtod(n, void *), data, data_len);
888 1.78 dyoung n->m_len = data_len;
889 1.78 dyoung m->m_next = n;
890 1.78 dyoung } else if (data_len > 0) {
891 1.78 dyoung (void)memcpy(mtod(m, u_int8_t *) + m->m_len, data, data_len);
892 1.78 dyoung m->m_len += data_len;
893 1.78 dyoung }
894 1.78 dyoung if (m->m_flags & M_PKTHDR)
895 1.78 dyoung m->m_pkthdr.len += data_len;
896 1.78 dyoung mtod(m, struct if_announcemsghdr *)->ifan_msglen += data_len;
897 1.36 thorpej route_proto.sp_protocol = 0;
898 1.36 thorpej raw_input(m, &route_proto, &route_src, &route_dst);
899 1.10 mycroft }
900 1.10 mycroft
901 1.10 mycroft /*
902 1.10 mycroft * This is used in dumping the kernel table via sysctl().
903 1.1 cgd */
904 1.40 simonb static int
905 1.69 matt sysctl_dumpentry(struct radix_node *rn, void *v)
906 1.1 cgd {
907 1.39 augustss struct walkarg *w = v;
908 1.39 augustss struct rtentry *rt = (struct rtentry *)rn;
909 1.10 mycroft int error = 0, size;
910 1.10 mycroft struct rt_addrinfo info;
911 1.1 cgd
912 1.10 mycroft if (w->w_op == NET_RT_FLAGS && !(rt->rt_flags & w->w_arg))
913 1.10 mycroft return 0;
914 1.48 thorpej memset(&info, 0, sizeof(info));
915 1.10 mycroft dst = rt_key(rt);
916 1.10 mycroft gate = rt->rt_gateway;
917 1.10 mycroft netmask = rt_mask(rt);
918 1.10 mycroft genmask = rt->rt_genmask;
919 1.16 cgd if (rt->rt_ifp) {
920 1.53 matt ifpaddr = TAILQ_FIRST(&rt->rt_ifp->if_addrlist)->ifa_addr;
921 1.16 cgd ifaaddr = rt->rt_ifa->ifa_addr;
922 1.16 cgd if (rt->rt_ifp->if_flags & IFF_POINTOPOINT)
923 1.16 cgd brdaddr = rt->rt_ifa->ifa_dstaddr;
924 1.16 cgd }
925 1.29 chopps if ((error = rt_msg2(RTM_GET, &info, 0, w, &size)))
926 1.29 chopps return (error);
927 1.29 chopps if (w->w_where && w->w_tmem && w->w_needed <= 0) {
928 1.39 augustss struct rt_msghdr *rtm = (struct rt_msghdr *)w->w_tmem;
929 1.10 mycroft
930 1.10 mycroft rtm->rtm_flags = rt->rt_flags;
931 1.10 mycroft rtm->rtm_use = rt->rt_use;
932 1.10 mycroft rtm->rtm_rmx = rt->rt_rmx;
933 1.10 mycroft rtm->rtm_index = rt->rt_ifp->if_index;
934 1.10 mycroft rtm->rtm_errno = rtm->rtm_pid = rtm->rtm_seq = 0;
935 1.10 mycroft rtm->rtm_addrs = info.rti_addrs;
936 1.21 christos if ((error = copyout(rtm, w->w_where, size)) != 0)
937 1.10 mycroft w->w_where = NULL;
938 1.10 mycroft else
939 1.10 mycroft w->w_where += size;
940 1.10 mycroft }
941 1.10 mycroft return (error);
942 1.10 mycroft }
943 1.1 cgd
944 1.40 simonb static int
945 1.69 matt sysctl_iflist(int af, struct walkarg *w, int type)
946 1.10 mycroft {
947 1.39 augustss struct ifnet *ifp;
948 1.39 augustss struct ifaddr *ifa;
949 1.10 mycroft struct rt_addrinfo info;
950 1.10 mycroft int len, error = 0;
951 1.10 mycroft
952 1.48 thorpej memset(&info, 0, sizeof(info));
953 1.74 matt IFNET_FOREACH(ifp) {
954 1.10 mycroft if (w->w_arg && w->w_arg != ifp->if_index)
955 1.10 mycroft continue;
956 1.53 matt ifa = TAILQ_FIRST(&ifp->if_addrlist);
957 1.81 rpaulo if (ifa == NULL)
958 1.81 rpaulo continue;
959 1.10 mycroft ifpaddr = ifa->ifa_addr;
960 1.59 itojun switch (type) {
961 1.32 bouyer case NET_RT_IFLIST:
962 1.32 bouyer error =
963 1.32 bouyer rt_msg2(RTM_IFINFO, &info, (caddr_t)0, w, &len);
964 1.32 bouyer break;
965 1.32 bouyer #ifdef COMPAT_14
966 1.32 bouyer case NET_RT_OIFLIST:
967 1.32 bouyer error =
968 1.32 bouyer rt_msg2(RTM_OIFINFO, &info, (caddr_t)0, w, &len);
969 1.32 bouyer break;
970 1.32 bouyer #endif
971 1.32 bouyer default:
972 1.32 bouyer panic("sysctl_iflist(1)");
973 1.32 bouyer }
974 1.32 bouyer if (error)
975 1.29 chopps return (error);
976 1.10 mycroft ifpaddr = 0;
977 1.29 chopps if (w->w_where && w->w_tmem && w->w_needed <= 0) {
978 1.59 itojun switch (type) {
979 1.32 bouyer case NET_RT_IFLIST: {
980 1.39 augustss struct if_msghdr *ifm;
981 1.32 bouyer
982 1.32 bouyer ifm = (struct if_msghdr *)w->w_tmem;
983 1.32 bouyer ifm->ifm_index = ifp->if_index;
984 1.32 bouyer ifm->ifm_flags = ifp->if_flags;
985 1.32 bouyer ifm->ifm_data = ifp->if_data;
986 1.32 bouyer ifm->ifm_addrs = info.rti_addrs;
987 1.32 bouyer error = copyout(ifm, w->w_where, len);
988 1.32 bouyer if (error)
989 1.32 bouyer return (error);
990 1.32 bouyer w->w_where += len;
991 1.32 bouyer break;
992 1.32 bouyer }
993 1.10 mycroft
994 1.32 bouyer #ifdef COMPAT_14
995 1.32 bouyer case NET_RT_OIFLIST: {
996 1.39 augustss struct if_msghdr14 *ifm;
997 1.32 bouyer
998 1.32 bouyer ifm = (struct if_msghdr14 *)w->w_tmem;
999 1.32 bouyer ifm->ifm_index = ifp->if_index;
1000 1.32 bouyer ifm->ifm_flags = ifp->if_flags;
1001 1.32 bouyer ifm->ifm_data.ifi_type = ifp->if_data.ifi_type;
1002 1.32 bouyer ifm->ifm_data.ifi_addrlen =
1003 1.32 bouyer ifp->if_data.ifi_addrlen;
1004 1.32 bouyer ifm->ifm_data.ifi_hdrlen =
1005 1.32 bouyer ifp->if_data.ifi_hdrlen;
1006 1.32 bouyer ifm->ifm_data.ifi_mtu = ifp->if_data.ifi_mtu;
1007 1.32 bouyer ifm->ifm_data.ifi_metric =
1008 1.32 bouyer ifp->if_data.ifi_metric;
1009 1.32 bouyer ifm->ifm_data.ifi_baudrate =
1010 1.32 bouyer ifp->if_data.ifi_baudrate;
1011 1.32 bouyer ifm->ifm_data.ifi_ipackets =
1012 1.32 bouyer ifp->if_data.ifi_ipackets;
1013 1.32 bouyer ifm->ifm_data.ifi_ierrors =
1014 1.32 bouyer ifp->if_data.ifi_ierrors;
1015 1.32 bouyer ifm->ifm_data.ifi_opackets =
1016 1.32 bouyer ifp->if_data.ifi_opackets;
1017 1.32 bouyer ifm->ifm_data.ifi_oerrors =
1018 1.32 bouyer ifp->if_data.ifi_oerrors;
1019 1.32 bouyer ifm->ifm_data.ifi_collisions =
1020 1.32 bouyer ifp->if_data.ifi_collisions;
1021 1.32 bouyer ifm->ifm_data.ifi_ibytes =
1022 1.32 bouyer ifp->if_data.ifi_ibytes;
1023 1.32 bouyer ifm->ifm_data.ifi_obytes =
1024 1.32 bouyer ifp->if_data.ifi_obytes;
1025 1.32 bouyer ifm->ifm_data.ifi_imcasts =
1026 1.32 bouyer ifp->if_data.ifi_imcasts;
1027 1.32 bouyer ifm->ifm_data.ifi_omcasts =
1028 1.32 bouyer ifp->if_data.ifi_omcasts;
1029 1.32 bouyer ifm->ifm_data.ifi_iqdrops =
1030 1.32 bouyer ifp->if_data.ifi_iqdrops;
1031 1.32 bouyer ifm->ifm_data.ifi_noproto =
1032 1.32 bouyer ifp->if_data.ifi_noproto;
1033 1.32 bouyer ifm->ifm_data.ifi_lastchange =
1034 1.32 bouyer ifp->if_data.ifi_lastchange;
1035 1.32 bouyer ifm->ifm_addrs = info.rti_addrs;
1036 1.32 bouyer error = copyout(ifm, w->w_where, len);
1037 1.32 bouyer if (error)
1038 1.32 bouyer return (error);
1039 1.32 bouyer w->w_where += len;
1040 1.32 bouyer break;
1041 1.32 bouyer }
1042 1.32 bouyer #endif
1043 1.32 bouyer default:
1044 1.32 bouyer panic("sysctl_iflist(2)");
1045 1.32 bouyer }
1046 1.10 mycroft }
1047 1.53 matt while ((ifa = TAILQ_NEXT(ifa, ifa_list)) != NULL) {
1048 1.10 mycroft if (af && af != ifa->ifa_addr->sa_family)
1049 1.10 mycroft continue;
1050 1.10 mycroft ifaaddr = ifa->ifa_addr;
1051 1.10 mycroft netmask = ifa->ifa_netmask;
1052 1.10 mycroft brdaddr = ifa->ifa_dstaddr;
1053 1.29 chopps if ((error = rt_msg2(RTM_NEWADDR, &info, 0, w, &len)))
1054 1.29 chopps return (error);
1055 1.29 chopps if (w->w_where && w->w_tmem && w->w_needed <= 0) {
1056 1.39 augustss struct ifa_msghdr *ifam;
1057 1.10 mycroft
1058 1.10 mycroft ifam = (struct ifa_msghdr *)w->w_tmem;
1059 1.10 mycroft ifam->ifam_index = ifa->ifa_ifp->if_index;
1060 1.10 mycroft ifam->ifam_flags = ifa->ifa_flags;
1061 1.10 mycroft ifam->ifam_metric = ifa->ifa_metric;
1062 1.10 mycroft ifam->ifam_addrs = info.rti_addrs;
1063 1.17 christos error = copyout(w->w_tmem, w->w_where, len);
1064 1.17 christos if (error)
1065 1.10 mycroft return (error);
1066 1.10 mycroft w->w_where += len;
1067 1.10 mycroft }
1068 1.10 mycroft }
1069 1.10 mycroft ifaaddr = netmask = brdaddr = 0;
1070 1.10 mycroft }
1071 1.1 cgd return (0);
1072 1.1 cgd }
1073 1.1 cgd
1074 1.40 simonb static int
1075 1.65 atatat sysctl_rtable(SYSCTLFN_ARGS)
1076 1.1 cgd {
1077 1.65 atatat void *where = oldp;
1078 1.65 atatat size_t *given = oldlenp;
1079 1.65 atatat const void *new = newp;
1080 1.39 augustss struct radix_node_head *rnh;
1081 1.10 mycroft int i, s, error = EINVAL;
1082 1.10 mycroft u_char af;
1083 1.1 cgd struct walkarg w;
1084 1.1 cgd
1085 1.66 atatat if (namelen == 1 && name[0] == CTL_QUERY)
1086 1.77 atatat return (sysctl_query(SYSCTLFN_CALL(rnode)));
1087 1.66 atatat
1088 1.10 mycroft if (new)
1089 1.10 mycroft return (EPERM);
1090 1.10 mycroft if (namelen != 3)
1091 1.1 cgd return (EINVAL);
1092 1.10 mycroft af = name[0];
1093 1.29 chopps w.w_tmemneeded = 0;
1094 1.29 chopps w.w_tmemsize = 0;
1095 1.29 chopps w.w_tmem = NULL;
1096 1.29 chopps again:
1097 1.29 chopps /* we may return here if a later [re]alloc of the t_mem buffer fails */
1098 1.29 chopps if (w.w_tmemneeded) {
1099 1.29 chopps w.w_tmem = (caddr_t) malloc(w.w_tmemneeded, M_RTABLE, M_WAITOK);
1100 1.29 chopps w.w_tmemsize = w.w_tmemneeded;
1101 1.29 chopps w.w_tmemneeded = 0;
1102 1.29 chopps }
1103 1.29 chopps w.w_op = name[1];
1104 1.29 chopps w.w_arg = name[2];
1105 1.10 mycroft w.w_given = *given;
1106 1.1 cgd w.w_needed = 0 - w.w_given;
1107 1.29 chopps w.w_where = where;
1108 1.1 cgd
1109 1.14 mycroft s = splsoftnet();
1110 1.10 mycroft switch (w.w_op) {
1111 1.10 mycroft
1112 1.10 mycroft case NET_RT_DUMP:
1113 1.10 mycroft case NET_RT_FLAGS:
1114 1.10 mycroft for (i = 1; i <= AF_MAX; i++)
1115 1.10 mycroft if ((rnh = rt_tables[i]) && (af == 0 || af == i) &&
1116 1.17 christos (error = (*rnh->rnh_walktree)(rnh,
1117 1.21 christos sysctl_dumpentry, &w)))
1118 1.10 mycroft break;
1119 1.10 mycroft break;
1120 1.10 mycroft
1121 1.32 bouyer #ifdef COMPAT_14
1122 1.32 bouyer case NET_RT_OIFLIST:
1123 1.32 bouyer error = sysctl_iflist(af, &w, w.w_op);
1124 1.32 bouyer break;
1125 1.32 bouyer #endif
1126 1.32 bouyer
1127 1.10 mycroft case NET_RT_IFLIST:
1128 1.32 bouyer error = sysctl_iflist(af, &w, w.w_op);
1129 1.1 cgd }
1130 1.10 mycroft splx(s);
1131 1.29 chopps
1132 1.29 chopps /* check to see if we couldn't allocate memory with NOWAIT */
1133 1.29 chopps if (error == ENOBUFS && w.w_tmem == 0 && w.w_tmemneeded)
1134 1.29 chopps goto again;
1135 1.29 chopps
1136 1.10 mycroft if (w.w_tmem)
1137 1.10 mycroft free(w.w_tmem, M_RTABLE);
1138 1.1 cgd w.w_needed += w.w_given;
1139 1.10 mycroft if (where) {
1140 1.17 christos *given = w.w_where - (caddr_t) where;
1141 1.10 mycroft if (*given < w.w_needed)
1142 1.10 mycroft return (ENOMEM);
1143 1.10 mycroft } else {
1144 1.10 mycroft *given = (11 * w.w_needed) / 10;
1145 1.10 mycroft }
1146 1.1 cgd return (error);
1147 1.1 cgd }
1148 1.1 cgd
1149 1.1 cgd /*
1150 1.1 cgd * Definitions of protocols supported in the ROUTE domain.
1151 1.1 cgd */
1152 1.1 cgd
1153 1.70 matt const struct protosw routesw[] = {
1154 1.69 matt {
1155 1.69 matt SOCK_RAW, &routedomain, 0, PR_ATOMIC|PR_ADDR,
1156 1.69 matt raw_input, route_output, raw_ctlinput, 0,
1157 1.69 matt route_usrreq,
1158 1.69 matt raw_init, 0, 0, 0,
1159 1.69 matt } };
1160 1.69 matt
1161 1.69 matt struct domain routedomain = {
1162 1.69 matt PF_ROUTE, "route", route_init, 0, 0,
1163 1.69 matt routesw, &routesw[sizeof(routesw)/sizeof(routesw[0])]
1164 1.1 cgd };
1165 1.1 cgd
1166 1.65 atatat SYSCTL_SETUP(sysctl_net_route_setup, "sysctl net.route subtree setup")
1167 1.65 atatat {
1168 1.67 atatat sysctl_createv(clog, 0, NULL, NULL,
1169 1.67 atatat CTLFLAG_PERMANENT,
1170 1.65 atatat CTLTYPE_NODE, "net", NULL,
1171 1.65 atatat NULL, 0, NULL, 0,
1172 1.65 atatat CTL_NET, CTL_EOL);
1173 1.65 atatat
1174 1.67 atatat sysctl_createv(clog, 0, NULL, NULL,
1175 1.67 atatat CTLFLAG_PERMANENT,
1176 1.71 atatat CTLTYPE_NODE, "route",
1177 1.71 atatat SYSCTL_DESCR("PF_ROUTE information"),
1178 1.65 atatat NULL, 0, NULL, 0,
1179 1.65 atatat CTL_NET, PF_ROUTE, CTL_EOL);
1180 1.67 atatat sysctl_createv(clog, 0, NULL, NULL,
1181 1.67 atatat CTLFLAG_PERMANENT,
1182 1.71 atatat CTLTYPE_NODE, "rtable",
1183 1.71 atatat SYSCTL_DESCR("Routing table information"),
1184 1.65 atatat sysctl_rtable, 0, NULL, 0,
1185 1.65 atatat CTL_NET, PF_ROUTE, 0 /* any protocol */, CTL_EOL);
1186 1.65 atatat }
1187