ip_output.c revision 1.1.1.2 1 1.1 cgd /*
2 1.1.1.2 thorpej * Copyright (c) 1982, 1986, 1988, 1990, 1993
3 1.1.1.2 thorpej * The Regents of the University of California. All rights reserved.
4 1.1 cgd *
5 1.1 cgd * Redistribution and use in source and binary forms, with or without
6 1.1 cgd * modification, are permitted provided that the following conditions
7 1.1 cgd * are met:
8 1.1 cgd * 1. Redistributions of source code must retain the above copyright
9 1.1 cgd * notice, this list of conditions and the following disclaimer.
10 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
11 1.1 cgd * notice, this list of conditions and the following disclaimer in the
12 1.1 cgd * documentation and/or other materials provided with the distribution.
13 1.1 cgd * 3. All advertising materials mentioning features or use of this software
14 1.1 cgd * must display the following acknowledgement:
15 1.1 cgd * This product includes software developed by the University of
16 1.1 cgd * California, Berkeley and its contributors.
17 1.1 cgd * 4. Neither the name of the University nor the names of its contributors
18 1.1 cgd * may be used to endorse or promote products derived from this software
19 1.1 cgd * without specific prior written permission.
20 1.1 cgd *
21 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
22 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
23 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
24 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
25 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
26 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
27 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
28 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
29 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
30 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
31 1.1 cgd * SUCH DAMAGE.
32 1.1 cgd *
33 1.1.1.2 thorpej * @(#)ip_output.c 8.3 (Berkeley) 1/21/94
34 1.1 cgd */
35 1.1 cgd
36 1.1.1.2 thorpej #include <sys/param.h>
37 1.1.1.2 thorpej #include <sys/malloc.h>
38 1.1.1.2 thorpej #include <sys/mbuf.h>
39 1.1.1.2 thorpej #include <sys/errno.h>
40 1.1.1.2 thorpej #include <sys/protosw.h>
41 1.1.1.2 thorpej #include <sys/socket.h>
42 1.1.1.2 thorpej #include <sys/socketvar.h>
43 1.1.1.2 thorpej
44 1.1.1.2 thorpej #include <net/if.h>
45 1.1.1.2 thorpej #include <net/route.h>
46 1.1.1.2 thorpej
47 1.1.1.2 thorpej #include <netinet/in.h>
48 1.1.1.2 thorpej #include <netinet/in_systm.h>
49 1.1.1.2 thorpej #include <netinet/ip.h>
50 1.1.1.2 thorpej #include <netinet/in_pcb.h>
51 1.1.1.2 thorpej #include <netinet/in_var.h>
52 1.1.1.2 thorpej #include <netinet/ip_var.h>
53 1.1 cgd
54 1.1 cgd #ifdef vax
55 1.1.1.2 thorpej #include <machine/mtpr.h>
56 1.1 cgd #endif
57 1.1 cgd
58 1.1.1.2 thorpej static struct mbuf *ip_insertoptions __P((struct mbuf *, struct mbuf *, int *));
59 1.1.1.2 thorpej static void ip_mloopback
60 1.1.1.2 thorpej __P((struct ifnet *, struct mbuf *, struct sockaddr_in *));
61 1.1 cgd
62 1.1 cgd /*
63 1.1 cgd * IP output. The packet in mbuf chain m contains a skeletal IP
64 1.1 cgd * header (with len, off, ttl, proto, tos, src, dst).
65 1.1 cgd * The mbuf chain containing the packet will be freed.
66 1.1 cgd * The mbuf opt, if present, will not be freed.
67 1.1 cgd */
68 1.1.1.2 thorpej int
69 1.1.1.2 thorpej ip_output(m0, opt, ro, flags, imo)
70 1.1 cgd struct mbuf *m0;
71 1.1 cgd struct mbuf *opt;
72 1.1 cgd struct route *ro;
73 1.1 cgd int flags;
74 1.1.1.2 thorpej struct ip_moptions *imo;
75 1.1 cgd {
76 1.1 cgd register struct ip *ip, *mhip;
77 1.1 cgd register struct ifnet *ifp;
78 1.1 cgd register struct mbuf *m = m0;
79 1.1 cgd register int hlen = sizeof (struct ip);
80 1.1 cgd int len, off, error = 0;
81 1.1 cgd struct route iproute;
82 1.1 cgd struct sockaddr_in *dst;
83 1.1 cgd struct in_ifaddr *ia;
84 1.1 cgd
85 1.1 cgd #ifdef DIAGNOSTIC
86 1.1 cgd if ((m->m_flags & M_PKTHDR) == 0)
87 1.1 cgd panic("ip_output no HDR");
88 1.1 cgd #endif
89 1.1 cgd if (opt) {
90 1.1 cgd m = ip_insertoptions(m, opt, &len);
91 1.1 cgd hlen = len;
92 1.1 cgd }
93 1.1 cgd ip = mtod(m, struct ip *);
94 1.1 cgd /*
95 1.1 cgd * Fill in IP header.
96 1.1 cgd */
97 1.1.1.2 thorpej if ((flags & (IP_FORWARDING|IP_RAWOUTPUT)) == 0) {
98 1.1 cgd ip->ip_v = IPVERSION;
99 1.1 cgd ip->ip_off &= IP_DF;
100 1.1 cgd ip->ip_id = htons(ip_id++);
101 1.1 cgd ip->ip_hl = hlen >> 2;
102 1.1.1.2 thorpej ipstat.ips_localout++;
103 1.1 cgd } else {
104 1.1 cgd hlen = ip->ip_hl << 2;
105 1.1 cgd }
106 1.1 cgd /*
107 1.1 cgd * Route packet.
108 1.1 cgd */
109 1.1 cgd if (ro == 0) {
110 1.1 cgd ro = &iproute;
111 1.1 cgd bzero((caddr_t)ro, sizeof (*ro));
112 1.1 cgd }
113 1.1 cgd dst = (struct sockaddr_in *)&ro->ro_dst;
114 1.1 cgd /*
115 1.1 cgd * If there is a cached route,
116 1.1 cgd * check that it is to the same destination
117 1.1 cgd * and is still up. If not, free it and try again.
118 1.1 cgd */
119 1.1 cgd if (ro->ro_rt && ((ro->ro_rt->rt_flags & RTF_UP) == 0 ||
120 1.1 cgd dst->sin_addr.s_addr != ip->ip_dst.s_addr)) {
121 1.1 cgd RTFREE(ro->ro_rt);
122 1.1 cgd ro->ro_rt = (struct rtentry *)0;
123 1.1 cgd }
124 1.1 cgd if (ro->ro_rt == 0) {
125 1.1 cgd dst->sin_family = AF_INET;
126 1.1 cgd dst->sin_len = sizeof(*dst);
127 1.1 cgd dst->sin_addr = ip->ip_dst;
128 1.1 cgd }
129 1.1 cgd /*
130 1.1 cgd * If routing to interface only,
131 1.1 cgd * short circuit routing lookup.
132 1.1 cgd */
133 1.1.1.2 thorpej #define ifatoia(ifa) ((struct in_ifaddr *)(ifa))
134 1.1.1.2 thorpej #define sintosa(sin) ((struct sockaddr *)(sin))
135 1.1 cgd if (flags & IP_ROUTETOIF) {
136 1.1.1.2 thorpej if ((ia = ifatoia(ifa_ifwithdstaddr(sintosa(dst)))) == 0 &&
137 1.1.1.2 thorpej (ia = ifatoia(ifa_ifwithnet(sintosa(dst)))) == 0) {
138 1.1.1.2 thorpej ipstat.ips_noroute++;
139 1.1 cgd error = ENETUNREACH;
140 1.1 cgd goto bad;
141 1.1 cgd }
142 1.1 cgd ifp = ia->ia_ifp;
143 1.1.1.2 thorpej ip->ip_ttl = 1;
144 1.1 cgd } else {
145 1.1 cgd if (ro->ro_rt == 0)
146 1.1 cgd rtalloc(ro);
147 1.1 cgd if (ro->ro_rt == 0) {
148 1.1.1.2 thorpej ipstat.ips_noroute++;
149 1.1 cgd error = EHOSTUNREACH;
150 1.1 cgd goto bad;
151 1.1 cgd }
152 1.1.1.2 thorpej ia = ifatoia(ro->ro_rt->rt_ifa);
153 1.1 cgd ifp = ro->ro_rt->rt_ifp;
154 1.1 cgd ro->ro_rt->rt_use++;
155 1.1 cgd if (ro->ro_rt->rt_flags & RTF_GATEWAY)
156 1.1 cgd dst = (struct sockaddr_in *)ro->ro_rt->rt_gateway;
157 1.1 cgd }
158 1.1.1.2 thorpej if (IN_MULTICAST(ntohl(ip->ip_dst.s_addr))) {
159 1.1.1.2 thorpej struct in_multi *inm;
160 1.1.1.2 thorpej extern struct ifnet loif;
161 1.1.1.2 thorpej
162 1.1.1.2 thorpej m->m_flags |= M_MCAST;
163 1.1.1.2 thorpej /*
164 1.1.1.2 thorpej * IP destination address is multicast. Make sure "dst"
165 1.1.1.2 thorpej * still points to the address in "ro". (It may have been
166 1.1.1.2 thorpej * changed to point to a gateway address, above.)
167 1.1.1.2 thorpej */
168 1.1.1.2 thorpej dst = (struct sockaddr_in *)&ro->ro_dst;
169 1.1.1.2 thorpej /*
170 1.1.1.2 thorpej * See if the caller provided any multicast options
171 1.1.1.2 thorpej */
172 1.1.1.2 thorpej if (imo != NULL) {
173 1.1.1.2 thorpej ip->ip_ttl = imo->imo_multicast_ttl;
174 1.1.1.2 thorpej if (imo->imo_multicast_ifp != NULL)
175 1.1.1.2 thorpej ifp = imo->imo_multicast_ifp;
176 1.1.1.2 thorpej } else
177 1.1.1.2 thorpej ip->ip_ttl = IP_DEFAULT_MULTICAST_TTL;
178 1.1.1.2 thorpej /*
179 1.1.1.2 thorpej * Confirm that the outgoing interface supports multicast.
180 1.1.1.2 thorpej */
181 1.1.1.2 thorpej if ((ifp->if_flags & IFF_MULTICAST) == 0) {
182 1.1.1.2 thorpej ipstat.ips_noroute++;
183 1.1.1.2 thorpej error = ENETUNREACH;
184 1.1.1.2 thorpej goto bad;
185 1.1.1.2 thorpej }
186 1.1.1.2 thorpej /*
187 1.1.1.2 thorpej * If source address not specified yet, use address
188 1.1.1.2 thorpej * of outgoing interface.
189 1.1.1.2 thorpej */
190 1.1.1.2 thorpej if (ip->ip_src.s_addr == INADDR_ANY) {
191 1.1.1.2 thorpej register struct in_ifaddr *ia;
192 1.1.1.2 thorpej
193 1.1.1.2 thorpej for (ia = in_ifaddr; ia; ia = ia->ia_next)
194 1.1.1.2 thorpej if (ia->ia_ifp == ifp) {
195 1.1.1.2 thorpej ip->ip_src = IA_SIN(ia)->sin_addr;
196 1.1.1.2 thorpej break;
197 1.1.1.2 thorpej }
198 1.1.1.2 thorpej }
199 1.1.1.2 thorpej
200 1.1.1.2 thorpej IN_LOOKUP_MULTI(ip->ip_dst, ifp, inm);
201 1.1.1.2 thorpej if (inm != NULL &&
202 1.1.1.2 thorpej (imo == NULL || imo->imo_multicast_loop)) {
203 1.1.1.2 thorpej /*
204 1.1.1.2 thorpej * If we belong to the destination multicast group
205 1.1.1.2 thorpej * on the outgoing interface, and the caller did not
206 1.1.1.2 thorpej * forbid loopback, loop back a copy.
207 1.1.1.2 thorpej */
208 1.1.1.2 thorpej ip_mloopback(ifp, m, dst);
209 1.1.1.2 thorpej }
210 1.1.1.2 thorpej #ifdef MROUTING
211 1.1.1.2 thorpej else {
212 1.1.1.2 thorpej /*
213 1.1.1.2 thorpej * If we are acting as a multicast router, perform
214 1.1.1.2 thorpej * multicast forwarding as if the packet had just
215 1.1.1.2 thorpej * arrived on the interface to which we are about
216 1.1.1.2 thorpej * to send. The multicast forwarding function
217 1.1.1.2 thorpej * recursively calls this function, using the
218 1.1.1.2 thorpej * IP_FORWARDING flag to prevent infinite recursion.
219 1.1.1.2 thorpej *
220 1.1.1.2 thorpej * Multicasts that are looped back by ip_mloopback(),
221 1.1.1.2 thorpej * above, will be forwarded by the ip_input() routine,
222 1.1.1.2 thorpej * if necessary.
223 1.1.1.2 thorpej */
224 1.1.1.2 thorpej extern struct socket *ip_mrouter;
225 1.1.1.2 thorpej if (ip_mrouter && (flags & IP_FORWARDING) == 0) {
226 1.1.1.2 thorpej if (ip_mforward(m, ifp) != 0) {
227 1.1.1.2 thorpej m_freem(m);
228 1.1.1.2 thorpej goto done;
229 1.1.1.2 thorpej }
230 1.1.1.2 thorpej }
231 1.1.1.2 thorpej }
232 1.1.1.2 thorpej #endif
233 1.1.1.2 thorpej /*
234 1.1.1.2 thorpej * Multicasts with a time-to-live of zero may be looped-
235 1.1.1.2 thorpej * back, above, but must not be transmitted on a network.
236 1.1.1.2 thorpej * Also, multicasts addressed to the loopback interface
237 1.1.1.2 thorpej * are not sent -- the above call to ip_mloopback() will
238 1.1.1.2 thorpej * loop back a copy if this host actually belongs to the
239 1.1.1.2 thorpej * destination group on the loopback interface.
240 1.1.1.2 thorpej */
241 1.1.1.2 thorpej if (ip->ip_ttl == 0 || ifp == &loif) {
242 1.1.1.2 thorpej m_freem(m);
243 1.1.1.2 thorpej goto done;
244 1.1.1.2 thorpej }
245 1.1.1.2 thorpej
246 1.1.1.2 thorpej goto sendit;
247 1.1.1.2 thorpej }
248 1.1 cgd #ifndef notdef
249 1.1 cgd /*
250 1.1 cgd * If source address not specified yet, use address
251 1.1 cgd * of outgoing interface.
252 1.1 cgd */
253 1.1 cgd if (ip->ip_src.s_addr == INADDR_ANY)
254 1.1 cgd ip->ip_src = IA_SIN(ia)->sin_addr;
255 1.1 cgd #endif
256 1.1 cgd /*
257 1.1 cgd * Look for broadcast address and
258 1.1 cgd * and verify user is allowed to send
259 1.1 cgd * such a packet.
260 1.1 cgd */
261 1.1.1.2 thorpej if (in_broadcast(dst->sin_addr, ifp)) {
262 1.1 cgd if ((ifp->if_flags & IFF_BROADCAST) == 0) {
263 1.1 cgd error = EADDRNOTAVAIL;
264 1.1 cgd goto bad;
265 1.1 cgd }
266 1.1 cgd if ((flags & IP_ALLOWBROADCAST) == 0) {
267 1.1 cgd error = EACCES;
268 1.1 cgd goto bad;
269 1.1 cgd }
270 1.1 cgd /* don't allow broadcast messages to be fragmented */
271 1.1 cgd if ((u_short)ip->ip_len > ifp->if_mtu) {
272 1.1 cgd error = EMSGSIZE;
273 1.1 cgd goto bad;
274 1.1 cgd }
275 1.1 cgd m->m_flags |= M_BCAST;
276 1.1.1.2 thorpej } else
277 1.1.1.2 thorpej m->m_flags &= ~M_BCAST;
278 1.1 cgd
279 1.1.1.2 thorpej sendit:
280 1.1 cgd /*
281 1.1 cgd * If small enough for interface, can just send directly.
282 1.1 cgd */
283 1.1 cgd if ((u_short)ip->ip_len <= ifp->if_mtu) {
284 1.1 cgd ip->ip_len = htons((u_short)ip->ip_len);
285 1.1 cgd ip->ip_off = htons((u_short)ip->ip_off);
286 1.1 cgd ip->ip_sum = 0;
287 1.1 cgd ip->ip_sum = in_cksum(m, hlen);
288 1.1 cgd error = (*ifp->if_output)(ifp, m,
289 1.1 cgd (struct sockaddr *)dst, ro->ro_rt);
290 1.1 cgd goto done;
291 1.1 cgd }
292 1.1 cgd /*
293 1.1 cgd * Too large for interface; fragment if possible.
294 1.1 cgd * Must be able to put at least 8 bytes per fragment.
295 1.1 cgd */
296 1.1 cgd if (ip->ip_off & IP_DF) {
297 1.1 cgd error = EMSGSIZE;
298 1.1.1.2 thorpej ipstat.ips_cantfrag++;
299 1.1 cgd goto bad;
300 1.1 cgd }
301 1.1 cgd len = (ifp->if_mtu - hlen) &~ 7;
302 1.1 cgd if (len < 8) {
303 1.1 cgd error = EMSGSIZE;
304 1.1 cgd goto bad;
305 1.1 cgd }
306 1.1 cgd
307 1.1 cgd {
308 1.1 cgd int mhlen, firstlen = len;
309 1.1 cgd struct mbuf **mnext = &m->m_nextpkt;
310 1.1 cgd
311 1.1 cgd /*
312 1.1 cgd * Loop through length of segment after first fragment,
313 1.1 cgd * make new header and copy data of each part and link onto chain.
314 1.1 cgd */
315 1.1 cgd m0 = m;
316 1.1 cgd mhlen = sizeof (struct ip);
317 1.1 cgd for (off = hlen + len; off < (u_short)ip->ip_len; off += len) {
318 1.1 cgd MGETHDR(m, M_DONTWAIT, MT_HEADER);
319 1.1 cgd if (m == 0) {
320 1.1 cgd error = ENOBUFS;
321 1.1.1.2 thorpej ipstat.ips_odropped++;
322 1.1 cgd goto sendorfree;
323 1.1 cgd }
324 1.1 cgd m->m_data += max_linkhdr;
325 1.1 cgd mhip = mtod(m, struct ip *);
326 1.1 cgd *mhip = *ip;
327 1.1 cgd if (hlen > sizeof (struct ip)) {
328 1.1 cgd mhlen = ip_optcopy(ip, mhip) + sizeof (struct ip);
329 1.1 cgd mhip->ip_hl = mhlen >> 2;
330 1.1 cgd }
331 1.1 cgd m->m_len = mhlen;
332 1.1 cgd mhip->ip_off = ((off - hlen) >> 3) + (ip->ip_off & ~IP_MF);
333 1.1 cgd if (ip->ip_off & IP_MF)
334 1.1 cgd mhip->ip_off |= IP_MF;
335 1.1 cgd if (off + len >= (u_short)ip->ip_len)
336 1.1 cgd len = (u_short)ip->ip_len - off;
337 1.1 cgd else
338 1.1 cgd mhip->ip_off |= IP_MF;
339 1.1 cgd mhip->ip_len = htons((u_short)(len + mhlen));
340 1.1 cgd m->m_next = m_copy(m0, off, len);
341 1.1 cgd if (m->m_next == 0) {
342 1.1.1.2 thorpej (void) m_free(m);
343 1.1 cgd error = ENOBUFS; /* ??? */
344 1.1.1.2 thorpej ipstat.ips_odropped++;
345 1.1 cgd goto sendorfree;
346 1.1 cgd }
347 1.1 cgd m->m_pkthdr.len = mhlen + len;
348 1.1 cgd m->m_pkthdr.rcvif = (struct ifnet *)0;
349 1.1 cgd mhip->ip_off = htons((u_short)mhip->ip_off);
350 1.1 cgd mhip->ip_sum = 0;
351 1.1 cgd mhip->ip_sum = in_cksum(m, mhlen);
352 1.1 cgd *mnext = m;
353 1.1 cgd mnext = &m->m_nextpkt;
354 1.1 cgd ipstat.ips_ofragments++;
355 1.1 cgd }
356 1.1 cgd /*
357 1.1 cgd * Update first fragment by trimming what's been copied out
358 1.1 cgd * and updating header, then send each fragment (in order).
359 1.1 cgd */
360 1.1 cgd m = m0;
361 1.1 cgd m_adj(m, hlen + firstlen - (u_short)ip->ip_len);
362 1.1 cgd m->m_pkthdr.len = hlen + firstlen;
363 1.1 cgd ip->ip_len = htons((u_short)m->m_pkthdr.len);
364 1.1 cgd ip->ip_off = htons((u_short)(ip->ip_off | IP_MF));
365 1.1 cgd ip->ip_sum = 0;
366 1.1 cgd ip->ip_sum = in_cksum(m, hlen);
367 1.1 cgd sendorfree:
368 1.1 cgd for (m = m0; m; m = m0) {
369 1.1 cgd m0 = m->m_nextpkt;
370 1.1 cgd m->m_nextpkt = 0;
371 1.1 cgd if (error == 0)
372 1.1 cgd error = (*ifp->if_output)(ifp, m,
373 1.1 cgd (struct sockaddr *)dst, ro->ro_rt);
374 1.1 cgd else
375 1.1 cgd m_freem(m);
376 1.1 cgd }
377 1.1.1.2 thorpej
378 1.1.1.2 thorpej if (error == 0)
379 1.1.1.2 thorpej ipstat.ips_fragmented++;
380 1.1 cgd }
381 1.1 cgd done:
382 1.1 cgd if (ro == &iproute && (flags & IP_ROUTETOIF) == 0 && ro->ro_rt)
383 1.1 cgd RTFREE(ro->ro_rt);
384 1.1 cgd return (error);
385 1.1 cgd bad:
386 1.1 cgd m_freem(m0);
387 1.1 cgd goto done;
388 1.1 cgd }
389 1.1 cgd
390 1.1 cgd /*
391 1.1 cgd * Insert IP options into preformed packet.
392 1.1 cgd * Adjust IP destination as required for IP source routing,
393 1.1 cgd * as indicated by a non-zero in_addr at the start of the options.
394 1.1 cgd */
395 1.1.1.2 thorpej static struct mbuf *
396 1.1 cgd ip_insertoptions(m, opt, phlen)
397 1.1 cgd register struct mbuf *m;
398 1.1 cgd struct mbuf *opt;
399 1.1 cgd int *phlen;
400 1.1 cgd {
401 1.1 cgd register struct ipoption *p = mtod(opt, struct ipoption *);
402 1.1 cgd struct mbuf *n;
403 1.1 cgd register struct ip *ip = mtod(m, struct ip *);
404 1.1 cgd unsigned optlen;
405 1.1 cgd
406 1.1 cgd optlen = opt->m_len - sizeof(p->ipopt_dst);
407 1.1 cgd if (optlen + (u_short)ip->ip_len > IP_MAXPACKET)
408 1.1 cgd return (m); /* XXX should fail */
409 1.1 cgd if (p->ipopt_dst.s_addr)
410 1.1 cgd ip->ip_dst = p->ipopt_dst;
411 1.1 cgd if (m->m_flags & M_EXT || m->m_data - optlen < m->m_pktdat) {
412 1.1 cgd MGETHDR(n, M_DONTWAIT, MT_HEADER);
413 1.1 cgd if (n == 0)
414 1.1 cgd return (m);
415 1.1 cgd n->m_pkthdr.len = m->m_pkthdr.len + optlen;
416 1.1 cgd m->m_len -= sizeof(struct ip);
417 1.1 cgd m->m_data += sizeof(struct ip);
418 1.1 cgd n->m_next = m;
419 1.1 cgd m = n;
420 1.1 cgd m->m_len = optlen + sizeof(struct ip);
421 1.1 cgd m->m_data += max_linkhdr;
422 1.1 cgd bcopy((caddr_t)ip, mtod(m, caddr_t), sizeof(struct ip));
423 1.1 cgd } else {
424 1.1 cgd m->m_data -= optlen;
425 1.1 cgd m->m_len += optlen;
426 1.1 cgd m->m_pkthdr.len += optlen;
427 1.1 cgd ovbcopy((caddr_t)ip, mtod(m, caddr_t), sizeof(struct ip));
428 1.1 cgd }
429 1.1 cgd ip = mtod(m, struct ip *);
430 1.1 cgd bcopy((caddr_t)p->ipopt_list, (caddr_t)(ip + 1), (unsigned)optlen);
431 1.1 cgd *phlen = sizeof(struct ip) + optlen;
432 1.1 cgd ip->ip_len += optlen;
433 1.1 cgd return (m);
434 1.1 cgd }
435 1.1 cgd
436 1.1 cgd /*
437 1.1 cgd * Copy options from ip to jp,
438 1.1 cgd * omitting those not copied during fragmentation.
439 1.1 cgd */
440 1.1.1.2 thorpej int
441 1.1 cgd ip_optcopy(ip, jp)
442 1.1 cgd struct ip *ip, *jp;
443 1.1 cgd {
444 1.1 cgd register u_char *cp, *dp;
445 1.1 cgd int opt, optlen, cnt;
446 1.1 cgd
447 1.1 cgd cp = (u_char *)(ip + 1);
448 1.1 cgd dp = (u_char *)(jp + 1);
449 1.1 cgd cnt = (ip->ip_hl << 2) - sizeof (struct ip);
450 1.1 cgd for (; cnt > 0; cnt -= optlen, cp += optlen) {
451 1.1 cgd opt = cp[0];
452 1.1 cgd if (opt == IPOPT_EOL)
453 1.1 cgd break;
454 1.1.1.2 thorpej if (opt == IPOPT_NOP) {
455 1.1.1.2 thorpej /* Preserve for IP mcast tunnel's LSRR alignment. */
456 1.1.1.2 thorpej *dp++ = IPOPT_NOP;
457 1.1 cgd optlen = 1;
458 1.1.1.2 thorpej continue;
459 1.1.1.2 thorpej } else
460 1.1 cgd optlen = cp[IPOPT_OLEN];
461 1.1 cgd /* bogus lengths should have been caught by ip_dooptions */
462 1.1 cgd if (optlen > cnt)
463 1.1 cgd optlen = cnt;
464 1.1 cgd if (IPOPT_COPIED(opt)) {
465 1.1 cgd bcopy((caddr_t)cp, (caddr_t)dp, (unsigned)optlen);
466 1.1 cgd dp += optlen;
467 1.1 cgd }
468 1.1 cgd }
469 1.1 cgd for (optlen = dp - (u_char *)(jp+1); optlen & 0x3; optlen++)
470 1.1 cgd *dp++ = IPOPT_EOL;
471 1.1 cgd return (optlen);
472 1.1 cgd }
473 1.1 cgd
474 1.1 cgd /*
475 1.1 cgd * IP socket option processing.
476 1.1 cgd */
477 1.1.1.2 thorpej int
478 1.1 cgd ip_ctloutput(op, so, level, optname, mp)
479 1.1 cgd int op;
480 1.1 cgd struct socket *so;
481 1.1 cgd int level, optname;
482 1.1 cgd struct mbuf **mp;
483 1.1 cgd {
484 1.1 cgd register struct inpcb *inp = sotoinpcb(so);
485 1.1 cgd register struct mbuf *m = *mp;
486 1.1 cgd register int optval;
487 1.1 cgd int error = 0;
488 1.1 cgd
489 1.1.1.2 thorpej if (level != IPPROTO_IP) {
490 1.1 cgd error = EINVAL;
491 1.1.1.2 thorpej if (op == PRCO_SETOPT && *mp)
492 1.1.1.2 thorpej (void) m_free(*mp);
493 1.1.1.2 thorpej } else switch (op) {
494 1.1 cgd
495 1.1 cgd case PRCO_SETOPT:
496 1.1 cgd switch (optname) {
497 1.1 cgd case IP_OPTIONS:
498 1.1 cgd #ifdef notyet
499 1.1 cgd case IP_RETOPTS:
500 1.1 cgd return (ip_pcbopts(optname, &inp->inp_options, m));
501 1.1 cgd #else
502 1.1 cgd return (ip_pcbopts(&inp->inp_options, m));
503 1.1 cgd #endif
504 1.1 cgd
505 1.1 cgd case IP_TOS:
506 1.1 cgd case IP_TTL:
507 1.1 cgd case IP_RECVOPTS:
508 1.1 cgd case IP_RECVRETOPTS:
509 1.1 cgd case IP_RECVDSTADDR:
510 1.1 cgd if (m->m_len != sizeof(int))
511 1.1 cgd error = EINVAL;
512 1.1 cgd else {
513 1.1 cgd optval = *mtod(m, int *);
514 1.1 cgd switch (optname) {
515 1.1 cgd
516 1.1 cgd case IP_TOS:
517 1.1 cgd inp->inp_ip.ip_tos = optval;
518 1.1 cgd break;
519 1.1 cgd
520 1.1 cgd case IP_TTL:
521 1.1 cgd inp->inp_ip.ip_ttl = optval;
522 1.1 cgd break;
523 1.1 cgd #define OPTSET(bit) \
524 1.1 cgd if (optval) \
525 1.1 cgd inp->inp_flags |= bit; \
526 1.1 cgd else \
527 1.1 cgd inp->inp_flags &= ~bit;
528 1.1 cgd
529 1.1 cgd case IP_RECVOPTS:
530 1.1 cgd OPTSET(INP_RECVOPTS);
531 1.1 cgd break;
532 1.1 cgd
533 1.1 cgd case IP_RECVRETOPTS:
534 1.1 cgd OPTSET(INP_RECVRETOPTS);
535 1.1 cgd break;
536 1.1 cgd
537 1.1 cgd case IP_RECVDSTADDR:
538 1.1 cgd OPTSET(INP_RECVDSTADDR);
539 1.1 cgd break;
540 1.1 cgd }
541 1.1 cgd }
542 1.1 cgd break;
543 1.1 cgd #undef OPTSET
544 1.1 cgd
545 1.1.1.2 thorpej case IP_MULTICAST_IF:
546 1.1.1.2 thorpej case IP_MULTICAST_TTL:
547 1.1.1.2 thorpej case IP_MULTICAST_LOOP:
548 1.1.1.2 thorpej case IP_ADD_MEMBERSHIP:
549 1.1.1.2 thorpej case IP_DROP_MEMBERSHIP:
550 1.1.1.2 thorpej error = ip_setmoptions(optname, &inp->inp_moptions, m);
551 1.1.1.2 thorpej break;
552 1.1.1.2 thorpej
553 1.1 cgd default:
554 1.1.1.2 thorpej error = ENOPROTOOPT;
555 1.1 cgd break;
556 1.1 cgd }
557 1.1 cgd if (m)
558 1.1 cgd (void)m_free(m);
559 1.1 cgd break;
560 1.1 cgd
561 1.1 cgd case PRCO_GETOPT:
562 1.1 cgd switch (optname) {
563 1.1 cgd case IP_OPTIONS:
564 1.1 cgd case IP_RETOPTS:
565 1.1 cgd *mp = m = m_get(M_WAIT, MT_SOOPTS);
566 1.1 cgd if (inp->inp_options) {
567 1.1 cgd m->m_len = inp->inp_options->m_len;
568 1.1 cgd bcopy(mtod(inp->inp_options, caddr_t),
569 1.1 cgd mtod(m, caddr_t), (unsigned)m->m_len);
570 1.1 cgd } else
571 1.1 cgd m->m_len = 0;
572 1.1 cgd break;
573 1.1 cgd
574 1.1 cgd case IP_TOS:
575 1.1 cgd case IP_TTL:
576 1.1 cgd case IP_RECVOPTS:
577 1.1 cgd case IP_RECVRETOPTS:
578 1.1 cgd case IP_RECVDSTADDR:
579 1.1 cgd *mp = m = m_get(M_WAIT, MT_SOOPTS);
580 1.1 cgd m->m_len = sizeof(int);
581 1.1 cgd switch (optname) {
582 1.1 cgd
583 1.1 cgd case IP_TOS:
584 1.1 cgd optval = inp->inp_ip.ip_tos;
585 1.1 cgd break;
586 1.1 cgd
587 1.1 cgd case IP_TTL:
588 1.1 cgd optval = inp->inp_ip.ip_ttl;
589 1.1 cgd break;
590 1.1 cgd
591 1.1 cgd #define OPTBIT(bit) (inp->inp_flags & bit ? 1 : 0)
592 1.1 cgd
593 1.1 cgd case IP_RECVOPTS:
594 1.1 cgd optval = OPTBIT(INP_RECVOPTS);
595 1.1 cgd break;
596 1.1 cgd
597 1.1 cgd case IP_RECVRETOPTS:
598 1.1 cgd optval = OPTBIT(INP_RECVRETOPTS);
599 1.1 cgd break;
600 1.1 cgd
601 1.1 cgd case IP_RECVDSTADDR:
602 1.1 cgd optval = OPTBIT(INP_RECVDSTADDR);
603 1.1 cgd break;
604 1.1 cgd }
605 1.1 cgd *mtod(m, int *) = optval;
606 1.1 cgd break;
607 1.1 cgd
608 1.1.1.2 thorpej case IP_MULTICAST_IF:
609 1.1.1.2 thorpej case IP_MULTICAST_TTL:
610 1.1.1.2 thorpej case IP_MULTICAST_LOOP:
611 1.1.1.2 thorpej case IP_ADD_MEMBERSHIP:
612 1.1.1.2 thorpej case IP_DROP_MEMBERSHIP:
613 1.1.1.2 thorpej error = ip_getmoptions(optname, inp->inp_moptions, mp);
614 1.1.1.2 thorpej break;
615 1.1.1.2 thorpej
616 1.1 cgd default:
617 1.1.1.2 thorpej error = ENOPROTOOPT;
618 1.1 cgd break;
619 1.1 cgd }
620 1.1 cgd break;
621 1.1 cgd }
622 1.1 cgd return (error);
623 1.1 cgd }
624 1.1 cgd
625 1.1 cgd /*
626 1.1 cgd * Set up IP options in pcb for insertion in output packets.
627 1.1 cgd * Store in mbuf with pointer in pcbopt, adding pseudo-option
628 1.1 cgd * with destination address if source routed.
629 1.1 cgd */
630 1.1.1.2 thorpej int
631 1.1 cgd #ifdef notyet
632 1.1 cgd ip_pcbopts(optname, pcbopt, m)
633 1.1 cgd int optname;
634 1.1 cgd #else
635 1.1 cgd ip_pcbopts(pcbopt, m)
636 1.1 cgd #endif
637 1.1 cgd struct mbuf **pcbopt;
638 1.1 cgd register struct mbuf *m;
639 1.1 cgd {
640 1.1 cgd register cnt, optlen;
641 1.1 cgd register u_char *cp;
642 1.1 cgd u_char opt;
643 1.1 cgd
644 1.1 cgd /* turn off any old options */
645 1.1 cgd if (*pcbopt)
646 1.1 cgd (void)m_free(*pcbopt);
647 1.1 cgd *pcbopt = 0;
648 1.1 cgd if (m == (struct mbuf *)0 || m->m_len == 0) {
649 1.1 cgd /*
650 1.1 cgd * Only turning off any previous options.
651 1.1 cgd */
652 1.1 cgd if (m)
653 1.1 cgd (void)m_free(m);
654 1.1 cgd return (0);
655 1.1 cgd }
656 1.1 cgd
657 1.1 cgd #ifndef vax
658 1.1 cgd if (m->m_len % sizeof(long))
659 1.1 cgd goto bad;
660 1.1 cgd #endif
661 1.1 cgd /*
662 1.1 cgd * IP first-hop destination address will be stored before
663 1.1 cgd * actual options; move other options back
664 1.1 cgd * and clear it when none present.
665 1.1 cgd */
666 1.1 cgd if (m->m_data + m->m_len + sizeof(struct in_addr) >= &m->m_dat[MLEN])
667 1.1 cgd goto bad;
668 1.1 cgd cnt = m->m_len;
669 1.1 cgd m->m_len += sizeof(struct in_addr);
670 1.1 cgd cp = mtod(m, u_char *) + sizeof(struct in_addr);
671 1.1 cgd ovbcopy(mtod(m, caddr_t), (caddr_t)cp, (unsigned)cnt);
672 1.1 cgd bzero(mtod(m, caddr_t), sizeof(struct in_addr));
673 1.1 cgd
674 1.1 cgd for (; cnt > 0; cnt -= optlen, cp += optlen) {
675 1.1 cgd opt = cp[IPOPT_OPTVAL];
676 1.1 cgd if (opt == IPOPT_EOL)
677 1.1 cgd break;
678 1.1 cgd if (opt == IPOPT_NOP)
679 1.1 cgd optlen = 1;
680 1.1 cgd else {
681 1.1 cgd optlen = cp[IPOPT_OLEN];
682 1.1 cgd if (optlen <= IPOPT_OLEN || optlen > cnt)
683 1.1 cgd goto bad;
684 1.1 cgd }
685 1.1 cgd switch (opt) {
686 1.1 cgd
687 1.1 cgd default:
688 1.1 cgd break;
689 1.1 cgd
690 1.1 cgd case IPOPT_LSRR:
691 1.1 cgd case IPOPT_SSRR:
692 1.1 cgd /*
693 1.1 cgd * user process specifies route as:
694 1.1 cgd * ->A->B->C->D
695 1.1 cgd * D must be our final destination (but we can't
696 1.1 cgd * check that since we may not have connected yet).
697 1.1 cgd * A is first hop destination, which doesn't appear in
698 1.1 cgd * actual IP option, but is stored before the options.
699 1.1 cgd */
700 1.1 cgd if (optlen < IPOPT_MINOFF - 1 + sizeof(struct in_addr))
701 1.1 cgd goto bad;
702 1.1 cgd m->m_len -= sizeof(struct in_addr);
703 1.1 cgd cnt -= sizeof(struct in_addr);
704 1.1 cgd optlen -= sizeof(struct in_addr);
705 1.1 cgd cp[IPOPT_OLEN] = optlen;
706 1.1 cgd /*
707 1.1 cgd * Move first hop before start of options.
708 1.1 cgd */
709 1.1 cgd bcopy((caddr_t)&cp[IPOPT_OFFSET+1], mtod(m, caddr_t),
710 1.1 cgd sizeof(struct in_addr));
711 1.1 cgd /*
712 1.1 cgd * Then copy rest of options back
713 1.1 cgd * to close up the deleted entry.
714 1.1 cgd */
715 1.1 cgd ovbcopy((caddr_t)(&cp[IPOPT_OFFSET+1] +
716 1.1 cgd sizeof(struct in_addr)),
717 1.1 cgd (caddr_t)&cp[IPOPT_OFFSET+1],
718 1.1 cgd (unsigned)cnt + sizeof(struct in_addr));
719 1.1 cgd break;
720 1.1 cgd }
721 1.1 cgd }
722 1.1 cgd if (m->m_len > MAX_IPOPTLEN + sizeof(struct in_addr))
723 1.1 cgd goto bad;
724 1.1 cgd *pcbopt = m;
725 1.1 cgd return (0);
726 1.1 cgd
727 1.1 cgd bad:
728 1.1 cgd (void)m_free(m);
729 1.1 cgd return (EINVAL);
730 1.1.1.2 thorpej }
731 1.1.1.2 thorpej
732 1.1.1.2 thorpej /*
733 1.1.1.2 thorpej * Set the IP multicast options in response to user setsockopt().
734 1.1.1.2 thorpej */
735 1.1.1.2 thorpej int
736 1.1.1.2 thorpej ip_setmoptions(optname, imop, m)
737 1.1.1.2 thorpej int optname;
738 1.1.1.2 thorpej struct ip_moptions **imop;
739 1.1.1.2 thorpej struct mbuf *m;
740 1.1.1.2 thorpej {
741 1.1.1.2 thorpej register int error = 0;
742 1.1.1.2 thorpej u_char loop;
743 1.1.1.2 thorpej register int i;
744 1.1.1.2 thorpej struct in_addr addr;
745 1.1.1.2 thorpej register struct ip_mreq *mreq;
746 1.1.1.2 thorpej register struct ifnet *ifp;
747 1.1.1.2 thorpej register struct ip_moptions *imo = *imop;
748 1.1.1.2 thorpej struct route ro;
749 1.1.1.2 thorpej register struct sockaddr_in *dst;
750 1.1.1.2 thorpej
751 1.1.1.2 thorpej if (imo == NULL) {
752 1.1.1.2 thorpej /*
753 1.1.1.2 thorpej * No multicast option buffer attached to the pcb;
754 1.1.1.2 thorpej * allocate one and initialize to default values.
755 1.1.1.2 thorpej */
756 1.1.1.2 thorpej imo = (struct ip_moptions*)malloc(sizeof(*imo), M_IPMOPTS,
757 1.1.1.2 thorpej M_WAITOK);
758 1.1.1.2 thorpej
759 1.1.1.2 thorpej if (imo == NULL)
760 1.1.1.2 thorpej return (ENOBUFS);
761 1.1.1.2 thorpej *imop = imo;
762 1.1.1.2 thorpej imo->imo_multicast_ifp = NULL;
763 1.1.1.2 thorpej imo->imo_multicast_ttl = IP_DEFAULT_MULTICAST_TTL;
764 1.1.1.2 thorpej imo->imo_multicast_loop = IP_DEFAULT_MULTICAST_LOOP;
765 1.1.1.2 thorpej imo->imo_num_memberships = 0;
766 1.1.1.2 thorpej }
767 1.1.1.2 thorpej
768 1.1.1.2 thorpej switch (optname) {
769 1.1.1.2 thorpej
770 1.1.1.2 thorpej case IP_MULTICAST_IF:
771 1.1.1.2 thorpej /*
772 1.1.1.2 thorpej * Select the interface for outgoing multicast packets.
773 1.1.1.2 thorpej */
774 1.1.1.2 thorpej if (m == NULL || m->m_len != sizeof(struct in_addr)) {
775 1.1.1.2 thorpej error = EINVAL;
776 1.1.1.2 thorpej break;
777 1.1.1.2 thorpej }
778 1.1.1.2 thorpej addr = *(mtod(m, struct in_addr *));
779 1.1.1.2 thorpej /*
780 1.1.1.2 thorpej * INADDR_ANY is used to remove a previous selection.
781 1.1.1.2 thorpej * When no interface is selected, a default one is
782 1.1.1.2 thorpej * chosen every time a multicast packet is sent.
783 1.1.1.2 thorpej */
784 1.1.1.2 thorpej if (addr.s_addr == INADDR_ANY) {
785 1.1.1.2 thorpej imo->imo_multicast_ifp = NULL;
786 1.1.1.2 thorpej break;
787 1.1.1.2 thorpej }
788 1.1.1.2 thorpej /*
789 1.1.1.2 thorpej * The selected interface is identified by its local
790 1.1.1.2 thorpej * IP address. Find the interface and confirm that
791 1.1.1.2 thorpej * it supports multicasting.
792 1.1.1.2 thorpej */
793 1.1.1.2 thorpej INADDR_TO_IFP(addr, ifp);
794 1.1.1.2 thorpej if (ifp == NULL || (ifp->if_flags & IFF_MULTICAST) == 0) {
795 1.1.1.2 thorpej error = EADDRNOTAVAIL;
796 1.1.1.2 thorpej break;
797 1.1.1.2 thorpej }
798 1.1.1.2 thorpej imo->imo_multicast_ifp = ifp;
799 1.1.1.2 thorpej break;
800 1.1.1.2 thorpej
801 1.1.1.2 thorpej case IP_MULTICAST_TTL:
802 1.1.1.2 thorpej /*
803 1.1.1.2 thorpej * Set the IP time-to-live for outgoing multicast packets.
804 1.1.1.2 thorpej */
805 1.1.1.2 thorpej if (m == NULL || m->m_len != 1) {
806 1.1.1.2 thorpej error = EINVAL;
807 1.1.1.2 thorpej break;
808 1.1.1.2 thorpej }
809 1.1.1.2 thorpej imo->imo_multicast_ttl = *(mtod(m, u_char *));
810 1.1.1.2 thorpej break;
811 1.1.1.2 thorpej
812 1.1.1.2 thorpej case IP_MULTICAST_LOOP:
813 1.1.1.2 thorpej /*
814 1.1.1.2 thorpej * Set the loopback flag for outgoing multicast packets.
815 1.1.1.2 thorpej * Must be zero or one.
816 1.1.1.2 thorpej */
817 1.1.1.2 thorpej if (m == NULL || m->m_len != 1 ||
818 1.1.1.2 thorpej (loop = *(mtod(m, u_char *))) > 1) {
819 1.1.1.2 thorpej error = EINVAL;
820 1.1.1.2 thorpej break;
821 1.1.1.2 thorpej }
822 1.1.1.2 thorpej imo->imo_multicast_loop = loop;
823 1.1.1.2 thorpej break;
824 1.1.1.2 thorpej
825 1.1.1.2 thorpej case IP_ADD_MEMBERSHIP:
826 1.1.1.2 thorpej /*
827 1.1.1.2 thorpej * Add a multicast group membership.
828 1.1.1.2 thorpej * Group must be a valid IP multicast address.
829 1.1.1.2 thorpej */
830 1.1.1.2 thorpej if (m == NULL || m->m_len != sizeof(struct ip_mreq)) {
831 1.1.1.2 thorpej error = EINVAL;
832 1.1.1.2 thorpej break;
833 1.1.1.2 thorpej }
834 1.1.1.2 thorpej mreq = mtod(m, struct ip_mreq *);
835 1.1.1.2 thorpej if (!IN_MULTICAST(ntohl(mreq->imr_multiaddr.s_addr))) {
836 1.1.1.2 thorpej error = EINVAL;
837 1.1.1.2 thorpej break;
838 1.1.1.2 thorpej }
839 1.1.1.2 thorpej /*
840 1.1.1.2 thorpej * If no interface address was provided, use the interface of
841 1.1.1.2 thorpej * the route to the given multicast address.
842 1.1.1.2 thorpej */
843 1.1.1.2 thorpej if (mreq->imr_interface.s_addr == INADDR_ANY) {
844 1.1.1.2 thorpej ro.ro_rt = NULL;
845 1.1.1.2 thorpej dst = (struct sockaddr_in *)&ro.ro_dst;
846 1.1.1.2 thorpej dst->sin_len = sizeof(*dst);
847 1.1.1.2 thorpej dst->sin_family = AF_INET;
848 1.1.1.2 thorpej dst->sin_addr = mreq->imr_multiaddr;
849 1.1.1.2 thorpej rtalloc(&ro);
850 1.1.1.2 thorpej if (ro.ro_rt == NULL) {
851 1.1.1.2 thorpej error = EADDRNOTAVAIL;
852 1.1.1.2 thorpej break;
853 1.1.1.2 thorpej }
854 1.1.1.2 thorpej ifp = ro.ro_rt->rt_ifp;
855 1.1.1.2 thorpej rtfree(ro.ro_rt);
856 1.1.1.2 thorpej }
857 1.1.1.2 thorpej else {
858 1.1.1.2 thorpej INADDR_TO_IFP(mreq->imr_interface, ifp);
859 1.1.1.2 thorpej }
860 1.1.1.2 thorpej /*
861 1.1.1.2 thorpej * See if we found an interface, and confirm that it
862 1.1.1.2 thorpej * supports multicast.
863 1.1.1.2 thorpej */
864 1.1.1.2 thorpej if (ifp == NULL || (ifp->if_flags & IFF_MULTICAST) == 0) {
865 1.1.1.2 thorpej error = EADDRNOTAVAIL;
866 1.1.1.2 thorpej break;
867 1.1.1.2 thorpej }
868 1.1.1.2 thorpej /*
869 1.1.1.2 thorpej * See if the membership already exists or if all the
870 1.1.1.2 thorpej * membership slots are full.
871 1.1.1.2 thorpej */
872 1.1.1.2 thorpej for (i = 0; i < imo->imo_num_memberships; ++i) {
873 1.1.1.2 thorpej if (imo->imo_membership[i]->inm_ifp == ifp &&
874 1.1.1.2 thorpej imo->imo_membership[i]->inm_addr.s_addr
875 1.1.1.2 thorpej == mreq->imr_multiaddr.s_addr)
876 1.1.1.2 thorpej break;
877 1.1.1.2 thorpej }
878 1.1.1.2 thorpej if (i < imo->imo_num_memberships) {
879 1.1.1.2 thorpej error = EADDRINUSE;
880 1.1.1.2 thorpej break;
881 1.1.1.2 thorpej }
882 1.1.1.2 thorpej if (i == IP_MAX_MEMBERSHIPS) {
883 1.1.1.2 thorpej error = ETOOMANYREFS;
884 1.1.1.2 thorpej break;
885 1.1.1.2 thorpej }
886 1.1.1.2 thorpej /*
887 1.1.1.2 thorpej * Everything looks good; add a new record to the multicast
888 1.1.1.2 thorpej * address list for the given interface.
889 1.1.1.2 thorpej */
890 1.1.1.2 thorpej if ((imo->imo_membership[i] =
891 1.1.1.2 thorpej in_addmulti(&mreq->imr_multiaddr, ifp)) == NULL) {
892 1.1.1.2 thorpej error = ENOBUFS;
893 1.1.1.2 thorpej break;
894 1.1.1.2 thorpej }
895 1.1.1.2 thorpej ++imo->imo_num_memberships;
896 1.1.1.2 thorpej break;
897 1.1.1.2 thorpej
898 1.1.1.2 thorpej case IP_DROP_MEMBERSHIP:
899 1.1.1.2 thorpej /*
900 1.1.1.2 thorpej * Drop a multicast group membership.
901 1.1.1.2 thorpej * Group must be a valid IP multicast address.
902 1.1.1.2 thorpej */
903 1.1.1.2 thorpej if (m == NULL || m->m_len != sizeof(struct ip_mreq)) {
904 1.1.1.2 thorpej error = EINVAL;
905 1.1.1.2 thorpej break;
906 1.1.1.2 thorpej }
907 1.1.1.2 thorpej mreq = mtod(m, struct ip_mreq *);
908 1.1.1.2 thorpej if (!IN_MULTICAST(ntohl(mreq->imr_multiaddr.s_addr))) {
909 1.1.1.2 thorpej error = EINVAL;
910 1.1.1.2 thorpej break;
911 1.1.1.2 thorpej }
912 1.1.1.2 thorpej /*
913 1.1.1.2 thorpej * If an interface address was specified, get a pointer
914 1.1.1.2 thorpej * to its ifnet structure.
915 1.1.1.2 thorpej */
916 1.1.1.2 thorpej if (mreq->imr_interface.s_addr == INADDR_ANY)
917 1.1.1.2 thorpej ifp = NULL;
918 1.1.1.2 thorpej else {
919 1.1.1.2 thorpej INADDR_TO_IFP(mreq->imr_interface, ifp);
920 1.1.1.2 thorpej if (ifp == NULL) {
921 1.1.1.2 thorpej error = EADDRNOTAVAIL;
922 1.1.1.2 thorpej break;
923 1.1.1.2 thorpej }
924 1.1.1.2 thorpej }
925 1.1.1.2 thorpej /*
926 1.1.1.2 thorpej * Find the membership in the membership array.
927 1.1.1.2 thorpej */
928 1.1.1.2 thorpej for (i = 0; i < imo->imo_num_memberships; ++i) {
929 1.1.1.2 thorpej if ((ifp == NULL ||
930 1.1.1.2 thorpej imo->imo_membership[i]->inm_ifp == ifp) &&
931 1.1.1.2 thorpej imo->imo_membership[i]->inm_addr.s_addr ==
932 1.1.1.2 thorpej mreq->imr_multiaddr.s_addr)
933 1.1.1.2 thorpej break;
934 1.1.1.2 thorpej }
935 1.1.1.2 thorpej if (i == imo->imo_num_memberships) {
936 1.1.1.2 thorpej error = EADDRNOTAVAIL;
937 1.1.1.2 thorpej break;
938 1.1.1.2 thorpej }
939 1.1.1.2 thorpej /*
940 1.1.1.2 thorpej * Give up the multicast address record to which the
941 1.1.1.2 thorpej * membership points.
942 1.1.1.2 thorpej */
943 1.1.1.2 thorpej in_delmulti(imo->imo_membership[i]);
944 1.1.1.2 thorpej /*
945 1.1.1.2 thorpej * Remove the gap in the membership array.
946 1.1.1.2 thorpej */
947 1.1.1.2 thorpej for (++i; i < imo->imo_num_memberships; ++i)
948 1.1.1.2 thorpej imo->imo_membership[i-1] = imo->imo_membership[i];
949 1.1.1.2 thorpej --imo->imo_num_memberships;
950 1.1.1.2 thorpej break;
951 1.1.1.2 thorpej
952 1.1.1.2 thorpej default:
953 1.1.1.2 thorpej error = EOPNOTSUPP;
954 1.1.1.2 thorpej break;
955 1.1.1.2 thorpej }
956 1.1.1.2 thorpej
957 1.1.1.2 thorpej /*
958 1.1.1.2 thorpej * If all options have default values, no need to keep the mbuf.
959 1.1.1.2 thorpej */
960 1.1.1.2 thorpej if (imo->imo_multicast_ifp == NULL &&
961 1.1.1.2 thorpej imo->imo_multicast_ttl == IP_DEFAULT_MULTICAST_TTL &&
962 1.1.1.2 thorpej imo->imo_multicast_loop == IP_DEFAULT_MULTICAST_LOOP &&
963 1.1.1.2 thorpej imo->imo_num_memberships == 0) {
964 1.1.1.2 thorpej free(*imop, M_IPMOPTS);
965 1.1.1.2 thorpej *imop = NULL;
966 1.1.1.2 thorpej }
967 1.1.1.2 thorpej
968 1.1.1.2 thorpej return (error);
969 1.1.1.2 thorpej }
970 1.1.1.2 thorpej
971 1.1.1.2 thorpej /*
972 1.1.1.2 thorpej * Return the IP multicast options in response to user getsockopt().
973 1.1.1.2 thorpej */
974 1.1.1.2 thorpej int
975 1.1.1.2 thorpej ip_getmoptions(optname, imo, mp)
976 1.1.1.2 thorpej int optname;
977 1.1.1.2 thorpej register struct ip_moptions *imo;
978 1.1.1.2 thorpej register struct mbuf **mp;
979 1.1.1.2 thorpej {
980 1.1.1.2 thorpej u_char *ttl;
981 1.1.1.2 thorpej u_char *loop;
982 1.1.1.2 thorpej struct in_addr *addr;
983 1.1.1.2 thorpej struct in_ifaddr *ia;
984 1.1.1.2 thorpej
985 1.1.1.2 thorpej *mp = m_get(M_WAIT, MT_SOOPTS);
986 1.1.1.2 thorpej
987 1.1.1.2 thorpej switch (optname) {
988 1.1.1.2 thorpej
989 1.1.1.2 thorpej case IP_MULTICAST_IF:
990 1.1.1.2 thorpej addr = mtod(*mp, struct in_addr *);
991 1.1.1.2 thorpej (*mp)->m_len = sizeof(struct in_addr);
992 1.1.1.2 thorpej if (imo == NULL || imo->imo_multicast_ifp == NULL)
993 1.1.1.2 thorpej addr->s_addr = INADDR_ANY;
994 1.1.1.2 thorpej else {
995 1.1.1.2 thorpej IFP_TO_IA(imo->imo_multicast_ifp, ia);
996 1.1.1.2 thorpej addr->s_addr = (ia == NULL) ? INADDR_ANY
997 1.1.1.2 thorpej : IA_SIN(ia)->sin_addr.s_addr;
998 1.1.1.2 thorpej }
999 1.1.1.2 thorpej return (0);
1000 1.1.1.2 thorpej
1001 1.1.1.2 thorpej case IP_MULTICAST_TTL:
1002 1.1.1.2 thorpej ttl = mtod(*mp, u_char *);
1003 1.1.1.2 thorpej (*mp)->m_len = 1;
1004 1.1.1.2 thorpej *ttl = (imo == NULL) ? IP_DEFAULT_MULTICAST_TTL
1005 1.1.1.2 thorpej : imo->imo_multicast_ttl;
1006 1.1.1.2 thorpej return (0);
1007 1.1.1.2 thorpej
1008 1.1.1.2 thorpej case IP_MULTICAST_LOOP:
1009 1.1.1.2 thorpej loop = mtod(*mp, u_char *);
1010 1.1.1.2 thorpej (*mp)->m_len = 1;
1011 1.1.1.2 thorpej *loop = (imo == NULL) ? IP_DEFAULT_MULTICAST_LOOP
1012 1.1.1.2 thorpej : imo->imo_multicast_loop;
1013 1.1.1.2 thorpej return (0);
1014 1.1.1.2 thorpej
1015 1.1.1.2 thorpej default:
1016 1.1.1.2 thorpej return (EOPNOTSUPP);
1017 1.1.1.2 thorpej }
1018 1.1.1.2 thorpej }
1019 1.1.1.2 thorpej
1020 1.1.1.2 thorpej /*
1021 1.1.1.2 thorpej * Discard the IP multicast options.
1022 1.1.1.2 thorpej */
1023 1.1.1.2 thorpej void
1024 1.1.1.2 thorpej ip_freemoptions(imo)
1025 1.1.1.2 thorpej register struct ip_moptions *imo;
1026 1.1.1.2 thorpej {
1027 1.1.1.2 thorpej register int i;
1028 1.1.1.2 thorpej
1029 1.1.1.2 thorpej if (imo != NULL) {
1030 1.1.1.2 thorpej for (i = 0; i < imo->imo_num_memberships; ++i)
1031 1.1.1.2 thorpej in_delmulti(imo->imo_membership[i]);
1032 1.1.1.2 thorpej free(imo, M_IPMOPTS);
1033 1.1.1.2 thorpej }
1034 1.1.1.2 thorpej }
1035 1.1.1.2 thorpej
1036 1.1.1.2 thorpej /*
1037 1.1.1.2 thorpej * Routine called from ip_output() to loop back a copy of an IP multicast
1038 1.1.1.2 thorpej * packet to the input queue of a specified interface. Note that this
1039 1.1.1.2 thorpej * calls the output routine of the loopback "driver", but with an interface
1040 1.1.1.2 thorpej * pointer that might NOT be &loif -- easier than replicating that code here.
1041 1.1.1.2 thorpej */
1042 1.1.1.2 thorpej static void
1043 1.1.1.2 thorpej ip_mloopback(ifp, m, dst)
1044 1.1.1.2 thorpej struct ifnet *ifp;
1045 1.1.1.2 thorpej register struct mbuf *m;
1046 1.1.1.2 thorpej register struct sockaddr_in *dst;
1047 1.1.1.2 thorpej {
1048 1.1.1.2 thorpej register struct ip *ip;
1049 1.1.1.2 thorpej struct mbuf *copym;
1050 1.1.1.2 thorpej
1051 1.1.1.2 thorpej copym = m_copy(m, 0, M_COPYALL);
1052 1.1.1.2 thorpej if (copym != NULL) {
1053 1.1.1.2 thorpej /*
1054 1.1.1.2 thorpej * We don't bother to fragment if the IP length is greater
1055 1.1.1.2 thorpej * than the interface's MTU. Can this possibly matter?
1056 1.1.1.2 thorpej */
1057 1.1.1.2 thorpej ip = mtod(copym, struct ip *);
1058 1.1.1.2 thorpej ip->ip_len = htons((u_short)ip->ip_len);
1059 1.1.1.2 thorpej ip->ip_off = htons((u_short)ip->ip_off);
1060 1.1.1.2 thorpej ip->ip_sum = 0;
1061 1.1.1.2 thorpej ip->ip_sum = in_cksum(copym, ip->ip_hl << 2);
1062 1.1.1.2 thorpej (void) looutput(ifp, copym, (struct sockaddr *)dst, NULL);
1063 1.1.1.2 thorpej }
1064 1.1 cgd }
1065