xref: /freebsd/sys/netinet/raw_ip.c (revision 53b70c86)
1 /*-
2  * SPDX-License-Identifier: BSD-3-Clause
3  *
4  * Copyright (c) 1982, 1986, 1988, 1993
5  *	The Regents of the University of California.
6  * All rights reserved.
7  *
8  * Redistribution and use in source and binary forms, with or without
9  * modification, are permitted provided that the following conditions
10  * are met:
11  * 1. Redistributions of source code must retain the above copyright
12  *    notice, this list of conditions and the following disclaimer.
13  * 2. Redistributions in binary form must reproduce the above copyright
14  *    notice, this list of conditions and the following disclaimer in the
15  *    documentation and/or other materials provided with the distribution.
16  * 3. Neither the name of the University nor the names of its contributors
17  *    may be used to endorse or promote products derived from this software
18  *    without specific prior written permission.
19  *
20  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
21  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
22  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
23  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
24  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
25  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
26  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
27  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
28  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
29  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
30  * SUCH DAMAGE.
31  *
32  *	@(#)raw_ip.c	8.7 (Berkeley) 5/15/95
33  */
34 
35 #include <sys/cdefs.h>
36 __FBSDID("$FreeBSD$");
37 
38 #include "opt_inet.h"
39 #include "opt_inet6.h"
40 #include "opt_ipsec.h"
41 #include "opt_route.h"
42 
43 #include <sys/param.h>
44 #include <sys/jail.h>
45 #include <sys/kernel.h>
46 #include <sys/eventhandler.h>
47 #include <sys/lock.h>
48 #include <sys/malloc.h>
49 #include <sys/mbuf.h>
50 #include <sys/priv.h>
51 #include <sys/proc.h>
52 #include <sys/protosw.h>
53 #include <sys/rmlock.h>
54 #include <sys/rwlock.h>
55 #include <sys/signalvar.h>
56 #include <sys/socket.h>
57 #include <sys/socketvar.h>
58 #include <sys/sx.h>
59 #include <sys/sysctl.h>
60 #include <sys/systm.h>
61 
62 #include <vm/uma.h>
63 
64 #include <net/if.h>
65 #include <net/if_var.h>
66 #include <net/route.h>
67 #include <net/route/route_ctl.h>
68 #include <net/vnet.h>
69 
70 #include <netinet/in.h>
71 #include <netinet/in_systm.h>
72 #include <netinet/in_fib.h>
73 #include <netinet/in_pcb.h>
74 #include <netinet/in_var.h>
75 #include <netinet/if_ether.h>
76 #include <netinet/ip.h>
77 #include <netinet/ip_var.h>
78 #include <netinet/ip_mroute.h>
79 #include <netinet/ip_icmp.h>
80 
81 #include <netipsec/ipsec_support.h>
82 
83 #include <machine/stdarg.h>
84 #include <security/mac/mac_framework.h>
85 
86 VNET_DEFINE(int, ip_defttl) = IPDEFTTL;
87 SYSCTL_INT(_net_inet_ip, IPCTL_DEFTTL, ttl, CTLFLAG_VNET | CTLFLAG_RW,
88     &VNET_NAME(ip_defttl), 0,
89     "Maximum TTL on IP packets");
90 
91 VNET_DEFINE(struct inpcbhead, ripcb);
92 VNET_DEFINE(struct inpcbinfo, ripcbinfo);
93 
94 #define	V_ripcb			VNET(ripcb)
95 #define	V_ripcbinfo		VNET(ripcbinfo)
96 
97 /*
98  * Control and data hooks for ipfw, dummynet, divert and so on.
99  * The data hooks are not used here but it is convenient
100  * to keep them all in one place.
101  */
102 VNET_DEFINE(ip_fw_chk_ptr_t, ip_fw_chk_ptr) = NULL;
103 VNET_DEFINE(ip_fw_ctl_ptr_t, ip_fw_ctl_ptr) = NULL;
104 
105 int	(*ip_dn_ctl_ptr)(struct sockopt *);
106 int	(*ip_dn_io_ptr)(struct mbuf **, struct ip_fw_args *);
107 void	(*ip_divert_ptr)(struct mbuf *, bool);
108 int	(*ng_ipfw_input_p)(struct mbuf **, struct ip_fw_args *, bool);
109 
110 #ifdef INET
111 /*
112  * Hooks for multicast routing. They all default to NULL, so leave them not
113  * initialized and rely on BSS being set to 0.
114  */
115 
116 /*
117  * The socket used to communicate with the multicast routing daemon.
118  */
119 VNET_DEFINE(struct socket *, ip_mrouter);
120 
121 /*
122  * The various mrouter and rsvp functions.
123  */
124 int (*ip_mrouter_set)(struct socket *, struct sockopt *);
125 int (*ip_mrouter_get)(struct socket *, struct sockopt *);
126 int (*ip_mrouter_done)(void);
127 int (*ip_mforward)(struct ip *, struct ifnet *, struct mbuf *,
128 		   struct ip_moptions *);
129 int (*mrt_ioctl)(u_long, caddr_t, int);
130 int (*legal_vif_num)(int);
131 u_long (*ip_mcast_src)(int);
132 
133 int (*rsvp_input_p)(struct mbuf **, int *, int);
134 int (*ip_rsvp_vif)(struct socket *, struct sockopt *);
135 void (*ip_rsvp_force_done)(struct socket *);
136 #endif /* INET */
137 
138 extern	struct protosw inetsw[];
139 
140 u_long	rip_sendspace = 9216;
141 SYSCTL_ULONG(_net_inet_raw, OID_AUTO, maxdgram, CTLFLAG_RW,
142     &rip_sendspace, 0, "Maximum outgoing raw IP datagram size");
143 
144 u_long	rip_recvspace = 9216;
145 SYSCTL_ULONG(_net_inet_raw, OID_AUTO, recvspace, CTLFLAG_RW,
146     &rip_recvspace, 0, "Maximum space for incoming raw IP datagrams");
147 
148 /*
149  * Hash functions
150  */
151 
152 #define INP_PCBHASH_RAW_SIZE	256
153 #define INP_PCBHASH_RAW(proto, laddr, faddr, mask) \
154         (((proto) + (laddr) + (faddr)) % (mask) + 1)
155 
156 #ifdef INET
157 static void
158 rip_inshash(struct inpcb *inp)
159 {
160 	struct inpcbinfo *pcbinfo = inp->inp_pcbinfo;
161 	struct inpcbhead *pcbhash;
162 	int hash;
163 
164 	INP_INFO_WLOCK_ASSERT(pcbinfo);
165 	INP_WLOCK_ASSERT(inp);
166 
167 	if (inp->inp_ip_p != 0 &&
168 	    inp->inp_laddr.s_addr != INADDR_ANY &&
169 	    inp->inp_faddr.s_addr != INADDR_ANY) {
170 		hash = INP_PCBHASH_RAW(inp->inp_ip_p, inp->inp_laddr.s_addr,
171 		    inp->inp_faddr.s_addr, pcbinfo->ipi_hashmask);
172 	} else
173 		hash = 0;
174 	pcbhash = &pcbinfo->ipi_hashbase[hash];
175 	CK_LIST_INSERT_HEAD(pcbhash, inp, inp_hash);
176 }
177 
178 static void
179 rip_delhash(struct inpcb *inp)
180 {
181 
182 	INP_INFO_WLOCK_ASSERT(inp->inp_pcbinfo);
183 	INP_WLOCK_ASSERT(inp);
184 
185 	CK_LIST_REMOVE(inp, inp_hash);
186 }
187 #endif /* INET */
188 
189 /*
190  * Raw interface to IP protocol.
191  */
192 
193 /*
194  * Initialize raw connection block q.
195  */
196 static void
197 rip_zone_change(void *tag)
198 {
199 
200 	uma_zone_set_max(V_ripcbinfo.ipi_zone, maxsockets);
201 }
202 
203 static int
204 rip_inpcb_init(void *mem, int size, int flags)
205 {
206 	struct inpcb *inp = mem;
207 
208 	INP_LOCK_INIT(inp, "inp", "rawinp");
209 	return (0);
210 }
211 
212 void
213 rip_init(void)
214 {
215 
216 	in_pcbinfo_init(&V_ripcbinfo, "rip", &V_ripcb, INP_PCBHASH_RAW_SIZE,
217 	    1, "ripcb", rip_inpcb_init, IPI_HASHFIELDS_NONE);
218 	EVENTHANDLER_REGISTER(maxsockets_change, rip_zone_change, NULL,
219 	    EVENTHANDLER_PRI_ANY);
220 }
221 
222 #ifdef VIMAGE
223 static void
224 rip_destroy(void *unused __unused)
225 {
226 
227 	in_pcbinfo_destroy(&V_ripcbinfo);
228 }
229 VNET_SYSUNINIT(raw_ip, SI_SUB_PROTO_DOMAIN, SI_ORDER_FOURTH, rip_destroy, NULL);
230 #endif
231 
232 #ifdef INET
233 static int
234 rip_append(struct inpcb *last, struct ip *ip, struct mbuf *n,
235     struct sockaddr_in *ripsrc)
236 {
237 	int policyfail = 0;
238 
239 	INP_LOCK_ASSERT(last);
240 
241 #if defined(IPSEC) || defined(IPSEC_SUPPORT)
242 	/* check AH/ESP integrity. */
243 	if (IPSEC_ENABLED(ipv4)) {
244 		if (IPSEC_CHECK_POLICY(ipv4, n, last) != 0)
245 			policyfail = 1;
246 	}
247 #endif /* IPSEC */
248 #ifdef MAC
249 	if (!policyfail && mac_inpcb_check_deliver(last, n) != 0)
250 		policyfail = 1;
251 #endif
252 	/* Check the minimum TTL for socket. */
253 	if (last->inp_ip_minttl && last->inp_ip_minttl > ip->ip_ttl)
254 		policyfail = 1;
255 	if (!policyfail) {
256 		struct mbuf *opts = NULL;
257 		struct socket *so;
258 
259 		so = last->inp_socket;
260 		if ((last->inp_flags & INP_CONTROLOPTS) ||
261 		    (so->so_options & (SO_TIMESTAMP | SO_BINTIME)))
262 			ip_savecontrol(last, &opts, ip, n);
263 		SOCKBUF_LOCK(&so->so_rcv);
264 		if (sbappendaddr_locked(&so->so_rcv,
265 		    (struct sockaddr *)ripsrc, n, opts) == 0) {
266 			soroverflow_locked(so);
267 			m_freem(n);
268 			if (opts)
269 				m_freem(opts);
270 		} else
271 			sorwakeup_locked(so);
272 	} else
273 		m_freem(n);
274 	return (policyfail);
275 }
276 
277 /*
278  * Setup generic address and protocol structures for raw_input routine, then
279  * pass them along with mbuf chain.
280  */
281 int
282 rip_input(struct mbuf **mp, int *offp, int proto)
283 {
284 	struct ifnet *ifp;
285 	struct mbuf *m = *mp;
286 	struct ip *ip = mtod(m, struct ip *);
287 	struct inpcb *inp, *last;
288 	struct sockaddr_in ripsrc;
289 	int hash;
290 
291 	NET_EPOCH_ASSERT();
292 
293 	*mp = NULL;
294 
295 	bzero(&ripsrc, sizeof(ripsrc));
296 	ripsrc.sin_len = sizeof(ripsrc);
297 	ripsrc.sin_family = AF_INET;
298 	ripsrc.sin_addr = ip->ip_src;
299 	last = NULL;
300 
301 	ifp = m->m_pkthdr.rcvif;
302 
303 	hash = INP_PCBHASH_RAW(proto, ip->ip_src.s_addr,
304 	    ip->ip_dst.s_addr, V_ripcbinfo.ipi_hashmask);
305 	CK_LIST_FOREACH(inp, &V_ripcbinfo.ipi_hashbase[hash], inp_hash) {
306 		if (inp->inp_ip_p != proto)
307 			continue;
308 #ifdef INET6
309 		/* XXX inp locking */
310 		if ((inp->inp_vflag & INP_IPV4) == 0)
311 			continue;
312 #endif
313 		if (inp->inp_laddr.s_addr != ip->ip_dst.s_addr)
314 			continue;
315 		if (inp->inp_faddr.s_addr != ip->ip_src.s_addr)
316 			continue;
317 		if (last != NULL) {
318 			struct mbuf *n;
319 
320 			n = m_copym(m, 0, M_COPYALL, M_NOWAIT);
321 			if (n != NULL)
322 			    (void) rip_append(last, ip, n, &ripsrc);
323 			/* XXX count dropped packet */
324 			INP_RUNLOCK(last);
325 			last = NULL;
326 		}
327 		INP_RLOCK(inp);
328 		if (__predict_false(inp->inp_flags2 & INP_FREED))
329 			goto skip_1;
330 		if (jailed_without_vnet(inp->inp_cred)) {
331 			/*
332 			 * XXX: If faddr was bound to multicast group,
333 			 * jailed raw socket will drop datagram.
334 			 */
335 			if (prison_check_ip4(inp->inp_cred, &ip->ip_dst) != 0)
336 				goto skip_1;
337 		}
338 		last = inp;
339 		continue;
340 	skip_1:
341 		INP_RUNLOCK(inp);
342 	}
343 	CK_LIST_FOREACH(inp, &V_ripcbinfo.ipi_hashbase[0], inp_hash) {
344 		if (inp->inp_ip_p && inp->inp_ip_p != proto)
345 			continue;
346 #ifdef INET6
347 		/* XXX inp locking */
348 		if ((inp->inp_vflag & INP_IPV4) == 0)
349 			continue;
350 #endif
351 		if (!in_nullhost(inp->inp_laddr) &&
352 		    !in_hosteq(inp->inp_laddr, ip->ip_dst))
353 			continue;
354 		if (!in_nullhost(inp->inp_faddr) &&
355 		    !in_hosteq(inp->inp_faddr, ip->ip_src))
356 			continue;
357 		if (last != NULL) {
358 			struct mbuf *n;
359 
360 			n = m_copym(m, 0, M_COPYALL, M_NOWAIT);
361 			if (n != NULL)
362 				(void) rip_append(last, ip, n, &ripsrc);
363 			/* XXX count dropped packet */
364 			INP_RUNLOCK(last);
365 			last = NULL;
366 		}
367 		INP_RLOCK(inp);
368 		if (__predict_false(inp->inp_flags2 & INP_FREED))
369 			goto skip_2;
370 		if (jailed_without_vnet(inp->inp_cred)) {
371 			/*
372 			 * Allow raw socket in jail to receive multicast;
373 			 * assume process had PRIV_NETINET_RAW at attach,
374 			 * and fall through into normal filter path if so.
375 			 */
376 			if (!IN_MULTICAST(ntohl(ip->ip_dst.s_addr)) &&
377 			    prison_check_ip4(inp->inp_cred, &ip->ip_dst) != 0)
378 				goto skip_2;
379 		}
380 		/*
381 		 * If this raw socket has multicast state, and we
382 		 * have received a multicast, check if this socket
383 		 * should receive it, as multicast filtering is now
384 		 * the responsibility of the transport layer.
385 		 */
386 		if (inp->inp_moptions != NULL &&
387 		    IN_MULTICAST(ntohl(ip->ip_dst.s_addr))) {
388 			/*
389 			 * If the incoming datagram is for IGMP, allow it
390 			 * through unconditionally to the raw socket.
391 			 *
392 			 * In the case of IGMPv2, we may not have explicitly
393 			 * joined the group, and may have set IFF_ALLMULTI
394 			 * on the interface. imo_multi_filter() may discard
395 			 * control traffic we actually need to see.
396 			 *
397 			 * Userland multicast routing daemons should continue
398 			 * filter the control traffic appropriately.
399 			 */
400 			int blocked;
401 
402 			blocked = MCAST_PASS;
403 			if (proto != IPPROTO_IGMP) {
404 				struct sockaddr_in group;
405 
406 				bzero(&group, sizeof(struct sockaddr_in));
407 				group.sin_len = sizeof(struct sockaddr_in);
408 				group.sin_family = AF_INET;
409 				group.sin_addr = ip->ip_dst;
410 
411 				blocked = imo_multi_filter(inp->inp_moptions,
412 				    ifp,
413 				    (struct sockaddr *)&group,
414 				    (struct sockaddr *)&ripsrc);
415 			}
416 
417 			if (blocked != MCAST_PASS) {
418 				IPSTAT_INC(ips_notmember);
419 				goto skip_2;
420 			}
421 		}
422 		last = inp;
423 		continue;
424 	skip_2:
425 		INP_RUNLOCK(inp);
426 	}
427 	if (last != NULL) {
428 		if (rip_append(last, ip, m, &ripsrc) != 0)
429 			IPSTAT_INC(ips_delivered);
430 		INP_RUNLOCK(last);
431 	} else {
432 		if (inetsw[ip_protox[ip->ip_p]].pr_input == rip_input) {
433 			IPSTAT_INC(ips_noproto);
434 			IPSTAT_DEC(ips_delivered);
435 			icmp_error(m, ICMP_UNREACH, ICMP_UNREACH_PROTOCOL, 0, 0);
436 		} else {
437 			m_freem(m);
438 		}
439 	}
440 	return (IPPROTO_DONE);
441 }
442 
443 /*
444  * Generate IP header and pass packet to ip_output.  Tack on options user may
445  * have setup with control call.
446  */
447 int
448 rip_output(struct mbuf *m, struct socket *so, ...)
449 {
450 	struct epoch_tracker et;
451 	struct ip *ip;
452 	int error;
453 	struct inpcb *inp = sotoinpcb(so);
454 	va_list ap;
455 	u_long dst;
456 	int flags = ((so->so_options & SO_DONTROUTE) ? IP_ROUTETOIF : 0) |
457 	    IP_ALLOWBROADCAST;
458 	int cnt, hlen;
459 	u_char opttype, optlen, *cp;
460 
461 	va_start(ap, so);
462 	dst = va_arg(ap, u_long);
463 	va_end(ap);
464 
465 	/*
466 	 * If the user handed us a complete IP packet, use it.  Otherwise,
467 	 * allocate an mbuf for a header and fill it in.
468 	 */
469 	if ((inp->inp_flags & INP_HDRINCL) == 0) {
470 		if (m->m_pkthdr.len + sizeof(struct ip) > IP_MAXPACKET) {
471 			m_freem(m);
472 			return(EMSGSIZE);
473 		}
474 		M_PREPEND(m, sizeof(struct ip), M_NOWAIT);
475 		if (m == NULL)
476 			return(ENOBUFS);
477 
478 		INP_RLOCK(inp);
479 		ip = mtod(m, struct ip *);
480 		ip->ip_tos = inp->inp_ip_tos;
481 		if (inp->inp_flags & INP_DONTFRAG)
482 			ip->ip_off = htons(IP_DF);
483 		else
484 			ip->ip_off = htons(0);
485 		ip->ip_p = inp->inp_ip_p;
486 		ip->ip_len = htons(m->m_pkthdr.len);
487 		ip->ip_src = inp->inp_laddr;
488 		ip->ip_dst.s_addr = dst;
489 #ifdef ROUTE_MPATH
490 		if (CALC_FLOWID_OUTBOUND) {
491 			uint32_t hash_type, hash_val;
492 
493 			hash_val = fib4_calc_software_hash(ip->ip_src,
494 			    ip->ip_dst, 0, 0, ip->ip_p, &hash_type);
495 			m->m_pkthdr.flowid = hash_val;
496 			M_HASHTYPE_SET(m, hash_type);
497 			flags |= IP_NODEFAULTFLOWID;
498 		}
499 #endif
500 		if (jailed(inp->inp_cred)) {
501 			/*
502 			 * prison_local_ip4() would be good enough but would
503 			 * let a source of INADDR_ANY pass, which we do not
504 			 * want to see from jails.
505 			 */
506 			if (ip->ip_src.s_addr == INADDR_ANY) {
507 				NET_EPOCH_ENTER(et);
508 				error = in_pcbladdr(inp, &ip->ip_dst,
509 				    &ip->ip_src, inp->inp_cred);
510 				NET_EPOCH_EXIT(et);
511 			} else {
512 				error = prison_local_ip4(inp->inp_cred,
513 				    &ip->ip_src);
514 			}
515 			if (error != 0) {
516 				INP_RUNLOCK(inp);
517 				m_freem(m);
518 				return (error);
519 			}
520 		}
521 		ip->ip_ttl = inp->inp_ip_ttl;
522 	} else {
523 		if (m->m_pkthdr.len > IP_MAXPACKET) {
524 			m_freem(m);
525 			return (EMSGSIZE);
526 		}
527 		if (m->m_pkthdr.len < sizeof(*ip)) {
528 			m_freem(m);
529 			return (EINVAL);
530 		}
531 		m = m_pullup(m, sizeof(*ip));
532 		if (m == NULL)
533 			return (ENOMEM);
534 		ip = mtod(m, struct ip *);
535 		hlen = ip->ip_hl << 2;
536 		if (m->m_len < hlen) {
537 			m = m_pullup(m, hlen);
538 			if (m == NULL)
539 				return (EINVAL);
540 			ip = mtod(m, struct ip *);
541 		}
542 #ifdef ROUTE_MPATH
543 		if (CALC_FLOWID_OUTBOUND) {
544 			uint32_t hash_type, hash_val;
545 
546 			hash_val = fib4_calc_software_hash(ip->ip_dst,
547 			    ip->ip_src, 0, 0, ip->ip_p, &hash_type);
548 			m->m_pkthdr.flowid = hash_val;
549 			M_HASHTYPE_SET(m, hash_type);
550 			flags |= IP_NODEFAULTFLOWID;
551 		}
552 #endif
553 		INP_RLOCK(inp);
554 		/*
555 		 * Don't allow both user specified and setsockopt options,
556 		 * and don't allow packet length sizes that will crash.
557 		 */
558 		if ((hlen < sizeof (*ip))
559 		    || ((hlen > sizeof (*ip)) && inp->inp_options)
560 		    || (ntohs(ip->ip_len) != m->m_pkthdr.len)) {
561 			INP_RUNLOCK(inp);
562 			m_freem(m);
563 			return (EINVAL);
564 		}
565 		error = prison_check_ip4(inp->inp_cred, &ip->ip_src);
566 		if (error != 0) {
567 			INP_RUNLOCK(inp);
568 			m_freem(m);
569 			return (error);
570 		}
571 		/*
572 		 * Don't allow IP options which do not have the required
573 		 * structure as specified in section 3.1 of RFC 791 on
574 		 * pages 15-23.
575 		 */
576 		cp = (u_char *)(ip + 1);
577 		cnt = hlen - sizeof (struct ip);
578 		for (; cnt > 0; cnt -= optlen, cp += optlen) {
579 			opttype = cp[IPOPT_OPTVAL];
580 			if (opttype == IPOPT_EOL)
581 				break;
582 			if (opttype == IPOPT_NOP) {
583 				optlen = 1;
584 				continue;
585 			}
586 			if (cnt < IPOPT_OLEN + sizeof(u_char)) {
587 				INP_RUNLOCK(inp);
588 				m_freem(m);
589 				return (EINVAL);
590 			}
591 			optlen = cp[IPOPT_OLEN];
592 			if (optlen < IPOPT_OLEN + sizeof(u_char) ||
593 			    optlen > cnt) {
594 				INP_RUNLOCK(inp);
595 				m_freem(m);
596 				return (EINVAL);
597 			}
598 		}
599 		/*
600 		 * This doesn't allow application to specify ID of zero,
601 		 * but we got this limitation from the beginning of history.
602 		 */
603 		if (ip->ip_id == 0)
604 			ip_fillid(ip);
605 
606 		/*
607 		 * XXX prevent ip_output from overwriting header fields.
608 		 */
609 		flags |= IP_RAWOUTPUT;
610 		IPSTAT_INC(ips_rawout);
611 	}
612 
613 	if (inp->inp_flags & INP_ONESBCAST)
614 		flags |= IP_SENDONES;
615 
616 #ifdef MAC
617 	mac_inpcb_create_mbuf(inp, m);
618 #endif
619 
620 	NET_EPOCH_ENTER(et);
621 	error = ip_output(m, inp->inp_options, NULL, flags,
622 	    inp->inp_moptions, inp);
623 	NET_EPOCH_EXIT(et);
624 	INP_RUNLOCK(inp);
625 	return (error);
626 }
627 
628 /*
629  * Raw IP socket option processing.
630  *
631  * IMPORTANT NOTE regarding access control: Traditionally, raw sockets could
632  * only be created by a privileged process, and as such, socket option
633  * operations to manage system properties on any raw socket were allowed to
634  * take place without explicit additional access control checks.  However,
635  * raw sockets can now also be created in jail(), and therefore explicit
636  * checks are now required.  Likewise, raw sockets can be used by a process
637  * after it gives up privilege, so some caution is required.  For options
638  * passed down to the IP layer via ip_ctloutput(), checks are assumed to be
639  * performed in ip_ctloutput() and therefore no check occurs here.
640  * Unilaterally checking priv_check() here breaks normal IP socket option
641  * operations on raw sockets.
642  *
643  * When adding new socket options here, make sure to add access control
644  * checks here as necessary.
645  *
646  * XXX-BZ inp locking?
647  */
648 int
649 rip_ctloutput(struct socket *so, struct sockopt *sopt)
650 {
651 	struct	inpcb *inp = sotoinpcb(so);
652 	int	error, optval;
653 
654 	if (sopt->sopt_level != IPPROTO_IP) {
655 		if ((sopt->sopt_level == SOL_SOCKET) &&
656 		    (sopt->sopt_name == SO_SETFIB)) {
657 			inp->inp_inc.inc_fibnum = so->so_fibnum;
658 			return (0);
659 		}
660 		return (EINVAL);
661 	}
662 
663 	error = 0;
664 	switch (sopt->sopt_dir) {
665 	case SOPT_GET:
666 		switch (sopt->sopt_name) {
667 		case IP_HDRINCL:
668 			optval = inp->inp_flags & INP_HDRINCL;
669 			error = sooptcopyout(sopt, &optval, sizeof optval);
670 			break;
671 
672 		case IP_FW3:	/* generic ipfw v.3 functions */
673 		case IP_FW_ADD:	/* ADD actually returns the body... */
674 		case IP_FW_GET:
675 		case IP_FW_TABLE_GETSIZE:
676 		case IP_FW_TABLE_LIST:
677 		case IP_FW_NAT_GET_CONFIG:
678 		case IP_FW_NAT_GET_LOG:
679 			if (V_ip_fw_ctl_ptr != NULL)
680 				error = V_ip_fw_ctl_ptr(sopt);
681 			else
682 				error = ENOPROTOOPT;
683 			break;
684 
685 		case IP_DUMMYNET3:	/* generic dummynet v.3 functions */
686 		case IP_DUMMYNET_GET:
687 			if (ip_dn_ctl_ptr != NULL)
688 				error = ip_dn_ctl_ptr(sopt);
689 			else
690 				error = ENOPROTOOPT;
691 			break ;
692 
693 		case MRT_INIT:
694 		case MRT_DONE:
695 		case MRT_ADD_VIF:
696 		case MRT_DEL_VIF:
697 		case MRT_ADD_MFC:
698 		case MRT_DEL_MFC:
699 		case MRT_VERSION:
700 		case MRT_ASSERT:
701 		case MRT_API_SUPPORT:
702 		case MRT_API_CONFIG:
703 		case MRT_ADD_BW_UPCALL:
704 		case MRT_DEL_BW_UPCALL:
705 			error = priv_check(curthread, PRIV_NETINET_MROUTE);
706 			if (error != 0)
707 				return (error);
708 			error = ip_mrouter_get ? ip_mrouter_get(so, sopt) :
709 				EOPNOTSUPP;
710 			break;
711 
712 		default:
713 			error = ip_ctloutput(so, sopt);
714 			break;
715 		}
716 		break;
717 
718 	case SOPT_SET:
719 		switch (sopt->sopt_name) {
720 		case IP_HDRINCL:
721 			error = sooptcopyin(sopt, &optval, sizeof optval,
722 					    sizeof optval);
723 			if (error)
724 				break;
725 			if (optval)
726 				inp->inp_flags |= INP_HDRINCL;
727 			else
728 				inp->inp_flags &= ~INP_HDRINCL;
729 			break;
730 
731 		case IP_FW3:	/* generic ipfw v.3 functions */
732 		case IP_FW_ADD:
733 		case IP_FW_DEL:
734 		case IP_FW_FLUSH:
735 		case IP_FW_ZERO:
736 		case IP_FW_RESETLOG:
737 		case IP_FW_TABLE_ADD:
738 		case IP_FW_TABLE_DEL:
739 		case IP_FW_TABLE_FLUSH:
740 		case IP_FW_NAT_CFG:
741 		case IP_FW_NAT_DEL:
742 			if (V_ip_fw_ctl_ptr != NULL)
743 				error = V_ip_fw_ctl_ptr(sopt);
744 			else
745 				error = ENOPROTOOPT;
746 			break;
747 
748 		case IP_DUMMYNET3:	/* generic dummynet v.3 functions */
749 		case IP_DUMMYNET_CONFIGURE:
750 		case IP_DUMMYNET_DEL:
751 		case IP_DUMMYNET_FLUSH:
752 			if (ip_dn_ctl_ptr != NULL)
753 				error = ip_dn_ctl_ptr(sopt);
754 			else
755 				error = ENOPROTOOPT ;
756 			break ;
757 
758 		case IP_RSVP_ON:
759 			error = priv_check(curthread, PRIV_NETINET_MROUTE);
760 			if (error != 0)
761 				return (error);
762 			error = ip_rsvp_init(so);
763 			break;
764 
765 		case IP_RSVP_OFF:
766 			error = priv_check(curthread, PRIV_NETINET_MROUTE);
767 			if (error != 0)
768 				return (error);
769 			error = ip_rsvp_done();
770 			break;
771 
772 		case IP_RSVP_VIF_ON:
773 		case IP_RSVP_VIF_OFF:
774 			error = priv_check(curthread, PRIV_NETINET_MROUTE);
775 			if (error != 0)
776 				return (error);
777 			error = ip_rsvp_vif ?
778 				ip_rsvp_vif(so, sopt) : EINVAL;
779 			break;
780 
781 		case MRT_INIT:
782 		case MRT_DONE:
783 		case MRT_ADD_VIF:
784 		case MRT_DEL_VIF:
785 		case MRT_ADD_MFC:
786 		case MRT_DEL_MFC:
787 		case MRT_VERSION:
788 		case MRT_ASSERT:
789 		case MRT_API_SUPPORT:
790 		case MRT_API_CONFIG:
791 		case MRT_ADD_BW_UPCALL:
792 		case MRT_DEL_BW_UPCALL:
793 			error = priv_check(curthread, PRIV_NETINET_MROUTE);
794 			if (error != 0)
795 				return (error);
796 			error = ip_mrouter_set ? ip_mrouter_set(so, sopt) :
797 					EOPNOTSUPP;
798 			break;
799 
800 		default:
801 			error = ip_ctloutput(so, sopt);
802 			break;
803 		}
804 		break;
805 	}
806 
807 	return (error);
808 }
809 
810 /*
811  * This function exists solely to receive the PRC_IFDOWN messages which are
812  * sent by if_down().  It looks for an ifaddr whose ifa_addr is sa, and calls
813  * in_ifadown() to remove all routes corresponding to that address.  It also
814  * receives the PRC_IFUP messages from if_up() and reinstalls the interface
815  * routes.
816  */
817 void
818 rip_ctlinput(int cmd, struct sockaddr *sa, void *vip)
819 {
820 	struct rm_priotracker in_ifa_tracker;
821 	struct in_ifaddr *ia;
822 	struct ifnet *ifp;
823 	int err;
824 	int flags;
825 
826 	switch (cmd) {
827 	case PRC_IFDOWN:
828 		IN_IFADDR_RLOCK(&in_ifa_tracker);
829 		CK_STAILQ_FOREACH(ia, &V_in_ifaddrhead, ia_link) {
830 			if (ia->ia_ifa.ifa_addr == sa
831 			    && (ia->ia_flags & IFA_ROUTE)) {
832 				ifa_ref(&ia->ia_ifa);
833 				IN_IFADDR_RUNLOCK(&in_ifa_tracker);
834 				/*
835 				 * in_scrubprefix() kills the interface route.
836 				 */
837 				in_scrubprefix(ia, 0);
838 				/*
839 				 * in_ifadown gets rid of all the rest of the
840 				 * routes.  This is not quite the right thing
841 				 * to do, but at least if we are running a
842 				 * routing process they will come back.
843 				 */
844 				in_ifadown(&ia->ia_ifa, 0);
845 				ifa_free(&ia->ia_ifa);
846 				break;
847 			}
848 		}
849 		if (ia == NULL)		/* If ia matched, already unlocked. */
850 			IN_IFADDR_RUNLOCK(&in_ifa_tracker);
851 		break;
852 
853 	case PRC_IFUP:
854 		IN_IFADDR_RLOCK(&in_ifa_tracker);
855 		CK_STAILQ_FOREACH(ia, &V_in_ifaddrhead, ia_link) {
856 			if (ia->ia_ifa.ifa_addr == sa)
857 				break;
858 		}
859 		if (ia == NULL || (ia->ia_flags & IFA_ROUTE)) {
860 			IN_IFADDR_RUNLOCK(&in_ifa_tracker);
861 			return;
862 		}
863 		ifa_ref(&ia->ia_ifa);
864 		IN_IFADDR_RUNLOCK(&in_ifa_tracker);
865 		flags = RTF_UP;
866 		ifp = ia->ia_ifa.ifa_ifp;
867 
868 		if ((ifp->if_flags & IFF_LOOPBACK)
869 		    || (ifp->if_flags & IFF_POINTOPOINT))
870 			flags |= RTF_HOST;
871 
872 		err = ifa_del_loopback_route((struct ifaddr *)ia, sa);
873 
874 		rt_addrmsg(RTM_ADD, &ia->ia_ifa, ia->ia_ifp->if_fib);
875 		err = in_handle_ifaddr_route(RTM_ADD, ia);
876 		if (err == 0)
877 			ia->ia_flags |= IFA_ROUTE;
878 
879 		err = ifa_add_loopback_route((struct ifaddr *)ia, sa);
880 
881 		ifa_free(&ia->ia_ifa);
882 		break;
883 #if defined(IPSEC) || defined(IPSEC_SUPPORT)
884 	case PRC_MSGSIZE:
885 		if (IPSEC_ENABLED(ipv4))
886 			IPSEC_CTLINPUT(ipv4, cmd, sa, vip);
887 		break;
888 #endif
889 	}
890 }
891 
892 static int
893 rip_attach(struct socket *so, int proto, struct thread *td)
894 {
895 	struct inpcb *inp;
896 	int error;
897 
898 	inp = sotoinpcb(so);
899 	KASSERT(inp == NULL, ("rip_attach: inp != NULL"));
900 
901 	error = priv_check(td, PRIV_NETINET_RAW);
902 	if (error)
903 		return (error);
904 	if (proto >= IPPROTO_MAX || proto < 0)
905 		return EPROTONOSUPPORT;
906 	error = soreserve(so, rip_sendspace, rip_recvspace);
907 	if (error)
908 		return (error);
909 	INP_INFO_WLOCK(&V_ripcbinfo);
910 	error = in_pcballoc(so, &V_ripcbinfo);
911 	if (error) {
912 		INP_INFO_WUNLOCK(&V_ripcbinfo);
913 		return (error);
914 	}
915 	inp = (struct inpcb *)so->so_pcb;
916 	inp->inp_vflag |= INP_IPV4;
917 	inp->inp_ip_p = proto;
918 	inp->inp_ip_ttl = V_ip_defttl;
919 	rip_inshash(inp);
920 	INP_INFO_WUNLOCK(&V_ripcbinfo);
921 	INP_WUNLOCK(inp);
922 	return (0);
923 }
924 
925 static void
926 rip_detach(struct socket *so)
927 {
928 	struct inpcb *inp;
929 
930 	inp = sotoinpcb(so);
931 	KASSERT(inp != NULL, ("rip_detach: inp == NULL"));
932 	KASSERT(inp->inp_faddr.s_addr == INADDR_ANY,
933 	    ("rip_detach: not closed"));
934 
935 	INP_INFO_WLOCK(&V_ripcbinfo);
936 	INP_WLOCK(inp);
937 	rip_delhash(inp);
938 	if (so == V_ip_mrouter && ip_mrouter_done)
939 		ip_mrouter_done();
940 	if (ip_rsvp_force_done)
941 		ip_rsvp_force_done(so);
942 	if (so == V_ip_rsvpd)
943 		ip_rsvp_done();
944 	in_pcbdetach(inp);
945 	in_pcbfree(inp);
946 	INP_INFO_WUNLOCK(&V_ripcbinfo);
947 }
948 
949 static void
950 rip_dodisconnect(struct socket *so, struct inpcb *inp)
951 {
952 	struct inpcbinfo *pcbinfo;
953 
954 	pcbinfo = inp->inp_pcbinfo;
955 	INP_INFO_WLOCK(pcbinfo);
956 	INP_WLOCK(inp);
957 	rip_delhash(inp);
958 	inp->inp_faddr.s_addr = INADDR_ANY;
959 	rip_inshash(inp);
960 	SOCK_LOCK(so);
961 	so->so_state &= ~SS_ISCONNECTED;
962 	SOCK_UNLOCK(so);
963 	INP_WUNLOCK(inp);
964 	INP_INFO_WUNLOCK(pcbinfo);
965 }
966 
967 static void
968 rip_abort(struct socket *so)
969 {
970 	struct inpcb *inp;
971 
972 	inp = sotoinpcb(so);
973 	KASSERT(inp != NULL, ("rip_abort: inp == NULL"));
974 
975 	rip_dodisconnect(so, inp);
976 }
977 
978 static void
979 rip_close(struct socket *so)
980 {
981 	struct inpcb *inp;
982 
983 	inp = sotoinpcb(so);
984 	KASSERT(inp != NULL, ("rip_close: inp == NULL"));
985 
986 	rip_dodisconnect(so, inp);
987 }
988 
989 static int
990 rip_disconnect(struct socket *so)
991 {
992 	struct inpcb *inp;
993 
994 	if ((so->so_state & SS_ISCONNECTED) == 0)
995 		return (ENOTCONN);
996 
997 	inp = sotoinpcb(so);
998 	KASSERT(inp != NULL, ("rip_disconnect: inp == NULL"));
999 
1000 	rip_dodisconnect(so, inp);
1001 	return (0);
1002 }
1003 
1004 static int
1005 rip_bind(struct socket *so, struct sockaddr *nam, struct thread *td)
1006 {
1007 	struct sockaddr_in *addr = (struct sockaddr_in *)nam;
1008 	struct inpcb *inp;
1009 	int error;
1010 
1011 	if (nam->sa_family != AF_INET)
1012 		return (EAFNOSUPPORT);
1013 	if (nam->sa_len != sizeof(*addr))
1014 		return (EINVAL);
1015 
1016 	error = prison_check_ip4(td->td_ucred, &addr->sin_addr);
1017 	if (error != 0)
1018 		return (error);
1019 
1020 	inp = sotoinpcb(so);
1021 	KASSERT(inp != NULL, ("rip_bind: inp == NULL"));
1022 
1023 	if (CK_STAILQ_EMPTY(&V_ifnet) ||
1024 	    (addr->sin_family != AF_INET && addr->sin_family != AF_IMPLINK) ||
1025 	    (addr->sin_addr.s_addr &&
1026 	     (inp->inp_flags & INP_BINDANY) == 0 &&
1027 	     ifa_ifwithaddr_check((struct sockaddr *)addr) == 0))
1028 		return (EADDRNOTAVAIL);
1029 
1030 	INP_INFO_WLOCK(&V_ripcbinfo);
1031 	INP_WLOCK(inp);
1032 	rip_delhash(inp);
1033 	inp->inp_laddr = addr->sin_addr;
1034 	rip_inshash(inp);
1035 	INP_WUNLOCK(inp);
1036 	INP_INFO_WUNLOCK(&V_ripcbinfo);
1037 	return (0);
1038 }
1039 
1040 static int
1041 rip_connect(struct socket *so, struct sockaddr *nam, struct thread *td)
1042 {
1043 	struct sockaddr_in *addr = (struct sockaddr_in *)nam;
1044 	struct inpcb *inp;
1045 
1046 	if (nam->sa_len != sizeof(*addr))
1047 		return (EINVAL);
1048 	if (CK_STAILQ_EMPTY(&V_ifnet))
1049 		return (EADDRNOTAVAIL);
1050 	if (addr->sin_family != AF_INET && addr->sin_family != AF_IMPLINK)
1051 		return (EAFNOSUPPORT);
1052 
1053 	inp = sotoinpcb(so);
1054 	KASSERT(inp != NULL, ("rip_connect: inp == NULL"));
1055 
1056 	INP_INFO_WLOCK(&V_ripcbinfo);
1057 	INP_WLOCK(inp);
1058 	rip_delhash(inp);
1059 	inp->inp_faddr = addr->sin_addr;
1060 	rip_inshash(inp);
1061 	soisconnected(so);
1062 	INP_WUNLOCK(inp);
1063 	INP_INFO_WUNLOCK(&V_ripcbinfo);
1064 	return (0);
1065 }
1066 
1067 static int
1068 rip_shutdown(struct socket *so)
1069 {
1070 	struct inpcb *inp;
1071 
1072 	inp = sotoinpcb(so);
1073 	KASSERT(inp != NULL, ("rip_shutdown: inp == NULL"));
1074 
1075 	INP_WLOCK(inp);
1076 	socantsendmore(so);
1077 	INP_WUNLOCK(inp);
1078 	return (0);
1079 }
1080 
1081 static int
1082 rip_send(struct socket *so, int flags, struct mbuf *m, struct sockaddr *nam,
1083     struct mbuf *control, struct thread *td)
1084 {
1085 	struct inpcb *inp;
1086 	u_long dst;
1087 	int error;
1088 
1089 	inp = sotoinpcb(so);
1090 	KASSERT(inp != NULL, ("rip_send: inp == NULL"));
1091 
1092 	if (control != NULL) {
1093 		m_freem(control);
1094 		control = NULL;
1095 	}
1096 
1097 	/*
1098 	 * Note: 'dst' reads below are unlocked.
1099 	 */
1100 	if (so->so_state & SS_ISCONNECTED) {
1101 		if (nam) {
1102 			error = EISCONN;
1103 			goto release;
1104 		}
1105 		dst = inp->inp_faddr.s_addr;	/* Unlocked read. */
1106 	} else {
1107 		error = 0;
1108 		if (nam == NULL)
1109 			error = ENOTCONN;
1110 		else if (nam->sa_family != AF_INET)
1111 			error = EAFNOSUPPORT;
1112 		else if (nam->sa_len != sizeof(struct sockaddr_in))
1113 			error = EINVAL;
1114 		if (error != 0)
1115 			goto release;
1116 		dst = ((struct sockaddr_in *)nam)->sin_addr.s_addr;
1117 	}
1118 	return (rip_output(m, so, dst));
1119 
1120 release:
1121 	m_freem(m);
1122 	return (error);
1123 }
1124 #endif /* INET */
1125 
1126 static int
1127 rip_pcblist(SYSCTL_HANDLER_ARGS)
1128 {
1129 	struct xinpgen xig;
1130 	struct epoch_tracker et;
1131 	struct inpcb *inp;
1132 	int error;
1133 
1134 	if (req->newptr != 0)
1135 		return (EPERM);
1136 
1137 	if (req->oldptr == 0) {
1138 		int n;
1139 
1140 		n = V_ripcbinfo.ipi_count;
1141 		n += imax(n / 8, 10);
1142 		req->oldidx = 2 * (sizeof xig) + n * sizeof(struct xinpcb);
1143 		return (0);
1144 	}
1145 
1146 	if ((error = sysctl_wire_old_buffer(req, 0)) != 0)
1147 		return (error);
1148 
1149 	bzero(&xig, sizeof(xig));
1150 	xig.xig_len = sizeof xig;
1151 	xig.xig_count = V_ripcbinfo.ipi_count;
1152 	xig.xig_gen = V_ripcbinfo.ipi_gencnt;
1153 	xig.xig_sogen = so_gencnt;
1154 	error = SYSCTL_OUT(req, &xig, sizeof xig);
1155 	if (error)
1156 		return (error);
1157 
1158 	NET_EPOCH_ENTER(et);
1159 	for (inp = CK_LIST_FIRST(V_ripcbinfo.ipi_listhead);
1160 	    inp != NULL;
1161 	    inp = CK_LIST_NEXT(inp, inp_list)) {
1162 		INP_RLOCK(inp);
1163 		if (inp->inp_gencnt <= xig.xig_gen &&
1164 		    cr_canseeinpcb(req->td->td_ucred, inp) == 0) {
1165 			struct xinpcb xi;
1166 
1167 			in_pcbtoxinpcb(inp, &xi);
1168 			INP_RUNLOCK(inp);
1169 			error = SYSCTL_OUT(req, &xi, sizeof xi);
1170 			if (error)
1171 				break;
1172 		} else
1173 			INP_RUNLOCK(inp);
1174 	}
1175 	NET_EPOCH_EXIT(et);
1176 
1177 	if (!error) {
1178 		/*
1179 		 * Give the user an updated idea of our state.  If the
1180 		 * generation differs from what we told her before, she knows
1181 		 * that something happened while we were processing this
1182 		 * request, and it might be necessary to retry.
1183 		 */
1184 		xig.xig_gen = V_ripcbinfo.ipi_gencnt;
1185 		xig.xig_sogen = so_gencnt;
1186 		xig.xig_count = V_ripcbinfo.ipi_count;
1187 		error = SYSCTL_OUT(req, &xig, sizeof xig);
1188 	}
1189 
1190 	return (error);
1191 }
1192 
1193 SYSCTL_PROC(_net_inet_raw, OID_AUTO/*XXX*/, pcblist,
1194     CTLTYPE_OPAQUE | CTLFLAG_RD | CTLFLAG_MPSAFE, NULL, 0,
1195     rip_pcblist, "S,xinpcb",
1196     "List of active raw IP sockets");
1197 
1198 #ifdef INET
1199 struct pr_usrreqs rip_usrreqs = {
1200 	.pru_abort =		rip_abort,
1201 	.pru_attach =		rip_attach,
1202 	.pru_bind =		rip_bind,
1203 	.pru_connect =		rip_connect,
1204 	.pru_control =		in_control,
1205 	.pru_detach =		rip_detach,
1206 	.pru_disconnect =	rip_disconnect,
1207 	.pru_peeraddr =		in_getpeeraddr,
1208 	.pru_send =		rip_send,
1209 	.pru_shutdown =		rip_shutdown,
1210 	.pru_sockaddr =		in_getsockaddr,
1211 	.pru_sosetlabel =	in_pcbsosetlabel,
1212 	.pru_close =		rip_close,
1213 };
1214 #endif /* INET */
1215