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ip_output.c revision 1.298.2.1
      1  1.298.2.1  pgoyette /*	$NetBSD: ip_output.c,v 1.298.2.1 2018/04/07 04:12:19 pgoyette Exp $	*/
      2       1.61    itojun 
      3       1.61    itojun /*
      4       1.61    itojun  * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
      5       1.61    itojun  * All rights reserved.
      6       1.97    itojun  *
      7       1.61    itojun  * Redistribution and use in source and binary forms, with or without
      8       1.61    itojun  * modification, are permitted provided that the following conditions
      9       1.61    itojun  * are met:
     10       1.61    itojun  * 1. Redistributions of source code must retain the above copyright
     11       1.61    itojun  *    notice, this list of conditions and the following disclaimer.
     12       1.61    itojun  * 2. Redistributions in binary form must reproduce the above copyright
     13       1.61    itojun  *    notice, this list of conditions and the following disclaimer in the
     14       1.61    itojun  *    documentation and/or other materials provided with the distribution.
     15       1.61    itojun  * 3. Neither the name of the project nor the names of its contributors
     16       1.61    itojun  *    may be used to endorse or promote products derived from this software
     17       1.61    itojun  *    without specific prior written permission.
     18       1.97    itojun  *
     19       1.61    itojun  * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
     20       1.61    itojun  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     21       1.61    itojun  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     22       1.61    itojun  * ARE DISCLAIMED.  IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
     23       1.61    itojun  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     24       1.61    itojun  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     25       1.61    itojun  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     26       1.61    itojun  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     27       1.61    itojun  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     28       1.61    itojun  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     29       1.61    itojun  * SUCH DAMAGE.
     30       1.61    itojun  */
     31       1.54   thorpej 
     32      1.293      maxv /*
     33       1.54   thorpej  * Copyright (c) 1998 The NetBSD Foundation, Inc.
     34       1.54   thorpej  * All rights reserved.
     35       1.54   thorpej  *
     36       1.54   thorpej  * This code is derived from software contributed to The NetBSD Foundation
     37       1.54   thorpej  * by Public Access Networks Corporation ("Panix").  It was developed under
     38       1.54   thorpej  * contract to Panix by Eric Haszlakiewicz and Thor Lancelot Simon.
     39       1.54   thorpej  *
     40       1.54   thorpej  * Redistribution and use in source and binary forms, with or without
     41       1.54   thorpej  * modification, are permitted provided that the following conditions
     42       1.54   thorpej  * are met:
     43       1.54   thorpej  * 1. Redistributions of source code must retain the above copyright
     44       1.54   thorpej  *    notice, this list of conditions and the following disclaimer.
     45       1.54   thorpej  * 2. Redistributions in binary form must reproduce the above copyright
     46       1.54   thorpej  *    notice, this list of conditions and the following disclaimer in the
     47       1.54   thorpej  *    documentation and/or other materials provided with the distribution.
     48       1.54   thorpej  *
     49       1.54   thorpej  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     50       1.54   thorpej  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     51       1.54   thorpej  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     52       1.54   thorpej  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     53       1.54   thorpej  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     54       1.54   thorpej  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     55       1.54   thorpej  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     56       1.54   thorpej  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     57       1.54   thorpej  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     58       1.54   thorpej  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     59       1.54   thorpej  * POSSIBILITY OF SUCH DAMAGE.
     60       1.54   thorpej  */
     61       1.19       cgd 
     62        1.1       cgd /*
     63       1.18   mycroft  * Copyright (c) 1982, 1986, 1988, 1990, 1993
     64       1.18   mycroft  *	The Regents of the University of California.  All rights reserved.
     65        1.1       cgd  *
     66        1.1       cgd  * Redistribution and use in source and binary forms, with or without
     67        1.1       cgd  * modification, are permitted provided that the following conditions
     68        1.1       cgd  * are met:
     69        1.1       cgd  * 1. Redistributions of source code must retain the above copyright
     70        1.1       cgd  *    notice, this list of conditions and the following disclaimer.
     71        1.1       cgd  * 2. Redistributions in binary form must reproduce the above copyright
     72        1.1       cgd  *    notice, this list of conditions and the following disclaimer in the
     73        1.1       cgd  *    documentation and/or other materials provided with the distribution.
     74      1.108       agc  * 3. Neither the name of the University nor the names of its contributors
     75        1.1       cgd  *    may be used to endorse or promote products derived from this software
     76        1.1       cgd  *    without specific prior written permission.
     77        1.1       cgd  *
     78        1.1       cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     79        1.1       cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     80        1.1       cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     81        1.1       cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     82        1.1       cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     83        1.1       cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     84        1.1       cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     85        1.1       cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     86        1.1       cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     87        1.1       cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     88        1.1       cgd  * SUCH DAMAGE.
     89        1.1       cgd  *
     90       1.19       cgd  *	@(#)ip_output.c	8.3 (Berkeley) 1/21/94
     91        1.1       cgd  */
     92       1.89     lukem 
     93       1.89     lukem #include <sys/cdefs.h>
     94  1.298.2.1  pgoyette __KERNEL_RCSID(0, "$NetBSD: ip_output.c,v 1.298.2.1 2018/04/07 04:12:19 pgoyette Exp $");
     95       1.42    scottr 
     96      1.246     pooka #ifdef _KERNEL_OPT
     97      1.128  jonathan #include "opt_inet.h"
     98       1.62   thorpej #include "opt_ipsec.h"
     99       1.42    scottr #include "opt_mrouting.h"
    100      1.236     ozaki #include "opt_net_mpsafe.h"
    101      1.239     ozaki #include "opt_mpls.h"
    102      1.246     pooka #endif
    103        1.1       cgd 
    104      1.262  christos #include "arp.h"
    105      1.262  christos 
    106        1.8   mycroft #include <sys/param.h>
    107      1.215     rmind #include <sys/kmem.h>
    108        1.8   mycroft #include <sys/mbuf.h>
    109        1.8   mycroft #include <sys/socket.h>
    110        1.8   mycroft #include <sys/socketvar.h>
    111      1.162  christos #include <sys/kauth.h>
    112       1.28  christos #include <sys/systm.h>
    113      1.260     ozaki #include <sys/syslog.h>
    114       1.61    itojun 
    115        1.8   mycroft #include <net/if.h>
    116      1.239     ozaki #include <net/if_types.h>
    117        1.8   mycroft #include <net/route.h>
    118       1.38       mrg #include <net/pfil.h>
    119        1.1       cgd 
    120        1.8   mycroft #include <netinet/in.h>
    121        1.8   mycroft #include <netinet/in_systm.h>
    122        1.8   mycroft #include <netinet/ip.h>
    123        1.8   mycroft #include <netinet/in_pcb.h>
    124        1.8   mycroft #include <netinet/in_var.h>
    125        1.8   mycroft #include <netinet/ip_var.h>
    126      1.194   thorpej #include <netinet/ip_private.h>
    127      1.152      yamt #include <netinet/in_offload.h>
    128      1.217  christos #include <netinet/portalgo.h>
    129      1.219  christos #include <netinet/udp.h>
    130      1.284       ryo #include <netinet/udp_var.h>
    131       1.72  jdolecek 
    132      1.232  christos #ifdef INET6
    133      1.232  christos #include <netinet6/ip6_var.h>
    134      1.232  christos #endif
    135      1.232  christos 
    136       1.72  jdolecek #ifdef MROUTING
    137       1.72  jdolecek #include <netinet/ip_mroute.h>
    138       1.72  jdolecek #endif
    139       1.32       mrg 
    140      1.235     ozaki #ifdef IPSEC
    141      1.109  jonathan #include <netipsec/ipsec.h>
    142      1.109  jonathan #include <netipsec/key.h>
    143      1.235     ozaki #endif
    144      1.160  christos 
    145      1.239     ozaki #ifdef MPLS
    146      1.239     ozaki #include <netmpls/mpls.h>
    147      1.239     ozaki #include <netmpls/mpls_var.h>
    148      1.239     ozaki #endif
    149      1.239     ozaki 
    150      1.226     rmind static int ip_pcbopts(struct inpcb *, const struct sockopt *);
    151      1.139     perry static struct mbuf *ip_insertoptions(struct mbuf *, struct mbuf *, int *);
    152      1.139     perry static struct ifnet *ip_multicast_if(struct in_addr *, int *);
    153      1.180    dyoung static void ip_mloopback(struct ifnet *, struct mbuf *,
    154      1.180    dyoung     const struct sockaddr_in *);
    155      1.261       roy static int ip_ifaddrvalid(const struct in_ifaddr *);
    156        1.1       cgd 
    157      1.224     rmind extern pfil_head_t *inet_pfil_hook;			/* XXX */
    158       1.78   thorpej 
    159      1.293      maxv int ip_do_loopback_cksum = 0;
    160      1.151      yamt 
    161      1.250     ozaki static int
    162      1.253     ozaki ip_mark_mpls(struct ifnet * const ifp, struct mbuf * const m,
    163      1.253     ozaki     const struct rtentry *rt)
    164      1.250     ozaki {
    165      1.250     ozaki 	int error = 0;
    166      1.250     ozaki #ifdef MPLS
    167      1.250     ozaki 	union mpls_shim msh;
    168      1.250     ozaki 
    169      1.250     ozaki 	if (rt == NULL || rt_gettag(rt) == NULL ||
    170      1.250     ozaki 	    rt_gettag(rt)->sa_family != AF_MPLS ||
    171      1.250     ozaki 	    (m->m_flags & (M_MCAST | M_BCAST)) != 0 ||
    172      1.250     ozaki 	    ifp->if_type != IFT_ETHER)
    173      1.250     ozaki 		return 0;
    174      1.250     ozaki 
    175      1.250     ozaki 	msh.s_addr = MPLS_GETSADDR(rt);
    176      1.250     ozaki 	if (msh.shim.label != MPLS_LABEL_IMPLNULL) {
    177      1.250     ozaki 		struct m_tag *mtag;
    178      1.250     ozaki 		/*
    179      1.250     ozaki 		 * XXX tentative solution to tell ether_output
    180      1.250     ozaki 		 * it's MPLS. Need some more efficient solution.
    181      1.250     ozaki 		 */
    182      1.250     ozaki 		mtag = m_tag_get(PACKET_TAG_MPLS,
    183      1.250     ozaki 		    sizeof(int) /* dummy */,
    184      1.250     ozaki 		    M_NOWAIT);
    185      1.250     ozaki 		if (mtag == NULL)
    186      1.250     ozaki 			return ENOMEM;
    187      1.250     ozaki 		m_tag_prepend(m, mtag);
    188      1.250     ozaki 	}
    189      1.250     ozaki #endif
    190      1.250     ozaki 	return error;
    191      1.250     ozaki }
    192      1.250     ozaki 
    193      1.239     ozaki /*
    194      1.239     ozaki  * Send an IP packet to a host.
    195      1.239     ozaki  */
    196      1.239     ozaki int
    197      1.252     ozaki ip_if_output(struct ifnet * const ifp, struct mbuf * const m,
    198      1.253     ozaki     const struct sockaddr * const dst, const struct rtentry *rt)
    199      1.239     ozaki {
    200      1.239     ozaki 	int error = 0;
    201      1.244     ozaki 
    202      1.252     ozaki 	if (rt != NULL) {
    203      1.252     ozaki 		error = rt_check_reject_route(rt, ifp);
    204      1.252     ozaki 		if (error != 0) {
    205      1.252     ozaki 			m_freem(m);
    206      1.252     ozaki 			return error;
    207      1.239     ozaki 		}
    208      1.239     ozaki 	}
    209      1.252     ozaki 
    210      1.252     ozaki 	error = ip_mark_mpls(ifp, m, rt);
    211      1.252     ozaki 	if (error != 0) {
    212      1.252     ozaki 		m_freem(m);
    213      1.252     ozaki 		return error;
    214      1.239     ozaki 	}
    215      1.239     ozaki 
    216      1.257  knakahar 	error = if_output_lock(ifp, ifp, m, dst, rt);
    217      1.239     ozaki 
    218      1.239     ozaki 	return error;
    219      1.239     ozaki }
    220      1.239     ozaki 
    221        1.1       cgd /*
    222        1.1       cgd  * IP output.  The packet in mbuf chain m contains a skeletal IP
    223        1.1       cgd  * header (with len, off, ttl, proto, tos, src, dst).
    224        1.1       cgd  * The mbuf chain containing the packet will be freed.
    225        1.1       cgd  * The mbuf opt, if present, will not be freed.
    226        1.1       cgd  */
    227       1.12   mycroft int
    228      1.248  riastrad ip_output(struct mbuf *m0, struct mbuf *opt, struct route *ro, int flags,
    229      1.275     ozaki     struct ip_moptions *imo, struct inpcb *inp)
    230        1.1       cgd {
    231      1.186    dyoung 	struct rtentry *rt;
    232      1.110    itojun 	struct ip *ip;
    233      1.258     ozaki 	struct ifnet *ifp, *mifp = NULL;
    234       1.71  augustss 	struct mbuf *m = m0;
    235      1.293      maxv 	int len, hlen, error = 0;
    236        1.1       cgd 	struct route iproute;
    237      1.180    dyoung 	const struct sockaddr_in *dst;
    238      1.260     ozaki 	struct in_ifaddr *ia = NULL;
    239      1.280       roy 	struct ifaddr *ifa;
    240      1.234       roy 	int isbroadcast;
    241      1.248  riastrad 	int sw_csum;
    242       1.96    itojun 	u_long mtu;
    243      1.221     rmind 	bool natt_frag = false;
    244      1.230     rmind 	bool rtmtu_nolock;
    245      1.180    dyoung 	union {
    246      1.282       roy 		struct sockaddr		sa;
    247      1.282       roy 		struct sockaddr_in	sin;
    248      1.282       roy 	} udst, usrc;
    249      1.282       roy 	struct sockaddr *rdst = &udst.sa;	/* real IP destination, as
    250      1.282       roy 						 * opposed to the nexthop
    251      1.282       roy 						 */
    252      1.260     ozaki 	struct psref psref, psref_ia;
    253      1.258     ozaki 	int bound;
    254      1.260     ozaki 	bool bind_need_restore = false;
    255       1.28  christos 
    256      1.102   darrenr 	len = 0;
    257       1.28  christos 
    258      1.103      matt 	MCLAIM(m, &ip_tx_mowner);
    259       1.61    itojun 
    260      1.226     rmind 	KASSERT((m->m_flags & M_PKTHDR) != 0);
    261      1.226     rmind 	KASSERT((m->m_pkthdr.csum_flags & (M_CSUM_TCPv6|M_CSUM_UDPv6)) == 0);
    262      1.226     rmind 	KASSERT((m->m_pkthdr.csum_flags & (M_CSUM_TCPv4|M_CSUM_UDPv4)) !=
    263      1.226     rmind 	    (M_CSUM_TCPv4|M_CSUM_UDPv4));
    264      1.293      maxv 	KASSERT(m->m_len >= sizeof(struct ip));
    265      1.163      tron 
    266      1.293      maxv 	hlen = sizeof(struct ip);
    267        1.1       cgd 	if (opt) {
    268        1.1       cgd 		m = ip_insertoptions(m, opt, &len);
    269      1.293      maxv 		hlen = len;
    270        1.1       cgd 	}
    271        1.1       cgd 	ip = mtod(m, struct ip *);
    272      1.226     rmind 
    273        1.1       cgd 	/*
    274        1.1       cgd 	 * Fill in IP header.
    275        1.1       cgd 	 */
    276       1.18   mycroft 	if ((flags & (IP_FORWARDING|IP_RAWOUTPUT)) == 0) {
    277        1.1       cgd 		ip->ip_v = IPVERSION;
    278      1.100    itojun 		ip->ip_off = htons(0);
    279      1.192      matt 		/* ip->ip_id filled in after we find out source ia */
    280        1.1       cgd 		ip->ip_hl = hlen >> 2;
    281      1.194   thorpej 		IP_STATINC(IP_STAT_LOCALOUT);
    282        1.1       cgd 	} else {
    283        1.1       cgd 		hlen = ip->ip_hl << 2;
    284        1.1       cgd 	}
    285      1.226     rmind 
    286        1.1       cgd 	/*
    287        1.1       cgd 	 * Route packet.
    288        1.1       cgd 	 */
    289      1.230     rmind 	if (ro == NULL) {
    290      1.230     rmind 		memset(&iproute, 0, sizeof(iproute));
    291        1.1       cgd 		ro = &iproute;
    292      1.230     rmind 	}
    293      1.282       roy 	sockaddr_in_init(&udst.sin, &ip->ip_dst, 0);
    294      1.180    dyoung 	dst = satocsin(rtcache_getdst(ro));
    295      1.226     rmind 
    296        1.1       cgd 	/*
    297      1.226     rmind 	 * If there is a cached route, check that it is to the same
    298      1.226     rmind 	 * destination and is still up.  If not, free it and try again.
    299      1.226     rmind 	 * The address family should also be checked in case of sharing
    300      1.226     rmind 	 * the cache with IPv6.
    301        1.1       cgd 	 */
    302      1.226     rmind 	if (dst && (dst->sin_family != AF_INET ||
    303      1.226     rmind 	    !in_hosteq(dst->sin_addr, ip->ip_dst)))
    304      1.171     joerg 		rtcache_free(ro);
    305      1.190    dyoung 
    306      1.288     ozaki 	/* XXX must be before rtcache operations */
    307      1.288     ozaki 	bound = curlwp_bind();
    308      1.288     ozaki 	bind_need_restore = true;
    309      1.288     ozaki 
    310      1.190    dyoung 	if ((rt = rtcache_validate(ro)) == NULL &&
    311      1.190    dyoung 	    (rt = rtcache_update(ro, 1)) == NULL) {
    312      1.282       roy 		dst = &udst.sin;
    313      1.282       roy 		error = rtcache_setdst(ro, &udst.sa);
    314      1.238     ozaki 		if (error != 0)
    315      1.238     ozaki 			goto bad;
    316        1.1       cgd 	}
    317      1.226     rmind 
    318        1.1       cgd 	/*
    319      1.226     rmind 	 * If routing to interface only, short circuit routing lookup.
    320        1.1       cgd 	 */
    321        1.1       cgd 	if (flags & IP_ROUTETOIF) {
    322      1.260     ozaki 		ifa = ifa_ifwithladdr_psref(sintocsa(dst), &psref_ia);
    323      1.260     ozaki 		if (ifa == NULL) {
    324      1.194   thorpej 			IP_STATINC(IP_STAT_NOROUTE);
    325        1.1       cgd 			error = ENETUNREACH;
    326        1.1       cgd 			goto bad;
    327        1.1       cgd 		}
    328      1.260     ozaki 		/* ia is already referenced by psref_ia */
    329      1.260     ozaki 		ia = ifatoia(ifa);
    330      1.260     ozaki 
    331        1.1       cgd 		ifp = ia->ia_ifp;
    332       1.48      matt 		mtu = ifp->if_mtu;
    333       1.18   mycroft 		ip->ip_ttl = 1;
    334      1.234       roy 		isbroadcast = in_broadcast(dst->sin_addr, ifp);
    335      1.284       ryo 	} else if (((IN_MULTICAST(ip->ip_dst.s_addr) ||
    336      1.284       ryo 	    ip->ip_dst.s_addr == INADDR_BROADCAST) ||
    337      1.284       ryo 	    (flags & IP_ROUTETOIFINDEX)) &&
    338      1.258     ozaki 	    imo != NULL && imo->imo_multicast_if_index != 0) {
    339      1.258     ozaki 		ifp = mifp = if_get_byindex(imo->imo_multicast_if_index, &psref);
    340      1.258     ozaki 		if (ifp == NULL) {
    341      1.258     ozaki 			IP_STATINC(IP_STAT_NOROUTE);
    342      1.258     ozaki 			error = ENETUNREACH;
    343      1.258     ozaki 			goto bad;
    344      1.258     ozaki 		}
    345       1.98    itojun 		mtu = ifp->if_mtu;
    346      1.260     ozaki 		ia = in_get_ia_from_ifp_psref(ifp, &psref_ia);
    347      1.260     ozaki 		if (ia == NULL) {
    348      1.260     ozaki 			error = EADDRNOTAVAIL;
    349      1.260     ozaki 			goto bad;
    350      1.260     ozaki 		}
    351      1.284       ryo 		if (IN_MULTICAST(ip->ip_dst.s_addr) ||
    352      1.284       ryo 		    ip->ip_dst.s_addr == INADDR_BROADCAST) {
    353      1.284       ryo 			isbroadcast = 0;
    354      1.284       ryo 		} else {
    355      1.284       ryo 			/* IP_ROUTETOIFINDEX */
    356      1.284       ryo 			isbroadcast = in_broadcast(dst->sin_addr, ifp);
    357      1.284       ryo 			if ((isbroadcast == 0) && ((ifp->if_flags &
    358      1.284       ryo 			    (IFF_LOOPBACK | IFF_POINTOPOINT)) == 0) &&
    359      1.284       ryo 			    (in_direct(dst->sin_addr, ifp) == 0)) {
    360      1.284       ryo 				/* gateway address required */
    361      1.284       ryo 				if (rt == NULL)
    362      1.284       ryo 					rt = rtcache_init(ro);
    363      1.284       ryo 				if (rt == NULL || rt->rt_ifp != ifp) {
    364      1.284       ryo 					IP_STATINC(IP_STAT_NOROUTE);
    365      1.284       ryo 					error = EHOSTUNREACH;
    366      1.284       ryo 					goto bad;
    367      1.284       ryo 				}
    368      1.284       ryo 				rt->rt_use++;
    369      1.284       ryo 				if (rt->rt_flags & RTF_GATEWAY)
    370      1.284       ryo 					dst = satosin(rt->rt_gateway);
    371      1.284       ryo 				if (rt->rt_flags & RTF_HOST)
    372      1.284       ryo 					isbroadcast =
    373      1.284       ryo 					    rt->rt_flags & RTF_BROADCAST;
    374      1.284       ryo 			}
    375      1.284       ryo 		}
    376        1.1       cgd 	} else {
    377      1.186    dyoung 		if (rt == NULL)
    378      1.190    dyoung 			rt = rtcache_init(ro);
    379      1.190    dyoung 		if (rt == NULL) {
    380      1.194   thorpej 			IP_STATINC(IP_STAT_NOROUTE);
    381        1.1       cgd 			error = EHOSTUNREACH;
    382        1.1       cgd 			goto bad;
    383        1.1       cgd 		}
    384      1.265     ozaki 		if (ifa_is_destroying(rt->rt_ifa)) {
    385      1.265     ozaki 			rtcache_unref(rt, ro);
    386      1.266  knakahar 			rt = NULL;
    387      1.265     ozaki 			IP_STATINC(IP_STAT_NOROUTE);
    388      1.265     ozaki 			error = EHOSTUNREACH;
    389      1.265     ozaki 			goto bad;
    390      1.265     ozaki 		}
    391      1.260     ozaki 		ifa_acquire(rt->rt_ifa, &psref_ia);
    392      1.186    dyoung 		ia = ifatoia(rt->rt_ifa);
    393      1.186    dyoung 		ifp = rt->rt_ifp;
    394      1.186    dyoung 		if ((mtu = rt->rt_rmx.rmx_mtu) == 0)
    395       1.48      matt 			mtu = ifp->if_mtu;
    396      1.186    dyoung 		rt->rt_use++;
    397      1.186    dyoung 		if (rt->rt_flags & RTF_GATEWAY)
    398      1.186    dyoung 			dst = satosin(rt->rt_gateway);
    399      1.234       roy 		if (rt->rt_flags & RTF_HOST)
    400      1.234       roy 			isbroadcast = rt->rt_flags & RTF_BROADCAST;
    401      1.234       roy 		else
    402      1.234       roy 			isbroadcast = in_broadcast(dst->sin_addr, ifp);
    403        1.1       cgd 	}
    404      1.230     rmind 	rtmtu_nolock = rt && (rt->rt_rmx.rmx_locks & RTV_MTU) == 0;
    405      1.226     rmind 
    406       1.64        is 	if (IN_MULTICAST(ip->ip_dst.s_addr) ||
    407       1.64        is 	    (ip->ip_dst.s_addr == INADDR_BROADCAST)) {
    408      1.228     rmind 		bool inmgroup;
    409        1.5   hpeyerl 
    410       1.64        is 		m->m_flags |= (ip->ip_dst.s_addr == INADDR_BROADCAST) ?
    411      1.237     ozaki 		    M_BCAST : M_MCAST;
    412        1.5   hpeyerl 		/*
    413        1.5   hpeyerl 		 * See if the caller provided any multicast options
    414        1.5   hpeyerl 		 */
    415       1.98    itojun 		if (imo != NULL)
    416        1.5   hpeyerl 			ip->ip_ttl = imo->imo_multicast_ttl;
    417       1.98    itojun 		else
    418        1.5   hpeyerl 			ip->ip_ttl = IP_DEFAULT_MULTICAST_TTL;
    419       1.98    itojun 
    420       1.98    itojun 		/*
    421       1.98    itojun 		 * if we don't know the outgoing ifp yet, we can't generate
    422       1.98    itojun 		 * output
    423       1.98    itojun 		 */
    424       1.98    itojun 		if (!ifp) {
    425      1.194   thorpej 			IP_STATINC(IP_STAT_NOROUTE);
    426       1.98    itojun 			error = ENETUNREACH;
    427       1.98    itojun 			goto bad;
    428       1.98    itojun 		}
    429       1.98    itojun 
    430        1.5   hpeyerl 		/*
    431       1.95   thorpej 		 * If the packet is multicast or broadcast, confirm that
    432       1.95   thorpej 		 * the outgoing interface can transmit it.
    433        1.5   hpeyerl 		 */
    434       1.64        is 		if (((m->m_flags & M_MCAST) &&
    435       1.64        is 		     (ifp->if_flags & IFF_MULTICAST) == 0) ||
    436       1.97    itojun 		    ((m->m_flags & M_BCAST) &&
    437       1.95   thorpej 		     (ifp->if_flags & (IFF_BROADCAST|IFF_POINTOPOINT)) == 0))  {
    438      1.194   thorpej 			IP_STATINC(IP_STAT_NOROUTE);
    439        1.5   hpeyerl 			error = ENETUNREACH;
    440        1.5   hpeyerl 			goto bad;
    441        1.5   hpeyerl 		}
    442        1.5   hpeyerl 		/*
    443       1.44       tls 		 * If source address not specified yet, use an address
    444        1.5   hpeyerl 		 * of outgoing interface.
    445        1.5   hpeyerl 		 */
    446       1.31   mycroft 		if (in_nullhost(ip->ip_src)) {
    447      1.153  christos 			struct in_ifaddr *xia;
    448      1.230     rmind 			struct ifaddr *xifa;
    449      1.260     ozaki 			struct psref _psref;
    450        1.5   hpeyerl 
    451      1.260     ozaki 			xia = in_get_ia_from_ifp_psref(ifp, &_psref);
    452      1.153  christos 			if (!xia) {
    453       1.91    itojun 				error = EADDRNOTAVAIL;
    454       1.91    itojun 				goto bad;
    455       1.91    itojun 			}
    456      1.166    dyoung 			xifa = &xia->ia_ifa;
    457      1.166    dyoung 			if (xifa->ifa_getifa != NULL) {
    458      1.260     ozaki 				ia4_release(xia, &_psref);
    459      1.271     ozaki 				/* FIXME ifa_getifa is NOMPSAFE */
    460      1.180    dyoung 				xia = ifatoia((*xifa->ifa_getifa)(xifa, rdst));
    461      1.240       roy 				if (xia == NULL) {
    462      1.241       roy 					error = EADDRNOTAVAIL;
    463      1.240       roy 					goto bad;
    464      1.240       roy 				}
    465      1.260     ozaki 				ia4_acquire(xia, &_psref);
    466      1.166    dyoung 			}
    467      1.153  christos 			ip->ip_src = xia->ia_addr.sin_addr;
    468      1.260     ozaki 			ia4_release(xia, &_psref);
    469        1.5   hpeyerl 		}
    470        1.5   hpeyerl 
    471      1.228     rmind 		inmgroup = in_multi_group(ip->ip_dst, ifp, flags);
    472      1.228     rmind 		if (inmgroup && (imo == NULL || imo->imo_multicast_loop)) {
    473        1.5   hpeyerl 			/*
    474       1.11   mycroft 			 * If we belong to the destination multicast group
    475        1.5   hpeyerl 			 * on the outgoing interface, and the caller did not
    476        1.5   hpeyerl 			 * forbid loopback, loop back a copy.
    477        1.5   hpeyerl 			 */
    478      1.282       roy 			ip_mloopback(ifp, m, &udst.sin);
    479        1.5   hpeyerl 		}
    480        1.5   hpeyerl #ifdef MROUTING
    481       1.18   mycroft 		else {
    482        1.5   hpeyerl 			/*
    483        1.5   hpeyerl 			 * If we are acting as a multicast router, perform
    484        1.5   hpeyerl 			 * multicast forwarding as if the packet had just
    485        1.5   hpeyerl 			 * arrived on the interface to which we are about
    486        1.5   hpeyerl 			 * to send.  The multicast forwarding function
    487        1.5   hpeyerl 			 * recursively calls this function, using the
    488        1.5   hpeyerl 			 * IP_FORWARDING flag to prevent infinite recursion.
    489        1.5   hpeyerl 			 *
    490        1.5   hpeyerl 			 * Multicasts that are looped back by ip_mloopback(),
    491        1.5   hpeyerl 			 * above, will be forwarded by the ip_input() routine,
    492        1.5   hpeyerl 			 * if necessary.
    493        1.5   hpeyerl 			 */
    494       1.18   mycroft 			extern struct socket *ip_mrouter;
    495       1.22       cgd 
    496       1.18   mycroft 			if (ip_mrouter && (flags & IP_FORWARDING) == 0) {
    497       1.18   mycroft 				if (ip_mforward(m, ifp) != 0) {
    498       1.18   mycroft 					m_freem(m);
    499       1.18   mycroft 					goto done;
    500       1.18   mycroft 				}
    501        1.5   hpeyerl 			}
    502        1.5   hpeyerl 		}
    503        1.5   hpeyerl #endif
    504        1.5   hpeyerl 		/*
    505        1.5   hpeyerl 		 * Multicasts with a time-to-live of zero may be looped-
    506        1.5   hpeyerl 		 * back, above, but must not be transmitted on a network.
    507        1.5   hpeyerl 		 * Also, multicasts addressed to the loopback interface
    508        1.5   hpeyerl 		 * are not sent -- the above call to ip_mloopback() will
    509        1.5   hpeyerl 		 * loop back a copy if this host actually belongs to the
    510        1.5   hpeyerl 		 * destination group on the loopback interface.
    511        1.5   hpeyerl 		 */
    512       1.20   mycroft 		if (ip->ip_ttl == 0 || (ifp->if_flags & IFF_LOOPBACK) != 0) {
    513        1.5   hpeyerl 			m_freem(m);
    514        1.5   hpeyerl 			goto done;
    515        1.5   hpeyerl 		}
    516        1.5   hpeyerl 		goto sendit;
    517        1.5   hpeyerl 	}
    518      1.230     rmind 
    519        1.1       cgd 	/*
    520        1.1       cgd 	 * If source address not specified yet, use address
    521        1.1       cgd 	 * of outgoing interface.
    522        1.1       cgd 	 */
    523      1.166    dyoung 	if (in_nullhost(ip->ip_src)) {
    524      1.230     rmind 		struct ifaddr *xifa;
    525      1.230     rmind 
    526      1.166    dyoung 		xifa = &ia->ia_ifa;
    527      1.240       roy 		if (xifa->ifa_getifa != NULL) {
    528      1.260     ozaki 			ia4_release(ia, &psref_ia);
    529      1.271     ozaki 			/* FIXME ifa_getifa is NOMPSAFE */
    530      1.180    dyoung 			ia = ifatoia((*xifa->ifa_getifa)(xifa, rdst));
    531      1.240       roy 			if (ia == NULL) {
    532      1.240       roy 				error = EADDRNOTAVAIL;
    533      1.240       roy 				goto bad;
    534      1.240       roy 			}
    535      1.260     ozaki 			ia4_acquire(ia, &psref_ia);
    536      1.240       roy 		}
    537       1.25   mycroft 		ip->ip_src = ia->ia_addr.sin_addr;
    538      1.166    dyoung 	}
    539       1.59       hwr 
    540       1.59       hwr 	/*
    541      1.293      maxv 	 * Packets with Class-D address as source are not valid per
    542      1.293      maxv 	 * RFC1112.
    543       1.59       hwr 	 */
    544       1.59       hwr 	if (IN_MULTICAST(ip->ip_src.s_addr)) {
    545      1.194   thorpej 		IP_STATINC(IP_STAT_ODROPPED);
    546       1.59       hwr 		error = EADDRNOTAVAIL;
    547       1.59       hwr 		goto bad;
    548       1.59       hwr 	}
    549       1.59       hwr 
    550        1.1       cgd 	/*
    551  1.298.2.1  pgoyette 	 * Look for broadcast address and verify user is allowed to
    552      1.230     rmind 	 * send such a packet.
    553        1.1       cgd 	 */
    554      1.234       roy 	if (isbroadcast) {
    555        1.1       cgd 		if ((ifp->if_flags & IFF_BROADCAST) == 0) {
    556        1.1       cgd 			error = EADDRNOTAVAIL;
    557        1.1       cgd 			goto bad;
    558        1.1       cgd 		}
    559        1.1       cgd 		if ((flags & IP_ALLOWBROADCAST) == 0) {
    560        1.1       cgd 			error = EACCES;
    561        1.1       cgd 			goto bad;
    562        1.1       cgd 		}
    563        1.1       cgd 		/* don't allow broadcast messages to be fragmented */
    564      1.100    itojun 		if (ntohs(ip->ip_len) > ifp->if_mtu) {
    565        1.1       cgd 			error = EMSGSIZE;
    566        1.1       cgd 			goto bad;
    567        1.1       cgd 		}
    568        1.1       cgd 		m->m_flags |= M_BCAST;
    569       1.18   mycroft 	} else
    570       1.18   mycroft 		m->m_flags &= ~M_BCAST;
    571       1.18   mycroft 
    572       1.60       mrg sendit:
    573      1.192      matt 	if ((flags & (IP_FORWARDING|IP_NOIPNEWID)) == 0) {
    574      1.192      matt 		if (m->m_pkthdr.len < IP_MINFRAGSIZE) {
    575      1.192      matt 			ip->ip_id = 0;
    576      1.192      matt 		} else if ((m->m_pkthdr.csum_flags & M_CSUM_TSOv4) == 0) {
    577      1.192      matt 			ip->ip_id = ip_newid(ia);
    578      1.192      matt 		} else {
    579      1.192      matt 			/*
    580      1.192      matt 			 * TSO capable interfaces (typically?) increment
    581      1.192      matt 			 * ip_id for each segment.
    582      1.192      matt 			 * "allocate" enough ids here to increase the chance
    583      1.192      matt 			 * for them to be unique.
    584      1.192      matt 			 *
    585      1.192      matt 			 * note that the following calculation is not
    586      1.192      matt 			 * needed to be precise.  wasting some ip_id is fine.
    587      1.192      matt 			 */
    588      1.192      matt 
    589      1.192      matt 			unsigned int segsz = m->m_pkthdr.segsz;
    590      1.192      matt 			unsigned int datasz = ntohs(ip->ip_len) - hlen;
    591      1.192      matt 			unsigned int num = howmany(datasz, segsz);
    592      1.192      matt 
    593      1.192      matt 			ip->ip_id = ip_newid_range(ia, num);
    594      1.192      matt 		}
    595      1.192      matt 	}
    596      1.260     ozaki 	if (ia != NULL) {
    597      1.260     ozaki 		ia4_release(ia, &psref_ia);
    598      1.260     ozaki 		ia = NULL;
    599      1.260     ozaki 	}
    600      1.230     rmind 
    601       1.76   thorpej 	/*
    602       1.76   thorpej 	 * If we're doing Path MTU Discovery, we need to set DF unless
    603       1.76   thorpej 	 * the route's MTU is locked.
    604       1.76   thorpej 	 */
    605      1.230     rmind 	if ((flags & IP_MTUDISC) != 0 && rtmtu_nolock) {
    606      1.100    itojun 		ip->ip_off |= htons(IP_DF);
    607      1.230     rmind 	}
    608       1.76   thorpej 
    609      1.220  christos #ifdef IPSEC
    610      1.229  christos 	if (ipsec_used) {
    611      1.230     rmind 		bool ipsec_done = false;
    612      1.230     rmind 
    613      1.229  christos 		/* Perform IPsec processing, if any. */
    614      1.278     ozaki 		error = ipsec4_output(m, inp, flags, &mtu, &natt_frag,
    615      1.230     rmind 		    &ipsec_done);
    616      1.230     rmind 		if (error || ipsec_done)
    617      1.229  christos 			goto done;
    618      1.221     rmind 	}
    619      1.109  jonathan #endif
    620      1.109  jonathan 
    621       1.82    itojun 	/*
    622       1.82    itojun 	 * Run through list of hooks for output packets.
    623       1.82    itojun 	 */
    624      1.230     rmind 	error = pfil_run_hooks(inet_pfil_hook, &m, ifp, PFIL_OUT);
    625      1.230     rmind 	if (error)
    626       1.82    itojun 		goto done;
    627       1.82    itojun 	if (m == NULL)
    628       1.82    itojun 		goto done;
    629       1.82    itojun 
    630       1.82    itojun 	ip = mtod(m, struct ip *);
    631      1.106    itojun 	hlen = ip->ip_hl << 2;
    632       1.82    itojun 
    633      1.146      matt 	m->m_pkthdr.csum_data |= hlen << 16;
    634      1.146      matt 
    635      1.136   thorpej 	/*
    636      1.136   thorpej 	 * search for the source address structure to
    637      1.277  christos 	 * maintain output statistics, and verify address
    638      1.277  christos 	 * validity
    639      1.136   thorpej 	 */
    640      1.260     ozaki 	KASSERT(ia == NULL);
    641      1.282       roy 	sockaddr_in_init(&usrc.sin, &ip->ip_src, 0);
    642      1.282       roy 	ifa = ifaof_ifpforaddr_psref(&usrc.sa, ifp, &psref_ia);
    643      1.280       roy 	if (ifa != NULL)
    644      1.280       roy 		ia = ifatoia(ifa);
    645      1.261       roy 
    646      1.277  christos 	/*
    647      1.277  christos 	 * Ensure we only send from a valid address.
    648      1.277  christos 	 * A NULL address is valid because the packet could be
    649      1.277  christos 	 * generated from a packet filter.
    650      1.277  christos 	 */
    651      1.277  christos 	if (ia != NULL && (flags & IP_FORWARDING) == 0 &&
    652      1.261       roy 	    (error = ip_ifaddrvalid(ia)) != 0)
    653      1.261       roy 	{
    654      1.269  christos 		ARPLOG(LOG_ERR,
    655      1.261       roy 		    "refusing to send from invalid address %s (pid %d)\n",
    656      1.279       ryo 		    ARPLOGADDR(&ip->ip_src), curproc->p_pid);
    657      1.261       roy 		IP_STATINC(IP_STAT_ODROPPED);
    658      1.263       roy 		if (error == 1)
    659      1.263       roy 			/*
    660      1.263       roy 			 * Address exists, but is tentative or detached.
    661      1.261       roy 			 * We can't send from it because it's invalid,
    662      1.263       roy 			 * so we drop the packet.
    663      1.263       roy 			 */
    664      1.261       roy 			error = 0;
    665      1.261       roy 		else
    666      1.261       roy 			error = EADDRNOTAVAIL;
    667      1.261       roy 		goto bad;
    668      1.261       roy 	}
    669      1.136   thorpej 
    670      1.138   thorpej 	/* Maybe skip checksums on loopback interfaces. */
    671      1.151      yamt 	if (IN_NEED_CHECKSUM(ifp, M_CSUM_IPv4)) {
    672      1.138   thorpej 		m->m_pkthdr.csum_flags |= M_CSUM_IPv4;
    673      1.151      yamt 	}
    674      1.104      yamt 	sw_csum = m->m_pkthdr.csum_flags & ~ifp->if_csum_flags_tx;
    675      1.293      maxv 
    676        1.1       cgd 	/*
    677      1.147      matt 	 * If small enough for mtu of path, or if using TCP segmentation
    678      1.147      matt 	 * offload, can just send directly.
    679        1.1       cgd 	 */
    680      1.218    kefren 	if (ntohs(ip->ip_len) <= mtu ||
    681      1.147      matt 	    (m->m_pkthdr.csum_flags & M_CSUM_TSOv4) != 0) {
    682      1.230     rmind 		const struct sockaddr *sa;
    683      1.230     rmind 
    684       1.63    itojun #if IFA_STATS
    685       1.63    itojun 		if (ia)
    686      1.218    kefren 			ia->ia_ifa.ifa_data.ifad_outbytes += ntohs(ip->ip_len);
    687       1.63    itojun #endif
    688       1.86   thorpej 		/*
    689       1.86   thorpej 		 * Always initialize the sum to 0!  Some HW assisted
    690       1.86   thorpej 		 * checksumming requires this.
    691       1.86   thorpej 		 */
    692        1.1       cgd 		ip->ip_sum = 0;
    693       1.86   thorpej 
    694      1.149      matt 		if ((m->m_pkthdr.csum_flags & M_CSUM_TSOv4) == 0) {
    695      1.147      matt 			/*
    696      1.147      matt 			 * Perform any checksums that the hardware can't do
    697      1.147      matt 			 * for us.
    698      1.147      matt 			 *
    699      1.147      matt 			 * XXX Does any hardware require the {th,uh}_sum
    700      1.147      matt 			 * XXX fields to be 0?
    701      1.147      matt 			 */
    702      1.147      matt 			if (sw_csum & M_CSUM_IPv4) {
    703      1.151      yamt 				KASSERT(IN_NEED_CHECKSUM(ifp, M_CSUM_IPv4));
    704      1.147      matt 				ip->ip_sum = in_cksum(m, hlen);
    705      1.147      matt 				m->m_pkthdr.csum_flags &= ~M_CSUM_IPv4;
    706      1.147      matt 			}
    707      1.147      matt 			if (sw_csum & (M_CSUM_TCPv4|M_CSUM_UDPv4)) {
    708      1.151      yamt 				if (IN_NEED_CHECKSUM(ifp,
    709      1.151      yamt 				    sw_csum & (M_CSUM_TCPv4|M_CSUM_UDPv4))) {
    710      1.151      yamt 					in_delayed_cksum(m);
    711      1.151      yamt 				}
    712      1.147      matt 				m->m_pkthdr.csum_flags &=
    713      1.147      matt 				    ~(M_CSUM_TCPv4|M_CSUM_UDPv4);
    714      1.147      matt 			}
    715      1.146      matt 		}
    716       1.86   thorpej 
    717      1.230     rmind 		sa = (m->m_flags & M_MCAST) ? sintocsa(rdst) : sintocsa(dst);
    718      1.152      yamt 		if (__predict_true(
    719      1.152      yamt 		    (m->m_pkthdr.csum_flags & M_CSUM_TSOv4) == 0 ||
    720      1.152      yamt 		    (ifp->if_capenable & IFCAP_TSOv4) != 0)) {
    721      1.252     ozaki 			error = ip_if_output(ifp, m, sa, rt);
    722      1.152      yamt 		} else {
    723      1.230     rmind 			error = ip_tso_output(ifp, m, sa, rt);
    724      1.152      yamt 		}
    725        1.1       cgd 		goto done;
    726        1.1       cgd 	}
    727       1.61    itojun 
    728        1.1       cgd 	/*
    729      1.293      maxv 	 * We can't use HW checksumming if we're about to fragment the packet.
    730       1.86   thorpej 	 *
    731       1.86   thorpej 	 * XXX Some hardware can do this.
    732       1.86   thorpej 	 */
    733       1.86   thorpej 	if (m->m_pkthdr.csum_flags & (M_CSUM_TCPv4|M_CSUM_UDPv4)) {
    734      1.151      yamt 		if (IN_NEED_CHECKSUM(ifp,
    735      1.151      yamt 		    m->m_pkthdr.csum_flags & (M_CSUM_TCPv4|M_CSUM_UDPv4))) {
    736      1.151      yamt 			in_delayed_cksum(m);
    737      1.151      yamt 		}
    738       1.86   thorpej 		m->m_pkthdr.csum_flags &= ~(M_CSUM_TCPv4|M_CSUM_UDPv4);
    739       1.86   thorpej 	}
    740       1.86   thorpej 
    741       1.86   thorpej 	/*
    742        1.1       cgd 	 * Too large for interface; fragment if possible.
    743        1.1       cgd 	 * Must be able to put at least 8 bytes per fragment.
    744        1.1       cgd 	 */
    745      1.100    itojun 	if (ntohs(ip->ip_off) & IP_DF) {
    746      1.226     rmind 		if (flags & IP_RETURNMTU) {
    747      1.275     ozaki 			KASSERT(inp != NULL);
    748      1.226     rmind 			inp->inp_errormtu = mtu;
    749      1.226     rmind 		}
    750        1.1       cgd 		error = EMSGSIZE;
    751      1.194   thorpej 		IP_STATINC(IP_STAT_CANTFRAG);
    752        1.1       cgd 		goto bad;
    753        1.1       cgd 	}
    754      1.110    itojun 
    755      1.110    itojun 	error = ip_fragment(m, ifp, mtu);
    756      1.124    itojun 	if (error) {
    757      1.124    itojun 		m = NULL;
    758        1.1       cgd 		goto bad;
    759      1.124    itojun 	}
    760      1.110    itojun 
    761      1.119    itojun 	for (; m; m = m0) {
    762      1.110    itojun 		m0 = m->m_nextpkt;
    763      1.298      maxv 		m->m_nextpkt = NULL;
    764      1.230     rmind 		if (error) {
    765      1.230     rmind 			m_freem(m);
    766      1.230     rmind 			continue;
    767      1.230     rmind 		}
    768      1.110    itojun #if IFA_STATS
    769      1.230     rmind 		if (ia)
    770      1.230     rmind 			ia->ia_ifa.ifa_data.ifad_outbytes += ntohs(ip->ip_len);
    771      1.110    itojun #endif
    772      1.230     rmind 		/*
    773      1.230     rmind 		 * If we get there, the packet has not been handled by
    774      1.230     rmind 		 * IPsec whereas it should have. Now that it has been
    775      1.230     rmind 		 * fragmented, re-inject it in ip_output so that IPsec
    776      1.230     rmind 		 * processing can occur.
    777      1.230     rmind 		 */
    778      1.230     rmind 		if (natt_frag) {
    779      1.230     rmind 			error = ip_output(m, opt, ro,
    780      1.230     rmind 			    flags | IP_RAWOUTPUT | IP_NOIPNEWID,
    781      1.275     ozaki 			    imo, inp);
    782      1.230     rmind 		} else {
    783      1.230     rmind 			KASSERT((m->m_pkthdr.csum_flags &
    784      1.230     rmind 			    (M_CSUM_UDPv4 | M_CSUM_TCPv4)) == 0);
    785      1.252     ozaki 			error = ip_if_output(ifp, m,
    786      1.230     rmind 			    (m->m_flags & M_MCAST) ?
    787      1.230     rmind 			    sintocsa(rdst) : sintocsa(dst), rt);
    788      1.230     rmind 		}
    789        1.1       cgd 	}
    790      1.230     rmind 	if (error == 0) {
    791      1.194   thorpej 		IP_STATINC(IP_STAT_FRAGMENTED);
    792      1.230     rmind 	}
    793      1.293      maxv 
    794      1.110    itojun done:
    795      1.260     ozaki 	ia4_release(ia, &psref_ia);
    796      1.264     ozaki 	rtcache_unref(rt, ro);
    797      1.230     rmind 	if (ro == &iproute) {
    798      1.230     rmind 		rtcache_free(&iproute);
    799      1.230     rmind 	}
    800      1.258     ozaki 	if (mifp != NULL) {
    801      1.258     ozaki 		if_put(mifp, &psref);
    802      1.260     ozaki 	}
    803      1.260     ozaki 	if (bind_need_restore)
    804      1.258     ozaki 		curlwp_bindx(bound);
    805      1.221     rmind 	return error;
    806      1.293      maxv 
    807      1.110    itojun bad:
    808      1.110    itojun 	m_freem(m);
    809      1.110    itojun 	goto done;
    810      1.110    itojun }
    811      1.110    itojun 
    812      1.113    itojun int
    813      1.110    itojun ip_fragment(struct mbuf *m, struct ifnet *ifp, u_long mtu)
    814      1.110    itojun {
    815      1.110    itojun 	struct ip *ip, *mhip;
    816      1.110    itojun 	struct mbuf *m0;
    817      1.110    itojun 	int len, hlen, off;
    818      1.110    itojun 	int mhlen, firstlen;
    819      1.110    itojun 	struct mbuf **mnext;
    820      1.135      manu 	int sw_csum = m->m_pkthdr.csum_flags;
    821       1.48      matt 	int fragments = 0;
    822      1.110    itojun 	int error = 0;
    823      1.293      maxv 	int ipoff;
    824      1.293      maxv 	bool mff;
    825      1.110    itojun 
    826      1.110    itojun 	ip = mtod(m, struct ip *);
    827      1.110    itojun 	hlen = ip->ip_hl << 2;
    828      1.293      maxv 
    829      1.293      maxv 	/* XXX: Why don't we remove IP_RF? */
    830      1.293      maxv 	ipoff = ntohs(ip->ip_off) & ~IP_MF;
    831      1.293      maxv 
    832      1.293      maxv 	mff = (ip->ip_off & htons(IP_MF)) != 0;
    833      1.293      maxv 
    834      1.135      manu 	if (ifp != NULL)
    835      1.135      manu 		sw_csum &= ~ifp->if_csum_flags_tx;
    836      1.110    itojun 
    837      1.110    itojun 	len = (mtu - hlen) &~ 7;
    838      1.124    itojun 	if (len < 8) {
    839      1.124    itojun 		m_freem(m);
    840      1.293      maxv 		return EMSGSIZE;
    841      1.124    itojun 	}
    842      1.110    itojun 
    843      1.110    itojun 	firstlen = len;
    844      1.110    itojun 	mnext = &m->m_nextpkt;
    845        1.1       cgd 
    846        1.1       cgd 	/*
    847        1.1       cgd 	 * Loop through length of segment after first fragment,
    848        1.1       cgd 	 * make new header and copy data of each part and link onto chain.
    849        1.1       cgd 	 */
    850        1.1       cgd 	m0 = m;
    851      1.293      maxv 	mhlen = sizeof(struct ip);
    852      1.100    itojun 	for (off = hlen + len; off < ntohs(ip->ip_len); off += len) {
    853        1.1       cgd 		MGETHDR(m, M_DONTWAIT, MT_HEADER);
    854      1.293      maxv 		if (m == NULL) {
    855        1.1       cgd 			error = ENOBUFS;
    856      1.194   thorpej 			IP_STATINC(IP_STAT_ODROPPED);
    857        1.1       cgd 			goto sendorfree;
    858        1.1       cgd 		}
    859      1.103      matt 		MCLAIM(m, m0->m_owner);
    860      1.293      maxv 
    861       1.22       cgd 		*mnext = m;
    862       1.22       cgd 		mnext = &m->m_nextpkt;
    863      1.293      maxv 
    864        1.1       cgd 		m->m_data += max_linkhdr;
    865        1.1       cgd 		mhip = mtod(m, struct ip *);
    866        1.1       cgd 		*mhip = *ip;
    867      1.293      maxv 
    868       1.73        is 		/* we must inherit MCAST and BCAST flags */
    869       1.73        is 		m->m_flags |= m0->m_flags & (M_MCAST|M_BCAST);
    870      1.293      maxv 
    871      1.293      maxv 		if (hlen > sizeof(struct ip)) {
    872      1.293      maxv 			mhlen = ip_optcopy(ip, mhip) + sizeof(struct ip);
    873        1.1       cgd 			mhip->ip_hl = mhlen >> 2;
    874        1.1       cgd 		}
    875        1.1       cgd 		m->m_len = mhlen;
    876      1.293      maxv 
    877      1.293      maxv 		mhip->ip_off = ((off - hlen) >> 3) + ipoff;
    878      1.293      maxv 		if (mff)
    879        1.1       cgd 			mhip->ip_off |= IP_MF;
    880      1.100    itojun 		if (off + len >= ntohs(ip->ip_len))
    881      1.100    itojun 			len = ntohs(ip->ip_len) - off;
    882        1.1       cgd 		else
    883        1.1       cgd 			mhip->ip_off |= IP_MF;
    884      1.100    itojun 		HTONS(mhip->ip_off);
    885      1.293      maxv 
    886       1.21       cgd 		mhip->ip_len = htons((u_int16_t)(len + mhlen));
    887      1.182    dyoung 		m->m_next = m_copym(m0, off, len, M_DONTWAIT);
    888      1.293      maxv 		if (m->m_next == NULL) {
    889      1.293      maxv 			error = ENOBUFS;
    890      1.194   thorpej 			IP_STATINC(IP_STAT_ODROPPED);
    891        1.1       cgd 			goto sendorfree;
    892        1.1       cgd 		}
    893      1.293      maxv 
    894        1.1       cgd 		m->m_pkthdr.len = mhlen + len;
    895      1.256     ozaki 		m_reset_rcvif(m);
    896      1.293      maxv 
    897        1.1       cgd 		mhip->ip_sum = 0;
    898      1.210      yamt 		KASSERT((m->m_pkthdr.csum_flags & M_CSUM_IPv4) == 0);
    899      1.104      yamt 		if (sw_csum & M_CSUM_IPv4) {
    900      1.104      yamt 			mhip->ip_sum = in_cksum(m, mhlen);
    901      1.104      yamt 		} else {
    902      1.210      yamt 			/*
    903      1.210      yamt 			 * checksum is hw-offloaded or not necessary.
    904      1.210      yamt 			 */
    905      1.210      yamt 			m->m_pkthdr.csum_flags |=
    906      1.210      yamt 			    m0->m_pkthdr.csum_flags & M_CSUM_IPv4;
    907      1.148   thorpej 			m->m_pkthdr.csum_data |= mhlen << 16;
    908      1.210      yamt 			KASSERT(!(ifp != NULL &&
    909      1.237     ozaki 			    IN_NEED_CHECKSUM(ifp, M_CSUM_IPv4)) ||
    910      1.237     ozaki 			    (m->m_pkthdr.csum_flags & M_CSUM_IPv4) != 0);
    911      1.104      yamt 		}
    912      1.194   thorpej 		IP_STATINC(IP_STAT_OFRAGMENTS);
    913       1.48      matt 		fragments++;
    914        1.1       cgd 	}
    915      1.293      maxv 
    916        1.1       cgd 	/*
    917        1.1       cgd 	 * Update first fragment by trimming what's been copied out
    918        1.1       cgd 	 * and updating header, then send each fragment (in order).
    919        1.1       cgd 	 */
    920        1.1       cgd 	m = m0;
    921      1.100    itojun 	m_adj(m, hlen + firstlen - ntohs(ip->ip_len));
    922        1.1       cgd 	m->m_pkthdr.len = hlen + firstlen;
    923       1.21       cgd 	ip->ip_len = htons((u_int16_t)m->m_pkthdr.len);
    924      1.100    itojun 	ip->ip_off |= htons(IP_MF);
    925        1.1       cgd 	ip->ip_sum = 0;
    926      1.210      yamt 	if (sw_csum & M_CSUM_IPv4) {
    927      1.210      yamt 		ip->ip_sum = in_cksum(m, hlen);
    928      1.210      yamt 		m->m_pkthdr.csum_flags &= ~M_CSUM_IPv4;
    929      1.210      yamt 	} else {
    930      1.210      yamt 		/*
    931      1.210      yamt 		 * checksum is hw-offloaded or not necessary.
    932      1.210      yamt 		 */
    933      1.237     ozaki 		KASSERT(!(ifp != NULL && IN_NEED_CHECKSUM(ifp, M_CSUM_IPv4)) ||
    934      1.237     ozaki 		    (m->m_pkthdr.csum_flags & M_CSUM_IPv4) != 0);
    935      1.210      yamt 		KASSERT(M_CSUM_DATA_IPv4_IPHL(m->m_pkthdr.csum_data) >=
    936      1.237     ozaki 		    sizeof(struct ip));
    937      1.104      yamt 	}
    938      1.293      maxv 
    939        1.1       cgd sendorfree:
    940       1.48      matt 	/*
    941       1.48      matt 	 * If there is no room for all the fragments, don't queue
    942       1.48      matt 	 * any of them.
    943       1.48      matt 	 */
    944      1.135      manu 	if (ifp != NULL) {
    945      1.270     ozaki 		IFQ_LOCK(&ifp->if_snd);
    946      1.135      manu 		if (ifp->if_snd.ifq_maxlen - ifp->if_snd.ifq_len < fragments &&
    947      1.135      manu 		    error == 0) {
    948      1.135      manu 			error = ENOBUFS;
    949      1.194   thorpej 			IP_STATINC(IP_STAT_ODROPPED);
    950      1.135      manu 			IFQ_INC_DROPS(&ifp->if_snd);
    951      1.135      manu 		}
    952      1.270     ozaki 		IFQ_UNLOCK(&ifp->if_snd);
    953      1.126     enami 	}
    954      1.124    itojun 	if (error) {
    955      1.125    itojun 		for (m = m0; m; m = m0) {
    956      1.124    itojun 			m0 = m->m_nextpkt;
    957      1.124    itojun 			m->m_nextpkt = NULL;
    958      1.124    itojun 			m_freem(m);
    959      1.124    itojun 		}
    960      1.124    itojun 	}
    961      1.293      maxv 
    962      1.293      maxv 	return error;
    963       1.86   thorpej }
    964       1.86   thorpej 
    965       1.86   thorpej /*
    966       1.86   thorpej  * Process a delayed payload checksum calculation.
    967       1.86   thorpej  */
    968       1.86   thorpej void
    969       1.86   thorpej in_delayed_cksum(struct mbuf *m)
    970       1.86   thorpej {
    971       1.86   thorpej 	struct ip *ip;
    972       1.86   thorpej 	u_int16_t csum, offset;
    973       1.86   thorpej 
    974       1.86   thorpej 	ip = mtod(m, struct ip *);
    975       1.86   thorpej 	offset = ip->ip_hl << 2;
    976       1.86   thorpej 	csum = in4_cksum(m, 0, offset, ntohs(ip->ip_len) - offset);
    977       1.86   thorpej 	if (csum == 0 && (m->m_pkthdr.csum_flags & M_CSUM_UDPv4) != 0)
    978       1.86   thorpej 		csum = 0xffff;
    979       1.86   thorpej 
    980      1.145    briggs 	offset += M_CSUM_DATA_IPv4_OFFSET(m->m_pkthdr.csum_data);
    981       1.86   thorpej 
    982       1.86   thorpej 	if ((offset + sizeof(u_int16_t)) > m->m_len) {
    983       1.87      yamt 		/* This happen when ip options were inserted
    984       1.86   thorpej 		printf("in_delayed_cksum: pullup len %d off %d proto %d\n",
    985       1.86   thorpej 		    m->m_len, offset, ip->ip_p);
    986       1.87      yamt 		 */
    987      1.179  christos 		m_copyback(m, offset, sizeof(csum), (void *) &csum);
    988       1.86   thorpej 	} else
    989      1.179  christos 		*(u_int16_t *)(mtod(m, char *) + offset) = csum;
    990        1.1       cgd }
    991       1.47       kml 
    992       1.47       kml /*
    993       1.47       kml  * Determine the maximum length of the options to be inserted;
    994       1.47       kml  * we would far rather allocate too much space rather than too little.
    995       1.47       kml  */
    996       1.47       kml u_int
    997      1.140     perry ip_optlen(struct inpcb *inp)
    998       1.47       kml {
    999       1.47       kml 	struct mbuf *m = inp->inp_options;
   1000       1.47       kml 
   1001      1.226     rmind 	if (m && m->m_len > offsetof(struct ipoption, ipopt_dst)) {
   1002      1.101    itojun 		return (m->m_len - offsetof(struct ipoption, ipopt_dst));
   1003      1.226     rmind 	}
   1004      1.226     rmind 	return 0;
   1005       1.47       kml }
   1006       1.47       kml 
   1007        1.1       cgd /*
   1008        1.1       cgd  * Insert IP options into preformed packet.
   1009        1.1       cgd  * Adjust IP destination as required for IP source routing,
   1010        1.1       cgd  * as indicated by a non-zero in_addr at the start of the options.
   1011        1.1       cgd  */
   1012       1.12   mycroft static struct mbuf *
   1013      1.140     perry ip_insertoptions(struct mbuf *m, struct mbuf *opt, int *phlen)
   1014        1.1       cgd {
   1015       1.71  augustss 	struct ipoption *p = mtod(opt, struct ipoption *);
   1016        1.1       cgd 	struct mbuf *n;
   1017       1.71  augustss 	struct ip *ip = mtod(m, struct ip *);
   1018        1.1       cgd 	unsigned optlen;
   1019        1.1       cgd 
   1020        1.1       cgd 	optlen = opt->m_len - sizeof(p->ipopt_dst);
   1021      1.100    itojun 	if (optlen + ntohs(ip->ip_len) > IP_MAXPACKET)
   1022      1.293      maxv 		return m;		/* XXX should fail */
   1023       1.31   mycroft 	if (!in_nullhost(p->ipopt_dst))
   1024        1.1       cgd 		ip->ip_dst = p->ipopt_dst;
   1025      1.123    itojun 	if (M_READONLY(m) || M_LEADINGSPACE(m) < optlen) {
   1026        1.1       cgd 		MGETHDR(n, M_DONTWAIT, MT_HEADER);
   1027      1.293      maxv 		if (n == NULL)
   1028      1.293      maxv 			return m;
   1029      1.103      matt 		MCLAIM(n, m->m_owner);
   1030      1.155      yamt 		M_MOVE_PKTHDR(n, m);
   1031        1.1       cgd 		m->m_len -= sizeof(struct ip);
   1032        1.1       cgd 		m->m_data += sizeof(struct ip);
   1033        1.1       cgd 		n->m_next = m;
   1034        1.1       cgd 		m = n;
   1035        1.1       cgd 		m->m_len = optlen + sizeof(struct ip);
   1036        1.1       cgd 		m->m_data += max_linkhdr;
   1037      1.179  christos 		bcopy((void *)ip, mtod(m, void *), sizeof(struct ip));
   1038        1.1       cgd 	} else {
   1039        1.1       cgd 		m->m_data -= optlen;
   1040        1.1       cgd 		m->m_len += optlen;
   1041      1.179  christos 		memmove(mtod(m, void *), ip, sizeof(struct ip));
   1042        1.1       cgd 	}
   1043       1.87      yamt 	m->m_pkthdr.len += optlen;
   1044        1.1       cgd 	ip = mtod(m, struct ip *);
   1045      1.179  christos 	bcopy((void *)p->ipopt_list, (void *)(ip + 1), (unsigned)optlen);
   1046        1.1       cgd 	*phlen = sizeof(struct ip) + optlen;
   1047      1.100    itojun 	ip->ip_len = htons(ntohs(ip->ip_len) + optlen);
   1048      1.293      maxv 	return m;
   1049        1.1       cgd }
   1050        1.1       cgd 
   1051        1.1       cgd /*
   1052      1.293      maxv  * Copy options from ipsrc to ipdst, omitting those not copied during
   1053      1.293      maxv  * fragmentation.
   1054        1.1       cgd  */
   1055       1.12   mycroft int
   1056      1.293      maxv ip_optcopy(struct ip *ipsrc, struct ip *ipdst)
   1057        1.1       cgd {
   1058       1.71  augustss 	u_char *cp, *dp;
   1059        1.1       cgd 	int opt, optlen, cnt;
   1060        1.1       cgd 
   1061      1.293      maxv 	cp = (u_char *)(ipsrc + 1);
   1062      1.293      maxv 	dp = (u_char *)(ipdst + 1);
   1063      1.293      maxv 	cnt = (ipsrc->ip_hl << 2) - sizeof(struct ip);
   1064        1.1       cgd 	for (; cnt > 0; cnt -= optlen, cp += optlen) {
   1065        1.1       cgd 		opt = cp[0];
   1066        1.1       cgd 		if (opt == IPOPT_EOL)
   1067        1.1       cgd 			break;
   1068       1.18   mycroft 		if (opt == IPOPT_NOP) {
   1069       1.18   mycroft 			/* Preserve for IP mcast tunnel's LSRR alignment. */
   1070       1.18   mycroft 			*dp++ = IPOPT_NOP;
   1071        1.1       cgd 			optlen = 1;
   1072       1.18   mycroft 			continue;
   1073       1.74    itojun 		}
   1074      1.226     rmind 
   1075      1.226     rmind 		KASSERT(cnt >= IPOPT_OLEN + sizeof(*cp));
   1076       1.74    itojun 		optlen = cp[IPOPT_OLEN];
   1077      1.226     rmind 		KASSERT(optlen >= IPOPT_OLEN + sizeof(*cp) && optlen < cnt);
   1078      1.226     rmind 
   1079      1.226     rmind 		/* Invalid lengths should have been caught by ip_dooptions. */
   1080        1.1       cgd 		if (optlen > cnt)
   1081        1.1       cgd 			optlen = cnt;
   1082        1.1       cgd 		if (IPOPT_COPIED(opt)) {
   1083      1.179  christos 			bcopy((void *)cp, (void *)dp, (unsigned)optlen);
   1084        1.1       cgd 			dp += optlen;
   1085        1.1       cgd 		}
   1086        1.1       cgd 	}
   1087      1.293      maxv 
   1088      1.293      maxv 	for (optlen = dp - (u_char *)(ipdst+1); optlen & 0x3; optlen++) {
   1089        1.1       cgd 		*dp++ = IPOPT_EOL;
   1090      1.293      maxv 	}
   1091      1.293      maxv 
   1092      1.293      maxv 	return optlen;
   1093        1.1       cgd }
   1094        1.1       cgd 
   1095        1.1       cgd /*
   1096        1.1       cgd  * IP socket option processing.
   1097        1.1       cgd  */
   1098       1.12   mycroft int
   1099      1.197    plunky ip_ctloutput(int op, struct socket *so, struct sockopt *sopt)
   1100        1.1       cgd {
   1101       1.71  augustss 	struct inpcb *inp = sotoinpcb(so);
   1102      1.226     rmind 	struct ip *ip = &inp->inp_ip;
   1103      1.226     rmind 	int inpflags = inp->inp_flags;
   1104      1.226     rmind 	int optval = 0, error = 0;
   1105      1.289  christos 	struct in_pktinfo pktinfo;
   1106        1.1       cgd 
   1107      1.272     ozaki 	KASSERT(solocked(so));
   1108      1.272     ozaki 
   1109      1.197    plunky 	if (sopt->sopt_level != IPPROTO_IP) {
   1110      1.197    plunky 		if (sopt->sopt_level == SOL_SOCKET && sopt->sopt_name == SO_NOHEADER)
   1111      1.184    dyoung 			return 0;
   1112      1.184    dyoung 		return ENOPROTOOPT;
   1113      1.184    dyoung 	}
   1114      1.184    dyoung 
   1115      1.184    dyoung 	switch (op) {
   1116        1.1       cgd 	case PRCO_SETOPT:
   1117      1.197    plunky 		switch (sopt->sopt_name) {
   1118        1.1       cgd 		case IP_OPTIONS:
   1119        1.1       cgd #ifdef notyet
   1120        1.1       cgd 		case IP_RETOPTS:
   1121        1.1       cgd #endif
   1122      1.226     rmind 			error = ip_pcbopts(inp, sopt);
   1123      1.197    plunky 			break;
   1124        1.1       cgd 
   1125        1.1       cgd 		case IP_TOS:
   1126        1.1       cgd 		case IP_TTL:
   1127      1.205   minskim 		case IP_MINTTL:
   1128        1.1       cgd 		case IP_RECVOPTS:
   1129        1.1       cgd 		case IP_RECVRETOPTS:
   1130        1.1       cgd 		case IP_RECVDSTADDR:
   1131       1.37   thorpej 		case IP_RECVIF:
   1132      1.223  christos 		case IP_RECVPKTINFO:
   1133      1.204   minskim 		case IP_RECVTTL:
   1134      1.197    plunky 			error = sockopt_getint(sopt, &optval);
   1135      1.197    plunky 			if (error)
   1136      1.197    plunky 				break;
   1137      1.197    plunky 
   1138      1.197    plunky 			switch (sopt->sopt_name) {
   1139      1.197    plunky 			case IP_TOS:
   1140      1.226     rmind 				ip->ip_tos = optval;
   1141      1.197    plunky 				break;
   1142      1.197    plunky 
   1143      1.197    plunky 			case IP_TTL:
   1144      1.226     rmind 				ip->ip_ttl = optval;
   1145      1.197    plunky 				break;
   1146      1.205   minskim 
   1147      1.205   minskim 			case IP_MINTTL:
   1148      1.205   minskim 				if (optval > 0 && optval <= MAXTTL)
   1149      1.205   minskim 					inp->inp_ip_minttl = optval;
   1150      1.205   minskim 				else
   1151      1.205   minskim 					error = EINVAL;
   1152      1.205   minskim 				break;
   1153        1.1       cgd #define	OPTSET(bit) \
   1154        1.1       cgd 	if (optval) \
   1155      1.226     rmind 		inpflags |= bit; \
   1156        1.1       cgd 	else \
   1157      1.226     rmind 		inpflags &= ~bit;
   1158        1.1       cgd 
   1159      1.197    plunky 			case IP_RECVOPTS:
   1160      1.197    plunky 				OPTSET(INP_RECVOPTS);
   1161      1.197    plunky 				break;
   1162      1.197    plunky 
   1163      1.223  christos 			case IP_RECVPKTINFO:
   1164      1.223  christos 				OPTSET(INP_RECVPKTINFO);
   1165      1.223  christos 				break;
   1166      1.223  christos 
   1167      1.197    plunky 			case IP_RECVRETOPTS:
   1168      1.197    plunky 				OPTSET(INP_RECVRETOPTS);
   1169      1.197    plunky 				break;
   1170      1.197    plunky 
   1171      1.197    plunky 			case IP_RECVDSTADDR:
   1172      1.197    plunky 				OPTSET(INP_RECVDSTADDR);
   1173      1.197    plunky 				break;
   1174      1.197    plunky 
   1175      1.197    plunky 			case IP_RECVIF:
   1176      1.197    plunky 				OPTSET(INP_RECVIF);
   1177      1.197    plunky 				break;
   1178      1.204   minskim 
   1179      1.204   minskim 			case IP_RECVTTL:
   1180      1.204   minskim 				OPTSET(INP_RECVTTL);
   1181      1.204   minskim 				break;
   1182        1.1       cgd 			}
   1183      1.289  christos 			break;
   1184      1.289  christos 		case IP_PKTINFO:
   1185      1.289  christos 			error = sockopt_getint(sopt, &optval);
   1186      1.289  christos 			if (!error) {
   1187      1.289  christos 				/* Linux compatibility */
   1188      1.289  christos 				OPTSET(INP_RECVPKTINFO);
   1189      1.289  christos 				break;
   1190      1.289  christos 			}
   1191      1.289  christos 			error = sockopt_get(sopt, &pktinfo, sizeof(pktinfo));
   1192      1.289  christos 			if (error)
   1193      1.289  christos 				break;
   1194      1.289  christos 
   1195      1.289  christos 			if (pktinfo.ipi_ifindex == 0) {
   1196      1.289  christos 				inp->inp_prefsrcip = pktinfo.ipi_addr;
   1197      1.289  christos 				break;
   1198      1.289  christos 			}
   1199      1.289  christos 
   1200      1.289  christos 			/* Solaris compatibility */
   1201      1.289  christos 			struct ifnet *ifp;
   1202      1.289  christos 			struct in_ifaddr *ia;
   1203      1.289  christos 			int s;
   1204      1.289  christos 
   1205      1.289  christos 			/* pick up primary address */
   1206      1.289  christos 			s = pserialize_read_enter();
   1207      1.289  christos 			ifp = if_byindex(pktinfo.ipi_ifindex);
   1208      1.289  christos 			if (ifp == NULL) {
   1209      1.289  christos 				pserialize_read_exit(s);
   1210      1.289  christos 				error = EADDRNOTAVAIL;
   1211      1.289  christos 				break;
   1212      1.289  christos 			}
   1213      1.289  christos 			ia = in_get_ia_from_ifp(ifp);
   1214      1.289  christos 			if (ia == NULL) {
   1215      1.289  christos 				pserialize_read_exit(s);
   1216      1.289  christos 				error = EADDRNOTAVAIL;
   1217      1.289  christos 				break;
   1218      1.289  christos 			}
   1219      1.289  christos 			inp->inp_prefsrcip = IA_SIN(ia)->sin_addr;
   1220      1.289  christos 			pserialize_read_exit(s);
   1221      1.289  christos 			break;
   1222      1.197    plunky 		break;
   1223        1.1       cgd #undef OPTSET
   1224       1.18   mycroft 
   1225       1.18   mycroft 		case IP_MULTICAST_IF:
   1226       1.18   mycroft 		case IP_MULTICAST_TTL:
   1227       1.18   mycroft 		case IP_MULTICAST_LOOP:
   1228       1.18   mycroft 		case IP_ADD_MEMBERSHIP:
   1229       1.18   mycroft 		case IP_DROP_MEMBERSHIP:
   1230      1.231  christos 			error = ip_setmoptions(&inp->inp_moptions, sopt);
   1231       1.18   mycroft 			break;
   1232        1.1       cgd 
   1233       1.41     lukem 		case IP_PORTRANGE:
   1234      1.197    plunky 			error = sockopt_getint(sopt, &optval);
   1235      1.197    plunky 			if (error)
   1236      1.197    plunky 				break;
   1237      1.197    plunky 
   1238      1.197    plunky 			switch (optval) {
   1239      1.197    plunky 			case IP_PORTRANGE_DEFAULT:
   1240      1.197    plunky 			case IP_PORTRANGE_HIGH:
   1241      1.226     rmind 				inpflags &= ~(INP_LOWPORT);
   1242      1.197    plunky 				break;
   1243       1.41     lukem 
   1244      1.197    plunky 			case IP_PORTRANGE_LOW:
   1245      1.226     rmind 				inpflags |= INP_LOWPORT;
   1246      1.197    plunky 				break;
   1247       1.41     lukem 
   1248      1.197    plunky 			default:
   1249      1.197    plunky 				error = EINVAL;
   1250      1.197    plunky 				break;
   1251       1.41     lukem 			}
   1252       1.41     lukem 			break;
   1253       1.41     lukem 
   1254      1.216  christos 		case IP_PORTALGO:
   1255      1.216  christos 			error = sockopt_getint(sopt, &optval);
   1256      1.216  christos 			if (error)
   1257      1.216  christos 				break;
   1258      1.216  christos 
   1259      1.217  christos 			error = portalgo_algo_index_select(
   1260      1.216  christos 			    (struct inpcb_hdr *)inp, optval);
   1261      1.216  christos 			break;
   1262      1.216  christos 
   1263      1.220  christos #if defined(IPSEC)
   1264       1.61    itojun 		case IP_IPSEC_POLICY:
   1265      1.229  christos 			if (ipsec_enabled) {
   1266      1.297      maxv 				error = ipsec_set_policy(inp, sopt->sopt_name,
   1267      1.229  christos 				    sopt->sopt_data, sopt->sopt_size,
   1268      1.229  christos 				    curlwp->l_cred);
   1269      1.229  christos 				break;
   1270      1.229  christos 			}
   1271      1.229  christos 			/*FALLTHROUGH*/
   1272      1.229  christos #endif /* IPSEC */
   1273       1.61    itojun 
   1274        1.1       cgd 		default:
   1275       1.18   mycroft 			error = ENOPROTOOPT;
   1276        1.1       cgd 			break;
   1277        1.1       cgd 		}
   1278        1.1       cgd 		break;
   1279        1.1       cgd 
   1280        1.1       cgd 	case PRCO_GETOPT:
   1281      1.197    plunky 		switch (sopt->sopt_name) {
   1282        1.1       cgd 		case IP_OPTIONS:
   1283      1.226     rmind 		case IP_RETOPTS: {
   1284      1.226     rmind 			struct mbuf *mopts = inp->inp_options;
   1285      1.226     rmind 
   1286      1.226     rmind 			if (mopts) {
   1287      1.197    plunky 				struct mbuf *m;
   1288      1.197    plunky 
   1289      1.226     rmind 				m = m_copym(mopts, 0, M_COPYALL, M_DONTWAIT);
   1290      1.199    plunky 				if (m == NULL) {
   1291      1.199    plunky 					error = ENOBUFS;
   1292      1.199    plunky 					break;
   1293      1.199    plunky 				}
   1294      1.197    plunky 				error = sockopt_setmbuf(sopt, m);
   1295      1.197    plunky 			}
   1296        1.1       cgd 			break;
   1297      1.226     rmind 		}
   1298        1.1       cgd 		case IP_TOS:
   1299        1.1       cgd 		case IP_TTL:
   1300      1.205   minskim 		case IP_MINTTL:
   1301        1.1       cgd 		case IP_RECVOPTS:
   1302        1.1       cgd 		case IP_RECVRETOPTS:
   1303        1.1       cgd 		case IP_RECVDSTADDR:
   1304       1.37   thorpej 		case IP_RECVIF:
   1305      1.223  christos 		case IP_RECVPKTINFO:
   1306      1.204   minskim 		case IP_RECVTTL:
   1307       1.40      matt 		case IP_ERRORMTU:
   1308      1.197    plunky 			switch (sopt->sopt_name) {
   1309        1.1       cgd 			case IP_TOS:
   1310      1.226     rmind 				optval = ip->ip_tos;
   1311        1.1       cgd 				break;
   1312        1.1       cgd 
   1313        1.1       cgd 			case IP_TTL:
   1314      1.226     rmind 				optval = ip->ip_ttl;
   1315       1.40      matt 				break;
   1316       1.40      matt 
   1317      1.205   minskim 			case IP_MINTTL:
   1318      1.205   minskim 				optval = inp->inp_ip_minttl;
   1319      1.205   minskim 				break;
   1320      1.205   minskim 
   1321       1.40      matt 			case IP_ERRORMTU:
   1322       1.40      matt 				optval = inp->inp_errormtu;
   1323        1.1       cgd 				break;
   1324        1.1       cgd 
   1325      1.226     rmind #define	OPTBIT(bit)	(inpflags & bit ? 1 : 0)
   1326        1.1       cgd 
   1327        1.1       cgd 			case IP_RECVOPTS:
   1328        1.1       cgd 				optval = OPTBIT(INP_RECVOPTS);
   1329        1.1       cgd 				break;
   1330        1.1       cgd 
   1331      1.223  christos 			case IP_RECVPKTINFO:
   1332      1.223  christos 				optval = OPTBIT(INP_RECVPKTINFO);
   1333      1.223  christos 				break;
   1334      1.223  christos 
   1335        1.1       cgd 			case IP_RECVRETOPTS:
   1336        1.1       cgd 				optval = OPTBIT(INP_RECVRETOPTS);
   1337        1.1       cgd 				break;
   1338        1.1       cgd 
   1339        1.1       cgd 			case IP_RECVDSTADDR:
   1340        1.1       cgd 				optval = OPTBIT(INP_RECVDSTADDR);
   1341       1.37   thorpej 				break;
   1342       1.37   thorpej 
   1343       1.37   thorpej 			case IP_RECVIF:
   1344       1.37   thorpej 				optval = OPTBIT(INP_RECVIF);
   1345        1.1       cgd 				break;
   1346      1.204   minskim 
   1347      1.204   minskim 			case IP_RECVTTL:
   1348      1.204   minskim 				optval = OPTBIT(INP_RECVTTL);
   1349      1.204   minskim 				break;
   1350        1.1       cgd 			}
   1351      1.197    plunky 			error = sockopt_setint(sopt, optval);
   1352        1.1       cgd 			break;
   1353       1.61    itojun 
   1354      1.289  christos 		case IP_PKTINFO:
   1355      1.289  christos 			switch (sopt->sopt_size) {
   1356      1.289  christos 			case sizeof(int):
   1357      1.289  christos 				/* Linux compatibility */
   1358      1.289  christos 				optval = OPTBIT(INP_RECVPKTINFO);
   1359      1.289  christos 				error = sockopt_setint(sopt, optval);
   1360      1.289  christos 				break;
   1361      1.289  christos 			case sizeof(struct in_pktinfo):
   1362      1.289  christos 				/* Solaris compatibility */
   1363      1.289  christos 				pktinfo.ipi_ifindex = 0;
   1364      1.289  christos 				pktinfo.ipi_addr = inp->inp_prefsrcip;
   1365      1.289  christos 				error = sockopt_set(sopt, &pktinfo,
   1366      1.289  christos 				    sizeof(pktinfo));
   1367      1.289  christos 				break;
   1368      1.289  christos 			default:
   1369      1.289  christos 				/*
   1370      1.289  christos 				 * While size is stuck at 0, and, later, if
   1371      1.289  christos 				 * the caller doesn't use an exactly sized
   1372      1.289  christos 				 * recipient for the data, default to Linux
   1373      1.289  christos 				 * compatibility
   1374      1.289  christos 				 */
   1375      1.289  christos 				optval = OPTBIT(INP_RECVPKTINFO);
   1376      1.289  christos 				error = sockopt_setint(sopt, optval);
   1377      1.289  christos 				break;
   1378      1.289  christos 			}
   1379      1.289  christos 			break;
   1380      1.289  christos 
   1381      1.220  christos #if 0	/* defined(IPSEC) */
   1382       1.61    itojun 		case IP_IPSEC_POLICY:
   1383       1.66    itojun 		{
   1384      1.197    plunky 			struct mbuf *m = NULL;
   1385       1.66    itojun 
   1386      1.197    plunky 			/* XXX this will return EINVAL as sopt is empty */
   1387      1.296      maxv 			error = ipsec_get_policy(inp, sopt->sopt_data,
   1388      1.197    plunky 			    sopt->sopt_size, &m);
   1389      1.197    plunky 			if (error == 0)
   1390      1.197    plunky 				error = sockopt_setmbuf(sopt, m);
   1391       1.61    itojun 			break;
   1392       1.66    itojun 		}
   1393       1.61    itojun #endif /*IPSEC*/
   1394       1.18   mycroft 
   1395       1.18   mycroft 		case IP_MULTICAST_IF:
   1396       1.18   mycroft 		case IP_MULTICAST_TTL:
   1397       1.18   mycroft 		case IP_MULTICAST_LOOP:
   1398       1.18   mycroft 		case IP_ADD_MEMBERSHIP:
   1399       1.18   mycroft 		case IP_DROP_MEMBERSHIP:
   1400      1.231  christos 			error = ip_getmoptions(inp->inp_moptions, sopt);
   1401       1.41     lukem 			break;
   1402       1.41     lukem 
   1403       1.41     lukem 		case IP_PORTRANGE:
   1404      1.226     rmind 			if (inpflags & INP_LOWPORT)
   1405       1.41     lukem 				optval = IP_PORTRANGE_LOW;
   1406       1.41     lukem 			else
   1407       1.41     lukem 				optval = IP_PORTRANGE_DEFAULT;
   1408      1.197    plunky 			error = sockopt_setint(sopt, optval);
   1409       1.18   mycroft 			break;
   1410        1.1       cgd 
   1411      1.216  christos 		case IP_PORTALGO:
   1412      1.226     rmind 			optval = inp->inp_portalgo;
   1413      1.216  christos 			error = sockopt_setint(sopt, optval);
   1414      1.216  christos 			break;
   1415      1.216  christos 
   1416        1.1       cgd 		default:
   1417       1.18   mycroft 			error = ENOPROTOOPT;
   1418        1.1       cgd 			break;
   1419        1.1       cgd 		}
   1420        1.1       cgd 		break;
   1421        1.1       cgd 	}
   1422      1.226     rmind 
   1423      1.226     rmind 	if (!error) {
   1424      1.226     rmind 		inp->inp_flags = inpflags;
   1425      1.226     rmind 	}
   1426      1.226     rmind 	return error;
   1427        1.1       cgd }
   1428        1.1       cgd 
   1429      1.284       ryo static int
   1430      1.284       ryo ip_pktinfo_prepare(const struct in_pktinfo *pktinfo, struct ip_pktopts *pktopts,
   1431      1.284       ryo     int *flags, kauth_cred_t cred)
   1432      1.284       ryo {
   1433      1.284       ryo 	struct ip_moptions *imo;
   1434      1.284       ryo 	int error = 0;
   1435      1.284       ryo 	bool addrset = false;
   1436      1.284       ryo 
   1437      1.284       ryo 	if (!in_nullhost(pktinfo->ipi_addr)) {
   1438      1.284       ryo 		pktopts->ippo_laddr.sin_addr = pktinfo->ipi_addr;
   1439      1.284       ryo 		/* EADDRNOTAVAIL? */
   1440      1.284       ryo 		error = in_pcbbindableaddr(&pktopts->ippo_laddr, cred);
   1441      1.284       ryo 		if (error != 0)
   1442      1.284       ryo 			return error;
   1443      1.284       ryo 		addrset = true;
   1444      1.284       ryo 	}
   1445      1.284       ryo 
   1446      1.284       ryo 	if (pktinfo->ipi_ifindex != 0) {
   1447      1.284       ryo 		if (!addrset) {
   1448      1.284       ryo 			struct ifnet *ifp;
   1449      1.284       ryo 			struct in_ifaddr *ia;
   1450      1.284       ryo 			int s;
   1451      1.284       ryo 
   1452      1.284       ryo 			/* pick up primary address */
   1453      1.284       ryo 			s = pserialize_read_enter();
   1454      1.284       ryo 			ifp = if_byindex(pktinfo->ipi_ifindex);
   1455      1.284       ryo 			if (ifp == NULL) {
   1456      1.284       ryo 				pserialize_read_exit(s);
   1457      1.284       ryo 				return EADDRNOTAVAIL;
   1458      1.284       ryo 			}
   1459      1.284       ryo 			ia = in_get_ia_from_ifp(ifp);
   1460      1.284       ryo 			if (ia == NULL) {
   1461      1.284       ryo 				pserialize_read_exit(s);
   1462      1.284       ryo 				return EADDRNOTAVAIL;
   1463      1.284       ryo 			}
   1464      1.284       ryo 			pktopts->ippo_laddr.sin_addr = IA_SIN(ia)->sin_addr;
   1465      1.284       ryo 			pserialize_read_exit(s);
   1466      1.284       ryo 		}
   1467      1.284       ryo 
   1468      1.284       ryo 		/*
   1469      1.284       ryo 		 * If specified ipi_ifindex,
   1470      1.284       ryo 		 * use copied or locally initialized ip_moptions.
   1471      1.284       ryo 		 * Original ip_moptions must not be modified.
   1472      1.284       ryo 		 */
   1473      1.284       ryo 		imo = &pktopts->ippo_imobuf;	/* local buf in pktopts */
   1474      1.284       ryo 		if (pktopts->ippo_imo != NULL) {
   1475      1.284       ryo 			memcpy(imo, pktopts->ippo_imo, sizeof(*imo));
   1476      1.284       ryo 		} else {
   1477      1.284       ryo 			memset(imo, 0, sizeof(*imo));
   1478      1.284       ryo 			imo->imo_multicast_ttl = IP_DEFAULT_MULTICAST_TTL;
   1479      1.284       ryo 			imo->imo_multicast_loop = IP_DEFAULT_MULTICAST_LOOP;
   1480      1.284       ryo 		}
   1481      1.284       ryo 		imo->imo_multicast_if_index = pktinfo->ipi_ifindex;
   1482      1.284       ryo 		pktopts->ippo_imo = imo;
   1483      1.284       ryo 		*flags |= IP_ROUTETOIFINDEX;
   1484      1.284       ryo 	}
   1485      1.284       ryo 	return error;
   1486      1.284       ryo }
   1487      1.284       ryo 
   1488      1.284       ryo /*
   1489      1.284       ryo  * Set up IP outgoing packet options. Even if control is NULL,
   1490      1.284       ryo  * pktopts->ippo_laddr and pktopts->ippo_imo are set and used.
   1491      1.284       ryo  */
   1492      1.284       ryo int
   1493      1.284       ryo ip_setpktopts(struct mbuf *control, struct ip_pktopts *pktopts, int *flags,
   1494      1.286       ryo     struct inpcb *inp, kauth_cred_t cred)
   1495      1.284       ryo {
   1496      1.284       ryo 	struct cmsghdr *cm;
   1497      1.289  christos 	struct in_pktinfo pktinfo;
   1498      1.284       ryo 	int error;
   1499      1.284       ryo 
   1500      1.284       ryo 	pktopts->ippo_imo = inp->inp_moptions;
   1501      1.289  christos 
   1502      1.289  christos 	struct in_addr *ia = in_nullhost(inp->inp_prefsrcip) ? &inp->inp_laddr :
   1503      1.289  christos 	    &inp->inp_prefsrcip;
   1504      1.289  christos 	sockaddr_in_init(&pktopts->ippo_laddr, ia, 0);
   1505      1.284       ryo 
   1506      1.284       ryo 	if (control == NULL)
   1507      1.284       ryo 		return 0;
   1508      1.284       ryo 
   1509      1.284       ryo 	/*
   1510      1.284       ryo 	 * XXX: Currently, we assume all the optional information is
   1511      1.284       ryo 	 * stored in a single mbuf.
   1512      1.284       ryo 	 */
   1513      1.284       ryo 	if (control->m_next)
   1514      1.284       ryo 		return EINVAL;
   1515      1.284       ryo 
   1516      1.284       ryo 	for (; control->m_len > 0;
   1517      1.284       ryo 	    control->m_data += CMSG_ALIGN(cm->cmsg_len),
   1518      1.284       ryo 	    control->m_len -= CMSG_ALIGN(cm->cmsg_len)) {
   1519      1.284       ryo 		cm = mtod(control, struct cmsghdr *);
   1520      1.284       ryo 		if ((control->m_len < sizeof(*cm)) ||
   1521      1.284       ryo 		    (cm->cmsg_len == 0) ||
   1522      1.284       ryo 		    (cm->cmsg_len > control->m_len)) {
   1523      1.284       ryo 			return EINVAL;
   1524      1.284       ryo 		}
   1525      1.284       ryo 		if (cm->cmsg_level != IPPROTO_IP)
   1526      1.284       ryo 			continue;
   1527      1.284       ryo 
   1528      1.284       ryo 		switch (cm->cmsg_type) {
   1529      1.284       ryo 		case IP_PKTINFO:
   1530      1.289  christos 			if (cm->cmsg_len != CMSG_LEN(sizeof(pktinfo)))
   1531      1.284       ryo 				return EINVAL;
   1532      1.289  christos 			memcpy(&pktinfo, CMSG_DATA(cm), sizeof(pktinfo));
   1533      1.289  christos 			error = ip_pktinfo_prepare(&pktinfo, pktopts, flags,
   1534      1.289  christos 			    cred);
   1535      1.289  christos 			if (error)
   1536      1.289  christos 				return error;
   1537      1.289  christos 			break;
   1538      1.289  christos 		case IP_SENDSRCADDR: /* FreeBSD compatibility */
   1539      1.289  christos 			if (cm->cmsg_len != CMSG_LEN(sizeof(struct in_addr)))
   1540      1.289  christos 				return EINVAL;
   1541      1.289  christos 			pktinfo.ipi_ifindex = 0;
   1542      1.289  christos 			pktinfo.ipi_addr =
   1543      1.289  christos 			    ((struct in_pktinfo *)CMSG_DATA(cm))->ipi_addr;
   1544      1.289  christos 			error = ip_pktinfo_prepare(&pktinfo, pktopts, flags,
   1545      1.284       ryo 			    cred);
   1546      1.289  christos 			if (error)
   1547      1.284       ryo 				return error;
   1548      1.284       ryo 			break;
   1549      1.284       ryo 		default:
   1550      1.284       ryo 			return ENOPROTOOPT;
   1551      1.284       ryo 		}
   1552      1.284       ryo 	}
   1553      1.284       ryo 	return 0;
   1554      1.284       ryo }
   1555      1.284       ryo 
   1556        1.1       cgd /*
   1557        1.1       cgd  * Set up IP options in pcb for insertion in output packets.
   1558        1.1       cgd  * Store in mbuf with pointer in pcbopt, adding pseudo-option
   1559        1.1       cgd  * with destination address if source routed.
   1560        1.1       cgd  */
   1561      1.226     rmind static int
   1562      1.226     rmind ip_pcbopts(struct inpcb *inp, const struct sockopt *sopt)
   1563        1.1       cgd {
   1564      1.200    plunky 	struct mbuf *m;
   1565      1.200    plunky 	const u_char *cp;
   1566      1.200    plunky 	u_char *dp;
   1567      1.200    plunky 	int cnt;
   1568      1.200    plunky 
   1569      1.274     ozaki 	KASSERT(inp_locked(inp));
   1570      1.272     ozaki 
   1571      1.226     rmind 	/* Turn off any old options. */
   1572      1.226     rmind 	if (inp->inp_options) {
   1573      1.226     rmind 		m_free(inp->inp_options);
   1574      1.226     rmind 	}
   1575      1.226     rmind 	inp->inp_options = NULL;
   1576      1.226     rmind 	if ((cnt = sopt->sopt_size) == 0) {
   1577      1.226     rmind 		/* Only turning off any previous options. */
   1578      1.226     rmind 		return 0;
   1579      1.226     rmind 	}
   1580      1.200    plunky 	cp = sopt->sopt_data;
   1581        1.1       cgd 
   1582       1.85     ragge #ifndef	__vax__
   1583      1.200    plunky 	if (cnt % sizeof(int32_t))
   1584      1.293      maxv 		return EINVAL;
   1585        1.1       cgd #endif
   1586      1.200    plunky 
   1587      1.200    plunky 	m = m_get(M_DONTWAIT, MT_SOOPTS);
   1588      1.200    plunky 	if (m == NULL)
   1589      1.293      maxv 		return ENOBUFS;
   1590      1.200    plunky 
   1591      1.200    plunky 	dp = mtod(m, u_char *);
   1592      1.200    plunky 	memset(dp, 0, sizeof(struct in_addr));
   1593      1.200    plunky 	dp += sizeof(struct in_addr);
   1594      1.200    plunky 	m->m_len = sizeof(struct in_addr);
   1595      1.200    plunky 
   1596        1.1       cgd 	/*
   1597      1.200    plunky 	 * IP option list according to RFC791. Each option is of the form
   1598      1.200    plunky 	 *
   1599      1.200    plunky 	 *	[optval] [olen] [(olen - 2) data bytes]
   1600      1.200    plunky 	 *
   1601      1.226     rmind 	 * We validate the list and copy options to an mbuf for prepending
   1602      1.200    plunky 	 * to data packets. The IP first-hop destination address will be
   1603      1.200    plunky 	 * stored before actual options and is zero if unset.
   1604        1.1       cgd 	 */
   1605      1.200    plunky 	while (cnt > 0) {
   1606      1.226     rmind 		uint8_t optval, olen, offset;
   1607      1.226     rmind 
   1608      1.200    plunky 		optval = cp[IPOPT_OPTVAL];
   1609        1.1       cgd 
   1610      1.200    plunky 		if (optval == IPOPT_EOL || optval == IPOPT_NOP) {
   1611      1.200    plunky 			olen = 1;
   1612      1.200    plunky 		} else {
   1613      1.200    plunky 			if (cnt < IPOPT_OLEN + 1)
   1614       1.74    itojun 				goto bad;
   1615      1.200    plunky 
   1616      1.200    plunky 			olen = cp[IPOPT_OLEN];
   1617      1.200    plunky 			if (olen < IPOPT_OLEN + 1 || olen > cnt)
   1618        1.1       cgd 				goto bad;
   1619        1.1       cgd 		}
   1620        1.1       cgd 
   1621      1.200    plunky 		if (optval == IPOPT_LSRR || optval == IPOPT_SSRR) {
   1622        1.1       cgd 			/*
   1623        1.1       cgd 			 * user process specifies route as:
   1624        1.1       cgd 			 *	->A->B->C->D
   1625        1.1       cgd 			 * D must be our final destination (but we can't
   1626        1.1       cgd 			 * check that since we may not have connected yet).
   1627        1.1       cgd 			 * A is first hop destination, which doesn't appear in
   1628        1.1       cgd 			 * actual IP option, but is stored before the options.
   1629        1.1       cgd 			 */
   1630      1.200    plunky 			if (olen < IPOPT_OFFSET + 1 + sizeof(struct in_addr))
   1631        1.1       cgd 				goto bad;
   1632      1.200    plunky 
   1633      1.200    plunky 			offset = cp[IPOPT_OFFSET];
   1634      1.200    plunky 			memcpy(mtod(m, u_char *), cp + IPOPT_OFFSET + 1,
   1635      1.200    plunky 			    sizeof(struct in_addr));
   1636      1.200    plunky 
   1637      1.200    plunky 			cp += sizeof(struct in_addr);
   1638        1.1       cgd 			cnt -= sizeof(struct in_addr);
   1639      1.200    plunky 			olen -= sizeof(struct in_addr);
   1640      1.200    plunky 
   1641      1.200    plunky 			if (m->m_len + olen > MAX_IPOPTLEN + sizeof(struct in_addr))
   1642      1.200    plunky 				goto bad;
   1643      1.200    plunky 
   1644      1.200    plunky 			memcpy(dp, cp, olen);
   1645      1.200    plunky 			dp[IPOPT_OPTVAL] = optval;
   1646      1.200    plunky 			dp[IPOPT_OLEN] = olen;
   1647      1.200    plunky 			dp[IPOPT_OFFSET] = offset;
   1648      1.200    plunky 			break;
   1649      1.200    plunky 		} else {
   1650      1.200    plunky 			if (m->m_len + olen > MAX_IPOPTLEN + sizeof(struct in_addr))
   1651      1.200    plunky 				goto bad;
   1652      1.200    plunky 
   1653      1.200    plunky 			memcpy(dp, cp, olen);
   1654        1.1       cgd 			break;
   1655        1.1       cgd 		}
   1656      1.200    plunky 
   1657      1.200    plunky 		dp += olen;
   1658      1.200    plunky 		m->m_len += olen;
   1659      1.200    plunky 
   1660      1.200    plunky 		if (optval == IPOPT_EOL)
   1661      1.200    plunky 			break;
   1662      1.200    plunky 
   1663      1.200    plunky 		cp += olen;
   1664      1.200    plunky 		cnt -= olen;
   1665        1.1       cgd 	}
   1666      1.200    plunky 
   1667      1.226     rmind 	inp->inp_options = m;
   1668      1.226     rmind 	return 0;
   1669      1.293      maxv 
   1670        1.1       cgd bad:
   1671        1.1       cgd 	(void)m_free(m);
   1672      1.226     rmind 	return EINVAL;
   1673        1.1       cgd }
   1674        1.5   hpeyerl 
   1675        1.5   hpeyerl /*
   1676       1.81    itojun  * following RFC1724 section 3.3, 0.0.0.0/8 is interpreted as interface index.
   1677      1.273     ozaki  * Must be called in a pserialize critical section.
   1678       1.81    itojun  */
   1679       1.81    itojun static struct ifnet *
   1680      1.140     perry ip_multicast_if(struct in_addr *a, int *ifindexp)
   1681       1.81    itojun {
   1682       1.81    itojun 	int ifindex;
   1683      1.111    itojun 	struct ifnet *ifp = NULL;
   1684      1.110    itojun 	struct in_ifaddr *ia;
   1685       1.81    itojun 
   1686       1.81    itojun 	if (ifindexp)
   1687       1.81    itojun 		*ifindexp = 0;
   1688       1.81    itojun 	if (ntohl(a->s_addr) >> 24 == 0) {
   1689       1.81    itojun 		ifindex = ntohl(a->s_addr) & 0xffffff;
   1690      1.225     rmind 		ifp = if_byindex(ifindex);
   1691      1.129    itojun 		if (!ifp)
   1692      1.129    itojun 			return NULL;
   1693       1.81    itojun 		if (ifindexp)
   1694       1.81    itojun 			*ifindexp = ifindex;
   1695       1.81    itojun 	} else {
   1696      1.273     ozaki 		IN_ADDRHASH_READER_FOREACH(ia, a->s_addr) {
   1697      1.110    itojun 			if (in_hosteq(ia->ia_addr.sin_addr, *a) &&
   1698      1.111    itojun 			    (ia->ia_ifp->if_flags & IFF_MULTICAST) != 0) {
   1699      1.111    itojun 				ifp = ia->ia_ifp;
   1700      1.273     ozaki 				if (if_is_deactivated(ifp))
   1701      1.273     ozaki 					ifp = NULL;
   1702      1.110    itojun 				break;
   1703      1.111    itojun 			}
   1704      1.110    itojun 		}
   1705       1.81    itojun 	}
   1706       1.81    itojun 	return ifp;
   1707       1.81    itojun }
   1708       1.81    itojun 
   1709      1.156  christos static int
   1710      1.198    plunky ip_getoptval(const struct sockopt *sopt, u_int8_t *val, u_int maxval)
   1711      1.156  christos {
   1712      1.156  christos 	u_int tval;
   1713      1.197    plunky 	u_char cval;
   1714      1.197    plunky 	int error;
   1715      1.156  christos 
   1716      1.197    plunky 	if (sopt == NULL)
   1717      1.156  christos 		return EINVAL;
   1718      1.156  christos 
   1719      1.197    plunky 	switch (sopt->sopt_size) {
   1720      1.156  christos 	case sizeof(u_char):
   1721      1.197    plunky 		error = sockopt_get(sopt, &cval, sizeof(u_char));
   1722      1.197    plunky 		tval = cval;
   1723      1.156  christos 		break;
   1724      1.197    plunky 
   1725      1.156  christos 	case sizeof(u_int):
   1726      1.197    plunky 		error = sockopt_get(sopt, &tval, sizeof(u_int));
   1727      1.156  christos 		break;
   1728      1.197    plunky 
   1729      1.156  christos 	default:
   1730      1.197    plunky 		error = EINVAL;
   1731      1.156  christos 	}
   1732      1.156  christos 
   1733      1.197    plunky 	if (error)
   1734      1.197    plunky 		return error;
   1735      1.197    plunky 
   1736      1.156  christos 	if (tval > maxval)
   1737      1.156  christos 		return EINVAL;
   1738      1.156  christos 
   1739      1.156  christos 	*val = tval;
   1740      1.156  christos 	return 0;
   1741      1.156  christos }
   1742      1.156  christos 
   1743      1.232  christos static int
   1744      1.232  christos ip_get_membership(const struct sockopt *sopt, struct ifnet **ifp,
   1745      1.273     ozaki     struct psref *psref, struct in_addr *ia, bool add)
   1746      1.232  christos {
   1747      1.232  christos 	int error;
   1748      1.232  christos 	struct ip_mreq mreq;
   1749      1.232  christos 
   1750      1.232  christos 	error = sockopt_get(sopt, &mreq, sizeof(mreq));
   1751      1.232  christos 	if (error)
   1752      1.232  christos 		return error;
   1753      1.232  christos 
   1754      1.232  christos 	if (!IN_MULTICAST(mreq.imr_multiaddr.s_addr))
   1755      1.232  christos 		return EINVAL;
   1756      1.232  christos 
   1757      1.232  christos 	memcpy(ia, &mreq.imr_multiaddr, sizeof(*ia));
   1758      1.232  christos 
   1759      1.232  christos 	if (in_nullhost(mreq.imr_interface)) {
   1760      1.232  christos 		union {
   1761      1.232  christos 			struct sockaddr		dst;
   1762      1.232  christos 			struct sockaddr_in	dst4;
   1763      1.232  christos 		} u;
   1764      1.232  christos 		struct route ro;
   1765      1.232  christos 
   1766      1.232  christos 		if (!add) {
   1767      1.232  christos 			*ifp = NULL;
   1768      1.232  christos 			return 0;
   1769      1.232  christos 		}
   1770      1.232  christos 		/*
   1771      1.232  christos 		 * If no interface address was provided, use the interface of
   1772      1.232  christos 		 * the route to the given multicast address.
   1773      1.232  christos 		 */
   1774      1.232  christos 		struct rtentry *rt;
   1775      1.232  christos 		memset(&ro, 0, sizeof(ro));
   1776      1.232  christos 
   1777      1.232  christos 		sockaddr_in_init(&u.dst4, ia, 0);
   1778      1.238     ozaki 		error = rtcache_setdst(&ro, &u.dst);
   1779      1.238     ozaki 		if (error != 0)
   1780      1.238     ozaki 			return error;
   1781      1.232  christos 		*ifp = (rt = rtcache_init(&ro)) != NULL ? rt->rt_ifp : NULL;
   1782      1.273     ozaki 		if (*ifp != NULL) {
   1783      1.273     ozaki 			if (if_is_deactivated(*ifp))
   1784      1.273     ozaki 				*ifp = NULL;
   1785      1.273     ozaki 			else
   1786      1.273     ozaki 				if_acquire(*ifp, psref);
   1787      1.273     ozaki 		}
   1788      1.264     ozaki 		rtcache_unref(rt, &ro);
   1789      1.232  christos 		rtcache_free(&ro);
   1790      1.232  christos 	} else {
   1791      1.273     ozaki 		int s = pserialize_read_enter();
   1792      1.232  christos 		*ifp = ip_multicast_if(&mreq.imr_interface, NULL);
   1793      1.273     ozaki 		if (!add && *ifp == NULL) {
   1794      1.273     ozaki 			pserialize_read_exit(s);
   1795      1.232  christos 			return EADDRNOTAVAIL;
   1796      1.273     ozaki 		}
   1797      1.273     ozaki 		if (*ifp != NULL) {
   1798      1.273     ozaki 			if (if_is_deactivated(*ifp))
   1799      1.273     ozaki 				*ifp = NULL;
   1800      1.273     ozaki 			else
   1801      1.273     ozaki 				if_acquire(*ifp, psref);
   1802      1.273     ozaki 		}
   1803      1.273     ozaki 		pserialize_read_exit(s);
   1804      1.232  christos 	}
   1805      1.232  christos 	return 0;
   1806      1.232  christos }
   1807      1.232  christos 
   1808      1.232  christos /*
   1809      1.232  christos  * Add a multicast group membership.
   1810      1.232  christos  * Group must be a valid IP multicast address.
   1811      1.232  christos  */
   1812      1.232  christos static int
   1813      1.232  christos ip_add_membership(struct ip_moptions *imo, const struct sockopt *sopt)
   1814      1.232  christos {
   1815      1.255     ozaki 	struct ifnet *ifp = NULL;	// XXX: gcc [ppc]
   1816      1.232  christos 	struct in_addr ia;
   1817      1.273     ozaki 	int i, error, bound;
   1818      1.273     ozaki 	struct psref psref;
   1819      1.232  christos 
   1820      1.274     ozaki 	/* imo is protected by solock or referenced only by the caller */
   1821      1.274     ozaki 
   1822      1.273     ozaki 	bound = curlwp_bind();
   1823      1.232  christos 	if (sopt->sopt_size == sizeof(struct ip_mreq))
   1824      1.273     ozaki 		error = ip_get_membership(sopt, &ifp, &psref, &ia, true);
   1825      1.232  christos 	else
   1826      1.232  christos #ifdef INET6
   1827      1.273     ozaki 		error = ip6_get_membership(sopt, &ifp, &psref, &ia, sizeof(ia));
   1828      1.232  christos #else
   1829      1.273     ozaki 		error = EINVAL;
   1830      1.232  christos #endif
   1831      1.232  christos 
   1832      1.232  christos 	if (error)
   1833      1.273     ozaki 		goto out;
   1834      1.232  christos 
   1835      1.232  christos 	/*
   1836      1.232  christos 	 * See if we found an interface, and confirm that it
   1837      1.232  christos 	 * supports multicast.
   1838      1.232  christos 	 */
   1839      1.273     ozaki 	if (ifp == NULL || (ifp->if_flags & IFF_MULTICAST) == 0) {
   1840      1.273     ozaki 		error = EADDRNOTAVAIL;
   1841      1.273     ozaki 		goto out;
   1842      1.273     ozaki 	}
   1843      1.232  christos 
   1844      1.232  christos 	/*
   1845      1.232  christos 	 * See if the membership already exists or if all the
   1846      1.232  christos 	 * membership slots are full.
   1847      1.232  christos 	 */
   1848      1.232  christos 	for (i = 0; i < imo->imo_num_memberships; ++i) {
   1849      1.232  christos 		if (imo->imo_membership[i]->inm_ifp == ifp &&
   1850      1.232  christos 		    in_hosteq(imo->imo_membership[i]->inm_addr, ia))
   1851      1.232  christos 			break;
   1852      1.232  christos 	}
   1853      1.273     ozaki 	if (i < imo->imo_num_memberships) {
   1854      1.273     ozaki 		error = EADDRINUSE;
   1855      1.273     ozaki 		goto out;
   1856      1.273     ozaki 	}
   1857      1.232  christos 
   1858      1.273     ozaki 	if (i == IP_MAX_MEMBERSHIPS) {
   1859      1.273     ozaki 		error = ETOOMANYREFS;
   1860      1.273     ozaki 		goto out;
   1861      1.273     ozaki 	}
   1862      1.232  christos 
   1863      1.232  christos 	/*
   1864      1.232  christos 	 * Everything looks good; add a new record to the multicast
   1865      1.232  christos 	 * address list for the given interface.
   1866      1.232  christos 	 */
   1867      1.287     ozaki 	IFNET_LOCK(ifp);
   1868      1.287     ozaki 	imo->imo_membership[i] = in_addmulti(&ia, ifp);
   1869      1.287     ozaki 	IFNET_UNLOCK(ifp);
   1870      1.287     ozaki 	if (imo->imo_membership[i] == NULL) {
   1871      1.273     ozaki 		error = ENOBUFS;
   1872      1.273     ozaki 		goto out;
   1873      1.273     ozaki 	}
   1874      1.232  christos 
   1875      1.232  christos 	++imo->imo_num_memberships;
   1876      1.273     ozaki 	error = 0;
   1877      1.273     ozaki out:
   1878      1.273     ozaki 	if_put(ifp, &psref);
   1879      1.273     ozaki 	curlwp_bindx(bound);
   1880      1.273     ozaki 	return error;
   1881      1.232  christos }
   1882      1.232  christos 
   1883      1.232  christos /*
   1884      1.232  christos  * Drop a multicast group membership.
   1885      1.232  christos  * Group must be a valid IP multicast address.
   1886      1.232  christos  */
   1887      1.232  christos static int
   1888      1.232  christos ip_drop_membership(struct ip_moptions *imo, const struct sockopt *sopt)
   1889      1.232  christos {
   1890      1.254  christos 	struct in_addr ia = { .s_addr = 0 };	// XXX: gcc [ppc]
   1891      1.254  christos 	struct ifnet *ifp = NULL;		// XXX: gcc [ppc]
   1892      1.273     ozaki 	int i, error, bound;
   1893      1.273     ozaki 	struct psref psref;
   1894      1.232  christos 
   1895      1.273     ozaki 	/* imo is protected by solock or referenced only by the caller */
   1896      1.273     ozaki 
   1897      1.273     ozaki 	bound = curlwp_bind();
   1898      1.232  christos 	if (sopt->sopt_size == sizeof(struct ip_mreq))
   1899      1.273     ozaki 		error = ip_get_membership(sopt, &ifp, &psref, &ia, false);
   1900      1.291  christos 	else {
   1901      1.232  christos #ifdef INET6
   1902      1.273     ozaki 		error = ip6_get_membership(sopt, &ifp, &psref, &ia, sizeof(ia));
   1903      1.232  christos #else
   1904      1.273     ozaki 		error = EINVAL;
   1905      1.273     ozaki 		goto out;
   1906      1.232  christos #endif
   1907      1.291  christos 	}
   1908      1.232  christos 
   1909      1.232  christos 	if (error)
   1910      1.273     ozaki 		goto out;
   1911      1.232  christos 
   1912      1.232  christos 	/*
   1913      1.232  christos 	 * Find the membership in the membership array.
   1914      1.232  christos 	 */
   1915      1.232  christos 	for (i = 0; i < imo->imo_num_memberships; ++i) {
   1916      1.232  christos 		if ((ifp == NULL ||
   1917      1.232  christos 		     imo->imo_membership[i]->inm_ifp == ifp) &&
   1918      1.237     ozaki 		    in_hosteq(imo->imo_membership[i]->inm_addr, ia))
   1919      1.232  christos 			break;
   1920      1.232  christos 	}
   1921      1.273     ozaki 	if (i == imo->imo_num_memberships) {
   1922      1.273     ozaki 		error = EADDRNOTAVAIL;
   1923      1.273     ozaki 		goto out;
   1924      1.273     ozaki 	}
   1925      1.232  christos 
   1926      1.232  christos 	/*
   1927      1.232  christos 	 * Give up the multicast address record to which the
   1928      1.232  christos 	 * membership points.
   1929      1.232  christos 	 */
   1930      1.295  christos 	struct ifnet *inm_ifp = imo->imo_membership[i]->inm_ifp;
   1931      1.295  christos 	IFNET_LOCK(inm_ifp);
   1932      1.232  christos 	in_delmulti(imo->imo_membership[i]);
   1933      1.295  christos 	IFNET_UNLOCK(inm_ifp);
   1934      1.232  christos 
   1935      1.232  christos 	/*
   1936      1.232  christos 	 * Remove the gap in the membership array.
   1937      1.232  christos 	 */
   1938      1.232  christos 	for (++i; i < imo->imo_num_memberships; ++i)
   1939      1.232  christos 		imo->imo_membership[i-1] = imo->imo_membership[i];
   1940      1.232  christos 	--imo->imo_num_memberships;
   1941      1.273     ozaki 	error = 0;
   1942      1.273     ozaki out:
   1943      1.276     ozaki 	if_put(ifp, &psref);
   1944      1.273     ozaki 	curlwp_bindx(bound);
   1945      1.273     ozaki 	return error;
   1946      1.232  christos }
   1947      1.232  christos 
   1948       1.81    itojun /*
   1949        1.5   hpeyerl  * Set the IP multicast options in response to user setsockopt().
   1950        1.5   hpeyerl  */
   1951      1.231  christos int
   1952      1.231  christos ip_setmoptions(struct ip_moptions **pimo, const struct sockopt *sopt)
   1953        1.5   hpeyerl {
   1954      1.231  christos 	struct ip_moptions *imo = *pimo;
   1955        1.5   hpeyerl 	struct in_addr addr;
   1956       1.71  augustss 	struct ifnet *ifp;
   1957      1.232  christos 	int ifindex, error = 0;
   1958        1.5   hpeyerl 
   1959      1.274     ozaki 	/* The passed imo isn't NULL, it should be protected by solock */
   1960      1.274     ozaki 
   1961      1.226     rmind 	if (!imo) {
   1962        1.5   hpeyerl 		/*
   1963        1.5   hpeyerl 		 * No multicast option buffer attached to the pcb;
   1964        1.5   hpeyerl 		 * allocate one and initialize to default values.
   1965        1.5   hpeyerl 		 */
   1966      1.215     rmind 		imo = kmem_intr_alloc(sizeof(*imo), KM_NOSLEEP);
   1967        1.5   hpeyerl 		if (imo == NULL)
   1968      1.215     rmind 			return ENOBUFS;
   1969      1.199    plunky 
   1970      1.258     ozaki 		imo->imo_multicast_if_index = 0;
   1971       1.81    itojun 		imo->imo_multicast_addr.s_addr = INADDR_ANY;
   1972        1.5   hpeyerl 		imo->imo_multicast_ttl = IP_DEFAULT_MULTICAST_TTL;
   1973        1.5   hpeyerl 		imo->imo_multicast_loop = IP_DEFAULT_MULTICAST_LOOP;
   1974        1.5   hpeyerl 		imo->imo_num_memberships = 0;
   1975      1.231  christos 		*pimo = imo;
   1976        1.5   hpeyerl 	}
   1977        1.5   hpeyerl 
   1978      1.197    plunky 	switch (sopt->sopt_name) {
   1979      1.273     ozaki 	case IP_MULTICAST_IF: {
   1980      1.273     ozaki 		int s;
   1981        1.5   hpeyerl 		/*
   1982        1.5   hpeyerl 		 * Select the interface for outgoing multicast packets.
   1983        1.5   hpeyerl 		 */
   1984      1.197    plunky 		error = sockopt_get(sopt, &addr, sizeof(addr));
   1985      1.197    plunky 		if (error)
   1986        1.5   hpeyerl 			break;
   1987      1.197    plunky 
   1988        1.5   hpeyerl 		/*
   1989        1.5   hpeyerl 		 * INADDR_ANY is used to remove a previous selection.
   1990       1.11   mycroft 		 * When no interface is selected, a default one is
   1991        1.5   hpeyerl 		 * chosen every time a multicast packet is sent.
   1992        1.5   hpeyerl 		 */
   1993       1.31   mycroft 		if (in_nullhost(addr)) {
   1994      1.258     ozaki 			imo->imo_multicast_if_index = 0;
   1995        1.5   hpeyerl 			break;
   1996        1.5   hpeyerl 		}
   1997        1.5   hpeyerl 		/*
   1998        1.5   hpeyerl 		 * The selected interface is identified by its local
   1999        1.5   hpeyerl 		 * IP address.  Find the interface and confirm that
   2000       1.11   mycroft 		 * it supports multicasting.
   2001        1.5   hpeyerl 		 */
   2002      1.273     ozaki 		s = pserialize_read_enter();
   2003       1.81    itojun 		ifp = ip_multicast_if(&addr, &ifindex);
   2004        1.5   hpeyerl 		if (ifp == NULL || (ifp->if_flags & IFF_MULTICAST) == 0) {
   2005      1.273     ozaki 			pserialize_read_exit(s);
   2006        1.5   hpeyerl 			error = EADDRNOTAVAIL;
   2007        1.5   hpeyerl 			break;
   2008        1.5   hpeyerl 		}
   2009      1.258     ozaki 		imo->imo_multicast_if_index = ifp->if_index;
   2010      1.273     ozaki 		pserialize_read_exit(s);
   2011       1.81    itojun 		if (ifindex)
   2012       1.81    itojun 			imo->imo_multicast_addr = addr;
   2013       1.81    itojun 		else
   2014       1.81    itojun 			imo->imo_multicast_addr.s_addr = INADDR_ANY;
   2015        1.5   hpeyerl 		break;
   2016      1.273     ozaki 	    }
   2017        1.5   hpeyerl 
   2018        1.5   hpeyerl 	case IP_MULTICAST_TTL:
   2019        1.5   hpeyerl 		/*
   2020        1.5   hpeyerl 		 * Set the IP time-to-live for outgoing multicast packets.
   2021        1.5   hpeyerl 		 */
   2022      1.197    plunky 		error = ip_getoptval(sopt, &imo->imo_multicast_ttl, MAXTTL);
   2023        1.5   hpeyerl 		break;
   2024       1.11   mycroft 
   2025        1.5   hpeyerl 	case IP_MULTICAST_LOOP:
   2026        1.5   hpeyerl 		/*
   2027        1.5   hpeyerl 		 * Set the loopback flag for outgoing multicast packets.
   2028        1.5   hpeyerl 		 * Must be zero or one.
   2029        1.5   hpeyerl 		 */
   2030      1.197    plunky 		error = ip_getoptval(sopt, &imo->imo_multicast_loop, 1);
   2031        1.5   hpeyerl 		break;
   2032        1.5   hpeyerl 
   2033      1.232  christos 	case IP_ADD_MEMBERSHIP: /* IPV6_JOIN_GROUP */
   2034      1.232  christos 		error = ip_add_membership(imo, sopt);
   2035        1.5   hpeyerl 		break;
   2036        1.5   hpeyerl 
   2037      1.232  christos 	case IP_DROP_MEMBERSHIP: /* IPV6_LEAVE_GROUP */
   2038      1.232  christos 		error = ip_drop_membership(imo, sopt);
   2039        1.5   hpeyerl 		break;
   2040        1.5   hpeyerl 
   2041        1.5   hpeyerl 	default:
   2042        1.5   hpeyerl 		error = EOPNOTSUPP;
   2043        1.5   hpeyerl 		break;
   2044        1.5   hpeyerl 	}
   2045        1.5   hpeyerl 
   2046        1.5   hpeyerl 	/*
   2047        1.5   hpeyerl 	 * If all options have default values, no need to keep the mbuf.
   2048        1.5   hpeyerl 	 */
   2049      1.258     ozaki 	if (imo->imo_multicast_if_index == 0 &&
   2050        1.5   hpeyerl 	    imo->imo_multicast_ttl == IP_DEFAULT_MULTICAST_TTL &&
   2051        1.5   hpeyerl 	    imo->imo_multicast_loop == IP_DEFAULT_MULTICAST_LOOP &&
   2052        1.5   hpeyerl 	    imo->imo_num_memberships == 0) {
   2053      1.283      para 		kmem_intr_free(imo, sizeof(*imo));
   2054      1.231  christos 		*pimo = NULL;
   2055        1.5   hpeyerl 	}
   2056        1.5   hpeyerl 
   2057      1.215     rmind 	return error;
   2058        1.5   hpeyerl }
   2059        1.5   hpeyerl 
   2060        1.5   hpeyerl /*
   2061        1.5   hpeyerl  * Return the IP multicast options in response to user getsockopt().
   2062        1.5   hpeyerl  */
   2063      1.231  christos int
   2064      1.231  christos ip_getmoptions(struct ip_moptions *imo, struct sockopt *sopt)
   2065        1.5   hpeyerl {
   2066      1.197    plunky 	struct in_addr addr;
   2067      1.197    plunky 	uint8_t optval;
   2068      1.226     rmind 	int error = 0;
   2069        1.5   hpeyerl 
   2070      1.272     ozaki 	/* imo is protected by solock or refereced only by the caller */
   2071      1.272     ozaki 
   2072      1.197    plunky 	switch (sopt->sopt_name) {
   2073        1.5   hpeyerl 	case IP_MULTICAST_IF:
   2074      1.258     ozaki 		if (imo == NULL || imo->imo_multicast_if_index == 0)
   2075      1.197    plunky 			addr = zeroin_addr;
   2076       1.81    itojun 		else if (imo->imo_multicast_addr.s_addr) {
   2077       1.81    itojun 			/* return the value user has set */
   2078      1.197    plunky 			addr = imo->imo_multicast_addr;
   2079       1.81    itojun 		} else {
   2080      1.258     ozaki 			struct ifnet *ifp;
   2081      1.258     ozaki 			struct in_ifaddr *ia = NULL;
   2082      1.258     ozaki 			int s = pserialize_read_enter();
   2083      1.258     ozaki 
   2084      1.258     ozaki 			ifp = if_byindex(imo->imo_multicast_if_index);
   2085      1.258     ozaki 			if (ifp != NULL) {
   2086      1.259     ozaki 				ia = in_get_ia_from_ifp(ifp);
   2087      1.258     ozaki 			}
   2088      1.197    plunky 			addr = ia ? ia->ia_addr.sin_addr : zeroin_addr;
   2089      1.258     ozaki 			pserialize_read_exit(s);
   2090        1.5   hpeyerl 		}
   2091      1.197    plunky 		error = sockopt_set(sopt, &addr, sizeof(addr));
   2092      1.197    plunky 		break;
   2093        1.5   hpeyerl 
   2094        1.5   hpeyerl 	case IP_MULTICAST_TTL:
   2095      1.197    plunky 		optval = imo ? imo->imo_multicast_ttl
   2096      1.237     ozaki 		    : IP_DEFAULT_MULTICAST_TTL;
   2097      1.197    plunky 
   2098      1.197    plunky 		error = sockopt_set(sopt, &optval, sizeof(optval));
   2099      1.197    plunky 		break;
   2100        1.5   hpeyerl 
   2101        1.5   hpeyerl 	case IP_MULTICAST_LOOP:
   2102      1.197    plunky 		optval = imo ? imo->imo_multicast_loop
   2103      1.237     ozaki 		    : IP_DEFAULT_MULTICAST_LOOP;
   2104      1.197    plunky 
   2105      1.197    plunky 		error = sockopt_set(sopt, &optval, sizeof(optval));
   2106      1.197    plunky 		break;
   2107        1.5   hpeyerl 
   2108        1.5   hpeyerl 	default:
   2109      1.197    plunky 		error = EOPNOTSUPP;
   2110        1.5   hpeyerl 	}
   2111      1.197    plunky 
   2112      1.226     rmind 	return error;
   2113        1.5   hpeyerl }
   2114        1.5   hpeyerl 
   2115        1.5   hpeyerl /*
   2116        1.5   hpeyerl  * Discard the IP multicast options.
   2117        1.5   hpeyerl  */
   2118        1.5   hpeyerl void
   2119      1.140     perry ip_freemoptions(struct ip_moptions *imo)
   2120        1.5   hpeyerl {
   2121       1.71  augustss 	int i;
   2122        1.5   hpeyerl 
   2123      1.274     ozaki 	/* The owner of imo (inp) should be protected by solock */
   2124      1.274     ozaki 
   2125        1.5   hpeyerl 	if (imo != NULL) {
   2126      1.287     ozaki 		for (i = 0; i < imo->imo_num_memberships; ++i) {
   2127      1.287     ozaki 			struct in_multi *inm = imo->imo_membership[i];
   2128      1.287     ozaki 			struct ifnet *ifp = inm->inm_ifp;
   2129      1.287     ozaki 			IFNET_LOCK(ifp);
   2130      1.287     ozaki 			in_delmulti(inm);
   2131      1.287     ozaki 			/* ifp should not leave thanks to solock */
   2132      1.287     ozaki 			IFNET_UNLOCK(ifp);
   2133      1.287     ozaki 		}
   2134      1.287     ozaki 
   2135      1.283      para 		kmem_intr_free(imo, sizeof(*imo));
   2136        1.5   hpeyerl 	}
   2137        1.5   hpeyerl }
   2138        1.5   hpeyerl 
   2139        1.5   hpeyerl /*
   2140        1.5   hpeyerl  * Routine called from ip_output() to loop back a copy of an IP multicast
   2141        1.5   hpeyerl  * packet to the input queue of a specified interface.  Note that this
   2142        1.5   hpeyerl  * calls the output routine of the loopback "driver", but with an interface
   2143      1.137     peter  * pointer that might NOT be lo0ifp -- easier than replicating that code here.
   2144        1.5   hpeyerl  */
   2145       1.12   mycroft static void
   2146      1.180    dyoung ip_mloopback(struct ifnet *ifp, struct mbuf *m, const struct sockaddr_in *dst)
   2147        1.5   hpeyerl {
   2148       1.71  augustss 	struct ip *ip;
   2149        1.5   hpeyerl 	struct mbuf *copym;
   2150        1.5   hpeyerl 
   2151      1.183    dyoung 	copym = m_copypacket(m, M_DONTWAIT);
   2152      1.237     ozaki 	if (copym != NULL &&
   2153      1.237     ozaki 	    (copym->m_flags & M_EXT || copym->m_len < sizeof(struct ip)))
   2154       1.65    itojun 		copym = m_pullup(copym, sizeof(struct ip));
   2155      1.180    dyoung 	if (copym == NULL)
   2156      1.180    dyoung 		return;
   2157      1.180    dyoung 	/*
   2158      1.180    dyoung 	 * We don't bother to fragment if the IP length is greater
   2159      1.180    dyoung 	 * than the interface's MTU.  Can this possibly matter?
   2160      1.180    dyoung 	 */
   2161      1.180    dyoung 	ip = mtod(copym, struct ip *);
   2162       1.93    itojun 
   2163      1.180    dyoung 	if (copym->m_pkthdr.csum_flags & (M_CSUM_TCPv4|M_CSUM_UDPv4)) {
   2164      1.180    dyoung 		in_delayed_cksum(copym);
   2165      1.180    dyoung 		copym->m_pkthdr.csum_flags &=
   2166      1.180    dyoung 		    ~(M_CSUM_TCPv4|M_CSUM_UDPv4);
   2167      1.180    dyoung 	}
   2168       1.93    itojun 
   2169      1.180    dyoung 	ip->ip_sum = 0;
   2170      1.180    dyoung 	ip->ip_sum = in_cksum(copym, ip->ip_hl << 2);
   2171      1.285     ozaki 	KERNEL_LOCK_UNLESS_NET_MPSAFE();
   2172      1.180    dyoung 	(void)looutput(ifp, copym, sintocsa(dst), NULL);
   2173      1.285     ozaki 	KERNEL_UNLOCK_UNLESS_NET_MPSAFE();
   2174        1.5   hpeyerl }
   2175      1.261       roy 
   2176      1.261       roy /*
   2177      1.261       roy  * Ensure sending address is valid.
   2178      1.261       roy  * Returns 0 on success, -1 if an error should be sent back or 1
   2179      1.261       roy  * if the packet could be dropped without error (protocol dependent).
   2180      1.261       roy  */
   2181      1.261       roy static int
   2182      1.261       roy ip_ifaddrvalid(const struct in_ifaddr *ia)
   2183      1.261       roy {
   2184      1.261       roy 
   2185      1.261       roy 	if (ia->ia_addr.sin_addr.s_addr == INADDR_ANY)
   2186      1.261       roy 		return 0;
   2187      1.261       roy 
   2188      1.261       roy 	if (ia->ia4_flags & IN_IFF_DUPLICATED)
   2189      1.261       roy 		return -1;
   2190      1.261       roy 	else if (ia->ia4_flags & (IN_IFF_TENTATIVE | IN_IFF_DETACHED))
   2191      1.261       roy 		return 1;
   2192      1.261       roy 
   2193      1.261       roy 	return 0;
   2194      1.261       roy }
   2195