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ip6_output.c revision 1.228
      1  1.228    andvar /*	$NetBSD: ip6_output.c,v 1.228 2021/08/17 22:00:32 andvar Exp $	*/
      2   1.33    itojun /*	$KAME: ip6_output.c,v 1.172 2001/03/25 09:55:56 itojun Exp $	*/
      3    1.3   thorpej 
      4    1.2    itojun /*
      5    1.2    itojun  * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
      6    1.2    itojun  * All rights reserved.
      7   1.19    itojun  *
      8    1.2    itojun  * Redistribution and use in source and binary forms, with or without
      9    1.2    itojun  * modification, are permitted provided that the following conditions
     10    1.2    itojun  * are met:
     11    1.2    itojun  * 1. Redistributions of source code must retain the above copyright
     12    1.2    itojun  *    notice, this list of conditions and the following disclaimer.
     13    1.2    itojun  * 2. Redistributions in binary form must reproduce the above copyright
     14    1.2    itojun  *    notice, this list of conditions and the following disclaimer in the
     15    1.2    itojun  *    documentation and/or other materials provided with the distribution.
     16    1.2    itojun  * 3. Neither the name of the project nor the names of its contributors
     17    1.2    itojun  *    may be used to endorse or promote products derived from this software
     18    1.2    itojun  *    without specific prior written permission.
     19   1.19    itojun  *
     20    1.2    itojun  * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
     21    1.2    itojun  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     22    1.2    itojun  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     23    1.2    itojun  * ARE DISCLAIMED.  IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
     24    1.2    itojun  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     25    1.2    itojun  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     26    1.2    itojun  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     27    1.2    itojun  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     28    1.2    itojun  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     29    1.2    itojun  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     30    1.2    itojun  * SUCH DAMAGE.
     31    1.2    itojun  */
     32    1.2    itojun 
     33    1.2    itojun /*
     34    1.2    itojun  * Copyright (c) 1982, 1986, 1988, 1990, 1993
     35    1.2    itojun  *	The Regents of the University of California.  All rights reserved.
     36    1.2    itojun  *
     37    1.2    itojun  * Redistribution and use in source and binary forms, with or without
     38    1.2    itojun  * modification, are permitted provided that the following conditions
     39    1.2    itojun  * are met:
     40    1.2    itojun  * 1. Redistributions of source code must retain the above copyright
     41    1.2    itojun  *    notice, this list of conditions and the following disclaimer.
     42    1.2    itojun  * 2. Redistributions in binary form must reproduce the above copyright
     43    1.2    itojun  *    notice, this list of conditions and the following disclaimer in the
     44    1.2    itojun  *    documentation and/or other materials provided with the distribution.
     45   1.62       agc  * 3. Neither the name of the University nor the names of its contributors
     46    1.2    itojun  *    may be used to endorse or promote products derived from this software
     47    1.2    itojun  *    without specific prior written permission.
     48    1.2    itojun  *
     49    1.2    itojun  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     50    1.2    itojun  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     51    1.2    itojun  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     52    1.2    itojun  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     53    1.2    itojun  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     54    1.2    itojun  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     55    1.2    itojun  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     56    1.2    itojun  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     57    1.2    itojun  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     58    1.2    itojun  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     59    1.2    itojun  * SUCH DAMAGE.
     60    1.2    itojun  *
     61    1.2    itojun  *	@(#)ip_output.c	8.3 (Berkeley) 1/21/94
     62    1.2    itojun  */
     63   1.41     lukem 
     64   1.41     lukem #include <sys/cdefs.h>
     65  1.228    andvar __KERNEL_RCSID(0, "$NetBSD: ip6_output.c,v 1.228 2021/08/17 22:00:32 andvar Exp $");
     66    1.2    itojun 
     67  1.166     pooka #ifdef _KERNEL_OPT
     68    1.2    itojun #include "opt_inet.h"
     69   1.97    rpaulo #include "opt_inet6.h"
     70    1.4   thorpej #include "opt_ipsec.h"
     71  1.166     pooka #endif
     72    1.2    itojun 
     73    1.2    itojun #include <sys/param.h>
     74    1.2    itojun #include <sys/malloc.h>
     75    1.2    itojun #include <sys/mbuf.h>
     76    1.2    itojun #include <sys/errno.h>
     77    1.2    itojun #include <sys/socket.h>
     78    1.2    itojun #include <sys/socketvar.h>
     79  1.174       roy #include <sys/syslog.h>
     80    1.2    itojun #include <sys/systm.h>
     81    1.2    itojun #include <sys/proc.h>
     82   1.98      elad #include <sys/kauth.h>
     83    1.2    itojun 
     84    1.2    itojun #include <net/if.h>
     85    1.2    itojun #include <net/route.h>
     86   1.15   darrenr #include <net/pfil.h>
     87    1.2    itojun 
     88    1.2    itojun #include <netinet/in.h>
     89    1.2    itojun #include <netinet/in_var.h>
     90   1.14    itojun #include <netinet/ip6.h>
     91  1.159  christos #include <netinet/ip_var.h>
     92   1.14    itojun #include <netinet/icmp6.h>
     93   1.90      yamt #include <netinet/in_offload.h>
     94  1.149  christos #include <netinet/portalgo.h>
     95  1.105      yamt #include <netinet6/in6_offload.h>
     96   1.10    itojun #include <netinet6/ip6_var.h>
     97  1.128   thorpej #include <netinet6/ip6_private.h>
     98    1.2    itojun #include <netinet6/in6_pcb.h>
     99    1.2    itojun #include <netinet6/nd6.h>
    100   1.78    itojun #include <netinet6/ip6protosw.h>
    101   1.94    rpaulo #include <netinet6/scope6_var.h>
    102    1.2    itojun 
    103  1.153  christos #ifdef IPSEC
    104  1.114  degroote #include <netipsec/ipsec.h>
    105  1.114  degroote #include <netipsec/ipsec6.h>
    106  1.114  degroote #include <netipsec/key.h>
    107  1.114  degroote #endif
    108  1.114  degroote 
    109  1.154     rmind extern pfil_head_t *inet6_pfil_hook;	/* XXX */
    110   1.27   thorpej 
    111    1.2    itojun struct ip6_exthdrs {
    112    1.2    itojun 	struct mbuf *ip6e_ip6;
    113    1.2    itojun 	struct mbuf *ip6e_hbh;
    114    1.2    itojun 	struct mbuf *ip6e_dest1;
    115    1.2    itojun 	struct mbuf *ip6e_rthdr;
    116    1.2    itojun 	struct mbuf *ip6e_dest2;
    117    1.2    itojun };
    118    1.2    itojun 
    119  1.122    dyoung static int ip6_pcbopt(int, u_char *, int, struct ip6_pktopts **,
    120  1.138      elad 	kauth_cred_t, int);
    121  1.130    plunky static int ip6_getpcbopt(struct ip6_pktopts *, int, struct sockopt *);
    122  1.138      elad static int ip6_setpktopt(int, u_char *, int, struct ip6_pktopts *, kauth_cred_t,
    123  1.122    dyoung 	int, int, int);
    124  1.160  christos static int ip6_setmoptions(const struct sockopt *, struct in6pcb *);
    125  1.160  christos static int ip6_getmoptions(struct sockopt *, struct in6pcb *);
    126  1.122    dyoung static int ip6_copyexthdr(struct mbuf **, void *, int);
    127  1.122    dyoung static int ip6_insertfraghdr(struct mbuf *, struct mbuf *, int,
    128  1.122    dyoung 	struct ip6_frag **);
    129  1.122    dyoung static int ip6_insert_jumboopt(struct ip6_exthdrs *, u_int32_t);
    130  1.122    dyoung static int ip6_splithdr(struct mbuf *, struct ip6_exthdrs *);
    131  1.176     ozaki static int ip6_getpmtu(struct rtentry *, struct ifnet *, u_long *, int *);
    132  1.122    dyoung static int copypktopts(struct ip6_pktopts *, struct ip6_pktopts *, int);
    133  1.194       roy static int ip6_ifaddrvalid(const struct in6_addr *, const struct in6_addr *);
    134  1.177     ozaki static int ip6_handle_rthdr(struct ip6_rthdr *, struct ip6_hdr *);
    135   1.97    rpaulo 
    136   1.97    rpaulo #ifdef RFC2292
    137  1.130    plunky static int ip6_pcbopts(struct ip6_pktopts **, struct socket *, struct sockopt *);
    138   1.97    rpaulo #endif
    139    1.2    itojun 
    140  1.177     ozaki static int
    141  1.177     ozaki ip6_handle_rthdr(struct ip6_rthdr *rh, struct ip6_hdr *ip6)
    142  1.177     ozaki {
    143  1.177     ozaki 	int error = 0;
    144  1.177     ozaki 
    145  1.177     ozaki 	switch (rh->ip6r_type) {
    146  1.177     ozaki 	case IPV6_RTHDR_TYPE_0:
    147  1.205      maxv 		/* Dropped, RFC5095. */
    148  1.177     ozaki 	default:	/* is it possible? */
    149  1.197      maxv 		error = EINVAL;
    150  1.177     ozaki 	}
    151  1.177     ozaki 
    152  1.177     ozaki 	return error;
    153  1.177     ozaki }
    154  1.177     ozaki 
    155    1.2    itojun /*
    156  1.183     ozaki  * Send an IP packet to a host.
    157  1.183     ozaki  */
    158  1.183     ozaki int
    159  1.183     ozaki ip6_if_output(struct ifnet * const ifp, struct ifnet * const origifp,
    160  1.197      maxv     struct mbuf * const m, const struct sockaddr_in6 * const dst,
    161  1.197      maxv     const struct rtentry *rt)
    162  1.183     ozaki {
    163  1.183     ozaki 	int error = 0;
    164  1.183     ozaki 
    165  1.183     ozaki 	if (rt != NULL) {
    166  1.183     ozaki 		error = rt_check_reject_route(rt, ifp);
    167  1.183     ozaki 		if (error != 0) {
    168  1.225     ozaki 			IP6_STATINC(IP6_STAT_RTREJECT);
    169  1.183     ozaki 			m_freem(m);
    170  1.183     ozaki 			return error;
    171  1.183     ozaki 		}
    172  1.183     ozaki 	}
    173  1.183     ozaki 
    174  1.183     ozaki 	if ((ifp->if_flags & IFF_LOOPBACK) != 0)
    175  1.183     ozaki 		error = if_output_lock(ifp, origifp, m, sin6tocsa(dst), rt);
    176  1.183     ozaki 	else
    177  1.183     ozaki 		error = if_output_lock(ifp, ifp, m, sin6tocsa(dst), rt);
    178  1.183     ozaki 	return error;
    179  1.183     ozaki }
    180  1.183     ozaki 
    181  1.183     ozaki /*
    182    1.2    itojun  * IP6 output. The packet in mbuf chain m contains a skeletal IP6
    183    1.2    itojun  * header (with pri, len, nxt, hlim, src, dst).
    184   1.52    itojun  *
    185  1.197      maxv  * This function may modify ver and hlim only. The mbuf chain containing the
    186  1.197      maxv  * packet will be freed. The mbuf opt, if present, will not be freed.
    187  1.197      maxv  *
    188  1.197      maxv  * Type of "mtu": rt_rmx.rmx_mtu is u_long, ifnet.ifr_mtu is int, and
    189  1.197      maxv  * nd_ifinfo.linkmtu is u_int32_t. So we use u_long to hold largest one,
    190   1.52    itojun  * which is rt_rmx.rmx_mtu.
    191    1.2    itojun  */
    192    1.2    itojun int
    193  1.103  christos ip6_output(
    194  1.103  christos     struct mbuf *m0,
    195  1.103  christos     struct ip6_pktopts *opt,
    196  1.118    dyoung     struct route *ro,
    197  1.103  christos     int flags,
    198  1.103  christos     struct ip6_moptions *im6o,
    199  1.191     ozaki     struct in6pcb *in6p,
    200  1.103  christos     struct ifnet **ifpp		/* XXX: just for statistics */
    201  1.103  christos )
    202    1.2    itojun {
    203    1.2    itojun 	struct ip6_hdr *ip6, *mhip6;
    204  1.171  christos 	struct ifnet *ifp = NULL, *origifp = NULL;
    205    1.2    itojun 	struct mbuf *m = m0;
    206  1.197      maxv 	int tlen, len, off;
    207  1.116   thorpej 	bool tso;
    208  1.118    dyoung 	struct route ip6route;
    209  1.176     ozaki 	struct rtentry *rt = NULL, *rt_pmtu;
    210  1.164     ozaki 	const struct sockaddr_in6 *dst;
    211  1.118    dyoung 	struct sockaddr_in6 src_sa, dst_sa;
    212    1.2    itojun 	int error = 0;
    213   1.94    rpaulo 	struct in6_ifaddr *ia = NULL;
    214    1.2    itojun 	u_long mtu;
    215   1.78    itojun 	int alwaysfrag, dontfrag;
    216    1.2    itojun 	u_int32_t optlen = 0, plen = 0, unfragpartlen = 0;
    217    1.2    itojun 	struct ip6_exthdrs exthdrs;
    218   1.94    rpaulo 	struct in6_addr finaldst, src0, dst0;
    219   1.94    rpaulo 	u_int32_t zone;
    220  1.118    dyoung 	struct route *ro_pmtu = NULL;
    221    1.2    itojun 	int hdrsplit = 0;
    222    1.2    itojun 	int needipsec = 0;
    223  1.153  christos #ifdef IPSEC
    224  1.114  degroote 	struct secpolicy *sp = NULL;
    225  1.114  degroote #endif
    226  1.170     ozaki 	struct psref psref, psref_ia;
    227  1.170     ozaki 	int bound = curlwp_bind();
    228  1.170     ozaki 	bool release_psref_ia = false;
    229  1.114  degroote 
    230  1.197      maxv #ifdef DIAGNOSTIC
    231  1.100      tron 	if ((m->m_flags & M_PKTHDR) == 0)
    232  1.100      tron 		panic("ip6_output: no HDR");
    233  1.100      tron 	if ((m->m_pkthdr.csum_flags &
    234  1.100      tron 	    (M_CSUM_TCPv4|M_CSUM_UDPv4|M_CSUM_TSOv4)) != 0) {
    235  1.100      tron 		panic("ip6_output: IPv4 checksum offload flags: %d",
    236  1.100      tron 		    m->m_pkthdr.csum_flags);
    237  1.100      tron 	}
    238  1.100      tron 	if ((m->m_pkthdr.csum_flags & (M_CSUM_TCPv6|M_CSUM_UDPv6)) ==
    239  1.100      tron 	    (M_CSUM_TCPv6|M_CSUM_UDPv6)) {
    240  1.100      tron 		panic("ip6_output: conflicting checksum offload flags: %d",
    241  1.100      tron 		    m->m_pkthdr.csum_flags);
    242  1.100      tron 	}
    243  1.100      tron #endif
    244  1.100      tron 
    245  1.211      maxv 	M_CSUM_DATA_IPv6_SET(m->m_pkthdr.csum_data, sizeof(struct ip6_hdr));
    246   1.89      yamt 
    247   1.22    itojun #define MAKE_EXTHDR(hp, mp)						\
    248   1.22    itojun     do {								\
    249    1.2    itojun 	if (hp) {							\
    250    1.2    itojun 		struct ip6_ext *eh = (struct ip6_ext *)(hp);		\
    251  1.117  christos 		error = ip6_copyexthdr((mp), (void *)(hp), 		\
    252   1.49    itojun 		    ((eh)->ip6e_len + 1) << 3);				\
    253    1.2    itojun 		if (error)						\
    254    1.2    itojun 			goto freehdrs;					\
    255    1.2    itojun 	}								\
    256   1.60     perry     } while (/*CONSTCOND*/ 0)
    257   1.51    itojun 
    258  1.136    cegger 	memset(&exthdrs, 0, sizeof(exthdrs));
    259    1.2    itojun 	if (opt) {
    260    1.2    itojun 		/* Hop-by-Hop options header */
    261    1.2    itojun 		MAKE_EXTHDR(opt->ip6po_hbh, &exthdrs.ip6e_hbh);
    262  1.197      maxv 		/* Destination options header (1st part) */
    263    1.2    itojun 		MAKE_EXTHDR(opt->ip6po_dest1, &exthdrs.ip6e_dest1);
    264    1.2    itojun 		/* Routing header */
    265    1.2    itojun 		MAKE_EXTHDR(opt->ip6po_rthdr, &exthdrs.ip6e_rthdr);
    266  1.197      maxv 		/* Destination options header (2nd part) */
    267    1.2    itojun 		MAKE_EXTHDR(opt->ip6po_dest2, &exthdrs.ip6e_dest2);
    268    1.2    itojun 	}
    269    1.2    itojun 
    270    1.2    itojun 	/*
    271    1.2    itojun 	 * Calculate the total length of the extension header chain.
    272    1.2    itojun 	 * Keep the length of the unfragmentable part for fragmentation.
    273    1.2    itojun 	 */
    274    1.9    itojun 	optlen = 0;
    275  1.197      maxv 	if (exthdrs.ip6e_hbh)
    276  1.197      maxv 		optlen += exthdrs.ip6e_hbh->m_len;
    277  1.197      maxv 	if (exthdrs.ip6e_dest1)
    278  1.197      maxv 		optlen += exthdrs.ip6e_dest1->m_len;
    279  1.197      maxv 	if (exthdrs.ip6e_rthdr)
    280  1.197      maxv 		optlen += exthdrs.ip6e_rthdr->m_len;
    281    1.9    itojun 	unfragpartlen = optlen + sizeof(struct ip6_hdr);
    282    1.2    itojun 	/* NOTE: we don't add AH/ESP length here. do that later. */
    283  1.197      maxv 	if (exthdrs.ip6e_dest2)
    284  1.197      maxv 		optlen += exthdrs.ip6e_dest2->m_len;
    285    1.2    itojun 
    286  1.153  christos #ifdef IPSEC
    287  1.157  christos 	if (ipsec_used) {
    288  1.157  christos 		/* Check the security policy (SP) for the packet */
    289  1.191     ozaki 		sp = ipsec6_check_policy(m, in6p, flags, &needipsec, &error);
    290  1.157  christos 		if (error != 0) {
    291  1.157  christos 			/*
    292  1.157  christos 			 * Hack: -EINVAL is used to signal that a packet
    293  1.157  christos 			 * should be silently discarded.  This is typically
    294  1.157  christos 			 * because we asked key management for an SA and
    295  1.157  christos 			 * it was delayed (e.g. kicked up to IKE).
    296  1.157  christos 			 */
    297  1.197      maxv 			if (error == -EINVAL)
    298  1.157  christos 				error = 0;
    299  1.224     ozaki 			IP6_STATINC(IP6_STAT_IPSECDROP_OUT);
    300  1.157  christos 			goto freehdrs;
    301  1.157  christos 		}
    302  1.157  christos 	}
    303  1.197      maxv #endif
    304  1.114  degroote 
    305  1.114  degroote 	if (needipsec &&
    306  1.114  degroote 	    (m->m_pkthdr.csum_flags & (M_CSUM_UDPv6|M_CSUM_TCPv6)) != 0) {
    307  1.212      maxv 		in6_undefer_cksum_tcpudp(m);
    308  1.114  degroote 		m->m_pkthdr.csum_flags &= ~(M_CSUM_UDPv6|M_CSUM_TCPv6);
    309  1.114  degroote 	}
    310  1.114  degroote 
    311    1.2    itojun 	/*
    312    1.2    itojun 	 * If we need IPsec, or there is at least one extension header,
    313    1.2    itojun 	 * separate IP6 header from the payload.
    314    1.2    itojun 	 */
    315    1.2    itojun 	if ((needipsec || optlen) && !hdrsplit) {
    316    1.2    itojun 		if ((error = ip6_splithdr(m, &exthdrs)) != 0) {
    317  1.225     ozaki 			IP6_STATINC(IP6_STAT_ODROPPED);
    318    1.2    itojun 			m = NULL;
    319    1.2    itojun 			goto freehdrs;
    320    1.2    itojun 		}
    321    1.2    itojun 		m = exthdrs.ip6e_ip6;
    322    1.2    itojun 		hdrsplit++;
    323    1.2    itojun 	}
    324    1.2    itojun 
    325    1.2    itojun 	/* adjust pointer */
    326    1.2    itojun 	ip6 = mtod(m, struct ip6_hdr *);
    327    1.2    itojun 
    328    1.2    itojun 	/* adjust mbuf packet header length */
    329    1.2    itojun 	m->m_pkthdr.len += optlen;
    330    1.2    itojun 	plen = m->m_pkthdr.len - sizeof(*ip6);
    331    1.2    itojun 
    332    1.2    itojun 	/* If this is a jumbo payload, insert a jumbo payload option. */
    333    1.2    itojun 	if (plen > IPV6_MAXPACKET) {
    334    1.2    itojun 		if (!hdrsplit) {
    335    1.2    itojun 			if ((error = ip6_splithdr(m, &exthdrs)) != 0) {
    336  1.225     ozaki 				IP6_STATINC(IP6_STAT_ODROPPED);
    337    1.2    itojun 				m = NULL;
    338    1.2    itojun 				goto freehdrs;
    339    1.2    itojun 			}
    340    1.2    itojun 			m = exthdrs.ip6e_ip6;
    341    1.2    itojun 			hdrsplit++;
    342    1.2    itojun 		}
    343    1.2    itojun 		/* adjust pointer */
    344    1.2    itojun 		ip6 = mtod(m, struct ip6_hdr *);
    345  1.225     ozaki 		if ((error = ip6_insert_jumboopt(&exthdrs, plen)) != 0) {
    346  1.225     ozaki 			IP6_STATINC(IP6_STAT_ODROPPED);
    347    1.2    itojun 			goto freehdrs;
    348  1.225     ozaki 		}
    349   1.89      yamt 		optlen += 8; /* XXX JUMBOOPTLEN */
    350    1.2    itojun 		ip6->ip6_plen = 0;
    351    1.2    itojun 	} else
    352    1.2    itojun 		ip6->ip6_plen = htons(plen);
    353    1.2    itojun 
    354    1.2    itojun 	/*
    355    1.2    itojun 	 * Concatenate headers and fill in next header fields.
    356    1.2    itojun 	 * Here we have, on "m"
    357    1.9    itojun 	 *	IPv6 payload
    358    1.2    itojun 	 * and we insert headers accordingly.  Finally, we should be getting:
    359    1.2    itojun 	 *	IPv6 hbh dest1 rthdr ah* [esp* dest2 payload]
    360    1.9    itojun 	 *
    361    1.9    itojun 	 * during the header composing process, "m" points to IPv6 header.
    362    1.9    itojun 	 * "mprev" points to an extension header prior to esp.
    363    1.2    itojun 	 */
    364    1.2    itojun 	{
    365    1.2    itojun 		u_char *nexthdrp = &ip6->ip6_nxt;
    366    1.2    itojun 		struct mbuf *mprev = m;
    367    1.2    itojun 
    368    1.2    itojun 		/*
    369    1.2    itojun 		 * we treat dest2 specially.  this makes IPsec processing
    370   1.78    itojun 		 * much easier.  the goal here is to make mprev point the
    371   1.78    itojun 		 * mbuf prior to dest2.
    372    1.9    itojun 		 *
    373    1.9    itojun 		 * result: IPv6 dest2 payload
    374    1.9    itojun 		 * m and mprev will point to IPv6 header.
    375    1.2    itojun 		 */
    376    1.2    itojun 		if (exthdrs.ip6e_dest2) {
    377    1.2    itojun 			if (!hdrsplit)
    378    1.2    itojun 				panic("assumption failed: hdr not split");
    379    1.9    itojun 			exthdrs.ip6e_dest2->m_next = m->m_next;
    380    1.9    itojun 			m->m_next = exthdrs.ip6e_dest2;
    381    1.2    itojun 			*mtod(exthdrs.ip6e_dest2, u_char *) = ip6->ip6_nxt;
    382    1.2    itojun 			ip6->ip6_nxt = IPPROTO_DSTOPTS;
    383    1.2    itojun 		}
    384    1.2    itojun 
    385   1.22    itojun #define MAKE_CHAIN(m, mp, p, i)\
    386   1.22    itojun     do {\
    387    1.2    itojun 	if (m) {\
    388    1.2    itojun 		if (!hdrsplit) \
    389    1.2    itojun 			panic("assumption failed: hdr not split"); \
    390    1.2    itojun 		*mtod((m), u_char *) = *(p);\
    391    1.2    itojun 		*(p) = (i);\
    392    1.2    itojun 		p = mtod((m), u_char *);\
    393    1.2    itojun 		(m)->m_next = (mp)->m_next;\
    394    1.2    itojun 		(mp)->m_next = (m);\
    395    1.2    itojun 		(mp) = (m);\
    396    1.2    itojun 	}\
    397   1.60     perry     } while (/*CONSTCOND*/ 0)
    398    1.9    itojun 		/*
    399    1.9    itojun 		 * result: IPv6 hbh dest1 rthdr dest2 payload
    400    1.9    itojun 		 * m will point to IPv6 header.  mprev will point to the
    401    1.9    itojun 		 * extension header prior to dest2 (rthdr in the above case).
    402    1.9    itojun 		 */
    403   1.49    itojun 		MAKE_CHAIN(exthdrs.ip6e_hbh, mprev, nexthdrp, IPPROTO_HOPOPTS);
    404   1.49    itojun 		MAKE_CHAIN(exthdrs.ip6e_dest1, mprev, nexthdrp,
    405   1.49    itojun 		    IPPROTO_DSTOPTS);
    406   1.49    itojun 		MAKE_CHAIN(exthdrs.ip6e_rthdr, mprev, nexthdrp,
    407   1.49    itojun 		    IPPROTO_ROUTING);
    408    1.2    itojun 
    409  1.211      maxv 		M_CSUM_DATA_IPv6_SET(m->m_pkthdr.csum_data,
    410   1.89      yamt 		    sizeof(struct ip6_hdr) + optlen);
    411    1.2    itojun 	}
    412    1.2    itojun 
    413  1.178     ozaki 	/* Need to save for pmtu */
    414  1.178     ozaki 	finaldst = ip6->ip6_dst;
    415  1.178     ozaki 
    416    1.2    itojun 	/*
    417    1.2    itojun 	 * If there is a routing header, replace destination address field
    418    1.2    itojun 	 * with the first hop of the routing header.
    419    1.2    itojun 	 */
    420    1.2    itojun 	if (exthdrs.ip6e_rthdr) {
    421   1.49    itojun 		struct ip6_rthdr *rh;
    422    1.2    itojun 
    423  1.197      maxv 		rh = mtod(exthdrs.ip6e_rthdr, struct ip6_rthdr *);
    424   1.94    rpaulo 
    425  1.177     ozaki 		error = ip6_handle_rthdr(rh, ip6);
    426  1.225     ozaki 		if (error != 0) {
    427  1.225     ozaki 			IP6_STATINC(IP6_STAT_ODROPPED);
    428  1.177     ozaki 			goto bad;
    429  1.225     ozaki 		}
    430    1.2    itojun 	}
    431    1.2    itojun 
    432    1.2    itojun 	/* Source address validation */
    433    1.2    itojun 	if (IN6_IS_ADDR_UNSPECIFIED(&ip6->ip6_src) &&
    434   1.54    itojun 	    (flags & IPV6_UNSPECSRC) == 0) {
    435    1.2    itojun 		error = EOPNOTSUPP;
    436  1.128   thorpej 		IP6_STATINC(IP6_STAT_BADSCOPE);
    437    1.2    itojun 		goto bad;
    438    1.2    itojun 	}
    439    1.2    itojun 	if (IN6_IS_ADDR_MULTICAST(&ip6->ip6_src)) {
    440    1.2    itojun 		error = EOPNOTSUPP;
    441  1.128   thorpej 		IP6_STATINC(IP6_STAT_BADSCOPE);
    442    1.2    itojun 		goto bad;
    443    1.2    itojun 	}
    444    1.2    itojun 
    445  1.128   thorpej 	IP6_STATINC(IP6_STAT_LOCALOUT);
    446    1.2    itojun 
    447    1.2    itojun 	/*
    448    1.2    itojun 	 * Route packet.
    449    1.2    itojun 	 */
    450   1.78    itojun 	/* initialize cached route */
    451  1.113    dyoung 	if (ro == NULL) {
    452  1.172     ozaki 		memset(&ip6route, 0, sizeof(ip6route));
    453    1.2    itojun 		ro = &ip6route;
    454    1.2    itojun 	}
    455    1.2    itojun 	ro_pmtu = ro;
    456    1.2    itojun 	if (opt && opt->ip6po_rthdr)
    457    1.2    itojun 		ro = &opt->ip6po_route;
    458   1.94    rpaulo 
    459  1.197      maxv 	/*
    460   1.94    rpaulo 	 * if specified, try to fill in the traffic class field.
    461   1.94    rpaulo 	 * do not override if a non-zero value is already set.
    462   1.94    rpaulo 	 * we check the diffserv field and the ecn field separately.
    463   1.94    rpaulo 	 */
    464   1.94    rpaulo 	if (opt && opt->ip6po_tclass >= 0) {
    465   1.94    rpaulo 		int mask = 0;
    466   1.94    rpaulo 
    467   1.94    rpaulo 		if ((ip6->ip6_flow & htonl(0xfc << 20)) == 0)
    468   1.94    rpaulo 			mask |= 0xfc;
    469   1.94    rpaulo 		if ((ip6->ip6_flow & htonl(0x03 << 20)) == 0)
    470   1.94    rpaulo 			mask |= 0x03;
    471   1.94    rpaulo 		if (mask != 0)
    472   1.94    rpaulo 			ip6->ip6_flow |= htonl((opt->ip6po_tclass & mask) << 20);
    473    1.2    itojun 	}
    474   1.94    rpaulo 
    475   1.94    rpaulo 	/* fill in or override the hop limit field, if necessary. */
    476   1.94    rpaulo 	if (opt && opt->ip6po_hlim != -1)
    477   1.94    rpaulo 		ip6->ip6_hlim = opt->ip6po_hlim & 0xff;
    478   1.94    rpaulo 	else if (IN6_IS_ADDR_MULTICAST(&ip6->ip6_dst)) {
    479   1.94    rpaulo 		if (im6o != NULL)
    480   1.94    rpaulo 			ip6->ip6_hlim = im6o->im6o_multicast_hlim;
    481   1.94    rpaulo 		else
    482   1.94    rpaulo 			ip6->ip6_hlim = ip6_defmcasthlim;
    483    1.2    itojun 	}
    484   1.94    rpaulo 
    485  1.153  christos #ifdef IPSEC
    486  1.114  degroote 	if (needipsec) {
    487  1.157  christos 		int s = splsoftnet();
    488  1.221  knakahar 		error = ipsec6_process_packet(m, sp->req, flags);
    489  1.197      maxv 		splx(s);
    490  1.114  degroote 
    491  1.114  degroote 		/*
    492  1.114  degroote 		 * Preserve KAME behaviour: ENOENT can be returned
    493  1.114  degroote 		 * when an SA acquire is in progress.  Don't propagate
    494  1.114  degroote 		 * this to user-level; it confuses applications.
    495  1.114  degroote 		 * XXX this will go away when the SADB is redone.
    496  1.114  degroote 		 */
    497  1.114  degroote 		if (error == ENOENT)
    498  1.114  degroote 			error = 0;
    499  1.197      maxv 
    500  1.114  degroote 		goto done;
    501  1.118    dyoung 	}
    502  1.197      maxv #endif
    503  1.114  degroote 
    504   1.94    rpaulo 	/* adjust pointer */
    505   1.94    rpaulo 	ip6 = mtod(m, struct ip6_hdr *);
    506    1.2    itojun 
    507  1.123    dyoung 	sockaddr_in6_init(&dst_sa, &ip6->ip6_dst, 0, 0, 0);
    508  1.178     ozaki 
    509  1.178     ozaki 	/* We do not need a route for multicast */
    510  1.178     ozaki 	if (IN6_IS_ADDR_MULTICAST(&ip6->ip6_dst)) {
    511  1.178     ozaki 		struct in6_pktinfo *pi = NULL;
    512  1.178     ozaki 
    513  1.178     ozaki 		/*
    514  1.178     ozaki 		 * If the outgoing interface for the address is specified by
    515  1.178     ozaki 		 * the caller, use it.
    516  1.178     ozaki 		 */
    517  1.178     ozaki 		if (opt && (pi = opt->ip6po_pktinfo) != NULL) {
    518  1.178     ozaki 			/* XXX boundary check is assumed to be already done. */
    519  1.178     ozaki 			ifp = if_get_byindex(pi->ipi6_ifindex, &psref);
    520  1.178     ozaki 		} else if (im6o != NULL) {
    521  1.178     ozaki 			ifp = if_get_byindex(im6o->im6o_multicast_if_index,
    522  1.178     ozaki 			    &psref);
    523  1.178     ozaki 		}
    524  1.178     ozaki 	}
    525  1.178     ozaki 
    526  1.178     ozaki 	if (ifp == NULL) {
    527  1.178     ozaki 		error = in6_selectroute(&dst_sa, opt, &ro, &rt, true);
    528  1.178     ozaki 		if (error != 0)
    529  1.178     ozaki 			goto bad;
    530  1.178     ozaki 		ifp = if_get_byindex(rt->rt_ifp->if_index, &psref);
    531   1.94    rpaulo 	}
    532  1.178     ozaki 
    533   1.94    rpaulo 	if (rt == NULL) {
    534   1.94    rpaulo 		/*
    535   1.94    rpaulo 		 * If in6_selectroute() does not return a route entry,
    536   1.94    rpaulo 		 * dst may not have been updated.
    537   1.94    rpaulo 		 */
    538  1.145     rmind 		error = rtcache_setdst(ro, sin6tosa(&dst_sa));
    539  1.145     rmind 		if (error) {
    540  1.225     ozaki 			IP6_STATINC(IP6_STAT_ODROPPED);
    541  1.145     rmind 			goto bad;
    542  1.145     rmind 		}
    543   1.94    rpaulo 	}
    544    1.2    itojun 
    545   1.94    rpaulo 	/*
    546   1.94    rpaulo 	 * then rt (for unicast) and ifp must be non-NULL valid values.
    547   1.94    rpaulo 	 */
    548   1.94    rpaulo 	if ((flags & IPV6_FORWARDING) == 0) {
    549   1.94    rpaulo 		/* XXX: the FORWARDING flag can be set for mrouting. */
    550    1.9    itojun 		in6_ifstat_inc(ifp, ifs6_out_request);
    551   1.94    rpaulo 	}
    552   1.94    rpaulo 	if (rt != NULL) {
    553   1.94    rpaulo 		ia = (struct in6_ifaddr *)(rt->rt_ifa);
    554   1.94    rpaulo 		rt->rt_use++;
    555   1.94    rpaulo 	}
    556    1.9    itojun 
    557   1.94    rpaulo 	/*
    558   1.94    rpaulo 	 * The outgoing interface must be in the zone of source and
    559   1.94    rpaulo 	 * destination addresses.  We should use ia_ifp to support the
    560   1.94    rpaulo 	 * case of sending packets to an address of our own.
    561   1.94    rpaulo 	 */
    562  1.222     ozaki 	if (ia != NULL) {
    563   1.94    rpaulo 		origifp = ia->ia_ifp;
    564  1.225     ozaki 		if (if_is_deactivated(origifp)) {
    565  1.225     ozaki 			IP6_STATINC(IP6_STAT_ODROPPED);
    566  1.173     ozaki 			goto bad;
    567  1.225     ozaki 		}
    568  1.184     ozaki 		if_acquire(origifp, &psref_ia);
    569  1.170     ozaki 		release_psref_ia = true;
    570  1.170     ozaki 	} else
    571   1.94    rpaulo 		origifp = ifp;
    572    1.2    itojun 
    573   1.94    rpaulo 	src0 = ip6->ip6_src;
    574   1.94    rpaulo 	if (in6_setscope(&src0, origifp, &zone))
    575   1.94    rpaulo 		goto badscope;
    576  1.123    dyoung 	sockaddr_in6_init(&src_sa, &ip6->ip6_src, 0, 0, 0);
    577   1.94    rpaulo 	if (sa6_recoverscope(&src_sa) || zone != src_sa.sin6_scope_id)
    578   1.94    rpaulo 		goto badscope;
    579   1.94    rpaulo 
    580   1.94    rpaulo 	dst0 = ip6->ip6_dst;
    581   1.94    rpaulo 	if (in6_setscope(&dst0, origifp, &zone))
    582   1.94    rpaulo 		goto badscope;
    583   1.94    rpaulo 	/* re-initialize to be sure */
    584  1.123    dyoung 	sockaddr_in6_init(&dst_sa, &ip6->ip6_dst, 0, 0, 0);
    585   1.94    rpaulo 	if (sa6_recoverscope(&dst_sa) || zone != dst_sa.sin6_scope_id)
    586   1.94    rpaulo 		goto badscope;
    587   1.94    rpaulo 
    588   1.94    rpaulo 	/* scope check is done. */
    589   1.94    rpaulo 
    590  1.175       roy 	/* Ensure we only send from a valid address. */
    591  1.194       roy 	if ((ifp->if_flags & IFF_LOOPBACK) == 0 &&
    592  1.213     ozaki 	    (flags & IPV6_FORWARDING) == 0 &&
    593  1.194       roy 	    (error = ip6_ifaddrvalid(&src0, &dst0)) != 0)
    594  1.194       roy 	{
    595  1.181       ryo 		char ip6buf[INET6_ADDRSTRLEN];
    596  1.174       roy 		nd6log(LOG_ERR,
    597  1.174       roy 		    "refusing to send from invalid address %s (pid %d)\n",
    598  1.182  christos 		    IN6_PRINT(ip6buf, &src0), curproc->p_pid);
    599  1.175       roy 		IP6_STATINC(IP6_STAT_ODROPPED);
    600  1.175       roy 		in6_ifstat_inc(origifp, ifs6_out_discard);
    601  1.175       roy 		if (error == 1)
    602  1.175       roy 			/*
    603  1.175       roy 			 * Address exists, but is tentative or detached.
    604  1.174       roy 			 * We can't send from it because it's invalid,
    605  1.175       roy 			 * so we drop the packet.
    606  1.175       roy 			 */
    607  1.174       roy 			error = 0;
    608  1.174       roy 		else
    609  1.174       roy 			error = EADDRNOTAVAIL;
    610  1.174       roy 		goto bad;
    611  1.174       roy 	}
    612  1.174       roy 
    613  1.178     ozaki 	if (rt != NULL && (rt->rt_flags & RTF_GATEWAY) &&
    614  1.178     ozaki 	    !IN6_IS_ADDR_MULTICAST(&ip6->ip6_dst))
    615  1.178     ozaki 		dst = satocsin6(rt->rt_gateway);
    616  1.164     ozaki 	else
    617  1.118    dyoung 		dst = satocsin6(rtcache_getdst(ro));
    618    1.2    itojun 
    619   1.94    rpaulo 	/*
    620   1.94    rpaulo 	 * XXXXXX: original code follows:
    621   1.94    rpaulo 	 */
    622   1.94    rpaulo 	if (!IN6_IS_ADDR_MULTICAST(&ip6->ip6_dst))
    623   1.94    rpaulo 		m->m_flags &= ~(M_BCAST | M_MCAST);	/* just in case */
    624   1.94    rpaulo 	else {
    625  1.187     ozaki 		bool ingroup;
    626    1.2    itojun 
    627   1.94    rpaulo 		m->m_flags = (m->m_flags & ~M_BCAST) | M_MCAST;
    628    1.9    itojun 
    629    1.9    itojun 		in6_ifstat_inc(ifp, ifs6_out_mcast);
    630    1.9    itojun 
    631    1.2    itojun 		/*
    632    1.2    itojun 		 * Confirm that the outgoing interface supports multicast.
    633    1.2    itojun 		 */
    634   1.94    rpaulo 		if (!(ifp->if_flags & IFF_MULTICAST)) {
    635  1.128   thorpej 			IP6_STATINC(IP6_STAT_NOROUTE);
    636    1.9    itojun 			in6_ifstat_inc(ifp, ifs6_out_discard);
    637    1.2    itojun 			error = ENETUNREACH;
    638    1.2    itojun 			goto bad;
    639    1.2    itojun 		}
    640   1.94    rpaulo 
    641  1.187     ozaki 		ingroup = in6_multi_group(&ip6->ip6_dst, ifp);
    642  1.187     ozaki 		if (ingroup && (im6o == NULL || im6o->im6o_multicast_loop)) {
    643    1.2    itojun 			/*
    644    1.2    itojun 			 * If we belong to the destination multicast group
    645    1.2    itojun 			 * on the outgoing interface, and the caller did not
    646    1.2    itojun 			 * forbid loopback, loop back a copy.
    647    1.2    itojun 			 */
    648  1.118    dyoung 			KASSERT(dst != NULL);
    649    1.2    itojun 			ip6_mloopback(ifp, m, dst);
    650    1.2    itojun 		} else {
    651    1.2    itojun 			/*
    652    1.2    itojun 			 * If we are acting as a multicast router, perform
    653    1.2    itojun 			 * multicast forwarding as if the packet had just
    654    1.2    itojun 			 * arrived on the interface to which we are about
    655    1.2    itojun 			 * to send.  The multicast forwarding function
    656    1.2    itojun 			 * recursively calls this function, using the
    657    1.2    itojun 			 * IPV6_FORWARDING flag to prevent infinite recursion.
    658    1.2    itojun 			 *
    659    1.2    itojun 			 * Multicasts that are looped back by ip6_mloopback(),
    660    1.2    itojun 			 * above, will be forwarded by the ip6_input() routine,
    661    1.2    itojun 			 * if necessary.
    662    1.2    itojun 			 */
    663    1.2    itojun 			if (ip6_mrouter && (flags & IPV6_FORWARDING) == 0) {
    664   1.20   thorpej 				if (ip6_mforward(ip6, ifp, m) != 0) {
    665    1.2    itojun 					m_freem(m);
    666    1.2    itojun 					goto done;
    667    1.2    itojun 				}
    668    1.2    itojun 			}
    669    1.2    itojun 		}
    670    1.2    itojun 		/*
    671    1.2    itojun 		 * Multicasts with a hoplimit of zero may be looped back,
    672    1.2    itojun 		 * above, but must not be transmitted on a network.
    673    1.2    itojun 		 * Also, multicasts addressed to the loopback interface
    674    1.2    itojun 		 * are not sent -- the above call to ip6_mloopback() will
    675    1.2    itojun 		 * loop back a copy if this host actually belongs to the
    676    1.2    itojun 		 * destination group on the loopback interface.
    677    1.2    itojun 		 */
    678   1.94    rpaulo 		if (ip6->ip6_hlim == 0 || (ifp->if_flags & IFF_LOOPBACK) ||
    679   1.94    rpaulo 		    IN6_IS_ADDR_MC_INTFACELOCAL(&ip6->ip6_dst)) {
    680    1.2    itojun 			m_freem(m);
    681    1.2    itojun 			goto done;
    682    1.2    itojun 		}
    683    1.2    itojun 	}
    684    1.2    itojun 
    685    1.2    itojun 	/*
    686  1.228    andvar 	 * Fill the outgoing interface to tell the upper layer
    687    1.9    itojun 	 * to increment per-interface statistics.
    688    1.9    itojun 	 */
    689    1.9    itojun 	if (ifpp)
    690    1.9    itojun 		*ifpp = ifp;
    691    1.9    itojun 
    692   1.45    itojun 	/* Determine path MTU. */
    693  1.176     ozaki 	/*
    694  1.176     ozaki 	 * ro_pmtu represent final destination while
    695  1.176     ozaki 	 * ro might represent immediate destination.
    696  1.176     ozaki 	 * Use ro_pmtu destination since MTU might differ.
    697  1.176     ozaki 	 */
    698  1.176     ozaki 	if (ro_pmtu != ro) {
    699  1.176     ozaki 		union {
    700  1.176     ozaki 			struct sockaddr		dst;
    701  1.176     ozaki 			struct sockaddr_in6	dst6;
    702  1.176     ozaki 		} u;
    703  1.176     ozaki 
    704  1.176     ozaki 		/* ro_pmtu may not have a cache */
    705  1.176     ozaki 		sockaddr_in6_init(&u.dst6, &finaldst, 0, 0, 0);
    706  1.176     ozaki 		rt_pmtu = rtcache_lookup(ro_pmtu, &u.dst);
    707  1.176     ozaki 	} else
    708  1.179     ozaki 		rt_pmtu = rt;
    709  1.176     ozaki 	error = ip6_getpmtu(rt_pmtu, ifp, &mtu, &alwaysfrag);
    710  1.179     ozaki 	if (rt_pmtu != NULL && rt_pmtu != rt)
    711  1.179     ozaki 		rtcache_unref(rt_pmtu, ro_pmtu);
    712  1.225     ozaki 	KASSERT(error == 0); /* ip6_getpmtu never fail if ifp is passed */
    713   1.45    itojun 
    714    1.9    itojun 	/*
    715   1.45    itojun 	 * The caller of this function may specify to use the minimum MTU
    716   1.45    itojun 	 * in some cases.
    717   1.97    rpaulo 	 * An advanced API option (IPV6_USE_MIN_MTU) can also override MTU
    718   1.97    rpaulo 	 * setting.  The logic is a bit complicated; by default, unicast
    719   1.97    rpaulo 	 * packets will follow path MTU while multicast packets will be sent at
    720   1.97    rpaulo 	 * the minimum MTU.  If IP6PO_MINMTU_ALL is specified, all packets
    721   1.97    rpaulo 	 * including unicast ones will be sent at the minimum MTU.  Multicast
    722   1.97    rpaulo 	 * packets will always be sent at the minimum MTU unless
    723   1.97    rpaulo 	 * IP6PO_MINMTU_DISABLE is explicitly specified.
    724   1.97    rpaulo 	 * See RFC 3542 for more details.
    725    1.2    itojun 	 */
    726   1.45    itojun 	if (mtu > IPV6_MMTU) {
    727   1.45    itojun 		if ((flags & IPV6_MINMTU))
    728   1.45    itojun 			mtu = IPV6_MMTU;
    729   1.97    rpaulo 		else if (opt && opt->ip6po_minmtu == IP6PO_MINMTU_ALL)
    730   1.97    rpaulo 			mtu = IPV6_MMTU;
    731   1.97    rpaulo 		else if (IN6_IS_ADDR_MULTICAST(&ip6->ip6_dst) &&
    732   1.97    rpaulo 			 (opt == NULL ||
    733   1.97    rpaulo 			  opt->ip6po_minmtu != IP6PO_MINMTU_DISABLE)) {
    734   1.97    rpaulo 			mtu = IPV6_MMTU;
    735   1.97    rpaulo 		}
    736   1.43    itojun 	}
    737   1.43    itojun 
    738   1.94    rpaulo 	/*
    739   1.94    rpaulo 	 * clear embedded scope identifiers if necessary.
    740   1.94    rpaulo 	 * in6_clearscope will touch the addresses only when necessary.
    741   1.94    rpaulo 	 */
    742   1.94    rpaulo 	in6_clearscope(&ip6->ip6_src);
    743   1.94    rpaulo 	in6_clearscope(&ip6->ip6_dst);
    744    1.2    itojun 
    745    1.2    itojun 	/*
    746    1.2    itojun 	 * If the outgoing packet contains a hop-by-hop options header,
    747    1.2    itojun 	 * it must be examined and processed even by the source node.
    748    1.2    itojun 	 * (RFC 2460, section 4.)
    749  1.200      maxv 	 *
    750  1.200      maxv 	 * XXX Is this really necessary?
    751    1.2    itojun 	 */
    752  1.200      maxv 	if (ip6->ip6_nxt == IPPROTO_HOPOPTS) {
    753    1.5    itojun 		u_int32_t dummy1; /* XXX unused */
    754    1.2    itojun 		u_int32_t dummy2; /* XXX unused */
    755  1.143  drochner 		int hoff = sizeof(struct ip6_hdr);
    756    1.2    itojun 
    757  1.143  drochner 		if (ip6_hopopts_input(&dummy1, &dummy2, &m, &hoff)) {
    758    1.2    itojun 			/* m was already freed at this point */
    759  1.197      maxv 			error = EINVAL;
    760    1.2    itojun 			goto done;
    761    1.2    itojun 		}
    762  1.143  drochner 
    763  1.143  drochner 		ip6 = mtod(m, struct ip6_hdr *);
    764    1.2    itojun 	}
    765    1.2    itojun 
    766   1.15   darrenr 	/*
    767   1.15   darrenr 	 * Run through list of hooks for output packets.
    768   1.15   darrenr 	 */
    769  1.219     ozaki 	error = pfil_run_hooks(inet6_pfil_hook, &m, ifp, PFIL_OUT);
    770  1.219     ozaki 	if (error != 0 || m == NULL) {
    771  1.219     ozaki 		IP6_STATINC(IP6_STAT_PFILDROP_OUT);
    772   1.27   thorpej 		goto done;
    773  1.219     ozaki 	}
    774   1.27   thorpej 	ip6 = mtod(m, struct ip6_hdr *);
    775  1.154     rmind 
    776    1.2    itojun 	/*
    777    1.2    itojun 	 * Send the packet to the outgoing interface.
    778   1.19    itojun 	 * If necessary, do IPv6 fragmentation before sending.
    779   1.78    itojun 	 *
    780   1.78    itojun 	 * the logic here is rather complex:
    781   1.78    itojun 	 * 1: normal case (dontfrag == 0, alwaysfrag == 0)
    782   1.78    itojun 	 * 1-a:	send as is if tlen <= path mtu
    783   1.78    itojun 	 * 1-b:	fragment if tlen > path mtu
    784   1.78    itojun 	 *
    785   1.78    itojun 	 * 2: if user asks us not to fragment (dontfrag == 1)
    786   1.78    itojun 	 * 2-a:	send as is if tlen <= interface mtu
    787   1.78    itojun 	 * 2-b:	error if tlen > interface mtu
    788   1.78    itojun 	 *
    789   1.78    itojun 	 * 3: if we always need to attach fragment header (alwaysfrag == 1)
    790   1.78    itojun 	 *	always fragment
    791   1.78    itojun 	 *
    792   1.78    itojun 	 * 4: if dontfrag == 1 && alwaysfrag == 1
    793   1.78    itojun 	 *	error, as we cannot handle this conflicting request
    794    1.2    itojun 	 */
    795    1.2    itojun 	tlen = m->m_pkthdr.len;
    796  1.105      yamt 	tso = (m->m_pkthdr.csum_flags & M_CSUM_TSOv6) != 0;
    797   1.97    rpaulo 	if (opt && (opt->ip6po_flags & IP6PO_DONTFRAG))
    798   1.97    rpaulo 		dontfrag = 1;
    799   1.97    rpaulo 	else
    800   1.97    rpaulo 		dontfrag = 0;
    801   1.97    rpaulo 
    802   1.78    itojun 	if (dontfrag && alwaysfrag) {	/* case 4 */
    803   1.78    itojun 		/* conflicting request - can't transmit */
    804  1.225     ozaki 		IP6_STATINC(IP6_STAT_CANTFRAG);
    805   1.78    itojun 		error = EMSGSIZE;
    806   1.78    itojun 		goto bad;
    807   1.78    itojun 	}
    808  1.223       roy 	if (dontfrag && (!tso && tlen > ifp->if_mtu)) {	/* case 2-b */
    809   1.78    itojun 		/*
    810   1.78    itojun 		 * Even if the DONTFRAG option is specified, we cannot send the
    811   1.78    itojun 		 * packet when the data length is larger than the MTU of the
    812   1.78    itojun 		 * outgoing interface.
    813   1.78    itojun 		 * Notify the error by sending IPV6_PATHMTU ancillary data as
    814   1.78    itojun 		 * well as returning an error code (the latter is not described
    815   1.78    itojun 		 * in the API spec.)
    816   1.78    itojun 		 */
    817   1.78    itojun 		u_int32_t mtu32;
    818   1.78    itojun 		struct ip6ctlparam ip6cp;
    819   1.78    itojun 
    820   1.78    itojun 		mtu32 = (u_int32_t)mtu;
    821  1.136    cegger 		memset(&ip6cp, 0, sizeof(ip6cp));
    822   1.78    itojun 		ip6cp.ip6c_cmdarg = (void *)&mtu32;
    823  1.115    dyoung 		pfctlinput2(PRC_MSGSIZE,
    824  1.118    dyoung 		    rtcache_getdst(ro_pmtu), &ip6cp);
    825   1.78    itojun 
    826  1.225     ozaki 		IP6_STATINC(IP6_STAT_CANTFRAG);
    827   1.78    itojun 		error = EMSGSIZE;
    828   1.78    itojun 		goto bad;
    829   1.78    itojun 	}
    830   1.97    rpaulo 
    831   1.78    itojun 	/*
    832   1.78    itojun 	 * transmit packet without fragmentation
    833   1.78    itojun 	 */
    834  1.105      yamt 	if (dontfrag || (!alwaysfrag && (tlen <= mtu || tso))) {
    835  1.105      yamt 		/* case 1-a and 2-a */
    836   1.26    itojun 		struct in6_ifaddr *ia6;
    837   1.89      yamt 		int sw_csum;
    838  1.173     ozaki 		int s;
    839   1.78    itojun 
    840   1.26    itojun 		ip6 = mtod(m, struct ip6_hdr *);
    841  1.173     ozaki 		s = pserialize_read_enter();
    842   1.26    itojun 		ia6 = in6_ifawithifp(ifp, &ip6->ip6_src);
    843   1.26    itojun 		if (ia6) {
    844   1.42    itojun 			/* Record statistics for this interface address. */
    845   1.78    itojun 			ia6->ia_ifa.ifa_data.ifad_outbytes += m->m_pkthdr.len;
    846    1.9    itojun 		}
    847  1.173     ozaki 		pserialize_read_exit(s);
    848   1.89      yamt 
    849   1.89      yamt 		sw_csum = m->m_pkthdr.csum_flags & ~ifp->if_csum_flags_tx;
    850   1.89      yamt 		if ((sw_csum & (M_CSUM_UDPv6|M_CSUM_TCPv6)) != 0) {
    851   1.90      yamt 			if (IN6_NEED_CHECKSUM(ifp,
    852   1.90      yamt 			    sw_csum & (M_CSUM_UDPv6|M_CSUM_TCPv6))) {
    853  1.212      maxv 				in6_undefer_cksum_tcpudp(m);
    854   1.90      yamt 			}
    855   1.89      yamt 			m->m_pkthdr.csum_flags &= ~(M_CSUM_UDPv6|M_CSUM_TCPv6);
    856   1.89      yamt 		}
    857   1.89      yamt 
    858  1.118    dyoung 		KASSERT(dst != NULL);
    859  1.214       rin 		if (__predict_false(sw_csum & M_CSUM_TSOv6)) {
    860  1.214       rin 			/*
    861  1.214       rin 			 * TSO6 is required by a packet, but disabled for
    862  1.214       rin 			 * the interface.
    863  1.214       rin 			 */
    864  1.214       rin 			error = ip6_tso_output(ifp, origifp, m, dst, rt);
    865  1.214       rin 		} else
    866  1.183     ozaki 			error = ip6_if_output(ifp, origifp, m, dst, rt);
    867    1.2    itojun 		goto done;
    868   1.78    itojun 	}
    869   1.78    itojun 
    870  1.105      yamt 	if (tso) {
    871  1.225     ozaki 		IP6_STATINC(IP6_STAT_CANTFRAG); /* XXX */
    872  1.105      yamt 		error = EINVAL; /* XXX */
    873  1.105      yamt 		goto bad;
    874  1.105      yamt 	}
    875  1.105      yamt 
    876   1.78    itojun 	/*
    877   1.78    itojun 	 * try to fragment the packet.  case 1-b and 3
    878   1.78    itojun 	 */
    879   1.78    itojun 	if (mtu < IPV6_MMTU) {
    880   1.78    itojun 		/* path MTU cannot be less than IPV6_MMTU */
    881  1.225     ozaki 		IP6_STATINC(IP6_STAT_CANTFRAG);
    882    1.2    itojun 		error = EMSGSIZE;
    883    1.9    itojun 		in6_ifstat_inc(ifp, ifs6_out_fragfail);
    884    1.2    itojun 		goto bad;
    885   1.78    itojun 	} else if (ip6->ip6_plen == 0) {
    886   1.78    itojun 		/* jumbo payload cannot be fragmented */
    887  1.225     ozaki 		IP6_STATINC(IP6_STAT_CANTFRAG);
    888    1.2    itojun 		error = EMSGSIZE;
    889    1.9    itojun 		in6_ifstat_inc(ifp, ifs6_out_fragfail);
    890    1.2    itojun 		goto bad;
    891    1.2    itojun 	} else {
    892  1.227  christos 		const uint32_t id = ip6_randomid();
    893    1.2    itojun 		struct mbuf **mnext, *m_frgpart;
    894  1.197      maxv 		const int hlen = unfragpartlen;
    895    1.2    itojun 		struct ip6_frag *ip6f;
    896    1.2    itojun 		u_char nextproto;
    897    1.2    itojun 
    898    1.2    itojun 		if (mtu > IPV6_MAXPACKET)
    899    1.2    itojun 			mtu = IPV6_MAXPACKET;
    900   1.78    itojun 
    901  1.197      maxv 		/*
    902  1.197      maxv 		 * Must be able to put at least 8 bytes per fragment.
    903  1.197      maxv 		 */
    904    1.2    itojun 		len = (mtu - hlen - sizeof(struct ip6_frag)) & ~7;
    905    1.2    itojun 		if (len < 8) {
    906  1.225     ozaki 			IP6_STATINC(IP6_STAT_CANTFRAG);
    907    1.2    itojun 			error = EMSGSIZE;
    908    1.9    itojun 			in6_ifstat_inc(ifp, ifs6_out_fragfail);
    909    1.2    itojun 			goto bad;
    910    1.2    itojun 		}
    911    1.2    itojun 
    912    1.2    itojun 		mnext = &m->m_nextpkt;
    913    1.2    itojun 
    914    1.2    itojun 		/*
    915    1.2    itojun 		 * Change the next header field of the last header in the
    916    1.2    itojun 		 * unfragmentable part.
    917    1.2    itojun 		 */
    918    1.2    itojun 		if (exthdrs.ip6e_rthdr) {
    919    1.2    itojun 			nextproto = *mtod(exthdrs.ip6e_rthdr, u_char *);
    920    1.2    itojun 			*mtod(exthdrs.ip6e_rthdr, u_char *) = IPPROTO_FRAGMENT;
    921   1.19    itojun 		} else if (exthdrs.ip6e_dest1) {
    922    1.2    itojun 			nextproto = *mtod(exthdrs.ip6e_dest1, u_char *);
    923    1.2    itojun 			*mtod(exthdrs.ip6e_dest1, u_char *) = IPPROTO_FRAGMENT;
    924   1.19    itojun 		} else if (exthdrs.ip6e_hbh) {
    925    1.2    itojun 			nextproto = *mtod(exthdrs.ip6e_hbh, u_char *);
    926    1.2    itojun 			*mtod(exthdrs.ip6e_hbh, u_char *) = IPPROTO_FRAGMENT;
    927   1.19    itojun 		} else {
    928    1.2    itojun 			nextproto = ip6->ip6_nxt;
    929    1.2    itojun 			ip6->ip6_nxt = IPPROTO_FRAGMENT;
    930    1.2    itojun 		}
    931    1.2    itojun 
    932   1.89      yamt 		if ((m->m_pkthdr.csum_flags & (M_CSUM_UDPv6|M_CSUM_TCPv6))
    933   1.89      yamt 		    != 0) {
    934   1.90      yamt 			if (IN6_NEED_CHECKSUM(ifp,
    935   1.90      yamt 			    m->m_pkthdr.csum_flags &
    936   1.90      yamt 			    (M_CSUM_UDPv6|M_CSUM_TCPv6))) {
    937  1.212      maxv 				in6_undefer_cksum_tcpudp(m);
    938   1.90      yamt 			}
    939   1.89      yamt 			m->m_pkthdr.csum_flags &= ~(M_CSUM_UDPv6|M_CSUM_TCPv6);
    940   1.89      yamt 		}
    941   1.89      yamt 
    942    1.2    itojun 		/*
    943    1.2    itojun 		 * Loop through length of segment after first fragment,
    944   1.42    itojun 		 * make new header and copy data of each part and link onto
    945   1.42    itojun 		 * chain.
    946    1.2    itojun 		 */
    947    1.2    itojun 		m0 = m;
    948    1.2    itojun 		for (off = hlen; off < tlen; off += len) {
    949   1.68    itojun 			struct mbuf *mlast;
    950   1.68    itojun 
    951    1.2    itojun 			MGETHDR(m, M_DONTWAIT, MT_HEADER);
    952    1.2    itojun 			if (!m) {
    953    1.2    itojun 				error = ENOBUFS;
    954  1.128   thorpej 				IP6_STATINC(IP6_STAT_ODROPPED);
    955    1.2    itojun 				goto sendorfree;
    956    1.2    itojun 			}
    957  1.167     ozaki 			m_reset_rcvif(m);
    958    1.2    itojun 			m->m_flags = m0->m_flags & M_COPYFLAGS;
    959    1.2    itojun 			*mnext = m;
    960    1.2    itojun 			mnext = &m->m_nextpkt;
    961    1.2    itojun 			m->m_data += max_linkhdr;
    962    1.2    itojun 			mhip6 = mtod(m, struct ip6_hdr *);
    963    1.2    itojun 			*mhip6 = *ip6;
    964    1.2    itojun 			m->m_len = sizeof(*mhip6);
    965  1.197      maxv 
    966  1.152       gdt 			ip6f = NULL;
    967   1.42    itojun 			error = ip6_insertfraghdr(m0, m, hlen, &ip6f);
    968   1.42    itojun 			if (error) {
    969  1.128   thorpej 				IP6_STATINC(IP6_STAT_ODROPPED);
    970    1.2    itojun 				goto sendorfree;
    971    1.2    itojun 			}
    972  1.197      maxv 
    973  1.197      maxv 			/* Fill in the Frag6 Header */
    974   1.69    itojun 			ip6f->ip6f_offlg = htons((u_int16_t)((off - hlen) & ~7));
    975    1.2    itojun 			if (off + len >= tlen)
    976    1.2    itojun 				len = tlen - off;
    977    1.2    itojun 			else
    978    1.2    itojun 				ip6f->ip6f_offlg |= IP6F_MORE_FRAG;
    979  1.197      maxv 			ip6f->ip6f_reserved = 0;
    980  1.197      maxv 			ip6f->ip6f_ident = id;
    981  1.197      maxv 			ip6f->ip6f_nxt = nextproto;
    982  1.197      maxv 
    983   1.69    itojun 			mhip6->ip6_plen = htons((u_int16_t)(len + hlen +
    984   1.49    itojun 			    sizeof(*ip6f) - sizeof(struct ip6_hdr)));
    985  1.206      maxv 			if ((m_frgpart = m_copym(m0, off, len, M_DONTWAIT)) == NULL) {
    986    1.2    itojun 				error = ENOBUFS;
    987  1.128   thorpej 				IP6_STATINC(IP6_STAT_ODROPPED);
    988    1.2    itojun 				goto sendorfree;
    989    1.2    itojun 			}
    990   1.68    itojun 			for (mlast = m; mlast->m_next; mlast = mlast->m_next)
    991   1.68    itojun 				;
    992   1.68    itojun 			mlast->m_next = m_frgpart;
    993  1.197      maxv 
    994    1.2    itojun 			m->m_pkthdr.len = len + hlen + sizeof(*ip6f);
    995  1.167     ozaki 			m_reset_rcvif(m);
    996  1.128   thorpej 			IP6_STATINC(IP6_STAT_OFRAGMENTS);
    997    1.9    itojun 			in6_ifstat_inc(ifp, ifs6_out_fragcreat);
    998    1.2    itojun 		}
    999    1.9    itojun 
   1000    1.9    itojun 		in6_ifstat_inc(ifp, ifs6_out_fragok);
   1001    1.2    itojun 	}
   1002    1.2    itojun 
   1003    1.2    itojun sendorfree:
   1004    1.2    itojun 	m = m0->m_nextpkt;
   1005    1.2    itojun 	m0->m_nextpkt = 0;
   1006    1.2    itojun 	m_freem(m0);
   1007    1.2    itojun 	for (m0 = m; m; m = m0) {
   1008    1.2    itojun 		m0 = m->m_nextpkt;
   1009    1.2    itojun 		m->m_nextpkt = 0;
   1010    1.2    itojun 		if (error == 0) {
   1011   1.26    itojun 			struct in6_ifaddr *ia6;
   1012  1.173     ozaki 			int s;
   1013   1.26    itojun 			ip6 = mtod(m, struct ip6_hdr *);
   1014  1.173     ozaki 			s = pserialize_read_enter();
   1015   1.26    itojun 			ia6 = in6_ifawithifp(ifp, &ip6->ip6_src);
   1016   1.26    itojun 			if (ia6) {
   1017   1.42    itojun 				/*
   1018   1.42    itojun 				 * Record statistics for this interface
   1019   1.42    itojun 				 * address.
   1020   1.42    itojun 				 */
   1021   1.26    itojun 				ia6->ia_ifa.ifa_data.ifad_outbytes +=
   1022   1.78    itojun 				    m->m_pkthdr.len;
   1023    1.9    itojun 			}
   1024  1.173     ozaki 			pserialize_read_exit(s);
   1025  1.118    dyoung 			KASSERT(dst != NULL);
   1026  1.183     ozaki 			error = ip6_if_output(ifp, origifp, m, dst, rt);
   1027   1.19    itojun 		} else
   1028    1.2    itojun 			m_freem(m);
   1029    1.2    itojun 	}
   1030    1.2    itojun 
   1031    1.2    itojun 	if (error == 0)
   1032  1.128   thorpej 		IP6_STATINC(IP6_STAT_FRAGMENTED);
   1033    1.2    itojun 
   1034    1.2    itojun done:
   1035  1.179     ozaki 	rtcache_unref(rt, ro);
   1036  1.172     ozaki 	if (ro == &ip6route)
   1037  1.172     ozaki 		rtcache_free(&ip6route);
   1038  1.153  christos #ifdef IPSEC
   1039  1.114  degroote 	if (sp != NULL)
   1040  1.193     ozaki 		KEY_SP_UNREF(&sp);
   1041  1.197      maxv #endif
   1042  1.170     ozaki 	if_put(ifp, &psref);
   1043  1.170     ozaki 	if (release_psref_ia)
   1044  1.170     ozaki 		if_put(origifp, &psref_ia);
   1045  1.170     ozaki 	curlwp_bindx(bound);
   1046    1.2    itojun 
   1047  1.197      maxv 	return error;
   1048    1.2    itojun 
   1049    1.2    itojun freehdrs:
   1050  1.197      maxv 	m_freem(exthdrs.ip6e_hbh);
   1051    1.2    itojun 	m_freem(exthdrs.ip6e_dest1);
   1052    1.2    itojun 	m_freem(exthdrs.ip6e_rthdr);
   1053    1.2    itojun 	m_freem(exthdrs.ip6e_dest2);
   1054   1.48    itojun 	/* FALLTHROUGH */
   1055    1.2    itojun bad:
   1056    1.2    itojun 	m_freem(m);
   1057    1.2    itojun 	goto done;
   1058  1.197      maxv 
   1059  1.118    dyoung badscope:
   1060  1.128   thorpej 	IP6_STATINC(IP6_STAT_BADSCOPE);
   1061  1.118    dyoung 	in6_ifstat_inc(origifp, ifs6_out_discard);
   1062  1.118    dyoung 	if (error == 0)
   1063  1.118    dyoung 		error = EHOSTUNREACH; /* XXX */
   1064  1.118    dyoung 	goto bad;
   1065    1.2    itojun }
   1066    1.2    itojun 
   1067    1.2    itojun static int
   1068  1.119  christos ip6_copyexthdr(struct mbuf **mp, void *hdr, int hlen)
   1069    1.2    itojun {
   1070    1.2    itojun 	struct mbuf *m;
   1071    1.2    itojun 
   1072    1.2    itojun 	if (hlen > MCLBYTES)
   1073  1.197      maxv 		return ENOBUFS; /* XXX */
   1074    1.2    itojun 
   1075    1.2    itojun 	MGET(m, M_DONTWAIT, MT_DATA);
   1076    1.2    itojun 	if (!m)
   1077  1.197      maxv 		return ENOBUFS;
   1078    1.2    itojun 
   1079    1.2    itojun 	if (hlen > MLEN) {
   1080    1.2    itojun 		MCLGET(m, M_DONTWAIT);
   1081    1.2    itojun 		if ((m->m_flags & M_EXT) == 0) {
   1082    1.2    itojun 			m_free(m);
   1083  1.197      maxv 			return ENOBUFS;
   1084    1.2    itojun 		}
   1085    1.2    itojun 	}
   1086    1.2    itojun 	m->m_len = hlen;
   1087    1.2    itojun 	if (hdr)
   1088  1.201      maxv 		memcpy(mtod(m, void *), hdr, hlen);
   1089    1.2    itojun 
   1090    1.2    itojun 	*mp = m;
   1091  1.197      maxv 	return 0;
   1092    1.2    itojun }
   1093    1.2    itojun 
   1094    1.2    itojun /*
   1095   1.19    itojun  * Insert jumbo payload option.
   1096    1.2    itojun  */
   1097    1.2    itojun static int
   1098  1.119  christos ip6_insert_jumboopt(struct ip6_exthdrs *exthdrs, u_int32_t plen)
   1099    1.2    itojun {
   1100    1.2    itojun 	struct mbuf *mopt;
   1101   1.56    itojun 	u_int8_t *optbuf;
   1102   1.25    itojun 	u_int32_t v;
   1103    1.2    itojun 
   1104    1.2    itojun #define JUMBOOPTLEN	8	/* length of jumbo payload option and padding */
   1105    1.2    itojun 
   1106    1.2    itojun 	/*
   1107    1.2    itojun 	 * If there is no hop-by-hop options header, allocate new one.
   1108    1.2    itojun 	 * If there is one but it doesn't have enough space to store the
   1109    1.2    itojun 	 * jumbo payload option, allocate a cluster to store the whole options.
   1110    1.2    itojun 	 * Otherwise, use it to store the options.
   1111    1.2    itojun 	 */
   1112  1.198      maxv 	if (exthdrs->ip6e_hbh == NULL) {
   1113    1.2    itojun 		MGET(mopt, M_DONTWAIT, MT_DATA);
   1114    1.2    itojun 		if (mopt == 0)
   1115   1.57    itojun 			return (ENOBUFS);
   1116    1.2    itojun 		mopt->m_len = JUMBOOPTLEN;
   1117   1.56    itojun 		optbuf = mtod(mopt, u_int8_t *);
   1118    1.2    itojun 		optbuf[1] = 0;	/* = ((JUMBOOPTLEN) >> 3) - 1 */
   1119    1.2    itojun 		exthdrs->ip6e_hbh = mopt;
   1120   1.19    itojun 	} else {
   1121    1.2    itojun 		struct ip6_hbh *hbh;
   1122    1.2    itojun 
   1123    1.2    itojun 		mopt = exthdrs->ip6e_hbh;
   1124    1.2    itojun 		if (M_TRAILINGSPACE(mopt) < JUMBOOPTLEN) {
   1125  1.198      maxv 			const int oldoptlen = mopt->m_len;
   1126  1.198      maxv 			struct mbuf *n;
   1127  1.198      maxv 
   1128   1.25    itojun 			/*
   1129  1.198      maxv 			 * Assumptions:
   1130   1.25    itojun 			 * - exthdrs->ip6e_hbh is not referenced from places
   1131   1.25    itojun 			 *   other than exthdrs.
   1132   1.25    itojun 			 * - exthdrs->ip6e_hbh is not an mbuf chain.
   1133   1.25    itojun 			 */
   1134  1.198      maxv 			KASSERT(mopt->m_next == NULL);
   1135    1.2    itojun 
   1136   1.25    itojun 			/*
   1137  1.198      maxv 			 * Give up if the whole (new) hbh header does not fit
   1138  1.198      maxv 			 * even in an mbuf cluster.
   1139   1.25    itojun 			 */
   1140   1.25    itojun 			if (oldoptlen + JUMBOOPTLEN > MCLBYTES)
   1141  1.198      maxv 				return ENOBUFS;
   1142    1.2    itojun 
   1143   1.25    itojun 			/*
   1144  1.198      maxv 			 * At this point, we must always prepare a cluster.
   1145   1.25    itojun 			 */
   1146   1.25    itojun 			MGET(n, M_DONTWAIT, MT_DATA);
   1147   1.25    itojun 			if (n) {
   1148   1.25    itojun 				MCLGET(n, M_DONTWAIT);
   1149   1.25    itojun 				if ((n->m_flags & M_EXT) == 0) {
   1150   1.25    itojun 					m_freem(n);
   1151   1.25    itojun 					n = NULL;
   1152   1.25    itojun 				}
   1153   1.25    itojun 			}
   1154   1.25    itojun 			if (!n)
   1155  1.198      maxv 				return ENOBUFS;
   1156  1.198      maxv 
   1157   1.25    itojun 			n->m_len = oldoptlen + JUMBOOPTLEN;
   1158  1.117  christos 			bcopy(mtod(mopt, void *), mtod(n, void *),
   1159   1.78    itojun 			    oldoptlen);
   1160   1.56    itojun 			optbuf = mtod(n, u_int8_t *) + oldoptlen;
   1161   1.25    itojun 			m_freem(mopt);
   1162   1.33    itojun 			mopt = exthdrs->ip6e_hbh = n;
   1163   1.19    itojun 		} else {
   1164   1.56    itojun 			optbuf = mtod(mopt, u_int8_t *) + mopt->m_len;
   1165    1.2    itojun 			mopt->m_len += JUMBOOPTLEN;
   1166    1.2    itojun 		}
   1167    1.2    itojun 		optbuf[0] = IP6OPT_PADN;
   1168   1.58    itojun 		optbuf[1] = 0;
   1169    1.2    itojun 
   1170    1.2    itojun 		/*
   1171    1.2    itojun 		 * Adjust the header length according to the pad and
   1172    1.2    itojun 		 * the jumbo payload option.
   1173    1.2    itojun 		 */
   1174    1.2    itojun 		hbh = mtod(mopt, struct ip6_hbh *);
   1175    1.2    itojun 		hbh->ip6h_len += (JUMBOOPTLEN >> 3);
   1176    1.2    itojun 	}
   1177    1.2    itojun 
   1178    1.2    itojun 	/* fill in the option. */
   1179    1.2    itojun 	optbuf[2] = IP6OPT_JUMBO;
   1180    1.2    itojun 	optbuf[3] = 4;
   1181   1.25    itojun 	v = (u_int32_t)htonl(plen + JUMBOOPTLEN);
   1182  1.201      maxv 	memcpy(&optbuf[4], &v, sizeof(u_int32_t));
   1183    1.2    itojun 
   1184    1.2    itojun 	/* finally, adjust the packet header length */
   1185    1.2    itojun 	exthdrs->ip6e_ip6->m_pkthdr.len += JUMBOOPTLEN;
   1186    1.2    itojun 
   1187  1.198      maxv 	return 0;
   1188    1.2    itojun #undef JUMBOOPTLEN
   1189    1.2    itojun }
   1190    1.2    itojun 
   1191    1.2    itojun /*
   1192    1.2    itojun  * Insert fragment header and copy unfragmentable header portions.
   1193  1.197      maxv  *
   1194  1.150       gdt  * *frghdrp will not be read, and it is guaranteed that either an
   1195  1.150       gdt  * error is returned or that *frghdrp will point to space allocated
   1196  1.150       gdt  * for the fragment header.
   1197  1.197      maxv  *
   1198  1.197      maxv  * On entry, m contains:
   1199  1.197      maxv  *     IPv6 Header
   1200  1.197      maxv  * On exit, it contains:
   1201  1.197      maxv  *     IPv6 Header -> Unfragmentable Part -> Frag6 Header
   1202    1.2    itojun  */
   1203    1.2    itojun static int
   1204  1.197      maxv ip6_insertfraghdr(struct mbuf *m0, struct mbuf *m, int hlen,
   1205  1.119  christos 	struct ip6_frag **frghdrp)
   1206    1.2    itojun {
   1207    1.2    itojun 	struct mbuf *n, *mlast;
   1208    1.2    itojun 
   1209    1.2    itojun 	if (hlen > sizeof(struct ip6_hdr)) {
   1210    1.2    itojun 		n = m_copym(m0, sizeof(struct ip6_hdr),
   1211   1.49    itojun 		    hlen - sizeof(struct ip6_hdr), M_DONTWAIT);
   1212  1.197      maxv 		if (n == NULL)
   1213  1.197      maxv 			return ENOBUFS;
   1214    1.2    itojun 		m->m_next = n;
   1215   1.19    itojun 	} else
   1216    1.2    itojun 		n = m;
   1217    1.2    itojun 
   1218    1.2    itojun 	/* Search for the last mbuf of unfragmentable part. */
   1219    1.2    itojun 	for (mlast = n; mlast->m_next; mlast = mlast->m_next)
   1220    1.2    itojun 		;
   1221    1.2    itojun 
   1222    1.2    itojun 	if ((mlast->m_flags & M_EXT) == 0 &&
   1223   1.22    itojun 	    M_TRAILINGSPACE(mlast) >= sizeof(struct ip6_frag)) {
   1224    1.2    itojun 		/* use the trailing space of the last mbuf for the fragment hdr */
   1225  1.117  christos 		*frghdrp = (struct ip6_frag *)(mtod(mlast, char *) +
   1226   1.49    itojun 		    mlast->m_len);
   1227    1.2    itojun 		mlast->m_len += sizeof(struct ip6_frag);
   1228   1.19    itojun 	} else {
   1229    1.2    itojun 		/* allocate a new mbuf for the fragment header */
   1230    1.2    itojun 		struct mbuf *mfrg;
   1231    1.2    itojun 
   1232    1.2    itojun 		MGET(mfrg, M_DONTWAIT, MT_DATA);
   1233  1.197      maxv 		if (mfrg == NULL)
   1234  1.197      maxv 			return ENOBUFS;
   1235    1.2    itojun 		mfrg->m_len = sizeof(struct ip6_frag);
   1236    1.2    itojun 		*frghdrp = mtod(mfrg, struct ip6_frag *);
   1237    1.2    itojun 		mlast->m_next = mfrg;
   1238    1.2    itojun 	}
   1239    1.2    itojun 
   1240  1.197      maxv 	return 0;
   1241   1.45    itojun }
   1242   1.45    itojun 
   1243   1.88    itojun static int
   1244  1.176     ozaki ip6_getpmtu(struct rtentry *rt, struct ifnet *ifp, u_long *mtup,
   1245  1.176     ozaki     int *alwaysfragp)
   1246   1.45    itojun {
   1247   1.45    itojun 	u_int32_t mtu = 0;
   1248   1.78    itojun 	int alwaysfrag = 0;
   1249   1.45    itojun 	int error = 0;
   1250   1.45    itojun 
   1251  1.126    dyoung 	if (rt != NULL) {
   1252   1.45    itojun 		if (ifp == NULL)
   1253  1.124    dyoung 			ifp = rt->rt_ifp;
   1254  1.124    dyoung 		mtu = rt->rt_rmx.rmx_mtu;
   1255   1.46    itojun 		if (mtu == 0)
   1256  1.223       roy 			mtu = ifp->if_mtu;
   1257   1.78    itojun 		else if (mtu < IPV6_MMTU) {
   1258   1.78    itojun 			/*
   1259   1.78    itojun 			 * RFC2460 section 5, last paragraph:
   1260   1.78    itojun 			 * if we record ICMPv6 too big message with
   1261   1.78    itojun 			 * mtu < IPV6_MMTU, transmit packets sized IPV6_MMTU
   1262   1.78    itojun 			 * or smaller, with fragment header attached.
   1263   1.78    itojun 			 * (fragment header is needed regardless from the
   1264   1.78    itojun 			 * packet size, for translators to identify packets)
   1265   1.78    itojun 			 */
   1266   1.78    itojun 			alwaysfrag = 1;
   1267   1.78    itojun 			mtu = IPV6_MMTU;
   1268  1.223       roy 		} else if (mtu > ifp->if_mtu) {
   1269   1.45    itojun 			/*
   1270   1.45    itojun 			 * The MTU on the route is larger than the MTU on
   1271   1.45    itojun 			 * the interface!  This shouldn't happen, unless the
   1272   1.45    itojun 			 * MTU of the interface has been changed after the
   1273   1.45    itojun 			 * interface was brought up.  Change the MTU in the
   1274   1.45    itojun 			 * route to match the interface MTU (as long as the
   1275   1.45    itojun 			 * field isn't locked).
   1276   1.45    itojun 			 */
   1277  1.223       roy 			mtu = ifp->if_mtu;
   1278  1.124    dyoung 			if (!(rt->rt_rmx.rmx_locks & RTV_MTU))
   1279  1.124    dyoung 				rt->rt_rmx.rmx_mtu = mtu;
   1280   1.45    itojun 		}
   1281   1.45    itojun 	} else if (ifp) {
   1282  1.223       roy 		mtu = ifp->if_mtu;
   1283   1.45    itojun 	} else
   1284   1.45    itojun 		error = EHOSTUNREACH; /* XXX */
   1285   1.45    itojun 
   1286   1.45    itojun 	*mtup = mtu;
   1287   1.78    itojun 	if (alwaysfragp)
   1288   1.78    itojun 		*alwaysfragp = alwaysfrag;
   1289   1.57    itojun 	return (error);
   1290    1.2    itojun }
   1291    1.2    itojun 
   1292    1.2    itojun /*
   1293    1.2    itojun  * IP6 socket option processing.
   1294    1.2    itojun  */
   1295    1.2    itojun int
   1296  1.130    plunky ip6_ctloutput(int op, struct socket *so, struct sockopt *sopt)
   1297    1.2    itojun {
   1298  1.138      elad 	int optdatalen, uproto;
   1299   1.97    rpaulo 	void *optdata;
   1300   1.31    itojun 	struct in6pcb *in6p = sotoin6pcb(so);
   1301  1.159  christos 	struct ip_moptions **mopts;
   1302   1.97    rpaulo 	int error, optval;
   1303  1.130    plunky 	int level, optname;
   1304  1.130    plunky 
   1305  1.185     ozaki 	KASSERT(solocked(so));
   1306  1.130    plunky 	KASSERT(sopt != NULL);
   1307  1.130    plunky 
   1308  1.130    plunky 	level = sopt->sopt_level;
   1309  1.130    plunky 	optname = sopt->sopt_name;
   1310    1.2    itojun 
   1311   1.97    rpaulo 	error = optval = 0;
   1312   1.97    rpaulo 	uproto = (int)so->so_proto->pr_protocol;
   1313   1.97    rpaulo 
   1314  1.159  christos 	switch (level) {
   1315  1.159  christos 	case IPPROTO_IP:
   1316  1.159  christos 		switch (optname) {
   1317  1.159  christos 		case IP_ADD_MEMBERSHIP:
   1318  1.159  christos 		case IP_DROP_MEMBERSHIP:
   1319  1.159  christos 		case IP_MULTICAST_IF:
   1320  1.159  christos 		case IP_MULTICAST_LOOP:
   1321  1.159  christos 		case IP_MULTICAST_TTL:
   1322  1.159  christos 			mopts = &in6p->in6p_v4moptions;
   1323  1.159  christos 			switch (op) {
   1324  1.159  christos 			case PRCO_GETOPT:
   1325  1.159  christos 				return ip_getmoptions(*mopts, sopt);
   1326  1.159  christos 			case PRCO_SETOPT:
   1327  1.159  christos 				return ip_setmoptions(mopts, sopt);
   1328  1.159  christos 			default:
   1329  1.159  christos 				return EINVAL;
   1330  1.159  christos 			}
   1331  1.159  christos 		default:
   1332  1.159  christos 			return ENOPROTOOPT;
   1333  1.159  christos 		}
   1334  1.159  christos 	case IPPROTO_IPV6:
   1335  1.159  christos 		break;
   1336  1.159  christos 	default:
   1337  1.121    dyoung 		return ENOPROTOOPT;
   1338  1.121    dyoung 	}
   1339  1.121    dyoung 	switch (op) {
   1340  1.121    dyoung 	case PRCO_SETOPT:
   1341  1.121    dyoung 		switch (optname) {
   1342   1.97    rpaulo #ifdef RFC2292
   1343  1.121    dyoung 		case IPV6_2292PKTOPTIONS:
   1344  1.130    plunky 			error = ip6_pcbopts(&in6p->in6p_outputopts, so, sopt);
   1345  1.121    dyoung 			break;
   1346  1.121    dyoung #endif
   1347  1.121    dyoung 
   1348  1.121    dyoung 		/*
   1349  1.121    dyoung 		 * Use of some Hop-by-Hop options or some
   1350  1.121    dyoung 		 * Destination options, might require special
   1351  1.121    dyoung 		 * privilege.  That is, normal applications
   1352  1.121    dyoung 		 * (without special privilege) might be forbidden
   1353  1.121    dyoung 		 * from setting certain options in outgoing packets,
   1354  1.121    dyoung 		 * and might never see certain options in received
   1355  1.121    dyoung 		 * packets. [RFC 2292 Section 6]
   1356  1.121    dyoung 		 * KAME specific note:
   1357  1.121    dyoung 		 *  KAME prevents non-privileged users from sending or
   1358  1.121    dyoung 		 *  receiving ANY hbh/dst options in order to avoid
   1359  1.121    dyoung 		 *  overhead of parsing options in the kernel.
   1360  1.121    dyoung 		 */
   1361  1.121    dyoung 		case IPV6_RECVHOPOPTS:
   1362  1.121    dyoung 		case IPV6_RECVDSTOPTS:
   1363  1.121    dyoung 		case IPV6_RECVRTHDRDSTOPTS:
   1364  1.146      elad 			error = kauth_authorize_network(kauth_cred_get(),
   1365  1.146      elad 			    KAUTH_NETWORK_IPV6, KAUTH_REQ_NETWORK_IPV6_HOPBYHOP,
   1366  1.146      elad 			    NULL, NULL, NULL);
   1367  1.138      elad 			if (error)
   1368  1.121    dyoung 				break;
   1369  1.121    dyoung 			/* FALLTHROUGH */
   1370  1.121    dyoung 		case IPV6_UNICAST_HOPS:
   1371  1.121    dyoung 		case IPV6_HOPLIMIT:
   1372  1.121    dyoung 		case IPV6_FAITH:
   1373  1.121    dyoung 
   1374  1.121    dyoung 		case IPV6_RECVPKTINFO:
   1375  1.121    dyoung 		case IPV6_RECVHOPLIMIT:
   1376  1.121    dyoung 		case IPV6_RECVRTHDR:
   1377  1.121    dyoung 		case IPV6_RECVPATHMTU:
   1378  1.121    dyoung 		case IPV6_RECVTCLASS:
   1379  1.121    dyoung 		case IPV6_V6ONLY:
   1380  1.226  christos 		case IPV6_BINDANY:
   1381  1.130    plunky 			error = sockopt_getint(sopt, &optval);
   1382  1.130    plunky 			if (error)
   1383   1.97    rpaulo 				break;
   1384  1.121    dyoung 			switch (optname) {
   1385    1.2    itojun 			case IPV6_UNICAST_HOPS:
   1386  1.121    dyoung 				if (optval < -1 || optval >= 256)
   1387    1.2    itojun 					error = EINVAL;
   1388  1.121    dyoung 				else {
   1389  1.121    dyoung 					/* -1 = kernel default */
   1390  1.121    dyoung 					in6p->in6p_hops = optval;
   1391   1.37    itojun 				}
   1392  1.121    dyoung 				break;
   1393    1.2    itojun #define OPTSET(bit) \
   1394   1.49    itojun do { \
   1395  1.121    dyoung if (optval) \
   1396  1.121    dyoung 	in6p->in6p_flags |= (bit); \
   1397  1.121    dyoung else \
   1398  1.121    dyoung 	in6p->in6p_flags &= ~(bit); \
   1399   1.60     perry } while (/*CONSTCOND*/ 0)
   1400    1.2    itojun 
   1401   1.97    rpaulo #ifdef RFC2292
   1402   1.97    rpaulo #define OPTSET2292(bit) 			\
   1403   1.97    rpaulo do { 						\
   1404  1.121    dyoung in6p->in6p_flags |= IN6P_RFC2292; 	\
   1405  1.121    dyoung if (optval) 				\
   1406  1.121    dyoung 	in6p->in6p_flags |= (bit); 	\
   1407  1.121    dyoung else 					\
   1408  1.121    dyoung 	in6p->in6p_flags &= ~(bit); 	\
   1409   1.97    rpaulo } while (/*CONSTCOND*/ 0)
   1410   1.97    rpaulo #endif
   1411   1.97    rpaulo 
   1412   1.97    rpaulo #define OPTBIT(bit) (in6p->in6p_flags & (bit) ? 1 : 0)
   1413    1.2    itojun 
   1414  1.121    dyoung 			case IPV6_RECVPKTINFO:
   1415   1.97    rpaulo #ifdef RFC2292
   1416  1.121    dyoung 				/* cannot mix with RFC2292 */
   1417  1.121    dyoung 				if (OPTBIT(IN6P_RFC2292)) {
   1418  1.121    dyoung 					error = EINVAL;
   1419  1.121    dyoung 					break;
   1420  1.121    dyoung 				}
   1421   1.97    rpaulo #endif
   1422  1.121    dyoung 				OPTSET(IN6P_PKTINFO);
   1423  1.121    dyoung 				break;
   1424  1.121    dyoung 
   1425  1.121    dyoung 			case IPV6_HOPLIMIT:
   1426  1.121    dyoung 			{
   1427  1.121    dyoung 				struct ip6_pktopts **optp;
   1428    1.2    itojun 
   1429  1.121    dyoung #ifdef RFC2292
   1430  1.121    dyoung 				/* cannot mix with RFC2292 */
   1431  1.121    dyoung 				if (OPTBIT(IN6P_RFC2292)) {
   1432  1.121    dyoung 					error = EINVAL;
   1433   1.37    itojun 					break;
   1434   1.97    rpaulo 				}
   1435  1.121    dyoung #endif
   1436  1.121    dyoung 				optp = &in6p->in6p_outputopts;
   1437  1.121    dyoung 				error = ip6_pcbopt(IPV6_HOPLIMIT,
   1438  1.121    dyoung 						   (u_char *)&optval,
   1439  1.121    dyoung 						   sizeof(optval),
   1440  1.121    dyoung 						   optp,
   1441  1.138      elad 						   kauth_cred_get(), uproto);
   1442  1.121    dyoung 				break;
   1443  1.121    dyoung 			}
   1444    1.2    itojun 
   1445  1.121    dyoung 			case IPV6_RECVHOPLIMIT:
   1446   1.97    rpaulo #ifdef RFC2292
   1447  1.121    dyoung 				/* cannot mix with RFC2292 */
   1448  1.121    dyoung 				if (OPTBIT(IN6P_RFC2292)) {
   1449  1.121    dyoung 					error = EINVAL;
   1450  1.121    dyoung 					break;
   1451  1.121    dyoung 				}
   1452   1.97    rpaulo #endif
   1453  1.121    dyoung 				OPTSET(IN6P_HOPLIMIT);
   1454  1.121    dyoung 				break;
   1455    1.2    itojun 
   1456  1.121    dyoung 			case IPV6_RECVHOPOPTS:
   1457   1.97    rpaulo #ifdef RFC2292
   1458  1.121    dyoung 				/* cannot mix with RFC2292 */
   1459  1.121    dyoung 				if (OPTBIT(IN6P_RFC2292)) {
   1460  1.121    dyoung 					error = EINVAL;
   1461  1.121    dyoung 					break;
   1462  1.121    dyoung 				}
   1463   1.97    rpaulo #endif
   1464  1.121    dyoung 				OPTSET(IN6P_HOPOPTS);
   1465  1.121    dyoung 				break;
   1466    1.2    itojun 
   1467  1.121    dyoung 			case IPV6_RECVDSTOPTS:
   1468   1.97    rpaulo #ifdef RFC2292
   1469  1.121    dyoung 				/* cannot mix with RFC2292 */
   1470  1.121    dyoung 				if (OPTBIT(IN6P_RFC2292)) {
   1471  1.121    dyoung 					error = EINVAL;
   1472  1.121    dyoung 					break;
   1473  1.121    dyoung 				}
   1474   1.97    rpaulo #endif
   1475  1.121    dyoung 				OPTSET(IN6P_DSTOPTS);
   1476  1.121    dyoung 				break;
   1477    1.2    itojun 
   1478  1.121    dyoung 			case IPV6_RECVRTHDRDSTOPTS:
   1479   1.97    rpaulo #ifdef RFC2292
   1480  1.121    dyoung 				/* cannot mix with RFC2292 */
   1481  1.121    dyoung 				if (OPTBIT(IN6P_RFC2292)) {
   1482  1.121    dyoung 					error = EINVAL;
   1483  1.121    dyoung 					break;
   1484  1.121    dyoung 				}
   1485   1.97    rpaulo #endif
   1486  1.121    dyoung 				OPTSET(IN6P_RTHDRDSTOPTS);
   1487  1.121    dyoung 				break;
   1488   1.97    rpaulo 
   1489  1.121    dyoung 			case IPV6_RECVRTHDR:
   1490   1.97    rpaulo #ifdef RFC2292
   1491  1.121    dyoung 				/* cannot mix with RFC2292 */
   1492  1.121    dyoung 				if (OPTBIT(IN6P_RFC2292)) {
   1493  1.121    dyoung 					error = EINVAL;
   1494  1.121    dyoung 					break;
   1495  1.121    dyoung 				}
   1496   1.97    rpaulo #endif
   1497  1.121    dyoung 				OPTSET(IN6P_RTHDR);
   1498  1.121    dyoung 				break;
   1499  1.121    dyoung 
   1500  1.121    dyoung 			case IPV6_FAITH:
   1501  1.121    dyoung 				OPTSET(IN6P_FAITH);
   1502  1.121    dyoung 				break;
   1503    1.2    itojun 
   1504  1.121    dyoung 			case IPV6_RECVPATHMTU:
   1505  1.121    dyoung 				/*
   1506  1.121    dyoung 				 * We ignore this option for TCP
   1507  1.121    dyoung 				 * sockets.
   1508  1.121    dyoung 				 * (RFC3542 leaves this case
   1509  1.121    dyoung 				 * unspecified.)
   1510  1.121    dyoung 				 */
   1511  1.121    dyoung 				if (uproto != IPPROTO_TCP)
   1512  1.121    dyoung 					OPTSET(IN6P_MTU);
   1513  1.121    dyoung 				break;
   1514   1.10    itojun 
   1515  1.121    dyoung 			case IPV6_V6ONLY:
   1516  1.121    dyoung 				/*
   1517  1.121    dyoung 				 * make setsockopt(IPV6_V6ONLY)
   1518  1.121    dyoung 				 * available only prior to bind(2).
   1519  1.121    dyoung 				 * see ipng mailing list, Jun 22 2001.
   1520  1.121    dyoung 				 */
   1521  1.121    dyoung 				if (in6p->in6p_lport ||
   1522  1.121    dyoung 				    !IN6_IS_ADDR_UNSPECIFIED(&in6p->in6p_laddr)) {
   1523  1.121    dyoung 					error = EINVAL;
   1524   1.83    itojun 					break;
   1525  1.121    dyoung 				}
   1526   1.37    itojun #ifdef INET6_BINDV6ONLY
   1527  1.121    dyoung 				if (!optval)
   1528  1.121    dyoung 					error = EINVAL;
   1529   1.37    itojun #else
   1530  1.121    dyoung 				OPTSET(IN6P_IPV6_V6ONLY);
   1531   1.10    itojun #endif
   1532  1.121    dyoung 				break;
   1533  1.226  christos 
   1534  1.121    dyoung 			case IPV6_RECVTCLASS:
   1535  1.121    dyoung #ifdef RFC2292
   1536  1.121    dyoung 				/* cannot mix with RFC2292 XXX */
   1537  1.121    dyoung 				if (OPTBIT(IN6P_RFC2292)) {
   1538  1.121    dyoung 					error = EINVAL;
   1539   1.37    itojun 					break;
   1540  1.121    dyoung 				}
   1541   1.97    rpaulo #endif
   1542  1.121    dyoung 				OPTSET(IN6P_TCLASS);
   1543  1.121    dyoung 				break;
   1544  1.121    dyoung 
   1545  1.226  christos 			case IPV6_BINDANY:
   1546  1.226  christos 				error = kauth_authorize_network(
   1547  1.226  christos 				    kauth_cred_get(), KAUTH_NETWORK_BIND,
   1548  1.226  christos 				    KAUTH_REQ_NETWORK_BIND_ANYADDR, so, NULL,
   1549  1.226  christos 				    NULL);
   1550  1.226  christos 				if (error)
   1551  1.226  christos 					break;
   1552  1.226  christos 				OPTSET(IN6P_BINDANY);
   1553  1.226  christos 				break;
   1554  1.121    dyoung 			}
   1555  1.121    dyoung 			break;
   1556  1.121    dyoung 
   1557  1.121    dyoung 		case IPV6_OTCLASS:
   1558  1.121    dyoung 		{
   1559  1.121    dyoung 			struct ip6_pktopts **optp;
   1560  1.121    dyoung 			u_int8_t tclass;
   1561   1.97    rpaulo 
   1562  1.130    plunky 			error = sockopt_get(sopt, &tclass, sizeof(tclass));
   1563  1.130    plunky 			if (error)
   1564   1.97    rpaulo 				break;
   1565  1.121    dyoung 			optp = &in6p->in6p_outputopts;
   1566  1.121    dyoung 			error = ip6_pcbopt(optname,
   1567  1.121    dyoung 					   (u_char *)&tclass,
   1568  1.121    dyoung 					   sizeof(tclass),
   1569  1.121    dyoung 					   optp,
   1570  1.138      elad 					   kauth_cred_get(), uproto);
   1571  1.121    dyoung 			break;
   1572  1.121    dyoung 		}
   1573   1.97    rpaulo 
   1574  1.121    dyoung 		case IPV6_TCLASS:
   1575  1.121    dyoung 		case IPV6_DONTFRAG:
   1576  1.121    dyoung 		case IPV6_USE_MIN_MTU:
   1577  1.161       roy 		case IPV6_PREFER_TEMPADDR:
   1578  1.130    plunky 			error = sockopt_getint(sopt, &optval);
   1579  1.130    plunky 			if (error)
   1580  1.121    dyoung 				break;
   1581   1.97    rpaulo 			{
   1582   1.97    rpaulo 				struct ip6_pktopts **optp;
   1583   1.97    rpaulo 				optp = &in6p->in6p_outputopts;
   1584   1.97    rpaulo 				error = ip6_pcbopt(optname,
   1585  1.121    dyoung 						   (u_char *)&optval,
   1586  1.121    dyoung 						   sizeof(optval),
   1587   1.97    rpaulo 						   optp,
   1588  1.138      elad 						   kauth_cred_get(), uproto);
   1589   1.97    rpaulo 				break;
   1590   1.97    rpaulo 			}
   1591   1.97    rpaulo 
   1592   1.97    rpaulo #ifdef RFC2292
   1593  1.121    dyoung 		case IPV6_2292PKTINFO:
   1594  1.121    dyoung 		case IPV6_2292HOPLIMIT:
   1595  1.121    dyoung 		case IPV6_2292HOPOPTS:
   1596  1.121    dyoung 		case IPV6_2292DSTOPTS:
   1597  1.121    dyoung 		case IPV6_2292RTHDR:
   1598  1.121    dyoung 			/* RFC 2292 */
   1599  1.130    plunky 			error = sockopt_getint(sopt, &optval);
   1600  1.130    plunky 			if (error)
   1601  1.121    dyoung 				break;
   1602  1.130    plunky 
   1603  1.121    dyoung 			switch (optname) {
   1604   1.97    rpaulo 			case IPV6_2292PKTINFO:
   1605  1.121    dyoung 				OPTSET2292(IN6P_PKTINFO);
   1606  1.121    dyoung 				break;
   1607   1.97    rpaulo 			case IPV6_2292HOPLIMIT:
   1608  1.121    dyoung 				OPTSET2292(IN6P_HOPLIMIT);
   1609  1.121    dyoung 				break;
   1610   1.97    rpaulo 			case IPV6_2292HOPOPTS:
   1611  1.121    dyoung 				/*
   1612  1.121    dyoung 				 * Check super-user privilege.
   1613  1.121    dyoung 				 * See comments for IPV6_RECVHOPOPTS.
   1614  1.121    dyoung 				 */
   1615  1.138      elad 				error =
   1616  1.146      elad 				    kauth_authorize_network(kauth_cred_get(),
   1617  1.146      elad 				    KAUTH_NETWORK_IPV6,
   1618  1.146      elad 				    KAUTH_REQ_NETWORK_IPV6_HOPBYHOP, NULL,
   1619  1.146      elad 				    NULL, NULL);
   1620  1.138      elad 				if (error)
   1621  1.138      elad 					return (error);
   1622  1.121    dyoung 				OPTSET2292(IN6P_HOPOPTS);
   1623  1.121    dyoung 				break;
   1624   1.97    rpaulo 			case IPV6_2292DSTOPTS:
   1625  1.138      elad 				error =
   1626  1.146      elad 				    kauth_authorize_network(kauth_cred_get(),
   1627  1.146      elad 				    KAUTH_NETWORK_IPV6,
   1628  1.146      elad 				    KAUTH_REQ_NETWORK_IPV6_HOPBYHOP, NULL,
   1629  1.146      elad 				    NULL, NULL);
   1630  1.138      elad 				if (error)
   1631  1.138      elad 					return (error);
   1632  1.121    dyoung 				OPTSET2292(IN6P_DSTOPTS|IN6P_RTHDRDSTOPTS); /* XXX */
   1633  1.121    dyoung 				break;
   1634   1.97    rpaulo 			case IPV6_2292RTHDR:
   1635  1.121    dyoung 				OPTSET2292(IN6P_RTHDR);
   1636   1.97    rpaulo 				break;
   1637  1.121    dyoung 			}
   1638  1.121    dyoung 			break;
   1639   1.97    rpaulo #endif
   1640  1.121    dyoung 		case IPV6_PKTINFO:
   1641  1.121    dyoung 		case IPV6_HOPOPTS:
   1642  1.121    dyoung 		case IPV6_RTHDR:
   1643  1.121    dyoung 		case IPV6_DSTOPTS:
   1644  1.121    dyoung 		case IPV6_RTHDRDSTOPTS:
   1645  1.130    plunky 		case IPV6_NEXTHOP: {
   1646  1.121    dyoung 			/* new advanced API (RFC3542) */
   1647  1.130    plunky 			void *optbuf;
   1648  1.121    dyoung 			int optbuflen;
   1649  1.121    dyoung 			struct ip6_pktopts **optp;
   1650   1.97    rpaulo 
   1651   1.97    rpaulo #ifdef RFC2292
   1652  1.121    dyoung 			/* cannot mix with RFC2292 */
   1653  1.121    dyoung 			if (OPTBIT(IN6P_RFC2292)) {
   1654  1.121    dyoung 				error = EINVAL;
   1655  1.121    dyoung 				break;
   1656  1.121    dyoung 			}
   1657   1.97    rpaulo #endif
   1658   1.97    rpaulo 
   1659  1.131    plunky 			optbuflen = sopt->sopt_size;
   1660  1.131    plunky 			optbuf = malloc(optbuflen, M_IP6OPT, M_NOWAIT);
   1661  1.131    plunky 			if (optbuf == NULL) {
   1662  1.131    plunky 				error = ENOBUFS;
   1663  1.131    plunky 				break;
   1664  1.131    plunky 			}
   1665  1.131    plunky 
   1666  1.155  christos 			error = sockopt_get(sopt, optbuf, optbuflen);
   1667  1.155  christos 			if (error) {
   1668  1.155  christos 				free(optbuf, M_IP6OPT);
   1669  1.155  christos 				break;
   1670  1.155  christos 			}
   1671  1.121    dyoung 			optp = &in6p->in6p_outputopts;
   1672  1.121    dyoung 			error = ip6_pcbopt(optname, optbuf, optbuflen,
   1673  1.138      elad 			    optp, kauth_cred_get(), uproto);
   1674  1.158      maxv 
   1675  1.158      maxv 			free(optbuf, M_IP6OPT);
   1676  1.121    dyoung 			break;
   1677  1.130    plunky 			}
   1678    1.2    itojun #undef OPTSET
   1679    1.2    itojun 
   1680  1.121    dyoung 		case IPV6_MULTICAST_IF:
   1681  1.121    dyoung 		case IPV6_MULTICAST_HOPS:
   1682  1.121    dyoung 		case IPV6_MULTICAST_LOOP:
   1683  1.121    dyoung 		case IPV6_JOIN_GROUP:
   1684  1.132    plunky 		case IPV6_LEAVE_GROUP:
   1685  1.160  christos 			error = ip6_setmoptions(sopt, in6p);
   1686  1.121    dyoung 			break;
   1687  1.121    dyoung 
   1688  1.121    dyoung 		case IPV6_PORTRANGE:
   1689  1.130    plunky 			error = sockopt_getint(sopt, &optval);
   1690  1.130    plunky 			if (error)
   1691    1.2    itojun 				break;
   1692    1.2    itojun 
   1693  1.121    dyoung 			switch (optval) {
   1694  1.121    dyoung 			case IPV6_PORTRANGE_DEFAULT:
   1695  1.121    dyoung 				in6p->in6p_flags &= ~(IN6P_LOWPORT);
   1696  1.121    dyoung 				in6p->in6p_flags &= ~(IN6P_HIGHPORT);
   1697  1.121    dyoung 				break;
   1698   1.12    itojun 
   1699  1.121    dyoung 			case IPV6_PORTRANGE_HIGH:
   1700  1.121    dyoung 				in6p->in6p_flags &= ~(IN6P_LOWPORT);
   1701  1.121    dyoung 				in6p->in6p_flags |= IN6P_HIGHPORT;
   1702  1.121    dyoung 				break;
   1703   1.12    itojun 
   1704  1.121    dyoung 			case IPV6_PORTRANGE_LOW:
   1705  1.121    dyoung 				in6p->in6p_flags &= ~(IN6P_HIGHPORT);
   1706  1.121    dyoung 				in6p->in6p_flags |= IN6P_LOWPORT;
   1707  1.121    dyoung 				break;
   1708   1.12    itojun 
   1709  1.121    dyoung 			default:
   1710  1.121    dyoung 				error = EINVAL;
   1711   1.12    itojun 				break;
   1712  1.121    dyoung 			}
   1713  1.121    dyoung 			break;
   1714   1.12    itojun 
   1715  1.148  christos 		case IPV6_PORTALGO:
   1716  1.148  christos 			error = sockopt_getint(sopt, &optval);
   1717  1.148  christos 			if (error)
   1718  1.148  christos 				break;
   1719  1.148  christos 
   1720  1.149  christos 			error = portalgo_algo_index_select(
   1721  1.148  christos 			    (struct inpcb_hdr *)in6p, optval);
   1722  1.148  christos 			break;
   1723  1.114  degroote 
   1724  1.153  christos #if defined(IPSEC)
   1725  1.121    dyoung 		case IPV6_IPSEC_POLICY:
   1726  1.157  christos 			if (ipsec_enabled) {
   1727  1.207      maxv 				error = ipsec_set_policy(in6p,
   1728  1.157  christos 				    sopt->sopt_data, sopt->sopt_size,
   1729  1.157  christos 				    kauth_cred_get());
   1730  1.217       mrg 			} else
   1731  1.217       mrg 				error = ENOPROTOOPT;
   1732  1.217       mrg 			break;
   1733    1.2    itojun #endif /* IPSEC */
   1734    1.2    itojun 
   1735  1.121    dyoung 		default:
   1736  1.121    dyoung 			error = ENOPROTOOPT;
   1737    1.2    itojun 			break;
   1738  1.121    dyoung 		}
   1739  1.121    dyoung 		break;
   1740    1.2    itojun 
   1741  1.121    dyoung 	case PRCO_GETOPT:
   1742  1.121    dyoung 		switch (optname) {
   1743   1.97    rpaulo #ifdef RFC2292
   1744  1.121    dyoung 		case IPV6_2292PKTOPTIONS:
   1745  1.121    dyoung 			/*
   1746  1.121    dyoung 			 * RFC3542 (effectively) deprecated the
   1747  1.121    dyoung 			 * semantics of the 2292-style pktoptions.
   1748  1.121    dyoung 			 * Since it was not reliable in nature (i.e.,
   1749  1.121    dyoung 			 * applications had to expect the lack of some
   1750  1.121    dyoung 			 * information after all), it would make sense
   1751  1.121    dyoung 			 * to simplify this part by always returning
   1752  1.121    dyoung 			 * empty data.
   1753  1.121    dyoung 			 */
   1754  1.121    dyoung 			break;
   1755   1.97    rpaulo #endif
   1756    1.2    itojun 
   1757  1.121    dyoung 		case IPV6_RECVHOPOPTS:
   1758  1.121    dyoung 		case IPV6_RECVDSTOPTS:
   1759  1.121    dyoung 		case IPV6_RECVRTHDRDSTOPTS:
   1760  1.121    dyoung 		case IPV6_UNICAST_HOPS:
   1761  1.121    dyoung 		case IPV6_RECVPKTINFO:
   1762  1.121    dyoung 		case IPV6_RECVHOPLIMIT:
   1763  1.121    dyoung 		case IPV6_RECVRTHDR:
   1764  1.121    dyoung 		case IPV6_RECVPATHMTU:
   1765  1.121    dyoung 
   1766  1.121    dyoung 		case IPV6_FAITH:
   1767  1.121    dyoung 		case IPV6_V6ONLY:
   1768  1.121    dyoung 		case IPV6_PORTRANGE:
   1769  1.121    dyoung 		case IPV6_RECVTCLASS:
   1770  1.226  christos 		case IPV6_BINDANY:
   1771  1.121    dyoung 			switch (optname) {
   1772  1.121    dyoung 
   1773   1.97    rpaulo 			case IPV6_RECVHOPOPTS:
   1774  1.121    dyoung 				optval = OPTBIT(IN6P_HOPOPTS);
   1775  1.121    dyoung 				break;
   1776  1.121    dyoung 
   1777   1.97    rpaulo 			case IPV6_RECVDSTOPTS:
   1778  1.121    dyoung 				optval = OPTBIT(IN6P_DSTOPTS);
   1779  1.121    dyoung 				break;
   1780  1.121    dyoung 
   1781   1.97    rpaulo 			case IPV6_RECVRTHDRDSTOPTS:
   1782  1.121    dyoung 				optval = OPTBIT(IN6P_RTHDRDSTOPTS);
   1783  1.121    dyoung 				break;
   1784  1.121    dyoung 
   1785   1.97    rpaulo 			case IPV6_UNICAST_HOPS:
   1786  1.121    dyoung 				optval = in6p->in6p_hops;
   1787  1.121    dyoung 				break;
   1788  1.121    dyoung 
   1789   1.97    rpaulo 			case IPV6_RECVPKTINFO:
   1790  1.121    dyoung 				optval = OPTBIT(IN6P_PKTINFO);
   1791  1.121    dyoung 				break;
   1792  1.121    dyoung 
   1793   1.97    rpaulo 			case IPV6_RECVHOPLIMIT:
   1794  1.121    dyoung 				optval = OPTBIT(IN6P_HOPLIMIT);
   1795  1.121    dyoung 				break;
   1796  1.121    dyoung 
   1797   1.97    rpaulo 			case IPV6_RECVRTHDR:
   1798  1.121    dyoung 				optval = OPTBIT(IN6P_RTHDR);
   1799  1.121    dyoung 				break;
   1800  1.121    dyoung 
   1801   1.97    rpaulo 			case IPV6_RECVPATHMTU:
   1802  1.121    dyoung 				optval = OPTBIT(IN6P_MTU);
   1803  1.121    dyoung 				break;
   1804    1.2    itojun 
   1805    1.2    itojun 			case IPV6_FAITH:
   1806  1.121    dyoung 				optval = OPTBIT(IN6P_FAITH);
   1807  1.121    dyoung 				break;
   1808  1.121    dyoung 
   1809   1.37    itojun 			case IPV6_V6ONLY:
   1810  1.121    dyoung 				optval = OPTBIT(IN6P_IPV6_V6ONLY);
   1811  1.121    dyoung 				break;
   1812  1.121    dyoung 
   1813   1.97    rpaulo 			case IPV6_PORTRANGE:
   1814  1.121    dyoung 			    {
   1815  1.121    dyoung 				int flags;
   1816  1.121    dyoung 				flags = in6p->in6p_flags;
   1817  1.121    dyoung 				if (flags & IN6P_HIGHPORT)
   1818  1.121    dyoung 					optval = IPV6_PORTRANGE_HIGH;
   1819  1.121    dyoung 				else if (flags & IN6P_LOWPORT)
   1820  1.121    dyoung 					optval = IPV6_PORTRANGE_LOW;
   1821  1.121    dyoung 				else
   1822  1.121    dyoung 					optval = 0;
   1823  1.121    dyoung 				break;
   1824  1.121    dyoung 			    }
   1825   1.97    rpaulo 			case IPV6_RECVTCLASS:
   1826  1.121    dyoung 				optval = OPTBIT(IN6P_TCLASS);
   1827  1.121    dyoung 				break;
   1828    1.2    itojun 
   1829  1.226  christos 			case IPV6_BINDANY:
   1830  1.226  christos 				optval = OPTBIT(IN6P_BINDANY);
   1831  1.226  christos 				break;
   1832  1.121    dyoung 			}
   1833  1.226  christos 
   1834  1.121    dyoung 			if (error)
   1835   1.97    rpaulo 				break;
   1836  1.130    plunky 			error = sockopt_setint(sopt, optval);
   1837  1.121    dyoung 			break;
   1838   1.97    rpaulo 
   1839  1.121    dyoung 		case IPV6_PATHMTU:
   1840  1.121    dyoung 		    {
   1841  1.121    dyoung 			u_long pmtu = 0;
   1842  1.121    dyoung 			struct ip6_mtuinfo mtuinfo;
   1843  1.121    dyoung 			struct route *ro = &in6p->in6p_route;
   1844  1.176     ozaki 			struct rtentry *rt;
   1845  1.176     ozaki 			union {
   1846  1.176     ozaki 				struct sockaddr		dst;
   1847  1.176     ozaki 				struct sockaddr_in6	dst6;
   1848  1.176     ozaki 			} u;
   1849    1.2    itojun 
   1850  1.121    dyoung 			if (!(so->so_state & SS_ISCONNECTED))
   1851  1.121    dyoung 				return (ENOTCONN);
   1852  1.121    dyoung 			/*
   1853  1.121    dyoung 			 * XXX: we dot not consider the case of source
   1854  1.121    dyoung 			 * routing, or optional information to specify
   1855  1.121    dyoung 			 * the outgoing interface.
   1856  1.121    dyoung 			 */
   1857  1.176     ozaki 			sockaddr_in6_init(&u.dst6, &in6p->in6p_faddr, 0, 0, 0);
   1858  1.176     ozaki 			rt = rtcache_lookup(ro, &u.dst);
   1859  1.176     ozaki 			error = ip6_getpmtu(rt, NULL, &pmtu, NULL);
   1860  1.179     ozaki 			rtcache_unref(rt, ro);
   1861  1.121    dyoung 			if (error)
   1862  1.121    dyoung 				break;
   1863  1.121    dyoung 			if (pmtu > IPV6_MAXPACKET)
   1864  1.121    dyoung 				pmtu = IPV6_MAXPACKET;
   1865  1.121    dyoung 
   1866  1.121    dyoung 			memset(&mtuinfo, 0, sizeof(mtuinfo));
   1867  1.121    dyoung 			mtuinfo.ip6m_mtu = (u_int32_t)pmtu;
   1868  1.121    dyoung 			optdata = (void *)&mtuinfo;
   1869  1.121    dyoung 			optdatalen = sizeof(mtuinfo);
   1870  1.121    dyoung 			if (optdatalen > MCLBYTES)
   1871  1.121    dyoung 				return (EMSGSIZE); /* XXX */
   1872  1.130    plunky 			error = sockopt_set(sopt, optdata, optdatalen);
   1873  1.121    dyoung 			break;
   1874  1.121    dyoung 		    }
   1875   1.97    rpaulo 
   1876   1.97    rpaulo #ifdef RFC2292
   1877  1.121    dyoung 		case IPV6_2292PKTINFO:
   1878  1.121    dyoung 		case IPV6_2292HOPLIMIT:
   1879  1.121    dyoung 		case IPV6_2292HOPOPTS:
   1880  1.121    dyoung 		case IPV6_2292RTHDR:
   1881  1.121    dyoung 		case IPV6_2292DSTOPTS:
   1882  1.121    dyoung 			switch (optname) {
   1883   1.97    rpaulo 			case IPV6_2292PKTINFO:
   1884  1.121    dyoung 				optval = OPTBIT(IN6P_PKTINFO);
   1885  1.121    dyoung 				break;
   1886   1.97    rpaulo 			case IPV6_2292HOPLIMIT:
   1887  1.121    dyoung 				optval = OPTBIT(IN6P_HOPLIMIT);
   1888  1.121    dyoung 				break;
   1889   1.97    rpaulo 			case IPV6_2292HOPOPTS:
   1890  1.121    dyoung 				optval = OPTBIT(IN6P_HOPOPTS);
   1891  1.121    dyoung 				break;
   1892   1.97    rpaulo 			case IPV6_2292RTHDR:
   1893  1.121    dyoung 				optval = OPTBIT(IN6P_RTHDR);
   1894  1.121    dyoung 				break;
   1895   1.97    rpaulo 			case IPV6_2292DSTOPTS:
   1896  1.121    dyoung 				optval = OPTBIT(IN6P_DSTOPTS|IN6P_RTHDRDSTOPTS);
   1897    1.2    itojun 				break;
   1898  1.121    dyoung 			}
   1899  1.130    plunky 			error = sockopt_setint(sopt, optval);
   1900  1.121    dyoung 			break;
   1901  1.121    dyoung #endif
   1902  1.121    dyoung 		case IPV6_PKTINFO:
   1903  1.121    dyoung 		case IPV6_HOPOPTS:
   1904  1.121    dyoung 		case IPV6_RTHDR:
   1905  1.121    dyoung 		case IPV6_DSTOPTS:
   1906  1.121    dyoung 		case IPV6_RTHDRDSTOPTS:
   1907  1.121    dyoung 		case IPV6_NEXTHOP:
   1908  1.121    dyoung 		case IPV6_OTCLASS:
   1909  1.121    dyoung 		case IPV6_TCLASS:
   1910  1.121    dyoung 		case IPV6_DONTFRAG:
   1911  1.121    dyoung 		case IPV6_USE_MIN_MTU:
   1912  1.161       roy 		case IPV6_PREFER_TEMPADDR:
   1913  1.121    dyoung 			error = ip6_getpcbopt(in6p->in6p_outputopts,
   1914  1.130    plunky 			    optname, sopt);
   1915  1.121    dyoung 			break;
   1916  1.121    dyoung 
   1917  1.121    dyoung 		case IPV6_MULTICAST_IF:
   1918  1.121    dyoung 		case IPV6_MULTICAST_HOPS:
   1919  1.121    dyoung 		case IPV6_MULTICAST_LOOP:
   1920  1.121    dyoung 		case IPV6_JOIN_GROUP:
   1921  1.132    plunky 		case IPV6_LEAVE_GROUP:
   1922  1.160  christos 			error = ip6_getmoptions(sopt, in6p);
   1923  1.121    dyoung 			break;
   1924    1.2    itojun 
   1925  1.148  christos 		case IPV6_PORTALGO:
   1926  1.149  christos 			optval = ((struct inpcb_hdr *)in6p)->inph_portalgo;
   1927  1.148  christos 			error = sockopt_setint(sopt, optval);
   1928  1.148  christos 			break;
   1929  1.148  christos 
   1930  1.153  christos #if defined(IPSEC)
   1931  1.121    dyoung 		case IPV6_IPSEC_POLICY:
   1932  1.157  christos 			if (ipsec_used) {
   1933  1.157  christos 				struct mbuf *m = NULL;
   1934  1.130    plunky 
   1935  1.157  christos 				/*
   1936  1.157  christos 				 * XXX: this will return EINVAL as sopt is
   1937  1.157  christos 				 * empty
   1938  1.157  christos 				 */
   1939  1.202      maxv 				error = ipsec_get_policy(in6p, sopt->sopt_data,
   1940  1.157  christos 				    sopt->sopt_size, &m);
   1941  1.157  christos 				if (!error)
   1942  1.157  christos 					error = sockopt_setmbuf(sopt, m);
   1943  1.217       mrg 			} else
   1944  1.217       mrg 				error = ENOPROTOOPT;
   1945  1.217       mrg 			break;
   1946    1.2    itojun #endif /* IPSEC */
   1947    1.2    itojun 
   1948  1.121    dyoung 		default:
   1949  1.121    dyoung 			error = ENOPROTOOPT;
   1950    1.2    itojun 			break;
   1951    1.2    itojun 		}
   1952  1.121    dyoung 		break;
   1953    1.2    itojun 	}
   1954   1.57    itojun 	return (error);
   1955   1.53    itojun }
   1956   1.53    itojun 
   1957   1.53    itojun int
   1958  1.130    plunky ip6_raw_ctloutput(int op, struct socket *so, struct sockopt *sopt)
   1959   1.53    itojun {
   1960  1.130    plunky 	int error = 0, optval;
   1961   1.53    itojun 	const int icmp6off = offsetof(struct icmp6_hdr, icmp6_cksum);
   1962   1.53    itojun 	struct in6pcb *in6p = sotoin6pcb(so);
   1963  1.130    plunky 	int level, optname;
   1964   1.53    itojun 
   1965  1.130    plunky 	KASSERT(sopt != NULL);
   1966  1.130    plunky 
   1967  1.130    plunky 	level = sopt->sopt_level;
   1968  1.130    plunky 	optname = sopt->sopt_name;
   1969   1.53    itojun 
   1970   1.53    itojun 	if (level != IPPROTO_IPV6) {
   1971  1.121    dyoung 		return ENOPROTOOPT;
   1972   1.53    itojun 	}
   1973   1.55    itojun 
   1974   1.53    itojun 	switch (optname) {
   1975   1.53    itojun 	case IPV6_CHECKSUM:
   1976   1.53    itojun 		/*
   1977   1.53    itojun 		 * For ICMPv6 sockets, no modification allowed for checksum
   1978   1.53    itojun 		 * offset, permit "no change" values to help existing apps.
   1979   1.53    itojun 		 *
   1980   1.97    rpaulo 		 * XXX RFC3542 says: "An attempt to set IPV6_CHECKSUM
   1981   1.97    rpaulo 		 * for an ICMPv6 socket will fail."  The current
   1982   1.97    rpaulo 		 * behavior does not meet RFC3542.
   1983   1.53    itojun 		 */
   1984   1.53    itojun 		switch (op) {
   1985   1.53    itojun 		case PRCO_SETOPT:
   1986  1.130    plunky 			error = sockopt_getint(sopt, &optval);
   1987  1.130    plunky 			if (error)
   1988   1.53    itojun 				break;
   1989   1.53    itojun 			if ((optval % 2) != 0) {
   1990   1.53    itojun 				/* the API assumes even offset values */
   1991   1.53    itojun 				error = EINVAL;
   1992   1.53    itojun 			} else if (so->so_proto->pr_protocol ==
   1993   1.53    itojun 			    IPPROTO_ICMPV6) {
   1994   1.53    itojun 				if (optval != icmp6off)
   1995   1.53    itojun 					error = EINVAL;
   1996   1.53    itojun 			} else
   1997   1.53    itojun 				in6p->in6p_cksum = optval;
   1998   1.53    itojun 			break;
   1999   1.53    itojun 
   2000   1.53    itojun 		case PRCO_GETOPT:
   2001   1.53    itojun 			if (so->so_proto->pr_protocol == IPPROTO_ICMPV6)
   2002   1.53    itojun 				optval = icmp6off;
   2003   1.53    itojun 			else
   2004   1.53    itojun 				optval = in6p->in6p_cksum;
   2005   1.53    itojun 
   2006  1.130    plunky 			error = sockopt_setint(sopt, optval);
   2007   1.53    itojun 			break;
   2008   1.53    itojun 
   2009   1.53    itojun 		default:
   2010   1.53    itojun 			error = EINVAL;
   2011   1.53    itojun 			break;
   2012   1.53    itojun 		}
   2013   1.53    itojun 		break;
   2014   1.53    itojun 
   2015   1.53    itojun 	default:
   2016   1.53    itojun 		error = ENOPROTOOPT;
   2017   1.53    itojun 		break;
   2018   1.53    itojun 	}
   2019   1.53    itojun 
   2020   1.57    itojun 	return (error);
   2021    1.2    itojun }
   2022    1.2    itojun 
   2023   1.97    rpaulo #ifdef RFC2292
   2024    1.2    itojun /*
   2025   1.97    rpaulo  * Set up IP6 options in pcb for insertion in output packets or
   2026   1.97    rpaulo  * specifying behavior of outgoing packets.
   2027    1.2    itojun  */
   2028    1.2    itojun static int
   2029  1.130    plunky ip6_pcbopts(struct ip6_pktopts **pktopt, struct socket *so,
   2030  1.130    plunky     struct sockopt *sopt)
   2031    1.2    itojun {
   2032   1.31    itojun 	struct ip6_pktopts *opt = *pktopt;
   2033  1.130    plunky 	struct mbuf *m;
   2034    1.2    itojun 	int error = 0;
   2035    1.2    itojun 
   2036  1.185     ozaki 	KASSERT(solocked(so));
   2037  1.185     ozaki 
   2038    1.2    itojun 	/* turn off any old options. */
   2039    1.2    itojun 	if (opt) {
   2040   1.97    rpaulo #ifdef DIAGNOSTIC
   2041   1.97    rpaulo 	    if (opt->ip6po_pktinfo || opt->ip6po_nexthop ||
   2042   1.97    rpaulo 		opt->ip6po_hbh || opt->ip6po_dest1 || opt->ip6po_dest2 ||
   2043   1.97    rpaulo 		opt->ip6po_rhinfo.ip6po_rhi_rthdr)
   2044   1.97    rpaulo 		    printf("ip6_pcbopts: all specified options are cleared.\n");
   2045   1.97    rpaulo #endif
   2046   1.97    rpaulo 		ip6_clearpktopts(opt, -1);
   2047  1.134    plunky 	} else {
   2048  1.134    plunky 		opt = malloc(sizeof(*opt), M_IP6OPT, M_NOWAIT);
   2049  1.134    plunky 		if (opt == NULL)
   2050  1.134    plunky 			return (ENOBUFS);
   2051  1.134    plunky 	}
   2052   1.97    rpaulo 	*pktopt = NULL;
   2053    1.2    itojun 
   2054  1.130    plunky 	if (sopt == NULL || sopt->sopt_size == 0) {
   2055    1.2    itojun 		/*
   2056   1.97    rpaulo 		 * Only turning off any previous options, regardless of
   2057   1.97    rpaulo 		 * whether the opt is just created or given.
   2058    1.2    itojun 		 */
   2059   1.59    itojun 		free(opt, M_IP6OPT);
   2060   1.57    itojun 		return (0);
   2061    1.2    itojun 	}
   2062    1.2    itojun 
   2063    1.2    itojun 	/*  set options specified by user. */
   2064  1.130    plunky 	m = sockopt_getmbuf(sopt);
   2065  1.135    plunky 	if (m == NULL) {
   2066  1.135    plunky 		free(opt, M_IP6OPT);
   2067  1.135    plunky 		return (ENOBUFS);
   2068  1.135    plunky 	}
   2069  1.135    plunky 
   2070  1.138      elad 	error = ip6_setpktopts(m, opt, NULL, kauth_cred_get(),
   2071  1.138      elad 	    so->so_proto->pr_protocol);
   2072  1.130    plunky 	m_freem(m);
   2073  1.130    plunky 	if (error != 0) {
   2074   1.97    rpaulo 		ip6_clearpktopts(opt, -1); /* XXX: discard all options */
   2075   1.59    itojun 		free(opt, M_IP6OPT);
   2076   1.57    itojun 		return (error);
   2077    1.2    itojun 	}
   2078    1.2    itojun 	*pktopt = opt;
   2079   1.57    itojun 	return (0);
   2080    1.2    itojun }
   2081   1.97    rpaulo #endif
   2082   1.97    rpaulo 
   2083   1.97    rpaulo /*
   2084   1.97    rpaulo  * initialize ip6_pktopts.  beware that there are non-zero default values in
   2085   1.97    rpaulo  * the struct.
   2086   1.97    rpaulo  */
   2087   1.97    rpaulo void
   2088   1.97    rpaulo ip6_initpktopts(struct ip6_pktopts *opt)
   2089   1.97    rpaulo {
   2090   1.97    rpaulo 
   2091   1.97    rpaulo 	memset(opt, 0, sizeof(*opt));
   2092   1.97    rpaulo 	opt->ip6po_hlim = -1;	/* -1 means default hop limit */
   2093   1.97    rpaulo 	opt->ip6po_tclass = -1;	/* -1 means default traffic class */
   2094   1.97    rpaulo 	opt->ip6po_minmtu = IP6PO_MINMTU_MCASTONLY;
   2095  1.161       roy 	opt->ip6po_prefer_tempaddr = IP6PO_TEMPADDR_SYSTEM;
   2096   1.97    rpaulo }
   2097   1.97    rpaulo 
   2098   1.97    rpaulo #define sin6tosa(sin6)	((struct sockaddr *)(sin6)) /* XXX */
   2099   1.97    rpaulo static int
   2100   1.97    rpaulo ip6_pcbopt(int optname, u_char *buf, int len, struct ip6_pktopts **pktopt,
   2101  1.138      elad     kauth_cred_t cred, int uproto)
   2102   1.97    rpaulo {
   2103   1.97    rpaulo 	struct ip6_pktopts *opt;
   2104   1.97    rpaulo 
   2105   1.97    rpaulo 	if (*pktopt == NULL) {
   2106   1.97    rpaulo 		*pktopt = malloc(sizeof(struct ip6_pktopts), M_IP6OPT,
   2107  1.133    plunky 		    M_NOWAIT);
   2108  1.133    plunky 		if (*pktopt == NULL)
   2109  1.133    plunky 			return (ENOBUFS);
   2110  1.133    plunky 
   2111   1.97    rpaulo 		ip6_initpktopts(*pktopt);
   2112   1.97    rpaulo 	}
   2113   1.97    rpaulo 	opt = *pktopt;
   2114   1.97    rpaulo 
   2115  1.138      elad 	return (ip6_setpktopt(optname, buf, len, opt, cred, 1, 0, uproto));
   2116   1.97    rpaulo }
   2117   1.97    rpaulo 
   2118   1.97    rpaulo static int
   2119  1.130    plunky ip6_getpcbopt(struct ip6_pktopts *pktopt, int optname, struct sockopt *sopt)
   2120   1.97    rpaulo {
   2121   1.97    rpaulo 	void *optdata = NULL;
   2122   1.97    rpaulo 	int optdatalen = 0;
   2123   1.97    rpaulo 	struct ip6_ext *ip6e;
   2124   1.97    rpaulo 	int error = 0;
   2125   1.97    rpaulo 	struct in6_pktinfo null_pktinfo;
   2126   1.97    rpaulo 	int deftclass = 0, on;
   2127   1.97    rpaulo 	int defminmtu = IP6PO_MINMTU_MCASTONLY;
   2128  1.161       roy 	int defpreftemp = IP6PO_TEMPADDR_SYSTEM;
   2129   1.97    rpaulo 
   2130   1.97    rpaulo 	switch (optname) {
   2131   1.97    rpaulo 	case IPV6_PKTINFO:
   2132   1.97    rpaulo 		if (pktopt && pktopt->ip6po_pktinfo)
   2133   1.97    rpaulo 			optdata = (void *)pktopt->ip6po_pktinfo;
   2134   1.97    rpaulo 		else {
   2135   1.97    rpaulo 			/* XXX: we don't have to do this every time... */
   2136   1.97    rpaulo 			memset(&null_pktinfo, 0, sizeof(null_pktinfo));
   2137   1.97    rpaulo 			optdata = (void *)&null_pktinfo;
   2138   1.97    rpaulo 		}
   2139   1.97    rpaulo 		optdatalen = sizeof(struct in6_pktinfo);
   2140   1.97    rpaulo 		break;
   2141   1.97    rpaulo 	case IPV6_OTCLASS:
   2142   1.97    rpaulo 		/* XXX */
   2143   1.97    rpaulo 		return (EINVAL);
   2144   1.97    rpaulo 	case IPV6_TCLASS:
   2145   1.97    rpaulo 		if (pktopt && pktopt->ip6po_tclass >= 0)
   2146   1.97    rpaulo 			optdata = (void *)&pktopt->ip6po_tclass;
   2147   1.97    rpaulo 		else
   2148   1.97    rpaulo 			optdata = (void *)&deftclass;
   2149   1.97    rpaulo 		optdatalen = sizeof(int);
   2150   1.97    rpaulo 		break;
   2151   1.97    rpaulo 	case IPV6_HOPOPTS:
   2152   1.97    rpaulo 		if (pktopt && pktopt->ip6po_hbh) {
   2153   1.97    rpaulo 			optdata = (void *)pktopt->ip6po_hbh;
   2154   1.97    rpaulo 			ip6e = (struct ip6_ext *)pktopt->ip6po_hbh;
   2155   1.97    rpaulo 			optdatalen = (ip6e->ip6e_len + 1) << 3;
   2156   1.97    rpaulo 		}
   2157   1.97    rpaulo 		break;
   2158   1.97    rpaulo 	case IPV6_RTHDR:
   2159   1.97    rpaulo 		if (pktopt && pktopt->ip6po_rthdr) {
   2160   1.97    rpaulo 			optdata = (void *)pktopt->ip6po_rthdr;
   2161   1.97    rpaulo 			ip6e = (struct ip6_ext *)pktopt->ip6po_rthdr;
   2162   1.97    rpaulo 			optdatalen = (ip6e->ip6e_len + 1) << 3;
   2163   1.97    rpaulo 		}
   2164   1.97    rpaulo 		break;
   2165   1.97    rpaulo 	case IPV6_RTHDRDSTOPTS:
   2166   1.97    rpaulo 		if (pktopt && pktopt->ip6po_dest1) {
   2167   1.97    rpaulo 			optdata = (void *)pktopt->ip6po_dest1;
   2168   1.97    rpaulo 			ip6e = (struct ip6_ext *)pktopt->ip6po_dest1;
   2169   1.97    rpaulo 			optdatalen = (ip6e->ip6e_len + 1) << 3;
   2170   1.97    rpaulo 		}
   2171   1.97    rpaulo 		break;
   2172   1.97    rpaulo 	case IPV6_DSTOPTS:
   2173   1.97    rpaulo 		if (pktopt && pktopt->ip6po_dest2) {
   2174   1.97    rpaulo 			optdata = (void *)pktopt->ip6po_dest2;
   2175   1.97    rpaulo 			ip6e = (struct ip6_ext *)pktopt->ip6po_dest2;
   2176   1.97    rpaulo 			optdatalen = (ip6e->ip6e_len + 1) << 3;
   2177   1.97    rpaulo 		}
   2178   1.97    rpaulo 		break;
   2179   1.97    rpaulo 	case IPV6_NEXTHOP:
   2180   1.97    rpaulo 		if (pktopt && pktopt->ip6po_nexthop) {
   2181   1.97    rpaulo 			optdata = (void *)pktopt->ip6po_nexthop;
   2182   1.97    rpaulo 			optdatalen = pktopt->ip6po_nexthop->sa_len;
   2183   1.97    rpaulo 		}
   2184   1.97    rpaulo 		break;
   2185   1.97    rpaulo 	case IPV6_USE_MIN_MTU:
   2186   1.97    rpaulo 		if (pktopt)
   2187   1.97    rpaulo 			optdata = (void *)&pktopt->ip6po_minmtu;
   2188   1.97    rpaulo 		else
   2189   1.97    rpaulo 			optdata = (void *)&defminmtu;
   2190   1.97    rpaulo 		optdatalen = sizeof(int);
   2191   1.97    rpaulo 		break;
   2192   1.97    rpaulo 	case IPV6_DONTFRAG:
   2193   1.97    rpaulo 		if (pktopt && ((pktopt->ip6po_flags) & IP6PO_DONTFRAG))
   2194   1.97    rpaulo 			on = 1;
   2195   1.97    rpaulo 		else
   2196   1.97    rpaulo 			on = 0;
   2197   1.97    rpaulo 		optdata = (void *)&on;
   2198   1.97    rpaulo 		optdatalen = sizeof(on);
   2199   1.97    rpaulo 		break;
   2200  1.161       roy 	case IPV6_PREFER_TEMPADDR:
   2201  1.161       roy 		if (pktopt)
   2202  1.161       roy 			optdata = (void *)&pktopt->ip6po_prefer_tempaddr;
   2203  1.161       roy 		else
   2204  1.161       roy 			optdata = (void *)&defpreftemp;
   2205  1.161       roy 		optdatalen = sizeof(int);
   2206  1.163  christos 		break;
   2207   1.97    rpaulo 	default:		/* should not happen */
   2208   1.97    rpaulo #ifdef DIAGNOSTIC
   2209   1.97    rpaulo 		panic("ip6_getpcbopt: unexpected option\n");
   2210   1.97    rpaulo #endif
   2211   1.97    rpaulo 		return (ENOPROTOOPT);
   2212   1.97    rpaulo 	}
   2213   1.97    rpaulo 
   2214  1.130    plunky 	error = sockopt_set(sopt, optdata, optdatalen);
   2215   1.97    rpaulo 
   2216   1.97    rpaulo 	return (error);
   2217   1.97    rpaulo }
   2218   1.97    rpaulo 
   2219   1.97    rpaulo void
   2220   1.97    rpaulo ip6_clearpktopts(struct ip6_pktopts *pktopt, int optname)
   2221   1.97    rpaulo {
   2222   1.97    rpaulo 	if (optname == -1 || optname == IPV6_PKTINFO) {
   2223   1.97    rpaulo 		if (pktopt->ip6po_pktinfo)
   2224   1.97    rpaulo 			free(pktopt->ip6po_pktinfo, M_IP6OPT);
   2225   1.97    rpaulo 		pktopt->ip6po_pktinfo = NULL;
   2226   1.97    rpaulo 	}
   2227   1.97    rpaulo 	if (optname == -1 || optname == IPV6_HOPLIMIT)
   2228   1.97    rpaulo 		pktopt->ip6po_hlim = -1;
   2229   1.97    rpaulo 	if (optname == -1 || optname == IPV6_TCLASS)
   2230   1.97    rpaulo 		pktopt->ip6po_tclass = -1;
   2231   1.97    rpaulo 	if (optname == -1 || optname == IPV6_NEXTHOP) {
   2232  1.118    dyoung 		rtcache_free(&pktopt->ip6po_nextroute);
   2233   1.97    rpaulo 		if (pktopt->ip6po_nexthop)
   2234   1.97    rpaulo 			free(pktopt->ip6po_nexthop, M_IP6OPT);
   2235   1.97    rpaulo 		pktopt->ip6po_nexthop = NULL;
   2236   1.97    rpaulo 	}
   2237   1.97    rpaulo 	if (optname == -1 || optname == IPV6_HOPOPTS) {
   2238   1.97    rpaulo 		if (pktopt->ip6po_hbh)
   2239   1.97    rpaulo 			free(pktopt->ip6po_hbh, M_IP6OPT);
   2240   1.97    rpaulo 		pktopt->ip6po_hbh = NULL;
   2241   1.97    rpaulo 	}
   2242   1.97    rpaulo 	if (optname == -1 || optname == IPV6_RTHDRDSTOPTS) {
   2243   1.97    rpaulo 		if (pktopt->ip6po_dest1)
   2244   1.97    rpaulo 			free(pktopt->ip6po_dest1, M_IP6OPT);
   2245   1.97    rpaulo 		pktopt->ip6po_dest1 = NULL;
   2246   1.97    rpaulo 	}
   2247   1.97    rpaulo 	if (optname == -1 || optname == IPV6_RTHDR) {
   2248   1.97    rpaulo 		if (pktopt->ip6po_rhinfo.ip6po_rhi_rthdr)
   2249   1.97    rpaulo 			free(pktopt->ip6po_rhinfo.ip6po_rhi_rthdr, M_IP6OPT);
   2250   1.97    rpaulo 		pktopt->ip6po_rhinfo.ip6po_rhi_rthdr = NULL;
   2251  1.118    dyoung 		rtcache_free(&pktopt->ip6po_route);
   2252   1.97    rpaulo 	}
   2253   1.97    rpaulo 	if (optname == -1 || optname == IPV6_DSTOPTS) {
   2254   1.97    rpaulo 		if (pktopt->ip6po_dest2)
   2255   1.97    rpaulo 			free(pktopt->ip6po_dest2, M_IP6OPT);
   2256   1.97    rpaulo 		pktopt->ip6po_dest2 = NULL;
   2257   1.97    rpaulo 	}
   2258   1.97    rpaulo }
   2259   1.97    rpaulo 
   2260   1.97    rpaulo #define PKTOPT_EXTHDRCPY(type) 					\
   2261   1.97    rpaulo do {								\
   2262   1.97    rpaulo 	if (src->type) {					\
   2263   1.97    rpaulo 		int hlen = (((struct ip6_ext *)src->type)->ip6e_len + 1) << 3;\
   2264   1.97    rpaulo 		dst->type = malloc(hlen, M_IP6OPT, canwait);	\
   2265  1.144  drochner 		if (dst->type == NULL)				\
   2266   1.97    rpaulo 			goto bad;				\
   2267   1.97    rpaulo 		memcpy(dst->type, src->type, hlen);		\
   2268   1.97    rpaulo 	}							\
   2269   1.97    rpaulo } while (/*CONSTCOND*/ 0)
   2270   1.97    rpaulo 
   2271   1.97    rpaulo static int
   2272   1.97    rpaulo copypktopts(struct ip6_pktopts *dst, struct ip6_pktopts *src, int canwait)
   2273   1.97    rpaulo {
   2274   1.97    rpaulo 	dst->ip6po_hlim = src->ip6po_hlim;
   2275   1.97    rpaulo 	dst->ip6po_tclass = src->ip6po_tclass;
   2276   1.97    rpaulo 	dst->ip6po_flags = src->ip6po_flags;
   2277  1.162       roy 	dst->ip6po_minmtu = src->ip6po_minmtu;
   2278  1.161       roy 	dst->ip6po_prefer_tempaddr = src->ip6po_prefer_tempaddr;
   2279   1.97    rpaulo 	if (src->ip6po_pktinfo) {
   2280   1.97    rpaulo 		dst->ip6po_pktinfo = malloc(sizeof(*dst->ip6po_pktinfo),
   2281   1.97    rpaulo 		    M_IP6OPT, canwait);
   2282  1.144  drochner 		if (dst->ip6po_pktinfo == NULL)
   2283   1.97    rpaulo 			goto bad;
   2284   1.97    rpaulo 		*dst->ip6po_pktinfo = *src->ip6po_pktinfo;
   2285   1.97    rpaulo 	}
   2286   1.97    rpaulo 	if (src->ip6po_nexthop) {
   2287   1.97    rpaulo 		dst->ip6po_nexthop = malloc(src->ip6po_nexthop->sa_len,
   2288   1.97    rpaulo 		    M_IP6OPT, canwait);
   2289  1.144  drochner 		if (dst->ip6po_nexthop == NULL)
   2290   1.97    rpaulo 			goto bad;
   2291   1.97    rpaulo 		memcpy(dst->ip6po_nexthop, src->ip6po_nexthop,
   2292   1.97    rpaulo 		    src->ip6po_nexthop->sa_len);
   2293   1.97    rpaulo 	}
   2294   1.97    rpaulo 	PKTOPT_EXTHDRCPY(ip6po_hbh);
   2295   1.97    rpaulo 	PKTOPT_EXTHDRCPY(ip6po_dest1);
   2296   1.97    rpaulo 	PKTOPT_EXTHDRCPY(ip6po_dest2);
   2297   1.97    rpaulo 	PKTOPT_EXTHDRCPY(ip6po_rthdr); /* not copy the cached route */
   2298   1.97    rpaulo 	return (0);
   2299   1.97    rpaulo 
   2300   1.97    rpaulo   bad:
   2301   1.97    rpaulo 	if (dst->ip6po_pktinfo) free(dst->ip6po_pktinfo, M_IP6OPT);
   2302   1.97    rpaulo 	if (dst->ip6po_nexthop) free(dst->ip6po_nexthop, M_IP6OPT);
   2303   1.97    rpaulo 	if (dst->ip6po_hbh) free(dst->ip6po_hbh, M_IP6OPT);
   2304   1.97    rpaulo 	if (dst->ip6po_dest1) free(dst->ip6po_dest1, M_IP6OPT);
   2305   1.97    rpaulo 	if (dst->ip6po_dest2) free(dst->ip6po_dest2, M_IP6OPT);
   2306   1.97    rpaulo 	if (dst->ip6po_rthdr) free(dst->ip6po_rthdr, M_IP6OPT);
   2307   1.97    rpaulo 
   2308   1.97    rpaulo 	return (ENOBUFS);
   2309   1.97    rpaulo }
   2310   1.97    rpaulo #undef PKTOPT_EXTHDRCPY
   2311   1.97    rpaulo 
   2312   1.97    rpaulo struct ip6_pktopts *
   2313   1.97    rpaulo ip6_copypktopts(struct ip6_pktopts *src, int canwait)
   2314   1.97    rpaulo {
   2315   1.97    rpaulo 	int error;
   2316   1.97    rpaulo 	struct ip6_pktopts *dst;
   2317   1.97    rpaulo 
   2318   1.97    rpaulo 	dst = malloc(sizeof(*dst), M_IP6OPT, canwait);
   2319  1.144  drochner 	if (dst == NULL)
   2320   1.97    rpaulo 		return (NULL);
   2321   1.97    rpaulo 	ip6_initpktopts(dst);
   2322   1.97    rpaulo 
   2323   1.97    rpaulo 	if ((error = copypktopts(dst, src, canwait)) != 0) {
   2324   1.97    rpaulo 		free(dst, M_IP6OPT);
   2325   1.97    rpaulo 		return (NULL);
   2326   1.97    rpaulo 	}
   2327   1.97    rpaulo 
   2328   1.97    rpaulo 	return (dst);
   2329   1.97    rpaulo }
   2330   1.97    rpaulo 
   2331   1.97    rpaulo void
   2332   1.97    rpaulo ip6_freepcbopts(struct ip6_pktopts *pktopt)
   2333   1.97    rpaulo {
   2334   1.97    rpaulo 	if (pktopt == NULL)
   2335   1.97    rpaulo 		return;
   2336   1.97    rpaulo 
   2337   1.97    rpaulo 	ip6_clearpktopts(pktopt, -1);
   2338   1.97    rpaulo 
   2339   1.97    rpaulo 	free(pktopt, M_IP6OPT);
   2340   1.97    rpaulo }
   2341    1.2    itojun 
   2342  1.160  christos int
   2343  1.189     ozaki ip6_get_membership(const struct sockopt *sopt, struct ifnet **ifp,
   2344  1.189     ozaki     struct psref *psref, void *v, size_t l)
   2345  1.160  christos {
   2346  1.160  christos 	struct ipv6_mreq mreq;
   2347  1.160  christos 	int error;
   2348  1.160  christos 	struct in6_addr *ia = &mreq.ipv6mr_multiaddr;
   2349  1.160  christos 	struct in_addr *ia4 = (void *)&ia->s6_addr32[3];
   2350  1.189     ozaki 
   2351  1.160  christos 	error = sockopt_get(sopt, &mreq, sizeof(mreq));
   2352  1.160  christos 	if (error != 0)
   2353  1.160  christos 		return error;
   2354  1.160  christos 
   2355  1.160  christos 	if (IN6_IS_ADDR_UNSPECIFIED(ia)) {
   2356  1.160  christos 		/*
   2357  1.160  christos 		 * We use the unspecified address to specify to accept
   2358  1.160  christos 		 * all multicast addresses. Only super user is allowed
   2359  1.160  christos 		 * to do this.
   2360  1.160  christos 		 */
   2361  1.160  christos 		if (kauth_authorize_network(curlwp->l_cred, KAUTH_NETWORK_IPV6,
   2362  1.160  christos 		    KAUTH_REQ_NETWORK_IPV6_JOIN_MULTICAST, NULL, NULL, NULL))
   2363  1.160  christos 			return EACCES;
   2364  1.160  christos 	} else if (IN6_IS_ADDR_V4MAPPED(ia)) {
   2365  1.160  christos 		// Don't bother if we are not going to use ifp.
   2366  1.160  christos 		if (l == sizeof(*ia)) {
   2367  1.160  christos 			memcpy(v, ia, l);
   2368  1.160  christos 			return 0;
   2369  1.160  christos 		}
   2370  1.160  christos 	} else if (!IN6_IS_ADDR_MULTICAST(ia)) {
   2371  1.160  christos 		return EINVAL;
   2372  1.160  christos 	}
   2373  1.160  christos 
   2374  1.160  christos 	/*
   2375  1.160  christos 	 * If no interface was explicitly specified, choose an
   2376  1.160  christos 	 * appropriate one according to the given multicast address.
   2377  1.160  christos 	 */
   2378  1.160  christos 	if (mreq.ipv6mr_interface == 0) {
   2379  1.160  christos 		struct rtentry *rt;
   2380  1.160  christos 		union {
   2381  1.160  christos 			struct sockaddr		dst;
   2382  1.160  christos 			struct sockaddr_in	dst4;
   2383  1.160  christos 			struct sockaddr_in6	dst6;
   2384  1.160  christos 		} u;
   2385  1.160  christos 		struct route ro;
   2386  1.160  christos 
   2387  1.160  christos 		/*
   2388  1.160  christos 		 * Look up the routing table for the
   2389  1.160  christos 		 * address, and choose the outgoing interface.
   2390  1.160  christos 		 *   XXX: is it a good approach?
   2391  1.160  christos 		 */
   2392  1.160  christos 		memset(&ro, 0, sizeof(ro));
   2393  1.160  christos 		if (IN6_IS_ADDR_V4MAPPED(ia))
   2394  1.160  christos 			sockaddr_in_init(&u.dst4, ia4, 0);
   2395  1.160  christos 		else
   2396  1.160  christos 			sockaddr_in6_init(&u.dst6, ia, 0, 0, 0);
   2397  1.165     ozaki 		error = rtcache_setdst(&ro, &u.dst);
   2398  1.165     ozaki 		if (error != 0)
   2399  1.165     ozaki 			return error;
   2400  1.179     ozaki 		rt = rtcache_init(&ro);
   2401  1.189     ozaki 		*ifp = rt != NULL ?
   2402  1.189     ozaki 		    if_get_byindex(rt->rt_ifp->if_index, psref) : NULL;
   2403  1.179     ozaki 		rtcache_unref(rt, &ro);
   2404  1.160  christos 		rtcache_free(&ro);
   2405  1.160  christos 	} else {
   2406  1.160  christos 		/*
   2407  1.160  christos 		 * If the interface is specified, validate it.
   2408  1.160  christos 		 */
   2409  1.189     ozaki 		*ifp = if_get_byindex(mreq.ipv6mr_interface, psref);
   2410  1.189     ozaki 		if (*ifp == NULL)
   2411  1.160  christos 			return ENXIO;	/* XXX EINVAL? */
   2412  1.160  christos 	}
   2413  1.160  christos 	if (sizeof(*ia) == l)
   2414  1.160  christos 		memcpy(v, ia, l);
   2415  1.160  christos 	else
   2416  1.160  christos 		memcpy(v, ia4, l);
   2417  1.160  christos 	return 0;
   2418  1.160  christos }
   2419  1.160  christos 
   2420    1.2    itojun /*
   2421    1.2    itojun  * Set the IP6 multicast options in response to user setsockopt().
   2422    1.2    itojun  */
   2423    1.2    itojun static int
   2424  1.160  christos ip6_setmoptions(const struct sockopt *sopt, struct in6pcb *in6p)
   2425    1.2    itojun {
   2426    1.2    itojun 	int error = 0;
   2427    1.2    itojun 	u_int loop, ifindex;
   2428  1.132    plunky 	struct ipv6_mreq mreq;
   2429  1.160  christos 	struct in6_addr ia;
   2430    1.2    itojun 	struct ifnet *ifp;
   2431  1.160  christos 	struct ip6_moptions *im6o = in6p->in6p_moptions;
   2432    1.2    itojun 	struct in6_multi_mship *imm;
   2433    1.2    itojun 
   2434  1.190     ozaki 	KASSERT(in6p_locked(in6p));
   2435  1.185     ozaki 
   2436    1.2    itojun 	if (im6o == NULL) {
   2437    1.2    itojun 		/*
   2438    1.2    itojun 		 * No multicast option buffer attached to the pcb;
   2439    1.2    itojun 		 * allocate one and initialize to default values.
   2440    1.2    itojun 		 */
   2441  1.132    plunky 		im6o = malloc(sizeof(*im6o), M_IPMOPTS, M_NOWAIT);
   2442    1.2    itojun 		if (im6o == NULL)
   2443   1.57    itojun 			return (ENOBUFS);
   2444  1.160  christos 		in6p->in6p_moptions = im6o;
   2445  1.168     ozaki 		im6o->im6o_multicast_if_index = 0;
   2446    1.2    itojun 		im6o->im6o_multicast_hlim = ip6_defmcasthlim;
   2447    1.2    itojun 		im6o->im6o_multicast_loop = IPV6_DEFAULT_MULTICAST_LOOP;
   2448    1.2    itojun 		LIST_INIT(&im6o->im6o_memberships);
   2449    1.2    itojun 	}
   2450    1.2    itojun 
   2451  1.132    plunky 	switch (sopt->sopt_name) {
   2452    1.2    itojun 
   2453  1.189     ozaki 	case IPV6_MULTICAST_IF: {
   2454  1.189     ozaki 		int s;
   2455    1.2    itojun 		/*
   2456    1.2    itojun 		 * Select the interface for outgoing multicast packets.
   2457    1.2    itojun 		 */
   2458  1.132    plunky 		error = sockopt_get(sopt, &ifindex, sizeof(ifindex));
   2459  1.132    plunky 		if (error != 0)
   2460    1.2    itojun 			break;
   2461  1.132    plunky 
   2462  1.189     ozaki 		s = pserialize_read_enter();
   2463   1.87  drochner 		if (ifindex != 0) {
   2464  1.156     rmind 			if ((ifp = if_byindex(ifindex)) == NULL) {
   2465  1.189     ozaki 				pserialize_read_exit(s);
   2466   1.87  drochner 				error = ENXIO;	/* XXX EINVAL? */
   2467   1.87  drochner 				break;
   2468   1.87  drochner 			}
   2469   1.87  drochner 			if ((ifp->if_flags & IFF_MULTICAST) == 0) {
   2470  1.189     ozaki 				pserialize_read_exit(s);
   2471   1.87  drochner 				error = EADDRNOTAVAIL;
   2472   1.87  drochner 				break;
   2473   1.87  drochner 			}
   2474   1.87  drochner 		} else
   2475   1.87  drochner 			ifp = NULL;
   2476  1.168     ozaki 		im6o->im6o_multicast_if_index = if_get_index(ifp);
   2477  1.189     ozaki 		pserialize_read_exit(s);
   2478    1.2    itojun 		break;
   2479  1.189     ozaki 	    }
   2480    1.2    itojun 
   2481    1.2    itojun 	case IPV6_MULTICAST_HOPS:
   2482    1.2    itojun 	    {
   2483    1.2    itojun 		/*
   2484    1.2    itojun 		 * Set the IP6 hoplimit for outgoing multicast packets.
   2485    1.2    itojun 		 */
   2486    1.2    itojun 		int optval;
   2487  1.132    plunky 
   2488  1.132    plunky 		error = sockopt_getint(sopt, &optval);
   2489  1.132    plunky 		if (error != 0)
   2490    1.2    itojun 			break;
   2491  1.132    plunky 
   2492    1.2    itojun 		if (optval < -1 || optval >= 256)
   2493    1.2    itojun 			error = EINVAL;
   2494    1.2    itojun 		else if (optval == -1)
   2495    1.2    itojun 			im6o->im6o_multicast_hlim = ip6_defmcasthlim;
   2496    1.2    itojun 		else
   2497    1.2    itojun 			im6o->im6o_multicast_hlim = optval;
   2498    1.2    itojun 		break;
   2499    1.2    itojun 	    }
   2500    1.2    itojun 
   2501    1.2    itojun 	case IPV6_MULTICAST_LOOP:
   2502    1.2    itojun 		/*
   2503    1.2    itojun 		 * Set the loopback flag for outgoing multicast packets.
   2504    1.2    itojun 		 * Must be zero or one.
   2505    1.2    itojun 		 */
   2506  1.132    plunky 		error = sockopt_get(sopt, &loop, sizeof(loop));
   2507  1.132    plunky 		if (error != 0)
   2508   1.25    itojun 			break;
   2509   1.25    itojun 		if (loop > 1) {
   2510    1.2    itojun 			error = EINVAL;
   2511    1.2    itojun 			break;
   2512    1.2    itojun 		}
   2513    1.2    itojun 		im6o->im6o_multicast_loop = loop;
   2514    1.2    itojun 		break;
   2515    1.2    itojun 
   2516  1.189     ozaki 	case IPV6_JOIN_GROUP: {
   2517  1.189     ozaki 		int bound;
   2518  1.189     ozaki 		struct psref psref;
   2519    1.2    itojun 		/*
   2520    1.2    itojun 		 * Add a multicast group membership.
   2521    1.2    itojun 		 * Group must be a valid IP6 multicast address.
   2522    1.2    itojun 		 */
   2523  1.189     ozaki 		bound = curlwp_bind();
   2524  1.192     ozaki 		ifp = NULL;
   2525  1.189     ozaki 		error = ip6_get_membership(sopt, &ifp, &psref, &ia, sizeof(ia));
   2526  1.189     ozaki 		if (error != 0) {
   2527  1.192     ozaki 			KASSERT(ifp == NULL);
   2528  1.189     ozaki 			curlwp_bindx(bound);
   2529  1.160  christos 			return error;
   2530  1.189     ozaki 		}
   2531  1.132    plunky 
   2532  1.160  christos 		if (IN6_IS_ADDR_V4MAPPED(&ia)) {
   2533  1.160  christos 			error = ip_setmoptions(&in6p->in6p_v4moptions, sopt);
   2534  1.189     ozaki 			goto put_break;
   2535    1.2    itojun 		}
   2536    1.2    itojun 		/*
   2537    1.2    itojun 		 * See if we found an interface, and confirm that it
   2538    1.2    itojun 		 * supports multicast
   2539    1.2    itojun 		 */
   2540    1.2    itojun 		if (ifp == NULL || (ifp->if_flags & IFF_MULTICAST) == 0) {
   2541    1.2    itojun 			error = EADDRNOTAVAIL;
   2542  1.189     ozaki 			goto put_break;
   2543    1.2    itojun 		}
   2544   1.94    rpaulo 
   2545  1.160  christos 		if (in6_setscope(&ia, ifp, NULL)) {
   2546   1.94    rpaulo 			error = EADDRNOTAVAIL; /* XXX: should not happen */
   2547  1.189     ozaki 			goto put_break;
   2548    1.2    itojun 		}
   2549   1.94    rpaulo 
   2550    1.2    itojun 		/*
   2551    1.2    itojun 		 * See if the membership already exists.
   2552    1.2    itojun 		 */
   2553  1.188     ozaki 		LIST_FOREACH(imm, &im6o->im6o_memberships, i6mm_chain) {
   2554    1.2    itojun 			if (imm->i6mm_maddr->in6m_ifp == ifp &&
   2555    1.2    itojun 			    IN6_ARE_ADDR_EQUAL(&imm->i6mm_maddr->in6m_addr,
   2556  1.160  christos 			    &ia))
   2557  1.189     ozaki 				goto put_break;
   2558  1.188     ozaki 		}
   2559    1.2    itojun 		if (imm != NULL) {
   2560    1.2    itojun 			error = EADDRINUSE;
   2561  1.189     ozaki 			goto put_break;
   2562    1.2    itojun 		}
   2563    1.2    itojun 		/*
   2564    1.2    itojun 		 * Everything looks good; add a new record to the multicast
   2565    1.2    itojun 		 * address list for the given interface.
   2566    1.2    itojun 		 */
   2567  1.160  christos 		imm = in6_joingroup(ifp, &ia, &error, 0);
   2568   1.95    rpaulo 		if (imm == NULL)
   2569  1.189     ozaki 			goto put_break;
   2570    1.2    itojun 		LIST_INSERT_HEAD(&im6o->im6o_memberships, imm, i6mm_chain);
   2571  1.189     ozaki 	    put_break:
   2572  1.189     ozaki 		if_put(ifp, &psref);
   2573  1.189     ozaki 		curlwp_bindx(bound);
   2574    1.2    itojun 		break;
   2575  1.189     ozaki 	    }
   2576    1.2    itojun 
   2577  1.196     ozaki 	case IPV6_LEAVE_GROUP: {
   2578    1.2    itojun 		/*
   2579    1.2    itojun 		 * Drop a multicast group membership.
   2580    1.2    itojun 		 * Group must be a valid IP6 multicast address.
   2581    1.2    itojun 		 */
   2582  1.132    plunky 		error = sockopt_get(sopt, &mreq, sizeof(mreq));
   2583  1.132    plunky 		if (error != 0)
   2584    1.2    itojun 			break;
   2585   1.94    rpaulo 
   2586  1.160  christos 		if (IN6_IS_ADDR_V4MAPPED(&mreq.ipv6mr_multiaddr)) {
   2587  1.160  christos 			error = ip_setmoptions(&in6p->in6p_v4moptions, sopt);
   2588  1.160  christos 			break;
   2589  1.160  christos 		}
   2590    1.2    itojun 		/*
   2591    1.2    itojun 		 * If an interface address was specified, get a pointer
   2592    1.2    itojun 		 * to its ifnet structure.
   2593    1.2    itojun 		 */
   2594  1.132    plunky 		if (mreq.ipv6mr_interface != 0) {
   2595  1.156     rmind 			if ((ifp = if_byindex(mreq.ipv6mr_interface)) == NULL) {
   2596   1.87  drochner 				error = ENXIO;	/* XXX EINVAL? */
   2597   1.87  drochner 				break;
   2598   1.87  drochner 			}
   2599   1.87  drochner 		} else
   2600   1.87  drochner 			ifp = NULL;
   2601   1.94    rpaulo 
   2602   1.94    rpaulo 		/* Fill in the scope zone ID */
   2603   1.94    rpaulo 		if (ifp) {
   2604  1.132    plunky 			if (in6_setscope(&mreq.ipv6mr_multiaddr, ifp, NULL)) {
   2605   1.94    rpaulo 				/* XXX: should not happen */
   2606   1.94    rpaulo 				error = EADDRNOTAVAIL;
   2607   1.94    rpaulo 				break;
   2608   1.94    rpaulo 			}
   2609  1.132    plunky 		} else if (mreq.ipv6mr_interface != 0) {
   2610   1.94    rpaulo 			/*
   2611   1.94    rpaulo 			 * XXX: This case would happens when the (positive)
   2612   1.94    rpaulo 			 * index is in the valid range, but the corresponding
   2613   1.94    rpaulo 			 * interface has been detached dynamically.  The above
   2614   1.94    rpaulo 			 * check probably avoids such case to happen here, but
   2615   1.94    rpaulo 			 * we check it explicitly for safety.
   2616   1.94    rpaulo 			 */
   2617   1.94    rpaulo 			error = EADDRNOTAVAIL;
   2618  1.197      maxv 			break;
   2619   1.94    rpaulo 		} else {	/* ipv6mr_interface == 0 */
   2620   1.94    rpaulo 			struct sockaddr_in6 sa6_mc;
   2621   1.94    rpaulo 
   2622   1.94    rpaulo 			/*
   2623   1.94    rpaulo 			 * The API spec says as follows:
   2624   1.94    rpaulo 			 *  If the interface index is specified as 0, the
   2625   1.94    rpaulo 			 *  system may choose a multicast group membership to
   2626   1.94    rpaulo 			 *  drop by matching the multicast address only.
   2627   1.94    rpaulo 			 * On the other hand, we cannot disambiguate the scope
   2628   1.94    rpaulo 			 * zone unless an interface is provided.  Thus, we
   2629   1.94    rpaulo 			 * check if there's ambiguity with the default scope
   2630   1.94    rpaulo 			 * zone as the last resort.
   2631   1.94    rpaulo 			 */
   2632  1.132    plunky 			sockaddr_in6_init(&sa6_mc, &mreq.ipv6mr_multiaddr,
   2633  1.123    dyoung 			    0, 0, 0);
   2634   1.94    rpaulo 			error = sa6_embedscope(&sa6_mc, ip6_use_defzone);
   2635   1.94    rpaulo 			if (error != 0)
   2636   1.94    rpaulo 				break;
   2637  1.132    plunky 			mreq.ipv6mr_multiaddr = sa6_mc.sin6_addr;
   2638    1.2    itojun 		}
   2639   1.94    rpaulo 
   2640    1.2    itojun 		/*
   2641    1.2    itojun 		 * Find the membership in the membership list.
   2642    1.2    itojun 		 */
   2643  1.188     ozaki 		LIST_FOREACH(imm, &im6o->im6o_memberships, i6mm_chain) {
   2644   1.49    itojun 			if ((ifp == NULL || imm->i6mm_maddr->in6m_ifp == ifp) &&
   2645    1.2    itojun 			    IN6_ARE_ADDR_EQUAL(&imm->i6mm_maddr->in6m_addr,
   2646  1.132    plunky 			    &mreq.ipv6mr_multiaddr))
   2647    1.2    itojun 				break;
   2648    1.2    itojun 		}
   2649    1.2    itojun 		if (imm == NULL) {
   2650    1.2    itojun 			/* Unable to resolve interface */
   2651    1.2    itojun 			error = EADDRNOTAVAIL;
   2652    1.2    itojun 			break;
   2653    1.2    itojun 		}
   2654    1.2    itojun 		/*
   2655    1.2    itojun 		 * Give up the multicast address record to which the
   2656    1.2    itojun 		 * membership points.
   2657    1.2    itojun 		 */
   2658    1.2    itojun 		LIST_REMOVE(imm, i6mm_chain);
   2659   1.43    itojun 		in6_leavegroup(imm);
   2660  1.196     ozaki 		/* in6m_ifp should not leave thanks to in6p_lock */
   2661    1.2    itojun 		break;
   2662  1.196     ozaki 	    }
   2663    1.2    itojun 
   2664    1.2    itojun 	default:
   2665    1.2    itojun 		error = EOPNOTSUPP;
   2666    1.2    itojun 		break;
   2667    1.2    itojun 	}
   2668    1.2    itojun 
   2669    1.2    itojun 	/*
   2670    1.2    itojun 	 * If all options have default values, no need to keep the mbuf.
   2671    1.2    itojun 	 */
   2672  1.168     ozaki 	if (im6o->im6o_multicast_if_index == 0 &&
   2673    1.2    itojun 	    im6o->im6o_multicast_hlim == ip6_defmcasthlim &&
   2674    1.2    itojun 	    im6o->im6o_multicast_loop == IPV6_DEFAULT_MULTICAST_LOOP &&
   2675  1.188     ozaki 	    LIST_EMPTY(&im6o->im6o_memberships)) {
   2676  1.160  christos 		free(in6p->in6p_moptions, M_IPMOPTS);
   2677  1.160  christos 		in6p->in6p_moptions = NULL;
   2678    1.2    itojun 	}
   2679    1.2    itojun 
   2680   1.57    itojun 	return (error);
   2681    1.2    itojun }
   2682    1.2    itojun 
   2683    1.2    itojun /*
   2684    1.2    itojun  * Return the IP6 multicast options in response to user getsockopt().
   2685    1.2    itojun  */
   2686    1.2    itojun static int
   2687  1.160  christos ip6_getmoptions(struct sockopt *sopt, struct in6pcb *in6p)
   2688    1.2    itojun {
   2689  1.132    plunky 	u_int optval;
   2690  1.132    plunky 	int error;
   2691  1.160  christos 	struct ip6_moptions *im6o = in6p->in6p_moptions;
   2692    1.2    itojun 
   2693  1.132    plunky 	switch (sopt->sopt_name) {
   2694    1.2    itojun 	case IPV6_MULTICAST_IF:
   2695  1.168     ozaki 		if (im6o == NULL || im6o->im6o_multicast_if_index == 0)
   2696  1.132    plunky 			optval = 0;
   2697    1.2    itojun 		else
   2698  1.168     ozaki 			optval = im6o->im6o_multicast_if_index;
   2699  1.132    plunky 
   2700  1.132    plunky 		error = sockopt_set(sopt, &optval, sizeof(optval));
   2701  1.132    plunky 		break;
   2702    1.2    itojun 
   2703    1.2    itojun 	case IPV6_MULTICAST_HOPS:
   2704    1.2    itojun 		if (im6o == NULL)
   2705  1.132    plunky 			optval = ip6_defmcasthlim;
   2706    1.2    itojun 		else
   2707  1.132    plunky 			optval = im6o->im6o_multicast_hlim;
   2708  1.132    plunky 
   2709  1.132    plunky 		error = sockopt_set(sopt, &optval, sizeof(optval));
   2710  1.132    plunky 		break;
   2711    1.2    itojun 
   2712    1.2    itojun 	case IPV6_MULTICAST_LOOP:
   2713    1.2    itojun 		if (im6o == NULL)
   2714  1.151    kefren 			optval = IPV6_DEFAULT_MULTICAST_LOOP;
   2715    1.2    itojun 		else
   2716  1.132    plunky 			optval = im6o->im6o_multicast_loop;
   2717  1.132    plunky 
   2718  1.132    plunky 		error = sockopt_set(sopt, &optval, sizeof(optval));
   2719  1.132    plunky 		break;
   2720    1.2    itojun 
   2721    1.2    itojun 	default:
   2722  1.132    plunky 		error = EOPNOTSUPP;
   2723    1.2    itojun 	}
   2724  1.132    plunky 
   2725  1.132    plunky 	return (error);
   2726    1.2    itojun }
   2727    1.2    itojun 
   2728    1.2    itojun /*
   2729    1.2    itojun  * Discard the IP6 multicast options.
   2730    1.2    itojun  */
   2731    1.2    itojun void
   2732  1.119  christos ip6_freemoptions(struct ip6_moptions *im6o)
   2733    1.2    itojun {
   2734  1.188     ozaki 	struct in6_multi_mship *imm, *nimm;
   2735    1.2    itojun 
   2736    1.2    itojun 	if (im6o == NULL)
   2737    1.2    itojun 		return;
   2738    1.2    itojun 
   2739  1.190     ozaki 	/* The owner of im6o (in6p) should be protected by solock */
   2740  1.188     ozaki 	LIST_FOREACH_SAFE(imm, &im6o->im6o_memberships, i6mm_chain, nimm) {
   2741    1.2    itojun 		LIST_REMOVE(imm, i6mm_chain);
   2742   1.43    itojun 		in6_leavegroup(imm);
   2743    1.2    itojun 	}
   2744    1.2    itojun 	free(im6o, M_IPMOPTS);
   2745    1.2    itojun }
   2746    1.2    itojun 
   2747    1.2    itojun /*
   2748    1.2    itojun  * Set IPv6 outgoing packet options based on advanced API.
   2749    1.2    itojun  */
   2750    1.2    itojun int
   2751  1.197      maxv ip6_setpktopts(struct mbuf *control, struct ip6_pktopts *opt,
   2752  1.138      elad 	struct ip6_pktopts *stickyopt, kauth_cred_t cred, int uproto)
   2753    1.2    itojun {
   2754   1.31    itojun 	struct cmsghdr *cm = 0;
   2755    1.2    itojun 
   2756   1.97    rpaulo 	if (control == NULL || opt == NULL)
   2757   1.57    itojun 		return (EINVAL);
   2758    1.2    itojun 
   2759   1.97    rpaulo 	ip6_initpktopts(opt);
   2760   1.97    rpaulo 	if (stickyopt) {
   2761   1.97    rpaulo 		int error;
   2762   1.97    rpaulo 
   2763   1.97    rpaulo 		/*
   2764   1.97    rpaulo 		 * If stickyopt is provided, make a local copy of the options
   2765   1.97    rpaulo 		 * for this particular packet, then override them by ancillary
   2766   1.97    rpaulo 		 * objects.
   2767   1.97    rpaulo 		 * XXX: copypktopts() does not copy the cached route to a next
   2768   1.97    rpaulo 		 * hop (if any).  This is not very good in terms of efficiency,
   2769   1.97    rpaulo 		 * but we can allow this since this option should be rarely
   2770   1.97    rpaulo 		 * used.
   2771   1.97    rpaulo 		 */
   2772   1.97    rpaulo 		if ((error = copypktopts(opt, stickyopt, M_NOWAIT)) != 0)
   2773   1.97    rpaulo 			return (error);
   2774   1.97    rpaulo 	}
   2775    1.2    itojun 
   2776    1.2    itojun 	/*
   2777    1.2    itojun 	 * XXX: Currently, we assume all the optional information is stored
   2778    1.2    itojun 	 * in a single mbuf.
   2779    1.2    itojun 	 */
   2780    1.2    itojun 	if (control->m_next)
   2781   1.57    itojun 		return (EINVAL);
   2782    1.2    itojun 
   2783  1.137  drochner 	/* XXX if cm->cmsg_len is not aligned, control->m_len can become <0 */
   2784  1.137  drochner 	for (; control->m_len > 0; control->m_data += CMSG_ALIGN(cm->cmsg_len),
   2785   1.49    itojun 	    control->m_len -= CMSG_ALIGN(cm->cmsg_len)) {
   2786   1.97    rpaulo 		int error;
   2787   1.97    rpaulo 
   2788   1.97    rpaulo 		if (control->m_len < CMSG_LEN(0))
   2789   1.97    rpaulo 			return (EINVAL);
   2790   1.97    rpaulo 
   2791    1.2    itojun 		cm = mtod(control, struct cmsghdr *);
   2792  1.218      maxv 		if (cm->cmsg_len < CMSG_LEN(0) || cm->cmsg_len > control->m_len)
   2793   1.57    itojun 			return (EINVAL);
   2794    1.2    itojun 		if (cm->cmsg_level != IPPROTO_IPV6)
   2795    1.2    itojun 			continue;
   2796    1.2    itojun 
   2797   1.97    rpaulo 		error = ip6_setpktopt(cm->cmsg_type, CMSG_DATA(cm),
   2798  1.138      elad 		    cm->cmsg_len - CMSG_LEN(0), opt, cred, 0, 1, uproto);
   2799   1.97    rpaulo 		if (error)
   2800   1.97    rpaulo 			return (error);
   2801   1.97    rpaulo 	}
   2802   1.97    rpaulo 
   2803   1.97    rpaulo 	return (0);
   2804   1.97    rpaulo }
   2805   1.97    rpaulo 
   2806   1.97    rpaulo /*
   2807   1.97    rpaulo  * Set a particular packet option, as a sticky option or an ancillary data
   2808   1.97    rpaulo  * item.  "len" can be 0 only when it's a sticky option.
   2809   1.97    rpaulo  * We have 4 cases of combination of "sticky" and "cmsg":
   2810   1.97    rpaulo  * "sticky=0, cmsg=0": impossible
   2811   1.97    rpaulo  * "sticky=0, cmsg=1": RFC2292 or RFC3542 ancillary data
   2812   1.97    rpaulo  * "sticky=1, cmsg=0": RFC3542 socket option
   2813   1.97    rpaulo  * "sticky=1, cmsg=1": RFC2292 socket option
   2814   1.97    rpaulo  */
   2815   1.97    rpaulo static int
   2816   1.97    rpaulo ip6_setpktopt(int optname, u_char *buf, int len, struct ip6_pktopts *opt,
   2817  1.138      elad     kauth_cred_t cred, int sticky, int cmsg, int uproto)
   2818   1.97    rpaulo {
   2819   1.97    rpaulo 	int minmtupolicy;
   2820  1.139      elad 	int error;
   2821   1.97    rpaulo 
   2822   1.97    rpaulo 	if (!sticky && !cmsg) {
   2823   1.97    rpaulo #ifdef DIAGNOSTIC
   2824   1.97    rpaulo 		printf("ip6_setpktopt: impossible case\n");
   2825   1.97    rpaulo #endif
   2826   1.97    rpaulo 		return (EINVAL);
   2827   1.97    rpaulo 	}
   2828   1.97    rpaulo 
   2829   1.97    rpaulo 	/*
   2830   1.97    rpaulo 	 * IPV6_2292xxx is for backward compatibility to RFC2292, and should
   2831   1.97    rpaulo 	 * not be specified in the context of RFC3542.  Conversely,
   2832   1.97    rpaulo 	 * RFC3542 types should not be specified in the context of RFC2292.
   2833   1.97    rpaulo 	 */
   2834   1.97    rpaulo 	if (!cmsg) {
   2835   1.97    rpaulo 		switch (optname) {
   2836   1.97    rpaulo 		case IPV6_2292PKTINFO:
   2837   1.97    rpaulo 		case IPV6_2292HOPLIMIT:
   2838   1.97    rpaulo 		case IPV6_2292NEXTHOP:
   2839   1.97    rpaulo 		case IPV6_2292HOPOPTS:
   2840   1.97    rpaulo 		case IPV6_2292DSTOPTS:
   2841   1.97    rpaulo 		case IPV6_2292RTHDR:
   2842   1.97    rpaulo 		case IPV6_2292PKTOPTIONS:
   2843   1.97    rpaulo 			return (ENOPROTOOPT);
   2844   1.97    rpaulo 		}
   2845   1.97    rpaulo 	}
   2846   1.97    rpaulo 	if (sticky && cmsg) {
   2847   1.97    rpaulo 		switch (optname) {
   2848    1.2    itojun 		case IPV6_PKTINFO:
   2849   1.97    rpaulo 		case IPV6_HOPLIMIT:
   2850   1.97    rpaulo 		case IPV6_NEXTHOP:
   2851   1.97    rpaulo 		case IPV6_HOPOPTS:
   2852   1.97    rpaulo 		case IPV6_DSTOPTS:
   2853   1.97    rpaulo 		case IPV6_RTHDRDSTOPTS:
   2854   1.97    rpaulo 		case IPV6_RTHDR:
   2855   1.97    rpaulo 		case IPV6_USE_MIN_MTU:
   2856   1.97    rpaulo 		case IPV6_DONTFRAG:
   2857   1.97    rpaulo 		case IPV6_OTCLASS:
   2858   1.97    rpaulo 		case IPV6_TCLASS:
   2859  1.161       roy 		case IPV6_PREFER_TEMPADDR: /* XXX not an RFC3542 option */
   2860   1.97    rpaulo 			return (ENOPROTOOPT);
   2861   1.97    rpaulo 		}
   2862   1.97    rpaulo 	}
   2863   1.97    rpaulo 
   2864   1.97    rpaulo 	switch (optname) {
   2865   1.97    rpaulo #ifdef RFC2292
   2866   1.97    rpaulo 	case IPV6_2292PKTINFO:
   2867   1.97    rpaulo #endif
   2868   1.97    rpaulo 	case IPV6_PKTINFO:
   2869   1.97    rpaulo 	{
   2870   1.97    rpaulo 		struct in6_pktinfo *pktinfo;
   2871   1.97    rpaulo 
   2872   1.97    rpaulo 		if (len != sizeof(struct in6_pktinfo))
   2873   1.97    rpaulo 			return (EINVAL);
   2874   1.97    rpaulo 
   2875   1.97    rpaulo 		pktinfo = (struct in6_pktinfo *)buf;
   2876   1.97    rpaulo 
   2877   1.97    rpaulo 		/*
   2878   1.97    rpaulo 		 * An application can clear any sticky IPV6_PKTINFO option by
   2879   1.97    rpaulo 		 * doing a "regular" setsockopt with ipi6_addr being
   2880   1.97    rpaulo 		 * in6addr_any and ipi6_ifindex being zero.
   2881   1.97    rpaulo 		 * [RFC 3542, Section 6]
   2882   1.97    rpaulo 		 */
   2883   1.97    rpaulo 		if (optname == IPV6_PKTINFO && opt->ip6po_pktinfo &&
   2884   1.97    rpaulo 		    pktinfo->ipi6_ifindex == 0 &&
   2885   1.97    rpaulo 		    IN6_IS_ADDR_UNSPECIFIED(&pktinfo->ipi6_addr)) {
   2886   1.97    rpaulo 			ip6_clearpktopts(opt, optname);
   2887   1.97    rpaulo 			break;
   2888   1.97    rpaulo 		}
   2889   1.97    rpaulo 
   2890   1.97    rpaulo 		if (uproto == IPPROTO_TCP && optname == IPV6_PKTINFO &&
   2891   1.97    rpaulo 		    sticky && !IN6_IS_ADDR_UNSPECIFIED(&pktinfo->ipi6_addr)) {
   2892   1.97    rpaulo 			return (EINVAL);
   2893   1.97    rpaulo 		}
   2894   1.97    rpaulo 
   2895  1.156     rmind 		/* Validate the interface index if specified. */
   2896   1.97    rpaulo 		if (pktinfo->ipi6_ifindex) {
   2897  1.169     ozaki 			struct ifnet *ifp;
   2898  1.169     ozaki 			int s = pserialize_read_enter();
   2899  1.156     rmind 			ifp = if_byindex(pktinfo->ipi6_ifindex);
   2900  1.169     ozaki 			if (ifp == NULL) {
   2901  1.169     ozaki 				pserialize_read_exit(s);
   2902  1.169     ozaki 				return ENXIO;
   2903  1.169     ozaki 			}
   2904  1.169     ozaki 			pserialize_read_exit(s);
   2905   1.97    rpaulo 		}
   2906   1.97    rpaulo 
   2907   1.97    rpaulo 		/*
   2908   1.97    rpaulo 		 * We store the address anyway, and let in6_selectsrc()
   2909   1.97    rpaulo 		 * validate the specified address.  This is because ipi6_addr
   2910   1.97    rpaulo 		 * may not have enough information about its scope zone, and
   2911   1.97    rpaulo 		 * we may need additional information (such as outgoing
   2912   1.97    rpaulo 		 * interface or the scope zone of a destination address) to
   2913   1.97    rpaulo 		 * disambiguate the scope.
   2914   1.97    rpaulo 		 * XXX: the delay of the validation may confuse the
   2915   1.97    rpaulo 		 * application when it is used as a sticky option.
   2916   1.97    rpaulo 		 */
   2917   1.97    rpaulo 		if (opt->ip6po_pktinfo == NULL) {
   2918   1.97    rpaulo 			opt->ip6po_pktinfo = malloc(sizeof(*pktinfo),
   2919   1.97    rpaulo 			    M_IP6OPT, M_NOWAIT);
   2920   1.97    rpaulo 			if (opt->ip6po_pktinfo == NULL)
   2921   1.97    rpaulo 				return (ENOBUFS);
   2922   1.97    rpaulo 		}
   2923   1.97    rpaulo 		memcpy(opt->ip6po_pktinfo, pktinfo, sizeof(*pktinfo));
   2924   1.97    rpaulo 		break;
   2925   1.97    rpaulo 	}
   2926   1.97    rpaulo 
   2927   1.97    rpaulo #ifdef RFC2292
   2928   1.97    rpaulo 	case IPV6_2292HOPLIMIT:
   2929   1.97    rpaulo #endif
   2930   1.97    rpaulo 	case IPV6_HOPLIMIT:
   2931   1.97    rpaulo 	{
   2932   1.97    rpaulo 		int *hlimp;
   2933   1.97    rpaulo 
   2934   1.97    rpaulo 		/*
   2935   1.97    rpaulo 		 * RFC 3542 deprecated the usage of sticky IPV6_HOPLIMIT
   2936   1.97    rpaulo 		 * to simplify the ordering among hoplimit options.
   2937   1.97    rpaulo 		 */
   2938   1.97    rpaulo 		if (optname == IPV6_HOPLIMIT && sticky)
   2939   1.97    rpaulo 			return (ENOPROTOOPT);
   2940   1.97    rpaulo 
   2941   1.97    rpaulo 		if (len != sizeof(int))
   2942   1.97    rpaulo 			return (EINVAL);
   2943   1.97    rpaulo 		hlimp = (int *)buf;
   2944   1.97    rpaulo 		if (*hlimp < -1 || *hlimp > 255)
   2945   1.97    rpaulo 			return (EINVAL);
   2946   1.97    rpaulo 
   2947   1.97    rpaulo 		opt->ip6po_hlim = *hlimp;
   2948   1.97    rpaulo 		break;
   2949   1.97    rpaulo 	}
   2950   1.97    rpaulo 
   2951   1.97    rpaulo 	case IPV6_OTCLASS:
   2952   1.97    rpaulo 		if (len != sizeof(u_int8_t))
   2953   1.97    rpaulo 			return (EINVAL);
   2954   1.97    rpaulo 
   2955   1.97    rpaulo 		opt->ip6po_tclass = *(u_int8_t *)buf;
   2956   1.97    rpaulo 		break;
   2957   1.97    rpaulo 
   2958   1.97    rpaulo 	case IPV6_TCLASS:
   2959   1.97    rpaulo 	{
   2960   1.97    rpaulo 		int tclass;
   2961   1.97    rpaulo 
   2962   1.97    rpaulo 		if (len != sizeof(int))
   2963   1.97    rpaulo 			return (EINVAL);
   2964   1.97    rpaulo 		tclass = *(int *)buf;
   2965   1.97    rpaulo 		if (tclass < -1 || tclass > 255)
   2966   1.97    rpaulo 			return (EINVAL);
   2967    1.2    itojun 
   2968   1.97    rpaulo 		opt->ip6po_tclass = tclass;
   2969   1.97    rpaulo 		break;
   2970   1.97    rpaulo 	}
   2971   1.94    rpaulo 
   2972   1.97    rpaulo #ifdef RFC2292
   2973   1.97    rpaulo 	case IPV6_2292NEXTHOP:
   2974   1.97    rpaulo #endif
   2975   1.97    rpaulo 	case IPV6_NEXTHOP:
   2976  1.146      elad 		error = kauth_authorize_network(cred, KAUTH_NETWORK_IPV6,
   2977  1.146      elad 		    KAUTH_REQ_NETWORK_IPV6_HOPBYHOP, NULL, NULL, NULL);
   2978  1.139      elad 		if (error)
   2979  1.139      elad 			return (error);
   2980   1.35    itojun 
   2981   1.97    rpaulo 		if (len == 0) {	/* just remove the option */
   2982   1.97    rpaulo 			ip6_clearpktopts(opt, IPV6_NEXTHOP);
   2983    1.2    itojun 			break;
   2984   1.97    rpaulo 		}
   2985   1.97    rpaulo 
   2986   1.97    rpaulo 		/* check if cmsg_len is large enough for sa_len */
   2987   1.97    rpaulo 		if (len < sizeof(struct sockaddr) || len < *buf)
   2988   1.97    rpaulo 			return (EINVAL);
   2989   1.97    rpaulo 
   2990   1.97    rpaulo 		switch (((struct sockaddr *)buf)->sa_family) {
   2991   1.97    rpaulo 		case AF_INET6:
   2992   1.97    rpaulo 		{
   2993   1.97    rpaulo 			struct sockaddr_in6 *sa6 = (struct sockaddr_in6 *)buf;
   2994    1.2    itojun 
   2995   1.97    rpaulo 			if (sa6->sin6_len != sizeof(struct sockaddr_in6))
   2996   1.57    itojun 				return (EINVAL);
   2997    1.2    itojun 
   2998   1.97    rpaulo 			if (IN6_IS_ADDR_UNSPECIFIED(&sa6->sin6_addr) ||
   2999   1.97    rpaulo 			    IN6_IS_ADDR_MULTICAST(&sa6->sin6_addr)) {
   3000   1.97    rpaulo 				return (EINVAL);
   3001   1.97    rpaulo 			}
   3002   1.97    rpaulo 			if ((error = sa6_embedscope(sa6, ip6_use_defzone))
   3003   1.97    rpaulo 			    != 0) {
   3004   1.97    rpaulo 				return (error);
   3005   1.67    itojun 			}
   3006    1.2    itojun 			break;
   3007   1.97    rpaulo 		}
   3008   1.97    rpaulo 		case AF_LINK:	/* eventually be supported? */
   3009   1.97    rpaulo 		default:
   3010   1.97    rpaulo 			return (EAFNOSUPPORT);
   3011   1.97    rpaulo 		}
   3012    1.2    itojun 
   3013   1.97    rpaulo 		/* turn off the previous option, then set the new option. */
   3014   1.97    rpaulo 		ip6_clearpktopts(opt, IPV6_NEXTHOP);
   3015   1.97    rpaulo 		opt->ip6po_nexthop = malloc(*buf, M_IP6OPT, M_NOWAIT);
   3016   1.97    rpaulo 		if (opt->ip6po_nexthop == NULL)
   3017   1.97    rpaulo 			return (ENOBUFS);
   3018   1.97    rpaulo 		memcpy(opt->ip6po_nexthop, buf, *buf);
   3019   1.97    rpaulo 		break;
   3020   1.97    rpaulo 
   3021   1.97    rpaulo #ifdef RFC2292
   3022   1.97    rpaulo 	case IPV6_2292HOPOPTS:
   3023   1.97    rpaulo #endif
   3024   1.97    rpaulo 	case IPV6_HOPOPTS:
   3025   1.97    rpaulo 	{
   3026   1.97    rpaulo 		struct ip6_hbh *hbh;
   3027   1.97    rpaulo 		int hbhlen;
   3028   1.97    rpaulo 
   3029   1.97    rpaulo 		/*
   3030   1.97    rpaulo 		 * XXX: We don't allow a non-privileged user to set ANY HbH
   3031   1.97    rpaulo 		 * options, since per-option restriction has too much
   3032   1.97    rpaulo 		 * overhead.
   3033   1.97    rpaulo 		 */
   3034  1.146      elad 		error = kauth_authorize_network(cred, KAUTH_NETWORK_IPV6,
   3035  1.146      elad 		    KAUTH_REQ_NETWORK_IPV6_HOPBYHOP, NULL, NULL, NULL);
   3036  1.139      elad 		if (error)
   3037  1.139      elad 			return (error);
   3038   1.97    rpaulo 
   3039   1.97    rpaulo 		if (len == 0) {
   3040   1.97    rpaulo 			ip6_clearpktopts(opt, IPV6_HOPOPTS);
   3041   1.97    rpaulo 			break;	/* just remove the option */
   3042   1.97    rpaulo 		}
   3043   1.31    itojun 
   3044   1.97    rpaulo 		/* message length validation */
   3045   1.97    rpaulo 		if (len < sizeof(struct ip6_hbh))
   3046   1.97    rpaulo 			return (EINVAL);
   3047   1.97    rpaulo 		hbh = (struct ip6_hbh *)buf;
   3048   1.97    rpaulo 		hbhlen = (hbh->ip6h_len + 1) << 3;
   3049   1.97    rpaulo 		if (len != hbhlen)
   3050   1.97    rpaulo 			return (EINVAL);
   3051    1.2    itojun 
   3052   1.97    rpaulo 		/* turn off the previous option, then set the new option. */
   3053   1.97    rpaulo 		ip6_clearpktopts(opt, IPV6_HOPOPTS);
   3054   1.97    rpaulo 		opt->ip6po_hbh = malloc(hbhlen, M_IP6OPT, M_NOWAIT);
   3055   1.97    rpaulo 		if (opt->ip6po_hbh == NULL)
   3056   1.97    rpaulo 			return (ENOBUFS);
   3057   1.97    rpaulo 		memcpy(opt->ip6po_hbh, hbh, hbhlen);
   3058    1.2    itojun 
   3059   1.97    rpaulo 		break;
   3060   1.97    rpaulo 	}
   3061    1.2    itojun 
   3062   1.97    rpaulo #ifdef RFC2292
   3063   1.97    rpaulo 	case IPV6_2292DSTOPTS:
   3064   1.97    rpaulo #endif
   3065   1.97    rpaulo 	case IPV6_DSTOPTS:
   3066   1.97    rpaulo 	case IPV6_RTHDRDSTOPTS:
   3067   1.97    rpaulo 	{
   3068   1.97    rpaulo 		struct ip6_dest *dest, **newdest = NULL;
   3069   1.97    rpaulo 		int destlen;
   3070   1.67    itojun 
   3071  1.139      elad 		/* XXX: see the comment for IPV6_HOPOPTS */
   3072  1.146      elad 		error = kauth_authorize_network(cred, KAUTH_NETWORK_IPV6,
   3073  1.146      elad 		    KAUTH_REQ_NETWORK_IPV6_HOPBYHOP, NULL, NULL, NULL);
   3074  1.139      elad 		if (error)
   3075  1.139      elad 			return (error);
   3076    1.2    itojun 
   3077   1.97    rpaulo 		if (len == 0) {
   3078   1.97    rpaulo 			ip6_clearpktopts(opt, optname);
   3079   1.97    rpaulo 			break;	/* just remove the option */
   3080   1.97    rpaulo 		}
   3081    1.2    itojun 
   3082   1.97    rpaulo 		/* message length validation */
   3083   1.97    rpaulo 		if (len < sizeof(struct ip6_dest))
   3084   1.97    rpaulo 			return (EINVAL);
   3085   1.97    rpaulo 		dest = (struct ip6_dest *)buf;
   3086   1.97    rpaulo 		destlen = (dest->ip6d_len + 1) << 3;
   3087   1.97    rpaulo 		if (len != destlen)
   3088   1.97    rpaulo 			return (EINVAL);
   3089   1.97    rpaulo 		/*
   3090   1.97    rpaulo 		 * Determine the position that the destination options header
   3091   1.97    rpaulo 		 * should be inserted; before or after the routing header.
   3092   1.97    rpaulo 		 */
   3093   1.97    rpaulo 		switch (optname) {
   3094   1.97    rpaulo 		case IPV6_2292DSTOPTS:
   3095    1.2    itojun 			/*
   3096   1.97    rpaulo 			 * The old advanced API is ambiguous on this point.
   3097   1.97    rpaulo 			 * Our approach is to determine the position based
   3098   1.97    rpaulo 			 * according to the existence of a routing header.
   3099   1.97    rpaulo 			 * Note, however, that this depends on the order of the
   3100   1.97    rpaulo 			 * extension headers in the ancillary data; the 1st
   3101   1.97    rpaulo 			 * part of the destination options header must appear
   3102   1.97    rpaulo 			 * before the routing header in the ancillary data,
   3103   1.97    rpaulo 			 * too.
   3104   1.97    rpaulo 			 * RFC3542 solved the ambiguity by introducing
   3105   1.97    rpaulo 			 * separate ancillary data or option types.
   3106    1.2    itojun 			 */
   3107   1.97    rpaulo 			if (opt->ip6po_rthdr == NULL)
   3108   1.97    rpaulo 				newdest = &opt->ip6po_dest1;
   3109   1.97    rpaulo 			else
   3110   1.97    rpaulo 				newdest = &opt->ip6po_dest2;
   3111   1.97    rpaulo 			break;
   3112   1.97    rpaulo 		case IPV6_RTHDRDSTOPTS:
   3113   1.97    rpaulo 			newdest = &opt->ip6po_dest1;
   3114   1.97    rpaulo 			break;
   3115   1.97    rpaulo 		case IPV6_DSTOPTS:
   3116   1.97    rpaulo 			newdest = &opt->ip6po_dest2;
   3117   1.97    rpaulo 			break;
   3118   1.97    rpaulo 		}
   3119   1.97    rpaulo 
   3120   1.97    rpaulo 		/* turn off the previous option, then set the new option. */
   3121   1.97    rpaulo 		ip6_clearpktopts(opt, optname);
   3122   1.97    rpaulo 		*newdest = malloc(destlen, M_IP6OPT, M_NOWAIT);
   3123   1.97    rpaulo 		if (*newdest == NULL)
   3124   1.97    rpaulo 			return (ENOBUFS);
   3125   1.97    rpaulo 		memcpy(*newdest, dest, destlen);
   3126   1.67    itojun 
   3127   1.97    rpaulo 		break;
   3128   1.97    rpaulo 	}
   3129   1.97    rpaulo 
   3130   1.97    rpaulo #ifdef RFC2292
   3131   1.97    rpaulo 	case IPV6_2292RTHDR:
   3132   1.97    rpaulo #endif
   3133   1.97    rpaulo 	case IPV6_RTHDR:
   3134   1.97    rpaulo 	{
   3135   1.97    rpaulo 		struct ip6_rthdr *rth;
   3136   1.97    rpaulo 		int rthlen;
   3137   1.97    rpaulo 
   3138   1.97    rpaulo 		if (len == 0) {
   3139   1.97    rpaulo 			ip6_clearpktopts(opt, IPV6_RTHDR);
   3140   1.97    rpaulo 			break;	/* just remove the option */
   3141   1.97    rpaulo 		}
   3142    1.2    itojun 
   3143   1.97    rpaulo 		/* message length validation */
   3144   1.97    rpaulo 		if (len < sizeof(struct ip6_rthdr))
   3145   1.97    rpaulo 			return (EINVAL);
   3146   1.97    rpaulo 		rth = (struct ip6_rthdr *)buf;
   3147   1.97    rpaulo 		rthlen = (rth->ip6r_len + 1) << 3;
   3148   1.97    rpaulo 		if (len != rthlen)
   3149   1.97    rpaulo 			return (EINVAL);
   3150   1.97    rpaulo 		switch (rth->ip6r_type) {
   3151   1.97    rpaulo 		case IPV6_RTHDR_TYPE_0:
   3152  1.205      maxv 			/* Dropped, RFC5095. */
   3153    1.2    itojun 		default:
   3154   1.97    rpaulo 			return (EINVAL);	/* not supported */
   3155    1.2    itojun 		}
   3156   1.97    rpaulo 		/* turn off the previous option */
   3157   1.97    rpaulo 		ip6_clearpktopts(opt, IPV6_RTHDR);
   3158   1.97    rpaulo 		opt->ip6po_rthdr = malloc(rthlen, M_IP6OPT, M_NOWAIT);
   3159   1.97    rpaulo 		if (opt->ip6po_rthdr == NULL)
   3160   1.97    rpaulo 			return (ENOBUFS);
   3161   1.97    rpaulo 		memcpy(opt->ip6po_rthdr, rth, rthlen);
   3162   1.97    rpaulo 		break;
   3163    1.2    itojun 	}
   3164    1.2    itojun 
   3165   1.97    rpaulo 	case IPV6_USE_MIN_MTU:
   3166   1.97    rpaulo 		if (len != sizeof(int))
   3167   1.97    rpaulo 			return (EINVAL);
   3168   1.97    rpaulo 		minmtupolicy = *(int *)buf;
   3169   1.97    rpaulo 		if (minmtupolicy != IP6PO_MINMTU_MCASTONLY &&
   3170   1.97    rpaulo 		    minmtupolicy != IP6PO_MINMTU_DISABLE &&
   3171   1.97    rpaulo 		    minmtupolicy != IP6PO_MINMTU_ALL) {
   3172   1.97    rpaulo 			return (EINVAL);
   3173   1.97    rpaulo 		}
   3174   1.97    rpaulo 		opt->ip6po_minmtu = minmtupolicy;
   3175   1.97    rpaulo 		break;
   3176   1.97    rpaulo 
   3177   1.97    rpaulo 	case IPV6_DONTFRAG:
   3178   1.97    rpaulo 		if (len != sizeof(int))
   3179   1.97    rpaulo 			return (EINVAL);
   3180   1.97    rpaulo 
   3181   1.97    rpaulo 		if (uproto == IPPROTO_TCP || *(int *)buf == 0) {
   3182   1.97    rpaulo 			/*
   3183   1.97    rpaulo 			 * we ignore this option for TCP sockets.
   3184   1.97    rpaulo 			 * (RFC3542 leaves this case unspecified.)
   3185   1.97    rpaulo 			 */
   3186   1.97    rpaulo 			opt->ip6po_flags &= ~IP6PO_DONTFRAG;
   3187   1.97    rpaulo 		} else
   3188   1.97    rpaulo 			opt->ip6po_flags |= IP6PO_DONTFRAG;
   3189   1.97    rpaulo 		break;
   3190   1.97    rpaulo 
   3191  1.161       roy 	case IPV6_PREFER_TEMPADDR:
   3192  1.161       roy 	{
   3193  1.161       roy 		int preftemp;
   3194  1.161       roy 
   3195  1.161       roy 		if (len != sizeof(int))
   3196  1.161       roy 			return (EINVAL);
   3197  1.161       roy 		preftemp = *(int *)buf;
   3198  1.161       roy 		switch (preftemp) {
   3199  1.161       roy 		case IP6PO_TEMPADDR_SYSTEM:
   3200  1.161       roy 		case IP6PO_TEMPADDR_NOTPREFER:
   3201  1.161       roy 		case IP6PO_TEMPADDR_PREFER:
   3202  1.161       roy 			break;
   3203  1.161       roy 		default:
   3204  1.161       roy 			return (EINVAL);
   3205  1.161       roy 		}
   3206  1.161       roy 		opt->ip6po_prefer_tempaddr = preftemp;
   3207  1.161       roy 		break;
   3208  1.161       roy 	}
   3209  1.161       roy 
   3210   1.97    rpaulo 	default:
   3211   1.97    rpaulo 		return (ENOPROTOOPT);
   3212   1.97    rpaulo 	} /* end of switch */
   3213   1.97    rpaulo 
   3214   1.57    itojun 	return (0);
   3215    1.2    itojun }
   3216    1.2    itojun 
   3217    1.2    itojun /*
   3218    1.2    itojun  * Routine called from ip6_output() to loop back a copy of an IP6 multicast
   3219    1.2    itojun  * packet to the input queue of a specified interface.  Note that this
   3220    1.2    itojun  * calls the output routine of the loopback "driver", but with an interface
   3221   1.86     peter  * pointer that might NOT be lo0ifp -- easier than replicating that code here.
   3222    1.2    itojun  */
   3223    1.2    itojun void
   3224  1.197      maxv ip6_mloopback(struct ifnet *ifp, struct mbuf *m,
   3225  1.119  christos 	const struct sockaddr_in6 *dst)
   3226    1.2    itojun {
   3227   1.22    itojun 	struct mbuf *copym;
   3228   1.22    itojun 	struct ip6_hdr *ip6;
   3229    1.2    itojun 
   3230  1.209      maxv 	copym = m_copypacket(m, M_DONTWAIT);
   3231   1.22    itojun 	if (copym == NULL)
   3232   1.22    itojun 		return;
   3233   1.22    itojun 
   3234   1.22    itojun 	/*
   3235   1.22    itojun 	 * Make sure to deep-copy IPv6 header portion in case the data
   3236   1.22    itojun 	 * is in an mbuf cluster, so that we can safely override the IPv6
   3237   1.22    itojun 	 * header portion later.
   3238   1.22    itojun 	 */
   3239   1.22    itojun 	if ((copym->m_flags & M_EXT) != 0 ||
   3240   1.22    itojun 	    copym->m_len < sizeof(struct ip6_hdr)) {
   3241   1.22    itojun 		copym = m_pullup(copym, sizeof(struct ip6_hdr));
   3242   1.22    itojun 		if (copym == NULL)
   3243   1.22    itojun 			return;
   3244   1.22    itojun 	}
   3245   1.22    itojun 
   3246   1.22    itojun #ifdef DIAGNOSTIC
   3247   1.22    itojun 	if (copym->m_len < sizeof(*ip6)) {
   3248   1.22    itojun 		m_freem(copym);
   3249   1.22    itojun 		return;
   3250   1.22    itojun 	}
   3251   1.22    itojun #endif
   3252   1.22    itojun 
   3253   1.34    itojun 	ip6 = mtod(copym, struct ip6_hdr *);
   3254   1.94    rpaulo 	/*
   3255   1.94    rpaulo 	 * clear embedded scope identifiers if necessary.
   3256   1.94    rpaulo 	 * in6_clearscope will touch the addresses only when necessary.
   3257   1.94    rpaulo 	 */
   3258   1.94    rpaulo 	in6_clearscope(&ip6->ip6_src);
   3259   1.94    rpaulo 	in6_clearscope(&ip6->ip6_dst);
   3260   1.22    itojun 
   3261  1.115    dyoung 	(void)looutput(ifp, copym, (const struct sockaddr *)dst, NULL);
   3262    1.2    itojun }
   3263    1.2    itojun 
   3264    1.2    itojun /*
   3265    1.2    itojun  * Chop IPv6 header off from the payload.
   3266    1.2    itojun  */
   3267    1.2    itojun static int
   3268  1.201      maxv ip6_splithdr(struct mbuf *m, struct ip6_exthdrs *exthdrs)
   3269    1.2    itojun {
   3270    1.2    itojun 	struct mbuf *mh;
   3271    1.2    itojun 	struct ip6_hdr *ip6;
   3272    1.2    itojun 
   3273    1.2    itojun 	ip6 = mtod(m, struct ip6_hdr *);
   3274    1.2    itojun 	if (m->m_len > sizeof(*ip6)) {
   3275    1.2    itojun 		MGETHDR(mh, M_DONTWAIT, MT_HEADER);
   3276  1.201      maxv 		if (mh == NULL) {
   3277    1.2    itojun 			m_freem(m);
   3278    1.2    itojun 			return ENOBUFS;
   3279    1.2    itojun 		}
   3280  1.215      maxv 		m_move_pkthdr(mh, m);
   3281  1.216      maxv 		m_align(mh, sizeof(*ip6));
   3282    1.2    itojun 		m->m_len -= sizeof(*ip6);
   3283    1.2    itojun 		m->m_data += sizeof(*ip6);
   3284    1.2    itojun 		mh->m_next = m;
   3285  1.201      maxv 		mh->m_len = sizeof(*ip6);
   3286  1.201      maxv 		memcpy(mtod(mh, void *), (void *)ip6, sizeof(*ip6));
   3287    1.2    itojun 		m = mh;
   3288    1.2    itojun 	}
   3289    1.2    itojun 	exthdrs->ip6e_ip6 = m;
   3290    1.2    itojun 	return 0;
   3291    1.2    itojun }
   3292    1.2    itojun 
   3293    1.2    itojun /*
   3294    1.2    itojun  * Compute IPv6 extension header length.
   3295    1.2    itojun  */
   3296    1.2    itojun int
   3297  1.119  christos ip6_optlen(struct in6pcb *in6p)
   3298    1.2    itojun {
   3299    1.2    itojun 	int len;
   3300    1.2    itojun 
   3301    1.2    itojun 	if (!in6p->in6p_outputopts)
   3302    1.2    itojun 		return 0;
   3303    1.2    itojun 
   3304    1.2    itojun 	len = 0;
   3305    1.2    itojun #define elen(x) \
   3306    1.2    itojun     (((struct ip6_ext *)(x)) ? (((struct ip6_ext *)(x))->ip6e_len + 1) << 3 : 0)
   3307    1.2    itojun 
   3308    1.2    itojun 	len += elen(in6p->in6p_outputopts->ip6po_hbh);
   3309    1.2    itojun 	len += elen(in6p->in6p_outputopts->ip6po_dest1);
   3310    1.2    itojun 	len += elen(in6p->in6p_outputopts->ip6po_rthdr);
   3311    1.2    itojun 	len += elen(in6p->in6p_outputopts->ip6po_dest2);
   3312    1.2    itojun 	return len;
   3313    1.2    itojun #undef elen
   3314    1.2    itojun }
   3315  1.174       roy 
   3316  1.174       roy /*
   3317  1.174       roy  * Ensure sending address is valid.
   3318  1.174       roy  * Returns 0 on success, -1 if an error should be sent back or 1
   3319  1.174       roy  * if the packet could be dropped without error (protocol dependent).
   3320  1.174       roy  */
   3321  1.174       roy static int
   3322  1.194       roy ip6_ifaddrvalid(const struct in6_addr *src, const struct in6_addr *dst)
   3323  1.174       roy {
   3324  1.174       roy 	struct sockaddr_in6 sin6;
   3325  1.174       roy 	int s, error;
   3326  1.174       roy 	struct ifaddr *ifa;
   3327  1.174       roy 	struct in6_ifaddr *ia6;
   3328  1.174       roy 
   3329  1.194       roy 	if (IN6_IS_ADDR_UNSPECIFIED(src))
   3330  1.174       roy 		return 0;
   3331  1.174       roy 
   3332  1.174       roy 	memset(&sin6, 0, sizeof(sin6));
   3333  1.174       roy 	sin6.sin6_family = AF_INET6;
   3334  1.174       roy 	sin6.sin6_len = sizeof(sin6);
   3335  1.194       roy 	sin6.sin6_addr = *src;
   3336  1.174       roy 
   3337  1.174       roy 	s = pserialize_read_enter();
   3338  1.174       roy 	ifa = ifa_ifwithaddr(sin6tosa(&sin6));
   3339  1.174       roy 	if ((ia6 = ifatoia6(ifa)) == NULL ||
   3340  1.174       roy 	    ia6->ia6_flags & (IN6_IFF_ANYCAST | IN6_IFF_DUPLICATED))
   3341  1.174       roy 		error = -1;
   3342  1.194       roy 	else if (ia6->ia6_flags & IN6_IFF_TENTATIVE)
   3343  1.194       roy 		error = 1;
   3344  1.194       roy 	else if (ia6->ia6_flags & IN6_IFF_DETACHED &&
   3345  1.195       kre 	    (sin6.sin6_addr = *dst, ifa_ifwithaddr(sin6tosa(&sin6)) == NULL))
   3346  1.194       roy 		/* Allow internal traffic to DETACHED addresses */
   3347  1.174       roy 		error = 1;
   3348  1.174       roy 	else
   3349  1.174       roy 		error = 0;
   3350  1.174       roy 	pserialize_read_exit(s);
   3351  1.174       roy 
   3352  1.174       roy 	return error;
   3353  1.174       roy }
   3354