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in6.c revision 1.146
      1  1.146    dyoung /*	$NetBSD: in6.c,v 1.146 2009/02/05 22:32:24 dyoung Exp $	*/
      2   1.46    itojun /*	$KAME: in6.c,v 1.198 2001/07/18 09:12:38 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   1.18    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   1.18    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, 1991, 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   1.78       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  *	@(#)in.c	8.2 (Berkeley) 11/15/93
     62    1.2    itojun  */
     63   1.49     lukem 
     64   1.49     lukem #include <sys/cdefs.h>
     65  1.146    dyoung __KERNEL_RCSID(0, "$NetBSD: in6.c,v 1.146 2009/02/05 22:32:24 dyoung Exp $");
     66    1.2    itojun 
     67    1.2    itojun #include "opt_inet.h"
     68   1.90      yamt #include "opt_pfil_hooks.h"
     69  1.144  christos #include "opt_compat_netbsd.h"
     70    1.2    itojun 
     71    1.2    itojun #include <sys/param.h>
     72    1.2    itojun #include <sys/ioctl.h>
     73    1.2    itojun #include <sys/errno.h>
     74    1.2    itojun #include <sys/malloc.h>
     75    1.2    itojun #include <sys/socket.h>
     76    1.2    itojun #include <sys/socketvar.h>
     77    1.2    itojun #include <sys/sockio.h>
     78    1.2    itojun #include <sys/systm.h>
     79    1.2    itojun #include <sys/proc.h>
     80    1.2    itojun #include <sys/time.h>
     81    1.2    itojun #include <sys/kernel.h>
     82    1.8    itojun #include <sys/syslog.h>
     83  1.102      elad #include <sys/kauth.h>
     84    1.2    itojun 
     85    1.2    itojun #include <net/if.h>
     86    1.2    itojun #include <net/if_types.h>
     87    1.2    itojun #include <net/route.h>
     88    1.2    itojun #include <net/if_dl.h>
     89    1.2    itojun 
     90    1.2    itojun #include <netinet/in.h>
     91    1.2    itojun #include <netinet/in_var.h>
     92    1.2    itojun #include <net/if_ether.h>
     93    1.2    itojun 
     94   1.16    itojun #include <netinet/ip6.h>
     95    1.8    itojun #include <netinet6/ip6_var.h>
     96   1.46    itojun #include <netinet6/nd6.h>
     97    1.2    itojun #include <netinet6/mld6_var.h>
     98    1.2    itojun #include <netinet6/ip6_mroute.h>
     99    1.2    itojun #include <netinet6/in6_ifattach.h>
    100   1.95    rpaulo #include <netinet6/scope6_var.h>
    101    1.2    itojun 
    102    1.8    itojun #include <net/net_osdep.h>
    103   1.72   thorpej 
    104   1.90      yamt #ifdef PFIL_HOOKS
    105   1.90      yamt #include <net/pfil.h>
    106   1.90      yamt #endif
    107  1.144  christos #ifdef COMPAT_50
    108  1.144  christos #include <compat/netinet6/in6_var.h>
    109  1.144  christos #endif
    110   1.90      yamt 
    111   1.72   thorpej MALLOC_DEFINE(M_IP6OPT, "ip6_options", "IPv6 options");
    112    1.8    itojun 
    113   1.20    itojun /* enable backward compatibility code for obsoleted ioctls */
    114   1.20    itojun #define COMPAT_IN6IFIOCTL
    115   1.20    itojun 
    116  1.121    dyoung #ifdef	IN6_DEBUG
    117  1.121    dyoung #define	IN6_DPRINTF(__fmt, ...)	printf(__fmt, __VA_ARGS__)
    118  1.121    dyoung #else
    119  1.121    dyoung #define	IN6_DPRINTF(__fmt, ...)	do { } while (/*CONSTCOND*/0)
    120  1.121    dyoung #endif /* IN6_DEBUG */
    121  1.121    dyoung 
    122    1.2    itojun /*
    123   1.75       wiz  * Definitions of some constant IP6 addresses.
    124    1.2    itojun  */
    125    1.2    itojun const struct in6_addr in6addr_any = IN6ADDR_ANY_INIT;
    126    1.2    itojun const struct in6_addr in6addr_loopback = IN6ADDR_LOOPBACK_INIT;
    127    1.2    itojun const struct in6_addr in6addr_nodelocal_allnodes =
    128    1.2    itojun 	IN6ADDR_NODELOCAL_ALLNODES_INIT;
    129    1.2    itojun const struct in6_addr in6addr_linklocal_allnodes =
    130    1.2    itojun 	IN6ADDR_LINKLOCAL_ALLNODES_INIT;
    131    1.2    itojun const struct in6_addr in6addr_linklocal_allrouters =
    132    1.2    itojun 	IN6ADDR_LINKLOCAL_ALLROUTERS_INIT;
    133    1.2    itojun 
    134    1.2    itojun const struct in6_addr in6mask0 = IN6MASK0;
    135    1.2    itojun const struct in6_addr in6mask32 = IN6MASK32;
    136    1.2    itojun const struct in6_addr in6mask64 = IN6MASK64;
    137    1.2    itojun const struct in6_addr in6mask96 = IN6MASK96;
    138    1.2    itojun const struct in6_addr in6mask128 = IN6MASK128;
    139   1.43    itojun 
    140   1.43    itojun const struct sockaddr_in6 sa6_any = {sizeof(sa6_any), AF_INET6,
    141   1.43    itojun 				     0, 0, IN6ADDR_ANY_INIT, 0};
    142    1.2    itojun 
    143  1.125  christos static int in6_lifaddr_ioctl(struct socket *, u_long, void *,
    144  1.117    dyoung 	struct ifnet *, struct lwp *);
    145  1.117    dyoung static int in6_ifinit(struct ifnet *, struct in6_ifaddr *,
    146  1.146    dyoung 	const struct sockaddr_in6 *, int);
    147  1.117    dyoung static void in6_unlink_ifa(struct in6_ifaddr *, struct ifnet *);
    148    1.2    itojun 
    149    1.2    itojun /*
    150    1.2    itojun  * Subroutine for in6_ifaddloop() and in6_ifremloop().
    151    1.2    itojun  * This routine does actual work.
    152    1.2    itojun  */
    153    1.2    itojun static void
    154    1.2    itojun in6_ifloop_request(int cmd, struct ifaddr *ifa)
    155    1.2    itojun {
    156    1.2    itojun 	struct sockaddr_in6 lo_sa;
    157    1.2    itojun 	struct sockaddr_in6 all1_sa;
    158   1.65    itojun 	struct rtentry *nrt = NULL;
    159   1.65    itojun 	int e;
    160   1.66    itojun 
    161  1.135    dyoung 	sockaddr_in6_init(&all1_sa, &in6mask128, 0, 0, 0);
    162  1.135    dyoung 	sockaddr_in6_init(&lo_sa, &in6addr_loopback, 0, 0, 0);
    163   1.66    itojun 
    164   1.33    itojun 	/*
    165   1.65    itojun 	 * We specify the address itself as the gateway, and set the
    166   1.65    itojun 	 * RTF_LLINFO flag, so that the corresponding host route would have
    167   1.65    itojun 	 * the flag, and thus applications that assume traditional behavior
    168   1.65    itojun 	 * would be happy.  Note that we assume the caller of the function
    169   1.65    itojun 	 * (probably implicitly) set nd6_rtrequest() to ifa->ifa_rtrequest,
    170   1.65    itojun 	 * which changes the outgoing interface to the loopback interface.
    171   1.65    itojun 	 */
    172   1.65    itojun 	e = rtrequest(cmd, ifa->ifa_addr, ifa->ifa_addr,
    173   1.65    itojun 	    (struct sockaddr *)&all1_sa, RTF_UP|RTF_HOST|RTF_LLINFO, &nrt);
    174   1.65    itojun 	if (e != 0) {
    175   1.65    itojun 		log(LOG_ERR, "in6_ifloop_request: "
    176   1.65    itojun 		    "%s operation failed for %s (errno=%d)\n",
    177   1.65    itojun 		    cmd == RTM_ADD ? "ADD" : "DELETE",
    178   1.65    itojun 		    ip6_sprintf(&((struct in6_ifaddr *)ifa)->ia_addr.sin6_addr),
    179   1.65    itojun 		    e);
    180   1.65    itojun 	}
    181    1.2    itojun 
    182    1.2    itojun 	/*
    183    1.2    itojun 	 * Make sure rt_ifa be equal to IFA, the second argument of the
    184    1.2    itojun 	 * function.
    185   1.41    itojun 	 * We need this because when we refer to rt_ifa->ia6_flags in
    186   1.41    itojun 	 * ip6_input, we assume that the rt_ifa points to the address instead
    187   1.41    itojun 	 * of the loopback address.
    188    1.2    itojun 	 */
    189  1.114    dyoung 	if (cmd == RTM_ADD && nrt && ifa != nrt->rt_ifa)
    190  1.114    dyoung 		rt_replace_ifa(nrt, ifa);
    191   1.65    itojun 
    192   1.65    itojun 	/*
    193   1.65    itojun 	 * Report the addition/removal of the address to the routing socket.
    194   1.65    itojun 	 * XXX: since we called rtinit for a p2p interface with a destination,
    195   1.65    itojun 	 *      we end up reporting twice in such a case.  Should we rather
    196   1.65    itojun 	 *      omit the second report?
    197   1.65    itojun 	 */
    198   1.65    itojun 	if (nrt) {
    199   1.65    itojun 		rt_newaddrmsg(cmd, ifa, e, nrt);
    200   1.65    itojun 		if (cmd == RTM_DELETE) {
    201   1.65    itojun 			if (nrt->rt_refcnt <= 0) {
    202   1.65    itojun 				/* XXX: we should free the entry ourselves. */
    203   1.65    itojun 				nrt->rt_refcnt++;
    204   1.65    itojun 				rtfree(nrt);
    205   1.65    itojun 			}
    206   1.65    itojun 		} else {
    207   1.65    itojun 			/* the cmd must be RTM_ADD here */
    208   1.65    itojun 			nrt->rt_refcnt--;
    209   1.65    itojun 		}
    210   1.65    itojun 	}
    211    1.2    itojun }
    212    1.2    itojun 
    213    1.2    itojun /*
    214   1.65    itojun  * Add ownaddr as loopback rtentry.  We previously add the route only if
    215   1.65    itojun  * necessary (ex. on a p2p link).  However, since we now manage addresses
    216   1.65    itojun  * separately from prefixes, we should always add the route.  We can't
    217   1.65    itojun  * rely on the cloning mechanism from the corresponding interface route
    218   1.65    itojun  * any more.
    219    1.2    itojun  */
    220  1.103  liamjfoy void
    221    1.2    itojun in6_ifaddloop(struct ifaddr *ifa)
    222    1.2    itojun {
    223   1.65    itojun 	struct rtentry *rt;
    224    1.2    itojun 
    225   1.65    itojun 	/* If there is no loopback entry, allocate one. */
    226   1.65    itojun 	rt = rtalloc1(ifa->ifa_addr, 0);
    227   1.65    itojun 	if (rt == NULL || (rt->rt_flags & RTF_HOST) == 0 ||
    228   1.65    itojun 	    (rt->rt_ifp->if_flags & IFF_LOOPBACK) == 0)
    229   1.65    itojun 		in6_ifloop_request(RTM_ADD, ifa);
    230  1.126    dyoung 	if (rt != NULL)
    231   1.65    itojun 		rt->rt_refcnt--;
    232    1.2    itojun }
    233    1.2    itojun 
    234    1.2    itojun /*
    235    1.2    itojun  * Remove loopback rtentry of ownaddr generated by in6_ifaddloop(),
    236    1.2    itojun  * if it exists.
    237    1.2    itojun  */
    238  1.103  liamjfoy void
    239    1.2    itojun in6_ifremloop(struct ifaddr *ifa)
    240    1.2    itojun {
    241  1.121    dyoung 	struct in6_ifaddr *alt_ia = NULL, *ia;
    242   1.65    itojun 	struct rtentry *rt;
    243   1.65    itojun 	int ia_count = 0;
    244   1.65    itojun 
    245   1.65    itojun 	/*
    246   1.65    itojun 	 * Some of BSD variants do not remove cloned routes
    247   1.65    itojun 	 * from an interface direct route, when removing the direct route
    248   1.65    itojun 	 * (see comments in net/net_osdep.h).  Even for variants that do remove
    249   1.65    itojun 	 * cloned routes, they could fail to remove the cloned routes when
    250   1.65    itojun 	 * we handle multple addresses that share a common prefix.
    251   1.65    itojun 	 * So, we should remove the route corresponding to the deleted address.
    252   1.65    itojun 	 */
    253    1.2    itojun 
    254   1.65    itojun 	/*
    255  1.121    dyoung 	 * Delete the entry only if exactly one ifaddr matches the
    256  1.121    dyoung 	 * address, ifa->ifa_addr.
    257  1.121    dyoung 	 *
    258  1.121    dyoung 	 * If more than one ifaddr matches, replace the ifaddr in
    259  1.121    dyoung 	 * the routing table, rt_ifa, with a different ifaddr than
    260  1.121    dyoung 	 * the one we are purging, ifa.  It is important to do
    261  1.121    dyoung 	 * this, or else the routing table can accumulate dangling
    262  1.121    dyoung 	 * pointers rt->rt_ifa->ifa_ifp to destroyed interfaces,
    263  1.121    dyoung 	 * which will lead to crashes, later.  (More than one ifaddr
    264  1.121    dyoung 	 * can match if we assign the same address to multiple---probably
    265  1.121    dyoung 	 * p2p---interfaces.)
    266  1.121    dyoung 	 *
    267  1.121    dyoung 	 * XXX An old comment at this place said, "we should avoid
    268  1.121    dyoung 	 * XXX such a configuration [i.e., interfaces with the same
    269  1.121    dyoung 	 * XXX addressed assigned --ed.] in IPv6...".  I do not
    270  1.121    dyoung 	 * XXX agree, especially now that I have fixed the dangling
    271  1.121    dyoung 	 * XXX ifp-pointers bug.
    272   1.65    itojun 	 */
    273   1.65    itojun 	for (ia = in6_ifaddr; ia; ia = ia->ia_next) {
    274  1.121    dyoung 		if (!IN6_ARE_ADDR_EQUAL(IFA_IN6(ifa), &ia->ia_addr.sin6_addr))
    275  1.121    dyoung 			continue;
    276  1.121    dyoung 		if (ia->ia_ifp != ifa->ifa_ifp)
    277  1.121    dyoung 			alt_ia = ia;
    278  1.121    dyoung 		if (++ia_count > 1 && alt_ia != NULL)
    279  1.121    dyoung 			break;
    280   1.65    itojun 	}
    281   1.65    itojun 
    282  1.121    dyoung 	if (ia_count == 0)
    283  1.121    dyoung 		return;
    284  1.121    dyoung 
    285  1.121    dyoung 	if ((rt = rtalloc1(ifa->ifa_addr, 0)) == NULL)
    286  1.121    dyoung 		return;
    287  1.121    dyoung 	rt->rt_refcnt--;
    288  1.121    dyoung 
    289  1.121    dyoung 	/*
    290  1.121    dyoung 	 * Before deleting, check if a corresponding loopbacked
    291  1.121    dyoung 	 * host route surely exists.  With this check, we can avoid
    292  1.121    dyoung 	 * deleting an interface direct route whose destination is
    293  1.121    dyoung 	 * the same as the address being removed.  This can happen
    294  1.121    dyoung 	 * when removing a subnet-router anycast address on an
    295  1.121    dyoung 	 * interface attached to a shared medium.
    296  1.121    dyoung 	 */
    297  1.121    dyoung 	if ((rt->rt_flags & RTF_HOST) == 0 ||
    298  1.121    dyoung 	    (rt->rt_ifp->if_flags & IFF_LOOPBACK) == 0)
    299  1.121    dyoung 		return;
    300  1.121    dyoung 
    301  1.121    dyoung 	/* If we cannot replace the route's ifaddr with the equivalent
    302  1.121    dyoung 	 * ifaddr of another interface, I believe it is safest to
    303  1.121    dyoung 	 * delete the route.
    304  1.121    dyoung 	 */
    305  1.121    dyoung 	if (ia_count == 1 || alt_ia == NULL)
    306  1.121    dyoung 		in6_ifloop_request(RTM_DELETE, ifa);
    307  1.121    dyoung 	else
    308  1.121    dyoung 		rt_replace_ifa(rt, &alt_ia->ia_ifa);
    309    1.2    itojun }
    310    1.2    itojun 
    311    1.2    itojun int
    312  1.127  christos in6_mask2len(struct in6_addr *mask, u_char *lim0)
    313    1.2    itojun {
    314   1.65    itojun 	int x = 0, y;
    315   1.65    itojun 	u_char *lim = lim0, *p;
    316    1.2    itojun 
    317   1.65    itojun 	/* ignore the scope_id part */
    318   1.65    itojun 	if (lim0 == NULL || lim0 - (u_char *)mask > sizeof(*mask))
    319   1.65    itojun 		lim = (u_char *)mask + sizeof(*mask);
    320   1.65    itojun 	for (p = (u_char *)mask; p < lim; x++, p++) {
    321   1.65    itojun 		if (*p != 0xff)
    322    1.2    itojun 			break;
    323    1.2    itojun 	}
    324    1.2    itojun 	y = 0;
    325   1.65    itojun 	if (p < lim) {
    326  1.120    dyoung 		for (y = 0; y < NBBY; y++) {
    327   1.65    itojun 			if ((*p & (0x80 >> y)) == 0)
    328    1.2    itojun 				break;
    329    1.2    itojun 		}
    330    1.2    itojun 	}
    331   1.65    itojun 
    332   1.65    itojun 	/*
    333   1.65    itojun 	 * when the limit pointer is given, do a stricter check on the
    334   1.65    itojun 	 * remaining bits.
    335   1.65    itojun 	 */
    336   1.65    itojun 	if (p < lim) {
    337   1.65    itojun 		if (y != 0 && (*p & (0x00ff >> y)) != 0)
    338  1.116    dyoung 			return -1;
    339   1.65    itojun 		for (p = p + 1; p < lim; p++)
    340   1.65    itojun 			if (*p != 0)
    341  1.116    dyoung 				return -1;
    342   1.65    itojun 	}
    343   1.66    itojun 
    344  1.121    dyoung 	return x * NBBY + y;
    345    1.2    itojun }
    346    1.2    itojun 
    347    1.2    itojun #define ifa2ia6(ifa)	((struct in6_ifaddr *)(ifa))
    348   1.19    itojun #define ia62ifa(ia6)	(&((ia6)->ia_ifa))
    349    1.2    itojun 
    350  1.121    dyoung static int
    351  1.125  christos in6_control1(struct socket *so, u_long cmd, void *data, struct ifnet *ifp,
    352  1.121    dyoung     struct lwp *l, int privileged)
    353    1.2    itojun {
    354    1.2    itojun 	struct	in6_ifreq *ifr = (struct in6_ifreq *)data;
    355   1.65    itojun 	struct	in6_ifaddr *ia = NULL;
    356    1.2    itojun 	struct	in6_aliasreq *ifra = (struct in6_aliasreq *)data;
    357   1.60    itojun 	struct sockaddr_in6 *sa6;
    358  1.121    dyoung 	int error;
    359    1.2    itojun 	switch (cmd) {
    360  1.104  christos 	/*
    361  1.105  christos 	 * XXX: Fix me, once we fix SIOCSIFADDR, SIOCIFDSTADDR, etc.
    362  1.104  christos 	 */
    363  1.104  christos 	case SIOCSIFADDR:
    364  1.105  christos 	case SIOCSIFDSTADDR:
    365  1.129      cube #ifdef SIOCSIFCONF_X25
    366  1.106  christos 	case SIOCSIFCONF_X25:
    367  1.110      matt #endif
    368  1.104  christos 		return EOPNOTSUPP;
    369    1.2    itojun 	case SIOCGETSGCNT_IN6:
    370    1.2    itojun 	case SIOCGETMIFCNT_IN6:
    371  1.116    dyoung 		return mrt6_ioctl(cmd, data);
    372    1.2    itojun 	}
    373    1.2    itojun 
    374   1.20    itojun 	if (ifp == NULL)
    375  1.116    dyoung 		return EOPNOTSUPP;
    376    1.2    itojun 
    377    1.2    itojun 	switch (cmd) {
    378    1.2    itojun 	case SIOCSNDFLUSH_IN6:
    379    1.2    itojun 	case SIOCSPFXFLUSH_IN6:
    380    1.2    itojun 	case SIOCSRTRFLUSH_IN6:
    381    1.8    itojun 	case SIOCSDEFIFACE_IN6:
    382   1.31    itojun 	case SIOCSIFINFO_FLAGS:
    383   1.98    rpaulo 	case SIOCSIFINFO_IN6:
    384    1.8    itojun 		if (!privileged)
    385  1.116    dyoung 			return EPERM;
    386   1.62    itojun 		/* FALLTHROUGH */
    387   1.59    itojun 	case OSIOCGIFINFO_IN6:
    388    1.2    itojun 	case SIOCGIFINFO_IN6:
    389    1.2    itojun 	case SIOCGDRLST_IN6:
    390    1.2    itojun 	case SIOCGPRLST_IN6:
    391    1.2    itojun 	case SIOCGNBRINFO_IN6:
    392    1.8    itojun 	case SIOCGDEFIFACE_IN6:
    393  1.116    dyoung 		return nd6_ioctl(cmd, data, ifp);
    394    1.2    itojun 	}
    395    1.2    itojun 
    396    1.2    itojun 	switch (cmd) {
    397    1.2    itojun 	case SIOCSIFPREFIX_IN6:
    398    1.2    itojun 	case SIOCDIFPREFIX_IN6:
    399    1.2    itojun 	case SIOCAIFPREFIX_IN6:
    400    1.2    itojun 	case SIOCCIFPREFIX_IN6:
    401    1.2    itojun 	case SIOCSGIFPREFIX_IN6:
    402    1.2    itojun 	case SIOCGIFPREFIX_IN6:
    403   1.60    itojun 		log(LOG_NOTICE,
    404   1.60    itojun 		    "prefix ioctls are now invalidated. "
    405   1.60    itojun 		    "please use ifconfig.\n");
    406  1.116    dyoung 		return EOPNOTSUPP;
    407    1.2    itojun 	}
    408    1.2    itojun 
    409    1.2    itojun 	switch (cmd) {
    410    1.2    itojun 	case SIOCALIFADDR:
    411    1.2    itojun 	case SIOCDLIFADDR:
    412    1.8    itojun 		if (!privileged)
    413  1.116    dyoung 			return EPERM;
    414   1.62    itojun 		/* FALLTHROUGH */
    415    1.2    itojun 	case SIOCGLIFADDR:
    416  1.109        ad 		return in6_lifaddr_ioctl(so, cmd, data, ifp, l);
    417    1.2    itojun 	}
    418    1.2    itojun 
    419    1.2    itojun 	/*
    420    1.2    itojun 	 * Find address for this interface, if it exists.
    421   1.60    itojun 	 *
    422   1.60    itojun 	 * In netinet code, we have checked ifra_addr in SIOCSIF*ADDR operation
    423   1.60    itojun 	 * only, and used the first interface address as the target of other
    424   1.60    itojun 	 * operations (without checking ifra_addr).  This was because netinet
    425   1.60    itojun 	 * code/API assumed at most 1 interface address per interface.
    426   1.60    itojun 	 * Since IPv6 allows a node to assign multiple addresses
    427   1.60    itojun 	 * on a single interface, we almost always look and check the
    428   1.60    itojun 	 * presence of ifra_addr, and reject invalid ones here.
    429   1.60    itojun 	 * It also decreases duplicated code among SIOC*_IN6 operations.
    430    1.2    itojun 	 */
    431   1.60    itojun 	switch (cmd) {
    432   1.60    itojun 	case SIOCAIFADDR_IN6:
    433  1.145  christos #ifdef OSIOCAIFADDR_IN6
    434  1.145  christos 	case OSIOCAIFADDR_IN6:
    435  1.145  christos #endif
    436  1.145  christos #ifdef OSIOCSIFPHYADDR_IN6
    437  1.145  christos 	case OSIOCSIFPHYADDR_IN6:
    438  1.145  christos #endif
    439   1.60    itojun 	case SIOCSIFPHYADDR_IN6:
    440   1.60    itojun 		sa6 = &ifra->ifra_addr;
    441   1.60    itojun 		break;
    442   1.60    itojun 	case SIOCSIFADDR_IN6:
    443   1.60    itojun 	case SIOCGIFADDR_IN6:
    444   1.60    itojun 	case SIOCSIFDSTADDR_IN6:
    445   1.60    itojun 	case SIOCSIFNETMASK_IN6:
    446   1.60    itojun 	case SIOCGIFDSTADDR_IN6:
    447   1.60    itojun 	case SIOCGIFNETMASK_IN6:
    448   1.60    itojun 	case SIOCDIFADDR_IN6:
    449   1.60    itojun 	case SIOCGIFPSRCADDR_IN6:
    450   1.60    itojun 	case SIOCGIFPDSTADDR_IN6:
    451   1.60    itojun 	case SIOCGIFAFLAG_IN6:
    452   1.60    itojun 	case SIOCSNDFLUSH_IN6:
    453   1.60    itojun 	case SIOCSPFXFLUSH_IN6:
    454   1.60    itojun 	case SIOCSRTRFLUSH_IN6:
    455   1.60    itojun 	case SIOCGIFALIFETIME_IN6:
    456  1.144  christos #ifdef OSIOCGIFALIFETIME_IN6
    457  1.144  christos 	case OSIOCGIFALIFETIME_IN6:
    458  1.144  christos #endif
    459   1.60    itojun 	case SIOCGIFSTAT_IN6:
    460   1.60    itojun 	case SIOCGIFSTAT_ICMP6:
    461   1.60    itojun 		sa6 = &ifr->ifr_addr;
    462   1.60    itojun 		break;
    463   1.60    itojun 	default:
    464   1.60    itojun 		sa6 = NULL;
    465   1.60    itojun 		break;
    466   1.60    itojun 	}
    467   1.60    itojun 	if (sa6 && sa6->sin6_family == AF_INET6) {
    468   1.95    rpaulo 		if (sa6->sin6_scope_id != 0)
    469   1.95    rpaulo 			error = sa6_embedscope(sa6, 0);
    470   1.95    rpaulo 		else
    471   1.95    rpaulo 			error = in6_setscope(&sa6->sin6_addr, ifp, NULL);
    472   1.95    rpaulo 		if (error != 0)
    473  1.116    dyoung 			return error;
    474   1.60    itojun 		ia = in6ifa_ifpwithaddr(ifp, &sa6->sin6_addr);
    475   1.38    itojun 	} else
    476   1.38    itojun 		ia = NULL;
    477    1.2    itojun 
    478    1.2    itojun 	switch (cmd) {
    479   1.60    itojun 	case SIOCSIFADDR_IN6:
    480   1.60    itojun 	case SIOCSIFDSTADDR_IN6:
    481   1.60    itojun 	case SIOCSIFNETMASK_IN6:
    482   1.60    itojun 		/*
    483   1.60    itojun 		 * Since IPv6 allows a node to assign multiple addresses
    484   1.60    itojun 		 * on a single interface, SIOCSIFxxx ioctls are deprecated.
    485   1.60    itojun 		 */
    486  1.116    dyoung 		return EINVAL;
    487    1.2    itojun 
    488    1.2    itojun 	case SIOCDIFADDR_IN6:
    489   1.20    itojun 		/*
    490   1.41    itojun 		 * for IPv4, we look for existing in_ifaddr here to allow
    491   1.52    itojun 		 * "ifconfig if0 delete" to remove the first IPv4 address on
    492   1.52    itojun 		 * the interface.  For IPv6, as the spec allows multiple
    493   1.52    itojun 		 * interface address from the day one, we consider "remove the
    494   1.52    itojun 		 * first one" semantics to be not preferable.
    495   1.20    itojun 		 */
    496   1.20    itojun 		if (ia == NULL)
    497  1.116    dyoung 			return EADDRNOTAVAIL;
    498    1.2    itojun 		/* FALLTHROUGH */
    499  1.145  christos #ifdef OSIOCAIFADDR_IN6
    500  1.145  christos 	case OSIOCAIFADDR_IN6:
    501  1.145  christos #endif
    502    1.2    itojun 	case SIOCAIFADDR_IN6:
    503   1.63    itojun 		/*
    504   1.63    itojun 		 * We always require users to specify a valid IPv6 address for
    505   1.63    itojun 		 * the corresponding operation.
    506   1.63    itojun 		 */
    507   1.63    itojun 		if (ifra->ifra_addr.sin6_family != AF_INET6 ||
    508   1.63    itojun 		    ifra->ifra_addr.sin6_len != sizeof(struct sockaddr_in6))
    509  1.116    dyoung 			return EAFNOSUPPORT;
    510    1.8    itojun 		if (!privileged)
    511  1.116    dyoung 			return EPERM;
    512   1.24    itojun 
    513    1.2    itojun 		break;
    514    1.2    itojun 
    515    1.2    itojun 	case SIOCGIFADDR_IN6:
    516    1.2    itojun 		/* This interface is basically deprecated. use SIOCGIFCONF. */
    517   1.62    itojun 		/* FALLTHROUGH */
    518    1.2    itojun 	case SIOCGIFAFLAG_IN6:
    519    1.2    itojun 	case SIOCGIFNETMASK_IN6:
    520    1.2    itojun 	case SIOCGIFDSTADDR_IN6:
    521    1.8    itojun 	case SIOCGIFALIFETIME_IN6:
    522  1.144  christos #ifdef OSIOCGIFALIFETIME_IN6
    523  1.144  christos 	case OSIOCGIFALIFETIME_IN6:
    524  1.144  christos #endif
    525    1.2    itojun 		/* must think again about its semantics */
    526   1.20    itojun 		if (ia == NULL)
    527  1.116    dyoung 			return EADDRNOTAVAIL;
    528    1.2    itojun 		break;
    529    1.2    itojun 	}
    530    1.2    itojun 
    531    1.2    itojun 	switch (cmd) {
    532    1.2    itojun 
    533    1.2    itojun 	case SIOCGIFADDR_IN6:
    534    1.2    itojun 		ifr->ifr_addr = ia->ia_addr;
    535   1.95    rpaulo 		if ((error = sa6_recoverscope(&ifr->ifr_addr)) != 0)
    536  1.116    dyoung 			return error;
    537    1.2    itojun 		break;
    538    1.2    itojun 
    539    1.2    itojun 	case SIOCGIFDSTADDR_IN6:
    540    1.2    itojun 		if ((ifp->if_flags & IFF_POINTOPOINT) == 0)
    541  1.116    dyoung 			return EINVAL;
    542   1.41    itojun 		/*
    543   1.41    itojun 		 * XXX: should we check if ifa_dstaddr is NULL and return
    544   1.41    itojun 		 * an error?
    545   1.41    itojun 		 */
    546    1.2    itojun 		ifr->ifr_dstaddr = ia->ia_dstaddr;
    547   1.95    rpaulo 		if ((error = sa6_recoverscope(&ifr->ifr_dstaddr)) != 0)
    548  1.116    dyoung 			return error;
    549    1.2    itojun 		break;
    550    1.2    itojun 
    551    1.2    itojun 	case SIOCGIFNETMASK_IN6:
    552    1.2    itojun 		ifr->ifr_addr = ia->ia_prefixmask;
    553    1.2    itojun 		break;
    554    1.2    itojun 
    555    1.2    itojun 	case SIOCGIFAFLAG_IN6:
    556    1.2    itojun 		ifr->ifr_ifru.ifru_flags6 = ia->ia6_flags;
    557    1.2    itojun 		break;
    558   1.18    itojun 
    559    1.8    itojun 	case SIOCGIFSTAT_IN6:
    560    1.8    itojun 		if (ifp == NULL)
    561    1.8    itojun 			return EINVAL;
    562   1.58    itojun 		bzero(&ifr->ifr_ifru.ifru_stat,
    563   1.58    itojun 		    sizeof(ifr->ifr_ifru.ifru_stat));
    564   1.58    itojun 		ifr->ifr_ifru.ifru_stat =
    565   1.58    itojun 		    *((struct in6_ifextra *)ifp->if_afdata[AF_INET6])->in6_ifstat;
    566    1.8    itojun 		break;
    567    1.8    itojun 
    568    1.8    itojun 	case SIOCGIFSTAT_ICMP6:
    569    1.8    itojun 		if (ifp == NULL)
    570    1.8    itojun 			return EINVAL;
    571   1.96    rpaulo 		bzero(&ifr->ifr_ifru.ifru_icmp6stat,
    572   1.58    itojun 		    sizeof(ifr->ifr_ifru.ifru_icmp6stat));
    573   1.58    itojun 		ifr->ifr_ifru.ifru_icmp6stat =
    574   1.58    itojun 		    *((struct in6_ifextra *)ifp->if_afdata[AF_INET6])->icmp6_ifstat;
    575    1.8    itojun 		break;
    576    1.8    itojun 
    577  1.144  christos #ifdef OSIOCGIFALIFETIME_IN6
    578  1.144  christos 	case OSIOCGIFALIFETIME_IN6:
    579  1.144  christos #endif
    580    1.2    itojun 	case SIOCGIFALIFETIME_IN6:
    581    1.2    itojun 		ifr->ifr_ifru.ifru_lifetime = ia->ia6_lifetime;
    582   1.65    itojun 		if (ia->ia6_lifetime.ia6t_vltime != ND6_INFINITE_LIFETIME) {
    583   1.65    itojun 			time_t maxexpire;
    584   1.65    itojun 			struct in6_addrlifetime *retlt =
    585   1.65    itojun 			    &ifr->ifr_ifru.ifru_lifetime;
    586   1.65    itojun 
    587   1.65    itojun 			/*
    588   1.65    itojun 			 * XXX: adjust expiration time assuming time_t is
    589   1.65    itojun 			 * signed.
    590   1.65    itojun 			 */
    591  1.108    kardel 			maxexpire = ((time_t)~0) &
    592  1.120    dyoung 			    ~((time_t)1 << ((sizeof(maxexpire) * NBBY) - 1));
    593   1.65    itojun 			if (ia->ia6_lifetime.ia6t_vltime <
    594   1.65    itojun 			    maxexpire - ia->ia6_updatetime) {
    595   1.65    itojun 				retlt->ia6t_expire = ia->ia6_updatetime +
    596   1.65    itojun 				    ia->ia6_lifetime.ia6t_vltime;
    597   1.65    itojun 			} else
    598   1.65    itojun 				retlt->ia6t_expire = maxexpire;
    599   1.65    itojun 		}
    600   1.65    itojun 		if (ia->ia6_lifetime.ia6t_pltime != ND6_INFINITE_LIFETIME) {
    601   1.65    itojun 			time_t maxexpire;
    602   1.65    itojun 			struct in6_addrlifetime *retlt =
    603   1.65    itojun 			    &ifr->ifr_ifru.ifru_lifetime;
    604   1.65    itojun 
    605   1.65    itojun 			/*
    606   1.65    itojun 			 * XXX: adjust expiration time assuming time_t is
    607   1.65    itojun 			 * signed.
    608   1.65    itojun 			 */
    609  1.108    kardel 			maxexpire = ((time_t)~0) &
    610  1.120    dyoung 			    ~((time_t)1 << ((sizeof(maxexpire) * NBBY) - 1));
    611   1.65    itojun 			if (ia->ia6_lifetime.ia6t_pltime <
    612   1.65    itojun 			    maxexpire - ia->ia6_updatetime) {
    613   1.65    itojun 				retlt->ia6t_preferred = ia->ia6_updatetime +
    614   1.65    itojun 				    ia->ia6_lifetime.ia6t_pltime;
    615   1.65    itojun 			} else
    616   1.65    itojun 				retlt->ia6t_preferred = maxexpire;
    617   1.65    itojun 		}
    618  1.144  christos #ifdef OSIOCFIFALIFETIME_IN6
    619  1.144  christos 		if (cmd == OSIOCFIFALIFETIME_IN6)
    620  1.144  christos 			in6_addrlifetime_to_in6_addrlifetime50(
    621  1.144  christos 			    &ifr->ifru.ifru_lifetime);
    622  1.144  christos #endif
    623    1.2    itojun 		break;
    624    1.2    itojun 
    625  1.145  christos #ifdef OSIOCAIFADDR_IN6
    626  1.145  christos 	case OSIOCAIFADDR_IN6:
    627  1.145  christos 		in6_aliasreq50_to_in6_aliasreq(ifra);
    628  1.145  christos 		/*FALLTHROUGH*/
    629  1.145  christos #endif
    630    1.2    itojun 	case SIOCAIFADDR_IN6:
    631   1.65    itojun 	{
    632   1.95    rpaulo 		int i;
    633   1.98    rpaulo 		struct nd_prefixctl pr0;
    634   1.98    rpaulo 		struct nd_prefix *pr;
    635   1.65    itojun 
    636   1.70    itojun 		/* reject read-only flags */
    637   1.70    itojun 		if ((ifra->ifra_flags & IN6_IFF_DUPLICATED) != 0 ||
    638   1.70    itojun 		    (ifra->ifra_flags & IN6_IFF_DETACHED) != 0 ||
    639   1.70    itojun 		    (ifra->ifra_flags & IN6_IFF_NODAD) != 0 ||
    640   1.70    itojun 		    (ifra->ifra_flags & IN6_IFF_AUTOCONF) != 0) {
    641  1.116    dyoung 			return EINVAL;
    642   1.70    itojun 		}
    643   1.65    itojun 		/*
    644   1.65    itojun 		 * first, make or update the interface address structure,
    645   1.65    itojun 		 * and link it to the list.
    646   1.65    itojun 		 */
    647   1.98    rpaulo 		if ((error = in6_update_ifa(ifp, ifra, ia, 0)) != 0)
    648  1.116    dyoung 			return error;
    649   1.65    itojun 		if ((ia = in6ifa_ifpwithaddr(ifp, &ifra->ifra_addr.sin6_addr))
    650   1.65    itojun 		    == NULL) {
    651   1.65    itojun 		    	/*
    652   1.65    itojun 			 * this can happen when the user specify the 0 valid
    653   1.65    itojun 			 * lifetime.
    654   1.65    itojun 			 */
    655   1.65    itojun 			break;
    656   1.65    itojun 		}
    657   1.65    itojun 
    658   1.65    itojun 		/*
    659   1.65    itojun 		 * then, make the prefix on-link on the interface.
    660   1.65    itojun 		 * XXX: we'd rather create the prefix before the address, but
    661   1.65    itojun 		 * we need at least one address to install the corresponding
    662   1.65    itojun 		 * interface route, so we configure the address first.
    663   1.65    itojun 		 */
    664   1.65    itojun 
    665   1.65    itojun 		/*
    666   1.65    itojun 		 * convert mask to prefix length (prefixmask has already
    667   1.65    itojun 		 * been validated in in6_update_ifa().
    668   1.65    itojun 		 */
    669   1.65    itojun 		bzero(&pr0, sizeof(pr0));
    670   1.65    itojun 		pr0.ndpr_ifp = ifp;
    671   1.65    itojun 		pr0.ndpr_plen = in6_mask2len(&ifra->ifra_prefixmask.sin6_addr,
    672   1.65    itojun 		    NULL);
    673   1.65    itojun 		if (pr0.ndpr_plen == 128) {
    674   1.65    itojun 			break;	/* we don't need to install a host route. */
    675   1.65    itojun 		}
    676   1.65    itojun 		pr0.ndpr_prefix = ifra->ifra_addr;
    677   1.65    itojun 		/* apply the mask for safety. */
    678   1.65    itojun 		for (i = 0; i < 4; i++) {
    679   1.65    itojun 			pr0.ndpr_prefix.sin6_addr.s6_addr32[i] &=
    680   1.65    itojun 			    ifra->ifra_prefixmask.sin6_addr.s6_addr32[i];
    681   1.65    itojun 		}
    682   1.65    itojun 		/*
    683   1.65    itojun 		 * XXX: since we don't have an API to set prefix (not address)
    684   1.65    itojun 		 * lifetimes, we just use the same lifetimes as addresses.
    685   1.65    itojun 		 * The (temporarily) installed lifetimes can be overridden by
    686   1.65    itojun 		 * later advertised RAs (when accept_rtadv is non 0), which is
    687   1.65    itojun 		 * an intended behavior.
    688   1.65    itojun 		 */
    689   1.65    itojun 		pr0.ndpr_raf_onlink = 1; /* should be configurable? */
    690   1.65    itojun 		pr0.ndpr_raf_auto =
    691   1.65    itojun 		    ((ifra->ifra_flags & IN6_IFF_AUTOCONF) != 0);
    692   1.65    itojun 		pr0.ndpr_vltime = ifra->ifra_lifetime.ia6t_vltime;
    693   1.65    itojun 		pr0.ndpr_pltime = ifra->ifra_lifetime.ia6t_pltime;
    694   1.65    itojun 
    695   1.71    itojun 		/* add the prefix if not yet. */
    696   1.65    itojun 		if ((pr = nd6_prefix_lookup(&pr0)) == NULL) {
    697   1.65    itojun 			/*
    698   1.65    itojun 			 * nd6_prelist_add will install the corresponding
    699   1.65    itojun 			 * interface route.
    700   1.65    itojun 			 */
    701   1.65    itojun 			if ((error = nd6_prelist_add(&pr0, NULL, &pr)) != 0)
    702  1.116    dyoung 				return error;
    703   1.65    itojun 			if (pr == NULL) {
    704   1.65    itojun 				log(LOG_ERR, "nd6_prelist_add succeeded but "
    705   1.65    itojun 				    "no prefix\n");
    706  1.116    dyoung 				return EINVAL; /* XXX panic here? */
    707   1.65    itojun 			}
    708   1.65    itojun 		}
    709   1.71    itojun 
    710   1.71    itojun 		/* relate the address to the prefix */
    711   1.71    itojun 		if (ia->ia6_ndpr == NULL) {
    712   1.65    itojun 			ia->ia6_ndpr = pr;
    713   1.65    itojun 			pr->ndpr_refcnt++;
    714   1.98    rpaulo 
    715   1.98    rpaulo 			/*
    716   1.98    rpaulo 			 * If this is the first autoconf address from the
    717   1.98    rpaulo 			 * prefix, create a temporary address as well
    718   1.98    rpaulo 			 * (when required).
    719   1.98    rpaulo 			 */
    720   1.98    rpaulo 			if ((ia->ia6_flags & IN6_IFF_AUTOCONF) &&
    721   1.98    rpaulo 			    ip6_use_tempaddr && pr->ndpr_refcnt == 1) {
    722   1.98    rpaulo 				int e;
    723   1.98    rpaulo 				if ((e = in6_tmpifadd(ia, 1, 0)) != 0) {
    724   1.98    rpaulo 					log(LOG_NOTICE, "in6_control: failed "
    725   1.98    rpaulo 					    "to create a temporary address, "
    726   1.98    rpaulo 					    "errno=%d\n", e);
    727   1.98    rpaulo 				}
    728   1.98    rpaulo 			}
    729   1.65    itojun 		}
    730   1.65    itojun 
    731   1.65    itojun 		/*
    732   1.65    itojun 		 * this might affect the status of autoconfigured addresses,
    733   1.65    itojun 		 * that is, this address might make other addresses detached.
    734   1.65    itojun 		 */
    735   1.65    itojun 		pfxlist_onlink_check();
    736   1.65    itojun 
    737   1.90      yamt #ifdef PFIL_HOOKS
    738   1.90      yamt 		(void)pfil_run_hooks(&if_pfil, (struct mbuf **)SIOCAIFADDR_IN6,
    739   1.90      yamt 		    ifp, PFIL_IFADDR);
    740   1.90      yamt #endif
    741   1.90      yamt 
    742   1.65    itojun 		break;
    743   1.65    itojun 	}
    744   1.65    itojun 
    745   1.65    itojun 	case SIOCDIFADDR_IN6:
    746   1.65    itojun 	{
    747   1.98    rpaulo 		struct nd_prefix *pr;
    748    1.2    itojun 
    749   1.20    itojun 		/*
    750   1.65    itojun 		 * If the address being deleted is the only one that owns
    751   1.65    itojun 		 * the corresponding prefix, expire the prefix as well.
    752   1.65    itojun 		 * XXX: theoretically, we don't have to worry about such
    753   1.65    itojun 		 * relationship, since we separate the address management
    754   1.65    itojun 		 * and the prefix management.  We do this, however, to provide
    755   1.65    itojun 		 * as much backward compatibility as possible in terms of
    756   1.65    itojun 		 * the ioctl operation.
    757   1.98    rpaulo 		 * Note that in6_purgeaddr() will decrement ndpr_refcnt.
    758   1.65    itojun 		 */
    759   1.98    rpaulo 		pr = ia->ia6_ndpr;
    760   1.65    itojun 		in6_purgeaddr(&ia->ia_ifa);
    761   1.98    rpaulo 		if (pr && pr->ndpr_refcnt == 0)
    762   1.65    itojun 			prelist_remove(pr);
    763   1.90      yamt #ifdef PFIL_HOOKS
    764   1.90      yamt 		(void)pfil_run_hooks(&if_pfil, (struct mbuf **)SIOCDIFADDR_IN6,
    765   1.90      yamt 		    ifp, PFIL_IFADDR);
    766   1.90      yamt #endif
    767   1.65    itojun 		break;
    768   1.65    itojun 	}
    769   1.65    itojun 
    770   1.65    itojun 	default:
    771  1.142    dyoung 		return ENOTTY;
    772   1.65    itojun 	}
    773   1.65    itojun 
    774  1.116    dyoung 	return 0;
    775   1.65    itojun }
    776   1.65    itojun 
    777  1.121    dyoung int
    778  1.125  christos in6_control(struct socket *so, u_long cmd, void *data, struct ifnet *ifp,
    779  1.121    dyoung     struct lwp *l)
    780  1.121    dyoung {
    781  1.121    dyoung 	int error, privileged, s;
    782  1.121    dyoung 
    783  1.121    dyoung 	privileged = 0;
    784  1.121    dyoung 	if (l && !kauth_authorize_generic(l->l_cred,
    785  1.122      elad 	    KAUTH_GENERIC_ISSUSER, NULL))
    786  1.121    dyoung 		privileged++;
    787  1.121    dyoung 
    788  1.121    dyoung 	s = splnet();
    789  1.121    dyoung 	error = in6_control1(so , cmd, data, ifp, l, privileged);
    790  1.121    dyoung 	splx(s);
    791  1.121    dyoung 	return error;
    792  1.121    dyoung }
    793  1.121    dyoung 
    794   1.65    itojun /*
    795   1.65    itojun  * Update parameters of an IPv6 interface address.
    796   1.65    itojun  * If necessary, a new entry is created and linked into address chains.
    797   1.65    itojun  * This function is separated from in6_control().
    798   1.65    itojun  * XXX: should this be performed under splnet()?
    799   1.65    itojun  */
    800  1.121    dyoung static int
    801  1.121    dyoung in6_update_ifa1(struct ifnet *ifp, struct in6_aliasreq *ifra,
    802  1.121    dyoung     struct in6_ifaddr *ia, int flags)
    803   1.65    itojun {
    804   1.65    itojun 	int error = 0, hostIsNew = 0, plen = -1;
    805   1.65    itojun 	struct in6_ifaddr *oia;
    806   1.65    itojun 	struct sockaddr_in6 dst6;
    807   1.65    itojun 	struct in6_addrlifetime *lt;
    808   1.65    itojun 	struct in6_multi_mship *imm;
    809   1.98    rpaulo 	struct in6_multi *in6m_sol;
    810   1.65    itojun 	struct rtentry *rt;
    811   1.99    rpaulo 	int dad_delay;
    812   1.98    rpaulo 
    813   1.98    rpaulo 	in6m_sol = NULL;
    814   1.65    itojun 
    815   1.65    itojun 	/* Validate parameters */
    816   1.65    itojun 	if (ifp == NULL || ifra == NULL) /* this maybe redundant */
    817  1.116    dyoung 		return EINVAL;
    818   1.20    itojun 
    819   1.65    itojun 	/*
    820   1.65    itojun 	 * The destination address for a p2p link must have a family
    821   1.65    itojun 	 * of AF_UNSPEC or AF_INET6.
    822   1.65    itojun 	 */
    823   1.65    itojun 	if ((ifp->if_flags & IFF_POINTOPOINT) != 0 &&
    824   1.65    itojun 	    ifra->ifra_dstaddr.sin6_family != AF_INET6 &&
    825   1.65    itojun 	    ifra->ifra_dstaddr.sin6_family != AF_UNSPEC)
    826  1.116    dyoung 		return EAFNOSUPPORT;
    827   1.65    itojun 	/*
    828   1.65    itojun 	 * validate ifra_prefixmask.  don't check sin6_family, netmask
    829   1.65    itojun 	 * does not carry fields other than sin6_len.
    830   1.65    itojun 	 */
    831   1.65    itojun 	if (ifra->ifra_prefixmask.sin6_len > sizeof(struct sockaddr_in6))
    832  1.116    dyoung 		return EINVAL;
    833   1.65    itojun 	/*
    834   1.65    itojun 	 * Because the IPv6 address architecture is classless, we require
    835   1.65    itojun 	 * users to specify a (non 0) prefix length (mask) for a new address.
    836   1.65    itojun 	 * We also require the prefix (when specified) mask is valid, and thus
    837   1.65    itojun 	 * reject a non-consecutive mask.
    838   1.65    itojun 	 */
    839   1.65    itojun 	if (ia == NULL && ifra->ifra_prefixmask.sin6_len == 0)
    840  1.116    dyoung 		return EINVAL;
    841   1.65    itojun 	if (ifra->ifra_prefixmask.sin6_len != 0) {
    842   1.65    itojun 		plen = in6_mask2len(&ifra->ifra_prefixmask.sin6_addr,
    843   1.65    itojun 		    (u_char *)&ifra->ifra_prefixmask +
    844   1.65    itojun 		    ifra->ifra_prefixmask.sin6_len);
    845   1.65    itojun 		if (plen <= 0)
    846  1.116    dyoung 			return EINVAL;
    847   1.65    itojun 	} else {
    848   1.65    itojun 		/*
    849   1.65    itojun 		 * In this case, ia must not be NULL.  We just use its prefix
    850   1.65    itojun 		 * length.
    851   1.65    itojun 		 */
    852   1.65    itojun 		plen = in6_mask2len(&ia->ia_prefixmask.sin6_addr, NULL);
    853   1.65    itojun 	}
    854   1.65    itojun 	/*
    855   1.65    itojun 	 * If the destination address on a p2p interface is specified,
    856   1.65    itojun 	 * and the address is a scoped one, validate/set the scope
    857   1.65    itojun 	 * zone identifier.
    858   1.65    itojun 	 */
    859   1.65    itojun 	dst6 = ifra->ifra_dstaddr;
    860   1.65    itojun 	if ((ifp->if_flags & (IFF_POINTOPOINT|IFF_LOOPBACK)) != 0 &&
    861   1.65    itojun 	    (dst6.sin6_family == AF_INET6)) {
    862   1.95    rpaulo 		struct in6_addr in6_tmp;
    863   1.95    rpaulo 		u_int32_t zoneid;
    864   1.95    rpaulo 
    865   1.95    rpaulo 		in6_tmp = dst6.sin6_addr;
    866   1.95    rpaulo 		if (in6_setscope(&in6_tmp, ifp, &zoneid))
    867  1.116    dyoung 			return EINVAL; /* XXX: should be impossible */
    868   1.95    rpaulo 
    869   1.95    rpaulo 		if (dst6.sin6_scope_id != 0) {
    870   1.95    rpaulo 			if (dst6.sin6_scope_id != zoneid)
    871  1.116    dyoung 				return EINVAL;
    872   1.95    rpaulo 		} else		/* user omit to specify the ID. */
    873   1.95    rpaulo 			dst6.sin6_scope_id = zoneid;
    874   1.95    rpaulo 
    875   1.95    rpaulo 		/* convert into the internal form */
    876   1.95    rpaulo 		if (sa6_embedscope(&dst6, 0))
    877  1.116    dyoung 			return EINVAL; /* XXX: should be impossible */
    878   1.65    itojun 	}
    879   1.65    itojun 	/*
    880   1.65    itojun 	 * The destination address can be specified only for a p2p or a
    881   1.65    itojun 	 * loopback interface.  If specified, the corresponding prefix length
    882   1.65    itojun 	 * must be 128.
    883   1.65    itojun 	 */
    884   1.65    itojun 	if (ifra->ifra_dstaddr.sin6_family == AF_INET6) {
    885   1.65    itojun #ifdef FORCE_P2PPLEN
    886   1.65    itojun 		int i;
    887   1.65    itojun #endif
    888   1.65    itojun 
    889   1.65    itojun 		if ((ifp->if_flags & (IFF_POINTOPOINT|IFF_LOOPBACK)) == 0) {
    890   1.65    itojun 			/* XXX: noisy message */
    891   1.70    itojun 			nd6log((LOG_INFO, "in6_update_ifa: a destination can "
    892   1.70    itojun 			    "be specified for a p2p or a loopback IF only\n"));
    893  1.116    dyoung 			return EINVAL;
    894   1.65    itojun 		}
    895   1.65    itojun 		if (plen != 128) {
    896   1.70    itojun 			nd6log((LOG_INFO, "in6_update_ifa: prefixlen should "
    897   1.70    itojun 			    "be 128 when dstaddr is specified\n"));
    898   1.65    itojun #ifdef FORCE_P2PPLEN
    899   1.65    itojun 			/*
    900   1.65    itojun 			 * To be compatible with old configurations,
    901   1.65    itojun 			 * such as ifconfig gif0 inet6 2001::1 2001::2
    902   1.65    itojun 			 * prefixlen 126, we override the specified
    903   1.65    itojun 			 * prefixmask as if the prefix length was 128.
    904   1.65    itojun 			 */
    905   1.65    itojun 			ifra->ifra_prefixmask.sin6_len =
    906   1.65    itojun 			    sizeof(struct sockaddr_in6);
    907   1.65    itojun 			for (i = 0; i < 4; i++)
    908   1.65    itojun 				ifra->ifra_prefixmask.sin6_addr.s6_addr32[i] =
    909   1.65    itojun 				    0xffffffff;
    910   1.65    itojun 			plen = 128;
    911   1.65    itojun #else
    912  1.116    dyoung 			return EINVAL;
    913   1.25    itojun #endif
    914   1.24    itojun 		}
    915   1.65    itojun 	}
    916   1.65    itojun 	/* lifetime consistency check */
    917   1.65    itojun 	lt = &ifra->ifra_lifetime;
    918   1.65    itojun 	if (lt->ia6t_pltime > lt->ia6t_vltime)
    919  1.116    dyoung 		return EINVAL;
    920   1.65    itojun 	if (lt->ia6t_vltime == 0) {
    921   1.65    itojun 		/*
    922   1.65    itojun 		 * the following log might be noisy, but this is a typical
    923   1.65    itojun 		 * configuration mistake or a tool's bug.
    924   1.65    itojun 		 */
    925   1.67    itojun 		nd6log((LOG_INFO,
    926   1.65    itojun 		    "in6_update_ifa: valid lifetime is 0 for %s\n",
    927   1.67    itojun 		    ip6_sprintf(&ifra->ifra_addr.sin6_addr)));
    928    1.2    itojun 
    929   1.65    itojun 		if (ia == NULL)
    930  1.116    dyoung 			return 0; /* there's nothing to do */
    931   1.65    itojun 	}
    932   1.65    itojun 
    933   1.65    itojun 	/*
    934   1.65    itojun 	 * If this is a new address, allocate a new ifaddr and link it
    935   1.65    itojun 	 * into chains.
    936   1.65    itojun 	 */
    937   1.65    itojun 	if (ia == NULL) {
    938   1.65    itojun 		hostIsNew = 1;
    939   1.65    itojun 		/*
    940   1.65    itojun 		 * When in6_update_ifa() is called in a process of a received
    941   1.65    itojun 		 * RA, it is called under an interrupt context.  So, we should
    942   1.65    itojun 		 * call malloc with M_NOWAIT.
    943   1.65    itojun 		 */
    944   1.65    itojun 		ia = (struct in6_ifaddr *) malloc(sizeof(*ia), M_IFADDR,
    945   1.65    itojun 		    M_NOWAIT);
    946   1.65    itojun 		if (ia == NULL)
    947  1.116    dyoung 			return ENOBUFS;
    948  1.125  christos 		bzero((void *)ia, sizeof(*ia));
    949   1.65    itojun 		LIST_INIT(&ia->ia6_memberships);
    950   1.65    itojun 		/* Initialize the address and masks, and put time stamp */
    951   1.65    itojun 		ia->ia_ifa.ifa_addr = (struct sockaddr *)&ia->ia_addr;
    952   1.65    itojun 		ia->ia_addr.sin6_family = AF_INET6;
    953   1.65    itojun 		ia->ia_addr.sin6_len = sizeof(ia->ia_addr);
    954  1.108    kardel 		ia->ia6_createtime = time_second;
    955   1.65    itojun 		if ((ifp->if_flags & (IFF_POINTOPOINT | IFF_LOOPBACK)) != 0) {
    956    1.2    itojun 			/*
    957   1.65    itojun 			 * XXX: some functions expect that ifa_dstaddr is not
    958   1.65    itojun 			 * NULL for p2p interfaces.
    959    1.2    itojun 			 */
    960   1.65    itojun 			ia->ia_ifa.ifa_dstaddr =
    961   1.65    itojun 			    (struct sockaddr *)&ia->ia_dstaddr;
    962   1.65    itojun 		} else {
    963   1.65    itojun 			ia->ia_ifa.ifa_dstaddr = NULL;
    964    1.2    itojun 		}
    965   1.65    itojun 		ia->ia_ifa.ifa_netmask =
    966   1.65    itojun 		    (struct sockaddr *)&ia->ia_prefixmask;
    967    1.2    itojun 
    968   1.65    itojun 		ia->ia_ifp = ifp;
    969   1.65    itojun 		if ((oia = in6_ifaddr) != NULL) {
    970   1.65    itojun 			for ( ; oia->ia_next; oia = oia->ia_next)
    971   1.65    itojun 				continue;
    972   1.65    itojun 			oia->ia_next = ia;
    973   1.65    itojun 		} else
    974   1.65    itojun 			in6_ifaddr = ia;
    975   1.65    itojun 		/* gain a refcnt for the link from in6_ifaddr */
    976   1.65    itojun 		IFAREF(&ia->ia_ifa);
    977   1.65    itojun 
    978  1.139    dyoung 		ifa_insert(ifp, &ia->ia_ifa);
    979   1.65    itojun 	}
    980    1.2    itojun 
    981   1.98    rpaulo 	/* update timestamp */
    982  1.108    kardel 	ia->ia6_updatetime = time_second;
    983   1.98    rpaulo 
    984   1.65    itojun 	/* set prefix mask */
    985   1.65    itojun 	if (ifra->ifra_prefixmask.sin6_len) {
    986   1.65    itojun 		/*
    987   1.65    itojun 		 * We prohibit changing the prefix length of an existing
    988   1.65    itojun 		 * address, because
    989   1.65    itojun 		 * + such an operation should be rare in IPv6, and
    990   1.65    itojun 		 * + the operation would confuse prefix management.
    991   1.65    itojun 		 */
    992   1.65    itojun 		if (ia->ia_prefixmask.sin6_len &&
    993   1.65    itojun 		    in6_mask2len(&ia->ia_prefixmask.sin6_addr, NULL) != plen) {
    994   1.67    itojun 			nd6log((LOG_INFO, "in6_update_ifa: the prefix length of an"
    995   1.65    itojun 			    " existing (%s) address should not be changed\n",
    996   1.67    itojun 			    ip6_sprintf(&ia->ia_addr.sin6_addr)));
    997   1.65    itojun 			error = EINVAL;
    998   1.65    itojun 			goto unlink;
    999   1.65    itojun 		}
   1000   1.65    itojun 		ia->ia_prefixmask = ifra->ifra_prefixmask;
   1001   1.65    itojun 	}
   1002   1.65    itojun 
   1003   1.65    itojun 	/*
   1004   1.65    itojun 	 * If a new destination address is specified, scrub the old one and
   1005   1.65    itojun 	 * install the new destination.  Note that the interface must be
   1006   1.65    itojun 	 * p2p or loopback (see the check above.)
   1007   1.65    itojun 	 */
   1008   1.65    itojun 	if (dst6.sin6_family == AF_INET6 &&
   1009   1.65    itojun 	    !IN6_ARE_ADDR_EQUAL(&dst6.sin6_addr, &ia->ia_dstaddr.sin6_addr)) {
   1010   1.65    itojun 		if ((ia->ia_flags & IFA_ROUTE) != 0 &&
   1011   1.82    simonb 		    rtinit(&(ia->ia_ifa), (int)RTM_DELETE, RTF_HOST) != 0) {
   1012   1.67    itojun 			nd6log((LOG_ERR, "in6_update_ifa: failed to remove "
   1013   1.65    itojun 			    "a route to the old destination: %s\n",
   1014   1.67    itojun 			    ip6_sprintf(&ia->ia_addr.sin6_addr)));
   1015   1.65    itojun 			/* proceed anyway... */
   1016    1.2    itojun 		} else
   1017   1.65    itojun 			ia->ia_flags &= ~IFA_ROUTE;
   1018   1.65    itojun 		ia->ia_dstaddr = dst6;
   1019   1.65    itojun 	}
   1020   1.65    itojun 
   1021   1.65    itojun 	/*
   1022   1.65    itojun 	 * Set lifetimes.  We do not refer to ia6t_expire and ia6t_preferred
   1023   1.65    itojun 	 * to see if the address is deprecated or invalidated, but initialize
   1024   1.65    itojun 	 * these members for applications.
   1025   1.65    itojun 	 */
   1026   1.65    itojun 	ia->ia6_lifetime = ifra->ifra_lifetime;
   1027   1.65    itojun 	if (ia->ia6_lifetime.ia6t_vltime != ND6_INFINITE_LIFETIME) {
   1028   1.65    itojun 		ia->ia6_lifetime.ia6t_expire =
   1029  1.108    kardel 		    time_second + ia->ia6_lifetime.ia6t_vltime;
   1030   1.65    itojun 	} else
   1031   1.65    itojun 		ia->ia6_lifetime.ia6t_expire = 0;
   1032   1.65    itojun 	if (ia->ia6_lifetime.ia6t_pltime != ND6_INFINITE_LIFETIME) {
   1033   1.65    itojun 		ia->ia6_lifetime.ia6t_preferred =
   1034  1.108    kardel 		    time_second + ia->ia6_lifetime.ia6t_pltime;
   1035   1.65    itojun 	} else
   1036   1.65    itojun 		ia->ia6_lifetime.ia6t_preferred = 0;
   1037   1.65    itojun 
   1038   1.65    itojun 	/* reset the interface and routing table appropriately. */
   1039   1.65    itojun 	if ((error = in6_ifinit(ifp, ia, &ifra->ifra_addr, hostIsNew)) != 0)
   1040   1.65    itojun 		goto unlink;
   1041   1.65    itojun 
   1042   1.65    itojun 	/*
   1043   1.70    itojun 	 * configure address flags.
   1044   1.70    itojun 	 */
   1045   1.70    itojun 	ia->ia6_flags = ifra->ifra_flags;
   1046   1.70    itojun 	/*
   1047   1.70    itojun 	 * backward compatibility - if IN6_IFF_DEPRECATED is set from the
   1048   1.70    itojun 	 * userland, make it deprecated.
   1049   1.70    itojun 	 */
   1050   1.70    itojun 	if ((ifra->ifra_flags & IN6_IFF_DEPRECATED) != 0) {
   1051   1.70    itojun 		ia->ia6_lifetime.ia6t_pltime = 0;
   1052  1.108    kardel 		ia->ia6_lifetime.ia6t_preferred = time_second;
   1053   1.70    itojun 	}
   1054   1.95    rpaulo 
   1055   1.70    itojun 	/*
   1056   1.98    rpaulo 	 * Make the address tentative before joining multicast addresses,
   1057   1.98    rpaulo 	 * so that corresponding MLD responses would not have a tentative
   1058   1.98    rpaulo 	 * source address.
   1059   1.65    itojun 	 */
   1060   1.98    rpaulo 	ia->ia6_flags &= ~IN6_IFF_DUPLICATED;	/* safety */
   1061   1.98    rpaulo 	if (hostIsNew && in6if_do_dad(ifp))
   1062   1.65    itojun 		ia->ia6_flags |= IN6_IFF_TENTATIVE;
   1063   1.65    itojun 
   1064   1.65    itojun 	/*
   1065   1.89    itojun 	 * We are done if we have simply modified an existing address.
   1066   1.89    itojun 	 */
   1067   1.89    itojun 	if (!hostIsNew)
   1068  1.116    dyoung 		return error;
   1069   1.89    itojun 
   1070   1.89    itojun 	/*
   1071   1.65    itojun 	 * Beyond this point, we should call in6_purgeaddr upon an error,
   1072   1.65    itojun 	 * not just go to unlink.
   1073   1.65    itojun 	 */
   1074   1.65    itojun 
   1075   1.97    rpaulo 	/* join necessary multicast groups */
   1076   1.65    itojun 	if ((ifp->if_flags & IFF_MULTICAST) != 0) {
   1077   1.65    itojun 		struct sockaddr_in6 mltaddr, mltmask;
   1078   1.95    rpaulo 		struct in6_addr llsol;
   1079   1.65    itojun 
   1080   1.89    itojun 		/* join solicited multicast addr for new host id */
   1081   1.95    rpaulo 		bzero(&llsol, sizeof(struct in6_addr));
   1082   1.95    rpaulo 		llsol.s6_addr16[0] = htons(0xff02);
   1083   1.95    rpaulo 		llsol.s6_addr32[1] = 0;
   1084   1.95    rpaulo 		llsol.s6_addr32[2] = htonl(1);
   1085   1.95    rpaulo 		llsol.s6_addr32[3] = ifra->ifra_addr.sin6_addr.s6_addr32[3];
   1086   1.95    rpaulo 		llsol.s6_addr8[12] = 0xff;
   1087   1.95    rpaulo 		if ((error = in6_setscope(&llsol, ifp, NULL)) != 0) {
   1088   1.95    rpaulo 			/* XXX: should not happen */
   1089   1.95    rpaulo 			log(LOG_ERR, "in6_update_ifa: "
   1090   1.95    rpaulo 			    "in6_setscope failed\n");
   1091   1.95    rpaulo 			goto cleanup;
   1092   1.95    rpaulo 		}
   1093   1.99    rpaulo 		dad_delay = 0;
   1094   1.98    rpaulo 		if ((flags & IN6_IFAUPDATE_DADDELAY)) {
   1095   1.98    rpaulo 			/*
   1096   1.98    rpaulo 			 * We need a random delay for DAD on the address
   1097   1.98    rpaulo 			 * being configured.  It also means delaying
   1098   1.98    rpaulo 			 * transmission of the corresponding MLD report to
   1099   1.98    rpaulo 			 * avoid report collision.
   1100   1.98    rpaulo 			 * [draft-ietf-ipv6-rfc2462bis-02.txt]
   1101   1.98    rpaulo 			 */
   1102   1.99    rpaulo 			dad_delay = arc4random() %
   1103   1.98    rpaulo 			    (MAX_RTR_SOLICITATION_DELAY * hz);
   1104   1.98    rpaulo 		}
   1105   1.98    rpaulo 
   1106   1.98    rpaulo #define	MLTMASK_LEN  4	/* mltmask's masklen (=32bit=4octet) */
   1107   1.98    rpaulo 		/* join solicited multicast addr for new host id */
   1108   1.99    rpaulo 		imm = in6_joingroup(ifp, &llsol, &error, dad_delay);
   1109   1.89    itojun 		if (!imm) {
   1110   1.89    itojun 			nd6log((LOG_ERR,
   1111   1.89    itojun 			    "in6_update_ifa: addmulti "
   1112   1.89    itojun 			    "failed for %s on %s (errno=%d)\n",
   1113   1.95    rpaulo 			    ip6_sprintf(&llsol), if_name(ifp), error));
   1114   1.89    itojun 			goto cleanup;
   1115   1.65    itojun 		}
   1116   1.89    itojun 		LIST_INSERT_HEAD(&ia->ia6_memberships, imm, i6mm_chain);
   1117   1.98    rpaulo 		in6m_sol = imm->i6mm_maddr;
   1118   1.65    itojun 
   1119  1.135    dyoung 		sockaddr_in6_init(&mltmask, &in6mask32, 0, 0, 0);
   1120   1.65    itojun 
   1121   1.65    itojun 		/*
   1122   1.65    itojun 		 * join link-local all-nodes address
   1123   1.65    itojun 		 */
   1124  1.135    dyoung 		sockaddr_in6_init(&mltaddr, &in6addr_linklocal_allnodes,
   1125  1.135    dyoung 		    0, 0, 0);
   1126  1.120    dyoung 		if ((error = in6_setscope(&mltaddr.sin6_addr, ifp, NULL)) != 0)
   1127   1.95    rpaulo 			goto cleanup; /* XXX: should not fail */
   1128   1.39    itojun 
   1129   1.39    itojun 		/*
   1130   1.65    itojun 		 * XXX: do we really need this automatic routes?
   1131   1.65    itojun 		 * We should probably reconsider this stuff.  Most applications
   1132   1.65    itojun 		 * actually do not need the routes, since they usually specify
   1133   1.65    itojun 		 * the outgoing interface.
   1134    1.2    itojun 		 */
   1135   1.65    itojun 		rt = rtalloc1((struct sockaddr *)&mltaddr, 0);
   1136   1.65    itojun 		if (rt) {
   1137   1.65    itojun 			if (memcmp(&mltaddr.sin6_addr,
   1138  1.131    dyoung 			    &satocsin6(rt_getkey(rt))->sin6_addr,
   1139   1.98    rpaulo 			    MLTMASK_LEN)) {
   1140   1.65    itojun 				RTFREE(rt);
   1141   1.65    itojun 				rt = NULL;
   1142  1.121    dyoung 			} else if (rt->rt_ifp != ifp) {
   1143  1.121    dyoung 				IN6_DPRINTF("%s: rt_ifp %p -> %p (%s) "
   1144  1.121    dyoung 				    "network %04x:%04x::/32 = %04x:%04x::/32\n",
   1145  1.121    dyoung 				    __func__, rt->rt_ifp, ifp, ifp->if_xname,
   1146  1.121    dyoung 				    ntohs(mltaddr.sin6_addr.s6_addr16[0]),
   1147  1.121    dyoung 				    ntohs(mltaddr.sin6_addr.s6_addr16[1]),
   1148  1.131    dyoung 				    satocsin6(rt_getkey(rt))->sin6_addr.s6_addr16[0],
   1149  1.131    dyoung 				    satocsin6(rt_getkey(rt))->sin6_addr.s6_addr16[1]);
   1150  1.121    dyoung 				rt_replace_ifa(rt, &ia->ia_ifa);
   1151  1.121    dyoung 				rt->rt_ifp = ifp;
   1152   1.65    itojun 			}
   1153    1.2    itojun 		}
   1154   1.65    itojun 		if (!rt) {
   1155   1.65    itojun 			struct rt_addrinfo info;
   1156    1.2    itojun 
   1157   1.65    itojun 			bzero(&info, sizeof(info));
   1158   1.65    itojun 			info.rti_info[RTAX_DST] = (struct sockaddr *)&mltaddr;
   1159   1.65    itojun 			info.rti_info[RTAX_GATEWAY] =
   1160   1.65    itojun 			    (struct sockaddr *)&ia->ia_addr;
   1161   1.65    itojun 			info.rti_info[RTAX_NETMASK] =
   1162   1.65    itojun 			    (struct sockaddr *)&mltmask;
   1163   1.65    itojun 			info.rti_info[RTAX_IFA] =
   1164   1.65    itojun 			    (struct sockaddr *)&ia->ia_addr;
   1165   1.65    itojun 			/* XXX: we need RTF_CLONING to fake nd6_rtrequest */
   1166   1.65    itojun 			info.rti_flags = RTF_UP | RTF_CLONING;
   1167   1.65    itojun 			error = rtrequest1(RTM_ADD, &info, NULL);
   1168   1.65    itojun 			if (error)
   1169   1.65    itojun 				goto cleanup;
   1170   1.65    itojun 		} else {
   1171   1.65    itojun 			RTFREE(rt);
   1172   1.65    itojun 		}
   1173   1.98    rpaulo 		imm = in6_joingroup(ifp, &mltaddr.sin6_addr, &error, 0);
   1174   1.89    itojun 		if (!imm) {
   1175   1.89    itojun 			nd6log((LOG_WARNING,
   1176   1.89    itojun 			    "in6_update_ifa: addmulti failed for "
   1177   1.89    itojun 			    "%s on %s (errno=%d)\n",
   1178   1.89    itojun 			    ip6_sprintf(&mltaddr.sin6_addr),
   1179   1.89    itojun 			    if_name(ifp), error));
   1180   1.89    itojun 			goto cleanup;
   1181   1.65    itojun 		}
   1182   1.89    itojun 		LIST_INSERT_HEAD(&ia->ia6_memberships, imm, i6mm_chain);
   1183    1.8    itojun 
   1184   1.65    itojun 		/*
   1185   1.65    itojun 		 * join node information group address
   1186   1.65    itojun 		 */
   1187   1.99    rpaulo 		dad_delay = 0;
   1188   1.98    rpaulo 		if ((flags & IN6_IFAUPDATE_DADDELAY)) {
   1189   1.98    rpaulo 			/*
   1190   1.98    rpaulo 			 * The spec doesn't say anything about delay for this
   1191   1.98    rpaulo 			 * group, but the same logic should apply.
   1192   1.98    rpaulo 			 */
   1193   1.99    rpaulo 			dad_delay = arc4random() %
   1194   1.98    rpaulo 			    (MAX_RTR_SOLICITATION_DELAY * hz);
   1195   1.98    rpaulo 		}
   1196  1.120    dyoung 		if (in6_nigroup(ifp, hostname, hostnamelen, &mltaddr) != 0)
   1197  1.120    dyoung 			;
   1198  1.120    dyoung 		else if ((imm = in6_joingroup(ifp, &mltaddr.sin6_addr, &error,
   1199  1.120    dyoung 		          dad_delay)) == NULL) { /* XXX jinmei */
   1200  1.120    dyoung 			nd6log((LOG_WARNING, "in6_update_ifa: "
   1201  1.120    dyoung 			    "addmulti failed for %s on %s (errno=%d)\n",
   1202  1.120    dyoung 			    ip6_sprintf(&mltaddr.sin6_addr),
   1203  1.120    dyoung 			    if_name(ifp), error));
   1204  1.120    dyoung 			/* XXX not very fatal, go on... */
   1205  1.120    dyoung 		} else {
   1206  1.120    dyoung 			LIST_INSERT_HEAD(&ia->ia6_memberships, imm, i6mm_chain);
   1207    1.8    itojun 		}
   1208    1.8    itojun 
   1209   1.65    itojun 
   1210   1.95    rpaulo 		/*
   1211   1.95    rpaulo 		 * join interface-local all-nodes address.
   1212   1.95    rpaulo 		 * (ff01::1%ifN, and ff01::%ifN/32)
   1213   1.95    rpaulo 		 */
   1214   1.95    rpaulo 		mltaddr.sin6_addr = in6addr_nodelocal_allnodes;
   1215  1.120    dyoung 		if ((error = in6_setscope(&mltaddr.sin6_addr, ifp, NULL)) != 0)
   1216   1.95    rpaulo 			goto cleanup; /* XXX: should not fail */
   1217    1.2    itojun 
   1218   1.95    rpaulo 		/* XXX: again, do we really need the route? */
   1219   1.95    rpaulo 		rt = rtalloc1((struct sockaddr *)&mltaddr, 0);
   1220   1.95    rpaulo 		if (rt) {
   1221   1.95    rpaulo 			/* 32bit came from "mltmask" */
   1222   1.95    rpaulo 			if (memcmp(&mltaddr.sin6_addr,
   1223  1.131    dyoung 			    &satocsin6(rt_getkey(rt))->sin6_addr,
   1224  1.121    dyoung 			    32 / NBBY)) {
   1225   1.65    itojun 				RTFREE(rt);
   1226   1.95    rpaulo 				rt = NULL;
   1227  1.121    dyoung 			} else if (rt->rt_ifp != ifp) {
   1228  1.121    dyoung 				IN6_DPRINTF("%s: rt_ifp %p -> %p (%s) "
   1229  1.121    dyoung 				    "network %04x:%04x::/32 = %04x:%04x::/32\n",
   1230  1.121    dyoung 				    __func__, rt->rt_ifp, ifp, ifp->if_xname,
   1231  1.121    dyoung 				    ntohs(mltaddr.sin6_addr.s6_addr16[0]),
   1232  1.121    dyoung 				    ntohs(mltaddr.sin6_addr.s6_addr16[1]),
   1233  1.131    dyoung 				    satocsin6(rt_getkey(rt))->sin6_addr.s6_addr16[0],
   1234  1.131    dyoung 				    satocsin6(rt_getkey(rt))->sin6_addr.s6_addr16[1]);
   1235  1.121    dyoung 				rt_replace_ifa(rt, &ia->ia_ifa);
   1236  1.121    dyoung 				rt->rt_ifp = ifp;
   1237   1.65    itojun 			}
   1238   1.95    rpaulo 		}
   1239   1.95    rpaulo 		if (!rt) {
   1240   1.95    rpaulo 			struct rt_addrinfo info;
   1241   1.95    rpaulo 
   1242   1.95    rpaulo 			bzero(&info, sizeof(info));
   1243   1.95    rpaulo 			info.rti_info[RTAX_DST] = (struct sockaddr *)&mltaddr;
   1244   1.95    rpaulo 			info.rti_info[RTAX_GATEWAY] =
   1245   1.95    rpaulo 			    (struct sockaddr *)&ia->ia_addr;
   1246   1.95    rpaulo 			info.rti_info[RTAX_NETMASK] =
   1247   1.95    rpaulo 			    (struct sockaddr *)&mltmask;
   1248   1.95    rpaulo 			info.rti_info[RTAX_IFA] =
   1249   1.95    rpaulo 			    (struct sockaddr *)&ia->ia_addr;
   1250   1.95    rpaulo 			info.rti_flags = RTF_UP | RTF_CLONING;
   1251   1.95    rpaulo 			error = rtrequest1(RTM_ADD, &info, NULL);
   1252   1.95    rpaulo 			if (error)
   1253   1.89    itojun 				goto cleanup;
   1254   1.98    rpaulo #undef	MLTMASK_LEN
   1255   1.95    rpaulo 		} else {
   1256   1.95    rpaulo 			RTFREE(rt);
   1257   1.95    rpaulo 		}
   1258   1.98    rpaulo 		imm = in6_joingroup(ifp, &mltaddr.sin6_addr, &error, 0);
   1259   1.95    rpaulo 		if (!imm) {
   1260   1.95    rpaulo 			nd6log((LOG_WARNING, "in6_update_ifa: "
   1261   1.95    rpaulo 			    "addmulti failed for %s on %s (errno=%d)\n",
   1262   1.95    rpaulo 			    ip6_sprintf(&mltaddr.sin6_addr),
   1263   1.95    rpaulo 			    if_name(ifp), error));
   1264   1.95    rpaulo 			goto cleanup;
   1265   1.98    rpaulo 		} else {
   1266   1.98    rpaulo 			LIST_INSERT_HEAD(&ia->ia6_memberships, imm, i6mm_chain);
   1267   1.98    rpaulo 		}
   1268   1.98    rpaulo 	}
   1269   1.98    rpaulo 
   1270   1.98    rpaulo 	/*
   1271   1.98    rpaulo 	 * Perform DAD, if needed.
   1272   1.98    rpaulo 	 * XXX It may be of use, if we can administratively
   1273   1.98    rpaulo 	 * disable DAD.
   1274   1.98    rpaulo 	 */
   1275   1.98    rpaulo 	if (hostIsNew && in6if_do_dad(ifp) &&
   1276   1.98    rpaulo 	    ((ifra->ifra_flags & IN6_IFF_NODAD) == 0) &&
   1277   1.98    rpaulo 	    (ia->ia6_flags & IN6_IFF_TENTATIVE))
   1278   1.98    rpaulo 	{
   1279   1.98    rpaulo 		int mindelay, maxdelay;
   1280   1.98    rpaulo 
   1281   1.99    rpaulo 		dad_delay = 0;
   1282   1.98    rpaulo 		if ((flags & IN6_IFAUPDATE_DADDELAY)) {
   1283   1.98    rpaulo 			/*
   1284   1.98    rpaulo 			 * We need to impose a delay before sending an NS
   1285   1.98    rpaulo 			 * for DAD.  Check if we also needed a delay for the
   1286   1.98    rpaulo 			 * corresponding MLD message.  If we did, the delay
   1287   1.98    rpaulo 			 * should be larger than the MLD delay (this could be
   1288   1.98    rpaulo 			 * relaxed a bit, but this simple logic is at least
   1289   1.98    rpaulo 			 * safe).
   1290   1.98    rpaulo 			 */
   1291   1.98    rpaulo 			mindelay = 0;
   1292   1.98    rpaulo 			if (in6m_sol != NULL &&
   1293   1.98    rpaulo 			    in6m_sol->in6m_state == MLD_REPORTPENDING) {
   1294   1.98    rpaulo 				mindelay = in6m_sol->in6m_timer;
   1295   1.98    rpaulo 			}
   1296   1.98    rpaulo 			maxdelay = MAX_RTR_SOLICITATION_DELAY * hz;
   1297   1.98    rpaulo 			if (maxdelay - mindelay == 0)
   1298   1.99    rpaulo 				dad_delay = 0;
   1299   1.98    rpaulo 			else {
   1300   1.99    rpaulo 				dad_delay =
   1301   1.98    rpaulo 				    (arc4random() % (maxdelay - mindelay)) +
   1302   1.98    rpaulo 				    mindelay;
   1303   1.98    rpaulo 			}
   1304   1.65    itojun 		}
   1305  1.146    dyoung 		nd6_dad_start(&ia->ia_ifa, dad_delay);
   1306    1.2    itojun 	}
   1307   1.52    itojun 
   1308  1.116    dyoung 	return error;
   1309   1.65    itojun 
   1310   1.65    itojun   unlink:
   1311   1.65    itojun 	/*
   1312   1.65    itojun 	 * XXX: if a change of an existing address failed, keep the entry
   1313   1.65    itojun 	 * anyway.
   1314   1.65    itojun 	 */
   1315   1.65    itojun 	if (hostIsNew)
   1316   1.65    itojun 		in6_unlink_ifa(ia, ifp);
   1317  1.116    dyoung 	return error;
   1318   1.65    itojun 
   1319   1.65    itojun   cleanup:
   1320   1.65    itojun 	in6_purgeaddr(&ia->ia_ifa);
   1321   1.65    itojun 	return error;
   1322    1.2    itojun }
   1323    1.2    itojun 
   1324  1.121    dyoung int
   1325  1.121    dyoung in6_update_ifa(struct ifnet *ifp, struct in6_aliasreq *ifra,
   1326  1.121    dyoung     struct in6_ifaddr *ia, int flags)
   1327  1.121    dyoung {
   1328  1.121    dyoung 	int rc, s;
   1329  1.121    dyoung 
   1330  1.121    dyoung 	s = splnet();
   1331  1.121    dyoung 	rc = in6_update_ifa1(ifp, ifra, ia, flags);
   1332  1.121    dyoung 	splx(s);
   1333  1.121    dyoung 	return rc;
   1334  1.121    dyoung }
   1335  1.121    dyoung 
   1336   1.10   thorpej void
   1337  1.127  christos in6_purgeaddr(struct ifaddr *ifa)
   1338   1.10   thorpej {
   1339   1.65    itojun 	struct ifnet *ifp = ifa->ifa_ifp;
   1340   1.65    itojun 	struct in6_ifaddr *ia = (struct in6_ifaddr *) ifa;
   1341   1.65    itojun 	struct in6_multi_mship *imm;
   1342   1.40    itojun 
   1343   1.40    itojun 	/* stop DAD processing */
   1344   1.40    itojun 	nd6_dad_stop(ifa);
   1345   1.10   thorpej 
   1346   1.65    itojun 	/*
   1347   1.65    itojun 	 * delete route to the destination of the address being purged.
   1348   1.65    itojun 	 * The interface must be p2p or loopback in this case.
   1349   1.65    itojun 	 */
   1350   1.65    itojun 	if ((ia->ia_flags & IFA_ROUTE) != 0 && ia->ia_dstaddr.sin6_len != 0) {
   1351   1.65    itojun 		int e;
   1352   1.10   thorpej 
   1353   1.65    itojun 		if ((e = rtinit(&(ia->ia_ifa), (int)RTM_DELETE, RTF_HOST))
   1354   1.65    itojun 		    != 0) {
   1355   1.65    itojun 			log(LOG_ERR, "in6_purgeaddr: failed to remove "
   1356   1.65    itojun 			    "a route to the p2p destination: %s on %s, "
   1357   1.65    itojun 			    "errno=%d\n",
   1358   1.65    itojun 			    ip6_sprintf(&ia->ia_addr.sin6_addr), if_name(ifp),
   1359   1.65    itojun 			    e);
   1360   1.65    itojun 			/* proceed anyway... */
   1361   1.65    itojun 		} else
   1362   1.65    itojun 			ia->ia_flags &= ~IFA_ROUTE;
   1363   1.65    itojun 	}
   1364   1.65    itojun 
   1365   1.65    itojun 	/* Remove ownaddr's loopback rtentry, if it exists. */
   1366   1.65    itojun 	in6_ifremloop(&(ia->ia_ifa));
   1367   1.10   thorpej 
   1368   1.65    itojun 	/*
   1369   1.65    itojun 	 * leave from multicast groups we have joined for the interface
   1370   1.65    itojun 	 */
   1371  1.117    dyoung 	while ((imm = LIST_FIRST(&ia->ia6_memberships)) != NULL) {
   1372   1.65    itojun 		LIST_REMOVE(imm, i6mm_chain);
   1373   1.65    itojun 		in6_leavegroup(imm);
   1374   1.10   thorpej 	}
   1375   1.10   thorpej 
   1376   1.65    itojun 	in6_unlink_ifa(ia, ifp);
   1377   1.65    itojun }
   1378   1.65    itojun 
   1379   1.65    itojun static void
   1380  1.127  christos in6_unlink_ifa(struct in6_ifaddr *ia, struct ifnet *ifp)
   1381   1.65    itojun {
   1382   1.65    itojun 	struct in6_ifaddr *oia;
   1383   1.65    itojun 	int	s = splnet();
   1384   1.65    itojun 
   1385  1.139    dyoung 	ifa_remove(ifp, &ia->ia_ifa);
   1386   1.10   thorpej 
   1387   1.10   thorpej 	oia = ia;
   1388   1.10   thorpej 	if (oia == (ia = in6_ifaddr))
   1389   1.10   thorpej 		in6_ifaddr = ia->ia_next;
   1390   1.10   thorpej 	else {
   1391   1.10   thorpej 		while (ia->ia_next && (ia->ia_next != oia))
   1392   1.10   thorpej 			ia = ia->ia_next;
   1393   1.10   thorpej 		if (ia->ia_next)
   1394   1.10   thorpej 			ia->ia_next = oia->ia_next;
   1395   1.65    itojun 		else {
   1396   1.65    itojun 			/* search failed */
   1397   1.65    itojun 			printf("Couldn't unlink in6_ifaddr from in6_ifaddr\n");
   1398   1.65    itojun 		}
   1399   1.10   thorpej 	}
   1400   1.10   thorpej 
   1401  1.133    dyoung 	/*
   1402  1.133    dyoung 	 * XXX thorpej (at) NetBSD.org -- if the interface is going
   1403  1.133    dyoung 	 * XXX away, don't save the multicast entries, delete them!
   1404  1.133    dyoung 	 */
   1405  1.133    dyoung 	if (LIST_EMPTY(&oia->ia6_multiaddrs))
   1406  1.133    dyoung 		;
   1407  1.133    dyoung 	else if (oia->ia_ifa.ifa_ifp->if_output == if_nulloutput) {
   1408  1.133    dyoung 		struct in6_multi *in6m, *next;
   1409  1.133    dyoung 
   1410  1.133    dyoung 		for (in6m = LIST_FIRST(&oia->ia6_multiaddrs); in6m != NULL;
   1411  1.133    dyoung 		     in6m = next) {
   1412  1.133    dyoung 			next = LIST_NEXT(in6m, in6m_entry);
   1413  1.133    dyoung 			in6_delmulti(in6m);
   1414  1.133    dyoung 		}
   1415  1.133    dyoung 	} else
   1416  1.133    dyoung 		in6_savemkludge(oia);
   1417   1.10   thorpej 
   1418   1.65    itojun 	/*
   1419   1.98    rpaulo 	 * Release the reference to the base prefix.  There should be a
   1420   1.98    rpaulo 	 * positive reference.
   1421   1.98    rpaulo 	 */
   1422   1.98    rpaulo 	if (oia->ia6_ndpr == NULL) {
   1423   1.98    rpaulo 		nd6log((LOG_NOTICE, "in6_unlink_ifa: autoconf'ed address "
   1424   1.98    rpaulo 		    "%p has no prefix\n", oia));
   1425   1.98    rpaulo 	} else {
   1426   1.98    rpaulo 		oia->ia6_ndpr->ndpr_refcnt--;
   1427   1.98    rpaulo 		oia->ia6_ndpr = NULL;
   1428   1.98    rpaulo 	}
   1429   1.65    itojun 
   1430   1.98    rpaulo 	/*
   1431   1.98    rpaulo 	 * Also, if the address being removed is autoconf'ed, call
   1432   1.98    rpaulo 	 * pfxlist_onlink_check() since the release might affect the status of
   1433   1.98    rpaulo 	 * other (detached) addresses.
   1434   1.98    rpaulo 	 */
   1435   1.98    rpaulo 	if ((oia->ia6_flags & IN6_IFF_AUTOCONF) != 0)
   1436   1.65    itojun 		pfxlist_onlink_check();
   1437   1.65    itojun 
   1438   1.65    itojun 	/*
   1439   1.65    itojun 	 * release another refcnt for the link from in6_ifaddr.
   1440   1.65    itojun 	 * Note that we should decrement the refcnt at least once for all *BSD.
   1441   1.65    itojun 	 */
   1442   1.10   thorpej 	IFAFREE(&oia->ia_ifa);
   1443   1.65    itojun 
   1444   1.65    itojun 	splx(s);
   1445   1.14   thorpej }
   1446   1.11    itojun 
   1447   1.14   thorpej void
   1448  1.127  christos in6_purgeif(struct ifnet *ifp)
   1449   1.14   thorpej {
   1450  1.138    dyoung 	if_purgeaddrs(ifp, AF_INET6, in6_purgeaddr);
   1451   1.14   thorpej 
   1452   1.14   thorpej 	in6_ifdetach(ifp);
   1453   1.10   thorpej }
   1454   1.10   thorpej 
   1455    1.2    itojun /*
   1456    1.2    itojun  * SIOC[GAD]LIFADDR.
   1457   1.41    itojun  *	SIOCGLIFADDR: get first address. (?)
   1458    1.2    itojun  *	SIOCGLIFADDR with IFLR_PREFIX:
   1459    1.2    itojun  *		get first address that matches the specified prefix.
   1460    1.2    itojun  *	SIOCALIFADDR: add the specified address.
   1461    1.2    itojun  *	SIOCALIFADDR with IFLR_PREFIX:
   1462    1.2    itojun  *		add the specified prefix, filling hostid part from
   1463    1.2    itojun  *		the first link-local address.  prefixlen must be <= 64.
   1464    1.2    itojun  *	SIOCDLIFADDR: delete the specified address.
   1465    1.2    itojun  *	SIOCDLIFADDR with IFLR_PREFIX:
   1466    1.2    itojun  *		delete the first address that matches the specified prefix.
   1467    1.2    itojun  * return values:
   1468    1.2    itojun  *	EINVAL on invalid parameters
   1469    1.2    itojun  *	EADDRNOTAVAIL on prefix match failed/specified address not found
   1470    1.2    itojun  *	other values may be returned from in6_ioctl()
   1471    1.2    itojun  *
   1472    1.2    itojun  * NOTE: SIOCALIFADDR(with IFLR_PREFIX set) allows prefixlen less than 64.
   1473  1.119  christos  * this is to accommodate address naming scheme other than RFC2374,
   1474    1.2    itojun  * in the future.
   1475    1.2    itojun  * RFC2373 defines interface id to be 64bit, but it allows non-RFC2374
   1476    1.2    itojun  * address encoding scheme. (see figure on page 8)
   1477    1.2    itojun  */
   1478    1.2    itojun static int
   1479  1.127  christos in6_lifaddr_ioctl(struct socket *so, u_long cmd, void *data,
   1480  1.127  christos 	struct ifnet *ifp, struct lwp *l)
   1481    1.2    itojun {
   1482  1.146    dyoung 	struct in6_ifaddr *ia;
   1483    1.2    itojun 	struct if_laddrreq *iflr = (struct if_laddrreq *)data;
   1484    1.2    itojun 	struct ifaddr *ifa;
   1485    1.8    itojun 	struct sockaddr *sa;
   1486    1.2    itojun 
   1487    1.2    itojun 	/* sanity checks */
   1488    1.2    itojun 	if (!data || !ifp) {
   1489    1.2    itojun 		panic("invalid argument to in6_lifaddr_ioctl");
   1490   1.52    itojun 		/* NOTREACHED */
   1491    1.2    itojun 	}
   1492    1.2    itojun 
   1493    1.2    itojun 	switch (cmd) {
   1494    1.2    itojun 	case SIOCGLIFADDR:
   1495    1.2    itojun 		/* address must be specified on GET with IFLR_PREFIX */
   1496    1.2    itojun 		if ((iflr->flags & IFLR_PREFIX) == 0)
   1497    1.2    itojun 			break;
   1498   1.52    itojun 		/* FALLTHROUGH */
   1499    1.2    itojun 	case SIOCALIFADDR:
   1500    1.2    itojun 	case SIOCDLIFADDR:
   1501    1.2    itojun 		/* address must be specified on ADD and DELETE */
   1502    1.8    itojun 		sa = (struct sockaddr *)&iflr->addr;
   1503    1.8    itojun 		if (sa->sa_family != AF_INET6)
   1504    1.2    itojun 			return EINVAL;
   1505    1.8    itojun 		if (sa->sa_len != sizeof(struct sockaddr_in6))
   1506    1.2    itojun 			return EINVAL;
   1507    1.2    itojun 		/* XXX need improvement */
   1508    1.8    itojun 		sa = (struct sockaddr *)&iflr->dstaddr;
   1509    1.8    itojun 		if (sa->sa_family && sa->sa_family != AF_INET6)
   1510    1.2    itojun 			return EINVAL;
   1511    1.8    itojun 		if (sa->sa_len && sa->sa_len != sizeof(struct sockaddr_in6))
   1512    1.2    itojun 			return EINVAL;
   1513    1.2    itojun 		break;
   1514   1.52    itojun 	default: /* shouldn't happen */
   1515    1.2    itojun #if 0
   1516    1.2    itojun 		panic("invalid cmd to in6_lifaddr_ioctl");
   1517   1.52    itojun 		/* NOTREACHED */
   1518    1.2    itojun #else
   1519    1.2    itojun 		return EOPNOTSUPP;
   1520    1.2    itojun #endif
   1521    1.2    itojun 	}
   1522  1.120    dyoung 	if (sizeof(struct in6_addr) * NBBY < iflr->prefixlen)
   1523    1.2    itojun 		return EINVAL;
   1524    1.2    itojun 
   1525    1.2    itojun 	switch (cmd) {
   1526    1.2    itojun 	case SIOCALIFADDR:
   1527    1.2    itojun 	    {
   1528    1.2    itojun 		struct in6_aliasreq ifra;
   1529   1.93  christos 		struct in6_addr *xhostid = NULL;
   1530    1.2    itojun 		int prefixlen;
   1531    1.2    itojun 
   1532    1.2    itojun 		if ((iflr->flags & IFLR_PREFIX) != 0) {
   1533    1.2    itojun 			struct sockaddr_in6 *sin6;
   1534    1.2    itojun 
   1535    1.2    itojun 			/*
   1536   1.93  christos 			 * xhostid is to fill in the hostid part of the
   1537   1.93  christos 			 * address.  xhostid points to the first link-local
   1538    1.2    itojun 			 * address attached to the interface.
   1539    1.2    itojun 			 */
   1540  1.146    dyoung 			ia = in6ifa_ifpforlinklocal(ifp, 0);
   1541  1.146    dyoung 			if (ia == NULL)
   1542    1.2    itojun 				return EADDRNOTAVAIL;
   1543  1.146    dyoung 			xhostid = IFA_IN6(&ia->ia_ifa);
   1544    1.2    itojun 
   1545    1.2    itojun 		 	/* prefixlen must be <= 64. */
   1546    1.2    itojun 			if (64 < iflr->prefixlen)
   1547    1.2    itojun 				return EINVAL;
   1548    1.2    itojun 			prefixlen = iflr->prefixlen;
   1549    1.2    itojun 
   1550    1.2    itojun 			/* hostid part must be zero. */
   1551    1.2    itojun 			sin6 = (struct sockaddr_in6 *)&iflr->addr;
   1552    1.2    itojun 			if (sin6->sin6_addr.s6_addr32[2] != 0
   1553    1.2    itojun 			 || sin6->sin6_addr.s6_addr32[3] != 0) {
   1554    1.2    itojun 				return EINVAL;
   1555    1.2    itojun 			}
   1556    1.2    itojun 		} else
   1557    1.2    itojun 			prefixlen = iflr->prefixlen;
   1558    1.2    itojun 
   1559    1.2    itojun 		/* copy args to in6_aliasreq, perform ioctl(SIOCAIFADDR_IN6). */
   1560    1.2    itojun 		bzero(&ifra, sizeof(ifra));
   1561   1.65    itojun 		bcopy(iflr->iflr_name, ifra.ifra_name, sizeof(ifra.ifra_name));
   1562    1.2    itojun 
   1563    1.8    itojun 		bcopy(&iflr->addr, &ifra.ifra_addr,
   1564   1.65    itojun 		    ((struct sockaddr *)&iflr->addr)->sa_len);
   1565   1.93  christos 		if (xhostid) {
   1566    1.2    itojun 			/* fill in hostid part */
   1567    1.2    itojun 			ifra.ifra_addr.sin6_addr.s6_addr32[2] =
   1568   1.93  christos 			    xhostid->s6_addr32[2];
   1569    1.2    itojun 			ifra.ifra_addr.sin6_addr.s6_addr32[3] =
   1570   1.93  christos 			    xhostid->s6_addr32[3];
   1571    1.2    itojun 		}
   1572    1.2    itojun 
   1573   1.52    itojun 		if (((struct sockaddr *)&iflr->dstaddr)->sa_family) { /* XXX */
   1574    1.2    itojun 			bcopy(&iflr->dstaddr, &ifra.ifra_dstaddr,
   1575   1.65    itojun 			    ((struct sockaddr *)&iflr->dstaddr)->sa_len);
   1576   1.93  christos 			if (xhostid) {
   1577    1.2    itojun 				ifra.ifra_dstaddr.sin6_addr.s6_addr32[2] =
   1578   1.93  christos 				    xhostid->s6_addr32[2];
   1579    1.2    itojun 				ifra.ifra_dstaddr.sin6_addr.s6_addr32[3] =
   1580   1.93  christos 				    xhostid->s6_addr32[3];
   1581    1.2    itojun 			}
   1582    1.2    itojun 		}
   1583    1.2    itojun 
   1584    1.2    itojun 		ifra.ifra_prefixmask.sin6_len = sizeof(struct sockaddr_in6);
   1585   1.64    itojun 		in6_prefixlen2mask(&ifra.ifra_prefixmask.sin6_addr, prefixlen);
   1586    1.2    itojun 
   1587  1.113    dyoung 		ifra.ifra_lifetime.ia6t_vltime = ND6_INFINITE_LIFETIME;
   1588  1.113    dyoung 		ifra.ifra_lifetime.ia6t_pltime = ND6_INFINITE_LIFETIME;
   1589    1.2    itojun 		ifra.ifra_flags = iflr->flags & ~IFLR_PREFIX;
   1590  1.125  christos 		return in6_control(so, SIOCAIFADDR_IN6, (void *)&ifra, ifp, l);
   1591    1.2    itojun 	    }
   1592    1.2    itojun 	case SIOCGLIFADDR:
   1593    1.2    itojun 	case SIOCDLIFADDR:
   1594    1.2    itojun 	    {
   1595    1.2    itojun 		struct in6_addr mask, candidate, match;
   1596    1.2    itojun 		struct sockaddr_in6 *sin6;
   1597    1.2    itojun 		int cmp;
   1598    1.2    itojun 
   1599    1.2    itojun 		bzero(&mask, sizeof(mask));
   1600    1.2    itojun 		if (iflr->flags & IFLR_PREFIX) {
   1601    1.2    itojun 			/* lookup a prefix rather than address. */
   1602   1.64    itojun 			in6_prefixlen2mask(&mask, iflr->prefixlen);
   1603    1.2    itojun 
   1604    1.2    itojun 			sin6 = (struct sockaddr_in6 *)&iflr->addr;
   1605    1.2    itojun 			bcopy(&sin6->sin6_addr, &match, sizeof(match));
   1606    1.2    itojun 			match.s6_addr32[0] &= mask.s6_addr32[0];
   1607    1.2    itojun 			match.s6_addr32[1] &= mask.s6_addr32[1];
   1608    1.2    itojun 			match.s6_addr32[2] &= mask.s6_addr32[2];
   1609    1.2    itojun 			match.s6_addr32[3] &= mask.s6_addr32[3];
   1610    1.2    itojun 
   1611    1.2    itojun 			/* if you set extra bits, that's wrong */
   1612    1.2    itojun 			if (bcmp(&match, &sin6->sin6_addr, sizeof(match)))
   1613    1.2    itojun 				return EINVAL;
   1614    1.2    itojun 
   1615    1.2    itojun 			cmp = 1;
   1616    1.2    itojun 		} else {
   1617    1.2    itojun 			if (cmd == SIOCGLIFADDR) {
   1618    1.2    itojun 				/* on getting an address, take the 1st match */
   1619   1.52    itojun 				cmp = 0;	/* XXX */
   1620    1.2    itojun 			} else {
   1621    1.2    itojun 				/* on deleting an address, do exact match */
   1622   1.64    itojun 				in6_prefixlen2mask(&mask, 128);
   1623    1.2    itojun 				sin6 = (struct sockaddr_in6 *)&iflr->addr;
   1624    1.2    itojun 				bcopy(&sin6->sin6_addr, &match, sizeof(match));
   1625    1.2    itojun 
   1626    1.2    itojun 				cmp = 1;
   1627    1.2    itojun 			}
   1628    1.2    itojun 		}
   1629    1.2    itojun 
   1630  1.136    dyoung 		IFADDR_FOREACH(ifa, ifp) {
   1631    1.2    itojun 			if (ifa->ifa_addr->sa_family != AF_INET6)
   1632    1.2    itojun 				continue;
   1633    1.2    itojun 			if (!cmp)
   1634    1.2    itojun 				break;
   1635   1.65    itojun 
   1636   1.95    rpaulo 			/*
   1637   1.95    rpaulo 			 * XXX: this is adhoc, but is necessary to allow
   1638   1.95    rpaulo 			 * a user to specify fe80::/64 (not /10) for a
   1639   1.95    rpaulo 			 * link-local address.
   1640   1.95    rpaulo 			 */
   1641    1.8    itojun 			bcopy(IFA_IN6(ifa), &candidate, sizeof(candidate));
   1642   1.95    rpaulo 			in6_clearscope(&candidate);
   1643    1.2    itojun 			candidate.s6_addr32[0] &= mask.s6_addr32[0];
   1644    1.2    itojun 			candidate.s6_addr32[1] &= mask.s6_addr32[1];
   1645    1.2    itojun 			candidate.s6_addr32[2] &= mask.s6_addr32[2];
   1646    1.2    itojun 			candidate.s6_addr32[3] &= mask.s6_addr32[3];
   1647    1.2    itojun 			if (IN6_ARE_ADDR_EQUAL(&candidate, &match))
   1648    1.2    itojun 				break;
   1649    1.2    itojun 		}
   1650    1.2    itojun 		if (!ifa)
   1651    1.2    itojun 			return EADDRNOTAVAIL;
   1652    1.2    itojun 		ia = ifa2ia6(ifa);
   1653    1.2    itojun 
   1654    1.2    itojun 		if (cmd == SIOCGLIFADDR) {
   1655   1.95    rpaulo 			int error;
   1656   1.95    rpaulo 
   1657    1.2    itojun 			/* fill in the if_laddrreq structure */
   1658    1.2    itojun 			bcopy(&ia->ia_addr, &iflr->addr, ia->ia_addr.sin6_len);
   1659   1.95    rpaulo 			error = sa6_recoverscope(
   1660   1.95    rpaulo 			    (struct sockaddr_in6 *)&iflr->addr);
   1661   1.95    rpaulo 			if (error != 0)
   1662  1.116    dyoung 				return error;
   1663   1.95    rpaulo 
   1664    1.2    itojun 			if ((ifp->if_flags & IFF_POINTOPOINT) != 0) {
   1665    1.2    itojun 				bcopy(&ia->ia_dstaddr, &iflr->dstaddr,
   1666   1.65    itojun 				    ia->ia_dstaddr.sin6_len);
   1667   1.95    rpaulo 				error = sa6_recoverscope(
   1668   1.95    rpaulo 				    (struct sockaddr_in6 *)&iflr->dstaddr);
   1669   1.95    rpaulo 				if (error != 0)
   1670  1.116    dyoung 					return error;
   1671    1.2    itojun 			} else
   1672    1.2    itojun 				bzero(&iflr->dstaddr, sizeof(iflr->dstaddr));
   1673    1.2    itojun 
   1674    1.2    itojun 			iflr->prefixlen =
   1675   1.65    itojun 			    in6_mask2len(&ia->ia_prefixmask.sin6_addr, NULL);
   1676    1.2    itojun 
   1677   1.52    itojun 			iflr->flags = ia->ia6_flags;	/* XXX */
   1678    1.2    itojun 
   1679    1.2    itojun 			return 0;
   1680    1.2    itojun 		} else {
   1681    1.2    itojun 			struct in6_aliasreq ifra;
   1682    1.2    itojun 
   1683    1.2    itojun 			/* fill in6_aliasreq and do ioctl(SIOCDIFADDR_IN6) */
   1684    1.2    itojun 			bzero(&ifra, sizeof(ifra));
   1685    1.2    itojun 			bcopy(iflr->iflr_name, ifra.ifra_name,
   1686   1.65    itojun 			    sizeof(ifra.ifra_name));
   1687    1.2    itojun 
   1688    1.2    itojun 			bcopy(&ia->ia_addr, &ifra.ifra_addr,
   1689   1.65    itojun 			    ia->ia_addr.sin6_len);
   1690    1.2    itojun 			if ((ifp->if_flags & IFF_POINTOPOINT) != 0) {
   1691    1.2    itojun 				bcopy(&ia->ia_dstaddr, &ifra.ifra_dstaddr,
   1692   1.65    itojun 				    ia->ia_dstaddr.sin6_len);
   1693   1.23    itojun 			} else {
   1694   1.23    itojun 				bzero(&ifra.ifra_dstaddr,
   1695   1.23    itojun 				    sizeof(ifra.ifra_dstaddr));
   1696    1.2    itojun 			}
   1697    1.2    itojun 			bcopy(&ia->ia_prefixmask, &ifra.ifra_dstaddr,
   1698   1.65    itojun 			    ia->ia_prefixmask.sin6_len);
   1699    1.2    itojun 
   1700    1.2    itojun 			ifra.ifra_flags = ia->ia6_flags;
   1701  1.125  christos 			return in6_control(so, SIOCDIFADDR_IN6, (void *)&ifra,
   1702  1.109        ad 			    ifp, l);
   1703    1.2    itojun 		}
   1704    1.2    itojun 	    }
   1705    1.2    itojun 	}
   1706    1.2    itojun 
   1707   1.52    itojun 	return EOPNOTSUPP;	/* just for safety */
   1708    1.2    itojun }
   1709    1.2    itojun 
   1710    1.2    itojun /*
   1711  1.111        is  * Initialize an interface's internet6 address
   1712    1.2    itojun  * and routing table entry.
   1713    1.2    itojun  */
   1714   1.52    itojun static int
   1715  1.127  christos in6_ifinit(struct ifnet *ifp, struct in6_ifaddr *ia,
   1716  1.146    dyoung 	const struct sockaddr_in6 *sin6, int newhost)
   1717    1.2    itojun {
   1718   1.65    itojun 	int	error = 0, plen, ifacount = 0;
   1719   1.45   thorpej 	int	s = splnet();
   1720   1.65    itojun 	struct ifaddr *ifa;
   1721    1.2    itojun 
   1722    1.2    itojun 	/*
   1723    1.2    itojun 	 * Give the interface a chance to initialize
   1724    1.2    itojun 	 * if this is its first address,
   1725    1.2    itojun 	 * and to validate the address if necessary.
   1726    1.2    itojun 	 */
   1727  1.136    dyoung 	IFADDR_FOREACH(ifa, ifp) {
   1728   1.65    itojun 		if (ifa->ifa_addr == NULL)
   1729   1.65    itojun 			continue;	/* just for safety */
   1730   1.65    itojun 		if (ifa->ifa_addr->sa_family != AF_INET6)
   1731   1.65    itojun 			continue;
   1732   1.65    itojun 		ifacount++;
   1733   1.65    itojun 	}
   1734   1.65    itojun 
   1735   1.65    itojun 	ia->ia_addr = *sin6;
   1736   1.65    itojun 
   1737  1.142    dyoung 	if (ifacount <= 1 &&
   1738  1.142    dyoung 	    (error = (*ifp->if_ioctl)(ifp, SIOCINITIFADDR, ia)) != 0) {
   1739    1.2    itojun 		splx(s);
   1740  1.116    dyoung 		return error;
   1741    1.2    itojun 	}
   1742   1.65    itojun 	splx(s);
   1743   1.65    itojun 
   1744   1.65    itojun 	ia->ia_ifa.ifa_metric = ifp->if_metric;
   1745    1.2    itojun 
   1746   1.65    itojun 	/* we could do in(6)_socktrim here, but just omit it at this moment. */
   1747    1.2    itojun 
   1748    1.2    itojun 	/*
   1749   1.65    itojun 	 * Special case:
   1750   1.65    itojun 	 * If the destination address is specified for a point-to-point
   1751   1.65    itojun 	 * interface, install a route to the destination as an interface
   1752   1.65    itojun 	 * direct route.
   1753    1.2    itojun 	 */
   1754   1.65    itojun 	plen = in6_mask2len(&ia->ia_prefixmask.sin6_addr, NULL); /* XXX */
   1755   1.65    itojun 	if (plen == 128 && ia->ia_dstaddr.sin6_family == AF_INET6) {
   1756  1.146    dyoung 		if ((error = rtinit(&ia->ia_ifa, RTM_ADD,
   1757   1.65    itojun 				    RTF_UP | RTF_HOST)) != 0)
   1758  1.116    dyoung 			return error;
   1759   1.65    itojun 		ia->ia_flags |= IFA_ROUTE;
   1760    1.2    itojun 	}
   1761    1.2    itojun 
   1762   1.65    itojun 	/* Add ownaddr as loopback rtentry, if necessary (ex. on p2p link). */
   1763   1.65    itojun 	if (newhost) {
   1764   1.65    itojun 		/* set the rtrequest function to create llinfo */
   1765   1.65    itojun 		ia->ia_ifa.ifa_rtrequest = nd6_rtrequest;
   1766  1.146    dyoung 		in6_ifaddloop(&ia->ia_ifa);
   1767   1.65    itojun 	}
   1768    1.2    itojun 
   1769    1.2    itojun 	if (ifp->if_flags & IFF_MULTICAST)
   1770    1.2    itojun 		in6_restoremkludge(ia, ifp);
   1771    1.2    itojun 
   1772  1.116    dyoung 	return error;
   1773    1.2    itojun }
   1774    1.2    itojun 
   1775    1.2    itojun /*
   1776    1.2    itojun  * Find an IPv6 interface link-local address specific to an interface.
   1777    1.2    itojun  */
   1778    1.2    itojun struct in6_ifaddr *
   1779  1.123    dyoung in6ifa_ifpforlinklocal(const struct ifnet *ifp, const int ignoreflags)
   1780    1.2    itojun {
   1781   1.41    itojun 	struct ifaddr *ifa;
   1782    1.2    itojun 
   1783  1.136    dyoung 	IFADDR_FOREACH(ifa, ifp) {
   1784    1.2    itojun 		if (ifa->ifa_addr == NULL)
   1785    1.2    itojun 			continue;	/* just for safety */
   1786    1.2    itojun 		if (ifa->ifa_addr->sa_family != AF_INET6)
   1787    1.2    itojun 			continue;
   1788   1.21    itojun 		if (IN6_IS_ADDR_LINKLOCAL(IFA_IN6(ifa))) {
   1789   1.21    itojun 			if ((((struct in6_ifaddr *)ifa)->ia6_flags &
   1790   1.21    itojun 			     ignoreflags) != 0)
   1791   1.21    itojun 				continue;
   1792    1.2    itojun 			break;
   1793   1.21    itojun 		}
   1794    1.2    itojun 	}
   1795    1.2    itojun 
   1796  1.116    dyoung 	return (struct in6_ifaddr *)ifa;
   1797    1.2    itojun }
   1798    1.2    itojun 
   1799    1.2    itojun 
   1800    1.2    itojun /*
   1801    1.2    itojun  * find the internet address corresponding to a given interface and address.
   1802    1.2    itojun  */
   1803    1.2    itojun struct in6_ifaddr *
   1804  1.123    dyoung in6ifa_ifpwithaddr(const struct ifnet *ifp, const struct in6_addr *addr)
   1805    1.2    itojun {
   1806   1.41    itojun 	struct ifaddr *ifa;
   1807    1.2    itojun 
   1808  1.136    dyoung 	IFADDR_FOREACH(ifa, ifp) {
   1809    1.2    itojun 		if (ifa->ifa_addr == NULL)
   1810    1.2    itojun 			continue;	/* just for safety */
   1811    1.2    itojun 		if (ifa->ifa_addr->sa_family != AF_INET6)
   1812    1.2    itojun 			continue;
   1813    1.8    itojun 		if (IN6_ARE_ADDR_EQUAL(addr, IFA_IN6(ifa)))
   1814    1.2    itojun 			break;
   1815    1.2    itojun 	}
   1816    1.2    itojun 
   1817  1.116    dyoung 	return (struct in6_ifaddr *)ifa;
   1818    1.2    itojun }
   1819    1.2    itojun 
   1820    1.2    itojun /*
   1821  1.141      matt  * find the internet address on a given interface corresponding to a neighbor's
   1822  1.141      matt  * address.
   1823  1.141      matt  */
   1824  1.141      matt struct in6_ifaddr *
   1825  1.141      matt in6ifa_ifplocaladdr(const struct ifnet *ifp, const struct in6_addr *addr)
   1826  1.141      matt {
   1827  1.141      matt 	struct ifaddr *ifa;
   1828  1.141      matt 	struct in6_ifaddr *ia;
   1829  1.141      matt 
   1830  1.141      matt 	IFADDR_FOREACH(ifa, ifp) {
   1831  1.141      matt 		if (ifa->ifa_addr == NULL)
   1832  1.141      matt 			continue;	/* just for safety */
   1833  1.141      matt 		if (ifa->ifa_addr->sa_family != AF_INET6)
   1834  1.141      matt 			continue;
   1835  1.141      matt 		ia = (struct in6_ifaddr *)ifa;
   1836  1.141      matt 		if (IN6_ARE_MASKED_ADDR_EQUAL(addr,
   1837  1.141      matt 				&ia->ia_addr.sin6_addr,
   1838  1.141      matt 				&ia->ia_prefixmask.sin6_addr))
   1839  1.141      matt 			return ia;
   1840  1.141      matt 	}
   1841  1.141      matt 
   1842  1.141      matt 	return NULL;
   1843  1.141      matt }
   1844  1.141      matt 
   1845  1.141      matt /*
   1846    1.2    itojun  * Convert IP6 address to printable (loggable) representation.
   1847    1.2    itojun  */
   1848    1.2    itojun static int ip6round = 0;
   1849    1.2    itojun char *
   1850  1.127  christos ip6_sprintf(const struct in6_addr *addr)
   1851    1.2    itojun {
   1852    1.2    itojun 	static char ip6buf[8][48];
   1853   1.41    itojun 	int i;
   1854   1.41    itojun 	char *cp;
   1855   1.79    itojun 	const u_int16_t *a = (const u_int16_t *)addr;
   1856   1.79    itojun 	const u_int8_t *d;
   1857    1.2    itojun 	int dcolon = 0;
   1858    1.2    itojun 
   1859    1.2    itojun 	ip6round = (ip6round + 1) & 7;
   1860    1.2    itojun 	cp = ip6buf[ip6round];
   1861    1.2    itojun 
   1862    1.2    itojun 	for (i = 0; i < 8; i++) {
   1863    1.2    itojun 		if (dcolon == 1) {
   1864    1.2    itojun 			if (*a == 0) {
   1865    1.2    itojun 				if (i == 7)
   1866    1.2    itojun 					*cp++ = ':';
   1867    1.2    itojun 				a++;
   1868    1.2    itojun 				continue;
   1869    1.2    itojun 			} else
   1870    1.2    itojun 				dcolon = 2;
   1871    1.2    itojun 		}
   1872    1.2    itojun 		if (*a == 0) {
   1873    1.2    itojun 			if (dcolon == 0 && *(a + 1) == 0) {
   1874    1.2    itojun 				if (i == 0)
   1875    1.2    itojun 					*cp++ = ':';
   1876    1.2    itojun 				*cp++ = ':';
   1877    1.2    itojun 				dcolon = 1;
   1878    1.2    itojun 			} else {
   1879    1.2    itojun 				*cp++ = '0';
   1880    1.2    itojun 				*cp++ = ':';
   1881    1.2    itojun 			}
   1882    1.2    itojun 			a++;
   1883    1.2    itojun 			continue;
   1884    1.2    itojun 		}
   1885   1.52    itojun 		d = (const u_char *)a;
   1886   1.92  christos 		*cp++ = hexdigits[*d >> 4];
   1887   1.92  christos 		*cp++ = hexdigits[*d++ & 0xf];
   1888   1.92  christos 		*cp++ = hexdigits[*d >> 4];
   1889   1.92  christos 		*cp++ = hexdigits[*d & 0xf];
   1890    1.2    itojun 		*cp++ = ':';
   1891    1.2    itojun 		a++;
   1892    1.2    itojun 	}
   1893    1.2    itojun 	*--cp = 0;
   1894  1.116    dyoung 	return ip6buf[ip6round];
   1895   1.74   thorpej }
   1896   1.74   thorpej 
   1897   1.74   thorpej /*
   1898   1.74   thorpej  * Determine if an address is on a local network.
   1899   1.74   thorpej  */
   1900   1.74   thorpej int
   1901  1.134    dyoung in6_localaddr(const struct in6_addr *in6)
   1902   1.74   thorpej {
   1903   1.74   thorpej 	struct in6_ifaddr *ia;
   1904   1.74   thorpej 
   1905   1.74   thorpej 	if (IN6_IS_ADDR_LOOPBACK(in6) || IN6_IS_ADDR_LINKLOCAL(in6))
   1906  1.116    dyoung 		return 1;
   1907   1.74   thorpej 
   1908   1.74   thorpej 	for (ia = in6_ifaddr; ia; ia = ia->ia_next)
   1909   1.74   thorpej 		if (IN6_ARE_MASKED_ADDR_EQUAL(in6, &ia->ia_addr.sin6_addr,
   1910   1.74   thorpej 					      &ia->ia_prefixmask.sin6_addr))
   1911  1.116    dyoung 			return 1;
   1912   1.74   thorpej 
   1913  1.116    dyoung 	return 0;
   1914    1.2    itojun }
   1915    1.2    itojun 
   1916   1.65    itojun int
   1917  1.127  christos in6_is_addr_deprecated(struct sockaddr_in6 *sa6)
   1918   1.65    itojun {
   1919   1.65    itojun 	struct in6_ifaddr *ia;
   1920   1.65    itojun 
   1921   1.65    itojun 	for (ia = in6_ifaddr; ia; ia = ia->ia_next) {
   1922   1.65    itojun 		if (IN6_ARE_ADDR_EQUAL(&ia->ia_addr.sin6_addr,
   1923   1.65    itojun 		    &sa6->sin6_addr) &&
   1924   1.65    itojun #ifdef SCOPEDROUTING
   1925   1.65    itojun 		    ia->ia_addr.sin6_scope_id == sa6->sin6_scope_id &&
   1926   1.65    itojun #endif
   1927   1.65    itojun 		    (ia->ia6_flags & IN6_IFF_DEPRECATED) != 0)
   1928  1.116    dyoung 			return 1; /* true */
   1929   1.65    itojun 
   1930   1.65    itojun 		/* XXX: do we still have to go thru the rest of the list? */
   1931   1.65    itojun 	}
   1932   1.65    itojun 
   1933  1.116    dyoung 	return 0;		/* false */
   1934   1.21    itojun }
   1935   1.21    itojun 
   1936    1.2    itojun /*
   1937    1.2    itojun  * return length of part which dst and src are equal
   1938    1.2    itojun  * hard coding...
   1939    1.2    itojun  */
   1940    1.2    itojun int
   1941  1.127  christos in6_matchlen(struct in6_addr *src, struct in6_addr *dst)
   1942    1.2    itojun {
   1943    1.2    itojun 	int match = 0;
   1944    1.2    itojun 	u_char *s = (u_char *)src, *d = (u_char *)dst;
   1945    1.2    itojun 	u_char *lim = s + 16, r;
   1946    1.2    itojun 
   1947    1.2    itojun 	while (s < lim)
   1948    1.2    itojun 		if ((r = (*d++ ^ *s++)) != 0) {
   1949    1.2    itojun 			while (r < 128) {
   1950    1.2    itojun 				match++;
   1951    1.2    itojun 				r <<= 1;
   1952    1.2    itojun 			}
   1953    1.2    itojun 			break;
   1954    1.2    itojun 		} else
   1955  1.120    dyoung 			match += NBBY;
   1956    1.2    itojun 	return match;
   1957    1.2    itojun }
   1958    1.2    itojun 
   1959   1.52    itojun /* XXX: to be scope conscious */
   1960    1.8    itojun int
   1961  1.127  christos in6_are_prefix_equal(struct in6_addr *p1, struct in6_addr *p2, int len)
   1962    1.8    itojun {
   1963    1.8    itojun 	int bytelen, bitlen;
   1964    1.8    itojun 
   1965    1.8    itojun 	/* sanity check */
   1966  1.100    rpaulo 	if (len < 0 || len > 128) {
   1967    1.8    itojun 		log(LOG_ERR, "in6_are_prefix_equal: invalid prefix length(%d)\n",
   1968    1.8    itojun 		    len);
   1969  1.116    dyoung 		return 0;
   1970    1.8    itojun 	}
   1971    1.8    itojun 
   1972  1.120    dyoung 	bytelen = len / NBBY;
   1973  1.120    dyoung 	bitlen = len % NBBY;
   1974    1.8    itojun 
   1975    1.8    itojun 	if (bcmp(&p1->s6_addr, &p2->s6_addr, bytelen))
   1976  1.116    dyoung 		return 0;
   1977   1.85    itojun 	if (bitlen != 0 &&
   1978  1.120    dyoung 	    p1->s6_addr[bytelen] >> (NBBY - bitlen) !=
   1979  1.120    dyoung 	    p2->s6_addr[bytelen] >> (NBBY - bitlen))
   1980  1.116    dyoung 		return 0;
   1981    1.8    itojun 
   1982  1.116    dyoung 	return 1;
   1983    1.8    itojun }
   1984    1.8    itojun 
   1985    1.8    itojun void
   1986  1.127  christos in6_prefixlen2mask(struct in6_addr *maskp, int len)
   1987    1.8    itojun {
   1988  1.120    dyoung 	static const u_char maskarray[NBBY] = {0x80, 0xc0, 0xe0, 0xf0, 0xf8, 0xfc, 0xfe, 0xff};
   1989    1.8    itojun 	int bytelen, bitlen, i;
   1990    1.8    itojun 
   1991    1.8    itojun 	/* sanity check */
   1992  1.101    rpaulo 	if (len < 0 || len > 128) {
   1993    1.8    itojun 		log(LOG_ERR, "in6_prefixlen2mask: invalid prefix length(%d)\n",
   1994    1.8    itojun 		    len);
   1995    1.8    itojun 		return;
   1996    1.8    itojun 	}
   1997    1.8    itojun 
   1998    1.8    itojun 	bzero(maskp, sizeof(*maskp));
   1999  1.120    dyoung 	bytelen = len / NBBY;
   2000  1.120    dyoung 	bitlen = len % NBBY;
   2001    1.8    itojun 	for (i = 0; i < bytelen; i++)
   2002    1.8    itojun 		maskp->s6_addr[i] = 0xff;
   2003    1.8    itojun 	if (bitlen)
   2004    1.8    itojun 		maskp->s6_addr[bytelen] = maskarray[bitlen - 1];
   2005    1.8    itojun }
   2006    1.8    itojun 
   2007    1.2    itojun /*
   2008    1.2    itojun  * return the best address out of the same scope. if no address was
   2009    1.2    itojun  * found, return the first valid address from designated IF.
   2010    1.2    itojun  */
   2011    1.2    itojun struct in6_ifaddr *
   2012  1.127  christos in6_ifawithifp(struct ifnet *ifp, struct in6_addr *dst)
   2013    1.2    itojun {
   2014    1.2    itojun 	int dst_scope =	in6_addrscope(dst), blen = -1, tlen;
   2015    1.2    itojun 	struct ifaddr *ifa;
   2016    1.2    itojun 	struct in6_ifaddr *besta = 0;
   2017   1.52    itojun 	struct in6_ifaddr *dep[2];	/* last-resort: deprecated */
   2018    1.8    itojun 
   2019    1.8    itojun 	dep[0] = dep[1] = NULL;
   2020    1.2    itojun 
   2021    1.2    itojun 	/*
   2022   1.18    itojun 	 * We first look for addresses in the same scope.
   2023    1.2    itojun 	 * If there is one, return it.
   2024    1.2    itojun 	 * If two or more, return one which matches the dst longest.
   2025    1.2    itojun 	 * If none, return one of global addresses assigned other ifs.
   2026    1.2    itojun 	 */
   2027  1.136    dyoung 	IFADDR_FOREACH(ifa, ifp) {
   2028    1.2    itojun 		if (ifa->ifa_addr->sa_family != AF_INET6)
   2029    1.2    itojun 			continue;
   2030    1.2    itojun 		if (((struct in6_ifaddr *)ifa)->ia6_flags & IN6_IFF_ANYCAST)
   2031    1.2    itojun 			continue; /* XXX: is there any case to allow anycast? */
   2032    1.2    itojun 		if (((struct in6_ifaddr *)ifa)->ia6_flags & IN6_IFF_NOTREADY)
   2033    1.2    itojun 			continue; /* don't use this interface */
   2034    1.2    itojun 		if (((struct in6_ifaddr *)ifa)->ia6_flags & IN6_IFF_DETACHED)
   2035    1.2    itojun 			continue;
   2036    1.8    itojun 		if (((struct in6_ifaddr *)ifa)->ia6_flags & IN6_IFF_DEPRECATED) {
   2037    1.8    itojun 			if (ip6_use_deprecated)
   2038    1.8    itojun 				dep[0] = (struct in6_ifaddr *)ifa;
   2039    1.2    itojun 			continue;
   2040    1.8    itojun 		}
   2041    1.2    itojun 
   2042    1.8    itojun 		if (dst_scope == in6_addrscope(IFA_IN6(ifa))) {
   2043    1.2    itojun 			/*
   2044    1.2    itojun 			 * call in6_matchlen() as few as possible
   2045    1.2    itojun 			 */
   2046    1.2    itojun 			if (besta) {
   2047    1.2    itojun 				if (blen == -1)
   2048    1.2    itojun 					blen = in6_matchlen(&besta->ia_addr.sin6_addr, dst);
   2049    1.8    itojun 				tlen = in6_matchlen(IFA_IN6(ifa), dst);
   2050    1.2    itojun 				if (tlen > blen) {
   2051    1.2    itojun 					blen = tlen;
   2052    1.2    itojun 					besta = (struct in6_ifaddr *)ifa;
   2053    1.2    itojun 				}
   2054   1.18    itojun 			} else
   2055    1.2    itojun 				besta = (struct in6_ifaddr *)ifa;
   2056    1.2    itojun 		}
   2057    1.2    itojun 	}
   2058    1.2    itojun 	if (besta)
   2059  1.116    dyoung 		return besta;
   2060    1.2    itojun 
   2061  1.136    dyoung 	IFADDR_FOREACH(ifa, ifp) {
   2062    1.2    itojun 		if (ifa->ifa_addr->sa_family != AF_INET6)
   2063    1.2    itojun 			continue;
   2064    1.2    itojun 		if (((struct in6_ifaddr *)ifa)->ia6_flags & IN6_IFF_ANYCAST)
   2065    1.2    itojun 			continue; /* XXX: is there any case to allow anycast? */
   2066    1.2    itojun 		if (((struct in6_ifaddr *)ifa)->ia6_flags & IN6_IFF_NOTREADY)
   2067    1.2    itojun 			continue; /* don't use this interface */
   2068    1.2    itojun 		if (((struct in6_ifaddr *)ifa)->ia6_flags & IN6_IFF_DETACHED)
   2069    1.2    itojun 			continue;
   2070    1.8    itojun 		if (((struct in6_ifaddr *)ifa)->ia6_flags & IN6_IFF_DEPRECATED) {
   2071    1.8    itojun 			if (ip6_use_deprecated)
   2072    1.8    itojun 				dep[1] = (struct in6_ifaddr *)ifa;
   2073    1.2    itojun 			continue;
   2074    1.8    itojun 		}
   2075    1.2    itojun 
   2076    1.2    itojun 		return (struct in6_ifaddr *)ifa;
   2077    1.2    itojun 	}
   2078    1.2    itojun 
   2079    1.8    itojun 	/* use the last-resort values, that are, deprecated addresses */
   2080    1.8    itojun 	if (dep[0])
   2081    1.8    itojun 		return dep[0];
   2082    1.8    itojun 	if (dep[1])
   2083    1.8    itojun 		return dep[1];
   2084    1.8    itojun 
   2085    1.2    itojun 	return NULL;
   2086    1.2    itojun }
   2087    1.2    itojun 
   2088    1.2    itojun /*
   2089    1.2    itojun  * perform DAD when interface becomes IFF_UP.
   2090    1.2    itojun  */
   2091    1.2    itojun void
   2092  1.126    dyoung in6_if_up(struct ifnet *ifp)
   2093    1.2    itojun {
   2094    1.2    itojun 	struct ifaddr *ifa;
   2095    1.2    itojun 	struct in6_ifaddr *ia;
   2096    1.2    itojun 
   2097  1.136    dyoung 	IFADDR_FOREACH(ifa, ifp) {
   2098    1.2    itojun 		if (ifa->ifa_addr->sa_family != AF_INET6)
   2099    1.2    itojun 			continue;
   2100    1.2    itojun 		ia = (struct in6_ifaddr *)ifa;
   2101   1.98    rpaulo 		if (ia->ia6_flags & IN6_IFF_TENTATIVE) {
   2102   1.98    rpaulo 			/*
   2103   1.98    rpaulo 			 * The TENTATIVE flag was likely set by hand
   2104   1.98    rpaulo 			 * beforehand, implicitly indicating the need for DAD.
   2105   1.98    rpaulo 			 * We may be able to skip the random delay in this
   2106   1.98    rpaulo 			 * case, but we impose delays just in case.
   2107   1.98    rpaulo 			 */
   2108   1.98    rpaulo 			nd6_dad_start(ifa,
   2109   1.98    rpaulo 			    arc4random() % (MAX_RTR_SOLICITATION_DELAY * hz));
   2110   1.98    rpaulo 		}
   2111   1.55    itojun 	}
   2112   1.98    rpaulo 
   2113   1.98    rpaulo 	/*
   2114   1.98    rpaulo 	 * special cases, like 6to4, are handled in in6_ifattach
   2115   1.98    rpaulo 	 */
   2116   1.98    rpaulo 	in6_ifattach(ifp, NULL);
   2117   1.55    itojun }
   2118   1.55    itojun 
   2119   1.55    itojun int
   2120  1.127  christos in6if_do_dad(struct ifnet *ifp)
   2121   1.55    itojun {
   2122   1.55    itojun 	if ((ifp->if_flags & IFF_LOOPBACK) != 0)
   2123  1.116    dyoung 		return 0;
   2124   1.55    itojun 
   2125   1.55    itojun 	switch (ifp->if_type) {
   2126   1.55    itojun 	case IFT_FAITH:
   2127   1.55    itojun 		/*
   2128   1.55    itojun 		 * These interfaces do not have the IFF_LOOPBACK flag,
   2129   1.55    itojun 		 * but loop packets back.  We do not have to do DAD on such
   2130   1.55    itojun 		 * interfaces.  We should even omit it, because loop-backed
   2131   1.55    itojun 		 * NS would confuse the DAD procedure.
   2132   1.55    itojun 		 */
   2133  1.116    dyoung 		return 0;
   2134   1.55    itojun 	default:
   2135   1.55    itojun 		/*
   2136   1.55    itojun 		 * Our DAD routine requires the interface up and running.
   2137   1.55    itojun 		 * However, some interfaces can be up before the RUNNING
   2138   1.55    itojun 		 * status.  Additionaly, users may try to assign addresses
   2139   1.55    itojun 		 * before the interface becomes up (or running).
   2140   1.55    itojun 		 * We simply skip DAD in such a case as a work around.
   2141   1.55    itojun 		 * XXX: we should rather mark "tentative" on such addresses,
   2142   1.55    itojun 		 * and do DAD after the interface becomes ready.
   2143   1.55    itojun 		 */
   2144   1.55    itojun 		if ((ifp->if_flags & (IFF_UP|IFF_RUNNING)) !=
   2145   1.55    itojun 		    (IFF_UP|IFF_RUNNING))
   2146  1.116    dyoung 			return 0;
   2147   1.55    itojun 
   2148  1.116    dyoung 		return 1;
   2149    1.2    itojun 	}
   2150    1.2    itojun }
   2151    1.2    itojun 
   2152    1.2    itojun /*
   2153    1.2    itojun  * Calculate max IPv6 MTU through all the interfaces and store it
   2154    1.2    itojun  * to in6_maxmtu.
   2155    1.2    itojun  */
   2156    1.2    itojun void
   2157  1.140      matt in6_setmaxmtu(void)
   2158    1.2    itojun {
   2159    1.2    itojun 	unsigned long maxmtu = 0;
   2160    1.2    itojun 	struct ifnet *ifp;
   2161    1.2    itojun 
   2162  1.124    dyoung 	TAILQ_FOREACH(ifp, &ifnet, if_list) {
   2163   1.59    itojun 		/* this function can be called during ifnet initialization */
   2164   1.59    itojun 		if (!ifp->if_afdata[AF_INET6])
   2165   1.59    itojun 			continue;
   2166    1.2    itojun 		if ((ifp->if_flags & IFF_LOOPBACK) == 0 &&
   2167   1.59    itojun 		    IN6_LINKMTU(ifp) > maxmtu)
   2168   1.59    itojun 			maxmtu = IN6_LINKMTU(ifp);
   2169    1.2    itojun 	}
   2170   1.59    itojun 	if (maxmtu)	     /* update only when maxmtu is positive */
   2171    1.2    itojun 		in6_maxmtu = maxmtu;
   2172   1.58    itojun }
   2173   1.58    itojun 
   2174   1.98    rpaulo /*
   2175   1.98    rpaulo  * Provide the length of interface identifiers to be used for the link attached
   2176   1.98    rpaulo  * to the given interface.  The length should be defined in "IPv6 over
   2177   1.98    rpaulo  * xxx-link" document.  Note that address architecture might also define
   2178   1.98    rpaulo  * the length for a particular set of address prefixes, regardless of the
   2179   1.98    rpaulo  * link type.  As clarified in rfc2462bis, those two definitions should be
   2180   1.98    rpaulo  * consistent, and those really are as of August 2004.
   2181   1.98    rpaulo  */
   2182   1.98    rpaulo int
   2183  1.127  christos in6_if2idlen(struct ifnet *ifp)
   2184   1.98    rpaulo {
   2185   1.98    rpaulo 	switch (ifp->if_type) {
   2186   1.98    rpaulo 	case IFT_ETHER:		/* RFC2464 */
   2187   1.98    rpaulo 	case IFT_PROPVIRTUAL:	/* XXX: no RFC. treat it as ether */
   2188   1.98    rpaulo 	case IFT_L2VLAN:	/* ditto */
   2189   1.98    rpaulo 	case IFT_IEEE80211:	/* ditto */
   2190   1.98    rpaulo 	case IFT_FDDI:		/* RFC2467 */
   2191   1.98    rpaulo 	case IFT_ISO88025:	/* RFC2470 (IPv6 over Token Ring) */
   2192   1.98    rpaulo 	case IFT_PPP:		/* RFC2472 */
   2193   1.98    rpaulo 	case IFT_ARCNET:	/* RFC2497 */
   2194   1.98    rpaulo 	case IFT_FRELAY:	/* RFC2590 */
   2195   1.98    rpaulo 	case IFT_IEEE1394:	/* RFC3146 */
   2196   1.98    rpaulo 	case IFT_GIF:		/* draft-ietf-v6ops-mech-v2-07 */
   2197   1.98    rpaulo 	case IFT_LOOP:		/* XXX: is this really correct? */
   2198   1.98    rpaulo 		return 64;
   2199   1.98    rpaulo 	default:
   2200   1.98    rpaulo 		/*
   2201   1.98    rpaulo 		 * Unknown link type:
   2202   1.98    rpaulo 		 * It might be controversial to use the today's common constant
   2203   1.98    rpaulo 		 * of 64 for these cases unconditionally.  For full compliance,
   2204   1.98    rpaulo 		 * we should return an error in this case.  On the other hand,
   2205   1.98    rpaulo 		 * if we simply miss the standard for the link type or a new
   2206   1.98    rpaulo 		 * standard is defined for a new link type, the IFID length
   2207   1.98    rpaulo 		 * is very likely to be the common constant.  As a compromise,
   2208   1.98    rpaulo 		 * we always use the constant, but make an explicit notice
   2209   1.98    rpaulo 		 * indicating the "unknown" case.
   2210   1.98    rpaulo 		 */
   2211   1.98    rpaulo 		printf("in6_if2idlen: unknown link type (%d)\n", ifp->if_type);
   2212   1.98    rpaulo 		return 64;
   2213   1.98    rpaulo 	}
   2214   1.98    rpaulo }
   2215   1.98    rpaulo 
   2216   1.58    itojun void *
   2217  1.127  christos in6_domifattach(struct ifnet *ifp)
   2218   1.58    itojun {
   2219   1.58    itojun 	struct in6_ifextra *ext;
   2220   1.58    itojun 
   2221  1.143    cegger 	ext = malloc(sizeof(*ext), M_IFADDR, M_WAITOK|M_ZERO);
   2222   1.58    itojun 
   2223  1.143    cegger 	ext->in6_ifstat = malloc(sizeof(struct in6_ifstat),
   2224  1.143    cegger 	    M_IFADDR, M_WAITOK|M_ZERO);
   2225  1.143    cegger 
   2226  1.143    cegger 	ext->icmp6_ifstat = malloc(sizeof(struct icmp6_ifstat),
   2227  1.143    cegger 	    M_IFADDR, M_WAITOK|M_ZERO);
   2228   1.58    itojun 
   2229   1.58    itojun 	ext->nd_ifinfo = nd6_ifattach(ifp);
   2230   1.95    rpaulo 	ext->scope6_id = scope6_ifattach(ifp);
   2231   1.58    itojun 	return ext;
   2232   1.58    itojun }
   2233   1.58    itojun 
   2234   1.58    itojun void
   2235  1.115  christos in6_domifdetach(struct ifnet *ifp, void *aux)
   2236   1.58    itojun {
   2237   1.58    itojun 	struct in6_ifextra *ext = (struct in6_ifextra *)aux;
   2238   1.58    itojun 
   2239   1.58    itojun 	nd6_ifdetach(ext->nd_ifinfo);
   2240   1.58    itojun 	free(ext->in6_ifstat, M_IFADDR);
   2241   1.58    itojun 	free(ext->icmp6_ifstat, M_IFADDR);
   2242   1.95    rpaulo 	scope6_ifdetach(ext->scope6_id);
   2243   1.58    itojun 	free(ext, M_IFADDR);
   2244    1.2    itojun }
   2245  1.130  christos 
   2246  1.130  christos /*
   2247  1.130  christos  * Convert sockaddr_in6 to sockaddr_in.  Original sockaddr_in6 must be
   2248  1.130  christos  * v4 mapped addr or v4 compat addr
   2249  1.130  christos  */
   2250  1.130  christos void
   2251  1.130  christos in6_sin6_2_sin(struct sockaddr_in *sin, struct sockaddr_in6 *sin6)
   2252  1.130  christos {
   2253  1.130  christos 	bzero(sin, sizeof(*sin));
   2254  1.130  christos 	sin->sin_len = sizeof(struct sockaddr_in);
   2255  1.130  christos 	sin->sin_family = AF_INET;
   2256  1.130  christos 	sin->sin_port = sin6->sin6_port;
   2257  1.130  christos 	sin->sin_addr.s_addr = sin6->sin6_addr.s6_addr32[3];
   2258  1.130  christos }
   2259  1.130  christos 
   2260  1.130  christos /* Convert sockaddr_in to sockaddr_in6 in v4 mapped addr format. */
   2261  1.130  christos void
   2262  1.130  christos in6_sin_2_v4mapsin6(struct sockaddr_in *sin, struct sockaddr_in6 *sin6)
   2263  1.130  christos {
   2264  1.130  christos 	bzero(sin6, sizeof(*sin6));
   2265  1.130  christos 	sin6->sin6_len = sizeof(struct sockaddr_in6);
   2266  1.130  christos 	sin6->sin6_family = AF_INET6;
   2267  1.130  christos 	sin6->sin6_port = sin->sin_port;
   2268  1.130  christos 	sin6->sin6_addr.s6_addr32[0] = 0;
   2269  1.130  christos 	sin6->sin6_addr.s6_addr32[1] = 0;
   2270  1.130  christos 	sin6->sin6_addr.s6_addr32[2] = IPV6_ADDR_INT32_SMP;
   2271  1.130  christos 	sin6->sin6_addr.s6_addr32[3] = sin->sin_addr.s_addr;
   2272  1.130  christos }
   2273  1.130  christos 
   2274  1.130  christos /* Convert sockaddr_in6 into sockaddr_in. */
   2275  1.130  christos void
   2276  1.130  christos in6_sin6_2_sin_in_sock(struct sockaddr *nam)
   2277  1.130  christos {
   2278  1.130  christos 	struct sockaddr_in *sin_p;
   2279  1.130  christos 	struct sockaddr_in6 sin6;
   2280  1.130  christos 
   2281  1.130  christos 	/*
   2282  1.130  christos 	 * Save original sockaddr_in6 addr and convert it
   2283  1.130  christos 	 * to sockaddr_in.
   2284  1.130  christos 	 */
   2285  1.130  christos 	sin6 = *(struct sockaddr_in6 *)nam;
   2286  1.130  christos 	sin_p = (struct sockaddr_in *)nam;
   2287  1.130  christos 	in6_sin6_2_sin(sin_p, &sin6);
   2288  1.130  christos }
   2289  1.130  christos 
   2290  1.130  christos /* Convert sockaddr_in into sockaddr_in6 in v4 mapped addr format. */
   2291  1.130  christos void
   2292  1.130  christos in6_sin_2_v4mapsin6_in_sock(struct sockaddr **nam)
   2293  1.130  christos {
   2294  1.130  christos 	struct sockaddr_in *sin_p;
   2295  1.130  christos 	struct sockaddr_in6 *sin6_p;
   2296  1.130  christos 
   2297  1.130  christos 	sin6_p = malloc(sizeof(*sin6_p), M_SONAME, M_WAITOK);
   2298  1.130  christos 	sin_p = (struct sockaddr_in *)*nam;
   2299  1.130  christos 	in6_sin_2_v4mapsin6(sin_p, sin6_p);
   2300  1.130  christos 	free(*nam, M_SONAME);
   2301  1.130  christos 	*nam = (struct sockaddr *)sin6_p;
   2302  1.130  christos }
   2303