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mld6.c revision 1.61.2.2
      1  1.61.2.2     skrll /*	$NetBSD: mld6.c,v 1.61.2.2 2015/09/22 12:06:11 skrll Exp $	*/
      2      1.13    itojun /*	$KAME: mld6.c,v 1.25 2001/01/16 14:14:18 itojun Exp $	*/
      3       1.3   thorpej 
      4       1.2    itojun /*
      5       1.2    itojun  * Copyright (C) 1998 WIDE Project.
      6       1.2    itojun  * All rights reserved.
      7      1.13    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      1.13    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) 1992, 1993
     35       1.2    itojun  *	The Regents of the University of California.  All rights reserved.
     36       1.2    itojun  *
     37       1.2    itojun  * This code is derived from software contributed to Berkeley by
     38       1.2    itojun  * Stephen Deering of Stanford University.
     39       1.2    itojun  *
     40       1.2    itojun  * Redistribution and use in source and binary forms, with or without
     41       1.2    itojun  * modification, are permitted provided that the following conditions
     42       1.2    itojun  * are met:
     43       1.2    itojun  * 1. Redistributions of source code must retain the above copyright
     44       1.2    itojun  *    notice, this list of conditions and the following disclaimer.
     45       1.2    itojun  * 2. Redistributions in binary form must reproduce the above copyright
     46       1.2    itojun  *    notice, this list of conditions and the following disclaimer in the
     47       1.2    itojun  *    documentation and/or other materials provided with the distribution.
     48      1.23       agc  * 3. Neither the name of the University nor the names of its contributors
     49      1.23       agc  *    may be used to endorse or promote products derived from this software
     50      1.23       agc  *    without specific prior written permission.
     51      1.23       agc  *
     52      1.23       agc  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     53      1.23       agc  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     54      1.23       agc  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     55      1.23       agc  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     56      1.23       agc  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     57      1.23       agc  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     58      1.23       agc  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     59      1.23       agc  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     60      1.23       agc  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     61      1.23       agc  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     62      1.23       agc  * SUCH DAMAGE.
     63      1.23       agc  *
     64      1.23       agc  *	@(#)igmp.c	8.1 (Berkeley) 7/19/93
     65      1.23       agc  */
     66      1.23       agc 
     67      1.23       agc /*
     68      1.23       agc  * Copyright (c) 1988 Stephen Deering.
     69      1.23       agc  *
     70      1.23       agc  * This code is derived from software contributed to Berkeley by
     71      1.23       agc  * Stephen Deering of Stanford University.
     72      1.23       agc  *
     73      1.23       agc  * Redistribution and use in source and binary forms, with or without
     74      1.23       agc  * modification, are permitted provided that the following conditions
     75      1.23       agc  * are met:
     76      1.23       agc  * 1. Redistributions of source code must retain the above copyright
     77      1.23       agc  *    notice, this list of conditions and the following disclaimer.
     78      1.23       agc  * 2. Redistributions in binary form must reproduce the above copyright
     79      1.23       agc  *    notice, this list of conditions and the following disclaimer in the
     80      1.23       agc  *    documentation and/or other materials provided with the distribution.
     81       1.2    itojun  * 3. All advertising materials mentioning features or use of this software
     82       1.2    itojun  *    must display the following acknowledgement:
     83       1.2    itojun  *	This product includes software developed by the University of
     84       1.2    itojun  *	California, Berkeley and its contributors.
     85       1.2    itojun  * 4. Neither the name of the University nor the names of its contributors
     86       1.2    itojun  *    may be used to endorse or promote products derived from this software
     87       1.2    itojun  *    without specific prior written permission.
     88       1.2    itojun  *
     89       1.2    itojun  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     90       1.2    itojun  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     91       1.2    itojun  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     92       1.2    itojun  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     93       1.2    itojun  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     94       1.2    itojun  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     95       1.2    itojun  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     96       1.2    itojun  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     97       1.2    itojun  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     98       1.2    itojun  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     99       1.2    itojun  * SUCH DAMAGE.
    100       1.2    itojun  *
    101       1.2    itojun  *	@(#)igmp.c	8.1 (Berkeley) 7/19/93
    102       1.2    itojun  */
    103      1.16     lukem 
    104      1.16     lukem #include <sys/cdefs.h>
    105  1.61.2.2     skrll __KERNEL_RCSID(0, "$NetBSD: mld6.c,v 1.61.2.2 2015/09/22 12:06:11 skrll Exp $");
    106       1.2    itojun 
    107  1.61.2.2     skrll #ifdef _KERNEL_OPT
    108       1.2    itojun #include "opt_inet.h"
    109  1.61.2.2     skrll #endif
    110       1.2    itojun 
    111       1.2    itojun #include <sys/param.h>
    112       1.2    itojun #include <sys/systm.h>
    113       1.2    itojun #include <sys/mbuf.h>
    114       1.2    itojun #include <sys/socket.h>
    115      1.45        ad #include <sys/socketvar.h>
    116       1.2    itojun #include <sys/protosw.h>
    117       1.2    itojun #include <sys/syslog.h>
    118      1.31    rpaulo #include <sys/sysctl.h>
    119      1.31    rpaulo #include <sys/kernel.h>
    120      1.31    rpaulo #include <sys/callout.h>
    121      1.55       tls #include <sys/cprng.h>
    122       1.2    itojun 
    123       1.2    itojun #include <net/if.h>
    124       1.2    itojun 
    125       1.2    itojun #include <netinet/in.h>
    126       1.2    itojun #include <netinet/in_var.h>
    127      1.31    rpaulo #include <netinet6/in6_var.h>
    128      1.10    itojun #include <netinet/ip6.h>
    129       1.2    itojun #include <netinet6/ip6_var.h>
    130      1.29    rpaulo #include <netinet6/scope6_var.h>
    131      1.10    itojun #include <netinet/icmp6.h>
    132      1.44   thorpej #include <netinet6/icmp6_private.h>
    133       1.2    itojun #include <netinet6/mld6_var.h>
    134       1.2    itojun 
    135       1.7    itojun #include <net/net_osdep.h>
    136       1.7    itojun 
    137      1.31    rpaulo 
    138      1.31    rpaulo /*
    139      1.31    rpaulo  * This structure is used to keep track of in6_multi chains which belong to
    140      1.31    rpaulo  * deleted interface addresses.
    141      1.31    rpaulo  */
    142      1.56     joerg static LIST_HEAD(, multi6_kludge) in6_mk = LIST_HEAD_INITIALIZER(in6_mk);
    143      1.31    rpaulo 
    144      1.31    rpaulo struct multi6_kludge {
    145      1.31    rpaulo 	LIST_ENTRY(multi6_kludge) mk_entry;
    146      1.31    rpaulo 	struct ifnet *mk_ifp;
    147      1.31    rpaulo 	struct in6_multihead mk_head;
    148      1.31    rpaulo };
    149      1.31    rpaulo 
    150      1.31    rpaulo 
    151       1.2    itojun /*
    152       1.2    itojun  * Protocol constants
    153       1.2    itojun  */
    154       1.2    itojun 
    155       1.2    itojun /*
    156       1.2    itojun  * time between repetitions of a node's initial report of interest in a
    157       1.2    itojun  * multicast address(in seconds)
    158       1.2    itojun  */
    159      1.22    itojun #define MLD_UNSOLICITED_REPORT_INTERVAL	10
    160       1.2    itojun 
    161       1.2    itojun static struct ip6_pktopts ip6_opts;
    162       1.2    itojun 
    163      1.31    rpaulo static void mld_start_listening(struct in6_multi *);
    164      1.31    rpaulo static void mld_stop_listening(struct in6_multi *);
    165      1.31    rpaulo 
    166      1.31    rpaulo static struct mld_hdr * mld_allocbuf(struct mbuf **, int, struct in6_multi *,
    167      1.31    rpaulo 	int);
    168      1.31    rpaulo static void mld_sendpkt(struct in6_multi *, int, const struct in6_addr *);
    169      1.31    rpaulo static void mld_starttimer(struct in6_multi *);
    170      1.31    rpaulo static void mld_stoptimer(struct in6_multi *);
    171      1.31    rpaulo static u_long mld_timerresid(struct in6_multi *);
    172       1.2    itojun 
    173       1.2    itojun void
    174      1.42      matt mld_init(void)
    175       1.2    itojun {
    176       1.2    itojun 	static u_int8_t hbh_buf[8];
    177       1.2    itojun 	struct ip6_hbh *hbh = (struct ip6_hbh *)hbh_buf;
    178       1.2    itojun 	u_int16_t rtalert_code = htons((u_int16_t)IP6OPT_RTALERT_MLD);
    179       1.2    itojun 
    180       1.2    itojun 	/* ip6h_nxt will be fill in later */
    181      1.11    itojun 	hbh->ip6h_len = 0;	/* (8 >> 3) - 1 */
    182       1.2    itojun 
    183       1.2    itojun 	/* XXX: grotty hard coding... */
    184       1.2    itojun 	hbh_buf[2] = IP6OPT_PADN;	/* 2 byte padding */
    185       1.2    itojun 	hbh_buf[3] = 0;
    186       1.2    itojun 	hbh_buf[4] = IP6OPT_RTALERT;
    187       1.2    itojun 	hbh_buf[5] = IP6OPT_RTALERT_LEN - 2;
    188      1.50   tsutsui 	memcpy(&hbh_buf[6], (void *)&rtalert_code, sizeof(u_int16_t));
    189       1.2    itojun 
    190       1.2    itojun 	ip6_opts.ip6po_hbh = hbh;
    191       1.2    itojun 	/* We will specify the hoplimit by a multicast option. */
    192       1.2    itojun 	ip6_opts.ip6po_hlim = -1;
    193  1.61.2.1     skrll 	ip6_opts.ip6po_prefer_tempaddr = IP6PO_TEMPADDR_NOTPREFER;
    194       1.2    itojun }
    195       1.2    itojun 
    196      1.31    rpaulo static void
    197      1.38  christos mld_starttimer(struct in6_multi *in6m)
    198      1.31    rpaulo {
    199      1.31    rpaulo 	struct timeval now;
    200      1.31    rpaulo 
    201      1.61     ozaki 	KASSERT(in6m->in6m_timer != IN6M_TIMER_UNDEF);
    202      1.61     ozaki 
    203      1.31    rpaulo 	microtime(&now);
    204      1.31    rpaulo 	in6m->in6m_timer_expire.tv_sec = now.tv_sec + in6m->in6m_timer / hz;
    205      1.31    rpaulo 	in6m->in6m_timer_expire.tv_usec = now.tv_usec +
    206      1.31    rpaulo 	    (in6m->in6m_timer % hz) * (1000000 / hz);
    207      1.31    rpaulo 	if (in6m->in6m_timer_expire.tv_usec > 1000000) {
    208      1.31    rpaulo 		in6m->in6m_timer_expire.tv_sec++;
    209      1.31    rpaulo 		in6m->in6m_timer_expire.tv_usec -= 1000000;
    210      1.31    rpaulo 	}
    211      1.31    rpaulo 
    212      1.31    rpaulo 	/* start or restart the timer */
    213      1.41     joerg 	callout_schedule(&in6m->in6m_timer_ch, in6m->in6m_timer);
    214      1.31    rpaulo }
    215      1.31    rpaulo 
    216      1.31    rpaulo static void
    217      1.38  christos mld_stoptimer(struct in6_multi *in6m)
    218      1.31    rpaulo {
    219      1.31    rpaulo 	if (in6m->in6m_timer == IN6M_TIMER_UNDEF)
    220      1.31    rpaulo 		return;
    221      1.31    rpaulo 
    222      1.41     joerg 	callout_stop(&in6m->in6m_timer_ch);
    223      1.31    rpaulo 
    224      1.31    rpaulo 	in6m->in6m_timer = IN6M_TIMER_UNDEF;
    225      1.31    rpaulo }
    226      1.31    rpaulo 
    227      1.31    rpaulo static void
    228      1.41     joerg mld_timeo(void *arg)
    229      1.31    rpaulo {
    230      1.41     joerg 	struct in6_multi *in6m = arg;
    231      1.45        ad 
    232      1.45        ad 	mutex_enter(softnet_lock);
    233      1.45        ad 	KERNEL_LOCK(1, NULL);
    234      1.31    rpaulo 
    235      1.61     ozaki 	if (in6m->in6m_timer == IN6M_TIMER_UNDEF)
    236      1.61     ozaki 		goto out;
    237      1.61     ozaki 
    238      1.31    rpaulo 	in6m->in6m_timer = IN6M_TIMER_UNDEF;
    239      1.31    rpaulo 
    240      1.31    rpaulo 	switch (in6m->in6m_state) {
    241      1.31    rpaulo 	case MLD_REPORTPENDING:
    242      1.31    rpaulo 		mld_start_listening(in6m);
    243      1.31    rpaulo 		break;
    244      1.31    rpaulo 	default:
    245      1.31    rpaulo 		mld_sendpkt(in6m, MLD_LISTENER_REPORT, NULL);
    246      1.31    rpaulo 		break;
    247      1.31    rpaulo 	}
    248      1.31    rpaulo 
    249      1.61     ozaki out:
    250      1.45        ad 	KERNEL_UNLOCK_ONE(NULL);
    251      1.45        ad 	mutex_exit(softnet_lock);
    252      1.31    rpaulo }
    253      1.31    rpaulo 
    254      1.31    rpaulo static u_long
    255      1.38  christos mld_timerresid(struct in6_multi *in6m)
    256      1.31    rpaulo {
    257      1.31    rpaulo 	struct timeval now, diff;
    258      1.31    rpaulo 
    259      1.31    rpaulo 	microtime(&now);
    260      1.31    rpaulo 
    261      1.31    rpaulo 	if (now.tv_sec > in6m->in6m_timer_expire.tv_sec ||
    262      1.31    rpaulo 	    (now.tv_sec == in6m->in6m_timer_expire.tv_sec &&
    263      1.31    rpaulo 	    now.tv_usec > in6m->in6m_timer_expire.tv_usec)) {
    264      1.31    rpaulo 		return (0);
    265      1.31    rpaulo 	}
    266      1.31    rpaulo 	diff = in6m->in6m_timer_expire;
    267      1.31    rpaulo 	diff.tv_sec -= now.tv_sec;
    268      1.31    rpaulo 	diff.tv_usec -= now.tv_usec;
    269      1.31    rpaulo 	if (diff.tv_usec < 0) {
    270      1.31    rpaulo 		diff.tv_sec--;
    271      1.31    rpaulo 		diff.tv_usec += 1000000;
    272      1.31    rpaulo 	}
    273      1.31    rpaulo 
    274      1.31    rpaulo 	/* return the remaining time in milliseconds */
    275      1.47   adrianp 	return diff.tv_sec * 1000 + diff.tv_usec / 1000;
    276      1.31    rpaulo }
    277      1.31    rpaulo 
    278      1.31    rpaulo static void
    279      1.38  christos mld_start_listening(struct in6_multi *in6m)
    280       1.2    itojun {
    281      1.29    rpaulo 	struct in6_addr all_in6;
    282      1.29    rpaulo 
    283       1.2    itojun 	/*
    284      1.11    itojun 	 * RFC2710 page 10:
    285       1.2    itojun 	 * The node never sends a Report or Done for the link-scope all-nodes
    286       1.2    itojun 	 * address.
    287       1.2    itojun 	 * MLD messages are never sent for multicast addresses whose scope is 0
    288       1.2    itojun 	 * (reserved) or 1 (node-local).
    289       1.2    itojun 	 */
    290      1.29    rpaulo 	all_in6 = in6addr_linklocal_allnodes;
    291      1.29    rpaulo 	if (in6_setscope(&all_in6, in6m->in6m_ifp, NULL)) {
    292      1.29    rpaulo 		/* XXX: this should not happen! */
    293      1.29    rpaulo 		in6m->in6m_timer = 0;
    294      1.29    rpaulo 		in6m->in6m_state = MLD_OTHERLISTENER;
    295      1.29    rpaulo 	}
    296      1.29    rpaulo 	if (IN6_ARE_ADDR_EQUAL(&in6m->in6m_addr, &all_in6) ||
    297       1.2    itojun 	    IPV6_ADDR_MC_SCOPE(&in6m->in6m_addr) < IPV6_ADDR_SCOPE_LINKLOCAL) {
    298      1.31    rpaulo 		in6m->in6m_timer = IN6M_TIMER_UNDEF;
    299      1.22    itojun 		in6m->in6m_state = MLD_OTHERLISTENER;
    300       1.2    itojun 	} else {
    301      1.31    rpaulo 		mld_sendpkt(in6m, MLD_LISTENER_REPORT, NULL);
    302      1.55       tls 		in6m->in6m_timer = cprng_fast32() %
    303      1.31    rpaulo 		    (MLD_UNSOLICITED_REPORT_INTERVAL * hz);
    304      1.22    itojun 		in6m->in6m_state = MLD_IREPORTEDLAST;
    305      1.31    rpaulo 
    306      1.31    rpaulo 		mld_starttimer(in6m);
    307       1.2    itojun 	}
    308       1.2    itojun }
    309       1.2    itojun 
    310      1.31    rpaulo static void
    311      1.38  christos mld_stop_listening(struct in6_multi *in6m)
    312       1.2    itojun {
    313      1.29    rpaulo 	struct in6_addr allnode, allrouter;
    314      1.29    rpaulo 
    315      1.29    rpaulo 	allnode = in6addr_linklocal_allnodes;
    316      1.29    rpaulo 	if (in6_setscope(&allnode, in6m->in6m_ifp, NULL)) {
    317      1.29    rpaulo 		/* XXX: this should not happen! */
    318      1.29    rpaulo 		return;
    319      1.29    rpaulo 	}
    320      1.29    rpaulo 	allrouter = in6addr_linklocal_allrouters;
    321      1.29    rpaulo 	if (in6_setscope(&allrouter, in6m->in6m_ifp, NULL)) {
    322      1.29    rpaulo 		/* XXX impossible */
    323      1.29    rpaulo 		return;
    324      1.29    rpaulo 	}
    325       1.2    itojun 
    326      1.22    itojun 	if (in6m->in6m_state == MLD_IREPORTEDLAST &&
    327      1.29    rpaulo 	    (!IN6_ARE_ADDR_EQUAL(&in6m->in6m_addr, &allnode)) &&
    328      1.29    rpaulo 	    IPV6_ADDR_MC_SCOPE(&in6m->in6m_addr) >
    329      1.29    rpaulo 	    IPV6_ADDR_SCOPE_INTFACELOCAL) {
    330      1.31    rpaulo 		mld_sendpkt(in6m, MLD_LISTENER_DONE, &allrouter);
    331      1.29    rpaulo 	}
    332       1.2    itojun }
    333       1.2    itojun 
    334       1.2    itojun void
    335      1.38  christos mld_input(struct mbuf *m, int off)
    336       1.2    itojun {
    337      1.52  dholland 	struct ip6_hdr *ip6;
    338      1.22    itojun 	struct mld_hdr *mldh;
    339       1.2    itojun 	struct ifnet *ifp = m->m_pkthdr.rcvif;
    340      1.31    rpaulo 	struct in6_multi *in6m = NULL;
    341      1.29    rpaulo 	struct in6_addr mld_addr, all_in6;
    342       1.2    itojun 	struct in6_ifaddr *ia;
    343      1.47   adrianp 	u_long timer = 0;	/* timer value in the MLD query header */
    344       1.2    itojun 
    345      1.22    itojun 	IP6_EXTHDR_GET(mldh, struct mld_hdr *, m, off, sizeof(*mldh));
    346      1.13    itojun 	if (mldh == NULL) {
    347      1.44   thorpej 		ICMP6_STATINC(ICMP6_STAT_TOOSHORT);
    348      1.13    itojun 		return;
    349      1.13    itojun 	}
    350      1.13    itojun 
    351       1.2    itojun 	/* source address validation */
    352      1.13    itojun 	ip6 = mtod(m, struct ip6_hdr *);/* in case mpullup */
    353       1.2    itojun 	if (!IN6_IS_ADDR_LINKLOCAL(&ip6->ip6_src)) {
    354      1.31    rpaulo 		/*
    355      1.31    rpaulo 		 * RFC3590 allows the IPv6 unspecified address as the source
    356      1.31    rpaulo 		 * address of MLD report and done messages.  However, as this
    357      1.31    rpaulo 		 * same document says, this special rule is for snooping
    358      1.31    rpaulo 		 * switches and the RFC requires routers to discard MLD packets
    359      1.31    rpaulo 		 * with the unspecified source address.  The RFC only talks
    360      1.31    rpaulo 		 * about hosts receiving an MLD query or report in Security
    361      1.31    rpaulo 		 * Considerations, but this is probably the correct intention.
    362      1.31    rpaulo 		 * RFC3590 does not talk about other cases than link-local and
    363      1.31    rpaulo 		 * the unspecified source addresses, but we believe the same
    364      1.31    rpaulo 		 * rule should be applied.
    365      1.31    rpaulo 		 * As a result, we only allow link-local addresses as the
    366      1.31    rpaulo 		 * source address; otherwise, simply discard the packet.
    367      1.31    rpaulo 		 */
    368      1.18    itojun #if 0
    369      1.31    rpaulo 		/*
    370      1.31    rpaulo 		 * XXX: do not log in an input path to avoid log flooding,
    371      1.31    rpaulo 		 * though RFC3590 says "SHOULD log" if the source of a query
    372      1.31    rpaulo 		 * is the unspecified address.
    373      1.31    rpaulo 		 */
    374      1.31    rpaulo 		log(LOG_INFO,
    375      1.22    itojun 		    "mld_input: src %s is not link-local (grp=%s)\n",
    376      1.31    rpaulo 		    ip6_sprintf(&ip6->ip6_src), ip6_sprintf(&mldh->mld_addr));
    377      1.18    itojun #endif
    378      1.11    itojun 		m_freem(m);
    379       1.2    itojun 		return;
    380       1.2    itojun 	}
    381       1.2    itojun 
    382       1.2    itojun 	/*
    383      1.29    rpaulo 	 * make a copy for local work (in6_setscope() may modify the 1st arg)
    384      1.29    rpaulo 	 */
    385      1.29    rpaulo 	mld_addr = mldh->mld_addr;
    386      1.29    rpaulo 	if (in6_setscope(&mld_addr, ifp, NULL)) {
    387      1.29    rpaulo 		/* XXX: this should not happen! */
    388      1.29    rpaulo 		m_free(m);
    389      1.29    rpaulo 		return;
    390      1.29    rpaulo 	}
    391      1.29    rpaulo 
    392      1.29    rpaulo 	/*
    393      1.31    rpaulo 	 * In the MLD specification, there are 3 states and a flag.
    394       1.2    itojun 	 *
    395       1.2    itojun 	 * In Non-Listener state, we simply don't have a membership record.
    396       1.2    itojun 	 * In Delaying Listener state, our timer is running (in6m->in6m_timer)
    397  1.61.2.2     skrll 	 * In Idle Listener state, our timer is not running
    398      1.31    rpaulo 	 * (in6m->in6m_timer==IN6M_TIMER_UNDEF)
    399       1.2    itojun 	 *
    400      1.22    itojun 	 * The flag is in6m->in6m_state, it is set to MLD_OTHERLISTENER if
    401      1.22    itojun 	 * we have heard a report from another member, or MLD_IREPORTEDLAST
    402       1.2    itojun 	 * if we sent the last report.
    403       1.2    itojun 	 */
    404      1.22    itojun 	switch (mldh->mld_type) {
    405      1.22    itojun 	case MLD_LISTENER_QUERY:
    406       1.7    itojun 		if (ifp->if_flags & IFF_LOOPBACK)
    407       1.7    itojun 			break;
    408       1.7    itojun 
    409      1.29    rpaulo 		if (!IN6_IS_ADDR_UNSPECIFIED(&mld_addr) &&
    410      1.29    rpaulo 		    !IN6_IS_ADDR_MULTICAST(&mld_addr))
    411       1.7    itojun 			break;	/* print error or log stat? */
    412      1.29    rpaulo 
    413      1.29    rpaulo 		all_in6 = in6addr_linklocal_allnodes;
    414      1.29    rpaulo 		if (in6_setscope(&all_in6, ifp, NULL)) {
    415      1.29    rpaulo 			/* XXX: this should not happen! */
    416      1.29    rpaulo 			break;
    417      1.29    rpaulo 		}
    418       1.2    itojun 
    419       1.7    itojun 		/*
    420      1.11    itojun 		 * - Start the timers in all of our membership records
    421      1.11    itojun 		 *   that the query applies to for the interface on
    422      1.11    itojun 		 *   which the query arrived excl. those that belong
    423      1.11    itojun 		 *   to the "all-nodes" group (ff02::1).
    424      1.11    itojun 		 * - Restart any timer that is already running but has
    425      1.30    rpaulo 		 *   a value longer than the requested timeout.
    426      1.11    itojun 		 * - Use the value specified in the query message as
    427      1.11    itojun 		 *   the maximum timeout.
    428      1.11    itojun 		 */
    429      1.31    rpaulo 		timer = ntohs(mldh->mld_maxdelay);
    430      1.31    rpaulo 
    431       1.7    itojun 		IFP_TO_IA6(ifp, ia);
    432       1.7    itojun 		if (ia == NULL)
    433       1.7    itojun 			break;
    434       1.2    itojun 
    435      1.35    dyoung 		LIST_FOREACH(in6m, &ia->ia6_multiaddrs, in6m_entry) {
    436      1.29    rpaulo 			if (IN6_ARE_ADDR_EQUAL(&in6m->in6m_addr, &all_in6) ||
    437       1.7    itojun 			    IPV6_ADDR_MC_SCOPE(&in6m->in6m_addr) <
    438       1.7    itojun 			    IPV6_ADDR_SCOPE_LINKLOCAL)
    439       1.7    itojun 				continue;
    440       1.2    itojun 
    441      1.31    rpaulo 			if (in6m->in6m_state == MLD_REPORTPENDING)
    442      1.31    rpaulo 				continue; /* we are not yet ready */
    443      1.31    rpaulo 
    444      1.31    rpaulo 			if (!IN6_IS_ADDR_UNSPECIFIED(&mld_addr) &&
    445      1.31    rpaulo 			    !IN6_ARE_ADDR_EQUAL(&mld_addr, &in6m->in6m_addr))
    446      1.31    rpaulo 				continue;
    447      1.31    rpaulo 
    448      1.31    rpaulo 			if (timer == 0) {
    449      1.31    rpaulo 				/* send a report immediately */
    450      1.31    rpaulo 				mld_stoptimer(in6m);
    451      1.31    rpaulo 				mld_sendpkt(in6m, MLD_LISTENER_REPORT, NULL);
    452      1.31    rpaulo 				in6m->in6m_state = MLD_IREPORTEDLAST;
    453      1.31    rpaulo 			} else if (in6m->in6m_timer == IN6M_TIMER_UNDEF ||
    454      1.47   adrianp 			    mld_timerresid(in6m) > timer) {
    455      1.47   adrianp 				in6m->in6m_timer =
    456      1.55       tls 				   1 + (cprng_fast32() % timer) * hz / 1000;
    457      1.31    rpaulo 				mld_starttimer(in6m);
    458       1.7    itojun 			}
    459       1.7    itojun 		}
    460      1.29    rpaulo 		break;
    461       1.2    itojun 
    462      1.22    itojun 	case MLD_LISTENER_REPORT:
    463       1.2    itojun 		/*
    464      1.11    itojun 		 * For fast leave to work, we have to know that we are the
    465      1.11    itojun 		 * last person to send a report for this group.  Reports
    466      1.11    itojun 		 * can potentially get looped back if we are a multicast
    467      1.11    itojun 		 * router, so discard reports sourced by me.
    468      1.11    itojun 		 * Note that it is impossible to check IFF_LOOPBACK flag of
    469      1.11    itojun 		 * ifp for this purpose, since ip6_mloopback pass the physical
    470      1.11    itojun 		 * interface to looutput.
    471      1.11    itojun 		 */
    472       1.7    itojun 		if (m->m_flags & M_LOOP) /* XXX: grotty flag, but efficient */
    473       1.7    itojun 			break;
    474       1.7    itojun 
    475      1.22    itojun 		if (!IN6_IS_ADDR_MULTICAST(&mldh->mld_addr))
    476       1.7    itojun 			break;
    477       1.7    itojun 
    478       1.7    itojun 		/*
    479      1.11    itojun 		 * If we belong to the group being reported, stop
    480      1.11    itojun 		 * our timer for that group.
    481      1.11    itojun 		 */
    482      1.29    rpaulo 		IN6_LOOKUP_MULTI(mld_addr, ifp, in6m);
    483       1.7    itojun 		if (in6m) {
    484      1.31    rpaulo 			mld_stoptimer(in6m); /* transit to idle state */
    485      1.22    itojun 			in6m->in6m_state = MLD_OTHERLISTENER; /* clear flag */
    486       1.7    itojun 		}
    487       1.7    itojun 		break;
    488       1.7    itojun 	default:		/* this is impossible */
    489      1.18    itojun #if 0
    490      1.19    itojun 		/*
    491      1.19    itojun 		 * this case should be impossible because of filtering in
    492      1.19    itojun 		 * icmp6_input().  But we explicitly disabled this part
    493      1.19    itojun 		 * just in case.
    494      1.19    itojun 		 */
    495      1.31    rpaulo 		log(LOG_ERR, "mld_input: illegal type(%d)", mldh->mld_type);
    496      1.18    itojun #endif
    497       1.7    itojun 		break;
    498       1.2    itojun 	}
    499      1.11    itojun 
    500      1.11    itojun 	m_freem(m);
    501       1.2    itojun }
    502       1.2    itojun 
    503       1.2    itojun static void
    504  1.61.2.2     skrll mld_sendpkt(struct in6_multi *in6m, int type,
    505      1.38  christos 	const struct in6_addr *dst)
    506       1.2    itojun {
    507      1.31    rpaulo 	struct mbuf *mh;
    508      1.22    itojun 	struct mld_hdr *mldh;
    509      1.31    rpaulo 	struct ip6_hdr *ip6 = NULL;
    510       1.2    itojun 	struct ip6_moptions im6o;
    511      1.31    rpaulo 	struct in6_ifaddr *ia = NULL;
    512       1.2    itojun 	struct ifnet *ifp = in6m->in6m_ifp;
    513      1.19    itojun 	int ignflags;
    514       1.2    itojun 
    515       1.2    itojun 	/*
    516       1.2    itojun 	 * At first, find a link local address on the outgoing interface
    517       1.2    itojun 	 * to use as the source address of the MLD packet.
    518      1.19    itojun 	 * We do not reject tentative addresses for MLD report to deal with
    519      1.19    itojun 	 * the case where we first join a link-local address.
    520       1.2    itojun 	 */
    521      1.19    itojun 	ignflags = (IN6_IFF_NOTREADY|IN6_IFF_ANYCAST) & ~IN6_IFF_TENTATIVE;
    522      1.19    itojun 	if ((ia = in6ifa_ifpforlinklocal(ifp, ignflags)) == NULL)
    523       1.2    itojun 		return;
    524      1.19    itojun 	if ((ia->ia6_flags & IN6_IFF_TENTATIVE))
    525      1.19    itojun 		ia = NULL;
    526       1.2    itojun 
    527      1.31    rpaulo 	/* Allocate two mbufs to store IPv6 header and MLD header */
    528      1.31    rpaulo 	mldh = mld_allocbuf(&mh, sizeof(struct mld_hdr), in6m, type);
    529      1.31    rpaulo 	if (mldh == NULL)
    530       1.2    itojun 		return;
    531       1.2    itojun 
    532      1.31    rpaulo 	/* fill src/dst here */
    533      1.31    rpaulo  	ip6 = mtod(mh, struct ip6_hdr *);
    534      1.31    rpaulo  	ip6->ip6_src = ia ? ia->ia_addr.sin6_addr : in6addr_any;
    535      1.31    rpaulo  	ip6->ip6_dst = dst ? *dst : in6m->in6m_addr;
    536       1.2    itojun 
    537      1.22    itojun 	mldh->mld_addr = in6m->in6m_addr;
    538      1.29    rpaulo 	in6_clearscope(&mldh->mld_addr); /* XXX */
    539      1.22    itojun 	mldh->mld_cksum = in6_cksum(mh, IPPROTO_ICMPV6, sizeof(struct ip6_hdr),
    540      1.22    itojun 	    sizeof(struct mld_hdr));
    541       1.2    itojun 
    542       1.2    itojun 	/* construct multicast option */
    543      1.31    rpaulo 	memset(&im6o, 0, sizeof(im6o));
    544       1.2    itojun 	im6o.im6o_multicast_ifp = ifp;
    545       1.2    itojun 	im6o.im6o_multicast_hlim = 1;
    546       1.2    itojun 
    547       1.2    itojun 	/*
    548       1.2    itojun 	 * Request loopback of the report if we are acting as a multicast
    549       1.2    itojun 	 * router, so that the process-level routing daemon can hear it.
    550       1.2    itojun 	 */
    551       1.2    itojun 	im6o.im6o_multicast_loop = (ip6_mrouter != NULL);
    552       1.2    itojun 
    553       1.2    itojun 	/* increment output statictics */
    554      1.44   thorpej 	ICMP6_STATINC(ICMP6_STAT_OUTHIST + type);
    555      1.15    itojun 	icmp6_ifstat_inc(ifp, ifs6_out_msg);
    556      1.17    itojun 	switch (type) {
    557      1.22    itojun 	case MLD_LISTENER_QUERY:
    558      1.15    itojun 		icmp6_ifstat_inc(ifp, ifs6_out_mldquery);
    559      1.15    itojun 		break;
    560      1.22    itojun 	case MLD_LISTENER_REPORT:
    561      1.15    itojun 		icmp6_ifstat_inc(ifp, ifs6_out_mldreport);
    562      1.15    itojun 		break;
    563      1.22    itojun 	case MLD_LISTENER_DONE:
    564      1.15    itojun 		icmp6_ifstat_inc(ifp, ifs6_out_mlddone);
    565      1.15    itojun 		break;
    566       1.7    itojun 	}
    567      1.19    itojun 
    568      1.27     perry 	ip6_output(mh, &ip6_opts, NULL, ia ? 0 : IPV6_UNSPECSRC,
    569      1.53    plunky 	    &im6o, NULL, NULL);
    570       1.2    itojun }
    571      1.31    rpaulo 
    572      1.31    rpaulo static struct mld_hdr *
    573      1.34  christos mld_allocbuf(struct mbuf **mh, int len, struct in6_multi *in6m,
    574      1.33  christos     int type)
    575      1.31    rpaulo {
    576      1.31    rpaulo 	struct mbuf *md;
    577      1.31    rpaulo 	struct mld_hdr *mldh;
    578      1.31    rpaulo 	struct ip6_hdr *ip6;
    579      1.31    rpaulo 
    580      1.31    rpaulo 	/*
    581      1.31    rpaulo 	 * Allocate mbufs to store ip6 header and MLD header.
    582      1.31    rpaulo 	 * We allocate 2 mbufs and make chain in advance because
    583      1.31    rpaulo 	 * it is more convenient when inserting the hop-by-hop option later.
    584      1.31    rpaulo 	 */
    585      1.31    rpaulo 	MGETHDR(*mh, M_DONTWAIT, MT_HEADER);
    586      1.31    rpaulo 	if (*mh == NULL)
    587      1.31    rpaulo 		return NULL;
    588      1.31    rpaulo 	MGET(md, M_DONTWAIT, MT_DATA);
    589      1.31    rpaulo 	if (md == NULL) {
    590      1.31    rpaulo 		m_free(*mh);
    591      1.31    rpaulo 		*mh = NULL;
    592      1.31    rpaulo 		return NULL;
    593      1.31    rpaulo 	}
    594      1.31    rpaulo 	(*mh)->m_next = md;
    595      1.31    rpaulo 	md->m_next = NULL;
    596      1.31    rpaulo 
    597      1.31    rpaulo 	(*mh)->m_pkthdr.rcvif = NULL;
    598      1.31    rpaulo 	(*mh)->m_pkthdr.len = sizeof(struct ip6_hdr) + len;
    599      1.31    rpaulo 	(*mh)->m_len = sizeof(struct ip6_hdr);
    600      1.31    rpaulo 	MH_ALIGN(*mh, sizeof(struct ip6_hdr));
    601      1.31    rpaulo 
    602      1.31    rpaulo 	/* fill in the ip6 header */
    603      1.31    rpaulo 	ip6 = mtod(*mh, struct ip6_hdr *);
    604      1.31    rpaulo 	memset(ip6, 0, sizeof(*ip6));
    605      1.31    rpaulo 	ip6->ip6_flow = 0;
    606      1.31    rpaulo 	ip6->ip6_vfc &= ~IPV6_VERSION_MASK;
    607      1.31    rpaulo 	ip6->ip6_vfc |= IPV6_VERSION;
    608      1.31    rpaulo 	/* ip6_plen will be set later */
    609      1.31    rpaulo 	ip6->ip6_nxt = IPPROTO_ICMPV6;
    610      1.31    rpaulo 	/* ip6_hlim will be set by im6o.im6o_multicast_hlim */
    611      1.31    rpaulo 	/* ip6_src/dst will be set by mld_sendpkt() or mld_sendbuf() */
    612      1.31    rpaulo 
    613      1.31    rpaulo 	/* fill in the MLD header as much as possible */
    614      1.31    rpaulo 	md->m_len = len;
    615      1.31    rpaulo 	mldh = mtod(md, struct mld_hdr *);
    616      1.31    rpaulo 	memset(mldh, 0, len);
    617      1.31    rpaulo 	mldh->mld_type = type;
    618      1.31    rpaulo 	return mldh;
    619      1.31    rpaulo }
    620      1.31    rpaulo 
    621      1.31    rpaulo /*
    622      1.31    rpaulo  * Add an address to the list of IP6 multicast addresses for a given interface.
    623      1.31    rpaulo  */
    624      1.31    rpaulo struct	in6_multi *
    625  1.61.2.2     skrll in6_addmulti(struct in6_addr *maddr6, struct ifnet *ifp,
    626      1.38  christos 	int *errorp, int timer)
    627      1.31    rpaulo {
    628      1.31    rpaulo 	struct	in6_ifaddr *ia;
    629      1.54    dyoung 	struct	sockaddr_in6 sin6;
    630      1.31    rpaulo 	struct	in6_multi *in6m;
    631      1.31    rpaulo 	int	s = splsoftnet();
    632      1.31    rpaulo 
    633      1.31    rpaulo 	*errorp = 0;
    634      1.31    rpaulo 
    635      1.31    rpaulo 	/*
    636      1.31    rpaulo 	 * See if address already in list.
    637      1.31    rpaulo 	 */
    638      1.31    rpaulo 	IN6_LOOKUP_MULTI(*maddr6, ifp, in6m);
    639      1.31    rpaulo 	if (in6m != NULL) {
    640      1.31    rpaulo 		/*
    641      1.31    rpaulo 		 * Found it; just increment the refrence count.
    642      1.31    rpaulo 		 */
    643      1.31    rpaulo 		in6m->in6m_refcount++;
    644      1.31    rpaulo 	} else {
    645      1.31    rpaulo 		/*
    646      1.31    rpaulo 		 * New address; allocate a new multicast record
    647      1.31    rpaulo 		 * and link it into the interface's multicast list.
    648      1.31    rpaulo 		 */
    649      1.31    rpaulo 		in6m = (struct in6_multi *)
    650      1.51    dyoung 			malloc(sizeof(*in6m), M_IPMADDR, M_NOWAIT|M_ZERO);
    651      1.31    rpaulo 		if (in6m == NULL) {
    652      1.31    rpaulo 			splx(s);
    653      1.31    rpaulo 			*errorp = ENOBUFS;
    654      1.31    rpaulo 			return (NULL);
    655      1.31    rpaulo 		}
    656      1.31    rpaulo 
    657      1.31    rpaulo 		in6m->in6m_addr = *maddr6;
    658      1.31    rpaulo 		in6m->in6m_ifp = ifp;
    659      1.31    rpaulo 		in6m->in6m_refcount = 1;
    660      1.31    rpaulo 		in6m->in6m_timer = IN6M_TIMER_UNDEF;
    661      1.31    rpaulo 		IFP_TO_IA6(ifp, ia);
    662      1.31    rpaulo 		if (ia == NULL) {
    663      1.31    rpaulo 			free(in6m, M_IPMADDR);
    664      1.31    rpaulo 			splx(s);
    665      1.31    rpaulo 			*errorp = EADDRNOTAVAIL; /* appropriate? */
    666      1.31    rpaulo 			return (NULL);
    667      1.31    rpaulo 		}
    668      1.31    rpaulo 		in6m->in6m_ia = ia;
    669      1.60     rmind 		ifaref(&ia->ia_ifa); /* gain a reference */
    670      1.31    rpaulo 		LIST_INSERT_HEAD(&ia->ia6_multiaddrs, in6m, in6m_entry);
    671      1.31    rpaulo 
    672      1.31    rpaulo 		/*
    673      1.31    rpaulo 		 * Ask the network driver to update its multicast reception
    674      1.31    rpaulo 		 * filter appropriately for the new address.
    675      1.31    rpaulo 		 */
    676      1.54    dyoung 		sockaddr_in6_init(&sin6, maddr6, 0, 0, 0);
    677      1.54    dyoung 		*errorp = if_mcast_op(ifp, SIOCADDMULTI, sin6tosa(&sin6));
    678      1.31    rpaulo 		if (*errorp) {
    679      1.31    rpaulo 			LIST_REMOVE(in6m, in6m_entry);
    680      1.31    rpaulo 			free(in6m, M_IPMADDR);
    681      1.60     rmind 			ifafree(&ia->ia_ifa);
    682      1.31    rpaulo 			splx(s);
    683      1.31    rpaulo 			return (NULL);
    684      1.31    rpaulo 		}
    685      1.31    rpaulo 
    686      1.45        ad 		callout_init(&in6m->in6m_timer_ch, CALLOUT_MPSAFE);
    687      1.41     joerg 		callout_setfunc(&in6m->in6m_timer_ch, mld_timeo, in6m);
    688      1.32    rpaulo 		in6m->in6m_timer = timer;
    689      1.31    rpaulo 		if (in6m->in6m_timer > 0) {
    690      1.31    rpaulo 			in6m->in6m_state = MLD_REPORTPENDING;
    691      1.31    rpaulo 			mld_starttimer(in6m);
    692      1.31    rpaulo 
    693      1.31    rpaulo 			splx(s);
    694      1.31    rpaulo 			return (in6m);
    695      1.31    rpaulo 		}
    696      1.31    rpaulo 
    697      1.31    rpaulo 		/*
    698      1.31    rpaulo 		 * Let MLD6 know that we have joined a new IP6 multicast
    699      1.31    rpaulo 		 * group.
    700      1.31    rpaulo 		 */
    701      1.31    rpaulo 		mld_start_listening(in6m);
    702      1.31    rpaulo 	}
    703      1.31    rpaulo 	splx(s);
    704      1.31    rpaulo 	return (in6m);
    705      1.31    rpaulo }
    706      1.31    rpaulo 
    707      1.31    rpaulo /*
    708      1.31    rpaulo  * Delete a multicast address record.
    709      1.31    rpaulo  */
    710      1.31    rpaulo void
    711      1.38  christos in6_delmulti(struct in6_multi *in6m)
    712      1.31    rpaulo {
    713      1.54    dyoung 	struct	sockaddr_in6 sin6;
    714      1.31    rpaulo 	struct	in6_ifaddr *ia;
    715      1.31    rpaulo 	int	s = splsoftnet();
    716      1.31    rpaulo 
    717      1.31    rpaulo 	mld_stoptimer(in6m);
    718      1.31    rpaulo 
    719      1.31    rpaulo 	if (--in6m->in6m_refcount == 0) {
    720      1.31    rpaulo 		/*
    721      1.31    rpaulo 		 * No remaining claims to this record; let MLD6 know
    722      1.31    rpaulo 		 * that we are leaving the multicast group.
    723      1.31    rpaulo 		 */
    724      1.31    rpaulo 		mld_stop_listening(in6m);
    725      1.31    rpaulo 
    726      1.31    rpaulo 		/*
    727      1.31    rpaulo 		 * Unlink from list.
    728      1.31    rpaulo 		 */
    729      1.31    rpaulo 		LIST_REMOVE(in6m, in6m_entry);
    730      1.35    dyoung 		if (in6m->in6m_ia != NULL) {
    731      1.60     rmind 			ifafree(&in6m->in6m_ia->ia_ifa); /* release reference */
    732      1.35    dyoung 			in6m->in6m_ia = NULL;
    733      1.31    rpaulo 		}
    734      1.31    rpaulo 
    735      1.31    rpaulo 		/*
    736      1.31    rpaulo 		 * Delete all references of this multicasting group from
    737      1.31    rpaulo 		 * the membership arrays
    738      1.31    rpaulo 		 */
    739      1.31    rpaulo 		for (ia = in6_ifaddr; ia; ia = ia->ia_next) {
    740      1.31    rpaulo 			struct in6_multi_mship *imm;
    741      1.35    dyoung 			LIST_FOREACH(imm, &ia->ia6_memberships, i6mm_chain) {
    742      1.31    rpaulo 				if (imm->i6mm_maddr == in6m)
    743      1.31    rpaulo 					imm->i6mm_maddr = NULL;
    744      1.31    rpaulo 			}
    745      1.31    rpaulo 		}
    746      1.31    rpaulo 
    747      1.31    rpaulo 		/*
    748      1.31    rpaulo 		 * Notify the network driver to update its multicast
    749      1.31    rpaulo 		 * reception filter.
    750      1.31    rpaulo 		 */
    751      1.54    dyoung 		sockaddr_in6_init(&sin6, &in6m->in6m_addr, 0, 0, 0);
    752      1.54    dyoung 		if_mcast_op(in6m->in6m_ifp, SIOCDELMULTI, sin6tosa(&sin6));
    753      1.61     ozaki 
    754      1.61     ozaki 		/* Tell mld_timeo we're halting the timer */
    755      1.61     ozaki 		in6m->in6m_timer = IN6M_TIMER_UNDEF;
    756      1.61     ozaki 		callout_halt(&in6m->in6m_timer_ch, softnet_lock);
    757      1.41     joerg 		callout_destroy(&in6m->in6m_timer_ch);
    758      1.61     ozaki 
    759      1.31    rpaulo 		free(in6m, M_IPMADDR);
    760      1.31    rpaulo 	}
    761      1.31    rpaulo 	splx(s);
    762      1.31    rpaulo }
    763      1.31    rpaulo 
    764      1.31    rpaulo 
    765      1.31    rpaulo struct in6_multi_mship *
    766  1.61.2.2     skrll in6_joingroup(struct ifnet *ifp, struct in6_addr *addr,
    767      1.38  christos 	int *errorp, int timer)
    768      1.31    rpaulo {
    769      1.31    rpaulo 	struct in6_multi_mship *imm;
    770      1.31    rpaulo 
    771      1.51    dyoung 	imm = malloc(sizeof(*imm), M_IPMADDR, M_NOWAIT|M_ZERO);
    772      1.51    dyoung 	if (imm == NULL) {
    773      1.31    rpaulo 		*errorp = ENOBUFS;
    774      1.31    rpaulo 		return NULL;
    775      1.31    rpaulo 	}
    776      1.31    rpaulo 
    777      1.32    rpaulo 	imm->i6mm_maddr = in6_addmulti(addr, ifp, errorp, timer);
    778      1.31    rpaulo 	if (!imm->i6mm_maddr) {
    779      1.36    dyoung 		/* *errorp is already set */
    780      1.31    rpaulo 		free(imm, M_IPMADDR);
    781      1.31    rpaulo 		return NULL;
    782      1.31    rpaulo 	}
    783      1.31    rpaulo 	return imm;
    784      1.31    rpaulo }
    785      1.31    rpaulo 
    786      1.31    rpaulo int
    787      1.38  christos in6_leavegroup(struct in6_multi_mship *imm)
    788      1.31    rpaulo {
    789      1.31    rpaulo 
    790      1.31    rpaulo 	if (imm->i6mm_maddr) {
    791      1.31    rpaulo 		in6_delmulti(imm->i6mm_maddr);
    792      1.31    rpaulo 	}
    793      1.31    rpaulo 	free(imm, M_IPMADDR);
    794      1.31    rpaulo 	return 0;
    795      1.31    rpaulo }
    796      1.31    rpaulo 
    797      1.31    rpaulo 
    798      1.31    rpaulo /*
    799      1.31    rpaulo  * Multicast address kludge:
    800      1.31    rpaulo  * If there were any multicast addresses attached to this interface address,
    801      1.31    rpaulo  * either move them to another address on this interface, or save them until
    802      1.31    rpaulo  * such time as this interface is reconfigured for IPv6.
    803      1.31    rpaulo  */
    804      1.31    rpaulo void
    805      1.38  christos in6_savemkludge(struct in6_ifaddr *oia)
    806      1.31    rpaulo {
    807      1.31    rpaulo 	struct in6_ifaddr *ia;
    808      1.36    dyoung 	struct in6_multi *in6m;
    809      1.31    rpaulo 
    810      1.31    rpaulo 	IFP_TO_IA6(oia->ia_ifp, ia);
    811      1.31    rpaulo 	if (ia) {	/* there is another address */
    812      1.36    dyoung 		KASSERT(ia != oia);
    813      1.36    dyoung 		while ((in6m = LIST_FIRST(&oia->ia6_multiaddrs)) != NULL) {
    814      1.36    dyoung 			LIST_REMOVE(in6m, in6m_entry);
    815      1.60     rmind 			ifaref(&ia->ia_ifa);
    816      1.60     rmind 			ifafree(&in6m->in6m_ia->ia_ifa);
    817      1.31    rpaulo 			in6m->in6m_ia = ia;
    818      1.31    rpaulo 			LIST_INSERT_HEAD(&ia->ia6_multiaddrs, in6m, in6m_entry);
    819      1.31    rpaulo 		}
    820      1.31    rpaulo 	} else {	/* last address on this if deleted, save */
    821      1.31    rpaulo 		struct multi6_kludge *mk;
    822      1.31    rpaulo 
    823      1.35    dyoung 		LIST_FOREACH(mk, &in6_mk, mk_entry) {
    824      1.31    rpaulo 			if (mk->mk_ifp == oia->ia_ifp)
    825      1.31    rpaulo 				break;
    826      1.31    rpaulo 		}
    827      1.31    rpaulo 		if (mk == NULL) /* this should not happen! */
    828      1.31    rpaulo 			panic("in6_savemkludge: no kludge space");
    829      1.31    rpaulo 
    830      1.36    dyoung 		while ((in6m = LIST_FIRST(&oia->ia6_multiaddrs)) != NULL) {
    831      1.36    dyoung 			LIST_REMOVE(in6m, in6m_entry);
    832      1.60     rmind 			ifafree(&in6m->in6m_ia->ia_ifa); /* release reference */
    833      1.31    rpaulo 			in6m->in6m_ia = NULL;
    834      1.31    rpaulo 			LIST_INSERT_HEAD(&mk->mk_head, in6m, in6m_entry);
    835      1.31    rpaulo 		}
    836      1.31    rpaulo 	}
    837      1.31    rpaulo }
    838      1.31    rpaulo 
    839      1.31    rpaulo /*
    840      1.31    rpaulo  * Continuation of multicast address hack:
    841      1.31    rpaulo  * If there was a multicast group list previously saved for this interface,
    842      1.31    rpaulo  * then we re-attach it to the first address configured on the i/f.
    843      1.31    rpaulo  */
    844      1.31    rpaulo void
    845      1.38  christos in6_restoremkludge(struct in6_ifaddr *ia, struct ifnet *ifp)
    846      1.31    rpaulo {
    847      1.31    rpaulo 	struct multi6_kludge *mk;
    848      1.36    dyoung 	struct in6_multi *in6m;
    849      1.31    rpaulo 
    850      1.35    dyoung 	LIST_FOREACH(mk, &in6_mk, mk_entry) {
    851      1.35    dyoung 		if (mk->mk_ifp == ifp)
    852      1.31    rpaulo 			break;
    853      1.31    rpaulo 	}
    854      1.35    dyoung 	if (mk == NULL)
    855      1.35    dyoung 		return;
    856      1.36    dyoung 	while ((in6m = LIST_FIRST(&mk->mk_head)) != NULL) {
    857      1.36    dyoung 		LIST_REMOVE(in6m, in6m_entry);
    858      1.35    dyoung 		in6m->in6m_ia = ia;
    859      1.60     rmind 		ifaref(&ia->ia_ifa);
    860      1.35    dyoung 		LIST_INSERT_HEAD(&ia->ia6_multiaddrs, in6m, in6m_entry);
    861      1.35    dyoung 	}
    862      1.31    rpaulo }
    863      1.31    rpaulo 
    864      1.31    rpaulo /*
    865      1.31    rpaulo  * Allocate space for the kludge at interface initialization time.
    866      1.31    rpaulo  * Formerly, we dynamically allocated the space in in6_savemkludge() with
    867      1.31    rpaulo  * malloc(M_WAITOK).  However, it was wrong since the function could be called
    868      1.31    rpaulo  * under an interrupt context (software timer on address lifetime expiration).
    869      1.31    rpaulo  * Also, we cannot just give up allocating the strucutre, since the group
    870      1.31    rpaulo  * membership structure is very complex and we need to keep it anyway.
    871      1.31    rpaulo  * Of course, this function MUST NOT be called under an interrupt context.
    872      1.31    rpaulo  * Specifically, it is expected to be called only from in6_ifattach(), though
    873      1.31    rpaulo  * it is a global function.
    874      1.31    rpaulo  */
    875      1.31    rpaulo void
    876      1.38  christos in6_createmkludge(struct ifnet *ifp)
    877      1.31    rpaulo {
    878      1.31    rpaulo 	struct multi6_kludge *mk;
    879      1.31    rpaulo 
    880      1.35    dyoung 	LIST_FOREACH(mk, &in6_mk, mk_entry) {
    881      1.31    rpaulo 		/* If we've already had one, do not allocate. */
    882      1.31    rpaulo 		if (mk->mk_ifp == ifp)
    883      1.31    rpaulo 			return;
    884      1.31    rpaulo 	}
    885      1.31    rpaulo 
    886      1.51    dyoung 	mk = malloc(sizeof(*mk), M_IPMADDR, M_ZERO|M_WAITOK);
    887      1.31    rpaulo 
    888      1.31    rpaulo 	LIST_INIT(&mk->mk_head);
    889      1.31    rpaulo 	mk->mk_ifp = ifp;
    890      1.31    rpaulo 	LIST_INSERT_HEAD(&in6_mk, mk, mk_entry);
    891      1.31    rpaulo }
    892      1.31    rpaulo 
    893      1.31    rpaulo void
    894      1.38  christos in6_purgemkludge(struct ifnet *ifp)
    895      1.31    rpaulo {
    896      1.31    rpaulo 	struct multi6_kludge *mk;
    897      1.36    dyoung 	struct in6_multi *in6m, *next;
    898      1.31    rpaulo 
    899      1.35    dyoung 	LIST_FOREACH(mk, &in6_mk, mk_entry) {
    900      1.35    dyoung 		if (mk->mk_ifp == ifp)
    901      1.35    dyoung 			break;
    902      1.35    dyoung 	}
    903      1.35    dyoung 	if (mk == NULL)
    904      1.35    dyoung 		return;
    905      1.35    dyoung 
    906      1.35    dyoung 	/* leave from all multicast groups joined */
    907      1.36    dyoung 	for (in6m = LIST_FIRST(&mk->mk_head); in6m != NULL; in6m = next) {
    908      1.36    dyoung 		next = LIST_NEXT(in6m, in6m_entry);
    909      1.35    dyoung 		in6_delmulti(in6m);
    910      1.31    rpaulo 	}
    911      1.35    dyoung 	LIST_REMOVE(mk, mk_entry);
    912      1.35    dyoung 	free(mk, M_IPMADDR);
    913      1.31    rpaulo }
    914      1.57     joerg 
    915      1.57     joerg static int
    916      1.57     joerg in6_mkludge_sysctl(SYSCTLFN_ARGS)
    917      1.57     joerg {
    918      1.57     joerg 	struct multi6_kludge *mk;
    919      1.57     joerg 	struct in6_multi *in6m;
    920      1.57     joerg 	int error;
    921      1.57     joerg 	uint32_t tmp;
    922      1.57     joerg 	size_t written;
    923      1.57     joerg 
    924      1.57     joerg 	if (namelen != 1)
    925      1.57     joerg 		return EINVAL;
    926      1.57     joerg 
    927      1.57     joerg 	if (oldp == NULL) {
    928      1.57     joerg 		*oldlenp = 0;
    929      1.57     joerg 		LIST_FOREACH(mk, &in6_mk, mk_entry) {
    930      1.57     joerg 			if (mk->mk_ifp->if_index == name[0])
    931      1.57     joerg 				continue;
    932      1.57     joerg 			LIST_FOREACH(in6m, &mk->mk_head, in6m_entry) {
    933      1.57     joerg 				*oldlenp += sizeof(struct in6_addr) +
    934      1.57     joerg 				    sizeof(uint32_t);
    935      1.57     joerg 			}
    936      1.57     joerg 		}
    937      1.57     joerg 		return 0;
    938      1.57     joerg 	}
    939      1.57     joerg 
    940      1.57     joerg 	error = 0;
    941      1.57     joerg 	written = 0;
    942      1.57     joerg 	LIST_FOREACH(mk, &in6_mk, mk_entry) {
    943      1.57     joerg 		if (mk->mk_ifp->if_index == name[0])
    944      1.57     joerg 			continue;
    945      1.57     joerg 		LIST_FOREACH(in6m, &mk->mk_head, in6m_entry) {
    946      1.57     joerg 			if (written + sizeof(struct in6_addr) +
    947      1.57     joerg 			    sizeof(uint32_t) > *oldlenp)
    948      1.57     joerg 				goto done;
    949      1.57     joerg 			error = sysctl_copyout(l, &in6m->in6m_addr,
    950      1.57     joerg 			    oldp, sizeof(struct in6_addr));
    951      1.57     joerg 			if (error)
    952      1.57     joerg 				goto done;
    953      1.57     joerg 			oldp = (char *)oldp + sizeof(struct in6_addr);
    954      1.57     joerg 			written += sizeof(struct in6_addr);
    955      1.57     joerg 			tmp = in6m->in6m_refcount;
    956      1.57     joerg 			error = sysctl_copyout(l, &tmp, oldp, sizeof(tmp));
    957      1.57     joerg 			if (error)
    958      1.57     joerg 				goto done;
    959      1.57     joerg 			oldp = (char *)oldp + sizeof(tmp);
    960      1.57     joerg 			written += sizeof(tmp);
    961      1.57     joerg 		}
    962      1.57     joerg 	}
    963      1.57     joerg 
    964      1.57     joerg done:
    965      1.57     joerg 	*oldlenp = written;
    966      1.57     joerg 	return error;
    967      1.57     joerg }
    968      1.57     joerg 
    969      1.57     joerg static int
    970      1.57     joerg in6_multicast_sysctl(SYSCTLFN_ARGS)
    971      1.57     joerg {
    972      1.57     joerg 	struct ifnet *ifp;
    973      1.57     joerg 	struct ifaddr *ifa;
    974      1.57     joerg 	struct in6_ifaddr *ifa6;
    975      1.57     joerg 	struct in6_multi *in6m;
    976      1.57     joerg 	uint32_t tmp;
    977      1.57     joerg 	int error;
    978      1.57     joerg 	size_t written;
    979      1.57     joerg 
    980      1.57     joerg 	if (namelen != 1)
    981      1.57     joerg 		return EINVAL;
    982      1.57     joerg 
    983      1.57     joerg 	ifp = if_byindex(name[0]);
    984      1.57     joerg 	if (ifp == NULL)
    985      1.57     joerg 		return ENODEV;
    986      1.57     joerg 
    987      1.57     joerg 	if (oldp == NULL) {
    988      1.57     joerg 		*oldlenp = 0;
    989      1.58     ozaki 		IFADDR_FOREACH(ifa, ifp) {
    990      1.57     joerg 			if (ifa->ifa_addr == NULL)
    991      1.57     joerg 				continue;
    992      1.57     joerg 			if (ifa->ifa_addr->sa_family != AF_INET6)
    993      1.57     joerg 				continue;
    994      1.57     joerg 			ifa6 = (struct in6_ifaddr *)ifa;
    995      1.57     joerg 			LIST_FOREACH(in6m, &ifa6->ia6_multiaddrs, in6m_entry) {
    996      1.57     joerg 				*oldlenp += 2 * sizeof(struct in6_addr) +
    997      1.57     joerg 				    sizeof(uint32_t);
    998      1.57     joerg 			}
    999      1.57     joerg 		}
   1000      1.57     joerg 		return 0;
   1001      1.57     joerg 	}
   1002      1.57     joerg 
   1003      1.57     joerg 	error = 0;
   1004      1.57     joerg 	written = 0;
   1005      1.58     ozaki 	IFADDR_FOREACH(ifa, ifp) {
   1006      1.57     joerg 		if (ifa->ifa_addr == NULL)
   1007      1.57     joerg 			continue;
   1008      1.57     joerg 		if (ifa->ifa_addr->sa_family != AF_INET6)
   1009      1.57     joerg 			continue;
   1010      1.57     joerg 		ifa6 = (struct in6_ifaddr *)ifa;
   1011      1.57     joerg 		LIST_FOREACH(in6m, &ifa6->ia6_multiaddrs, in6m_entry) {
   1012      1.57     joerg 			if (written + 2 * sizeof(struct in6_addr) +
   1013      1.57     joerg 			    sizeof(uint32_t) > *oldlenp)
   1014      1.57     joerg 				goto done;
   1015      1.57     joerg 			error = sysctl_copyout(l, &ifa6->ia_addr.sin6_addr,
   1016      1.57     joerg 			    oldp, sizeof(struct in6_addr));
   1017      1.57     joerg 			if (error)
   1018      1.57     joerg 				goto done;
   1019      1.57     joerg 			oldp = (char *)oldp + sizeof(struct in6_addr);
   1020      1.57     joerg 			written += sizeof(struct in6_addr);
   1021      1.57     joerg 			error = sysctl_copyout(l, &in6m->in6m_addr,
   1022      1.57     joerg 			    oldp, sizeof(struct in6_addr));
   1023      1.57     joerg 			if (error)
   1024      1.57     joerg 				goto done;
   1025      1.57     joerg 			oldp = (char *)oldp + sizeof(struct in6_addr);
   1026      1.57     joerg 			written += sizeof(struct in6_addr);
   1027      1.57     joerg 			tmp = in6m->in6m_refcount;
   1028      1.57     joerg 			error = sysctl_copyout(l, &tmp, oldp, sizeof(tmp));
   1029      1.57     joerg 			if (error)
   1030      1.57     joerg 				goto done;
   1031      1.57     joerg 			oldp = (char *)oldp + sizeof(tmp);
   1032      1.57     joerg 			written += sizeof(tmp);
   1033      1.57     joerg 		}
   1034      1.57     joerg 	}
   1035      1.57     joerg done:
   1036      1.57     joerg 	*oldlenp = written;
   1037      1.57     joerg 	return error;
   1038      1.57     joerg }
   1039      1.57     joerg 
   1040      1.57     joerg SYSCTL_SETUP(sysctl_in6_mklude_setup, "sysctl net.inet6.multicast_kludge subtree setup")
   1041      1.57     joerg {
   1042      1.57     joerg 
   1043      1.57     joerg 	sysctl_createv(clog, 0, NULL, NULL,
   1044      1.57     joerg 		       CTLFLAG_PERMANENT,
   1045      1.59     joerg 		       CTLTYPE_NODE, "inet6", NULL,
   1046      1.59     joerg 		       NULL, 0, NULL, 0,
   1047      1.59     joerg 		       CTL_NET, PF_INET6, CTL_EOL);
   1048      1.59     joerg 
   1049      1.59     joerg 	sysctl_createv(clog, 0, NULL, NULL,
   1050      1.59     joerg 		       CTLFLAG_PERMANENT,
   1051      1.57     joerg 		       CTLTYPE_NODE, "multicast",
   1052      1.57     joerg 		       SYSCTL_DESCR("Multicast information"),
   1053      1.57     joerg 		       in6_multicast_sysctl, 0, NULL, 0,
   1054      1.57     joerg 		       CTL_NET, PF_INET6, CTL_CREATE, CTL_EOL);
   1055      1.57     joerg 
   1056      1.57     joerg 	sysctl_createv(clog, 0, NULL, NULL,
   1057      1.57     joerg 		       CTLFLAG_PERMANENT,
   1058      1.57     joerg 		       CTLTYPE_NODE, "multicast_kludge",
   1059      1.57     joerg 		       SYSCTL_DESCR("multicast kludge information"),
   1060      1.57     joerg 		       in6_mkludge_sysctl, 0, NULL, 0,
   1061      1.57     joerg 		       CTL_NET, PF_INET6, CTL_CREATE, CTL_EOL);
   1062      1.57     joerg }
   1063