xref: /freebsd/sys/netinet6/in6_mcast.c (revision bbf86c65)
1fe267a55SPedro F. Giffuni /*-
2fe267a55SPedro F. Giffuni  * SPDX-License-Identifier: BSD-3-Clause
3fe267a55SPedro F. Giffuni  *
48f002c6cSBruce M Simpson  * Copyright (c) 2009 Bruce Simpson.
58f002c6cSBruce M Simpson  * All rights reserved.
68f002c6cSBruce M Simpson  *
78f002c6cSBruce M Simpson  * Redistribution and use in source and binary forms, with or without
88f002c6cSBruce M Simpson  * modification, are permitted provided that the following conditions
98f002c6cSBruce M Simpson  * are met:
108f002c6cSBruce M Simpson  * 1. Redistributions of source code must retain the above copyright
118f002c6cSBruce M Simpson  *    notice, this list of conditions and the following disclaimer.
128f002c6cSBruce M Simpson  * 2. Redistributions in binary form must reproduce the above copyright
138f002c6cSBruce M Simpson  *    notice, this list of conditions and the following disclaimer in the
148f002c6cSBruce M Simpson  *    documentation and/or other materials provided with the distribution.
158f002c6cSBruce M Simpson  * 3. The name of the author may not be used to endorse or promote
168f002c6cSBruce M Simpson  *    products derived from this software without specific prior written
178f002c6cSBruce M Simpson  *    permission.
188f002c6cSBruce M Simpson  *
198f002c6cSBruce M Simpson  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
208f002c6cSBruce M Simpson  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
218f002c6cSBruce M Simpson  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
228f002c6cSBruce M Simpson  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
238f002c6cSBruce M Simpson  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
248f002c6cSBruce M Simpson  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
258f002c6cSBruce M Simpson  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
268f002c6cSBruce M Simpson  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
278f002c6cSBruce M Simpson  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
288f002c6cSBruce M Simpson  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
298f002c6cSBruce M Simpson  * SUCH DAMAGE.
308f002c6cSBruce M Simpson  */
318f002c6cSBruce M Simpson 
328f002c6cSBruce M Simpson /*
338f002c6cSBruce M Simpson  * IPv6 multicast socket, group, and socket option processing module.
3433cde130SBruce M Simpson  * Normative references: RFC 2292, RFC 3492, RFC 3542, RFC 3678, RFC 3810.
358f002c6cSBruce M Simpson  */
368f002c6cSBruce M Simpson 
378f002c6cSBruce M Simpson #include <sys/cdefs.h>
388f002c6cSBruce M Simpson #include "opt_inet6.h"
398f002c6cSBruce M Simpson 
408f002c6cSBruce M Simpson #include <sys/param.h>
418f002c6cSBruce M Simpson #include <sys/systm.h>
428f002c6cSBruce M Simpson #include <sys/kernel.h>
439b1d850bSMark Johnston #include <sys/ktr.h>
448f002c6cSBruce M Simpson #include <sys/malloc.h>
458f002c6cSBruce M Simpson #include <sys/mbuf.h>
468f002c6cSBruce M Simpson #include <sys/protosw.h>
478f002c6cSBruce M Simpson #include <sys/socket.h>
488f002c6cSBruce M Simpson #include <sys/socketvar.h>
498f002c6cSBruce M Simpson #include <sys/sysctl.h>
508f002c6cSBruce M Simpson #include <sys/priv.h>
519b1d850bSMark Johnston #include <sys/taskqueue.h>
528f002c6cSBruce M Simpson #include <sys/tree.h>
538f002c6cSBruce M Simpson 
548f002c6cSBruce M Simpson #include <net/if.h>
5576039bc8SGleb Smirnoff #include <net/if_var.h>
568f002c6cSBruce M Simpson #include <net/if_dl.h>
573d0d5b21SJustin Hibbits #include <net/if_private.h>
588f002c6cSBruce M Simpson #include <net/route.h>
596ad7446cSAlexander V. Chernikov #include <net/route/nhop.h>
608f002c6cSBruce M Simpson #include <net/vnet.h>
618f002c6cSBruce M Simpson 
628f002c6cSBruce M Simpson #include <netinet/in.h>
63f3e1324bSStephen Hurd #include <netinet/udp.h>
648f002c6cSBruce M Simpson #include <netinet/in_var.h>
65f3e1324bSStephen Hurd #include <netinet/ip_var.h>
66f3e1324bSStephen Hurd #include <netinet/udp_var.h>
679977be4aSAlexander V. Chernikov #include <netinet6/in6_fib.h>
688f002c6cSBruce M Simpson #include <netinet6/in6_var.h>
698f002c6cSBruce M Simpson #include <netinet/ip6.h>
708f002c6cSBruce M Simpson #include <netinet/icmp6.h>
718f002c6cSBruce M Simpson #include <netinet6/ip6_var.h>
728f002c6cSBruce M Simpson #include <netinet/in_pcb.h>
738f002c6cSBruce M Simpson #include <netinet/tcp_var.h>
748f002c6cSBruce M Simpson #include <netinet6/nd6.h>
758f002c6cSBruce M Simpson #include <netinet6/mld6_var.h>
76eddfbb76SRobert Watson #include <netinet6/scope6_var.h>
778f002c6cSBruce M Simpson 
788f002c6cSBruce M Simpson #ifndef KTR_MLD
798f002c6cSBruce M Simpson #define KTR_MLD KTR_INET6
808f002c6cSBruce M Simpson #endif
818f002c6cSBruce M Simpson 
828f002c6cSBruce M Simpson #ifndef __SOCKUNION_DECLARED
838f002c6cSBruce M Simpson union sockunion {
848f002c6cSBruce M Simpson 	struct sockaddr_storage	ss;
858f002c6cSBruce M Simpson 	struct sockaddr		sa;
868f002c6cSBruce M Simpson 	struct sockaddr_dl	sdl;
878f002c6cSBruce M Simpson 	struct sockaddr_in6	sin6;
888f002c6cSBruce M Simpson };
898f002c6cSBruce M Simpson typedef union sockunion sockunion_t;
908f002c6cSBruce M Simpson #define __SOCKUNION_DECLARED
918f002c6cSBruce M Simpson #endif /* __SOCKUNION_DECLARED */
928f002c6cSBruce M Simpson 
938f002c6cSBruce M Simpson static MALLOC_DEFINE(M_IN6MFILTER, "in6_mfilter",
948f002c6cSBruce M Simpson     "IPv6 multicast PCB-layer source filter");
95f3e1324bSStephen Hurd MALLOC_DEFINE(M_IP6MADDR, "in6_multi", "IPv6 multicast group");
968f002c6cSBruce M Simpson static MALLOC_DEFINE(M_IP6MOPTS, "ip6_moptions", "IPv6 multicast options");
978f002c6cSBruce M Simpson static MALLOC_DEFINE(M_IP6MSOURCE, "ip6_msource",
988f002c6cSBruce M Simpson     "IPv6 multicast MLD-layer source filter");
998f002c6cSBruce M Simpson 
1008f002c6cSBruce M Simpson RB_GENERATE(ip6_msource_tree, ip6_msource, im6s_link, ip6_msource_cmp);
1018f002c6cSBruce M Simpson 
1028f002c6cSBruce M Simpson /*
1038f002c6cSBruce M Simpson  * Locking:
104bbf86c65SMark Johnston  * - Lock order is: IN6_MULTI_LOCK, INP_WLOCK, IN6_MULTI_LIST_LOCK, MLD_LOCK,
105bbf86c65SMark Johnston  *                  IF_ADDR_LOCK.
1068f002c6cSBruce M Simpson  * - The IF_ADDR_LOCK is implicitly taken by in6m_lookup() earlier, however
1078f002c6cSBruce M Simpson  *   it can be taken by code in net/if.c also.
1088f002c6cSBruce M Simpson  * - ip6_moptions and in6_mfilter are covered by the INP_WLOCK.
1098f002c6cSBruce M Simpson  *
1108f002c6cSBruce M Simpson  * struct in6_multi is covered by IN6_MULTI_LOCK. There isn't strictly
1118f002c6cSBruce M Simpson  * any need for in6_multi itself to be virtualized -- it is bound to an ifp
1128f002c6cSBruce M Simpson  * anyway no matter what happens.
1138f002c6cSBruce M Simpson  */
114f3e1324bSStephen Hurd struct mtx in6_multi_list_mtx;
115f3e1324bSStephen Hurd MTX_SYSINIT(in6_multi_mtx, &in6_multi_list_mtx, "in6_multi_list_mtx", MTX_DEF);
116f3e1324bSStephen Hurd 
117f3e1324bSStephen Hurd struct mtx in6_multi_free_mtx;
118f3e1324bSStephen Hurd MTX_SYSINIT(in6_multi_free_mtx, &in6_multi_free_mtx, "in6_multi_free_mtx", MTX_DEF);
119f3e1324bSStephen Hurd 
120f3e1324bSStephen Hurd struct sx in6_multi_sx;
121f3e1324bSStephen Hurd SX_SYSINIT(in6_multi_sx, &in6_multi_sx, "in6_multi_sx");
122f3e1324bSStephen Hurd 
1238f002c6cSBruce M Simpson static void	im6f_commit(struct in6_mfilter *);
1248f002c6cSBruce M Simpson static int	im6f_get_source(struct in6_mfilter *imf,
1258f002c6cSBruce M Simpson 		    const struct sockaddr_in6 *psin,
1268f002c6cSBruce M Simpson 		    struct in6_msource **);
1278f002c6cSBruce M Simpson static struct in6_msource *
1288f002c6cSBruce M Simpson 		im6f_graft(struct in6_mfilter *, const uint8_t,
1298f002c6cSBruce M Simpson 		    const struct sockaddr_in6 *);
1308f002c6cSBruce M Simpson static void	im6f_leave(struct in6_mfilter *);
1318f002c6cSBruce M Simpson static int	im6f_prune(struct in6_mfilter *, const struct sockaddr_in6 *);
1328f002c6cSBruce M Simpson static void	im6f_purge(struct in6_mfilter *);
1338f002c6cSBruce M Simpson static void	im6f_rollback(struct in6_mfilter *);
1348f002c6cSBruce M Simpson static void	im6f_reap(struct in6_mfilter *);
13559854ecfSHans Petter Selasky static struct in6_mfilter *
13659854ecfSHans Petter Selasky 		im6o_match_group(const struct ip6_moptions *,
1378f002c6cSBruce M Simpson 		    const struct ifnet *, const struct sockaddr *);
1388f002c6cSBruce M Simpson static struct in6_msource *
13959854ecfSHans Petter Selasky 		im6o_match_source(struct in6_mfilter *, const struct sockaddr *);
1408f002c6cSBruce M Simpson static void	im6s_merge(struct ip6_msource *ims,
1418f002c6cSBruce M Simpson 		    const struct in6_msource *lims, const int rollback);
142f3e1324bSStephen Hurd static int	in6_getmulti(struct ifnet *, const struct in6_addr *,
1438f002c6cSBruce M Simpson 		    struct in6_multi **);
144e1891232SBjoern A. Zeeb static int	in6_joingroup_locked(struct ifnet *, const struct in6_addr *,
145e1891232SBjoern A. Zeeb 		    struct in6_mfilter *, struct in6_multi **, int);
1468f002c6cSBruce M Simpson static int	in6m_get_source(struct in6_multi *inm,
1478f002c6cSBruce M Simpson 		    const struct in6_addr *addr, const int noalloc,
1488f002c6cSBruce M Simpson 		    struct ip6_msource **pims);
1496c5a340eSDimitry Andric #ifdef KTR
1508f002c6cSBruce M Simpson static int	in6m_is_ifp_detached(const struct in6_multi *);
1516c5a340eSDimitry Andric #endif
1528f002c6cSBruce M Simpson static int	in6m_merge(struct in6_multi *, /*const*/ struct in6_mfilter *);
1538f002c6cSBruce M Simpson static void	in6m_purge(struct in6_multi *);
1548f002c6cSBruce M Simpson static void	in6m_reap(struct in6_multi *);
1558f002c6cSBruce M Simpson static struct ip6_moptions *
1568f002c6cSBruce M Simpson 		in6p_findmoptions(struct inpcb *);
1578f002c6cSBruce M Simpson static int	in6p_get_source_filters(struct inpcb *, struct sockopt *);
1588f002c6cSBruce M Simpson static int	in6p_join_group(struct inpcb *, struct sockopt *);
1598f002c6cSBruce M Simpson static int	in6p_leave_group(struct inpcb *, struct sockopt *);
16033cde130SBruce M Simpson static struct ifnet *
16133cde130SBruce M Simpson 		in6p_lookup_mcast_ifp(const struct inpcb *,
16233cde130SBruce M Simpson 		    const struct sockaddr_in6 *);
1638f002c6cSBruce M Simpson static int	in6p_block_unblock_source(struct inpcb *, struct sockopt *);
1648f002c6cSBruce M Simpson static int	in6p_set_multicast_if(struct inpcb *, struct sockopt *);
1658f002c6cSBruce M Simpson static int	in6p_set_source_filters(struct inpcb *, struct sockopt *);
1668f002c6cSBruce M Simpson static int	sysctl_ip6_mcast_filters(SYSCTL_HANDLER_ARGS);
1678f002c6cSBruce M Simpson 
1688f002c6cSBruce M Simpson SYSCTL_DECL(_net_inet6_ip6);	/* XXX Not in any common header. */
1698f002c6cSBruce M Simpson 
1707029da5cSPawel Biernacki static SYSCTL_NODE(_net_inet6_ip6, OID_AUTO, mcast,
1717029da5cSPawel Biernacki     CTLFLAG_RW | CTLFLAG_MPSAFE, 0,
1726472ac3dSEd Schouten     "IPv6 multicast");
1738f002c6cSBruce M Simpson 
1748f002c6cSBruce M Simpson static u_long in6_mcast_maxgrpsrc = IPV6_MAX_GROUP_SRC_FILTER;
1758f002c6cSBruce M Simpson SYSCTL_ULONG(_net_inet6_ip6_mcast, OID_AUTO, maxgrpsrc,
176af3b2549SHans Petter Selasky     CTLFLAG_RWTUN, &in6_mcast_maxgrpsrc, 0,
1778f002c6cSBruce M Simpson     "Max source filters per group");
1788f002c6cSBruce M Simpson 
1798f002c6cSBruce M Simpson static u_long in6_mcast_maxsocksrc = IPV6_MAX_SOCK_SRC_FILTER;
1808f002c6cSBruce M Simpson SYSCTL_ULONG(_net_inet6_ip6_mcast, OID_AUTO, maxsocksrc,
181af3b2549SHans Petter Selasky     CTLFLAG_RWTUN, &in6_mcast_maxsocksrc, 0,
1828f002c6cSBruce M Simpson     "Max source filters per socket");
1838f002c6cSBruce M Simpson 
1848f002c6cSBruce M Simpson /* TODO Virtualize this switch. */
1858f002c6cSBruce M Simpson int in6_mcast_loop = IPV6_DEFAULT_MULTICAST_LOOP;
186af3b2549SHans Petter Selasky SYSCTL_INT(_net_inet6_ip6_mcast, OID_AUTO, loop, CTLFLAG_RWTUN,
1878f002c6cSBruce M Simpson     &in6_mcast_loop, 0, "Loopback multicast datagrams by default");
1888f002c6cSBruce M Simpson 
1896472ac3dSEd Schouten static SYSCTL_NODE(_net_inet6_ip6_mcast, OID_AUTO, filters,
1908f002c6cSBruce M Simpson     CTLFLAG_RD | CTLFLAG_MPSAFE, sysctl_ip6_mcast_filters,
1918f002c6cSBruce M Simpson     "Per-interface stack-wide source filters");
1928f002c6cSBruce M Simpson 
1936c5a340eSDimitry Andric #ifdef KTR
1948f002c6cSBruce M Simpson /*
1958f002c6cSBruce M Simpson  * Inline function which wraps assertions for a valid ifp.
1968f002c6cSBruce M Simpson  * The ifnet layer will set the ifma's ifp pointer to NULL if the ifp
1978f002c6cSBruce M Simpson  * is detached.
1988f002c6cSBruce M Simpson  */
1998f002c6cSBruce M Simpson static int __inline
in6m_is_ifp_detached(const struct in6_multi * inm)2008f002c6cSBruce M Simpson in6m_is_ifp_detached(const struct in6_multi *inm)
2018f002c6cSBruce M Simpson {
2028f002c6cSBruce M Simpson 	struct ifnet *ifp;
2038f002c6cSBruce M Simpson 
2048f002c6cSBruce M Simpson 	KASSERT(inm->in6m_ifma != NULL, ("%s: no ifma", __func__));
2058f002c6cSBruce M Simpson 	ifp = inm->in6m_ifma->ifma_ifp;
2068f002c6cSBruce M Simpson 	if (ifp != NULL) {
2078f002c6cSBruce M Simpson 		/*
2088f002c6cSBruce M Simpson 		 * Sanity check that network-layer notion of ifp is the
2098f002c6cSBruce M Simpson 		 * same as that of link-layer.
2108f002c6cSBruce M Simpson 		 */
2118f002c6cSBruce M Simpson 		KASSERT(inm->in6m_ifp == ifp, ("%s: bad ifp", __func__));
2128f002c6cSBruce M Simpson 	}
2138f002c6cSBruce M Simpson 
2148f002c6cSBruce M Simpson 	return (ifp == NULL);
2158f002c6cSBruce M Simpson }
2166c5a340eSDimitry Andric #endif
2178f002c6cSBruce M Simpson 
2188f002c6cSBruce M Simpson /*
2198f002c6cSBruce M Simpson  * Initialize an in6_mfilter structure to a known state at t0, t1
2208f002c6cSBruce M Simpson  * with an empty source filter list.
2218f002c6cSBruce M Simpson  */
2228f002c6cSBruce M Simpson static __inline void
im6f_init(struct in6_mfilter * imf,const int st0,const int st1)2238f002c6cSBruce M Simpson im6f_init(struct in6_mfilter *imf, const int st0, const int st1)
2248f002c6cSBruce M Simpson {
2258f002c6cSBruce M Simpson 	memset(imf, 0, sizeof(struct in6_mfilter));
2268f002c6cSBruce M Simpson 	RB_INIT(&imf->im6f_sources);
2278f002c6cSBruce M Simpson 	imf->im6f_st[0] = st0;
2288f002c6cSBruce M Simpson 	imf->im6f_st[1] = st1;
2298f002c6cSBruce M Simpson }
2308f002c6cSBruce M Simpson 
23159854ecfSHans Petter Selasky struct in6_mfilter *
ip6_mfilter_alloc(const int mflags,const int st0,const int st1)23259854ecfSHans Petter Selasky ip6_mfilter_alloc(const int mflags, const int st0, const int st1)
2338f002c6cSBruce M Simpson {
23459854ecfSHans Petter Selasky 	struct in6_mfilter *imf;
2358f002c6cSBruce M Simpson 
23659854ecfSHans Petter Selasky 	imf = malloc(sizeof(*imf), M_IN6MFILTER, mflags);
2378f002c6cSBruce M Simpson 
23859854ecfSHans Petter Selasky 	if (imf != NULL)
23959854ecfSHans Petter Selasky 		im6f_init(imf, st0, st1);
24059854ecfSHans Petter Selasky 
24159854ecfSHans Petter Selasky 	return (imf);
2428f002c6cSBruce M Simpson }
2438f002c6cSBruce M Simpson 
24459854ecfSHans Petter Selasky void
ip6_mfilter_free(struct in6_mfilter * imf)24559854ecfSHans Petter Selasky ip6_mfilter_free(struct in6_mfilter *imf)
24659854ecfSHans Petter Selasky {
2478f002c6cSBruce M Simpson 
24859854ecfSHans Petter Selasky 	im6f_purge(imf);
24959854ecfSHans Petter Selasky 	free(imf, M_IN6MFILTER);
2508f002c6cSBruce M Simpson }
2518f002c6cSBruce M Simpson 
2528f002c6cSBruce M Simpson /*
2538f002c6cSBruce M Simpson  * Find an IPv6 multicast group entry for this ip6_moptions instance
2548f002c6cSBruce M Simpson  * which matches the specified group, and optionally an interface.
2558f002c6cSBruce M Simpson  * Return its index into the array, or -1 if not found.
2568f002c6cSBruce M Simpson  */
25759854ecfSHans Petter Selasky static struct in6_mfilter *
im6o_match_group(const struct ip6_moptions * imo,const struct ifnet * ifp,const struct sockaddr * group)2588f002c6cSBruce M Simpson im6o_match_group(const struct ip6_moptions *imo, const struct ifnet *ifp,
2598f002c6cSBruce M Simpson     const struct sockaddr *group)
2608f002c6cSBruce M Simpson {
2618f002c6cSBruce M Simpson 	const struct sockaddr_in6 *gsin6;
26259854ecfSHans Petter Selasky         struct in6_mfilter *imf;
26359854ecfSHans Petter Selasky         struct in6_multi *inm;
2648f002c6cSBruce M Simpson 
2658f002c6cSBruce M Simpson         gsin6 = (const struct sockaddr_in6 *)group;
2668f002c6cSBruce M Simpson 
26759854ecfSHans Petter Selasky 	IP6_MFILTER_FOREACH(imf, &imo->im6o_head) {
26859854ecfSHans Petter Selasky 		inm = imf->im6f_in6m;
26959854ecfSHans Petter Selasky 		if (inm == NULL)
2708f002c6cSBruce M Simpson 			continue;
27159854ecfSHans Petter Selasky 		if ((ifp == NULL || (inm->in6m_ifp == ifp)) &&
27259854ecfSHans Petter Selasky 		    IN6_ARE_ADDR_EQUAL(&inm->in6m_addr,
2738f002c6cSBruce M Simpson 		    &gsin6->sin6_addr)) {
2748f002c6cSBruce M Simpson 			break;
2758f002c6cSBruce M Simpson 		}
2768f002c6cSBruce M Simpson 	}
27759854ecfSHans Petter Selasky 	return (imf);
2788f002c6cSBruce M Simpson }
2798f002c6cSBruce M Simpson 
2808f002c6cSBruce M Simpson /*
2818f002c6cSBruce M Simpson  * Find an IPv6 multicast source entry for this imo which matches
2828f002c6cSBruce M Simpson  * the given group index for this socket, and source address.
2838f002c6cSBruce M Simpson  *
28429dc7bc6SBruce M Simpson  * XXX TODO: The scope ID, if present in src, is stripped before
28529dc7bc6SBruce M Simpson  * any comparison. We SHOULD enforce scope/zone checks where the source
28629dc7bc6SBruce M Simpson  * filter entry has a link scope.
28729dc7bc6SBruce M Simpson  *
2888f002c6cSBruce M Simpson  * NOTE: This does not check if the entry is in-mode, merely if
2898f002c6cSBruce M Simpson  * it exists, which may not be the desired behaviour.
2908f002c6cSBruce M Simpson  */
2918f002c6cSBruce M Simpson static struct in6_msource *
im6o_match_source(struct in6_mfilter * imf,const struct sockaddr * src)29259854ecfSHans Petter Selasky im6o_match_source(struct in6_mfilter *imf, const struct sockaddr *src)
2938f002c6cSBruce M Simpson {
2948f002c6cSBruce M Simpson 	struct ip6_msource	 find;
2958f002c6cSBruce M Simpson 	struct ip6_msource	*ims;
2968f002c6cSBruce M Simpson 	const sockunion_t	*psa;
2978f002c6cSBruce M Simpson 
2988f002c6cSBruce M Simpson 	KASSERT(src->sa_family == AF_INET6, ("%s: !AF_INET6", __func__));
2998f002c6cSBruce M Simpson 
3008f002c6cSBruce M Simpson 	psa = (const sockunion_t *)src;
3018f002c6cSBruce M Simpson 	find.im6s_addr = psa->sin6.sin6_addr;
30229dc7bc6SBruce M Simpson 	in6_clearscope(&find.im6s_addr);		/* XXX */
3038f002c6cSBruce M Simpson 	ims = RB_FIND(ip6_msource_tree, &imf->im6f_sources, &find);
3048f002c6cSBruce M Simpson 
3058f002c6cSBruce M Simpson 	return ((struct in6_msource *)ims);
3068f002c6cSBruce M Simpson }
3078f002c6cSBruce M Simpson 
3088f002c6cSBruce M Simpson /*
3098f002c6cSBruce M Simpson  * Perform filtering for multicast datagrams on a socket by group and source.
3108f002c6cSBruce M Simpson  *
3118f002c6cSBruce M Simpson  * Returns 0 if a datagram should be allowed through, or various error codes
3128f002c6cSBruce M Simpson  * if the socket was not a member of the group, or the source was muted, etc.
3138f002c6cSBruce M Simpson  */
3148f002c6cSBruce M Simpson int
im6o_mc_filter(const struct ip6_moptions * imo,const struct ifnet * ifp,const struct sockaddr * group,const struct sockaddr * src)3158f002c6cSBruce M Simpson im6o_mc_filter(const struct ip6_moptions *imo, const struct ifnet *ifp,
3168f002c6cSBruce M Simpson     const struct sockaddr *group, const struct sockaddr *src)
3178f002c6cSBruce M Simpson {
31859854ecfSHans Petter Selasky 	struct in6_mfilter *imf;
3198f002c6cSBruce M Simpson 	struct in6_msource *ims;
3208f002c6cSBruce M Simpson 	int mode;
3218f002c6cSBruce M Simpson 
3228f002c6cSBruce M Simpson 	KASSERT(ifp != NULL, ("%s: null ifp", __func__));
3238f002c6cSBruce M Simpson 
32459854ecfSHans Petter Selasky 	imf = im6o_match_group(imo, ifp, group);
32559854ecfSHans Petter Selasky 	if (imf == NULL)
3268f002c6cSBruce M Simpson 		return (MCAST_NOTGMEMBER);
3278f002c6cSBruce M Simpson 
3288f002c6cSBruce M Simpson 	/*
3298f002c6cSBruce M Simpson 	 * Check if the source was included in an (S,G) join.
3308f002c6cSBruce M Simpson 	 * Allow reception on exclusive memberships by default,
3318f002c6cSBruce M Simpson 	 * reject reception on inclusive memberships by default.
3328f002c6cSBruce M Simpson 	 * Exclude source only if an in-mode exclude filter exists.
3338f002c6cSBruce M Simpson 	 * Include source only if an in-mode include filter exists.
3348f002c6cSBruce M Simpson 	 * NOTE: We are comparing group state here at MLD t1 (now)
3358f002c6cSBruce M Simpson 	 * with socket-layer t0 (since last downcall).
3368f002c6cSBruce M Simpson 	 */
33759854ecfSHans Petter Selasky 	mode = imf->im6f_st[1];
33859854ecfSHans Petter Selasky 	ims = im6o_match_source(imf, src);
3398f002c6cSBruce M Simpson 
3408f002c6cSBruce M Simpson 	if ((ims == NULL && mode == MCAST_INCLUDE) ||
3418f002c6cSBruce M Simpson 	    (ims != NULL && ims->im6sl_st[0] != mode))
3428f002c6cSBruce M Simpson 		return (MCAST_NOTSMEMBER);
3438f002c6cSBruce M Simpson 
3448f002c6cSBruce M Simpson 	return (MCAST_PASS);
3458f002c6cSBruce M Simpson }
3468f002c6cSBruce M Simpson 
3478f002c6cSBruce M Simpson /*
348361ac40bSJustin Hibbits  * Look up an in6_multi record for an IPv6 multicast address
349361ac40bSJustin Hibbits  * on the interface ifp.
350361ac40bSJustin Hibbits  * If no record found, return NULL.
351361ac40bSJustin Hibbits  *
352361ac40bSJustin Hibbits  * SMPng: The IN6_MULTI_LOCK and must be held and must be in network epoch.
353361ac40bSJustin Hibbits  */
354361ac40bSJustin Hibbits struct in6_multi *
in6m_lookup_locked(struct ifnet * ifp,const struct in6_addr * mcaddr)355361ac40bSJustin Hibbits in6m_lookup_locked(struct ifnet *ifp, const struct in6_addr *mcaddr)
356361ac40bSJustin Hibbits {
357361ac40bSJustin Hibbits 	struct ifmultiaddr *ifma;
358361ac40bSJustin Hibbits 	struct in6_multi *inm;
359361ac40bSJustin Hibbits 
360361ac40bSJustin Hibbits 	NET_EPOCH_ASSERT();
361361ac40bSJustin Hibbits 
362361ac40bSJustin Hibbits 	CK_STAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) {
363361ac40bSJustin Hibbits 		inm = in6m_ifmultiaddr_get_inm(ifma);
364361ac40bSJustin Hibbits 		if (inm == NULL)
365361ac40bSJustin Hibbits 			continue;
366361ac40bSJustin Hibbits 		if (IN6_ARE_ADDR_EQUAL(&inm->in6m_addr, mcaddr))
367361ac40bSJustin Hibbits 			return (inm);
368361ac40bSJustin Hibbits 	}
369361ac40bSJustin Hibbits 	return (NULL);
370361ac40bSJustin Hibbits }
371361ac40bSJustin Hibbits 
372361ac40bSJustin Hibbits /*
3738f002c6cSBruce M Simpson  * Find and return a reference to an in6_multi record for (ifp, group),
3748f002c6cSBruce M Simpson  * and bump its reference count.
3758f002c6cSBruce M Simpson  * If one does not exist, try to allocate it, and update link-layer multicast
3768f002c6cSBruce M Simpson  * filters on ifp to listen for group.
3778f002c6cSBruce M Simpson  * Assumes the IN6_MULTI lock is held across the call.
3788f002c6cSBruce M Simpson  * Return 0 if successful, otherwise return an appropriate error code.
3798f002c6cSBruce M Simpson  */
3808f002c6cSBruce M Simpson static int
in6_getmulti(struct ifnet * ifp,const struct in6_addr * group,struct in6_multi ** pinm)381f3e1324bSStephen Hurd in6_getmulti(struct ifnet *ifp, const struct in6_addr *group,
3828f002c6cSBruce M Simpson     struct in6_multi **pinm)
3838f002c6cSBruce M Simpson {
3842cd6ad76SHans Petter Selasky 	struct epoch_tracker	 et;
3858f002c6cSBruce M Simpson 	struct sockaddr_in6	 gsin6;
3868f002c6cSBruce M Simpson 	struct ifmultiaddr	*ifma;
3878f002c6cSBruce M Simpson 	struct in6_multi	*inm;
3888f002c6cSBruce M Simpson 	int			 error;
3898f002c6cSBruce M Simpson 
3908f002c6cSBruce M Simpson 	error = 0;
3918f002c6cSBruce M Simpson 
3928f002c6cSBruce M Simpson 	/*
3938f002c6cSBruce M Simpson 	 * XXX: Accesses to ifma_protospec must be covered by IF_ADDR_LOCK;
3948f002c6cSBruce M Simpson 	 * if_addmulti() takes this mutex itself, so we must drop and
3958f002c6cSBruce M Simpson 	 * re-acquire around the call.
3968f002c6cSBruce M Simpson 	 */
3978f002c6cSBruce M Simpson 	IN6_MULTI_LOCK_ASSERT();
398f3e1324bSStephen Hurd 	IN6_MULTI_LIST_LOCK();
399137f91e8SJohn Baldwin 	IF_ADDR_WLOCK(ifp);
4002cd6ad76SHans Petter Selasky 	NET_EPOCH_ENTER(et);
401d477a7feSAndrey V. Elsukov 	/*
402d477a7feSAndrey V. Elsukov 	 * Does ifp support IPv6 multicasts?
403d477a7feSAndrey V. Elsukov 	 */
404d477a7feSAndrey V. Elsukov 	if (ifp->if_afdata[AF_INET6] == NULL)
405d477a7feSAndrey V. Elsukov 		error = ENODEV;
406d477a7feSAndrey V. Elsukov 	else
4078f002c6cSBruce M Simpson 		inm = in6m_lookup_locked(ifp, group);
4082cd6ad76SHans Petter Selasky 	NET_EPOCH_EXIT(et);
4092cd6ad76SHans Petter Selasky 
410d477a7feSAndrey V. Elsukov 	if (error != 0)
411d477a7feSAndrey V. Elsukov 		goto out_locked;
412d477a7feSAndrey V. Elsukov 
4138f002c6cSBruce M Simpson 	if (inm != NULL) {
4148f002c6cSBruce M Simpson 		/*
4158f002c6cSBruce M Simpson 		 * If we already joined this group, just bump the
4168f002c6cSBruce M Simpson 		 * refcount and return it.
4178f002c6cSBruce M Simpson 		 */
4188f002c6cSBruce M Simpson 		KASSERT(inm->in6m_refcount >= 1,
4198f002c6cSBruce M Simpson 		    ("%s: bad refcount %d", __func__, inm->in6m_refcount));
420f3e1324bSStephen Hurd 		in6m_acquire_locked(inm);
4218f002c6cSBruce M Simpson 		*pinm = inm;
4228f002c6cSBruce M Simpson 		goto out_locked;
4238f002c6cSBruce M Simpson 	}
4248f002c6cSBruce M Simpson 
4258f002c6cSBruce M Simpson 	memset(&gsin6, 0, sizeof(gsin6));
4268f002c6cSBruce M Simpson 	gsin6.sin6_family = AF_INET6;
4278f002c6cSBruce M Simpson 	gsin6.sin6_len = sizeof(struct sockaddr_in6);
4288f002c6cSBruce M Simpson 	gsin6.sin6_addr = *group;
4298f002c6cSBruce M Simpson 
4308f002c6cSBruce M Simpson 	/*
4318f002c6cSBruce M Simpson 	 * Check if a link-layer group is already associated
4328f002c6cSBruce M Simpson 	 * with this network-layer group on the given ifnet.
4338f002c6cSBruce M Simpson 	 */
434f3e1324bSStephen Hurd 	IN6_MULTI_LIST_UNLOCK();
435137f91e8SJohn Baldwin 	IF_ADDR_WUNLOCK(ifp);
4368f002c6cSBruce M Simpson 	error = if_addmulti(ifp, (struct sockaddr *)&gsin6, &ifma);
4378f002c6cSBruce M Simpson 	if (error != 0)
4388f002c6cSBruce M Simpson 		return (error);
439f3e1324bSStephen Hurd 	IN6_MULTI_LIST_LOCK();
440137f91e8SJohn Baldwin 	IF_ADDR_WLOCK(ifp);
4418f002c6cSBruce M Simpson 
4428f002c6cSBruce M Simpson 	/*
4438f002c6cSBruce M Simpson 	 * If something other than netinet6 is occupying the link-layer
4448f002c6cSBruce M Simpson 	 * group, print a meaningful error message and back out of
4458f002c6cSBruce M Simpson 	 * the allocation.
4468f002c6cSBruce M Simpson 	 * Otherwise, bump the refcount on the existing network-layer
4478f002c6cSBruce M Simpson 	 * group association and return it.
4488f002c6cSBruce M Simpson 	 */
4498f002c6cSBruce M Simpson 	if (ifma->ifma_protospec != NULL) {
4508f002c6cSBruce M Simpson 		inm = (struct in6_multi *)ifma->ifma_protospec;
4518f002c6cSBruce M Simpson #ifdef INVARIANTS
4528f002c6cSBruce M Simpson 		KASSERT(ifma->ifma_addr != NULL, ("%s: no ifma_addr",
4538f002c6cSBruce M Simpson 		    __func__));
4548f002c6cSBruce M Simpson 		KASSERT(ifma->ifma_addr->sa_family == AF_INET6,
4558f002c6cSBruce M Simpson 		    ("%s: ifma not AF_INET6", __func__));
4568f002c6cSBruce M Simpson 		KASSERT(inm != NULL, ("%s: no ifma_protospec", __func__));
4578f002c6cSBruce M Simpson 		if (inm->in6m_ifma != ifma || inm->in6m_ifp != ifp ||
4588f002c6cSBruce M Simpson 		    !IN6_ARE_ADDR_EQUAL(&inm->in6m_addr, group))
4598f002c6cSBruce M Simpson 			panic("%s: ifma %p is inconsistent with %p (%p)",
4608f002c6cSBruce M Simpson 			    __func__, ifma, inm, group);
4618f002c6cSBruce M Simpson #endif
462f3e1324bSStephen Hurd 		in6m_acquire_locked(inm);
4638f002c6cSBruce M Simpson 		*pinm = inm;
4648f002c6cSBruce M Simpson 		goto out_locked;
4658f002c6cSBruce M Simpson 	}
4668f002c6cSBruce M Simpson 
467137f91e8SJohn Baldwin 	IF_ADDR_WLOCK_ASSERT(ifp);
4688f002c6cSBruce M Simpson 
4698f002c6cSBruce M Simpson 	/*
4708f002c6cSBruce M Simpson 	 * A new in6_multi record is needed; allocate and initialize it.
4718f002c6cSBruce M Simpson 	 * We DO NOT perform an MLD join as the in6_ layer may need to
4728f002c6cSBruce M Simpson 	 * push an initial source list down to MLD to support SSM.
4738f002c6cSBruce M Simpson 	 *
4748f002c6cSBruce M Simpson 	 * The initial source filter state is INCLUDE, {} as per the RFC.
4758f002c6cSBruce M Simpson 	 * Pending state-changes per group are subject to a bounds check.
4768f002c6cSBruce M Simpson 	 */
4778f002c6cSBruce M Simpson 	inm = malloc(sizeof(*inm), M_IP6MADDR, M_NOWAIT | M_ZERO);
4788f002c6cSBruce M Simpson 	if (inm == NULL) {
479f3e1324bSStephen Hurd 		IN6_MULTI_LIST_UNLOCK();
48055faae77SConrad Meyer 		IF_ADDR_WUNLOCK(ifp);
4818f002c6cSBruce M Simpson 		if_delmulti_ifma(ifma);
48255faae77SConrad Meyer 		return (ENOMEM);
4838f002c6cSBruce M Simpson 	}
4848f002c6cSBruce M Simpson 	inm->in6m_addr = *group;
4858f002c6cSBruce M Simpson 	inm->in6m_ifp = ifp;
4868f002c6cSBruce M Simpson 	inm->in6m_mli = MLD_IFINFO(ifp);
4878f002c6cSBruce M Simpson 	inm->in6m_ifma = ifma;
4888f002c6cSBruce M Simpson 	inm->in6m_refcount = 1;
4898f002c6cSBruce M Simpson 	inm->in6m_state = MLD_NOT_MEMBER;
490a99c84d4SGleb Smirnoff 	mbufq_init(&inm->in6m_scq, MLD_MAX_STATE_CHANGES);
4918f002c6cSBruce M Simpson 
4928f002c6cSBruce M Simpson 	inm->in6m_st[0].iss_fmode = MCAST_UNDEFINED;
4938f002c6cSBruce M Simpson 	inm->in6m_st[1].iss_fmode = MCAST_UNDEFINED;
4948f002c6cSBruce M Simpson 	RB_INIT(&inm->in6m_srcs);
4958f002c6cSBruce M Simpson 
4968f002c6cSBruce M Simpson 	ifma->ifma_protospec = inm;
4978f002c6cSBruce M Simpson 	*pinm = inm;
4988f002c6cSBruce M Simpson 
4998f002c6cSBruce M Simpson  out_locked:
500f3e1324bSStephen Hurd 	IN6_MULTI_LIST_UNLOCK();
501137f91e8SJohn Baldwin 	IF_ADDR_WUNLOCK(ifp);
5028f002c6cSBruce M Simpson 	return (error);
5038f002c6cSBruce M Simpson }
5048f002c6cSBruce M Simpson 
5058f002c6cSBruce M Simpson /*
5068f002c6cSBruce M Simpson  * Drop a reference to an in6_multi record.
5078f002c6cSBruce M Simpson  *
5088f002c6cSBruce M Simpson  * If the refcount drops to 0, free the in6_multi record and
5098f002c6cSBruce M Simpson  * delete the underlying link-layer membership.
5108f002c6cSBruce M Simpson  */
511f3e1324bSStephen Hurd static void
in6m_release(struct in6_multi * inm)512f3e1324bSStephen Hurd in6m_release(struct in6_multi *inm)
5138f002c6cSBruce M Simpson {
5148f002c6cSBruce M Simpson 	struct ifmultiaddr *ifma;
515f3e1324bSStephen Hurd 	struct ifnet *ifp;
5168f002c6cSBruce M Simpson 
5178f002c6cSBruce M Simpson 	CTR2(KTR_MLD, "%s: refcount is %d", __func__, inm->in6m_refcount);
5188f002c6cSBruce M Simpson 
519f3e1324bSStephen Hurd 	MPASS(inm->in6m_refcount == 0);
5208f002c6cSBruce M Simpson 	CTR2(KTR_MLD, "%s: freeing inm %p", __func__, inm);
5218f002c6cSBruce M Simpson 
5228f002c6cSBruce M Simpson 	ifma = inm->in6m_ifma;
523f3e1324bSStephen Hurd 	ifp = inm->in6m_ifp;
524b6f6f880SMatt Macy 	MPASS(ifma->ifma_llifma == NULL);
5258f002c6cSBruce M Simpson 
5268f002c6cSBruce M Simpson 	/* XXX this access is not covered by IF_ADDR_LOCK */
5278f002c6cSBruce M Simpson 	CTR2(KTR_MLD, "%s: purging ifma %p", __func__, ifma);
528f3e1324bSStephen Hurd 	KASSERT(ifma->ifma_protospec == NULL,
529f3e1324bSStephen Hurd 	    ("%s: ifma_protospec != NULL", __func__));
530f9be0386SMatt Macy 	if (ifp == NULL)
531f9be0386SMatt Macy 		ifp = ifma->ifma_ifp;
5328f002c6cSBruce M Simpson 
5333b9b6b17SEd Maste 	if (ifp != NULL) {
53415f8acc5SEd Maste 		CURVNET_SET(ifp->if_vnet);
5358f002c6cSBruce M Simpson 		in6m_purge(inm);
5368f002c6cSBruce M Simpson 		free(inm, M_IP6MADDR);
537b6f6f880SMatt Macy 		if_delmulti_ifma_flags(ifma, 1);
53815f8acc5SEd Maste 		CURVNET_RESTORE();
539b6f6f880SMatt Macy 		if_rele(ifp);
5403b9b6b17SEd Maste 	} else {
5413b9b6b17SEd Maste 		in6m_purge(inm);
5423b9b6b17SEd Maste 		free(inm, M_IP6MADDR);
5433b9b6b17SEd Maste 		if_delmulti_ifma_flags(ifma, 1);
544b6f6f880SMatt Macy 	}
545f3e1324bSStephen Hurd }
546f3e1324bSStephen Hurd 
547431f2b87SMark Johnston /*
548431f2b87SMark Johnston  * Interface detach can happen in a taskqueue thread context, so we must use a
549431f2b87SMark Johnston  * dedicated thread to avoid deadlocks when draining in6m_release tasks.
550431f2b87SMark Johnston  */
551431f2b87SMark Johnston TASKQUEUE_DEFINE_THREAD(in6m_free);
5529b1d850bSMark Johnston static struct in6_multi_head in6m_free_list = SLIST_HEAD_INITIALIZER();
5539b1d850bSMark Johnston static void in6m_release_task(void *arg __unused, int pending __unused);
554b453d3d2SHans Petter Selasky static struct task in6m_free_task = TASK_INITIALIZER(0, in6m_release_task, NULL);
555f3e1324bSStephen Hurd 
556f3e1324bSStephen Hurd void
in6m_release_list_deferred(struct in6_multi_head * inmh)557f3e1324bSStephen Hurd in6m_release_list_deferred(struct in6_multi_head *inmh)
558f3e1324bSStephen Hurd {
559f3e1324bSStephen Hurd 	if (SLIST_EMPTY(inmh))
560f3e1324bSStephen Hurd 		return;
561f3e1324bSStephen Hurd 	mtx_lock(&in6_multi_free_mtx);
562f3e1324bSStephen Hurd 	SLIST_CONCAT(&in6m_free_list, inmh, in6_multi, in6m_nrele);
563f3e1324bSStephen Hurd 	mtx_unlock(&in6_multi_free_mtx);
564431f2b87SMark Johnston 	taskqueue_enqueue(taskqueue_in6m_free, &in6m_free_task);
565f3e1324bSStephen Hurd }
566f3e1324bSStephen Hurd 
567f3e1324bSStephen Hurd void
in6m_release_wait(void * arg __unused)5683689652cSHans Petter Selasky in6m_release_wait(void *arg __unused)
569dea72f06SHans Petter Selasky {
5703689652cSHans Petter Selasky 
5713689652cSHans Petter Selasky 	/*
5723689652cSHans Petter Selasky 	 * Make sure all pending multicast addresses are freed before
5733689652cSHans Petter Selasky 	 * the VNET or network device is destroyed:
5743689652cSHans Petter Selasky 	 */
575431f2b87SMark Johnston 	taskqueue_drain_all(taskqueue_in6m_free);
576dea72f06SHans Petter Selasky }
5773689652cSHans Petter Selasky #ifdef VIMAGE
578f9461246SBjoern A. Zeeb /* XXX-BZ FIXME, see D24914. */
5793689652cSHans Petter Selasky VNET_SYSUNINIT(in6m_release_wait, SI_SUB_PROTO_DOMAIN, SI_ORDER_FIRST, in6m_release_wait, NULL);
5803689652cSHans Petter Selasky #endif
581dea72f06SHans Petter Selasky 
582dea72f06SHans Petter Selasky void
in6m_disconnect_locked(struct in6_multi_head * inmh,struct in6_multi * inm)5832cd6ad76SHans Petter Selasky in6m_disconnect_locked(struct in6_multi_head *inmh, struct in6_multi *inm)
584f3e1324bSStephen Hurd {
585f3e1324bSStephen Hurd 	struct ifnet *ifp;
586f3e1324bSStephen Hurd 	struct ifaddr *ifa;
587f3e1324bSStephen Hurd 	struct in6_ifaddr *ifa6;
58866fe09d8SAndrew Gallatin 	struct in6_multi_mship *imm, *imm_tmp;
589b6f6f880SMatt Macy 	struct ifmultiaddr *ifma, *ll_ifma;
590f3e1324bSStephen Hurd 
5912cd6ad76SHans Petter Selasky 	IN6_MULTI_LIST_LOCK_ASSERT();
592f9be0386SMatt Macy 
5932cd6ad76SHans Petter Selasky 	ifp = inm->in6m_ifp;
594f9be0386SMatt Macy 	if (ifp == NULL)
5952cd6ad76SHans Petter Selasky 		return;		/* already called */
5962cd6ad76SHans Petter Selasky 
597f9be0386SMatt Macy 	inm->in6m_ifp = NULL;
598b6f6f880SMatt Macy 	IF_ADDR_WLOCK_ASSERT(ifp);
599b6f6f880SMatt Macy 	ifma = inm->in6m_ifma;
600f9be0386SMatt Macy 	if (ifma == NULL)
601f9be0386SMatt Macy 		return;
602b6f6f880SMatt Macy 
603b6f6f880SMatt Macy 	if_ref(ifp);
604f9be0386SMatt Macy 	if (ifma->ifma_flags & IFMA_F_ENQUEUED) {
605d7c5a620SMatt Macy 		CK_STAILQ_REMOVE(&ifp->if_multiaddrs, ifma, ifmultiaddr, ifma_link);
606f9be0386SMatt Macy 		ifma->ifma_flags &= ~IFMA_F_ENQUEUED;
607f9be0386SMatt Macy 	}
608b6f6f880SMatt Macy 	MCDPRINTF("removed ifma: %p from %s\n", ifma, ifp->if_xname);
609b6f6f880SMatt Macy 	if ((ll_ifma = ifma->ifma_llifma) != NULL) {
610b6f6f880SMatt Macy 		MPASS(ifma != ll_ifma);
611b6f6f880SMatt Macy 		ifma->ifma_llifma = NULL;
612b6f6f880SMatt Macy 		MPASS(ll_ifma->ifma_llifma == NULL);
613b6f6f880SMatt Macy 		MPASS(ll_ifma->ifma_ifp == ifp);
614b6f6f880SMatt Macy 		if (--ll_ifma->ifma_refcount == 0) {
615f9be0386SMatt Macy 			if (ll_ifma->ifma_flags & IFMA_F_ENQUEUED) {
616d7c5a620SMatt Macy 				CK_STAILQ_REMOVE(&ifp->if_multiaddrs, ll_ifma, ifmultiaddr, ifma_link);
617d3878608SMatt Macy 				ll_ifma->ifma_flags &= ~IFMA_F_ENQUEUED;
618f9be0386SMatt Macy 			}
619b6f6f880SMatt Macy 			MCDPRINTF("removed ll_ifma: %p from %s\n", ll_ifma, ifp->if_xname);
620b6f6f880SMatt Macy 			if_freemulti(ll_ifma);
621b6f6f880SMatt Macy 		}
622b6f6f880SMatt Macy 	}
623d7c5a620SMatt Macy 	CK_STAILQ_FOREACH(ifa, &ifp->if_addrhead, ifa_link) {
624f3e1324bSStephen Hurd 		if (ifa->ifa_addr->sa_family != AF_INET6)
625f3e1324bSStephen Hurd 			continue;
626f3e1324bSStephen Hurd 		ifa6 = (void *)ifa;
62766fe09d8SAndrew Gallatin 		LIST_FOREACH_SAFE(imm, &ifa6->ia6_memberships,
62866fe09d8SAndrew Gallatin 		    i6mm_chain, imm_tmp) {
629b6f6f880SMatt Macy 			if (inm == imm->i6mm_maddr) {
630b6f6f880SMatt Macy 				LIST_REMOVE(imm, i6mm_chain);
631b6f6f880SMatt Macy 				free(imm, M_IP6MADDR);
6322cd6ad76SHans Petter Selasky 				in6m_rele_locked(inmh, inm);
633f3e1324bSStephen Hurd 			}
634f3e1324bSStephen Hurd 		}
635b6f6f880SMatt Macy 	}
636b6f6f880SMatt Macy }
637b6f6f880SMatt Macy 
638f3e1324bSStephen Hurd static void
in6m_release_task(void * arg __unused,int pending __unused)6399b1d850bSMark Johnston in6m_release_task(void *arg __unused, int pending __unused)
640f3e1324bSStephen Hurd {
641f3e1324bSStephen Hurd 	struct in6_multi_head in6m_free_tmp;
642f3e1324bSStephen Hurd 	struct in6_multi *inm, *tinm;
643f3e1324bSStephen Hurd 
644f3e1324bSStephen Hurd 	SLIST_INIT(&in6m_free_tmp);
645f3e1324bSStephen Hurd 	mtx_lock(&in6_multi_free_mtx);
646f3e1324bSStephen Hurd 	SLIST_CONCAT(&in6m_free_tmp, &in6m_free_list, in6_multi, in6m_nrele);
647f3e1324bSStephen Hurd 	mtx_unlock(&in6_multi_free_mtx);
648f3e1324bSStephen Hurd 	IN6_MULTI_LOCK();
649f3e1324bSStephen Hurd 	SLIST_FOREACH_SAFE(inm, &in6m_free_tmp, in6m_nrele, tinm) {
650f3e1324bSStephen Hurd 		SLIST_REMOVE_HEAD(&in6m_free_tmp, in6m_nrele);
651f3e1324bSStephen Hurd 		in6m_release(inm);
652f3e1324bSStephen Hurd 	}
653f3e1324bSStephen Hurd 	IN6_MULTI_UNLOCK();
6548f002c6cSBruce M Simpson }
6558f002c6cSBruce M Simpson 
6568f002c6cSBruce M Simpson /*
6578f002c6cSBruce M Simpson  * Clear recorded source entries for a group.
6588f002c6cSBruce M Simpson  * Used by the MLD code. Caller must hold the IN6_MULTI lock.
6598f002c6cSBruce M Simpson  * FIXME: Should reap.
6608f002c6cSBruce M Simpson  */
6618f002c6cSBruce M Simpson void
in6m_clear_recorded(struct in6_multi * inm)6628f002c6cSBruce M Simpson in6m_clear_recorded(struct in6_multi *inm)
6638f002c6cSBruce M Simpson {
6648f002c6cSBruce M Simpson 	struct ip6_msource	*ims;
6658f002c6cSBruce M Simpson 
666f3e1324bSStephen Hurd 	IN6_MULTI_LIST_LOCK_ASSERT();
6678f002c6cSBruce M Simpson 
6688f002c6cSBruce M Simpson 	RB_FOREACH(ims, ip6_msource_tree, &inm->in6m_srcs) {
6698f002c6cSBruce M Simpson 		if (ims->im6s_stp) {
6708f002c6cSBruce M Simpson 			ims->im6s_stp = 0;
6718f002c6cSBruce M Simpson 			--inm->in6m_st[1].iss_rec;
6728f002c6cSBruce M Simpson 		}
6738f002c6cSBruce M Simpson 	}
6748f002c6cSBruce M Simpson 	KASSERT(inm->in6m_st[1].iss_rec == 0,
6758f002c6cSBruce M Simpson 	    ("%s: iss_rec %d not 0", __func__, inm->in6m_st[1].iss_rec));
6768f002c6cSBruce M Simpson }
6778f002c6cSBruce M Simpson 
6788f002c6cSBruce M Simpson /*
6798f002c6cSBruce M Simpson  * Record a source as pending for a Source-Group MLDv2 query.
6808f002c6cSBruce M Simpson  * This lives here as it modifies the shared tree.
6818f002c6cSBruce M Simpson  *
6828f002c6cSBruce M Simpson  * inm is the group descriptor.
6838f002c6cSBruce M Simpson  * naddr is the address of the source to record in network-byte order.
6848f002c6cSBruce M Simpson  *
6858f002c6cSBruce M Simpson  * If the net.inet6.mld.sgalloc sysctl is non-zero, we will
6868f002c6cSBruce M Simpson  * lazy-allocate a source node in response to an SG query.
6878f002c6cSBruce M Simpson  * Otherwise, no allocation is performed. This saves some memory
6888f002c6cSBruce M Simpson  * with the trade-off that the source will not be reported to the
6898f002c6cSBruce M Simpson  * router if joined in the window between the query response and
6908f002c6cSBruce M Simpson  * the group actually being joined on the local host.
6918f002c6cSBruce M Simpson  *
6928f002c6cSBruce M Simpson  * VIMAGE: XXX: Currently the mld_sgalloc feature has been removed.
6938f002c6cSBruce M Simpson  * This turns off the allocation of a recorded source entry if
6948f002c6cSBruce M Simpson  * the group has not been joined.
6958f002c6cSBruce M Simpson  *
6968f002c6cSBruce M Simpson  * Return 0 if the source didn't exist or was already marked as recorded.
6978f002c6cSBruce M Simpson  * Return 1 if the source was marked as recorded by this function.
698a4641f4eSPedro F. Giffuni  * Return <0 if any error occurred (negated errno code).
6998f002c6cSBruce M Simpson  */
7008f002c6cSBruce M Simpson int
in6m_record_source(struct in6_multi * inm,const struct in6_addr * addr)7018f002c6cSBruce M Simpson in6m_record_source(struct in6_multi *inm, const struct in6_addr *addr)
7028f002c6cSBruce M Simpson {
7038f002c6cSBruce M Simpson 	struct ip6_msource	 find;
7048f002c6cSBruce M Simpson 	struct ip6_msource	*ims, *nims;
7058f002c6cSBruce M Simpson 
706f3e1324bSStephen Hurd 	IN6_MULTI_LIST_LOCK_ASSERT();
7078f002c6cSBruce M Simpson 
7088f002c6cSBruce M Simpson 	find.im6s_addr = *addr;
7098f002c6cSBruce M Simpson 	ims = RB_FIND(ip6_msource_tree, &inm->in6m_srcs, &find);
7108f002c6cSBruce M Simpson 	if (ims && ims->im6s_stp)
7118f002c6cSBruce M Simpson 		return (0);
7128f002c6cSBruce M Simpson 	if (ims == NULL) {
7138f002c6cSBruce M Simpson 		if (inm->in6m_nsrc == in6_mcast_maxgrpsrc)
7148f002c6cSBruce M Simpson 			return (-ENOSPC);
7158f002c6cSBruce M Simpson 		nims = malloc(sizeof(struct ip6_msource), M_IP6MSOURCE,
7168f002c6cSBruce M Simpson 		    M_NOWAIT | M_ZERO);
7178f002c6cSBruce M Simpson 		if (nims == NULL)
7188f002c6cSBruce M Simpson 			return (-ENOMEM);
7198f002c6cSBruce M Simpson 		nims->im6s_addr = find.im6s_addr;
7208f002c6cSBruce M Simpson 		RB_INSERT(ip6_msource_tree, &inm->in6m_srcs, nims);
7218f002c6cSBruce M Simpson 		++inm->in6m_nsrc;
7228f002c6cSBruce M Simpson 		ims = nims;
7238f002c6cSBruce M Simpson 	}
7248f002c6cSBruce M Simpson 
7258f002c6cSBruce M Simpson 	/*
7268f002c6cSBruce M Simpson 	 * Mark the source as recorded and update the recorded
7278f002c6cSBruce M Simpson 	 * source count.
7288f002c6cSBruce M Simpson 	 */
7298f002c6cSBruce M Simpson 	++ims->im6s_stp;
7308f002c6cSBruce M Simpson 	++inm->in6m_st[1].iss_rec;
7318f002c6cSBruce M Simpson 
7328f002c6cSBruce M Simpson 	return (1);
7338f002c6cSBruce M Simpson }
7348f002c6cSBruce M Simpson 
7358f002c6cSBruce M Simpson /*
7368f002c6cSBruce M Simpson  * Return a pointer to an in6_msource owned by an in6_mfilter,
7378f002c6cSBruce M Simpson  * given its source address.
7388f002c6cSBruce M Simpson  * Lazy-allocate if needed. If this is a new entry its filter state is
7398f002c6cSBruce M Simpson  * undefined at t0.
7408f002c6cSBruce M Simpson  *
7418f002c6cSBruce M Simpson  * imf is the filter set being modified.
7428f002c6cSBruce M Simpson  * addr is the source address.
7438f002c6cSBruce M Simpson  *
7448f002c6cSBruce M Simpson  * SMPng: May be called with locks held; malloc must not block.
7458f002c6cSBruce M Simpson  */
7468f002c6cSBruce M Simpson static int
im6f_get_source(struct in6_mfilter * imf,const struct sockaddr_in6 * psin,struct in6_msource ** plims)7478f002c6cSBruce M Simpson im6f_get_source(struct in6_mfilter *imf, const struct sockaddr_in6 *psin,
7488f002c6cSBruce M Simpson     struct in6_msource **plims)
7498f002c6cSBruce M Simpson {
7508f002c6cSBruce M Simpson 	struct ip6_msource	 find;
7518f002c6cSBruce M Simpson 	struct ip6_msource	*ims, *nims;
7528f002c6cSBruce M Simpson 	struct in6_msource	*lims;
7538f002c6cSBruce M Simpson 	int			 error;
7548f002c6cSBruce M Simpson 
7558f002c6cSBruce M Simpson 	error = 0;
7568f002c6cSBruce M Simpson 	ims = NULL;
7578f002c6cSBruce M Simpson 	lims = NULL;
7588f002c6cSBruce M Simpson 
7598f002c6cSBruce M Simpson 	find.im6s_addr = psin->sin6_addr;
7608f002c6cSBruce M Simpson 	ims = RB_FIND(ip6_msource_tree, &imf->im6f_sources, &find);
7618f002c6cSBruce M Simpson 	lims = (struct in6_msource *)ims;
7628f002c6cSBruce M Simpson 	if (lims == NULL) {
7638f002c6cSBruce M Simpson 		if (imf->im6f_nsrc == in6_mcast_maxsocksrc)
7648f002c6cSBruce M Simpson 			return (ENOSPC);
7658f002c6cSBruce M Simpson 		nims = malloc(sizeof(struct in6_msource), M_IN6MFILTER,
7668f002c6cSBruce M Simpson 		    M_NOWAIT | M_ZERO);
7678f002c6cSBruce M Simpson 		if (nims == NULL)
7688f002c6cSBruce M Simpson 			return (ENOMEM);
7698f002c6cSBruce M Simpson 		lims = (struct in6_msource *)nims;
7708f002c6cSBruce M Simpson 		lims->im6s_addr = find.im6s_addr;
7718f002c6cSBruce M Simpson 		lims->im6sl_st[0] = MCAST_UNDEFINED;
7728f002c6cSBruce M Simpson 		RB_INSERT(ip6_msource_tree, &imf->im6f_sources, nims);
7738f002c6cSBruce M Simpson 		++imf->im6f_nsrc;
7748f002c6cSBruce M Simpson 	}
7758f002c6cSBruce M Simpson 
7768f002c6cSBruce M Simpson 	*plims = lims;
7778f002c6cSBruce M Simpson 
7788f002c6cSBruce M Simpson 	return (error);
7798f002c6cSBruce M Simpson }
7808f002c6cSBruce M Simpson 
7818f002c6cSBruce M Simpson /*
7828f002c6cSBruce M Simpson  * Graft a source entry into an existing socket-layer filter set,
7838f002c6cSBruce M Simpson  * maintaining any required invariants and checking allocations.
7848f002c6cSBruce M Simpson  *
7858f002c6cSBruce M Simpson  * The source is marked as being in the new filter mode at t1.
7868f002c6cSBruce M Simpson  *
7878f002c6cSBruce M Simpson  * Return the pointer to the new node, otherwise return NULL.
7888f002c6cSBruce M Simpson  */
7898f002c6cSBruce M Simpson static struct in6_msource *
im6f_graft(struct in6_mfilter * imf,const uint8_t st1,const struct sockaddr_in6 * psin)7908f002c6cSBruce M Simpson im6f_graft(struct in6_mfilter *imf, const uint8_t st1,
7918f002c6cSBruce M Simpson     const struct sockaddr_in6 *psin)
7928f002c6cSBruce M Simpson {
7938f002c6cSBruce M Simpson 	struct ip6_msource	*nims;
7948f002c6cSBruce M Simpson 	struct in6_msource	*lims;
7958f002c6cSBruce M Simpson 
7968f002c6cSBruce M Simpson 	nims = malloc(sizeof(struct in6_msource), M_IN6MFILTER,
7978f002c6cSBruce M Simpson 	    M_NOWAIT | M_ZERO);
7988f002c6cSBruce M Simpson 	if (nims == NULL)
7998f002c6cSBruce M Simpson 		return (NULL);
8008f002c6cSBruce M Simpson 	lims = (struct in6_msource *)nims;
8018f002c6cSBruce M Simpson 	lims->im6s_addr = psin->sin6_addr;
8028f002c6cSBruce M Simpson 	lims->im6sl_st[0] = MCAST_UNDEFINED;
8038f002c6cSBruce M Simpson 	lims->im6sl_st[1] = st1;
8048f002c6cSBruce M Simpson 	RB_INSERT(ip6_msource_tree, &imf->im6f_sources, nims);
8058f002c6cSBruce M Simpson 	++imf->im6f_nsrc;
8068f002c6cSBruce M Simpson 
8078f002c6cSBruce M Simpson 	return (lims);
8088f002c6cSBruce M Simpson }
8098f002c6cSBruce M Simpson 
8108f002c6cSBruce M Simpson /*
8118f002c6cSBruce M Simpson  * Prune a source entry from an existing socket-layer filter set,
8128f002c6cSBruce M Simpson  * maintaining any required invariants and checking allocations.
8138f002c6cSBruce M Simpson  *
8148f002c6cSBruce M Simpson  * The source is marked as being left at t1, it is not freed.
8158f002c6cSBruce M Simpson  *
8168f002c6cSBruce M Simpson  * Return 0 if no error occurred, otherwise return an errno value.
8178f002c6cSBruce M Simpson  */
8188f002c6cSBruce M Simpson static int
im6f_prune(struct in6_mfilter * imf,const struct sockaddr_in6 * psin)8198f002c6cSBruce M Simpson im6f_prune(struct in6_mfilter *imf, const struct sockaddr_in6 *psin)
8208f002c6cSBruce M Simpson {
8218f002c6cSBruce M Simpson 	struct ip6_msource	 find;
8228f002c6cSBruce M Simpson 	struct ip6_msource	*ims;
8238f002c6cSBruce M Simpson 	struct in6_msource	*lims;
8248f002c6cSBruce M Simpson 
8258f002c6cSBruce M Simpson 	find.im6s_addr = psin->sin6_addr;
8268f002c6cSBruce M Simpson 	ims = RB_FIND(ip6_msource_tree, &imf->im6f_sources, &find);
8278f002c6cSBruce M Simpson 	if (ims == NULL)
8288f002c6cSBruce M Simpson 		return (ENOENT);
8298f002c6cSBruce M Simpson 	lims = (struct in6_msource *)ims;
8308f002c6cSBruce M Simpson 	lims->im6sl_st[1] = MCAST_UNDEFINED;
8318f002c6cSBruce M Simpson 	return (0);
8328f002c6cSBruce M Simpson }
8338f002c6cSBruce M Simpson 
8348f002c6cSBruce M Simpson /*
8358f002c6cSBruce M Simpson  * Revert socket-layer filter set deltas at t1 to t0 state.
8368f002c6cSBruce M Simpson  */
8378f002c6cSBruce M Simpson static void
im6f_rollback(struct in6_mfilter * imf)8388f002c6cSBruce M Simpson im6f_rollback(struct in6_mfilter *imf)
8398f002c6cSBruce M Simpson {
8408f002c6cSBruce M Simpson 	struct ip6_msource	*ims, *tims;
8418f002c6cSBruce M Simpson 	struct in6_msource	*lims;
8428f002c6cSBruce M Simpson 
8438f002c6cSBruce M Simpson 	RB_FOREACH_SAFE(ims, ip6_msource_tree, &imf->im6f_sources, tims) {
8448f002c6cSBruce M Simpson 		lims = (struct in6_msource *)ims;
8458f002c6cSBruce M Simpson 		if (lims->im6sl_st[0] == lims->im6sl_st[1]) {
8468f002c6cSBruce M Simpson 			/* no change at t1 */
8478f002c6cSBruce M Simpson 			continue;
8488f002c6cSBruce M Simpson 		} else if (lims->im6sl_st[0] != MCAST_UNDEFINED) {
8498f002c6cSBruce M Simpson 			/* revert change to existing source at t1 */
8508f002c6cSBruce M Simpson 			lims->im6sl_st[1] = lims->im6sl_st[0];
8518f002c6cSBruce M Simpson 		} else {
8528f002c6cSBruce M Simpson 			/* revert source added t1 */
8538f002c6cSBruce M Simpson 			CTR2(KTR_MLD, "%s: free ims %p", __func__, ims);
8548f002c6cSBruce M Simpson 			RB_REMOVE(ip6_msource_tree, &imf->im6f_sources, ims);
8558f002c6cSBruce M Simpson 			free(ims, M_IN6MFILTER);
8568f002c6cSBruce M Simpson 			imf->im6f_nsrc--;
8578f002c6cSBruce M Simpson 		}
8588f002c6cSBruce M Simpson 	}
8598f002c6cSBruce M Simpson 	imf->im6f_st[1] = imf->im6f_st[0];
8608f002c6cSBruce M Simpson }
8618f002c6cSBruce M Simpson 
8628f002c6cSBruce M Simpson /*
8638f002c6cSBruce M Simpson  * Mark socket-layer filter set as INCLUDE {} at t1.
8648f002c6cSBruce M Simpson  */
8658f002c6cSBruce M Simpson static void
im6f_leave(struct in6_mfilter * imf)8668f002c6cSBruce M Simpson im6f_leave(struct in6_mfilter *imf)
8678f002c6cSBruce M Simpson {
8688f002c6cSBruce M Simpson 	struct ip6_msource	*ims;
8698f002c6cSBruce M Simpson 	struct in6_msource	*lims;
8708f002c6cSBruce M Simpson 
8718f002c6cSBruce M Simpson 	RB_FOREACH(ims, ip6_msource_tree, &imf->im6f_sources) {
8728f002c6cSBruce M Simpson 		lims = (struct in6_msource *)ims;
8738f002c6cSBruce M Simpson 		lims->im6sl_st[1] = MCAST_UNDEFINED;
8748f002c6cSBruce M Simpson 	}
8758f002c6cSBruce M Simpson 	imf->im6f_st[1] = MCAST_INCLUDE;
8768f002c6cSBruce M Simpson }
8778f002c6cSBruce M Simpson 
8788f002c6cSBruce M Simpson /*
8798f002c6cSBruce M Simpson  * Mark socket-layer filter set deltas as committed.
8808f002c6cSBruce M Simpson  */
8818f002c6cSBruce M Simpson static void
im6f_commit(struct in6_mfilter * imf)8828f002c6cSBruce M Simpson im6f_commit(struct in6_mfilter *imf)
8838f002c6cSBruce M Simpson {
8848f002c6cSBruce M Simpson 	struct ip6_msource	*ims;
8858f002c6cSBruce M Simpson 	struct in6_msource	*lims;
8868f002c6cSBruce M Simpson 
8878f002c6cSBruce M Simpson 	RB_FOREACH(ims, ip6_msource_tree, &imf->im6f_sources) {
8888f002c6cSBruce M Simpson 		lims = (struct in6_msource *)ims;
8898f002c6cSBruce M Simpson 		lims->im6sl_st[0] = lims->im6sl_st[1];
8908f002c6cSBruce M Simpson 	}
8918f002c6cSBruce M Simpson 	imf->im6f_st[0] = imf->im6f_st[1];
8928f002c6cSBruce M Simpson }
8938f002c6cSBruce M Simpson 
8948f002c6cSBruce M Simpson /*
8958f002c6cSBruce M Simpson  * Reap unreferenced sources from socket-layer filter set.
8968f002c6cSBruce M Simpson  */
8978f002c6cSBruce M Simpson static void
im6f_reap(struct in6_mfilter * imf)8988f002c6cSBruce M Simpson im6f_reap(struct in6_mfilter *imf)
8998f002c6cSBruce M Simpson {
9008f002c6cSBruce M Simpson 	struct ip6_msource	*ims, *tims;
9018f002c6cSBruce M Simpson 	struct in6_msource	*lims;
9028f002c6cSBruce M Simpson 
9038f002c6cSBruce M Simpson 	RB_FOREACH_SAFE(ims, ip6_msource_tree, &imf->im6f_sources, tims) {
9048f002c6cSBruce M Simpson 		lims = (struct in6_msource *)ims;
9058f002c6cSBruce M Simpson 		if ((lims->im6sl_st[0] == MCAST_UNDEFINED) &&
9068f002c6cSBruce M Simpson 		    (lims->im6sl_st[1] == MCAST_UNDEFINED)) {
9078f002c6cSBruce M Simpson 			CTR2(KTR_MLD, "%s: free lims %p", __func__, ims);
9088f002c6cSBruce M Simpson 			RB_REMOVE(ip6_msource_tree, &imf->im6f_sources, ims);
9098f002c6cSBruce M Simpson 			free(ims, M_IN6MFILTER);
9108f002c6cSBruce M Simpson 			imf->im6f_nsrc--;
9118f002c6cSBruce M Simpson 		}
9128f002c6cSBruce M Simpson 	}
9138f002c6cSBruce M Simpson }
9148f002c6cSBruce M Simpson 
9158f002c6cSBruce M Simpson /*
9168f002c6cSBruce M Simpson  * Purge socket-layer filter set.
9178f002c6cSBruce M Simpson  */
9188f002c6cSBruce M Simpson static void
im6f_purge(struct in6_mfilter * imf)9198f002c6cSBruce M Simpson im6f_purge(struct in6_mfilter *imf)
9208f002c6cSBruce M Simpson {
9218f002c6cSBruce M Simpson 	struct ip6_msource	*ims, *tims;
9228f002c6cSBruce M Simpson 
9238f002c6cSBruce M Simpson 	RB_FOREACH_SAFE(ims, ip6_msource_tree, &imf->im6f_sources, tims) {
9248f002c6cSBruce M Simpson 		CTR2(KTR_MLD, "%s: free ims %p", __func__, ims);
9258f002c6cSBruce M Simpson 		RB_REMOVE(ip6_msource_tree, &imf->im6f_sources, ims);
9268f002c6cSBruce M Simpson 		free(ims, M_IN6MFILTER);
9278f002c6cSBruce M Simpson 		imf->im6f_nsrc--;
9288f002c6cSBruce M Simpson 	}
9298f002c6cSBruce M Simpson 	imf->im6f_st[0] = imf->im6f_st[1] = MCAST_UNDEFINED;
9308f002c6cSBruce M Simpson 	KASSERT(RB_EMPTY(&imf->im6f_sources),
9318f002c6cSBruce M Simpson 	    ("%s: im6f_sources not empty", __func__));
9328f002c6cSBruce M Simpson }
9338f002c6cSBruce M Simpson 
9348f002c6cSBruce M Simpson /*
9358f002c6cSBruce M Simpson  * Look up a source filter entry for a multicast group.
9368f002c6cSBruce M Simpson  *
9378f002c6cSBruce M Simpson  * inm is the group descriptor to work with.
9388f002c6cSBruce M Simpson  * addr is the IPv6 address to look up.
9398f002c6cSBruce M Simpson  * noalloc may be non-zero to suppress allocation of sources.
9408f002c6cSBruce M Simpson  * *pims will be set to the address of the retrieved or allocated source.
9418f002c6cSBruce M Simpson  *
9428f002c6cSBruce M Simpson  * SMPng: NOTE: may be called with locks held.
9438f002c6cSBruce M Simpson  * Return 0 if successful, otherwise return a non-zero error code.
9448f002c6cSBruce M Simpson  */
9458f002c6cSBruce M Simpson static int
in6m_get_source(struct in6_multi * inm,const struct in6_addr * addr,const int noalloc,struct ip6_msource ** pims)9468f002c6cSBruce M Simpson in6m_get_source(struct in6_multi *inm, const struct in6_addr *addr,
9478f002c6cSBruce M Simpson     const int noalloc, struct ip6_msource **pims)
9488f002c6cSBruce M Simpson {
9498f002c6cSBruce M Simpson 	struct ip6_msource	 find;
9508f002c6cSBruce M Simpson 	struct ip6_msource	*ims, *nims;
9518f002c6cSBruce M Simpson #ifdef KTR
9528f002c6cSBruce M Simpson 	char			 ip6tbuf[INET6_ADDRSTRLEN];
9538f002c6cSBruce M Simpson #endif
9548f002c6cSBruce M Simpson 
9558f002c6cSBruce M Simpson 	find.im6s_addr = *addr;
9568f002c6cSBruce M Simpson 	ims = RB_FIND(ip6_msource_tree, &inm->in6m_srcs, &find);
9578f002c6cSBruce M Simpson 	if (ims == NULL && !noalloc) {
9588f002c6cSBruce M Simpson 		if (inm->in6m_nsrc == in6_mcast_maxgrpsrc)
9598f002c6cSBruce M Simpson 			return (ENOSPC);
9608f002c6cSBruce M Simpson 		nims = malloc(sizeof(struct ip6_msource), M_IP6MSOURCE,
9618f002c6cSBruce M Simpson 		    M_NOWAIT | M_ZERO);
9628f002c6cSBruce M Simpson 		if (nims == NULL)
9638f002c6cSBruce M Simpson 			return (ENOMEM);
9648f002c6cSBruce M Simpson 		nims->im6s_addr = *addr;
9658f002c6cSBruce M Simpson 		RB_INSERT(ip6_msource_tree, &inm->in6m_srcs, nims);
9668f002c6cSBruce M Simpson 		++inm->in6m_nsrc;
9678f002c6cSBruce M Simpson 		ims = nims;
9688f002c6cSBruce M Simpson 		CTR3(KTR_MLD, "%s: allocated %s as %p", __func__,
9698f002c6cSBruce M Simpson 		    ip6_sprintf(ip6tbuf, addr), ims);
9708f002c6cSBruce M Simpson 	}
9718f002c6cSBruce M Simpson 
9728f002c6cSBruce M Simpson 	*pims = ims;
9738f002c6cSBruce M Simpson 	return (0);
9748f002c6cSBruce M Simpson }
9758f002c6cSBruce M Simpson 
9768f002c6cSBruce M Simpson /*
9778f002c6cSBruce M Simpson  * Merge socket-layer source into MLD-layer source.
9788f002c6cSBruce M Simpson  * If rollback is non-zero, perform the inverse of the merge.
9798f002c6cSBruce M Simpson  */
9808f002c6cSBruce M Simpson static void
im6s_merge(struct ip6_msource * ims,const struct in6_msource * lims,const int rollback)9818f002c6cSBruce M Simpson im6s_merge(struct ip6_msource *ims, const struct in6_msource *lims,
9828f002c6cSBruce M Simpson     const int rollback)
9838f002c6cSBruce M Simpson {
9848f002c6cSBruce M Simpson 	int n = rollback ? -1 : 1;
9858f002c6cSBruce M Simpson #ifdef KTR
9868f002c6cSBruce M Simpson 	char ip6tbuf[INET6_ADDRSTRLEN];
9878f002c6cSBruce M Simpson 
9888f002c6cSBruce M Simpson 	ip6_sprintf(ip6tbuf, &lims->im6s_addr);
9898f002c6cSBruce M Simpson #endif
9908f002c6cSBruce M Simpson 
9918f002c6cSBruce M Simpson 	if (lims->im6sl_st[0] == MCAST_EXCLUDE) {
9928f002c6cSBruce M Simpson 		CTR3(KTR_MLD, "%s: t1 ex -= %d on %s", __func__, n, ip6tbuf);
9938f002c6cSBruce M Simpson 		ims->im6s_st[1].ex -= n;
9948f002c6cSBruce M Simpson 	} else if (lims->im6sl_st[0] == MCAST_INCLUDE) {
9958f002c6cSBruce M Simpson 		CTR3(KTR_MLD, "%s: t1 in -= %d on %s", __func__, n, ip6tbuf);
9968f002c6cSBruce M Simpson 		ims->im6s_st[1].in -= n;
9978f002c6cSBruce M Simpson 	}
9988f002c6cSBruce M Simpson 
9998f002c6cSBruce M Simpson 	if (lims->im6sl_st[1] == MCAST_EXCLUDE) {
10008f002c6cSBruce M Simpson 		CTR3(KTR_MLD, "%s: t1 ex += %d on %s", __func__, n, ip6tbuf);
10018f002c6cSBruce M Simpson 		ims->im6s_st[1].ex += n;
10028f002c6cSBruce M Simpson 	} else if (lims->im6sl_st[1] == MCAST_INCLUDE) {
10038f002c6cSBruce M Simpson 		CTR3(KTR_MLD, "%s: t1 in += %d on %s", __func__, n, ip6tbuf);
10048f002c6cSBruce M Simpson 		ims->im6s_st[1].in += n;
10058f002c6cSBruce M Simpson 	}
10068f002c6cSBruce M Simpson }
10078f002c6cSBruce M Simpson 
10088f002c6cSBruce M Simpson /*
10098f002c6cSBruce M Simpson  * Atomically update the global in6_multi state, when a membership's
10108f002c6cSBruce M Simpson  * filter list is being updated in any way.
10118f002c6cSBruce M Simpson  *
10128f002c6cSBruce M Simpson  * imf is the per-inpcb-membership group filter pointer.
10138f002c6cSBruce M Simpson  * A fake imf may be passed for in-kernel consumers.
10148f002c6cSBruce M Simpson  *
10158f002c6cSBruce M Simpson  * XXX This is a candidate for a set-symmetric-difference style loop
10168f002c6cSBruce M Simpson  * which would eliminate the repeated lookup from root of ims nodes,
10178f002c6cSBruce M Simpson  * as they share the same key space.
10188f002c6cSBruce M Simpson  *
10198f002c6cSBruce M Simpson  * If any error occurred this function will back out of refcounts
10208f002c6cSBruce M Simpson  * and return a non-zero value.
10218f002c6cSBruce M Simpson  */
10228f002c6cSBruce M Simpson static int
in6m_merge(struct in6_multi * inm,struct in6_mfilter * imf)10238f002c6cSBruce M Simpson in6m_merge(struct in6_multi *inm, /*const*/ struct in6_mfilter *imf)
10248f002c6cSBruce M Simpson {
10258f002c6cSBruce M Simpson 	struct ip6_msource	*ims, *nims;
10268f002c6cSBruce M Simpson 	struct in6_msource	*lims;
10278f002c6cSBruce M Simpson 	int			 schanged, error;
10288f002c6cSBruce M Simpson 	int			 nsrc0, nsrc1;
10298f002c6cSBruce M Simpson 
10308f002c6cSBruce M Simpson 	schanged = 0;
10318f002c6cSBruce M Simpson 	error = 0;
10328f002c6cSBruce M Simpson 	nsrc1 = nsrc0 = 0;
1033f3e1324bSStephen Hurd 	IN6_MULTI_LIST_LOCK_ASSERT();
10348f002c6cSBruce M Simpson 
10358f002c6cSBruce M Simpson 	/*
10368f002c6cSBruce M Simpson 	 * Update the source filters first, as this may fail.
10378f002c6cSBruce M Simpson 	 * Maintain count of in-mode filters at t0, t1. These are
10388f002c6cSBruce M Simpson 	 * used to work out if we transition into ASM mode or not.
10398f002c6cSBruce M Simpson 	 * Maintain a count of source filters whose state was
10408f002c6cSBruce M Simpson 	 * actually modified by this operation.
10418f002c6cSBruce M Simpson 	 */
10428f002c6cSBruce M Simpson 	RB_FOREACH(ims, ip6_msource_tree, &imf->im6f_sources) {
10438f002c6cSBruce M Simpson 		lims = (struct in6_msource *)ims;
10448f002c6cSBruce M Simpson 		if (lims->im6sl_st[0] == imf->im6f_st[0]) nsrc0++;
10458f002c6cSBruce M Simpson 		if (lims->im6sl_st[1] == imf->im6f_st[1]) nsrc1++;
10468f002c6cSBruce M Simpson 		if (lims->im6sl_st[0] == lims->im6sl_st[1]) continue;
10478f002c6cSBruce M Simpson 		error = in6m_get_source(inm, &lims->im6s_addr, 0, &nims);
10488f002c6cSBruce M Simpson 		++schanged;
10498f002c6cSBruce M Simpson 		if (error)
10508f002c6cSBruce M Simpson 			break;
10518f002c6cSBruce M Simpson 		im6s_merge(nims, lims, 0);
10528f002c6cSBruce M Simpson 	}
10538f002c6cSBruce M Simpson 	if (error) {
10548f002c6cSBruce M Simpson 		struct ip6_msource *bims;
10558f002c6cSBruce M Simpson 
10568f002c6cSBruce M Simpson 		RB_FOREACH_REVERSE_FROM(ims, ip6_msource_tree, nims) {
10578f002c6cSBruce M Simpson 			lims = (struct in6_msource *)ims;
10588f002c6cSBruce M Simpson 			if (lims->im6sl_st[0] == lims->im6sl_st[1])
10598f002c6cSBruce M Simpson 				continue;
10608f002c6cSBruce M Simpson 			(void)in6m_get_source(inm, &lims->im6s_addr, 1, &bims);
10618f002c6cSBruce M Simpson 			if (bims == NULL)
10628f002c6cSBruce M Simpson 				continue;
10638f002c6cSBruce M Simpson 			im6s_merge(bims, lims, 1);
10648f002c6cSBruce M Simpson 		}
10658f002c6cSBruce M Simpson 		goto out_reap;
10668f002c6cSBruce M Simpson 	}
10678f002c6cSBruce M Simpson 
10688f002c6cSBruce M Simpson 	CTR3(KTR_MLD, "%s: imf filters in-mode: %d at t0, %d at t1",
10698f002c6cSBruce M Simpson 	    __func__, nsrc0, nsrc1);
10708f002c6cSBruce M Simpson 
10718f002c6cSBruce M Simpson 	/* Handle transition between INCLUDE {n} and INCLUDE {} on socket. */
10728f002c6cSBruce M Simpson 	if (imf->im6f_st[0] == imf->im6f_st[1] &&
10738f002c6cSBruce M Simpson 	    imf->im6f_st[1] == MCAST_INCLUDE) {
10748f002c6cSBruce M Simpson 		if (nsrc1 == 0) {
10758f002c6cSBruce M Simpson 			CTR1(KTR_MLD, "%s: --in on inm at t1", __func__);
10768f002c6cSBruce M Simpson 			--inm->in6m_st[1].iss_in;
10778f002c6cSBruce M Simpson 		}
10788f002c6cSBruce M Simpson 	}
10798f002c6cSBruce M Simpson 
10808f002c6cSBruce M Simpson 	/* Handle filter mode transition on socket. */
10818f002c6cSBruce M Simpson 	if (imf->im6f_st[0] != imf->im6f_st[1]) {
10828f002c6cSBruce M Simpson 		CTR3(KTR_MLD, "%s: imf transition %d to %d",
10838f002c6cSBruce M Simpson 		    __func__, imf->im6f_st[0], imf->im6f_st[1]);
10848f002c6cSBruce M Simpson 
10858f002c6cSBruce M Simpson 		if (imf->im6f_st[0] == MCAST_EXCLUDE) {
10868f002c6cSBruce M Simpson 			CTR1(KTR_MLD, "%s: --ex on inm at t1", __func__);
10878f002c6cSBruce M Simpson 			--inm->in6m_st[1].iss_ex;
10888f002c6cSBruce M Simpson 		} else if (imf->im6f_st[0] == MCAST_INCLUDE) {
10898f002c6cSBruce M Simpson 			CTR1(KTR_MLD, "%s: --in on inm at t1", __func__);
10908f002c6cSBruce M Simpson 			--inm->in6m_st[1].iss_in;
10918f002c6cSBruce M Simpson 		}
10928f002c6cSBruce M Simpson 
10938f002c6cSBruce M Simpson 		if (imf->im6f_st[1] == MCAST_EXCLUDE) {
10948f002c6cSBruce M Simpson 			CTR1(KTR_MLD, "%s: ex++ on inm at t1", __func__);
10958f002c6cSBruce M Simpson 			inm->in6m_st[1].iss_ex++;
10968f002c6cSBruce M Simpson 		} else if (imf->im6f_st[1] == MCAST_INCLUDE && nsrc1 > 0) {
10978f002c6cSBruce M Simpson 			CTR1(KTR_MLD, "%s: in++ on inm at t1", __func__);
10988f002c6cSBruce M Simpson 			inm->in6m_st[1].iss_in++;
10998f002c6cSBruce M Simpson 		}
11008f002c6cSBruce M Simpson 	}
11018f002c6cSBruce M Simpson 
11028f002c6cSBruce M Simpson 	/*
11038f002c6cSBruce M Simpson 	 * Track inm filter state in terms of listener counts.
11048f002c6cSBruce M Simpson 	 * If there are any exclusive listeners, stack-wide
11058f002c6cSBruce M Simpson 	 * membership is exclusive.
11068f002c6cSBruce M Simpson 	 * Otherwise, if only inclusive listeners, stack-wide is inclusive.
11078f002c6cSBruce M Simpson 	 * If no listeners remain, state is undefined at t1,
11088f002c6cSBruce M Simpson 	 * and the MLD lifecycle for this group should finish.
11098f002c6cSBruce M Simpson 	 */
11108f002c6cSBruce M Simpson 	if (inm->in6m_st[1].iss_ex > 0) {
11118f002c6cSBruce M Simpson 		CTR1(KTR_MLD, "%s: transition to EX", __func__);
11128f002c6cSBruce M Simpson 		inm->in6m_st[1].iss_fmode = MCAST_EXCLUDE;
11138f002c6cSBruce M Simpson 	} else if (inm->in6m_st[1].iss_in > 0) {
11148f002c6cSBruce M Simpson 		CTR1(KTR_MLD, "%s: transition to IN", __func__);
11158f002c6cSBruce M Simpson 		inm->in6m_st[1].iss_fmode = MCAST_INCLUDE;
11168f002c6cSBruce M Simpson 	} else {
11178f002c6cSBruce M Simpson 		CTR1(KTR_MLD, "%s: transition to UNDEF", __func__);
11188f002c6cSBruce M Simpson 		inm->in6m_st[1].iss_fmode = MCAST_UNDEFINED;
11198f002c6cSBruce M Simpson 	}
11208f002c6cSBruce M Simpson 
11218f002c6cSBruce M Simpson 	/* Decrement ASM listener count on transition out of ASM mode. */
11228f002c6cSBruce M Simpson 	if (imf->im6f_st[0] == MCAST_EXCLUDE && nsrc0 == 0) {
11238f002c6cSBruce M Simpson 		if ((imf->im6f_st[1] != MCAST_EXCLUDE) ||
1124bd745936SEnji Cooper 		    (imf->im6f_st[1] == MCAST_EXCLUDE && nsrc1 > 0)) {
11258f002c6cSBruce M Simpson 			CTR1(KTR_MLD, "%s: --asm on inm at t1", __func__);
11268f002c6cSBruce M Simpson 			--inm->in6m_st[1].iss_asm;
11278f002c6cSBruce M Simpson 		}
1128bd745936SEnji Cooper 	}
11298f002c6cSBruce M Simpson 
11308f002c6cSBruce M Simpson 	/* Increment ASM listener count on transition to ASM mode. */
11318f002c6cSBruce M Simpson 	if (imf->im6f_st[1] == MCAST_EXCLUDE && nsrc1 == 0) {
11328f002c6cSBruce M Simpson 		CTR1(KTR_MLD, "%s: asm++ on inm at t1", __func__);
11338f002c6cSBruce M Simpson 		inm->in6m_st[1].iss_asm++;
11348f002c6cSBruce M Simpson 	}
11358f002c6cSBruce M Simpson 
11368f002c6cSBruce M Simpson 	CTR3(KTR_MLD, "%s: merged imf %p to inm %p", __func__, imf, inm);
11378f002c6cSBruce M Simpson 	in6m_print(inm);
11388f002c6cSBruce M Simpson 
11398f002c6cSBruce M Simpson out_reap:
11408f002c6cSBruce M Simpson 	if (schanged > 0) {
11418f002c6cSBruce M Simpson 		CTR1(KTR_MLD, "%s: sources changed; reaping", __func__);
11428f002c6cSBruce M Simpson 		in6m_reap(inm);
11438f002c6cSBruce M Simpson 	}
11448f002c6cSBruce M Simpson 	return (error);
11458f002c6cSBruce M Simpson }
11468f002c6cSBruce M Simpson 
11478f002c6cSBruce M Simpson /*
11488f002c6cSBruce M Simpson  * Mark an in6_multi's filter set deltas as committed.
11498f002c6cSBruce M Simpson  * Called by MLD after a state change has been enqueued.
11508f002c6cSBruce M Simpson  */
11518f002c6cSBruce M Simpson void
in6m_commit(struct in6_multi * inm)11528f002c6cSBruce M Simpson in6m_commit(struct in6_multi *inm)
11538f002c6cSBruce M Simpson {
11548f002c6cSBruce M Simpson 	struct ip6_msource	*ims;
11558f002c6cSBruce M Simpson 
11568f002c6cSBruce M Simpson 	CTR2(KTR_MLD, "%s: commit inm %p", __func__, inm);
11578f002c6cSBruce M Simpson 	CTR1(KTR_MLD, "%s: pre commit:", __func__);
11588f002c6cSBruce M Simpson 	in6m_print(inm);
11598f002c6cSBruce M Simpson 
11608f002c6cSBruce M Simpson 	RB_FOREACH(ims, ip6_msource_tree, &inm->in6m_srcs) {
11618f002c6cSBruce M Simpson 		ims->im6s_st[0] = ims->im6s_st[1];
11628f002c6cSBruce M Simpson 	}
11638f002c6cSBruce M Simpson 	inm->in6m_st[0] = inm->in6m_st[1];
11648f002c6cSBruce M Simpson }
11658f002c6cSBruce M Simpson 
11668f002c6cSBruce M Simpson /*
11678f002c6cSBruce M Simpson  * Reap unreferenced nodes from an in6_multi's filter set.
11688f002c6cSBruce M Simpson  */
11698f002c6cSBruce M Simpson static void
in6m_reap(struct in6_multi * inm)11708f002c6cSBruce M Simpson in6m_reap(struct in6_multi *inm)
11718f002c6cSBruce M Simpson {
11728f002c6cSBruce M Simpson 	struct ip6_msource	*ims, *tims;
11738f002c6cSBruce M Simpson 
11748f002c6cSBruce M Simpson 	RB_FOREACH_SAFE(ims, ip6_msource_tree, &inm->in6m_srcs, tims) {
11758f002c6cSBruce M Simpson 		if (ims->im6s_st[0].ex > 0 || ims->im6s_st[0].in > 0 ||
11768f002c6cSBruce M Simpson 		    ims->im6s_st[1].ex > 0 || ims->im6s_st[1].in > 0 ||
11778f002c6cSBruce M Simpson 		    ims->im6s_stp != 0)
11788f002c6cSBruce M Simpson 			continue;
11798f002c6cSBruce M Simpson 		CTR2(KTR_MLD, "%s: free ims %p", __func__, ims);
11808f002c6cSBruce M Simpson 		RB_REMOVE(ip6_msource_tree, &inm->in6m_srcs, ims);
11818f002c6cSBruce M Simpson 		free(ims, M_IP6MSOURCE);
11828f002c6cSBruce M Simpson 		inm->in6m_nsrc--;
11838f002c6cSBruce M Simpson 	}
11848f002c6cSBruce M Simpson }
11858f002c6cSBruce M Simpson 
11868f002c6cSBruce M Simpson /*
11878f002c6cSBruce M Simpson  * Purge all source nodes from an in6_multi's filter set.
11888f002c6cSBruce M Simpson  */
11898f002c6cSBruce M Simpson static void
in6m_purge(struct in6_multi * inm)11908f002c6cSBruce M Simpson in6m_purge(struct in6_multi *inm)
11918f002c6cSBruce M Simpson {
11928f002c6cSBruce M Simpson 	struct ip6_msource	*ims, *tims;
11938f002c6cSBruce M Simpson 
11948f002c6cSBruce M Simpson 	RB_FOREACH_SAFE(ims, ip6_msource_tree, &inm->in6m_srcs, tims) {
11958f002c6cSBruce M Simpson 		CTR2(KTR_MLD, "%s: free ims %p", __func__, ims);
11968f002c6cSBruce M Simpson 		RB_REMOVE(ip6_msource_tree, &inm->in6m_srcs, ims);
11978f002c6cSBruce M Simpson 		free(ims, M_IP6MSOURCE);
11988f002c6cSBruce M Simpson 		inm->in6m_nsrc--;
11998f002c6cSBruce M Simpson 	}
12003c268b3aSAndrey V. Elsukov 	/* Free state-change requests that might be queued. */
1201a99c84d4SGleb Smirnoff 	mbufq_drain(&inm->in6m_scq);
12028f002c6cSBruce M Simpson }
12038f002c6cSBruce M Simpson 
12048f002c6cSBruce M Simpson /*
12058f002c6cSBruce M Simpson  * Join a multicast address w/o sources.
12068f002c6cSBruce M Simpson  * KAME compatibility entry point.
12078f002c6cSBruce M Simpson  *
12088f002c6cSBruce M Simpson  * SMPng: Assume no mc locks held by caller.
12098f002c6cSBruce M Simpson  */
12108f002c6cSBruce M Simpson int
in6_joingroup(struct ifnet * ifp,const struct in6_addr * mcaddr,struct in6_mfilter * imf,struct in6_multi ** pinm,const int delay)1211f3e1324bSStephen Hurd in6_joingroup(struct ifnet *ifp, const struct in6_addr *mcaddr,
12128f002c6cSBruce M Simpson     /*const*/ struct in6_mfilter *imf, struct in6_multi **pinm,
12138f002c6cSBruce M Simpson     const int delay)
12148f002c6cSBruce M Simpson {
12158f002c6cSBruce M Simpson 	int error;
12168f002c6cSBruce M Simpson 
12178f002c6cSBruce M Simpson 	IN6_MULTI_LOCK();
1218f3e1324bSStephen Hurd 	error = in6_joingroup_locked(ifp, mcaddr, NULL, pinm, delay);
12198f002c6cSBruce M Simpson 	IN6_MULTI_UNLOCK();
12208f002c6cSBruce M Simpson 	return (error);
12218f002c6cSBruce M Simpson }
12228f002c6cSBruce M Simpson 
12238f002c6cSBruce M Simpson /*
12248f002c6cSBruce M Simpson  * Join a multicast group; real entry point.
12258f002c6cSBruce M Simpson  *
12268f002c6cSBruce M Simpson  * Only preserves atomicity at inm level.
12278f002c6cSBruce M Simpson  * NOTE: imf argument cannot be const due to sys/tree.h limitations.
12288f002c6cSBruce M Simpson  *
12298f002c6cSBruce M Simpson  * If the MLD downcall fails, the group is not joined, and an error
12308f002c6cSBruce M Simpson  * code is returned.
12318f002c6cSBruce M Simpson  */
1232e1891232SBjoern A. Zeeb static int
in6_joingroup_locked(struct ifnet * ifp,const struct in6_addr * mcaddr,struct in6_mfilter * imf,struct in6_multi ** pinm,const int delay)1233f3e1324bSStephen Hurd in6_joingroup_locked(struct ifnet *ifp, const struct in6_addr *mcaddr,
12348f002c6cSBruce M Simpson     /*const*/ struct in6_mfilter *imf, struct in6_multi **pinm,
12358f002c6cSBruce M Simpson     const int delay)
12368f002c6cSBruce M Simpson {
12372cd6ad76SHans Petter Selasky 	struct in6_multi_head    inmh;
12388f002c6cSBruce M Simpson 	struct in6_mfilter	 timf;
12398f002c6cSBruce M Simpson 	struct in6_multi	*inm;
1240f3e1324bSStephen Hurd 	struct ifmultiaddr *ifma;
12418f002c6cSBruce M Simpson 	int			 error;
12428f002c6cSBruce M Simpson #ifdef KTR
12438f002c6cSBruce M Simpson 	char			 ip6tbuf[INET6_ADDRSTRLEN];
12448f002c6cSBruce M Simpson #endif
12458f002c6cSBruce M Simpson 
124629dc7bc6SBruce M Simpson 	/*
124729dc7bc6SBruce M Simpson 	 * Sanity: Check scope zone ID was set for ifp, if and
124829dc7bc6SBruce M Simpson 	 * only if group is scoped to an interface.
124929dc7bc6SBruce M Simpson 	 */
125029dc7bc6SBruce M Simpson 	KASSERT(IN6_IS_ADDR_MULTICAST(mcaddr),
125129dc7bc6SBruce M Simpson 	    ("%s: not a multicast address", __func__));
125229dc7bc6SBruce M Simpson 	if (IN6_IS_ADDR_MC_LINKLOCAL(mcaddr) ||
125329dc7bc6SBruce M Simpson 	    IN6_IS_ADDR_MC_INTFACELOCAL(mcaddr)) {
125429dc7bc6SBruce M Simpson 		KASSERT(mcaddr->s6_addr16[1] != 0,
125529dc7bc6SBruce M Simpson 		    ("%s: scope zone ID not set", __func__));
125629dc7bc6SBruce M Simpson 	}
125729dc7bc6SBruce M Simpson 
12588f002c6cSBruce M Simpson 	IN6_MULTI_LOCK_ASSERT();
1259f3e1324bSStephen Hurd 	IN6_MULTI_LIST_UNLOCK_ASSERT();
12608f002c6cSBruce M Simpson 
12618f002c6cSBruce M Simpson 	CTR4(KTR_MLD, "%s: join %s on %p(%s))", __func__,
1262e74966f6SAndrey V. Elsukov 	    ip6_sprintf(ip6tbuf, mcaddr), ifp, if_name(ifp));
12638f002c6cSBruce M Simpson 
12648f002c6cSBruce M Simpson 	error = 0;
12658f002c6cSBruce M Simpson 	inm = NULL;
12668f002c6cSBruce M Simpson 
12678f002c6cSBruce M Simpson 	/*
12688f002c6cSBruce M Simpson 	 * If no imf was specified (i.e. kernel consumer),
12698f002c6cSBruce M Simpson 	 * fake one up and assume it is an ASM join.
12708f002c6cSBruce M Simpson 	 */
12718f002c6cSBruce M Simpson 	if (imf == NULL) {
12728f002c6cSBruce M Simpson 		im6f_init(&timf, MCAST_UNDEFINED, MCAST_EXCLUDE);
12738f002c6cSBruce M Simpson 		imf = &timf;
12748f002c6cSBruce M Simpson 	}
1275f3e1324bSStephen Hurd 	error = in6_getmulti(ifp, mcaddr, &inm);
12768f002c6cSBruce M Simpson 	if (error) {
1277f3e1324bSStephen Hurd 		CTR1(KTR_MLD, "%s: in6_getmulti() failure", __func__);
12788f002c6cSBruce M Simpson 		return (error);
12798f002c6cSBruce M Simpson 	}
12808f002c6cSBruce M Simpson 
1281f3e1324bSStephen Hurd 	IN6_MULTI_LIST_LOCK();
12828f002c6cSBruce M Simpson 	CTR1(KTR_MLD, "%s: merge inm state", __func__);
12838f002c6cSBruce M Simpson 	error = in6m_merge(inm, imf);
12848f002c6cSBruce M Simpson 	if (error) {
12858f002c6cSBruce M Simpson 		CTR1(KTR_MLD, "%s: failed to merge inm state", __func__);
12868f002c6cSBruce M Simpson 		goto out_in6m_release;
12878f002c6cSBruce M Simpson 	}
12888f002c6cSBruce M Simpson 
12898f002c6cSBruce M Simpson 	CTR1(KTR_MLD, "%s: doing mld downcall", __func__);
12908f002c6cSBruce M Simpson 	error = mld_change_state(inm, delay);
12918f002c6cSBruce M Simpson 	if (error) {
12928f002c6cSBruce M Simpson 		CTR1(KTR_MLD, "%s: failed to update source", __func__);
12938f002c6cSBruce M Simpson 		goto out_in6m_release;
12948f002c6cSBruce M Simpson 	}
12958f002c6cSBruce M Simpson 
12968f002c6cSBruce M Simpson out_in6m_release:
12972cd6ad76SHans Petter Selasky 	SLIST_INIT(&inmh);
12988f002c6cSBruce M Simpson 	if (error) {
1299a68cc388SGleb Smirnoff 		struct epoch_tracker et;
1300a68cc388SGleb Smirnoff 
13018f002c6cSBruce M Simpson 		CTR2(KTR_MLD, "%s: dropping ref on %p", __func__, inm);
13026afe56f9SRyan Libby 		IF_ADDR_WLOCK(ifp);
1303a68cc388SGleb Smirnoff 		NET_EPOCH_ENTER(et);
1304d7c5a620SMatt Macy 		CK_STAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) {
1305f3e1324bSStephen Hurd 			if (ifma->ifma_protospec == inm) {
1306f3e1324bSStephen Hurd 				ifma->ifma_protospec = NULL;
1307f3e1324bSStephen Hurd 				break;
1308f3e1324bSStephen Hurd 			}
1309f3e1324bSStephen Hurd 		}
13102cd6ad76SHans Petter Selasky 		in6m_disconnect_locked(&inmh, inm);
13112cd6ad76SHans Petter Selasky 		in6m_rele_locked(&inmh, inm);
1312a68cc388SGleb Smirnoff 		NET_EPOCH_EXIT(et);
13136afe56f9SRyan Libby 		IF_ADDR_WUNLOCK(ifp);
13148f002c6cSBruce M Simpson 	} else {
13158f002c6cSBruce M Simpson 		*pinm = inm;
13168f002c6cSBruce M Simpson 	}
1317f3e1324bSStephen Hurd 	IN6_MULTI_LIST_UNLOCK();
13182cd6ad76SHans Petter Selasky 	in6m_release_list_deferred(&inmh);
13198f002c6cSBruce M Simpson 	return (error);
13208f002c6cSBruce M Simpson }
13218f002c6cSBruce M Simpson 
13228f002c6cSBruce M Simpson /*
13238f002c6cSBruce M Simpson  * Leave a multicast group; unlocked entry point.
13248f002c6cSBruce M Simpson  */
13258f002c6cSBruce M Simpson int
in6_leavegroup(struct in6_multi * inm,struct in6_mfilter * imf)1326f3e1324bSStephen Hurd in6_leavegroup(struct in6_multi *inm, /*const*/ struct in6_mfilter *imf)
13278f002c6cSBruce M Simpson {
13288f002c6cSBruce M Simpson 	int error;
13298f002c6cSBruce M Simpson 
13308f002c6cSBruce M Simpson 	IN6_MULTI_LOCK();
1331f3e1324bSStephen Hurd 	error = in6_leavegroup_locked(inm, imf);
13328f002c6cSBruce M Simpson 	IN6_MULTI_UNLOCK();
13338f002c6cSBruce M Simpson 	return (error);
13348f002c6cSBruce M Simpson }
13358f002c6cSBruce M Simpson 
13368f002c6cSBruce M Simpson /*
13378f002c6cSBruce M Simpson  * Leave a multicast group; real entry point.
13388f002c6cSBruce M Simpson  * All source filters will be expunged.
13398f002c6cSBruce M Simpson  *
13408f002c6cSBruce M Simpson  * Only preserves atomicity at inm level.
13418f002c6cSBruce M Simpson  *
13428f002c6cSBruce M Simpson  * Holding the write lock for the INP which contains imf
13438f002c6cSBruce M Simpson  * is highly advisable. We can't assert for it as imf does not
13448f002c6cSBruce M Simpson  * contain a back-pointer to the owning inp.
13458f002c6cSBruce M Simpson  *
13468f002c6cSBruce M Simpson  * Note: This is not the same as in6m_release(*) as this function also
13478f002c6cSBruce M Simpson  * makes a state change downcall into MLD.
13488f002c6cSBruce M Simpson  */
13498f002c6cSBruce M Simpson int
in6_leavegroup_locked(struct in6_multi * inm,struct in6_mfilter * imf)1350f3e1324bSStephen Hurd in6_leavegroup_locked(struct in6_multi *inm, /*const*/ struct in6_mfilter *imf)
13518f002c6cSBruce M Simpson {
13522cd6ad76SHans Petter Selasky 	struct in6_multi_head	 inmh;
13538f002c6cSBruce M Simpson 	struct in6_mfilter	 timf;
1354f3e1324bSStephen Hurd 	struct ifnet *ifp;
13558f002c6cSBruce M Simpson 	int			 error;
13568f002c6cSBruce M Simpson #ifdef KTR
13578f002c6cSBruce M Simpson 	char			 ip6tbuf[INET6_ADDRSTRLEN];
13588f002c6cSBruce M Simpson #endif
13598f002c6cSBruce M Simpson 
13608f002c6cSBruce M Simpson 	error = 0;
13618f002c6cSBruce M Simpson 
13628f002c6cSBruce M Simpson 	IN6_MULTI_LOCK_ASSERT();
13638f002c6cSBruce M Simpson 
13648f002c6cSBruce M Simpson 	CTR5(KTR_MLD, "%s: leave inm %p, %s/%s, imf %p", __func__,
13658f002c6cSBruce M Simpson 	    inm, ip6_sprintf(ip6tbuf, &inm->in6m_addr),
1366e74966f6SAndrey V. Elsukov 	    (in6m_is_ifp_detached(inm) ? "null" : if_name(inm->in6m_ifp)),
13678f002c6cSBruce M Simpson 	    imf);
13688f002c6cSBruce M Simpson 
13698f002c6cSBruce M Simpson 	/*
13708f002c6cSBruce M Simpson 	 * If no imf was specified (i.e. kernel consumer),
13718f002c6cSBruce M Simpson 	 * fake one up and assume it is an ASM join.
13728f002c6cSBruce M Simpson 	 */
13738f002c6cSBruce M Simpson 	if (imf == NULL) {
13748f002c6cSBruce M Simpson 		im6f_init(&timf, MCAST_EXCLUDE, MCAST_UNDEFINED);
13758f002c6cSBruce M Simpson 		imf = &timf;
13768f002c6cSBruce M Simpson 	}
13778f002c6cSBruce M Simpson 
13788f002c6cSBruce M Simpson 	/*
13798f002c6cSBruce M Simpson 	 * Begin state merge transaction at MLD layer.
13808f002c6cSBruce M Simpson 	 *
13818f002c6cSBruce M Simpson 	 * As this particular invocation should not cause any memory
13828f002c6cSBruce M Simpson 	 * to be allocated, and there is no opportunity to roll back
13838f002c6cSBruce M Simpson 	 * the transaction, it MUST NOT fail.
13848f002c6cSBruce M Simpson 	 */
1385f3e1324bSStephen Hurd 
1386f3e1324bSStephen Hurd 	ifp = inm->in6m_ifp;
1387f3e1324bSStephen Hurd 	IN6_MULTI_LIST_LOCK();
13888f002c6cSBruce M Simpson 	CTR1(KTR_MLD, "%s: merge inm state", __func__);
13898f002c6cSBruce M Simpson 	error = in6m_merge(inm, imf);
13908f002c6cSBruce M Simpson 	KASSERT(error == 0, ("%s: failed to merge inm state", __func__));
13918f002c6cSBruce M Simpson 
13928f002c6cSBruce M Simpson 	CTR1(KTR_MLD, "%s: doing mld downcall", __func__);
1393f9be0386SMatt Macy 	error = 0;
1394f9be0386SMatt Macy 	if (ifp)
13958f002c6cSBruce M Simpson 		error = mld_change_state(inm, 0);
13968f002c6cSBruce M Simpson 	if (error)
13978f002c6cSBruce M Simpson 		CTR1(KTR_MLD, "%s: failed mld downcall", __func__);
13988f002c6cSBruce M Simpson 
13998f002c6cSBruce M Simpson 	CTR2(KTR_MLD, "%s: dropping ref on %p", __func__, inm);
1400f3e1324bSStephen Hurd 	if (ifp)
1401b6f6f880SMatt Macy 		IF_ADDR_WLOCK(ifp);
14022cd6ad76SHans Petter Selasky 
14032cd6ad76SHans Petter Selasky 	SLIST_INIT(&inmh);
14042cd6ad76SHans Petter Selasky 	if (inm->in6m_refcount == 1)
14052cd6ad76SHans Petter Selasky 		in6m_disconnect_locked(&inmh, inm);
14062cd6ad76SHans Petter Selasky 	in6m_rele_locked(&inmh, inm);
1407f3e1324bSStephen Hurd 	if (ifp)
1408b6f6f880SMatt Macy 		IF_ADDR_WUNLOCK(ifp);
1409f3e1324bSStephen Hurd 	IN6_MULTI_LIST_UNLOCK();
14102cd6ad76SHans Petter Selasky 	in6m_release_list_deferred(&inmh);
14118f002c6cSBruce M Simpson 	return (error);
14128f002c6cSBruce M Simpson }
14138f002c6cSBruce M Simpson 
14148f002c6cSBruce M Simpson /*
14158f002c6cSBruce M Simpson  * Block or unblock an ASM multicast source on an inpcb.
14168f002c6cSBruce M Simpson  * This implements the delta-based API described in RFC 3678.
14178f002c6cSBruce M Simpson  *
14188f002c6cSBruce M Simpson  * The delta-based API applies only to exclusive-mode memberships.
14198f002c6cSBruce M Simpson  * An MLD downcall will be performed.
14208f002c6cSBruce M Simpson  *
14218f002c6cSBruce M Simpson  * Return 0 if successful, otherwise return an appropriate error code.
14228f002c6cSBruce M Simpson  */
14238f002c6cSBruce M Simpson static int
in6p_block_unblock_source(struct inpcb * inp,struct sockopt * sopt)14248f002c6cSBruce M Simpson in6p_block_unblock_source(struct inpcb *inp, struct sockopt *sopt)
14258f002c6cSBruce M Simpson {
14268f002c6cSBruce M Simpson 	struct group_source_req		 gsr;
1427d74b7baeSGleb Smirnoff 	struct epoch_tracker		 et;
14288f002c6cSBruce M Simpson 	sockunion_t			*gsa, *ssa;
14298f002c6cSBruce M Simpson 	struct ifnet			*ifp;
14308f002c6cSBruce M Simpson 	struct in6_mfilter		*imf;
14318f002c6cSBruce M Simpson 	struct ip6_moptions		*imo;
14328f002c6cSBruce M Simpson 	struct in6_msource		*ims;
14338f002c6cSBruce M Simpson 	struct in6_multi			*inm;
14348f002c6cSBruce M Simpson 	uint16_t			 fmode;
14358f002c6cSBruce M Simpson 	int				 error, doblock;
14368f002c6cSBruce M Simpson #ifdef KTR
14378f002c6cSBruce M Simpson 	char				 ip6tbuf[INET6_ADDRSTRLEN];
14388f002c6cSBruce M Simpson #endif
14398f002c6cSBruce M Simpson 
14408f002c6cSBruce M Simpson 	ifp = NULL;
14418f002c6cSBruce M Simpson 	error = 0;
14428f002c6cSBruce M Simpson 	doblock = 0;
14438f002c6cSBruce M Simpson 
14448f002c6cSBruce M Simpson 	memset(&gsr, 0, sizeof(struct group_source_req));
14458f002c6cSBruce M Simpson 	gsa = (sockunion_t *)&gsr.gsr_group;
14468f002c6cSBruce M Simpson 	ssa = (sockunion_t *)&gsr.gsr_source;
14478f002c6cSBruce M Simpson 
14488f002c6cSBruce M Simpson 	switch (sopt->sopt_name) {
14498f002c6cSBruce M Simpson 	case MCAST_BLOCK_SOURCE:
14508f002c6cSBruce M Simpson 	case MCAST_UNBLOCK_SOURCE:
14518f002c6cSBruce M Simpson 		error = sooptcopyin(sopt, &gsr,
14528f002c6cSBruce M Simpson 		    sizeof(struct group_source_req),
14538f002c6cSBruce M Simpson 		    sizeof(struct group_source_req));
14548f002c6cSBruce M Simpson 		if (error)
14558f002c6cSBruce M Simpson 			return (error);
14568f002c6cSBruce M Simpson 
14578f002c6cSBruce M Simpson 		if (gsa->sin6.sin6_family != AF_INET6 ||
14588f002c6cSBruce M Simpson 		    gsa->sin6.sin6_len != sizeof(struct sockaddr_in6))
14598f002c6cSBruce M Simpson 			return (EINVAL);
14608f002c6cSBruce M Simpson 
14618f002c6cSBruce M Simpson 		if (ssa->sin6.sin6_family != AF_INET6 ||
14628f002c6cSBruce M Simpson 		    ssa->sin6.sin6_len != sizeof(struct sockaddr_in6))
14638f002c6cSBruce M Simpson 			return (EINVAL);
14648f002c6cSBruce M Simpson 
1465d74b7baeSGleb Smirnoff 		/*
1466d74b7baeSGleb Smirnoff 		 * XXXGL: this function should use ifnet_byindex_ref, or
1467d74b7baeSGleb Smirnoff 		 * expand the epoch section all the way to where we put
1468d74b7baeSGleb Smirnoff 		 * the reference.
1469d74b7baeSGleb Smirnoff 		 */
1470d74b7baeSGleb Smirnoff 		NET_EPOCH_ENTER(et);
14718f002c6cSBruce M Simpson 		ifp = ifnet_byindex(gsr.gsr_interface);
1472d74b7baeSGleb Smirnoff 		NET_EPOCH_EXIT(et);
1473d74b7baeSGleb Smirnoff 		if (ifp == NULL)
1474d74b7baeSGleb Smirnoff 			return (EADDRNOTAVAIL);
14758f002c6cSBruce M Simpson 
14768f002c6cSBruce M Simpson 		if (sopt->sopt_name == MCAST_BLOCK_SOURCE)
14778f002c6cSBruce M Simpson 			doblock = 1;
14788f002c6cSBruce M Simpson 		break;
14798f002c6cSBruce M Simpson 
14808f002c6cSBruce M Simpson 	default:
14818f002c6cSBruce M Simpson 		CTR2(KTR_MLD, "%s: unknown sopt_name %d",
14828f002c6cSBruce M Simpson 		    __func__, sopt->sopt_name);
14838f002c6cSBruce M Simpson 		return (EOPNOTSUPP);
14848f002c6cSBruce M Simpson 		break;
14858f002c6cSBruce M Simpson 	}
14868f002c6cSBruce M Simpson 
14878f002c6cSBruce M Simpson 	if (!IN6_IS_ADDR_MULTICAST(&gsa->sin6.sin6_addr))
14888f002c6cSBruce M Simpson 		return (EINVAL);
14898f002c6cSBruce M Simpson 
149029dc7bc6SBruce M Simpson 	(void)in6_setscope(&gsa->sin6.sin6_addr, ifp, NULL);
149129dc7bc6SBruce M Simpson 
14928f002c6cSBruce M Simpson 	/*
14938f002c6cSBruce M Simpson 	 * Check if we are actually a member of this group.
14948f002c6cSBruce M Simpson 	 */
14958f002c6cSBruce M Simpson 	imo = in6p_findmoptions(inp);
149659854ecfSHans Petter Selasky 	imf = im6o_match_group(imo, ifp, &gsa->sa);
149759854ecfSHans Petter Selasky 	if (imf == NULL) {
14988f002c6cSBruce M Simpson 		error = EADDRNOTAVAIL;
14998f002c6cSBruce M Simpson 		goto out_in6p_locked;
15008f002c6cSBruce M Simpson 	}
150159854ecfSHans Petter Selasky 	inm = imf->im6f_in6m;
15028f002c6cSBruce M Simpson 
15038f002c6cSBruce M Simpson 	/*
15048f002c6cSBruce M Simpson 	 * Attempting to use the delta-based API on an
15058f002c6cSBruce M Simpson 	 * non exclusive-mode membership is an error.
15068f002c6cSBruce M Simpson 	 */
15078f002c6cSBruce M Simpson 	fmode = imf->im6f_st[0];
15088f002c6cSBruce M Simpson 	if (fmode != MCAST_EXCLUDE) {
15098f002c6cSBruce M Simpson 		error = EINVAL;
15108f002c6cSBruce M Simpson 		goto out_in6p_locked;
15118f002c6cSBruce M Simpson 	}
15128f002c6cSBruce M Simpson 
15138f002c6cSBruce M Simpson 	/*
15148f002c6cSBruce M Simpson 	 * Deal with error cases up-front:
15158f002c6cSBruce M Simpson 	 *  Asked to block, but already blocked; or
15168f002c6cSBruce M Simpson 	 *  Asked to unblock, but nothing to unblock.
15178f002c6cSBruce M Simpson 	 * If adding a new block entry, allocate it.
15188f002c6cSBruce M Simpson 	 */
151959854ecfSHans Petter Selasky 	ims = im6o_match_source(imf, &ssa->sa);
15208f002c6cSBruce M Simpson 	if ((ims != NULL && doblock) || (ims == NULL && !doblock)) {
15218f002c6cSBruce M Simpson 		CTR3(KTR_MLD, "%s: source %s %spresent", __func__,
15228f002c6cSBruce M Simpson 		    ip6_sprintf(ip6tbuf, &ssa->sin6.sin6_addr),
15238f002c6cSBruce M Simpson 		    doblock ? "" : "not ");
15248f002c6cSBruce M Simpson 		error = EADDRNOTAVAIL;
15258f002c6cSBruce M Simpson 		goto out_in6p_locked;
15268f002c6cSBruce M Simpson 	}
15278f002c6cSBruce M Simpson 
15288f002c6cSBruce M Simpson 	INP_WLOCK_ASSERT(inp);
15298f002c6cSBruce M Simpson 
15308f002c6cSBruce M Simpson 	/*
15318f002c6cSBruce M Simpson 	 * Begin state merge transaction at socket layer.
15328f002c6cSBruce M Simpson 	 */
15338f002c6cSBruce M Simpson 	if (doblock) {
15348f002c6cSBruce M Simpson 		CTR2(KTR_MLD, "%s: %s source", __func__, "block");
15358f002c6cSBruce M Simpson 		ims = im6f_graft(imf, fmode, &ssa->sin6);
15368f002c6cSBruce M Simpson 		if (ims == NULL)
15378f002c6cSBruce M Simpson 			error = ENOMEM;
15388f002c6cSBruce M Simpson 	} else {
15398f002c6cSBruce M Simpson 		CTR2(KTR_MLD, "%s: %s source", __func__, "allow");
15408f002c6cSBruce M Simpson 		error = im6f_prune(imf, &ssa->sin6);
15418f002c6cSBruce M Simpson 	}
15428f002c6cSBruce M Simpson 
15438f002c6cSBruce M Simpson 	if (error) {
15448f002c6cSBruce M Simpson 		CTR1(KTR_MLD, "%s: merge imf state failed", __func__);
15458f002c6cSBruce M Simpson 		goto out_im6f_rollback;
15468f002c6cSBruce M Simpson 	}
15478f002c6cSBruce M Simpson 
15488f002c6cSBruce M Simpson 	/*
15498f002c6cSBruce M Simpson 	 * Begin state merge transaction at MLD layer.
15508f002c6cSBruce M Simpson 	 */
1551f3e1324bSStephen Hurd 	IN6_MULTI_LIST_LOCK();
15528f002c6cSBruce M Simpson 	CTR1(KTR_MLD, "%s: merge inm state", __func__);
15538f002c6cSBruce M Simpson 	error = in6m_merge(inm, imf);
15544fd91336SAndrey V. Elsukov 	if (error)
15558f002c6cSBruce M Simpson 		CTR1(KTR_MLD, "%s: failed to merge inm state", __func__);
15564fd91336SAndrey V. Elsukov 	else {
15578f002c6cSBruce M Simpson 		CTR1(KTR_MLD, "%s: doing mld downcall", __func__);
15588f002c6cSBruce M Simpson 		error = mld_change_state(inm, 0);
15598f002c6cSBruce M Simpson 		if (error)
15608f002c6cSBruce M Simpson 			CTR1(KTR_MLD, "%s: failed mld downcall", __func__);
15614fd91336SAndrey V. Elsukov 	}
15628f002c6cSBruce M Simpson 
1563f3e1324bSStephen Hurd 	IN6_MULTI_LIST_UNLOCK();
15648f002c6cSBruce M Simpson 
15658f002c6cSBruce M Simpson out_im6f_rollback:
15668f002c6cSBruce M Simpson 	if (error)
15678f002c6cSBruce M Simpson 		im6f_rollback(imf);
15688f002c6cSBruce M Simpson 	else
15698f002c6cSBruce M Simpson 		im6f_commit(imf);
15708f002c6cSBruce M Simpson 
15718f002c6cSBruce M Simpson 	im6f_reap(imf);
15728f002c6cSBruce M Simpson 
15738f002c6cSBruce M Simpson out_in6p_locked:
15748f002c6cSBruce M Simpson 	INP_WUNLOCK(inp);
15758f002c6cSBruce M Simpson 	return (error);
15768f002c6cSBruce M Simpson }
15778f002c6cSBruce M Simpson 
15788f002c6cSBruce M Simpson /*
15798f002c6cSBruce M Simpson  * Given an inpcb, return its multicast options structure pointer.  Accepts
15808f002c6cSBruce M Simpson  * an unlocked inpcb pointer, but will return it locked.  May sleep.
15818f002c6cSBruce M Simpson  *
15828f002c6cSBruce M Simpson  * SMPng: NOTE: Returns with the INP write lock held.
15838f002c6cSBruce M Simpson  */
15848f002c6cSBruce M Simpson static struct ip6_moptions *
in6p_findmoptions(struct inpcb * inp)15858f002c6cSBruce M Simpson in6p_findmoptions(struct inpcb *inp)
15868f002c6cSBruce M Simpson {
15878f002c6cSBruce M Simpson 	struct ip6_moptions	 *imo;
15888f002c6cSBruce M Simpson 
15898f002c6cSBruce M Simpson 	INP_WLOCK(inp);
15908f002c6cSBruce M Simpson 	if (inp->in6p_moptions != NULL)
15918f002c6cSBruce M Simpson 		return (inp->in6p_moptions);
15928f002c6cSBruce M Simpson 
15938f002c6cSBruce M Simpson 	INP_WUNLOCK(inp);
15948f002c6cSBruce M Simpson 
15958f002c6cSBruce M Simpson 	imo = malloc(sizeof(*imo), M_IP6MOPTS, M_WAITOK);
15968f002c6cSBruce M Simpson 
15978f002c6cSBruce M Simpson 	imo->im6o_multicast_ifp = NULL;
15988f002c6cSBruce M Simpson 	imo->im6o_multicast_hlim = V_ip6_defmcasthlim;
15998f002c6cSBruce M Simpson 	imo->im6o_multicast_loop = in6_mcast_loop;
160059854ecfSHans Petter Selasky 	STAILQ_INIT(&imo->im6o_head);
16018f002c6cSBruce M Simpson 
16028f002c6cSBruce M Simpson 	INP_WLOCK(inp);
16038f002c6cSBruce M Simpson 	if (inp->in6p_moptions != NULL) {
16048f002c6cSBruce M Simpson 		free(imo, M_IP6MOPTS);
16058f002c6cSBruce M Simpson 		return (inp->in6p_moptions);
16068f002c6cSBruce M Simpson 	}
16078f002c6cSBruce M Simpson 	inp->in6p_moptions = imo;
16088f002c6cSBruce M Simpson 	return (imo);
16098f002c6cSBruce M Simpson }
16108f002c6cSBruce M Simpson 
16118f002c6cSBruce M Simpson /*
16128f002c6cSBruce M Simpson  * Discard the IPv6 multicast options (and source filters).
16138f002c6cSBruce M Simpson  *
16148f002c6cSBruce M Simpson  * SMPng: NOTE: assumes INP write lock is held.
1615cb6bb230SMatt Macy  *
1616cb6bb230SMatt Macy  * XXX can all be safely deferred to epoch_call
1617cb6bb230SMatt Macy  *
16188f002c6cSBruce M Simpson  */
1619cb6bb230SMatt Macy 
1620cb6bb230SMatt Macy static void
inp_gcmoptions(struct ip6_moptions * imo)1621f9be0386SMatt Macy inp_gcmoptions(struct ip6_moptions *imo)
16228f002c6cSBruce M Simpson {
16238f002c6cSBruce M Simpson 	struct in6_mfilter *imf;
1624b15253bbSMatt Macy 	struct in6_multi *inm;
1625b15253bbSMatt Macy 	struct ifnet *ifp;
16268f002c6cSBruce M Simpson 
162759854ecfSHans Petter Selasky 	while ((imf = ip6_mfilter_first(&imo->im6o_head)) != NULL) {
162859854ecfSHans Petter Selasky                 ip6_mfilter_remove(&imo->im6o_head, imf);
162959854ecfSHans Petter Selasky 
16308f002c6cSBruce M Simpson                 im6f_leave(imf);
163159854ecfSHans Petter Selasky                 if ((inm = imf->im6f_in6m) != NULL) {
163259854ecfSHans Petter Selasky                         if ((ifp = inm->in6m_ifp) != NULL) {
163315f8acc5SEd Maste                                 CURVNET_SET(ifp->if_vnet);
1634b15253bbSMatt Macy                                 (void)in6_leavegroup(inm, imf);
163515f8acc5SEd Maste                                 CURVNET_RESTORE();
16363b9b6b17SEd Maste                         } else {
16373b9b6b17SEd Maste                                 (void)in6_leavegroup(inm, imf);
16383b9b6b17SEd Maste                         }
16398f002c6cSBruce M Simpson                 }
164059854ecfSHans Petter Selasky                 ip6_mfilter_free(imf);
164159854ecfSHans Petter Selasky         }
16428f002c6cSBruce M Simpson         free(imo, M_IP6MOPTS);
1643cb6bb230SMatt Macy }
1644cb6bb230SMatt Macy 
1645cb6bb230SMatt Macy void
ip6_freemoptions(struct ip6_moptions * imo)1646cb6bb230SMatt Macy ip6_freemoptions(struct ip6_moptions *imo)
1647cb6bb230SMatt Macy {
1648cb6bb230SMatt Macy 	if (imo == NULL)
1649cb6bb230SMatt Macy 		return;
1650f9be0386SMatt Macy 	inp_gcmoptions(imo);
16518f002c6cSBruce M Simpson }
16528f002c6cSBruce M Simpson 
16538f002c6cSBruce M Simpson /*
16548f002c6cSBruce M Simpson  * Atomically get source filters on a socket for an IPv6 multicast group.
16558f002c6cSBruce M Simpson  * Called with INP lock held; returns with lock released.
16568f002c6cSBruce M Simpson  */
16578f002c6cSBruce M Simpson static int
in6p_get_source_filters(struct inpcb * inp,struct sockopt * sopt)16588f002c6cSBruce M Simpson in6p_get_source_filters(struct inpcb *inp, struct sockopt *sopt)
16598f002c6cSBruce M Simpson {
1660d74b7baeSGleb Smirnoff 	struct epoch_tracker	 et;
16618f002c6cSBruce M Simpson 	struct __msfilterreq	 msfr;
16628f002c6cSBruce M Simpson 	sockunion_t		*gsa;
16638f002c6cSBruce M Simpson 	struct ifnet		*ifp;
16648f002c6cSBruce M Simpson 	struct ip6_moptions	*imo;
16658f002c6cSBruce M Simpson 	struct in6_mfilter	*imf;
16668f002c6cSBruce M Simpson 	struct ip6_msource	*ims;
16678f002c6cSBruce M Simpson 	struct in6_msource	*lims;
16688f002c6cSBruce M Simpson 	struct sockaddr_in6	*psin;
16698f002c6cSBruce M Simpson 	struct sockaddr_storage	*ptss;
16708f002c6cSBruce M Simpson 	struct sockaddr_storage	*tss;
16718f002c6cSBruce M Simpson 	int			 error;
167259854ecfSHans Petter Selasky 	size_t			 nsrcs, ncsrcs;
16738f002c6cSBruce M Simpson 
16748f002c6cSBruce M Simpson 	INP_WLOCK_ASSERT(inp);
16758f002c6cSBruce M Simpson 
16768f002c6cSBruce M Simpson 	imo = inp->in6p_moptions;
16778f002c6cSBruce M Simpson 	KASSERT(imo != NULL, ("%s: null ip6_moptions", __func__));
16788f002c6cSBruce M Simpson 
16798f002c6cSBruce M Simpson 	INP_WUNLOCK(inp);
16808f002c6cSBruce M Simpson 
16818f002c6cSBruce M Simpson 	error = sooptcopyin(sopt, &msfr, sizeof(struct __msfilterreq),
16828f002c6cSBruce M Simpson 	    sizeof(struct __msfilterreq));
16838f002c6cSBruce M Simpson 	if (error)
16848f002c6cSBruce M Simpson 		return (error);
16858f002c6cSBruce M Simpson 
168629dc7bc6SBruce M Simpson 	if (msfr.msfr_group.ss_family != AF_INET6 ||
168729dc7bc6SBruce M Simpson 	    msfr.msfr_group.ss_len != sizeof(struct sockaddr_in6))
16888f002c6cSBruce M Simpson 		return (EINVAL);
16898f002c6cSBruce M Simpson 
169029dc7bc6SBruce M Simpson 	gsa = (sockunion_t *)&msfr.msfr_group;
169129dc7bc6SBruce M Simpson 	if (!IN6_IS_ADDR_MULTICAST(&gsa->sin6.sin6_addr))
169229dc7bc6SBruce M Simpson 		return (EINVAL);
169329dc7bc6SBruce M Simpson 
1694d74b7baeSGleb Smirnoff 	/*
1695d74b7baeSGleb Smirnoff 	 * XXXGL: this function should use ifnet_byindex_ref, or expand the
1696d74b7baeSGleb Smirnoff 	 * epoch section all the way to where the interface is referenced.
1697d74b7baeSGleb Smirnoff 	 */
1698d74b7baeSGleb Smirnoff 	NET_EPOCH_ENTER(et);
16998f002c6cSBruce M Simpson 	ifp = ifnet_byindex(msfr.msfr_ifindex);
1700d74b7baeSGleb Smirnoff 	NET_EPOCH_EXIT(et);
17018f002c6cSBruce M Simpson 	if (ifp == NULL)
170229dc7bc6SBruce M Simpson 		return (EADDRNOTAVAIL);
170329dc7bc6SBruce M Simpson 	(void)in6_setscope(&gsa->sin6.sin6_addr, ifp, NULL);
17048f002c6cSBruce M Simpson 
17058f002c6cSBruce M Simpson 	INP_WLOCK(inp);
17068f002c6cSBruce M Simpson 
17078f002c6cSBruce M Simpson 	/*
17088f002c6cSBruce M Simpson 	 * Lookup group on the socket.
17098f002c6cSBruce M Simpson 	 */
171059854ecfSHans Petter Selasky 	imf = im6o_match_group(imo, ifp, &gsa->sa);
171159854ecfSHans Petter Selasky 	if (imf == NULL) {
17128f002c6cSBruce M Simpson 		INP_WUNLOCK(inp);
17138f002c6cSBruce M Simpson 		return (EADDRNOTAVAIL);
17148f002c6cSBruce M Simpson 	}
17158f002c6cSBruce M Simpson 
17168f002c6cSBruce M Simpson 	/*
17178f002c6cSBruce M Simpson 	 * Ignore memberships which are in limbo.
17188f002c6cSBruce M Simpson 	 */
17198f002c6cSBruce M Simpson 	if (imf->im6f_st[1] == MCAST_UNDEFINED) {
17208f002c6cSBruce M Simpson 		INP_WUNLOCK(inp);
17218f002c6cSBruce M Simpson 		return (EAGAIN);
17228f002c6cSBruce M Simpson 	}
17238f002c6cSBruce M Simpson 	msfr.msfr_fmode = imf->im6f_st[1];
17248f002c6cSBruce M Simpson 
17258f002c6cSBruce M Simpson 	/*
17268f002c6cSBruce M Simpson 	 * If the user specified a buffer, copy out the source filter
17278f002c6cSBruce M Simpson 	 * entries to userland gracefully.
17288f002c6cSBruce M Simpson 	 * We only copy out the number of entries which userland
17298f002c6cSBruce M Simpson 	 * has asked for, but we always tell userland how big the
17308f002c6cSBruce M Simpson 	 * buffer really needs to be.
17318f002c6cSBruce M Simpson 	 */
1732acde2476SXin LI 	if (msfr.msfr_nsrcs > in6_mcast_maxsocksrc)
1733acde2476SXin LI 		msfr.msfr_nsrcs = in6_mcast_maxsocksrc;
17348f002c6cSBruce M Simpson 	tss = NULL;
17358f002c6cSBruce M Simpson 	if (msfr.msfr_srcs != NULL && msfr.msfr_nsrcs > 0) {
17368f002c6cSBruce M Simpson 		tss = malloc(sizeof(struct sockaddr_storage) * msfr.msfr_nsrcs,
17378f002c6cSBruce M Simpson 		    M_TEMP, M_NOWAIT | M_ZERO);
17388f002c6cSBruce M Simpson 		if (tss == NULL) {
17398f002c6cSBruce M Simpson 			INP_WUNLOCK(inp);
17408f002c6cSBruce M Simpson 			return (ENOBUFS);
17418f002c6cSBruce M Simpson 		}
17428f002c6cSBruce M Simpson 	}
17438f002c6cSBruce M Simpson 
17448f002c6cSBruce M Simpson 	/*
17458f002c6cSBruce M Simpson 	 * Count number of sources in-mode at t0.
17468f002c6cSBruce M Simpson 	 * If buffer space exists and remains, copy out source entries.
17478f002c6cSBruce M Simpson 	 */
17488f002c6cSBruce M Simpson 	nsrcs = msfr.msfr_nsrcs;
17498f002c6cSBruce M Simpson 	ncsrcs = 0;
17508f002c6cSBruce M Simpson 	ptss = tss;
17518f002c6cSBruce M Simpson 	RB_FOREACH(ims, ip6_msource_tree, &imf->im6f_sources) {
17528f002c6cSBruce M Simpson 		lims = (struct in6_msource *)ims;
17538f002c6cSBruce M Simpson 		if (lims->im6sl_st[0] == MCAST_UNDEFINED ||
17548f002c6cSBruce M Simpson 		    lims->im6sl_st[0] != imf->im6f_st[0])
17558f002c6cSBruce M Simpson 			continue;
17568f002c6cSBruce M Simpson 		++ncsrcs;
17578f002c6cSBruce M Simpson 		if (tss != NULL && nsrcs > 0) {
17588f002c6cSBruce M Simpson 			psin = (struct sockaddr_in6 *)ptss;
17598f002c6cSBruce M Simpson 			psin->sin6_family = AF_INET6;
17608f002c6cSBruce M Simpson 			psin->sin6_len = sizeof(struct sockaddr_in6);
17618f002c6cSBruce M Simpson 			psin->sin6_addr = lims->im6s_addr;
17628f002c6cSBruce M Simpson 			psin->sin6_port = 0;
17638f002c6cSBruce M Simpson 			--nsrcs;
17648f002c6cSBruce M Simpson 			++ptss;
17658f002c6cSBruce M Simpson 		}
17668f002c6cSBruce M Simpson 	}
17678f002c6cSBruce M Simpson 
17688f002c6cSBruce M Simpson 	INP_WUNLOCK(inp);
17698f002c6cSBruce M Simpson 
17708f002c6cSBruce M Simpson 	if (tss != NULL) {
17718f002c6cSBruce M Simpson 		error = copyout(tss, msfr.msfr_srcs,
17728f002c6cSBruce M Simpson 		    sizeof(struct sockaddr_storage) * msfr.msfr_nsrcs);
17738f002c6cSBruce M Simpson 		free(tss, M_TEMP);
17748f002c6cSBruce M Simpson 		if (error)
17758f002c6cSBruce M Simpson 			return (error);
17768f002c6cSBruce M Simpson 	}
17778f002c6cSBruce M Simpson 
17788f002c6cSBruce M Simpson 	msfr.msfr_nsrcs = ncsrcs;
17798f002c6cSBruce M Simpson 	error = sooptcopyout(sopt, &msfr, sizeof(struct __msfilterreq));
17808f002c6cSBruce M Simpson 
17818f002c6cSBruce M Simpson 	return (error);
17828f002c6cSBruce M Simpson }
17838f002c6cSBruce M Simpson 
17848f002c6cSBruce M Simpson /*
17858f002c6cSBruce M Simpson  * Return the IP multicast options in response to user getsockopt().
17868f002c6cSBruce M Simpson  */
17878f002c6cSBruce M Simpson int
ip6_getmoptions(struct inpcb * inp,struct sockopt * sopt)17888f002c6cSBruce M Simpson ip6_getmoptions(struct inpcb *inp, struct sockopt *sopt)
17898f002c6cSBruce M Simpson {
179033cde130SBruce M Simpson 	struct ip6_moptions	*im6o;
179133cde130SBruce M Simpson 	int			 error;
179233cde130SBruce M Simpson 	u_int			 optval;
17938f002c6cSBruce M Simpson 
17948f002c6cSBruce M Simpson 	INP_WLOCK(inp);
179533cde130SBruce M Simpson 	im6o = inp->in6p_moptions;
17968624f434SGleb Smirnoff 	/* If socket is neither of type SOCK_RAW or SOCK_DGRAM, reject it. */
17978624f434SGleb Smirnoff 	if (inp->inp_socket->so_proto->pr_type != SOCK_RAW &&
17988624f434SGleb Smirnoff 	    inp->inp_socket->so_proto->pr_type != SOCK_DGRAM) {
17998f002c6cSBruce M Simpson 		INP_WUNLOCK(inp);
18008f002c6cSBruce M Simpson 		return (EOPNOTSUPP);
18018f002c6cSBruce M Simpson 	}
18028f002c6cSBruce M Simpson 
18038f002c6cSBruce M Simpson 	error = 0;
18048f002c6cSBruce M Simpson 	switch (sopt->sopt_name) {
18058f002c6cSBruce M Simpson 	case IPV6_MULTICAST_IF:
180633cde130SBruce M Simpson 		if (im6o == NULL || im6o->im6o_multicast_ifp == NULL) {
18078f002c6cSBruce M Simpson 			optval = 0;
18088f002c6cSBruce M Simpson 		} else {
180933cde130SBruce M Simpson 			optval = im6o->im6o_multicast_ifp->if_index;
18108f002c6cSBruce M Simpson 		}
18118f002c6cSBruce M Simpson 		INP_WUNLOCK(inp);
181233cde130SBruce M Simpson 		error = sooptcopyout(sopt, &optval, sizeof(u_int));
18138f002c6cSBruce M Simpson 		break;
18148f002c6cSBruce M Simpson 
18158f002c6cSBruce M Simpson 	case IPV6_MULTICAST_HOPS:
181633cde130SBruce M Simpson 		if (im6o == NULL)
181733cde130SBruce M Simpson 			optval = V_ip6_defmcasthlim;
18188f002c6cSBruce M Simpson 		else
181908907004SBjoern A. Zeeb 			optval = im6o->im6o_multicast_hlim;
18208f002c6cSBruce M Simpson 		INP_WUNLOCK(inp);
18218f002c6cSBruce M Simpson 		error = sooptcopyout(sopt, &optval, sizeof(u_int));
18228f002c6cSBruce M Simpson 		break;
18238f002c6cSBruce M Simpson 
18248f002c6cSBruce M Simpson 	case IPV6_MULTICAST_LOOP:
182533cde130SBruce M Simpson 		if (im6o == NULL)
182633cde130SBruce M Simpson 			optval = in6_mcast_loop; /* XXX VIMAGE */
18278f002c6cSBruce M Simpson 		else
182833cde130SBruce M Simpson 			optval = im6o->im6o_multicast_loop;
18298f002c6cSBruce M Simpson 		INP_WUNLOCK(inp);
18308f002c6cSBruce M Simpson 		error = sooptcopyout(sopt, &optval, sizeof(u_int));
18318f002c6cSBruce M Simpson 		break;
18328f002c6cSBruce M Simpson 
18338f002c6cSBruce M Simpson 	case IPV6_MSFILTER:
183433cde130SBruce M Simpson 		if (im6o == NULL) {
18358f002c6cSBruce M Simpson 			error = EADDRNOTAVAIL;
18368f002c6cSBruce M Simpson 			INP_WUNLOCK(inp);
18378f002c6cSBruce M Simpson 		} else {
18388f002c6cSBruce M Simpson 			error = in6p_get_source_filters(inp, sopt);
18398f002c6cSBruce M Simpson 		}
18408f002c6cSBruce M Simpson 		break;
18418f002c6cSBruce M Simpson 
18428f002c6cSBruce M Simpson 	default:
18438f002c6cSBruce M Simpson 		INP_WUNLOCK(inp);
18448f002c6cSBruce M Simpson 		error = ENOPROTOOPT;
18458f002c6cSBruce M Simpson 		break;
18468f002c6cSBruce M Simpson 	}
18478f002c6cSBruce M Simpson 
18488f002c6cSBruce M Simpson 	INP_UNLOCK_ASSERT(inp);
18498f002c6cSBruce M Simpson 
18508f002c6cSBruce M Simpson 	return (error);
18518f002c6cSBruce M Simpson }
18528f002c6cSBruce M Simpson 
18538f002c6cSBruce M Simpson /*
185433cde130SBruce M Simpson  * Look up the ifnet to use for a multicast group membership,
185533cde130SBruce M Simpson  * given the address of an IPv6 group.
185633cde130SBruce M Simpson  *
185733cde130SBruce M Simpson  * This routine exists to support legacy IPv6 multicast applications.
185833cde130SBruce M Simpson  *
1859cfae6a92SMark Johnston  * Use the socket's current FIB number for any required FIB lookup. Look up the
1860cfae6a92SMark Johnston  * group address in the unicast FIB, and use its ifp; usually, this points to
1861cfae6a92SMark Johnston  * the default next-hop.  If the FIB lookup fails, return NULL.
186233cde130SBruce M Simpson  *
186333cde130SBruce M Simpson  * FUTURE: Support multiple forwarding tables for IPv6.
186433cde130SBruce M Simpson  *
186533cde130SBruce M Simpson  * Returns NULL if no ifp could be found.
186633cde130SBruce M Simpson  */
186733cde130SBruce M Simpson static struct ifnet *
in6p_lookup_mcast_ifp(const struct inpcb * inp,const struct sockaddr_in6 * gsin6)1868cfae6a92SMark Johnston in6p_lookup_mcast_ifp(const struct inpcb *inp, const struct sockaddr_in6 *gsin6)
186933cde130SBruce M Simpson {
18706ad7446cSAlexander V. Chernikov 	struct nhop_object	*nh;
18719977be4aSAlexander V. Chernikov 	struct in6_addr		dst;
18729977be4aSAlexander V. Chernikov 	uint32_t		scopeid;
18739977be4aSAlexander V. Chernikov 	uint32_t		fibnum;
187433cde130SBruce M Simpson 
187533cde130SBruce M Simpson 	KASSERT(gsin6->sin6_family == AF_INET6,
187633cde130SBruce M Simpson 	    ("%s: not AF_INET6 group", __func__));
187733cde130SBruce M Simpson 
18789977be4aSAlexander V. Chernikov 	in6_splitscope(&gsin6->sin6_addr, &dst, &scopeid);
1879cfae6a92SMark Johnston 	fibnum = inp->inp_inc.inc_fibnum;
18806ad7446cSAlexander V. Chernikov 	nh = fib6_lookup(fibnum, &dst, scopeid, 0, 0);
188133cde130SBruce M Simpson 
18826ad7446cSAlexander V. Chernikov 	return (nh ? nh->nh_ifp : NULL);
188333cde130SBruce M Simpson }
188433cde130SBruce M Simpson 
188533cde130SBruce M Simpson /*
18868f002c6cSBruce M Simpson  * Join an IPv6 multicast group, possibly with a source.
188733cde130SBruce M Simpson  *
188833cde130SBruce M Simpson  * FIXME: The KAME use of the unspecified address (::)
188933cde130SBruce M Simpson  * to join *all* multicast groups is currently unsupported.
1890d74b7baeSGleb Smirnoff  *
1891d74b7baeSGleb Smirnoff  * XXXGL: this function multiple times uses ifnet_byindex() without
1892d74b7baeSGleb Smirnoff  * proper protection - staying in epoch, or putting reference on ifnet.
18938f002c6cSBruce M Simpson  */
18948f002c6cSBruce M Simpson static int
in6p_join_group(struct inpcb * inp,struct sockopt * sopt)18958f002c6cSBruce M Simpson in6p_join_group(struct inpcb *inp, struct sockopt *sopt)
18968f002c6cSBruce M Simpson {
18972cd6ad76SHans Petter Selasky 	struct in6_multi_head		 inmh;
18988f002c6cSBruce M Simpson 	struct group_source_req		 gsr;
1899d74b7baeSGleb Smirnoff 	struct epoch_tracker		 et;
19008f002c6cSBruce M Simpson 	sockunion_t			*gsa, *ssa;
19018f002c6cSBruce M Simpson 	struct ifnet			*ifp;
19028f002c6cSBruce M Simpson 	struct in6_mfilter		*imf;
19038f002c6cSBruce M Simpson 	struct ip6_moptions		*imo;
19048f002c6cSBruce M Simpson 	struct in6_multi		*inm;
19058f002c6cSBruce M Simpson 	struct in6_msource		*lims;
19068f002c6cSBruce M Simpson 	int				 error, is_new;
19078f002c6cSBruce M Simpson 
19082cd6ad76SHans Petter Selasky 	SLIST_INIT(&inmh);
19098f002c6cSBruce M Simpson 	ifp = NULL;
19101f81c2b6SBruce M Simpson 	lims = NULL;
19118f002c6cSBruce M Simpson 	error = 0;
19128f002c6cSBruce M Simpson 
19138f002c6cSBruce M Simpson 	memset(&gsr, 0, sizeof(struct group_source_req));
19148f002c6cSBruce M Simpson 	gsa = (sockunion_t *)&gsr.gsr_group;
19158f002c6cSBruce M Simpson 	gsa->ss.ss_family = AF_UNSPEC;
19168f002c6cSBruce M Simpson 	ssa = (sockunion_t *)&gsr.gsr_source;
19178f002c6cSBruce M Simpson 	ssa->ss.ss_family = AF_UNSPEC;
19188f002c6cSBruce M Simpson 
191929dc7bc6SBruce M Simpson 	/*
192029dc7bc6SBruce M Simpson 	 * Chew everything into struct group_source_req.
192129dc7bc6SBruce M Simpson 	 * Overwrite the port field if present, as the sockaddr
192229dc7bc6SBruce M Simpson 	 * being copied in may be matched with a binary comparison.
192329dc7bc6SBruce M Simpson 	 * Ignore passed-in scope ID.
192429dc7bc6SBruce M Simpson 	 */
19258f002c6cSBruce M Simpson 	switch (sopt->sopt_name) {
19268f002c6cSBruce M Simpson 	case IPV6_JOIN_GROUP: {
19278f002c6cSBruce M Simpson 		struct ipv6_mreq mreq;
19288f002c6cSBruce M Simpson 
19298f002c6cSBruce M Simpson 		error = sooptcopyin(sopt, &mreq, sizeof(struct ipv6_mreq),
19308f002c6cSBruce M Simpson 		    sizeof(struct ipv6_mreq));
19318f002c6cSBruce M Simpson 		if (error)
19328f002c6cSBruce M Simpson 			return (error);
19338f002c6cSBruce M Simpson 
19348f002c6cSBruce M Simpson 		gsa->sin6.sin6_family = AF_INET6;
19358f002c6cSBruce M Simpson 		gsa->sin6.sin6_len = sizeof(struct sockaddr_in6);
19368f002c6cSBruce M Simpson 		gsa->sin6.sin6_addr = mreq.ipv6mr_multiaddr;
19378f002c6cSBruce M Simpson 
193833cde130SBruce M Simpson 		if (mreq.ipv6mr_interface == 0) {
193933cde130SBruce M Simpson 			ifp = in6p_lookup_mcast_ifp(inp, &gsa->sin6);
194033cde130SBruce M Simpson 		} else {
1941d74b7baeSGleb Smirnoff 			NET_EPOCH_ENTER(et);
19428f002c6cSBruce M Simpson 			ifp = ifnet_byindex(mreq.ipv6mr_interface);
1943d74b7baeSGleb Smirnoff 			NET_EPOCH_EXIT(et);
1944d74b7baeSGleb Smirnoff 			if (ifp == NULL)
1945d74b7baeSGleb Smirnoff 				return (EADDRNOTAVAIL);
194633cde130SBruce M Simpson 		}
19478f002c6cSBruce M Simpson 		CTR3(KTR_MLD, "%s: ipv6mr_interface = %d, ifp = %p",
19488f002c6cSBruce M Simpson 		    __func__, mreq.ipv6mr_interface, ifp);
19498f002c6cSBruce M Simpson 	} break;
19508f002c6cSBruce M Simpson 
19518f002c6cSBruce M Simpson 	case MCAST_JOIN_GROUP:
19528f002c6cSBruce M Simpson 	case MCAST_JOIN_SOURCE_GROUP:
19538f002c6cSBruce M Simpson 		if (sopt->sopt_name == MCAST_JOIN_GROUP) {
19548f002c6cSBruce M Simpson 			error = sooptcopyin(sopt, &gsr,
19558f002c6cSBruce M Simpson 			    sizeof(struct group_req),
19568f002c6cSBruce M Simpson 			    sizeof(struct group_req));
19578f002c6cSBruce M Simpson 		} else if (sopt->sopt_name == MCAST_JOIN_SOURCE_GROUP) {
19588f002c6cSBruce M Simpson 			error = sooptcopyin(sopt, &gsr,
19598f002c6cSBruce M Simpson 			    sizeof(struct group_source_req),
19608f002c6cSBruce M Simpson 			    sizeof(struct group_source_req));
19618f002c6cSBruce M Simpson 		}
19628f002c6cSBruce M Simpson 		if (error)
19638f002c6cSBruce M Simpson 			return (error);
19648f002c6cSBruce M Simpson 
19658f002c6cSBruce M Simpson 		if (gsa->sin6.sin6_family != AF_INET6 ||
19668f002c6cSBruce M Simpson 		    gsa->sin6.sin6_len != sizeof(struct sockaddr_in6))
19678f002c6cSBruce M Simpson 			return (EINVAL);
19688f002c6cSBruce M Simpson 
19698f002c6cSBruce M Simpson 		if (sopt->sopt_name == MCAST_JOIN_SOURCE_GROUP) {
19708f002c6cSBruce M Simpson 			if (ssa->sin6.sin6_family != AF_INET6 ||
19718f002c6cSBruce M Simpson 			    ssa->sin6.sin6_len != sizeof(struct sockaddr_in6))
19728f002c6cSBruce M Simpson 				return (EINVAL);
197329dc7bc6SBruce M Simpson 			if (IN6_IS_ADDR_MULTICAST(&ssa->sin6.sin6_addr))
197429dc7bc6SBruce M Simpson 				return (EINVAL);
197529dc7bc6SBruce M Simpson 			/*
197629dc7bc6SBruce M Simpson 			 * TODO: Validate embedded scope ID in source
197729dc7bc6SBruce M Simpson 			 * list entry against passed-in ifp, if and only
197829dc7bc6SBruce M Simpson 			 * if source list filter entry is iface or node local.
197929dc7bc6SBruce M Simpson 			 */
198029dc7bc6SBruce M Simpson 			in6_clearscope(&ssa->sin6.sin6_addr);
19818f002c6cSBruce M Simpson 			ssa->sin6.sin6_port = 0;
198229dc7bc6SBruce M Simpson 			ssa->sin6.sin6_scope_id = 0;
19838f002c6cSBruce M Simpson 		}
1984d74b7baeSGleb Smirnoff 		NET_EPOCH_ENTER(et);
19858f002c6cSBruce M Simpson 		ifp = ifnet_byindex(gsr.gsr_interface);
1986d74b7baeSGleb Smirnoff 		NET_EPOCH_EXIT(et);
1987d74b7baeSGleb Smirnoff 		if (ifp == NULL)
1988d74b7baeSGleb Smirnoff 			return (EADDRNOTAVAIL);
19898f002c6cSBruce M Simpson 		break;
19908f002c6cSBruce M Simpson 
19918f002c6cSBruce M Simpson 	default:
19928f002c6cSBruce M Simpson 		CTR2(KTR_MLD, "%s: unknown sopt_name %d",
19938f002c6cSBruce M Simpson 		    __func__, sopt->sopt_name);
19948f002c6cSBruce M Simpson 		return (EOPNOTSUPP);
19958f002c6cSBruce M Simpson 		break;
19968f002c6cSBruce M Simpson 	}
19978f002c6cSBruce M Simpson 
19988f002c6cSBruce M Simpson 	if (!IN6_IS_ADDR_MULTICAST(&gsa->sin6.sin6_addr))
19998f002c6cSBruce M Simpson 		return (EINVAL);
20008f002c6cSBruce M Simpson 
20018f002c6cSBruce M Simpson 	if (ifp == NULL || (ifp->if_flags & IFF_MULTICAST) == 0)
20028f002c6cSBruce M Simpson 		return (EADDRNOTAVAIL);
20038f002c6cSBruce M Simpson 
200429dc7bc6SBruce M Simpson 	gsa->sin6.sin6_port = 0;
200529dc7bc6SBruce M Simpson 	gsa->sin6.sin6_scope_id = 0;
200629dc7bc6SBruce M Simpson 
200733cde130SBruce M Simpson 	/*
200829dc7bc6SBruce M Simpson 	 * Always set the scope zone ID on memberships created from userland.
200929dc7bc6SBruce M Simpson 	 * Use the passed-in ifp to do this.
201029dc7bc6SBruce M Simpson 	 * XXX The in6_setscope() return value is meaningless.
201129dc7bc6SBruce M Simpson 	 * XXX SCOPE6_LOCK() is taken by in6_setscope().
201233cde130SBruce M Simpson 	 */
201329dc7bc6SBruce M Simpson 	(void)in6_setscope(&gsa->sin6.sin6_addr, ifp, NULL);
201433cde130SBruce M Simpson 
201559854ecfSHans Petter Selasky 	IN6_MULTI_LOCK();
201659854ecfSHans Petter Selasky 
201759854ecfSHans Petter Selasky 	/*
201859854ecfSHans Petter Selasky 	 * Find the membership in the membership list.
201959854ecfSHans Petter Selasky 	 */
20208f002c6cSBruce M Simpson 	imo = in6p_findmoptions(inp);
202159854ecfSHans Petter Selasky 	imf = im6o_match_group(imo, ifp, &gsa->sa);
202259854ecfSHans Petter Selasky 	if (imf == NULL) {
20238f002c6cSBruce M Simpson 		is_new = 1;
202459854ecfSHans Petter Selasky 		inm = NULL;
202559854ecfSHans Petter Selasky 
202659854ecfSHans Petter Selasky 		if (ip6_mfilter_count(&imo->im6o_head) >= IPV6_MAX_MEMBERSHIPS) {
202759854ecfSHans Petter Selasky 			error = ENOMEM;
202859854ecfSHans Petter Selasky 			goto out_in6p_locked;
202959854ecfSHans Petter Selasky 		}
20308f002c6cSBruce M Simpson 	} else {
203159854ecfSHans Petter Selasky 		is_new = 0;
203259854ecfSHans Petter Selasky 		inm = imf->im6f_in6m;
203359854ecfSHans Petter Selasky 
20341ee6b058SBruce M Simpson 		if (ssa->ss.ss_family != AF_UNSPEC) {
20351ee6b058SBruce M Simpson 			/*
20361ee6b058SBruce M Simpson 			 * MCAST_JOIN_SOURCE_GROUP on an exclusive membership
20371ee6b058SBruce M Simpson 			 * is an error. On an existing inclusive membership,
20381ee6b058SBruce M Simpson 			 * it just adds the source to the filter list.
20391ee6b058SBruce M Simpson 			 */
20401ee6b058SBruce M Simpson 			if (imf->im6f_st[1] != MCAST_INCLUDE) {
20418f002c6cSBruce M Simpson 				error = EINVAL;
20428f002c6cSBruce M Simpson 				goto out_in6p_locked;
20438f002c6cSBruce M Simpson 			}
20441f81c2b6SBruce M Simpson 			/*
20451f81c2b6SBruce M Simpson 			 * Throw out duplicates.
20461f81c2b6SBruce M Simpson 			 *
20471f81c2b6SBruce M Simpson 			 * XXX FIXME: This makes a naive assumption that
20481f81c2b6SBruce M Simpson 			 * even if entries exist for *ssa in this imf,
20491f81c2b6SBruce M Simpson 			 * they will be rejected as dupes, even if they
20501f81c2b6SBruce M Simpson 			 * are not valid in the current mode (in-mode).
20511f81c2b6SBruce M Simpson 			 *
20521f81c2b6SBruce M Simpson 			 * in6_msource is transactioned just as for anything
20531f81c2b6SBruce M Simpson 			 * else in SSM -- but note naive use of in6m_graft()
20541f81c2b6SBruce M Simpson 			 * below for allocating new filter entries.
20551f81c2b6SBruce M Simpson 			 *
20561f81c2b6SBruce M Simpson 			 * This is only an issue if someone mixes the
20571f81c2b6SBruce M Simpson 			 * full-state SSM API with the delta-based API,
20581f81c2b6SBruce M Simpson 			 * which is discouraged in the relevant RFCs.
20591f81c2b6SBruce M Simpson 			 */
206059854ecfSHans Petter Selasky 			lims = im6o_match_source(imf, &ssa->sa);
20611f81c2b6SBruce M Simpson 			if (lims != NULL /*&&
20621f81c2b6SBruce M Simpson 			    lims->im6sl_st[1] == MCAST_INCLUDE*/) {
20638f002c6cSBruce M Simpson 				error = EADDRNOTAVAIL;
20648f002c6cSBruce M Simpson 				goto out_in6p_locked;
20658f002c6cSBruce M Simpson 			}
20661ee6b058SBruce M Simpson 		} else {
20671ee6b058SBruce M Simpson 			/*
2068604a60d1SBruce M Simpson 			 * MCAST_JOIN_GROUP alone, on any existing membership,
2069604a60d1SBruce M Simpson 			 * is rejected, to stop the same inpcb tying up
2070604a60d1SBruce M Simpson 			 * multiple refs to the in_multi.
2071604a60d1SBruce M Simpson 			 * On an existing inclusive membership, this is also
2072604a60d1SBruce M Simpson 			 * an error; if you want to change filter mode,
2073604a60d1SBruce M Simpson 			 * you must use the userland API setsourcefilter().
2074604a60d1SBruce M Simpson 			 * XXX We don't reject this for imf in UNDEFINED
2075604a60d1SBruce M Simpson 			 * state at t1, because allocation of a filter
2076604a60d1SBruce M Simpson 			 * is atomic with allocation of a membership.
20771ee6b058SBruce M Simpson 			 */
20782ef5d803SKristof Provost 			error = EADDRINUSE;
20791ee6b058SBruce M Simpson 			goto out_in6p_locked;
20801ee6b058SBruce M Simpson 		}
20811ee6b058SBruce M Simpson 	}
20828f002c6cSBruce M Simpson 
20838f002c6cSBruce M Simpson 	/*
20848f002c6cSBruce M Simpson 	 * Begin state merge transaction at socket layer.
20858f002c6cSBruce M Simpson 	 */
20868f002c6cSBruce M Simpson 	INP_WLOCK_ASSERT(inp);
20878f002c6cSBruce M Simpson 
20888f002c6cSBruce M Simpson 	/*
20898f002c6cSBruce M Simpson 	 * Graft new source into filter list for this inpcb's
20908f002c6cSBruce M Simpson 	 * membership of the group. The in6_multi may not have
20911ee6b058SBruce M Simpson 	 * been allocated yet if this is a new membership, however,
20921ee6b058SBruce M Simpson 	 * the in_mfilter slot will be allocated and must be initialized.
2093604a60d1SBruce M Simpson 	 *
2094604a60d1SBruce M Simpson 	 * Note: Grafting of exclusive mode filters doesn't happen
2095604a60d1SBruce M Simpson 	 * in this path.
20961f81c2b6SBruce M Simpson 	 * XXX: Should check for non-NULL lims (node exists but may
20971f81c2b6SBruce M Simpson 	 * not be in-mode) for interop with full-state API.
20988f002c6cSBruce M Simpson 	 */
20998f002c6cSBruce M Simpson 	if (ssa->ss.ss_family != AF_UNSPEC) {
21008f002c6cSBruce M Simpson 		/* Membership starts in IN mode */
21018f002c6cSBruce M Simpson 		if (is_new) {
21028f002c6cSBruce M Simpson 			CTR1(KTR_MLD, "%s: new join w/source", __func__);
210359854ecfSHans Petter Selasky 			imf = ip6_mfilter_alloc(M_NOWAIT, MCAST_UNDEFINED, MCAST_INCLUDE);
210459854ecfSHans Petter Selasky 			if (imf == NULL) {
210559854ecfSHans Petter Selasky 				error = ENOMEM;
210659854ecfSHans Petter Selasky 				goto out_in6p_locked;
210759854ecfSHans Petter Selasky 			}
21088f002c6cSBruce M Simpson 		} else {
21098f002c6cSBruce M Simpson 			CTR2(KTR_MLD, "%s: %s source", __func__, "allow");
21108f002c6cSBruce M Simpson 		}
21118f002c6cSBruce M Simpson 		lims = im6f_graft(imf, MCAST_INCLUDE, &ssa->sin6);
21128f002c6cSBruce M Simpson 		if (lims == NULL) {
21138f002c6cSBruce M Simpson 			CTR1(KTR_MLD, "%s: merge imf state failed",
21148f002c6cSBruce M Simpson 			    __func__);
21158f002c6cSBruce M Simpson 			error = ENOMEM;
211659854ecfSHans Petter Selasky 			goto out_in6p_locked;
21178f002c6cSBruce M Simpson 		}
21181ee6b058SBruce M Simpson 	} else {
21191ee6b058SBruce M Simpson 		/* No address specified; Membership starts in EX mode */
21201ee6b058SBruce M Simpson 		if (is_new) {
21211ee6b058SBruce M Simpson 			CTR1(KTR_MLD, "%s: new join w/o source", __func__);
212259854ecfSHans Petter Selasky 			imf = ip6_mfilter_alloc(M_NOWAIT, MCAST_UNDEFINED, MCAST_EXCLUDE);
212359854ecfSHans Petter Selasky 			if (imf == NULL) {
212459854ecfSHans Petter Selasky 				error = ENOMEM;
212559854ecfSHans Petter Selasky 				goto out_in6p_locked;
212659854ecfSHans Petter Selasky 			}
21271ee6b058SBruce M Simpson 		}
21288f002c6cSBruce M Simpson 	}
21298f002c6cSBruce M Simpson 
21308f002c6cSBruce M Simpson 	/*
21318f002c6cSBruce M Simpson 	 * Begin state merge transaction at MLD layer.
21328f002c6cSBruce M Simpson 	 */
213359854ecfSHans Petter Selasky 	if (is_new) {
2134f00876fbSMark Johnston 		in_pcbref(inp);
2135f00876fbSMark Johnston 		INP_WUNLOCK(inp);
2136f00876fbSMark Johnston 
2137f3e1324bSStephen Hurd 		error = in6_joingroup_locked(ifp, &gsa->sin6.sin6_addr, imf,
213859854ecfSHans Petter Selasky 		    &imf->im6f_in6m, 0);
213959854ecfSHans Petter Selasky 
214059854ecfSHans Petter Selasky 		INP_WLOCK(inp);
214159854ecfSHans Petter Selasky 		if (in_pcbrele_wlocked(inp)) {
214259854ecfSHans Petter Selasky 			error = ENXIO;
214359854ecfSHans Petter Selasky 			goto out_in6p_unlocked;
214459854ecfSHans Petter Selasky 		}
21454fd91336SAndrey V. Elsukov 		if (error) {
214659854ecfSHans Petter Selasky 			goto out_in6p_locked;
21474fd91336SAndrey V. Elsukov 		}
2148130f575dSHans Petter Selasky 		/*
2149130f575dSHans Petter Selasky 		 * NOTE: Refcount from in6_joingroup_locked()
2150130f575dSHans Petter Selasky 		 * is protecting membership.
2151130f575dSHans Petter Selasky 		 */
21525b64b824SHans Petter Selasky 		ip6_mfilter_insert(&imo->im6o_head, imf);
21538f002c6cSBruce M Simpson 	} else {
21548f002c6cSBruce M Simpson 		CTR1(KTR_MLD, "%s: merge inm state", __func__);
2155f3e1324bSStephen Hurd 		IN6_MULTI_LIST_LOCK();
21568f002c6cSBruce M Simpson 		error = in6m_merge(inm, imf);
215759854ecfSHans Petter Selasky 		if (error) {
21588f002c6cSBruce M Simpson 			CTR1(KTR_MLD, "%s: failed to merge inm state",
21598f002c6cSBruce M Simpson 			    __func__);
216059854ecfSHans Petter Selasky 			IN6_MULTI_LIST_UNLOCK();
216159854ecfSHans Petter Selasky 			im6f_rollback(imf);
216259854ecfSHans Petter Selasky 			im6f_reap(imf);
216359854ecfSHans Petter Selasky 			goto out_in6p_locked;
216459854ecfSHans Petter Selasky 		}
21658f002c6cSBruce M Simpson 		CTR1(KTR_MLD, "%s: doing mld downcall", __func__);
21668f002c6cSBruce M Simpson 		error = mld_change_state(inm, 0);
216759854ecfSHans Petter Selasky 		IN6_MULTI_LIST_UNLOCK();
216859854ecfSHans Petter Selasky 
216959854ecfSHans Petter Selasky 		if (error) {
21708f002c6cSBruce M Simpson 			CTR1(KTR_MLD, "%s: failed mld downcall",
21718f002c6cSBruce M Simpson 			     __func__);
21728f002c6cSBruce M Simpson 			im6f_rollback(imf);
21738f002c6cSBruce M Simpson 			im6f_reap(imf);
217459854ecfSHans Petter Selasky 			goto out_in6p_locked;
217559854ecfSHans Petter Selasky 		}
21768f002c6cSBruce M Simpson 	}
21778f002c6cSBruce M Simpson 
217859854ecfSHans Petter Selasky 	im6f_commit(imf);
217959854ecfSHans Petter Selasky 	imf = NULL;
21808f002c6cSBruce M Simpson 
21818f002c6cSBruce M Simpson out_in6p_locked:
21828f002c6cSBruce M Simpson 	INP_WUNLOCK(inp);
218359854ecfSHans Petter Selasky out_in6p_unlocked:
218459854ecfSHans Petter Selasky 	IN6_MULTI_UNLOCK();
218559854ecfSHans Petter Selasky 
218659854ecfSHans Petter Selasky 	if (is_new && imf) {
218759854ecfSHans Petter Selasky 		if (imf->im6f_in6m != NULL) {
218859854ecfSHans Petter Selasky 			struct in6_multi_head inmh;
218959854ecfSHans Petter Selasky 
219059854ecfSHans Petter Selasky 			SLIST_INIT(&inmh);
219159854ecfSHans Petter Selasky 			SLIST_INSERT_HEAD(&inmh, imf->im6f_in6m, in6m_defer);
21922cd6ad76SHans Petter Selasky 			in6m_release_list_deferred(&inmh);
219359854ecfSHans Petter Selasky 		}
219459854ecfSHans Petter Selasky 		ip6_mfilter_free(imf);
219559854ecfSHans Petter Selasky 	}
21968f002c6cSBruce M Simpson 	return (error);
21978f002c6cSBruce M Simpson }
21988f002c6cSBruce M Simpson 
21998f002c6cSBruce M Simpson /*
22008f002c6cSBruce M Simpson  * Leave an IPv6 multicast group on an inpcb, possibly with a source.
22018f002c6cSBruce M Simpson  */
22028f002c6cSBruce M Simpson static int
in6p_leave_group(struct inpcb * inp,struct sockopt * sopt)22038f002c6cSBruce M Simpson in6p_leave_group(struct inpcb *inp, struct sockopt *sopt)
22048f002c6cSBruce M Simpson {
220529dc7bc6SBruce M Simpson 	struct ipv6_mreq		 mreq;
22068f002c6cSBruce M Simpson 	struct group_source_req		 gsr;
2207d74b7baeSGleb Smirnoff 	struct epoch_tracker		 et;
22088f002c6cSBruce M Simpson 	sockunion_t			*gsa, *ssa;
22098f002c6cSBruce M Simpson 	struct ifnet			*ifp;
22108f002c6cSBruce M Simpson 	struct in6_mfilter		*imf;
22118f002c6cSBruce M Simpson 	struct ip6_moptions		*imo;
22128f002c6cSBruce M Simpson 	struct in6_msource		*ims;
22138f002c6cSBruce M Simpson 	struct in6_multi		*inm;
221429dc7bc6SBruce M Simpson 	uint32_t			 ifindex;
221559854ecfSHans Petter Selasky 	int				 error;
221659854ecfSHans Petter Selasky 	bool				 is_final;
22178f002c6cSBruce M Simpson #ifdef KTR
22188f002c6cSBruce M Simpson 	char				 ip6tbuf[INET6_ADDRSTRLEN];
22198f002c6cSBruce M Simpson #endif
22208f002c6cSBruce M Simpson 
22218f002c6cSBruce M Simpson 	ifp = NULL;
222229dc7bc6SBruce M Simpson 	ifindex = 0;
22238f002c6cSBruce M Simpson 	error = 0;
222459854ecfSHans Petter Selasky 	is_final = true;
22258f002c6cSBruce M Simpson 
22268f002c6cSBruce M Simpson 	memset(&gsr, 0, sizeof(struct group_source_req));
22278f002c6cSBruce M Simpson 	gsa = (sockunion_t *)&gsr.gsr_group;
22288f002c6cSBruce M Simpson 	gsa->ss.ss_family = AF_UNSPEC;
22298f002c6cSBruce M Simpson 	ssa = (sockunion_t *)&gsr.gsr_source;
22308f002c6cSBruce M Simpson 	ssa->ss.ss_family = AF_UNSPEC;
22318f002c6cSBruce M Simpson 
223229dc7bc6SBruce M Simpson 	/*
223329dc7bc6SBruce M Simpson 	 * Chew everything passed in up into a struct group_source_req
223429dc7bc6SBruce M Simpson 	 * as that is easier to process.
223529dc7bc6SBruce M Simpson 	 * Note: Any embedded scope ID in the multicast group passed
223629dc7bc6SBruce M Simpson 	 * in by userland is ignored, the interface index is the recommended
223729dc7bc6SBruce M Simpson 	 * mechanism to specify an interface; see below.
223829dc7bc6SBruce M Simpson 	 */
22398f002c6cSBruce M Simpson 	switch (sopt->sopt_name) {
224029dc7bc6SBruce M Simpson 	case IPV6_LEAVE_GROUP:
22418f002c6cSBruce M Simpson 		error = sooptcopyin(sopt, &mreq, sizeof(struct ipv6_mreq),
22428f002c6cSBruce M Simpson 		    sizeof(struct ipv6_mreq));
22438f002c6cSBruce M Simpson 		if (error)
22448f002c6cSBruce M Simpson 			return (error);
22458f002c6cSBruce M Simpson 		gsa->sin6.sin6_family = AF_INET6;
22468f002c6cSBruce M Simpson 		gsa->sin6.sin6_len = sizeof(struct sockaddr_in6);
22478f002c6cSBruce M Simpson 		gsa->sin6.sin6_addr = mreq.ipv6mr_multiaddr;
224829dc7bc6SBruce M Simpson 		gsa->sin6.sin6_port = 0;
224929dc7bc6SBruce M Simpson 		gsa->sin6.sin6_scope_id = 0;
225029dc7bc6SBruce M Simpson 		ifindex = mreq.ipv6mr_interface;
225129dc7bc6SBruce M Simpson 		break;
22528f002c6cSBruce M Simpson 
22538f002c6cSBruce M Simpson 	case MCAST_LEAVE_GROUP:
22548f002c6cSBruce M Simpson 	case MCAST_LEAVE_SOURCE_GROUP:
22558f002c6cSBruce M Simpson 		if (sopt->sopt_name == MCAST_LEAVE_GROUP) {
22568f002c6cSBruce M Simpson 			error = sooptcopyin(sopt, &gsr,
22578f002c6cSBruce M Simpson 			    sizeof(struct group_req),
22588f002c6cSBruce M Simpson 			    sizeof(struct group_req));
22598f002c6cSBruce M Simpson 		} else if (sopt->sopt_name == MCAST_LEAVE_SOURCE_GROUP) {
22608f002c6cSBruce M Simpson 			error = sooptcopyin(sopt, &gsr,
22618f002c6cSBruce M Simpson 			    sizeof(struct group_source_req),
22628f002c6cSBruce M Simpson 			    sizeof(struct group_source_req));
22638f002c6cSBruce M Simpson 		}
22648f002c6cSBruce M Simpson 		if (error)
22658f002c6cSBruce M Simpson 			return (error);
22668f002c6cSBruce M Simpson 
22678f002c6cSBruce M Simpson 		if (gsa->sin6.sin6_family != AF_INET6 ||
22688f002c6cSBruce M Simpson 		    gsa->sin6.sin6_len != sizeof(struct sockaddr_in6))
22698f002c6cSBruce M Simpson 			return (EINVAL);
22708f002c6cSBruce M Simpson 		if (sopt->sopt_name == MCAST_LEAVE_SOURCE_GROUP) {
22718f002c6cSBruce M Simpson 			if (ssa->sin6.sin6_family != AF_INET6 ||
22728f002c6cSBruce M Simpson 			    ssa->sin6.sin6_len != sizeof(struct sockaddr_in6))
22738f002c6cSBruce M Simpson 				return (EINVAL);
227429dc7bc6SBruce M Simpson 			if (IN6_IS_ADDR_MULTICAST(&ssa->sin6.sin6_addr))
227529dc7bc6SBruce M Simpson 				return (EINVAL);
227629dc7bc6SBruce M Simpson 			/*
227729dc7bc6SBruce M Simpson 			 * TODO: Validate embedded scope ID in source
227829dc7bc6SBruce M Simpson 			 * list entry against passed-in ifp, if and only
227929dc7bc6SBruce M Simpson 			 * if source list filter entry is iface or node local.
228029dc7bc6SBruce M Simpson 			 */
228129dc7bc6SBruce M Simpson 			in6_clearscope(&ssa->sin6.sin6_addr);
22828f002c6cSBruce M Simpson 		}
228329dc7bc6SBruce M Simpson 		gsa->sin6.sin6_port = 0;
228429dc7bc6SBruce M Simpson 		gsa->sin6.sin6_scope_id = 0;
228529dc7bc6SBruce M Simpson 		ifindex = gsr.gsr_interface;
22868f002c6cSBruce M Simpson 		break;
22878f002c6cSBruce M Simpson 
22888f002c6cSBruce M Simpson 	default:
22898f002c6cSBruce M Simpson 		CTR2(KTR_MLD, "%s: unknown sopt_name %d",
22908f002c6cSBruce M Simpson 		    __func__, sopt->sopt_name);
22918f002c6cSBruce M Simpson 		return (EOPNOTSUPP);
22928f002c6cSBruce M Simpson 		break;
22938f002c6cSBruce M Simpson 	}
22948f002c6cSBruce M Simpson 
22958f002c6cSBruce M Simpson 	if (!IN6_IS_ADDR_MULTICAST(&gsa->sin6.sin6_addr))
22968f002c6cSBruce M Simpson 		return (EINVAL);
22978f002c6cSBruce M Simpson 
229833cde130SBruce M Simpson 	/*
229929dc7bc6SBruce M Simpson 	 * Validate interface index if provided. If no interface index
230029dc7bc6SBruce M Simpson 	 * was provided separately, attempt to look the membership up
230129dc7bc6SBruce M Simpson 	 * from the default scope as a last resort to disambiguate
230229dc7bc6SBruce M Simpson 	 * the membership we are being asked to leave.
230329dc7bc6SBruce M Simpson 	 * XXX SCOPE6 lock potentially taken here.
230433cde130SBruce M Simpson 	 */
230529dc7bc6SBruce M Simpson 	if (ifindex != 0) {
2306d74b7baeSGleb Smirnoff 		NET_EPOCH_ENTER(et);
230729dc7bc6SBruce M Simpson 		ifp = ifnet_byindex(ifindex);
2308d74b7baeSGleb Smirnoff 		NET_EPOCH_EXIT(et);	/* XXXGL: unsafe ifp */
230929dc7bc6SBruce M Simpson 		if (ifp == NULL)
231029dc7bc6SBruce M Simpson 			return (EADDRNOTAVAIL);
231129dc7bc6SBruce M Simpson 		(void)in6_setscope(&gsa->sin6.sin6_addr, ifp, NULL);
231229dc7bc6SBruce M Simpson 	} else {
231329dc7bc6SBruce M Simpson 		error = sa6_embedscope(&gsa->sin6, V_ip6_use_defzone);
231429dc7bc6SBruce M Simpson 		if (error)
231529dc7bc6SBruce M Simpson 			return (EADDRNOTAVAIL);
231629dc7bc6SBruce M Simpson 		/*
2317b36c89e5SBruce M Simpson 		 * Some badly behaved applications don't pass an ifindex
2318b36c89e5SBruce M Simpson 		 * or a scope ID, which is an API violation. In this case,
2319b36c89e5SBruce M Simpson 		 * perform a lookup as per a v6 join.
2320b36c89e5SBruce M Simpson 		 *
232129dc7bc6SBruce M Simpson 		 * XXX For now, stomp on zone ID for the corner case.
232229dc7bc6SBruce M Simpson 		 * This is not the 'KAME way', but we need to see the ifp
232329dc7bc6SBruce M Simpson 		 * directly until such time as this implementation is
232429dc7bc6SBruce M Simpson 		 * refactored, assuming the scope IDs are the way to go.
232529dc7bc6SBruce M Simpson 		 */
232629dc7bc6SBruce M Simpson 		ifindex = ntohs(gsa->sin6.sin6_addr.s6_addr16[1]);
2327b36c89e5SBruce M Simpson 		if (ifindex == 0) {
2328b36c89e5SBruce M Simpson 			CTR2(KTR_MLD, "%s: warning: no ifindex, looking up "
2329b36c89e5SBruce M Simpson 			    "ifp for group %s.", __func__,
2330b36c89e5SBruce M Simpson 			    ip6_sprintf(ip6tbuf, &gsa->sin6.sin6_addr));
2331b36c89e5SBruce M Simpson 			ifp = in6p_lookup_mcast_ifp(inp, &gsa->sin6);
2332b36c89e5SBruce M Simpson 		} else {
2333d74b7baeSGleb Smirnoff 			NET_EPOCH_ENTER(et);
233429dc7bc6SBruce M Simpson 			ifp = ifnet_byindex(ifindex);
2335d74b7baeSGleb Smirnoff 			NET_EPOCH_EXIT(et);	/* XXXGL: unsafe ifp */
2336b36c89e5SBruce M Simpson 		}
233729dc7bc6SBruce M Simpson 		if (ifp == NULL)
233829dc7bc6SBruce M Simpson 			return (EADDRNOTAVAIL);
233929dc7bc6SBruce M Simpson 	}
234029dc7bc6SBruce M Simpson 
234129dc7bc6SBruce M Simpson 	CTR2(KTR_MLD, "%s: ifp = %p", __func__, ifp);
234229dc7bc6SBruce M Simpson 	KASSERT(ifp != NULL, ("%s: ifp did not resolve", __func__));
234333cde130SBruce M Simpson 
234459854ecfSHans Petter Selasky 	IN6_MULTI_LOCK();
234559854ecfSHans Petter Selasky 
23468f002c6cSBruce M Simpson 	/*
234759854ecfSHans Petter Selasky 	 * Find the membership in the membership list.
23488f002c6cSBruce M Simpson 	 */
23498f002c6cSBruce M Simpson 	imo = in6p_findmoptions(inp);
235059854ecfSHans Petter Selasky 	imf = im6o_match_group(imo, ifp, &gsa->sa);
235159854ecfSHans Petter Selasky 	if (imf == NULL) {
23528f002c6cSBruce M Simpson 		error = EADDRNOTAVAIL;
23538f002c6cSBruce M Simpson 		goto out_in6p_locked;
23548f002c6cSBruce M Simpson 	}
235559854ecfSHans Petter Selasky 	inm = imf->im6f_in6m;
23568f002c6cSBruce M Simpson 
23578f002c6cSBruce M Simpson 	if (ssa->ss.ss_family != AF_UNSPEC)
235859854ecfSHans Petter Selasky 		is_final = false;
23598f002c6cSBruce M Simpson 
23608f002c6cSBruce M Simpson 	/*
23618f002c6cSBruce M Simpson 	 * Begin state merge transaction at socket layer.
23628f002c6cSBruce M Simpson 	 */
23638f002c6cSBruce M Simpson 	INP_WLOCK_ASSERT(inp);
23648f002c6cSBruce M Simpson 
23658f002c6cSBruce M Simpson 	/*
23668f002c6cSBruce M Simpson 	 * If we were instructed only to leave a given source, do so.
23678f002c6cSBruce M Simpson 	 * MCAST_LEAVE_SOURCE_GROUP is only valid for inclusive memberships.
23688f002c6cSBruce M Simpson 	 */
23698f002c6cSBruce M Simpson 	if (is_final) {
237059854ecfSHans Petter Selasky 		ip6_mfilter_remove(&imo->im6o_head, imf);
23718f002c6cSBruce M Simpson 		im6f_leave(imf);
2372a4c5668dSHans Petter Selasky 
2373a4c5668dSHans Petter Selasky 		/*
2374a4c5668dSHans Petter Selasky 		 * Give up the multicast address record to which
2375a4c5668dSHans Petter Selasky 		 * the membership points.
2376a4c5668dSHans Petter Selasky 		 */
2377a4c5668dSHans Petter Selasky 		(void)in6_leavegroup_locked(inm, imf);
23788f002c6cSBruce M Simpson 	} else {
23798f002c6cSBruce M Simpson 		if (imf->im6f_st[0] == MCAST_EXCLUDE) {
23808f002c6cSBruce M Simpson 			error = EADDRNOTAVAIL;
23818f002c6cSBruce M Simpson 			goto out_in6p_locked;
23828f002c6cSBruce M Simpson 		}
238359854ecfSHans Petter Selasky 		ims = im6o_match_source(imf, &ssa->sa);
23848f002c6cSBruce M Simpson 		if (ims == NULL) {
23858f002c6cSBruce M Simpson 			CTR3(KTR_MLD, "%s: source %p %spresent", __func__,
23868f002c6cSBruce M Simpson 			    ip6_sprintf(ip6tbuf, &ssa->sin6.sin6_addr),
23878f002c6cSBruce M Simpson 			    "not ");
23888f002c6cSBruce M Simpson 			error = EADDRNOTAVAIL;
23898f002c6cSBruce M Simpson 			goto out_in6p_locked;
23908f002c6cSBruce M Simpson 		}
23918f002c6cSBruce M Simpson 		CTR2(KTR_MLD, "%s: %s source", __func__, "block");
23928f002c6cSBruce M Simpson 		error = im6f_prune(imf, &ssa->sin6);
23938f002c6cSBruce M Simpson 		if (error) {
23948f002c6cSBruce M Simpson 			CTR1(KTR_MLD, "%s: merge imf state failed",
23958f002c6cSBruce M Simpson 			    __func__);
23968f002c6cSBruce M Simpson 			goto out_in6p_locked;
23978f002c6cSBruce M Simpson 		}
23988f002c6cSBruce M Simpson 	}
23998f002c6cSBruce M Simpson 
24008f002c6cSBruce M Simpson 	/*
24018f002c6cSBruce M Simpson 	 * Begin state merge transaction at MLD layer.
24028f002c6cSBruce M Simpson 	 */
240359854ecfSHans Petter Selasky 	if (!is_final) {
240459854ecfSHans Petter Selasky 		CTR1(KTR_MLD, "%s: merge inm state", __func__);
240559854ecfSHans Petter Selasky 		IN6_MULTI_LIST_LOCK();
240659854ecfSHans Petter Selasky 		error = in6m_merge(inm, imf);
240759854ecfSHans Petter Selasky 		if (error) {
240859854ecfSHans Petter Selasky 			CTR1(KTR_MLD, "%s: failed to merge inm state",
240959854ecfSHans Petter Selasky 			    __func__);
241059854ecfSHans Petter Selasky 			IN6_MULTI_LIST_UNLOCK();
241159854ecfSHans Petter Selasky 			im6f_rollback(imf);
241259854ecfSHans Petter Selasky 			im6f_reap(imf);
241359854ecfSHans Petter Selasky                         goto out_in6p_locked;
241459854ecfSHans Petter Selasky 		}
2415f00876fbSMark Johnston 
241659854ecfSHans Petter Selasky 		CTR1(KTR_MLD, "%s: doing mld downcall", __func__);
241759854ecfSHans Petter Selasky 		error = mld_change_state(inm, 0);
241859854ecfSHans Petter Selasky 		IN6_MULTI_LIST_UNLOCK();
241959854ecfSHans Petter Selasky 		if (error) {
242059854ecfSHans Petter Selasky 			CTR1(KTR_MLD, "%s: failed mld downcall",
242159854ecfSHans Petter Selasky 			     __func__);
242259854ecfSHans Petter Selasky 			im6f_rollback(imf);
242359854ecfSHans Petter Selasky 			im6f_reap(imf);
242459854ecfSHans Petter Selasky                         goto out_in6p_locked;
242559854ecfSHans Petter Selasky 		}
242659854ecfSHans Petter Selasky 	}
242759854ecfSHans Petter Selasky 
242859854ecfSHans Petter Selasky 	im6f_commit(imf);
242959854ecfSHans Petter Selasky 	im6f_reap(imf);
243059854ecfSHans Petter Selasky 
243159854ecfSHans Petter Selasky out_in6p_locked:
243259854ecfSHans Petter Selasky 	INP_WUNLOCK(inp);
243359854ecfSHans Petter Selasky 
2434a4c5668dSHans Petter Selasky 	if (is_final && imf)
243559854ecfSHans Petter Selasky 		ip6_mfilter_free(imf);
24368f002c6cSBruce M Simpson 
2437f00876fbSMark Johnston 	IN6_MULTI_UNLOCK();
24388f002c6cSBruce M Simpson 	return (error);
24398f002c6cSBruce M Simpson }
24408f002c6cSBruce M Simpson 
24418f002c6cSBruce M Simpson /*
24428f002c6cSBruce M Simpson  * Select the interface for transmitting IPv6 multicast datagrams.
24438f002c6cSBruce M Simpson  *
24448f002c6cSBruce M Simpson  * Either an instance of struct in6_addr or an instance of struct ipv6_mreqn
24458f002c6cSBruce M Simpson  * may be passed to this socket option. An address of in6addr_any or an
24468f002c6cSBruce M Simpson  * interface index of 0 is used to remove a previous selection.
24478f002c6cSBruce M Simpson  * When no interface is selected, one is chosen for every send.
24488f002c6cSBruce M Simpson  */
24498f002c6cSBruce M Simpson static int
in6p_set_multicast_if(struct inpcb * inp,struct sockopt * sopt)24508f002c6cSBruce M Simpson in6p_set_multicast_if(struct inpcb *inp, struct sockopt *sopt)
24518f002c6cSBruce M Simpson {
2452d74b7baeSGleb Smirnoff 	struct epoch_tracker	 et;
24538f002c6cSBruce M Simpson 	struct ifnet		*ifp;
24548f002c6cSBruce M Simpson 	struct ip6_moptions	*imo;
24558f002c6cSBruce M Simpson 	u_int			 ifindex;
24568f002c6cSBruce M Simpson 	int			 error;
24578f002c6cSBruce M Simpson 
24588f002c6cSBruce M Simpson 	if (sopt->sopt_valsize != sizeof(u_int))
24598f002c6cSBruce M Simpson 		return (EINVAL);
24608f002c6cSBruce M Simpson 
24618f002c6cSBruce M Simpson 	error = sooptcopyin(sopt, &ifindex, sizeof(u_int), sizeof(u_int));
24628f002c6cSBruce M Simpson 	if (error)
24638f002c6cSBruce M Simpson 		return (error);
2464d74b7baeSGleb Smirnoff 	NET_EPOCH_ENTER(et);
2465e2956804SAndrey V. Elsukov 	if (ifindex == 0)
2466e2956804SAndrey V. Elsukov 		ifp = NULL;
2467e2956804SAndrey V. Elsukov 	else {
24688f002c6cSBruce M Simpson 		ifp = ifnet_byindex(ifindex);
2469d74b7baeSGleb Smirnoff 		if (ifp == NULL || (ifp->if_flags & IFF_MULTICAST) == 0) {
2470d74b7baeSGleb Smirnoff 			NET_EPOCH_EXIT(et);
24718f002c6cSBruce M Simpson 			return (EADDRNOTAVAIL);
2472e2956804SAndrey V. Elsukov 		}
2473d74b7baeSGleb Smirnoff 	}
2474e3044071SGleb Smirnoff 	NET_EPOCH_EXIT(et);	/* XXXGL: unsafe ifp */
24758f002c6cSBruce M Simpson 	imo = in6p_findmoptions(inp);
2476e3044071SGleb Smirnoff 	imo->im6o_multicast_ifp = ifp;
24778f002c6cSBruce M Simpson 	INP_WUNLOCK(inp);
24788f002c6cSBruce M Simpson 
24798f002c6cSBruce M Simpson 	return (0);
24808f002c6cSBruce M Simpson }
24818f002c6cSBruce M Simpson 
24828f002c6cSBruce M Simpson /*
24838f002c6cSBruce M Simpson  * Atomically set source filters on a socket for an IPv6 multicast group.
2484f00876fbSMark Johnston  *
2485d74b7baeSGleb Smirnoff  * XXXGL: unsafely exits epoch with ifnet pointer
24868f002c6cSBruce M Simpson  */
24878f002c6cSBruce M Simpson static int
in6p_set_source_filters(struct inpcb * inp,struct sockopt * sopt)24888f002c6cSBruce M Simpson in6p_set_source_filters(struct inpcb *inp, struct sockopt *sopt)
24898f002c6cSBruce M Simpson {
24908f002c6cSBruce M Simpson 	struct __msfilterreq	 msfr;
2491d74b7baeSGleb Smirnoff 	struct epoch_tracker	 et;
24928f002c6cSBruce M Simpson 	sockunion_t		*gsa;
24938f002c6cSBruce M Simpson 	struct ifnet		*ifp;
24948f002c6cSBruce M Simpson 	struct in6_mfilter	*imf;
24958f002c6cSBruce M Simpson 	struct ip6_moptions	*imo;
24968f002c6cSBruce M Simpson 	struct in6_multi		*inm;
24978f002c6cSBruce M Simpson 	int			 error;
24988f002c6cSBruce M Simpson 
24998f002c6cSBruce M Simpson 	error = sooptcopyin(sopt, &msfr, sizeof(struct __msfilterreq),
25008f002c6cSBruce M Simpson 	    sizeof(struct __msfilterreq));
25018f002c6cSBruce M Simpson 	if (error)
25028f002c6cSBruce M Simpson 		return (error);
25038f002c6cSBruce M Simpson 
25040dc5893eSBruce M Simpson 	if (msfr.msfr_nsrcs > in6_mcast_maxsocksrc)
25050dc5893eSBruce M Simpson 		return (ENOBUFS);
25060dc5893eSBruce M Simpson 
25070dc5893eSBruce M Simpson 	if (msfr.msfr_fmode != MCAST_EXCLUDE &&
25080dc5893eSBruce M Simpson 	    msfr.msfr_fmode != MCAST_INCLUDE)
25098f002c6cSBruce M Simpson 		return (EINVAL);
25108f002c6cSBruce M Simpson 
25118f002c6cSBruce M Simpson 	if (msfr.msfr_group.ss_family != AF_INET6 ||
25128f002c6cSBruce M Simpson 	    msfr.msfr_group.ss_len != sizeof(struct sockaddr_in6))
25138f002c6cSBruce M Simpson 		return (EINVAL);
25148f002c6cSBruce M Simpson 
25158f002c6cSBruce M Simpson 	gsa = (sockunion_t *)&msfr.msfr_group;
25168f002c6cSBruce M Simpson 	if (!IN6_IS_ADDR_MULTICAST(&gsa->sin6.sin6_addr))
25178f002c6cSBruce M Simpson 		return (EINVAL);
25188f002c6cSBruce M Simpson 
25198f002c6cSBruce M Simpson 	gsa->sin6.sin6_port = 0;	/* ignore port */
25208f002c6cSBruce M Simpson 
2521d74b7baeSGleb Smirnoff 	NET_EPOCH_ENTER(et);
25228f002c6cSBruce M Simpson 	ifp = ifnet_byindex(msfr.msfr_ifindex);
2523d74b7baeSGleb Smirnoff 	NET_EPOCH_EXIT(et);
25248f002c6cSBruce M Simpson 	if (ifp == NULL)
25258f002c6cSBruce M Simpson 		return (EADDRNOTAVAIL);
252629dc7bc6SBruce M Simpson 	(void)in6_setscope(&gsa->sin6.sin6_addr, ifp, NULL);
25278f002c6cSBruce M Simpson 
25288f002c6cSBruce M Simpson 	/*
25298f002c6cSBruce M Simpson 	 * Take the INP write lock.
25308f002c6cSBruce M Simpson 	 * Check if this socket is a member of this group.
25318f002c6cSBruce M Simpson 	 */
25328f002c6cSBruce M Simpson 	imo = in6p_findmoptions(inp);
253359854ecfSHans Petter Selasky 	imf = im6o_match_group(imo, ifp, &gsa->sa);
253459854ecfSHans Petter Selasky 	if (imf == NULL) {
25358f002c6cSBruce M Simpson 		error = EADDRNOTAVAIL;
25368f002c6cSBruce M Simpson 		goto out_in6p_locked;
25378f002c6cSBruce M Simpson 	}
253859854ecfSHans Petter Selasky 	inm = imf->im6f_in6m;
25398f002c6cSBruce M Simpson 
25408f002c6cSBruce M Simpson 	/*
25418f002c6cSBruce M Simpson 	 * Begin state merge transaction at socket layer.
25428f002c6cSBruce M Simpson 	 */
25438f002c6cSBruce M Simpson 	INP_WLOCK_ASSERT(inp);
25448f002c6cSBruce M Simpson 
25458f002c6cSBruce M Simpson 	imf->im6f_st[1] = msfr.msfr_fmode;
25468f002c6cSBruce M Simpson 
25478f002c6cSBruce M Simpson 	/*
25488f002c6cSBruce M Simpson 	 * Apply any new source filters, if present.
25498f002c6cSBruce M Simpson 	 * Make a copy of the user-space source vector so
25508f002c6cSBruce M Simpson 	 * that we may copy them with a single copyin. This
25518f002c6cSBruce M Simpson 	 * allows us to deal with page faults up-front.
25528f002c6cSBruce M Simpson 	 */
25538f002c6cSBruce M Simpson 	if (msfr.msfr_nsrcs > 0) {
25548f002c6cSBruce M Simpson 		struct in6_msource	*lims;
25558f002c6cSBruce M Simpson 		struct sockaddr_in6	*psin;
25568f002c6cSBruce M Simpson 		struct sockaddr_storage	*kss, *pkss;
25578f002c6cSBruce M Simpson 		int			 i;
25588f002c6cSBruce M Simpson 
25598f002c6cSBruce M Simpson 		INP_WUNLOCK(inp);
25608f002c6cSBruce M Simpson 
25618f002c6cSBruce M Simpson 		CTR2(KTR_MLD, "%s: loading %lu source list entries",
25628f002c6cSBruce M Simpson 		    __func__, (unsigned long)msfr.msfr_nsrcs);
25638f002c6cSBruce M Simpson 		kss = malloc(sizeof(struct sockaddr_storage) * msfr.msfr_nsrcs,
25648f002c6cSBruce M Simpson 		    M_TEMP, M_WAITOK);
25658f002c6cSBruce M Simpson 		error = copyin(msfr.msfr_srcs, kss,
25668f002c6cSBruce M Simpson 		    sizeof(struct sockaddr_storage) * msfr.msfr_nsrcs);
25678f002c6cSBruce M Simpson 		if (error) {
25688f002c6cSBruce M Simpson 			free(kss, M_TEMP);
25698f002c6cSBruce M Simpson 			return (error);
25708f002c6cSBruce M Simpson 		}
25718f002c6cSBruce M Simpson 
25728f002c6cSBruce M Simpson 		INP_WLOCK(inp);
25738f002c6cSBruce M Simpson 
25748f002c6cSBruce M Simpson 		/*
25758f002c6cSBruce M Simpson 		 * Mark all source filters as UNDEFINED at t1.
25768f002c6cSBruce M Simpson 		 * Restore new group filter mode, as im6f_leave()
25778f002c6cSBruce M Simpson 		 * will set it to INCLUDE.
25788f002c6cSBruce M Simpson 		 */
25798f002c6cSBruce M Simpson 		im6f_leave(imf);
25808f002c6cSBruce M Simpson 		imf->im6f_st[1] = msfr.msfr_fmode;
25818f002c6cSBruce M Simpson 
25828f002c6cSBruce M Simpson 		/*
25838f002c6cSBruce M Simpson 		 * Update socket layer filters at t1, lazy-allocating
25848f002c6cSBruce M Simpson 		 * new entries. This saves a bunch of memory at the
25858f002c6cSBruce M Simpson 		 * cost of one RB_FIND() per source entry; duplicate
25868f002c6cSBruce M Simpson 		 * entries in the msfr_nsrcs vector are ignored.
25878f002c6cSBruce M Simpson 		 * If we encounter an error, rollback transaction.
25888f002c6cSBruce M Simpson 		 *
25898f002c6cSBruce M Simpson 		 * XXX This too could be replaced with a set-symmetric
25908f002c6cSBruce M Simpson 		 * difference like loop to avoid walking from root
25918f002c6cSBruce M Simpson 		 * every time, as the key space is common.
25928f002c6cSBruce M Simpson 		 */
25938f002c6cSBruce M Simpson 		for (i = 0, pkss = kss; i < msfr.msfr_nsrcs; i++, pkss++) {
25948f002c6cSBruce M Simpson 			psin = (struct sockaddr_in6 *)pkss;
25958f002c6cSBruce M Simpson 			if (psin->sin6_family != AF_INET6) {
25968f002c6cSBruce M Simpson 				error = EAFNOSUPPORT;
25978f002c6cSBruce M Simpson 				break;
25988f002c6cSBruce M Simpson 			}
25998f002c6cSBruce M Simpson 			if (psin->sin6_len != sizeof(struct sockaddr_in6)) {
26008f002c6cSBruce M Simpson 				error = EINVAL;
26018f002c6cSBruce M Simpson 				break;
26028f002c6cSBruce M Simpson 			}
260329dc7bc6SBruce M Simpson 			if (IN6_IS_ADDR_MULTICAST(&psin->sin6_addr)) {
260429dc7bc6SBruce M Simpson 				error = EINVAL;
260529dc7bc6SBruce M Simpson 				break;
260629dc7bc6SBruce M Simpson 			}
260729dc7bc6SBruce M Simpson 			/*
260829dc7bc6SBruce M Simpson 			 * TODO: Validate embedded scope ID in source
260929dc7bc6SBruce M Simpson 			 * list entry against passed-in ifp, if and only
261029dc7bc6SBruce M Simpson 			 * if source list filter entry is iface or node local.
261129dc7bc6SBruce M Simpson 			 */
261229dc7bc6SBruce M Simpson 			in6_clearscope(&psin->sin6_addr);
26138f002c6cSBruce M Simpson 			error = im6f_get_source(imf, psin, &lims);
26148f002c6cSBruce M Simpson 			if (error)
26158f002c6cSBruce M Simpson 				break;
26168f002c6cSBruce M Simpson 			lims->im6sl_st[1] = imf->im6f_st[1];
26178f002c6cSBruce M Simpson 		}
26188f002c6cSBruce M Simpson 		free(kss, M_TEMP);
26198f002c6cSBruce M Simpson 	}
26208f002c6cSBruce M Simpson 
26218f002c6cSBruce M Simpson 	if (error)
26228f002c6cSBruce M Simpson 		goto out_im6f_rollback;
26238f002c6cSBruce M Simpson 
26248f002c6cSBruce M Simpson 	INP_WLOCK_ASSERT(inp);
2625f3e1324bSStephen Hurd 	IN6_MULTI_LIST_LOCK();
26268f002c6cSBruce M Simpson 
26278f002c6cSBruce M Simpson 	/*
26288f002c6cSBruce M Simpson 	 * Begin state merge transaction at MLD layer.
26298f002c6cSBruce M Simpson 	 */
26308f002c6cSBruce M Simpson 	CTR1(KTR_MLD, "%s: merge inm state", __func__);
26318f002c6cSBruce M Simpson 	error = in6m_merge(inm, imf);
26324fd91336SAndrey V. Elsukov 	if (error)
26338f002c6cSBruce M Simpson 		CTR1(KTR_MLD, "%s: failed to merge inm state", __func__);
26344fd91336SAndrey V. Elsukov 	else {
26358f002c6cSBruce M Simpson 		CTR1(KTR_MLD, "%s: doing mld downcall", __func__);
26368f002c6cSBruce M Simpson 		error = mld_change_state(inm, 0);
26378f002c6cSBruce M Simpson 		if (error)
26388f002c6cSBruce M Simpson 			CTR1(KTR_MLD, "%s: failed mld downcall", __func__);
26394fd91336SAndrey V. Elsukov 	}
26408f002c6cSBruce M Simpson 
2641f3e1324bSStephen Hurd 	IN6_MULTI_LIST_UNLOCK();
26428f002c6cSBruce M Simpson 
26438f002c6cSBruce M Simpson out_im6f_rollback:
26448f002c6cSBruce M Simpson 	if (error)
26458f002c6cSBruce M Simpson 		im6f_rollback(imf);
26468f002c6cSBruce M Simpson 	else
26478f002c6cSBruce M Simpson 		im6f_commit(imf);
26488f002c6cSBruce M Simpson 
26498f002c6cSBruce M Simpson 	im6f_reap(imf);
26508f002c6cSBruce M Simpson 
26518f002c6cSBruce M Simpson out_in6p_locked:
26528f002c6cSBruce M Simpson 	INP_WUNLOCK(inp);
26538f002c6cSBruce M Simpson 	return (error);
26548f002c6cSBruce M Simpson }
26558f002c6cSBruce M Simpson 
26568f002c6cSBruce M Simpson /*
26578f002c6cSBruce M Simpson  * Set the IP multicast options in response to user setsockopt().
26588f002c6cSBruce M Simpson  *
26598f002c6cSBruce M Simpson  * Many of the socket options handled in this function duplicate the
26608f002c6cSBruce M Simpson  * functionality of socket options in the regular unicast API. However,
26618f002c6cSBruce M Simpson  * it is not possible to merge the duplicate code, because the idempotence
26628f002c6cSBruce M Simpson  * of the IPv6 multicast part of the BSD Sockets API must be preserved;
26638f002c6cSBruce M Simpson  * the effects of these options must be treated as separate and distinct.
26648f002c6cSBruce M Simpson  *
26658f002c6cSBruce M Simpson  * SMPng: XXX: Unlocked read of inp_socket believed OK.
26668f002c6cSBruce M Simpson  */
26678f002c6cSBruce M Simpson int
ip6_setmoptions(struct inpcb * inp,struct sockopt * sopt)26688f002c6cSBruce M Simpson ip6_setmoptions(struct inpcb *inp, struct sockopt *sopt)
26698f002c6cSBruce M Simpson {
267033cde130SBruce M Simpson 	struct ip6_moptions	*im6o;
26718f002c6cSBruce M Simpson 	int			 error;
26728f002c6cSBruce M Simpson 
26738f002c6cSBruce M Simpson 	error = 0;
26748f002c6cSBruce M Simpson 
26758624f434SGleb Smirnoff 	/* If socket is neither of type SOCK_RAW or SOCK_DGRAM, reject it. */
26768624f434SGleb Smirnoff 	if (inp->inp_socket->so_proto->pr_type != SOCK_RAW &&
26778624f434SGleb Smirnoff 	     inp->inp_socket->so_proto->pr_type != SOCK_DGRAM)
26788f002c6cSBruce M Simpson 		return (EOPNOTSUPP);
26798f002c6cSBruce M Simpson 
26808f002c6cSBruce M Simpson 	switch (sopt->sopt_name) {
26818f002c6cSBruce M Simpson 	case IPV6_MULTICAST_IF:
26828f002c6cSBruce M Simpson 		error = in6p_set_multicast_if(inp, sopt);
26838f002c6cSBruce M Simpson 		break;
26848f002c6cSBruce M Simpson 
26858f002c6cSBruce M Simpson 	case IPV6_MULTICAST_HOPS: {
26868f002c6cSBruce M Simpson 		int hlim;
26878f002c6cSBruce M Simpson 
26888f002c6cSBruce M Simpson 		if (sopt->sopt_valsize != sizeof(int)) {
26898f002c6cSBruce M Simpson 			error = EINVAL;
26908f002c6cSBruce M Simpson 			break;
26918f002c6cSBruce M Simpson 		}
26928f002c6cSBruce M Simpson 		error = sooptcopyin(sopt, &hlim, sizeof(hlim), sizeof(int));
26938f002c6cSBruce M Simpson 		if (error)
26948f002c6cSBruce M Simpson 			break;
26958f002c6cSBruce M Simpson 		if (hlim < -1 || hlim > 255) {
26968f002c6cSBruce M Simpson 			error = EINVAL;
26978f002c6cSBruce M Simpson 			break;
269833cde130SBruce M Simpson 		} else if (hlim == -1) {
269933cde130SBruce M Simpson 			hlim = V_ip6_defmcasthlim;
27008f002c6cSBruce M Simpson 		}
270133cde130SBruce M Simpson 		im6o = in6p_findmoptions(inp);
270233cde130SBruce M Simpson 		im6o->im6o_multicast_hlim = hlim;
27038f002c6cSBruce M Simpson 		INP_WUNLOCK(inp);
27048f002c6cSBruce M Simpson 		break;
27058f002c6cSBruce M Simpson 	}
27068f002c6cSBruce M Simpson 
27078f002c6cSBruce M Simpson 	case IPV6_MULTICAST_LOOP: {
27088f002c6cSBruce M Simpson 		u_int loop;
27098f002c6cSBruce M Simpson 
27108f002c6cSBruce M Simpson 		/*
27118f002c6cSBruce M Simpson 		 * Set the loopback flag for outgoing multicast packets.
271233cde130SBruce M Simpson 		 * Must be zero or one.
27138f002c6cSBruce M Simpson 		 */
27148f002c6cSBruce M Simpson 		if (sopt->sopt_valsize != sizeof(u_int)) {
27158f002c6cSBruce M Simpson 			error = EINVAL;
27168f002c6cSBruce M Simpson 			break;
27178f002c6cSBruce M Simpson 		}
27188f002c6cSBruce M Simpson 		error = sooptcopyin(sopt, &loop, sizeof(u_int), sizeof(u_int));
27198f002c6cSBruce M Simpson 		if (error)
27208f002c6cSBruce M Simpson 			break;
272133cde130SBruce M Simpson 		if (loop > 1) {
272233cde130SBruce M Simpson 			error = EINVAL;
272333cde130SBruce M Simpson 			break;
272433cde130SBruce M Simpson 		}
272533cde130SBruce M Simpson 		im6o = in6p_findmoptions(inp);
272633cde130SBruce M Simpson 		im6o->im6o_multicast_loop = loop;
27278f002c6cSBruce M Simpson 		INP_WUNLOCK(inp);
27288f002c6cSBruce M Simpson 		break;
27298f002c6cSBruce M Simpson 	}
27308f002c6cSBruce M Simpson 
27318f002c6cSBruce M Simpson 	case IPV6_JOIN_GROUP:
27328f002c6cSBruce M Simpson 	case MCAST_JOIN_GROUP:
27338f002c6cSBruce M Simpson 	case MCAST_JOIN_SOURCE_GROUP:
27348f002c6cSBruce M Simpson 		error = in6p_join_group(inp, sopt);
27358f002c6cSBruce M Simpson 		break;
27368f002c6cSBruce M Simpson 
27378f002c6cSBruce M Simpson 	case IPV6_LEAVE_GROUP:
27388f002c6cSBruce M Simpson 	case MCAST_LEAVE_GROUP:
27398f002c6cSBruce M Simpson 	case MCAST_LEAVE_SOURCE_GROUP:
27408f002c6cSBruce M Simpson 		error = in6p_leave_group(inp, sopt);
27418f002c6cSBruce M Simpson 		break;
27428f002c6cSBruce M Simpson 
27438f002c6cSBruce M Simpson 	case MCAST_BLOCK_SOURCE:
27448f002c6cSBruce M Simpson 	case MCAST_UNBLOCK_SOURCE:
27458f002c6cSBruce M Simpson 		error = in6p_block_unblock_source(inp, sopt);
27468f002c6cSBruce M Simpson 		break;
27478f002c6cSBruce M Simpson 
27488f002c6cSBruce M Simpson 	case IPV6_MSFILTER:
27498f002c6cSBruce M Simpson 		error = in6p_set_source_filters(inp, sopt);
27508f002c6cSBruce M Simpson 		break;
27518f002c6cSBruce M Simpson 
27528f002c6cSBruce M Simpson 	default:
27538f002c6cSBruce M Simpson 		error = EOPNOTSUPP;
27548f002c6cSBruce M Simpson 		break;
27558f002c6cSBruce M Simpson 	}
27568f002c6cSBruce M Simpson 
27578f002c6cSBruce M Simpson 	INP_UNLOCK_ASSERT(inp);
27588f002c6cSBruce M Simpson 
27598f002c6cSBruce M Simpson 	return (error);
27608f002c6cSBruce M Simpson }
27618f002c6cSBruce M Simpson 
27628f002c6cSBruce M Simpson /*
27638f002c6cSBruce M Simpson  * Expose MLD's multicast filter mode and source list(s) to userland,
27648f002c6cSBruce M Simpson  * keyed by (ifindex, group).
27658f002c6cSBruce M Simpson  * The filter mode is written out as a uint32_t, followed by
27668f002c6cSBruce M Simpson  * 0..n of struct in6_addr.
27678f002c6cSBruce M Simpson  * For use by ifmcstat(8).
27688f002c6cSBruce M Simpson  * SMPng: NOTE: unlocked read of ifindex space.
27698f002c6cSBruce M Simpson  */
27708f002c6cSBruce M Simpson static int
sysctl_ip6_mcast_filters(SYSCTL_HANDLER_ARGS)27718f002c6cSBruce M Simpson sysctl_ip6_mcast_filters(SYSCTL_HANDLER_ARGS)
27728f002c6cSBruce M Simpson {
277329dc7bc6SBruce M Simpson 	struct in6_addr			 mcaddr;
27748f002c6cSBruce M Simpson 	struct in6_addr			 src;
2775a68cc388SGleb Smirnoff 	struct epoch_tracker		 et;
27768f002c6cSBruce M Simpson 	struct ifnet			*ifp;
27778f002c6cSBruce M Simpson 	struct ifmultiaddr		*ifma;
27788f002c6cSBruce M Simpson 	struct in6_multi		*inm;
27798f002c6cSBruce M Simpson 	struct ip6_msource		*ims;
27808f002c6cSBruce M Simpson 	int				*name;
27818f002c6cSBruce M Simpson 	int				 retval;
27828f002c6cSBruce M Simpson 	u_int				 namelen;
27838f002c6cSBruce M Simpson 	uint32_t			 fmode, ifindex;
27848f002c6cSBruce M Simpson #ifdef KTR
27858f002c6cSBruce M Simpson 	char				 ip6tbuf[INET6_ADDRSTRLEN];
27868f002c6cSBruce M Simpson #endif
27878f002c6cSBruce M Simpson 
27888f002c6cSBruce M Simpson 	name = (int *)arg1;
27898f002c6cSBruce M Simpson 	namelen = arg2;
27908f002c6cSBruce M Simpson 
27918f002c6cSBruce M Simpson 	if (req->newptr != NULL)
27928f002c6cSBruce M Simpson 		return (EPERM);
27938f002c6cSBruce M Simpson 
27948f002c6cSBruce M Simpson 	/* int: ifindex + 4 * 32 bits of IPv6 address */
27958f002c6cSBruce M Simpson 	if (namelen != 5)
27968f002c6cSBruce M Simpson 		return (EINVAL);
27978f002c6cSBruce M Simpson 
279829dc7bc6SBruce M Simpson 	memcpy(&mcaddr, &name[1], sizeof(struct in6_addr));
279929dc7bc6SBruce M Simpson 	if (!IN6_IS_ADDR_MULTICAST(&mcaddr)) {
28008f002c6cSBruce M Simpson 		CTR2(KTR_MLD, "%s: group %s is not multicast",
280129dc7bc6SBruce M Simpson 		    __func__, ip6_sprintf(ip6tbuf, &mcaddr));
28028f002c6cSBruce M Simpson 		return (EINVAL);
28038f002c6cSBruce M Simpson 	}
28048f002c6cSBruce M Simpson 
2805d74b7baeSGleb Smirnoff 	ifindex = name[0];
2806b8a6e03fSGleb Smirnoff 	NET_EPOCH_ENTER(et);
28078f002c6cSBruce M Simpson 	ifp = ifnet_byindex(ifindex);
28088f002c6cSBruce M Simpson 	if (ifp == NULL) {
2809b8a6e03fSGleb Smirnoff 		NET_EPOCH_EXIT(et);
28108f002c6cSBruce M Simpson 		CTR2(KTR_MLD, "%s: no ifp for ifindex %u",
28118f002c6cSBruce M Simpson 		    __func__, ifindex);
28128f002c6cSBruce M Simpson 		return (ENOENT);
28138f002c6cSBruce M Simpson 	}
281429dc7bc6SBruce M Simpson 	/*
281529dc7bc6SBruce M Simpson 	 * Internal MLD lookups require that scope/zone ID is set.
281629dc7bc6SBruce M Simpson 	 */
281729dc7bc6SBruce M Simpson 	(void)in6_setscope(&mcaddr, ifp, NULL);
28188f002c6cSBruce M Simpson 
28198f002c6cSBruce M Simpson 	retval = sysctl_wire_old_buffer(req,
28208f002c6cSBruce M Simpson 	    sizeof(uint32_t) + (in6_mcast_maxgrpsrc * sizeof(struct in6_addr)));
2821b8a6e03fSGleb Smirnoff 	if (retval) {
2822b8a6e03fSGleb Smirnoff 		NET_EPOCH_EXIT(et);
28238f002c6cSBruce M Simpson 		return (retval);
2824b8a6e03fSGleb Smirnoff 	}
28258f002c6cSBruce M Simpson 
28268f002c6cSBruce M Simpson 	IN6_MULTI_LOCK();
2827f3e1324bSStephen Hurd 	IN6_MULTI_LIST_LOCK();
2828d7c5a620SMatt Macy 	CK_STAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) {
28292cd6ad76SHans Petter Selasky 		inm = in6m_ifmultiaddr_get_inm(ifma);
28302cd6ad76SHans Petter Selasky 		if (inm == NULL)
28318f002c6cSBruce M Simpson 			continue;
283229dc7bc6SBruce M Simpson 		if (!IN6_ARE_ADDR_EQUAL(&inm->in6m_addr, &mcaddr))
28338f002c6cSBruce M Simpson 			continue;
28348f002c6cSBruce M Simpson 		fmode = inm->in6m_st[1].iss_fmode;
28358f002c6cSBruce M Simpson 		retval = SYSCTL_OUT(req, &fmode, sizeof(uint32_t));
28368f002c6cSBruce M Simpson 		if (retval != 0)
28378f002c6cSBruce M Simpson 			break;
28388f002c6cSBruce M Simpson 		RB_FOREACH(ims, ip6_msource_tree, &inm->in6m_srcs) {
28398f002c6cSBruce M Simpson 			CTR2(KTR_MLD, "%s: visit node %p", __func__, ims);
28408f002c6cSBruce M Simpson 			/*
28418f002c6cSBruce M Simpson 			 * Only copy-out sources which are in-mode.
28428f002c6cSBruce M Simpson 			 */
28438f002c6cSBruce M Simpson 			if (fmode != im6s_get_mode(inm, ims, 1)) {
28448f002c6cSBruce M Simpson 				CTR1(KTR_MLD, "%s: skip non-in-mode",
28458f002c6cSBruce M Simpson 				    __func__);
28468f002c6cSBruce M Simpson 				continue;
28478f002c6cSBruce M Simpson 			}
28488f002c6cSBruce M Simpson 			src = ims->im6s_addr;
28498f002c6cSBruce M Simpson 			retval = SYSCTL_OUT(req, &src,
28508f002c6cSBruce M Simpson 			    sizeof(struct in6_addr));
28518f002c6cSBruce M Simpson 			if (retval != 0)
28528f002c6cSBruce M Simpson 				break;
28538f002c6cSBruce M Simpson 		}
28548f002c6cSBruce M Simpson 	}
2855f3e1324bSStephen Hurd 	IN6_MULTI_LIST_UNLOCK();
28568f002c6cSBruce M Simpson 	IN6_MULTI_UNLOCK();
2857b8a6e03fSGleb Smirnoff 	NET_EPOCH_EXIT(et);
28588f002c6cSBruce M Simpson 
28598f002c6cSBruce M Simpson 	return (retval);
28608f002c6cSBruce M Simpson }
28618f002c6cSBruce M Simpson 
28628f002c6cSBruce M Simpson #ifdef KTR
28638f002c6cSBruce M Simpson 
28648f002c6cSBruce M Simpson static const char *in6m_modestrs[] = { "un", "in", "ex" };
28658f002c6cSBruce M Simpson 
28668f002c6cSBruce M Simpson static const char *
in6m_mode_str(const int mode)28678f002c6cSBruce M Simpson in6m_mode_str(const int mode)
28688f002c6cSBruce M Simpson {
28698f002c6cSBruce M Simpson 
28708f002c6cSBruce M Simpson 	if (mode >= MCAST_UNDEFINED && mode <= MCAST_EXCLUDE)
28718f002c6cSBruce M Simpson 		return (in6m_modestrs[mode]);
28728f002c6cSBruce M Simpson 	return ("??");
28738f002c6cSBruce M Simpson }
28748f002c6cSBruce M Simpson 
28758f002c6cSBruce M Simpson static const char *in6m_statestrs[] = {
28768f002c6cSBruce M Simpson 	"not-member",
28778f002c6cSBruce M Simpson 	"silent",
287864cce803SSébastien BINI 	"reporting",
28798f002c6cSBruce M Simpson 	"idle",
28808f002c6cSBruce M Simpson 	"lazy",
28818f002c6cSBruce M Simpson 	"sleeping",
28828f002c6cSBruce M Simpson 	"awakening",
28838f002c6cSBruce M Simpson 	"query-pending",
28848f002c6cSBruce M Simpson 	"sg-query-pending",
28858f002c6cSBruce M Simpson 	"leaving"
28868f002c6cSBruce M Simpson };
288764cce803SSébastien BINI _Static_assert(nitems(in6m_statestrs) ==
288864cce803SSébastien BINI     MLD_LEAVING_MEMBER - MLD_NOT_MEMBER + 1, "Missing MLD group state");
28898f002c6cSBruce M Simpson 
28908f002c6cSBruce M Simpson static const char *
in6m_state_str(const int state)28918f002c6cSBruce M Simpson in6m_state_str(const int state)
28928f002c6cSBruce M Simpson {
28938f002c6cSBruce M Simpson 
28948f002c6cSBruce M Simpson 	if (state >= MLD_NOT_MEMBER && state <= MLD_LEAVING_MEMBER)
28958f002c6cSBruce M Simpson 		return (in6m_statestrs[state]);
28968f002c6cSBruce M Simpson 	return ("??");
28978f002c6cSBruce M Simpson }
28988f002c6cSBruce M Simpson 
28998f002c6cSBruce M Simpson /*
29008f002c6cSBruce M Simpson  * Dump an in6_multi structure to the console.
29018f002c6cSBruce M Simpson  */
29028f002c6cSBruce M Simpson void
in6m_print(const struct in6_multi * inm)29038f002c6cSBruce M Simpson in6m_print(const struct in6_multi *inm)
29048f002c6cSBruce M Simpson {
29058f002c6cSBruce M Simpson 	int t;
29068f002c6cSBruce M Simpson 	char ip6tbuf[INET6_ADDRSTRLEN];
29078f002c6cSBruce M Simpson 
29085b65b8bcSAlexander Kabaev 	if ((ktr_mask & KTR_MLD) == 0)
29098f002c6cSBruce M Simpson 		return;
29108f002c6cSBruce M Simpson 
29118f002c6cSBruce M Simpson 	printf("%s: --- begin in6m %p ---\n", __func__, inm);
29128f002c6cSBruce M Simpson 	printf("addr %s ifp %p(%s) ifma %p\n",
29138f002c6cSBruce M Simpson 	    ip6_sprintf(ip6tbuf, &inm->in6m_addr),
29148f002c6cSBruce M Simpson 	    inm->in6m_ifp,
2915e74966f6SAndrey V. Elsukov 	    if_name(inm->in6m_ifp),
29168f002c6cSBruce M Simpson 	    inm->in6m_ifma);
29178f002c6cSBruce M Simpson 	printf("timer %u state %s refcount %u scq.len %u\n",
29188f002c6cSBruce M Simpson 	    inm->in6m_timer,
29198f002c6cSBruce M Simpson 	    in6m_state_str(inm->in6m_state),
29208f002c6cSBruce M Simpson 	    inm->in6m_refcount,
2921a99c84d4SGleb Smirnoff 	    mbufq_len(&inm->in6m_scq));
29228f002c6cSBruce M Simpson 	printf("mli %p nsrc %lu sctimer %u scrv %u\n",
29238f002c6cSBruce M Simpson 	    inm->in6m_mli,
29248f002c6cSBruce M Simpson 	    inm->in6m_nsrc,
29258f002c6cSBruce M Simpson 	    inm->in6m_sctimer,
29268f002c6cSBruce M Simpson 	    inm->in6m_scrv);
29278f002c6cSBruce M Simpson 	for (t = 0; t < 2; t++) {
29288f002c6cSBruce M Simpson 		printf("t%d: fmode %s asm %u ex %u in %u rec %u\n", t,
29298f002c6cSBruce M Simpson 		    in6m_mode_str(inm->in6m_st[t].iss_fmode),
29308f002c6cSBruce M Simpson 		    inm->in6m_st[t].iss_asm,
29318f002c6cSBruce M Simpson 		    inm->in6m_st[t].iss_ex,
29328f002c6cSBruce M Simpson 		    inm->in6m_st[t].iss_in,
29338f002c6cSBruce M Simpson 		    inm->in6m_st[t].iss_rec);
29348f002c6cSBruce M Simpson 	}
29358f002c6cSBruce M Simpson 	printf("%s: --- end in6m %p ---\n", __func__, inm);
29368f002c6cSBruce M Simpson }
29378f002c6cSBruce M Simpson 
29388f002c6cSBruce M Simpson #else /* !KTR */
29398f002c6cSBruce M Simpson 
29408f002c6cSBruce M Simpson void
in6m_print(const struct in6_multi * inm)29418f002c6cSBruce M Simpson in6m_print(const struct in6_multi *inm)
29428f002c6cSBruce M Simpson {
29438f002c6cSBruce M Simpson 
29448f002c6cSBruce M Simpson }
29458f002c6cSBruce M Simpson 
29468f002c6cSBruce M Simpson #endif /* KTR */
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