The Design and Implementation of the FreeBSD Operating System, Second Edition
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FreeBSD/Linux Kernel Cross Reference
sys/netinet/igmp.c

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    1 /*-
    2  * Copyright (c) 2007-2009 Bruce Simpson.
    3  * Copyright (c) 1988 Stephen Deering.
    4  * Copyright (c) 1992, 1993
    5  *      The Regents of the University of California.  All rights reserved.
    6  *
    7  * This code is derived from software contributed to Berkeley by
    8  * Stephen Deering of Stanford University.
    9  *
   10  * Redistribution and use in source and binary forms, with or without
   11  * modification, are permitted provided that the following conditions
   12  * are met:
   13  * 1. Redistributions of source code must retain the above copyright
   14  *    notice, this list of conditions and the following disclaimer.
   15  * 2. Redistributions in binary form must reproduce the above copyright
   16  *    notice, this list of conditions and the following disclaimer in the
   17  *    documentation and/or other materials provided with the distribution.
   18  * 4. Neither the name of the University nor the names of its contributors
   19  *    may be used to endorse or promote products derived from this software
   20  *    without specific prior written permission.
   21  *
   22  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
   23  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
   24  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
   25  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
   26  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
   27  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
   28  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
   29  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
   30  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
   31  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
   32  * SUCH DAMAGE.
   33  *
   34  *      @(#)igmp.c      8.1 (Berkeley) 7/19/93
   35  */
   36 
   37 /*
   38  * Internet Group Management Protocol (IGMP) routines.
   39  * [RFC1112, RFC2236, RFC3376]
   40  *
   41  * Written by Steve Deering, Stanford, May 1988.
   42  * Modified by Rosen Sharma, Stanford, Aug 1994.
   43  * Modified by Bill Fenner, Xerox PARC, Feb 1995.
   44  * Modified to fully comply to IGMPv2 by Bill Fenner, Oct 1995.
   45  * Significantly rewritten for IGMPv3, VIMAGE, and SMP by Bruce Simpson.
   46  *
   47  * MULTICAST Revision: 3.5.1.4
   48  */
   49 
   50 #include <sys/cdefs.h>
   51 __FBSDID("$FreeBSD: releng/8.0/sys/netinet/igmp.c 196019 2009-08-01 19:26:27Z rwatson $");
   52 
   53 #include <sys/param.h>
   54 #include <sys/systm.h>
   55 #include <sys/module.h>
   56 #include <sys/malloc.h>
   57 #include <sys/mbuf.h>
   58 #include <sys/socket.h>
   59 #include <sys/protosw.h>
   60 #include <sys/kernel.h>
   61 #include <sys/sysctl.h>
   62 #include <sys/ktr.h>
   63 #include <sys/condvar.h>
   64 
   65 #include <net/if.h>
   66 #include <net/netisr.h>
   67 #include <net/vnet.h>
   68 
   69 #include <netinet/in.h>
   70 #include <netinet/in_var.h>
   71 #include <netinet/in_systm.h>
   72 #include <netinet/ip.h>
   73 #include <netinet/ip_var.h>
   74 #include <netinet/ip_options.h>
   75 #include <netinet/igmp.h>
   76 #include <netinet/igmp_var.h>
   77 
   78 #include <machine/in_cksum.h>
   79 
   80 #include <security/mac/mac_framework.h>
   81 
   82 #ifndef KTR_IGMPV3
   83 #define KTR_IGMPV3 KTR_INET
   84 #endif
   85 
   86 static struct igmp_ifinfo *
   87                 igi_alloc_locked(struct ifnet *);
   88 static void     igi_delete_locked(const struct ifnet *);
   89 static void     igmp_dispatch_queue(struct ifqueue *, int, const int);
   90 static void     igmp_fasttimo_vnet(void);
   91 static void     igmp_final_leave(struct in_multi *, struct igmp_ifinfo *);
   92 static int      igmp_handle_state_change(struct in_multi *,
   93                     struct igmp_ifinfo *);
   94 static int      igmp_initial_join(struct in_multi *, struct igmp_ifinfo *);
   95 static int      igmp_input_v1_query(struct ifnet *, const struct ip *,
   96                     const struct igmp *);
   97 static int      igmp_input_v2_query(struct ifnet *, const struct ip *,
   98                     const struct igmp *);
   99 static int      igmp_input_v3_query(struct ifnet *, const struct ip *,
  100                     /*const*/ struct igmpv3 *);
  101 static int      igmp_input_v3_group_query(struct in_multi *,
  102                     struct igmp_ifinfo *, int, /*const*/ struct igmpv3 *);
  103 static int      igmp_input_v1_report(struct ifnet *, /*const*/ struct ip *,
  104                     /*const*/ struct igmp *);
  105 static int      igmp_input_v2_report(struct ifnet *, /*const*/ struct ip *,
  106                     /*const*/ struct igmp *);
  107 static void     igmp_intr(struct mbuf *);
  108 static int      igmp_isgroupreported(const struct in_addr);
  109 static struct mbuf *
  110                 igmp_ra_alloc(void);
  111 #ifdef KTR
  112 static char *   igmp_rec_type_to_str(const int);
  113 #endif
  114 static void     igmp_set_version(struct igmp_ifinfo *, const int);
  115 static void     igmp_slowtimo_vnet(void);
  116 static int      igmp_v1v2_queue_report(struct in_multi *, const int);
  117 static void     igmp_v1v2_process_group_timer(struct in_multi *, const int);
  118 static void     igmp_v1v2_process_querier_timers(struct igmp_ifinfo *);
  119 static void     igmp_v2_update_group(struct in_multi *, const int);
  120 static void     igmp_v3_cancel_link_timers(struct igmp_ifinfo *);
  121 static void     igmp_v3_dispatch_general_query(struct igmp_ifinfo *);
  122 static struct mbuf *
  123                 igmp_v3_encap_report(struct ifnet *, struct mbuf *);
  124 static int      igmp_v3_enqueue_group_record(struct ifqueue *,
  125                     struct in_multi *, const int, const int, const int);
  126 static int      igmp_v3_enqueue_filter_change(struct ifqueue *,
  127                     struct in_multi *);
  128 static void     igmp_v3_process_group_timers(struct igmp_ifinfo *,
  129                     struct ifqueue *, struct ifqueue *, struct in_multi *,
  130                     const int);
  131 static int      igmp_v3_merge_state_changes(struct in_multi *,
  132                     struct ifqueue *);
  133 static void     igmp_v3_suppress_group_record(struct in_multi *);
  134 static int      sysctl_igmp_default_version(SYSCTL_HANDLER_ARGS);
  135 static int      sysctl_igmp_gsr(SYSCTL_HANDLER_ARGS);
  136 static int      sysctl_igmp_ifinfo(SYSCTL_HANDLER_ARGS);
  137 
  138 static const struct netisr_handler igmp_nh = {
  139         .nh_name = "igmp",
  140         .nh_handler = igmp_intr,
  141         .nh_proto = NETISR_IGMP,
  142         .nh_policy = NETISR_POLICY_SOURCE,
  143 };
  144 
  145 /*
  146  * System-wide globals.
  147  *
  148  * Unlocked access to these is OK, except for the global IGMP output
  149  * queue. The IGMP subsystem lock ends up being system-wide for the moment,
  150  * because all VIMAGEs have to share a global output queue, as netisrs
  151  * themselves are not virtualized.
  152  *
  153  * Locking:
  154  *  * The permitted lock order is: IN_MULTI_LOCK, IGMP_LOCK, IF_ADDR_LOCK.
  155  *    Any may be taken independently; if any are held at the same
  156  *    time, the above lock order must be followed.
  157  *  * All output is delegated to the netisr.
  158  *    Now that Giant has been eliminated, the netisr may be inlined.
  159  *  * IN_MULTI_LOCK covers in_multi.
  160  *  * IGMP_LOCK covers igmp_ifinfo and any global variables in this file,
  161  *    including the output queue.
  162  *  * IF_ADDR_LOCK covers if_multiaddrs, which is used for a variety of
  163  *    per-link state iterators.
  164  *  * igmp_ifinfo is valid as long as PF_INET is attached to the interface,
  165  *    therefore it is not refcounted.
  166  *    We allow unlocked reads of igmp_ifinfo when accessed via in_multi.
  167  *
  168  * Reference counting
  169  *  * IGMP acquires its own reference every time an in_multi is passed to
  170  *    it and the group is being joined for the first time.
  171  *  * IGMP releases its reference(s) on in_multi in a deferred way,
  172  *    because the operations which process the release run as part of
  173  *    a loop whose control variables are directly affected by the release
  174  *    (that, and not recursing on the IF_ADDR_LOCK).
  175  *
  176  * VIMAGE: Each in_multi corresponds to an ifp, and each ifp corresponds
  177  * to a vnet in ifp->if_vnet.
  178  *
  179  * SMPng: XXX We may potentially race operations on ifma_protospec.
  180  * The problem is that we currently lack a clean way of taking the
  181  * IF_ADDR_LOCK() between the ifnet and in layers w/o recursing,
  182  * as anything which modifies ifma needs to be covered by that lock.
  183  * So check for ifma_protospec being NULL before proceeding.
  184  */
  185 struct mtx               igmp_mtx;
  186 
  187 struct mbuf             *m_raopt;                /* Router Alert option */
  188 MALLOC_DEFINE(M_IGMP, "igmp", "igmp state");
  189 
  190 /*
  191  * VIMAGE-wide globals.
  192  *
  193  * The IGMPv3 timers themselves need to run per-image, however,
  194  * protosw timers run globally (see tcp).
  195  * An ifnet can only be in one vimage at a time, and the loopback
  196  * ifnet, loif, is itself virtualized.
  197  * It would otherwise be possible to seriously hose IGMP state,
  198  * and create inconsistencies in upstream multicast routing, if you have
  199  * multiple VIMAGEs running on the same link joining different multicast
  200  * groups, UNLESS the "primary IP address" is different. This is because
  201  * IGMP for IPv4 does not force link-local addresses to be used for each
  202  * node, unlike MLD for IPv6.
  203  * Obviously the IGMPv3 per-interface state has per-vimage granularity
  204  * also as a result.
  205  *
  206  * FUTURE: Stop using IFP_TO_IA/INADDR_ANY, and use source address selection
  207  * policy to control the address used by IGMP on the link.
  208  */
  209 static VNET_DEFINE(int, interface_timers_running);      /* IGMPv3 general
  210                                                          * query response */
  211 static VNET_DEFINE(int, state_change_timers_running);   /* IGMPv3 state-change
  212                                                          * retransmit */
  213 static VNET_DEFINE(int, current_state_timers_running);  /* IGMPv1/v2 host
  214                                                          * report; IGMPv3 g/sg
  215                                                          * query response */
  216 
  217 #define V_interface_timers_running      VNET(interface_timers_running)
  218 #define V_state_change_timers_running   VNET(state_change_timers_running)
  219 #define V_current_state_timers_running  VNET(current_state_timers_running)
  220 
  221 static VNET_DEFINE(LIST_HEAD(, igmp_ifinfo), igi_head);
  222 static VNET_DEFINE(struct igmpstat, igmpstat) = {
  223         .igps_version = IGPS_VERSION_3,
  224         .igps_len = sizeof(struct igmpstat),
  225 };
  226 static VNET_DEFINE(struct timeval, igmp_gsrdelay) = {10, 0};
  227 
  228 #define V_igi_head                      VNET(igi_head)
  229 #define V_igmpstat                      VNET(igmpstat)
  230 #define V_igmp_gsrdelay                 VNET(igmp_gsrdelay)
  231 
  232 static VNET_DEFINE(int, igmp_recvifkludge) = 1;
  233 static VNET_DEFINE(int, igmp_sendra) = 1;
  234 static VNET_DEFINE(int, igmp_sendlocal) = 1;
  235 static VNET_DEFINE(int, igmp_v1enable) = 1;
  236 static VNET_DEFINE(int, igmp_v2enable) = 1;
  237 static VNET_DEFINE(int, igmp_legacysupp);
  238 static VNET_DEFINE(int, igmp_default_version) = IGMP_VERSION_3;
  239 
  240 #define V_igmp_recvifkludge             VNET(igmp_recvifkludge)
  241 #define V_igmp_sendra                   VNET(igmp_sendra)
  242 #define V_igmp_sendlocal                VNET(igmp_sendlocal)
  243 #define V_igmp_v1enable                 VNET(igmp_v1enable)
  244 #define V_igmp_v2enable                 VNET(igmp_v2enable)
  245 #define V_igmp_legacysupp               VNET(igmp_legacysupp)
  246 #define V_igmp_default_version          VNET(igmp_default_version)
  247 
  248 /*
  249  * Virtualized sysctls.
  250  */
  251 SYSCTL_VNET_STRUCT(_net_inet_igmp, IGMPCTL_STATS, stats, CTLFLAG_RW,
  252     &VNET_NAME(igmpstat), igmpstat, "");
  253 SYSCTL_VNET_INT(_net_inet_igmp, OID_AUTO, recvifkludge, CTLFLAG_RW,
  254     &VNET_NAME(igmp_recvifkludge), 0,
  255     "Rewrite IGMPv1/v2 reports from 0.0.0.0 to contain subnet address");
  256 SYSCTL_VNET_INT(_net_inet_igmp, OID_AUTO, sendra, CTLFLAG_RW,
  257     &VNET_NAME(igmp_sendra), 0,
  258     "Send IP Router Alert option in IGMPv2/v3 messages");
  259 SYSCTL_VNET_INT(_net_inet_igmp, OID_AUTO, sendlocal, CTLFLAG_RW,
  260     &VNET_NAME(igmp_sendlocal), 0,
  261     "Send IGMP membership reports for 224.0.0.0/24 groups");
  262 SYSCTL_VNET_INT(_net_inet_igmp, OID_AUTO, v1enable, CTLFLAG_RW,
  263     &VNET_NAME(igmp_v1enable), 0,
  264     "Enable backwards compatibility with IGMPv1");
  265 SYSCTL_VNET_INT(_net_inet_igmp, OID_AUTO, v2enable, CTLFLAG_RW,
  266     &VNET_NAME(igmp_v2enable), 0,
  267     "Enable backwards compatibility with IGMPv2");
  268 SYSCTL_VNET_INT(_net_inet_igmp, OID_AUTO, legacysupp, CTLFLAG_RW,
  269     &VNET_NAME(igmp_legacysupp), 0,
  270     "Allow v1/v2 reports to suppress v3 group responses");
  271 SYSCTL_VNET_PROC(_net_inet_igmp, OID_AUTO, default_version,
  272     CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_MPSAFE,
  273     &VNET_NAME(igmp_default_version), 0, sysctl_igmp_default_version, "I",
  274     "Default version of IGMP to run on each interface");
  275 SYSCTL_VNET_PROC(_net_inet_igmp, OID_AUTO, gsrdelay,
  276     CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_MPSAFE,
  277     &VNET_NAME(igmp_gsrdelay.tv_sec), 0, sysctl_igmp_gsr, "I",
  278     "Rate limit for IGMPv3 Group-and-Source queries in seconds");
  279 
  280 /*
  281  * Non-virtualized sysctls.
  282  */
  283 SYSCTL_NODE(_net_inet_igmp, OID_AUTO, ifinfo, CTLFLAG_RD | CTLFLAG_MPSAFE,
  284     sysctl_igmp_ifinfo, "Per-interface IGMPv3 state");
  285 
  286 static __inline void
  287 igmp_save_context(struct mbuf *m, struct ifnet *ifp)
  288 {
  289 
  290 #ifdef VIMAGE
  291         m->m_pkthdr.header = ifp->if_vnet;
  292 #endif /* VIMAGE */
  293         m->m_pkthdr.flowid = ifp->if_index;
  294 }
  295 
  296 static __inline void
  297 igmp_scrub_context(struct mbuf *m)
  298 {
  299 
  300         m->m_pkthdr.header = NULL;
  301         m->m_pkthdr.flowid = 0;
  302 }
  303 
  304 #ifdef KTR
  305 static __inline char *
  306 inet_ntoa_haddr(in_addr_t haddr)
  307 {
  308         struct in_addr ia;
  309 
  310         ia.s_addr = htonl(haddr);
  311         return (inet_ntoa(ia));
  312 }
  313 #endif
  314 
  315 /*
  316  * Restore context from a queued IGMP output chain.
  317  * Return saved ifindex.
  318  *
  319  * VIMAGE: The assertion is there to make sure that we
  320  * actually called CURVNET_SET() with what's in the mbuf chain.
  321  */
  322 static __inline uint32_t
  323 igmp_restore_context(struct mbuf *m)
  324 {
  325 
  326 #ifdef notyet
  327 #if defined(VIMAGE) && defined(INVARIANTS)
  328         KASSERT(curvnet == (m->m_pkthdr.header),
  329             ("%s: called when curvnet was not restored", __func__));
  330 #endif
  331 #endif
  332         return (m->m_pkthdr.flowid);
  333 }
  334 
  335 /*
  336  * Retrieve or set default IGMP version.
  337  *
  338  * VIMAGE: Assume curvnet set by caller.
  339  * SMPng: NOTE: Serialized by IGMP lock.
  340  */
  341 static int
  342 sysctl_igmp_default_version(SYSCTL_HANDLER_ARGS)
  343 {
  344         int      error;
  345         int      new;
  346 
  347         error = sysctl_wire_old_buffer(req, sizeof(int));
  348         if (error)
  349                 return (error);
  350 
  351         IGMP_LOCK();
  352 
  353         new = V_igmp_default_version;
  354 
  355         error = sysctl_handle_int(oidp, &new, 0, req);
  356         if (error || !req->newptr)
  357                 goto out_locked;
  358 
  359         if (new < IGMP_VERSION_1 || new > IGMP_VERSION_3) {
  360                 error = EINVAL;
  361                 goto out_locked;
  362         }
  363 
  364         CTR2(KTR_IGMPV3, "change igmp_default_version from %d to %d",
  365              V_igmp_default_version, new);
  366 
  367         V_igmp_default_version = new;
  368 
  369 out_locked:
  370         IGMP_UNLOCK();
  371         return (error);
  372 }
  373 
  374 /*
  375  * Retrieve or set threshold between group-source queries in seconds.
  376  *
  377  * VIMAGE: Assume curvnet set by caller.
  378  * SMPng: NOTE: Serialized by IGMP lock.
  379  */
  380 static int
  381 sysctl_igmp_gsr(SYSCTL_HANDLER_ARGS)
  382 {
  383         int error;
  384         int i;
  385 
  386         error = sysctl_wire_old_buffer(req, sizeof(int));
  387         if (error)
  388                 return (error);
  389 
  390         IGMP_LOCK();
  391 
  392         i = V_igmp_gsrdelay.tv_sec;
  393 
  394         error = sysctl_handle_int(oidp, &i, 0, req);
  395         if (error || !req->newptr)
  396                 goto out_locked;
  397 
  398         if (i < -1 || i >= 60) {
  399                 error = EINVAL;
  400                 goto out_locked;
  401         }
  402 
  403         CTR2(KTR_IGMPV3, "change igmp_gsrdelay from %d to %d",
  404              V_igmp_gsrdelay.tv_sec, i);
  405         V_igmp_gsrdelay.tv_sec = i;
  406 
  407 out_locked:
  408         IGMP_UNLOCK();
  409         return (error);
  410 }
  411 
  412 /*
  413  * Expose struct igmp_ifinfo to userland, keyed by ifindex.
  414  * For use by ifmcstat(8).
  415  *
  416  * SMPng: NOTE: Does an unlocked ifindex space read.
  417  * VIMAGE: Assume curvnet set by caller. The node handler itself
  418  * is not directly virtualized.
  419  */
  420 static int
  421 sysctl_igmp_ifinfo(SYSCTL_HANDLER_ARGS)
  422 {
  423         int                     *name;
  424         int                      error;
  425         u_int                    namelen;
  426         struct ifnet            *ifp;
  427         struct igmp_ifinfo      *igi;
  428 
  429         name = (int *)arg1;
  430         namelen = arg2;
  431 
  432         if (req->newptr != NULL)
  433                 return (EPERM);
  434 
  435         if (namelen != 1)
  436                 return (EINVAL);
  437 
  438         error = sysctl_wire_old_buffer(req, sizeof(struct igmp_ifinfo));
  439         if (error)
  440                 return (error);
  441 
  442         IN_MULTI_LOCK();
  443         IGMP_LOCK();
  444 
  445         if (name[0] <= 0 || name[0] > V_if_index) {
  446                 error = ENOENT;
  447                 goto out_locked;
  448         }
  449 
  450         error = ENOENT;
  451 
  452         ifp = ifnet_byindex(name[0]);
  453         if (ifp == NULL)
  454                 goto out_locked;
  455 
  456         LIST_FOREACH(igi, &V_igi_head, igi_link) {
  457                 if (ifp == igi->igi_ifp) {
  458                         error = SYSCTL_OUT(req, igi,
  459                             sizeof(struct igmp_ifinfo));
  460                         break;
  461                 }
  462         }
  463 
  464 out_locked:
  465         IGMP_UNLOCK();
  466         IN_MULTI_UNLOCK();
  467         return (error);
  468 }
  469 
  470 /*
  471  * Dispatch an entire queue of pending packet chains
  472  * using the netisr.
  473  * VIMAGE: Assumes the vnet pointer has been set.
  474  */
  475 static void
  476 igmp_dispatch_queue(struct ifqueue *ifq, int limit, const int loop)
  477 {
  478         struct mbuf *m;
  479 
  480         for (;;) {
  481                 _IF_DEQUEUE(ifq, m);
  482                 if (m == NULL)
  483                         break;
  484                 CTR3(KTR_IGMPV3, "%s: dispatch %p from %p", __func__, ifq, m);
  485                 if (loop)
  486                         m->m_flags |= M_IGMP_LOOP;
  487                 netisr_dispatch(NETISR_IGMP, m);
  488                 if (--limit == 0)
  489                         break;
  490         }
  491 }
  492 
  493 /*
  494  * Filter outgoing IGMP report state by group.
  495  *
  496  * Reports are ALWAYS suppressed for ALL-HOSTS (224.0.0.1).
  497  * If the net.inet.igmp.sendlocal sysctl is 0, then IGMP reports are
  498  * disabled for all groups in the 224.0.0.0/24 link-local scope. However,
  499  * this may break certain IGMP snooping switches which rely on the old
  500  * report behaviour.
  501  *
  502  * Return zero if the given group is one for which IGMP reports
  503  * should be suppressed, or non-zero if reports should be issued.
  504  */
  505 static __inline int
  506 igmp_isgroupreported(const struct in_addr addr)
  507 {
  508 
  509         if (in_allhosts(addr) ||
  510             ((!V_igmp_sendlocal && IN_LOCAL_GROUP(ntohl(addr.s_addr)))))
  511                 return (0);
  512 
  513         return (1);
  514 }
  515 
  516 /*
  517  * Construct a Router Alert option to use in outgoing packets.
  518  */
  519 static struct mbuf *
  520 igmp_ra_alloc(void)
  521 {
  522         struct mbuf     *m;
  523         struct ipoption *p;
  524 
  525         MGET(m, M_DONTWAIT, MT_DATA);
  526         p = mtod(m, struct ipoption *);
  527         p->ipopt_dst.s_addr = INADDR_ANY;
  528         p->ipopt_list[0] = IPOPT_RA;    /* Router Alert Option */
  529         p->ipopt_list[1] = 0x04;        /* 4 bytes long */
  530         p->ipopt_list[2] = IPOPT_EOL;   /* End of IP option list */
  531         p->ipopt_list[3] = 0x00;        /* pad byte */
  532         m->m_len = sizeof(p->ipopt_dst) + p->ipopt_list[1];
  533 
  534         return (m);
  535 }
  536 
  537 /*
  538  * Attach IGMP when PF_INET is attached to an interface.
  539  */
  540 struct igmp_ifinfo *
  541 igmp_domifattach(struct ifnet *ifp)
  542 {
  543         struct igmp_ifinfo *igi;
  544 
  545         CTR3(KTR_IGMPV3, "%s: called for ifp %p(%s)",
  546             __func__, ifp, ifp->if_xname);
  547 
  548         IGMP_LOCK();
  549 
  550         igi = igi_alloc_locked(ifp);
  551         if (!(ifp->if_flags & IFF_MULTICAST))
  552                 igi->igi_flags |= IGIF_SILENT;
  553 
  554         IGMP_UNLOCK();
  555 
  556         return (igi);
  557 }
  558 
  559 /*
  560  * VIMAGE: assume curvnet set by caller.
  561  */
  562 static struct igmp_ifinfo *
  563 igi_alloc_locked(/*const*/ struct ifnet *ifp)
  564 {
  565         struct igmp_ifinfo *igi;
  566 
  567         IGMP_LOCK_ASSERT();
  568 
  569         igi = malloc(sizeof(struct igmp_ifinfo), M_IGMP, M_NOWAIT|M_ZERO);
  570         if (igi == NULL)
  571                 goto out;
  572 
  573         igi->igi_ifp = ifp;
  574         igi->igi_version = V_igmp_default_version;
  575         igi->igi_flags = 0;
  576         igi->igi_rv = IGMP_RV_INIT;
  577         igi->igi_qi = IGMP_QI_INIT;
  578         igi->igi_qri = IGMP_QRI_INIT;
  579         igi->igi_uri = IGMP_URI_INIT;
  580 
  581         SLIST_INIT(&igi->igi_relinmhead);
  582 
  583         /*
  584          * Responses to general queries are subject to bounds.
  585          */
  586         IFQ_SET_MAXLEN(&igi->igi_gq, IGMP_MAX_RESPONSE_PACKETS);
  587 
  588         LIST_INSERT_HEAD(&V_igi_head, igi, igi_link);
  589 
  590         CTR2(KTR_IGMPV3, "allocate igmp_ifinfo for ifp %p(%s)",
  591              ifp, ifp->if_xname);
  592 
  593 out:
  594         return (igi);
  595 }
  596 
  597 /*
  598  * Hook for ifdetach.
  599  *
  600  * NOTE: Some finalization tasks need to run before the protocol domain
  601  * is detached, but also before the link layer does its cleanup.
  602  *
  603  * SMPNG: igmp_ifdetach() needs to take IF_ADDR_LOCK().
  604  * XXX This is also bitten by unlocked ifma_protospec access.
  605  */
  606 void
  607 igmp_ifdetach(struct ifnet *ifp)
  608 {
  609         struct igmp_ifinfo      *igi;
  610         struct ifmultiaddr      *ifma;
  611         struct in_multi         *inm, *tinm;
  612 
  613         CTR3(KTR_IGMPV3, "%s: called for ifp %p(%s)", __func__, ifp,
  614             ifp->if_xname);
  615 
  616         IGMP_LOCK();
  617 
  618         igi = ((struct in_ifinfo *)ifp->if_afdata[AF_INET])->ii_igmp;
  619         if (igi->igi_version == IGMP_VERSION_3) {
  620                 IF_ADDR_LOCK(ifp);
  621                 TAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) {
  622                         if (ifma->ifma_addr->sa_family != AF_INET ||
  623                             ifma->ifma_protospec == NULL)
  624                                 continue;
  625 #if 0
  626                         KASSERT(ifma->ifma_protospec != NULL,
  627                             ("%s: ifma_protospec is NULL", __func__));
  628 #endif
  629                         inm = (struct in_multi *)ifma->ifma_protospec;
  630                         if (inm->inm_state == IGMP_LEAVING_MEMBER) {
  631                                 SLIST_INSERT_HEAD(&igi->igi_relinmhead,
  632                                     inm, inm_nrele);
  633                         }
  634                         inm_clear_recorded(inm);
  635                 }
  636                 IF_ADDR_UNLOCK(ifp);
  637                 /*
  638                  * Free the in_multi reference(s) for this IGMP lifecycle.
  639                  */
  640                 SLIST_FOREACH_SAFE(inm, &igi->igi_relinmhead, inm_nrele,
  641                     tinm) {
  642                         SLIST_REMOVE_HEAD(&igi->igi_relinmhead, inm_nrele);
  643                         inm_release_locked(inm);
  644                 }
  645         }
  646 
  647         IGMP_UNLOCK();
  648 }
  649 
  650 /*
  651  * Hook for domifdetach.
  652  */
  653 void
  654 igmp_domifdetach(struct ifnet *ifp)
  655 {
  656         struct igmp_ifinfo *igi;
  657 
  658         CTR3(KTR_IGMPV3, "%s: called for ifp %p(%s)",
  659             __func__, ifp, ifp->if_xname);
  660 
  661         IGMP_LOCK();
  662 
  663         igi = ((struct in_ifinfo *)ifp->if_afdata[AF_INET])->ii_igmp;
  664         igi_delete_locked(ifp);
  665 
  666         IGMP_UNLOCK();
  667 }
  668 
  669 static void
  670 igi_delete_locked(const struct ifnet *ifp)
  671 {
  672         struct igmp_ifinfo *igi, *tigi;
  673 
  674         CTR3(KTR_IGMPV3, "%s: freeing igmp_ifinfo for ifp %p(%s)",
  675             __func__, ifp, ifp->if_xname);
  676 
  677         IGMP_LOCK_ASSERT();
  678 
  679         LIST_FOREACH_SAFE(igi, &V_igi_head, igi_link, tigi) {
  680                 if (igi->igi_ifp == ifp) {
  681                         /*
  682                          * Free deferred General Query responses.
  683                          */
  684                         _IF_DRAIN(&igi->igi_gq);
  685 
  686                         LIST_REMOVE(igi, igi_link);
  687 
  688                         KASSERT(SLIST_EMPTY(&igi->igi_relinmhead),
  689                             ("%s: there are dangling in_multi references",
  690                             __func__));
  691 
  692                         free(igi, M_IGMP);
  693                         return;
  694                 }
  695         }
  696 
  697 #ifdef INVARIANTS
  698         panic("%s: igmp_ifinfo not found for ifp %p\n", __func__,  ifp);
  699 #endif
  700 }
  701 
  702 /*
  703  * Process a received IGMPv1 query.
  704  * Return non-zero if the message should be dropped.
  705  *
  706  * VIMAGE: The curvnet pointer is derived from the input ifp.
  707  */
  708 static int
  709 igmp_input_v1_query(struct ifnet *ifp, const struct ip *ip,
  710     const struct igmp *igmp)
  711 {
  712         struct ifmultiaddr      *ifma;
  713         struct igmp_ifinfo      *igi;
  714         struct in_multi         *inm;
  715 
  716         /*
  717          * IGMPv1 Host Mmembership Queries SHOULD always be addressed to
  718          * 224.0.0.1. They are always treated as General Queries.
  719          * igmp_group is always ignored. Do not drop it as a userland
  720          * daemon may wish to see it.
  721          * XXX SMPng: unlocked increments in igmpstat assumed atomic.
  722          */
  723         if (!in_allhosts(ip->ip_dst) || !in_nullhost(igmp->igmp_group)) {
  724                 IGMPSTAT_INC(igps_rcv_badqueries);
  725                 return (0);
  726         }
  727         IGMPSTAT_INC(igps_rcv_gen_queries);
  728 
  729         IN_MULTI_LOCK();
  730         IGMP_LOCK();
  731 
  732         igi = ((struct in_ifinfo *)ifp->if_afdata[AF_INET])->ii_igmp;
  733         KASSERT(igi != NULL, ("%s: no igmp_ifinfo for ifp %p", __func__, ifp));
  734 
  735         if (igi->igi_flags & IGIF_LOOPBACK) {
  736                 CTR2(KTR_IGMPV3, "ignore v1 query on IGIF_LOOPBACK ifp %p(%s)",
  737                     ifp, ifp->if_xname);
  738                 goto out_locked;
  739         }
  740 
  741         /*
  742          * Switch to IGMPv1 host compatibility mode.
  743          */
  744         igmp_set_version(igi, IGMP_VERSION_1);
  745 
  746         CTR2(KTR_IGMPV3, "process v1 query on ifp %p(%s)", ifp, ifp->if_xname);
  747 
  748         /*
  749          * Start the timers in all of our group records
  750          * for the interface on which the query arrived,
  751          * except those which are already running.
  752          */
  753         IF_ADDR_LOCK(ifp);
  754         TAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) {
  755                 if (ifma->ifma_addr->sa_family != AF_INET ||
  756                     ifma->ifma_protospec == NULL)
  757                         continue;
  758                 inm = (struct in_multi *)ifma->ifma_protospec;
  759                 if (inm->inm_timer != 0)
  760                         continue;
  761                 switch (inm->inm_state) {
  762                 case IGMP_NOT_MEMBER:
  763                 case IGMP_SILENT_MEMBER:
  764                         break;
  765                 case IGMP_G_QUERY_PENDING_MEMBER:
  766                 case IGMP_SG_QUERY_PENDING_MEMBER:
  767                 case IGMP_REPORTING_MEMBER:
  768                 case IGMP_IDLE_MEMBER:
  769                 case IGMP_LAZY_MEMBER:
  770                 case IGMP_SLEEPING_MEMBER:
  771                 case IGMP_AWAKENING_MEMBER:
  772                         inm->inm_state = IGMP_REPORTING_MEMBER;
  773                         inm->inm_timer = IGMP_RANDOM_DELAY(
  774                             IGMP_V1V2_MAX_RI * PR_FASTHZ);
  775                         V_current_state_timers_running = 1;
  776                         break;
  777                 case IGMP_LEAVING_MEMBER:
  778                         break;
  779                 }
  780         }
  781         IF_ADDR_UNLOCK(ifp);
  782 
  783 out_locked:
  784         IGMP_UNLOCK();
  785         IN_MULTI_UNLOCK();
  786 
  787         return (0);
  788 }
  789 
  790 /*
  791  * Process a received IGMPv2 general or group-specific query.
  792  */
  793 static int
  794 igmp_input_v2_query(struct ifnet *ifp, const struct ip *ip,
  795     const struct igmp *igmp)
  796 {
  797         struct ifmultiaddr      *ifma;
  798         struct igmp_ifinfo      *igi;
  799         struct in_multi         *inm;
  800         int                      is_general_query;
  801         uint16_t                 timer;
  802 
  803         is_general_query = 0;
  804 
  805         /*
  806          * Validate address fields upfront.
  807          * XXX SMPng: unlocked increments in igmpstat assumed atomic.
  808          */
  809         if (in_nullhost(igmp->igmp_group)) {
  810                 /*
  811                  * IGMPv2 General Query.
  812                  * If this was not sent to the all-hosts group, ignore it.
  813                  */
  814                 if (!in_allhosts(ip->ip_dst))
  815                         return (0);
  816                 IGMPSTAT_INC(igps_rcv_gen_queries);
  817                 is_general_query = 1;
  818         } else {
  819                 /* IGMPv2 Group-Specific Query. */
  820                 IGMPSTAT_INC(igps_rcv_group_queries);
  821         }
  822 
  823         IN_MULTI_LOCK();
  824         IGMP_LOCK();
  825 
  826         igi = ((struct in_ifinfo *)ifp->if_afdata[AF_INET])->ii_igmp;
  827         KASSERT(igi != NULL, ("%s: no igmp_ifinfo for ifp %p", __func__, ifp));
  828 
  829         if (igi->igi_flags & IGIF_LOOPBACK) {
  830                 CTR2(KTR_IGMPV3, "ignore v2 query on IGIF_LOOPBACK ifp %p(%s)",
  831                     ifp, ifp->if_xname);
  832                 goto out_locked;
  833         }
  834 
  835         /*
  836          * Ignore v2 query if in v1 Compatibility Mode.
  837          */
  838         if (igi->igi_version == IGMP_VERSION_1)
  839                 goto out_locked;
  840 
  841         igmp_set_version(igi, IGMP_VERSION_2);
  842 
  843         timer = igmp->igmp_code * PR_FASTHZ / IGMP_TIMER_SCALE;
  844         if (timer == 0)
  845                 timer = 1;
  846 
  847         if (is_general_query) {
  848                 /*
  849                  * For each reporting group joined on this
  850                  * interface, kick the report timer.
  851                  */
  852                 CTR2(KTR_IGMPV3, "process v2 general query on ifp %p(%s)",
  853                     ifp, ifp->if_xname);
  854                 IF_ADDR_LOCK(ifp);
  855                 TAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) {
  856                         if (ifma->ifma_addr->sa_family != AF_INET ||
  857                             ifma->ifma_protospec == NULL)
  858                                 continue;
  859                         inm = (struct in_multi *)ifma->ifma_protospec;
  860                         igmp_v2_update_group(inm, timer);
  861                 }
  862                 IF_ADDR_UNLOCK(ifp);
  863         } else {
  864                 /*
  865                  * Group-specific IGMPv2 query, we need only
  866                  * look up the single group to process it.
  867                  */
  868                 inm = inm_lookup(ifp, igmp->igmp_group);
  869                 if (inm != NULL) {
  870                         CTR3(KTR_IGMPV3, "process v2 query %s on ifp %p(%s)",
  871                             inet_ntoa(igmp->igmp_group), ifp, ifp->if_xname);
  872                         igmp_v2_update_group(inm, timer);
  873                 }
  874         }
  875 
  876 out_locked:
  877         IGMP_UNLOCK();
  878         IN_MULTI_UNLOCK();
  879 
  880         return (0);
  881 }
  882 
  883 /*
  884  * Update the report timer on a group in response to an IGMPv2 query.
  885  *
  886  * If we are becoming the reporting member for this group, start the timer.
  887  * If we already are the reporting member for this group, and timer is
  888  * below the threshold, reset it.
  889  *
  890  * We may be updating the group for the first time since we switched
  891  * to IGMPv3. If we are, then we must clear any recorded source lists,
  892  * and transition to REPORTING state; the group timer is overloaded
  893  * for group and group-source query responses. 
  894  *
  895  * Unlike IGMPv3, the delay per group should be jittered
  896  * to avoid bursts of IGMPv2 reports.
  897  */
  898 static void
  899 igmp_v2_update_group(struct in_multi *inm, const int timer)
  900 {
  901 
  902         CTR4(KTR_IGMPV3, "%s: %s/%s timer=%d", __func__,
  903             inet_ntoa(inm->inm_addr), inm->inm_ifp->if_xname, timer);
  904 
  905         IN_MULTI_LOCK_ASSERT();
  906 
  907         switch (inm->inm_state) {
  908         case IGMP_NOT_MEMBER:
  909         case IGMP_SILENT_MEMBER:
  910                 break;
  911         case IGMP_REPORTING_MEMBER:
  912                 if (inm->inm_timer != 0 &&
  913                     inm->inm_timer <= timer) {
  914                         CTR1(KTR_IGMPV3, "%s: REPORTING and timer running, "
  915                             "skipping.", __func__);
  916                         break;
  917                 }
  918                 /* FALLTHROUGH */
  919         case IGMP_SG_QUERY_PENDING_MEMBER:
  920         case IGMP_G_QUERY_PENDING_MEMBER:
  921         case IGMP_IDLE_MEMBER:
  922         case IGMP_LAZY_MEMBER:
  923         case IGMP_AWAKENING_MEMBER:
  924                 CTR1(KTR_IGMPV3, "%s: ->REPORTING", __func__);
  925                 inm->inm_state = IGMP_REPORTING_MEMBER;
  926                 inm->inm_timer = IGMP_RANDOM_DELAY(timer);
  927                 V_current_state_timers_running = 1;
  928                 break;
  929         case IGMP_SLEEPING_MEMBER:
  930                 CTR1(KTR_IGMPV3, "%s: ->AWAKENING", __func__);
  931                 inm->inm_state = IGMP_AWAKENING_MEMBER;
  932                 break;
  933         case IGMP_LEAVING_MEMBER:
  934                 break;
  935         }
  936 }
  937 
  938 /*
  939  * Process a received IGMPv3 general, group-specific or
  940  * group-and-source-specific query.
  941  * Assumes m has already been pulled up to the full IGMP message length.
  942  * Return 0 if successful, otherwise an appropriate error code is returned.
  943  */
  944 static int
  945 igmp_input_v3_query(struct ifnet *ifp, const struct ip *ip,
  946     /*const*/ struct igmpv3 *igmpv3)
  947 {
  948         struct igmp_ifinfo      *igi;
  949         struct in_multi         *inm;
  950         int                      is_general_query;
  951         uint32_t                 maxresp, nsrc, qqi;
  952         uint16_t                 timer;
  953         uint8_t                  qrv;
  954 
  955         is_general_query = 0;
  956 
  957         CTR2(KTR_IGMPV3, "process v3 query on ifp %p(%s)", ifp, ifp->if_xname);
  958 
  959         maxresp = igmpv3->igmp_code;    /* in 1/10ths of a second */
  960         if (maxresp >= 128) {
  961                 maxresp = IGMP_MANT(igmpv3->igmp_code) <<
  962                           (IGMP_EXP(igmpv3->igmp_code) + 3);
  963         }
  964 
  965         /*
  966          * Robustness must never be less than 2 for on-wire IGMPv3.
  967          * FUTURE: Check if ifp has IGIF_LOOPBACK set, as we will make
  968          * an exception for interfaces whose IGMPv3 state changes
  969          * are redirected to loopback (e.g. MANET).
  970          */
  971         qrv = IGMP_QRV(igmpv3->igmp_misc);
  972         if (qrv < 2) {
  973                 CTR3(KTR_IGMPV3, "%s: clamping qrv %d to %d", __func__,
  974                     qrv, IGMP_RV_INIT);
  975                 qrv = IGMP_RV_INIT;
  976         }
  977 
  978         qqi = igmpv3->igmp_qqi;
  979         if (qqi >= 128) {
  980                 qqi = IGMP_MANT(igmpv3->igmp_qqi) <<
  981                      (IGMP_EXP(igmpv3->igmp_qqi) + 3);
  982         }
  983 
  984         timer = maxresp * PR_FASTHZ / IGMP_TIMER_SCALE;
  985         if (timer == 0)
  986                 timer = 1;
  987 
  988         nsrc = ntohs(igmpv3->igmp_numsrc);
  989 
  990         /*
  991          * Validate address fields and versions upfront before
  992          * accepting v3 query.
  993          * XXX SMPng: Unlocked access to igmpstat counters here.
  994          */
  995         if (in_nullhost(igmpv3->igmp_group)) {
  996                 /*
  997                  * IGMPv3 General Query.
  998                  *
  999                  * General Queries SHOULD be directed to 224.0.0.1.
 1000                  * A general query with a source list has undefined
 1001                  * behaviour; discard it.
 1002                  */
 1003                 IGMPSTAT_INC(igps_rcv_gen_queries);
 1004                 if (!in_allhosts(ip->ip_dst) || nsrc > 0) {
 1005                         IGMPSTAT_INC(igps_rcv_badqueries);
 1006                         return (0);
 1007                 }
 1008                 is_general_query = 1;
 1009         } else {
 1010                 /* Group or group-source specific query. */
 1011                 if (nsrc == 0)
 1012                         IGMPSTAT_INC(igps_rcv_group_queries);
 1013                 else
 1014                         IGMPSTAT_INC(igps_rcv_gsr_queries);
 1015         }
 1016 
 1017         IN_MULTI_LOCK();
 1018         IGMP_LOCK();
 1019 
 1020         igi = ((struct in_ifinfo *)ifp->if_afdata[AF_INET])->ii_igmp;
 1021         KASSERT(igi != NULL, ("%s: no igmp_ifinfo for ifp %p", __func__, ifp));
 1022 
 1023         if (igi->igi_flags & IGIF_LOOPBACK) {
 1024                 CTR2(KTR_IGMPV3, "ignore v3 query on IGIF_LOOPBACK ifp %p(%s)",
 1025                     ifp, ifp->if_xname);
 1026                 goto out_locked;
 1027         }
 1028 
 1029         /*
 1030          * Discard the v3 query if we're in Compatibility Mode.
 1031          * The RFC is not obviously worded that hosts need to stay in
 1032          * compatibility mode until the Old Version Querier Present
 1033          * timer expires.
 1034          */
 1035         if (igi->igi_version != IGMP_VERSION_3) {
 1036                 CTR3(KTR_IGMPV3, "ignore v3 query in v%d mode on ifp %p(%s)",
 1037                     igi->igi_version, ifp, ifp->if_xname);
 1038                 goto out_locked;
 1039         }
 1040 
 1041         igmp_set_version(igi, IGMP_VERSION_3);
 1042         igi->igi_rv = qrv;
 1043         igi->igi_qi = qqi;
 1044         igi->igi_qri = maxresp;
 1045 
 1046         CTR4(KTR_IGMPV3, "%s: qrv %d qi %d qri %d", __func__, qrv, qqi,
 1047             maxresp);
 1048 
 1049         if (is_general_query) {
 1050                 /*
 1051                  * Schedule a current-state report on this ifp for
 1052                  * all groups, possibly containing source lists.
 1053                  * If there is a pending General Query response
 1054                  * scheduled earlier than the selected delay, do
 1055                  * not schedule any other reports.
 1056                  * Otherwise, reset the interface timer.
 1057                  */
 1058                 CTR2(KTR_IGMPV3, "process v3 general query on ifp %p(%s)",
 1059                     ifp, ifp->if_xname);
 1060                 if (igi->igi_v3_timer == 0 || igi->igi_v3_timer >= timer) {
 1061                         igi->igi_v3_timer = IGMP_RANDOM_DELAY(timer);
 1062                         V_interface_timers_running = 1;
 1063                 }
 1064         } else {
 1065                 /*
 1066                  * Group-source-specific queries are throttled on
 1067                  * a per-group basis to defeat denial-of-service attempts.
 1068                  * Queries for groups we are not a member of on this
 1069                  * link are simply ignored.
 1070                  */
 1071                 inm = inm_lookup(ifp, igmpv3->igmp_group);
 1072                 if (inm == NULL)
 1073                         goto out_locked;
 1074                 if (nsrc > 0) {
 1075                         if (!ratecheck(&inm->inm_lastgsrtv,
 1076                             &V_igmp_gsrdelay)) {
 1077                                 CTR1(KTR_IGMPV3, "%s: GS query throttled.",
 1078                                     __func__);
 1079                                 IGMPSTAT_INC(igps_drop_gsr_queries);
 1080                                 goto out_locked;
 1081                         }
 1082                 }
 1083                 CTR3(KTR_IGMPV3, "process v3 %s query on ifp %p(%s)",
 1084                      inet_ntoa(igmpv3->igmp_group), ifp, ifp->if_xname);
 1085                 /*
 1086                  * If there is a pending General Query response
 1087                  * scheduled sooner than the selected delay, no
 1088                  * further report need be scheduled.
 1089                  * Otherwise, prepare to respond to the
 1090                  * group-specific or group-and-source query.
 1091                  */
 1092                 if (igi->igi_v3_timer == 0 || igi->igi_v3_timer >= timer)
 1093                         igmp_input_v3_group_query(inm, igi, timer, igmpv3);
 1094         }
 1095 
 1096 out_locked:
 1097         IGMP_UNLOCK();
 1098         IN_MULTI_UNLOCK();
 1099 
 1100         return (0);
 1101 }
 1102 
 1103 /*
 1104  * Process a recieved IGMPv3 group-specific or group-and-source-specific
 1105  * query.
 1106  * Return <0 if any error occured. Currently this is ignored.
 1107  */
 1108 static int
 1109 igmp_input_v3_group_query(struct in_multi *inm, struct igmp_ifinfo *igi,
 1110     int timer, /*const*/ struct igmpv3 *igmpv3)
 1111 {
 1112         int                      retval;
 1113         uint16_t                 nsrc;
 1114 
 1115         IN_MULTI_LOCK_ASSERT();
 1116         IGMP_LOCK_ASSERT();
 1117 
 1118         retval = 0;
 1119 
 1120         switch (inm->inm_state) {
 1121         case IGMP_NOT_MEMBER:
 1122         case IGMP_SILENT_MEMBER:
 1123         case IGMP_SLEEPING_MEMBER:
 1124         case IGMP_LAZY_MEMBER:
 1125         case IGMP_AWAKENING_MEMBER:
 1126         case IGMP_IDLE_MEMBER:
 1127         case IGMP_LEAVING_MEMBER:
 1128                 return (retval);
 1129                 break;
 1130         case IGMP_REPORTING_MEMBER:
 1131         case IGMP_G_QUERY_PENDING_MEMBER:
 1132         case IGMP_SG_QUERY_PENDING_MEMBER:
 1133                 break;
 1134         }
 1135 
 1136         nsrc = ntohs(igmpv3->igmp_numsrc);
 1137 
 1138         /*
 1139          * Deal with group-specific queries upfront.
 1140          * If any group query is already pending, purge any recorded
 1141          * source-list state if it exists, and schedule a query response
 1142          * for this group-specific query.
 1143          */
 1144         if (nsrc == 0) {
 1145                 if (inm->inm_state == IGMP_G_QUERY_PENDING_MEMBER ||
 1146                     inm->inm_state == IGMP_SG_QUERY_PENDING_MEMBER) {
 1147                         inm_clear_recorded(inm);
 1148                         timer = min(inm->inm_timer, timer);
 1149                 }
 1150                 inm->inm_state = IGMP_G_QUERY_PENDING_MEMBER;
 1151                 inm->inm_timer = IGMP_RANDOM_DELAY(timer);
 1152                 V_current_state_timers_running = 1;
 1153                 return (retval);
 1154         }
 1155 
 1156         /*
 1157          * Deal with the case where a group-and-source-specific query has
 1158          * been received but a group-specific query is already pending.
 1159          */
 1160         if (inm->inm_state == IGMP_G_QUERY_PENDING_MEMBER) {
 1161                 timer = min(inm->inm_timer, timer);
 1162                 inm->inm_timer = IGMP_RANDOM_DELAY(timer);
 1163                 V_current_state_timers_running = 1;
 1164                 return (retval);
 1165         }
 1166 
 1167         /*
 1168          * Finally, deal with the case where a group-and-source-specific
 1169          * query has been received, where a response to a previous g-s-r
 1170          * query exists, or none exists.
 1171          * In this case, we need to parse the source-list which the Querier
 1172          * has provided us with and check if we have any source list filter
 1173          * entries at T1 for these sources. If we do not, there is no need
 1174          * schedule a report and the query may be dropped.
 1175          * If we do, we must record them and schedule a current-state
 1176          * report for those sources.
 1177          * FIXME: Handling source lists larger than 1 mbuf requires that
 1178          * we pass the mbuf chain pointer down to this function, and use
 1179          * m_getptr() to walk the chain.
 1180          */
 1181         if (inm->inm_nsrc > 0) {
 1182                 const struct in_addr    *ap;
 1183                 int                      i, nrecorded;
 1184 
 1185                 ap = (const struct in_addr *)(igmpv3 + 1);
 1186                 nrecorded = 0;
 1187                 for (i = 0; i < nsrc; i++, ap++) {
 1188                         retval = inm_record_source(inm, ap->s_addr);
 1189                         if (retval < 0)
 1190                                 break;
 1191                         nrecorded += retval;
 1192                 }
 1193                 if (nrecorded > 0) {
 1194                         CTR1(KTR_IGMPV3,
 1195                             "%s: schedule response to SG query", __func__);
 1196                         inm->inm_state = IGMP_SG_QUERY_PENDING_MEMBER;
 1197                         inm->inm_timer = IGMP_RANDOM_DELAY(timer);
 1198                         V_current_state_timers_running = 1;
 1199                 }
 1200         }
 1201 
 1202         return (retval);
 1203 }
 1204 
 1205 /*
 1206  * Process a received IGMPv1 host membership report.
 1207  *
 1208  * NOTE: 0.0.0.0 workaround breaks const correctness.
 1209  */
 1210 static int
 1211 igmp_input_v1_report(struct ifnet *ifp, /*const*/ struct ip *ip,
 1212     /*const*/ struct igmp *igmp)
 1213 {
 1214         struct in_ifaddr *ia;
 1215         struct in_multi *inm;
 1216 
 1217         IGMPSTAT_INC(igps_rcv_reports);
 1218 
 1219         if (ifp->if_flags & IFF_LOOPBACK)
 1220                 return (0);
 1221 
 1222         if (!IN_MULTICAST(ntohl(igmp->igmp_group.s_addr) ||
 1223             !in_hosteq(igmp->igmp_group, ip->ip_dst))) {
 1224                 IGMPSTAT_INC(igps_rcv_badreports);
 1225                 return (EINVAL);
 1226         }
 1227 
 1228         /*
 1229          * RFC 3376, Section 4.2.13, 9.2, 9.3:
 1230          * Booting clients may use the source address 0.0.0.0. Some
 1231          * IGMP daemons may not know how to use IP_RECVIF to determine
 1232          * the interface upon which this message was received.
 1233          * Replace 0.0.0.0 with the subnet address if told to do so.
 1234          */
 1235         if (V_igmp_recvifkludge && in_nullhost(ip->ip_src)) {
 1236                 IFP_TO_IA(ifp, ia);
 1237                 if (ia != NULL) {
 1238                         ip->ip_src.s_addr = htonl(ia->ia_subnet);
 1239                         ifa_free(&ia->ia_ifa);
 1240                 }
 1241         }
 1242 
 1243         CTR3(KTR_IGMPV3, "process v1 report %s on ifp %p(%s)",
 1244              inet_ntoa(igmp->igmp_group), ifp, ifp->if_xname);
 1245 
 1246         /*
 1247          * IGMPv1 report suppression.
 1248          * If we are a member of this group, and our membership should be
 1249          * reported, stop our group timer and transition to the 'lazy' state.
 1250          */
 1251         IN_MULTI_LOCK();
 1252         inm = inm_lookup(ifp, igmp->igmp_group);
 1253         if (inm != NULL) {
 1254                 struct igmp_ifinfo *igi;
 1255 
 1256                 igi = inm->inm_igi;
 1257                 if (igi == NULL) {
 1258                         KASSERT(igi != NULL,
 1259                             ("%s: no igi for ifp %p", __func__, ifp));
 1260                         goto out_locked;
 1261                 }
 1262 
 1263                 IGMPSTAT_INC(igps_rcv_ourreports);
 1264 
 1265                 /*
 1266                  * If we are in IGMPv3 host mode, do not allow the
 1267                  * other host's IGMPv1 report to suppress our reports
 1268                  * unless explicitly configured to do so.
 1269                  */
 1270                 if (igi->igi_version == IGMP_VERSION_3) {
 1271                         if (V_igmp_legacysupp)
 1272                                 igmp_v3_suppress_group_record(inm);
 1273                         goto out_locked;
 1274                 }
 1275 
 1276                 inm->inm_timer = 0;
 1277 
 1278                 switch (inm->inm_state) {
 1279                 case IGMP_NOT_MEMBER:
 1280                 case IGMP_SILENT_MEMBER:
 1281                         break;
 1282                 case IGMP_IDLE_MEMBER:
 1283                 case IGMP_LAZY_MEMBER:
 1284                 case IGMP_AWAKENING_MEMBER:
 1285                         CTR3(KTR_IGMPV3,
 1286                             "report suppressed for %s on ifp %p(%s)",
 1287                             inet_ntoa(igmp->igmp_group), ifp, ifp->if_xname);
 1288                 case IGMP_SLEEPING_MEMBER:
 1289                         inm->inm_state = IGMP_SLEEPING_MEMBER;
 1290                         break;
 1291                 case IGMP_REPORTING_MEMBER:
 1292                         CTR3(KTR_IGMPV3,
 1293                             "report suppressed for %s on ifp %p(%s)",
 1294                             inet_ntoa(igmp->igmp_group), ifp, ifp->if_xname);
 1295                         if (igi->igi_version == IGMP_VERSION_1)
 1296                                 inm->inm_state = IGMP_LAZY_MEMBER;
 1297                         else if (igi->igi_version == IGMP_VERSION_2)
 1298                                 inm->inm_state = IGMP_SLEEPING_MEMBER;
 1299                         break;
 1300                 case IGMP_G_QUERY_PENDING_MEMBER:
 1301                 case IGMP_SG_QUERY_PENDING_MEMBER:
 1302                 case IGMP_LEAVING_MEMBER:
 1303                         break;
 1304                 }
 1305         }
 1306 
 1307 out_locked:
 1308         IN_MULTI_UNLOCK();
 1309 
 1310         return (0);
 1311 }
 1312 
 1313 /*
 1314  * Process a received IGMPv2 host membership report.
 1315  *
 1316  * NOTE: 0.0.0.0 workaround breaks const correctness.
 1317  */
 1318 static int
 1319 igmp_input_v2_report(struct ifnet *ifp, /*const*/ struct ip *ip,
 1320     /*const*/ struct igmp *igmp)
 1321 {
 1322         struct in_ifaddr *ia;
 1323         struct in_multi *inm;
 1324 
 1325         /*
 1326          * Make sure we don't hear our own membership report.  Fast
 1327          * leave requires knowing that we are the only member of a
 1328          * group.
 1329          */
 1330         IFP_TO_IA(ifp, ia);
 1331         if (ia != NULL && in_hosteq(ip->ip_src, IA_SIN(ia)->sin_addr)) {
 1332                 ifa_free(&ia->ia_ifa);
 1333                 return (0);
 1334         }
 1335 
 1336         IGMPSTAT_INC(igps_rcv_reports);
 1337 
 1338         if (ifp->if_flags & IFF_LOOPBACK) {
 1339                 if (ia != NULL)
 1340                         ifa_free(&ia->ia_ifa);
 1341                 return (0);
 1342         }
 1343 
 1344         if (!IN_MULTICAST(ntohl(igmp->igmp_group.s_addr)) ||
 1345             !in_hosteq(igmp->igmp_group, ip->ip_dst)) {
 1346                 if (ia != NULL)
 1347                         ifa_free(&ia->ia_ifa);
 1348                 IGMPSTAT_INC(igps_rcv_badreports);
 1349                 return (EINVAL);
 1350         }
 1351 
 1352         /*
 1353          * RFC 3376, Section 4.2.13, 9.2, 9.3:
 1354          * Booting clients may use the source address 0.0.0.0. Some
 1355          * IGMP daemons may not know how to use IP_RECVIF to determine
 1356          * the interface upon which this message was received.
 1357          * Replace 0.0.0.0 with the subnet address if told to do so.
 1358          */
 1359         if (V_igmp_recvifkludge && in_nullhost(ip->ip_src)) {
 1360                 if (ia != NULL)
 1361                         ip->ip_src.s_addr = htonl(ia->ia_subnet);
 1362         }
 1363         if (ia != NULL)
 1364                 ifa_free(&ia->ia_ifa);
 1365 
 1366         CTR3(KTR_IGMPV3, "process v2 report %s on ifp %p(%s)",
 1367              inet_ntoa(igmp->igmp_group), ifp, ifp->if_xname);
 1368 
 1369         /*
 1370          * IGMPv2 report suppression.
 1371          * If we are a member of this group, and our membership should be
 1372          * reported, and our group timer is pending or about to be reset,
 1373          * stop our group timer by transitioning to the 'lazy' state.
 1374          */
 1375         IN_MULTI_LOCK();
 1376         inm = inm_lookup(ifp, igmp->igmp_group);
 1377         if (inm != NULL) {
 1378                 struct igmp_ifinfo *igi;
 1379 
 1380                 igi = inm->inm_igi;
 1381                 KASSERT(igi != NULL, ("%s: no igi for ifp %p", __func__, ifp));
 1382 
 1383                 IGMPSTAT_INC(igps_rcv_ourreports);
 1384 
 1385                 /*
 1386                  * If we are in IGMPv3 host mode, do not allow the
 1387                  * other host's IGMPv1 report to suppress our reports
 1388                  * unless explicitly configured to do so.
 1389                  */
 1390                 if (igi->igi_version == IGMP_VERSION_3) {
 1391                         if (V_igmp_legacysupp)
 1392                                 igmp_v3_suppress_group_record(inm);
 1393                         goto out_locked;
 1394                 }
 1395 
 1396                 inm->inm_timer = 0;
 1397 
 1398                 switch (inm->inm_state) {
 1399                 case IGMP_NOT_MEMBER:
 1400                 case IGMP_SILENT_MEMBER:
 1401                 case IGMP_SLEEPING_MEMBER:
 1402                         break;
 1403                 case IGMP_REPORTING_MEMBER:
 1404                 case IGMP_IDLE_MEMBER:
 1405                 case IGMP_AWAKENING_MEMBER:
 1406                         CTR3(KTR_IGMPV3,
 1407                             "report suppressed for %s on ifp %p(%s)",
 1408                             inet_ntoa(igmp->igmp_group), ifp, ifp->if_xname);
 1409                 case IGMP_LAZY_MEMBER:
 1410                         inm->inm_state = IGMP_LAZY_MEMBER;
 1411                         break;
 1412                 case IGMP_G_QUERY_PENDING_MEMBER:
 1413                 case IGMP_SG_QUERY_PENDING_MEMBER:
 1414                 case IGMP_LEAVING_MEMBER:
 1415                         break;
 1416                 }
 1417         }
 1418 
 1419 out_locked:
 1420         IN_MULTI_UNLOCK();
 1421 
 1422         return (0);
 1423 }
 1424 
 1425 void
 1426 igmp_input(struct mbuf *m, int off)
 1427 {
 1428         int iphlen;
 1429         struct ifnet *ifp;
 1430         struct igmp *igmp;
 1431         struct ip *ip;
 1432         int igmplen;
 1433         int minlen;
 1434         int queryver;
 1435 
 1436         CTR3(KTR_IGMPV3, "%s: called w/mbuf (%p,%d)", __func__, m, off);
 1437 
 1438         ifp = m->m_pkthdr.rcvif;
 1439 
 1440         IGMPSTAT_INC(igps_rcv_total);
 1441 
 1442         ip = mtod(m, struct ip *);
 1443         iphlen = off;
 1444         igmplen = ip->ip_len;
 1445 
 1446         /*
 1447          * Validate lengths.
 1448          */
 1449         if (igmplen < IGMP_MINLEN) {
 1450                 IGMPSTAT_INC(igps_rcv_tooshort);
 1451                 m_freem(m);
 1452                 return;
 1453         }
 1454 
 1455         /*
 1456          * Always pullup to the minimum size for v1/v2 or v3
 1457          * to amortize calls to m_pullup().
 1458          */
 1459         minlen = iphlen;
 1460         if (igmplen >= IGMP_V3_QUERY_MINLEN)
 1461                 minlen += IGMP_V3_QUERY_MINLEN;
 1462         else
 1463                 minlen += IGMP_MINLEN;
 1464         if ((m->m_flags & M_EXT || m->m_len < minlen) &&
 1465             (m = m_pullup(m, minlen)) == 0) {
 1466                 IGMPSTAT_INC(igps_rcv_tooshort);
 1467                 return;
 1468         }
 1469         ip = mtod(m, struct ip *);
 1470 
 1471         if (ip->ip_ttl != 1) {
 1472                 IGMPSTAT_INC(igps_rcv_badttl);
 1473                 m_freem(m);
 1474                 return;
 1475         }
 1476 
 1477         /*
 1478          * Validate checksum.
 1479          */
 1480         m->m_data += iphlen;
 1481         m->m_len -= iphlen;
 1482         igmp = mtod(m, struct igmp *);
 1483         if (in_cksum(m, igmplen)) {
 1484                 IGMPSTAT_INC(igps_rcv_badsum);
 1485                 m_freem(m);
 1486                 return;
 1487         }
 1488         m->m_data -= iphlen;
 1489         m->m_len += iphlen;
 1490 
 1491         switch (igmp->igmp_type) {
 1492         case IGMP_HOST_MEMBERSHIP_QUERY:
 1493                 if (igmplen == IGMP_MINLEN) {
 1494                         if (igmp->igmp_code == 0)
 1495                                 queryver = IGMP_VERSION_1;
 1496                         else
 1497                                 queryver = IGMP_VERSION_2;
 1498                 } else if (igmplen >= IGMP_V3_QUERY_MINLEN) {
 1499                         queryver = IGMP_VERSION_3;
 1500                 } else {
 1501                         IGMPSTAT_INC(igps_rcv_tooshort);
 1502                         m_freem(m);
 1503                         return;
 1504                 }
 1505 
 1506                 switch (queryver) {
 1507                 case IGMP_VERSION_1:
 1508                         IGMPSTAT_INC(igps_rcv_v1v2_queries);
 1509                         if (!V_igmp_v1enable)
 1510                                 break;
 1511                         if (igmp_input_v1_query(ifp, ip, igmp) != 0) {
 1512                                 m_freem(m);
 1513                                 return;
 1514                         }
 1515                         break;
 1516 
 1517                 case IGMP_VERSION_2:
 1518                         IGMPSTAT_INC(igps_rcv_v1v2_queries);
 1519                         if (!V_igmp_v2enable)
 1520                                 break;
 1521                         if (igmp_input_v2_query(ifp, ip, igmp) != 0) {
 1522                                 m_freem(m);
 1523                                 return;
 1524                         }
 1525                         break;
 1526 
 1527                 case IGMP_VERSION_3: {
 1528                                 struct igmpv3 *igmpv3;
 1529                                 uint16_t igmpv3len;
 1530                                 uint16_t srclen;
 1531                                 int nsrc;
 1532 
 1533                                 IGMPSTAT_INC(igps_rcv_v3_queries);
 1534                                 igmpv3 = (struct igmpv3 *)igmp;
 1535                                 /*
 1536                                  * Validate length based on source count.
 1537                                  */
 1538                                 nsrc = ntohs(igmpv3->igmp_numsrc);
 1539                                 srclen = sizeof(struct in_addr) * nsrc;
 1540                                 if (nsrc * sizeof(in_addr_t) > srclen) {
 1541                                         IGMPSTAT_INC(igps_rcv_tooshort);
 1542                                         return;
 1543                                 }
 1544                                 /*
 1545                                  * m_pullup() may modify m, so pullup in
 1546                                  * this scope.
 1547                                  */
 1548                                 igmpv3len = iphlen + IGMP_V3_QUERY_MINLEN +
 1549                                     srclen;
 1550                                 if ((m->m_flags & M_EXT ||
 1551                                      m->m_len < igmpv3len) &&
 1552                                     (m = m_pullup(m, igmpv3len)) == NULL) {
 1553                                         IGMPSTAT_INC(igps_rcv_tooshort);
 1554                                         return;
 1555                                 }
 1556                                 igmpv3 = (struct igmpv3 *)(mtod(m, uint8_t *)
 1557                                     + iphlen);
 1558                                 if (igmp_input_v3_query(ifp, ip, igmpv3) != 0) {
 1559                                         m_freem(m);
 1560                                         return;
 1561                                 }
 1562                         }
 1563                         break;
 1564                 }
 1565                 break;
 1566 
 1567         case IGMP_v1_HOST_MEMBERSHIP_REPORT:
 1568                 if (!V_igmp_v1enable)
 1569                         break;
 1570                 if (igmp_input_v1_report(ifp, ip, igmp) != 0) {
 1571                         m_freem(m);
 1572                         return;
 1573                 }
 1574                 break;
 1575 
 1576         case IGMP_v2_HOST_MEMBERSHIP_REPORT:
 1577                 if (!V_igmp_v2enable)
 1578                         break;
 1579                 if (!ip_checkrouteralert(m))
 1580                         IGMPSTAT_INC(igps_rcv_nora);
 1581                 if (igmp_input_v2_report(ifp, ip, igmp) != 0) {
 1582                         m_freem(m);
 1583                         return;
 1584                 }
 1585                 break;
 1586 
 1587         case IGMP_v3_HOST_MEMBERSHIP_REPORT:
 1588                 /*
 1589                  * Hosts do not need to process IGMPv3 membership reports,
 1590                  * as report suppression is no longer required.
 1591                  */
 1592                 if (!ip_checkrouteralert(m))
 1593                         IGMPSTAT_INC(igps_rcv_nora);
 1594                 break;
 1595 
 1596         default:
 1597                 break;
 1598         }
 1599 
 1600         /*
 1601          * Pass all valid IGMP packets up to any process(es) listening on a
 1602          * raw IGMP socket.
 1603          */
 1604         rip_input(m, off);
 1605 }
 1606 
 1607 
 1608 /*
 1609  * Fast timeout handler (global).
 1610  * VIMAGE: Timeout handlers are expected to service all vimages.
 1611  */
 1612 void
 1613 igmp_fasttimo(void)
 1614 {
 1615         VNET_ITERATOR_DECL(vnet_iter);
 1616 
 1617         VNET_LIST_RLOCK_NOSLEEP();
 1618         VNET_FOREACH(vnet_iter) {
 1619                 CURVNET_SET(vnet_iter);
 1620                 igmp_fasttimo_vnet();
 1621                 CURVNET_RESTORE();
 1622         }
 1623         VNET_LIST_RUNLOCK_NOSLEEP();
 1624 }
 1625 
 1626 /*
 1627  * Fast timeout handler (per-vnet).
 1628  * Sends are shuffled off to a netisr to deal with Giant.
 1629  *
 1630  * VIMAGE: Assume caller has set up our curvnet.
 1631  */
 1632 static void
 1633 igmp_fasttimo_vnet(void)
 1634 {
 1635         struct ifqueue           scq;   /* State-change packets */
 1636         struct ifqueue           qrq;   /* Query response packets */
 1637         struct ifnet            *ifp;
 1638         struct igmp_ifinfo      *igi;
 1639         struct ifmultiaddr      *ifma, *tifma;
 1640         struct in_multi         *inm;
 1641         int                      loop, uri_fasthz;
 1642 
 1643         loop = 0;
 1644         uri_fasthz = 0;
 1645 
 1646         /*
 1647          * Quick check to see if any work needs to be done, in order to
 1648          * minimize the overhead of fasttimo processing.
 1649          * SMPng: XXX Unlocked reads.
 1650          */
 1651         if (!V_current_state_timers_running &&
 1652             !V_interface_timers_running &&
 1653             !V_state_change_timers_running)
 1654                 return;
 1655 
 1656         IN_MULTI_LOCK();
 1657         IGMP_LOCK();
 1658 
 1659         /*
 1660          * IGMPv3 General Query response timer processing.
 1661          */
 1662         if (V_interface_timers_running) {
 1663                 CTR1(KTR_IGMPV3, "%s: interface timers running", __func__);
 1664 
 1665                 V_interface_timers_running = 0;
 1666                 LIST_FOREACH(igi, &V_igi_head, igi_link) {
 1667                         if (igi->igi_v3_timer == 0) {
 1668                                 /* Do nothing. */
 1669                         } else if (--igi->igi_v3_timer == 0) {
 1670                                 igmp_v3_dispatch_general_query(igi);
 1671                         } else {
 1672                                 V_interface_timers_running = 1;
 1673                         }
 1674                 }
 1675         }
 1676 
 1677         if (!V_current_state_timers_running &&
 1678             !V_state_change_timers_running)
 1679                 goto out_locked;
 1680 
 1681         V_current_state_timers_running = 0;
 1682         V_state_change_timers_running = 0;
 1683 
 1684         CTR1(KTR_IGMPV3, "%s: state change timers running", __func__);
 1685 
 1686         /*
 1687          * IGMPv1/v2/v3 host report and state-change timer processing.
 1688          * Note: Processing a v3 group timer may remove a node.
 1689          */
 1690         LIST_FOREACH(igi, &V_igi_head, igi_link) {
 1691                 ifp = igi->igi_ifp;
 1692 
 1693                 if (igi->igi_version == IGMP_VERSION_3) {
 1694                         loop = (igi->igi_flags & IGIF_LOOPBACK) ? 1 : 0;
 1695                         uri_fasthz = IGMP_RANDOM_DELAY(igi->igi_uri *
 1696                             PR_FASTHZ);
 1697 
 1698                         memset(&qrq, 0, sizeof(struct ifqueue));
 1699                         IFQ_SET_MAXLEN(&qrq, IGMP_MAX_G_GS_PACKETS);
 1700 
 1701                         memset(&scq, 0, sizeof(struct ifqueue));
 1702                         IFQ_SET_MAXLEN(&scq, IGMP_MAX_STATE_CHANGE_PACKETS);
 1703                 }
 1704 
 1705                 IF_ADDR_LOCK(ifp);
 1706                 TAILQ_FOREACH_SAFE(ifma, &ifp->if_multiaddrs, ifma_link,
 1707                     tifma) {
 1708                         if (ifma->ifma_addr->sa_family != AF_INET ||
 1709                             ifma->ifma_protospec == NULL)
 1710                                 continue;
 1711                         inm = (struct in_multi *)ifma->ifma_protospec;
 1712                         switch (igi->igi_version) {
 1713                         case IGMP_VERSION_1:
 1714                         case IGMP_VERSION_2:
 1715                                 igmp_v1v2_process_group_timer(inm,
 1716                                     igi->igi_version);
 1717                                 break;
 1718                         case IGMP_VERSION_3:
 1719                                 igmp_v3_process_group_timers(igi, &qrq,
 1720                                     &scq, inm, uri_fasthz);
 1721                                 break;
 1722                         }
 1723                 }
 1724                 IF_ADDR_UNLOCK(ifp);
 1725 
 1726                 if (igi->igi_version == IGMP_VERSION_3) {
 1727                         struct in_multi         *tinm;
 1728 
 1729                         igmp_dispatch_queue(&qrq, 0, loop);
 1730                         igmp_dispatch_queue(&scq, 0, loop);
 1731 
 1732                         /*
 1733                          * Free the in_multi reference(s) for this
 1734                          * IGMP lifecycle.
 1735                          */
 1736                         SLIST_FOREACH_SAFE(inm, &igi->igi_relinmhead,
 1737                             inm_nrele, tinm) {
 1738                                 SLIST_REMOVE_HEAD(&igi->igi_relinmhead,
 1739                                     inm_nrele);
 1740                                 inm_release_locked(inm);
 1741                         }
 1742                 }
 1743         }
 1744 
 1745 out_locked:
 1746         IGMP_UNLOCK();
 1747         IN_MULTI_UNLOCK();
 1748 }
 1749 
 1750 /*
 1751  * Update host report group timer for IGMPv1/v2.
 1752  * Will update the global pending timer flags.
 1753  */
 1754 static void
 1755 igmp_v1v2_process_group_timer(struct in_multi *inm, const int version)
 1756 {
 1757         int report_timer_expired;
 1758 
 1759         IN_MULTI_LOCK_ASSERT();
 1760         IGMP_LOCK_ASSERT();
 1761 
 1762         if (inm->inm_timer == 0) {
 1763                 report_timer_expired = 0;
 1764         } else if (--inm->inm_timer == 0) {
 1765                 report_timer_expired = 1;
 1766         } else {
 1767                 V_current_state_timers_running = 1;
 1768                 return;
 1769         }
 1770 
 1771         switch (inm->inm_state) {
 1772         case IGMP_NOT_MEMBER:
 1773         case IGMP_SILENT_MEMBER:
 1774         case IGMP_IDLE_MEMBER:
 1775         case IGMP_LAZY_MEMBER:
 1776         case IGMP_SLEEPING_MEMBER:
 1777         case IGMP_AWAKENING_MEMBER:
 1778                 break;
 1779         case IGMP_REPORTING_MEMBER:
 1780                 if (report_timer_expired) {
 1781                         inm->inm_state = IGMP_IDLE_MEMBER;
 1782                         (void)igmp_v1v2_queue_report(inm,
 1783                             (version == IGMP_VERSION_2) ?
 1784                              IGMP_v2_HOST_MEMBERSHIP_REPORT :
 1785                              IGMP_v1_HOST_MEMBERSHIP_REPORT);
 1786                 }
 1787                 break;
 1788         case IGMP_G_QUERY_PENDING_MEMBER:
 1789         case IGMP_SG_QUERY_PENDING_MEMBER:
 1790         case IGMP_LEAVING_MEMBER:
 1791                 break;
 1792         }
 1793 }
 1794 
 1795 /*
 1796  * Update a group's timers for IGMPv3.
 1797  * Will update the global pending timer flags.
 1798  * Note: Unlocked read from igi.
 1799  */
 1800 static void
 1801 igmp_v3_process_group_timers(struct igmp_ifinfo *igi,
 1802     struct ifqueue *qrq, struct ifqueue *scq,
 1803     struct in_multi *inm, const int uri_fasthz)
 1804 {
 1805         int query_response_timer_expired;
 1806         int state_change_retransmit_timer_expired;
 1807 
 1808         IN_MULTI_LOCK_ASSERT();
 1809         IGMP_LOCK_ASSERT();
 1810 
 1811         query_response_timer_expired = 0;
 1812         state_change_retransmit_timer_expired = 0;
 1813 
 1814         /*
 1815          * During a transition from v1/v2 compatibility mode back to v3,
 1816          * a group record in REPORTING state may still have its group
 1817          * timer active. This is a no-op in this function; it is easier
 1818          * to deal with it here than to complicate the slow-timeout path.
 1819          */
 1820         if (inm->inm_timer == 0) {
 1821                 query_response_timer_expired = 0;
 1822         } else if (--inm->inm_timer == 0) {
 1823                 query_response_timer_expired = 1;
 1824         } else {
 1825                 V_current_state_timers_running = 1;
 1826         }
 1827 
 1828         if (inm->inm_sctimer == 0) {
 1829                 state_change_retransmit_timer_expired = 0;
 1830         } else if (--inm->inm_sctimer == 0) {
 1831                 state_change_retransmit_timer_expired = 1;
 1832         } else {
 1833                 V_state_change_timers_running = 1;
 1834         }
 1835 
 1836         /* We are in fasttimo, so be quick about it. */
 1837         if (!state_change_retransmit_timer_expired &&
 1838             !query_response_timer_expired)
 1839                 return;
 1840 
 1841         switch (inm->inm_state) {
 1842         case IGMP_NOT_MEMBER:
 1843         case IGMP_SILENT_MEMBER:
 1844         case IGMP_SLEEPING_MEMBER:
 1845         case IGMP_LAZY_MEMBER:
 1846         case IGMP_AWAKENING_MEMBER:
 1847         case IGMP_IDLE_MEMBER:
 1848                 break;
 1849         case IGMP_G_QUERY_PENDING_MEMBER:
 1850         case IGMP_SG_QUERY_PENDING_MEMBER:
 1851                 /*
 1852                  * Respond to a previously pending Group-Specific
 1853                  * or Group-and-Source-Specific query by enqueueing
 1854                  * the appropriate Current-State report for
 1855                  * immediate transmission.
 1856                  */
 1857                 if (query_response_timer_expired) {
 1858                         int retval;
 1859 
 1860                         retval = igmp_v3_enqueue_group_record(qrq, inm, 0, 1,
 1861                             (inm->inm_state == IGMP_SG_QUERY_PENDING_MEMBER));
 1862                         CTR2(KTR_IGMPV3, "%s: enqueue record = %d",
 1863                             __func__, retval);
 1864                         inm->inm_state = IGMP_REPORTING_MEMBER;
 1865                         /* XXX Clear recorded sources for next time. */
 1866                         inm_clear_recorded(inm);
 1867                 }
 1868                 /* FALLTHROUGH */
 1869         case IGMP_REPORTING_MEMBER:
 1870         case IGMP_LEAVING_MEMBER:
 1871                 if (state_change_retransmit_timer_expired) {
 1872                         /*
 1873                          * State-change retransmission timer fired.
 1874                          * If there are any further pending retransmissions,
 1875                          * set the global pending state-change flag, and
 1876                          * reset the timer.
 1877                          */
 1878                         if (--inm->inm_scrv > 0) {
 1879                                 inm->inm_sctimer = uri_fasthz;
 1880                                 V_state_change_timers_running = 1;
 1881                         }
 1882                         /*
 1883                          * Retransmit the previously computed state-change
 1884                          * report. If there are no further pending
 1885                          * retransmissions, the mbuf queue will be consumed.
 1886                          * Update T0 state to T1 as we have now sent
 1887                          * a state-change.
 1888                          */
 1889                         (void)igmp_v3_merge_state_changes(inm, scq);
 1890 
 1891                         inm_commit(inm);
 1892                         CTR3(KTR_IGMPV3, "%s: T1 -> T0 for %s/%s", __func__,
 1893                             inet_ntoa(inm->inm_addr), inm->inm_ifp->if_xname);
 1894 
 1895                         /*
 1896                          * If we are leaving the group for good, make sure
 1897                          * we release IGMP's reference to it.
 1898                          * This release must be deferred using a SLIST,
 1899                          * as we are called from a loop which traverses
 1900                          * the in_ifmultiaddr TAILQ.
 1901                          */
 1902                         if (inm->inm_state == IGMP_LEAVING_MEMBER &&
 1903                             inm->inm_scrv == 0) {
 1904                                 inm->inm_state = IGMP_NOT_MEMBER;
 1905                                 SLIST_INSERT_HEAD(&igi->igi_relinmhead,
 1906                                     inm, inm_nrele);
 1907                         }
 1908                 }
 1909                 break;
 1910         }
 1911 }
 1912 
 1913 
 1914 /*
 1915  * Suppress a group's pending response to a group or source/group query.
 1916  *
 1917  * Do NOT suppress state changes. This leads to IGMPv3 inconsistency.
 1918  * Do NOT update ST1/ST0 as this operation merely suppresses
 1919  * the currently pending group record.
 1920  * Do NOT suppress the response to a general query. It is possible but
 1921  * it would require adding another state or flag.
 1922  */
 1923 static void
 1924 igmp_v3_suppress_group_record(struct in_multi *inm)
 1925 {
 1926 
 1927         IN_MULTI_LOCK_ASSERT();
 1928 
 1929         KASSERT(inm->inm_igi->igi_version == IGMP_VERSION_3,
 1930                 ("%s: not IGMPv3 mode on link", __func__));
 1931 
 1932         if (inm->inm_state != IGMP_G_QUERY_PENDING_MEMBER ||
 1933             inm->inm_state != IGMP_SG_QUERY_PENDING_MEMBER)
 1934                 return;
 1935 
 1936         if (inm->inm_state == IGMP_SG_QUERY_PENDING_MEMBER)
 1937                 inm_clear_recorded(inm);
 1938 
 1939         inm->inm_timer = 0;
 1940         inm->inm_state = IGMP_REPORTING_MEMBER;
 1941 }
 1942 
 1943 /*
 1944  * Switch to a different IGMP version on the given interface,
 1945  * as per Section 7.2.1.
 1946  */
 1947 static void
 1948 igmp_set_version(struct igmp_ifinfo *igi, const int version)
 1949 {
 1950         int old_version_timer;
 1951 
 1952         IGMP_LOCK_ASSERT();
 1953 
 1954         CTR4(KTR_IGMPV3, "%s: switching to v%d on ifp %p(%s)", __func__,
 1955             version, igi->igi_ifp, igi->igi_ifp->if_xname);
 1956 
 1957         if (version == IGMP_VERSION_1 || version == IGMP_VERSION_2) {
 1958                 /*
 1959                  * Compute the "Older Version Querier Present" timer as per
 1960                  * Section 8.12.
 1961                  */
 1962                 old_version_timer = igi->igi_rv * igi->igi_qi + igi->igi_qri;
 1963                 old_version_timer *= PR_SLOWHZ;
 1964 
 1965                 if (version == IGMP_VERSION_1) {
 1966                         igi->igi_v1_timer = old_version_timer;
 1967                         igi->igi_v2_timer = 0;
 1968                 } else if (version == IGMP_VERSION_2) {
 1969                         igi->igi_v1_timer = 0;
 1970                         igi->igi_v2_timer = old_version_timer;
 1971                 }
 1972         }
 1973 
 1974         if (igi->igi_v1_timer == 0 && igi->igi_v2_timer > 0) {
 1975                 if (igi->igi_version != IGMP_VERSION_2) {
 1976                         igi->igi_version = IGMP_VERSION_2;
 1977                         igmp_v3_cancel_link_timers(igi);
 1978                 }
 1979         } else if (igi->igi_v1_timer > 0) {
 1980                 if (igi->igi_version != IGMP_VERSION_1) {
 1981                         igi->igi_version = IGMP_VERSION_1;
 1982                         igmp_v3_cancel_link_timers(igi);
 1983                 }
 1984         }
 1985 }
 1986 
 1987 /*
 1988  * Cancel pending IGMPv3 timers for the given link and all groups
 1989  * joined on it; state-change, general-query, and group-query timers.
 1990  *
 1991  * Only ever called on a transition from v3 to Compatibility mode. Kill
 1992  * the timers stone dead (this may be expensive for large N groups), they
 1993  * will be restarted if Compatibility Mode deems that they must be due to
 1994  * query processing.
 1995  */
 1996 static void
 1997 igmp_v3_cancel_link_timers(struct igmp_ifinfo *igi)
 1998 {
 1999         struct ifmultiaddr      *ifma;
 2000         struct ifnet            *ifp;
 2001         struct in_multi         *inm;
 2002 
 2003         CTR3(KTR_IGMPV3, "%s: cancel v3 timers on ifp %p(%s)", __func__,
 2004             igi->igi_ifp, igi->igi_ifp->if_xname);
 2005 
 2006         IN_MULTI_LOCK_ASSERT();
 2007         IGMP_LOCK_ASSERT();
 2008 
 2009         /*
 2010          * Stop the v3 General Query Response on this link stone dead.
 2011          * If fasttimo is woken up due to V_interface_timers_running,
 2012          * the flag will be cleared if there are no pending link timers.
 2013          */
 2014         igi->igi_v3_timer = 0;
 2015 
 2016         /*
 2017          * Now clear the current-state and state-change report timers
 2018          * for all memberships scoped to this link.
 2019          */
 2020         ifp = igi->igi_ifp;
 2021         IF_ADDR_LOCK(ifp);
 2022         TAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) {
 2023                 if (ifma->ifma_addr->sa_family != AF_INET ||
 2024                     ifma->ifma_protospec == NULL)
 2025                         continue;
 2026                 inm = (struct in_multi *)ifma->ifma_protospec;
 2027                 switch (inm->inm_state) {
 2028                 case IGMP_NOT_MEMBER:
 2029                 case IGMP_SILENT_MEMBER:
 2030                 case IGMP_IDLE_MEMBER:
 2031                 case IGMP_LAZY_MEMBER:
 2032                 case IGMP_SLEEPING_MEMBER:
 2033                 case IGMP_AWAKENING_MEMBER:
 2034                         /*
 2035                          * These states are either not relevant in v3 mode,
 2036                          * or are unreported. Do nothing.
 2037                          */
 2038                         break;
 2039                 case IGMP_LEAVING_MEMBER:
 2040                         /*
 2041                          * If we are leaving the group and switching to
 2042                          * compatibility mode, we need to release the final
 2043                          * reference held for issuing the INCLUDE {}, and
 2044                          * transition to REPORTING to ensure the host leave
 2045                          * message is sent upstream to the old querier --
 2046                          * transition to NOT would lose the leave and race.
 2047                          *
 2048                          * SMPNG: Must drop and re-acquire IF_ADDR_LOCK
 2049                          * around inm_release_locked(), as it is not
 2050                          * a recursive mutex.
 2051                          */
 2052                         IF_ADDR_UNLOCK(ifp);
 2053                         inm_release_locked(inm);
 2054                         IF_ADDR_LOCK(ifp);
 2055                         /* FALLTHROUGH */
 2056                 case IGMP_G_QUERY_PENDING_MEMBER:
 2057                 case IGMP_SG_QUERY_PENDING_MEMBER:
 2058                         inm_clear_recorded(inm);
 2059                         /* FALLTHROUGH */
 2060                 case IGMP_REPORTING_MEMBER:
 2061                         inm->inm_state = IGMP_REPORTING_MEMBER;
 2062                         break;
 2063                 }
 2064                 /*
 2065                  * Always clear state-change and group report timers.
 2066                  * Free any pending IGMPv3 state-change records.
 2067                  */
 2068                 inm->inm_sctimer = 0;
 2069                 inm->inm_timer = 0;
 2070                 _IF_DRAIN(&inm->inm_scq);
 2071         }
 2072         IF_ADDR_UNLOCK(ifp);
 2073 }
 2074 
 2075 /*
 2076  * Update the Older Version Querier Present timers for a link.
 2077  * See Section 7.2.1 of RFC 3376.
 2078  */
 2079 static void
 2080 igmp_v1v2_process_querier_timers(struct igmp_ifinfo *igi)
 2081 {
 2082 
 2083         IGMP_LOCK_ASSERT();
 2084 
 2085         if (igi->igi_v1_timer == 0 && igi->igi_v2_timer == 0) {
 2086                 /*
 2087                  * IGMPv1 and IGMPv2 Querier Present timers expired.
 2088                  *
 2089                  * Revert to IGMPv3.
 2090                  */
 2091                 if (igi->igi_version != IGMP_VERSION_3) {
 2092                         CTR5(KTR_IGMPV3,
 2093                             "%s: transition from v%d -> v%d on %p(%s)",
 2094                             __func__, igi->igi_version, IGMP_VERSION_3,
 2095                             igi->igi_ifp, igi->igi_ifp->if_xname);
 2096                         igi->igi_version = IGMP_VERSION_3;
 2097                 }
 2098         } else if (igi->igi_v1_timer == 0 && igi->igi_v2_timer > 0) {
 2099                 /*
 2100                  * IGMPv1 Querier Present timer expired,
 2101                  * IGMPv2 Querier Present timer running.
 2102                  * If IGMPv2 was disabled since last timeout,
 2103                  * revert to IGMPv3.
 2104                  * If IGMPv2 is enabled, revert to IGMPv2.
 2105                  */
 2106                 if (!V_igmp_v2enable) {
 2107                         CTR5(KTR_IGMPV3,
 2108                             "%s: transition from v%d -> v%d on %p(%s)",
 2109                             __func__, igi->igi_version, IGMP_VERSION_3,
 2110                             igi->igi_ifp, igi->igi_ifp->if_xname);
 2111                         igi->igi_v2_timer = 0;
 2112                         igi->igi_version = IGMP_VERSION_3;
 2113                 } else {
 2114                         --igi->igi_v2_timer;
 2115                         if (igi->igi_version != IGMP_VERSION_2) {
 2116                                 CTR5(KTR_IGMPV3,
 2117                                     "%s: transition from v%d -> v%d on %p(%s)",
 2118                                     __func__, igi->igi_version, IGMP_VERSION_2,
 2119                                     igi->igi_ifp, igi->igi_ifp->if_xname);
 2120                                 igi->igi_version = IGMP_VERSION_2;
 2121                         }
 2122                 }
 2123         } else if (igi->igi_v1_timer > 0) {
 2124                 /*
 2125                  * IGMPv1 Querier Present timer running.
 2126                  * Stop IGMPv2 timer if running.
 2127                  *
 2128                  * If IGMPv1 was disabled since last timeout,
 2129                  * revert to IGMPv3.
 2130                  * If IGMPv1 is enabled, reset IGMPv2 timer if running.
 2131                  */
 2132                 if (!V_igmp_v1enable) {
 2133                         CTR5(KTR_IGMPV3,
 2134                             "%s: transition from v%d -> v%d on %p(%s)",
 2135                             __func__, igi->igi_version, IGMP_VERSION_3,
 2136                             igi->igi_ifp, igi->igi_ifp->if_xname);
 2137                         igi->igi_v1_timer = 0;
 2138                         igi->igi_version = IGMP_VERSION_3;
 2139                 } else {
 2140                         --igi->igi_v1_timer;
 2141                 }
 2142                 if (igi->igi_v2_timer > 0) {
 2143                         CTR3(KTR_IGMPV3,
 2144                             "%s: cancel v2 timer on %p(%s)",
 2145                             __func__, igi->igi_ifp, igi->igi_ifp->if_xname);
 2146                         igi->igi_v2_timer = 0;
 2147                 }
 2148         }
 2149 }
 2150 
 2151 /*
 2152  * Global slowtimo handler.
 2153  * VIMAGE: Timeout handlers are expected to service all vimages.
 2154  */
 2155 void
 2156 igmp_slowtimo(void)
 2157 {
 2158         VNET_ITERATOR_DECL(vnet_iter);
 2159 
 2160         VNET_LIST_RLOCK_NOSLEEP();
 2161         VNET_FOREACH(vnet_iter) {
 2162                 CURVNET_SET(vnet_iter);
 2163                 igmp_slowtimo_vnet();
 2164                 CURVNET_RESTORE();
 2165         }
 2166         VNET_LIST_RUNLOCK_NOSLEEP();
 2167 }
 2168 
 2169 /*
 2170  * Per-vnet slowtimo handler.
 2171  */
 2172 static void
 2173 igmp_slowtimo_vnet(void)
 2174 {
 2175         struct igmp_ifinfo *igi;
 2176 
 2177         IGMP_LOCK();
 2178 
 2179         LIST_FOREACH(igi, &V_igi_head, igi_link) {
 2180                 igmp_v1v2_process_querier_timers(igi);
 2181         }
 2182 
 2183         IGMP_UNLOCK();
 2184 }
 2185 
 2186 /*
 2187  * Dispatch an IGMPv1/v2 host report or leave message.
 2188  * These are always small enough to fit inside a single mbuf.
 2189  */
 2190 static int
 2191 igmp_v1v2_queue_report(struct in_multi *inm, const int type)
 2192 {
 2193         struct ifnet            *ifp;
 2194         struct igmp             *igmp;
 2195         struct ip               *ip;
 2196         struct mbuf             *m;
 2197 
 2198         IN_MULTI_LOCK_ASSERT();
 2199         IGMP_LOCK_ASSERT();
 2200 
 2201         ifp = inm->inm_ifp;
 2202 
 2203         MGETHDR(m, M_DONTWAIT, MT_DATA);
 2204         if (m == NULL)
 2205                 return (ENOMEM);
 2206         MH_ALIGN(m, sizeof(struct ip) + sizeof(struct igmp));
 2207 
 2208         m->m_pkthdr.len = sizeof(struct ip) + sizeof(struct igmp);
 2209 
 2210         m->m_data += sizeof(struct ip);
 2211         m->m_len = sizeof(struct igmp);
 2212 
 2213         igmp = mtod(m, struct igmp *);
 2214         igmp->igmp_type = type;
 2215         igmp->igmp_code = 0;
 2216         igmp->igmp_group = inm->inm_addr;
 2217         igmp->igmp_cksum = 0;
 2218         igmp->igmp_cksum = in_cksum(m, sizeof(struct igmp));
 2219 
 2220         m->m_data -= sizeof(struct ip);
 2221         m->m_len += sizeof(struct ip);
 2222 
 2223         ip = mtod(m, struct ip *);
 2224         ip->ip_tos = 0;
 2225         ip->ip_len = sizeof(struct ip) + sizeof(struct igmp);
 2226         ip->ip_off = 0;
 2227         ip->ip_p = IPPROTO_IGMP;
 2228         ip->ip_src.s_addr = INADDR_ANY;
 2229 
 2230         if (type == IGMP_HOST_LEAVE_MESSAGE)
 2231                 ip->ip_dst.s_addr = htonl(INADDR_ALLRTRS_GROUP);
 2232         else
 2233                 ip->ip_dst = inm->inm_addr;
 2234 
 2235         igmp_save_context(m, ifp);
 2236 
 2237         m->m_flags |= M_IGMPV2;
 2238         if (inm->inm_igi->igi_flags & IGIF_LOOPBACK)
 2239                 m->m_flags |= M_IGMP_LOOP;
 2240 
 2241         CTR2(KTR_IGMPV3, "%s: netisr_dispatch(NETISR_IGMP, %p)", __func__, m);
 2242         netisr_dispatch(NETISR_IGMP, m);
 2243 
 2244         return (0);
 2245 }
 2246 
 2247 /*
 2248  * Process a state change from the upper layer for the given IPv4 group.
 2249  *
 2250  * Each socket holds a reference on the in_multi in its own ip_moptions.
 2251  * The socket layer will have made the necessary updates to.the group
 2252  * state, it is now up to IGMP to issue a state change report if there
 2253  * has been any change between T0 (when the last state-change was issued)
 2254  * and T1 (now).
 2255  *
 2256  * We use the IGMPv3 state machine at group level. The IGMP module
 2257  * however makes the decision as to which IGMP protocol version to speak.
 2258  * A state change *from* INCLUDE {} always means an initial join.
 2259  * A state change *to* INCLUDE {} always means a final leave.
 2260  *
 2261  * FUTURE: If IGIF_V3LITE is enabled for this interface, then we can
 2262  * save ourselves a bunch of work; any exclusive mode groups need not
 2263  * compute source filter lists.
 2264  *
 2265  * VIMAGE: curvnet should have been set by caller, as this routine
 2266  * is called from the socket option handlers.
 2267  */
 2268 int
 2269 igmp_change_state(struct in_multi *inm)
 2270 {
 2271         struct igmp_ifinfo *igi;
 2272         struct ifnet *ifp;
 2273         int error;
 2274 
 2275         IN_MULTI_LOCK_ASSERT();
 2276 
 2277         error = 0;
 2278 
 2279         /*
 2280          * Try to detect if the upper layer just asked us to change state
 2281          * for an interface which has now gone away.
 2282          */
 2283         KASSERT(inm->inm_ifma != NULL, ("%s: no ifma", __func__));
 2284         ifp = inm->inm_ifma->ifma_ifp;
 2285         if (ifp != NULL) {
 2286                 /*
 2287                  * Sanity check that netinet's notion of ifp is the
 2288                  * same as net's.
 2289                  */
 2290                 KASSERT(inm->inm_ifp == ifp, ("%s: bad ifp", __func__));
 2291         }
 2292 
 2293         IGMP_LOCK();
 2294 
 2295         igi = ((struct in_ifinfo *)ifp->if_afdata[AF_INET])->ii_igmp;
 2296         KASSERT(igi != NULL, ("%s: no igmp_ifinfo for ifp %p", __func__, ifp));
 2297 
 2298         /*
 2299          * If we detect a state transition to or from MCAST_UNDEFINED
 2300          * for this group, then we are starting or finishing an IGMP
 2301          * life cycle for this group.
 2302          */
 2303         if (inm->inm_st[1].iss_fmode != inm->inm_st[0].iss_fmode) {
 2304                 CTR3(KTR_IGMPV3, "%s: inm transition %d -> %d", __func__,
 2305                     inm->inm_st[0].iss_fmode, inm->inm_st[1].iss_fmode);
 2306                 if (inm->inm_st[0].iss_fmode == MCAST_UNDEFINED) {
 2307                         CTR1(KTR_IGMPV3, "%s: initial join", __func__);
 2308                         error = igmp_initial_join(inm, igi);
 2309                         goto out_locked;
 2310                 } else if (inm->inm_st[1].iss_fmode == MCAST_UNDEFINED) {
 2311                         CTR1(KTR_IGMPV3, "%s: final leave", __func__);
 2312                         igmp_final_leave(inm, igi);
 2313                         goto out_locked;
 2314                 }
 2315         } else {
 2316                 CTR1(KTR_IGMPV3, "%s: filter set change", __func__);
 2317         }
 2318 
 2319         error = igmp_handle_state_change(inm, igi);
 2320 
 2321 out_locked:
 2322         IGMP_UNLOCK();
 2323         return (error);
 2324 }
 2325 
 2326 /*
 2327  * Perform the initial join for an IGMP group.
 2328  *
 2329  * When joining a group:
 2330  *  If the group should have its IGMP traffic suppressed, do nothing.
 2331  *  IGMPv1 starts sending IGMPv1 host membership reports.
 2332  *  IGMPv2 starts sending IGMPv2 host membership reports.
 2333  *  IGMPv3 will schedule an IGMPv3 state-change report containing the
 2334  *  initial state of the membership.
 2335  */
 2336 static int
 2337 igmp_initial_join(struct in_multi *inm, struct igmp_ifinfo *igi)
 2338 {
 2339         struct ifnet            *ifp;
 2340         struct ifqueue          *ifq;
 2341         int                      error, retval, syncstates;
 2342 
 2343         CTR4(KTR_IGMPV3, "%s: initial join %s on ifp %p(%s)",
 2344             __func__, inet_ntoa(inm->inm_addr), inm->inm_ifp,
 2345             inm->inm_ifp->if_xname);
 2346 
 2347         error = 0;
 2348         syncstates = 1;
 2349 
 2350         ifp = inm->inm_ifp;
 2351 
 2352         IN_MULTI_LOCK_ASSERT();
 2353         IGMP_LOCK_ASSERT();
 2354 
 2355         KASSERT(igi && igi->igi_ifp == ifp, ("%s: inconsistent ifp", __func__));
 2356 
 2357         /*
 2358          * Groups joined on loopback or marked as 'not reported',
 2359          * e.g. 224.0.0.1, enter the IGMP_SILENT_MEMBER state and
 2360          * are never reported in any IGMP protocol exchanges.
 2361          * All other groups enter the appropriate IGMP state machine
 2362          * for the version in use on this link.
 2363          * A link marked as IGIF_SILENT causes IGMP to be completely
 2364          * disabled for the link.
 2365          */
 2366         if ((ifp->if_flags & IFF_LOOPBACK) ||
 2367             (igi->igi_flags & IGIF_SILENT) ||
 2368             !igmp_isgroupreported(inm->inm_addr)) {
 2369                 CTR1(KTR_IGMPV3,
 2370 "%s: not kicking state machine for silent group", __func__);
 2371                 inm->inm_state = IGMP_SILENT_MEMBER;
 2372                 inm->inm_timer = 0;
 2373         } else {
 2374                 /*
 2375                  * Deal with overlapping in_multi lifecycle.
 2376                  * If this group was LEAVING, then make sure
 2377                  * we drop the reference we picked up to keep the
 2378                  * group around for the final INCLUDE {} enqueue.
 2379                  */
 2380                 if (igi->igi_version == IGMP_VERSION_3 &&
 2381                     inm->inm_state == IGMP_LEAVING_MEMBER)
 2382                         inm_release_locked(inm);
 2383 
 2384                 inm->inm_state = IGMP_REPORTING_MEMBER;
 2385 
 2386                 switch (igi->igi_version) {
 2387                 case IGMP_VERSION_1:
 2388                 case IGMP_VERSION_2:
 2389                         inm->inm_state = IGMP_IDLE_MEMBER;
 2390                         error = igmp_v1v2_queue_report(inm,
 2391                             (igi->igi_version == IGMP_VERSION_2) ?
 2392                              IGMP_v2_HOST_MEMBERSHIP_REPORT :
 2393                              IGMP_v1_HOST_MEMBERSHIP_REPORT);
 2394                         if (error == 0) {
 2395                                 inm->inm_timer = IGMP_RANDOM_DELAY(
 2396                                     IGMP_V1V2_MAX_RI * PR_FASTHZ);
 2397                                 V_current_state_timers_running = 1;
 2398                         }
 2399                         break;
 2400 
 2401                 case IGMP_VERSION_3:
 2402                         /*
 2403                          * Defer update of T0 to T1, until the first copy
 2404                          * of the state change has been transmitted.
 2405                          */
 2406                         syncstates = 0;
 2407 
 2408                         /*
 2409                          * Immediately enqueue a State-Change Report for
 2410                          * this interface, freeing any previous reports.
 2411                          * Don't kick the timers if there is nothing to do,
 2412                          * or if an error occurred.
 2413                          */
 2414                         ifq = &inm->inm_scq;
 2415                         _IF_DRAIN(ifq);
 2416                         retval = igmp_v3_enqueue_group_record(ifq, inm, 1,
 2417                             0, 0);
 2418                         CTR2(KTR_IGMPV3, "%s: enqueue record = %d",
 2419                             __func__, retval);
 2420                         if (retval <= 0) {
 2421                                 error = retval * -1;
 2422                                 break;
 2423                         }
 2424 
 2425                         /*
 2426                          * Schedule transmission of pending state-change
 2427                          * report up to RV times for this link. The timer
 2428                          * will fire at the next igmp_fasttimo (~200ms),
 2429                          * giving us an opportunity to merge the reports.
 2430                          */
 2431                         if (igi->igi_flags & IGIF_LOOPBACK) {
 2432                                 inm->inm_scrv = 1;
 2433                         } else {
 2434                                 KASSERT(igi->igi_rv > 1,
 2435                                    ("%s: invalid robustness %d", __func__,
 2436                                     igi->igi_rv));
 2437                                 inm->inm_scrv = igi->igi_rv;
 2438                         }
 2439                         inm->inm_sctimer = 1;
 2440                         V_state_change_timers_running = 1;
 2441 
 2442                         error = 0;
 2443                         break;
 2444                 }
 2445         }
 2446 
 2447         /*
 2448          * Only update the T0 state if state change is atomic,
 2449          * i.e. we don't need to wait for a timer to fire before we
 2450          * can consider the state change to have been communicated.
 2451          */
 2452         if (syncstates) {
 2453                 inm_commit(inm);
 2454                 CTR3(KTR_IGMPV3, "%s: T1 -> T0 for %s/%s", __func__,
 2455                     inet_ntoa(inm->inm_addr), inm->inm_ifp->if_xname);
 2456         }
 2457 
 2458         return (error);
 2459 }
 2460 
 2461 /*
 2462  * Issue an intermediate state change during the IGMP life-cycle.
 2463  */
 2464 static int
 2465 igmp_handle_state_change(struct in_multi *inm, struct igmp_ifinfo *igi)
 2466 {
 2467         struct ifnet            *ifp;
 2468         int                      retval;
 2469 
 2470         CTR4(KTR_IGMPV3, "%s: state change for %s on ifp %p(%s)",
 2471             __func__, inet_ntoa(inm->inm_addr), inm->inm_ifp,
 2472             inm->inm_ifp->if_xname);
 2473 
 2474         ifp = inm->inm_ifp;
 2475 
 2476         IN_MULTI_LOCK_ASSERT();
 2477         IGMP_LOCK_ASSERT();
 2478 
 2479         KASSERT(igi && igi->igi_ifp == ifp, ("%s: inconsistent ifp", __func__));
 2480 
 2481         if ((ifp->if_flags & IFF_LOOPBACK) ||
 2482             (igi->igi_flags & IGIF_SILENT) ||
 2483             !igmp_isgroupreported(inm->inm_addr) ||
 2484             (igi->igi_version != IGMP_VERSION_3)) {
 2485                 if (!igmp_isgroupreported(inm->inm_addr)) {
 2486                         CTR1(KTR_IGMPV3,
 2487 "%s: not kicking state machine for silent group", __func__);
 2488                 }
 2489                 CTR1(KTR_IGMPV3, "%s: nothing to do", __func__);
 2490                 inm_commit(inm);
 2491                 CTR3(KTR_IGMPV3, "%s: T1 -> T0 for %s/%s", __func__,
 2492                     inet_ntoa(inm->inm_addr), inm->inm_ifp->if_xname);
 2493                 return (0);
 2494         }
 2495 
 2496         _IF_DRAIN(&inm->inm_scq);
 2497 
 2498         retval = igmp_v3_enqueue_group_record(&inm->inm_scq, inm, 1, 0, 0);
 2499         CTR2(KTR_IGMPV3, "%s: enqueue record = %d", __func__, retval);
 2500         if (retval <= 0)
 2501                 return (-retval);
 2502 
 2503         /*
 2504          * If record(s) were enqueued, start the state-change
 2505          * report timer for this group.
 2506          */
 2507         inm->inm_scrv = ((igi->igi_flags & IGIF_LOOPBACK) ? 1 : igi->igi_rv);
 2508         inm->inm_sctimer = 1;
 2509         V_state_change_timers_running = 1;
 2510 
 2511         return (0);
 2512 }
 2513 
 2514 /*
 2515  * Perform the final leave for an IGMP group.
 2516  *
 2517  * When leaving a group:
 2518  *  IGMPv1 does nothing.
 2519  *  IGMPv2 sends a host leave message, if and only if we are the reporter.
 2520  *  IGMPv3 enqueues a state-change report containing a transition
 2521  *  to INCLUDE {} for immediate transmission.
 2522  */
 2523 static void
 2524 igmp_final_leave(struct in_multi *inm, struct igmp_ifinfo *igi)
 2525 {
 2526         int syncstates;
 2527 
 2528         syncstates = 1;
 2529 
 2530         CTR4(KTR_IGMPV3, "%s: final leave %s on ifp %p(%s)",
 2531             __func__, inet_ntoa(inm->inm_addr), inm->inm_ifp,
 2532             inm->inm_ifp->if_xname);
 2533 
 2534         IN_MULTI_LOCK_ASSERT();
 2535         IGMP_LOCK_ASSERT();
 2536 
 2537         switch (inm->inm_state) {
 2538         case IGMP_NOT_MEMBER:
 2539         case IGMP_SILENT_MEMBER:
 2540         case IGMP_LEAVING_MEMBER:
 2541                 /* Already leaving or left; do nothing. */
 2542                 CTR1(KTR_IGMPV3,
 2543 "%s: not kicking state machine for silent group", __func__);
 2544                 break;
 2545         case IGMP_REPORTING_MEMBER:
 2546         case IGMP_IDLE_MEMBER:
 2547         case IGMP_G_QUERY_PENDING_MEMBER:
 2548         case IGMP_SG_QUERY_PENDING_MEMBER:
 2549                 if (igi->igi_version == IGMP_VERSION_2) {
 2550 #ifdef INVARIANTS
 2551                         if (inm->inm_state == IGMP_G_QUERY_PENDING_MEMBER ||
 2552                             inm->inm_state == IGMP_SG_QUERY_PENDING_MEMBER)
 2553                         panic("%s: IGMPv3 state reached, not IGMPv3 mode",
 2554                              __func__);
 2555 #endif
 2556                         igmp_v1v2_queue_report(inm, IGMP_HOST_LEAVE_MESSAGE);
 2557                         inm->inm_state = IGMP_NOT_MEMBER;
 2558                 } else if (igi->igi_version == IGMP_VERSION_3) {
 2559                         /*
 2560                          * Stop group timer and all pending reports.
 2561                          * Immediately enqueue a state-change report
 2562                          * TO_IN {} to be sent on the next fast timeout,
 2563                          * giving us an opportunity to merge reports.
 2564                          */
 2565                         _IF_DRAIN(&inm->inm_scq);
 2566                         inm->inm_timer = 0;
 2567                         if (igi->igi_flags & IGIF_LOOPBACK) {
 2568                                 inm->inm_scrv = 1;
 2569                         } else {
 2570                                 inm->inm_scrv = igi->igi_rv;
 2571                         }
 2572                         CTR4(KTR_IGMPV3, "%s: Leaving %s/%s with %d "
 2573                             "pending retransmissions.", __func__,
 2574                             inet_ntoa(inm->inm_addr),
 2575                             inm->inm_ifp->if_xname, inm->inm_scrv);
 2576                         if (inm->inm_scrv == 0) {
 2577                                 inm->inm_state = IGMP_NOT_MEMBER;
 2578                                 inm->inm_sctimer = 0;
 2579                         } else {
 2580                                 int retval;
 2581 
 2582                                 inm_acquire_locked(inm);
 2583 
 2584                                 retval = igmp_v3_enqueue_group_record(
 2585                                     &inm->inm_scq, inm, 1, 0, 0);
 2586                                 KASSERT(retval != 0,
 2587                                     ("%s: enqueue record = %d", __func__,
 2588                                      retval));
 2589 
 2590                                 inm->inm_state = IGMP_LEAVING_MEMBER;
 2591                                 inm->inm_sctimer = 1;
 2592                                 V_state_change_timers_running = 1;
 2593                                 syncstates = 0;
 2594                         }
 2595                         break;
 2596                 }
 2597                 break;
 2598         case IGMP_LAZY_MEMBER:
 2599         case IGMP_SLEEPING_MEMBER:
 2600         case IGMP_AWAKENING_MEMBER:
 2601                 /* Our reports are suppressed; do nothing. */
 2602                 break;
 2603         }
 2604 
 2605         if (syncstates) {
 2606                 inm_commit(inm);
 2607                 CTR3(KTR_IGMPV3, "%s: T1 -> T0 for %s/%s", __func__,
 2608                     inet_ntoa(inm->inm_addr), inm->inm_ifp->if_xname);
 2609                 inm->inm_st[1].iss_fmode = MCAST_UNDEFINED;
 2610                 CTR3(KTR_IGMPV3, "%s: T1 now MCAST_UNDEFINED for %s/%s",
 2611                     __func__, inet_ntoa(inm->inm_addr), inm->inm_ifp->if_xname);
 2612         }
 2613 }
 2614 
 2615 /*
 2616  * Enqueue an IGMPv3 group record to the given output queue.
 2617  *
 2618  * XXX This function could do with having the allocation code
 2619  * split out, and the multiple-tree-walks coalesced into a single
 2620  * routine as has been done in igmp_v3_enqueue_filter_change().
 2621  *
 2622  * If is_state_change is zero, a current-state record is appended.
 2623  * If is_state_change is non-zero, a state-change report is appended.
 2624  *
 2625  * If is_group_query is non-zero, an mbuf packet chain is allocated.
 2626  * If is_group_query is zero, and if there is a packet with free space
 2627  * at the tail of the queue, it will be appended to providing there
 2628  * is enough free space.
 2629  * Otherwise a new mbuf packet chain is allocated.
 2630  *
 2631  * If is_source_query is non-zero, each source is checked to see if
 2632  * it was recorded for a Group-Source query, and will be omitted if
 2633  * it is not both in-mode and recorded.
 2634  *
 2635  * The function will attempt to allocate leading space in the packet
 2636  * for the IP/IGMP header to be prepended without fragmenting the chain.
 2637  *
 2638  * If successful the size of all data appended to the queue is returned,
 2639  * otherwise an error code less than zero is returned, or zero if
 2640  * no record(s) were appended.
 2641  */
 2642 static int
 2643 igmp_v3_enqueue_group_record(struct ifqueue *ifq, struct in_multi *inm,
 2644     const int is_state_change, const int is_group_query,
 2645     const int is_source_query)
 2646 {
 2647         struct igmp_grouprec     ig;
 2648         struct igmp_grouprec    *pig;
 2649         struct ifnet            *ifp;
 2650         struct ip_msource       *ims, *nims;
 2651         struct mbuf             *m0, *m, *md;
 2652         int                      error, is_filter_list_change;
 2653         int                      minrec0len, m0srcs, msrcs, nbytes, off;
 2654         int                      record_has_sources;
 2655         int                      now;
 2656         int                      type;
 2657         in_addr_t                naddr;
 2658         uint8_t                  mode;
 2659 
 2660         IN_MULTI_LOCK_ASSERT();
 2661 
 2662         error = 0;
 2663         ifp = inm->inm_ifp;
 2664         is_filter_list_change = 0;
 2665         m = NULL;
 2666         m0 = NULL;
 2667         m0srcs = 0;
 2668         msrcs = 0;
 2669         nbytes = 0;
 2670         nims = NULL;
 2671         record_has_sources = 1;
 2672         pig = NULL;
 2673         type = IGMP_DO_NOTHING;
 2674         mode = inm->inm_st[1].iss_fmode;
 2675 
 2676         /*
 2677          * If we did not transition out of ASM mode during t0->t1,
 2678          * and there are no source nodes to process, we can skip
 2679          * the generation of source records.
 2680          */
 2681         if (inm->inm_st[0].iss_asm > 0 && inm->inm_st[1].iss_asm > 0 &&
 2682             inm->inm_nsrc == 0)
 2683                 record_has_sources = 0;
 2684 
 2685         if (is_state_change) {
 2686                 /*
 2687                  * Queue a state change record.
 2688                  * If the mode did not change, and there are non-ASM
 2689                  * listeners or source filters present,
 2690                  * we potentially need to issue two records for the group.
 2691                  * If we are transitioning to MCAST_UNDEFINED, we need
 2692                  * not send any sources.
 2693                  * If there are ASM listeners, and there was no filter
 2694                  * mode transition of any kind, do nothing.
 2695                  */
 2696                 if (mode != inm->inm_st[0].iss_fmode) {
 2697                         if (mode == MCAST_EXCLUDE) {
 2698                                 CTR1(KTR_IGMPV3, "%s: change to EXCLUDE",
 2699                                     __func__);
 2700                                 type = IGMP_CHANGE_TO_EXCLUDE_MODE;
 2701                         } else {
 2702                                 CTR1(KTR_IGMPV3, "%s: change to INCLUDE",
 2703                                     __func__);
 2704                                 type = IGMP_CHANGE_TO_INCLUDE_MODE;
 2705                                 if (mode == MCAST_UNDEFINED)
 2706                                         record_has_sources = 0;
 2707                         }
 2708                 } else {
 2709                         if (record_has_sources) {
 2710                                 is_filter_list_change = 1;
 2711                         } else {
 2712                                 type = IGMP_DO_NOTHING;
 2713                         }
 2714                 }
 2715         } else {
 2716                 /*
 2717                  * Queue a current state record.
 2718                  */
 2719                 if (mode == MCAST_EXCLUDE) {
 2720                         type = IGMP_MODE_IS_EXCLUDE;
 2721                 } else if (mode == MCAST_INCLUDE) {
 2722                         type = IGMP_MODE_IS_INCLUDE;
 2723                         KASSERT(inm->inm_st[1].iss_asm == 0,
 2724                             ("%s: inm %p is INCLUDE but ASM count is %d",
 2725                              __func__, inm, inm->inm_st[1].iss_asm));
 2726                 }
 2727         }
 2728 
 2729         /*
 2730          * Generate the filter list changes using a separate function.
 2731          */
 2732         if (is_filter_list_change)
 2733                 return (igmp_v3_enqueue_filter_change(ifq, inm));
 2734 
 2735         if (type == IGMP_DO_NOTHING) {
 2736                 CTR3(KTR_IGMPV3, "%s: nothing to do for %s/%s",
 2737                     __func__, inet_ntoa(inm->inm_addr),
 2738                     inm->inm_ifp->if_xname);
 2739                 return (0);
 2740         }
 2741 
 2742         /*
 2743          * If any sources are present, we must be able to fit at least
 2744          * one in the trailing space of the tail packet's mbuf,
 2745          * ideally more.
 2746          */
 2747         minrec0len = sizeof(struct igmp_grouprec);
 2748         if (record_has_sources)
 2749                 minrec0len += sizeof(in_addr_t);
 2750 
 2751         CTR4(KTR_IGMPV3, "%s: queueing %s for %s/%s", __func__,
 2752             igmp_rec_type_to_str(type), inet_ntoa(inm->inm_addr),
 2753             inm->inm_ifp->if_xname);
 2754 
 2755         /*
 2756          * Check if we have a packet in the tail of the queue for this
 2757          * group into which the first group record for this group will fit.
 2758          * Otherwise allocate a new packet.
 2759          * Always allocate leading space for IP+RA_OPT+IGMP+REPORT.
 2760          * Note: Group records for G/GSR query responses MUST be sent
 2761          * in their own packet.
 2762          */
 2763         m0 = ifq->ifq_tail;
 2764         if (!is_group_query &&
 2765             m0 != NULL &&
 2766             (m0->m_pkthdr.PH_vt.vt_nrecs + 1 <= IGMP_V3_REPORT_MAXRECS) &&
 2767             (m0->m_pkthdr.len + minrec0len) <
 2768              (ifp->if_mtu - IGMP_LEADINGSPACE)) {
 2769                 m0srcs = (ifp->if_mtu - m0->m_pkthdr.len -
 2770                             sizeof(struct igmp_grouprec)) / sizeof(in_addr_t);
 2771                 m = m0;
 2772                 CTR1(KTR_IGMPV3, "%s: use existing packet", __func__);
 2773         } else {
 2774                 if (_IF_QFULL(ifq)) {
 2775                         CTR1(KTR_IGMPV3, "%s: outbound queue full", __func__);
 2776                         return (-ENOMEM);
 2777                 }
 2778                 m = NULL;
 2779                 m0srcs = (ifp->if_mtu - IGMP_LEADINGSPACE -
 2780                     sizeof(struct igmp_grouprec)) / sizeof(in_addr_t);
 2781                 if (!is_state_change && !is_group_query) {
 2782                         m = m_getcl(M_DONTWAIT, MT_DATA, M_PKTHDR);
 2783                         if (m)
 2784                                 m->m_data += IGMP_LEADINGSPACE;
 2785                 }
 2786                 if (m == NULL) {
 2787                         m = m_gethdr(M_DONTWAIT, MT_DATA);
 2788                         if (m)
 2789                                 MH_ALIGN(m, IGMP_LEADINGSPACE);
 2790                 }
 2791                 if (m == NULL)
 2792                         return (-ENOMEM);
 2793 
 2794                 igmp_save_context(m, ifp);
 2795 
 2796                 CTR1(KTR_IGMPV3, "%s: allocated first packet", __func__);
 2797         }
 2798 
 2799         /*
 2800          * Append group record.
 2801          * If we have sources, we don't know how many yet.
 2802          */
 2803         ig.ig_type = type;
 2804         ig.ig_datalen = 0;
 2805         ig.ig_numsrc = 0;
 2806         ig.ig_group = inm->inm_addr;
 2807         if (!m_append(m, sizeof(struct igmp_grouprec), (void *)&ig)) {
 2808                 if (m != m0)
 2809                         m_freem(m);
 2810                 CTR1(KTR_IGMPV3, "%s: m_append() failed.", __func__);
 2811                 return (-ENOMEM);
 2812         }
 2813         nbytes += sizeof(struct igmp_grouprec);
 2814 
 2815         /*
 2816          * Append as many sources as will fit in the first packet.
 2817          * If we are appending to a new packet, the chain allocation
 2818          * may potentially use clusters; use m_getptr() in this case.
 2819          * If we are appending to an existing packet, we need to obtain
 2820          * a pointer to the group record after m_append(), in case a new
 2821          * mbuf was allocated.
 2822          * Only append sources which are in-mode at t1. If we are
 2823          * transitioning to MCAST_UNDEFINED state on the group, do not
 2824          * include source entries.
 2825          * Only report recorded sources in our filter set when responding
 2826          * to a group-source query.
 2827          */
 2828         if (record_has_sources) {
 2829                 if (m == m0) {
 2830                         md = m_last(m);
 2831                         pig = (struct igmp_grouprec *)(mtod(md, uint8_t *) +
 2832                             md->m_len - nbytes);
 2833                 } else {
 2834                         md = m_getptr(m, 0, &off);
 2835                         pig = (struct igmp_grouprec *)(mtod(md, uint8_t *) +
 2836                             off);
 2837                 }
 2838                 msrcs = 0;
 2839                 RB_FOREACH_SAFE(ims, ip_msource_tree, &inm->inm_srcs, nims) {
 2840                         CTR2(KTR_IGMPV3, "%s: visit node %s", __func__,
 2841                             inet_ntoa_haddr(ims->ims_haddr));
 2842                         now = ims_get_mode(inm, ims, 1);
 2843                         CTR2(KTR_IGMPV3, "%s: node is %d", __func__, now);
 2844                         if ((now != mode) ||
 2845                             (now == mode && mode == MCAST_UNDEFINED)) {
 2846                                 CTR1(KTR_IGMPV3, "%s: skip node", __func__);
 2847                                 continue;
 2848                         }
 2849                         if (is_source_query && ims->ims_stp == 0) {
 2850                                 CTR1(KTR_IGMPV3, "%s: skip unrecorded node",
 2851                                     __func__);
 2852                                 continue;
 2853                         }
 2854                         CTR1(KTR_IGMPV3, "%s: append node", __func__);
 2855                         naddr = htonl(ims->ims_haddr);
 2856                         if (!m_append(m, sizeof(in_addr_t), (void *)&naddr)) {
 2857                                 if (m != m0)
 2858                                         m_freem(m);
 2859                                 CTR1(KTR_IGMPV3, "%s: m_append() failed.",
 2860                                     __func__);
 2861                                 return (-ENOMEM);
 2862                         }
 2863                         nbytes += sizeof(in_addr_t);
 2864                         ++msrcs;
 2865                         if (msrcs == m0srcs)
 2866                                 break;
 2867                 }
 2868                 CTR2(KTR_IGMPV3, "%s: msrcs is %d this packet", __func__,
 2869                     msrcs);
 2870                 pig->ig_numsrc = htons(msrcs);
 2871                 nbytes += (msrcs * sizeof(in_addr_t));
 2872         }
 2873 
 2874         if (is_source_query && msrcs == 0) {
 2875                 CTR1(KTR_IGMPV3, "%s: no recorded sources to report", __func__);
 2876                 if (m != m0)
 2877                         m_freem(m);
 2878                 return (0);
 2879         }
 2880 
 2881         /*
 2882          * We are good to go with first packet.
 2883          */
 2884         if (m != m0) {
 2885                 CTR1(KTR_IGMPV3, "%s: enqueueing first packet", __func__);
 2886                 m->m_pkthdr.PH_vt.vt_nrecs = 1;
 2887                 _IF_ENQUEUE(ifq, m);
 2888         } else
 2889                 m->m_pkthdr.PH_vt.vt_nrecs++;
 2890 
 2891         /*
 2892          * No further work needed if no source list in packet(s).
 2893          */
 2894         if (!record_has_sources)
 2895                 return (nbytes);
 2896 
 2897         /*
 2898          * Whilst sources remain to be announced, we need to allocate
 2899          * a new packet and fill out as many sources as will fit.
 2900          * Always try for a cluster first.
 2901          */
 2902         while (nims != NULL) {
 2903                 if (_IF_QFULL(ifq)) {
 2904                         CTR1(KTR_IGMPV3, "%s: outbound queue full", __func__);
 2905                         return (-ENOMEM);
 2906                 }
 2907                 m = m_getcl(M_DONTWAIT, MT_DATA, M_PKTHDR);
 2908                 if (m)
 2909                         m->m_data += IGMP_LEADINGSPACE;
 2910                 if (m == NULL) {
 2911                         m = m_gethdr(M_DONTWAIT, MT_DATA);
 2912                         if (m)
 2913                                 MH_ALIGN(m, IGMP_LEADINGSPACE);
 2914                 }
 2915                 if (m == NULL)
 2916                         return (-ENOMEM);
 2917                 igmp_save_context(m, ifp);
 2918                 md = m_getptr(m, 0, &off);
 2919                 pig = (struct igmp_grouprec *)(mtod(md, uint8_t *) + off);
 2920                 CTR1(KTR_IGMPV3, "%s: allocated next packet", __func__);
 2921 
 2922                 if (!m_append(m, sizeof(struct igmp_grouprec), (void *)&ig)) {
 2923                         if (m != m0)
 2924                                 m_freem(m);
 2925                         CTR1(KTR_IGMPV3, "%s: m_append() failed.", __func__);
 2926                         return (-ENOMEM);
 2927                 }
 2928                 m->m_pkthdr.PH_vt.vt_nrecs = 1;
 2929                 nbytes += sizeof(struct igmp_grouprec);
 2930 
 2931                 m0srcs = (ifp->if_mtu - IGMP_LEADINGSPACE -
 2932                     sizeof(struct igmp_grouprec)) / sizeof(in_addr_t);
 2933 
 2934                 msrcs = 0;
 2935                 RB_FOREACH_FROM(ims, ip_msource_tree, nims) {
 2936                         CTR2(KTR_IGMPV3, "%s: visit node %s", __func__,
 2937                             inet_ntoa_haddr(ims->ims_haddr));
 2938                         now = ims_get_mode(inm, ims, 1);
 2939                         if ((now != mode) ||
 2940                             (now == mode && mode == MCAST_UNDEFINED)) {
 2941                                 CTR1(KTR_IGMPV3, "%s: skip node", __func__);
 2942                                 continue;
 2943                         }
 2944                         if (is_source_query && ims->ims_stp == 0) {
 2945                                 CTR1(KTR_IGMPV3, "%s: skip unrecorded node",
 2946                                     __func__);
 2947                                 continue;
 2948                         }
 2949                         CTR1(KTR_IGMPV3, "%s: append node", __func__);
 2950                         naddr = htonl(ims->ims_haddr);
 2951                         if (!m_append(m, sizeof(in_addr_t), (void *)&naddr)) {
 2952                                 if (m != m0)
 2953                                         m_freem(m);
 2954                                 CTR1(KTR_IGMPV3, "%s: m_append() failed.",
 2955                                     __func__);
 2956                                 return (-ENOMEM);
 2957                         }
 2958                         ++msrcs;
 2959                         if (msrcs == m0srcs)
 2960                                 break;
 2961                 }
 2962                 pig->ig_numsrc = htons(msrcs);
 2963                 nbytes += (msrcs * sizeof(in_addr_t));
 2964 
 2965                 CTR1(KTR_IGMPV3, "%s: enqueueing next packet", __func__);
 2966                 _IF_ENQUEUE(ifq, m);
 2967         }
 2968 
 2969         return (nbytes);
 2970 }
 2971 
 2972 /*
 2973  * Type used to mark record pass completion.
 2974  * We exploit the fact we can cast to this easily from the
 2975  * current filter modes on each ip_msource node.
 2976  */
 2977 typedef enum {
 2978         REC_NONE = 0x00,        /* MCAST_UNDEFINED */
 2979         REC_ALLOW = 0x01,       /* MCAST_INCLUDE */
 2980         REC_BLOCK = 0x02,       /* MCAST_EXCLUDE */
 2981         REC_FULL = REC_ALLOW | REC_BLOCK
 2982 } rectype_t;
 2983 
 2984 /*
 2985  * Enqueue an IGMPv3 filter list change to the given output queue.
 2986  *
 2987  * Source list filter state is held in an RB-tree. When the filter list
 2988  * for a group is changed without changing its mode, we need to compute
 2989  * the deltas between T0 and T1 for each source in the filter set,
 2990  * and enqueue the appropriate ALLOW_NEW/BLOCK_OLD records.
 2991  *
 2992  * As we may potentially queue two record types, and the entire R-B tree
 2993  * needs to be walked at once, we break this out into its own function
 2994  * so we can generate a tightly packed queue of packets.
 2995  *
 2996  * XXX This could be written to only use one tree walk, although that makes
 2997  * serializing into the mbuf chains a bit harder. For now we do two walks
 2998  * which makes things easier on us, and it may or may not be harder on
 2999  * the L2 cache.
 3000  *
 3001  * If successful the size of all data appended to the queue is returned,
 3002  * otherwise an error code less than zero is returned, or zero if
 3003  * no record(s) were appended.
 3004  */
 3005 static int
 3006 igmp_v3_enqueue_filter_change(struct ifqueue *ifq, struct in_multi *inm)
 3007 {
 3008         static const int MINRECLEN =
 3009             sizeof(struct igmp_grouprec) + sizeof(in_addr_t);
 3010         struct ifnet            *ifp;
 3011         struct igmp_grouprec     ig;
 3012         struct igmp_grouprec    *pig;
 3013         struct ip_msource       *ims, *nims;
 3014         struct mbuf             *m, *m0, *md;
 3015         in_addr_t                naddr;
 3016         int                      m0srcs, nbytes, npbytes, off, rsrcs, schanged;
 3017         int                      nallow, nblock;
 3018         uint8_t                  mode, now, then;
 3019         rectype_t                crt, drt, nrt;
 3020 
 3021         IN_MULTI_LOCK_ASSERT();
 3022 
 3023         if (inm->inm_nsrc == 0 ||
 3024             (inm->inm_st[0].iss_asm > 0 && inm->inm_st[1].iss_asm > 0))
 3025                 return (0);
 3026 
 3027         ifp = inm->inm_ifp;                     /* interface */
 3028         mode = inm->inm_st[1].iss_fmode;        /* filter mode at t1 */
 3029         crt = REC_NONE; /* current group record type */
 3030         drt = REC_NONE; /* mask of completed group record types */
 3031         nrt = REC_NONE; /* record type for current node */
 3032         m0srcs = 0;     /* # source which will fit in current mbuf chain */
 3033         nbytes = 0;     /* # of bytes appended to group's state-change queue */
 3034         npbytes = 0;    /* # of bytes appended this packet */
 3035         rsrcs = 0;      /* # sources encoded in current record */
 3036         schanged = 0;   /* # nodes encoded in overall filter change */
 3037         nallow = 0;     /* # of source entries in ALLOW_NEW */
 3038         nblock = 0;     /* # of source entries in BLOCK_OLD */
 3039         nims = NULL;    /* next tree node pointer */
 3040 
 3041         /*
 3042          * For each possible filter record mode.
 3043          * The first kind of source we encounter tells us which
 3044          * is the first kind of record we start appending.
 3045          * If a node transitioned to UNDEFINED at t1, its mode is treated
 3046          * as the inverse of the group's filter mode.
 3047          */
 3048         while (drt != REC_FULL) {
 3049                 do {
 3050                         m0 = ifq->ifq_tail;
 3051                         if (m0 != NULL &&
 3052                             (m0->m_pkthdr.PH_vt.vt_nrecs + 1 <=
 3053                              IGMP_V3_REPORT_MAXRECS) &&
 3054                             (m0->m_pkthdr.len + MINRECLEN) <
 3055                              (ifp->if_mtu - IGMP_LEADINGSPACE)) {
 3056                                 m = m0;
 3057                                 m0srcs = (ifp->if_mtu - m0->m_pkthdr.len -
 3058                                             sizeof(struct igmp_grouprec)) /
 3059                                     sizeof(in_addr_t);
 3060                                 CTR1(KTR_IGMPV3,
 3061                                     "%s: use previous packet", __func__);
 3062                         } else {
 3063                                 m = m_getcl(M_DONTWAIT, MT_DATA, M_PKTHDR);
 3064                                 if (m)
 3065                                         m->m_data += IGMP_LEADINGSPACE;
 3066                                 if (m == NULL) {
 3067                                         m = m_gethdr(M_DONTWAIT, MT_DATA);
 3068                                         if (m)
 3069                                                 MH_ALIGN(m, IGMP_LEADINGSPACE);
 3070                                 }
 3071                                 if (m == NULL) {
 3072                                         CTR1(KTR_IGMPV3,
 3073                                             "%s: m_get*() failed", __func__);
 3074                                         return (-ENOMEM);
 3075                                 }
 3076                                 m->m_pkthdr.PH_vt.vt_nrecs = 0;
 3077                                 igmp_save_context(m, ifp);
 3078                                 m0srcs = (ifp->if_mtu - IGMP_LEADINGSPACE -
 3079                                     sizeof(struct igmp_grouprec)) /
 3080                                     sizeof(in_addr_t);
 3081                                 npbytes = 0;
 3082                                 CTR1(KTR_IGMPV3,
 3083                                     "%s: allocated new packet", __func__);
 3084                         }
 3085                         /*
 3086                          * Append the IGMP group record header to the
 3087                          * current packet's data area.
 3088                          * Recalculate pointer to free space for next
 3089                          * group record, in case m_append() allocated
 3090                          * a new mbuf or cluster.
 3091                          */
 3092                         memset(&ig, 0, sizeof(ig));
 3093                         ig.ig_group = inm->inm_addr;
 3094                         if (!m_append(m, sizeof(ig), (void *)&ig)) {
 3095                                 if (m != m0)
 3096                                         m_freem(m);
 3097                                 CTR1(KTR_IGMPV3,
 3098                                     "%s: m_append() failed", __func__);
 3099                                 return (-ENOMEM);
 3100                         }
 3101                         npbytes += sizeof(struct igmp_grouprec);
 3102                         if (m != m0) {
 3103                                 /* new packet; offset in c hain */
 3104                                 md = m_getptr(m, npbytes -
 3105                                     sizeof(struct igmp_grouprec), &off);
 3106                                 pig = (struct igmp_grouprec *)(mtod(md,
 3107                                     uint8_t *) + off);
 3108                         } else {
 3109                                 /* current packet; offset from last append */
 3110                                 md = m_last(m);
 3111                                 pig = (struct igmp_grouprec *)(mtod(md,
 3112                                     uint8_t *) + md->m_len -
 3113                                     sizeof(struct igmp_grouprec));
 3114                         }
 3115                         /*
 3116                          * Begin walking the tree for this record type
 3117                          * pass, or continue from where we left off
 3118                          * previously if we had to allocate a new packet.
 3119                          * Only report deltas in-mode at t1.
 3120                          * We need not report included sources as allowed
 3121                          * if we are in inclusive mode on the group,
 3122                          * however the converse is not true.
 3123                          */
 3124                         rsrcs = 0;
 3125                         if (nims == NULL)
 3126                                 nims = RB_MIN(ip_msource_tree, &inm->inm_srcs);
 3127                         RB_FOREACH_FROM(ims, ip_msource_tree, nims) {
 3128                                 CTR2(KTR_IGMPV3, "%s: visit node %s",
 3129                                     __func__, inet_ntoa_haddr(ims->ims_haddr));
 3130                                 now = ims_get_mode(inm, ims, 1);
 3131                                 then = ims_get_mode(inm, ims, 0);
 3132                                 CTR3(KTR_IGMPV3, "%s: mode: t0 %d, t1 %d",
 3133                                     __func__, then, now);
 3134                                 if (now == then) {
 3135                                         CTR1(KTR_IGMPV3,
 3136                                             "%s: skip unchanged", __func__);
 3137                                         continue;
 3138                                 }
 3139                                 if (mode == MCAST_EXCLUDE &&
 3140                                     now == MCAST_INCLUDE) {
 3141                                         CTR1(KTR_IGMPV3,
 3142                                             "%s: skip IN src on EX group",
 3143                                             __func__);
 3144                                         continue;
 3145                                 }
 3146                                 nrt = (rectype_t)now;
 3147                                 if (nrt == REC_NONE)
 3148                                         nrt = (rectype_t)(~mode & REC_FULL);
 3149                                 if (schanged++ == 0) {
 3150                                         crt = nrt;
 3151                                 } else if (crt != nrt)
 3152                                         continue;
 3153                                 naddr = htonl(ims->ims_haddr);
 3154                                 if (!m_append(m, sizeof(in_addr_t),
 3155                                     (void *)&naddr)) {
 3156                                         if (m != m0)
 3157                                                 m_freem(m);
 3158                                         CTR1(KTR_IGMPV3,
 3159                                             "%s: m_append() failed", __func__);
 3160                                         return (-ENOMEM);
 3161                                 }
 3162                                 nallow += !!(crt == REC_ALLOW);
 3163                                 nblock += !!(crt == REC_BLOCK);
 3164                                 if (++rsrcs == m0srcs)
 3165                                         break;
 3166                         }
 3167                         /*
 3168                          * If we did not append any tree nodes on this
 3169                          * pass, back out of allocations.
 3170                          */
 3171                         if (rsrcs == 0) {
 3172                                 npbytes -= sizeof(struct igmp_grouprec);
 3173                                 if (m != m0) {
 3174                                         CTR1(KTR_IGMPV3,
 3175                                             "%s: m_free(m)", __func__);
 3176                                         m_freem(m);
 3177                                 } else {
 3178                                         CTR1(KTR_IGMPV3,
 3179                                             "%s: m_adj(m, -ig)", __func__);
 3180                                         m_adj(m, -((int)sizeof(
 3181                                             struct igmp_grouprec)));
 3182                                 }
 3183                                 continue;
 3184                         }
 3185                         npbytes += (rsrcs * sizeof(in_addr_t));
 3186                         if (crt == REC_ALLOW)
 3187                                 pig->ig_type = IGMP_ALLOW_NEW_SOURCES;
 3188                         else if (crt == REC_BLOCK)
 3189                                 pig->ig_type = IGMP_BLOCK_OLD_SOURCES;
 3190                         pig->ig_numsrc = htons(rsrcs);
 3191                         /*
 3192                          * Count the new group record, and enqueue this
 3193                          * packet if it wasn't already queued.
 3194                          */
 3195                         m->m_pkthdr.PH_vt.vt_nrecs++;
 3196                         if (m != m0)
 3197                                 _IF_ENQUEUE(ifq, m);
 3198                         nbytes += npbytes;
 3199                 } while (nims != NULL);
 3200                 drt |= crt;
 3201                 crt = (~crt & REC_FULL);
 3202         }
 3203 
 3204         CTR3(KTR_IGMPV3, "%s: queued %d ALLOW_NEW, %d BLOCK_OLD", __func__,
 3205             nallow, nblock);
 3206 
 3207         return (nbytes);
 3208 }
 3209 
 3210 static int
 3211 igmp_v3_merge_state_changes(struct in_multi *inm, struct ifqueue *ifscq)
 3212 {
 3213         struct ifqueue  *gq;
 3214         struct mbuf     *m;             /* pending state-change */
 3215         struct mbuf     *m0;            /* copy of pending state-change */
 3216         struct mbuf     *mt;            /* last state-change in packet */
 3217         int              docopy, domerge;
 3218         u_int            recslen;
 3219 
 3220         docopy = 0;
 3221         domerge = 0;
 3222         recslen = 0;
 3223 
 3224         IN_MULTI_LOCK_ASSERT();
 3225         IGMP_LOCK_ASSERT();
 3226 
 3227         /*
 3228          * If there are further pending retransmissions, make a writable
 3229          * copy of each queued state-change message before merging.
 3230          */
 3231         if (inm->inm_scrv > 0)
 3232                 docopy = 1;
 3233 
 3234         gq = &inm->inm_scq;
 3235 #ifdef KTR
 3236         if (gq->ifq_head == NULL) {
 3237                 CTR2(KTR_IGMPV3, "%s: WARNING: queue for inm %p is empty",
 3238                     __func__, inm);
 3239         }
 3240 #endif
 3241 
 3242         m = gq->ifq_head;
 3243         while (m != NULL) {
 3244                 /*
 3245                  * Only merge the report into the current packet if
 3246                  * there is sufficient space to do so; an IGMPv3 report
 3247                  * packet may only contain 65,535 group records.
 3248                  * Always use a simple mbuf chain concatentation to do this,
 3249                  * as large state changes for single groups may have
 3250                  * allocated clusters.
 3251                  */
 3252                 domerge = 0;
 3253                 mt = ifscq->ifq_tail;
 3254                 if (mt != NULL) {
 3255                         recslen = m_length(m, NULL);
 3256 
 3257                         if ((mt->m_pkthdr.PH_vt.vt_nrecs +
 3258                             m->m_pkthdr.PH_vt.vt_nrecs <=
 3259                             IGMP_V3_REPORT_MAXRECS) &&
 3260                             (mt->m_pkthdr.len + recslen <=
 3261                             (inm->inm_ifp->if_mtu - IGMP_LEADINGSPACE)))
 3262                                 domerge = 1;
 3263                 }
 3264 
 3265                 if (!domerge && _IF_QFULL(gq)) {
 3266                         CTR2(KTR_IGMPV3,
 3267                             "%s: outbound queue full, skipping whole packet %p",
 3268                             __func__, m);
 3269                         mt = m->m_nextpkt;
 3270                         if (!docopy)
 3271                                 m_freem(m);
 3272                         m = mt;
 3273                         continue;
 3274                 }
 3275 
 3276                 if (!docopy) {
 3277                         CTR2(KTR_IGMPV3, "%s: dequeueing %p", __func__, m);
 3278                         _IF_DEQUEUE(gq, m0);
 3279                         m = m0->m_nextpkt;
 3280                 } else {
 3281                         CTR2(KTR_IGMPV3, "%s: copying %p", __func__, m);
 3282                         m0 = m_dup(m, M_NOWAIT);
 3283                         if (m0 == NULL)
 3284                                 return (ENOMEM);
 3285                         m0->m_nextpkt = NULL;
 3286                         m = m->m_nextpkt;
 3287                 }
 3288 
 3289                 if (!domerge) {
 3290                         CTR3(KTR_IGMPV3, "%s: queueing %p to ifscq %p)",
 3291                             __func__, m0, ifscq);
 3292                         _IF_ENQUEUE(ifscq, m0);
 3293                 } else {
 3294                         struct mbuf *mtl;       /* last mbuf of packet mt */
 3295 
 3296                         CTR3(KTR_IGMPV3, "%s: merging %p with ifscq tail %p)",
 3297                             __func__, m0, mt);
 3298 
 3299                         mtl = m_last(mt);
 3300                         m0->m_flags &= ~M_PKTHDR;
 3301                         mt->m_pkthdr.len += recslen;
 3302                         mt->m_pkthdr.PH_vt.vt_nrecs +=
 3303                             m0->m_pkthdr.PH_vt.vt_nrecs;
 3304 
 3305                         mtl->m_next = m0;
 3306                 }
 3307         }
 3308 
 3309         return (0);
 3310 }
 3311 
 3312 /*
 3313  * Respond to a pending IGMPv3 General Query.
 3314  */
 3315 static void
 3316 igmp_v3_dispatch_general_query(struct igmp_ifinfo *igi)
 3317 {
 3318         struct ifmultiaddr      *ifma, *tifma;
 3319         struct ifnet            *ifp;
 3320         struct in_multi         *inm;
 3321         int                      retval, loop;
 3322 
 3323         IN_MULTI_LOCK_ASSERT();
 3324         IGMP_LOCK_ASSERT();
 3325 
 3326         KASSERT(igi->igi_version == IGMP_VERSION_3,
 3327             ("%s: called when version %d", __func__, igi->igi_version));
 3328 
 3329         ifp = igi->igi_ifp;
 3330 
 3331         IF_ADDR_LOCK(ifp);
 3332         TAILQ_FOREACH_SAFE(ifma, &ifp->if_multiaddrs, ifma_link, tifma) {
 3333                 if (ifma->ifma_addr->sa_family != AF_INET ||
 3334                     ifma->ifma_protospec == NULL)
 3335                         continue;
 3336 
 3337                 inm = (struct in_multi *)ifma->ifma_protospec;
 3338                 KASSERT(ifp == inm->inm_ifp,
 3339                     ("%s: inconsistent ifp", __func__));
 3340 
 3341                 switch (inm->inm_state) {
 3342                 case IGMP_NOT_MEMBER:
 3343                 case IGMP_SILENT_MEMBER:
 3344                         break;
 3345                 case IGMP_REPORTING_MEMBER:
 3346                 case IGMP_IDLE_MEMBER:
 3347                 case IGMP_LAZY_MEMBER:
 3348                 case IGMP_SLEEPING_MEMBER:
 3349                 case IGMP_AWAKENING_MEMBER:
 3350                         inm->inm_state = IGMP_REPORTING_MEMBER;
 3351                         retval = igmp_v3_enqueue_group_record(&igi->igi_gq,
 3352                             inm, 0, 0, 0);
 3353                         CTR2(KTR_IGMPV3, "%s: enqueue record = %d",
 3354                             __func__, retval);
 3355                         break;
 3356                 case IGMP_G_QUERY_PENDING_MEMBER:
 3357                 case IGMP_SG_QUERY_PENDING_MEMBER:
 3358                 case IGMP_LEAVING_MEMBER:
 3359                         break;
 3360                 }
 3361         }
 3362         IF_ADDR_UNLOCK(ifp);
 3363 
 3364         loop = (igi->igi_flags & IGIF_LOOPBACK) ? 1 : 0;
 3365         igmp_dispatch_queue(&igi->igi_gq, IGMP_MAX_RESPONSE_BURST, loop);
 3366 
 3367         /*
 3368          * Slew transmission of bursts over 500ms intervals.
 3369          */
 3370         if (igi->igi_gq.ifq_head != NULL) {
 3371                 igi->igi_v3_timer = 1 + IGMP_RANDOM_DELAY(
 3372                     IGMP_RESPONSE_BURST_INTERVAL);
 3373                 V_interface_timers_running = 1;
 3374         }
 3375 }
 3376 
 3377 /*
 3378  * Transmit the next pending IGMP message in the output queue.
 3379  *
 3380  * We get called from netisr_processqueue(). A mutex private to igmpoq
 3381  * will be acquired and released around this routine.
 3382  *
 3383  * VIMAGE: Needs to store/restore vnet pointer on a per-mbuf-chain basis.
 3384  * MRT: Nothing needs to be done, as IGMP traffic is always local to
 3385  * a link and uses a link-scope multicast address.
 3386  */
 3387 static void
 3388 igmp_intr(struct mbuf *m)
 3389 {
 3390         struct ip_moptions       imo;
 3391         struct ifnet            *ifp;
 3392         struct mbuf             *ipopts, *m0;
 3393         int                      error;
 3394         uint32_t                 ifindex;
 3395 
 3396         CTR2(KTR_IGMPV3, "%s: transmit %p", __func__, m);
 3397 
 3398         /*
 3399          * Set VNET image pointer from enqueued mbuf chain
 3400          * before doing anything else. Whilst we use interface
 3401          * indexes to guard against interface detach, they are
 3402          * unique to each VIMAGE and must be retrieved.
 3403          */
 3404         CURVNET_SET((struct vnet *)(m->m_pkthdr.header));
 3405         ifindex = igmp_restore_context(m);
 3406 
 3407         /*
 3408          * Check if the ifnet still exists. This limits the scope of
 3409          * any race in the absence of a global ifp lock for low cost
 3410          * (an array lookup).
 3411          */
 3412         ifp = ifnet_byindex(ifindex);
 3413         if (ifp == NULL) {
 3414                 CTR3(KTR_IGMPV3, "%s: dropped %p as ifindex %u went away.",
 3415                     __func__, m, ifindex);
 3416                 m_freem(m);
 3417                 IPSTAT_INC(ips_noroute);
 3418                 goto out;
 3419         }
 3420 
 3421         ipopts = V_igmp_sendra ? m_raopt : NULL;
 3422 
 3423         imo.imo_multicast_ttl  = 1;
 3424         imo.imo_multicast_vif  = -1;
 3425         imo.imo_multicast_loop = (V_ip_mrouter != NULL);
 3426 
 3427         /*
 3428          * If the user requested that IGMP traffic be explicitly
 3429          * redirected to the loopback interface (e.g. they are running a
 3430          * MANET interface and the routing protocol needs to see the
 3431          * updates), handle this now.
 3432          */
 3433         if (m->m_flags & M_IGMP_LOOP)
 3434                 imo.imo_multicast_ifp = V_loif;
 3435         else
 3436                 imo.imo_multicast_ifp = ifp;
 3437 
 3438         if (m->m_flags & M_IGMPV2) {
 3439                 m0 = m;
 3440         } else {
 3441                 m0 = igmp_v3_encap_report(ifp, m);
 3442                 if (m0 == NULL) {
 3443                         CTR2(KTR_IGMPV3, "%s: dropped %p", __func__, m);
 3444                         m_freem(m);
 3445                         IPSTAT_INC(ips_odropped);
 3446                         goto out;
 3447                 }
 3448         }
 3449 
 3450         igmp_scrub_context(m0);
 3451         m->m_flags &= ~(M_PROTOFLAGS);
 3452         m0->m_pkthdr.rcvif = V_loif;
 3453 #ifdef MAC
 3454         mac_netinet_igmp_send(ifp, m0);
 3455 #endif
 3456         error = ip_output(m0, ipopts, NULL, 0, &imo, NULL);
 3457         if (error) {
 3458                 CTR3(KTR_IGMPV3, "%s: ip_output(%p) = %d", __func__, m0, error);
 3459                 goto out;
 3460         }
 3461 
 3462         IGMPSTAT_INC(igps_snd_reports);
 3463 
 3464 out:
 3465         /*
 3466          * We must restore the existing vnet pointer before
 3467          * continuing as we are run from netisr context.
 3468          */
 3469         CURVNET_RESTORE();
 3470 }
 3471 
 3472 /*
 3473  * Encapsulate an IGMPv3 report.
 3474  *
 3475  * The internal mbuf flag M_IGMPV3_HDR is used to indicate that the mbuf
 3476  * chain has already had its IP/IGMPv3 header prepended. In this case
 3477  * the function will not attempt to prepend; the lengths and checksums
 3478  * will however be re-computed.
 3479  *
 3480  * Returns a pointer to the new mbuf chain head, or NULL if the
 3481  * allocation failed.
 3482  */
 3483 static struct mbuf *
 3484 igmp_v3_encap_report(struct ifnet *ifp, struct mbuf *m)
 3485 {
 3486         struct igmp_report      *igmp;
 3487         struct ip               *ip;
 3488         int                      hdrlen, igmpreclen;
 3489 
 3490         KASSERT((m->m_flags & M_PKTHDR),
 3491             ("%s: mbuf chain %p is !M_PKTHDR", __func__, m));
 3492 
 3493         igmpreclen = m_length(m, NULL);
 3494         hdrlen = sizeof(struct ip) + sizeof(struct igmp_report);
 3495 
 3496         if (m->m_flags & M_IGMPV3_HDR) {
 3497                 igmpreclen -= hdrlen;
 3498         } else {
 3499                 M_PREPEND(m, hdrlen, M_DONTWAIT);
 3500                 if (m == NULL)
 3501                         return (NULL);
 3502                 m->m_flags |= M_IGMPV3_HDR;
 3503         }
 3504 
 3505         CTR2(KTR_IGMPV3, "%s: igmpreclen is %d", __func__, igmpreclen);
 3506 
 3507         m->m_data += sizeof(struct ip);
 3508         m->m_len -= sizeof(struct ip);
 3509 
 3510         igmp = mtod(m, struct igmp_report *);
 3511         igmp->ir_type = IGMP_v3_HOST_MEMBERSHIP_REPORT;
 3512         igmp->ir_rsv1 = 0;
 3513         igmp->ir_rsv2 = 0;
 3514         igmp->ir_numgrps = htons(m->m_pkthdr.PH_vt.vt_nrecs);
 3515         igmp->ir_cksum = 0;
 3516         igmp->ir_cksum = in_cksum(m, sizeof(struct igmp_report) + igmpreclen);
 3517         m->m_pkthdr.PH_vt.vt_nrecs = 0;
 3518 
 3519         m->m_data -= sizeof(struct ip);
 3520         m->m_len += sizeof(struct ip);
 3521 
 3522         ip = mtod(m, struct ip *);
 3523         ip->ip_tos = IPTOS_PREC_INTERNETCONTROL;
 3524         ip->ip_len = hdrlen + igmpreclen;
 3525         ip->ip_off = IP_DF;
 3526         ip->ip_p = IPPROTO_IGMP;
 3527         ip->ip_sum = 0;
 3528 
 3529         ip->ip_src.s_addr = INADDR_ANY;
 3530 
 3531         if (m->m_flags & M_IGMP_LOOP) {
 3532                 struct in_ifaddr *ia;
 3533 
 3534                 IFP_TO_IA(ifp, ia);
 3535                 if (ia != NULL) {
 3536                         ip->ip_src = ia->ia_addr.sin_addr;
 3537                         ifa_free(&ia->ia_ifa);
 3538                 }
 3539         }
 3540 
 3541         ip->ip_dst.s_addr = htonl(INADDR_ALLRPTS_GROUP);
 3542 
 3543         return (m);
 3544 }
 3545 
 3546 #ifdef KTR
 3547 static char *
 3548 igmp_rec_type_to_str(const int type)
 3549 {
 3550 
 3551         switch (type) {
 3552                 case IGMP_CHANGE_TO_EXCLUDE_MODE:
 3553                         return "TO_EX";
 3554                         break;
 3555                 case IGMP_CHANGE_TO_INCLUDE_MODE:
 3556                         return "TO_IN";
 3557                         break;
 3558                 case IGMP_MODE_IS_EXCLUDE:
 3559                         return "MODE_EX";
 3560                         break;
 3561                 case IGMP_MODE_IS_INCLUDE:
 3562                         return "MODE_IN";
 3563                         break;
 3564                 case IGMP_ALLOW_NEW_SOURCES:
 3565                         return "ALLOW_NEW";
 3566                         break;
 3567                 case IGMP_BLOCK_OLD_SOURCES:
 3568                         return "BLOCK_OLD";
 3569                         break;
 3570                 default:
 3571                         break;
 3572         }
 3573         return "unknown";
 3574 }
 3575 #endif
 3576 
 3577 static void
 3578 igmp_init(void *unused __unused)
 3579 {
 3580 
 3581         CTR1(KTR_IGMPV3, "%s: initializing", __func__);
 3582 
 3583         IGMP_LOCK_INIT();
 3584 
 3585         m_raopt = igmp_ra_alloc();
 3586 
 3587         netisr_register(&igmp_nh);
 3588 }
 3589 SYSINIT(igmp_init, SI_SUB_PSEUDO, SI_ORDER_MIDDLE, igmp_init, NULL);
 3590 
 3591 static void
 3592 igmp_uninit(void *unused __unused)
 3593 {
 3594 
 3595         CTR1(KTR_IGMPV3, "%s: tearing down", __func__);
 3596 
 3597         netisr_unregister(&igmp_nh);
 3598 
 3599         m_free(m_raopt);
 3600         m_raopt = NULL;
 3601 
 3602         IGMP_LOCK_DESTROY();
 3603 }
 3604 SYSUNINIT(igmp_uninit, SI_SUB_PSEUDO, SI_ORDER_MIDDLE, igmp_uninit, NULL);
 3605 
 3606 static void
 3607 vnet_igmp_init(const void *unused __unused)
 3608 {
 3609 
 3610         CTR1(KTR_IGMPV3, "%s: initializing", __func__);
 3611 
 3612         LIST_INIT(&V_igi_head);
 3613 }
 3614 VNET_SYSINIT(vnet_igmp_init, SI_SUB_PSEUDO, SI_ORDER_ANY, vnet_igmp_init,
 3615     NULL);
 3616 
 3617 static void
 3618 vnet_igmp_uninit(const void *unused __unused)
 3619 {
 3620 
 3621         CTR1(KTR_IGMPV3, "%s: tearing down", __func__);
 3622 
 3623         KASSERT(LIST_EMPTY(&V_igi_head),
 3624             ("%s: igi list not empty; ifnets not detached?", __func__));
 3625 }
 3626 VNET_SYSUNINIT(vnet_igmp_uninit, SI_SUB_PSEUDO, SI_ORDER_ANY,
 3627     vnet_igmp_uninit, NULL);
 3628 
 3629 static int
 3630 igmp_modevent(module_t mod, int type, void *unused __unused)
 3631 {
 3632 
 3633     switch (type) {
 3634     case MOD_LOAD:
 3635     case MOD_UNLOAD:
 3636         break;
 3637     default:
 3638         return (EOPNOTSUPP);
 3639     }
 3640     return (0);
 3641 }
 3642 
 3643 static moduledata_t igmp_mod = {
 3644     "igmp",
 3645     igmp_modevent,
 3646     0
 3647 };
 3648 DECLARE_MODULE(igmp, igmp_mod, SI_SUB_PSEUDO, SI_ORDER_ANY);

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