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

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    1 /*-
    2  * SPDX-License-Identifier: BSD-3-Clause
    3  *
    4  * Copyright (c) 1985, 1986, 1993
    5  *      The Regents of the University of California.  All rights reserved.
    6  *
    7  * Redistribution and use in source and binary forms, with or without
    8  * modification, are permitted provided that the following conditions
    9  * are met:
   10  * 1. Redistributions of source code must retain the above copyright
   11  *    notice, this list of conditions and the following disclaimer.
   12  * 2. Redistributions in binary form must reproduce the above copyright
   13  *    notice, this list of conditions and the following disclaimer in the
   14  *    documentation and/or other materials provided with the distribution.
   15  * 3. Neither the name of the University nor the names of its contributors
   16  *    may be used to endorse or promote products derived from this software
   17  *    without specific prior written permission.
   18  *
   19  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
   20  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
   21  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
   22  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
   23  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
   24  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
   25  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
   26  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
   27  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
   28  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
   29  * SUCH DAMAGE.
   30  *
   31  *      @(#)in_var.h    8.2 (Berkeley) 1/9/95
   32  * $FreeBSD: releng/12.0/sys/netinet/in_var.h 334118 2018-05-23 21:02:14Z mmacy $
   33  */
   34 
   35 #ifndef _NETINET_IN_VAR_H_
   36 #define _NETINET_IN_VAR_H_
   37 
   38 /*
   39  * Argument structure for SIOCAIFADDR.
   40  */
   41 struct  in_aliasreq {
   42         char    ifra_name[IFNAMSIZ];            /* if name, e.g. "en0" */
   43         struct  sockaddr_in ifra_addr;
   44         struct  sockaddr_in ifra_broadaddr;
   45 #define ifra_dstaddr ifra_broadaddr
   46         struct  sockaddr_in ifra_mask;
   47         int     ifra_vhid;
   48 };
   49 
   50 #ifdef _KERNEL
   51 #include <sys/queue.h>
   52 #include <sys/fnv_hash.h>
   53 #include <sys/tree.h>
   54 
   55 struct igmp_ifsoftc;
   56 struct in_multi;
   57 struct lltable;
   58 SLIST_HEAD(in_multi_head, in_multi);
   59 
   60 /*
   61  * IPv4 per-interface state.
   62  */
   63 struct in_ifinfo {
   64         struct lltable          *ii_llt;        /* ARP state */
   65         struct igmp_ifsoftc     *ii_igmp;       /* IGMP state */
   66         struct in_multi         *ii_allhosts;   /* 224.0.0.1 membership */
   67 };
   68 
   69 /*
   70  * Interface address, Internet version.  One of these structures
   71  * is allocated for each Internet address on an interface.
   72  * The ifaddr structure contains the protocol-independent part
   73  * of the structure and is assumed to be first.
   74  */
   75 struct in_ifaddr {
   76         struct  ifaddr ia_ifa;          /* protocol-independent info */
   77 #define ia_ifp          ia_ifa.ifa_ifp
   78 #define ia_flags        ia_ifa.ifa_flags
   79                                         /* ia_subnet{,mask} in host order */
   80         u_long  ia_subnet;              /* subnet address */
   81         u_long  ia_subnetmask;          /* mask of subnet */
   82         LIST_ENTRY(in_ifaddr) ia_hash;  /* entry in bucket of inet addresses */
   83         CK_STAILQ_ENTRY(in_ifaddr) ia_link;     /* list of internet addresses */
   84         struct  sockaddr_in ia_addr;    /* reserve space for interface name */
   85         struct  sockaddr_in ia_dstaddr; /* reserve space for broadcast addr */
   86 #define ia_broadaddr    ia_dstaddr
   87         struct  sockaddr_in ia_sockmask; /* reserve space for general netmask */
   88         struct  callout ia_garp_timer;  /* timer for retransmitting GARPs */
   89         int     ia_garp_count;          /* count of retransmitted GARPs */
   90 };
   91 
   92 /*
   93  * Given a pointer to an in_ifaddr (ifaddr),
   94  * return a pointer to the addr as a sockaddr_in.
   95  */
   96 #define IA_SIN(ia)    (&(((struct in_ifaddr *)(ia))->ia_addr))
   97 #define IA_DSTSIN(ia) (&(((struct in_ifaddr *)(ia))->ia_dstaddr))
   98 #define IA_MASKSIN(ia) (&(((struct in_ifaddr *)(ia))->ia_sockmask))
   99 
  100 #define IN_LNAOF(in, ifa) \
  101         ((ntohl((in).s_addr) & ~((struct in_ifaddr *)(ifa)->ia_subnetmask))
  102 
  103 extern  u_char  inetctlerrmap[];
  104 
  105 #define LLTABLE(ifp)    \
  106         ((struct in_ifinfo *)(ifp)->if_afdata[AF_INET])->ii_llt
  107 /*
  108  * Hash table for IP addresses.
  109  */
  110 CK_STAILQ_HEAD(in_ifaddrhead, in_ifaddr);
  111 LIST_HEAD(in_ifaddrhashhead, in_ifaddr);
  112 
  113 VNET_DECLARE(struct in_ifaddrhashhead *, in_ifaddrhashtbl);
  114 VNET_DECLARE(struct in_ifaddrhead, in_ifaddrhead);
  115 VNET_DECLARE(u_long, in_ifaddrhmask);           /* mask for hash table */
  116 
  117 #define V_in_ifaddrhashtbl      VNET(in_ifaddrhashtbl)
  118 #define V_in_ifaddrhead         VNET(in_ifaddrhead)
  119 #define V_in_ifaddrhmask        VNET(in_ifaddrhmask)
  120 
  121 #define INADDR_NHASH_LOG2       9
  122 #define INADDR_NHASH            (1 << INADDR_NHASH_LOG2)
  123 #define INADDR_HASHVAL(x)       fnv_32_buf((&(x)), sizeof(x), FNV1_32_INIT)
  124 #define INADDR_HASH(x) \
  125         (&V_in_ifaddrhashtbl[INADDR_HASHVAL(x) & V_in_ifaddrhmask])
  126 
  127 extern  struct rmlock in_ifaddr_lock;
  128 
  129 #define IN_IFADDR_LOCK_ASSERT() rm_assert(&in_ifaddr_lock, RA_LOCKED)
  130 #define IN_IFADDR_RLOCK(t)      rm_rlock(&in_ifaddr_lock, (t))
  131 #define IN_IFADDR_RLOCK_ASSERT()        rm_assert(&in_ifaddr_lock, RA_RLOCKED)
  132 #define IN_IFADDR_RUNLOCK(t)    rm_runlock(&in_ifaddr_lock, (t))
  133 #define IN_IFADDR_WLOCK()       rm_wlock(&in_ifaddr_lock)
  134 #define IN_IFADDR_WLOCK_ASSERT()        rm_assert(&in_ifaddr_lock, RA_WLOCKED)
  135 #define IN_IFADDR_WUNLOCK()     rm_wunlock(&in_ifaddr_lock)
  136 
  137 /*
  138  * Macro for finding the internet address structure (in_ifaddr)
  139  * corresponding to one of our IP addresses (in_addr).
  140  */
  141 #define INADDR_TO_IFADDR(addr, ia) \
  142         /* struct in_addr addr; */ \
  143         /* struct in_ifaddr *ia; */ \
  144 do { \
  145 \
  146         LIST_FOREACH(ia, INADDR_HASH((addr).s_addr), ia_hash) \
  147                 if (IA_SIN(ia)->sin_addr.s_addr == (addr).s_addr) \
  148                         break; \
  149 } while (0)
  150 
  151 /*
  152  * Macro for finding the interface (ifnet structure) corresponding to one
  153  * of our IP addresses.
  154  */
  155 #define INADDR_TO_IFP(addr, ifp) \
  156         /* struct in_addr addr; */ \
  157         /* struct ifnet *ifp; */ \
  158 { \
  159         struct in_ifaddr *ia; \
  160 \
  161         INADDR_TO_IFADDR(addr, ia); \
  162         (ifp) = (ia == NULL) ? NULL : ia->ia_ifp; \
  163 }
  164 
  165 /*
  166  * Macro for finding the internet address structure (in_ifaddr) corresponding
  167  * to a given interface (ifnet structure).
  168  */
  169 #define IFP_TO_IA(ifp, ia, t)                                           \
  170         /* struct ifnet *ifp; */                                        \
  171         /* struct in_ifaddr *ia; */                                     \
  172         /* struct rm_priotracker *t; */                                 \
  173 do {                                                                    \
  174         IN_IFADDR_RLOCK((t));                                           \
  175         for ((ia) = CK_STAILQ_FIRST(&V_in_ifaddrhead);                  \
  176             (ia) != NULL && (ia)->ia_ifp != (ifp);                      \
  177             (ia) = CK_STAILQ_NEXT((ia), ia_link))                               \
  178                 continue;                                               \
  179         IN_IFADDR_RUNLOCK((t));                                         \
  180 } while (0)
  181 
  182 /*
  183  * Legacy IPv4 IGMP per-link structure.
  184  */
  185 struct router_info {
  186         struct ifnet *rti_ifp;
  187         int    rti_type; /* type of router which is querier on this interface */
  188         int    rti_time; /* # of slow timeouts since last old query */
  189         SLIST_ENTRY(router_info) rti_list;
  190 };
  191 
  192 /*
  193  * IPv4 multicast IGMP-layer source entry.
  194  */
  195 struct ip_msource {
  196         RB_ENTRY(ip_msource)    ims_link;       /* RB tree links */
  197         in_addr_t               ims_haddr;      /* host byte order */
  198         struct ims_st {
  199                 uint16_t        ex;             /* # of exclusive members */
  200                 uint16_t        in;             /* # of inclusive members */
  201         }                       ims_st[2];      /* state at t0, t1 */
  202         uint8_t                 ims_stp;        /* pending query */
  203 };
  204 
  205 /*
  206  * IPv4 multicast PCB-layer source entry.
  207  */
  208 struct in_msource {
  209         RB_ENTRY(ip_msource)    ims_link;       /* RB tree links */
  210         in_addr_t               ims_haddr;      /* host byte order */
  211         uint8_t                 imsl_st[2];     /* state before/at commit */
  212 };
  213 
  214 RB_HEAD(ip_msource_tree, ip_msource);   /* define struct ip_msource_tree */
  215 
  216 static __inline int
  217 ip_msource_cmp(const struct ip_msource *a, const struct ip_msource *b)
  218 {
  219 
  220         if (a->ims_haddr < b->ims_haddr)
  221                 return (-1);
  222         if (a->ims_haddr == b->ims_haddr)
  223                 return (0);
  224         return (1);
  225 }
  226 RB_PROTOTYPE(ip_msource_tree, ip_msource, ims_link, ip_msource_cmp);
  227 
  228 /*
  229  * IPv4 multicast PCB-layer group filter descriptor.
  230  */
  231 struct in_mfilter {
  232         struct ip_msource_tree  imf_sources; /* source list for (S,G) */
  233         u_long                  imf_nsrc;    /* # of source entries */
  234         uint8_t                 imf_st[2];   /* state before/at commit */
  235 };
  236 
  237 /*
  238  * IPv4 group descriptor.
  239  *
  240  * For every entry on an ifnet's if_multiaddrs list which represents
  241  * an IP multicast group, there is one of these structures.
  242  *
  243  * If any source filters are present, then a node will exist in the RB-tree
  244  * to permit fast lookup by source whenever an operation takes place.
  245  * This permits pre-order traversal when we issue reports.
  246  * Source filter trees are kept separately from the socket layer to
  247  * greatly simplify locking.
  248  *
  249  * When IGMPv3 is active, inm_timer is the response to group query timer.
  250  * The state-change timer inm_sctimer is separate; whenever state changes
  251  * for the group the state change record is generated and transmitted,
  252  * and kept if retransmissions are necessary.
  253  *
  254  * FUTURE: inm_link is now only used when groups are being purged
  255  * on a detaching ifnet. It could be demoted to a SLIST_ENTRY, but
  256  * because it is at the very start of the struct, we can't do this
  257  * w/o breaking the ABI for ifmcstat.
  258  */
  259 struct in_multi {
  260         LIST_ENTRY(in_multi) inm_link;  /* to-be-released by in_ifdetach */
  261         struct  in_addr inm_addr;       /* IP multicast address, convenience */
  262         struct  ifnet *inm_ifp;         /* back pointer to ifnet */
  263         struct  ifmultiaddr *inm_ifma;  /* back pointer to ifmultiaddr */
  264         u_int   inm_timer;              /* IGMPv1/v2 group / v3 query timer */
  265         u_int   inm_state;              /* state of the membership */
  266         void    *inm_rti;               /* unused, legacy field */
  267         u_int   inm_refcount;           /* reference count */
  268 
  269         /* New fields for IGMPv3 follow. */
  270         struct igmp_ifsoftc     *inm_igi;       /* IGMP info */
  271         SLIST_ENTRY(in_multi)    inm_nrele;     /* to-be-released by IGMP */
  272         struct ip_msource_tree   inm_srcs;      /* tree of sources */
  273         u_long                   inm_nsrc;      /* # of tree entries */
  274 
  275         struct mbufq             inm_scq;       /* queue of pending
  276                                                  * state-change packets */
  277         struct timeval           inm_lastgsrtv; /* Time of last G-S-R query */
  278         uint16_t                 inm_sctimer;   /* state-change timer */
  279         uint16_t                 inm_scrv;      /* state-change rexmit count */
  280 
  281         /*
  282          * SSM state counters which track state at T0 (the time the last
  283          * state-change report's RV timer went to zero) and T1
  284          * (time of pending report, i.e. now).
  285          * Used for computing IGMPv3 state-change reports. Several refcounts
  286          * are maintained here to optimize for common use-cases.
  287          */
  288         struct inm_st {
  289                 uint16_t        iss_fmode;      /* IGMP filter mode */
  290                 uint16_t        iss_asm;        /* # of ASM listeners */
  291                 uint16_t        iss_ex;         /* # of exclusive members */
  292                 uint16_t        iss_in;         /* # of inclusive members */
  293                 uint16_t        iss_rec;        /* # of recorded sources */
  294         }                       inm_st[2];      /* state at t0, t1 */
  295 };
  296 
  297 /*
  298  * Helper function to derive the filter mode on a source entry
  299  * from its internal counters. Predicates are:
  300  *  A source is only excluded if all listeners exclude it.
  301  *  A source is only included if no listeners exclude it,
  302  *  and at least one listener includes it.
  303  * May be used by ifmcstat(8).
  304  */
  305 static __inline uint8_t
  306 ims_get_mode(const struct in_multi *inm, const struct ip_msource *ims,
  307     uint8_t t)
  308 {
  309 
  310         t = !!t;
  311         if (inm->inm_st[t].iss_ex > 0 &&
  312             inm->inm_st[t].iss_ex == ims->ims_st[t].ex)
  313                 return (MCAST_EXCLUDE);
  314         else if (ims->ims_st[t].in > 0 && ims->ims_st[t].ex == 0)
  315                 return (MCAST_INCLUDE);
  316         return (MCAST_UNDEFINED);
  317 }
  318 
  319 #ifdef SYSCTL_DECL
  320 SYSCTL_DECL(_net_inet);
  321 SYSCTL_DECL(_net_inet_ip);
  322 SYSCTL_DECL(_net_inet_raw);
  323 #endif
  324 
  325 /*
  326  * Lock macros for IPv4 layer multicast address lists.  IPv4 lock goes
  327  * before link layer multicast locks in the lock order.  In most cases,
  328  * consumers of IN_*_MULTI() macros should acquire the locks before
  329  * calling them; users of the in_{add,del}multi() functions should not.
  330  */
  331 extern struct mtx in_multi_list_mtx;
  332 extern struct sx in_multi_sx;
  333 
  334 #define IN_MULTI_LIST_LOCK()            mtx_lock(&in_multi_list_mtx)
  335 #define IN_MULTI_LIST_UNLOCK()  mtx_unlock(&in_multi_list_mtx)
  336 #define IN_MULTI_LIST_LOCK_ASSERT()     mtx_assert(&in_multi_list_mtx, MA_OWNED)
  337 #define IN_MULTI_LIST_UNLOCK_ASSERT() mtx_assert(&in_multi_list_mtx, MA_NOTOWNED)
  338 
  339 #define IN_MULTI_LOCK()         sx_xlock(&in_multi_sx)
  340 #define IN_MULTI_UNLOCK()       sx_xunlock(&in_multi_sx)
  341 #define IN_MULTI_LOCK_ASSERT()  sx_assert(&in_multi_sx, SA_XLOCKED)
  342 #define IN_MULTI_UNLOCK_ASSERT() sx_assert(&in_multi_sx, SA_XUNLOCKED)
  343 
  344 void inm_disconnect(struct in_multi *inm);
  345 extern int ifma_restart;
  346 
  347 /* Acquire an in_multi record. */
  348 static __inline void
  349 inm_acquire_locked(struct in_multi *inm)
  350 {
  351 
  352         IN_MULTI_LIST_LOCK_ASSERT();
  353         ++inm->inm_refcount;
  354 }
  355 
  356 static __inline void
  357 inm_acquire(struct in_multi *inm)
  358 {
  359         IN_MULTI_LIST_LOCK();
  360         inm_acquire_locked(inm);
  361         IN_MULTI_LIST_UNLOCK();
  362 }
  363 
  364 static __inline void
  365 inm_rele_locked(struct in_multi_head *inmh, struct in_multi *inm)
  366 {
  367         MPASS(inm->inm_refcount > 0);
  368         IN_MULTI_LIST_LOCK_ASSERT();
  369 
  370         if (--inm->inm_refcount == 0) {
  371                 MPASS(inmh != NULL);
  372                 inm_disconnect(inm);
  373                 inm->inm_ifma->ifma_protospec = NULL;
  374                 SLIST_INSERT_HEAD(inmh, inm, inm_nrele);
  375         }
  376 }
  377 
  378 /*
  379  * Return values for imo_multi_filter().
  380  */
  381 #define MCAST_PASS              0       /* Pass */
  382 #define MCAST_NOTGMEMBER        1       /* This host not a member of group */
  383 #define MCAST_NOTSMEMBER        2       /* This host excluded source */
  384 #define MCAST_MUTED             3       /* [deprecated] */
  385 
  386 struct  rtentry;
  387 struct  route;
  388 struct  ip_moptions;
  389 
  390 struct in_multi *inm_lookup_locked(struct ifnet *, const struct in_addr);
  391 struct in_multi *inm_lookup(struct ifnet *, const struct in_addr);
  392 int     imo_multi_filter(const struct ip_moptions *, const struct ifnet *,
  393             const struct sockaddr *, const struct sockaddr *);
  394 void    inm_commit(struct in_multi *);
  395 void    inm_clear_recorded(struct in_multi *);
  396 void    inm_print(const struct in_multi *);
  397 int     inm_record_source(struct in_multi *inm, const in_addr_t);
  398 void    inm_release_deferred(struct in_multi *);
  399 void    inm_release_list_deferred(struct in_multi_head *);
  400 struct  in_multi *
  401 in_addmulti(struct in_addr *, struct ifnet *);
  402 int     in_joingroup(struct ifnet *, const struct in_addr *,
  403             /*const*/ struct in_mfilter *, struct in_multi **);
  404 int     in_joingroup_locked(struct ifnet *, const struct in_addr *,
  405             /*const*/ struct in_mfilter *, struct in_multi **);
  406 int     in_leavegroup(struct in_multi *, /*const*/ struct in_mfilter *);
  407 int     in_leavegroup_locked(struct in_multi *,
  408             /*const*/ struct in_mfilter *);
  409 int     in_control(struct socket *, u_long, caddr_t, struct ifnet *,
  410             struct thread *);
  411 int     in_addprefix(struct in_ifaddr *, int);
  412 int     in_scrubprefix(struct in_ifaddr *, u_int);
  413 void    in_ifscrub_all(void);
  414 void    ip_input(struct mbuf *);
  415 void    ip_direct_input(struct mbuf *);
  416 void    in_ifadown(struct ifaddr *ifa, int);
  417 struct  mbuf    *ip_tryforward(struct mbuf *);
  418 void    *in_domifattach(struct ifnet *);
  419 void    in_domifdetach(struct ifnet *, void *);
  420 
  421 
  422 /* XXX */
  423 void     in_rtalloc_ign(struct route *ro, u_long ignflags, u_int fibnum);
  424 void     in_rtredirect(struct sockaddr *, struct sockaddr *,
  425             struct sockaddr *, int, struct sockaddr *, u_int);
  426 #endif /* _KERNEL */
  427 
  428 /* INET6 stuff */
  429 #include <netinet6/in6_var.h>
  430 
  431 #endif /* _NETINET_IN_VAR_H_ */

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