mirror of
https://gitlab.nic.cz/labs/bird.git
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ee7e2ffd26
This supersedes the EAP_* constants.
219 lines
7.2 KiB
C
219 lines
7.2 KiB
C
/*
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* BIRD -- Routing Information Protocol (RIP)
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*
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* (c) 1998--1999 Pavel Machek <pavel@ucw.cz>
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* (c) 2004--2013 Ondrej Filip <feela@network.cz>
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* (c) 2009--2015 Ondrej Zajicek <santiago@crfreenet.org>
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* (c) 2009--2015 CZ.NIC z.s.p.o.
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*
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* Can be freely distributed and used under the terms of the GNU GPL.
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*/
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#ifndef _BIRD_RIP_H_
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#define _BIRD_RIP_H_
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#include "nest/bird.h"
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#include "nest/cli.h"
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#include "nest/iface.h"
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#include "nest/protocol.h"
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#include "nest/route.h"
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#include "nest/password.h"
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#include "nest/locks.h"
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#include "nest/bfd.h"
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#include "lib/lists.h"
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#include "lib/resource.h"
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#include "lib/socket.h"
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#include "lib/string.h"
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#include "lib/timer.h"
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#define RIP_V1 1
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#define RIP_V2 2
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#define RIP_PORT 520 /* RIP for IPv4 */
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#define RIP_NG_PORT 521 /* RIPng */
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#define RIP_MAX_PKT_LENGTH 532 /* 512 + IP4_HEADER_LENGTH */
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#define RIP_AUTH_TAIL_LENGTH 4 /* Without auth_data */
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#define RIP_DEFAULT_ECMP_LIMIT 16
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#define RIP_DEFAULT_INFINITY 16
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#define RIP_DEFAULT_UPDATE_TIME (30 S_)
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#define RIP_DEFAULT_TIMEOUT_TIME (180 S_)
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#define RIP_DEFAULT_GARBAGE_TIME (120 S_)
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struct rip_config
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{
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struct proto_config c;
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list patt_list; /* List of iface configs (struct rip_iface_config) */
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u8 rip2; /* RIPv2 (IPv4) or RIPng (IPv6) */
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u8 ecmp; /* Maximum number of nexthops in ECMP route, or 0 */
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u8 infinity; /* Maximum metric value, representing infinity */
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btime min_timeout_time; /* Minimum of interface timeout_time */
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btime max_garbage_time; /* Maximum of interface garbage_time */
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};
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struct rip_iface_config
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{
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struct iface_patt i;
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ip_addr address; /* Configured dst address */
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u16 port; /* Src+dst port */
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u8 metric; /* Incoming metric */
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u8 mode; /* Interface mode (RIP_IM_*) */
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u8 passive; /* Passive iface - no packets are sent */
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u8 version; /* RIP version used for outgoing packets */
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u8 version_only; /* FIXXX */
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u8 split_horizon; /* Split horizon is used in route updates */
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u8 poison_reverse; /* Poisoned reverse is used in route updates */
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u8 check_zero; /* Validation of RIPv1 reserved fields */
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u8 ecmp_weight; /* Weight for ECMP routes*/
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u8 auth_type; /* Authentication type (RIP_AUTH_*) */
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u8 ttl_security; /* bool + 2 for TX only (send, but do not check on RX) */
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u8 check_link; /* Whether iface link change is used */
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u8 bfd; /* Use BFD on iface */
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u16 rx_buffer; /* RX buffer size, 0 for MTU */
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u16 tx_length; /* TX packet length limit (including headers), 0 for MTU */
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int tx_tos;
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int tx_priority;
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btime update_time; /* Periodic update interval */
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btime timeout_time; /* Route expiration timeout */
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btime garbage_time; /* Unreachable entry GC timeout */
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list *passwords; /* Passwords for authentication */
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};
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struct rip_proto
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{
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struct proto p;
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struct fib rtable; /* Internal routing table */
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list iface_list; /* List of interfaces (struct rip_iface) */
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slab *rte_slab; /* Slab for internal routes (struct rip_rte) */
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timer *timer; /* Main protocol timer */
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u8 rip2; /* RIPv2 (IPv4) or RIPng (IPv6) */
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u8 ecmp; /* Maximum number of nexthops in ECMP route, or 0 */
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u8 infinity; /* Maximum metric value, representing infinity */
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u8 triggered; /* Logical AND of interface want_triggered values */
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u8 rt_reload; /* Route reload is scheduled */
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struct tbf log_pkt_tbf; /* TBF for packet messages */
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struct tbf log_rte_tbf; /* TBF for RTE messages */
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};
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struct rip_iface
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{
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node n;
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struct rip_proto *rip;
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struct iface *iface; /* Underyling core interface */
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struct rip_iface_config *cf; /* Related config, must be updated in reconfigure */
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struct object_lock *lock; /* Interface lock */
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timer *timer; /* Interface timer */
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sock *sk; /* UDP socket */
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u8 up; /* Interface is active */
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u8 csn_ready; /* Nonzero CSN can be used */
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u16 tx_plen; /* Max TX packet data length */
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u32 csn; /* Last used crypto sequence number */
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ip_addr addr; /* Destination multicast/broadcast address */
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list neigh_list; /* List of iface neighbors (struct rip_neighbor) */
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/* Update scheduling */
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btime next_regular; /* Next time when regular update should be called */
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btime next_triggered; /* Next time when triggerd update may be called */
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btime want_triggered; /* Nonzero if triggered update is scheduled */
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/* Active update */
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int tx_active; /* Update session is active */
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ip_addr tx_addr; /* Update session destination address */
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btime tx_changed; /* Minimal changed time for triggered update */
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struct fib_iterator tx_fit; /* FIB iterator in RIP routing table (p.rtable) */
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};
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struct rip_neighbor
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{
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node n;
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struct rip_iface *ifa; /* Associated interface, may be NULL if stale */
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struct neighbor *nbr; /* Associaded core neighbor, may be NULL if stale */
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struct bfd_request *bfd_req; /* BFD request, if BFD is used */
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btime last_seen; /* Time of last received and accepted message */
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u32 uc; /* Use count, number of routes linking the neighbor */
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u32 csn; /* Last received crypto sequence number */
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};
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struct rip_entry
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{
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struct rip_rte *routes; /* List of incoming routes */
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u8 valid; /* Entry validity state (RIP_ENTRY_*) */
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u8 metric; /* Outgoing route metric */
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u16 tag; /* Outgoing route tag */
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struct iface *from; /* Outgoing route from, NULL if from proto */
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struct iface *iface; /* Outgoing route iface (for next hop) */
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ip_addr next_hop; /* Outgoing route next hop */
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btime changed; /* Last time when the outgoing route metric changed */
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struct fib_node n;
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};
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struct rip_rte
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{
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struct rip_rte *next;
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struct rip_neighbor *from; /* Advertising router */
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ip_addr next_hop; /* Route next hop (iface is from->nbr->iface) */
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u16 metric; /* Route metric (after increase) */
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u16 tag; /* Route tag */
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btime expires; /* Time of route expiration */
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};
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#define RIP_AUTH_NONE 0
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#define RIP_AUTH_PLAIN 2
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#define RIP_AUTH_CRYPTO 3
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#define RIP_IM_MULTICAST 1
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#define RIP_IM_BROADCAST 2
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#define RIP_ENTRY_DUMMY 0 /* Only used to store list of incoming routes */
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#define RIP_ENTRY_VALID 1 /* Valid outgoing route */
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#define RIP_ENTRY_STALE 2 /* Stale outgoing route, waiting for GC */
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#define EA_RIP_METRIC EA_CODE(PROTOCOL_RIP, 0)
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#define EA_RIP_TAG EA_CODE(PROTOCOL_RIP, 1)
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static inline int rip_is_v2(struct rip_proto *p)
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{ return p->rip2; }
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static inline int rip_is_ng(struct rip_proto *p)
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{ return ! p->rip2; }
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static inline void
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rip_reset_tx_session(struct rip_proto *p, struct rip_iface *ifa)
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{
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if (ifa->tx_active)
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{
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FIB_ITERATE_UNLINK(&ifa->tx_fit, &p->rtable);
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ifa->tx_active = 0;
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}
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}
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/* rip.c */
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void rip_update_rte(struct rip_proto *p, net_addr *n, struct rip_rte *new);
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void rip_withdraw_rte(struct rip_proto *p, net_addr *n, struct rip_neighbor *from);
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struct rip_neighbor * rip_get_neighbor(struct rip_proto *p, ip_addr *a, struct rip_iface *ifa);
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void rip_update_bfd(struct rip_proto *p, struct rip_neighbor *n);
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void rip_show_interfaces(struct proto *P, char *iff);
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void rip_show_neighbors(struct proto *P, char *iff);
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/* packets.c */
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void rip_send_request(struct rip_proto *p, struct rip_iface *ifa);
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void rip_send_table(struct rip_proto *p, struct rip_iface *ifa, ip_addr addr, btime changed);
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int rip_open_socket(struct rip_iface *ifa);
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#endif
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