mirror of
https://gitlab.nic.cz/labs/bird.git
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436 lines
14 KiB
Plaintext
436 lines
14 KiB
Plaintext
/*
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* BIRD -- OSPF Configuration
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*
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* (c) 1999--2004 Ondrej Filip <feela@network.cz>
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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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CF_HDR
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#include "proto/ospf/ospf.h"
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CF_DEFINES
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#define OSPF_CFG ((struct ospf_config *) this_proto)
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#define OSPF_PATT ((struct ospf_iface_patt *) this_ipatt)
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static struct ospf_area_config *this_area;
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static struct nbma_node *this_nbma;
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static list *this_nets;
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static struct area_net_config *this_pref;
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static struct ospf_stubnet_config *this_stubnet;
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#ifdef OSPFv2
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static void
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ospf_iface_finish(void)
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{
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struct ospf_iface_patt *ip = OSPF_PATT;
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if (ip->deadint == 0)
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ip->deadint = ip->deadc * ip->helloint;
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ip->passwords = get_passwords();
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if ((ip->autype == OSPF_AUTH_CRYPT) && (ip->helloint < 5))
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log(L_WARN "Hello or poll interval less that 5 makes cryptographic authenication prone to replay attacks");
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if ((ip->autype == OSPF_AUTH_NONE) && (ip->passwords != NULL))
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log(L_WARN "Password option without authentication option does not make sense");
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}
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#endif
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#ifdef OSPFv3
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static void
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ospf_iface_finish(void)
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{
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struct ospf_iface_patt *ip = OSPF_PATT;
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if (ip->deadint == 0)
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ip->deadint = ip->deadc * ip->helloint;
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if ((ip->autype != OSPF_AUTH_NONE) || (get_passwords() != NULL))
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cf_error("Authentication not supported in OSPFv3");
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}
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#endif
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static void
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ospf_area_finish(void)
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{
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if ((this_area->areaid == 0) && (this_area->type != OPT_E))
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cf_error("Backbone area cannot be stub/NSSA");
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if (this_area->summary && (this_area->type == OPT_E))
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cf_error("Only Stub/NSSA areas can use summary propagation");
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if (this_area->default_nssa && ((this_area->type != OPT_N) || ! this_area->summary))
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cf_error("Only NSSA areas with summary propagation can use NSSA default route");
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if ((this_area->default_cost & LSA_EXT_EBIT) && ! this_area->default_nssa)
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cf_error("Only NSSA default route can use type 2 metric");
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}
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static void
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ospf_proto_finish(void)
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{
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struct ospf_config *cf = OSPF_CFG;
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if (EMPTY_LIST(cf->area_list))
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cf_error( "No configured areas in OSPF");
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int areano = 0;
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int backbone = 0;
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struct ospf_area_config *ac;
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WALK_LIST(ac, cf->area_list)
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{
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areano++;
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if (ac->areaid == 0)
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backbone = 1;
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}
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cf->abr = areano > 1;
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if (cf->abr && !backbone)
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{
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struct ospf_area_config *ac = cfg_allocz(sizeof(struct ospf_area_config));
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add_head(&cf->area_list, NODE ac);
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init_list(&ac->patt_list);
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init_list(&ac->net_list);
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init_list(&ac->enet_list);
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init_list(&ac->stubnet_list);
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}
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if (!cf->abr && !EMPTY_LIST(cf->vlink_list))
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cf_error( "Vlinks cannot be used on single area router");
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}
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static inline void
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check_defcost(int cost)
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{
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if ((cost <= 0) || (cost >= LSINFINITY))
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cf_error("Default cost must be in range 1-%d", LSINFINITY);
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}
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CF_DECLS
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CF_KEYWORDS(OSPF, AREA, OSPF_METRIC1, OSPF_METRIC2, OSPF_TAG, OSPF_ROUTER_ID)
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CF_KEYWORDS(NEIGHBORS, RFC1583COMPAT, STUB, TICK, COST, COST2, RETRANSMIT)
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CF_KEYWORDS(HELLO, TRANSMIT, PRIORITY, DEAD, TYPE, BROADCAST, BCAST)
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CF_KEYWORDS(NONBROADCAST, NBMA, POINTOPOINT, PTP, POINTOMULTIPOINT, PTMP)
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CF_KEYWORDS(NONE, SIMPLE, AUTHENTICATION, STRICT, CRYPTOGRAPHIC)
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CF_KEYWORDS(ELIGIBLE, POLL, NETWORKS, HIDDEN, VIRTUAL, CHECK, LINK)
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CF_KEYWORDS(RX, BUFFER, LARGE, NORMAL, STUBNET, HIDDEN, SUMMARY, TAG, EXTERNAL)
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CF_KEYWORDS(WAIT, DELAY, LSADB, ECMP, LIMIT, WEIGHT, NSSA, TRANSLATOR, STABILITY)
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CF_KEYWORDS(GLOBAL, LSID, ROUTER, SELF)
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%type <t> opttext
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%type <ld> lsadb_args
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CF_GRAMMAR
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CF_ADDTO(proto, ospf_proto '}' { ospf_proto_finish(); } )
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ospf_proto_start: proto_start OSPF {
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this_proto = proto_config_new(&proto_ospf, sizeof(struct ospf_config), $1);
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init_list(&OSPF_CFG->area_list);
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init_list(&OSPF_CFG->vlink_list);
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OSPF_CFG->rfc1583 = DEFAULT_RFC1583;
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OSPF_CFG->tick = DEFAULT_OSPFTICK;
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}
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;
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ospf_proto:
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ospf_proto_start proto_name '{'
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| ospf_proto ospf_proto_item ';'
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;
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ospf_proto_item:
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proto_item
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| RFC1583COMPAT bool { OSPF_CFG->rfc1583 = $2; }
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| ECMP bool { OSPF_CFG->ecmp = $2 ? DEFAULT_ECMP_LIMIT : 0; }
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| ECMP bool LIMIT expr { OSPF_CFG->ecmp = $2 ? $4 : 0; if ($4 < 0) cf_error("ECMP limit cannot be negative"); }
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| TICK expr { OSPF_CFG->tick = $2; if($2<=0) cf_error("Tick must be greater than zero"); }
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| ospf_area
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;
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ospf_area_start: AREA idval {
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this_area = cfg_allocz(sizeof(struct ospf_area_config));
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add_tail(&OSPF_CFG->area_list, NODE this_area);
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this_area->areaid = $2;
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this_area->default_cost = DEFAULT_STUB_COST;
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this_area->type = OPT_E;
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this_area->transint = DEFAULT_TRANSINT;
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init_list(&this_area->patt_list);
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init_list(&this_area->net_list);
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init_list(&this_area->enet_list);
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init_list(&this_area->stubnet_list);
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}
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;
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ospf_area: ospf_area_start '{' ospf_area_opts '}' { ospf_area_finish(); }
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;
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ospf_area_opts:
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/* empty */
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| ospf_area_opts ospf_area_item ';'
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;
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ospf_area_item:
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STUB bool { this_area->type = $2 ? 0 : OPT_E; /* We should remove the option */ }
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| NSSA { this_area->type = OPT_N; }
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| SUMMARY bool { this_area->summary = $2; }
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| DEFAULT NSSA bool { this_area->default_nssa = $3; }
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| DEFAULT COST expr { this_area->default_cost = $3; check_defcost($3); }
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| DEFAULT COST2 expr { this_area->default_cost = $3 | LSA_EXT_EBIT; check_defcost($3); }
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| STUB COST expr { this_area->default_cost = $3; check_defcost($3); }
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| TRANSLATOR bool { this_area->translator = $2; }
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| TRANSLATOR STABILITY expr { this_area->transint = $3; }
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| NETWORKS { this_nets = &this_area->net_list; } '{' pref_list '}'
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| EXTERNAL { this_nets = &this_area->enet_list; } '{' pref_list '}'
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| STUBNET ospf_stubnet
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| INTERFACE ospf_iface
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| ospf_vlink
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;
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ospf_stubnet:
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ospf_stubnet_start '{' ospf_stubnet_opts '}'
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| ospf_stubnet_start
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;
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ospf_stubnet_start:
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prefix {
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this_stubnet = cfg_allocz(sizeof(struct ospf_stubnet_config));
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add_tail(&this_area->stubnet_list, NODE this_stubnet);
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this_stubnet->px = $1;
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this_stubnet->cost = COST_D;
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}
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;
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ospf_stubnet_opts:
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/* empty */
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| ospf_stubnet_opts ospf_stubnet_item ';'
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;
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ospf_stubnet_item:
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HIDDEN bool { this_stubnet->hidden = $2; }
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| SUMMARY bool { this_stubnet->summary = $2; }
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| COST expr { this_stubnet->cost = $2; }
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;
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ospf_vlink:
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ospf_vlink_start '{' ospf_vlink_opts '}' { ospf_iface_finish(); }
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| ospf_vlink_start { ospf_iface_finish(); }
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;
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ospf_vlink_opts:
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/* empty */
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| ospf_vlink_opts ospf_vlink_item ';'
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;
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ospf_vlink_item:
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| HELLO expr { OSPF_PATT->helloint = $2 ; if (($2<=0) || ($2>65535)) cf_error("Hello interval must be in range 1-65535"); }
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| RETRANSMIT expr { OSPF_PATT->rxmtint = $2 ; if ($2<=0) cf_error("Retransmit int must be greater than zero"); }
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| TRANSMIT DELAY expr { OSPF_PATT->inftransdelay = $3 ; if (($3<=0) || ($3>65535)) cf_error("Transmit delay must be in range 1-65535"); }
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| WAIT expr { OSPF_PATT->waitint = $2 ; }
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| DEAD expr { OSPF_PATT->deadint = $2 ; if ($2<=1) cf_error("Dead interval must be greater than one"); }
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| DEAD COUNT expr { OSPF_PATT->deadc = $3 ; if ($3<=1) cf_error("Dead count must be greater than one"); }
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| AUTHENTICATION NONE { OSPF_PATT->autype = OSPF_AUTH_NONE ; }
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| AUTHENTICATION SIMPLE { OSPF_PATT->autype = OSPF_AUTH_SIMPLE ; }
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| AUTHENTICATION CRYPTOGRAPHIC { OSPF_PATT->autype = OSPF_AUTH_CRYPT ; }
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| password_list
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;
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ospf_vlink_start: VIRTUAL LINK idval
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{
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if (this_area->areaid == 0) cf_error("Virtual link cannot be in backbone");
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this_ipatt = cfg_allocz(sizeof(struct ospf_iface_patt));
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add_tail(&OSPF_CFG->vlink_list, NODE this_ipatt);
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init_list(&this_ipatt->ipn_list);
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OSPF_PATT->voa = this_area->areaid;
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OSPF_PATT->vid = $3;
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OSPF_PATT->helloint = HELLOINT_D;
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OSPF_PATT->rxmtint = RXMTINT_D;
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OSPF_PATT->inftransdelay = INFTRANSDELAY_D;
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OSPF_PATT->waitint = WAIT_DMH*HELLOINT_D;
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OSPF_PATT->deadc = DEADC_D;
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OSPF_PATT->deadint = 0;
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OSPF_PATT->type = OSPF_IT_VLINK;
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init_list(&OSPF_PATT->nbma_list);
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OSPF_PATT->autype = OSPF_AUTH_NONE;
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reset_passwords();
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}
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;
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ospf_iface_item:
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COST expr { OSPF_PATT->cost = $2 ; if (($2<=0) || ($2>65535)) cf_error("Cost must be in range 1-65535"); }
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| HELLO expr { OSPF_PATT->helloint = $2 ; if (($2<=0) || ($2>65535)) cf_error("Hello interval must be in range 1-65535"); }
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| POLL expr { OSPF_PATT->pollint = $2 ; if ($2<=0) cf_error("Poll int must be greater than zero"); }
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| RETRANSMIT expr { OSPF_PATT->rxmtint = $2 ; if ($2<=0) cf_error("Retransmit int must be greater than zero"); }
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| WAIT expr { OSPF_PATT->waitint = $2 ; }
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| DEAD expr { OSPF_PATT->deadint = $2 ; if ($2<=1) cf_error("Dead interval must be greater than one"); }
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| DEAD COUNT expr { OSPF_PATT->deadc = $3 ; if ($3<=1) cf_error("Dead count must be greater than one"); }
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| TYPE BROADCAST { OSPF_PATT->type = OSPF_IT_BCAST ; }
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| TYPE BCAST { OSPF_PATT->type = OSPF_IT_BCAST ; }
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| TYPE NONBROADCAST { OSPF_PATT->type = OSPF_IT_NBMA ; }
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| TYPE NBMA { OSPF_PATT->type = OSPF_IT_NBMA ; }
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| TYPE POINTOPOINT { OSPF_PATT->type = OSPF_IT_PTP ; }
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| TYPE PTP { OSPF_PATT->type = OSPF_IT_PTP ; }
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| TYPE POINTOMULTIPOINT { OSPF_PATT->type = OSPF_IT_PTMP ; }
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| TYPE PTMP { OSPF_PATT->type = OSPF_IT_PTMP ; }
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| TRANSMIT DELAY expr { OSPF_PATT->inftransdelay = $3 ; if (($3<=0) || ($3>65535)) cf_error("Transmit delay must be in range 1-65535"); }
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| PRIORITY expr { OSPF_PATT->priority = $2 ; if (($2<0) || ($2>255)) cf_error("Priority must be in range 0-255"); }
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| STRICT NONBROADCAST bool { OSPF_PATT->strictnbma = $3 ; }
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| STUB bool { OSPF_PATT->stub = $2 ; }
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| CHECK LINK bool { OSPF_PATT->check_link = $3; }
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| ECMP WEIGHT expr { OSPF_PATT->ecmp_weight = $3 - 1; if (($3<1) || ($3>256)) cf_error("ECMP weight must be in range 1-256"); }
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| NEIGHBORS '{' ipa_list '}'
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| AUTHENTICATION NONE { OSPF_PATT->autype = OSPF_AUTH_NONE ; }
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| AUTHENTICATION SIMPLE { OSPF_PATT->autype = OSPF_AUTH_SIMPLE ; }
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| AUTHENTICATION CRYPTOGRAPHIC { OSPF_PATT->autype = OSPF_AUTH_CRYPT ; }
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| RX BUFFER LARGE { OSPF_PATT->rxbuf = OSPF_RXBUF_LARGE ; }
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| RX BUFFER NORMAL { OSPF_PATT->rxbuf = OSPF_RXBUF_NORMAL ; }
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| RX BUFFER expr { OSPF_PATT->rxbuf = $3 ; if (($3 < OSPF_RXBUF_MINSIZE) || ($3 > OSPF_MAX_PKT_SIZE)) cf_error("Buffer size must be in range 256-65535"); }
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| password_list
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;
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pref_list:
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/* empty */
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| pref_list pref_item
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;
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pref_item: pref_base pref_opt ';' ;
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pref_base: prefix
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{
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this_pref = cfg_allocz(sizeof(struct area_net_config));
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add_tail(this_nets, NODE this_pref);
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this_pref->px.addr = $1.addr;
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this_pref->px.len = $1.len;
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}
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;
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pref_opt:
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/* empty */
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| HIDDEN { this_pref->hidden = 1; }
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| TAG expr { this_pref->tag = $2; }
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;
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ipa_list:
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/* empty */
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| ipa_list ipa_item
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;
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ipa_item:
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ipa_el
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| ipa_ne;
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ipa_el: IPA ';'
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{
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this_nbma = cfg_allocz(sizeof(struct nbma_node));
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add_tail(&OSPF_PATT->nbma_list, NODE this_nbma);
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this_nbma->ip=$1;
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this_nbma->eligible=0;
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}
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;
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ipa_ne: IPA ELIGIBLE ';'
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{
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this_nbma = cfg_allocz(sizeof(struct nbma_node));
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add_tail(&OSPF_PATT->nbma_list, NODE this_nbma);
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this_nbma->ip=$1;
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this_nbma->eligible=1;
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}
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;
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ospf_iface_start:
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{
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this_ipatt = cfg_allocz(sizeof(struct ospf_iface_patt));
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add_tail(&this_area->patt_list, NODE this_ipatt);
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init_list(&this_ipatt->ipn_list);
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OSPF_PATT->cost = COST_D;
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OSPF_PATT->helloint = HELLOINT_D;
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OSPF_PATT->pollint = POLLINT_D;
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OSPF_PATT->rxmtint = RXMTINT_D;
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OSPF_PATT->inftransdelay = INFTRANSDELAY_D;
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OSPF_PATT->priority = PRIORITY_D;
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OSPF_PATT->waitint = WAIT_DMH*HELLOINT_D;
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OSPF_PATT->deadc = DEADC_D;
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OSPF_PATT->deadint = 0;
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OSPF_PATT->type = OSPF_IT_UNDEF;
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init_list(&OSPF_PATT->nbma_list);
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OSPF_PATT->autype = OSPF_AUTH_NONE;
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reset_passwords();
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}
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;
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ospf_iface_opts:
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/* empty */
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| ospf_iface_opts ospf_iface_item ';'
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;
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ospf_iface_opt_list:
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/* empty */
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| '{' ospf_iface_opts '}'
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;
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ospf_iface:
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ospf_iface_start iface_patt_list ospf_iface_opt_list { ospf_iface_finish(); }
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;
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opttext:
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TEXT
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| /* empty */ { $$ = NULL; }
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;
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CF_ADDTO(dynamic_attr, OSPF_METRIC1 { $$ = f_new_dynamic_attr(EAF_TYPE_INT | EAF_TEMP, T_INT, EA_OSPF_METRIC1); })
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CF_ADDTO(dynamic_attr, OSPF_METRIC2 { $$ = f_new_dynamic_attr(EAF_TYPE_INT | EAF_TEMP, T_INT, EA_OSPF_METRIC2); })
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CF_ADDTO(dynamic_attr, OSPF_TAG { $$ = f_new_dynamic_attr(EAF_TYPE_INT | EAF_TEMP, T_INT, EA_OSPF_TAG); })
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CF_ADDTO(dynamic_attr, OSPF_ROUTER_ID { $$ = f_new_dynamic_attr(EAF_TYPE_ROUTER_ID | EAF_TEMP, T_QUAD, EA_OSPF_ROUTER_ID); })
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CF_CLI(SHOW OSPF, optsym, [<name>], [[Show information about OSPF protocol]])
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{ ospf_sh(proto_get_named($3, &proto_ospf)); };
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CF_CLI(SHOW OSPF NEIGHBORS, optsym opttext, [<name>] [\"<interface>\"], [[Show information about OSPF neighbors]])
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{ ospf_sh_neigh(proto_get_named($4, &proto_ospf), $5); };
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CF_CLI(SHOW OSPF INTERFACE, optsym opttext, [<name>] [\"<interface>\"], [[Show information about interface]])
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{ ospf_sh_iface(proto_get_named($4, &proto_ospf), $5); };
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CF_CLI_HELP(SHOW OSPF TOPOLOGY, [all] [<name>], [[Show information about OSPF network topology]])
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CF_CLI(SHOW OSPF TOPOLOGY, optsym opttext, [<name>], [[Show information about reachable OSPF network topology]])
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{ ospf_sh_state(proto_get_named($4, &proto_ospf), 0, 1); };
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CF_CLI(SHOW OSPF TOPOLOGY ALL, optsym opttext, [<name>], [[Show information about all OSPF network topology]])
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{ ospf_sh_state(proto_get_named($5, &proto_ospf), 0, 0); };
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CF_CLI_HELP(SHOW OSPF STATE, [all] [<name>], [[Show information about OSPF network state]])
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CF_CLI(SHOW OSPF STATE, optsym opttext, [<name>], [[Show information about reachable OSPF network state]])
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{ ospf_sh_state(proto_get_named($4, &proto_ospf), 1, 1); };
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CF_CLI(SHOW OSPF STATE ALL, optsym opttext, [<name>], [[Show information about all OSPF network state]])
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{ ospf_sh_state(proto_get_named($5, &proto_ospf), 1, 0); };
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CF_CLI(SHOW OSPF LSADB, lsadb_args, [global | area <id> | link] [type <num>] [lsid <id>] [self | router <id>] [<proto>], [[Show content of OSPF LSA database]])
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{ ospf_sh_lsadb($4); };
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lsadb_args:
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/* empty */ {
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$$ = cfg_allocz(sizeof(struct lsadb_show_data));
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}
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| lsadb_args GLOBAL { $$ = $1; $$->scope = LSA_SCOPE_AS; }
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| lsadb_args AREA idval { $$ = $1; $$->scope = LSA_SCOPE_AREA; $$->area = $3 }
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| lsadb_args LINK { $$ = $1; $$->scope = 1; /* hack, 0 is no filter */ }
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| lsadb_args TYPE NUM { $$ = $1; $$->type = $3; }
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| lsadb_args LSID idval { $$ = $1; $$->lsid = $3; }
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| lsadb_args SELF { $$ = $1; $$->router = SH_ROUTER_SELF; }
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| lsadb_args ROUTER idval { $$ = $1; $$->router = $3; }
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| lsadb_args SYM { $$ = $1; $$->name = $2; }
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;
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CF_CODE
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CF_END
|