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Doc in neighbor.c and some tiny changes related to.
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@ -158,14 +158,14 @@ ospf_int_sm(struct ospf_iface *ifa, int event)
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case ISM_WAITF:
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if(ifa->state==OSPF_IS_WAITING)
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{
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bdr_election(ifa ,p);
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bdr_election(ifa);
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}
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break;
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case ISM_NEICH:
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if((ifa->state==OSPF_IS_DROTHER) || (ifa->state==OSPF_IS_DR) ||
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(ifa->state==OSPF_IS_BACKUP))
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{
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bdr_election(ifa ,p);
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bdr_election(ifa);
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schedule_rt_lsa(ifa->oa);
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}
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break;
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@ -1,7 +1,7 @@
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/*
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* BIRD -- OSPF
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*
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* (c) 1999 Ondrej Filip <feela@network.cz>
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* (c) 1999 - 2000 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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@ -22,6 +22,15 @@ const char *ospf_inm[]={ "hello received", "neighbor start", "2-way received",
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"adjacency ok?", "sequence mismatch", "1-way received", "kill neighbor",
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"inactivity timer", "line down" };
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/**
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* neigh_chstate - handles changes related to new or lod state of neighbor
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* @n: OSPF neighbor
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* @state: new state
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*
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* Many actions has to be taken acording to state change of neighbor. It
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* starts rxmt timers, call interface state machine etc.
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*/
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void
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neigh_chstate(struct ospf_neighbor *n, u8 state)
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{
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@ -49,14 +58,14 @@ neigh_chstate(struct ospf_neighbor *n, u8 state)
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{
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ifa->fadj--;
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schedule_rt_lsa(ifa->oa);
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originate_net_lsa(ifa,po);
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originate_net_lsa(ifa);
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}
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if(state==NEIGHBOR_FULL) /* Increase number of adjacencies */
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{
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ifa->fadj++;
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schedule_rt_lsa(ifa->oa);
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originate_net_lsa(ifa,po);
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originate_net_lsa(ifa);
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}
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if(oldstate>=NEIGHBOR_EXSTART && state<NEIGHBOR_EXSTART)
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{
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@ -203,9 +212,20 @@ can_do_adj(struct ospf_neighbor *n)
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return i;
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}
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/**
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* ospf_neigh_sm - ospf neighbor state machine
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* @n: neighor
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* @event: actual event
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*
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* This part implements neighbor state machine as described in 10.3 of
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* RFC 2328. the only difference is that state %NEIGHBOR_ATTEMPT is not
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* used. We discover neighbors on nonbroadcast networks using the
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* same ways as on broadcast networks. The only difference is in
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* sending hello packets. These are send to IPs listed in
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* @ospf_iface->nbma_list .
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*/
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void
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ospf_neigh_sm(struct ospf_neighbor *n, int event)
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/* Interface state machine */
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{
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struct proto *p=(struct proto *)(n->ifa->proto);
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struct proto_ospf *po=n->ifa->proto;
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@ -217,7 +237,7 @@ ospf_neigh_sm(struct ospf_neighbor *n, int event)
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{
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case INM_START:
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neigh_chstate(n,NEIGHBOR_ATTEMPT);
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/* FIXME No NBMA now */
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/* NBMA are used different way */
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break;
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case INM_HELLOREC:
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switch(n->state)
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@ -298,14 +318,22 @@ ospf_neigh_sm(struct ospf_neighbor *n, int event)
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}
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}
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/**
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* bdr_election - (Backup) Designed Router election
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* @ifa: actual interface
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*
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* When wait time fires, it time to elect (Backup) Designed Router.
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* Structure describing me is added to this list so every electing router
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* has the same list. Backup Designed Router is elected before Designed
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* Router. This process is described in 9.4 of RFC 2328.
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*/
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void
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bdr_election(struct ospf_iface *ifa, struct proto *p)
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bdr_election(struct ospf_iface *ifa)
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{
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struct ospf_neighbor *neigh,*ndr,*nbdr,me,*tmp;
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u32 myid, ndrid, nbdrid;
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int doadj;
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p=(struct proto *)(ifa->proto);
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struct proto *p=&ifa->proto->proto;
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DBG("%s: (B)DR election.\n",p->name);
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@ -323,7 +351,7 @@ bdr_election(struct ospf_iface *ifa, struct proto *p)
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nbdr=electbdr(ifa->neigh_list);
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ndr=electdr(ifa->neigh_list);
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if(ndr==NULL) ndr=nbdr; /* FIXME is this correct? */
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if(ndr==NULL) ndr=nbdr;
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if(((ifa->drid==myid) && (ndr!=&me))
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|| ((ifa->drid!=myid) && (ndr==&me))
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@ -511,7 +539,6 @@ ospf_sh_neigh_info(struct ospf_neighbor *n)
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if(n->rid==ifa->bdrid) pos="bdr ";
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if(n->ifa->type==OSPF_IT_PTP) pos="ptp ";
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cli_msg(-1013,"%-18I\t%3u\t%s/%s\t%-5s\t%-18I\t%-10s",n->rid, n->priority,
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ospf_ns[n->state], pos, etime, n->ip,ifa->iface->name);
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}
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@ -1,7 +1,7 @@
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/*
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* BIRD -- OSPF
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*
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* (c) 1999 Ondrej Filip <feela@network.cz>
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* (c) 1999 - 2000 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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@ -16,7 +16,7 @@ struct ospf_neighbor *electdr(list nl);
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int can_do_adj(struct ospf_neighbor *n);
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void tryadj(struct ospf_neighbor *n, struct proto *p);
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void ospf_neigh_sm(struct ospf_neighbor *n, int event);
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void bdr_election(struct ospf_iface *ifa, struct proto *p);
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void bdr_election(struct ospf_iface *ifa);
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struct ospf_neighbor *find_neigh(struct ospf_iface *ifa, u32 rid);
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struct ospf_neighbor *find_neigh_noifa(struct proto_ospf *po, u32 rid);
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struct ospf_area *ospf_find_area(struct proto_ospf *po, u32 aid);
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@ -1,7 +1,7 @@
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/*
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* BIRD -- OSPF
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*
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* (c) 1999-2000 Ondrej Filip <feela@network.cz>
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* (c) 1999 - 2000 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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@ -1,7 +1,7 @@
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/*
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* BIRD -- OSPF
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*
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* (c) 1999-2000 Ondrej Filip <feela@network.cz>
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* (c) 1999 - 2000 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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@ -169,6 +169,15 @@ addifa_rtlsa(struct ospf_iface *ifa)
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else ifa->oa=oa;
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}
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/**
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* originate_rt_lsa - build new instance of router LSA
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* @oa: ospf_area which is LSA built to
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*
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* It builds router LSA walking through all OSPF interfaces in
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* specified OSPF area. This function is mostly called from
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* area_disp(). Builds new LSA, increases sequence number (if old
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* instance exists) and sets age of LSA to zero.
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*/
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void
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originate_rt_lsa(struct ospf_area *oa)
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{
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@ -231,9 +240,19 @@ originate_net_lsa_body(struct ospf_iface *ifa, u16 *length,
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return net;
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}
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/**
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* originate_net_lsa - originates of deletes network LSA
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* @ifa: interface which is LSA originated for
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*
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* Interface counts number of adjacent neighbor. If this number is
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* lower then one or interface is not in state %OSPF_IS_DR it deletes
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* and premature ages instance of network LSA for specified interface.
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* In other case, new instance of network LSA is originated.
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*/
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void
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originate_net_lsa(struct ospf_iface *ifa, struct proto_ospf *po)
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originate_net_lsa(struct ospf_iface *ifa)
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{
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struct proto_ospf *po=ifa->proto;
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struct ospf_lsa_header lsa;
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u32 rtid=po->proto.cf->global->router_id;
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struct top_hash_entry *en;
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@ -247,6 +266,8 @@ originate_net_lsa(struct ospf_iface *ifa, struct proto_ospf *po)
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{
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if(ifa->nlsa==NULL) return;
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OSPF_TRACE(D_EVENTS, "Deleting Net lsa for iface \"%s\".",
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ifa->iface->name);
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ifa->nlsa->lsa.sn+=1;
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ifa->nlsa->lsa.age=LSA_MAXAGE;
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flood_lsa(NULL,NULL,&ifa->nlsa->lsa,po,NULL,ifa->oa,0);
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@ -257,6 +278,9 @@ originate_net_lsa(struct ospf_iface *ifa, struct proto_ospf *po)
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return ;
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}
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OSPF_TRACE(D_EVENTS, "Originating Net lsa for iface \"%s\".",
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ifa->iface->name);
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lsa.age=0;
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lsa.id=ipa_to_u32(ifa->iface->addr->ip);
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lsa.type=LSA_T_NET;
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@ -317,6 +341,18 @@ originate_ext_lsa_body(net *n, rte *e, struct proto_ospf *po, struct ea_list *at
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return ext;
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}
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/**
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* originate_ext_lsa - new route recived from nest and filters
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* @n: network prefix and mask
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* @e: rte
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* @po: current instance of OSPF
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* @attrs: list of extended attributes
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*
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* If I receive message that new route is installed, I try to originate an
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* external LSA. LSA header of such LSA does not contain information about
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* prefix lenght, so if I have to originate multiple LSAs for route with
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* different prefixes I try to increment prefix id to find a "free" one.
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*/
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void
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originate_ext_lsa(net *n, rte *e, struct proto_ospf *po, struct ea_list *attrs)
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{
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@ -417,6 +453,13 @@ return (ospf_top_hash_u32(lsaid) + ospf_top_hash_u32((type==LSA_T_NET) ? lsaid :
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#endif
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}
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/**
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* ospf_top_new - allocated new topology database
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* @p: current instance of OSPF
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*
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* This dynamically hashed structure is often used for keeping LSAs. Mainly
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* its used in @ospf_area structute.
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*/
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struct top_graph *
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ospf_top_new(struct proto_ospf *p)
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{
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void ospf_hash_delete(struct top_graph *, struct top_hash_entry *);
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void addifa_rtlsa(struct ospf_iface *ifa);
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void originate_rt_lsa(struct ospf_area *oa);
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void originate_net_lsa(struct ospf_iface *ifa,struct proto_ospf *po);
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void originate_net_lsa(struct ospf_iface *ifa);
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int can_flush_lsa(struct ospf_area *oa);
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void originate_ext_lsa(net *n, rte *e, struct proto_ospf *po, struct ea_list *attrs);
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