mirror of
https://gitlab.nic.cz/labs/bird.git
synced 2024-12-22 09:41:54 +00:00
9f1500f50a
Thanks Alexander V. Chernikov for the original patch.
424 lines
11 KiB
C
424 lines
11 KiB
C
/*
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* BIRD -- OSPF
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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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#include "ospf.h"
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#ifdef OSPFv2
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struct ospf_dbdes_packet
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{
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struct ospf_packet ospf_packet;
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u16 iface_mtu;
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u8 options;
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union imms imms; /* I, M, MS bits */
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u32 ddseq;
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};
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#define hton_opt(X) X
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#define ntoh_opt(X) X
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#endif
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#ifdef OSPFv3
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struct ospf_dbdes_packet
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{
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struct ospf_packet ospf_packet;
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u32 options;
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u16 iface_mtu;
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u8 padding;
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union imms imms; /* I, M, MS bits */
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u32 ddseq;
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};
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#define hton_opt(X) htonl(X)
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#define ntoh_opt(X) ntohl(X)
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#endif
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static void ospf_dump_dbdes(struct proto *p, struct ospf_dbdes_packet *pkt)
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{
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struct ospf_packet *op = &pkt->ospf_packet;
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ASSERT(op->type == DBDES_P);
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ospf_dump_common(p, op);
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log(L_TRACE "%s: imms %s%s%s",
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p->name, pkt->imms.bit.ms ? "MS " : "",
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pkt->imms.bit.m ? "M " : "",
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pkt->imms.bit.i ? "I " : "" );
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log(L_TRACE "%s: ddseq %u", p->name, ntohl(pkt->ddseq));
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struct ospf_lsa_header *plsa = (void *) (pkt + 1);
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unsigned int i, j;
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j = (ntohs(op->length) - sizeof(struct ospf_dbdes_packet)) /
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sizeof(struct ospf_lsa_header);
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for (i = 0; i < j; i++)
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ospf_dump_lsahdr(p, plsa + i);
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}
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/**
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* ospf_dbdes_send - transmit database description packet
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* @n: neighbor
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* @next: whether to send a next packet in a sequence (1) or to retransmit the old one (0)
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*
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* Sending of a database description packet is described in 10.8 of RFC 2328.
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* Reception of each packet is acknowledged in the sequence number of another.
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* When I send a packet to a neighbor I keep a copy in a buffer. If the neighbor
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* does not reply, I don't create a new packet but just send the content
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* of the buffer.
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*/
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void
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ospf_dbdes_send(struct ospf_neighbor *n, int next)
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{
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struct ospf_dbdes_packet *pkt;
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struct ospf_packet *op;
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struct ospf_iface *ifa = n->ifa;
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struct ospf_area *oa = ifa->oa;
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struct proto_ospf *po = oa->po;
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struct proto *p = &po->proto;
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u16 length, i, j;
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/* FIXME ??? */
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if ((oa->rt == NULL) || (EMPTY_LIST(po->lsal)))
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update_rt_lsa(oa);
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switch (n->state)
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{
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case NEIGHBOR_EXSTART: /* Send empty packets */
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n->myimms.bit.i = 1;
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pkt = ospf_tx_buffer(ifa);
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op = &pkt->ospf_packet;
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ospf_pkt_fill_hdr(ifa, pkt, DBDES_P);
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pkt->iface_mtu = (ifa->type == OSPF_IT_VLINK) ? 0 : htons(ifa->iface->mtu);
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pkt->options = hton_opt(oa->options);
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pkt->imms = n->myimms;
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pkt->ddseq = htonl(n->dds);
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length = sizeof(struct ospf_dbdes_packet);
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op->length = htons(length);
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OSPF_PACKET(ospf_dump_dbdes, pkt, "DBDES packet sent to %I via %s", n->ip, ifa->iface->name);
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ospf_send_to(ifa, n->ip);
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break;
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case NEIGHBOR_EXCHANGE:
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n->myimms.bit.i = 0;
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if (next)
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{
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snode *sn;
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struct ospf_lsa_header *lsa;
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pkt = n->ldbdes;
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op = (struct ospf_packet *) pkt;
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ospf_pkt_fill_hdr(ifa, pkt, DBDES_P);
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pkt->iface_mtu = (ifa->type == OSPF_IT_VLINK) ? 0 : htons(ifa->iface->mtu);
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pkt->ddseq = htonl(n->dds);
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pkt->options = hton_opt(oa->options);
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j = i = (ospf_pkt_maxsize(ifa) - sizeof(struct ospf_dbdes_packet)) / sizeof(struct ospf_lsa_header); /* Number of possible lsaheaders to send */
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lsa = (n->ldbdes + sizeof(struct ospf_dbdes_packet));
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if (n->myimms.bit.m)
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{
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sn = s_get(&(n->dbsi));
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DBG("Number of LSA: %d\n", j);
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for (; i > 0; i--)
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{
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struct top_hash_entry *en= (struct top_hash_entry *) sn;
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if (ospf_lsa_flooding_allowed(&en->lsa, en->domain, ifa))
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{
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htonlsah(&(en->lsa), lsa);
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DBG("Working on: %d\n", i);
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DBG("\tX%01x %-1R %-1R %p\n", en->lsa.type, en->lsa.id, en->lsa.rt, en->lsa_body);
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lsa++;
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}
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else i++; /* No lsa added */
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if (sn == STAIL(po->lsal))
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{
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i--;
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break;
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}
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sn = sn->next;
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}
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if (sn == STAIL(po->lsal))
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{
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DBG("Number of LSA NOT sent: %d\n", i);
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DBG("M bit unset.\n");
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n->myimms.bit.m = 0; /* Unset more bit */
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}
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s_put(&(n->dbsi), sn);
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}
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pkt->imms.byte = n->myimms.byte;
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length = (j - i) * sizeof(struct ospf_lsa_header) +
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sizeof(struct ospf_dbdes_packet);
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op->length = htons(length);
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DBG("%s: DB_DES (M) prepared for %I.\n", p->name, n->ip);
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}
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case NEIGHBOR_LOADING:
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case NEIGHBOR_FULL:
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length = ntohs(((struct ospf_packet *) n->ldbdes)->length);
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if (!length)
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{
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OSPF_TRACE(D_PACKETS, "No packet in my buffer for repeating");
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ospf_neigh_sm(n, INM_KILLNBR);
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return;
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}
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/* Copy last sent packet again */
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pkt = ospf_tx_buffer(ifa);
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memcpy(pkt, n->ldbdes, length);
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OSPF_PACKET(ospf_dump_dbdes, pkt, "DBDES packet sent to %I via %s", n->ip, ifa->iface->name);
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ospf_send_to(ifa, n->ip);
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if(n->myimms.bit.ms) tm_start(n->rxmt_timer, n->ifa->rxmtint); /* Restart timer */
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if (!n->myimms.bit.ms)
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{
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if ((n->myimms.bit.m == 0) && (n->imms.bit.m == 0) &&
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(n->state == NEIGHBOR_EXCHANGE))
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{
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ospf_neigh_sm(n, INM_EXDONE);
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}
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}
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break;
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default: /* Ignore it */
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break;
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}
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}
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static void
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ospf_dbdes_reqladd(struct ospf_dbdes_packet *ps, struct ospf_neighbor *n)
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{
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struct ospf_lsa_header *plsa, lsa;
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struct top_hash_entry *he, *sn;
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struct ospf_area *oa = n->ifa->oa;
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struct top_graph *gr = oa->po->gr;
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struct ospf_packet *op;
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int i, j;
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op = (struct ospf_packet *) ps;
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plsa = (void *) (ps + 1);
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j = (ntohs(op->length) - sizeof(struct ospf_dbdes_packet)) /
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sizeof(struct ospf_lsa_header);
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for (i = 0; i < j; i++)
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{
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ntohlsah(plsa + i, &lsa);
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u32 dom = ospf_lsa_domain(lsa.type, n->ifa);
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if (((he = ospf_hash_find_header(gr, dom, &lsa)) == NULL) ||
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(lsa_comp(&lsa, &(he->lsa)) == 1))
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{
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/* Is this condition necessary? */
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if (ospf_hash_find_header(n->lsrqh, dom, &lsa) == NULL)
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{
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sn = ospf_hash_get_header(n->lsrqh, dom, &lsa);
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ntohlsah(plsa + i, &(sn->lsa));
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s_add_tail(&(n->lsrql), SNODE sn);
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}
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}
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}
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}
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void
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ospf_dbdes_receive(struct ospf_packet *ps_i, struct ospf_iface *ifa,
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struct ospf_neighbor *n)
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{
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struct proto_ospf *po = ifa->oa->po;
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struct proto *p = &po->proto;
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unsigned int size = ntohs(ps_i->length);
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if (size < sizeof(struct ospf_dbdes_packet))
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{
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log(L_ERR "Bad OSPF DBDES packet from %I - too short (%u B)", n->ip, size);
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return;
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}
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struct ospf_dbdes_packet *ps = (void *) ps_i;
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u32 ps_ddseq = ntohl(ps->ddseq);
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u32 ps_options = ntoh_opt(ps->options);
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u16 ps_iface_mtu = ntohs(ps->iface_mtu);
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OSPF_PACKET(ospf_dump_dbdes, ps, "DBDES packet received from %I via %s", n->ip, ifa->iface->name);
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ospf_neigh_sm(n, INM_HELLOREC);
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switch (n->state)
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{
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case NEIGHBOR_DOWN:
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case NEIGHBOR_ATTEMPT:
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case NEIGHBOR_2WAY:
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return;
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break;
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case NEIGHBOR_INIT:
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ospf_neigh_sm(n, INM_2WAYREC);
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if (n->state != NEIGHBOR_EXSTART)
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return;
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case NEIGHBOR_EXSTART:
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if ((ps_iface_mtu != ifa->iface->mtu) && (ifa->type != OSPF_IT_VLINK)
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&& (ps_iface_mtu != 0) && (ifa->iface->mtu != 0))
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log(L_WARN "OSPF: MTU mismatch with neighbour %I on interface %s (remote %d, local %d)",
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n->ip, ifa->iface->name, ps_iface_mtu, ifa->iface->mtu);
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if ((ps->imms.bit.m && ps->imms.bit.ms && ps->imms.bit.i)
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&& (n->rid > po->router_id) && (size == sizeof(struct ospf_dbdes_packet)))
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{
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/* I'm slave! */
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n->dds = ps_ddseq;
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n->ddr = ps_ddseq;
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n->options = ps_options;
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n->myimms.bit.ms = 0;
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n->imms.byte = ps->imms.byte;
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OSPF_TRACE(D_PACKETS, "I'm slave to %I.", n->ip);
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ospf_neigh_sm(n, INM_NEGDONE);
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ospf_dbdes_send(n, 1);
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break;
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}
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if (((ps->imms.bit.i == 0) && (ps->imms.bit.ms == 0)) &&
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(n->rid < po->router_id) && (n->dds == ps_ddseq))
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{
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/* I'm master! */
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n->options = ps_options;
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n->ddr = ps_ddseq - 1; /* It will be set corectly a few lines down */
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n->imms.byte = ps->imms.byte;
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OSPF_TRACE(D_PACKETS, "I'm master to %I.", n->ip);
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ospf_neigh_sm(n, INM_NEGDONE);
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}
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else
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{
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DBG("%s: Nothing happend to %I (imms=%u)\n", p->name, n->ip,
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ps->imms.byte);
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break;
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}
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case NEIGHBOR_EXCHANGE:
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if ((ps->imms.byte == n->imms.byte) && (ps_options == n->options) &&
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(ps_ddseq == n->ddr))
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{
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/* Duplicate packet */
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OSPF_TRACE(D_PACKETS, "Received duplicate dbdes from %I.", n->ip);
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if (n->myimms.bit.ms == 0)
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{
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/* Slave should retransmit dbdes packet */
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ospf_dbdes_send(n, 0);
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}
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return;
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}
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n->ddr = ps_ddseq;
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if (ps->imms.bit.ms != n->imms.bit.ms) /* M/S bit differs */
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{
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OSPF_TRACE(D_PACKETS, "dbdes - sequence mismatch neighbor %I (bit MS)",
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n->ip);
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ospf_neigh_sm(n, INM_SEQMIS);
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break;
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}
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if (ps->imms.bit.i) /* I bit is set */
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{
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OSPF_TRACE(D_PACKETS, "dbdes - sequence mismatch neighbor %I (bit I)",
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n->ip);
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ospf_neigh_sm(n, INM_SEQMIS);
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break;
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}
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n->imms.byte = ps->imms.byte;
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if (ps_options != n->options) /* Options differs */
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{
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OSPF_TRACE(D_PACKETS, "dbdes - sequence mismatch neighbor %I (options)",
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n->ip);
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ospf_neigh_sm(n, INM_SEQMIS);
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break;
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}
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if (n->myimms.bit.ms)
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{
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if (ps_ddseq != n->dds) /* MASTER */
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{
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OSPF_TRACE(D_PACKETS,
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"dbdes - sequence mismatch neighbor %I (master)", n->ip);
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ospf_neigh_sm(n, INM_SEQMIS);
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break;
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}
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n->dds++;
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DBG("Incrementing dds\n");
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ospf_dbdes_reqladd(ps, n);
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if ((n->myimms.bit.m == 0) && (ps->imms.bit.m == 0))
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{
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ospf_neigh_sm(n, INM_EXDONE);
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}
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else
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{
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ospf_dbdes_send(n, 1);
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}
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}
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else
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{
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if (ps_ddseq != (n->dds + 1)) /* SLAVE */
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{
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OSPF_TRACE(D_PACKETS, "dbdes - sequence mismatch neighbor %I (slave)",
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n->ip);
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ospf_neigh_sm(n, INM_SEQMIS);
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break;
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}
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n->ddr = ps_ddseq;
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n->dds = ps_ddseq;
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ospf_dbdes_reqladd(ps, n);
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ospf_dbdes_send(n, 1);
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}
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break;
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case NEIGHBOR_LOADING:
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case NEIGHBOR_FULL:
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if ((ps->imms.byte == n->imms.byte) && (ps_options == n->options)
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&& (ps_ddseq == n->ddr))
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/* Only duplicate are accepted */
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{
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OSPF_TRACE(D_PACKETS, "Received duplicate dbdes from %I.", n->ip);
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if (n->myimms.bit.ms == 0)
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{
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/* Slave should retransmit dbdes packet */
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ospf_dbdes_send(n, 0);
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}
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return;
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}
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else
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{
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OSPF_TRACE(D_PACKETS, "dbdes - sequence mismatch neighbor %I (full)",
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n->ip);
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DBG("PS=%u, DDR=%u, DDS=%u\n", ps_ddseq, n->ddr, n->dds);
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ospf_neigh_sm(n, INM_SEQMIS);
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}
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break;
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default:
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bug("Received dbdes from %I in undefined state.", n->ip);
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}
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}
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