build: Add QuaggaId to README.NetBSD
[jleu-quagga.git] / ospfd / ospf_packet.c
blob1066e64fb7e5adae1ad1200c0b6b1c6762a68ae6
1 /*
2 * OSPF Sending and Receiving OSPF Packets.
3 * Copyright (C) 1999, 2000 Toshiaki Takada
5 * This file is part of GNU Zebra.
7 * GNU Zebra is free software; you can redistribute it and/or modify it
8 * under the terms of the GNU General Public License as published by the
9 * Free Software Foundation; either version 2, or (at your option) any
10 * later version.
12 * GNU Zebra is distributed in the hope that it will be useful, but
13 * WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * General Public License for more details.
17 * You should have received a copy of the GNU General Public License
18 * along with GNU Zebra; see the file COPYING. If not, write to the Free
19 * Software Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
20 * 02111-1307, USA.
23 #include <zebra.h>
25 #include "thread.h"
26 #include "memory.h"
27 #include "linklist.h"
28 #include "prefix.h"
29 #include "if.h"
30 #include "table.h"
31 #include "sockunion.h"
32 #include "stream.h"
33 #include "log.h"
34 #include "sockopt.h"
35 #include "checksum.h"
36 #include "md5.h"
38 #include "ospfd/ospfd.h"
39 #include "ospfd/ospf_network.h"
40 #include "ospfd/ospf_interface.h"
41 #include "ospfd/ospf_ism.h"
42 #include "ospfd/ospf_asbr.h"
43 #include "ospfd/ospf_lsa.h"
44 #include "ospfd/ospf_lsdb.h"
45 #include "ospfd/ospf_neighbor.h"
46 #include "ospfd/ospf_nsm.h"
47 #include "ospfd/ospf_packet.h"
48 #include "ospfd/ospf_spf.h"
49 #include "ospfd/ospf_flood.h"
50 #include "ospfd/ospf_dump.h"
52 /* Packet Type String. */
53 const char *ospf_packet_type_str[] =
55 "unknown",
56 "Hello",
57 "Database Description",
58 "Link State Request",
59 "Link State Update",
60 "Link State Acknowledgment",
63 /* OSPF authentication checking function */
64 static int
65 ospf_auth_type (struct ospf_interface *oi)
67 int auth_type;
69 if (OSPF_IF_PARAM (oi, auth_type) == OSPF_AUTH_NOTSET)
70 auth_type = oi->area->auth_type;
71 else
72 auth_type = OSPF_IF_PARAM (oi, auth_type);
74 /* Handle case where MD5 key list is not configured aka Cisco */
75 if (auth_type == OSPF_AUTH_CRYPTOGRAPHIC &&
76 list_isempty (OSPF_IF_PARAM (oi, auth_crypt)))
77 return OSPF_AUTH_NULL;
79 return auth_type;
83 struct ospf_packet *
84 ospf_packet_new (size_t size)
86 struct ospf_packet *new;
88 new = XCALLOC (MTYPE_OSPF_PACKET, sizeof (struct ospf_packet));
89 new->s = stream_new (size);
91 return new;
94 void
95 ospf_packet_free (struct ospf_packet *op)
97 if (op->s)
98 stream_free (op->s);
100 XFREE (MTYPE_OSPF_PACKET, op);
102 op = NULL;
105 struct ospf_fifo *
106 ospf_fifo_new ()
108 struct ospf_fifo *new;
110 new = XCALLOC (MTYPE_OSPF_FIFO, sizeof (struct ospf_fifo));
111 return new;
114 /* Add new packet to fifo. */
115 void
116 ospf_fifo_push (struct ospf_fifo *fifo, struct ospf_packet *op)
118 if (fifo->tail)
119 fifo->tail->next = op;
120 else
121 fifo->head = op;
123 fifo->tail = op;
125 fifo->count++;
128 /* Delete first packet from fifo. */
129 struct ospf_packet *
130 ospf_fifo_pop (struct ospf_fifo *fifo)
132 struct ospf_packet *op;
134 op = fifo->head;
136 if (op)
138 fifo->head = op->next;
140 if (fifo->head == NULL)
141 fifo->tail = NULL;
143 fifo->count--;
146 return op;
149 /* Return first fifo entry. */
150 struct ospf_packet *
151 ospf_fifo_head (struct ospf_fifo *fifo)
153 return fifo->head;
156 /* Flush ospf packet fifo. */
157 void
158 ospf_fifo_flush (struct ospf_fifo *fifo)
160 struct ospf_packet *op;
161 struct ospf_packet *next;
163 for (op = fifo->head; op; op = next)
165 next = op->next;
166 ospf_packet_free (op);
168 fifo->head = fifo->tail = NULL;
169 fifo->count = 0;
172 /* Free ospf packet fifo. */
173 void
174 ospf_fifo_free (struct ospf_fifo *fifo)
176 ospf_fifo_flush (fifo);
178 XFREE (MTYPE_OSPF_FIFO, fifo);
181 void
182 ospf_packet_add (struct ospf_interface *oi, struct ospf_packet *op)
184 if (!oi->obuf)
186 zlog_err("ospf_packet_add(interface %s in state %d [%s], packet type %s, "
187 "destination %s) called with NULL obuf, ignoring "
188 "(please report this bug)!\n",
189 IF_NAME(oi), oi->state, LOOKUP (ospf_ism_state_msg, oi->state),
190 ospf_packet_type_str[stream_getc_from(op->s, 1)],
191 inet_ntoa (op->dst));
192 return;
195 /* Add packet to end of queue. */
196 ospf_fifo_push (oi->obuf, op);
198 /* Debug of packet fifo*/
199 /* ospf_fifo_debug (oi->obuf); */
202 void
203 ospf_packet_delete (struct ospf_interface *oi)
205 struct ospf_packet *op;
207 op = ospf_fifo_pop (oi->obuf);
209 if (op)
210 ospf_packet_free (op);
213 struct ospf_packet *
214 ospf_packet_dup (struct ospf_packet *op)
216 struct ospf_packet *new;
218 if (stream_get_endp(op->s) != op->length)
219 /* XXX size_t */
220 zlog_warn ("ospf_packet_dup stream %lu ospf_packet %u size mismatch",
221 (u_long)STREAM_SIZE(op->s), op->length);
223 /* Reserve space for MD5 authentication that may be added later. */
224 new = ospf_packet_new (stream_get_endp(op->s) + OSPF_AUTH_MD5_SIZE);
225 stream_copy (new->s, op->s);
227 new->dst = op->dst;
228 new->length = op->length;
230 return new;
233 /* XXX inline */
234 static inline unsigned int
235 ospf_packet_authspace (struct ospf_interface *oi)
237 int auth = 0;
239 if ( ospf_auth_type (oi) == OSPF_AUTH_CRYPTOGRAPHIC)
240 auth = OSPF_AUTH_MD5_SIZE;
242 return auth;
245 static unsigned int
246 ospf_packet_max (struct ospf_interface *oi)
248 int max;
250 max = oi->ifp->mtu - ospf_packet_authspace(oi);
252 max -= (OSPF_HEADER_SIZE + sizeof (struct ip));
254 return max;
258 static int
259 ospf_check_md5_digest (struct ospf_interface *oi, struct stream *s,
260 u_int16_t length)
262 unsigned char *ibuf;
263 MD5_CTX ctx;
264 unsigned char digest[OSPF_AUTH_MD5_SIZE];
265 unsigned char *pdigest;
266 struct crypt_key *ck;
267 struct ospf_header *ospfh;
268 struct ospf_neighbor *nbr;
271 ibuf = STREAM_PNT (s);
272 ospfh = (struct ospf_header *) ibuf;
274 /* Get pointer to the end of the packet. */
275 pdigest = ibuf + length;
277 /* Get secret key. */
278 ck = ospf_crypt_key_lookup (OSPF_IF_PARAM (oi, auth_crypt),
279 ospfh->u.crypt.key_id);
280 if (ck == NULL)
282 zlog_warn ("interface %s: ospf_check_md5 no key %d",
283 IF_NAME (oi), ospfh->u.crypt.key_id);
284 return 0;
287 /* check crypto seqnum. */
288 nbr = ospf_nbr_lookup_by_routerid (oi->nbrs, &ospfh->router_id);
290 if (nbr && ntohl(nbr->crypt_seqnum) > ntohl(ospfh->u.crypt.crypt_seqnum))
292 zlog_warn ("interface %s: ospf_check_md5 bad sequence %d (expect %d)",
293 IF_NAME (oi),
294 ntohl(ospfh->u.crypt.crypt_seqnum),
295 ntohl(nbr->crypt_seqnum));
296 return 0;
299 /* Generate a digest for the ospf packet - their digest + our digest. */
300 memset(&ctx, 0, sizeof(ctx));
301 MD5Init(&ctx);
302 MD5Update(&ctx, ibuf, length);
303 MD5Update(&ctx, ck->auth_key, OSPF_AUTH_MD5_SIZE);
304 MD5Final(digest, &ctx);
306 /* compare the two */
307 if (memcmp (pdigest, digest, OSPF_AUTH_MD5_SIZE))
309 zlog_warn ("interface %s: ospf_check_md5 checksum mismatch",
310 IF_NAME (oi));
311 return 0;
314 /* save neighbor's crypt_seqnum */
315 if (nbr)
316 nbr->crypt_seqnum = ospfh->u.crypt.crypt_seqnum;
317 return 1;
320 /* This function is called from ospf_write(), it will detect the
321 authentication scheme and if it is MD5, it will change the sequence
322 and update the MD5 digest. */
323 static int
324 ospf_make_md5_digest (struct ospf_interface *oi, struct ospf_packet *op)
326 struct ospf_header *ospfh;
327 unsigned char digest[OSPF_AUTH_MD5_SIZE];
328 MD5_CTX ctx;
329 void *ibuf;
330 u_int32_t t;
331 struct crypt_key *ck;
332 const u_int8_t *auth_key;
334 ibuf = STREAM_DATA (op->s);
335 ospfh = (struct ospf_header *) ibuf;
337 if (ntohs (ospfh->auth_type) != OSPF_AUTH_CRYPTOGRAPHIC)
338 return 0;
340 /* We do this here so when we dup a packet, we don't have to
341 waste CPU rewriting other headers.
343 Note that quagga_time /deliberately/ is not used here */
344 t = (time(NULL) & 0xFFFFFFFF);
345 if (t > oi->crypt_seqnum)
346 oi->crypt_seqnum = t;
347 else
348 oi->crypt_seqnum++;
350 ospfh->u.crypt.crypt_seqnum = htonl (oi->crypt_seqnum);
352 /* Get MD5 Authentication key from auth_key list. */
353 if (list_isempty (OSPF_IF_PARAM (oi, auth_crypt)))
354 auth_key = (const u_int8_t *) "";
355 else
357 ck = listgetdata (listtail(OSPF_IF_PARAM (oi, auth_crypt)));
358 auth_key = ck->auth_key;
361 /* Generate a digest for the entire packet + our secret key. */
362 memset(&ctx, 0, sizeof(ctx));
363 MD5Init(&ctx);
364 MD5Update(&ctx, ibuf, ntohs (ospfh->length));
365 MD5Update(&ctx, auth_key, OSPF_AUTH_MD5_SIZE);
366 MD5Final(digest, &ctx);
368 /* Append md5 digest to the end of the stream. */
369 stream_put (op->s, digest, OSPF_AUTH_MD5_SIZE);
371 /* We do *NOT* increment the OSPF header length. */
372 op->length = ntohs (ospfh->length) + OSPF_AUTH_MD5_SIZE;
374 if (stream_get_endp(op->s) != op->length)
375 /* XXX size_t */
376 zlog_warn("ospf_make_md5_digest: length mismatch stream %lu ospf_packet %u",
377 (u_long)stream_get_endp(op->s), op->length);
379 return OSPF_AUTH_MD5_SIZE;
383 static int
384 ospf_ls_req_timer (struct thread *thread)
386 struct ospf_neighbor *nbr;
388 nbr = THREAD_ARG (thread);
389 nbr->t_ls_req = NULL;
391 /* Send Link State Request. */
392 if (ospf_ls_request_count (nbr))
393 ospf_ls_req_send (nbr);
395 /* Set Link State Request retransmission timer. */
396 OSPF_NSM_TIMER_ON (nbr->t_ls_req, ospf_ls_req_timer, nbr->v_ls_req);
398 return 0;
401 void
402 ospf_ls_req_event (struct ospf_neighbor *nbr)
404 if (nbr->t_ls_req)
406 thread_cancel (nbr->t_ls_req);
407 nbr->t_ls_req = NULL;
409 nbr->t_ls_req = thread_add_event (master, ospf_ls_req_timer, nbr, 0);
412 /* Cyclic timer function. Fist registered in ospf_nbr_new () in
413 ospf_neighbor.c */
415 ospf_ls_upd_timer (struct thread *thread)
417 struct ospf_neighbor *nbr;
419 nbr = THREAD_ARG (thread);
420 nbr->t_ls_upd = NULL;
422 /* Send Link State Update. */
423 if (ospf_ls_retransmit_count (nbr) > 0)
425 struct list *update;
426 struct ospf_lsdb *lsdb;
427 int i;
428 int retransmit_interval;
430 retransmit_interval = OSPF_IF_PARAM (nbr->oi, retransmit_interval);
432 lsdb = &nbr->ls_rxmt;
433 update = list_new ();
435 for (i = OSPF_MIN_LSA; i < OSPF_MAX_LSA; i++)
437 struct route_table *table = lsdb->type[i].db;
438 struct route_node *rn;
440 for (rn = route_top (table); rn; rn = route_next (rn))
442 struct ospf_lsa *lsa;
444 if ((lsa = rn->info) != NULL)
445 /* Don't retransmit an LSA if we received it within
446 the last RxmtInterval seconds - this is to allow the
447 neighbour a chance to acknowledge the LSA as it may
448 have ben just received before the retransmit timer
449 fired. This is a small tweak to what is in the RFC,
450 but it will cut out out a lot of retransmit traffic
451 - MAG */
452 if (tv_cmp (tv_sub (recent_relative_time (), lsa->tv_recv),
453 int2tv (retransmit_interval)) >= 0)
454 listnode_add (update, rn->info);
458 if (listcount (update) > 0)
459 ospf_ls_upd_send (nbr, update, OSPF_SEND_PACKET_DIRECT);
460 list_delete (update);
463 /* Set LS Update retransmission timer. */
464 OSPF_NSM_TIMER_ON (nbr->t_ls_upd, ospf_ls_upd_timer, nbr->v_ls_upd);
466 return 0;
470 ospf_ls_ack_timer (struct thread *thread)
472 struct ospf_interface *oi;
474 oi = THREAD_ARG (thread);
475 oi->t_ls_ack = NULL;
477 /* Send Link State Acknowledgment. */
478 if (listcount (oi->ls_ack) > 0)
479 ospf_ls_ack_send_delayed (oi);
481 /* Set LS Ack timer. */
482 OSPF_ISM_TIMER_ON (oi->t_ls_ack, ospf_ls_ack_timer, oi->v_ls_ack);
484 return 0;
487 #ifdef WANT_OSPF_WRITE_FRAGMENT
488 static void
489 ospf_write_frags (int fd, struct ospf_packet *op, struct ip *iph,
490 struct msghdr *msg, unsigned int maxdatasize,
491 unsigned int mtu, int flags, u_char type)
493 #define OSPF_WRITE_FRAG_SHIFT 3
494 u_int16_t offset;
495 struct iovec *iovp;
496 int ret;
498 assert ( op->length == stream_get_endp(op->s) );
499 assert (msg->msg_iovlen == 2);
501 /* we can but try.
503 * SunOS, BSD and BSD derived kernels likely will clear ip_id, as
504 * well as the IP_MF flag, making this all quite pointless.
506 * However, for a system on which IP_MF is left alone, and ip_id left
507 * alone or else which sets same ip_id for each fragment this might
508 * work, eg linux.
510 * XXX-TODO: It would be much nicer to have the kernel's use their
511 * existing fragmentation support to do this for us. Bugs/RFEs need to
512 * be raised against the various kernels.
515 /* set More Frag */
516 iph->ip_off |= IP_MF;
518 /* ip frag offset is expressed in units of 8byte words */
519 offset = maxdatasize >> OSPF_WRITE_FRAG_SHIFT;
521 iovp = &msg->msg_iov[1];
523 while ( (stream_get_endp(op->s) - stream_get_getp (op->s))
524 > maxdatasize )
526 /* data length of this frag is to next offset value */
527 iovp->iov_len = offset << OSPF_WRITE_FRAG_SHIFT;
528 iph->ip_len = iovp->iov_len + sizeof (struct ip);
529 assert (iph->ip_len <= mtu);
531 sockopt_iphdrincl_swab_htosys (iph);
533 ret = sendmsg (fd, msg, flags);
535 sockopt_iphdrincl_swab_systoh (iph);
537 if (ret < 0)
538 zlog_warn ("*** ospf_write_frags: sendmsg failed to %s,"
539 " id %d, off %d, len %d, mtu %u failed with %s",
540 inet_ntoa (iph->ip_dst),
541 iph->ip_id,
542 iph->ip_off,
543 iph->ip_len,
544 mtu,
545 safe_strerror (errno));
547 if (IS_DEBUG_OSPF_PACKET (type - 1, SEND))
549 zlog_debug ("ospf_write_frags: sent id %d, off %d, len %d to %s\n",
550 iph->ip_id, iph->ip_off, iph->ip_len,
551 inet_ntoa (iph->ip_dst));
552 if (IS_DEBUG_OSPF_PACKET (type - 1, DETAIL))
554 zlog_debug ("-----------------IP Header Dump----------------------");
555 ospf_ip_header_dump (iph);
556 zlog_debug ("-----------------------------------------------------");
560 iph->ip_off += offset;
561 stream_forward_getp (op->s, iovp->iov_len);
562 iovp->iov_base = STREAM_PNT (op->s);
565 /* setup for final fragment */
566 iovp->iov_len = stream_get_endp(op->s) - stream_get_getp (op->s);
567 iph->ip_len = iovp->iov_len + sizeof (struct ip);
568 iph->ip_off &= (~IP_MF);
570 #endif /* WANT_OSPF_WRITE_FRAGMENT */
572 static int
573 ospf_write (struct thread *thread)
575 struct ospf *ospf = THREAD_ARG (thread);
576 struct ospf_interface *oi;
577 struct ospf_packet *op;
578 struct sockaddr_in sa_dst;
579 struct ip iph;
580 struct msghdr msg;
581 struct iovec iov[2];
582 u_char type;
583 int ret;
584 int flags = 0;
585 struct listnode *node;
586 #ifdef WANT_OSPF_WRITE_FRAGMENT
587 static u_int16_t ipid = 0;
588 #endif /* WANT_OSPF_WRITE_FRAGMENT */
589 u_int16_t maxdatasize;
590 #define OSPF_WRITE_IPHL_SHIFT 2
592 ospf->t_write = NULL;
594 node = listhead (ospf->oi_write_q);
595 assert (node);
596 oi = listgetdata (node);
597 assert (oi);
599 #ifdef WANT_OSPF_WRITE_FRAGMENT
600 /* seed ipid static with low order bits of time */
601 if (ipid == 0)
602 ipid = (time(NULL) & 0xffff);
603 #endif /* WANT_OSPF_WRITE_FRAGMENT */
605 /* convenience - max OSPF data per packet,
606 * and reliability - not more data, than our
607 * socket can accept
609 maxdatasize = MIN (oi->ifp->mtu, ospf->maxsndbuflen) -
610 sizeof (struct ip);
612 /* Get one packet from queue. */
613 op = ospf_fifo_head (oi->obuf);
614 assert (op);
615 assert (op->length >= OSPF_HEADER_SIZE);
617 if (op->dst.s_addr == htonl (OSPF_ALLSPFROUTERS)
618 || op->dst.s_addr == htonl (OSPF_ALLDROUTERS))
619 ospf_if_ipmulticast (ospf, oi->address, oi->ifp->ifindex);
621 /* Rewrite the md5 signature & update the seq */
622 ospf_make_md5_digest (oi, op);
624 /* Retrieve OSPF packet type. */
625 stream_set_getp (op->s, 1);
626 type = stream_getc (op->s);
628 /* reset get pointer */
629 stream_set_getp (op->s, 0);
631 memset (&iph, 0, sizeof (struct ip));
632 memset (&sa_dst, 0, sizeof (sa_dst));
634 sa_dst.sin_family = AF_INET;
635 #ifdef HAVE_STRUCT_SOCKADDR_IN_SIN_LEN
636 sa_dst.sin_len = sizeof(sa_dst);
637 #endif /* HAVE_STRUCT_SOCKADDR_IN_SIN_LEN */
638 sa_dst.sin_addr = op->dst;
639 sa_dst.sin_port = htons (0);
641 /* Set DONTROUTE flag if dst is unicast. */
642 if (oi->type != OSPF_IFTYPE_VIRTUALLINK)
643 if (!IN_MULTICAST (htonl (op->dst.s_addr)))
644 flags = MSG_DONTROUTE;
646 iph.ip_hl = sizeof (struct ip) >> OSPF_WRITE_IPHL_SHIFT;
647 /* it'd be very strange for header to not be 4byte-word aligned but.. */
648 if ( sizeof (struct ip)
649 > (unsigned int)(iph.ip_hl << OSPF_WRITE_IPHL_SHIFT) )
650 iph.ip_hl++; /* we presume sizeof struct ip cant overflow ip_hl.. */
652 iph.ip_v = IPVERSION;
653 iph.ip_tos = IPTOS_PREC_INTERNETCONTROL;
654 iph.ip_len = (iph.ip_hl << OSPF_WRITE_IPHL_SHIFT) + op->length;
656 #ifdef WANT_OSPF_WRITE_FRAGMENT
657 /* XXX-MT: not thread-safe at all..
658 * XXX: this presumes this is only programme sending OSPF packets
659 * otherwise, no guarantee ipid will be unique
661 iph.ip_id = ++ipid;
662 #endif /* WANT_OSPF_WRITE_FRAGMENT */
664 iph.ip_off = 0;
665 if (oi->type == OSPF_IFTYPE_VIRTUALLINK)
666 iph.ip_ttl = OSPF_VL_IP_TTL;
667 else
668 iph.ip_ttl = OSPF_IP_TTL;
669 iph.ip_p = IPPROTO_OSPFIGP;
670 iph.ip_sum = 0;
671 iph.ip_src.s_addr = oi->address->u.prefix4.s_addr;
672 iph.ip_dst.s_addr = op->dst.s_addr;
674 memset (&msg, 0, sizeof (msg));
675 msg.msg_name = (caddr_t) &sa_dst;
676 msg.msg_namelen = sizeof (sa_dst);
677 msg.msg_iov = iov;
678 msg.msg_iovlen = 2;
679 iov[0].iov_base = (char*)&iph;
680 iov[0].iov_len = iph.ip_hl << OSPF_WRITE_IPHL_SHIFT;
681 iov[1].iov_base = STREAM_PNT (op->s);
682 iov[1].iov_len = op->length;
684 /* Sadly we can not rely on kernels to fragment packets because of either
685 * IP_HDRINCL and/or multicast destination being set.
687 #ifdef WANT_OSPF_WRITE_FRAGMENT
688 if ( op->length > maxdatasize )
689 ospf_write_frags (ospf->fd, op, &iph, &msg, maxdatasize,
690 oi->ifp->mtu, flags, type);
691 #endif /* WANT_OSPF_WRITE_FRAGMENT */
693 /* send final fragment (could be first) */
694 sockopt_iphdrincl_swab_htosys (&iph);
695 ret = sendmsg (ospf->fd, &msg, flags);
696 sockopt_iphdrincl_swab_systoh (&iph);
698 if (ret < 0)
699 zlog_warn ("*** sendmsg in ospf_write failed to %s, "
700 "id %d, off %d, len %d, interface %s, mtu %u: %s",
701 inet_ntoa (iph.ip_dst), iph.ip_id, iph.ip_off, iph.ip_len,
702 oi->ifp->name, oi->ifp->mtu, safe_strerror (errno));
704 /* Show debug sending packet. */
705 if (IS_DEBUG_OSPF_PACKET (type - 1, SEND))
707 if (IS_DEBUG_OSPF_PACKET (type - 1, DETAIL))
709 zlog_debug ("-----------------------------------------------------");
710 ospf_ip_header_dump (&iph);
711 stream_set_getp (op->s, 0);
712 ospf_packet_dump (op->s);
715 zlog_debug ("%s sent to [%s] via [%s].",
716 ospf_packet_type_str[type], inet_ntoa (op->dst),
717 IF_NAME (oi));
719 if (IS_DEBUG_OSPF_PACKET (type - 1, DETAIL))
720 zlog_debug ("-----------------------------------------------------");
723 /* Now delete packet from queue. */
724 ospf_packet_delete (oi);
726 if (ospf_fifo_head (oi->obuf) == NULL)
728 oi->on_write_q = 0;
729 list_delete_node (ospf->oi_write_q, node);
732 /* If packets still remain in queue, call write thread. */
733 if (!list_isempty (ospf->oi_write_q))
734 ospf->t_write =
735 thread_add_write (master, ospf_write, ospf, ospf->fd);
737 return 0;
740 /* OSPF Hello message read -- RFC2328 Section 10.5. */
741 static void
742 ospf_hello (struct ip *iph, struct ospf_header *ospfh,
743 struct stream * s, struct ospf_interface *oi, int size)
745 struct ospf_hello *hello;
746 struct ospf_neighbor *nbr;
747 int old_state;
748 struct prefix p;
750 /* increment statistics. */
751 oi->hello_in++;
753 hello = (struct ospf_hello *) STREAM_PNT (s);
755 /* If Hello is myself, silently discard. */
756 if (IPV4_ADDR_SAME (&ospfh->router_id, &oi->ospf->router_id))
758 if (IS_DEBUG_OSPF_PACKET (ospfh->type - 1, RECV))
760 zlog_debug ("ospf_header[%s/%s]: selforiginated, "
761 "dropping.",
762 ospf_packet_type_str[ospfh->type],
763 inet_ntoa (iph->ip_src));
765 return;
768 /* get neighbor prefix. */
769 p.family = AF_INET;
770 p.prefixlen = ip_masklen (hello->network_mask);
771 p.u.prefix4 = iph->ip_src;
773 /* Compare network mask. */
774 /* Checking is ignored for Point-to-Point and Virtual link. */
775 if (oi->type != OSPF_IFTYPE_POINTOPOINT
776 && oi->type != OSPF_IFTYPE_VIRTUALLINK)
777 if (oi->address->prefixlen != p.prefixlen)
779 zlog_warn ("Packet %s [Hello:RECV]: NetworkMask mismatch on %s (configured prefix length is %d, but hello packet indicates %d).",
780 inet_ntoa(ospfh->router_id), IF_NAME(oi),
781 (int)oi->address->prefixlen, (int)p.prefixlen);
782 return;
785 /* Compare Router Dead Interval. */
786 if (OSPF_IF_PARAM (oi, v_wait) != ntohl (hello->dead_interval))
788 zlog_warn ("Packet %s [Hello:RECV]: RouterDeadInterval mismatch "
789 "(expected %u, but received %u).",
790 inet_ntoa(ospfh->router_id),
791 OSPF_IF_PARAM(oi, v_wait), ntohl(hello->dead_interval));
792 return;
795 /* Compare Hello Interval - ignored if fast-hellos are set. */
796 if (OSPF_IF_PARAM (oi, fast_hello) == 0)
798 if (OSPF_IF_PARAM (oi, v_hello) != ntohs (hello->hello_interval))
800 zlog_warn ("Packet %s [Hello:RECV]: HelloInterval mismatch "
801 "(expected %u, but received %u).",
802 inet_ntoa(ospfh->router_id),
803 OSPF_IF_PARAM(oi, v_hello), ntohs(hello->hello_interval));
804 return;
808 if (IS_DEBUG_OSPF_EVENT)
809 zlog_debug ("Packet %s [Hello:RECV]: Options %s",
810 inet_ntoa (ospfh->router_id),
811 ospf_options_dump (hello->options));
813 /* Compare options. */
814 #define REJECT_IF_TBIT_ON 1 /* XXX */
815 #ifdef REJECT_IF_TBIT_ON
816 if (CHECK_FLAG (hello->options, OSPF_OPTION_T))
819 * This router does not support non-zero TOS.
820 * Drop this Hello packet not to establish neighbor relationship.
822 zlog_warn ("Packet %s [Hello:RECV]: T-bit on, drop it.",
823 inet_ntoa (ospfh->router_id));
824 return;
826 #endif /* REJECT_IF_TBIT_ON */
828 #ifdef HAVE_OPAQUE_LSA
829 if (CHECK_FLAG (oi->ospf->config, OSPF_OPAQUE_CAPABLE)
830 && CHECK_FLAG (hello->options, OSPF_OPTION_O))
833 * This router does know the correct usage of O-bit
834 * the bit should be set in DD packet only.
836 zlog_warn ("Packet %s [Hello:RECV]: O-bit abuse?",
837 inet_ntoa (ospfh->router_id));
838 #ifdef STRICT_OBIT_USAGE_CHECK
839 return; /* Reject this packet. */
840 #else /* STRICT_OBIT_USAGE_CHECK */
841 UNSET_FLAG (hello->options, OSPF_OPTION_O); /* Ignore O-bit. */
842 #endif /* STRICT_OBIT_USAGE_CHECK */
844 #endif /* HAVE_OPAQUE_LSA */
846 /* new for NSSA is to ensure that NP is on and E is off */
848 if (oi->area->external_routing == OSPF_AREA_NSSA)
850 if (! (CHECK_FLAG (OPTIONS (oi), OSPF_OPTION_NP)
851 && CHECK_FLAG (hello->options, OSPF_OPTION_NP)
852 && ! CHECK_FLAG (OPTIONS (oi), OSPF_OPTION_E)
853 && ! CHECK_FLAG (hello->options, OSPF_OPTION_E)))
855 zlog_warn ("NSSA-Packet-%s[Hello:RECV]: my options: %x, his options %x", inet_ntoa (ospfh->router_id), OPTIONS (oi), hello->options);
856 return;
858 if (IS_DEBUG_OSPF_NSSA)
859 zlog_debug ("NSSA-Hello:RECV:Packet from %s:", inet_ntoa(ospfh->router_id));
861 else
862 /* The setting of the E-bit found in the Hello Packet's Options
863 field must match this area's ExternalRoutingCapability A
864 mismatch causes processing to stop and the packet to be
865 dropped. The setting of the rest of the bits in the Hello
866 Packet's Options field should be ignored. */
867 if (CHECK_FLAG (OPTIONS (oi), OSPF_OPTION_E) !=
868 CHECK_FLAG (hello->options, OSPF_OPTION_E))
870 zlog_warn ("Packet %s [Hello:RECV]: my options: %x, his options %x",
871 inet_ntoa(ospfh->router_id), OPTIONS (oi), hello->options);
872 return;
875 /* get neighbour struct */
876 nbr = ospf_nbr_get (oi, ospfh, iph, &p);
878 /* neighbour must be valid, ospf_nbr_get creates if none existed */
879 assert (nbr);
881 old_state = nbr->state;
883 /* Add event to thread. */
884 OSPF_NSM_EVENT_EXECUTE (nbr, NSM_HelloReceived);
886 /* RFC2328 Section 9.5.1
887 If the router is not eligible to become Designated Router,
888 (snip) It must also send an Hello Packet in reply to an
889 Hello Packet received from any eligible neighbor (other than
890 the current Designated Router and Backup Designated Router). */
891 if (oi->type == OSPF_IFTYPE_NBMA)
892 if (PRIORITY(oi) == 0 && hello->priority > 0
893 && IPV4_ADDR_CMP(&DR(oi), &iph->ip_src)
894 && IPV4_ADDR_CMP(&BDR(oi), &iph->ip_src))
895 OSPF_NSM_TIMER_ON (nbr->t_hello_reply, ospf_hello_reply_timer,
896 OSPF_HELLO_REPLY_DELAY);
898 /* on NBMA network type, it happens to receive bidirectional Hello packet
899 without advance 1-Way Received event.
900 To avoid incorrect DR-seletion, raise 1-Way Received event.*/
901 if (oi->type == OSPF_IFTYPE_NBMA &&
902 (old_state == NSM_Down || old_state == NSM_Attempt))
904 OSPF_NSM_EVENT_EXECUTE (nbr, NSM_OneWayReceived);
905 nbr->priority = hello->priority;
906 nbr->d_router = hello->d_router;
907 nbr->bd_router = hello->bd_router;
908 return;
911 if (ospf_nbr_bidirectional (&oi->ospf->router_id, hello->neighbors,
912 size - OSPF_HELLO_MIN_SIZE))
914 OSPF_NSM_EVENT_EXECUTE (nbr, NSM_TwoWayReceived);
915 nbr->options |= hello->options;
917 else
919 OSPF_NSM_EVENT_EXECUTE (nbr, NSM_OneWayReceived);
920 /* Set neighbor information. */
921 nbr->priority = hello->priority;
922 nbr->d_router = hello->d_router;
923 nbr->bd_router = hello->bd_router;
924 return;
927 /* If neighbor itself declares DR and no BDR exists,
928 cause event BackupSeen */
929 if (IPV4_ADDR_SAME (&nbr->address.u.prefix4, &hello->d_router))
930 if (hello->bd_router.s_addr == 0 && oi->state == ISM_Waiting)
931 OSPF_ISM_EVENT_SCHEDULE (oi, ISM_BackupSeen);
933 /* neighbor itself declares BDR. */
934 if (oi->state == ISM_Waiting &&
935 IPV4_ADDR_SAME (&nbr->address.u.prefix4, &hello->bd_router))
936 OSPF_ISM_EVENT_SCHEDULE (oi, ISM_BackupSeen);
938 /* had not previously. */
939 if ((IPV4_ADDR_SAME (&nbr->address.u.prefix4, &hello->d_router) &&
940 IPV4_ADDR_CMP (&nbr->address.u.prefix4, &nbr->d_router)) ||
941 (IPV4_ADDR_CMP (&nbr->address.u.prefix4, &hello->d_router) &&
942 IPV4_ADDR_SAME (&nbr->address.u.prefix4, &nbr->d_router)))
943 OSPF_ISM_EVENT_SCHEDULE (oi, ISM_NeighborChange);
945 /* had not previously. */
946 if ((IPV4_ADDR_SAME (&nbr->address.u.prefix4, &hello->bd_router) &&
947 IPV4_ADDR_CMP (&nbr->address.u.prefix4, &nbr->bd_router)) ||
948 (IPV4_ADDR_CMP (&nbr->address.u.prefix4, &hello->bd_router) &&
949 IPV4_ADDR_SAME (&nbr->address.u.prefix4, &nbr->bd_router)))
950 OSPF_ISM_EVENT_SCHEDULE (oi, ISM_NeighborChange);
952 /* Neighbor priority check. */
953 if (nbr->priority >= 0 && nbr->priority != hello->priority)
954 OSPF_ISM_EVENT_SCHEDULE (oi, ISM_NeighborChange);
956 /* Set neighbor information. */
957 nbr->priority = hello->priority;
958 nbr->d_router = hello->d_router;
959 nbr->bd_router = hello->bd_router;
962 /* Save DD flags/options/Seqnum received. */
963 static void
964 ospf_db_desc_save_current (struct ospf_neighbor *nbr,
965 struct ospf_db_desc *dd)
967 nbr->last_recv.flags = dd->flags;
968 nbr->last_recv.options = dd->options;
969 nbr->last_recv.dd_seqnum = ntohl (dd->dd_seqnum);
972 /* Process rest of DD packet. */
973 static void
974 ospf_db_desc_proc (struct stream *s, struct ospf_interface *oi,
975 struct ospf_neighbor *nbr, struct ospf_db_desc *dd,
976 u_int16_t size)
978 struct ospf_lsa *new, *find;
979 struct lsa_header *lsah;
981 stream_forward_getp (s, OSPF_DB_DESC_MIN_SIZE);
982 for (size -= OSPF_DB_DESC_MIN_SIZE;
983 size >= OSPF_LSA_HEADER_SIZE; size -= OSPF_LSA_HEADER_SIZE)
985 lsah = (struct lsa_header *) STREAM_PNT (s);
986 stream_forward_getp (s, OSPF_LSA_HEADER_SIZE);
988 /* Unknown LS type. */
989 if (lsah->type < OSPF_MIN_LSA || lsah->type >= OSPF_MAX_LSA)
991 zlog_warn ("Packet [DD:RECV]: Unknown LS type %d.", lsah->type);
992 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_SeqNumberMismatch);
993 return;
996 #ifdef HAVE_OPAQUE_LSA
997 if (IS_OPAQUE_LSA (lsah->type)
998 && ! CHECK_FLAG (nbr->options, OSPF_OPTION_O))
1000 zlog_warn ("LSA[Type%d:%s]: Opaque capability mismatch?", lsah->type, inet_ntoa (lsah->id));
1001 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_SeqNumberMismatch);
1002 return;
1004 #endif /* HAVE_OPAQUE_LSA */
1006 switch (lsah->type)
1008 case OSPF_AS_EXTERNAL_LSA:
1009 #ifdef HAVE_OPAQUE_LSA
1010 case OSPF_OPAQUE_AS_LSA:
1011 #endif /* HAVE_OPAQUE_LSA */
1012 /* Check for stub area. Reject if AS-External from stub but
1013 allow if from NSSA. */
1014 if (oi->area->external_routing == OSPF_AREA_STUB)
1016 zlog_warn ("Packet [DD:RECV]: LSA[Type%d:%s] from %s area.",
1017 lsah->type, inet_ntoa (lsah->id),
1018 (oi->area->external_routing == OSPF_AREA_STUB) ?\
1019 "STUB" : "NSSA");
1020 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_SeqNumberMismatch);
1021 return;
1023 break;
1024 default:
1025 break;
1028 /* Create LS-request object. */
1029 new = ospf_ls_request_new (lsah);
1031 /* Lookup received LSA, then add LS request list. */
1032 find = ospf_lsa_lookup_by_header (oi->area, lsah);
1034 /* ospf_lsa_more_recent is fine with NULL pointers */
1035 switch (ospf_lsa_more_recent (find, new))
1037 case -1:
1038 /* Neighbour has a more recent LSA, we must request it */
1039 ospf_ls_request_add (nbr, new);
1040 case 0:
1041 /* If we have a copy of this LSA, it's either less recent
1042 * and we're requesting it from neighbour (the case above), or
1043 * it's as recent and we both have same copy (this case).
1045 * In neither of these two cases is there any point in
1046 * describing our copy of the LSA to the neighbour in a
1047 * DB-Summary packet, if we're still intending to do so.
1049 * See: draft-ogier-ospf-dbex-opt-00.txt, describing the
1050 * backward compatible optimisation to OSPF DB Exchange /
1051 * DB Description process implemented here.
1053 if (find)
1054 ospf_lsdb_delete (&nbr->db_sum, find);
1055 ospf_lsa_discard (new);
1056 break;
1057 default:
1058 /* We have the more recent copy, nothing specific to do:
1059 * - no need to request neighbours stale copy
1060 * - must leave DB summary list copy alone
1062 if (IS_DEBUG_OSPF_EVENT)
1063 zlog_debug ("Packet [DD:RECV]: LSA received Type %d, "
1064 "ID %s is not recent.", lsah->type, inet_ntoa (lsah->id));
1065 ospf_lsa_discard (new);
1069 /* Master */
1070 if (IS_SET_DD_MS (nbr->dd_flags))
1072 nbr->dd_seqnum++;
1074 /* Both sides have no More, then we're done with Exchange */
1075 if (!IS_SET_DD_M (dd->flags) && !IS_SET_DD_M (nbr->dd_flags))
1076 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_ExchangeDone);
1077 else
1078 ospf_db_desc_send (nbr);
1080 /* Slave */
1081 else
1083 nbr->dd_seqnum = ntohl (dd->dd_seqnum);
1085 /* Send DD packet in reply.
1087 * Must be done to acknowledge the Master's DD, regardless of
1088 * whether we have more LSAs ourselves to describe.
1090 * This function will clear the 'More' bit, if after this DD
1091 * we have no more LSAs to describe to the master..
1093 ospf_db_desc_send (nbr);
1095 /* Slave can raise ExchangeDone now, if master is also done */
1096 if (!IS_SET_DD_M (dd->flags) && !IS_SET_DD_M (nbr->dd_flags))
1097 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_ExchangeDone);
1100 /* Save received neighbor values from DD. */
1101 ospf_db_desc_save_current (nbr, dd);
1104 static int
1105 ospf_db_desc_is_dup (struct ospf_db_desc *dd, struct ospf_neighbor *nbr)
1107 /* Is DD duplicated? */
1108 if (dd->options == nbr->last_recv.options &&
1109 dd->flags == nbr->last_recv.flags &&
1110 dd->dd_seqnum == htonl (nbr->last_recv.dd_seqnum))
1111 return 1;
1113 return 0;
1116 /* OSPF Database Description message read -- RFC2328 Section 10.6. */
1117 static void
1118 ospf_db_desc (struct ip *iph, struct ospf_header *ospfh,
1119 struct stream *s, struct ospf_interface *oi, u_int16_t size)
1121 struct ospf_db_desc *dd;
1122 struct ospf_neighbor *nbr;
1124 /* Increment statistics. */
1125 oi->db_desc_in++;
1127 dd = (struct ospf_db_desc *) STREAM_PNT (s);
1129 nbr = ospf_nbr_lookup (oi, iph, ospfh);
1130 if (nbr == NULL)
1132 zlog_warn ("Packet[DD]: Unknown Neighbor %s",
1133 inet_ntoa (ospfh->router_id));
1134 return;
1137 /* Check MTU. */
1138 if ((OSPF_IF_PARAM (oi, mtu_ignore) == 0) &&
1139 (ntohs (dd->mtu) > oi->ifp->mtu))
1141 zlog_warn ("Packet[DD]: Neighbor %s MTU %u is larger than [%s]'s MTU %u",
1142 inet_ntoa (nbr->router_id), ntohs (dd->mtu),
1143 IF_NAME (oi), oi->ifp->mtu);
1144 return;
1148 * XXX HACK by Hasso Tepper. Setting N/P bit in NSSA area DD packets is not
1149 * required. In fact at least JunOS sends DD packets with P bit clear.
1150 * Until proper solution is developped, this hack should help.
1152 * Update: According to the RFCs, N bit is specified /only/ for Hello
1153 * options, unfortunately its use in DD options is not specified. Hence some
1154 * implementations follow E-bit semantics and set it in DD options, and some
1155 * treat it as unspecified and hence follow the directive "default for
1156 * options is clear", ie unset.
1158 * Reset the flag, as ospfd follows E-bit semantics.
1160 if ( (oi->area->external_routing == OSPF_AREA_NSSA)
1161 && (CHECK_FLAG (nbr->options, OSPF_OPTION_NP))
1162 && (!CHECK_FLAG (dd->options, OSPF_OPTION_NP)) )
1164 if (IS_DEBUG_OSPF_EVENT)
1165 zlog_debug ("Packet[DD]: Neighbour %s: Has NSSA capability, sends with N bit clear in DD options",
1166 inet_ntoa (nbr->router_id) );
1167 SET_FLAG (dd->options, OSPF_OPTION_NP);
1170 #ifdef REJECT_IF_TBIT_ON
1171 if (CHECK_FLAG (dd->options, OSPF_OPTION_T))
1174 * In Hello protocol, optional capability must have checked
1175 * to prevent this T-bit enabled router be my neighbor.
1177 zlog_warn ("Packet[DD]: Neighbor %s: T-bit on?", inet_ntoa (nbr->router_id));
1178 return;
1180 #endif /* REJECT_IF_TBIT_ON */
1182 #ifdef HAVE_OPAQUE_LSA
1183 if (CHECK_FLAG (dd->options, OSPF_OPTION_O)
1184 && !CHECK_FLAG (oi->ospf->config, OSPF_OPAQUE_CAPABLE))
1187 * This node is not configured to handle O-bit, for now.
1188 * Clear it to ignore unsupported capability proposed by neighbor.
1190 UNSET_FLAG (dd->options, OSPF_OPTION_O);
1192 #endif /* HAVE_OPAQUE_LSA */
1194 /* Process DD packet by neighbor status. */
1195 switch (nbr->state)
1197 case NSM_Down:
1198 case NSM_Attempt:
1199 case NSM_TwoWay:
1200 zlog_warn ("Packet[DD]: Neighbor %s state is %s, packet discarded.",
1201 inet_ntoa(nbr->router_id),
1202 LOOKUP (ospf_nsm_state_msg, nbr->state));
1203 break;
1204 case NSM_Init:
1205 OSPF_NSM_EVENT_EXECUTE (nbr, NSM_TwoWayReceived);
1206 /* If the new state is ExStart, the processing of the current
1207 packet should then continue in this new state by falling
1208 through to case ExStart below. */
1209 if (nbr->state != NSM_ExStart)
1210 break;
1211 case NSM_ExStart:
1212 /* Initial DBD */
1213 if ((IS_SET_DD_ALL (dd->flags) == OSPF_DD_FLAG_ALL) &&
1214 (size == OSPF_DB_DESC_MIN_SIZE))
1216 if (IPV4_ADDR_CMP (&nbr->router_id, &oi->ospf->router_id) > 0)
1218 /* We're Slave---obey */
1219 zlog_info ("Packet[DD]: Neighbor %s Negotiation done (Slave).",
1220 inet_ntoa(nbr->router_id));
1221 nbr->dd_seqnum = ntohl (dd->dd_seqnum);
1223 /* Reset I/MS */
1224 UNSET_FLAG (nbr->dd_flags, (OSPF_DD_FLAG_MS|OSPF_DD_FLAG_I));
1226 else
1228 /* We're Master, ignore the initial DBD from Slave */
1229 zlog_info ("Packet[DD]: Neighbor %s: Initial DBD from Slave, "
1230 "ignoring.", inet_ntoa(nbr->router_id));
1231 break;
1234 /* Ack from the Slave */
1235 else if (!IS_SET_DD_MS (dd->flags) && !IS_SET_DD_I (dd->flags) &&
1236 ntohl (dd->dd_seqnum) == nbr->dd_seqnum &&
1237 IPV4_ADDR_CMP (&nbr->router_id, &oi->ospf->router_id) < 0)
1239 zlog_info ("Packet[DD]: Neighbor %s Negotiation done (Master).",
1240 inet_ntoa(nbr->router_id));
1241 /* Reset I, leaving MS */
1242 UNSET_FLAG (nbr->dd_flags, OSPF_DD_FLAG_I);
1244 else
1246 zlog_warn ("Packet[DD]: Neighbor %s Negotiation fails.",
1247 inet_ntoa(nbr->router_id));
1248 break;
1251 /* This is where the real Options are saved */
1252 nbr->options = dd->options;
1254 #ifdef HAVE_OPAQUE_LSA
1255 if (CHECK_FLAG (oi->ospf->config, OSPF_OPAQUE_CAPABLE))
1257 if (IS_DEBUG_OSPF_EVENT)
1258 zlog_debug ("Neighbor[%s] is %sOpaque-capable.",
1259 inet_ntoa (nbr->router_id),
1260 CHECK_FLAG (nbr->options, OSPF_OPTION_O) ? "" : "NOT ");
1262 if (! CHECK_FLAG (nbr->options, OSPF_OPTION_O)
1263 && IPV4_ADDR_SAME (&DR (oi), &nbr->address.u.prefix4))
1265 zlog_warn ("DR-neighbor[%s] is NOT opaque-capable; "
1266 "Opaque-LSAs cannot be reliably advertised "
1267 "in this network.",
1268 inet_ntoa (nbr->router_id));
1269 /* This situation is undesirable, but not a real error. */
1272 #endif /* HAVE_OPAQUE_LSA */
1274 OSPF_NSM_EVENT_EXECUTE (nbr, NSM_NegotiationDone);
1276 /* continue processing rest of packet. */
1277 ospf_db_desc_proc (s, oi, nbr, dd, size);
1278 break;
1279 case NSM_Exchange:
1280 if (ospf_db_desc_is_dup (dd, nbr))
1282 if (IS_SET_DD_MS (nbr->dd_flags))
1283 /* Master: discard duplicated DD packet. */
1284 zlog_info ("Packet[DD] (Master): Neighbor %s packet duplicated.",
1285 inet_ntoa (nbr->router_id));
1286 else
1287 /* Slave: cause to retransmit the last Database Description. */
1289 zlog_info ("Packet[DD] [Slave]: Neighbor %s packet duplicated.",
1290 inet_ntoa (nbr->router_id));
1291 ospf_db_desc_resend (nbr);
1293 break;
1296 /* Otherwise DD packet should be checked. */
1297 /* Check Master/Slave bit mismatch */
1298 if (IS_SET_DD_MS (dd->flags) != IS_SET_DD_MS (nbr->last_recv.flags))
1300 zlog_warn ("Packet[DD]: Neighbor %s MS-bit mismatch.",
1301 inet_ntoa(nbr->router_id));
1302 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_SeqNumberMismatch);
1303 if (IS_DEBUG_OSPF_EVENT)
1304 zlog_debug ("Packet[DD]: dd->flags=%d, nbr->dd_flags=%d",
1305 dd->flags, nbr->dd_flags);
1306 break;
1309 /* Check initialize bit is set. */
1310 if (IS_SET_DD_I (dd->flags))
1312 zlog_info ("Packet[DD]: Neighbor %s I-bit set.",
1313 inet_ntoa(nbr->router_id));
1314 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_SeqNumberMismatch);
1315 break;
1318 /* Check DD Options. */
1319 if (dd->options != nbr->options)
1321 #ifdef ORIGINAL_CODING
1322 /* Save the new options for debugging */
1323 nbr->options = dd->options;
1324 #endif /* ORIGINAL_CODING */
1325 zlog_warn ("Packet[DD]: Neighbor %s options mismatch.",
1326 inet_ntoa(nbr->router_id));
1327 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_SeqNumberMismatch);
1328 break;
1331 /* Check DD sequence number. */
1332 if ((IS_SET_DD_MS (nbr->dd_flags) &&
1333 ntohl (dd->dd_seqnum) != nbr->dd_seqnum) ||
1334 (!IS_SET_DD_MS (nbr->dd_flags) &&
1335 ntohl (dd->dd_seqnum) != nbr->dd_seqnum + 1))
1337 zlog_warn ("Packet[DD]: Neighbor %s sequence number mismatch.",
1338 inet_ntoa(nbr->router_id));
1339 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_SeqNumberMismatch);
1340 break;
1343 /* Continue processing rest of packet. */
1344 ospf_db_desc_proc (s, oi, nbr, dd, size);
1345 break;
1346 case NSM_Loading:
1347 case NSM_Full:
1348 if (ospf_db_desc_is_dup (dd, nbr))
1350 if (IS_SET_DD_MS (nbr->dd_flags))
1352 /* Master should discard duplicate DD packet. */
1353 zlog_info ("Packet[DD]: Neighbor %s duplicated, "
1354 "packet discarded.",
1355 inet_ntoa(nbr->router_id));
1356 break;
1358 else
1360 struct timeval t, now;
1361 quagga_gettime (QUAGGA_CLK_MONOTONIC, &now);
1362 t = tv_sub (now, nbr->last_send_ts);
1363 if (tv_cmp (t, int2tv (nbr->v_inactivity)) < 0)
1365 /* In states Loading and Full the slave must resend
1366 its last Database Description packet in response to
1367 duplicate Database Description packets received
1368 from the master. For this reason the slave must
1369 wait RouterDeadInterval seconds before freeing the
1370 last Database Description packet. Reception of a
1371 Database Description packet from the master after
1372 this interval will generate a SeqNumberMismatch
1373 neighbor event. RFC2328 Section 10.8 */
1374 ospf_db_desc_resend (nbr);
1375 break;
1380 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_SeqNumberMismatch);
1381 break;
1382 default:
1383 zlog_warn ("Packet[DD]: Neighbor %s NSM illegal status %u.",
1384 inet_ntoa(nbr->router_id), nbr->state);
1385 break;
1389 #define OSPF_LSA_KEY_SIZE 12 /* type(4) + id(4) + ar(4) */
1391 /* OSPF Link State Request Read -- RFC2328 Section 10.7. */
1392 static void
1393 ospf_ls_req (struct ip *iph, struct ospf_header *ospfh,
1394 struct stream *s, struct ospf_interface *oi, u_int16_t size)
1396 struct ospf_neighbor *nbr;
1397 u_int32_t ls_type;
1398 struct in_addr ls_id;
1399 struct in_addr adv_router;
1400 struct ospf_lsa *find;
1401 struct list *ls_upd;
1402 unsigned int length;
1404 /* Increment statistics. */
1405 oi->ls_req_in++;
1407 nbr = ospf_nbr_lookup (oi, iph, ospfh);
1408 if (nbr == NULL)
1410 zlog_warn ("Link State Request: Unknown Neighbor %s.",
1411 inet_ntoa (ospfh->router_id));
1412 return;
1415 /* Neighbor State should be Exchange or later. */
1416 if (nbr->state != NSM_Exchange &&
1417 nbr->state != NSM_Loading &&
1418 nbr->state != NSM_Full)
1420 zlog_warn ("Link State Request received from %s: "
1421 "Neighbor state is %s, packet discarded.",
1422 inet_ntoa (ospfh->router_id),
1423 LOOKUP (ospf_nsm_state_msg, nbr->state));
1424 return;
1427 /* Send Link State Update for ALL requested LSAs. */
1428 ls_upd = list_new ();
1429 length = OSPF_HEADER_SIZE + OSPF_LS_UPD_MIN_SIZE;
1431 while (size >= OSPF_LSA_KEY_SIZE)
1433 /* Get one slice of Link State Request. */
1434 ls_type = stream_getl (s);
1435 ls_id.s_addr = stream_get_ipv4 (s);
1436 adv_router.s_addr = stream_get_ipv4 (s);
1438 /* Verify LSA type. */
1439 if (ls_type < OSPF_MIN_LSA || ls_type >= OSPF_MAX_LSA)
1441 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_BadLSReq);
1442 list_delete (ls_upd);
1443 return;
1446 /* Search proper LSA in LSDB. */
1447 find = ospf_lsa_lookup (oi->area, ls_type, ls_id, adv_router);
1448 if (find == NULL)
1450 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_BadLSReq);
1451 list_delete (ls_upd);
1452 return;
1455 /* Packet overflows MTU size, send immediately. */
1456 if (length + ntohs (find->data->length) > ospf_packet_max (oi))
1458 if (oi->type == OSPF_IFTYPE_NBMA)
1459 ospf_ls_upd_send (nbr, ls_upd, OSPF_SEND_PACKET_DIRECT);
1460 else
1461 ospf_ls_upd_send (nbr, ls_upd, OSPF_SEND_PACKET_INDIRECT);
1463 /* Only remove list contents. Keep ls_upd. */
1464 list_delete_all_node (ls_upd);
1466 length = OSPF_HEADER_SIZE + OSPF_LS_UPD_MIN_SIZE;
1469 /* Append LSA to update list. */
1470 listnode_add (ls_upd, find);
1471 length += ntohs (find->data->length);
1473 size -= OSPF_LSA_KEY_SIZE;
1476 /* Send rest of Link State Update. */
1477 if (listcount (ls_upd) > 0)
1479 if (oi->type == OSPF_IFTYPE_NBMA)
1480 ospf_ls_upd_send (nbr, ls_upd, OSPF_SEND_PACKET_DIRECT);
1481 else
1482 ospf_ls_upd_send (nbr, ls_upd, OSPF_SEND_PACKET_INDIRECT);
1484 list_delete (ls_upd);
1486 else
1487 list_free (ls_upd);
1490 /* Get the list of LSAs from Link State Update packet.
1491 And process some validation -- RFC2328 Section 13. (1)-(2). */
1492 static struct list *
1493 ospf_ls_upd_list_lsa (struct ospf_neighbor *nbr, struct stream *s,
1494 struct ospf_interface *oi, size_t size)
1496 u_int16_t count, sum;
1497 u_int32_t length;
1498 struct lsa_header *lsah;
1499 struct ospf_lsa *lsa;
1500 struct list *lsas;
1502 lsas = list_new ();
1504 count = stream_getl (s);
1505 size -= OSPF_LS_UPD_MIN_SIZE; /* # LSAs */
1507 for (; size >= OSPF_LSA_HEADER_SIZE && count > 0;
1508 size -= length, stream_forward_getp (s, length), count--)
1510 lsah = (struct lsa_header *) STREAM_PNT (s);
1511 length = ntohs (lsah->length);
1513 if (length > size)
1515 zlog_warn ("Link State Update: LSA length exceeds packet size.");
1516 break;
1519 /* Validate the LSA's LS checksum. */
1520 sum = lsah->checksum;
1521 if (sum != ospf_lsa_checksum (lsah))
1523 zlog_warn ("Link State Update: LSA checksum error %x, %x.",
1524 sum, lsah->checksum);
1525 continue;
1528 /* Examine the LSA's LS type. */
1529 if (lsah->type < OSPF_MIN_LSA || lsah->type >= OSPF_MAX_LSA)
1531 zlog_warn ("Link State Update: Unknown LS type %d", lsah->type);
1532 continue;
1536 * What if the received LSA's age is greater than MaxAge?
1537 * Treat it as a MaxAge case -- endo.
1539 if (ntohs (lsah->ls_age) > OSPF_LSA_MAXAGE)
1540 lsah->ls_age = htons (OSPF_LSA_MAXAGE);
1542 #ifdef HAVE_OPAQUE_LSA
1543 if (CHECK_FLAG (nbr->options, OSPF_OPTION_O))
1545 #ifdef STRICT_OBIT_USAGE_CHECK
1546 if ((IS_OPAQUE_LSA(lsah->type) &&
1547 ! CHECK_FLAG (lsah->options, OSPF_OPTION_O))
1548 || (! IS_OPAQUE_LSA(lsah->type) &&
1549 CHECK_FLAG (lsah->options, OSPF_OPTION_O)))
1552 * This neighbor must know the exact usage of O-bit;
1553 * the bit will be set in Type-9,10,11 LSAs only.
1555 zlog_warn ("LSA[Type%d:%s]: O-bit abuse?", lsah->type, inet_ntoa (lsah->id));
1556 continue;
1558 #endif /* STRICT_OBIT_USAGE_CHECK */
1560 /* Do not take in AS External Opaque-LSAs if we are a stub. */
1561 if (lsah->type == OSPF_OPAQUE_AS_LSA
1562 && nbr->oi->area->external_routing != OSPF_AREA_DEFAULT)
1564 if (IS_DEBUG_OSPF_EVENT)
1565 zlog_debug ("LSA[Type%d:%s]: We are a stub, don't take this LSA.", lsah->type, inet_ntoa (lsah->id));
1566 continue;
1569 else if (IS_OPAQUE_LSA(lsah->type))
1571 zlog_warn ("LSA[Type%d:%s]: Opaque capability mismatch?", lsah->type, inet_ntoa (lsah->id));
1572 continue;
1574 #endif /* HAVE_OPAQUE_LSA */
1576 /* Create OSPF LSA instance. */
1577 lsa = ospf_lsa_new ();
1579 /* We may wish to put some error checking if type NSSA comes in
1580 and area not in NSSA mode */
1581 switch (lsah->type)
1583 case OSPF_AS_EXTERNAL_LSA:
1584 #ifdef HAVE_OPAQUE_LSA
1585 case OSPF_OPAQUE_AS_LSA:
1586 lsa->area = NULL;
1587 break;
1588 case OSPF_OPAQUE_LINK_LSA:
1589 lsa->oi = oi; /* Remember incoming interface for flooding control. */
1590 /* Fallthrough */
1591 #endif /* HAVE_OPAQUE_LSA */
1592 default:
1593 lsa->area = oi->area;
1594 break;
1597 lsa->data = ospf_lsa_data_new (length);
1598 memcpy (lsa->data, lsah, length);
1600 if (IS_DEBUG_OSPF_EVENT)
1601 zlog_debug("LSA[Type%d:%s]: %p new LSA created with Link State Update",
1602 lsa->data->type, inet_ntoa (lsa->data->id), lsa);
1603 listnode_add (lsas, lsa);
1606 return lsas;
1609 /* Cleanup Update list. */
1610 static void
1611 ospf_upd_list_clean (struct list *lsas)
1613 struct listnode *node, *nnode;
1614 struct ospf_lsa *lsa;
1616 for (ALL_LIST_ELEMENTS (lsas, node, nnode, lsa))
1617 ospf_lsa_discard (lsa);
1619 list_delete (lsas);
1622 /* OSPF Link State Update message read -- RFC2328 Section 13. */
1623 static void
1624 ospf_ls_upd (struct ip *iph, struct ospf_header *ospfh,
1625 struct stream *s, struct ospf_interface *oi, u_int16_t size)
1627 struct ospf_neighbor *nbr;
1628 struct list *lsas;
1629 struct listnode *node, *nnode;
1630 struct ospf_lsa *lsa = NULL;
1631 /* unsigned long ls_req_found = 0; */
1633 /* Dis-assemble the stream, update each entry, re-encapsulate for flooding */
1635 /* Increment statistics. */
1636 oi->ls_upd_in++;
1638 /* Check neighbor. */
1639 nbr = ospf_nbr_lookup (oi, iph, ospfh);
1640 if (nbr == NULL)
1642 zlog_warn ("Link State Update: Unknown Neighbor %s on int: %s",
1643 inet_ntoa (ospfh->router_id), IF_NAME (oi));
1644 return;
1647 /* Check neighbor state. */
1648 if (nbr->state < NSM_Exchange)
1650 zlog_warn ("Link State Update: "
1651 "Neighbor[%s] state %s is less than Exchange",
1652 inet_ntoa (ospfh->router_id),
1653 LOOKUP(ospf_nsm_state_msg, nbr->state));
1654 return;
1657 /* Get list of LSAs from Link State Update packet. - Also perorms Stages
1658 * 1 (validate LSA checksum) and 2 (check for LSA consistent type)
1659 * of section 13.
1661 lsas = ospf_ls_upd_list_lsa (nbr, s, oi, size);
1663 #ifdef HAVE_OPAQUE_LSA
1665 * If self-originated Opaque-LSAs that have flooded before restart
1666 * are contained in the received LSUpd message, corresponding LSReq
1667 * messages to be sent may have to be modified.
1668 * To eliminate possible race conditions such that flushing and normal
1669 * updating for the same LSA would take place alternately, this trick
1670 * must be done before entering to the loop below.
1672 /* XXX: Why is this Opaque specific? Either our core code is deficient
1673 * and this should be fixed generally, or Opaque is inventing strawman
1674 * problems */
1675 ospf_opaque_adjust_lsreq (nbr, lsas);
1676 #endif /* HAVE_OPAQUE_LSA */
1678 #define DISCARD_LSA(L,N) {\
1679 if (IS_DEBUG_OSPF_EVENT) \
1680 zlog_debug ("ospf_lsa_discard() in ospf_ls_upd() point %d: lsa %p Type-%d", N, lsa, (int) lsa->data->type); \
1681 ospf_lsa_discard (L); \
1682 continue; }
1684 /* Process each LSA received in the one packet. */
1685 for (ALL_LIST_ELEMENTS (lsas, node, nnode, lsa))
1687 struct ospf_lsa *ls_ret, *current;
1688 int ret = 1;
1690 if (IS_DEBUG_OSPF_NSSA)
1692 char buf1[INET_ADDRSTRLEN];
1693 char buf2[INET_ADDRSTRLEN];
1694 char buf3[INET_ADDRSTRLEN];
1696 zlog_debug("LSA Type-%d from %s, ID: %s, ADV: %s",
1697 lsa->data->type,
1698 inet_ntop (AF_INET, &ospfh->router_id,
1699 buf1, INET_ADDRSTRLEN),
1700 inet_ntop (AF_INET, &lsa->data->id,
1701 buf2, INET_ADDRSTRLEN),
1702 inet_ntop (AF_INET, &lsa->data->adv_router,
1703 buf3, INET_ADDRSTRLEN));
1706 listnode_delete (lsas, lsa); /* We don't need it in list anymore */
1708 /* Validate Checksum - Done above by ospf_ls_upd_list_lsa() */
1710 /* LSA Type - Done above by ospf_ls_upd_list_lsa() */
1712 /* Do not take in AS External LSAs if we are a stub or NSSA. */
1714 /* Do not take in AS NSSA if this neighbor and we are not NSSA */
1716 /* Do take in Type-7's if we are an NSSA */
1718 /* If we are also an ABR, later translate them to a Type-5 packet */
1720 /* Later, an NSSA Re-fresh can Re-fresh Type-7's and an ABR will
1721 translate them to a separate Type-5 packet. */
1723 if (lsa->data->type == OSPF_AS_EXTERNAL_LSA)
1724 /* Reject from STUB or NSSA */
1725 if (nbr->oi->area->external_routing != OSPF_AREA_DEFAULT)
1727 if (IS_DEBUG_OSPF_NSSA)
1728 zlog_debug("Incoming External LSA Discarded: We are NSSA/STUB Area");
1729 DISCARD_LSA (lsa, 1);
1732 if (lsa->data->type == OSPF_AS_NSSA_LSA)
1733 if (nbr->oi->area->external_routing != OSPF_AREA_NSSA)
1735 if (IS_DEBUG_OSPF_NSSA)
1736 zlog_debug("Incoming NSSA LSA Discarded: Not NSSA Area");
1737 DISCARD_LSA (lsa,2);
1740 /* Find the LSA in the current database. */
1742 current = ospf_lsa_lookup_by_header (oi->area, lsa->data);
1744 /* If the LSA's LS age is equal to MaxAge, and there is currently
1745 no instance of the LSA in the router's link state database,
1746 and none of router's neighbors are in states Exchange or Loading,
1747 then take the following actions. */
1749 if (IS_LSA_MAXAGE (lsa) && !current &&
1750 (ospf_nbr_count (oi, NSM_Exchange) +
1751 ospf_nbr_count (oi, NSM_Loading)) == 0)
1753 /* Response Link State Acknowledgment. */
1754 ospf_ls_ack_send (nbr, lsa);
1756 /* Discard LSA. */
1757 zlog_info ("Link State Update[%s]: LS age is equal to MaxAge.",
1758 dump_lsa_key(lsa));
1759 DISCARD_LSA (lsa, 3);
1762 #ifdef HAVE_OPAQUE_LSA
1763 if (IS_OPAQUE_LSA (lsa->data->type)
1764 && IPV4_ADDR_SAME (&lsa->data->adv_router, &oi->ospf->router_id))
1767 * Even if initial flushing seems to be completed, there might
1768 * be a case that self-originated LSA with MaxAge still remain
1769 * in the routing domain.
1770 * Just send an LSAck message to cease retransmission.
1772 if (IS_LSA_MAXAGE (lsa))
1774 zlog_warn ("LSA[%s]: Boomerang effect?", dump_lsa_key (lsa));
1775 ospf_ls_ack_send (nbr, lsa);
1776 ospf_lsa_discard (lsa);
1778 if (current != NULL && ! IS_LSA_MAXAGE (current))
1779 ospf_opaque_lsa_refresh_schedule (current);
1780 continue;
1784 * If an instance of self-originated Opaque-LSA is not found
1785 * in the LSDB, there are some possible cases here.
1787 * 1) This node lost opaque-capability after restart.
1788 * 2) Else, a part of opaque-type is no more supported.
1789 * 3) Else, a part of opaque-id is no more supported.
1791 * Anyway, it is still this node's responsibility to flush it.
1792 * Otherwise, the LSA instance remains in the routing domain
1793 * until its age reaches to MaxAge.
1795 /* XXX: We should deal with this for *ALL* LSAs, not just opaque */
1796 if (current == NULL)
1798 if (IS_DEBUG_OSPF_EVENT)
1799 zlog_debug ("LSA[%s]: Previously originated Opaque-LSA,"
1800 "not found in the LSDB.", dump_lsa_key (lsa));
1802 SET_FLAG (lsa->flags, OSPF_LSA_SELF);
1804 ospf_opaque_self_originated_lsa_received (nbr, lsa);
1805 ospf_ls_ack_send (nbr, lsa);
1807 continue;
1810 #endif /* HAVE_OPAQUE_LSA */
1812 /* It might be happen that received LSA is self-originated network LSA, but
1813 * router ID is cahnged. So, we should check if LSA is a network-LSA whose
1814 * Link State ID is one of the router's own IP interface addresses but whose
1815 * Advertising Router is not equal to the router's own Router ID
1816 * According to RFC 2328 12.4.2 and 13.4 this LSA should be flushed.
1819 if(lsa->data->type == OSPF_NETWORK_LSA)
1821 struct listnode *oinode, *oinnode;
1822 struct ospf_interface *out_if;
1823 int Flag = 0;
1825 for (ALL_LIST_ELEMENTS (oi->ospf->oiflist, oinode, oinnode, out_if))
1827 if(out_if == NULL)
1828 break;
1830 if((IPV4_ADDR_SAME(&out_if->address->u.prefix4, &lsa->data->id)) &&
1831 (!(IPV4_ADDR_SAME(&oi->ospf->router_id, &lsa->data->adv_router))))
1833 if(out_if->network_lsa_self)
1835 ospf_lsa_flush_area(lsa,out_if->area);
1836 if(IS_DEBUG_OSPF_EVENT)
1837 zlog_debug ("ospf_lsa_discard() in ospf_ls_upd() point 9: lsa %p Type-%d",
1838 lsa, (int) lsa->data->type);
1839 ospf_lsa_discard (lsa);
1840 Flag = 1;
1842 break;
1845 if(Flag)
1846 continue;
1849 /* (5) Find the instance of this LSA that is currently contained
1850 in the router's link state database. If there is no
1851 database copy, or the received LSA is more recent than
1852 the database copy the following steps must be performed. */
1854 if (current == NULL ||
1855 (ret = ospf_lsa_more_recent (current, lsa)) < 0)
1857 /* Actual flooding procedure. */
1858 if (ospf_flood (oi->ospf, nbr, current, lsa) < 0) /* Trap NSSA later. */
1859 DISCARD_LSA (lsa, 4);
1860 continue;
1863 /* (6) Else, If there is an instance of the LSA on the sending
1864 neighbor's Link state request list, an error has occurred in
1865 the Database Exchange process. In this case, restart the
1866 Database Exchange process by generating the neighbor event
1867 BadLSReq for the sending neighbor and stop processing the
1868 Link State Update packet. */
1870 if (ospf_ls_request_lookup (nbr, lsa))
1872 OSPF_NSM_EVENT_SCHEDULE (nbr, NSM_BadLSReq);
1873 zlog_warn("LSA[%s] instance exists on Link state request list",
1874 dump_lsa_key(lsa));
1876 /* Clean list of LSAs. */
1877 ospf_upd_list_clean (lsas);
1878 /* this lsa is not on lsas list already. */
1879 ospf_lsa_discard (lsa);
1880 return;
1883 /* If the received LSA is the same instance as the database copy
1884 (i.e., neither one is more recent) the following two steps
1885 should be performed: */
1887 if (ret == 0)
1889 /* If the LSA is listed in the Link state retransmission list
1890 for the receiving adjacency, the router itself is expecting
1891 an acknowledgment for this LSA. The router should treat the
1892 received LSA as an acknowledgment by removing the LSA from
1893 the Link state retransmission list. This is termed an
1894 "implied acknowledgment". */
1896 ls_ret = ospf_ls_retransmit_lookup (nbr, lsa);
1898 if (ls_ret != NULL)
1900 ospf_ls_retransmit_delete (nbr, ls_ret);
1902 /* Delayed acknowledgment sent if advertisement received
1903 from Designated Router, otherwise do nothing. */
1904 if (oi->state == ISM_Backup)
1905 if (NBR_IS_DR (nbr))
1906 listnode_add (oi->ls_ack, ospf_lsa_lock (lsa));
1908 DISCARD_LSA (lsa, 5);
1910 else
1911 /* Acknowledge the receipt of the LSA by sending a
1912 Link State Acknowledgment packet back out the receiving
1913 interface. */
1915 ospf_ls_ack_send (nbr, lsa);
1916 DISCARD_LSA (lsa, 6);
1920 /* The database copy is more recent. If the database copy
1921 has LS age equal to MaxAge and LS sequence number equal to
1922 MaxSequenceNumber, simply discard the received LSA without
1923 acknowledging it. (In this case, the LSA's LS sequence number is
1924 wrapping, and the MaxSequenceNumber LSA must be completely
1925 flushed before any new LSA instance can be introduced). */
1927 else if (ret > 0) /* Database copy is more recent */
1929 if (IS_LSA_MAXAGE (current) &&
1930 current->data->ls_seqnum == htonl (OSPF_MAX_SEQUENCE_NUMBER))
1932 DISCARD_LSA (lsa, 7);
1934 /* Otherwise, as long as the database copy has not been sent in a
1935 Link State Update within the last MinLSArrival seconds, send the
1936 database copy back to the sending neighbor, encapsulated within
1937 a Link State Update Packet. The Link State Update Packet should
1938 be sent directly to the neighbor. In so doing, do not put the
1939 database copy of the LSA on the neighbor's link state
1940 retransmission list, and do not acknowledge the received (less
1941 recent) LSA instance. */
1942 else
1944 struct timeval now;
1946 quagga_gettime (QUAGGA_CLK_MONOTONIC, &now);
1948 if (tv_cmp (tv_sub (now, current->tv_orig),
1949 int2tv (OSPF_MIN_LS_ARRIVAL)) > 0)
1950 /* Trap NSSA type later.*/
1951 ospf_ls_upd_send_lsa (nbr, current, OSPF_SEND_PACKET_DIRECT);
1952 DISCARD_LSA (lsa, 8);
1956 #undef DISCARD_LSA
1958 assert (listcount (lsas) == 0);
1959 list_delete (lsas);
1962 /* OSPF Link State Acknowledgment message read -- RFC2328 Section 13.7. */
1963 static void
1964 ospf_ls_ack (struct ip *iph, struct ospf_header *ospfh,
1965 struct stream *s, struct ospf_interface *oi, u_int16_t size)
1967 struct ospf_neighbor *nbr;
1969 /* increment statistics. */
1970 oi->ls_ack_in++;
1972 nbr = ospf_nbr_lookup (oi, iph, ospfh);
1973 if (nbr == NULL)
1975 zlog_warn ("Link State Acknowledgment: Unknown Neighbor %s.",
1976 inet_ntoa (ospfh->router_id));
1977 return;
1980 if (nbr->state < NSM_Exchange)
1982 zlog_warn ("Link State Acknowledgment: "
1983 "Neighbor[%s] state %s is less than Exchange",
1984 inet_ntoa (ospfh->router_id),
1985 LOOKUP(ospf_nsm_state_msg, nbr->state));
1986 return;
1989 while (size >= OSPF_LSA_HEADER_SIZE)
1991 struct ospf_lsa *lsa, *lsr;
1993 lsa = ospf_lsa_new ();
1994 lsa->data = (struct lsa_header *) STREAM_PNT (s);
1996 /* lsah = (struct lsa_header *) STREAM_PNT (s); */
1997 size -= OSPF_LSA_HEADER_SIZE;
1998 stream_forward_getp (s, OSPF_LSA_HEADER_SIZE);
2000 if (lsa->data->type < OSPF_MIN_LSA || lsa->data->type >= OSPF_MAX_LSA)
2002 lsa->data = NULL;
2003 ospf_lsa_discard (lsa);
2004 continue;
2007 lsr = ospf_ls_retransmit_lookup (nbr, lsa);
2009 if (lsr != NULL && lsr->data->ls_seqnum == lsa->data->ls_seqnum)
2011 #ifdef HAVE_OPAQUE_LSA
2012 if (IS_OPAQUE_LSA (lsr->data->type))
2013 ospf_opaque_ls_ack_received (nbr, lsr);
2014 #endif /* HAVE_OPAQUE_LSA */
2016 ospf_ls_retransmit_delete (nbr, lsr);
2019 lsa->data = NULL;
2020 ospf_lsa_discard (lsa);
2023 return;
2026 static struct stream *
2027 ospf_recv_packet (int fd, struct interface **ifp, struct stream *ibuf)
2029 int ret;
2030 struct ip *iph;
2031 u_int16_t ip_len;
2032 unsigned int ifindex = 0;
2033 struct iovec iov;
2034 /* Header and data both require alignment. */
2035 char buff [CMSG_SPACE(SOPT_SIZE_CMSG_IFINDEX_IPV4())];
2036 struct msghdr msgh;
2038 memset (&msgh, 0, sizeof (struct msghdr));
2039 msgh.msg_iov = &iov;
2040 msgh.msg_iovlen = 1;
2041 msgh.msg_control = (caddr_t) buff;
2042 msgh.msg_controllen = sizeof (buff);
2044 ret = stream_recvmsg (ibuf, fd, &msgh, 0, OSPF_MAX_PACKET_SIZE+1);
2045 if (ret < 0)
2047 zlog_warn("stream_recvmsg failed: %s", safe_strerror(errno));
2048 return NULL;
2050 if ((unsigned int)ret < sizeof(iph)) /* ret must be > 0 now */
2052 zlog_warn("ospf_recv_packet: discarding runt packet of length %d "
2053 "(ip header size is %u)",
2054 ret, (u_int)sizeof(iph));
2055 return NULL;
2058 /* Note that there should not be alignment problems with this assignment
2059 because this is at the beginning of the stream data buffer. */
2060 iph = (struct ip *) STREAM_DATA(ibuf);
2061 sockopt_iphdrincl_swab_systoh (iph);
2063 ip_len = iph->ip_len;
2065 #if !defined(GNU_LINUX) && (OpenBSD < 200311)
2067 * Kernel network code touches incoming IP header parameters,
2068 * before protocol specific processing.
2070 * 1) Convert byteorder to host representation.
2071 * --> ip_len, ip_id, ip_off
2073 * 2) Adjust ip_len to strip IP header size!
2074 * --> If user process receives entire IP packet via RAW
2075 * socket, it must consider adding IP header size to
2076 * the "ip_len" field of "ip" structure.
2078 * For more details, see <netinet/ip_input.c>.
2080 ip_len = ip_len + (iph->ip_hl << 2);
2081 #endif
2083 ifindex = getsockopt_ifindex (AF_INET, &msgh);
2085 *ifp = if_lookup_by_index (ifindex);
2087 if (ret != ip_len)
2089 zlog_warn ("ospf_recv_packet read length mismatch: ip_len is %d, "
2090 "but recvmsg returned %d", ip_len, ret);
2091 return NULL;
2094 return ibuf;
2097 static struct ospf_interface *
2098 ospf_associate_packet_vl (struct ospf *ospf, struct interface *ifp,
2099 struct ip *iph, struct ospf_header *ospfh)
2101 struct ospf_interface *rcv_oi;
2102 struct ospf_vl_data *vl_data;
2103 struct ospf_area *vl_area;
2104 struct listnode *node;
2106 if (IN_MULTICAST (ntohl (iph->ip_dst.s_addr)) ||
2107 !OSPF_IS_AREA_BACKBONE (ospfh))
2108 return NULL;
2110 /* look for local OSPF interface matching the destination
2111 * to determine Area ID. We presume therefore the destination address
2112 * is unique, or at least (for "unnumbered" links), not used in other
2113 * areas
2115 if ((rcv_oi = ospf_if_lookup_by_local_addr (ospf, NULL,
2116 iph->ip_dst)) == NULL)
2117 return NULL;
2119 for (ALL_LIST_ELEMENTS_RO (ospf->vlinks, node, vl_data))
2121 vl_area = ospf_area_lookup_by_area_id (ospf, vl_data->vl_area_id);
2122 if (!vl_area)
2123 continue;
2125 if (OSPF_AREA_SAME (&vl_area, &rcv_oi->area) &&
2126 IPV4_ADDR_SAME (&vl_data->vl_peer, &ospfh->router_id))
2128 if (IS_DEBUG_OSPF_EVENT)
2129 zlog_debug ("associating packet with %s",
2130 IF_NAME (vl_data->vl_oi));
2131 if (! CHECK_FLAG (vl_data->vl_oi->ifp->flags, IFF_UP))
2133 if (IS_DEBUG_OSPF_EVENT)
2134 zlog_debug ("This VL is not up yet, sorry");
2135 return NULL;
2138 return vl_data->vl_oi;
2142 if (IS_DEBUG_OSPF_EVENT)
2143 zlog_debug ("couldn't find any VL to associate the packet with");
2145 return NULL;
2148 static inline int
2149 ospf_check_area_id (struct ospf_interface *oi, struct ospf_header *ospfh)
2151 /* Check match the Area ID of the receiving interface. */
2152 if (OSPF_AREA_SAME (&oi->area, &ospfh))
2153 return 1;
2155 return 0;
2158 /* Unbound socket will accept any Raw IP packets if proto is matched.
2159 To prevent it, compare src IP address and i/f address with masking
2160 i/f network mask. */
2161 static int
2162 ospf_check_network_mask (struct ospf_interface *oi, struct in_addr ip_src)
2164 struct in_addr mask, me, him;
2166 if (oi->type == OSPF_IFTYPE_POINTOPOINT ||
2167 oi->type == OSPF_IFTYPE_VIRTUALLINK)
2168 return 1;
2170 masklen2ip (oi->address->prefixlen, &mask);
2172 me.s_addr = oi->address->u.prefix4.s_addr & mask.s_addr;
2173 him.s_addr = ip_src.s_addr & mask.s_addr;
2175 if (IPV4_ADDR_SAME (&me, &him))
2176 return 1;
2178 return 0;
2181 static int
2182 ospf_check_auth (struct ospf_interface *oi, struct stream *ibuf,
2183 struct ospf_header *ospfh)
2185 int ret = 0;
2186 struct crypt_key *ck;
2188 switch (ntohs (ospfh->auth_type))
2190 case OSPF_AUTH_NULL:
2191 ret = 1;
2192 break;
2193 case OSPF_AUTH_SIMPLE:
2194 if (!memcmp (OSPF_IF_PARAM (oi, auth_simple), ospfh->u.auth_data, OSPF_AUTH_SIMPLE_SIZE))
2195 ret = 1;
2196 else
2197 ret = 0;
2198 break;
2199 case OSPF_AUTH_CRYPTOGRAPHIC:
2200 if ((ck = listgetdata (listtail(OSPF_IF_PARAM (oi,auth_crypt)))) == NULL)
2202 ret = 0;
2203 break;
2206 /* This is very basic, the digest processing is elsewhere */
2207 if (ospfh->u.crypt.auth_data_len == OSPF_AUTH_MD5_SIZE &&
2208 ospfh->u.crypt.key_id == ck->key_id &&
2209 ntohs (ospfh->length) + OSPF_AUTH_SIMPLE_SIZE <= stream_get_size (ibuf))
2210 ret = 1;
2211 else
2212 ret = 0;
2213 break;
2214 default:
2215 ret = 0;
2216 break;
2219 return ret;
2222 static int
2223 ospf_check_sum (struct ospf_header *ospfh)
2225 u_int32_t ret;
2226 u_int16_t sum;
2228 /* clear auth_data for checksum. */
2229 memset (ospfh->u.auth_data, 0, OSPF_AUTH_SIMPLE_SIZE);
2231 /* keep checksum and clear. */
2232 sum = ospfh->checksum;
2233 memset (&ospfh->checksum, 0, sizeof (u_int16_t));
2235 /* calculate checksum. */
2236 ret = in_cksum (ospfh, ntohs (ospfh->length));
2238 if (ret != sum)
2240 zlog_info ("ospf_check_sum(): checksum mismatch, my %X, his %X",
2241 ret, sum);
2242 return 0;
2245 return 1;
2248 /* OSPF Header verification. */
2249 static int
2250 ospf_verify_header (struct stream *ibuf, struct ospf_interface *oi,
2251 struct ip *iph, struct ospf_header *ospfh)
2253 /* check version. */
2254 if (ospfh->version != OSPF_VERSION)
2256 zlog_warn ("interface %s: ospf_read version number mismatch.",
2257 IF_NAME (oi));
2258 return -1;
2261 /* Check Area ID. */
2262 if (!ospf_check_area_id (oi, ospfh))
2264 zlog_warn ("interface %s: ospf_read invalid Area ID %s.",
2265 IF_NAME (oi), inet_ntoa (ospfh->area_id));
2266 return -1;
2269 /* Check network mask, Silently discarded. */
2270 if (! ospf_check_network_mask (oi, iph->ip_src))
2272 zlog_warn ("interface %s: ospf_read network address is not same [%s]",
2273 IF_NAME (oi), inet_ntoa (iph->ip_src));
2274 return -1;
2277 /* Check authentication. */
2278 if (ospf_auth_type (oi) != ntohs (ospfh->auth_type))
2280 zlog_warn ("interface %s: auth-type mismatch, local %d, rcvd %d",
2281 IF_NAME (oi), ospf_auth_type (oi), ntohs (ospfh->auth_type));
2282 return -1;
2285 if (! ospf_check_auth (oi, ibuf, ospfh))
2287 zlog_warn ("interface %s: ospf_read authentication failed.",
2288 IF_NAME (oi));
2289 return -1;
2292 /* if check sum is invalid, packet is discarded. */
2293 if (ntohs (ospfh->auth_type) != OSPF_AUTH_CRYPTOGRAPHIC)
2295 if (! ospf_check_sum (ospfh))
2297 zlog_warn ("interface %s: ospf_read packet checksum error %s",
2298 IF_NAME (oi), inet_ntoa (ospfh->router_id));
2299 return -1;
2302 else
2304 if (ospfh->checksum != 0)
2305 return -1;
2306 if (ospf_check_md5_digest (oi, ibuf, ntohs (ospfh->length)) == 0)
2308 zlog_warn ("interface %s: ospf_read md5 authentication failed.",
2309 IF_NAME (oi));
2310 return -1;
2314 return 0;
2317 /* Starting point of packet process function. */
2319 ospf_read (struct thread *thread)
2321 int ret;
2322 struct stream *ibuf;
2323 struct ospf *ospf;
2324 struct ospf_interface *oi;
2325 struct ip *iph;
2326 struct ospf_header *ospfh;
2327 u_int16_t length;
2328 struct interface *ifp;
2330 /* first of all get interface pointer. */
2331 ospf = THREAD_ARG (thread);
2333 /* prepare for next packet. */
2334 ospf->t_read = thread_add_read (master, ospf_read, ospf, ospf->fd);
2336 /* read OSPF packet. */
2337 stream_reset(ospf->ibuf);
2338 if (!(ibuf = ospf_recv_packet (ospf->fd, &ifp, ospf->ibuf)))
2339 return -1;
2341 /* Note that there should not be alignment problems with this assignment
2342 because this is at the beginning of the stream data buffer. */
2343 iph = (struct ip *) STREAM_DATA (ibuf);
2344 /* Note that sockopt_iphdrincl_swab_systoh was called in ospf_recv_packet. */
2346 if (ifp == NULL)
2347 /* Handle cases where the platform does not support retrieving the ifindex,
2348 and also platforms (such as Solaris 8) that claim to support ifindex
2349 retrieval but do not. */
2350 ifp = if_lookup_address (iph->ip_src);
2352 if (ifp == NULL)
2353 return 0;
2355 /* IP Header dump. */
2356 if (IS_DEBUG_OSPF_PACKET(0, RECV))
2357 ospf_ip_header_dump (iph);
2359 /* Self-originated packet should be discarded silently. */
2360 if (ospf_if_lookup_by_local_addr (ospf, NULL, iph->ip_src))
2362 if (IS_DEBUG_OSPF_PACKET (0, RECV))
2364 zlog_debug ("ospf_read[%s]: Dropping self-originated packet",
2365 inet_ntoa (iph->ip_src));
2367 return 0;
2370 /* Adjust size to message length. */
2371 stream_forward_getp (ibuf, iph->ip_hl * 4);
2373 /* Get ospf packet header. */
2374 ospfh = (struct ospf_header *) STREAM_PNT (ibuf);
2376 /* associate packet with ospf interface */
2377 oi = ospf_if_lookup_recv_if (ospf, iph->ip_src, ifp);
2379 /* If incoming interface is passive one, ignore it. */
2380 if (oi && OSPF_IF_PASSIVE_STATUS (oi) == OSPF_IF_PASSIVE)
2382 char buf[3][INET_ADDRSTRLEN];
2384 if (IS_DEBUG_OSPF_EVENT)
2385 zlog_debug ("ignoring packet from router %s sent to %s, "
2386 "received on a passive interface, %s",
2387 inet_ntop(AF_INET, &ospfh->router_id, buf[0], sizeof(buf[0])),
2388 inet_ntop(AF_INET, &iph->ip_dst, buf[1], sizeof(buf[1])),
2389 inet_ntop(AF_INET, &oi->address->u.prefix4,
2390 buf[2], sizeof(buf[2])));
2392 if (iph->ip_dst.s_addr == htonl(OSPF_ALLSPFROUTERS))
2394 /* Try to fix multicast membership.
2395 * Some OS:es may have problems in this area,
2396 * make sure it is removed.
2398 OI_MEMBER_JOINED(oi, MEMBER_ALLROUTERS);
2399 ospf_if_set_multicast(oi);
2401 return 0;
2405 /* if no local ospf_interface,
2406 * or header area is backbone but ospf_interface is not
2407 * check for VLINK interface
2409 if ( (oi == NULL) ||
2410 (OSPF_IS_AREA_ID_BACKBONE(ospfh->area_id)
2411 && !OSPF_IS_AREA_ID_BACKBONE(oi->area->area_id))
2414 if ((oi = ospf_associate_packet_vl (ospf, ifp, iph, ospfh)) == NULL)
2416 if (IS_DEBUG_OSPF_EVENT)
2417 zlog_debug ("Packet from [%s] received on link %s"
2418 " but no ospf_interface",
2419 inet_ntoa (iph->ip_src), ifp->name);
2420 return 0;
2424 /* else it must be a local ospf interface, check it was received on
2425 * correct link
2427 else if (oi->ifp != ifp)
2429 if (IS_DEBUG_OSPF_EVENT)
2430 zlog_warn ("Packet from [%s] received on wrong link %s",
2431 inet_ntoa (iph->ip_src), ifp->name);
2432 return 0;
2434 else if (oi->state == ISM_Down)
2436 char buf[2][INET_ADDRSTRLEN];
2437 zlog_warn ("Ignoring packet from %s to %s received on interface that is "
2438 "down [%s]; interface flags are %s",
2439 inet_ntop(AF_INET, &iph->ip_src, buf[0], sizeof(buf[0])),
2440 inet_ntop(AF_INET, &iph->ip_dst, buf[1], sizeof(buf[1])),
2441 ifp->name, if_flag_dump(ifp->flags));
2442 /* Fix multicast memberships? */
2443 if (iph->ip_dst.s_addr == htonl(OSPF_ALLSPFROUTERS))
2444 OI_MEMBER_JOINED(oi, MEMBER_ALLROUTERS);
2445 else if (iph->ip_dst.s_addr == htonl(OSPF_ALLDROUTERS))
2446 OI_MEMBER_JOINED(oi, MEMBER_DROUTERS);
2447 if (oi->multicast_memberships)
2448 ospf_if_set_multicast(oi);
2449 return 0;
2453 * If the received packet is destined for AllDRouters, the packet
2454 * should be accepted only if the received ospf interface state is
2455 * either DR or Backup -- endo.
2457 if (iph->ip_dst.s_addr == htonl (OSPF_ALLDROUTERS)
2458 && (oi->state != ISM_DR && oi->state != ISM_Backup))
2460 zlog_warn ("Dropping packet for AllDRouters from [%s] via [%s] (ISM: %s)",
2461 inet_ntoa (iph->ip_src), IF_NAME (oi),
2462 LOOKUP (ospf_ism_state_msg, oi->state));
2463 /* Try to fix multicast membership. */
2464 SET_FLAG(oi->multicast_memberships, MEMBER_DROUTERS);
2465 ospf_if_set_multicast(oi);
2466 return 0;
2469 /* Show debug receiving packet. */
2470 if (IS_DEBUG_OSPF_PACKET (ospfh->type - 1, RECV))
2472 if (IS_DEBUG_OSPF_PACKET (ospfh->type - 1, DETAIL))
2474 zlog_debug ("-----------------------------------------------------");
2475 ospf_packet_dump (ibuf);
2478 zlog_debug ("%s received from [%s] via [%s]",
2479 ospf_packet_type_str[ospfh->type],
2480 inet_ntoa (ospfh->router_id), IF_NAME (oi));
2481 zlog_debug (" src [%s],", inet_ntoa (iph->ip_src));
2482 zlog_debug (" dst [%s]", inet_ntoa (iph->ip_dst));
2484 if (IS_DEBUG_OSPF_PACKET (ospfh->type - 1, DETAIL))
2485 zlog_debug ("-----------------------------------------------------");
2488 /* Some header verification. */
2489 ret = ospf_verify_header (ibuf, oi, iph, ospfh);
2490 if (ret < 0)
2492 if (IS_DEBUG_OSPF_PACKET (ospfh->type - 1, RECV))
2494 zlog_debug ("ospf_read[%s/%s]: Header check failed, "
2495 "dropping.",
2496 ospf_packet_type_str[ospfh->type],
2497 inet_ntoa (iph->ip_src));
2499 return ret;
2502 stream_forward_getp (ibuf, OSPF_HEADER_SIZE);
2504 /* Adjust size to message length. */
2505 length = ntohs (ospfh->length) - OSPF_HEADER_SIZE;
2507 /* Read rest of the packet and call each sort of packet routine. */
2508 switch (ospfh->type)
2510 case OSPF_MSG_HELLO:
2511 ospf_hello (iph, ospfh, ibuf, oi, length);
2512 break;
2513 case OSPF_MSG_DB_DESC:
2514 ospf_db_desc (iph, ospfh, ibuf, oi, length);
2515 break;
2516 case OSPF_MSG_LS_REQ:
2517 ospf_ls_req (iph, ospfh, ibuf, oi, length);
2518 break;
2519 case OSPF_MSG_LS_UPD:
2520 ospf_ls_upd (iph, ospfh, ibuf, oi, length);
2521 break;
2522 case OSPF_MSG_LS_ACK:
2523 ospf_ls_ack (iph, ospfh, ibuf, oi, length);
2524 break;
2525 default:
2526 zlog (NULL, LOG_WARNING,
2527 "interface %s: OSPF packet header type %d is illegal",
2528 IF_NAME (oi), ospfh->type);
2529 break;
2532 return 0;
2535 /* Make OSPF header. */
2536 static void
2537 ospf_make_header (int type, struct ospf_interface *oi, struct stream *s)
2539 struct ospf_header *ospfh;
2541 ospfh = (struct ospf_header *) STREAM_DATA (s);
2543 ospfh->version = (u_char) OSPF_VERSION;
2544 ospfh->type = (u_char) type;
2546 ospfh->router_id = oi->ospf->router_id;
2548 ospfh->checksum = 0;
2549 ospfh->area_id = oi->area->area_id;
2550 ospfh->auth_type = htons (ospf_auth_type (oi));
2552 memset (ospfh->u.auth_data, 0, OSPF_AUTH_SIMPLE_SIZE);
2554 stream_forward_endp (s, OSPF_HEADER_SIZE);
2557 /* Make Authentication Data. */
2558 static int
2559 ospf_make_auth (struct ospf_interface *oi, struct ospf_header *ospfh)
2561 struct crypt_key *ck;
2563 switch (ospf_auth_type (oi))
2565 case OSPF_AUTH_NULL:
2566 /* memset (ospfh->u.auth_data, 0, sizeof (ospfh->u.auth_data)); */
2567 break;
2568 case OSPF_AUTH_SIMPLE:
2569 memcpy (ospfh->u.auth_data, OSPF_IF_PARAM (oi, auth_simple),
2570 OSPF_AUTH_SIMPLE_SIZE);
2571 break;
2572 case OSPF_AUTH_CRYPTOGRAPHIC:
2573 /* If key is not set, then set 0. */
2574 if (list_isempty (OSPF_IF_PARAM (oi, auth_crypt)))
2576 ospfh->u.crypt.zero = 0;
2577 ospfh->u.crypt.key_id = 0;
2578 ospfh->u.crypt.auth_data_len = OSPF_AUTH_MD5_SIZE;
2580 else
2582 ck = listgetdata (listtail(OSPF_IF_PARAM (oi, auth_crypt)));
2583 ospfh->u.crypt.zero = 0;
2584 ospfh->u.crypt.key_id = ck->key_id;
2585 ospfh->u.crypt.auth_data_len = OSPF_AUTH_MD5_SIZE;
2587 /* note: the seq is done in ospf_make_md5_digest() */
2588 break;
2589 default:
2590 /* memset (ospfh->u.auth_data, 0, sizeof (ospfh->u.auth_data)); */
2591 break;
2594 return 0;
2597 /* Fill rest of OSPF header. */
2598 static void
2599 ospf_fill_header (struct ospf_interface *oi,
2600 struct stream *s, u_int16_t length)
2602 struct ospf_header *ospfh;
2604 ospfh = (struct ospf_header *) STREAM_DATA (s);
2606 /* Fill length. */
2607 ospfh->length = htons (length);
2609 /* Calculate checksum. */
2610 if (ntohs (ospfh->auth_type) != OSPF_AUTH_CRYPTOGRAPHIC)
2611 ospfh->checksum = in_cksum (ospfh, length);
2612 else
2613 ospfh->checksum = 0;
2615 /* Add Authentication Data. */
2616 ospf_make_auth (oi, ospfh);
2619 static int
2620 ospf_make_hello (struct ospf_interface *oi, struct stream *s)
2622 struct ospf_neighbor *nbr;
2623 struct route_node *rn;
2624 u_int16_t length = OSPF_HELLO_MIN_SIZE;
2625 struct in_addr mask;
2626 unsigned long p;
2627 int flag = 0;
2629 /* Set netmask of interface. */
2630 if (oi->type != OSPF_IFTYPE_POINTOPOINT &&
2631 oi->type != OSPF_IFTYPE_VIRTUALLINK)
2632 masklen2ip (oi->address->prefixlen, &mask);
2633 else
2634 memset ((char *) &mask, 0, sizeof (struct in_addr));
2635 stream_put_ipv4 (s, mask.s_addr);
2637 /* Set Hello Interval. */
2638 if (OSPF_IF_PARAM (oi, fast_hello) == 0)
2639 stream_putw (s, OSPF_IF_PARAM (oi, v_hello));
2640 else
2641 stream_putw (s, 0); /* hello-interval of 0 for fast-hellos */
2643 if (IS_DEBUG_OSPF_EVENT)
2644 zlog_debug ("make_hello: options: %x, int: %s",
2645 OPTIONS(oi), IF_NAME (oi));
2647 /* Set Options. */
2648 stream_putc (s, OPTIONS (oi));
2650 /* Set Router Priority. */
2651 stream_putc (s, PRIORITY (oi));
2653 /* Set Router Dead Interval. */
2654 stream_putl (s, OSPF_IF_PARAM (oi, v_wait));
2656 /* Set Designated Router. */
2657 stream_put_ipv4 (s, DR (oi).s_addr);
2659 p = stream_get_endp (s);
2661 /* Set Backup Designated Router. */
2662 stream_put_ipv4 (s, BDR (oi).s_addr);
2664 /* Add neighbor seen. */
2665 for (rn = route_top (oi->nbrs); rn; rn = route_next (rn))
2666 if ((nbr = rn->info))
2667 if (nbr->router_id.s_addr != 0) /* Ignore 0.0.0.0 node. */
2668 if (nbr->state != NSM_Attempt) /* Ignore Down neighbor. */
2669 if (nbr->state != NSM_Down) /* This is myself for DR election. */
2670 if (!IPV4_ADDR_SAME (&nbr->router_id, &oi->ospf->router_id))
2672 /* Check neighbor is sane? */
2673 if (nbr->d_router.s_addr != 0
2674 && IPV4_ADDR_SAME (&nbr->d_router, &oi->address->u.prefix4)
2675 && IPV4_ADDR_SAME (&nbr->bd_router, &oi->address->u.prefix4))
2676 flag = 1;
2678 stream_put_ipv4 (s, nbr->router_id.s_addr);
2679 length += 4;
2682 /* Let neighbor generate BackupSeen. */
2683 if (flag == 1)
2684 stream_putl_at (s, p, 0); /* ipv4 address, normally */
2686 return length;
2689 static int
2690 ospf_make_db_desc (struct ospf_interface *oi, struct ospf_neighbor *nbr,
2691 struct stream *s)
2693 struct ospf_lsa *lsa;
2694 u_int16_t length = OSPF_DB_DESC_MIN_SIZE;
2695 u_char options;
2696 unsigned long pp;
2697 int i;
2698 struct ospf_lsdb *lsdb;
2700 /* Set Interface MTU. */
2701 if (oi->type == OSPF_IFTYPE_VIRTUALLINK)
2702 stream_putw (s, 0);
2703 else
2704 stream_putw (s, oi->ifp->mtu);
2706 /* Set Options. */
2707 options = OPTIONS (oi);
2708 #ifdef HAVE_OPAQUE_LSA
2709 if (CHECK_FLAG (oi->ospf->config, OSPF_OPAQUE_CAPABLE))
2711 if (IS_SET_DD_I (nbr->dd_flags)
2712 || CHECK_FLAG (nbr->options, OSPF_OPTION_O))
2714 * Set O-bit in the outgoing DD packet for capablity negotiation,
2715 * if one of following case is applicable.
2717 * 1) WaitTimer expiration event triggered the neighbor state to
2718 * change to Exstart, but no (valid) DD packet has received
2719 * from the neighbor yet.
2721 * 2) At least one DD packet with O-bit on has received from the
2722 * neighbor.
2724 SET_FLAG (options, OSPF_OPTION_O);
2726 #endif /* HAVE_OPAQUE_LSA */
2727 stream_putc (s, options);
2729 /* DD flags */
2730 pp = stream_get_endp (s);
2731 stream_putc (s, nbr->dd_flags);
2733 /* Set DD Sequence Number. */
2734 stream_putl (s, nbr->dd_seqnum);
2736 /* shortcut unneeded walk of (empty) summary LSDBs */
2737 if (ospf_db_summary_isempty (nbr))
2738 goto empty;
2740 /* Describe LSA Header from Database Summary List. */
2741 lsdb = &nbr->db_sum;
2743 for (i = OSPF_MIN_LSA; i < OSPF_MAX_LSA; i++)
2745 struct route_table *table = lsdb->type[i].db;
2746 struct route_node *rn;
2748 for (rn = route_top (table); rn; rn = route_next (rn))
2749 if ((lsa = rn->info) != NULL)
2751 #ifdef HAVE_OPAQUE_LSA
2752 if (IS_OPAQUE_LSA (lsa->data->type)
2753 && (! CHECK_FLAG (options, OSPF_OPTION_O)))
2755 /* Suppress advertising opaque-informations. */
2756 /* Remove LSA from DB summary list. */
2757 ospf_lsdb_delete (lsdb, lsa);
2758 continue;
2760 #endif /* HAVE_OPAQUE_LSA */
2762 if (!CHECK_FLAG (lsa->flags, OSPF_LSA_DISCARD))
2764 struct lsa_header *lsah;
2765 u_int16_t ls_age;
2767 /* DD packet overflows interface MTU. */
2768 if (length + OSPF_LSA_HEADER_SIZE > ospf_packet_max (oi))
2769 break;
2771 /* Keep pointer to LS age. */
2772 lsah = (struct lsa_header *) (STREAM_DATA (s) +
2773 stream_get_endp (s));
2775 /* Proceed stream pointer. */
2776 stream_put (s, lsa->data, OSPF_LSA_HEADER_SIZE);
2777 length += OSPF_LSA_HEADER_SIZE;
2779 /* Set LS age. */
2780 ls_age = LS_AGE (lsa);
2781 lsah->ls_age = htons (ls_age);
2785 /* Remove LSA from DB summary list. */
2786 ospf_lsdb_delete (lsdb, lsa);
2790 /* Update 'More' bit */
2791 if (ospf_db_summary_isempty (nbr))
2793 empty:
2794 if (nbr->state >= NSM_Exchange)
2796 UNSET_FLAG (nbr->dd_flags, OSPF_DD_FLAG_M);
2797 /* Rewrite DD flags */
2798 stream_putc_at (s, pp, nbr->dd_flags);
2800 else
2802 assert (IS_SET_DD_M(nbr->dd_flags));
2805 return length;
2808 static int
2809 ospf_make_ls_req_func (struct stream *s, u_int16_t *length,
2810 unsigned long delta, struct ospf_neighbor *nbr,
2811 struct ospf_lsa *lsa)
2813 struct ospf_interface *oi;
2815 oi = nbr->oi;
2817 /* LS Request packet overflows interface MTU. */
2818 if (*length + delta > ospf_packet_max(oi))
2819 return 0;
2821 stream_putl (s, lsa->data->type);
2822 stream_put_ipv4 (s, lsa->data->id.s_addr);
2823 stream_put_ipv4 (s, lsa->data->adv_router.s_addr);
2825 ospf_lsa_unlock (&nbr->ls_req_last);
2826 nbr->ls_req_last = ospf_lsa_lock (lsa);
2828 *length += 12;
2829 return 1;
2832 static int
2833 ospf_make_ls_req (struct ospf_neighbor *nbr, struct stream *s)
2835 struct ospf_lsa *lsa;
2836 u_int16_t length = OSPF_LS_REQ_MIN_SIZE;
2837 unsigned long delta = stream_get_endp(s)+12;
2838 struct route_table *table;
2839 struct route_node *rn;
2840 int i;
2841 struct ospf_lsdb *lsdb;
2843 lsdb = &nbr->ls_req;
2845 for (i = OSPF_MIN_LSA; i < OSPF_MAX_LSA; i++)
2847 table = lsdb->type[i].db;
2848 for (rn = route_top (table); rn; rn = route_next (rn))
2849 if ((lsa = (rn->info)) != NULL)
2850 if (ospf_make_ls_req_func (s, &length, delta, nbr, lsa) == 0)
2852 route_unlock_node (rn);
2853 break;
2856 return length;
2859 static int
2860 ls_age_increment (struct ospf_lsa *lsa, int delay)
2862 int age;
2864 age = IS_LSA_MAXAGE (lsa) ? OSPF_LSA_MAXAGE : LS_AGE (lsa) + delay;
2866 return (age > OSPF_LSA_MAXAGE ? OSPF_LSA_MAXAGE : age);
2869 static int
2870 ospf_make_ls_upd (struct ospf_interface *oi, struct list *update, struct stream *s)
2872 struct ospf_lsa *lsa;
2873 struct listnode *node;
2874 u_int16_t length = 0;
2875 unsigned int size_noauth;
2876 unsigned long delta = stream_get_endp (s);
2877 unsigned long pp;
2878 int count = 0;
2880 if (IS_DEBUG_OSPF_EVENT)
2881 zlog_debug ("ospf_make_ls_upd: Start");
2883 pp = stream_get_endp (s);
2884 stream_forward_endp (s, OSPF_LS_UPD_MIN_SIZE);
2885 length += OSPF_LS_UPD_MIN_SIZE;
2887 /* Calculate amount of packet usable for data. */
2888 size_noauth = stream_get_size(s) - ospf_packet_authspace(oi);
2890 while ((node = listhead (update)) != NULL)
2892 struct lsa_header *lsah;
2893 u_int16_t ls_age;
2895 if (IS_DEBUG_OSPF_EVENT)
2896 zlog_debug ("ospf_make_ls_upd: List Iteration");
2898 lsa = listgetdata (node);
2900 assert (lsa->data);
2902 /* Will it fit? */
2903 if (length + delta + ntohs (lsa->data->length) > size_noauth)
2904 break;
2906 /* Keep pointer to LS age. */
2907 lsah = (struct lsa_header *) (STREAM_DATA (s) + stream_get_endp (s));
2909 /* Put LSA to Link State Request. */
2910 stream_put (s, lsa->data, ntohs (lsa->data->length));
2912 /* Set LS age. */
2913 /* each hop must increment an lsa_age by transmit_delay
2914 of OSPF interface */
2915 ls_age = ls_age_increment (lsa, OSPF_IF_PARAM (oi, transmit_delay));
2916 lsah->ls_age = htons (ls_age);
2918 length += ntohs (lsa->data->length);
2919 count++;
2921 list_delete_node (update, node);
2922 ospf_lsa_unlock (&lsa); /* oi->ls_upd_queue */
2925 /* Now set #LSAs. */
2926 stream_putl_at (s, pp, count);
2928 if (IS_DEBUG_OSPF_EVENT)
2929 zlog_debug ("ospf_make_ls_upd: Stop");
2930 return length;
2933 static int
2934 ospf_make_ls_ack (struct ospf_interface *oi, struct list *ack, struct stream *s)
2936 struct listnode *node, *nnode;
2937 u_int16_t length = OSPF_LS_ACK_MIN_SIZE;
2938 unsigned long delta = stream_get_endp(s) + 24;
2939 struct ospf_lsa *lsa;
2941 for (ALL_LIST_ELEMENTS (ack, node, nnode, lsa))
2943 assert (lsa);
2945 if (length + delta > ospf_packet_max (oi))
2946 break;
2948 stream_put (s, lsa->data, OSPF_LSA_HEADER_SIZE);
2949 length += OSPF_LSA_HEADER_SIZE;
2951 listnode_delete (ack, lsa);
2952 ospf_lsa_unlock (&lsa); /* oi->ls_ack_direct.ls_ack */
2955 return length;
2958 void
2959 ospf_hello_send_sub (struct ospf_interface *oi, struct in_addr *addr)
2961 struct ospf_packet *op;
2962 u_int16_t length = OSPF_HEADER_SIZE;
2964 op = ospf_packet_new (oi->ifp->mtu);
2966 /* Prepare OSPF common header. */
2967 ospf_make_header (OSPF_MSG_HELLO, oi, op->s);
2969 /* Prepare OSPF Hello body. */
2970 length += ospf_make_hello (oi, op->s);
2972 /* Fill OSPF header. */
2973 ospf_fill_header (oi, op->s, length);
2975 /* Set packet length. */
2976 op->length = length;
2978 op->dst.s_addr = addr->s_addr;
2980 /* Add packet to the interface output queue. */
2981 ospf_packet_add (oi, op);
2983 /* Hook thread to write packet. */
2984 OSPF_ISM_WRITE_ON (oi->ospf);
2987 static void
2988 ospf_poll_send (struct ospf_nbr_nbma *nbr_nbma)
2990 struct ospf_interface *oi;
2992 oi = nbr_nbma->oi;
2993 assert(oi);
2995 /* If this is passive interface, do not send OSPF Hello. */
2996 if (OSPF_IF_PASSIVE_STATUS (oi) == OSPF_IF_PASSIVE)
2997 return;
2999 if (oi->type != OSPF_IFTYPE_NBMA)
3000 return;
3002 if (nbr_nbma->nbr != NULL && nbr_nbma->nbr->state != NSM_Down)
3003 return;
3005 if (PRIORITY(oi) == 0)
3006 return;
3008 if (nbr_nbma->priority == 0
3009 && oi->state != ISM_DR && oi->state != ISM_Backup)
3010 return;
3012 ospf_hello_send_sub (oi, &nbr_nbma->addr);
3016 ospf_poll_timer (struct thread *thread)
3018 struct ospf_nbr_nbma *nbr_nbma;
3020 nbr_nbma = THREAD_ARG (thread);
3021 nbr_nbma->t_poll = NULL;
3023 if (IS_DEBUG_OSPF (nsm, NSM_TIMERS))
3024 zlog (NULL, LOG_DEBUG, "NSM[%s:%s]: Timer (Poll timer expire)",
3025 IF_NAME (nbr_nbma->oi), inet_ntoa (nbr_nbma->addr));
3027 ospf_poll_send (nbr_nbma);
3029 if (nbr_nbma->v_poll > 0)
3030 OSPF_POLL_TIMER_ON (nbr_nbma->t_poll, ospf_poll_timer,
3031 nbr_nbma->v_poll);
3033 return 0;
3038 ospf_hello_reply_timer (struct thread *thread)
3040 struct ospf_neighbor *nbr;
3042 nbr = THREAD_ARG (thread);
3043 nbr->t_hello_reply = NULL;
3045 assert (nbr->oi);
3047 if (IS_DEBUG_OSPF (nsm, NSM_TIMERS))
3048 zlog (NULL, LOG_DEBUG, "NSM[%s:%s]: Timer (hello-reply timer expire)",
3049 IF_NAME (nbr->oi), inet_ntoa (nbr->router_id));
3051 ospf_hello_send_sub (nbr->oi, &nbr->address.u.prefix4);
3053 return 0;
3056 /* Send OSPF Hello. */
3057 void
3058 ospf_hello_send (struct ospf_interface *oi)
3060 struct ospf_packet *op;
3061 u_int16_t length = OSPF_HEADER_SIZE;
3063 /* If this is passive interface, do not send OSPF Hello. */
3064 if (OSPF_IF_PASSIVE_STATUS (oi) == OSPF_IF_PASSIVE)
3065 return;
3067 op = ospf_packet_new (oi->ifp->mtu);
3069 /* Prepare OSPF common header. */
3070 ospf_make_header (OSPF_MSG_HELLO, oi, op->s);
3072 /* Prepare OSPF Hello body. */
3073 length += ospf_make_hello (oi, op->s);
3075 /* Fill OSPF header. */
3076 ospf_fill_header (oi, op->s, length);
3078 /* Set packet length. */
3079 op->length = length;
3081 if (oi->type == OSPF_IFTYPE_NBMA)
3083 struct ospf_neighbor *nbr;
3084 struct route_node *rn;
3086 for (rn = route_top (oi->nbrs); rn; rn = route_next (rn))
3087 if ((nbr = rn->info))
3088 if (nbr != oi->nbr_self)
3089 if (nbr->state != NSM_Down)
3091 /* RFC 2328 Section 9.5.1
3092 If the router is not eligible to become Designated Router,
3093 it must periodically send Hello Packets to both the
3094 Designated Router and the Backup Designated Router (if they
3095 exist). */
3096 if (PRIORITY(oi) == 0 &&
3097 IPV4_ADDR_CMP(&DR(oi), &nbr->address.u.prefix4) &&
3098 IPV4_ADDR_CMP(&BDR(oi), &nbr->address.u.prefix4))
3099 continue;
3101 /* If the router is eligible to become Designated Router, it
3102 must periodically send Hello Packets to all neighbors that
3103 are also eligible. In addition, if the router is itself the
3104 Designated Router or Backup Designated Router, it must also
3105 send periodic Hello Packets to all other neighbors. */
3107 if (nbr->priority == 0 && oi->state == ISM_DROther)
3108 continue;
3109 /* if oi->state == Waiting, send hello to all neighbors */
3111 struct ospf_packet *op_dup;
3113 op_dup = ospf_packet_dup(op);
3114 op_dup->dst = nbr->address.u.prefix4;
3116 /* Add packet to the interface output queue. */
3117 ospf_packet_add (oi, op_dup);
3119 OSPF_ISM_WRITE_ON (oi->ospf);
3123 ospf_packet_free (op);
3125 else
3127 /* Decide destination address. */
3128 if (oi->type == OSPF_IFTYPE_VIRTUALLINK)
3129 op->dst.s_addr = oi->vl_data->peer_addr.s_addr;
3130 else
3131 op->dst.s_addr = htonl (OSPF_ALLSPFROUTERS);
3133 /* Add packet to the interface output queue. */
3134 ospf_packet_add (oi, op);
3136 /* Hook thread to write packet. */
3137 OSPF_ISM_WRITE_ON (oi->ospf);
3141 /* Send OSPF Database Description. */
3142 void
3143 ospf_db_desc_send (struct ospf_neighbor *nbr)
3145 struct ospf_interface *oi;
3146 struct ospf_packet *op;
3147 u_int16_t length = OSPF_HEADER_SIZE;
3149 oi = nbr->oi;
3150 op = ospf_packet_new (oi->ifp->mtu);
3152 /* Prepare OSPF common header. */
3153 ospf_make_header (OSPF_MSG_DB_DESC, oi, op->s);
3155 /* Prepare OSPF Database Description body. */
3156 length += ospf_make_db_desc (oi, nbr, op->s);
3158 /* Fill OSPF header. */
3159 ospf_fill_header (oi, op->s, length);
3161 /* Set packet length. */
3162 op->length = length;
3164 /* Decide destination address. */
3165 if (oi->type == OSPF_IFTYPE_POINTOPOINT)
3166 op->dst.s_addr = htonl (OSPF_ALLSPFROUTERS);
3167 else
3168 op->dst = nbr->address.u.prefix4;
3170 /* Add packet to the interface output queue. */
3171 ospf_packet_add (oi, op);
3173 /* Hook thread to write packet. */
3174 OSPF_ISM_WRITE_ON (oi->ospf);
3176 /* Remove old DD packet, then copy new one and keep in neighbor structure. */
3177 if (nbr->last_send)
3178 ospf_packet_free (nbr->last_send);
3179 nbr->last_send = ospf_packet_dup (op);
3180 quagga_gettime (QUAGGA_CLK_MONOTONIC, &nbr->last_send_ts);
3183 /* Re-send Database Description. */
3184 void
3185 ospf_db_desc_resend (struct ospf_neighbor *nbr)
3187 struct ospf_interface *oi;
3189 oi = nbr->oi;
3191 /* Add packet to the interface output queue. */
3192 ospf_packet_add (oi, ospf_packet_dup (nbr->last_send));
3194 /* Hook thread to write packet. */
3195 OSPF_ISM_WRITE_ON (oi->ospf);
3198 /* Send Link State Request. */
3199 void
3200 ospf_ls_req_send (struct ospf_neighbor *nbr)
3202 struct ospf_interface *oi;
3203 struct ospf_packet *op;
3204 u_int16_t length = OSPF_HEADER_SIZE;
3206 oi = nbr->oi;
3207 op = ospf_packet_new (oi->ifp->mtu);
3209 /* Prepare OSPF common header. */
3210 ospf_make_header (OSPF_MSG_LS_REQ, oi, op->s);
3212 /* Prepare OSPF Link State Request body. */
3213 length += ospf_make_ls_req (nbr, op->s);
3214 if (length == OSPF_HEADER_SIZE)
3216 ospf_packet_free (op);
3217 return;
3220 /* Fill OSPF header. */
3221 ospf_fill_header (oi, op->s, length);
3223 /* Set packet length. */
3224 op->length = length;
3226 /* Decide destination address. */
3227 if (oi->type == OSPF_IFTYPE_POINTOPOINT)
3228 op->dst.s_addr = htonl (OSPF_ALLSPFROUTERS);
3229 else
3230 op->dst = nbr->address.u.prefix4;
3232 /* Add packet to the interface output queue. */
3233 ospf_packet_add (oi, op);
3235 /* Hook thread to write packet. */
3236 OSPF_ISM_WRITE_ON (oi->ospf);
3238 /* Add Link State Request Retransmission Timer. */
3239 OSPF_NSM_TIMER_ON (nbr->t_ls_req, ospf_ls_req_timer, nbr->v_ls_req);
3242 /* Send Link State Update with an LSA. */
3243 void
3244 ospf_ls_upd_send_lsa (struct ospf_neighbor *nbr, struct ospf_lsa *lsa,
3245 int flag)
3247 struct list *update;
3249 update = list_new ();
3251 listnode_add (update, lsa);
3252 ospf_ls_upd_send (nbr, update, flag);
3254 list_delete (update);
3257 /* Determine size for packet. Must be at least big enough to accomodate next
3258 * LSA on list, which may be bigger than MTU size.
3260 * Return pointer to new ospf_packet
3261 * NULL if we can not allocate, eg because LSA is bigger than imposed limit
3262 * on packet sizes (in which case offending LSA is deleted from update list)
3264 static struct ospf_packet *
3265 ospf_ls_upd_packet_new (struct list *update, struct ospf_interface *oi)
3267 struct ospf_lsa *lsa;
3268 struct listnode *ln;
3269 size_t size;
3270 static char warned = 0;
3272 lsa = listgetdata((ln = listhead (update)));
3273 assert (lsa->data);
3275 if ((OSPF_LS_UPD_MIN_SIZE + ntohs (lsa->data->length))
3276 > ospf_packet_max (oi))
3278 if (!warned)
3280 zlog_warn ("ospf_ls_upd_packet_new: oversized LSA encountered!"
3281 "will need to fragment. Not optimal. Try divide up"
3282 " your network with areas. Use 'debug ospf packet send'"
3283 " to see details, or look at 'show ip ospf database ..'");
3284 warned = 1;
3287 if (IS_DEBUG_OSPF_PACKET (0, SEND))
3288 zlog_debug ("ospf_ls_upd_packet_new: oversized LSA id:%s,"
3289 " %d bytes originated by %s, will be fragmented!",
3290 inet_ntoa (lsa->data->id),
3291 ntohs (lsa->data->length),
3292 inet_ntoa (lsa->data->adv_router));
3295 * Allocate just enough to fit this LSA only, to avoid including other
3296 * LSAs in fragmented LSA Updates.
3298 size = ntohs (lsa->data->length) + (oi->ifp->mtu - ospf_packet_max (oi))
3299 + OSPF_LS_UPD_MIN_SIZE;
3301 else
3302 size = oi->ifp->mtu;
3304 if (size > OSPF_MAX_PACKET_SIZE)
3306 zlog_warn ("ospf_ls_upd_packet_new: oversized LSA id:%s too big,"
3307 " %d bytes, packet size %ld, dropping it completely."
3308 " OSPF routing is broken!",
3309 inet_ntoa (lsa->data->id), ntohs (lsa->data->length),
3310 (long int) size);
3311 list_delete_node (update, ln);
3312 return NULL;
3315 /* IP header is built up separately by ospf_write(). This means, that we must
3316 * reduce the "affordable" size just calculated by length of an IP header.
3317 * This makes sure, that even if we manage to fill the payload with LSA data
3318 * completely, the final packet (our data plus IP header) still fits into
3319 * outgoing interface MTU. This correction isn't really meaningful for an
3320 * oversized LSA, but for consistency the correction is done for both cases.
3322 * P.S. OSPF_MAX_PACKET_SIZE above already includes IP header size
3324 return ospf_packet_new (size - sizeof (struct ip));
3327 static void
3328 ospf_ls_upd_queue_send (struct ospf_interface *oi, struct list *update,
3329 struct in_addr addr)
3331 struct ospf_packet *op;
3332 u_int16_t length = OSPF_HEADER_SIZE;
3334 if (IS_DEBUG_OSPF_EVENT)
3335 zlog_debug ("listcount = %d, dst %s", listcount (update), inet_ntoa(addr));
3337 op = ospf_ls_upd_packet_new (update, oi);
3339 /* Prepare OSPF common header. */
3340 ospf_make_header (OSPF_MSG_LS_UPD, oi, op->s);
3342 /* Prepare OSPF Link State Update body.
3343 * Includes Type-7 translation.
3345 length += ospf_make_ls_upd (oi, update, op->s);
3347 /* Fill OSPF header. */
3348 ospf_fill_header (oi, op->s, length);
3350 /* Set packet length. */
3351 op->length = length;
3353 /* Decide destination address. */
3354 if (oi->type == OSPF_IFTYPE_POINTOPOINT)
3355 op->dst.s_addr = htonl (OSPF_ALLSPFROUTERS);
3356 else
3357 op->dst.s_addr = addr.s_addr;
3359 /* Add packet to the interface output queue. */
3360 ospf_packet_add (oi, op);
3362 /* Hook thread to write packet. */
3363 OSPF_ISM_WRITE_ON (oi->ospf);
3366 static int
3367 ospf_ls_upd_send_queue_event (struct thread *thread)
3369 struct ospf_interface *oi = THREAD_ARG(thread);
3370 struct route_node *rn;
3371 struct route_node *rnext;
3372 struct list *update;
3373 char again = 0;
3375 oi->t_ls_upd_event = NULL;
3377 if (IS_DEBUG_OSPF_EVENT)
3378 zlog_debug ("ospf_ls_upd_send_queue start");
3380 for (rn = route_top (oi->ls_upd_queue); rn; rn = rnext)
3382 rnext = route_next (rn);
3384 if (rn->info == NULL)
3385 continue;
3387 update = (struct list *)rn->info;
3389 ospf_ls_upd_queue_send (oi, update, rn->p.u.prefix4);
3391 /* list might not be empty. */
3392 if (listcount(update) == 0)
3394 list_delete (rn->info);
3395 rn->info = NULL;
3396 route_unlock_node (rn);
3398 else
3399 again = 1;
3402 if (again != 0)
3404 if (IS_DEBUG_OSPF_EVENT)
3405 zlog_debug ("ospf_ls_upd_send_queue: update lists not cleared,"
3406 " %d nodes to try again, raising new event", again);
3407 oi->t_ls_upd_event =
3408 thread_add_event (master, ospf_ls_upd_send_queue_event, oi, 0);
3411 if (IS_DEBUG_OSPF_EVENT)
3412 zlog_debug ("ospf_ls_upd_send_queue stop");
3414 return 0;
3417 void
3418 ospf_ls_upd_send (struct ospf_neighbor *nbr, struct list *update, int flag)
3420 struct ospf_interface *oi;
3421 struct ospf_lsa *lsa;
3422 struct prefix_ipv4 p;
3423 struct route_node *rn;
3424 struct listnode *node;
3426 oi = nbr->oi;
3428 p.family = AF_INET;
3429 p.prefixlen = IPV4_MAX_BITLEN;
3431 /* Decide destination address. */
3432 if (oi->type == OSPF_IFTYPE_VIRTUALLINK)
3433 p.prefix = oi->vl_data->peer_addr;
3434 else if (oi->type == OSPF_IFTYPE_POINTOPOINT)
3435 p.prefix.s_addr = htonl (OSPF_ALLSPFROUTERS);
3436 else if (flag == OSPF_SEND_PACKET_DIRECT)
3437 p.prefix = nbr->address.u.prefix4;
3438 else if (oi->state == ISM_DR || oi->state == ISM_Backup)
3439 p.prefix.s_addr = htonl (OSPF_ALLSPFROUTERS);
3440 else if (oi->type == OSPF_IFTYPE_POINTOMULTIPOINT)
3441 p.prefix.s_addr = htonl (OSPF_ALLSPFROUTERS);
3442 else
3443 p.prefix.s_addr = htonl (OSPF_ALLDROUTERS);
3445 if (oi->type == OSPF_IFTYPE_NBMA)
3447 if (flag == OSPF_SEND_PACKET_INDIRECT)
3448 zlog_warn ("* LS-Update is directly sent on NBMA network.");
3449 if (IPV4_ADDR_SAME(&oi->address->u.prefix4, &p.prefix.s_addr))
3450 zlog_warn ("* LS-Update is sent to myself.");
3453 rn = route_node_get (oi->ls_upd_queue, (struct prefix *) &p);
3455 if (rn->info == NULL)
3456 rn->info = list_new ();
3458 for (ALL_LIST_ELEMENTS_RO (update, node, lsa))
3459 listnode_add (rn->info, ospf_lsa_lock (lsa)); /* oi->ls_upd_queue */
3461 if (oi->t_ls_upd_event == NULL)
3462 oi->t_ls_upd_event =
3463 thread_add_event (master, ospf_ls_upd_send_queue_event, oi, 0);
3466 static void
3467 ospf_ls_ack_send_list (struct ospf_interface *oi, struct list *ack,
3468 struct in_addr dst)
3470 struct ospf_packet *op;
3471 u_int16_t length = OSPF_HEADER_SIZE;
3473 op = ospf_packet_new (oi->ifp->mtu);
3475 /* Prepare OSPF common header. */
3476 ospf_make_header (OSPF_MSG_LS_ACK, oi, op->s);
3478 /* Prepare OSPF Link State Acknowledgment body. */
3479 length += ospf_make_ls_ack (oi, ack, op->s);
3481 /* Fill OSPF header. */
3482 ospf_fill_header (oi, op->s, length);
3484 /* Set packet length. */
3485 op->length = length;
3487 /* Set destination IP address. */
3488 op->dst = dst;
3490 /* Add packet to the interface output queue. */
3491 ospf_packet_add (oi, op);
3493 /* Hook thread to write packet. */
3494 OSPF_ISM_WRITE_ON (oi->ospf);
3497 static int
3498 ospf_ls_ack_send_event (struct thread *thread)
3500 struct ospf_interface *oi = THREAD_ARG (thread);
3502 oi->t_ls_ack_direct = NULL;
3504 while (listcount (oi->ls_ack_direct.ls_ack))
3505 ospf_ls_ack_send_list (oi, oi->ls_ack_direct.ls_ack,
3506 oi->ls_ack_direct.dst);
3508 return 0;
3511 void
3512 ospf_ls_ack_send (struct ospf_neighbor *nbr, struct ospf_lsa *lsa)
3514 struct ospf_interface *oi = nbr->oi;
3516 if (listcount (oi->ls_ack_direct.ls_ack) == 0)
3517 oi->ls_ack_direct.dst = nbr->address.u.prefix4;
3519 listnode_add (oi->ls_ack_direct.ls_ack, ospf_lsa_lock (lsa));
3521 if (oi->t_ls_ack_direct == NULL)
3522 oi->t_ls_ack_direct =
3523 thread_add_event (master, ospf_ls_ack_send_event, oi, 0);
3526 /* Send Link State Acknowledgment delayed. */
3527 void
3528 ospf_ls_ack_send_delayed (struct ospf_interface *oi)
3530 struct in_addr dst;
3532 /* Decide destination address. */
3533 /* RFC2328 Section 13.5 On non-broadcast
3534 networks, delayed Link State Acknowledgment packets must be
3535 unicast separately over each adjacency (i.e., neighbor whose
3536 state is >= Exchange). */
3537 if (oi->type == OSPF_IFTYPE_NBMA)
3539 struct ospf_neighbor *nbr;
3540 struct route_node *rn;
3542 for (rn = route_top (oi->nbrs); rn; rn = route_next (rn))
3543 if ((nbr = rn->info) != NULL)
3544 if (nbr != oi->nbr_self && nbr->state >= NSM_Exchange)
3545 while (listcount (oi->ls_ack))
3546 ospf_ls_ack_send_list (oi, oi->ls_ack, nbr->address.u.prefix4);
3547 return;
3549 if (oi->type == OSPF_IFTYPE_VIRTUALLINK)
3550 dst.s_addr = oi->vl_data->peer_addr.s_addr;
3551 else if (oi->state == ISM_DR || oi->state == ISM_Backup)
3552 dst.s_addr = htonl (OSPF_ALLSPFROUTERS);
3553 else if (oi->type == OSPF_IFTYPE_POINTOPOINT)
3554 dst.s_addr = htonl (OSPF_ALLSPFROUTERS);
3555 else if (oi->type == OSPF_IFTYPE_POINTOMULTIPOINT)
3556 dst.s_addr = htonl (OSPF_ALLSPFROUTERS);
3557 else
3558 dst.s_addr = htonl (OSPF_ALLDROUTERS);
3560 while (listcount (oi->ls_ack))
3561 ospf_ls_ack_send_list (oi, oi->ls_ack, dst);