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1 /*
2 * OSPF AS external route calculation.
3 * Copyright (C) 1999, 2000 Alex Zinin, Toshiaki Takada
4 *
5 * This file is part of GNU Zebra.
6 *
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.
11 *
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.
16 *
17 * You should have received a copy of the GNU General Public License along
18 * with this program; see the file COPYING; if not, write to the Free Software
19 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
20 */
21
22 #include <zebra.h>
23
24 #include "thread.h"
25 #include "memory.h"
26 #include "hash.h"
27 #include "linklist.h"
28 #include "prefix.h"
29 #include "if.h"
30 #include "table.h"
31 #include "vty.h"
32 #include "log.h"
33
34 #include "ospfd/ospfd.h"
35 #include "ospfd/ospf_interface.h"
36 #include "ospfd/ospf_ism.h"
37 #include "ospfd/ospf_asbr.h"
38 #include "ospfd/ospf_lsa.h"
39 #include "ospfd/ospf_lsdb.h"
40 #include "ospfd/ospf_neighbor.h"
41 #include "ospfd/ospf_nsm.h"
42 #include "ospfd/ospf_spf.h"
43 #include "ospfd/ospf_route.h"
44 #include "ospfd/ospf_ase.h"
45 #include "ospfd/ospf_zebra.h"
46 #include "ospfd/ospf_dump.h"
47
48 struct ospf_route *
49 ospf_find_asbr_route (struct ospf *ospf,
50 struct route_table *rtrs, struct prefix_ipv4 *asbr)
51 {
52 struct route_node *rn;
53 struct ospf_route *or, *best = NULL;
54 struct listnode *node;
55 struct list *chosen;
56
57 /* Sanity check. */
58 if (rtrs == NULL)
59 return NULL;
60
61 rn = route_node_lookup (rtrs, (struct prefix *) asbr);
62 if (! rn)
63 return NULL;
64
65 route_unlock_node (rn);
66
67 chosen = list_new ();
68
69 /* First try to find intra-area non-bb paths. */
70 if (!CHECK_FLAG (ospf->config, OSPF_RFC1583_COMPATIBLE))
71 for (ALL_LIST_ELEMENTS_RO ((struct list *) rn->info, node, or))
72 if (or->cost < OSPF_LS_INFINITY)
73 if (!OSPF_IS_AREA_ID_BACKBONE (or->u.std.area_id) &&
74 or->path_type == OSPF_PATH_INTRA_AREA)
75 listnode_add (chosen, or);
76
77 /* If none is found -- look through all. */
78 if (listcount (chosen) == 0)
79 {
80 list_free (chosen);
81 chosen = rn->info;
82 }
83
84 /* Now find the route with least cost. */
85 for (ALL_LIST_ELEMENTS_RO (chosen, node, or))
86 if (or->cost < OSPF_LS_INFINITY)
87 {
88 if (best == NULL)
89 best = or;
90 else if (best->cost > or->cost)
91 best = or;
92 else if (best->cost == or->cost &&
93 IPV4_ADDR_CMP (&best->u.std.area_id,
94 &or->u.std.area_id) < 0)
95 best = or;
96 }
97
98 if (chosen != rn->info)
99 list_delete (chosen);
100
101 return best;
102 }
103
104 struct ospf_route *
105 ospf_find_asbr_route_through_area (struct route_table *rtrs,
106 struct prefix_ipv4 *asbr,
107 struct ospf_area *area)
108 {
109 struct route_node *rn;
110
111 /* Sanity check. */
112 if (rtrs == NULL)
113 return NULL;
114
115 rn = route_node_lookup (rtrs, (struct prefix *) asbr);
116
117 if (rn)
118 {
119 struct listnode *node;
120 struct ospf_route *or;
121
122 route_unlock_node (rn);
123
124 for (ALL_LIST_ELEMENTS_RO ((struct list *) rn->info, node, or))
125 if (IPV4_ADDR_SAME (&or->u.std.area_id, &area->area_id))
126 return or;
127 }
128
129 return NULL;
130 }
131
132 static void
133 ospf_ase_complete_direct_routes (struct ospf_route *ro, struct in_addr nexthop)
134 {
135 struct listnode *node;
136 struct ospf_path *op;
137
138 for (ALL_LIST_ELEMENTS_RO (ro->paths, node, op))
139 if (op->nexthop.s_addr == 0)
140 op->nexthop.s_addr = nexthop.s_addr;
141 }
142
143 static int
144 ospf_ase_forward_address_check (struct ospf *ospf, struct in_addr fwd_addr)
145 {
146 struct listnode *ifn;
147 struct ospf_interface *oi;
148
149 for (ALL_LIST_ELEMENTS_RO (ospf->oiflist, ifn, oi))
150 if (if_is_operative (oi->ifp))
151 if (oi->type != OSPF_IFTYPE_VIRTUALLINK)
152 if (IPV4_ADDR_SAME (&oi->address->u.prefix4, &fwd_addr))
153 return 0;
154
155 return 1;
156 }
157
158 #if 0
159 /* Calculate ASBR route. */
160 static struct ospf_route *
161 ospf_ase_calculate_asbr_route (struct ospf *ospf,
162 struct route_table *rt_network,
163 struct route_table *rt_router,
164 struct as_external_lsa *al)
165 {
166 struct prefix_ipv4 asbr;
167 struct ospf_route *asbr_route;
168 struct route_node *rn;
169
170 /* Find ASBR route from Router routing table. */
171 asbr.family = AF_INET;
172 asbr.prefix = al->header.adv_router;
173 asbr.prefixlen = IPV4_MAX_BITLEN;
174 apply_mask_ipv4 (&asbr);
175
176 asbr_route = ospf_find_asbr_route (ospf, rt_router, &asbr);
177
178 if (asbr_route == NULL)
179 {
180 if (IS_DEBUG_OSPF (lsa, LSA))
181 zlog_debug ("ospf_ase_calculate(): Route to ASBR %s not found",
182 inet_ntoa (asbr.prefix));
183 return NULL;
184 }
185
186 if (!(asbr_route->u.std.flags & ROUTER_LSA_EXTERNAL))
187 {
188 if (IS_DEBUG_OSPF (lsa, LSA))
189 zlog_debug ("ospf_ase_calculate(): Originating router is not an ASBR");
190 return NULL;
191 }
192
193 if (al->e[0].fwd_addr.s_addr != 0)
194 {
195 if (IS_DEBUG_OSPF (lsa, LSA))
196 zlog_debug ("ospf_ase_calculate(): "
197 "Forwarding address is not 0.0.0.0.");
198
199 if (! ospf_ase_forward_address_check (ospf, al->e[0].fwd_addr))
200 {
201 if (IS_DEBUG_OSPF (lsa, LSA))
202 zlog_debug ("ospf_ase_calculate(): "
203 "Forwarding address is one of our addresses, Ignore.");
204 return NULL;
205 }
206
207 if (IS_DEBUG_OSPF (lsa, LSA))
208 zlog_debug ("ospf_ase_calculate(): "
209 "Looking up in the Network Routing Table.");
210
211 /* Looking up the path to the fwd_addr from Network route. */
212 asbr.family = AF_INET;
213 asbr.prefix = al->e[0].fwd_addr;
214 asbr.prefixlen = IPV4_MAX_BITLEN;
215
216 rn = route_node_match (rt_network, (struct prefix *) &asbr);
217
218 if (rn == NULL)
219 {
220 if (IS_DEBUG_OSPF (lsa, LSA))
221 zlog_debug ("ospf_ase_calculate(): "
222 "Couldn't find a route to the forwarding address.");
223 return NULL;
224 }
225
226 route_unlock_node (rn);
227
228 if ((asbr_route = rn->info) == NULL)
229 {
230 if (IS_DEBUG_OSPF (lsa, LSA))
231 zlog_debug ("ospf_ase_calculate(): "
232 "Somehow OSPF route to ASBR is lost");
233 return NULL;
234 }
235 }
236
237 return asbr_route;
238 }
239 #endif
240
241 static struct ospf_route *
242 ospf_ase_calculate_new_route (struct ospf_lsa *lsa,
243 struct ospf_route *asbr_route, u_int32_t metric)
244 {
245 struct as_external_lsa *al;
246 struct ospf_route *new;
247
248 al = (struct as_external_lsa *) lsa->data;
249
250 new = ospf_route_new ();
251
252 /* Set redistributed type -- does make sense? */
253 /* new->type = type; */
254 new->id = al->header.id;
255 new->mask = al->mask;
256
257 if (!IS_EXTERNAL_METRIC (al->e[0].tos))
258 {
259 if (IS_DEBUG_OSPF (lsa, LSA))
260 zlog_debug ("Route[External]: type-1 created.");
261 new->path_type = OSPF_PATH_TYPE1_EXTERNAL;
262 new->cost = asbr_route->cost + metric; /* X + Y */
263 }
264 else
265 {
266 if (IS_DEBUG_OSPF (lsa, LSA))
267 zlog_debug ("Route[External]: type-2 created.");
268 new->path_type = OSPF_PATH_TYPE2_EXTERNAL;
269 new->cost = asbr_route->cost; /* X */
270 new->u.ext.type2_cost = metric; /* Y */
271 }
272
273 new->type = OSPF_DESTINATION_NETWORK;
274 new->u.ext.origin = lsa;
275 new->u.ext.tag = ntohl (al->e[0].route_tag);
276 new->u.ext.asbr = asbr_route;
277
278 assert (new != asbr_route);
279
280 return new;
281 }
282
283 #define OSPF_ASE_CALC_INTERVAL 1
284
285 int
286 ospf_ase_calculate_route (struct ospf *ospf, struct ospf_lsa * lsa)
287 {
288 u_int32_t metric;
289 struct as_external_lsa *al;
290 struct ospf_route *asbr_route;
291 struct prefix_ipv4 asbr, p;
292 struct route_node *rn;
293 struct ospf_route *new, *or;
294 int ret;
295
296 assert (lsa);
297 al = (struct as_external_lsa *) lsa->data;
298
299 if (lsa->data->type == OSPF_AS_NSSA_LSA)
300 if (IS_DEBUG_OSPF_NSSA)
301 zlog_debug ("ospf_ase_calc(): Processing Type-7");
302
303 /* Stay away from any Local Translated Type-7 LSAs */
304 if (CHECK_FLAG (lsa->flags, OSPF_LSA_LOCAL_XLT))
305 {
306 if (IS_DEBUG_OSPF_NSSA)
307 zlog_debug ("ospf_ase_calc(): Rejecting Local Xlt'd");
308 return 0;
309 }
310
311 if (IS_DEBUG_OSPF (lsa, LSA))
312 zlog_debug ("Route[External]: Calculate AS-external-LSA to %s/%d",
313 inet_ntoa (al->header.id), ip_masklen (al->mask));
314 /* (1) If the cost specified by the LSA is LSInfinity, or if the
315 LSA's LS age is equal to MaxAge, then examine the next LSA. */
316 if ((metric = GET_METRIC (al->e[0].metric)) >= OSPF_LS_INFINITY)
317 {
318 if (IS_DEBUG_OSPF (lsa, LSA))
319 zlog_debug ("Route[External]: Metric is OSPF_LS_INFINITY");
320 return 0;
321 }
322 if (IS_LSA_MAXAGE (lsa))
323 {
324 if (IS_DEBUG_OSPF (lsa, LSA))
325 zlog_debug ("Route[External]: AS-external-LSA is MAXAGE");
326 return 0;
327 }
328
329 /* (2) If the LSA was originated by the calculating router itself,
330 examine the next LSA. */
331 if (IS_LSA_SELF (lsa))
332 {
333 if (IS_DEBUG_OSPF (lsa, LSA))
334 zlog_debug ("Route[External]: AS-external-LSA is self originated");
335 return 0;
336 }
337
338 /* (3) Call the destination described by the LSA N. N's address is
339 obtained by masking the LSA's Link State ID with the
340 network/subnet mask contained in the body of the LSA. Look
341 up the routing table entries (potentially one per attached
342 area) for the AS boundary router (ASBR) that originated the
343 LSA. If no entries exist for router ASBR (i.e., ASBR is
344 unreachable), do nothing with this LSA and consider the next
345 in the list. */
346
347 asbr.family = AF_INET;
348 asbr.prefix = al->header.adv_router;
349 asbr.prefixlen = IPV4_MAX_BITLEN;
350 apply_mask_ipv4 (&asbr);
351
352 asbr_route = ospf_find_asbr_route (ospf, ospf->new_rtrs, &asbr);
353 if (asbr_route == NULL)
354 {
355 if (IS_DEBUG_OSPF (lsa, LSA))
356 zlog_debug ("Route[External]: Can't find originating ASBR route");
357 return 0;
358 }
359 if (!(asbr_route->u.std.flags & ROUTER_LSA_EXTERNAL))
360 {
361 if (IS_DEBUG_OSPF (lsa, LSA))
362 zlog_debug ("Route[External]: Originating router is not an ASBR");
363 return 0;
364 }
365
366 /* Else, this LSA describes an AS external path to destination
367 N. Examine the forwarding address specified in the AS-
368 external-LSA. This indicates the IP address to which
369 packets for the destination should be forwarded. */
370
371 if (al->e[0].fwd_addr.s_addr == 0)
372 {
373 /* If the forwarding address is set to 0.0.0.0, packets should
374 be sent to the ASBR itself. Among the multiple routing table
375 entries for the ASBR, select the preferred entry as follows.
376 If RFC1583Compatibility is set to "disabled", prune the set
377 of routing table entries for the ASBR as described in
378 Section 16.4.1. In any case, among the remaining routing
379 table entries, select the routing table entry with the least
380 cost; when there are multiple least cost routing table
381 entries the entry whose associated area has the largest OSPF
382 Area ID (when considered as an unsigned 32-bit integer) is
383 chosen. */
384
385 /* asbr_route already contains the requested route */
386 }
387 else
388 {
389 /* If the forwarding address is non-zero, look up the
390 forwarding address in the routing table.[24] The matching
391 routing table entry must specify an intra-area or inter-area
392 path; if no such path exists, do nothing with the LSA and
393 consider the next in the list. */
394 if (! ospf_ase_forward_address_check (ospf, al->e[0].fwd_addr))
395 {
396 if (IS_DEBUG_OSPF (lsa, LSA))
397 zlog_debug ("Route[External]: Forwarding address is our router "
398 "address");
399 return 0;
400 }
401
402 asbr.family = AF_INET;
403 asbr.prefix = al->e[0].fwd_addr;
404 asbr.prefixlen = IPV4_MAX_BITLEN;
405
406 rn = route_node_match (ospf->new_table, (struct prefix *) &asbr);
407
408 if (rn == NULL || (asbr_route = rn->info) == NULL)
409 {
410 if (IS_DEBUG_OSPF (lsa, LSA))
411 zlog_debug ("Route[External]: Can't find route to forwarding "
412 "address");
413 if (rn)
414 route_unlock_node (rn);
415 return 0;
416 }
417
418 route_unlock_node (rn);
419 }
420
421 /* (4) Let X be the cost specified by the preferred routing table
422 entry for the ASBR/forwarding address, and Y the cost
423 specified in the LSA. X is in terms of the link state
424 metric, and Y is a type 1 or 2 external metric. */
425
426
427 /* (5) Look up the routing table entry for the destination N. If
428 no entry exists for N, install the AS external path to N,
429 with next hop equal to the list of next hops to the
430 forwarding address, and advertising router equal to ASBR.
431 If the external metric type is 1, then the path-type is set
432 to type 1 external and the cost is equal to X+Y. If the
433 external metric type is 2, the path-type is set to type 2
434 external, the link state component of the route's cost is X,
435 and the type 2 cost is Y. */
436 new = ospf_ase_calculate_new_route (lsa, asbr_route, metric);
437
438 /* (6) Compare the AS external path described by the LSA with the
439 existing paths in N's routing table entry, as follows. If
440 the new path is preferred, it replaces the present paths in
441 N's routing table entry. If the new path is of equal
442 preference, it is added to N's routing table entry's list of
443 paths. */
444
445 /* Set prefix. */
446 p.family = AF_INET;
447 p.prefix = al->header.id;
448 p.prefixlen = ip_masklen (al->mask);
449
450 /* if there is a Intra/Inter area route to the N
451 do not install external route */
452 if ((rn = route_node_lookup (ospf->new_table,
453 (struct prefix *) &p)))
454 {
455 route_unlock_node(rn);
456 if (rn->info == NULL)
457 zlog_info ("Route[External]: rn->info NULL");
458 if (new)
459 ospf_route_free (new);
460 return 0;
461 }
462 /* Find a route to the same dest */
463 /* If there is no route, create new one. */
464 if ((rn = route_node_lookup (ospf->new_external_route,
465 (struct prefix *) &p)))
466 route_unlock_node(rn);
467
468 if (!rn || (or = rn->info) == NULL)
469 {
470 if (IS_DEBUG_OSPF (lsa, LSA))
471 zlog_debug ("Route[External]: Adding a new route %s/%d",
472 inet_ntoa (p.prefix), p.prefixlen);
473
474 ospf_route_add (ospf->new_external_route, &p, new, asbr_route);
475
476 if (al->e[0].fwd_addr.s_addr)
477 ospf_ase_complete_direct_routes (new, al->e[0].fwd_addr);
478 return 0;
479 }
480 else
481 {
482 /* (a) Intra-area and inter-area paths are always preferred
483 over AS external paths.
484
485 (b) Type 1 external paths are always preferred over type 2
486 external paths. When all paths are type 2 external
487 paths, the paths with the smallest advertised type 2
488 metric are always preferred. */
489 ret = ospf_route_cmp (ospf, new, or);
490
491 /* (c) If the new AS external path is still indistinguishable
492 from the current paths in the N's routing table entry,
493 and RFC1583Compatibility is set to "disabled", select
494 the preferred paths based on the intra-AS paths to the
495 ASBR/forwarding addresses, as specified in Section
496 16.4.1.
497
498 (d) If the new AS external path is still indistinguishable
499 from the current paths in the N's routing table entry,
500 select the preferred path based on a least cost
501 comparison. Type 1 external paths are compared by
502 looking at the sum of the distance to the forwarding
503 address and the advertised type 1 metric (X+Y). Type 2
504 external paths advertising equal type 2 metrics are
505 compared by looking at the distance to the forwarding
506 addresses.
507 */
508 /* New route is better */
509 if (ret < 0)
510 {
511 if (IS_DEBUG_OSPF (lsa, LSA))
512 zlog_debug ("Route[External]: New route is better");
513 ospf_route_subst (rn, new, asbr_route);
514 if (al->e[0].fwd_addr.s_addr)
515 ospf_ase_complete_direct_routes (new, al->e[0].fwd_addr);
516 or = new;
517 new = NULL;
518 }
519 /* Old route is better */
520 else if (ret > 0)
521 {
522 if (IS_DEBUG_OSPF (lsa, LSA))
523 zlog_debug ("Route[External]: Old route is better");
524 /* do nothing */
525 }
526 /* Routes are equal */
527 else
528 {
529 if (IS_DEBUG_OSPF (lsa, LSA))
530 zlog_debug ("Route[External]: Routes are equal");
531 ospf_route_copy_nexthops (or, asbr_route->paths);
532 if (al->e[0].fwd_addr.s_addr)
533 ospf_ase_complete_direct_routes (or, al->e[0].fwd_addr);
534 }
535 }
536 /* Make sure setting newly calculated ASBR route.*/
537 or->u.ext.asbr = asbr_route;
538 if (new)
539 ospf_route_free (new);
540
541 lsa->route = or;
542 return 0;
543 }
544
545 static int
546 ospf_ase_route_match_same (struct route_table *rt, struct prefix *prefix,
547 struct ospf_route *newor)
548 {
549 struct route_node *rn;
550 struct ospf_route *or;
551 struct ospf_path *op;
552 struct ospf_path *newop;
553 struct listnode *n1;
554 struct listnode *n2;
555
556 if (! rt || ! prefix)
557 return 0;
558
559 rn = route_node_lookup (rt, prefix);
560 if (! rn)
561 return 0;
562
563 route_unlock_node (rn);
564
565 or = rn->info;
566 if (or->path_type != newor->path_type)
567 return 0;
568
569 switch (or->path_type)
570 {
571 case OSPF_PATH_TYPE1_EXTERNAL:
572 if (or->cost != newor->cost)
573 return 0;
574 break;
575 case OSPF_PATH_TYPE2_EXTERNAL:
576 if ((or->cost != newor->cost) ||
577 (or->u.ext.type2_cost != newor->u.ext.type2_cost))
578 return 0;
579 break;
580 default:
581 assert (0);
582 return 0;
583 }
584
585 if (or->paths->count != newor->paths->count)
586 return 0;
587
588 /* Check each path. */
589 for (n1 = listhead (or->paths), n2 = listhead (newor->paths);
590 n1 && n2; n1 = listnextnode (n1), n2 = listnextnode (n2))
591 {
592 op = listgetdata (n1);
593 newop = listgetdata (n2);
594
595 if (! IPV4_ADDR_SAME (&op->nexthop, &newop->nexthop))
596 return 0;
597 if (op->ifindex != newop->ifindex)
598 return 0;
599 }
600
601 if (or->u.ext.tag != newor->u.ext.tag)
602 return 0;
603
604 return 1;
605 }
606
607 static int
608 ospf_ase_compare_tables (struct route_table *new_external_route,
609 struct route_table *old_external_route)
610 {
611 struct route_node *rn, *new_rn;
612 struct ospf_route *or;
613
614 /* Remove deleted routes */
615 for (rn = route_top (old_external_route); rn; rn = route_next (rn))
616 if ((or = rn->info))
617 {
618 if (! (new_rn = route_node_lookup (new_external_route, &rn->p)))
619 ospf_zebra_delete ((struct prefix_ipv4 *) &rn->p, or);
620 else
621 route_unlock_node (new_rn);
622 }
623
624
625 /* Install new routes */
626 for (rn = route_top (new_external_route); rn; rn = route_next (rn))
627 if ((or = rn->info) != NULL)
628 if (! ospf_ase_route_match_same (old_external_route, &rn->p, or))
629 ospf_zebra_add ((struct prefix_ipv4 *) &rn->p, or);
630
631 return 0;
632 }
633
634 static int
635 ospf_ase_calculate_timer (struct thread *t)
636 {
637 struct ospf *ospf;
638 struct ospf_lsa *lsa;
639 struct route_node *rn;
640 struct listnode *node;
641 struct ospf_area *area;
642 struct timeval start_time, stop_time;
643
644 ospf = THREAD_ARG (t);
645 ospf->t_ase_calc = NULL;
646
647 if (ospf->ase_calc)
648 {
649 ospf->ase_calc = 0;
650
651 monotime(&start_time);
652
653 /* Calculate external route for each AS-external-LSA */
654 LSDB_LOOP (EXTERNAL_LSDB (ospf), rn, lsa)
655 ospf_ase_calculate_route (ospf, lsa);
656
657 /* This version simple adds to the table all NSSA areas */
658 if (ospf->anyNSSA)
659 for (ALL_LIST_ELEMENTS_RO (ospf->areas, node, area))
660 {
661 if (IS_DEBUG_OSPF_NSSA)
662 zlog_debug ("ospf_ase_calculate_timer(): looking at area %s",
663 inet_ntoa (area->area_id));
664
665 if (area->external_routing == OSPF_AREA_NSSA)
666 LSDB_LOOP (NSSA_LSDB (area), rn, lsa)
667 ospf_ase_calculate_route (ospf, lsa);
668 }
669 /* kevinm: And add the NSSA routes in ospf_top */
670 LSDB_LOOP (NSSA_LSDB (ospf),rn,lsa)
671 ospf_ase_calculate_route(ospf,lsa);
672
673 /* Compare old and new external routing table and install the
674 difference info zebra/kernel */
675 ospf_ase_compare_tables (ospf->new_external_route,
676 ospf->old_external_route);
677
678 /* Delete old external routing table */
679 ospf_route_table_free (ospf->old_external_route);
680 ospf->old_external_route = ospf->new_external_route;
681 ospf->new_external_route = route_table_init ();
682
683 monotime(&stop_time);
684
685 zlog_info ("SPF Processing Time(usecs): External Routes: %lld\n",
686 (stop_time.tv_sec - start_time.tv_sec)*1000000LL+
687 (stop_time.tv_usec - start_time.tv_usec));
688 }
689 return 0;
690 }
691
692 void
693 ospf_ase_calculate_schedule (struct ospf *ospf)
694 {
695 if (ospf == NULL)
696 return;
697
698 ospf->ase_calc = 1;
699 }
700
701 void
702 ospf_ase_calculate_timer_add (struct ospf *ospf)
703 {
704 if (ospf == NULL)
705 return;
706
707 thread_add_timer(master, ospf_ase_calculate_timer, ospf,
708 OSPF_ASE_CALC_INTERVAL, &ospf->t_ase_calc);
709 }
710
711 void
712 ospf_ase_register_external_lsa (struct ospf_lsa *lsa, struct ospf *top)
713 {
714 struct route_node *rn;
715 struct prefix_ipv4 p;
716 struct list *lst;
717 struct as_external_lsa *al;
718
719 al = (struct as_external_lsa *) lsa->data;
720 p.family = AF_INET;
721 p.prefix = lsa->data->id;
722 p.prefixlen = ip_masklen (al->mask);
723 apply_mask_ipv4 (&p);
724
725 rn = route_node_get (top->external_lsas, (struct prefix *) &p);
726 if ((lst = rn->info) == NULL)
727 rn->info = lst = list_new();
728 else
729 route_unlock_node (rn);
730
731 /* We assume that if LSA is deleted from DB
732 is is also deleted from this RT */
733 listnode_add (lst, ospf_lsa_lock (lsa)); /* external_lsas lst */
734 }
735
736 void
737 ospf_ase_unregister_external_lsa (struct ospf_lsa *lsa, struct ospf *top)
738 {
739 struct route_node *rn;
740 struct prefix_ipv4 p;
741 struct list *lst;
742 struct as_external_lsa *al;
743
744 al = (struct as_external_lsa *) lsa->data;
745 p.family = AF_INET;
746 p.prefix = lsa->data->id;
747 p.prefixlen = ip_masklen (al->mask);
748 apply_mask_ipv4 (&p);
749
750 rn = route_node_lookup (top->external_lsas, (struct prefix *) &p);
751
752 if (rn) {
753 lst = rn->info;
754 listnode_delete (lst, lsa);
755 ospf_lsa_unlock (&lsa); /* external_lsas list */
756 route_unlock_node (rn);
757 }
758 }
759
760 void
761 ospf_ase_external_lsas_finish (struct route_table *rt)
762 {
763 struct route_node *rn;
764 struct ospf_lsa *lsa;
765 struct list *lst;
766 struct listnode *node, *nnode;
767
768 for (rn = route_top (rt); rn; rn = route_next (rn))
769 if ((lst = rn->info) != NULL)
770 {
771 for (ALL_LIST_ELEMENTS (lst, node, nnode, lsa))
772 ospf_lsa_unlock (&lsa); /* external_lsas lst */
773 list_delete (lst);
774 }
775
776 route_table_finish (rt);
777 }
778
779 void
780 ospf_ase_incremental_update (struct ospf *ospf, struct ospf_lsa *lsa)
781 {
782 struct list *lsas;
783 struct listnode *node;
784 struct route_node *rn, *rn2;
785 struct prefix_ipv4 p;
786 struct route_table *tmp_old;
787 struct as_external_lsa *al;
788
789 al = (struct as_external_lsa *) lsa->data;
790 p.family = AF_INET;
791 p.prefix = lsa->data->id;
792 p.prefixlen = ip_masklen (al->mask);
793 apply_mask_ipv4 (&p);
794
795 /* if new_table is NULL, there was no spf calculation, thus
796 incremental update is unneeded */
797 if (!ospf->new_table)
798 return;
799
800 /* If there is already an intra-area or inter-area route
801 to the destination, no recalculation is necessary
802 (internal routes take precedence). */
803
804 rn = route_node_lookup (ospf->new_table, (struct prefix *) &p);
805 if (rn)
806 {
807 route_unlock_node (rn);
808 if (rn->info)
809 return;
810 }
811
812 rn = route_node_lookup (ospf->external_lsas, (struct prefix *) &p);
813 assert (rn);
814 assert (rn->info);
815 lsas = rn->info;
816 route_unlock_node (rn);
817
818 for (ALL_LIST_ELEMENTS_RO (lsas, node, lsa))
819 ospf_ase_calculate_route (ospf, lsa);
820
821 /* prepare temporary old routing table for compare */
822 tmp_old = route_table_init ();
823 rn = route_node_lookup (ospf->old_external_route, (struct prefix *) &p);
824 if (rn && rn->info)
825 {
826 rn2 = route_node_get (tmp_old, (struct prefix *) &p);
827 rn2->info = rn->info;
828 route_unlock_node (rn);
829 }
830
831 /* install changes to zebra */
832 ospf_ase_compare_tables (ospf->new_external_route, tmp_old);
833
834 /* update ospf->old_external_route table */
835 if (rn && rn->info)
836 ospf_route_free ((struct ospf_route *) rn->info);
837
838 rn2 = route_node_lookup (ospf->new_external_route, (struct prefix *) &p);
839 /* if new route exists, install it to ospf->old_external_route */
840 if (rn2 && rn2->info)
841 {
842 if (!rn)
843 rn = route_node_get (ospf->old_external_route, (struct prefix *) &p);
844 rn->info = rn2->info;
845 }
846 else
847 {
848 /* remove route node from ospf->old_external_route */
849 if (rn)
850 {
851 rn->info = NULL;
852 route_unlock_node (rn);
853 }
854 }
855
856 if (rn2)
857 {
858 /* rn2->info is stored in route node of ospf->old_external_route */
859 rn2->info = NULL;
860 route_unlock_node (rn2);
861 route_unlock_node (rn2);
862 }
863
864 route_table_finish (tmp_old);
865 }