blob: e05f0e01beed1189c47a61300c842d6f3c4cab09 [file] [log] [blame]
Neale Ranns5e575b12016-10-03 09:40:25 +01001/*
2 * Copyright (c) 2016 Cisco and/or its affiliates.
3 * Licensed under the Apache License, Version 2.0 (the "License");
4 * you may not use this file except in compliance with the License.
5 * You may obtain a copy of the License at:
6 *
7 * http://www.apache.org/licenses/LICENSE-2.0
8 *
9 * Unless required by applicable law or agreed to in writing, software
10 * distributed under the License is distributed on an "AS IS" BASIS,
11 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12 * See the License for the specific language governing permissions and
13 * limitations under the License.
14 */
15
16#include <vnet/lisp-gpe/lisp_gpe_fwd_entry.h>
17#include <vnet/lisp-gpe/lisp_gpe_adjacency.h>
18#include <vnet/lisp-gpe/lisp_gpe_tenant.h>
19#include <vnet/lisp-cp/lisp_cp_dpo.h>
20#include <vnet/fib/fib_table.h>
21#include <vnet/fib/fib_entry.h>
22#include <vnet/fib/fib_path_list.h>
23#include <vnet/fib/ip6_fib.h>
24#include <vnet/fib/ip4_fib.h>
25#include <vnet/dpo/drop_dpo.h>
26#include <vnet/dpo/lookup_dpo.h>
27#include <vnet/dpo/load_balance.h>
28#include <vnet/adj/adj_midchain.h>
29
30/**
31 * @brief Add route to IP4 or IP6 Destination FIB.
32 *
33 * Add a route to the destination FIB that results in the lookup
34 * in the SRC FIB. The SRC FIB is created is it does not yet exist.
35 *
36 * @param[in] dst_table_id Destination FIB Table-ID
37 * @param[in] dst_prefix Destination IP prefix.
38 *
39 * @return src_fib_index The index/ID of the SRC FIB created.
40 */
41static u32
42ip_dst_fib_add_route (u32 dst_fib_index, const ip_prefix_t * dst_prefix)
43{
44 fib_node_index_t src_fib_index;
45 fib_prefix_t dst_fib_prefix;
46 fib_node_index_t dst_fei;
47
48 ASSERT (NULL != dst_prefix);
49
50 ip_prefix_to_fib_prefix (dst_prefix, &dst_fib_prefix);
51
52 /*
53 * lookup the destination prefix in the VRF table and retrieve the
54 * LISP associated data
55 */
56 dst_fei = fib_table_lookup_exact_match (dst_fib_index, &dst_fib_prefix);
57
58 /*
59 * If the FIB entry is not present, or not LISP sourced, add it
60 */
61 if (dst_fei == FIB_NODE_INDEX_INVALID ||
62 NULL == fib_entry_get_source_data (dst_fei, FIB_SOURCE_LISP))
63 {
Neale Ranns948e00f2016-10-20 13:39:34 +010064 dpo_id_t src_lkup_dpo = DPO_INVALID;
Neale Ranns5e575b12016-10-03 09:40:25 +010065
66 /* create a new src FIB. */
67 src_fib_index =
68 fib_table_create_and_lock (dst_fib_prefix.fp_proto,
69 "LISP-src for [%d,%U]",
70 dst_fib_index,
71 format_fib_prefix, &dst_fib_prefix);
Filip Tehlard5fcc462016-10-17 16:20:18 +020072 /*
73 * add src fib default route
74 */
75 fib_prefix_t prefix = {
76 .fp_proto = dst_fib_prefix.fp_proto,
77 };
78 fib_table_entry_special_dpo_add (src_fib_index, &prefix,
79 FIB_SOURCE_LISP,
80 FIB_ENTRY_FLAG_EXCLUSIVE,
81 lisp_cp_dpo_get (fib_proto_to_dpo
82 (dst_fib_prefix.fp_proto)));
Neale Ranns5e575b12016-10-03 09:40:25 +010083 /*
84 * create a data-path object to perform the source address lookup
85 * in the SRC FIB
86 */
87 lookup_dpo_add_or_lock_w_fib_index (src_fib_index,
88 (ip_prefix_version (dst_prefix) ==
89 IP6 ? DPO_PROTO_IP6 :
90 DPO_PROTO_IP4),
91 LOOKUP_INPUT_SRC_ADDR,
92 LOOKUP_TABLE_FROM_CONFIG,
93 &src_lkup_dpo);
94
95 /*
96 * add the entry to the destination FIB that uses the lookup DPO
97 */
98 dst_fei = fib_table_entry_special_dpo_add (dst_fib_index,
99 &dst_fib_prefix,
100 FIB_SOURCE_LISP,
101 FIB_ENTRY_FLAG_EXCLUSIVE,
102 &src_lkup_dpo);
103
104 /*
105 * the DPO is locked by the FIB entry, and we have no further
106 * need for it.
107 */
108 dpo_unlock (&src_lkup_dpo);
109
110 /*
111 * save the SRC FIB index on the entry so we can retrieve it for
112 * subsequent routes.
113 */
114 fib_entry_set_source_data (dst_fei, FIB_SOURCE_LISP, &src_fib_index);
115 }
116 else
117 {
118 /*
119 * destination FIB entry already present
120 */
121 src_fib_index = *(u32 *) fib_entry_get_source_data (dst_fei,
122 FIB_SOURCE_LISP);
123 }
124
125 return (src_fib_index);
126}
127
128/**
129 * @brief Del route to IP4 or IP6 SD FIB.
130 *
131 * Remove routes from both destination and source FIBs.
132 *
133 * @param[in] src_fib_index The index/ID of the SRC FIB
134 * @param[in] src_prefix Source IP prefix.
135 * @param[in] dst_fib_index The index/ID of the DST FIB
136 * @param[in] dst_prefix Destination IP prefix.
137 */
138static void
139ip_src_dst_fib_del_route (u32 src_fib_index,
140 const ip_prefix_t * src_prefix,
141 u32 dst_fib_index, const ip_prefix_t * dst_prefix)
142{
143 fib_prefix_t dst_fib_prefix, src_fib_prefix;
Florin Coras84794402016-11-29 17:14:06 -0800144 u8 have_default = 0;
145 u32 n_entries;
Neale Ranns5e575b12016-10-03 09:40:25 +0100146
147 ASSERT (NULL != dst_prefix);
148 ASSERT (NULL != src_prefix);
149
150 ip_prefix_to_fib_prefix (dst_prefix, &dst_fib_prefix);
151 ip_prefix_to_fib_prefix (src_prefix, &src_fib_prefix);
152
153 fib_table_entry_delete (src_fib_index, &src_fib_prefix, FIB_SOURCE_LISP);
154
Florin Coras84794402016-11-29 17:14:06 -0800155 /* check if only default left or empty */
156 fib_prefix_t default_pref = {
157 .fp_proto = dst_fib_prefix.fp_proto
158 };
159
160 if (fib_table_lookup_exact_match (src_fib_index,
161 &default_pref) != FIB_NODE_INDEX_INVALID)
162 have_default = 1;
163
164 n_entries = fib_table_get_num_entries (src_fib_index,
165 src_fib_prefix.fp_proto,
166 FIB_SOURCE_LISP);
167 if (n_entries == 0 || (have_default && n_entries == 1))
Neale Ranns5e575b12016-10-03 09:40:25 +0100168 {
169 /*
Florin Corasfeeebfe2016-11-27 22:33:01 -0800170 * remove src FIB default route
171 */
Florin Coras84794402016-11-29 17:14:06 -0800172 if (have_default)
173 fib_table_entry_special_remove (src_fib_index, &default_pref,
174 FIB_SOURCE_LISP);
Florin Corasfeeebfe2016-11-27 22:33:01 -0800175
176 /*
177 * there's nothing left now, unlock the source FIB and the
Neale Ranns5e575b12016-10-03 09:40:25 +0100178 * destination route
179 */
180 fib_table_entry_special_remove (dst_fib_index,
181 &dst_fib_prefix, FIB_SOURCE_LISP);
182 fib_table_unlock (src_fib_index, src_fib_prefix.fp_proto);
183 }
184}
185
186/**
187 * @brief Add route to IP4 or IP6 SRC FIB.
188 *
189 * Adds a route to in the LISP SRC FIB with the result of the route
190 * being the DPO passed.
191 *
192 * @param[in] src_fib_index The index/ID of the SRC FIB
193 * @param[in] src_prefix Source IP prefix.
194 * @param[in] src_dpo The DPO the route will link to.
195 */
196static void
197ip_src_fib_add_route_w_dpo (u32 src_fib_index,
198 const ip_prefix_t * src_prefix,
199 const dpo_id_t * src_dpo)
200{
201 fib_prefix_t src_fib_prefix;
202
203 ip_prefix_to_fib_prefix (src_prefix, &src_fib_prefix);
204
205 /*
206 * add the entry into the source fib.
207 */
208 fib_node_index_t src_fei;
209
210 src_fei = fib_table_lookup_exact_match (src_fib_index, &src_fib_prefix);
211
212 if (FIB_NODE_INDEX_INVALID == src_fei ||
213 !fib_entry_is_sourced (src_fei, FIB_SOURCE_LISP))
214 {
215 fib_table_entry_special_dpo_add (src_fib_index,
216 &src_fib_prefix,
217 FIB_SOURCE_LISP,
218 FIB_ENTRY_FLAG_EXCLUSIVE, src_dpo);
219 }
220}
221
Neale Ranns5e575b12016-10-03 09:40:25 +0100222static fib_route_path_t *
223lisp_gpe_mk_fib_paths (const lisp_fwd_path_t * paths)
224{
225 const lisp_gpe_adjacency_t *ladj;
226 fib_route_path_t *rpaths = NULL;
227 u8 best_priority;
228 u32 ii;
229
230 vec_validate (rpaths, vec_len (paths) - 1);
231
232 best_priority = paths[0].priority;
233
234 vec_foreach_index (ii, paths)
235 {
236 if (paths[0].priority != best_priority)
237 break;
238
239 ladj = lisp_gpe_adjacency_get (paths[ii].lisp_adj);
240
241 ip_address_to_46 (&ladj->remote_rloc,
242 &rpaths[ii].frp_addr, &rpaths[ii].frp_proto);
243
244 rpaths[ii].frp_sw_if_index = ladj->sw_if_index;
245 rpaths[ii].frp_weight = (paths[ii].weight ? paths[ii].weight : 1);
Neale Ranns5e575b12016-10-03 09:40:25 +0100246 }
247
248 ASSERT (0 != vec_len (rpaths));
249
250 return (rpaths);
251}
252
253/**
254 * @brief Add route to IP4 or IP6 SRC FIB.
255 *
256 * Adds a route to in the LISP SRC FIB for the tunnel.
257 *
258 * @param[in] src_fib_index The index/ID of the SRC FIB
259 * @param[in] src_prefix Source IP prefix.
260 * @param[in] paths The paths from which to construct the
261 * load balance
262 */
263static void
264ip_src_fib_add_route (u32 src_fib_index,
265 const ip_prefix_t * src_prefix,
266 const lisp_fwd_path_t * paths)
267{
268 fib_prefix_t src_fib_prefix;
269 fib_route_path_t *rpaths;
270
271 ip_prefix_to_fib_prefix (src_prefix, &src_fib_prefix);
272
273 rpaths = lisp_gpe_mk_fib_paths (paths);
274
275 fib_table_entry_update (src_fib_index,
276 &src_fib_prefix,
277 FIB_SOURCE_LISP, FIB_ENTRY_FLAG_NONE, rpaths);
278 vec_free (rpaths);
279}
280
281
282static void
283create_fib_entries (lisp_gpe_fwd_entry_t * lfe)
284{
285 dpo_proto_t dproto;
286
287 dproto = (ip_prefix_version (&lfe->key->rmt.ippref) == IP4 ?
Neale Ranns450cd302016-11-09 17:49:42 +0000288 DPO_PROTO_IP4 : DPO_PROTO_IP6);
Neale Ranns5e575b12016-10-03 09:40:25 +0100289
290 lfe->src_fib_index = ip_dst_fib_add_route (lfe->eid_fib_index,
291 &lfe->key->rmt.ippref);
292
293 if (LISP_GPE_FWD_ENTRY_TYPE_NEGATIVE == lfe->type)
294 {
Neale Ranns948e00f2016-10-20 13:39:34 +0100295 dpo_id_t dpo = DPO_INVALID;
Neale Ranns5e575b12016-10-03 09:40:25 +0100296
297 switch (lfe->action)
298 {
299 case LISP_NO_ACTION:
300 /* TODO update timers? */
301 case LISP_FORWARD_NATIVE:
302 /* TODO check if route/next-hop for eid exists in fib and add
303 * more specific for the eid with the next-hop found */
304 case LISP_SEND_MAP_REQUEST:
305 /* insert tunnel that always sends map-request */
306 dpo_copy (&dpo, lisp_cp_dpo_get (dproto));
307 break;
308 case LISP_DROP:
309 /* for drop fwd entries, just add route, no need to add encap tunnel */
310 dpo_copy (&dpo, drop_dpo_get (dproto));
311 break;
312 }
313 ip_src_fib_add_route_w_dpo (lfe->src_fib_index,
314 &lfe->key->lcl.ippref, &dpo);
315 dpo_reset (&dpo);
316 }
317 else
318 {
319 ip_src_fib_add_route (lfe->src_fib_index,
320 &lfe->key->lcl.ippref, lfe->paths);
321 }
322}
323
324static void
325delete_fib_entries (lisp_gpe_fwd_entry_t * lfe)
326{
327 ip_src_dst_fib_del_route (lfe->src_fib_index,
328 &lfe->key->lcl.ippref,
329 lfe->eid_fib_index, &lfe->key->rmt.ippref);
330}
331
332static void
333gid_to_dp_address (gid_address_t * g, dp_address_t * d)
334{
335 switch (gid_address_type (g))
336 {
337 case GID_ADDR_IP_PREFIX:
338 case GID_ADDR_SRC_DST:
339 ip_prefix_copy (&d->ippref, &gid_address_ippref (g));
340 d->type = FID_ADDR_IP_PREF;
341 break;
342 case GID_ADDR_MAC:
343 default:
344 mac_copy (&d->mac, &gid_address_mac (g));
345 d->type = FID_ADDR_MAC;
346 break;
347 }
348}
349
350static lisp_gpe_fwd_entry_t *
351find_fwd_entry (lisp_gpe_main_t * lgm,
352 vnet_lisp_gpe_add_del_fwd_entry_args_t * a,
353 lisp_gpe_fwd_entry_key_t * key)
354{
355 uword *p;
356
357 memset (key, 0, sizeof (*key));
358
359 if (GID_ADDR_IP_PREFIX == gid_address_type (&a->rmt_eid))
360 {
361 /*
362 * the ip version of the source is not set to ip6 when the
363 * source is all zeros. force it.
364 */
365 ip_prefix_version (&gid_address_ippref (&a->lcl_eid)) =
366 ip_prefix_version (&gid_address_ippref (&a->rmt_eid));
367 }
368
369 gid_to_dp_address (&a->rmt_eid, &key->rmt);
370 gid_to_dp_address (&a->lcl_eid, &key->lcl);
371 key->vni = a->vni;
372
373 p = hash_get_mem (lgm->lisp_gpe_fwd_entries, key);
374
375 if (NULL != p)
376 {
377 return (pool_elt_at_index (lgm->lisp_fwd_entry_pool, p[0]));
378 }
379 return (NULL);
380}
381
382static int
383lisp_gpe_fwd_entry_path_sort (void *a1, void *a2)
384{
385 lisp_fwd_path_t *p1 = a1, *p2 = a2;
386
387 return (p1->priority - p2->priority);
388}
389
390static void
391lisp_gpe_fwd_entry_mk_paths (lisp_gpe_fwd_entry_t * lfe,
392 vnet_lisp_gpe_add_del_fwd_entry_args_t * a)
393{
Neale Ranns5e575b12016-10-03 09:40:25 +0100394 lisp_fwd_path_t *path;
395 u32 index;
396
Neale Ranns5e575b12016-10-03 09:40:25 +0100397 vec_validate (lfe->paths, vec_len (a->locator_pairs) - 1);
398
399 vec_foreach_index (index, a->locator_pairs)
400 {
401 path = &lfe->paths[index];
402
403 path->priority = a->locator_pairs[index].priority;
404 path->weight = a->locator_pairs[index].weight;
405
406 path->lisp_adj =
407 lisp_gpe_adjacency_find_or_create_and_lock (&a->locator_pairs
408 [index],
Filip Tehlard5fcc462016-10-17 16:20:18 +0200409 a->dp_table, lfe->key->vni);
Neale Ranns5e575b12016-10-03 09:40:25 +0100410 }
411 vec_sort_with_function (lfe->paths, lisp_gpe_fwd_entry_path_sort);
412}
413
414/**
415 * @brief Add/Delete LISP IP forwarding entry.
416 *
417 * creation of forwarding entries for IP LISP overlay:
418 *
419 * @param[in] lgm Reference to @ref lisp_gpe_main_t.
420 * @param[in] a Parameters for building the forwarding entry.
421 *
422 * @return 0 on success.
423 */
424static int
425add_ip_fwd_entry (lisp_gpe_main_t * lgm,
426 vnet_lisp_gpe_add_del_fwd_entry_args_t * a)
427{
428 lisp_gpe_fwd_entry_key_t key;
429 lisp_gpe_fwd_entry_t *lfe;
430 fib_protocol_t fproto;
431
432 lfe = find_fwd_entry (lgm, a, &key);
433
434 if (NULL != lfe)
435 /* don't support updates */
436 return VNET_API_ERROR_INVALID_VALUE;
437
438 pool_get (lgm->lisp_fwd_entry_pool, lfe);
439 memset (lfe, 0, sizeof (*lfe));
440 lfe->key = clib_mem_alloc (sizeof (key));
441 memcpy (lfe->key, &key, sizeof (key));
442
443 hash_set_mem (lgm->lisp_gpe_fwd_entries, lfe->key,
444 lfe - lgm->lisp_fwd_entry_pool);
445
446 fproto = (IP4 == ip_prefix_version (&fid_addr_ippref (&lfe->key->rmt)) ?
447 FIB_PROTOCOL_IP4 : FIB_PROTOCOL_IP6);
448
449 lfe->type = (a->is_negative ?
450 LISP_GPE_FWD_ENTRY_TYPE_NEGATIVE :
451 LISP_GPE_FWD_ENTRY_TYPE_NORMAL);
452 lfe->tenant = lisp_gpe_tenant_find_or_create (lfe->key->vni);
453 lfe->eid_table_id = a->table_id;
454 lfe->eid_fib_index = fib_table_find_or_create_and_lock (fproto,
455 lfe->eid_table_id);
456
457 if (LISP_GPE_FWD_ENTRY_TYPE_NEGATIVE != lfe->type)
458 {
459 lisp_gpe_fwd_entry_mk_paths (lfe, a);
460 }
461
462 create_fib_entries (lfe);
463
464 return (0);
465}
466
467static void
468del_ip_fwd_entry_i (lisp_gpe_main_t * lgm, lisp_gpe_fwd_entry_t * lfe)
469{
470 lisp_fwd_path_t *path;
471 fib_protocol_t fproto;
472
473 vec_foreach (path, lfe->paths)
474 {
475 lisp_gpe_adjacency_unlock (path->lisp_adj);
476 }
477
478 delete_fib_entries (lfe);
479
480 fproto = (IP4 == ip_prefix_version (&fid_addr_ippref (&lfe->key->rmt)) ?
481 FIB_PROTOCOL_IP4 : FIB_PROTOCOL_IP6);
482 fib_table_unlock (lfe->eid_fib_index, fproto);
483
484 hash_unset_mem (lgm->lisp_gpe_fwd_entries, lfe->key);
485 clib_mem_free (lfe->key);
486 pool_put (lgm->lisp_fwd_entry_pool, lfe);
487}
488
489/**
490 * @brief Add/Delete LISP IP forwarding entry.
491 *
492 * removal of forwarding entries for IP LISP overlay:
493 *
494 * @param[in] lgm Reference to @ref lisp_gpe_main_t.
495 * @param[in] a Parameters for building the forwarding entry.
496 *
497 * @return 0 on success.
498 */
499static int
500del_ip_fwd_entry (lisp_gpe_main_t * lgm,
501 vnet_lisp_gpe_add_del_fwd_entry_args_t * a)
502{
503 lisp_gpe_fwd_entry_key_t key;
504 lisp_gpe_fwd_entry_t *lfe;
505
506 lfe = find_fwd_entry (lgm, a, &key);
507
508 if (NULL == lfe)
509 /* no such entry */
510 return VNET_API_ERROR_INVALID_VALUE;
511
512 del_ip_fwd_entry_i (lgm, lfe);
513
514 return (0);
515}
516
517static void
518make_mac_fib_key (BVT (clib_bihash_kv) * kv, u16 bd_index, u8 src_mac[6],
519 u8 dst_mac[6])
520{
521 kv->key[0] = (((u64) bd_index) << 48) | mac_to_u64 (dst_mac);
522 kv->key[1] = mac_to_u64 (src_mac);
523 kv->key[2] = 0;
524}
525
526/**
527 * @brief Lookup L2 SD FIB entry
528 *
529 * Does a vni + dest + source lookup in the L2 LISP FIB. If the lookup fails
530 * it tries a second time with source set to 0 (i.e., a simple dest lookup).
531 *
532 * @param[in] lgm Reference to @ref lisp_gpe_main_t.
533 * @param[in] bd_index Bridge domain index.
534 * @param[in] src_mac Source mac address.
535 * @param[in] dst_mac Destination mac address.
536 *
537 * @return index of mapping matching the lookup key.
538 */
539index_t
540lisp_l2_fib_lookup (lisp_gpe_main_t * lgm, u16 bd_index, u8 src_mac[6],
541 u8 dst_mac[6])
542{
543 int rv;
544 BVT (clib_bihash_kv) kv, value;
545
546 make_mac_fib_key (&kv, bd_index, src_mac, dst_mac);
547 rv = BV (clib_bihash_search_inline_2) (&lgm->l2_fib, &kv, &value);
548
549 /* no match, try with src 0, catch all for dst */
550 if (rv != 0)
551 {
552 kv.key[1] = 0;
553 rv = BV (clib_bihash_search_inline_2) (&lgm->l2_fib, &kv, &value);
554 if (rv == 0)
555 return value.value;
556 }
Filip Tehlard5fcc462016-10-17 16:20:18 +0200557 else
558 return value.value;
Neale Ranns5e575b12016-10-03 09:40:25 +0100559
560 return lisp_gpe_main.l2_lb_cp_lkup.dpoi_index;
561}
562
563/**
564 * @brief Add/del L2 SD FIB entry
565 *
566 * Inserts value in L2 FIB keyed by vni + dest + source. If entry is
567 * overwritten the associated value is returned.
568 *
569 * @param[in] lgm Reference to @ref lisp_gpe_main_t.
570 * @param[in] bd_index Bridge domain index.
571 * @param[in] src_mac Source mac address.
572 * @param[in] dst_mac Destination mac address.
573 * @param[in] val Value to add.
574 * @param[in] is_add Add/del flag.
575 *
576 * @return ~0 or value of overwritten entry.
577 */
578static u32
579lisp_l2_fib_add_del_entry (u16 bd_index, u8 src_mac[6],
580 u8 dst_mac[6], const dpo_id_t * dpo, u8 is_add)
581{
582 lisp_gpe_main_t *lgm = &lisp_gpe_main;
583 BVT (clib_bihash_kv) kv, value;
584 u32 old_val = ~0;
585
586 make_mac_fib_key (&kv, bd_index, src_mac, dst_mac);
587
588 if (BV (clib_bihash_search) (&lgm->l2_fib, &kv, &value) == 0)
589 old_val = value.value;
590
591 if (!is_add)
592 BV (clib_bihash_add_del) (&lgm->l2_fib, &kv, 0 /* is_add */ );
593 else
594 {
595 kv.value = dpo->dpoi_index;
596 BV (clib_bihash_add_del) (&lgm->l2_fib, &kv, 1 /* is_add */ );
597 }
598 return old_val;
599}
600
601#define L2_FIB_DEFAULT_HASH_NUM_BUCKETS (64 * 1024)
602#define L2_FIB_DEFAULT_HASH_MEMORY_SIZE (32<<20)
603
604static void
605l2_fib_init (lisp_gpe_main_t * lgm)
606{
607 index_t lbi;
608
609 BV (clib_bihash_init) (&lgm->l2_fib, "l2 fib",
610 1 << max_log2 (L2_FIB_DEFAULT_HASH_NUM_BUCKETS),
611 L2_FIB_DEFAULT_HASH_MEMORY_SIZE);
612
613 /*
614 * the result from a 'miss' in a L2 Table
615 */
616 lbi = load_balance_create (1, DPO_PROTO_ETHERNET, 0);
617 load_balance_set_bucket (lbi, 0, lisp_cp_dpo_get (DPO_PROTO_ETHERNET));
618
619 dpo_set (&lgm->l2_lb_cp_lkup, DPO_LOAD_BALANCE, DPO_PROTO_ETHERNET, lbi);
620}
621
622static void
623del_l2_fwd_entry_i (lisp_gpe_main_t * lgm, lisp_gpe_fwd_entry_t * lfe)
624{
625 lisp_fwd_path_t *path;
626
Florin Coras2ccf7682016-10-04 18:03:49 +0300627 if (LISP_GPE_FWD_ENTRY_TYPE_NEGATIVE != lfe->type)
628 {
629 vec_foreach (path, lfe->paths)
630 {
631 lisp_gpe_adjacency_unlock (path->lisp_adj);
632 }
633 fib_path_list_child_remove (lfe->l2.path_list_index,
634 lfe->l2.child_index);
635 }
Neale Ranns5e575b12016-10-03 09:40:25 +0100636
637 lisp_l2_fib_add_del_entry (lfe->l2.eid_bd_index,
638 fid_addr_mac (&lfe->key->lcl),
639 fid_addr_mac (&lfe->key->rmt), NULL, 0);
640
Neale Ranns5e575b12016-10-03 09:40:25 +0100641 hash_unset_mem (lgm->lisp_gpe_fwd_entries, lfe->key);
642 clib_mem_free (lfe->key);
643 pool_put (lgm->lisp_fwd_entry_pool, lfe);
644}
645
646/**
647 * @brief Delete LISP L2 forwarding entry.
648 *
649 * Coordinates the removal of forwarding entries for L2 LISP overlay:
650 *
651 * @param[in] lgm Reference to @ref lisp_gpe_main_t.
652 * @param[in] a Parameters for building the forwarding entry.
653 *
654 * @return 0 on success.
655 */
656static int
657del_l2_fwd_entry (lisp_gpe_main_t * lgm,
658 vnet_lisp_gpe_add_del_fwd_entry_args_t * a)
659{
660 lisp_gpe_fwd_entry_key_t key;
661 lisp_gpe_fwd_entry_t *lfe;
662
663 lfe = find_fwd_entry (lgm, a, &key);
664
Florin Coras2ccf7682016-10-04 18:03:49 +0300665 if (NULL == lfe)
Neale Ranns5e575b12016-10-03 09:40:25 +0100666 return VNET_API_ERROR_INVALID_VALUE;
667
668 del_l2_fwd_entry_i (lgm, lfe);
669
670 return (0);
671}
672
673/**
674 * @brief Construct and insert the forwarding information used by a L2 entry
675 */
676static void
677lisp_gpe_l2_update_fwding (lisp_gpe_fwd_entry_t * lfe)
678{
679 lisp_gpe_main_t *lgm = &lisp_gpe_main;
Neale Ranns948e00f2016-10-20 13:39:34 +0100680 dpo_id_t dpo = DPO_INVALID;
Neale Ranns5e575b12016-10-03 09:40:25 +0100681
682 if (LISP_GPE_FWD_ENTRY_TYPE_NEGATIVE != lfe->type)
683 {
684 fib_path_list_contribute_forwarding (lfe->l2.path_list_index,
685 FIB_FORW_CHAIN_TYPE_ETHERNET,
686 &lfe->l2.dpo);
687 dpo_copy (&dpo, &lfe->l2.dpo);
688 }
689 else
690 {
691 dpo_copy (&dpo, &lgm->l2_lb_cp_lkup);
692 }
693
694 /* add entry to l2 lisp fib */
695 lisp_l2_fib_add_del_entry (lfe->l2.eid_bd_index,
696 fid_addr_mac (&lfe->key->lcl),
697 fid_addr_mac (&lfe->key->rmt), &dpo, 1);
698
699 dpo_reset (&dpo);
700}
701
702/**
703 * @brief Add LISP L2 forwarding entry.
704 *
705 * Coordinates the creation of forwarding entries for L2 LISP overlay:
706 * creates lisp-gpe tunnel and injects new entry in Source/Dest L2 FIB.
707 *
708 * @param[in] lgm Reference to @ref lisp_gpe_main_t.
709 * @param[in] a Parameters for building the forwarding entry.
710 *
711 * @return 0 on success.
712 */
713static int
714add_l2_fwd_entry (lisp_gpe_main_t * lgm,
715 vnet_lisp_gpe_add_del_fwd_entry_args_t * a)
716{
717 lisp_gpe_fwd_entry_key_t key;
718 bd_main_t *bdm = &bd_main;
719 lisp_gpe_fwd_entry_t *lfe;
720 uword *bd_indexp;
721
722 bd_indexp = hash_get (bdm->bd_index_by_bd_id, a->bd_id);
723 if (!bd_indexp)
724 {
725 clib_warning ("bridge domain %d doesn't exist", a->bd_id);
726 return -1;
727 }
728
729 lfe = find_fwd_entry (lgm, a, &key);
730
731 if (NULL != lfe)
732 /* don't support updates */
733 return VNET_API_ERROR_INVALID_VALUE;
734
735 pool_get (lgm->lisp_fwd_entry_pool, lfe);
736 memset (lfe, 0, sizeof (*lfe));
737 lfe->key = clib_mem_alloc (sizeof (key));
738 memcpy (lfe->key, &key, sizeof (key));
739
740 hash_set_mem (lgm->lisp_gpe_fwd_entries, lfe->key,
741 lfe - lgm->lisp_fwd_entry_pool);
742
743 lfe->type = (a->is_negative ?
744 LISP_GPE_FWD_ENTRY_TYPE_NEGATIVE :
745 LISP_GPE_FWD_ENTRY_TYPE_NORMAL);
746 lfe->l2.eid_bd_id = a->bd_id;
747 lfe->l2.eid_bd_index = bd_indexp[0];
748 lfe->tenant = lisp_gpe_tenant_find_or_create (lfe->key->vni);
749
750 if (LISP_GPE_FWD_ENTRY_TYPE_NEGATIVE != lfe->type)
751 {
752 fib_route_path_t *rpaths;
753
754 /*
755 * Make the sorted array of LISP paths with their resp. adjacency
756 */
757 lisp_gpe_fwd_entry_mk_paths (lfe, a);
758
759 /*
760 * From the LISP paths, construct a FIB path list that will
761 * contribute a load-balance.
762 */
763 rpaths = lisp_gpe_mk_fib_paths (lfe->paths);
764
765 lfe->l2.path_list_index =
766 fib_path_list_create (FIB_PATH_LIST_FLAG_NONE, rpaths);
767
768 /*
769 * become a child of the path-list so we receive updates when
770 * its forwarding state changes. this includes an implicit lock.
771 */
772 lfe->l2.child_index =
773 fib_path_list_child_add (lfe->l2.path_list_index,
774 FIB_NODE_TYPE_LISP_GPE_FWD_ENTRY,
775 lfe - lgm->lisp_fwd_entry_pool);
776 }
777 else
778 {
779 lfe->action = a->action;
780 }
781
782 lisp_gpe_l2_update_fwding (lfe);
783
784 return 0;
785}
786
787/**
788 * @brief conver from the embedded fib_node_t struct to the LSIP entry
789 */
790static lisp_gpe_fwd_entry_t *
791lisp_gpe_fwd_entry_from_fib_node (fib_node_t * node)
792{
793 return ((lisp_gpe_fwd_entry_t *) (((char *) node) -
794 STRUCT_OFFSET_OF (lisp_gpe_fwd_entry_t,
795 node)));
796}
797
798/**
799 * @brief Function invoked during a backwalk of the FIB graph
800 */
801static fib_node_back_walk_rc_t
802lisp_gpe_fib_node_back_walk (fib_node_t * node,
803 fib_node_back_walk_ctx_t * ctx)
804{
805 lisp_gpe_l2_update_fwding (lisp_gpe_fwd_entry_from_fib_node (node));
806
807 return (FIB_NODE_BACK_WALK_CONTINUE);
808}
809
810/**
811 * @brief Get a fib_node_t struct from the index of a LISP fwd entry
812 */
813static fib_node_t *
814lisp_gpe_fwd_entry_get_fib_node (fib_node_index_t index)
815{
816 lisp_gpe_main_t *lgm = &lisp_gpe_main;
817 lisp_gpe_fwd_entry_t *lfe;
818
819 lfe = pool_elt_at_index (lgm->lisp_fwd_entry_pool, index);
820
821 return (&(lfe->node));
822}
823
824/**
825 * @brief An indication from the graph that the last lock has gone
826 */
827static void
828lisp_gpe_fwd_entry_fib_node_last_lock_gone (fib_node_t * node)
829{
830 /* We don't manage the locks of the LISP objects via the graph, since
831 * this object has no children. so this is a no-op. */
832}
833
834/**
835 * @brief Virtual function table to register with FIB for the LISP type
836 */
837const static fib_node_vft_t lisp_fwd_vft = {
838 .fnv_get = lisp_gpe_fwd_entry_get_fib_node,
839 .fnv_last_lock = lisp_gpe_fwd_entry_fib_node_last_lock_gone,
840 .fnv_back_walk = lisp_gpe_fib_node_back_walk,
841};
842
843/**
844 * @brief Forwarding entry create/remove dispatcher.
845 *
846 * Calls l2 or l3 forwarding entry add/del function based on input data.
847 *
848 * @param[in] a Forwarding entry parameters.
849 * @param[out] hw_if_indexp NOT USED
850 *
851 * @return 0 on success.
852 */
853int
854vnet_lisp_gpe_add_del_fwd_entry (vnet_lisp_gpe_add_del_fwd_entry_args_t * a,
855 u32 * hw_if_indexp)
856{
857 lisp_gpe_main_t *lgm = &lisp_gpe_main;
858 u8 type;
859
860 if (vnet_lisp_gpe_enable_disable_status () == 0)
861 {
862 clib_warning ("LISP is disabled!");
863 return VNET_API_ERROR_LISP_DISABLED;
864 }
865
866 type = gid_address_type (&a->rmt_eid);
867 switch (type)
868 {
869 case GID_ADDR_IP_PREFIX:
870 if (a->is_add)
871 return add_ip_fwd_entry (lgm, a);
872 else
873 return del_ip_fwd_entry (lgm, a);
874 break;
875 case GID_ADDR_MAC:
876 if (a->is_add)
877 return add_l2_fwd_entry (lgm, a);
878 else
879 return del_l2_fwd_entry (lgm, a);
880 default:
881 clib_warning ("Forwarding entries for type %d not supported!", type);
882 return -1;
883 }
884}
885
886/**
887 * @brief Flush all the forwrding entries
888 */
889void
890vnet_lisp_gpe_fwd_entry_flush (void)
891{
892 lisp_gpe_main_t *lgm = &lisp_gpe_main;
893 lisp_gpe_fwd_entry_t *lfe;
894
895 /* *INDENT-OFF* */
896 pool_foreach (lfe, lgm->lisp_fwd_entry_pool,
897 ({
898 switch (fid_addr_type(&lfe->key->rmt))
899 {
900 case FID_ADDR_MAC:
901 del_l2_fwd_entry_i (lgm, lfe);
902 break;
903 case FID_ADDR_IP_PREF:
904 del_ip_fwd_entry_i (lgm, lfe);
905 break;
906 }
907 }));
908 /* *INDENT-ON* */
909}
910
911static u8 *
912format_lisp_fwd_path (u8 * s, va_list ap)
913{
914 lisp_fwd_path_t *lfp = va_arg (ap, lisp_fwd_path_t *);
915
Filip Tehlarc3af7bf2017-01-13 14:13:09 +0100916 s = format (s, "weight:%d ", lfp->weight);
Neale Ranns5e575b12016-10-03 09:40:25 +0100917 s = format (s, "adj:[%U]\n",
918 format_lisp_gpe_adjacency,
919 lisp_gpe_adjacency_get (lfp->lisp_adj),
920 LISP_GPE_ADJ_FORMAT_FLAG_NONE);
921
922 return (s);
923}
924
925typedef enum lisp_gpe_fwd_entry_format_flag_t_
926{
927 LISP_GPE_FWD_ENTRY_FORMAT_NONE = (0 << 0),
928 LISP_GPE_FWD_ENTRY_FORMAT_DETAIL = (1 << 1),
929} lisp_gpe_fwd_entry_format_flag_t;
930
931
932static u8 *
933format_lisp_gpe_fwd_entry (u8 * s, va_list ap)
934{
935 lisp_gpe_main_t *lgm = &lisp_gpe_main;
936 lisp_gpe_fwd_entry_t *lfe = va_arg (ap, lisp_gpe_fwd_entry_t *);
937 lisp_gpe_fwd_entry_format_flag_t flags =
938 va_arg (ap, lisp_gpe_fwd_entry_format_flag_t);
939
940 s = format (s, "VNI:%d VRF:%d EID: %U -> %U [index:%d]",
941 lfe->key->vni, lfe->eid_table_id,
942 format_fid_address, &lfe->key->lcl,
943 format_fid_address, &lfe->key->rmt,
944 lfe - lgm->lisp_fwd_entry_pool);
945
946 if (LISP_GPE_FWD_ENTRY_TYPE_NEGATIVE == lfe->type)
947 {
948 s = format (s, "\n Negative - action:%U",
949 format_negative_mapping_action, lfe->action);
950 }
951 else
952 {
953 lisp_fwd_path_t *path;
954
955 s = format (s, "\n via:");
956 vec_foreach (path, lfe->paths)
957 {
958 s = format (s, "\n %U", format_lisp_fwd_path, path);
959 }
960 }
961
962 if (flags & LISP_GPE_FWD_ENTRY_FORMAT_DETAIL)
963 {
964 switch (fid_addr_type (&lfe->key->rmt))
965 {
966 case FID_ADDR_MAC:
967 s = format (s, " fib-path-list:%d\n", lfe->l2.path_list_index);
968 s = format (s, " dpo:%U\n", format_dpo_id, &lfe->l2.dpo, 0);
969 break;
970 case FID_ADDR_IP_PREF:
971 break;
972 }
973 }
974
975 return (s);
976}
977
978static clib_error_t *
979lisp_gpe_fwd_entry_show (vlib_main_t * vm,
980 unformat_input_t * input, vlib_cli_command_t * cmd)
981{
982 lisp_gpe_main_t *lgm = &lisp_gpe_main;
983 lisp_gpe_fwd_entry_t *lfe;
984 index_t index;
985 u32 vni = ~0;
986
987 if (unformat (input, "vni %d", &vni))
988 ;
989 else if (unformat (input, "%d", &index))
990 {
991 if (!pool_is_free_index (lgm->lisp_fwd_entry_pool, index))
992 {
993 lfe = pool_elt_at_index (lgm->lisp_fwd_entry_pool, index);
994
995 vlib_cli_output (vm, "[%d@] %U",
996 index,
997 format_lisp_gpe_fwd_entry, lfe,
998 LISP_GPE_FWD_ENTRY_FORMAT_DETAIL);
999 }
1000 else
1001 {
1002 vlib_cli_output (vm, "entry %d invalid", index);
1003 }
1004
1005 return (NULL);
1006 }
1007
1008 /* *INDENT-OFF* */
1009 pool_foreach (lfe, lgm->lisp_fwd_entry_pool,
1010 ({
1011 if ((vni == ~0) ||
1012 (lfe->key->vni == vni))
1013 vlib_cli_output (vm, "%U", format_lisp_gpe_fwd_entry, lfe,
1014 LISP_GPE_FWD_ENTRY_FORMAT_NONE);
1015 }));
1016 /* *INDENT-ON* */
1017
1018 return (NULL);
1019}
1020
1021/* *INDENT-OFF* */
1022VLIB_CLI_COMMAND (lisp_gpe_fwd_entry_show_command, static) = {
1023 .path = "show lisp gpe entry",
1024 .short_help = "show lisp gpe entry vni <vni> vrf <vrf> [leid <leid>] reid <reid>",
1025 .function = lisp_gpe_fwd_entry_show,
1026};
1027/* *INDENT-ON* */
1028
1029clib_error_t *
1030lisp_gpe_fwd_entry_init (vlib_main_t * vm)
1031{
1032 lisp_gpe_main_t *lgm = &lisp_gpe_main;
1033 clib_error_t *error = NULL;
1034
1035 if ((error = vlib_call_init_function (vm, lisp_cp_dpo_module_init)))
1036 return (error);
1037
1038 l2_fib_init (lgm);
1039
1040 fib_node_register_type (FIB_NODE_TYPE_LISP_GPE_FWD_ENTRY, &lisp_fwd_vft);
1041
1042 return (error);
1043}
1044
1045VLIB_INIT_FUNCTION (lisp_gpe_fwd_entry_init);
1046
1047/*
1048 * fd.io coding-style-patch-verification: ON
1049 *
1050 * Local Variables:
1051 * eval: (c-set-style "gnu")
1052 * End:
1053 */