blob: 8f3dae8d7b5ff82a2859cbdc4a50d023040cffcf [file] [log] [blame]
Neale Ranns32e1c012016-11-22 17:07:28 +00001/*
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/mfib/ip6_mfib.h>
17
18#include <vnet/mfib/mfib_table.h>
19#include <vnet/mfib/mfib_entry.h>
20#include <vnet/fib/ip6_fib.h>
21
22/**
23 * The number of bytes in an address/ask key in the radix tree
24 * First byte is the length in bytes.
25 */
26#define IP6_MFIB_KEY_LEN 33
27
28/**
29 * Key and mask for radix
30 */
31typedef struct ip6_mfib_key_t_
32{
33 u8 key[IP6_MFIB_KEY_LEN];
34 u8 mask[IP6_MFIB_KEY_LEN];
35} ip6_mfib_key_t;
36
37/**
38 * An object that is inserted into the radix tree.
39 * Since it's in the tree and has pointers, it cannot realloc and so cannot
40 * come from a vlib pool.
41 */
42typedef struct ip6_mfib_node_t_
43{
44 struct radix_node i6mn_nodes[2];
45 ip6_mfib_key_t i6mn_key;
46 index_t i6mn_entry;
47} ip6_mfib_node_t;
48
49static const mfib_prefix_t all_zeros = {
50 /* (*,*) */
51 .fp_src_addr = {
52 .ip6.as_u64 = {0, 0},
53 },
54 .fp_grp_addr = {
55 .ip6.as_u64 = {0, 0},
56 },
57 .fp_len = 0,
58 .fp_proto = FIB_PROTOCOL_IP6,
59};
60
61typedef enum ip6_mfib_special_type_t_ {
62 IP6_MFIB_SPECIAL_TYPE_NONE,
63 IP6_MFIB_SPECIAL_TYPE_SOLICITED,
64} ip6_mfib_special_type_t;
65
66typedef struct ip6_mfib_special_t_ {
67 /**
68 * @brief solicited or not
69 */
70 ip6_mfib_special_type_t ims_type;
71
72 /**
73 * @brief the Prefix length
74 */
75 u8 ims_len;
76
77 /**
78 * @brief The last byte of the mcast address
79 */
80 u8 ims_byte;
81 /**
82 * @brief The scope of the address
83 */
84 u8 ims_scope;
85} ip6_mfib_special_t;
86
87static const ip6_mfib_special_t ip6_mfib_specials[] =
88{
89 {
90 /*
91 * Add ff02::1:ff00:0/104 via local route for all tables.
92 * This is required for neighbor discovery to work.
93 */
94 .ims_type = IP6_MFIB_SPECIAL_TYPE_SOLICITED,
95 .ims_len = 104,
96 },
97 {
98 /*
99 * all-routers multicast address
100 */
101 .ims_type = IP6_MFIB_SPECIAL_TYPE_NONE,
102 .ims_scope = IP6_MULTICAST_SCOPE_link_local,
103 .ims_byte = IP6_MULTICAST_GROUP_ID_all_routers,
104 .ims_len = 128,
105 },
106 {
107 /*
108 * all-nodes multicast address
109 */
110 .ims_type = IP6_MFIB_SPECIAL_TYPE_NONE,
111 .ims_scope = IP6_MULTICAST_SCOPE_link_local,
112 .ims_byte = IP6_MULTICAST_GROUP_ID_all_hosts,
113 .ims_len = 128,
114 },
115 {
116 /*
117 * Add all-mldv2 multicast address via local route for all tables
118 */
119 .ims_type = IP6_MFIB_SPECIAL_TYPE_NONE,
120 .ims_len = 128,
121 .ims_scope = IP6_MULTICAST_SCOPE_link_local,
122 .ims_byte = IP6_MULTICAST_GROUP_ID_mldv2_routers,
123 }
124};
125
126#define FOR_EACH_IP6_SPECIAL(_pfx, _body) \
127{ \
128 const ip6_mfib_special_t *_spec; \
129 u8 _ii; \
130 for (_ii = 0; \
131 _ii < ARRAY_LEN(ip6_mfib_specials); \
132 _ii++) \
133 { \
134 _spec = &ip6_mfib_specials[_ii]; \
135 if (IP6_MFIB_SPECIAL_TYPE_SOLICITED == _spec->ims_type) \
136 { \
137 ip6_set_solicited_node_multicast_address( \
138 &(_pfx)->fp_grp_addr.ip6, 0); \
139 } \
140 else \
141 { \
142 ip6_set_reserved_multicast_address ( \
143 &(_pfx)->fp_grp_addr.ip6, \
144 _spec->ims_scope, \
145 _spec->ims_byte); \
146 } \
147 (_pfx)->fp_len = _spec->ims_len; \
148 do { _body; } while (0); \
149 } \
150}
151
152
153static u32
154ip6_create_mfib_with_table_id (u32 table_id)
155{
156 mfib_table_t *mfib_table;
157 mfib_prefix_t pfx = {
158 .fp_proto = FIB_PROTOCOL_IP6,
159 };
160 const fib_route_path_t path_for_us = {
161 .frp_proto = FIB_PROTOCOL_IP6,
162 .frp_addr = zero_addr,
163 .frp_sw_if_index = 0xffffffff,
164 .frp_fib_index = ~0,
165 .frp_weight = 0,
166 .frp_flags = FIB_ROUTE_PATH_LOCAL,
167 };
168
169 pool_get_aligned(ip6_main.mfibs, mfib_table, CLIB_CACHE_LINE_BYTES);
170 memset(mfib_table, 0, sizeof(*mfib_table));
171
172 mfib_table->mft_proto = FIB_PROTOCOL_IP6;
173 mfib_table->mft_index =
174 mfib_table->v6.index =
175 (mfib_table - ip6_main.mfibs);
176
177 hash_set (ip6_main.mfib_index_by_table_id,
178 table_id,
179 mfib_table->mft_index);
180
181 mfib_table->mft_table_id =
182 mfib_table->v6.table_id =
183 table_id;
184
185 mfib_table_lock(mfib_table->mft_index, FIB_PROTOCOL_IP6);
186
187 mfib_table->v6.rhead =
188 clib_mem_alloc_aligned (sizeof(*mfib_table->v6.rhead),
189 CLIB_CACHE_LINE_BYTES);
190 rn_inithead0(mfib_table->v6.rhead, 8);
191
192 /*
193 * add the special entries into the new FIB
194 */
195 mfib_table_entry_update(mfib_table->mft_index,
196 &all_zeros,
197 MFIB_SOURCE_DEFAULT_ROUTE,
198 MFIB_ENTRY_FLAG_DROP);
199
200 /*
201 * Add each of the specials
202 */
203 FOR_EACH_IP6_SPECIAL(&pfx,
204 ({
205 mfib_table_entry_path_update(mfib_table->mft_index,
206 &pfx,
207 MFIB_SOURCE_SPECIAL,
208 &path_for_us,
209 MFIB_ITF_FLAG_FORWARD);
210 }));
211
212 return (mfib_table->mft_index);
213}
214
215void
216ip6_mfib_table_destroy (ip6_mfib_t *mfib)
217{
218 mfib_table_t *mfib_table = (mfib_table_t*)mfib;
219 fib_node_index_t mfei;
220 mfib_prefix_t pfx = {
221 .fp_proto = FIB_PROTOCOL_IP6,
222 };
223 const fib_route_path_t path_for_us = {
224 .frp_proto = FIB_PROTOCOL_IP6,
225 .frp_addr = zero_addr,
226 .frp_sw_if_index = 0xffffffff,
227 .frp_fib_index = ~0,
228 .frp_weight = 0,
229 .frp_flags = FIB_ROUTE_PATH_LOCAL,
230 };
231
232 /*
233 * remove all the specials we added when the table was created.
234 */
235 FOR_EACH_IP6_SPECIAL(&pfx,
236 {
237 mfib_table_entry_path_remove(mfib_table->mft_index,
238 &pfx,
239 MFIB_SOURCE_SPECIAL,
240 &path_for_us);
241 });
242
243 mfei = mfib_table_lookup_exact_match(mfib_table->mft_index, &all_zeros);
244 mfib_table_entry_delete_index(mfei, MFIB_SOURCE_DEFAULT_ROUTE);
245
246 /*
247 * validate no more routes.
248 */
249 ASSERT(0 == mfib_table->mft_total_route_counts);
250 ASSERT(~0 != mfib_table->mft_table_id);
251
252 hash_unset (ip6_main.mfib_index_by_table_id, mfib_table->mft_table_id);
253 clib_mem_free(mfib_table->v6.rhead);
254 pool_put(ip6_main.mfibs, mfib_table);
255}
256
257void
258ip6_mfib_interface_enable_disable (u32 sw_if_index, int is_enable)
259{
260 const fib_route_path_t path = {
261 .frp_proto = FIB_PROTOCOL_IP6,
262 .frp_addr = zero_addr,
263 .frp_sw_if_index = sw_if_index,
264 .frp_fib_index = ~0,
265 .frp_weight = 0,
266 };
267 mfib_prefix_t pfx = {
268 .fp_proto = FIB_PROTOCOL_IP6,
269 };
270 u32 mfib_index;
271
272 vec_validate (ip6_main.mfib_index_by_sw_if_index, sw_if_index);
273 mfib_index = ip6_mfib_table_get_index_for_sw_if_index(sw_if_index);
274
275 if (is_enable)
276 {
277 FOR_EACH_IP6_SPECIAL(&pfx,
278 {
279 mfib_table_entry_path_update(mfib_index,
280 &pfx,
281 MFIB_SOURCE_SPECIAL,
282 &path,
283 MFIB_ITF_FLAG_ACCEPT);
284 });
285 }
286 else
287 {
288 FOR_EACH_IP6_SPECIAL(&pfx,
289 {
290 mfib_table_entry_path_remove(mfib_index,
291 &pfx,
292 MFIB_SOURCE_SPECIAL,
293 &path);
294 });
295 }
296}
297
298u32
299ip6_mfib_table_find_or_create_and_lock (u32 table_id)
300{
301 u32 index;
302
303 index = ip6_mfib_index_from_table_id(table_id);
304 if (~0 == index)
305 return ip6_create_mfib_with_table_id(table_id);
306 mfib_table_lock(index, FIB_PROTOCOL_IP6);
307
308 return (index);
309}
310
311u32
312ip6_mfib_table_get_index_for_sw_if_index (u32 sw_if_index)
313{
314 if (sw_if_index >= vec_len(ip6_main.mfib_index_by_sw_if_index))
315 {
316 /*
317 * This is the case for interfaces that are not yet mapped to
318 * a IP table
319 */
320 return (~0);
321 }
322 return (ip6_main.mfib_index_by_sw_if_index[sw_if_index]);
323}
324
325#define IP6_MFIB_MK_KEY(_grp, _src, _key) \
326{ \
327 (_key)->key[0] = 33; \
328 memcpy((_key)->key+1, _grp, 16); \
329 memcpy((_key)->key+17, _src, 16); \
330}
331
332#define IP6_MFIB_MK_KEY_MASK(_grp, _src, _len, _key) \
333{ \
334 IP6_MFIB_MK_KEY(_grp, _src, _key); \
335 \
336 (_key)->mask[0] = 33; \
337 if (_len <= 128) \
338 { \
339 memcpy((_key)->mask+1, &ip6_main.fib_masks[_len], 16); \
340 memset((_key)->mask+17, 0, 16); \
341 } \
342 else \
343 { \
344 ASSERT(_len == 256); \
345 memcpy((_key)->mask+1, &ip6_main.fib_masks[128], 16); \
346 memcpy((_key)->mask+17, &ip6_main.fib_masks[128], 16); \
347 } \
348}
349
350/*
351 * ip6_fib_table_lookup_exact_match
352 *
353 * Exact match prefix lookup
354 */
355fib_node_index_t
356ip6_mfib_table_lookup_exact_match (const ip6_mfib_t *mfib,
357 const ip6_address_t *grp,
358 const ip6_address_t *src,
359 u32 len)
360{
361 ip6_mfib_node_t *i6mn;
362 ip6_mfib_key_t key;
363
364 IP6_MFIB_MK_KEY_MASK(grp, src, len, &key);
365
366 i6mn = (ip6_mfib_node_t*) rn_lookup(key.key, key.mask,
367 (struct radix_node_head *)mfib->rhead);
368
369 if (NULL == i6mn)
370 {
371 return (INDEX_INVALID);
372 }
373
374 return (i6mn->i6mn_entry);
375}
376
377/*
378 * ip6_fib_table_lookup
379 *
380 * Longest prefix match
381 */
382fib_node_index_t
383ip6_mfib_table_lookup (const ip6_mfib_t *mfib,
384 const ip6_address_t *src,
385 const ip6_address_t *grp,
386 u32 len)
387{
388 ip6_mfib_node_t *i6mn;
389 ip6_mfib_key_t key;
390
391 IP6_MFIB_MK_KEY_MASK(grp, src, len, &key);
392
393 i6mn = (ip6_mfib_node_t*) rn_search_m(key.key,
394 mfib->rhead->rnh_treetop,
395 key.mask);
396
397 ASSERT(NULL != i6mn);
398
399 return (i6mn->i6mn_entry);
400}
401
402/*
403 * ip6_fib_table_lookup
404 *
405 * Longest prefix match no mask
406 */
407fib_node_index_t
408ip6_mfib_table_lookup2 (const ip6_mfib_t *mfib,
409 const ip6_address_t *src,
410 const ip6_address_t *grp)
411{
412 ip6_mfib_node_t *i6mn;
413 ip6_mfib_key_t key;
414
415 IP6_MFIB_MK_KEY(grp, src, &key);
416
417 i6mn = (ip6_mfib_node_t*) rn_match(key.key,
418 (struct radix_node_head *)mfib->rhead); // const cast
419
420 ASSERT(NULL != i6mn);
421
422 return (i6mn->i6mn_entry);
423}
424
425void
426ip6_mfib_table_entry_insert (ip6_mfib_t *mfib,
427 const ip6_address_t *grp,
428 const ip6_address_t *src,
429 u32 len,
430 fib_node_index_t mfib_entry_index)
431{
432 ip6_mfib_node_t *i6mn = clib_mem_alloc(sizeof(*i6mn));
433
434 memset(i6mn, 0, sizeof(*i6mn));
435
436 IP6_MFIB_MK_KEY_MASK(grp, src, len, &i6mn->i6mn_key);
437 i6mn->i6mn_entry = mfib_entry_index;
438
439 if (NULL == rn_addroute(i6mn->i6mn_key.key,
440 i6mn->i6mn_key.mask,
441 mfib->rhead,
442 i6mn->i6mn_nodes))
443 {
444 ASSERT(0);
445 }
446}
447
448void
449ip6_mfib_table_entry_remove (ip6_mfib_t *mfib,
450 const ip6_address_t *grp,
451 const ip6_address_t *src,
452 u32 len)
453{
454 ip6_mfib_node_t *i6mn;
455 ip6_mfib_key_t key;
456
457 IP6_MFIB_MK_KEY_MASK(grp, src, len, &key);
458
459 i6mn = (ip6_mfib_node_t*) rn_delete(key.key, key.mask, mfib->rhead);
460
461 clib_mem_free(i6mn);
462}
463
464static clib_error_t *
465ip6_mfib_module_init (vlib_main_t * vm)
466{
467 return (NULL);
468}
469
470VLIB_INIT_FUNCTION(ip6_mfib_module_init);
471
472static void
473ip6_mfib_table_show_one (ip6_mfib_t *mfib,
474 vlib_main_t * vm,
475 ip6_address_t *src,
476 ip6_address_t *grp,
477 u32 mask_len)
478{
479 vlib_cli_output(vm, "%U",
480 format_mfib_entry,
481 ip6_mfib_table_lookup(mfib, src, grp, mask_len),
482 MFIB_ENTRY_FORMAT_DETAIL);
483}
484
485typedef struct ip6_mfib_show_ctx_t_ {
Neale Ranns32e1c012016-11-22 17:07:28 +0000486 fib_node_index_t *entries;
487} ip6_mfib_show_ctx_t;
488
489
490static int
Neale Ranns5a8123b2017-01-26 01:18:23 -0800491ip6_mfib_table_collect_entries (fib_node_index_t mfei, void *arg)
Neale Ranns32e1c012016-11-22 17:07:28 +0000492{
493 ip6_mfib_show_ctx_t *ctx = arg;
Neale Ranns32e1c012016-11-22 17:07:28 +0000494
Neale Ranns5a8123b2017-01-26 01:18:23 -0800495 vec_add1(ctx->entries, mfei);
Neale Ranns32e1c012016-11-22 17:07:28 +0000496
497 return (0);
498}
499
500static void
501ip6_mfib_table_show_all (ip6_mfib_t *mfib,
502 vlib_main_t * vm)
503{
504 fib_node_index_t *mfib_entry_index;
505 ip6_mfib_show_ctx_t ctx = {
Neale Ranns32e1c012016-11-22 17:07:28 +0000506 .entries = NULL,
507 };
508
Neale Ranns5a8123b2017-01-26 01:18:23 -0800509 ip6_mfib_table_walk(mfib,
510 ip6_mfib_table_collect_entries,
511 &ctx);
Neale Ranns32e1c012016-11-22 17:07:28 +0000512
513 vec_sort_with_function(ctx.entries, mfib_entry_cmp_for_sort);
514
515 vec_foreach(mfib_entry_index, ctx.entries)
516 {
517 vlib_cli_output(vm, "%U",
518 format_mfib_entry,
519 *mfib_entry_index,
520 MFIB_ENTRY_FORMAT_BRIEF);
521 }
522
523 vec_free(ctx.entries);
524}
525
Neale Ranns5a8123b2017-01-26 01:18:23 -0800526typedef struct ip6_mfib_radix_walk_ctx_t_
527{
528 mfib_table_walk_fn_t user_fn;
529 void *user_ctx;
530} ip6_mfib_radix_walk_ctx_t;
531
532static int
533ip6_mfib_table_radix_walk (struct radix_node *rn,
534 void *arg)
535{
536 ip6_mfib_radix_walk_ctx_t *ctx = arg;
537 ip6_mfib_node_t *i6mn;
538
539 i6mn = (ip6_mfib_node_t*) rn;
540
541 ctx->user_fn(i6mn->i6mn_entry, ctx->user_ctx);
542
543 return (0);
544}
545
546void
547ip6_mfib_table_walk (ip6_mfib_t *mfib,
548 mfib_table_walk_fn_t fn,
549 void *ctx)
550{
551 ip6_mfib_radix_walk_ctx_t rn_ctx = {
552 .user_fn = fn,
553 .user_ctx = ctx,
554 };
555
556 rn_walktree(mfib->rhead,
557 ip6_mfib_table_radix_walk,
558 &rn_ctx);
559}
560
Neale Ranns32e1c012016-11-22 17:07:28 +0000561static clib_error_t *
562ip6_show_mfib (vlib_main_t * vm,
563 unformat_input_t * input,
564 vlib_cli_command_t * cmd)
565{
566 ip6_main_t * im4 = &ip6_main;
567 mfib_table_t *mfib_table;
568 int verbose, matching;
569 ip6_address_t grp, src = {{0}};
570 u32 mask = 32;
571 int table_id = -1, fib_index = ~0;
572
573 verbose = 1;
574 matching = 0;
575
576 while (unformat_check_input (input) != UNFORMAT_END_OF_INPUT)
577 {
578 if (unformat (input, "brief") || unformat (input, "summary")
579 || unformat (input, "sum"))
580 verbose = 0;
581
582 else if (unformat (input, "%U %U",
583 unformat_ip6_address, &src,
584 unformat_ip6_address, &grp))
585 {
586 matching = 1;
587 mask = 64;
588 }
589 else if (unformat (input, "%U", unformat_ip6_address, &grp))
590 {
591 matching = 1;
592 mask = 32;
593 }
594 else if (unformat (input, "%U/%d",
595 unformat_ip6_address, &grp, &mask))
596 matching = 1;
597 else if (unformat (input, "table %d", &table_id))
598 ;
599 else if (unformat (input, "index %d", &fib_index))
600 ;
601 else
602 break;
603 }
604
605 pool_foreach (mfib_table, im4->mfibs,
606 ({
607 ip6_mfib_t *mfib = &mfib_table->v6;
608
609 if (table_id >= 0 && table_id != (int)mfib->table_id)
610 continue;
611 if (fib_index != ~0 && fib_index != (int)mfib->index)
612 continue;
613
614 vlib_cli_output (vm, "%U, fib_index %d",
615 format_mfib_table_name, mfib->index, FIB_PROTOCOL_IP6,
616 mfib->index);
617
618 /* Show summary? */
619 if (! verbose)
620 {
621 /* vlib_cli_output (vm, "%=20s%=16s", "Prefix length", "Count"); */
622 /* for (i = 0; i < ARRAY_LEN (mfib->fib_entry_by_dst_address); i++) */
623 /* { */
624 /* uword * hash = mfib->fib_entry_by_dst_address[i]; */
625 /* uword n_elts = hash_elts (hash); */
626 /* if (n_elts > 0) */
627 /* vlib_cli_output (vm, "%20d%16d", i, n_elts); */
628 /* } */
629 continue;
630 }
631
632 if (!matching)
633 {
634 ip6_mfib_table_show_all(mfib, vm);
635 }
636 else
637 {
638 ip6_mfib_table_show_one(mfib, vm, &src, &grp, mask);
639 }
640 }));
641
642 return 0;
643}
644
645/*
646 * This command displays the IPv4 MulticasrFIB Tables (VRF Tables) and
647 * the route entries for each table.
648 *
649 * @note This command will run for a long time when the FIB tables are
650 * comprised of millions of entries. For those senarios, consider displaying
651 * a single table or summary mode.
652 *
653 * @cliexpar
654 * Example of how to display all the IPv4 Multicast FIB tables:
655 * @cliexstart{show ip fib}
656 * ipv4-VRF:0, fib_index 0
657 * (*, 0.0.0.0/0): flags:D,
658 * Interfaces:
659 * multicast-ip6-chain
660 * [@1]: dpo-drop ip6
661 * (*, 232.1.1.1/32):
662 * Interfaces:
663 * test-eth1: Forward,
664 * test-eth2: Forward,
665 * test-eth0: Accept,
666 * multicast-ip6-chain
667 * [@2]: dpo-replicate: [index:1 buckets:2 to:[0:0]]
668 * [0] [@1]: ipv4-mcast: test-eth1: IP6: d0:d1:d2:d3:d4:01 -> 01:00:05:00:00:00
669 * [1] [@1]: ipv4-mcast: test-eth2: IP6: d0:d1:d2:d3:d4:02 -> 01:00:05:00:00:00
670 *
671 * @cliexend
672 * Example of how to display a summary of all IPv4 FIB tables:
673 * @cliexstart{show ip fib summary}
674 * ipv4-VRF:0, fib_index 0, flow hash: src dst sport dport proto
675 * Prefix length Count
676 * 0 1
677 * 8 2
678 * 32 4
679 * ipv4-VRF:7, fib_index 1, flow hash: src dst sport dport proto
680 * Prefix length Count
681 * 0 1
682 * 8 2
683 * 24 2
684 * 32 4
685 * @cliexend
686 */
687/* *INDENT-OFF* */
688VLIB_CLI_COMMAND (ip6_show_fib_command, static) = {
689 .path = "show ip6 mfib",
690 .short_help = "show ip mfib [summary] [table <table-id>] [index <fib-id>] [<grp-addr>[/<mask>]] [<grp-addr>] [<src-addr> <grp-addr>]",
691 .function = ip6_show_mfib,
692};
693/* *INDENT-ON* */