FD.io VPP  v19.08.1-401-g8e4ed521a
Vector Packet Processing
fib_types.c
Go to the documentation of this file.
1 /*
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/ip/ip.h>
17 
18 #include <vnet/fib/fib_types.h>
19 #include <vnet/fib/fib_internal.h>
20 #include <vnet/fib/fib_table.h>
21 #include <vnet/mfib/mfib_types.h>
22 #include <vnet/mpls/mpls.h>
23 
24 /*
25  * arrays of protocol and link names
26  */
27 static const char* fib_protocol_names[] = FIB_PROTOCOLS;
28 static const char* vnet_link_names[] = VNET_LINKS;
29 static const char* fib_forw_chain_names[] = FIB_FORW_CHAINS;
31 
32 u8 *
33 format_fib_protocol (u8 * s, va_list * ap)
34 {
35  fib_protocol_t proto = va_arg(*ap, int); // fib_protocol_t promotion
36 
37  return (format (s, "%s", fib_protocol_names[proto]));
38 }
39 
40 u8 *
41 format_vnet_link (u8 * s, va_list * ap)
42 {
43  vnet_link_t link = va_arg(*ap, int); // vnet_link_t promotion
44 
45  return (format (s, "%s", vnet_link_names[link]));
46 }
47 
48 u8 *
49 format_fib_forw_chain_type (u8 * s, va_list * args)
50 {
51  fib_forward_chain_type_t fct = va_arg(*args, int);
52 
53  return (format (s, "%s", fib_forw_chain_names[fct]));
54 }
55 
56 u8 *
57 format_fib_mpls_lsp_mode(u8 *s, va_list *ap)
58 {
59  fib_mpls_lsp_mode_t mode = va_arg(*ap, int);
60 
61  return (format (s, "%s", fib_mpls_lsp_mode_names[mode]));
62 }
63 
64 u8 *
65 format_fib_mpls_label (u8 *s, va_list *ap)
66 {
67  fib_mpls_label_t *label = va_arg(*ap, fib_mpls_label_t *);
68 
69  s = format(s, "%U %U ttl:%d exp:%d",
71  label->fml_value,
73  label->fml_mode,
74  label->fml_ttl,
75  label->fml_exp);
76 
77  return (s);
78 }
79 
80 void
81 fib_prefix_from_ip46_addr (const ip46_address_t *addr,
82  fib_prefix_t *pfx)
83 {
85 
86  pfx->fp_proto = ((ip46_address_is_ip4(addr) ?
89  pfx->fp_len = ((ip46_address_is_ip4(addr) ?
90  32 : 128));
91  pfx->fp_addr = *addr;
92 }
93 
94 void
96  mpls_eos_bit_t eos,
97  fib_prefix_t *pfx)
98 {
100  pfx->fp_len = 21;
101  pfx->fp_label = label;
102  pfx->fp_eos = eos;
103 }
104 
105 void
107  const fib_prefix_t *src)
108 {
109  memcpy(dst, src, sizeof(*dst));
110 }
111 
112 int
114  const fib_prefix_t *p2)
115 {
116  int res;
117 
118  res = (p1->fp_proto - p2->fp_proto);
119 
120  if (0 == res)
121  {
122  switch (p1->fp_proto)
123  {
124  case FIB_PROTOCOL_IP4:
125  case FIB_PROTOCOL_IP6:
126  res = (p1->fp_len - p2->fp_len);
127 
128  if (0 == res)
129  {
130  res = ip46_address_cmp(&p1->fp_addr, &p2->fp_addr);
131  }
132  break;
133  case FIB_PROTOCOL_MPLS:
134  res = (p1->fp_label - p2->fp_label);
135 
136  if (0 == res)
137  {
138  res = (p1->fp_eos - p2->fp_eos);
139  }
140  break;
141  }
142  }
143 
144  return (res);
145 }
146 
147 int
149  const fib_prefix_t *p2)
150 {
151  switch (p1->fp_proto)
152  {
153  case FIB_PROTOCOL_IP4:
155  &p1->fp_addr.ip4,
156  &p2->fp_addr.ip4,
157  p1->fp_len));
158  case FIB_PROTOCOL_IP6:
160  &p1->fp_addr.ip6,
161  &p2->fp_addr.ip6,
162  p1->fp_len));
163  case FIB_PROTOCOL_MPLS:
164  break;
165  }
166  return (0);
167 }
168 
169 int
171 {
172  switch (prefix->fp_proto)
173  {
174  case FIB_PROTOCOL_IP4:
175  return (prefix->fp_len == 32);
176  case FIB_PROTOCOL_IP6:
177  return (prefix->fp_len == 128);
178  case FIB_PROTOCOL_MPLS:
179  return (!0);
180  }
181  return (0);
182 }
183 
184 u8 *
185 format_fib_prefix (u8 * s, va_list * args)
186 {
187  fib_prefix_t *fp = va_arg (*args, fib_prefix_t *);
188 
189  /*
190  * protocol specific so it prints ::/0 correctly.
191  */
192  switch (fp->fp_proto)
193  {
194  case FIB_PROTOCOL_IP6:
195  {
196  ip6_address_t p6 = fp->fp_addr.ip6;
197 
199  s = format (s, "%U", format_ip6_address, &p6);
200  break;
201  }
202  case FIB_PROTOCOL_IP4:
203  {
204  ip4_address_t p4 = fp->fp_addr.ip4;
205  p4.as_u32 &= ip4_main.fib_masks[fp->fp_len];
206 
207  s = format (s, "%U", format_ip4_address, &p4);
208  break;
209  }
210  case FIB_PROTOCOL_MPLS:
211  s = format (s, "%U:%U",
214  break;
215  }
216  s = format (s, "/%d", fp->fp_len);
217 
218  return (s);
219 }
220 
221 int
223  const fib_route_path_t *rpath2)
224 {
225  int res;
226 
227  res = ip46_address_cmp(&rpath1->frp_addr,
228  &rpath2->frp_addr);
229 
230  if (0 != res) return (res);
231 
232  res = (rpath1->frp_sw_if_index - rpath2->frp_sw_if_index);
233 
234  if (0 != res) return (res);
235 
236  if (ip46_address_is_zero(&rpath1->frp_addr))
237  {
238  res = rpath1->frp_fib_index - rpath2->frp_fib_index;
239  }
240 
241  return (res);
242 }
243 
246 {
247  switch (fib_proto)
248  {
249  case FIB_PROTOCOL_IP6:
250  return (DPO_PROTO_IP6);
251  case FIB_PROTOCOL_IP4:
252  return (DPO_PROTO_IP4);
253  case FIB_PROTOCOL_MPLS:
254  return (DPO_PROTO_MPLS);
255  }
256  ASSERT(0);
257  return (0);
258 }
259 
262 {
263  switch (dpo_proto)
264  {
265  case DPO_PROTO_IP6:
266  return (FIB_PROTOCOL_IP6);
267  case DPO_PROTO_IP4:
268  return (FIB_PROTOCOL_IP4);
269  case DPO_PROTO_MPLS:
270  return (FIB_PROTOCOL_MPLS);
271  default:
272  break;
273  }
274  ASSERT(0);
275  return (0);
276 }
277 
280 {
281  switch (proto)
282  {
283  case FIB_PROTOCOL_IP4:
284  return (VNET_LINK_IP4);
285  case FIB_PROTOCOL_IP6:
286  return (VNET_LINK_IP6);
287  case FIB_PROTOCOL_MPLS:
288  return (VNET_LINK_MPLS);
289  }
290  ASSERT(0);
291  return (0);
292 }
293 
296 {
297  switch (fproto)
298  {
299  case FIB_PROTOCOL_IP4:
300  return (IP46_TYPE_IP4);
301  case FIB_PROTOCOL_IP6:
302  return (IP46_TYPE_IP6);
303  case FIB_PROTOCOL_MPLS:
304  return (IP46_TYPE_ANY);
305  }
306  ASSERT(0);
307  return (IP46_TYPE_ANY);
308 }
309 
312 {
313  switch (iproto)
314  {
315  case IP46_TYPE_IP4:
316  return FIB_PROTOCOL_IP4;
317  case IP46_TYPE_IP6:
318  return FIB_PROTOCOL_IP6;
319  case IP46_TYPE_ANY:
320  ASSERT(0);
321  return FIB_PROTOCOL_IP4;
322  }
323 
324  ASSERT(0);
325  return FIB_PROTOCOL_IP4;
326 }
327 
330 {
331  switch (proto)
332  {
333  case DPO_PROTO_IP4:
335  case DPO_PROTO_IP6:
337  case DPO_PROTO_MPLS:
339  case DPO_PROTO_ETHERNET:
341  case DPO_PROTO_NSH:
342  return (FIB_FORW_CHAIN_TYPE_NSH);
343  case DPO_PROTO_BIER:
344  return (FIB_FORW_CHAIN_TYPE_BIER);
345  }
346  ASSERT(0);
348 }
349 
352 {
353  switch (proto)
354  {
355  case FIB_PROTOCOL_IP4:
357  case FIB_PROTOCOL_IP6:
359  case FIB_PROTOCOL_MPLS:
361  }
362  ASSERT(0);
364 }
365 
368 {
369  switch (fct)
370  {
373  return (VNET_LINK_IP4);
376  return (VNET_LINK_IP6);
378  return (VNET_LINK_ETHERNET);
380  return (VNET_LINK_NSH);
383  /*
384  * insufficient information to to convert
385  */
386  ASSERT(0);
387  break;
389  return (VNET_LINK_MPLS);
390  }
391  return (VNET_LINK_IP4);
392 }
393 
396 {
397  switch (link_type)
398  {
399  case VNET_LINK_IP4:
401  case VNET_LINK_IP6:
403  case VNET_LINK_MPLS:
405  case VNET_LINK_ETHERNET:
407  case VNET_LINK_NSH:
408  return (FIB_FORW_CHAIN_TYPE_NSH);
409  case VNET_LINK_ARP:
410  break;
411  }
412 
413  ASSERT(0);
415 }
416 
419 {
420  switch (fct)
421  {
424  return (DPO_PROTO_IP4);
427  return (DPO_PROTO_IP6);
429  return (DPO_PROTO_ETHERNET);
431  return (DPO_PROTO_NSH);
433  return (DPO_PROTO_BIER);
436  return (DPO_PROTO_MPLS);
437  }
438  return (DPO_PROTO_IP4);
439 }
440 
441 uword
442 unformat_fib_route_path (unformat_input_t * input, va_list * args)
443 {
444  fib_route_path_t *rpath = va_arg (*args, fib_route_path_t *);
445  dpo_proto_t *payload_proto = va_arg (*args, void*);
446  u32 weight, preference, udp_encap_id, fi;
447  mpls_label_t out_label;
448  vnet_main_t *vnm;
449 
450  vnm = vnet_get_main ();
451  clib_memset(rpath, 0, sizeof(*rpath));
452  rpath->frp_weight = 1;
453  rpath->frp_sw_if_index = ~0;
454 
456  {
457  if (unformat (input, "%U %U",
459  &rpath->frp_addr.ip4,
461  &rpath->frp_sw_if_index))
462  {
463  rpath->frp_proto = DPO_PROTO_IP4;
464  }
465  else if (unformat (input, "%U %U",
467  &rpath->frp_addr.ip6,
469  &rpath->frp_sw_if_index))
470  {
471  rpath->frp_proto = DPO_PROTO_IP6;
472  }
473  else if (unformat (input, "weight %u", &weight))
474  {
475  rpath->frp_weight = weight;
476  }
477  else if (unformat (input, "preference %u", &preference))
478  {
479  rpath->frp_preference = preference;
480  }
481  else if (unformat (input, "%U next-hop-table %d",
483  &rpath->frp_addr.ip4,
484  &rpath->frp_fib_index))
485  {
486  rpath->frp_sw_if_index = ~0;
487  rpath->frp_proto = DPO_PROTO_IP4;
488 
489  /*
490  * the user enter table-ids, convert to index
491  */
493  if (~0 == fi)
494  return 0;
495  rpath->frp_fib_index = fi;
496  }
497  else if (unformat (input, "%U next-hop-table %d",
499  &rpath->frp_addr.ip6,
500  &rpath->frp_fib_index))
501  {
502  rpath->frp_sw_if_index = ~0;
503  rpath->frp_proto = DPO_PROTO_IP6;
505  if (~0 == fi)
506  return 0;
507  rpath->frp_fib_index = fi;
508  }
509  else if (unformat (input, "%U",
511  &rpath->frp_addr.ip4))
512  {
513  /*
514  * the recursive next-hops are by default in the default table
515  */
516  rpath->frp_fib_index = 0;
517  rpath->frp_sw_if_index = ~0;
518  rpath->frp_proto = DPO_PROTO_IP4;
519  }
520  else if (unformat (input, "%U",
522  &rpath->frp_addr.ip6))
523  {
524  rpath->frp_fib_index = 0;
525  rpath->frp_sw_if_index = ~0;
526  rpath->frp_proto = DPO_PROTO_IP6;
527  }
528  else if (unformat (input, "udp-encap %d", &udp_encap_id))
529  {
530  rpath->frp_udp_encap_id = udp_encap_id;
532  rpath->frp_proto = *payload_proto;
533  }
534  else if (unformat (input, "lookup in table %d", &rpath->frp_fib_index))
535  {
536  rpath->frp_proto = *payload_proto;
537  rpath->frp_sw_if_index = ~0;
538  rpath->frp_flags |= FIB_ROUTE_PATH_DEAG;
539  }
540  else if (unformat (input, "resolve-via-host"))
541  {
543  }
544  else if (unformat (input, "resolve-via-attached"))
545  {
547  }
548  else if (unformat (input, "pop-pw-cw"))
549  {
551  }
552  else if (unformat (input,
553  "ip4-lookup-in-table %d",
554  &rpath->frp_fib_index))
555  {
556  rpath->frp_proto = DPO_PROTO_IP4;
557  *payload_proto = DPO_PROTO_IP4;
559  if (~0 == fi)
560  return 0;
561  rpath->frp_fib_index = fi;
562  }
563  else if (unformat (input,
564  "ip6-lookup-in-table %d",
565  &rpath->frp_fib_index))
566  {
567  rpath->frp_proto = DPO_PROTO_IP6;
568  *payload_proto = DPO_PROTO_IP6;
570  if (~0 == fi)
571  return 0;
572  rpath->frp_fib_index = fi;
573  }
574  else if (unformat (input,
575  "mpls-lookup-in-table %d",
576  &rpath->frp_fib_index))
577  {
578  rpath->frp_proto = DPO_PROTO_MPLS;
579  *payload_proto = DPO_PROTO_MPLS;
581  if (~0 == fi)
582  return 0;
583  rpath->frp_fib_index = fi;
584  }
585  else if (unformat (input, "src-lookup"))
586  {
588  }
589  else if (unformat (input,
590  "l2-input-on %U",
592  &rpath->frp_sw_if_index))
593  {
594  rpath->frp_proto = DPO_PROTO_ETHERNET;
595  *payload_proto = DPO_PROTO_ETHERNET;
597  }
598  else if (unformat (input, "via-label %U",
600  &rpath->frp_local_label))
601  {
602  rpath->frp_eos = MPLS_NON_EOS;
603  rpath->frp_proto = DPO_PROTO_MPLS;
604  rpath->frp_sw_if_index = ~0;
605  }
606  else if (unformat (input, "rx-ip4 %U",
608  &rpath->frp_sw_if_index))
609  {
610  rpath->frp_proto = DPO_PROTO_IP4;
612  }
613  else if (unformat (input, "local"))
614  {
615  clib_memset (&rpath->frp_addr, 0, sizeof (rpath->frp_addr));
616  rpath->frp_sw_if_index = ~0;
617  rpath->frp_weight = 1;
619  }
620  else if (unformat (input, "%U",
622  ;
623  else if (unformat (input, "out-labels"))
624  {
625  while (unformat (input, "%U",
626  unformat_mpls_unicast_label, &out_label))
627  {
628  fib_mpls_label_t fml = {
629  .fml_value = out_label,
630  };
631  vec_add1(rpath->frp_label_stack, fml);
632  }
633  }
634  else if (unformat (input, "%U",
636  &rpath->frp_sw_if_index))
637  {
638  rpath->frp_proto = *payload_proto;
639  }
640  else if (unformat (input, "via"))
641  {
642  /* new path, back up and return */
643  unformat_put_input (input);
644  unformat_put_input (input);
645  unformat_put_input (input);
646  unformat_put_input (input);
647  break;
648  }
649  else
650  {
651  return (0);
652  }
653  }
654 
655  return (1);
656 }
static const char * vnet_link_names[]
Definition: fib_types.c:28
fib_protocol_t fp_proto
protocol type
Definition: fib_types.h:212
Contribute an object that is to be used to forward BIER packets.
Definition: fib_types.h:122
Contribute an object that is to be used to forward IP6 packets.
Definition: fib_types.h:137
ip46_address_t frp_addr
The next-hop address.
Definition: fib_types.h:501
Contribute an object that is to be used to forward IP6 packets.
Definition: fib_types.h:113
fib_forward_chain_type_t fib_forw_chain_type_from_link_type(vnet_link_t link_type)
Convert from a adjacency&#39;s link type to chain type.
Definition: fib_types.c:395
static const char * fib_protocol_names[]
Definition: fib_types.c:27
mpls_eos_bit_t frp_eos
EOS bit for the resolving label.
Definition: fib_types.h:512
int fib_route_path_cmp(const fib_route_path_t *rpath1, const fib_route_path_t *rpath2)
Definition: fib_types.c:222
A representation of a path as described by a route producer.
Definition: fib_types.h:485
uword unformat_mfib_itf_flags(unformat_input_t *input, va_list *args)
Definition: mfib_types.c:198
vnet_main_t * vnet_get_main(void)
Definition: misc.c:46
ip46_type_t fib_proto_to_ip46(fib_protocol_t fproto)
Convert from fib_protocol to ip46_type.
Definition: fib_types.c:295
uword unformat_fib_route_path(unformat_input_t *input, va_list *args)
Unformat a fib_route_path_t from CLI input.
Definition: fib_types.c:442
u32 frp_mitf_flags
MFIB interface flags.
Definition: fib_types.h:554
clib_memset(h->entries, 0, sizeof(h->entries[0]) *entries)
u32 mpls_label_t
A label value only, i.e.
Definition: packet.h:26
dpo_proto_t fib_forw_chain_type_to_dpo_proto(fib_forward_chain_type_t fct)
Convert from a chain type to the DPO proto it will install.
Definition: fib_types.c:418
#define vec_add1(V, E)
Add 1 element to end of vector (unspecified alignment).
Definition: vec.h:522
vl_api_address_t src
Definition: gre.api:51
#define VNET_LINKS
Definition: interface.h:335
Contribute an object that is to be used to forward IP4 packets.
Definition: fib_types.h:109
static uword ip4_destination_matches_route(const ip4_main_t *im, const ip4_address_t *key, const ip4_address_t *dest, uword dest_length)
Definition: ip4.h:194
u8 * format(u8 *s, const char *fmt,...)
Definition: format.c:424
dpo_proto_t frp_proto
The protocol of the address below.
Definition: fib_types.h:490
unformat_function_t unformat_vnet_sw_interface
vl_api_mprefix_t prefix
Definition: ip.api:456
A path that result in received traffic being recieved/recirculated so that it appears to have arrived...
Definition: fib_types.h:355
static void ip6_address_mask(ip6_address_t *a, const ip6_address_t *mask)
Definition: ip6_packet.h:268
vhost_vring_addr_t addr
Definition: vhost_user.h:147
#define ip46_address_cmp(ip46_1, ip46_2)
Definition: ip6_packet.h:92
unsigned char u8
Definition: types.h:56
int fib_prefix_is_host(const fib_prefix_t *prefix)
Return true is the prefix is a host prefix.
Definition: fib_types.c:170
u8 * format_fib_protocol(u8 *s, va_list *ap)
Definition: fib_types.c:33
enum fib_protocol_t_ fib_protocol_t
Protocol Type.
unformat_function_t unformat_mpls_unicast_label
Definition: mpls.h:81
u8 preference
Definition: fib_types.api:121
format_function_t format_ip4_address
Definition: format.h:75
unformat_function_t unformat_ip4_address
Definition: format.h:70
u32 frp_sw_if_index
The interface.
Definition: fib_types.h:525
static const char * fib_mpls_lsp_mode_names[]
Definition: fib_types.c:30
u8 * format_fib_mpls_lsp_mode(u8 *s, va_list *ap)
Format an LSP mode type.
Definition: fib_types.c:57
static uword ip6_destination_matches_route(const ip6_main_t *im, const ip6_address_t *key, const ip6_address_t *dest, uword dest_length)
Definition: ip6.h:265
Recursion constraint of via a host prefix.
Definition: fib_types.h:330
u8 * format_fib_prefix(u8 *s, va_list *args)
Definition: fib_types.c:185
Aggregate type for a prefix.
Definition: fib_types.h:203
int fib_prefix_is_cover(const fib_prefix_t *p1, const fib_prefix_t *p2)
Compare two prefixes for covering relationship.
Definition: fib_types.c:148
A path via a UDP encap object.
Definition: fib_types.h:367
unsigned int u32
Definition: types.h:88
Contribute an object that is to be used to forward Ethernet packets.
Definition: fib_types.h:141
enum dpo_proto_t_ dpo_proto_t
Data path protocol.
u32 fib_table_find(fib_protocol_t proto, u32 table_id)
Get the index of the FIB for a Table-ID.
Definition: fib_table.c:1080
fib_protocol_t dpo_proto_to_fib(dpo_proto_t dpo_proto)
Definition: fib_types.c:261
u16 fp_len
The mask length.
Definition: fib_types.h:207
fib_protocol_t fib_proto_from_ip46(ip46_type_t iproto)
Convert from ip46_type to fib_protocol.
Definition: fib_types.c:311
Contribute an object that is to be used to forward end-of-stack MPLS packets.
Definition: fib_types.h:129
format_function_t format_mpls_eos_bit
Definition: mpls.h:69
ip46_address_t fp_addr
The address type is not deriveable from the fp_addr member.
Definition: fib_types.h:226
struct _unformat_input_t unformat_input_t
enum fib_mpls_lsp_mode_t_ fib_mpls_lsp_mode_t
MPLS LSP mode - only valid at the head and tail.
u8 weight
Definition: fib_types.api:120
static const char * fib_forw_chain_names[]
Definition: fib_types.c:29
Configuration for each label value in the output-stack.
Definition: fib_types.h:440
fib_mpls_label_t * frp_label_stack
The outgoing MPLS label Stack.
Definition: fib_types.h:546
Recursion constraint of via an attahced prefix.
Definition: fib_types.h:334
static void unformat_put_input(unformat_input_t *input)
Definition: format.h:205
u32 label
Definition: fib_types.api:25
vl_api_address_t dst
Definition: gre.api:52
fib_mpls_lsp_mode_t fml_mode
The LSP mode.
Definition: fib_types.h:450
Pop a Psuedo Wire Control Word.
Definition: fib_types.h:396
#define ip46_address_is_ip4(ip46)
Definition: ip6_packet.h:88
unformat_function_t unformat_ip6_address
Definition: format.h:91
ip6_address_t fib_masks[129]
Definition: ip6.h:191
vnet_link_t fib_forw_chain_type_to_link_type(fib_forward_chain_type_t fct)
Convert from a chain type to the adjacency&#39;s link type.
Definition: fib_types.c:367
#define UNFORMAT_END_OF_INPUT
Definition: format.h:145
format_function_t format_ip6_address
Definition: format.h:93
Contribute an object that is to be used to forward NSH packets.
Definition: fib_types.h:147
void fib_prefix_from_mpls_label(mpls_label_t label, mpls_eos_bit_t eos, fib_prefix_t *pfx)
Definition: fib_types.c:95
mpls_label_t fml_value
The label value.
Definition: fib_types.h:445
void fib_prefix_from_ip46_addr(const ip46_address_t *addr, fib_prefix_t *pfx)
Host prefix from ip.
Definition: fib_types.c:81
vl_api_vxlan_gbp_api_tunnel_mode_t mode
Definition: vxlan_gbp.api:44
mpls_label_t fp_label
Definition: fib_types.h:229
#define ASSERT(truth)
ip6_main_t ip6_main
Definition: ip6_forward.c:2732
enum vnet_link_t_ vnet_link_t
Link Type: A description of the protocol of packets on the link.
ip46_type_t
Definition: ip6_packet.h:70
u8 frp_preference
A path preference.
Definition: fib_types.h:591
A deag path using the packet&#39;s source not destination address.
Definition: fib_types.h:363
enum fib_forward_chain_type_t_ fib_forward_chain_type_t
FIB output chain type.
fib_route_path_flags_t frp_flags
flags on the path
Definition: fib_types.h:595
u8 * format_fib_forw_chain_type(u8 *s, va_list *args)
Definition: fib_types.c:49
#define FIB_FORW_CHAINS
Definition: fib_types.h:150
dpo_proto_t fib_proto_to_dpo(fib_protocol_t fib_proto)
Definition: fib_types.c:245
void fib_prefix_copy(fib_prefix_t *dst, const fib_prefix_t *src)
Copy a prefix.
Definition: fib_types.c:106
A path that resolves via another table.
Definition: fib_types.h:383
format_function_t format_mpls_unicast_label
Definition: mpls.h:71
mpls_label_t frp_local_label
The MPLS local Label to reursively resolve through.
Definition: fib_types.h:508
#define FIB_MPLS_LSP_MODES
Definition: fib_types.h:427
int fib_prefix_cmp(const fib_prefix_t *p1, const fib_prefix_t *p2)
Compare two prefixes for equality.
Definition: fib_types.c:113
A for-us/local path.
Definition: fib_types.h:338
u64 uword
Definition: types.h:112
u8 * format_fib_mpls_label(u8 *s, va_list *ap)
Format an MPLS label.
Definition: fib_types.c:65
ip4_main_t ip4_main
Global ip4 main structure.
Definition: ip4_forward.c:1076
vnet_link_t fib_proto_to_link(fib_protocol_t proto)
Convert from a protocol to a link type.
Definition: fib_types.c:279
u8 fml_exp
EXP bits; valid only at imposition.
Definition: fib_types.h:460
u8 * format_vnet_link(u8 *s, va_list *ap)
Definition: fib_types.c:41
Contribute an object that is to be used to forward non-end-of-stack MPLS packets. ...
Definition: fib_types.h:118
u8 frp_weight
[un]equal cost path weight
Definition: fib_types.h:585
u32 frp_udp_encap_id
UDP encap ID.
Definition: fib_types.h:565
#define ip46_address_is_zero(ip46)
Definition: ip6_packet.h:93
Contribute an object that is to be used to forward IP4 packets.
Definition: fib_types.h:133
u32 frp_fib_index
The FIB index to lookup the nexthop Only valid for recursive paths.
Definition: fib_types.h:537
fib_forward_chain_type_t fib_forw_chain_type_from_dpo_proto(dpo_proto_t proto)
Convert from a payload-protocol to a chain type.
Definition: fib_types.c:329
#define FIB_PROTOCOLS
Definition: fib_types.h:42
fib_forward_chain_type_t fib_forw_chain_type_from_fib_proto(fib_protocol_t proto)
Convert from a fib-protocol to a chain type.
Definition: fib_types.c:351
uword unformat(unformat_input_t *i, const char *fmt,...)
Definition: unformat.c:978
vl_api_fib_path_nh_proto_t proto
Definition: fib_types.api:125
static uword unformat_check_input(unformat_input_t *i)
Definition: format.h:171
mpls_eos_bit_t fp_eos
Definition: fib_types.h:230
u32 fib_masks[33]
Definition: ip4.h:118
enum mpls_eos_bit_t_ mpls_eos_bit_t