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Vector Packet Processing
vxlan.c
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1 /*
2  * Copyright (c) 2015 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 #include <vnet/vxlan/vxlan.h>
16 #include <vnet/ip/format.h>
17 #include <vnet/fib/fib_entry.h>
18 #include <vnet/fib/fib_table.h>
19 #include <vnet/mfib/mfib_table.h>
20 #include <vnet/adj/adj_mcast.h>
21 #include <vnet/interface.h>
22 #include <vlib/vlib.h>
23 
24 /**
25  * @file
26  * @brief VXLAN.
27  *
28  * VXLAN provides the features needed to allow L2 bridge domains (BDs)
29  * to span multiple servers. This is done by building an L2 overlay on
30  * top of an L3 network underlay using VXLAN tunnels.
31  *
32  * This makes it possible for servers to be co-located in the same data
33  * center or be separated geographically as long as they are reachable
34  * through the underlay L3 network.
35  *
36  * You can refer to this kind of L2 overlay bridge domain as a VXLAN
37  * (Virtual eXtensible VLAN) segment.
38  */
39 
40 
42 
43 static u8 * format_decap_next (u8 * s, va_list * args)
44 {
45  u32 next_index = va_arg (*args, u32);
46 
47  if (next_index == VXLAN_INPUT_NEXT_DROP)
48  return format (s, "drop");
49  else
50  return format (s, "index %d", next_index);
51  return s;
52 }
53 
54 u8 * format_vxlan_tunnel (u8 * s, va_list * args)
55 {
56  vxlan_tunnel_t * t = va_arg (*args, vxlan_tunnel_t *);
57 
58  s = format (s,
59  "[%d] instance %d src %U dst %U vni %d fib-idx %d sw-if-idx %d ",
63  t->vni, t->encap_fib_index, t->sw_if_index);
64 
65  s = format (s, "encap-dpo-idx %d ", t->next_dpo.dpoi_index);
66 
67  if (PREDICT_FALSE (t->decap_next_index != VXLAN_INPUT_NEXT_L2_INPUT))
68  s = format (s, "decap-next-%U ", format_decap_next, t->decap_next_index);
69 
71  s = format (s, "mcast-sw-if-idx %d ", t->mcast_sw_if_index);
72 
73  return s;
74 }
75 
76 static u8 * format_vxlan_name (u8 * s, va_list * args)
77 {
78  u32 dev_instance = va_arg (*args, u32);
79  vxlan_main_t * vxm = &vxlan_main;
80  vxlan_tunnel_t *t;
81 
82  if (dev_instance == ~0)
83  return format(s, "<cached-unused>");
84 
85  if (dev_instance >= vec_len(vxm->tunnels))
86  return format(s, "<improperly-referenced>");
87 
88  t = pool_elt_at_index(vxm->tunnels, dev_instance);
89 
90  return format (s, "vxlan_tunnel%d", t->user_instance);
91 }
92 
93 static clib_error_t *
95 {
96  u32 hw_flags = (flags & VNET_SW_INTERFACE_FLAG_ADMIN_UP) ?
98  vnet_hw_interface_set_flags (vnm, hw_if_index, hw_flags);
99 
100  return /* no error */ 0;
101 }
102 
103 VNET_DEVICE_CLASS (vxlan_device_class,static) = {
104  .name = "VXLAN",
105  .format_device_name = format_vxlan_name,
106  .format_tx_trace = format_vxlan_encap_trace,
107  .admin_up_down_function = vxlan_interface_admin_up_down,
108 };
109 
110 static u8 * format_vxlan_header_with_length (u8 * s, va_list * args)
111 {
112  u32 dev_instance = va_arg (*args, u32);
113  s = format (s, "unimplemented dev %u", dev_instance);
114  return s;
115 }
116 
117 VNET_HW_INTERFACE_CLASS (vxlan_hw_class) = {
118  .name = "VXLAN",
119  .format_header = format_vxlan_header_with_length,
120  .build_rewrite = default_build_rewrite,
121 };
122 
123 static void
125 {
126  dpo_id_t dpo = DPO_INVALID;
127  u32 encap_index = ip46_address_is_ip4(&t->dst) ?
128  vxlan4_encap_node.index : vxlan6_encap_node.index;
131 
132  fib_entry_contribute_forwarding (t->fib_entry_index, forw_type, &dpo);
133  dpo_stack_from_node (encap_index, &t->next_dpo, &dpo);
134  dpo_reset(&dpo);
135 }
136 
137 static vxlan_tunnel_t *
139 {
141  return ((vxlan_tunnel_t*) (((char*)node) -
143 }
144 
145 /**
146  * Function definition to backwalk a FIB node -
147  * Here we will restack the new dpo of VXLAN DIP to encap node.
148  */
152 {
155 }
156 
157 /**
158  * Function definition to get a FIB node from its index
159  */
160 static fib_node_t*
162 {
163  vxlan_tunnel_t * t;
164  vxlan_main_t * vxm = &vxlan_main;
165 
166  t = pool_elt_at_index(vxm->tunnels, index);
167 
168  return (&t->node);
169 }
170 
171 /**
172  * Function definition to inform the FIB node that its last lock has gone.
173  */
174 static void
176 {
177  /*
178  * The VXLAN tunnel is a root of the graph. As such
179  * it never has children and thus is never locked.
180  */
181  ASSERT(0);
182 }
183 
184 /*
185  * Virtual function table registered by VXLAN tunnels
186  * for participation in the FIB object graph.
187  */
188 const static fib_node_vft_t vxlan_vft = {
190  .fnv_last_lock = vxlan_tunnel_last_lock_gone,
191  .fnv_back_walk = vxlan_tunnel_back_walk,
192 };
193 
194 
195 #define foreach_copy_field \
196 _(vni) \
197 _(mcast_sw_if_index) \
198 _(encap_fib_index) \
199 _(decap_next_index) \
200 _(src) \
201 _(dst)
202 
203 static void
204 vxlan_rewrite (vxlan_tunnel_t * t, bool is_ip6)
205 {
206  union {
207  ip4_vxlan_header_t * h4;
208  ip6_vxlan_header_t * h6;
209  u8 *rw;
210  } r = { .rw = 0 };
211  int len = is_ip6 ? sizeof *r.h6 : sizeof *r.h4;
212 
214 
215  udp_header_t * udp;
216  vxlan_header_t * vxlan;
217  /* Fixed portion of the (outer) ip header */
218  if (!is_ip6)
219  {
220  ip4_header_t * ip = &r.h4->ip4;
221  udp = &r.h4->udp, vxlan = &r.h4->vxlan;
222  ip->ip_version_and_header_length = 0x45;
223  ip->ttl = 254;
224  ip->protocol = IP_PROTOCOL_UDP;
225 
226  ip->src_address = t->src.ip4;
227  ip->dst_address = t->dst.ip4;
228 
229  /* we fix up the ip4 header length and checksum after-the-fact */
230  ip->checksum = ip4_header_checksum (ip);
231  }
232  else
233  {
234  ip6_header_t * ip = &r.h6->ip6;
235  udp = &r.h6->udp, vxlan = &r.h6->vxlan;
236  ip->ip_version_traffic_class_and_flow_label = clib_host_to_net_u32(6 << 28);
237  ip->hop_limit = 255;
238  ip->protocol = IP_PROTOCOL_UDP;
239 
240  ip->src_address = t->src.ip6;
241  ip->dst_address = t->dst.ip6;
242  }
243 
244  /* UDP header, randomize src port on something, maybe? */
245  udp->src_port = clib_host_to_net_u16 (4789);
246  udp->dst_port = clib_host_to_net_u16 (UDP_DST_PORT_vxlan);
247 
248  /* VXLAN header */
249  vnet_set_vni_and_flags(vxlan, t->vni);
250 
251  t->rewrite = r.rw;
252 }
253 
254 static bool
255 vxlan_decap_next_is_valid (vxlan_main_t * vxm, u32 is_ip6, u32 decap_next_index)
256 {
257  vlib_main_t * vm = vxm->vlib_main;
258  u32 input_idx = (!is_ip6) ? vxlan4_input_node.index : vxlan6_input_node.index;
259  vlib_node_runtime_t *r = vlib_node_get_runtime (vm, input_idx);
260 
261  return decap_next_index < r->n_next_nodes;
262 }
263 
264 static uword
265 vtep_addr_ref(ip46_address_t *ip)
266 {
267  uword *vtep = ip46_address_is_ip4(ip) ?
268  hash_get (vxlan_main.vtep4, ip->ip4.as_u32) :
269  hash_get_mem (vxlan_main.vtep6, &ip->ip6);
270  if (vtep)
271  return ++(*vtep);
272  ip46_address_is_ip4(ip) ?
273  hash_set (vxlan_main.vtep4, ip->ip4.as_u32, 1) :
274  hash_set_mem_alloc (&vxlan_main.vtep6, &ip->ip6, 1);
275  return 1;
276 }
277 
278 static uword
279 vtep_addr_unref(ip46_address_t *ip)
280 {
281  uword *vtep = ip46_address_is_ip4(ip) ?
282  hash_get (vxlan_main.vtep4, ip->ip4.as_u32) :
283  hash_get_mem (vxlan_main.vtep6, &ip->ip6);
284  ASSERT(vtep);
285  if (--(*vtep) != 0)
286  return *vtep;
287  ip46_address_is_ip4(ip) ?
288  hash_unset (vxlan_main.vtep4, ip->ip4.as_u32) :
289  hash_unset_mem_free (&vxlan_main.vtep6, &ip->ip6);
290  return 0;
291 }
292 
293 typedef CLIB_PACKED(union {
294  struct {
295  fib_node_index_t mfib_entry_index;
296  adj_index_t mcast_adj_index;
297  };
298  u64 as_u64;
299 }) mcast_shared_t;
300 
301 static inline mcast_shared_t
302 mcast_shared_get(ip46_address_t * ip)
303 {
305  uword * p = hash_get_mem (vxlan_main.mcast_shared, ip);
306  ASSERT(p);
307  return (mcast_shared_t) { .as_u64 = *p };
308 }
309 
310 static inline void
311 mcast_shared_add(ip46_address_t *dst,
312  fib_node_index_t mfei,
313  adj_index_t ai)
314 {
315  mcast_shared_t new_ep = {
316  .mcast_adj_index = ai,
317  .mfib_entry_index = mfei,
318  };
319 
320  hash_set_mem_alloc (&vxlan_main.mcast_shared, dst, new_ep.as_u64);
321 }
322 
323 static inline void
324 mcast_shared_remove(ip46_address_t *dst)
325 {
326  mcast_shared_t ep = mcast_shared_get(dst);
327 
328  adj_unlock(ep.mcast_adj_index);
329  mfib_table_entry_delete_index(ep.mfib_entry_index,
331 
332  hash_unset_mem_free (&vxlan_main.mcast_shared, dst);
333 }
334 
337 {
338  vxlan_main_t * vxm = &vxlan_main;
339  vxlan_tunnel_t *t = 0;
340  vnet_main_t * vnm = vxm->vnet_main;
341  uword * p;
342  u32 sw_if_index = ~0;
343  vxlan4_tunnel_key_t key4;
344  vxlan6_tunnel_key_t key6;
345  u32 is_ip6 = a->is_ip6;
346 
347  if (!is_ip6)
348  {
349  key4.src = a->dst.ip4.as_u32; /* decap src in key is encap dst in config */
350  key4.vni = clib_host_to_net_u32 (a->vni << 8);
351  p = hash_get (vxm->vxlan4_tunnel_by_key, key4.as_u64);
352  }
353  else
354  {
355  key6.src = a->dst.ip6;
356  key6.vni = clib_host_to_net_u32 (a->vni << 8);
357  p = hash_get_mem (vxm->vxlan6_tunnel_by_key, &key6);
358  }
359 
360  if (a->is_add)
361  {
362  l2input_main_t * l2im = &l2input_main;
363  u32 dev_instance; /* real dev instance tunnel index */
364  u32 user_instance; /* request and actual instance number */
365 
366  /* adding a tunnel: tunnel must not already exist */
367  if (p)
368  return VNET_API_ERROR_TUNNEL_EXIST;
369 
370  /*if not set explicitly, default to l2 */
371  if(a->decap_next_index == ~0)
372  a->decap_next_index = VXLAN_INPUT_NEXT_L2_INPUT;
373  if (!vxlan_decap_next_is_valid(vxm, is_ip6, a->decap_next_index))
374  return VNET_API_ERROR_INVALID_DECAP_NEXT;
375 
377  memset(t, 0, sizeof(*t));
378  dev_instance = t - vxm->tunnels;
379 
380  /* copy from arg structure */
381 #define _(x) t->x = a->x;
383 #undef _
384 
385  vxlan_rewrite (t, is_ip6);
386  /*
387  * Reconcile the real dev_instance and a possible requested instance.
388  */
389  user_instance = a->instance;
390  if (user_instance == ~0)
391  user_instance = dev_instance;
392  if (hash_get (vxm->instance_used, user_instance))
393  {
394  pool_put (vxm->tunnels, t);
395  return VNET_API_ERROR_INSTANCE_IN_USE;
396  }
397  hash_set (vxm->instance_used, user_instance, 1);
398 
399  t->dev_instance = dev_instance; /* actual */
400  t->user_instance = user_instance; /* name */
401 
402  /* copy the key */
403  if (is_ip6)
404  hash_set_mem_alloc (&vxm->vxlan6_tunnel_by_key, &key6, dev_instance);
405  else
406  hash_set (vxm->vxlan4_tunnel_by_key, key4.as_u64, dev_instance);
407 
409  (vnm, vxlan_device_class.index, dev_instance,
410  vxlan_hw_class.index, dev_instance);
412 
413  /* Set vxlan tunnel output node */
414  u32 encap_index = !is_ip6 ?
415  vxlan4_encap_node.index : vxlan6_encap_node.index;
416  vnet_set_interface_output_node (vnm, t->hw_if_index, encap_index);
417 
418  t->sw_if_index = sw_if_index = hi->sw_if_index;
419 
421  vxm->tunnel_index_by_sw_if_index[sw_if_index] = dev_instance;
422 
423  /* setup l2 input config with l2 feature and bd 0 to drop packet */
424  vec_validate (l2im->configs, sw_if_index);
425  l2im->configs[sw_if_index].feature_bitmap = L2INPUT_FEAT_DROP;
426  l2im->configs[sw_if_index].bd_index = 0;
427 
428  vnet_sw_interface_t * si = vnet_get_sw_interface (vnm, sw_if_index);
430  vnet_sw_interface_set_flags (vnm, sw_if_index,
432 
434  fib_prefix_t tun_dst_pfx;
436 
437  fib_prefix_from_ip46_addr(&t->dst, &tun_dst_pfx);
438  if (!ip46_address_is_multicast(&t->dst))
439  {
440  /* Unicast tunnel -
441  * source the FIB entry for the tunnel's destination
442  * and become a child thereof. The tunnel will then get poked
443  * when the forwarding for the entry updates, and the tunnel can
444  * re-stack accordingly
445  */
446  vtep_addr_ref(&t->src);
448  (t->encap_fib_index, &tun_dst_pfx, FIB_SOURCE_RR,
451  (t->fib_entry_index, FIB_NODE_TYPE_VXLAN_TUNNEL, dev_instance);
453  }
454  else
455  {
456  /* Multicast tunnel -
457  * as the same mcast group can be used for mutiple mcast tunnels
458  * with different VNIs, create the output fib adjecency only if
459  * it does not already exist
460  */
461  fib_protocol_t fp = fib_ip_proto(is_ip6);
462 
463  if (vtep_addr_ref(&t->dst) == 1)
464  {
465  fib_node_index_t mfei;
466  adj_index_t ai;
467  fib_route_path_t path = {
469  .frp_addr = zero_addr,
470  .frp_sw_if_index = 0xffffffff,
471  .frp_fib_index = ~0,
472  .frp_weight = 0,
473  .frp_flags = FIB_ROUTE_PATH_LOCAL,
474  };
475  const mfib_prefix_t mpfx = {
476  .fp_proto = fp,
477  .fp_len = (is_ip6 ? 128 : 32),
478  .fp_grp_addr = tun_dst_pfx.fp_addr,
479  };
480 
481  /*
482  * Setup the (*,G) to receive traffic on the mcast group
483  * - the forwarding interface is for-us
484  * - the accepting interface is that from the API
485  */
487  &mpfx,
489  &path,
491 
495  &mpfx,
497  &path,
499 
500  /*
501  * Create the mcast adjacency to send traffic to the group
502  */
503  ai = adj_mcast_add_or_lock(fp,
504  fib_proto_to_link(fp),
505  a->mcast_sw_if_index);
506 
507  /*
508  * create a new end-point
509  */
510  mcast_shared_add(&t->dst, mfei, ai);
511  }
512 
513  dpo_id_t dpo = DPO_INVALID;
514  mcast_shared_t ep = mcast_shared_get(&t->dst);
515 
516  /* Stack shared mcast dst mac addr rewrite on encap */
518  fib_proto_to_dpo(fp),
519  ep.mcast_adj_index);
520 
521  dpo_stack_from_node (encap_index, &t->next_dpo, &dpo);
522  dpo_reset (&dpo);
523  flood_class = VNET_FLOOD_CLASS_TUNNEL_MASTER;
524  }
525 
526  vnet_get_sw_interface (vnet_get_main(), sw_if_index)->flood_class = flood_class;
527  }
528  else
529  {
530  /* deleting a tunnel: tunnel must exist */
531  if (!p)
532  return VNET_API_ERROR_NO_SUCH_ENTRY;
533 
534  u32 instance = p[0];
535  t = pool_elt_at_index (vxm->tunnels, instance);
536 
537  sw_if_index = t->sw_if_index;
538  vnet_sw_interface_set_flags (vnm, sw_if_index, 0 /* down */);
539 
540  vxm->tunnel_index_by_sw_if_index[sw_if_index] = ~0;
541 
542  if (!is_ip6)
543  hash_unset (vxm->vxlan4_tunnel_by_key, key4.as_u64);
544  else
546 
547  if (!ip46_address_is_multicast(&t->dst))
548  {
549  vtep_addr_unref(&t->src);
552  }
553  else if (vtep_addr_unref(&t->dst) == 0)
554  {
556  }
557 
560 
561  fib_node_deinit(&t->node);
562  vec_free (t->rewrite);
563  pool_put (vxm->tunnels, t);
564  }
565 
566  if (sw_if_indexp)
567  *sw_if_indexp = sw_if_index;
568 
569  return 0;
570 }
571 
572 static uword get_decap_next_for_node(u32 node_index, u32 ipv4_set)
573 {
574  vxlan_main_t * vxm = &vxlan_main;
575  vlib_main_t * vm = vxm->vlib_main;
576  uword input_node = (ipv4_set) ? vxlan4_input_node.index :
577  vxlan6_input_node.index;
578 
579  return vlib_node_add_next (vm, input_node, node_index);
580 }
581 
582 static uword unformat_decap_next (unformat_input_t * input, va_list * args)
583 {
584  u32 * result = va_arg (*args, u32 *);
585  u32 ipv4_set = va_arg (*args, int);
586  vxlan_main_t * vxm = &vxlan_main;
587  vlib_main_t * vm = vxm->vlib_main;
588  u32 node_index;
589  u32 tmp;
590 
591  if (unformat (input, "l2"))
592  *result = VXLAN_INPUT_NEXT_L2_INPUT;
593  else if (unformat (input, "node %U", unformat_vlib_node, vm, &node_index))
594  *result = get_decap_next_for_node(node_index, ipv4_set);
595  else if (unformat (input, "%d", &tmp))
596  *result = tmp;
597  else
598  return 0;
599  return 1;
600 }
601 
602 static clib_error_t *
604  unformat_input_t * input,
605  vlib_cli_command_t * cmd)
606 {
607  unformat_input_t _line_input, * line_input = &_line_input;
608  ip46_address_t src = ip46_address_initializer, dst = ip46_address_initializer;
609  u8 is_add = 1;
610  u8 src_set = 0;
611  u8 dst_set = 0;
612  u8 grp_set = 0;
613  u8 ipv4_set = 0;
614  u8 ipv6_set = 0;
615  u32 instance = ~0;
616  u32 encap_fib_index = 0;
617  u32 mcast_sw_if_index = ~0;
618  u32 decap_next_index = VXLAN_INPUT_NEXT_L2_INPUT;
619  u32 vni = 0;
620  u32 table_id;
621  clib_error_t *error = NULL;
622 
623  /* Get a line of input. */
624  if (! unformat_user (input, unformat_line_input, line_input))
625  return 0;
626 
627  while (unformat_check_input (line_input) != UNFORMAT_END_OF_INPUT) {
628  if (unformat (line_input, "del"))
629  {
630  is_add = 0;
631  }
632  else if (unformat (line_input, "instance %d", &instance))
633  ;
634  else if (unformat (line_input, "src %U",
636  {
637  src_set = 1;
638  ip46_address_is_ip4(&src) ? (ipv4_set = 1) : (ipv6_set = 1);
639  }
640  else if (unformat (line_input, "dst %U",
642  {
643  dst_set = 1;
644  ip46_address_is_ip4(&dst) ? (ipv4_set = 1) : (ipv6_set = 1);
645  }
646  else if (unformat (line_input, "group %U %U",
649  vnet_get_main(), &mcast_sw_if_index))
650  {
651  grp_set = dst_set = 1;
652  ip46_address_is_ip4(&dst) ? (ipv4_set = 1) : (ipv6_set = 1);
653  }
654  else if (unformat (line_input, "encap-vrf-id %d", &table_id))
655  {
656  encap_fib_index = fib_table_find (fib_ip_proto (ipv6_set), table_id);
657  if (encap_fib_index == ~0)
658  {
659  error = clib_error_return (0, "nonexistent encap-vrf-id %d", table_id);
660  break;
661  }
662  }
663  else if (unformat (line_input, "decap-next %U", unformat_decap_next,
664  &decap_next_index, ipv4_set))
665  ;
666  else if (unformat (line_input, "vni %d", &vni))
667  ;
668  else
669  {
670  error = clib_error_return (0, "parse error: '%U'",
671  format_unformat_error, line_input);
672  break;
673  }
674  }
675 
676  unformat_free (line_input);
677 
678  if (error)
679  return error;
680 
681  if (src_set == 0)
682  return clib_error_return (0, "tunnel src address not specified");
683 
684  if (dst_set == 0)
685  return clib_error_return (0, "tunnel dst address not specified");
686 
687  if (grp_set && !ip46_address_is_multicast(&dst))
688  return clib_error_return (0, "tunnel group address not multicast");
689 
690  if (grp_set == 0 && ip46_address_is_multicast(&dst))
691  return clib_error_return (0, "dst address must be unicast");
692 
693  if (grp_set && mcast_sw_if_index == ~0)
694  return clib_error_return (0, "tunnel nonexistent multicast device");
695 
696  if (ipv4_set && ipv6_set)
697  return clib_error_return (0, "both IPv4 and IPv6 addresses specified");
698 
699  if (ip46_address_cmp(&src, &dst) == 0)
700  return clib_error_return (0, "src and dst addresses are identical");
701 
702  if (decap_next_index == ~0)
703  return clib_error_return (0, "next node not found");
704 
705  if (vni == 0)
706  return clib_error_return (0, "vni not specified");
707 
708  if (vni >> 24)
709  return clib_error_return (0, "vni %d out of range", vni);
710 
712  .is_add = is_add,
713  .is_ip6 = ipv6_set,
714  .instance = instance,
715 #define _(x) .x = x,
717 #undef _
718  };
719 
720  u32 tunnel_sw_if_index;
721  int rv = vnet_vxlan_add_del_tunnel (&a, &tunnel_sw_if_index);
722 
723  switch(rv)
724  {
725  case 0:
726  if (is_add)
728  vnet_get_main(), tunnel_sw_if_index);
729  break;
730 
731  case VNET_API_ERROR_TUNNEL_EXIST:
732  return clib_error_return (0, "tunnel already exists...");
733 
734  case VNET_API_ERROR_NO_SUCH_ENTRY:
735  return clib_error_return (0, "tunnel does not exist...");
736 
737  case VNET_API_ERROR_INSTANCE_IN_USE:
738  return clib_error_return (0, "Instance is in use");
739 
740  default:
741  return clib_error_return
742  (0, "vnet_vxlan_add_del_tunnel returned %d", rv);
743  }
744 
745  return error;
746 }
747 
748 /*?
749  * Add or delete a VXLAN Tunnel.
750  *
751  * VXLAN provides the features needed to allow L2 bridge domains (BDs)
752  * to span multiple servers. This is done by building an L2 overlay on
753  * top of an L3 network underlay using VXLAN tunnels.
754  *
755  * This makes it possible for servers to be co-located in the same data
756  * center or be separated geographically as long as they are reachable
757  * through the underlay L3 network.
758  *
759  * You can refer to this kind of L2 overlay bridge domain as a VXLAN
760  * (Virtual eXtensible VLAN) segment.
761  *
762  * @cliexpar
763  * Example of how to create a VXLAN Tunnel:
764  * @cliexcmd{create vxlan tunnel src 10.0.3.1 dst 10.0.3.3 vni 13 encap-vrf-id 7}
765  * Example of how to create a VXLAN Tunnel with a known name, vxlan_tunnel42:
766  * @cliexcmd{create vxlan tunnel src 10.0.3.1 dst 10.0.3.3 instance 42}
767  * Example of how to delete a VXLAN Tunnel:
768  * @cliexcmd{create vxlan tunnel src 10.0.3.1 dst 10.0.3.3 vni 13 del}
769  ?*/
770 /* *INDENT-OFF* */
771 VLIB_CLI_COMMAND (create_vxlan_tunnel_command, static) = {
772  .path = "create vxlan tunnel",
773  .short_help =
774  "create vxlan tunnel src <local-vtep-addr>"
775  " {dst <remote-vtep-addr>|group <mcast-vtep-addr> <intf-name>} vni <nn>"
776  " [instance <id>]"
777  " [encap-vrf-id <nn>] [decap-next [l2|node <name>]] [del]",
779 };
780 /* *INDENT-ON* */
781 
782 static clib_error_t *
784  unformat_input_t * input,
785  vlib_cli_command_t * cmd)
786 {
787  vxlan_main_t * vxm = &vxlan_main;
788  vxlan_tunnel_t * t;
789 
790  if (pool_elts (vxm->tunnels) == 0)
791  vlib_cli_output (vm, "No vxlan tunnels configured...");
792 
793  pool_foreach (t, vxm->tunnels,
794  ({
795  vlib_cli_output (vm, "%U", format_vxlan_tunnel, t);
796  }));
797 
798  return 0;
799 }
800 
801 /*?
802  * Display all the VXLAN Tunnel entries.
803  *
804  * @cliexpar
805  * Example of how to display the VXLAN Tunnel entries:
806  * @cliexstart{show vxlan tunnel}
807  * [0] src 10.0.3.1 dst 10.0.3.3 vni 13 encap_fib_index 0 sw_if_index 5 decap_next l2
808  * @cliexend
809  ?*/
810 /* *INDENT-OFF* */
811 VLIB_CLI_COMMAND (show_vxlan_tunnel_command, static) = {
812  .path = "show vxlan tunnel",
813  .short_help = "show vxlan tunnel",
814  .function = show_vxlan_tunnel_command_fn,
815 };
816 /* *INDENT-ON* */
817 
818 
819 void vnet_int_vxlan_bypass_mode (u32 sw_if_index,
820  u8 is_ip6,
821  u8 is_enable)
822 {
823  if (is_ip6)
824  vnet_feature_enable_disable ("ip6-unicast", "ip6-vxlan-bypass",
825  sw_if_index, is_enable, 0, 0);
826  else
827  vnet_feature_enable_disable ("ip4-unicast", "ip4-vxlan-bypass",
828  sw_if_index, is_enable, 0, 0);
829 }
830 
831 
832 static clib_error_t *
834  unformat_input_t * input,
835  vlib_cli_command_t * cmd)
836 {
837  unformat_input_t _line_input, * line_input = &_line_input;
838  vnet_main_t * vnm = vnet_get_main();
839  clib_error_t * error = 0;
840  u32 sw_if_index, is_enable;
841 
842  sw_if_index = ~0;
843  is_enable = 1;
844 
845  if (! unformat_user (input, unformat_line_input, line_input))
846  return 0;
847 
848  while (unformat_check_input (line_input) != UNFORMAT_END_OF_INPUT)
849  {
850  if (unformat_user (line_input, unformat_vnet_sw_interface, vnm, &sw_if_index))
851  ;
852  else if (unformat (line_input, "del"))
853  is_enable = 0;
854  else
855  {
856  error = unformat_parse_error (line_input);
857  goto done;
858  }
859  }
860 
861  if (~0 == sw_if_index)
862  {
863  error = clib_error_return (0, "unknown interface `%U'",
864  format_unformat_error, line_input);
865  goto done;
866  }
867 
868  vnet_int_vxlan_bypass_mode (sw_if_index, is_ip6, is_enable);
869 
870  done:
871  unformat_free (line_input);
872 
873  return error;
874 }
875 
876 static clib_error_t *
878  unformat_input_t * input,
879  vlib_cli_command_t * cmd)
880 {
881  return set_ip_vxlan_bypass (0, input, cmd);
882 }
883 
884 /*?
885  * This command adds the 'ip4-vxlan-bypass' graph node for a given interface.
886  * By adding the IPv4 vxlan-bypass graph node to an interface, the node checks
887  * for and validate input vxlan packet and bypass ip4-lookup, ip4-local,
888  * ip4-udp-lookup nodes to speedup vxlan packet forwarding. This node will
889  * cause extra overhead to for non-vxlan packets which is kept at a minimum.
890  *
891  * @cliexpar
892  * @parblock
893  * Example of graph node before ip4-vxlan-bypass is enabled:
894  * @cliexstart{show vlib graph ip4-vxlan-bypass}
895  * Name Next Previous
896  * ip4-vxlan-bypass error-drop [0]
897  * vxlan4-input [1]
898  * ip4-lookup [2]
899  * @cliexend
900  *
901  * Example of how to enable ip4-vxlan-bypass on an interface:
902  * @cliexcmd{set interface ip vxlan-bypass GigabitEthernet2/0/0}
903  *
904  * Example of graph node after ip4-vxlan-bypass is enabled:
905  * @cliexstart{show vlib graph ip4-vxlan-bypass}
906  * Name Next Previous
907  * ip4-vxlan-bypass error-drop [0] ip4-input
908  * vxlan4-input [1] ip4-input-no-checksum
909  * ip4-lookup [2]
910  * @cliexend
911  *
912  * Example of how to display the feature enabed on an interface:
913  * @cliexstart{show ip interface features GigabitEthernet2/0/0}
914  * IP feature paths configured on GigabitEthernet2/0/0...
915  * ...
916  * ipv4 unicast:
917  * ip4-vxlan-bypass
918  * ip4-lookup
919  * ...
920  * @cliexend
921  *
922  * Example of how to disable ip4-vxlan-bypass on an interface:
923  * @cliexcmd{set interface ip vxlan-bypass GigabitEthernet2/0/0 del}
924  * @endparblock
925 ?*/
926 /* *INDENT-OFF* */
927 VLIB_CLI_COMMAND (set_interface_ip_vxlan_bypass_command, static) = {
928  .path = "set interface ip vxlan-bypass",
929  .function = set_ip4_vxlan_bypass,
930  .short_help = "set interface ip vxlan-bypass <interface> [del]",
931 };
932 /* *INDENT-ON* */
933 
934 static clib_error_t *
936  unformat_input_t * input,
937  vlib_cli_command_t * cmd)
938 {
939  return set_ip_vxlan_bypass (1, input, cmd);
940 }
941 
942 /*?
943  * This command adds the 'ip6-vxlan-bypass' graph node for a given interface.
944  * By adding the IPv6 vxlan-bypass graph node to an interface, the node checks
945  * for and validate input vxlan packet and bypass ip6-lookup, ip6-local,
946  * ip6-udp-lookup nodes to speedup vxlan packet forwarding. This node will
947  * cause extra overhead to for non-vxlan packets which is kept at a minimum.
948  *
949  * @cliexpar
950  * @parblock
951  * Example of graph node before ip6-vxlan-bypass is enabled:
952  * @cliexstart{show vlib graph ip6-vxlan-bypass}
953  * Name Next Previous
954  * ip6-vxlan-bypass error-drop [0]
955  * vxlan6-input [1]
956  * ip6-lookup [2]
957  * @cliexend
958  *
959  * Example of how to enable ip6-vxlan-bypass on an interface:
960  * @cliexcmd{set interface ip6 vxlan-bypass GigabitEthernet2/0/0}
961  *
962  * Example of graph node after ip6-vxlan-bypass is enabled:
963  * @cliexstart{show vlib graph ip6-vxlan-bypass}
964  * Name Next Previous
965  * ip6-vxlan-bypass error-drop [0] ip6-input
966  * vxlan6-input [1] ip4-input-no-checksum
967  * ip6-lookup [2]
968  * @cliexend
969  *
970  * Example of how to display the feature enabed on an interface:
971  * @cliexstart{show ip interface features GigabitEthernet2/0/0}
972  * IP feature paths configured on GigabitEthernet2/0/0...
973  * ...
974  * ipv6 unicast:
975  * ip6-vxlan-bypass
976  * ip6-lookup
977  * ...
978  * @cliexend
979  *
980  * Example of how to disable ip6-vxlan-bypass on an interface:
981  * @cliexcmd{set interface ip6 vxlan-bypass GigabitEthernet2/0/0 del}
982  * @endparblock
983 ?*/
984 /* *INDENT-OFF* */
985 VLIB_CLI_COMMAND (set_interface_ip6_vxlan_bypass_command, static) = {
986  .path = "set interface ip6 vxlan-bypass",
987  .function = set_ip6_vxlan_bypass,
988  .short_help = "set interface ip vxlan-bypass <interface> [del]",
989 };
990 /* *INDENT-ON* */
991 
993 {
994  vxlan_main_t * vxm = &vxlan_main;
995 
996  vxm->vnet_main = vnet_get_main();
997  vxm->vlib_main = vm;
998 
999  /* initialize the ip6 hash */
1001  sizeof(vxlan6_tunnel_key_t),
1002  sizeof(uword));
1003  vxm->vtep6 = hash_create_mem(0,
1004  sizeof(ip6_address_t),
1005  sizeof(uword));
1006  vxm->mcast_shared = hash_create_mem(0,
1007  sizeof(ip46_address_t),
1008  sizeof(mcast_shared_t));
1009 
1010  udp_register_dst_port (vm, UDP_DST_PORT_vxlan,
1011  vxlan4_input_node.index, /* is_ip4 */ 1);
1012  udp_register_dst_port (vm, UDP_DST_PORT_vxlan6,
1013  vxlan6_input_node.index, /* is_ip4 */ 0);
1014 
1016 
1017  return 0;
1018 }
1019 
1021 
1022 /*
1023  * Local Variables:
1024  * eval: (c-set-style "gnu")
1025  * End:
1026  */
#define vec_validate(V, I)
Make sure vector is long enough for given index (no header, unspecified alignment) ...
Definition: vec.h:434
void vnet_set_interface_output_node(vnet_main_t *vnm, u32 hw_if_index, u32 node_index)
Set interface output node - for interface registered without its output/tx nodes created because its ...
void dpo_stack_from_node(u32 child_node_index, dpo_id_t *dpo, const dpo_id_t *parent)
Stack one DPO object on another, and thus establish a child parent relationship.
Definition: dpo.c:530
vmrglw vmrglh hi
u32 user_instance
Definition: vxlan.h:119
Recursive resolution source.
Definition: fib_entry.h:121
Contribute an object that is to be used to forward IP6 packets.
Definition: fib_types.h:103
#define hash_set(h, key, value)
Definition: hash.h:254
l2_input_config_t * configs
Definition: l2_input.h:66
u32 sibling_index
The tunnel is a child of the FIB entry for its desintion.
Definition: vxlan.h:116
clib_error_t * vnet_hw_interface_set_flags(vnet_main_t *vnm, u32 hw_if_index, u32 flags)
Definition: interface.c:554
#define hash_unset(h, key)
Definition: hash.h:260
static uword ip46_address_is_multicast(ip46_address_t *a)
Definition: ip6_packet.h:152
A representation of a path as described by a route producer.
Definition: fib_types.h:455
ip4_address_t src_address
Definition: ip4_packet.h:164
uword * vtep6
Definition: vxlan.h:151
vnet_main_t * vnet_get_main(void)
Definition: misc.c:47
clib_error_t * vxlan_init(vlib_main_t *vm)
Definition: vxlan.c:992
void fib_node_init(fib_node_t *node, fib_node_type_t type)
Definition: fib_node.c:185
u64 as_u64
Definition: bihash_doc.h:63
vlib_node_registration_t vxlan4_input_node
(constructor) VLIB_REGISTER_NODE (vxlan4_input_node)
Definition: decap.c:22
u32 fib_entry_child_add(fib_node_index_t fib_entry_index, fib_node_type_t child_type, fib_node_index_t child_index)
Definition: fib_entry.c:527
static clib_error_t * set_ip6_vxlan_bypass(vlib_main_t *vm, unformat_input_t *input, vlib_cli_command_t *cmd)
Definition: vxlan.c:935
#define NULL
Definition: clib.h:55
enum fib_node_back_walk_rc_t_ fib_node_back_walk_rc_t
Return code from a back walk function.
void fib_entry_contribute_forwarding(fib_node_index_t fib_entry_index, fib_forward_chain_type_t fct, dpo_id_t *dpo)
Definition: fib_entry.c:419
uword * mcast_shared
Definition: vxlan.h:154
ip46_address_t dst
Definition: vxlan.h:83
static void mcast_shared_remove(ip46_address_t *dst)
Definition: vxlan.c:324
static vnet_hw_interface_t * vnet_get_hw_interface(vnet_main_t *vnm, u32 hw_if_index)
void fib_entry_child_remove(fib_node_index_t fib_entry_index, u32 sibling_index)
Definition: fib_entry.c:538
static clib_error_t * set_ip4_vxlan_bypass(vlib_main_t *vm, unformat_input_t *input, vlib_cli_command_t *cmd)
Definition: vxlan.c:877
uword unformat_user(unformat_input_t *input, unformat_function_t *func,...)
Definition: unformat.c:983
format_function_t format_ip46_address
Definition: format.h:61
Contribute an object that is to be used to forward IP4 packets.
Definition: fib_types.h:99
#define STRUCT_OFFSET_OF(t, f)
Definition: clib.h:62
void fib_node_deinit(fib_node_t *node)
Definition: fib_node.c:197
static vnet_sw_interface_t * vnet_get_sw_interface(vnet_main_t *vnm, u32 sw_if_index)
u8 * format(u8 *s, const char *fmt,...)
Definition: format.c:419
dpo_proto_t frp_proto
The protocol of the address below.
Definition: fib_types.h:460
unformat_function_t unformat_vnet_sw_interface
#define VNET_HW_INTERFACE_FLAG_LINK_UP
Definition: interface.h:390
#define vec_validate_aligned(V, I, A)
Make sure vector is long enough for given index (no header, specified alignment)
Definition: vec.h:445
static vxlan_tunnel_t * vxlan_tunnel_from_fib_node(fib_node_t *node)
Definition: vxlan.c:138
ip6_address_t src_address
Definition: ip6_packet.h:342
#define ip46_address_cmp(ip46_1, ip46_2)
Definition: ip6_packet.h:80
format_function_t format_vnet_sw_if_index_name
static uword vlib_node_add_next(vlib_main_t *vm, uword node, uword next_node)
Definition: node_funcs.h:1110
static clib_error_t * show_vxlan_tunnel_command_fn(vlib_main_t *vm, unformat_input_t *input, vlib_cli_command_t *cmd)
Definition: vxlan.c:783
static fib_node_back_walk_rc_t vxlan_tunnel_back_walk(fib_node_t *node, fib_node_back_walk_ctx_t *ctx)
Function definition to backwalk a FIB node - Here we will restack the new dpo of VXLAN DIP to encap n...
Definition: vxlan.c:150
enum fib_protocol_t_ fib_protocol_t
Protocol Type.
void fib_node_register_type(fib_node_type_t type, const fib_node_vft_t *vft)
fib_node_register_type
Definition: fib_node.c:60
vnet_flood_class_t flood_class
Definition: interface.h:630
vnet_main_t * vnet_main
Definition: vxlan.h:161
VNET_DEVICE_CLASS(vxlan_device_class, static)
#define pool_foreach(VAR, POOL, BODY)
Iterate through pool.
Definition: pool.h:440
u32 frp_sw_if_index
The interface.
Definition: fib_types.h:490
#define VLIB_INIT_FUNCTION(x)
Definition: init.h:111
void mfib_table_entry_delete_index(fib_node_index_t mfib_entry_index, mfib_source_t source)
Delete a FIB entry.
Definition: mfib_table.c:380
ip4_address_t dst_address
Definition: ip4_packet.h:164
Aggregrate type for a prefix.
Definition: fib_types.h:188
static void vxlan_tunnel_last_lock_gone(fib_node_t *node)
Function definition to inform the FIB node that its last lock has gone.
Definition: vxlan.c:175
vlib_main_t * vlib_main
Definition: vxlan.h:160
#define clib_error_return(e, args...)
Definition: error.h:99
fib_node_index_t mfib_table_entry_path_update(u32 fib_index, const mfib_prefix_t *prefix, mfib_source_t source, const fib_route_path_t *rpath, mfib_itf_flags_t itf_flags)
Add n paths to an entry (aka route) in the FIB.
Definition: mfib_table.c:219
unsigned long u64
Definition: types.h:89
void adj_unlock(adj_index_t adj_index)
Release a reference counting lock on the adjacency.
Definition: adj.c:240
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:1037
static clib_error_t * vxlan_add_del_tunnel_command_fn(vlib_main_t *vm, unformat_input_t *input, vlib_cli_command_t *cmd)
Definition: vxlan.c:603
fib_node_t node
Linkage into the FIB object graph.
Definition: vxlan.h:101
u32 vnet_register_interface(vnet_main_t *vnm, u32 dev_class_index, u32 dev_instance, u32 hw_class_index, u32 hw_instance)
Definition: interface.c:705
Definition: fib_entry.h:270
unformat_function_t unformat_line_input
Definition: format.h:281
The identity of a DPO is a combination of its type and its instance number/index of objects of that t...
Definition: dpo.h:168
#define hash_create_mem(elts, key_bytes, value_bytes)
Definition: hash.h:660
#define hash_get(h, key)
Definition: hash.h:248
u8 * rewrite
Definition: vxlan.h:73
#define pool_elt_at_index(p, i)
Returns pointer to element at given index.
Definition: pool.h:461
static clib_error_t * vxlan_interface_admin_up_down(vnet_main_t *vnm, u32 hw_if_index, u32 flags)
Definition: vxlan.c:94
ip46_address_t fp_addr
The address type is not deriveable from the fp_addr member.
Definition: fib_types.h:211
uword * vxlan4_tunnel_by_key
Definition: vxlan.h:145
struct _unformat_input_t unformat_input_t
#define pool_put(P, E)
Free an object E in pool P.
Definition: pool.h:273
vxlan_main_t vxlan_main
Definition: vxlan.c:41
#define PREDICT_FALSE(x)
Definition: clib.h:105
vlib_node_registration_t vxlan6_input_node
(constructor) VLIB_REGISTER_NODE (vxlan6_input_node)
Definition: decap.c:23
fib_node_type_t fn_type
The node&#39;s type.
Definition: fib_node.h:290
An node in the FIB graph.
Definition: fib_node.h:286
u8 * format_vxlan_encap_trace(u8 *s, va_list *args)
Definition: encap.c:50
#define ip46_address_initializer
Definition: ip6_packet.h:84
static uword vtep_addr_unref(ip46_address_t *ip)
Definition: vxlan.c:279
#define ip46_address_is_ip4(ip46)
Definition: ip6_packet.h:76
#define pool_get_aligned(P, E, A)
Allocate an object E from a pool P (general version).
Definition: pool.h:188
fib_node_index_t fib_table_entry_special_add(u32 fib_index, const fib_prefix_t *prefix, fib_source_t source, fib_entry_flag_t flags)
Add a &#39;special&#39; entry to the FIB.
Definition: fib_table.c:380
int vnet_vxlan_add_del_tunnel(vnet_vxlan_add_del_tunnel_args_t *a, u32 *sw_if_indexp)
Definition: vxlan.c:336
typedef CLIB_PACKED(union{struct{fib_node_index_t mfib_entry_index;adj_index_t mcast_adj_index;};u64 as_u64;})
Definition: vxlan.c:293
u32 dev_instance
Definition: vxlan.h:118
#define UNFORMAT_END_OF_INPUT
Definition: format.h:143
vlib_main_t * vm
Definition: buffer.c:294
void fib_table_entry_delete_index(fib_node_index_t fib_entry_index, fib_source_t source)
Delete a FIB entry.
Definition: fib_table.c:869
u32 mcast_sw_if_index
Definition: vxlan.h:86
#define vec_free(V)
Free vector&#39;s memory (no header).
Definition: vec.h:336
vnet_flood_class_t
Definition: interface.h:565
static vlib_node_runtime_t * vlib_node_get_runtime(vlib_main_t *vm, u32 node_index)
Get node runtime by node index.
Definition: node_funcs.h:89
fib_node_get_t fnv_get
Definition: fib_node.h:274
#define VNET_SW_INTERFACE_FLAG_HIDDEN
Definition: interface.h:600
u32 fib_node_index_t
A typedef of a node index.
Definition: fib_types.h:30
static void vnet_set_vni_and_flags(vxlan_header_t *h, u32 vni)
Definition: vxlan_packet.h:62
u32 adj_index_t
An index for adjacencies.
Definition: adj_types.h:30
static uword unformat_decap_next(unformat_input_t *input, va_list *args)
Definition: vxlan.c:582
u32 decap_next_index
Definition: vxlan.h:89
void fib_prefix_from_ip46_addr(const ip46_address_t *addr, fib_prefix_t *pfx)
Host prefix from ip.
Definition: fib_types.c:79
void dpo_set(dpo_id_t *dpo, dpo_type_t type, dpo_proto_t proto, index_t index)
Set/create a DPO ID The DPO will be locked.
Definition: dpo.c:185
Aggregrate type for a prefix.
Definition: mfib_types.h:24
u8 * default_build_rewrite(vnet_main_t *vnm, u32 sw_if_index, vnet_link_t link_type, const void *dst_address)
Return a complete, zero-length (aka dummy) rewrite.
Definition: interface.c:1500
Context passed between object during a back walk.
Definition: fib_node.h:199
#define VLIB_CLI_COMMAND(x,...)
Definition: cli.h:154
static u8 * format_vxlan_header_with_length(u8 *s, va_list *args)
Definition: vxlan.c:110
#define VNET_SW_INTERFACE_FLAG_ADMIN_UP
Definition: interface.h:588
static void vxlan_tunnel_restack_dpo(vxlan_tunnel_t *t)
Definition: vxlan.c:124
#define ASSERT(truth)
unsigned int u32
Definition: types.h:88
static void mcast_shared_add(ip46_address_t *dst, fib_node_index_t mfei, adj_index_t ai)
Definition: vxlan.c:311
long ctx[MAX_CONNS]
Definition: main.c:126
static fib_node_t * vxlan_tunnel_fib_node_get(fib_node_index_t index)
Function definition to get a FIB node from its index.
Definition: vxlan.c:161
uword * vtep4
Definition: vxlan.h:150
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:547
uword * vxlan6_tunnel_by_key
Definition: vxlan.h:146
u32 sw_if_index
Definition: vxlan.h:95
dpo_proto_t fib_proto_to_dpo(fib_protocol_t fib_proto)
Definition: fib_types.c:236
static uword get_decap_next_for_node(u32 node_index, u32 ipv4_set)
Definition: vxlan.c:572
u32 hw_if_index
Definition: vxlan.h:96
unformat_function_t unformat_ip46_address
Definition: format.h:71
static void vxlan_rewrite(vxlan_tunnel_t *t, bool is_ip6)
Definition: vxlan.c:204
void vnet_delete_hw_interface(vnet_main_t *vnm, u32 hw_if_index)
Definition: interface.c:917
static uword vtep_addr_ref(ip46_address_t *ip)
Definition: vxlan.c:265
u64 uword
Definition: types.h:112
#define foreach_copy_field
Definition: vxlan.c:195
#define unformat_parse_error(input)
Definition: format.h:267
uword * instance_used
Definition: vxlan.h:164
u32 ip_version_traffic_class_and_flow_label
Definition: ip6_packet.h:329
fib_protocol_t fp_proto
protocol type
Definition: mfib_types.h:33
l2input_main_t l2input_main
Definition: l2_input.c:113
index_t dpoi_index
the index of objects of that type
Definition: dpo.h:184
void vnet_int_vxlan_bypass_mode(u32 sw_if_index, u8 is_ip6, u8 is_enable)
Definition: vxlan.c:819
A for-us/local path.
Definition: fib_types.h:317
#define vec_len(v)
Number of elements in vector (rvalue-only, NULL tolerant)
unsigned char u8
Definition: types.h:56
static fib_protocol_t fib_ip_proto(bool is_ip6)
Convert from boolean is_ip6 to FIB protocol.
Definition: fib_types.h:80
static clib_error_t * set_ip_vxlan_bypass(u32 is_ip6, unformat_input_t *input, vlib_cli_command_t *cmd)
Definition: vxlan.c:833
fib_node_index_t fib_entry_index
Definition: vxlan.h:107
static void unformat_free(unformat_input_t *i)
Definition: format.h:161
static void hash_set_mem_alloc(uword **h, void *key, uword v)
Definition: hash.h:278
u32 encap_fib_index
Definition: vxlan.h:92
#define DPO_INVALID
An initialiser for DPOs declared on the stack.
Definition: dpo.h:195
unformat_function_t unformat_vlib_node
Definition: node_funcs.h:1163
u32 * tunnel_index_by_sw_if_index
Definition: vxlan.h:157
#define hash_get_mem(h, key)
Definition: hash.h:268
static void hash_unset_mem_free(uword **h, void *key)
Definition: hash.h:294
A FIB graph nodes virtual function table.
Definition: fib_node.h:273
static u8 * format_decap_next(u8 *s, va_list *args)
Definition: vxlan.c:43
vlib_node_registration_t vxlan4_encap_node
(constructor) VLIB_REGISTER_NODE (vxlan4_encap_node)
Definition: encap.c:486
u8 * format_unformat_error(u8 *s, va_list *va)
Definition: unformat.c:91
adj_index_t adj_mcast_add_or_lock(fib_protocol_t proto, vnet_link_t link_type, u32 sw_if_index)
Mcast Adjacency.
Definition: adj_mcast.c:51
void dpo_reset(dpo_id_t *dpo)
reset a DPO ID The DPO will be unlocked.
Definition: dpo.c:231
vlib_node_registration_t vxlan6_encap_node
(constructor) VLIB_REGISTER_NODE (vxlan6_encap_node)
Definition: encap.c:502
vnet_link_t fib_proto_to_link(fib_protocol_t proto)
Convert from a protocol to a link type.
Definition: fib_types.c:270
clib_error_t * vnet_sw_interface_set_flags(vnet_main_t *vnm, u32 sw_if_index, u32 flags)
Definition: interface.c:562
dpo_id_t next_dpo
Definition: vxlan.h:76
void udp_register_dst_port(vlib_main_t *vm, udp_dst_port_t dst_port, u32 node_index, u8 is_ip4)
Definition: udp_local.c:492
VNET_HW_INTERFACE_CLASS(vxlan_hw_class)
u8 ip_version_and_header_length
Definition: ip4_packet.h:132
u32 flags
Definition: vhost-user.h:77
#define vec_validate_init_empty(V, I, INIT)
Make sure vector is long enough for given index and initialize empty space (no header, unspecified alignment)
Definition: vec.h:483
#define CLIB_CACHE_LINE_BYTES
Definition: cache.h:59
static bool vxlan_decap_next_is_valid(vxlan_main_t *vxm, u32 is_ip6, u32 decap_next_index)
Definition: vxlan.c:255
void vlib_cli_output(vlib_main_t *vm, char *fmt,...)
Definition: cli.c:680
static u16 ip4_header_checksum(ip4_header_t *i)
Definition: ip4_packet.h:239
vxlan_tunnel_t * tunnels
Definition: vxlan.h:142
const ip46_address_t zero_addr
Definition: lookup.c:318
uword unformat(unformat_input_t *i, const char *fmt,...)
Definition: unformat.c:972
ip46_address_t src
Definition: vxlan.h:82
u8 * format_vxlan_tunnel(u8 *s, va_list *args)
Definition: vxlan.c:54
static u8 * format_vxlan_name(u8 *s, va_list *args)
Definition: vxlan.c:76
int vnet_feature_enable_disable(const char *arc_name, const char *node_name, u32 sw_if_index, int enable_disable, void *feature_config, u32 n_feature_config_bytes)
Definition: feature.c:233
ip6_address_t dst_address
Definition: ip6_packet.h:342
static uword unformat_check_input(unformat_input_t *i)
Definition: format.h:169
static uword pool_elts(void *v)
Number of active elements in a pool.
Definition: pool.h:128