FD.io VPP  v16.09
Vector Packet Processing
node.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 /*
16  * ethernet_node.c: ethernet packet processing
17  *
18  * Copyright (c) 2008 Eliot Dresselhaus
19  *
20  * Permission is hereby granted, free of charge, to any person obtaining
21  * a copy of this software and associated documentation files (the
22  * "Software"), to deal in the Software without restriction, including
23  * without limitation the rights to use, copy, modify, merge, publish,
24  * distribute, sublicense, and/or sell copies of the Software, and to
25  * permit persons to whom the Software is furnished to do so, subject to
26  * the following conditions:
27  *
28  * The above copyright notice and this permission notice shall be
29  * included in all copies or substantial portions of the Software.
30  *
31  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
32  * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
33  * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
34  * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE
35  * LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
36  * OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
37  * WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
38  */
39 
40 #include <vlib/vlib.h>
41 #include <vnet/pg/pg.h>
42 #include <vnet/ethernet/ethernet.h>
43 #include <vppinfra/sparse_vec.h>
44 #include <vnet/l2/l2_bvi.h>
45 
46 
47 #define foreach_ethernet_input_next \
48  _ (PUNT, "error-punt") \
49  _ (DROP, "error-drop") \
50  _ (LLC, "llc-input")
51 
52 typedef enum
53 {
54 #define _(s,n) ETHERNET_INPUT_NEXT_##s,
56 #undef _
59 
60 typedef struct
61 {
62  u8 packet_data[32];
64 
65 static u8 *
66 format_ethernet_input_trace (u8 * s, va_list * va)
67 {
68  CLIB_UNUSED (vlib_main_t * vm) = va_arg (*va, vlib_main_t *);
69  CLIB_UNUSED (vlib_node_t * node) = va_arg (*va, vlib_node_t *);
71 
72  s = format (s, "%U", format_ethernet_header, t->packet_data);
73 
74  return s;
75 }
76 
78 
79 typedef enum
80 {
85 
86 
87 // Parse the ethernet header to extract vlan tags and innermost ethertype
90  vlib_buffer_t * b0,
91  u16 * type,
92  u16 * orig_type,
93  u16 * outer_id, u16 * inner_id, u32 * match_flags)
94 {
95  u8 vlan_count;
96 
97  if (variant == ETHERNET_INPUT_VARIANT_ETHERNET
98  || variant == ETHERNET_INPUT_VARIANT_NOT_L2)
99  {
100  ethernet_header_t *e0;
101 
102  e0 = (void *) (b0->data + b0->current_data);
103 
104  vnet_buffer (b0)->ethernet.start_of_ethernet_header = b0->current_data;
105 
106  vlib_buffer_advance (b0, sizeof (e0[0]));
107 
108  *type = clib_net_to_host_u16 (e0->type);
109  }
110  else if (variant == ETHERNET_INPUT_VARIANT_ETHERNET_TYPE)
111  {
112  // here when prior node was LLC/SNAP processing
113  u16 *e0;
114 
115  e0 = (void *) (b0->data + b0->current_data);
116 
117  vlib_buffer_advance (b0, sizeof (e0[0]));
118 
119  *type = clib_net_to_host_u16 (e0[0]);
120  }
121 
122  // save for distinguishing between dot1q and dot1ad later
123  *orig_type = *type;
124 
125  // default the tags to 0 (used if there is no corresponding tag)
126  *outer_id = 0;
127  *inner_id = 0;
128 
130  vlan_count = 0;
131 
132  // check for vlan encaps
133  if ((*type == ETHERNET_TYPE_VLAN) ||
134  (*type == ETHERNET_TYPE_DOT1AD) ||
135  (*type == ETHERNET_TYPE_VLAN_9100) ||
136  (*type == ETHERNET_TYPE_VLAN_9200))
137  {
139  u16 tag;
140 
142 
143  h0 = (void *) (b0->data + b0->current_data);
144 
145  tag = clib_net_to_host_u16 (h0->priority_cfi_and_id);
146 
147  *outer_id = tag & 0xfff;
148 
149  *type = clib_net_to_host_u16 (h0->type);
150 
151  vlib_buffer_advance (b0, sizeof (h0[0]));
152  vlan_count = 1;
153 
154  if (*type == ETHERNET_TYPE_VLAN)
155  {
156  // Double tagged packet
158 
159  h0 = (void *) (b0->data + b0->current_data);
160 
161  tag = clib_net_to_host_u16 (h0->priority_cfi_and_id);
162 
163  *inner_id = tag & 0xfff;
164 
165  *type = clib_net_to_host_u16 (h0->type);
166 
167  vlib_buffer_advance (b0, sizeof (h0[0]));
168  vlan_count = 2;
169 
170  if (*type == ETHERNET_TYPE_VLAN)
171  {
172  // More than double tagged packet
174  vlan_count = 3; // "unknown" number, aka, 3-or-more
175  }
176  }
177  }
178  ethernet_buffer_set_vlan_count (b0, vlan_count);
179 }
180 
181 // Determine the subinterface for this packet, given the result of the
182 // vlan table lookups and vlan header parsing. Check the most specific
183 // matches first.
186  vlib_buffer_t * b0,
187  u32 match_flags,
188  main_intf_t * main_intf,
189  vlan_intf_t * vlan_intf,
190  qinq_intf_t * qinq_intf,
191  u32 * new_sw_if_index, u8 * error0, u32 * is_l2)
192 {
193  u32 matched;
194 
195  matched = eth_identify_subint (hi, b0, match_flags,
196  main_intf, vlan_intf, qinq_intf,
197  new_sw_if_index, error0, is_l2);
198 
199  if (matched)
200  {
201 
202  // Perform L3 my-mac filter
203  // A unicast packet arriving on an L3 interface must have a dmac matching the interface mac.
204  // This is required for promiscuous mode, else we will forward packets we aren't supposed to.
205  if (!(*is_l2))
206  {
207  ethernet_header_t *e0;
208  e0 =
209  (void *) (b0->data +
210  vnet_buffer (b0)->ethernet.start_of_ethernet_header);
211 
212  if (!(ethernet_address_cast (e0->dst_address)))
213  {
214  if (!eth_mac_equal ((u8 *) e0, hi->hw_address))
215  {
216  *error0 = ETHERNET_ERROR_L3_MAC_MISMATCH;
217  }
218  }
219  }
220 
221  // Check for down subinterface
222  *error0 = (*new_sw_if_index) != ~0 ? (*error0) : ETHERNET_ERROR_DOWN;
223  }
224 }
225 
228  ethernet_input_variant_t variant,
229  u32 is_l20,
230  u32 type0, vlib_buffer_t * b0, u8 * error0, u8 * next0)
231 {
232  if (PREDICT_FALSE (*error0 != ETHERNET_ERROR_NONE))
233  {
234  // some error occurred
235  *next0 = ETHERNET_INPUT_NEXT_DROP;
236  }
237  else if (is_l20)
238  {
239  *next0 = em->l2_next;
240  // record the L2 len and reset the buffer so the L2 header is preserved
241  vnet_buffer (b0)->l2.l2_len = b0->current_data;
243 
244  // check for common IP/MPLS ethertypes
245  }
246  else if (type0 == ETHERNET_TYPE_IP4)
247  {
248  *next0 = em->l3_next.input_next_ip4;
249  }
250  else if (type0 == ETHERNET_TYPE_IP6)
251  {
252  *next0 = em->l3_next.input_next_ip6;
253  }
254  else if (type0 == ETHERNET_TYPE_MPLS_UNICAST)
255  {
256  *next0 = em->l3_next.input_next_mpls;
257 
258  }
259  else if (em->redirect_l3)
260  {
261  // L3 Redirect is on, the cached common next nodes will be
262  // pointing to the redirect node, catch the uncommon types here
263  *next0 = em->redirect_l3_next;
264  }
265  else
266  {
267  // uncommon ethertype, check table
268  u32 i0;
269  i0 = sparse_vec_index (em->l3_next.input_next_by_type, type0);
270  *next0 = vec_elt (em->l3_next.input_next_by_type, i0);
271  *error0 =
272  i0 ==
273  SPARSE_VEC_INVALID_INDEX ? ETHERNET_ERROR_UNKNOWN_TYPE : *error0;
274 
275  // The table is not populated with LLC values, so check that now.
276  // If variant is variant_ethernet then we came from LLC processing. Don't
277  // go back there; drop instead using by keeping the drop/bad table result.
278  if ((type0 < 0x600) && (variant == ETHERNET_INPUT_VARIANT_ETHERNET))
279  {
280  *next0 = ETHERNET_INPUT_NEXT_LLC;
281  }
282  }
283 }
284 
287  vlib_node_runtime_t * node,
288  vlib_frame_t * from_frame,
289  ethernet_input_variant_t variant)
290 {
291  vnet_main_t *vnm = vnet_get_main ();
293  vlib_node_runtime_t *error_node;
294  u32 n_left_from, next_index, *from, *to_next;
295  u32 stats_sw_if_index, stats_n_packets, stats_n_bytes;
296  u32 cpu_index = os_get_cpu_number ();
297 
298  if (variant != ETHERNET_INPUT_VARIANT_ETHERNET)
299  error_node = vlib_node_get_runtime (vm, ethernet_input_node.index);
300  else
301  error_node = node;
302 
303  from = vlib_frame_vector_args (from_frame);
304  n_left_from = from_frame->n_vectors;
305 
306  if (node->flags & VLIB_NODE_FLAG_TRACE)
308  from,
309  n_left_from,
310  sizeof (from[0]),
311  sizeof (ethernet_input_trace_t));
312 
313  next_index = node->cached_next_index;
314  stats_sw_if_index = node->runtime_data[0];
315  stats_n_packets = stats_n_bytes = 0;
316 
317  while (n_left_from > 0)
318  {
319  u32 n_left_to_next;
320 
321  vlib_get_next_frame (vm, node, next_index, to_next, n_left_to_next);
322 
323  while (n_left_from >= 4 && n_left_to_next >= 2)
324  {
325  u32 bi0, bi1;
326  vlib_buffer_t *b0, *b1;
327  u8 next0, next1, error0, error1;
328  u16 type0, orig_type0, type1, orig_type1;
329  u16 outer_id0, inner_id0, outer_id1, inner_id1;
330  u32 match_flags0, match_flags1;
331  u32 old_sw_if_index0, new_sw_if_index0, len0, old_sw_if_index1,
332  new_sw_if_index1, len1;
333  vnet_hw_interface_t *hi0, *hi1;
334  main_intf_t *main_intf0, *main_intf1;
335  vlan_intf_t *vlan_intf0, *vlan_intf1;
336  qinq_intf_t *qinq_intf0, *qinq_intf1;
337  u32 is_l20, is_l21;
338 
339  /* Prefetch next iteration. */
340  {
341  vlib_buffer_t *b2, *b3;
342 
343  b2 = vlib_get_buffer (vm, from[2]);
344  b3 = vlib_get_buffer (vm, from[3]);
345 
346  vlib_prefetch_buffer_header (b2, STORE);
347  vlib_prefetch_buffer_header (b3, STORE);
348 
349  CLIB_PREFETCH (b2->data, sizeof (ethernet_header_t), LOAD);
350  CLIB_PREFETCH (b3->data, sizeof (ethernet_header_t), LOAD);
351  }
352 
353  bi0 = from[0];
354  bi1 = from[1];
355  to_next[0] = bi0;
356  to_next[1] = bi1;
357  from += 2;
358  to_next += 2;
359  n_left_to_next -= 2;
360  n_left_from -= 2;
361 
362  b0 = vlib_get_buffer (vm, bi0);
363  b1 = vlib_get_buffer (vm, bi1);
364 
365  error0 = error1 = ETHERNET_ERROR_NONE;
366 
367  parse_header (variant,
368  b0,
369  &type0,
370  &orig_type0, &outer_id0, &inner_id0, &match_flags0);
371 
372  parse_header (variant,
373  b1,
374  &type1,
375  &orig_type1, &outer_id1, &inner_id1, &match_flags1);
376 
377  old_sw_if_index0 = vnet_buffer (b0)->sw_if_index[VLIB_RX];
378  old_sw_if_index1 = vnet_buffer (b1)->sw_if_index[VLIB_RX];
379 
381  vnm,
382  old_sw_if_index0,
383  orig_type0,
384  outer_id0,
385  inner_id0,
386  &hi0,
387  &main_intf0, &vlan_intf0, &qinq_intf0);
388 
390  vnm,
391  old_sw_if_index1,
392  orig_type1,
393  outer_id1,
394  inner_id1,
395  &hi1,
396  &main_intf1, &vlan_intf1, &qinq_intf1);
397 
398  identify_subint (hi0,
399  b0,
400  match_flags0,
401  main_intf0,
402  vlan_intf0,
403  qinq_intf0, &new_sw_if_index0, &error0, &is_l20);
404 
405  identify_subint (hi1,
406  b1,
407  match_flags1,
408  main_intf1,
409  vlan_intf1,
410  qinq_intf1, &new_sw_if_index1, &error1, &is_l21);
411 
412  // Save RX sw_if_index for later nodes
413  vnet_buffer (b0)->sw_if_index[VLIB_RX] =
414  error0 !=
415  ETHERNET_ERROR_NONE ? old_sw_if_index0 : new_sw_if_index0;
416  vnet_buffer (b1)->sw_if_index[VLIB_RX] =
417  error1 !=
418  ETHERNET_ERROR_NONE ? old_sw_if_index1 : new_sw_if_index1;
419 
420  // Check if there is a stat to take (valid and non-main sw_if_index for pkt 0 or pkt 1)
421  if (((new_sw_if_index0 != ~0)
422  && (new_sw_if_index0 != old_sw_if_index0))
423  || ((new_sw_if_index1 != ~0)
424  && (new_sw_if_index1 != old_sw_if_index1)))
425  {
426 
427  len0 = vlib_buffer_length_in_chain (vm, b0) + b0->current_data
428  - vnet_buffer (b0)->ethernet.start_of_ethernet_header;
429  len1 = vlib_buffer_length_in_chain (vm, b1) + b1->current_data
430  - vnet_buffer (b1)->ethernet.start_of_ethernet_header;
431 
432  stats_n_packets += 2;
433  stats_n_bytes += len0 + len1;
434 
435  if (PREDICT_FALSE
436  (!(new_sw_if_index0 == stats_sw_if_index
437  && new_sw_if_index1 == stats_sw_if_index)))
438  {
439  stats_n_packets -= 2;
440  stats_n_bytes -= len0 + len1;
441 
442  if (new_sw_if_index0 != old_sw_if_index0
443  && new_sw_if_index0 != ~0)
445  interface_main.combined_sw_if_counters
446  +
448  cpu_index,
449  new_sw_if_index0, 1,
450  len0);
451  if (new_sw_if_index1 != old_sw_if_index1
452  && new_sw_if_index1 != ~0)
454  interface_main.combined_sw_if_counters
455  +
457  cpu_index,
458  new_sw_if_index1, 1,
459  len1);
460 
461  if (new_sw_if_index0 == new_sw_if_index1)
462  {
463  if (stats_n_packets > 0)
464  {
468  cpu_index,
469  stats_sw_if_index,
470  stats_n_packets, stats_n_bytes);
471  stats_n_packets = stats_n_bytes = 0;
472  }
473  stats_sw_if_index = new_sw_if_index0;
474  }
475  }
476  }
477 
478  if (variant == ETHERNET_INPUT_VARIANT_NOT_L2)
479  is_l20 = is_l21 = 0;
480 
481  determine_next_node (em, variant, is_l20, type0, b0, &error0,
482  &next0);
483  determine_next_node (em, variant, is_l21, type1, b1, &error1,
484  &next1);
485 
486  b0->error = error_node->errors[error0];
487  b1->error = error_node->errors[error1];
488 
489  // verify speculative enqueue
490  vlib_validate_buffer_enqueue_x2 (vm, node, next_index, to_next,
491  n_left_to_next, bi0, bi1, next0,
492  next1);
493  }
494 
495  while (n_left_from > 0 && n_left_to_next > 0)
496  {
497  u32 bi0;
498  vlib_buffer_t *b0;
499  u8 error0, next0;
500  u16 type0, orig_type0;
501  u16 outer_id0, inner_id0;
502  u32 match_flags0;
503  u32 old_sw_if_index0, new_sw_if_index0, len0;
504  vnet_hw_interface_t *hi0;
505  main_intf_t *main_intf0;
506  vlan_intf_t *vlan_intf0;
507  qinq_intf_t *qinq_intf0;
508  u32 is_l20;
509 
510  // Prefetch next iteration
511  if (n_left_from > 1)
512  {
513  vlib_buffer_t *p2;
514 
515  p2 = vlib_get_buffer (vm, from[1]);
516  vlib_prefetch_buffer_header (p2, STORE);
518  }
519 
520  bi0 = from[0];
521  to_next[0] = bi0;
522  from += 1;
523  to_next += 1;
524  n_left_from -= 1;
525  n_left_to_next -= 1;
526 
527  b0 = vlib_get_buffer (vm, bi0);
528 
529  error0 = ETHERNET_ERROR_NONE;
530 
531  parse_header (variant,
532  b0,
533  &type0,
534  &orig_type0, &outer_id0, &inner_id0, &match_flags0);
535 
536  old_sw_if_index0 = vnet_buffer (b0)->sw_if_index[VLIB_RX];
537 
539  vnm,
540  old_sw_if_index0,
541  orig_type0,
542  outer_id0,
543  inner_id0,
544  &hi0,
545  &main_intf0, &vlan_intf0, &qinq_intf0);
546 
547  identify_subint (hi0,
548  b0,
549  match_flags0,
550  main_intf0,
551  vlan_intf0,
552  qinq_intf0, &new_sw_if_index0, &error0, &is_l20);
553 
554  // Save RX sw_if_index for later nodes
555  vnet_buffer (b0)->sw_if_index[VLIB_RX] =
556  error0 !=
557  ETHERNET_ERROR_NONE ? old_sw_if_index0 : new_sw_if_index0;
558 
559  // Increment subinterface stats
560  // Note that interface-level counters have already been incremented
561  // prior to calling this function. Thus only subinterface counters
562  // are incremented here.
563  //
564  // Interface level counters include packets received on the main
565  // interface and all subinterfaces. Subinterface level counters
566  // include only those packets received on that subinterface
567  // Increment stats if the subint is valid and it is not the main intf
568  if ((new_sw_if_index0 != ~0)
569  && (new_sw_if_index0 != old_sw_if_index0))
570  {
571 
572  len0 = vlib_buffer_length_in_chain (vm, b0) + b0->current_data
573  - vnet_buffer (b0)->ethernet.start_of_ethernet_header;
574 
575  stats_n_packets += 1;
576  stats_n_bytes += len0;
577 
578  // Batch stat increments from the same subinterface so counters
579  // don't need to be incremented for every packet.
580  if (PREDICT_FALSE (new_sw_if_index0 != stats_sw_if_index))
581  {
582  stats_n_packets -= 1;
583  stats_n_bytes -= len0;
584 
585  if (new_sw_if_index0 != ~0)
589  cpu_index, new_sw_if_index0, 1, len0);
590  if (stats_n_packets > 0)
591  {
595  cpu_index,
596  stats_sw_if_index, stats_n_packets, stats_n_bytes);
597  stats_n_packets = stats_n_bytes = 0;
598  }
599  stats_sw_if_index = new_sw_if_index0;
600  }
601  }
602 
603  if (variant == ETHERNET_INPUT_VARIANT_NOT_L2)
604  is_l20 = 0;
605 
606  determine_next_node (em, variant, is_l20, type0, b0, &error0,
607  &next0);
608 
609  b0->error = error_node->errors[error0];
610 
611  // verify speculative enqueue
612  vlib_validate_buffer_enqueue_x1 (vm, node, next_index,
613  to_next, n_left_to_next,
614  bi0, next0);
615  }
616 
617  vlib_put_next_frame (vm, node, next_index, n_left_to_next);
618  }
619 
620  // Increment any remaining batched stats
621  if (stats_n_packets > 0)
622  {
626  cpu_index, stats_sw_if_index, stats_n_packets, stats_n_bytes);
627  node->runtime_data[0] = stats_sw_if_index;
628  }
629 
630  return from_frame->n_vectors;
631 }
632 
633 static uword
635  vlib_node_runtime_t * node, vlib_frame_t * from_frame)
636 {
637  return ethernet_input_inline (vm, node, from_frame,
639 }
640 
641 static uword
643  vlib_node_runtime_t * node, vlib_frame_t * from_frame)
644 {
645  return ethernet_input_inline (vm, node, from_frame,
647 }
648 
649 static uword
651  vlib_node_runtime_t * node, vlib_frame_t * from_frame)
652 {
653  return ethernet_input_inline (vm, node, from_frame,
655 }
656 
657 
658 // Return the subinterface config struct for the given sw_if_index
659 // Also return via parameter the appropriate match flags for the
660 // configured number of tags.
661 // On error (unsupported or not ethernet) return 0.
662 static subint_config_t *
664  u32 sw_if_index,
665  u32 * flags, u32 * unsupported)
666 {
670  main_intf_t *main_intf;
671  vlan_table_t *vlan_table;
672  qinq_table_t *qinq_table;
673  subint_config_t *subint = 0;
674 
675  hi = vnet_get_sup_hw_interface (vnm, sw_if_index);
676 
677  if (!hi || (hi->hw_class_index != ethernet_hw_interface_class.index))
678  {
679  *unsupported = 0;
680  goto done; // non-ethernet interface
681  }
682 
683  // ensure there's an entry for the main intf (shouldn't really be necessary)
685  main_intf = vec_elt_at_index (em->main_intfs, hi->hw_if_index);
686 
687  // Locate the subint for the given ethernet config
688  si = vnet_get_sw_interface (vnm, sw_if_index);
689 
690  if (si->sub.eth.flags.default_sub)
691  {
692  subint = &main_intf->default_subint;
693  *flags = SUBINT_CONFIG_MATCH_0_TAG |
696  }
697  else if ((si->sub.eth.flags.no_tags) || (si->sub.eth.raw_flags == 0))
698  {
699  // if no flags are set then this is a main interface
700  // so treat as untagged
701  subint = &main_intf->untagged_subint;
702  *flags = SUBINT_CONFIG_MATCH_0_TAG;
703  }
704  else
705  {
706  // one or two tags
707  // first get the vlan table
708  if (si->sub.eth.flags.dot1ad)
709  {
710  if (main_intf->dot1ad_vlans == 0)
711  {
712  // Allocate a vlan table from the pool
713  pool_get (em->vlan_pool, vlan_table);
714  main_intf->dot1ad_vlans = vlan_table - em->vlan_pool;
715  }
716  else
717  {
718  // Get ptr to existing vlan table
719  vlan_table =
720  vec_elt_at_index (em->vlan_pool, main_intf->dot1ad_vlans);
721  }
722  }
723  else
724  { // dot1q
725  if (main_intf->dot1q_vlans == 0)
726  {
727  // Allocate a vlan table from the pool
728  pool_get (em->vlan_pool, vlan_table);
729  main_intf->dot1q_vlans = vlan_table - em->vlan_pool;
730  }
731  else
732  {
733  // Get ptr to existing vlan table
734  vlan_table =
735  vec_elt_at_index (em->vlan_pool, main_intf->dot1q_vlans);
736  }
737  }
738 
739  if (si->sub.eth.flags.one_tag)
740  {
741  *flags = si->sub.eth.flags.exact_match ?
745 
746  if (si->sub.eth.flags.outer_vlan_id_any)
747  {
748  // not implemented yet
749  *unsupported = 1;
750  goto done;
751  }
752  else
753  {
754  // a single vlan, a common case
755  subint =
756  &vlan_table->vlans[si->sub.eth.
757  outer_vlan_id].single_tag_subint;
758  }
759 
760  }
761  else
762  {
763  // Two tags
764  *flags = si->sub.eth.flags.exact_match ?
767 
768  if (si->sub.eth.flags.outer_vlan_id_any
769  && si->sub.eth.flags.inner_vlan_id_any)
770  {
771  // not implemented yet
772  *unsupported = 1;
773  goto done;
774  }
775 
776  if (si->sub.eth.flags.inner_vlan_id_any)
777  {
778  // a specific outer and "any" inner
779  // don't need a qinq table for this
780  subint =
781  &vlan_table->vlans[si->sub.eth.
782  outer_vlan_id].inner_any_subint;
783  if (si->sub.eth.flags.exact_match)
784  {
785  *flags = SUBINT_CONFIG_MATCH_2_TAG;
786  }
787  else
788  {
789  *flags = SUBINT_CONFIG_MATCH_2_TAG |
791  }
792  }
793  else
794  {
795  // a specific outer + specifc innner vlan id, a common case
796 
797  // get the qinq table
798  if (vlan_table->vlans[si->sub.eth.outer_vlan_id].qinqs == 0)
799  {
800  // Allocate a qinq table from the pool
801  pool_get (em->qinq_pool, qinq_table);
802  vlan_table->vlans[si->sub.eth.outer_vlan_id].qinqs =
803  qinq_table - em->qinq_pool;
804  }
805  else
806  {
807  // Get ptr to existing qinq table
808  qinq_table =
810  vlan_table->vlans[si->sub.
811  eth.outer_vlan_id].
812  qinqs);
813  }
814  subint = &qinq_table->vlans[si->sub.eth.inner_vlan_id].subint;
815  }
816  }
817  }
818 
819 done:
820  return subint;
821 }
822 
823 clib_error_t *
825 {
826  subint_config_t *subint;
827  u32 dummy_flags;
828  u32 dummy_unsup;
829  clib_error_t *error = 0;
830 
831  // Find the config for this subinterface
832  subint =
833  ethernet_sw_interface_get_config (vnm, sw_if_index, &dummy_flags,
834  &dummy_unsup);
835 
836  if (subint == 0)
837  {
838  // not implemented yet or not ethernet
839  goto done;
840  }
841 
842  subint->sw_if_index =
843  ((flags & VNET_SW_INTERFACE_FLAG_ADMIN_UP) ? sw_if_index : ~0);
844 
845 done:
846  return error;
847 }
848 
850 
851 
852 // Set the L2/L3 mode for the subinterface
853 void
855 {
856  subint_config_t *subint;
857  u32 dummy_flags;
858  u32 dummy_unsup;
859  int is_port;
860  vnet_sw_interface_t *sw = vnet_get_sw_interface (vnm, sw_if_index);
861 
862  is_port = !(sw->type == VNET_SW_INTERFACE_TYPE_SUB);
863 
864  // Find the config for this subinterface
865  subint =
866  ethernet_sw_interface_get_config (vnm, sw_if_index, &dummy_flags,
867  &dummy_unsup);
868 
869  if (subint == 0)
870  {
871  // unimplemented or not ethernet
872  goto done;
873  }
874 
875  // Double check that the config we found is for our interface (or the interface is down)
876  ASSERT ((subint->sw_if_index == sw_if_index) | (subint->sw_if_index == ~0));
877 
878  if (l2)
879  {
880  subint->flags |= SUBINT_CONFIG_L2;
881  if (is_port)
882  subint->flags |=
885  }
886  else
887  {
888  subint->flags &= ~SUBINT_CONFIG_L2;
889  if (is_port)
890  subint->flags &=
893  }
894 
895 done:
896  return;
897 }
898 
899 /*
900  * Set the L2/L3 mode for the subinterface regardless of port
901  */
902 void
904  u32 sw_if_index, u32 l2)
905 {
906  subint_config_t *subint;
907  u32 dummy_flags;
908  u32 dummy_unsup;
909 
910  /* Find the config for this subinterface */
911  subint =
912  ethernet_sw_interface_get_config (vnm, sw_if_index, &dummy_flags,
913  &dummy_unsup);
914 
915  if (subint == 0)
916  {
917  /* unimplemented or not ethernet */
918  goto done;
919  }
920 
921  /*
922  * Double check that the config we found is for our interface (or the
923  * interface is down)
924  */
925  ASSERT ((subint->sw_if_index == sw_if_index) | (subint->sw_if_index == ~0));
926 
927  if (l2)
928  {
929  subint->flags |= SUBINT_CONFIG_L2;
930  }
931  else
932  {
933  subint->flags &= ~SUBINT_CONFIG_L2;
934  }
935 
936 done:
937  return;
938 }
939 
940 static clib_error_t *
942  u32 sw_if_index, u32 is_create)
943 {
944  clib_error_t *error = 0;
945  subint_config_t *subint;
946  u32 match_flags;
947  u32 unsupported = 0;
948 
949  // Find the config for this subinterface
950  subint =
951  ethernet_sw_interface_get_config (vnm, sw_if_index, &match_flags,
952  &unsupported);
953 
954  if (subint == 0)
955  {
956  // not implemented yet or not ethernet
957  if (unsupported)
958  {
959  // this is the NYI case
960  error = clib_error_return (0, "not implemented yet");
961  }
962  goto done;
963  }
964 
965  if (!is_create)
966  {
967  subint->flags = 0;
968  return error;
969  }
970 
971  // Initialize the subint
972  if (subint->flags & SUBINT_CONFIG_VALID)
973  {
974  // Error vlan already in use
975  error = clib_error_return (0, "vlan is already in use");
976  }
977  else
978  {
979  // Note that config is L3 by defaulty
980  subint->flags = SUBINT_CONFIG_VALID | match_flags;
981  subint->sw_if_index = ~0; // because interfaces are initially down
982  }
983 
984 done:
985  return error;
986 }
987 
989 
990 static char *ethernet_error_strings[] = {
991 #define ethernet_error(n,c,s) s,
992 #include "error.def"
993 #undef ethernet_error
994 };
995 
996 /* *INDENT-OFF* */
998  .function = ethernet_input,
999  .name = "ethernet-input",
1000  /* Takes a vector of packets. */
1001  .vector_size = sizeof (u32),
1002  .n_errors = ETHERNET_N_ERROR,
1003  .error_strings = ethernet_error_strings,
1004  .n_next_nodes = ETHERNET_INPUT_N_NEXT,
1005  .next_nodes = {
1006 #define _(s,n) [ETHERNET_INPUT_NEXT_##s] = n,
1008 #undef _
1009  },
1010  .format_buffer = format_ethernet_header_with_length,
1011  .format_trace = format_ethernet_input_trace,
1012  .unformat_buffer = unformat_ethernet_header,
1013 };
1014 /* *INDENT-ON* */
1015 
1016 /* *INDENT-OFF* */
1018 /* *INDENT-ON* */
1019 
1020 /* *INDENT-OFF* */
1022  .function = ethernet_input_type,
1023  .name = "ethernet-input-type",
1024  /* Takes a vector of packets. */
1025  .vector_size = sizeof (u32),
1026  .n_next_nodes = ETHERNET_INPUT_N_NEXT,
1027  .next_nodes = {
1028 #define _(s,n) [ETHERNET_INPUT_NEXT_##s] = n,
1030 #undef _
1031  },
1032 };
1033 /* *INDENT-ON* */
1034 
1035 /* *INDENT-OFF* */
1037 /* *INDENT-ON* */
1038 
1039 /* *INDENT-OFF* */
1041  .function = ethernet_input_not_l2,
1042  .name = "ethernet-input-not-l2",
1043  /* Takes a vector of packets. */
1044  .vector_size = sizeof (u32),
1045  .n_next_nodes = ETHERNET_INPUT_N_NEXT,
1046  .next_nodes = {
1047 #define _(s,n) [ETHERNET_INPUT_NEXT_##s] = n,
1049 #undef _
1050  },
1051 };
1052 /* *INDENT-ON* */
1053 
1054 
1055 /* *INDENT-OFF* */
1058 /* *INDENT-ON* */
1059 
1060 
1061 void
1063  vnet_hw_interface_t * hi, u32 enable)
1064 {
1065  // Insure all packets go to ethernet-input (i.e. untagged ipv4 packets
1066  // don't go directly to ip4-input)
1068  (vnm, hi->hw_if_index, enable ? ethernet_input_node.index : ~0);
1069 }
1070 
1071 
1072 /*
1073  * Initialization and registration for the next_by_ethernet structure
1074  */
1075 
1076 clib_error_t *
1078 {
1080  ( /* elt bytes */ sizeof (l3_next->input_next_by_type[0]),
1081  /* bits in index */ BITS (((ethernet_header_t *) 0)->type));
1082 
1084  ETHERNET_INPUT_NEXT_DROP);
1086  ETHERNET_INPUT_NEXT_PUNT);
1087  l3_next->sparse_index_by_input_next_index[ETHERNET_INPUT_NEXT_DROP] =
1089  l3_next->sparse_index_by_input_next_index[ETHERNET_INPUT_NEXT_PUNT] =
1091 
1092  /*
1093  * Make sure we don't wipe out an ethernet registration by mistake
1094  * Can happen if init function ordering constraints are missing.
1095  */
1096  if (CLIB_DEBUG > 0)
1097  {
1100  }
1101 
1102  return 0;
1103 }
1104 
1105 // Add an ethertype -> next index mapping to the structure
1106 clib_error_t *
1108  u32 ethertype, u32 next_index)
1109 {
1110  u32 i;
1111  u16 *n;
1113 
1114  if (CLIB_DEBUG > 0)
1115  {
1118  }
1119 
1120  /* Setup ethernet type -> next index sparse vector mapping. */
1121  n = sparse_vec_validate (l3_next->input_next_by_type, ethertype);
1122  n[0] = next_index;
1123 
1124  /* Rebuild next index -> sparse index inverse mapping when sparse vector
1125  is updated. */
1126  vec_validate (l3_next->sparse_index_by_input_next_index, next_index);
1127  for (i = 1; i < vec_len (l3_next->input_next_by_type); i++)
1128  l3_next->
1129  sparse_index_by_input_next_index[l3_next->input_next_by_type[i]] = i;
1130 
1131  // do not allow the cached next index's to be updated if L3
1132  // redirect is enabled, as it will have overwritten them
1133  if (!em->redirect_l3)
1134  {
1135  // Cache common ethertypes directly
1136  if (ethertype == ETHERNET_TYPE_IP4)
1137  {
1138  l3_next->input_next_ip4 = next_index;
1139  }
1140  else if (ethertype == ETHERNET_TYPE_IP6)
1141  {
1142  l3_next->input_next_ip6 = next_index;
1143  }
1144  else if (ethertype == ETHERNET_TYPE_MPLS_UNICAST)
1145  {
1146  l3_next->input_next_mpls = next_index;
1147  }
1148  }
1149  return 0;
1150 }
1151 
1152 
1153 static clib_error_t *
1155 {
1157  __attribute__ ((unused)) vlan_table_t *invalid_vlan_table;
1158  __attribute__ ((unused)) qinq_table_t *invalid_qinq_table;
1159 
1163 
1165 
1166  // Initialize pools and vector for vlan parsing
1167  vec_validate (em->main_intfs, 10); // 10 main interfaces
1168  pool_alloc (em->vlan_pool, 10);
1169  pool_alloc (em->qinq_pool, 1);
1170 
1171  // The first vlan pool will always be reserved for an invalid table
1172  pool_get (em->vlan_pool, invalid_vlan_table); // first id = 0
1173  // The first qinq pool will always be reserved for an invalid table
1174  pool_get (em->qinq_pool, invalid_qinq_table); // first id = 0
1175 
1176  return 0;
1177 }
1178 
1180 
1181 void
1183  ethernet_type_t type, u32 node_index)
1184 {
1187  u32 i;
1188 
1189  {
1191  if (error)
1192  clib_error_report (error);
1193  }
1194 
1195  ti = ethernet_get_type_info (em, type);
1196  ti->node_index = node_index;
1197  ti->next_index = vlib_node_add_next (vm,
1198  ethernet_input_node.index, node_index);
1199  i = vlib_node_add_next (vm, ethernet_input_type_node.index, node_index);
1200  ASSERT (i == ti->next_index);
1201 
1202  i = vlib_node_add_next (vm, ethernet_input_not_l2_node.index, node_index);
1203  ASSERT (i == ti->next_index);
1204 
1205  // Add the L3 node for this ethertype to the next nodes structure
1206  next_by_ethertype_register (&em->l3_next, type, ti->next_index);
1207 
1208  // Call the registration functions for other nodes that want a mapping
1209  l2bvi_register_input_type (vm, type, node_index);
1210 }
1211 
1212 void
1214 {
1216  u32 i;
1217 
1218  em->l2_next =
1219  vlib_node_add_next (vm, ethernet_input_node.index, node_index);
1220 
1221  /*
1222  * Even if we never use these arcs, we have to align the next indices...
1223  */
1224  i = vlib_node_add_next (vm, ethernet_input_type_node.index, node_index);
1225 
1226  ASSERT (i == em->l2_next);
1227 
1228  i = vlib_node_add_next (vm, ethernet_input_not_l2_node.index, node_index);
1229  ASSERT (i == em->l2_next);
1230 }
1231 
1232 // Register a next node for L3 redirect, and enable L3 redirect
1233 void
1235 {
1237  u32 i;
1238 
1239  em->redirect_l3 = 1;
1241  ethernet_input_node.index,
1242  node_index);
1243  /*
1244  * Change the cached next nodes to the redirect node
1245  */
1249 
1250  /*
1251  * Even if we never use these arcs, we have to align the next indices...
1252  */
1253  i = vlib_node_add_next (vm, ethernet_input_type_node.index, node_index);
1254 
1255  ASSERT (i == em->redirect_l3_next);
1256 }
1257 
1258 /*
1259  * fd.io coding-style-patch-verification: ON
1260  *
1261  * Local Variables:
1262  * eval: (c-set-style "gnu")
1263  * End:
1264  */
#define vec_validate(V, I)
Make sure vector is long enough for given index (no header, unspecified alignment) ...
Definition: vec.h:396
void vlib_put_next_frame(vlib_main_t *vm, vlib_node_runtime_t *r, u32 next_index, u32 n_vectors_left)
Release pointer to next frame vector data.
Definition: main.c:457
VLIB_NODE_FUNCTION_MULTIARCH(ethernet_input_not_l2_node, ethernet_input_not_l2)
Definition: node.c:1056
subint_config_t subint
Definition: ethernet.h:176
vmrglw vmrglh hi
static clib_error_t * ethernet_input_init(vlib_main_t *vm)
Definition: node.c:1154
sll srl srl sll sra u16x4 i
Definition: vector_sse2.h:343
#define CLIB_UNUSED(x)
Definition: clib.h:79
VNET_SW_INTERFACE_ADD_DEL_FUNCTION(ethernet_sw_interface_add_del)
bad routing header type(not 4)") sr_error (NO_MORE_SEGMENTS
static vnet_hw_interface_t * vnet_get_sup_hw_interface(vnet_main_t *vnm, u32 sw_if_index)
#define pool_alloc(P, N)
Allocate N more free elements to pool (unspecified alignment).
Definition: pool.h:247
vnet_interface_main_t interface_main
Definition: vnet.h:64
int vnet_hw_interface_rx_redirect_to_node(vnet_main_t *vnm, u32 hw_if_index, u32 node_index)
Definition: interface.c:1022
ethernet_type_t
Definition: packet.h:43
#define SUBINT_CONFIG_MATCH_0_TAG
Definition: ethernet.h:138
#define ethernet_buffer_header_size(b)
Determine the size of the Ethernet headers of the current frame in the buffer.
Definition: ethernet.h:358
struct _vlib_node_registration vlib_node_registration_t
struct vnet_sub_interface_t::@120::@121::@123 flags
main_intf_t * main_intfs
Definition: ethernet.h:225
void ethernet_sw_interface_set_l2_mode_noport(vnet_main_t *vnm, u32 sw_if_index, u32 l2)
Definition: node.c:903
static vnet_sw_interface_t * vnet_get_sw_interface(vnet_main_t *vnm, u32 sw_if_index)
static vlib_node_registration_t ethernet_input_not_l2_node
(constructor) VLIB_REGISTER_NODE (ethernet_input_not_l2_node)
Definition: node.c:1040
subint_config_t inner_any_subint
Definition: ethernet.h:165
u8 packet_data[32]
Definition: node.c:62
#define clib_error_report(e)
Definition: error.h:125
vlib_error_t * errors
Definition: node.h:418
static uword vlib_buffer_length_in_chain(vlib_main_t *vm, vlib_buffer_t *b)
Get length in bytes of the buffer chain.
Definition: buffer_funcs.h:112
#define pool_get(P, E)
Allocate an object E from a pool P (unspecified alignment).
Definition: pool.h:200
clib_error_t * next_by_ethertype_init(next_by_ethertype_t *l3_next)
Definition: node.c:1077
static uword vlib_node_add_next(vlib_main_t *vm, uword node, uword next_node)
Definition: node_funcs.h:1061
static subint_config_t * ethernet_sw_interface_get_config(vnet_main_t *vnm, u32 sw_if_index, u32 *flags, u32 *unsupported)
Definition: node.c:663
ethernet_main_t ethernet_main
Definition: ethernet.h:241
vnet_main_t * vnet_get_main(void)
Definition: misc.c:45
static uword ethernet_input_not_l2(vlib_main_t *vm, vlib_node_runtime_t *node, vlib_frame_t *from_frame)
Definition: node.c:650
i16 current_data
signed offset in data[], pre_data[] that we are currently processing.
Definition: buffer.h:78
#define static_always_inline
Definition: clib.h:85
static_always_inline uword ethernet_input_inline(vlib_main_t *vm, vlib_node_runtime_t *node, vlib_frame_t *from_frame, ethernet_input_variant_t variant)
Definition: node.c:286
#define VLIB_INIT_FUNCTION(x)
Definition: init.h:111
static uword ethernet_address_cast(u8 *a)
Definition: packet.h:65
vlib_combined_counter_main_t * combined_sw_if_counters
Definition: interface.h:501
u8 dst_address[6]
Definition: packet.h:53
#define sparse_vec_validate(v, i)
Definition: sparse_vec.h:214
subint_config_t default_subint
Definition: ethernet.h:157
#define vec_elt_at_index(v, i)
Get vector value at index i checking that i is in bounds.
#define vlib_call_init_function(vm, x)
Definition: init.h:161
static u8 * format_ethernet_input_trace(u8 *s, va_list *va)
Definition: node.c:66
void ethernet_set_rx_redirect(vnet_main_t *vnm, vnet_hw_interface_t *hi, u32 enable)
u16 dot1q_vlans
Definition: ethernet.h:158
subint_config_t single_tag_subint
Definition: ethernet.h:164
vnet_sub_interface_t sub
Definition: interface.h:447
u32 * sparse_index_by_input_next_index
Definition: ethernet.h:192
static ethernet_type_info_t * ethernet_get_type_info(ethernet_main_t *em, ethernet_type_t type)
Definition: ethernet.h:244
ethernet_input_next_t
Definition: node.c:52
uword os_get_cpu_number(void)
Definition: unix-misc.c:224
void ethernet_sw_interface_set_l2_mode(vnet_main_t *vnm, u32 sw_if_index, u32 l2)
Definition: node.c:854
#define PREDICT_FALSE(x)
Definition: clib.h:97
#define ethernet_buffer_set_vlan_count(b, v)
Sets the number of VLAN headers in the current Ethernet frame in the buffer.
Definition: ethernet.h:331
u16 dot1ad_vlans
Definition: ethernet.h:159
#define vlib_validate_buffer_enqueue_x2(vm, node, next_index, to_next, n_left_to_next, bi0, bi1, next0, next1)
Finish enqueueing two buffers forward in the graph.
Definition: buffer_node.h:70
void ethernet_register_l3_redirect(vlib_main_t *vm, u32 node_index)
Definition: node.c:1234
#define vlib_validate_buffer_enqueue_x1(vm, node, next_index, to_next, n_left_to_next, bi0, next0)
Finish enqueueing one buffer forward in the graph.
Definition: buffer_node.h:130
#define vlib_get_next_frame(vm, node, next_index, vectors, n_vectors_left)
Get pointer to next frame vector data by (vlib_node_runtime_t, next_index).
Definition: node_funcs.h:348
#define SUBINT_CONFIG_MATCH_3_TAG
Definition: ethernet.h:141
vlib_error_t error
Error code for buffers to be enqueued to error handler.
Definition: buffer.h:118
static clib_error_t * ethernet_init(vlib_main_t *vm)
Definition: init.c:64
vnet_hw_interface_class_t ethernet_hw_interface_class
u8 next_by_ethertype_register_called
Definition: ethernet.h:237
subint_config_t untagged_subint
Definition: ethernet.h:156
#define foreach_ethernet_input_next
Definition: node.c:47
void ethernet_register_input_type(vlib_main_t *vm, ethernet_type_t type, u32 node_index)
Definition: node.c:1182
static uword ethernet_input(vlib_main_t *vm, vlib_node_runtime_t *node, vlib_frame_t *from_frame)
Definition: node.c:634
u8 * format_ethernet_header_with_length(u8 *s, va_list *args)
Definition: format.c:91
#define SUBINT_CONFIG_VALID
Definition: ethernet.h:142
qinq_intf_t vlans[ETHERNET_N_VLAN]
Definition: ethernet.h:181
u16 n_vectors
Definition: node.h:344
#define CLIB_PREFETCH(addr, size, type)
Definition: cache.h:82
static_always_inline void determine_next_node(ethernet_main_t *em, ethernet_input_variant_t variant, u32 is_l20, u32 type0, vlib_buffer_t *b0, u8 *error0, u8 *next0)
Definition: node.c:227
clib_error_t * ethernet_sw_interface_up_down(vnet_main_t *vnm, u32 sw_if_index, u32 flags)
Definition: node.c:824
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:88
static void vlib_buffer_advance(vlib_buffer_t *b, word l)
Advance current data pointer by the supplied (signed!) amount.
Definition: buffer.h:200
#define SUBINT_CONFIG_MATCH_1_TAG
Definition: ethernet.h:139
static char * ethernet_error_strings[]
Definition: node.c:990
static vlib_node_registration_t ethernet_input_type_node
(constructor) VLIB_REGISTER_NODE (ethernet_input_type_node)
Definition: node.c:1021
struct vnet_sub_interface_t::@120 eth
static void eth_vlan_table_lookups(ethernet_main_t *em, vnet_main_t *vnm, u32 port_sw_if_index0, u16 first_ethertype, u16 outer_id, u16 inner_id, vnet_hw_interface_t **hi, main_intf_t **main_intf, vlan_intf_t **vlan_intf, qinq_intf_t **qinq_intf)
Definition: ethernet.h:395
static uword sparse_vec_index(void *v, uword sparse_index)
Definition: sparse_vec.h:152
u16 cached_next_index
Definition: node.h:462
#define SUBINT_CONFIG_L2
Definition: ethernet.h:143
#define VNET_SW_INTERFACE_FLAG_ADMIN_UP
Definition: interface.h:415
void ethernet_register_l2_input(vlib_main_t *vm, u32 node_index)
Definition: node.c:1213
static void vlib_increment_combined_counter(vlib_combined_counter_main_t *cm, u32 cpu_index, u32 index, u32 packet_increment, u32 byte_increment)
Increment a combined counter.
Definition: counter.h:241
vlan_table_t * vlan_pool
Definition: ethernet.h:228
#define ASSERT(truth)
unsigned int u32
Definition: types.h:88
static u32 eth_identify_subint(vnet_hw_interface_t *hi, vlib_buffer_t *b0, u32 match_flags, main_intf_t *main_intf, vlan_intf_t *vlan_intf, qinq_intf_t *qinq_intf, u32 *new_sw_if_index, u8 *error0, u32 *is_l2)
Definition: ethernet.h:434
u8 * format_ethernet_header(u8 *s, va_list *args)
Definition: format.c:151
u32 redirect_l3_next
Definition: ethernet.h:213
#define vnet_buffer(b)
Definition: buffer.h:335
u8 * format(u8 *s, char *fmt,...)
Definition: format.c:418
clib_error_t * next_by_ethertype_register(next_by_ethertype_t *l3_next, u32 ethertype, u32 next_index)
Definition: node.c:1107
#define VLIB_NODE_FLAG_TRACE
Definition: node.h:259
vlan_intf_t vlans[ETHERNET_N_VLAN]
Definition: ethernet.h:171
#define SUBINT_CONFIG_MATCH_2_TAG
Definition: ethernet.h:140
u64 uword
Definition: types.h:112
#define vec_elt(v, i)
Get vector value at index i.
VNET_SW_INTERFACE_ADMIN_UP_DOWN_FUNCTION(ethernet_sw_interface_up_down)
static uword ethernet_input_type(vlib_main_t *vm, vlib_node_runtime_t *node, vlib_frame_t *from_frame)
Definition: node.c:642
void vlib_trace_frame_buffers_only(vlib_main_t *vm, vlib_node_runtime_t *node, u32 *buffers, uword n_buffers, uword next_buffer_stride, uword n_buffer_data_bytes_in_trace)
Definition: trace.c:45
unsigned short u16
Definition: types.h:57
void l2bvi_register_input_type(vlib_main_t *vm, ethernet_type_t type, u32 node_index)
Definition: l2_bvi.c:27
#define vec_len(v)
Number of elements in vector (rvalue-only, NULL tolerant)
unsigned char u8
Definition: types.h:56
static void * vlib_frame_vector_args(vlib_frame_t *f)
Get pointer to frame vector data.
Definition: node_funcs.h:251
vlib_node_registration_t ethernet_input_node
(constructor) VLIB_REGISTER_NODE (ethernet_input_node)
Definition: node.c:77
#define vlib_prefetch_buffer_header(b, type)
Prefetch buffer metadata.
Definition: buffer.h:163
#define VLIB_REGISTER_NODE(x,...)
Definition: node.h:143
vnet_sw_interface_type_t type
Definition: interface.h:410
static u32 eth_mac_equal(u8 *mac1, u8 *mac2)
Definition: ethernet.h:486
qinq_table_t * qinq_pool
Definition: ethernet.h:231
u8 data[0]
Packet data.
Definition: buffer.h:151
next_by_ethertype_t l3_next
Definition: ethernet.h:206
#define clib_error_return(e, args...)
Definition: error.h:111
u32 flags
Definition: vhost-user.h:76
#define CLIB_CACHE_LINE_BYTES
Definition: cache.h:67
static void * sparse_vec_new(uword elt_bytes, uword sparse_index_bits)
Definition: sparse_vec.h:71
#define BITS(x)
Definition: clib.h:58
ethernet_input_variant_t
Definition: node.c:79
static clib_error_t * ethernet_sw_interface_add_del(vnet_main_t *vnm, u32 sw_if_index, u32 is_create)
Definition: node.c:941
uword runtime_data[(128-1 *sizeof(vlib_node_function_t *)-1 *sizeof(vlib_error_t *)-11 *sizeof(u32)-5 *sizeof(u16))/sizeof(uword)]
Definition: node.h:472
static_always_inline void parse_header(ethernet_input_variant_t variant, vlib_buffer_t *b0, u16 *type, u16 *orig_type, u16 *outer_id, u16 *inner_id, u32 *match_flags)
Definition: node.c:89
static vlib_buffer_t * vlib_get_buffer(vlib_main_t *vm, u32 buffer_index)
Translate buffer index into buffer pointer.
Definition: buffer_funcs.h:69
static_always_inline void identify_subint(vnet_hw_interface_t *hi, vlib_buffer_t *b0, u32 match_flags, main_intf_t *main_intf, vlan_intf_t *vlan_intf, qinq_intf_t *qinq_intf, u32 *new_sw_if_index, u8 *error0, u32 *is_l2)
Definition: node.c:185
static void ethernet_setup_node(vlib_main_t *vm, u32 node_index)
Definition: ethernet.h:302
Definition: defs.h:46
uword unformat_ethernet_header(unformat_input_t *input, va_list *args)
Definition: format.c:256
u16 * input_next_by_type
Definition: ethernet.h:191
#define SPARSE_VEC_INVALID_INDEX
Definition: sparse_vec.h:68