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Vector Packet Processing
l2_input.c
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1 /*
2  * l2_input.c : layer 2 input packet processing
3  *
4  * Copyright (c) 2013 Cisco and/or its affiliates.
5  * Licensed under the Apache License, Version 2.0 (the "License");
6  * you may not use this file except in compliance with the License.
7  * You may obtain a copy of the License at:
8  *
9  * http://www.apache.org/licenses/LICENSE-2.0
10  *
11  * Unless required by applicable law or agreed to in writing, software
12  * distributed under the License is distributed on an "AS IS" BASIS,
13  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14  * See the License for the specific language governing permissions and
15  * limitations under the License.
16  */
17 
18 #include <vlib/vlib.h>
19 #include <vnet/vnet.h>
20 #include <vnet/pg/pg.h>
21 #include <vnet/ethernet/ethernet.h>
22 #include <vnet/ethernet/packet.h>
23 #include <vnet/ip/ip_packet.h>
24 #include <vnet/ip/ip4_packet.h>
25 #include <vnet/ip/ip6_packet.h>
26 #include <vlib/cli.h>
27 #include <vnet/l2/l2_input.h>
28 #include <vnet/l2/l2_output.h>
29 #include <vnet/l2/feat_bitmap.h>
30 #include <vnet/l2/l2_bvi.h>
31 #include <vnet/l2/l2_fib.h>
32 #include <vnet/l2/l2_bd.h>
33 
34 #include <vppinfra/error.h>
35 #include <vppinfra/hash.h>
36 #include <vppinfra/cache.h>
37 
38 /**
39  * @file
40  * @brief Interface Input Mode (Layer 2 Cross-Connect or Bridge / Layer 3).
41  *
42  * This file contains the CLI Commands that modify the input mode of an
43  * interface. For interfaces in a Layer 2 cross-connect, all packets
44  * received on one interface will be transmitted to the other. For
45  * interfaces in a bridge-domain, packets will be forwarded to other
46  * interfaces in the same bridge-domain based on destination mac address.
47  * For interfaces in Layer 3 mode, the packets will be routed.
48  */
49 
50 /* Feature graph node names */
51 static char *l2input_feat_names[] = {
52 #define _(sym,name) name,
54 #undef _
55 };
56 
57 char **
59 {
60  return l2input_feat_names;
61 }
62 
63 
64 typedef struct
65 {
66  /* per-pkt trace data */
67  u8 src[6];
68  u8 dst[6];
72 
73 /* packet trace format function */
74 static u8 *
75 format_l2input_trace (u8 * s, va_list * args)
76 {
77  CLIB_UNUSED (vlib_main_t * vm) = va_arg (*args, vlib_main_t *);
78  CLIB_UNUSED (vlib_node_t * node) = va_arg (*args, vlib_node_t *);
79  l2input_trace_t *t = va_arg (*args, l2input_trace_t *);
80 
81  s = format (s, "l2-input: sw_if_index %d dst %U src %U",
82  t->sw_if_index,
85  return s;
86 }
87 
89 
90 #define foreach_l2input_error \
91 _(L2INPUT, "L2 input packets") \
92 _(DROP, "L2 input drops")
93 
94 typedef enum
95 {
96 #define _(sym,str) L2INPUT_ERROR_##sym,
98 #undef _
101 
102 static char *l2input_error_strings[] = {
103 #define _(sym,string) string,
105 #undef _
106 };
107 
108 typedef enum
109 { /* */
115 
116 
119  vlib_node_runtime_t * node,
120  u32 thread_index,
121  l2input_main_t * msm, vlib_buffer_t * b0, u32 * next0)
122 {
123  /*
124  * Load L2 input feature struct
125  * Load bridge domain struct
126  * Parse ethernet header to determine unicast/mcast/broadcast
127  * take L2 input stat
128  * classify packet as IP/UDP/TCP, control, other
129  * mask feature bitmap
130  * go to first node in bitmap
131  * Later: optimize VTM
132  *
133  * For L2XC,
134  * set tx sw-if-handle
135  */
136 
137  u16 ethertype;
138  u8 protocol;
139  l2_input_config_t *config;
140  l2_bridge_domain_t *bd_config;
141  u16 bd_index0;
142  u32 feature_bitmap;
143  u32 feat_mask;
144  ethernet_header_t *h0;
145  u8 *l3h0;
146  u32 sw_if_index0;
147 
148 #define get_u16(addr) ( *((u16 *)(addr)) )
149 
150  sw_if_index0 = vnet_buffer (b0)->sw_if_index[VLIB_RX];
151 
152  h0 = vlib_buffer_get_current (b0);
153  l3h0 = (u8 *) h0 + vnet_buffer (b0)->l2.l2_len;
154 
155  ethertype = clib_net_to_host_u16 (get_u16 (l3h0 - 2));
156  feat_mask = ~0;
157 
158  /* Get config for the input interface */
159  config = vec_elt_at_index (msm->configs, sw_if_index0);
160 
161  /* Save split horizon group */
162  vnet_buffer (b0)->l2.shg = config->shg;
163 
164  /* determine layer2 kind for stat and mask */
166  {
167  protocol = ((ip6_header_t *) l3h0)->protocol;
168 
169  /* Disable bridge forwarding (flooding will execute instead if not xconnect) */
170  feat_mask &= ~(L2INPUT_FEAT_FWD | L2INPUT_FEAT_UU_FLOOD);
171 
172  /* Disable ARP-term for non-ARP and non-ICMP6 packet */
173  if (ethertype != ETHERNET_TYPE_ARP &&
174  (ethertype != ETHERNET_TYPE_IP6 || protocol != IP_PROTOCOL_ICMP6))
175  feat_mask &= ~(L2INPUT_FEAT_ARP_TERM);
176  }
177  else
178  {
179  /*
180  * Check for from-BVI processing - set SHG of unicast packets from BVI
181  * to 0 so it is not dropped for VXLAN tunnels or other ports with the
182  * same SHG as that of the BVI.
183  */
184  if (PREDICT_FALSE (vnet_buffer (b0)->sw_if_index[VLIB_TX] ==
185  L2INPUT_BVI))
186  vnet_buffer (b0)->l2.shg = 0;
187  }
188 
189 
190  if (config->xconnect)
191  {
192  /* Set the output interface */
193  vnet_buffer (b0)->sw_if_index[VLIB_TX] = config->output_sw_if_index;
194  }
195  else
196  {
197  /* Do bridge-domain processing */
198  bd_index0 = config->bd_index;
199  /* save BD ID for next feature graph nodes */
200  vnet_buffer (b0)->l2.bd_index = bd_index0;
201 
202  /* Get config for the bridge domain interface */
203  bd_config = vec_elt_at_index (msm->bd_configs, bd_index0);
204 
205  /* Save bridge domain and interface seq_num */
206  /* *INDENT-OFF* */
207  l2fib_seq_num_t sn = {
208  .swif = *l2fib_swif_seq_num(sw_if_index0),
209  .bd = bd_config->seq_num,
210  };
211  /* *INDENT-ON* */
212  vnet_buffer (b0)->l2.l2fib_sn = sn.as_u16;;
213 
214  /*
215  * Process bridge domain feature enables.
216  * To perform learning/flooding/forwarding, the corresponding bit
217  * must be enabled in both the input interface config and in the
218  * bridge domain config. In the bd_bitmap, bits for features other
219  * than learning/flooding/forwarding should always be set.
220  */
221  feat_mask = feat_mask & bd_config->feature_bitmap;
222  }
223 
224  /* mask out features from bitmap using packet type and bd config */
225  feature_bitmap = config->feature_bitmap & feat_mask;
226 
227  /* save for next feature graph nodes */
228  vnet_buffer (b0)->l2.feature_bitmap = feature_bitmap;
229 
230  /* Determine the next node */
232  feature_bitmap);
233 }
234 
237  vlib_node_runtime_t * node, vlib_frame_t * frame,
238  int do_trace)
239 {
240  u32 n_left_from, *from, *to_next;
241  l2input_next_t next_index;
243  u32 thread_index = vlib_get_thread_index ();
244 
245  from = vlib_frame_vector_args (frame);
246  n_left_from = frame->n_vectors; /* number of packets to process */
247  next_index = node->cached_next_index;
248 
249  while (n_left_from > 0)
250  {
251  u32 n_left_to_next;
252 
253  /* get space to enqueue frame to graph node "next_index" */
254  vlib_get_next_frame (vm, node, next_index, to_next, n_left_to_next);
255 
256  while (n_left_from >= 8 && n_left_to_next >= 4)
257  {
258  u32 bi0, bi1, bi2, bi3;
259  vlib_buffer_t *b0, *b1, *b2, *b3;
260  u32 next0, next1, next2, next3;
261  u32 sw_if_index0, sw_if_index1, sw_if_index2, sw_if_index3;
262 
263  /* Prefetch next iteration. */
264  {
265  vlib_buffer_t *p4, *p5, *p6, *p7;
266 
267  p4 = vlib_get_buffer (vm, from[4]);
268  p5 = vlib_get_buffer (vm, from[5]);
269  p6 = vlib_get_buffer (vm, from[6]);
270  p7 = vlib_get_buffer (vm, from[7]);
271 
272  /* Prefetch the buffer header and packet for the N+2 loop iteration */
273  vlib_prefetch_buffer_header (p4, LOAD);
274  vlib_prefetch_buffer_header (p5, LOAD);
275  vlib_prefetch_buffer_header (p6, LOAD);
276  vlib_prefetch_buffer_header (p7, LOAD);
277 
282 
283  /*
284  * Don't bother prefetching the bridge-domain config (which
285  * depends on the input config above). Only a small number of
286  * bridge domains are expected. Plus the structure is small
287  * and several fit in a cache line.
288  */
289  }
290 
291  /* speculatively enqueue b0 and b1 to the current next frame */
292  /* bi is "buffer index", b is pointer to the buffer */
293  to_next[0] = bi0 = from[0];
294  to_next[1] = bi1 = from[1];
295  to_next[2] = bi2 = from[2];
296  to_next[3] = bi3 = from[3];
297  from += 4;
298  to_next += 4;
299  n_left_from -= 4;
300  n_left_to_next -= 4;
301 
302  b0 = vlib_get_buffer (vm, bi0);
303  b1 = vlib_get_buffer (vm, bi1);
304  b2 = vlib_get_buffer (vm, bi2);
305  b3 = vlib_get_buffer (vm, bi3);
306 
307  if (do_trace)
308  {
309  /* RX interface handles */
310  sw_if_index0 = vnet_buffer (b0)->sw_if_index[VLIB_RX];
311  sw_if_index1 = vnet_buffer (b1)->sw_if_index[VLIB_RX];
312  sw_if_index2 = vnet_buffer (b2)->sw_if_index[VLIB_RX];
313  sw_if_index3 = vnet_buffer (b3)->sw_if_index[VLIB_RX];
314 
315  if (b0->flags & VLIB_BUFFER_IS_TRACED)
316  {
318  l2input_trace_t *t =
319  vlib_add_trace (vm, node, b0, sizeof (*t));
320  t->sw_if_index = sw_if_index0;
321  clib_memcpy (t->src, h0->src_address, 6);
322  clib_memcpy (t->dst, h0->dst_address, 6);
323  }
324  if (b1->flags & VLIB_BUFFER_IS_TRACED)
325  {
327  l2input_trace_t *t =
328  vlib_add_trace (vm, node, b1, sizeof (*t));
329  t->sw_if_index = sw_if_index1;
330  clib_memcpy (t->src, h1->src_address, 6);
331  clib_memcpy (t->dst, h1->dst_address, 6);
332  }
333  if (b2->flags & VLIB_BUFFER_IS_TRACED)
334  {
336  l2input_trace_t *t =
337  vlib_add_trace (vm, node, b2, sizeof (*t));
338  t->sw_if_index = sw_if_index2;
339  clib_memcpy (t->src, h2->src_address, 6);
340  clib_memcpy (t->dst, h2->dst_address, 6);
341  }
342  if (b3->flags & VLIB_BUFFER_IS_TRACED)
343  {
345  l2input_trace_t *t =
346  vlib_add_trace (vm, node, b3, sizeof (*t));
347  t->sw_if_index = sw_if_index3;
348  clib_memcpy (t->src, h3->src_address, 6);
349  clib_memcpy (t->dst, h3->dst_address, 6);
350  }
351  }
352 
354  L2INPUT_ERROR_L2INPUT, 4);
355 
356  classify_and_dispatch (vm, node, thread_index, msm, b0, &next0);
357  classify_and_dispatch (vm, node, thread_index, msm, b1, &next1);
358  classify_and_dispatch (vm, node, thread_index, msm, b2, &next2);
359  classify_and_dispatch (vm, node, thread_index, msm, b3, &next3);
360 
361  /* verify speculative enqueues, maybe switch current next frame */
362  /* if next0==next1==next_index then nothing special needs to be done */
363  vlib_validate_buffer_enqueue_x4 (vm, node, next_index,
364  to_next, n_left_to_next,
365  bi0, bi1, bi2, bi3,
366  next0, next1, next2, next3);
367  }
368 
369  while (n_left_from > 0 && n_left_to_next > 0)
370  {
371  u32 bi0;
372  vlib_buffer_t *b0;
373  u32 next0;
374  u32 sw_if_index0;
375 
376  /* speculatively enqueue b0 to the current next frame */
377  bi0 = from[0];
378  to_next[0] = bi0;
379  from += 1;
380  to_next += 1;
381  n_left_from -= 1;
382  n_left_to_next -= 1;
383 
384  b0 = vlib_get_buffer (vm, bi0);
385 
386  if (do_trace && PREDICT_FALSE (b0->flags & VLIB_BUFFER_IS_TRACED))
387  {
389  l2input_trace_t *t = vlib_add_trace (vm, node, b0, sizeof (*t));
390  sw_if_index0 = vnet_buffer (b0)->sw_if_index[VLIB_RX];
391  t->sw_if_index = sw_if_index0;
392  clib_memcpy (t->src, h0->src_address, 6);
393  clib_memcpy (t->dst, h0->dst_address, 6);
394  }
395 
397  L2INPUT_ERROR_L2INPUT, 1);
398 
399  classify_and_dispatch (vm, node, thread_index, msm, b0, &next0);
400 
401  /* verify speculative enqueue, maybe switch current next frame */
402  vlib_validate_buffer_enqueue_x1 (vm, node, next_index,
403  to_next, n_left_to_next,
404  bi0, next0);
405  }
406 
407  vlib_put_next_frame (vm, node, next_index, n_left_to_next);
408  }
409 
410  return frame->n_vectors;
411 }
412 
413 static uword
415  vlib_node_runtime_t * node, vlib_frame_t * frame)
416 {
417  if (PREDICT_FALSE ((node->flags & VLIB_NODE_FLAG_TRACE)))
418  return l2input_node_inline (vm, node, frame, 1 /* do_trace */ );
419  return l2input_node_inline (vm, node, frame, 0 /* do_trace */ );
420 }
421 
422 /* *INDENT-OFF* */
424  .function = l2input_node_fn,
425  .name = "l2-input",
426  .vector_size = sizeof (u32),
427  .format_trace = format_l2input_trace,
428  .format_buffer = format_ethernet_header_with_length,
429  .type = VLIB_NODE_TYPE_INTERNAL,
430 
431  .n_errors = ARRAY_LEN(l2input_error_strings),
432  .error_strings = l2input_error_strings,
433 
434  .n_next_nodes = L2INPUT_N_NEXT,
435 
436  /* edit / add dispositions here */
437  .next_nodes = {
438  [L2INPUT_NEXT_LEARN] = "l2-learn",
439  [L2INPUT_NEXT_FWD] = "l2-fwd",
440  [L2INPUT_NEXT_DROP] = "error-drop",
441  },
442 };
443 /* *INDENT-ON* */
444 
447 {
449 
450  mp->vlib_main = vm;
451  mp->vnet_main = vnet_get_main ();
452 
453  /* Get packets RX'd from L2 interfaces */
455 
456  /* Create the config vector */
457  vec_validate (mp->configs, 100);
458  /* create 100 sw interface entries and zero them */
459 
460  /* Initialize the feature next-node indexes */
462  l2input_node.index,
466 
467  return 0;
468 }
469 
471 
472 
473 /** Get a pointer to the config for the given interface. */
476 {
478 
479  vec_validate (mp->configs, sw_if_index);
480  return vec_elt_at_index (mp->configs, sw_if_index);
481 }
482 
483 /** Enable (or disable) the feature in the bitmap for the given interface. */
484 u32
485 l2input_intf_bitmap_enable (u32 sw_if_index, u32 feature_bitmap, u32 enable)
486 {
487  l2_input_config_t *config = l2input_intf_config (sw_if_index);
488 
489  if (enable)
490  config->feature_bitmap |= feature_bitmap;
491  else
492  config->feature_bitmap &= ~feature_bitmap;
493 
494  return config->feature_bitmap;
495 }
496 
497 u32
498 l2input_set_bridge_features (u32 bd_index, u32 feat_mask, u32 feat_value)
499 {
500  l2_bridge_domain_t *bd_config = l2input_bd_config (bd_index);;
501  bd_validate (bd_config);
502  bd_config->feature_bitmap =
503  (bd_config->feature_bitmap & ~feat_mask) | feat_value;
504  return bd_config->feature_bitmap;
505 }
506 
507 /**
508  * Set the subinterface to run in l2 or l3 mode.
509  * For L3 mode, just the sw_if_index is specified.
510  * For bridged mode, the bd id and bvi flag are also specified.
511  * For xconnect mode, the peer sw_if_index is also specified.
512  * Return 0 if ok, or non-0 if there was an error.
513  */
514 
515 u32
517  u32 mode, /* One of L2 modes or back to L3 mode */
518  u32 sw_if_index, /* sw interface index */
519  u32 bd_index, /* for bridged interface */
520  u32 bvi, /* the bridged interface is the BVI */
521  u32 shg, /* the bridged interface split horizon group */
522  u32 xc_sw_if_index) /* peer interface for xconnect */
523 {
526  vnet_main_t *vnm = vnet_get_main ();
528  l2_output_config_t *out_config;
529  l2_input_config_t *config;
530  l2_bridge_domain_t *bd_config;
531  u64 mac;
532  i32 l2_if_adjust = 0;
533  u32 slot;
534 
535  hi = vnet_get_sup_hw_interface (vnet_main, sw_if_index);
536  config = l2input_intf_config (sw_if_index);
537 
538  if (config->bridge)
539  {
540  /* Interface is already in bridge mode. Undo the existing config. */
541  bd_config = vec_elt_at_index (mp->bd_configs, config->bd_index);
542 
543  /* remove interface from flood vector */
544  bd_remove_member (bd_config, sw_if_index);
545 
546  /* undo any BVI-related config */
547  if (bd_config->bvi_sw_if_index == sw_if_index)
548  {
549  bd_config->bvi_sw_if_index = ~0;
550  config->bvi = 0;
551 
552  /* delete the l2fib entry for the bvi interface */
553  mac = *((u64 *) hi->hw_address);
554  l2fib_del_entry (mac, config->bd_index);
555 
556  /* Make loop output node send packet back to ethernet-input node */
557  slot =
559  "ethernet-input",
562  }
563 
564  /* Clear MACs learned on the interface */
565  if ((config->feature_bitmap & L2INPUT_FEAT_LEARN) ||
566  (bd_config->feature_bitmap & L2INPUT_FEAT_LEARN))
567  l2fib_flush_int_mac (vm, sw_if_index);
568 
569  l2_if_adjust--;
570  }
571  else if (config->xconnect)
572  {
573  l2_if_adjust--;
574  }
575 
576  /* Make sure vector is big enough */
578  sw_if_index, L2OUTPUT_NEXT_DROP);
579 
580  /* Initialize the l2-input configuration for the interface */
581  if (mode == MODE_L3)
582  {
583  /* Set L2 config to BD index 0 so that if any packet accidentally
584  * came in on L2 path, it will be dropped in BD 0 */
585  config->xconnect = 0;
586  config->bridge = 0;
587  config->shg = 0;
588  config->bd_index = 0;
589  config->feature_bitmap = L2INPUT_FEAT_DROP;
590 
591  /* Clear L2 output config */
592  out_config = l2output_intf_config (sw_if_index);
593  memset (out_config, 0, sizeof (l2_output_config_t));
594 
595  /* Make sure any L2-output packet to this interface now in L3 mode is
596  * dropped. This may happen if L2 FIB MAC entry is stale */
597  l2om->next_nodes.output_node_index_vec[sw_if_index] =
599  }
600  else
601  {
602  /* Add or update l2-output node next-arc and output_node_index_vec table
603  * for the interface */
604  l2output_create_output_node_mapping (vm, vnet_main, sw_if_index);
605 
606  if (mode == MODE_L2_BRIDGE)
607  {
608  /*
609  * Remove a check that the interface must be an Ethernet.
610  * Specifically so we can bridge to L3 tunnel interfaces.
611  * Here's the check:
612  * if (hi->hw_class_index != ethernet_hw_interface_class.index)
613  *
614  */
615  if (!hi)
616  return MODE_ERROR_ETH; /* non-ethernet */
617 
618  config->xconnect = 0;
619  config->bridge = 1;
620  config->bd_index = bd_index;
621  *l2fib_swif_seq_num (sw_if_index) += 1;
622 
623  /*
624  * Enable forwarding, flooding, learning and ARP termination by default
625  * (note that ARP term is disabled on BD feature bitmap by default)
626  */
627  config->feature_bitmap |= L2INPUT_FEAT_FWD | L2INPUT_FEAT_UU_FLOOD |
628  L2INPUT_FEAT_FLOOD | L2INPUT_FEAT_LEARN | L2INPUT_FEAT_ARP_TERM;
629 
630  /* Make sure last-chance drop is configured */
631  config->feature_bitmap |= L2INPUT_FEAT_DROP;
632 
633  /* Make sure xconnect is disabled */
634  config->feature_bitmap &= ~L2INPUT_FEAT_XCONNECT;
635 
636  /* Set up bridge domain */
637  bd_config = l2input_bd_config (bd_index);
638  bd_validate (bd_config);
639 
640  /* TODO: think: add l2fib entry even for non-bvi interface? */
641 
642  /* Do BVI interface initializations */
643  if (bvi)
644  {
645  /* ensure BD has no bvi interface (or replace that one with this??) */
646  if (bd_config->bvi_sw_if_index != ~0)
647  {
648  return MODE_ERROR_BVI_DEF; /* bd already has a bvi interface */
649  }
650  bd_config->bvi_sw_if_index = sw_if_index;
651  config->bvi = 1;
652 
653  /* create the l2fib entry for the bvi interface */
654  mac = *((u64 *) hi->hw_address);
655  l2fib_add_fwd_entry (mac, bd_index, sw_if_index, 1, 1); /* static + bvi */
656 
657  /* Disable learning by default. no use since l2fib entry is static. */
658  config->feature_bitmap &= ~L2INPUT_FEAT_LEARN;
659 
660  /* Make loop output node send packet to l2-input node */
661  slot =
663  "l2-input",
666  }
667 
668  /* Add interface to bridge-domain flood vector */
669  l2_flood_member_t member = {
670  .sw_if_index = sw_if_index,
672  .shg = shg,
673  };
674  bd_add_member (bd_config, &member);
675 
676  }
677  else if (mode == MODE_L2_XC)
678  {
679  config->xconnect = 1;
680  config->bridge = 0;
681  config->output_sw_if_index = xc_sw_if_index;
682 
683  /* Make sure last-chance drop is configured */
684  config->feature_bitmap |= L2INPUT_FEAT_DROP;
685 
686  /* Make sure bridging features are disabled */
687  config->feature_bitmap &=
688  ~(L2INPUT_FEAT_LEARN | L2INPUT_FEAT_FWD | L2INPUT_FEAT_FLOOD);
689 
690  config->feature_bitmap |= L2INPUT_FEAT_XCONNECT;
691  shg = 0; /* not used in xconnect */
692  }
693  else if (mode == MODE_L2_CLASSIFY)
694  {
695  config->xconnect = 1;
696  config->bridge = 0;
697  config->output_sw_if_index = xc_sw_if_index;
698 
699  /* Make sure last-chance drop is configured */
700  config->feature_bitmap |=
701  L2INPUT_FEAT_DROP | L2INPUT_FEAT_INPUT_CLASSIFY;
702 
703  /* Make sure bridging features are disabled */
704  config->feature_bitmap &=
705  ~(L2INPUT_FEAT_LEARN | L2INPUT_FEAT_FWD | L2INPUT_FEAT_FLOOD);
706  shg = 0; /* not used in xconnect */
707 
708  /* Insure all packets go to ethernet-input */
709  ethernet_set_rx_redirect (vnet_main, hi, 1);
710  }
711 
712  /* set up split-horizon group and set output feature bit */
713  config->shg = shg;
714  out_config = l2output_intf_config (sw_if_index);
715  out_config->shg = shg;
716  out_config->feature_bitmap |= L2OUTPUT_FEAT_OUTPUT;
717 
718  /*
719  * Test: remove this when non-IP features can be configured.
720  * Enable a non-IP feature to test IP feature masking
721  * config->feature_bitmap |= L2INPUT_FEAT_CTRL_PKT;
722  */
723 
724  l2_if_adjust++;
725  }
726 
727  /* Adjust count of L2 interfaces */
728  hi->l2_if_count += l2_if_adjust;
729 
731  {
732  if ((hi->l2_if_count == 1) && (l2_if_adjust == 1))
733  {
734  /* Just added first L2 interface on this port */
735 
736  /* Set promiscuous mode on the l2 interface */
737  ethernet_set_flags (vnet_main, hi->hw_if_index,
739 
740  /* ensure all packets go to ethernet-input */
741  ethernet_set_rx_redirect (vnet_main, hi, 1);
742 
743  }
744  else if ((hi->l2_if_count == 0) && (l2_if_adjust == -1))
745  {
746  /* Just removed only L2 subinterface on this port */
747 
748  /* Disable promiscuous mode on the l2 interface */
749  ethernet_set_flags (vnet_main, hi->hw_if_index, 0);
750 
751  /* Allow ip packets to go directly to ip4-input etc */
752  ethernet_set_rx_redirect (vnet_main, hi, 0);
753  }
754  }
755 
756  /* Set up the L2/L3 flag in the interface parsing tables */
757  ethernet_sw_interface_set_l2_mode (vnm, sw_if_index, (mode != MODE_L3));
758 
759  return 0;
760 }
761 
762 /**
763  * Set subinterface in bridging mode with a bridge-domain ID.
764  * The CLI format is:
765  * set interface l2 bridge <interface> <bd> [bvi] [split-horizon-group]
766  */
767 static clib_error_t *
769  unformat_input_t * input, vlib_cli_command_t * cmd)
770 {
771  vnet_main_t *vnm = vnet_get_main ();
772  clib_error_t *error = 0;
773  u32 bd_index, bd_id;
774  u32 sw_if_index;
775  u32 bvi;
776  u32 rc;
777  u32 shg;
778 
779  if (!unformat_user (input, unformat_vnet_sw_interface, vnm, &sw_if_index))
780  {
781  error = clib_error_return (0, "unknown interface `%U'",
782  format_unformat_error, input);
783  goto done;
784  }
785 
786  if (!unformat (input, "%d", &bd_id))
787  {
788  error = clib_error_return (0, "expected bridge domain ID `%U'",
789  format_unformat_error, input);
790  goto done;
791  }
792 
793  if (bd_id > L2_BD_ID_MAX)
794  {
795  error = clib_error_return (0, "bridge domain ID exceed 16M limit",
796  format_unformat_error, input);
797  goto done;
798  }
799  bd_index = bd_find_or_add_bd_index (&bd_main, bd_id);
800 
801  /* optional bvi */
802  bvi = unformat (input, "bvi");
803 
804  /* optional split horizon group */
805  shg = 0;
806  (void) unformat (input, "%d", &shg);
807 
808  /* set the interface mode */
809  if ((rc =
810  set_int_l2_mode (vm, vnm, MODE_L2_BRIDGE, sw_if_index, bd_index, bvi,
811  shg, 0)))
812  {
813  if (rc == MODE_ERROR_ETH)
814  {
815  error = clib_error_return (0, "bridged interface must be ethernet",
816  format_unformat_error, input);
817  }
818  else if (rc == MODE_ERROR_BVI_DEF)
819  {
820  error =
821  clib_error_return (0, "bridge-domain already has a bvi interface",
822  format_unformat_error, input);
823  }
824  else
825  {
826  error = clib_error_return (0, "invalid configuration for interface",
827  format_unformat_error, input);
828  }
829  goto done;
830  }
831 
832 done:
833  return error;
834 }
835 
836 /*?
837  * Use this command put an interface into Layer 2 bridge domain. If a
838  * bridge-domain with the provided bridge-domain-id does not exist, it
839  * will be created. Interfaces in a bridge-domain forward packets to
840  * other interfaces in the same bridge-domain based on destination mac
841  * address. To remove an interface from a the Layer 2 bridge domain,
842  * put the interface in a different mode, for example Layer 3 mode.
843  *
844  * Optionally, an interface can be added to a Layer 2 bridge-domain as
845  * a Bridged Virtual Interface (bvi). Only one interface in a Layer 2
846  * bridge-domain can be a bvi.
847  *
848  * Optionally, a split-horizon group can also be specified. This defaults
849  * to 0 if not specified.
850  *
851  * @cliexpar
852  * Example of how to configure a Layer 2 bridge-domain with three
853  * interfaces (where 200 is the bridge-domain-id):
854  * @cliexcmd{set interface l2 bridge GigabitEthernet0/8/0.200 200}
855  * This interface is added a BVI interface:
856  * @cliexcmd{set interface l2 bridge GigabitEthernet0/9/0.200 200 bvi}
857  * This interface also has a split-horizon group of 1 specified:
858  * @cliexcmd{set interface l2 bridge GigabitEthernet0/a/0.200 200 1}
859  * Example of how to remove an interface from a Layer2 bridge-domain:
860  * @cliexcmd{set interface l3 GigabitEthernet0/a/0.200}
861 ?*/
862 /* *INDENT-OFF* */
863 VLIB_CLI_COMMAND (int_l2_bridge_cli, static) = {
864  .path = "set interface l2 bridge",
865  .short_help = "set interface l2 bridge <interface> <bridge-domain-id> [bvi] [shg]",
866  .function = int_l2_bridge,
867 };
868 /* *INDENT-ON* */
869 
870 /**
871  * Set subinterface in xconnect mode with another interface.
872  * The CLI format is:
873  * set interface l2 xconnect <interface> <peer interface>
874  */
875 static clib_error_t *
877  unformat_input_t * input, vlib_cli_command_t * cmd)
878 {
879  vnet_main_t *vnm = vnet_get_main ();
880  clib_error_t *error = 0;
881  u32 sw_if_index;
882  u32 xc_sw_if_index;
883 
884  if (!unformat_user (input, unformat_vnet_sw_interface, vnm, &sw_if_index))
885  {
886  error = clib_error_return (0, "unknown interface `%U'",
887  format_unformat_error, input);
888  goto done;
889  }
890 
891  if (!unformat_user
892  (input, unformat_vnet_sw_interface, vnm, &xc_sw_if_index))
893  {
894  error = clib_error_return (0, "unknown peer interface `%U'",
895  format_unformat_error, input);
896  goto done;
897  }
898 
899  /* set the interface mode */
900  if (set_int_l2_mode
901  (vm, vnm, MODE_L2_XC, sw_if_index, 0, 0, 0, xc_sw_if_index))
902  {
903  error = clib_error_return (0, "invalid configuration for interface",
904  format_unformat_error, input);
905  goto done;
906  }
907 
908 done:
909  return error;
910 }
911 
912 /*?
913  * Use this command put an interface into Layer 2 cross-connect mode.
914  * Both interfaces must be in this mode for bi-directioal traffic. All
915  * packets received on one interface will be transmitted to the other.
916  * To remove the Layer 2 cross-connect, put the interface in a different
917  * mode, for example Layer 3 mode.
918  *
919  * @cliexpar
920  * Example of how to configure a Layer2 cross-connect between two interfaces:
921  * @cliexcmd{set interface l2 xconnect GigabitEthernet0/8/0.300 GigabitEthernet0/9/0.300}
922  * @cliexcmd{set interface l2 xconnect GigabitEthernet0/9/0.300 GigabitEthernet0/8/0.300}
923  * Example of how to remove a Layer2 cross-connect:
924  * @cliexcmd{set interface l3 GigabitEthernet0/8/0.300}
925  * @cliexcmd{set interface l3 GigabitEthernet0/9/0.300}
926 ?*/
927 /* *INDENT-OFF* */
928 VLIB_CLI_COMMAND (int_l2_xc_cli, static) = {
929  .path = "set interface l2 xconnect",
930  .short_help = "set interface l2 xconnect <interface> <peer interface>",
931  .function = int_l2_xc,
932 };
933 /* *INDENT-ON* */
934 
935 /**
936  * Set subinterface in L3 mode.
937  * The CLI format is:
938  * set interface l3 <interface>
939  */
940 static clib_error_t *
942 {
943  vnet_main_t *vnm = vnet_get_main ();
944  clib_error_t *error = 0;
945  u32 sw_if_index;
946 
947  if (!unformat_user (input, unformat_vnet_sw_interface, vnm, &sw_if_index))
948  {
949  error = clib_error_return (0, "unknown interface `%U'",
950  format_unformat_error, input);
951  goto done;
952  }
953 
954  /* set the interface mode */
955  if (set_int_l2_mode (vm, vnm, MODE_L3, sw_if_index, 0, 0, 0, 0))
956  {
957  error = clib_error_return (0, "invalid configuration for interface",
958  format_unformat_error, input);
959  goto done;
960  }
961 
962 done:
963  return error;
964 }
965 
966 /*?
967  * Modify the packet processing mode of the interface to Layer 3, which
968  * implies packets will be routed. This is the default mode of an interface.
969  * Use this command to remove an interface from a Layer 2 cross-connect or a
970  * Layer 2 bridge.
971  *
972  * @cliexpar
973  * Example of how to set the mode of an interface to Layer 3:
974  * @cliexcmd{set interface l3 GigabitEthernet0/8/0.200}
975 ?*/
976 /* *INDENT-OFF* */
977  VLIB_CLI_COMMAND (int_l3_cli, static) = {
978  .path = "set interface l3",
979  .short_help = "set interface l3 <interface>",
980  .function = int_l3,
981 };
982 /* *INDENT-ON* */
983 
984 /**
985  * Show interface mode.
986  * The CLI format is:
987  * show mode [<if-name1> <if-name2> ...]
988  */
989 static clib_error_t *
991  unformat_input_t * input, vlib_cli_command_t * cmd)
992 {
993  vnet_main_t *vnm = vnet_get_main ();
994  clib_error_t *error = 0;
995  char *mode;
996  u8 *args;
998 
999  vnet_sw_interface_t *si, *sis = 0;
1000  while (unformat_check_input (input) != UNFORMAT_END_OF_INPUT)
1001  {
1002  u32 sw_if_index;
1003 
1004  /* See if user wants to show specific interface */
1005  if (unformat
1006  (input, "%U", unformat_vnet_sw_interface, vnm, &sw_if_index))
1007  {
1008  si = pool_elt_at_index (im->sw_interfaces, sw_if_index);
1009  vec_add1 (sis, si[0]);
1010  }
1011  else
1012  {
1013  error = clib_error_return (0, "unknown input `%U'",
1014  format_unformat_error, input);
1015  goto done;
1016  }
1017  }
1018 
1019  if (vec_len (sis) == 0) /* Get all interfaces */
1020  {
1021  /* Gather interfaces. */
1023  _vec_len (sis) = 0;
1024  /* *INDENT-OFF* */
1025  pool_foreach (si, im->sw_interfaces, ({ vec_add1 (sis, si[0]); }));
1026  /* *INDENT-ON* */
1027  }
1028 
1029  vec_foreach (si, sis)
1030  {
1032  if (config->bridge)
1033  {
1034  u32 bd_id;
1035  mode = "l2 bridge";
1036  bd_id = l2input_main.bd_configs[config->bd_index].bd_id;
1037 
1038  args = format (0, "bd_id %d%s%d", bd_id,
1039  config->bvi ? " bvi shg " : " shg ", config->shg);
1040  }
1041  else if (config->xconnect)
1042  {
1043  mode = "l2 xconnect";
1044  args = format (0, "%U",
1046  vnm, config->output_sw_if_index);
1047  }
1048  else
1049  {
1050  mode = "l3";
1051  args = format (0, " ");
1052  }
1053  vlib_cli_output (vm, "%s %U %v\n",
1054  mode,
1056  vnm, si->sw_if_index, args);
1057  vec_free (args);
1058  }
1059 
1060 done:
1061  vec_free (sis);
1062 
1063  return error;
1064 }
1065 
1066 /*?
1067  * Show the packet processing mode (Layer2 xcross-onnect, Layer 2 bridge,
1068  * Layer 3 routed) of all interfaces and sub-interfaces, or limit the
1069  * output to just the provided list of interfaces and sub-interfaces.
1070  * The output shows the mode, the interface, and if the interface is
1071  * a member of a bridge, the bridge-domain-id and the split horizen group (shg).
1072  *
1073  * @cliexpar
1074  * Example of displaying the mode of all interfaces:
1075  * @cliexstart{show mode}
1076  * l3 local0
1077  * l3 GigabitEthernet0/8/0
1078  * l3 GigabitEthernet0/9/0
1079  * l3 GigabitEthernet0/a/0
1080  * l2 bridge GigabitEthernet0/8/0.200 bd_id 200 shg 0
1081  * l2 bridge GigabitEthernet0/9/0.200 bd_id 200 shg 0
1082  * l2 bridge GigabitEthernet0/a/0.200 bd_id 200 shg 0
1083  * l2 xconnect GigabitEthernet0/8/0.300 GigabitEthernet0/9/0.300
1084  * l2 xconnect GigabitEthernet0/9/0.300 GigabitEthernet0/8/0.300
1085  * @cliexend
1086  * Example of displaying the mode of a seleted list of interfaces:
1087  * @cliexstart{show mode GigabitEthernet0/8/0 GigabitEthernet0/8/0.200}
1088  * l3 GigabitEthernet0/8/0
1089  * l2 bridge GigabitEthernet0/8/0.200 bd_id 200 shg 0
1090  * @cliexend
1091 ?*/
1092 /* *INDENT-OFF* */
1093 VLIB_CLI_COMMAND (show_l2_mode, static) = {
1094  .path = "show mode",
1095  .short_help = "show mode [<if-name1> <if-name2> ...]",
1096  .function = show_int_mode,
1097 };
1098 /* *INDENT-ON* */
1099 
1100 #define foreach_l2_init_function \
1101 _(feat_bitmap_drop_init) \
1102 _(l2fib_init) \
1103 _(l2_input_classify_init) \
1104 _(l2bd_init) \
1105 _(l2fwd_init) \
1106 _(l2_inacl_init) \
1107 _(l2input_init) \
1108 _(l2_vtr_init) \
1109 _(l2_invtr_init) \
1110 _(l2_efp_filter_init) \
1111 _(l2learn_init) \
1112 _(l2flood_init) \
1113 _(l2_outacl_init) \
1114 _(l2output_init) \
1115 _(l2_patch_init) \
1116 _(l2_xcrw_init)
1117 
1118 clib_error_t *
1120 {
1121  clib_error_t *error;
1122 
1123 #define _(a) do { \
1124  if ((error = vlib_call_init_function (vm, a))) return error; } \
1125 while (0);
1127 #undef _
1128  return 0;
1129 }
1130 
1132 
1133 /*
1134  * fd.io coding-style-patch-verification: ON
1135  *
1136  * Local Variables:
1137  * eval: (c-set-style "gnu")
1138  * End:
1139  */
void bd_validate(l2_bridge_domain_t *bd_config)
Init bridge domain if not done already.
Definition: l2_bd.c:51
#define vec_validate(V, I)
Make sure vector is long enough for given index (no header, unspecified alignment) ...
Definition: vec.h:436
static char * l2input_feat_names[]
Definition: l2_input.c:51
vmrglw vmrglh hi
static clib_error_t * int_l3(vlib_main_t *vm, unformat_input_t *input, vlib_cli_command_t *cmd)
Set subinterface in L3 mode.
Definition: l2_input.c:941
l2_input_config_t * configs
Definition: l2_input.h:66
#define L2_FLOOD_MEMBER_NORMAL
Definition: l2_bd.h:41
#define CLIB_UNUSED(x)
Definition: clib.h:79
vnet_main_t * vnet_get_main(void)
Definition: misc.c:46
static vnet_hw_interface_t * vnet_get_sup_hw_interface(vnet_main_t *vnm, u32 sw_if_index)
u32 bvi_sw_if_index
Definition: l2_bd.h:64
vnet_interface_main_t interface_main
Definition: vnet.h:56
u32 l2input_set_bridge_features(u32 bd_index, u32 feat_mask, u32 feat_value)
Definition: l2_input.c:498
uword vlib_node_add_named_next_with_slot(vlib_main_t *vm, uword node, char *name, uword slot)
Definition: node.c:262
static_always_inline uword l2input_node_inline(vlib_main_t *vm, vlib_node_runtime_t *node, vlib_frame_t *frame, int do_trace)
Definition: l2_input.c:236
l2_input_config_t * l2input_intf_config(u32 sw_if_index)
Get a pointer to the config for the given interface.
Definition: l2_input.c:475
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:459
u8 src_address[6]
Definition: packet.h:54
u32 l2fib_del_entry(u64 mac, u32 bd_index)
Delete an entry from the l2fib.
Definition: l2_fib.c:651
#define vec_add1(V, E)
Add 1 element to end of vector (unspecified alignment).
Definition: vec.h:522
vlib_node_registration_t l2input_node
(constructor) VLIB_REGISTER_NODE (l2input_node)
Definition: l2_input.c:423
#define vlib_validate_buffer_enqueue_x4(vm, node, next_index, to_next, n_left_to_next, bi0, bi1, bi2, bi3, next0, next1, next2, next3)
Finish enqueueing four buffers forward in the graph.
Definition: buffer_node.h:138
static_always_inline u8 * l2fib_swif_seq_num(u32 sw_if_index)
Definition: l2_fib.h:383
uword unformat_user(unformat_input_t *input, unformat_function_t *func,...)
Definition: unformat.c:983
u8 * format(u8 *s, const char *fmt,...)
Definition: format.c:419
unformat_function_t unformat_vnet_sw_interface
u32 bd_remove_member(l2_bridge_domain_t *bd_config, u32 sw_if_index)
Definition: l2_bd.c:172
#define L2_FLOOD_MEMBER_BVI
Definition: l2_bd.h:42
static clib_error_t * int_l2_bridge(vlib_main_t *vm, unformat_input_t *input, vlib_cli_command_t *cmd)
Set subinterface in bridging mode with a bridge-domain ID.
Definition: l2_input.c:768
l2_output_next_nodes_st next_nodes
Definition: l2_output.h:81
format_function_t format_vnet_sw_if_index_name
l2input_error_t
Definition: l2_input.c:94
void l2output_create_output_node_mapping(vlib_main_t *vlib_main, vnet_main_t *vnet_main, u32 sw_if_index)
Create a mapping in the next node mapping table for the given sw_if_index.
Definition: l2_output.c:615
#define static_always_inline
Definition: clib.h:85
u8 * format_ethernet_address(u8 *s, va_list *args)
Definition: format.c:44
#define pool_foreach(VAR, POOL, BODY)
Iterate through pool.
Definition: pool.h:376
#define VLIB_INIT_FUNCTION(x)
Definition: init.h:111
static uword ethernet_address_cast(u8 *a)
Definition: packet.h:65
u32 output_sw_if_index
Definition: l2_input.h:35
#define MODE_L2_BRIDGE
Definition: l2_input.h:199
#define vec_new(T, N)
Create new vector of given type and length (unspecified alignment, no header).
Definition: vec.h:310
u8 dst_address[6]
Definition: packet.h:53
void bd_add_member(l2_bridge_domain_t *bd_config, l2_flood_member_t *member)
Definition: l2_bd.c:133
int i32
Definition: types.h:81
#define vlib_prefetch_buffer_header(b, type)
Prefetch buffer metadata.
Definition: buffer.h:164
#define vec_elt_at_index(v, i)
Get vector value at index i checking that i is in bounds.
#define clib_error_return(e, args...)
Definition: error.h:99
unsigned long u64
Definition: types.h:89
u32 set_int_l2_mode(vlib_main_t *vm, vnet_main_t *vnet_main, u32 mode, u32 sw_if_index, u32 bd_index, u32 bvi, u32 shg, u32 xc_sw_if_index)
Set the subinterface to run in l2 or l3 mode.
Definition: l2_input.c:516
void ethernet_set_rx_redirect(vnet_main_t *vnm, vnet_hw_interface_t *hi, u32 enable)
#define foreach_l2input_error
Definition: l2_input.c:90
l2_output_config_t * l2output_intf_config(u32 sw_if_index)
Get a pointer to the config for the given interface.
Definition: l2_output.c:629
#define pool_elt_at_index(p, i)
Returns pointer to element at given index.
Definition: pool.h:397
vnet_main_t * vnet_main
Definition: l2_input.h:73
struct _unformat_input_t unformat_input_t
static void * vlib_buffer_get_current(vlib_buffer_t *b)
Get pointer to current data to process.
Definition: buffer.h:188
static void l2fib_add_fwd_entry(u64 mac, u32 bd_index, u32 sw_if_index, u32 static_mac, u32 bvi_mac)
Definition: l2_fib.h:354
#define PREDICT_FALSE(x)
Definition: clib.h:97
vnet_main_t vnet_main
Definition: misc.c:43
l2output_main_t l2output_main
Definition: l2_output.c:43
u32 feat_next_node_index[32]
Definition: l2_input.h:63
static u32 feat_bitmap_get_next_node_index(u32 *next_nodes, u32 bitmap)
Return the graph node index for the feature corresponding to the first set bit in the bitmap...
Definition: feat_bitmap.h:79
#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:216
#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:366
static clib_error_t * int_l2_xc(vlib_main_t *vm, unformat_input_t *input, vlib_cli_command_t *cmd)
Set subinterface in xconnect mode with another interface.
Definition: l2_input.c:876
static_always_inline void classify_and_dispatch(vlib_main_t *vm, vlib_node_runtime_t *node, u32 thread_index, l2input_main_t *msm, vlib_buffer_t *b0, u32 *next0)
Definition: l2_input.c:118
#define L2INPUT_BVI
Definition: l2_input.h:101
static void vlib_node_increment_counter(vlib_main_t *vm, u32 node_index, u32 counter_index, u64 increment)
Definition: node_funcs.h:1131
vnet_hw_interface_class_t ethernet_hw_interface_class
u8 * format_ethernet_header_with_length(u8 *s, va_list *args)
Definition: format.c:91
#define foreach_l2_init_function
Definition: l2_input.c:1100
#define UNFORMAT_END_OF_INPUT
Definition: format.h:143
u16 n_vectors
Definition: node.h:345
static_always_inline uword vlib_get_thread_index(void)
Definition: threads.h:185
#define CLIB_PREFETCH(addr, size, type)
Definition: cache.h:82
#define vec_free(V)
Free vector&#39;s memory (no header).
Definition: vec.h:340
static void feat_bitmap_init_next_nodes(vlib_main_t *vm, u32 node_index, u32 num_features, char **feat_names, u32 *next_nodes)
Initialize the feature next-node indexes of a graph node.
Definition: feat_bitmap.h:43
#define MODE_ERROR_ETH
Definition: l2_input.h:203
void ethernet_register_l2_input(vlib_main_t *vm, u32 node_index)
Definition: node.c:1332
#define VLIB_BUFFER_IS_TRACED
Definition: buffer.h:85
#define clib_memcpy(a, b, c)
Definition: string.h:69
#define VNET_SIMULATED_ETHERNET_TX_NEXT_ETHERNET_INPUT
#define ETHERNET_INTERFACE_FLAG_ACCEPT_ALL
Definition: ethernet.h:113
#define ARRAY_LEN(x)
Definition: clib.h:59
static_always_inline l2_bridge_domain_t * l2input_bd_config(u32 bd_index)
Definition: l2_input.h:90
char ** l2input_get_feat_names(void)
Return an array of strings containing graph node names of each feature.
Definition: l2_input.c:58
#define VLIB_CLI_COMMAND(x,...)
Definition: cli.h:154
u16 cached_next_index
Next frame index that vector arguments were last enqueued to last time this node ran.
Definition: node.h:460
#define L2_BD_ID_MAX
Definition: l2_bd.h:94
static u32 bd_find_or_add_bd_index(bd_main_t *bdm, u32 bd_id)
Get or create a bridge domain.
Definition: l2_bd.h:167
#define ASSERT(truth)
unsigned int u32
Definition: types.h:88
#define foreach_l2input_feat
Definition: l2_input.h:106
static clib_error_t * show_int_mode(vlib_main_t *vm, unformat_input_t *input, vlib_cli_command_t *cmd)
Show interface mode.
Definition: l2_input.c:990
#define VLIB_NODE_FLAG_TRACE
Definition: node.h:260
#define MODE_L2_XC
Definition: l2_input.h:200
clib_error_t * l2_init(vlib_main_t *vm)
Definition: l2_input.c:1119
static uword l2input_node_fn(vlib_main_t *vm, vlib_node_runtime_t *node, vlib_frame_t *frame)
Definition: l2_input.c:414
u64 uword
Definition: types.h:112
static void * vlib_add_trace(vlib_main_t *vm, vlib_node_runtime_t *r, vlib_buffer_t *b, u32 n_data_bytes)
Definition: trace_funcs.h:55
u32 l2input_intf_bitmap_enable(u32 sw_if_index, u32 feature_bitmap, u32 enable)
Enable (or disable) the feature in the bitmap for the given interface.
Definition: l2_input.c:485
static u8 * format_l2input_trace(u8 *s, va_list *args)
Definition: l2_input.c:75
clib_error_t * l2input_init(vlib_main_t *vm)
Definition: l2_input.c:446
Definition: defs.h:47
unsigned short u16
Definition: types.h:57
l2input_main_t l2input_main
Definition: l2_input.c:88
void ethernet_sw_interface_set_l2_mode(vnet_main_t *vnm, u32 sw_if_index, u32 l2)
Definition: node.c:973
u32 feature_bitmap
Definition: l2_bd.h:56
#define vec_len(v)
Number of elements in vector (rvalue-only, NULL tolerant)
unsigned char u8
Definition: types.h:56
static char * l2input_error_strings[]
Definition: l2_input.c:102
vnet_sw_interface_t * sw_interfaces
Definition: interface.h:644
static void * vlib_frame_vector_args(vlib_frame_t *f)
Get pointer to frame vector data.
Definition: node_funcs.h:269
l2_bridge_domain_t * bd_configs
Definition: l2_input.h:69
#define vnet_buffer(b)
Definition: buffer.h:303
#define VLIB_NODE_FUNCTION_MULTIARCH(node, fn)
Definition: node.h:159
#define MODE_ERROR_BVI_DEF
Definition: l2_input.h:204
u8 * format_unformat_error(u8 *s, va_list *va)
Definition: unformat.c:91
#define VLIB_REGISTER_NODE(x,...)
Definition: node.h:144
u8 data[0]
Packet data.
Definition: buffer.h:152
#define MODE_L2_CLASSIFY
Definition: l2_input.h:201
#define vec_foreach(var, vec)
Vector iterator.
#define get_u16(addr)
u16 flags
Copy of main node flags.
Definition: node.h:454
u32 sw_if_index
Definition: l2_bd.h:46
l2input_next_t
Definition: l2_input.c:108
#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:485
bd_main_t bd_main
Definition: l2_bd.c:44
#define CLIB_CACHE_LINE_BYTES
Definition: cache.h:67
u32 flags
buffer flags: VLIB_BUFFER_IS_TRACED: trace this buffer.
Definition: buffer.h:74
void vlib_cli_output(vlib_main_t *vm, char *fmt,...)
Definition: cli.c:680
void l2fib_flush_int_mac(vlib_main_t *vm, u32 sw_if_index)
Flush all non static MACs from an interface.
Definition: l2_fib.c:744
static vlib_buffer_t * vlib_get_buffer(vlib_main_t *vm, u32 buffer_index)
Translate buffer index into buffer pointer.
Definition: buffer_funcs.h:57
uword unformat(unformat_input_t *i, const char *fmt,...)
Definition: unformat.c:972
Definition: defs.h:46
static uword unformat_check_input(unformat_input_t *i)
Definition: format.h:169
#define MODE_L3
Definition: l2_input.h:198
vlib_main_t * vlib_main
Definition: l2_input.h:72
u32 ethernet_set_flags(vnet_main_t *vnm, u32 hw_if_index, u32 flags)
Definition: interface.c:339
static uword pool_elts(void *v)
Number of active elements in a pool.
Definition: pool.h:109