FD.io VPP  v19.08-27-gf4dcae4
Vector Packet Processing
encap.c
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1 /*
2  * Copyright (c) 2017 SUSE LLC.
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 <vppinfra/error.h>
16 #include <vppinfra/hash.h>
17 #include <vnet/vnet.h>
18 #include <vnet/ip/ip.h>
19 #include <vnet/ethernet/ethernet.h>
20 #include <vnet/geneve/geneve.h>
21 
22 /* Statistics (not all errors) */
23 #define foreach_geneve_encap_error \
24 _(ENCAPSULATED, "good packets encapsulated")
25 
26 static char *geneve_encap_error_strings[] = {
27 #define _(sym,string) string,
29 #undef _
30 };
31 
32 typedef enum
33 {
34 #define _(sym,str) GENEVE_ENCAP_ERROR_##sym,
36 #undef _
39 
40 typedef enum
41 {
45 
46 #define foreach_fixed_header4_offset \
47  _(0) _(1) _(2) _(3)
48 
49 #define foreach_fixed_header6_offset \
50  _(0) _(1) _(2) _(3) _(4) _(5) _(6)
51 
54  vlib_node_runtime_t * node,
55  vlib_frame_t * from_frame, u32 is_ip4)
56 {
57  u32 n_left_from, next_index, *from, *to_next;
58  geneve_main_t *vxm = &geneve_main;
59  vnet_main_t *vnm = vxm->vnet_main;
61  u32 pkts_encapsulated = 0;
62  u16 old_l0 = 0, old_l1 = 0;
63  u32 thread_index = vm->thread_index;
64  u32 stats_sw_if_index, stats_n_packets, stats_n_bytes;
65  u32 sw_if_index0 = ~0, sw_if_index1 = ~0;
66  u32 next0 = 0, next1 = 0;
67  vnet_hw_interface_t *hi0, *hi1;
68  geneve_tunnel_t *t0 = NULL, *t1 = NULL;
69  vlib_buffer_t *bufs[VLIB_FRAME_SIZE], **b = bufs;
70 
71  from = vlib_frame_vector_args (from_frame);
72  n_left_from = from_frame->n_vectors;
73  vlib_get_buffers (vm, from, bufs, n_left_from);
74 
75  next_index = node->cached_next_index;
76  stats_sw_if_index = node->runtime_data[0];
77  stats_n_packets = stats_n_bytes = 0;
78 
79  while (n_left_from > 0)
80  {
81  u32 n_left_to_next;
82 
83  vlib_get_next_frame (vm, node, next_index, to_next, n_left_to_next);
84 
85  while (n_left_from >= 4 && n_left_to_next >= 2)
86  {
87  u32 bi0, bi1;
88  u32 flow_hash0, flow_hash1;
89  u32 len0, len1;
90  ip4_header_t *ip4_0, *ip4_1;
91  ip6_header_t *ip6_0, *ip6_1;
92  udp_header_t *udp0, *udp1;
93  u64 *copy_src0, *copy_dst0;
94  u64 *copy_src1, *copy_dst1;
95  u32 *copy_src_last0, *copy_dst_last0;
96  u32 *copy_src_last1, *copy_dst_last1;
97  u16 new_l0, new_l1;
98  ip_csum_t sum0, sum1;
99 
100  /* Prefetch next iteration. */
101  {
102  vlib_prefetch_buffer_header (b[2], LOAD);
103  vlib_prefetch_buffer_header (b[3], LOAD);
104 
106  2 * CLIB_CACHE_LINE_BYTES, LOAD);
108  2 * CLIB_CACHE_LINE_BYTES, LOAD);
109  }
110 
111  bi0 = from[0];
112  bi1 = from[1];
113  to_next[0] = bi0;
114  to_next[1] = bi1;
115  from += 2;
116  to_next += 2;
117  n_left_to_next -= 2;
118  n_left_from -= 2;
119 
120  flow_hash0 = vnet_l2_compute_flow_hash (b[0]);
121  flow_hash1 = vnet_l2_compute_flow_hash (b[1]);
122 
123  /* Get next node index and adj index from tunnel next_dpo */
124  if (sw_if_index0 != vnet_buffer (b[0])->sw_if_index[VLIB_TX])
125  {
126  sw_if_index0 = vnet_buffer (b[0])->sw_if_index[VLIB_TX];
127  hi0 = vnet_get_sup_hw_interface (vnm, sw_if_index0);
128  t0 = &vxm->tunnels[hi0->dev_instance];
129  /* Note: change to always set next0 if it may be set to drop */
130  next0 = t0->next_dpo.dpoi_next_node;
131  }
132 
133  ASSERT (t0 != NULL);
134 
135  vnet_buffer (b[0])->ip.adj_index[VLIB_TX] = t0->next_dpo.dpoi_index;
136 
137  /* Get next node index and adj index from tunnel next_dpo */
138  if (sw_if_index1 != vnet_buffer (b[1])->sw_if_index[VLIB_TX])
139  {
140  sw_if_index1 = vnet_buffer (b[1])->sw_if_index[VLIB_TX];
141  hi1 = vnet_get_sup_hw_interface (vnm, sw_if_index1);
142  t1 = &vxm->tunnels[hi1->dev_instance];
143  /* Note: change to always set next1 if it may be set to drop */
144  next1 = t1->next_dpo.dpoi_next_node;
145  }
146 
147  ASSERT (t1 != NULL);
148 
149  vnet_buffer (b[1])->ip.adj_index[VLIB_TX] = t1->next_dpo.dpoi_index;
150 
151  /* Apply the rewrite string. $$$$ vnet_rewrite? */
152  vlib_buffer_advance (b[0], -(word) _vec_len (t0->rewrite));
153  vlib_buffer_advance (b[1], -(word) _vec_len (t1->rewrite));
154 
155  if (is_ip4)
156  {
157  u8 ip4_geneve_base_header_len =
158  sizeof (ip4_header_t) + sizeof (udp_header_t) +
160  u8 ip4_geneve_header_total_len0 = ip4_geneve_base_header_len;
161  u8 ip4_geneve_header_total_len1 = ip4_geneve_base_header_len;
162 #if SUPPORT_OPTIONS_HEADER==1
163  ip4_geneve_header_total_len0 += t0->options_len;
164  ip4_geneve_header_total_len1 += t1->options_len;
165 #endif
166  ASSERT (vec_len (t0->rewrite) == ip4_geneve_header_total_len0);
167  ASSERT (vec_len (t1->rewrite) == ip4_geneve_header_total_len1);
168 
169  ip4_0 = vlib_buffer_get_current (b[0]);
170  ip4_1 = vlib_buffer_get_current (b[1]);
171 
172  /* Copy the fixed header */
173  copy_dst0 = (u64 *) ip4_0;
174  copy_src0 = (u64 *) t0->rewrite;
175  copy_dst1 = (u64 *) ip4_1;
176  copy_src1 = (u64 *) t1->rewrite;
177  /* Copy first 32 octets 8-bytes at a time */
178 #define _(offs) copy_dst0[offs] = copy_src0[offs];
180 #undef _
181 #define _(offs) copy_dst1[offs] = copy_src1[offs];
183 #undef _
184  /* Last 4 octets. Hopefully gcc will be our friend */
185  copy_dst_last0 = (u32 *) (&copy_dst0[4]);
186  copy_src_last0 = (u32 *) (&copy_src0[4]);
187  copy_dst_last0[0] = copy_src_last0[0];
188  copy_dst_last1 = (u32 *) (&copy_dst1[4]);
189  copy_src_last1 = (u32 *) (&copy_src1[4]);
190  copy_dst_last1[0] = copy_src_last1[0];
191 
192  /* Fix the IP4 checksum and length */
193  sum0 = ip4_0->checksum;
194  new_l0 = /* old_l0 always 0, see the rewrite setup */
195  clib_host_to_net_u16 (vlib_buffer_length_in_chain (vm, b[0]));
196  sum0 = ip_csum_update (sum0, old_l0, new_l0, ip4_header_t,
197  length /* changed member */ );
198  ip4_0->checksum = ip_csum_fold (sum0);
199  ip4_0->length = new_l0;
200  sum1 = ip4_1->checksum;
201  new_l1 = /* old_l1 always 0, see the rewrite setup */
202  clib_host_to_net_u16 (vlib_buffer_length_in_chain (vm, b[1]));
203  sum1 = ip_csum_update (sum1, old_l1, new_l1, ip4_header_t,
204  length /* changed member */ );
205  ip4_1->checksum = ip_csum_fold (sum1);
206  ip4_1->length = new_l1;
207 
208  /* Fix UDP length and set source port */
209  udp0 = (udp_header_t *) (ip4_0 + 1);
210  new_l0 =
211  clib_host_to_net_u16 (vlib_buffer_length_in_chain (vm, b[0]) -
212  sizeof (*ip4_0));
213  udp0->length = new_l0;
214  udp0->src_port = flow_hash0;
215  udp1 = (udp_header_t *) (ip4_1 + 1);
216  new_l1 =
217  clib_host_to_net_u16 (vlib_buffer_length_in_chain (vm, b[1]) -
218  sizeof (*ip4_1));
219  udp1->length = new_l1;
220  udp1->src_port = flow_hash1;
221  }
222  else /* ipv6 */
223  {
224  int bogus = 0;
225 
226  u8 ip6_geneve_base_header_len =
227  sizeof (ip6_header_t) + sizeof (udp_header_t) +
229  u8 ip6_geneve_header_total_len0 = ip6_geneve_base_header_len;
230  u8 ip6_geneve_header_total_len1 = ip6_geneve_base_header_len;
231 #if SUPPORT_OPTIONS_HEADER==1
232  ip6_geneve_header_total_len0 += t0->options_len;
233  ip6_geneve_header_total_len1 += t1->options_len;
234 #endif
235  ASSERT (vec_len (t0->rewrite) == ip6_geneve_header_total_len0);
236  ASSERT (vec_len (t1->rewrite) == ip6_geneve_header_total_len1);
237 
238  ip6_0 = vlib_buffer_get_current (b[0]);
239  ip6_1 = vlib_buffer_get_current (b[1]);
240 
241  /* Copy the fixed header */
242  copy_dst0 = (u64 *) ip6_0;
243  copy_src0 = (u64 *) t0->rewrite;
244  copy_dst1 = (u64 *) ip6_1;
245  copy_src1 = (u64 *) t1->rewrite;
246  /* Copy first 56 (ip6) octets 8-bytes at a time */
247 #define _(offs) copy_dst0[offs] = copy_src0[offs];
249 #undef _
250 #define _(offs) copy_dst1[offs] = copy_src1[offs];
252 #undef _
253  /* Fix IP6 payload length */
254  new_l0 =
255  clib_host_to_net_u16 (vlib_buffer_length_in_chain (vm, b[0])
256  - sizeof (*ip6_0));
257  ip6_0->payload_length = new_l0;
258  new_l1 =
259  clib_host_to_net_u16 (vlib_buffer_length_in_chain (vm, b[1])
260  - sizeof (*ip6_1));
261  ip6_1->payload_length = new_l1;
262 
263  /* Fix UDP length and set source port */
264  udp0 = (udp_header_t *) (ip6_0 + 1);
265  udp0->length = new_l0;
266  udp0->src_port = flow_hash0;
267  udp1 = (udp_header_t *) (ip6_1 + 1);
268  udp1->length = new_l1;
269  udp1->src_port = flow_hash1;
270 
271  /* IPv6 UDP checksum is mandatory */
273  ip6_0,
274  &bogus);
275  ASSERT (bogus == 0);
276  if (udp0->checksum == 0)
277  udp0->checksum = 0xffff;
279  ip6_1,
280  &bogus);
281  ASSERT (bogus == 0);
282  if (udp1->checksum == 0)
283  udp1->checksum = 0xffff;
284  }
285 
286  pkts_encapsulated += 2;
287  len0 = vlib_buffer_length_in_chain (vm, b[0]);
288  len1 = vlib_buffer_length_in_chain (vm, b[1]);
289  stats_n_packets += 2;
290  stats_n_bytes += len0 + len1;
291 
292  /* Batch stats increment on the same geneve tunnel so counter is not
293  incremented per packet. Note stats are still incremented for deleted
294  and admin-down tunnel where packets are dropped. It is not worthwhile
295  to check for this rare case and affect normal path performance. */
296  if (PREDICT_FALSE ((sw_if_index0 != stats_sw_if_index) ||
297  (sw_if_index1 != stats_sw_if_index)))
298  {
299  stats_n_packets -= 2;
300  stats_n_bytes -= len0 + len1;
301  if (sw_if_index0 == sw_if_index1)
302  {
303  if (stats_n_packets)
306  VNET_INTERFACE_COUNTER_TX, thread_index,
307  stats_sw_if_index, stats_n_packets, stats_n_bytes);
308  stats_sw_if_index = sw_if_index0;
309  stats_n_packets = 2;
310  stats_n_bytes = len0 + len1;
311  }
312  else
313  {
316  thread_index, sw_if_index0, 1, len0);
319  thread_index, sw_if_index1, 1, len1);
320  }
321  }
322 
323  if (PREDICT_FALSE (b[0]->flags & VLIB_BUFFER_IS_TRACED))
324  {
326  vlib_add_trace (vm, node, b[0], sizeof (*tr));
327  tr->tunnel_index = t0 - vxm->tunnels;
328  tr->vni = t0->vni;
329  }
330 
331  if (PREDICT_FALSE (b[1]->flags & VLIB_BUFFER_IS_TRACED))
332  {
334  vlib_add_trace (vm, node, b[1], sizeof (*tr));
335  tr->tunnel_index = t1 - vxm->tunnels;
336  tr->vni = t1->vni;
337  }
338  b += 2;
339 
340  vlib_validate_buffer_enqueue_x2 (vm, node, next_index,
341  to_next, n_left_to_next,
342  bi0, bi1, next0, next1);
343  }
344 
345  while (n_left_from > 0 && n_left_to_next > 0)
346  {
347  u32 bi0;
348  u32 flow_hash0;
349  u32 len0;
350  ip4_header_t *ip4_0;
351  ip6_header_t *ip6_0;
352  udp_header_t *udp0;
353  u64 *copy_src0, *copy_dst0;
354  u32 *copy_src_last0, *copy_dst_last0;
355  u16 new_l0;
356  ip_csum_t sum0;
357 
358  bi0 = from[0];
359  to_next[0] = bi0;
360  from += 1;
361  to_next += 1;
362  n_left_from -= 1;
363  n_left_to_next -= 1;
364 
365  flow_hash0 = vnet_l2_compute_flow_hash (b[0]);
366 
367  /* Get next node index and adj index from tunnel next_dpo */
368  if (sw_if_index0 != vnet_buffer (b[0])->sw_if_index[VLIB_TX])
369  {
370  sw_if_index0 = vnet_buffer (b[0])->sw_if_index[VLIB_TX];
371  hi0 = vnet_get_sup_hw_interface (vnm, sw_if_index0);
372  t0 = &vxm->tunnels[hi0->dev_instance];
373  /* Note: change to always set next0 if it may be set to drop */
374  next0 = t0->next_dpo.dpoi_next_node;
375  }
376  vnet_buffer (b[0])->ip.adj_index[VLIB_TX] = t0->next_dpo.dpoi_index;
377 
378  /* Apply the rewrite string. $$$$ vnet_rewrite? */
379  vlib_buffer_advance (b[0], -(word) _vec_len (t0->rewrite));
380 
381  if (is_ip4)
382  {
383  u8 ip4_geneve_base_header_len =
384  sizeof (ip4_header_t) + sizeof (udp_header_t) +
386  u8 ip4_geneve_header_total_len0 = ip4_geneve_base_header_len;
387 #if SUPPORT_OPTIONS_HEADER==1
388  ip4_geneve_header_total_len0 += t0->options_len;
389 #endif
390  ASSERT (vec_len (t0->rewrite) == ip4_geneve_header_total_len0);
391 
392  ip4_0 = vlib_buffer_get_current (b[0]);
393 
394  /* Copy the fixed header */
395  copy_dst0 = (u64 *) ip4_0;
396  copy_src0 = (u64 *) t0->rewrite;
397  /* Copy first 32 octets 8-bytes at a time */
398 #define _(offs) copy_dst0[offs] = copy_src0[offs];
400 #undef _
401  /* Last 4 octets. Hopefully gcc will be our friend */
402  copy_dst_last0 = (u32 *) (&copy_dst0[4]);
403  copy_src_last0 = (u32 *) (&copy_src0[4]);
404  copy_dst_last0[0] = copy_src_last0[0];
405 
406  /* Fix the IP4 checksum and length */
407  sum0 = ip4_0->checksum;
408  new_l0 = /* old_l0 always 0, see the rewrite setup */
409  clib_host_to_net_u16 (vlib_buffer_length_in_chain (vm, b[0]));
410  sum0 = ip_csum_update (sum0, old_l0, new_l0, ip4_header_t,
411  length /* changed member */ );
412  ip4_0->checksum = ip_csum_fold (sum0);
413  ip4_0->length = new_l0;
414 
415  /* Fix UDP length and set source port */
416  udp0 = (udp_header_t *) (ip4_0 + 1);
417  new_l0 =
418  clib_host_to_net_u16 (vlib_buffer_length_in_chain (vm, b[0]) -
419  sizeof (*ip4_0));
420  udp0->length = new_l0;
421  udp0->src_port = flow_hash0;
422  }
423 
424  else /* ip6 path */
425  {
426  int bogus = 0;
427 
428  u8 ip6_geneve_base_header_len =
429  sizeof (ip6_header_t) + sizeof (udp_header_t) +
431  u8 ip6_geneve_header_total_len0 = ip6_geneve_base_header_len;
432 #if SUPPORT_OPTIONS_HEADER==1
433  ip6_geneve_header_total_len0 += t0->options_len;
434 #endif
435  ASSERT (vec_len (t0->rewrite) == ip6_geneve_header_total_len0);
436 
437  ip6_0 = vlib_buffer_get_current (b[0]);
438  /* Copy the fixed header */
439  copy_dst0 = (u64 *) ip6_0;
440  copy_src0 = (u64 *) t0->rewrite;
441  /* Copy first 56 (ip6) octets 8-bytes at a time */
442 #define _(offs) copy_dst0[offs] = copy_src0[offs];
444 #undef _
445  /* Fix IP6 payload length */
446  new_l0 =
447  clib_host_to_net_u16 (vlib_buffer_length_in_chain (vm, b[0])
448  - sizeof (*ip6_0));
449  ip6_0->payload_length = new_l0;
450 
451  /* Fix UDP length and set source port */
452  udp0 = (udp_header_t *) (ip6_0 + 1);
453  udp0->length = new_l0;
454  udp0->src_port = flow_hash0;
455 
456  /* IPv6 UDP checksum is mandatory */
458  ip6_0,
459  &bogus);
460  ASSERT (bogus == 0);
461  if (udp0->checksum == 0)
462  udp0->checksum = 0xffff;
463  }
464 
465  pkts_encapsulated++;
466  len0 = vlib_buffer_length_in_chain (vm, b[0]);
467  stats_n_packets += 1;
468  stats_n_bytes += len0;
469 
470  /* Batch stats increment on the same geneve tunnel so counter is not
471  incremented per packet. Note stats are still incremented for deleted
472  and admin-down tunnel where packets are dropped. It is not worthwhile
473  to check for this rare case and affect normal path performance. */
474  if (PREDICT_FALSE (sw_if_index0 != stats_sw_if_index))
475  {
476  stats_n_packets -= 1;
477  stats_n_bytes -= len0;
478  if (stats_n_packets)
481  thread_index, stats_sw_if_index,
482  stats_n_packets, stats_n_bytes);
483  stats_n_packets = 1;
484  stats_n_bytes = len0;
485  stats_sw_if_index = sw_if_index0;
486  }
487 
488  if (PREDICT_FALSE (b[0]->flags & VLIB_BUFFER_IS_TRACED))
489  {
491  vlib_add_trace (vm, node, b[0], sizeof (*tr));
492  tr->tunnel_index = t0 - vxm->tunnels;
493  tr->vni = t0->vni;
494  }
495  b += 1;
496 
497  vlib_validate_buffer_enqueue_x1 (vm, node, next_index,
498  to_next, n_left_to_next,
499  bi0, next0);
500  }
501 
502  vlib_put_next_frame (vm, node, next_index, n_left_to_next);
503  }
504 
505  /* Do we still need this now that tunnel tx stats is kept? */
507  GENEVE_ENCAP_ERROR_ENCAPSULATED,
508  pkts_encapsulated);
509 
510  /* Increment any remaining batch stats */
511  if (stats_n_packets)
512  {
515  thread_index, stats_sw_if_index, stats_n_packets, stats_n_bytes);
516  node->runtime_data[0] = stats_sw_if_index;
517  }
518 
519  return from_frame->n_vectors;
520 }
521 
523  vlib_node_runtime_t * node,
524  vlib_frame_t * from_frame)
525 {
526  return geneve_encap_inline (vm, node, from_frame, /* is_ip4 */ 1);
527 }
528 
530  vlib_node_runtime_t * node,
531  vlib_frame_t * from_frame)
532 {
533  return geneve_encap_inline (vm, node, from_frame, /* is_ip4 */ 0);
534 }
535 
536 /* *INDENT-OFF* */
538  .name = "geneve4-encap",
539  .vector_size = sizeof (u32),
540  .format_trace = format_geneve_encap_trace,
543  .error_strings = geneve_encap_error_strings,
544  .n_next_nodes = GENEVE_ENCAP_N_NEXT,
545  .next_nodes = {
546  [GENEVE_ENCAP_NEXT_DROP] = "error-drop",
547  },
548 };
549 
551  .name = "geneve6-encap",
552  .vector_size = sizeof (u32),
553  .format_trace = format_geneve_encap_trace,
556  .error_strings = geneve_encap_error_strings,
557  .n_next_nodes = GENEVE_ENCAP_N_NEXT,
558  .next_nodes = {
559  [GENEVE_ENCAP_NEXT_DROP] = "error-drop",
560  },
561 };
562 /* *INDENT-ON* */
563 
564 /*
565  * fd.io coding-style-patch-verification: ON
566  *
567  * Local Variables:
568  * eval: (c-set-style "gnu")
569  * End:
570  */
u32 flags
Definition: vhost_user.h:141
static void vlib_increment_combined_counter(vlib_combined_counter_main_t *cm, u32 thread_index, u32 index, u64 n_packets, u64 n_bytes)
Increment a combined counter.
Definition: counter.h:220
u8 runtime_data[0]
Function dependent node-runtime data.
Definition: node.h:521
static vnet_hw_interface_t * vnet_get_sup_hw_interface(vnet_main_t *vnm, u32 sw_if_index)
vnet_interface_main_t interface_main
Definition: vnet.h:56
unsigned long u64
Definition: types.h:89
#define NULL
Definition: clib.h:58
u32 thread_index
Definition: main.h:197
uword ip_csum_t
Definition: ip_packet.h:219
dpo_id_t next_dpo
Definition: geneve.h:91
u8 data[128]
Definition: ipsec.api:249
#define VLIB_NODE_FN(node)
Definition: node.h:201
#define foreach_fixed_header6_offset
Definition: encap.c:49
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:366
vlib_node_registration_t geneve6_encap_node
(constructor) VLIB_REGISTER_NODE (geneve6_encap_node)
Definition: encap.c:550
u8 * format_geneve_encap_trace(u8 *s, va_list *args)
Definition: geneve.c:42
unsigned char u8
Definition: types.h:56
#define GENEVE_BASE_HEADER_LENGTH
Definition: geneve_packet.h:95
geneve_tunnel_t * tunnels
Definition: geneve.h:162
i64 word
Definition: types.h:111
vl_api_interface_index_t sw_if_index
Definition: gre.api:50
u8 * rewrite
Definition: geneve.h:88
#define always_inline
Definition: clib.h:98
vlib_combined_counter_main_t * combined_sw_if_counters
Definition: interface.h:842
#define vlib_prefetch_buffer_header(b, type)
Prefetch buffer metadata.
Definition: buffer.h:203
geneve_encap_next_t
Definition: encap.c:40
unsigned int u32
Definition: types.h:88
static uword geneve_encap_inline(vlib_main_t *vm, vlib_node_runtime_t *node, vlib_frame_t *from_frame, u32 is_ip4)
Definition: encap.c:53
#define VLIB_FRAME_SIZE
Definition: node.h:376
vl_api_fib_path_type_t type
Definition: fib_types.api:123
unsigned short u16
Definition: types.h:57
static u32 vnet_l2_compute_flow_hash(vlib_buffer_t *b)
Definition: l2_input.h:275
static void * vlib_buffer_get_current(vlib_buffer_t *b)
Get pointer to current data to process.
Definition: buffer.h:229
#define PREDICT_FALSE(x)
Definition: clib.h:111
u32 node_index
Node index.
Definition: node.h:494
#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
#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:218
#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:338
static void vlib_node_increment_counter(vlib_main_t *vm, u32 node_index, u32 counter_index, u64 increment)
Definition: node_funcs.h:1150
geneve_encap_error_t
Definition: encap.c:32
#define VLIB_REGISTER_NODE(x,...)
Definition: node.h:169
u16 n_vectors
Definition: node.h:395
#define CLIB_PREFETCH(addr, size, type)
Definition: cache.h:80
vlib_main_t * vm
Definition: buffer.c:312
#define ARRAY_LEN(x)
Definition: clib.h:62
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:458
u16 ip6_tcp_udp_icmp_compute_checksum(vlib_main_t *vm, vlib_buffer_t *p0, ip6_header_t *ip0, int *bogus_lengthp)
Definition: ip6_forward.c:906
u16 cached_next_index
Next frame index that vector arguments were last enqueued to last time this node ran.
Definition: node.h:513
#define ASSERT(truth)
#define foreach_fixed_header4_offset
Definition: encap.c:46
static void vlib_buffer_advance(vlib_buffer_t *b, word l)
Advance current data pointer by the supplied (signed!) amount.
Definition: buffer.h:248
vnet_main_t * vnet_main
Definition: geneve.h:184
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
Definition: defs.h:47
u16 payload_length
Definition: ip6_packet.h:374
index_t dpoi_index
the index of objects of that type
Definition: dpo.h:186
#define vec_len(v)
Number of elements in vector (rvalue-only, NULL tolerant)
VLIB buffer representation.
Definition: buffer.h:102
u64 uword
Definition: types.h:112
static void * vlib_frame_vector_args(vlib_frame_t *f)
Get pointer to frame vector data.
Definition: node_funcs.h:244
#define ip_csum_update(sum, old, new, type, field)
Definition: ip_packet.h:269
#define foreach_geneve_encap_error
Definition: encap.c:23
#define vnet_buffer(b)
Definition: buffer.h:361
geneve_main_t geneve_main
Definition: geneve.c:39
vlib_node_registration_t geneve4_encap_node
(constructor) VLIB_REGISTER_NODE (geneve4_encap_node)
Definition: encap.c:537
u16 dpoi_next_node
The next VLIB node to follow.
Definition: dpo.h:182
static_always_inline void vlib_get_buffers(vlib_main_t *vm, u32 *bi, vlib_buffer_t **b, int count)
Translate array of buffer indices into buffer pointers.
Definition: buffer_funcs.h:244
#define CLIB_CACHE_LINE_BYTES
Definition: cache.h:59
static char * geneve_encap_error_strings[]
Definition: encap.c:26
static u16 ip_csum_fold(ip_csum_t c)
Definition: ip_packet.h:275