FD.io VPP  v19.08-27-gf4dcae4
Vector Packet Processing
device.c
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1 /*
2  *------------------------------------------------------------------
3  * Copyright (c) 2017 Cisco and/or its affiliates.
4  * Licensed under the Apache License, Version 2.0 (the "License");
5  * you may not use this file except in compliance with the License.
6  * You may obtain a copy of the License at:
7  *
8  * http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  *------------------------------------------------------------------
16  */
17 
18 #define _GNU_SOURCE
19 #include <stdint.h>
20 #include <vnet/ethernet/ethernet.h>
21 #include <vnet/ip/ip4_packet.h>
22 #include <vnet/ip/ip6_packet.h>
24 #include <vnet/bonding/node.h>
25 #include <vppinfra/lb_hash_hash.h>
26 #include <vnet/ip/ip.h>
28 
29 #define foreach_bond_tx_error \
30  _(NONE, "no error") \
31  _(IF_DOWN, "interface down") \
32  _(NO_SLAVE, "no slave")
33 
34 typedef enum
35 {
36 #define _(f,s) BOND_TX_ERROR_##f,
38 #undef _
41 
42 static char *bond_tx_error_strings[] = {
43 #define _(n,s) s,
45 #undef _
46 };
47 
48 static u8 *
49 format_bond_tx_trace (u8 * s, va_list * args)
50 {
51  CLIB_UNUSED (vlib_main_t * vm) = va_arg (*args, vlib_main_t *);
52  CLIB_UNUSED (vlib_node_t * node) = va_arg (*args, vlib_node_t *);
53  bond_packet_trace_t *t = va_arg (*args, bond_packet_trace_t *);
54  vnet_hw_interface_t *hw, *hw1;
55  vnet_main_t *vnm = vnet_get_main ();
56 
59  s = format (s, "src %U, dst %U, %s -> %s",
62  hw->name, hw1->name);
63 
64  return s;
65 }
66 
67 #ifndef CLIB_MARCH_VARIANT
68 u8 *
69 format_bond_interface_name (u8 * s, va_list * args)
70 {
71  u32 dev_instance = va_arg (*args, u32);
72  bond_main_t *bm = &bond_main;
73  bond_if_t *bif = pool_elt_at_index (bm->interfaces, dev_instance);
74 
75  s = format (s, "BondEthernet%lu", bif->id);
76 
77  return s;
78 }
79 #endif
80 
81 static __clib_unused clib_error_t *
83  struct vnet_hw_interface_t *bif_hw,
84  i32 l2_if_adjust)
85 {
86  bond_if_t *bif;
88  struct vnet_hw_interface_t *sif_hw;
89 
91  if (!bif)
92  return 0;
93 
94  if ((bif_hw->l2_if_count == 1) && (l2_if_adjust == 1))
95  {
96  /* Just added first L2 interface on this port */
97  vec_foreach (sw_if_index, bif->slaves)
98  {
99  sif_hw = vnet_get_sup_hw_interface (vnm, *sw_if_index);
100  ethernet_set_flags (vnm, sif_hw->hw_if_index,
102 
103  /* ensure all packets go to ethernet-input */
104  ethernet_set_rx_redirect (vnm, sif_hw, 1);
105  }
106  }
107  else if ((bif_hw->l2_if_count == 0) && (l2_if_adjust == -1))
108  {
109  /* Just removed last L2 subinterface on this port */
110  vec_foreach (sw_if_index, bif->slaves)
111  {
112  sif_hw = vnet_get_sup_hw_interface (vnm, *sw_if_index);
113 
114  /* Allow ip packets to go directly to ip4-input etc */
115  ethernet_set_rx_redirect (vnm, sif_hw, 0);
116  }
117  }
118 
119  return 0;
120 }
121 
122 static __clib_unused clib_error_t *
124  struct vnet_sw_interface_t *st, int is_add)
125 {
126  /* Nothing for now */
127  return 0;
128 }
129 
130 static clib_error_t *
132 {
133  vnet_hw_interface_t *hif = vnet_get_hw_interface (vnm, hw_if_index);
134  uword is_up = (flags & VNET_SW_INTERFACE_FLAG_ADMIN_UP) != 0;
135  bond_main_t *bm = &bond_main;
137 
138  bif->admin_up = is_up;
139  if (is_up && vec_len (bif->active_slaves))
142  return 0;
143 }
144 
147 {
148  u32 idx = ptd->per_port_queue[port].n_buffers++;
149  ptd->per_port_queue[port].buffers[idx] = bi;
150 }
151 
154  bond_if_t * bif, vlib_buffer_t * b0, uword n_slaves)
155 {
156  bond_main_t *bm = &bond_main;
157  vlib_buffer_t *c0;
158  int port;
160  u16 thread_index = vm->thread_index;
162  thread_index);
163 
164  for (port = 1; port < n_slaves; port++)
165  {
166  sw_if_index = *vec_elt_at_index (bif->active_slaves, port);
167  c0 = vlib_buffer_copy (vm, b0);
168  if (PREDICT_TRUE (c0 != 0))
169  {
170  vnet_buffer (c0)->sw_if_index[VLIB_TX] = sw_if_index;
171  bond_tx_add_to_queue (ptd, port, vlib_get_buffer_index (vm, c0));
172  }
173  }
174 
175  return 0;
176 }
177 
180 {
182  u64 *dst = (u64 *) & eth->dst_address[0];
183  u64 a = clib_mem_unaligned (dst, u64);
184  u32 *src = (u32 *) & eth->src_address[2];
185  u32 b = clib_mem_unaligned (src, u32);
186 
187  return lb_hash_hash_2_tuples (a, b);
188 }
189 
192 {
193  u16 *ethertype_p;
195 
196  if (!ethernet_frame_is_tagged (clib_net_to_host_u16 (eth->type)))
197  {
198  ethertype_p = &eth->type;
199  }
200  else
201  {
202  vlan = (void *) (eth + 1);
203  ethertype_p = &vlan->type;
204  if (*ethertype_p == ntohs (ETHERNET_TYPE_VLAN))
205  {
206  vlan++;
207  ethertype_p = &vlan->type;
208  }
209  }
210  return ethertype_p;
211 }
212 
215 {
217  u8 ip_version;
218  ip4_header_t *ip4;
219  u16 ethertype, *ethertype_p;
220  u32 *mac1, *mac2, *mac3;
221 
222  ethertype_p = bond_locate_ethertype (eth);
223  ethertype = clib_mem_unaligned (ethertype_p, u16);
224 
225  if ((ethertype != htons (ETHERNET_TYPE_IP4)) &&
226  (ethertype != htons (ETHERNET_TYPE_IP6)))
227  return bond_lb_l2 (b0);
228 
229  ip4 = (ip4_header_t *) (ethertype_p + 1);
230  ip_version = (ip4->ip_version_and_header_length >> 4);
231 
232  if (ip_version == 0x4)
233  {
234  u32 a, c;
235 
236  mac1 = (u32 *) & eth->dst_address[0];
237  mac2 = (u32 *) & eth->dst_address[4];
238  mac3 = (u32 *) & eth->src_address[2];
239 
240  a = clib_mem_unaligned (mac1, u32) ^ clib_mem_unaligned (mac2, u32) ^
241  clib_mem_unaligned (mac3, u32);
242  c =
244  a);
245  return c;
246  }
247  else if (ip_version == 0x6)
248  {
249  u64 a;
250  u32 c;
251  ip6_header_t *ip6 = (ip6_header_t *) (eth + 1);
252 
253  mac1 = (u32 *) & eth->dst_address[0];
254  mac2 = (u32 *) & eth->dst_address[4];
255  mac3 = (u32 *) & eth->src_address[2];
256 
257  a = clib_mem_unaligned (mac1, u32) ^ clib_mem_unaligned (mac2, u32) ^
258  clib_mem_unaligned (mac3, u32);
259  c =
261  (&ip6->src_address.as_uword[0], uword),
263  uword),
265  uword),
267  uword), a);
268  return c;
269  }
270  return bond_lb_l2 (b0);
271 }
272 
275 {
277  u8 ip_version;
278  uword is_tcp_udp;
279  ip4_header_t *ip4;
280  u16 ethertype, *ethertype_p;
281 
282  ethertype_p = bond_locate_ethertype (eth);
283  ethertype = clib_mem_unaligned (ethertype_p, u16);
284 
285  if ((ethertype != htons (ETHERNET_TYPE_IP4)) &&
286  (ethertype != htons (ETHERNET_TYPE_IP6)))
287  return (bond_lb_l2 (b0));
288 
289  ip4 = (ip4_header_t *) (ethertype_p + 1);
290  ip_version = (ip4->ip_version_and_header_length >> 4);
291 
292  if (ip_version == 0x4)
293  {
294  u32 a, t1, t2;
295  tcp_header_t *tcp = (void *) (ip4 + 1);
296 
297  is_tcp_udp = (ip4->protocol == IP_PROTOCOL_TCP) ||
298  (ip4->protocol == IP_PROTOCOL_UDP);
299  t1 = is_tcp_udp ? clib_mem_unaligned (&tcp->src, u16) : 0;
300  t2 = is_tcp_udp ? clib_mem_unaligned (&tcp->dst, u16) : 0;
301  a = t1 ^ t2;
302  return
303  lb_hash_hash_2_tuples (clib_mem_unaligned (&ip4->address_pair, u64),
304  a);
305  }
306  else if (ip_version == 0x6)
307  {
308  u64 a;
309  u32 c, t1, t2;
310  ip6_header_t *ip6 = (ip6_header_t *) (eth + 1);
311  tcp_header_t *tcp = (void *) (ip6 + 1);
312 
313  is_tcp_udp = 0;
314  if (PREDICT_TRUE ((ip6->protocol == IP_PROTOCOL_TCP) ||
315  (ip6->protocol == IP_PROTOCOL_UDP)))
316  {
317  is_tcp_udp = 1;
318  tcp = (void *) (ip6 + 1);
319  }
320  else if (ip6->protocol == IP_PROTOCOL_IP6_HOP_BY_HOP_OPTIONS)
321  {
323  (ip6_hop_by_hop_header_t *) (ip6 + 1);
324  if ((hbh->protocol == IP_PROTOCOL_TCP)
325  || (hbh->protocol == IP_PROTOCOL_UDP))
326  {
327  is_tcp_udp = 1;
328  tcp = (tcp_header_t *) ((u8 *) hbh + ((hbh->length + 1) << 3));
329  }
330  }
331  t1 = is_tcp_udp ? clib_mem_unaligned (&tcp->src, u16) : 0;
332  t2 = is_tcp_udp ? clib_mem_unaligned (&tcp->dst, u16) : 0;
333  a = t1 ^ t2;
334  c =
335  lb_hash_hash (clib_mem_unaligned
336  (&ip6->src_address.as_uword[0], uword),
337  clib_mem_unaligned (&ip6->src_address.as_uword[1],
338  uword),
339  clib_mem_unaligned (&ip6->dst_address.as_uword[0],
340  uword),
341  clib_mem_unaligned (&ip6->dst_address.as_uword[1],
342  uword), a);
343  return c;
344  }
345 
346  return bond_lb_l2 (b0);
347 }
348 
351 {
352  bif->lb_rr_last_index++;
353  if (bif->lb_rr_last_index >= n_slaves)
354  bif->lb_rr_last_index = 0;
355 
356  return bif->lb_rr_last_index;
357 }
358 
361  u32 * h, u32 n_left, uword n_slaves, u32 lb_alg)
362 {
363  while (n_left >= 4)
364  {
365  // Prefetch next iteration
366  if (n_left >= 8)
367  {
368  vlib_buffer_t **pb = b + 4;
369 
370  vlib_prefetch_buffer_header (pb[0], LOAD);
371  vlib_prefetch_buffer_header (pb[1], LOAD);
372  vlib_prefetch_buffer_header (pb[2], LOAD);
373  vlib_prefetch_buffer_header (pb[3], LOAD);
374 
375  CLIB_PREFETCH (pb[0]->data, CLIB_CACHE_LINE_BYTES, LOAD);
376  CLIB_PREFETCH (pb[1]->data, CLIB_CACHE_LINE_BYTES, LOAD);
377  CLIB_PREFETCH (pb[2]->data, CLIB_CACHE_LINE_BYTES, LOAD);
378  CLIB_PREFETCH (pb[3]->data, CLIB_CACHE_LINE_BYTES, LOAD);
379  }
380 
385 
386  if (lb_alg == BOND_LB_L2)
387  {
388  h[0] = bond_lb_l2 (b[0]);
389  h[1] = bond_lb_l2 (b[1]);
390  h[2] = bond_lb_l2 (b[2]);
391  h[3] = bond_lb_l2 (b[3]);
392  }
393  else if (lb_alg == BOND_LB_L34)
394  {
395  h[0] = bond_lb_l34 (b[0]);
396  h[1] = bond_lb_l34 (b[1]);
397  h[2] = bond_lb_l34 (b[2]);
398  h[3] = bond_lb_l34 (b[3]);
399  }
400  else if (lb_alg == BOND_LB_L23)
401  {
402  h[0] = bond_lb_l23 (b[0]);
403  h[1] = bond_lb_l23 (b[1]);
404  h[2] = bond_lb_l23 (b[2]);
405  h[3] = bond_lb_l23 (b[3]);
406  }
407  else if (lb_alg == BOND_LB_RR)
408  {
409  h[0] = bond_lb_round_robin (bif, b[0], n_slaves);
410  h[1] = bond_lb_round_robin (bif, b[1], n_slaves);
411  h[2] = bond_lb_round_robin (bif, b[2], n_slaves);
412  h[3] = bond_lb_round_robin (bif, b[3], n_slaves);
413  }
414  else if (lb_alg == BOND_LB_BC)
415  {
416  h[0] = bond_lb_broadcast (vm, bif, b[0], n_slaves);
417  h[1] = bond_lb_broadcast (vm, bif, b[1], n_slaves);
418  h[2] = bond_lb_broadcast (vm, bif, b[2], n_slaves);
419  h[3] = bond_lb_broadcast (vm, bif, b[3], n_slaves);
420  }
421  else
422  {
423  ASSERT (0);
424  }
425 
426  n_left -= 4;
427  b += 4;
428  h += 4;
429  }
430 
431  while (n_left > 0)
432  {
434 
435  if (bif->lb == BOND_LB_L2)
436  h[0] = bond_lb_l2 (b[0]);
437  else if (bif->lb == BOND_LB_L34)
438  h[0] = bond_lb_l34 (b[0]);
439  else if (bif->lb == BOND_LB_L23)
440  h[0] = bond_lb_l23 (b[0]);
441  else if (bif->lb == BOND_LB_RR)
442  h[0] = bond_lb_round_robin (bif, b[0], n_slaves);
443  else if (bif->lb == BOND_LB_BC)
444  h[0] = bond_lb_broadcast (vm, bif, b[0], n_slaves);
445  else
446  {
447  ASSERT (0);
448  }
449 
450  n_left -= 1;
451  b += 1;
452  }
453 }
454 
456 bond_hash_to_port (u32 * h, u32 n_left, u32 n_slaves, int use_modulo_shortcut)
457 {
458  u32 mask = n_slaves - 1;
459 
460 #ifdef CLIB_HAVE_VEC256
461  /* only lower 16 bits of hash due to single precision fp arithmetic */
462  u32x8 mask8, sc8u, h8a, h8b;
463  f32x8 sc8f;
464 
465  if (use_modulo_shortcut)
466  {
467  mask8 = u32x8_splat (mask);
468  }
469  else
470  {
471  mask8 = u32x8_splat (0xffff);
472  sc8u = u32x8_splat (n_slaves);
473  sc8f = f32x8_from_u32x8 (sc8u);
474  }
475 
476  while (n_left > 16)
477  {
478  h8a = u32x8_load_unaligned (h) & mask8;
479  h8b = u32x8_load_unaligned (h + 8) & mask8;
480 
481  if (use_modulo_shortcut == 0)
482  {
483  h8a -= sc8u * u32x8_from_f32x8 (f32x8_from_u32x8 (h8a) / sc8f);
484  h8b -= sc8u * u32x8_from_f32x8 (f32x8_from_u32x8 (h8b) / sc8f);
485  }
486 
487  u32x8_store_unaligned (h8a, h);
488  u32x8_store_unaligned (h8b, h + 8);
489  n_left -= 16;
490  h += 16;
491  }
492 #endif
493 
494  while (n_left > 4)
495  {
496  if (use_modulo_shortcut)
497  {
498  h[0] &= mask;
499  h[1] &= mask;
500  h[2] &= mask;
501  h[3] &= mask;
502  }
503  else
504  {
505  h[0] %= n_slaves;
506  h[1] %= n_slaves;
507  h[2] %= n_slaves;
508  h[3] %= n_slaves;
509  }
510  n_left -= 4;
511  h += 4;
512  }
513  while (n_left)
514  {
515  if (use_modulo_shortcut)
516  h[0] &= mask;
517  else
518  h[0] %= n_slaves;
519  n_left -= 1;
520  h += 1;
521  }
522 }
523 
526  u32 * bi, vlib_buffer_t ** b, u32 * data, u32 n_left,
527  int single_sw_if_index)
528 {
529  u32 sw_if_index = data[0];
530  u32 *h = data;
531 
532  while (n_left >= 4)
533  {
534  // Prefetch next iteration
535  if (n_left >= 8)
536  {
537  vlib_buffer_t **pb = b + 4;
538  vlib_prefetch_buffer_header (pb[0], LOAD);
539  vlib_prefetch_buffer_header (pb[1], LOAD);
540  vlib_prefetch_buffer_header (pb[2], LOAD);
541  vlib_prefetch_buffer_header (pb[3], LOAD);
542  }
543 
544  if (PREDICT_FALSE (single_sw_if_index))
545  {
546  vnet_buffer (b[0])->sw_if_index[VLIB_TX] = sw_if_index;
547  vnet_buffer (b[1])->sw_if_index[VLIB_TX] = sw_if_index;
548  vnet_buffer (b[2])->sw_if_index[VLIB_TX] = sw_if_index;
549  vnet_buffer (b[3])->sw_if_index[VLIB_TX] = sw_if_index;
550 
551  bond_tx_add_to_queue (ptd, 0, bi[0]);
552  bond_tx_add_to_queue (ptd, 0, bi[1]);
553  bond_tx_add_to_queue (ptd, 0, bi[2]);
554  bond_tx_add_to_queue (ptd, 0, bi[3]);
555  }
556  else
557  {
558  u32 sw_if_index[4];
559 
560  sw_if_index[0] = *vec_elt_at_index (bif->active_slaves, h[0]);
561  sw_if_index[1] = *vec_elt_at_index (bif->active_slaves, h[1]);
562  sw_if_index[2] = *vec_elt_at_index (bif->active_slaves, h[2]);
563  sw_if_index[3] = *vec_elt_at_index (bif->active_slaves, h[3]);
564 
565  vnet_buffer (b[0])->sw_if_index[VLIB_TX] = sw_if_index[0];
566  vnet_buffer (b[1])->sw_if_index[VLIB_TX] = sw_if_index[1];
567  vnet_buffer (b[2])->sw_if_index[VLIB_TX] = sw_if_index[2];
568  vnet_buffer (b[3])->sw_if_index[VLIB_TX] = sw_if_index[3];
569 
570  bond_tx_add_to_queue (ptd, h[0], bi[0]);
571  bond_tx_add_to_queue (ptd, h[1], bi[1]);
572  bond_tx_add_to_queue (ptd, h[2], bi[2]);
573  bond_tx_add_to_queue (ptd, h[3], bi[3]);
574  }
575 
576  bi += 4;
577  h += 4;
578  b += 4;
579  n_left -= 4;
580  }
581  while (n_left)
582  {
583  if (PREDICT_FALSE (single_sw_if_index))
584  {
585  vnet_buffer (b[0])->sw_if_index[VLIB_TX] = sw_if_index;
586  bond_tx_add_to_queue (ptd, 0, bi[0]);
587  }
588  else
589  {
590  u32 sw_if_index0 = *vec_elt_at_index (bif->active_slaves, h[0]);
591 
592  vnet_buffer (b[0])->sw_if_index[VLIB_TX] = sw_if_index0;
593  bond_tx_add_to_queue (ptd, h[0], bi[0]);
594  }
595 
596  bi += 1;
597  h += 1;
598  b += 1;
599  n_left -= 1;
600  }
601 }
602 
605  vlib_buffer_t ** b, u32 n_left, u32 * h)
606 {
607  uword n_trace = vlib_get_trace_count (vm, node);
608 
609  while (n_trace > 0 && n_left > 0)
610  {
612  ethernet_header_t *eth;
613  u32 next0 = 0;
614 
615  vlib_trace_buffer (vm, node, next0, b[0], 0 /* follow_chain */ );
616  vlib_set_trace_count (vm, node, --n_trace);
617  t0 = vlib_add_trace (vm, node, b[0], sizeof (*t0));
618  eth = vlib_buffer_get_current (b[0]);
619  t0->ethernet = *eth;
620  t0->sw_if_index = vnet_buffer (b[0])->sw_if_index[VLIB_TX];
621  if (!h)
622  {
624  }
625  else
626  {
627  t0->bond_sw_if_index = *vec_elt_at_index (bif->active_slaves, h[0]);
628  h++;
629  }
630  b++;
631  n_left--;
632  }
633 }
634 
636  vlib_node_runtime_t * node,
637  vlib_frame_t * frame)
638 {
639  vnet_interface_output_runtime_t *rund = (void *) node->runtime_data;
640  bond_main_t *bm = &bond_main;
641  u16 thread_index = vm->thread_index;
642  bond_if_t *bif = pool_elt_at_index (bm->interfaces, rund->dev_instance);
643  uword n_slaves;
645  u32 *from = vlib_frame_vector_args (frame);
646  u32 n_left = frame->n_vectors;
647  u32 hashes[VLIB_FRAME_SIZE], *h;
648  vnet_main_t *vnm = vnet_get_main ();
649  bond_per_thread_data_t *ptd = vec_elt_at_index (bm->per_thread_data,
650  thread_index);
651  u32 p, sw_if_index;
652 
653  if (PREDICT_FALSE (bif->admin_up == 0))
654  {
655  vlib_buffer_free (vm, vlib_frame_vector_args (frame), frame->n_vectors);
658  thread_index, bif->sw_if_index,
659  frame->n_vectors);
660  vlib_error_count (vm, node->node_index, BOND_TX_ERROR_IF_DOWN,
661  frame->n_vectors);
662  return frame->n_vectors;
663  }
664 
665  n_slaves = vec_len (bif->active_slaves);
666  if (PREDICT_FALSE (n_slaves == 0))
667  {
668  vlib_buffer_free (vm, vlib_frame_vector_args (frame), frame->n_vectors);
671  thread_index, bif->sw_if_index,
672  frame->n_vectors);
673  vlib_error_count (vm, node->node_index, BOND_TX_ERROR_NO_SLAVE,
674  frame->n_vectors);
675  return frame->n_vectors;
676  }
677 
678  vlib_get_buffers (vm, from, bufs, n_left);
679 
680  /* active-backup mode, ship everything to first sw if index */
681  if ((bif->lb == BOND_LB_AB) || PREDICT_FALSE (n_slaves == 1))
682  {
683  sw_if_index = *vec_elt_at_index (bif->active_slaves, 0);
684 
685  bond_tx_trace (vm, node, bif, bufs, frame->n_vectors, 0);
686  bond_update_sw_if_index (ptd, bif, from, bufs, &sw_if_index, n_left,
687  /* single_sw_if_index */ 1);
688  goto done;
689  }
690 
691  if (bif->lb == BOND_LB_BC)
692  {
693  sw_if_index = *vec_elt_at_index (bif->active_slaves, 0);
694 
695  bond_tx_inline (vm, bif, bufs, hashes, n_left, n_slaves, BOND_LB_BC);
696  bond_tx_trace (vm, node, bif, bufs, frame->n_vectors, 0);
697  bond_update_sw_if_index (ptd, bif, from, bufs, &sw_if_index, n_left,
698  /* single_sw_if_index */ 1);
699  goto done;
700  }
701 
702  /* if have at least one slave on local numa node, only slaves on local numa
703  node will transmit pkts when bif->local_numa_only is enabled */
704  if (bif->n_numa_slaves >= 1)
705  n_slaves = bif->n_numa_slaves;
706 
707  if (bif->lb == BOND_LB_L2)
708  bond_tx_inline (vm, bif, bufs, hashes, n_left, n_slaves, BOND_LB_L2);
709  else if (bif->lb == BOND_LB_L34)
710  bond_tx_inline (vm, bif, bufs, hashes, n_left, n_slaves, BOND_LB_L34);
711  else if (bif->lb == BOND_LB_L23)
712  bond_tx_inline (vm, bif, bufs, hashes, n_left, n_slaves, BOND_LB_L23);
713  else if (bif->lb == BOND_LB_RR)
714  bond_tx_inline (vm, bif, bufs, hashes, n_left, n_slaves, BOND_LB_RR);
715  else
716  ASSERT (0);
717 
718  /* calculate port out of hash */
719  h = hashes;
720  if (BOND_MODULO_SHORTCUT (n_slaves))
721  bond_hash_to_port (h, frame->n_vectors, n_slaves, 1);
722  else
723  bond_hash_to_port (h, frame->n_vectors, n_slaves, 0);
724 
725  bond_tx_trace (vm, node, bif, bufs, frame->n_vectors, h);
726 
727  bond_update_sw_if_index (ptd, bif, from, bufs, hashes, frame->n_vectors,
728  /* single_sw_if_index */ 0);
729 
730 done:
731  for (p = 0; p < n_slaves; p++)
732  {
733  vlib_frame_t *f;
734  u32 *to_next;
735 
736  sw_if_index = *vec_elt_at_index (bif->active_slaves, p);
737  if (PREDICT_TRUE (ptd->per_port_queue[p].n_buffers))
738  {
739  f = vnet_get_frame_to_sw_interface (vnm, sw_if_index);
740  f->n_vectors = ptd->per_port_queue[p].n_buffers;
741  to_next = vlib_frame_vector_args (f);
742  clib_memcpy_fast (to_next, ptd->per_port_queue[p].buffers,
743  f->n_vectors * sizeof (u32));
744  vnet_put_frame_to_sw_interface (vnm, sw_if_index, f);
745  ptd->per_port_queue[p].n_buffers = 0;
746  }
747  }
748  return frame->n_vectors;
749 }
750 
751 static walk_rc_t
753  void *arg)
754 {
755  bond_main_t *bm = &bond_main;
756 
757  send_ip4_garp (bm->vlib_main, sw_if_index);
758  send_ip6_na (bm->vlib_main, sw_if_index);
759 
760  return (WALK_CONTINUE);
761 }
762 
763 static uword
765 {
766  vnet_main_t *vnm = vnet_get_main ();
767  uword event_type, *event_data = 0;
768 
769  while (1)
770  {
771  u32 i;
773 
775  event_type = vlib_process_get_events (vm, &event_data);
776  ASSERT (event_type == BOND_SEND_GARP_NA);
777  for (i = 0; i < vec_len (event_data); i++)
778  {
779  hw_if_index = event_data[i];
780  /* walk hw interface to process all subinterfaces */
781  vnet_hw_interface_walk_sw (vnm, hw_if_index,
783  }
784  vec_reset_length (event_data);
785  }
786  return 0;
787 }
788 
789 /* *INDENT-OFF* */
791  .function = bond_process,
792  .type = VLIB_NODE_TYPE_PROCESS,
793  .name = "bond-process",
794 };
795 /* *INDENT-ON* */
796 
797 /* *INDENT-OFF* */
799  .name = "bond",
800  .tx_function_n_errors = BOND_TX_N_ERROR,
801  .tx_function_error_strings = bond_tx_error_strings,
802  .format_device_name = format_bond_interface_name,
803  .set_l2_mode_function = bond_set_l2_mode_function,
804  .admin_up_down_function = bond_interface_admin_up_down,
805  .subif_add_del_function = bond_subif_add_del_function,
806  .format_tx_trace = format_bond_tx_trace,
807 };
808 
809 /* *INDENT-ON* */
810 
811 /*
812  * fd.io coding-style-patch-verification: ON
813  *
814  * Local Variables:
815  * eval: (c-set-style "gnu")
816  * End:
817  */
VNET_DEVICE_CLASS_TX_FN() bond_dev_class(vlib_main_t *vm, vlib_node_runtime_t *node, vlib_frame_t *frame)
Definition: device.c:635
u32 hw_if_index
Definition: node.h:176
u32 flags
Definition: vhost_user.h:141
vlib_node_registration_t bond_process_node
(constructor) VLIB_REGISTER_NODE (bond_process_node)
Definition: device.c:790
#define CLIB_UNUSED(x)
Definition: clib.h:82
static __clib_unused clib_error_t * bond_set_l2_mode_function(vnet_main_t *vnm, struct vnet_hw_interface_t *bif_hw, i32 l2_if_adjust)
Definition: device.c:82
static u32 vlib_get_trace_count(vlib_main_t *vm, vlib_node_runtime_t *rt)
Definition: trace_funcs.h:171
a
Definition: bitmap.h:538
static void vlib_buffer_free(vlib_main_t *vm, u32 *buffers, u32 n_buffers)
Free buffers Frees the entire buffer chain for each buffer.
Definition: buffer_funcs.h:865
static uword * vlib_process_wait_for_event(vlib_main_t *vm)
Definition: node_funcs.h:593
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)
u8 lb
Definition: node.h:160
vnet_interface_main_t interface_main
Definition: vnet.h:56
#define PREDICT_TRUE(x)
Definition: clib.h:112
unsigned long u64
Definition: types.h:89
u32 buffers[VLIB_FRAME_SIZE]
Definition: node.h:147
static void vlib_error_count(vlib_main_t *vm, uword node_index, uword counter, uword increment)
Definition: error_funcs.h:57
#define clib_memcpy_fast(a, b, c)
Definition: string.h:81
static bond_if_t * bond_get_master_by_sw_if_index(u32 sw_if_index)
Definition: node.h:481
void vnet_hw_interface_walk_sw(vnet_main_t *vnm, u32 hw_if_index, vnet_hw_sw_interface_walk_t fn, void *ctx)
Walk the SW interfaces on a HW interface - this is the super interface and any sub-interfaces.
Definition: interface.c:1041
u8 src_address[6]
Definition: packet.h:56
static vnet_hw_interface_t * vnet_get_hw_interface(vnet_main_t *vnm, u32 hw_if_index)
u32 thread_index
Definition: main.h:197
vl_api_address_t src
Definition: gre.api:51
int i
bond_main_t bond_main
Definition: node.c:25
u8 * format(u8 *s, const char *fmt,...)
Definition: format.c:424
static void vlib_increment_simple_counter(vlib_simple_counter_main_t *cm, u32 thread_index, u32 index, u64 increment)
Increment a simple counter.
Definition: counter.h:78
u8 data[128]
Definition: ipsec.api:249
static_always_inline u32 lb_hash_hash_2_tuples(u64 k0, u32 k1)
Definition: lb_hash_hash.h:54
void send_ip6_na(vlib_main_t *vm, u32 sw_if_index)
#define BOND_MODULO_SHORTCUT(a)
Definition: node.h:34
u32 id
Definition: node.h:174
struct _tcp_header tcp_header_t
ip6_address_t src_address
Definition: ip6_packet.h:383
unsigned char u8
Definition: types.h:56
bond_per_thread_data_t * per_thread_data
Definition: node.h:369
static vlib_buffer_t * vlib_buffer_copy(vlib_main_t *vm, vlib_buffer_t *b)
Definition: buffer_funcs.h:964
uword as_uword[16/sizeof(uword)]
Definition: ip6_packet.h:52
#define vec_reset_length(v)
Reset vector length to zero NULL-pointer tolerant.
static void vlib_trace_buffer(vlib_main_t *vm, vlib_node_runtime_t *r, u32 next_index, vlib_buffer_t *b, int follow_chain)
Definition: trace_funcs.h:124
enum walk_rc_t_ walk_rc_t
Walk return code.
#define static_always_inline
Definition: clib.h:99
u8 * format_ethernet_address(u8 *s, va_list *args)
Definition: format.c:44
vl_api_interface_index_t sw_if_index
Definition: gre.api:50
static uword vlib_process_get_events(vlib_main_t *vm, uword **data_vector)
Return the first event type which has occurred and a vector of per-event data of that type...
Definition: node_funcs.h:516
u8 dst_address[6]
Definition: packet.h:55
#define vlib_prefetch_buffer_header(b, type)
Prefetch buffer metadata.
Definition: buffer.h:203
#define vec_elt_at_index(v, i)
Get vector value at index i checking that i is in bounds.
vlib_main_t * vlib_main
Definition: node.h:359
static_always_inline u32 bond_lb_l23(vlib_buffer_t *b0)
Definition: device.c:214
#define VNET_DEVICE_CLASS_TX_FN(devclass)
Definition: interface.h:298
unsigned int u32
Definition: types.h:88
u32 lb_rr_last_index
Definition: node.h:168
#define VLIB_FRAME_SIZE
Definition: node.h:376
static u32 vlib_get_buffer_index(vlib_main_t *vm, void *p)
Translate buffer pointer into buffer index.
Definition: buffer_funcs.h:257
void ethernet_set_rx_redirect(vnet_main_t *vnm, vnet_hw_interface_t *hi, u32 enable)
Definition: node.c:1939
#define pool_elt_at_index(p, i)
Returns pointer to element at given index.
Definition: pool.h:514
u8 admin_up
Definition: node.h:158
static_always_inline u16 * bond_locate_ethertype(ethernet_header_t *eth)
Definition: device.c:191
unsigned short u16
Definition: types.h:57
static_always_inline u32 bond_lb_l2(vlib_buffer_t *b0)
Definition: device.c:179
static void * vlib_buffer_get_current(vlib_buffer_t *b)
Get pointer to current data to process.
Definition: buffer.h:229
#define foreach_bond_tx_error
Definition: device.c:29
ip4_address_pair_t address_pair
Definition: ip4_packet.h:172
#define PREDICT_FALSE(x)
Definition: clib.h:111
vnet_main_t vnet_main
Definition: misc.c:43
u16 port
Definition: punt.api:40
vlib_simple_counter_main_t * sw_if_counters
Definition: interface.h:841
static char * bond_tx_error_strings[]
Definition: device.c:42
vl_api_address_t dst
Definition: gre.api:52
bond_if_t * interfaces
Definition: node.h:347
void send_ip4_garp(vlib_main_t *vm, u32 sw_if_index)
Definition: arp.c:2997
#define VLIB_REGISTER_NODE(x,...)
Definition: node.h:169
u32 * slaves
Definition: node.h:180
svmdb_client_t * c
u16 n_vectors
Definition: node.h:395
static void vnet_put_frame_to_sw_interface(vnet_main_t *vnm, u32 sw_if_index, vlib_frame_t *f)
#define CLIB_PREFETCH(addr, size, type)
Definition: cache.h:80
vlib_main_t * vm
Definition: buffer.c:312
ethernet_header_t ethernet
Definition: node.h:375
#define ETHERNET_INTERFACE_FLAG_ACCEPT_ALL
Definition: ethernet.h:141
static_always_inline u32 bond_lb_broadcast(vlib_main_t *vm, bond_if_t *bif, vlib_buffer_t *b0, uword n_slaves)
Definition: device.c:153
static u8 * format_bond_tx_trace(u8 *s, va_list *args)
Definition: device.c:49
signed int i32
Definition: types.h:77
static_always_inline u32 bond_lb_l34(vlib_buffer_t *b0)
Definition: device.c:274
#define ASSERT(truth)
static_always_inline void bond_hash_to_port(u32 *h, u32 n_left, u32 n_slaves, int use_modulo_shortcut)
Definition: device.c:456
static walk_rc_t bond_active_interface_switch_cb(vnet_main_t *vnm, u32 sw_if_index, void *arg)
Definition: device.c:752
static_always_inline int ethernet_frame_is_tagged(u16 type)
Definition: ethernet.h:78
VNET_DEVICE_CLASS(bond_dev_class)
static_always_inline void bond_tx_trace(vlib_main_t *vm, vlib_node_runtime_t *node, bond_if_t *bif, vlib_buffer_t **b, u32 n_left, u32 *h)
Definition: device.c:604
u32 * active_slaves
Definition: node.h:183
#define clib_mem_unaligned(pointer, type)
Definition: types.h:155
static vlib_frame_t * vnet_get_frame_to_sw_interface(vnet_main_t *vnm, u32 sw_if_index)
static_always_inline void bond_tx_add_to_queue(bond_per_thread_data_t *ptd, u32 port, u32 bi)
Definition: device.c:146
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
static_always_inline u32x8 u32x8_from_f32x8(f32x8 v)
Definition: vector_avx2.h:196
Definition: defs.h:47
u8 * format_bond_interface_name(u8 *s, va_list *args)
Definition: device.c:69
static_always_inline void bond_update_sw_if_index(bond_per_thread_data_t *ptd, bond_if_t *bif, u32 *bi, vlib_buffer_t **b, u32 *data, u32 n_left, int single_sw_if_index)
Definition: device.c:525
bond_tx_error_t
Definition: device.c:34
#define vec_len(v)
Number of elements in vector (rvalue-only, NULL tolerant)
clib_error_t * vnet_hw_interface_set_flags(vnet_main_t *vnm, u32 hw_if_index, vnet_hw_interface_flags_t flags)
Definition: interface.c:501
#define VLIB_BUFFER_TRACE_TRAJECTORY_INIT(b)
Definition: buffer.h:489
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 vnet_buffer(b)
Definition: buffer.h:361
static __clib_unused clib_error_t * bond_subif_add_del_function(vnet_main_t *vnm, u32 hw_if_index, struct vnet_sw_interface_t *st, int is_add)
Definition: device.c:123
#define vec_foreach(var, vec)
Vector iterator.
static_always_inline u32 lb_hash_hash(u64 k0, u64 k1, u64 k2, u64 k3, u64 k4)
Definition: lb_hash_hash.h:46
u8 ip_version_and_header_length
Definition: ip4_packet.h:138
static void vlib_set_trace_count(vlib_main_t *vm, vlib_node_runtime_t *rt, u32 count)
Definition: trace_funcs.h:187
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
u32 bond_sw_if_index
Definition: node.h:377
static_always_inline u32 bond_lb_round_robin(bond_if_t *bif, vlib_buffer_t *b0, uword n_slaves)
Definition: device.c:350
#define CLIB_CACHE_LINE_BYTES
Definition: cache.h:59
static clib_error_t * bond_interface_admin_up_down(vnet_main_t *vnm, u32 hw_if_index, u32 flags)
Definition: device.c:131
static_always_inline f32x8 f32x8_from_u32x8(u32x8 v)
Definition: vector_avx2.h:190
ip6_address_t dst_address
Definition: ip6_packet.h:383
bond_per_port_queue_t * per_port_queue
Definition: node.h:153
static_always_inline void bond_tx_inline(vlib_main_t *vm, bond_if_t *bif, vlib_buffer_t **b, u32 *h, u32 n_left, uword n_slaves, u32 lb_alg)
Definition: device.c:360
u32 ethernet_set_flags(vnet_main_t *vnm, u32 hw_if_index, u32 flags)
Definition: interface.c:372
static uword bond_process(vlib_main_t *vm, vlib_node_runtime_t *rt, vlib_frame_t *f)
Definition: device.c:764