FD.io VPP  v17.01.1-3-gc6833f8
Vector Packet Processing
device.c
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1 /*
2  * Copyright (c) 2015 Cisco and/or its affiliates.
3  * Licensed under the Apache License, Version 2.0 (the "License");
4  * you may not use this file except in compliance with the License.
5  * You may obtain a copy of the License at:
6  *
7  * http://www.apache.org/licenses/LICENSE-2.0
8  *
9  * Unless required by applicable law or agreed to in writing, software
10  * distributed under the License is distributed on an "AS IS" BASIS,
11  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12  * See the License for the specific language governing permissions and
13  * limitations under the License.
14  */
15 #include <vnet/vnet.h>
16 #include <vppinfra/vec.h>
17 #include <vppinfra/format.h>
18 #include <vlib/unix/cj.h>
19 #include <assert.h>
20 
21 #include <vnet/ethernet/ethernet.h>
22 #include <vnet/devices/dpdk/dpdk.h>
23 
24 #include "dpdk_priv.h"
25 #include <vppinfra/error.h>
26 
27 #define foreach_dpdk_tx_func_error \
28  _(BAD_RETVAL, "DPDK tx function returned an error") \
29  _(RING_FULL, "Tx packet drops (ring full)") \
30  _(PKT_DROP, "Tx packet drops (dpdk tx failure)") \
31  _(REPL_FAIL, "Tx packet drops (replication failure)")
32 
33 typedef enum
34 {
35 #define _(f,s) DPDK_TX_FUNC_ERROR_##f,
37 #undef _
40 
41 static char *dpdk_tx_func_error_strings[] = {
42 #define _(n,s) s,
44 #undef _
45 };
46 
49 {
50  int error;
51  dpdk_main_t *dm = &dpdk_main;
53 
54  error = rte_eth_dev_default_mac_addr_set (xd->device_index,
55  (struct ether_addr *) address);
56 
57  if (error)
58  {
59  return clib_error_return (0, "mac address set failed: %d", error);
60  }
61  else
62  {
63  return NULL;
64  }
65 }
66 
69  struct ether_addr mc_addr_vec[], int naddr)
70 {
71  int error;
72  dpdk_main_t *dm = &dpdk_main;
74 
75  error = rte_eth_dev_set_mc_addr_list (xd->device_index, mc_addr_vec, naddr);
76 
77  if (error)
78  {
79  return clib_error_return (0, "mc addr list failed: %d", error);
80  }
81  else
82  {
83  return NULL;
84  }
85 }
86 
87 struct rte_mbuf *
89 {
90  vlib_main_t *vm = vlib_get_main ();
92  struct rte_mbuf **mbufs = 0, *s, *d;
93  u8 nb_segs;
94  unsigned socket_id = rte_socket_id ();
95  int i;
96 
97  ASSERT (bm->pktmbuf_pools[socket_id]);
99  nb_segs = s->nb_segs;
100  vec_validate (mbufs, nb_segs - 1);
101 
102  if (rte_pktmbuf_alloc_bulk (bm->pktmbuf_pools[socket_id], mbufs, nb_segs))
103  {
104  vec_free (mbufs);
105  return 0;
106  }
107 
108  d = mbufs[0];
109  d->nb_segs = s->nb_segs;
110  d->data_len = s->data_len;
111  d->pkt_len = s->pkt_len;
112  d->data_off = s->data_off;
113  clib_memcpy (d->buf_addr, s->buf_addr, RTE_PKTMBUF_HEADROOM + s->data_len);
114 
115  for (i = 1; i < nb_segs; i++)
116  {
117  d->next = mbufs[i];
118  d = mbufs[i];
119  s = s->next;
120  d->data_len = s->data_len;
121  clib_memcpy (d->buf_addr, s->buf_addr,
122  RTE_PKTMBUF_HEADROOM + s->data_len);
123  }
124 
125  d = mbufs[0];
126  vec_free (mbufs);
127  return d;
128 }
129 
130 static void
132  vlib_node_runtime_t * node,
133  dpdk_device_t * xd,
134  u16 queue_id, u32 buffer_index, vlib_buffer_t * buffer)
135 {
136  vlib_main_t *vm = vlib_get_main ();
138  struct rte_mbuf *mb;
139 
140  mb = rte_mbuf_from_vlib_buffer (buffer);
141 
142  t0 = vlib_add_trace (vm, node, buffer, sizeof (t0[0]));
143  t0->queue_index = queue_id;
144  t0->device_index = xd->device_index;
145  t0->buffer_index = buffer_index;
146  clib_memcpy (&t0->mb, mb, sizeof (t0->mb));
147  clib_memcpy (&t0->buffer, buffer,
148  sizeof (buffer[0]) - sizeof (buffer->pre_data));
149  clib_memcpy (t0->buffer.pre_data, buffer->data + buffer->current_data,
150  sizeof (t0->buffer.pre_data));
151 }
152 
155  int maybe_multiseg)
156 {
157  struct rte_mbuf *mb, *first_mb, *last_mb;
158 
159  /* buffer is coming from non-dpdk source so we need to init
160  rte_mbuf header */
162  {
163  vlib_buffer_t *b2 = b;
164  last_mb = mb = rte_mbuf_from_vlib_buffer (b2);
165  rte_pktmbuf_reset (mb);
166  while (maybe_multiseg && (b2->flags & VLIB_BUFFER_NEXT_PRESENT))
167  {
168  b2 = vlib_get_buffer (vm, b2->next_buffer);
169  mb = rte_mbuf_from_vlib_buffer (b2);
170  last_mb->next = mb;
171  last_mb = mb;
172  rte_pktmbuf_reset (mb);
173  }
174  }
175 
176  first_mb = mb = rte_mbuf_from_vlib_buffer (b);
177  first_mb->nb_segs = 1;
178  mb->data_len = b->current_length;
179  mb->pkt_len = maybe_multiseg ? vlib_buffer_length_in_chain (vm, b) :
180  b->current_length;
181  mb->data_off = VLIB_BUFFER_PRE_DATA_SIZE + b->current_data;
182 
183  while (maybe_multiseg && (b->flags & VLIB_BUFFER_NEXT_PRESENT))
184  {
185  b = vlib_get_buffer (vm, b->next_buffer);
186  mb = rte_mbuf_from_vlib_buffer (b);
187  mb->data_len = b->current_length;
188  mb->pkt_len = b->current_length;
189  mb->data_off = VLIB_BUFFER_PRE_DATA_SIZE + b->current_data;
190  first_mb->nb_segs++;
191  }
192 }
193 
194 /*
195  * This function calls the dpdk's tx_burst function to transmit the packets
196  * on the tx_vector. It manages a lock per-device if the device does not
197  * support multiple queues. It returns the number of packets untransmitted
198  * on the tx_vector. If all packets are transmitted (the normal case), the
199  * function returns 0.
200  *
201  * The function assumes there is at least one packet on the tx_vector.
202  */
205  dpdk_device_t * xd,
206  struct rte_mbuf **tx_vector)
207 {
208  dpdk_main_t *dm = &dpdk_main;
209  u32 n_packets;
210  u32 tx_head;
211  u32 tx_tail;
212  u32 n_retry;
213  int rv;
214  int queue_id;
215  tx_ring_hdr_t *ring;
216 
217  ring = vec_header (tx_vector, sizeof (*ring));
218 
219  n_packets = ring->tx_head - ring->tx_tail;
220 
221  tx_head = ring->tx_head % xd->nb_tx_desc;
222 
223  /*
224  * Ensure rte_eth_tx_burst is not called with 0 packets, which can lead to
225  * unpredictable results.
226  */
227  ASSERT (n_packets > 0);
228 
229  /*
230  * Check for tx_vector overflow. If this fails it is a system configuration
231  * error. The ring should be sized big enough to handle the largest un-flowed
232  * off burst from a traffic manager. A larger size also helps performance
233  * a bit because it decreases the probability of having to issue two tx_burst
234  * calls due to a ring wrap.
235  */
236  ASSERT (n_packets < xd->nb_tx_desc);
237  ASSERT (ring->tx_tail == 0);
238 
239  n_retry = 16;
240  queue_id = vm->cpu_index;
241 
242  do
243  {
244  /* start the burst at the tail */
245  tx_tail = ring->tx_tail % xd->nb_tx_desc;
246 
247  /*
248  * This device only supports one TX queue,
249  * and we're running multi-threaded...
250  */
251  if (PREDICT_FALSE (xd->lockp != 0))
252  {
253  queue_id = queue_id % xd->tx_q_used;
254  while (__sync_lock_test_and_set (xd->lockp[queue_id], 1))
255  /* zzzz */
256  queue_id = (queue_id + 1) % xd->tx_q_used;
257  }
258 
259  if (PREDICT_FALSE (xd->flags & DPDK_DEVICE_FLAG_HQOS)) /* HQoS ON */
260  {
261  /* no wrap, transmit in one burst */
263  &xd->hqos_wt[vm->cpu_index];
264 
265  ASSERT (hqos->swq != NULL);
266 
268  &tx_vector[tx_tail], tx_head - tx_tail);
269  rv = rte_ring_sp_enqueue_burst (hqos->swq,
270  (void **) &tx_vector[tx_tail],
271  (uint16_t) (tx_head - tx_tail));
272  }
273  else if (PREDICT_TRUE (xd->flags & DPDK_DEVICE_FLAG_PMD))
274  {
275  /* no wrap, transmit in one burst */
276  rv = rte_eth_tx_burst (xd->device_index,
277  (uint16_t) queue_id,
278  &tx_vector[tx_tail],
279  (uint16_t) (tx_head - tx_tail));
280  }
281  else
282  {
283  ASSERT (0);
284  rv = 0;
285  }
286 
287  if (PREDICT_FALSE (xd->lockp != 0))
288  *xd->lockp[queue_id] = 0;
289 
290  if (PREDICT_FALSE (rv < 0))
291  {
292  // emit non-fatal message, bump counter
293  vnet_main_t *vnm = dm->vnet_main;
295  u32 node_index;
296 
297  node_index = vec_elt_at_index (im->hw_interfaces,
298  xd->vlib_hw_if_index)->tx_node_index;
299 
300  vlib_error_count (vm, node_index, DPDK_TX_FUNC_ERROR_BAD_RETVAL, 1);
301  clib_warning ("rte_eth_tx_burst[%d]: error %d", xd->device_index,
302  rv);
303  return n_packets; // untransmitted packets
304  }
305  ring->tx_tail += (u16) rv;
306  n_packets -= (uint16_t) rv;
307  }
308  while (rv && n_packets && (n_retry > 0));
309 
310  return n_packets;
311 }
312 
315 {
316  vlib_buffer_t *b;
317  struct rte_mbuf *mb;
318  b = vlib_get_buffer (vm, bi);
319  mb = rte_mbuf_from_vlib_buffer (b);
322 }
323 
326  vlib_buffer_t * b, u32 bi, struct rte_mbuf **mbp)
327 {
328  dpdk_main_t *dm = &dpdk_main;
329  u32 my_cpu = vm->cpu_index;
330  struct rte_mbuf *mb_new;
331 
332  if (PREDICT_FALSE (b->flags & VLIB_BUFFER_RECYCLE) == 0)
333  return;
334 
335  mb_new = dpdk_replicate_packet_mb (b);
336  if (PREDICT_FALSE (mb_new == 0))
337  {
338  vlib_error_count (vm, node->node_index,
339  DPDK_TX_FUNC_ERROR_REPL_FAIL, 1);
341  }
342  else
343  *mbp = mb_new;
344 
345  vec_add1 (dm->recycle[my_cpu], bi);
346 }
347 
348 /*
349  * Transmits the packets on the frame to the interface associated with the
350  * node. It first copies packets on the frame to a tx_vector containing the
351  * rte_mbuf pointers. It then passes this vector to tx_burst_vector_internal
352  * which calls the dpdk tx_burst function.
353  */
354 static uword
356  vlib_node_runtime_t * node, vlib_frame_t * f)
357 {
358  dpdk_main_t *dm = &dpdk_main;
359  vnet_interface_output_runtime_t *rd = (void *) node->runtime_data;
361  u32 n_packets = f->n_vectors;
362  u32 n_left;
363  u32 *from;
364  struct rte_mbuf **tx_vector;
365  u16 i;
366  u16 nb_tx_desc = xd->nb_tx_desc;
367  int queue_id;
368  u32 my_cpu;
369  u32 tx_pkts = 0;
370  tx_ring_hdr_t *ring;
371  u32 n_on_ring;
372 
373  my_cpu = vm->cpu_index;
374 
375  queue_id = my_cpu;
376 
377  tx_vector = xd->tx_vectors[queue_id];
378  ring = vec_header (tx_vector, sizeof (*ring));
379 
380  n_on_ring = ring->tx_head - ring->tx_tail;
381  from = vlib_frame_vector_args (f);
382 
383  ASSERT (n_packets <= VLIB_FRAME_SIZE);
384 
385  if (PREDICT_FALSE (n_on_ring + n_packets > nb_tx_desc))
386  {
387  /*
388  * Overflowing the ring should never happen.
389  * If it does then drop the whole frame.
390  */
391  vlib_error_count (vm, node->node_index, DPDK_TX_FUNC_ERROR_RING_FULL,
392  n_packets);
393 
394  while (n_packets--)
395  {
396  u32 bi0 = from[n_packets];
397  vlib_buffer_t *b0 = vlib_get_buffer (vm, bi0);
398  struct rte_mbuf *mb0 = rte_mbuf_from_vlib_buffer (b0);
399  rte_pktmbuf_free (mb0);
400  }
401  return n_on_ring;
402  }
403 
404  if (PREDICT_FALSE (dm->tx_pcap_enable))
405  {
406  n_left = n_packets;
407  while (n_left > 0)
408  {
409  u32 bi0 = from[0];
410  vlib_buffer_t *b0 = vlib_get_buffer (vm, bi0);
411  if (dm->pcap_sw_if_index == 0 ||
412  dm->pcap_sw_if_index == vnet_buffer (b0)->sw_if_index[VLIB_TX])
413  pcap_add_buffer (&dm->pcap_main, vm, bi0, 512);
414  from++;
415  n_left--;
416  }
417  }
418 
419  from = vlib_frame_vector_args (f);
420  n_left = n_packets;
421  i = ring->tx_head % nb_tx_desc;
422 
423  while (n_left >= 8)
424  {
425  u32 bi0, bi1, bi2, bi3;
426  struct rte_mbuf *mb0, *mb1, *mb2, *mb3;
427  vlib_buffer_t *b0, *b1, *b2, *b3;
428  u32 or_flags;
429 
430  dpdk_prefetch_buffer_by_index (vm, from[4]);
431  dpdk_prefetch_buffer_by_index (vm, from[5]);
432  dpdk_prefetch_buffer_by_index (vm, from[6]);
433  dpdk_prefetch_buffer_by_index (vm, from[7]);
434 
435  bi0 = from[0];
436  bi1 = from[1];
437  bi2 = from[2];
438  bi3 = from[3];
439  from += 4;
440 
441  b0 = vlib_get_buffer (vm, bi0);
442  b1 = vlib_get_buffer (vm, bi1);
443  b2 = vlib_get_buffer (vm, bi2);
444  b3 = vlib_get_buffer (vm, bi3);
445 
446  or_flags = b0->flags | b1->flags | b2->flags | b3->flags;
447 
448  if (or_flags & VLIB_BUFFER_NEXT_PRESENT)
449  {
450  dpdk_validate_rte_mbuf (vm, b0, 1);
451  dpdk_validate_rte_mbuf (vm, b1, 1);
452  dpdk_validate_rte_mbuf (vm, b2, 1);
453  dpdk_validate_rte_mbuf (vm, b3, 1);
454  }
455  else
456  {
457  dpdk_validate_rte_mbuf (vm, b0, 0);
458  dpdk_validate_rte_mbuf (vm, b1, 0);
459  dpdk_validate_rte_mbuf (vm, b2, 0);
460  dpdk_validate_rte_mbuf (vm, b3, 0);
461  }
462 
463  mb0 = rte_mbuf_from_vlib_buffer (b0);
464  mb1 = rte_mbuf_from_vlib_buffer (b1);
465  mb2 = rte_mbuf_from_vlib_buffer (b2);
466  mb3 = rte_mbuf_from_vlib_buffer (b3);
467 
468  if (PREDICT_FALSE (or_flags & VLIB_BUFFER_RECYCLE))
469  {
470  dpdk_buffer_recycle (vm, node, b0, bi0, &mb0);
471  dpdk_buffer_recycle (vm, node, b1, bi1, &mb1);
472  dpdk_buffer_recycle (vm, node, b2, bi2, &mb2);
473  dpdk_buffer_recycle (vm, node, b3, bi3, &mb3);
474 
475  /* dont enqueue packets if replication failed as they must
476  be sent back to recycle */
477  if (PREDICT_TRUE ((b0->flags & VLIB_BUFFER_REPL_FAIL) == 0))
478  tx_vector[i++ % nb_tx_desc] = mb0;
479  if (PREDICT_TRUE ((b1->flags & VLIB_BUFFER_REPL_FAIL) == 0))
480  tx_vector[i++ % nb_tx_desc] = mb1;
481  if (PREDICT_TRUE ((b2->flags & VLIB_BUFFER_REPL_FAIL) == 0))
482  tx_vector[i++ % nb_tx_desc] = mb2;
483  if (PREDICT_TRUE ((b3->flags & VLIB_BUFFER_REPL_FAIL) == 0))
484  tx_vector[i++ % nb_tx_desc] = mb3;
485  }
486  else
487  {
488  if (PREDICT_FALSE (i + 3 >= nb_tx_desc))
489  {
490  tx_vector[i++ % nb_tx_desc] = mb0;
491  tx_vector[i++ % nb_tx_desc] = mb1;
492  tx_vector[i++ % nb_tx_desc] = mb2;
493  tx_vector[i++ % nb_tx_desc] = mb3;
494  i %= nb_tx_desc;
495  }
496  else
497  {
498  tx_vector[i++] = mb0;
499  tx_vector[i++] = mb1;
500  tx_vector[i++] = mb2;
501  tx_vector[i++] = mb3;
502  }
503  }
504 
505 
507  {
508  if (b0->flags & VLIB_BUFFER_IS_TRACED)
509  dpdk_tx_trace_buffer (dm, node, xd, queue_id, bi0, b0);
510  if (b1->flags & VLIB_BUFFER_IS_TRACED)
511  dpdk_tx_trace_buffer (dm, node, xd, queue_id, bi1, b1);
512  if (b2->flags & VLIB_BUFFER_IS_TRACED)
513  dpdk_tx_trace_buffer (dm, node, xd, queue_id, bi2, b2);
514  if (b3->flags & VLIB_BUFFER_IS_TRACED)
515  dpdk_tx_trace_buffer (dm, node, xd, queue_id, bi3, b3);
516  }
517 
518  n_left -= 4;
519  }
520  while (n_left > 0)
521  {
522  u32 bi0;
523  struct rte_mbuf *mb0;
524  vlib_buffer_t *b0;
525 
526  bi0 = from[0];
527  from++;
528 
529  b0 = vlib_get_buffer (vm, bi0);
530 
531  dpdk_validate_rte_mbuf (vm, b0, 1);
532 
533  mb0 = rte_mbuf_from_vlib_buffer (b0);
534  dpdk_buffer_recycle (vm, node, b0, bi0, &mb0);
535 
537  if (b0->flags & VLIB_BUFFER_IS_TRACED)
538  dpdk_tx_trace_buffer (dm, node, xd, queue_id, bi0, b0);
539 
540  if (PREDICT_TRUE ((b0->flags & VLIB_BUFFER_REPL_FAIL) == 0))
541  {
542  tx_vector[i % nb_tx_desc] = mb0;
543  i++;
544  }
545  n_left--;
546  }
547 
548  /* account for additional packets in the ring */
549  ring->tx_head += n_packets;
550  n_on_ring = ring->tx_head - ring->tx_tail;
551 
552  /* transmit as many packets as possible */
553  n_packets = tx_burst_vector_internal (vm, xd, tx_vector);
554 
555  /*
556  * tx_pkts is the number of packets successfully transmitted
557  * This is the number originally on ring minus the number remaining on ring
558  */
559  tx_pkts = n_on_ring - n_packets;
560 
561  {
562  /* If there is no callback then drop any non-transmitted packets */
563  if (PREDICT_FALSE (n_packets))
564  {
566  vnet_main_t *vnm = vnet_get_main ();
567 
570 
571  vlib_increment_simple_counter (cm, my_cpu, xd->vlib_sw_if_index,
572  n_packets);
573 
574  vlib_error_count (vm, node->node_index, DPDK_TX_FUNC_ERROR_PKT_DROP,
575  n_packets);
576 
577  while (n_packets--)
578  rte_pktmbuf_free (tx_vector[ring->tx_tail + n_packets]);
579  }
580 
581  /* Reset head/tail to avoid unnecessary wrap */
582  ring->tx_head = 0;
583  ring->tx_tail = 0;
584  }
585 
586  /* Recycle replicated buffers */
587  if (PREDICT_FALSE (vec_len (dm->recycle[my_cpu])))
588  {
589  vlib_buffer_free (vm, dm->recycle[my_cpu],
590  vec_len (dm->recycle[my_cpu]));
591  _vec_len (dm->recycle[my_cpu]) = 0;
592  }
593 
594  ASSERT (ring->tx_head >= ring->tx_tail);
595 
596  return tx_pkts;
597 }
598 
599 static void
601 {
602  dpdk_main_t *dm = &dpdk_main;
603  dpdk_device_t *xd = vec_elt_at_index (dm->devices, instance);
604 
605  /*
606  * Set the "last_cleared_stats" to the current stats, so that
607  * things appear to clear from a display perspective.
608  */
610 
611  clib_memcpy (&xd->last_cleared_stats, &xd->stats, sizeof (xd->stats));
614  sizeof (xd->last_cleared_xstats[0]));
615 
616 }
617 
618 static clib_error_t *
620 {
621  vnet_hw_interface_t *hif = vnet_get_hw_interface (vnm, hw_if_index);
622  uword is_up = (flags & VNET_SW_INTERFACE_FLAG_ADMIN_UP) != 0;
623  dpdk_main_t *dm = &dpdk_main;
625  int rv = 0;
626 
627  if (is_up)
628  {
629  f64 now = vlib_time_now (dm->vlib_main);
630 
631  if ((xd->flags & DPDK_DEVICE_FLAG_ADMIN_UP) == 0)
632  rv = rte_eth_dev_start (xd->device_index);
633 
635  rte_eth_promiscuous_enable (xd->device_index);
636  else
637  rte_eth_promiscuous_disable (xd->device_index);
638 
639  rte_eth_allmulticast_enable (xd->device_index);
641  dpdk_update_counters (xd, now);
642  dpdk_update_link_state (xd, now);
643  }
644  else
645  {
647 
648  rte_eth_allmulticast_disable (xd->device_index);
650  rte_eth_dev_stop (xd->device_index);
651 
652  /* For bonded interface, stop slave links */
653  if (xd->pmd == VNET_DPDK_PMD_BOND)
654  {
655  u8 slink[16];
656  int nlink = rte_eth_bond_slaves_get (xd->device_index, slink, 16);
657  while (nlink >= 1)
658  {
659  u8 dpdk_port = slink[--nlink];
660  rte_eth_dev_stop (dpdk_port);
661  }
662  }
663  }
664 
665  if (rv < 0)
666  clib_warning ("rte_eth_dev_%s error: %d", is_up ? "start" : "stop", rv);
667 
668  return /* no error */ 0;
669 }
670 
671 /*
672  * Dynamically redirect all pkts from a specific interface
673  * to the specified node
674  */
675 static void
677  u32 node_index)
678 {
679  dpdk_main_t *xm = &dpdk_main;
680  vnet_hw_interface_t *hw = vnet_get_hw_interface (vnm, hw_if_index);
682 
683  /* Shut off redirection */
684  if (node_index == ~0)
685  {
686  xd->per_interface_next_index = node_index;
687  return;
688  }
689 
691  vlib_node_add_next (xm->vlib_main, dpdk_input_node.index, node_index);
692 }
693 
694 
695 static clib_error_t *
697  u32 hw_if_index,
698  struct vnet_sw_interface_t *st, int is_add)
699 {
700  dpdk_main_t *xm = &dpdk_main;
701  vnet_hw_interface_t *hw = vnet_get_hw_interface (vnm, hw_if_index);
704  int r, vlan_offload;
705  u32 prev_subifs = xd->num_subifs;
706  clib_error_t *err = 0;
707 
708  if (is_add)
709  xd->num_subifs++;
710  else if (xd->num_subifs)
711  xd->num_subifs--;
712 
713  if ((xd->flags & DPDK_DEVICE_FLAG_PMD) == 0)
714  goto done;
715 
716  /* currently we program VLANS only for IXGBE VF and I40E VF */
717  if ((xd->pmd != VNET_DPDK_PMD_IXGBEVF) && (xd->pmd != VNET_DPDK_PMD_I40EVF))
718  goto done;
719 
720  if (t->sub.eth.flags.no_tags == 1)
721  goto done;
722 
723  if ((t->sub.eth.flags.one_tag != 1) || (t->sub.eth.flags.exact_match != 1))
724  {
725  xd->num_subifs = prev_subifs;
726  err = clib_error_return (0, "unsupported VLAN setup");
727  goto done;
728  }
729 
730  vlan_offload = rte_eth_dev_get_vlan_offload (xd->device_index);
731  vlan_offload |= ETH_VLAN_FILTER_OFFLOAD;
732 
733  if ((r = rte_eth_dev_set_vlan_offload (xd->device_index, vlan_offload)))
734  {
735  xd->num_subifs = prev_subifs;
736  err = clib_error_return (0, "rte_eth_dev_set_vlan_offload[%d]: err %d",
737  xd->device_index, r);
738  goto done;
739  }
740 
741 
742  if ((r =
743  rte_eth_dev_vlan_filter (xd->device_index, t->sub.eth.outer_vlan_id,
744  is_add)))
745  {
746  xd->num_subifs = prev_subifs;
747  err = clib_error_return (0, "rte_eth_dev_vlan_filter[%d]: err %d",
748  xd->device_index, r);
749  goto done;
750  }
751 
752 done:
753  if (xd->num_subifs)
755  else
757 
758  return err;
759 }
760 
761 /* *INDENT-OFF* */
763  .name = "dpdk",
764  .tx_function = dpdk_interface_tx,
765  .tx_function_n_errors = DPDK_TX_FUNC_N_ERROR,
766  .tx_function_error_strings = dpdk_tx_func_error_strings,
767  .format_device_name = format_dpdk_device_name,
768  .format_device = format_dpdk_device,
769  .format_tx_trace = format_dpdk_tx_dma_trace,
770  .clear_counters = dpdk_clear_hw_interface_counters,
771  .admin_up_down_function = dpdk_interface_admin_up_down,
772  .subif_add_del_function = dpdk_subif_add_del_function,
773  .rx_redirect_to_node = dpdk_set_interface_next_node,
774  .mac_addr_change_function = dpdk_set_mac_address,
775 };
776 
778 /* *INDENT-ON* */
779 
780 #define UP_DOWN_FLAG_EVENT 1
781 
782 uword
785 {
786  clib_error_t *error = 0;
787  uword event_type;
788  uword *event_data = 0;
789  u32 sw_if_index;
790  u32 flags;
791 
792  while (1)
793  {
795 
796  event_type = vlib_process_get_events (vm, &event_data);
797 
799 
800  switch (event_type)
801  {
802  case UP_DOWN_FLAG_EVENT:
803  {
804  if (vec_len (event_data) == 2)
805  {
806  sw_if_index = event_data[0];
807  flags = event_data[1];
808  error =
810  flags);
811  clib_error_report (error);
812  }
813  }
814  break;
815  }
816 
817  vec_reset_length (event_data);
818 
820 
821  }
822  return 0; /* or not */
823 }
824 
825 /* *INDENT-OFF* */
827  .function = admin_up_down_process,
828  .type = VLIB_NODE_TYPE_PROCESS,
829  .name = "admin-up-down-process",
830  .process_log2_n_stack_bytes = 17, // 256KB
831 };
832 /* *INDENT-ON* */
833 
834 /*
835  * fd.io coding-style-patch-verification: ON
836  *
837  * Local Variables:
838  * eval: (c-set-style "gnu")
839  * End:
840  */
#define vec_validate(V, I)
Make sure vector is long enough for given index (no header, unspecified alignment) ...
Definition: vec.h:396
#define DPDK_DEVICE_FLAG_PROMISC
Definition: dpdk.h:193
static void vlib_increment_simple_counter(vlib_simple_counter_main_t *cm, u32 cpu_index, u32 index, u32 increment)
Increment a simple counter.
Definition: counter.h:78
vmrglw vmrglh hi
sll srl srl sll sra u16x4 i
Definition: vector_sse2.h:343
#define rte_mbuf_from_vlib_buffer(x)
Definition: buffer.h:389
clib_error_t * vnet_hw_interface_set_flags(vnet_main_t *vnm, u32 hw_if_index, u32 flags)
Definition: interface.c:531
vlib_buffer_t buffer
Definition: dpdk.h:437
#define UP_DOWN_FLAG_EVENT
Definition: device.c:780
u8 runtime_data[0]
Definition: node.h:469
static uword * vlib_process_wait_for_event(vlib_main_t *vm)
Definition: node_funcs.h:604
dpdk_main_t dpdk_main
Definition: dpdk.h:428
static vlib_main_t * vlib_get_main(void)
Definition: global_funcs.h:23
vnet_interface_main_t interface_main
Definition: vnet.h:57
clib_error_t * dpdk_set_mac_address(vnet_hw_interface_t *hi, char *address)
Definition: device.c:48
vnet_device_class_t dpdk_device_class
#define PREDICT_TRUE(x)
Definition: clib.h:98
static void vlib_error_count(vlib_main_t *vm, uword node_index, uword counter, uword increment)
Definition: error_funcs.h:55
#define NULL
Definition: clib.h:55
static f64 vlib_time_now(vlib_main_t *vm)
Definition: main.h:182
u16 flags
Definition: dpdk.h:191
static vnet_hw_interface_t * vnet_get_hw_interface(vnet_main_t *vnm, u32 hw_if_index)
#define vec_add1(V, E)
Add 1 element to end of vector (unspecified alignment).
Definition: vec.h:482
unsigned rte_socket_id()
#define DPDK_DEVICE_FLAG_HQOS
Definition: dpdk.h:198
vlib_buffer_main_t * buffer_main
Definition: main.h:104
u32 per_interface_next_index
Definition: dpdk.h:179
u64 tx_tail
Definition: dpdk.h:135
#define clib_error_report(e)
Definition: error.h:125
struct rte_eth_xstat * last_cleared_xstats
Definition: dpdk.h:230
u16 num_subifs
Definition: dpdk.h:206
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:100
format_function_t format_dpdk_tx_dma_trace
Definition: dpdk.h:511
uword admin_up_down_process(vlib_main_t *vm, vlib_node_runtime_t *rt, vlib_frame_t *f)
Definition: device.c:783
static clib_error_t * dpdk_interface_admin_up_down(vnet_main_t *vnm, u32 hw_if_index, u32 flags)
Definition: device.c:619
static uword vlib_node_add_next(vlib_main_t *vm, uword node, uword next_node)
Definition: node_funcs.h:1063
#define vec_reset_length(v)
Reset vector length to zero NULL-pointer tolerant.
static_always_inline void dpdk_validate_rte_mbuf(vlib_main_t *vm, vlib_buffer_t *b, int maybe_multiseg)
Definition: device.c:154
#define DPDK_DEVICE_FLAG_PMD
Definition: dpdk.h:194
static_always_inline void dpdk_prefetch_buffer_by_index(vlib_main_t *vm, u32 bi)
Definition: device.c:314
struct rte_eth_stats stats
Definition: dpdk.h:226
VNET_DEVICE_CLASS(af_packet_device_class)
vnet_main_t * vnet_get_main(void)
Definition: misc.c:46
static_always_inline u32 tx_burst_vector_internal(vlib_main_t *vm, dpdk_device_t *xd, struct rte_mbuf **tx_vector)
Definition: device.c:204
i16 current_data
signed offset in data[], pre_data[] that we are currently processing.
Definition: buffer.h:78
#define static_always_inline
Definition: clib.h:85
static 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:527
struct vnet_sub_interface_t::@154::@155::@157 flags
vlib_node_registration_t dpdk_input_node
(constructor) VLIB_REGISTER_NODE (dpdk_input_node)
Definition: node.c:662
#define vec_elt_at_index(v, i)
Get vector value at index i checking that i is in bounds.
u8 pre_data[VLIB_BUFFER_PRE_DATA_SIZE]
Space for inserting data before buffer start.
Definition: buffer.h:150
u32 cpu_index
Definition: main.h:159
#define clib_warning(format, args...)
Definition: error.h:59
A collection of simple counters.
Definition: counter.h:59
u32 device_index
Definition: dpdk.h:173
dpdk_device_hqos_per_worker_thread_t * hqos_wt
Definition: dpdk.h:217
#define VLIB_BUFFER_NEXT_PRESENT
Definition: buffer.h:97
u32 pcap_sw_if_index
Definition: dpdk.h:390
struct rte_mbuf * dpdk_replicate_packet_mb(vlib_buffer_t *b)
Definition: device.c:88
#define VLIB_BUFFER_PRE_DATA_SIZE
Definition: buffer.h:52
vnet_hw_interface_t * hw_interfaces
Definition: interface.h:592
vnet_sub_interface_t sub
Definition: interface.h:558
static clib_error_t * dpdk_subif_add_del_function(vnet_main_t *vnm, u32 hw_if_index, struct vnet_sw_interface_t *st, int is_add)
Definition: device.c:696
u16 current_length
Nbytes between current data and the end of this buffer.
Definition: buffer.h:82
u32 vlib_hw_if_index
Definition: dpdk.h:175
static char * dpdk_tx_func_error_strings[]
Definition: device.c:41
pcap_main_t pcap_main
Definition: dpdk.h:388
void dpdk_hqos_metadata_set(dpdk_device_hqos_per_worker_thread_t *hqos, struct rte_mbuf **pkts, u32 n_pkts)
Definition: hqos.c:644
struct rte_mbuf mb
Definition: dpdk.h:435
static void pcap_add_buffer(pcap_main_t *pm, vlib_main_t *vm, u32 buffer_index, u32 n_bytes_in_trace)
Add buffer (vlib_buffer_t) to the trace.
Definition: pcap.h:201
#define PREDICT_FALSE(x)
Definition: clib.h:97
static void dpdk_set_interface_next_node(vnet_main_t *vnm, u32 hw_if_index, u32 node_index)
Definition: device.c:676
#define VLIB_FRAME_SIZE
Definition: node.h:328
vlib_simple_counter_main_t * sw_if_counters
Definition: interface.h:614
u16 tx_q_used
Definition: dpdk.h:209
#define DPDK_DEVICE_FLAG_ADMIN_UP
Definition: dpdk.h:192
static uword dpdk_interface_tx(vlib_main_t *vm, vlib_node_runtime_t *node, vlib_frame_t *f)
Definition: device.c:355
u32 ** recycle
Definition: dpdk.h:369
struct rte_mempool ** pktmbuf_pools
Definition: buffer.h:328
u16 n_vectors
Definition: node.h:344
#define CLIB_PREFETCH(addr, size, type)
Definition: cache.h:82
dpdk_device_t * devices
Definition: dpdk.h:364
static void dpdk_update_counters(dpdk_device_t *xd, f64 now)
Definition: dpdk_priv.h:80
#define vec_free(V)
Free vector&#39;s memory (no header).
Definition: vec.h:300
volatile u32 ** lockp
Definition: dpdk.h:170
#define clib_memcpy(a, b, c)
Definition: string.h:69
dpdk_pmd_t pmd
Definition: dpdk.h:188
#define VLIB_BUFFER_RECYCLE
Definition: buffer.h:101
format_function_t format_dpdk_device
Definition: dpdk.h:510
struct rte_eth_xstat * xstats
Definition: dpdk.h:229
#define VNET_SW_INTERFACE_FLAG_ADMIN_UP
Definition: interface.h:528
static_always_inline void dpdk_buffer_recycle(vlib_main_t *vm, vlib_node_runtime_t *node, vlib_buffer_t *b, u32 bi, struct rte_mbuf **mbp)
Definition: device.c:325
#define ASSERT(truth)
format_function_t format_dpdk_device_name
Definition: dpdk.h:509
#define VLIB_BUFFER_REPL_FAIL
Definition: buffer.h:100
unsigned int u32
Definition: types.h:88
#define vnet_buffer(b)
Definition: buffer.h:361
u64 tx_head
Definition: dpdk.h:134
void vlib_buffer_free(vlib_main_t *vm, u32 *buffers, u32 n_buffers)
Free buffers Frees the entire buffer chain for each buffer.
u32 next_buffer
Next buffer for this linked-list of buffers.
Definition: buffer.h:117
#define DPDK_DEVICE_FLAG_HAVE_SUBIF
Definition: dpdk.h:197
#define VLIB_NODE_FLAG_TRACE
Definition: node.h:259
void dpdk_update_link_state(dpdk_device_t *xd, f64 now)
Definition: init.c:1395
#define VLIB_BUFFER_IS_TRACED
Definition: buffer.h:95
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
static void dpdk_clear_hw_interface_counters(u32 instance)
Definition: device.c:600
static vlib_node_registration_t admin_up_down_process_node
(constructor) VLIB_REGISTER_NODE (admin_up_down_process_node)
Definition: device.c:826
Definition: defs.h:47
unsigned short u16
Definition: types.h:57
#define vec_len(v)
Number of elements in vector (rvalue-only, NULL tolerant)
double f64
Definition: types.h:142
unsigned char u8
Definition: types.h:56
#define foreach_dpdk_tx_func_error
Definition: device.c:27
struct vnet_sub_interface_t::@154 eth
u8 admin_up_down_in_progress
Definition: dpdk.h:403
static void * vlib_frame_vector_args(vlib_frame_t *f)
Get pointer to frame vector data.
Definition: node_funcs.h:253
static void dpdk_tx_trace_buffer(dpdk_main_t *dm, vlib_node_runtime_t *node, dpdk_device_t *xd, u16 queue_id, u32 buffer_index, vlib_buffer_t *buffer)
Definition: device.c:131
#define VLIB_REGISTER_NODE(x,...)
Definition: node.h:143
#define VNET_BUFFER_RTE_MBUF_VALID
Definition: buffer.h:65
static void * vec_header(void *v, uword header_bytes)
Find a user vector header.
Definition: vec_bootstrap.h:92
u8 data[0]
Packet data.
Definition: buffer.h:158
clib_error_t * vnet_sw_interface_set_flags(vnet_main_t *vnm, u32 sw_if_index, u32 flags)
Definition: interface.c:539
struct rte_eth_stats last_cleared_stats
Definition: dpdk.h:228
#define clib_error_return(e, args...)
Definition: error.h:111
u32 flags
Definition: vhost-user.h:75
#define CLIB_CACHE_LINE_BYTES
Definition: cache.h:67
u32 flags
buffer flags: VLIB_BUFFER_IS_TRACED: trace this buffer.
Definition: buffer.h:85
int tx_pcap_enable
Definition: dpdk.h:387
vnet_main_t * vnet_main
Definition: dpdk.h:424
u16 nb_tx_desc
Definition: dpdk.h:200
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
dpdk_tx_func_error_t
Definition: device.c:33
#define VLIB_DEVICE_TX_FUNCTION_MULTIARCH(dev, fn)
Definition: interface.h:217
clib_error_t * dpdk_set_mc_filter(vnet_hw_interface_t *hi, struct ether_addr mc_addr_vec[], int naddr)
Definition: device.c:68
CLIB vectors are ubiquitous dynamically resized arrays with by user defined "headers".
vlib_main_t * vlib_main
Definition: dpdk.h:423