FD.io VPP  v16.12-rc0-308-g931be3a
Vector Packet Processing
format.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_counter \
28  _ (tx_frames_ok, opackets) \
29  _ (tx_bytes_ok, obytes) \
30  _ (tx_errors, oerrors) \
31  _ (rx_frames_ok, ipackets) \
32  _ (rx_bytes_ok, ibytes) \
33  _ (rx_errors, ierrors) \
34  _ (rx_missed, imissed) \
35  _ (rx_no_bufs, rx_nombuf)
36 
37 #define foreach_dpdk_q_counter \
38  _ (rx_frames_ok, q_ipackets) \
39  _ (tx_frames_ok, q_opackets) \
40  _ (rx_bytes_ok, q_ibytes) \
41  _ (tx_bytes_ok, q_obytes) \
42  _ (rx_errors, q_errors)
43 
44 #define foreach_dpdk_rss_hf \
45  _(ETH_RSS_FRAG_IPV4, "ipv4-frag") \
46  _(ETH_RSS_NONFRAG_IPV4_TCP, "ipv4-tcp") \
47  _(ETH_RSS_NONFRAG_IPV4_UDP, "ipv4-udp") \
48  _(ETH_RSS_NONFRAG_IPV4_SCTP, "ipv4-sctp") \
49  _(ETH_RSS_NONFRAG_IPV4_OTHER, "ipv4-other") \
50  _(ETH_RSS_IPV4, "ipv4") \
51  _(ETH_RSS_IPV6_TCP_EX, "ipv6-tcp-ex") \
52  _(ETH_RSS_IPV6_UDP_EX, "ipv6-udp-ex") \
53  _(ETH_RSS_FRAG_IPV6, "ipv6-frag") \
54  _(ETH_RSS_NONFRAG_IPV6_TCP, "ipv6-tcp") \
55  _(ETH_RSS_NONFRAG_IPV6_UDP, "ipv6-udp") \
56  _(ETH_RSS_NONFRAG_IPV6_SCTP, "ipv6-sctp") \
57  _(ETH_RSS_NONFRAG_IPV6_OTHER, "ipv6-other") \
58  _(ETH_RSS_L2_PAYLOAD, "l2-payload") \
59  _(ETH_RSS_IPV6_EX, "ipv6-ex") \
60  _(ETH_RSS_IPV6, "ipv6")
61 
62 
63 #define foreach_dpdk_rx_offload_caps \
64  _(DEV_RX_OFFLOAD_VLAN_STRIP, "vlan-strip") \
65  _(DEV_RX_OFFLOAD_IPV4_CKSUM, "ipv4-cksum") \
66  _(DEV_RX_OFFLOAD_UDP_CKSUM , "udp-cksum") \
67  _(DEV_RX_OFFLOAD_TCP_CKSUM , "tcp-cksum") \
68  _(DEV_RX_OFFLOAD_TCP_LRO , "rcp-lro") \
69  _(DEV_RX_OFFLOAD_QINQ_STRIP, "qinq-strip")
70 
71 #define foreach_dpdk_tx_offload_caps \
72  _(DEV_TX_OFFLOAD_VLAN_INSERT, "vlan-insert") \
73  _(DEV_TX_OFFLOAD_IPV4_CKSUM, "ipv4-cksum") \
74  _(DEV_TX_OFFLOAD_UDP_CKSUM , "udp-cksum") \
75  _(DEV_TX_OFFLOAD_TCP_CKSUM , "tcp-cksum") \
76  _(DEV_TX_OFFLOAD_SCTP_CKSUM , "sctp-cksum") \
77  _(DEV_TX_OFFLOAD_TCP_TSO , "tcp-tso") \
78  _(DEV_TX_OFFLOAD_UDP_TSO , "udp-tso") \
79  _(DEV_TX_OFFLOAD_OUTER_IPV4_CKSUM, "outer-ipv4-cksum") \
80  _(DEV_TX_OFFLOAD_QINQ_INSERT, "qinq-insert")
81 
82 #define foreach_dpdk_pkt_rx_offload_flag \
83  _ (PKT_RX_VLAN_PKT, "RX packet is a 802.1q VLAN packet") \
84  _ (PKT_RX_RSS_HASH, "RX packet with RSS hash result") \
85  _ (PKT_RX_FDIR, "RX packet with FDIR infos") \
86  _ (PKT_RX_L4_CKSUM_BAD, "L4 cksum of RX pkt. is not OK") \
87  _ (PKT_RX_IP_CKSUM_BAD, "IP cksum of RX pkt. is not OK") \
88  _ (PKT_RX_IEEE1588_PTP, "RX IEEE1588 L2 Ethernet PT Packet") \
89  _ (PKT_RX_IEEE1588_TMST, "RX IEEE1588 L2/L4 timestamped packet")
90 
91 #define foreach_dpdk_pkt_type \
92  _ (L2, ETHER, "Ethernet packet") \
93  _ (L2, ETHER_TIMESYNC, "Ethernet packet for time sync") \
94  _ (L2, ETHER_ARP, "ARP packet") \
95  _ (L2, ETHER_LLDP, "LLDP (Link Layer Discovery Protocol) packet") \
96  _ (L3, IPV4, "IPv4 packet without extension headers") \
97  _ (L3, IPV4_EXT, "IPv4 packet with extension headers") \
98  _ (L3, IPV4_EXT_UNKNOWN, "IPv4 packet with or without extension headers") \
99  _ (L3, IPV6, "IPv6 packet without extension headers") \
100  _ (L3, IPV6_EXT, "IPv6 packet with extension headers") \
101  _ (L3, IPV6_EXT_UNKNOWN, "IPv6 packet with or without extension headers") \
102  _ (L4, TCP, "TCP packet") \
103  _ (L4, UDP, "UDP packet") \
104  _ (L4, FRAG, "Fragmented IP packet") \
105  _ (L4, SCTP, "SCTP (Stream Control Transmission Protocol) packet") \
106  _ (L4, ICMP, "ICMP packet") \
107  _ (L4, NONFRAG, "Non-fragmented IP packet") \
108  _ (TUNNEL, GRE, "GRE tunneling packet") \
109  _ (TUNNEL, VXLAN, "VXLAN tunneling packet") \
110  _ (TUNNEL, NVGRE, "NVGRE Tunneling packet") \
111  _ (TUNNEL, GENEVE, "GENEVE Tunneling packet") \
112  _ (TUNNEL, GRENAT, "Teredo, VXLAN or GRE Tunneling packet") \
113  _ (INNER_L2, ETHER, "Inner Ethernet packet") \
114  _ (INNER_L2, ETHER_VLAN, "Inner Ethernet packet with VLAN") \
115  _ (INNER_L3, IPV4, "Inner IPv4 packet without extension headers") \
116  _ (INNER_L3, IPV4_EXT, "Inner IPv4 packet with extension headers") \
117  _ (INNER_L3, IPV4_EXT_UNKNOWN, "Inner IPv4 packet with or without extension headers") \
118  _ (INNER_L3, IPV6, "Inner IPv6 packet without extension headers") \
119  _ (INNER_L3, IPV6_EXT, "Inner IPv6 packet with extension headers") \
120  _ (INNER_L3, IPV6_EXT_UNKNOWN, "Inner IPv6 packet with or without extension headers") \
121  _ (INNER_L4, TCP, "Inner TCP packet") \
122  _ (INNER_L4, UDP, "Inner UDP packet") \
123  _ (INNER_L4, FRAG, "Inner fagmented IP packet") \
124  _ (INNER_L4, SCTP, "Inner SCTP (Stream Control Transmission Protocol) packet") \
125  _ (INNER_L4, ICMP, "Inner ICMP packet") \
126  _ (INNER_L4, NONFRAG, "Inner non-fragmented IP packet")
127 
128 #define foreach_dpdk_pkt_tx_offload_flag \
129  _ (PKT_TX_VLAN_PKT, "TX packet is a 802.1q VLAN packet") \
130  _ (PKT_TX_IP_CKSUM, "IP cksum of TX pkt. computed by NIC") \
131  _ (PKT_TX_TCP_CKSUM, "TCP cksum of TX pkt. computed by NIC") \
132  _ (PKT_TX_SCTP_CKSUM, "SCTP cksum of TX pkt. computed by NIC") \
133  _ (PKT_TX_IEEE1588_TMST, "TX IEEE1588 packet to timestamp")
134 
135 #define foreach_dpdk_pkt_offload_flag \
136  foreach_dpdk_pkt_rx_offload_flag \
137  foreach_dpdk_pkt_tx_offload_flag
138 
139 #ifdef RTE_LIBRTE_MBUF_EXT_RX_OLFLAGS
140 #define foreach_dpdk_pkt_ext_rx_offload_flag \
141  _ (PKT_EXT_RX_PKT_ERROR, "RX Packet Error") \
142  _ (PKT_EXT_RX_BAD_FCS, "RX Bad FCS checksum") \
143  _ (PKT_EXT_RX_UDP, "RX packet with UDP L4 header") \
144  _ (PKT_EXT_RX_TCP, "RX packet with TCP L4 header") \
145  _ (PKT_EXT_RX_IPV4_FRAGMENT, "RX packet IPv4 Fragment")
146 
147 #define foreach_dpdk_pkt_ext_offload_flag \
148  foreach_dpdk_pkt_rx_offload_flag \
149  foreach_dpdk_pkt_ext_rx_offload_flag
150 
151 #endif /* RTE_LIBRTE_MBUF_EXT_RX_OLFLAGS */
152 
153 u8 *
154 format_dpdk_device_name (u8 * s, va_list * args)
155 {
156  dpdk_main_t *dm = &dpdk_main;
157  char *devname_format;
158  char *device_name;
159  u32 i = va_arg (*args, u32);
160  struct rte_eth_dev_info dev_info;
161  u8 *ret;
162 
164  devname_format = "%s%d/%d/%d";
165  else
166  devname_format = "%s%x/%x/%x";
167 
168  switch (dm->devices[i].port_type)
169  {
171  device_name = "GigabitEthernet";
172  break;
173 
175  device_name = "TenGigabitEthernet";
176  break;
177 
179  device_name = "FortyGigabitEthernet";
180  break;
181 
183  return format (s, "BondEthernet%d", dm->devices[i].device_index);
184 
186  device_name = "EthernetSwitch";
187  break;
188 
190  rte_eth_dev_info_get (i, &dev_info);
191  return format (s, "af_packet%d", dm->devices[i].af_packet_port_id);
192 
193  default:
195  device_name = "UnknownEthernet";
196  break;
197  }
198 
199  rte_eth_dev_info_get (i, &dev_info);
200  ret = format (s, devname_format, device_name, dev_info.pci_dev->addr.bus,
201  dev_info.pci_dev->addr.devid,
202  dev_info.pci_dev->addr.function);
203 
204  if (dm->devices[i].interface_name_suffix)
205  return format (ret, "/%s", dm->devices[i].interface_name_suffix);
206  return ret;
207 }
208 
209 static u8 *
210 format_dpdk_device_type (u8 * s, va_list * args)
211 {
212  dpdk_main_t *dm = &dpdk_main;
213  char *dev_type;
214  u32 i = va_arg (*args, u32);
215 
216  switch (dm->devices[i].pmd)
217  {
218  case VNET_DPDK_PMD_E1000EM:
219  dev_type = "Intel 82540EM (e1000)";
220  break;
221 
222  case VNET_DPDK_PMD_IGB:
223  dev_type = "Intel e1000";
224  break;
225 
226  case VNET_DPDK_PMD_I40E:
227  dev_type = "Intel X710/XL710 Family";
228  break;
229 
230  case VNET_DPDK_PMD_I40EVF:
231  dev_type = "Intel X710/XL710 Family VF";
232  break;
233 
234  case VNET_DPDK_PMD_FM10K:
235  dev_type = "Intel FM10000 Family Ethernet Switch";
236  break;
237 
238  case VNET_DPDK_PMD_IGBVF:
239  dev_type = "Intel e1000 VF";
240  break;
241 
242  case VNET_DPDK_PMD_VIRTIO:
243  dev_type = "Red Hat Virtio";
244  break;
245 
246  case VNET_DPDK_PMD_IXGBEVF:
247  dev_type = "Intel 82599 VF";
248  break;
249 
250  case VNET_DPDK_PMD_IXGBE:
251  dev_type = "Intel 82599";
252  break;
253 
254  case VNET_DPDK_PMD_ENIC:
255  dev_type = "Cisco VIC";
256  break;
257 
258  case VNET_DPDK_PMD_CXGBE:
259  dev_type = "Chelsio T4/T5";
260  break;
261 
262  case VNET_DPDK_PMD_VMXNET3:
263  dev_type = "VMware VMXNET3";
264  break;
265 
266  case VNET_DPDK_PMD_AF_PACKET:
267  dev_type = "af_packet";
268  break;
269 
270  case VNET_DPDK_PMD_BOND:
271  dev_type = "Ethernet Bonding";
272  break;
273 
274  case VNET_DPDK_PMD_DPAA2:
275  dev_type = "NXP DPAA2 Mac";
276  break;
277 
278  default:
280  dev_type = "### UNKNOWN ###";
281  break;
282  }
283 
284  return format (s, dev_type);
285 }
286 
287 static u8 *
288 format_dpdk_link_status (u8 * s, va_list * args)
289 {
290  dpdk_device_t *xd = va_arg (*args, dpdk_device_t *);
291  struct rte_eth_link *l = &xd->link;
292  vnet_main_t *vnm = vnet_get_main ();
294 
295  s = format (s, "%s ", l->link_status ? "up" : "down");
296  if (l->link_status)
297  {
298  u32 promisc = rte_eth_promiscuous_get (xd->device_index);
299 
300  s = format (s, "%s duplex ", (l->link_duplex == ETH_LINK_FULL_DUPLEX) ?
301  "full" : "half");
302  s = format (s, "speed %u mtu %d %s\n", l->link_speed,
303  hi->max_packet_bytes, promisc ? " promisc" : "");
304  }
305  else
306  s = format (s, "\n");
307 
308  return s;
309 }
310 
311 #define _line_len 72
312 #define _(v, str) \
313 if (bitmap & v) { \
314  if (format_get_indent (s) > next_split ) { \
315  next_split += _line_len; \
316  s = format(s,"\n%U", format_white_space, indent); \
317  } \
318  s = format(s, "%s ", str); \
319 }
320 
321 static u8 *
322 format_dpdk_rss_hf_name (u8 * s, va_list * args)
323 {
324  u64 bitmap = va_arg (*args, u64);
325  int next_split = _line_len;
326  int indent = format_get_indent (s);
327 
328  if (!bitmap)
329  return format (s, "none");
330 
331  foreach_dpdk_rss_hf return s;
332 }
333 
334 static u8 *
335 format_dpdk_rx_offload_caps (u8 * s, va_list * args)
336 {
337  u32 bitmap = va_arg (*args, u32);
338  int next_split = _line_len;
339  int indent = format_get_indent (s);
340 
341  if (!bitmap)
342  return format (s, "none");
343 
345 }
346 
347 static u8 *
348 format_dpdk_tx_offload_caps (u8 * s, va_list * args)
349 {
350  u32 bitmap = va_arg (*args, u32);
351  int next_split = _line_len;
352  int indent = format_get_indent (s);
353  if (!bitmap)
354  return format (s, "none");
355 
357 }
358 
359 #undef _line_len
360 #undef _
361 
362 u8 *
363 format_dpdk_device (u8 * s, va_list * args)
364 {
365  u32 dev_instance = va_arg (*args, u32);
366  int verbose = va_arg (*args, int);
367  dpdk_main_t *dm = &dpdk_main;
368  dpdk_device_t *xd = vec_elt_at_index (dm->devices, dev_instance);
369  uword indent = format_get_indent (s);
370  f64 now = vlib_time_now (dm->vlib_main);
371  struct rte_eth_dev_info di;
372 
373  dpdk_update_counters (xd, now);
374  dpdk_update_link_state (xd, now);
375 
376  s = format (s, "%U\n%Ucarrier %U",
379 
380  rte_eth_dev_info_get (xd->device_index, &di);
381 
382  if (verbose > 1 && xd->flags & DPDK_DEVICE_FLAG_PMD)
383  {
384  struct rte_pci_device *pci;
385  struct rte_eth_rss_conf rss_conf;
386  int vlan_off;
387  int retval;
388 
389  rss_conf.rss_key = 0;
390  retval = rte_eth_dev_rss_hash_conf_get (xd->device_index, &rss_conf);
391  if (retval < 0)
392  clib_warning ("rte_eth_dev_rss_hash_conf_get returned %d", retval);
393  pci = di.pci_dev;
394 
395  if (pci)
396  s =
397  format (s,
398  "%Upci id: device %04x:%04x subsystem %04x:%04x\n"
399  "%Upci address: %04x:%02x:%02x.%02x\n",
400  format_white_space, indent + 2, pci->id.vendor_id,
401  pci->id.device_id, pci->id.subsystem_vendor_id,
402  pci->id.subsystem_device_id, format_white_space, indent + 2,
403  pci->addr.domain, pci->addr.bus, pci->addr.devid,
404  pci->addr.function);
405  s =
406  format (s, "%Umax rx packet len: %d\n", format_white_space,
407  indent + 2, di.max_rx_pktlen);
408  s =
409  format (s, "%Umax num of queues: rx %d tx %d\n", format_white_space,
410  indent + 2, di.max_rx_queues, di.max_tx_queues);
411  s =
412  format (s, "%Upromiscuous: unicast %s all-multicast %s\n",
413  format_white_space, indent + 2,
414  rte_eth_promiscuous_get (xd->device_index) ? "on" : "off",
415  rte_eth_promiscuous_get (xd->device_index) ? "on" : "off");
416  vlan_off = rte_eth_dev_get_vlan_offload (xd->device_index);
417  s = format (s, "%Uvlan offload: strip %s filter %s qinq %s\n",
418  format_white_space, indent + 2,
419  vlan_off & ETH_VLAN_STRIP_OFFLOAD ? "on" : "off",
420  vlan_off & ETH_VLAN_FILTER_OFFLOAD ? "on" : "off",
421  vlan_off & ETH_VLAN_EXTEND_OFFLOAD ? "on" : "off");
422  s = format (s, "%Urx offload caps: %U\n",
423  format_white_space, indent + 2,
424  format_dpdk_rx_offload_caps, di.rx_offload_capa);
425  s = format (s, "%Utx offload caps: %U\n",
426  format_white_space, indent + 2,
427  format_dpdk_tx_offload_caps, di.tx_offload_capa);
428  s = format (s, "%Urss active: %U\n"
429  "%Urss supported: %U\n",
430  format_white_space, indent + 2,
431  format_dpdk_rss_hf_name, rss_conf.rss_hf,
432  format_white_space, indent + 2,
433  format_dpdk_rss_hf_name, di.flow_type_rss_offloads);
434  }
435 
436  s = format (s, "%Urx queues %d, rx desc %d, tx queues %d, tx desc %d\n",
437  format_white_space, indent + 2,
438  xd->rx_q_used, xd->nb_rx_desc, xd->tx_q_used, xd->nb_tx_desc);
439 
440  if (xd->cpu_socket > -1)
441  s = format (s, "%Ucpu socket %d\n",
442  format_white_space, indent + 2, xd->cpu_socket);
443 
444  /* $$$ MIB counters */
445  {
446 #define _(N, V) \
447  if ((xd->stats.V - xd->last_cleared_stats.V) != 0) { \
448  s = format (s, "\n%U%-40U%16Ld", \
449  format_white_space, indent + 2, \
450  format_c_identifier, #N, \
451  xd->stats.V - xd->last_cleared_stats.V); \
452  } \
453 
455 #undef _
456  }
457 
458  u8 *xs = 0;
459  u32 i = 0;
460  struct rte_eth_xstat *xstat, *last_xstat;
461  struct rte_eth_xstat_name *xstat_names = 0;
462  int len = rte_eth_xstats_get_names (xd->device_index, NULL, 0);
463  vec_validate (xstat_names, len - 1);
464  rte_eth_xstats_get_names (xd->device_index, xstat_names, len);
465 
467 
468  /* *INDENT-OFF* */
469  vec_foreach_index(i, xd->xstats)
470  {
471  u64 delta = 0;
472  xstat = vec_elt_at_index(xd->xstats, i);
473  last_xstat = vec_elt_at_index(xd->last_cleared_xstats, i);
474 
475  delta = xstat->value - last_xstat->value;
476  if (verbose == 2 || (verbose && delta))
477  {
478  /* format_c_identifier doesn't like c strings inside vector */
479  u8 * name = format(0,"%s", xstat_names[i].name);
480  xs = format(xs, "\n%U%-38U%16Ld",
481  format_white_space, indent + 4,
482  format_c_identifier, name, delta);
483  vec_free(name);
484  }
485  }
486  /* *INDENT-ON* */
487 
488  vec_free (xstat_names);
489 
490  if (xs)
491  {
492  s = format (s, "\n%Uextended stats:%v",
493  format_white_space, indent + 2, xs);
494  vec_free (xs);
495  }
496 
497  return s;
498 }
499 
500 u8 *
501 format_dpdk_tx_dma_trace (u8 * s, va_list * va)
502 {
503  CLIB_UNUSED (vlib_main_t * vm) = va_arg (*va, vlib_main_t *);
504  CLIB_UNUSED (vlib_node_t * node) = va_arg (*va, vlib_node_t *);
506  dpdk_tx_dma_trace_t *t = va_arg (*va, dpdk_tx_dma_trace_t *);
507  dpdk_main_t *dm = &dpdk_main;
509  uword indent = format_get_indent (s);
511 
512  s = format (s, "%U tx queue %d",
514 
515  s = format (s, "\n%Ubuffer 0x%x: %U",
516  format_white_space, indent,
518 
519  s = format (s, "\n%U%U", format_white_space, indent,
521  sizeof (t->buffer.pre_data));
522 
523  return s;
524 }
525 
526 u8 *
527 format_dpdk_rx_dma_trace (u8 * s, va_list * va)
528 {
529  CLIB_UNUSED (vlib_main_t * vm) = va_arg (*va, vlib_main_t *);
530  CLIB_UNUSED (vlib_node_t * node) = va_arg (*va, vlib_node_t *);
532  dpdk_rx_dma_trace_t *t = va_arg (*va, dpdk_rx_dma_trace_t *);
533  dpdk_main_t *dm = &dpdk_main;
536  uword indent = format_get_indent (s);
538 
539  s = format (s, "%U rx queue %d",
541 
542  s = format (s, "\n%Ubuffer 0x%x: %U",
543  format_white_space, indent,
545 
546 #ifdef RTE_LIBRTE_MBUF_EXT_RX_OLFLAGS
547  s = format (s, "\n%U%U",
548  format_white_space, indent,
549  format_dpdk_rx_rte_mbuf, &t->mb, &t->data);
550 #else
551  s = format (s, "\n%U%U",
552  format_white_space, indent,
553  format_dpdk_rte_mbuf, &t->mb, &t->data);
554 #endif /* RTE_LIBRTE_MBUF_EXT_RX_OLFLAGS */
555  if (vm->trace_main.verbose)
556  {
557  s = format (s, "\n%UPacket Dump%s", format_white_space, indent + 2,
558  t->mb.data_len > sizeof (t->data) ? " (truncated)" : "");
559  s = format (s, "\n%U%U", format_white_space, indent + 4,
560  format_hexdump, &t->data,
561  t->mb.data_len >
562  sizeof (t->data) ? sizeof (t->data) : t->mb.data_len);
563  }
564  f = node->format_buffer;
565  if (!f)
566  f = format_hex_bytes;
567  s = format (s, "\n%U%U", format_white_space, indent,
568  f, t->buffer.pre_data, sizeof (t->buffer.pre_data));
569 
570  return s;
571 }
572 
573 
574 static inline u8 *
575 format_dpdk_pkt_types (u8 * s, va_list * va)
576 {
577  u32 *pkt_types = va_arg (*va, u32 *);
578  uword indent __attribute__ ((unused)) = format_get_indent (s) + 2;
579 
580  if (!*pkt_types)
581  return s;
582 
583  s = format (s, "Packet Types");
584 
585 #define _(L, F, S) \
586  if ((*pkt_types & RTE_PTYPE_##L##_MASK) == RTE_PTYPE_##L##_##F) \
587  { \
588  s = format (s, "\n%U%s (0x%04x) %s", format_white_space, indent, \
589  "RTE_PTYPE_" #L "_" #F, RTE_PTYPE_##L##_##F, S); \
590  }
591 
593 #undef _
594  return s;
595 }
596 
597 static inline u8 *
599 {
600  u64 *ol_flags = va_arg (*va, u64 *);
601  uword indent = format_get_indent (s) + 2;
602 
603  if (!*ol_flags)
604  return s;
605 
606  s = format (s, "Packet Offload Flags");
607 
608 #define _(F, S) \
609  if (*ol_flags & F) \
610  { \
611  s = format (s, "\n%U%s (0x%04x) %s", \
612  format_white_space, indent, #F, F, S); \
613  }
614 
616 #undef _
617  return s;
618 }
619 
620 u8 *
621 format_dpdk_rte_mbuf_vlan (u8 * s, va_list * va)
622 {
623  ethernet_vlan_header_tv_t *vlan_hdr =
624  va_arg (*va, ethernet_vlan_header_tv_t *);
625 
626  if (clib_net_to_host_u16 (vlan_hdr->type) == ETHERNET_TYPE_DOT1AD)
627  {
628  s = format (s, "%U 802.1q vlan ",
630  clib_net_to_host_u16 (vlan_hdr->priority_cfi_and_id));
631  vlan_hdr++;
632  }
633 
634  s = format (s, "%U",
636  clib_net_to_host_u16 (vlan_hdr->priority_cfi_and_id));
637 
638  return s;
639 }
640 
641 u8 *
642 format_dpdk_rte_mbuf (u8 * s, va_list * va)
643 {
644  struct rte_mbuf *mb = va_arg (*va, struct rte_mbuf *);
645  ethernet_header_t *eth_hdr = va_arg (*va, ethernet_header_t *);
646  uword indent = format_get_indent (s) + 2;
647 
648  s = format (s, "PKT MBUF: port %d, nb_segs %d, pkt_len %d"
649  "\n%Ubuf_len %d, data_len %d, ol_flags 0x%x, data_off %d, phys_addr 0x%x"
650  "\n%Upacket_type 0x%x",
651  mb->port, mb->nb_segs, mb->pkt_len,
652  format_white_space, indent,
653  mb->buf_len, mb->data_len, mb->ol_flags, mb->data_off,
654  mb->buf_physaddr, format_white_space, indent, mb->packet_type);
655 
656  if (mb->ol_flags)
657  s = format (s, "\n%U%U", format_white_space, indent,
658  format_dpdk_pkt_offload_flags, &mb->ol_flags);
659 
660  if (mb->ol_flags & PKT_RX_VLAN_PKT)
661  {
662  ethernet_vlan_header_tv_t *vlan_hdr =
663  ((ethernet_vlan_header_tv_t *) & (eth_hdr->type));
664  s = format (s, " %U", format_dpdk_rte_mbuf_vlan, vlan_hdr);
665  }
666 
667  if (mb->packet_type)
668  s = format (s, "\n%U%U", format_white_space, indent,
669  format_dpdk_pkt_types, &mb->packet_type);
670 
671  return s;
672 }
673 
674 #ifdef RTE_LIBRTE_MBUF_EXT_RX_OLFLAGS
675 
676 static inline u8 *
677 format_dpdk_pkt_rx_offload_flags (u8 * s, va_list * va)
678 {
679  u16 *ol_flags = va_arg (*va, u16 *);
680  uword indent = format_get_indent (s) + 2;
681 
682  if (!*ol_flags)
683  return s;
684 
685  s = format (s, "Packet RX Offload Flags");
686 
687 #define _(F, S) \
688  if (*ol_flags & F) \
689  { \
690  s = format (s, "\n%U%s (0x%04x) %s", \
691  format_white_space, indent, #F, F, S); \
692  }
693 
694  foreach_dpdk_pkt_ext_offload_flag
695 #undef _
696  return s;
697 }
698 
699 u8 *
700 format_dpdk_rx_rte_mbuf (u8 * s, va_list * va)
701 {
702  struct rte_mbuf *mb = va_arg (*va, struct rte_mbuf *);
703  ethernet_header_t *eth_hdr = va_arg (*args, ethernet_header_t *);
704  uword indent = format_get_indent (s) + 2;
705 
706  /*
707  * Note: Assumes mb is head of pkt chain -- port, nb_segs, & pkt_len
708  * are only valid for the 1st mbuf segment.
709  */
710  s = format (s, "PKT MBUF: port %d, nb_segs %d, pkt_len %d"
711  "\n%Ubuf_len %d, data_len %d, ol_flags 0x%x"
712  "\n%Upacket_type 0x%x",
713  mb->port, mb->nb_segs, mb->pkt_len,
714  format_white_space, indent,
715  mb->buf_len, mb->data_len, mb->ol_flags,
716  format_white_space, indent, mb->packet_type);
717 
718  if (mb->ol_flags)
719  s = format (s, "\n%U%U", format_white_space, indent,
720  format_dpdk_pkt_rx_offload_flags, &mb->ol_flags);
721 
722  if (mb->ol_flags & PKT_RX_VLAN_PKT)
723  {
724  ethernet_vlan_header_tv_t *vlan_hdr =
725  ((ethernet_vlan_header_tv_t *) & (eth_hdr->type));
726  s = format (s, " %U", format_dpdk_rte_mbuf_vlan, vlan_hdr);
727  }
728 
729  if (mb->packet_type)
730  s = format (s, "\n%U%U", format_white_space, indent,
731  format_dpdk_pkt_types, &mb->packet_type);
732 
733  return s;
734 }
735 #endif /* RTE_LIBRTE_MBUF_EXT_RX_OLFLAGS */
736 
737 uword
738 unformat_socket_mem (unformat_input_t * input, va_list * va)
739 {
740  uword **r = va_arg (*va, uword **);
741  int i = 0;
742  u32 mem;
743 
745  {
746  if (unformat (input, ","))
747  hash_set (*r, i, 1024);
748  else if (unformat (input, "%u,", &mem))
749  hash_set (*r, i, mem);
750  else if (unformat (input, "%u", &mem))
751  hash_set (*r, i, mem);
752  else
753  {
754  unformat_put_input (input);
755  goto done;
756  }
757  i++;
758  }
759 
760 done:
761  return 1;
762 }
763 
764 clib_error_t *
766 {
768  {
769  if (0)
770  ;
771 #undef _
772 #define _(f, s) \
773  else if (unformat (input, s)) \
774  *rss_fn |= f;
775 
777 #undef _
778  else
779  {
780  return clib_error_return (0, "unknown input `%U'",
781  format_unformat_error, input);
782  }
783  }
784  return 0;
785 }
786 
787 clib_error_t *
789 {
790  clib_error_t *error = 0;
791 
793  {
794  if (unformat (input, "hqos-thread %u", &hqos->hqos_thread))
795  hqos->hqos_thread_valid = 1;
796  else
797  {
798  error = clib_error_return (0, "unknown input `%U'",
799  format_unformat_error, input);
800  break;
801  }
802  }
803 
804  return error;
805 }
806 
807 /*
808  * fd.io coding-style-patch-verification: ON
809  *
810  * Local Variables:
811  * eval: (c-set-style "gnu")
812  * End:
813  */
#define foreach_dpdk_pkt_offload_flag
Definition: format.c:135
#define vec_validate(V, I)
Make sure vector is long enough for given index (no header, unspecified alignment) ...
Definition: vec.h:396
vmrglw vmrglh hi
#define vec_foreach_index(var, v)
Iterate over vector indices.
#define hash_set(h, key, value)
Definition: hash.h:254
sll srl srl sll sra u16x4 i
Definition: vector_sse2.h:343
#define CLIB_UNUSED(x)
Definition: clib.h:79
uword unformat(unformat_input_t *i, char *fmt,...)
Definition: unformat.c:966
vlib_buffer_t buffer
Definition: dpdk.h:485
u8 interface_name_format_decimal
Definition: dpdk.h:391
dpdk_main_t dpdk_main
Definition: dpdk.h:476
format_function_t format_vlib_buffer
Definition: buffer_funcs.h:525
#define UNFORMAT_END_OF_INPUT
Definition: format.h:143
#define NULL
Definition: clib.h:55
static f64 vlib_time_now(vlib_main_t *vm)
Definition: main.h:182
u16 flags
Definition: dpdk.h:215
static vnet_hw_interface_t * vnet_get_hw_interface(vnet_main_t *vnm, u32 hw_if_index)
u8 * format_c_identifier(u8 *s, va_list *va)
Definition: std-formats.c:258
u8 * format_dpdk_rte_mbuf_vlan(u8 *s, va_list *va)
Definition: format.c:621
u8 * format_dpdk_tx_dma_trace(u8 *s, va_list *va)
Definition: format.c:501
static void unformat_put_input(unformat_input_t *input)
Definition: format.h:203
static vnet_sw_interface_t * vnet_get_sw_interface(vnet_main_t *vnm, u32 sw_if_index)
struct rte_eth_xstat * last_cleared_xstats
Definition: dpdk.h:253
u8 * format_ethernet_vlan_tci(u8 *s, va_list *va)
Definition: format.c:73
clib_error_t * unformat_hqos(unformat_input_t *input, dpdk_device_config_hqos_t *hqos)
Definition: format.c:788
u8 * format_ethernet_header_with_length(u8 *s, va_list *args)
Definition: format.c:115
static u8 * format_dpdk_device_type(u8 *s, va_list *args)
Definition: format.c:210
#define DPDK_DEVICE_FLAG_PMD
Definition: dpdk.h:218
vnet_main_t * vnet_get_main(void)
Definition: misc.c:46
u8 data[256]
Definition: dpdk.h:495
static u8 * format_dpdk_rx_offload_caps(u8 *s, va_list *args)
Definition: format.c:335
static u8 * format_dpdk_pkt_offload_flags(u8 *s, va_list *va)
Definition: format.c:598
u8 * format_white_space(u8 *s, va_list *va)
Definition: std-formats.c:113
#define foreach_dpdk_rx_offload_caps
Definition: format.c:63
#define vec_elt_at_index(v, i)
Get vector value at index i checking that i is in bounds.
u8 * format_hex_bytes(u8 *s, va_list *va)
Definition: std-formats.c:84
u16 rx_q_used
Definition: dpdk.h:233
u8 pre_data[VLIB_BUFFER_PRE_DATA_SIZE]
Space for inserting data before buffer start.
Definition: buffer.h:146
#define clib_warning(format, args...)
Definition: error.h:59
unsigned long u64
Definition: types.h:89
#define foreach_dpdk_pkt_type
Definition: format.c:91
format_function_t format_dpdk_rx_rte_mbuf
Definition: dpdk.h:610
u32 device_index
Definition: dpdk.h:197
#define foreach_dpdk_counter
Definition: format.c:27
struct rte_mbuf mb
Definition: dpdk.h:493
u32 vlib_sw_if_index
Definition: dpdk.h:200
format_function_t format_vnet_sw_interface_name
static uword format_get_indent(u8 *s)
Definition: format.h:72
u32 vlib_hw_if_index
Definition: dpdk.h:199
clib_error_t * unformat_rss_fn(unformat_input_t *input, uword *rss_fn)
Definition: format.c:765
static u8 * format_dpdk_rss_hf_name(u8 *s, va_list *args)
Definition: format.c:322
#define foreach_dpdk_rss_hf
Definition: format.c:44
dpdk_port_type_t port_type
Definition: dpdk.h:255
format_function_t * format_buffer
Definition: node.h:311
u16 tx_q_used
Definition: dpdk.h:232
u16 nb_rx_desc
Definition: dpdk.h:234
static u8 * format_dpdk_link_status(u8 *s, va_list *args)
Definition: format.c:288
u8 * format_dpdk_device_name(u8 *s, va_list *args)
Definition: format.c:154
static u8 * format_dpdk_pkt_types(u8 *s, va_list *va)
Definition: format.c:575
dpdk_device_t * devices
Definition: dpdk.h:406
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
u8 * format_hexdump(u8 *s, va_list *va)
Definition: std-formats.c:281
dpdk_pmd_t pmd
Definition: dpdk.h:212
u8 * format_dpdk_rte_mbuf(u8 *s, va_list *va)
Definition: format.c:642
struct rte_eth_xstat * xstats
Definition: dpdk.h:252
u8 * interface_name_suffix
Definition: dpdk.h:226
#define ASSERT(truth)
unsigned int u32
Definition: types.h:88
u8 * format_unformat_error(u8 *s, va_list *va)
Definition: unformat.c:91
u8 af_packet_port_id
Definition: dpdk.h:244
vlib_trace_main_t trace_main
Definition: main.h:121
void dpdk_update_link_state(dpdk_device_t *xd, f64 now)
Definition: init.c:1392
struct rte_eth_link link
Definition: dpdk.h:246
u8 *( format_function_t)(u8 *s, va_list *args)
Definition: format.h:48
uword unformat_socket_mem(unformat_input_t *input, va_list *va)
Definition: format.c:738
u64 uword
Definition: types.h:112
unsigned short u16
Definition: types.h:57
vlib_buffer_t buffer
Definition: dpdk.h:494
#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
static u8 * format_dpdk_tx_offload_caps(u8 *s, va_list *args)
Definition: format.c:348
static uword unformat_check_input(unformat_input_t *i)
Definition: format.h:169
u8 * format(u8 *s, const char *fmt,...)
Definition: format.c:418
u8 * format_dpdk_rx_dma_trace(u8 *s, va_list *va)
Definition: format.c:527
i8 cpu_socket
Definition: dpdk.h:213
#define clib_error_return(e, args...)
Definition: error.h:111
struct _unformat_input_t unformat_input_t
u8 * format_dpdk_device(u8 *s, va_list *args)
Definition: format.c:363
u16 nb_tx_desc
Definition: dpdk.h:223
#define foreach_dpdk_tx_offload_caps
Definition: format.c:71
CLIB vectors are ubiquitous dynamically resized arrays with by user defined "headers".
dpdk_config_main_t * conf
Definition: dpdk.h:473
vlib_main_t * vlib_main
Definition: dpdk.h:471