FD.io VPP  v17.10-9-gd594711
Vector Packet Processing
tcp.c
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1 /*
2  * Copyright (c) 2016 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 
16 /**
17  * @file
18  * @brief TCP host stack utilities
19  */
20 
21 #include <vnet/tcp/tcp.h>
22 #include <vnet/session/session.h>
23 #include <vnet/fib/fib.h>
24 #include <vnet/dpo/load_balance.h>
25 #include <vnet/dpo/receive_dpo.h>
26 #include <vnet/ip/ip6_neighbor.h>
27 #include <math.h>
28 
30 
31 static u32
33 {
34  tcp_main_t *tm = &tcp_main;
35  tcp_connection_t *listener;
36 
37  pool_get (tm->listener_pool, listener);
38  memset (listener, 0, sizeof (*listener));
39 
40  listener->c_c_index = listener - tm->listener_pool;
41  listener->c_lcl_port = lcl->port;
42 
43  if (lcl->is_ip4)
44  {
45  listener->c_lcl_ip4.as_u32 = lcl->ip.ip4.as_u32;
46  listener->c_is_ip4 = 1;
47  }
48  else
49  {
50  clib_memcpy (&listener->c_lcl_ip6, &lcl->ip.ip6,
51  sizeof (ip6_address_t));
52 
53  }
54  listener->c_transport_proto = TRANSPORT_PROTO_TCP;
55  listener->c_s_index = session_index;
56  listener->state = TCP_STATE_LISTEN;
57 
58  tcp_connection_timers_init (listener);
59 
60  TCP_EVT_DBG (TCP_EVT_BIND, listener);
61 
62  return listener->c_c_index;
63 }
64 
65 u32
67 {
68  return tcp_connection_bind (session_index, tep);
69 }
70 
71 static void
72 tcp_connection_unbind (u32 listener_index)
73 {
75  tcp_connection_t *tc;
76 
77  tc = pool_elt_at_index (tm->listener_pool, listener_index);
78 
79  TCP_EVT_DBG (TCP_EVT_UNBIND, tc);
80 
81  /* Poison the entry */
82  if (CLIB_DEBUG > 0)
83  memset (tc, 0xFA, sizeof (*tc));
84 
85  pool_put_index (tm->listener_pool, listener_index);
86 }
87 
88 u32
89 tcp_session_unbind (u32 listener_index)
90 {
91  tcp_connection_unbind (listener_index);
92  return 0;
93 }
94 
96 tcp_session_get_listener (u32 listener_index)
97 {
99  tcp_connection_t *tc;
100  tc = pool_elt_at_index (tm->listener_pool, listener_index);
101  return &tc->connection;
102 }
103 
104 always_inline void
106 {
107  tcp_main_t *tm = vnet_get_tcp_main ();
108  clib_spinlock_lock_if_init (&tm->local_endpoints_lock);
109  pool_put_index (tm->local_endpoints, tepi);
110  clib_spinlock_unlock_if_init (&tm->local_endpoints_lock);
111 }
112 
115 {
116  tcp_main_t *tm = vnet_get_tcp_main ();
118  pool_get (tm->local_endpoints, tep);
119  return tep;
120 }
121 
122 /**
123  * Cleanup half-open connection
124  *
125  */
126 void
128 {
129  tcp_main_t *tm = vnet_get_tcp_main ();
130  clib_spinlock_lock_if_init (&tm->half_open_lock);
131  pool_put_index (tm->half_open_connections, tc->c_c_index);
132  if (CLIB_DEBUG)
133  memset (tc, 0xFA, sizeof (*tc));
134  clib_spinlock_unlock_if_init (&tm->half_open_lock);
135 }
136 
137 /**
138  * Try to cleanup half-open connection
139  *
140  * If called from a thread that doesn't own tc, the call won't have any
141  * effect.
142  *
143  * @param tc - connection to be cleaned up
144  * @return non-zero if cleanup failed.
145  */
146 int
148 {
149  /* Make sure this is the owning thread */
150  if (tc->c_thread_index != vlib_get_thread_index ())
151  return 1;
152  tcp_timer_reset (tc, TCP_TIMER_ESTABLISH);
153  tcp_timer_reset (tc, TCP_TIMER_RETRANSMIT_SYN);
155  return 0;
156 }
157 
160 {
161  tcp_main_t *tm = vnet_get_tcp_main ();
162  tcp_connection_t *tc = 0;
163  ASSERT (vlib_get_thread_index () == 0);
164  pool_get (tm->half_open_connections, tc);
165  memset (tc, 0, sizeof (*tc));
166  tc->c_c_index = tc - tm->half_open_connections;
167  return tc;
168 }
169 
170 /**
171  * Cleans up connection state.
172  *
173  * No notifications.
174  */
175 void
177 {
178  tcp_main_t *tm = &tcp_main;
179  u32 tepi;
181 
182  /* Cleanup local endpoint if this was an active connect */
183  tepi = transport_endpoint_lookup (&tm->local_endpoints_table, &tc->c_lcl_ip,
184  clib_net_to_host_u16 (tc->c_lcl_port));
186  {
187  tep = pool_elt_at_index (tm->local_endpoints, tepi);
188  transport_endpoint_table_del (&tm->local_endpoints_table, tep);
189  transport_endpoint_del (tepi);
190  }
191 
192  /* Check if connection is not yet fully established */
193  if (tc->state == TCP_STATE_SYN_SENT)
194  {
195  /* Try to remove the half-open connection. If this is not the owning
196  * thread, tc won't be removed. Retransmit or establish timers will
197  * eventually expire and call again cleanup on the right thread. */
199  }
200  else
201  {
202  int thread_index = tc->c_thread_index;
203 
204  /* Make sure all timers are cleared */
206 
207  /* Poison the entry */
208  if (CLIB_DEBUG > 0)
209  memset (tc, 0xFA, sizeof (*tc));
210  pool_put (tm->connections[thread_index], tc);
211  }
212 }
213 
214 /**
215  * Connection removal.
216  *
217  * This should be called only once connection enters CLOSED state. Note
218  * that it notifies the session of the removal event, so if the goal is to
219  * just remove the connection, call tcp_connection_cleanup instead.
220  */
221 void
223 {
224  TCP_EVT_DBG (TCP_EVT_DELETE, tc);
225  stream_session_delete_notify (&tc->connection);
227 }
228 
230 tcp_connection_new (u8 thread_index)
231 {
232  tcp_main_t *tm = vnet_get_tcp_main ();
233  tcp_connection_t *tc;
234 
235  pool_get (tm->connections[thread_index], tc);
236  memset (tc, 0, sizeof (*tc));
237  tc->c_c_index = tc - tm->connections[thread_index];
238  tc->c_thread_index = thread_index;
239  return tc;
240 }
241 
242 /** Notify session that connection has been reset.
243  *
244  * Switch state to closed and wait for session to call cleanup.
245  */
246 void
248 {
249  TCP_EVT_DBG (TCP_EVT_RST_RCVD, tc);
250  switch (tc->state)
251  {
252  case TCP_STATE_SYN_RCVD:
253  /* Cleanup everything. App wasn't notified yet */
254  stream_session_delete_notify (&tc->connection);
256  break;
257  case TCP_STATE_SYN_SENT:
258  stream_session_connect_notify (&tc->connection, 1 /* fail */ );
260  break;
261  case TCP_STATE_ESTABLISHED:
262  case TCP_STATE_CLOSE_WAIT:
263  case TCP_STATE_FIN_WAIT_1:
264  case TCP_STATE_FIN_WAIT_2:
265  case TCP_STATE_CLOSING:
266  tc->state = TCP_STATE_CLOSED;
267  TCP_EVT_DBG (TCP_EVT_STATE_CHANGE, tc);
268 
269  /* Make sure all timers are cleared */
271  stream_session_reset_notify (&tc->connection);
272 
273  /* Wait for cleanup from session layer but not forever */
274  tcp_timer_update (tc, TCP_TIMER_WAITCLOSE, TCP_CLEANUP_TIME);
275  break;
276  case TCP_STATE_CLOSED:
277  return;
278  }
279 }
280 
281 /**
282  * Begin connection closing procedure.
283  *
284  * If at the end the connection is not in CLOSED state, it is not removed.
285  * Instead, we rely on on TCP to advance through state machine to either
286  * 1) LAST_ACK (passive close) whereby when the last ACK is received
287  * tcp_connection_del is called. This notifies session of the delete and
288  * calls cleanup.
289  * 2) TIME_WAIT (active close) whereby after 2MSL the 2MSL timer triggers
290  * and cleanup is called.
291  *
292  * N.B. Half-close connections are not supported
293  */
294 void
296 {
297  TCP_EVT_DBG (TCP_EVT_CLOSE, tc);
298 
299  /* Send/Program FIN if needed and switch state */
300  switch (tc->state)
301  {
302  case TCP_STATE_SYN_SENT:
303  tc->state = TCP_STATE_CLOSED;
304  break;
305  case TCP_STATE_SYN_RCVD:
306  tcp_send_fin (tc);
307  tc->state = TCP_STATE_FIN_WAIT_1;
308  break;
309  case TCP_STATE_ESTABLISHED:
310  if (!stream_session_tx_fifo_max_dequeue (&tc->connection))
311  tcp_send_fin (tc);
312  else
313  tc->flags |= TCP_CONN_FINPNDG;
314  tc->state = TCP_STATE_FIN_WAIT_1;
315  break;
316  case TCP_STATE_CLOSE_WAIT:
317  tcp_send_fin (tc);
318  tc->state = TCP_STATE_LAST_ACK;
319  break;
320  case TCP_STATE_FIN_WAIT_1:
321  break;
322  default:
323  clib_warning ("state: %u", tc->state);
324  }
325 
326  TCP_EVT_DBG (TCP_EVT_STATE_CHANGE, tc);
327 
328  /* If in CLOSED and WAITCLOSE timer is not set, delete connection now */
329  if (tc->timers[TCP_TIMER_WAITCLOSE] == TCP_TIMER_HANDLE_INVALID
330  && tc->state == TCP_STATE_CLOSED)
331  tcp_connection_del (tc);
332 }
333 
334 void
335 tcp_session_close (u32 conn_index, u32 thread_index)
336 {
337  tcp_connection_t *tc;
338  tc = tcp_connection_get (conn_index, thread_index);
340 }
341 
342 void
343 tcp_session_cleanup (u32 conn_index, u32 thread_index)
344 {
345  tcp_connection_t *tc;
346  tc = tcp_connection_get (conn_index, thread_index);
347 
348  /* Wait for the session tx events to clear */
349  tc->state = TCP_STATE_CLOSED;
350  TCP_EVT_DBG (TCP_EVT_STATE_CHANGE, tc);
351  tcp_timer_update (tc, TCP_TIMER_WAITCLOSE, TCP_CLEANUP_TIME);
352 }
353 
354 void *
355 ip_interface_get_first_ip (u32 sw_if_index, u8 is_ip4)
356 {
359  ip_interface_address_t *ia = 0;
360 
361  if (is_ip4)
362  {
363  /* *INDENT-OFF* */
364  foreach_ip_interface_address (lm4, ia, sw_if_index, 1 /* unnumbered */ ,
365  ({
366  return ip_interface_address_get_address (lm4, ia);
367  }));
368  /* *INDENT-ON* */
369  }
370  else
371  {
372  /* *INDENT-OFF* */
373  foreach_ip_interface_address (lm6, ia, sw_if_index, 1 /* unnumbered */ ,
374  ({
375  ip6_address_t *rv;
376  rv = ip_interface_address_get_address (lm6, ia);
377  /* Trying to use a link-local ip6 src address is a fool's errand */
379  return rv;
380  }));
381  /* *INDENT-ON* */
382  }
383 
384  return 0;
385 }
386 
387 #define PORT_MASK ((1 << 16)- 1)
388 /**
389  * Allocate local port and add if successful add entry to local endpoint
390  * table to mark the pair as used.
391  */
392 int
393 tcp_allocate_local_port (ip46_address_t * ip)
394 {
395  tcp_main_t *tm = vnet_get_tcp_main ();
397  u32 tei;
398  u16 min = 1024, max = 65535; /* XXX configurable ? */
399  int tries, limit;
400 
401  limit = max - min;
402 
403  /* Only support active opens from thread 0 */
404  ASSERT (vlib_get_thread_index () == 0);
405 
406  /* Search for first free slot */
407  for (tries = 0; tries < limit; tries++)
408  {
409  u16 port = 0;
410 
411  /* Find a port in the specified range */
412  while (1)
413  {
414  port = random_u32 (&tm->port_allocator_seed) & PORT_MASK;
415  if (PREDICT_TRUE (port >= min && port < max))
416  break;
417  }
418 
419  /* Look it up */
420  tei = transport_endpoint_lookup (&tm->local_endpoints_table, ip, port);
421  /* If not found, we're done */
423  {
424  clib_spinlock_lock_if_init (&tm->local_endpoints_lock);
425  tep = transport_endpoint_new ();
426  clib_memcpy (&tep->ip, ip, sizeof (*ip));
427  tep->port = port;
428  transport_endpoint_table_add (&tm->local_endpoints_table, tep,
429  tep - tm->local_endpoints);
430  clib_spinlock_unlock_if_init (&tm->local_endpoints_lock);
431 
432  return tep->port;
433  }
434  }
435  return -1;
436 }
437 
438 /**
439  * Initialize all connection timers as invalid
440  */
441 void
443 {
444  int i;
445 
446  /* Set all to invalid */
447  for (i = 0; i < TCP_N_TIMERS; i++)
448  {
449  tc->timers[i] = TCP_TIMER_HANDLE_INVALID;
450  }
451 
452  tc->rto = TCP_RTO_INIT;
453 }
454 
455 /**
456  * Stop all connection timers
457  */
458 void
460 {
461  int i;
462  for (i = 0; i < TCP_N_TIMERS; i++)
463  {
464  tcp_timer_reset (tc, i);
465  }
466 }
467 
468 #if 0
469 typedef struct ip4_tcp_hdr
470 {
471  ip4_header_t ip;
472  tcp_header_t tcp;
473 } ip4_tcp_hdr_t;
474 
475 typedef struct ip6_tcp_hdr
476 {
477  ip6_header_t ip;
478  tcp_header_t tcp;
479 } ip6_tcp_hdr_t;
480 
481 static void
482 tcp_connection_select_lb_bucket (tcp_connection_t * tc, const dpo_id_t * dpo,
483  dpo_id_t * result)
484 {
485  const dpo_id_t *choice;
486  load_balance_t *lb;
487  int hash;
488 
489  lb = load_balance_get (dpo->dpoi_index);
490  if (tc->c_is_ip4)
491  {
492  ip4_tcp_hdr_t hdr;
493  memset (&hdr, 0, sizeof (hdr));
494  hdr.ip.protocol = IP_PROTOCOL_TCP;
495  hdr.ip.address_pair.src.as_u32 = tc->c_lcl_ip.ip4.as_u32;
496  hdr.ip.address_pair.dst.as_u32 = tc->c_rmt_ip.ip4.as_u32;
497  hdr.tcp.src_port = tc->c_lcl_port;
498  hdr.tcp.dst_port = tc->c_rmt_port;
499  hash = ip4_compute_flow_hash (&hdr.ip, lb->lb_hash_config);
500  }
501  else
502  {
503  ip6_tcp_hdr_t hdr;
504  memset (&hdr, 0, sizeof (hdr));
505  hdr.ip.protocol = IP_PROTOCOL_TCP;
506  clib_memcpy (&hdr.ip.src_address, &tc->c_lcl_ip.ip6,
507  sizeof (ip6_address_t));
508  clib_memcpy (&hdr.ip.dst_address, &tc->c_rmt_ip.ip6,
509  sizeof (ip6_address_t));
510  hdr.tcp.src_port = tc->c_lcl_port;
511  hdr.tcp.dst_port = tc->c_rmt_port;
512  hash = ip6_compute_flow_hash (&hdr.ip, lb->lb_hash_config);
513  }
514  choice = load_balance_get_bucket_i (lb, hash & lb->lb_n_buckets_minus_1);
515  dpo_copy (result, choice);
516 }
517 
520 {
521  fib_prefix_t prefix;
522  u32 fib_index;
523 
524  clib_memcpy (&prefix.fp_addr, &tc->c_rmt_ip, sizeof (prefix.fp_addr));
525  prefix.fp_proto = tc->c_is_ip4 ? FIB_PROTOCOL_IP4 : FIB_PROTOCOL_IP6;
526  prefix.fp_len = tc->c_is_ip4 ? 32 : 128;
527  fib_index = fib_table_find (prefix.fp_proto, tc->c_vrf);
528  return fib_table_lookup (fib_index, &prefix);
529 }
530 
531 static int
532 tcp_connection_stack_on_fib_entry (tcp_connection_t * tc)
533 {
534  dpo_id_t choice = DPO_INVALID;
535  u32 output_node_index;
536  fib_entry_t *fe;
537 
538  fe = fib_entry_get (tc->c_rmt_fei);
539  if (fe->fe_lb.dpoi_type != DPO_LOAD_BALANCE)
540  return -1;
541 
542  tcp_connection_select_lb_bucket (tc, &fe->fe_lb, &choice);
543 
544  output_node_index =
545  tc->c_is_ip4 ? tcp4_output_node.index : tcp6_output_node.index;
546  dpo_stack_from_node (output_node_index, &tc->c_rmt_dpo, &choice);
547  return 0;
548 }
549 
550 /** Stack tcp connection on peer's fib entry.
551  *
552  * This ultimately populates the dpo the connection will use to send packets.
553  */
554 static void
555 tcp_connection_fib_attach (tcp_connection_t * tc)
556 {
557  tc->c_rmt_fei = tcp_lookup_rmt_in_fib (tc);
558 
559  ASSERT (tc->c_rmt_fei != FIB_NODE_INDEX_INVALID);
560 
561  tcp_connection_stack_on_fib_entry (tc);
562 }
563 #endif /* 0 */
564 
565 /**
566  * Initialize connection send variables.
567  */
568 void
570 {
571  u32 time_now;
572 
573  /*
574  * We use the time to randomize iss and for setting up the initial
575  * timestamp. Make sure it's updated otherwise syn and ack in the
576  * handshake may make it look as if time has flown in the opposite
577  * direction for us.
578  */
580  time_now = tcp_time_now ();
581 
582  tc->iss = random_u32 (&time_now);
583  tc->snd_una = tc->iss;
584  tc->snd_nxt = tc->iss + 1;
585  tc->snd_una_max = tc->snd_nxt;
586 }
587 
588 /** Initialize tcp connection variables
589  *
590  * Should be called after having received a msg from the peer, i.e., a SYN or
591  * a SYNACK, such that connection options have already been exchanged. */
592 void
594 {
596  tcp_init_mss (tc);
597  scoreboard_init (&tc->sack_sb);
598  tcp_cc_init (tc);
599  if (tc->state == TCP_STATE_SYN_RCVD)
600  tcp_init_snd_vars (tc);
601 
602  // tcp_connection_fib_attach (tc);
603 }
604 
605 int
607 {
608  tcp_main_t *tm = vnet_get_tcp_main ();
609  tcp_connection_t *tc;
610  fib_prefix_t prefix;
611  fib_node_index_t fei;
612  u32 sw_if_index, fib_index;
613  ip46_address_t lcl_addr;
614  int lcl_port;
615 
616  /*
617  * Find the local address and allocate port
618  */
619  memset (&lcl_addr, 0, sizeof (lcl_addr));
620 
621  /* Find a FIB path to the destination */
622  clib_memcpy (&prefix.fp_addr, &rmt->ip, sizeof (rmt->ip));
623  prefix.fp_proto = rmt->is_ip4 ? FIB_PROTOCOL_IP4 : FIB_PROTOCOL_IP6;
624  prefix.fp_len = rmt->is_ip4 ? 32 : 128;
625 
626  fib_index = fib_table_find (prefix.fp_proto, rmt->vrf);
627  if (fib_index == (u32) ~ 0)
628  {
629  clib_warning ("no fib table");
630  return -1;
631  }
632 
633  fei = fib_table_lookup (fib_index, &prefix);
634 
635  /* Couldn't find route to destination. Bail out. */
636  if (fei == FIB_NODE_INDEX_INVALID)
637  {
638  clib_warning ("no route to destination");
639  return -1;
640  }
641 
642  sw_if_index = fib_entry_get_resolving_interface (fei);
643 
644  if (sw_if_index == (u32) ~ 0)
645  {
646  clib_warning ("no resolving interface for %U", format_ip46_address,
647  &rmt->ip, IP46_TYPE_IP4);
648  return -1;
649  }
650 
651  if (rmt->is_ip4)
652  {
653  ip4_address_t *ip4;
654  int index;
655  if (vec_len (tm->ip4_src_addresses))
656  {
657  index = tm->last_v4_address_rotor++;
658  if (tm->last_v4_address_rotor >= vec_len (tm->ip4_src_addresses))
659  tm->last_v4_address_rotor = 0;
660  lcl_addr.ip4.as_u32 = tm->ip4_src_addresses[index].as_u32;
661  }
662  else
663  {
664  ip4 = ip_interface_get_first_ip (sw_if_index, 1);
665  lcl_addr.ip4.as_u32 = ip4->as_u32;
666  }
667  }
668  else
669  {
670  ip6_address_t *ip6;
671  int index;
672 
673  if (vec_len (tm->ip6_src_addresses))
674  {
675  index = tm->last_v6_address_rotor++;
676  if (tm->last_v6_address_rotor >= vec_len (tm->ip6_src_addresses))
677  tm->last_v6_address_rotor = 0;
678  clib_memcpy (&lcl_addr.ip6, &tm->ip6_src_addresses[index],
679  sizeof (*ip6));
680  }
681  else
682  {
683  ip6 = ip_interface_get_first_ip (sw_if_index, 0);
684  if (ip6 == 0)
685  {
686  clib_warning ("no routable ip6 addresses on %U",
688  sw_if_index);
689  return -1;
690  }
691 
692  clib_memcpy (&lcl_addr.ip6, ip6, sizeof (*ip6));
693  }
694  }
695 
696  /* Allocate source port */
697  lcl_port = tcp_allocate_local_port (&lcl_addr);
698  if (lcl_port < 1)
699  {
700  clib_warning ("Failed to allocate src port");
701  return -1;
702  }
703 
704  /*
705  * Create connection and send SYN
706  */
707  clib_spinlock_lock_if_init (&tm->half_open_lock);
709  clib_memcpy (&tc->c_rmt_ip, &rmt->ip, sizeof (ip46_address_t));
710  clib_memcpy (&tc->c_lcl_ip, &lcl_addr, sizeof (ip46_address_t));
711  tc->c_rmt_port = rmt->port;
712  tc->c_lcl_port = clib_host_to_net_u16 (lcl_port);
713  tc->c_is_ip4 = rmt->is_ip4;
714  tc->c_transport_proto = TRANSPORT_PROTO_TCP;
715  tc->c_vrf = rmt->vrf;
716  /* The other connection vars will be initialized after SYN ACK */
718 
719  TCP_EVT_DBG (TCP_EVT_OPEN, tc);
720  tc->state = TCP_STATE_SYN_SENT;
721  tcp_init_snd_vars (tc);
722  tcp_send_syn (tc);
723  clib_spinlock_unlock_if_init (&tm->half_open_lock);
724 
725  return tc->c_c_index;
726 }
727 
728 int
730 {
731  return tcp_connection_open (tep);
732 }
733 
734 const char *tcp_dbg_evt_str[] = {
735 #define _(sym, str) str,
737 #undef _
738 };
739 
740 const char *tcp_fsm_states[] = {
741 #define _(sym, str) str,
743 #undef _
744 };
745 
746 u8 *
747 format_tcp_state (u8 * s, va_list * args)
748 {
749  u32 state = va_arg (*args, u32);
750 
751  if (state < TCP_N_STATES)
752  s = format (s, "%s", tcp_fsm_states[state]);
753  else
754  s = format (s, "UNKNOWN (%d (0x%x))", state, state);
755  return s;
756 }
757 
758 const char *tcp_conn_timers[] = {
759 #define _(sym, str) str,
761 #undef _
762 };
763 
764 u8 *
765 format_tcp_timers (u8 * s, va_list * args)
766 {
767  tcp_connection_t *tc = va_arg (*args, tcp_connection_t *);
768  int i, last = -1;
769 
770  for (i = 0; i < TCP_N_TIMERS; i++)
771  if (tc->timers[i] != TCP_TIMER_HANDLE_INVALID)
772  last = i;
773 
774  s = format (s, "[");
775  for (i = 0; i < last; i++)
776  {
777  if (tc->timers[i] != TCP_TIMER_HANDLE_INVALID)
778  s = format (s, "%s,", tcp_conn_timers[i]);
779  }
780 
781  if (last >= 0)
782  s = format (s, "%s]", tcp_conn_timers[i]);
783  else
784  s = format (s, "]");
785 
786  return s;
787 }
788 
789 u8 *
790 format_tcp_congestion_status (u8 * s, va_list * args)
791 {
792  tcp_connection_t *tc = va_arg (*args, tcp_connection_t *);
793  if (tcp_in_recovery (tc))
794  s = format (s, "recovery");
795  else if (tcp_in_fastrecovery (tc))
796  s = format (s, "fastrecovery");
797  else
798  s = format (s, "none");
799  return s;
800 }
801 
802 u8 *
803 format_tcp_vars (u8 * s, va_list * args)
804 {
805  tcp_connection_t *tc = va_arg (*args, tcp_connection_t *);
806  s = format (s, " snd_una %u snd_nxt %u snd_una_max %u",
807  tc->snd_una - tc->iss, tc->snd_nxt - tc->iss,
808  tc->snd_una_max - tc->iss);
809  s = format (s, " rcv_nxt %u rcv_las %u\n",
810  tc->rcv_nxt - tc->irs, tc->rcv_las - tc->irs);
811  s = format (s, " snd_wnd %u rcv_wnd %u snd_wl1 %u snd_wl2 %u\n",
812  tc->snd_wnd, tc->rcv_wnd, tc->snd_wl1 - tc->irs,
813  tc->snd_wl2 - tc->iss);
814  s = format (s, " flight size %u send space %u rcv_wnd_av %d\n",
816  tcp_rcv_wnd_available (tc));
817  s = format (s, " cong %U ", format_tcp_congestion_status, tc);
818  s = format (s, "cwnd %u ssthresh %u rtx_bytes %u bytes_acked %u\n",
819  tc->cwnd, tc->ssthresh, tc->snd_rxt_bytes, tc->bytes_acked);
820  s = format (s, " prev_ssthresh %u snd_congestion %u dupack %u",
821  tc->prev_ssthresh, tc->snd_congestion - tc->iss,
822  tc->rcv_dupacks);
823  s = format (s, " limited_transmit %u\n", tc->limited_transmit - tc->iss);
824  s = format (s, " tsecr %u tsecr_last_ack %u\n", tc->rcv_opts.tsecr,
825  tc->tsecr_last_ack);
826  s = format (s, " rto %u rto_boff %u srtt %u rttvar %u rtt_ts %u ", tc->rto,
827  tc->rto_boff, tc->srtt, tc->rttvar, tc->rtt_ts);
828  s = format (s, "rtt_seq %u\n", tc->rtt_seq);
829  s = format (s, " tsval_recent %u tsval_recent_age %u\n", tc->tsval_recent,
830  tcp_time_now () - tc->tsval_recent_age);
831  if (tc->state >= TCP_STATE_ESTABLISHED)
832  s = format (s, " scoreboard: %U\n", format_tcp_scoreboard, &tc->sack_sb,
833  tc);
834  if (vec_len (tc->snd_sacks))
835  s = format (s, " sacks tx: %U\n", format_tcp_sacks, tc);
836 
837  return s;
838 }
839 
840 u8 *
841 format_tcp_connection_id (u8 * s, va_list * args)
842 {
843  tcp_connection_t *tc = va_arg (*args, tcp_connection_t *);
844  if (!tc)
845  return s;
846  if (tc->c_is_ip4)
847  {
848  s = format (s, "[#%d][%s] %U:%d->%U:%d", tc->c_thread_index, "T",
849  format_ip4_address, &tc->c_lcl_ip4,
850  clib_net_to_host_u16 (tc->c_lcl_port), format_ip4_address,
851  &tc->c_rmt_ip4, clib_net_to_host_u16 (tc->c_rmt_port));
852  }
853  else
854  {
855  s = format (s, "[#%d][%s] %U:%d->%U:%d", tc->c_thread_index, "T",
856  format_ip6_address, &tc->c_lcl_ip6,
857  clib_net_to_host_u16 (tc->c_lcl_port), format_ip6_address,
858  &tc->c_rmt_ip6, clib_net_to_host_u16 (tc->c_rmt_port));
859  }
860 
861  return s;
862 }
863 
864 u8 *
865 format_tcp_connection (u8 * s, va_list * args)
866 {
867  tcp_connection_t *tc = va_arg (*args, tcp_connection_t *);
868  u32 verbose = va_arg (*args, u32);
869 
870  if (!tc)
871  return s;
872  s = format (s, "%-50U", format_tcp_connection_id, tc);
873  if (verbose)
874  {
875  s = format (s, "%-15U", format_tcp_state, tc->state);
876  if (verbose > 1)
877  s = format (s, " %U\n%U", format_tcp_timers, tc, format_tcp_vars, tc);
878  }
879 
880  return s;
881 }
882 
883 u8 *
884 format_tcp_session (u8 * s, va_list * args)
885 {
886  u32 tci = va_arg (*args, u32);
887  u32 thread_index = va_arg (*args, u32);
888  u32 verbose = va_arg (*args, u32);
889  tcp_connection_t *tc;
890 
891  tc = tcp_connection_get (tci, thread_index);
892  if (tc)
893  s = format (s, "%U", format_tcp_connection, tc, verbose);
894  else
895  s = format (s, "empty\n");
896  return s;
897 }
898 
899 u8 *
900 format_tcp_listener_session (u8 * s, va_list * args)
901 {
902  u32 tci = va_arg (*args, u32);
904  return format (s, "%U", format_tcp_connection_id, tc);
905 }
906 
907 u8 *
908 format_tcp_half_open_session (u8 * s, va_list * args)
909 {
910  u32 tci = va_arg (*args, u32);
912  return format (s, "%U", format_tcp_connection_id, tc);
913 }
914 
915 u8 *
916 format_tcp_sacks (u8 * s, va_list * args)
917 {
918  tcp_connection_t *tc = va_arg (*args, tcp_connection_t *);
919  sack_block_t *sacks = tc->snd_sacks;
920  sack_block_t *block;
921  int i, len = 0;
922 
923  len = vec_len (sacks);
924  for (i = 0; i < len - 1; i++)
925  {
926  block = &sacks[i];
927  s = format (s, " start %u end %u\n", block->start - tc->irs,
928  block->end - tc->irs);
929  }
930  if (len)
931  {
932  block = &sacks[len - 1];
933  s = format (s, " start %u end %u", block->start - tc->irs,
934  block->end - tc->irs);
935  }
936  return s;
937 }
938 
939 u8 *
940 format_tcp_rcv_sacks (u8 * s, va_list * args)
941 {
942  tcp_connection_t *tc = va_arg (*args, tcp_connection_t *);
943  sack_block_t *sacks = tc->rcv_opts.sacks;
944  sack_block_t *block;
945  int i, len = 0;
946 
947  len = vec_len (sacks);
948  for (i = 0; i < len - 1; i++)
949  {
950  block = &sacks[i];
951  s = format (s, " start %u end %u\n", block->start - tc->iss,
952  block->end - tc->iss);
953  }
954  if (len)
955  {
956  block = &sacks[len - 1];
957  s = format (s, " start %u end %u", block->start - tc->iss,
958  block->end - tc->iss);
959  }
960  return s;
961 }
962 
963 u8 *
964 format_tcp_sack_hole (u8 * s, va_list * args)
965 {
966  sack_scoreboard_hole_t *hole = va_arg (*args, sack_scoreboard_hole_t *);
967  tcp_connection_t *tc = va_arg (*args, tcp_connection_t *);
968  if (tc)
969  s = format (s, " [%u, %u]", hole->start - tc->iss, hole->end - tc->iss);
970  else
971  s = format (s, " [%u, %u]", hole->start, hole->end);
972  return s;
973 }
974 
975 u8 *
976 format_tcp_scoreboard (u8 * s, va_list * args)
977 {
978  sack_scoreboard_t *sb = va_arg (*args, sack_scoreboard_t *);
979  tcp_connection_t *tc = va_arg (*args, tcp_connection_t *);
981  s = format (s, "sacked_bytes %u last_sacked_bytes %u lost_bytes %u\n",
982  sb->sacked_bytes, sb->last_sacked_bytes, sb->lost_bytes);
983  s = format (s, " last_bytes_delivered %u high_sacked %u snd_una_adv %u\n",
984  sb->last_bytes_delivered, sb->high_sacked, sb->snd_una_adv);
985  s = format (s, " cur_rxt_hole %u high_rxt %u rescue_rxt %u",
986  sb->cur_rxt_hole, sb->high_rxt, sb->rescue_rxt);
987 
988  hole = scoreboard_first_hole (sb);
989  if (hole)
990  s = format (s, "\n head %u tail %u holes:\n", sb->head, sb->tail);
991 
992  while (hole)
993  {
994  s = format (s, "%U", format_tcp_sack_hole, hole, tc);
995  hole = scoreboard_next_hole (sb, hole);
996  }
997 
998  return s;
999 }
1000 
1002 tcp_session_get_transport (u32 conn_index, u32 thread_index)
1003 {
1004  tcp_connection_t *tc = tcp_connection_get (conn_index, thread_index);
1005  return &tc->connection;
1006 }
1007 
1010 {
1012  return &tc->connection;
1013 }
1014 
1015 /**
1016  * Compute maximum segment size for session layer.
1017  *
1018  * Since the result needs to be the actual data length, it first computes
1019  * the tcp options to be used in the next burst and subtracts their
1020  * length from the connection's snd_mss.
1021  */
1022 u16
1024 {
1025  tcp_connection_t *tc = (tcp_connection_t *) trans_conn;
1026 
1027  /* Ensure snd_mss does accurately reflect the amount of data we can push
1028  * in a segment. This also makes sure that options are updated according to
1029  * the current state of the connection. */
1030  tcp_update_snd_mss (tc);
1031 
1032  return tc->snd_mss;
1033 }
1034 
1037 {
1038  if (PREDICT_FALSE (tc->snd_wnd < tc->snd_mss))
1039  {
1040  return tc->snd_wnd <= snd_space ? tc->snd_wnd : 0;
1041  }
1042 
1043  /* If not snd_wnd constrained and we can't write at least a segment,
1044  * don't try at all */
1045  if (PREDICT_FALSE (snd_space < tc->snd_mss))
1046  return snd_space < tc->cwnd ? 0 : snd_space;
1047 
1048  /* round down to mss multiple */
1049  return snd_space - (snd_space % tc->snd_mss);
1050 }
1051 
1052 /**
1053  * Compute tx window session is allowed to fill.
1054  *
1055  * Takes into account available send space, snd_mss and the congestion
1056  * state of the connection. If possible, the value returned is a multiple
1057  * of snd_mss.
1058  *
1059  * @param tc tcp connection
1060  * @return number of bytes session is allowed to write
1061  */
1062 u32
1064 {
1065  int snd_space, snt_limited;
1066 
1067  if (PREDICT_TRUE (tcp_in_cong_recovery (tc) == 0))
1068  {
1069  snd_space = tcp_available_output_snd_space (tc);
1070 
1071  /* If we haven't gotten dupacks or if we did and have gotten sacked
1072  * bytes then we can still send as per Limited Transmit (RFC3042) */
1073  if (PREDICT_FALSE (tc->rcv_dupacks != 0
1074  && (tcp_opts_sack_permitted (tc)
1075  && tc->sack_sb.last_sacked_bytes == 0)))
1076  {
1077  if (tc->rcv_dupacks == 1 && tc->limited_transmit != tc->snd_nxt)
1078  tc->limited_transmit = tc->snd_nxt;
1079  ASSERT (seq_leq (tc->limited_transmit, tc->snd_nxt));
1080 
1081  snt_limited = tc->snd_nxt - tc->limited_transmit;
1082  snd_space = clib_max (2 * tc->snd_mss - snt_limited, 0);
1083  }
1084  return tcp_round_snd_space (tc, snd_space);
1085  }
1086 
1087  if (tcp_in_recovery (tc))
1088  {
1089  tc->snd_nxt = tc->snd_una_max;
1090  snd_space = tcp_available_snd_wnd (tc) - tc->snd_rxt_bytes
1091  - (tc->snd_una_max - tc->snd_congestion);
1092  if (snd_space <= 0 || (tc->snd_una_max - tc->snd_una) >= tc->snd_wnd)
1093  return 0;
1094  return tcp_round_snd_space (tc, snd_space);
1095  }
1096 
1097  /* RFC 5681: When previously unsent data is available and the new value of
1098  * cwnd and the receiver's advertised window allow, a TCP SHOULD send 1*SMSS
1099  * bytes of previously unsent data. */
1101  {
1102  if (tcp_available_output_snd_space (tc) < tc->snd_mss)
1103  return 0;
1105  return tc->snd_mss;
1106  }
1107 
1108  return 0;
1109 }
1110 
1111 u32
1113 {
1114  tcp_connection_t *tc = (tcp_connection_t *) trans_conn;
1115  return clib_min (tcp_snd_space (tc),
1116  tc->snd_wnd - (tc->snd_nxt - tc->snd_una));
1117 }
1118 
1119 i32
1121 {
1122  return (i32) tc->rcv_wnd - (tc->rcv_nxt - tc->rcv_las);
1123 }
1124 
1125 u32
1127 {
1128  tcp_connection_t *tc = (tcp_connection_t *) trans_conn;
1129 
1130  ASSERT (seq_geq (tc->snd_nxt, tc->snd_una));
1131 
1132  /* This still works if fast retransmit is on */
1133  return (tc->snd_nxt - tc->snd_una);
1134 }
1135 
1136 /* *INDENT-OFF* */
1138  .bind = tcp_session_bind,
1139  .unbind = tcp_session_unbind,
1140  .push_header = tcp_push_header,
1141  .get_connection = tcp_session_get_transport,
1142  .get_listener = tcp_session_get_listener,
1143  .get_half_open = tcp_half_open_session_get_transport,
1144  .open = tcp_session_open,
1145  .close = tcp_session_close,
1146  .cleanup = tcp_session_cleanup,
1147  .send_mss = tcp_session_send_mss,
1148  .send_space = tcp_session_send_space,
1149  .tx_fifo_offset = tcp_session_tx_fifo_offset,
1150  .format_connection = format_tcp_session,
1151  .format_listener = format_tcp_listener_session,
1152  .format_half_open = format_tcp_half_open_session,
1153 };
1154 /* *INDENT-ON* */
1155 
1156 void
1158 {
1159  u32 thread_index = vlib_get_thread_index ();
1160  tcp_connection_t *tc;
1161 
1162  tc = tcp_connection_get (conn_index, thread_index);
1163  tc->timers[TCP_TIMER_KEEP] = TCP_TIMER_HANDLE_INVALID;
1164 
1165  tcp_connection_close (tc);
1166 }
1167 
1168 void
1170 {
1171  tcp_connection_t *tc;
1172 
1173  tc = tcp_half_open_connection_get (conn_index);
1174  if (tc)
1175  {
1176  ASSERT (tc->state == TCP_STATE_SYN_SENT);
1177  stream_session_connect_notify (&tc->connection, 1 /* fail */ );
1178  TCP_DBG ("establish pop: %U", format_tcp_connection, tc, 2);
1179  }
1180  else
1181  {
1182  tc = tcp_connection_get (conn_index, vlib_get_thread_index ());
1183  /* note: the connection may have already disappeared */
1184  if (PREDICT_FALSE (tc == 0))
1185  return;
1186  TCP_DBG ("establish pop: %U", format_tcp_connection, tc, 2);
1187  ASSERT (tc->state == TCP_STATE_SYN_RCVD);
1188  /* Start cleanup. App wasn't notified yet so use delete notify as
1189  * opposed to delete to cleanup session layer state. */
1190  stream_session_delete_notify (&tc->connection);
1191  }
1192  tc->timers[TCP_TIMER_ESTABLISH] = TCP_TIMER_HANDLE_INVALID;
1194 }
1195 
1196 void
1198 {
1199  u32 thread_index = vlib_get_thread_index ();
1200  tcp_connection_t *tc;
1201 
1202  tc = tcp_connection_get (conn_index, thread_index);
1203  if (!tc)
1204  return;
1205  tc->timers[TCP_TIMER_WAITCLOSE] = TCP_TIMER_HANDLE_INVALID;
1206 
1207  /* Session didn't come back with a close(). Send FIN either way
1208  * and switch to LAST_ACK. */
1209  if (tc->state == TCP_STATE_CLOSE_WAIT)
1210  {
1211  if (tc->flags & TCP_CONN_FINSNT)
1212  {
1213  clib_warning ("FIN was sent and still in CLOSE WAIT. Weird!");
1214  }
1215 
1216  tcp_send_fin (tc);
1217  tc->state = TCP_STATE_LAST_ACK;
1218 
1219  /* Make sure we don't wait in LAST ACK forever */
1220  tcp_timer_set (tc, TCP_TIMER_WAITCLOSE, TCP_2MSL_TIME);
1221 
1222  /* Don't delete the connection yet */
1223  return;
1224  }
1225 
1226  tcp_connection_del (tc);
1227 }
1228 
1229 /* *INDENT-OFF* */
1231 {
1239 };
1240 /* *INDENT-ON* */
1241 
1242 static void
1244 {
1245  int i;
1246  u32 connection_index, timer_id;
1247 
1248  for (i = 0; i < vec_len (expired_timers); i++)
1249  {
1250  /* Get session index and timer id */
1251  connection_index = expired_timers[i] & 0x0FFFFFFF;
1252  timer_id = expired_timers[i] >> 28;
1253 
1254  TCP_EVT_DBG (TCP_EVT_TIMER_POP, connection_index, timer_id);
1255 
1256  /* Handle expiration */
1257  (*timer_expiration_handlers[timer_id]) (connection_index);
1258  }
1259 }
1260 
1261 void
1263 {
1264  tw_timer_wheel_16t_2w_512sl_t *tw;
1265  /* *INDENT-OFF* */
1266  foreach_vlib_main (({
1267  tw = &tm->timer_wheels[ii];
1268  tw_timer_wheel_init_16t_2w_512sl (tw, tcp_expired_timers_dispatch,
1269  100e-3 /* timer period 100ms */ , ~0);
1270  tw->last_run_time = vlib_time_now (this_vlib_main);
1271  }));
1272  /* *INDENT-ON* */
1273 }
1274 
1275 clib_error_t *
1277 {
1278  tcp_main_t *tm = vnet_get_tcp_main ();
1279  ip_protocol_info_t *pi;
1280  ip_main_t *im = &ip_main;
1282  clib_error_t *error = 0;
1283  u32 num_threads;
1284  int thread;
1285  tcp_connection_t *tc __attribute__ ((unused));
1286  u32 preallocated_connections_per_thread;
1287 
1288  if ((error = vlib_call_init_function (vm, ip_main_init)))
1289  return error;
1290  if ((error = vlib_call_init_function (vm, ip4_lookup_init)))
1291  return error;
1292  if ((error = vlib_call_init_function (vm, ip6_lookup_init)))
1293  return error;
1294 
1295  /*
1296  * Registrations
1297  */
1298 
1299  /* Register with IP */
1300  pi = ip_get_protocol_info (im, IP_PROTOCOL_TCP);
1301  if (pi == 0)
1302  return clib_error_return (0, "TCP protocol info AWOL");
1305 
1306  ip4_register_protocol (IP_PROTOCOL_TCP, tcp4_input_node.index);
1307  ip6_register_protocol (IP_PROTOCOL_TCP, tcp6_input_node.index);
1308 
1309  /* Register as transport with session layer */
1312 
1313  /*
1314  * Initialize data structures
1315  */
1316 
1317  num_threads = 1 /* main thread */ + vtm->n_threads;
1318  vec_validate (tm->connections, num_threads - 1);
1319 
1320  /*
1321  * Preallocate connections. Assume that thread 0 won't
1322  * use preallocated threads when running multi-core
1323  */
1324  if (num_threads == 1)
1325  {
1326  thread = 0;
1327  preallocated_connections_per_thread = tm->preallocated_connections;
1328  }
1329  else
1330  {
1331  thread = 1;
1332  preallocated_connections_per_thread =
1333  tm->preallocated_connections / (num_threads - 1);
1334  }
1335  for (; thread < num_threads; thread++)
1336  {
1337  if (preallocated_connections_per_thread)
1338  pool_init_fixed (tm->connections[thread],
1339  preallocated_connections_per_thread);
1340  }
1341 
1342  /*
1343  * Use a preallocated half-open connection pool?
1344  */
1345  if (tm->preallocated_half_open_connections)
1346  pool_init_fixed (tm->half_open_connections,
1347  tm->preallocated_half_open_connections);
1348 
1349  /* Initialize per worker thread tx buffers (used for control messages) */
1350  vec_validate (tm->tx_buffers, num_threads - 1);
1351 
1352  /* Initialize timer wheels */
1353  vec_validate (tm->timer_wheels, num_threads - 1);
1355 
1356  /* Initialize clocks per tick for TCP timestamp. Used to compute
1357  * monotonically increasing timestamps. */
1358  tm->tstamp_ticks_per_clock = vm->clib_time.seconds_per_clock
1360 
1361  if (tm->local_endpoints_table_buckets == 0)
1362  tm->local_endpoints_table_buckets = 250000;
1363  if (tm->local_endpoints_table_memory == 0)
1364  tm->local_endpoints_table_memory = 512 << 20;
1365 
1366  clib_bihash_init_24_8 (&tm->local_endpoints_table, "local endpoint table",
1367  tm->local_endpoints_table_buckets,
1368  tm->local_endpoints_table_memory);
1369 
1370  /* Initialize [port-allocator] random number seed */
1371  tm->port_allocator_seed = (u32) clib_cpu_time_now ();
1372 
1373  if (num_threads > 1)
1374  {
1375  clib_spinlock_init (&tm->half_open_lock);
1376  clib_spinlock_init (&tm->local_endpoints_lock);
1377  }
1378 
1379  vec_validate (tm->tx_frames[0], num_threads - 1);
1380  vec_validate (tm->tx_frames[1], num_threads - 1);
1381  vec_validate (tm->ip_lookup_tx_frames[0], num_threads - 1);
1382  vec_validate (tm->ip_lookup_tx_frames[1], num_threads - 1);
1383 
1384  tm->bytes_per_buffer = vlib_buffer_free_list_buffer_size
1386 
1387  vec_validate (tm->time_now, num_threads - 1);
1388  return error;
1389 }
1390 
1391 clib_error_t *
1393 {
1394  if (is_en)
1395  {
1396  if (tcp_main.is_enabled)
1397  return 0;
1398 
1399  return tcp_main_enable (vm);
1400  }
1401  else
1402  {
1403  tcp_main.is_enabled = 0;
1404  }
1405 
1406  return 0;
1407 }
1408 
1409 void
1410 tcp_punt_unknown (vlib_main_t * vm, u8 is_ip4, u8 is_add)
1411 {
1412  tcp_main_t *tm = &tcp_main;
1413  if (is_ip4)
1414  tm->punt_unknown4 = is_add;
1415  else
1416  tm->punt_unknown6 = is_add;
1417 }
1418 
1419 clib_error_t *
1421 {
1422  tcp_main_t *tm = vnet_get_tcp_main ();
1423  tm->is_enabled = 0;
1424  tcp_api_reference ();
1425  return 0;
1426 }
1427 
1429 
1430 static clib_error_t *
1432 {
1433  tcp_main_t *tm = vnet_get_tcp_main ();
1434  u64 tmp;
1435 
1436  while (unformat_check_input (input) != UNFORMAT_END_OF_INPUT)
1437  {
1438  if (unformat
1439  (input, "preallocated-connections %d",
1440  &tm->preallocated_connections))
1441  ;
1442  else if (unformat (input, "preallocated-half-open-connections %d",
1443  &tm->preallocated_half_open_connections))
1444  ;
1445  else if (unformat (input, "local-endpoints-table-memory %U",
1446  unformat_memory_size, &tmp))
1447  {
1448  if (tmp >= 0x100000000)
1449  return clib_error_return (0, "memory size %llx (%lld) too large",
1450  tmp, tmp);
1451  tm->local_endpoints_table_memory = tmp;
1452  }
1453  else if (unformat (input, "local-endpoints-table-buckets %d",
1454  &tm->local_endpoints_table_buckets))
1455  ;
1456 
1457 
1458  else
1459  return clib_error_return (0, "unknown input `%U'",
1460  format_unformat_error, input);
1461  }
1462  return 0;
1463 }
1464 
1466 
1467 
1468 /**
1469  * \brief Configure an ipv4 source address range
1470  * @param vm vlib_main_t pointer
1471  * @param start first ipv4 address in the source address range
1472  * @param end last ipv4 address in the source address range
1473  * @param table_id VRF / table ID, 0 for the default FIB
1474  * @return 0 if all OK, else an error indication from api_errno.h
1475  */
1476 
1477 int
1479  ip4_address_t * start,
1480  ip4_address_t * end, u32 table_id)
1481 {
1482  tcp_main_t *tm = vnet_get_tcp_main ();
1483  vnet_main_t *vnm = vnet_get_main ();
1484  u32 start_host_byte_order, end_host_byte_order;
1485  fib_prefix_t prefix;
1486  vnet_sw_interface_t *si;
1487  fib_node_index_t fei;
1488  u32 fib_index = 0;
1489  u32 sw_if_index;
1490  int rv;
1491  int vnet_proxy_arp_add_del (ip4_address_t * lo_addr,
1492  ip4_address_t * hi_addr, u32 fib_index,
1493  int is_del);
1494 
1495  memset (&prefix, 0, sizeof (prefix));
1496 
1497  fib_index = fib_table_find (FIB_PROTOCOL_IP4, table_id);
1498 
1499  if (fib_index == ~0)
1500  return VNET_API_ERROR_NO_SUCH_FIB;
1501 
1502  start_host_byte_order = clib_net_to_host_u32 (start->as_u32);
1503  end_host_byte_order = clib_net_to_host_u32 (end->as_u32);
1504 
1505  /* sanity check for reversed args or some such */
1506  if ((end_host_byte_order - start_host_byte_order) > (10 << 10))
1507  return VNET_API_ERROR_INVALID_ARGUMENT;
1508 
1509  /* Lookup the last address, to identify the interface involved */
1510  prefix.fp_len = 32;
1511  prefix.fp_proto = FIB_PROTOCOL_IP4;
1512  memcpy (&prefix.fp_addr.ip4, end, sizeof (ip4_address_t));
1513 
1514  fei = fib_table_lookup (fib_index, &prefix);
1515 
1516  /* Couldn't find route to destination. Bail out. */
1517  if (fei == FIB_NODE_INDEX_INVALID)
1518  return VNET_API_ERROR_NEXT_HOP_NOT_IN_FIB;
1519 
1520  sw_if_index = fib_entry_get_resolving_interface (fei);
1521 
1522  /* Enable proxy arp on the interface */
1523  si = vnet_get_sw_interface (vnm, sw_if_index);
1525 
1526  /* Configure proxy arp across the range */
1527  rv = vnet_proxy_arp_add_del (start, end, fib_index, 0 /* is_del */ );
1528 
1529  if (rv)
1530  return rv;
1531 
1532  do
1533  {
1534  dpo_id_t dpo = DPO_INVALID;
1535 
1536  vec_add1 (tm->ip4_src_addresses, start[0]);
1537 
1538  /* Add local adjacencies for the range */
1539 
1540  receive_dpo_add_or_lock (DPO_PROTO_IP4, ~0 /* sw_if_index */ ,
1541  NULL, &dpo);
1542  prefix.fp_len = 32;
1543  prefix.fp_proto = FIB_PROTOCOL_IP4;
1544  prefix.fp_addr.ip4.as_u32 = start->as_u32;
1545 
1547  &prefix,
1549  FIB_ENTRY_FLAG_EXCLUSIVE, &dpo);
1550  dpo_reset (&dpo);
1551 
1552  start_host_byte_order++;
1553  start->as_u32 = clib_host_to_net_u32 (start_host_byte_order);
1554  }
1555  while (start_host_byte_order <= end_host_byte_order);
1556 
1557  return 0;
1558 }
1559 
1560 /**
1561  * \brief Configure an ipv6 source address range
1562  * @param vm vlib_main_t pointer
1563  * @param start first ipv6 address in the source address range
1564  * @param end last ipv6 address in the source address range
1565  * @param table_id VRF / table ID, 0 for the default FIB
1566  * @return 0 if all OK, else an error indication from api_errno.h
1567  */
1568 
1569 int
1571  ip6_address_t * start,
1572  ip6_address_t * end, u32 table_id)
1573 {
1574  tcp_main_t *tm = vnet_get_tcp_main ();
1575  fib_prefix_t prefix;
1576  u32 fib_index = 0;
1577  fib_node_index_t fei;
1578  u32 sw_if_index;
1579 
1580  memset (&prefix, 0, sizeof (prefix));
1581 
1582  fib_index = fib_table_find (FIB_PROTOCOL_IP6, table_id);
1583 
1584  if (fib_index == ~0)
1585  return VNET_API_ERROR_NO_SUCH_FIB;
1586 
1587  while (1)
1588  {
1589  int i;
1590  ip6_address_t tmp;
1591  dpo_id_t dpo = DPO_INVALID;
1592 
1593  /* Remember this address */
1594  vec_add1 (tm->ip6_src_addresses, start[0]);
1595 
1596  /* Lookup the prefix, to identify the interface involved */
1597  prefix.fp_len = 128;
1598  prefix.fp_proto = FIB_PROTOCOL_IP6;
1599  memcpy (&prefix.fp_addr.ip6, start, sizeof (ip6_address_t));
1600 
1601  fei = fib_table_lookup (fib_index, &prefix);
1602 
1603  /* Couldn't find route to destination. Bail out. */
1604  if (fei == FIB_NODE_INDEX_INVALID)
1605  return VNET_API_ERROR_NEXT_HOP_NOT_IN_FIB;
1606 
1607  sw_if_index = fib_entry_get_resolving_interface (fei);
1608 
1609  if (sw_if_index == (u32) ~ 0)
1610  return VNET_API_ERROR_NO_MATCHING_INTERFACE;
1611 
1612  /* Add a proxy neighbor discovery entry for this address */
1613  ip6_neighbor_proxy_add_del (sw_if_index, start, 0 /* is_del */ );
1614 
1615  /* Add a receive adjacency for this address */
1616  receive_dpo_add_or_lock (DPO_PROTO_IP6, ~0 /* sw_if_index */ ,
1617  NULL, &dpo);
1618 
1620  &prefix,
1622  FIB_ENTRY_FLAG_EXCLUSIVE, &dpo);
1623  dpo_reset (&dpo);
1624 
1625  /* Done with the entire range? */
1626  if (!memcmp (start, end, sizeof (start[0])))
1627  break;
1628 
1629  /* Increment the address. DGMS. */
1630  tmp = start[0];
1631  for (i = 15; i >= 0; i--)
1632  {
1633  tmp.as_u8[i] += 1;
1634  if (tmp.as_u8[i] != 0)
1635  break;
1636  }
1637  start[0] = tmp;
1638  }
1639  return 0;
1640 }
1641 
1642 static clib_error_t *
1644  unformat_input_t * input, vlib_cli_command_t * cmd_arg)
1645 {
1646  ip4_address_t v4start, v4end;
1647  ip6_address_t v6start, v6end;
1648  u32 table_id = 0;
1649  int v4set = 0;
1650  int v6set = 0;
1651  int rv;
1652 
1653  while (unformat_check_input (input) != UNFORMAT_END_OF_INPUT)
1654  {
1655  if (unformat (input, "%U - %U", unformat_ip4_address, &v4start,
1656  unformat_ip4_address, &v4end))
1657  v4set = 1;
1658  else if (unformat (input, "%U", unformat_ip4_address, &v4start))
1659  {
1660  memcpy (&v4end, &v4start, sizeof (v4start));
1661  v4set = 1;
1662  }
1663  else if (unformat (input, "%U - %U", unformat_ip6_address, &v6start,
1664  unformat_ip6_address, &v6end))
1665  v6set = 1;
1666  else if (unformat (input, "%U", unformat_ip6_address, &v6start))
1667  {
1668  memcpy (&v6end, &v6start, sizeof (v6start));
1669  v6set = 1;
1670  }
1671  else if (unformat (input, "fib-table %d", &table_id))
1672  ;
1673  else
1674  break;
1675  }
1676 
1677  if (!v4set && !v6set)
1678  return clib_error_return (0, "at least one v4 or v6 address required");
1679 
1680  if (v4set)
1681  {
1682  rv = tcp_configure_v4_source_address_range (vm, &v4start, &v4end,
1683  table_id);
1684  switch (rv)
1685  {
1686  case 0:
1687  break;
1688 
1689  case VNET_API_ERROR_NO_SUCH_FIB:
1690  return clib_error_return (0, "Invalid table-id %d", table_id);
1691 
1692  case VNET_API_ERROR_INVALID_ARGUMENT:
1693  return clib_error_return (0, "Invalid address range %U - %U",
1694  format_ip4_address, &v4start,
1695  format_ip4_address, &v4end);
1696  default:
1697  return clib_error_return (0, "error %d", rv);
1698  break;
1699  }
1700  }
1701  if (v6set)
1702  {
1703  rv = tcp_configure_v6_source_address_range (vm, &v6start, &v6end,
1704  table_id);
1705  switch (rv)
1706  {
1707  case 0:
1708  break;
1709 
1710  case VNET_API_ERROR_NO_SUCH_FIB:
1711  return clib_error_return (0, "Invalid table-id %d", table_id);
1712 
1713  default:
1714  return clib_error_return (0, "error %d", rv);
1715  break;
1716  }
1717  }
1718  return 0;
1719 }
1720 
1721 /* *INDENT-OFF* */
1722 VLIB_CLI_COMMAND (tcp_src_address_command, static) =
1723 {
1724  .path = "tcp src-address",
1725  .short_help = "tcp src-address <ip-addr> [- <ip-addr>] add src address range",
1726  .function = tcp_src_address,
1727 };
1728 /* *INDENT-ON* */
1729 
1730 static u8 *
1732 {
1733 #if TCP_SCOREBOARD_TRACE
1734 
1735  scoreboard_trace_elt_t *block;
1736  int i = 0;
1737 
1738  if (!sb->trace)
1739  return s;
1740 
1741  s = format (s, "scoreboard trace:");
1742  vec_foreach (block, sb->trace)
1743  {
1744  s = format (s, "{%u, %u, %u, %u, %u}, ", block->start, block->end,
1745  block->ack, block->snd_una_max, block->group);
1746  if ((++i % 3) == 0)
1747  s = format (s, "\n");
1748  }
1749  return s;
1750 #else
1751  return 0;
1752 #endif
1753 }
1754 
1755 static clib_error_t *
1757  vlib_cli_command_t * cmd_arg)
1758 {
1759  transport_connection_t *tconn = 0;
1760  tcp_connection_t *tc;
1761  u8 *s = 0;
1762  while (unformat_check_input (input) != UNFORMAT_END_OF_INPUT)
1763  {
1764  if (unformat (input, "%U", unformat_transport_connection, &tconn,
1766  ;
1767  else
1768  return clib_error_return (0, "unknown input `%U'",
1769  format_unformat_error, input);
1770  }
1771 
1772  if (!TCP_SCOREBOARD_TRACE)
1773  {
1774  vlib_cli_output (vm, "scoreboard tracing not enabled");
1775  return 0;
1776  }
1777 
1778  tc = tcp_get_connection_from_transport (tconn);
1779  s = tcp_scoreboard_dump_trace (s, &tc->sack_sb);
1780  vlib_cli_output (vm, "%v", s);
1781  return 0;
1782 }
1783 
1784 /* *INDENT-OFF* */
1785 VLIB_CLI_COMMAND (tcp_show_scoreboard_trace_command, static) =
1786 {
1787  .path = "show tcp scoreboard trace",
1788  .short_help = "show tcp scoreboard trace <connection>",
1789  .function = tcp_show_scoreboard_trace_fn,
1790 };
1791 /* *INDENT-ON* */
1792 
1793 u8 *
1795 {
1796  int i, trace_len;
1798  u32 next_ack, left, group, has_new_ack = 0;
1799  tcp_connection_t _dummy_tc, *dummy_tc = &_dummy_tc;
1800  sack_block_t *block;
1801 
1802  if (!tc)
1803  return s;
1804 
1805  memset (dummy_tc, 0, sizeof (*dummy_tc));
1806  tcp_connection_timers_init (dummy_tc);
1807  scoreboard_init (&dummy_tc->sack_sb);
1808  dummy_tc->rcv_opts.flags |= TCP_OPTS_FLAG_SACK;
1809 
1810 #if TCP_SCOREBOARD_TRACE
1811  trace = tc->sack_sb.trace;
1812  trace_len = vec_len (tc->sack_sb.trace);
1813 #else
1814  trace = 0;
1815  trace_len = 0;
1816 #endif
1817 
1818  for (i = 0; i < trace_len; i++)
1819  {
1820  if (trace[i].ack != 0)
1821  {
1822  dummy_tc->snd_una = trace[i].ack - 1448;
1823  dummy_tc->snd_una_max = trace[i].ack;
1824  }
1825  }
1826 
1827  left = 0;
1828  while (left < trace_len)
1829  {
1830  group = trace[left].group;
1831  vec_reset_length (dummy_tc->rcv_opts.sacks);
1832  has_new_ack = 0;
1833  while (trace[left].group == group)
1834  {
1835  if (trace[left].ack != 0)
1836  {
1837  if (verbose)
1838  s = format (s, "Adding ack %u, snd_una_max %u, segs: ",
1839  trace[left].ack, trace[left].snd_una_max);
1840  dummy_tc->snd_una_max = trace[left].snd_una_max;
1841  next_ack = trace[left].ack;
1842  has_new_ack = 1;
1843  }
1844  else
1845  {
1846  if (verbose)
1847  s = format (s, "[%u, %u], ", trace[left].start,
1848  trace[left].end);
1849  vec_add2 (dummy_tc->rcv_opts.sacks, block, 1);
1850  block->start = trace[left].start;
1851  block->end = trace[left].end;
1852  }
1853  left++;
1854  }
1855 
1856  /* Push segments */
1857  tcp_rcv_sacks (dummy_tc, next_ack);
1858  if (has_new_ack)
1859  dummy_tc->snd_una = next_ack + dummy_tc->sack_sb.snd_una_adv;
1860 
1861  if (verbose)
1862  s = format (s, "result: %U", format_tcp_scoreboard,
1863  &dummy_tc->sack_sb);
1864 
1865  }
1866  s = format (s, "result: %U", format_tcp_scoreboard, &dummy_tc->sack_sb);
1867 
1868  return s;
1869 }
1870 
1871 static clib_error_t *
1873  vlib_cli_command_t * cmd_arg)
1874 {
1875  transport_connection_t *tconn = 0;
1876  tcp_connection_t *tc = 0;
1877  u8 *str = 0;
1878  while (unformat_check_input (input) != UNFORMAT_END_OF_INPUT)
1879  {
1880  if (unformat (input, "%U", unformat_transport_connection, &tconn,
1882  ;
1883  else
1884  return clib_error_return (0, "unknown input `%U'",
1885  format_unformat_error, input);
1886  }
1887 
1888  if (!TCP_SCOREBOARD_TRACE)
1889  {
1890  vlib_cli_output (vm, "scoreboard tracing not enabled");
1891  return 0;
1892  }
1893 
1894  tc = tcp_get_connection_from_transport (tconn);
1895  if (!tc)
1896  {
1897  vlib_cli_output (vm, "connection not found");
1898  return 0;
1899  }
1900  str = tcp_scoreboard_replay (str, tc, 1);
1901  vlib_cli_output (vm, "%v", str);
1902  return 0;
1903 }
1904 
1905 /* *INDENT-OFF* */
1906 VLIB_CLI_COMMAND (tcp_replay_scoreboard_command, static) =
1907 {
1908  .path = "tcp replay scoreboard",
1909  .short_help = "tcp replay scoreboard <connection>",
1910  .function = tcp_scoreboard_trace_fn,
1911 };
1912 /* *INDENT-ON* */
1913 
1914 static clib_error_t *
1916  vlib_cli_command_t * cmd_arg)
1917 {
1918  tcp_main_t *tm = vnet_get_tcp_main ();
1920  return clib_error_return (0, "unknown input `%U'", format_unformat_error,
1921  input);
1922  vlib_cli_output (vm, "IPv4 TCP punt: %s",
1923  tm->punt_unknown4 ? "enabled" : "disabled");
1924  vlib_cli_output (vm, "IPv6 TCP punt: %s",
1925  tm->punt_unknown6 ? "enabled" : "disabled");
1926  return 0;
1927 }
1928 /* *INDENT-OFF* */
1929 VLIB_CLI_COMMAND (show_tcp_punt_command, static) =
1930 {
1931  .path = "show tcp punt",
1932  .short_help = "show tcp punt",
1933  .function = show_tcp_punt_fn,
1934 };
1935 /* *INDENT-ON* */
1936 
1937 /*
1938  * fd.io coding-style-patch-verification: ON
1939  *
1940  * Local Variables:
1941  * eval: (c-set-style "gnu")
1942  * End:
1943  */
#define vec_validate(V, I)
Make sure vector is long enough for given index (no header, unspecified alignment) ...
Definition: vec.h:432
#define foreach_ip_interface_address(lm, a, sw_if_index, loop, body)
Definition: lookup.h:179
#define tcp_in_cong_recovery(tc)
Definition: tcp.h:330
void dpo_stack_from_node(u32 child_node_index, dpo_id_t *dpo, const dpo_id_t *parent)
Stack one DPO object on another, and thus establish a child parent relationship.
Definition: dpo.c:471
fib_protocol_t fp_proto
protocol type
Definition: fib_types.h:169
void session_register_transport(transport_proto_t transport_proto, u8 is_ip4, const transport_proto_vft_t *vft)
Register transport virtual function table.
#define TCP_2MSL_TIME
Definition: tcp.h:101
void tcp_timer_keep_handler(u32 conn_index)
Definition: tcp.c:1157
sll srl srl sll sra u16x4 i
Definition: vector_sse2.h:337
void receive_dpo_add_or_lock(dpo_proto_t proto, u32 sw_if_index, const ip46_address_t *nh_addr, dpo_id_t *dpo)
Definition: receive_dpo.c:56
An entry in a FIB table.
Definition: fib_entry.h:375
#define clib_min(x, y)
Definition: clib.h:332
const char * tcp_fsm_states[]
Definition: tcp.c:740
static clib_error_t * tcp_config_fn(vlib_main_t *vm, unformat_input_t *input)
Definition: tcp.c:1431
#define tcp_in_recovery(tc)
Definition: tcp.h:324
u8 * format_tcp_vars(u8 *s, va_list *args)
Definition: tcp.c:803
#define seq_leq(_s1, _s2)
Definition: tcp.h:533
struct _sack_block sack_block_t
u8 * format_tcp_rcv_sacks(u8 *s, va_list *args)
Definition: tcp.c:940
void ip6_register_protocol(u32 protocol, u32 node_index)
Definition: ip6_forward.c:1690
void * ip_interface_get_first_ip(u32 sw_if_index, u8 is_ip4)
Definition: tcp.c:355
struct _scoreboard_trace_elt scoreboard_trace_elt_t
static vlib_cli_command_t trace
(constructor) VLIB_CLI_COMMAND (trace)
Definition: memory_vlib.c:1296
u8 * format_tcp_sacks(u8 *s, va_list *args)
Definition: tcp.c:916
vnet_main_t * vnet_get_main(void)
Definition: misc.c:46
struct _transport_connection transport_connection_t
vlib_node_registration_t tcp4_output_node
(constructor) VLIB_REGISTER_NODE (tcp4_output_node)
Definition: tcp_output.c:1912
uword unformat_transport_connection(unformat_input_t *input, va_list *args)
Definition: session_cli.c:166
u32 tcp_session_unbind(u32 listener_index)
Definition: tcp.c:89
#define PREDICT_TRUE(x)
Definition: clib.h:98
tcp_connection_t * tcp_connection_new(u8 thread_index)
Definition: tcp.c:230
u8 as_u8[16]
Definition: ip6_packet.h:48
u32 tcp_session_bind(u32 session_index, transport_endpoint_t *tep)
Definition: tcp.c:66
#define NULL
Definition: clib.h:55
static u32 ip4_compute_flow_hash(const ip4_header_t *ip, flow_hash_config_t flow_hash_config)
Definition: ip4.h:287
struct _sack_scoreboard sack_scoreboard_t
static f64 vlib_time_now(vlib_main_t *vm)
Definition: main.h:221
static tcp_connection_t * tcp_half_open_connection_get(u32 conn_index)
Definition: tcp.h:501
flow_hash_config_t lb_hash_config
the hash config to use when selecting a bucket.
Definition: load_balance.h:128
static_always_inline void clib_spinlock_unlock_if_init(clib_spinlock_t *p)
Definition: lock.h:85
struct _tcp_main tcp_main_t
struct _transport_proto_vft transport_proto_vft_t
void tcp_connection_timers_reset(tcp_connection_t *tc)
Stop all connection timers.
Definition: tcp.c:459
vlib_node_registration_t tcp6_output_node
(constructor) VLIB_REGISTER_NODE (tcp6_output_node)
Definition: tcp_output.c:1933
void dpo_copy(dpo_id_t *dst, const dpo_id_t *src)
atomic copy a data-plane object.
Definition: dpo.c:255
#define vec_add1(V, E)
Add 1 element to end of vector (unspecified alignment).
Definition: vec.h:518
static u64 clib_cpu_time_now(void)
Definition: time.h:73
timer_expiration_handler tcp_timer_retransmit_handler
static void scoreboard_init(sack_scoreboard_t *sb)
Definition: tcp.h:889
static heap_elt_t * last(heap_header_t *h)
Definition: heap.c:53
#define vec_add2(V, P, N)
Add N elements to end of vector V, return pointer to new elements in P.
Definition: vec.h:557
int ip6_neighbor_proxy_add_del(u32 sw_if_index, ip6_address_t *addr, u8 is_del)
format_function_t format_ip46_address
Definition: format.h:61
ip_lookup_main_t lookup_main
Definition: ip4.h:97
static vnet_sw_interface_t * vnet_get_sw_interface(vnet_main_t *vnm, u32 sw_if_index)
struct _tcp_connection tcp_connection_t
u8 * format(u8 *s, const char *fmt,...)
Definition: format.c:419
clib_time_t clib_time
Definition: main.h:62
static u32 tcp_available_snd_wnd(const tcp_connection_t *tc)
Definition: tcp.h:600
Definition: ip.h:106
transport_connection_t * tcp_half_open_session_get_transport(u32 conn_index)
Definition: tcp.c:1009
static tcp_connection_t * tcp_get_connection_from_transport(transport_connection_t *tconn)
Definition: tcp.h:470
pthread_t thread[MAX_THREADS]
Definition: main.c:110
void tcp_timer_establish_handler(u32 conn_index)
Definition: tcp.c:1169
void ip4_register_protocol(u32 protocol, u32 node_index)
Definition: ip4_forward.c:1902
#define pool_get(P, E)
Allocate an object E from a pool P (unspecified alignment).
Definition: pool.h:225
struct _tcp_header tcp_header_t
u32 transport_endpoint_lookup(transport_endpoint_table_t *ht, ip46_address_t *ip, u16 port)
int tcp_half_open_connection_cleanup(tcp_connection_t *tc)
Try to cleanup half-open connection.
Definition: tcp.c:147
format_function_t format_vnet_sw_if_index_name
struct _sack_scoreboard_hole sack_scoreboard_hole_t
#define vec_reset_length(v)
Reset vector length to zero NULL-pointer tolerant.
u32 tcp_session_tx_fifo_offset(transport_connection_t *trans_conn)
Definition: tcp.c:1126
#define TCP_RTO_INIT
Definition: tcp.h:111
format_function_t format_ip4_address
Definition: format.h:79
unformat_function_t * unformat_pg_edit
Definition: ip.h:87
void transport_endpoint_table_add(transport_endpoint_table_t *ht, transport_endpoint_t *te, u32 value)
#define VNET_SW_INTERFACE_FLAG_PROXY_ARP
Definition: interface.h:577
unformat_function_t unformat_ip4_address
Definition: format.h:76
void tcp_init_snd_vars(tcp_connection_t *tc)
Initialize connection send variables.
Definition: tcp.c:569
u8 * format_tcp_connection_id(u8 *s, va_list *args)
Definition: tcp.c:841
#define VLIB_INIT_FUNCTION(x)
Definition: init.h:111
#define always_inline
Definition: clib.h:84
u16 lb_n_buckets_minus_1
number of buckets in the load-balance - 1.
Definition: load_balance.h:93
void tcp_connection_timers_init(tcp_connection_t *tc)
Initialize all connection timers as invalid.
Definition: tcp.c:442
static u32 tcp_available_output_snd_space(const tcp_connection_t *tc)
Definition: tcp.h:606
tcp_main_t tcp_main
Definition: tcp.c:29
int i32
Definition: types.h:81
static void tcp_connection_unbind(u32 listener_index)
Definition: tcp.c:72
clib_error_t * tcp_main_enable(vlib_main_t *vm)
Definition: tcp.c:1276
Aggregrate type for a prefix.
Definition: fib_types.h:160
#define clib_error_return(e, args...)
Definition: error.h:99
int tcp_connection_open(transport_endpoint_t *rmt)
Definition: tcp.c:606
unsigned long u64
Definition: types.h:89
void stream_session_delete_notify(transport_connection_t *tc)
Notification from transport that connection is being deleted.
Definition: session.c:565
static u8 * tcp_scoreboard_dump_trace(u8 *s, sack_scoreboard_t *sb)
Definition: tcp.c:1731
timer_expiration_handler tcp_timer_retransmit_syn_handler
static u32 tcp_time_now(void)
Definition: tcp.h:658
u32 tcp_snd_space(tcp_connection_t *tc)
Compute tx window session is allowed to fill.
Definition: tcp.c:1063
void tcp_half_open_connection_del(tcp_connection_t *tc)
Cleanup half-open connection.
Definition: tcp.c:127
u32 fib_table_find(fib_protocol_t proto, u32 table_id)
Get the index of the FIB for a Table-ID.
Definition: fib_table.c:1025
#define TRANSPORT_ENDPOINT_INVALID_INDEX
u16 fp_len
The mask length.
Definition: fib_types.h:164
#define vlib_call_init_function(vm, x)
Definition: init.h:162
tcp_connection_t * tcp_half_open_connection_new(void)
Definition: tcp.c:159
void tcp_api_reference(void)
Definition: tcp_api.c:109
#define TCP_EVT_DBG(_evt, _args...)
Definition: tcp_debug.h:234
fib_node_index_t fib_table_lookup(u32 fib_index, const fib_prefix_t *prefix)
Perfom a longest prefix match in the non-forwarding table.
Definition: fib_table.c:66
static u32 tcp_connection_bind(u32 session_index, transport_endpoint_t *lcl)
Definition: tcp.c:32
static void clib_spinlock_init(clib_spinlock_t *p)
Definition: lock.h:33
static void tcp_timer_set(tcp_connection_t *tc, u8 timer_id, u32 interval)
Definition: tcp.h:700
static timer_expiration_handler * timer_expiration_handlers[TCP_N_TIMERS]
Definition: tcp.c:1230
The identity of a DPO is a combination of its type and its instance number/index of objects of that t...
Definition: dpo.h:150
Definition: fib_entry.h:232
#define pool_elt_at_index(p, i)
Returns pointer to element at given index.
Definition: pool.h:458
transport_connection_t * tcp_session_get_listener(u32 listener_index)
Definition: tcp.c:96
timer_expiration_handler tcp_timer_persist_handler
static ip_protocol_info_t * ip_get_protocol_info(ip_main_t *im, u32 protocol)
Definition: ip.h:133
#define tcp_in_fastrecovery(tc)
Definition: tcp.h:323
ip46_address_t fp_addr
The address type is not deriveable from the fp_addr member.
Definition: fib_types.h:183
static transport_endpoint_t * transport_endpoint_new(void)
Definition: tcp.c:114
dpo_type_t dpoi_type
the type
Definition: dpo.h:154
format_function_t * format_header
Definition: ip.h:78
void transport_endpoint_table_del(transport_endpoint_table_t *ht, transport_endpoint_t *te)
static const dpo_id_t * load_balance_get_bucket_i(const load_balance_t *lb, u32 bucket)
Definition: load_balance.h:202
void tcp_rcv_sacks(tcp_connection_t *tc, u32 ack)
Definition: tcp_input.c:720
void tcp_session_cleanup(u32 conn_index, u32 thread_index)
Definition: tcp.c:343
void tcp_send_syn(tcp_connection_t *tc)
Send SYN.
Definition: tcp_output.c:973
struct _unformat_input_t unformat_input_t
static sack_scoreboard_hole_t * scoreboard_next_hole(sack_scoreboard_t *sb, sack_scoreboard_hole_t *hole)
Definition: tcp.h:824
load-balancing over a choice of [un]equal cost paths
Definition: dpo.h:100
#define VLIB_BUFFER_DEFAULT_FREE_LIST_INDEX
Definition: buffer.h:422
static u32 ip6_compute_flow_hash(const ip6_header_t *ip, flow_hash_config_t flow_hash_config)
Definition: ip6.h:404
#define pool_put(P, E)
Free an object E in pool P.
Definition: pool.h:270
static void tcp_expired_timers_dispatch(u32 *expired_timers)
Definition: tcp.c:1243
#define TCP_TIMER_HANDLE_INVALID
Definition: tcp.h:93
The FIB DPO provieds;.
Definition: load_balance.h:84
void tcp_timer_waitclose_handler(u32 conn_index)
Definition: tcp.c:1197
#define TCP_CLEANUP_TIME
Definition: tcp.h:104
static u32 tcp_flight_size(const tcp_connection_t *tc)
Our estimate of the number of bytes in flight (pipe size)
Definition: tcp.h:558
#define PREDICT_FALSE(x)
Definition: clib.h:97
u8 * format_tcp_congestion_status(u8 *s, va_list *args)
Definition: tcp.c:790
#define VLIB_CONFIG_FUNCTION(x, n,...)
Definition: init.h:119
static u32 vlib_buffer_free_list_buffer_size(vlib_main_t *vm, u32 free_list_index)
Definition: buffer_funcs.h:426
u8 * format_tcp_scoreboard(u8 *s, va_list *args)
Definition: tcp.c:976
clib_error_t * vnet_tcp_enable_disable(vlib_main_t *vm, u8 is_en)
Definition: tcp.c:1392
f64 seconds_per_clock
Definition: time.h:57
u32 tcp_push_header(transport_connection_t *tconn, vlib_buffer_t *b)
Definition: tcp_output.c:1955
void tcp_session_close(u32 conn_index, u32 thread_index)
Definition: tcp.c:335
void( timer_expiration_handler)(u32 index)
Definition: tcp.h:86
#define foreach_vlib_main(body)
Definition: threads.h:244
#define TCP_DBG(_fmt, _args...)
Definition: tcp_debug.h:85
u32 fib_entry_get_resolving_interface(fib_node_index_t entry_index)
Definition: fib_entry.c:1353
static void tcp_timer_reset(tcp_connection_t *tc, u8 timer_id)
Definition: tcp.h:710
static sack_scoreboard_hole_t * scoreboard_first_hole(sack_scoreboard_t *sb)
Definition: tcp.h:840
#define tcp_fastrecovery_sent_1_smss(tc)
Definition: tcp.h:326
unformat_function_t unformat_ip6_address
Definition: format.h:94
u8 * format_tcp_half_open_session(u8 *s, va_list *args)
Definition: tcp.c:908
clib_error_t * ip_main_init(vlib_main_t *vm)
Definition: ip_init.c:45
fib_node_index_t fib_table_entry_special_dpo_update(u32 fib_index, const fib_prefix_t *prefix, fib_source_t source, fib_entry_flag_t flags, const dpo_id_t *dpo)
Update a &#39;special&#39; entry to the FIB that links to the DPO passed A special entry is an entry that the...
Definition: fib_table.c:329
#define UNFORMAT_END_OF_INPUT
Definition: format.h:143
int tcp_configure_v4_source_address_range(vlib_main_t *vm, ip4_address_t *start, ip4_address_t *end, u32 table_id)
Configure an ipv4 source address range.
Definition: tcp.c:1478
static_always_inline uword vlib_get_thread_index(void)
Definition: threads.h:221
format_function_t format_ip6_address
Definition: format.h:95
vlib_main_t * vm
Definition: buffer.c:283
void tcp_cc_init(tcp_connection_t *tc)
Definition: tcp_input.c:1200
ip_main_t ip_main
Definition: ip_init.c:42
int stream_session_connect_notify(transport_connection_t *tc, u8 is_fail)
Definition: session.c:441
u32 stream_session_tx_fifo_max_dequeue(transport_connection_t *tc)
Definition: session.c:290
static clib_error_t * tcp_src_address(vlib_main_t *vm, unformat_input_t *input, vlib_cli_command_t *cmd_arg)
Definition: tcp.c:1643
void tcp_connection_close(tcp_connection_t *tc)
Begin connection closing procedure.
Definition: tcp.c:295
#define clib_warning(format, args...)
Definition: error.h:59
#define clib_memcpy(a, b, c)
Definition: string.h:69
u8 * format_tcp_session(u8 *s, va_list *args)
Definition: tcp.c:884
format_function_t format_tcp_header
Definition: format.h:102
const char * tcp_dbg_evt_str[]
Definition: tcp.c:734
u32 fib_node_index_t
A typedef of a node index.
Definition: fib_types.h:28
vlib_node_registration_t tcp6_input_node
(constructor) VLIB_REGISTER_NODE (tcp6_input_node)
Definition: tcp_input.c:3092
u16 tcp_session_send_mss(transport_connection_t *trans_conn)
Compute maximum segment size for session layer.
Definition: tcp.c:1023
fib_node_index_t tcp_lookup_rmt_in_fib(tcp_connection_t *tc)
fib_entry_t * fib_entry_get(fib_node_index_t index)
Definition: fib_entry.c:44
int vnet_proxy_arp_add_del(ip4_address_t *lo_addr, ip4_address_t *hi_addr, u32 fib_index, int is_del)
Definition: arp.c:1944
#define pool_init_fixed(pool, max_elts)
initialize a fixed-size, preallocated pool
Definition: pool.h:86
#define VLIB_CLI_COMMAND(x,...)
Definition: cli.h:154
static void tcp_timer_update(tcp_connection_t *tc, u8 timer_id, u32 interval)
Definition: tcp.h:722
#define pool_put_index(p, i)
Free pool element with given index.
Definition: pool.h:293
#define ASSERT(truth)
unsigned int u32
Definition: types.h:88
ip6_main_t ip6_main
Definition: ip6_forward.c:3043
ip_lookup_main_t lookup_main
Definition: ip6.h:158
static clib_error_t * tcp_scoreboard_trace_fn(vlib_main_t *vm, unformat_input_t *input, vlib_cli_command_t *cmd_arg)
Definition: tcp.c:1872
unformat_function_t unformat_pg_tcp_header
Definition: format.h:104
static load_balance_t * load_balance_get(index_t lbi)
Definition: load_balance.h:193
#define seq_geq(_s1, _s2)
Definition: tcp.h:535
vhost_vring_state_t state
Definition: vhost-user.h:82
static void transport_endpoint_del(u32 tepi)
Definition: tcp.c:105
void stream_session_reset_notify(transport_connection_t *tc)
Notify application that connection has been reset.
Definition: session.c:580
From the control plane API.
Definition: fib_entry.h:62
i32 tcp_rcv_wnd_available(tcp_connection_t *tc)
Definition: tcp.c:1120
u8 * tcp_scoreboard_replay(u8 *s, tcp_connection_t *tc, u8 verbose)
Definition: tcp.c:1794
clib_error_t * ip4_lookup_init(vlib_main_t *vm)
Definition: ip4_forward.c:1178
int tcp_configure_v6_source_address_range(vlib_main_t *vm, ip6_address_t *start, ip6_address_t *end, u32 table_id)
Configure an ipv6 source address range.
Definition: tcp.c:1570
#define clib_max(x, y)
Definition: clib.h:325
u8 * format_tcp_timers(u8 *s, va_list *args)
Definition: tcp.c:765
dpo_id_t fe_lb
The load-balance used for forwarding.
Definition: fib_entry.h:401
static const transport_proto_vft_t tcp_proto
Definition: tcp.c:1137
void tcp_update_snd_mss(tcp_connection_t *tc)
Update snd_mss to reflect the effective segment size that we can send by taking into account all TCP ...
Definition: tcp_output.c:402
void tcp_punt_unknown(vlib_main_t *vm, u8 is_ip4, u8 is_add)
Definition: tcp.c:1410
#define tcp_fastrecovery_1_smss_on(tc)
Definition: tcp.h:327
int tcp_session_open(transport_endpoint_t *tep)
Definition: tcp.c:729
unsigned short u16
Definition: types.h:57
void tcp_connection_reset(tcp_connection_t *tc)
Notify session that connection has been reset.
Definition: tcp.c:247
vlib_node_registration_t tcp4_input_node
(constructor) VLIB_REGISTER_NODE (tcp4_input_node)
Definition: tcp_input.c:3069
#define PORT_MASK
Definition: tcp.c:387
index_t dpoi_index
the index of objects of that type
Definition: dpo.h:166
#define FIB_NODE_INDEX_INVALID
Definition: fib_types.h:29
static uword ip6_address_is_link_local_unicast(ip6_address_t *a)
Definition: ip6_packet.h:296
#define foreach_tcp_fsm_state
TCP FSM state definitions as per RFC793.
Definition: tcp.h:42
void tcp_send_fin(tcp_connection_t *tc)
Send FIN.
Definition: tcp_output.c:1050
#define foreach_tcp_timer
TCP timers.
Definition: tcp.h:69
#define vec_len(v)
Number of elements in vector (rvalue-only, NULL tolerant)
unsigned char u8
Definition: types.h:56
static u32 tcp_set_time_now(u32 thread_index)
Definition: tcp.h:664
static u32 tcp_round_snd_space(tcp_connection_t *tc, u32 snd_space)
Definition: tcp.c:1036
struct _transport_endpoint transport_endpoint_t
void tcp_connection_init_vars(tcp_connection_t *tc)
Initialize tcp connection variables.
Definition: tcp.c:593
#define DPO_INVALID
An initialiser for DPOs declared on the stack.
Definition: dpo.h:177
const char * tcp_conn_timers[]
Definition: tcp.c:758
left
clib_error_t * tcp_init(vlib_main_t *vm)
Definition: tcp.c:1420
unformat_function_t unformat_memory_size
Definition: format.h:294
u8 * format_tcp_connection(u8 *s, va_list *args)
Definition: tcp.c:865
static tcp_connection_t * tcp_connection_get(u32 conn_index, u32 thread_index)
Definition: tcp.h:451
static u32 random_u32(u32 *seed)
32-bit random number generator
Definition: random.h:69
u8 * format_unformat_error(u8 *s, va_list *va)
Definition: unformat.c:91
#define TCP_SCOREBOARD_TRACE
Definition: tcp.h:161
ip4_main_t ip4_main
Global ip4 main structure.
Definition: ip4_forward.c:1175
static vlib_thread_main_t * vlib_get_thread_main()
Definition: global_funcs.h:32
void tcp_connection_cleanup(tcp_connection_t *tc)
Cleans up connection state.
Definition: tcp.c:176
void tcp_connection_del(tcp_connection_t *tc)
Connection removal.
Definition: tcp.c:222
void tcp_init_mss(tcp_connection_t *tc)
Definition: tcp_output.c:415
void dpo_reset(dpo_id_t *dpo)
reset a DPO ID The DPO will be unlocked.
Definition: dpo.c:225
#define vec_foreach(var, vec)
Vector iterator.
u8 * format_tcp_sack_hole(u8 *s, va_list *args)
Definition: tcp.c:964
#define TCP_TSTAMP_RESOLUTION
Time stamp resolution.
Definition: tcp.h:29
#define tcp_opts_sack_permitted(_to)
Definition: tcp_packet.h:160
static void * ip_interface_address_get_address(ip_lookup_main_t *lm, ip_interface_address_t *a)
Definition: lookup.h:172
u8 * format_tcp_state(u8 *s, va_list *args)
Definition: tcp.c:747
u32 tcp_session_send_space(transport_connection_t *trans_conn)
Definition: tcp.c:1112
static clib_error_t * ip6_lookup_init(vlib_main_t *vm)
Definition: ip6_forward.c:3046
static clib_error_t * show_tcp_punt_fn(vlib_main_t *vm, unformat_input_t *input, vlib_cli_command_t *cmd_arg)
Definition: tcp.c:1915
static tcp_main_t * vnet_get_tcp_main()
Definition: tcp.h:433
timer_expiration_handler tcp_timer_delack_handler
void vlib_cli_output(vlib_main_t *vm, char *fmt,...)
Definition: cli.c:680
static_always_inline void clib_spinlock_lock_if_init(clib_spinlock_t *p)
Definition: lock.h:65
transport_connection_t * tcp_session_get_transport(u32 conn_index, u32 thread_index)
Definition: tcp.c:1002
static clib_error_t * tcp_show_scoreboard_trace_fn(vlib_main_t *vm, unformat_input_t *input, vlib_cli_command_t *cmd_arg)
Definition: tcp.c:1756
u8 * format_tcp_listener_session(u8 *s, va_list *args)
Definition: tcp.c:900
void tcp_initialize_timer_wheels(tcp_main_t *tm)
Definition: tcp.c:1262
uword unformat(unformat_input_t *i, const char *fmt,...)
Definition: unformat.c:972
static tcp_connection_t * tcp_listener_get(u32 tli)
Definition: tcp.h:495
static uword unformat_check_input(unformat_input_t *i)
Definition: format.h:169
int tcp_allocate_local_port(ip46_address_t *ip)
Allocate local port and add if successful add entry to local endpoint table to mark the pair as used...
Definition: tcp.c:393