FD.io VPP  v18.07.1-19-g511ce25
Vector Packet Processing
tcp_output.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 #include <vnet/tcp/tcp.h>
17 #include <vnet/lisp-cp/packets.h>
18 #include <math.h>
19 
22 
23 typedef enum _tcp_output_next
24 {
31 
32 #define foreach_tcp4_output_next \
33  _ (DROP, "error-drop") \
34  _ (IP_LOOKUP, "ip4-lookup") \
35  _ (IP_REWRITE, "ip4-rewrite") \
36  _ (IP_ARP, "ip4-arp")
37 
38 #define foreach_tcp6_output_next \
39  _ (DROP, "error-drop") \
40  _ (IP_LOOKUP, "ip6-lookup") \
41  _ (IP_REWRITE, "ip6-rewrite") \
42  _ (IP_ARP, "ip6-discover-neighbor")
43 
44 static char *tcp_error_strings[] = {
45 #define tcp_error(n,s) s,
46 #include <vnet/tcp/tcp_error.def>
47 #undef tcp_error
48 };
49 
50 typedef struct
51 {
55 
56 u16 dummy_mtu = 1460;
57 
58 u8 *
59 format_tcp_tx_trace (u8 * s, va_list * args)
60 {
61  CLIB_UNUSED (vlib_main_t * vm) = va_arg (*args, vlib_main_t *);
62  CLIB_UNUSED (vlib_node_t * node) = va_arg (*args, vlib_node_t *);
63  tcp_tx_trace_t *t = va_arg (*args, tcp_tx_trace_t *);
64  u32 indent = format_get_indent (s);
65 
66  s = format (s, "%U\n%U%U",
67  format_tcp_header, &t->tcp_header, 128,
68  format_white_space, indent,
70 
71  return s;
72 }
73 
74 static u8
76 {
77  u8 wnd_scale = 0;
78  while (wnd_scale < TCP_MAX_WND_SCALE && (window >> wnd_scale) > TCP_WND_MAX)
79  wnd_scale++;
80  return wnd_scale;
81 }
82 
83 /**
84  * Update max segment size we're able to process.
85  *
86  * The value is constrained by our interface's MTU and IP options. It is
87  * also what we advertise to our peer.
88  */
89 void
91 {
92  /* TODO find our iface MTU */
93  tc->mss = dummy_mtu - sizeof (tcp_header_t);
94 }
95 
96 /**
97  * TCP's initial window
98  */
101 {
102  /* RFC 6928 recommends the value lower. However at the time our connections
103  * are initialized, fifos may not be allocated. Therefore, advertise the
104  * smallest possible unscaled window size and update once fifos are
105  * assigned to the session.
106  */
107  /*
108  tcp_update_rcv_mss (tc);
109  TCP_IW_N_SEGMENTS * tc->mss;
110  */
111  return TCP_MIN_RX_FIFO_SIZE;
112 }
113 
114 /**
115  * Compute initial window and scale factor. As per RFC1323, window field in
116  * SYN and SYN-ACK segments is never scaled.
117  */
118 u32
120 {
121  u32 max_fifo;
122 
123  /* Initial wnd for SYN. Fifos are not allocated yet.
124  * Use some predefined value. For SYN-ACK we still want the
125  * scale to be computed in the same way */
126  max_fifo = TCP_MAX_RX_FIFO_SIZE;
127 
128  tc->rcv_wscale = tcp_window_compute_scale (max_fifo);
129  tc->rcv_wnd = tcp_initial_wnd_unscaled (tc);
130 
131  return clib_min (tc->rcv_wnd, TCP_WND_MAX);
132 }
133 
134 static void
136 {
137  i32 observed_wnd;
138  u32 available_space, max_fifo, wnd;
139 
140  /*
141  * Figure out how much space we have available
142  */
143  available_space = transport_max_rx_enqueue (&tc->connection);
144  max_fifo = transport_rx_fifo_size (&tc->connection);
145 
146  ASSERT (tc->rcv_opts.mss < max_fifo);
147  if (available_space < tc->rcv_opts.mss && available_space < max_fifo >> 3)
148  available_space = 0;
149 
150  /*
151  * Use the above and what we know about what we've previously advertised
152  * to compute the new window
153  */
154  observed_wnd = (i32) tc->rcv_wnd - (tc->rcv_nxt - tc->rcv_las);
155  if (observed_wnd < 0)
156  observed_wnd = 0;
157 
158  /* Bad. Thou shalt not shrink */
159  if (available_space < observed_wnd)
160  {
161  wnd = observed_wnd;
162  TCP_EVT_DBG (TCP_EVT_RCV_WND_SHRUNK, tc, observed_wnd, available_space);
163  }
164  else
165  {
166  wnd = available_space;
167  }
168 
169  /* Make sure we have a multiple of rcv_wscale */
170  if (wnd && tc->rcv_wscale)
171  {
172  wnd &= ~(1 << tc->rcv_wscale);
173  if (wnd == 0)
174  wnd = 1 << tc->rcv_wscale;
175  }
176 
177  tc->rcv_wnd = clib_min (wnd, TCP_WND_MAX << tc->rcv_wscale);
178 }
179 
180 /**
181  * Compute and return window to advertise, scaled as per RFC1323
182  */
183 static u32
185 {
186  if (state < TCP_STATE_ESTABLISHED)
188 
189  tcp_update_rcv_wnd (tc);
190 
191  if (tc->rcv_wnd == 0)
192  {
193  tc->flags |= TCP_CONN_SENT_RCV_WND0;
194  }
195  else
196  {
197  tc->flags &= ~TCP_CONN_SENT_RCV_WND0;
198  }
199 
200  return tc->rcv_wnd >> tc->rcv_wscale;
201 }
202 
203 /**
204  * Write TCP options to segment.
205  */
206 static u32
208 {
209  u32 opts_len = 0;
210  u32 buf, seq_len = 4;
211 
212  if (tcp_opts_mss (opts))
213  {
214  *data++ = TCP_OPTION_MSS;
215  *data++ = TCP_OPTION_LEN_MSS;
216  buf = clib_host_to_net_u16 (opts->mss);
217  clib_memcpy (data, &buf, sizeof (opts->mss));
218  data += sizeof (opts->mss);
219  opts_len += TCP_OPTION_LEN_MSS;
220  }
221 
222  if (tcp_opts_wscale (opts))
223  {
224  *data++ = TCP_OPTION_WINDOW_SCALE;
225  *data++ = TCP_OPTION_LEN_WINDOW_SCALE;
226  *data++ = opts->wscale;
227  opts_len += TCP_OPTION_LEN_WINDOW_SCALE;
228  }
229 
230  if (tcp_opts_sack_permitted (opts))
231  {
232  *data++ = TCP_OPTION_SACK_PERMITTED;
234  opts_len += TCP_OPTION_LEN_SACK_PERMITTED;
235  }
236 
237  if (tcp_opts_tstamp (opts))
238  {
239  *data++ = TCP_OPTION_TIMESTAMP;
240  *data++ = TCP_OPTION_LEN_TIMESTAMP;
241  buf = clib_host_to_net_u32 (opts->tsval);
242  clib_memcpy (data, &buf, sizeof (opts->tsval));
243  data += sizeof (opts->tsval);
244  buf = clib_host_to_net_u32 (opts->tsecr);
245  clib_memcpy (data, &buf, sizeof (opts->tsecr));
246  data += sizeof (opts->tsecr);
247  opts_len += TCP_OPTION_LEN_TIMESTAMP;
248  }
249 
250  if (tcp_opts_sack (opts))
251  {
252  int i;
253  u32 n_sack_blocks = clib_min (vec_len (opts->sacks),
255 
256  if (n_sack_blocks != 0)
257  {
258  *data++ = TCP_OPTION_SACK_BLOCK;
259  *data++ = 2 + n_sack_blocks * TCP_OPTION_LEN_SACK_BLOCK;
260  for (i = 0; i < n_sack_blocks; i++)
261  {
262  buf = clib_host_to_net_u32 (opts->sacks[i].start);
263  clib_memcpy (data, &buf, seq_len);
264  data += seq_len;
265  buf = clib_host_to_net_u32 (opts->sacks[i].end);
266  clib_memcpy (data, &buf, seq_len);
267  data += seq_len;
268  }
269  opts_len += 2 + n_sack_blocks * TCP_OPTION_LEN_SACK_BLOCK;
270  }
271  }
272 
273  /* Terminate TCP options */
274  if (opts_len % 4)
275  {
276  *data++ = TCP_OPTION_EOL;
277  opts_len += TCP_OPTION_LEN_EOL;
278  }
279 
280  /* Pad with zeroes to a u32 boundary */
281  while (opts_len % 4)
282  {
283  *data++ = TCP_OPTION_NOOP;
284  opts_len += TCP_OPTION_LEN_NOOP;
285  }
286  return opts_len;
287 }
288 
289 static int
291 {
292  u8 len = 0;
293 
294  opts->flags |= TCP_OPTS_FLAG_MSS;
295  opts->mss = dummy_mtu; /*XXX discover that */
296  len += TCP_OPTION_LEN_MSS;
297 
298  opts->flags |= TCP_OPTS_FLAG_WSCALE;
299  opts->wscale = wnd_scale;
301 
302  opts->flags |= TCP_OPTS_FLAG_TSTAMP;
303  opts->tsval = tcp_time_now ();
304  opts->tsecr = 0;
306 
307  if (TCP_USE_SACKS)
308  {
309  opts->flags |= TCP_OPTS_FLAG_SACK_PERMITTED;
311  }
312 
313  /* Align to needed boundary */
314  len += (TCP_OPTS_ALIGN - len % TCP_OPTS_ALIGN) % TCP_OPTS_ALIGN;
315  return len;
316 }
317 
318 static int
320 {
321  u8 len = 0;
322 
323  opts->flags |= TCP_OPTS_FLAG_MSS;
324  opts->mss = tc->mss;
325  len += TCP_OPTION_LEN_MSS;
326 
327  if (tcp_opts_wscale (&tc->rcv_opts))
328  {
329  opts->flags |= TCP_OPTS_FLAG_WSCALE;
330  opts->wscale = tc->rcv_wscale;
332  }
333 
334  if (tcp_opts_tstamp (&tc->rcv_opts))
335  {
336  opts->flags |= TCP_OPTS_FLAG_TSTAMP;
337  opts->tsval = tcp_time_now ();
338  opts->tsecr = tc->tsval_recent;
340  }
341 
342  if (tcp_opts_sack_permitted (&tc->rcv_opts))
343  {
344  opts->flags |= TCP_OPTS_FLAG_SACK_PERMITTED;
346  }
347 
348  /* Align to needed boundary */
349  len += (TCP_OPTS_ALIGN - len % TCP_OPTS_ALIGN) % TCP_OPTS_ALIGN;
350  return len;
351 }
352 
353 static int
355 {
356  u8 len = 0;
357 
358  opts->flags = 0;
359 
360  if (tcp_opts_tstamp (&tc->rcv_opts))
361  {
362  opts->flags |= TCP_OPTS_FLAG_TSTAMP;
363  opts->tsval = tcp_time_now ();
364  opts->tsecr = tc->tsval_recent;
366  }
367  if (tcp_opts_sack_permitted (&tc->rcv_opts))
368  {
369  if (vec_len (tc->snd_sacks))
370  {
371  opts->flags |= TCP_OPTS_FLAG_SACK;
372  opts->sacks = tc->snd_sacks;
373  opts->n_sack_blocks = clib_min (vec_len (tc->snd_sacks),
375  len += 2 + TCP_OPTION_LEN_SACK_BLOCK * opts->n_sack_blocks;
376  }
377  }
378 
379  /* Align to needed boundary */
380  len += (TCP_OPTS_ALIGN - len % TCP_OPTS_ALIGN) % TCP_OPTS_ALIGN;
381  return len;
382 }
383 
384 always_inline int
387 {
388  switch (state)
389  {
390  case TCP_STATE_ESTABLISHED:
391  case TCP_STATE_FIN_WAIT_1:
392  case TCP_STATE_CLOSED:
393  case TCP_STATE_CLOSE_WAIT:
394  return tcp_make_established_options (tc, opts);
395  case TCP_STATE_SYN_RCVD:
396  return tcp_make_synack_options (tc, opts);
397  case TCP_STATE_SYN_SENT:
398  return tcp_make_syn_options (opts, tc->rcv_wscale);
399  default:
400  clib_warning ("State not handled! %d", state);
401  return 0;
402  }
403 }
404 
405 /**
406  * Update burst send vars
407  *
408  * - Updates snd_mss to reflect the effective segment size that we can send
409  * by taking into account all TCP options, including SACKs.
410  * - Cache 'on the wire' options for reuse
411  * - Updates receive window which can be reused for a burst.
412  *
413  * This should *only* be called when doing bursts
414  */
415 void
417 {
418  tcp_main_t *tm = &tcp_main;
419 
420  /* Compute options to be used for connection. These may be reused when
421  * sending data or to compute the effective mss (snd_mss) */
422  tc->snd_opts_len = tcp_make_options (tc, &tc->snd_opts,
423  TCP_STATE_ESTABLISHED);
424 
425  /* XXX check if MTU has been updated */
426  tc->snd_mss = clib_min (tc->mss, tc->rcv_opts.mss) - tc->snd_opts_len;
427  ASSERT (tc->snd_mss > 0);
428 
429  tcp_options_write (tm->wrk_ctx[tc->c_thread_index].cached_opts,
430  &tc->snd_opts);
431 
432  tcp_update_rcv_wnd (tc);
433 }
434 
435 void
437 {
438  u16 default_min_mss = 536;
439  tcp_update_rcv_mss (tc);
440 
441  /* TODO cache mss and consider PMTU discovery */
442  tc->snd_mss = clib_min (tc->rcv_opts.mss, tc->mss);
443 
444  if (tc->snd_mss < 45)
445  {
446  clib_warning ("snd mss is 0");
447  /* Assume that at least the min default mss works */
448  tc->snd_mss = default_min_mss;
449  tc->rcv_opts.mss = default_min_mss;
450  }
451 
452  /* We should have enough space for 40 bytes of options */
453  ASSERT (tc->snd_mss > 45);
454 
455  /* If we use timestamp option, account for it */
456  if (tcp_opts_tstamp (&tc->rcv_opts))
457  tc->snd_mss -= TCP_OPTION_LEN_TIMESTAMP;
458 }
459 
460 static int
461 tcp_alloc_tx_buffers (tcp_main_t * tm, u8 thread_index, u16 * n_bufs,
462  u32 wanted)
463 {
464  tcp_worker_ctx_t *ctx = &tm->wrk_ctx[thread_index];
466  u32 n_alloc;
467 
468  ASSERT (wanted > *n_bufs);
470  n_alloc = vlib_buffer_alloc (vm, &ctx->tx_buffers[*n_bufs],
471  wanted - *n_bufs);
472  *n_bufs += n_alloc;
473  _vec_len (ctx->tx_buffers) = *n_bufs;
474  return n_alloc;
475 }
476 
477 always_inline int
479 {
480  u32 thread_index = vlib_get_thread_index ();
481  tcp_worker_ctx_t *ctx = &tm->wrk_ctx[thread_index];
482  u16 n_bufs = vec_len (ctx->tx_buffers);
483 
484  TCP_DBG_BUFFER_ALLOC_MAYBE_FAIL (thread_index);
485 
486  if (PREDICT_FALSE (!n_bufs))
487  {
488  if (!tcp_alloc_tx_buffers (tm, thread_index, &n_bufs, VLIB_FRAME_SIZE))
489  {
490  *bidx = ~0;
491  return -1;
492  }
493  }
494  *bidx = ctx->tx_buffers[--n_bufs];
495  _vec_len (ctx->tx_buffers) = n_bufs;
496  return 0;
497 }
498 
499 static void *
501 {
502  if (b->flags & VLIB_BUFFER_NEXT_PRESENT)
504  /* Zero all flags but free list index and trace flag */
505  b->flags &= VLIB_BUFFER_NEXT_PRESENT - 1;
506  b->current_data = 0;
507  b->current_length = 0;
509  vnet_buffer (b)->tcp.flags = 0;
510 
511  /* Leave enough space for headers */
513 }
514 
515 static void *
517 {
518  ASSERT ((b->flags & VLIB_BUFFER_NEXT_PRESENT) == 0);
519  b->flags &= VLIB_BUFFER_NON_DEFAULT_FREELIST;
520  b->flags |= VNET_BUFFER_F_LOCALLY_ORIGINATED;
522  b->current_data = 0;
523  vnet_buffer (b)->tcp.flags = 0;
525  /* Leave enough space for headers */
527 }
528 
529 /**
530  * Prepare ACK
531  */
532 static void
534  u8 flags)
535 {
536  tcp_options_t _snd_opts, *snd_opts = &_snd_opts;
537  u8 tcp_opts_len, tcp_hdr_opts_len;
538  tcp_header_t *th;
539  u16 wnd;
540 
541  wnd = tcp_window_to_advertise (tc, state);
542 
543  /* Make and write options */
544  tcp_opts_len = tcp_make_established_options (tc, snd_opts);
545  tcp_hdr_opts_len = tcp_opts_len + sizeof (tcp_header_t);
546 
547  th = vlib_buffer_push_tcp (b, tc->c_lcl_port, tc->c_rmt_port, tc->snd_nxt,
548  tc->rcv_nxt, tcp_hdr_opts_len, flags, wnd);
549 
550  tcp_options_write ((u8 *) (th + 1), snd_opts);
551  vnet_buffer (b)->tcp.connection_index = tc->c_c_index;
552 }
553 
554 /**
555  * Convert buffer to ACK
556  */
557 void
559 {
561 
562  tcp_reuse_buffer (vm, b);
563  tcp_make_ack_i (tc, b, TCP_STATE_ESTABLISHED, TCP_FLAG_ACK);
564  TCP_EVT_DBG (TCP_EVT_ACK_SENT, tc);
565  vnet_buffer (b)->tcp.flags = TCP_BUF_FLAG_ACK;
566  tc->rcv_las = tc->rcv_nxt;
567 }
568 
569 /**
570  * Convert buffer to FIN-ACK
571  */
572 void
574 {
576  u8 flags = 0;
577 
578  tcp_reuse_buffer (vm, b);
579 
580  flags = TCP_FLAG_FIN | TCP_FLAG_ACK;
581  tcp_make_ack_i (tc, b, TCP_STATE_ESTABLISHED, flags);
582 
583  /* Reset flags, make sure ack is sent */
584  vnet_buffer (b)->tcp.flags &= ~TCP_BUF_FLAG_DUPACK;
585 }
586 
587 /**
588  * Convert buffer to SYN
589  */
590 void
592 {
593  u8 tcp_hdr_opts_len, tcp_opts_len;
594  tcp_header_t *th;
595  u16 initial_wnd;
596  tcp_options_t snd_opts;
597 
598  initial_wnd = tcp_initial_window_to_advertise (tc);
599 
600  /* Make and write options */
601  memset (&snd_opts, 0, sizeof (snd_opts));
602  tcp_opts_len = tcp_make_syn_options (&snd_opts, tc->rcv_wscale);
603  tcp_hdr_opts_len = tcp_opts_len + sizeof (tcp_header_t);
604 
605  th = vlib_buffer_push_tcp (b, tc->c_lcl_port, tc->c_rmt_port, tc->iss,
606  tc->rcv_nxt, tcp_hdr_opts_len, TCP_FLAG_SYN,
607  initial_wnd);
608  vnet_buffer (b)->tcp.connection_index = tc->c_c_index;
609  tcp_options_write ((u8 *) (th + 1), &snd_opts);
610 }
611 
612 /**
613  * Convert buffer to SYN-ACK
614  */
615 void
617 {
619  tcp_options_t _snd_opts, *snd_opts = &_snd_opts;
620  u8 tcp_opts_len, tcp_hdr_opts_len;
621  tcp_header_t *th;
622  u16 initial_wnd;
623 
624  memset (snd_opts, 0, sizeof (*snd_opts));
625  tcp_reuse_buffer (vm, b);
626 
627  initial_wnd = tcp_initial_window_to_advertise (tc);
628  tcp_opts_len = tcp_make_synack_options (tc, snd_opts);
629  tcp_hdr_opts_len = tcp_opts_len + sizeof (tcp_header_t);
630 
631  th = vlib_buffer_push_tcp (b, tc->c_lcl_port, tc->c_rmt_port, tc->iss,
632  tc->rcv_nxt, tcp_hdr_opts_len,
633  TCP_FLAG_SYN | TCP_FLAG_ACK, initial_wnd);
634  tcp_options_write ((u8 *) (th + 1), snd_opts);
635 
636  vnet_buffer (b)->tcp.connection_index = tc->c_c_index;
637  vnet_buffer (b)->tcp.flags = TCP_BUF_FLAG_ACK;
638 
639  /* Init retransmit timer. Use update instead of set because of
640  * retransmissions */
642  TCP_EVT_DBG (TCP_EVT_SYNACK_SENT, tc);
643 }
644 
645 always_inline void
647  u8 is_ip4, u32 fib_index, u8 flush)
648 {
649  tcp_main_t *tm = vnet_get_tcp_main ();
650  u32 thread_index = vlib_get_thread_index ();
651  u32 *to_next, next_index;
652  vlib_frame_t *f;
653 
654  b->flags |= VNET_BUFFER_F_LOCALLY_ORIGINATED;
655  b->error = 0;
656 
657  vnet_buffer (b)->sw_if_index[VLIB_TX] = fib_index;
658  vnet_buffer (b)->sw_if_index[VLIB_RX] = 0;
659 
660  /* Send to IP lookup */
661  next_index = is_ip4 ? ip4_lookup_node.index : ip6_lookup_node.index;
663 
664  f = tm->wrk_ctx[thread_index].ip_lookup_tx_frames[!is_ip4];
665  if (!f)
666  {
667  f = vlib_get_frame_to_node (vm, next_index);
668  ASSERT (f);
669  tm->wrk_ctx[thread_index].ip_lookup_tx_frames[!is_ip4] = f;
670  }
671 
672  to_next = vlib_frame_vector_args (f);
673  to_next[f->n_vectors] = bi;
674  f->n_vectors += 1;
675  if (flush || f->n_vectors == VLIB_FRAME_SIZE)
676  {
677  vlib_put_frame_to_node (vm, next_index, f);
678  tm->wrk_ctx[thread_index].ip_lookup_tx_frames[!is_ip4] = 0;
679  }
680 }
681 
682 static void
684  u8 is_ip4, u32 fib_index)
685 {
686  tcp_enqueue_to_ip_lookup_i (vm, b, bi, is_ip4, fib_index, 1);
687 }
688 
689 static void
691  u8 is_ip4, u32 fib_index)
692 {
693  tcp_enqueue_to_ip_lookup_i (vm, b, bi, is_ip4, fib_index, 0);
694  if (vm->thread_index == 0 && vlib_num_workers ())
696 }
697 
698 always_inline void
700  u8 is_ip4, u8 flush)
701 {
702  tcp_main_t *tm = vnet_get_tcp_main ();
703  u32 thread_index = vlib_get_thread_index ();
704  u32 *to_next, next_index;
705  vlib_frame_t *f;
706 
707  b->flags |= VNET_BUFFER_F_LOCALLY_ORIGINATED;
708  b->error = 0;
709 
710  /* Decide where to send the packet */
711  next_index = is_ip4 ? tcp4_output_node.index : tcp6_output_node.index;
713 
714  /* Get frame to v4/6 output node */
715  f = tm->wrk_ctx[thread_index].tx_frames[!is_ip4];
716  if (!f)
717  {
718  f = vlib_get_frame_to_node (vm, next_index);
719  ASSERT (f);
720  tm->wrk_ctx[thread_index].tx_frames[!is_ip4] = f;
721  }
722  to_next = vlib_frame_vector_args (f);
723  to_next[f->n_vectors] = bi;
724  f->n_vectors += 1;
725  if (flush || f->n_vectors == VLIB_FRAME_SIZE)
726  {
727  vlib_put_frame_to_node (vm, next_index, f);
728  tm->wrk_ctx[thread_index].tx_frames[!is_ip4] = 0;
729  }
730 }
731 
732 static void
734 {
735  tcp_enqueue_to_output_i (vm, b, bi, is_ip4, 0);
736 }
737 
738 static void
740  u8 is_ip4)
741 {
742  tcp_enqueue_to_output_i (vm, b, bi, is_ip4, 1);
743 }
744 
745 static int
747  tcp_state_t state, u8 thread_index, u8 is_ip4)
748 {
749  ip4_header_t *ih4;
750  ip6_header_t *ih6;
751  tcp_header_t *th0;
752  ip4_address_t src_ip40, dst_ip40;
753  ip6_address_t src_ip60, dst_ip60;
754  u16 src_port, dst_port;
755  u32 tmp;
756  u32 seq, ack;
757  u8 flags;
758 
759  /* Find IP and TCP headers */
760  th0 = tcp_buffer_hdr (b0);
761 
762  /* Save src and dst ip */
763  if (is_ip4)
764  {
765  ih4 = vlib_buffer_get_current (b0);
766  ASSERT ((ih4->ip_version_and_header_length & 0xF0) == 0x40);
767  src_ip40.as_u32 = ih4->src_address.as_u32;
768  dst_ip40.as_u32 = ih4->dst_address.as_u32;
769  }
770  else
771  {
772  ih6 = vlib_buffer_get_current (b0);
773  ASSERT ((ih6->ip_version_traffic_class_and_flow_label & 0xF0) == 0x60);
774  clib_memcpy (&src_ip60, &ih6->src_address, sizeof (ip6_address_t));
775  clib_memcpy (&dst_ip60, &ih6->dst_address, sizeof (ip6_address_t));
776  }
777 
778  src_port = th0->src_port;
779  dst_port = th0->dst_port;
780 
781  /* Try to determine what/why we're actually resetting */
782  if (state == TCP_STATE_CLOSED)
783  {
784  if (!tcp_syn (th0))
785  return -1;
786 
787  tmp = clib_net_to_host_u32 (th0->seq_number);
788 
789  /* Got a SYN for no listener. */
790  flags = TCP_FLAG_RST | TCP_FLAG_ACK;
791  ack = clib_host_to_net_u32 (tmp + 1);
792  seq = 0;
793  }
794  else
795  {
796  flags = TCP_FLAG_RST;
797  seq = th0->ack_number;
798  ack = 0;
799  }
800 
801  tcp_reuse_buffer (vm, b0);
802  tcp_trajectory_add_start (b0, 4);
803  th0 = vlib_buffer_push_tcp_net_order (b0, dst_port, src_port, seq, ack,
804  sizeof (tcp_header_t), flags, 0);
805 
806  if (is_ip4)
807  {
808  ih4 = vlib_buffer_push_ip4 (vm, b0, &dst_ip40, &src_ip40,
809  IP_PROTOCOL_TCP, 1);
810  th0->checksum = ip4_tcp_udp_compute_checksum (vm, b0, ih4);
811  }
812  else
813  {
814  int bogus = ~0;
815  ih6 = vlib_buffer_push_ip6 (vm, b0, &dst_ip60, &src_ip60,
816  IP_PROTOCOL_TCP);
817  th0->checksum = ip6_tcp_udp_icmp_compute_checksum (vm, b0, ih6, &bogus);
818  ASSERT (!bogus);
819  }
820 
821  return 0;
822 }
823 
824 /**
825  * Send reset without reusing existing buffer
826  *
827  * It extracts connection info out of original packet
828  */
829 void
831 {
832  vlib_buffer_t *b;
833  u32 bi, sw_if_index, fib_index;
834  tcp_main_t *tm = vnet_get_tcp_main ();
836  u8 tcp_hdr_len, flags = 0;
837  tcp_header_t *th, *pkt_th;
838  u32 seq, ack;
839  ip4_header_t *ih4, *pkt_ih4;
840  ip6_header_t *ih6, *pkt_ih6;
841  fib_protocol_t fib_proto;
842 
844  return;
845 
846  b = vlib_get_buffer (vm, bi);
847  sw_if_index = vnet_buffer (pkt)->sw_if_index[VLIB_RX];
848  fib_proto = is_ip4 ? FIB_PROTOCOL_IP4 : FIB_PROTOCOL_IP6;
849  fib_index = fib_table_get_index_for_sw_if_index (fib_proto, sw_if_index);
850  tcp_init_buffer (vm, b);
851 
852  /* Make and write options */
853  tcp_hdr_len = sizeof (tcp_header_t);
854 
855  if (is_ip4)
856  {
857  pkt_ih4 = vlib_buffer_get_current (pkt);
858  pkt_th = ip4_next_header (pkt_ih4);
859  }
860  else
861  {
862  pkt_ih6 = vlib_buffer_get_current (pkt);
863  pkt_th = ip6_next_header (pkt_ih6);
864  }
865 
866  if (tcp_ack (pkt_th))
867  {
868  flags = TCP_FLAG_RST;
869  seq = pkt_th->ack_number;
870  ack = (tc && tc->state >= TCP_STATE_SYN_RCVD) ? tc->rcv_nxt : 0;
871  }
872  else
873  {
874  flags = TCP_FLAG_RST | TCP_FLAG_ACK;
875  seq = 0;
876  ack = clib_host_to_net_u32 (vnet_buffer (pkt)->tcp.seq_end);
877  }
878 
879  th = vlib_buffer_push_tcp_net_order (b, pkt_th->dst_port, pkt_th->src_port,
880  seq, ack, tcp_hdr_len, flags, 0);
881 
882  /* Swap src and dst ip */
883  if (is_ip4)
884  {
885  ASSERT ((pkt_ih4->ip_version_and_header_length & 0xF0) == 0x40);
886  ih4 = vlib_buffer_push_ip4 (vm, b, &pkt_ih4->dst_address,
887  &pkt_ih4->src_address, IP_PROTOCOL_TCP, 1);
888  th->checksum = ip4_tcp_udp_compute_checksum (vm, b, ih4);
889  }
890  else
891  {
892  int bogus = ~0;
893  ASSERT ((pkt_ih6->ip_version_traffic_class_and_flow_label & 0xF0) ==
894  0x60);
895  ih6 = vlib_buffer_push_ip6 (vm, b, &pkt_ih6->dst_address,
896  &pkt_ih6->src_address, IP_PROTOCOL_TCP);
897  th->checksum = ip6_tcp_udp_icmp_compute_checksum (vm, b, ih6, &bogus);
898  ASSERT (!bogus);
899  }
900 
901  tcp_enqueue_to_ip_lookup_now (vm, b, bi, is_ip4, fib_index);
902  TCP_EVT_DBG (TCP_EVT_RST_SENT, tc);
903 }
904 
905 /**
906  * Build and set reset packet for connection
907  */
908 void
910 {
912  tcp_main_t *tm = vnet_get_tcp_main ();
913  vlib_buffer_t *b;
914  u32 bi;
915  tcp_header_t *th;
916  u16 tcp_hdr_opts_len, advertise_wnd, opts_write_len;
917  u8 flags;
918 
920  return;
921  b = vlib_get_buffer (vm, bi);
922  tcp_init_buffer (vm, b);
923 
924  tc->snd_opts_len = tcp_make_options (tc, &tc->snd_opts, tc->state);
925  tcp_hdr_opts_len = tc->snd_opts_len + sizeof (tcp_header_t);
926  advertise_wnd = tcp_window_to_advertise (tc, TCP_STATE_ESTABLISHED);
927  flags = TCP_FLAG_RST;
928  th = vlib_buffer_push_tcp (b, tc->c_lcl_port, tc->c_rmt_port, tc->snd_nxt,
929  tc->rcv_nxt, tcp_hdr_opts_len, flags,
930  advertise_wnd);
931  opts_write_len = tcp_options_write ((u8 *) (th + 1), &tc->snd_opts);
932  ASSERT (opts_write_len == tc->snd_opts_len);
933  vnet_buffer (b)->tcp.connection_index = tc->c_c_index;
934  if (tc->c_is_ip4)
935  {
936  ip4_header_t *ih4;
937  ih4 = vlib_buffer_push_ip4 (vm, b, &tc->c_lcl_ip.ip4,
938  &tc->c_rmt_ip.ip4, IP_PROTOCOL_TCP, 0);
939  th->checksum = ip4_tcp_udp_compute_checksum (vm, b, ih4);
940  }
941  else
942  {
943  int bogus = ~0;
944  ip6_header_t *ih6;
945  ih6 = vlib_buffer_push_ip6 (vm, b, &tc->c_lcl_ip.ip6,
946  &tc->c_rmt_ip.ip6, IP_PROTOCOL_TCP);
947  th->checksum = ip6_tcp_udp_icmp_compute_checksum (vm, b, ih6, &bogus);
948  ASSERT (!bogus);
949  }
950  tcp_enqueue_to_ip_lookup_now (vm, b, bi, tc->c_is_ip4, tc->c_fib_index);
951  TCP_EVT_DBG (TCP_EVT_RST_SENT, tc);
952 }
953 
954 static void
956 {
959  if (tc->c_is_ip4)
960  {
961  ip4_header_t *ih;
962  ih = vlib_buffer_push_ip4 (vm, b, &tc->c_lcl_ip4,
963  &tc->c_rmt_ip4, IP_PROTOCOL_TCP, 1);
964  th->checksum = ip4_tcp_udp_compute_checksum (vm, b, ih);
965  }
966  else
967  {
968  ip6_header_t *ih;
969  int bogus = ~0;
970 
971  ih = vlib_buffer_push_ip6 (vm, b, &tc->c_lcl_ip6,
972  &tc->c_rmt_ip6, IP_PROTOCOL_TCP);
973  th->checksum = ip6_tcp_udp_icmp_compute_checksum (vm, b, ih, &bogus);
974  ASSERT (!bogus);
975  }
976 }
977 
978 /**
979  * Send SYN
980  *
981  * Builds a SYN packet for a half-open connection and sends it to ipx_lookup.
982  * The packet is not forwarded through tcpx_output to avoid doing lookups
983  * in the half_open pool.
984  */
985 void
987 {
988  vlib_buffer_t *b;
989  u32 bi;
990  tcp_main_t *tm = vnet_get_tcp_main ();
992 
993  /*
994  * Setup retransmit and establish timers before requesting buffer
995  * such that we can return if we've ran out.
996  */
997  tcp_timer_set (tc, TCP_TIMER_ESTABLISH, TCP_ESTABLISH_TIME);
998  tcp_timer_update (tc, TCP_TIMER_RETRANSMIT_SYN,
999  tc->rto * TCP_TO_TIMER_TICK);
1000 
1001  if (PREDICT_FALSE (tcp_get_free_buffer_index (tm, &bi)))
1002  return;
1003 
1004  b = vlib_get_buffer (vm, bi);
1005  tcp_init_buffer (vm, b);
1006  tcp_make_syn (tc, b);
1007 
1008  /* Measure RTT with this */
1009  tc->rtt_ts = tcp_time_now ();
1010  tc->rtt_seq = tc->snd_nxt;
1011  tc->rto_boff = 0;
1012 
1013  tcp_push_ip_hdr (tm, tc, b);
1014  tcp_enqueue_to_ip_lookup (vm, b, bi, tc->c_is_ip4, tc->c_fib_index);
1015  TCP_EVT_DBG (TCP_EVT_SYN_SENT, tc);
1016 }
1017 
1018 /**
1019  * Flush tx frame populated by retransmits and timer pops
1020  */
1021 void
1022 tcp_flush_frame_to_output (vlib_main_t * vm, u8 thread_index, u8 is_ip4)
1023 {
1024  if (tcp_main.wrk_ctx[thread_index].tx_frames[!is_ip4])
1025  {
1026  u32 next_index;
1027  next_index = is_ip4 ? tcp4_output_node.index : tcp6_output_node.index;
1028  vlib_put_frame_to_node (vm, next_index,
1029  tcp_main.
1030  wrk_ctx[thread_index].tx_frames[!is_ip4]);
1031  tcp_main.wrk_ctx[thread_index].tx_frames[!is_ip4] = 0;
1032  }
1033 }
1034 
1035 /**
1036  * Flush ip lookup tx frames populated by timer pops
1037  */
1038 static void
1040 {
1041  if (tcp_main.wrk_ctx[thread_index].ip_lookup_tx_frames[!is_ip4])
1042  {
1043  u32 next_index;
1044  next_index = is_ip4 ? ip4_lookup_node.index : ip6_lookup_node.index;
1045  vlib_put_frame_to_node (vm, next_index,
1046  tcp_main.
1047  wrk_ctx[thread_index].ip_lookup_tx_frames
1048  [!is_ip4]);
1049  tcp_main.wrk_ctx[thread_index].ip_lookup_tx_frames[!is_ip4] = 0;
1050  }
1051 }
1052 
1053 /**
1054  * Flush v4 and v6 tcp and ip-lookup tx frames for thread index
1055  */
1056 void
1058 {
1060  tcp_flush_frame_to_output (vm, thread_index, 1);
1061  tcp_flush_frame_to_output (vm, thread_index, 0);
1062  tcp_flush_frame_to_ip_lookup (vm, thread_index, 1);
1063  tcp_flush_frame_to_ip_lookup (vm, thread_index, 0);
1064 }
1065 
1066 /**
1067  * Send FIN
1068  */
1069 void
1071 {
1072  tcp_main_t *tm = vnet_get_tcp_main ();
1074  vlib_buffer_t *b;
1075  u32 bi;
1076  u8 fin_snt = 0;
1077 
1079  if (PREDICT_FALSE (tcp_get_free_buffer_index (tm, &bi)))
1080  return;
1081  b = vlib_get_buffer (vm, bi);
1082  tcp_init_buffer (vm, b);
1083  fin_snt = tc->flags & TCP_CONN_FINSNT;
1084  if (fin_snt)
1085  tc->snd_nxt = tc->snd_una;
1086  tcp_make_fin (tc, b);
1087  tcp_enqueue_to_output_now (vm, b, bi, tc->c_is_ip4);
1088  if (!fin_snt)
1089  {
1090  tc->flags |= TCP_CONN_FINSNT;
1091  tc->flags &= ~TCP_CONN_FINPNDG;
1092  /* Account for the FIN */
1093  tc->snd_una_max += 1;
1094  tc->snd_nxt = tc->snd_una_max;
1095  }
1096  else
1097  {
1098  tc->snd_nxt = tc->snd_una_max;
1099  }
1100  TCP_EVT_DBG (TCP_EVT_FIN_SENT, tc);
1101 }
1102 
1105 {
1106  switch (next_state)
1107  {
1108  case TCP_STATE_ESTABLISHED:
1109  case TCP_STATE_CLOSE_WAIT:
1110  return TCP_FLAG_ACK;
1111  case TCP_STATE_SYN_RCVD:
1112  return TCP_FLAG_SYN | TCP_FLAG_ACK;
1113  case TCP_STATE_SYN_SENT:
1114  return TCP_FLAG_SYN;
1115  case TCP_STATE_LAST_ACK:
1116  case TCP_STATE_FIN_WAIT_1:
1117  if (tc->snd_nxt + 1 < tc->snd_una_max)
1118  return TCP_FLAG_ACK;
1119  else
1120  return TCP_FLAG_FIN;
1121  default:
1122  clib_warning ("Shouldn't be here!");
1123  }
1124  return 0;
1125 }
1126 
1127 /**
1128  * Push TCP header and update connection variables
1129  */
1130 always_inline void
1132  tcp_state_t next_state, u8 compute_opts, u8 maybe_burst)
1133 {
1134  u32 advertise_wnd, data_len;
1135  u8 tcp_hdr_opts_len, flags;
1136  tcp_main_t *tm = &tcp_main;
1137  tcp_header_t *th;
1138 
1139  data_len = b->current_length;
1140  if (PREDICT_FALSE (b->flags & VLIB_BUFFER_NEXT_PRESENT))
1142 
1143  vnet_buffer (b)->tcp.flags = 0;
1144  vnet_buffer (b)->tcp.connection_index = tc->c_c_index;
1145 
1146  if (compute_opts)
1147  tc->snd_opts_len = tcp_make_options (tc, &tc->snd_opts, tc->state);
1148 
1149  tcp_hdr_opts_len = tc->snd_opts_len + sizeof (tcp_header_t);
1150 
1151  if (maybe_burst)
1152  advertise_wnd = tc->rcv_wnd >> tc->rcv_wscale;
1153  else
1154  advertise_wnd = tcp_window_to_advertise (tc, next_state);
1155 
1156  flags = tcp_make_state_flags (tc, next_state);
1157 
1158  th = vlib_buffer_push_tcp (b, tc->c_lcl_port, tc->c_rmt_port, tc->snd_nxt,
1159  tc->rcv_nxt, tcp_hdr_opts_len, flags,
1160  advertise_wnd);
1161 
1162  if (maybe_burst)
1163  {
1164  clib_memcpy ((u8 *) (th + 1),
1165  tm->wrk_ctx[tc->c_thread_index].cached_opts,
1166  tc->snd_opts_len);
1167  }
1168  else
1169  {
1170  u8 len = tcp_options_write ((u8 *) (th + 1), &tc->snd_opts);
1171  ASSERT (len == tc->snd_opts_len);
1172  }
1173 
1174  /*
1175  * Update connection variables
1176  */
1177 
1178  tc->snd_nxt += data_len;
1179  tc->rcv_las = tc->rcv_nxt;
1180 
1181  TCP_EVT_DBG (TCP_EVT_PKTIZE, tc);
1182 }
1183 
1184 u32
1186 {
1187  tcp_push_hdr_i (tc, b, TCP_STATE_ESTABLISHED, /* compute opts */ 0,
1188  /* burst */ 1);
1189  tc->snd_una_max = tc->snd_nxt;
1190  ASSERT (seq_leq (tc->snd_una_max, tc->snd_una + tc->snd_wnd));
1191  tcp_validate_txf_size (tc, tc->snd_una_max - tc->snd_una);
1192  /* If not tracking an ACK, start tracking */
1193  if (tc->rtt_ts == 0 && !tcp_in_cong_recovery (tc))
1194  {
1195  tc->rtt_ts = tcp_time_now ();
1196  tc->rtt_seq = tc->snd_nxt;
1197  }
1198  if (PREDICT_FALSE (!tcp_timer_is_active (tc, TCP_TIMER_RETRANSMIT)))
1199  {
1201  tc->rto_boff = 0;
1202  }
1203  tcp_trajectory_add_start (b, 3);
1204  return 0;
1205 }
1206 
1207 void
1209 {
1210  tcp_main_t *tm = vnet_get_tcp_main ();
1212 
1213  vlib_buffer_t *b;
1214  u32 bi;
1215 
1216  /* Get buffer */
1217  if (PREDICT_FALSE (tcp_get_free_buffer_index (tm, &bi)))
1218  return;
1219  b = vlib_get_buffer (vm, bi);
1220  tcp_init_buffer (vm, b);
1221 
1222  /* Fill in the ACK */
1223  tcp_make_ack (tc, b);
1224  tcp_enqueue_to_output (vm, b, bi, tc->c_is_ip4);
1225 }
1226 
1227 /**
1228  * Delayed ack timer handler
1229  *
1230  * Sends delayed ACK when timer expires
1231  */
1232 void
1234 {
1235  u32 thread_index = vlib_get_thread_index ();
1236  tcp_connection_t *tc;
1237 
1238  tc = tcp_connection_get (index, thread_index);
1239  tc->timers[TCP_TIMER_DELACK] = TCP_TIMER_HANDLE_INVALID;
1240  tcp_send_ack (tc);
1241 }
1242 
1243 /**
1244  * Build a retransmit segment
1245  *
1246  * @return the number of bytes in the segment or 0 if there's nothing to
1247  * retransmit
1248  */
1249 static u32
1251  u32 max_deq_bytes, vlib_buffer_t ** b)
1252 {
1253  tcp_main_t *tm = vnet_get_tcp_main ();
1255  int n_bytes = 0;
1256  u32 start, bi, available_bytes, seg_size;
1257  u8 *data;
1258 
1259  ASSERT (tc->state >= TCP_STATE_ESTABLISHED);
1260  ASSERT (max_deq_bytes != 0);
1261 
1262  /*
1263  * Make sure we can retransmit something
1264  */
1265  available_bytes = session_tx_fifo_max_dequeue (&tc->connection);
1266  ASSERT (available_bytes >= offset);
1267  available_bytes -= offset;
1268  if (!available_bytes)
1269  return 0;
1270  max_deq_bytes = clib_min (tc->snd_mss, max_deq_bytes);
1271  max_deq_bytes = clib_min (available_bytes, max_deq_bytes);
1272 
1273  /* Start is beyond snd_congestion */
1274  start = tc->snd_una + offset;
1275  if (seq_geq (start, tc->snd_congestion))
1276  goto done;
1277 
1278  /* Don't overshoot snd_congestion */
1279  if (seq_gt (start + max_deq_bytes, tc->snd_congestion))
1280  {
1281  max_deq_bytes = tc->snd_congestion - start;
1282  if (max_deq_bytes == 0)
1283  goto done;
1284  }
1285 
1286  seg_size = max_deq_bytes + MAX_HDRS_LEN;
1287 
1288  /*
1289  * Prepare options
1290  */
1291  tc->snd_opts_len = tcp_make_options (tc, &tc->snd_opts, tc->state);
1292 
1293  /*
1294  * Allocate and fill in buffer(s)
1295  */
1296 
1297  /* Easy case, buffer size greater than mss */
1298  if (PREDICT_TRUE (seg_size <= tm->bytes_per_buffer))
1299  {
1300  if (PREDICT_FALSE (tcp_get_free_buffer_index (tm, &bi)))
1301  return 0;
1302  *b = vlib_get_buffer (vm, bi);
1303  data = tcp_init_buffer (vm, *b);
1304  n_bytes = stream_session_peek_bytes (&tc->connection, data, offset,
1305  max_deq_bytes);
1306  ASSERT (n_bytes == max_deq_bytes);
1307  b[0]->current_length = n_bytes;
1308  tcp_push_hdr_i (tc, *b, tc->state, /* compute opts */ 0, /* burst */ 0);
1309  if (seq_gt (tc->snd_nxt, tc->snd_una_max))
1310  tc->snd_una_max = tc->snd_nxt;
1311  }
1312  /* Split mss into multiple buffers */
1313  else
1314  {
1315  u32 chain_bi = ~0, n_bufs_per_seg;
1316  u32 thread_index = vlib_get_thread_index ();
1317  u16 n_peeked, len_to_deq, available_bufs;
1318  vlib_buffer_t *chain_b, *prev_b;
1319  int i;
1320 
1321  /* Make sure we have enough buffers */
1322  n_bufs_per_seg = ceil ((double) seg_size / tm->bytes_per_buffer);
1323  available_bufs = vec_len (tm->wrk_ctx[thread_index].tx_buffers);
1324  if (n_bufs_per_seg > available_bufs)
1325  {
1326  tcp_alloc_tx_buffers (tm, thread_index, &available_bufs,
1327  VLIB_FRAME_SIZE);
1328 
1329  if (n_bufs_per_seg > available_bufs)
1330  {
1331  *b = 0;
1332  return 0;
1333  }
1334  }
1335 
1336  tcp_get_free_buffer_index (tm, &bi);
1337  ASSERT (bi != (u32) ~ 0);
1338  *b = vlib_get_buffer (vm, bi);
1339  data = tcp_init_buffer (vm, *b);
1340  n_bytes = stream_session_peek_bytes (&tc->connection, data, offset,
1341  tm->bytes_per_buffer -
1342  MAX_HDRS_LEN);
1343  b[0]->current_length = n_bytes;
1344  b[0]->flags |= VLIB_BUFFER_TOTAL_LENGTH_VALID;
1346  max_deq_bytes -= n_bytes;
1347 
1348  chain_b = *b;
1349  for (i = 1; i < n_bufs_per_seg; i++)
1350  {
1351  prev_b = chain_b;
1352  len_to_deq = clib_min (max_deq_bytes, tm->bytes_per_buffer);
1353  tcp_get_free_buffer_index (tm, &chain_bi);
1354  ASSERT (chain_bi != (u32) ~ 0);
1355  chain_b = vlib_get_buffer (vm, chain_bi);
1356  chain_b->current_data = 0;
1357  data = vlib_buffer_get_current (chain_b);
1358  n_peeked = stream_session_peek_bytes (&tc->connection, data,
1359  offset + n_bytes, len_to_deq);
1360  ASSERT (n_peeked == len_to_deq);
1361  n_bytes += n_peeked;
1362  chain_b->current_length = n_peeked;
1363  chain_b->next_buffer = 0;
1364 
1365  /* update previous buffer */
1366  prev_b->next_buffer = chain_bi;
1367  prev_b->flags |= VLIB_BUFFER_NEXT_PRESENT;
1368 
1369  max_deq_bytes -= n_peeked;
1370  b[0]->total_length_not_including_first_buffer += n_peeked;
1371  }
1372 
1373  tcp_push_hdr_i (tc, *b, tc->state, /* compute opts */ 0, /* burst */ 0);
1374  if (seq_gt (tc->snd_nxt, tc->snd_una_max))
1375  tc->snd_una_max = tc->snd_nxt;
1376  }
1377 
1378  ASSERT (n_bytes > 0);
1379  ASSERT (((*b)->current_data + (*b)->current_length) <=
1380  tm->bytes_per_buffer);
1381 
1382  if (tcp_in_fastrecovery (tc))
1383  tc->snd_rxt_bytes += n_bytes;
1384 
1385 done:
1386  TCP_EVT_DBG (TCP_EVT_CC_RTX, tc, offset, n_bytes);
1387  return n_bytes;
1388 }
1389 
1390 /**
1391  * Reset congestion control, switch cwnd to loss window and try again.
1392  */
1393 static void
1395 {
1396  TCP_EVT_DBG (TCP_EVT_CC_EVT, tc, 6);
1397  tc->prev_ssthresh = tc->ssthresh;
1398  tc->prev_cwnd = tc->cwnd;
1399 
1400  /* Cleanly recover cc (also clears up fast retransmit) */
1401  if (tcp_in_fastrecovery (tc))
1403 
1404  /* Start again from the beginning */
1405  tc->cc_algo->congestion (tc);
1406  tc->cwnd = tcp_loss_wnd (tc);
1407  tc->snd_congestion = tc->snd_una_max;
1408  tc->rtt_ts = 0;
1409  tc->cwnd_acc_bytes = 0;
1410 
1411  tcp_recovery_on (tc);
1412 }
1413 
1414 static inline void
1416 {
1417  tcp_main_t *tm = vnet_get_tcp_main ();
1419  u32 thread_index = vlib_get_thread_index ();
1420  tcp_connection_t *tc;
1421  vlib_buffer_t *b = 0;
1422  u32 bi, n_bytes;
1423 
1424  if (is_syn)
1425  {
1426  tc = tcp_half_open_connection_get (index);
1427  /* Note: the connection may have transitioned to ESTABLISHED... */
1428  if (PREDICT_FALSE (tc == 0))
1429  return;
1430  tc->timers[TCP_TIMER_RETRANSMIT_SYN] = TCP_TIMER_HANDLE_INVALID;
1431  }
1432  else
1433  {
1434  tc = tcp_connection_get (index, thread_index);
1435  /* Note: the connection may have been closed and pool_put */
1436  if (PREDICT_FALSE (tc == 0))
1437  return;
1438  tc->timers[TCP_TIMER_RETRANSMIT] = TCP_TIMER_HANDLE_INVALID;
1439  }
1440 
1441  TCP_EVT_DBG (TCP_EVT_CC_EVT, tc, 1);
1442 
1443  if (tc->state >= TCP_STATE_ESTABLISHED)
1444  {
1445  /* Lost FIN, retransmit and return */
1446  if (tcp_is_lost_fin (tc))
1447  {
1448  tcp_send_fin (tc);
1449  tc->rto_boff += 1;
1450  tc->rto = clib_min (tc->rto << 1, TCP_RTO_MAX);
1451  return;
1452  }
1453 
1454  /* Shouldn't be here */
1455  if ((tc->rto_boff == 0 && tc->snd_una == tc->snd_una_max)
1456  || (tc->rto_boff > 0 && seq_geq (tc->snd_una, tc->snd_congestion)))
1457  {
1458  tcp_recovery_off (tc);
1459  return;
1460  }
1461 
1462  /* We're not in recovery so make sure rto_boff is 0 */
1463  if (!tcp_in_recovery (tc) && tc->rto_boff > 0)
1464  {
1465  tc->rto_boff = 0;
1466  tcp_update_rto (tc);
1467  }
1468 
1469  /* Increment RTO backoff (also equal to number of retries) and go back
1470  * to first un-acked byte */
1471  tc->rto_boff += 1;
1472 
1473  /* First retransmit timeout */
1474  if (tc->rto_boff == 1)
1475  tcp_rxt_timeout_cc (tc);
1476 
1477  tc->snd_una_max = tc->snd_nxt = tc->snd_una;
1478  tc->rto = clib_min (tc->rto << 1, TCP_RTO_MAX);
1479 
1480  /* Send one segment. Note that n_bytes may be zero due to buffer shortfall */
1481  n_bytes = tcp_prepare_retransmit_segment (tc, 0, tc->snd_mss, &b);
1482 
1483  /* TODO be less aggressive about this */
1484  scoreboard_clear (&tc->sack_sb);
1485 
1486  if (n_bytes == 0)
1487  {
1489  return;
1490  }
1491 
1492  bi = vlib_get_buffer_index (vm, b);
1493 
1494  /* For first retransmit, record timestamp (Eifel detection RFC3522) */
1495  if (tc->rto_boff == 1)
1496  tc->snd_rxt_ts = tcp_time_now ();
1497 
1498  tcp_enqueue_to_output (vm, b, bi, tc->c_is_ip4);
1500  }
1501  /* Retransmit for SYN */
1502  else if (tc->state == TCP_STATE_SYN_SENT)
1503  {
1504  /* Half-open connection actually moved to established but we were
1505  * waiting for syn retransmit to pop to call cleanup from the right
1506  * thread. */
1507  if (tc->flags & TCP_CONN_HALF_OPEN_DONE)
1508  {
1510  {
1511  clib_warning ("could not remove half-open connection");
1512  ASSERT (0);
1513  }
1514  return;
1515  }
1516 
1517  /* Try without increasing RTO a number of times. If this fails,
1518  * start growing RTO exponentially */
1519  tc->rto_boff += 1;
1520  if (tc->rto_boff > TCP_RTO_SYN_RETRIES)
1521  tc->rto = clib_min (tc->rto << 1, TCP_RTO_MAX);
1522 
1523  tcp_timer_update (tc, TCP_TIMER_RETRANSMIT_SYN,
1524  tc->rto * TCP_TO_TIMER_TICK);
1525 
1526  if (PREDICT_FALSE (tcp_get_free_buffer_index (tm, &bi)))
1527  return;
1528 
1529  b = vlib_get_buffer (vm, bi);
1530  tcp_init_buffer (vm, b);
1531  tcp_make_syn (tc, b);
1532 
1533  tc->rtt_ts = 0;
1534  TCP_EVT_DBG (TCP_EVT_SYN_RXT, tc, 0);
1535 
1536  /* This goes straight to ipx_lookup. Retransmit timer set already */
1537  tcp_push_ip_hdr (tm, tc, b);
1538  tcp_enqueue_to_ip_lookup (vm, b, bi, tc->c_is_ip4, tc->c_fib_index);
1539  }
1540  /* Retransmit SYN-ACK */
1541  else if (tc->state == TCP_STATE_SYN_RCVD)
1542  {
1543  tc->rto_boff += 1;
1544  if (tc->rto_boff > TCP_RTO_SYN_RETRIES)
1545  tc->rto = clib_min (tc->rto << 1, TCP_RTO_MAX);
1546  tc->rtt_ts = 0;
1547 
1548  if (PREDICT_FALSE (tcp_get_free_buffer_index (tm, &bi)))
1549  {
1551  return;
1552  }
1553 
1554  b = vlib_get_buffer (vm, bi);
1555  tcp_init_buffer (vm, b);
1556  tcp_make_synack (tc, b);
1557  TCP_EVT_DBG (TCP_EVT_SYN_RXT, tc, 1);
1558 
1559  /* Retransmit timer already updated, just enqueue to output */
1560  tcp_enqueue_to_output (vm, b, bi, tc->c_is_ip4);
1561  }
1562  else
1563  {
1564  ASSERT (tc->state == TCP_STATE_CLOSED);
1565  return;
1566  }
1567 }
1568 
1569 void
1571 {
1572  tcp_timer_retransmit_handler_i (index, 0);
1573 }
1574 
1575 void
1577 {
1578  tcp_timer_retransmit_handler_i (index, 1);
1579 }
1580 
1581 /**
1582  * Got 0 snd_wnd from peer, try to do something about it.
1583  *
1584  */
1585 void
1587 {
1588  tcp_main_t *tm = vnet_get_tcp_main ();
1590  u32 thread_index = vlib_get_thread_index ();
1591  tcp_connection_t *tc;
1592  vlib_buffer_t *b;
1593  u32 bi, max_snd_bytes, available_bytes, offset;
1594  int n_bytes = 0;
1595  u8 *data;
1596 
1597  tc = tcp_connection_get_if_valid (index, thread_index);
1598 
1599  if (!tc)
1600  return;
1601 
1602  /* Make sure timer handle is set to invalid */
1603  tc->timers[TCP_TIMER_PERSIST] = TCP_TIMER_HANDLE_INVALID;
1604 
1605  /* Problem already solved or worse */
1606  if (tc->state == TCP_STATE_CLOSED || tc->state > TCP_STATE_ESTABLISHED
1607  || tc->snd_wnd > tc->snd_mss || tcp_in_recovery (tc))
1608  return;
1609 
1610  available_bytes = session_tx_fifo_max_dequeue (&tc->connection);
1611  offset = tc->snd_una_max - tc->snd_una;
1612 
1613  /* Reprogram persist if no new bytes available to send. We may have data
1614  * next time */
1615  if (!available_bytes)
1616  {
1617  tcp_persist_timer_set (tc);
1618  return;
1619  }
1620 
1621  if (available_bytes <= offset)
1622  {
1623  ASSERT (tcp_timer_is_active (tc, TCP_TIMER_RETRANSMIT));
1624  return;
1625  }
1626 
1627  /* Increment RTO backoff */
1628  tc->rto_boff += 1;
1629  tc->rto = clib_min (tc->rto << 1, TCP_RTO_MAX);
1630 
1631  /*
1632  * Try to force the first unsent segment (or buffer)
1633  */
1634  if (PREDICT_FALSE (tcp_get_free_buffer_index (tm, &bi)))
1635  return;
1636  b = vlib_get_buffer (vm, bi);
1637  data = tcp_init_buffer (vm, b);
1638 
1639  tcp_validate_txf_size (tc, offset);
1640  tc->snd_opts_len = tcp_make_options (tc, &tc->snd_opts, tc->state);
1641  max_snd_bytes = clib_min (tc->snd_mss, tm->bytes_per_buffer - MAX_HDRS_LEN);
1642  n_bytes = stream_session_peek_bytes (&tc->connection, data, offset,
1643  max_snd_bytes);
1644  b->current_length = n_bytes;
1645  ASSERT (n_bytes != 0 && (tcp_timer_is_active (tc, TCP_TIMER_RETRANSMIT)
1646  || tc->snd_nxt == tc->snd_una_max
1647  || tc->rto_boff > 1));
1648 
1649  tcp_push_hdr_i (tc, b, tc->state, /* compute opts */ 0, /* burst */ 0);
1650  tc->snd_una_max = tc->snd_nxt;
1651  tcp_validate_txf_size (tc, tc->snd_una_max - tc->snd_una);
1652  tcp_enqueue_to_output (vm, b, bi, tc->c_is_ip4);
1653 
1654  /* Just sent new data, enable retransmit */
1656 }
1657 
1658 /**
1659  * Retransmit first unacked segment
1660  */
1661 void
1663 {
1665  vlib_buffer_t *b;
1666  u32 bi, old_snd_nxt, n_bytes;
1667 
1668  old_snd_nxt = tc->snd_nxt;
1669  tc->snd_nxt = tc->snd_una;
1670 
1671  TCP_EVT_DBG (TCP_EVT_CC_EVT, tc, 2);
1672  n_bytes = tcp_prepare_retransmit_segment (tc, 0, tc->snd_mss, &b);
1673  if (!n_bytes)
1674  return;
1675  bi = vlib_get_buffer_index (vm, b);
1676  tcp_enqueue_to_output (vm, b, bi, tc->c_is_ip4);
1677 
1678  tc->snd_nxt = old_snd_nxt;
1679 }
1680 
1681 /**
1682  * Do fast retransmit with SACKs
1683  */
1684 void
1686 {
1688  u32 n_written = 0, offset, max_bytes, n_segs = 0;
1689  vlib_buffer_t *b = 0;
1690  sack_scoreboard_hole_t *hole;
1691  sack_scoreboard_t *sb;
1692  u32 bi, old_snd_nxt;
1693  int snd_space;
1694  u8 snd_limited = 0, can_rescue = 0;
1695 
1696  ASSERT (tcp_in_fastrecovery (tc));
1697 
1698  old_snd_nxt = tc->snd_nxt;
1699  sb = &tc->sack_sb;
1700  snd_space = tcp_available_cc_snd_space (tc);
1701 
1702  if (snd_space < tc->snd_mss)
1703  goto done;
1704 
1705  TCP_EVT_DBG (TCP_EVT_CC_EVT, tc, 0);
1706  hole = scoreboard_get_hole (sb, sb->cur_rxt_hole);
1707  while (hole && snd_space > 0 && n_segs++ < VLIB_FRAME_SIZE)
1708  {
1709  hole = scoreboard_next_rxt_hole (sb, hole,
1711  &can_rescue, &snd_limited);
1712  if (!hole)
1713  {
1714  if (!can_rescue || !(seq_lt (sb->rescue_rxt, tc->snd_una)
1715  || seq_gt (sb->rescue_rxt,
1716  tc->snd_congestion)))
1717  break;
1718 
1719  /* If rescue rxt undefined or less than snd_una then one segment of
1720  * up to SMSS octets that MUST include the highest outstanding
1721  * unSACKed sequence number SHOULD be returned, and RescueRxt set to
1722  * RecoveryPoint. HighRxt MUST NOT be updated.
1723  */
1724  max_bytes = clib_min (tc->snd_mss,
1725  tc->snd_congestion - tc->snd_una);
1726  max_bytes = clib_min (max_bytes, snd_space);
1727  offset = tc->snd_congestion - tc->snd_una - max_bytes;
1728  sb->rescue_rxt = tc->snd_congestion;
1729  tc->snd_nxt = tc->snd_una + offset;
1730  n_written = tcp_prepare_retransmit_segment (tc, offset, max_bytes,
1731  &b);
1732  if (!n_written)
1733  goto done;
1734 
1735  bi = vlib_get_buffer_index (vm, b);
1736  tcp_enqueue_to_output (vm, b, bi, tc->c_is_ip4);
1737  break;
1738  }
1739 
1740  max_bytes = clib_min (hole->end - sb->high_rxt, snd_space);
1741  max_bytes = snd_limited ? clib_min (max_bytes, tc->snd_mss) : max_bytes;
1742  if (max_bytes == 0)
1743  break;
1744  offset = sb->high_rxt - tc->snd_una;
1745  tc->snd_nxt = sb->high_rxt;
1746  n_written = tcp_prepare_retransmit_segment (tc, offset, max_bytes, &b);
1747 
1748  /* Nothing left to retransmit */
1749  if (n_written == 0)
1750  break;
1751 
1752  bi = vlib_get_buffer_index (vm, b);
1753  sb->high_rxt += n_written;
1754  tcp_enqueue_to_output (vm, b, bi, tc->c_is_ip4);
1755  ASSERT (n_written <= snd_space);
1756  snd_space -= n_written;
1757  }
1758 
1759 done:
1760  /* If window allows, send 1 SMSS of new data */
1761  tc->snd_nxt = old_snd_nxt;
1762 }
1763 
1764 /**
1765  * Fast retransmit without SACK info
1766  */
1767 void
1769 {
1771  u32 n_written = 0, offset = 0, bi, old_snd_nxt;
1772  int snd_space;
1773  vlib_buffer_t *b;
1774 
1775  ASSERT (tcp_in_fastrecovery (tc));
1776  TCP_EVT_DBG (TCP_EVT_CC_EVT, tc, 0);
1777 
1778  /* Start resending from first un-acked segment */
1779  old_snd_nxt = tc->snd_nxt;
1780  tc->snd_nxt = tc->snd_una;
1781  snd_space = tcp_available_cc_snd_space (tc);
1782 
1783  while (snd_space > 0)
1784  {
1785  offset += n_written;
1786  n_written = tcp_prepare_retransmit_segment (tc, offset, snd_space, &b);
1787 
1788  /* Nothing left to retransmit */
1789  if (n_written == 0)
1790  break;
1791 
1792  bi = vlib_get_buffer_index (vm, b);
1793  tcp_enqueue_to_output (vm, b, bi, tc->c_is_ip4);
1794  snd_space -= n_written;
1795  }
1796 
1797  /* Restore snd_nxt. If window allows, send 1 SMSS of new data */
1798  tc->snd_nxt = old_snd_nxt;
1799 }
1800 
1801 /**
1802  * Do fast retransmit
1803  */
1804 void
1806 {
1807  if (tcp_opts_sack_permitted (&tc->rcv_opts))
1809  else
1811 }
1812 
1813 static u32
1815 {
1816  stream_session_t *s = session_get (tc->c_s_index, tc->c_thread_index);
1817  return svm_fifo_has_ooo_data (s->server_rx_fifo);
1818 }
1819 
1820 static void
1822  u16 * next0, u32 * error0)
1823 {
1824  ip_adjacency_t *adj;
1825  adj_index_t ai;
1826 
1827  /* Not thread safe but as long as the connection exists the adj should
1828  * not be removed */
1829  ai = adj_nbr_find (FIB_PROTOCOL_IP6, VNET_LINK_IP6, &tc0->c_rmt_ip,
1830  tc0->sw_if_index);
1831  if (ai == ADJ_INDEX_INVALID)
1832  {
1833  vnet_buffer (b0)->sw_if_index[VLIB_TX] = ~0;
1834  *next0 = TCP_OUTPUT_NEXT_DROP;
1835  *error0 = TCP_ERROR_LINK_LOCAL_RW;
1836  return;
1837  }
1838 
1839  adj = adj_get (ai);
1841  *next0 = TCP_OUTPUT_NEXT_IP_REWRITE;
1842  else if (adj->lookup_next_index == IP_LOOKUP_NEXT_ARP)
1843  *next0 = TCP_OUTPUT_NEXT_IP_ARP;
1844  else
1845  {
1846  *next0 = TCP_OUTPUT_NEXT_DROP;
1847  *error0 = TCP_ERROR_LINK_LOCAL_RW;
1848  }
1849  vnet_buffer (b0)->ip.adj_index[VLIB_TX] = ai;
1850 }
1851 
1852 static void
1854  u32 * to_next, u32 n_bufs)
1855 {
1856  u32 n_trace = vlib_get_trace_count (vm, node);
1857  tcp_connection_t *tc;
1858  tcp_tx_trace_t *t;
1859  vlib_buffer_t *b;
1860  tcp_header_t *th;
1861  int i;
1862 
1863  for (i = 0; i < clib_min (n_trace, n_bufs); i++)
1864  {
1865  b = vlib_get_buffer (vm, to_next[i]);
1866  th = vlib_buffer_get_current (b);
1867  tc = tcp_connection_get (vnet_buffer (b)->tcp.connection_index,
1868  vm->thread_index);
1869  t = vlib_add_trace (vm, node, b, sizeof (*t));
1870  clib_memcpy (&t->tcp_header, th, sizeof (t->tcp_header));
1871  clib_memcpy (&t->tcp_connection, tc, sizeof (t->tcp_connection));
1872  }
1873 }
1874 
1875 always_inline void
1877  tcp_connection_t * tc0, u8 is_ip4)
1878 {
1879  tcp_header_t *th0 = 0;
1880 
1881  th0 = vlib_buffer_get_current (b0);
1882  TCP_EVT_DBG (TCP_EVT_OUTPUT, tc0, th0->flags, b0->current_length);
1883  if (is_ip4)
1884  {
1885  vlib_buffer_push_ip4 (vm, b0, &tc0->c_lcl_ip4, &tc0->c_rmt_ip4,
1886  IP_PROTOCOL_TCP, 1);
1887  b0->flags |= VNET_BUFFER_F_OFFLOAD_TCP_CKSUM;
1888  vnet_buffer (b0)->l4_hdr_offset = (u8 *) th0 - b0->data;
1889  th0->checksum = 0;
1890  }
1891  else
1892  {
1893  ip6_header_t *ih0;
1894  ih0 = vlib_buffer_push_ip6 (vm, b0, &tc0->c_lcl_ip6,
1895  &tc0->c_rmt_ip6, IP_PROTOCOL_TCP);
1896  b0->flags |= VNET_BUFFER_F_OFFLOAD_TCP_CKSUM;
1897  vnet_buffer (b0)->l3_hdr_offset = (u8 *) ih0 - b0->data;
1898  vnet_buffer (b0)->l4_hdr_offset = (u8 *) th0 - b0->data;
1899  th0->checksum = 0;
1900  }
1901 }
1902 
1903 always_inline void
1905  u32 * error0, u16 * next0, u8 is_ip4)
1906 {
1907 
1908  if (PREDICT_FALSE (tc0->state == TCP_STATE_CLOSED))
1909  {
1910  *error0 = TCP_ERROR_INVALID_CONNECTION;
1911  *next0 = TCP_OUTPUT_NEXT_DROP;
1912  return;
1913  }
1914 
1915  vnet_buffer (b0)->sw_if_index[VLIB_TX] = tc0->c_fib_index;
1916  vnet_buffer (b0)->sw_if_index[VLIB_RX] = 0;
1917 
1918  if (!is_ip4)
1919  {
1920  if (PREDICT_FALSE (ip6_address_is_link_local_unicast (&tc0->c_rmt_ip6)))
1921  tcp_output_handle_link_local (tc0, b0, next0, error0);
1922  }
1923 
1924  /* Filter out DUPACKs if there are no OOO segments left */
1925  if (PREDICT_FALSE (vnet_buffer (b0)->tcp.flags & TCP_BUF_FLAG_DUPACK))
1926  {
1927  /* N.B. Should not filter burst of dupacks. Two issues:
1928  * 1) dupacks open cwnd on remote peer when congested
1929  * 2) acks leaving should have the latest rcv_wnd since the
1930  * burst may have eaten up all of it, so only the old ones
1931  * could be filtered.
1932  */
1933  if (!tcp_session_has_ooo_data (tc0))
1934  {
1935  *error0 = TCP_ERROR_FILTERED_DUPACKS;
1936  *next0 = TCP_OUTPUT_NEXT_DROP;
1937  return;
1938  }
1939  }
1940 
1941  /* Stop DELACK timer and fix flags */
1942  tc0->flags &= ~(TCP_CONN_SNDACK);
1943  if (!TCP_ALWAYS_ACK)
1944  tcp_timer_reset (tc0, TCP_TIMER_DELACK);
1945 }
1946 
1949  vlib_frame_t * frame, int is_ip4)
1950 {
1951  u32 n_left_from, *from, thread_index = vm->thread_index;
1952  vlib_buffer_t *bufs[VLIB_FRAME_SIZE], **b;
1953  u16 nexts[VLIB_FRAME_SIZE], *next;
1954 
1955  from = vlib_frame_vector_args (frame);
1956  n_left_from = frame->n_vectors;
1957  tcp_set_time_now (thread_index);
1958 
1960  tcp46_output_trace_frame (vm, node, from, n_left_from);
1961 
1962  vlib_get_buffers (vm, from, bufs, n_left_from);
1963  b = bufs;
1964  next = nexts;
1965 
1966  while (n_left_from >= 4)
1967  {
1968  u32 error0 = TCP_ERROR_PKTS_SENT, error1 = TCP_ERROR_PKTS_SENT;
1969  tcp_connection_t *tc0, *tc1;
1970 
1971  {
1972  vlib_prefetch_buffer_header (b[2], STORE);
1973  CLIB_PREFETCH (b[2]->data, 2 * CLIB_CACHE_LINE_BYTES, STORE);
1974 
1975  vlib_prefetch_buffer_header (b[3], STORE);
1976  CLIB_PREFETCH (b[3]->data, 2 * CLIB_CACHE_LINE_BYTES, STORE);
1977  }
1978 
1979  next[0] = next[1] = TCP_OUTPUT_NEXT_IP_LOOKUP;
1980 
1981  tc0 = tcp_connection_get (vnet_buffer (b[0])->tcp.connection_index,
1982  thread_index);
1983  tc1 = tcp_connection_get (vnet_buffer (b[1])->tcp.connection_index,
1984  thread_index);
1985 
1986  tcp_output_push_ip (vm, b[0], tc0, is_ip4);
1987  tcp_output_push_ip (vm, b[1], tc1, is_ip4);
1988 
1989  tcp_output_handle_packet (tc0, b[0], &error0, &next[0], is_ip4);
1990  tcp_output_handle_packet (tc1, b[1], &error1, &next[1], is_ip4);
1991 
1992  b += 2;
1993  next += 2;
1994  n_left_from -= 2;
1995  }
1996  while (n_left_from > 0)
1997  {
1998  u32 error0 = TCP_ERROR_PKTS_SENT;
1999  tcp_connection_t *tc0;
2000 
2001  if (n_left_from > 1)
2002  {
2003  vlib_prefetch_buffer_header (b[1], STORE);
2004  CLIB_PREFETCH (b[1]->data, 2 * CLIB_CACHE_LINE_BYTES, STORE);
2005  }
2006 
2007  next[0] = TCP_OUTPUT_NEXT_IP_LOOKUP;
2008  tc0 = tcp_connection_get (vnet_buffer (b[0])->tcp.connection_index,
2009  thread_index);
2010 
2011  tcp_output_push_ip (vm, b[0], tc0, is_ip4);
2012  tcp_output_handle_packet (tc0, b[0], &error0, &next[0], is_ip4);
2013 
2014  b += 1;
2015  next += 1;
2016  n_left_from -= 1;
2017  }
2018 
2019  vlib_buffer_enqueue_to_next (vm, node, from, nexts, frame->n_vectors);
2020  return frame->n_vectors;
2021 }
2022 
2023 static uword
2025  vlib_frame_t * from_frame)
2026 {
2027  return tcp46_output_inline (vm, node, from_frame, 1 /* is_ip4 */ );
2028 }
2029 
2030 static uword
2032  vlib_frame_t * from_frame)
2033 {
2034  return tcp46_output_inline (vm, node, from_frame, 0 /* is_ip4 */ );
2035 }
2036 
2037 /* *INDENT-OFF* */
2039 {
2040  .function = tcp4_output,.name = "tcp4-output",
2041  /* Takes a vector of packets. */
2042  .vector_size = sizeof (u32),
2043  .n_errors = TCP_N_ERROR,
2044  .error_strings = tcp_error_strings,
2045  .n_next_nodes = TCP_OUTPUT_N_NEXT,
2046  .next_nodes = {
2047 #define _(s,n) [TCP_OUTPUT_NEXT_##s] = n,
2049 #undef _
2050  },
2051  .format_buffer = format_tcp_header,
2052  .format_trace = format_tcp_tx_trace,
2053 };
2054 /* *INDENT-ON* */
2055 
2057 
2058 /* *INDENT-OFF* */
2060 {
2061  .function = tcp6_output,
2062  .name = "tcp6-output",
2063  /* Takes a vector of packets. */
2064  .vector_size = sizeof (u32),
2065  .n_errors = TCP_N_ERROR,
2066  .error_strings = tcp_error_strings,
2067  .n_next_nodes = TCP_OUTPUT_N_NEXT,
2068  .next_nodes = {
2069 #define _(s,n) [TCP_OUTPUT_NEXT_##s] = n,
2071 #undef _
2072  },
2073  .format_buffer = format_tcp_header,
2074  .format_trace = format_tcp_tx_trace,
2075 };
2076 /* *INDENT-ON* */
2077 
2079 
2080 typedef enum _tcp_reset_next
2081 {
2086 
2087 #define foreach_tcp4_reset_next \
2088  _(DROP, "error-drop") \
2089  _(IP_LOOKUP, "ip4-lookup")
2090 
2091 #define foreach_tcp6_reset_next \
2092  _(DROP, "error-drop") \
2093  _(IP_LOOKUP, "ip6-lookup")
2094 
2095 static uword
2097  vlib_frame_t * from_frame, u8 is_ip4)
2098 {
2099  u32 n_left_from, next_index, *from, *to_next;
2100  u32 my_thread_index = vm->thread_index;
2101 
2102  from = vlib_frame_vector_args (from_frame);
2103  n_left_from = from_frame->n_vectors;
2104 
2105  next_index = node->cached_next_index;
2106 
2107  while (n_left_from > 0)
2108  {
2109  u32 n_left_to_next;
2110 
2111  vlib_get_next_frame (vm, node, next_index, to_next, n_left_to_next);
2112 
2113  while (n_left_from > 0 && n_left_to_next > 0)
2114  {
2115  u32 bi0;
2116  vlib_buffer_t *b0;
2117  tcp_tx_trace_t *t0;
2118  tcp_header_t *th0;
2119  u32 error0 = TCP_ERROR_RST_SENT, next0 = TCP_RESET_NEXT_IP_LOOKUP;
2120 
2121  bi0 = from[0];
2122  to_next[0] = bi0;
2123  from += 1;
2124  to_next += 1;
2125  n_left_from -= 1;
2126  n_left_to_next -= 1;
2127 
2128  b0 = vlib_get_buffer (vm, bi0);
2129 
2130  if (tcp_make_reset_in_place (vm, b0, vnet_buffer (b0)->tcp.flags,
2131  my_thread_index, is_ip4))
2132  {
2133  error0 = TCP_ERROR_LOOKUP_DROPS;
2134  next0 = TCP_RESET_NEXT_DROP;
2135  goto done;
2136  }
2137 
2138  /* Prepare to send to IP lookup */
2139  vnet_buffer (b0)->sw_if_index[VLIB_TX] = ~0;
2140  next0 = TCP_RESET_NEXT_IP_LOOKUP;
2141 
2142  done:
2143  b0->error = node->errors[error0];
2144  b0->flags |= VNET_BUFFER_F_LOCALLY_ORIGINATED;
2145  if (PREDICT_FALSE (b0->flags & VLIB_BUFFER_IS_TRACED))
2146  {
2147  th0 = vlib_buffer_get_current (b0);
2148  if (is_ip4)
2149  th0 = ip4_next_header ((ip4_header_t *) th0);
2150  else
2151  th0 = ip6_next_header ((ip6_header_t *) th0);
2152  t0 = vlib_add_trace (vm, node, b0, sizeof (*t0));
2153  clib_memcpy (&t0->tcp_header, th0, sizeof (t0->tcp_header));
2154  }
2155 
2156  vlib_validate_buffer_enqueue_x1 (vm, node, next_index, to_next,
2157  n_left_to_next, bi0, next0);
2158  }
2159  vlib_put_next_frame (vm, node, next_index, n_left_to_next);
2160  }
2161  return from_frame->n_vectors;
2162 }
2163 
2164 static uword
2166  vlib_frame_t * from_frame)
2167 {
2168  return tcp46_send_reset_inline (vm, node, from_frame, 1);
2169 }
2170 
2171 static uword
2173  vlib_frame_t * from_frame)
2174 {
2175  return tcp46_send_reset_inline (vm, node, from_frame, 0);
2176 }
2177 
2178 /* *INDENT-OFF* */
2180  .function = tcp4_send_reset,
2181  .name = "tcp4-reset",
2182  .vector_size = sizeof (u32),
2183  .n_errors = TCP_N_ERROR,
2184  .error_strings = tcp_error_strings,
2185  .n_next_nodes = TCP_RESET_N_NEXT,
2186  .next_nodes = {
2187 #define _(s,n) [TCP_RESET_NEXT_##s] = n,
2189 #undef _
2190  },
2191  .format_trace = format_tcp_tx_trace,
2192 };
2193 /* *INDENT-ON* */
2194 
2196 
2197 /* *INDENT-OFF* */
2199  .function = tcp6_send_reset,
2200  .name = "tcp6-reset",
2201  .vector_size = sizeof (u32),
2202  .n_errors = TCP_N_ERROR,
2203  .error_strings = tcp_error_strings,
2204  .n_next_nodes = TCP_RESET_N_NEXT,
2205  .next_nodes = {
2206 #define _(s,n) [TCP_RESET_NEXT_##s] = n,
2208 #undef _
2209  },
2210  .format_trace = format_tcp_tx_trace,
2211 };
2212 /* *INDENT-ON* */
2213 
2215 
2216 /*
2217  * fd.io coding-style-patch-verification: ON
2218  *
2219  * Local Variables:
2220  * eval: (c-set-style "gnu")
2221  * End:
2222  */
void tcp_make_fin(tcp_connection_t *tc, vlib_buffer_t *b)
Convert buffer to FIN-ACK.
Definition: tcp_output.c:573
#define tcp_in_cong_recovery(tc)
Definition: tcp.h:350
static void tcp_enqueue_to_ip_lookup_i(vlib_main_t *vm, vlib_buffer_t *b, u32 bi, u8 is_ip4, u32 fib_index, u8 flush)
Definition: tcp_output.c:646
#define TCP_DBG_BUFFER_ALLOC_MAYBE_FAIL(thread_index)
Definition: tcp_debug.h:874
static u32 tcp_prepare_retransmit_segment(tcp_connection_t *tc, u32 offset, u32 max_deq_bytes, vlib_buffer_t **b)
Build a retransmit segment.
Definition: tcp_output.c:1250
void session_flush_frames_main_thread(vlib_main_t *vm)
Definition: session.c:1338
End of options.
Definition: tcp_packet.h:104
static u32 tcp_options_write(u8 *data, tcp_options_t *opts)
Write TCP options to segment.
Definition: tcp_output.c:207
static void tcp_rxt_timeout_cc(tcp_connection_t *tc)
Reset congestion control, switch cwnd to loss window and try again.
Definition: tcp_output.c:1394
#define clib_min(x, y)
Definition: clib.h:289
#define TCP_OPTION_LEN_EOL
Definition: tcp_packet.h:163
#define CLIB_UNUSED(x)
Definition: clib.h:79
#define tcp_in_recovery(tc)
Definition: tcp.h:344
void scoreboard_clear(sack_scoreboard_t *sb)
Definition: tcp_input.c:783
static void tcp_retransmit_timer_set(tcp_connection_t *tc)
Definition: tcp.h:736
static u32 transport_rx_fifo_size(transport_connection_t *tc)
Definition: session.h:460
#define TCP_OPTION_LEN_SACK_PERMITTED
Definition: tcp_packet.h:167
static void tcp_flush_frame_to_ip_lookup(vlib_main_t *vm, u8 thread_index, u8 is_ip4)
Flush ip lookup tx frames populated by timer pops.
Definition: tcp_output.c:1039
#define seq_leq(_s1, _s2)
Definition: tcp.h:547
static u32 vlib_get_trace_count(vlib_main_t *vm, vlib_node_runtime_t *rt)
Definition: trace_funcs.h:143
void tcp_timer_retransmit_handler(u32 index)
Definition: tcp_output.c:1570
ip4_address_t src_address
Definition: ip4_packet.h:169
#define TCP_TO_TIMER_TICK
Definition: tcp.h:96
Selective Ack permitted.
Definition: tcp_packet.h:108
#define TCP_FLAG_SYN
Definition: fa_node.h:13
#define TCP_MIN_RX_FIFO_SIZE
Definition: tcp.h:36
void tcp_send_reset_w_pkt(tcp_connection_t *tc, vlib_buffer_t *pkt, u8 is_ip4)
Send reset without reusing existing buffer.
Definition: tcp_output.c:830
static u8 svm_fifo_has_ooo_data(svm_fifo_t *f)
Definition: svm_fifo.h:123
#define tcp_opts_tstamp(_to)
Definition: tcp_packet.h:157
static uword tcp4_send_reset(vlib_main_t *vm, vlib_node_runtime_t *node, vlib_frame_t *from_frame)
Definition: tcp_output.c:2165
void tcp_make_synack(tcp_connection_t *tc, vlib_buffer_t *b)
Convert buffer to SYN-ACK.
Definition: tcp_output.c:616
#define PREDICT_TRUE(x)
Definition: clib.h:106
static void tcp_enqueue_to_output(vlib_main_t *vm, vlib_buffer_t *b, u32 bi, u8 is_ip4)
Definition: tcp_output.c:733
static tcp_connection_t * tcp_connection_get_if_valid(u32 conn_index, u32 thread_index)
Definition: tcp.h:478
static int tcp_make_syn_options(tcp_options_t *opts, u8 wnd_scale)
Definition: tcp_output.c:290
struct _sack_scoreboard sack_scoreboard_t
IP unicast adjacency.
Definition: adj.h:175
u32 fib_table_get_index_for_sw_if_index(fib_protocol_t proto, u32 sw_if_index)
Get the index of the FIB bound to the interface.
Definition: fib_table.c:948
static tcp_connection_t * tcp_half_open_connection_get(u32 conn_index)
Definition: tcp.h:515
void tcp_update_rcv_mss(tcp_connection_t *tc)
Update max segment size we&#39;re able to process.
Definition: tcp_output.c:90
struct _tcp_main tcp_main_t
u32 thread_index
Definition: main.h:179
This packet is to be rewritten and forwarded to the next processing node.
Definition: adj.h:73
void tcp_flush_frame_to_output(vlib_main_t *vm, u8 thread_index, u8 is_ip4)
Flush tx frame populated by retransmits and timer pops.
Definition: tcp_output.c:1022
#define TCP_OPTS_ALIGN
Definition: tcp_packet.h:174
static u32 tcp_initial_wnd_unscaled(tcp_connection_t *tc)
TCP&#39;s initial window.
Definition: tcp_output.c:100
#define tcp_recovery_off(tc)
Definition: tcp.h:342
enum _tcp_output_next tcp_output_next_t
int i
static u32 tcp_session_has_ooo_data(tcp_connection_t *tc)
Definition: tcp_output.c:1814
static u32 format_get_indent(u8 *s)
Definition: format.h:72
struct _tcp_connection tcp_connection_t
u8 * format(u8 *s, const char *fmt,...)
Definition: format.c:419
static u32 tcp_available_cc_snd_space(const tcp_connection_t *tc)
Estimate of how many bytes we can still push into the network.
Definition: tcp.h:635
#define tcp_opts_sack(_to)
Definition: tcp_packet.h:159
#define vec_validate_aligned(V, I, A)
Make sure vector is long enough for given index (no header, specified alignment)
Definition: vec.h:448
static uword tcp46_send_reset_inline(vlib_main_t *vm, vlib_node_runtime_t *node, vlib_frame_t *from_frame, u8 is_ip4)
Definition: tcp_output.c:2096
vlib_error_t * errors
Vector of errors for this node.
Definition: node.h:451
No operation.
Definition: tcp_packet.h:105
u8 n_sack_blocks
Number of SACKs blocks.
Definition: tcp_packet.h:152
struct _tcp_header tcp_header_t
int tcp_half_open_connection_cleanup(tcp_connection_t *tc)
Try to cleanup half-open connection.
Definition: tcp.c:170
ip6_address_t src_address
Definition: ip6_packet.h:347
static void tcp_enqueue_to_output_now(vlib_main_t *vm, vlib_buffer_t *b, u32 bi, u8 is_ip4)
Definition: tcp_output.c:739
unsigned char u8
Definition: types.h:56
struct _sack_scoreboard_hole sack_scoreboard_hole_t
u8 wscale
Window scale advertised.
Definition: tcp_packet.h:148
enum fib_protocol_t_ fib_protocol_t
Protocol Type.
#define TCP_OPTS_MAX_SACK_BLOCKS
Definition: tcp_packet.h:175
#define TCP_MAX_RX_FIFO_SIZE
Definition: tcp.h:35
u16 dummy_mtu
Definition: tcp_output.c:56
vlib_node_registration_t ip4_lookup_node
(constructor) VLIB_REGISTER_NODE (ip4_lookup_node)
Definition: ip4_forward.c:104
static void tcp_timer_retransmit_handler_i(u32 index, u8 is_syn)
Definition: tcp_output.c:1415
#define foreach_tcp4_reset_next
Definition: tcp_output.c:2087
Limit MSS.
Definition: tcp_packet.h:106
static uword tcp46_output_inline(vlib_main_t *vm, vlib_node_runtime_t *node, vlib_frame_t *frame, int is_ip4)
Definition: tcp_output.c:1948
static void * tcp_init_buffer(vlib_main_t *vm, vlib_buffer_t *b)
Definition: tcp_output.c:516
static ip_adjacency_t * adj_get(adj_index_t adj_index)
Get a pointer to an adjacency object from its index.
Definition: adj.h:370
void tcp_make_syn(tcp_connection_t *tc, vlib_buffer_t *b)
Convert buffer to SYN.
Definition: tcp_output.c:591
i16 current_data
signed offset in data[], pre_data[] that we are currently processing.
Definition: buffer.h:104
#define seq_gt(_s1, _s2)
Definition: tcp.h:548
sack_scoreboard_hole_t * scoreboard_get_hole(sack_scoreboard_t *sb, u32 index)
Definition: tcp_input.c:551
#define always_inline
Definition: clib.h:92
#define TCP_OPTION_LEN_SACK_BLOCK
Definition: tcp_packet.h:169
ip4_address_t dst_address
Definition: ip4_packet.h:169
#define TCP_FLAG_ACK
Definition: fa_node.h:16
u8 * format_white_space(u8 *s, va_list *va)
Definition: std-formats.c:113
tcp_main_t tcp_main
Definition: tcp.c:29
static tcp_header_t * tcp_buffer_hdr(vlib_buffer_t *b)
Definition: tcp.h:448
#define vlib_prefetch_buffer_header(b, type)
Prefetch buffer metadata.
Definition: buffer.h:184
vlib_frame_t * vlib_get_frame_to_node(vlib_main_t *vm, u32 to_node_index)
Definition: main.c:182
u8 * format_tcp_tx_trace(u8 *s, va_list *args)
Definition: tcp_output.c:59
enum _tcp_state tcp_state_t
#define TCP_ALWAYS_ACK
On/off delayed acks.
Definition: tcp.h:38
void tcp_fast_retransmit_no_sack(tcp_connection_t *tc)
Fast retransmit without SACK info.
Definition: tcp_output.c:1768
#define TCP_RTO_MAX
Definition: tcp.h:107
vhost_vring_state_t state
Definition: vhost_user.h:115
static void * ip4_next_header(ip4_header_t *i)
Definition: ip4_packet.h:240
static u32 tcp_time_now(void)
Definition: tcp.h:668
sack_block_t * sacks
SACK blocks.
Definition: tcp_packet.h:151
unsigned int u32
Definition: types.h:88
static void tcp46_output_trace_frame(vlib_main_t *vm, vlib_node_runtime_t *node, u32 *to_next, u32 n_bufs)
Definition: tcp_output.c:1853
struct _stream_session_t stream_session_t
#define TCP_ESTABLISH_TIME
Definition: tcp.h:99
sack_scoreboard_hole_t * scoreboard_next_rxt_hole(sack_scoreboard_t *sb, sack_scoreboard_hole_t *start, u8 have_sent_1_smss, u8 *can_rescue, u8 *snd_limited)
Figure out the next hole to retransmit.
Definition: tcp_input.c:707
static void tcp_push_ip_hdr(tcp_main_t *tm, tcp_connection_t *tc, vlib_buffer_t *b)
Definition: tcp_output.c:955
#define tcp_validate_txf_size(_tc, _a)
Definition: tcp.h:799
#define VLIB_FRAME_SIZE
Definition: node.h:364
#define TCP_EVT_DBG(_evt, _args...)
Definition: tcp_debug.h:238
static u32 vlib_get_buffer_index(vlib_main_t *vm, void *p)
Translate buffer pointer into buffer index.
Definition: buffer_funcs.h:141
static void tcp_timer_set(tcp_connection_t *tc, u8 timer_id, u32 interval)
Definition: tcp.h:697
#define TCP_OPTION_LEN_WINDOW_SCALE
Definition: tcp_packet.h:166
vlib_node_registration_t tcp6_reset_node
(constructor) VLIB_REGISTER_NODE (tcp6_reset_node)
Definition: tcp_output.c:2198
#define TCP_RTO_SYN_RETRIES
Definition: tcp.h:110
#define tcp_trajectory_add_start(b, start)
Definition: tcp.h:461
void tcp_send_reset(tcp_connection_t *tc)
Build and set reset packet for connection.
Definition: tcp_output.c:909
#define ADJ_INDEX_INVALID
Invalid ADJ index - used when no adj is known likewise blazoned capitals INVALID speak volumes where ...
Definition: adj_types.h:36
static int tcp_make_synack_options(tcp_connection_t *tc, tcp_options_t *opts)
Definition: tcp_output.c:319
u16 current_length
Nbytes between current data and the end of this buffer.
Definition: buffer.h:108
static void * vlib_buffer_make_headroom(vlib_buffer_t *b, u8 size)
Make head room, typically for packet headers.
Definition: buffer.h:314
#define MAX_HDRS_LEN
Definition: session.h:31
#define tcp_in_fastrecovery(tc)
Definition: tcp.h:343
static void * vlib_buffer_push_tcp_net_order(vlib_buffer_t *b, u16 sp, u16 dp, u32 seq, u32 ack, u8 tcp_hdr_opts_len, u8 flags, u16 wnd)
Push TCP header to buffer.
Definition: tcp.h:827
static int tcp_get_free_buffer_index(tcp_main_t *tm, u32 *bidx)
Definition: tcp_output.c:478
#define tcp_opts_mss(_to)
Definition: tcp_packet.h:156
unsigned short u16
Definition: types.h:57
void vlib_put_frame_to_node(vlib_main_t *vm, u32 to_node_index, vlib_frame_t *f)
Definition: main.c:191
static void * vlib_buffer_get_current(vlib_buffer_t *b)
Get pointer to current data to process.
Definition: buffer.h:202
u32 tcp_push_header(tcp_connection_t *tc, vlib_buffer_t *b)
Definition: tcp_output.c:1185
#define TCP_TIMER_HANDLE_INVALID
Definition: tcp.h:93
static void tcp_output_handle_link_local(tcp_connection_t *tc0, vlib_buffer_t *b0, u16 *next0, u32 *error0)
Definition: tcp_output.c:1821
#define foreach_tcp6_output_next
Definition: tcp_output.c:38
#define PREDICT_FALSE(x)
Definition: clib.h:105
void tcp_fast_retransmit(tcp_connection_t *tc)
Do fast retransmit.
Definition: tcp_output.c:1805
static int tcp_make_reset_in_place(vlib_main_t *vm, vlib_buffer_t *b0, tcp_state_t state, u8 thread_index, u8 is_ip4)
Definition: tcp_output.c:746
#define TCP_FLAG_FIN
Definition: fa_node.h:12
static u8 tcp_window_compute_scale(u32 window)
Definition: tcp_output.c:75
static int tcp_alloc_tx_buffers(tcp_main_t *tm, u8 thread_index, u16 *n_bufs, u32 wanted)
Definition: tcp_output.c:461
void tcp_timer_retransmit_syn_handler(u32 index)
Definition: tcp_output.c:1576
#define vlib_validate_buffer_enqueue_x1(vm, node, next_index, to_next, n_left_to_next, bi0, next0)
Finish enqueueing one buffer forward in the graph.
Definition: buffer_node.h:218
#define vlib_get_next_frame(vm, node, next_index, vectors, n_vectors_left)
Get pointer to next frame vector data by (vlib_node_runtime_t, next_index).
Definition: node_funcs.h:364
#define TCP_OPTION_LEN_TIMESTAMP
Definition: tcp_packet.h:168
#define foreach_tcp4_output_next
Definition: tcp_output.c:32
vlib_error_t error
Error code for buffers to be enqueued to error handler.
Definition: buffer.h:135
#define TCP_WND_MAX
Definition: tcp_packet.h:172
Selective Ack block.
Definition: tcp_packet.h:109
void tcp_make_ack(tcp_connection_t *tc, vlib_buffer_t *b)
Convert buffer to ACK.
Definition: tcp_output.c:558
#define TCP_FLAG_RST
Definition: fa_node.h:14
static stream_session_t * session_get(u32 si, u32 thread_index)
Definition: session.h:290
u32 flags
Definition: vhost_user.h:110
#define TCP_MAX_WND_SCALE
Definition: tcp_packet.h:173
static void tcp_timer_reset(tcp_connection_t *tc, u8 timer_id)
Definition: tcp.h:708
#define tcp_fastrecovery_sent_1_smss(tc)
Definition: tcp.h:346
This packet matches an "incomplete adjacency" and packets need to be passed to ARP to find rewrite st...
Definition: adj.h:63
#define VLIB_REGISTER_NODE(x,...)
Definition: node.h:153
static void * vlib_buffer_push_tcp(vlib_buffer_t *b, u16 sp_net, u16 dp_net, u32 seq, u32 ack, u8 tcp_hdr_opts_len, u8 flags, u16 wnd)
Push TCP header to buffer.
Definition: tcp.h:862
tcp_header_t tcp_header
Definition: tcp_output.c:52
u16 n_vectors
Definition: node.h:380
static_always_inline uword vlib_get_thread_index(void)
Definition: threads.h:221
#define CLIB_PREFETCH(addr, size, type)
Definition: cache.h:77
vlib_main_t * vm
Definition: buffer.c:294
static void tcp_enqueue_to_ip_lookup(vlib_main_t *vm, vlib_buffer_t *b, u32 bi, u8 is_ip4, u32 fib_index)
Definition: tcp_output.c:690
static_always_inline void vlib_buffer_enqueue_to_next(vlib_main_t *vm, vlib_node_runtime_t *node, u32 *buffers, u16 *nexts, uword count)
Definition: buffer_node.h:332
#define clib_warning(format, args...)
Definition: error.h:59
static u8 tcp_make_state_flags(tcp_connection_t *tc, tcp_state_t next_state)
Definition: tcp_output.c:1104
#define clib_memcpy(a, b, c)
Definition: string.h:75
format_function_t format_tcp_header
Definition: format.h:107
#define TCP_USE_SACKS
Disable only for testing.
Definition: tcp.h:39
#define tcp_recovery_on(tc)
Definition: tcp.h:341
static u32 tcp_window_to_advertise(tcp_connection_t *tc, tcp_state_t state)
Compute and return window to advertise, scaled as per RFC1323.
Definition: tcp_output.c:184
u32 adj_index_t
An index for adjacencies.
Definition: adj_types.h:30
void vlib_put_next_frame(vlib_main_t *vm, vlib_node_runtime_t *r, u32 next_index, u32 n_vectors_left)
Release pointer to next frame vector data.
Definition: main.c:454
u16 mss
Option flags, see above.
Definition: tcp_packet.h:147
static void tcp_output_handle_packet(tcp_connection_t *tc0, vlib_buffer_t *b0, u32 *error0, u16 *next0, u8 is_ip4)
Definition: tcp_output.c:1904
static void * ip6_next_header(ip6_header_t *i)
Definition: ip6_packet.h:374
static void tcp_timer_update(tcp_connection_t *tc, u8 timer_id, u32 interval)
Definition: tcp.h:721
u16 ip6_tcp_udp_icmp_compute_checksum(vlib_main_t *vm, vlib_buffer_t *p0, ip6_header_t *ip0, int *bogus_lengthp)
Definition: ip6_forward.c:910
signed int i32
Definition: types.h:81
vlib_node_registration_t ip6_lookup_node
(constructor) VLIB_REGISTER_NODE (ip6_lookup_node)
Definition: ip6_forward.c:512
static int tcp_make_established_options(tcp_connection_t *tc, tcp_options_t *opts)
Definition: tcp_output.c:354
u16 cached_next_index
Next frame index that vector arguments were last enqueued to last time this node ran.
Definition: node.h:492
#define ASSERT(truth)
static void tcp_output_push_ip(vlib_main_t *vm, vlib_buffer_t *b0, tcp_connection_t *tc0, u8 is_ip4)
Definition: tcp_output.c:1876
#define tcp_syn(_th)
Definition: tcp_packet.h:80
u32 session_tx_fifo_max_dequeue(transport_connection_t *tc)
Definition: session.c:417
static uword tcp6_output(vlib_main_t *vm, vlib_node_runtime_t *node, vlib_frame_t *from_frame)
Definition: tcp_output.c:2031
u16 ip4_tcp_udp_compute_checksum(vlib_main_t *vm, vlib_buffer_t *p0, ip4_header_t *ip0)
Definition: ip4_forward.c:1055
long ctx[MAX_CONNS]
Definition: main.c:126
void tcp_update_burst_snd_vars(tcp_connection_t *tc)
Update burst send vars.
Definition: tcp_output.c:416
#define seq_geq(_s1, _s2)
Definition: tcp.h:549
void tcp_retransmit_first_unacked(tcp_connection_t *tc)
Retransmit first unacked segment.
Definition: tcp_output.c:1662
u32 next_buffer
Next buffer for this linked-list of buffers.
Definition: buffer.h:126
static void tcp_enqueue_to_ip_lookup_now(vlib_main_t *vm, vlib_buffer_t *b, u32 bi, u8 is_ip4, u32 fib_index)
Definition: tcp_output.c:683
void tcp_init_mss(tcp_connection_t *tc)
Definition: tcp_output.c:436
static uword tcp6_send_reset(vlib_main_t *vm, vlib_node_runtime_t *node, vlib_frame_t *from_frame)
Definition: tcp_output.c:2172
static uword ip6_address_is_link_local_unicast(const ip6_address_t *a)
Definition: ip6_packet.h:302
static void tcp_update_rcv_wnd(tcp_connection_t *tc)
Definition: tcp_output.c:135
void tcp_send_fin(tcp_connection_t *tc)
Send FIN.
Definition: tcp_output.c:1070
static vlib_main_t * vlib_get_main(void)
Definition: global_funcs.h:23
VLIB_NODE_FUNCTION_MULTIARCH(tcp4_output_node, tcp4_output)
void tcp_send_ack(tcp_connection_t *tc)
Definition: tcp_output.c:1208
static void * vlib_add_trace(vlib_main_t *vm, vlib_node_runtime_t *r, vlib_buffer_t *b, u32 n_data_bytes)
Definition: trace_funcs.h:55
u32 total_length_not_including_first_buffer
Only valid for first buffer in chain.
Definition: buffer.h:152
#define seq_lt(_s1, _s2)
Definition: tcp.h:546
struct _vlib_node_registration vlib_node_registration_t
template key/value backing page structure
Definition: bihash_doc.h:44
u32 ip_version_traffic_class_and_flow_label
Definition: ip6_packet.h:334
#define tcp_opts_wscale(_to)
Definition: tcp_packet.h:158
Definition: defs.h:47
u32 tsval
Timestamp value.
Definition: tcp_packet.h:149
u32 tsecr
Echoed/reflected time stamp.
Definition: tcp_packet.h:150
static void * vlib_buffer_push_ip6(vlib_main_t *vm, vlib_buffer_t *b, ip6_address_t *src, ip6_address_t *dst, int proto)
Push IPv6 header to buffer.
Definition: ip6.h:594
#define vec_len(v)
Number of elements in vector (rvalue-only, NULL tolerant)
ip_lookup_next_t lookup_next_index
Next hop after ip4-lookup.
Definition: adj.h:190
static u32 tcp_set_time_now(u32 thread_index)
Definition: tcp.h:674
static u8 tcp_is_lost_fin(tcp_connection_t *tc)
Definition: tcp.h:647
#define foreach_tcp6_reset_next
Definition: tcp_output.c:2091
#define VLIB_BUFFER_TRACE_TRAJECTORY_INIT(b)
Definition: buffer.h:546
static void tcp_retransmit_timer_update(tcp_connection_t *tc)
Definition: tcp.h:780
u64 uword
Definition: types.h:112
static void * vlib_frame_vector_args(vlib_frame_t *f)
Get pointer to frame vector data.
Definition: node_funcs.h:267
static void tcp_make_ack_i(tcp_connection_t *tc, vlib_buffer_t *b, tcp_state_t state, u8 flags)
Prepare ACK.
Definition: tcp_output.c:533
void tcp_timer_delack_handler(u32 index)
Delayed ack timer handler.
Definition: tcp_output.c:1233
#define TCP_OPTION_LEN_MSS
Definition: tcp_packet.h:165
struct clib_bihash_value offset
template key/value backing page structure
static void tcp_retransmit_timer_force_update(tcp_connection_t *tc)
Definition: tcp.h:750
u8 * format_tcp_connection(u8 *s, va_list *args)
Definition: tcp.c:822
u32 tcp_initial_window_to_advertise(tcp_connection_t *tc)
Compute initial window and scale factor.
Definition: tcp_output.c:119
void tcp_flush_frames_to_output(u8 thread_index)
Flush v4 and v6 tcp and ip-lookup tx frames for thread index.
Definition: tcp_output.c:1057
#define vnet_buffer(b)
Definition: buffer.h:360
static tcp_connection_t * tcp_connection_get(u32 conn_index, u32 thread_index)
Definition: tcp.h:469
void tcp_update_rto(tcp_connection_t *tc)
Definition: tcp_input.c:431
static u32 vlib_num_workers()
Definition: threads.h:375
u8 data[0]
Packet data.
Definition: buffer.h:172
void tcp_fast_retransmit_sack(tcp_connection_t *tc)
Do fast retransmit with SACKs.
Definition: tcp_output.c:1685
#define TCP_OPTION_LEN_NOOP
Definition: tcp_packet.h:164
void tcp_send_syn(tcp_connection_t *tc)
Send SYN.
Definition: tcp_output.c:986
vlib_node_registration_t tcp6_output_node
(constructor) VLIB_REGISTER_NODE (tcp6_output_node)
Definition: tcp_output.c:21
u16 flags
Copy of main node flags.
Definition: node.h:486
Window scale.
Definition: tcp_packet.h:107
enum _tcp_reset_next tcp_reset_next_t
static u32 transport_max_rx_enqueue(transport_connection_t *tc)
Definition: session.h:453
#define tcp_opts_sack_permitted(_to)
Definition: tcp_packet.h:160
static void vlib_buffer_free_one(vlib_main_t *vm, u32 buffer_index)
Free one buffer Shorthand to free a single buffer chain.
Definition: buffer_funcs.h:575
tcp_connection_t tcp_connection
Definition: tcp_output.c:53
static u32 tcp_loss_wnd(const tcp_connection_t *tc)
Definition: tcp.h:608
static void * tcp_reuse_buffer(vlib_main_t *vm, vlib_buffer_t *b)
Definition: tcp_output.c:500
u8 ip_version_and_header_length
Definition: ip4_packet.h:137
Timestamps.
Definition: tcp_packet.h:110
static_always_inline void vlib_get_buffers(vlib_main_t *vm, u32 *bi, vlib_buffer_t **b, int count)
Translate array of buffer indices into buffer pointers.
Definition: buffer_funcs.h:128
vlib_node_registration_t tcp4_reset_node
(constructor) VLIB_REGISTER_NODE (tcp4_reset_node)
Definition: tcp_output.c:2179
#define VLIB_NODE_FLAG_TRACE
Definition: node.h:295
vlib_node_registration_t tcp4_output_node
(constructor) VLIB_REGISTER_NODE (tcp4_output_node)
Definition: tcp_output.c:20
#define CLIB_CACHE_LINE_BYTES
Definition: cache.h:62
u32 flags
buffer flags: VLIB_BUFFER_FREE_LIST_INDEX_MASK: bits used to store free list index, VLIB_BUFFER_IS_TRACED: trace this buffer.
Definition: buffer.h:111
static u32 vlib_buffer_alloc(vlib_main_t *vm, u32 *buffers, u32 n_buffers)
Allocate buffers into supplied array.
Definition: buffer_funcs.h:490
static void tcp_enqueue_to_output_i(vlib_main_t *vm, vlib_buffer_t *b, u32 bi, u8 is_ip4, u8 flush)
Definition: tcp_output.c:699
static void tcp_persist_timer_set(tcp_connection_t *tc)
Definition: tcp.h:757
static tcp_main_t * vnet_get_tcp_main()
Definition: tcp.h:442
int stream_session_peek_bytes(transport_connection_t *tc, u8 *buffer, u32 offset, u32 max_bytes)
Definition: session.c:426
static char * tcp_error_strings[]
Definition: tcp_output.c:44
static uword tcp4_output(vlib_main_t *vm, vlib_node_runtime_t *node, vlib_frame_t *from_frame)
Definition: tcp_output.c:2024
static void * vlib_buffer_push_ip4(vlib_main_t *vm, vlib_buffer_t *b, ip4_address_t *src, ip4_address_t *dst, int proto, u8 csum_offload)
Push IPv4 header to buffer.
Definition: ip4.h:345
static void tcp_push_hdr_i(tcp_connection_t *tc, vlib_buffer_t *b, tcp_state_t next_state, u8 compute_opts, u8 maybe_burst)
Push TCP header and update connection variables.
Definition: tcp_output.c:1131
static vlib_buffer_t * vlib_get_buffer(vlib_main_t *vm, u32 buffer_index)
Translate buffer index into buffer pointer.
Definition: buffer_funcs.h:57
void tcp_cc_fastrecovery_exit(tcp_connection_t *tc)
Definition: tcp_input.c:1051
void tcp_timer_persist_handler(u32 index)
Got 0 snd_wnd from peer, try to do something about it.
Definition: tcp_output.c:1586
#define tcp_ack(_th)
Definition: tcp_packet.h:83
static u8 tcp_timer_is_active(tcp_connection_t *tc, tcp_timers_e timer)
Definition: tcp.h:794
Definition: defs.h:46
ip6_address_t dst_address
Definition: ip6_packet.h:347
u32 * tx_buffers
tx buffer free list
Definition: tcp.h:378
adj_index_t adj_nbr_find(fib_protocol_t nh_proto, vnet_link_t link_type, const ip46_address_t *nh_addr, u32 sw_if_index)
Lookup neighbor adjancency.
Definition: adj_nbr.c:97
static int tcp_make_options(tcp_connection_t *tc, tcp_options_t *opts, tcp_state_t state)
Definition: tcp_output.c:385