FD.io VPP  v18.11-rc0-18-g2a3fb1a
Vector Packet Processing
session.c
Go to the documentation of this file.
1 /*
2  * Copyright (c) 2017 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  * @file
17  * @brief Session and session manager
18  */
19 
20 #include <vnet/session/session.h>
23 #include <vlibmemory/api.h>
24 #include <vnet/dpo/load_balance.h>
25 #include <vnet/fib/ip4_fib.h>
26 
29 
30 static inline int
31 session_send_evt_to_thread (void *data, void *args, u32 thread_index,
32  session_evt_type_t evt_type)
33 {
34  session_event_t *evt;
35  svm_msg_q_msg_t msg;
36  svm_msg_q_t *mq;
37  u32 tries = 0, max_tries;
38 
39  mq = session_manager_get_vpp_event_queue (thread_index);
40  while (svm_msg_q_try_lock (mq))
41  {
42  max_tries = vlib_get_current_process (vlib_get_main ())? 1e6 : 3;
43  if (tries++ == max_tries)
44  {
45  SESSION_DBG ("failed to enqueue evt");
46  return -1;
47  }
48  }
50  {
51  svm_msg_q_unlock (mq);
52  return -2;
53  }
56  {
57  svm_msg_q_unlock (mq);
58  return -2;
59  }
60  evt = (session_event_t *) svm_msg_q_msg_data (mq, &msg);
61  evt->event_type = evt_type;
62  switch (evt_type)
63  {
64  case FIFO_EVENT_RPC:
65  evt->rpc_args.fp = data;
66  evt->rpc_args.arg = args;
67  break;
68  case FIFO_EVENT_APP_TX:
70  evt->fifo = data;
71  break;
73  evt->session_handle = session_handle ((stream_session_t *) data);
74  break;
75  default:
76  clib_warning ("evt unhandled!");
77  svm_msg_q_unlock (mq);
78  return -1;
79  }
80 
81  svm_msg_q_add_and_unlock (mq, &msg);
82  return 0;
83 }
84 
85 int
87 {
88  return session_send_evt_to_thread (f, 0, f->master_thread_index, evt_type);
89 }
90 
91 int
93  session_evt_type_t evt_type)
94 {
95  return session_send_evt_to_thread (f, 0, thread_index, evt_type);
96 }
97 
98 int
100  session_evt_type_t evt_type)
101 {
102  /* only event supported for now is disconnect */
103  ASSERT (evt_type == FIFO_EVENT_DISCONNECT);
104  return session_send_evt_to_thread (s, 0, s->thread_index,
106 }
107 
108 void
109 session_send_rpc_evt_to_thread (u32 thread_index, void *fp, void *rpc_args)
110 {
111  if (thread_index != vlib_get_thread_index ())
112  session_send_evt_to_thread (fp, rpc_args, thread_index, FIFO_EVENT_RPC);
113  else
114  {
115  void (*fnp) (void *) = fp;
116  fnp (rpc_args);
117  }
118 }
119 
121 session_alloc (u32 thread_index)
122 {
124  stream_session_t *s;
125  u8 will_expand = 0;
126  pool_get_aligned_will_expand (smm->sessions[thread_index], will_expand,
128  /* If we have peekers, let them finish */
129  if (PREDICT_FALSE (will_expand && vlib_num_workers ()))
130  {
131  clib_rwlock_writer_lock (&smm->peekers_rw_locks[thread_index]);
132  pool_get_aligned (session_manager_main.sessions[thread_index], s,
134  clib_rwlock_writer_unlock (&smm->peekers_rw_locks[thread_index]);
135  }
136  else
137  {
138  pool_get_aligned (session_manager_main.sessions[thread_index], s,
140  }
141  memset (s, 0, sizeof (*s));
142  s->session_index = s - session_manager_main.sessions[thread_index];
143  s->thread_index = thread_index;
144  return s;
145 }
146 
147 void
149 {
150  pool_put (session_manager_main.sessions[s->thread_index], s);
151  if (CLIB_DEBUG)
152  memset (s, 0xFA, sizeof (*s));
153 }
154 
155 int
157 {
158  svm_fifo_t *server_rx_fifo = 0, *server_tx_fifo = 0;
159  u32 fifo_segment_index;
160  int rv;
161 
162  if ((rv = segment_manager_alloc_session_fifos (sm, &server_rx_fifo,
163  &server_tx_fifo,
164  &fifo_segment_index)))
165  return rv;
166  /* Initialize backpointers */
167  server_rx_fifo->master_session_index = s->session_index;
168  server_rx_fifo->master_thread_index = s->thread_index;
169 
170  server_tx_fifo->master_session_index = s->session_index;
171  server_tx_fifo->master_thread_index = s->thread_index;
172 
173  s->server_rx_fifo = server_rx_fifo;
174  s->server_tx_fifo = server_tx_fifo;
175  s->svm_segment_index = fifo_segment_index;
176  return 0;
177 }
178 
179 static stream_session_t *
181 {
182  stream_session_t *s;
183  u32 thread_index = tc->thread_index;
184 
185  ASSERT (thread_index == vlib_get_thread_index ()
186  || transport_protocol_is_cl (tc->proto));
187 
188  s = session_alloc (thread_index);
189  s->session_type = session_type_from_proto_and_ip (tc->proto, tc->is_ip4);
190  s->session_state = SESSION_STATE_CONNECTING;
191  s->enqueue_epoch = ~0;
192 
193  /* Attach transport to session and vice versa */
194  s->connection_index = tc->c_index;
195  tc->s_index = s->session_index;
196  return s;
197 }
198 
199 static int
201  u8 alloc_fifos, stream_session_t ** ret_s)
202 {
203  stream_session_t *s;
204  int rv;
205 
207  if (alloc_fifos && (rv = session_alloc_fifos (sm, s)))
208  {
209  session_free (s);
210  *ret_s = 0;
211  return rv;
212  }
213 
214  /* Add to the main lookup table */
216 
217  *ret_s = s;
218  return 0;
219 }
220 
221 /**
222  * Discards bytes from buffer chain
223  *
224  * It discards n_bytes_to_drop starting at first buffer after chain_b
225  */
226 always_inline void
228  vlib_buffer_t ** chain_b,
229  u32 n_bytes_to_drop)
230 {
231  vlib_buffer_t *next = *chain_b;
232  u32 to_drop = n_bytes_to_drop;
233  ASSERT (b->flags & VLIB_BUFFER_NEXT_PRESENT);
234  while (to_drop && (next->flags & VLIB_BUFFER_NEXT_PRESENT))
235  {
236  next = vlib_get_buffer (vm, next->next_buffer);
237  if (next->current_length > to_drop)
238  {
239  vlib_buffer_advance (next, to_drop);
240  to_drop = 0;
241  }
242  else
243  {
244  to_drop -= next->current_length;
245  next->current_length = 0;
246  }
247  }
248  *chain_b = next;
249 
250  if (to_drop == 0)
251  b->total_length_not_including_first_buffer -= n_bytes_to_drop;
252 }
253 
254 /**
255  * Enqueue buffer chain tail
256  */
257 always_inline int
259  u32 offset, u8 is_in_order)
260 {
261  vlib_buffer_t *chain_b;
262  u32 chain_bi, len, diff;
264  u8 *data;
265  u32 written = 0;
266  int rv = 0;
267 
268  if (is_in_order && offset)
269  {
270  diff = offset - b->current_length;
272  return 0;
273  chain_b = b;
274  session_enqueue_discard_chain_bytes (vm, b, &chain_b, diff);
275  chain_bi = vlib_get_buffer_index (vm, chain_b);
276  }
277  else
278  chain_bi = b->next_buffer;
279 
280  do
281  {
282  chain_b = vlib_get_buffer (vm, chain_bi);
283  data = vlib_buffer_get_current (chain_b);
284  len = chain_b->current_length;
285  if (!len)
286  continue;
287  if (is_in_order)
288  {
289  rv = svm_fifo_enqueue_nowait (s->server_rx_fifo, len, data);
290  if (rv == len)
291  {
292  written += rv;
293  }
294  else if (rv < len)
295  {
296  return (rv > 0) ? (written + rv) : written;
297  }
298  else if (rv > len)
299  {
300  written += rv;
301 
302  /* written more than what was left in chain */
304  return written;
305 
306  /* drop the bytes that have already been delivered */
307  session_enqueue_discard_chain_bytes (vm, b, &chain_b, rv - len);
308  }
309  }
310  else
311  {
312  rv = svm_fifo_enqueue_with_offset (s->server_rx_fifo, offset, len,
313  data);
314  if (rv)
315  {
316  clib_warning ("failed to enqueue multi-buffer seg");
317  return -1;
318  }
319  offset += len;
320  }
321  }
322  while ((chain_bi = (chain_b->flags & VLIB_BUFFER_NEXT_PRESENT)
323  ? chain_b->next_buffer : 0));
324 
325  if (is_in_order)
326  return written;
327 
328  return 0;
329 }
330 
331 /*
332  * Enqueue data for delivery to session peer. Does not notify peer of enqueue
333  * event but on request can queue notification events for later delivery by
334  * calling stream_server_flush_enqueue_events().
335  *
336  * @param tc Transport connection which is to be enqueued data
337  * @param b Buffer to be enqueued
338  * @param offset Offset at which to start enqueueing if out-of-order
339  * @param queue_event Flag to indicate if peer is to be notified or if event
340  * is to be queued. The former is useful when more data is
341  * enqueued and only one event is to be generated.
342  * @param is_in_order Flag to indicate if data is in order
343  * @return Number of bytes enqueued or a negative value if enqueueing failed.
344  */
345 int
347  vlib_buffer_t * b, u32 offset,
348  u8 queue_event, u8 is_in_order)
349 {
350  stream_session_t *s;
351  int enqueued = 0, rv, in_order_off;
352 
353  s = session_get (tc->s_index, tc->thread_index);
354 
355  if (is_in_order)
356  {
357  enqueued = svm_fifo_enqueue_nowait (s->server_rx_fifo,
358  b->current_length,
360  if (PREDICT_FALSE ((b->flags & VLIB_BUFFER_NEXT_PRESENT)
361  && enqueued >= 0))
362  {
363  in_order_off = enqueued > b->current_length ? enqueued : 0;
364  rv = session_enqueue_chain_tail (s, b, in_order_off, 1);
365  if (rv > 0)
366  enqueued += rv;
367  }
368  }
369  else
370  {
371  rv = svm_fifo_enqueue_with_offset (s->server_rx_fifo, offset,
372  b->current_length,
374  if (PREDICT_FALSE ((b->flags & VLIB_BUFFER_NEXT_PRESENT) && !rv))
375  session_enqueue_chain_tail (s, b, offset + b->current_length, 0);
376  /* if something was enqueued, report even this as success for ooo
377  * segment handling */
378  return rv;
379  }
380 
381  if (queue_event)
382  {
383  /* Queue RX event on this fifo. Eventually these will need to be flushed
384  * by calling stream_server_flush_enqueue_events () */
386  u32 thread_index = s->thread_index;
387  u32 enqueue_epoch = smm->current_enqueue_epoch[tc->proto][thread_index];
388 
389  if (s->enqueue_epoch != enqueue_epoch)
390  {
391  s->enqueue_epoch = enqueue_epoch;
392  vec_add1 (smm->session_to_enqueue[tc->proto][thread_index],
393  s - smm->sessions[thread_index]);
394  }
395  }
396 
397  return enqueued;
398 }
399 
400 
401 int
403  session_dgram_hdr_t * hdr,
404  vlib_buffer_t * b, u8 proto, u8 queue_event)
405 {
406  int enqueued = 0, rv, in_order_off;
407 
408  ASSERT (svm_fifo_max_enqueue (s->server_rx_fifo)
409  >= b->current_length + sizeof (*hdr));
410 
411  svm_fifo_enqueue_nowait (s->server_rx_fifo, sizeof (session_dgram_hdr_t),
412  (u8 *) hdr);
413  enqueued = svm_fifo_enqueue_nowait (s->server_rx_fifo, b->current_length,
415  if (PREDICT_FALSE ((b->flags & VLIB_BUFFER_NEXT_PRESENT) && enqueued >= 0))
416  {
417  in_order_off = enqueued > b->current_length ? enqueued : 0;
418  rv = session_enqueue_chain_tail (s, b, in_order_off, 1);
419  if (rv > 0)
420  enqueued += rv;
421  }
422  if (queue_event)
423  {
424  /* Queue RX event on this fifo. Eventually these will need to be flushed
425  * by calling stream_server_flush_enqueue_events () */
427  u32 thread_index = s->thread_index;
428  u32 enqueue_epoch = smm->current_enqueue_epoch[proto][thread_index];
429 
430  if (s->enqueue_epoch != enqueue_epoch)
431  {
432  s->enqueue_epoch = enqueue_epoch;
433  vec_add1 (smm->session_to_enqueue[proto][thread_index],
434  s - smm->sessions[thread_index]);
435  }
436  }
437  return enqueued;
438 }
439 
440 /** Check if we have space in rx fifo to push more bytes */
441 u8
443  u16 data_len)
444 {
445  stream_session_t *s = session_get (tc->s_index, thread_index);
446 
447  if (PREDICT_FALSE (s->session_state != SESSION_STATE_READY))
448  return 1;
449 
450  if (data_len > svm_fifo_max_enqueue (s->server_rx_fifo))
451  return 1;
452 
453  return 0;
454 }
455 
456 u32
458 {
459  stream_session_t *s = session_get (tc->s_index, tc->thread_index);
460  if (!s->server_tx_fifo)
461  return 0;
462  return svm_fifo_max_dequeue (s->server_tx_fifo);
463 }
464 
465 int
467  u32 offset, u32 max_bytes)
468 {
469  stream_session_t *s = session_get (tc->s_index, tc->thread_index);
470  return svm_fifo_peek (s->server_tx_fifo, offset, max_bytes, buffer);
471 }
472 
473 u32
475 {
476  stream_session_t *s = session_get (tc->s_index, tc->thread_index);
477  return svm_fifo_dequeue_drop (s->server_tx_fifo, max_bytes);
478 }
479 
480 /**
481  * Notify session peer that new data has been enqueued.
482  *
483  * @param s Stream session for which the event is to be generated.
484  * @param lock Flag to indicate if call should lock message queue.
485  *
486  * @return 0 on success or negative number if failed to send notification.
487  */
488 static inline int
490 {
491  application_t *app;
492 
493  app = application_get_if_valid (s->app_index);
494  if (PREDICT_FALSE (app == 0))
495  {
496  clib_warning ("invalid s->app_index = %d", s->app_index);
497  return 0;
498  }
499 
500  /* *INDENT-OFF* */
501  SESSION_EVT_DBG(SESSION_EVT_ENQ, s, ({
502  ed->data[0] = FIFO_EVENT_APP_RX;
503  ed->data[1] = svm_fifo_max_dequeue (s->server_rx_fifo);
504  }));
505  /* *INDENT-ON* */
506 
507  if (lock)
509 
510  return application_send_event (app, s, FIFO_EVENT_APP_RX);
511 }
512 
513 int
515 {
516  application_t *app;
517 
518  app = application_get_if_valid (s->app_index);
519  if (PREDICT_FALSE (!app))
520  return -1;
521 
524 
525  return application_send_event (app, s, FIFO_EVENT_APP_TX);
526 }
527 
528 /**
529  * Flushes queue of sessions that are to be notified of new data
530  * enqueued events.
531  *
532  * @param thread_index Thread index for which the flush is to be performed.
533  * @return 0 on success or a positive number indicating the number of
534  * failures due to API queue being full.
535  */
536 int
537 session_manager_flush_enqueue_events (u8 transport_proto, u32 thread_index)
538 {
540  transport_service_type_t tp_service;
541  int i, errors = 0, lock;
542  stream_session_t *s;
543  u32 *indices;
544 
545  indices = smm->session_to_enqueue[transport_proto][thread_index];
546  tp_service = transport_protocol_service_type (transport_proto);
547  lock = tp_service == TRANSPORT_SERVICE_CL;
548 
549  for (i = 0; i < vec_len (indices); i++)
550  {
551  s = session_get_if_valid (indices[i], thread_index);
552  if (PREDICT_FALSE (!s))
553  {
554  errors++;
555  continue;
556  }
557  if (PREDICT_FALSE (session_enqueue_notify (s, lock)))
558  errors++;
559  }
560 
561  vec_reset_length (indices);
562  smm->session_to_enqueue[transport_proto][thread_index] = indices;
563  smm->current_enqueue_epoch[transport_proto][thread_index]++;
564 
565  return errors;
566 }
567 
568 int
570 {
572  int i, errors = 0;
573  for (i = 0; i < 1 + vtm->n_threads; i++)
574  errors += session_manager_flush_enqueue_events (transport_proto, i);
575  return errors;
576 }
577 
578 /**
579  * Init fifo tail and head pointers
580  *
581  * Useful if transport uses absolute offsets for tracking ooo segments.
582  */
583 void
585  u32 rx_pointer, u32 tx_pointer)
586 {
587  stream_session_t *s;
588  s = session_get (tc->s_index, tc->thread_index);
589  svm_fifo_init_pointers (s->server_rx_fifo, rx_pointer);
590  svm_fifo_init_pointers (s->server_tx_fifo, tx_pointer);
591 }
592 
593 int
595 {
596  u32 opaque = 0, new_ti, new_si;
597  stream_session_t *new_s = 0;
598  segment_manager_t *sm;
599  application_t *app;
600  u8 alloc_fifos;
601  int error = 0;
602  u64 handle;
603 
604  /*
605  * Find connection handle and cleanup half-open table
606  */
607  handle = session_lookup_half_open_handle (tc);
608  if (handle == HALF_OPEN_LOOKUP_INVALID_VALUE)
609  {
610  SESSION_DBG ("half-open was removed!");
611  return -1;
612  }
614 
615  /* Get the app's index from the handle we stored when opening connection
616  * and the opaque (api_context for external apps) from transport session
617  * index */
618  app = application_get_if_valid (handle >> 32);
619  if (!app)
620  return -1;
621  opaque = tc->s_index;
622 
623  /*
624  * Allocate new session with fifos (svm segments are allocated if needed)
625  */
626  if (!is_fail)
627  {
629  alloc_fifos = !application_is_builtin_proxy (app);
630  if (session_alloc_and_init (sm, tc, alloc_fifos, &new_s))
631  {
632  is_fail = 1;
633  error = -1;
634  }
635  else
636  {
637  new_s->app_index = app->index;
638  new_si = new_s->session_index;
639  new_ti = new_s->thread_index;
640  }
641  }
642 
643  /*
644  * Notify client application
645  */
646  if (app->cb_fns.session_connected_callback (app->index, opaque, new_s,
647  is_fail))
648  {
649  SESSION_DBG ("failed to notify app");
650  if (!is_fail)
651  {
652  new_s = session_get (new_si, new_ti);
654  }
655  }
656  else
657  {
658  if (!is_fail)
659  {
660  new_s = session_get (new_si, new_ti);
661  new_s->session_state = SESSION_STATE_READY;
662  }
663  }
664 
665  return error;
666 }
667 
668 typedef struct _session_switch_pool_args
669 {
670  u32 session_index;
671  u32 thread_index;
672  u32 new_thread_index;
673  u32 new_session_index;
675 
676 static void
677 session_switch_pool (void *cb_args)
678 {
681  stream_session_t *s;
682  ASSERT (args->thread_index == vlib_get_thread_index ());
683  s = session_get (args->session_index, args->thread_index);
684  s->server_tx_fifo->master_session_index = args->new_session_index;
685  s->server_tx_fifo->master_thread_index = args->new_thread_index;
687  tp_vfts[tp].cleanup (s->connection_index, s->thread_index);
688  session_free (s);
689  clib_mem_free (cb_args);
690 }
691 
692 /**
693  * Move dgram session to the right thread
694  */
695 int
697  u32 old_thread_index,
698  stream_session_t ** new_session)
699 {
700  stream_session_t *new_s;
701  session_switch_pool_args_t *rpc_args;
702 
703  /*
704  * Clone half-open session to the right thread.
705  */
706  new_s = session_clone_safe (tc->s_index, old_thread_index);
707  new_s->connection_index = tc->c_index;
708  new_s->server_rx_fifo->master_session_index = new_s->session_index;
709  new_s->server_rx_fifo->master_thread_index = new_s->thread_index;
710  new_s->session_state = SESSION_STATE_READY;
712 
713  /*
714  * Ask thread owning the old session to clean it up and make us the tx
715  * fifo owner
716  */
717  rpc_args = clib_mem_alloc (sizeof (*rpc_args));
718  rpc_args->new_session_index = new_s->session_index;
719  rpc_args->new_thread_index = new_s->thread_index;
720  rpc_args->session_index = tc->s_index;
721  rpc_args->thread_index = old_thread_index;
722  session_send_rpc_evt_to_thread (rpc_args->thread_index, session_switch_pool,
723  rpc_args);
724 
725  tc->s_index = new_s->session_index;
726  new_s->connection_index = tc->c_index;
727  *new_session = new_s;
728  return 0;
729 }
730 
731 void
733 {
734  application_t *server;
735  stream_session_t *s;
736 
737  s = session_get (tc->s_index, tc->thread_index);
738  server = application_get (s->app_index);
739  server->cb_fns.session_accept_callback (s);
740 }
741 
742 /**
743  * Notification from transport that connection is being closed.
744  *
745  * A disconnect is sent to application but state is not removed. Once
746  * disconnect is acknowledged by application, session disconnect is called.
747  * Ultimately this leads to close being called on transport (passive close).
748  */
749 void
751 {
752  application_t *server;
753  stream_session_t *s;
754 
755  s = session_get (tc->s_index, tc->thread_index);
756  server = application_get (s->app_index);
757  server->cb_fns.session_disconnect_callback (s);
758  s->session_state = SESSION_STATE_CLOSING;
759 }
760 
761 /**
762  * Cleans up session and lookup table.
763  *
764  * Transport connection must still be valid.
765  */
766 void
768 {
769  int rv;
770 
771  /* Delete from the main lookup table. */
772  if ((rv = session_lookup_del_session (s)))
773  clib_warning ("hash delete error, rv %d", rv);
774 
775  /* Cleanup fifo segments */
776  segment_manager_dealloc_fifos (s->svm_segment_index, s->server_rx_fifo,
777  s->server_tx_fifo);
778  session_free (s);
779 }
780 
781 /**
782  * Notification from transport that connection is being deleted
783  *
784  * This removes the session if it is still valid. It should be called only on
785  * previously fully established sessions. For instance failed connects should
786  * call stream_session_connect_notify and indicate that the connect has
787  * failed.
788  */
789 void
791 {
792  stream_session_t *s;
793 
794  /* App might've been removed already */
795  s = session_get_if_valid (tc->s_index, tc->thread_index);
796  if (!s)
797  return;
799 }
800 
801 /**
802  * Notify application that connection has been reset.
803  */
804 void
806 {
807  stream_session_t *s;
808  application_t *app;
809  s = session_get (tc->s_index, tc->thread_index);
810  s->session_state = SESSION_STATE_CLOSED;
811  app = application_get (s->app_index);
812  app->cb_fns.session_reset_callback (s);
813 }
814 
815 /**
816  * Accept a stream session. Optionally ping the server by callback.
817  */
818 int
820  u8 notify)
821 {
822  application_t *server;
823  stream_session_t *s, *listener;
824  segment_manager_t *sm;
825  int rv;
826 
827  /* Find the server */
828  listener = listen_session_get (listener_index);
829  server = application_get (listener->app_index);
830 
831  sm = application_get_listen_segment_manager (server, listener);
832  if ((rv = session_alloc_and_init (sm, tc, 1, &s)))
833  return rv;
834 
835  s->app_index = server->index;
836  s->listener_index = listener_index;
837  s->session_state = SESSION_STATE_ACCEPTING;
838 
839  /* Shoulder-tap the server */
840  if (notify)
841  {
842  server->cb_fns.session_accept_callback (s);
843  }
844 
845  return 0;
846 }
847 
848 int
849 session_open_cl (u32 app_index, session_endpoint_t * rmt, u32 opaque)
850 {
853  segment_manager_t *sm;
854  stream_session_t *s;
855  application_t *app;
856  int rv;
857 
858  tep = session_endpoint_to_transport (rmt);
859  rv = tp_vfts[rmt->transport_proto].open (tep);
860  if (rv < 0)
861  {
862  SESSION_DBG ("Transport failed to open connection.");
863  return VNET_API_ERROR_SESSION_CONNECT;
864  }
865 
866  tc = tp_vfts[rmt->transport_proto].get_half_open ((u32) rv);
867 
868  /* For dgram type of service, allocate session and fifos now.
869  */
870  app = application_get (app_index);
872 
873  if (session_alloc_and_init (sm, tc, 1, &s))
874  return -1;
875  s->app_index = app->index;
876  s->session_state = SESSION_STATE_OPENED;
877 
878  /* Tell the app about the new event fifo for this session */
879  app->cb_fns.session_connected_callback (app->index, opaque, s, 0);
880 
881  return 0;
882 }
883 
884 int
885 session_open_vc (u32 app_index, session_endpoint_t * rmt, u32 opaque)
886 {
889  u64 handle;
890  int rv;
891 
892  tep = session_endpoint_to_transport (rmt);
893  rv = tp_vfts[rmt->transport_proto].open (tep);
894  if (rv < 0)
895  {
896  SESSION_DBG ("Transport failed to open connection.");
897  return VNET_API_ERROR_SESSION_CONNECT;
898  }
899 
900  tc = tp_vfts[rmt->transport_proto].get_half_open ((u32) rv);
901 
902  /* If transport offers a stream service, only allocate session once the
903  * connection has been established.
904  * Add connection to half-open table and save app and tc index. The
905  * latter is needed to help establish the connection while the former
906  * is needed when the connect notify comes and we have to notify the
907  * external app
908  */
909  handle = (((u64) app_index) << 32) | (u64) tc->c_index;
910  session_lookup_add_half_open (tc, handle);
911 
912  /* Store api_context (opaque) for when the reply comes. Not the nicest
913  * thing but better than allocating a separate half-open pool.
914  */
915  tc->s_index = opaque;
916  return 0;
917 }
918 
919 int
920 session_open_app (u32 app_index, session_endpoint_t * rmt, u32 opaque)
921 {
923  sep->app_index = app_index;
924  sep->opaque = opaque;
925 
926  return tp_vfts[rmt->transport_proto].open ((transport_endpoint_t *) sep);
927 }
928 
930 
931 /* *INDENT-OFF* */
936 };
937 /* *INDENT-ON* */
938 
939 /**
940  * Ask transport to open connection to remote transport endpoint.
941  *
942  * Stores handle for matching request with reply since the call can be
943  * asynchronous. For instance, for TCP the 3-way handshake must complete
944  * before reply comes. Session is only created once connection is established.
945  *
946  * @param app_index Index of the application requesting the connect
947  * @param st Session type requested.
948  * @param tep Remote transport endpoint
949  * @param opaque Opaque data (typically, api_context) the application expects
950  * on open completion.
951  */
952 int
953 session_open (u32 app_index, session_endpoint_t * rmt, u32 opaque)
954 {
955  transport_service_type_t tst = tp_vfts[rmt->transport_proto].service_type;
956  return session_open_srv_fns[tst] (app_index, rmt, opaque);
957 }
958 
959 int
961 {
963  u32 tci;
964 
965  /* Transport bind/listen */
966  tci = tp_vfts[sep->transport_proto].bind (s->session_index,
968  (sep));
969 
970  if (tci == (u32) ~ 0)
971  return -1;
972 
973  /* Attach transport to session */
974  s->connection_index = tci;
975  tc = tp_vfts[sep->transport_proto].get_listener (tci);
976 
977  /* Weird but handle it ... */
978  if (tc == 0)
979  return -1;
980 
981  /* Add to the main lookup table */
982  session_lookup_add_connection (tc, s->session_index);
983  return 0;
984 }
985 
986 int
988 {
990  application_t *server;
991  segment_manager_t *sm;
992  u32 tci;
993 
994  /* Transport bind/listen */
995  tci = tp_vfts[sep->transport_proto].bind (s->session_index,
997  (sep));
998 
999  if (tci == (u32) ~ 0)
1000  return -1;
1001 
1002  /* Attach transport to session */
1003  s->connection_index = tci;
1004  tc = tp_vfts[sep->transport_proto].get_listener (tci);
1005 
1006  /* Weird but handle it ... */
1007  if (tc == 0)
1008  return -1;
1009 
1010  server = application_get (s->app_index);
1011  sm = application_get_listen_segment_manager (server, s);
1012  if (session_alloc_fifos (sm, s))
1013  return -1;
1014 
1015  /* Add to the main lookup table */
1016  session_lookup_add_connection (tc, s->session_index);
1017  return 0;
1018 }
1019 
1020 int
1022 {
1024  clib_memcpy (&esep, sep, sizeof (*sep));
1025  esep.app_index = s->app_index;
1026 
1027  return tp_vfts[sep->transport_proto].bind (s->session_index,
1028  (transport_endpoint_t *) & esep);
1029 }
1030 
1032  session_endpoint_t *);
1033 
1034 /* *INDENT-OFF* */
1040 };
1041 /* *INDENT-ON* */
1042 
1043 /**
1044  * Ask transport to listen on local transport endpoint.
1045  *
1046  * @param s Session for which listen will be called. Note that unlike
1047  * established sessions, listen sessions are not associated to a
1048  * thread.
1049  * @param tep Local endpoint to be listened on.
1050  */
1051 int
1053 {
1054  transport_service_type_t tst = tp_vfts[sep->transport_proto].service_type;
1055  return session_listen_srv_fns[tst] (s, sep);
1056 }
1057 
1058 /**
1059  * Ask transport to stop listening on local transport endpoint.
1060  *
1061  * @param s Session to stop listening on. It must be in state LISTENING.
1062  */
1063 int
1065 {
1068  if (s->session_state != SESSION_STATE_LISTENING)
1069  {
1070  clib_warning ("not a listening session");
1071  return -1;
1072  }
1073 
1074  tc = tp_vfts[tp].get_listener (s->connection_index);
1075  if (!tc)
1076  {
1077  clib_warning ("no transport");
1078  return VNET_API_ERROR_ADDRESS_NOT_IN_USE;
1079  }
1080 
1082  tp_vfts[tp].unbind (s->connection_index);
1083  return 0;
1084 }
1085 
1086 /**
1087  * Initialize session disconnect.
1088  *
1089  * Request is always sent to session node to ensure that all outstanding
1090  * requests are served before transport is notified.
1091  */
1092 void
1094 {
1095  u32 thread_index = vlib_get_thread_index ();
1097  session_event_t *evt;
1098 
1099  if (!s)
1100  return;
1101 
1102  if (s->session_state >= SESSION_STATE_CLOSING)
1103  {
1104  /* Session already closed. Clear the tx fifo */
1105  if (s->session_state == SESSION_STATE_CLOSED)
1106  svm_fifo_dequeue_drop_all (s->server_tx_fifo);
1107  return;
1108  }
1109 
1110  s->session_state = SESSION_STATE_CLOSING;
1111 
1112  /* If we are in the handler thread, or being called with the worker barrier
1113  * held (api/cli), just append a new event to pending disconnects vector. */
1114  if ((thread_index == 0 && !vlib_get_current_process (vlib_get_main ()))
1115  || thread_index == s->thread_index)
1116  {
1117  ASSERT (s->thread_index == thread_index || thread_index == 0);
1118  vec_add2 (smm->pending_disconnects[s->thread_index], evt, 1);
1119  memset (evt, 0, sizeof (*evt));
1120  evt->session_handle = session_handle (s);
1121  evt->event_type = FIFO_EVENT_DISCONNECT;
1122  }
1123  else
1125 }
1126 
1127 /**
1128  * Notify transport the session can be disconnected. This should eventually
1129  * result in a delete notification that allows us to cleanup session state.
1130  * Called for both active/passive disconnects.
1131  *
1132  * Must be called from the session's thread.
1133  */
1134 void
1136 {
1137  s->session_state = SESSION_STATE_CLOSED;
1138  tp_vfts[session_get_transport_proto (s)].close (s->connection_index,
1139  s->thread_index);
1140 }
1141 
1142 /**
1143  * Cleanup transport and session state.
1144  *
1145  * Notify transport of the cleanup and free the session. This should
1146  * be called only if transport reported some error and is already
1147  * closed.
1148  */
1149 void
1151 {
1152  s->session_state = SESSION_STATE_CLOSED;
1153 
1154  /* Delete from main lookup table before we axe the the transport */
1156  tp_vfts[session_get_transport_proto (s)].cleanup (s->connection_index,
1157  s->thread_index);
1158  /* Since we called cleanup, no delete notification will come. So, make
1159  * sure the session is properly freed. */
1160  segment_manager_dealloc_fifos (s->svm_segment_index, s->server_rx_fifo,
1161  s->server_tx_fifo);
1162  session_free (s);
1163 }
1164 
1167 {
1168  transport_proto_t tp;
1169  tp = session_get_transport_proto (s);
1170  return transport_protocol_service_type (tp);
1171 }
1172 
1175 {
1176  transport_proto_t tp;
1177  tp = session_get_transport_proto (s);
1178  return transport_protocol_tx_fn_type (tp);
1179 }
1180 
1181 u8
1183 {
1185 }
1186 
1187 /**
1188  * Allocate event queues in the shared-memory segment
1189  *
1190  * That can either be a newly created memfd segment, that will need to be
1191  * mapped by all stack users, or the binary api's svm region. The latter is
1192  * assumed to be already mapped. NOTE that this assumption DOES NOT hold if
1193  * api clients bootstrap shm api over sockets (i.e. use memfd segments) and
1194  * vpp uses api svm region for event queues.
1195  */
1196 void
1198 {
1199  u32 evt_q_length = 2048, evt_size = sizeof (session_event_t);
1200  ssvm_private_t *eqs = &smm->evt_qs_segment;
1201  api_main_t *am = &api_main;
1202  u64 eqs_size = 64 << 20;
1203  pid_t vpp_pid = getpid ();
1204  void *oldheap;
1205  int i;
1206 
1207  if (smm->configured_event_queue_length)
1208  evt_q_length = smm->configured_event_queue_length;
1209 
1210  if (smm->evt_qs_use_memfd_seg)
1211  {
1212  if (smm->evt_qs_segment_size)
1213  eqs_size = smm->evt_qs_segment_size;
1214 
1215  eqs->ssvm_size = eqs_size;
1216  eqs->i_am_master = 1;
1217  eqs->my_pid = vpp_pid;
1218  eqs->name = format (0, "%s%c", "evt-qs-segment", 0);
1219  eqs->requested_va = smm->session_baseva;
1220 
1222  {
1223  clib_warning ("failed to initialize queue segment");
1224  return;
1225  }
1226  }
1227 
1228  if (smm->evt_qs_use_memfd_seg)
1229  oldheap = ssvm_push_heap (eqs->sh);
1230  else
1231  oldheap = svm_push_data_heap (am->vlib_rp);
1232 
1233  for (i = 0; i < vec_len (smm->vpp_event_queues); i++)
1234  {
1235  svm_msg_q_cfg_t _cfg, *cfg = &_cfg;
1236  u32 notif_q_size = clib_max (16, evt_q_length >> 4);
1238  {evt_q_length, evt_size, 0}
1239  ,
1240  {notif_q_size, 256, 0}
1241  };
1242  cfg->consumer_pid = 0;
1243  cfg->n_rings = 2;
1244  cfg->q_nitems = evt_q_length;
1245  cfg->ring_cfgs = rc;
1246  smm->vpp_event_queues[i] = svm_msg_q_alloc (cfg);
1247  }
1248 
1249  if (smm->evt_qs_use_memfd_seg)
1250  ssvm_pop_heap (oldheap);
1251  else
1252  svm_pop_heap (oldheap);
1253 }
1254 
1257 {
1259  if (smm->evt_qs_use_memfd_seg)
1260  return &smm->evt_qs_segment;
1261  return 0;
1262 }
1263 
1264 /* *INDENT-OFF* */
1269  session_tx_fifo_dequeue_and_snd
1270 };
1271 /* *INDENT-ON* */
1272 
1273 /**
1274  * Initialize session layer for given transport proto and ip version
1275  *
1276  * Allocates per session type (transport proto + ip version) data structures
1277  * and adds arc from session queue node to session type output node.
1278  */
1279 void
1281  const transport_proto_vft_t * vft, u8 is_ip4,
1282  u32 output_node)
1283 {
1285  session_type_t session_type;
1286  u32 next_index = ~0;
1287 
1288  session_type = session_type_from_proto_and_ip (transport_proto, is_ip4);
1289 
1290  vec_validate (smm->session_type_to_next, session_type);
1291  vec_validate (smm->session_tx_fns, session_type);
1292 
1293  /* *INDENT-OFF* */
1294  if (output_node != ~0)
1295  {
1296  foreach_vlib_main (({
1297  next_index = vlib_node_add_next (this_vlib_main,
1298  session_queue_node.index,
1299  output_node);
1300  }));
1301  }
1302  /* *INDENT-ON* */
1303 
1304  smm->session_type_to_next[session_type] = next_index;
1305  smm->session_tx_fns[session_type] = session_tx_fns[vft->tx_type];
1306 }
1307 
1310 {
1311  transport_proto_t tp;
1312  if (s->session_state != SESSION_STATE_LISTENING)
1313  {
1314  tp = session_get_transport_proto (s);
1315  return tp_vfts[tp].get_connection (s->connection_index,
1316  s->thread_index);
1317  }
1318  return 0;
1319 }
1320 
1323 {
1325  return tp_vfts[tp].get_listener (s->connection_index);
1326 }
1327 
1328 int
1330  session_endpoint_t * sep)
1331 {
1334  tc = tp_vfts[tp].get_listener (listener->connection_index);
1335  if (!tc)
1336  {
1337  clib_warning ("no transport");
1338  return -1;
1339  }
1340 
1341  /* N.B. The ip should not be copied because this is the local endpoint */
1342  sep->port = tc->lcl_port;
1343  sep->transport_proto = tc->proto;
1344  sep->is_ip4 = tc->is_ip4;
1345  return 0;
1346 }
1347 
1348 void
1350 {
1351  ASSERT (vlib_get_thread_index () == 0);
1354 }
1355 
1356 static clib_error_t *
1358 {
1359  segment_manager_main_init_args_t _sm_args = { 0 }, *sm_args = &_sm_args;
1362  u32 num_threads, preallocated_sessions_per_worker;
1363  int i, j;
1364 
1365  num_threads = 1 /* main thread */ + vtm->n_threads;
1366 
1367  if (num_threads < 1)
1368  return clib_error_return (0, "n_thread_stacks not set");
1369 
1370  /* configure per-thread ** vectors */
1371  vec_validate (smm->sessions, num_threads - 1);
1372  vec_validate (smm->tx_buffers, num_threads - 1);
1373  vec_validate (smm->pending_event_vector, num_threads - 1);
1374  vec_validate (smm->pending_disconnects, num_threads - 1);
1375  vec_validate (smm->free_event_vector, num_threads - 1);
1376  vec_validate (smm->vpp_event_queues, num_threads - 1);
1377  vec_validate (smm->peekers_rw_locks, num_threads - 1);
1378  vec_validate_aligned (smm->ctx, num_threads - 1, CLIB_CACHE_LINE_BYTES);
1379 
1380  for (i = 0; i < TRANSPORT_N_PROTO; i++)
1381  {
1382  vec_validate (smm->current_enqueue_epoch[i], num_threads - 1);
1383  vec_validate (smm->session_to_enqueue[i], num_threads - 1);
1384  for (j = 0; j < num_threads; j++)
1385  smm->current_enqueue_epoch[i][j] = 1;
1386  }
1387 
1388  for (i = 0; i < num_threads; i++)
1389  {
1390  vec_validate (smm->free_event_vector[i], 0);
1391  _vec_len (smm->free_event_vector[i]) = 0;
1392  vec_validate (smm->pending_event_vector[i], 0);
1393  _vec_len (smm->pending_event_vector[i]) = 0;
1394  vec_validate (smm->pending_disconnects[i], 0);
1395  _vec_len (smm->pending_disconnects[i]) = 0;
1396  if (num_threads > 1)
1397  clib_rwlock_init (&smm->peekers_rw_locks[i]);
1398  }
1399 
1400 #if SESSION_DEBUG
1401  vec_validate (smm->last_event_poll_by_thread, num_threads - 1);
1402 #endif
1403 
1404  /* Allocate vpp event queues segment and queue */
1406 
1407  /* Initialize fifo segment main baseva and timeout */
1408  sm_args->baseva = smm->session_baseva + smm->evt_qs_segment_size;
1409  sm_args->size = smm->session_va_space_size;
1410  segment_manager_main_init (sm_args);
1411 
1412  /* Preallocate sessions */
1413  if (smm->preallocated_sessions)
1414  {
1415  if (num_threads == 1)
1416  {
1417  pool_init_fixed (smm->sessions[0], smm->preallocated_sessions);
1418  }
1419  else
1420  {
1421  int j;
1422  preallocated_sessions_per_worker =
1423  (1.1 * (f64) smm->preallocated_sessions /
1424  (f64) (num_threads - 1));
1425 
1426  for (j = 1; j < num_threads; j++)
1427  {
1428  pool_init_fixed (smm->sessions[j],
1429  preallocated_sessions_per_worker);
1430  }
1431  }
1432  }
1433 
1436  transport_init ();
1437 
1438  smm->is_enabled = 1;
1439 
1440  /* Enable transports */
1441  transport_enable_disable (vm, 1);
1442 
1443  return 0;
1444 }
1445 
1446 void
1448 {
1449  u8 state = is_en ? VLIB_NODE_STATE_POLLING : VLIB_NODE_STATE_DISABLED;
1451  u8 have_workers = vtm->n_threads != 0;
1452 
1453  /* *INDENT-OFF* */
1454  foreach_vlib_main (({
1455  if (have_workers && ii == 0)
1456  {
1457  vlib_node_set_state (this_vlib_main, session_queue_process_node.index,
1458  state);
1459  if (is_en)
1460  {
1461  vlib_node_t *n = vlib_get_node (this_vlib_main,
1463  vlib_start_process (this_vlib_main, n->runtime_index);
1464  }
1465  else
1466  {
1467  vlib_process_signal_event_mt (this_vlib_main,
1470  }
1471 
1472  continue;
1473  }
1474  vlib_node_set_state (this_vlib_main, session_queue_node.index,
1475  state);
1476  }));
1477  /* *INDENT-ON* */
1478 }
1479 
1480 clib_error_t *
1482 {
1483  clib_error_t *error = 0;
1484  if (is_en)
1485  {
1486  if (session_manager_main.is_enabled)
1487  return 0;
1488 
1490  error = session_manager_main_enable (vm);
1491  }
1492  else
1493  {
1494  session_manager_main.is_enabled = 0;
1496  }
1497 
1498  return error;
1499 }
1500 
1501 clib_error_t *
1503 {
1505  smm->session_baseva = 0x200000000ULL;
1506  smm->session_va_space_size = (u64) 128 << 30;
1507  smm->evt_qs_segment_size = 64 << 20;
1508  smm->is_enabled = 0;
1509  return 0;
1510 }
1511 
1513 
1514 static clib_error_t *
1516 {
1518  u32 nitems;
1519  uword tmp;
1520 
1521  while (unformat_check_input (input) != UNFORMAT_END_OF_INPUT)
1522  {
1523  if (unformat (input, "event-queue-length %d", &nitems))
1524  {
1525  if (nitems >= 2048)
1526  smm->configured_event_queue_length = nitems;
1527  else
1528  clib_warning ("event queue length %d too small, ignored", nitems);
1529  }
1530  else if (unformat (input, "preallocated-sessions %d",
1531  &smm->preallocated_sessions))
1532  ;
1533  else if (unformat (input, "v4-session-table-buckets %d",
1534  &smm->configured_v4_session_table_buckets))
1535  ;
1536  else if (unformat (input, "v4-halfopen-table-buckets %d",
1537  &smm->configured_v4_halfopen_table_buckets))
1538  ;
1539  else if (unformat (input, "v6-session-table-buckets %d",
1540  &smm->configured_v6_session_table_buckets))
1541  ;
1542  else if (unformat (input, "v6-halfopen-table-buckets %d",
1543  &smm->configured_v6_halfopen_table_buckets))
1544  ;
1545  else if (unformat (input, "v4-session-table-memory %U",
1546  unformat_memory_size, &tmp))
1547  {
1548  if (tmp >= 0x100000000)
1549  return clib_error_return (0, "memory size %llx (%lld) too large",
1550  tmp, tmp);
1551  smm->configured_v4_session_table_memory = tmp;
1552  }
1553  else if (unformat (input, "v4-halfopen-table-memory %U",
1554  unformat_memory_size, &tmp))
1555  {
1556  if (tmp >= 0x100000000)
1557  return clib_error_return (0, "memory size %llx (%lld) too large",
1558  tmp, tmp);
1559  smm->configured_v4_halfopen_table_memory = tmp;
1560  }
1561  else if (unformat (input, "v6-session-table-memory %U",
1562  unformat_memory_size, &tmp))
1563  {
1564  if (tmp >= 0x100000000)
1565  return clib_error_return (0, "memory size %llx (%lld) too large",
1566  tmp, tmp);
1567  smm->configured_v6_session_table_memory = tmp;
1568  }
1569  else if (unformat (input, "v6-halfopen-table-memory %U",
1570  unformat_memory_size, &tmp))
1571  {
1572  if (tmp >= 0x100000000)
1573  return clib_error_return (0, "memory size %llx (%lld) too large",
1574  tmp, tmp);
1575  smm->configured_v6_halfopen_table_memory = tmp;
1576  }
1577  else if (unformat (input, "local-endpoints-table-memory %U",
1578  unformat_memory_size, &tmp))
1579  {
1580  if (tmp >= 0x100000000)
1581  return clib_error_return (0, "memory size %llx (%lld) too large",
1582  tmp, tmp);
1583  smm->local_endpoints_table_memory = tmp;
1584  }
1585  else if (unformat (input, "local-endpoints-table-buckets %d",
1586  &smm->local_endpoints_table_buckets))
1587  ;
1588  else if (unformat (input, "evt_qs_memfd_seg"))
1589  smm->evt_qs_use_memfd_seg = 1;
1590  else
1591  return clib_error_return (0, "unknown input `%U'",
1592  format_unformat_error, input);
1593  }
1594  return 0;
1595 }
1596 
1598 
1599 /*
1600  * fd.io coding-style-patch-verification: ON
1601  *
1602  * Local Variables:
1603  * eval: (c-set-style "gnu")
1604  * End:
1605  */
#define vec_validate(V, I)
Make sure vector is long enough for given index (no header, unspecified alignment) ...
Definition: vec.h:437
u64 ssvm_size
Definition: ssvm.h:84
static session_open_service_fn session_open_srv_fns[TRANSPORT_N_SERVICES]
Definition: session.c:932
void session_flush_frames_main_thread(vlib_main_t *vm)
Definition: session.c:1349
int session_open_vc(u32 app_index, session_endpoint_t *rmt, u32 opaque)
Definition: session.c:885
static session_listen_service_fn session_listen_srv_fns[TRANSPORT_N_SERVICES]
Definition: session.c:1036
static u8 svm_msg_q_msg_is_invalid(svm_msg_q_msg_t *msg)
Check if message is invalid.
int session_lookup_del_connection(transport_connection_t *tc)
Delete transport connection from session table.
void * svm_msg_q_msg_data(svm_msg_q_t *mq, svm_msg_q_msg_t *msg)
Get data for message in queue.
static u8 svm_msg_q_ring_is_full(svm_msg_q_t *mq, u32 ring_index)
session_evt_type_t
Definition: session.h:33
static void svm_pop_heap(void *oldheap)
Definition: svm.h:94
uword requested_va
Definition: ssvm.h:87
void svm_fifo_init_pointers(svm_fifo_t *f, u32 pointer)
Set fifo pointers to requested offset.
Definition: svm_fifo.c:854
#define SESSION_Q_PROCESS_FLUSH_FRAMES
Definition: session.h:278
static void clib_rwlock_writer_lock(clib_rwlock_t *p)
Definition: lock.h:177
transport_proto_vft_t * tp_vfts
Per-type vector of transport protocol virtual function tables.
Definition: transport.c:23
struct _transport_connection transport_connection_t
int session_listen_cl(stream_session_t *s, session_endpoint_t *sep)
Definition: session.c:987
unsigned long u64
Definition: types.h:89
session_manager_main_t session_manager_main
Definition: session.c:27
#define pool_get_aligned_will_expand(P, YESNO, A)
See if pool_get will expand the pool or not.
Definition: pool.h:231
struct _transport_proto_vft transport_proto_vft_t
#define vec_add1(V, E)
Add 1 element to end of vector (unspecified alignment).
Definition: vec.h:523
int application_send_event(application_t *app, stream_session_t *s, u8 evt_type)
Send event to application.
Definition: application.c:931
void session_send_rpc_evt_to_thread(u32 thread_index, void *fp, void *rpc_args)
Definition: session.c:109
#define vec_add2(V, P, N)
Add N elements to end of vector V, return pointer to new elements in P.
Definition: vec.h:562
int i
transport_tx_fn_type_t transport_protocol_tx_fn_type(transport_proto_t tp)
Definition: transport.c:205
void svm_fifo_dequeue_drop_all(svm_fifo_t *f)
Definition: svm_fifo.c:832
transport_connection_t * session_get_transport(stream_session_t *s)
Definition: session.c:1309
static u32 svm_fifo_max_enqueue(svm_fifo_t *f)
Definition: svm_fifo.h:117
ssvm_shared_header_t * sh
Definition: ssvm.h:83
u8 * format(u8 *s, const char *fmt,...)
Definition: format.c:419
int session_lookup_del_session(stream_session_t *s)
void segment_manager_dealloc_fifos(u32 segment_index, svm_fifo_t *rx_fifo, svm_fifo_t *tx_fifo)
#define vec_validate_aligned(V, I, A)
Make sure vector is long enough for given index (no header, specified alignment)
Definition: vec.h:448
int session_enqueue_stream_connection(transport_connection_t *tc, vlib_buffer_t *b, u32 offset, u8 queue_event, u8 is_in_order)
Definition: session.c:346
u64 session_lookup_half_open_handle(transport_connection_t *tc)
void session_node_enable_disable(u8 is_en)
Definition: session.c:1447
vlib_node_registration_t session_queue_node
(constructor) VLIB_REGISTER_NODE (session_queue_node)
Definition: session_node.c:891
enum transport_service_type_ transport_service_type_t
static uword vlib_node_add_next(vlib_main_t *vm, uword node, uword next_node)
Definition: node_funcs.h:1110
unsigned char u8
Definition: types.h:56
session_fifo_rx_fn session_tx_fifo_peek_and_snd
#define vec_reset_length(v)
Reset vector length to zero NULL-pointer tolerant.
double f64
Definition: types.h:142
static session_fifo_rx_fn * session_tx_fns[TRANSPORT_TX_N_FNS]
Definition: session.c:1265
struct _svm_fifo svm_fifo_t
void session_free(stream_session_t *s)
Definition: session.c:148
int session_open_app(u32 app_index, session_endpoint_t *rmt, u32 opaque)
Definition: session.c:920
segment_manager_t * application_get_listen_segment_manager(application_t *app, stream_session_t *s)
Definition: application.c:550
connectionless service
static svm_msg_q_t * session_manager_get_vpp_event_queue(u32 thread_index)
Definition: session.h:575
void app_namespaces_init(void)
static clib_error_t * session_config_fn(vlib_main_t *vm, unformat_input_t *input)
Definition: session.c:1515
svm_msg_q_t * svm_msg_q_alloc(svm_msg_q_cfg_t *cfg)
Allocate message queue.
Definition: message_queue.c:39
#define VLIB_INIT_FUNCTION(x)
Definition: init.h:156
static void * svm_push_data_heap(svm_region_t *rp)
Definition: svm.h:86
void stream_session_accept_notify(transport_connection_t *tc)
Definition: session.c:732
#define always_inline
Definition: clib.h:92
static u32 svm_fifo_max_dequeue(svm_fifo_t *f)
Definition: svm_fifo.h:105
int session_send_ctrl_evt_to_thread(stream_session_t *s, session_evt_type_t evt_type)
Definition: session.c:99
static stream_session_t * session_alloc_for_connection(transport_connection_t *tc)
Definition: session.c:180
int session_listen_vc(stream_session_t *s, session_endpoint_t *sep)
Definition: session.c:960
int session_dequeue_notify(stream_session_t *s)
Definition: session.c:514
static stream_session_t * listen_session_get(u32 index)
Definition: session.h:614
static void * ssvm_push_heap(ssvm_shared_header_t *sh)
Definition: ssvm.h:144
#define clib_error_return(e, args...)
Definition: error.h:99
svm_region_t * vlib_rp
Current binary api segment descriptor.
Definition: api_common.h:254
int svm_fifo_enqueue_nowait(svm_fifo_t *f, u32 max_bytes, const u8 *copy_from_here)
Definition: svm_fifo.c:538
void stream_session_delete_notify(transport_connection_t *tc)
Notification from transport that connection is being deleted.
Definition: session.c:790
vhost_vring_state_t state
Definition: vhost_user.h:115
int session_enqueue_dgram_connection(stream_session_t *s, session_dgram_hdr_t *hdr, vlib_buffer_t *b, u8 proto, u8 queue_event)
Definition: session.c:402
void stream_session_cleanup(stream_session_t *s)
Cleanup transport and session state.
Definition: session.c:1150
void stream_session_delete(stream_session_t *s)
Cleans up session and lookup table.
Definition: session.c:767
unsigned int u32
Definition: types.h:88
struct _stream_session_t stream_session_t
int session_send_io_evt_to_thread(svm_fifo_t *f, session_evt_type_t evt_type)
Definition: session.c:86
void session_vpp_event_queues_allocate(session_manager_main_t *smm)
Allocate event queues in the shared-memory segment.
Definition: session.c:1197
int ssvm_master_init(ssvm_private_t *ssvm, ssvm_segment_type_t type)
Definition: ssvm.c:380
enum transport_dequeue_type_ transport_tx_fn_type_t
static void ssvm_pop_heap(void *oldheap)
Definition: ssvm.h:152
int session_lookup_del_half_open(transport_connection_t *tc)
static u32 vlib_get_buffer_index(vlib_main_t *vm, void *p)
Translate buffer pointer into buffer index.
Definition: buffer_funcs.h:141
static clib_error_t * session_manager_main_enable(vlib_main_t *vm)
Definition: session.c:1357
#define session_endpoint_to_transport(_sep)
static transport_proto_t session_get_transport_proto(stream_session_t *s)
Definition: session.h:392
u32 stream_session_dequeue_drop(transport_connection_t *tc, u32 max_bytes)
Definition: session.c:474
int session_open(u32 app_index, session_endpoint_t *rmt, u32 opaque)
Ask transport to open connection to remote transport endpoint.
Definition: session.c:953
int segment_manager_alloc_session_fifos(segment_manager_t *sm, svm_fifo_t **rx_fifo, svm_fifo_t **tx_fifo, u32 *fifo_segment_index)
int session_dgram_connect_notify(transport_connection_t *tc, u32 old_thread_index, stream_session_t **new_session)
Move dgram session to the right thread.
Definition: session.c:696
static session_manager_main_t * vnet_get_session_manager_main()
Definition: session.h:285
static void clib_rwlock_init(clib_rwlock_t *p)
Definition: lock.h:122
transport_service_type_t transport_protocol_service_type(transport_proto_t tp)
Definition: transport.c:199
u16 current_length
Nbytes between current data and the end of this buffer.
Definition: buffer.h:108
struct _session_endpoint session_endpoint_t
struct _unformat_input_t unformat_input_t
unsigned short u16
Definition: types.h:57
static session_handle_t session_handle(stream_session_t *s)
Definition: session.h:329
static void * vlib_buffer_get_current(vlib_buffer_t *b)
Get pointer to current data to process.
Definition: buffer.h:202
#define pool_put(P, E)
Free an object E in pool P.
Definition: pool.h:274
#define PREDICT_FALSE(x)
Definition: clib.h:105
#define VLIB_CONFIG_FUNCTION(x, n,...)
Definition: init.h:164
clib_error_t * session_manager_main_init(vlib_main_t *vm)
Definition: session.c:1502
static stream_session_t * session_get_if_valid(u64 si, u32 thread_index)
Definition: session.h:316
struct _session_manager_main session_manager_main_t
Definition: session.h:172
#define foreach_vlib_main(body)
Definition: threads.h:244
int stream_session_accept(transport_connection_t *tc, u32 listener_index, u8 notify)
Accept a stream session.
Definition: session.c:819
clib_error_t * vnet_session_enable_disable(vlib_main_t *vm, u8 is_en)
Definition: session.c:1481
static stream_session_t * session_get(u32 si, u32 thread_index)
Definition: session.h:309
struct _session_switch_pool_args session_switch_pool_args_t
API main structure, used by both vpp and binary API clients.
Definition: api_common.h:201
int session_alloc_fifos(segment_manager_t *sm, stream_session_t *s)
Definition: session.c:156
#define pool_get_aligned(P, E, A)
Allocate an object E from a pool P (general version).
Definition: pool.h:188
#define SESSION_DBG(_fmt, _args...)
static void clib_rwlock_writer_unlock(clib_rwlock_t *p)
Definition: lock.h:185
u32 n_rings
number of msg rings
Definition: message_queue.h:54
#define SESSION_EVT_DBG(_evt, _args...)
void transport_init(void)
Definition: transport.c:402
session_fifo_rx_fn session_tx_fifo_dequeue_and_snd
#define UNFORMAT_END_OF_INPUT
Definition: format.h:144
u32 runtime_index
Definition: node.h:276
static_always_inline uword vlib_get_thread_index(void)
Definition: threads.h:221
static vlib_process_t * vlib_get_current_process(vlib_main_t *vm)
Definition: node_funcs.h:417
static session_type_t session_type_from_proto_and_ip(transport_proto_t proto, u8 is_ip4)
Definition: session.h:405
vlib_main_t * vm
Definition: buffer.c:294
static void svm_msg_q_unlock(svm_msg_q_t *mq)
Unlock message queue.
static void vlib_process_signal_event_mt(vlib_main_t *vm, uword node_index, uword type_opaque, uword data)
Signal event to process from any thread.
Definition: node_funcs.h:976
transport_service_type_t session_transport_service_type(stream_session_t *s)
Definition: session.c:1166
segment_manager_t * application_get_connect_segment_manager(application_t *app)
Definition: application.c:543
#define clib_warning(format, args...)
Definition: error.h:59
static int session_send_evt_to_thread(void *data, void *args, u32 thread_index, session_evt_type_t evt_type)
Definition: session.c:31
void stream_session_init_fifos_pointers(transport_connection_t *tc, u32 rx_pointer, u32 tx_pointer)
Init fifo tail and head pointers.
Definition: session.c:584
#define clib_memcpy(a, b, c)
Definition: string.h:75
struct _application application_t
u32 my_pid
Definition: ssvm.h:85
void transport_enable_disable(vlib_main_t *vm, u8 is_en)
Definition: transport.c:391
static int svm_msg_q_try_lock(svm_msg_q_t *mq)
Try locking message queue.
#define pool_init_fixed(pool, max_elts)
initialize a fixed-size, preallocated pool
Definition: pool.h:86
void stream_session_disconnect_notify(transport_connection_t *tc)
Notification from transport that connection is being closed.
Definition: session.c:750
#define SESSION_Q_PROCESS_STOP
Definition: session.h:279
ssvm_private_t * session_manager_get_evt_q_segment(void)
Definition: session.c:1256
#define ASSERT(truth)
void svm_msg_q_add_and_unlock(svm_msg_q_t *mq, svm_msg_q_msg_t *msg)
Producer enqueue one message to queue with mutex held.
u32 session_tx_fifo_max_dequeue(transport_connection_t *tc)
Definition: session.c:457
u8 session_type_t
u32 next_buffer
Next buffer for this linked-list of buffers.
Definition: buffer.h:126
void segment_manager_main_init(segment_manager_main_init_args_t *a)
static void clib_mem_free(void *p)
Definition: mem.h:179
static int session_enqueue_notify(stream_session_t *s, u8 lock)
Notify session peer that new data has been enqueued.
Definition: session.c:489
int listen_session_get_local_session_endpoint(stream_session_t *listener, session_endpoint_t *sep)
Definition: session.c:1329
void stream_session_disconnect(stream_session_t *s)
Initialize session disconnect.
Definition: session.c:1093
static void vlib_buffer_advance(vlib_buffer_t *b, word l)
Advance current data pointer by the supplied (signed!) amount.
Definition: buffer.h:215
void stream_session_reset_notify(transport_connection_t *tc)
Notify application that connection has been reset.
Definition: session.c:805
static void vlib_node_set_state(vlib_main_t *vm, u32 node_index, vlib_node_state_t new_state)
Set node dispatch state.
Definition: node_funcs.h:147
int session_listen_app(stream_session_t *s, session_endpoint_t *sep)
Definition: session.c:1021
int svm_fifo_enqueue_with_offset(svm_fifo_t *f, u32 offset, u32 required_bytes, u8 *copy_from_here)
Definition: svm_fifo.c:614
int stream_session_stop_listen(stream_session_t *s)
Ask transport to stop listening on local transport endpoint.
Definition: session.c:1064
static void * clib_mem_alloc(uword size)
Definition: mem.h:112
svm_msg_q_ring_cfg_t * ring_cfgs
array of ring cfgs
Definition: message_queue.h:55
#define clib_max(x, y)
Definition: clib.h:282
static vlib_main_t * vlib_get_main(void)
Definition: global_funcs.h:23
u8 * name
Definition: ssvm.h:86
stream_session_t * session_alloc(u32 thread_index)
Definition: session.c:121
#define HALF_OPEN_LOOKUP_INVALID_VALUE
Definition: session.h:25
static void session_enqueue_discard_chain_bytes(vlib_main_t *vm, vlib_buffer_t *b, vlib_buffer_t **chain_b, u32 n_bytes_to_drop)
Discards bytes from buffer chain.
Definition: session.c:227
u32 total_length_not_including_first_buffer
Only valid for first buffer in chain.
Definition: buffer.h:152
template key/value backing page structure
Definition: bihash_doc.h:44
static void session_switch_pool(void *cb_args)
Definition: session.c:677
int svm_fifo_dequeue_drop(svm_fifo_t *f, u32 max_bytes)
Definition: svm_fifo.c:792
u32 q_nitems
msg queue size (not rings)
Definition: message_queue.h:53
enum _transport_proto transport_proto_t
transport_connection_t * listen_session_get_transport(stream_session_t *s)
Definition: session.c:1322
void session_lookup_init(void)
#define vec_len(v)
Number of elements in vector (rvalue-only, NULL tolerant)
session_fifo_rx_fn session_tx_fifo_dequeue_internal
int( session_fifo_rx_fn)(vlib_main_t *vm, vlib_node_runtime_t *node, session_event_t *e0, stream_session_t *s0, int *n_tx_pkts)
Definition: session.h:175
static stream_session_t * session_clone_safe(u32 session_index, u32 thread_index)
Definition: session.h:499
application_t * application_get(u32 index)
Definition: application.c:386
struct _transport_endpoint transport_endpoint_t
u64 uword
Definition: types.h:112
int application_lock_and_send_event(application_t *app, stream_session_t *s, u8 evt_type)
Definition: application.c:939
struct _segment_manager segment_manager_t
unformat_function_t unformat_memory_size
Definition: format.h:295
int session_manager_flush_all_enqueue_events(u8 transport_proto)
Definition: session.c:569
int session_lookup_add_connection(transport_connection_t *tc, u64 value)
Add transport connection to a session table.
transport_tx_fn_type_t session_transport_tx_fn_type(stream_session_t *s)
Definition: session.c:1174
int session_manager_flush_enqueue_events(u8 transport_proto, u32 thread_index)
Flushes queue of sessions that are to be notified of new data enqueued events.
Definition: session.c:537
u8 * format_unformat_error(u8 *s, va_list *va)
Definition: unformat.c:91
int session_stream_connect_notify(transport_connection_t *tc, u8 is_fail)
Definition: session.c:594
static vlib_thread_main_t * vlib_get_thread_main()
Definition: global_funcs.h:32
vlib_node_registration_t session_queue_process_node
(constructor) VLIB_REGISTER_NODE (session_queue_process_node)
static u32 vlib_num_workers()
Definition: threads.h:375
static vlib_node_t * vlib_get_node(vlib_main_t *vm, u32 i)
Get vlib node by index.
Definition: node_funcs.h:59
static int session_enqueue_chain_tail(stream_session_t *s, vlib_buffer_t *b, u32 offset, u8 is_in_order)
Enqueue buffer chain tail.
Definition: session.c:258
u8 session_tx_is_dgram(stream_session_t *s)
Definition: session.c:1182
int(* session_open_service_fn)(u32, session_endpoint_t *, u32)
Definition: session.c:929
int session_open_cl(u32 app_index, session_endpoint_t *rmt, u32 opaque)
Definition: session.c:849
int session_send_io_evt_to_thread_custom(svm_fifo_t *f, u32 thread_index, session_evt_type_t evt_type)
Definition: session.c:92
int application_is_builtin_proxy(application_t *app)
Definition: application.c:591
int consumer_pid
pid of msg consumer
Definition: message_queue.h:52
int(* session_listen_service_fn)(stream_session_t *, session_endpoint_t *)
Definition: session.c:1031
#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 int session_alloc_and_init(segment_manager_t *sm, transport_connection_t *tc, u8 alloc_fifos, stream_session_t **ret_s)
Definition: session.c:200
void vlib_start_process(vlib_main_t *vm, uword process_index)
Definition: main.c:1346
int svm_fifo_peek(svm_fifo_t *f, u32 relative_offset, u32 max_bytes, u8 *copy_here)
Definition: svm_fifo.c:776
void session_register_transport(transport_proto_t transport_proto, const transport_proto_vft_t *vft, u8 is_ip4, u32 output_node)
Initialize session layer for given transport proto and ip version.
Definition: session.c:1280
int session_lookup_add_half_open(transport_connection_t *tc, u64 value)
api_main_t api_main
Definition: api_shared.c:35
int stream_session_peek_bytes(transport_connection_t *tc, u8 *buffer, u32 offset, u32 max_bytes)
Definition: session.c:466
u8 transport_protocol_is_cl(transport_proto_t tp)
Definition: transport.c:211
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
svm_msg_q_msg_t svm_msg_q_alloc_msg_w_ring(svm_msg_q_t *mq, u32 ring_index)
Allocate message buffer on ring.
Definition: message_queue.c:85
int i_am_master
Definition: ssvm.h:88
void stream_session_disconnect_transport(stream_session_t *s)
Notify transport the session can be disconnected.
Definition: session.c:1135
struct _session_endpoint_extended session_endpoint_extended_t
application_t * application_get_if_valid(u32 index)
Definition: application.c:394
u8 stream_session_no_space(transport_connection_t *tc, u32 thread_index, u16 data_len)
Check if we have space in rx fifo to push more bytes.
Definition: session.c:442
uword unformat(unformat_input_t *i, const char *fmt,...)
Definition: unformat.c:972
static uword unformat_check_input(unformat_input_t *i)
Definition: format.h:170
int stream_session_listen(stream_session_t *s, session_endpoint_t *sep)
Ask transport to listen on local transport endpoint.
Definition: session.c:1052