aboutsummaryrefslogtreecommitdiffstats
path: root/src/vlib/threads.h
blob: 8931584b5a929cf92470915d7e4c0977ba59fa4e (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
273
274
275
276
277
278
279
280
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
301
302
303
304
305
306
307
308
309
310
311
312
313
314
315
316
317
318
319
320
321
322
323
324
325
326
327
328
329
330
331
332
333
334
335
336
337
338
339
340
341
342
343
344
345
346
347
348
349
350
351
352
353
354
355
356
357
358
359
360
361
362
363
364
365
366
367
368
369
370
371
372
373
374
375
376
377
378
379
380
381
382
383
384
385
386
387
388
389
390
391
392
393
394
395
396
397
398
399
400
401
402
403
404
405
406
407
408
409
410
411
412
413
414
415
416
417
418
419
420
421
422
423
424
425
426
427
428
429
430
431
432
433
434
435
436
437
438
439
440
441
442
443
444
445
446
447
448
449
450
451
452
453
454
455
456
457
458
459
460
461
462
463
464
465
466
467
468
469
470
471
472
473
474
475
476
477
478
479
480
481
482
483
484
485
486
487
488
489
490
491
492
493
494
495
496
497
498
499
500
501
502
503
504
505
506
507
508
509
510
511
512
513
514
515
516
517
518
519
520
521
522
523
524
525
526
527
528
529
530
531
532
533
534
535
536
537
/*
 * Copyright (c) 2015 Cisco and/or its affiliates.
 * Licensed under the Apache License, Version 2.0 (the "License");
 * you may not use this file except in compliance with the License.
 * You may obtain a copy of the License at:
 *
 *     http://www.apache.org/licenses/LICENSE-2.0
 *
 * Unless required by applicable law or agreed to in writing, software
 * distributed under the License is distributed on an "AS IS" BASIS,
 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
 * See the License for the specific language governing permissions and
 * limitations under the License.
 */
#ifndef included_vlib_threads_h
#define included_vlib_threads_h

#include <vlib/main.h>
#include <linux/sched.h>

/*
 * To enable detailed tracing of barrier usage, including call stacks and
 * timings, define BARRIER_TRACING here or in relevant TAGS.  If also used
 * with CLIB_DEBUG, timing will _not_ be representative of normal code
 * execution.
 *
 */

// #define BARRIER_TRACING 1

/*
 * Two options for barrier tracing output: syslog & elog.
 */

// #define BARRIER_TRACING_ELOG 1

extern vlib_main_t **vlib_mains;

void vlib_set_thread_name (char *name);

/* arg is actually a vlib__thread_t * */
typedef void (vlib_thread_function_t) (void *arg);

typedef struct vlib_thread_registration_
{
  /* constructor generated list of thread registrations */
  struct vlib_thread_registration_ *next;

  /* config parameters */
  char *name;
  char *short_name;
  vlib_thread_function_t *function;
  uword mheap_size;
  int fixed_count;
  u32 count;
  int no_data_structure_clone;
  u32 frame_queue_nelts;

  /* All threads of this type run on pthreads */
  int use_pthreads;
  u32 first_index;
  uword *coremask;
} vlib_thread_registration_t;

/*
 * Frames have their cpu / vlib_main_t index in the low-order N bits
 * Make VLIB_MAX_CPUS a power-of-two, please...
 */

#ifndef VLIB_MAX_CPUS
#define VLIB_MAX_CPUS 256
#endif

#if VLIB_MAX_CPUS > CLIB_MAX_MHEAPS
#error Please increase number of per-cpu mheaps
#endif

#define VLIB_CPU_MASK (VLIB_MAX_CPUS - 1)	/* 0x3f, max */
#define VLIB_OFFSET_MASK (~VLIB_CPU_MASK)

#define VLIB_LOG2_THREAD_STACK_SIZE (21)
#define VLIB_THREAD_STACK_SIZE (1<<VLIB_LOG2_THREAD_STACK_SIZE)

typedef enum
{
  VLIB_FRAME_QUEUE_ELT_DISPATCH_FRAME,
} vlib_frame_queue_msg_type_t;

typedef struct
{
  CLIB_CACHE_LINE_ALIGN_MARK (cacheline0);
  volatile u32 valid;
  u32 msg_type;
  u32 n_vectors;
  u32 last_n_vectors;

  /* 256 * 4 = 1024 bytes, even mult of cache line size */
  u32 buffer_index[VLIB_FRAME_SIZE];
}
vlib_frame_queue_elt_t;

typedef struct
{
  /* First cache line */
  CLIB_CACHE_LINE_ALIGN_MARK (cacheline0);
  volatile u32 *wait_at_barrier;
  volatile u32 *workers_at_barrier;

  /* Second Cache Line */
    CLIB_CACHE_LINE_ALIGN_MARK (cacheline1);
  void *thread_mheap;
  u8 *thread_stack;
  void (*thread_function) (void *);
  void *thread_function_arg;
  i64 recursion_level;
  elog_track_t elog_track;
  u32 instance_id;
  vlib_thread_registration_t *registration;
  u8 *name;
  u64 barrier_sync_count;
#ifdef BARRIER_TRACING
  const char *barrier_caller;
  const char *barrier_context;
#endif
  volatile u32 *node_reforks_required;

  long lwp;
  int lcore_id;
  pthread_t thread_id;
} vlib_worker_thread_t;

extern vlib_worker_thread_t *vlib_worker_threads;

typedef struct
{
  /* enqueue side */
  CLIB_CACHE_LINE_ALIGN_MARK (cacheline0);
  volatile u64 tail;
  u64 enqueues;
  u64 enqueue_ticks;
  u64 enqueue_vectors;
  u32 enqueue_full_events;

  /* dequeue side */
    CLIB_CACHE_LINE_ALIGN_MARK (cacheline1);
  volatile u64 head;
  u64 dequeues;
  u64 dequeue_ticks;
  u64 dequeue_vectors;
  u64 trace;
  u64 vector_threshold;

  /* dequeue hint to enqueue side */
    CLIB_CACHE_LINE_ALIGN_MARK (cacheline2);
  volatile u64 head_hint;

  /* read-only, constant, shared */
    CLIB_CACHE_LINE_ALIGN_MARK (cacheline3);
  vlib_frame_queue_elt_t *elts;
  u32 nelts;
}
vlib_frame_queue_t;

typedef struct
{
  u32 node_index;
  vlib_frame_queue_t **vlib_frame_queues;

  /* for frame queue tracing */
  frame_queue_trace_t *frame_queue_traces;
  frame_queue_nelt_counter_t *frame_queue_histogram;
} vlib_frame_queue_main_t;

typedef struct
{
  uword node_index;
  uword type_opaque;
  uword data;
} vlib_process_signal_event_mt_args_t;

/* Called early, in thread 0's context */
clib_error_t *vlib_thread_init (vlib_main_t * vm);

int vlib_frame_queue_enqueue (vlib_main_t * vm, u32 node_runtime_index,
			      u32 frame_queue_index, vlib_frame_t * frame,
			      vlib_frame_queue_msg_type_t type);

int
vlib_frame_queue_dequeue (vlib_main_t * vm, vlib_frame_queue_main_t * fqm);

void vlib_worker_thread_node_runtime_update (void);

void vlib_create_worker_threads (vlib_main_t * vm, int n,
				 void (*thread_function) (void *));

void vlib_worker_thread_init (vlib_worker_thread_t * w);
u32 vlib_frame_queue_main_init (u32 node_index, u32 frame_queue_nelts);

/* Check for a barrier sync request every 30ms */
#define BARRIER_SYNC_DELAY (0.030000)

#if CLIB_DEBUG > 0
/* long barrier timeout, for gdb... */
#define BARRIER_SYNC_TIMEOUT (600.1)
#else
#define BARRIER_SYNC_TIMEOUT (1.0)
#endif

#ifdef BARRIER_TRACING
#define vlib_worker_thread_barrier_sync(X) {vlib_worker_threads[0].barrier_caller=__FUNCTION__;vlib_worker_thread_barrier_sync_int(X);}
#else
#define vlib_worker_thread_barrier_sync(X) vlib_worker_thread_barrier_sync_int(X)
#endif


void vlib_worker_thread_barrier_sync_int (vlib_main_t * vm);
void vlib_worker_thread_barrier_release (vlib_main_t * vm);
void vlib_worker_thread_node_refork (void);

static_always_inline uword
vlib_get_thread_index (void)
{
  return __os_thread_index;
}

always_inline void
vlib_smp_unsafe_warning (void)
{
  if (CLIB_DEBUG > 0)
    {
      if (vlib_get_thread_index ())
	fformat (stderr, "%s: SMP unsafe warning...\n", __FUNCTION__);
    }
}

typedef enum
{
  VLIB_WORKER_THREAD_FORK_FIXUP_ILLEGAL = 0,
  VLIB_WORKER_THREAD_FORK_FIXUP_NEW_SW_IF_INDEX,
} vlib_fork_fixup_t;

void vlib_worker_thread_fork_fixup (vlib_fork_fixup_t which);

#define foreach_vlib_main(body)                         \
do {                                                    \
  vlib_main_t ** __vlib_mains = 0, *this_vlib_main;     \
  int ii;                                               \
                                                        \
  for (ii = 0; ii < vec_len (vlib_mains); ii++)         \
    {                                                   \
      this_vlib_main = vlib_mains[ii];                  \
      ASSERT (ii == 0 ||                                \
	      this_vlib_main->parked_at_barrier == 1);  \
      if (this_vlib_main)                               \
        vec_add1 (__vlib_mains, this_vlib_main);        \
    }                                                   \
                                                        \
  for (ii = 0; ii < vec_len (__vlib_mains); ii++)       \
    {                                                   \
      this_vlib_main = __vlib_mains[ii];                \
      /* body uses this_vlib_main... */                 \
      (body);                                           \
    }                                                   \
  vec_free (__vlib_mains);                              \
} while (0);

#define foreach_sched_policy \
  _(SCHED_OTHER, OTHER, "other") \
  _(SCHED_BATCH, BATCH, "batch") \
  _(SCHED_IDLE, IDLE, "idle")   \
  _(SCHED_FIFO, FIFO, "fifo")   \
  _(SCHED_RR, RR, "rr")

typedef enum
{
#define _(v,f,s) SCHED_POLICY_##f = v,
  foreach_sched_policy
#undef _
    SCHED_POLICY_N,
} sched_policy_t;

typedef struct
{
  clib_error_t *(*vlib_launch_thread_cb) (void *fp, vlib_worker_thread_t * w,
					  unsigned lcore_id);
  clib_error_t *(*vlib_thread_set_lcore_cb) (u32 thread, u16 lcore);
} vlib_thread_callbacks_t;

typedef struct
{
  /* Link list of registrations, built by constructors */
  vlib_thread_registration_t *next;

  /* Vector of registrations, w/ non-data-structure clones at the top */
  vlib_thread_registration_t **registrations;

  uword *thread_registrations_by_name;

  vlib_worker_thread_t *worker_threads;

  /*
   * Launch all threads as pthreads,
   * not eal_rte_launch (strict affinity) threads
   */
  int use_pthreads;

  /* Number of vlib_main / vnet_main clones */
  u32 n_vlib_mains;

  /* Number of thread stacks to create */
  u32 n_thread_stacks;

  /* Number of pthreads */
  u32 n_pthreads;

  /* Number of threads */
  u32 n_threads;

  /* Number of cores to skip, must match the core mask */
  u32 skip_cores;

  /* Thread prefix name */
  u8 *thread_prefix;

  /* main thread lcore */
  u8 main_lcore;

  /* Bitmap of available CPU cores */
  uword *cpu_core_bitmap;

  /* Bitmap of available CPU sockets (NUMA nodes) */
  uword *cpu_socket_bitmap;

  /* Worker handoff queues */
  vlib_frame_queue_main_t *frame_queue_mains;

  /* worker thread initialization barrier */
  volatile u32 worker_thread_release;

  /* scheduling policy */
  u32 sched_policy;

  /* scheduling policy priority */
  u32 sched_priority;

  /* callbacks */
  vlib_thread_callbacks_t cb;
  int extern_thread_mgmt;
} vlib_thread_main_t;

extern vlib_thread_main_t vlib_thread_main;

#include <vlib/global_funcs.h>

#define VLIB_REGISTER_THREAD(x,...)                     \
  __VA_ARGS__ vlib_thread_registration_t x;             \
static void __vlib_add_thread_registration_##x (void)   \
  __attribute__((__constructor__)) ;                    \
static void __vlib_add_thread_registration_##x (void)   \
{                                                       \
  vlib_thread_main_t * tm = &vlib_thread_main;          \
  x.next = tm->next;                                    \
  tm->next = &x;                                        \
}                                                       \
__VA_ARGS__ vlib_thread_registration_t x

always_inline u32
vlib_num_workers ()
{
  return vlib_thread_main.n_vlib_mains - 1;
}

always_inline u32
vlib_get_worker_thread_index (u32 worker_index)
{
  return worker_index + 1;
}

always_inline u32
vlib_get_worker_index (u32 thread_index)
{
  return thread_index - 1;
}

always_inline u32
vlib_get_current_worker_index ()
{
  return vlib_get_thread_index () - 1;
}

static inline void
vlib_worker_thread_barrier_check (void)
{
  if (PREDICT_FALSE (*vlib_worker_threads->wait_at_barrier))
    {
      vlib_main_t *vm;
      clib_smp_atomic_add (vlib_worker_threads->workers_at_barrier, 1);
      if (CLIB_DEBUG > 0)
	{
	  vm = vlib_get_main ();
	  vm->parked_at_barrier = 1;
	}
      while (*vlib_worker_threads->wait_at_barrier)
	;
      if (CLIB_DEBUG > 0)
	vm->parked_at_barrier = 0;
      clib_smp_atomic_add (vlib_worker_threads->workers_at_barrier, -1);

      if (PREDICT_FALSE (*vlib_worker_threads->node_reforks_required))
	{
	  vlib_worker_thread_node_refork ();
	  clib_smp_atomic_add (vlib_worker_threads->node_reforks_required,
			       -1);
	  while (*vlib_worker_threads->node_reforks_required)
	    ;
	}
    }
}

always_inline vlib_main_t *
vlib_get_worker_vlib_main (u32 worker_index)
{
  vlib_main_t *vm;
  vlib_thread_main_t *tm = &vlib_thread_main;
  ASSERT (worker_index < tm->n_vlib_mains - 1);
  vm = vlib_mains[worker_index + 1];
  ASSERT (vm);
  return vm;
}

static inline void
vlib_put_frame_queue_elt (vlib_frame_queue_elt_t * hf)
{
  CLIB_MEMORY_BARRIER ();
  hf->valid = 1;
}

static inline vlib_frame_queue_elt_t *
vlib_get_frame_queue_elt (u32 frame_queue_index, u32 index)
{
  vlib_frame_queue_t *fq;
  vlib_frame_queue_elt_t *elt;
  vlib_thread_main_t *tm = &vlib_thread_main;
  vlib_frame_queue_main_t *fqm =
    vec_elt_at_index (tm->frame_queue_mains, frame_queue_index);
  u64 new_tail;

  fq = fqm->vlib_frame_queues[index];
  ASSERT (fq);

  new_tail = __sync_add_and_fetch (&fq->tail, 1);

  /* Wait until a ring slot is available */
  while (new_tail >= fq->head_hint + fq->nelts)
    vlib_worker_thread_barrier_check ();

  elt = fq->elts + (new_tail & (fq->nelts - 1));

  /* this would be very bad... */
  while (elt->valid)
    ;

  elt->msg_type = VLIB_FRAME_QUEUE_ELT_DISPATCH_FRAME;
  elt->last_n_vectors = elt->n_vectors = 0;

  return elt;
}

static inline vlib_frame_queue_t *
is_vlib_frame_queue_congested (u32 frame_queue_index,
			       u32 index,
			       u32 queue_hi_thresh,
			       vlib_frame_queue_t **
			       handoff_queue_by_worker_index)
{
  vlib_frame_queue_t *fq;
  vlib_thread_main_t *tm = &vlib_thread_main;
  vlib_frame_queue_main_t *fqm =
    vec_elt_at_index (tm->frame_queue_mains, frame_queue_index);

  fq = handoff_queue_by_worker_index[index];
  if (fq != (vlib_frame_queue_t *) (~0))
    return fq;

  fq = fqm->vlib_frame_queues[index];
  ASSERT (fq);

  if (PREDICT_FALSE (fq->tail >= (fq->head_hint + queue_hi_thresh)))
    {
      /* a valid entry in the array will indicate the queue has reached
       * the specified threshold and is congested
       */
      handoff_queue_by_worker_index[index] = fq;
      fq->enqueue_full_events++;
      return fq;
    }

  return NULL;
}

static inline vlib_frame_queue_elt_t *
vlib_get_worker_handoff_queue_elt (u32 frame_queue_index,
				   u32 vlib_worker_index,
				   vlib_frame_queue_elt_t **
				   handoff_queue_elt_by_worker_index)
{
  vlib_frame_queue_elt_t *elt;

  if (handoff_queue_elt_by_worker_index[vlib_worker_index])
    return handoff_queue_elt_by_worker_index[vlib_worker_index];

  elt = vlib_get_frame_queue_elt (frame_queue_index, vlib_worker_index);

  handoff_queue_elt_by_worker_index[vlib_worker_index] = elt;

  return elt;
}

u8 *vlib_thread_stack_init (uword thread_index);
int vlib_thread_cb_register (struct vlib_main_t *vm,
			     vlib_thread_callbacks_t * cb);
extern void *rpc_call_main_thread_cb_fn;

void
vlib_process_signal_event_mt_helper (vlib_process_signal_event_mt_args_t *
				     args);
void vlib_rpc_call_main_thread (void *function, u8 * args, u32 size);

#endif /* included_vlib_threads_h */

/*
 * fd.io coding-style-patch-verification: ON
 *
 * Local Variables:
 * eval: (c-set-style "gnu")
 * End:
 */
ass="mi">32 | (u64) app_listener_id (al)); } static void app_listener_id_parse (u32 listener_id, u32 * app_index, u32 * app_listener_index) { *app_index = listener_id >> 16; *app_listener_index = listener_id & 0xFFFF; } void app_listener_handle_parse (session_handle_t handle, u32 * app_index, u32 * app_listener_index) { app_listener_id_parse (handle & 0xFFFFFFFF, app_index, app_listener_index); } static app_listener_t * app_listener_get_w_id (u32 listener_id) { u32 app_index, app_listener_index; application_t *app; app_listener_id_parse (listener_id, &app_index, &app_listener_index); app = application_get_if_valid (app_index); if (!app) return 0; return app_listener_get_if_valid (app, app_listener_index); } app_listener_t * app_listener_get_w_session (session_t * ls) { application_t *app; app = application_get_if_valid (ls->app_index); if (!app) return 0; return app_listener_get (app, ls->al_index); } app_listener_t * app_listener_get_w_handle (session_handle_t handle) { if (handle >> 32 != SESSION_LISTENER_PREFIX) return 0; return app_listener_get_w_id (handle & 0xFFFFFFFF); } app_listener_t * app_listener_lookup (application_t * app, session_endpoint_cfg_t * sep_ext) { u32 table_index, fib_proto; session_endpoint_t *sep; session_handle_t handle; session_t *ls; sep = (session_endpoint_t *) sep_ext; if (application_has_local_scope (app) && session_endpoint_is_local (sep)) { table_index = application_local_session_table (app); handle = session_lookup_endpoint_listener (table_index, sep, 1); if (handle != SESSION_INVALID_HANDLE) { ls = listen_session_get_from_handle (handle); return app_listener_get_w_session (ls); } } fib_proto = session_endpoint_fib_proto (sep); table_index = application_session_table (app, fib_proto); handle = session_lookup_endpoint_listener (table_index, sep, 1); if (handle != SESSION_INVALID_HANDLE) { ls = listen_session_get_from_handle (handle); return app_listener_get_w_session ((session_t *) ls); } return 0; } int app_listener_alloc_and_init (application_t * app, session_endpoint_cfg_t * sep, app_listener_t ** listener) { app_listener_t *app_listener; transport_connection_t *tc; session_handle_t lh; session_type_t st; session_t *ls = 0; u32 al_index; int rv; app_listener = app_listener_alloc (app); al_index = app_listener->al_index; st = session_type_from_proto_and_ip (sep->transport_proto, sep->is_ip4); /* * Add session endpoint to local session table. Only binds to "inaddr_any" * (i.e., zero address) are added to local scope table. */ if (application_has_local_scope (app) && session_endpoint_is_local ((session_endpoint_t *) sep)) { session_type_t local_st; u32 table_index; local_st = session_type_from_proto_and_ip (TRANSPORT_PROTO_NONE, sep->is_ip4); ls = listen_session_alloc (0, local_st); ls->app_index = app->app_index; ls->app_wrk_index = sep->app_wrk_index; lh = session_handle (ls); if ((rv = session_listen (ls, sep))) { ls = session_get_from_handle (lh); session_free (ls); return rv; } ls = session_get_from_handle (lh); app_listener = app_listener_get (app, al_index); app_listener->local_index = ls->session_index; ls->al_index = al_index; table_index = application_local_session_table (app); session_lookup_add_session_endpoint (table_index, (session_endpoint_t *) sep, lh); } if (application_has_global_scope (app)) { /* * Start listening on local endpoint for requested transport and scope. * Creates a stream session with state LISTENING to be used in session * lookups, prior to establishing connection. Requests transport to * build it's own specific listening connection. */ ls = listen_session_alloc (0, st); ls->app_index = app->app_index; ls->app_wrk_index = sep->app_wrk_index; /* Listen pool can be reallocated if the transport is * recursive (tls) */ lh = listen_session_get_handle (ls); if ((rv = session_listen (ls, sep))) { ls = listen_session_get_from_handle (lh); session_free (ls); return rv; } ls = listen_session_get_from_handle (lh); app_listener = app_listener_get (app, al_index); app_listener->session_index = ls->session_index; ls->al_index = al_index; /* Add to the global lookup table after transport was initialized. * Lookup table needs to be populated only now because sessions * with cut-through transport are are added to app local tables that * are not related to network fibs, i.e., cannot be added as * connections */ tc = session_get_transport (ls); session_lookup_add_connection (tc, lh); } if (!ls) { app_listener_free (app, app_listener); return -1; } *listener = app_listener; return 0; } void app_listener_cleanup (app_listener_t * al) { application_t *app = application_get (al->app_index); session_t *ls; if (al->session_index != SESSION_INVALID_INDEX) { ls = session_get (al->session_index, 0); session_stop_listen (ls); listen_session_free (ls); } if (al->local_index != SESSION_INVALID_INDEX) { session_endpoint_t sep = SESSION_ENDPOINT_NULL; u32 table_index; table_index = application_local_session_table (app); ls = listen_session_get (al->local_index); ct_session_endpoint (ls, &sep); session_lookup_del_session_endpoint (table_index, &sep); session_stop_listen (ls); listen_session_free (ls); } app_listener_free (app, al); } app_worker_t * app_listener_select_worker (app_listener_t * al) { application_t *app; u32 wrk_index; app = application_get (al->app_index); wrk_index = clib_bitmap_next_set (al->workers, al->accept_rotor + 1); if (wrk_index == ~0) wrk_index = clib_bitmap_first_set (al->workers); ASSERT (wrk_index != ~0); al->accept_rotor = wrk_index; return application_get_worker (app, wrk_index); } session_t * app_listener_get_session (app_listener_t * al) { if (al->session_index == SESSION_INVALID_INDEX) return 0; return listen_session_get (al->session_index); } session_t * app_listener_get_local_session (app_listener_t * al) { if (al->local_index == SESSION_INVALID_INDEX) return 0; return listen_session_get (al->local_index); } static app_worker_map_t * app_worker_map_alloc (application_t * app) { app_worker_map_t *map; pool_get (app->worker_maps, map); clib_memset (map, 0, sizeof (*map)); return map; } static u32 app_worker_map_index (application_t * app, app_worker_map_t * map) { return (map - app->worker_maps); } static void app_worker_map_free (application_t * app, app_worker_map_t * map) { pool_put (app->worker_maps, map); } static app_worker_map_t * app_worker_map_get (application_t * app, u32 map_index) { if (pool_is_free_index (app->worker_maps, map_index)) return 0; return pool_elt_at_index (app->worker_maps, map_index); } static const u8 * app_get_name (application_t * app) { return app->name; } u32 application_session_table (application_t * app, u8 fib_proto) { app_namespace_t *app_ns; app_ns = app_namespace_get (app->ns_index); if (!application_has_global_scope (app)) return APP_INVALID_INDEX; if (fib_proto == FIB_PROTOCOL_IP4) return session_lookup_get_index_for_fib (fib_proto, app_ns->ip4_fib_index); else return session_lookup_get_index_for_fib (fib_proto, app_ns->ip6_fib_index); } u32 application_local_session_table (application_t * app) { app_namespace_t *app_ns; if (!application_has_local_scope (app)) return APP_INVALID_INDEX; app_ns = app_namespace_get (app->ns_index); return app_ns->local_table_index; } /** * Returns app name for app-index */ const u8 * application_name_from_index (u32 app_index) { application_t *app = application_get (app_index); if (!app) return 0; return app_get_name (app); } static void application_api_table_add (u32 app_index, u32 api_client_index) { if (api_client_index != APP_INVALID_INDEX) hash_set (app_main.app_by_api_client_index, api_client_index, app_index); } static void application_api_table_del (u32 api_client_index) { hash_unset (app_main.app_by_api_client_index, api_client_index); } static void application_name_table_add (application_t * app) { hash_set_mem (app_main.app_by_name, app->name, app->app_index); } static void application_name_table_del (application_t * app) { hash_unset_mem (app_main.app_by_name, app->name); } application_t * application_lookup (u32 api_client_index) { uword *p; p = hash_get (app_main.app_by_api_client_index, api_client_index); if (p) return application_get_if_valid (p[0]); return 0; } application_t * application_lookup_name (const u8 * name) { uword *p; p = hash_get_mem (app_main.app_by_name, name); if (p) return application_get (p[0]); return 0; } static application_t * application_alloc (void) { application_t *app; pool_get (app_main.app_pool, app); clib_memset (app, 0, sizeof (*app)); app->app_index = app - app_main.app_pool; return app; } application_t * application_get (u32 app_index) { if (app_index == APP_INVALID_INDEX) return 0; return pool_elt_at_index (app_main.app_pool, app_index); } application_t * application_get_if_valid (u32 app_index) { if (pool_is_free_index (app_main.app_pool, app_index)) return 0; return pool_elt_at_index (app_main.app_pool, app_index); } static void application_verify_cb_fns (session_cb_vft_t * cb_fns) { if (cb_fns->session_accept_callback == 0) clib_warning ("No accept callback function provided"); if (cb_fns->session_connected_callback == 0) clib_warning ("No session connected callback function provided"); if (cb_fns->session_disconnect_callback == 0) clib_warning ("No session disconnect callback function provided"); if (cb_fns->session_reset_callback == 0) clib_warning ("No session reset callback function provided"); } /** * Check app config for given segment type * * Returns 1 on success and 0 otherwise */ static u8 application_verify_cfg (ssvm_segment_type_t st) { u8 is_valid; if (st == SSVM_SEGMENT_MEMFD) { is_valid = (session_main_get_evt_q_segment () != 0); if (!is_valid) clib_warning ("memfd seg: vpp's event qs IN binary api svm region"); return is_valid; } else if (st == SSVM_SEGMENT_SHM) { is_valid = (session_main_get_evt_q_segment () == 0); if (!is_valid) clib_warning ("shm seg: vpp's event qs NOT IN binary api svm region"); return is_valid; } else return 1; } static int application_alloc_and_init (app_init_args_t * a) { ssvm_segment_type_t seg_type = SSVM_SEGMENT_MEMFD; segment_manager_properties_t *props; vl_api_registration_t *reg; application_t *app; u64 *options; app = application_alloc (); options = a->options; /* * Make sure we support the requested configuration */ if (!(options[APP_OPTIONS_FLAGS] & APP_OPTIONS_FLAGS_IS_BUILTIN)) { reg = vl_api_client_index_to_registration (a->api_client_index); if (!reg) return VNET_API_ERROR_APP_UNSUPPORTED_CFG; if (vl_api_registration_file_index (reg) == VL_API_INVALID_FI) seg_type = SSVM_SEGMENT_SHM; } else { seg_type = SSVM_SEGMENT_PRIVATE; } if ((options[APP_OPTIONS_FLAGS] & APP_OPTIONS_FLAGS_EVT_MQ_USE_EVENTFD) && seg_type != SSVM_SEGMENT_MEMFD) { clib_warning ("mq eventfds can only be used if socket transport is " "used for binary api"); return VNET_API_ERROR_APP_UNSUPPORTED_CFG; } if (!application_verify_cfg (seg_type)) return VNET_API_ERROR_APP_UNSUPPORTED_CFG; /* Check that the obvious things are properly set up */ application_verify_cb_fns (a->session_cb_vft); app->flags = options[APP_OPTIONS_FLAGS]; app->cb_fns = *a->session_cb_vft; app->ns_index = options[APP_OPTIONS_NAMESPACE]; app->proxied_transports = options[APP_OPTIONS_PROXY_TRANSPORT]; app->name = vec_dup (a->name); /* If no scope enabled, default to global */ if (!application_has_global_scope (app) && !application_has_local_scope (app)) app->flags |= APP_OPTIONS_FLAGS_USE_GLOBAL_SCOPE; props = application_segment_manager_properties (app); segment_manager_properties_init (props); props->segment_size = options[APP_OPTIONS_ADD_SEGMENT_SIZE]; props->prealloc_fifos = options[APP_OPTIONS_PREALLOC_FIFO_PAIRS]; if (options[APP_OPTIONS_ADD_SEGMENT_SIZE]) { props->add_segment_size = options[APP_OPTIONS_ADD_SEGMENT_SIZE]; props->add_segment = 1; } if (options[APP_OPTIONS_RX_FIFO_SIZE]) props->rx_fifo_size = options[APP_OPTIONS_RX_FIFO_SIZE]; if (options[APP_OPTIONS_TX_FIFO_SIZE]) props->tx_fifo_size = options[APP_OPTIONS_TX_FIFO_SIZE]; if (options[APP_OPTIONS_EVT_QUEUE_SIZE]) props->evt_q_size = options[APP_OPTIONS_EVT_QUEUE_SIZE]; if (options[APP_OPTIONS_FLAGS] & APP_OPTIONS_FLAGS_EVT_MQ_USE_EVENTFD) props->use_mq_eventfd = 1; if (options[APP_OPTIONS_TLS_ENGINE]) app->tls_engine = options[APP_OPTIONS_TLS_ENGINE]; props->segment_type = seg_type; /* Add app to lookup by api_client_index table */ if (!application_is_builtin (app)) application_api_table_add (app->app_index, a->api_client_index); else application_name_table_add (app); a->app_index = app->app_index; APP_DBG ("New app name: %v api index: %u index %u", app->name, app->api_client_index, app->app_index); return 0; } static void application_free (application_t * app) { app_worker_map_t *wrk_map; app_worker_t *app_wrk; /* * The app event queue allocated in first segment is cleared with * the segment manager. No need to explicitly free it. */ APP_DBG ("Delete app name %v api index: %d index: %d", app->name, app->api_client_index, app->app_index); if (application_is_proxy (app)) application_remove_proxy (app); /* * Free workers */ /* *INDENT-OFF* */ pool_flush (wrk_map, app->worker_maps, ({ app_wrk = app_worker_get (wrk_map->wrk_index); app_worker_free (app_wrk); })); /* *INDENT-ON* */ pool_free (app->worker_maps); /* * Cleanup remaining state */ if (application_is_builtin (app)) application_name_table_del (app); vec_free (app->name); vec_free (app->tls_cert); vec_free (app->tls_key); pool_put (app_main.app_pool, app); } static void application_detach_process (application_t * app, u32 api_client_index) { vnet_app_worker_add_del_args_t _args = { 0 }, *args = &_args; app_worker_map_t *wrk_map; u32 *wrks = 0, *wrk_index; app_worker_t *app_wrk; if (api_client_index == ~0) { application_free (app); return; } APP_DBG ("Detaching for app %v index %u api client index %u", app->name, app->app_index, app->api_client_index); /* *INDENT-OFF* */ pool_foreach (wrk_map, app->worker_maps, ({ app_wrk = app_worker_get (wrk_map->wrk_index); if (app_wrk->api_client_index == api_client_index) vec_add1 (wrks, app_wrk->wrk_index); })); /* *INDENT-ON* */ if (!vec_len (wrks)) { clib_warning ("no workers for app %u api_index %u", app->app_index, api_client_index); return; } args->app_index = app->app_index; args->api_client_index = api_client_index; vec_foreach (wrk_index, wrks) { app_wrk = app_worker_get (wrk_index[0]); args->wrk_map_index = app_wrk->wrk_map_index; args->is_add = 0; vnet_app_worker_add_del (args); } vec_free (wrks); } app_worker_t * application_get_worker (application_t * app, u32 wrk_map_index) { app_worker_map_t *map; map = app_worker_map_get (app, wrk_map_index); if (!map) return 0; return app_worker_get (map->wrk_index); } app_worker_t * application_get_default_worker (application_t * app) { return application_get_worker (app, 0); } u32 application_n_workers (application_t * app) { return pool_elts (app->worker_maps); } app_worker_t * application_listener_select_worker (session_t * ls) { app_listener_t *al; al = app_listener_get_w_session (ls); return app_listener_select_worker (al); } int application_alloc_worker_and_init (application_t * app, app_worker_t ** wrk) { app_worker_map_t *wrk_map; app_worker_t *app_wrk; segment_manager_t *sm; int rv; app_wrk = app_worker_alloc (app); wrk_map = app_worker_map_alloc (app); wrk_map->wrk_index = app_wrk->wrk_index; app_wrk->wrk_map_index = app_worker_map_index (app, wrk_map); /* * Setup first segment manager */ sm = segment_manager_new (); sm->app_wrk_index = app_wrk->wrk_index; if ((rv = segment_manager_init (sm, app->sm_properties.segment_size, app->sm_properties.prealloc_fifos))) { app_worker_free (app_wrk); return rv; } sm->first_is_protected = 1; /* * Setup app worker */ app_wrk->first_segment_manager = segment_manager_index (sm); app_wrk->listeners_table = hash_create (0, sizeof (u64)); app_wrk->event_queue = segment_manager_event_queue (sm); app_wrk->app_is_builtin = application_is_builtin (app); *wrk = app_wrk; return 0; } int vnet_app_worker_add_del (vnet_app_worker_add_del_args_t * a) { svm_fifo_segment_private_t *fs; app_worker_map_t *wrk_map; app_worker_t *app_wrk; segment_manager_t *sm; application_t *app; int rv; app = application_get (a->app_index); if (!app) return VNET_API_ERROR_INVALID_VALUE; if (a->is_add) { if ((rv = application_alloc_worker_and_init (app, &app_wrk))) return rv; /* Map worker api index to the app */ app_wrk->api_client_index = a->api_client_index; application_api_table_add (app->app_index, a->api_client_index); sm = segment_manager_get (app_wrk->first_segment_manager); fs = segment_manager_get_segment_w_lock (sm, 0); a->segment = &fs->ssvm; a->segment_handle = segment_manager_segment_handle (sm, fs); segment_manager_segment_reader_unlock (sm); a->evt_q = app_wrk->event_queue; a->wrk_map_index = app_wrk->wrk_map_index; } else { wrk_map = app_worker_map_get (app, a->wrk_map_index); if (!wrk_map) return VNET_API_ERROR_INVALID_VALUE; app_wrk = app_worker_get (wrk_map->wrk_index); if (!app_wrk) return VNET_API_ERROR_INVALID_VALUE; application_api_table_del (app_wrk->api_client_index); app_worker_free (app_wrk); app_worker_map_free (app, wrk_map); if (application_n_workers (app) == 0) application_free (app); } return 0; } static int app_validate_namespace (u8 * namespace_id, u64 secret, u32 * app_ns_index) { app_namespace_t *app_ns; if (vec_len (namespace_id) == 0) { /* Use default namespace */ *app_ns_index = 0; return 0; } *app_ns_index = app_namespace_index_from_id (namespace_id); if (*app_ns_index == APP_NAMESPACE_INVALID_INDEX) return VNET_API_ERROR_APP_INVALID_NS; app_ns = app_namespace_get (*app_ns_index); if (!app_ns) return VNET_API_ERROR_APP_INVALID_NS; if (app_ns->ns_secret != secret) return VNET_API_ERROR_APP_WRONG_NS_SECRET; return 0; } static u8 * app_name_from_api_index (u32 api_client_index) { vl_api_registration_t *regp; regp = vl_api_client_index_to_registration (api_client_index); if (regp) return format (0, "%s%c", regp->name, 0); clib_warning ("api client index %u does not have an api registration!", api_client_index); return format (0, "unknown%c", 0); } /** * Attach application to vpp * * Allocates a vpp app, i.e., a structure that keeps back pointers * to external app and a segment manager for shared memory fifo based * communication with the external app. */ int vnet_application_attach (vnet_app_attach_args_t * a) { svm_fifo_segment_private_t *fs; application_t *app = 0; app_worker_t *app_wrk; segment_manager_t *sm; u32 app_ns_index = 0; u8 *app_name = 0; u64 secret; int rv; if (a->api_client_index != APP_INVALID_INDEX) app = application_lookup (a->api_client_index); else if (a->name) app = application_lookup_name (a->name); else return VNET_API_ERROR_INVALID_VALUE; if (app) return VNET_API_ERROR_APP_ALREADY_ATTACHED; if (a->api_client_index != APP_INVALID_INDEX) { app_name = app_name_from_api_index (a->api_client_index); a->name = app_name; } secret = a->options[APP_OPTIONS_NAMESPACE_SECRET]; if ((rv = app_validate_namespace (a->namespace_id, secret, &app_ns_index))) return rv; a->options[APP_OPTIONS_NAMESPACE] = app_ns_index; if ((rv = application_alloc_and_init ((app_init_args_t *) a))) return rv; app = application_get (a->app_index); if ((rv = application_alloc_worker_and_init (app, &app_wrk))) return rv; a->app_evt_q = app_wrk->event_queue; app_wrk->api_client_index = a->api_client_index; sm = segment_manager_get (app_wrk->first_segment_manager); fs = segment_manager_get_segment_w_lock (sm, 0); if (application_is_proxy (app)) application_setup_proxy (app); ASSERT (vec_len (fs->ssvm.name) <= 128); a->segment = &fs->ssvm; a->segment_handle = segment_manager_segment_handle (sm, fs); segment_manager_segment_reader_unlock (sm); vec_free (app_name); return 0; } /** * Detach application from vpp */ int vnet_application_detach (vnet_app_detach_args_t * a) { application_t *app; app = application_get_if_valid (a->app_index); if (!app) { clib_warning ("app not attached"); return VNET_API_ERROR_APPLICATION_NOT_ATTACHED; } app_interface_check_thread_and_barrier (vnet_application_detach, a); application_detach_process (app, a->api_client_index); return 0; } static u8 session_endpoint_in_ns (session_endpoint_t * sep) { u8 is_lep = session_endpoint_is_local (sep); if (!is_lep && sep->sw_if_index != ENDPOINT_INVALID_INDEX && !ip_interface_has_address (sep->sw_if_index, &sep->ip, sep->is_ip4)) { clib_warning ("sw_if_index %u not configured with ip %U", sep->sw_if_index, format_ip46_address, &sep->ip, sep->is_ip4); return 0; } return (is_lep || ip_is_local (sep->fib_index, &sep->ip, sep->is_ip4)); } static void session_endpoint_update_for_app (session_endpoint_cfg_t * sep, application_t * app, u8 is_connect) { app_namespace_t *app_ns; u32 ns_index, fib_index; ns_index = app->ns_index; /* App is a transport proto, so fetch the calling app's ns */ if (app->flags & APP_OPTIONS_FLAGS_IS_TRANSPORT_APP) ns_index = sep->ns_index; app_ns = app_namespace_get (ns_index); if (!app_ns) return; /* Ask transport and network to bind to/connect using local interface * that "supports" app's namespace. This will fix our local connection * endpoint. */ /* If in default namespace and user requested a fib index use it */ if (ns_index == 0 && sep->fib_index != ENDPOINT_INVALID_INDEX) fib_index = sep->fib_index; else fib_index = sep->is_ip4 ? app_ns->ip4_fib_index : app_ns->ip6_fib_index; sep->peer.fib_index = fib_index; sep->fib_index = fib_index; if (!is_connect) { sep->sw_if_index = app_ns->sw_if_index; } else { if (app_ns->sw_if_index != APP_NAMESPACE_INVALID_INDEX && sep->peer.sw_if_index != ENDPOINT_INVALID_INDEX && sep->peer.sw_if_index != app_ns->sw_if_index) clib_warning ("Local sw_if_index different from app ns sw_if_index"); sep->peer.sw_if_index = app_ns->sw_if_index; } } int vnet_listen (vnet_listen_args_t * a) { app_listener_t *app_listener; app_worker_t *app_wrk; application_t *app; int rv; app = application_get_if_valid (a->app_index); if (!app) return VNET_API_ERROR_APPLICATION_NOT_ATTACHED; app_wrk = application_get_worker (app, a->wrk_map_index); if (!app_wrk) return VNET_API_ERROR_INVALID_VALUE; a->sep_ext.app_wrk_index = app_wrk->wrk_index; session_endpoint_update_for_app (&a->sep_ext, app, 0 /* is_connect */ ); if (!session_endpoint_in_ns (&a->sep)) return VNET_API_ERROR_INVALID_VALUE_2; /* * Check if we already have an app listener */ app_listener = app_listener_lookup (app, &a->sep_ext); if (app_listener) { if (app_listener->app_index != app->app_index) return VNET_API_ERROR_ADDRESS_IN_USE; if (app_worker_start_listen (app_wrk, app_listener)) return -1; a->handle = app_listener_handle (app_listener); return 0; } /* * Create new app listener */ if ((rv = app_listener_alloc_and_init (app, &a->sep_ext, &app_listener))) return rv; if ((rv = app_worker_start_listen (app_wrk, app_listener))) { app_listener_cleanup (app_listener); return rv; } a->handle = app_listener_handle (app_listener); return 0; } int vnet_connect (vnet_connect_args_t * a) { app_worker_t *client_wrk; application_t *client; if (session_endpoint_is_zero (&a->sep)) return VNET_API_ERROR_INVALID_VALUE; client = application_get (a->app_index); session_endpoint_update_for_app (&a->sep_ext, client, 1 /* is_connect */ ); client_wrk = application_get_worker (client, a->wrk_map_index); /* * First check the local scope for locally attached destinations. * If we have local scope, we pass *all* connects through it since we may * have special policy rules even for non-local destinations, think proxy. */ if (application_has_local_scope (client)) { int rv; a->sep_ext.original_tp = a->sep_ext.transport_proto; a->sep_ext.transport_proto = TRANSPORT_PROTO_NONE; rv = app_worker_connect_session (client_wrk, &a->sep, a->api_context); if (rv <= 0) return rv; } /* * Not connecting to a local server, propagate to transport */ if (app_worker_connect_session (client_wrk, &a->sep, a->api_context)) return VNET_API_ERROR_SESSION_CONNECT; return 0; } int vnet_unlisten (vnet_unlisten_args_t * a) { app_worker_t *app_wrk; app_listener_t *al; application_t *app; if (!(app = application_get_if_valid (a->app_index))) return VNET_API_ERROR_APPLICATION_NOT_ATTACHED; if (!(al = app_listener_get_w_handle (a->handle))) return -1; if (al->app_index != app->app_index) { clib_warning ("app doesn't own handle %llu!", a->handle); return -1; } app_wrk = application_get_worker (app, a->wrk_map_index); if (!app_wrk) { clib_warning ("no app %u worker %u", app->app_index, a->wrk_map_index); return -1; } return app_worker_stop_listen (app_wrk, al); } int vnet_disconnect_session (vnet_disconnect_args_t * a) { app_worker_t *app_wrk; session_t *s; s = session_get_from_handle_if_valid (a->handle); if (!s) return VNET_API_ERROR_INVALID_VALUE; app_wrk = app_worker_get (s->app_wrk_index); if (app_wrk->app_index != a->app_index) return VNET_API_ERROR_INVALID_VALUE; /* We're peeking into another's thread pool. Make sure */ ASSERT (s->session_index == session_index_from_handle (a->handle)); session_close (s); return 0; } int application_change_listener_owner (session_t * s, app_worker_t * app_wrk) { app_worker_t *old_wrk = app_worker_get (s->app_wrk_index); app_listener_t *app_listener; application_t *app; if (!old_wrk) return -1; hash_unset (old_wrk->listeners_table, listen_session_get_handle (s)); if (session_transport_service_type (s) == TRANSPORT_SERVICE_CL && s->rx_fifo) segment_manager_dealloc_fifos (s->rx_fifo, s->tx_fifo); app = application_get (old_wrk->app_index); if (!app) return -1; app_listener = app_listener_get (app, s->al_index); /* Only remove from lb for now */ app_listener->workers = clib_bitmap_set (app_listener->workers, old_wrk->wrk_map_index, 0); if (app_worker_start_listen (app_wrk, app_listener)) return -1; s->app_wrk_index = app_wrk->wrk_index; return 0; } int application_is_proxy (application_t * app) { return (app->flags & APP_OPTIONS_FLAGS_IS_PROXY); } int application_is_builtin (application_t * app) { return (app->flags & APP_OPTIONS_FLAGS_IS_BUILTIN); } int application_is_builtin_proxy (application_t * app) { return (application_is_proxy (app) && application_is_builtin (app)); } u8 application_has_local_scope (application_t * app) { return app->flags & APP_OPTIONS_FLAGS_USE_LOCAL_SCOPE; } u8 application_has_global_scope (application_t * app) { return app->flags & APP_OPTIONS_FLAGS_USE_GLOBAL_SCOPE; } static clib_error_t * application_start_stop_proxy_fib_proto (application_t * app, u8 fib_proto, u8 transport_proto, u8 is_start) { app_namespace_t *app_ns = app_namespace_get (app->ns_index); u8 is_ip4 = (fib_proto == FIB_PROTOCOL_IP4); session_endpoint_cfg_t sep = SESSION_ENDPOINT_CFG_NULL; transport_connection_t *tc; app_worker_t *app_wrk; app_listener_t *al; session_t *s; u32 flags; /* TODO decide if we want proxy to be enabled for all workers */ app_wrk = application_get_default_worker (app); if (is_start) { s = app_worker_first_listener (app_wrk, fib_proto, transport_proto); if (!s) { sep.is_ip4 = is_ip4; sep.fib_index = app_namespace_get_fib_index (app_ns, fib_proto); sep.sw_if_index = app_ns->sw_if_index; sep.transport_proto = transport_proto; sep.app_wrk_index = app_wrk->wrk_index; /* only default */ /* force global scope listener */ flags = app->flags; app->flags &= ~APP_OPTIONS_FLAGS_USE_LOCAL_SCOPE; app_listener_alloc_and_init (app, &sep, &al); app->flags = flags; app_worker_start_listen (app_wrk, al); s = listen_session_get (al->session_index); s->enqueue_epoch = SESSION_PROXY_LISTENER_INDEX; } } else { s = app_worker_proxy_listener (app_wrk, fib_proto, transport_proto); ASSERT (s); } tc = listen_session_get_transport (s); if (!ip_is_zero (&tc->lcl_ip, 1)) { u32 sti; sep.is_ip4 = is_ip4; sep.fib_index = app_namespace_get_fib_index (app_ns, fib_proto); sep.transport_proto = transport_proto; sep.port = 0; sti = session_lookup_get_index_for_fib (fib_proto, sep.fib_index); if (is_start) session_lookup_add_session_endpoint (sti, (session_endpoint_t *) & sep, s->session_index); else session_lookup_del_session_endpoint (sti, (session_endpoint_t *) & sep); } return 0; } static void application_start_stop_proxy_local_scope (application_t * app, u8 transport_proto, u8 is_start) { session_endpoint_t sep = SESSION_ENDPOINT_NULL; app_namespace_t *app_ns; app_ns = app_namespace_get (app->ns_index); sep.is_ip4 = 1; sep.transport_proto = transport_proto; sep.port = 0; if (is_start) { session_lookup_add_session_endpoint (app_ns->local_table_index, &sep, app->app_index); sep.is_ip4 = 0; session_lookup_add_session_endpoint (app_ns->local_table_index, &sep, app->app_index); } else { session_lookup_del_session_endpoint (app_ns->local_table_index, &sep); sep.is_ip4 = 0; session_lookup_del_session_endpoint (app_ns->local_table_index, &sep); } } void application_start_stop_proxy (application_t * app, transport_proto_t transport_proto, u8 is_start) { if (application_has_local_scope (app)) application_start_stop_proxy_local_scope (app, transport_proto, is_start); if (application_has_global_scope (app)) { application_start_stop_proxy_fib_proto (app, FIB_PROTOCOL_IP4, transport_proto, is_start); application_start_stop_proxy_fib_proto (app, FIB_PROTOCOL_IP6, transport_proto, is_start); } } void application_setup_proxy (application_t * app) { u16 transports = app->proxied_transports; transport_proto_t tp; ASSERT (application_is_proxy (app)); /* *INDENT-OFF* */ transport_proto_foreach (tp, ({ if (transports & (1 << tp)) application_start_stop_proxy (app, tp, 1); })); /* *INDENT-ON* */ } void application_remove_proxy (application_t * app) { u16 transports = app->proxied_transports; transport_proto_t tp; ASSERT (application_is_proxy (app)); /* *INDENT-OFF* */ transport_proto_foreach (tp, ({ if (transports & (1 << tp)) application_start_stop_proxy (app, tp, 0); })); /* *INDENT-ON* */ } segment_manager_properties_t * application_segment_manager_properties (application_t * app) { return &app->sm_properties; } segment_manager_properties_t * application_get_segment_manager_properties (u32 app_index) { application_t *app = application_get (app_index); return &app->sm_properties; } clib_error_t * vnet_app_add_tls_cert (vnet_app_add_tls_cert_args_t * a) { application_t *app; app = application_get (a->app_index); if (!app) return clib_error_return_code (0, VNET_API_ERROR_APPLICATION_NOT_ATTACHED, 0, "app %u doesn't exist", a->app_index); app->tls_cert = vec_dup (a->cert); return 0; } clib_error_t * vnet_app_add_tls_key (vnet_app_add_tls_key_args_t * a) { application_t *app; app = application_get (a->app_index); if (!app) return clib_error_return_code (0, VNET_API_ERROR_APPLICATION_NOT_ATTACHED, 0, "app %u doesn't exist", a->app_index); app->tls_key = vec_dup (a->key); return 0; } static void application_format_listeners (application_t * app, int verbose) { vlib_main_t *vm = vlib_get_main (); app_worker_map_t *wrk_map; app_worker_t *app_wrk; u32 sm_index; u64 handle; if (!app) { vlib_cli_output (vm, "%U", format_app_worker_listener, 0 /* header */ , 0, 0, verbose); return; } /* *INDENT-OFF* */ pool_foreach (wrk_map, app->worker_maps, ({ app_wrk = app_worker_get (wrk_map->wrk_index); if (hash_elts (app_wrk->listeners_table) == 0) continue; hash_foreach (handle, sm_index, app_wrk->listeners_table, ({ vlib_cli_output (vm, "%U", format_app_worker_listener, app_wrk, handle, sm_index, verbose); })); })); /* *INDENT-ON* */ } static void application_format_connects (application_t * app, int verbose) { app_worker_map_t *wrk_map; app_worker_t *app_wrk; if (!app) { app_worker_format_connects (0, verbose); return; } /* *INDENT-OFF* */ pool_foreach (wrk_map, app->worker_maps, ({ app_wrk = app_worker_get (wrk_map->wrk_index); app_worker_format_connects (app_wrk, verbose); })); /* *INDENT-ON* */ } u8 * format_application (u8 * s, va_list * args) { application_t *app = va_arg (*args, application_t *); CLIB_UNUSED (int verbose) = va_arg (*args, int); segment_manager_properties_t *props; const u8 *app_ns_name, *app_name; app_worker_map_t *wrk_map; app_worker_t *app_wrk; if (app == 0) { if (!verbose) s = format (s, "%-10s%-20s%-40s", "Index", "Name", "Namespace"); return s; } app_name = app_get_name (app); app_ns_name = app_namespace_id_from_index (app->ns_index); props = application_segment_manager_properties (app); if (!verbose) { s = format (s, "%-10u%-20s%-40s", app->app_index, app_name, app_ns_name); return s; } s = format (s, "app-name %s app-index %u ns-index %u seg-size %U\n", app_name, app->app_index, app->ns_index, format_memory_size, props->add_segment_size); s = format (s, "rx-fifo-size %U tx-fifo-size %U workers:\n", format_memory_size, props->rx_fifo_size, format_memory_size, props->tx_fifo_size); /* *INDENT-OFF* */ pool_foreach (wrk_map, app->worker_maps, ({ app_wrk = app_worker_get (wrk_map->wrk_index); s = format (s, "%U", format_app_worker, app_wrk); })); /* *INDENT-ON* */ return s; } void application_format_all_listeners (vlib_main_t * vm, int verbose) { application_t *app; if (!pool_elts (app_main.app_pool)) { vlib_cli_output (vm, "No active server bindings"); return; } application_format_listeners (0, verbose); /* *INDENT-OFF* */ pool_foreach (app, app_main.app_pool, ({ application_format_listeners (app, verbose); })); /* *INDENT-ON* */ } void application_format_all_clients (vlib_main_t * vm, int verbose) { application_t *app; if (!pool_elts (app_main.app_pool)) { vlib_cli_output (vm, "No active apps"); return; } application_format_connects (0, verbose); /* *INDENT-OFF* */ pool_foreach (app, app_main.app_pool, ({ application_format_connects (app, verbose); })); /* *INDENT-ON* */ } static clib_error_t * show_app_command_fn (vlib_main_t * vm, unformat_input_t * input, vlib_cli_command_t * cmd) { int do_server = 0, do_client = 0; application_t *app; u32 app_index = ~0; int verbose = 0; session_cli_return_if_not_enabled (); while (unformat_check_input (input) != UNFORMAT_END_OF_INPUT) { if (unformat (input, "server")) do_server = 1; else if (unformat (input, "client")) do_client = 1; else if (unformat (input, "%u", &app_index)) ; else if (unformat (input, "verbose")) verbose = 1; else return clib_error_return (0, "unknown input `%U'", format_unformat_error, input); } if (do_server) { application_format_all_listeners (vm, verbose); return 0; } if (do_client) { application_format_all_clients (vm, verbose); return 0; } if (app_index != ~0) { app = application_get_if_valid (app_index); if (!app) return clib_error_return (0, "No app with index %u", app_index); vlib_cli_output (vm, "%U", format_application, app, /* verbose */ 1); return 0; } /* Print app related info */ if (!do_server && !do_client) { vlib_cli_output (vm, "%U", format_application, 0, 0); /* *INDENT-OFF* */ pool_foreach (app, app_main.app_pool, ({ vlib_cli_output (vm, "%U", format_application, app, 0); })); /* *INDENT-ON* */ } return 0; } /* *INDENT-OFF* */ VLIB_CLI_COMMAND (show_app_command, static) = { .path = "show app", .short_help = "show app [server|client] [verbose]", .function = show_app_command_fn, }; /* *INDENT-ON* */ /* * fd.io coding-style-patch-verification: ON * * Local Variables: * eval: (c-set-style "gnu") * End: */