blob: 105e54be38ed722852604006d52c9406f11f8956 [file] [log] [blame]
Neels Hofmeyr538d2c52019-01-28 03:51:35 +01001/* FSM to manage multiple connections of an MGW endpoint
2 *
3 * (C) 2018-2019 by sysmocom - s.f.m.c. GmbH <info@sysmocom.de>
4 * All Rights Reserved
5 *
6 * Author: Neels Hofmeyr <neels@hofmeyr.de>
7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU Affero General Public License as published by
10 * the Free Software Foundation; either version 3 of the License, or
11 * (at your option) any later version.
12 *
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU Affero General Public License for more details.
17 *
18 * You should have received a copy of the GNU Affero General Public License
19 * along with this program. If not, see <http://www.gnu.org/licenses/>.
20 *
21 */
22
23#include <sys/socket.h>
24#include <netinet/in.h>
25#include <arpa/inet.h>
26
27#include <osmocom/core/fsm.h>
28#include <osmocom/core/byteswap.h>
29#include <osmocom/core/tdef.h>
Pau Espin Pedrol729bf3e2020-08-28 19:28:07 +020030#include <osmocom/core/sockaddr_str.h>
Neels Hofmeyr538d2c52019-01-28 03:51:35 +010031
32#include <osmocom/mgcp_client/mgcp_client_endpoint_fsm.h>
33
34#define LOG_CI(ci, level, fmt, args...) do { \
35 if (!ci || !ci->ep) \
Pau Espin Pedrol6a5e5ac2021-07-08 18:13:46 +020036 LOGP(DLMGCP, level, "(unknown MGW endpoint) " fmt, ## args); \
Neels Hofmeyr538d2c52019-01-28 03:51:35 +010037 else \
38 LOG_MGCPC_EP(ci->ep, level, "CI[%d] %s%s%s: " fmt, \
39 (int)(ci - ci->ep->ci), \
40 ci->label ? : "-", \
41 ci->mgcp_ci_str[0] ? " CI=" : "", \
42 ci->mgcp_ci_str[0] ? ci->mgcp_ci_str : "", \
43 ## args); \
44 } while(0)
45
46#define LOG_CI_VERB(ci, level, fmt, args...) do { \
47 if (ci->verb_info.addr[0]) \
48 LOG_CI(ci, level, "%s %s:%u: " fmt, \
49 osmo_mgcp_verb_name(ci->verb), ci->verb_info.addr, ci->verb_info.port, \
50 ## args); \
51 else \
52 LOG_CI(ci, level, "%s: " fmt, \
53 osmo_mgcp_verb_name(ci->verb), \
54 ## args); \
55 } while(0)
56
57enum osmo_mgcpc_ep_fsm_state {
58 OSMO_MGCPC_EP_ST_UNUSED = 0,
59 OSMO_MGCPC_EP_ST_WAIT_MGW_RESPONSE,
60 OSMO_MGCPC_EP_ST_IN_USE,
61};
62
63enum osmo_mgcpc_ep_fsm_event {
64 _OSMO_MGCPC_EP_EV_LAST = 0,
65 /* and MGW response events are allocated dynamically */
66};
67
68#define FIRST_CI_EVENT (_OSMO_MGCPC_EP_EV_LAST + (_OSMO_MGCPC_EP_EV_LAST & 1)) /* rounded up to even nr */
69#define USABLE_CI ((32 - FIRST_CI_EVENT)/2)
70#define EV_TO_CI_IDX(event) ((event - FIRST_CI_EVENT) / 2)
71
72#define CI_EV_SUCCESS(ci) (FIRST_CI_EVENT + (((ci) - ci->ep->ci) * 2))
73#define CI_EV_FAILURE(ci) (CI_EV_SUCCESS(ci) + 1)
74
75static struct osmo_fsm osmo_mgcpc_ep_fsm;
76
Neels Hofmeyr3ff71282019-10-29 17:41:20 +010077struct fsm_notify {
Neels Hofmeyrf2bf8dc2019-10-29 17:39:56 +010078 struct llist_head entry;
Neels Hofmeyr3ff71282019-10-29 17:41:20 +010079 struct osmo_fsm_inst *fi;
80 uint32_t success;
81 uint32_t failure;
82 void *data;
83};
84
Neels Hofmeyr538d2c52019-01-28 03:51:35 +010085/*! One connection on an endpoint, corresponding to a connection identifier (CI) as returned by the MGW.
86 * An endpoint has a fixed number of slots of these, which may or may not be in use.
87 */
88struct osmo_mgcpc_ep_ci {
89 struct osmo_mgcpc_ep *ep;
90
91 bool occupied;
92 char label[64];
93 struct osmo_fsm_inst *mgcp_client_fi;
94
95 bool pending;
96 bool sent;
97 enum mgcp_verb verb;
98 struct mgcp_conn_peer verb_info;
Neels Hofmeyr3ff71282019-10-29 17:41:20 +010099 struct fsm_notify notify;
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100100
101 bool got_port_info;
102 struct mgcp_conn_peer rtp_info;
103 char mgcp_ci_str[MGCP_CONN_ID_LENGTH];
104};
105
106/*! An MGW endpoint with N connections, like "rtpbridge/23@mgw". */
107struct osmo_mgcpc_ep {
108 /*! MGCP client connection to the MGW. */
109 struct mgcp_client *mgcp_client;
110 struct osmo_fsm_inst *fi;
111
112 /*! Endpoint string; at first this might be a wildcard, and upon the first CRCX OK response, this will reflect
113 * the endpoint name returned by the MGW. */
114 char endpoint[MGCP_ENDPOINT_MAXLEN];
115
116 /*! Timeout definitions used for this endpoint, see osmo_mgcpc_ep_fsm_timeouts. */
117 const struct osmo_tdef *T_defs;
118
Neels Hofmeyrc5479fe2019-04-05 01:36:06 +0200119 /*! True as soon as the first CRCX OK is received. The endpoint name may be determined by the first CRCX
120 * response, so to dispatch any other messages, the FSM instance *must* wait for the first CRCX OK to arrive
121 * first. Once the endpoint name is pinpointed, any amount of operations may be dispatched concurrently. */
122 bool first_crcx_complete;
123
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100124 /*! Endpoint connection slots. Note that each connection has its own set of FSM event numbers to signal success
125 * and failure, depending on its index within this array. See CI_EV_SUCCESS and CI_EV_FAILURE. */
126 struct osmo_mgcpc_ep_ci ci[USABLE_CI];
Neels Hofmeyrf2bf8dc2019-10-29 17:39:56 +0100127
128 /*! Internal use: if a function keeps an fsm_notify for later dispatch while already clearing or re-using the
129 * ci[], the fsm_notify should be kept here to also get canceled by osmo_mgcpc_ep_cancel_notify(). */
130 struct llist_head background_notify;
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100131};
132
133const struct value_string osmo_mgcp_verb_names[] = {
134 { MGCP_VERB_CRCX, "CRCX" },
135 { MGCP_VERB_MDCX, "MDCX" },
136 { MGCP_VERB_DLCX, "DLCX" },
137 { MGCP_VERB_AUEP, "AUEP" },
138 { MGCP_VERB_RSIP, "RSIP" },
139 {}
140};
141
Neels Hofmeyrc5479fe2019-04-05 01:36:06 +0200142static void osmo_mgcpc_ep_count(struct osmo_mgcpc_ep *ep, int *occupied, int *pending_not_sent,
143 int *waiting_for_response);
144
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100145static struct osmo_mgcpc_ep_ci *osmo_mgcpc_ep_check_ci(struct osmo_mgcpc_ep_ci *ci)
146{
147 if (!ci)
148 return NULL;
149 if (!ci->ep)
150 return NULL;
151 if (ci < ci->ep->ci || ci >= &ci->ep->ci[USABLE_CI])
152 return NULL;
153 return ci;
154}
155
156static struct osmo_mgcpc_ep_ci *osmo_mgcpc_ep_ci_for_event(struct osmo_mgcpc_ep *ep, uint32_t event)
157{
158 int idx;
159 if (event < FIRST_CI_EVENT)
160 return NULL;
161 idx = EV_TO_CI_IDX(event);
162 if (idx >= sizeof(ep->ci))
163 return NULL;
164 return osmo_mgcpc_ep_check_ci(&ep->ci[idx]);
165}
166
167const char *osmo_mgcpc_ep_name(const struct osmo_mgcpc_ep *ep)
168{
169 if (!ep)
170 return "NULL";
171 if (ep->endpoint[0])
172 return ep->endpoint;
173 return osmo_fsm_inst_name(ep->fi);
174}
175
Pau Espin Pedrol6225b5c2023-09-22 20:00:18 +0200176/*! Get "local endpoint name" part of the endpoint name: (local-endpoint-name@domain-name)
177 *
178 * \param ep The MGCP Endpoint
179 * \returns the local endpoint name if found, NULL on error.
180 */
181const char *osmo_mgcpc_ep_local_name(const struct osmo_mgcpc_ep *ep)
182{
183 static char buf[1024];
184 const char *sep;
185
186 OSMO_ASSERT(ep);
187 sep = strchr(ep->endpoint, '@');
188 if (!sep) {
189 OSMO_STRLCPY_ARRAY(buf, ep->endpoint);
190 return buf;
191 }
192 if (sep - ep->endpoint >= sizeof(buf))
193 return NULL;
194
195 memcpy(buf, ep->endpoint, sep - ep->endpoint);
196 buf[sep - ep->endpoint] = '\0';
197 return buf;
198}
199
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100200const char *mgcp_conn_peer_name(const struct mgcp_conn_peer *info)
201{
202 /* I'd be fine with a smaller buffer and accept truncation, but gcc possibly refuses to build if
203 * this buffer is too small. */
204 static char buf[1024];
205
206 if (!info)
207 return "NULL";
208
209 if (info->endpoint[0]
210 && info->addr[0])
211 snprintf(buf, sizeof(buf), "%s:%s:%u",
212 info->endpoint, info->addr, info->port);
213 else if (info->endpoint[0])
214 snprintf(buf, sizeof(buf), "%s", info->endpoint);
215 else if (info->addr[0])
216 snprintf(buf, sizeof(buf), "%s:%u", info->addr, info->port);
217 else
218 return "empty";
219 return buf;
220}
221
222const char *osmo_mgcpc_ep_ci_name(const struct osmo_mgcpc_ep_ci *ci)
223{
224 const struct mgcp_conn_peer *rtp_info;
225
226 if (!ci)
227 return "NULL";
228
229 rtp_info = osmo_mgcpc_ep_ci_get_rtp_info(ci);
230
231 if (rtp_info)
232 return mgcp_conn_peer_name(rtp_info);
233 return osmo_mgcpc_ep_name(ci->ep);
234}
235
236const char *osmo_mgcpc_ep_ci_id(const struct osmo_mgcpc_ep_ci *ci)
237{
238 if (!ci || !ci->mgcp_ci_str[0])
239 return NULL;
240 return ci->mgcp_ci_str;
241}
242
Philipp Maier3f4a4cb2021-07-26 13:20:05 +0200243struct mgcp_client *osmo_mgcpc_ep_client(const struct osmo_mgcpc_ep *ep)
244{
245 if (!ep)
246 return NULL;
247 return ep->mgcp_client;
248}
249
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100250static struct value_string osmo_mgcpc_ep_fsm_event_names[33] = {};
251
252static char osmo_mgcpc_ep_fsm_event_name_bufs[32][32] = {};
253
Harald Welte9befdeb2022-11-03 11:41:05 +0100254static void fill_event_names(void)
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100255{
256 int i;
257 for (i = 0; i < (ARRAY_SIZE(osmo_mgcpc_ep_fsm_event_names) - 1); i++) {
258 if (i < _OSMO_MGCPC_EP_EV_LAST)
259 continue;
260 if (i < FIRST_CI_EVENT || EV_TO_CI_IDX(i) > USABLE_CI) {
261 osmo_mgcpc_ep_fsm_event_names[i] = (struct value_string){i, "Unused"};
262 continue;
263 }
264 snprintf(osmo_mgcpc_ep_fsm_event_name_bufs[i], sizeof(osmo_mgcpc_ep_fsm_event_name_bufs[i]),
265 "MGW Response for CI #%d", EV_TO_CI_IDX(i));
266 osmo_mgcpc_ep_fsm_event_names[i] = (struct value_string){i, osmo_mgcpc_ep_fsm_event_name_bufs[i]};
267 }
268}
269
Harald Welte9befdeb2022-11-03 11:41:05 +0100270static __attribute__((constructor)) void osmo_mgcpc_ep_fsm_init(void)
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100271{
272 OSMO_ASSERT(osmo_fsm_register(&osmo_mgcpc_ep_fsm) == 0);
273 fill_event_names();
274}
275
276struct osmo_mgcpc_ep *osmo_mgcpc_ep_fi_mgwep(struct osmo_fsm_inst *fi)
277{
278 OSMO_ASSERT(fi);
279 OSMO_ASSERT(fi->fsm == &osmo_mgcpc_ep_fsm);
280 OSMO_ASSERT(fi->priv);
281 return fi->priv;
282}
283
284/*! Allocate an osmo_mgcpc_ep FSM.
285 * MGCP messages to set up the endpoint will be sent on the given mgcp_client, as soon as the first
286 * osmo_mgcpc_ep_ci_request() is invoked.
287 *
Neels Hofmeyrca2aec02019-10-04 22:47:31 +0200288 * IMPORTANT: To avoid use-after-free problems, using this FSM requires use of deferred FSM deallocation using
289 * osmo_fsm_set_dealloc_ctx(), e.g. using osmo_select_main_ctx(OTC_SELECT) with osmo_select_main_ctx() as main loop.
290 *
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100291 * A typical sequence of events would be:
292 *
293 * ep = osmo_mgcpc_ep_alloc(..., mgcp_client_rtpbridge_wildcard(client));
294 * ci_to_ran = osmo_mgcpc_ep_ci_add(ep);
295 * osmo_mgcpc_ep_ci_request(ci_to_ran, MGCP_VERB_CRCX, verb_info,
296 * my_call_fsm, MY_EVENT_MGCP_OK, MY_EVENT_MGCP_FAIL);
297 * ci_to_cn = osmo_mgcpc_ep_ci_add(ep);
298 * osmo_mgcpc_ep_ci_request(ci_to_cn, MGCP_VERB_CRCX, verb_info,
299 * my_call_fsm, MY_EVENT_MGCP_OK, MY_EVENT_MGCP_FAIL);
300 * ...
301 * osmo_mgcpc_ep_ci_request(ci_to_ran, MGCP_VERB_MDCX, ...);
302 * ...
303 * osmo_mgcpc_ep_clear(ep);
304 * ep = NULL;
305 *
306 * \param parent Parent FSM.
307 * \param parent_term_event Event to dispatch to the parent on termination of this FSM instance.
308 * \param mgcp_client Connection to the MGW.
309 * \param T_defs Timeout definitions to be used for FSM states, see osmo_mgcpc_ep_fsm_timeouts.
310 * \param fsm_id FSM instance ID.
311 * \param endpoint_str_fmt The endpoint string format to send to the MGW upon the first CRCX.
312 * See mgcp_client_rtpbridge_wildcard() for "rtpbridge" endpoints.
313 */
314struct osmo_mgcpc_ep *osmo_mgcpc_ep_alloc(struct osmo_fsm_inst *parent, uint32_t parent_term_event,
315 struct mgcp_client *mgcp_client,
316 const struct osmo_tdef *T_defs,
317 const char *fsm_id,
318 const char *endpoint_str_fmt, ...)
319{
320 va_list ap;
321 struct osmo_fsm_inst *fi;
322 struct osmo_mgcpc_ep *ep;
323 int rc;
324
325 if (!mgcp_client)
326 return NULL;
327
328 fi = osmo_fsm_inst_alloc_child(&osmo_mgcpc_ep_fsm, parent, parent_term_event);
329 OSMO_ASSERT(fi);
330
331 osmo_fsm_inst_update_id(fi, fsm_id);
332
333 ep = talloc_zero(fi, struct osmo_mgcpc_ep);
334 OSMO_ASSERT(ep);
335
336 *ep = (struct osmo_mgcpc_ep){
337 .mgcp_client = mgcp_client,
338 .fi = fi,
339 .T_defs = T_defs,
340 };
Neels Hofmeyrf2bf8dc2019-10-29 17:39:56 +0100341 INIT_LLIST_HEAD(&ep->background_notify);
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100342 fi->priv = ep;
343
344 va_start(ap, endpoint_str_fmt);
345 rc = vsnprintf(ep->endpoint, sizeof(ep->endpoint), endpoint_str_fmt ? : "", ap);
346 va_end(ap);
347
348 if (rc <= 0 || rc >= sizeof(ep->endpoint)) {
349 LOG_MGCPC_EP(ep, LOGL_ERROR, "Endpoint name too long or too short: %s\n",
350 ep->endpoint);
351 osmo_fsm_inst_term(ep->fi, OSMO_FSM_TERM_ERROR, 0);
352 return NULL;
353 }
354
355 return ep;
356}
357
358/*! Add a connection to an endpoint.
359 * Allocate a connection identifier slot in the osmo_mgcpc_ep instance, do not yet dispatch a CRCX.
360 * The CRCX is dispatched only upon the first osmo_mgcpc_ep_ci_request().
361 * \param ep Parent endpoint instance.
362 * \param label_fmt Label for logging.
363 */
364struct osmo_mgcpc_ep_ci *osmo_mgcpc_ep_ci_add(struct osmo_mgcpc_ep *ep,
365 const char *label_fmt, ...)
366{
367 va_list ap;
368 int i;
369 struct osmo_mgcpc_ep_ci *ci;
370
371 for (i = 0; i < USABLE_CI; i++) {
372 ci = &ep->ci[i];
373
374 if (ci->occupied || ci->mgcp_client_fi)
375 continue;
376
377 *ci = (struct osmo_mgcpc_ep_ci){
378 .ep = ep,
379 .occupied = true,
380 };
381 if (label_fmt) {
382 va_start(ap, label_fmt);
383 vsnprintf(ci->label, sizeof(ci->label), label_fmt, ap);
384 va_end(ap);
385 }
386 return ci;
387 }
388
389 LOG_MGCPC_EP(ep, LOGL_ERROR,
390 "Cannot allocate another endpoint, all "
391 OSMO_STRINGIFY_VAL(USABLE_CI) " are in use\n");
392
393 return NULL;
394}
395
396static bool osmo_mgcpc_ep_fsm_check_state_chg_after_response(struct osmo_fsm_inst *fi);
397
398static void on_failure(struct osmo_mgcpc_ep_ci *ci)
399{
Neels Hofmeyrcc0b97e2019-10-01 19:44:10 +0200400 struct osmo_mgcpc_ep *ep = ci->ep;
Neels Hofmeyr3ff71282019-10-29 17:41:20 +0100401 struct fsm_notify notify;
Neels Hofmeyrcc0b97e2019-10-01 19:44:10 +0200402 int i;
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100403
404 if (!ci->occupied)
405 return;
406
Neels Hofmeyr3ff71282019-10-29 17:41:20 +0100407 /* When dispatching an event for this CI, the user may decide to trigger the next request for this conn right
408 * away. So we must be ready with a cleared *ci. Store the notify separately and clear before dispatching. */
409 notify = ci->notify;
Neels Hofmeyrf2bf8dc2019-10-29 17:39:56 +0100410 /* Register the planned notification in ep->background_notify so we also catch any osmo_mgcpc_ep_cancel_notify()
411 * that might be triggered between clearing the ci and actually dispatching the event. */
412 llist_add(&notify.entry, &ep->background_notify);
Neels Hofmeyr3ff71282019-10-29 17:41:20 +0100413
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100414 *ci = (struct osmo_mgcpc_ep_ci){
415 .ep = ci->ep,
416 };
417
Neels Hofmeyrcc0b97e2019-10-01 19:44:10 +0200418 /* An MGCP failure typically means the endpoint becomes unusable, cancel all pending request (except DLCX).
419 * Particularly, if two CRCX were scheduled and the first fails, we must no longer dispatch the second CRCX. */
420 for (i = 0; i < ARRAY_SIZE(ep->ci); i++) {
421 struct osmo_mgcpc_ep_ci *other_ci = &ep->ci[i];
422 if (other_ci == ci)
423 continue;
424 if (!other_ci->occupied)
425 continue;
426 if (!other_ci->pending)
427 continue;
428 if (other_ci->sent)
429 continue;
430 if (other_ci->verb == MGCP_VERB_DLCX)
431 continue;
432 /* Just clear the pending request, don't fire more events than below. */
433 other_ci->pending = false;
434 }
435
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100436 /* If this check has terminated the FSM instance, don't fire any more events to prevent use-after-free problems.
437 * The endpoint FSM does dispatch a term event to its parent, and everything should be cleaned like that. */
Neels Hofmeyrf2bf8dc2019-10-29 17:39:56 +0100438 if (!osmo_mgcpc_ep_fsm_check_state_chg_after_response(ep->fi)) {
439 /* The ep has deallocated, no need to llist_del(&notify.entry) here. */
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100440 return;
Neels Hofmeyrf2bf8dc2019-10-29 17:39:56 +0100441 }
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100442
Neels Hofmeyr3ff71282019-10-29 17:41:20 +0100443 if (notify.fi)
444 osmo_fsm_inst_dispatch(notify.fi, notify.failure, notify.data);
Neels Hofmeyrf2bf8dc2019-10-29 17:39:56 +0100445
446 llist_del(&notify.entry);
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100447}
448
Neels Hofmeyrc5479fe2019-04-05 01:36:06 +0200449static int update_endpoint_name(struct osmo_mgcpc_ep_ci *ci, const char *new_endpoint_name)
450{
451 struct osmo_mgcpc_ep *ep = ci->ep;
452 int rc;
453 int i;
454
455 if (!strcmp(ep->endpoint, new_endpoint_name)) {
456 /* Same endpoint name, nothing to do. */
457 return 0;
458 }
459
460 /* The endpoint name should only change on the very first CRCX response. */
461 if (ep->first_crcx_complete) {
462 LOG_CI(ci, LOGL_ERROR, "Reponse returned mismatching endpoint name."
463 " This is endpoint %s, instead received %s\n",
464 ep->endpoint, new_endpoint_name);
465 on_failure(ci);
466 return -EINVAL;
467 }
468
469 /* This is the first CRCX response, update endpoint name. */
470 rc = OSMO_STRLCPY_ARRAY(ep->endpoint, new_endpoint_name);
471 if (rc <= 0 || rc >= sizeof(ep->endpoint)) {
472 LOG_CI(ci, LOGL_ERROR, "Unable to copy endpoint name %s\n", osmo_quote_str(new_endpoint_name, -1));
473 osmo_mgcpc_ep_ci_dlcx(ci);
474 on_failure(ci);
475 return -ENOSPC;
476 }
477
478 /* Make sure already pending requests use this updated endpoint name. */
479 for (i = 0; i < ARRAY_SIZE(ep->ci); i++) {
480 struct osmo_mgcpc_ep_ci *other_ci = &ep->ci[i];
481 if (!other_ci->occupied)
482 continue;
483 if (!other_ci->pending)
484 continue;
485 if (other_ci->sent)
486 continue;
487 OSMO_STRLCPY_ARRAY(other_ci->verb_info.endpoint, ep->endpoint);
488 }
489 return 0;
490}
491
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100492static void on_success(struct osmo_mgcpc_ep_ci *ci, void *data)
493{
494 struct mgcp_conn_peer *rtp_info;
495
496 if (!ci->occupied)
497 return;
498
499 ci->pending = false;
500
Pau Espin Pedrol2741d6b2020-09-02 19:31:17 +0200501 rtp_info = data;
502
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100503 switch (ci->verb) {
504 case MGCP_VERB_CRCX:
505 /* If we sent a wildcarded endpoint name on CRCX, we need to store the resulting endpoint
506 * name here. Also, we receive the MGW's RTP port information. */
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100507 osmo_strlcpy(ci->mgcp_ci_str, mgcp_conn_get_ci(ci->mgcp_client_fi),
508 sizeof(ci->mgcp_ci_str));
509 if (rtp_info->endpoint[0]) {
Neels Hofmeyrc5479fe2019-04-05 01:36:06 +0200510 /* On errors, this instance might already be deallocated. Make sure to not access anything after
511 * error. */
512 if (update_endpoint_name(ci, rtp_info->endpoint))
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100513 return;
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100514 }
Neels Hofmeyrc5479fe2019-04-05 01:36:06 +0200515 ci->ep->first_crcx_complete = true;
Pau Espin Pedrol2741d6b2020-09-02 19:31:17 +0200516 OSMO_ASSERT(rtp_info);
517 /* fall through */
518 case MGCP_VERB_MDCX:
519 /* Always update the received RTP ip/port information, since MGW
520 * may provide new one after remote end params changed */
521 if (rtp_info) {
522 ci->got_port_info = true;
523 ci->rtp_info = *rtp_info;
524 }
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100525 break;
526
527 default:
528 break;
529 }
530
531 LOG_CI(ci, LOGL_DEBUG, "received successful response to %s: RTP=%s%s\n",
532 osmo_mgcp_verb_name(ci->verb),
533 mgcp_conn_peer_name(ci->got_port_info? &ci->rtp_info : NULL),
Neels Hofmeyr3ff71282019-10-29 17:41:20 +0100534 ci->notify.fi ? "" : " (not sending a notification)");
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100535
Neels Hofmeyr3ff71282019-10-29 17:41:20 +0100536 if (ci->notify.fi)
537 osmo_fsm_inst_dispatch(ci->notify.fi, ci->notify.success, ci->notify.data);
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100538
539 osmo_mgcpc_ep_fsm_check_state_chg_after_response(ci->ep->fi);
540}
541
Neels Hofmeyr59e7cf42021-05-01 02:31:01 +0000542/*! Return the MGW's local RTP port information for this connection, i.e. the local port that MGW is receiving on, as
543 * returned by the last CRCX-OK / MDCX-OK message. */
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100544const struct mgcp_conn_peer *osmo_mgcpc_ep_ci_get_rtp_info(const struct osmo_mgcpc_ep_ci *ci)
545{
546 ci = osmo_mgcpc_ep_check_ci((struct osmo_mgcpc_ep_ci*)ci);
547 if (!ci)
548 return NULL;
549 if (!ci->got_port_info)
550 return NULL;
551 return &ci->rtp_info;
552}
553
Neels Hofmeyr59e7cf42021-05-01 02:31:01 +0000554/*! Return the MGW's remote RTP port information for this connection, i.e. the remote RTP port that the MGW is sending
555 * to, as sent to the MGW by the last CRCX / MDCX message. */
556const struct mgcp_conn_peer *osmo_mgcpc_ep_ci_get_remote_rtp_info(const struct osmo_mgcpc_ep_ci *ci)
557{
558 ci = osmo_mgcpc_ep_check_ci((struct osmo_mgcpc_ep_ci*)ci);
559 if (!ci)
560 return NULL;
561 return &ci->verb_info;
562}
563
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100564/*! Return the MGW's RTP port information for this connection, as returned by the last CRCX/MDCX OK message. */
565bool osmo_mgcpc_ep_ci_get_crcx_info_to_sockaddr(const struct osmo_mgcpc_ep_ci *ci, struct sockaddr_storage *dest)
566{
567 const struct mgcp_conn_peer *rtp_info;
Pau Espin Pedrol729bf3e2020-08-28 19:28:07 +0200568 int family;
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100569 struct sockaddr_in *sin;
Pau Espin Pedrol729bf3e2020-08-28 19:28:07 +0200570 struct sockaddr_in6 *sin6;
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100571
572 rtp_info = osmo_mgcpc_ep_ci_get_rtp_info(ci);
573 if (!rtp_info)
574 return false;
575
Pau Espin Pedrol729bf3e2020-08-28 19:28:07 +0200576 family = osmo_ip_str_type(rtp_info->addr);
577 switch (family) {
578 case AF_INET:
579 sin = (struct sockaddr_in *)dest;
580 sin->sin_family = AF_INET;
581 sin->sin_port = osmo_ntohs(rtp_info->port);
582 if (inet_pton(AF_INET, rtp_info->addr, &sin->sin_addr) != 1)
583 return false;
584 break;
585 case AF_INET6:
586 sin6 = (struct sockaddr_in6 *)dest;
587 sin6->sin6_family = AF_INET6;
588 sin6->sin6_port = osmo_ntohs(rtp_info->port);
589 if (inet_pton(AF_INET6, rtp_info->addr, &sin6->sin6_addr) != 1)
590 return false;
591 break;
592 default:
593 return false;
594 }
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100595 return true;
596}
597
Pau Espin Pedrol30907dc2019-05-06 11:54:17 +0200598bool osmo_mgcpc_ep_ci_get_crcx_info_to_osmux_cid(const struct osmo_mgcpc_ep_ci *ci, uint8_t* cid)
599{
600 const struct mgcp_conn_peer *rtp_info;
601
602 rtp_info = osmo_mgcpc_ep_ci_get_rtp_info(ci);
603 if (!rtp_info)
604 return false;
605
606 if (!rtp_info->x_osmo_osmux_use)
607 return false;
608
609 *cid = rtp_info->x_osmo_osmux_cid;
610 return true;
611}
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100612
613static const struct osmo_tdef_state_timeout osmo_mgcpc_ep_fsm_timeouts[32] = {
Neels Hofmeyrfbf07f32020-09-15 23:59:23 +0200614 [OSMO_MGCPC_EP_ST_WAIT_MGW_RESPONSE] = { .T=-2427 },
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100615};
616
617/* Transition to a state, using the T timer defined in assignment_fsm_timeouts.
618 * The actual timeout value is in turn obtained from osmo_mgcpc_ep.T_defs.
619 * Assumes local variable fi exists. */
620#define osmo_mgcpc_ep_fsm_state_chg(state) \
621 osmo_tdef_fsm_inst_state_chg(fi, state, osmo_mgcpc_ep_fsm_timeouts, \
622 ((struct osmo_mgcpc_ep*)fi->priv)->T_defs, 5)
623
624/*! Dispatch an actual CRCX/MDCX/DLCX message for this connection.
Neels Hofmeyrf2bf8dc2019-10-29 17:39:56 +0100625 *
626 * If the 'notify' instance deallocates before it received a notification of event_success or event_failure,
627 * osmo_mgcpc_ep_ci_cancel_notify() or osmo_mgcpc_ep_cancel_notify() must be called. It is not harmful to cancel
628 * notification after an event has been received.
629 *
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100630 * \param ci Connection identifier as obtained from osmo_mgcpc_ep_ci_add().
631 * \param verb MGCP operation to dispatch.
632 * \param verb_info Parameters for the MGCP operation.
633 * \param notify Peer FSM instance to notify of completed/failed operation.
634 * \param event_success Which event to dispatch to 'notify' upon OK response.
635 * \param event_failure Which event to dispatch to 'notify' upon failure response.
636 * \param notify_data Data pointer to pass to the event dispatch for both success and failure.
637 */
638void osmo_mgcpc_ep_ci_request(struct osmo_mgcpc_ep_ci *ci,
639 enum mgcp_verb verb, const struct mgcp_conn_peer *verb_info,
640 struct osmo_fsm_inst *notify,
641 uint32_t event_success, uint32_t event_failure,
642 void *notify_data)
643{
644 struct osmo_mgcpc_ep *ep;
645 struct osmo_fsm_inst *fi;
646 struct osmo_mgcpc_ep_ci cleared_ci;
647 ci = osmo_mgcpc_ep_check_ci(ci);
648
649 if (!ci) {
Pau Espin Pedrol6a5e5ac2021-07-08 18:13:46 +0200650 LOGP(DLMGCP, LOGL_ERROR, "Invalid MGW endpoint request: no ci\n");
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100651 goto dispatch_error;
652 }
653 if (!verb_info && verb != MGCP_VERB_DLCX) {
654 LOG_CI(ci, LOGL_ERROR, "Invalid MGW endpoint request: missing verb details for %s\n",
655 osmo_mgcp_verb_name(verb));
656 goto dispatch_error;
657 }
658 if ((verb < 0) || (verb > MGCP_VERB_RSIP)) {
659 LOG_CI(ci, LOGL_ERROR, "Invalid MGW endpoint request: unknown verb: %s\n",
660 osmo_mgcp_verb_name(verb));
661 goto dispatch_error;
662 }
663
664 ep = ci->ep;
665 fi = ep->fi;
666
667 /* Clear volatile state by explicitly keeping those that should remain. Because we can't assign
668 * the char[] directly, dance through cleared_ci and copy back. */
669 cleared_ci = (struct osmo_mgcpc_ep_ci){
670 .ep = ep,
671 .mgcp_client_fi = ci->mgcp_client_fi,
672 .got_port_info = ci->got_port_info,
673 .rtp_info = ci->rtp_info,
674
675 .occupied = true,
676 /* .pending = true follows below */
677 .verb = verb,
Neels Hofmeyr3ff71282019-10-29 17:41:20 +0100678 .notify = {
679 .fi = notify,
680 .success = event_success,
681 .failure = event_failure,
682 .data = notify_data,
683 }
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100684 };
685 osmo_strlcpy(cleared_ci.label, ci->label, sizeof(cleared_ci.label));
686 osmo_strlcpy(cleared_ci.mgcp_ci_str, ci->mgcp_ci_str, sizeof(cleared_ci.mgcp_ci_str));
687 *ci = cleared_ci;
688
Neels Hofmeyr3ff71282019-10-29 17:41:20 +0100689 LOG_CI_VERB(ci, LOGL_DEBUG, "notify=%s\n", osmo_fsm_inst_name(ci->notify.fi));
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100690
691 if (verb_info)
692 ci->verb_info = *verb_info;
693
694 if (ep->endpoint[0]) {
695 if (ci->verb_info.endpoint[0] && strcmp(ci->verb_info.endpoint, ep->endpoint))
696 LOG_CI(ci, LOGL_ERROR,
697 "Warning: Requested %s on endpoint %s, but this CI is on endpoint %s."
698 " Using the proper endpoint instead.\n",
699 osmo_mgcp_verb_name(verb), ci->verb_info.endpoint, ep->endpoint);
700 osmo_strlcpy(ci->verb_info.endpoint, ep->endpoint, sizeof(ci->verb_info.endpoint));
701 }
702
703 switch (ci->verb) {
704 case MGCP_VERB_CRCX:
705 if (ci->mgcp_client_fi) {
706 LOG_CI(ci, LOGL_ERROR, "CRCX can be called only once per MGW endpoint CI\n");
707 on_failure(ci);
708 return;
709 }
710 break;
711
712 case MGCP_VERB_MDCX:
713 if (!ci->mgcp_client_fi) {
714 LOG_CI_VERB(ci, LOGL_ERROR, "The first verb on an unused MGW endpoint CI must be CRCX, not %s\n",
715 osmo_mgcp_verb_name(ci->verb));
716 on_failure(ci);
717 return;
718 }
719 break;
720
721 case MGCP_VERB_DLCX:
722 if (!ci->mgcp_client_fi) {
723 LOG_CI_VERB(ci, LOGL_DEBUG, "Ignoring DLCX on unused MGW endpoint CI\n");
724 return;
725 }
726 break;
727
728 default:
729 LOG_CI(ci, LOGL_ERROR, "This verb is not supported: %s\n", osmo_mgcp_verb_name(ci->verb));
730 on_failure(ci);
731 return;
732 }
733
734 ci->pending = true;
735
736 LOG_CI_VERB(ci, LOGL_DEBUG, "Scheduling\n");
737
738 if (ep->fi->state != OSMO_MGCPC_EP_ST_WAIT_MGW_RESPONSE)
739 osmo_mgcpc_ep_fsm_state_chg(OSMO_MGCPC_EP_ST_WAIT_MGW_RESPONSE);
740
741 return;
742dispatch_error:
743 if (notify)
744 osmo_fsm_inst_dispatch(notify, event_failure, notify_data);
745}
746
Neels Hofmeyrf2bf8dc2019-10-29 17:39:56 +0100747/*! No longer notify for any state changes for any conns of this endpoint.
748 * Useful if the notify instance passed to osmo_mgcpc_ep_ci_request() is about to deallocate.
749 * \param ep The endpoint FSM instance.
750 * \param notify Which target to cancel notification for, if NULL cancel all notifications. */
751void osmo_mgcpc_ep_cancel_notify(struct osmo_mgcpc_ep *ep, struct osmo_fsm_inst *notify)
752{
753 struct fsm_notify *n;
754 int i;
755 for (i = 0; i < ARRAY_SIZE(ep->ci); i++) {
756 struct osmo_mgcpc_ep_ci *ci = &ep->ci[i];
757 if (!notify || ci->notify.fi == notify)
758 ci->notify.fi = NULL;
759 }
760 llist_for_each_entry(n, &ep->background_notify, entry) {
761 if (!notify || n->fi == notify)
762 n->fi = NULL;
763 }
764
765}
766
Neels Hofmeyr923d60b2019-10-29 17:40:08 +0100767/* Return the osmo_mgcpc_ep that this conn belongs to. */
768struct osmo_mgcpc_ep *osmo_mgcpc_ep_ci_ep(struct osmo_mgcpc_ep_ci *conn)
769{
770 if (!conn)
771 return NULL;
772 return conn->ep;
773}
774
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100775static int send_verb(struct osmo_mgcpc_ep_ci *ci)
776{
777 int rc;
778 struct osmo_mgcpc_ep *ep = ci->ep;
Neels Hofmeyr055ded72019-10-29 17:46:30 +0100779 struct fsm_notify notify;
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100780
781 if (!ci->occupied || !ci->pending || ci->sent)
782 return 0;
783
784 switch (ci->verb) {
785
786 case MGCP_VERB_CRCX:
787 OSMO_ASSERT(!ci->mgcp_client_fi);
788 LOG_CI_VERB(ci, LOGL_DEBUG, "Sending\n");
789 ci->mgcp_client_fi = mgcp_conn_create(ep->mgcp_client, ep->fi,
790 CI_EV_FAILURE(ci), CI_EV_SUCCESS(ci),
791 &ci->verb_info);
792 ci->sent = true;
793 if (!ci->mgcp_client_fi){
794 LOG_CI_VERB(ci, LOGL_ERROR, "Cannot send\n");
795 on_failure(ci);
Neels Hofmeyrc5479fe2019-04-05 01:36:06 +0200796 return -EINVAL;
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100797 }
798 osmo_fsm_inst_update_id(ci->mgcp_client_fi, ci->label);
799 break;
800
801 case MGCP_VERB_MDCX:
802 OSMO_ASSERT(ci->mgcp_client_fi);
803 LOG_CI_VERB(ci, LOGL_DEBUG, "Sending\n");
804 rc = mgcp_conn_modify(ci->mgcp_client_fi, CI_EV_SUCCESS(ci), &ci->verb_info);
805 ci->sent = true;
806 if (rc) {
807 LOG_CI_VERB(ci, LOGL_ERROR, "Cannot send (rc=%d %s)\n", rc, strerror(-rc));
808 on_failure(ci);
Neels Hofmeyrc5479fe2019-04-05 01:36:06 +0200809 return -EINVAL;
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100810 }
811 break;
812
813 case MGCP_VERB_DLCX:
814 LOG_CI(ci, LOGL_DEBUG, "Sending MGCP: %s %s\n",
815 osmo_mgcp_verb_name(ci->verb), ci->mgcp_ci_str);
816 /* The way this is designed, we actually need to forget all about the ci right away. */
817 mgcp_conn_delete(ci->mgcp_client_fi);
Neels Hofmeyr055ded72019-10-29 17:46:30 +0100818 notify = ci->notify;
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100819 *ci = (struct osmo_mgcpc_ep_ci){
820 .ep = ep,
821 };
Neels Hofmeyr055ded72019-10-29 17:46:30 +0100822 /* When dispatching an event for this CI, the user may decide to trigger the next request for this conn
823 * right away. So we must be ready with a cleared *ci. */
824 if (notify.fi)
825 osmo_fsm_inst_dispatch(notify.fi, notify.success, notify.data);
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100826 break;
827
828 default:
829 OSMO_ASSERT(false);
830 }
831
832 return 1;
833}
834
835/*! DLCX all connections, terminate the endpoint FSM and free. */
836void osmo_mgcpc_ep_clear(struct osmo_mgcpc_ep *ep)
837{
838 if (!ep)
839 return;
Neels Hofmeyrf2bf8dc2019-10-29 17:39:56 +0100840 osmo_mgcpc_ep_cancel_notify(ep, NULL);
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100841 osmo_fsm_inst_term(ep->fi, OSMO_FSM_TERM_REGULAR, 0);
842}
843
844static void osmo_mgcpc_ep_count(struct osmo_mgcpc_ep *ep, int *occupied, int *pending_not_sent,
845 int *waiting_for_response)
846{
847 int i;
848
849 if (occupied)
850 *occupied = 0;
851
852 if (pending_not_sent)
853 *pending_not_sent = 0;
854
855 if (waiting_for_response)
856 *waiting_for_response = 0;
857
858 for (i = 0; i < ARRAY_SIZE(ep->ci); i++) {
859 struct osmo_mgcpc_ep_ci *ci = &ep->ci[i];
860 if (ci->occupied) {
861 if (occupied)
862 (*occupied)++;
863 } else
864 continue;
865
866 if (ci->pending)
867 LOG_CI_VERB(ci, LOGL_DEBUG, "%s\n",
868 ci->sent ? "waiting for response" : "waiting to be sent");
869 else
870 LOG_CI_VERB(ci, LOGL_DEBUG, "done (%s)\n", mgcp_conn_peer_name(osmo_mgcpc_ep_ci_get_rtp_info(ci)));
871
872 if (ci->pending && ci->sent)
873 if (waiting_for_response)
874 (*waiting_for_response)++;
875 if (ci->pending && !ci->sent)
876 if (pending_not_sent)
877 (*pending_not_sent)++;
878 }
879}
880
881static bool osmo_mgcpc_ep_fsm_check_state_chg_after_response(struct osmo_fsm_inst *fi)
882{
883 int waiting_for_response;
884 int occupied;
885 struct osmo_mgcpc_ep *ep = osmo_mgcpc_ep_fi_mgwep(fi);
886
887 osmo_mgcpc_ep_count(ep, &occupied, NULL, &waiting_for_response);
888 LOG_MGCPC_EP(ep, LOGL_DEBUG, "CI in use: %d, waiting for response: %d\n", occupied, waiting_for_response);
889
890 if (!occupied) {
891 /* All CI have been released. The endpoint no longer exists. Notify the parent FSM, by
892 * terminating. */
893 osmo_fsm_inst_term(fi, OSMO_FSM_TERM_REGULAR, 0);
894 return false;
895 }
896
897 if (!waiting_for_response) {
898 if (fi->state != OSMO_MGCPC_EP_ST_IN_USE)
899 osmo_mgcpc_ep_fsm_state_chg(OSMO_MGCPC_EP_ST_IN_USE);
900 }
901
902 return true;
903}
904
905static void osmo_mgcpc_ep_fsm_wait_mgw_response_onenter(struct osmo_fsm_inst *fi, uint32_t prev_state)
906{
Neels Hofmeyrc5479fe2019-04-05 01:36:06 +0200907 static int re_enter = 0;
908 int rc;
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100909 int count = 0;
910 int i;
911 struct osmo_mgcpc_ep *ep = osmo_mgcpc_ep_fi_mgwep(fi);
912
Neels Hofmeyrc5479fe2019-04-05 01:36:06 +0200913 re_enter++;
914 OSMO_ASSERT(re_enter < 10);
915
916 /* The first CRCX gives us the endpoint name in the CRCX response. So we must wait for the first CRCX endpoint
917 * response to come in before sending any other MGCP requests -- otherwise we might end up creating new
918 * endpoints instead of acting on the same. This FSM always sends out N requests and waits for all of them to
919 * complete before sending out new requests. Hence we're safe when the very first time at most one request is
920 * sent (which needs to be a CRCX). */
921
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100922 for (i = 0; i < ARRAY_SIZE(ep->ci); i++) {
Neels Hofmeyrc5479fe2019-04-05 01:36:06 +0200923 struct osmo_mgcpc_ep_ci *ci = &ep->ci[i];
924
925 /* Make sure that only CRCX get dispatched if no CRCX were sent yet. */
926 if (!ep->first_crcx_complete) {
927 if (ci->occupied && ci->verb != MGCP_VERB_CRCX)
928 continue;
929 }
930
931 rc = send_verb(&ep->ci[i]);
932 /* Need to be careful not to access the instance after failure. Event chains may already have
933 * deallocated this memory. */
934 if (rc < 0)
935 return;
936 if (!rc)
937 continue;
938 count++;
939 /* Make sure that we wait for the first CRCX response before dispatching more requests. */
940 if (!ep->first_crcx_complete)
941 break;
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100942 }
943
944 LOG_MGCPC_EP(ep, LOGL_DEBUG, "Sent messages: %d\n", count);
Neels Hofmeyrc5479fe2019-04-05 01:36:06 +0200945 if (ep->first_crcx_complete)
946 osmo_mgcpc_ep_fsm_check_state_chg_after_response(fi);
947 re_enter--;
Neels Hofmeyr538d2c52019-01-28 03:51:35 +0100948}
949
950static void osmo_mgcpc_ep_fsm_handle_ci_events(struct osmo_fsm_inst *fi, uint32_t event, void *data)
951{
952 struct osmo_mgcpc_ep_ci *ci;
953 struct osmo_mgcpc_ep *ep = osmo_mgcpc_ep_fi_mgwep(fi);
954 ci = osmo_mgcpc_ep_ci_for_event(ep, event);
955 if (ci) {
956 if (event == CI_EV_SUCCESS(ci))
957 on_success(ci, data);
958 else
959 on_failure(ci);
960 }
961}
962
963static void osmo_mgcpc_ep_fsm_in_use_onenter(struct osmo_fsm_inst *fi, uint32_t prev_state)
964{
965 int pending_not_sent;
966 struct osmo_mgcpc_ep *ep = osmo_mgcpc_ep_fi_mgwep(fi);
967
968 osmo_mgcpc_ep_count(ep, NULL, &pending_not_sent, NULL);
969 if (pending_not_sent)
970 osmo_mgcpc_ep_fsm_state_chg(OSMO_MGCPC_EP_ST_WAIT_MGW_RESPONSE);
971}
972
973#define S(x) (1 << (x))
974
975static const struct osmo_fsm_state osmo_mgcpc_ep_fsm_states[] = {
976 [OSMO_MGCPC_EP_ST_UNUSED] = {
977 .name = "UNUSED",
978 .in_event_mask = 0,
979 .out_state_mask = 0
980 | S(OSMO_MGCPC_EP_ST_WAIT_MGW_RESPONSE)
981 ,
982 },
983 [OSMO_MGCPC_EP_ST_WAIT_MGW_RESPONSE] = {
984 .name = "WAIT_MGW_RESPONSE",
985 .onenter = osmo_mgcpc_ep_fsm_wait_mgw_response_onenter,
986 .action = osmo_mgcpc_ep_fsm_handle_ci_events,
987 .in_event_mask = 0xffffffff,
988 .out_state_mask = 0
989 | S(OSMO_MGCPC_EP_ST_IN_USE)
990 ,
991 },
992 [OSMO_MGCPC_EP_ST_IN_USE] = {
993 .name = "IN_USE",
994 .onenter = osmo_mgcpc_ep_fsm_in_use_onenter,
995 .action = osmo_mgcpc_ep_fsm_handle_ci_events,
996 .in_event_mask = 0xffffffff, /* mgcp_client_fsm may send parent term anytime */
997 .out_state_mask = 0
998 | S(OSMO_MGCPC_EP_ST_WAIT_MGW_RESPONSE)
999 ,
1000 },
1001};
1002
1003static int osmo_mgcpc_ep_fsm_timer_cb(struct osmo_fsm_inst *fi)
1004{
1005 int i;
1006 struct osmo_mgcpc_ep *ep = osmo_mgcpc_ep_fi_mgwep(fi);
1007
1008 switch (fi->T) {
1009 default:
1010 for (i = 0; i < ARRAY_SIZE(ep->ci); i++) {
1011 struct osmo_mgcpc_ep_ci *ci = &ep->ci[i];
1012 if (!ci->occupied)
1013 continue;
1014 if (!(ci->pending && ci->sent))
1015 continue;
1016 on_failure(ci);
1017 }
1018 return 0;
1019 }
1020
1021 return 0;
1022}
1023
Harald Weltee0e5a772022-06-24 09:45:02 +02001024static void osmo_mgcpc_ep_fsm_pre_term(struct osmo_fsm_inst *fi, enum osmo_fsm_term_cause cause)
Neels Hofmeyr03fcc912021-07-15 02:09:42 +02001025{
1026 int i;
1027 struct osmo_mgcpc_ep *ep = osmo_mgcpc_ep_fi_mgwep(fi);
1028
1029 /* We want the mgcp_client_fsm to still stick around until it received the DLCX "OK" responses from the MGW. So
1030 * it should not dealloc along with this ep_fsm instance. Instead, signal DLCX for each conn on the endpoint,
1031 * and detach the mgcp_client_fsm from being a child-fsm.
1032 *
1033 * After mgcp_conn_delete(), an mgcp_client_fsm instance goes into ST_DLCX_RESP, which waits up to 4 seconds for
1034 * a DLCX OK. If none is received in that time, the instance terminates. So cleanup of the instance is
1035 * guaranteed. */
1036
1037 for (i = 0; i < ARRAY_SIZE(ep->ci); i++) {
1038 struct osmo_mgcpc_ep_ci *ci = &ep->ci[i];
1039
1040 if (!ci->occupied || !ci->mgcp_client_fi)
1041 continue;
1042
1043 /* mgcp_conn_delete() unlinks itself from this parent FSM implicitly and waits for the DLCX OK. */
1044 mgcp_conn_delete(ci->mgcp_client_fi);
1045 /* Forget all about this ci */
1046 *ci = (struct osmo_mgcpc_ep_ci){
1047 .ep = ep,
1048 };
1049 }
1050}
1051
Neels Hofmeyr538d2c52019-01-28 03:51:35 +01001052static struct osmo_fsm osmo_mgcpc_ep_fsm = {
Pau Espin Pedrol182ca3b2019-05-08 14:01:20 +02001053 .name = "mgw-endp",
Neels Hofmeyr538d2c52019-01-28 03:51:35 +01001054 .states = osmo_mgcpc_ep_fsm_states,
1055 .num_states = ARRAY_SIZE(osmo_mgcpc_ep_fsm_states),
1056 .log_subsys = DLMGCP,
1057 .event_names = osmo_mgcpc_ep_fsm_event_names,
1058 .timer_cb = osmo_mgcpc_ep_fsm_timer_cb,
Neels Hofmeyr03fcc912021-07-15 02:09:42 +02001059 .pre_term = osmo_mgcpc_ep_fsm_pre_term,
Neels Hofmeyr538d2c52019-01-28 03:51:35 +01001060};