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Philipp Maier8bda7a72018-01-17 14:32:23 +01001/* (C) 2018 by sysmocom s.f.m.c. GmbH <info@sysmocom.de>
2 * All Rights Reserved
3 *
4 * Author: Philipp Maier
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program. If not, see <http://www.gnu.org/licenses/>.
18 *
19 */
20
21#include <osmocom/mgcp_client/mgcp_client.h>
22#include <osmocom/mgcp_client/mgcp_client_fsm.h>
23#include <osmocom/core/utils.h>
24#include <osmocom/core/fsm.h>
25#include <osmocom/core/byteswap.h>
26#include <arpa/inet.h>
27#include <osmocom/core/logging.h>
28
29/* Context information, this is attached to the priv pointer of the FSM and
30 * is also handed back when dispatcheing events to the parent FSM. This is
31 * purly intened and not meant to be accessible for the API user */
32struct mgcp_ctx {
33 /* MGCP client instance that is used to interact with the MGW */
34 struct mgcp_client *mgcp;
35
36 /* The ID of the last pending transaction. This is used internally
37 * to cancel the transaction in case of an error */
38 mgcp_trans_id_t mgw_pending_trans;
39
40 /* Flag to mark that there is a pending transaction */
41 bool mgw_trans_pending;
42
43 /* Connection ID which has been assigned by he MGW */
44 char conn_id[MGCP_CONN_ID_LENGTH];
45
46 /* Local RTP connection info, the MGW will send outgoing traffic to the
47 * ip/port specified here. The Address does not have to be choosen right
48 * on the creation of a connection. It can always be modified later by
49 * the user. */
50 struct mgcp_conn_peer conn_peer_local;
51
52 /* Remote RTP connection info, the ip/port specified here is the address
53 * where the MGW expects the RTP data to be sent. This address is
54 * defined by soly by the MGW and can not be influenced by the user. */
55 struct mgcp_conn_peer conn_peer_remote;
56
57 /* The terminate flag is a way to handle cornercase sitations that
58 * might occur when the user runs into an error situation and sends
59 * a DLCX command while the FSM is waiting for a response. In this
60 * case the DLCX command is not executed immediately. Instead the
61 * terminate flag is set. When the response to from the previous
62 * operation is received, we know that there is a DLCX event is
63 * pending. The FSM then generates the EV_DLCX by itsself before
64 * it enters ST_READY to cause the immediate execution of the
65 * DLCX procedure. (If normal operations are executed too fast,
66 * the API functions will return an error. In general, the user
67 * should synchronize using the callback events) */
68 bool terminate;
69
70 /* Event that is sent when the current operation is completed (except
71 * for DLCX, there the specified parent_term_evt is sent instead) */
72 uint32_t parent_evt;
73};
74
75#define S(x) (1 << (x))
76
77#define MGCP_MGW_TIMEOUT 4 /* in seconds */
78#define MGCP_MGW_TIMEOUT_TIMER_NR 1
79
Philipp Maier01f03952018-02-26 14:33:25 +010080enum fsm_mgcp_client_states {
Philipp Maier8bda7a72018-01-17 14:32:23 +010081 ST_CRCX,
82 ST_CRCX_RESP,
83 ST_READY,
84 ST_MDCX_RESP,
85 ST_DLCX_RESP,
86};
87
Philipp Maier01f03952018-02-26 14:33:25 +010088enum fsm_mgcp_client_evt {
Philipp Maier8bda7a72018-01-17 14:32:23 +010089 EV_CRCX,
90 EV_CRCX_RESP,
91 EV_MDCX,
92 EV_MDCX_RESP,
93 EV_DLCX,
94 EV_DLCX_RESP,
95};
96
Philipp Maierd2e3a522018-02-26 14:29:01 +010097static const struct value_string fsm_mgcp_client_evt_names[] = {
98 OSMO_VALUE_STRING(EV_CRCX),
99 OSMO_VALUE_STRING(EV_CRCX_RESP),
100 OSMO_VALUE_STRING(EV_MDCX),
101 OSMO_VALUE_STRING(EV_MDCX_RESP),
102 OSMO_VALUE_STRING(EV_DLCX),
103 OSMO_VALUE_STRING(EV_DLCX_RESP),
104 {0, NULL}
105};
106
Neels Hofmeyr475f8682018-08-23 16:38:59 +0200107static void make_crcx_msg(struct mgcp_msg *mgcp_msg, struct mgcp_conn_peer *info)
Philipp Maier8bda7a72018-01-17 14:32:23 +0100108{
Neels Hofmeyr475f8682018-08-23 16:38:59 +0200109 *mgcp_msg = (struct mgcp_msg) {
Philipp Maier8bda7a72018-01-17 14:32:23 +0100110 .verb = MGCP_VERB_CRCX,
Neels Hofmeyr475f8682018-08-23 16:38:59 +0200111 .presence = (MGCP_MSG_PRESENCE_ENDPOINT | MGCP_MSG_PRESENCE_CALL_ID
112 | MGCP_MSG_PRESENCE_CONN_MODE),
113 .call_id = info->call_id,
Philipp Maier54eb0e12018-05-29 09:49:52 +0200114 .conn_mode = MGCP_CONN_RECV_ONLY,
Neels Hofmeyr475f8682018-08-23 16:38:59 +0200115 .ptime = info->ptime,
116 .codecs_len = info->codecs_len,
117 .ptmap_len = info->ptmap_len
Philipp Maier8bda7a72018-01-17 14:32:23 +0100118 };
Neels Hofmeyr475f8682018-08-23 16:38:59 +0200119 osmo_strlcpy(mgcp_msg->endpoint, info->endpoint, MGCP_ENDPOINT_MAXLEN);
120 memcpy(mgcp_msg->codecs, info->codecs, sizeof(mgcp_msg->codecs));
121 memcpy(mgcp_msg->ptmap, info->ptmap, sizeof(mgcp_msg->ptmap));
Philipp Maier8bda7a72018-01-17 14:32:23 +0100122}
123
Neels Hofmeyr475f8682018-08-23 16:38:59 +0200124static void add_audio(struct mgcp_msg *mgcp_msg, struct mgcp_conn_peer *info)
Philipp Maier8bda7a72018-01-17 14:32:23 +0100125{
Neels Hofmeyr475f8682018-08-23 16:38:59 +0200126 mgcp_msg->presence |= MGCP_MSG_PRESENCE_AUDIO_IP | MGCP_MSG_PRESENCE_AUDIO_PORT;
127 mgcp_msg->audio_ip = info->addr;
128 mgcp_msg->audio_port = info->port;
Philipp Maier8bda7a72018-01-17 14:32:23 +0100129}
130
131static struct msgb *make_mdcx_msg(struct mgcp_ctx *mgcp_ctx)
132{
133 struct mgcp_msg mgcp_msg;
134
135 mgcp_msg = (struct mgcp_msg) {
136 .verb = MGCP_VERB_MDCX,
137 .presence = (MGCP_MSG_PRESENCE_ENDPOINT | MGCP_MSG_PRESENCE_CALL_ID | MGCP_MSG_PRESENCE_CONN_ID |
138 MGCP_MSG_PRESENCE_CONN_MODE | MGCP_MSG_PRESENCE_AUDIO_IP | MGCP_MSG_PRESENCE_AUDIO_PORT),
139 .call_id = mgcp_ctx->conn_peer_remote.call_id,
140 .conn_id = mgcp_ctx->conn_id,
141 .conn_mode = MGCP_CONN_RECV_SEND,
142 .audio_ip = mgcp_ctx->conn_peer_local.addr,
143 .audio_port = mgcp_ctx->conn_peer_local.port,
Philipp Maier704c4f02018-06-07 18:51:31 +0200144 .ptime = mgcp_ctx->conn_peer_local.ptime,
Philipp Maier544448a2018-07-26 11:37:44 +0200145 .codecs_len = mgcp_ctx->conn_peer_local.codecs_len,
146 .ptmap_len = mgcp_ctx->conn_peer_local.ptmap_len
Philipp Maier8bda7a72018-01-17 14:32:23 +0100147 };
148 osmo_strlcpy(mgcp_msg.endpoint, mgcp_ctx->conn_peer_remote.endpoint, MGCP_ENDPOINT_MAXLEN);
Philipp Maier704c4f02018-06-07 18:51:31 +0200149 memcpy(mgcp_msg.codecs, mgcp_ctx->conn_peer_local.codecs, sizeof(mgcp_msg.codecs));
Philipp Maier544448a2018-07-26 11:37:44 +0200150 memcpy(mgcp_msg.ptmap, mgcp_ctx->conn_peer_local.ptmap, sizeof(mgcp_msg.ptmap));
Philipp Maier8bda7a72018-01-17 14:32:23 +0100151
152 /* Note: We take the endpoint and the call_id from the remote
153 * connection info, because we can be confident that the
154 * information there is valid. For the local info, we explicitly
155 * allow endpoint and call_id to be optional */
156 return mgcp_msg_gen(mgcp_ctx->mgcp, &mgcp_msg);
157}
158
159struct msgb *make_dlcx_msg(struct mgcp_ctx *mgcp_ctx)
160{
161 struct mgcp_msg mgcp_msg;
162
163 mgcp_msg = (struct mgcp_msg) {
164 .verb = MGCP_VERB_DLCX,
165 .presence = (MGCP_MSG_PRESENCE_ENDPOINT | MGCP_MSG_PRESENCE_CALL_ID | MGCP_MSG_PRESENCE_CONN_ID),
166 .call_id = mgcp_ctx->conn_peer_remote.call_id,
167 .conn_id = mgcp_ctx->conn_id,
168 };
169 osmo_strlcpy(mgcp_msg.endpoint, mgcp_ctx->conn_peer_remote.endpoint, MGCP_ENDPOINT_MAXLEN);
170
171 return mgcp_msg_gen(mgcp_ctx->mgcp, &mgcp_msg);
172}
173
174static void mgw_crcx_resp_cb(struct mgcp_response *r, void *priv);
175
176static void fsm_crcx_cb(struct osmo_fsm_inst *fi, uint32_t event, void *data)
177{
178 struct mgcp_ctx *mgcp_ctx = data;
179 struct mgcp_client *mgcp;
Neels Hofmeyr475f8682018-08-23 16:38:59 +0200180 struct mgcp_msg mgcp_msg;
Philipp Maier8bda7a72018-01-17 14:32:23 +0100181 struct msgb *msg;
182 int rc;
183
184 OSMO_ASSERT(mgcp_ctx);
185 mgcp = mgcp_ctx->mgcp;
186 OSMO_ASSERT(mgcp);
187
188 switch (event) {
189 case EV_CRCX:
190 LOGPFSML(fi, LOGL_DEBUG, "MGW/CRCX: creating connection on MGW endpoint:%s...\n",
191 mgcp_ctx->conn_peer_local.endpoint);
192
Neels Hofmeyr475f8682018-08-23 16:38:59 +0200193 make_crcx_msg(&mgcp_msg, &mgcp_ctx->conn_peer_local);
Philipp Maier8bda7a72018-01-17 14:32:23 +0100194 if (mgcp_ctx->conn_peer_local.port)
Neels Hofmeyr475f8682018-08-23 16:38:59 +0200195 add_audio(&mgcp_msg, &mgcp_ctx->conn_peer_local);
196 msg = mgcp_msg_gen(mgcp_ctx->mgcp, &mgcp_msg);
Philipp Maier8bda7a72018-01-17 14:32:23 +0100197 OSMO_ASSERT(msg);
198
199 mgcp_ctx->mgw_pending_trans = mgcp_msg_trans_id(msg);
200 mgcp_ctx->mgw_trans_pending = true;
201 rc = mgcp_client_tx(mgcp, msg, mgw_crcx_resp_cb, fi);
202 if (rc < 0) {
203 osmo_fsm_inst_term(fi, OSMO_FSM_TERM_ERROR, NULL);
204 return;
205 }
206
207 osmo_fsm_inst_state_chg(fi, ST_CRCX_RESP, MGCP_MGW_TIMEOUT, MGCP_MGW_TIMEOUT_TIMER_NR);
208 break;
209 default:
210 OSMO_ASSERT(false);
211 break;
212 }
213}
214
Neels Hofmeyr04da5e52018-06-12 21:51:23 +0200215/* Return the CI that the MGW allocated during CRCX response. This is purely informational for logging
216 * and identity tracking; the mgcp_conn_*() functions take care of using the right CI internally. */
217const char *mgcp_conn_get_ci(struct osmo_fsm_inst *fi)
218{
219 struct mgcp_ctx *mgcp_ctx = fi->priv;
220 return mgcp_ctx->conn_id;
221}
222
Philipp Maier8bda7a72018-01-17 14:32:23 +0100223static void mgw_crcx_resp_cb(struct mgcp_response *r, void *priv)
224{
225 struct osmo_fsm_inst *fi = priv;
226 struct mgcp_ctx *mgcp_ctx;
227 int rc;
228
229 OSMO_ASSERT(fi);
230 mgcp_ctx = fi->priv;
231 OSMO_ASSERT(mgcp_ctx);
232
233 mgcp_ctx->mgw_trans_pending = false;
234
235 if (r->head.response_code != 200) {
236 LOGPFSML(fi, LOGL_ERROR,
237 "MGW/CRCX: response yields error: %d %s\n", r->head.response_code, r->head.comment);
238 osmo_fsm_inst_term(fi, OSMO_FSM_TERM_ERROR, NULL);
239 return;
240 }
241
242 osmo_strlcpy(mgcp_ctx->conn_id, r->head.conn_id, sizeof(mgcp_ctx->conn_id));
243 LOGPFSML(fi, LOGL_DEBUG, "MGW/CRCX: MGW responded with CI: %s\n", mgcp_ctx->conn_id);
244
245 rc = mgcp_response_parse_params(r);
246 if (rc) {
247 LOGPFSML(fi, LOGL_ERROR, "MGW/CRCX: Cannot parse CRCX response\n");
248 osmo_fsm_inst_term(fi, OSMO_FSM_TERM_ERROR, NULL);
249 return;
250 }
251 LOGPFSML(fi, LOGL_DEBUG, "MGW/CRCX: MGW responded with address %s:%u\n", r->audio_ip, r->audio_port);
252
253 osmo_strlcpy(mgcp_ctx->conn_peer_remote.addr, r->audio_ip, sizeof(mgcp_ctx->conn_peer_remote.addr));
254 mgcp_ctx->conn_peer_remote.port = r->audio_port;
255
256 if (strlen(r->head.endpoint) > 0) {
257 /* If we get an endpoint identifier back from the MGW, take it */
258 osmo_strlcpy(mgcp_ctx->conn_peer_remote.endpoint, r->head.endpoint,
259 sizeof(mgcp_ctx->conn_peer_remote.endpoint));
260 } else if (strstr(mgcp_ctx->conn_peer_local.endpoint, "*") == NULL) {
261 /* If we do not get an endpoint identifier back and the
262 * identifier we used to create the connection is not a
263 * wildcarded one, we take the local endpoint identifier
264 * instead */
265 osmo_strlcpy(mgcp_ctx->conn_peer_remote.endpoint, mgcp_ctx->conn_peer_local.endpoint,
266 sizeof(mgcp_ctx->conn_peer_local.endpoint));
267 } else {
268 LOGPFSML(fi, LOGL_ERROR, "MGW/CRCX: CRCX yielded not suitable endpoint identifier\n");
269 osmo_fsm_inst_term(fi, OSMO_FSM_TERM_ERROR, NULL);
270 return;
271 }
272
273 mgcp_ctx->conn_peer_remote.call_id = mgcp_ctx->conn_peer_local.call_id;
274
275 osmo_fsm_inst_dispatch(fi, EV_CRCX_RESP, mgcp_ctx);
276}
277
278static void fsm_crcx_resp_cb(struct osmo_fsm_inst *fi, uint32_t event, void *data)
279{
280 struct mgcp_ctx *mgcp_ctx = data;
281 OSMO_ASSERT(mgcp_ctx);
282
283 switch (event) {
284 case EV_CRCX_RESP:
285 osmo_fsm_inst_state_chg(fi, ST_READY, 0, 0);
286 if (mgcp_ctx->terminate) {
287 /* Trigger immediate DLCX if DLCX was requested while the FSM was
288 * busy with the previous operation */
289 LOGPFSML(fi, LOGL_ERROR, "MGW/CRCX: FSM was busy while DLCX was requested, executing now...\n");
290 osmo_fsm_inst_dispatch(fi, EV_DLCX, mgcp_ctx);
291 } else
292 osmo_fsm_inst_dispatch(fi->proc.parent, mgcp_ctx->parent_evt, &mgcp_ctx->conn_peer_remote);
293 break;
294 default:
295 OSMO_ASSERT(false);
296 break;
297 }
298}
299
300static void mgw_mdcx_resp_cb(struct mgcp_response *r, void *priv);
301static void mgw_dlcx_resp_cb(struct mgcp_response *r, void *priv);
302
303static void fsm_ready_cb(struct osmo_fsm_inst *fi, uint32_t event, void *data)
304{
305 struct mgcp_ctx *mgcp_ctx = data;
306 struct msgb *msg;
307 struct mgcp_client *mgcp;
308 uint32_t new_state;
309 int rc;
310
311 OSMO_ASSERT(mgcp_ctx);
312 mgcp = mgcp_ctx->mgcp;
313 OSMO_ASSERT(mgcp);
314
315 switch (event) {
316 case EV_MDCX:
317 msg = make_mdcx_msg(mgcp_ctx);
318 OSMO_ASSERT(msg);
319 rc = mgcp_client_tx(mgcp, msg, mgw_mdcx_resp_cb, fi);
320 new_state = ST_MDCX_RESP;
321 break;
322 case EV_DLCX:
323 msg = make_dlcx_msg(mgcp_ctx);
324 OSMO_ASSERT(msg);
325 rc = mgcp_client_tx(mgcp, msg, mgw_dlcx_resp_cb, fi);
326 new_state = ST_DLCX_RESP;
327 break;
328 default:
329 OSMO_ASSERT(false);
330 break;
331 }
332
333 mgcp_ctx->mgw_pending_trans = mgcp_msg_trans_id(msg);
334 mgcp_ctx->mgw_trans_pending = true;
335
336 if (rc < 0) {
337 osmo_fsm_inst_term(fi, OSMO_FSM_TERM_ERROR, NULL);
338 return;
339 }
340
341 osmo_fsm_inst_state_chg(fi, new_state, MGCP_MGW_TIMEOUT, MGCP_MGW_TIMEOUT_TIMER_NR);
342}
343
344static void mgw_mdcx_resp_cb(struct mgcp_response *r, void *priv)
345{
346 struct osmo_fsm_inst *fi = priv;
347 struct mgcp_ctx *mgcp_ctx;
348 int rc;
349
350 OSMO_ASSERT(fi);
351 mgcp_ctx = fi->priv;
352 OSMO_ASSERT(mgcp_ctx);
353
354 mgcp_ctx->mgw_trans_pending = false;
355
356 if (r->head.response_code != 200) {
357 LOGPFSML(fi, LOGL_ERROR, "MGW/MDCX: response yields error: %d %s\n", r->head.response_code,
358 r->head.comment);
359 osmo_fsm_inst_term(fi, OSMO_FSM_TERM_ERROR, NULL);
360 return;
361 }
362
363 rc = mgcp_response_parse_params(r);
364 if (rc) {
365 LOGPFSML(fi, LOGL_ERROR, "MGW/MDCX: Cannot parse MDCX response\n");
366 osmo_fsm_inst_term(fi, OSMO_FSM_TERM_ERROR, NULL);
367 return;
368 }
369 LOGPFSML(fi, LOGL_DEBUG, "MGW/MDCX: MGW responded with address %s:%u\n", r->audio_ip, r->audio_port);
370
371 osmo_strlcpy(mgcp_ctx->conn_peer_remote.addr, r->audio_ip, sizeof(mgcp_ctx->conn_peer_remote.addr));
372 mgcp_ctx->conn_peer_remote.port = r->audio_port;
373
374 osmo_fsm_inst_dispatch(fi, EV_MDCX_RESP, mgcp_ctx);
375}
376
377static void fsm_mdcx_resp_cb(struct osmo_fsm_inst *fi, uint32_t event, void *data)
378{
379 struct mgcp_ctx *mgcp_ctx = data;
380 OSMO_ASSERT(mgcp_ctx);
381
382 switch (event) {
383 case EV_MDCX_RESP:
384 osmo_fsm_inst_state_chg(fi, ST_READY, 0, 0);
385 if (mgcp_ctx->terminate) {
386 /* Trigger immediate DLCX if DLCX was requested while the FSM was
387 * busy with the previous operation */
388 LOGPFSML(fi, LOGL_ERROR, "MGW/MDCX: FSM was busy while DLCX was requested, executing now...\n");
389 osmo_fsm_inst_dispatch(fi, EV_DLCX, mgcp_ctx);
390 } else
391 osmo_fsm_inst_dispatch(fi->proc.parent, mgcp_ctx->parent_evt, &mgcp_ctx->conn_peer_remote);
392 break;
393 default:
394 OSMO_ASSERT(false);
395 break;
396 }
397}
398
399static void mgw_dlcx_resp_cb(struct mgcp_response *r, void *priv)
400{
401 struct osmo_fsm_inst *fi = priv;
402 struct mgcp_ctx *mgcp_ctx;
403
404 OSMO_ASSERT(fi);
405 mgcp_ctx = fi->priv;
406 OSMO_ASSERT(mgcp_ctx);
407
408 mgcp_ctx->mgw_trans_pending = false;
409
410 if (r->head.response_code != 250) {
411 LOGPFSML(fi, LOGL_ERROR,
412 "MGW/DLCX: response yields error: %d %s\n", r->head.response_code, r->head.comment);
413 osmo_fsm_inst_term(fi, OSMO_FSM_TERM_ERROR, NULL);
414 return;
415 }
416
417 osmo_fsm_inst_dispatch(fi, EV_DLCX_RESP, mgcp_ctx);
418}
419
420static void fsm_dlcx_resp_cb(struct osmo_fsm_inst *fi, uint32_t event, void *data)
421{
422 struct mgcp_ctx *mgcp_ctx = data;
423 OSMO_ASSERT(mgcp_ctx);
424
425 switch (event) {
426 case EV_DLCX_RESP:
427 /* Rub out the connection identifier, since the connection
428 * is no longer present and we will use the connection id
429 * to know in error cases if the connection is still present
430 * or not */
431 memset(mgcp_ctx->conn_id, 0, sizeof(mgcp_ctx->conn_id));
432
433 osmo_fsm_inst_term(fi, OSMO_FSM_TERM_REGULAR, NULL);
434 break;
435 default:
436 OSMO_ASSERT(false);
437 break;
438 }
439}
440
441static int fsm_timeout_cb(struct osmo_fsm_inst *fi)
442{
443 struct mgcp_ctx *mgcp_ctx = fi->priv;
444 struct mgcp_client *mgcp;
445
446 OSMO_ASSERT(mgcp_ctx);
447 mgcp = mgcp_ctx->mgcp;
448 OSMO_ASSERT(mgcp);
449
450 if (fi->T == MGCP_MGW_TIMEOUT_TIMER_NR) {
451 /* Note: We were unable to communicate with the MGW,
452 * unfortunately there is no meaningful action we can take
453 * now other than giving up. */
454 osmo_fsm_inst_term(fi, OSMO_FSM_TERM_REGULAR, NULL);
455 } else {
456 /* Note: Ther must not be any unsolicited timers
457 * in this FSM. If so, we have serious problem. */
458 OSMO_ASSERT(false);
459 }
460
461 return 0;
462}
463
464static void fsm_cleanup_cb(struct osmo_fsm_inst *fi, enum osmo_fsm_term_cause cause)
465{
466 struct mgcp_ctx *mgcp_ctx = fi->priv;
467 struct mgcp_client *mgcp;
468 struct msgb *msg;
469
470 OSMO_ASSERT(mgcp_ctx);
471 mgcp = mgcp_ctx->mgcp;
472 OSMO_ASSERT(mgcp);
473
474 /* If there is still a transaction pending, cancel it now. */
475 if (mgcp_ctx->mgw_trans_pending)
476 mgcp_client_cancel(mgcp, mgcp_ctx->mgw_pending_trans);
477
478 /* Should the FSM be terminated while there are still open connections
479 * on the MGW, we send an unconditional DLCX to terminate the
480 * connection. This is not the normal case. The user should always use
481 * mgcp_conn_delete() to instruct the FSM to perform a graceful exit */
482 if (strlen(mgcp_ctx->conn_id)) {
483 LOGPFSML(fi, LOGL_ERROR,
Harald Welted4e6aa42018-06-02 18:07:10 +0200484 "MGW/DLCX: abrupt FSM termination with connections still present, sending unconditional DLCX...\n");
Philipp Maier8bda7a72018-01-17 14:32:23 +0100485 msg = make_dlcx_msg(mgcp_ctx);
486 OSMO_ASSERT(msg);
487 mgcp_client_tx(mgcp, msg, NULL, NULL);
488 }
489
490 talloc_free(mgcp_ctx);
491}
492
493static struct osmo_fsm_state fsm_mgcp_client_states[] = {
494
495 /* Initial CRCX state. This state is immediately entered and executed
496 * when the FSM is started. The rationale is that we first have to
497 * create a connectin before we can execute other operations on that
498 * connection. */
499 [ST_CRCX] = {
500 .in_event_mask = S(EV_CRCX),
501 .out_state_mask = S(ST_CRCX_RESP),
502 .name = OSMO_STRINGIFY(ST_CRCX),
503 .action = fsm_crcx_cb,
504 },
505
506 /* Wait for the response to a CRCX operation, check and process the
507 * results, change to ST_READY afterwards. */
508 [ST_CRCX_RESP] = {
509 .in_event_mask = S(EV_CRCX_RESP),
510 .out_state_mask = S(ST_READY),
511 .name = OSMO_STRINGIFY(ST_CRCX_RESP),
512 .action = fsm_crcx_resp_cb,
513 },
514
515 /* In this idle state we wait for further operations (e.g. MDCX) that
516 * can be executed by the user using the API. There is no timeout in
517 * this state. The connection lives on until the user decides to
518 * terminate it (DLCX). */
519 [ST_READY] = {
520 .in_event_mask = S(EV_MDCX) | S(EV_DLCX),
521 .out_state_mask = S(ST_MDCX_RESP) | S(ST_DLCX_RESP),
522 .name = OSMO_STRINGIFY(ST_READY),
523 .action = fsm_ready_cb,
524 },
525
526 /* Wait for the response of a MDCX operation, check and process the
527 * results, change to ST_READY afterwards. */
528 [ST_MDCX_RESP] = {
529 .in_event_mask = S(EV_MDCX_RESP),
530 .out_state_mask = S(ST_READY),
531 .name = OSMO_STRINGIFY(ST_MDCX_RESP),
532 .action = fsm_mdcx_resp_cb,
533 },
534
535 /* Wait for the response of a DLCX operation and terminate the FSM
536 * normally. */
537 [ST_DLCX_RESP] = {
538 .in_event_mask = S(EV_DLCX_RESP),
539 .out_state_mask = 0,
540 .name = OSMO_STRINGIFY(ST_DLCX_RESP),
541 .action = fsm_dlcx_resp_cb,
542 },
543};
544
545static struct osmo_fsm fsm_mgcp_client = {
546 .name = "MGCP_CONN",
547 .states = fsm_mgcp_client_states,
548 .num_states = ARRAY_SIZE(fsm_mgcp_client_states),
549 .timer_cb = fsm_timeout_cb,
550 .cleanup = fsm_cleanup_cb,
Philipp Maierd2e3a522018-02-26 14:29:01 +0100551 .event_names = fsm_mgcp_client_evt_names,
Philipp Maier8bda7a72018-01-17 14:32:23 +0100552};
553
554/*! allocate FSM, and create a new connection on the MGW.
555 * \param[in] mgcp MGCP client descriptor.
Neels Hofmeyred1cff52018-05-17 23:59:46 +0200556 * \param[in] parent_fi Parent FSM instance.
Philipp Maier8bda7a72018-01-17 14:32:23 +0100557 * \param[in] parent_term_evt Event to be sent to parent when terminating.
558 * \param[in] parent_evt Event to be sent to parent when operation is done.
559 * \param[in] conn_peer Connection parameters (ip, port...).
560 * \returns newly-allocated, initialized and registered FSM instance, NULL on error. */
561struct osmo_fsm_inst *mgcp_conn_create(struct mgcp_client *mgcp, struct osmo_fsm_inst *parent_fi,
562 uint32_t parent_term_evt, uint32_t parent_evt, struct mgcp_conn_peer *conn_peer)
563{
564 struct mgcp_ctx *mgcp_ctx;
565 static bool fsm_registered = false;
566 struct osmo_fsm_inst *fi;
567 struct in_addr ip_test;
568
569 OSMO_ASSERT(parent_fi);
570 OSMO_ASSERT(mgcp);
571 OSMO_ASSERT(conn_peer);
572
Philipp Maier704c4f02018-06-07 18:51:31 +0200573 /* Check if IP/Port information in conn info makes sense */
Philipp Maier8bda7a72018-01-17 14:32:23 +0100574 if (conn_peer->port && inet_aton(conn_peer->addr, &ip_test) == 0)
575 return NULL;
576
577 /* Register the fsm description (if not already done) */
578 if (fsm_registered == false) {
579 osmo_fsm_register(&fsm_mgcp_client);
580 fsm_registered = true;
581 }
582
583 /* Allocate and configure a new fsm instance */
584 fi = osmo_fsm_inst_alloc_child(&fsm_mgcp_client, parent_fi, parent_term_evt);
585 OSMO_ASSERT(fi);
586 mgcp_ctx = talloc_zero(fi, struct mgcp_ctx);
587 OSMO_ASSERT(mgcp_ctx);
588 mgcp_ctx->mgcp = mgcp;
589 mgcp_ctx->parent_evt = parent_evt;
590
591 memcpy(&mgcp_ctx->conn_peer_local, conn_peer, sizeof(mgcp_ctx->conn_peer_local));
592 fi->priv = mgcp_ctx;
593
594 /* start state machine */
595 OSMO_ASSERT(fi->state == ST_CRCX);
596 osmo_fsm_inst_dispatch(fi, EV_CRCX, mgcp_ctx);
597
598 return fi;
599}
600
601/*! modify an existing connection on the MGW.
602 * \param[in] fi FSM instance.
603 * \param[in] parent_evt Event to be sent to parent when operation is done.
604 * \param[in] conn_peer New connection information (ip, port...).
605 * \returns 0 on success, -EINVAL on error. */
606int mgcp_conn_modify(struct osmo_fsm_inst *fi, uint32_t parent_evt, struct mgcp_conn_peer *conn_peer)
607{
608 OSMO_ASSERT(fi);
609 struct mgcp_ctx *mgcp_ctx = fi->priv;
610 struct in_addr ip_test;
611
612 OSMO_ASSERT(mgcp_ctx);
613 OSMO_ASSERT(conn_peer);
614
615 /* The user must not issue an MDCX before the CRCX has completed,
616 * if this happens, it means that the parent FSM has overhead the
617 * parent_evt (mandatory!) and executed the MDCX without even
618 * waiting for the results. Another reason could be that the
619 * parent FSM got messed up */
620 OSMO_ASSERT(fi->state != ST_CRCX_RESP);
621
622 /* If the user tries to issue an MDCX while an DLCX operation is
623 * pending, there must be a serious problem with the paren FSM.
624 * Eeither the parent_term_evt (mandatory!) has been overheard,
625 * or the parant FSM got messed so badly that it still assumes
626 * a live connection although it as killed it. */
627 OSMO_ASSERT(fi->state != ST_DLCX_RESP);
628
629 /* Check if IP/Port parameters make sense */
Neels Hofmeyr5928dc92018-06-15 04:33:37 +0200630 if (conn_peer->port == 0) {
631 LOGPFSML(fi, LOGL_ERROR, "Cannot MDCX, port == 0\n");
Philipp Maier8bda7a72018-01-17 14:32:23 +0100632 return -EINVAL;
Neels Hofmeyr5928dc92018-06-15 04:33:37 +0200633 }
634 if (inet_aton(conn_peer->addr, &ip_test) == 0) {
635 LOGPFSML(fi, LOGL_ERROR, "Cannot MDCX, IP address == 0.0.0.0\n");
Philipp Maier8bda7a72018-01-17 14:32:23 +0100636 return -EINVAL;
Neels Hofmeyr5928dc92018-06-15 04:33:37 +0200637 }
Philipp Maier8bda7a72018-01-17 14:32:23 +0100638
639 /*! The user may supply an endpoint identifier in conn_peer. The
640 * identifier is then checked. This check is optional. Later steps do
641 * not depend on the endpoint identifier supplied here because it is
642 * already implicitly known from the CRCX phase. */
Neels Hofmeyr5928dc92018-06-15 04:33:37 +0200643 if (strlen(conn_peer->endpoint) && strcmp(conn_peer->endpoint, mgcp_ctx->conn_peer_remote.endpoint)) {
644 LOGPFSML(fi, LOGL_ERROR, "Cannot MDCX, endpoint mismatches: requested %s, should be %s\n",
645 conn_peer->endpoint, mgcp_ctx->conn_peer_remote.endpoint);
Philipp Maier8bda7a72018-01-17 14:32:23 +0100646 return -EINVAL;
Neels Hofmeyr5928dc92018-06-15 04:33:37 +0200647 }
Philipp Maier8bda7a72018-01-17 14:32:23 +0100648
649 /*! Note: The call-id is implicitly known from the previous CRCX and
650 * will not be checked even when it is set in conn_peer. */
651
652 mgcp_ctx->parent_evt = parent_evt;
653 memcpy(&mgcp_ctx->conn_peer_local, conn_peer, sizeof(mgcp_ctx->conn_peer_local));
654 osmo_fsm_inst_dispatch(fi, EV_MDCX, mgcp_ctx);
655 return 0;
656}
657
658/*! delete existing connection on the MGW, destroy FSM afterwards.
659 * \param[in] fi FSM instance. */
660void mgcp_conn_delete(struct osmo_fsm_inst *fi)
661{
662 OSMO_ASSERT(fi);
663 struct mgcp_ctx *mgcp_ctx = fi->priv;
664
665 OSMO_ASSERT(mgcp_ctx);
666
667 /* Unlink FSM from parent */
668 osmo_fsm_inst_unlink_parent(fi, NULL);
669
670 /* An error situation where the parent FSM must be killed immediately
671 * may lead into a situation where the DLCX can not be executed right
672 * at that moment because the FSM is still busy with another operation.
673 * In those cases we postpone the DLCX so that the FSM and the
674 * connections on the MGW get cleaned up gracefully. */
675 if (fi->state != ST_READY) {
676 LOGPFSML(fi, LOGL_ERROR, "MGW: operation still pending, DLCX will be postponed.\n");
677 mgcp_ctx->terminate = true;
678 return;
679 }
680 osmo_fsm_inst_dispatch(fi, EV_DLCX, mgcp_ctx);
681}