blob: 5baed5458b4a7090d886cda6ec246f1e4dc6f31e [file] [log] [blame]
Neels Hofmeyrc4628a32018-12-07 14:47:34 +01001/* Code to manage a subscriber's MSC-A role */
2/*
3 * (C) 2019 by sysmocom - s.m.f.c. GmbH <info@sysmocom.de>
4 * All Rights Reserved
5 *
6 * SPDX-License-Identifier: AGPL-3.0+
7 *
8 * Author: Neels Hofmeyr
9 *
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU Affero General Public License as published by
12 * the Free Software Foundation; either version 3 of the License, or
13 * (at your option) any later version.
14 *
15 * This program is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 * GNU Affero General Public License for more details.
19 *
20 * You should have received a copy of the GNU Affero General Public License
21 * along with this program. If not, see <http://www.gnu.org/licenses/>.
22 */
23
24#include <osmocom/core/utils.h>
25#include <osmocom/core/tdef.h>
26#include <osmocom/core/rate_ctr.h>
27#include <osmocom/core/signal.h>
28
29#include <osmocom/msc/gsm_data.h>
30#include <osmocom/msc/msc_roles.h>
31#include <osmocom/msc/msub.h>
32#include <osmocom/msc/msc_a.h>
33#include <osmocom/msc/msc_t.h>
34#include <osmocom/msc/msc_i.h>
35#include <osmocom/msc/paging.h>
36#include <osmocom/msc/signal.h>
37#include <osmocom/msc/vlr.h>
38#include <osmocom/msc/transaction.h>
39#include <osmocom/msc/ran_peer.h>
40#include <osmocom/msc/ran_msg_a.h>
41#include <osmocom/msc/ran_msg_iu.h>
42#include <osmocom/msc/sgs_iface.h>
43#include <osmocom/msc/gsm_04_08.h>
44#include <osmocom/msc/gsm_09_11.h>
45#include <osmocom/msc/gsm_04_14.h>
46#include <osmocom/msc/call_leg.h>
47#include <osmocom/msc/rtp_stream.h>
48#include <osmocom/msc/msc_ho.h>
49
50#define MSC_A_USE_WAIT_CLEAR_COMPLETE "wait-Clear-Complete"
51
52static struct osmo_fsm msc_a_fsm;
53
54static const struct osmo_tdef_state_timeout msc_a_fsm_timeouts[32] = {
55 [MSC_A_ST_VALIDATE_L3] = { .T = -1 },
56 [MSC_A_ST_AUTH_CIPH] = { .keep_timer = true },
57 [MSC_A_ST_WAIT_CLASSMARK_UPDATE] = { .keep_timer = true },
58 [MSC_A_ST_AUTHENTICATED] = { .keep_timer = true },
59 [MSC_A_ST_RELEASING] = { .T = -2 },
60 [MSC_A_ST_RELEASED] = { .T = -2 },
61};
62
63/* Transition to a state, using the T timer defined in msc_a_fsm_timeouts.
64 * The actual timeout value is in turn obtained from network->T_defs.
65 * Assumes local variable fi exists. */
66#define msc_a_state_chg(msc_a, state) \
67 osmo_tdef_fsm_inst_state_chg((msc_a)->c.fi, state, msc_a_fsm_timeouts, (msc_a)->c.ran->tdefs, 5)
68
69struct gsm_network *msc_a_net(const struct msc_a *msc_a)
70{
71 return msub_net(msc_a->c.msub);
72}
73
74struct vlr_subscr *msc_a_vsub(const struct msc_a *msc_a)
75{
Neels Hofmeyr911e5972019-05-09 13:28:26 +020076 if (!msc_a)
77 return NULL;
Neels Hofmeyrc4628a32018-12-07 14:47:34 +010078 return msub_vsub(msc_a->c.msub);
79}
80
81struct msc_i *msc_a_msc_i(const struct msc_a *msc_a)
82{
Neels Hofmeyr911e5972019-05-09 13:28:26 +020083 if (!msc_a)
84 return NULL;
Neels Hofmeyrc4628a32018-12-07 14:47:34 +010085 return msub_msc_i(msc_a->c.msub);
86}
87
88struct msc_t *msc_a_msc_t(const struct msc_a *msc_a)
89{
Neels Hofmeyr911e5972019-05-09 13:28:26 +020090 if (!msc_a)
91 return NULL;
Neels Hofmeyrc4628a32018-12-07 14:47:34 +010092 return msub_msc_t(msc_a->c.msub);
93}
94
95struct msc_a *msc_a_fi_priv(struct osmo_fsm_inst *fi)
96{
97 OSMO_ASSERT(fi);
98 OSMO_ASSERT(fi->fsm == &msc_a_fsm);
99 OSMO_ASSERT(fi->priv);
100 return fi->priv;
101}
102
103static void update_counters(struct osmo_fsm_inst *fi, bool conn_accepted)
104{
105 struct msc_a *msc_a = fi->priv;
106 struct gsm_network *net = msc_a_net(msc_a);
107 switch (msc_a->complete_layer3_type) {
108 case COMPLETE_LAYER3_LU:
109 rate_ctr_inc(&net->msc_ctrs->ctr[
110 conn_accepted ? MSC_CTR_LOC_UPDATE_COMPLETED
111 : MSC_CTR_LOC_UPDATE_FAILED]);
112 break;
113 case COMPLETE_LAYER3_CM_SERVICE_REQ:
114 rate_ctr_inc(&net->msc_ctrs->ctr[
115 conn_accepted ? MSC_CTR_CM_SERVICE_REQUEST_ACCEPTED
116 : MSC_CTR_CM_SERVICE_REQUEST_REJECTED]);
117 break;
118 case COMPLETE_LAYER3_PAGING_RESP:
119 rate_ctr_inc(&net->msc_ctrs->ctr[
120 conn_accepted ? MSC_CTR_PAGING_RESP_ACCEPTED
121 : MSC_CTR_PAGING_RESP_REJECTED]);
122 break;
123 default:
124 break;
125 }
126}
127
128static void evaluate_acceptance_outcome(struct osmo_fsm_inst *fi, bool conn_accepted)
129{
130 struct msc_a *msc_a = fi->priv;
131 struct vlr_subscr *vsub = msc_a_vsub(msc_a);
132
133 update_counters(fi, conn_accepted);
134
135 /* Trigger transactions that we paged for */
136 if (msc_a->complete_layer3_type == COMPLETE_LAYER3_PAGING_RESP) {
137 if (conn_accepted)
138 paging_response(msc_a);
139 else
140 paging_expired(vsub);
141 }
142
143 if (conn_accepted)
144 osmo_signal_dispatch(SS_SUBSCR, S_SUBSCR_ATTACHED, msc_a_vsub(msc_a));
145
146 if (msc_a->complete_layer3_type == COMPLETE_LAYER3_LU)
147 msc_a_put(msc_a, MSC_A_USE_LOCATION_UPDATING);
148}
149
150bool msc_a_is_accepted(const struct msc_a *msc_a)
151{
152 if (!msc_a || !msc_a->c.fi)
153 return false;
154 return msc_a->c.fi->state == MSC_A_ST_AUTHENTICATED
155 || msc_a->c.fi->state == MSC_A_ST_COMMUNICATING;
156}
157
158bool msc_a_in_release(struct msc_a *msc_a)
159{
160 if (!msc_a)
161 return true;
162 if (msc_a->c.fi->state == MSC_A_ST_RELEASING)
163 return true;
164 if (msc_a->c.fi->state == MSC_A_ST_RELEASED)
165 return true;
166 return false;
167}
168
169static int msc_a_ran_dec(struct msc_a *msc_a, const struct an_apdu *an_apdu, enum msc_role from_role)
170{
171 int rc;
172 struct msc_a_ran_dec_data d = {
173 .from_role = from_role,
174 .an_apdu = an_apdu,
175 };
176 msc_a_get(msc_a, __func__);
177 rc = msc_role_ran_decode(msc_a->c.fi, an_apdu, msc_a_ran_decode_cb, &d);
178 msc_a_put(msc_a, __func__);
179 return rc;
180};
181
182static void msc_a_fsm_validate_l3(struct osmo_fsm_inst *fi, uint32_t event, void *data)
183{
184 struct msc_a *msc_a = fi->priv;
185 const struct an_apdu *an_apdu;
186
187 switch (event) {
188 case MSC_A_EV_FROM_I_COMPLETE_LAYER_3:
189 case MSC_A_EV_FROM_I_PROCESS_ACCESS_SIGNALLING_REQUEST:
190 case MSC_A_EV_FROM_I_SEND_END_SIGNAL_REQUEST:
191 an_apdu = data;
192 msc_a_ran_dec(msc_a, an_apdu, MSC_ROLE_I);
193 return;
194
195 case MSC_A_EV_COMPLETE_LAYER_3_OK:
196 msc_a_state_chg(msc_a, MSC_A_ST_AUTH_CIPH);
197 return;
198
199 case MSC_A_EV_MO_CLOSE:
200 case MSC_A_EV_CN_CLOSE:
201 evaluate_acceptance_outcome(fi, false);
202 /* fall through */
203 case MSC_A_EV_UNUSED:
204 msc_a_state_chg(msc_a, MSC_A_ST_RELEASING);
205 return;
206
207 default:
208 OSMO_ASSERT(false);
209 }
210}
211
212/* Figure out whether to first send a Classmark Request to the MS to figure out algorithm support. */
213static bool msc_a_need_classmark_for_ciphering(struct msc_a *msc_a)
214{
215 struct gsm_network *net = msc_a_net(msc_a);
216 struct vlr_subscr *vsub = msc_a_vsub(msc_a);
217 int i = 0;
218 bool request_classmark = false;
219
220 /* Only on GERAN-A do we ever need Classmark Information for Ciphering. */
221 if (msc_a->c.ran->type != OSMO_RAT_GERAN_A)
222 return false;
223
224 for (i = 0; i < 8; i++) {
225 int supported;
226
227 /* A5/n permitted by osmo-msc.cfg? */
228 if (!(net->a5_encryption_mask & (1 << i)))
229 continue;
230
231 /* A5/n supported by MS? */
232 supported = osmo_gsm48_classmark_supports_a5(&vsub->classmark, i);
233 if (supported < 0) {
234 LOG_MSC_A(msc_a, LOGL_DEBUG, "For A5/%d, we still need Classmark %d\n", i, -supported);
235 request_classmark = true;
236 }
237 }
238
239 return request_classmark;
240}
241
242static int msc_a_ran_enc_ciphering(struct msc_a *msc_a, bool umts_aka, bool retrieve_imeisv);
243
244/* VLR callback for ops.set_ciph_mode() */
245int msc_a_vlr_set_cipher_mode(void *_msc_a, bool umts_aka, bool retrieve_imeisv)
246{
247 struct msc_a *msc_a = _msc_a;
248 struct vlr_subscr *vsub = msc_a_vsub(msc_a);
249
250 if (!msc_a || !vsub || !vsub->last_tuple) {
251 LOG_MSC_A(msc_a, LOGL_ERROR, "Insufficient info to start ciphering\n");
252 return -EINVAL;
253 }
254
255 if (msc_a_need_classmark_for_ciphering(msc_a)) {
256 int rc;
257 struct ran_msg msg = {
258 .msg_type = RAN_MSG_CLASSMARK_REQUEST,
259 };
260 rc = msc_a_ran_down(msc_a, MSC_ROLE_I, &msg);
261 if (rc) {
262 LOG_MSC_A(msc_a, LOGL_ERROR, "Cannot send Classmark Request\n");
263 return -EIO;
264 }
265
266 msc_a->state_before_classmark_update = msc_a->c.fi->state;
267 msc_a->action_on_classmark_update = (struct msc_a_action_on_classmark_update){
268 .type = MSC_A_CLASSMARK_UPDATE_THEN_CIPHERING,
269 .ciphering = {
270 .umts_aka = umts_aka,
271 .retrieve_imeisv = retrieve_imeisv,
272 },
273 };
274 msc_a_state_chg(msc_a, MSC_A_ST_WAIT_CLASSMARK_UPDATE);
275 return 0;
276 }
277
278 return msc_a_ran_enc_ciphering(msc_a, umts_aka, retrieve_imeisv);
279}
280
281static int msc_a_ran_enc_ciphering(struct msc_a *msc_a, bool umts_aka, bool retrieve_imeisv)
282{
283 struct gsm_network *net = msc_a_net(msc_a);
284 struct vlr_subscr *vsub = msc_a_vsub(msc_a);
285 struct ran_msg msg;
286
287 if (!msc_a || !vsub || !vsub->last_tuple) {
288 LOG_MSC_A(msc_a, LOGL_ERROR, "Insufficient info to start ciphering\n");
289 return -EINVAL;
290 }
291
292 msg = (struct ran_msg){
293 .msg_type = RAN_MSG_CIPHER_MODE_COMMAND,
294 .cipher_mode_command = {
295 .vec = vsub->last_tuple ? &vsub->last_tuple->vec : NULL,
296 .classmark = &vsub->classmark,
297 .geran = {
298 .umts_aka = umts_aka,
299 .retrieve_imeisv = retrieve_imeisv,
300 .a5_encryption_mask = net->a5_encryption_mask,
301
302 /* for ran_a.c to store the GERAN key that is actually used */
303 .chosen_key = &msc_a->geran_encr,
304 },
305 },
306 };
307
308 if (msc_a_ran_down(msc_a, MSC_ROLE_I, &msg)) {
309 LOG_MSC_A(msc_a, LOGL_ERROR, "Sending Cipher Mode Command failed\n");
310 /* Returning error to the VLR ops.set_ciph_mode() will cancel the attach. Other callers need to take
311 * care of the return value. */
312 return -EINVAL;
313 }
314
315 if (msc_a->geran_encr.key_len)
316 LOG_MSC_A(msc_a, LOGL_DEBUG, "RAN encoding chose ciphering key %s\n",
317 osmo_hexdump_nospc(msc_a->geran_encr.key, msc_a->geran_encr.key_len));
318 return 0;
319}
320
321static void msc_a_fsm_auth_ciph(struct osmo_fsm_inst *fi, uint32_t event, void *data)
322{
323 struct msc_a *msc_a = fi->priv;
324
325 /* If accepted, transition the state, all other cases mean failure. */
326 switch (event) {
327 case MSC_A_EV_FROM_I_PROCESS_ACCESS_SIGNALLING_REQUEST:
328 case MSC_A_EV_FROM_I_SEND_END_SIGNAL_REQUEST:
329 msc_a_ran_dec(msc_a, data, MSC_ROLE_I);
330 return;
331
332 case MSC_A_EV_AUTHENTICATED:
333 msc_a_state_chg(msc_a, MSC_A_ST_AUTHENTICATED);
334 return;
335
336 case MSC_A_EV_UNUSED:
337 msc_a_state_chg(msc_a, MSC_A_ST_RELEASING);
338 return;
339
340 case MSC_A_EV_MO_CLOSE:
341 case MSC_A_EV_CN_CLOSE:
342 evaluate_acceptance_outcome(fi, false);
343 msc_a_state_chg(msc_a, MSC_A_ST_RELEASING);
344 return;
345
346
347 default:
348 OSMO_ASSERT(false);
349 }
350}
351
352static void msc_a_fsm_wait_classmark_update(struct osmo_fsm_inst *fi, uint32_t event, void *data)
353{
354 struct msc_a *msc_a = fi->priv;
355
356 switch (event) {
357 case MSC_A_EV_FROM_I_PROCESS_ACCESS_SIGNALLING_REQUEST:
358 case MSC_A_EV_FROM_I_SEND_END_SIGNAL_REQUEST:
359 msc_a_ran_dec(msc_a, data, MSC_ROLE_I);
360 return;
361
362 case MSC_A_EV_CLASSMARK_UPDATE:
363 switch (msc_a->action_on_classmark_update.type) {
364 case MSC_A_CLASSMARK_UPDATE_THEN_CIPHERING:
365 msc_a_state_chg(msc_a, MSC_A_ST_AUTH_CIPH);
366 if (msc_a_ran_enc_ciphering(msc_a,
367 msc_a->action_on_classmark_update.ciphering.umts_aka,
368 msc_a->action_on_classmark_update.ciphering.retrieve_imeisv)) {
369 LOG_MSC_A(msc_a, LOGL_ERROR,
370 "After Classmark Update, still failed to send Cipher Mode Command\n");
371 msc_a_state_chg(msc_a, MSC_A_ST_RELEASING);
372 }
373 return;
374
375 default:
376 LOG_MSC_A(msc_a, LOGL_ERROR, "Internal error: After Classmark Update, don't know what to do\n");
377 msc_a_state_chg(msc_a, msc_a->state_before_classmark_update);
378 return;
379 }
380
381 case MSC_A_EV_UNUSED:
382 /* Seems something detached / aborted in the middle of auth+ciph. */
383 evaluate_acceptance_outcome(fi, false);
384 msc_a_state_chg(msc_a, MSC_A_ST_RELEASING);
385 return;
386
387 case MSC_A_EV_MO_CLOSE:
388 case MSC_A_EV_CN_CLOSE:
389 evaluate_acceptance_outcome(fi, false);
390 msc_a_state_chg(msc_a, MSC_A_ST_RELEASING);
391 return;
392
393 default:
394 OSMO_ASSERT(false);
395 }
396}
397
398static bool msc_a_fsm_has_active_transactions(struct osmo_fsm_inst *fi)
399{
400 struct msc_a *msc_a = fi->priv;
401 struct vlr_subscr *vsub = msc_a_vsub(msc_a);
402 struct gsm_trans *trans;
403
404 if (osmo_use_count_by(&msc_a->use_count, MSC_A_USE_SILENT_CALL)) {
405 LOG_MSC_A(msc_a, LOGL_DEBUG, "%s: silent call still active\n", __func__);
406 return true;
407 }
408
409 if (osmo_use_count_by(&msc_a->use_count, MSC_A_USE_CM_SERVICE_CC)) {
410 LOG_MSC_A(msc_a, LOGL_DEBUG, "%s: still awaiting MO CC request after a CM Service Request\n",
411 __func__);
412 return true;
413 }
414 if (osmo_use_count_by(&msc_a->use_count, MSC_A_USE_CM_SERVICE_SMS)) {
415 LOG_MSC_A(msc_a, LOGL_DEBUG, "%s: still awaiting MO SMS after a CM Service Request\n",
416 __func__);
417 return true;
418 }
419 if (osmo_use_count_by(&msc_a->use_count, MSC_A_USE_CM_SERVICE_SS)) {
420 LOG_MSC_A(msc_a, LOGL_DEBUG, "%s: still awaiting MO SS after a CM Service Request\n",
421 __func__);
422 return true;
423 }
424
425 if (vsub && !llist_empty(&vsub->cs.requests)) {
426 struct paging_request *pr;
427 llist_for_each_entry(pr, &vsub->cs.requests, entry) {
428 LOG_MSC_A(msc_a, LOGL_DEBUG, "%s: still active: %s\n", __func__, pr->label);
429 }
430 return true;
431 }
432
433 if ((trans = trans_has_conn(msc_a))) {
434 LOG_MSC_A(msc_a, LOGL_DEBUG, "connection still has active transaction: %s\n",
435 trans_type_name(trans->type));
436 return true;
437 }
438
439 return false;
440}
441
442static void msc_a_fsm_authenticated_enter(struct osmo_fsm_inst *fi, uint32_t prev_state)
443{
444 struct msc_a *msc_a = fi->priv;
445 struct vlr_subscr *vsub = msc_a_vsub(msc_a);
446
447 /* Stop Location Update expiry for this subscriber. While the subscriber
448 * has an open connection the LU expiry timer must remain disabled.
449 * Otherwise we would kick the subscriber off the network when the timer
450 * expires e.g. during a long phone call.
451 * The LU expiry timer will restart once the connection is closed. */
452 if (vsub)
453 vsub->expire_lu = VLR_SUBSCRIBER_NO_EXPIRATION;
454
455 evaluate_acceptance_outcome(fi, true);
456}
457
458static void msc_a_fsm_authenticated(struct osmo_fsm_inst *fi, uint32_t event, void *data)
459{
460 struct msc_a *msc_a = fi->priv;
461
462 switch (event) {
463 case MSC_A_EV_FROM_I_PROCESS_ACCESS_SIGNALLING_REQUEST:
464 case MSC_A_EV_FROM_I_PREPARE_SUBSEQUENT_HANDOVER_REQUEST:
465 case MSC_A_EV_FROM_I_SEND_END_SIGNAL_REQUEST:
466 msc_a_ran_dec(msc_a, data, MSC_ROLE_I);
467 return;
468
469 case MSC_A_EV_COMPLETE_LAYER_3_OK:
470 /* When Authentication is off, we may already be in the Accepted state when the code
471 * evaluates the Compl L3. Simply ignore. This just cosmetically mutes the error log
472 * about the useless event. */
473 return;
474
475 case MSC_A_EV_TRANSACTION_ACCEPTED:
476 msc_a_state_chg(msc_a, MSC_A_ST_COMMUNICATING);
477 return;
478
479 case MSC_A_EV_MO_CLOSE:
480 case MSC_A_EV_CN_CLOSE:
481 case MSC_A_EV_UNUSED:
482 msc_a_state_chg(msc_a, MSC_A_ST_RELEASING);
483 return;
484
485 default:
486 OSMO_ASSERT(false);
487 }
488}
489
490/* The MGW has given us a local IP address for the RAN side. Ready to start the Assignment of a voice channel. */
491static void msc_a_call_leg_ran_local_addr_available(struct msc_a *msc_a)
492{
493 struct ran_msg msg;
494 struct gsm_trans *cc_trans = msc_a->cc.active_trans;
495 struct gsm0808_channel_type channel_type;
496
497 /* Once a CI is known, we could also CRCX the CN side of the MGW endpoint, but it makes sense to wait for the
498 * codec to be determined by the Assignment Complete message, first. */
499
500 if (mncc_bearer_cap_to_channel_type(&channel_type, &cc_trans->bearer_cap)) {
501 LOG_MSC_A(msc_a, LOGL_ERROR, "Cannot compose Channel Type from bearer capabilities\n");
502 /* FIXME: ERROR HANDLING */
503 return;
504 }
505
506 /* The RAN side RTP address is known, so the voice Assignment can commence. */
507 msg = (struct ran_msg){
508 .msg_type = RAN_MSG_ASSIGNMENT_COMMAND,
509 .assignment_command = {
510 .cn_rtp = &msc_a->cc.call_leg->rtp[RTP_TO_RAN]->local,
511 .channel_type = &channel_type,
512 },
513 };
514 if (msc_a_ran_down(msc_a, MSC_ROLE_I, &msg)) {
515 LOG_MSC_A(msc_a, LOGL_ERROR, "Cannot send Assignment\n");
516 /* FIXME: ERROR HANDLING */
517 return;
518 }
519}
520
521static void msc_a_call_leg_cn_local_addr_available(struct msc_a *msc_a, struct gsm_trans *cc_trans)
522{
523 if (gsm48_tch_rtp_create(cc_trans)) {
524 LOG_MSC_A(msc_a, LOGL_ERROR, "Cannot inform MNCC of RTP address\n");
525 /* FIXME: ERROR HANDLING */
526 return;
527 }
528}
529
530static struct gsm_trans *find_waiting_call(struct msc_a *msc_a)
531{
532 struct gsm_trans *trans;
533 struct gsm_network *net = msc_a_net(msc_a);
534
535 llist_for_each_entry(trans, &net->trans_list, entry) {
536 if (trans->msc_a != msc_a)
537 continue;
538 if (trans->type != TRANS_CC)
539 continue;
540 if (trans->msc_a->cc.active_trans == trans)
541 continue;
542 return trans;
543 }
544 return NULL;
545}
546
547static void msc_a_cleanup_rtp_streams(struct msc_a *msc_a, uint32_t event, void *data)
548{
549 struct rtp_stream *rtps;
550
551 switch (event) {
552 case MSC_EV_CALL_LEG_RTP_RELEASED:
553 rtps = data;
554 if (msc_a->cc.mncc_forwarding_to_remote_ran
555 && msc_a->cc.mncc_forwarding_to_remote_ran->rtps == rtps)
556 msc_a->cc.mncc_forwarding_to_remote_ran->rtps = NULL;
557 if (msc_a->ho.new_cell.mncc_forwarding_to_remote_ran
558 && msc_a->ho.new_cell.mncc_forwarding_to_remote_ran->rtps == rtps)
559 msc_a->ho.new_cell.mncc_forwarding_to_remote_ran->rtps = NULL;
560 return;
561
562 case MSC_EV_CALL_LEG_TERM:
563 msc_a->cc.call_leg = NULL;
564 if (msc_a->cc.mncc_forwarding_to_remote_ran)
565 msc_a->cc.mncc_forwarding_to_remote_ran->rtps = NULL;
566
567 if (msc_a->ho.new_cell.mncc_forwarding_to_remote_ran) {
568 fprintf(stderr, "FOCKEN %p\n", msc_a->ho.new_cell.mncc_forwarding_to_remote_ran->rtps);
569 msc_a->ho.new_cell.mncc_forwarding_to_remote_ran->rtps = NULL;
570 }
571 return;
572
573 case MSC_MNCC_EV_CALL_ENDED:
574 msc_a->cc.mncc_forwarding_to_remote_ran = NULL;
575 return;
576
577 default:
578 return;
579 }
580}
581
582static void msc_a_fsm_communicating(struct osmo_fsm_inst *fi, uint32_t event, void *data)
583{
584 struct msc_a *msc_a = fi->priv;
585 struct rtp_stream *rtps;
586 struct gsm_trans *waiting_trans;
587 struct an_apdu *an_apdu;
588
589 msc_a_cleanup_rtp_streams(msc_a, event, data);
590
591 switch (event) {
592 case MSC_A_EV_FROM_I_PROCESS_ACCESS_SIGNALLING_REQUEST:
593 case MSC_A_EV_FROM_I_PREPARE_SUBSEQUENT_HANDOVER_REQUEST:
594 case MSC_A_EV_FROM_I_SEND_END_SIGNAL_REQUEST:
595 an_apdu = data;
596 msc_a_ran_dec(msc_a, an_apdu, MSC_ROLE_I);
597 return;
598
599 case MSC_A_EV_FROM_T_PREPARE_HANDOVER_RESPONSE:
600 case MSC_A_EV_FROM_T_PREPARE_HANDOVER_FAILURE:
601 case MSC_A_EV_FROM_T_PROCESS_ACCESS_SIGNALLING_REQUEST:
602 case MSC_A_EV_FROM_T_SEND_END_SIGNAL_REQUEST:
603 an_apdu = data;
604 msc_a_ran_dec(msc_a, an_apdu, MSC_ROLE_T);
605 return;
606
607 case MSC_A_EV_TRANSACTION_ACCEPTED:
608 /* no-op */
609 return;
610
611 case MSC_EV_CALL_LEG_RTP_LOCAL_ADDR_AVAILABLE:
612 rtps = data;
613 if (!rtps) {
614 LOG_MSC_A(msc_a, LOGL_ERROR, "Invalid data for %s\n", osmo_fsm_event_name(fi->fsm, event));
615 return;
616 }
617 LOG_MSC_A(msc_a, LOGL_DEBUG,
618 "MGW endpoint's RTP address available for the CI %s: " OSMO_SOCKADDR_STR_FMT "\n",
619 rtp_direction_name(rtps->dir), OSMO_SOCKADDR_STR_FMT_ARGS(&rtps->local));
620 switch (rtps->dir) {
621 case RTP_TO_RAN:
622 msc_a_call_leg_ran_local_addr_available(msc_a);
623 return;
624 case RTP_TO_CN:
625 msc_a_call_leg_cn_local_addr_available(msc_a, rtps->for_trans);
626 return;
627 default:
628 LOG_MSC_A(msc_a, LOGL_ERROR, "Invalid data for %s\n", osmo_fsm_event_name(fi->fsm, event));
629 return;
630 }
631
632 case MSC_EV_CALL_LEG_RTP_COMPLETE:
633 /* Nothing to do. */
634 return;
635
636 case MSC_EV_CALL_LEG_RTP_RELEASED:
637 case MSC_MNCC_EV_CALL_ENDED:
638 /* Cleaned up above */
639 return;
640
641 case MSC_EV_CALL_LEG_TERM:
642 /* RTP streams cleaned up above */
643
644 msc_a_get(msc_a, __func__);
645 if (msc_a->cc.active_trans)
646 trans_free(msc_a->cc.active_trans);
647
648 /* If there is another call still waiting to be activated, this is the time when the mgcp_ctx is
649 * available again and the other call can start assigning. */
650 waiting_trans = find_waiting_call(msc_a);
651 if (waiting_trans) {
652 LOG_MSC_A(msc_a, LOGL_DEBUG, "(ti %02x) Call waiting: starting Assignment\n",
653 waiting_trans->transaction_id);
654 msc_a_try_call_assignment(waiting_trans);
655 }
656 msc_a_put(msc_a, __func__);
657 return;
658
659 case MSC_A_EV_HANDOVER_REQUIRED:
660 msc_ho_start(msc_a, (struct ran_handover_required*)data);
661 return;
662
663 case MSC_A_EV_MO_CLOSE:
664 case MSC_A_EV_CN_CLOSE:
665 case MSC_A_EV_UNUSED:
666 msc_a_state_chg(msc_a, MSC_A_ST_RELEASING);
667 return;
668
669 default:
670 OSMO_ASSERT(false);
671 }
672}
673
674static int msc_a_fsm_timer_cb(struct osmo_fsm_inst *fi)
675{
676 struct msc_a *msc_a = fi->priv;
677 if (msc_a_in_release(msc_a)) {
678 LOG_MSC_A(msc_a, LOGL_ERROR, "Timeout while releasing, discarding right now\n");
679 msc_a_put_all(msc_a, MSC_A_USE_WAIT_CLEAR_COMPLETE);
680 msc_a_state_chg(msc_a, MSC_A_ST_RELEASED);
681 } else {
682 enum gsm48_reject_value cause = GSM48_REJECT_CONGESTION;
683 osmo_fsm_inst_dispatch(fi, MSC_A_EV_CN_CLOSE, &cause);
684 }
685 return 0;
686}
687
688static void msc_a_fsm_releasing_onenter(struct osmo_fsm_inst *fi, uint32_t prev_state)
689{
690 struct msc_a *msc_a = fi->priv;
691 struct vlr_subscr *vsub = msc_a_vsub(msc_a);
692 int i;
693 char buf[128];
694 const char * const use_counts_to_cancel[] = {
695 MSC_A_USE_LOCATION_UPDATING,
696 MSC_A_USE_CM_SERVICE_CC,
697 MSC_A_USE_CM_SERVICE_SMS,
698 MSC_A_USE_CM_SERVICE_SS,
699 MSC_A_USE_PAGING_RESPONSE,
700 };
701
702 LOG_MSC_A(msc_a, LOGL_DEBUG, "Releasing: msc_a use is %s\n",
703 osmo_use_count_name_buf(buf, sizeof(buf), &msc_a->use_count));
704
705 if (vsub) {
706 vlr_subscr_get(vsub, __func__);
707
708 /* Cancel all VLR FSMs, if any */
709 vlr_subscr_cancel_attach_fsm(vsub, OSMO_FSM_TERM_ERROR, GSM48_REJECT_CONGESTION);
710
711 /* The subscriber has no active connection anymore.
712 * Restart the periodic Location Update expiry timer for this subscriber. */
713 vlr_subscr_enable_expire_lu(vsub);
714 }
715
716 /* If we're closing in a middle of a trans, we need to clean up */
717 trans_conn_closed(msc_a);
718
719 call_leg_release(msc_a->cc.call_leg);
720
721 /* Cancel use counts for pending CM Service / Paging */
722 for (i = 0; i < ARRAY_SIZE(use_counts_to_cancel); i++) {
723 const char *use = use_counts_to_cancel[i];
724 int32_t count = osmo_use_count_by(&msc_a->use_count, use);
725 if (!count)
726 continue;
727 LOG_MSC_A(msc_a, LOGL_DEBUG, "Releasing: canceling still pending use: %s (%d)\n", use, count);
728 osmo_use_count_get_put(&msc_a->use_count, use, -count);
729 }
730
731 if (msc_a->c.ran->type == OSMO_RAT_EUTRAN_SGS) {
732 sgs_iface_tx_release(vsub);
733 /* In SGsAP there is no confirmation of a release. */
734 msc_a_state_chg(msc_a, MSC_A_ST_RELEASED);
735 } else {
736 struct ran_msg msg = {
737 .msg_type = RAN_MSG_CLEAR_COMMAND,
738 .clear_command = {
739 .csfb_ind = (vsub && vsub->sgs_fsm->state == SGS_UE_ST_ASSOCIATED),
740 },
741 };
742 msc_a_get(msc_a, MSC_A_USE_WAIT_CLEAR_COMPLETE);
743 msc_a_ran_down(msc_a, MSC_ROLE_I, &msg);
744 }
745
746 if (vsub)
747 vlr_subscr_put(vsub, __func__);
748}
749
750static void msc_a_fsm_releasing(struct osmo_fsm_inst *fi, uint32_t event, void *data)
751{
752 struct msc_a *msc_a = fi->priv;
753
754 msc_a_cleanup_rtp_streams(msc_a, event, data);
755
756 switch (event) {
757 case MSC_A_EV_FROM_I_PROCESS_ACCESS_SIGNALLING_REQUEST:
758 case MSC_A_EV_FROM_I_SEND_END_SIGNAL_REQUEST:
759 msc_a_ran_dec(msc_a, data, MSC_ROLE_I);
760 return;
761
762 case MSC_A_EV_MO_CLOSE:
763 case MSC_A_EV_CN_CLOSE:
764 case MSC_A_EV_UNUSED:
765 /* Already releasing */
766 return;
767
768 case MSC_EV_CALL_LEG_RTP_RELEASED:
769 case MSC_EV_CALL_LEG_TERM:
770 case MSC_MNCC_EV_CALL_ENDED:
771 /* RTP streams cleaned up above */
772 return;
773
774 default:
775 OSMO_ASSERT(false);
776 }
777}
778
779
780static void msc_a_fsm_released_onenter(struct osmo_fsm_inst *fi, uint32_t prev_state)
781{
782 struct msc_a *msc_a = msc_a_fi_priv(fi);
783 char buf[128];
784 LOG_MSC_A(msc_a, LOGL_DEBUG, "Released: msc_a use is %s\n",
785 osmo_use_count_name_buf(buf, sizeof(buf), &msc_a->use_count));
786 if (osmo_use_count_total(&msc_a->use_count) == 0)
787 osmo_fsm_inst_term(fi, OSMO_FSM_TERM_REGULAR, fi);
788}
789
790static void msc_a_fsm_released(struct osmo_fsm_inst *fi, uint32_t event, void *data)
791{
792 if (event == MSC_A_EV_UNUSED)
793 osmo_fsm_inst_term(fi, OSMO_FSM_TERM_REGULAR, fi);
794}
795
796void msc_a_fsm_allstate_action(struct osmo_fsm_inst *fi, uint32_t event, void *data)
797{
798 //struct msc_a *a = msc_a_fi_priv(fi);
799 switch (event) {
800
801 default:
802 return;
803 }
804}
805
806void msc_a_fsm_cleanup(struct osmo_fsm_inst *fi, enum osmo_fsm_term_cause cause)
807{
808 struct msc_a *msc_a = msc_a_fi_priv(fi);
809
810 trans_conn_closed(msc_a);
811
812 if (msc_a_fsm_has_active_transactions(fi))
813 LOG_MSC_A(msc_a, LOGL_ERROR, "Deallocating active transactions failed\n");
814
815 LOG_MSC_A_CAT(msc_a, DREF, LOGL_DEBUG, "max total use count was %d\n", msc_a->max_total_use_count);
816}
817
818const struct value_string msc_a_fsm_event_names[] = {
819 OSMO_VALUE_STRING(MSC_REMOTE_EV_RX_GSUP),
820 OSMO_VALUE_STRING(MSC_EV_CALL_LEG_RTP_LOCAL_ADDR_AVAILABLE),
821 OSMO_VALUE_STRING(MSC_EV_CALL_LEG_RTP_COMPLETE),
822 OSMO_VALUE_STRING(MSC_EV_CALL_LEG_RTP_RELEASED),
823 OSMO_VALUE_STRING(MSC_EV_CALL_LEG_TERM),
824 OSMO_VALUE_STRING(MSC_MNCC_EV_NEED_LOCAL_RTP),
825 OSMO_VALUE_STRING(MSC_MNCC_EV_CALL_PROCEEDING),
826 OSMO_VALUE_STRING(MSC_MNCC_EV_CALL_COMPLETE),
827 OSMO_VALUE_STRING(MSC_MNCC_EV_CALL_ENDED),
828 OSMO_VALUE_STRING(MSC_A_EV_FROM_I_COMPLETE_LAYER_3),
829 OSMO_VALUE_STRING(MSC_A_EV_FROM_I_PROCESS_ACCESS_SIGNALLING_REQUEST),
830 OSMO_VALUE_STRING(MSC_A_EV_FROM_I_PREPARE_SUBSEQUENT_HANDOVER_REQUEST),
831 OSMO_VALUE_STRING(MSC_A_EV_FROM_I_SEND_END_SIGNAL_REQUEST),
832 OSMO_VALUE_STRING(MSC_A_EV_FROM_T_PROCESS_ACCESS_SIGNALLING_REQUEST),
833 OSMO_VALUE_STRING(MSC_A_EV_FROM_T_PREPARE_HANDOVER_RESPONSE),
834 OSMO_VALUE_STRING(MSC_A_EV_FROM_T_PREPARE_HANDOVER_FAILURE),
835 OSMO_VALUE_STRING(MSC_A_EV_FROM_T_SEND_END_SIGNAL_REQUEST),
836 OSMO_VALUE_STRING(MSC_A_EV_COMPLETE_LAYER_3_OK),
837 OSMO_VALUE_STRING(MSC_A_EV_CLASSMARK_UPDATE),
838 OSMO_VALUE_STRING(MSC_A_EV_AUTHENTICATED),
839 OSMO_VALUE_STRING(MSC_A_EV_TRANSACTION_ACCEPTED),
840 OSMO_VALUE_STRING(MSC_A_EV_CN_CLOSE),
841 OSMO_VALUE_STRING(MSC_A_EV_MO_CLOSE),
842 OSMO_VALUE_STRING(MSC_A_EV_UNUSED),
843 OSMO_VALUE_STRING(MSC_A_EV_HANDOVER_REQUIRED),
844 OSMO_VALUE_STRING(MSC_A_EV_HANDOVER_END),
845 {}
846};
847
848#define S(x) (1 << (x))
849
850static const struct osmo_fsm_state msc_a_fsm_states[] = {
851 [MSC_A_ST_VALIDATE_L3] = {
852 .name = OSMO_STRINGIFY(MSC_A_ST_VALIDATE_L3),
853 .in_event_mask = 0
854 | S(MSC_A_EV_FROM_I_COMPLETE_LAYER_3)
855 | S(MSC_A_EV_FROM_I_PROCESS_ACCESS_SIGNALLING_REQUEST)
856 | S(MSC_A_EV_FROM_I_SEND_END_SIGNAL_REQUEST)
857 | S(MSC_A_EV_COMPLETE_LAYER_3_OK)
858 | S(MSC_A_EV_MO_CLOSE)
859 | S(MSC_A_EV_CN_CLOSE)
860 | S(MSC_A_EV_UNUSED)
861 ,
862 .out_state_mask = 0
863 | S(MSC_A_ST_VALIDATE_L3)
864 | S(MSC_A_ST_AUTH_CIPH)
865 | S(MSC_A_ST_RELEASING)
866 ,
867 .action = msc_a_fsm_validate_l3,
868 },
869 [MSC_A_ST_AUTH_CIPH] = {
870 .name = OSMO_STRINGIFY(MSC_A_ST_AUTH_CIPH),
871 .in_event_mask = 0
872 | S(MSC_A_EV_FROM_I_PROCESS_ACCESS_SIGNALLING_REQUEST)
873 | S(MSC_A_EV_FROM_I_SEND_END_SIGNAL_REQUEST)
874 | S(MSC_A_EV_AUTHENTICATED)
875 | S(MSC_A_EV_MO_CLOSE)
876 | S(MSC_A_EV_CN_CLOSE)
877 | S(MSC_A_EV_UNUSED)
878 ,
879 .out_state_mask = 0
880 | S(MSC_A_ST_WAIT_CLASSMARK_UPDATE)
881 | S(MSC_A_ST_AUTHENTICATED)
882 | S(MSC_A_ST_RELEASING)
883 ,
884 .action = msc_a_fsm_auth_ciph,
885 },
886 [MSC_A_ST_WAIT_CLASSMARK_UPDATE] = {
887 .name = OSMO_STRINGIFY(MSC_A_ST_WAIT_CLASSMARK_UPDATE),
888 .in_event_mask = 0
889 | S(MSC_A_EV_FROM_I_PROCESS_ACCESS_SIGNALLING_REQUEST)
890 | S(MSC_A_EV_FROM_I_SEND_END_SIGNAL_REQUEST)
891 | S(MSC_A_EV_CLASSMARK_UPDATE)
892 | S(MSC_A_EV_MO_CLOSE)
893 | S(MSC_A_EV_CN_CLOSE)
894 ,
895 .out_state_mask = 0
896 | S(MSC_A_ST_AUTH_CIPH)
897 | S(MSC_A_ST_RELEASING)
898 ,
899 .action = msc_a_fsm_wait_classmark_update,
900 },
901 [MSC_A_ST_AUTHENTICATED] = {
902 .name = OSMO_STRINGIFY(MSC_A_ST_AUTHENTICATED),
903 /* allow everything to release for any odd behavior */
904 .in_event_mask = 0
905 | S(MSC_A_EV_FROM_I_PROCESS_ACCESS_SIGNALLING_REQUEST)
906 | S(MSC_A_EV_FROM_I_PREPARE_SUBSEQUENT_HANDOVER_REQUEST)
907 | S(MSC_A_EV_FROM_I_SEND_END_SIGNAL_REQUEST)
908 | S(MSC_A_EV_TRANSACTION_ACCEPTED)
909 | S(MSC_A_EV_MO_CLOSE)
910 | S(MSC_A_EV_CN_CLOSE)
911 | S(MSC_A_EV_UNUSED)
912 ,
913 .out_state_mask = 0
914 | S(MSC_A_ST_RELEASING)
915 | S(MSC_A_ST_COMMUNICATING)
916 ,
917 .onenter = msc_a_fsm_authenticated_enter,
918 .action = msc_a_fsm_authenticated,
919 },
920 [MSC_A_ST_COMMUNICATING] = {
921 .name = OSMO_STRINGIFY(MSC_A_ST_COMMUNICATING),
922 /* allow everything to release for any odd behavior */
923 .in_event_mask = 0
924 | S(MSC_A_EV_FROM_I_PROCESS_ACCESS_SIGNALLING_REQUEST)
925 | S(MSC_A_EV_FROM_I_PREPARE_SUBSEQUENT_HANDOVER_REQUEST)
926 | S(MSC_A_EV_FROM_I_SEND_END_SIGNAL_REQUEST)
927 | S(MSC_A_EV_FROM_T_PREPARE_HANDOVER_RESPONSE)
928 | S(MSC_A_EV_FROM_T_PREPARE_HANDOVER_FAILURE)
929 | S(MSC_A_EV_FROM_T_PROCESS_ACCESS_SIGNALLING_REQUEST)
930 | S(MSC_A_EV_FROM_T_SEND_END_SIGNAL_REQUEST)
931 | S(MSC_A_EV_TRANSACTION_ACCEPTED)
932 | S(MSC_A_EV_MO_CLOSE)
933 | S(MSC_A_EV_CN_CLOSE)
934 | S(MSC_A_EV_UNUSED)
935 | S(MSC_EV_CALL_LEG_RTP_LOCAL_ADDR_AVAILABLE)
936 | S(MSC_EV_CALL_LEG_RTP_COMPLETE)
937 | S(MSC_EV_CALL_LEG_RTP_RELEASED)
938 | S(MSC_EV_CALL_LEG_TERM)
939 | S(MSC_MNCC_EV_CALL_ENDED)
940 | S(MSC_A_EV_HANDOVER_REQUIRED)
941 ,
942 .out_state_mask = 0
943 | S(MSC_A_ST_RELEASING)
944 ,
945 .action = msc_a_fsm_communicating,
946 },
947 [MSC_A_ST_RELEASING] = {
948 .name = OSMO_STRINGIFY(MSC_A_ST_RELEASING),
949 .in_event_mask = 0
950 | S(MSC_A_EV_FROM_I_PROCESS_ACCESS_SIGNALLING_REQUEST)
951 | S(MSC_A_EV_FROM_I_SEND_END_SIGNAL_REQUEST)
952 | S(MSC_A_EV_UNUSED)
953 | S(MSC_EV_CALL_LEG_RTP_RELEASED)
954 | S(MSC_EV_CALL_LEG_TERM)
955 | S(MSC_MNCC_EV_CALL_ENDED)
956 ,
957 .out_state_mask = 0
958 | S(MSC_A_ST_RELEASED)
959 ,
960 .onenter = msc_a_fsm_releasing_onenter,
961 .action = msc_a_fsm_releasing,
962 },
963 [MSC_A_ST_RELEASED] = {
964 .name = OSMO_STRINGIFY(MSC_A_ST_RELEASED),
965 .in_event_mask = 0
966 | S(MSC_A_EV_UNUSED)
967 ,
968 .onenter = msc_a_fsm_released_onenter,
969 .action = msc_a_fsm_released,
970 },
971};
972
973static struct osmo_fsm msc_a_fsm = {
974 .name = "msc_a",
975 .states = msc_a_fsm_states,
976 .num_states = ARRAY_SIZE(msc_a_fsm_states),
977 .log_subsys = DMSC,
978 .event_names = msc_a_fsm_event_names,
979 .allstate_action = msc_a_fsm_allstate_action,
980 .allstate_event_mask = 0
981 ,
982 .timer_cb = msc_a_fsm_timer_cb,
983 .cleanup = msc_a_fsm_cleanup,
984};
985
986static __attribute__((constructor)) void msc_a_fsm_init()
987{
988 OSMO_ASSERT(osmo_fsm_register(&msc_a_fsm) == 0);
989}
990
991static int msc_a_use_cb(struct osmo_use_count_entry *e, int32_t old_use_count, const char *file, int line)
992{
993 struct msc_a *msc_a = e->use_count->talloc_object;
994 char buf[128];
995 int32_t total;
996 int level;
997
998 if (!e->use)
999 return -EINVAL;
1000
1001 total = osmo_use_count_total(&msc_a->use_count);
1002
1003 if (total == 0
1004 || (total == 1 && old_use_count == 0 && e->count == 1))
1005 level = LOGL_INFO;
1006 else
1007 level = LOGL_DEBUG;
1008
1009 LOG_MSC_A_CAT_SRC(msc_a, DREF, level, file, line, "%s %s: now used by %s\n",
1010 (e->count - old_use_count) > 0? "+" : "-", e->use,
1011 osmo_use_count_name_buf(buf, sizeof(buf), &msc_a->use_count));
1012
1013 if (e->count < 0)
1014 return -ERANGE;
1015
1016 msc_a->max_total_use_count = OSMO_MAX(msc_a->max_total_use_count, total);
1017
1018 if (total == 0)
1019 osmo_fsm_inst_dispatch(msc_a->c.fi, MSC_A_EV_UNUSED, NULL);
1020 return 0;
1021}
1022
1023struct msc_a *msc_a_alloc(struct msub *msub, struct ran_infra *ran)
1024{
1025 struct msc_a *msc_a = msub_role_alloc(msub, MSC_ROLE_A, &msc_a_fsm, struct msc_a, ran);
1026 msc_a->use_count = (struct osmo_use_count){
1027 .talloc_object = msc_a,
1028 .use_cb = msc_a_use_cb,
1029 };
1030 osmo_use_count_make_static_entries(&msc_a->use_count, msc_a->use_count_buf, ARRAY_SIZE(msc_a->use_count_buf));
1031 /* Start timeout for first state */
1032 msc_a_state_chg(msc_a, MSC_A_ST_VALIDATE_L3);
1033 return msc_a;
1034}
1035
1036bool msc_a_is_establishing_auth_ciph(const struct msc_a *msc_a)
1037{
1038 if (!msc_a || !msc_a->c.fi)
1039 return false;
1040 return msc_a->c.fi->state == MSC_A_ST_AUTH_CIPH;
1041}
1042
1043const struct value_string complete_layer3_type_names[] = {
1044 { COMPLETE_LAYER3_NONE, "NONE" },
1045 { COMPLETE_LAYER3_LU, "LU" },
1046 { COMPLETE_LAYER3_CM_SERVICE_REQ, "CM_SERVICE_REQ" },
1047 { COMPLETE_LAYER3_PAGING_RESP, "PAGING_RESP" },
1048 { 0, NULL }
1049};
1050
1051#define _msc_a_update_id(MSC_A, FMT, ARGS ...) \
1052 do { \
1053 if (osmo_fsm_inst_update_id_f(msc_a->c.fi, FMT ":%s:%s", \
1054 ## ARGS, \
1055 msub_ran_conn_name(msc_a->c.msub), \
1056 complete_layer3_type_name(msc_a->complete_layer3_type)) \
1057 == 0) { \
1058 struct vlr_subscr *_vsub = msc_a_vsub(MSC_A); \
1059 if (_vsub) { \
1060 if (_vsub->lu_fsm) \
1061 osmo_fsm_inst_update_id(_vsub->lu_fsm, (MSC_A)->c.fi->id); \
1062 if (_vsub->auth_fsm) \
1063 osmo_fsm_inst_update_id(_vsub->auth_fsm, (MSC_A)->c.fi->id); \
1064 if (_vsub->proc_arq_fsm) \
1065 osmo_fsm_inst_update_id(_vsub->proc_arq_fsm, (MSC_A)->c.fi->id); \
1066 } \
1067 LOG_MSC_A(MSC_A, LOGL_DEBUG, "Updated ID\n"); \
1068 } \
1069 /* otherwise osmo_fsm_inst_update_id_f() will log an error. */ \
1070 } while (0)
1071
1072
1073/* Compose an ID almost like gsm48_mi_to_string(), but print the MI type along, and print a TMSI as hex. */
1074void msc_a_update_id_from_mi(struct msc_a *msc_a, const uint8_t mi[], uint8_t mi_len)
1075{
1076 _msc_a_update_id(msc_a, "%s", osmo_mi_name(mi, mi_len));
1077}
1078
1079/* Update msc_a->fi id string from current msc_a->vsub and msc_a->complete_layer3_type. */
1080void msc_a_update_id(struct msc_a *msc_a)
1081{
1082 _msc_a_update_id(msc_a, "%s", vlr_subscr_name(msc_a_vsub(msc_a)));
1083}
1084
1085/* Iterate all msc_a instances that are relevant for this subscriber, and update FSM ID strings for all of the FSM
1086 * instances. */
1087void msc_a_update_id_for_vsub(struct vlr_subscr *for_vsub)
1088{
1089 struct msub *msub;
1090 llist_for_each_entry(msub, &msub_list, entry) {
1091 struct vlr_subscr *vsub = msub_vsub(msub);
1092 if (vsub != for_vsub)
1093 continue;
1094 msc_a_update_id(msub_msc_a(msub));
1095 }
1096}
1097
1098static bool msg_is_initially_permitted(const struct gsm48_hdr *hdr)
1099{
1100 uint8_t pdisc = gsm48_hdr_pdisc(hdr);
1101 uint8_t msg_type = gsm48_hdr_msg_type(hdr);
1102
1103 switch (pdisc) {
1104 case GSM48_PDISC_MM:
1105 switch (msg_type) {
1106 case GSM48_MT_MM_LOC_UPD_REQUEST:
1107 case GSM48_MT_MM_CM_SERV_REQ:
1108 case GSM48_MT_MM_CM_REEST_REQ:
1109 case GSM48_MT_MM_AUTH_RESP:
1110 case GSM48_MT_MM_AUTH_FAIL:
1111 case GSM48_MT_MM_ID_RESP:
1112 case GSM48_MT_MM_TMSI_REALL_COMPL:
1113 case GSM48_MT_MM_IMSI_DETACH_IND:
1114 return true;
1115 default:
1116 break;
1117 }
1118 break;
1119 case GSM48_PDISC_RR:
1120 switch (msg_type) {
1121 /* GSM48_MT_RR_CIPH_M_COMPL is actually handled in bssmap_rx_ciph_compl() and gets redirected in the
1122 * BSSAP layer to ran_conn_cipher_mode_compl() (before this here is reached) */
1123 case GSM48_MT_RR_PAG_RESP:
1124 case GSM48_MT_RR_CIPH_M_COMPL:
1125 return true;
1126 default:
1127 break;
1128 }
1129 break;
1130 default:
1131 break;
1132 }
1133
1134 return false;
1135}
1136
1137/* Main entry point for GSM 04.08/44.008 Layer 3 data (e.g. from the BSC). */
1138int msc_a_up_l3(struct msc_a *msc_a, struct msgb *msg)
1139{
1140 struct gsm48_hdr *gh;
1141 uint8_t pdisc;
1142 int rc;
1143 struct vlr_subscr *vsub = msc_a_vsub(msc_a);
1144 int is_r99;
1145
1146 OSMO_ASSERT(msg->l3h);
1147 OSMO_ASSERT(msg);
1148
1149 gh = msgb_l3(msg);
1150 pdisc = gsm48_hdr_pdisc(gh);
1151
1152 LOG_MSC_A_CAT(msc_a, DRLL, LOGL_DEBUG, "Dispatching 04.08 message: %s %s\n",
1153 gsm48_pdisc_name(pdisc), gsm48_pdisc_msgtype_name(pdisc, gsm48_hdr_msg_type(gh)));
1154
1155 /* To evaluate the 3GPP TS 24.007 Duplicate Detection, we need Classmark information on whether the MS is R99
1156 * capable. If the subscriber is already actively connected, the Classmark information is stored with the
1157 * vlr_subscr. Otherwise, this *must* be a Complete Layer 3 with Classmark info. */
1158 if (vsub)
1159 is_r99 = osmo_gsm48_classmark_is_r99(&vsub->classmark) ? 1 : 0;
1160 else
1161 is_r99 = compl_l3_msg_is_r99(msg);
1162
1163 if (is_r99 < 0) {
1164 LOG_MSC_A(msc_a, LOGL_ERROR,
1165 "No Classmark Information, dropping non-Complete-Layer3 message: %s\n",
1166 gsm48_pdisc_msgtype_name(pdisc, gsm48_hdr_msg_type(gh)));
1167 return -EACCES;
1168 }
1169
1170 if (is_r99 >= 0
1171 && ran_dec_dtap_undup_is_duplicate(msc_a->c.fi, msc_a->n_sd_next, is_r99 ? true : false, msg)) {
1172 LOG_MSC_A(msc_a, LOGL_DEBUG, "Dropping duplicate message"
1173 " (3GPP TS 24.007 11.2.3.2 Message Type Octet / Duplicate Detection)\n");
1174 return 0;
1175 }
1176
1177 if (!msc_a_is_accepted(msc_a)
1178 && !msg_is_initially_permitted(gh)) {
1179 LOG_MSC_A(msc_a, LOGL_ERROR,
1180 "Message not permitted for initial conn: %s\n",
1181 gsm48_pdisc_msgtype_name(pdisc, gsm48_hdr_msg_type(gh)));
1182 return -EACCES;
1183 }
1184
1185 if (vsub && vsub->cs.attached_via_ran != msc_a->c.ran->type) {
1186 LOG_MSC_A(msc_a, LOGL_ERROR,
1187 "Illegal situation: RAN type mismatch:"
1188 " attached via %s, received message via %s\n",
1189 osmo_rat_type_name(vsub->cs.attached_via_ran),
1190 osmo_rat_type_name(msc_a->c.ran->type));
1191 return -EACCES;
1192 }
1193
1194#if 0
1195 if (silent_call_reroute(conn, msg))
1196 return silent_call_rx(conn, msg);
1197#endif
1198
1199 switch (pdisc) {
1200 case GSM48_PDISC_CC:
1201 rc = gsm0408_rcv_cc(msc_a, msg);
1202 break;
1203 case GSM48_PDISC_MM:
1204 rc = gsm0408_rcv_mm(msc_a, msg);
1205 break;
1206 case GSM48_PDISC_RR:
1207 rc = gsm0408_rcv_rr(msc_a, msg);
1208 break;
1209 case GSM48_PDISC_SMS:
1210 rc = gsm0411_rcv_sms(msc_a, msg);
1211 break;
1212 case GSM48_PDISC_MM_GPRS:
1213 case GSM48_PDISC_SM_GPRS:
1214 LOG_MSC_A_CAT(msc_a, DRLL, LOGL_NOTICE, "Unimplemented "
1215 "GSM 04.08 discriminator 0x%02x\n", pdisc);
1216 rc = -ENOTSUP;
1217 break;
1218 case GSM48_PDISC_NC_SS:
1219 rc = gsm0911_rcv_nc_ss(msc_a, msg);
1220 break;
1221 case GSM48_PDISC_TEST:
1222 rc = gsm0414_rcv_test(msc_a, msg);
1223 break;
1224 default:
1225 LOG_MSC_A_CAT(msc_a, DRLL, LOGL_NOTICE, "Unknown "
1226 "GSM 04.08 discriminator 0x%02x\n", pdisc);
1227 rc = -EINVAL;
1228 break;
1229 }
1230
1231 return rc;
1232}
1233
1234static void msc_a_up_call_assignment_complete(struct msc_a *msc_a, const struct ran_msg *ac)
1235{
1236 struct gsm_trans *cc_trans = msc_a->cc.active_trans;
1237 struct rtp_stream *rtps_to_ran = msc_a->cc.call_leg ? msc_a->cc.call_leg->rtp[RTP_TO_RAN] : NULL;
1238
1239 if (!rtps_to_ran) {
1240 LOG_MSC_A(msc_a, LOGL_ERROR, "Rx Assignment Complete, but no RTP stream is set up\n");
1241 return;
1242 }
1243 if (!cc_trans) {
1244 LOG_MSC_A(msc_a, LOGL_ERROR, "Rx Assignment Complete, but CC transaction is active\n");
1245 return;
1246 }
1247
1248 /* Update RAN-side endpoint CI: */
1249 rtp_stream_set_codec(rtps_to_ran, ac->assignment_complete.codec);
1250 rtp_stream_set_remote_addr(rtps_to_ran, &ac->assignment_complete.remote_rtp);
1251 rtp_stream_commit(rtps_to_ran);
1252
1253 /* Setup CN side endpoint CI:
1254 * Now that
1255 * - the first CI has been created and a definitive endpoint name is assigned to the call_leg's MGW
1256 * endpoint,
1257 * - the Assignment has chosen a speech codec
1258 * go on to create the CN side RTP stream's CI. */
1259 if (call_leg_ensure_ci(msc_a->cc.call_leg, RTP_TO_CN, cc_trans->callref, cc_trans,
1260 &ac->assignment_complete.codec, NULL)) {
1261 LOG_MSC_A_CAT(msc_a, DCC, LOGL_ERROR, "Error creating MGW CI towards CN\n");
1262 call_leg_release(msc_a->cc.call_leg);
1263 return;
1264 }
1265}
1266
1267static void msc_a_up_call_assignment_failure(struct msc_a *msc_a, const struct ran_msg *af)
1268{
1269 struct gsm_trans *trans;
1270
1271 /* For a normal voice call, there will be an rtp_stream FSM. */
1272 if (msc_a->cc.call_leg && msc_a->cc.call_leg->rtp[RTP_TO_RAN]) {
1273 LOG_MSC_A(msc_a, LOGL_ERROR, "Assignment Failure, releasing call\n");
1274 rtp_stream_release(msc_a->cc.call_leg->rtp[RTP_TO_RAN]);
1275 return;
1276 }
1277
1278 /* Otherwise, a silent call might be active */
1279 trans = trans_find_by_type(msc_a, TRANS_SILENT_CALL);
1280 if (trans) {
1281 LOG_MSC_A(msc_a, LOGL_ERROR, "Assignment Failure, releasing silent call\n");
1282 trans_free(trans);
1283 return;
1284 }
1285
1286 /* Neither a voice call nor silent call assignment. Assume the worst and detach. */
1287 msc_a_release_cn(msc_a);
1288}
1289
1290static void msc_a_up_classmark_update(struct msc_a *msc_a, const struct osmo_gsm48_classmark *classmark,
1291 struct osmo_gsm48_classmark *dst)
1292{
1293 if (!dst) {
1294 struct vlr_subscr *vsub = msc_a_vsub(msc_a);
1295
1296 if (!vsub)
1297 dst = &msc_a->temporary_classmark;
1298 else
1299 dst = &vsub->classmark;
1300 }
1301
1302 LOG_MSC_A(msc_a, LOGL_DEBUG, "A5 capabilities recived from Classmark Update: %s\n",
1303 osmo_gsm48_classmark_a5_name(classmark));
1304 osmo_gsm48_classmark_update(dst, classmark);
1305
1306 /* bump subscr conn FSM in case it is waiting for a Classmark Update */
1307 if (msc_a->c.fi->state == MSC_A_ST_WAIT_CLASSMARK_UPDATE)
1308 osmo_fsm_inst_dispatch(msc_a->c.fi, MSC_A_EV_CLASSMARK_UPDATE, NULL);
1309}
1310
1311static void msc_a_up_sapi_n_reject(struct msc_a *msc_a, const struct ran_msg *msg)
1312{
1313 int sapi = msg->sapi_n_reject.dlci & 0x7;
1314 if (sapi == UM_SAPI_SMS)
1315 gsm411_sapi_n_reject(msc_a);
1316}
1317
1318static int msc_a_up_ho(struct msc_a *msc_a, const struct msc_a_ran_dec_data *d, uint32_t ho_fi_event)
1319{
1320 if (!msc_a->ho.fi) {
1321 LOG_MSC_A(msc_a, LOGL_ERROR, "Rx Handover message, but no Handover ongoing: %s\n", d->ran_dec->msg_name);
1322 return -EINVAL;
1323 }
1324 return osmo_fsm_inst_dispatch(msc_a->ho.fi, ho_fi_event, (void*)d);
1325}
1326
1327int msc_a_ran_dec_from_msc_i(struct msc_a *msc_a, struct msc_a_ran_dec_data *d)
1328{
1329 struct vlr_subscr *vsub = msc_a_vsub(msc_a);
1330 const struct ran_msg *msg = d->ran_dec;
1331 int rc = -99;
1332
1333 switch (msg->msg_type) {
1334
1335 case RAN_MSG_COMPL_L3:
1336 msc_a->via_cell = (struct osmo_cell_global_id){
1337 .lai.plmn = msc_a_net(msc_a)->plmn,
1338 };
1339 gsm0808_cell_id_to_cgi(&msc_a->via_cell, msg->compl_l3.cell_id);
1340 rc = msc_a_up_l3(msc_a, msg->compl_l3.msg);
1341 if (!rc) {
1342 struct ran_conn *conn = msub_ran_conn(msc_a->c.msub);
1343 if (conn)
1344 ran_peer_cells_seen_add(conn->ran_peer, msg->compl_l3.cell_id);
1345 }
1346 break;
1347
1348 case RAN_MSG_DTAP:
1349 rc = msc_a_up_l3(msc_a, msg->dtap);
1350 break;
1351
1352 case RAN_MSG_CLEAR_REQUEST:
1353 rc = osmo_fsm_inst_dispatch(msc_a->c.fi, MSC_A_EV_MO_CLOSE, NULL);
1354 break;
1355
1356 case RAN_MSG_CLEAR_COMPLETE:
1357 switch (msc_a->c.fi->state) {
1358 case MSC_A_ST_RELEASING:
1359 msc_a_put_all(msc_a, MSC_A_USE_WAIT_CLEAR_COMPLETE);
1360 msc_a_state_chg(msc_a, MSC_A_ST_RELEASED);
1361 break;
1362 case MSC_A_ST_RELEASED:
1363 break;
1364 default:
1365 LOG_MSC_A(msc_a, LOGL_ERROR, "Received Clear Complete event, but did not send Clear Command\n");
1366 msc_a_state_chg(msc_a, MSC_A_ST_RELEASING);
1367 break;
1368 }
1369 rc = 0;
1370 break;
1371
1372 case RAN_MSG_CLASSMARK_UPDATE:
1373 msc_a_up_classmark_update(msc_a, msg->classmark_update.classmark, NULL);
1374 rc = 0;
1375 break;
1376
1377 case RAN_MSG_CIPHER_MODE_COMPLETE:
1378 /* Remember what Ciphering was negotiated (e.g. for Handover) */
1379 if (msg->cipher_mode_complete.alg_id) {
1380 msc_a->geran_encr.alg_id = msg->cipher_mode_complete.alg_id;
1381 LOG_MSC_A(msc_a, LOGL_DEBUG, "Cipher Mode Complete: chosen encryption algorithm: A5/%u\n",
1382 msc_a->geran_encr.alg_id - 1);
1383 };
1384 vlr_subscr_rx_ciph_res(vsub, VLR_CIPH_COMPL);
1385 rc = 0;
1386 break;
1387
1388 case RAN_MSG_CIPHER_MODE_REJECT:
1389 vlr_subscr_rx_ciph_res(vsub, VLR_CIPH_REJECT);
1390 rc = 0;
1391 break;
1392
1393 case RAN_MSG_ASSIGNMENT_COMPLETE:
1394 msc_a_up_call_assignment_complete(msc_a, msg);
1395 rc = 0;
1396 break;
1397
1398 case RAN_MSG_ASSIGNMENT_FAILURE:
1399 msc_a_up_call_assignment_failure(msc_a, msg);
1400 rc = 0;
1401 break;
1402
1403 case RAN_MSG_SAPI_N_REJECT:
1404 msc_a_up_sapi_n_reject(msc_a, msg);
1405 rc = 0;
1406 break;
1407
1408 case RAN_MSG_HANDOVER_PERFORMED:
1409 /* The BSS lets us know that a handover happened within the BSS, which doesn't concern us. */
1410 LOG_MSC_A(msc_a, LOGL_ERROR, "'Handover Performed' handling not implemented\n");
1411 break;
1412
1413 case RAN_MSG_HANDOVER_REQUIRED:
1414 /* The BSS lets us know that it wants to handover to a different cell */
1415 rc = osmo_fsm_inst_dispatch(msc_a->c.fi, MSC_A_EV_HANDOVER_REQUIRED, (void*)&msg->handover_required);
1416 break;
1417
1418 case RAN_MSG_HANDOVER_FAILURE:
1419 rc = msc_a_up_ho(msc_a, d, MSC_HO_EV_RX_FAILURE);
1420 break;
1421
1422 default:
1423 LOG_MSC_A(msc_a, LOGL_ERROR, "Message from MSC-I not implemented: %s\n", ran_msg_type_name(msg->msg_type));
1424 rc = -ENOTSUP;
1425 break;
1426 }
1427 return rc;
1428}
1429
1430static int msc_a_ran_dec_from_msc_t(struct msc_a *msc_a, struct msc_a_ran_dec_data *d)
1431{
1432 struct msc_t *msc_t = msc_a_msc_t(msc_a);
1433 int rc = -99;
1434
1435 if (!msc_t) {
1436 LOG_MSC_A(msc_a, LOGL_ERROR, "Rx message from MSC-T role, but I have no active MSC-T role.\n");
1437 return -EINVAL;
1438 }
1439
1440 OSMO_ASSERT(d->ran_dec);
1441
1442 switch (d->ran_dec->msg_type) {
1443
1444 case RAN_MSG_CLEAR_REQUEST:
1445 rc = osmo_fsm_inst_dispatch(msc_t->c.fi, MSC_T_EV_MO_CLOSE, NULL);
1446 break;
1447
1448 case RAN_MSG_CLEAR_COMPLETE:
1449 rc = osmo_fsm_inst_dispatch(msc_t->c.fi, MSC_T_EV_CLEAR_COMPLETE, NULL);
1450 break;
1451
1452 case RAN_MSG_CLASSMARK_UPDATE:
1453 msc_a_up_classmark_update(msc_a, d->ran_dec->classmark_update.classmark, &msc_t->classmark);
1454 rc = 0;
1455 break;
1456
1457 case RAN_MSG_HANDOVER_REQUEST_ACK:
1458 /* new BSS accepts Handover */
1459 rc = msc_a_up_ho(msc_a, d, MSC_HO_EV_RX_REQUEST_ACK);
1460 break;
1461
1462 case RAN_MSG_HANDOVER_DETECT:
1463 /* new BSS signals the MS is DETECTed on the new lchan */
1464 rc = msc_a_up_ho(msc_a, d, MSC_HO_EV_RX_DETECT);
1465 break;
1466
1467 case RAN_MSG_HANDOVER_COMPLETE:
1468 /* new BSS signals the MS has fully moved to the new lchan */
1469 rc = msc_a_up_ho(msc_a, d, MSC_HO_EV_RX_COMPLETE);
1470 break;
1471
1472 case RAN_MSG_HANDOVER_FAILURE:
1473 rc = msc_a_up_ho(msc_a, d, MSC_HO_EV_RX_FAILURE);
1474 break;
1475
1476 default:
1477 LOG_MSC_A(msc_a, LOGL_ERROR, "Message from MSC-T not implemented: %s\n",
1478 ran_msg_type_name(d->ran_dec->msg_type));
1479 rc = -ENOTSUP;
1480 break;
1481 }
1482 return rc;
1483}
1484
1485int msc_a_ran_decode_cb(struct osmo_fsm_inst *msc_a_fi, void *data, const struct ran_msg *msg)
1486{
1487 struct msc_a *msc_a = msc_a_fi_priv(msc_a_fi);
1488 struct msc_a_ran_dec_data *d = data;
1489 int rc = -99;
1490
1491 d->ran_dec = msg;
1492
1493 switch (d->from_role) {
1494 case MSC_ROLE_I:
1495 LOG_MSC_A(msc_a, LOGL_DEBUG, "RAN decode: %s\n", msg->msg_name ? : ran_msg_type_name(msg->msg_type));
1496 rc = msc_a_ran_dec_from_msc_i(msc_a, d);
1497 break;
1498
1499 case MSC_ROLE_T:
1500 LOG_MSC_A(msc_a, LOGL_DEBUG, "RAN decode from MSC-T: %s\n",
1501 msg->msg_name ? : ran_msg_type_name(msg->msg_type));
1502 rc = msc_a_ran_dec_from_msc_t(msc_a, d);
1503 break;
1504
1505 default:
1506 LOG_MSC_A(msc_a, LOGL_ERROR, "Message from invalid role %s: %s\n", msc_role_name(d->from_role),
1507 ran_msg_type_name(msg->msg_type));
1508 return -ENOTSUP;
1509 }
1510
1511 if (rc)
1512 LOG_MSC_A(msc_a, LOGL_ERROR, "RAN decode error (rc=%d) for %s from %s\n", rc, ran_msg_type_name(msg->msg_type),
1513 msc_role_name(d->from_role));
1514 return rc;
1515}
1516
1517/* Your typical DTAP via FORWARD_ACCESS_SIGNALLING_REQUEST */
1518int _msc_a_ran_down(struct msc_a *msc_a, enum msc_role to_role, const struct ran_msg *ran_msg,
1519 const char *file, int line)
1520{
1521 return _msc_a_msg_down(msc_a, to_role, msub_role_to_role_event(msc_a->c.msub, MSC_ROLE_A, to_role),
1522 ran_msg, file, line);
1523}
1524
1525/* To transmit more complex events than just FORWARD_ACCESS_SIGNALLING_REQUEST, e.g. an
1526 * MSC_T_EV_FROM_A_PREPARE_HANDOVER_REQUEST */
1527int _msc_a_msg_down(struct msc_a *msc_a, enum msc_role to_role, uint32_t to_role_event,
1528 const struct ran_msg *ran_msg,
1529 const char *file, int line)
1530{
1531 struct an_apdu an_apdu = {
1532 .an_proto = msc_a->c.ran->an_proto,
1533 .msg = msc_role_ran_encode(msc_a->c.fi, ran_msg),
1534 };
1535 int rc;
1536 if (!an_apdu.msg)
1537 return -EIO;
1538 rc = _msub_role_dispatch(msc_a->c.msub, to_role, to_role_event, &an_apdu, file, line);
1539 msgb_free(an_apdu.msg);
1540 return rc;
1541}
1542
1543int msc_a_tx_dtap_to_i(struct msc_a *msc_a, struct msgb *dtap)
1544{
1545 struct ran_msg ran_msg;
1546
1547 if (msc_a->c.ran->type == OSMO_RAT_EUTRAN_SGS) {
1548 /* The SGs connection to the MME always is at the MSC-A. */
1549 return sgs_iface_tx_dtap_ud(msc_a, dtap);
1550 }
1551
1552 ran_msg = (struct ran_msg){
1553 .msg_type = RAN_MSG_DTAP,
1554 .dtap = dtap,
1555 };
1556 return msc_a_ran_down(msc_a, MSC_ROLE_I, &ran_msg);
1557}
1558
1559struct msc_a *msc_a_for_vsub(const struct vlr_subscr *vsub, bool valid_conn_only)
1560{
1561 struct msc_a *msc_a = msub_msc_a(msub_for_vsub(vsub));
1562 if (valid_conn_only && !msc_a_is_accepted(msc_a))
1563 return NULL;
1564 return msc_a;
1565}
1566
1567int msc_tx_common_id(struct msc_a *msc_a, enum msc_role to_role)
1568{
1569 struct vlr_subscr *vsub = msc_a_vsub(msc_a);
1570 struct ran_msg msg = {
1571 .msg_type = RAN_MSG_COMMON_ID,
1572 .common_id = {
1573 .imsi = vsub->imsi,
1574 },
1575 };
1576
1577 return msc_a_ran_down(msc_a, to_role, &msg);
1578}
1579
1580static int msc_a_start_assignment(struct msc_a *msc_a, struct gsm_trans *cc_trans)
1581{
1582 struct call_leg *cl = msc_a->cc.call_leg;
1583
1584 OSMO_ASSERT(!msc_a->cc.active_trans);
1585 msc_a->cc.active_trans = cc_trans;
1586
1587 OSMO_ASSERT(cc_trans && cc_trans->type == TRANS_CC);
1588
1589 if (!cl) {
1590 cl = msc_a->cc.call_leg = call_leg_alloc(msc_a->c.fi,
1591 MSC_EV_CALL_LEG_TERM,
1592 MSC_EV_CALL_LEG_RTP_LOCAL_ADDR_AVAILABLE,
1593 MSC_EV_CALL_LEG_RTP_COMPLETE,
1594 MSC_EV_CALL_LEG_RTP_RELEASED);
1595 OSMO_ASSERT(cl);
1596
1597 /* HACK: We put the connection in loopback mode at the beginnig to
1598 * trick the hNodeB into doing the IuUP negotiation with itself.
1599 * This is a hack we need because osmo-mgw does not support IuUP yet, see OS#2459. */
1600 if (msc_a->c.ran->type == OSMO_RAT_UTRAN_IU)
1601 cl->crcx_conn_mode[RTP_TO_RAN] = MGCP_CONN_LOOPBACK;
1602 }
1603
1604 /* This will lead to either MSC_EV_CALL_LEG_LOCAL_ADDR_AVAILABLE or MSC_EV_CALL_LEG_TERM.
1605 * If the local address is already known, then immediately trigger. */
1606 if (call_leg_local_ip(cl, RTP_TO_RAN))
1607 return osmo_fsm_inst_dispatch(msc_a->c.fi, MSC_EV_CALL_LEG_RTP_LOCAL_ADDR_AVAILABLE, cl->rtp[RTP_TO_RAN]);
1608 else
1609 return call_leg_ensure_ci(msc_a->cc.call_leg, RTP_TO_RAN, cc_trans->callref, cc_trans, NULL, NULL);
1610}
1611
1612int msc_a_try_call_assignment(struct gsm_trans *cc_trans)
1613{
1614 struct msc_a *msc_a = cc_trans->msc_a;
1615 OSMO_ASSERT(cc_trans->type == TRANS_CC);
1616
1617 if (msc_a->cc.active_trans == cc_trans) {
1618 /* Assignment for this trans already started earlier. */
1619 return 0;
1620 }
1621
1622 if (msc_a->cc.active_trans) {
1623 LOG_MSC_A(msc_a, LOGL_INFO, "Another call is already ongoing, not assigning yet\n");
1624 return 0;
1625 }
1626
1627 LOG_MSC_A(msc_a, LOGL_DEBUG, "Starting call assignment\n");
1628 return msc_a_start_assignment(msc_a, cc_trans);
1629}
1630
1631const char *msc_a_cm_service_type_to_use(enum osmo_cm_service_type cm_service_type)
1632{
1633 switch (cm_service_type) {
1634 case GSM48_CMSERV_MO_CALL_PACKET:
1635 case GSM48_CMSERV_EMERGENCY:
1636 return MSC_A_USE_CM_SERVICE_CC;
1637
1638 case GSM48_CMSERV_SMS:
1639 return MSC_A_USE_CM_SERVICE_SMS;
1640
1641 case GSM48_CMSERV_SUP_SERV:
1642 return MSC_A_USE_CM_SERVICE_SS;
1643
1644 default:
1645 return NULL;
1646 }
1647}
1648
1649void msc_a_release_cn(struct msc_a *msc_a)
1650{
1651 osmo_fsm_inst_dispatch(msc_a->c.fi, MSC_A_EV_CN_CLOSE, NULL);
1652}
1653
1654void msc_a_release_mo(struct msc_a *msc_a, enum gsm48_gsm_cause gsm_cause)
1655{
1656 osmo_fsm_inst_dispatch(msc_a->c.fi, MSC_A_EV_MO_CLOSE, NULL);
1657}