blob: 9d130c57c2221625aee7d7b91f8fe82baa6aecaf [file] [log] [blame]
Neels Hofmeyrc4628a32018-12-07 14:47:34 +01001/* MSC Handover implementation */
2/*
3 * (C) 2019 by sysmocom - s.m.f.c. GmbH <info@sysmocom.de>
4 * All Rights Reserved
5 *
6 * Author: Neels Hofmeyr
7 *
8 * SPDX-License-Identifier: GPL-2.0+
9 *
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License as published by
12 * the Free Software Foundation; either version 2 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 General Public License for more details.
19 *
20 * You should have received a copy of the GNU General Public License along
21 * with this program; if not, write to the Free Software Foundation, Inc.,
22 * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
23 */
24
25#include <osmocom/core/fsm.h>
26#include <osmocom/gsm/protocol/gsm_08_08.h>
27#include <osmocom/sigtran/sccp_helpers.h>
28
29#include <osmocom/msc/msc_ho.h>
30#include <osmocom/msc/ran_msg.h>
31#include <osmocom/msc/msc_a.h>
32#include <osmocom/msc/msc_i.h>
33#include <osmocom/msc/msc_t.h>
34#include <osmocom/msc/e_link.h>
35#include <osmocom/msc/msc_i_remote.h>
36#include <osmocom/msc/msc_t_remote.h>
37#include <osmocom/msc/neighbor_ident.h>
38#include <osmocom/msc/gsm_data.h>
39#include <osmocom/msc/ran_peer.h>
40#include <osmocom/msc/vlr.h>
41#include <osmocom/msc/transaction.h>
42#include <osmocom/msc/gsm_04_08.h>
43#include <osmocom/msc/call_leg.h>
44#include <osmocom/msc/rtp_stream.h>
45#include <osmocom/msc/mncc_call.h>
46
47struct osmo_fsm msc_ho_fsm;
48
49#define MSC_A_USE_HANDOVER "Handover"
50
51static const struct osmo_tdef_state_timeout msc_ho_fsm_timeouts[32] = {
52 [MSC_HO_ST_REQUIRED] = { .keep_timer = true, .T = -3 },
53 [MSC_HO_ST_WAIT_REQUEST_ACK] = { .keep_timer = true },
54 [MSC_HO_ST_WAIT_COMPLETE] = { .T = -3 },
55};
56
57/* Transition to a state, using the T timer defined in msc_a_fsm_timeouts.
58 * The actual timeout value is in turn obtained from network->T_defs.
59 * Assumes local variable fi exists. */
60#define msc_ho_fsm_state_chg(msc_a, state) \
61 osmo_tdef_fsm_inst_state_chg((msc_a)->ho.fi, state, msc_ho_fsm_timeouts, (msc_a)->c.ran->tdefs, 5)
62
63static __attribute__((constructor)) void msc_ho_fsm_init()
64{
65 osmo_fsm_register(&msc_ho_fsm);
66}
67
68void msc_ho_down_required_reject(struct msc_a *msc_a, enum gsm0808_cause cause)
69{
70 struct msc_i *msc_i = msc_a_msc_i(msc_a);
71 uint32_t event;
72
73 struct ran_msg ran_enc_msg = {
74 .msg_type = RAN_MSG_HANDOVER_REQUIRED_REJECT,
75 .handover_required_reject = {
76 .cause = cause,
77 },
78 };
79
80 if (msc_i->c.remote_to)
81 event = MSC_I_EV_FROM_A_PREPARE_SUBSEQUENT_HANDOVER_ERROR;
82 else
83 event = MSC_I_EV_FROM_A_FORWARD_ACCESS_SIGNALLING_REQUEST;
84
85 msc_a_msg_down(msc_a, MSC_ROLE_I, event, &ran_enc_msg);
86}
87
88/* Even though this is using the 3GPP TS 48.008 definitions and naming, the intention is to be RAN implementation agnostic.
89 * For other RAN types, the 48.008 items shall be translated to their respective counterparts. */
90void msc_ho_start(struct msc_a *msc_a, const struct ran_handover_required *ho_req)
91{
92 if (msc_a->ho.fi) {
93 LOG_HO(msc_a, LOGL_ERROR, "Rx Handover Required, but Handover is still ongoing\n");
94 msc_ho_down_required_reject(msc_a, GSM0808_CAUSE_PROTOCOL_ERROR_BETWEEN_BSS_AND_MSC);
95 return;
96 }
97
98 if (!ho_req->cil.id_list_len) {
99 LOG_HO(msc_a, LOGL_ERROR, "Rx Handover Required without a Cell Identifier List\n");
100 msc_ho_down_required_reject(msc_a, GSM0808_CAUSE_INFORMATION_ELEMENT_OR_FIELD_MISSING);
101 return;
102 }
103
104 if (msc_a_msc_t(msc_a)) {
105 LOG_HO(msc_a, LOGL_ERROR,
106 "Rx Handover Required, but this subscriber still has an active MSC-T role: %s\n",
107 msc_a_msc_t(msc_a)->c.fi->id);
108 /* Protocol error because the BSS is not supposed to send another Handover Required before the previous
109 * attempt has concluded. */
110 msc_ho_down_required_reject(msc_a, GSM0808_CAUSE_PROTOCOL_ERROR_BETWEEN_BSS_AND_MSC);
111 return;
112 }
113
114 /* Paranoia: make sure we start with clean state */
115 msc_a->ho = (struct msc_ho_state){};
116
117 msc_a->ho.fi = osmo_fsm_inst_alloc_child(&msc_ho_fsm, msc_a->c.fi, MSC_A_EV_HANDOVER_END);
118 OSMO_ASSERT(msc_a->ho.fi);
119
120 msc_a->ho.fi->priv = msc_a;
121 msc_a->ho.info = *ho_req;
122 msc_a->ho.next_cil_idx = 0;
123
124 /* Start the timeout */
125 msc_ho_fsm_state_chg(msc_a, MSC_HO_ST_REQUIRED);
126}
127
128static void msc_ho_rtp_rollback_to_old_cell(struct msc_a *msc_a);
129
130static void msc_ho_end(struct msc_a *msc_a, bool success, enum gsm0808_cause cause)
131{
132 struct msc_i *msc_i;
133 struct msc_t *msc_t = msc_a_msc_t(msc_a);
134
135 if (!success) {
136 msc_ho_rtp_rollback_to_old_cell(msc_a);
137 msc_ho_down_required_reject(msc_a, cause);
138 }
139
140 if (success) {
141 /* Any previous call forwarding to a remote MSC becomes obsolete. */
142 if (msc_a->cc.mncc_forwarding_to_remote_ran) {
143 mncc_call_release(msc_a->cc.mncc_forwarding_to_remote_ran);
144 msc_a->cc.mncc_forwarding_to_remote_ran = NULL;
145 }
146
147 /* Replace MSC-I with new MSC-T */
148 if (msc_t->c.remote_to) {
149 /* Inter-MSC Handover. */
150
151 /* The MNCC forwarding set up for inter-MSC handover, so far transitional in msc_a->ho now
152 * becomes the "officially" active MNCC forwarding for this call. */
153 msc_a->cc.mncc_forwarding_to_remote_ran = msc_a->ho.new_cell.mncc_forwarding_to_remote_ran;
154 msc_a->ho.new_cell.mncc_forwarding_to_remote_ran = NULL;
155 mncc_call_reparent(msc_a->cc.mncc_forwarding_to_remote_ran,
156 msc_a->c.fi, -1, MSC_MNCC_EV_CALL_ENDED, NULL, NULL);
157
158 /* inter-MSC link. msc_i_remote_alloc() properly "steals" the e_link from msc_t. */
159 msc_i = msc_i_remote_alloc(msc_a->c.msub, msc_t->c.ran, msc_t->c.remote_to);
160 OSMO_ASSERT(msc_t->c.remote_to == NULL);
161 } else {
162 /* local BSS */
163 msc_i = msc_i_alloc(msc_a->c.msub, msc_t->c.ran);
164 /* msc_i_set_ran_conn() properly "steals" the ran_conn from msc_t */
165 msc_i_set_ran_conn(msc_i, msc_t->ran_conn);
166 }
167 }
168
169 osmo_fsm_inst_term(msc_a->ho.fi, OSMO_FSM_TERM_REGULAR, NULL);
170}
171
172#define msc_ho_failed(msc_a, cause, fmt, args...) do { \
173 LOG_HO(msc_a, LOGL_ERROR, fmt, ##args); \
174 msc_ho_end(msc_a, false, cause); \
175 } while(0)
176#define msc_ho_try_next_cell(msc_a, fmt, args...) do {\
177 LOG_HO(msc_a, LOGL_ERROR, fmt, ##args); \
178 msc_ho_fsm_state_chg(msc_a, MSC_HO_ST_REQUIRED); \
179 } while(0)
180#define msc_ho_success(msc_a) msc_ho_end(msc_a, true, 0)
181
182enum msc_neighbor_type msc_ho_find_target_cell(struct msc_a *msc_a, const struct gsm0808_cell_id *cid,
183 const struct neighbor_ident_entry **remote_msc,
184 struct ran_peer **ran_peer_from_neighbor_ident,
185 struct ran_peer **ran_peer_from_seen_cells)
186{
187 struct gsm_network *net = msc_a_net(msc_a);
188 const struct neighbor_ident_entry *e;
189 struct sccp_ran_inst *sri;
190 struct ran_peer *rp_from_neighbor_ident = NULL;
191 struct ran_peer *rp_from_cell_id = NULL;
192 struct ran_peer *rp;
193 int i;
194
195 OSMO_ASSERT(remote_msc);
196 OSMO_ASSERT(ran_peer_from_neighbor_ident);
197 OSMO_ASSERT(ran_peer_from_seen_cells);
198
199 e = neighbor_ident_find_by_cell(&net->neighbor_ident_list, msc_a->c.ran->type, cid);
200
201 if (e && e->addr.type == MSC_NEIGHBOR_TYPE_REMOTE_MSC) {
202 *remote_msc = e;
203 return MSC_NEIGHBOR_TYPE_REMOTE_MSC;
204 }
205
206 /* It is not a remote MSC target. Figure out local RAN peers. */
207
208 if (e && e->addr.type == MSC_NEIGHBOR_TYPE_LOCAL_RAN_PEER) {
209 /* Find local RAN peer in neighbor config. If anything is wrong with that, just keep
210 * rp_from_neighbor_ident == NULL. */
211
212 struct sccp_ran_inst *sri_from_neighbor_ident = NULL;
213 struct osmo_ss7_instance *ss7 = NULL;
214
215 /* Get the sccp_ran_inst with sanity checkin. If anything is fishy, just keep
216 * sri_from_neighbor_ident == NULL and below code will notice the error. */
217 if (e->addr.ran_type < msc_ran_infra_len) {
218 sri_from_neighbor_ident = msc_ran_infra[e->addr.ran_type].sri;
219 ss7 = osmo_sccp_get_ss7(sri_from_neighbor_ident->sccp);
220 if (!ss7)
221 sri_from_neighbor_ident = NULL;
222 }
223
224 if (!sri_from_neighbor_ident) {
225 LOG_HO(msc_a, LOGL_ERROR, "Cannot handover to RAN type %s\n", osmo_rat_type_name(e->addr.ran_type));
226 } else {
227 /* Interpret the point-code string placed in the neighbors config. */
228 int pc = osmo_ss7_pointcode_parse(ss7, e->addr.local_ran_peer_pc_str);
229
230 if (pc < 0) {
231 LOG_HO(msc_a, LOGL_ERROR, "Invalid point code string: %s\n",
232 osmo_quote_str(e->addr.local_ran_peer_pc_str, -1));
233 } else {
234 struct osmo_sccp_addr addr = {};
235 osmo_sccp_make_addr_pc_ssn(&addr, pc, sri_from_neighbor_ident->ran->ssn);
236 rp_from_neighbor_ident = ran_peer_find_by_addr(sri_from_neighbor_ident, &addr);
237 }
238 }
239
240 if (!rp_from_neighbor_ident) {
241 LOG_HO(msc_a, LOGL_ERROR, "Target RAN peer from neighbor config is not connected:"
242 " Cell ID %s resolves to target address %s\n",
243 gsm0808_cell_id_name(cid), e->addr.local_ran_peer_pc_str);
244 } else if (rp_from_neighbor_ident->fi->state != RAN_PEER_ST_READY) {
245 LOG_HO(msc_a, LOGL_ERROR, "Target RAN peer in invalid state: %s (%s)\n",
246 osmo_fsm_inst_state_name(rp_from_neighbor_ident->fi),
247 rp_from_neighbor_ident->fi->id);
248 rp_from_neighbor_ident = NULL;
249 }
250 }
251
252 /* Figure out actually connected RAN peers for this cell ID.
253 * If no cell has been found yet at all, this might determine a Handover target,
254 * otherwise this is for sanity checking. If none is found, just keep rp_from_cell_id == NULL. */
255
256 /* Iterate all connected RAN peers. Possibly, more than one RAN peer has advertised a match for this Cell ID.
257 * For example, if the handover target is identified as LAC=23 but there are multiple cells with distinct CIs
258 * serving in LAC=23, we have an ambiguity. It's up to the user to configure correctly, help with logging. */
259 for (i = 0; i < msc_ran_infra_len; i++) {
260 sri = msc_ran_infra[i].sri;
261 if (!sri)
262 continue;
263
264 rp = ran_peer_find_by_cell_id(sri, cid, true);
265 if (rp && rp->fi && rp->fi->state == RAN_PEER_ST_READY) {
266 if (rp_from_cell_id) {
267 LOG_HO(msc_a, LOGL_ERROR,
268 "Ambiguous match for cell ID %s: more than one RAN type is serving this cell"
269 " ID: %s and %s\n",
270 gsm0808_cell_id_name(cid),
271 rp_from_cell_id->fi->id,
272 rp->fi->id);
273 /* But logging is all we're going to do about it. */
274 }
275
276 /* Use the first found RAN peer, but if multiple matches are found, favor the one that matches
277 * the current RAN type. */
278 if (!rp_from_cell_id || rp->sri == msc_a->c.ran->sri)
279 rp_from_cell_id = rp;
280 }
281 }
282
283 /* Did we find mismatching targets from neighbor config and from connected cells? */
284 if (rp_from_neighbor_ident && rp_from_cell_id
285 && rp_from_neighbor_ident != rp_from_cell_id) {
286 LOG_HO(msc_a, LOGL_ERROR, "Ambiguous match for cell ID %s:"
287 " neighbor config points at %s; a matching cell is also served by connected RAN peer %s\n",
288 gsm0808_cell_id_name(cid), rp_from_neighbor_ident->fi->id, rp_from_cell_id->fi->id);
289 /* But logging is all we're going to do about it. */
290 }
291
292 if (rp_from_neighbor_ident && rp_from_neighbor_ident->sri != msc_a->c.ran->sri) {
293 LOG_HO(msc_a, LOGL_ERROR,
294 "Neighbor config indicates inter-RAT Handover, which is not implemented. Ignoring target %s\n",
295 rp_from_neighbor_ident->fi->id);
296 rp_from_neighbor_ident = NULL;
297 }
298
299 if (rp_from_cell_id && rp_from_cell_id->sri != msc_a->c.ran->sri) {
300 LOG_HO(msc_a, LOGL_ERROR,
301 "Target RAN peer indicates inter-RAT Handover, which is not implemented. Ignoring target %s\n",
302 rp_from_cell_id->fi->id);
303 rp_from_cell_id = NULL;
304 }
305
306 *ran_peer_from_neighbor_ident = rp_from_neighbor_ident;
307 *ran_peer_from_seen_cells = rp_from_cell_id;
308
309 return rp_from_neighbor_ident || rp_from_cell_id ? MSC_NEIGHBOR_TYPE_LOCAL_RAN_PEER : MSC_NEIGHBOR_TYPE_NONE;
310}
311
312static bool msc_ho_find_next_target_cell(struct msc_a *msc_a)
313{
314 struct vlr_subscr *vsub = msc_a_vsub(msc_a);
315 struct ran_handover_required *info = &msc_a->ho.info;
316 struct gsm0808_cell_id *cid = &msc_a->ho.new_cell.cid;
317 const struct neighbor_ident_entry *e;
318 struct ran_peer *rp_from_neighbor_ident = NULL;
319 struct ran_peer *rp_from_cell_id = NULL;
320 struct ran_peer *rp;
321
322 unsigned int cil_idx = msc_a->ho.next_cil_idx;
323 msc_a->ho.next_cil_idx++;
324
325 msc_a->ho.new_cell.type = MSC_NEIGHBOR_TYPE_NONE;
326
327 if (cil_idx >= info->cil.id_list_len)
328 return false;
329
330 *cid = (struct gsm0808_cell_id){
331 .id_discr = info->cil.id_discr,
332 .id = info->cil.id_list[cil_idx],
333 };
334
335 msc_a->ho.new_cell.cgi = (struct osmo_cell_global_id){
336 .lai = vsub->cgi.lai,
337 };
338 gsm0808_cell_id_to_cgi(&msc_a->ho.new_cell.cgi, cid);
339
340 switch (msc_ho_find_target_cell(msc_a, cid, &e, &rp_from_neighbor_ident, &rp_from_cell_id)) {
341 case MSC_NEIGHBOR_TYPE_REMOTE_MSC:
342 OSMO_ASSERT(e);
343 msc_a->ho.new_cell.ran_type = e->addr.ran_type;
344 msc_a->ho.new_cell.type = MSC_NEIGHBOR_TYPE_REMOTE_MSC;
345 msc_a->ho.new_cell.msc_ipa_name = e->addr.remote_msc_ipa_name.buf;
346 return true;
347
348 case MSC_NEIGHBOR_TYPE_LOCAL_RAN_PEER:
349 rp = rp_from_neighbor_ident ? : rp_from_cell_id;
350 OSMO_ASSERT(rp);
351 msc_a->ho.new_cell.type = MSC_NEIGHBOR_TYPE_LOCAL_RAN_PEER;
352 msc_a->ho.new_cell.ran_peer = rp;
353 return true;
354
355 default:
356 break;
357 }
358
359 LOG_HO(msc_a, LOGL_DEBUG, "Cannot find target peer for cell ID %s\n", gsm0808_cell_id_name(cid));
360 /* Try the next cell id, if any. */
361 return msc_ho_find_next_target_cell(msc_a);
362}
363
364static void msc_ho_fsm_required_onenter(struct osmo_fsm_inst *fi, uint32_t prev_state)
365{
366 struct msc_a *msc_a = fi->priv;
367
368 if (!msc_ho_find_next_target_cell(msc_a)) {
369 int tried = msc_a->ho.next_cil_idx - 1;
370 msc_ho_failed(msc_a, GSM0808_CAUSE_NO_RADIO_RESOURCE_AVAILABLE,
371 "Attempted Handover to %u cells without success\n", tried);
372 return;
373 }
374
375 msc_ho_fsm_state_chg(msc_a, MSC_HO_ST_WAIT_REQUEST_ACK);
376}
377
378static void msc_ho_send_handover_request(struct msc_a *msc_a)
379{
380 struct vlr_subscr *vsub = msc_a_vsub(msc_a);
381 struct gsm_network *net = msc_a_net(msc_a);
382 struct gsm0808_channel_type channel_type;
383 struct ran_msg ran_enc_msg = {
384 .msg_type = RAN_MSG_HANDOVER_REQUEST,
385 .handover_request = {
386 .imsi = vsub->imsi,
387 .classmark = &vsub->classmark,
388 .geran = {
389 .chosen_encryption = &msc_a->geran_encr,
390 .a5_encryption_mask = net->a5_encryption_mask,
391 },
392 .bssap_cause = GSM0808_CAUSE_BETTER_CELL,
393 .current_channel_type_1_present = msc_a->ho.info.current_channel_type_1_present,
394 .current_channel_type_1 = msc_a->ho.info.current_channel_type_1,
395 .speech_version_used = msc_a->ho.info.speech_version_used,
396 .old_bss_to_new_bss_info_raw = msc_a->ho.info.old_bss_to_new_bss_info_raw,
397 .old_bss_to_new_bss_info_raw_len = msc_a->ho.info.old_bss_to_new_bss_info_raw_len,
398
399 /* Don't send AoIP Transport Layer Address for inter-MSC Handover */
400 .rtp_ran_local = (msc_a->ho.new_cell.type == MSC_NEIGHBOR_TYPE_LOCAL_RAN_PEER)
401 ? call_leg_local_ip(msc_a->cc.call_leg, RTP_TO_RAN) : NULL,
402 },
403 };
404
405 if (msc_a->cc.active_trans) {
406 if (mncc_bearer_cap_to_channel_type(&channel_type, &msc_a->cc.active_trans->bearer_cap)) {
407 msc_ho_failed(msc_a, GSM0808_CAUSE_EQUIPMENT_FAILURE,
408 "Failed to encode Bearer Cap to Channel Type\n");
409 return;
410 }
411 ran_enc_msg.handover_request.geran.channel_type = &channel_type;
412 }
413
414 gsm0808_cell_id_from_cgi(&ran_enc_msg.handover_request.cell_id_serving, CELL_IDENT_WHOLE_GLOBAL, &vsub->cgi);
415 ran_enc_msg.handover_request.cell_id_target = msc_a->ho.new_cell.cid;
416
417 if (msc_a_msg_down(msc_a, MSC_ROLE_T, MSC_T_EV_FROM_A_PREPARE_HANDOVER_REQUEST, &ran_enc_msg))
418 msc_ho_try_next_cell(msc_a, "Failed to send Handover Request message\n");
419}
420
421static void msc_ho_fsm_wait_request_ack_onenter(struct osmo_fsm_inst *fi, uint32_t prev_state)
422{
423 struct msc_a *msc_a = fi->priv;
424 struct msc_i *msc_i = msc_a_msc_i(msc_a);
425 struct msc_t *msc_t;
426 struct ran_peer *rp;
427 const char *ipa_name;
428
429 msc_t = msc_a_msc_t(msc_a);
430 if (msc_t) {
431 /* All the other code should prevent this from happening, ever. */
432 msc_ho_failed(msc_a, GSM0808_CAUSE_EQUIPMENT_FAILURE,
433 "Cannot initiate Handover Request, there still is an active MSC-T role: %s\n",
434 msc_t->c.fi->id);
435 return;
436 }
437
438 if (!msc_i) {
439 msc_ho_failed(msc_a, GSM0808_CAUSE_EQUIPMENT_FAILURE,
440 "Cannot initiate Handover Request, there is no MSC-I role\n");
441 return;
442 }
443
444 if (!msc_i->c.remote_to
445 && !(msc_i->ran_conn && msc_i->ran_conn->ran_peer)) {
446 msc_ho_failed(msc_a, GSM0808_CAUSE_EQUIPMENT_FAILURE,
447 "Cannot initiate Handover Request, MSC-I role has no connection\n");
448 return;
449 }
450
451 switch (msc_a->ho.new_cell.type) {
452 case MSC_NEIGHBOR_TYPE_LOCAL_RAN_PEER:
453 rp = msc_a->ho.new_cell.ran_peer;
454 OSMO_ASSERT(rp && rp->fi);
455
456 if (msc_i->c.remote_to) {
457 LOG_HO(msc_a, LOGL_INFO,
458 "Starting inter-MSC Subsequent Handover from remote MSC %s to local %s\n",
459 msc_i->c.remote_to->remote_name, rp->fi->id);
460 msc_a->ho.subsequent_ho = true;
461 } else {
462 LOG_HO(msc_a, LOGL_INFO, "Starting inter-BSC Handover from %s to %s\n",
463 msc_i->ran_conn->ran_peer->fi->id, rp->fi->id);
464 }
465
466 msc_t_alloc(msc_a->c.msub, rp);
467 msc_ho_send_handover_request(msc_a);
468 return;
469
470 case MSC_NEIGHBOR_TYPE_REMOTE_MSC:
471 ipa_name = msc_a->ho.new_cell.msc_ipa_name;
472 OSMO_ASSERT(ipa_name);
473
474 if (msc_i->c.remote_to) {
475 LOG_HO(msc_a, LOGL_INFO,
476 "Starting inter-MSC Subsequent Handover from remote MSC %s to remote MSC at %s\n",
477 msc_i->c.remote_to->remote_name, osmo_quote_str(ipa_name, -1));
478 msc_a->ho.subsequent_ho = true;
479 } else {
480 LOG_HO(msc_a, LOGL_INFO, "Starting inter-MSC Handover from local %s to remote MSC at %s\n",
481 msc_i->ran_conn->ran_peer->fi->id,
482 osmo_quote_str(ipa_name, -1));
483 }
484
485 msc_t_remote_alloc(msc_a->c.msub, msc_a->c.ran, (const uint8_t*)ipa_name, strlen(ipa_name));
486 msc_ho_send_handover_request(msc_a);
487 return;
488
489 default:
490 msc_ho_try_next_cell(msc_a, "unknown Handover target type %d\n", msc_a->ho.new_cell.type);
491 return;
492 }
493
494 msc_t = msc_a_msc_t(msc_a);
495 if (!msc_t) {
496 /* There should definitely be one now. */
497 msc_ho_failed(msc_a, GSM0808_CAUSE_EQUIPMENT_FAILURE,
498 "Cannot initiate Handover Request, failed to set up a target MSC-T\n");
499 return;
500 }
501}
502
503static void msc_ho_rx_request_ack(struct msc_a *msc_a, struct msc_a_ran_dec_data *hra);
504
505static void msc_ho_fsm_wait_request_ack(struct osmo_fsm_inst *fi, uint32_t event, void *data)
506{
507 struct msc_a *msc_a = fi->priv;
508
509 switch (event) {
510
511 case MSC_HO_EV_RX_REQUEST_ACK:
512 msc_ho_rx_request_ack(msc_a, (struct msc_a_ran_dec_data*)data);
513 return;
514
515 case MSC_HO_EV_RX_FAILURE:
516 msc_ho_failed(msc_a, GSM0808_CAUSE_NO_RADIO_RESOURCE_AVAILABLE,
517 "Received Handover Failure message\n");
518 return;
519
520 default:
521 OSMO_ASSERT(false);
522 }
523}
524
525static void msc_ho_rtp_switch_to_new_cell(struct msc_a *msc_a);
526
527void msc_ho_mncc_forward_cb(struct mncc_call *mncc_call, const union mncc_msg *mncc_msg, void *data)
528{
529 struct msc_a *msc_a = data;
530 switch (mncc_msg->msg_type) {
531 case MNCC_RTP_CONNECT:
532 msc_a->ho.rtp_switched_to_new_cell = true;
533 return;
534 default:
535 return;
536 }
537}
538
539/* Initiate call forwarding via MNCC: call the Handover Number that the other MSC assigned. */
540static int msc_ho_start_inter_msc_call_forwarding(struct msc_a *msc_a, struct msc_t *msc_t,
541 const struct msc_a_ran_dec_data *hra)
542{
543 const struct osmo_gsup_message *e_info = hra->an_apdu->e_info;
544 struct gsm_mncc outgoing_call_req = {};
545 struct call_leg *cl = msc_a->cc.call_leg;
546 struct rtp_stream *rtp_to_ran = cl ? cl->rtp[RTP_TO_RAN] : NULL;
547 struct mncc_call *mncc_call;
548
549 if (!e_info || !e_info->msisdn_enc || !e_info->msisdn_enc_len) {
550 msc_ho_try_next_cell(msc_a,
551 "No Handover Number in Handover Request Acknowledge from remote MSC\n");
552 return -EINVAL;
553 }
554
555 /* Backup old cell's RTP IP:port and codec data */
556 msc_a->ho.old_cell.ran_remote_rtp = rtp_to_ran->remote;
557 msc_a->ho.old_cell.codec = rtp_to_ran->codec;
558
559 /* Blindly taken over from an MNCC trace of existing code: send an all-zero CCCAP: */
560 outgoing_call_req.fields |= MNCC_F_CCCAP;
561
562 /* Called number */
563 outgoing_call_req.fields |= MNCC_F_CALLED;
564 outgoing_call_req.called.plan = 1; /* Empirical magic number. There seem to be no enum or defines for this.
565 * The only other place setting this apparently is gsm48_decode_called(). */
566 if (gsm48_decode_bcd_number2(outgoing_call_req.called.number, sizeof(outgoing_call_req.called.number),
567 e_info->msisdn_enc, e_info->msisdn_enc_len, 0)) {
568 msc_ho_try_next_cell(msc_a,
569 "Failed to decode Handover Number in Handover Request Acknowledge"
570 " from remote MSC\n");
571 return -EINVAL;
572 }
573
574 if (msc_a->cc.active_trans) {
575 outgoing_call_req.fields |= MNCC_F_BEARER_CAP;
576 outgoing_call_req.bearer_cap = msc_a->cc.active_trans->bearer_cap;
577 }
578
579 mncc_call = mncc_call_alloc(msc_a_vsub(msc_a),
580 msc_a->ho.fi,
581 MSC_HO_EV_MNCC_FORWARDING_COMPLETE,
582 MSC_HO_EV_MNCC_FORWARDING_FAILED,
583 msc_ho_mncc_forward_cb, msc_a);
584
585 mncc_call_set_rtp_stream(mncc_call, rtp_to_ran);
586 msc_a->ho.new_cell.mncc_forwarding_to_remote_ran = mncc_call;
587 return mncc_call_outgoing_start(mncc_call, &outgoing_call_req);
588}
589
590static void msc_ho_rx_request_ack(struct msc_a *msc_a, struct msc_a_ran_dec_data *hra)
591{
592 struct msc_t *msc_t = msc_a_msc_t(msc_a);
593 struct ran_msg ran_enc_msg;
594
595 OSMO_ASSERT(hra->ran_dec);
596 OSMO_ASSERT(hra->an_apdu);
597
598 if (!msc_t) {
599 msc_ho_failed(msc_a, GSM0808_CAUSE_EQUIPMENT_FAILURE, "MSC-T role missing\n");
600 return;
601 }
602
603 if (!hra->ran_dec->handover_request_ack.rr_ho_command
604 || !hra->ran_dec->handover_request_ack.rr_ho_command_len) {
605 msc_ho_try_next_cell(msc_a, "Missing mandatory IE in Handover Request Acknowledge:"
606 " L3 Info (RR Handover Command)\n");
607 return;
608 }
609
610 if (!hra->ran_dec->handover_request_ack.chosen_channel_present) {
611 LOG_HO(msc_a, LOGL_DEBUG, "No 'Chosen Channel' IE in Handover Request Ack\n");
612 msc_t->geran.chosen_channel = 0;
613 } else
614 msc_t->geran.chosen_channel = hra->ran_dec->handover_request_ack.chosen_channel;
615
616 if (!hra->ran_dec->handover_request_ack.chosen_encr_alg) {
617 LOG_HO(msc_a, LOGL_DEBUG, "No 'Chosen Encryption Algorithm' IE in Handover Request Ack\n");
618 msc_t->geran.chosen_encr_alg = 0;
619 } else {
620 msc_t->geran.chosen_encr_alg = hra->ran_dec->handover_request_ack.chosen_encr_alg;
621 if (msc_t->geran.chosen_encr_alg < 1 || msc_t->geran.chosen_encr_alg > 8) {
622 msc_ho_try_next_cell(msc_a, "Handover Request Ack: Invalid 'Chosen Encryption Algorithm': %u\n",
623 msc_t->geran.chosen_encr_alg);
624 return;
625 }
626 }
627
628 msc_t->geran.chosen_speech_version = hra->ran_dec->handover_request_ack.chosen_speech_version;
629 if (!msc_t->geran.chosen_speech_version)
630 LOG_HO(msc_a, LOGL_DEBUG, "No 'Chosen Speech Version' IE in Handover Request Ack\n");
631
632 /* Inter-MSC call forwarding? */
633 if (msc_a->ho.new_cell.type == MSC_NEIGHBOR_TYPE_REMOTE_MSC) {
634 if (msc_ho_start_inter_msc_call_forwarding(msc_a, msc_t, hra))
635 return;
636 }
637
638 msc_ho_fsm_state_chg(msc_a, MSC_HO_ST_WAIT_COMPLETE);
639
640 /* Forward the RR Handover Command composed by the new RAN peer down to the old RAN peer */
641 ran_enc_msg = (struct ran_msg){
642 .msg_type = RAN_MSG_HANDOVER_COMMAND,
643 .handover_command = {
644 .rr_ho_command = hra->ran_dec->handover_request_ack.rr_ho_command,
645 .rr_ho_command_len = hra->ran_dec->handover_request_ack.rr_ho_command_len,
646 },
647 };
648
649 if (msc_a_msg_down(msc_a, MSC_ROLE_I,
650 msc_a->ho.subsequent_ho ? MSC_I_EV_FROM_A_PREPARE_SUBSEQUENT_HANDOVER_RESULT
651 : MSC_I_EV_FROM_A_FORWARD_ACCESS_SIGNALLING_REQUEST,
652 &ran_enc_msg)) {
653 msc_ho_failed(msc_a, GSM0808_CAUSE_EQUIPMENT_FAILURE, "Failed to send Handover Command\n");
654 return;
655 }
656
657 msc_a->ho.new_cell.ran_remote_rtp = hra->ran_dec->handover_request_ack.remote_rtp;
658 if (osmo_sockaddr_str_is_set(&msc_a->ho.new_cell.ran_remote_rtp)) {
659 LOG_HO(msc_a, LOGL_DEBUG, "Request Ack contains cell's RTP address " OSMO_SOCKADDR_STR_FMT "\n",
660 OSMO_SOCKADDR_STR_FMT_ARGS(&msc_a->ho.new_cell.ran_remote_rtp));
661 }
662
663 msc_a->ho.new_cell.codec_present = hra->ran_dec->handover_request_ack.codec_present;
664 msc_a->ho.new_cell.codec = hra->ran_dec->handover_request_ack.codec;
665 if (hra->ran_dec->handover_request_ack.codec_present) {
666 LOG_HO(msc_a, LOGL_DEBUG, "Request Ack contains codec %s\n",
667 osmo_mgcpc_codec_name(msc_a->ho.new_cell.codec));
668 }
669}
670
671static void msc_ho_rtp_switch_to_new_cell(struct msc_a *msc_a)
672{
673 struct call_leg *cl = msc_a->cc.call_leg;
674 struct rtp_stream *rtp_to_ran = cl ? cl->rtp[RTP_TO_RAN] : NULL;
675
676 if (!rtp_to_ran) {
677 LOG_HO(msc_a, LOGL_DEBUG, "No RTP stream, nothing to switch\n");
678 return;
679 }
680
681 if (!osmo_sockaddr_str_is_set(&msc_a->ho.new_cell.ran_remote_rtp)) {
682 LOG_HO(msc_a, LOGL_DEBUG, "New cell's RTP IP:port not yet known, not switching RTP stream\n");
683 return;
684 }
685
686 if (msc_a->ho.rtp_switched_to_new_cell) {
687 LOG_HO(msc_a, LOGL_DEBUG, "Already switched RTP to new cell\n");
688 return;
689 }
690 msc_a->ho.rtp_switched_to_new_cell = true;
691
692 /* Backup old cell's RTP IP:port and codec data */
693 msc_a->ho.old_cell.ran_remote_rtp = rtp_to_ran->remote;
694 msc_a->ho.old_cell.codec = rtp_to_ran->codec;
695
696 LOG_HO(msc_a, LOGL_DEBUG, "Switching RTP stream to new cell: from " OSMO_SOCKADDR_STR_FMT " to " OSMO_SOCKADDR_STR_FMT "\n",
697 OSMO_SOCKADDR_STR_FMT_ARGS(&msc_a->ho.old_cell.ran_remote_rtp),
698 OSMO_SOCKADDR_STR_FMT_ARGS(&msc_a->ho.new_cell.ran_remote_rtp));
699
700 /* If a previous forwarding to a remote MSC is still active, this now becomes no longer responsible for the RTP
701 * stream. */
702 if (msc_a->cc.mncc_forwarding_to_remote_ran) {
703 if (msc_a->cc.mncc_forwarding_to_remote_ran->rtps != rtp_to_ran) {
704 LOG_HO(msc_a, LOGL_ERROR,
705 "Unexpected state: previous MNCC forwarding not using RTP-to-RAN stream\n");
706 /* That would be weird, but carry on anyway... */
707 }
708 mncc_call_detach_rtp_stream(msc_a->cc.mncc_forwarding_to_remote_ran);
709 }
710
711 /* Switch over to the new peer */
712 rtp_stream_set_remote_addr(rtp_to_ran, &msc_a->ho.new_cell.ran_remote_rtp);
713 if (msc_a->ho.new_cell.codec_present)
714 rtp_stream_set_codec(rtp_to_ran, msc_a->ho.new_cell.codec);
715 else
716 LOG_HO(msc_a, LOGL_ERROR, "No codec is set\n");
717 rtp_stream_commit(rtp_to_ran);
718}
719
720static void msc_ho_rtp_rollback_to_old_cell(struct msc_a *msc_a)
721{
722 struct call_leg *cl = msc_a->cc.call_leg;
723 struct rtp_stream *rtp_to_ran = cl ? cl->rtp[RTP_TO_RAN] : NULL;
724
725 if (!msc_a->ho.rtp_switched_to_new_cell) {
726 LOG_HO(msc_a, LOGL_DEBUG, "Not switched RTP to new cell yet, no need to roll back\n");
727 return;
728 }
729
730 if (!rtp_to_ran) {
731 LOG_HO(msc_a, LOGL_DEBUG, "No RTP stream, nothing to switch\n");
732 return;
733 }
734
735 if (!osmo_sockaddr_str_is_set(&msc_a->ho.old_cell.ran_remote_rtp)) {
736 LOG_HO(msc_a, LOGL_DEBUG, "Have no RTP IP:port for the old cell, not switching back to\n");
737 return;
738 }
739
740 /* The new call forwarding to a remote MSC is no longer needed because the handover failed */
741 if (msc_a->ho.new_cell.mncc_forwarding_to_remote_ran)
742 mncc_call_detach_rtp_stream(msc_a->ho.new_cell.mncc_forwarding_to_remote_ran);
743
744 /* If before this handover, there was a call forwarding to a remote MSC in place, this now goes back into
745 * responsibility. */
746 if (msc_a->cc.mncc_forwarding_to_remote_ran)
747 mncc_call_set_rtp_stream(msc_a->cc.mncc_forwarding_to_remote_ran, rtp_to_ran);
748
749 msc_a->ho.rtp_switched_to_new_cell = false;
750 msc_a->ho.ready_to_switch_rtp = false;
751 LOG_HO(msc_a, LOGL_NOTICE, "Switching RTP back to old cell\n");
752
753 /* Switch back to the old cell */
754 rtp_stream_set_remote_addr(rtp_to_ran, &msc_a->ho.old_cell.ran_remote_rtp);
755 rtp_stream_set_codec(rtp_to_ran, msc_a->ho.old_cell.codec);
756 rtp_stream_commit(rtp_to_ran);
757}
758
759static void msc_ho_send_handover_succeeded(struct msc_a *msc_a)
760{
761 struct ran_msg ran_enc_msg = {
762 .msg_type = RAN_MSG_HANDOVER_SUCCEEDED,
763 };
764
765 if (msc_a_msg_down(msc_a, MSC_ROLE_I, MSC_I_EV_FROM_A_FORWARD_ACCESS_SIGNALLING_REQUEST, &ran_enc_msg))
766 msc_ho_failed(msc_a, GSM0808_CAUSE_EQUIPMENT_FAILURE, "Failed to send Handover Succeeded message\n");
767}
768
769static void msc_ho_fsm_wait_complete(struct osmo_fsm_inst *fi, uint32_t event, void *data)
770{
771 struct msc_a *msc_a = fi->priv;
772
773 switch (event) {
774
775 case MSC_HO_EV_RX_DETECT:
776 msc_a->ho.ready_to_switch_rtp = true;
777 /* For inter-MSC, the mncc_fsm switches the rtp_stream upon MNCC_RTP_CONNECT.
778 * For inter-BSC, need to switch here to the address obtained from Handover Request Ack. */
779 if (msc_a->ho.new_cell.type == MSC_NEIGHBOR_TYPE_LOCAL_RAN_PEER)
780 msc_ho_rtp_switch_to_new_cell(msc_a);
781 msc_ho_send_handover_succeeded(msc_a);
782 return;
783
784 case MSC_HO_EV_RX_COMPLETE:
785 msc_ho_success(msc_a);
786 return;
787
788 case MSC_HO_EV_RX_FAILURE:
789 msc_ho_failed(msc_a, GSM0808_CAUSE_NO_RADIO_RESOURCE_AVAILABLE,
790 "Received Handover Failure message\n");
791 return;
792
793 case MSC_HO_EV_MNCC_FORWARDING_FAILED:
794 msc_ho_failed(msc_a, GSM0808_CAUSE_EQUIPMENT_FAILURE, "MNCC Forwarding failed\n");
795 return;
796
797 case MSC_HO_EV_MNCC_FORWARDING_COMPLETE:
798 return;
799
800 default:
801 OSMO_ASSERT(false);
802 }
803}
804
805static void msc_ho_fsm_cleanup(struct osmo_fsm_inst *fi, enum osmo_fsm_term_cause cause)
806{
807 struct msc_a *msc_a = fi->priv;
808 struct msc_t *msc_t = msc_a_msc_t(msc_a);
809
810 /* paranoia */
811 if (msc_a->ho.fi != fi)
812 return;
813
814 /* Completely clear all handover state */
815 msc_a->ho = (struct msc_ho_state){};
816
817 if (msc_t)
818 msc_t_clear(msc_t);
819}
820
821static int msc_ho_fsm_timer_cb(struct osmo_fsm_inst *fi)
822{
823 return 1;
824}
825
826#define S(x) (1 << (x))
827
828static const struct osmo_fsm_state msc_ho_fsm_states[] = {
829 [MSC_HO_ST_REQUIRED] = {
830 .name = OSMO_STRINGIFY(MSC_HO_ST_REQUIRED),
831 .out_state_mask = 0
832 | S(MSC_HO_ST_REQUIRED)
833 | S(MSC_HO_ST_WAIT_REQUEST_ACK)
834 ,
835 .onenter = msc_ho_fsm_required_onenter,
836 },
837 [MSC_HO_ST_WAIT_REQUEST_ACK] = {
838 .name = OSMO_STRINGIFY(MSC_HO_ST_WAIT_REQUEST_ACK),
839 .in_event_mask = 0
840 | S(MSC_HO_EV_RX_REQUEST_ACK)
841 | S(MSC_HO_EV_RX_FAILURE)
842 ,
843 .out_state_mask = 0
844 | S(MSC_HO_ST_REQUIRED)
845 | S(MSC_HO_ST_WAIT_COMPLETE)
846 ,
847 .onenter = msc_ho_fsm_wait_request_ack_onenter,
848 .action = msc_ho_fsm_wait_request_ack,
849 },
850 [MSC_HO_ST_WAIT_COMPLETE] = {
851 .name = OSMO_STRINGIFY(MSC_HO_ST_WAIT_COMPLETE),
852 .in_event_mask = 0
853 | S(MSC_HO_EV_RX_DETECT)
854 | S(MSC_HO_EV_RX_COMPLETE)
855 | S(MSC_HO_EV_RX_FAILURE)
856 | S(MSC_HO_EV_MNCC_FORWARDING_COMPLETE)
857 | S(MSC_HO_EV_MNCC_FORWARDING_FAILED)
858 ,
859 .action = msc_ho_fsm_wait_complete,
860 },
861};
862
863static const struct value_string msc_ho_fsm_event_names[] = {
864 OSMO_VALUE_STRING(MSC_HO_EV_RX_REQUEST_ACK),
865 OSMO_VALUE_STRING(MSC_HO_EV_RX_DETECT),
866 OSMO_VALUE_STRING(MSC_HO_EV_RX_COMPLETE),
867 OSMO_VALUE_STRING(MSC_HO_EV_RX_FAILURE),
868 {}
869};
870
871struct osmo_fsm msc_ho_fsm = {
872 .name = "handover",
873 .states = msc_ho_fsm_states,
874 .num_states = ARRAY_SIZE(msc_ho_fsm_states),
875 .log_subsys = DHO,
876 .event_names = msc_ho_fsm_event_names,
877 .timer_cb = msc_ho_fsm_timer_cb,
878 .cleanup = msc_ho_fsm_cleanup,
879};