blob: 2e498a28be6ed16718e2efd7d9ba42cbcae858a2 [file] [log] [blame]
Neels Hofmeyrc4628a32018-12-07 14:47:34 +01001/* BSSAP/BSSMAP encoding and decoding for MSC */
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/byteswap.h>
26
27#include <osmocom/crypt/auth.h>
28
29#include <osmocom/gsm/tlv.h>
30#include <osmocom/gsm/gsm0808.h>
31#include <osmocom/gsm/mncc.h>
32#include <osmocom/gsm/gsm48.h>
33
34#include <osmocom/msc/debug.h>
35#include <osmocom/msc/ran_msg_a.h>
36#include <osmocom/msc/sccp_ran.h>
37
38#define LOG_RAN_A_DEC(RAN_DEC, level, fmt, args...) \
39 LOG_RAN_DEC(RAN_DEC, DBSSAP, level, "BSSMAP: " fmt, ## args)
40
41/* Assumes presence of struct ran_dec *ran_dec and ran_dec_msg.msg_name (set) in the local scope. */
42#define LOG_RAN_A_DEC_MSG(level, fmt, args...) \
43 LOG_RAN_DEC(ran_dec, DBSSAP, level, "%s: " fmt, ran_dec_msg.msg_name, ## args)
44
45#define LOG_RAN_A_ENC(FI, level, fmt, args...) \
46 LOG_RAN_ENC(FI, DBSSAP, level, "BSSMAP: " fmt, ## args)
47
48static int ran_a_decode_l3_compl(struct ran_dec *ran_dec, struct msgb *msg, struct tlv_parsed *tp)
49{
50 struct gsm0808_cell_id_list2 cil;
51 struct gsm0808_cell_id cell_id;
52 struct tlv_p_entry *ie_cell_id = TLVP_GET(tp, GSM0808_IE_CELL_IDENTIFIER);
53 struct tlv_p_entry *ie_l3_info = TLVP_GET(tp, GSM0808_IE_LAYER_3_INFORMATION);
54 struct ran_msg ran_dec_msg = {
55 .msg_type = RAN_MSG_COMPL_L3,
56 .msg_name = "BSSMAP Complete Layer 3",
57 .compl_l3 = {
58 .cell_id = &cell_id,
59 .msg = msg,
60 },
61 };
62 int rc;
63
64 if (!ie_cell_id) {
65 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Mandatory CELL IDENTIFIER not present, discarding message\n");
66 return -EINVAL;
67 }
68 if (!ie_l3_info) {
69 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Mandatory LAYER 3 INFORMATION not present, discarding message\n");
70 return -EINVAL;
71 }
72
73 /* Parse Cell ID element -- this should yield a cell identifier "list" with 1 element. */
74
75 rc = gsm0808_dec_cell_id_list2(&cil, ie_cell_id->val, ie_cell_id->len);
76 if (rc < 0) {
77 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Decoding CELL IDENTIFIER gave rc=%d\n", rc);
78 return -EINVAL;
79 }
80 if (cil.id_list_len != 1) {
81 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Unable to parse element CELL IDENTIFIER, discarding message\n");
82 return -EINVAL;
83 }
84
85 /* Sanity check the Cell Identity */
86 switch (cil.id_discr) {
87 case CELL_IDENT_WHOLE_GLOBAL:
88 case CELL_IDENT_LAI_AND_LAC:
89 case CELL_IDENT_LAC_AND_CI:
90 case CELL_IDENT_LAC:
91 break;
92
93 case CELL_IDENT_CI:
94 case CELL_IDENT_NO_CELL:
95 case CELL_IDENT_BSS:
96 default:
97 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "CELL IDENTIFIER does not specify a LAC, discarding message: %s\n",
98 gsm0808_cell_id_list_name(&cil));
99 return -EINVAL;
100 }
101
102 cell_id = (struct gsm0808_cell_id){
103 .id_discr = cil.id_discr,
104 .id = cil.id_list[0],
105 };
106
107 /* Parse Layer 3 Information element */
108 msg->l3h = (uint8_t*)ie_l3_info->val;
109 msgb_l3trim(msg, ie_l3_info->len);
110
111 if (msgb_l3len(msg) < sizeof(struct gsm48_hdr)) {
112 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "too short L3 info (%d), discarding message\n", msgb_l3len(msg));
113 return -ENODATA;
114 }
115
116 return ran_decoded(ran_dec, &ran_dec_msg);
117}
118
119static int ran_a_decode_clear_request(struct ran_dec *ran_dec, struct msgb *msg, struct tlv_parsed *tp)
120{
121 struct tlv_p_entry *ie_cause = TLVP_GET(tp, GSM0808_IE_CAUSE);
122 struct ran_msg ran_dec_msg = {
123 .msg_type = RAN_MSG_CLEAR_REQUEST,
124 .msg_name = "BSSMAP Clear Request",
125 };
126
127 if (!ie_cause) {
128 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Cause code is missing, using GSM0808_CAUSE_EQUIPMENT_FAILURE\n");
129 ran_dec_msg.clear_request.bssap_cause = GSM0808_CAUSE_EQUIPMENT_FAILURE;
130 } else {
131 ran_dec_msg.clear_request.bssap_cause = ie_cause->val[0];
132 }
133
134 return ran_decoded(ran_dec, &ran_dec_msg);
135}
136
137static int ran_a_decode_clear_complete(struct ran_dec *ran_dec, struct msgb *msg, struct tlv_parsed *tp)
138{
139 struct ran_msg ran_dec_msg = {
140 .msg_type = RAN_MSG_CLEAR_COMPLETE,
141 .msg_name = "BSSMAP Clear Complete",
142 };
143 return ran_decoded(ran_dec, &ran_dec_msg);
144}
145
146static int ran_a_decode_classmark_update(struct ran_dec *ran_dec, struct msgb *msg, struct tlv_parsed *tp)
147{
148 struct tlv_p_entry *ie_cm2 = TLVP_GET(tp, GSM0808_IE_CLASSMARK_INFORMATION_T2);
149 struct tlv_p_entry *ie_cm3 = TLVP_GET(tp, GSM0808_IE_CLASSMARK_INFORMATION_T3);
150 struct osmo_gsm48_classmark cm = {};
151 struct ran_msg ran_dec_msg = {
152 .msg_type = RAN_MSG_CLASSMARK_UPDATE,
153 .msg_name = "BSSMAP Classmark Update",
154 .classmark_update = {
155 .classmark = &cm,
156 },
157 };
158
159 if (!ie_cm2) {
160 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "mandatory Classmark Information Type 2 not present, discarding message\n");
161 return -EINVAL;
162 }
163
164 cm.classmark2_len = OSMO_MIN(sizeof(cm.classmark2), ie_cm2->len);
165 memcpy(&cm.classmark2, ie_cm2->val, cm.classmark2_len);
166
167 if (ie_cm3) {
168 cm.classmark3_len = OSMO_MIN(sizeof(cm.classmark3), ie_cm3->len);
169 memcpy(&cm.classmark3, ie_cm3->val, cm.classmark3_len);
170 }
171
172 return ran_decoded(ran_dec, &ran_dec_msg);
173}
174
175static int ran_a_decode_cipher_mode_complete(struct ran_dec *ran_dec, struct msgb *msg, struct tlv_parsed *tp)
176{
177 struct tlv_p_entry *ie_chosen_encr_alg = TLVP_GET(tp, GSM0808_IE_CHOSEN_ENCR_ALG);
178 struct tlv_p_entry *ie_l3_msg = TLVP_GET(tp, GSM0808_IE_LAYER_3_MESSAGE_CONTENTS);
179 int rc;
180 struct ran_msg ran_dec_msg = {
181 .msg_type = RAN_MSG_CIPHER_MODE_COMPLETE,
182 .msg_name = "BSSMAP Ciphering Mode Complete",
183 };
184
185 if (ie_chosen_encr_alg) {
186 uint8_t ie_val = ie_chosen_encr_alg->val[0];
187 /* 3GPP TS 48.008 3.2.2.44 Chosen Encryption Algorithm encodes as 1 = no encryption, 2 = A5/1, 4 = A5/3.
188 * Internally we handle without this weird off-by-one. */
189 if (ie_val < 1 || ie_val > 8)
190 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Unsupported value for 3.2.2.44 Chosen Encryption Algorithm: %u\n",
191 ie_val);
192 else
193 ran_dec_msg.cipher_mode_complete.alg_id = ie_chosen_encr_alg->val[0];
194 }
195
196 rc = ran_decoded(ran_dec, &ran_dec_msg);
197
198 if (ie_l3_msg) {
199 msg->l3h = (uint8_t*)ie_l3_msg->val;
200 msgb_l3trim(msg, ie_l3_msg->len);
201 ran_dec_msg = (struct ran_msg){
202 .msg_type = RAN_MSG_DTAP,
203 .msg_name = "BSSMAP Ciphering Mode Complete (L3 Message Contents)",
204 .dtap = msg,
205 };
206 ran_decoded(ran_dec, &ran_dec_msg);
207 }
208
209 return rc;
210}
211
212static int ran_a_decode_cipher_mode_reject(struct ran_dec *ran_dec, struct msgb *msg, struct tlv_parsed *tp)
213{
214 int rc;
215 struct ran_msg ran_dec_msg = {
216 .msg_type = RAN_MSG_CIPHER_MODE_REJECT,
217 .msg_name = "BSSMAP Ciphering Mode Reject",
218 };
219
220 rc = gsm0808_get_cipher_reject_cause(tp);
221 if (rc < 0) {
222 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "failed to extract Cause\n");
223 ran_dec_msg.cipher_mode_reject.bssap_cause = GSM0808_CAUSE_EQUIPMENT_FAILURE;
224 } else {
225 ran_dec_msg.cipher_mode_reject.bssap_cause = (enum gsm0808_cause)rc;
226 }
227
228 return ran_decoded(ran_dec, &ran_dec_msg);
229}
230
231enum mgcp_codecs ran_a_mgcp_codec_from_sc(const struct gsm0808_speech_codec *sc)
232{
233 switch (sc->type) {
234 case GSM0808_SCT_FR1:
235 return CODEC_GSM_8000_1;
236 break;
237 case GSM0808_SCT_FR2:
238 return CODEC_GSMEFR_8000_1;
239 break;
240 case GSM0808_SCT_FR3:
241 return CODEC_AMR_8000_1;
242 break;
243 case GSM0808_SCT_FR4:
244 return CODEC_AMRWB_16000_1;
245 break;
246 case GSM0808_SCT_FR5:
247 return CODEC_AMRWB_16000_1;
248 break;
249 case GSM0808_SCT_HR1:
250 return CODEC_GSMHR_8000_1;
251 break;
252 case GSM0808_SCT_HR3:
253 return CODEC_AMR_8000_1;
254 break;
255 case GSM0808_SCT_HR4:
256 return CODEC_AMRWB_16000_1;
257 break;
258 case GSM0808_SCT_HR6:
259 return CODEC_AMRWB_16000_1;
260 break;
261 default:
262 return CODEC_PCMU_8000_1;
263 break;
264 }
265}
266
267static int ran_a_decode_assignment_complete(struct ran_dec *ran_dec, struct msgb *msg, struct tlv_parsed *tp)
268{
269 struct tlv_p_entry *ie_aoip_transp_addr = TLVP_GET(tp, GSM0808_IE_AOIP_TRASP_ADDR);
270 struct tlv_p_entry *ie_speech_codec = TLVP_GET(tp, GSM0808_IE_SPEECH_CODEC);
271 struct sockaddr_storage rtp_addr;
272 struct sockaddr_in *rtp_addr_in;
273 struct gsm0808_speech_codec sc;
274 int rc;
275 struct ran_msg ran_dec_msg = {
276 .msg_type = RAN_MSG_ASSIGNMENT_COMPLETE,
277 .msg_name = "BSSMAP Assignment Complete",
278 };
279
280 if (ie_aoip_transp_addr) {
281 /* Decode AoIP transport address element */
282 rc = gsm0808_dec_aoip_trasp_addr(&rtp_addr, ie_aoip_transp_addr->val, ie_aoip_transp_addr->len);
283 if (rc < 0) {
284 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Unable to decode AoIP Transport Layer Address\n");
285 return -EINVAL;
286 }
287
288 rtp_addr_in = (struct sockaddr_in*)&rtp_addr;
289
290 if (rtp_addr.ss_family != AF_INET) {
291 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Assignment Complete: IE AoIP Transport Address:"
292 " unsupported addressing scheme (only IPV4 supported)\n");
293 return -EINVAL;
294 }
295
296 if (osmo_sockaddr_str_from_sockaddr_in(&ran_dec_msg.assignment_complete.remote_rtp, rtp_addr_in)) {
297 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Assignment Complete: unable to decode remote RTP IP address\n");
298 return -EINVAL;
299 }
300 }
301
302 if (ie_speech_codec) {
303 /* Decode Speech Codec (Chosen) element */
304 rc = gsm0808_dec_speech_codec(&sc, ie_speech_codec->val, ie_speech_codec->len);
305 if (rc < 0) {
306 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Assignment Complete: unable to decode IE Speech Codec (Chosen)"
307 " (rc=%d).\n", rc);
308 return -EINVAL;
309 }
310 ran_dec_msg.assignment_complete.codec_present = true;
311 ran_dec_msg.assignment_complete.codec = ran_a_mgcp_codec_from_sc(&sc);
312 }
313
314 return ran_decoded(ran_dec, &ran_dec_msg);
315}
316
317static int ran_a_decode_assignment_failure(struct ran_dec *ran_dec, struct msgb *msg, struct tlv_parsed *tp)
318{
319 struct tlv_p_entry *ie_cause = TLVP_GET(tp, GSM0808_IE_CAUSE);
320 struct tlv_p_entry *ie_rr_cause = TLVP_GET(tp, GSM0808_IE_RR_CAUSE);
321 struct tlv_p_entry *ie_speech_codec_list = TLVP_GET(tp, GSM0808_IE_SPEECH_CODEC_LIST);
322 struct gsm0808_speech_codec_list scl;
323 struct ran_msg ran_dec_msg = {
324 .msg_type = RAN_MSG_ASSIGNMENT_FAILURE,
325 .msg_name = "BSSMAP Assignment Failure",
326 .assignment_failure = {
327 .bssap_cause = GSM0808_CAUSE_EQUIPMENT_FAILURE,
328 .rr_cause = GSM48_RR_CAUSE_ABNORMAL_UNSPEC,
329 },
330 };
331
332 if (ie_cause)
333 ran_dec_msg.assignment_failure.bssap_cause = ie_cause->val[0];
334 if (ie_rr_cause)
335 ran_dec_msg.assignment_failure.rr_cause = ie_rr_cause->val[0];
336
337 if (ie_speech_codec_list
338 && gsm0808_dec_speech_codec_list(&scl, ie_speech_codec_list->val, ie_speech_codec_list->len) == 0)
339 ran_dec_msg.assignment_failure.scl_bss_supported = &scl;
340
341 return ran_decoded(ran_dec, &ran_dec_msg);
342}
343
344static int ran_a_decode_sapi_n_reject(struct ran_dec *ran_dec, struct msgb *msg, struct tlv_parsed *tp)
345{
346 struct tlv_p_entry *ie_cause = TLVP_GET(tp, GSM0808_IE_CAUSE);
347 struct tlv_p_entry *ie_dlci = TLVP_GET(tp, GSM0808_IE_DLCI);
348 struct ran_msg ran_dec_msg = {
349 .msg_type = RAN_MSG_SAPI_N_REJECT,
350 .msg_name = "BSSMAP SAPI-N Reject",
351 };
352
353 /* Note: The MSC code seems not to care about the cause code, but by
354 * the specification it is mandatory, so we check its presence. See
355 * also 3GPP TS 48.008 3.2.1.34 SAPI "n" REJECT */
356 if (!ie_cause) {
357 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "SAPI-N Reject: cause code IE is missing, discarding message\n");
358 return -EINVAL;
359 }
360 ran_dec_msg.sapi_n_reject.bssap_cause = ie_cause->val[0];
361
362 if (!ie_dlci) {
363 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "SAPI-N Reject: DLCI IE is missing, discarding message\n");
364 return -EINVAL;
365 }
366 ran_dec_msg.sapi_n_reject.dlci = ie_dlci->val[0];
367
368 return ran_decoded(ran_dec, &ran_dec_msg);
369}
370
371static int ran_a_decode_lcls_notification(struct ran_dec *ran_dec, const struct msgb *msg, const struct tlv_parsed *tp)
372{
373 const struct tlv_p_entry *ie_lcls_bss_status = TLVP_GET(tp, GSM0808_IE_LCLS_BSS_STATUS);
374 const struct tlv_p_entry *ie_lcls_break_req = TLVP_GET(tp, GSM0808_IE_LCLS_BREAK_REQ);
375 struct ran_msg ran_dec_msg;
376
377 /* Either §3.2.2.119 LCLS-BSS-Status or §3.2.2.120 LCLS-Break-Request shall be present */
378 if ((!ie_lcls_bss_status && !ie_lcls_break_req)
379 || (ie_lcls_bss_status && ie_lcls_break_req)) {
380 LOG_RAN_A_DEC(ran_dec, LOGL_ERROR, "Ignoring broken LCLS Notification message\n");
381 return -EINVAL;
382 }
383
384 if (ie_lcls_bss_status) {
385 ran_dec_msg = (struct ran_msg){
386 .msg_type = RAN_MSG_LCLS_STATUS,
387 .msg_name = "BSSMAP LCLS Notification (LCLS Status)",
388 .lcls_status = {
389 .status = ie_lcls_bss_status->len ?
390 ie_lcls_bss_status->val[0] : GSM0808_LCLS_STS_NA,
391 },
392 };
393 return ran_decoded(ran_dec, &ran_dec_msg);
394 }
395
396 if (ie_lcls_break_req) {
397 ran_dec_msg = (struct ran_msg){
398 .msg_type = RAN_MSG_LCLS_BREAK_REQ,
399 .msg_name = "BSSMAP LCLS Notification (LCLS Break Req)",
400 .lcls_break_req = {
401 .todo = 23,
402 },
403 };
404 return ran_decoded(ran_dec, &ran_dec_msg);
405 }
406
407 return -EINVAL;
408}
409
410static int ran_a_decode_handover_required(struct ran_dec *ran_dec, const struct msgb *msg, const struct tlv_parsed *tp)
411{
412 const struct tlv_p_entry *ie_cause = TLVP_GET(tp, GSM0808_IE_CAUSE);
413 const struct tlv_p_entry *ie_cil = TLVP_GET(tp, GSM0808_IE_CELL_IDENTIFIER_LIST);
414 struct ran_msg ran_dec_msg = {
415 .msg_type = RAN_MSG_HANDOVER_REQUIRED,
416 .msg_name = "BSSMAP Handover Required",
417 };
418 /* On decoding failures, dispatch an invalid RAN_MSG_HANDOVER_REQUIRED so msc_a can pass down a
419 * BSS_MAP_MSG_HANDOVER_REQUIRED_REJECT message. */
420
421 if (ie_cause)
422 ran_dec_msg.handover_required.cause = ie_cause->val[0];
423 else
424 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Cause IE missing\n");
425
426 if (!ie_cil
427 || gsm0808_dec_cell_id_list2(&ran_dec_msg.handover_required.cil, ie_cil->val, ie_cil->len) <= 0) {
428 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "No or invalid Cell Identifier List IE\n");
429 ran_dec_msg.handover_required.cil = (struct gsm0808_cell_id_list2){};
430 }
431
432 return ran_decoded(ran_dec, &ran_dec_msg);
433}
434
435static uint8_t a5_encryption_mask_from_gsm0808_chosen_enc_alg(enum gsm0808_chosen_enc_alg val)
436{
437 return 1 << val;
438}
439
440static int ran_a_decode_handover_request(struct ran_dec *ran_dec, const struct msgb *msg, const struct tlv_parsed *tp)
441{
442 struct osmo_gsm48_classmark classmark = {};
443 struct ran_msg ran_dec_msg = {
444 .msg_type = RAN_MSG_HANDOVER_REQUEST,
445 .msg_name = "BSSMAP Handover Request",
446 .handover_request = {
447 .classmark = &classmark,
448 },
449 };
450 struct ran_handover_request *r = &ran_dec_msg.handover_request;
451
452 const struct tlv_p_entry *ie_channel_type = TLVP_GET(tp, GSM0808_IE_CHANNEL_TYPE);
453 const struct tlv_p_entry *ie_encryption_information = TLVP_GET(tp, GSM0808_IE_ENCRYPTION_INFORMATION);
454 const struct tlv_p_entry *ie_classmark1 = TLVP_GET(tp, GSM0808_IE_CLASSMARK_INFORMATION_TYPE_1);
455 const struct tlv_p_entry *ie_classmark2 = TLVP_GET(tp, GSM0808_IE_CLASSMARK_INFORMATION_T2);
456 const struct tlv_p_entry *ie_cell_id_serving = TLVP_GET(&tp[0], GSM0808_IE_CELL_IDENTIFIER);
457 const struct tlv_p_entry *ie_cell_id_target = TLVP_GET(&tp[1], GSM0808_IE_CELL_IDENTIFIER);
458 const struct tlv_p_entry *ie_cause = TLVP_GET(tp, GSM0808_IE_CAUSE);
459 const struct tlv_p_entry *ie_classmark3 = TLVP_GET(tp, GSM0808_IE_CLASSMARK_INFORMATION_T3);
460 const struct tlv_p_entry *ie_current_channel_type_1 = TLVP_GET(tp, GSM0808_IE_CURRENT_CHANNEL_TYPE_1);
461 const struct tlv_p_entry *ie_speech_version_used = TLVP_GET(tp, GSM0808_IE_SPEECH_VERSION);
462 const struct tlv_p_entry *ie_chosen_encr_alg_serving = TLVP_GET(tp, GSM0808_IE_CHOSEN_ENCR_ALG);
463 const struct tlv_p_entry *ie_old_bss_to_new_bss_info = TLVP_GET(tp, GSM0808_IE_OLD_BSS_TO_NEW_BSS_INFORMATION);
464 const struct tlv_p_entry *ie_imsi = TLVP_GET(tp, GSM0808_IE_IMSI);
465 const struct tlv_p_entry *ie_aoip_transp_addr = TLVP_GET(tp, GSM0808_IE_AOIP_TRASP_ADDR);
466 const struct tlv_p_entry *ie_codec_list_msc_preferred = TLVP_GET(tp, GSM0808_IE_SPEECH_CODEC_LIST);
467 const struct tlv_p_entry *ie_call_id = TLVP_GET(tp, GSM0808_IE_CALL_ID);
468 const struct tlv_p_entry *ie_global_call_ref = TLVP_GET(tp, GSM0808_IE_GLOBAL_CALL_REF);
469
470 struct gsm0808_channel_type channel_type;
471 struct gsm0808_encrypt_info encr_info;
472 struct gsm0808_speech_codec_list scl;
473 struct geran_encr geran_encr = {};
474 char imsi[OSMO_IMSI_BUF_SIZE];
475 struct osmo_sockaddr_str rtp_ran_local;
476
477 if (!ie_channel_type) {
478 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Mandatory IE missing: Channel Type\n");
479 return -EINVAL;
480 }
481 if (gsm0808_dec_channel_type(&channel_type, ie_channel_type->val, ie_channel_type->len) <= 0) {
482 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Failed to decode Channel Type IE\n");
483 return -EINVAL;
484 }
485 r->geran.channel_type = &channel_type;
486
487 if (ie_encryption_information) {
488 int i;
489 if (gsm0808_dec_encrypt_info(&encr_info, ie_encryption_information->val, ie_encryption_information->len)
490 <= 0) {
491 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Failed to decode Encryption Informaiton IE\n");
492 return -EINVAL;
493 }
494
495 for (i = 0; i < encr_info.perm_algo_len; i++) {
496 r->geran.a5_encryption_mask |=
497 a5_encryption_mask_from_gsm0808_chosen_enc_alg(encr_info.perm_algo[i]);
498 }
499
500 if (encr_info.key_len > sizeof(geran_encr.key)) {
501 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Failed to decode Encryption Informaiton IE:"
502 " encryption key is too long: %u\n", geran_encr.key_len);
503 return -EINVAL;
504 }
505
506 if (encr_info.key_len) {
507 memcpy(geran_encr.key, encr_info.key, encr_info.key_len);
508 geran_encr.key_len = encr_info.key_len;
509 }
510
511 r->geran.chosen_encryption = &geran_encr;
512 }
513
514 if (!ie_classmark1 && !ie_classmark2) {
515 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Mandatory IE missing: either Classmark Information 1"
516 " or Classmark Information 2 must be included\n");
517 return -EINVAL;
518 }
519
520 if (ie_classmark1) {
521 if (ie_classmark1->len != sizeof(classmark.classmark1)) {
522 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Invalid size for Classmark 1: %u, expected %zu\n",
523 ie_classmark1->len, sizeof(classmark.classmark1));
524 return -EINVAL;
525 }
526 memcpy((uint8_t*)&classmark.classmark1, ie_classmark1->val, ie_classmark1->len);
527 classmark.classmark1_set = true;
528 }
529
530 if (ie_classmark2) {
531 uint8_t len = OSMO_MIN(ie_classmark2->len, sizeof(classmark.classmark2));
532 memcpy((uint8_t*)&classmark.classmark2, ie_classmark2->val, len);
533 classmark.classmark2_len = len;
534 }
535
536 if (!ie_cell_id_serving) {
537 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Mandatory IE missing: Cell Identifier (Serving)\n");
538 return -EINVAL;
539 }
540 if (gsm0808_dec_cell_id(&r->cell_id_serving, ie_cell_id_serving->val,
541 ie_cell_id_serving->len) <= 0) {
542 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Failed to decode Cell Identifier (Serving) IE\n");
543 return -EINVAL;
544 }
545
546 if (!ie_cell_id_target) {
547 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Mandatory IE missing: Cell Identifier (Target)\n");
548 return -EINVAL;
549 }
550 if (gsm0808_dec_cell_id(&r->cell_id_target, ie_cell_id_target->val,
551 ie_cell_id_target->len) <= 0) {
552 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "Failed to decode Cell Identifier (Target) IE\n");
553 return -EINVAL;
554 }
555
556 if (ie_cause)
557 r->bssap_cause = ie_cause->val[0];
558
559 if (ie_classmark3) {
560 uint8_t len = OSMO_MIN(ie_classmark3->len, sizeof(classmark.classmark3));
561 memcpy(classmark.classmark3, ie_classmark3->val, len);
562 classmark.classmark3_len = len;
563 }
564
565 if (ie_current_channel_type_1) {
566 r->current_channel_type_1 = ie_current_channel_type_1->val[0];
567 r->current_channel_type_1_present = true;
568 }
569
570 if (ie_speech_version_used) {
571 r->speech_version_used = ie_speech_version_used->val[0];
572 }
573
574 if (ie_chosen_encr_alg_serving && ie_chosen_encr_alg_serving->len) {
575 geran_encr.alg_id = ie_chosen_encr_alg_serving->val[0];
576 r->geran.chosen_encryption = &geran_encr;
577 }
578
579 if (ie_old_bss_to_new_bss_info) {
580 r->old_bss_to_new_bss_info_raw = ie_old_bss_to_new_bss_info->val;
581 r->old_bss_to_new_bss_info_raw_len = ie_old_bss_to_new_bss_info->len;
582 }
583
584 if (ie_imsi) {
585 gsm48_mi_to_string(imsi, sizeof(imsi), ie_imsi->val, ie_imsi->len);
586 r->imsi = imsi;
587 }
588
589 if (ie_aoip_transp_addr) {
590 do {
591 struct sockaddr_storage rtp_addr;
592 if (gsm0808_dec_aoip_trasp_addr(&rtp_addr, ie_aoip_transp_addr->val, ie_aoip_transp_addr->len) < 0) {
593 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "unable to decode AoIP transport address\n");
594 break;
595 }
596 if (rtp_addr.ss_family != AF_INET) {
597 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "IE AoIP Transport Address:"
598 " unsupported addressing scheme (only IPV4 supported)\n");
599 break;
600 }
601 if (osmo_sockaddr_str_from_sockaddr_in(&rtp_ran_local, (struct sockaddr_in*)&rtp_addr)) {
602 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "unable to decode remote RTP IP address\n");
603 break;
604 }
605 r->rtp_ran_local = &rtp_ran_local;
606 } while(0);
607 }
608
609 if (ie_codec_list_msc_preferred
610 && gsm0808_dec_speech_codec_list(&scl, ie_codec_list_msc_preferred->val,
611 ie_codec_list_msc_preferred->len) == 0)
612 r->codec_list_msc_preferred = &scl;
613
614 if (ie_call_id && ie_call_id->len == 4) {
615 r->call_id = osmo_load32le(ie_call_id->val);
616 r->call_id_present = true;
617 }
618
619 if (ie_global_call_ref) {
620 r->global_call_reference = ie_global_call_ref->val;
621 r->global_call_reference_len = ie_global_call_ref->len;
622 }
623
624 return ran_decoded(ran_dec, &ran_dec_msg);
625}
626
627static int ran_a_decode_handover_request_ack(struct ran_dec *ran_dec, const struct msgb *msg, const struct tlv_parsed *tp)
628{
629 struct ran_msg ran_dec_msg = {
630 .msg_type = RAN_MSG_HANDOVER_REQUEST_ACK,
631 .msg_name = "BSSMAP Handover Request Acknowledge",
632 };
633 const struct tlv_p_entry *ie_l3_info = TLVP_GET(tp, GSM0808_IE_LAYER_3_INFORMATION);
634 const struct tlv_p_entry *ie_aoip_transp_addr = TLVP_GET(tp, GSM0808_IE_AOIP_TRASP_ADDR);
635 const struct tlv_p_entry *ie_speech_codec = TLVP_GET(tp, GSM0808_IE_SPEECH_CODEC);
636 const struct tlv_p_entry *ie_chosen_channel = TLVP_GET(tp, GSM0808_IE_CHOSEN_CHANNEL);
637 const struct tlv_p_entry *ie_chosen_encr_alg = TLVP_GET(tp, GSM0808_IE_CHOSEN_ENCR_ALG);
638 const struct tlv_p_entry *ie_chosen_speech_version = TLVP_GET(tp, GSM0808_IE_SPEECH_VERSION);
639
640 /* On missing mandatory IEs, dispatch an invalid RAN_MSG_HANDOVER_REQUEST_ACK so msc_a can act on the failure. */
641
642 if (ie_l3_info) {
643 ran_dec_msg.handover_request_ack.rr_ho_command = ie_l3_info->val;
644 ran_dec_msg.handover_request_ack.rr_ho_command_len = ie_l3_info->len;
645 }
646
647 if (ie_chosen_channel) {
648 ran_dec_msg.handover_request_ack.chosen_channel_present = true;
649 ran_dec_msg.handover_request_ack.chosen_channel = *ie_chosen_channel->val;
650 }
651
652 if (ie_chosen_encr_alg) {
653 ran_dec_msg.handover_request_ack.chosen_encr_alg = *ie_chosen_encr_alg->val;
654 if (ran_dec_msg.handover_request_ack.chosen_encr_alg < 1
655 || ran_dec_msg.handover_request_ack.chosen_encr_alg > 8) {
656 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "invalid Chosen Encryption Algorithm: %u\n",
657 ran_dec_msg.handover_request_ack.chosen_encr_alg);
658 }
659 }
660
661 if (ie_chosen_speech_version) {
662 struct gsm0808_speech_codec sc;
663 ran_dec_msg.handover_request_ack.chosen_speech_version = ie_chosen_speech_version->val[0];
664
665 /* the codec may be extrapolated from this Speech Version or below from Speech Codec */
666 gsm0808_speech_codec_from_chan_type(&sc, ran_dec_msg.handover_request_ack.chosen_speech_version);
667 ran_dec_msg.handover_request_ack.codec_present = true;
668 ran_dec_msg.handover_request_ack.codec = ran_a_mgcp_codec_from_sc(&sc);
669 }
670
671 if (ie_aoip_transp_addr) {
672 do {
673 struct sockaddr_storage rtp_addr;
674 if (gsm0808_dec_aoip_trasp_addr(&rtp_addr, ie_aoip_transp_addr->val, ie_aoip_transp_addr->len) < 0) {
675 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "unable to decode AoIP transport address\n");
676 break;
677 }
678 if (rtp_addr.ss_family != AF_INET) {
679 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "IE AoIP Transport Address:"
680 " unsupported addressing scheme (only IPV4 supported)\n");
681 break;
682 }
683 if (osmo_sockaddr_str_from_sockaddr_in(&ran_dec_msg.handover_request_ack.remote_rtp,
684 (struct sockaddr_in*)&rtp_addr)) {
685 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "unable to decode remote RTP IP address\n");
686 ran_dec_msg.handover_request_ack.remote_rtp = (struct osmo_sockaddr_str){};
687 break;
688 }
689 } while(0);
690 }
691
692 if (ie_speech_codec) {
693 struct gsm0808_speech_codec sc;
694 if (gsm0808_dec_speech_codec(&sc, ie_speech_codec->val, ie_speech_codec->len) < 0)
695 LOG_RAN_A_DEC_MSG(LOGL_ERROR, "unable to decode IE Speech Codec (Chosen)\n");
696 else {
697 /* the codec may be extrapolated from above Speech Version or from this Speech Codec */
698 ran_dec_msg.handover_request_ack.codec_present = true;
699 ran_dec_msg.handover_request_ack.codec = ran_a_mgcp_codec_from_sc(&sc);
700 }
701 }
702
703 return ran_decoded(ran_dec, &ran_dec_msg);
704}
705
706static int ran_a_decode_handover_detect(struct ran_dec *ran_dec, const struct msgb *msg, const struct tlv_parsed *tp)
707{
708 struct ran_msg ran_dec_msg = {
709 .msg_type = RAN_MSG_HANDOVER_DETECT,
710 .msg_name = "BSSMAP Handover Detect",
711 };
712
713 return ran_decoded(ran_dec, &ran_dec_msg);
714}
715
716static int ran_a_decode_handover_succeeded(struct ran_dec *ran_dec, const struct msgb *msg, const struct tlv_parsed *tp)
717{
718 struct ran_msg ran_dec_msg = {
719 .msg_type = RAN_MSG_HANDOVER_SUCCEEDED,
720 .msg_name = "BSSMAP Handover Succeeded",
721 };
722
723 return ran_decoded(ran_dec, &ran_dec_msg);
724}
725
726static int ran_a_decode_handover_complete(struct ran_dec *ran_dec, const struct msgb *msg, const struct tlv_parsed *tp)
727{
728 struct ran_msg ran_dec_msg = {
729 .msg_type = RAN_MSG_HANDOVER_COMPLETE,
730 .msg_name = "BSSMAP Handover Complete",
731 };
732
733 return ran_decoded(ran_dec, &ran_dec_msg);
734}
735
736static int ran_a_decode_handover_failure(struct ran_dec *ran_dec, const struct msgb *msg, const struct tlv_parsed *tp)
737{
738 struct ran_msg ran_dec_msg = {
739 .msg_type = RAN_MSG_HANDOVER_FAILURE,
740 .msg_name = "BSSMAP Handover Failure",
741 };
742
743 return ran_decoded(ran_dec, &ran_dec_msg);
744}
745
746static int ran_a_decode_bssmap(struct ran_dec *ran_dec, struct msgb *bssmap)
747{
748 struct tlv_parsed tp[2];
749 int rc;
750 struct bssmap_header *h = msgb_l2(bssmap);
751 uint8_t msg_type;
752 bssmap->l3h = bssmap->l2h + sizeof(*h);
753
754 if (msgb_l3len(bssmap) < 1) {
755 LOG_RAN_A_DEC(ran_dec, LOGL_ERROR, "No data received, discarding message\n");
756 return -1;
757 }
758
759 if (msgb_l3len(bssmap) < h->length) {
760 LOG_RAN_A_DEC(ran_dec, LOGL_ERROR, "BSSMAP data truncated, discarding message\n");
761 return -1;
762 }
763
764 if (msgb_l3len(bssmap) > h->length) {
765 LOG_RAN_A_DEC(ran_dec, LOGL_NOTICE, "There are %u extra bytes after the BSSMAP data, truncating\n",
766 msgb_l3len(bssmap) - h->length);
767 msgb_l3trim(bssmap, h->length);
768 }
769
770 /* h->type == BSSAP_MSG_BSS_MANAGEMENT; h->length is the data length,
771 * which starts with the MAP msg_type, followed by IEs. */
772 msg_type = bssmap->l3h[0];
773 rc = osmo_bssap_tlv_parse2(tp, ARRAY_SIZE(tp), bssmap->l3h + 1, h->length - 1);
774 if (rc < 0) {
775 LOG_RAN_A_DEC(ran_dec, LOGL_ERROR, "Failed parsing TLV, discarding message\n");
776 return -EINVAL;
777 }
778
779 LOG_RAN_A_DEC(ran_dec, LOGL_DEBUG, "Rx BSSMAP DT1 %s\n", gsm0808_bssmap_name(msg_type));
780
781 switch (msg_type) {
782 case BSS_MAP_MSG_COMPLETE_LAYER_3:
783 return ran_a_decode_l3_compl(ran_dec, bssmap, tp);
784 case BSS_MAP_MSG_CLEAR_RQST:
785 return ran_a_decode_clear_request(ran_dec, bssmap, tp);
786 case BSS_MAP_MSG_CLEAR_COMPLETE:
787 return ran_a_decode_clear_complete(ran_dec, bssmap, tp);
788 case BSS_MAP_MSG_CLASSMARK_UPDATE:
789 return ran_a_decode_classmark_update(ran_dec, bssmap, tp);
790 case BSS_MAP_MSG_CIPHER_MODE_COMPLETE:
791 return ran_a_decode_cipher_mode_complete(ran_dec, bssmap, tp);
792 case BSS_MAP_MSG_CIPHER_MODE_REJECT:
793 return ran_a_decode_cipher_mode_reject(ran_dec, bssmap, tp);
794 case BSS_MAP_MSG_ASSIGMENT_COMPLETE:
795 rc = ran_a_decode_assignment_complete(ran_dec, bssmap, tp);
796 if (rc < 0) {
797 struct ran_msg ran_dec_msg = {
798 .msg_type = RAN_MSG_ASSIGNMENT_FAILURE,
799 .msg_name = "BSSMAP Assignment Complete but failed to decode",
800 .clear_request = {
801 .bssap_cause = GSM0808_CAUSE_EQUIPMENT_FAILURE,
802 },
803 };
804 ran_decoded(ran_dec, &ran_dec_msg);
805 }
806 return rc;
807 case BSS_MAP_MSG_ASSIGMENT_FAILURE:
808 return ran_a_decode_assignment_failure(ran_dec, bssmap, tp);
809 case BSS_MAP_MSG_SAPI_N_REJECT:
810 return ran_a_decode_sapi_n_reject(ran_dec, bssmap, tp);
811 case BSS_MAP_MSG_LCLS_NOTIFICATION:
812 return ran_a_decode_lcls_notification(ran_dec, bssmap, tp);
813
814 /* From current RAN peer, the Handover origin: */
815 case BSS_MAP_MSG_HANDOVER_REQUIRED:
816 return ran_a_decode_handover_required(ran_dec, bssmap, tp);
817
818 /* From current MSC to remote handover target MSC */
819 case BSS_MAP_MSG_HANDOVER_RQST:
820 return ran_a_decode_handover_request(ran_dec, bssmap, tp);
821
822 /* From potential new RAN peer, the Handover target: */
823 case BSS_MAP_MSG_HANDOVER_RQST_ACKNOWLEDGE:
824 return ran_a_decode_handover_request_ack(ran_dec, bssmap, tp);
825 case BSS_MAP_MSG_HANDOVER_DETECT:
826 return ran_a_decode_handover_detect(ran_dec, bssmap, tp);
827 case BSS_MAP_MSG_HANDOVER_SUCCEEDED:
828 return ran_a_decode_handover_succeeded(ran_dec, bssmap, tp);
829 case BSS_MAP_MSG_HANDOVER_COMPLETE:
830 return ran_a_decode_handover_complete(ran_dec, bssmap, tp);
831
832 /* From any Handover peer: */
833 case BSS_MAP_MSG_HANDOVER_FAILURE:
834 return ran_a_decode_handover_failure(ran_dec, bssmap, tp);
835
836 default:
837 LOG_RAN_A_DEC(ran_dec, LOGL_ERROR, "Unimplemented msg type: %s\n", gsm0808_bssmap_name(msg_type));
838 return -EINVAL;
839 }
840
841 return -EINVAL;
842}
843
844static int ran_a_decode_l3(struct ran_dec *ran_dec, struct msgb *l3)
845{
846 struct dtap_header *dtap = msgb_l2(l3);
847 struct ran_msg ran_dec_msg = {
848 .msg_type = RAN_MSG_DTAP,
849 .msg_name = "BSSAP DTAP",
850 .dtap = l3,
851 };
852 l3->l3h = l3->l2h + sizeof(struct dtap_header);
853 OMSC_LINKID_CB(l3) = dtap->link_id;
854 return ran_decoded(ran_dec, &ran_dec_msg);
855}
856
857int ran_a_decode_l2(struct ran_dec *ran_dec, struct msgb *bssap)
858{
859 uint8_t bssap_type;
860 OSMO_ASSERT(bssap);
861
862 if (!msgb_l2(bssap) || !msgb_l2len(bssap)) {
863 LOG_RAN_A_DEC(ran_dec, LOGL_ERROR, "Cannot decode L2, msg->l2h is unset / empty: %s\n",
864 msgb_hexdump(bssap));
865 return -EINVAL;
866 }
867
868 if (msgb_l2len(bssap) < sizeof(struct bssmap_header)) {
869 LOG_RAN_A_DEC(ran_dec, LOGL_ERROR, "The header is too short -- discarding message\n");
870 return -EINVAL;
871 }
872
873 bssap_type = bssap->l2h[0];
874 switch (bssap_type) {
875 case BSSAP_MSG_BSS_MANAGEMENT:
876 return ran_a_decode_bssmap(ran_dec, bssap);
877 case BSSAP_MSG_DTAP:
878 return ran_a_decode_l3(ran_dec, bssap);
879 default:
880 LOG_RAN_A_DEC(ran_dec, LOGL_ERROR, "Unimplemented BSSAP msg type: %s\n", gsm0808_bssap_name(bssap_type));
881 return -EINVAL;
882 }
883}
884
885static struct msgb *ran_a_wrap_dtap(struct msgb *dtap)
886{
887 struct msgb *an_apdu;
888 dtap->l3h = dtap->data;
889 an_apdu = gsm0808_create_dtap(dtap, OMSC_LINKID_CB(dtap));
890 an_apdu->l2h = an_apdu->data;
891 msgb_free(dtap);
892 return an_apdu;
893}
894
895static int ran_a_channel_type_to_speech_codec_list(struct gsm0808_speech_codec_list *scl, const struct gsm0808_channel_type *ct)
896{
897 unsigned int i;
898 int rc;
899
900 memset(scl, 0, sizeof(*scl));
901 for (i = 0; i < ct->perm_spch_len; i++) {
902 rc = gsm0808_speech_codec_from_chan_type(&scl->codec[i], ct->perm_spch[i]);
903 if (rc != 0)
904 return -EINVAL;
905 }
906 scl->len = i;
907
908 return 0;
909}
910
911/* Compose a BSSAP Assignment Command.
912 * Passing an RTP address is optional.
913 * The msub is passed merely for error logging. */
914static struct msgb *ran_a_make_assignment_command(struct osmo_fsm_inst *log_fi,
915 const struct ran_assignment_command *ac)
916{
917 struct gsm0808_speech_codec_list scl;
918 struct gsm0808_speech_codec_list *use_scl = NULL;
919 struct sockaddr_storage rtp_addr;
920 struct sockaddr_storage *use_rtp_addr = NULL;
921 int rc;
922
923 if (!ac->channel_type) {
924 LOG_RAN_A_ENC(log_fi, LOGL_ERROR, "Assignment Command: missing Channel Type\n");
925 return NULL;
926 }
927
928 if (ac->channel_type->ch_indctr == GSM0808_CHAN_SPEECH) {
929 rc = ran_a_channel_type_to_speech_codec_list(&scl, ac->channel_type);
930 if (rc < 0) {
931 LOG_RAN_A_ENC(log_fi, LOGL_ERROR, "Assignment Command: Cannot translate Channel Type to Speech Codec List\n");
932 return NULL;
933 }
934 use_scl = &scl;
935
936 /* Package RTP-Address data */
937 if (osmo_sockaddr_str_is_set(ac->cn_rtp)) {
938 struct sockaddr_in rtp_addr_in;
939
940 memset(&rtp_addr_in, 0, sizeof(rtp_addr_in));
941 rtp_addr_in.sin_family = AF_INET;
942 rtp_addr_in.sin_port = osmo_htons(ac->cn_rtp->port),
943 rtp_addr_in.sin_addr.s_addr = inet_addr(ac->cn_rtp->ip);
944
945 if (rtp_addr_in.sin_addr.s_addr == INADDR_NONE) {
946 LOG_RAN_A_ENC(log_fi, LOGL_ERROR, "Assignment Command: Invalid RTP-Address\n");
947 return NULL;
948 }
949 if (rtp_addr_in.sin_port == 0) {
950 LOG_RAN_A_ENC(log_fi, LOGL_ERROR, "Assignment Command: Invalid RTP-Port\n");
951 return NULL;
952 }
953
954 memset(&rtp_addr, 0, sizeof(rtp_addr));
955 memcpy(&rtp_addr, &rtp_addr_in, sizeof(rtp_addr_in));
956
957 use_rtp_addr = &rtp_addr;
958 }
959 }
960
961 return gsm0808_create_ass(ac->channel_type, NULL, use_rtp_addr, use_scl, NULL);
962}
963
964/* For an A5/N number a5_n set dst to the matching GSM0808_ALG_ID_A5_<n>. */
965static int a5_n_to_gsm0808_chosen_enc_alg(uint8_t *dst, int a5_n)
966{
967 switch (a5_n) {
968 case 0:
969 *dst = GSM0808_ALG_ID_A5_0;
970 return 0;
971 case 1:
972 *dst = GSM0808_ALG_ID_A5_1;
973 return 0;
974 case 2:
975 *dst = GSM0808_ALG_ID_A5_2;
976 return 0;
977 case 3:
978 *dst = GSM0808_ALG_ID_A5_3;
979 return 0;
980 default:
981 return -ENOTSUP;
982 }
983}
984
985static int make_encrypt_info_perm_algo(struct osmo_fsm_inst *fi, struct gsm0808_encrypt_info *ei,
986 uint8_t a5_encryption_mask, const struct osmo_gsm48_classmark *cm)
987{
988 int i;
989 int j = 0;
990 for (i = 0; i < 8; i++) {
991 int supported;
992
993 /* A5/n permitted by osmo-msc.cfg? */
994 if (!(a5_encryption_mask & (1 << i)))
995 continue;
996
997 /* A5/n supported by MS? */
998 supported = osmo_gsm48_classmark_supports_a5(cm, i);
999 if (supported != 1)
1000 continue;
1001
1002 if (a5_n_to_gsm0808_chosen_enc_alg(&ei->perm_algo[j], i)) {
1003 LOG_RAN_A_ENC(fi, LOGL_ERROR, "Not supported: A5/%d algorithm\n", i);
1004 return -1;
1005 }
1006 j++;
1007 ei->perm_algo_len = j;
1008 }
1009 return 0;
1010}
1011
1012/* For ran_a_make_cipher_mode_command(), for
1013 * memcpy(ei.key, cm->vec->kc, sizeof(cm->vec->kc));
1014 */
1015osmo_static_assert(sizeof(((struct gsm0808_encrypt_info*)0)->key) >= sizeof(((struct osmo_auth_vector*)0)->kc),
1016 gsm0808_encrypt_info_key_fits_osmo_auth_vec_kc);
1017static struct msgb *ran_a_make_cipher_mode_command(struct osmo_fsm_inst *fi, const struct ran_cipher_mode_command *cm)
1018{
1019 struct gsm0808_encrypt_info ei = {};
1020 char buf[16 * 2 + 1];
1021 const uint8_t cipher_response_mode = 1;
1022
1023 if (make_encrypt_info_perm_algo(fi, &ei, cm->geran.a5_encryption_mask, cm->classmark))
1024 return NULL;
1025
1026 if (ei.perm_algo_len == 0) {
1027 LOG_RAN_A_ENC(fi, LOGL_ERROR, "cannot start ciphering, no intersection between MSC-configured"
1028 " and MS-supported A5 algorithms. MSC: 0x%02x MS: %s\n",
1029 cm->geran.a5_encryption_mask, osmo_gsm48_classmark_a5_name(cm->classmark));
1030 return NULL;
1031 }
1032
1033 /* In case of UMTS AKA, the Kc for ciphering must be derived from the 3G auth
1034 * tokens. vec->kc was calculated from the GSM algorithm and is not
1035 * necessarily a match for the UMTS AKA tokens. */
1036 if (cm->geran.umts_aka)
1037 osmo_auth_c3(ei.key, cm->vec->ck, cm->vec->ik);
1038 else
1039 memcpy(ei.key, cm->vec->kc, sizeof(cm->vec->kc));
1040 ei.key_len = sizeof(cm->vec->kc);
1041
1042 /* Store chosen GERAN key where the caller asked it to be stored.
1043 * alg_id remains unknown until we receive a Cipher Mode Complete from the BSC */
1044 if (cm->geran.chosen_key) {
1045 if (ei.key_len > sizeof(cm->geran.chosen_key->key)) {
1046 LOG_RAN_A_ENC(fi, LOGL_ERROR, "Chosen key is larger than I can store\n");
1047 return NULL;
1048 }
1049 memcpy(cm->geran.chosen_key->key, ei.key, ei.key_len);
1050 cm->geran.chosen_key->key_len = ei.key_len;
1051 }
1052
1053 LOG_RAN_A_ENC(fi, LOGL_DEBUG, "Tx BSSMAP CIPHER MODE COMMAND to BSC, %u ciphers (%s) key %s\n",
1054 ei.perm_algo_len, osmo_hexdump_nospc(ei.perm_algo, ei.perm_algo_len),
1055 osmo_hexdump_buf(buf, sizeof(buf), ei.key, ei.key_len, NULL, false));
1056 return gsm0808_create_cipher(&ei, cm->geran.retrieve_imeisv ? &cipher_response_mode : NULL);
1057}
1058
1059struct msgb *ran_a_make_handover_request(struct osmo_fsm_inst *log_fi, const struct ran_handover_request *n)
1060{
1061 struct sockaddr_storage ss;
1062 struct gsm0808_handover_request r = {
1063 .cell_identifier_serving = n->cell_id_serving,
1064 .cell_identifier_target = n->cell_id_target,
1065 .cause = n->bssap_cause,
1066 .current_channel_type_1_present = n->current_channel_type_1_present,
1067 .current_channel_type_1 = n->current_channel_type_1,
1068
1069 .speech_version_used = n->speech_version_used,
1070
1071 .chosen_encryption_algorithm_serving = n->geran.chosen_encryption->alg_id,
1072
1073 .old_bss_to_new_bss_info_raw = n->old_bss_to_new_bss_info_raw,
1074 .old_bss_to_new_bss_info_raw_len = n->old_bss_to_new_bss_info_raw_len,
1075
1076 .imsi = n->imsi,
1077 .codec_list_msc_preferred = n->codec_list_msc_preferred,
1078 .call_id = n->call_id,
1079 .global_call_reference = n->global_call_reference,
1080 .global_call_reference_len = n->global_call_reference_len,
1081 };
1082
1083 if (!n->geran.channel_type) {
1084 LOG_RAN_A_ENC(log_fi, LOGL_ERROR, "Channel Type required for encoding Handover Request in BSSAP\n");
1085 return NULL;
1086 }
1087 r.channel_type = *n->geran.channel_type;
1088
1089 /* Encryption Information */
1090 make_encrypt_info_perm_algo(log_fi, &r.encryption_information, n->geran.a5_encryption_mask, n->classmark);
1091 if (n->geran.chosen_encryption && n->geran.chosen_encryption->key_len) {
1092 if (n->geran.chosen_encryption->key_len > sizeof(r.encryption_information.key)) {
1093 LOG_RAN_A_ENC(log_fi, LOGL_ERROR, "Handover Request: invalid chosen encryption key size %u\n",
1094 n->geran.chosen_encryption->key_len);
1095 return NULL;
1096 }
1097 memcpy(r.encryption_information.key,
1098 n->geran.chosen_encryption->key, n->geran.chosen_encryption->key_len);
1099 r.encryption_information.key_len = n->geran.chosen_encryption->key_len;
1100 }
1101
1102 if (n->classmark)
1103 r.classmark_information = *n->classmark;
1104
1105 if (osmo_sockaddr_str_is_set(n->rtp_ran_local)) {
1106 if (osmo_sockaddr_str_to_sockaddr(n->rtp_ran_local, &ss)) {
1107 LOG_RAN_A_ENC(log_fi, LOGL_ERROR,
1108 "Handover Request: invalid AoIP Transport Layer address/port: "
1109 OSMO_SOCKADDR_STR_FMT "\n", OSMO_SOCKADDR_STR_FMT_ARGS(n->rtp_ran_local));
1110 return NULL;
1111 }
1112 r.aoip_transport_layer = &ss;
1113 }
1114
1115 return gsm0808_create_handover_request(&r);
1116}
1117
1118static struct msgb *ran_a_make_handover_request_ack(struct osmo_fsm_inst *caller_fi, const struct ran_handover_request_ack *r)
1119{
1120 struct sockaddr_storage ss;
1121 struct gsm0808_handover_request_ack params = {
1122 .l3_info = r->rr_ho_command,
1123 .l3_info_len = r->rr_ho_command_len,
1124 .chosen_channel_present = r->chosen_channel_present,
1125 .chosen_channel = r->chosen_channel,
1126 .chosen_encr_alg = r->chosen_encr_alg,
1127 .chosen_speech_version = r->chosen_speech_version,
1128 };
1129
1130 if (osmo_sockaddr_str_is_set(&r->remote_rtp)) {
1131 osmo_sockaddr_str_to_sockaddr(&r->remote_rtp, &ss);
1132 params.aoip_transport_layer = &ss;
1133 }
1134
1135 return gsm0808_create_handover_request_ack2(&params);
1136}
1137
1138struct msgb *ran_a_make_handover_command(struct osmo_fsm_inst *log_fi, const struct ran_handover_command *n)
1139{
1140 struct gsm0808_handover_command c = {
1141 .l3_info = n->rr_ho_command,
1142 .l3_info_len = n->rr_ho_command_len,
1143 };
1144
1145 return gsm0808_create_handover_command(&c);
1146}
1147
1148struct msgb *ran_a_make_handover_failure(struct osmo_fsm_inst *log_fi, const struct ran_msg *msg)
1149{
1150 struct gsm0808_handover_failure params = {
1151 .cause = msg->handover_failure.cause,
1152 };
1153 return gsm0808_create_handover_failure(&params);
1154}
1155
1156static struct msgb *_ran_a_encode(struct osmo_fsm_inst *caller_fi, const struct ran_msg *ran_enc_msg)
1157{
1158
1159 LOG_RAN_A_ENC(caller_fi, LOGL_DEBUG, "%s\n", ran_msg_type_name(ran_enc_msg->msg_type));
1160
1161 switch (ran_enc_msg->msg_type) {
1162
1163 case RAN_MSG_DTAP:
1164 return ran_a_wrap_dtap(ran_enc_msg->dtap);
1165
1166 case RAN_MSG_CLASSMARK_REQUEST:
1167 return gsm0808_create_classmark_request();
1168
1169 case RAN_MSG_CLEAR_COMMAND:
1170 return gsm0808_create_clear_command2(ran_enc_msg->clear_command.gsm0808_cause,
1171 ran_enc_msg->clear_command.csfb_ind);
1172
1173 case RAN_MSG_ASSIGNMENT_COMMAND:
1174 return ran_a_make_assignment_command(caller_fi, &ran_enc_msg->assignment_command);
1175
1176 case RAN_MSG_CIPHER_MODE_COMMAND:
1177 return ran_a_make_cipher_mode_command(caller_fi, &ran_enc_msg->cipher_mode_command);
1178
1179 case RAN_MSG_HANDOVER_REQUIRED_REJECT:
1180 return gsm0808_create_handover_required_reject(&ran_enc_msg->handover_required_reject);
1181
1182 case RAN_MSG_HANDOVER_REQUEST:
1183 return ran_a_make_handover_request(caller_fi, &ran_enc_msg->handover_request);
1184
1185 case RAN_MSG_HANDOVER_REQUEST_ACK:
1186 return ran_a_make_handover_request_ack(caller_fi, &ran_enc_msg->handover_request_ack);
1187
1188 case RAN_MSG_HANDOVER_COMMAND:
1189 return ran_a_make_handover_command(caller_fi, &ran_enc_msg->handover_command);
1190
1191 case RAN_MSG_HANDOVER_SUCCEEDED:
1192 return gsm0808_create_handover_succeeded();
1193
1194 case RAN_MSG_HANDOVER_FAILURE:
1195 return ran_a_make_handover_failure(caller_fi, ran_enc_msg);
1196
1197 default:
1198 LOG_RAN_A_ENC(caller_fi, LOGL_ERROR, "Unimplemented RAN-encode message type: %s\n",
1199 ran_msg_type_name(ran_enc_msg->msg_type));
1200 return NULL;
1201 }
1202}
1203
1204struct msgb *ran_a_encode(struct osmo_fsm_inst *caller_fi, const struct ran_msg *ran_enc_msg)
1205{
1206 struct msgb *msg = _ran_a_encode(caller_fi, ran_enc_msg);
1207
1208 if (!msg)
1209 return NULL;
1210
1211 msg->l2h = msg->data;
1212
1213 /* some consistency checks to ensure we don't send invalid length */
1214 switch (msg->l2h[0]) {
1215 case BSSAP_MSG_DTAP:
1216 OSMO_ASSERT(msgb_l2len(msg) == msg->l2h[2] + 3);
1217 break;
1218 case BSSAP_MSG_BSS_MANAGEMENT:
1219 OSMO_ASSERT(msgb_l2len(msg) == msg->l2h[1] + 2);
1220 break;
1221 default:
1222 break;
1223 }
1224
1225 return msg;
1226}
1227
1228/* Return 1 for a RESET, 2 for a RESET ACK message, 0 otherwise */
1229enum reset_msg_type bssmap_is_reset_msg(const struct sccp_ran_inst *sri, const struct msgb *l2)
1230{
1231 struct bssmap_header *bs = (struct bssmap_header *)msgb_l2(l2);
1232
1233 if (!bs
1234 || msgb_l2len(l2) < (sizeof(*bs) + 1)
1235 || bs->type != BSSAP_MSG_BSS_MANAGEMENT)
1236 return SCCP_RAN_MSG_NON_RESET;
1237
1238 switch (l2->l2h[sizeof(*bs)]) {
1239 case BSS_MAP_MSG_RESET:
1240 return SCCP_RAN_MSG_RESET;
1241 case BSS_MAP_MSG_RESET_ACKNOWLEDGE:
1242 return SCCP_RAN_MSG_RESET_ACK;
1243 default:
1244 return SCCP_RAN_MSG_NON_RESET;
1245 }
1246}
1247
1248struct msgb *bssmap_make_reset_msg(const struct sccp_ran_inst *sri, enum reset_msg_type type)
1249{
1250 switch (type) {
1251 case SCCP_RAN_MSG_RESET:
1252 return gsm0808_create_reset();
1253 case SCCP_RAN_MSG_RESET_ACK:
1254 return gsm0808_create_reset_ack();
1255 default:
1256 return NULL;
1257 }
1258}
1259
1260struct msgb *bssmap_make_paging_msg(const struct sccp_ran_inst *sri, const struct gsm0808_cell_id *page_cell_id,
1261 const char *imsi, uint32_t tmsi, enum paging_cause cause)
1262{
1263 struct gsm0808_cell_id_list2 cil;
1264 gsm0808_cell_id_to_list(&cil, page_cell_id);
1265 return gsm0808_create_paging2(imsi, tmsi == GSM_RESERVED_TMSI ? NULL : &tmsi, &cil, NULL);
1266}
1267
1268const char *bssmap_msg_name(const struct sccp_ran_inst *sri, const struct msgb *l2)
1269{
1270 struct bssmap_header *bs;
1271
1272 if (!l2->l2h)
1273 return "?";
1274
1275 bs = (struct bssmap_header *)msgb_l2(l2);
1276 switch (bs->type) {
1277 case BSSAP_MSG_BSS_MANAGEMENT:
1278 return gsm0808_bssmap_name(l2->l2h[0]);
1279 case BSSAP_MSG_DTAP:
1280 return "DTAP";
1281 default:
1282 return "?";
1283 }
1284}