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Neels Hofmeyrc4628a32018-12-07 14:47:34 +01001/* API to forward upcoming NAS events, e.g. from BSSAP and RANAP, to be handled by MSC-A or MSC-I. */
2/*
3 * (C) 2019 by sysmocom s.f.m.c. GmbH <info@sysmocom.de>
4 *
5 * Author: Neels Hofmeyr <neels@hofmeyr.de>
6 *
7 * All Rights Reserved
8 *
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU Affero General Public License as published by
11 * the Free Software Foundation; either version 3 of the License, or
12 * (at your option) any later version.
13 *
14 * This program is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 * GNU Affero General Public License for more details.
18 *
19 * You should have received a copy of the GNU Affero General Public License
20 * along with this program. If not, see <http://www.gnu.org/licenses/>.
21 */
22#pragma once
23
24#include <osmocom/core/utils.h>
25#include <osmocom/core/fsm.h>
26#include <osmocom/core/sockaddr_str.h>
27#include <osmocom/gsm/protocol/gsm_08_08.h>
28#include <osmocom/mgcp_client/mgcp_client.h>
29
30#include <osmocom/msc/msc_common.h>
31
32struct msgb;
33struct osmo_fsm_inst;
34
35#define LOG_RAN_DEC(NAS_DEC, subsys, level, fmt, args...) \
36 LOGPFSMSL((NAS_DEC)? (NAS_DEC)->caller_fi : NULL, subsys, level, "RAN decode: " fmt, ## args)
37
38#define LOG_RAN_ENC(FI, subsys, level, fmt, args...) \
39 LOGPFSMSL(FI, subsys, level, "RAN encode: " fmt, ## args)
40
41/* These message types are named after the BSSAP procedures in nas_a.h; most are also used for RANAP procedures of
42 * similar meaning in nas_iu.h. */
43enum ran_msg_type {
44 RAN_MSG_NONE = 0,
45 RAN_MSG_COMPL_L3,
46 RAN_MSG_DTAP,
47 RAN_MSG_CLEAR_COMMAND,
48 RAN_MSG_CLEAR_REQUEST,
49 RAN_MSG_CLEAR_COMPLETE,
50 RAN_MSG_CLASSMARK_REQUEST,
51 RAN_MSG_CLASSMARK_UPDATE,
52 RAN_MSG_CIPHER_MODE_COMMAND,
53 RAN_MSG_CIPHER_MODE_COMPLETE,
54 RAN_MSG_CIPHER_MODE_REJECT,
55 RAN_MSG_COMMON_ID,
56 RAN_MSG_ASSIGNMENT_COMMAND,
57 RAN_MSG_ASSIGNMENT_COMPLETE,
58 RAN_MSG_ASSIGNMENT_FAILURE,
59 RAN_MSG_SAPI_N_REJECT,
60 RAN_MSG_LCLS_STATUS,
61 RAN_MSG_LCLS_BREAK_REQ,
62 RAN_MSG_HANDOVER_COMMAND,
63 RAN_MSG_HANDOVER_PERFORMED,
64 RAN_MSG_HANDOVER_REQUIRED,
65 RAN_MSG_HANDOVER_REQUIRED_REJECT,
66 RAN_MSG_HANDOVER_REQUEST,
67 RAN_MSG_HANDOVER_REQUEST_ACK,
68 RAN_MSG_HANDOVER_DETECT,
69 RAN_MSG_HANDOVER_SUCCEEDED,
70 RAN_MSG_HANDOVER_COMPLETE,
71 RAN_MSG_HANDOVER_FAILURE,
72};
73
74extern const struct value_string ran_msg_type_names[];
75static inline const char *ran_msg_type_name(enum ran_msg_type val)
76{ return get_value_string(ran_msg_type_names, val); }
77
78struct ran_clear_command {
79 enum gsm0808_cause gsm0808_cause;
80 bool csfb_ind;
81};
82
83struct ran_assignment_command {
84 const struct osmo_sockaddr_str *cn_rtp;
85 const struct gsm0808_channel_type *channel_type;
86 enum nsap_addr_enc rab_assign_addr_enc;
Pau Espin Pedrola3cdab42019-05-09 17:54:08 +020087 bool osmux_present;
88 uint8_t osmux_cid;
Philipp Maierf34d9452020-06-05 15:49:35 +020089 bool call_id_present;
90 uint32_t call_id;
Keith Whytea1a70be2021-05-16 02:59:52 +020091 struct osmo_lcls *lcls;
Neels Hofmeyrc4628a32018-12-07 14:47:34 +010092};
93
94struct ran_cipher_mode_command {
95 const struct osmo_auth_vector *vec;
96 const struct osmo_gsm48_classmark *classmark;
97 struct {
98 bool umts_aka;
99 bool retrieve_imeisv;
100 uint8_t a5_encryption_mask;
101
102 /* out-argument to return the key to the caller, pass NULL if not needed. */
103 struct geran_encr *chosen_key;
104 } geran;
Harald Welte274b70f2021-02-06 16:47:39 +0100105 struct {
Harald Welte505a94a2021-02-06 17:12:20 +0100106 uint8_t uea_encryption_mask;
Harald Welte274b70f2021-02-06 16:47:39 +0100107 } utran;
Neels Hofmeyrc4628a32018-12-07 14:47:34 +0100108};
109
110struct ran_handover_request {
111 const char *imsi;
112 const struct osmo_gsm48_classmark *classmark;
113 /* A Handover Request on GERAN-A sends separate IEs for
114 * - permitted algorithms, here composed from the a5_encryption_mask,
115 * - the key, here taken from chosen_encryption->key iff chosen_encryption is present,
116 * - the actually chosen algorithm ("Serving"), here taken from chosen_encryption->alg_id.
117 */
118 struct {
119 struct gsm0808_channel_type *channel_type;
120 uint8_t a5_encryption_mask;
121 /*! chosen_encryption->alg_id is in encoded format:
122 * alg_id == 1 means A5/0 i.e. no encryption, alg_id == 4 means A5/3.
123 * alg_id == 0 means no such IE was present. */
124 struct geran_encr *chosen_encryption;
125 } geran;
126 struct gsm0808_cell_id cell_id_serving;
127 struct gsm0808_cell_id cell_id_target;
128
129 enum gsm0808_cause bssap_cause;
130
131 bool current_channel_type_1_present;
132 uint8_t current_channel_type_1;
133
134 enum gsm0808_permitted_speech speech_version_used;
135
136 const uint8_t *old_bss_to_new_bss_info_raw;
137 uint8_t old_bss_to_new_bss_info_raw_len;
138
139 struct osmo_sockaddr_str *rtp_ran_local;
140
141 struct gsm0808_speech_codec_list *codec_list_msc_preferred;
142
143 bool call_id_present;
144 uint32_t call_id;
145
146 const uint8_t *global_call_reference;
147 uint8_t global_call_reference_len;
148};
149
150struct ran_handover_request_ack {
151 const uint8_t *rr_ho_command;
152 uint8_t rr_ho_command_len;
153 bool chosen_channel_present;
154 uint8_t chosen_channel;
155 /*! chosen_encr_alg is in encoded format:
156 * chosen_encr_alg == 1 means A5/0 i.e. no encryption, chosen_encr_alg == 4 means A5/3.
157 * chosen_encr_alg == 0 means no such IE was present. */
158 uint8_t chosen_encr_alg;
159
160 /* chosen_speech_version == 0 means "not present" */
161 enum gsm0808_permitted_speech chosen_speech_version;
162
163 struct osmo_sockaddr_str remote_rtp;
164 bool codec_present;
Neels Hofmeyr7934e0d2022-10-31 18:13:47 +0100165 struct gsm0808_speech_codec codec;
166 bool codec_with_iuup;
Neels Hofmeyrc4628a32018-12-07 14:47:34 +0100167};
168
169struct ran_handover_command {
170 const uint8_t *rr_ho_command;
171 uint8_t rr_ho_command_len;
172
173 const uint8_t *new_bss_to_old_bss_info_raw;
174 uint8_t new_bss_to_old_bss_info_raw_len;
175};
176
177struct ran_handover_required {
178 uint16_t cause;
179 struct gsm0808_cell_id_list2 cil;
180
181 bool current_channel_type_1_present;
182 /*! See gsm0808_chosen_channel() */
183 uint8_t current_channel_type_1;
184
185 enum gsm0808_permitted_speech speech_version_used;
186
187 uint8_t *old_bss_to_new_bss_info_raw;
188 size_t old_bss_to_new_bss_info_raw_len;
189};
190
191struct ran_msg {
192 enum ran_msg_type msg_type;
193
194 /* Since different RAN implementations feed these messages, they should place here an implementation specific
195 * string constant to name the actual message (e.g. "BSSMAP Assignment Complete" vs. "RANAP RAB Assignment
196 * Response") */
197 const char *msg_name;
198
199 union {
200 struct {
201 const struct gsm0808_cell_id *cell_id;
Neels Hofmeyr8a50cfb2019-10-21 03:01:00 +0200202 const struct gsm0808_speech_codec_list *codec_list_bss_supported;
Neels Hofmeyrc4628a32018-12-07 14:47:34 +0100203 struct msgb *msg;
204 } compl_l3;
205 struct msgb *dtap;
206 struct {
207 enum gsm0808_cause bssap_cause;
208#define RAN_MSG_BSSAP_CAUSE_UNSET 0xffff
209 } clear_request;
210 struct ran_clear_command clear_command;
211 struct {
212 const struct osmo_gsm48_classmark *classmark;
213 } classmark_update;
214 struct ran_cipher_mode_command cipher_mode_command;
215 struct {
216 /*! alg_id is in encoded format:
217 * alg_id == 1 means A5/0 i.e. no encryption, alg_id == 4 means A5/3.
218 * alg_id == 0 means no such IE was present. */
219 uint8_t alg_id;
Alexander Couzens2aaff752021-10-19 17:09:11 +0200220 /*! utran integrity protection. 0..15 */
221 int16_t utran_integrity;
222 /*! utran_integrity is in encoded format:
223 * utran_integrity == -1 means no such IE was present
224 * utran_integrity == 0 means no encryption. */
225 int16_t utran_encryption;
Neels Hofmeyrc4628a32018-12-07 14:47:34 +0100226 const char *imeisv;
Neels Hofmeyre9a39112019-08-29 00:10:49 +0200227 const struct tlv_p_entry *l3_msg;
Neels Hofmeyrc4628a32018-12-07 14:47:34 +0100228 } cipher_mode_complete;
229 struct {
230 enum gsm0808_cause bssap_cause;
231 } cipher_mode_reject;
232 struct {
233 const char *imsi;
Pau Espin Pedrol67106702021-04-27 18:20:15 +0200234 bool last_eutran_plmn_present;
235 struct osmo_plmn_id last_eutran_plmn;
Neels Hofmeyrc4628a32018-12-07 14:47:34 +0100236 } common_id;
237 struct {
238 enum gsm48_reject_value cause;
239 } cm_service_reject;
240 struct ran_assignment_command assignment_command;
241 struct {
242 struct osmo_sockaddr_str remote_rtp;
243 bool codec_present;
Neels Hofmeyrcec51b32023-03-01 03:47:45 +0100244 struct gsm0808_speech_codec codec;
245 bool codec_with_iuup;
Neels Hofmeyr8a50cfb2019-10-21 03:01:00 +0200246 const struct gsm0808_speech_codec_list *codec_list_bss_supported;
Pau Espin Pedrola3cdab42019-05-09 17:54:08 +0200247 bool osmux_present;
248 uint8_t osmux_cid;
Neels Hofmeyrc4628a32018-12-07 14:47:34 +0100249 } assignment_complete;
250 struct {
251 enum gsm0808_cause bssap_cause;
252 uint8_t rr_cause;
253 const struct gsm0808_speech_codec_list *scl_bss_supported;
254 } assignment_failure;
255 struct {
256 enum gsm0808_cause bssap_cause;
257 uint8_t dlci;
258 } sapi_n_reject;
259 struct {
260 enum gsm0808_lcls_status status;
261 } lcls_status;
262 struct {
263 int todo;
264 } lcls_break_req;
265 struct ran_handover_required handover_required;
266 struct gsm0808_handover_required_reject handover_required_reject;
267 struct ran_handover_command handover_command;
268 struct {
269 enum gsm0808_cause cause;
270 } handover_failure;
271 struct ran_handover_request handover_request;
272 struct ran_handover_request_ack handover_request_ack;
273 };
274};
275
276/* MSC-A/I/T roles implement this to receive decoded NAS messages, upon feeding an L2 msgb to a ran_dec_l2_t matching the
277 * RAN type implementation. */
278typedef int (* ran_decode_cb_t )(struct osmo_fsm_inst *caller_fi, void *caller_data, const struct ran_msg *msg);
279
280struct ran_dec {
281 /* caller provided osmo_fsm_inst, used both for logging from within decoding of NAS events, as well as caller's
282 * context in decode_cb(). */
283 struct osmo_fsm_inst *caller_fi;
284 void *caller_data;
285
286 /* Callback receives the decoded NAS messages */
287 ran_decode_cb_t decode_cb;
288};
289
290/* NAS decoders (BSSAP/RANAP) implement this to turn a msgb into a struct ran_msg.
291 * An implementation typically calls ran_decoded() when done decoding.
292 * NAS decoding is modeled with a callback instead of a plain decoding, because some L2 messages by design contain more
293 * than one NAS event, e.g. Ciphering Mode Complete may include another L3 message for Identity Response, and LCLS
294 * Information messages can contain Status and Break Req events. */
295typedef int (* ran_dec_l2_t )(struct ran_dec *ran_dec, struct msgb *l2);
296
297int ran_decoded(struct ran_dec *ran_dec, struct ran_msg *msg);
298
299/* An MSC-A/I/T role that receives NAS events containing DTAP buffers may use this to detect DTAP duplicates as in TS
300 * 24.007 11.2.3.2 Message Type Octet / Duplicate Detection */
301bool ran_dec_dtap_undup_is_duplicate(struct osmo_fsm_inst *log_fi, uint8_t *n_sd_next, bool is_r99, struct msgb *l3);
302
303/* Implemented by individual RAN implementations, see ran_a_encode() and ran_iu_encode(). */
304typedef struct msgb *(* ran_encode_t )(struct osmo_fsm_inst *caller_fi, const struct ran_msg *ran_enc_msg);