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Neels Hofmeyrc4628a32018-12-07 14:47:34 +01001/* MSC-A role: main subscriber management */
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#pragma once
24
25#include <osmocom/core/use_count.h>
26#include <osmocom/core/tdef.h>
27
28#include <osmocom/gsm/protocol/gsm_04_08.h>
29#include <osmocom/gsm/protocol/gsm_04_08_gprs.h>
30#include <osmocom/gsm/protocol/gsm_08_08.h>
31#include <osmocom/gsm/gsm23003.h>
32
33#include <osmocom/msc/msc_roles.h>
34#include <osmocom/msc/ran_msg.h>
35#include <osmocom/msc/msc_common.h>
36#include <osmocom/msc/msc_ho.h>
37#include <osmocom/msc/neighbor_ident.h>
38
39struct ran_infra;
40
41#define MSC_A_USE_LOCATION_UPDATING "lu"
42#define MSC_A_USE_CM_SERVICE_CC "cm_service_cc"
43#define MSC_A_USE_CM_SERVICE_SMS "cm_service_sms"
44#define MSC_A_USE_CM_SERVICE_SS "cm_service_ss"
45#define MSC_A_USE_PAGING_RESPONSE "paging-response"
46#define MSC_A_USE_CC "cc"
47#define MSC_A_USE_SMS "sms"
Vadim Yanitskiy643270f2019-05-12 05:38:41 +070048#define MSC_A_USE_SMS_MMTS "sms_mmts"
Neels Hofmeyrc4628a32018-12-07 14:47:34 +010049#define MSC_A_USE_NC_SS "nc_ss"
50#define MSC_A_USE_SILENT_CALL "silent_call"
51
52/* These are macros to use the source file:line information from the caller in a trivial way */
53#define msc_a_get(msc_a, use) \
54 OSMO_ASSERT(osmo_use_count_get_put(&msc_a->use_count, use, 1) == 0)
55#define msc_a_put(msc_a, use) \
56 OSMO_ASSERT(osmo_use_count_get_put(&msc_a->use_count, use, -1) == 0)
57#define msc_a_put_all(msc_a, use) do { \
58 int32_t has_count = osmo_use_count_by(&msc_a->use_count, use); \
59 if (has_count) \
60 OSMO_ASSERT(osmo_use_count_get_put(&msc_a->use_count, use, -has_count) == 0); \
61 } while(0)
62
63
64enum msc_a_action_on_classmark_update_type {
65 MSC_A_CLASSMARK_UPDATE_NOT_EXPECTED = 0,
66 MSC_A_CLASSMARK_UPDATE_THEN_CIPHERING,
67};
68
69/* A Classmark Update might be required for various tasks. At the time of writing, the only use case is to determine A5
70 * capabilities for choosing a ciphering algorithm. This structure anticipates other Classmark Update use cases to be
71 * added in the future. */
72struct msc_a_action_on_classmark_update {
73 enum msc_a_action_on_classmark_update_type type;
74 union {
75 /* State required to resume Ciphering after the Classmark Request / Classmark Update is complete. */
76 struct {
77 bool umts_aka;
78 bool retrieve_imeisv;
79 } ciphering;
80
81 /* Add more use cases here... */
82 };
83};
84
85struct msc_a {
86 /* struct msc_role_common must remain at start */
87 struct msc_role_common c;
88 enum complete_layer3_type complete_layer3_type;
89 struct osmo_cell_global_id via_cell;
90
91 /* Temporary storage for Classmark Information for times when a connection has no VLR subscriber
92 * associated yet. It will get copied to the VLR subscriber upon msc_vlr_subscr_assoc(). */
93 struct osmo_gsm48_classmark temporary_classmark;
94
95 /* See handling of E_MSC_A_CLASSMARK_UPDATE */
96 struct msc_a_action_on_classmark_update action_on_classmark_update;
97 uint32_t state_before_classmark_update;
98
99 /* After Ciphering Mode Complete on GERAN, this reflects the chosen ciphering algorithm and key */
100 struct geran_encr geran_encr;
101
102 /* N(SD) expected in the received frame, per flow (TS 24.007 11.2.3.2.3.2.2) */
103 uint8_t n_sd_next[4];
104
105 /* Call control and MSC-A side of RTP switching. Without inter-MSC handover involved, this manages all of the
106 * MGW and RTP switching; after an inter-MSC handover, the RAN-side of this is redirected via another MNCC
107 * connection to the Handover MSISDN, and a remote MSC-I role takes over RTP switching to the remote BSS.
108 *
109 * Without / before inter-MSC HO:
110 *
111 * BSS [MSC-I MSC-A] MNCC to PBX
112 * <--RTP---------> <--RTP-->
113 *
114 * After inter-MSC HO:
115 *
116 * BSS [MSC-I MSC-A] MNCC to PBX MSC-I BSS-B
117 * /--> <--RTP-->
118 * \-------RTP--> (ISUP) <--RTP--> <--RTP-->
119 */
120 struct {
121 /* All of the RTP stream handling */
122 struct call_leg *call_leg;
123 struct mncc_call *mncc_forwarding_to_remote_ran;
124
125 /* There may be up to 7 incoming calls for this subscriber. This is the currently serviced voice call,
126 * as in, the other person the subscriber is currently talking to. */
127 struct gsm_trans *active_trans;
128 } cc;
129
130 struct msc_ho_state ho;
131
132 struct osmo_use_count use_count;
133 struct osmo_use_count_entry use_count_buf[8];
134 int32_t max_total_use_count;
135};
136
137osmo_static_assert(offsetof(struct msc_a, c) == 0, msc_role_common_first_member_of_msc_a);
138
139struct msc_a_ran_dec_data {
140 enum msc_role from_role;
141 const struct an_apdu *an_apdu;
142 const struct ran_msg *ran_dec;
143};
144
145#define LOG_MSC_A(MSC_A, LEVEL, FMT, ARGS ...) \
146 LOG_MSC_A_CAT(MSC_A, (MSC_A) ? (MSC_A)->c.ran->log_subsys : DMSC, LEVEL, FMT, ## ARGS)
147#define LOG_MSC_A_CAT(MSC_A, SUBSYS, LEVEL, FMT, ARGS ...) \
148 LOGPFSMSL((MSC_A) ? (MSC_A)->c.fi : NULL, SUBSYS, LEVEL, FMT, ## ARGS)
149#define LOG_MSC_A_CAT_SRC(MSC_A, SUBSYS, LEVEL, SRCFILE, LINE, FMT, ARGS ...) \
150 LOGPFSMSLSRC((MSC_A) ? (MSC_A)->c.fi : NULL, SUBSYS, LEVEL, SRCFILE, LINE, FMT, ## ARGS)
151
152enum msc_a_states {
153 MSC_A_ST_VALIDATE_L3,
154 MSC_A_ST_AUTH_CIPH,
155 MSC_A_ST_WAIT_CLASSMARK_UPDATE,
156 MSC_A_ST_AUTHENTICATED,
157 MSC_A_ST_COMMUNICATING,
158 MSC_A_ST_RELEASING,
159 MSC_A_ST_RELEASED,
160};
161
162struct msc_a *msc_a_alloc(struct msub *msub, struct ran_infra *ran);
163
164int msc_a_classmark_request_then_cipher_mode_cmd(struct msc_a *msc_a, bool umts_aka, bool retrieve_imeisv);
165
166bool msc_a_is_establishing_auth_ciph(const struct msc_a *msc_a);
167bool msc_a_is_accepted(const struct msc_a *msc_a);
168bool msc_a_in_release(struct msc_a *msc_a);
169
170struct gsm_network *msc_a_net(const struct msc_a *msc_a);
171struct vlr_subscr *msc_a_vsub(const struct msc_a *msc_a);
172struct msc_i *msc_a_msc_i(const struct msc_a *msc_a);
173struct msc_t *msc_a_msc_t(const struct msc_a *msc_a);
174
175struct msc_a *msc_a_for_vsub(const struct vlr_subscr *vsub, bool valid_conn_only);
176
177void msc_a_pending_cm_service_req_add(struct msc_a *msc_a, enum osmo_cm_service_type type);
178unsigned int msc_a_pending_cm_service_req_count(struct msc_a *msc_a, enum osmo_cm_service_type type);
179void msc_a_pending_cm_service_req_del(struct msc_a *msc_a, enum osmo_cm_service_type type);
180
181#define msc_a_ran_down(A,B,C) \
182 _msc_a_ran_down(A,B,C, __FILE__, __LINE__)
183int _msc_a_ran_down(struct msc_a *msc_a, enum msc_role to_role, const struct ran_msg *ran_enc_msg,
184 const char *file, int line);
185#define msc_a_msg_down(A,B,C,D) \
186 _msc_a_msg_down(A,B,C,D, __FILE__, __LINE__)
187int _msc_a_msg_down(struct msc_a *msc_a, enum msc_role to_role, uint32_t to_role_event,
188 const struct ran_msg *ran_enc_msg,
189 const char *file, int line);
190
191int msc_a_tx_dtap_to_i(struct msc_a *msc_a, struct msgb *dtap);
192int msc_a_tx_common_id(struct msc_a *msc_a);
193int msc_a_tx_mm_serv_ack(struct msc_a *msc_a);
194int msc_a_tx_mm_serv_rej(struct msc_a *msc_a, enum gsm48_reject_value value);
195
196int msc_a_up_l3(struct msc_a *msc_a, struct msgb *msg);
197
198void msc_a_up_ciph_res(struct msc_a *msc_a, bool success, const char *imeisv);
199
200bool msc_a_is_accepted(const struct msc_a *msc_a);
201bool msc_a_is_establishing_auth_ciph(const struct msc_a *msc_a);
202
203int msc_a_try_call_assignment(struct gsm_trans *cc_trans);
204
205const char *msc_a_cm_service_type_to_use(enum osmo_cm_service_type cm_service_type);
206
207void msc_a_release_cn(struct msc_a *msc_a);
208void msc_a_release_mo(struct msc_a *msc_a, enum gsm48_gsm_cause gsm_cause);
209
210int msc_a_ran_decode_cb(struct osmo_fsm_inst *msc_a_fi, void *data, const struct ran_msg *msg);
211
212int msc_a_vlr_set_cipher_mode(void *_msc_a, bool umts_aka, bool retrieve_imeisv);
213
214struct msgb *msc_a_ran_encode(struct msc_a *msc_a, const struct ran_msg *ran_enc_msg);
215
216void msc_a_update_id(struct msc_a *msc_a);