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Harald Welte52b1f982008-12-23 20:25:15 +00001#ifndef _GSM_DATA_H
2#define _GSM_DATA_H
3
Harald Weltef142c972011-05-24 13:25:38 +02004#include <stdint.h>
Maxddee01f2016-05-24 14:23:27 +02005#include <regex.h>
6#include <sys/types.h>
Maxe6052c42016-06-30 10:25:49 +02007#include <stdbool.h>
Neels Hofmeyr10485162018-02-13 23:22:03 +01008#include <stdint.h>
Harald Weltef142c972011-05-24 13:25:38 +02009
10#include <osmocom/core/timer.h>
Alexander Couzens20423ea2016-07-12 15:42:02 +020011#include <osmocom/core/rate_ctr.h>
Harald Welte6be350c2011-05-25 13:10:08 +020012#include <osmocom/core/select.h>
Alexander Couzens20423ea2016-07-12 15:42:02 +020013#include <osmocom/core/stats.h>
Stefan Sperling81dc9e72018-02-05 17:34:36 +010014#include <osmocom/core/stat_item.h>
Philipp Maier8c498fc2018-02-21 13:24:36 +010015#include <osmocom/gsm/bts_features.h>
Neels Hofmeyra60f3442018-02-12 16:44:32 +010016#include <osmocom/gsm/protocol/gsm_08_08.h>
Harald Welted41b7c72019-06-13 09:41:58 +020017#include <osmocom/gsm/protocol/gsm_48_049.h>
Neels Hofmeyr31f525e2018-05-14 18:14:15 +020018#include <osmocom/gsm/gsm0808.h>
Neels Hofmeyrf93970b2018-03-05 02:09:40 +010019#include <osmocom/gsm/gsm48.h>
Harald Welte3561bd42018-01-28 03:04:16 +010020#include <osmocom/core/fsm.h>
Neels Hofmeyra6078fe2019-01-28 03:52:14 +010021#include <osmocom/core/tdef.h>
Alexander Couzens20423ea2016-07-12 15:42:02 +020022
Harald Welte121e9a42016-04-20 13:13:19 +020023#include <osmocom/crypt/auth.h>
Harald Weltef142c972011-05-24 13:25:38 +020024
Neels Hofmeyrc0164792017-09-04 15:15:32 +020025#include <osmocom/bsc/rest_octets.h>
Harald Welteb96be392011-05-25 12:33:33 +020026
Neels Hofmeyr10485162018-02-13 23:22:03 +010027#include <osmocom/core/bitvec.h>
28#include <osmocom/gsm/gsm_utils.h>
29#include <osmocom/gsm/rxlev_stat.h>
30#include <osmocom/gsm/protocol/gsm_08_58.h>
31#include <osmocom/gsm/protocol/gsm_12_21.h>
32#include <osmocom/abis/e1_input.h>
33#include <osmocom/bsc/meas_rep.h>
Harald Welte519c7e12018-01-28 02:45:46 +010034#include <osmocom/bsc/bsc_msg_filter.h>
Stefan Sperling6442e432018-02-06 14:44:54 +010035#include <osmocom/bsc/acc_ramp.h>
Neels Hofmeyr31f525e2018-05-14 18:14:15 +020036#include <osmocom/bsc/neighbor_ident.h>
Pau Espin Pedrol83c0f762019-04-16 20:05:32 +020037#include <osmocom/bsc/osmux.h>
Neels Hofmeyr10485162018-02-13 23:22:03 +010038
Neels Hofmeyr596c4022018-06-16 19:29:50 +020039#define GSM_T3122_DEFAULT 10
40
Harald Welte74b8cdb2018-01-15 19:26:06 +010041struct mgcp_client_conf;
42struct mgcp_client;
Neels Hofmeyr19bed232018-03-22 04:54:57 +010043struct gsm0808_cell_id;
Neels Hofmeyrf14aaa42019-04-23 18:37:37 +020044struct osmo_mgcpc_ep;
Philipp Maier39f62bb2017-04-09 12:32:51 +020045
Holger Hans Peter Freytherd7b22c62013-04-29 09:11:02 +020046/** annotations for msgb ownership */
47#define __uses
48
Holger Hans Peter Freyther6f615552010-11-15 20:50:42 +010049#define OBSC_NM_W_ACK_CB(__msgb) (__msgb)->cb[3]
50
Neels Hofmeyr6d804b12017-02-18 22:20:46 +010051struct bsc_subscr;
Neels Hofmeyr7b656882017-07-09 22:09:18 +020052struct gprs_ra_id;
Neels Hofmeyr31f525e2018-05-14 18:14:15 +020053struct handover;
Holger Hans Peter Freyther694c82d2011-10-26 18:37:09 +020054
Holger Hans Peter Freyther9c595b72010-06-15 11:20:52 +080055#define OBSC_LINKID_CB(__msgb) (__msgb)->cb[3]
56
Neels Hofmeyr0e5d8072017-01-10 00:49:56 +010057#define tmsi_from_string(str) strtoul(str, NULL, 10)
58
Max70fdd242017-06-15 15:10:53 +020059/* 3-bit long values */
60#define EARFCN_PRIO_INVALID 8
61#define EARFCN_MEAS_BW_INVALID 8
62/* 5-bit long values */
63#define EARFCN_QRXLV_INVALID 32
64#define EARFCN_THRESH_LOW_INVALID 32
65
Harald Welte8e1e3ee2009-02-01 13:32:45 +000066struct msgb;
67typedef int gsm_cbfn(unsigned int hooknum,
68 unsigned int event,
69 struct msgb *msg,
70 void *data, void *param);
71
Harald Weltef7c28b02009-12-21 13:30:17 +010072/* Maximum number of neighbor cells whose average we track */
73#define MAX_NEIGH_MEAS 10
74/* Maximum size of the averaging window for neighbor cells */
75#define MAX_WIN_NEIGH_AVG 10
Andreas Eversberg98692032013-06-23 10:44:34 +020076/* Maximum number of report history we store */
77#define MAX_MEAS_REP 10
Harald Weltef7c28b02009-12-21 13:30:17 +010078
79/* processed neighbor measurements for one cell */
80struct neigh_meas_proc {
Holger Hans Peter Freytherc42ad8b2011-04-18 17:04:00 +020081 uint16_t arfcn;
82 uint8_t bsic;
83 uint8_t rxlev[MAX_WIN_NEIGH_AVG];
Harald Weltef7c28b02009-12-21 13:30:17 +010084 unsigned int rxlev_cnt;
Holger Hans Peter Freytherc42ad8b2011-04-18 17:04:00 +020085 uint8_t last_seen_nr;
Harald Weltef7c28b02009-12-21 13:30:17 +010086};
87
Harald Weltea43e0b42016-06-19 18:06:02 +020088struct gsm_classmark {
89 bool classmark1_set;
90 struct gsm48_classmark1 classmark1;
91 uint8_t classmark2_len;
92 uint8_t classmark2[3];
93 uint8_t classmark3_len;
94 uint8_t classmark3[14]; /* if cm3 gets extended by spec, it will be truncated */
95};
96
Harald Welte519c7e12018-01-28 02:45:46 +010097enum subscr_sccp_state {
98 SUBSCR_SCCP_ST_NONE,
99 SUBSCR_SCCP_ST_WAIT_CONN_CONF,
100 SUBSCR_SCCP_ST_CONNECTED
101};
102
Sylvain Munautaa824922019-03-07 16:32:02 +0100103enum channel_rate {
104 CH_RATE_SDCCH,
105 CH_RATE_HALF,
106 CH_RATE_FULL,
107};
108
Philipp Maierbb66d102019-01-22 11:29:06 +0100109struct channel_mode_and_rate {
110 enum gsm48_chan_mode chan_mode;
Sylvain Munautaa824922019-03-07 16:32:02 +0100111 enum channel_rate chan_rate;
Philipp Maierbb66d102019-01-22 11:29:06 +0100112 uint16_t s15_s0;
113};
114
Neels Hofmeyr7cfdbe72019-02-06 01:30:19 +0100115/* Information retrieved during an Assignment Request from the MSC. This is storage of the Assignment instructions
116 * parsed from the Assignment Request message, to pass on until the gscon and assignment FSMs have decided whether an
117 * Assignment is actually going to be carried out. Should remain unchanged after initial decoding. */
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200118struct assignment_request {
119 bool aoip;
120
121 uint16_t msc_assigned_cic;
122
123 char msc_rtp_addr[INET_ADDRSTRLEN];
124 uint16_t msc_rtp_port;
Pau Espin Pedrol83c0f762019-04-16 20:05:32 +0200125 bool use_osmux;
126 uint8_t osmux_cid;
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200127
Sylvain Munautaa824922019-03-07 16:32:02 +0100128 /* Rate/codec setting in preference order (need at least 1 !) */
129 int n_ch_mode_rate;
130 struct channel_mode_and_rate ch_mode_rate[3];
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200131};
132
Neels Hofmeyr7cfdbe72019-02-06 01:30:19 +0100133/* State of an ongoing Assignment, while the assignment_fsm is still busy. This serves as state separation to keep the
134 * currently used lchan and gscon unmodified until the outcome of an Assignment is known. If the Assignment fails, this
135 * state is simply discarded, and the gscon carries on with the original lchan remaining unchanged. */
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200136struct assignment_fsm_data {
137 struct assignment_request req;
138 bool requires_voice_stream;
139
140 struct osmo_fsm_inst *fi;
141 struct gsm_lchan *new_lchan;
142
143 /* Whether this assignment triggered creation of the MGW endpoint: if the assignment
144 * fails, we will release that again as soon as possible. (If false, the endpoint already
145 * existed before or isn't needed at all.)*/
Neels Hofmeyrf14aaa42019-04-23 18:37:37 +0200146 struct osmo_mgcpc_ep_ci *created_ci_for_msc;
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200147
148 enum gsm0808_cause failure_cause;
149 enum gsm48_rr_cause rr_cause;
150
151 bool result_rate_ctr_done;
152};
153
154enum hodec_id {
155 HODEC_NONE,
156 HODEC1 = 1,
157 HODEC2 = 2,
158 HODEC_USER,
159 HODEC_REMOTE,
160};
161
162/* For example, to count specific kinds of ongoing handovers, it is useful to be able to OR-combine
163 * scopes. */
164enum handover_scope {
165 HO_NO_HANDOVER = 0,
166 HO_INTRA_CELL = 0x1,
167 HO_INTRA_BSC = 0x2,
168 HO_INTER_BSC_OUT = 0x4,
169 HO_INTER_BSC_IN = 0x8,
170 HO_SCOPE_ALL = 0xffff,
171};
172
173extern const struct value_string handover_scope_names[];
174inline static const char *handover_scope_name(enum handover_scope val)
175{ return get_value_string(handover_scope_names, val); }
176
177struct handover_out_req {
178 enum hodec_id from_hodec_id;
179 struct gsm_lchan *old_lchan;
180 struct neighbor_ident_key target_nik;
181 enum gsm_chan_t new_lchan_type; /*< leave GSM_LCHAN_NONE to use same as old_lchan */
182};
183
184struct handover_in_req {
185 struct gsm0808_channel_type ct;
186 struct gsm0808_speech_codec_list scl;
187 struct gsm0808_encrypt_info ei;
188 struct gsm_classmark classmark;
Neels Hofmeyrc15f6cd2019-03-15 02:48:39 +0100189 /* chosen_encr_alg reflects the encoded value as in RSL_ENC_ALG_A5(a5_numer):
190 * chosen_encr_alg == 1 means A5/0 i.e. no encryption, chosen_encr_alg == 4 means A5/3.
191 * chosen_encr_alg == 0 means no such IE was present. */
192 uint8_t chosen_encr_alg;
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200193 struct gsm0808_cell_id cell_id_serving;
194 char cell_id_serving_name[64];
195 struct gsm0808_cell_id cell_id_target;
196 char cell_id_target_name[64];
197 uint16_t msc_assigned_cic;
198 char msc_assigned_rtp_addr[INET_ADDRSTRLEN];
199 uint16_t msc_assigned_rtp_port;
200};
201
202struct handover {
203 struct osmo_fsm_inst *fi;
204
205 enum hodec_id from_hodec_id;
206 enum handover_scope scope;
207 enum gsm_chan_t new_lchan_type;
208 struct neighbor_ident_key target_cell;
209
210 uint8_t ho_ref;
211 struct gsm_bts *new_bts;
212 struct gsm_lchan *new_lchan;
213 bool async;
214 struct handover_in_req inter_bsc_in;
Neels Hofmeyrf14aaa42019-04-23 18:37:37 +0200215 struct osmo_mgcpc_ep_ci *created_ci_for_msc;
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200216};
217
Neels Hofmeyr378a4922016-05-09 21:07:43 +0200218/* active radio connection of a mobile subscriber */
Holger Hans Peter Freyther68884aa2010-03-23 06:41:45 +0100219struct gsm_subscriber_connection {
Harald Weltea43e0b42016-06-19 18:06:02 +0200220 /* global linked list of subscriber_connections */
Holger Hans Peter Freyther79f763f2010-09-16 00:53:37 +0800221 struct llist_head entry;
222
Harald Welte3561bd42018-01-28 03:04:16 +0100223 /* FSM instance to control the subscriber connection state (RTP, A) */
224 struct osmo_fsm_inst *fi;
225
Harald Weltea43e0b42016-06-19 18:06:02 +0200226 /* libbsc subscriber information (if available) */
Neels Hofmeyr6d804b12017-02-18 22:20:46 +0100227 struct bsc_subscr *bsub;
228
Holger Hans Peter Freyther18b63f42010-03-23 07:52:17 +0100229 /* back pointers */
Neels Hofmeyr5e0b0a62016-05-09 22:33:01 +0200230 struct gsm_network *network;
231
Neels Hofmeyr7cfdbe72019-02-06 01:30:19 +0100232 /* the primary / currently active lchan to the BTS/subscriber. During Assignment and Handover, separate lchans
233 * are kept in the .assignment or .handover sub-structs, respectively, so that this lchan remains unaffected
234 * until Assignment or Handover have actually succeeded. */
Harald Welte4a8ebc82017-12-18 18:34:41 +0100235 struct gsm_lchan *lchan;
Harald Welte3561bd42018-01-28 03:04:16 +0100236
Neels Hofmeyr7cfdbe72019-02-06 01:30:19 +0100237 /* Only valid during an ongoing Assignment; might be overwritten at any time by a failed Assignment attempt.
238 * Once an Assignment was successful, all relevant state must be copied out of this sub-struct. */
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200239 struct assignment_fsm_data assignment;
Holger Hans Peter Freyther77cd95d2010-11-14 16:19:48 +0100240
Neels Hofmeyr7cfdbe72019-02-06 01:30:19 +0100241 /* handover information, if a handover is pending for this conn. Valid only during an ongoing Handover
242 * operation. If a Handover was successful, all relevant state must be copied out of this sub-struct. */
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200243 struct handover ho;
Holger Hans Peter Freyther77cd95d2010-11-14 16:19:48 +0100244
Neels Hofmeyr149160f2018-06-16 17:20:13 +0200245 /* Queue DTAP messages during handover/assignment (msgb_enqueue()/msgb_dequeue())*/
246 struct llist_head dtap_queue;
247 unsigned int dtap_queue_len;
Andreas Eversberg084b4212013-05-30 14:12:48 +0200248
Neels Hofmeyrec422642018-02-15 14:07:40 +0100249 struct {
Neels Hofmeyr909e9722017-12-07 03:54:01 +0100250 int failures;
Neels Hofmeyrec422642018-02-15 14:07:40 +0100251 struct penalty_timers *penalty_timers;
252 } hodec2;
Neels Hofmeyra60f3442018-02-12 16:44:32 +0100253
254 /* "Codec List (MSC Preferred)" as received by the BSSAP Assignment Request. 3GPP 48.008
255 * 3.2.2.103 says:
256 * The "Codec List (MSC Preferred)" shall not include codecs
257 * that are not supported by the MS.
258 * i.e. by heeding the "Codec list (MSC Preferred)", we inherently heed the MS bearer
259 * capabilities, which the MSC is required to translate into the codec list. */
260 struct gsm0808_speech_codec_list codec_list;
Harald Welte519c7e12018-01-28 02:45:46 +0100261
262 /* flag to prevent multiple simultaneous ciphering commands */
263 int ciphering_handled;
264
265 /* state related to welcome USSD */
266 uint8_t new_subscriber;
267
268 /* state related to osmo_bsc_filter.c */
269 struct bsc_filter_state filter_state;
270
271 /* SCCP connection associatd with this subscriber_connection */
272 struct {
273 /* for advanced ping/pong */
274 int send_ping;
275
Martin Haukea29affd2019-11-13 22:10:41 +0100276 /* SCCP connection related */
Harald Welte519c7e12018-01-28 02:45:46 +0100277 struct bsc_msc_data *msc;
278
279 /* Sigtran connection ID */
280 int conn_id;
281 enum subscr_sccp_state state;
282 } sccp;
283
284 /* for audio handling */
285 struct {
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200286 uint16_t msc_assigned_cic;
Harald Welte519c7e12018-01-28 02:45:46 +0100287
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200288 /* RTP address where the MSC expects us to send the RTP stream coming from the BTS. */
289 char msc_assigned_rtp_addr[INET_ADDRSTRLEN];
290 uint16_t msc_assigned_rtp_port;
Harald Welte519c7e12018-01-28 02:45:46 +0100291
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200292 /* The endpoint at the MGW used to join both BTS and MSC side connections, e.g.
293 * "rtpbridge/23@mgw". */
Neels Hofmeyrf14aaa42019-04-23 18:37:37 +0200294 struct osmo_mgcpc_ep *mgw_endpoint;
Harald Welte3561bd42018-01-28 03:04:16 +0100295
Neels Hofmeyrf14aaa42019-04-23 18:37:37 +0200296 /* The connection identifier of the osmo_mgcpc_ep used to transceive RTP towards the MSC.
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200297 * (The BTS side CI is handled by struct gsm_lchan and the lchan_fsm.) */
Neels Hofmeyrf14aaa42019-04-23 18:37:37 +0200298 struct osmo_mgcpc_ep_ci *mgw_endpoint_ci_msc;
Harald Welte519c7e12018-01-28 02:45:46 +0100299 } user_plane;
Harald Weltec997ceb2018-05-30 01:39:43 +0200300
301 /* LCLS (local call, local switch) related state */
302 struct {
303 uint8_t global_call_ref[15];
304 uint8_t global_call_ref_len; /* length of global_call_ref */
Maxfe65ece2018-11-09 13:36:11 +0100305 enum gsm0808_lcls_config config; /* TS 48.008 3.2.2.116 */
306 enum gsm0808_lcls_control control; /* TS 48.008 3.2.2.117 */
Harald Weltec997ceb2018-05-30 01:39:43 +0200307 /* LCLS FSM */
308 struct osmo_fsm_inst *fi;
309 /* pointer to "other" connection, if Call Leg Relocation was successful */
310 struct gsm_subscriber_connection *other;
311 } lcls;
Holger Hans Peter Freyther68884aa2010-03-23 06:41:45 +0100312};
313
Harald Weltef142c972011-05-24 13:25:38 +0200314
Neels Hofmeyr10485162018-02-13 23:22:03 +0100315/* 16 is the max. number of SI2quater messages according to 3GPP TS 44.018 Table 10.5.2.33b.1:
316 4-bit index is used (2#1111 = 10#15) */
317#define SI2Q_MAX_NUM 16
318/* length in bits (for single SI2quater message) */
319#define SI2Q_MAX_LEN 160
320#define SI2Q_MIN_LEN 18
321
322struct osmo_bsc_data;
323
324struct osmo_bsc_sccp_con;
325
326/* Channel Request reason */
327enum gsm_chreq_reason_t {
328 GSM_CHREQ_REASON_EMERG,
329 GSM_CHREQ_REASON_PAG,
330 GSM_CHREQ_REASON_CALL,
331 GSM_CHREQ_REASON_LOCATION_UPD,
332 GSM_CHREQ_REASON_OTHER,
333 GSM_CHREQ_REASON_PDCH,
334};
335
336/* lchans 0..3 are SDCCH in combined channel configuration,
337 use 4 as magic number for BCCH hack - see osmo-bts-../oml.c:opstart_compl() */
338#define CCCH_LCHAN 4
339
340#define TRX_NR_TS 8
341#define TS_MAX_LCHAN 8
342
343#define HARDCODED_ARFCN 123
344#define HARDCODED_BSIC 0x3f /* NCC = 7 / BCC = 7 */
345
346/* for multi-drop config */
347#define HARDCODED_BTS0_TS 1
348#define HARDCODED_BTS1_TS 6
349#define HARDCODED_BTS2_TS 11
350
351#define MAX_VERSION_LENGTH 64
352
Neels Hofmeyr10485162018-02-13 23:22:03 +0100353enum gsm_hooks {
354 GSM_HOOK_NM_SWLOAD,
355 GSM_HOOK_RR_PAGING,
356 GSM_HOOK_RR_SECURITY,
357};
358
Neels Hofmeyr10485162018-02-13 23:22:03 +0100359enum bts_gprs_mode {
360 BTS_GPRS_NONE = 0,
361 BTS_GPRS_GPRS = 1,
362 BTS_GPRS_EGPRS = 2,
363};
364
365struct gsm_lchan;
366struct osmo_rtp_socket;
367struct rtp_socket;
Neels Hofmeyr10485162018-02-13 23:22:03 +0100368
369/* Network Management State */
370struct gsm_nm_state {
371 uint8_t operational;
372 uint8_t administrative;
373 uint8_t availability;
374};
375
376struct gsm_abis_mo {
377 uint8_t obj_class;
378 uint8_t procedure_pending;
379 struct abis_om_obj_inst obj_inst;
380 const char *name;
381 struct gsm_nm_state nm_state;
382 struct tlv_parsed *nm_attr;
383 struct gsm_bts *bts;
384};
385
386/* Ericsson OM2000 Managed Object */
387struct abis_om2k_mo {
388 uint8_t class;
389 uint8_t bts;
390 uint8_t assoc_so;
391 uint8_t inst;
392} __attribute__ ((packed));
393
394struct om2k_mo {
395 struct abis_om2k_mo addr;
396 struct osmo_fsm_inst *fsm;
397};
398
399#define A38_XOR_MIN_KEY_LEN 12
400#define A38_XOR_MAX_KEY_LEN 16
401#define A38_COMP128_KEY_LEN 16
402#define RSL_ENC_ALG_A5(x) (x+1)
403#define MAX_EARFCN_LIST 32
404
405/* is the data link established? who established it? */
406#define LCHAN_SAPI_UNUSED 0
407#define LCHAN_SAPI_MS 1
408#define LCHAN_SAPI_NET 2
Neels Hofmeyr10485162018-02-13 23:22:03 +0100409
410/* BTS ONLY */
411#define MAX_NUM_UL_MEAS 104
412#define LC_UL_M_F_L1_VALID (1 << 0)
413#define LC_UL_M_F_RES_VALID (1 << 1)
414
415struct bts_ul_meas {
416 /* BER in units of 0.01%: 10.000 == 100% ber, 0 == 0% ber */
417 uint16_t ber10k;
418 /* timing advance offset (in quarter bits) */
419 int16_t ta_offs_qbits;
420 /* C/I ratio in dB */
421 float c_i;
422 /* flags */
423 uint8_t is_sub:1;
424 /* RSSI in dBm * -1 */
425 uint8_t inv_rssi;
426};
427
428struct bts_codec_conf {
429 uint8_t hr;
430 uint8_t efr;
431 uint8_t amr;
432};
433
434struct amr_mode {
435 uint8_t mode;
436 uint8_t threshold;
437 uint8_t hysteresis;
438};
439
440struct amr_multirate_conf {
441 uint8_t gsm48_ie[2];
442 struct amr_mode ms_mode[4];
443 struct amr_mode bts_mode[4];
444 uint8_t num_modes;
445};
446/* /BTS ONLY */
447
448enum lchan_csd_mode {
449 LCHAN_CSD_M_NT,
450 LCHAN_CSD_M_T_1200_75,
451 LCHAN_CSD_M_T_600,
452 LCHAN_CSD_M_T_1200,
453 LCHAN_CSD_M_T_2400,
454 LCHAN_CSD_M_T_9600,
455 LCHAN_CSD_M_T_14400,
456 LCHAN_CSD_M_T_29000,
457 LCHAN_CSD_M_T_32000,
458};
459
460/* State of the SAPIs in the lchan */
461enum lchan_sapi_state {
462 LCHAN_SAPI_S_NONE,
463 LCHAN_SAPI_S_REQ,
464 LCHAN_SAPI_S_ASSIGNED,
465 LCHAN_SAPI_S_REL,
466 LCHAN_SAPI_S_ERROR,
467};
468
Neels Hofmeyr92b9f2e2018-02-14 00:19:11 +0100469#define MAX_A5_KEY_LEN (128/8)
470
471struct gsm_encr {
472 uint8_t alg_id;
473 uint8_t key_len;
474 uint8_t key[MAX_A5_KEY_LEN];
475};
476
Neels Hofmeyr8da22332018-04-11 01:43:41 +0200477#define LOGPLCHAN(lchan, ss, level, fmt, args...) \
478 LOGP(ss, level, "%s (ss=%d,%s) (%s) " fmt, \
479 lchan ? gsm_ts_and_pchan_name(lchan->ts) : "-", \
480 lchan ? lchan->nr : 0, \
481 lchan ? gsm_lchant_name(lchan->type) : "-", \
482 bsc_subscr_name(lchan && lchan->conn ? lchan->conn->bsub : NULL), \
483 ## args)
484
Pau Espin Pedrold3e8e0c2018-11-28 16:35:10 +0100485/* Iterate lchans that have an FSM allocated based based on explicit pchan kind
486 * (GSM_PCHAN_* constant).
487 * Remark: PDCH related lchans are not handled in BSC but in PCU, so trying to
488 * iterate through GSM_PCHAN_PDCH is considered a void loop.
489 */
490#define ts_as_pchan_for_each_lchan(lchan, ts, as_pchan) \
491 for (lchan = (ts)->lchan; \
492 ((lchan - (ts)->lchan) < ARRAY_SIZE((ts)->lchan)) \
493 && lchan->fi \
494 && lchan->nr < pchan_subslots(as_pchan); \
495 lchan++)
496
Pau Espin Pedrol7ae0f9c2018-11-28 16:37:37 +0100497/* Iterate lchans that have an FSM allocated based on current PCHAN
498 * mode set in \ref ts.
499 * usage:
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200500 * struct gsm_lchan *lchan;
501 * struct gsm_bts_trx_ts *ts = get_some_timeslot();
502 * ts_for_each_lchan(lchan, ts) {
503 * LOGPLCHAN(DMAIN, LOGL_DEBUG, "hello world\n");
504 * }
Pau Espin Pedrol7ae0f9c2018-11-28 16:37:37 +0100505 */
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200506#define ts_for_each_lchan(lchan, ts) ts_as_pchan_for_each_lchan(lchan, ts, (ts)->pchan_is)
507
Pau Espin Pedrol0ba20df2018-11-28 16:39:29 +0100508/* Iterate over all possible lchans available that have an FSM allocated based
509 * on PCHAN \ref ts (dynamic) configuration.
510 * Iterate all lchan instances set up by this \ref ts type, including those
511 * lchans currently disabled or in process of being enabled (e.g. due to dynamic
512 * timeslot in switchover). Compare ts_for_each_lchan(), which iterates only the
513 * enabled lchans.
514 * For example, it is useful in case dynamic timeslot \ref ts is in process of
515 * switching from configuration PDCH (no lchans) to TCH_F (1 lchan), where
516 * pchan_is is still set to PDCH but \ref ts may contain already an \ref lchan
517 * of type TCH_F which initiated the request to switch the \ts configuration.
518 */
519#define ts_for_each_potential_lchan(lchan, ts) ts_as_pchan_for_each_lchan(lchan, ts, (ts)->pchan_on_init)
520
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200521enum lchan_activate_mode {
522 FOR_NONE,
523 FOR_MS_CHANNEL_REQUEST,
524 FOR_ASSIGNMENT,
525 FOR_HANDOVER,
526 FOR_VTY,
527};
528
529extern const struct value_string lchan_activate_mode_names[];
530static inline const char *lchan_activate_mode_name(enum lchan_activate_mode activ_for)
531{ return get_value_string(lchan_activate_mode_names, activ_for); }
532
Neels Hofmeyr700e5182018-12-19 17:19:02 +0100533struct lchan_activate_info {
534 enum lchan_activate_mode activ_for;
535 struct gsm_subscriber_connection *for_conn;
536 /* This always is for a specific lchan, so its lchan->type indicates full or half rate.
537 * When a dyn TS was selected, the lchan->type has been set to the desired rate. */
538 enum gsm48_chan_mode chan_mode;
Neels Hofmeyr58cf1b12019-03-15 02:49:18 +0100539 struct gsm_encr encr;
Neels Hofmeyr38134ea2018-12-21 03:01:00 +0100540 /* AMR config */
Neels Hofmeyr700e5182018-12-19 17:19:02 +0100541 uint16_t s15_s0;
542 bool requires_voice_stream;
543 bool wait_before_switching_rtp; /*< true = requires LCHAN_EV_READY_TO_SWITCH_RTP */
544 uint16_t msc_assigned_cic;
Neels Hofmeyr38134ea2018-12-21 03:01:00 +0100545 /* During intra-BSC handover, we keep the MGW endpoint intact and just re-route to the new lchan. This
546 * activate_info is for the new lchan, the re_use_mgw_endpoint_from_lchan points at the old lchan. */
Neels Hofmeyr700e5182018-12-19 17:19:02 +0100547 struct gsm_lchan *re_use_mgw_endpoint_from_lchan;
548};
549
Neels Hofmeyr10485162018-02-13 23:22:03 +0100550struct gsm_lchan {
551 /* The TS that we're part of */
552 struct gsm_bts_trx_ts *ts;
553 /* The logical subslot number in the TS */
554 uint8_t nr;
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200555 char *name;
556
Neels Hofmeyreee24eb2018-11-06 21:39:15 +0100557 char *last_error;
558
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200559 struct osmo_fsm_inst *fi;
Neels Hofmeyrac85b342018-07-12 21:23:26 +0200560 struct osmo_fsm_inst *fi_rtp;
Neels Hofmeyrf14aaa42019-04-23 18:37:37 +0200561 struct osmo_mgcpc_ep_ci *mgw_endpoint_ci_bts;
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200562
563 struct {
Neels Hofmeyr700e5182018-12-19 17:19:02 +0100564 struct lchan_activate_info info;
Neels Hofmeyrac85b342018-07-12 21:23:26 +0200565 bool activ_ack; /*< true as soon as RSL Chan Activ Ack is received */
Neels Hofmeyr369fba22018-11-27 01:30:50 +0100566 bool immediate_assignment_sent;
Neels Hofmeyr193c1e32018-08-27 22:06:24 +0200567 /*! This flag ensures that when an lchan activation has succeeded, and we have already
568 * sent ACKs like Immediate Assignment or BSSMAP Assignment Complete, and if other errors
569 * occur later, e.g. during release, that we don't send a NACK out of context. */
570 bool concluded;
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200571 enum gsm0808_cause gsm0808_error_cause;
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200572 } activate;
573
Neels Hofmeyreee24eb2018-11-06 21:39:15 +0100574 struct {
575 /* If an event to release the lchan comes in while still waiting for responses, just mark this
576 * flag, so that the lchan will gracefully release at the next sensible junction. */
577 bool requested;
578 bool do_rr_release;
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200579
Neels Hofmeyreee24eb2018-11-06 21:39:15 +0100580 /* There is an RSL error cause of value 0, so we need a separate flag. */
581 bool in_error;
582 /* RSL error code, RSL_ERR_* */
583 uint8_t rsl_error_cause;
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200584
Neels Hofmeyreee24eb2018-11-06 21:39:15 +0100585 /* If a release event is being handled, ignore other ricocheting release events until that
586 * release handling has concluded. */
587 bool in_release_handler;
Harald Welte963763d2019-02-03 12:11:12 +0100588
589 /* is this release at the end of a CSFB call? */
590 bool is_csfb;
Neels Hofmeyreee24eb2018-11-06 21:39:15 +0100591 } release;
Neels Hofmeyrd5df9a12018-07-20 05:35:47 +0200592
Neels Hofmeyr10485162018-02-13 23:22:03 +0100593 /* The logical channel type */
594 enum gsm_chan_t type;
595 /* RSL channel mode */
596 enum rsl_cmod_spd rsl_cmode;
597 /* If TCH, traffic channel mode */
598 enum gsm48_chan_mode tch_mode;
599 enum lchan_csd_mode csd_mode;
Neels Hofmeyr10485162018-02-13 23:22:03 +0100600 /* Power levels for MS and BTS */
601 uint8_t bs_power;
602 uint8_t ms_power;
603 /* Encryption information */
604 struct gsm_encr encr;
605
606 /* AMR bits */
607 uint8_t mr_ms_lv[7];
608 uint8_t mr_bts_lv[7];
Neels Hofmeyr4daa2102019-01-30 16:46:58 +0100609 /* AMR bits were based on these rate bits: */
610 uint16_t s15_s0;
Neels Hofmeyr10485162018-02-13 23:22:03 +0100611
612 /* Established data link layer services */
613 uint8_t sapis[8];
614
615 struct {
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200616 uint32_t bound_ip; /*< where the BTS receives RTP */
Neels Hofmeyr10485162018-02-13 23:22:03 +0100617 uint16_t bound_port;
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200618 uint32_t connect_ip; /*< where the BTS sends RTP to (MGW) */
Neels Hofmeyr10485162018-02-13 23:22:03 +0100619 uint16_t connect_port;
620 uint16_t conn_id;
621 uint8_t rtp_payload;
622 uint8_t rtp_payload2;
623 uint8_t speech_mode;
Neels Hofmeyr10485162018-02-13 23:22:03 +0100624
625 /* info we need to postpone the AoIP
626 * assignment completed message */
627 struct {
628 uint8_t rr_cause;
Neels Hofmeyr10485162018-02-13 23:22:03 +0100629 bool valid;
630 } ass_compl;
631 } abis_ip;
632
633 uint8_t rqd_ta;
634
Neels Hofmeyr10485162018-02-13 23:22:03 +0100635 /* table of neighbor cell measurements */
636 struct neigh_meas_proc neigh_meas[MAX_NEIGH_MEAS];
637
638 /* cache of last measurement reports on this lchan */
639 struct gsm_meas_rep meas_rep[MAX_MEAS_REP];
640 int meas_rep_idx;
641 int meas_rep_count;
Neels Hofmeyr35ba85c2018-02-12 16:47:40 +0100642 uint8_t meas_rep_last_seen_nr;
Neels Hofmeyr10485162018-02-13 23:22:03 +0100643
644 /* GSM Random Access data */
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200645 /* TODO: don't allocate this, rather keep an "is_present" flag */
Neels Hofmeyr10485162018-02-13 23:22:03 +0100646 struct gsm48_req_ref *rqd_ref;
647
648 struct gsm_subscriber_connection *conn;
Philipp Maierbb66d102019-01-22 11:29:06 +0100649
650 /* Depending on the preferences that where submitted together with
651 * the assignment and the current channel load, the BSC has to select
652 * one of the offered codec/rates. The final selection by the BSC is
653 * stored here and is used when sending the assignment complete or
654 * when performing a handover procedure. */
655 struct channel_mode_and_rate ch_mode_rate;
Neels Hofmeyr10485162018-02-13 23:22:03 +0100656};
657
Neels Hofmeyr10485162018-02-13 23:22:03 +0100658/* One Timeslot in a TRX */
659struct gsm_bts_trx_ts {
660 struct gsm_bts_trx *trx;
661 /* number of this timeslot at the TRX */
662 uint8_t nr;
663
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200664 struct osmo_fsm_inst *fi;
665 char *last_errmsg;
Neels Hofmeyr10485162018-02-13 23:22:03 +0100666
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200667 /* vty phys_chan_config setting, not necessarily in effect in case it was changed in the telnet
668 * vty after OML activation. Gets written on vty 'write file'. */
669 enum gsm_phys_chan_config pchan_from_config;
670 /* When the timeslot OML is established, pchan_from_config is copied here. This is the pchan
671 * currently in effect; for dynamic ts, this is the dyn kind (GSM_PCHAN_TCH_F_TCH_H_PDCH or
672 * GSM_PCHAN_TCH_F_PDCH) and does not show the pchan type currently active. */
673 enum gsm_phys_chan_config pchan_on_init;
674 /* This is the *actual* pchan type currently active. For dynamic timeslots, this reflects either
675 * GSM_PCHAN_NONE or one of the standard GSM_PCHAN_TCH_F, GSM_PCHAN_TCH_H, GSM_PCHAN_PDCH.
676 * Callers can use this transparently without being aware of dyn ts. */
677 enum gsm_phys_chan_config pchan_is;
Neels Hofmeyr10485162018-02-13 23:22:03 +0100678
Neels Hofmeyr31f525e2018-05-14 18:14:15 +0200679 /* After a PDCH ACT NACK, we shall not infinitely loop to try and ACT again.
680 * Also marks a timeslot where PDCH was deactivated by VTY. This is cleared whenever a timeslot
681 * enters IN_USE state, i.e. after each TCH use we try to PDCH ACT once again. */
682 bool pdch_act_allowed;
683
Neels Hofmeyrbcdbfb72018-07-26 20:33:15 +0200684 /* Whether TS_EV_OML_READY was received */
685 bool is_oml_ready;
686 /* Whether TS_EV_RSL_READY was received */
687 bool is_rsl_ready;
688
Neels Hofmeyr10485162018-02-13 23:22:03 +0100689 struct gsm_abis_mo mo;
690 struct tlv_parsed nm_attr;
691 uint8_t nm_chan_comb;
692 int tsc; /* -1 == use BTS TSC */
693
694 struct {
695 /* Parameters below are configured by VTY */
696 int enabled;
697 uint8_t maio;
698 uint8_t hsn;
699 struct bitvec arfcns;
700 uint8_t arfcns_data[1024/8];
701 /* This is the pre-computed MA for channel assignments */
702 struct bitvec ma;
703 uint8_t ma_len; /* part of ma_data that is used */
704 uint8_t ma_data[8]; /* 10.5.2.21: max 8 bytes value part */
705 } hopping;
706
707 /* To which E1 subslot are we connected */
708 struct gsm_e1_subslot e1_link;
709
710 union {
711 struct {
712 struct om2k_mo om2k_mo;
713 } rbs2000;
714 };
715
716 struct gsm_lchan lchan[TS_MAX_LCHAN];
717};
718
719/* One TRX in a BTS */
720struct gsm_bts_trx {
721 /* list header in bts->trx_list */
722 struct llist_head list;
723
724 struct gsm_bts *bts;
725 /* number of this TRX in the BTS */
726 uint8_t nr;
727 /* human readable name / description */
728 char *description;
729 /* how do we talk RSL with this TRX? */
730 struct gsm_e1_subslot rsl_e1_link;
731 uint8_t rsl_tei;
732 struct e1inp_sign_link *rsl_link;
733
734 /* Timeout for initiating the RSL connection. */
735 struct osmo_timer_list rsl_connect_timeout;
736
737 /* Some BTS (specifically Ericsson RBS) have a per-TRX OML Link */
738 struct e1inp_sign_link *oml_link;
739
740 struct gsm_abis_mo mo;
741 struct tlv_parsed nm_attr;
742 struct {
743 struct gsm_abis_mo mo;
744 } bb_transc;
745
746 uint16_t arfcn;
747 int nominal_power; /* in dBm */
748 unsigned int max_power_red; /* in actual dB */
749
750 union {
751 struct {
752 struct {
753 struct gsm_abis_mo mo;
754 } bbsig;
755 struct {
756 struct gsm_abis_mo mo;
757 } pa;
758 } bs11;
759 struct {
760 unsigned int test_state;
761 uint8_t test_nr;
762 struct rxlev_stats rxlev_stat;
763 } ipaccess;
764 struct {
765 struct {
766 struct om2k_mo om2k_mo;
767 } trxc;
768 struct {
769 struct om2k_mo om2k_mo;
770 } rx;
771 struct {
772 struct om2k_mo om2k_mo;
773 } tx;
774 } rbs2000;
775 };
776 struct gsm_bts_trx_ts ts[TRX_NR_TS];
777};
778
779#define GSM_BTS_SI2Q(bts, i) (struct gsm48_system_information_type_2quater *)((bts)->si_buf[SYSINFO_TYPE_2quater][i])
780#define GSM_BTS_HAS_SI(bts, i) ((bts)->si_valid & (1 << i))
781#define GSM_BTS_SI(bts, i) (void *)((bts)->si_buf[i][0])
782#define GSM_LCHAN_SI(lchan, i) (void *)((lchan)->si.buf[i][0])
783
784enum gsm_bts_type {
785 GSM_BTS_TYPE_UNKNOWN,
786 GSM_BTS_TYPE_BS11,
787 GSM_BTS_TYPE_NANOBTS,
788 GSM_BTS_TYPE_RBS2000,
789 GSM_BTS_TYPE_NOKIA_SITE,
790 GSM_BTS_TYPE_OSMOBTS,
791 _NUM_GSM_BTS_TYPE
792};
793
794enum gsm_bts_type_variant {
795 BTS_UNKNOWN,
796 BTS_OSMO_LITECELL15,
797 BTS_OSMO_OCTPHY,
798 BTS_OSMO_SYSMO,
799 BTS_OSMO_TRX,
800 _NUM_BTS_VARIANT
801};
802
803/* Used by OML layer for BTS Attribute reporting */
804enum bts_attribute {
805 BTS_TYPE_VARIANT,
806 BTS_SUB_MODEL,
807 TRX_PHY_VERSION,
808};
809
810struct vty;
811
812struct gsm_bts_model {
813 struct llist_head list;
814
815 enum gsm_bts_type type;
816 enum gsm_bts_type_variant variant;
817 const char *name;
818
819 bool started;
820 int (*start)(struct gsm_network *net);
821 int (*oml_rcvmsg)(struct msgb *msg);
822 char * (*oml_status)(const struct gsm_bts *bts);
823
824 void (*e1line_bind_ops)(struct e1inp_line *line);
825
826 void (*config_write_bts)(struct vty *vty, struct gsm_bts *bts);
827 void (*config_write_trx)(struct vty *vty, struct gsm_bts_trx *trx);
828 void (*config_write_ts)(struct vty *vty, struct gsm_bts_trx_ts *ts);
829
Pau Espin Pedrol167cb822018-11-19 17:48:17 +0100830 /* Should SI2bis and SI2ter be disabled by default on this BTS model? */
831 bool force_combined_si;
832
Neels Hofmeyr10485162018-02-13 23:22:03 +0100833 struct tlv_definition nm_att_tlvdef;
834
835 /* features of a given BTS model set via gsm_bts_model_register() locally */
836 struct bitvec features;
837 uint8_t _features_data[MAX_BTS_FEATURES/8];
838};
839
Neels Hofmeyr10485162018-02-13 23:22:03 +0100840
Neels Hofmeyr10485162018-02-13 23:22:03 +0100841
842/*
843 * This keeps track of the paging status of one BTS. It
844 * includes a number of pending requests, a back pointer
845 * to the gsm_bts, a timer and some more state.
846 */
847struct gsm_bts_paging_state {
848 /* pending requests */
849 struct llist_head pending_requests;
850 struct gsm_bts *bts;
851
852 struct osmo_timer_list work_timer;
853 struct osmo_timer_list credit_timer;
854
855 /* free chans needed */
856 int free_chans_need;
857
858 /* load */
859 uint16_t available_slots;
860};
861
862struct gsm_envabtse {
863 struct gsm_abis_mo mo;
864};
865
866struct gsm_bts_gprs_nsvc {
867 struct gsm_bts *bts;
868 /* data read via VTY config file, to configure the BTS
869 * via OML from BSC */
870 int id;
871 uint16_t nsvci;
872 uint16_t local_port; /* on the BTS */
873 uint16_t remote_port; /* on the SGSN */
874 uint32_t remote_ip; /* on the SGSN */
875
876 struct gsm_abis_mo mo;
877};
878
879enum gprs_rlc_par {
880 RLC_T3142,
881 RLC_T3169,
882 RLC_T3191,
883 RLC_T3193,
884 RLC_T3195,
885 RLC_N3101,
886 RLC_N3103,
887 RLC_N3105,
888 CV_COUNTDOWN,
889 T_DL_TBF_EXT, /* ms */
890 T_UL_TBF_EXT, /* ms */
891 _NUM_RLC_PAR
892};
893
894enum gprs_cs {
895 GPRS_CS1,
896 GPRS_CS2,
897 GPRS_CS3,
898 GPRS_CS4,
899 GPRS_MCS1,
900 GPRS_MCS2,
901 GPRS_MCS3,
902 GPRS_MCS4,
903 GPRS_MCS5,
904 GPRS_MCS6,
905 GPRS_MCS7,
906 GPRS_MCS8,
907 GPRS_MCS9,
908 _NUM_GRPS_CS
909};
910
911struct gprs_rlc_cfg {
912 uint16_t parameter[_NUM_RLC_PAR];
913 struct {
914 uint16_t repeat_time; /* ms */
915 uint8_t repeat_count;
916 } paging;
917 uint32_t cs_mask; /* bitmask of gprs_cs */
918 uint8_t initial_cs;
919 uint8_t initial_mcs;
920};
921
922
923enum neigh_list_manual_mode {
924 NL_MODE_AUTOMATIC = 0,
925 NL_MODE_MANUAL = 1,
926 NL_MODE_MANUAL_SI5SEP = 2, /* SI2 and SI5 have separate neighbor lists */
927};
928
929enum bts_loc_fix {
930 BTS_LOC_FIX_INVALID = 0,
931 BTS_LOC_FIX_2D = 1,
932 BTS_LOC_FIX_3D = 2,
933};
934
935extern const struct value_string bts_loc_fix_names[];
936
937struct bts_location {
938 struct llist_head list;
939 time_t tstamp;
940 enum bts_loc_fix valid;
941 double lat;
942 double lon;
943 double height;
944};
945
946/* Channel load counter */
947struct load_counter {
948 unsigned int total;
949 unsigned int used;
950};
951
Neels Hofmeyr19bed232018-03-22 04:54:57 +0100952/* Useful to track N-N relations between BTS, for example neighbors. */
953struct gsm_bts_ref {
954 struct llist_head entry;
955 struct gsm_bts *bts;
956};
957
Harald Welted41b7c72019-06-13 09:41:58 +0200958/* A single Page of a SMSCB message */
959struct bts_smscb_page {
960 /* SMSCB message we're part of */
961 struct bts_smscb_message *msg;
962 /* Page Number within message (1 to 15) */
963 uint8_t nr;
964 /* number of valid blocks in data (up to 4) */
965 uint8_t num_blocks;
966 /* up to four blocks of 22 bytes each */
967 uint8_t data[88];
968};
969
970/* A SMSCB message (received from CBSP) */
971struct bts_smscb_message {
972 /* entry in bts_smscb_chan_state.messages */
973 struct llist_head list;
974 struct {
975 /* input data from CBSP (CBC) side */
976 uint16_t msg_id;
977 uint16_t serial_nr;
978 enum cbsp_category category;
979 uint16_t rep_period;
980 uint16_t num_bcast_req;
981 uint8_t dcs;
982 } input;
983 /* how often have all pages of this message been broadcast? */
984 uint32_t bcast_count;
985 /* actual page data of this message */
986 uint8_t num_pages; /* up to 15 */
987 struct bts_smscb_page page[15];
988};
989
990/* per-channel (basic/extended) CBCH state for a single BTS */
991struct bts_smscb_chan_state {
992 /* back-pointer to BTS */
993 struct gsm_bts *bts;
994 /* list of bts_smscb_message */
995 struct llist_head messages;
996 /* scheduling array; pointer of SMSCB pages */
997 struct bts_smscb_page **sched_arr;
998 size_t sched_arr_size;
999 /* index of the next to be transmitted page into the scheduler array */
1000 size_t next_idx;
1001 /* number of messages we have to pause due to overflow */
1002 uint8_t overflow;
1003};
1004
Neels Hofmeyr10485162018-02-13 23:22:03 +01001005/* One BTS */
1006struct gsm_bts {
1007 /* list header in net->bts_list */
1008 struct llist_head list;
1009
1010 /* Geographical location of the BTS */
1011 struct llist_head loc_list;
1012
Martin Haukea29affd2019-11-13 22:10:41 +01001013 /* number of this BTS in network */
Neels Hofmeyr10485162018-02-13 23:22:03 +01001014 uint8_t nr;
1015 /* human readable name / description */
1016 char *description;
1017 /* Cell Identity */
1018 uint16_t cell_identity;
1019 /* location area code of this BTS */
1020 uint16_t location_area_code;
1021 /* Base Station Identification Code (BSIC), lower 3 bits is BCC,
1022 * which is used as TSC for the CCCH */
1023 uint8_t bsic;
1024 /* type of BTS */
1025 enum gsm_bts_type type;
1026 enum gsm_bts_type_variant variant;
1027 struct gsm_bts_model *model;
1028 enum gsm_band band;
1029 char version[MAX_VERSION_LENGTH];
1030 char sub_model[MAX_VERSION_LENGTH];
1031
1032 /* features of a given BTS set/reported via OML */
1033 struct bitvec features;
1034 uint8_t _features_data[MAX_BTS_FEATURES/8];
1035
1036 /* Connected PCU version (if any) */
1037 char pcu_version[MAX_VERSION_LENGTH];
1038
1039 /* maximum Tx power that the MS is permitted to use in this cell */
1040 int ms_max_power;
1041
1042 /* how do we talk OML with this TRX? */
1043 struct gsm_e1_subslot oml_e1_link;
1044 uint8_t oml_tei;
1045 struct e1inp_sign_link *oml_link;
Pau Espin Pedrol9862bcb2018-08-22 21:54:12 +02001046 /* Timer to use for deferred drop of OML link, see \ref ipaccess_drop_oml_deferred */
1047 struct osmo_timer_list oml_drop_link_timer;
Neels Hofmeyr10485162018-02-13 23:22:03 +01001048 /* when OML link was established */
1049 time_t uptime;
1050
1051 /* Abis network management O&M handle */
1052 struct abis_nm_h *nmh;
1053
1054 struct gsm_abis_mo mo;
1055
1056 /* number of this BTS on given E1 link */
1057 uint8_t bts_nr;
1058
1059 /* DTX features of this BTS */
1060 enum gsm48_dtx_mode dtxu;
1061 bool dtxd;
1062
1063 /* paging state and control */
1064 struct gsm_bts_paging_state paging;
1065
1066 /* CCCH is on C0 */
1067 struct gsm_bts_trx *c0;
1068
1069 struct {
1070 struct gsm_abis_mo mo;
1071 } site_mgr;
1072
1073 /* bitmask of all SI that are present/valid in si_buf */
1074 uint32_t si_valid;
1075 /* 3GPP TS 44.018 Table 10.5.2.33b.1 INDEX and COUNT for SI2quater */
1076 uint8_t si2q_index; /* distinguish individual SI2quater messages */
1077 uint8_t si2q_count; /* si2q_index for the last (highest indexed) individual SI2quater message */
1078 /* buffers where we put the pre-computed SI */
1079 sysinfo_buf_t si_buf[_MAX_SYSINFO_TYPE][SI2Q_MAX_NUM];
1080 /* offsets used while generating SI2quater */
1081 size_t e_offset;
1082 size_t u_offset;
Pau Espin Pedrol1cf21de2018-12-05 13:38:10 +01001083 /* 3GPP TS 08.58 §8.5.1 BCCH INFORMATION. Some nanoBTS fail upon
1084 * receival of empty SI disabling unsupported SI. see OS#3707. */
1085 bool si_unused_send_empty;
Neels Hofmeyr10485162018-02-13 23:22:03 +01001086
Martin Haukea29affd2019-11-13 22:10:41 +01001087 /* ip.access Unit ID's have Site/BTS/TRX layout */
Neels Hofmeyr10485162018-02-13 23:22:03 +01001088 union {
1089 struct {
1090 uint16_t site_id;
1091 uint16_t bts_id;
1092 uint32_t flags;
1093 uint32_t rsl_ip;
1094 } ip_access;
1095 struct {
1096 struct {
1097 struct gsm_abis_mo mo;
1098 } cclk;
1099 struct {
1100 struct gsm_abis_mo mo;
1101 } rack;
1102 struct gsm_envabtse envabtse[4];
1103 } bs11;
1104 struct {
1105 struct {
1106 struct om2k_mo om2k_mo;
1107 struct gsm_abis_mo mo;
1108 struct llist_head conn_groups;
1109 } cf;
1110 struct {
1111 struct om2k_mo om2k_mo;
1112 struct gsm_abis_mo mo;
1113 struct llist_head conn_groups;
1114 } is;
1115 struct {
1116 struct om2k_mo om2k_mo;
1117 struct gsm_abis_mo mo;
1118 struct llist_head conn_groups;
1119 } con;
1120 struct {
1121 struct om2k_mo om2k_mo;
1122 struct gsm_abis_mo mo;
1123 } dp;
1124 struct {
1125 struct om2k_mo om2k_mo;
1126 struct gsm_abis_mo mo;
1127 } tf;
1128 uint32_t use_superchannel:1;
1129 } rbs2000;
1130 struct {
1131 uint8_t bts_type;
1132 unsigned int configured:1,
1133 skip_reset:1,
1134 no_loc_rel_cnf:1,
1135 bts_reset_timer_cnf,
1136 did_reset:1,
1137 wait_reset:1;
1138 struct osmo_timer_list reset_timer;
1139 } nokia;
1140 };
1141
1142 /* Not entirely sure how ip.access specific this is */
1143 struct {
1144 uint8_t supports_egprs_11bit_rach;
1145 enum bts_gprs_mode mode;
1146 struct {
1147 struct gsm_abis_mo mo;
1148 uint16_t nsei;
1149 uint8_t timer[7];
1150 } nse;
1151 struct {
1152 struct gsm_abis_mo mo;
1153 uint16_t bvci;
1154 uint8_t timer[11];
1155 struct gprs_rlc_cfg rlc_cfg;
1156 } cell;
1157 struct gsm_bts_gprs_nsvc nsvc[2];
1158 uint8_t rac;
1159 uint8_t net_ctrl_ord;
1160 bool ctrl_ack_type_use_block;
1161 } gprs;
1162
Harald Welte15400252019-05-24 11:56:23 +02001163 /* threshold (in percent) when BTS shall send CCCH LOAD IND */
1164 int ccch_load_ind_thresh;
1165
Neels Hofmeyr10485162018-02-13 23:22:03 +01001166 /* RACH NM values */
1167 int rach_b_thresh;
1168 int rach_ldavg_slots;
1169
1170 /* transceivers */
1171 int num_trx;
1172 struct llist_head trx_list;
1173
1174 /* SI related items */
1175 int force_combined_si;
Pau Espin Pedrol167cb822018-11-19 17:48:17 +01001176 bool force_combined_si_set;
Neels Hofmeyr10485162018-02-13 23:22:03 +01001177 int bcch_change_mark;
1178
1179 /* Abis NM queue */
1180 struct llist_head abis_queue;
1181 int abis_nm_pend;
1182
1183 struct gsm_network *network;
1184
1185 /* should the channel allocator allocate channels from high TRX to TRX0,
1186 * rather than starting from TRX0 and go upwards? */
1187 int chan_alloc_reverse;
1188
1189 enum neigh_list_manual_mode neigh_list_manual_mode;
1190 /* parameters from which we build SYSTEM INFORMATION */
1191 struct {
1192 struct gsm48_rach_control rach_control;
1193 uint8_t ncc_permitted;
1194 struct gsm48_cell_sel_par cell_sel_par;
1195 struct gsm48_si_selection_params cell_ro_sel_par; /* rest octet */
1196 struct gsm48_cell_options cell_options;
1197 struct gsm48_control_channel_descr chan_desc;
1198 struct bitvec neigh_list;
1199 struct bitvec cell_alloc;
1200 struct bitvec si5_neigh_list;
1201 struct osmo_earfcn_si2q si2quater_neigh_list;
1202 size_t uarfcn_length; /* index for uarfcn and scramble lists */
1203 struct {
1204 /* bitmask large enough for all possible ARFCN's */
1205 uint8_t neigh_list[1024/8];
1206 uint8_t cell_alloc[1024/8];
1207 /* If the user wants a different neighbor list in SI5 than in SI2 */
1208 uint8_t si5_neigh_list[1024/8];
1209 uint8_t meas_bw_list[MAX_EARFCN_LIST];
1210 uint16_t earfcn_list[MAX_EARFCN_LIST];
1211 uint16_t uarfcn_list[MAX_EARFCN_LIST];
1212 uint16_t scramble_list[MAX_EARFCN_LIST];
1213 } data;
1214 } si_common;
1215 bool early_classmark_allowed;
1216 bool early_classmark_allowed_3g;
1217 /* for testing only: Have an infinitely long radio link timeout */
1218 bool infinite_radio_link_timeout;
1219
1220 /* do we use static (user-defined) system information messages? (bitmask) */
1221 uint32_t si_mode_static;
1222
Stefan Sperling6442e432018-02-06 14:44:54 +01001223 /* access control class ramping */
1224 struct acc_ramp acc_ramp;
1225
Neels Hofmeyr10485162018-02-13 23:22:03 +01001226 /* exclude the BTS from the global RF Lock handling */
1227 int excl_from_rf_lock;
1228
1229 /* supported codecs beside FR */
1230 struct bts_codec_conf codec;
1231
1232 /* BTS dependencies bit field */
1233 uint32_t depends_on[256/(8*4)];
1234
1235 /* full and half rate multirate config */
1236 struct amr_multirate_conf mr_full;
1237 struct amr_multirate_conf mr_half;
1238
1239 /* PCU socket state */
1240 char *pcu_sock_path;
1241 struct pcu_sock_state *pcu_state;
1242
1243 struct rate_ctr_group *bts_ctrs;
1244 struct osmo_stat_item_group *bts_statg;
1245
1246 struct handover_cfg *ho;
1247
Neels Hofmeyr19bed232018-03-22 04:54:57 +01001248 /* A list of struct gsm_bts_ref, indicating neighbors of this BTS.
1249 * When the si_common neigh_list is in automatic mode, it is populated from this list as well as
1250 * gsm_network->neighbor_bss_cells. */
1251 struct llist_head local_neighbors;
1252
Neels Hofmeyr10485162018-02-13 23:22:03 +01001253 /* BTS-specific overrides for timer values from struct gsm_network. */
Martin Haukea29affd2019-11-13 22:10:41 +01001254 uint8_t T3122; /* ASSIGNMENT REJECT wait indication */
Pau Espin Pedrol1b963342018-11-07 14:19:32 +01001255 bool T3113_dynamic; /* Calculate T3113 timeout dynamically based on BTS channel config and load */
Neels Hofmeyr10485162018-02-13 23:22:03 +01001256
1257 /* Periodic channel load measurements are used to maintain T3122. */
1258 struct load_counter chan_load_samples[7];
1259 int chan_load_samples_idx;
Stefan Sperling6442e432018-02-06 14:44:54 +01001260 uint8_t chan_load_avg; /* current channel load average in percent (0 - 100). */
Harald Welted41b7c72019-06-13 09:41:58 +02001261
1262 /* cell broadcast system */
1263 struct osmo_timer_list cbch_timer;
1264 struct bts_smscb_chan_state cbch_basic;
1265 struct bts_smscb_chan_state cbch_extended;
Harald Welte7d888442019-09-06 23:18:27 +02001266 struct osmo_timer_list etws_timer; /* when to stop ETWS PN */
Neels Hofmeyr10485162018-02-13 23:22:03 +01001267};
1268
Oliver Smith8d8d7102018-10-23 15:35:43 +02001269/* One rejected BTS */
1270struct gsm_bts_rejected {
1271 /* list header in net->bts_rejected */
1272 struct llist_head list;
1273
1274 uint16_t site_id;
1275 uint16_t bts_id;
1276 char ip[INET6_ADDRSTRLEN];
1277 time_t time;
1278};
Neels Hofmeyr10485162018-02-13 23:22:03 +01001279
Neels Hofmeyr958f2592018-05-27 01:26:31 +02001280struct gsm_network *gsm_network_init(void *ctx);
1281
Neels Hofmeyr10485162018-02-13 23:22:03 +01001282struct gsm_bts *gsm_bts_alloc(struct gsm_network *net, uint8_t bts_num);
Neels Hofmeyr6d568ed2018-07-09 16:49:18 +02001283struct gsm_bts *gsm_bts_num(const struct gsm_network *net, int num);
Neels Hofmeyr19bed232018-03-22 04:54:57 +01001284bool gsm_bts_matches_lai(const struct gsm_bts *bts, const struct osmo_location_area_id *lai);
1285bool gsm_bts_matches_cell_id(const struct gsm_bts *bts, const struct gsm0808_cell_id *cell_id);
1286struct gsm_bts *gsm_bts_by_cell_id(const struct gsm_network *net,
1287 const struct gsm0808_cell_id *cell_id,
1288 int match_idx);
1289int gsm_bts_local_neighbor_add(struct gsm_bts *bts, struct gsm_bts *neighbor);
1290int gsm_bts_local_neighbor_del(struct gsm_bts *bts, const struct gsm_bts *neighbor);
Neels Hofmeyr10485162018-02-13 23:22:03 +01001291
1292struct gsm_bts_trx *gsm_bts_trx_alloc(struct gsm_bts *bts);
1293struct gsm_bts_trx *gsm_bts_trx_num(const struct gsm_bts *bts, int num);
1294
1295enum gsm_bts_type str2btstype(const char *arg);
1296const char *btstype2str(enum gsm_bts_type type);
1297
1298enum bts_attribute str2btsattr(const char *s);
1299const char *btsatttr2str(enum bts_attribute v);
1300
1301enum gsm_bts_type_variant str2btsvariant(const char *arg);
1302const char *btsvariant2str(enum gsm_bts_type_variant v);
1303
1304extern const struct value_string gsm_chreq_descs[];
Neels Hofmeyr31f525e2018-05-14 18:14:15 +02001305extern const struct value_string gsm_pchant_names[];
1306extern const struct value_string gsm_pchant_descs[];
1307extern const struct value_string gsm_pchan_ids[];
Neels Hofmeyr10485162018-02-13 23:22:03 +01001308const char *gsm_pchan_name(enum gsm_phys_chan_config c);
Neels Hofmeyr31f525e2018-05-14 18:14:15 +02001309static inline const char *gsm_pchan_id(enum gsm_phys_chan_config c)
1310{ return get_value_string(gsm_pchan_ids, c); }
Neels Hofmeyr10485162018-02-13 23:22:03 +01001311enum gsm_phys_chan_config gsm_pchan_parse(const char *name);
1312const char *gsm_lchant_name(enum gsm_chan_t c);
1313const char *gsm_chreq_name(enum gsm_chreq_reason_t c);
Harald Welte57658ec2019-02-04 12:30:44 +01001314char *gsm_bts_name(const struct gsm_bts *bts);
Neels Hofmeyr10485162018-02-13 23:22:03 +01001315char *gsm_trx_name(const struct gsm_bts_trx *trx);
1316char *gsm_ts_name(const struct gsm_bts_trx_ts *ts);
1317char *gsm_ts_and_pchan_name(const struct gsm_bts_trx_ts *ts);
1318char *gsm_lchan_name_compute(const struct gsm_lchan *lchan);
Neels Hofmeyr10485162018-02-13 23:22:03 +01001319
1320static inline char *gsm_lchan_name(const struct gsm_lchan *lchan)
1321{
1322 return lchan->name;
1323}
1324
Neels Hofmeyr10485162018-02-13 23:22:03 +01001325void gsm_abis_mo_reset(struct gsm_abis_mo *mo);
1326
1327struct gsm_nm_state *
1328gsm_objclass2nmstate(struct gsm_bts *bts, uint8_t obj_class,
1329 const struct abis_om_obj_inst *obj_inst);
1330void *
1331gsm_objclass2obj(struct gsm_bts *bts, uint8_t obj_class,
1332 const struct abis_om_obj_inst *obj_inst);
1333
1334/* reset the state of all MO in the BTS */
1335void gsm_bts_mo_reset(struct gsm_bts *bts);
1336
1337uint8_t gsm_pchan2chan_nr(enum gsm_phys_chan_config pchan,
1338 uint8_t ts_nr, uint8_t lchan_nr);
1339uint8_t gsm_lchan2chan_nr(const struct gsm_lchan *lchan);
1340uint8_t gsm_lchan_as_pchan2chan_nr(const struct gsm_lchan *lchan,
1341 enum gsm_phys_chan_config as_pchan);
1342
Harald Welte251bec12018-09-09 17:14:09 +02001343void gsm48_lchan2chan_desc(struct gsm48_chan_desc *cd,
1344 const struct gsm_lchan *lchan);
Harald Welte24286f32018-09-09 17:17:44 +02001345void gsm48_lchan2chan_desc_as_configured(struct gsm48_chan_desc *cd, const struct gsm_lchan *lchan);
Harald Welte251bec12018-09-09 17:14:09 +02001346
Neels Hofmeyr10485162018-02-13 23:22:03 +01001347/* return the gsm_lchan for the CBCH (if it exists at all) */
1348struct gsm_lchan *gsm_bts_get_cbch(struct gsm_bts *bts);
1349
1350/*
1351 * help with parsing regexps
1352 */
1353int gsm_parse_reg(void *ctx, regex_t *reg, char **str,
1354 int argc, const char **argv) __attribute__ ((warn_unused_result));
1355
1356static inline uint8_t gsm_ts_tsc(const struct gsm_bts_trx_ts *ts)
1357{
1358 if (ts->tsc != -1)
1359 return ts->tsc;
1360 else
1361 return ts->trx->bts->bsic & 7;
1362}
1363
1364struct gsm_lchan *rsl_lchan_lookup(struct gsm_bts_trx *trx, uint8_t chan_nr,
1365 int *rc);
1366
1367enum gsm_phys_chan_config ts_pchan(struct gsm_bts_trx_ts *ts);
Neels Hofmeyr31f525e2018-05-14 18:14:15 +02001368uint8_t pchan_subslots(enum gsm_phys_chan_config pchan);
Neels Hofmeyr10485162018-02-13 23:22:03 +01001369bool ts_is_tch(struct gsm_bts_trx_ts *ts);
1370
Holger Hans Peter Freyther68884aa2010-03-23 06:41:45 +01001371
Harald Welteb7948872017-12-18 18:48:21 +01001372static inline struct gsm_bts *conn_get_bts(struct gsm_subscriber_connection *conn) {
1373 OSMO_ASSERT(conn->lchan);
1374 return conn->lchan->ts->trx->bts;
1375}
1376
Harald Welted82101e2017-12-09 23:07:38 +01001377enum {
1378 BTS_CTR_CHREQ_TOTAL,
1379 BTS_CTR_CHREQ_NO_CHANNEL,
1380 BTS_CTR_CHAN_RF_FAIL,
1381 BTS_CTR_CHAN_RLL_ERR,
1382 BTS_CTR_BTS_OML_FAIL,
1383 BTS_CTR_BTS_RSL_FAIL,
1384 BTS_CTR_CODEC_AMR_F,
1385 BTS_CTR_CODEC_AMR_H,
1386 BTS_CTR_CODEC_EFR,
1387 BTS_CTR_CODEC_V1_FR,
1388 BTS_CTR_CODEC_V1_HR,
Harald Weltecf9d4312017-12-13 23:17:16 +01001389 BTS_CTR_PAGING_ATTEMPTED,
1390 BTS_CTR_PAGING_ALREADY,
1391 BTS_CTR_PAGING_RESPONDED,
1392 BTS_CTR_PAGING_EXPIRED,
Harald Welte4f598922017-12-14 13:47:02 +01001393 BTS_CTR_CHAN_ACT_TOTAL,
1394 BTS_CTR_CHAN_ACT_NACK,
Harald Welte62d9cb02017-12-14 14:00:26 +01001395 BTS_CTR_RSL_UNKNOWN,
Harald Welte581398a2017-12-14 14:29:44 +01001396 BTS_CTR_RSL_IPA_NACK,
Harald Welte00d64fd2017-12-14 14:34:16 +01001397 BTS_CTR_MODE_MODIFY_NACK,
Harald Welted82101e2017-12-09 23:07:38 +01001398};
1399
1400static const struct rate_ctr_desc bts_ctr_description[] = {
Harald Welte1ef46d92017-12-09 23:10:46 +01001401 [BTS_CTR_CHREQ_TOTAL] = {"chreq:total", "Received channel requests."},
1402 [BTS_CTR_CHREQ_NO_CHANNEL] = {"chreq:no_channel", "Sent to MS no channel available."},
1403 [BTS_CTR_CHAN_RF_FAIL] = {"chan:rf_fail", "Received a RF failure indication from BTS."},
1404 [BTS_CTR_CHAN_RLL_ERR] = {"chan:rll_err", "Received a RLL failure with T200 cause from BTS."},
Harald Welted82101e2017-12-09 23:07:38 +01001405 [BTS_CTR_BTS_OML_FAIL] = {"oml_fail", "Received a TEI down on a OML link."},
1406 [BTS_CTR_BTS_RSL_FAIL] = {"rsl_fail", "Received a TEI down on a OML link."},
Harald Welte1ef46d92017-12-09 23:10:46 +01001407 [BTS_CTR_CODEC_AMR_F] = {"codec:amr_f", "Count the usage of AMR/F codec by channel mode requested."},
1408 [BTS_CTR_CODEC_AMR_H] = {"codec:amr_h", "Count the usage of AMR/H codec by channel mode requested."},
1409 [BTS_CTR_CODEC_EFR] = {"codec:efr", "Count the usage of EFR codec by channel mode requested."},
1410 [BTS_CTR_CODEC_V1_FR] = {"codec:fr", "Count the usage of FR codec by channel mode requested."},
1411 [BTS_CTR_CODEC_V1_HR] = {"codec:hr", "Count the usage of HR codec by channel mode requested."},
Harald Weltecf9d4312017-12-13 23:17:16 +01001412
1413 [BTS_CTR_PAGING_ATTEMPTED] = {"paging:attempted", "Paging attempts for a subscriber."},
Martin Haukea29affd2019-11-13 22:10:41 +01001414 [BTS_CTR_PAGING_ALREADY] = {"paging:already", "Paging attempts ignored as subscriber was already being paged."},
Harald Weltecf9d4312017-12-13 23:17:16 +01001415 [BTS_CTR_PAGING_RESPONDED] = {"paging:responded", "Paging attempts with successful paging response."},
1416 [BTS_CTR_PAGING_EXPIRED] = {"paging:expired", "Paging Request expired because of timeout T3113."},
Harald Welte4f598922017-12-14 13:47:02 +01001417 [BTS_CTR_CHAN_ACT_TOTAL] = {"chan_act:total", "Total number of Channel Activations."},
1418 [BTS_CTR_CHAN_ACT_NACK] = {"chan_act:nack", "Number of Channel Activations that the BTS NACKed"},
Harald Welte62d9cb02017-12-14 14:00:26 +01001419 [BTS_CTR_RSL_UNKNOWN] = {"rsl:unknown", "Number of unknown/unsupported RSL messages received from BTS"},
Harald Welte581398a2017-12-14 14:29:44 +01001420 [BTS_CTR_RSL_IPA_NACK] = {"rsl:ipa_nack", "Number of IPA (RTP/dyn-PDCH) related NACKs received from BTS"},
Harald Welte00d64fd2017-12-14 14:34:16 +01001421 [BTS_CTR_MODE_MODIFY_NACK] = {"chan:mode_modify_nack", "Number of Channel Mode Modify NACKs received from BTS"},
Harald Welted82101e2017-12-09 23:07:38 +01001422};
1423
1424static const struct rate_ctr_group_desc bts_ctrg_desc = {
1425 "bts",
1426 "base transceiver station",
1427 OSMO_STATS_CLASS_GLOBAL,
1428 ARRAY_SIZE(bts_ctr_description),
1429 bts_ctr_description,
1430};
Holger Hans Peter Freyther5ba6f482009-10-28 14:23:39 +01001431
Alexander Couzens20423ea2016-07-12 15:42:02 +02001432enum {
Stefan Sperling81dc9e72018-02-05 17:34:36 +01001433 BTS_STAT_CHAN_LOAD_AVERAGE,
1434 BTS_STAT_T3122,
Harald Weltebe86caa2019-05-24 09:30:28 +02001435 BTS_STAT_RACH_BUSY,
1436 BTS_STAT_RACH_ACCESS,
Stefan Sperling81dc9e72018-02-05 17:34:36 +01001437};
1438
1439enum {
Neels Hofmeyr31f525e2018-05-14 18:14:15 +02001440 BSC_CTR_ASSIGNMENT_ATTEMPTED,
1441 BSC_CTR_ASSIGNMENT_COMPLETED,
1442 BSC_CTR_ASSIGNMENT_STOPPED,
1443 BSC_CTR_ASSIGNMENT_NO_CHANNEL,
1444 BSC_CTR_ASSIGNMENT_TIMEOUT,
1445 BSC_CTR_ASSIGNMENT_FAILED,
1446 BSC_CTR_ASSIGNMENT_ERROR,
Alexander Couzensb847a212016-08-02 11:34:11 +02001447 BSC_CTR_HANDOVER_ATTEMPTED,
Neels Hofmeyr31f525e2018-05-14 18:14:15 +02001448 BSC_CTR_HANDOVER_COMPLETED,
1449 BSC_CTR_HANDOVER_STOPPED,
Alexander Couzensb847a212016-08-02 11:34:11 +02001450 BSC_CTR_HANDOVER_NO_CHANNEL,
1451 BSC_CTR_HANDOVER_TIMEOUT,
Alexander Couzensb847a212016-08-02 11:34:11 +02001452 BSC_CTR_HANDOVER_FAILED,
Neels Hofmeyr31f525e2018-05-14 18:14:15 +02001453 BSC_CTR_HANDOVER_ERROR,
1454 BSC_CTR_INTER_BSC_HO_OUT_ATTEMPTED,
1455 BSC_CTR_INTER_BSC_HO_OUT_COMPLETED,
1456 BSC_CTR_INTER_BSC_HO_OUT_STOPPED,
1457 BSC_CTR_INTER_BSC_HO_OUT_TIMEOUT,
1458 BSC_CTR_INTER_BSC_HO_OUT_ERROR,
1459 BSC_CTR_INTER_BSC_HO_IN_ATTEMPTED,
1460 BSC_CTR_INTER_BSC_HO_IN_COMPLETED,
1461 BSC_CTR_INTER_BSC_HO_IN_STOPPED,
1462 BSC_CTR_INTER_BSC_HO_IN_NO_CHANNEL,
1463 BSC_CTR_INTER_BSC_HO_IN_FAILED,
1464 BSC_CTR_INTER_BSC_HO_IN_TIMEOUT,
1465 BSC_CTR_INTER_BSC_HO_IN_ERROR,
Alexander Couzensb847a212016-08-02 11:34:11 +02001466 BSC_CTR_PAGING_ATTEMPTED,
1467 BSC_CTR_PAGING_DETACHED,
Harald Weltecf9d4312017-12-13 23:17:16 +01001468 BSC_CTR_PAGING_RESPONDED,
Stefan Sperling7926d982018-05-17 14:52:02 +02001469 BSC_CTR_UNKNOWN_UNIT_ID,
Alexander Couzensb847a212016-08-02 11:34:11 +02001470};
1471
1472static const struct rate_ctr_desc bsc_ctr_description[] = {
Neels Hofmeyrdbb38d52018-07-11 19:53:56 +02001473 [BSC_CTR_ASSIGNMENT_ATTEMPTED] = {"assignment:attempted", "Assignment attempts."},
1474 [BSC_CTR_ASSIGNMENT_COMPLETED] = {"assignment:completed", "Assignment completed."},
1475 [BSC_CTR_ASSIGNMENT_STOPPED] = {"assignment:stopped", "Connection ended during Assignment."},
1476 [BSC_CTR_ASSIGNMENT_NO_CHANNEL] = {"assignment:no_channel", "Failure to allocate lchan for Assignment."},
1477 [BSC_CTR_ASSIGNMENT_TIMEOUT] = {"assignment:timeout", "Assignment timed out."},
1478 [BSC_CTR_ASSIGNMENT_FAILED] = {"assignment:failed", "Received Assignment Failure message."},
Martin Haukea29affd2019-11-13 22:10:41 +01001479 [BSC_CTR_ASSIGNMENT_ERROR] = {"assignment:error", "Assignment failed for other reason."},
Neels Hofmeyr31f525e2018-05-14 18:14:15 +02001480
1481 [BSC_CTR_HANDOVER_ATTEMPTED] = {"handover:attempted", "Intra-BSC handover attempts."},
1482 [BSC_CTR_HANDOVER_COMPLETED] = {"handover:completed", "Intra-BSC handover completed."},
1483 [BSC_CTR_HANDOVER_STOPPED] = {"handover:stopped", "Connection ended during HO."},
1484 [BSC_CTR_HANDOVER_NO_CHANNEL] = {"handover:no_channel", "Failure to allocate lchan for HO."},
1485 [BSC_CTR_HANDOVER_TIMEOUT] = {"handover:timeout", "Handover timed out."},
1486 [BSC_CTR_HANDOVER_FAILED] = {"handover:failed", "Received Handover Fail messages."},
Martin Haukea29affd2019-11-13 22:10:41 +01001487 [BSC_CTR_HANDOVER_ERROR] = {"handover:error", "Re-assignment failed for other reason."},
Neels Hofmeyr31f525e2018-05-14 18:14:15 +02001488
1489 [BSC_CTR_INTER_BSC_HO_OUT_ATTEMPTED] = {"interbsc_ho_out:attempted",
1490 "Attempts to handover to remote BSS."},
1491 [BSC_CTR_INTER_BSC_HO_OUT_COMPLETED] = {"interbsc_ho_out:completed",
1492 "Handover to remote BSS completed."},
1493 [BSC_CTR_INTER_BSC_HO_OUT_STOPPED] = {"interbsc_ho_out:stopped", "Connection ended during HO."},
1494 [BSC_CTR_INTER_BSC_HO_OUT_TIMEOUT] = {"interbsc_ho_out:timeout", "Handover timed out."},
1495 [BSC_CTR_INTER_BSC_HO_OUT_ERROR] = {"interbsc_ho_out:error",
1496 "Handover to remote BSS failed for other reason."},
1497
1498 [BSC_CTR_INTER_BSC_HO_IN_ATTEMPTED] = {"interbsc_ho_in:attempted",
1499 "Attempts to handover from remote BSS."},
1500 [BSC_CTR_INTER_BSC_HO_IN_COMPLETED] = {"interbsc_ho_in:completed",
1501 "Handover from remote BSS completed."},
1502 [BSC_CTR_INTER_BSC_HO_IN_STOPPED] = {"interbsc_ho_in:stopped", "Connection ended during HO."},
1503 [BSC_CTR_INTER_BSC_HO_IN_NO_CHANNEL] = {"interbsc_ho_in:no_channel",
1504 "Failure to allocate lchan for HO."},
1505 [BSC_CTR_INTER_BSC_HO_IN_TIMEOUT] = {"interbsc_ho_in:timeout", "Handover from remote BSS timed out."},
1506 [BSC_CTR_INTER_BSC_HO_IN_FAILED] = {"interbsc_ho_in:failed", "Received Handover Fail message."},
1507 [BSC_CTR_INTER_BSC_HO_IN_ERROR] = {"interbsc_ho_in:error",
1508 "Handover from remote BSS failed for other reason."},
Harald Weltecf9d4312017-12-13 23:17:16 +01001509
1510 [BSC_CTR_PAGING_ATTEMPTED] = {"paging:attempted", "Paging attempts for a subscriber."},
Stefan Sperling71d524c2018-05-17 14:38:27 +02001511 [BSC_CTR_PAGING_DETACHED] = {"paging:detached", "Paging request send failures because no responsible BTS was found."},
Harald Weltecf9d4312017-12-13 23:17:16 +01001512 [BSC_CTR_PAGING_RESPONDED] = {"paging:responded", "Paging attempts with successful response."},
Stefan Sperling7926d982018-05-17 14:52:02 +02001513
1514 [BSC_CTR_UNKNOWN_UNIT_ID] = {"abis:unknown_unit_id", "Connection attempts from unknown IPA CCM Unit ID."},
Alexander Couzensb847a212016-08-02 11:34:11 +02001515};
1516
Alexander Couzensb847a212016-08-02 11:34:11 +02001517
1518
1519static const struct rate_ctr_group_desc bsc_ctrg_desc = {
1520 "bsc",
1521 "base station controller",
1522 OSMO_STATS_CLASS_GLOBAL,
1523 ARRAY_SIZE(bsc_ctr_description),
1524 bsc_ctr_description,
Alexander Couzens20423ea2016-07-12 15:42:02 +02001525};
1526
Neels Hofmeyr73983952016-05-10 13:29:33 +02001527struct gsm_tz {
1528 int override; /* if 0, use system's time zone instead. */
1529 int hr; /* hour */
1530 int mn; /* minute */
1531 int dst; /* daylight savings */
1532};
1533
Harald Welte52b1f982008-12-23 20:25:15 +00001534struct gsm_network {
Neels Hofmeyrce4d88b2017-05-08 15:12:20 +02001535 /* TODO MSCSPLIT the gsm_network struct is basically a kitchen sink for
1536 * global settings and variables, "madly" mixing BSC and MSC stuff. Split
1537 * this in e.g. struct osmo_bsc and struct osmo_msc, with the things
1538 * these have in common, like country and network code, put in yet
1539 * separate structs and placed as members in osmo_bsc and osmo_msc. */
1540
Neels Hofmeyrf93970b2018-03-05 02:09:40 +01001541 struct osmo_plmn_id plmn;
1542
Harald Welte51e4bf32017-12-23 17:30:18 +01001543 /* bit-mask of permitted encryption algorithms. LSB=A5/0, MSB=A5/7 */
1544 uint8_t a5_encryption_mask;
Holger Hans Peter Freytherf7d752f2009-11-16 17:12:38 +01001545 int neci;
Neels Hofmeyr909e9722017-12-07 03:54:01 +01001546
Neels Hofmeyre25018b2017-11-27 21:29:33 +01001547 struct handover_cfg *ho;
Neels Hofmeyr909e9722017-12-07 03:54:01 +01001548 struct {
1549 unsigned int congestion_check_interval_s;
1550 struct osmo_timer_list congestion_check_timer;
1551 } hodec2;
Harald Welte52b1f982008-12-23 20:25:15 +00001552
Alexander Couzensb847a212016-08-02 11:34:11 +02001553 struct rate_ctr_group *bsc_ctrs;
Harald Welte24ff6ee2009-12-22 00:41:05 +01001554
Harald Welte52b1f982008-12-23 20:25:15 +00001555 unsigned int num_bts;
Harald Weltee441d9c2009-06-21 16:17:15 +02001556 struct llist_head bts_list;
Oliver Smith8d8d7102018-10-23 15:35:43 +02001557 struct llist_head bts_rejected;
Holger Hans Peter Freytherc4d88ad2009-11-21 21:18:38 +01001558
Neels Hofmeyr08822a32019-07-11 03:43:34 +02001559 /* see gsm_network_T_defs */
Neels Hofmeyra6078fe2019-01-28 03:52:14 +01001560 struct osmo_tdef *T_defs;
Harald Welteeab84a12009-12-13 10:53:12 +01001561
Alexander Couzens547c2072017-11-21 12:03:04 +01001562 enum gsm_chan_t ctype_by_chreq[_NUM_CHREQ_T];
Holger Hans Peter Freyther78891072010-09-06 09:36:02 +08001563
Holger Hans Peter Freyther76fc4a32010-09-06 09:41:50 +08001564 /* Use a TCH for handling requests of type paging any */
1565 int pag_any_tch;
1566
Holger Hans Peter Freyther3e8e0462010-09-15 22:29:25 +08001567 /* MSC data in case we are a true BSC */
Holger Hans Peter Freyther8ec49522011-08-15 15:53:00 +02001568 struct osmo_bsc_data *bsc_data;
Holger Hans Peter Freytherdaee5ca2010-12-22 12:34:39 +01001569
Daniel Willmann6fc4a982011-07-22 17:55:42 +02001570 /* control interface */
1571 struct ctrl_handle *ctrl;
Neels Hofmeyr5f0c71b2016-07-23 20:15:28 +02001572
1573 /* Allow or disallow TCH/F on dynamic TCH/F_TCH/H_PDCH; OS#1778 */
1574 bool dyn_ts_allow_tch_f;
Neels Hofmeyrd90fa422016-05-09 21:03:12 +02001575
1576 /* all active subscriber connections. */
1577 struct llist_head subscr_conns;
Neels Hofmeyr73983952016-05-10 13:29:33 +02001578
1579 /* if override is nonzero, this timezone data is used for all MM
1580 * contexts. */
1581 /* TODO: in OsmoNITB, tz-override used to be BTS-specific. To enable
1582 * BTS|RNC specific timezone overrides for multi-tz networks in
Neels Hofmeyrfe291de2017-02-23 21:06:12 +01001583 * OsmoMSC, this should be tied to the location area code (LAC). */
Neels Hofmeyr73983952016-05-10 13:29:33 +02001584 struct gsm_tz tz;
Neels Hofmeyr6d804b12017-02-18 22:20:46 +01001585
1586 /* List of all struct bsc_subscr used in libbsc. This llist_head is
1587 * allocated so that the llist_head pointer itself can serve as a
1588 * talloc context (useful to not have to pass the entire gsm_network
1589 * struct to the bsc_subscr_* API, and for bsc_susbscr unit tests to
1590 * not require gsm_data.h). In an MSC-without-BSC environment, this
1591 * pointer is NULL to indicate absence of a bsc_subscribers list. */
1592 struct llist_head *bsc_subscribers;
Harald Weltea43e0b42016-06-19 18:06:02 +02001593
Stefan Sperling6cee8932018-01-30 18:14:22 +01001594 /* Timer for periodic channel load measurements to maintain each BTS's T3122. */
1595 struct osmo_timer_list t3122_chan_load_timer;
1596
Neels Hofmeyrc29505e2016-05-20 21:59:55 +02001597 struct {
Philipp Maier39c609b2017-09-27 15:51:34 +02001598 struct mgcp_client_conf *conf;
1599 struct mgcp_client *client;
Neels Hofmeyrf14aaa42019-04-23 18:37:37 +02001600 struct osmo_tdef *tdefs;
Philipp Maier39c609b2017-09-27 15:51:34 +02001601 } mgw;
Neels Hofmeyr19bed232018-03-22 04:54:57 +01001602
1603 /* Remote BSS Cell Identifier Lists */
1604 struct neighbor_ident_list *neighbor_bss_cells;
Harald Welte7e310b12009-03-30 20:56:32 +00001605};
1606
Neels Hofmeyr31f525e2018-05-14 18:14:15 +02001607struct gsm_audio_support {
1608 uint8_t hr : 1,
1609 ver : 7;
1610};
1611
Neels Hofmeyrf93970b2018-03-05 02:09:40 +01001612static inline const struct osmo_location_area_id *bts_lai(struct gsm_bts *bts)
1613{
1614 static struct osmo_location_area_id lai;
1615 lai = (struct osmo_location_area_id){
1616 .plmn = bts->network->plmn,
1617 .lac = bts->location_area_code,
1618 };
1619 return &lai;
1620}
1621
Neels Hofmeyrc13e6872016-05-11 13:53:47 +02001622extern void talloc_ctx_init(void *ctx_root);
1623
Harald Welte39315c42010-01-10 18:01:52 +01001624int gsm_set_bts_type(struct gsm_bts *bts, enum gsm_bts_type type);
Harald Weltee441d9c2009-06-21 16:17:15 +02001625
Harald Welte1d014a52009-08-08 15:38:29 +02001626enum gsm_bts_type parse_btstype(const char *arg);
Holger Hans Peter Freyther2dceae62009-06-12 17:39:38 +02001627const char *btstype2str(enum gsm_bts_type type);
Harald Weltebe991492009-05-23 13:56:40 +00001628struct gsm_bts *gsm_bts_by_lac(struct gsm_network *net, unsigned int lac,
1629 struct gsm_bts *start_bts);
Harald Welte32201c12009-03-10 12:15:10 +00001630
Andreas Eversberg8226fa72009-06-29 15:19:38 +02001631extern void *tall_bsc_ctx;
Harald Welte2cf161b2009-06-20 22:36:41 +02001632
Martin Haukea29affd2019-11-13 22:10:41 +01001633/* this actually refers to the IPA transport, not the BTS model */
Harald Welte32201c12009-03-10 12:15:10 +00001634static inline int is_ipaccess_bts(struct gsm_bts *bts)
1635{
1636 switch (bts->type) {
Mike Habene2d82272009-10-02 12:19:34 +01001637 case GSM_BTS_TYPE_NANOBTS:
Maxf9685c12017-03-23 12:01:07 +01001638 case GSM_BTS_TYPE_OSMOBTS:
Harald Welte32201c12009-03-10 12:15:10 +00001639 return 1;
1640 default:
1641 break;
1642 }
1643 return 0;
1644}
1645
Holger Hans Peter Freyther6f6cbf72015-04-04 19:35:22 +02001646static inline int is_sysmobts_v2(struct gsm_bts *bts)
1647{
1648 switch (bts->type) {
Maxf9685c12017-03-23 12:01:07 +01001649 case GSM_BTS_TYPE_OSMOBTS:
Holger Hans Peter Freyther6f6cbf72015-04-04 19:35:22 +02001650 return 1;
1651 default:
1652 break;
1653 }
1654 return 0;
1655}
1656
Harald Welte5b570672009-08-10 10:08:01 +02001657static inline int is_siemens_bts(struct gsm_bts *bts)
1658{
1659 switch (bts->type) {
1660 case GSM_BTS_TYPE_BS11:
1661 return 1;
1662 default:
1663 break;
1664 }
1665
1666 return 0;
1667}
1668
Andreas Eversberg7d8fa342013-12-05 13:25:06 +01001669static inline int is_nokia_bts(struct gsm_bts *bts)
1670{
1671 switch (bts->type) {
1672 case GSM_BTS_TYPE_NOKIA_SITE:
1673 return 1;
1674 default:
1675 break;
1676 }
1677
1678 return 0;
1679}
1680
Andreas Eversbergdcf38e12013-12-05 14:37:11 +01001681static inline int is_e1_bts(struct gsm_bts *bts)
1682{
1683 switch (bts->type) {
1684 case GSM_BTS_TYPE_BS11:
1685 case GSM_BTS_TYPE_RBS2000:
1686 case GSM_BTS_TYPE_NOKIA_SITE:
1687 return 1;
1688 default:
1689 break;
1690 }
1691
1692 return 0;
1693}
1694
Harald Welte1876c312018-05-27 11:53:43 +02001695extern struct gsm_network *bsc_gsmnet;
1696
Holger Hans Peter Freyther4e13a8f2015-01-31 22:16:00 +01001697enum bts_gprs_mode bts_gprs_mode_parse(const char *arg, int *valid);
Harald Welte4511d892010-04-18 15:51:20 +02001698const char *bts_gprs_mode_name(enum bts_gprs_mode mode);
Holger Hans Peter Freyther4e13a8f2015-01-31 22:16:00 +01001699int bts_gprs_mode_is_compat(struct gsm_bts *bts, enum bts_gprs_mode mode);
Harald Welte4511d892010-04-18 15:51:20 +02001700
Neels Hofmeyr4d358c02018-02-22 03:19:05 +01001701void gsm48_ra_id_by_bts(struct gsm48_ra_id *buf, struct gsm_bts *bts);
Harald Welte97a282b2010-03-14 15:37:43 +08001702void gprs_ra_id_by_bts(struct gprs_ra_id *raid, struct gsm_bts *bts);
Harald Welted12b0fd2009-12-15 21:36:05 +01001703
Harald Weltefbda4e12010-03-04 11:04:52 +01001704int gsm_bts_model_register(struct gsm_bts_model *model);
1705
Harald Welte3561bd42018-01-28 03:04:16 +01001706struct gsm_subscriber_connection *bsc_subscr_con_allocate(struct gsm_network *network);
Neels Hofmeyr42eb0142016-05-20 17:15:44 +02001707
Neels Hofmeyr958f2592018-05-27 01:26:31 +02001708struct gsm_bts *gsm_bts_alloc_register(struct gsm_network *net, enum gsm_bts_type type, uint8_t bsic);
1709struct gsm_bts *bsc_bts_alloc_register(struct gsm_network *net, enum gsm_bts_type type, uint8_t bsic);
Harald Welte142d12d2014-12-29 17:47:08 +01001710
Harald Welte3300c012011-06-05 13:31:33 +02001711void set_ts_e1link(struct gsm_bts_trx_ts *ts, uint8_t e1_nr,
1712 uint8_t e1_ts, uint8_t e1_ts_ss);
1713
Maxbe356ed2017-09-07 19:10:09 +02001714void gsm_trx_lock_rf(struct gsm_bts_trx *trx, bool locked, const char *reason);
Harald Welte3300c012011-06-05 13:31:33 +02001715struct gsm_bts_trx *gsm_bts_trx_by_nr(struct gsm_bts *bts, int nr);
Holger Hans Peter Freythera49b2c02014-11-21 11:18:45 +01001716int gsm_bts_trx_set_system_infos(struct gsm_bts_trx *trx);
Alexander Chemerisc36a13b2015-05-30 14:40:54 -04001717int gsm_bts_set_system_infos(struct gsm_bts *bts);
Harald Welte3300c012011-06-05 13:31:33 +02001718
Pablo Neira Ayusoed5cacb2011-08-17 22:44:07 +02001719/* generic E1 line operations for all ISDN-based BTS. */
1720extern struct e1inp_line_ops bts_isdn_e1inp_line_ops;
1721
Harald Weltee555c2b2012-08-17 13:02:12 +02001722extern const struct value_string bts_type_names[_NUM_GSM_BTS_TYPE+1];
1723extern const struct value_string bts_type_descs[_NUM_GSM_BTS_TYPE+1];
1724
Max3d049d22017-10-09 17:12:53 +02001725char *get_model_oml_status(const struct gsm_bts *bts);
1726
Max25cc4072017-10-10 14:50:35 +02001727unsigned long long bts_uptime(const struct gsm_bts *bts);
1728
Holger Hans Peter Freytherf8c42192013-01-09 17:03:27 +01001729/* control interface handling */
1730int bsc_base_ctrl_cmds_install(void);
1731
Holger Hans Peter Freytherc22930e2014-12-17 14:46:17 +01001732/* dependency handling */
1733void bts_depend_mark(struct gsm_bts *bts, int dep);
1734void bts_depend_clear(struct gsm_bts *bts, int dep);
1735int bts_depend_check(struct gsm_bts *bts);
Holger Hans Peter Freytherf7e23c52014-12-17 15:44:32 +01001736int bts_depend_is_depedency(struct gsm_bts *base, struct gsm_bts *other);
Holger Hans Peter Freytherc22930e2014-12-17 14:46:17 +01001737
Harald Welte2f8b9d22017-06-18 11:12:13 +03001738int gsm_bts_get_radio_link_timeout(const struct gsm_bts *bts);
1739void gsm_bts_set_radio_link_timeout(struct gsm_bts *bts, int value);
1740
Neels Hofmeyr958f2592018-05-27 01:26:31 +02001741bool trx_is_usable(const struct gsm_bts_trx *trx);
Neels Hofmeyr31f525e2018-05-14 18:14:15 +02001742bool ts_is_usable(const struct gsm_bts_trx_ts *ts);
Neels Hofmeyr958f2592018-05-27 01:26:31 +02001743
Neels Hofmeyr31f525e2018-05-14 18:14:15 +02001744int gsm_lchan_type_by_pchan(enum gsm_phys_chan_config pchan);
1745enum gsm_phys_chan_config gsm_pchan_by_lchan_type(enum gsm_chan_t type);
1746
1747void gsm_bts_all_ts_dispatch(struct gsm_bts *bts, uint32_t ts_ev, void *data);
1748void gsm_trx_all_ts_dispatch(struct gsm_bts_trx *trx, uint32_t ts_ev, void *data);
1749
1750int bts_count_free_ts(struct gsm_bts *bts, enum gsm_phys_chan_config pchan);
Neels Hofmeyr958f2592018-05-27 01:26:31 +02001751
Vadim Yanitskiy73bd4632019-11-02 00:57:23 +07001752bool trx_has_valid_pchan_config(const struct gsm_bts_trx *trx);
1753
Harald Welte6be350c2011-05-25 13:10:08 +02001754#endif /* _GSM_DATA_H */