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Holger Hans Peter Freyther8b457fb2009-08-17 06:55:10 +02001/* A hackish minimal BSC (+MSC +HLR) implementation */
2
3/* (C) 2008-2009 by Harald Welte <laforge@gnumonks.org>
4 * (C) 2009 by Holger Hans Peter Freyther <zecke@selfish.org>
5 * All Rights Reserved
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation; either version 2 of the License, or
10 * (at your option) any later version.
11 *
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
16 *
17 * You should have received a copy of the GNU General Public License along
18 * with this program; if not, write to the Free Software Foundation, Inc.,
19 * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
20 *
21 */
22
23#include <openbsc/gsm_data.h>
24#include <openbsc/gsm_utils.h>
25#include <openbsc/gsm_04_08.h>
26#include <openbsc/abis_rsl.h>
27#include <openbsc/abis_nm.h>
28#include <openbsc/debug.h>
29#include <openbsc/misdn.h>
30#include <openbsc/telnet_interface.h>
31#include <openbsc/paging.h>
32#include <openbsc/signal.h>
33#include <openbsc/talloc.h>
34
35/* global pointer to the gsm network data structure */
36extern struct gsm_network *bsc_gsmnet;
37extern int ipacc_rtp_direct;
38
39static void patch_nm_tables(struct gsm_bts *bts);
40static void patch_si_tables(struct gsm_bts *bts);
41
42/* The following definitions are for OM and NM packets that we cannot yet
43 * generate by code but we just pass on */
44
45// BTS Site Manager, SET ATTRIBUTES
46
47/*
48 Object Class: BTS Site Manager
49 Instance 1: FF
50 Instance 2: FF
51 Instance 3: FF
52SET ATTRIBUTES
53 sAbisExternalTime: 2007/09/08 14:36:11
54 omLAPDRelTimer: 30sec
55 shortLAPDIntTimer: 5sec
56 emergencyTimer1: 10 minutes
57 emergencyTimer2: 0 minutes
58*/
59
60unsigned char msg_1[] =
61{
62 NM_MT_BS11_SET_ATTR, NM_OC_SITE_MANAGER, 0xFF, 0xFF, 0xFF,
63 NM_ATT_BS11_ABIS_EXT_TIME, 0x07,
64 0xD7, 0x09, 0x08, 0x0E, 0x24, 0x0B, 0xCE,
65 0x02,
66 0x00, 0x1E,
67 NM_ATT_BS11_SH_LAPD_INT_TIMER,
68 0x01, 0x05,
69 0x42, 0x02, 0x00, 0x0A,
70 0x44, 0x02, 0x00, 0x00
71};
72
73// BTS, SET BTS ATTRIBUTES
74
75/*
76 Object Class: BTS
77 BTS relat. Number: 0
78 Instance 2: FF
79 Instance 3: FF
80SET BTS ATTRIBUTES
81 bsIdentityCode / BSIC:
82 PLMN_colour_code: 7h
83 BS_colour_code: 7h
84 BTS Air Timer T3105: 4 ,unit 10 ms
85 btsIsHopping: FALSE
86 periodCCCHLoadIndication: 1sec
87 thresholdCCCHLoadIndication: 0%
88 cellAllocationNumber: 00h = GSM 900
89 enableInterferenceClass: 00h = Disabled
90 fACCHQual: 6 (FACCH stealing flags minus 1)
91 intaveParameter: 31 SACCH multiframes
92 interferenceLevelBoundaries:
93 Interference Boundary 1: 0Ah
94 Interference Boundary 2: 0Fh
95 Interference Boundary 3: 14h
96 Interference Boundary 4: 19h
97 Interference Boundary 5: 1Eh
98 mSTxPwrMax: 11
99 GSM range: 2=39dBm, 15=13dBm, stepsize 2 dBm
100 DCS1800 range: 0=30dBm, 15=0dBm, stepsize 2 dBm
101 PCS1900 range: 0=30dBm, 15=0dBm, stepsize 2 dBm
102 30=33dBm, 31=32dBm
103 ny1:
104 Maximum number of repetitions for PHYSICAL INFORMATION message (GSM 04.08): 20
105 powerOutputThresholds:
106 Out Power Fault Threshold: -10 dB
107 Red Out Power Threshold: - 6 dB
108 Excessive Out Power Threshold: 5 dB
109 rACHBusyThreshold: -127 dBm
110 rACHLoadAveragingSlots: 250 ,number of RACH burst periods
111 rfResourceIndicationPeriod: 125 SACCH multiframes
112 T200:
113 SDCCH: 044 in 5 ms
114 FACCH/Full rate: 031 in 5 ms
115 FACCH/Half rate: 041 in 5 ms
116 SACCH with TCH SAPI0: 090 in 10 ms
117 SACCH with SDCCH: 090 in 10 ms
118 SDCCH with SAPI3: 090 in 5 ms
119 SACCH with TCH SAPI3: 135 in 10 ms
120 tSync: 9000 units of 10 msec
121 tTrau: 9000 units of 10 msec
122 enableUmLoopTest: 00h = disabled
123 enableExcessiveDistance: 00h = Disabled
124 excessiveDistance: 64km
125 hoppingMode: 00h = baseband hopping
126 cellType: 00h = Standard Cell
127 BCCH ARFCN / bCCHFrequency: 1
128*/
129
130static unsigned char bs11_attr_bts[] =
131{
132 NM_ATT_BSIC, HARDCODED_BSIC,
133 NM_ATT_BTS_AIR_TIMER, 0x04,
134 NM_ATT_BS11_BTSLS_HOPPING, 0x00,
135 NM_ATT_CCCH_L_I_P, 0x01,
136 NM_ATT_CCCH_L_T, 0x00,
137 NM_ATT_BS11_CELL_ALLOC_NR, NM_BS11_CANR_GSM,
138 NM_ATT_BS11_ENA_INTERF_CLASS, 0x01,
139 NM_ATT_BS11_FACCH_QUAL, 0x06,
140 /* interference avg. period in numbers of SACCH multifr */
141 NM_ATT_INTAVE_PARAM, 0x1F,
142 NM_ATT_INTERF_BOUND, 0x0A, 0x0F, 0x14, 0x19, 0x1E, 0x7B,
143 NM_ATT_CCCH_L_T, 0x23,
144 NM_ATT_GSM_TIME, 0x28, 0x00,
145 NM_ATT_ADM_STATE, 0x03,
146 NM_ATT_RACH_B_THRESH, 0x7F,
147 NM_ATT_LDAVG_SLOTS, 0x00, 0xFA,
148 NM_ATT_BS11_RF_RES_IND_PER, 0x7D,
149 NM_ATT_T200, 0x2C, 0x1F, 0x29, 0x5A, 0x5A, 0x5A, 0x87,
150 NM_ATT_BS11_TSYNC, 0x23, 0x28,
151 NM_ATT_BS11_TTRAU, 0x23, 0x28,
152 NM_ATT_TEST_DUR, 0x01, 0x00,
153 NM_ATT_OUTST_ALARM, 0x01, 0x00,
154 NM_ATT_BS11_EXCESSIVE_DISTANCE, 0x01, 0x40,
155 NM_ATT_BS11_HOPPING_MODE, 0x01, 0x00,
156 NM_ATT_BS11_PLL, 0x01, 0x00,
157 NM_ATT_BCCH_ARFCN, 0x00, HARDCODED_ARFCN/*0x01*/,
158};
159
160// Handover Recognition, SET ATTRIBUTES
161
162/*
163Illegal Contents GSM Formatted O&M Msg
164 Object Class: Handover Recognition
165 BTS relat. Number: 0
166 Instance 2: FF
167 Instance 3: FF
168SET ATTRIBUTES
169 enableDelayPowerBudgetHO: 00h = Disabled
170 enableDistanceHO: 00h = Disabled
171 enableInternalInterCellHandover: 00h = Disabled
172 enableInternalIntraCellHandover: 00h = Disabled
173 enablePowerBudgetHO: 00h = Disabled
174 enableRXLEVHO: 00h = Disabled
175 enableRXQUALHO: 00h = Disabled
176 hoAveragingDistance: 8 SACCH multiframes
177 hoAveragingLev:
178 A_LEV_HO: 8 SACCH multiframes
179 W_LEV_HO: 1 SACCH multiframes
180 hoAveragingPowerBudget: 16 SACCH multiframes
181 hoAveragingQual:
182 A_QUAL_HO: 8 SACCH multiframes
183 W_QUAL_HO: 2 SACCH multiframes
184 hoLowerThresholdLevDL: (10 - 110) dBm
185 hoLowerThresholdLevUL: (5 - 110) dBm
186 hoLowerThresholdQualDL: 06h = 6.4% < BER < 12.8%
187 hoLowerThresholdQualUL: 06h = 6.4% < BER < 12.8%
188 hoThresholdLevDLintra : (20 - 110) dBm
189 hoThresholdLevULintra: (20 - 110) dBm
190 hoThresholdMsRangeMax: 20 km
191 nCell: 06h
192 timerHORequest: 3 ,unit 2 SACCH multiframes
193*/
194
195unsigned char msg_3[] =
196{
197 NM_MT_BS11_SET_ATTR, NM_OC_BS11_HANDOVER, 0x00, 0xFF, 0xFF,
198 0xD0, 0x00, /* enableDelayPowerBudgetHO */
199 0x64, 0x00, /* enableDistanceHO */
200 0x67, 0x00, /* enableInternalInterCellHandover */
201 0x68, 0x00, /* enableInternalInterCellHandover */
202 0x6A, 0x00, /* enablePowerBudgetHO */
203 0x6C, 0x00, /* enableRXLEVHO */
204 0x6D, 0x00, /* enableRXQUALHO */
205 0x6F, 0x08, /* hoAveragingDistance */
206 0x70, 0x08, 0x01, /* hoAveragingLev */
207 0x71, 0x10, 0x10, 0x10,
208 0x72, 0x08, 0x02, /* hoAveragingQual */
209 0x73, 0x0A, /* hoLowerThresholdLevDL */
210 0x74, 0x05, /* hoLowerThresholdLevUL */
211 0x75, 0x06, /* hoLowerThresholdQualDL */
212 0x76, 0x06, /* hoLowerThresholdQualUL */
213 0x78, 0x14, /* hoThresholdLevDLintra */
214 0x79, 0x14, /* hoThresholdLevULintra */
215 0x7A, 0x14, /* hoThresholdMsRangeMax */
216 0x7D, 0x06, /* nCell */
217 NM_ATT_BS11_TIMER_HO_REQUEST, 0x03,
218 0x20, 0x01, 0x00,
219 0x45, 0x01, 0x00,
220 0x48, 0x01, 0x00,
221 0x5A, 0x01, 0x00,
222 0x5B, 0x01, 0x05,
223 0x5E, 0x01, 0x1A,
224 0x5F, 0x01, 0x20,
225 0x9D, 0x01, 0x00,
226 0x47, 0x01, 0x00,
227 0x5C, 0x01, 0x64,
228 0x5D, 0x01, 0x1E,
229 0x97, 0x01, 0x20,
230 0xF7, 0x01, 0x3C,
231};
232
233// Power Control, SET ATTRIBUTES
234
235/*
236 Object Class: Power Control
237 BTS relat. Number: 0
238 Instance 2: FF
239 Instance 3: FF
240SET ATTRIBUTES
241 enableMsPowerControl: 00h = Disabled
242 enablePowerControlRLFW: 00h = Disabled
243 pcAveragingLev:
244 A_LEV_PC: 4 SACCH multiframes
245 W_LEV_PC: 1 SACCH multiframes
246 pcAveragingQual:
247 A_QUAL_PC: 4 SACCH multiframes
248 W_QUAL_PC: 2 SACCH multiframes
249 pcLowerThresholdLevDL: 0Fh
250 pcLowerThresholdLevUL: 0Ah
251 pcLowerThresholdQualDL: 05h = 3.2% < BER < 6.4%
252 pcLowerThresholdQualUL: 05h = 3.2% < BER < 6.4%
253 pcRLFThreshold: 0Ch
254 pcUpperThresholdLevDL: 14h
255 pcUpperThresholdLevUL: 0Fh
256 pcUpperThresholdQualDL: 04h = 1.6% < BER < 3.2%
257 pcUpperThresholdQualUL: 04h = 1.6% < BER < 3.2%
258 powerConfirm: 2 ,unit 2 SACCH multiframes
259 powerControlInterval: 2 ,unit 2 SACCH multiframes
260 powerIncrStepSize: 02h = 4 dB
261 powerRedStepSize: 01h = 2 dB
262 radioLinkTimeoutBs: 64 SACCH multiframes
263 enableBSPowerControl: 00h = disabled
264*/
265
266unsigned char msg_4[] =
267{
268 NM_MT_BS11_SET_ATTR, NM_OC_BS11_PWR_CTRL, 0x00, 0xFF, 0xFF,
269 NM_ATT_BS11_ENA_MS_PWR_CTRL, 0x00,
270 NM_ATT_BS11_ENA_PWR_CTRL_RLFW, 0x00,
271 0x7E, 0x04, 0x01, /* pcAveragingLev */
272 0x7F, 0x04, 0x02, /* pcAveragingQual */
273 0x80, 0x0F, /* pcLowerThresholdLevDL */
274 0x81, 0x0A, /* pcLowerThresholdLevUL */
275 0x82, 0x05, /* pcLowerThresholdQualDL */
276 0x83, 0x05, /* pcLowerThresholdQualUL */
277 0x84, 0x0C, /* pcRLFThreshold */
278 0x85, 0x14, /* pcUpperThresholdLevDL */
279 0x86, 0x0F, /* pcUpperThresholdLevUL */
280 0x87, 0x04, /* pcUpperThresholdQualDL */
281 0x88, 0x04, /* pcUpperThresholdQualUL */
282 0x89, 0x02, /* powerConfirm */
283 0x8A, 0x02, /* powerConfirmInterval */
284 0x8B, 0x02, /* powerIncrStepSize */
285 0x8C, 0x01, /* powerRedStepSize */
286 0x8D, 0x40, /* radioLinkTimeoutBs */
287 0x65, 0x01, 0x00 // set to 0x01 to enable BSPowerControl
288};
289
290
291// Transceiver, SET TRX ATTRIBUTES (TRX 0)
292
293/*
294 Object Class: Transceiver
295 BTS relat. Number: 0
296 Tranceiver number: 0
297 Instance 3: FF
298SET TRX ATTRIBUTES
299 aRFCNList (HEX): 0001
300 txPwrMaxReduction: 00h = 30dB
301 radioMeasGran: 254 SACCH multiframes
302 radioMeasRep: 01h = enabled
303 memberOfEmergencyConfig: 01h = TRUE
304 trxArea: 00h = TRX doesn't belong to a concentric cell
305*/
306
307static unsigned char bs11_attr_radio[] =
308{
309 NM_ATT_ARFCN_LIST, 0x01, 0x00, HARDCODED_ARFCN /*0x01*/,
310 NM_ATT_RF_MAXPOWR_R, 0x00,
311 NM_ATT_BS11_RADIO_MEAS_GRAN, 0x01, 0x05,
312 NM_ATT_BS11_RADIO_MEAS_REP, 0x01, 0x01,
313 NM_ATT_BS11_EMRG_CFG_MEMBER, 0x01, 0x01,
314 NM_ATT_BS11_TRX_AREA, 0x01, 0x00,
315};
316
317static unsigned char nanobts_attr_bts[] = {
318 NM_ATT_INTERF_BOUND, 0x55, 0x5b, 0x61, 0x67, 0x6d, 0x73,
319 /* interference avg. period in numbers of SACCH multifr */
320 NM_ATT_INTAVE_PARAM, 0x06,
321 /* conn fail based on SACCH error rate */
322 NM_ATT_CONN_FAIL_CRIT, 0x00, 0x02, 0x01, 0x10,
323 NM_ATT_T200, 0x1e, 0x24, 0x24, 0xa8, 0x34, 0x21, 0xa8,
324 NM_ATT_MAX_TA, 0x3f,
325 NM_ATT_OVERL_PERIOD, 0x00, 0x01, 10, /* seconds */
326 NM_ATT_CCCH_L_T, 10, /* percent */
327 NM_ATT_CCCH_L_I_P, 1, /* seconds */
328 NM_ATT_RACH_B_THRESH, 10, /* busy threshold in - dBm */
329 NM_ATT_LDAVG_SLOTS, 0x03, 0xe8, /* rach load averaging 1000 slots */
330 NM_ATT_BTS_AIR_TIMER, 128, /* miliseconds */
331 NM_ATT_NY1, 10, /* 10 retransmissions of physical config */
332 NM_ATT_BCCH_ARFCN, HARDCODED_ARFCN >> 8, HARDCODED_ARFCN & 0xff,
333 NM_ATT_BSIC, HARDCODED_BSIC,
334};
335
336static unsigned char nanobts_attr_radio[] = {
337 NM_ATT_RF_MAXPOWR_R, 0x0c, /* number of -2dB reduction steps / Pn */
338 NM_ATT_ARFCN_LIST, 0x00, 0x02, HARDCODED_ARFCN >> 8, HARDCODED_ARFCN & 0xff,
339};
340
Holger Hans Peter Freyther8b457fb2009-08-17 06:55:10 +0200341/* Callback function to be called whenever we get a GSM 12.21 state change event */
342int nm_state_event(enum nm_evt evt, u_int8_t obj_class, void *obj,
343 struct gsm_nm_state *old_state, struct gsm_nm_state *new_state)
344{
345 struct gsm_bts *bts;
346 struct gsm_bts_trx *trx;
347 struct gsm_bts_trx_ts *ts;
348
Harald Welte8406ec22009-10-20 17:31:00 +0200349 /* This event-driven BTS setup is currently only required on nanoBTS */
Holger Hans Peter Freyther8b457fb2009-08-17 06:55:10 +0200350
Harald Welte8406ec22009-10-20 17:31:00 +0200351 /* EVT_STATECHG_ADM is called after we call chg_adm_state() and would create
352 * endless loop */
353 if (evt != EVT_STATECHG_OPER)
354 return 0;
355
356 switch (obj_class) {
357 case NM_OC_SITE_MANAGER:
358 bts = container_of(obj, struct gsm_bts, site_mgr);
359 if (new_state->operational == 2 &&
360 new_state->availability == NM_AVSTATE_OK)
361 abis_nm_opstart(bts, obj_class, 0xff, 0xff, 0xff);
362 break;
363 case NM_OC_BTS:
364 bts = obj;
365 if (new_state->availability == NM_AVSTATE_DEPENDENCY) {
366 patch_nm_tables(bts);
367 abis_nm_set_bts_attr(bts, nanobts_attr_bts,
368 sizeof(nanobts_attr_bts));
369 abis_nm_chg_adm_state(bts, obj_class,
370 bts->bts_nr, 0xff, 0xff,
371 NM_STATE_UNLOCKED);
372 abis_nm_opstart(bts, obj_class,
373 bts->bts_nr, 0xff, 0xff);
374 }
375 break;
376 case NM_OC_CHANNEL:
377 ts = obj;
378 trx = ts->trx;
379 if (new_state->operational == 1 &&
380 new_state->availability == NM_AVSTATE_DEPENDENCY) {
Harald Welte65bdc912009-10-26 20:14:33 +0100381 patch_nm_tables(trx->bts);
Harald Welte0f890b02009-10-24 09:09:05 +0200382 enum abis_nm_chan_comb ccomb =
383 abis_nm_chcomb4pchan(ts->pchan);
384 abis_nm_set_channel_attr(ts, ccomb);
Harald Welte8406ec22009-10-20 17:31:00 +0200385 abis_nm_chg_adm_state(trx->bts, obj_class,
386 trx->bts->bts_nr, trx->nr, ts->nr,
387 NM_STATE_UNLOCKED);
388 abis_nm_opstart(trx->bts, obj_class,
389 trx->bts->bts_nr, trx->nr, ts->nr);
390 }
391 break;
392 case NM_OC_RADIO_CARRIER:
393 trx = obj;
394 if (new_state->operational == 1 &&
395 new_state->availability == NM_AVSTATE_OFF_LINE) {
396 /* Patch ARFCN into radio attribute */
397 nanobts_attr_radio[5] &= 0xf0;
398 nanobts_attr_radio[5] |= trx->arfcn >> 8;
399 nanobts_attr_radio[6] = trx->arfcn & 0xff;
400 abis_nm_set_radio_attr(trx, nanobts_attr_radio,
401 sizeof(nanobts_attr_radio));
402 abis_nm_chg_adm_state(trx->bts, obj_class,
403 trx->bts->bts_nr, trx->nr, 0xff,
404 NM_STATE_UNLOCKED);
405 abis_nm_opstart(trx->bts, obj_class, trx->bts->bts_nr,
406 trx->nr, 0xff);
407 }
408 if (new_state->operational == 1 &&
409 new_state->availability == NM_AVSTATE_OK)
410 abis_nm_opstart(trx->bts, obj_class, trx->bts->bts_nr,
411 trx->nr, 0xff);
412 break;
413 case NM_OC_BASEB_TRANSC:
414 trx = container_of(obj, struct gsm_bts_trx, bb_transc);
415 if (new_state->operational == 1 &&
416 new_state->availability == NM_AVSTATE_DEPENDENCY) {
417 abis_nm_chg_adm_state(trx->bts, obj_class,
418 trx->bts->bts_nr, trx->nr, 0xff,
419 NM_STATE_UNLOCKED);
420 abis_nm_opstart(trx->bts, obj_class,
421 trx->bts->bts_nr, trx->nr, 0xff);
422 /* TRX software is active, tell it to initiate RSL Link */
423 abis_nm_ipaccess_rsl_connect(trx, 0, 3003, trx->rsl_tei);
Holger Hans Peter Freyther8b457fb2009-08-17 06:55:10 +0200424 }
425 break;
426 default:
Holger Hans Peter Freyther8b457fb2009-08-17 06:55:10 +0200427 break;
428 }
429 return 0;
430}
431
432/* Callback function to be called every time we receive a 12.21 SW activated report */
433static int sw_activ_rep(struct msgb *mb)
434{
435 struct abis_om_fom_hdr *foh = msgb_l3(mb);
Harald Welted004a642009-10-19 21:47:54 +0200436 struct gsm_bts *bts = mb->trx->bts;
437 struct gsm_bts_trx *trx = gsm_bts_trx_num(bts, foh->obj_inst.trx_nr);
438
Holger Hans Peter Freyther8b457fb2009-08-17 06:55:10 +0200439
440 switch (foh->obj_class) {
Holger Hans Peter Freyther8b457fb2009-08-17 06:55:10 +0200441 }
442 return 0;
443}
444
445/* Callback function for NACK on the OML NM */
Harald Welted8cfc902009-11-17 06:09:56 +0100446static int oml_msg_nack(u_int8_t mt)
Holger Hans Peter Freyther8b457fb2009-08-17 06:55:10 +0200447{
448 if (mt == NM_MT_SET_BTS_ATTR_NACK) {
449 fprintf(stderr, "Failed to set BTS attributes. That is fatal. "
450 "Was the bts type and frequency properly specified?\n");
451 exit(-1);
452 }
453
454 return 0;
455}
456
457/* Callback function to be called every time we receive a signal from NM */
458static int nm_sig_cb(unsigned int subsys, unsigned int signal,
459 void *handler_data, void *signal_data)
460{
Harald Welted8cfc902009-11-17 06:09:56 +0100461 u_int8_t *msg_type;
462
Holger Hans Peter Freyther8b457fb2009-08-17 06:55:10 +0200463 switch (signal) {
464 case S_NM_SW_ACTIV_REP:
465 return sw_activ_rep(signal_data);
466 case S_NM_NACK:
Harald Welted8cfc902009-11-17 06:09:56 +0100467 msg_type = signal_data;
468 return oml_msg_nack(*msg_type);
Holger Hans Peter Freyther8b457fb2009-08-17 06:55:10 +0200469 default:
470 break;
471 }
472 return 0;
473}
474
475static void bootstrap_om_nanobts(struct gsm_bts *bts)
476{
477 /* We don't do callback based bootstrapping, but event driven (see above) */
478}
479
480static void nm_reconfig_ts(struct gsm_bts_trx_ts *ts)
481{
482 enum abis_nm_chan_comb ccomb = abis_nm_chcomb4pchan(ts->pchan);
483 struct gsm_e1_subslot *e1l = &ts->e1_link;
484
485 abis_nm_set_channel_attr(ts, ccomb);
486
487 if (is_ipaccess_bts(ts->trx->bts))
488 return;
489
490 switch (ts->pchan) {
491 case GSM_PCHAN_TCH_F:
492 case GSM_PCHAN_TCH_H:
493 abis_nm_conn_terr_traf(ts, e1l->e1_nr, e1l->e1_ts,
494 e1l->e1_ts_ss);
495 break;
496 default:
497 break;
498 }
499}
500
501static void nm_reconfig_trx(struct gsm_bts_trx *trx)
502{
503 struct gsm_e1_subslot *e1l = &trx->rsl_e1_link;
504 int i;
505
506 patch_nm_tables(trx->bts);
507
508 switch (trx->bts->type) {
509 case GSM_BTS_TYPE_BS11:
510 /* FIXME: discover this by fetching an attribute */
511#if 0
512 trx->nominal_power = 15; /* 15dBm == 30mW PA configuration */
513#else
514 trx->nominal_power = 24; /* 24dBm == 250mW PA configuration */
515#endif
516 abis_nm_conn_terr_sign(trx, e1l->e1_nr, e1l->e1_ts,
517 e1l->e1_ts_ss);
518 abis_nm_establish_tei(trx->bts, trx->nr, e1l->e1_nr,
519 e1l->e1_ts, e1l->e1_ts_ss, trx->rsl_tei);
520
521 /* Set Radio Attributes */
522 if (trx == trx->bts->c0)
523 abis_nm_set_radio_attr(trx, bs11_attr_radio,
524 sizeof(bs11_attr_radio));
525 else {
526 u_int8_t trx1_attr_radio[sizeof(bs11_attr_radio)];
527 u_int8_t arfcn_low = trx->arfcn & 0xff;
528 u_int8_t arfcn_high = (trx->arfcn >> 8) & 0x0f;
529 memcpy(trx1_attr_radio, bs11_attr_radio,
530 sizeof(trx1_attr_radio));
531
532 /* patch ARFCN into TRX Attributes */
533 trx1_attr_radio[2] &= 0xf0;
534 trx1_attr_radio[2] |= arfcn_high;
535 trx1_attr_radio[3] = arfcn_low;
536
537 abis_nm_set_radio_attr(trx, trx1_attr_radio,
538 sizeof(trx1_attr_radio));
539 }
540 break;
Mike Habene2d82272009-10-02 12:19:34 +0100541 case GSM_BTS_TYPE_NANOBTS:
Harald Welteaf7b2fa2009-10-19 21:47:31 +0200542 switch (trx->bts->band) {
543 case GSM_BAND_850:
544 case GSM_BAND_900:
545 trx->nominal_power = 20;
546 break;
547 case GSM_BAND_1800:
548 case GSM_BAND_1900:
549 trx->nominal_power = 23;
550 break;
Holger Hans Peter Freyther555eba12009-10-22 15:46:16 +0200551 default:
Harald Welteaf7b2fa2009-10-19 21:47:31 +0200552 fprintf(stderr, "Unsupported nanoBTS GSM band %s\n",
553 gsm_band_name(trx->bts->band));
554 break;
555 }
556 break;
Holger Hans Peter Freyther8b457fb2009-08-17 06:55:10 +0200557 default:
558 break;
559 }
560
561 for (i = 0; i < TRX_NR_TS; i++)
562 nm_reconfig_ts(&trx->ts[i]);
563}
564
565static void nm_reconfig_bts(struct gsm_bts *bts)
566{
567 struct gsm_bts_trx *trx;
568
569 switch (bts->type) {
570 case GSM_BTS_TYPE_BS11:
571 abis_nm_raw_msg(bts, sizeof(msg_1), msg_1); /* set BTS SiteMgr attr*/
572 abis_nm_set_bts_attr(bts, bs11_attr_bts, sizeof(bs11_attr_bts));
573 abis_nm_raw_msg(bts, sizeof(msg_3), msg_3); /* set BTS handover attr */
574 abis_nm_raw_msg(bts, sizeof(msg_4), msg_4); /* set BTS power control attr */
575 break;
576 default:
577 break;
578 }
579
580 llist_for_each_entry(trx, &bts->trx_list, list)
581 nm_reconfig_trx(trx);
582}
583
584static void bootstrap_om_bs11(struct gsm_bts *bts)
585{
586 /* stop sending event reports */
587 abis_nm_event_reports(bts, 0);
588
589 /* begin DB transmission */
590 abis_nm_bs11_db_transmission(bts, 1);
591
592 /* end DB transmission */
593 abis_nm_bs11_db_transmission(bts, 0);
594
595 /* Reset BTS Site manager resource */
596 abis_nm_bs11_reset_resource(bts);
597
598 /* begin DB transmission */
599 abis_nm_bs11_db_transmission(bts, 1);
600
601 /* reconfigure BTS with all TRX and all TS */
602 nm_reconfig_bts(bts);
603
604 /* end DB transmission */
605 abis_nm_bs11_db_transmission(bts, 0);
606
607 /* Reset BTS Site manager resource */
608 abis_nm_bs11_reset_resource(bts);
609
610 /* restart sending event reports */
611 abis_nm_event_reports(bts, 1);
612}
613
614static void bootstrap_om(struct gsm_bts *bts)
615{
616 fprintf(stdout, "bootstrapping OML for BTS %u\n", bts->nr);
617
618 switch (bts->type) {
619 case GSM_BTS_TYPE_BS11:
620 bootstrap_om_bs11(bts);
621 break;
Mike Habene2d82272009-10-02 12:19:34 +0100622 case GSM_BTS_TYPE_NANOBTS:
Holger Hans Peter Freyther8b457fb2009-08-17 06:55:10 +0200623 bootstrap_om_nanobts(bts);
624 break;
625 default:
626 fprintf(stderr, "Unable to bootstrap OML: Unknown BTS type %d\n", bts->type);
627 }
628}
629
630static int shutdown_om(struct gsm_bts *bts)
631{
632 fprintf(stdout, "shutting down OML for BTS %u\n", bts->nr);
633
634 /* stop sending event reports */
635 abis_nm_event_reports(bts, 0);
636
637 /* begin DB transmission */
638 abis_nm_bs11_db_transmission(bts, 1);
639
640 /* end DB transmission */
641 abis_nm_bs11_db_transmission(bts, 0);
642
643 /* Reset BTS Site manager resource */
644 abis_nm_bs11_reset_resource(bts);
645
646 return 0;
647}
648
649int bsc_shutdown_net(struct gsm_network *net)
650{
651 struct gsm_bts *bts;
652
653 llist_for_each_entry(bts, &net->bts_list, list) {
654 int rc;
655 rc = shutdown_om(bts);
656 if (rc < 0)
657 return rc;
658 }
659
660 return 0;
661}
662
663struct bcch_info {
664 u_int8_t type;
665 u_int8_t len;
666 const u_int8_t *data;
667};
668
669/*
670SYSTEM INFORMATION TYPE 1
671 Cell channel description
672 Format-ID bit map 0
673 CA-ARFCN Bit 124...001 (Hex): 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 01
674 RACH Control Parameters
675 maximum 7 retransmissions
676 8 slots used to spread transmission
677 cell not barred for access
678 call reestablishment not allowed
679 Access Control Class = 0000
680*/
681static u_int8_t si1[] = {
682 /* header */0x55, 0x06, 0x19,
683 /* ccdesc */0x04 /*0x00*/, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
684 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00 /*0x01*/,
685 /* rach */0xD5, 0x04, 0x00,
686 /* s1 reset*/0x2B
687};
688
689/*
690 SYSTEM INFORMATION TYPE 2
691 Neighbour Cells Description
692 EXT-IND: Carries the complete BA
693 BA-IND = 0
694 Format-ID bit map 0
695 CA-ARFCN Bit 124...001 (Hex): 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
696 NCC permitted (NCC) = FF
697 RACH Control Parameters
698 maximum 7 retransmissions
699 8 slots used to spread transmission
700 cell not barred for access
701 call reestablishment not allowed
702 Access Control Class = 0000
703*/
704static u_int8_t si2[] = {
705 /* header */0x59, 0x06, 0x1A,
706 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
707 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
708 /* ncc */0xFF,
709 /* rach*/0xD5, 0x04, 0x00
710};
711
712/*
713SYSTEM INFORMATION TYPE 3
714 Cell identity = 00001 (1h)
715 Location area identification
716 Mobile Country Code (MCC): 001
717 Mobile Network Code (MNC): 01
718 Location Area Code (LAC): 00001 (1h)
719 Control Channel Description
720 Attach-detach: MSs in the cell are not allowed to apply IMSI attach /detach
721 0 blocks reserved for access grant
722 1 channel used for CCCH, with SDCCH
723 5 multiframes period for PAGING REQUEST
724 Time-out T3212 = 0
725 Cell Options BCCH
726 Power control indicator: not set
727 MSs shall not use uplink DTX
728 Radio link timeout = 36
729 Cell Selection Parameters
730 Cell reselect hysteresis = 6 dB RXLEV hysteresis for LA re-selection
731 max.TX power level MS may use for CCH = 2 <- according to GSM05.05 39dBm (max)
732 Additional Reselect Parameter Indication (ACS) = only SYSTEM INFO 4: The SI rest octets, if present, shall be used to derive the value of PI and possibly C2 parameters
733 Half rate support (NECI): New establishment causes are not supported
734 min.RX signal level for MS = 0
735 RACH Control Parameters
736 maximum 7 retransmissions
737 8 slots used to spread transmission
738 cell not barred for access
739 call reestablishment not allowed
740 Access Control Class = 0000
741 SI 3 Rest Octets (not present)
742*/
743static u_int8_t si3[] = {
744 /* header */0x49, 0x06, 0x1B,
745 /* cell */0x00, 0x01,
746 /* lai */0x00, 0xF1, 0x10, 0x00, 0x01,
747 /* desc */0x01, 0x03, 0x00,
748 /* option*/0x28,
749 /* selection*/0x62, 0x00,
750 /* rach */0xD5, 0x04, 0x00,
751 /* rest */ 0x2B, 0x2B, 0x2B, 0x2B
752};
753
754/*
755SYSTEM INFORMATION TYPE 4
756 Location area identification
757 Mobile Country Code (MCC): 001
758 Mobile Network Code (MNC): 01
759 Location Area Code (LAC): 00001 (1h)
760 Cell Selection Parameters
761 Cell reselect hysteresis = 6 dB RXLEV hysteresis for LA re-selection
762 max.TX power level MS may use for CCH = 2
763 Additional Reselect Parameter Indication (ACS) = only SYSTEM INFO 4: The SI rest octets, if present, shall be used to derive the value of PI and possibly C2 parameters
764 Half rate support (NECI): New establishment causes are not supported
765 min.RX signal level for MS = 0
766 RACH Control Parameters
767 maximum 7 retransmissions
768 8 slots used to spread transmission
769 cell not barred for access
770 call reestablishment not allowed
771 Access Control Class = 0000
772 CBCH Channel Description
773 Type = SDCCH/4[2]
774 Timeslot Number: 0
775 Training Sequence Code: 7h
776 ARFCN: 1
777 SI Rest Octets (not present)
778*/
779static u_int8_t si4[] = {
780 /* header */0x41, 0x06, 0x1C,
781 /* lai */0x00, 0xF1, 0x10, 0x00, 0x01,
782 /* sel */0x62, 0x00,
783 /* rach*/0xD5, 0x04, 0x00,
784 /* cbch chan desc */ 0x64, 0x30, 0xE0, HARDCODED_ARFCN/*0x01*/,
785 /* rest octets */ 0x2B, 0x2B, 0x2B, 0x2B, 0x2B, 0x2B
786};
787
788/*
789 SYSTEM INFORMATION TYPE 5
790 Neighbour Cells Description
791 EXT-IND: Carries the complete BA
792 BA-IND = 0
793 Format-ID bit map 0
794 CA-ARFCN Bit 124...001 (Hex): 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
795*/
796
797static u_int8_t si5[] = {
798 /* header without l2 len*/0x06, 0x1D,
799 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
800 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
801};
802
803// SYSTEM INFORMATION TYPE 6
804
805/*
806SACCH FILLING
807 System Info Type: SYSTEM INFORMATION 6
808 L3 Information (Hex): 06 1E 00 01 xx xx 10 00 01 28 FF
809
810SYSTEM INFORMATION TYPE 6
811 Cell identity = 00001 (1h)
812 Location area identification
813 Mobile Country Code (MCC): 001
814 Mobile Network Code (MNC): 01
815 Location Area Code (LAC): 00001 (1h)
816 Cell Options SACCH
817 Power control indicator: not set
818 MSs shall not use uplink DTX on a TCH-F. MS shall not use uplink DTX on TCH-H.
819 Radio link timeout = 36
820 NCC permitted (NCC) = FF
821*/
822
823static u_int8_t si6[] = {
824 /* header */0x06, 0x1E,
825 /* cell id*/ 0x00, 0x01,
826 /* lai */ 0x00, 0xF1, 0x10, 0x00, 0x01,
827 /* options */ 0x28,
828 /* ncc */ 0xFF,
829};
830
831
832
833static const struct bcch_info bcch_infos[] = {
834 {
835 .type = RSL_SYSTEM_INFO_1,
836 .len = sizeof(si1),
837 .data = si1,
838 }, {
839 .type = RSL_SYSTEM_INFO_2,
840 .len = sizeof(si2),
841 .data = si2,
842 }, {
843 .type = RSL_SYSTEM_INFO_3,
844 .len = sizeof(si3),
845 .data = si3,
846 }, {
847 .type = RSL_SYSTEM_INFO_4,
848 .len = sizeof(si4),
849 .data = si4,
850 },
851};
852
853static_assert(sizeof(si1) == sizeof(struct gsm48_system_information_type_1), type1)
854static_assert(sizeof(si2) == sizeof(struct gsm48_system_information_type_2), type2)
855static_assert(sizeof(si3) == sizeof(struct gsm48_system_information_type_3), type3)
856static_assert(sizeof(si4) >= sizeof(struct gsm48_system_information_type_4), type4)
857static_assert(sizeof(si5) == sizeof(struct gsm48_system_information_type_5), type5)
858static_assert(sizeof(si6) >= sizeof(struct gsm48_system_information_type_6), type6)
859
860/* set all system information types */
861static int set_system_infos(struct gsm_bts_trx *trx)
862{
863 int i;
864
865 if (trx == trx->bts->c0) {
866 for (i = 0; i < ARRAY_SIZE(bcch_infos); i++) {
867 rsl_bcch_info(trx, bcch_infos[i].type,
868 bcch_infos[i].data,
869 bcch_infos[i].len);
870 }
871 }
872 rsl_sacch_filling(trx, RSL_SYSTEM_INFO_5, si5, sizeof(si5));
873 rsl_sacch_filling(trx, RSL_SYSTEM_INFO_6, si6, sizeof(si6));
874
875 return 0;
876}
877
878/*
879 * Patch the various SYSTEM INFORMATION tables to update
880 * the LAI
881 */
882static void patch_nm_tables(struct gsm_bts *bts)
883{
884 u_int8_t arfcn_low = bts->c0->arfcn & 0xff;
885 u_int8_t arfcn_high = (bts->c0->arfcn >> 8) & 0x0f;
886
887 /* patch ARFCN into BTS Attributes */
888 bs11_attr_bts[69] &= 0xf0;
889 bs11_attr_bts[69] |= arfcn_high;
890 bs11_attr_bts[70] = arfcn_low;
891 nanobts_attr_bts[42] &= 0xf0;
892 nanobts_attr_bts[42] |= arfcn_high;
893 nanobts_attr_bts[43] = arfcn_low;
894
895 /* patch ARFCN into TRX Attributes */
896 bs11_attr_radio[2] &= 0xf0;
897 bs11_attr_radio[2] |= arfcn_high;
898 bs11_attr_radio[3] = arfcn_low;
Holger Hans Peter Freyther8b457fb2009-08-17 06:55:10 +0200899
900 /* patch BSIC */
901 bs11_attr_bts[1] = bts->bsic;
902 nanobts_attr_bts[sizeof(nanobts_attr_bts)-1] = bts->bsic;
903
904 /* patch the power reduction */
905 bs11_attr_radio[5] = bts->c0->max_power_red / 2;
906 nanobts_attr_radio[1] = bts->c0->max_power_red / 2;
907}
908
909/*
910 * Patch the various SYSTEM INFORMATION tables to update
911 * the LAI
912 */
913static void patch_si_tables(struct gsm_bts *bts)
914{
915 u_int8_t arfcn_low = bts->c0->arfcn & 0xff;
916 u_int8_t arfcn_high = (bts->c0->arfcn >> 8) & 0x0f;
917
918 /* covert the raw packet to the struct */
919 struct gsm48_system_information_type_1 *type_1 =
920 (struct gsm48_system_information_type_1*)&si1;
921 struct gsm48_system_information_type_2 *type_2 =
922 (struct gsm48_system_information_type_2*)&si2;
923 struct gsm48_system_information_type_3 *type_3 =
924 (struct gsm48_system_information_type_3*)&si3;
925 struct gsm48_system_information_type_4 *type_4 =
926 (struct gsm48_system_information_type_4*)&si4;
Holger Hans Peter Freyther8b457fb2009-08-17 06:55:10 +0200927 struct gsm48_system_information_type_6 *type_6 =
928 (struct gsm48_system_information_type_6*)&si6;
929 struct gsm48_loc_area_id lai;
930
931 gsm0408_generate_lai(&lai, bts->network->country_code,
932 bts->network->network_code,
933 bts->location_area_code);
934
935 /* assign the MCC and MNC */
936 type_3->lai = lai;
937 type_4->lai = lai;
938 type_6->lai = lai;
939
Holger Hans Peter Freytherc4a49e32009-08-21 14:44:12 +0200940 /* set the CI */
941 type_3->cell_identity = htons(bts->cell_identity);
942 type_6->cell_identity = htons(bts->cell_identity);
943
Holger Hans Peter Freyther8b457fb2009-08-17 06:55:10 +0200944 type_4->data[2] &= 0xf0;
945 type_4->data[2] |= arfcn_high;
946 type_4->data[3] = arfcn_low;
947
948 /* patch Control Channel Description 10.5.2.11 */
949 type_3->control_channel_desc = bts->chan_desc;
950
951 /* patch TSC */
952 si4[15] &= ~0xe0;
953 si4[15] |= (bts->tsc & 7) << 5;
954
955 /* patch MS max power for CCH */
956 type_4->cell_sel_par.ms_txpwr_max_ccch =
957 ms_pwr_ctl_lvl(bts->band, bts->ms_max_power);
958
959 if (bts->cell_barred) {
960 type_1->rach_control.cell_bar = 1;
961 type_2->rach_control.cell_bar = 1;
962 type_3->rach_control.cell_bar = 1;
963 type_4->rach_control.cell_bar = 1;
964 } else {
965 type_1->rach_control.cell_bar = 0;
966 type_2->rach_control.cell_bar = 0;
967 type_3->rach_control.cell_bar = 0;
968 type_4->rach_control.cell_bar = 0;
969 }
Holger Hans Peter Freyther8b457fb2009-08-17 06:55:10 +0200970}
971
972
973static void bootstrap_rsl(struct gsm_bts_trx *trx)
974{
975 fprintf(stdout, "bootstrapping RSL for BTS/TRX (%u/%u) "
976 "using MCC=%u MNC=%u BSIC=%u TSC=%u\n",
977 trx->bts->nr, trx->nr, bsc_gsmnet->country_code,
978 bsc_gsmnet->network_code, trx->bts->bsic, trx->bts->tsc);
979 patch_si_tables(trx->bts);
980 set_system_infos(trx);
981}
982
983void input_event(int event, enum e1inp_sign_type type, struct gsm_bts_trx *trx)
984{
985 switch (event) {
986 case EVT_E1_TEI_UP:
987 switch (type) {
988 case E1INP_SIGN_OML:
989 bootstrap_om(trx->bts);
990 break;
991 case E1INP_SIGN_RSL:
992 bootstrap_rsl(trx);
993 break;
994 default:
995 break;
996 }
997 break;
998 case EVT_E1_TEI_DN:
999 fprintf(stderr, "Lost some E1 TEI link\n");
1000 /* FIXME: deal with TEI or L1 link loss */
1001 break;
1002 default:
1003 break;
1004 }
1005}
1006
1007static int bootstrap_bts(struct gsm_bts *bts)
1008{
Mike Habene2d82272009-10-02 12:19:34 +01001009 switch (bts->band) {
1010 case GSM_BAND_1800:
Holger Hans Peter Freyther8b457fb2009-08-17 06:55:10 +02001011 if (bts->c0->arfcn < 512 || bts->c0->arfcn > 885) {
1012 fprintf(stderr, "GSM1800 channel must be between 512-885.\n");
1013 return -EINVAL;
1014 }
1015 break;
Mike Habene2d82272009-10-02 12:19:34 +01001016 case GSM_BAND_1900:
1017 if (bts->c0->arfcn < 512 || bts->c0->arfcn > 810) {
1018 fprintf(stderr, "GSM1900 channel must be between 512-810.\n");
1019 return -EINVAL;
1020 }
1021 break;
1022 case GSM_BAND_900:
Holger Hans Peter Freyther8b457fb2009-08-17 06:55:10 +02001023 if (bts->c0->arfcn < 1 || bts->c0->arfcn > 124) {
1024 fprintf(stderr, "GSM900 channel must be between 1-124.\n");
1025 return -EINVAL;
1026 }
1027 break;
Mike Habene2d82272009-10-02 12:19:34 +01001028 default:
1029 fprintf(stderr, "Unsupported frequency band.\n");
Holger Hans Peter Freyther8b457fb2009-08-17 06:55:10 +02001030 return -EINVAL;
1031 }
1032
1033 /* Control Channel Description */
1034 bts->chan_desc.att = 1;
1035 bts->chan_desc.ccch_conf = RSL_BCCH_CCCH_CONF_1_C;
1036 bts->chan_desc.bs_pa_mfrms = RSL_BS_PA_MFRMS_5;
1037 /* T3212 is set from vty/config */
1038
1039 paging_init(bts);
1040
1041 return 0;
1042}
1043
1044int bsc_bootstrap_network(int (*mncc_recv)(struct gsm_network *, int, void *),
1045 const char *config_file)
1046{
1047 struct gsm_bts *bts;
1048 int rc;
1049
1050 /* initialize our data structures */
1051 bsc_gsmnet = gsm_network_init(1, 1, mncc_recv);
1052 if (!bsc_gsmnet)
1053 return -ENOMEM;
1054
1055 bsc_gsmnet->name_long = talloc_strdup(bsc_gsmnet, "OpenBSC");
1056 bsc_gsmnet->name_short = talloc_strdup(bsc_gsmnet, "OpenBSC");
1057
1058 telnet_init(bsc_gsmnet, 4242);
1059 rc = vty_read_config_file(config_file);
1060 if (rc < 0) {
1061 fprintf(stderr, "Failed to parse the config file: '%s'\n", config_file);
1062 return rc;
1063 }
1064
1065 register_signal_handler(SS_NM, nm_sig_cb, NULL);
1066
1067 llist_for_each_entry(bts, &bsc_gsmnet->bts_list, list) {
1068 bootstrap_bts(bts);
1069 if (!is_ipaccess_bts(bts))
1070 rc = e1_reconfig_bts(bts);
1071
1072 if (rc < 0)
1073 exit (1);
1074 }
1075
1076 /* initialize nanoBTS support omce */
1077 rc = ipaccess_setup(bsc_gsmnet);
1078
1079 return 0;
1080}