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Harald Welte3300c012011-06-05 13:31:33 +02001/* (C) 2008-2010 by Harald Welte <laforge@gnumonks.org>
2 *
3 * All Rights Reserved
4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU Affero General Public License as published by
7 * the Free Software Foundation; either version 3 of the License, or
8 * (at your option) any later version.
9 *
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU Affero General Public License for more details.
14 *
15 * You should have received a copy of the GNU Affero General Public License
16 * along with this program. If not, see <http://www.gnu.org/licenses/>.
17 *
18 */
19
20
21#include <stdlib.h>
22#include <stdio.h>
23#include <string.h>
24#include <errno.h>
25#include <ctype.h>
26
27#include <netinet/in.h>
28
29#include <osmocom/core/linuxlist.h>
30#include <osmocom/core/talloc.h>
31#include <osmocom/gsm/gsm_utils.h>
32#include <osmocom/gsm/abis_nm.h>
33#include <osmocom/core/statistics.h>
34
Harald Welte5ac01792011-06-06 17:52:38 +020035#include <openbsc/gsm_data.h>
Harald Welte3300c012011-06-05 13:31:33 +020036
Harald Welte850dc6b2011-06-06 20:13:33 +020037static void gsm_mo_init(struct gsm_abis_mo *mo, struct gsm_bts *bts,
38 uint8_t obj_class, uint8_t p1, uint8_t p2, uint8_t p3)
Harald Welte32bc1162011-06-06 18:58:48 +020039{
40 mo->bts = bts;
Harald Welte850dc6b2011-06-06 20:13:33 +020041 mo->obj_class = obj_class;
42 mo->obj_inst.bts_nr = p1;
43 mo->obj_inst.trx_nr = p2;
44 mo->obj_inst.ts_nr = p3;
Harald Weltedf680282011-06-07 00:12:34 +020045 mo->nm_state.administrative = NM_STATE_NULL;
46 mo->nm_state.operational = NM_OPSTATE_NULL;
47 mo->nm_state.availability = NM_AVSTATE_POWER_OFF;
Harald Welte32bc1162011-06-06 18:58:48 +020048}
49
Harald Welte3300c012011-06-05 13:31:33 +020050static const struct value_string pchan_names[] = {
51 { GSM_PCHAN_NONE, "NONE" },
52 { GSM_PCHAN_CCCH, "CCCH" },
53 { GSM_PCHAN_CCCH_SDCCH4,"CCCH+SDCCH4" },
54 { GSM_PCHAN_TCH_F, "TCH/F" },
55 { GSM_PCHAN_TCH_H, "TCH/H" },
56 { GSM_PCHAN_SDCCH8_SACCH8C, "SDCCH8" },
57 { GSM_PCHAN_PDCH, "PDCH" },
58 { GSM_PCHAN_TCH_F_PDCH, "TCH/F_PDCH" },
59 { GSM_PCHAN_UNKNOWN, "UNKNOWN" },
60 { 0, NULL }
61};
62
63const char *gsm_pchan_name(enum gsm_phys_chan_config c)
64{
65 return get_value_string(pchan_names, c);
66}
67
68enum gsm_phys_chan_config gsm_pchan_parse(const char *name)
69{
70 return get_string_value(pchan_names, name);
71}
72
73static const struct value_string lchant_names[] = {
74 { GSM_LCHAN_NONE, "NONE" },
75 { GSM_LCHAN_SDCCH, "SDCCH" },
76 { GSM_LCHAN_TCH_F, "TCH/F" },
77 { GSM_LCHAN_TCH_H, "TCH/H" },
78 { GSM_LCHAN_UNKNOWN, "UNKNOWN" },
79 { 0, NULL }
80};
81
82const char *gsm_lchant_name(enum gsm_chan_t c)
83{
84 return get_value_string(lchant_names, c);
85}
86
87static const struct value_string lchan_s_names[] = {
88 { LCHAN_S_NONE, "NONE" },
89 { LCHAN_S_ACT_REQ, "ACTIVATION REQUESTED" },
90 { LCHAN_S_ACTIVE, "ACTIVE" },
91 { LCHAN_S_INACTIVE, "INACTIVE" },
92 { LCHAN_S_REL_REQ, "RELEASE REQUESTED" },
93 { LCHAN_S_REL_ERR, "RELEASE DUE ERROR" },
94 { 0, NULL }
95};
96
97const char *gsm_lchans_name(enum gsm_lchan_state s)
98{
99 return get_value_string(lchan_s_names, s);
100}
101
102static const struct value_string chreq_names[] = {
103 { GSM_CHREQ_REASON_EMERG, "EMERGENCY" },
104 { GSM_CHREQ_REASON_PAG, "PAGING" },
105 { GSM_CHREQ_REASON_CALL, "CALL" },
106 { GSM_CHREQ_REASON_LOCATION_UPD,"LOCATION_UPDATE" },
107 { GSM_CHREQ_REASON_OTHER, "OTHER" },
108 { 0, NULL }
109};
110
111const char *gsm_chreq_name(enum gsm_chreq_reason_t c)
112{
113 return get_value_string(chreq_names, c);
114}
115
116struct gsm_bts_trx *gsm_bts_trx_alloc(struct gsm_bts *bts)
117{
118 struct gsm_bts_trx *trx = talloc_zero(bts, struct gsm_bts_trx);
119 int k;
120
121 if (!trx)
122 return NULL;
123
124 trx->bts = bts;
125 trx->nr = bts->num_trx++;
126 trx->mo.nm_state.administrative = NM_STATE_UNLOCKED;
127
Harald Welte850dc6b2011-06-06 20:13:33 +0200128 gsm_mo_init(&trx->mo, bts, NM_OC_RADIO_CARRIER,
129 bts->nr, trx->nr, 0xff);
130 gsm_mo_init(&trx->bb_transc.mo, bts, NM_OC_BASEB_TRANSC,
131 bts->nr, trx->nr, 0xff);
Harald Welte32bc1162011-06-06 18:58:48 +0200132
Harald Welte3300c012011-06-05 13:31:33 +0200133 for (k = 0; k < TRX_NR_TS; k++) {
134 struct gsm_bts_trx_ts *ts = &trx->ts[k];
135 int l;
136
137 ts->trx = trx;
138 ts->nr = k;
139 ts->pchan = GSM_PCHAN_NONE;
140 ts->tsc = -1;
141
Harald Welte850dc6b2011-06-06 20:13:33 +0200142 gsm_mo_init(&ts->mo, bts, NM_OC_CHANNEL,
143 bts->nr, trx->nr, ts->nr);
Harald Welte32bc1162011-06-06 18:58:48 +0200144
Harald Welte3300c012011-06-05 13:31:33 +0200145 ts->hopping.arfcns.data_len = sizeof(ts->hopping.arfcns_data);
146 ts->hopping.arfcns.data = ts->hopping.arfcns_data;
147 ts->hopping.ma.data_len = sizeof(ts->hopping.ma_data);
148 ts->hopping.ma.data = ts->hopping.ma_data;
149
150 for (l = 0; l < TS_MAX_LCHAN; l++) {
151 struct gsm_lchan *lchan;
152 lchan = &ts->lchan[l];
153
154 lchan->ts = ts;
155 lchan->nr = l;
156 lchan->type = GSM_LCHAN_NONE;
157 }
158 }
159
160 if (trx->nr != 0)
161 trx->nominal_power = bts->c0->nominal_power;
162
163 llist_add_tail(&trx->list, &bts->trx_list);
164
165 return trx;
166}
167
Harald Welte32bc1162011-06-06 18:58:48 +0200168
Harald Welte3300c012011-06-05 13:31:33 +0200169static const uint8_t bts_nse_timer_default[] = { 3, 3, 3, 3, 30, 3, 10 };
170static const uint8_t bts_cell_timer_default[] =
171 { 3, 3, 3, 3, 3, 10, 3, 10, 3, 10, 3 };
172
173struct gsm_bts *gsm_bts_alloc(void *ctx)
174{
175 struct gsm_bts *bts = talloc_zero(ctx, struct gsm_bts);
176 int i;
177
178 if (!bts)
179 return NULL;
180
181 bts->num_trx = 0;
182 INIT_LLIST_HEAD(&bts->trx_list);
183 bts->ms_max_power = 15; /* dBm */
184
Harald Welte850dc6b2011-06-06 20:13:33 +0200185 gsm_mo_init(&bts->mo, bts, NM_OC_BTS,
186 bts->nr, 0xff, 0xff);
187 gsm_mo_init(&bts->site_mgr.mo, bts, NM_OC_SITE_MANAGER,
188 0xff, 0xff, 0xff);
Harald Welte32bc1162011-06-06 18:58:48 +0200189
Harald Welte3300c012011-06-05 13:31:33 +0200190 for (i = 0; i < ARRAY_SIZE(bts->gprs.nsvc); i++) {
191 bts->gprs.nsvc[i].bts = bts;
192 bts->gprs.nsvc[i].id = i;
Harald Welte850dc6b2011-06-06 20:13:33 +0200193 gsm_mo_init(&bts->gprs.nsvc[i].mo, bts, NM_OC_GPRS_NSVC,
194 bts->nr, i, 0xff);
Harald Welte3300c012011-06-05 13:31:33 +0200195 }
196 memcpy(&bts->gprs.nse.timer, bts_nse_timer_default,
197 sizeof(bts->gprs.nse.timer));
Harald Welte850dc6b2011-06-06 20:13:33 +0200198 gsm_mo_init(&bts->gprs.nse.mo, bts, NM_OC_GPRS_NSE,
199 bts->nr, 0xff, 0xff);
Harald Welte3300c012011-06-05 13:31:33 +0200200 memcpy(&bts->gprs.cell.timer, bts_cell_timer_default,
201 sizeof(bts->gprs.cell.timer));
Harald Welte850dc6b2011-06-06 20:13:33 +0200202 gsm_mo_init(&bts->gprs.cell.mo, bts, NM_OC_GPRS_CELL,
203 bts->nr, 0xff, 0xff);
Harald Welte3300c012011-06-05 13:31:33 +0200204
205 /* create our primary TRX */
206 bts->c0 = gsm_bts_trx_alloc(bts);
207 if (!bts->c0) {
208 talloc_free(bts);
209 return NULL;
210 }
211 bts->c0->ts[0].pchan = GSM_PCHAN_CCCH_SDCCH4;
212
213 bts->rach_b_thresh = -1;
214 bts->rach_ldavg_slots = -1;
215 bts->paging.free_chans_need = -1;
216
217 return bts;
218}
219
220struct gsm_bts_trx *gsm_bts_trx_num(struct gsm_bts *bts, int num)
221{
222 struct gsm_bts_trx *trx;
223
224 if (num >= bts->num_trx)
225 return NULL;
226
227 llist_for_each_entry(trx, &bts->trx_list, list) {
228 if (trx->nr == num)
229 return trx;
230 }
231
232 return NULL;
233}
234
235static char ts2str[255];
236
237char *gsm_trx_name(struct gsm_bts_trx *trx)
238{
239 snprintf(ts2str, sizeof(ts2str), "(bts=%d,trx=%d)",
240 trx->bts->nr, trx->nr);
241
242 return ts2str;
243}
244
245
246char *gsm_ts_name(struct gsm_bts_trx_ts *ts)
247{
248 snprintf(ts2str, sizeof(ts2str), "(bts=%d,trx=%d,ts=%d)",
249 ts->trx->bts->nr, ts->trx->nr, ts->nr);
250
251 return ts2str;
252}
253
254char *gsm_lchan_name(struct gsm_lchan *lchan)
255{
256 struct gsm_bts_trx_ts *ts = lchan->ts;
257
258 snprintf(ts2str, sizeof(ts2str), "(bts=%d,trx=%d,ts=%d,ss=%d)",
259 ts->trx->bts->nr, ts->trx->nr, ts->nr, lchan->nr);
260
261 return ts2str;
262}
Harald Welte978714d2011-06-06 18:31:20 +0200263
264/* obtain the MO structure for a given object instance */
265struct gsm_abis_mo *
266gsm_objclass2mo(struct gsm_bts *bts, uint8_t obj_class,
267 struct abis_om_obj_inst *obj_inst)
268{
269 struct gsm_bts_trx *trx;
270 struct gsm_abis_mo *mo = NULL;
271
272 switch (obj_class) {
273 case NM_OC_BTS:
274 mo = &bts->mo;
275 break;
276 case NM_OC_RADIO_CARRIER:
277 if (obj_inst->trx_nr >= bts->num_trx) {
278 return NULL;
279 }
280 trx = gsm_bts_trx_num(bts, obj_inst->trx_nr);
281 mo = &trx->mo;
282 break;
283 case NM_OC_BASEB_TRANSC:
284 if (obj_inst->trx_nr >= bts->num_trx) {
285 return NULL;
286 }
287 trx = gsm_bts_trx_num(bts, obj_inst->trx_nr);
288 mo = &trx->bb_transc.mo;
289 break;
290 case NM_OC_CHANNEL:
291 if (obj_inst->trx_nr >= bts->num_trx) {
292 return NULL;
293 }
294 trx = gsm_bts_trx_num(bts, obj_inst->trx_nr);
295 if (obj_inst->ts_nr >= TRX_NR_TS)
296 return NULL;
297 mo = &trx->ts[obj_inst->ts_nr].mo;
298 break;
299 case NM_OC_SITE_MANAGER:
300 mo = &bts->site_mgr.mo;
301 break;
302 case NM_OC_BS11:
303 switch (obj_inst->bts_nr) {
304 case BS11_OBJ_CCLK:
305 mo = &bts->bs11.cclk.mo;
306 break;
307 case BS11_OBJ_BBSIG:
308 if (obj_inst->ts_nr > bts->num_trx)
309 return NULL;
310 trx = gsm_bts_trx_num(bts, obj_inst->trx_nr);
311 mo = &trx->bs11.bbsig.mo;
312 break;
313 case BS11_OBJ_PA:
314 if (obj_inst->ts_nr > bts->num_trx)
315 return NULL;
316 trx = gsm_bts_trx_num(bts, obj_inst->trx_nr);
317 mo = &trx->bs11.pa.mo;
318 break;
319 default:
320 return NULL;
321 }
322 case NM_OC_BS11_RACK:
323 mo = &bts->bs11.rack.mo;
324 break;
325 case NM_OC_BS11_ENVABTSE:
326 if (obj_inst->trx_nr >= ARRAY_SIZE(bts->bs11.envabtse))
327 return NULL;
328 mo = &bts->bs11.envabtse[obj_inst->trx_nr].mo;
329 break;
330 case NM_OC_GPRS_NSE:
331 mo = &bts->gprs.nse.mo;
332 break;
333 case NM_OC_GPRS_CELL:
334 mo = &bts->gprs.cell.mo;
335 break;
336 case NM_OC_GPRS_NSVC:
337 if (obj_inst->trx_nr >= ARRAY_SIZE(bts->gprs.nsvc))
338 return NULL;
339 mo = &bts->gprs.nsvc[obj_inst->trx_nr].mo;
340 break;
341 }
342 return mo;
343}
344
345/* obtain the gsm_nm_state data structure for a given object instance */
346struct gsm_nm_state *
347gsm_objclass2nmstate(struct gsm_bts *bts, uint8_t obj_class,
348 struct abis_om_obj_inst *obj_inst)
349{
350 struct gsm_abis_mo *mo;
351
352 mo = gsm_objclass2mo(bts, obj_class, obj_inst);
353 if (!mo)
354 return NULL;
355
356 return &mo->nm_state;
357}
358
359/* obtain the in-memory data structure of a given object instance */
360void *
361gsm_objclass2obj(struct gsm_bts *bts, uint8_t obj_class,
362 struct abis_om_obj_inst *obj_inst)
363{
364 struct gsm_bts_trx *trx;
365 void *obj = NULL;
366
367 switch (obj_class) {
368 case NM_OC_BTS:
369 obj = bts;
370 break;
371 case NM_OC_RADIO_CARRIER:
372 if (obj_inst->trx_nr >= bts->num_trx) {
373 return NULL;
374 }
375 trx = gsm_bts_trx_num(bts, obj_inst->trx_nr);
376 obj = trx;
377 break;
378 case NM_OC_BASEB_TRANSC:
379 if (obj_inst->trx_nr >= bts->num_trx) {
380 return NULL;
381 }
382 trx = gsm_bts_trx_num(bts, obj_inst->trx_nr);
383 obj = &trx->bb_transc;
384 break;
385 case NM_OC_CHANNEL:
386 if (obj_inst->trx_nr >= bts->num_trx) {
387 return NULL;
388 }
389 trx = gsm_bts_trx_num(bts, obj_inst->trx_nr);
390 if (obj_inst->ts_nr >= TRX_NR_TS)
391 return NULL;
392 obj = &trx->ts[obj_inst->ts_nr];
393 break;
394 case NM_OC_SITE_MANAGER:
395 obj = &bts->site_mgr;
396 break;
397 case NM_OC_GPRS_NSE:
398 obj = &bts->gprs.nse;
399 break;
400 case NM_OC_GPRS_CELL:
401 obj = &bts->gprs.cell;
402 break;
403 case NM_OC_GPRS_NSVC:
404 if (obj_inst->trx_nr >= ARRAY_SIZE(bts->gprs.nsvc))
405 return NULL;
406 obj = &bts->gprs.nsvc[obj_inst->trx_nr];
407 break;
408 }
409 return obj;
410}
Harald Weltef6093a42011-06-25 10:02:33 +0200411
412/* See Table 10.5.25 of GSM04.08 */
413uint8_t gsm_ts2chan_nr(const struct gsm_bts_trx_ts *ts, uint8_t lchan_nr)
414{
415 uint8_t cbits, chan_nr;
416
417 switch (ts->pchan) {
418 case GSM_PCHAN_TCH_F:
419 case GSM_PCHAN_PDCH:
420 case GSM_PCHAN_TCH_F_PDCH:
421 cbits = 0x01;
422 break;
423 case GSM_PCHAN_TCH_H:
424 cbits = 0x02;
425 cbits += lchan_nr;
426 break;
427 case GSM_PCHAN_CCCH_SDCCH4:
428 cbits = 0x04;
429 cbits += lchan_nr;
430 break;
431 case GSM_PCHAN_SDCCH8_SACCH8C:
432 cbits = 0x08;
433 cbits += lchan_nr;
434 break;
435 default:
436 case GSM_PCHAN_CCCH:
437 cbits = 0x10;
438 break;
439 }
440
441 chan_nr = (cbits << 3) | (ts->nr & 0x7);
442
443 return chan_nr;
444}
445
446uint8_t gsm_lchan2chan_nr(const struct gsm_lchan *lchan)
447{
448 return gsm_ts2chan_nr(lchan->ts, lchan->nr);
449}