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Harald Welte59b04682009-06-10 05:40:52 +08001/* GSM Network Management (OML) messages on the A-bis interface
2 * 3GPP TS 12.21 version 8.0.0 Release 1999 / ETSI TS 100 623 V8.0.0 */
3
4/* (C) 2008-2009 by Harald Welte <laforge@gnumonks.org>
5 *
6 * All Rights Reserved
7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; either version 2 of the License, or
11 * (at your option) any later version.
12 *
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
17 *
18 * You should have received a copy of the GNU General Public License along
19 * with this program; if not, write to the Free Software Foundation, Inc.,
20 * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
21 *
22 */
23
24
25#include <errno.h>
26#include <unistd.h>
27#include <stdio.h>
28#include <fcntl.h>
29#include <stdlib.h>
30#include <libgen.h>
31#include <time.h>
32#include <limits.h>
33
34#include <sys/types.h>
35#include <sys/stat.h>
36#include <netinet/in.h>
37#include <arpa/inet.h>
38
39#include <openbsc/gsm_data.h>
40#include <openbsc/debug.h>
41#include <openbsc/msgb.h>
42#include <openbsc/tlv.h>
43#include <openbsc/abis_nm.h>
44#include <openbsc/misdn.h>
45#include <openbsc/signal.h>
Harald Weltea8379772009-06-20 22:36:41 +020046#include <openbsc/talloc.h>
Harald Welte59b04682009-06-10 05:40:52 +080047
48#define OM_ALLOC_SIZE 1024
49#define OM_HEADROOM_SIZE 128
50
51/* unidirectional messages from BTS to BSC */
52static const enum abis_nm_msgtype reports[] = {
53 NM_MT_SW_ACTIVATED_REP,
54 NM_MT_TEST_REP,
55 NM_MT_STATECHG_EVENT_REP,
56 NM_MT_FAILURE_EVENT_REP,
57};
58
59/* messages without ACK/NACK */
60static const enum abis_nm_msgtype no_ack_nack[] = {
61 NM_MT_MEAS_RES_REQ,
62 NM_MT_STOP_MEAS,
63 NM_MT_START_MEAS,
64};
65
66/* Messages related to software load */
67static const enum abis_nm_msgtype sw_load_msgs[] = {
68 NM_MT_LOAD_INIT_ACK,
69 NM_MT_LOAD_INIT_NACK,
70 NM_MT_LOAD_SEG_ACK,
71 NM_MT_LOAD_ABORT,
72 NM_MT_LOAD_END_ACK,
73 NM_MT_LOAD_END_NACK,
74 //NM_MT_SW_ACT_REQ,
75 NM_MT_ACTIVATE_SW_ACK,
76 NM_MT_ACTIVATE_SW_NACK,
77 NM_MT_SW_ACTIVATED_REP,
78};
79
80static const enum abis_nm_msgtype nacks[] = {
81 NM_MT_LOAD_INIT_NACK,
82 NM_MT_LOAD_END_NACK,
83 NM_MT_SW_ACT_REQ_NACK,
84 NM_MT_ACTIVATE_SW_NACK,
85 NM_MT_ESTABLISH_TEI_NACK,
86 NM_MT_CONN_TERR_SIGN_NACK,
87 NM_MT_DISC_TERR_SIGN_NACK,
88 NM_MT_CONN_TERR_TRAF_NACK,
89 NM_MT_DISC_TERR_TRAF_NACK,
90 NM_MT_CONN_MDROP_LINK_NACK,
91 NM_MT_DISC_MDROP_LINK_NACK,
92 NM_MT_SET_BTS_ATTR_NACK,
93 NM_MT_SET_RADIO_ATTR_NACK,
94 NM_MT_SET_CHAN_ATTR_NACK,
95 NM_MT_PERF_TEST_NACK,
96 NM_MT_SEND_TEST_REP_NACK,
97 NM_MT_STOP_TEST_NACK,
98 NM_MT_STOP_EVENT_REP_NACK,
99 NM_MT_REST_EVENT_REP_NACK,
100 NM_MT_CHG_ADM_STATE_NACK,
101 NM_MT_CHG_ADM_STATE_REQ_NACK,
102 NM_MT_REP_OUTST_ALARMS_NACK,
103 NM_MT_CHANGEOVER_NACK,
104 NM_MT_OPSTART_NACK,
105 NM_MT_REINIT_NACK,
106 NM_MT_SET_SITE_OUT_NACK,
107 NM_MT_CHG_HW_CONF_NACK,
108 NM_MT_GET_ATTR_NACK,
109 NM_MT_SET_ALARM_THRES_NACK,
110 NM_MT_BS11_BEGIN_DB_TX_NACK,
111 NM_MT_BS11_END_DB_TX_NACK,
112 NM_MT_BS11_CREATE_OBJ_NACK,
113 NM_MT_BS11_DELETE_OBJ_NACK,
114};
115
116static const char *nack_names[0xff] = {
117 [NM_MT_LOAD_INIT_NACK] = "SOFTWARE LOAD INIT",
118 [NM_MT_LOAD_END_NACK] = "SOFTWARE LOAD END",
119 [NM_MT_SW_ACT_REQ_NACK] = "SOFTWARE ACTIVATE REQUEST",
120 [NM_MT_ACTIVATE_SW_NACK] = "ACTIVATE SOFTWARE",
121 [NM_MT_ESTABLISH_TEI_NACK] = "ESTABLISH TEI",
122 [NM_MT_CONN_TERR_SIGN_NACK] = "CONNECT TERRESTRIAL SIGNALLING",
123 [NM_MT_DISC_TERR_SIGN_NACK] = "DISCONNECT TERRESTRIAL SIGNALLING",
124 [NM_MT_CONN_TERR_TRAF_NACK] = "CONNECT TERRESTRIAL TRAFFIC",
125 [NM_MT_DISC_TERR_TRAF_NACK] = "DISCONNECT TERRESTRIAL TRAFFIC",
126 [NM_MT_CONN_MDROP_LINK_NACK] = "CONNECT MULTI-DROP LINK",
127 [NM_MT_DISC_MDROP_LINK_NACK] = "DISCONNECT MULTI-DROP LINK",
128 [NM_MT_SET_BTS_ATTR_NACK] = "SET BTS ATTRIBUTE",
129 [NM_MT_SET_RADIO_ATTR_NACK] = "SET RADIO ATTRIBUTE",
130 [NM_MT_SET_CHAN_ATTR_NACK] = "SET CHANNEL ATTRIBUTE",
131 [NM_MT_PERF_TEST_NACK] = "PERFORM TEST",
132 [NM_MT_SEND_TEST_REP_NACK] = "SEND TEST REPORT",
133 [NM_MT_STOP_TEST_NACK] = "STOP TEST",
134 [NM_MT_STOP_EVENT_REP_NACK] = "STOP EVENT REPORT",
135 [NM_MT_REST_EVENT_REP_NACK] = "RESET EVENT REPORT",
136 [NM_MT_CHG_ADM_STATE_NACK] = "CHANGE ADMINISTRATIVE STATE",
137 [NM_MT_CHG_ADM_STATE_REQ_NACK] = "CHANGE ADMINISTRATIVE STATE REQUEST",
138 [NM_MT_REP_OUTST_ALARMS_NACK] = "REPORT OUTSTANDING ALARMS",
139 [NM_MT_CHANGEOVER_NACK] = "CHANGEOVER",
140 [NM_MT_OPSTART_NACK] = "OPSTART",
141 [NM_MT_REINIT_NACK] = "REINIT",
142 [NM_MT_SET_SITE_OUT_NACK] = "SET SITE OUTPUT",
143 [NM_MT_CHG_HW_CONF_NACK] = "CHANGE HARDWARE CONFIGURATION",
144 [NM_MT_GET_ATTR_NACK] = "GET ATTRIBUTE",
145 [NM_MT_SET_ALARM_THRES_NACK] = "SET ALARM THRESHOLD",
146 [NM_MT_BS11_BEGIN_DB_TX_NACK] = "BS11 BEGIN DATABASE TRANSMISSION",
147 [NM_MT_BS11_END_DB_TX_NACK] = "BS11 END DATABASE TRANSMISSION",
148 [NM_MT_BS11_CREATE_OBJ_NACK] = "BS11 CREATE OBJECT",
149 [NM_MT_BS11_DELETE_OBJ_NACK] = "BS11 DELETE OBJECT",
150};
151
152/* Chapter 9.4.36 */
153static const char *nack_cause_names[] = {
154 /* General Nack Causes */
155 [NM_NACK_INCORR_STRUCT] = "Incorrect message structure",
156 [NM_NACK_MSGTYPE_INVAL] = "Invalid message type value",
157 [NM_NACK_OBJCLASS_INVAL] = "Invalid Object class value",
158 [NM_NACK_OBJCLASS_NOTSUPP] = "Object class not supported",
159 [NM_NACK_BTSNR_UNKN] = "BTS no. unknown",
160 [NM_NACK_TRXNR_UNKN] = "Baseband Transceiver no. unknown",
161 [NM_NACK_OBJINST_UNKN] = "Object Instance unknown",
162 [NM_NACK_ATTRID_INVAL] = "Invalid attribute identifier value",
163 [NM_NACK_ATTRID_NOTSUPP] = "Attribute identifier not supported",
164 [NM_NACK_PARAM_RANGE] = "Parameter value outside permitted range",
165 [NM_NACK_ATTRLIST_INCONSISTENT] = "Inconsistency in attribute list",
166 [NM_NACK_SPEC_IMPL_NOTSUPP] = "Specified implementation not supported",
167 [NM_NACK_CANT_PERFORM] = "Message cannot be performed",
168 /* Specific Nack Causes */
169 [NM_NACK_RES_NOTIMPL] = "Resource not implemented",
170 [NM_NACK_RES_NOTAVAIL] = "Resource not available",
171 [NM_NACK_FREQ_NOTAVAIL] = "Frequency not available",
172 [NM_NACK_TEST_NOTSUPP] = "Test not supported",
173 [NM_NACK_CAPACITY_RESTR] = "Capacity restrictions",
174 [NM_NACK_PHYSCFG_NOTPERFORM] = "Physical configuration cannot be performed",
175 [NM_NACK_TEST_NOTINIT] = "Test not initiated",
176 [NM_NACK_PHYSCFG_NOTRESTORE] = "Physical configuration cannot be restored",
177 [NM_NACK_TEST_NOSUCH] = "No such test",
178 [NM_NACK_TEST_NOSTOP] = "Test cannot be stopped",
179 [NM_NACK_MSGINCONSIST_PHYSCFG] = "Message inconsistent with physical configuration",
180 [NM_NACK_FILE_INCOMPLETE] = "Complete file notreceived",
181 [NM_NACK_FILE_NOTAVAIL] = "File not available at destination",
Harald Weltec3217a12009-06-26 13:21:57 +0200182 [NM_NACK_FILE_NOTACTIVATE] = "File cannot be activate",
Harald Welte59b04682009-06-10 05:40:52 +0800183 [NM_NACK_REQ_NOT_GRANT] = "Request not granted",
184 [NM_NACK_WAIT] = "Wait",
185 [NM_NACK_NOTH_REPORT_EXIST] = "Nothing reportable existing",
186 [NM_NACK_MEAS_NOTSUPP] = "Measurement not supported",
187 [NM_NACK_MEAS_NOTSTART] = "Measurement not started",
188};
189
190static char namebuf[255];
191static const char *nack_cause_name(u_int8_t cause)
192{
193 if (cause < ARRAY_SIZE(nack_cause_names) && nack_cause_names[cause])
194 return nack_cause_names[cause];
195
196 snprintf(namebuf, sizeof(namebuf), "0x%02x\n", cause);
197 return namebuf;
198}
199
200/* Chapter 9.4.16: Event Type */
201static const char *event_type_names[] = {
202 [NM_EVT_COMM_FAIL] = "communication failure",
203 [NM_EVT_QOS_FAIL] = "quality of service failure",
204 [NM_EVT_PROC_FAIL] = "processing failure",
205 [NM_EVT_EQUIP_FAIL] = "equipment failure",
206 [NM_EVT_ENV_FAIL] = "environment failure",
207};
208
209static const char *event_type_name(u_int8_t cause)
210{
211 if (cause < ARRAY_SIZE(event_type_names) && event_type_names[cause])
212 return event_type_names[cause];
213
214 snprintf(namebuf, sizeof(namebuf), "0x%02x\n", cause);
215 return namebuf;
216}
217
218/* Chapter 9.4.63: Perceived Severity */
219static const char *severity_names[] = {
220 [NM_SEVER_CEASED] = "failure ceased",
221 [NM_SEVER_CRITICAL] = "critical failure",
222 [NM_SEVER_MAJOR] = "major failure",
223 [NM_SEVER_MINOR] = "minor failure",
224 [NM_SEVER_WARNING] = "warning level failure",
225 [NM_SEVER_INDETERMINATE] = "indeterminate failure",
226};
227
228static const char *severity_name(u_int8_t cause)
229{
230 if (cause < ARRAY_SIZE(severity_names) && severity_names[cause])
231 return severity_names[cause];
232
233 snprintf(namebuf, sizeof(namebuf), "0x%02x\n", cause);
234 return namebuf;
235}
236
237/* Attributes that the BSC can set, not only get, according to Section 9.4 */
238static const enum abis_nm_attr nm_att_settable[] = {
239 NM_ATT_ADD_INFO,
240 NM_ATT_ADD_TEXT,
241 NM_ATT_DEST,
242 NM_ATT_EVENT_TYPE,
243 NM_ATT_FILE_DATA,
244 NM_ATT_GET_ARI,
245 NM_ATT_HW_CONF_CHG,
246 NM_ATT_LIST_REQ_ATTR,
247 NM_ATT_MDROP_LINK,
248 NM_ATT_MDROP_NEXT,
249 NM_ATT_NACK_CAUSES,
250 NM_ATT_OUTST_ALARM,
251 NM_ATT_PHYS_CONF,
252 NM_ATT_PROB_CAUSE,
253 NM_ATT_RAD_SUBC,
254 NM_ATT_SOURCE,
255 NM_ATT_SPEC_PROB,
256 NM_ATT_START_TIME,
257 NM_ATT_TEST_DUR,
258 NM_ATT_TEST_NO,
259 NM_ATT_TEST_REPORT,
260 NM_ATT_WINDOW_SIZE,
261 NM_ATT_SEVERITY,
262 NM_ATT_MEAS_RES,
263 NM_ATT_MEAS_TYPE,
264};
265
266static const struct tlv_definition nm_att_tlvdef = {
267 .def = {
268 [NM_ATT_ABIS_CHANNEL] = { TLV_TYPE_FIXED, 3 },
269 [NM_ATT_ADD_INFO] = { TLV_TYPE_TL16V },
270 [NM_ATT_ADD_TEXT] = { TLV_TYPE_TL16V },
271 [NM_ATT_ADM_STATE] = { TLV_TYPE_TV },
272 [NM_ATT_ARFCN_LIST]= { TLV_TYPE_TL16V },
273 [NM_ATT_AUTON_REPORT] = { TLV_TYPE_TV },
274 [NM_ATT_AVAIL_STATUS] = { TLV_TYPE_TL16V },
275 [NM_ATT_BCCH_ARFCN] = { TLV_TYPE_FIXED, 2 },
276 [NM_ATT_BSIC] = { TLV_TYPE_TV },
277 [NM_ATT_BTS_AIR_TIMER] = { TLV_TYPE_TV },
278 [NM_ATT_CCCH_L_I_P] = { TLV_TYPE_TV },
279 [NM_ATT_CCCH_L_T] = { TLV_TYPE_TV },
280 [NM_ATT_CHAN_COMB] = { TLV_TYPE_TV },
281 [NM_ATT_CONN_FAIL_CRIT] = { TLV_TYPE_TL16V },
282 [NM_ATT_DEST] = { TLV_TYPE_TL16V },
283 [NM_ATT_EVENT_TYPE] = { TLV_TYPE_TV },
284 [NM_ATT_FILE_DATA] = { TLV_TYPE_TL16V },
285 [NM_ATT_FILE_ID] = { TLV_TYPE_TL16V },
286 [NM_ATT_FILE_VERSION] = { TLV_TYPE_TL16V },
287 [NM_ATT_GSM_TIME] = { TLV_TYPE_FIXED, 2 },
288 [NM_ATT_HSN] = { TLV_TYPE_TV },
289 [NM_ATT_HW_CONFIG] = { TLV_TYPE_TL16V },
290 [NM_ATT_HW_DESC] = { TLV_TYPE_TL16V },
291 [NM_ATT_INTAVE_PARAM] = { TLV_TYPE_TV },
292 [NM_ATT_INTERF_BOUND] = { TLV_TYPE_FIXED, 6 },
293 [NM_ATT_LIST_REQ_ATTR] = { TLV_TYPE_TL16V },
294 [NM_ATT_MAIO] = { TLV_TYPE_TV },
295 [NM_ATT_MANUF_STATE] = { TLV_TYPE_TV },
296 [NM_ATT_MANUF_THRESH] = { TLV_TYPE_TL16V },
297 [NM_ATT_MANUF_ID] = { TLV_TYPE_TL16V },
298 [NM_ATT_MAX_TA] = { TLV_TYPE_TV },
299 [NM_ATT_MDROP_LINK] = { TLV_TYPE_FIXED, 2 },
300 [NM_ATT_MDROP_NEXT] = { TLV_TYPE_FIXED, 2 },
301 [NM_ATT_NACK_CAUSES] = { TLV_TYPE_TV },
302 [NM_ATT_NY1] = { TLV_TYPE_TV },
303 [NM_ATT_OPER_STATE] = { TLV_TYPE_TV },
304 [NM_ATT_OVERL_PERIOD] = { TLV_TYPE_TL16V },
305 [NM_ATT_PHYS_CONF] = { TLV_TYPE_TL16V },
306 [NM_ATT_POWER_CLASS] = { TLV_TYPE_TV },
307 [NM_ATT_POWER_THRESH] = { TLV_TYPE_FIXED, 3 },
308 [NM_ATT_PROB_CAUSE] = { TLV_TYPE_FIXED, 3 },
309 [NM_ATT_RACH_B_THRESH] = { TLV_TYPE_TV },
310 [NM_ATT_LDAVG_SLOTS] = { TLV_TYPE_FIXED, 2 },
311 [NM_ATT_RAD_SUBC] = { TLV_TYPE_TV },
312 [NM_ATT_RF_MAXPOWR_R] = { TLV_TYPE_TV },
313 [NM_ATT_SITE_INPUTS] = { TLV_TYPE_TL16V },
314 [NM_ATT_SITE_OUTPUTS] = { TLV_TYPE_TL16V },
315 [NM_ATT_SOURCE] = { TLV_TYPE_TL16V },
316 [NM_ATT_SPEC_PROB] = { TLV_TYPE_TV },
317 [NM_ATT_START_TIME] = { TLV_TYPE_FIXED, 2 },
318 [NM_ATT_T200] = { TLV_TYPE_FIXED, 7 },
319 [NM_ATT_TEI] = { TLV_TYPE_TV },
320 [NM_ATT_TEST_DUR] = { TLV_TYPE_FIXED, 2 },
321 [NM_ATT_TEST_NO] = { TLV_TYPE_TV },
322 [NM_ATT_TEST_REPORT] = { TLV_TYPE_TL16V },
323 [NM_ATT_VSWR_THRESH] = { TLV_TYPE_FIXED, 2 },
324 [NM_ATT_WINDOW_SIZE] = { TLV_TYPE_TV },
325 [NM_ATT_TSC] = { TLV_TYPE_TV },
326 [NM_ATT_SW_CONFIG] = { TLV_TYPE_TL16V },
327 [NM_ATT_SEVERITY] = { TLV_TYPE_TV },
328 [NM_ATT_GET_ARI] = { TLV_TYPE_TL16V },
329 [NM_ATT_HW_CONF_CHG] = { TLV_TYPE_TL16V },
330 [NM_ATT_OUTST_ALARM] = { TLV_TYPE_TV },
331 [NM_ATT_FILE_DATA] = { TLV_TYPE_TL16V },
332 [NM_ATT_MEAS_RES] = { TLV_TYPE_TL16V },
333 /* BS11 specifics */
334 [NM_ATT_BS11_ESN_FW_CODE_NO] = { TLV_TYPE_TLV },
335 [NM_ATT_BS11_ESN_HW_CODE_NO] = { TLV_TYPE_TLV },
336 [NM_ATT_BS11_ESN_PCB_SERIAL] = { TLV_TYPE_TLV },
337 [NM_ATT_BS11_BOOT_SW_VERS] = { TLV_TYPE_TLV },
338 [0xd5] = { TLV_TYPE_TLV },
339 [0xa8] = { TLV_TYPE_TLV },
340 [NM_ATT_BS11_PASSWORD] = { TLV_TYPE_TLV },
341 [NM_ATT_BS11_TXPWR] = { TLV_TYPE_TLV },
342 [NM_ATT_BS11_RSSI_OFFS] = { TLV_TYPE_TLV },
343 [NM_ATT_BS11_LINE_CFG] = { TLV_TYPE_TV },
344 [NM_ATT_BS11_L1_PROT_TYPE] = { TLV_TYPE_TV },
345 [NM_ATT_BS11_BIT_ERR_THESH] = { TLV_TYPE_FIXED, 2 },
346 [NM_ATT_BS11_DIVERSITY] = { TLV_TYPE_TLV },
347 [NM_ATT_BS11_LMT_LOGON_SESSION]={ TLV_TYPE_TLV },
348 [NM_ATT_BS11_LMT_LOGIN_TIME] = { TLV_TYPE_TLV },
349 [NM_ATT_BS11_LMT_USER_ACC_LEV] ={ TLV_TYPE_TLV },
350 [NM_ATT_BS11_LMT_USER_NAME] = { TLV_TYPE_TLV },
351 [NM_ATT_BS11_BTS_STATE] = { TLV_TYPE_TLV },
352 [NM_ATT_BS11_E1_STATE] = { TLV_TYPE_TLV },
353 [NM_ATT_BS11_PLL_MODE] = { TLV_TYPE_TLV },
354 [NM_ATT_BS11_PLL] = { TLV_TYPE_TLV },
355 [NM_ATT_BS11_CCLK_ACCURACY] = { TLV_TYPE_TV },
356 [NM_ATT_BS11_CCLK_TYPE] = { TLV_TYPE_TV },
357 /* ip.access specifics */
Harald Welte4206d982009-07-12 09:33:54 +0200358 [NM_ATT_IPACC_DST_IP] = { TLV_TYPE_FIXED, 4 },
359 [NM_ATT_IPACC_DST_IP_PORT] = { TLV_TYPE_FIXED, 2 },
360 [NM_ATT_IPACC_PRIM_OML_CFG_LIST] = { TLV_TYPE_TL16V },
Harald Welte90a93cf2009-07-03 12:46:27 +0200361 [NM_ATT_IPACC_NV_FLAGS] = { TLV_TYPE_TL16V },
362 [NM_ATT_IPACC_FREQ_CTRL] = { TLV_TYPE_FIXED, 2 },
Harald Welte4206d982009-07-12 09:33:54 +0200363 [NM_ATT_IPACC_PRIM_OML_FB_TOUT] = { TLV_TYPE_TL16V },
Harald Welte90a93cf2009-07-03 12:46:27 +0200364 [NM_ATT_IPACC_SEC_OML_CFG] = { TLV_TYPE_FIXED, 6 },
365 [NM_ATT_IPACC_IP_IF_CFG] = { TLV_TYPE_FIXED, 8 },
366 [NM_ATT_IPACC_IP_GW_CFG] = { TLV_TYPE_FIXED, 12 },
367 [NM_ATT_IPACC_LOCATION] = { TLV_TYPE_TL16V },
368 [NM_ATT_IPACC_UNIT_ID] = { TLV_TYPE_TL16V },
369 [NM_ATT_IPACC_UNIT_NAME] = { TLV_TYPE_TL16V },
370 [NM_ATT_IPACC_SNMP_CFG] = { TLV_TYPE_TL16V },
371 [NM_ATT_IPACC_ALM_THRESH_LIST]= { TLV_TYPE_TL16V },
372 //[0x95] = { TLV_TYPE_FIXED, 2 },
Harald Welte59b04682009-06-10 05:40:52 +0800373 [0x85] = { TLV_TYPE_TV },
374
375 },
376};
377
378int abis_nm_tlv_parse(struct tlv_parsed *tp, const u_int8_t *buf, int len)
379{
380 return tlv_parse(tp, &nm_att_tlvdef, buf, len, 0, 0);
381}
382
383static int is_in_arr(enum abis_nm_msgtype mt, const enum abis_nm_msgtype *arr, int size)
384{
385 int i;
386
387 for (i = 0; i < size; i++) {
388 if (arr[i] == mt)
389 return 1;
390 }
391
392 return 0;
393}
394
395#if 0
396/* is this msgtype the usual ACK/NACK type ? */
397static int is_ack_nack(enum abis_nm_msgtype mt)
398{
399 return !is_in_arr(mt, no_ack_nack, ARRAY_SIZE(no_ack_nack));
400}
401#endif
402
403/* is this msgtype a report ? */
404static int is_report(enum abis_nm_msgtype mt)
405{
406 return is_in_arr(mt, reports, ARRAY_SIZE(reports));
407}
408
409#define MT_ACK(x) (x+1)
410#define MT_NACK(x) (x+2)
411
412static void fill_om_hdr(struct abis_om_hdr *oh, u_int8_t len)
413{
414 oh->mdisc = ABIS_OM_MDISC_FOM;
415 oh->placement = ABIS_OM_PLACEMENT_ONLY;
416 oh->sequence = 0;
417 oh->length = len;
418}
419
420static void fill_om_fom_hdr(struct abis_om_hdr *oh, u_int8_t len,
421 u_int8_t msg_type, u_int8_t obj_class,
422 u_int8_t bts_nr, u_int8_t trx_nr, u_int8_t ts_nr)
423{
424 struct abis_om_fom_hdr *foh =
425 (struct abis_om_fom_hdr *) oh->data;
426
427 fill_om_hdr(oh, len+sizeof(*foh));
428 foh->msg_type = msg_type;
429 foh->obj_class = obj_class;
430 foh->obj_inst.bts_nr = bts_nr;
431 foh->obj_inst.trx_nr = trx_nr;
432 foh->obj_inst.ts_nr = ts_nr;
433}
434
435static struct msgb *nm_msgb_alloc(void)
436{
Harald Welte9cfc9352009-06-26 19:39:35 +0200437 return msgb_alloc_headroom(OM_ALLOC_SIZE, OM_HEADROOM_SIZE,
438 "OML");
Harald Welte59b04682009-06-10 05:40:52 +0800439}
440
441/* Send a OML NM Message from BSC to BTS */
442int abis_nm_sendmsg(struct gsm_bts *bts, struct msgb *msg)
443{
444 msg->trx = bts->c0;
445
446 return _abis_nm_sendmsg(msg);
447}
448
449static int abis_nm_rcvmsg_sw(struct msgb *mb);
450
451static const char *obj_class_name(u_int8_t oc)
452{
453 switch (oc) {
454 case NM_OC_SITE_MANAGER:
455 return "SITE MANAGER";
456 case NM_OC_BTS:
457 return "BTS";
458 case NM_OC_RADIO_CARRIER:
459 return "RADIO CARRIER";
460 case NM_OC_BASEB_TRANSC:
461 return "BASEBAND TRANSCEIVER";
462 case NM_OC_CHANNEL:
463 return "CHANNEL";
464 case NM_OC_BS11_ADJC:
465 return "ADJC";
466 case NM_OC_BS11_HANDOVER:
467 return "HANDOVER";
468 case NM_OC_BS11_PWR_CTRL:
469 return "POWER CONTROL";
470 case NM_OC_BS11_BTSE:
471 return "BTSE";
472 case NM_OC_BS11_RACK:
473 return "RACK";
474 case NM_OC_BS11_TEST:
475 return "TEST";
476 case NM_OC_BS11_ENVABTSE:
477 return "ENVABTSE";
478 case NM_OC_BS11_BPORT:
479 return "BPORT";
480 case NM_OC_GPRS_NSE:
481 return "GPRS NSE";
482 case NM_OC_GPRS_CELL:
483 return "GPRS CELL";
484 case NM_OC_GPRS_NSVC0:
485 return "GPRS NSVC0";
486 case NM_OC_GPRS_NSVC1:
487 return "GPRS NSVC1";
488 case NM_OC_BS11:
489 return "SIEMENSHW";
490 }
491
492 return "UNKNOWN";
493}
494
495const char *nm_opstate_name(u_int8_t os)
496{
497 switch (os) {
498 case 1:
499 return "Disabled";
500 case 2:
501 return "Enabled";
502 case 0xff:
503 return "NULL";
504 default:
505 return "RFU";
506 }
507}
508
509/* Chapter 9.4.7 */
510static const char *avail_names[] = {
511 "In test",
512 "Failed",
513 "Power off",
514 "Off line",
515 "<not used>",
516 "Dependency",
517 "Degraded",
518 "Not installed",
519};
520
521const char *nm_avail_name(u_int8_t avail)
522{
523 if (avail == 0xff)
524 return "OK";
525 if (avail >= ARRAY_SIZE(avail_names))
526 return "UNKNOWN";
527 return avail_names[avail];
528}
529
530const char *nm_adm_name(u_int8_t adm)
531{
532 switch (adm) {
533 case 1:
534 return "Locked";
535 case 2:
536 return "Unlocked";
537 case 3:
538 return "Shutdown";
539 default:
540 return "<not used>";
541 }
542}
543
544/* obtain the gsm_nm_state data structure for a given object instance */
545static struct gsm_nm_state *
546objclass2nmstate(struct gsm_bts *bts, u_int8_t obj_class,
547 struct abis_om_obj_inst *obj_inst)
548{
549 struct gsm_bts_trx *trx;
550 struct gsm_nm_state *nm_state = NULL;
551
552 switch (obj_class) {
553 case NM_OC_BTS:
554 nm_state = &bts->nm_state;
555 break;
556 case NM_OC_RADIO_CARRIER:
557 if (obj_inst->trx_nr >= bts->num_trx)
558 return NULL;
Harald Weltee712a5f2009-06-21 16:17:15 +0200559 trx = gsm_bts_trx_num(bts, obj_inst->trx_nr);
Harald Welte59b04682009-06-10 05:40:52 +0800560 nm_state = &trx->nm_state;
561 break;
562 case NM_OC_BASEB_TRANSC:
563 if (obj_inst->trx_nr >= bts->num_trx)
564 return NULL;
Harald Weltee712a5f2009-06-21 16:17:15 +0200565 trx = gsm_bts_trx_num(bts, obj_inst->trx_nr);
Harald Welte59b04682009-06-10 05:40:52 +0800566 nm_state = &trx->bb_transc.nm_state;
567 break;
568 case NM_OC_CHANNEL:
569 if (obj_inst->trx_nr > bts->num_trx)
570 return NULL;
Harald Weltee712a5f2009-06-21 16:17:15 +0200571 trx = gsm_bts_trx_num(bts, obj_inst->trx_nr);
Harald Welte59b04682009-06-10 05:40:52 +0800572 if (obj_inst->ts_nr >= TRX_NR_TS)
573 return NULL;
574 nm_state = &trx->ts[obj_inst->ts_nr].nm_state;
575 break;
576 case NM_OC_SITE_MANAGER:
577 nm_state = &bts->site_mgr.nm_state;
578 break;
579 case NM_OC_BS11:
580 switch (obj_inst->bts_nr) {
581 case BS11_OBJ_CCLK:
582 nm_state = &bts->bs11.cclk.nm_state;
583 break;
584 case BS11_OBJ_BBSIG:
585 if (obj_inst->ts_nr > bts->num_trx)
586 return NULL;
Harald Weltee712a5f2009-06-21 16:17:15 +0200587 trx = gsm_bts_trx_num(bts, obj_inst->trx_nr);
Harald Welte59b04682009-06-10 05:40:52 +0800588 nm_state = &trx->bs11.bbsig.nm_state;
589 break;
590 case BS11_OBJ_PA:
591 if (obj_inst->ts_nr > bts->num_trx)
592 return NULL;
Harald Weltee712a5f2009-06-21 16:17:15 +0200593 trx = gsm_bts_trx_num(bts, obj_inst->trx_nr);
Harald Welte59b04682009-06-10 05:40:52 +0800594 nm_state = &trx->bs11.pa.nm_state;
595 break;
596 default:
597 return NULL;
598 }
599 case NM_OC_BS11_RACK:
600 nm_state = &bts->bs11.rack.nm_state;
601 break;
602 case NM_OC_BS11_ENVABTSE:
603 if (obj_inst->trx_nr > ARRAY_SIZE(bts->bs11.envabtse))
604 return NULL;
605 nm_state = &bts->bs11.envabtse[obj_inst->trx_nr].nm_state;
606 break;
607 }
608 return nm_state;
609}
610
611/* obtain the in-memory data structure of a given object instance */
612static void *
613objclass2obj(struct gsm_bts *bts, u_int8_t obj_class,
614 struct abis_om_obj_inst *obj_inst)
615{
616 struct gsm_bts_trx *trx;
617 void *obj = NULL;
618
619 switch (obj_class) {
620 case NM_OC_BTS:
621 obj = bts;
622 break;
623 case NM_OC_RADIO_CARRIER:
624 if (obj_inst->trx_nr >= bts->num_trx)
625 return NULL;
Harald Weltee712a5f2009-06-21 16:17:15 +0200626 trx = gsm_bts_trx_num(bts, obj_inst->trx_nr);
Harald Welte59b04682009-06-10 05:40:52 +0800627 obj = trx;
628 break;
629 case NM_OC_BASEB_TRANSC:
630 if (obj_inst->trx_nr >= bts->num_trx)
631 return NULL;
Harald Weltee712a5f2009-06-21 16:17:15 +0200632 trx = gsm_bts_trx_num(bts, obj_inst->trx_nr);
Harald Welte59b04682009-06-10 05:40:52 +0800633 obj = &trx->bb_transc;
634 break;
635 case NM_OC_CHANNEL:
636 if (obj_inst->trx_nr > bts->num_trx)
637 return NULL;
Harald Weltee712a5f2009-06-21 16:17:15 +0200638 trx = gsm_bts_trx_num(bts, obj_inst->trx_nr);
Harald Welte59b04682009-06-10 05:40:52 +0800639 if (obj_inst->ts_nr >= TRX_NR_TS)
640 return NULL;
641 obj = &trx->ts[obj_inst->ts_nr];
642 break;
643 case NM_OC_SITE_MANAGER:
644 obj = &bts->site_mgr;
645 break;
646 }
647 return obj;
648}
649
650/* Update the administrative state of a given object in our in-memory data
651 * structures and send an event to the higher layer */
652static int update_admstate(struct gsm_bts *bts, u_int8_t obj_class,
653 struct abis_om_obj_inst *obj_inst, u_int8_t adm_state)
654{
655 struct gsm_nm_state *nm_state, new_state;
656 void *obj;
657 int rc;
658
659 obj = objclass2obj(bts, obj_class, obj_inst);
660 nm_state = objclass2nmstate(bts, obj_class, obj_inst);
661 if (!nm_state)
662 return -1;
663
664 new_state = *nm_state;
665 new_state.administrative = adm_state;
666
667 rc = nm_state_event(EVT_STATECHG_ADM, obj_class, obj, nm_state, &new_state);
668
669 nm_state->administrative = adm_state;
670
671 return rc;
672}
673
674static int abis_nm_rx_statechg_rep(struct msgb *mb)
675{
676 struct abis_om_hdr *oh = msgb_l2(mb);
677 struct abis_om_fom_hdr *foh = msgb_l3(mb);
678 struct gsm_bts *bts = mb->trx->bts;
679 struct tlv_parsed tp;
680 struct gsm_nm_state *nm_state, new_state;
681 int rc;
682
683 DEBUGPC(DNM, "STATE CHG: ");
684
685 memset(&new_state, 0, sizeof(new_state));
686
687 nm_state = objclass2nmstate(bts, foh->obj_class, &foh->obj_inst);
688 if (!nm_state) {
689 DEBUGPC(DNM, "\n");
690 return -EINVAL;
691 }
692
693 new_state = *nm_state;
694
695 abis_nm_tlv_parse(&tp, foh->data, oh->length-sizeof(*foh));
696 if (TLVP_PRESENT(&tp, NM_ATT_OPER_STATE)) {
697 new_state.operational = *TLVP_VAL(&tp, NM_ATT_OPER_STATE);
698 DEBUGPC(DNM, "OP_STATE=%s ", nm_opstate_name(new_state.operational));
699 }
700 if (TLVP_PRESENT(&tp, NM_ATT_AVAIL_STATUS)) {
701 if (TLVP_LEN(&tp, NM_ATT_AVAIL_STATUS) == 0)
702 new_state.availability = 0xff;
703 else
704 new_state.availability = *TLVP_VAL(&tp, NM_ATT_AVAIL_STATUS);
705 DEBUGPC(DNM, "AVAIL=%s(%02x) ", nm_avail_name(new_state.availability),
706 new_state.availability);
707 }
708 if (TLVP_PRESENT(&tp, NM_ATT_ADM_STATE)) {
709 new_state.administrative = *TLVP_VAL(&tp, NM_ATT_ADM_STATE);
Harald Welte17f4cbf2009-06-12 01:34:29 +0800710 DEBUGPC(DNM, "ADM=%02s ", nm_adm_name(new_state.administrative));
Harald Welte59b04682009-06-10 05:40:52 +0800711 }
712 DEBUGPC(DNM, "\n");
713
714 if (memcmp(&new_state, nm_state, sizeof(new_state))) {
715 /* Update the operational state of a given object in our in-memory data
716 * structures and send an event to the higher layer */
717 void *obj = objclass2obj(bts, foh->obj_class, &foh->obj_inst);
718 rc = nm_state_event(EVT_STATECHG_OPER, foh->obj_class, obj, nm_state, &new_state);
719 *nm_state = new_state;
720 }
721#if 0
722 if (op_state == 1) {
723 /* try to enable objects that are disabled */
724 abis_nm_opstart(bts, foh->obj_class,
725 foh->obj_inst.bts_nr,
726 foh->obj_inst.trx_nr,
727 foh->obj_inst.ts_nr);
728 }
729#endif
730 return 0;
731}
732
733static int rx_fail_evt_rep(struct msgb *mb)
734{
735 struct abis_om_hdr *oh = msgb_l2(mb);
736 struct abis_om_fom_hdr *foh = msgb_l3(mb);
737 struct tlv_parsed tp;
738
739 DEBUGPC(DNM, "Failure Event Report ");
740
741 abis_nm_tlv_parse(&tp, foh->data, oh->length-sizeof(*foh));
742
743 if (TLVP_PRESENT(&tp, NM_ATT_EVENT_TYPE))
744 DEBUGPC(DNM, "Type=%s ", event_type_name(*TLVP_VAL(&tp, NM_ATT_EVENT_TYPE)));
745 if (TLVP_PRESENT(&tp, NM_ATT_SEVERITY))
746 DEBUGPC(DNM, "Severity=%s ", severity_name(*TLVP_VAL(&tp, NM_ATT_SEVERITY)));
747
748 DEBUGPC(DNM, "\n");
749
750 return 0;
751}
752
753static int abis_nm_rcvmsg_report(struct msgb *mb)
754{
755 struct abis_om_fom_hdr *foh = msgb_l3(mb);
756 u_int8_t mt = foh->msg_type;
757
758 DEBUGP(DNM, "OC=%s(%02x) INST=(%02x,%02x,%02x) ",
759 obj_class_name(foh->obj_class), foh->obj_class,
760 foh->obj_inst.bts_nr, foh->obj_inst.trx_nr,
761 foh->obj_inst.ts_nr);
762
763 //nmh->cfg->report_cb(mb, foh);
764
765 switch (mt) {
766 case NM_MT_STATECHG_EVENT_REP:
767 return abis_nm_rx_statechg_rep(mb);
768 break;
769 case NM_MT_SW_ACTIVATED_REP:
770 DEBUGPC(DNM, "Software Activated Report\n");
771 dispatch_signal(SS_NM, S_NM_SW_ACTIV_REP, mb);
772 break;
773 case NM_MT_FAILURE_EVENT_REP:
774 rx_fail_evt_rep(mb);
775 dispatch_signal(SS_NM, S_NM_FAIL_REP, mb);
776 break;
777 default:
778 DEBUGPC(DNM, "reporting NM MT 0x%02x\n", mt);
779 break;
780
781 };
782
783 return 0;
784}
785
786/* Activate the specified software into the BTS */
787static int ipacc_sw_activate(struct gsm_bts *bts, u_int8_t obj_class, u_int8_t i0, u_int8_t i1,
788 u_int8_t i2, u_int8_t *sw_desc, u_int8_t swdesc_len)
789{
790 struct abis_om_hdr *oh;
791 struct msgb *msg = nm_msgb_alloc();
792 u_int8_t len = swdesc_len;
793 u_int8_t *trailer;
794
795 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
796 fill_om_fom_hdr(oh, len, NM_MT_ACTIVATE_SW, obj_class, i0, i1, i2);
797
798 trailer = msgb_put(msg, swdesc_len);
799 memcpy(trailer, sw_desc, swdesc_len);
800
801 return abis_nm_sendmsg(bts, msg);
802}
803
804static int abis_nm_rx_sw_act_req(struct msgb *mb)
805{
806 struct abis_om_hdr *oh = msgb_l2(mb);
807 struct abis_om_fom_hdr *foh = msgb_l3(mb);
808 int nack = 0;
809 int ret;
810
811 DEBUGP(DNM, "Software Activate Request ");
812
813 if (foh->obj_class >= 0xf0 && foh->obj_class <= 0xf3) {
814 DEBUGPC(DNM, "NACKing for GPRS obj_class 0x%02x\n", foh->obj_class);
815 nack = 1;
816 } else
817 DEBUGPC(DNM, "ACKing and Activating\n");
818
819 ret = abis_nm_sw_act_req_ack(mb->trx->bts, foh->obj_class,
820 foh->obj_inst.bts_nr,
821 foh->obj_inst.trx_nr,
822 foh->obj_inst.ts_nr, nack,
823 foh->data, oh->length-sizeof(*foh));
824
825 if (nack)
826 return ret;
827
828 /* FIXME: properly parse attributes */
829 return ipacc_sw_activate(mb->trx->bts, foh->obj_class,
830 foh->obj_inst.bts_nr,
831 foh->obj_inst.trx_nr,
832 foh->obj_inst.ts_nr,
833 foh->data + oh->length-sizeof(*foh)-22, 22);
834}
835
836/* Receive a CHANGE_ADM_STATE_ACK, parse the TLV and update local state */
837static int abis_nm_rx_chg_adm_state_ack(struct msgb *mb)
838{
839 struct abis_om_hdr *oh = msgb_l2(mb);
840 struct abis_om_fom_hdr *foh = msgb_l3(mb);
841 struct tlv_parsed tp;
842 u_int8_t adm_state;
843
844 abis_nm_tlv_parse(&tp, foh->data, oh->length-sizeof(*foh));
845 if (!TLVP_PRESENT(&tp, NM_ATT_ADM_STATE))
846 return -EINVAL;
847
848 adm_state = *TLVP_VAL(&tp, NM_ATT_ADM_STATE);
849
850 return update_admstate(mb->trx->bts, foh->obj_class, &foh->obj_inst, adm_state);
851}
852
853static int abis_nm_rx_lmt_event(struct msgb *mb)
854{
855 struct abis_om_hdr *oh = msgb_l2(mb);
856 struct abis_om_fom_hdr *foh = msgb_l3(mb);
857 struct tlv_parsed tp;
858
859 DEBUGP(DNM, "LMT Event ");
860 abis_nm_tlv_parse(&tp, foh->data, oh->length-sizeof(*foh));
861 if (TLVP_PRESENT(&tp, NM_ATT_BS11_LMT_LOGON_SESSION) &&
862 TLVP_LEN(&tp, NM_ATT_BS11_LMT_LOGON_SESSION) >= 1) {
863 u_int8_t onoff = *TLVP_VAL(&tp, NM_ATT_BS11_LMT_LOGON_SESSION);
864 DEBUGPC(DNM, "LOG%s ", onoff ? "ON" : "OFF");
865 }
866 if (TLVP_PRESENT(&tp, NM_ATT_BS11_LMT_USER_ACC_LEV) &&
867 TLVP_LEN(&tp, NM_ATT_BS11_LMT_USER_ACC_LEV) >= 1) {
868 u_int8_t level = *TLVP_VAL(&tp, NM_ATT_BS11_LMT_USER_ACC_LEV);
869 DEBUGPC(DNM, "Level=%u ", level);
870 }
871 if (TLVP_PRESENT(&tp, NM_ATT_BS11_LMT_USER_NAME) &&
872 TLVP_LEN(&tp, NM_ATT_BS11_LMT_USER_NAME) >= 1) {
873 char *name = (char *) TLVP_VAL(&tp, NM_ATT_BS11_LMT_USER_NAME);
874 DEBUGPC(DNM, "Username=%s ", name);
875 }
876 DEBUGPC(DNM, "\n");
877 /* FIXME: parse LMT LOGON TIME */
878 return 0;
879}
880
881/* Receive a OML NM Message from BTS */
882static int abis_nm_rcvmsg_fom(struct msgb *mb)
883{
884 struct abis_om_hdr *oh = msgb_l2(mb);
885 struct abis_om_fom_hdr *foh = msgb_l3(mb);
886 u_int8_t mt = foh->msg_type;
887
888 /* check for unsolicited message */
889 if (is_report(mt))
890 return abis_nm_rcvmsg_report(mb);
891
892 if (is_in_arr(mt, sw_load_msgs, ARRAY_SIZE(sw_load_msgs)))
893 return abis_nm_rcvmsg_sw(mb);
894
895 if (is_in_arr(mt, nacks, ARRAY_SIZE(nacks))) {
896 struct tlv_parsed tp;
897 if (nack_names[mt])
898 DEBUGP(DNM, "%s NACK ", nack_names[mt]);
899 /* FIXME: NACK cause */
900 else
901 DEBUGP(DNM, "NACK 0x%02x ", mt);
902
903 abis_nm_tlv_parse(&tp, foh->data, oh->length-sizeof(*foh));
904 if (TLVP_PRESENT(&tp, NM_ATT_NACK_CAUSES))
905 DEBUGPC(DNM, "CAUSE=%s\n",
906 nack_cause_name(*TLVP_VAL(&tp, NM_ATT_NACK_CAUSES)));
907 else
908 DEBUGPC(DNM, "\n");
Holger Hans Peter Freytherefedf942009-06-10 10:48:14 +0200909
910 dispatch_signal(SS_NM, S_NM_NACK, (void*) ((long)mt));
911 return 0;
Harald Welte59b04682009-06-10 05:40:52 +0800912 }
913#if 0
914 /* check if last message is to be acked */
915 if (is_ack_nack(nmh->last_msgtype)) {
916 if (mt == MT_ACK(nmh->last_msgtype)) {
917 fprintf(stderr, "received ACK (0x%x)\n",
918 foh->msg_type);
919 /* we got our ACK, continue sending the next msg */
920 } else if (mt == MT_NACK(nmh->last_msgtype)) {
921 /* we got a NACK, signal this to the caller */
922 fprintf(stderr, "received NACK (0x%x)\n",
923 foh->msg_type);
924 /* FIXME: somehow signal this to the caller */
925 } else {
926 /* really strange things happen */
927 return -EINVAL;
928 }
929 }
930#endif
931
932 switch (mt) {
933 case NM_MT_CHG_ADM_STATE_ACK:
934 return abis_nm_rx_chg_adm_state_ack(mb);
935 break;
936 case NM_MT_SW_ACT_REQ:
937 return abis_nm_rx_sw_act_req(mb);
938 break;
939 case NM_MT_BS11_LMT_SESSION:
940 return abis_nm_rx_lmt_event(mb);
941 break;
942 }
943
944 return 0;
945}
946
947static int abis_nm_rx_ipacc(struct msgb *mb);
948
949static int abis_nm_rcvmsg_manuf(struct msgb *mb)
950{
951 int rc;
952 int bts_type = mb->trx->bts->type;
953
954 switch (bts_type) {
955 case GSM_BTS_TYPE_NANOBTS_900:
956 case GSM_BTS_TYPE_NANOBTS_1800:
957 rc = abis_nm_rx_ipacc(mb);
958 break;
959 default:
960 fprintf(stderr, "don't know how to parse OML for this "
961 "BTS type (%u)\n", bts_type);
962 rc = 0;
963 break;
964 }
965
966 return rc;
967}
968
969/* High-Level API */
970/* Entry-point where L2 OML from BTS enters the NM code */
971int abis_nm_rcvmsg(struct msgb *msg)
972{
973 struct abis_om_hdr *oh = msgb_l2(msg);
974 int rc = 0;
975
976 /* Various consistency checks */
977 if (oh->placement != ABIS_OM_PLACEMENT_ONLY) {
978 fprintf(stderr, "ABIS OML placement 0x%x not supported\n",
979 oh->placement);
980 return -EINVAL;
981 }
982 if (oh->sequence != 0) {
983 fprintf(stderr, "ABIS OML sequence 0x%x != 0x00\n",
984 oh->sequence);
985 return -EINVAL;
986 }
987#if 0
988 unsigned int l2_len = msg->tail - (u_int8_t *)msgb_l2(msg);
989 unsigned int hlen = sizeof(*oh) + sizeof(struct abis_om_fom_hdr);
990 if (oh->length + hlen > l2_len) {
991 fprintf(stderr, "ABIS OML truncated message (%u > %u)\n",
992 oh->length + sizeof(*oh), l2_len);
993 return -EINVAL;
994 }
995 if (oh->length + hlen < l2_len)
996 fprintf(stderr, "ABIS OML message with extra trailer?!? (oh->len=%d, sizeof_oh=%d l2_len=%d\n", oh->length, sizeof(*oh), l2_len);
997#endif
998 msg->l3h = (unsigned char *)oh + sizeof(*oh);
999
1000 switch (oh->mdisc) {
1001 case ABIS_OM_MDISC_FOM:
1002 rc = abis_nm_rcvmsg_fom(msg);
1003 break;
1004 case ABIS_OM_MDISC_MANUF:
1005 rc = abis_nm_rcvmsg_manuf(msg);
1006 break;
1007 case ABIS_OM_MDISC_MMI:
1008 case ABIS_OM_MDISC_TRAU:
1009 fprintf(stderr, "unimplemented ABIS OML message discriminator 0x%x\n",
1010 oh->mdisc);
1011 break;
1012 default:
1013 fprintf(stderr, "unknown ABIS OML message discriminator 0x%x\n",
1014 oh->mdisc);
1015 return -EINVAL;
1016 }
1017
1018 msgb_free(msg);
1019 return rc;
1020}
1021
1022#if 0
1023/* initialized all resources */
1024struct abis_nm_h *abis_nm_init(struct abis_nm_cfg *cfg)
1025{
1026 struct abis_nm_h *nmh;
1027
1028 nmh = malloc(sizeof(*nmh));
1029 if (!nmh)
1030 return NULL;
1031
1032 nmh->cfg = cfg;
1033
1034 return nmh;
1035}
1036
1037/* free all resources */
1038void abis_nm_fini(struct abis_nm_h *nmh)
1039{
1040 free(nmh);
1041}
1042#endif
1043
1044/* Here we are trying to define a high-level API that can be used by
1045 * the actual BSC implementation. However, the architecture is currently
1046 * still under design. Ideally the calls to this API would be synchronous,
1047 * while the underlying stack behind the APi runs in a traditional select
1048 * based state machine.
1049 */
1050
1051/* 6.2 Software Load: */
1052enum sw_state {
1053 SW_STATE_NONE,
1054 SW_STATE_WAIT_INITACK,
1055 SW_STATE_WAIT_SEGACK,
1056 SW_STATE_WAIT_ENDACK,
1057 SW_STATE_WAIT_ACTACK,
1058 SW_STATE_ERROR,
1059};
1060
1061struct abis_nm_sw {
1062 struct gsm_bts *bts;
1063 gsm_cbfn *cbfn;
1064 void *cb_data;
1065 int forced;
1066
1067 /* this will become part of the SW LOAD INITIATE */
1068 u_int8_t obj_class;
1069 u_int8_t obj_instance[3];
1070
1071 u_int8_t file_id[255];
1072 u_int8_t file_id_len;
1073
1074 u_int8_t file_version[255];
1075 u_int8_t file_version_len;
1076
1077 u_int8_t window_size;
1078 u_int8_t seg_in_window;
1079
1080 int fd;
1081 FILE *stream;
1082 enum sw_state state;
1083 int last_seg;
1084};
1085
1086static struct abis_nm_sw g_sw;
1087
1088/* 6.2.1 / 8.3.1: Load Data Initiate */
1089static int sw_load_init(struct abis_nm_sw *sw)
1090{
1091 struct abis_om_hdr *oh;
1092 struct msgb *msg = nm_msgb_alloc();
1093 u_int8_t len = 3*2 + sw->file_id_len + sw->file_version_len;
1094
1095 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1096 fill_om_fom_hdr(oh, len, NM_MT_LOAD_INIT, sw->obj_class,
1097 sw->obj_instance[0], sw->obj_instance[1],
1098 sw->obj_instance[2]);
1099
1100 /* FIXME: this is BS11 specific format */
1101 msgb_tlv_put(msg, NM_ATT_FILE_ID, sw->file_id_len, sw->file_id);
1102 msgb_tlv_put(msg, NM_ATT_FILE_VERSION, sw->file_version_len,
1103 sw->file_version);
1104 msgb_tv_put(msg, NM_ATT_WINDOW_SIZE, sw->window_size);
1105
1106 return abis_nm_sendmsg(sw->bts, msg);
1107}
1108
1109static int is_last_line(FILE *stream)
1110{
1111 char next_seg_buf[256];
1112 long pos;
1113
1114 /* check if we're sending the last line */
1115 pos = ftell(stream);
1116 if (!fgets(next_seg_buf, sizeof(next_seg_buf)-2, stream)) {
1117 fseek(stream, pos, SEEK_SET);
1118 return 1;
1119 }
1120
1121 fseek(stream, pos, SEEK_SET);
1122 return 0;
1123}
1124
1125/* 6.2.2 / 8.3.2 Load Data Segment */
1126static int sw_load_segment(struct abis_nm_sw *sw)
1127{
1128 struct abis_om_hdr *oh;
1129 struct msgb *msg = nm_msgb_alloc();
1130 char seg_buf[256];
1131 char *line_buf = seg_buf+2;
1132 unsigned char *tlv;
1133 u_int8_t len;
1134
1135 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1136
1137 switch (sw->bts->type) {
1138 case GSM_BTS_TYPE_BS11:
1139 if (fgets(line_buf, sizeof(seg_buf)-2, sw->stream) == NULL) {
1140 perror("fgets reading segment");
1141 return -EINVAL;
1142 }
1143 seg_buf[0] = 0x00;
1144
1145 /* check if we're sending the last line */
1146 sw->last_seg = is_last_line(sw->stream);
1147 if (sw->last_seg)
1148 seg_buf[1] = 0;
1149 else
1150 seg_buf[1] = 1 + sw->seg_in_window++;
1151
1152 len = strlen(line_buf) + 2;
1153 tlv = msgb_put(msg, TLV_GROSS_LEN(len));
1154 tlv_put(tlv, NM_ATT_BS11_FILE_DATA, len, (u_int8_t *)seg_buf);
1155 /* BS11 wants CR + LF in excess of the TLV length !?! */
1156 tlv[1] -= 2;
1157
1158 /* we only now know the exact length for the OM hdr */
1159 len = strlen(line_buf)+2;
1160 break;
1161 default:
1162 /* FIXME: Other BTS types */
1163 return -1;
1164 }
1165
1166 fill_om_fom_hdr(oh, len, NM_MT_LOAD_SEG, sw->obj_class,
1167 sw->obj_instance[0], sw->obj_instance[1],
1168 sw->obj_instance[2]);
1169
1170 return abis_nm_sendmsg(sw->bts, msg);
1171}
1172
1173/* 6.2.4 / 8.3.4 Load Data End */
1174static int sw_load_end(struct abis_nm_sw *sw)
1175{
1176 struct abis_om_hdr *oh;
1177 struct msgb *msg = nm_msgb_alloc();
1178 u_int8_t len = 2*2 + sw->file_id_len + sw->file_version_len;
1179
1180 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1181 fill_om_fom_hdr(oh, len, NM_MT_LOAD_END, sw->obj_class,
1182 sw->obj_instance[0], sw->obj_instance[1],
1183 sw->obj_instance[2]);
1184
1185 /* FIXME: this is BS11 specific format */
1186 msgb_tlv_put(msg, NM_ATT_FILE_ID, sw->file_id_len, sw->file_id);
1187 msgb_tlv_put(msg, NM_ATT_FILE_VERSION, sw->file_version_len,
1188 sw->file_version);
1189
1190 return abis_nm_sendmsg(sw->bts, msg);
1191}
1192
1193/* Activate the specified software into the BTS */
1194static int sw_activate(struct abis_nm_sw *sw)
1195{
1196 struct abis_om_hdr *oh;
1197 struct msgb *msg = nm_msgb_alloc();
1198 u_int8_t len = 2*2 + sw->file_id_len + sw->file_version_len;
1199
1200 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1201 fill_om_fom_hdr(oh, len, NM_MT_ACTIVATE_SW, sw->obj_class,
1202 sw->obj_instance[0], sw->obj_instance[1],
1203 sw->obj_instance[2]);
1204
1205 /* FIXME: this is BS11 specific format */
1206 msgb_tlv_put(msg, NM_ATT_FILE_ID, sw->file_id_len, sw->file_id);
1207 msgb_tlv_put(msg, NM_ATT_FILE_VERSION, sw->file_version_len,
1208 sw->file_version);
1209
1210 return abis_nm_sendmsg(sw->bts, msg);
1211}
1212
1213static int sw_open_file(struct abis_nm_sw *sw, const char *fname)
1214{
1215 char file_id[12+1];
1216 char file_version[80+1];
1217 int rc;
1218
1219 sw->fd = open(fname, O_RDONLY);
1220 if (sw->fd < 0)
1221 return sw->fd;
1222
1223 switch (sw->bts->type) {
1224 case GSM_BTS_TYPE_BS11:
1225 sw->stream = fdopen(sw->fd, "r");
1226 if (!sw->stream) {
1227 perror("fdopen");
1228 return -1;
1229 }
1230 /* read first line and parse file ID and VERSION */
1231 rc = fscanf(sw->stream, "@(#)%12s:%80s\r\n",
1232 file_id, file_version);
1233 if (rc != 2) {
1234 perror("parsing header line of software file");
1235 return -1;
1236 }
1237 strcpy((char *)sw->file_id, file_id);
1238 sw->file_id_len = strlen(file_id);
1239 strcpy((char *)sw->file_version, file_version);
1240 sw->file_version_len = strlen(file_version);
1241 /* rewind to start of file */
1242 rewind(sw->stream);
1243 break;
1244 default:
1245 /* We don't know how to treat them yet */
1246 close(sw->fd);
1247 return -EINVAL;
1248 }
1249
1250 return 0;
1251}
1252
1253static void sw_close_file(struct abis_nm_sw *sw)
1254{
1255 switch (sw->bts->type) {
1256 case GSM_BTS_TYPE_BS11:
1257 fclose(sw->stream);
1258 break;
1259 default:
1260 close(sw->fd);
1261 break;
1262 }
1263}
1264
1265/* Fill the window */
1266static int sw_fill_window(struct abis_nm_sw *sw)
1267{
1268 int rc;
1269
1270 while (sw->seg_in_window < sw->window_size) {
1271 rc = sw_load_segment(sw);
1272 if (rc < 0)
1273 return rc;
1274 if (sw->last_seg)
1275 break;
1276 }
1277 return 0;
1278}
1279
1280/* callback function from abis_nm_rcvmsg() handler */
1281static int abis_nm_rcvmsg_sw(struct msgb *mb)
1282{
1283 struct abis_om_fom_hdr *foh = msgb_l3(mb);
1284 int rc = -1;
1285 struct abis_nm_sw *sw = &g_sw;
1286 enum sw_state old_state = sw->state;
1287
1288 //DEBUGP(DNM, "state %u, NM MT 0x%02x\n", sw->state, foh->msg_type);
1289
1290 switch (sw->state) {
1291 case SW_STATE_WAIT_INITACK:
1292 switch (foh->msg_type) {
1293 case NM_MT_LOAD_INIT_ACK:
1294 /* fill window with segments */
1295 if (sw->cbfn)
1296 sw->cbfn(GSM_HOOK_NM_SWLOAD,
1297 NM_MT_LOAD_INIT_ACK, mb,
1298 sw->cb_data, NULL);
1299 rc = sw_fill_window(sw);
1300 sw->state = SW_STATE_WAIT_SEGACK;
1301 break;
1302 case NM_MT_LOAD_INIT_NACK:
1303 if (sw->forced) {
1304 DEBUGP(DNM, "FORCED: Ignoring Software Load "
1305 "Init NACK\n");
1306 if (sw->cbfn)
1307 sw->cbfn(GSM_HOOK_NM_SWLOAD,
1308 NM_MT_LOAD_INIT_ACK, mb,
1309 sw->cb_data, NULL);
1310 rc = sw_fill_window(sw);
1311 sw->state = SW_STATE_WAIT_SEGACK;
1312 } else {
1313 DEBUGP(DNM, "Software Load Init NACK\n");
1314 /* FIXME: cause */
1315 if (sw->cbfn)
1316 sw->cbfn(GSM_HOOK_NM_SWLOAD,
1317 NM_MT_LOAD_INIT_NACK, mb,
1318 sw->cb_data, NULL);
1319 sw->state = SW_STATE_ERROR;
1320 }
1321 break;
1322 }
1323 break;
1324 case SW_STATE_WAIT_SEGACK:
1325 switch (foh->msg_type) {
1326 case NM_MT_LOAD_SEG_ACK:
1327 if (sw->cbfn)
1328 sw->cbfn(GSM_HOOK_NM_SWLOAD,
1329 NM_MT_LOAD_SEG_ACK, mb,
1330 sw->cb_data, NULL);
1331 sw->seg_in_window = 0;
1332 if (!sw->last_seg) {
1333 /* fill window with more segments */
1334 rc = sw_fill_window(sw);
1335 sw->state = SW_STATE_WAIT_SEGACK;
1336 } else {
1337 /* end the transfer */
1338 sw->state = SW_STATE_WAIT_ENDACK;
1339 rc = sw_load_end(sw);
1340 }
1341 break;
1342 }
1343 break;
1344 case SW_STATE_WAIT_ENDACK:
1345 switch (foh->msg_type) {
1346 case NM_MT_LOAD_END_ACK:
1347 sw_close_file(sw);
1348 DEBUGP(DNM, "Software Load End (BTS %u)\n",
1349 sw->bts->nr);
1350 sw->state = SW_STATE_NONE;
1351 if (sw->cbfn)
1352 sw->cbfn(GSM_HOOK_NM_SWLOAD,
1353 NM_MT_LOAD_END_ACK, mb,
1354 sw->cb_data, NULL);
1355 break;
1356 case NM_MT_LOAD_END_NACK:
1357 if (sw->forced) {
1358 DEBUGP(DNM, "FORCED: Ignoring Software Load"
1359 "End NACK\n");
1360 sw->state = SW_STATE_NONE;
1361 if (sw->cbfn)
1362 sw->cbfn(GSM_HOOK_NM_SWLOAD,
1363 NM_MT_LOAD_END_ACK, mb,
1364 sw->cb_data, NULL);
1365 } else {
1366 DEBUGP(DNM, "Software Load End NACK\n");
1367 /* FIXME: cause */
1368 sw->state = SW_STATE_ERROR;
1369 if (sw->cbfn)
1370 sw->cbfn(GSM_HOOK_NM_SWLOAD,
1371 NM_MT_LOAD_END_NACK, mb,
1372 sw->cb_data, NULL);
1373 }
1374 break;
1375 }
1376 case SW_STATE_WAIT_ACTACK:
1377 switch (foh->msg_type) {
1378 case NM_MT_ACTIVATE_SW_ACK:
1379 /* we're done */
1380 DEBUGP(DNM, "Activate Software DONE!\n");
1381 sw->state = SW_STATE_NONE;
1382 rc = 0;
1383 if (sw->cbfn)
1384 sw->cbfn(GSM_HOOK_NM_SWLOAD,
1385 NM_MT_ACTIVATE_SW_ACK, mb,
1386 sw->cb_data, NULL);
1387 break;
1388 case NM_MT_ACTIVATE_SW_NACK:
1389 DEBUGP(DNM, "Activate Software NACK\n");
1390 /* FIXME: cause */
1391 sw->state = SW_STATE_ERROR;
1392 if (sw->cbfn)
1393 sw->cbfn(GSM_HOOK_NM_SWLOAD,
1394 NM_MT_ACTIVATE_SW_NACK, mb,
1395 sw->cb_data, NULL);
1396 break;
1397 }
1398 case SW_STATE_NONE:
1399 switch (foh->msg_type) {
1400 case NM_MT_ACTIVATE_SW_ACK:
1401 rc = 0;
1402 break;
1403 }
1404 break;
1405 case SW_STATE_ERROR:
1406 break;
1407 }
1408
1409 if (rc)
1410 DEBUGP(DNM, "unexpected NM MT 0x%02x in state %u -> %u\n",
1411 foh->msg_type, old_state, sw->state);
1412
1413 return rc;
1414}
1415
1416/* Load the specified software into the BTS */
1417int abis_nm_software_load(struct gsm_bts *bts, const char *fname,
1418 u_int8_t win_size, int forced,
1419 gsm_cbfn *cbfn, void *cb_data)
1420{
1421 struct abis_nm_sw *sw = &g_sw;
1422 int rc;
1423
1424 DEBUGP(DNM, "Software Load (BTS %u, File \"%s\")\n",
1425 bts->nr, fname);
1426
1427 if (sw->state != SW_STATE_NONE)
1428 return -EBUSY;
1429
1430 sw->bts = bts;
1431 sw->obj_class = NM_OC_SITE_MANAGER;
1432 sw->obj_instance[0] = 0xff;
1433 sw->obj_instance[1] = 0xff;
1434 sw->obj_instance[2] = 0xff;
1435 sw->window_size = win_size;
1436 sw->state = SW_STATE_WAIT_INITACK;
1437 sw->cbfn = cbfn;
1438 sw->cb_data = cb_data;
1439 sw->forced = forced;
1440
1441 rc = sw_open_file(sw, fname);
1442 if (rc < 0) {
1443 sw->state = SW_STATE_NONE;
1444 return rc;
1445 }
1446
1447 return sw_load_init(sw);
1448}
1449
1450int abis_nm_software_load_status(struct gsm_bts *bts)
1451{
1452 struct abis_nm_sw *sw = &g_sw;
1453 struct stat st;
1454 int rc, percent;
1455
1456 rc = fstat(sw->fd, &st);
1457 if (rc < 0) {
1458 perror("ERROR during stat");
1459 return rc;
1460 }
1461
1462 percent = (ftell(sw->stream) * 100) / st.st_size;
1463 return percent;
1464}
1465
1466/* Activate the specified software into the BTS */
1467int abis_nm_software_activate(struct gsm_bts *bts, const char *fname,
1468 gsm_cbfn *cbfn, void *cb_data)
1469{
1470 struct abis_nm_sw *sw = &g_sw;
1471 int rc;
1472
1473 DEBUGP(DNM, "Activating Software (BTS %u, File \"%s\")\n",
1474 bts->nr, fname);
1475
1476 if (sw->state != SW_STATE_NONE)
1477 return -EBUSY;
1478
1479 sw->bts = bts;
1480 sw->obj_class = NM_OC_SITE_MANAGER;
1481 sw->obj_instance[0] = 0xff;
1482 sw->obj_instance[1] = 0xff;
1483 sw->obj_instance[2] = 0xff;
1484 sw->state = SW_STATE_WAIT_ACTACK;
1485 sw->cbfn = cbfn;
1486 sw->cb_data = cb_data;
1487
1488 /* Open the file in order to fill some sw struct members */
1489 rc = sw_open_file(sw, fname);
1490 if (rc < 0) {
1491 sw->state = SW_STATE_NONE;
1492 return rc;
1493 }
1494 sw_close_file(sw);
1495
1496 return sw_activate(sw);
1497}
1498
1499static void fill_nm_channel(struct abis_nm_channel *ch, u_int8_t bts_port,
1500 u_int8_t ts_nr, u_int8_t subslot_nr)
1501{
1502 ch->attrib = NM_ATT_ABIS_CHANNEL;
1503 ch->bts_port = bts_port;
1504 ch->timeslot = ts_nr;
1505 ch->subslot = subslot_nr;
1506}
1507
1508int abis_nm_establish_tei(struct gsm_bts *bts, u_int8_t trx_nr,
1509 u_int8_t e1_port, u_int8_t e1_timeslot, u_int8_t e1_subslot,
1510 u_int8_t tei)
1511{
1512 struct abis_om_hdr *oh;
1513 struct abis_nm_channel *ch;
1514 u_int8_t len = sizeof(*ch) + 2;
1515 struct msgb *msg = nm_msgb_alloc();
1516
1517 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1518 fill_om_fom_hdr(oh, len, NM_MT_ESTABLISH_TEI, NM_OC_RADIO_CARRIER,
1519 bts->bts_nr, trx_nr, 0xff);
1520
1521 msgb_tv_put(msg, NM_ATT_TEI, tei);
1522
1523 ch = (struct abis_nm_channel *) msgb_put(msg, sizeof(*ch));
1524 fill_nm_channel(ch, e1_port, e1_timeslot, e1_subslot);
1525
1526 return abis_nm_sendmsg(bts, msg);
1527}
1528
1529/* connect signalling of one (BTS,TRX) to a particular timeslot on the E1 */
1530int abis_nm_conn_terr_sign(struct gsm_bts_trx *trx,
1531 u_int8_t e1_port, u_int8_t e1_timeslot, u_int8_t e1_subslot)
1532{
1533 struct gsm_bts *bts = trx->bts;
1534 struct abis_om_hdr *oh;
1535 struct abis_nm_channel *ch;
1536 struct msgb *msg = nm_msgb_alloc();
1537
1538 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1539 fill_om_fom_hdr(oh, sizeof(*ch), NM_MT_CONN_TERR_SIGN,
1540 NM_OC_RADIO_CARRIER, bts->bts_nr, trx->nr, 0xff);
1541
1542 ch = (struct abis_nm_channel *) msgb_put(msg, sizeof(*ch));
1543 fill_nm_channel(ch, e1_port, e1_timeslot, e1_subslot);
1544
1545 return abis_nm_sendmsg(bts, msg);
1546}
1547
1548#if 0
1549int abis_nm_disc_terr_sign(struct abis_nm_h *h, struct abis_om_obj_inst *inst,
1550 struct abis_nm_abis_channel *chan)
1551{
1552}
1553#endif
1554
1555int abis_nm_conn_terr_traf(struct gsm_bts_trx_ts *ts,
1556 u_int8_t e1_port, u_int8_t e1_timeslot,
1557 u_int8_t e1_subslot)
1558{
1559 struct gsm_bts *bts = ts->trx->bts;
1560 struct abis_om_hdr *oh;
1561 struct abis_nm_channel *ch;
1562 struct msgb *msg = nm_msgb_alloc();
1563
1564 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1565 fill_om_fom_hdr(oh, sizeof(*ch), NM_MT_CONN_TERR_TRAF,
1566 NM_OC_CHANNEL, bts->bts_nr, ts->trx->nr, ts->nr);
1567
1568 ch = (struct abis_nm_channel *) msgb_put(msg, sizeof(*ch));
1569 fill_nm_channel(ch, e1_port, e1_timeslot, e1_subslot);
1570
1571 DEBUGP(DNM, "CONNECT TERR TRAF Um=%s E1=(%u,%u,%u)\n",
1572 gsm_ts_name(ts),
1573 e1_port, e1_timeslot, e1_subslot);
1574
1575 return abis_nm_sendmsg(bts, msg);
1576}
1577
1578#if 0
1579int abis_nm_disc_terr_traf(struct abis_nm_h *h, struct abis_om_obj_inst *inst,
1580 struct abis_nm_abis_channel *chan,
1581 u_int8_t subchan)
1582{
1583}
1584#endif
1585
1586/* Chapter 8.6.1 */
1587int abis_nm_set_bts_attr(struct gsm_bts *bts, u_int8_t *attr, int attr_len)
1588{
1589 struct abis_om_hdr *oh;
1590 struct msgb *msg = nm_msgb_alloc();
1591 u_int8_t *cur;
1592
1593 DEBUGP(DNM, "Set BTS Attr (bts=%d)\n", bts->nr);
1594
1595 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1596 fill_om_fom_hdr(oh, attr_len, NM_MT_SET_BTS_ATTR, NM_OC_BTS, bts->bts_nr, 0xff, 0xff);
1597 cur = msgb_put(msg, attr_len);
1598 memcpy(cur, attr, attr_len);
1599
1600 return abis_nm_sendmsg(bts, msg);
1601}
1602
1603/* Chapter 8.6.2 */
1604int abis_nm_set_radio_attr(struct gsm_bts_trx *trx, u_int8_t *attr, int attr_len)
1605{
1606 struct abis_om_hdr *oh;
1607 struct msgb *msg = nm_msgb_alloc();
1608 u_int8_t *cur;
1609
1610 DEBUGP(DNM, "Set TRX Attr (bts=%d,trx=%d)\n", trx->bts->nr, trx->nr);
1611
1612 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1613 fill_om_fom_hdr(oh, attr_len, NM_MT_SET_RADIO_ATTR, NM_OC_RADIO_CARRIER,
1614 trx->bts->bts_nr, trx->nr, 0xff);
1615 cur = msgb_put(msg, attr_len);
1616 memcpy(cur, attr, attr_len);
1617
1618 return abis_nm_sendmsg(trx->bts, msg);
1619}
1620
1621/* Chapter 8.6.3 */
1622int abis_nm_set_channel_attr(struct gsm_bts_trx_ts *ts, u_int8_t chan_comb)
1623{
1624 struct gsm_bts *bts = ts->trx->bts;
1625 struct abis_om_hdr *oh;
1626 u_int16_t arfcn = htons(ts->trx->arfcn);
1627 u_int8_t zero = 0x00;
1628 struct msgb *msg = nm_msgb_alloc();
1629 u_int8_t len = 2 + 2;
1630
1631 if (bts->type == GSM_BTS_TYPE_BS11)
1632 len += 4 + 2 + 2 + 3;
1633
1634 DEBUGP(DNM, "Set Chan Attr %s\n", gsm_ts_name(ts));
1635
1636 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1637 fill_om_fom_hdr(oh, len, NM_MT_SET_CHAN_ATTR,
1638 NM_OC_CHANNEL, bts->bts_nr,
1639 ts->trx->nr, ts->nr);
1640 /* FIXME: don't send ARFCN list, hopping sequence, mAIO, ...*/
1641 if (bts->type == GSM_BTS_TYPE_BS11)
1642 msgb_tlv16_put(msg, NM_ATT_ARFCN_LIST, 1, &arfcn);
1643 msgb_tv_put(msg, NM_ATT_CHAN_COMB, chan_comb);
1644 if (bts->type == GSM_BTS_TYPE_BS11) {
1645 msgb_tv_put(msg, NM_ATT_HSN, 0x00);
1646 msgb_tv_put(msg, NM_ATT_MAIO, 0x00);
1647 }
1648 msgb_tv_put(msg, NM_ATT_TSC, 0x07); /* training sequence */
1649 if (bts->type == GSM_BTS_TYPE_BS11)
1650 msgb_tlv_put(msg, 0x59, 1, &zero);
1651
1652 return abis_nm_sendmsg(bts, msg);
1653}
1654
1655int abis_nm_sw_act_req_ack(struct gsm_bts *bts, u_int8_t obj_class, u_int8_t i1,
1656 u_int8_t i2, u_int8_t i3, int nack, u_int8_t *attr, int att_len)
1657{
1658 struct abis_om_hdr *oh;
1659 struct msgb *msg = nm_msgb_alloc();
1660 u_int8_t msgtype = NM_MT_SW_ACT_REQ_ACK;
1661 u_int8_t len = att_len;
1662
1663 if (nack) {
1664 len += 2;
1665 msgtype = NM_MT_SW_ACT_REQ_NACK;
1666 }
1667
1668 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1669 fill_om_fom_hdr(oh, att_len, msgtype, obj_class, i1, i2, i3);
1670
1671 if (attr) {
1672 u_int8_t *ptr = msgb_put(msg, att_len);
1673 memcpy(ptr, attr, att_len);
1674 }
1675 if (nack)
1676 msgb_tv_put(msg, NM_ATT_NACK_CAUSES, NM_NACK_OBJCLASS_NOTSUPP);
1677
1678 return abis_nm_sendmsg(bts, msg);
1679}
1680
1681int abis_nm_raw_msg(struct gsm_bts *bts, int len, u_int8_t *rawmsg)
1682{
1683 struct msgb *msg = nm_msgb_alloc();
1684 struct abis_om_hdr *oh;
1685 u_int8_t *data;
1686
1687 oh = (struct abis_om_hdr *) msgb_put(msg, sizeof(*oh));
1688 fill_om_hdr(oh, len);
1689 data = msgb_put(msg, len);
1690 memcpy(data, rawmsg, len);
1691
1692 return abis_nm_sendmsg(bts, msg);
1693}
1694
1695/* Siemens specific commands */
1696static int __simple_cmd(struct gsm_bts *bts, u_int8_t msg_type)
1697{
1698 struct abis_om_hdr *oh;
1699 struct msgb *msg = nm_msgb_alloc();
1700
1701 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1702 fill_om_fom_hdr(oh, 0, msg_type, NM_OC_SITE_MANAGER,
1703 0xff, 0xff, 0xff);
1704
1705 return abis_nm_sendmsg(bts, msg);
1706}
1707
1708/* Chapter 8.9.2 */
1709int abis_nm_opstart(struct gsm_bts *bts, u_int8_t obj_class, u_int8_t i0, u_int8_t i1, u_int8_t i2)
1710{
1711 struct abis_om_hdr *oh;
1712 struct msgb *msg = nm_msgb_alloc();
1713
1714 DEBUGP(DNM, "Sending OPSTART obj_class=0x%02x obj_inst=(0x%02x, 0x%02x, 0x%02x)\n",
1715 obj_class, i0, i1, i2);
1716 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1717 fill_om_fom_hdr(oh, 0, NM_MT_OPSTART, obj_class, i0, i1, i2);
1718
1719 return abis_nm_sendmsg(bts, msg);
1720}
1721
1722/* Chapter 8.8.5 */
1723int abis_nm_chg_adm_state(struct gsm_bts *bts, u_int8_t obj_class, u_int8_t i0,
1724 u_int8_t i1, u_int8_t i2, u_int8_t adm_state)
1725{
1726 struct abis_om_hdr *oh;
1727 struct msgb *msg = nm_msgb_alloc();
1728
1729 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1730 fill_om_fom_hdr(oh, 2, NM_MT_CHG_ADM_STATE, obj_class, i0, i1, i2);
1731 msgb_tv_put(msg, NM_ATT_ADM_STATE, adm_state);
1732
1733 return abis_nm_sendmsg(bts, msg);
1734}
1735
1736
1737int abis_nm_event_reports(struct gsm_bts *bts, int on)
1738{
1739 if (on == 0)
1740 return __simple_cmd(bts, NM_MT_STOP_EVENT_REP);
1741 else
1742 return __simple_cmd(bts, NM_MT_REST_EVENT_REP);
1743}
1744
1745/* Siemens (or BS-11) specific commands */
1746
1747int abis_nm_bs11_bsc_disconnect(struct gsm_bts *bts, int reconnect)
1748{
1749 if (reconnect == 0)
1750 return __simple_cmd(bts, NM_MT_BS11_DISCONNECT);
1751 else
1752 return __simple_cmd(bts, NM_MT_BS11_RECONNECT);
1753}
1754
1755int abis_nm_bs11_restart(struct gsm_bts *bts)
1756{
1757 return __simple_cmd(bts, NM_MT_BS11_RESTART);
1758}
1759
1760
1761struct bs11_date_time {
1762 u_int16_t year;
1763 u_int8_t month;
1764 u_int8_t day;
1765 u_int8_t hour;
1766 u_int8_t min;
1767 u_int8_t sec;
1768} __attribute__((packed));
1769
1770
1771void get_bs11_date_time(struct bs11_date_time *aet)
1772{
1773 time_t t;
1774 struct tm *tm;
1775
1776 t = time(NULL);
1777 tm = localtime(&t);
1778 aet->sec = tm->tm_sec;
1779 aet->min = tm->tm_min;
1780 aet->hour = tm->tm_hour;
1781 aet->day = tm->tm_mday;
1782 aet->month = tm->tm_mon;
1783 aet->year = htons(1900 + tm->tm_year);
1784}
1785
1786int abis_nm_bs11_reset_resource(struct gsm_bts *bts)
1787{
1788 return __simple_cmd(bts, NM_MT_BS11_RESET_RESOURCE);
1789}
1790
1791int abis_nm_bs11_db_transmission(struct gsm_bts *bts, int begin)
1792{
1793 if (begin)
1794 return __simple_cmd(bts, NM_MT_BS11_BEGIN_DB_TX);
1795 else
1796 return __simple_cmd(bts, NM_MT_BS11_END_DB_TX);
1797}
1798
1799int abis_nm_bs11_create_object(struct gsm_bts *bts,
1800 enum abis_bs11_objtype type, u_int8_t idx,
1801 u_int8_t attr_len, const u_int8_t *attr)
1802{
1803 struct abis_om_hdr *oh;
1804 struct msgb *msg = nm_msgb_alloc();
1805 u_int8_t *cur;
1806
1807 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1808 fill_om_fom_hdr(oh, attr_len, NM_MT_BS11_CREATE_OBJ,
1809 NM_OC_BS11, type, 0, idx);
1810 cur = msgb_put(msg, attr_len);
1811 memcpy(cur, attr, attr_len);
1812
1813 return abis_nm_sendmsg(bts, msg);
1814}
1815
1816int abis_nm_bs11_delete_object(struct gsm_bts *bts,
1817 enum abis_bs11_objtype type, u_int8_t idx)
1818{
1819 struct abis_om_hdr *oh;
1820 struct msgb *msg = nm_msgb_alloc();
1821
1822 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1823 fill_om_fom_hdr(oh, 0, NM_MT_BS11_DELETE_OBJ,
1824 NM_OC_BS11, type, 0, idx);
1825
1826 return abis_nm_sendmsg(bts, msg);
1827}
1828
1829int abis_nm_bs11_create_envaBTSE(struct gsm_bts *bts, u_int8_t idx)
1830{
1831 struct abis_om_hdr *oh;
1832 struct msgb *msg = nm_msgb_alloc();
1833 u_int8_t zero = 0x00;
1834
1835 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1836 fill_om_fom_hdr(oh, 3, NM_MT_BS11_CREATE_OBJ,
1837 NM_OC_BS11_ENVABTSE, 0, idx, 0xff);
1838 msgb_tlv_put(msg, 0x99, 1, &zero);
1839
1840 return abis_nm_sendmsg(bts, msg);
1841}
1842
1843int abis_nm_bs11_create_bport(struct gsm_bts *bts, u_int8_t idx)
1844{
1845 struct abis_om_hdr *oh;
1846 struct msgb *msg = nm_msgb_alloc();
1847
1848 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1849 fill_om_fom_hdr(oh, 0, NM_MT_BS11_CREATE_OBJ, NM_OC_BS11_BPORT,
1850 idx, 0, 0);
1851
1852 return abis_nm_sendmsg(bts, msg);
1853}
1854
1855static const u_int8_t sm_attr[] = { NM_ATT_TEI, NM_ATT_ABIS_CHANNEL };
1856int abis_nm_bs11_get_oml_tei_ts(struct gsm_bts *bts)
1857{
1858 struct abis_om_hdr *oh;
1859 struct msgb *msg = nm_msgb_alloc();
1860
1861 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1862 fill_om_fom_hdr(oh, 2+sizeof(sm_attr), NM_MT_GET_ATTR, NM_OC_SITE_MANAGER,
1863 0xff, 0xff, 0xff);
1864 msgb_tlv_put(msg, NM_ATT_LIST_REQ_ATTR, sizeof(sm_attr), sm_attr);
1865
1866 return abis_nm_sendmsg(bts, msg);
1867}
1868
1869/* like abis_nm_conn_terr_traf + set_tei */
1870int abis_nm_bs11_conn_oml_tei(struct gsm_bts *bts, u_int8_t e1_port,
1871 u_int8_t e1_timeslot, u_int8_t e1_subslot,
1872 u_int8_t tei)
1873{
1874 struct abis_om_hdr *oh;
1875 struct abis_nm_channel *ch;
1876 struct msgb *msg = nm_msgb_alloc();
1877
1878 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1879 fill_om_fom_hdr(oh, sizeof(*ch)+2, NM_MT_BS11_SET_ATTR,
1880 NM_OC_SITE_MANAGER, 0xff, 0xff, 0xff);
1881
1882 ch = (struct abis_nm_channel *) msgb_put(msg, sizeof(*ch));
1883 fill_nm_channel(ch, e1_port, e1_timeslot, e1_subslot);
1884 msgb_tv_put(msg, NM_ATT_TEI, tei);
1885
1886 return abis_nm_sendmsg(bts, msg);
1887}
1888
1889int abis_nm_bs11_set_trx_power(struct gsm_bts_trx *trx, u_int8_t level)
1890{
1891 struct abis_om_hdr *oh;
1892 struct msgb *msg = nm_msgb_alloc();
1893
1894 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1895 fill_om_fom_hdr(oh, 3, NM_MT_BS11_SET_ATTR,
1896 NM_OC_BS11, BS11_OBJ_PA, 0x00, trx->nr);
1897 msgb_tlv_put(msg, NM_ATT_BS11_TXPWR, 1, &level);
1898
1899 return abis_nm_sendmsg(trx->bts, msg);
1900}
1901
1902int abis_nm_bs11_get_trx_power(struct gsm_bts_trx *trx)
1903{
1904 struct abis_om_hdr *oh;
1905 struct msgb *msg = nm_msgb_alloc();
1906 u_int8_t attr = NM_ATT_BS11_TXPWR;
1907
1908 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1909 fill_om_fom_hdr(oh, 2+sizeof(attr), NM_MT_GET_ATTR,
1910 NM_OC_BS11, BS11_OBJ_PA, 0x00, trx->nr);
1911 msgb_tlv_put(msg, NM_ATT_LIST_REQ_ATTR, sizeof(attr), &attr);
1912
1913 return abis_nm_sendmsg(trx->bts, msg);
1914}
1915
1916int abis_nm_bs11_get_pll_mode(struct gsm_bts *bts)
1917{
1918 struct abis_om_hdr *oh;
1919 struct msgb *msg = nm_msgb_alloc();
1920 u_int8_t attr[] = { NM_ATT_BS11_PLL_MODE };
1921
1922 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1923 fill_om_fom_hdr(oh, 2+sizeof(attr), NM_MT_GET_ATTR,
1924 NM_OC_BS11, BS11_OBJ_LI, 0x00, 0x00);
1925 msgb_tlv_put(msg, NM_ATT_LIST_REQ_ATTR, sizeof(attr), attr);
1926
1927 return abis_nm_sendmsg(bts, msg);
1928}
1929
1930int abis_nm_bs11_get_cclk(struct gsm_bts *bts)
1931{
1932 struct abis_om_hdr *oh;
1933 struct msgb *msg = nm_msgb_alloc();
1934 u_int8_t attr[] = { NM_ATT_BS11_CCLK_ACCURACY,
1935 NM_ATT_BS11_CCLK_TYPE };
1936
1937 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1938 fill_om_fom_hdr(oh, 2+sizeof(attr), NM_MT_GET_ATTR,
1939 NM_OC_BS11, BS11_OBJ_CCLK, 0x00, 0x00);
1940 msgb_tlv_put(msg, NM_ATT_LIST_REQ_ATTR, sizeof(attr), attr);
1941
1942 return abis_nm_sendmsg(bts, msg);
1943
1944}
1945
1946//static const u_int8_t bs11_logon_c7[] = { 0x07, 0xd9, 0x01, 0x11, 0x0d, 0x10, 0x20 };
1947static const u_int8_t bs11_logon_c8[] = { 0x02 };
1948static const u_int8_t bs11_logon_c9[] = "FACTORY";
1949
1950int abis_nm_bs11_factory_logon(struct gsm_bts *bts, int on)
1951{
1952 struct abis_om_hdr *oh;
1953 struct msgb *msg = nm_msgb_alloc();
1954 struct bs11_date_time bdt;
1955
1956 get_bs11_date_time(&bdt);
1957
1958 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1959 if (on) {
1960 u_int8_t len = 3*2 + sizeof(bdt)
1961 + sizeof(bs11_logon_c8) + sizeof(bs11_logon_c9);
1962 fill_om_fom_hdr(oh, len, NM_MT_BS11_LMT_LOGON,
1963 NM_OC_BS11_BTSE, 0xff, 0xff, 0xff);
1964 msgb_tlv_put(msg, NM_ATT_BS11_LMT_LOGIN_TIME,
1965 sizeof(bdt), (u_int8_t *) &bdt);
1966 msgb_tlv_put(msg, NM_ATT_BS11_LMT_USER_ACC_LEV,
1967 sizeof(bs11_logon_c8), bs11_logon_c8);
1968 msgb_tlv_put(msg, NM_ATT_BS11_LMT_USER_NAME,
1969 sizeof(bs11_logon_c9), bs11_logon_c9);
1970 } else {
1971 fill_om_fom_hdr(oh, 0, NM_MT_BS11_LMT_LOGOFF,
1972 NM_OC_BS11_BTSE, 0xff, 0xff, 0xff);
1973 }
1974
1975 return abis_nm_sendmsg(bts, msg);
1976}
1977
1978int abis_nm_bs11_set_trx1_pw(struct gsm_bts *bts, const char *password)
1979{
1980 struct abis_om_hdr *oh;
1981 struct msgb *msg;
1982
1983 if (strlen(password) != 10)
1984 return -EINVAL;
1985
1986 msg = nm_msgb_alloc();
1987 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
1988 fill_om_fom_hdr(oh, 2+strlen(password), NM_MT_BS11_SET_ATTR,
1989 NM_OC_BS11, BS11_OBJ_TRX1, 0x00, 0x00);
1990 msgb_tlv_put(msg, NM_ATT_BS11_PASSWORD, 10, (const u_int8_t *)password);
1991
1992 return abis_nm_sendmsg(bts, msg);
1993}
1994
1995/* change the BS-11 PLL Mode to either locked (E1 derived) or standalone */
1996int abis_nm_bs11_set_pll_locked(struct gsm_bts *bts, int locked)
1997{
1998 struct abis_om_hdr *oh;
1999 struct msgb *msg;
2000 u_int8_t tlv_value;
2001
2002 msg = nm_msgb_alloc();
2003 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
2004 fill_om_fom_hdr(oh, 3, NM_MT_BS11_SET_ATTR, NM_OC_BS11,
2005 BS11_OBJ_LI, 0x00, 0x00);
2006
2007 if (locked)
2008 tlv_value = BS11_LI_PLL_LOCKED;
2009 else
2010 tlv_value = BS11_LI_PLL_STANDALONE;
2011
2012 msgb_tlv_put(msg, NM_ATT_BS11_PLL_MODE, 1, &tlv_value);
2013
2014 return abis_nm_sendmsg(bts, msg);
2015}
2016
2017int abis_nm_bs11_get_state(struct gsm_bts *bts)
2018{
2019 return __simple_cmd(bts, NM_MT_BS11_GET_STATE);
2020}
2021
2022/* BS11 SWL */
2023
Harald Weltea8379772009-06-20 22:36:41 +02002024static void *tall_fle_ctx;
2025
Harald Welte59b04682009-06-10 05:40:52 +08002026struct abis_nm_bs11_sw {
2027 struct gsm_bts *bts;
2028 char swl_fname[PATH_MAX];
2029 u_int8_t win_size;
2030 int forced;
2031 struct llist_head file_list;
2032 gsm_cbfn *user_cb; /* specified by the user */
2033};
2034static struct abis_nm_bs11_sw _g_bs11_sw, *g_bs11_sw = &_g_bs11_sw;
2035
2036struct file_list_entry {
2037 struct llist_head list;
2038 char fname[PATH_MAX];
2039};
2040
2041struct file_list_entry *fl_dequeue(struct llist_head *queue)
2042{
2043 struct llist_head *lh;
2044
2045 if (llist_empty(queue))
2046 return NULL;
2047
2048 lh = queue->next;
2049 llist_del(lh);
2050
2051 return llist_entry(lh, struct file_list_entry, list);
2052}
2053
2054static int bs11_read_swl_file(struct abis_nm_bs11_sw *bs11_sw)
2055{
2056 char linebuf[255];
2057 struct llist_head *lh, *lh2;
2058 FILE *swl;
2059 int rc = 0;
2060
Harald Weltea8379772009-06-20 22:36:41 +02002061 if (!tall_fle_ctx)
2062 tall_fle_ctx = talloc_named_const(tall_bsc_ctx, 1,
2063 "bs11_file_list_entry");
2064
Harald Welte59b04682009-06-10 05:40:52 +08002065 swl = fopen(bs11_sw->swl_fname, "r");
2066 if (!swl)
2067 return -ENODEV;
2068
2069 /* zero the stale file list, if any */
2070 llist_for_each_safe(lh, lh2, &bs11_sw->file_list) {
2071 llist_del(lh);
Harald Weltea8379772009-06-20 22:36:41 +02002072 talloc_free(lh);
Harald Welte59b04682009-06-10 05:40:52 +08002073 }
2074
2075 while (fgets(linebuf, sizeof(linebuf), swl)) {
2076 char file_id[12+1];
2077 char file_version[80+1];
2078 struct file_list_entry *fle;
2079 static char dir[PATH_MAX];
2080
2081 if (strlen(linebuf) < 4)
2082 continue;
2083
2084 rc = sscanf(linebuf+4, "%12s:%80s\r\n", file_id, file_version);
2085 if (rc < 0) {
2086 perror("ERR parsing SWL file");
2087 rc = -EINVAL;
2088 goto out;
2089 }
2090 if (rc < 2)
2091 continue;
2092
Harald Welte857e00d2009-06-26 20:25:23 +02002093 fle = talloc_zero(tall_fle_ctx, struct file_list_entry);
Harald Welte59b04682009-06-10 05:40:52 +08002094 if (!fle) {
2095 rc = -ENOMEM;
2096 goto out;
2097 }
Harald Welte59b04682009-06-10 05:40:52 +08002098
2099 /* construct new filename */
2100 strncpy(dir, bs11_sw->swl_fname, sizeof(dir));
2101 strncat(fle->fname, dirname(dir), sizeof(fle->fname) - 1);
2102 strcat(fle->fname, "/");
2103 strncat(fle->fname, file_id, sizeof(fle->fname) - 1 -strlen(fle->fname));
2104
2105 llist_add_tail(&fle->list, &bs11_sw->file_list);
2106 }
2107
2108out:
2109 fclose(swl);
2110 return rc;
2111}
2112
2113/* bs11 swload specific callback, passed to abis_nm core swload */
2114static int bs11_swload_cbfn(unsigned int hook, unsigned int event,
2115 struct msgb *msg, void *data, void *param)
2116{
2117 struct abis_nm_bs11_sw *bs11_sw = data;
2118 struct file_list_entry *fle;
2119 int rc = 0;
2120
2121 switch (event) {
2122 case NM_MT_LOAD_END_ACK:
2123 fle = fl_dequeue(&bs11_sw->file_list);
2124 if (fle) {
2125 /* start download the next file of our file list */
2126 rc = abis_nm_software_load(bs11_sw->bts, fle->fname,
2127 bs11_sw->win_size,
2128 bs11_sw->forced,
2129 &bs11_swload_cbfn, bs11_sw);
2130 free(fle);
2131 } else {
2132 /* activate the SWL */
2133 rc = abis_nm_software_activate(bs11_sw->bts,
2134 bs11_sw->swl_fname,
2135 bs11_swload_cbfn,
2136 bs11_sw);
2137 }
2138 break;
2139 case NM_MT_LOAD_SEG_ACK:
2140 case NM_MT_LOAD_END_NACK:
2141 case NM_MT_LOAD_INIT_ACK:
2142 case NM_MT_LOAD_INIT_NACK:
2143 case NM_MT_ACTIVATE_SW_NACK:
2144 case NM_MT_ACTIVATE_SW_ACK:
2145 default:
2146 /* fallthrough to the user callback */
2147 if (bs11_sw->user_cb)
2148 rc = bs11_sw->user_cb(hook, event, msg, NULL, NULL);
2149 break;
2150 }
2151
2152 return rc;
2153}
2154
2155/* Siemens provides a SWL file that is a mere listing of all the other
2156 * files that are part of a software release. We need to upload first
2157 * the list file, and then each file that is listed in the list file */
2158int abis_nm_bs11_load_swl(struct gsm_bts *bts, const char *fname,
2159 u_int8_t win_size, int forced, gsm_cbfn *cbfn)
2160{
2161 struct abis_nm_bs11_sw *bs11_sw = g_bs11_sw;
2162 struct file_list_entry *fle;
2163 int rc = 0;
2164
2165 INIT_LLIST_HEAD(&bs11_sw->file_list);
2166 bs11_sw->bts = bts;
2167 bs11_sw->win_size = win_size;
2168 bs11_sw->user_cb = cbfn;
2169 bs11_sw->forced = forced;
2170
2171 strncpy(bs11_sw->swl_fname, fname, sizeof(bs11_sw->swl_fname));
2172 rc = bs11_read_swl_file(bs11_sw);
2173 if (rc < 0)
2174 return rc;
2175
2176 /* dequeue next item in file list */
2177 fle = fl_dequeue(&bs11_sw->file_list);
2178 if (!fle)
2179 return -EINVAL;
2180
2181 /* start download the next file of our file list */
2182 rc = abis_nm_software_load(bts, fle->fname, win_size, forced,
2183 bs11_swload_cbfn, bs11_sw);
2184 free(fle);
2185 return rc;
2186}
2187
2188#if 0
2189static u_int8_t req_attr_btse[] = {
2190 NM_ATT_ADM_STATE, NM_ATT_BS11_LMT_LOGON_SESSION,
2191 NM_ATT_BS11_LMT_LOGIN_TIME, NM_ATT_BS11_LMT_USER_ACC_LEV,
2192 NM_ATT_BS11_LMT_USER_NAME,
2193
2194 0xaf, NM_ATT_BS11_RX_OFFSET, NM_ATT_BS11_VENDOR_NAME,
2195
2196 NM_ATT_BS11_SW_LOAD_INTENDED, NM_ATT_BS11_SW_LOAD_SAFETY,
2197
2198 NM_ATT_BS11_SW_LOAD_STORED };
2199
2200static u_int8_t req_attr_btsm[] = {
2201 NM_ATT_ABIS_CHANNEL, NM_ATT_TEI, NM_ATT_BS11_ABIS_EXT_TIME,
2202 NM_ATT_ADM_STATE, NM_ATT_AVAIL_STATUS, 0xce, NM_ATT_FILE_ID,
2203 NM_ATT_FILE_VERSION, NM_ATT_OPER_STATE, 0xe8, NM_ATT_BS11_ALL_TEST_CATG,
2204 NM_ATT_SW_DESCR, NM_ATT_GET_ARI };
2205#endif
2206
2207static u_int8_t req_attr[] = {
2208 NM_ATT_ADM_STATE, NM_ATT_AVAIL_STATUS, 0xa8, NM_ATT_OPER_STATE,
2209 0xd5, 0xa1, NM_ATT_BS11_ESN_FW_CODE_NO, NM_ATT_BS11_ESN_HW_CODE_NO,
2210 0x42, NM_ATT_BS11_ESN_PCB_SERIAL, NM_ATT_BS11_PLL };
2211
2212int abis_nm_bs11_get_serno(struct gsm_bts *bts)
2213{
2214 struct abis_om_hdr *oh;
2215 struct msgb *msg = nm_msgb_alloc();
2216
2217 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
2218 /* SiemensHW CCTRL object */
2219 fill_om_fom_hdr(oh, 2+sizeof(req_attr), NM_MT_GET_ATTR, NM_OC_BS11,
2220 0x03, 0x00, 0x00);
2221 msgb_tlv_put(msg, NM_ATT_LIST_REQ_ATTR, sizeof(req_attr), req_attr);
2222
2223 return abis_nm_sendmsg(bts, msg);
2224}
2225
2226int abis_nm_bs11_set_ext_time(struct gsm_bts *bts)
2227{
2228 struct abis_om_hdr *oh;
2229 struct msgb *msg = nm_msgb_alloc();
2230 struct bs11_date_time aet;
2231
2232 get_bs11_date_time(&aet);
2233 oh = (struct abis_om_hdr *) msgb_put(msg, ABIS_OM_FOM_HDR_SIZE);
2234 /* SiemensHW CCTRL object */
2235 fill_om_fom_hdr(oh, 2+sizeof(aet), NM_MT_BS11_SET_ATTR, NM_OC_SITE_MANAGER,
2236 0xff, 0xff, 0xff);
2237 msgb_tlv_put(msg, NM_ATT_BS11_ABIS_EXT_TIME, sizeof(aet), (u_int8_t *) &aet);
2238
2239 return abis_nm_sendmsg(bts, msg);
2240}
2241
2242/* ip.access nanoBTS specific commands */
2243static const char ipaccess_magic[] = "com.ipaccess";
2244
2245
2246static int abis_nm_rx_ipacc(struct msgb *msg)
2247{
2248 struct abis_om_hdr *oh = msgb_l2(msg);
2249 struct abis_om_fom_hdr *foh;
2250 u_int8_t idstrlen = oh->data[0];
2251 struct tlv_parsed tp;
2252
2253 if (strncmp((char *)&oh->data[1], ipaccess_magic, idstrlen)) {
2254 DEBUGP(DNM, "id string is not com.ipaccess !?!\n");
2255 return -EINVAL;
2256 }
2257
2258 foh = (struct abis_om_fom_hdr *) (oh->data + 1 + idstrlen);
2259 abis_nm_tlv_parse(&tp, foh->data, oh->length-sizeof(*foh));
2260
2261 DEBUGP(DNM, "IPACCESS(0x%02x): ", foh->msg_type);
2262
2263 switch (foh->msg_type) {
2264 case NM_MT_IPACC_RSL_CONNECT_ACK:
2265 DEBUGPC(DNM, "RSL CONNECT ACK ");
Harald Welte4206d982009-07-12 09:33:54 +02002266 if (TLVP_PRESENT(&tp, NM_ATT_IPACC_DST_IP))
Harald Welte59b04682009-06-10 05:40:52 +08002267 DEBUGPC(DNM, "IP=%s ",
2268 inet_ntoa(*((struct in_addr *)
Harald Welte4206d982009-07-12 09:33:54 +02002269 TLVP_VAL(&tp, NM_ATT_IPACC_DST_IP))));
2270 if (TLVP_PRESENT(&tp, NM_ATT_IPACC_DST_IP_PORT))
Harald Welte59b04682009-06-10 05:40:52 +08002271 DEBUGPC(DNM, "PORT=%u ",
2272 ntohs(*((u_int16_t *)
Harald Welte4206d982009-07-12 09:33:54 +02002273 TLVP_VAL(&tp, NM_ATT_IPACC_DST_IP_PORT))));
Harald Welte59b04682009-06-10 05:40:52 +08002274 DEBUGPC(DNM, "\n");
2275 break;
2276 case NM_MT_IPACC_RSL_CONNECT_NACK:
2277 DEBUGPC(DNM, "RSL CONNECT NACK ");
2278 if (TLVP_PRESENT(&tp, NM_ATT_NACK_CAUSES))
2279 DEBUGPC(DNM, " CAUSE=%s\n",
2280 nack_cause_name(*TLVP_VAL(&tp, NM_ATT_NACK_CAUSES)));
2281 else
2282 DEBUGPC(DNM, "\n");
2283 break;
2284 case NM_MT_IPACC_SET_NVATTR_ACK:
2285 DEBUGPC(DNM, "SET NVATTR ACK\n");
2286 /* FIXME: decode and show the actual attributes */
2287 break;
2288 case NM_MT_IPACC_SET_NVATTR_NACK:
2289 DEBUGPC(DNM, "SET NVATTR NACK ");
2290 if (TLVP_PRESENT(&tp, NM_ATT_NACK_CAUSES))
2291 DEBUGPC(DNM, " CAUSE=%s\n",
2292 nack_cause_name(*TLVP_VAL(&tp, NM_ATT_NACK_CAUSES)));
2293 else
2294 DEBUGPC(DNM, "\n");
2295 break;
Harald Welte21460f02009-07-03 11:26:45 +02002296 case NM_MT_IPACC_GET_NVATTR_ACK:
2297 DEBUGPC(DNM, "GET NVATTR ACK\n");
2298 /* FIXME: decode and show the actual attributes */
2299 break;
2300 case NM_MT_IPACC_GET_NVATTR_NACK:
2301 DEBUGPC(DNM, "GET NVATTR NACK ");
2302 if (TLVP_PRESENT(&tp, NM_ATT_NACK_CAUSES))
2303 DEBUGPC(DNM, " CAUSE=%s\n",
2304 nack_cause_name(*TLVP_VAL(&tp, NM_ATT_NACK_CAUSES)));
2305 else
2306 DEBUGPC(DNM, "\n");
2307 break;
Harald Welte59b04682009-06-10 05:40:52 +08002308 default:
2309 DEBUGPC(DNM, "unknown\n");
2310 break;
2311 }
Holger Hans Peter Freyther72baef32009-07-07 12:40:07 +02002312
2313 /* signal handling */
2314 switch (foh->msg_type) {
2315 case NM_MT_IPACC_RSL_CONNECT_NACK:
2316 case NM_MT_IPACC_SET_NVATTR_NACK:
2317 case NM_MT_IPACC_GET_NVATTR_NACK:
2318 dispatch_signal(SS_NM, S_NM_IPACC_NACK, (void*) ((long)foh->msg_type));
2319 break;
2320 default:
2321 break;
2322 }
2323
Harald Welte59b04682009-06-10 05:40:52 +08002324 return 0;
2325}
2326
2327/* send an ip-access manufacturer specific message */
2328int abis_nm_ipaccess_msg(struct gsm_bts *bts, u_int8_t msg_type,
2329 u_int8_t obj_class, u_int8_t bts_nr,
2330 u_int8_t trx_nr, u_int8_t ts_nr,
2331 u_int8_t *attr, int attr_len)
2332{
2333 struct msgb *msg = nm_msgb_alloc();
2334 struct abis_om_hdr *oh;
2335 struct abis_om_fom_hdr *foh;
2336 u_int8_t *data;
2337
2338 /* construct the 12.21 OM header, observe the erroneous length */
2339 oh = (struct abis_om_hdr *) msgb_put(msg, sizeof(*oh));
2340 fill_om_hdr(oh, sizeof(*foh) + attr_len);
2341 oh->mdisc = ABIS_OM_MDISC_MANUF;
2342
2343 /* add the ip.access magic */
2344 data = msgb_put(msg, sizeof(ipaccess_magic)+1);
2345 *data++ = sizeof(ipaccess_magic);
2346 memcpy(data, ipaccess_magic, sizeof(ipaccess_magic));
2347
2348 /* fill the 12.21 FOM header */
2349 foh = (struct abis_om_fom_hdr *) msgb_put(msg, sizeof(*foh));
2350 foh->msg_type = msg_type;
2351 foh->obj_class = obj_class;
2352 foh->obj_inst.bts_nr = bts_nr;
2353 foh->obj_inst.trx_nr = trx_nr;
2354 foh->obj_inst.ts_nr = ts_nr;
2355
2356 if (attr && attr_len) {
2357 data = msgb_put(msg, attr_len);
2358 memcpy(data, attr, attr_len);
2359 }
2360
2361 return abis_nm_sendmsg(bts, msg);
2362}
2363
2364/* set some attributes in NVRAM */
2365int abis_nm_ipaccess_set_nvattr(struct gsm_bts *bts, u_int8_t *attr,
2366 int attr_len)
2367{
2368 return abis_nm_ipaccess_msg(bts, NM_MT_IPACC_SET_NVATTR,
2369 NM_OC_BASEB_TRANSC, 0, 0, 0xff, attr,
2370 attr_len);
2371}
2372
2373/* restart / reboot an ip.access nanoBTS */
2374int abis_nm_ipaccess_restart(struct gsm_bts *bts)
2375{
2376 return __simple_cmd(bts, NM_MT_IPACC_RESTART);
2377}