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Neels Hofmeyr17518fe2017-06-20 04:35:06 +02001/*! \file gsm48_ie.c
2 * GSM Mobile Radio Interface Layer 3 messages.
3 * 3GPP TS 04.08 version 7.21.0 Release 1998 / ETSI TS 100 940 V7.21.0. */
4/*
5 * (C) 2008 by Harald Welte <laforge@gnumonks.org>
Harald Welteb1ac2b92010-04-09 07:50:18 +02006 * (C) 2009-2010 by Andreas Eversberg
Harald Welte1e908662010-03-07 23:39:54 +01007 *
8 * All Rights Reserved
9 *
Harald Weltee08da972017-11-13 01:00:26 +090010 * SPDX-License-Identifier: GPL-2.0+
11 *
Harald Welte1e908662010-03-07 23:39:54 +010012 * This program is free software; you can redistribute it and/or modify
13 * it under the terms of the GNU General Public License as published by
14 * the Free Software Foundation; either version 2 of the License, or
15 * (at your option) any later version.
16 *
17 * This program is distributed in the hope that it will be useful,
18 * but WITHOUT ANY WARRANTY; without even the implied warranty of
19 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20 * GNU General Public License for more details.
21 *
Harald Welte1e908662010-03-07 23:39:54 +010022 */
23
24
25#include <stdint.h>
26#include <string.h>
27#include <errno.h>
28
Pablo Neira Ayuso83419342011-03-22 16:36:13 +010029#include <osmocom/core/utils.h>
30#include <osmocom/core/msgb.h>
31#include <osmocom/gsm/tlv.h>
32#include <osmocom/gsm/mncc.h>
Philipp Maiere36be562020-11-12 11:33:54 +010033#include <osmocom/core/bitvec.h>
Pablo Neira Ayuso83419342011-03-22 16:36:13 +010034#include <osmocom/gsm/protocol/gsm_04_08.h>
35#include <osmocom/gsm/gsm48_ie.h>
Harald Welte1e908662010-03-07 23:39:54 +010036
Harald Welte96e2a002017-06-12 21:44:18 +020037/*! \addtogroup gsm0408
38 * @{
39 */
40
Harald Welte1e908662010-03-07 23:39:54 +010041static const char bcd_num_digits[] = {
42 '0', '1', '2', '3', '4', '5', '6', '7',
43 '8', '9', '*', '#', 'a', 'b', 'c', '\0'
44};
45
Neels Hofmeyr8212fc62019-04-01 14:34:37 +020046/*! Like gsm48_decode_bcd_number2() but with less airtight bounds checking.
Harald Welte96e2a002017-06-12 21:44:18 +020047 * \param[out] Caller-provided output buffer
48 * \param[in] bcd_lv Length-Value portion of to-be-decoded IE
49 * \param[in] h_len Length of an optional heder between L and V portion
50 * \returns - in case of success; negative on error */
Harald Welte1e908662010-03-07 23:39:54 +010051int gsm48_decode_bcd_number(char *output, int output_len,
52 const uint8_t *bcd_lv, int h_len)
53{
54 uint8_t in_len = bcd_lv[0];
Neels Hofmeyr83d45312019-04-29 19:15:11 +020055 /* Just assume the input buffer is big enough for the length byte and the following data, so pass in_len + 1 for
56 * the input buffer size. */
57 return gsm48_decode_bcd_number2(output, output_len, bcd_lv, in_len + 1, h_len);
58}
59
60/*! Decode a 'called/calling/connect party BCD number' as in 10.5.4.7.
61 * \param[out] output Caller-provided output buffer.
62 * \param[in] output_len sizeof(output).
63 * \param[in] bcd_lv Length-Value part of to-be-decoded IE.
64 * \param[in] input_len Size of the bcd_lv buffer for bounds checking.
65 * \param[in] h_len Length of an optional header between L and V parts.
Vadim Yanitskiy71940872019-05-26 00:49:57 +070066 * \return 0 in case of success, negative on error.
67 *
68 * Errors checked:
69 * - no or too little input data (-EIO),
Vadim Yanitskiye4799f52019-05-26 00:55:20 +070070 * - IE length exceeds input data size (-EINVAL),
Vadim Yanitskiy71940872019-05-26 00:49:57 +070071 * - no or too little output buffer size (-ENOSPC),
72 * - decoded number exceeds size of the output buffer (-ENOSPC).
73 *
74 * The output is guaranteed to be nul terminated iff output_len > 0.
Neels Hofmeyr83d45312019-04-29 19:15:11 +020075 */
76int gsm48_decode_bcd_number2(char *output, size_t output_len,
77 const uint8_t *bcd_lv, size_t input_len,
78 size_t h_len)
79{
80 uint8_t in_len;
Harald Welte1e908662010-03-07 23:39:54 +010081 int i;
Oliver Smith186f8782019-06-06 16:11:32 +020082 bool truncated = false;
Neels Hofmeyr83d45312019-04-29 19:15:11 +020083 if (output_len < 1)
84 return -ENOSPC;
85 *output = '\0';
86 if (input_len < 1)
87 return -EIO;
88 in_len = bcd_lv[0];
89 /* len + 1: the BCD length plus the length byte itself must fit in the input buffer. */
90 if (input_len < in_len + 1)
Vadim Yanitskiye4799f52019-05-26 00:55:20 +070091 return -EINVAL;
Harald Welte1e908662010-03-07 23:39:54 +010092
93 for (i = 1 + h_len; i <= in_len; i++) {
94 /* lower nibble */
Oliver Smith186f8782019-06-06 16:11:32 +020095 if (output_len <= 1) {
96 truncated = true;
Harald Welte1e908662010-03-07 23:39:54 +010097 break;
Oliver Smith186f8782019-06-06 16:11:32 +020098 }
Harald Welte1e908662010-03-07 23:39:54 +010099 *output++ = bcd_num_digits[bcd_lv[i] & 0xf];
Vadim Yanitskiy2cd1dda2019-05-26 00:14:16 +0700100 output_len--;
Harald Welte1e908662010-03-07 23:39:54 +0100101
102 /* higher nibble */
Oliver Smith186f8782019-06-06 16:11:32 +0200103 if (output_len <= 1) {
104 /* not truncated if there is exactly one 0xf ('\0') higher nibble remaining */
105 if (i == in_len && (bcd_lv[i] & 0xf0) == 0xf0) {
106 break;
107 }
108
109 truncated = true;
Harald Welte1e908662010-03-07 23:39:54 +0100110 break;
Oliver Smith186f8782019-06-06 16:11:32 +0200111 }
Harald Welte1e908662010-03-07 23:39:54 +0100112 *output++ = bcd_num_digits[bcd_lv[i] >> 4];
Vadim Yanitskiy2cd1dda2019-05-26 00:14:16 +0700113 output_len--;
Harald Welte1e908662010-03-07 23:39:54 +0100114 }
115 if (output_len >= 1)
116 *output++ = '\0';
117
Vadim Yanitskiy71940872019-05-26 00:49:57 +0700118 /* Indicate whether the output was truncated */
Oliver Smith186f8782019-06-06 16:11:32 +0200119 if (truncated)
Vadim Yanitskiy71940872019-05-26 00:49:57 +0700120 return -ENOSPC;
121
Harald Welte1e908662010-03-07 23:39:54 +0100122 return 0;
123}
124
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200125/*! convert a single ASCII character to call-control BCD */
Harald Welte1e908662010-03-07 23:39:54 +0100126static int asc_to_bcd(const char asc)
127{
128 int i;
129
130 for (i = 0; i < ARRAY_SIZE(bcd_num_digits); i++) {
131 if (bcd_num_digits[i] == asc)
132 return i;
133 }
134 return -EINVAL;
135}
136
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200137/*! convert a ASCII phone number to 'called/calling/connect party BCD number'
Harald Welte96e2a002017-06-12 21:44:18 +0200138 * \param[out] bcd_lv Caller-provided output buffer
139 * \param[in] max_len Maximum Length of \a bcd_lv
140 * \param[in] h_len Length of an optional heder between L and V portion
141 * \param[in] input phone number as 0-terminated ASCII
Vadim Yanitskiy1dc82642019-05-27 00:53:54 +0700142 * \returns number of bytes used in \a bcd_lv
143 *
144 * Depending on a context (e.g. called or calling party BCD number), the
145 * optional header between L and V parts can contain TON (Type Of Number),
146 * NPI (Numbering Plan Indication), presentation or screening indicator.
147 * NOTE: it is up to the caller to initialize this header!
148 */
Harald Welte1e908662010-03-07 23:39:54 +0100149int gsm48_encode_bcd_number(uint8_t *bcd_lv, uint8_t max_len,
150 int h_len, const char *input)
151{
152 int in_len = strlen(input);
153 int i;
154 uint8_t *bcd_cur = bcd_lv + 1 + h_len;
155
156 /* two digits per byte, plus type byte */
157 bcd_lv[0] = in_len/2 + h_len;
158 if (in_len % 2)
159 bcd_lv[0]++;
160
161 if (bcd_lv[0] > max_len)
162 return -EIO;
163
164 for (i = 0; i < in_len; i++) {
165 int rc = asc_to_bcd(input[i]);
166 if (rc < 0)
167 return rc;
168 if (i % 2 == 0)
169 *bcd_cur = rc;
170 else
171 *bcd_cur++ |= (rc << 4);
172 }
173 /* append padding nibble in case of odd length */
174 if (i % 2)
175 *bcd_cur++ |= 0xf0;
176
177 /* return how many bytes we used */
178 return (bcd_cur - bcd_lv);
179}
180
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200181/*! Decode TS 04.08 Bearer Capability IE (10.5.4.5)
Harald Welte96e2a002017-06-12 21:44:18 +0200182 * \param[out] Caller-provided memory for decoded output
183 * \[aram[in] LV portion of TS 04.08 Bearer Capability
184 * \returns 0 on success; negative on error */
Harald Welte1e908662010-03-07 23:39:54 +0100185int gsm48_decode_bearer_cap(struct gsm_mncc_bearer_cap *bcap,
186 const uint8_t *lv)
187{
188 uint8_t in_len = lv[0];
189 int i, s;
190
191 if (in_len < 1)
192 return -EINVAL;
193
194 bcap->speech_ver[0] = -1; /* end of list, of maximum 7 values */
195
196 /* octet 3 */
197 bcap->transfer = lv[1] & 0x07;
198 bcap->mode = (lv[1] & 0x08) >> 3;
199 bcap->coding = (lv[1] & 0x10) >> 4;
200 bcap->radio = (lv[1] & 0x60) >> 5;
201
Harald Weltec8a0b932012-08-24 21:27:26 +0200202 switch (bcap->transfer) {
203 case GSM_MNCC_BCAP_SPEECH:
Harald Welte1e908662010-03-07 23:39:54 +0100204 i = 1;
205 s = 0;
Mychaela Falconia605c9e62022-07-03 05:15:30 +0700206 if ((lv[1] & 0x80) != 0) { /* octet 3a is absent */
207 switch (bcap->radio) {
208 case GSM48_BCAP_RRQ_FR_ONLY:
209 bcap->speech_ver[s++] = GSM48_BCAP_SV_FR;
210 break;
211 case GSM48_BCAP_RRQ_DUAL_HR:
212 bcap->speech_ver[s++] = GSM48_BCAP_SV_HR;
213 bcap->speech_ver[s++] = GSM48_BCAP_SV_FR;
214 break;
215 case GSM48_BCAP_RRQ_DUAL_FR:
216 bcap->speech_ver[s++] = GSM48_BCAP_SV_FR;
217 bcap->speech_ver[s++] = GSM48_BCAP_SV_HR;
218 break;
219 }
220 bcap->speech_ver[s] = -1; /* end of list */
221 return 0;
222 }
Vadim Yanitskiy384e6a32022-07-03 05:10:21 +0700223 while (!(lv[i] & 0x80)) {
Harald Welte1e908662010-03-07 23:39:54 +0100224 i++; /* octet 3a etc */
225 if (in_len < i)
226 return 0;
227 bcap->speech_ver[s++] = lv[i] & 0x0f;
228 bcap->speech_ver[s] = -1; /* end of list */
229 if (i == 2) /* octet 3a */
230 bcap->speech_ctm = (lv[i] & 0x20) >> 5;
231 if (s == 7) /* maximum speech versions + end of list */
232 return 0;
233 }
Harald Weltec8a0b932012-08-24 21:27:26 +0200234 break;
235 case GSM_MNCC_BCAP_UNR_DIG:
236 case GSM_MNCC_BCAP_FAX_G3:
237 i = 1;
Vadim Yanitskiy384e6a32022-07-03 05:10:21 +0700238 while (!(lv[i] & 0x80)) {
Harald Weltec8a0b932012-08-24 21:27:26 +0200239 i++; /* octet 3a etc */
240 if (in_len < i)
241 return 0;
242 /* ignore them */
243 }
244 /* octet 4: skip */
245 i++;
246 /* octet 5 */
247 i++;
248 if (in_len < i)
249 return 0;
250 bcap->data.rate_adaption = (lv[i] >> 3) & 3;
251 bcap->data.sig_access = lv[i] & 7;
Vadim Yanitskiy384e6a32022-07-03 05:10:21 +0700252 while (!(lv[i] & 0x80)) {
Harald Weltec8a0b932012-08-24 21:27:26 +0200253 i++; /* octet 5a etc */
254 if (in_len < i)
255 return 0;
256 /* ignore them */
257 }
258 /* octet 6 */
259 i++;
260 if (in_len < i)
261 return 0;
262 bcap->data.async = lv[i] & 1;
263 if (!(lv[i] & 0x80)) {
264 i++;
265 if (in_len < i)
266 return 0;
267 /* octet 6a */
268 bcap->data.nr_stop_bits = ((lv[i] >> 7) & 1) + 1;
269 if (lv[i] & 0x10)
270 bcap->data.nr_data_bits = 8;
271 else
272 bcap->data.nr_data_bits = 7;
273 bcap->data.user_rate = lv[i] & 0xf;
274
275 if (!(lv[i] & 0x80)) {
276 i++;
277 if (in_len < i)
278 return 0;
279 /* octet 6b */
280 bcap->data.parity = lv[i] & 7;
281 bcap->data.interm_rate = (lv[i] >> 5) & 3;
282
283 /* octet 6c */
284 if (!(lv[i] & 0x80)) {
285 i++;
286 if (in_len < i)
287 return 0;
288 bcap->data.transp = (lv[i] >> 5) & 3;
289 bcap->data.modem_type = lv[i] & 0x1F;
290 }
291 }
292
293 }
294 break;
295 default:
Harald Welte1e908662010-03-07 23:39:54 +0100296 i = 1;
297 while (!(lv[i] & 0x80)) {
298 i++; /* octet 3a etc */
299 if (in_len < i)
300 return 0;
301 /* ignore them */
302 }
303 /* FIXME: implement OCTET 4+ parsing */
Harald Weltec8a0b932012-08-24 21:27:26 +0200304 break;
Harald Welte1e908662010-03-07 23:39:54 +0100305 }
306
307 return 0;
308}
309
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200310/*! Encode TS 04.08 Bearer Capability IE (10.5.4.5)
Harald Welte96e2a002017-06-12 21:44:18 +0200311 * \param[out] msg Message Buffer to which IE is to be appended
312 * \param[in] lv_only Write only LV portion (1) or TLV (0)
313 * \param[in] bcap Decoded Bearer Capability to be encoded
314 * \returns 0 on success; negative on error */
Harald Welte1e908662010-03-07 23:39:54 +0100315int gsm48_encode_bearer_cap(struct msgb *msg, int lv_only,
316 const struct gsm_mncc_bearer_cap *bcap)
317{
318 uint8_t lv[32 + 1];
319 int i = 1, s;
320
321 lv[1] = bcap->transfer;
322 lv[1] |= bcap->mode << 3;
323 lv[1] |= bcap->coding << 4;
324 lv[1] |= bcap->radio << 5;
325
Harald Weltec8a0b932012-08-24 21:27:26 +0200326 switch (bcap->transfer) {
327 case GSM_MNCC_BCAP_SPEECH:
Harald Welte1e908662010-03-07 23:39:54 +0100328 for (s = 0; bcap->speech_ver[s] >= 0; s++) {
329 i++; /* octet 3a etc */
330 lv[i] = bcap->speech_ver[s];
331 if (i == 2) /* octet 3a */
332 lv[i] |= bcap->speech_ctm << 5;
333 }
334 lv[i] |= 0x80; /* last IE of octet 3 etc */
Harald Weltec8a0b932012-08-24 21:27:26 +0200335 break;
336 case GSM48_BCAP_ITCAP_UNR_DIG_INF:
337 case GSM48_BCAP_ITCAP_FAX_G3:
338 lv[i++] |= 0x80; /* last IE of octet 3 etc */
339 /* octet 4 */
340 lv[i++] = 0xb8;
341 /* octet 5 */
342 lv[i++] = 0x80 | ((bcap->data.rate_adaption & 3) << 3)
343 | (bcap->data.sig_access & 7);
344 /* octet 6 */
345 lv[i++] = 0x20 | (bcap->data.async & 1);
346 /* octet 6a */
347 lv[i++] = (bcap->data.user_rate & 0xf) |
348 (bcap->data.nr_data_bits == 8 ? 0x10 : 0x00) |
349 (bcap->data.nr_stop_bits == 2 ? 0x40 : 0x00);
350 /* octet 6b */
351 lv[i++] = (bcap->data.parity & 7) |
352 ((bcap->data.interm_rate & 3) << 5);
353 /* octet 6c */
354 lv[i] = 0x80 | (bcap->data.modem_type & 0x1f);
355 break;
356 default:
357 return -EINVAL;
Harald Welte1e908662010-03-07 23:39:54 +0100358 }
359
360 lv[0] = i;
361 if (lv_only)
362 msgb_lv_put(msg, lv[0], lv+1);
363 else
364 msgb_tlv_put(msg, GSM48_IE_BEARER_CAP, lv[0], lv+1);
365
366 return 0;
367}
368
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200369/*! Decode TS 04.08 Call Control Capabilities IE (10.5.4.5a)
Harald Welte96e2a002017-06-12 21:44:18 +0200370 * \param[out] Caller-provided memory for decoded CC capabilities
371 * \param[in] lv Length-Value of IE
372 * \retursns 0 on success; negative on error */
Harald Welte1e908662010-03-07 23:39:54 +0100373int gsm48_decode_cccap(struct gsm_mncc_cccap *ccap, const uint8_t *lv)
374{
375 uint8_t in_len = lv[0];
376
377 if (in_len < 1)
378 return -EINVAL;
379
380 /* octet 3 */
381 ccap->dtmf = lv[1] & 0x01;
382 ccap->pcp = (lv[1] & 0x02) >> 1;
383
384 return 0;
385}
386
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200387/*! Encodoe TS 04.08 Call Control Capabilities (10.5.4.5a)
Harald Welte96e2a002017-06-12 21:44:18 +0200388 * \param[out] msg Message Buffer to which to append IE (as TLV)
389 * \param[in] ccap Decoded CC Capabilities to be encoded
390 * \returns 0 on success; negative on error */
Harald Welte1e908662010-03-07 23:39:54 +0100391int gsm48_encode_cccap(struct msgb *msg,
392 const struct gsm_mncc_cccap *ccap)
393{
394 uint8_t lv[2];
395
396 lv[0] = 1;
397 lv[1] = 0;
398 if (ccap->dtmf)
399 lv [1] |= 0x01;
400 if (ccap->pcp)
401 lv [1] |= 0x02;
402
403 msgb_tlv_put(msg, GSM48_IE_CC_CAP, lv[0], lv+1);
404
405 return 0;
406}
407
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200408/*! Decode TS 04.08 Called Party BCD Number IE (10.5.4.7)
Harald Welte96e2a002017-06-12 21:44:18 +0200409 * \param[out] called Caller-provided memory for decoded number
410 * \param[in] lv Length-Value portion of IE
411 * \returns 0 on success; negative on error */
Harald Welte1e908662010-03-07 23:39:54 +0100412int gsm48_decode_called(struct gsm_mncc_number *called,
413 const uint8_t *lv)
414{
415 uint8_t in_len = lv[0];
416
417 if (in_len < 1)
418 return -EINVAL;
419
420 /* octet 3 */
421 called->plan = lv[1] & 0x0f;
422 called->type = (lv[1] & 0x70) >> 4;
423
424 /* octet 4..N */
425 gsm48_decode_bcd_number(called->number, sizeof(called->number), lv, 1);
426
427 return 0;
428}
429
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200430/*! Encode TS 04.08 Called Party IE (10.5.4.7)
Harald Welte96e2a002017-06-12 21:44:18 +0200431 * \param[out] msg Mesage Buffer to which to append IE (as TLV)
432 * \param[in] called MNCC Number to encode/append
433 * \returns 0 on success; negative on error */
Harald Welte1e908662010-03-07 23:39:54 +0100434int gsm48_encode_called(struct msgb *msg,
435 const struct gsm_mncc_number *called)
436{
437 uint8_t lv[18];
438 int ret;
439
440 /* octet 3 */
Sylvain Munaut47ee6932010-09-20 20:59:23 +0200441 lv[1] = 0x80; /* no extension */
442 lv[1] |= called->plan;
Harald Welte1e908662010-03-07 23:39:54 +0100443 lv[1] |= called->type << 4;
444
445 /* octet 4..N, octet 2 */
446 ret = gsm48_encode_bcd_number(lv, sizeof(lv), 1, called->number);
447 if (ret < 0)
448 return ret;
449
450 msgb_tlv_put(msg, GSM48_IE_CALLED_BCD, lv[0], lv+1);
451
452 return 0;
453}
454
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200455/*! Decode TS 04.08 Caller ID
Harald Welte96e2a002017-06-12 21:44:18 +0200456 * \param[out] called Caller-provided memory for decoded number
457 * \param[in] lv Length-Value portion of IE
458 * \returns 0 on success; negative on error */
Harald Welte1e908662010-03-07 23:39:54 +0100459int gsm48_decode_callerid(struct gsm_mncc_number *callerid,
460 const uint8_t *lv)
461{
462 uint8_t in_len = lv[0];
463 int i = 1;
464
465 if (in_len < 1)
466 return -EINVAL;
467
468 /* octet 3 */
469 callerid->plan = lv[1] & 0x0f;
470 callerid->type = (lv[1] & 0x70) >> 4;
471
472 /* octet 3a */
473 if (!(lv[1] & 0x80)) {
474 callerid->screen = lv[2] & 0x03;
475 callerid->present = (lv[2] & 0x60) >> 5;
476 i = 2;
477 }
478
479 /* octet 4..N */
480 gsm48_decode_bcd_number(callerid->number, sizeof(callerid->number), lv, i);
481
482 return 0;
483}
484
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200485/*! Encode TS 04.08 Caller ID IE
Harald Welte96e2a002017-06-12 21:44:18 +0200486 * \param[out] msg Mesage Buffer to which to append IE (as TLV)
487 * \param[in] ie IE Identifier (tag)
488 * \param[in] max_len maximum generated output in bytes
489 * \param[in] callerid MNCC Number to encode/append
490 * \returns 0 on success; negative on error */
Harald Welte1e908662010-03-07 23:39:54 +0100491int gsm48_encode_callerid(struct msgb *msg, int ie, int max_len,
492 const struct gsm_mncc_number *callerid)
493{
494 uint8_t lv[max_len - 1];
495 int h_len = 1;
496 int ret;
497
498 /* octet 3 */
499 lv[1] = callerid->plan;
500 lv[1] |= callerid->type << 4;
501
502 if (callerid->present || callerid->screen) {
503 /* octet 3a */
504 lv[2] = callerid->screen;
505 lv[2] |= callerid->present << 5;
506 lv[2] |= 0x80;
507 h_len++;
508 } else
509 lv[1] |= 0x80;
510
511 /* octet 4..N, octet 2 */
512 ret = gsm48_encode_bcd_number(lv, sizeof(lv), h_len, callerid->number);
513 if (ret < 0)
514 return ret;
515
516 msgb_tlv_put(msg, ie, lv[0], lv+1);
517
518 return 0;
519}
520
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200521/*! Decode TS 04.08 Cause IE (10.5.4.11)
Harald Welte96e2a002017-06-12 21:44:18 +0200522 * \param[out] cause Caller-provided memory for output
523 * \param[in] lv LV portion of Cause IE
524 * \returns 0 on success; negative on error */
Harald Welte1e908662010-03-07 23:39:54 +0100525int gsm48_decode_cause(struct gsm_mncc_cause *cause,
526 const uint8_t *lv)
527{
528 uint8_t in_len = lv[0];
529 int i;
530
531 if (in_len < 2)
532 return -EINVAL;
533
534 cause->diag_len = 0;
535
536 /* octet 3 */
537 cause->location = lv[1] & 0x0f;
538 cause->coding = (lv[1] & 0x60) >> 5;
539
540 i = 1;
541 if (!(lv[i] & 0x80)) {
542 i++; /* octet 3a */
543 if (in_len < i+1)
544 return 0;
545 cause->rec = 1;
546 cause->rec_val = lv[i] & 0x7f;
547 }
548 i++;
549
550 /* octet 4 */
551 cause->value = lv[i] & 0x7f;
552 i++;
553
554 if (in_len < i) /* no diag */
555 return 0;
556
557 if (in_len - (i-1) > 32) /* maximum 32 octets */
558 return 0;
559
560 /* octet 5-N */
561 memcpy(cause->diag, lv + i, in_len - (i-1));
562 cause->diag_len = in_len - (i-1);
563
564 return 0;
565}
566
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200567/*! Encode TS 04.08 Cause IE (10.5.4.11)
Harald Welte96e2a002017-06-12 21:44:18 +0200568 * \param[out] msg Message Buffer to which to append IE
569 * \param[in] lv_only Encode as LV (1) or TLV (0)
570 * \param[in] cause Cause value to be encoded
571 * \returns 0 on success; negative on error */
Harald Welte1e908662010-03-07 23:39:54 +0100572int gsm48_encode_cause(struct msgb *msg, int lv_only,
573 const struct gsm_mncc_cause *cause)
574{
575 uint8_t lv[32+4];
576 int i;
577
578 if (cause->diag_len > 32)
579 return -EINVAL;
580
581 /* octet 3 */
582 lv[1] = cause->location;
583 lv[1] |= cause->coding << 5;
584
585 i = 1;
586 if (cause->rec) {
587 i++; /* octet 3a */
588 lv[i] = cause->rec_val;
589 }
590 lv[i] |= 0x80; /* end of octet 3 */
591
592 /* octet 4 */
593 i++;
594 lv[i] = 0x80 | cause->value;
595
596 /* octet 5-N */
597 if (cause->diag_len) {
598 memcpy(lv + i, cause->diag, cause->diag_len);
599 i += cause->diag_len;
600 }
601
602 lv[0] = i;
603 if (lv_only)
604 msgb_lv_put(msg, lv[0], lv+1);
605 else
606 msgb_tlv_put(msg, GSM48_IE_CAUSE, lv[0], lv+1);
607
608 return 0;
609}
610
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200611/*! Decode TS 04.08 Calling Number IE (10.5.4.9) */
Harald Welte1e908662010-03-07 23:39:54 +0100612int gsm48_decode_calling(struct gsm_mncc_number *calling,
613 const uint8_t *lv)
614{
615 return gsm48_decode_callerid(calling, lv);
616}
617
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200618/*! Encode TS 04.08 Calling Number IE (10.5.4.9) */
Harald Welte1e908662010-03-07 23:39:54 +0100619int gsm48_encode_calling(struct msgb *msg,
620 const struct gsm_mncc_number *calling)
621{
622 return gsm48_encode_callerid(msg, GSM48_IE_CALLING_BCD, 14, calling);
623}
624
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200625/*! Decode TS 04.08 Connected Number IE (10.5.4.13) */
Harald Welte1e908662010-03-07 23:39:54 +0100626int gsm48_decode_connected(struct gsm_mncc_number *connected,
627 const uint8_t *lv)
628{
629 return gsm48_decode_callerid(connected, lv);
630}
631
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200632/*! Encode TS 04.08 Connected Number IE (10.5.4.13) */
Harald Welte1e908662010-03-07 23:39:54 +0100633int gsm48_encode_connected(struct msgb *msg,
634 const struct gsm_mncc_number *connected)
635{
636 return gsm48_encode_callerid(msg, GSM48_IE_CONN_BCD, 14, connected);
637}
638
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200639/*! Decode TS 04.08 Redirecting Number IE (10.5.4.21b) */
Harald Welte1e908662010-03-07 23:39:54 +0100640int gsm48_decode_redirecting(struct gsm_mncc_number *redirecting,
641 const uint8_t *lv)
642{
643 return gsm48_decode_callerid(redirecting, lv);
644}
645
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200646/*! Encode TS 04.08 Redirecting Number IE (10.5.4.21b) */
Harald Welte1e908662010-03-07 23:39:54 +0100647int gsm48_encode_redirecting(struct msgb *msg,
648 const struct gsm_mncc_number *redirecting)
649{
650 return gsm48_encode_callerid(msg, GSM48_IE_REDIR_BCD, 19, redirecting);
651}
652
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200653/*! Decode TS 04.08 Facility IE (10.5.4.15) */
Harald Welte1e908662010-03-07 23:39:54 +0100654int gsm48_decode_facility(struct gsm_mncc_facility *facility,
655 const uint8_t *lv)
656{
657 uint8_t in_len = lv[0];
658
659 if (in_len < 1)
660 return -EINVAL;
661
662 if (in_len > sizeof(facility->info))
663 return -EINVAL;
664
665 memcpy(facility->info, lv+1, in_len);
666 facility->len = in_len;
667
668 return 0;
669}
670
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200671/*! Encode TS 04.08 Facility IE (10.5.4.15) */
Harald Welte1e908662010-03-07 23:39:54 +0100672int gsm48_encode_facility(struct msgb *msg, int lv_only,
673 const struct gsm_mncc_facility *facility)
674{
675 uint8_t lv[GSM_MAX_FACILITY + 1];
676
677 if (facility->len < 1 || facility->len > GSM_MAX_FACILITY)
678 return -EINVAL;
679
680 memcpy(lv+1, facility->info, facility->len);
681 lv[0] = facility->len;
682 if (lv_only)
683 msgb_lv_put(msg, lv[0], lv+1);
684 else
685 msgb_tlv_put(msg, GSM48_IE_FACILITY, lv[0], lv+1);
686
687 return 0;
688}
689
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200690/*! Decode TS 04.08 Notify IE (10.5.4.20) */
Harald Welte1e908662010-03-07 23:39:54 +0100691int gsm48_decode_notify(int *notify, const uint8_t *v)
692{
693 *notify = v[0] & 0x7f;
694
695 return 0;
696}
697
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200698/*! Encode TS 04.08 Notify IE (10.5.4.20) */
Harald Welte1e908662010-03-07 23:39:54 +0100699int gsm48_encode_notify(struct msgb *msg, int notify)
700{
701 msgb_v_put(msg, notify | 0x80);
702
703 return 0;
704}
705
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200706/*! Decode TS 04.08 Signal IE (10.5.4.23) */
Harald Welte1e908662010-03-07 23:39:54 +0100707int gsm48_decode_signal(int *signal, const uint8_t *v)
708{
709 *signal = v[0];
710
711 return 0;
712}
713
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200714/*! Encode TS 04.08 Signal IE (10.5.4.23) */
Harald Welte1e908662010-03-07 23:39:54 +0100715int gsm48_encode_signal(struct msgb *msg, int signal)
716{
717 msgb_tv_put(msg, GSM48_IE_SIGNAL, signal);
718
719 return 0;
720}
721
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200722/*! Decode TS 04.08 Keypad IE (10.5.4.17) */
Harald Welte1e908662010-03-07 23:39:54 +0100723int gsm48_decode_keypad(int *keypad, const uint8_t *lv)
724{
725 uint8_t in_len = lv[0];
726
727 if (in_len < 1)
728 return -EINVAL;
729
730 *keypad = lv[1] & 0x7f;
731
732 return 0;
733}
734
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200735/*! Encode TS 04.08 Keypad IE (10.5.4.17) */
Harald Welte1e908662010-03-07 23:39:54 +0100736int gsm48_encode_keypad(struct msgb *msg, int keypad)
737{
738 msgb_tv_put(msg, GSM48_IE_KPD_FACILITY, keypad);
739
740 return 0;
741}
742
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200743/*! Decode TS 04.08 Progress IE (10.5.4.21) */
Harald Welte1e908662010-03-07 23:39:54 +0100744int gsm48_decode_progress(struct gsm_mncc_progress *progress,
745 const uint8_t *lv)
746{
747 uint8_t in_len = lv[0];
748
749 if (in_len < 2)
750 return -EINVAL;
751
752 progress->coding = (lv[1] & 0x60) >> 5;
753 progress->location = lv[1] & 0x0f;
754 progress->descr = lv[2] & 0x7f;
755
756 return 0;
757}
758
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200759/*! Encode TS 04.08 Progress IE (10.5.4.21) */
Harald Welte1e908662010-03-07 23:39:54 +0100760int gsm48_encode_progress(struct msgb *msg, int lv_only,
761 const struct gsm_mncc_progress *p)
762{
763 uint8_t lv[3];
764
765 lv[0] = 2;
766 lv[1] = 0x80 | ((p->coding & 0x3) << 5) | (p->location & 0xf);
767 lv[2] = 0x80 | (p->descr & 0x7f);
768 if (lv_only)
769 msgb_lv_put(msg, lv[0], lv+1);
770 else
771 msgb_tlv_put(msg, GSM48_IE_PROGR_IND, lv[0], lv+1);
772
773 return 0;
774}
775
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200776/*! Decode TS 04.08 User-User IE (10.5.4.25) */
Harald Welte1e908662010-03-07 23:39:54 +0100777int gsm48_decode_useruser(struct gsm_mncc_useruser *uu,
778 const uint8_t *lv)
779{
780 uint8_t in_len = lv[0];
781 char *info = uu->info;
782 int info_len = sizeof(uu->info);
783 int i;
784
785 if (in_len < 1)
786 return -EINVAL;
787
788 uu->proto = lv[1];
789
790 for (i = 2; i <= in_len; i++) {
791 info_len--;
792 if (info_len <= 1)
793 break;
794 *info++ = lv[i];
795 }
796 if (info_len >= 1)
797 *info++ = '\0';
798
799 return 0;
800}
801
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200802/*! Encode TS 04.08 User-User IE (10.5.4.25) */
Harald Welte1e908662010-03-07 23:39:54 +0100803int gsm48_encode_useruser(struct msgb *msg, int lv_only,
804 const struct gsm_mncc_useruser *uu)
805{
806 uint8_t lv[GSM_MAX_USERUSER + 2];
807
808 if (strlen(uu->info) > GSM_MAX_USERUSER)
809 return -EINVAL;
810
811 lv[0] = 1 + strlen(uu->info);
812 lv[1] = uu->proto;
813 memcpy(lv + 2, uu->info, strlen(uu->info));
814 if (lv_only)
815 msgb_lv_put(msg, lv[0], lv+1);
816 else
817 msgb_tlv_put(msg, GSM48_IE_USER_USER, lv[0], lv+1);
818
819 return 0;
820}
821
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200822/*! Decode TS 04.08 SS Version IE (10.5.4.24) */
Harald Welte1e908662010-03-07 23:39:54 +0100823int gsm48_decode_ssversion(struct gsm_mncc_ssversion *ssv,
824 const uint8_t *lv)
825{
826 uint8_t in_len = lv[0];
827
828 if (in_len < 1 || in_len < sizeof(ssv->info))
829 return -EINVAL;
830
831 memcpy(ssv->info, lv + 1, in_len);
832 ssv->len = in_len;
833
834 return 0;
835}
836
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200837/*! Encode TS 04.08 SS Version IE (10.5.4.24) */
Harald Welte1e908662010-03-07 23:39:54 +0100838int gsm48_encode_ssversion(struct msgb *msg,
839 const struct gsm_mncc_ssversion *ssv)
840{
841 uint8_t lv[GSM_MAX_SSVERSION + 1];
842
843 if (ssv->len > GSM_MAX_SSVERSION)
844 return -EINVAL;
845
846 lv[0] = ssv->len;
847 memcpy(lv + 1, ssv->info, ssv->len);
848 msgb_tlv_put(msg, GSM48_IE_SS_VERS, lv[0], lv+1);
849
850 return 0;
851}
852
853/* decode 'more data' does not require a function, because it has no value */
854
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200855/*! Encode TS 04.08 More Data IE (10.5.4.19) */
Harald Welte1e908662010-03-07 23:39:54 +0100856int gsm48_encode_more(struct msgb *msg)
857{
858 uint8_t *ie;
859
860 ie = msgb_put(msg, 1);
861 ie[0] = GSM48_IE_MORE_DATA;
862
863 return 0;
864}
865
Sylvain Munaut71fd42f2011-09-01 22:05:29 +0200866static int32_t smod(int32_t n, int32_t m)
867{
868 int32_t res;
869
870 res = n % m;
871
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +0200872 if (res <= 0)
Sylvain Munaut71fd42f2011-09-01 22:05:29 +0200873 res += m;
874
Sylvain Munaut71fd42f2011-09-01 22:05:29 +0200875 return res;
876}
877
Neels Hofmeyr87e45502017-06-20 00:17:59 +0200878/*! Decode TS 04.08 Cell Channel Description IE (10.5.2.1b) and other frequency lists
Pau Espin Pedrold8d0c3e2018-11-15 18:26:01 +0100879 * \param[out] f Caller-provided output memory, an array of 1024 elements
Harald Welte96e2a002017-06-12 21:44:18 +0200880 * \param[in] cd Cell Channel Description IE
881 * \param[in] len Length of \a cd in bytes
882 * \returns 0 on success; negative on error */
Harald Welte1523d702010-08-04 11:46:44 +0200883int gsm48_decode_freq_list(struct gsm_sysinfo_freq *f, uint8_t *cd,
884 uint8_t len, uint8_t mask, uint8_t frqt)
885{
886 int i;
887
888 /* NOTES:
889 *
890 * The Range format uses "SMOD" computation.
891 * e.g. "n SMOD m" equals "((n - 1) % m) + 1"
892 * A cascade of multiple SMOD computations is simpified:
893 * "(n SMOD m) SMOD o" equals "(((n - 1) % m) % o) + 1"
894 *
895 * The Range format uses 16 octets of data in SYSTEM INFORMATION.
896 * When used in dedicated messages, the length can be less.
897 * In this case the ranges are decoded for all frequencies that
898 * fit in the block of given length.
899 */
900
901 /* tabula rasa */
902 for (i = 0; i < 1024; i++)
903 f[i].mask &= ~frqt;
904
905 /* 00..XXX. */
906 if ((cd[0] & 0xc0 & mask) == 0x00) {
907 /* Bit map 0 format */
908 if (len < 16)
909 return -EINVAL;
910 for (i = 1; i <= 124; i++)
911 if ((cd[15 - ((i-1) >> 3)] & (1 << ((i-1) & 7))))
912 f[i].mask |= frqt;
913
914 return 0;
915 }
916
917 /* 10..0XX. */
918 if ((cd[0] & 0xc8 & mask) == 0x80) {
919 /* Range 1024 format */
920 uint16_t w[17]; /* 1..16 */
921 struct gsm48_range_1024 *r = (struct gsm48_range_1024 *)cd;
922
923 if (len < 2)
924 return -EINVAL;
925 memset(w, 0, sizeof(w));
926 if (r->f0)
927 f[0].mask |= frqt;
928 w[1] = (r->w1_hi << 8) | r->w1_lo;
929 if (len >= 4)
930 w[2] = (r->w2_hi << 1) | r->w2_lo;
931 if (len >= 5)
932 w[3] = (r->w3_hi << 2) | r->w3_lo;
933 if (len >= 6)
934 w[4] = (r->w4_hi << 2) | r->w4_lo;
935 if (len >= 7)
936 w[5] = (r->w5_hi << 2) | r->w5_lo;
937 if (len >= 8)
938 w[6] = (r->w6_hi << 2) | r->w6_lo;
939 if (len >= 9)
940 w[7] = (r->w7_hi << 2) | r->w7_lo;
941 if (len >= 10)
942 w[8] = (r->w8_hi << 1) | r->w8_lo;
943 if (len >= 10)
944 w[9] = r->w9;
945 if (len >= 11)
946 w[10] = r->w10;
947 if (len >= 12)
948 w[11] = (r->w11_hi << 6) | r->w11_lo;
949 if (len >= 13)
950 w[12] = (r->w12_hi << 5) | r->w12_lo;
951 if (len >= 14)
952 w[13] = (r->w13_hi << 4) | r->w13_lo;
953 if (len >= 15)
954 w[14] = (r->w14_hi << 3) | r->w14_lo;
955 if (len >= 16)
956 w[15] = (r->w15_hi << 2) | r->w15_lo;
957 if (len >= 16)
958 w[16] = r->w16;
959 if (w[1])
960 f[w[1]].mask |= frqt;
961 if (w[2])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +0200962 f[smod(w[1] - 512 + w[2], 1023)].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +0200963 if (w[3])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +0200964 f[smod(w[1] + w[3], 1023)].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +0200965 if (w[4])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +0200966 f[smod(w[1] - 512 + smod(w[2] - 256 + w[4], 511), 1023)].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +0200967 if (w[5])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +0200968 f[smod(w[1] + smod(w[3] - 256 + w[5], 511), 1023)].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +0200969 if (w[6])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +0200970 f[smod(w[1] - 512 + smod(w[2] + w[6], 511), 1023)].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +0200971 if (w[7])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +0200972 f[smod(w[1] + smod(w[3] + w[7], 511), 1023)].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +0200973 if (w[8])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +0200974 f[smod(w[1] - 512 + smod(w[2] - 256 + smod(w[4] - 128 + w[8] , 255), 511), 1023)].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +0200975 if (w[9])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +0200976 f[smod(w[1] + smod(w[3] - 256 + smod(w[5] - 128 + w[9] , 255), 511), 1023)].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +0200977 if (w[10])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +0200978 f[smod(w[1] - 512 + smod(w[2] + smod(w[6] - 128 + w[10], 255), 511), 1023)].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +0200979 if (w[11])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +0200980 f[smod(w[1] + smod(w[3] + smod(w[7] - 128 + w[11], 255), 511), 1023)].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +0200981 if (w[12])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +0200982 f[smod(w[1] - 512 + smod(w[2] - 256 + smod(w[4] + w[12], 255), 511), 1023)].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +0200983 if (w[13])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +0200984 f[smod(w[1] + smod(w[3] - 256 + smod(w[5] + w[13], 255), 511), 1023)].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +0200985 if (w[14])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +0200986 f[smod(w[1] - 512 + smod(w[2] + smod(w[6] + w[14], 255), 511), 1023)].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +0200987 if (w[15])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +0200988 f[smod(w[1] + smod(w[3] + smod(w[7] + w[15], 255), 511), 1023)].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +0200989 if (w[16])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +0200990 f[smod(w[1] - 512 + smod(w[2] - 256 + smod(w[4] - 128 + smod(w[8] - 64 + w[16], 127), 255), 511), 1023)].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +0200991
992 return 0;
993 }
994 /* 10..100. */
995 if ((cd[0] & 0xce & mask) == 0x88) {
996 /* Range 512 format */
997 uint16_t w[18]; /* 1..17 */
998 struct gsm48_range_512 *r = (struct gsm48_range_512 *)cd;
999
1000 if (len < 4)
1001 return -EINVAL;
1002 memset(w, 0, sizeof(w));
1003 w[0] = (r->orig_arfcn_hi << 9) | (r->orig_arfcn_mid << 1) | r->orig_arfcn_lo;
1004 w[1] = (r->w1_hi << 2) | r->w1_lo;
1005 if (len >= 5)
1006 w[2] = (r->w2_hi << 2) | r->w2_lo;
1007 if (len >= 6)
1008 w[3] = (r->w3_hi << 2) | r->w3_lo;
1009 if (len >= 7)
1010 w[4] = (r->w4_hi << 1) | r->w4_lo;
1011 if (len >= 7)
1012 w[5] = r->w5;
1013 if (len >= 8)
1014 w[6] = r->w6;
1015 if (len >= 9)
1016 w[7] = (r->w7_hi << 6) | r->w7_lo;
1017 if (len >= 10)
1018 w[8] = (r->w8_hi << 4) | r->w8_lo;
1019 if (len >= 11)
1020 w[9] = (r->w9_hi << 2) | r->w9_lo;
1021 if (len >= 11)
1022 w[10] = r->w10;
1023 if (len >= 12)
1024 w[11] = r->w11;
1025 if (len >= 13)
1026 w[12] = (r->w12_hi << 4) | r->w12_lo;
1027 if (len >= 14)
1028 w[13] = (r->w13_hi << 2) | r->w13_lo;
1029 if (len >= 14)
1030 w[14] = r->w14;
1031 if (len >= 15)
1032 w[15] = r->w15;
1033 if (len >= 16)
1034 w[16] = (r->w16_hi << 3) | r->w16_lo;
1035 if (len >= 16)
1036 w[17] = r->w17;
1037 f[w[0]].mask |= frqt;
1038 if (w[1])
1039 f[(w[0] + w[1]) % 1024].mask |= frqt;
1040 if (w[2])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001041 f[(w[0] + smod(w[1] - 256 + w[2], 511)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001042 if (w[3])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001043 f[(w[0] + smod(w[1] + w[3], 511)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001044 if (w[4])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001045 f[(w[0] + smod(w[1] - 256 + smod(w[2] - 128 + w[4], 255), 511)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001046 if (w[5])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001047 f[(w[0] + smod(w[1] + smod(w[3] - 128 + w[5], 255), 511)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001048 if (w[6])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001049 f[(w[0] + smod(w[1] - 256 + smod(w[2] + w[6], 255), 511)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001050 if (w[7])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001051 f[(w[0] + smod(w[1] + smod(w[3] + w[7], 255), 511)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001052 if (w[8])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001053 f[(w[0] + smod(w[1] - 256 + smod(w[2] - 128 + smod(w[4] - 64 + w[8] , 127), 255), 511)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001054 if (w[9])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001055 f[(w[0] + smod(w[1] + smod(w[3] - 128 + smod(w[5] - 64 + w[9] , 127), 255), 511)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001056 if (w[10])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001057 f[(w[0] + smod(w[1] - 256 + smod(w[2] + smod(w[6] - 64 + w[10], 127), 255), 511)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001058 if (w[11])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001059 f[(w[0] + smod(w[1] + smod(w[3] + smod(w[7] - 64 + w[11], 127), 255), 511)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001060 if (w[12])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001061 f[(w[0] + smod(w[1] - 256 + smod(w[2] - 128 + smod(w[4] + w[12], 127), 255), 511)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001062 if (w[13])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001063 f[(w[0] + smod(w[1] + smod(w[3] - 128 + smod(w[5] + w[13], 127), 255), 511)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001064 if (w[14])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001065 f[(w[0] + smod(w[1] - 256 + smod(w[2] + smod(w[6] + w[14], 127), 255), 511)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001066 if (w[15])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001067 f[(w[0] + smod(w[1] + smod(w[3] + smod(w[7] + w[15], 127), 255), 511)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001068 if (w[16])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001069 f[(w[0] + smod(w[1] - 256 + smod(w[2] - 128 + smod(w[4] - 64 + smod(w[8] - 32 + w[16], 63), 127), 255), 511)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001070 if (w[17])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001071 f[(w[0] + smod(w[1] + smod(w[3] - 128 + smod(w[5] - 64 + smod(w[9] - 32 + w[17], 63), 127), 255), 511)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001072
1073 return 0;
1074 }
1075 /* 10..101. */
1076 if ((cd[0] & 0xce & mask) == 0x8a) {
1077 /* Range 256 format */
1078 uint16_t w[22]; /* 1..21 */
1079 struct gsm48_range_256 *r = (struct gsm48_range_256 *)cd;
1080
1081 if (len < 4)
1082 return -EINVAL;
1083 memset(w, 0, sizeof(w));
1084 w[0] = (r->orig_arfcn_hi << 9) | (r->orig_arfcn_mid << 1) | r->orig_arfcn_lo;
1085 w[1] = (r->w1_hi << 1) | r->w1_lo;
1086 if (len >= 4)
1087 w[2] = r->w2;
1088 if (len >= 5)
1089 w[3] = r->w3;
1090 if (len >= 6)
1091 w[4] = (r->w4_hi << 5) | r->w4_lo;
1092 if (len >= 7)
1093 w[5] = (r->w5_hi << 3) | r->w5_lo;
1094 if (len >= 8)
1095 w[6] = (r->w6_hi << 1) | r->w6_lo;
1096 if (len >= 8)
1097 w[7] = r->w7;
1098 if (len >= 9)
1099 w[8] = (r->w8_hi << 4) | r->w8_lo;
1100 if (len >= 10)
1101 w[9] = (r->w9_hi << 1) | r->w9_lo;
1102 if (len >= 10)
1103 w[10] = r->w10;
1104 if (len >= 11)
1105 w[11] = (r->w11_hi << 3) | r->w11_lo;
1106 if (len >= 11)
1107 w[12] = r->w12;
1108 if (len >= 12)
1109 w[13] = r->w13;
1110 if (len >= 13)
Jacob Erlbeck85bc5492014-01-13 14:21:23 +01001111 w[14] = (r->w14_hi << 2) | r->w14_lo;
Harald Welte1523d702010-08-04 11:46:44 +02001112 if (len >= 13)
Jacob Erlbeck85bc5492014-01-13 14:21:23 +01001113 w[15] = r->w15;
Harald Welte1523d702010-08-04 11:46:44 +02001114 if (len >= 14)
1115 w[16] = (r->w16_hi << 3) | r->w16_lo;
1116 if (len >= 14)
1117 w[17] = r->w17;
1118 if (len >= 15)
Jacob Erlbeck85bc5492014-01-13 14:21:23 +01001119 w[18] = (r->w18_hi << 3) | r->w18_lo;
Harald Welte1523d702010-08-04 11:46:44 +02001120 if (len >= 15)
Jacob Erlbeck85bc5492014-01-13 14:21:23 +01001121 w[19] = r->w19;
Harald Welte1523d702010-08-04 11:46:44 +02001122 if (len >= 16)
1123 w[20] = (r->w20_hi << 3) | r->w20_lo;
1124 if (len >= 16)
1125 w[21] = r->w21;
1126 f[w[0]].mask |= frqt;
1127 if (w[1])
1128 f[(w[0] + w[1]) % 1024].mask |= frqt;
1129 if (w[2])
Sylvain Munaut71fd42f2011-09-01 22:05:29 +02001130 f[(w[0] + smod(w[1] - 128 + w[2], 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001131 if (w[3])
Sylvain Munaut71fd42f2011-09-01 22:05:29 +02001132 f[(w[0] + smod(w[1] + w[3], 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001133 if (w[4])
Sylvain Munaut71fd42f2011-09-01 22:05:29 +02001134 f[(w[0] + smod(w[1] - 128 + smod(w[2] - 64 + w[4], 127), 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001135 if (w[5])
Sylvain Munaut71fd42f2011-09-01 22:05:29 +02001136 f[(w[0] + smod(w[1] + smod(w[3] - 64 + w[5], 127), 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001137 if (w[6])
Sylvain Munaut71fd42f2011-09-01 22:05:29 +02001138 f[(w[0] + smod(w[1] - 128 + smod(w[2] + w[6], 127), 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001139 if (w[7])
Sylvain Munaut71fd42f2011-09-01 22:05:29 +02001140 f[(w[0] + smod(w[1] + smod(w[3] + w[7], 127), 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001141 if (w[8])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001142 f[(w[0] + smod(w[1] - 128 + smod(w[2] - 64 + smod(w[4] - 32 + w[8] , 63), 127), 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001143 if (w[9])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001144 f[(w[0] + smod(w[1] + smod(w[3] - 64 + smod(w[5] - 32 + w[9] , 63), 127), 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001145 if (w[10])
Sylvain Munaut71fd42f2011-09-01 22:05:29 +02001146 f[(w[0] + smod(w[1] - 128 + smod(w[2] + smod(w[6] - 32 + w[10], 63), 127), 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001147 if (w[11])
Sylvain Munaut71fd42f2011-09-01 22:05:29 +02001148 f[(w[0] + smod(w[1] + smod(w[3] + smod(w[7] - 32 + w[11], 63), 127), 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001149 if (w[12])
Sylvain Munaut71fd42f2011-09-01 22:05:29 +02001150 f[(w[0] + smod(w[1] - 128 + smod(w[2] - 64 + smod(w[4] + w[12], 63), 127), 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001151 if (w[13])
Sylvain Munaut71fd42f2011-09-01 22:05:29 +02001152 f[(w[0] + smod(w[1] + smod(w[3] - 64 + smod(w[5] + w[13], 63), 127), 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001153 if (w[14])
Sylvain Munaut71fd42f2011-09-01 22:05:29 +02001154 f[(w[0] + smod(w[1] - 128 + smod(w[2] + smod(w[6] + w[14], 63), 127), 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001155 if (w[15])
Sylvain Munaut71fd42f2011-09-01 22:05:29 +02001156 f[(w[0] + smod(w[1] + smod(w[3] + smod(w[7] + w[15], 63), 127), 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001157 if (w[16])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001158 f[(w[0] + smod(w[1] - 128 + smod(w[2] - 64 + smod(w[4] - 32 + smod(w[8] - 16 + w[16], 31), 63), 127), 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001159 if (w[17])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001160 f[(w[0] + smod(w[1] + smod(w[3] - 64 + smod(w[5] - 32 + smod(w[9] - 16 + w[17], 31), 63), 127), 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001161 if (w[18])
Sylvain Munaut71fd42f2011-09-01 22:05:29 +02001162 f[(w[0] + smod(w[1] - 128 + smod(w[2] + smod(w[6] - 32 + smod(w[10] - 16 + w[18], 31), 63), 127), 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001163 if (w[19])
Sylvain Munaut71fd42f2011-09-01 22:05:29 +02001164 f[(w[0] + smod(w[1] + smod(w[3] + smod(w[7] - 32 + smod(w[11] - 16 + w[19], 31), 63), 127), 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001165 if (w[20])
Sylvain Munaut71fd42f2011-09-01 22:05:29 +02001166 f[(w[0] + smod(w[1] - 128 + smod(w[2] - 64 + smod(w[4] + smod(w[12] - 16 + w[20], 31), 63), 127), 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001167 if (w[21])
Sylvain Munaut71fd42f2011-09-01 22:05:29 +02001168 f[(w[0] + smod(w[1] + smod(w[3] - 64 + smod(w[5] + smod(w[13] - 16 + w[21], 31), 63), 127), 255)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001169
1170 return 0;
1171 }
1172 /* 10..110. */
1173 if ((cd[0] & 0xce & mask) == 0x8c) {
1174 /* Range 128 format */
1175 uint16_t w[29]; /* 1..28 */
1176 struct gsm48_range_128 *r = (struct gsm48_range_128 *)cd;
1177
1178 if (len < 3)
1179 return -EINVAL;
1180 memset(w, 0, sizeof(w));
1181 w[0] = (r->orig_arfcn_hi << 9) | (r->orig_arfcn_mid << 1) | r->orig_arfcn_lo;
1182 w[1] = r->w1;
1183 if (len >= 4)
1184 w[2] = r->w2;
1185 if (len >= 5)
1186 w[3] = (r->w3_hi << 4) | r->w3_lo;
1187 if (len >= 6)
1188 w[4] = (r->w4_hi << 1) | r->w4_lo;
1189 if (len >= 6)
1190 w[5] = r->w5;
1191 if (len >= 7)
1192 w[6] = (r->w6_hi << 3) | r->w6_lo;
1193 if (len >= 7)
1194 w[7] = r->w7;
1195 if (len >= 8)
1196 w[8] = r->w8;
1197 if (len >= 8)
1198 w[9] = r->w9;
1199 if (len >= 9)
1200 w[10] = r->w10;
1201 if (len >= 9)
1202 w[11] = r->w11;
1203 if (len >= 10)
1204 w[12] = r->w12;
1205 if (len >= 10)
1206 w[13] = r->w13;
1207 if (len >= 11)
1208 w[14] = r->w14;
1209 if (len >= 11)
1210 w[15] = r->w15;
1211 if (len >= 12)
1212 w[16] = r->w16;
1213 if (len >= 12)
1214 w[17] = r->w17;
1215 if (len >= 13)
1216 w[18] = (r->w18_hi << 1) | r->w18_lo;
1217 if (len >= 13)
1218 w[19] = r->w19;
1219 if (len >= 13)
1220 w[20] = r->w20;
1221 if (len >= 14)
1222 w[21] = (r->w21_hi << 2) | r->w21_lo;
1223 if (len >= 14)
1224 w[22] = r->w22;
1225 if (len >= 14)
1226 w[23] = r->w23;
1227 if (len >= 15)
1228 w[24] = r->w24;
1229 if (len >= 15)
1230 w[25] = r->w25;
1231 if (len >= 16)
1232 w[26] = (r->w26_hi << 1) | r->w26_lo;
1233 if (len >= 16)
1234 w[27] = r->w27;
1235 if (len >= 16)
1236 w[28] = r->w28;
1237 f[w[0]].mask |= frqt;
1238 if (w[1])
1239 f[(w[0] + w[1]) % 1024].mask |= frqt;
1240 if (w[2])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001241 f[(w[0] + smod(w[1] - 64 + w[2], 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001242 if (w[3])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001243 f[(w[0] + smod(w[1] + w[3], 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001244 if (w[4])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001245 f[(w[0] + smod(w[1] - 64 + smod(w[2] - 32 + w[4], 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001246 if (w[5])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001247 f[(w[0] + smod(w[1] + smod(w[3] - 32 + w[5], 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001248 if (w[6])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001249 f[(w[0] + smod(w[1] - 64 + smod(w[2] + w[6], 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001250 if (w[7])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001251 f[(w[0] + smod(w[1] + smod(w[3] + w[7], 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001252 if (w[8])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001253 f[(w[0] + smod(w[1] - 64 + smod(w[2] - 32 + smod(w[4] - 16 + w[8] , 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001254 if (w[9])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001255 f[(w[0] + smod(w[1] + smod(w[3] - 32 + smod(w[5] - 16 + w[9] , 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001256 if (w[10])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001257 f[(w[0] + smod(w[1] - 64 + smod(w[2] + smod(w[6] - 16 + w[10], 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001258 if (w[11])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001259 f[(w[0] + smod(w[1] + smod(w[3] + smod(w[7] - 16 + w[11], 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001260 if (w[12])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001261 f[(w[0] + smod(w[1] - 64 + smod(w[2] - 32 + smod(w[4] + w[12], 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001262 if (w[13])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001263 f[(w[0] + smod(w[1] + smod(w[3] - 32 + smod(w[5] + w[13], 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001264 if (w[14])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001265 f[(w[0] + smod(w[1] - 64 + smod(w[2] + smod(w[6] + w[14], 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001266 if (w[15])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001267 f[(w[0] + smod(w[1] + smod(w[3] + smod(w[7] + w[15], 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001268 if (w[16])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001269 f[(w[0] + smod(w[1] - 64 + smod(w[2] - 32 + smod(w[4] - 16 + smod(w[8] - 8 + w[16], 15), 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001270 if (w[17])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001271 f[(w[0] + smod(w[1] + smod(w[3] - 32 + smod(w[5] - 16 + smod(w[9] - 8 + w[17], 15), 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001272 if (w[18])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001273 f[(w[0] + smod(w[1] - 64 + smod(w[2] + smod(w[6] - 16 + smod(w[10] - 8 + w[18], 15), 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001274 if (w[19])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001275 f[(w[0] + smod(w[1] + smod(w[3] + smod(w[7] - 16 + smod(w[11] - 8 + w[19], 15), 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001276 if (w[20])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001277 f[(w[0] + smod(w[1] - 64 + smod(w[2] - 32 + smod(w[4] + smod(w[12] - 8 + w[20], 15), 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001278 if (w[21])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001279 f[(w[0] + smod(w[1] + smod(w[3] - 32 + smod(w[5] + smod(w[13] - 8 + w[21], 15), 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001280 if (w[22])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001281 f[(w[0] + smod(w[1] - 64 + smod(w[2] + smod(w[6] + smod(w[14] - 8 + w[22], 15), 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001282 if (w[23])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001283 f[(w[0] + smod(w[1] + smod(w[3] + smod(w[7] + smod(w[15] - 8 + w[23], 15), 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001284 if (w[24])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001285 f[(w[0] + smod(w[1] - 64 + smod(w[2] - 32 + smod(w[4] - 16 + smod(w[8] + w[24], 15), 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001286 if (w[25])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001287 f[(w[0] + smod(w[1] + smod(w[3] - 32 + smod(w[5] - 16 + smod(w[9] + w[25], 15), 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001288 if (w[26])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001289 f[(w[0] + smod(w[1] - 64 + smod(w[2] + smod(w[6] - 16 + smod(w[10] + w[26], 15), 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001290 if (w[27])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001291 f[(w[0] + smod(w[1] + smod(w[3] + smod(w[7] - 16 + smod(w[11] + w[27], 15), 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001292 if (w[28])
Andreas.Eversbergeaac0cf2011-09-02 20:12:19 +02001293 f[(w[0] + smod(w[1] - 64 + smod(w[2] - 32 + smod(w[4] + smod(w[12] + w[28], 15), 31), 63), 127)) % 1024].mask |= frqt;
Harald Welte1523d702010-08-04 11:46:44 +02001294
1295 return 0;
1296 }
1297 /* 10..111. */
1298 if ((cd[0] & 0xce & mask) == 0x8e) {
1299 /* Variable bitmap format (can be any length >= 3) */
1300 uint16_t orig = 0;
1301 struct gsm48_var_bit *r = (struct gsm48_var_bit *)cd;
1302
1303 if (len < 3)
1304 return -EINVAL;
1305 orig = (r->orig_arfcn_hi << 9) | (r->orig_arfcn_mid << 1) | r->orig_arfcn_lo;
1306 f[orig].mask |= frqt;
1307 for (i = 1; 2 + (i >> 3) < len; i++)
1308 if ((cd[2 + (i >> 3)] & (0x80 >> (i & 7))))
1309 f[(orig + i) % 1024].mask |= frqt;
1310
1311 return 0;
1312 }
1313
1314 return 0;
1315}
Philipp Maiere36be562020-11-12 11:33:54 +01001316
1317/*! Decode 3GPP TS 24.008 Mobile Station Classmark 3 (10.5.1.7).
1318 * \param[out] classmark3_out user provided memory to store decoded classmark3.
1319 * \param[in] classmark3 pointer to memory that contains the raw classmark bits.
1320 * \param[in] classmark3_len length in bytes of the memory where classmark3 points to.
1321 * \returns 0 on success; negative on error. */
1322int gsm48_decode_classmark3(struct gsm48_classmark3 *classmark3_out,
1323 const uint8_t *classmark3, size_t classmark3_len)
1324{
1325 struct bitvec bv;
1326 uint8_t data[255];
1327 struct gsm48_classmark3 *cm3 = classmark3_out;
1328
1329 /* if cm3 gets extended by spec, it will be truncated, but 255 bytes
1330 * should be more than enough. */
1331 if (classmark3_len > sizeof(data))
1332 classmark3_len = sizeof(data);
1333
1334 memset(&bv, 0, sizeof(bv));
1335 memset(data, 0, sizeof(data));
1336 memset(classmark3_out, 0, sizeof(*classmark3_out));
1337
1338 memcpy(data, classmark3, classmark3_len);
1339 bv.data = (uint8_t*) data;
1340 bv.data_len = sizeof(data);
1341
1342 /* Parse bit vector, see also: 3GPP TS 24.008, section 10.5.1.7 */
1343 bitvec_get_uint(&bv, 1);
1344 cm3->mult_band_supp = bitvec_get_uint(&bv, 3);
1345 switch (cm3->mult_band_supp) {
1346 case 0x00:
1347 cm3->a5_bits = bitvec_get_uint(&bv, 4);
1348 break;
1349 case 0x05:
1350 case 0x06:
1351 cm3->a5_bits = bitvec_get_uint(&bv, 4);
1352 cm3->assoc_radio_cap_2 = bitvec_get_uint(&bv, 4);
1353 cm3->assoc_radio_cap_1 = bitvec_get_uint(&bv, 4);
1354 break;
1355 case 0x01:
1356 case 0x02:
1357 case 0x04:
1358 cm3->a5_bits = bitvec_get_uint(&bv, 4);
1359 bitvec_get_uint(&bv, 4);
1360 cm3->assoc_radio_cap_1 = bitvec_get_uint(&bv, 4);
1361 break;
1362 default:
1363 return -1;
1364 }
1365
1366 cm3->r_support.present = bitvec_get_uint(&bv, 1);
1367 if (cm3->r_support.present)
1368 cm3->r_support.r_gsm_assoc_radio_cap = bitvec_get_uint(&bv, 3);
1369
1370 cm3->hscsd_mult_slot_cap.present = bitvec_get_uint(&bv, 1);
1371 if (cm3->hscsd_mult_slot_cap.present)
1372 cm3->hscsd_mult_slot_cap.mslot_class = bitvec_get_uint(&bv, 5);
1373
1374 cm3->ucs2_treatment = bitvec_get_uint(&bv, 1);
1375 cm3->extended_meas_cap = bitvec_get_uint(&bv, 1);
1376
1377 cm3->ms_meas_cap.present = bitvec_get_uint(&bv, 1);
1378 if (cm3->ms_meas_cap.present) {
1379 cm3->ms_meas_cap.sms_value = bitvec_get_uint(&bv, 4);
1380 cm3->ms_meas_cap.sm_value = bitvec_get_uint(&bv, 4);
1381 }
1382
1383 cm3->ms_pos_method_cap.present = bitvec_get_uint(&bv, 1);
1384 if (cm3->ms_pos_method_cap.present)
1385 cm3->ms_pos_method_cap.method = bitvec_get_uint(&bv, 5);
1386
1387 cm3->ecsd_multislot_cap.present = bitvec_get_uint(&bv, 1);
1388 if (cm3->ecsd_multislot_cap.present)
1389 cm3->ecsd_multislot_cap.mslot_class = bitvec_get_uint(&bv, 5);
1390
1391 cm3->psk8_struct.present = bitvec_get_uint(&bv, 1);
1392 if (cm3->psk8_struct.present) {
1393 cm3->psk8_struct.mod_cap = bitvec_get_uint(&bv, 1);
1394
1395 cm3->psk8_struct.rf_pwr_cap_1.present = bitvec_get_uint(&bv, 1);
1396 if (cm3->psk8_struct.rf_pwr_cap_1.present) {
1397 cm3->psk8_struct.rf_pwr_cap_1.value =
1398 bitvec_get_uint(&bv, 2);
1399 }
1400
1401 cm3->psk8_struct.rf_pwr_cap_2.present = bitvec_get_uint(&bv, 1);
1402 if (cm3->psk8_struct.rf_pwr_cap_2.present) {
1403 cm3->psk8_struct.rf_pwr_cap_2.value =
1404 bitvec_get_uint(&bv, 2);
1405 }
1406 }
1407
1408 cm3->gsm_400_bands_supp.present = bitvec_get_uint(&bv, 1);
1409 if (cm3->gsm_400_bands_supp.present) {
1410 cm3->gsm_400_bands_supp.value = bitvec_get_uint(&bv, 2);
1411 if (cm3->gsm_400_bands_supp.value == 0x00)
1412 return -1;
1413 cm3->gsm_400_bands_supp.assoc_radio_cap =
1414 bitvec_get_uint(&bv, 4);
1415 }
1416
1417 cm3->gsm_850_assoc_radio_cap.present = bitvec_get_uint(&bv, 1);
1418 if (cm3->gsm_850_assoc_radio_cap.present)
1419 cm3->gsm_850_assoc_radio_cap.value = bitvec_get_uint(&bv, 4);
1420
1421 cm3->gsm_1900_assoc_radio_cap.present = bitvec_get_uint(&bv, 1);
1422 if (cm3->gsm_1900_assoc_radio_cap.present)
1423 cm3->gsm_1900_assoc_radio_cap.value = bitvec_get_uint(&bv, 4);
1424
1425 cm3->umts_fdd_rat_cap = bitvec_get_uint(&bv, 1);
1426 cm3->umts_tdd_rat_cap = bitvec_get_uint(&bv, 1);
1427 cm3->cdma200_rat_cap = bitvec_get_uint(&bv, 1);
1428
1429 cm3->dtm_gprs_multislot_cap.present = bitvec_get_uint(&bv, 1);
1430 if (cm3->dtm_gprs_multislot_cap.present) {
1431 cm3->dtm_gprs_multislot_cap.mslot_class = bitvec_get_uint(&bv, 2);
1432 cm3->dtm_gprs_multislot_cap.single_slot_dtm =
1433 bitvec_get_uint(&bv, 1);
1434 cm3->dtm_gprs_multislot_cap.dtm_egprs_multislot_cap.present =
1435 bitvec_get_uint(&bv, 1);
1436 if (cm3->dtm_gprs_multislot_cap.dtm_egprs_multislot_cap.present)
1437 cm3->dtm_gprs_multislot_cap.dtm_egprs_multislot_cap.
1438 mslot_class = bitvec_get_uint(&bv, 2);
1439 }
1440
1441 /* Release 4 starts here. */
1442 cm3->single_band_supp.present = bitvec_get_uint(&bv, 1);
1443 if (cm3->single_band_supp.present)
1444 cm3->single_band_supp.value = bitvec_get_uint(&bv, 4);
1445
1446 cm3->gsm_750_assoc_radio_cap.present = bitvec_get_uint(&bv, 1);
1447 if (cm3->gsm_750_assoc_radio_cap.present)
1448 cm3->gsm_750_assoc_radio_cap.value = bitvec_get_uint(&bv, 4);
1449
1450 cm3->umts_1_28_mcps_tdd_rat_cap = bitvec_get_uint(&bv, 1);
1451 cm3->geran_feature_package = bitvec_get_uint(&bv, 1);
1452
1453 cm3->extended_dtm_gprs_multislot_cap.present = bitvec_get_uint(&bv, 1);
1454 if (cm3->extended_dtm_gprs_multislot_cap.present) {
1455 cm3->extended_dtm_gprs_multislot_cap.mslot_class =
1456 bitvec_get_uint(&bv, 2);
1457 cm3->extended_dtm_gprs_multislot_cap.
1458 extended_dtm_egprs_multislot_cap.present =
1459 bitvec_get_uint(&bv, 1);
1460 if (cm3->extended_dtm_gprs_multislot_cap.
1461 extended_dtm_egprs_multislot_cap.present)
1462 cm3->extended_dtm_gprs_multislot_cap.
1463 extended_dtm_egprs_multislot_cap.mslot_class =
1464 bitvec_get_uint(&bv, 2);
1465 }
1466
1467 /* Release 5 starts here */
1468 cm3->high_multislot_cap.present = bitvec_get_uint(&bv, 1);
1469 if (cm3->high_multislot_cap.present)
1470 cm3->high_multislot_cap.value = bitvec_get_uint(&bv, 2);
1471
1472 /* This used to be the GERAN Iu mode support bit, but the newer spec
1473 * releases say that it should not be used (always zero), however
1474 * we will just ignore tha state of this bit. */
1475 bitvec_get_uint(&bv, 1);
1476
1477 cm3->geran_feature_package_2 = bitvec_get_uint(&bv, 1);
1478 cm3->gmsk_multislot_power_prof = bitvec_get_uint(&bv, 2);
1479 cm3->psk8_multislot_power_prof = bitvec_get_uint(&bv, 2);
1480
1481 /* Release 6 starts here */
1482 cm3->t_gsm_400_bands_supp.present = bitvec_get_uint(&bv, 1);
1483 if (cm3->t_gsm_400_bands_supp.present) {
1484 cm3->t_gsm_400_bands_supp.value = bitvec_get_uint(&bv, 2);
1485 cm3->t_gsm_400_bands_supp.assoc_radio_cap =
1486 bitvec_get_uint(&bv, 4);
1487 }
1488
1489 /* This used to be T-GSM 900 associated radio capability, but the
1490 * newer spec releases say that this bit should not be used, but if
1491 * it is used by some MS anyway we must assume that there is data
1492 * we have to override. */
1493 if (bitvec_get_uint(&bv, 1))
1494 bitvec_get_uint(&bv, 4);
1495
1496 cm3->dl_advanced_rx_perf = bitvec_get_uint(&bv, 2);
1497 cm3->dtm_enhancements_cap = bitvec_get_uint(&bv, 1);
1498
1499 cm3->dtm_gprs_high_multislot_cap.present = bitvec_get_uint(&bv, 1);
1500 if (cm3->dtm_gprs_high_multislot_cap.present) {
1501 cm3->dtm_gprs_high_multislot_cap.mslot_class =
1502 bitvec_get_uint(&bv, 3);
1503 cm3->dtm_gprs_high_multislot_cap.offset_required =
1504 bitvec_get_uint(&bv, 1);
1505 cm3->dtm_gprs_high_multislot_cap.dtm_egprs_high_multislot_cap.
1506 present = bitvec_get_uint(&bv, 1);
1507 if (cm3->dtm_gprs_high_multislot_cap.
1508 dtm_egprs_high_multislot_cap.present)
1509 cm3->dtm_gprs_high_multislot_cap.
1510 dtm_egprs_high_multislot_cap.mslot_class =
1511 bitvec_get_uint(&bv, 3);
1512 }
1513
1514 cm3->repeated_acch_capability = bitvec_get_uint(&bv, 1);
1515
1516 /* Release 7 starts here */
1517 cm3->gsm_710_assoc_radio_cap.present = bitvec_get_uint(&bv, 1);
1518 if (cm3->gsm_710_assoc_radio_cap.present)
1519 cm3->gsm_710_assoc_radio_cap.value = bitvec_get_uint(&bv, 4);
1520
1521 cm3->t_gsm_810_assoc_radio_cap.present = bitvec_get_uint(&bv, 1);
1522 if (cm3->t_gsm_810_assoc_radio_cap.present)
1523 cm3->t_gsm_810_assoc_radio_cap.value = bitvec_get_uint(&bv, 4);
1524
1525 cm3->ciphering_mode_setting_cap = bitvec_get_uint(&bv, 1);
1526 cm3->add_pos_cap = bitvec_get_uint(&bv, 1);
1527
1528 /* Release 8 starts here */
1529 cm3->e_utra_fdd_supp = bitvec_get_uint(&bv, 1);
1530 cm3->e_utra_tdd_supp = bitvec_get_uint(&bv, 1);
1531 cm3->e_utra_meas_rep_supp = bitvec_get_uint(&bv, 1);
1532 cm3->prio_resel_supp = bitvec_get_uint(&bv, 1);
1533
1534 /* Release 9 starts here */
1535 cm3->utra_csg_cells_rep = bitvec_get_uint(&bv, 1);
1536
1537 cm3->vamos_level = bitvec_get_uint(&bv, 2);
1538
1539 /* Release 10 starts here */
1540 cm3->tighter_capability = bitvec_get_uint(&bv, 2);
1541 cm3->sel_ciph_dl_sacch = bitvec_get_uint(&bv, 1);
1542
1543 /* Release 11 starts here */
1544 cm3->cs_ps_srvcc_geran_utra = bitvec_get_uint(&bv, 2);
1545 cm3->cs_ps_srvcc_geran_eutra = bitvec_get_uint(&bv, 2);
1546
1547 cm3->geran_net_sharing = bitvec_get_uint(&bv, 1);
1548 cm3->e_utra_wb_rsrq_meas_supp = bitvec_get_uint(&bv, 1);
1549
1550 /* Release 12 starts here */
1551 cm3->er_band_support = bitvec_get_uint(&bv, 1);
1552 cm3->utra_mult_band_ind_supp = bitvec_get_uint(&bv, 1);
1553 cm3->e_utra_mult_band_ind_supp = bitvec_get_uint(&bv, 1);
1554 cm3->extended_tsc_set_cap_supp = bitvec_get_uint(&bv, 1);
1555
1556 /* Late addition of a release 11 feature */
1557 cm3->extended_earfcn_val_range = bitvec_get_uint(&bv, 1);
1558
1559 return 0;
1560}
Harald Welte96e2a002017-06-12 21:44:18 +02001561/*! @} */