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Harald Weltec8a0b932012-08-24 21:27:26 +02001/*
2 * (C) 2012 by Harald Welte <laforge@gnumonks.org>
3 * All Rights Reserved
4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation; either version 2 of the License, or
8 * (at your option) any later version.
9 *
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
14 *
Harald Weltec8a0b932012-08-24 21:27:26 +020015 */
16
Neels Hofmeyr30856ca2020-06-16 13:17:20 +020017#pragma GCC diagnostic ignored "-Wdeprecated-declarations"
18
Harald Weltec8a0b932012-08-24 21:27:26 +020019#include <string.h>
20#include <stdio.h>
Holger Hans Peter Freythercd252e32013-07-03 09:56:53 +020021#include <stdlib.h>
Harald Weltec8a0b932012-08-24 21:27:26 +020022
23#include <osmocom/gsm/protocol/gsm_04_08.h>
24#include <osmocom/gsm/gsm48_ie.h>
Holger Hans Peter Freythercd252e32013-07-03 09:56:53 +020025#include <osmocom/gsm/gsm48.h>
Stefan Sperlingfdf8b7b2018-07-27 12:19:15 +020026#include <osmocom/gsm/gsm48_arfcn_range_encode.h>
Pau Espin Pedrolb99f4ca2019-10-31 13:35:22 +010027#include <osmocom/gsm/gsm_utils.h>
Harald Weltec8a0b932012-08-24 21:27:26 +020028#include <osmocom/gsm/mncc.h>
Holger Hans Peter Freythercd252e32013-07-03 09:56:53 +020029#include <osmocom/core/backtrace.h>
Harald Weltec8a0b932012-08-24 21:27:26 +020030#include <osmocom/core/utils.h>
31#include <osmocom/core/msgb.h>
32
33
34static const uint8_t csd_9600_v110_lv[] = { 0x07, 0xa1, 0xb8, 0x89, 0x21, 0x15, 0x63, 0x80 };
35
36static const struct gsm_mncc_bearer_cap bcap_csd_9600_v110 = {
37 .transfer = GSM48_BCAP_ITCAP_UNR_DIG_INF,
38 .mode = GSM48_BCAP_TMOD_CIRCUIT,
39 .coding = GSM48_BCAP_CODING_GSM_STD,
40 .radio = GSM48_BCAP_RRQ_FR_ONLY,
41 .speech_ver[0]= -1,
42 .data = {
43 .rate_adaption = GSM48_BCAP_RA_V110_X30,
44 .sig_access = GSM48_BCAP_SA_I440_I450,
45 .async = 1,
46 .nr_stop_bits = 1,
47 .nr_data_bits = 8,
48 .user_rate = GSM48_BCAP_UR_9600,
49 .parity = GSM48_BCAP_PAR_NONE,
50 .interm_rate = GSM48_BCAP_IR_16k,
51 .transp = GSM48_BCAP_TR_TRANSP,
52 .modem_type = GSM48_BCAP_MT_NONE,
53 },
54};
55
56static const uint8_t speech_all_lv[] = { 0x06, 0x60, 0x04, 0x02, 0x00, 0x05, 0x81 };
57
58static const struct gsm_mncc_bearer_cap bcap_speech_all = {
59 .transfer = GSM48_BCAP_ITCAP_SPEECH,
60 .mode = GSM48_BCAP_TMOD_CIRCUIT,
61 .coding = GSM48_BCAP_CODING_GSM_STD,
62 .radio = GSM48_BCAP_RRQ_DUAL_FR,
63 .speech_ver = {
64 4, 2, 0, 5, 1, -1,
65 },
66};
67
Vadim Yanitskiy95fc8ea2022-07-03 05:41:02 +070068static const uint8_t speech_no3a_lv[] = { 0x01, 0xa0 };
69
70static const struct gsm_mncc_bearer_cap bcap_speech_no3a = {
71 .transfer = GSM48_BCAP_ITCAP_SPEECH,
72 .mode = GSM48_BCAP_TMOD_CIRCUIT,
73 .coding = GSM48_BCAP_CODING_GSM_STD,
74 .radio = GSM48_BCAP_RRQ_FR_ONLY,
75 .speech_ver = {
76 0, -1,
77 },
78};
79
Harald Weltec8a0b932012-08-24 21:27:26 +020080
81struct bcap_test {
82 const uint8_t *lv;
83 const struct gsm_mncc_bearer_cap *bc;
84 const char *name;
85};
86
87static const struct bcap_test bcap_tests[] = {
88 { csd_9600_v110_lv, &bcap_csd_9600_v110, "CSD 9600/V.110/transparent" },
89 { speech_all_lv, &bcap_speech_all, "Speech, all codecs" },
Vadim Yanitskiy95fc8ea2022-07-03 05:41:02 +070090 { speech_no3a_lv, &bcap_speech_no3a, "Speech, without octet 3a" },
Harald Weltec8a0b932012-08-24 21:27:26 +020091};
92
93static int test_bearer_cap()
94{
95 struct gsm_mncc_bearer_cap bc;
96 int i, rc;
97
98 for (i = 0; i < ARRAY_SIZE(bcap_tests); i++) {
99 struct msgb *msg = msgb_alloc(100, "test");
Vadim Yanitskiy1a077cb2022-07-03 05:53:28 +0700100 bool pass = false;
Harald Weltec8a0b932012-08-24 21:27:26 +0200101 int lv_len;
102
103 memset(&bc, 0, sizeof(bc));
104
105 /* test decoding */
106 rc = gsm48_decode_bearer_cap(&bc, bcap_tests[i].lv);
107 if (rc < 0) {
108 fprintf(stderr, "Error decoding %s\n",
109 bcap_tests[i].name);
Vadim Yanitskiy1a077cb2022-07-03 05:53:28 +0700110 goto verdict;
Harald Weltec8a0b932012-08-24 21:27:26 +0200111 }
112 if (memcmp(&bc, bcap_tests[i].bc, sizeof(bc))) {
113 fprintf(stderr, "Incorrect decoded result of %s:\n",
114 bcap_tests[i].name);
115 fprintf(stderr, " should: %s\n",
116 osmo_hexdump((uint8_t *) bcap_tests[i].bc, sizeof(bc)));
117 fprintf(stderr, " is: %s\n",
118 osmo_hexdump((uint8_t *) &bc, sizeof(bc)));
Vadim Yanitskiy1a077cb2022-07-03 05:53:28 +0700119 goto verdict;
Harald Weltec8a0b932012-08-24 21:27:26 +0200120 }
121
122 /* also test re-encode? */
123 rc = gsm48_encode_bearer_cap(msg, 1, &bc);
124 if (rc < 0) {
125 fprintf(stderr, "Error encoding %s\n",
126 bcap_tests[i].name);
Vadim Yanitskiy1a077cb2022-07-03 05:53:28 +0700127 goto verdict;
Harald Weltec8a0b932012-08-24 21:27:26 +0200128 }
129 lv_len = bcap_tests[i].lv[0]+1;
130 if (memcmp(msg->data, bcap_tests[i].lv, lv_len)) {
131 fprintf(stderr, "Incorrect encoded result of %s:\n",
132 bcap_tests[i].name);
133 fprintf(stderr, " should: %s\n",
134 osmo_hexdump(bcap_tests[i].lv, lv_len));
135 fprintf(stderr, " is: %s\n",
136 osmo_hexdump(msg->data, msg->len));
Vadim Yanitskiy1a077cb2022-07-03 05:53:28 +0700137 goto verdict;
Harald Weltec8a0b932012-08-24 21:27:26 +0200138 }
139
Vadim Yanitskiy1a077cb2022-07-03 05:53:28 +0700140 /* all checks passed */
141 pass = true;
142
143verdict:
144 printf("Test `%s' %sed\n", bcap_tests[i].name, pass ? "pass" : "fail");
Harald Weltec8a0b932012-08-24 21:27:26 +0200145 msgb_free(msg);
146 }
147
148 return 0;
149}
150
Max99377c22017-08-30 19:17:50 +0200151static inline void dump_ra(const struct gprs_ra_id *raid)
152{
Neels Hofmeyrdbb25132018-02-20 15:12:23 +0100153 printf("%s%s\n", osmo_rai_name(raid), raid->mnc_3_digits ? " (3-digit MNC)" : "");
Max99377c22017-08-30 19:17:50 +0200154}
155
156static inline void check_ra(const struct gprs_ra_id *raid)
157{
Maxf1ad60e2018-01-05 14:19:33 +0100158 struct gsm48_ra_id ra;
Max99377c22017-08-30 19:17:50 +0200159 struct gprs_ra_id raid0 = {
160 .mnc = 0,
161 .mcc = 0,
162 .lac = 0,
163 .rac = 0,
164 };
165
Maxf1ad60e2018-01-05 14:19:33 +0100166 gsm48_encode_ra(&ra, raid);
167 printf("Constructed RA:\n");
Max99377c22017-08-30 19:17:50 +0200168
Maxf1ad60e2018-01-05 14:19:33 +0100169 gsm48_parse_ra(&raid0, (const uint8_t *)&ra);
Max99377c22017-08-30 19:17:50 +0200170 dump_ra(raid);
Neels Hofmeyrc38b32d2018-02-20 15:13:18 +0100171 printf("MCC+MNC in BCD: %s\n", osmo_hexdump(ra.digits, sizeof(ra.digits)));
Max99377c22017-08-30 19:17:50 +0200172 dump_ra(&raid0);
173 printf("RA test...");
Neels Hofmeyrdbb25132018-02-20 15:12:23 +0100174 if (raid->mnc != raid0.mnc || raid->mcc != raid0.mcc || raid->lac != raid0.lac || raid->rac != raid0.rac
175 || (raid->mnc_3_digits || raid->mnc > 99) != raid0.mnc_3_digits)
Max99377c22017-08-30 19:17:50 +0200176 printf("FAIL\n");
177 else
178 printf("passed\n");
179}
180
Neels Hofmeyrd5a577b2018-02-20 21:48:07 +0100181static inline void check_lai(const struct gprs_ra_id *raid)
182{
183 int rc;
184 struct gsm48_loc_area_id lai = {};
185 struct gprs_ra_id decoded = {};
186 struct gprs_ra_id _laid = *raid;
187 struct gprs_ra_id *laid = &_laid;
188 laid->rac = 0;
189
190 printf("- gsm48_generate_lai() from "); dump_ra(laid);
191
192 gsm48_generate_lai(&lai, laid->mcc, laid->mnc, laid->lac);
193 printf(" Encoded %s\n", osmo_hexdump((unsigned char*)&lai, sizeof(lai)));
194 rc = gsm48_decode_lai(&lai, &decoded.mcc, &decoded.mnc, &decoded.lac);
195 if (rc) {
196 printf(" gsm48_decode_lai() returned %d --> FAIL\n", rc);
197 return;
198 }
199 printf(" gsm48_decode_lai() gives "); dump_ra(&decoded);
200 if (decoded.mcc == laid->mcc
201 && decoded.mnc == laid->mnc
202 && decoded.lac == laid->lac)
203 printf(" passed\n");
204 else
205 printf(" FAIL\n");
206}
207
Neels Hofmeyr4566f4e2018-02-20 22:19:56 +0100208static inline void dump_lai(const struct osmo_location_area_id *lai)
209{
210 printf("%s%s\n", osmo_lai_name(lai), lai->plmn.mnc_3_digits ? " (3-digit MNC)" : "");
211}
212
213static inline void check_lai2(const struct gprs_ra_id *raid)
214{
215 struct gsm48_loc_area_id lai = {};
216 struct osmo_location_area_id decoded = {};
217 struct osmo_location_area_id laid = {
218 .plmn = {
219 .mcc = raid->mcc,
220 .mnc = raid->mnc,
221 .mnc_3_digits = raid->mnc_3_digits,
222 },
223 .lac = raid->lac,
224 };
225
226 printf("- gsm48_generate_lai2() from "); dump_lai(&laid);
227
228 gsm48_generate_lai2(&lai, &laid);
229 printf(" Encoded %s\n", osmo_hexdump((unsigned char*)&lai, sizeof(lai)));
230 gsm48_decode_lai2(&lai, &decoded);
231 printf(" gsm48_decode_lai2() gives "); dump_lai(&decoded);
232 if (decoded.plmn.mcc == laid.plmn.mcc
233 && decoded.plmn.mnc == laid.plmn.mnc
234 && decoded.lac == laid.lac
235 && decoded.plmn.mnc_3_digits == (laid.plmn.mnc_3_digits || laid.plmn.mnc > 99))
236 printf(" passed\n");
237 else
238 printf(" FAIL\n");
239}
240
Neels Hofmeyr22da1452018-02-20 15:11:25 +0100241static struct gprs_ra_id test_ra_cap_items[] = {
242 {
Max99377c22017-08-30 19:17:50 +0200243 .mcc = 77,
Neels Hofmeyr0bf93a62018-02-20 22:06:56 +0100244 .mnc = 121,
Max99377c22017-08-30 19:17:50 +0200245 .lac = 666,
246 .rac = 5,
Neels Hofmeyr22da1452018-02-20 15:11:25 +0100247 },
248 {
Max99377c22017-08-30 19:17:50 +0200249 .mcc = 84,
Neels Hofmeyr0bf93a62018-02-20 22:06:56 +0100250 .mnc = 98,
Max99377c22017-08-30 19:17:50 +0200251 .lac = 11,
252 .rac = 89,
Neels Hofmeyr22da1452018-02-20 15:11:25 +0100253 },
Neels Hofmeyrb9fd7eb2018-02-20 15:14:03 +0100254 {
255 .mcc = 0,
256 .mnc = 0,
257 .lac = 0,
258 .rac = 0,
Neels Hofmeyr6c7b3e22018-02-20 22:20:42 +0100259 .mnc_3_digits = false,
260 /* expecting 000-00, BCD = 00 f0 00 */
261 },
262 {
263 .mcc = 0,
264 .mnc = 0,
265 .lac = 0,
266 .rac = 0,
267 .mnc_3_digits = true,
268 /* expecting 000-000, BCD = 00 00 00 */
Neels Hofmeyrb9fd7eb2018-02-20 15:14:03 +0100269 },
270 {
271 .mcc = 999,
272 .mnc = 999,
273 .lac = 65535,
274 .rac = 255,
275 },
Neels Hofmeyr6c7b3e22018-02-20 22:20:42 +0100276 {
277 .mcc = 1,
278 .mnc = 2,
279 .lac = 23,
280 .rac = 42,
281 .mnc_3_digits = false,
282 /* expecting 001-02, BCD = 00 f1 20 */
283 },
284 {
285 .mcc = 1,
286 .mnc = 2,
287 .lac = 23,
288 .rac = 42,
289 .mnc_3_digits = true,
290 /* expecting 001-002, BCD = 00 21 00 */
291 },
292 {
293 .mcc = 12,
294 .mnc = 34,
295 .lac = 56,
296 .rac = 78,
297 .mnc_3_digits = false,
298 /* expecting 012-34, BCD = 10 f2 43 */
299 },
300 {
301 .mcc = 12,
302 .mnc = 34,
303 .lac = 23,
304 .rac = 42,
305 .mnc_3_digits = true,
306 /* expecting 012-034, BCD = 10 42 30 */
307 },
308 {
309 .mcc = 123,
310 .mnc = 456,
311 .lac = 23,
312 .rac = 42,
313 .mnc_3_digits = false,
314 /* expecting 123-456, BCD = 21 63 54 (false flag has no effect) */
315 },
316 {
317 .mcc = 123,
318 .mnc = 456,
319 .lac = 23,
320 .rac = 42,
321 .mnc_3_digits = true,
322 /* expecting 123-456, BCD = 21 63 54 (same) */
323 },
Neels Hofmeyr22da1452018-02-20 15:11:25 +0100324};
Max99377c22017-08-30 19:17:50 +0200325
Neels Hofmeyr22da1452018-02-20 15:11:25 +0100326static void test_ra_cap(void)
327{
328 int i;
329
330 for (i = 0; i < ARRAY_SIZE(test_ra_cap_items); i++)
331 check_ra(&test_ra_cap_items[i]);
Max99377c22017-08-30 19:17:50 +0200332}
333
Neels Hofmeyrd5a577b2018-02-20 21:48:07 +0100334static void test_lai_encode_decode(void)
335{
336 int i;
337
338 for (i = 0; i < ARRAY_SIZE(test_ra_cap_items); i++) {
339 check_lai(&test_ra_cap_items[i]);
Neels Hofmeyr4566f4e2018-02-20 22:19:56 +0100340 check_lai2(&test_ra_cap_items[i]);
Neels Hofmeyrd5a577b2018-02-20 21:48:07 +0100341 }
342}
343
Philipp Maiere36be562020-11-12 11:33:54 +0100344static void dump_cm3(struct gsm48_classmark3 *cm3)
345{
346 printf("mult_band_supp=%02x\n", cm3->mult_band_supp);
347 printf("a5_bits=%02x\n", cm3->a5_bits);
348 printf("assoc_radio_cap_1=%02x\n", cm3->assoc_radio_cap_1);
349 printf("assoc_radio_cap_2=%02x\n", cm3->assoc_radio_cap_2);
350 printf("\n");
351 printf("r_support.present=%u\n", cm3->r_support.present);
352 printf("r_support.r_gsm_assoc_radio_cap=%02x\n",
353 cm3->r_support.r_gsm_assoc_radio_cap);
354 printf("\n");
355 printf("hscsd_mult_slot_cap.present=%u\n",
356 cm3->hscsd_mult_slot_cap.present);
357 printf("hscsd_mult_slot_cap.mslot_class=%02x\n",
358 cm3->hscsd_mult_slot_cap.mslot_class);
359 printf("\n");
360 printf("ucs2_treatment=%u\n", cm3->ucs2_treatment);
361 printf("extended_meas_cap=%u\n", cm3->extended_meas_cap);
362 printf("\n");
363 printf("ms_meas_cap.present=%u\n", cm3->ms_meas_cap.present);
364 printf("ms_meas_cap.sms_value=%02x\n", cm3->ms_meas_cap.sms_value);
365 printf("ms_meas_cap.sm_value=%02x\n", cm3->ms_meas_cap.sm_value);
366 printf("\n");
367 printf("ms_pos_method_cap.present=%u\n",
368 cm3->ms_pos_method_cap.present);
369 printf("ms_pos_method_cap.method=%02x\n",
370 cm3->ms_pos_method_cap.method);
371 printf("\n");
372 printf("ecsd_multislot_cap.present=%u\n",
373 cm3->ecsd_multislot_cap.present);
374 printf("ecsd_multislot_cap.mslot_class=%02x\n",
375 cm3->ecsd_multislot_cap.mslot_class);
376 printf("\n");
377 printf("psk8_struct.present=%u\n", cm3->psk8_struct.present);
378 printf("psk8_struct.mod_cap=%u\n", cm3->psk8_struct.mod_cap);
379 printf("psk8_struct.rf_pwr_cap_1.present=%u\n",
380 cm3->psk8_struct.rf_pwr_cap_1.present);
381 printf("psk8_struct.rf_pwr_cap_1.value=%02x\n",
382 cm3->psk8_struct.rf_pwr_cap_1.value);
383 printf("psk8_struct.rf_pwr_cap_2.present=%u\n",
384 cm3->psk8_struct.rf_pwr_cap_2.present);
385 printf("psk8_struct.rf_pwr_cap_2.value=%02x\n",
386 cm3->psk8_struct.rf_pwr_cap_2.value);
387 printf("\n");
388 printf("gsm_400_bands_supp.present=%u\n",
389 cm3->gsm_400_bands_supp.present);
390 printf("gsm_400_bands_supp.value=%02x\n",
391 cm3->gsm_400_bands_supp.value);
392 printf("gsm_400_bands_supp.assoc_radio_cap=%02x\n",
393 cm3->gsm_400_bands_supp.assoc_radio_cap);
394 printf("\n");
395 printf("gsm_850_assoc_radio_cap.present=%u\n",
396 cm3->gsm_850_assoc_radio_cap.present);
397 printf("gsm_850_assoc_radio_cap.value=%02x\n",
398 cm3->gsm_850_assoc_radio_cap.value);
399 printf("\n");
400 printf("gsm_1900_assoc_radio_cap.present=%u\n",
401 cm3->gsm_1900_assoc_radio_cap.present);
402 printf("gsm_1900_assoc_radio_cap.value=%02x\n",
403 cm3->gsm_1900_assoc_radio_cap.value);
404 printf("\n");
405 printf("umts_fdd_rat_cap=%u\n", cm3->umts_fdd_rat_cap);
406 printf("umts_tdd_rat_cap=%u\n", cm3->umts_tdd_rat_cap);
407 printf("cdma200_rat_cap=%u\n", cm3->cdma200_rat_cap);
408 printf("\n");
409 printf("dtm_gprs_multislot_cap.present=%u\n",
410 cm3->dtm_gprs_multislot_cap.present);
411 printf("dtm_gprs_multislot_cap.mslot_class=%02x\n",
412 cm3->dtm_gprs_multislot_cap.mslot_class);
413 printf("dtm_gprs_multislot_cap.single_slot_dtm=%u\n",
414 cm3->dtm_gprs_multislot_cap.single_slot_dtm);
415 printf("dtm_gprs_multislot_cap.dtm_egprs_multislot_cap.present=%u\n",
416 cm3->dtm_gprs_multislot_cap.dtm_egprs_multislot_cap.present);
417 printf("dtm_gprs_multislot_cap.dtm_egprs_multislot_cap.mslot_class=%02x\n",
418 cm3->dtm_gprs_multislot_cap.dtm_egprs_multislot_cap.mslot_class);
419 printf("\n");
420 printf("single_band_supp.present=%u\n", cm3->single_band_supp.present);
421 printf("single_band_supp.value=%u\n", cm3->single_band_supp.value);
422 printf("\n");
423 printf("gsm_750_assoc_radio_cap.present=%u\n",
424 cm3->gsm_750_assoc_radio_cap.present);
425 printf("gsm_750_assoc_radio_cap.value=%02x\n",
426 cm3->gsm_750_assoc_radio_cap.value);
427 printf("\n");
428 printf("umts_1_28_mcps_tdd_rat_cap=%u\n",
429 cm3->umts_1_28_mcps_tdd_rat_cap);
430 printf("geran_feature_package=%u\n", cm3->geran_feature_package);
431 printf("\n");
432 printf("extended_dtm_gprs_multislot_cap.present=%u\n",
433 cm3->extended_dtm_gprs_multislot_cap.present);
434 printf("extended_dtm_gprs_multislot_cap.mslot_class=%02x\n",
435 cm3->extended_dtm_gprs_multislot_cap.mslot_class);
436 printf
437 ("extended_dtm_gprs_multislot_cap.dtm_egprs_multislot_cap.present=%u\n",
438 cm3->extended_dtm_gprs_multislot_cap.
439 extended_dtm_egprs_multislot_cap.present);
440 printf
441 ("extended_dtm_gprs_multislot_cap.dtm_egprs_multislot_cap.mslot_class=%02x\n",
442 cm3->extended_dtm_gprs_multislot_cap.
443 extended_dtm_egprs_multislot_cap.mslot_class);
444 printf("\n");
445 printf("high_multislot_cap.present=%u\n",
446 cm3->high_multislot_cap.present);
447 printf("high_multislot_cap.value=%02x\n",
448 cm3->high_multislot_cap.value);
449 printf("\n");
450 printf("geran_feature_package_2=%u\n", cm3->geran_feature_package_2);
451 printf("gmsk_multislot_power_prof=%02x\n",
452 cm3->gmsk_multislot_power_prof);
453 printf("psk8_multislot_power_prof=%02x\n",
454 cm3->psk8_multislot_power_prof);
455 printf("\n");
456 printf("t_gsm_400_bands_supp.present=%u\n",
457 cm3->t_gsm_400_bands_supp.present);
458 printf("t_gsm_400_bands_supp.value=%02x\n",
459 cm3->t_gsm_400_bands_supp.value);
460 printf("t_gsm_400_bands_supp.assoc_radio_cap=%02x\n",
461 cm3->t_gsm_400_bands_supp.assoc_radio_cap);
462 printf("\n");
463 printf("dl_advanced_rx_perf=%02x\n", cm3->dl_advanced_rx_perf);
464 printf("dtm_enhancements_cap=%u\n", cm3->dtm_enhancements_cap);
465 printf("\n");
466 printf("dtm_gprs_high_multislot_cap.present=%u\n",
467 cm3->dtm_gprs_high_multislot_cap.present);
468 printf("dtm_gprs_high_multislot_cap.mslot_class=%02x\n",
469 cm3->dtm_gprs_high_multislot_cap.mslot_class);
470 printf("dtm_gprs_high_multislot_cap.offset_required=%u\n",
471 cm3->dtm_gprs_high_multislot_cap.offset_required);
472 printf
473 ("dtm_gprs_high_multislot_cap.dtm_egprs_high_multislot_cap.present=%u\n",
474 cm3->dtm_gprs_high_multislot_cap.dtm_egprs_high_multislot_cap.
475 present);
476 printf
477 ("dtm_gprs_high_multislot_cap.dtm_egprs_high_multislot_cap.mslot_class=%02x\n",
478 cm3->dtm_gprs_high_multislot_cap.dtm_egprs_high_multislot_cap.
479 mslot_class);
480 printf("\n");
481 printf("repeated_acch_capability=%u\n", cm3->repeated_acch_capability);
482 printf("\n");
483 printf("gsm_710_assoc_radio_cap.present=%u\n",
484 cm3->gsm_710_assoc_radio_cap.present);
485 printf("gsm_710_assoc_radio_cap.value=%02x\n",
486 cm3->gsm_710_assoc_radio_cap.value);
487 printf("\n");
488 printf("t_gsm_810_assoc_radio_cap.present=%u\n",
489 cm3->t_gsm_810_assoc_radio_cap.present);
490 printf("t_gsm_810_assoc_radio_cap.value=%02x\n",
491 cm3->t_gsm_810_assoc_radio_cap.value);
492 printf("\n");
493 printf("ciphering_mode_setting_cap=%u\n",
494 cm3->ciphering_mode_setting_cap);
495 printf("add_pos_cap=%u\n", cm3->add_pos_cap);
496 printf("e_utra_fdd_supp=%u\n", cm3->e_utra_fdd_supp);
497 printf("e_utra_tdd_supp=%u\n", cm3->e_utra_tdd_supp);
498 printf("e_utra_meas_rep_supp=%u\n", cm3->e_utra_meas_rep_supp);
499 printf("prio_resel_supp=%u\n", cm3->prio_resel_supp);
500 printf("utra_csg_cells_rep=%u\n", cm3->utra_csg_cells_rep);
501 printf("vamos_level=%02x\n", cm3->vamos_level);
502 printf("tighter_capability=%02x\n", cm3->tighter_capability);
503 printf("sel_ciph_dl_sacch=%u\n", cm3->sel_ciph_dl_sacch);
504 printf("cs_ps_srvcc_geran_utra=%02x\n", cm3->cs_ps_srvcc_geran_utra);
505 printf("cs_ps_srvcc_geran_eutra=%02x\n", cm3->cs_ps_srvcc_geran_eutra);
506 printf("geran_net_sharing=%u\n", cm3->geran_net_sharing);
507 printf("e_utra_wb_rsrq_meas_supp=%u\n", cm3->e_utra_wb_rsrq_meas_supp);
508 printf("er_band_support=%u\n", cm3->er_band_support);
509 printf("utra_mult_band_ind_supp=%u\n", cm3->utra_mult_band_ind_supp);
510 printf("e_utra_mult_band_ind_supp=%u\n",
511 cm3->e_utra_mult_band_ind_supp);
512 printf("extended_tsc_set_cap_supp=%u\n",
513 cm3->extended_tsc_set_cap_supp);
514 printf("extended_earfcn_val_range=%u\n",
515 cm3->extended_earfcn_val_range);
516}
517
518static void test_decode_classmark3(void)
519{
520 struct gsm48_classmark3 cm3;
521 const uint8_t cm3_1[] = { 0x60, 0x14, 0x04, 0x2f, 0x65, 0x00, 0x20, 0x03, 0x40, 0x4a };
522 const uint8_t cm3_2[] = { 0x55, 0x55, 0x55, 0x55, 0x55, 0x55, 0x55, 0x55, 0x55, 0x55, 0x55, 0x55, 0x55, 0x55};
523 const uint8_t cm3_3[] = { 0xaa, 0xaa, 0xaa, 0xaa, 0xaa, 0xaa, 0xaa, 0xaa, 0xaa, 0xaa, 0xaa, 0xaa, 0xaa, 0xaa};
524
525 printf("=====cm3_1=====\n");
526 gsm48_decode_classmark3(&cm3, cm3_1, sizeof(cm3_1));
527 dump_cm3(&cm3);
528 printf("\n");
529
530 printf("=====cm3_2=====\n");
531 gsm48_decode_classmark3(&cm3, cm3_2, sizeof(cm3_2));
532 dump_cm3(&cm3);
533 printf("\n");
534
535 printf("=====cm3_3=====\n");
536 gsm48_decode_classmark3(&cm3, cm3_3, sizeof(cm3_3));
537 dump_cm3(&cm3);
538 printf("\n");
539}
540
Holger Hans Peter Freythercd252e32013-07-03 09:56:53 +0200541static void test_mid_from_tmsi(void)
542{
543 static const uint8_t res[] = { 0x17, 0x05, 0xf4, 0xaa, 0xbb, 0xcc, 0xdd };
544
545
546 uint32_t tmsi = 0xAABBCCDD;
547 uint8_t buf[3 + sizeof(uint32_t)];
548
549 printf("Simple TMSI encoding test....");
550
551 memset(&buf, 0xFE, sizeof(buf));
552 gsm48_generate_mid_from_tmsi(buf, tmsi);
553
554 OSMO_ASSERT(memcmp(buf, res, sizeof(res)) == 0);
555 printf("passed\n");
556}
557
Maxd55d7d42018-02-15 11:27:18 +0100558static void test_mid_from_imsi(void)
559{
560 char *imsi = "901700000004620";
561 uint8_t buf[10], len;
562
563 printf("Simple IMSI encoding test....");
564
565 len = gsm48_generate_mid_from_imsi(buf, imsi);
566
567 printf("passed: [%u] %s\n", len, osmo_hexdump(buf, len));
568}
569
Neels Hofmeyr49686282018-12-05 21:32:21 +0100570struct test_mid_encode_decode_test {
571 uint8_t mi_type;
572 const char *mi_str;
Neels Hofmeyr02fd83d2019-01-05 00:38:54 +0100573 const char *mi_name;
Neels Hofmeyr49686282018-12-05 21:32:21 +0100574 size_t str_size;
575 const char *expect_mi_tlv_hex;
576 const char *expect_str;
577 int expect_rc;
578};
579
580static const struct test_mid_encode_decode_test test_mid_encode_decode_tests[] = {
581 {
582 .mi_type = GSM_MI_TYPE_IMSI,
583 .mi_str = "123456789012345",
Neels Hofmeyr02fd83d2019-01-05 00:38:54 +0100584 .mi_name = "IMSI-123456789012345",
Neels Hofmeyr49686282018-12-05 21:32:21 +0100585 .expect_mi_tlv_hex = "17081932547698103254",
586 },
587 {
588 .mi_type = GSM_MI_TYPE_IMSI,
589 .mi_str = "12345678901234",
Neels Hofmeyr02fd83d2019-01-05 00:38:54 +0100590 .mi_name = "IMSI-12345678901234",
Neels Hofmeyr49686282018-12-05 21:32:21 +0100591 .expect_mi_tlv_hex = "170811325476981032f4",
592 },
593 {
594 .mi_type = GSM_MI_TYPE_IMSI,
595 .mi_str = "423423",
Neels Hofmeyr02fd83d2019-01-05 00:38:54 +0100596 .mi_name = "IMSI-423423",
Neels Hofmeyr49686282018-12-05 21:32:21 +0100597 .expect_mi_tlv_hex = "1704413224f3",
598 },
599 {
600 .mi_type = GSM_MI_TYPE_IMSI | GSM_MI_ODD,
601 .mi_str = "423423",
Harald Weltea13fb752020-06-16 08:44:42 +0200602 .mi_name = "IMSI-423423",
603 .expect_mi_tlv_hex = "1704413224f3",
Neels Hofmeyr49686282018-12-05 21:32:21 +0100604 },
605 {
606 .mi_type = GSM_MI_TYPE_IMSI,
607 .mi_str = "4234235",
Neels Hofmeyr02fd83d2019-01-05 00:38:54 +0100608 .mi_name = "IMSI-4234235",
Neels Hofmeyr49686282018-12-05 21:32:21 +0100609 .expect_mi_tlv_hex = "170449322453",
610 },
611 {
612 .mi_type = GSM_MI_TYPE_IMSI,
613 .mi_str = "4234235",
Neels Hofmeyr02fd83d2019-01-05 00:38:54 +0100614 .mi_name = "IMSI-4234235",
Neels Hofmeyr49686282018-12-05 21:32:21 +0100615 .expect_mi_tlv_hex = "170449322453",
616 .str_size = 4,
617 .expect_str = "423",
Neels Hofmeyr49686282018-12-05 21:32:21 +0100618 },
619 {
620 .mi_type = GSM_MI_TYPE_IMEI,
621 .mi_str = "123456789012345",
Neels Hofmeyr02fd83d2019-01-05 00:38:54 +0100622 .mi_name = "IMEI-123456789012345",
Neels Hofmeyr49686282018-12-05 21:32:21 +0100623 .expect_mi_tlv_hex = "17081a32547698103254",
624 },
625 {
626 .mi_type = GSM_MI_TYPE_IMEI,
627 .mi_str = "98765432109876",
Neels Hofmeyr02fd83d2019-01-05 00:38:54 +0100628 .mi_name = "IMEI-98765432109876",
Neels Hofmeyr49686282018-12-05 21:32:21 +0100629 .expect_mi_tlv_hex = "170892785634129078f6",
630 },
631 {
632 .mi_type = GSM_MI_TYPE_IMEI,
633 .mi_str = "987654321098765",
Neels Hofmeyr02fd83d2019-01-05 00:38:54 +0100634 .mi_name = "IMEI-987654321098765",
Neels Hofmeyr49686282018-12-05 21:32:21 +0100635 .expect_mi_tlv_hex = "17089a78563412907856",
636 },
637 {
638 .mi_type = GSM_MI_TYPE_IMEISV,
Harald Welte13177712019-01-20 13:41:26 +0100639 .mi_str = "9876543210987654",
640 .mi_name = "IMEI-SV-9876543210987654",
641 .expect_mi_tlv_hex = "17099378563412907856f4",
Neels Hofmeyr49686282018-12-05 21:32:21 +0100642 },
643 {
644 .mi_type = GSM_MI_TYPE_IMEISV,
Harald Welte13177712019-01-20 13:41:26 +0100645 .mi_str = "9876543210987654",
646 .mi_name = "IMEI-SV-9876543210987654",
647 .expect_mi_tlv_hex = "17099378563412907856f4",
648 .str_size = 17,
649 .expect_str = "9876543210987654",
Neels Hofmeyr49686282018-12-05 21:32:21 +0100650 },
651 {
652 /* gsm48 treats TMSI as decimal string */
653 .mi_type = GSM_MI_TYPE_TMSI,
654 .mi_str = "305419896", /* 0x12345678 as decimal */
Neels Hofmeyr02fd83d2019-01-05 00:38:54 +0100655 .mi_name = "TMSI-0x12345678",
Neels Hofmeyr49686282018-12-05 21:32:21 +0100656 .expect_mi_tlv_hex = "1705f412345678",
657 .expect_rc = 9, /* exception: gsm48_mi_to_string() for TMSI returns strlen(), not bytes! */
658 },
659 {
660 .mi_type = GSM_MI_TYPE_TMSI,
661 .mi_str = "12648430", /* 0xc0ffee as decimal */
Neels Hofmeyr02fd83d2019-01-05 00:38:54 +0100662 .mi_name = "TMSI-0x00C0FFEE",
Neels Hofmeyr49686282018-12-05 21:32:21 +0100663 .expect_mi_tlv_hex = "1705f400c0ffee",
664 .expect_rc = 8, /* exception: gsm48_mi_to_string() for TMSI returns strlen(), not bytes! */
665 },
666 {
667 .mi_type = GSM_MI_TYPE_TMSI,
668 .mi_str = "0",
Neels Hofmeyr02fd83d2019-01-05 00:38:54 +0100669 .mi_name = "TMSI-0x00000000",
Neels Hofmeyr49686282018-12-05 21:32:21 +0100670 .expect_mi_tlv_hex = "1705f400000000",
671 .expect_rc = 1, /* exception: gsm48_mi_to_string() for TMSI returns strlen(), not bytes! */
672 },
673 {
674 /* gsm48 treats TMSI as decimal string */
675 .mi_type = GSM_MI_TYPE_TMSI,
676 .mi_str = "305419896", /* 0x12345678 as decimal */
Neels Hofmeyr02fd83d2019-01-05 00:38:54 +0100677 .mi_name = "TMSI-0x12345678",
Neels Hofmeyr49686282018-12-05 21:32:21 +0100678 .expect_mi_tlv_hex = "1705f412345678",
679 .str_size = 5,
680 .expect_str = "3054",
681 .expect_rc = 9, /* exception: gsm48_mi_to_string() for TMSI returns would-be strlen() like snprintf()! */
682 },
683 {
684 .mi_type = GSM_MI_TYPE_NONE,
685 .mi_str = "123",
Neels Hofmeyr02fd83d2019-01-05 00:38:54 +0100686 .mi_name = "unknown",
Harald Weltea13fb752020-06-16 08:44:42 +0200687 .expect_mi_tlv_hex = "17021832", /* encoding invalid MI type */
Neels Hofmeyr49686282018-12-05 21:32:21 +0100688 .expect_str = "",
689 },
690 {
691 .mi_type = GSM_MI_TYPE_NONE,
692 .mi_str = "1234",
Neels Hofmeyr02fd83d2019-01-05 00:38:54 +0100693 .mi_name = "unknown",
Harald Weltea13fb752020-06-16 08:44:42 +0200694 .expect_mi_tlv_hex = "17031032f4", /* encoding invalid MI type */
Neels Hofmeyr49686282018-12-05 21:32:21 +0100695 .expect_str = "",
696 },
697 {
698 .mi_type = GSM_MI_ODD,
699 .mi_str = "1234",
Neels Hofmeyr02fd83d2019-01-05 00:38:54 +0100700 .mi_name = "unknown",
Harald Weltea13fb752020-06-16 08:44:42 +0200701 .expect_mi_tlv_hex = "17031032f4", /* encoding invalid MI type */
Neels Hofmeyr49686282018-12-05 21:32:21 +0100702 .expect_str = "",
703 },
704};
705
706static void test_mid_encode_decode(void)
707{
708 int i;
709
710 printf("\nTesting Mobile Identity conversions\n");
711
712 for (i = 0; i < ARRAY_SIZE(test_mid_encode_decode_tests); i++) {
713 const struct test_mid_encode_decode_test *t = &test_mid_encode_decode_tests[i];
714 uint8_t tlv_buf[64];
715 uint8_t *mi_buf;
716 int tlv_len;
717 int mi_len;
718 const char *tlv_hex;
719 char str[64] = {};
720 size_t str_size = t->str_size ? : sizeof(str);
721 const char *expect_str = t->expect_str ? : t->mi_str;
722 int expect_rc = t->expect_rc ? : strlen(expect_str)+1;
723 int rc;
724 int str_len;
725
726 printf("- %s %s\n", gsm48_mi_type_name(t->mi_type), t->mi_str);
727 if (t->mi_type == GSM_MI_TYPE_TMSI)
728 tlv_len = gsm48_generate_mid_from_tmsi(tlv_buf, (uint32_t)atoll(t->mi_str));
729 else
730 tlv_len = gsm48_generate_mid(tlv_buf, t->mi_str, t->mi_type);
731 tlv_hex = osmo_hexdump_nospc(tlv_buf, tlv_len);
732
733 printf(" -> MI-TLV-hex='%s'\n", tlv_hex);
734 if (t->expect_mi_tlv_hex && strcmp(tlv_hex, t->expect_mi_tlv_hex)) {
735 printf(" ERROR: expected '%s'\n", t->expect_mi_tlv_hex);
736 }
737
Harald Weltea13fb752020-06-16 08:44:42 +0200738 /* skip the GSM48_IE_MOBILE_ID tag and length */
739 mi_buf = tlv_buf + 2;
740 mi_len = tlv_len - 2;
Neels Hofmeyr49686282018-12-05 21:32:21 +0100741
742 rc = gsm48_mi_to_string(str, str_size, mi_buf, mi_len);
743 printf(" -> MI-str=%s rc=%d\n", osmo_quote_str(str, -1), rc);
744 if (strcmp(str, expect_str))
745 printf(" ERROR: expected MI-str=%s\n", osmo_quote_str(expect_str, -1));
746 if (rc != expect_rc)
747 printf(" ERROR: expected rc=%d\n", expect_rc);
748
Neels Hofmeyr02fd83d2019-01-05 00:38:54 +0100749 if (t->mi_name) {
750 const char *mi_name = osmo_mi_name(mi_buf, mi_len);
751 printf(" -> MI-name=%s\n", osmo_quote_str(mi_name, -1));
752 if (strcmp(mi_name, t->mi_name))
753 printf(" ERROR: expected MI-name=%s\n", osmo_quote_str(t->mi_name, -1));
754 }
755
Neels Hofmeyr49686282018-12-05 21:32:21 +0100756 /* Now make sure the resulting string is always '\0' terminated.
757 * The above started out with a zeroed buffer, now repeat with a tainted one. */
758 str_len = strlen(str);
759 str[str_len] = '!';
760 gsm48_mi_to_string(str, str_size, mi_buf, mi_len);
761 if (strlen(str) != str_len)
762 printf(" ERROR: resulting string is not explicitly nul terminated\n");
763 }
764}
765
766static const uint8_t test_mid_decode_zero_length_types[] = { GSM_MI_TYPE_IMSI, GSM_MI_TYPE_TMSI, GSM_MI_TYPE_NONE };
767
768static void test_mid_decode_zero_length(void)
769{
770 int odd;
771 uint8_t valid_mi[64];
772 int valid_mi_len;
773
774 printf("\nDecoding zero length Mobile Identities\n");
775
776 /* IMSI = 123456789012345 */
777 valid_mi_len = osmo_hexparse("1932547698103254", valid_mi, sizeof(valid_mi));
778
779 for (odd = 0; odd <= 1; odd++) {
780 int i;
781 for (i = 0; i < ARRAY_SIZE(test_mid_decode_zero_length_types); i++) {
782 uint8_t mi_type = test_mid_decode_zero_length_types[i] | (odd ? GSM_MI_ODD : 0);
783 char str[8] = {};
784 int rc;
785
786 printf("- MI type: %s%s\n", gsm48_mi_type_name(mi_type & GSM_MI_TYPE_MASK),
787 odd ? " | GSM_MI_ODD":"");
788 valid_mi[0] = (valid_mi[0] & 0xf0) | mi_type;
789
790 printf(" - writing to zero-length string:\n");
791 memset(str, '!', sizeof(str) - 1);
792 rc = gsm48_mi_to_string(str, 0, valid_mi, valid_mi_len);
793 printf(" rc=%d\n", rc);
794 if (str[0] == '!')
795 printf(" nothing written\n");
796 else
797 printf(" ERROR: Wrote to invalid memory!\n");
798
799 printf(" - writing to 1-byte-length string:\n");
800 memset(str, '!', sizeof(str) - 1);
801 rc = gsm48_mi_to_string(str, 1, valid_mi, valid_mi_len);
802 printf(" rc=%d\n", rc);
803 if (str[0] == '\0')
804 printf(" returned empty string\n");
805 else if (str[0] == '!')
806 printf(" ERROR: nothing written, expected nul-terminated empty string\n");
807 else
808 printf(" ERROR: Wrote unexpected string %s\n", osmo_quote_str(str, 5));
809 if (str[1] != '!')
810 printf(" ERROR: Wrote to invalid memory!\n");
811
812 printf(" - decode zero-length mi:\n");
813 memset(str, '!', sizeof(str) - 1);
814 rc = gsm48_mi_to_string(str, sizeof(str), valid_mi, 0);
815 printf(" rc=%d\n", rc);
816 if (str[0] == '\0')
817 printf(" returned empty string\n");
818 else if (str[0] == '!')
819 printf(" ERROR: nothing written, expected nul-terminated empty string\n");
820 else
821 printf(" ERROR: expected empty string, got output string: %s\n", osmo_quote_str(str, -1));
822 }
823 }
824 printf("\n");
825}
826
Neels Hofmeyr83025bf2020-05-26 02:45:23 +0200827struct msgb *msgb_from_hex(const char *label, uint16_t size, const char *hex)
828{
829 struct msgb *msg = msgb_alloc_headroom(size, 4, label);
830 OSMO_ASSERT(msg);
831 msg->l3h = msgb_put(msg, osmo_hexparse(hex, msg->data, msgb_tailroom(msg)));
832 return msg;
833}
834
835struct mobile_identity_tc {
836 const char *label;
837 const char *compl_l3_msg;
838 int expect_rc;
839 struct osmo_mobile_identity expect_mi;
840};
841
842/* Some Complete Layer 3 messages copied from real GSM network traces. */
843struct mobile_identity_tc mobile_identity_tests[] = {
844 {
845 .label = "LU with IMSI 901700000004620",
846 .compl_l3_msg = "050802008168000130" "089910070000006402",
847 .expect_mi = {
848 .type = GSM_MI_TYPE_IMSI,
849 .imsi = "901700000004620",
850 },
851 },
852 {
853 .label = "LU with TMSI 0x0980ad8a",
854 .compl_l3_msg = "05084262f224002a50" "05f40980ad8a",
855 .expect_mi = {
856 .type = GSM_MI_TYPE_TMSI,
857 .tmsi = 0x0980ad8a,
858 },
859 },
860 {
861 .label = "LU with invalid MI type",
862 .compl_l3_msg = "050802008168000130" "089d10070000006402",
863 .expect_rc = -EINVAL,
864 },
865 {
866 .label = "LU with truncated IMSI MI",
867 .compl_l3_msg = "050802008168000130" "0899100700000064",
868 .expect_rc = -EBADMSG,
869 },
870 {
871 .label = "LU with too short IMSI MI (12345)",
872 .compl_l3_msg = "050802008168000130" "03193254",
873 .expect_rc = -EBADMSG,
874 },
875 {
876 .label = "LU with just long enough IMSI MI 123456",
877 .compl_l3_msg = "050802008168000130" "04113254f6",
878 .expect_mi = {
879 .type = GSM_MI_TYPE_IMSI,
880 .imsi = "123456",
881 },
882 },
883 {
884 .label = "LU with max length IMSI MI 123456789012345",
885 .compl_l3_msg = "050802008168000130" "081932547698103254",
886 .expect_mi = {
887 .type = GSM_MI_TYPE_IMSI,
888 .imsi = "123456789012345",
889 },
890 },
891 {
892 .label = "LU with just too long IMSI MI 1234567890123456",
893 .compl_l3_msg = "050802008168000130" "091132547698103254f6",
894 .expect_rc = -EBADMSG,
895 },
896 {
897 .label = "LU with truncated TMSI MI",
898 .compl_l3_msg = "05084262f224002a50" "05f40980ad",
899 .expect_rc = -EBADMSG,
900 },
901 {
902 .label = "LU with odd length TMSI",
903 .compl_l3_msg = "05084262f224002a50" "05fc0980ad8a",
904 .expect_rc = -EBADMSG,
905 },
906 {
907 .label = "LU with too long TMSI MI",
908 .compl_l3_msg = "05084262f224002a50" "06f40980ad23",
909 .expect_rc = -EBADMSG,
910 },
911 {
912 .label = "LU with too short TMSI",
913 .compl_l3_msg = "05084262f224002a50" "04f480ad8a",
914 .expect_rc = -EBADMSG,
915 },
916 {
917 .label = "CM Service Request with IMSI 123456",
918 .compl_l3_msg = "052401035058a6" "04113254f6",
919 .expect_mi = {
920 .type = GSM_MI_TYPE_IMSI,
921 .imsi = "123456",
922 },
923 },
924 {
925 .label = "CM Service Request with TMSI 0x5a42e404",
926 .compl_l3_msg = "052401035058a6" "05f45a42e404",
927 .expect_mi = {
928 .type = GSM_MI_TYPE_TMSI,
929 .tmsi = 0x5a42e404,
930 },
931 },
932 {
933 .label = "CM Service Request with shorter CM2, with IMSI 123456",
934 .compl_l3_msg = "052401025058" "04113254f6",
935 .expect_mi = {
936 .type = GSM_MI_TYPE_IMSI,
937 .imsi = "123456",
938 },
939 },
940 {
941 .label = "CM Service Request with longer CM2, with IMSI 123456",
942 .compl_l3_msg = "052401055058a62342" "04113254f6",
943 .expect_mi = {
944 .type = GSM_MI_TYPE_IMSI,
945 .imsi = "123456",
946 },
947 },
948 {
949 .label = "CM Service Request with shorter CM2, with TMSI 0x00000000",
950 .compl_l3_msg = "052401025058" "05f400000000",
951 .expect_mi = {
952 .type = GSM_MI_TYPE_TMSI,
953 .tmsi = 0,
954 },
955 },
956 {
957 .label = "CM Service Request with invalid MI type",
958 .compl_l3_msg = "052401035058a6" "089d10070000006402",
959 .expect_rc = -EINVAL,
960 },
961 {
962 .label = "CM Service Request with truncated IMSI MI",
963 .compl_l3_msg = "052401035058a6" "0899100700000064",
964 .expect_rc = -EBADMSG,
965 },
966 {
967 .label = "CM Service Request with truncated TMSI MI",
968 .compl_l3_msg = "0524010150" "05f40980ad",
969 .expect_rc = -EBADMSG,
970 },
971 {
972 .label = "CM Service Request with odd length TMSI",
973 .compl_l3_msg = "052401045058a623" "05fc0980ad8a",
974 .expect_rc = -EBADMSG,
975 },
976 {
977 .label = "CM Service Request with too long TMSI MI",
978 .compl_l3_msg = "052401035058a6" "06f40980ad23",
979 .expect_rc = -EBADMSG,
980 },
981 {
982 .label = "CM Service Request with too short TMSI",
983 .compl_l3_msg = "052401035058a6" "04f480ad8a",
984 .expect_rc = -EBADMSG,
985 },
986 {
987 .label = "CM Service Reestablish Request with TMSI 0x5a42e404",
988 .compl_l3_msg = "052801035058a6" "05f45a42e404",
989 .expect_mi = {
990 .type = GSM_MI_TYPE_TMSI,
991 .tmsi = 0x5a42e404,
992 },
993 },
994 {
995 .label = "Paging Response with IMSI 1234567",
996 .compl_l3_msg = "06270003505886" "0419325476",
997 .expect_mi = {
998 .type = GSM_MI_TYPE_IMSI,
999 .imsi = "1234567",
1000 },
1001 },
1002 {
1003 .label = "Paging Response with TMSI 0xb48883de",
1004 .compl_l3_msg = "06270003505886" "05f4b48883de",
1005 .expect_mi = {
1006 .type = GSM_MI_TYPE_TMSI,
1007 .tmsi = 0xb48883de,
1008 },
1009 },
1010 {
1011 .label = "Paging Response with TMSI, with unused nibble not 0xf",
1012 .compl_l3_msg = "06270003505886" "0504b48883de",
1013 .expect_rc = -EBADMSG,
1014 },
1015 {
1016 .label = "Paging Response with too short IMEI (1234567)",
1017 .compl_l3_msg = "06270003505886" "041a325476",
1018 .expect_rc = -EBADMSG,
1019 },
1020 {
1021 .label = "Paging Response with IMEI 123456789012345",
1022 .compl_l3_msg = "06270003505886" "081a32547698103254",
1023 .expect_mi = {
1024 .type = GSM_MI_TYPE_IMEI,
1025 .imei = "123456789012345",
1026 },
1027 },
1028 {
1029 .label = "Paging Response with IMEI 12345678901234 (no Luhn checksum)",
1030 .compl_l3_msg = "06270003505886" "0812325476981032f4",
1031 .expect_mi = {
1032 .type = GSM_MI_TYPE_IMEI,
1033 .imei = "12345678901234",
1034 },
1035 },
1036 {
1037 .label = "Paging Response with IMEISV 1234567890123456",
1038 .compl_l3_msg = "06270003505886" "091332547698103254f6",
1039 .expect_mi = {
1040 .type = GSM_MI_TYPE_IMEISV,
1041 .imeisv = "1234567890123456",
1042 },
1043 },
1044 {
1045 .label = "Paging Response with too short IMEISV 123456789012345",
1046 .compl_l3_msg = "06270003505886" "081b32547698103254",
1047 .expect_rc = -EBADMSG,
1048 },
1049 {
1050 .label = "Paging Response with too long IMEISV 12345678901234567",
1051 .compl_l3_msg = "06270003505886" "091b3254769810325476",
1052 .expect_rc = -EBADMSG,
1053 },
1054 {
1055 .label = "Paging Response with IMSI 123456789012345 and flipped ODD bit",
1056 .compl_l3_msg = "06270003505886" "081132547698103254",
1057 .expect_rc = -EBADMSG,
1058 },
1059 {
1060 .label = "IMSI-Detach with IMSI 901700000004620",
1061 .compl_l3_msg = "050130" "089910070000006402",
1062 .expect_mi = {
1063 .type = GSM_MI_TYPE_IMSI,
1064 .imsi = "901700000004620",
1065 },
1066 },
1067 {
1068 .label = "IMSI-Detach with TMSI 0x0980ad8a",
1069 .compl_l3_msg = "050130" "05f40980ad8a",
1070 .expect_mi = {
1071 .type = GSM_MI_TYPE_TMSI,
1072 .tmsi = 0x0980ad8a,
1073 },
1074 },
1075 {
1076 .label = "IMSI-Detach with invalid MI type",
1077 .compl_l3_msg = "050130" "089d10070000006402",
1078 .expect_rc = -EINVAL,
1079 },
1080 {
1081 .label = "IMSI-Detach with truncated IMSI MI",
1082 .compl_l3_msg = "050130" "0899100700000064",
1083 .expect_rc = -EBADMSG,
1084 },
1085 {
1086 .label = "IMSI-Detach with too short IMSI MI (12345)",
1087 .compl_l3_msg = "050130" "03193254",
1088 .expect_rc = -EBADMSG,
1089 },
1090 {
1091 .label = "IMSI-Detach with just long enough IMSI MI 123456",
1092 .compl_l3_msg = "050130" "04113254f6",
1093 .expect_mi = {
1094 .type = GSM_MI_TYPE_IMSI,
1095 .imsi = "123456",
1096 },
1097 },
1098 {
1099 .label = "IMSI-Detach with max length IMSI MI 123456789012345",
1100 .compl_l3_msg = "050130" "081932547698103254",
1101 .expect_mi = {
1102 .type = GSM_MI_TYPE_IMSI,
1103 .imsi = "123456789012345",
1104 },
1105 },
1106 {
1107 .label = "IMSI-Detach with just too long IMSI MI 1234567890123456",
1108 .compl_l3_msg = "050130" "091132547698103254f6",
1109 .expect_rc = -EBADMSG,
1110 },
1111 {
1112 .label = "IMSI-Detach with truncated TMSI MI",
1113 .compl_l3_msg = "050130" "05f40980ad",
1114 .expect_rc = -EBADMSG,
1115 },
1116 {
1117 .label = "IMSI-Detach with odd length TMSI",
1118 .compl_l3_msg = "050130" "05fc0980ad8a",
1119 .expect_rc = -EBADMSG,
1120 },
1121 {
1122 .label = "IMSI-Detach with too long TMSI MI",
1123 .compl_l3_msg = "050130" "06f40980ad23",
1124 .expect_rc = -EBADMSG,
1125 },
1126 {
1127 .label = "IMSI-Detach with too short TMSI",
1128 .compl_l3_msg = "050130" "04f480ad8a",
1129 .expect_rc = -EBADMSG,
1130 },
1131 {
1132 .label = "Identity Response with IMSI 901700000004620",
1133 .compl_l3_msg = "0519" "089910070000006402",
1134 .expect_mi = {
1135 .type = GSM_MI_TYPE_IMSI,
1136 .imsi = "901700000004620",
1137 },
1138 },
1139 {
1140 .label = "Identity Response with IMEI 123456789012345",
1141 .compl_l3_msg = "0519" "081a32547698103254",
1142 .expect_mi = {
1143 .type = GSM_MI_TYPE_IMEI,
1144 .imei = "123456789012345",
1145 },
1146 },
1147 {
1148 .label = "Identity Response with IMEISV 9876543210987654",
1149 .compl_l3_msg = "0519" "099378563412907856f4",
1150 .expect_mi = {
1151 .type = GSM_MI_TYPE_IMEISV,
1152 .imeisv = "9876543210987654",
1153 },
1154 },
1155};
1156
1157void test_struct_mobile_identity()
1158{
1159 struct mobile_identity_tc *t;
1160 printf("%s()\n", __func__);
1161 for (t = mobile_identity_tests; (t - mobile_identity_tests) < ARRAY_SIZE(mobile_identity_tests); t++) {
1162 struct osmo_mobile_identity mi;
1163 struct msgb *msg;
1164 int rc;
1165 memset(&mi, 0xff, sizeof(mi));
1166
1167 msg = msgb_from_hex(t->label, 1024, t->compl_l3_msg);
1168 rc = osmo_mobile_identity_decode_from_l3(&mi, msg, false);
1169 msgb_free(msg);
1170
Neels Hofmeyra7f97b92022-08-23 18:35:40 +02001171 printf("%s: %s", t->label, rc ? "rc != 0" : "rc == 0");
Neels Hofmeyr83025bf2020-05-26 02:45:23 +02001172 if (!rc) {
1173 printf(", mi = %s", osmo_mobile_identity_to_str_c(OTC_SELECT, &mi));
1174 }
1175
1176 if (rc == t->expect_rc
1177 && ((rc != 0) || !osmo_mobile_identity_cmp(&mi, &t->expect_mi))) {
1178 printf(" ok");
1179 } else {
Neels Hofmeyra7f97b92022-08-23 18:35:40 +02001180 printf(" ERROR: Got rc = %d, expected rc = %d", rc, t->expect_rc);
Neels Hofmeyr83025bf2020-05-26 02:45:23 +02001181 if (!t->expect_rc)
1182 printf(", mi = %s", osmo_mobile_identity_to_str_c(OTC_SELECT, &t->expect_mi));
1183 }
1184 printf("\n");
1185 }
1186 printf("\n");
1187}
1188
Vadim Yanitskiyaa0683d2019-05-25 23:14:00 +07001189static const struct bcd_number_test {
1190 /* Human-readable test name */
1191 const char *test_name;
1192
1193 /* To be encoded number in ASCII */
1194 const char *enc_ascii;
1195 /* Expected encoding result in HEX */
1196 const char *enc_hex;
1197 /* Optional header length (LHV) */
1198 uint8_t enc_h_len;
1199 /* Expected return code */
1200 int enc_rc;
1201
1202 /* To be decoded buffer in HEX */
1203 const char *dec_hex;
1204 /* Expected decoding result in ASCII */
1205 const char *dec_ascii;
1206 /* Optional header length (LHV) */
1207 uint8_t dec_h_len;
1208 /* Expected return code */
1209 int dec_rc;
1210
1211 /* Encoding buffer limit (0 means unlimited) */
1212 size_t enc_buf_lim;
1213 /* Decoding buffer limit (0 means unlimited) */
1214 size_t dec_buf_lim;
1215} bcd_number_test_set[] = {
1216 {
1217 .test_name = "regular 9-digit MSISDN",
1218
1219 /* Encoding test */
1220 .enc_ascii = "123456789",
1221 .enc_hex = "0521436587f9",
1222 .enc_rc = 6,
1223
1224 /* Decoding test */
1225 .dec_hex = "0521436587f9",
1226 .dec_ascii = "123456789",
1227 },
1228 {
1229 .test_name = "regular 6-digit MSISDN with optional header (LHV)",
1230
1231 /* Encoding test */
1232 .enc_ascii = "123456",
Vadim Yanitskiy1dc82642019-05-27 00:53:54 +07001233 .enc_hex = "07ffffffff214365",
Vadim Yanitskiyaa0683d2019-05-25 23:14:00 +07001234 .enc_h_len = 4, /* LHV */
1235 .enc_rc = 4 + 4,
1236
1237 /* Decoding test */
1238 .dec_hex = "07deadbeef214365",
1239 .dec_ascii = "123456",
1240 .dec_h_len = 4, /* LHV */
1241 },
1242 {
1243 .test_name = "long 15-digit (maximum) MSISDN",
1244
1245 /* Encoding test */
1246 .enc_ascii = "123456789012345",
1247 .enc_hex = "0821436587092143f5",
1248 .enc_rc = 9,
1249
1250 /* Decoding test */
1251 .dec_hex = "0821436587092143f5",
1252 .dec_ascii = "123456789012345",
1253 },
1254 {
1255 .test_name = "long 15-digit (maximum) MSISDN, limited buffer",
1256
1257 /* Encoding test */
1258 .enc_ascii = "123456789012345",
1259 .enc_hex = "0821436587092143f5",
1260 .enc_rc = 9,
1261
1262 /* Decoding test */
1263 .dec_hex = "0821436587092143f5",
1264 .dec_ascii = "123456789012345",
1265
1266 /* Buffer length limitations */
1267 .dec_buf_lim = 15 + 1,
1268 .enc_buf_lim = 9,
1269 },
1270 {
1271 .test_name = "to be truncated 20-digit MSISDN",
1272
1273 /* Encoding test (not enough room in buffer) */
1274 .enc_ascii = "12345678901234567890",
1275 .enc_hex = "", /* nothing */
1276 .enc_rc = -EIO,
1277
1278 /* Decoding test (one 5 digits do not fit) */
1279 .dec_hex = "0a21436587092143658709",
1280 .dec_ascii = "123456789012345",
Vadim Yanitskiy71940872019-05-26 00:49:57 +07001281 .dec_rc = -ENOSPC,
Vadim Yanitskiyaa0683d2019-05-25 23:14:00 +07001282
1283 /* Buffer length limitations */
1284 .dec_buf_lim = 15 + 1, /* 5 digits less */
1285 .enc_buf_lim = 9,
1286 },
1287 {
1288 .test_name = "LV incorrect length",
1289 .dec_hex = "05214365", /* should be 0x03 */
1290 .dec_ascii = "(none)",
Vadim Yanitskiye4799f52019-05-26 00:55:20 +07001291 .dec_rc = -EINVAL,
Vadim Yanitskiyaa0683d2019-05-25 23:14:00 +07001292 },
1293 {
1294 .test_name = "empty input buffer",
1295
1296 /* Encoding test */
1297 .enc_ascii = "",
1298 .enc_hex = "00",
1299 .enc_rc = 1,
1300
1301 /* Decoding test */
1302 .dec_hex = "",
1303 .dec_ascii = "(none)",
1304 .dec_rc = -EIO,
1305 },
Oliver Smith186f8782019-06-06 16:11:32 +02001306 {
1307 .test_name = "decoding buffer is one byte too small (OS#4049)",
1308
1309 /* Decoding test */
1310 .dec_hex = "022143", /* "1234" */
1311 .dec_ascii = "123", /* '4' was truncated */
1312 .dec_rc = -ENOSPC,
1313
1314 /* Buffer length limitations */
1315 .dec_buf_lim = 4,
1316 },
Vadim Yanitskiyaa0683d2019-05-25 23:14:00 +07001317};
1318
1319static void test_bcd_number_encode_decode()
1320{
1321 const struct bcd_number_test *test;
Vadim Yanitskiy1dc82642019-05-27 00:53:54 +07001322 uint8_t buf_enc[0xff] = { 0xff };
1323 char buf_dec[0xff] = { 0xff };
Vadim Yanitskiyaa0683d2019-05-25 23:14:00 +07001324 size_t buf_len, i;
1325 int rc;
1326
1327 printf("BSD number encoding / decoding test\n");
1328
1329 for (i = 0; i < ARRAY_SIZE(bcd_number_test_set); i++) {
1330 test = &bcd_number_test_set[i];
1331 printf("- Running test: %s\n", test->test_name);
1332
1333 if (test->enc_ascii) {
1334 if (test->enc_buf_lim)
1335 buf_len = test->enc_buf_lim;
1336 else
1337 buf_len = sizeof(buf_enc);
1338
1339 printf(" - Encoding ASCII (buffer limit=%zu) '%s'...\n",
1340 test->enc_buf_lim, test->enc_ascii);
1341
1342 rc = gsm48_encode_bcd_number(buf_enc, buf_len,
1343 test->enc_h_len, test->enc_ascii);
1344 printf(" - Expected: (rc=%d) '%s'\n",
1345 test->enc_rc, test->enc_hex);
1346 printf(" - Actual: (rc=%d) '%s'\n",
1347 rc, osmo_hexdump_nospc(buf_enc, rc >= 0 ? rc : 0));
1348 }
1349
1350 if (test->dec_hex) {
1351 /* Parse a HEX string */
1352 rc = osmo_hexparse(test->dec_hex, buf_enc, sizeof(buf_enc));
1353 OSMO_ASSERT(rc >= 0);
1354
1355 if (test->dec_buf_lim)
1356 buf_len = test->dec_buf_lim;
1357 else
1358 buf_len = sizeof(buf_dec);
1359
1360 printf(" - Decoding HEX (buffer limit=%zu) '%s'...\n",
1361 test->dec_buf_lim, test->dec_hex);
1362
1363 rc = gsm48_decode_bcd_number2(buf_dec, buf_len,
1364 buf_enc, rc, test->dec_h_len);
1365 printf(" - Expected: (rc=%d) '%s'\n",
1366 test->dec_rc, test->dec_ascii);
1367 printf(" - Actual: (rc=%d) '%s'\n",
Vadim Yanitskiy71940872019-05-26 00:49:57 +07001368 rc, (rc == 0 || rc == -ENOSPC) ? buf_dec : "(none)");
Vadim Yanitskiyaa0683d2019-05-25 23:14:00 +07001369 }
Vadim Yanitskiy1dc82642019-05-27 00:53:54 +07001370
1371 /* Poison buffers between the test iterations */
1372 memset(buf_enc, 0xff, sizeof(buf_enc));
1373 memset(buf_dec, 0xff, sizeof(buf_dec));
Vadim Yanitskiyaa0683d2019-05-25 23:14:00 +07001374 }
1375
1376 printf("\n");
1377}
1378
Stefan Sperlingfdf8b7b2018-07-27 12:19:15 +02001379struct {
1380 int range;
1381 int arfcns_num;
1382 int arfcns[OSMO_GSM48_RANGE_ENC_MAX_ARFCNS];
1383} arfcn_test_ranges[] = {
1384 {OSMO_GSM48_ARFCN_RANGE_512, 12,
1385 { 1, 12, 31, 51, 57, 91, 97, 98, 113, 117, 120, 125 }},
1386 {OSMO_GSM48_ARFCN_RANGE_512, 17,
1387 { 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17 }},
1388 {OSMO_GSM48_ARFCN_RANGE_512, 18,
1389 { 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18 }},
1390 {OSMO_GSM48_ARFCN_RANGE_512, 18,
1391 { 1, 17, 31, 45, 58, 79, 81, 97,
1392 113, 127, 213, 277, 287, 311, 331, 391,
1393 417, 511 }},
1394 {OSMO_GSM48_ARFCN_RANGE_512, 6,
1395 { 1, 17, 31, 45, 58, 79 }},
1396 {OSMO_GSM48_ARFCN_RANGE_512, 6,
1397 { 10, 17, 31, 45, 58, 79 }},
1398 {OSMO_GSM48_ARFCN_RANGE_1024, 17,
1399 { 0, 17, 31, 45, 58, 79, 81, 97,
1400 113, 127, 213, 277, 287, 311, 331, 391,
1401 1023 }},
1402 {OSMO_GSM48_ARFCN_RANGE_1024, 16,
1403 { 17, 31, 45, 58, 79, 81, 97, 113,
1404 127, 213, 277, 287, 311, 331, 391, 1023 }},
1405 {-1}
1406};
1407
1408static int test_single_range_encoding(int range, const int *orig_arfcns, int arfcns_num, int silent)
1409{
1410 int arfcns[OSMO_GSM48_RANGE_ENC_MAX_ARFCNS];
1411 int w[OSMO_GSM48_RANGE_ENC_MAX_ARFCNS];
1412 int f0_included = 0;
1413 int rc, f0;
1414 uint8_t chan_list[16] = {0};
1415 struct gsm_sysinfo_freq dec_freq[1024] = {{0}};
1416 int dec_arfcns[OSMO_GSM48_RANGE_ENC_MAX_ARFCNS] = {0};
1417 int dec_arfcns_count = 0;
1418 int arfcns_used = 0;
1419 int i;
1420
1421 arfcns_used = arfcns_num;
1422 memmove(arfcns, orig_arfcns, sizeof(arfcns));
1423
1424 f0 = range == OSMO_GSM48_ARFCN_RANGE_1024 ? 0 : arfcns[0];
1425 /*
1426 * Manipulate the ARFCN list according to the rules in J4 depending
1427 * on the selected range.
1428 */
1429 arfcns_used = osmo_gsm48_range_enc_filter_arfcns(arfcns, arfcns_used, f0, &f0_included);
1430
1431 memset(w, 0, sizeof(w));
1432 osmo_gsm48_range_enc_arfcns(range, arfcns, arfcns_used, w, 0);
1433
1434 if (!silent)
1435 printf("range=%d, arfcns_used=%d, f0=%d, f0_included=%d\n", range, arfcns_used, f0, f0_included);
1436
1437 /* Select the range and the amount of bits needed */
1438 switch (range) {
1439 case OSMO_GSM48_ARFCN_RANGE_128:
1440 osmo_gsm48_range_enc_128(chan_list, f0, w);
1441 break;
1442 case OSMO_GSM48_ARFCN_RANGE_256:
1443 osmo_gsm48_range_enc_256(chan_list, f0, w);
1444 break;
1445 case OSMO_GSM48_ARFCN_RANGE_512:
1446 osmo_gsm48_range_enc_512(chan_list, f0, w);
1447 break;
1448 case OSMO_GSM48_ARFCN_RANGE_1024:
1449 osmo_gsm48_range_enc_1024(chan_list, f0, f0_included, w);
1450 break;
1451 default:
1452 return 1;
1453 };
1454
1455 if (!silent)
1456 printf("chan_list = %s\n",
1457 osmo_hexdump(chan_list, sizeof(chan_list)));
1458
1459 rc = gsm48_decode_freq_list(dec_freq, chan_list, sizeof(chan_list),
1460 0xfe, 1);
1461 if (rc != 0) {
1462 printf("Cannot decode freq list, rc = %d\n", rc);
1463 return 1;
1464 }
1465
1466 for (i = 0; i < ARRAY_SIZE(dec_freq); i++) {
1467 if (dec_freq[i].mask &&
1468 dec_arfcns_count < ARRAY_SIZE(dec_arfcns))
1469 dec_arfcns[dec_arfcns_count++] = i;
1470 }
1471
1472 if (!silent) {
1473 printf("Decoded freqs %d (expected %d)\n",
1474 dec_arfcns_count, arfcns_num);
1475 printf("Decoded: ");
1476 for (i = 0; i < dec_arfcns_count; i++) {
1477 printf("%d ", dec_arfcns[i]);
1478 if (dec_arfcns[i] != orig_arfcns[i])
1479 printf("(!= %d) ", orig_arfcns[i]);
1480 }
1481 printf("\n");
1482 }
1483
1484 if (dec_arfcns_count != arfcns_num) {
1485 printf("Wrong number of arfcns\n");
1486 return 1;
1487 }
1488
1489 if (memcmp(dec_arfcns, orig_arfcns, sizeof(dec_arfcns)) != 0) {
1490 printf("Decoding error, got wrong freqs\n");
1491 printf(" w = ");
1492 for (i = 0; i < ARRAY_SIZE(w); i++)
1493 printf("%d ", w[i]);
1494 printf("\n");
1495 return 1;
1496 }
1497
1498 return 0;
1499}
1500
1501static void test_random_range_encoding(int range, int max_arfcn_num)
1502{
1503 int arfcns_num = 0;
1504 int test_idx;
1505 int rc, max_count;
1506 int num_tests = 1024;
1507
1508 printf("Random range test: range %d, max num ARFCNs %d\n",
1509 range, max_arfcn_num);
1510
1511 srandom(1);
1512
1513 for (max_count = 1; max_count < max_arfcn_num; max_count++) {
1514 for (test_idx = 0; test_idx < num_tests; test_idx++) {
1515 int count;
1516 int i;
1517 int min_freq = 0;
1518
1519 int rnd_arfcns[OSMO_GSM48_RANGE_ENC_MAX_ARFCNS] = {0};
1520 char rnd_arfcns_set[1024] = {0};
1521
1522 if (range < OSMO_GSM48_ARFCN_RANGE_1024)
1523 min_freq = random() % (1023 - range);
1524
1525 for (count = max_count; count; ) {
1526 int arfcn = min_freq + random() % (range + 1);
1527 OSMO_ASSERT(arfcn < ARRAY_SIZE(rnd_arfcns_set));
1528
1529 if (!rnd_arfcns_set[arfcn]) {
1530 rnd_arfcns_set[arfcn] = 1;
1531 count -= 1;
1532 }
1533 }
1534
1535 arfcns_num = 0;
1536 for (i = 0; i < ARRAY_SIZE(rnd_arfcns_set); i++)
1537 if (rnd_arfcns_set[i])
1538 rnd_arfcns[arfcns_num++] = i;
1539
1540 rc = test_single_range_encoding(range, rnd_arfcns,
1541 arfcns_num, 1);
1542 if (rc != 0) {
1543 printf("Failed on test %d, range %d, num ARFCNs %d\n",
1544 test_idx, range, max_count);
1545 test_single_range_encoding(range, rnd_arfcns,
1546 arfcns_num, 0);
1547 return;
1548 }
1549 }
1550 }
1551}
1552
1553static void test_range_encoding()
1554{
1555 int *arfcns;
1556 int arfcns_num = 0;
1557 int test_idx;
1558 int range;
1559
1560 for (test_idx = 0; arfcn_test_ranges[test_idx].arfcns_num > 0; test_idx++)
1561 {
1562 arfcns_num = arfcn_test_ranges[test_idx].arfcns_num;
1563 arfcns = &arfcn_test_ranges[test_idx].arfcns[0];
1564 range = arfcn_test_ranges[test_idx].range;
1565
1566 printf("Range test %d: range %d, num ARFCNs %d\n",
1567 test_idx, range, arfcns_num);
1568
1569 test_single_range_encoding(range, arfcns, arfcns_num, 0);
1570 }
1571
1572 test_random_range_encoding(OSMO_GSM48_ARFCN_RANGE_128, 29);
1573 test_random_range_encoding(OSMO_GSM48_ARFCN_RANGE_256, 22);
1574 test_random_range_encoding(OSMO_GSM48_ARFCN_RANGE_512, 18);
1575 test_random_range_encoding(OSMO_GSM48_ARFCN_RANGE_1024, 16);
1576}
1577
1578static int freqs1[] = {
1579 12, 70, 121, 190, 250, 320, 401, 475, 520, 574, 634, 700, 764, 830, 905, 980
1580};
1581
1582static int freqs2[] = {
1583 402, 460, 1, 67, 131, 197, 272, 347,
1584};
1585
1586static int freqs3[] = {
1587 68, 128, 198, 279, 353, 398, 452,
1588
1589};
1590
1591static int w_out[] = {
1592 122, 2, 69, 204, 75, 66, 60, 70, 83, 3, 24, 67, 54, 64, 70, 9,
1593};
1594
1595static int range128[] = {
1596 1, 1 + 127,
1597};
1598
1599static int range256[] = {
1600 1, 1 + 128,
1601};
1602
1603static int range512[] = {
1604 1, 1+ 511,
1605};
1606
1607
1608#define VERIFY(res, cmp, wanted) \
1609 if (!(res cmp wanted)) { \
1610 printf("ASSERT failed: %s:%d Wanted: %d %s %d\n", \
1611 __FILE__, __LINE__, (int) res, # cmp, (int) wanted); \
1612 }
1613
1614static void test_arfcn_filter()
1615{
1616 int arfcns[50], i, res, f0_included;
1617 for (i = 0; i < ARRAY_SIZE(arfcns); ++i)
1618 arfcns[i] = (i + 1) * 2;
1619
1620 /* check that the arfcn is taken out. f0_included is only set for Range1024 */
1621 f0_included = 24;
1622 res = osmo_gsm48_range_enc_filter_arfcns(arfcns, ARRAY_SIZE(arfcns), arfcns[0], &f0_included);
1623 VERIFY(res, ==, ARRAY_SIZE(arfcns) - 1);
1624 VERIFY(f0_included, ==, 1);
1625 for (i = 0; i < res; ++i)
1626 VERIFY(arfcns[i], ==, ((i+2) * 2) - (2+1));
1627
1628 /* check with range1024, ARFCN 0 is included */
1629 for (i = 0; i < ARRAY_SIZE(arfcns); ++i)
1630 arfcns[i] = i * 2;
1631 res = osmo_gsm48_range_enc_filter_arfcns(arfcns, ARRAY_SIZE(arfcns), 0, &f0_included);
1632 VERIFY(res, ==, ARRAY_SIZE(arfcns) - 1);
1633 VERIFY(f0_included, ==, 1);
1634 for (i = 0; i < res; ++i)
1635 VERIFY(arfcns[i], ==, (i + 1) * 2 - 1);
1636
1637 /* check with range1024, ARFCN 0 not included */
1638 for (i = 0; i < ARRAY_SIZE(arfcns); ++i)
1639 arfcns[i] = (i + 1) * 2;
1640 res = osmo_gsm48_range_enc_filter_arfcns(arfcns, ARRAY_SIZE(arfcns), 0, &f0_included);
1641 VERIFY(res, ==, ARRAY_SIZE(arfcns));
1642 VERIFY(f0_included, ==, 0);
1643 for (i = 0; i < res; ++i)
1644 VERIFY(arfcns[i], ==, ((i + 1) * 2) - 1);
1645}
1646
1647static void test_print_encoding()
1648{
1649 int rc;
1650 int w[17];
1651 uint8_t chan_list[16];
1652 memset(chan_list, 0x23, sizeof(chan_list));
1653
1654 for (rc = 0; rc < ARRAY_SIZE(w); ++rc)
1655 switch (rc % 3) {
1656 case 0:
1657 w[rc] = 0xAAAA;
1658 break;
1659 case 1:
1660 w[rc] = 0x5555;
1661 break;
1662 case 2:
1663 w[rc] = 0x9696;
1664 break;
1665 }
1666
1667 osmo_gsm48_range_enc_512(chan_list, (1 << 9) | 0x96, w);
1668
1669 printf("Range512: %s\n", osmo_hexdump(chan_list, ARRAY_SIZE(chan_list)));
1670}
1671
1672static void test_si_range_helpers()
1673{
1674 int ws[(sizeof(freqs1)/sizeof(freqs1[0]))];
1675 int i, f0 = 0xFFFFFF;
1676
1677 memset(&ws[0], 0x23, sizeof(ws));
1678
1679 i = osmo_gsm48_range_enc_find_index(1023, freqs1, ARRAY_SIZE(freqs1));
1680 printf("Element is: %d => freqs[i] = %d\n", i, i >= 0 ? freqs1[i] : -1);
1681 VERIFY(i, ==, 2);
1682
1683 i = osmo_gsm48_range_enc_find_index(511, freqs2, ARRAY_SIZE(freqs2));
1684 printf("Element is: %d => freqs[i] = %d\n", i, i >= 0 ? freqs2[i] : -1);
1685 VERIFY(i, ==, 2);
1686
1687 i = osmo_gsm48_range_enc_find_index(511, freqs3, ARRAY_SIZE(freqs3));
1688 printf("Element is: %d => freqs[i] = %d\n", i, i >= 0 ? freqs3[i] : -1);
1689 VERIFY(i, ==, 0);
1690
1691 osmo_gsm48_range_enc_arfcns(1023, freqs1, ARRAY_SIZE(freqs1), ws, 0);
1692
1693 for (i = 0; i < sizeof(freqs1)/sizeof(freqs1[0]); ++i) {
1694 printf("w[%d]=%d\n", i, ws[i]);
1695 VERIFY(ws[i], ==, w_out[i]);
1696 }
1697
1698 i = osmo_gsm48_range_enc_determine_range(range128, ARRAY_SIZE(range128), &f0);
1699 VERIFY(i, ==, OSMO_GSM48_ARFCN_RANGE_128);
1700 VERIFY(f0, ==, 1);
1701
1702 i = osmo_gsm48_range_enc_determine_range(range256, ARRAY_SIZE(range256), &f0);
1703 VERIFY(i, ==, OSMO_GSM48_ARFCN_RANGE_256);
1704 VERIFY(f0, ==, 1);
1705
1706 i = osmo_gsm48_range_enc_determine_range(range512, ARRAY_SIZE(range512), &f0);
1707 VERIFY(i, ==, OSMO_GSM48_ARFCN_RANGE_512);
1708 VERIFY(f0, ==, 1);
1709}
1710
Pau Espin Pedrolb99f4ca2019-10-31 13:35:22 +01001711static void test_power_ctrl()
1712{
1713 int8_t rc8;
Pau Espin Pedrole40b9632019-10-31 15:38:30 +01001714 int rc;
Pau Espin Pedrolb99f4ca2019-10-31 13:35:22 +01001715
1716 rc8 = osmo_gsm48_rfpowercap2powerclass(GSM_BAND_850, 0x00);
1717 VERIFY(rc8, ==, 1);
1718 rc8 = osmo_gsm48_rfpowercap2powerclass(GSM_BAND_900, 0x02);
1719 VERIFY(rc8, ==, 3);
1720 rc8 = osmo_gsm48_rfpowercap2powerclass(GSM_BAND_1800, 0x02);
1721 VERIFY(rc8, ==, 3);
1722 rc8 = osmo_gsm48_rfpowercap2powerclass(GSM_BAND_1900, 0x02);
1723 VERIFY(rc8, ==, 3);
1724 rc8 = osmo_gsm48_rfpowercap2powerclass(GSM_BAND_1900, 0x04);
1725 VERIFY(rc8, <, 0);
1726 rc8 = osmo_gsm48_rfpowercap2powerclass(GSM_BAND_900, 0x04);
1727 VERIFY(rc8, ==, 5);
1728 rc8 = osmo_gsm48_rfpowercap2powerclass(GSM_BAND_900, 0x05);
1729 VERIFY(rc8, <, 0);
1730 rc8 = osmo_gsm48_rfpowercap2powerclass(GSM_BAND_900, 0xf2);
1731 VERIFY(rc8, <, 0);
Pau Espin Pedrole40b9632019-10-31 15:38:30 +01001732
1733 rc = ms_class_gmsk_dbm(GSM_BAND_850, 0);
1734 VERIFY(rc, <, 0);
1735 rc = ms_class_gmsk_dbm(GSM_BAND_850, 1);
1736 VERIFY(rc, ==, 43);
1737 rc = ms_class_gmsk_dbm(GSM_BAND_900, 3);
1738 VERIFY(rc, ==, 37);
1739 rc = ms_class_gmsk_dbm(GSM_BAND_1800, 2);
1740 VERIFY(rc, ==, 24);
1741 rc = ms_class_gmsk_dbm(GSM_BAND_1800, 3);
1742 VERIFY(rc, ==, 36);
1743 rc = ms_class_gmsk_dbm(GSM_BAND_1900, 3);
1744 VERIFY(rc, ==, 33);
1745 rc = ms_class_gmsk_dbm(GSM_BAND_1900, 4);
1746 VERIFY(rc, <, 0);
1747 rc = ms_class_gmsk_dbm(GSM_BAND_900, 5);
1748 VERIFY(rc, ==, 29);
1749 rc = ms_class_gmsk_dbm(GSM_BAND_900, 6);
1750 VERIFY(rc, <, 0);
Pau Espin Pedrolb99f4ca2019-10-31 13:35:22 +01001751}
1752
Pau Espin Pedrol1dac8752022-04-26 17:32:33 +02001753static void test_rach_tx_integer_raw2val()
1754{
1755 unsigned int raw;
1756 for (raw = 0; raw <= 0x0f; raw++) {
1757 unsigned int val = rach_tx_integer_raw2val(raw);
1758 printf("rach_tx_integer_raw2val(0x0%x): %u slots used to spread transmission\n",
1759 raw, val);
1760 }
1761}
1762
Harald Weltec8a0b932012-08-24 21:27:26 +02001763int main(int argc, char **argv)
1764{
1765 test_bearer_cap();
Holger Hans Peter Freythercd252e32013-07-03 09:56:53 +02001766 test_mid_from_tmsi();
Maxd55d7d42018-02-15 11:27:18 +01001767 test_mid_from_imsi();
Neels Hofmeyr49686282018-12-05 21:32:21 +01001768 test_mid_encode_decode();
1769 test_mid_decode_zero_length();
Neels Hofmeyr83025bf2020-05-26 02:45:23 +02001770 test_struct_mobile_identity();
Vadim Yanitskiyaa0683d2019-05-25 23:14:00 +07001771 test_bcd_number_encode_decode();
Max99377c22017-08-30 19:17:50 +02001772 test_ra_cap();
Neels Hofmeyrd5a577b2018-02-20 21:48:07 +01001773 test_lai_encode_decode();
Philipp Maiere36be562020-11-12 11:33:54 +01001774 test_decode_classmark3();
Holger Hans Peter Freythercd252e32013-07-03 09:56:53 +02001775
Stefan Sperlingfdf8b7b2018-07-27 12:19:15 +02001776 test_si_range_helpers();
1777 test_arfcn_filter();
1778 test_print_encoding();
1779 test_range_encoding();
Pau Espin Pedrolb99f4ca2019-10-31 13:35:22 +01001780 test_power_ctrl();
Pau Espin Pedrol1dac8752022-04-26 17:32:33 +02001781 test_rach_tx_integer_raw2val();
Stefan Sperlingfdf8b7b2018-07-27 12:19:15 +02001782
Holger Hans Peter Freythercd252e32013-07-03 09:56:53 +02001783 return EXIT_SUCCESS;
Harald Weltec8a0b932012-08-24 21:27:26 +02001784}