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Vadim Yanitskiy3262f822016-09-23 01:48:59 +07001/*
2 * (C) 2013 by Andreas Eversberg <jolly@eversberg.eu>
3 * (C) 2015 by Alexander Chemeris <Alexander.Chemeris@fairwaves.co>
4 * (C) 2016 by Tom Tsou <tom.tsou@ettus.com>
5 *
6 * All Rights Reserved
7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; either version 2 of the License, or
11 * (at your option) any later version.
12 *
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
17 *
18 * You should have received a copy of the GNU General Public License along
19 * with this program; if not, write to the Free Software Foundation, Inc.,
20 * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
21 */
22
23#include <stdio.h>
24#include <stdint.h>
25#include <string.h>
26#include <stdlib.h>
Maxc8cf8202017-05-22 16:07:04 +020027#include <errno.h>
Vadim Yanitskiy3262f822016-09-23 01:48:59 +070028
29#include <osmocom/core/bits.h>
30#include <osmocom/core/conv.h>
31#include <osmocom/core/utils.h>
32#include <osmocom/core/crcgen.h>
33#include <osmocom/core/endian.h>
34
35#include <osmocom/gprs/protocol/gsm_04_60.h>
36#include <osmocom/gprs/gprs_rlc.h>
37
38#include <osmocom/gsm/protocol/gsm_04_08.h>
39#include <osmocom/gsm/gsm0503.h>
40#include <osmocom/codec/codec.h>
41
42#include <osmocom/coding/gsm0503_interleaving.h>
43#include <osmocom/coding/gsm0503_mapping.h>
44#include <osmocom/coding/gsm0503_tables.h>
45#include <osmocom/coding/gsm0503_coding.h>
46#include <osmocom/coding/gsm0503_parity.h>
47
48/*
49 * EGPRS coding limits
50 */
51
52/* Max header size with parity bits */
53#define EGPRS_HDR_UPP_MAX 54
54
55/* Max encoded header size */
56#define EGPRS_HDR_C_MAX 162
57
58/* Max punctured header size */
59#define EGPRS_HDR_HC_MAX 160
60
61/* Max data block size with parity bits */
62#define EGPRS_DATA_U_MAX 612
63
64/* Max encoded data block size */
65#define EGPRS_DATA_C_MAX 1836
66
67/* Max single block punctured data size */
68#define EGPRS_DATA_DC_MAX 1248
69
70/* Dual block punctured data size */
71#define EGPRS_DATA_C1 612
72#define EGPRS_DATA_C2 EGPRS_DATA_C1
73
74/* TS 101318 Chapter 5.1: 260 bits + 4bit sig */
75#define GSM_FR_BYTES 33
76/* TS 101318 Chapter 5.2: 112 bits, no sig */
77#define GSM_HR_BYTES 14
78/* TS 101318 Chapter 5.3: 244 bits + 4bit sig */
79#define GSM_EFR_BYTES 31
80
81union gprs_rlc_ul_hdr_egprs {
82 struct gprs_rlc_ul_header_egprs_1 type1;
83 struct gprs_rlc_ul_header_egprs_2 type2;
84 struct gprs_rlc_ul_header_egprs_3 type3;
85};
86
87union gprs_rlc_dl_hdr_egprs {
88 struct gprs_rlc_dl_header_egprs_1 type1;
89 struct gprs_rlc_dl_header_egprs_2 type2;
90 struct gprs_rlc_dl_header_egprs_3 type3;
91};
92
93struct gsm0503_mcs_code {
94 uint8_t mcs;
95 uint8_t usf_len;
96
97 /* Header coding */
98 uint8_t hdr_len;
99 uint8_t hdr_code_len;
100 uint8_t hdr_punc_len;
101 const struct osmo_conv_code *hdr_conv;
102 const uint8_t *hdr_punc;
103
104 /* Data coding */
105 uint16_t data_len;
106 uint16_t data_code_len;
107 uint16_t data_punc_len;
108 const struct osmo_conv_code *data_conv;
109 const uint8_t *data_punc[3];
110};
111
112/*
113 * EGPRS UL coding parameters
114 */
115struct gsm0503_mcs_code gsm0503_mcs_ul_codes[EGPRS_NUM_MCS] = {
116 {
117 .mcs = EGPRS_MCS0,
118 },
119 {
120 .mcs = EGPRS_MCS1,
121 .hdr_len = 31,
122 .hdr_code_len = 117,
123 .hdr_punc_len = 80,
124 .hdr_conv = &gsm0503_mcs1_ul_hdr,
125 .hdr_punc = gsm0503_puncture_mcs1_ul_hdr,
126
127 .data_len = 178,
128 .data_code_len = 588,
129 .data_punc_len = 372,
130 .data_conv = &gsm0503_mcs1,
131 .data_punc = {
132 gsm0503_puncture_mcs1_p1,
133 gsm0503_puncture_mcs1_p2,
134 NULL,
135 },
136 },
137 {
138 .mcs = EGPRS_MCS2,
139 .hdr_len = 31,
140 .hdr_code_len = 117,
141 .hdr_punc_len = 80,
142 .hdr_conv = &gsm0503_mcs1_ul_hdr,
143 .hdr_punc = gsm0503_puncture_mcs1_ul_hdr,
144
145 .data_len = 226,
146 .data_code_len = 732,
147 .data_punc_len = 372,
148 .data_conv = &gsm0503_mcs2,
149 .data_punc = {
150 gsm0503_puncture_mcs2_p1,
151 gsm0503_puncture_mcs2_p2,
152 NULL,
153 },
154 },
155 {
156 .mcs = EGPRS_MCS3,
157 .hdr_len = 31,
158 .hdr_code_len = 117,
159 .hdr_punc_len = 80,
160 .hdr_conv = &gsm0503_mcs1_ul_hdr,
161 .hdr_punc = gsm0503_puncture_mcs1_ul_hdr,
162
163 .data_len = 298,
164 .data_code_len = 948,
165 .data_punc_len = 372,
166 .data_conv = &gsm0503_mcs3,
167 .data_punc = {
168 gsm0503_puncture_mcs3_p1,
169 gsm0503_puncture_mcs3_p2,
170 gsm0503_puncture_mcs3_p3,
171 },
172 },
173 {
174 .mcs = EGPRS_MCS4,
175 .hdr_len = 31,
176 .hdr_code_len = 117,
177 .hdr_punc_len = 80,
178 .hdr_conv = &gsm0503_mcs1_ul_hdr,
179 .hdr_punc = gsm0503_puncture_mcs1_ul_hdr,
180
181 .data_len = 354,
182 .data_code_len = 1116,
183 .data_punc_len = 372,
184 .data_conv = &gsm0503_mcs4,
185 .data_punc = {
186 gsm0503_puncture_mcs4_p1,
187 gsm0503_puncture_mcs4_p2,
188 gsm0503_puncture_mcs4_p3,
189 },
190 },
191 {
192 .mcs = EGPRS_MCS5,
193 .hdr_len = 37,
194 .hdr_code_len = 135,
195 .hdr_punc_len = 136,
196 .hdr_conv = &gsm0503_mcs5_ul_hdr,
197 .hdr_punc = NULL,
198
199 .data_len = 450,
200 .data_code_len = 1404,
201 .data_punc_len = 1248,
202 .data_conv = &gsm0503_mcs5,
203 .data_punc = {
204 gsm0503_puncture_mcs5_p1,
205 gsm0503_puncture_mcs5_p2,
206 NULL,
207 },
208 },
209 {
210 .mcs = EGPRS_MCS6,
211 .hdr_len = 37,
212 .hdr_code_len = 135,
213 .hdr_punc_len = 136,
214 .hdr_conv = &gsm0503_mcs5_ul_hdr,
215 .hdr_punc = NULL,
216
217 .data_len = 594,
218 .data_code_len = 1836,
219 .data_punc_len = 1248,
220 .data_conv = &gsm0503_mcs6,
221 .data_punc = {
222 gsm0503_puncture_mcs6_p1,
223 gsm0503_puncture_mcs6_p2,
224 NULL,
225 },
226 },
227 {
228 .mcs = EGPRS_MCS7,
229 .hdr_len = 46,
230 .hdr_code_len = 162,
231 .hdr_punc_len = 160,
232 .hdr_conv = &gsm0503_mcs7_ul_hdr,
233 .hdr_punc = gsm0503_puncture_mcs7_ul_hdr,
234
235 .data_len = 900,
236 .data_code_len = 1404,
237 .data_punc_len = 612,
238 .data_conv = &gsm0503_mcs7,
239 .data_punc = {
240 gsm0503_puncture_mcs7_p1,
241 gsm0503_puncture_mcs7_p2,
242 gsm0503_puncture_mcs7_p3,
243 }
244 },
245 {
246 .mcs = EGPRS_MCS8,
247 .hdr_len = 46,
248 .hdr_code_len = 162,
249 .hdr_punc_len = 160,
250 .hdr_conv = &gsm0503_mcs7_ul_hdr,
251 .hdr_punc = gsm0503_puncture_mcs7_ul_hdr,
252
253 .data_len = 1092,
254 .data_code_len = 1692,
255 .data_punc_len = 612,
256 .data_conv = &gsm0503_mcs8,
257 .data_punc = {
258 gsm0503_puncture_mcs8_p1,
259 gsm0503_puncture_mcs8_p2,
260 gsm0503_puncture_mcs8_p3,
261 }
262 },
263 {
264 .mcs = EGPRS_MCS9,
265 .hdr_len = 46,
266 .hdr_code_len = 162,
267 .hdr_punc_len = 160,
268 .hdr_conv = &gsm0503_mcs7_ul_hdr,
269 .hdr_punc = gsm0503_puncture_mcs7_ul_hdr,
270
271 .data_len = 1188,
272 .data_code_len = 1836,
273 .data_punc_len = 612,
274 .data_conv = &gsm0503_mcs9,
275 .data_punc = {
276 gsm0503_puncture_mcs9_p1,
277 gsm0503_puncture_mcs9_p2,
278 gsm0503_puncture_mcs9_p3,
279 }
280 },
281};
282
283/*
284 * EGPRS DL coding parameters
285 */
286struct gsm0503_mcs_code gsm0503_mcs_dl_codes[EGPRS_NUM_MCS] = {
287 {
288 .mcs = EGPRS_MCS0,
289 },
290 {
291 .mcs = EGPRS_MCS1,
292 .usf_len = 3,
293 .hdr_len = 28,
294 .hdr_code_len = 108,
295 .hdr_punc_len = 68,
296 .hdr_conv = &gsm0503_mcs1_dl_hdr,
297 .hdr_punc = gsm0503_puncture_mcs1_dl_hdr,
298
299 .data_len = 178,
300 .data_code_len = 588,
301 .data_punc_len = 372,
302 .data_conv = &gsm0503_mcs1,
303 .data_punc = {
304 gsm0503_puncture_mcs1_p1,
305 gsm0503_puncture_mcs1_p2,
306 NULL,
307 },
308 },
309 {
310 .mcs = EGPRS_MCS2,
311 .usf_len = 3,
312 .hdr_len = 28,
313 .hdr_code_len = 108,
314 .hdr_punc_len = 68,
315 .hdr_conv = &gsm0503_mcs1_dl_hdr,
316 .hdr_punc = gsm0503_puncture_mcs1_dl_hdr,
317
318 .data_len = 226,
319 .data_code_len = 732,
320 .data_punc_len = 372,
321 .data_conv = &gsm0503_mcs2,
322 .data_punc = {
323 gsm0503_puncture_mcs2_p1,
324 gsm0503_puncture_mcs2_p2,
325 NULL,
326 },
327 },
328 {
329 .mcs = EGPRS_MCS3,
330 .usf_len = 3,
331 .hdr_len = 28,
332 .hdr_code_len = 108,
333 .hdr_punc_len = 68,
334 .hdr_conv = &gsm0503_mcs1_dl_hdr,
335 .hdr_punc = gsm0503_puncture_mcs1_dl_hdr,
336
337 .data_len = 298,
338 .data_code_len = 948,
339 .data_punc_len = 372,
340 .data_conv = &gsm0503_mcs3,
341 .data_punc = {
342 gsm0503_puncture_mcs3_p1,
343 gsm0503_puncture_mcs3_p2,
344 gsm0503_puncture_mcs3_p3,
345 },
346 },
347 {
348 .mcs = EGPRS_MCS4,
349 .usf_len = 3,
350 .hdr_len = 28,
351 .hdr_code_len = 108,
352 .hdr_punc_len = 68,
353 .hdr_conv = &gsm0503_mcs1_dl_hdr,
354 .hdr_punc = gsm0503_puncture_mcs1_dl_hdr,
355
356 .data_len = 354,
357 .data_code_len = 1116,
358 .data_punc_len = 372,
359 .data_conv = &gsm0503_mcs4,
360 .data_punc = {
361 gsm0503_puncture_mcs4_p1,
362 gsm0503_puncture_mcs4_p2,
363 gsm0503_puncture_mcs4_p3,
364 },
365 },
366 {
367 .mcs = EGPRS_MCS5,
368 .usf_len = 3,
369 .hdr_len = 25,
370 .hdr_code_len = 99,
371 .hdr_punc_len = 100,
372 .hdr_conv = &gsm0503_mcs5_dl_hdr,
373 .hdr_punc = NULL,
374
375 .data_len = 450,
376 .data_code_len = 1404,
377 .data_punc_len = 1248,
378 .data_conv = &gsm0503_mcs5,
379 .data_punc = {
380 gsm0503_puncture_mcs5_p1,
381 gsm0503_puncture_mcs5_p2,
382 NULL,
383 },
384 },
385 {
386 .mcs = EGPRS_MCS6,
387 .usf_len = 3,
388 .hdr_len = 25,
389 .hdr_code_len = 99,
390 .hdr_punc_len = 100,
391 .hdr_conv = &gsm0503_mcs5_dl_hdr,
392 .hdr_punc = NULL,
393
394 .data_len = 594,
395 .data_code_len = 1836,
396 .data_punc_len = 1248,
397 .data_conv = &gsm0503_mcs6,
398 .data_punc = {
399 gsm0503_puncture_mcs6_p1,
400 gsm0503_puncture_mcs6_p2,
401 NULL,
402 },
403 },
404 {
405 .mcs = EGPRS_MCS7,
406 .usf_len = 3,
407 .hdr_len = 37,
408 .hdr_code_len = 135,
409 .hdr_punc_len = 124,
410 .hdr_conv = &gsm0503_mcs7_dl_hdr,
411 .hdr_punc = gsm0503_puncture_mcs7_dl_hdr,
412
413 .data_len = 900,
414 .data_code_len = 1404,
415 .data_punc_len = 612,
416 .data_conv = &gsm0503_mcs7,
417 .data_punc = {
418 gsm0503_puncture_mcs7_p1,
419 gsm0503_puncture_mcs7_p2,
420 gsm0503_puncture_mcs7_p3,
421 }
422 },
423 {
424 .mcs = EGPRS_MCS8,
425 .usf_len = 3,
426 .hdr_len = 37,
427 .hdr_code_len = 135,
428 .hdr_punc_len = 124,
429 .hdr_conv = &gsm0503_mcs7_dl_hdr,
430 .hdr_punc = gsm0503_puncture_mcs7_dl_hdr,
431
432 .data_len = 1092,
433 .data_code_len = 1692,
434 .data_punc_len = 612,
435 .data_conv = &gsm0503_mcs8,
436 .data_punc = {
437 gsm0503_puncture_mcs8_p1,
438 gsm0503_puncture_mcs8_p2,
439 gsm0503_puncture_mcs8_p3,
440 }
441 },
442 {
443 .mcs = EGPRS_MCS9,
444 .usf_len = 3,
445 .hdr_len = 37,
446 .hdr_code_len = 135,
447 .hdr_punc_len = 124,
448 .hdr_conv = &gsm0503_mcs7_dl_hdr,
449 .hdr_punc = gsm0503_puncture_mcs7_dl_hdr,
450
451 .data_len = 1188,
452 .data_code_len = 1836,
453 .data_punc_len = 612,
454 .data_conv = &gsm0503_mcs9,
455 .data_punc = {
456 gsm0503_puncture_mcs9_p1,
457 gsm0503_puncture_mcs9_p2,
458 gsm0503_puncture_mcs9_p3,
459 }
460 },
461};
462
463static int osmo_conv_decode_ber(const struct osmo_conv_code *code,
464 const sbit_t *input, ubit_t *output,
465 int *n_errors, int *n_bits_total)
466{
467 int res, i, coded_len;
468 ubit_t recoded[EGPRS_DATA_C_MAX];
469
470 res = osmo_conv_decode(code, input, output);
471
472 if (n_bits_total || n_errors) {
473 coded_len = osmo_conv_encode(code, output, recoded);
474 OSMO_ASSERT(sizeof(recoded) / sizeof(recoded[0]) >= coded_len);
475 }
476
477 /* Count bit errors */
478 if (n_errors) {
479 *n_errors = 0;
480 for (i = 0; i < coded_len; i++) {
481 if (!((recoded[i] && input[i] < 0) ||
482 (!recoded[i] && input[i] > 0)) )
483 *n_errors += 1;
484 }
485 }
486
487 if (n_bits_total)
488 *n_bits_total = coded_len;
489
490 return res;
491}
492
493static int _xcch_decode_cB(uint8_t *l2_data, sbit_t *cB,
494 int *n_errors, int *n_bits_total)
495{
496 ubit_t conv[224];
497 int rv;
498
499 osmo_conv_decode_ber(&gsm0503_xcch, cB,
500 conv, n_errors, n_bits_total);
501
502 rv = osmo_crc64gen_check_bits(&gsm0503_fire_crc40,
503 conv, 184, conv + 184);
504 if (rv)
505 return -1;
506
507 osmo_ubit2pbit_ext(l2_data, 0, conv, 0, 184, 1);
508
509 return 0;
510}
511
512static int _xcch_encode_cB(ubit_t *cB, uint8_t *l2_data)
513{
514 ubit_t conv[224];
515
516 osmo_pbit2ubit_ext(conv, 0, l2_data, 0, 184, 1);
517
518 osmo_crc64gen_set_bits(&gsm0503_fire_crc40, conv, 184, conv + 184);
519
520 osmo_conv_encode(&gsm0503_xcch, conv, cB);
521
522 return 0;
523}
524
525/*
526 * GSM xCCH block transcoding
527 */
528int gsm0503_xcch_decode(uint8_t *l2_data, sbit_t *bursts,
529 int *n_errors, int *n_bits_total)
530{
531 sbit_t iB[456], cB[456];
532 int i;
533
534 for (i = 0; i < 4; i++)
535 gsm0503_xcch_burst_unmap(&iB[i * 114], &bursts[i * 116], NULL, NULL);
536
537 gsm0503_xcch_deinterleave(cB, iB);
538
539 return _xcch_decode_cB(l2_data, cB, n_errors, n_bits_total);
540}
541
542int gsm0503_xcch_encode(ubit_t *bursts, uint8_t *l2_data)
543{
544 ubit_t iB[456], cB[456], hl = 1, hn = 1;
545 int i;
546
547 _xcch_encode_cB(cB, l2_data);
548
549 gsm0503_xcch_interleave(cB, iB);
550
551 for (i = 0; i < 4; i++)
552 gsm0503_xcch_burst_map(&iB[i * 114], &bursts[i * 116], &hl, &hn);
553
554 return 0;
555}
556
557/*
558 * EGPRS PDTCH UL block decoding
559 */
560
561/*
562 * Type 3 - MCS-1,2,3,4
563 * Unmapping and deinterleaving
564 */
565static int egprs_type3_unmap(const sbit_t *bursts, sbit_t *hc, sbit_t *dc)
566{
567 int i;
568 sbit_t iB[456], q[8];
569
570 for (i = 0; i < 4; i++) {
571 gsm0503_xcch_burst_unmap(&iB[i * 114], &bursts[i * 116],
572 q + i * 2, q + i * 2 + 1);
573 }
574
575 gsm0503_mcs1_ul_deinterleave(hc, dc, iB);
576
577 return 0;
578}
579
580/*
581 * Type 2 - MCS-5,6
582 * Unmapping and deinterleaving
583 */
584static int egprs_type2_unmap(const sbit_t *bursts, sbit_t *hc, sbit_t *dc)
585{
586 int i;
587 sbit_t burst[348];
588 sbit_t hi[EGPRS_HDR_HC_MAX];
589 sbit_t di[EGPRS_DATA_DC_MAX];
590
591 for (i = 0; i < 4; i++) {
592 memcpy(burst, &bursts[i * 348], 348);
593
594 gsm0503_mcs5_burst_swap(burst);
595 gsm0503_mcs5_ul_burst_unmap(di, burst, hi, i);
596 }
597
598 gsm0503_mcs5_ul_deinterleave(hc, dc, hi, di);
599
600 return 0;
601}
602
603/*
604 * Type 1 - MCS-7,8,9
605 * Unmapping and deinterleaving - Note that MCS-7 interleaver is unique
606 */
607static int egprs_type1_unmap(const sbit_t *bursts, sbit_t *hc,
608 sbit_t *c1, sbit_t *c2, int msc)
609{
610 int i;
611 sbit_t burst[348];
612 sbit_t hi[EGPRS_HDR_HC_MAX];
613 sbit_t di[EGPRS_DATA_C1 * 2];
614
615 for (i = 0; i < 4; i++) {
616 memcpy(burst, &bursts[i * 348], 348);
617
618 gsm0503_mcs5_burst_swap(burst);
619 gsm0503_mcs7_ul_burst_unmap(di, burst, hi, i);
620 }
621
622 if (msc == EGPRS_MCS7)
623 gsm0503_mcs7_ul_deinterleave(hc, c1, c2, hi, di);
624 else
625 gsm0503_mcs8_ul_deinterleave(hc, c1, c2, hi, di);
626
627 return 0;
628}
629
630/*
631 * Decode EGPRS UL header section
632 *
633 * 1. Depuncture
634 * 2. Convolutional decoding
635 * 3. CRC check
636 */
637static int _egprs_decode_hdr(const sbit_t *hc, int mcs,
638 union gprs_rlc_ul_hdr_egprs *hdr)
639{
640 sbit_t C[EGPRS_HDR_C_MAX];
641 ubit_t upp[EGPRS_HDR_UPP_MAX];
642 int i, j, rc;
643 struct gsm0503_mcs_code *code;
644
645 code = &gsm0503_mcs_ul_codes[mcs];
646
647 /* Skip depuncturing on MCS-5,6 header */
648 if ((mcs == EGPRS_MCS5) || (mcs == EGPRS_MCS6)) {
649 memcpy(C, hc, code->hdr_code_len);
650 goto hdr_conv_decode;
651 }
652
653 if (!code->hdr_punc) {
654 /* Invalid MCS-X header puncture matrix */
655 return -1;
656 }
657
658 i = code->hdr_code_len - 1;
659 j = code->hdr_punc_len - 1;
660
661 for (; i >= 0; i--) {
662 if (!code->hdr_punc[i])
663 C[i] = hc[j--];
664 else
665 C[i] = 0;
666 }
667
668hdr_conv_decode:
669 osmo_conv_decode_ber(code->hdr_conv, C, upp, NULL, NULL);
670 rc = osmo_crc8gen_check_bits(&gsm0503_mcs_crc8_hdr, upp,
671 code->hdr_len, upp + code->hdr_len);
672 if (rc)
673 return -1;
674
675 osmo_ubit2pbit_ext((pbit_t *) hdr, 0, upp, 0, code->hdr_len, 1);
676
677 return 0;
678}
679
680/*
681 * Blind MCS header decoding based on burst length and CRC validation.
682 * Ignore 'q' value coding identification. This approach provides
683 * the strongest chance of header recovery.
684 */
685static int egprs_decode_hdr(union gprs_rlc_ul_hdr_egprs *hdr,
686 const sbit_t *bursts, uint16_t nbits)
687{
688 int rc;
689 sbit_t hc[EGPRS_HDR_HC_MAX];
690
691 if (nbits == GSM0503_GPRS_BURSTS_NBITS) {
692 /* MCS-1,2,3,4 */
693 egprs_type3_unmap(bursts, hc, NULL);
694 rc = _egprs_decode_hdr(hc, EGPRS_MCS1, hdr);
695 if (!rc)
696 return EGPRS_HDR_TYPE3;
697 } else if (nbits == GSM0503_EGPRS_BURSTS_NBITS) {
698 /* MCS-5,6 */
699 egprs_type2_unmap(bursts, hc, NULL);
700 rc = _egprs_decode_hdr(hc, EGPRS_MCS5, hdr);
701 if (!rc)
702 return EGPRS_HDR_TYPE2;
703
704 /* MCS-7,8,9 */
705 egprs_type1_unmap(bursts, hc, NULL, NULL, EGPRS_MCS7);
706 rc = _egprs_decode_hdr(hc, EGPRS_MCS7, hdr);
707 if (!rc)
708 return EGPRS_HDR_TYPE1;
709 }
710
711 return -1;
712}
713
714/*
715 * Parse EGPRS UL header for coding and puncturing scheme (CPS)
716 *
717 * Type 1 - MCS-7,8,9
718 * Type 2 - MCS-5,6
719 * Type 3 - MCS-1,2,3,4
720 */
721static int egprs_parse_ul_cps(struct egprs_cps *cps,
722 union gprs_rlc_ul_hdr_egprs *hdr, int type)
723{
724 uint8_t bits;
725
726 switch (type) {
727 case EGPRS_HDR_TYPE1:
728 bits = hdr->type1.cps;
729 break;
730 case EGPRS_HDR_TYPE2:
731 bits = (hdr->type2.cps_lo << 2) | hdr->type2.cps_hi;
732 break;
733 case EGPRS_HDR_TYPE3:
734 bits = (hdr->type3.cps_lo << 2) | hdr->type3.cps_hi;
735 break;
736 default:
737 return -1;
738 }
739
740 return egprs_get_cps(cps, type, bits);
741}
742
743/*
744 * Decode EGPRS UL data section
745 *
746 * 1. Depuncture
747 * 2. Convolutional decoding
748 * 3. CRC check
749 * 4. Block combining (MCS-7,8,9 only)
750 */
751static int egprs_decode_data(uint8_t *l2_data, sbit_t *c,
752 int mcs, int p, int blk, int *n_errors, int *n_bits_total)
753{
754 ubit_t u[EGPRS_DATA_U_MAX];
755 sbit_t C[EGPRS_DATA_C_MAX];
756
757 int i, j, rc, data_len;
758 struct gsm0503_mcs_code *code;
759
760 if (blk && mcs < EGPRS_MCS7) {
761 /* Invalid MCS-X block state */
762 return -1;
763 }
764
765 code = &gsm0503_mcs_ul_codes[mcs];
766 if (!code->data_punc[p]) {
767 /* Invalid MCS-X data puncture matrix */
768 return -1;
769 }
770
771 /*
772 * MCS-1,6 - single block processing
773 * MCS-7,9 - dual block processing
774 */
775 if (mcs >= EGPRS_MCS7)
776 data_len = code->data_len / 2;
777 else
778 data_len = code->data_len;
779
780 i = code->data_code_len - 1;
781 j = code->data_punc_len - 1;
782
783 for (; i >= 0; i--) {
784 if (!code->data_punc[p][i])
785 C[i] = c[j--];
786 else
787 C[i] = 0;
788 }
789
790 osmo_conv_decode_ber(code->data_conv, C, u, n_errors, n_bits_total);
791 rc = osmo_crc16gen_check_bits(&gsm0503_mcs_crc12, u,
792 data_len, u + data_len);
793 if (rc)
794 return -1;
795
796 /* Offsets output pointer on the second block of Type 1 MCS */
797 osmo_ubit2pbit_ext(l2_data, code->hdr_len + blk * data_len,
798 u, 0, data_len, 1);
799
800 /* Return the number of bytes required for the bit message */
801 return NUM_BYTES(code->hdr_len + code->data_len);
802}
803
804/*
805 * Decode EGPRS UL message
806 *
807 * 1. Header section decoding
808 * 2. Extract CPS settings
809 * 3. Burst unmapping and deinterleaving
810 * 4. Data section decoding
811 */
812int gsm0503_pdtch_egprs_decode(uint8_t *l2_data, sbit_t *bursts, uint16_t nbits,
813 uint8_t *usf_p, int *n_errors, int *n_bits_total)
814{
815 sbit_t dc[EGPRS_DATA_DC_MAX];
816 sbit_t c1[EGPRS_DATA_C1], c2[EGPRS_DATA_C2];
817 int type, rc;
818 struct egprs_cps cps;
819 union gprs_rlc_ul_hdr_egprs *hdr;
820
821 if ((nbits != GSM0503_GPRS_BURSTS_NBITS) &&
822 (nbits != GSM0503_EGPRS_BURSTS_NBITS)) {
823 /* Invalid EGPRS bit length */
Maxc8cf8202017-05-22 16:07:04 +0200824 return -EOVERFLOW;
Vadim Yanitskiy3262f822016-09-23 01:48:59 +0700825 }
826
827 hdr = (union gprs_rlc_ul_hdr_egprs *) l2_data;
828 type = egprs_decode_hdr(hdr, bursts, nbits);
829 if (egprs_parse_ul_cps(&cps, hdr, type) < 0)
Maxc8cf8202017-05-22 16:07:04 +0200830 return -EIO;
Vadim Yanitskiy3262f822016-09-23 01:48:59 +0700831
832 switch (cps.mcs) {
Maxc8cf8202017-05-22 16:07:04 +0200833 case EGPRS_MCS0:
834 return -ENOTSUP;
Vadim Yanitskiy3262f822016-09-23 01:48:59 +0700835 case EGPRS_MCS1:
836 case EGPRS_MCS2:
837 case EGPRS_MCS3:
838 case EGPRS_MCS4:
839 egprs_type3_unmap(bursts, NULL, dc);
840 break;
841 case EGPRS_MCS5:
842 case EGPRS_MCS6:
843 egprs_type2_unmap(bursts, NULL, dc);
844 break;
845 case EGPRS_MCS7:
846 case EGPRS_MCS8:
847 case EGPRS_MCS9:
848 egprs_type1_unmap(bursts, NULL, c1, c2, cps.mcs);
849 break;
850 default:
851 /* Invalid MCS-X */
Maxc8cf8202017-05-22 16:07:04 +0200852 return -EINVAL;
Vadim Yanitskiy3262f822016-09-23 01:48:59 +0700853 }
854
855 /* Decode MCS-X block, where X = cps.mcs */
856 if (cps.mcs < EGPRS_MCS7) {
857 rc = egprs_decode_data(l2_data, dc, cps.mcs, cps.p[0],
858 0, n_errors, n_bits_total);
859 if (rc < 0)
Maxc8cf8202017-05-22 16:07:04 +0200860 return -EFAULT;
Vadim Yanitskiy3262f822016-09-23 01:48:59 +0700861 } else {
862 /* MCS-7,8,9 block 1 */
863 rc = egprs_decode_data(l2_data, c1, cps.mcs, cps.p[0],
864 0, n_errors, n_bits_total);
865 if (rc < 0)
Maxc8cf8202017-05-22 16:07:04 +0200866 return -EFAULT;
Vadim Yanitskiy3262f822016-09-23 01:48:59 +0700867
868 /* MCS-7,8,9 block 2 */
869 rc = egprs_decode_data(l2_data, c2, cps.mcs, cps.p[1],
870 1, n_errors, n_bits_total);
871 if (rc < 0)
Maxc8cf8202017-05-22 16:07:04 +0200872 return -EFAULT;
Vadim Yanitskiy3262f822016-09-23 01:48:59 +0700873 }
874
875 return rc;
876}
877
878/*
879 * GSM PDTCH block transcoding
880 */
881
882int gsm0503_pdtch_decode(uint8_t *l2_data, sbit_t *bursts, uint8_t *usf_p,
883 int *n_errors, int *n_bits_total)
884{
885 sbit_t iB[456], cB[676], hl_hn[8];
886 ubit_t conv[456];
887 int i, j, k, rv, best = 0, cs = 0, usf = 0; /* make GCC happy */
888
889 for (i = 0; i < 4; i++)
890 gsm0503_xcch_burst_unmap(&iB[i * 114], &bursts[i * 116],
891 hl_hn + i * 2, hl_hn + i * 2 + 1);
892
893 for (i = 0; i < 4; i++) {
894 for (j = 0, k = 0; j < 8; j++)
895 k += abs(((int)gsm0503_pdtch_hl_hn_sbit[i][j]) - ((int)hl_hn[j]));
896
897 if (i == 0 || k < best) {
898 best = k;
899 cs = i + 1;
900 }
901 }
902
903 gsm0503_xcch_deinterleave(cB, iB);
904
905 switch (cs) {
906 case 1:
907 osmo_conv_decode_ber(&gsm0503_xcch, cB,
908 conv, n_errors, n_bits_total);
909
910 rv = osmo_crc64gen_check_bits(&gsm0503_fire_crc40,
911 conv, 184, conv + 184);
912 if (rv)
913 return -1;
914
915 osmo_ubit2pbit_ext(l2_data, 0, conv, 0, 184, 1);
916
917 return 23;
918 case 2:
919 for (i = 587, j = 455; i >= 0; i--) {
920 if (!gsm0503_puncture_cs2[i])
921 cB[i] = cB[j--];
922 else
923 cB[i] = 0;
924 }
925
926 osmo_conv_decode_ber(&gsm0503_cs2_np, cB,
927 conv, n_errors, n_bits_total);
928
929 for (i = 0; i < 8; i++) {
930 for (j = 0, k = 0; j < 6; j++)
931 k += abs(((int)gsm0503_usf2six[i][j]) - ((int)conv[j]));
932
933 if (i == 0 || k < best) {
934 best = k;
935 usf = i;
936 }
937 }
938
939 conv[3] = usf & 1;
940 conv[4] = (usf >> 1) & 1;
941 conv[5] = (usf >> 2) & 1;
942 if (usf_p)
943 *usf_p = usf;
944
945 rv = osmo_crc16gen_check_bits(&gsm0503_cs234_crc16,
946 conv + 3, 271, conv + 3 + 271);
947 if (rv)
948 return -1;
949
950 osmo_ubit2pbit_ext(l2_data, 0, conv, 3, 271, 1);
951
952 return 34;
953 case 3:
954 for (i = 675, j = 455; i >= 0; i--) {
955 if (!gsm0503_puncture_cs3[i])
956 cB[i] = cB[j--];
957 else
958 cB[i] = 0;
959 }
960
961 osmo_conv_decode_ber(&gsm0503_cs3_np, cB,
962 conv, n_errors, n_bits_total);
963
964 for (i = 0; i < 8; i++) {
965 for (j = 0, k = 0; j < 6; j++)
966 k += abs(((int)gsm0503_usf2six[i][j]) - ((int)conv[j]));
967
968 if (i == 0 || k < best) {
969 best = k;
970 usf = i;
971 }
972 }
973
974 conv[3] = usf & 1;
975 conv[4] = (usf >> 1) & 1;
976 conv[5] = (usf >> 2) & 1;
977 if (usf_p)
978 *usf_p = usf;
979
980 rv = osmo_crc16gen_check_bits(&gsm0503_cs234_crc16,
981 conv + 3, 315, conv + 3 + 315);
982 if (rv)
983 return -1;
984
985 osmo_ubit2pbit_ext(l2_data, 0, conv, 3, 315, 1);
986
987 return 40;
988 case 4:
989 for (i = 12; i < 456; i++)
990 conv[i] = (cB[i] < 0) ? 1 : 0;
991
992 for (i = 0; i < 8; i++) {
993 for (j = 0, k = 0; j < 12; j++)
994 k += abs(((int)gsm0503_usf2twelve_sbit[i][j]) - ((int)cB[j]));
995
996 if (i == 0 || k < best) {
997 best = k;
998 usf = i;
999 }
1000 }
1001
1002 conv[9] = usf & 1;
1003 conv[10] = (usf >> 1) & 1;
1004 conv[11] = (usf >> 2) & 1;
1005 if (usf_p)
1006 *usf_p = usf;
1007
1008 rv = osmo_crc16gen_check_bits(&gsm0503_cs234_crc16,
1009 conv + 9, 431, conv + 9 + 431);
1010 if (rv) {
1011 *n_bits_total = 456 - 12;
1012 *n_errors = *n_bits_total;
1013 return -1;
1014 }
1015
1016 *n_bits_total = 456 - 12;
1017 *n_errors = 0;
1018
1019 osmo_ubit2pbit_ext(l2_data, 0, conv, 9, 431, 1);
1020
1021 return 54;
1022 default:
1023 *n_bits_total = 0;
1024 *n_errors = 0;
1025 break;
1026 }
1027
1028 return -1;
1029}
1030
1031/*
1032 * EGPRS PDTCH UL block encoding
1033 */
1034static int egprs_type3_map(ubit_t *bursts, ubit_t *hc, ubit_t *dc, int usf)
1035{
1036 int i;
1037 ubit_t iB[456];
1038 const ubit_t *hl_hn = gsm0503_pdtch_hl_hn_ubit[3];
1039
1040 gsm0503_mcs1_dl_interleave(gsm0503_usf2six[usf], hc, dc, iB);
1041
1042 for (i = 0; i < 4; i++) {
1043 gsm0503_xcch_burst_map(&iB[i * 114], &bursts[i * 116],
1044 hl_hn + i * 2, hl_hn + i * 2 + 1);
1045 }
1046
1047 return 0;
1048}
1049
1050static int egprs_type2_map(ubit_t *bursts, ubit_t *hc, ubit_t *dc, int usf)
1051{
1052 int i;
1053 const ubit_t *up;
1054 ubit_t hi[EGPRS_HDR_HC_MAX];
1055 ubit_t di[EGPRS_DATA_DC_MAX];
1056
1057 gsm0503_mcs5_dl_interleave(hc, dc, hi, di);
1058 up = gsm0503_mcs5_usf_precode_table[usf];
1059
1060 for (i = 0; i < 4; i++) {
1061 gsm0503_mcs5_dl_burst_map(di, &bursts[i * 348], hi, up, i);
1062 gsm0503_mcs5_burst_swap((sbit_t *) &bursts[i * 348]);
1063 }
1064
1065 return 0;
1066}
1067
1068static int egprs_type1_map(ubit_t *bursts, ubit_t *hc,
1069 ubit_t *c1, ubit_t *c2, int usf, int mcs)
1070{
1071 int i;
1072 const ubit_t *up;
1073 ubit_t hi[EGPRS_HDR_HC_MAX];
1074 ubit_t di[EGPRS_DATA_C1 * 2];
1075
1076 if (mcs == EGPRS_MCS7)
1077 gsm0503_mcs7_dl_interleave(hc, c1, c2, hi, di);
1078 else
1079 gsm0503_mcs8_dl_interleave(hc, c1, c2, hi, di);
1080
1081 up = gsm0503_mcs5_usf_precode_table[usf];
1082
1083 for (i = 0; i < 4; i++) {
1084 gsm0503_mcs7_dl_burst_map(di, &bursts[i * 348], hi, up, i);
1085 gsm0503_mcs5_burst_swap((sbit_t *) &bursts[i * 348]);
1086 }
1087
1088 return 0;
1089}
1090
1091static int egprs_encode_hdr(ubit_t *hc, uint8_t *l2_data, int mcs)
1092{
1093 int i, j;
1094 ubit_t upp[EGPRS_HDR_UPP_MAX], C[EGPRS_HDR_C_MAX];
1095 struct gsm0503_mcs_code *code;
1096
1097 code = &gsm0503_mcs_dl_codes[mcs];
1098
1099 osmo_pbit2ubit_ext(upp, 0, l2_data, code->usf_len, code->hdr_len, 1);
1100 osmo_crc8gen_set_bits(&gsm0503_mcs_crc8_hdr, upp,
1101 code->hdr_len, upp + code->hdr_len);
1102
1103 osmo_conv_encode(code->hdr_conv, upp, C);
1104
1105 /* MCS-5,6 header direct puncture instead of table */
1106 if ((mcs == EGPRS_MCS5) || (mcs == EGPRS_MCS6)) {
1107 memcpy(hc, C, code->hdr_code_len);
1108 hc[99] = hc[98];
1109 return 0;
1110 }
1111
1112 if (!code->hdr_punc) {
1113 /* Invalid MCS-X header puncture matrix */
1114 return -1;
1115 }
1116
1117 for (i = 0, j = 0; i < code->hdr_code_len; i++) {
1118 if (!code->hdr_punc[i])
1119 hc[j++] = C[i];
1120 }
1121
1122 return 0;
1123}
1124
1125static int egprs_encode_data(ubit_t *c, uint8_t *l2_data,
1126 int mcs, int p, int blk)
1127{
1128 int i, j, data_len;
1129 ubit_t u[EGPRS_DATA_U_MAX], C[EGPRS_DATA_C_MAX];
1130 struct gsm0503_mcs_code *code;
1131
1132 code = &gsm0503_mcs_dl_codes[mcs];
1133
1134 /*
1135 * Dual block - MCS-7,8,9
1136 * Single block - MCS-1,2,3,4,5,6
1137 */
1138 if (mcs >= EGPRS_MCS7)
1139 data_len = code->data_len / 2;
1140 else
1141 data_len = code->data_len;
1142
1143 osmo_pbit2ubit_ext(u, 0, l2_data,
1144 code->usf_len + code->hdr_len + blk * data_len, data_len, 1);
1145
1146 osmo_crc16gen_set_bits(&gsm0503_mcs_crc12, u, data_len, u + data_len);
1147
1148 osmo_conv_encode(code->data_conv, u, C);
1149
1150 if (!code->data_punc[p]) {
1151 /* Invalid MCS-X data puncture matrix */
1152 return -1;
1153 }
1154
1155 for (i = 0, j = 0; i < code->data_code_len; i++) {
1156 if (!code->data_punc[p][i])
1157 c[j++] = C[i];
1158 }
1159
1160 return 0;
1161}
1162
1163/*
1164 * Parse EGPRS DL header for coding and puncturing scheme (CPS)
1165 *
1166 * Type 1 - MCS-7,8,9
1167 * Type 2 - MCS-5,6
1168 * Type 3 - MCS-1,2,3,4
1169 */
1170static int egprs_parse_dl_cps(struct egprs_cps *cps,
1171 union gprs_rlc_dl_hdr_egprs *hdr, int type)
1172{
1173 uint8_t bits;
1174
1175 switch (type) {
1176 case EGPRS_HDR_TYPE1:
1177 bits = hdr->type1.cps;
1178 break;
1179 case EGPRS_HDR_TYPE2:
1180 bits = hdr->type2.cps;
1181 break;
1182 case EGPRS_HDR_TYPE3:
1183 bits = hdr->type3.cps;
1184 break;
1185 default:
1186 return -1;
1187 }
1188
1189 return egprs_get_cps(cps, type, bits);
1190}
1191
1192/*
1193 * EGPRS DL message encoding
1194 */
1195int gsm0503_pdtch_egprs_encode(ubit_t *bursts,
1196 uint8_t *l2_data, uint8_t l2_len)
1197{
1198 ubit_t hc[EGPRS_DATA_C_MAX], dc[EGPRS_DATA_DC_MAX];
1199 ubit_t c1[EGPRS_DATA_C1], c2[EGPRS_DATA_C2];
1200 uint8_t mcs;
1201 struct egprs_cps cps;
1202 union gprs_rlc_dl_hdr_egprs *hdr;
1203
1204 switch (l2_len) {
1205 case 27:
1206 mcs = EGPRS_MCS1;
1207 break;
1208 case 33:
1209 mcs = EGPRS_MCS2;
1210 break;
1211 case 42:
1212 mcs = EGPRS_MCS3;
1213 break;
1214 case 49:
1215 mcs = EGPRS_MCS4;
1216 break;
1217 case 60:
1218 mcs = EGPRS_MCS5;
1219 break;
1220 case 78:
1221 mcs = EGPRS_MCS6;
1222 break;
1223 case 118:
1224 mcs = EGPRS_MCS7;
1225 break;
1226 case 142:
1227 mcs = EGPRS_MCS8;
1228 break;
1229 case 154:
1230 mcs = EGPRS_MCS9;
1231 break;
1232 default:
1233 return -1;
1234 }
1235
1236 /* Read header for USF and puncturing matrix selection. */
1237 hdr = (union gprs_rlc_dl_hdr_egprs *) l2_data;
1238
1239 switch (mcs) {
1240 case EGPRS_MCS1:
1241 case EGPRS_MCS2:
1242 case EGPRS_MCS3:
1243 case EGPRS_MCS4:
1244 /* Check for valid CPS and matching MCS to message size */
1245 if ((egprs_parse_dl_cps(&cps, hdr, EGPRS_HDR_TYPE3) < 0) ||
1246 (cps.mcs != mcs))
1247 goto bad_header;
1248
1249 egprs_encode_hdr(hc, l2_data, mcs);
1250 egprs_encode_data(dc, l2_data, mcs, cps.p[0], 0);
1251 egprs_type3_map(bursts, hc, dc, hdr->type3.usf);
1252 break;
1253 case EGPRS_MCS5:
1254 case EGPRS_MCS6:
1255 if ((egprs_parse_dl_cps(&cps, hdr, EGPRS_HDR_TYPE2) < 0) ||
1256 (cps.mcs != mcs))
1257 goto bad_header;
1258
1259 egprs_encode_hdr(hc, l2_data, mcs);
1260 egprs_encode_data(dc, l2_data, mcs, cps.p[0], 0);
1261 egprs_type2_map(bursts, hc, dc, hdr->type2.usf);
1262 break;
1263 case EGPRS_MCS7:
1264 case EGPRS_MCS8:
1265 case EGPRS_MCS9:
1266 if ((egprs_parse_dl_cps(&cps, hdr, EGPRS_HDR_TYPE1) < 0) ||
1267 (cps.mcs != mcs))
1268 goto bad_header;
1269
1270 egprs_encode_hdr(hc, l2_data, mcs);
1271 egprs_encode_data(c1, l2_data, mcs, cps.p[0], 0);
1272 egprs_encode_data(c2, l2_data, mcs, cps.p[1], 1);
1273 egprs_type1_map(bursts, hc, c1, c2, hdr->type1.usf, mcs);
1274 break;
1275 }
1276
1277 return mcs >= EGPRS_MCS5 ?
1278 GSM0503_EGPRS_BURSTS_NBITS : GSM0503_GPRS_BURSTS_NBITS;
1279
1280bad_header:
1281 /* Invalid EGPRS MCS-X header */
1282 return -1;
1283}
1284
1285int gsm0503_pdtch_encode(ubit_t *bursts, uint8_t *l2_data, uint8_t l2_len)
1286{
1287 ubit_t iB[456], cB[676];
1288 const ubit_t *hl_hn;
1289 ubit_t conv[334];
1290 int i, j, usf;
1291
1292 switch (l2_len) {
1293 case 23:
1294 osmo_pbit2ubit_ext(conv, 0, l2_data, 0, 184, 1);
1295
1296 osmo_crc64gen_set_bits(&gsm0503_fire_crc40, conv, 184, conv + 184);
1297
1298 osmo_conv_encode(&gsm0503_xcch, conv, cB);
1299
1300 hl_hn = gsm0503_pdtch_hl_hn_ubit[0];
1301
1302 break;
1303 case 34:
1304 osmo_pbit2ubit_ext(conv, 3, l2_data, 0, 271, 1);
1305 usf = l2_data[0] & 0x7;
1306
1307 osmo_crc16gen_set_bits(&gsm0503_cs234_crc16, conv + 3,
1308 271, conv + 3 + 271);
1309
1310 memcpy(conv, gsm0503_usf2six[usf], 6);
1311
1312 osmo_conv_encode(&gsm0503_cs2_np, conv, cB);
1313
1314 for (i = 0, j = 0; i < 588; i++)
1315 if (!gsm0503_puncture_cs2[i])
1316 cB[j++] = cB[i];
1317
1318 hl_hn = gsm0503_pdtch_hl_hn_ubit[1];
1319
1320 break;
1321 case 40:
1322 osmo_pbit2ubit_ext(conv, 3, l2_data, 0, 315, 1);
1323 usf = l2_data[0] & 0x7;
1324
1325 osmo_crc16gen_set_bits(&gsm0503_cs234_crc16, conv + 3,
1326 315, conv + 3 + 315);
1327
1328 memcpy(conv, gsm0503_usf2six[usf], 6);
1329
1330 osmo_conv_encode(&gsm0503_cs3_np, conv, cB);
1331
1332 for (i = 0, j = 0; i < 676; i++)
1333 if (!gsm0503_puncture_cs3[i])
1334 cB[j++] = cB[i];
1335
1336 hl_hn = gsm0503_pdtch_hl_hn_ubit[2];
1337
1338 break;
1339 case 54:
1340 osmo_pbit2ubit_ext(cB, 9, l2_data, 0, 431, 1);
1341 usf = l2_data[0] & 0x7;
1342
1343 osmo_crc16gen_set_bits(&gsm0503_cs234_crc16, cB + 9,
1344 431, cB + 9 + 431);
1345
1346 memcpy(cB, gsm0503_usf2twelve_ubit[usf], 12);
1347
1348 hl_hn = gsm0503_pdtch_hl_hn_ubit[3];
1349
1350 break;
1351 default:
1352 return -1;
1353 }
1354
1355 gsm0503_xcch_interleave(cB, iB);
1356
1357 for (i = 0; i < 4; i++) {
1358 gsm0503_xcch_burst_map(&iB[i * 114], &bursts[i * 116],
1359 hl_hn + i * 2, hl_hn + i * 2 + 1);
1360 }
1361
1362 return GSM0503_GPRS_BURSTS_NBITS;
1363}
1364
1365/*
1366 * GSM TCH/F FR/EFR transcoding
1367 */
1368
1369static void tch_fr_reassemble(uint8_t *tch_data,
1370 ubit_t *b_bits, int net_order)
1371{
1372 int i, j, k, l, o;
1373
1374 tch_data[0] = 0xd << 4;
1375 memset(tch_data + 1, 0, 32);
1376
1377 if (net_order) {
1378 for (i = 0, j = 4; i < 260; i++, j++)
1379 tch_data[j >> 3] |= (b_bits[i] << (7 - (j & 7)));
1380
1381 return;
1382 }
1383
1384 /* reassemble d-bits */
1385 i = 0; /* counts bits */
1386 j = 4; /* counts output bits */
1387 k = gsm0503_gsm_fr_map[0]-1; /* current number bit in element */
1388 l = 0; /* counts element bits */
1389 o = 0; /* offset input bits */
1390 while (i < 260) {
1391 tch_data[j >> 3] |= (b_bits[k + o] << (7 - (j & 7)));
1392 if (--k < 0) {
1393 o += gsm0503_gsm_fr_map[l];
1394 k = gsm0503_gsm_fr_map[++l]-1;
1395 }
1396 i++;
1397 j++;
1398 }
1399}
1400
1401static void tch_fr_disassemble(ubit_t *b_bits,
1402 uint8_t *tch_data, int net_order)
1403{
1404 int i, j, k, l, o;
1405
1406 if (net_order) {
1407 for (i = 0, j = 4; i < 260; i++, j++)
1408 b_bits[i] = (tch_data[j >> 3] >> (7 - (j & 7))) & 1;
1409
1410 return;
1411 }
1412
1413 i = 0; /* counts bits */
1414 j = 4; /* counts input bits */
1415 k = gsm0503_gsm_fr_map[0] - 1; /* current number bit in element */
1416 l = 0; /* counts element bits */
1417 o = 0; /* offset output bits */
1418 while (i < 260) {
1419 b_bits[k + o] = (tch_data[j >> 3] >> (7 - (j & 7))) & 1;
1420 if (--k < 0) {
1421 o += gsm0503_gsm_fr_map[l];
1422 k = gsm0503_gsm_fr_map[++l] - 1;
1423 }
1424 i++;
1425 j++;
1426 }
1427}
1428
1429static void tch_hr_reassemble(uint8_t *tch_data, ubit_t *b_bits)
1430{
1431 int i, j;
1432
1433 tch_data[0] = 0x00; /* F = 0, FT = 000 */
1434 memset(tch_data + 1, 0, 14);
1435
1436 for (i = 0, j = 8; i < 112; i++, j++)
1437 tch_data[j >> 3] |= (b_bits[i] << (7 - (j & 7)));
1438}
1439
1440static void tch_hr_disassemble(ubit_t *b_bits, uint8_t *tch_data)
1441{
1442 int i, j;
1443
1444 for (i = 0, j = 8; i < 112; i++, j++)
1445 b_bits[i] = (tch_data[j >> 3] >> (7 - (j & 7))) & 1;
1446}
1447
1448static void tch_efr_reassemble(uint8_t *tch_data, ubit_t *b_bits)
1449{
1450 int i, j;
1451
1452 tch_data[0] = 0xc << 4;
1453 memset(tch_data + 1, 0, 30);
1454
1455 for (i = 0, j = 4; i < 244; i++, j++)
1456 tch_data[j >> 3] |= (b_bits[i] << (7 - (j & 7)));
1457}
1458
1459static void tch_efr_disassemble(ubit_t *b_bits, uint8_t *tch_data)
1460{
1461 int i, j;
1462
1463 for (i = 0, j = 4; i < 244; i++, j++)
1464 b_bits[i] = (tch_data[j >> 3] >> (7 - (j & 7))) & 1;
1465}
1466
1467static void tch_amr_reassemble(uint8_t *tch_data, ubit_t *d_bits, int len)
1468{
1469 int i, j;
1470
1471 memset(tch_data, 0, (len + 7) >> 3);
1472
1473 for (i = 0, j = 0; i < len; i++, j++)
1474 tch_data[j >> 3] |= (d_bits[i] << (7 - (j & 7)));
1475}
1476
1477static void tch_amr_disassemble(ubit_t *d_bits, uint8_t *tch_data, int len)
1478{
1479 int i, j;
1480
1481 for (i = 0, j = 0; i < len; i++, j++)
1482 d_bits[i] = (tch_data[j >> 3] >> (7 - (j & 7))) & 1;
1483}
1484
1485static void tch_fr_d_to_b(ubit_t *b_bits, ubit_t *d_bits)
1486{
1487 int i;
1488
1489 for (i = 0; i < 260; i++)
1490 b_bits[gsm610_bitorder[i]] = d_bits[i];
1491}
1492
1493static void tch_fr_b_to_d(ubit_t *d_bits, ubit_t *b_bits)
1494{
1495 int i;
1496
1497 for (i = 0; i < 260; i++)
1498 d_bits[i] = b_bits[gsm610_bitorder[i]];
1499}
1500
1501static void tch_hr_d_to_b(ubit_t *b_bits, ubit_t *d_bits)
1502{
1503 int i;
1504
1505 const uint16_t *map;
1506
1507 if (!d_bits[93] && !d_bits[94])
1508 map = gsm620_unvoiced_bitorder;
1509 else
1510 map = gsm620_voiced_bitorder;
1511
1512 for (i = 0; i < 112; i++)
1513 b_bits[map[i]] = d_bits[i];
1514}
1515
1516static void tch_hr_b_to_d(ubit_t *d_bits, ubit_t *b_bits)
1517{
1518 int i;
1519 const uint16_t *map;
1520
1521 if (!b_bits[34] && !b_bits[35])
1522 map = gsm620_unvoiced_bitorder;
1523 else
1524 map = gsm620_voiced_bitorder;
1525
1526 for (i = 0; i < 112; i++)
1527 d_bits[i] = b_bits[map[i]];
1528}
1529
1530static void tch_efr_d_to_w(ubit_t *b_bits, ubit_t *d_bits)
1531{
1532 int i;
1533
1534 for (i = 0; i < 260; i++)
1535 b_bits[gsm660_bitorder[i]] = d_bits[i];
1536}
1537
1538static void tch_efr_w_to_d(ubit_t *d_bits, ubit_t *b_bits)
1539{
1540 int i;
1541
1542 for (i = 0; i < 260; i++)
1543 d_bits[i] = b_bits[gsm660_bitorder[i]];
1544}
1545
1546static void tch_efr_protected(ubit_t *s_bits, ubit_t *b_bits)
1547{
1548 int i;
1549
1550 for (i = 0; i < 65; i++)
1551 b_bits[i] = s_bits[gsm0503_gsm_efr_protected_bits[i] - 1];
1552}
1553
1554static void tch_fr_unreorder(ubit_t *d, ubit_t *p, ubit_t *u)
1555{
1556 int i;
1557
1558 for (i = 0; i < 91; i++) {
1559 d[i << 1] = u[i];
1560 d[(i << 1) + 1] = u[184 - i];
1561 }
1562
1563 for (i = 0; i < 3; i++)
1564 p[i] = u[91 + i];
1565}
1566
1567static void tch_fr_reorder(ubit_t *u, ubit_t *d, ubit_t *p)
1568{
1569 int i;
1570
1571 for (i = 0; i < 91; i++) {
1572 u[i] = d[i << 1];
1573 u[184 - i] = d[(i << 1) + 1];
1574 }
1575
1576 for (i = 0; i < 3; i++)
1577 u[91 + i] = p[i];
1578}
1579
1580static void tch_hr_unreorder(ubit_t *d, ubit_t *p, ubit_t *u)
1581{
1582 memcpy(d, u, 95);
1583 memcpy(p, u + 95, 3);
1584}
1585
1586static void tch_hr_reorder(ubit_t *u, ubit_t *d, ubit_t *p)
1587{
1588 memcpy(u, d, 95);
1589 memcpy(u + 95, p, 3);
1590}
1591
1592static void tch_efr_reorder(ubit_t *w, ubit_t *s, ubit_t *p)
1593{
1594 memcpy(w, s, 71);
1595 w[71] = w[72] = s[69];
1596 memcpy(w + 73, s + 71, 50);
1597 w[123] = w[124] = s[119];
1598 memcpy(w + 125, s + 121, 53);
1599 w[178] = w[179] = s[172];
1600 memcpy(w + 180, s + 174, 50);
1601 w[230] = w[231] = s[222];
1602 memcpy(w + 232, s + 224, 20);
1603 memcpy(w + 252, p, 8);
1604}
1605
1606static void tch_efr_unreorder(ubit_t *s, ubit_t *p, ubit_t *w)
1607{
1608 int sum;
1609
1610 memcpy(s, w, 71);
1611 sum = s[69] + w[71] + w[72];
1612 s[69] = (sum > 2);
1613 memcpy(s + 71, w + 73, 50);
1614 sum = s[119] + w[123] + w[124];
1615 s[119] = (sum > 2);
1616 memcpy(s + 121, w + 125, 53);
1617 sum = s[172] + w[178] + w[179];
1618 s[172] = (sum > 2);
1619 memcpy(s + 174, w + 180, 50);
1620 sum = s[220] + w[230] + w[231];
1621 s[222] = (sum > 2);
1622 memcpy(s + 224, w + 232, 20);
1623 memcpy(p, w + 252, 8);
1624}
1625
1626static void tch_amr_merge(ubit_t *u, ubit_t *d, ubit_t *p, int len, int prot)
1627{
1628 memcpy(u, d, prot);
1629 memcpy(u + prot, p, 6);
1630 memcpy(u + prot + 6, d + prot, len - prot);
1631}
1632
1633static void tch_amr_unmerge(ubit_t *d, ubit_t *p,
1634 ubit_t *u, int len, int prot)
1635{
1636 memcpy(d, u, prot);
1637 memcpy(p, u + prot, 6);
1638 memcpy(d + prot, u + prot + 6, len - prot);
1639}
1640
1641int gsm0503_tch_fr_decode(uint8_t *tch_data, sbit_t *bursts,
1642 int net_order, int efr, int *n_errors, int *n_bits_total)
1643{
1644 sbit_t iB[912], cB[456], h;
1645 ubit_t conv[185], s[244], w[260], b[65], d[260], p[8];
1646 int i, rv, len, steal = 0;
1647
1648 for (i = 0; i < 8; i++) {
1649 gsm0503_tch_burst_unmap(&iB[i * 114],
1650 &bursts[i * 116], &h, i >> 2);
1651 steal -= h;
1652 }
1653
1654 gsm0503_tch_fr_deinterleave(cB, iB);
1655
1656 if (steal > 0) {
1657 rv = _xcch_decode_cB(tch_data, cB, n_errors, n_bits_total);
1658 if (rv) {
1659 /* Error decoding FACCH frame */
1660 return -1;
1661 }
1662
1663 return 23;
1664 }
1665
1666 osmo_conv_decode_ber(&gsm0503_tch_fr, cB, conv, n_errors, n_bits_total);
1667
1668 tch_fr_unreorder(d, p, conv);
1669
1670 for (i = 0; i < 78; i++)
1671 d[i + 182] = (cB[i + 378] < 0) ? 1 : 0;
1672
1673 rv = osmo_crc8gen_check_bits(&gsm0503_tch_fr_crc3, d, 50, p);
1674 if (rv) {
1675 /* Error checking CRC8 for the FR part of an EFR/FR frame */
1676 return -1;
1677 }
1678
1679 if (efr) {
1680 tch_efr_d_to_w(w, d);
1681
1682 tch_efr_unreorder(s, p, w);
1683
1684 tch_efr_protected(s, b);
1685
1686 rv = osmo_crc8gen_check_bits(&gsm0503_tch_efr_crc8, b, 65, p);
1687 if (rv) {
1688 /* Error checking CRC8 for the EFR part of an EFR frame */
1689 return -1;
1690 }
1691
1692 tch_efr_reassemble(tch_data, s);
1693
1694 len = GSM_EFR_BYTES;
1695 } else {
1696 tch_fr_d_to_b(w, d);
1697
1698 tch_fr_reassemble(tch_data, w, net_order);
1699
1700 len = GSM_FR_BYTES;
1701 }
1702
1703 return len;
1704}
1705
1706int gsm0503_tch_fr_encode(ubit_t *bursts, uint8_t *tch_data,
1707 int len, int net_order)
1708{
1709 ubit_t iB[912], cB[456], h;
1710 ubit_t conv[185], w[260], b[65], s[244], d[260], p[8];
1711 int i;
1712
1713 switch (len) {
1714 case GSM_EFR_BYTES: /* TCH EFR */
1715
1716 tch_efr_disassemble(s, tch_data);
1717
1718 tch_efr_protected(s, b);
1719
1720 osmo_crc8gen_set_bits(&gsm0503_tch_efr_crc8, b, 65, p);
1721
1722 tch_efr_reorder(w, s, p);
1723
1724 tch_efr_w_to_d(d, w);
1725
1726 goto coding_efr_fr;
1727 case GSM_FR_BYTES: /* TCH FR */
1728 tch_fr_disassemble(w, tch_data, net_order);
1729
1730 tch_fr_b_to_d(d, w);
1731
1732coding_efr_fr:
1733 osmo_crc8gen_set_bits(&gsm0503_tch_fr_crc3, d, 50, p);
1734
1735 tch_fr_reorder(conv, d, p);
1736
1737 memcpy(cB + 378, d + 182, 78);
1738
1739 osmo_conv_encode(&gsm0503_tch_fr, conv, cB);
1740
1741 h = 0;
1742
1743 break;
1744 case GSM_MACBLOCK_LEN: /* FACCH */
1745 _xcch_encode_cB(cB, tch_data);
1746
1747 h = 1;
1748
1749 break;
1750 default:
1751 return -1;
1752 }
1753
1754 gsm0503_tch_fr_interleave(cB, iB);
1755
1756 for (i = 0; i < 8; i++) {
1757 gsm0503_tch_burst_map(&iB[i * 114],
1758 &bursts[i * 116], &h, i >> 2);
1759 }
1760
1761 return 0;
1762}
1763
1764int gsm0503_tch_hr_decode(uint8_t *tch_data, sbit_t *bursts, int odd,
1765 int *n_errors, int *n_bits_total)
1766{
1767 sbit_t iB[912], cB[456], h;
1768 ubit_t conv[98], b[112], d[112], p[3];
1769 int i, rv, steal = 0;
1770
1771 /* Only unmap the stealing bits */
1772 if (!odd) {
1773 for (i = 0; i < 4; i++) {
1774 gsm0503_tch_burst_unmap(NULL, &bursts[i * 116], &h, 0);
1775 steal -= h;
1776 }
1777
1778 for (i = 2; i < 5; i++) {
1779 gsm0503_tch_burst_unmap(NULL, &bursts[i * 116], &h, 1);
1780 steal -= h;
1781 }
1782 }
1783
1784 /* If we found a stole FACCH, but only at correct alignment */
1785 if (steal > 0) {
1786 for (i = 0; i < 6; i++) {
1787 gsm0503_tch_burst_unmap(&iB[i * 114],
1788 &bursts[i * 116], NULL, i >> 2);
1789 }
1790
1791 for (i = 2; i < 4; i++) {
1792 gsm0503_tch_burst_unmap(&iB[i * 114 + 456],
1793 &bursts[i * 116], NULL, 1);
1794 }
1795
1796 gsm0503_tch_fr_deinterleave(cB, iB);
1797
1798 rv = _xcch_decode_cB(tch_data, cB, n_errors, n_bits_total);
1799 if (rv) {
1800 /* Error decoding FACCH frame */
1801 return -1;
1802 }
1803
1804 return GSM_MACBLOCK_LEN;
1805 }
1806
1807 for (i = 0; i < 4; i++) {
1808 gsm0503_tch_burst_unmap(&iB[i * 114],
1809 &bursts[i * 116], NULL, i >> 1);
1810 }
1811
1812 gsm0503_tch_hr_deinterleave(cB, iB);
1813
1814 osmo_conv_decode_ber(&gsm0503_tch_hr, cB, conv, n_errors, n_bits_total);
1815
1816 tch_hr_unreorder(d, p, conv);
1817
1818 for (i = 0; i < 17; i++)
1819 d[i + 95] = (cB[i + 211] < 0) ? 1 : 0;
1820
1821 rv = osmo_crc8gen_check_bits(&gsm0503_tch_fr_crc3, d + 73, 22, p);
1822 if (rv) {
1823 /* Error checking CRC8 for an HR frame */
1824 return -1;
1825 }
1826
1827 tch_hr_d_to_b(b, d);
1828
1829 tch_hr_reassemble(tch_data, b);
1830
1831 return 15;
1832}
1833
1834int gsm0503_tch_hr_encode(ubit_t *bursts, uint8_t *tch_data, int len)
1835{
1836 ubit_t iB[912], cB[456], h;
1837 ubit_t conv[98], b[112], d[112], p[3];
1838 int i;
1839
1840 switch (len) {
1841 case 15: /* TCH HR */
1842 tch_hr_disassemble(b, tch_data);
1843
1844 tch_hr_b_to_d(d, b);
1845
1846 osmo_crc8gen_set_bits(&gsm0503_tch_fr_crc3, d + 73, 22, p);
1847
1848 tch_hr_reorder(conv, d, p);
1849
1850 osmo_conv_encode(&gsm0503_tch_hr, conv, cB);
1851
1852 memcpy(cB + 211, d + 95, 17);
1853
1854 h = 0;
1855
1856 gsm0503_tch_hr_interleave(cB, iB);
1857
1858 for (i = 0; i < 4; i++) {
1859 gsm0503_tch_burst_map(&iB[i * 114],
1860 &bursts[i * 116], &h, i >> 1);
1861 }
1862
1863 break;
1864 case GSM_MACBLOCK_LEN: /* FACCH */
1865 _xcch_encode_cB(cB, tch_data);
1866
1867 h = 1;
1868
1869 gsm0503_tch_fr_interleave(cB, iB);
1870
1871 for (i = 0; i < 6; i++) {
1872 gsm0503_tch_burst_map(&iB[i * 114],
1873 &bursts[i * 116], &h, i >> 2);
1874 }
1875
1876 for (i = 2; i < 4; i++) {
1877 gsm0503_tch_burst_map(&iB[i * 114 + 456],
1878 &bursts[i * 116], &h, 1);
1879 }
1880
1881 break;
1882 default:
1883 return -1;
1884 }
1885
1886 return 0;
1887}
1888
1889int gsm0503_tch_afs_decode(uint8_t *tch_data, sbit_t *bursts,
1890 int codec_mode_req, uint8_t *codec, int codecs, uint8_t *ft,
1891 uint8_t *cmr, int *n_errors, int *n_bits_total)
1892{
1893 sbit_t iB[912], cB[456], h;
1894 ubit_t d[244], p[6], conv[250];
1895 int i, j, k, best = 0, rv, len, steal = 0, id = 0;
1896 *n_errors = 0; *n_bits_total = 0;
1897
1898 for (i=0; i<8; i++) {
1899 gsm0503_tch_burst_unmap(&iB[i * 114], &bursts[i * 116], &h, i >> 2);
1900 steal -= h;
1901 }
1902
1903 gsm0503_tch_fr_deinterleave(cB, iB);
1904
1905 if (steal > 0) {
1906 rv = _xcch_decode_cB(tch_data, cB, n_errors, n_bits_total);
1907 if (rv) {
1908 /* Error decoding FACCH frame */
1909 return -1;
1910 }
1911
1912 return GSM_MACBLOCK_LEN;
1913 }
1914
1915 for (i = 0; i < 4; i++) {
1916 for (j = 0, k = 0; j < 8; j++)
1917 k += abs(((int)gsm0503_afs_ic_sbit[i][j]) - ((int)cB[j]));
1918
1919 if (i == 0 || k < best) {
1920 best = k;
1921 id = i;
1922 }
1923 }
1924
1925 /* Check if indicated codec fits into range of codecs */
1926 if (id >= codecs) {
1927 /* Codec mode out of range, return id */
1928 return id;
1929 }
1930
1931 switch ((codec_mode_req) ? codec[*ft] : codec[id]) {
1932 case 7: /* TCH/AFS12.2 */
1933 osmo_conv_decode_ber(&gsm0503_tch_afs_12_2, cB + 8,
1934 conv, n_errors, n_bits_total);
1935
1936 tch_amr_unmerge(d, p, conv, 244, 81);
1937
1938 rv = osmo_crc8gen_check_bits(&gsm0503_amr_crc6, d, 81, p);
1939 if (rv) {
1940 /* Error checking CRC8 for an AMR 12.2 frame */
1941 return -1;
1942 }
1943
1944 tch_amr_reassemble(tch_data, d, 244);
1945
1946 len = 31;
1947
1948 break;
1949 case 6: /* TCH/AFS10.2 */
1950 osmo_conv_decode_ber(&gsm0503_tch_afs_10_2, cB + 8,
1951 conv, n_errors, n_bits_total);
1952
1953 tch_amr_unmerge(d, p, conv, 204, 65);
1954
1955 rv = osmo_crc8gen_check_bits(&gsm0503_amr_crc6, d, 65, p);
1956 if (rv) {
1957 /* Error checking CRC8 for an AMR 10.2 frame */
1958 return -1;
1959 }
1960
1961 tch_amr_reassemble(tch_data, d, 204);
1962
1963 len = 26;
1964
1965 break;
1966 case 5: /* TCH/AFS7.95 */
1967 osmo_conv_decode_ber(&gsm0503_tch_afs_7_95, cB + 8,
1968 conv, n_errors, n_bits_total);
1969
1970 tch_amr_unmerge(d, p, conv, 159, 75);
1971
1972 rv = osmo_crc8gen_check_bits(&gsm0503_amr_crc6, d, 75, p);
1973 if (rv) {
1974 /* Error checking CRC8 for an AMR 7.95 frame */
1975 return -1;
1976 }
1977
1978 tch_amr_reassemble(tch_data, d, 159);
1979
1980 len = 20;
1981
1982 break;
1983 case 4: /* TCH/AFS7.4 */
1984 osmo_conv_decode_ber(&gsm0503_tch_afs_7_4, cB + 8,
1985 conv, n_errors, n_bits_total);
1986
1987 tch_amr_unmerge(d, p, conv, 148, 61);
1988
1989 rv = osmo_crc8gen_check_bits(&gsm0503_amr_crc6, d, 61, p);
1990 if (rv) {
1991 /* Error checking CRC8 for an AMR 7.4 frame */
1992 return -1;
1993 }
1994
1995 tch_amr_reassemble(tch_data, d, 148);
1996
1997 len = 19;
1998
1999 break;
2000 case 3: /* TCH/AFS6.7 */
2001 osmo_conv_decode_ber(&gsm0503_tch_afs_6_7, cB + 8,
2002 conv, n_errors, n_bits_total);
2003
2004 tch_amr_unmerge(d, p, conv, 134, 55);
2005
2006 rv = osmo_crc8gen_check_bits(&gsm0503_amr_crc6, d, 55, p);
2007 if (rv) {
2008 /* Error checking CRC8 for an AMR 6.7 frame */
2009 return -1;
2010 }
2011
2012 tch_amr_reassemble(tch_data, d, 134);
2013
2014 len = 17;
2015
2016 break;
2017 case 2: /* TCH/AFS5.9 */
2018 osmo_conv_decode_ber(&gsm0503_tch_afs_5_9, cB + 8,
2019 conv, n_errors, n_bits_total);
2020
2021 tch_amr_unmerge(d, p, conv, 118, 55);
2022
2023 rv = osmo_crc8gen_check_bits(&gsm0503_amr_crc6, d, 55, p);
2024 if (rv) {
2025 /* Error checking CRC8 for an AMR 5.9 frame */
2026 return -1;
2027 }
2028
2029 tch_amr_reassemble(tch_data, d, 118);
2030
2031 len = 15;
2032
2033 break;
2034 case 1: /* TCH/AFS5.15 */
2035 osmo_conv_decode_ber(&gsm0503_tch_afs_5_15, cB + 8,
2036 conv, n_errors, n_bits_total);
2037
2038 tch_amr_unmerge(d, p, conv, 103, 49);
2039
2040 rv = osmo_crc8gen_check_bits(&gsm0503_amr_crc6, d, 49, p);
2041 if (rv) {
2042 /* Error checking CRC8 for an AMR 5.15 frame */
2043 return -1;
2044 }
2045
2046 tch_amr_reassemble(tch_data, d, 103);
2047
2048 len = 13;
2049
2050 break;
2051 case 0: /* TCH/AFS4.75 */
2052 osmo_conv_decode_ber(&gsm0503_tch_afs_4_75, cB + 8,
2053 conv, n_errors, n_bits_total);
2054
2055 tch_amr_unmerge(d, p, conv, 95, 39);
2056
2057 rv = osmo_crc8gen_check_bits(&gsm0503_amr_crc6, d, 39, p);
2058 if (rv) {
2059 /* Error checking CRC8 for an AMR 4.75 frame */
2060 return -1;
2061 }
2062
2063 tch_amr_reassemble(tch_data, d, 95);
2064
2065 len = 12;
2066
2067 break;
2068 default:
2069 /* Unknown frame type */
2070 *n_bits_total = 448;
2071 *n_errors = *n_bits_total;
2072 return -1;
2073 }
2074
2075 /* Change codec request / indication, if frame is valid */
2076 if (codec_mode_req)
2077 *cmr = id;
2078 else
2079 *ft = id;
2080
2081 return len;
2082}
2083
2084int gsm0503_tch_afs_encode(ubit_t *bursts, uint8_t *tch_data, int len,
2085 int codec_mode_req, uint8_t *codec, int codecs, uint8_t ft,
2086 uint8_t cmr)
2087{
2088 ubit_t iB[912], cB[456], h;
2089 ubit_t d[244], p[6], conv[250];
2090 int i;
2091 uint8_t id;
2092
2093 if (len == GSM_MACBLOCK_LEN) { /* FACCH */
2094 _xcch_encode_cB(cB, tch_data);
2095
2096 h = 1;
2097
2098 goto facch;
2099 }
2100
2101 h = 0;
2102
2103 if (codec_mode_req) {
2104 if (cmr >= codecs) {
2105 /* FIXME: CMR ID is not in codec list! */
2106 return -1;
2107 }
2108 id = cmr;
2109 } else {
2110 if (ft >= codecs) {
2111 /* FIXME: FT ID is not in codec list! */
2112 return -1;
2113 }
2114 id = ft;
2115 }
2116
2117 switch (codec[ft]) {
2118 case 7: /* TCH/AFS12.2 */
2119 if (len != 31)
2120 goto invalid_length;
2121
2122 tch_amr_disassemble(d, tch_data, 244);
2123
2124 osmo_crc8gen_set_bits(&gsm0503_amr_crc6, d, 81, p);
2125
2126 tch_amr_merge(conv, d, p, 244, 81);
2127
2128 osmo_conv_encode(&gsm0503_tch_afs_12_2, conv, cB + 8);
2129
2130 break;
2131 case 6: /* TCH/AFS10.2 */
2132 if (len != 26)
2133 goto invalid_length;
2134
2135 tch_amr_disassemble(d, tch_data, 204);
2136
2137 osmo_crc8gen_set_bits(&gsm0503_amr_crc6, d, 65, p);
2138
2139 tch_amr_merge(conv, d, p, 204, 65);
2140
2141 osmo_conv_encode(&gsm0503_tch_afs_10_2, conv, cB + 8);
2142
2143 break;
2144 case 5: /* TCH/AFS7.95 */
2145 if (len != 20)
2146 goto invalid_length;
2147
2148 tch_amr_disassemble(d, tch_data, 159);
2149
2150 osmo_crc8gen_set_bits(&gsm0503_amr_crc6, d, 75, p);
2151
2152 tch_amr_merge(conv, d, p, 159, 75);
2153
2154 osmo_conv_encode(&gsm0503_tch_afs_7_95, conv, cB + 8);
2155
2156 break;
2157 case 4: /* TCH/AFS7.4 */
2158 if (len != 19)
2159 goto invalid_length;
2160
2161 tch_amr_disassemble(d, tch_data, 148);
2162
2163 osmo_crc8gen_set_bits(&gsm0503_amr_crc6, d, 61, p);
2164
2165 tch_amr_merge(conv, d, p, 148, 61);
2166
2167 osmo_conv_encode(&gsm0503_tch_afs_7_4, conv, cB + 8);
2168
2169 break;
2170 case 3: /* TCH/AFS6.7 */
2171 if (len != 17)
2172 goto invalid_length;
2173
2174 tch_amr_disassemble(d, tch_data, 134);
2175
2176 osmo_crc8gen_set_bits(&gsm0503_amr_crc6, d, 55, p);
2177
2178 tch_amr_merge(conv, d, p, 134, 55);
2179
2180 osmo_conv_encode(&gsm0503_tch_afs_6_7, conv, cB + 8);
2181
2182 break;
2183 case 2: /* TCH/AFS5.9 */
2184 if (len != 15)
2185 goto invalid_length;
2186
2187 tch_amr_disassemble(d, tch_data, 118);
2188
2189 osmo_crc8gen_set_bits(&gsm0503_amr_crc6, d, 55, p);
2190
2191 tch_amr_merge(conv, d, p, 118, 55);
2192
2193 osmo_conv_encode(&gsm0503_tch_afs_5_9, conv, cB + 8);
2194
2195 break;
2196 case 1: /* TCH/AFS5.15 */
2197 if (len != 13)
2198 goto invalid_length;
2199
2200 tch_amr_disassemble(d, tch_data, 103);
2201
2202 osmo_crc8gen_set_bits(&gsm0503_amr_crc6, d, 49, p);
2203
2204 tch_amr_merge(conv, d, p, 103, 49);
2205
2206 osmo_conv_encode(&gsm0503_tch_afs_5_15, conv, cB + 8);
2207
2208 break;
2209 case 0: /* TCH/AFS4.75 */
2210 if (len != 12)
2211 goto invalid_length;
2212
2213 tch_amr_disassemble(d, tch_data, 95);
2214
2215 osmo_crc8gen_set_bits(&gsm0503_amr_crc6, d, 39, p);
2216
2217 tch_amr_merge(conv, d, p, 95, 39);
2218
2219 osmo_conv_encode(&gsm0503_tch_afs_4_75, conv, cB + 8);
2220
2221 break;
2222 default:
2223 /* FIXME: FT %ft is not supported */
2224 return -1;
2225 }
2226
2227 memcpy(cB, gsm0503_afs_ic_ubit[id], 8);
2228
2229facch:
2230 gsm0503_tch_fr_interleave(cB, iB);
2231
2232 for (i = 0; i < 8; i++) {
2233 gsm0503_tch_burst_map(&iB[i * 114],
2234 &bursts[i * 116], &h, i >> 2);
2235 }
2236
2237 return 0;
2238
2239invalid_length:
2240 /* FIXME: payload length %len does not comply with codec type %ft */
2241 return -1;
2242}
2243
2244int gsm0503_tch_ahs_decode(uint8_t *tch_data, sbit_t *bursts, int odd,
2245 int codec_mode_req, uint8_t *codec, int codecs, uint8_t *ft,
2246 uint8_t *cmr, int *n_errors, int *n_bits_total)
2247{
2248 sbit_t iB[912], cB[456], h;
2249 ubit_t d[244], p[6], conv[135];
2250 int i, j, k, best = 0, rv, len, steal = 0, id = 0;
2251
2252 /* only unmap the stealing bits */
2253 if (!odd) {
2254 for (i = 0; i < 4; i++) {
2255 gsm0503_tch_burst_unmap(NULL, &bursts[i * 116], &h, 0);
2256 steal -= h;
2257 }
2258 for (i = 2; i < 5; i++) {
2259 gsm0503_tch_burst_unmap(NULL, &bursts[i * 116], &h, 1);
2260 steal -= h;
2261 }
2262 }
2263
2264 /* if we found a stole FACCH, but only at correct alignment */
2265 if (steal > 0) {
2266 for (i = 0; i < 6; i++) {
2267 gsm0503_tch_burst_unmap(&iB[i * 114],
2268 &bursts[i * 116], NULL, i >> 2);
2269 }
2270
2271 for (i = 2; i < 4; i++) {
2272 gsm0503_tch_burst_unmap(&iB[i * 114 + 456],
2273 &bursts[i * 116], NULL, 1);
2274 }
2275
2276 gsm0503_tch_fr_deinterleave(cB, iB);
2277
2278 rv = _xcch_decode_cB(tch_data, cB, n_errors, n_bits_total);
2279 if (rv) {
2280 /* Error decoding FACCH frame */
2281 return -1;
2282 }
2283
2284 return GSM_MACBLOCK_LEN;
2285 }
2286
2287 for (i = 0; i < 4; i++) {
2288 gsm0503_tch_burst_unmap(&iB[i * 114],
2289 &bursts[i * 116], NULL, i >> 1);
2290 }
2291
2292 gsm0503_tch_hr_deinterleave(cB, iB);
2293
2294 for (i = 0; i < 4; i++) {
2295 for (j = 0, k = 0; j < 4; j++)
2296 k += abs(((int)gsm0503_ahs_ic_sbit[i][j]) - ((int)cB[j]));
2297
2298 if (i == 0 || k < best) {
2299 best = k;
2300 id = i;
2301 }
2302 }
2303
2304 /* Check if indicated codec fits into range of codecs */
2305 if (id >= codecs) {
2306 /* Codec mode out of range, return id */
2307 return id;
2308 }
2309
2310 switch ((codec_mode_req) ? codec[*ft] : codec[id]) {
2311 case 5: /* TCH/AHS7.95 */
2312 osmo_conv_decode_ber(&gsm0503_tch_ahs_7_95, cB + 4,
2313 conv, n_errors, n_bits_total);
2314
2315 tch_amr_unmerge(d, p, conv, 123, 67);
2316
2317 rv = osmo_crc8gen_check_bits(&gsm0503_amr_crc6, d, 67, p);
2318 if (rv) {
2319 /* Error checking CRC8 for an AMR 7.95 frame */
2320 return -1;
2321 }
2322
2323 for (i = 0; i < 36; i++)
2324 d[i + 123] = (cB[i + 192] < 0) ? 1 : 0;
2325
2326 tch_amr_reassemble(tch_data, d, 159);
2327
2328 len = 20;
2329
2330 break;
2331 case 4: /* TCH/AHS7.4 */
2332 osmo_conv_decode_ber(&gsm0503_tch_ahs_7_4, cB + 4,
2333 conv, n_errors, n_bits_total);
2334
2335 tch_amr_unmerge(d, p, conv, 120, 61);
2336
2337 rv = osmo_crc8gen_check_bits(&gsm0503_amr_crc6, d, 61, p);
2338 if (rv) {
2339 /* Error checking CRC8 for an AMR 7.4 frame */
2340 return -1;
2341 }
2342
2343 for (i = 0; i < 28; i++)
2344 d[i + 120] = (cB[i + 200] < 0) ? 1 : 0;
2345
2346 tch_amr_reassemble(tch_data, d, 148);
2347
2348 len = 19;
2349
2350 break;
2351 case 3: /* TCH/AHS6.7 */
2352 osmo_conv_decode_ber(&gsm0503_tch_ahs_6_7, cB + 4,
2353 conv, n_errors, n_bits_total);
2354
2355 tch_amr_unmerge(d, p, conv, 110, 55);
2356
2357 rv = osmo_crc8gen_check_bits(&gsm0503_amr_crc6, d, 55, p);
2358 if (rv) {
2359 /* Error checking CRC8 for an AMR 6.7 frame */
2360 return -1;
2361 }
2362
2363 for (i = 0; i < 24; i++)
2364 d[i + 110] = (cB[i + 204] < 0) ? 1 : 0;
2365
2366 tch_amr_reassemble(tch_data, d, 134);
2367
2368 len = 17;
2369
2370 break;
2371 case 2: /* TCH/AHS5.9 */
2372 osmo_conv_decode_ber(&gsm0503_tch_ahs_5_9, cB + 4,
2373 conv, n_errors, n_bits_total);
2374
2375 tch_amr_unmerge(d, p, conv, 102, 55);
2376
2377 rv = osmo_crc8gen_check_bits(&gsm0503_amr_crc6, d, 55, p);
2378 if (rv) {
2379 /* Error checking CRC8 for an AMR 5.9 frame */
2380 return -1;
2381 }
2382
2383 for (i = 0; i < 16; i++)
2384 d[i + 102] = (cB[i + 212] < 0) ? 1 : 0;
2385
2386 tch_amr_reassemble(tch_data, d, 118);
2387
2388 len = 15;
2389
2390 break;
2391 case 1: /* TCH/AHS5.15 */
2392 osmo_conv_decode_ber(&gsm0503_tch_ahs_5_15, cB + 4,
2393 conv, n_errors, n_bits_total);
2394
2395 tch_amr_unmerge(d, p, conv, 91, 49);
2396
2397 rv = osmo_crc8gen_check_bits(&gsm0503_amr_crc6, d, 49, p);
2398 if (rv) {
2399 /* Error checking CRC8 for an AMR 5.15 frame */
2400 return -1;
2401 }
2402
2403 for (i = 0; i < 12; i++)
2404 d[i + 91] = (cB[i + 216] < 0) ? 1 : 0;
2405
2406 tch_amr_reassemble(tch_data, d, 103);
2407
2408 len = 13;
2409
2410 break;
2411 case 0: /* TCH/AHS4.75 */
2412 osmo_conv_decode_ber(&gsm0503_tch_ahs_4_75, cB + 4,
2413 conv, n_errors, n_bits_total);
2414
2415 tch_amr_unmerge(d, p, conv, 83, 39);
2416
2417 rv = osmo_crc8gen_check_bits(&gsm0503_amr_crc6, d, 39, p);
2418 if (rv) {
2419 /* Error checking CRC8 for an AMR 4.75 frame */
2420 return -1;
2421 }
2422
2423 for (i = 0; i < 12; i++)
2424 d[i + 83] = (cB[i + 216] < 0) ? 1 : 0;
2425
2426 tch_amr_reassemble(tch_data, d, 95);
2427
2428 len = 12;
2429
2430 break;
2431 default:
2432 /* Unknown frame type */
2433 *n_bits_total = 159;
2434 *n_errors = *n_bits_total;
2435 return -1;
2436 }
2437
2438 /* Change codec request / indication, if frame is valid */
2439 if (codec_mode_req)
2440 *cmr = id;
2441 else
2442 *ft = id;
2443
2444 return len;
2445}
2446
2447int gsm0503_tch_ahs_encode(ubit_t *bursts, uint8_t *tch_data, int len,
2448 int codec_mode_req, uint8_t *codec, int codecs, uint8_t ft,
2449 uint8_t cmr)
2450{
2451 ubit_t iB[912], cB[456], h;
2452 ubit_t d[244], p[6], conv[135];
2453 int i;
2454 uint8_t id;
2455
2456 if (len == GSM_MACBLOCK_LEN) { /* FACCH */
2457 _xcch_encode_cB(cB, tch_data);
2458
2459 h = 1;
2460
2461 gsm0503_tch_fr_interleave(cB, iB);
2462
2463 for (i = 0; i < 6; i++)
2464 gsm0503_tch_burst_map(&iB[i * 114], &bursts[i * 116],
2465 &h, i >> 2);
2466 for (i = 2; i < 4; i++)
2467 gsm0503_tch_burst_map(&iB[i * 114 + 456],
2468 &bursts[i * 116], &h, 1);
2469
2470 return 0;
2471 }
2472
2473 h = 0;
2474
2475 if (codec_mode_req) {
2476 if (cmr >= codecs) {
2477 /* FIXME: CMR ID %d not in codec list */
2478 return -1;
2479 }
2480 id = cmr;
2481 } else {
2482 if (ft >= codecs) {
2483 /* FIXME: FT ID %d not in codec list */
2484 return -1;
2485 }
2486 id = ft;
2487 }
2488
2489 switch (codec[ft]) {
2490 case 5: /* TCH/AHS7.95 */
2491 if (len != 20)
2492 goto invalid_length;
2493
2494 tch_amr_disassemble(d, tch_data, 159);
2495
2496 osmo_crc8gen_set_bits(&gsm0503_amr_crc6, d, 67, p);
2497
2498 tch_amr_merge(conv, d, p, 123, 67);
2499
2500 osmo_conv_encode(&gsm0503_tch_ahs_7_95, conv, cB + 4);
2501
2502 memcpy(cB + 192, d + 123, 36);
2503
2504 break;
2505 case 4: /* TCH/AHS7.4 */
2506 if (len != 19)
2507 goto invalid_length;
2508
2509 tch_amr_disassemble(d, tch_data, 148);
2510
2511 osmo_crc8gen_set_bits(&gsm0503_amr_crc6, d, 61, p);
2512
2513 tch_amr_merge(conv, d, p, 120, 61);
2514
2515 osmo_conv_encode(&gsm0503_tch_ahs_7_4, conv, cB + 4);
2516
2517 memcpy(cB + 200, d + 120, 28);
2518
2519 break;
2520 case 3: /* TCH/AHS6.7 */
2521 if (len != 17)
2522 goto invalid_length;
2523
2524 tch_amr_disassemble(d, tch_data, 134);
2525
2526 osmo_crc8gen_set_bits(&gsm0503_amr_crc6, d, 55, p);
2527
2528 tch_amr_merge(conv, d, p, 110, 55);
2529
2530 osmo_conv_encode(&gsm0503_tch_ahs_6_7, conv, cB + 4);
2531
2532 memcpy(cB + 204, d + 110, 24);
2533
2534 break;
2535 case 2: /* TCH/AHS5.9 */
2536 if (len != 15)
2537 goto invalid_length;
2538
2539 tch_amr_disassemble(d, tch_data, 118);
2540
2541 osmo_crc8gen_set_bits(&gsm0503_amr_crc6, d, 55, p);
2542
2543 tch_amr_merge(conv, d, p, 102, 55);
2544
2545 osmo_conv_encode(&gsm0503_tch_ahs_5_9, conv, cB + 4);
2546
2547 memcpy(cB + 212, d + 102, 16);
2548
2549 break;
2550 case 1: /* TCH/AHS5.15 */
2551 if (len != 13)
2552 goto invalid_length;
2553
2554 tch_amr_disassemble(d, tch_data, 103);
2555
2556 osmo_crc8gen_set_bits(&gsm0503_amr_crc6, d, 49, p);
2557
2558 tch_amr_merge(conv, d, p, 91, 49);
2559
2560 osmo_conv_encode(&gsm0503_tch_ahs_5_15, conv, cB + 4);
2561
2562 memcpy(cB + 216, d + 91, 12);
2563
2564 break;
2565 case 0: /* TCH/AHS4.75 */
2566 if (len != 12)
2567 goto invalid_length;
2568
2569 tch_amr_disassemble(d, tch_data, 95);
2570
2571 osmo_crc8gen_set_bits(&gsm0503_amr_crc6, d, 39, p);
2572
2573 tch_amr_merge(conv, d, p, 83, 39);
2574
2575 osmo_conv_encode(&gsm0503_tch_ahs_4_75, conv, cB + 4);
2576
2577 memcpy(cB + 216, d + 83, 12);
2578
2579 break;
2580 default:
2581 /* FIXME: FT %ft is not supported */
2582 return -1;
2583 }
2584
2585 memcpy(cB, gsm0503_afs_ic_ubit[id], 4);
2586
2587 gsm0503_tch_hr_interleave(cB, iB);
2588
2589 for (i = 0; i < 4; i++)
2590 gsm0503_tch_burst_map(&iB[i * 114], &bursts[i * 116], &h, i >> 1);
2591
2592 return 0;
2593
2594invalid_length:
2595 /* FIXME: payload length %len does not comply with codec type %ft */
2596 return -1;
2597}
2598
2599/*
2600 * GSM RACH transcoding
2601 */
2602
2603/*
2604 * GSM RACH apply BSIC to parity
2605 *
2606 * p(j) = p(j) xor b(j) j = 0, ..., 5
2607 * b(0) = MSB of PLMN colour code
2608 * b(5) = LSB of BS colour code
2609 */
2610static int rach_apply_bsic(ubit_t *d, uint8_t bsic)
2611{
2612 int i;
2613
2614 /* Apply it */
2615 for (i = 0; i < 6; i++)
2616 d[8 + i] ^= ((bsic >> (5 - i)) & 1);
2617
2618 return 0;
2619}
2620
2621int gsm0503_rach_decode(uint8_t *ra, sbit_t *burst, uint8_t bsic)
2622{
2623 ubit_t conv[14];
2624 int rv;
2625
2626 osmo_conv_decode(&gsm0503_rach, burst, conv);
2627
2628 rach_apply_bsic(conv, bsic);
2629
2630 rv = osmo_crc8gen_check_bits(&gsm0503_rach_crc6, conv, 8, conv + 8);
2631 if (rv)
2632 return -1;
2633
2634 osmo_ubit2pbit_ext(ra, 0, conv, 0, 8, 1);
2635
2636 return 0;
2637}
2638
2639int gsm0503_rach_encode(ubit_t *burst, uint8_t *ra, uint8_t bsic)
2640{
2641 ubit_t conv[14];
2642
2643 osmo_pbit2ubit_ext(conv, 0, ra, 0, 8, 1);
2644
2645 osmo_crc8gen_set_bits(&gsm0503_rach_crc6, conv, 8, conv + 8);
2646
2647 rach_apply_bsic(conv, bsic);
2648
2649 osmo_conv_encode(&gsm0503_rach, conv, burst);
2650
2651 return 0;
2652}
2653
2654/*
2655 * GSM SCH transcoding
2656 */
2657int gsm0503_sch_decode(uint8_t *sb_info, sbit_t *burst)
2658{
2659 ubit_t conv[35];
2660 int rv;
2661
2662 osmo_conv_decode(&gsm0503_sch, burst, conv);
2663
2664 rv = osmo_crc16gen_check_bits(&gsm0503_sch_crc10, conv, 25, conv + 25);
2665 if (rv)
2666 return -1;
2667
2668 osmo_ubit2pbit_ext(sb_info, 0, conv, 0, 25, 1);
2669
2670 return 0;
2671}
2672
2673int gsm0503_sch_encode(ubit_t *burst, uint8_t *sb_info)
2674{
2675 ubit_t conv[35];
2676
2677 osmo_pbit2ubit_ext(conv, 0, sb_info, 0, 25, 1);
2678
2679 osmo_crc16gen_set_bits(&gsm0503_sch_crc10, conv, 25, conv + 25);
2680
2681 osmo_conv_encode(&gsm0503_sch, conv, burst);
2682
2683 return 0;
2684}