Coverage Report

Created: 2025-11-09 06:08

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/proc/self/cwd/libfaad/sbr_dec.c
Line
Count
Source
1
/*
2
** FAAD2 - Freeware Advanced Audio (AAC) Decoder including SBR decoding
3
** Copyright (C) 2003-2005 M. Bakker, Nero AG, http://www.nero.com
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
**
15
** You should have received a copy of the GNU General Public License
16
** along with this program; if not, write to the Free Software
17
** Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
18
**
19
** Any non-GPL usage of this software or parts of this software is strictly
20
** forbidden.
21
**
22
** The "appropriate copyright message" mentioned in section 2c of the GPLv2
23
** must read: "Code from FAAD2 is copyright (c) Nero AG, www.nero.com"
24
**
25
** Commercial non-GPL licensing of this software is possible.
26
** For more info contact Nero AG through Mpeg4AAClicense@nero.com.
27
**
28
** $Id: sbr_dec.c,v 1.44 2009/01/26 22:32:31 menno Exp $
29
**/
30
31
32
#include "common.h"
33
#include "structs.h"
34
35
#ifdef SBR_DEC
36
37
#include <stdlib.h>
38
39
#include "syntax.h"
40
#include "bits.h"
41
#include "sbr_syntax.h"
42
#include "sbr_qmf.h"
43
#include "sbr_hfgen.h"
44
#include "sbr_hfadj.h"
45
46
47
/* static function declarations */
48
static uint8_t sbr_save_prev_data(sbr_info *sbr, uint8_t ch);
49
static void sbr_save_matrix(sbr_info *sbr, uint8_t ch);
50
51
341k
#define INVALID ((uint8_t)-1)
52
53
sbr_info *sbrDecodeInit(uint16_t framelength, uint8_t id_aac,
54
                        uint32_t sample_rate, uint8_t downSampledSBR
55
#ifdef DRM
56
            , uint8_t IsDRM
57
#endif
58
                        )
59
148k
{
60
148k
    sbr_info *sbr = faad_malloc(sizeof(sbr_info));
61
148k
    memset(sbr, 0, sizeof(sbr_info));
62
63
    /* save id of the parent element */
64
148k
    sbr->id_aac = id_aac;
65
148k
    sbr->sample_rate = sample_rate;
66
67
148k
    sbr->bs_freq_scale = 2;
68
148k
    sbr->bs_alter_scale = 1;
69
148k
    sbr->bs_noise_bands = 2;
70
148k
    sbr->bs_limiter_bands = 2;
71
148k
    sbr->bs_limiter_gains = 2;
72
148k
    sbr->bs_interpol_freq = 1;
73
148k
    sbr->bs_smoothing_mode = 1;
74
148k
    sbr->bs_start_freq = 5;
75
148k
    sbr->bs_amp_res = 1;
76
148k
    sbr->bs_samplerate_mode = 1;
77
148k
    sbr->prevEnvIsShort[0] = -1;
78
148k
    sbr->prevEnvIsShort[1] = -1;
79
148k
    sbr->header_count = 0;
80
148k
    sbr->Reset = 1;
81
82
#ifdef DRM
83
    sbr->Is_DRM_SBR = IsDRM;
84
#endif
85
148k
    sbr->tHFGen = T_HFGEN;
86
148k
    sbr->tHFAdj = T_HFADJ;
87
88
148k
    sbr->bsco = 0;
89
148k
    sbr->bsco_prev = 0;
90
148k
    sbr->M_prev = 0;
91
148k
    sbr->frame_len = framelength;
92
93
    /* force sbr reset */
94
148k
    sbr->bs_start_freq_prev = INVALID;
95
96
148k
    if (framelength == 960)
97
19.3k
    {
98
19.3k
        sbr->numTimeSlotsRate = RATE * NO_TIME_SLOTS_960;
99
19.3k
        sbr->numTimeSlots = NO_TIME_SLOTS_960;
100
19.3k
    }
101
129k
    else if (framelength == 1024)
102
129k
    {
103
129k
        sbr->numTimeSlotsRate = RATE * NO_TIME_SLOTS;
104
129k
        sbr->numTimeSlots = NO_TIME_SLOTS;
105
129k
    }
106
79
    else
107
79
    {
108
79
        faad_free(sbr);
109
79
        return NULL;
110
79
    }
111
112
148k
    sbr->GQ_ringbuf_index[0] = 0;
113
148k
    sbr->GQ_ringbuf_index[1] = 0;
114
115
148k
    if (id_aac == ID_CPE)
116
15.0k
    {
117
        /* stereo */
118
15.0k
        uint8_t j;
119
15.0k
        sbr->qmfa[0] = qmfa_init(32);
120
15.0k
        sbr->qmfa[1] = qmfa_init(32);
121
15.0k
        sbr->qmfs[0] = qmfs_init((downSampledSBR)?32:64);
122
15.0k
        sbr->qmfs[1] = qmfs_init((downSampledSBR)?32:64);
123
124
90.1k
        for (j = 0; j < 5; j++)
125
75.1k
        {
126
75.1k
            sbr->G_temp_prev[0][j] = faad_malloc(64*sizeof(real_t));
127
75.1k
            sbr->G_temp_prev[1][j] = faad_malloc(64*sizeof(real_t));
128
75.1k
            sbr->Q_temp_prev[0][j] = faad_malloc(64*sizeof(real_t));
129
75.1k
            sbr->Q_temp_prev[1][j] = faad_malloc(64*sizeof(real_t));
130
75.1k
        }
131
132
15.0k
        memset(sbr->Xsbr[0], 0, (sbr->numTimeSlotsRate+sbr->tHFGen)*64 * sizeof(qmf_t));
133
15.0k
        memset(sbr->Xsbr[1], 0, (sbr->numTimeSlotsRate+sbr->tHFGen)*64 * sizeof(qmf_t));
134
133k
    } else {
135
        /* mono */
136
133k
        uint8_t j;
137
133k
        sbr->qmfa[0] = qmfa_init(32);
138
133k
        sbr->qmfs[0] = qmfs_init((downSampledSBR)?32:64);
139
133k
        sbr->qmfs[1] = NULL;
140
141
801k
        for (j = 0; j < 5; j++)
142
667k
        {
143
667k
            sbr->G_temp_prev[0][j] = faad_malloc(64*sizeof(real_t));
144
667k
            sbr->Q_temp_prev[0][j] = faad_malloc(64*sizeof(real_t));
145
667k
        }
146
147
133k
        memset(sbr->Xsbr[0], 0, (sbr->numTimeSlotsRate+sbr->tHFGen)*64 * sizeof(qmf_t));
148
133k
    }
149
150
148k
    return sbr;
151
148k
}
152
153
void sbrDecodeEnd(sbr_info *sbr)
154
148k
{
155
148k
    uint8_t j;
156
157
148k
    if (sbr)
158
148k
    {
159
148k
        qmfa_end(sbr->qmfa[0]);
160
148k
        qmfs_end(sbr->qmfs[0]);
161
148k
        if (sbr->qmfs[1] != NULL)
162
18.5k
        {
163
18.5k
            qmfa_end(sbr->qmfa[1]);
164
18.5k
            qmfs_end(sbr->qmfs[1]);
165
18.5k
        }
166
167
891k
        for (j = 0; j < 5; j++)
168
742k
        {
169
742k
            if (sbr->G_temp_prev[0][j]) faad_free(sbr->G_temp_prev[0][j]);
170
742k
            if (sbr->Q_temp_prev[0][j]) faad_free(sbr->Q_temp_prev[0][j]);
171
742k
            if (sbr->G_temp_prev[1][j]) faad_free(sbr->G_temp_prev[1][j]);
172
742k
            if (sbr->Q_temp_prev[1][j]) faad_free(sbr->Q_temp_prev[1][j]);
173
742k
        }
174
175
148k
#ifdef PS_DEC
176
148k
        if (sbr->ps != NULL)
177
9.57k
            ps_free(sbr->ps);
178
148k
#endif
179
180
#ifdef DRM_PS
181
        if (sbr->drm_ps != NULL)
182
            drm_ps_free(sbr->drm_ps);
183
#endif
184
185
148k
        faad_free(sbr);
186
148k
    }
187
148k
}
188
189
void sbrReset(sbr_info *sbr)
190
168k
{
191
168k
    uint8_t j;
192
168k
    if (sbr->qmfa[0] != NULL)
193
168k
        memset(sbr->qmfa[0]->x, 0, 2 * sbr->qmfa[0]->channels * 10 * sizeof(real_t));
194
168k
    if (sbr->qmfa[1] != NULL)
195
14.0k
        memset(sbr->qmfa[1]->x, 0, 2 * sbr->qmfa[1]->channels * 10 * sizeof(real_t));
196
168k
    if (sbr->qmfs[0] != NULL)
197
168k
        memset(sbr->qmfs[0]->v, 0, 2 * sbr->qmfs[0]->channels * 20 * sizeof(real_t));
198
168k
    if (sbr->qmfs[1] != NULL)
199
18.9k
        memset(sbr->qmfs[1]->v, 0, 2 * sbr->qmfs[1]->channels * 20 * sizeof(real_t));
200
201
1.01M
    for (j = 0; j < 5; j++)
202
844k
    {
203
844k
        if (sbr->G_temp_prev[0][j] != NULL)
204
844k
            memset(sbr->G_temp_prev[0][j], 0, 64*sizeof(real_t));
205
844k
        if (sbr->G_temp_prev[1][j] != NULL)
206
70.4k
            memset(sbr->G_temp_prev[1][j], 0, 64*sizeof(real_t));
207
844k
        if (sbr->Q_temp_prev[0][j] != NULL)
208
844k
            memset(sbr->Q_temp_prev[0][j], 0, 64*sizeof(real_t));
209
844k
        if (sbr->Q_temp_prev[1][j] != NULL)
210
70.4k
            memset(sbr->Q_temp_prev[1][j], 0, 64*sizeof(real_t));
211
844k
    }
212
213
168k
    memset(sbr->Xsbr[0], 0, (sbr->numTimeSlotsRate+sbr->tHFGen)*64 * sizeof(qmf_t));
214
168k
    memset(sbr->Xsbr[1], 0, (sbr->numTimeSlotsRate+sbr->tHFGen)*64 * sizeof(qmf_t));
215
216
168k
    sbr->GQ_ringbuf_index[0] = 0;
217
168k
    sbr->GQ_ringbuf_index[1] = 0;
218
168k
    sbr->header_count = 0;
219
168k
    sbr->Reset = 1;
220
221
168k
    sbr->L_E_prev[0] = 0;
222
168k
    sbr->L_E_prev[1] = 0;
223
168k
    sbr->bs_freq_scale = 2;
224
168k
    sbr->bs_alter_scale = 1;
225
168k
    sbr->bs_noise_bands = 2;
226
168k
    sbr->bs_limiter_bands = 2;
227
168k
    sbr->bs_limiter_gains = 2;
228
168k
    sbr->bs_interpol_freq = 1;
229
168k
    sbr->bs_smoothing_mode = 1;
230
168k
    sbr->bs_start_freq = 5;
231
168k
    sbr->bs_amp_res = 1;
232
168k
    sbr->bs_samplerate_mode = 1;
233
168k
    sbr->prevEnvIsShort[0] = -1;
234
168k
    sbr->prevEnvIsShort[1] = -1;
235
168k
    sbr->bsco = 0;
236
168k
    sbr->bsco_prev = 0;
237
168k
    sbr->M_prev = 0;
238
168k
    sbr->bs_start_freq_prev = INVALID;
239
240
168k
    sbr->f_prev[0] = 0;
241
168k
    sbr->f_prev[1] = 0;
242
8.44M
    for (j = 0; j < MAX_M; j++)
243
8.27M
    {
244
8.27M
        sbr->E_prev[0][j] = 0;
245
8.27M
        sbr->Q_prev[0][j] = 0;
246
8.27M
        sbr->E_prev[1][j] = 0;
247
8.27M
        sbr->Q_prev[1][j] = 0;
248
8.27M
        sbr->bs_add_harmonic_prev[0][j] = 0;
249
8.27M
        sbr->bs_add_harmonic_prev[1][j] = 0;
250
8.27M
    }
251
168k
    sbr->bs_add_harmonic_flag_prev[0] = 0;
252
168k
    sbr->bs_add_harmonic_flag_prev[1] = 0;
253
168k
}
254
255
static uint8_t sbr_save_prev_data(sbr_info *sbr, uint8_t ch)
256
7.41k
{
257
7.41k
    uint8_t i;
258
259
    /* save data for next frame */
260
7.41k
    sbr->kx_prev = sbr->kx;
261
7.41k
    sbr->M_prev = sbr->M;
262
7.41k
    sbr->bsco_prev = sbr->bsco;
263
264
7.41k
    sbr->L_E_prev[ch] = sbr->L_E[ch];
265
266
    /* sbr->L_E[ch] can become 0 on files with bit errors */
267
7.41k
    if (sbr->L_E[ch] <= 0)
268
35
        return 19;
269
270
7.38k
    sbr->f_prev[ch] = sbr->f[ch][sbr->L_E[ch] - 1];
271
369k
    for (i = 0; i < MAX_M; i++)
272
361k
    {
273
361k
        sbr->E_prev[ch][i] = sbr->E[ch][i][sbr->L_E[ch] - 1];
274
361k
        sbr->Q_prev[ch][i] = sbr->Q[ch][i][sbr->L_Q[ch] - 1];
275
361k
    }
276
277
369k
    for (i = 0; i < MAX_M; i++)
278
361k
    {
279
361k
        sbr->bs_add_harmonic_prev[ch][i] = sbr->bs_add_harmonic[ch][i];
280
361k
    }
281
7.38k
    sbr->bs_add_harmonic_flag_prev[ch] = sbr->bs_add_harmonic_flag[ch];
282
283
7.38k
    if (sbr->l_A[ch] == sbr->L_E[ch])
284
1.01k
        sbr->prevEnvIsShort[ch] = 0;
285
6.37k
    else
286
6.37k
        sbr->prevEnvIsShort[ch] = -1;
287
288
7.38k
    return 0;
289
7.41k
}
290
291
static void sbr_save_matrix(sbr_info *sbr, uint8_t ch)
292
189k
{
293
189k
    uint8_t i;
294
295
1.70M
    for (i = 0; i < sbr->tHFGen; i++)
296
1.51M
    {
297
1.51M
        memmove(sbr->Xsbr[ch][i], sbr->Xsbr[ch][i+sbr->numTimeSlotsRate], 64 * sizeof(qmf_t));
298
1.51M
    }
299
6.25M
    for (i = sbr->tHFGen; i < MAX_NTSRHFG; i++)
300
6.06M
    {
301
6.06M
        memset(sbr->Xsbr[ch][i], 0, 64 * sizeof(qmf_t));
302
6.06M
    }
303
189k
}
304
305
static uint8_t sbr_process_channel(sbr_info *sbr, real_t *channel_buf, qmf_t X[MAX_NTSR][64],
306
                                   uint8_t ch, uint8_t dont_process,
307
                                   const uint8_t downSampledSBR)
308
189k
{
309
189k
    int16_t k, l;
310
189k
    uint8_t ret = 0;
311
189k
    (void)downSampledSBR;  /* TODO: remove parameter? */
312
313
#ifdef SBR_LOW_POWER
314
    ALIGN real_t deg[64];
315
#endif
316
317
#ifdef DRM
318
    if (sbr->Is_DRM_SBR)
319
    {
320
        sbr->bsco = (uint8_t)max((int32_t)sbr->maxAACLine*32/(int32_t)sbr->frame_len - (int32_t)sbr->kx, 0);
321
    } else {
322
#endif
323
189k
        sbr->bsco = 0;
324
#ifdef DRM
325
    }
326
#endif
327
328
329
//#define PRE_QMF_PRINT
330
#ifdef PRE_QMF_PRINT
331
    {
332
        int i;
333
        for (i = 0; i < 1024; i++)
334
        {
335
            printf("%d\n", channel_buf[i]);
336
        }
337
    }
338
#endif
339
340
341
    /* subband analysis */
342
189k
    if (dont_process)
343
182k
        sbr_qmf_analysis_32(sbr, sbr->qmfa[ch], channel_buf, sbr->Xsbr[ch], sbr->tHFGen, 32);
344
7.42k
    else
345
7.42k
        sbr_qmf_analysis_32(sbr, sbr->qmfa[ch], channel_buf, sbr->Xsbr[ch], sbr->tHFGen, sbr->kx);
346
347
189k
    if (!dont_process)
348
7.42k
    {
349
7.42k
#if 1
350
        /* insert high frequencies here */
351
        /* hf generation using patching */
352
7.42k
        hf_generation(sbr, sbr->Xsbr[ch], sbr->Xsbr[ch]
353
#ifdef SBR_LOW_POWER
354
            ,deg
355
#endif
356
7.42k
            ,ch);
357
7.42k
#endif
358
359
#if 0 //def SBR_LOW_POWER
360
        for (l = sbr->t_E[ch][0]; l < sbr->t_E[ch][sbr->L_E[ch]]; l++)
361
        {
362
            for (k = 0; k < sbr->kx; k++)
363
            {
364
                QMF_RE(sbr->Xsbr[ch][sbr->tHFAdj + l][k]) = 0;
365
            }
366
        }
367
#endif
368
369
7.42k
#if 1
370
        /* hf adjustment */
371
7.42k
        ret = hf_adjustment(sbr, sbr->Xsbr[ch]
372
#ifdef SBR_LOW_POWER
373
            ,deg
374
#endif
375
7.42k
            ,ch);
376
7.42k
#endif
377
7.42k
        if (ret > 0)
378
7
        {
379
7
            dont_process = 1;
380
7
        }
381
7.42k
    }
382
383
189k
    if ((sbr->just_seeked != 0) || dont_process)
384
184k
    {
385
6.04M
        for (l = 0; l < sbr->numTimeSlotsRate; l++)
386
5.86M
        {
387
193M
            for (k = 0; k < 32; k++)
388
187M
            {
389
187M
                QMF_RE(X[l][k]) = QMF_RE(sbr->Xsbr[ch][l + sbr->tHFAdj][k]);
390
187M
#ifndef SBR_LOW_POWER
391
187M
                QMF_IM(X[l][k]) = QMF_IM(sbr->Xsbr[ch][l + sbr->tHFAdj][k]);
392
187M
#endif
393
187M
            }
394
193M
            for (k = 32; k < 64; k++)
395
187M
            {
396
187M
                QMF_RE(X[l][k]) = 0;
397
187M
#ifndef SBR_LOW_POWER
398
187M
                QMF_IM(X[l][k]) = 0;
399
187M
#endif
400
187M
            }
401
5.86M
        }
402
184k
    } else {
403
148k
        for (l = 0; l < sbr->numTimeSlotsRate; l++)
404
144k
        {
405
144k
            uint8_t kx_band, M_band, bsco_band;
406
407
144k
            if (l < sbr->t_E[ch][0])
408
12.9k
            {
409
12.9k
                kx_band = sbr->kx_prev;
410
12.9k
                M_band = sbr->M_prev;
411
12.9k
                bsco_band = sbr->bsco_prev;
412
131k
            } else {
413
131k
                kx_band = sbr->kx;
414
131k
                M_band = sbr->M;
415
131k
                bsco_band = sbr->bsco;
416
131k
            }
417
418
144k
#ifndef SBR_LOW_POWER
419
2.88M
            for (k = 0; k < kx_band + bsco_band; k++)
420
2.73M
            {
421
2.73M
                QMF_RE(X[l][k]) = QMF_RE(sbr->Xsbr[ch][l + sbr->tHFAdj][k]);
422
2.73M
                QMF_IM(X[l][k]) = QMF_IM(sbr->Xsbr[ch][l + sbr->tHFAdj][k]);
423
2.73M
            }
424
1.52M
            for (k = kx_band + bsco_band; k < kx_band + M_band; k++)
425
1.38M
            {
426
1.38M
                QMF_RE(X[l][k]) = QMF_RE(sbr->Xsbr[ch][l + sbr->tHFAdj][k]);
427
1.38M
                QMF_IM(X[l][k]) = QMF_IM(sbr->Xsbr[ch][l + sbr->tHFAdj][k]);
428
1.38M
            }
429
5.25M
            for (k = max(kx_band + bsco_band, kx_band + M_band); k < 64; k++)
430
5.11M
            {
431
5.11M
                QMF_RE(X[l][k]) = 0;
432
5.11M
                QMF_IM(X[l][k]) = 0;
433
5.11M
            }
434
#else
435
            for (k = 0; k < kx_band + bsco_band; k++)
436
            {
437
                QMF_RE(X[l][k]) = QMF_RE(sbr->Xsbr[ch][l + sbr->tHFAdj][k]);
438
            }
439
            for (k = kx_band + bsco_band; k < min(kx_band + M_band, 63); k++)
440
            {
441
                QMF_RE(X[l][k]) = QMF_RE(sbr->Xsbr[ch][l + sbr->tHFAdj][k]);
442
            }
443
            for (k = max(kx_band + bsco_band, kx_band + M_band); k < 64; k++)
444
            {
445
                QMF_RE(X[l][k]) = 0;
446
            }
447
            QMF_RE(X[l][kx_band - 1 + bsco_band]) +=
448
                QMF_RE(sbr->Xsbr[ch][l + sbr->tHFAdj][kx_band - 1 + bsco_band]);
449
#endif
450
144k
        }
451
4.58k
    }
452
453
189k
    return ret;
454
189k
}
455
456
uint8_t sbrDecodeCoupleFrame(sbr_info *sbr, real_t *left_chan, real_t *right_chan,
457
                             const uint8_t just_seeked, const uint8_t downSampledSBR)
458
17.6k
{
459
17.6k
    uint8_t dont_process = 0;
460
17.6k
    uint8_t ret = 0;
461
17.6k
    ALIGN qmf_t X[MAX_NTSRHFG][64];
462
463
17.6k
    if (sbr == NULL)
464
0
        return 20;
465
466
    /* case can occur due to bit errors */
467
17.6k
    if (sbr->id_aac != ID_CPE)
468
0
        return 21;
469
470
17.6k
    if (sbr->ret || (sbr->header_count == 0))
471
16.4k
    {
472
        /* don't process just upsample */
473
16.4k
        dont_process = 1;
474
475
        /* Re-activate reset for next frame */
476
16.4k
        if (sbr->ret && sbr->Reset)
477
8.11k
            sbr->bs_start_freq_prev = INVALID;
478
16.4k
    }
479
480
17.6k
    if (just_seeked)
481
9.43k
    {
482
9.43k
        sbr->just_seeked = 1;
483
9.43k
    } else {
484
8.19k
        sbr->just_seeked = 0;
485
8.19k
    }
486
487
17.6k
    sbr->ret += sbr_process_channel(sbr, left_chan, X, 0, dont_process, downSampledSBR);
488
    /* subband synthesis */
489
17.6k
    if (downSampledSBR)
490
3.63k
    {
491
3.63k
        sbr_qmf_synthesis_32(sbr, sbr->qmfs[0], X, left_chan);
492
14.0k
    } else {
493
14.0k
        sbr_qmf_synthesis_64(sbr, sbr->qmfs[0], X, left_chan);
494
14.0k
    }
495
496
17.6k
    sbr->ret += sbr_process_channel(sbr, right_chan, X, 1, dont_process, downSampledSBR);
497
    /* subband synthesis */
498
17.6k
    if (downSampledSBR)
499
3.63k
    {
500
3.63k
        sbr_qmf_synthesis_32(sbr, sbr->qmfs[1], X, right_chan);
501
14.0k
    } else {
502
14.0k
        sbr_qmf_synthesis_64(sbr, sbr->qmfs[1], X, right_chan);
503
14.0k
    }
504
505
17.6k
    if (sbr->bs_header_flag)
506
9.24k
        sbr->just_seeked = 0;
507
508
17.6k
    if (sbr->header_count != 0 && sbr->ret == 0)
509
1.18k
    {
510
1.18k
        ret = sbr_save_prev_data(sbr, 0);
511
1.18k
        if (ret) return ret;
512
1.18k
        ret = sbr_save_prev_data(sbr, 1);
513
1.18k
        if (ret) return ret;
514
1.18k
    }
515
516
17.6k
    sbr_save_matrix(sbr, 0);
517
17.6k
    sbr_save_matrix(sbr, 1);
518
519
17.6k
    sbr->frame++;
520
521
//#define POST_QMF_PRINT
522
#ifdef POST_QMF_PRINT
523
    {
524
        int i;
525
        for (i = 0; i < 2048; i++)
526
        {
527
            printf("%d\n", left_chan[i]);
528
        }
529
        for (i = 0; i < 2048; i++)
530
        {
531
            printf("%d\n", right_chan[i]);
532
        }
533
    }
534
#endif
535
536
17.6k
    return 0;
537
17.6k
}
538
539
uint8_t sbrDecodeSingleFrame(sbr_info *sbr, real_t *channel,
540
                             const uint8_t just_seeked, const uint8_t downSampledSBR)
541
148k
{
542
148k
    uint8_t dont_process = 0;
543
148k
    uint8_t ret = 0;
544
148k
    ALIGN qmf_t X[MAX_NTSRHFG][64];
545
546
148k
    if (sbr == NULL)
547
0
        return 20;
548
549
    /* case can occur due to bit errors */
550
148k
    if (sbr->id_aac != ID_SCE && sbr->id_aac != ID_LFE)
551
0
        return 21;
552
553
148k
    if (sbr->ret || (sbr->header_count == 0))
554
145k
    {
555
        /* don't process just upsample */
556
145k
        dont_process = 1;
557
558
        /* Re-activate reset for next frame */
559
145k
        if (sbr->ret && sbr->Reset)
560
12.6k
            sbr->bs_start_freq_prev = INVALID;
561
145k
    }
562
563
148k
    if (just_seeked)
564
68.7k
    {
565
68.7k
        sbr->just_seeked = 1;
566
79.7k
    } else {
567
79.7k
        sbr->just_seeked = 0;
568
79.7k
    }
569
570
148k
    sbr->ret += sbr_process_channel(sbr, channel, X, 0, dont_process, downSampledSBR);
571
    /* subband synthesis */
572
148k
    if (downSampledSBR)
573
64.1k
    {
574
64.1k
        sbr_qmf_synthesis_32(sbr, sbr->qmfs[0], X, channel);
575
84.3k
    } else {
576
84.3k
        sbr_qmf_synthesis_64(sbr, sbr->qmfs[0], X, channel);
577
84.3k
    }
578
579
148k
    if (sbr->bs_header_flag)
580
15.3k
        sbr->just_seeked = 0;
581
582
148k
    if (sbr->header_count != 0 && sbr->ret == 0)
583
2.85k
    {
584
2.85k
        ret = sbr_save_prev_data(sbr, 0);
585
2.85k
        if (ret) return ret;
586
2.85k
    }
587
588
148k
    sbr_save_matrix(sbr, 0);
589
590
148k
    sbr->frame++;
591
592
//#define POST_QMF_PRINT
593
#ifdef POST_QMF_PRINT
594
    {
595
        int i;
596
        for (i = 0; i < 2048; i++)
597
        {
598
            printf("%d\n", channel[i]);
599
        }
600
    }
601
#endif
602
603
148k
    return 0;
604
148k
}
605
606
#if (defined(PS_DEC) || defined(DRM_PS))
607
uint8_t sbrDecodeSingleFramePS(sbr_info *sbr, real_t *left_channel, real_t *right_channel,
608
                               const uint8_t just_seeked, const uint8_t downSampledSBR)
609
5.83k
{
610
5.83k
    uint8_t l, k;
611
5.83k
    uint8_t dont_process = 0;
612
5.83k
    uint8_t ret = 0;
613
5.83k
    ALIGN qmf_t X_left[MAX_NTSRHFG][64] = {{{0}}};
614
5.83k
    ALIGN qmf_t X_right[MAX_NTSRHFG][64] = {{{0}}}; /* must set this to 0 */
615
616
5.83k
    if (sbr == NULL)
617
0
        return 20;
618
619
    /* case can occur due to bit errors */
620
5.83k
    if (sbr->id_aac != ID_SCE && sbr->id_aac != ID_LFE)
621
0
        return 21;
622
623
5.83k
    if (sbr->ret || (sbr->header_count == 0))
624
3.65k
    {
625
        /* don't process just upsample */
626
3.65k
        dont_process = 1;
627
628
        /* Re-activate reset for next frame */
629
3.65k
        if (sbr->ret && sbr->Reset)
630
2.87k
            sbr->bs_start_freq_prev = INVALID;
631
3.65k
    }
632
633
5.83k
    if (just_seeked)
634
2.63k
    {
635
2.63k
        sbr->just_seeked = 1;
636
3.20k
    } else {
637
3.20k
        sbr->just_seeked = 0;
638
3.20k
    }
639
640
5.83k
    if (sbr->qmfs[1] == NULL)
641
3.53k
    {
642
3.53k
        sbr->qmfs[1] = qmfs_init((downSampledSBR)?32:64);
643
3.53k
    }
644
645
5.83k
    sbr->ret += sbr_process_channel(sbr, left_channel, X_left, 0, dont_process, downSampledSBR);
646
647
    /* copy some extra data for PS */
648
40.8k
    for (l = sbr->numTimeSlotsRate; l < sbr->numTimeSlotsRate + 6; l++)
649
35.0k
    {
650
210k
        for (k = 0; k < 5; k++)
651
175k
        {
652
175k
            QMF_RE(X_left[l][k]) = QMF_RE(sbr->Xsbr[0][sbr->tHFAdj+l][k]);
653
175k
            QMF_IM(X_left[l][k]) = QMF_IM(sbr->Xsbr[0][sbr->tHFAdj+l][k]);
654
175k
        }
655
35.0k
    }
656
657
    /* perform parametric stereo */
658
#ifdef DRM_PS
659
    if (sbr->Is_DRM_SBR)
660
    {
661
        drm_ps_decode(sbr->drm_ps, (sbr->ret > 0), X_left, X_right);
662
    } else {
663
#endif
664
5.83k
#ifdef PS_DEC
665
5.83k
        ps_decode(sbr->ps, X_left, X_right);
666
5.83k
#endif
667
#ifdef DRM_PS
668
    }
669
#endif
670
671
    /* subband synthesis */
672
5.83k
    if (downSampledSBR)
673
3.71k
    {
674
3.71k
        sbr_qmf_synthesis_32(sbr, sbr->qmfs[0], X_left, left_channel);
675
3.71k
        sbr_qmf_synthesis_32(sbr, sbr->qmfs[1], X_right, right_channel);
676
3.71k
    } else {
677
2.11k
        sbr_qmf_synthesis_64(sbr, sbr->qmfs[0], X_left, left_channel);
678
2.11k
        sbr_qmf_synthesis_64(sbr, sbr->qmfs[1], X_right, right_channel);
679
2.11k
    }
680
681
5.83k
    if (sbr->bs_header_flag)
682
5.76k
        sbr->just_seeked = 0;
683
684
5.83k
    if (sbr->header_count != 0 && sbr->ret == 0)
685
2.18k
    {
686
2.18k
        ret = sbr_save_prev_data(sbr, 0);
687
2.18k
        if (ret) return ret;
688
2.18k
    }
689
690
5.83k
    sbr_save_matrix(sbr, 0);
691
692
5.83k
    sbr->frame++;
693
694
5.83k
    return 0;
695
5.83k
}
696
#endif
697
698
#endif