Coverage Report

Created: 2026-05-24 06:39

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/proc/self/cwd/libfaad/specrec.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: specrec.c,v 1.63 2010/06/04 20:47:56 menno Exp $
29
**/
30
31
/*
32
  Spectral reconstruction:
33
   - grouping/sectioning
34
   - inverse quantization
35
   - applying scalefactors
36
*/
37
38
#include "common.h"
39
#include "structs.h"
40
41
#include <stdlib.h>
42
#include "specrec.h"
43
#include "filtbank.h"
44
#include "syntax.h"
45
#include "iq_table.h"
46
#include "ms.h"
47
#include "is.h"
48
#include "pns.h"
49
#include "tns.h"
50
#include "drc.h"
51
#include "lt_predict.h"
52
#include "ic_predict.h"
53
#ifdef SSR_DEC
54
#include "ssr.h"
55
#include "ssr_fb.h"
56
#endif
57
58
59
/* static function declarations */
60
static uint8_t quant_to_spec(NeAACDecStruct *hDecoder,
61
                             ic_stream *ics, int16_t *quant_data,
62
                             real_t *spec_data, uint16_t frame_len);
63
64
65
#ifdef LD_DEC
66
ALIGN static const uint8_t num_swb_512_window[] =
67
{
68
    0, 0, 0, 36, 36, 37, 31, 31, 0, 0, 0, 0
69
};
70
ALIGN static const uint8_t num_swb_480_window[] =
71
{
72
    0, 0, 0, 35, 35, 37, 30, 30, 0, 0, 0, 0
73
};
74
#endif
75
76
ALIGN static const uint8_t num_swb_960_window[] =
77
{
78
    40, 40, 45, 49, 49, 49, 46, 46, 42, 42, 42, 40
79
};
80
81
ALIGN static const uint8_t num_swb_1024_window[] =
82
{
83
    41, 41, 47, 49, 49, 51, 47, 47, 43, 43, 43, 40
84
};
85
86
ALIGN static const uint8_t num_swb_128_window[] =
87
{
88
    12, 12, 12, 14, 14, 14, 15, 15, 15, 15, 15, 15
89
};
90
91
ALIGN static const uint16_t swb_offset_1024_96[] =
92
{
93
    0, 4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 48, 52, 56,
94
    64, 72, 80, 88, 96, 108, 120, 132, 144, 156, 172, 188, 212, 240,
95
    276, 320, 384, 448, 512, 576, 640, 704, 768, 832, 896, 960, 1024
96
};
97
98
ALIGN static const uint16_t swb_offset_128_96[] =
99
{
100
    0, 4, 8, 12, 16, 20, 24, 32, 40, 48, 64, 92, 128
101
};
102
103
ALIGN static const uint16_t swb_offset_1024_64[] =
104
{
105
    0, 4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 48, 52, 56,
106
    64, 72, 80, 88, 100, 112, 124, 140, 156, 172, 192, 216, 240, 268,
107
    304, 344, 384, 424, 464, 504, 544, 584, 624, 664, 704, 744, 784, 824,
108
    864, 904, 944, 984, 1024
109
};
110
111
ALIGN static const uint16_t swb_offset_128_64[] =
112
{
113
    0, 4, 8, 12, 16, 20, 24, 32, 40, 48, 64, 92, 128
114
};
115
116
ALIGN static const uint16_t swb_offset_1024_48[] =
117
{
118
    0, 4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 48, 56, 64, 72,
119
    80, 88, 96, 108, 120, 132, 144, 160, 176, 196, 216, 240, 264, 292,
120
    320, 352, 384, 416, 448, 480, 512, 544, 576, 608, 640, 672, 704, 736,
121
    768, 800, 832, 864, 896, 928, 1024
122
};
123
124
#ifdef LD_DEC
125
ALIGN static const uint16_t swb_offset_512_48[] =
126
{
127
    0, 4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 48, 52, 56, 60, 68, 76, 84,
128
    92, 100, 112, 124, 136, 148, 164, 184, 208, 236, 268, 300, 332, 364, 396,
129
    428, 460, 512
130
};
131
132
ALIGN static const uint16_t swb_offset_480_48[] =
133
{
134
    0, 4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 48, 52, 56, 64, 72 ,80 ,88,
135
    96, 108, 120, 132, 144, 156, 172, 188, 212, 240, 272, 304, 336, 368, 400,
136
    432, 480
137
};
138
#endif
139
140
ALIGN static const uint16_t swb_offset_128_48[] =
141
{
142
    0, 4, 8, 12, 16, 20, 28, 36, 44, 56, 68, 80, 96, 112, 128
143
};
144
145
ALIGN static const uint16_t swb_offset_1024_32[] =
146
{
147
    0, 4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 48, 56, 64, 72,
148
    80, 88, 96, 108, 120, 132, 144, 160, 176, 196, 216, 240, 264, 292,
149
    320, 352, 384, 416, 448, 480, 512, 544, 576, 608, 640, 672, 704, 736,
150
    768, 800, 832, 864, 896, 928, 960, 992, 1024
151
};
152
153
#ifdef LD_DEC
154
ALIGN static const uint16_t swb_offset_512_32[] =
155
{
156
    0, 4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 48, 52, 56, 64, 72, 80,
157
    88, 96, 108, 120, 132, 144, 160, 176, 192, 212, 236, 260, 288, 320, 352,
158
    384, 416, 448, 480, 512
159
};
160
161
ALIGN static const uint16_t swb_offset_480_32[] =
162
{
163
    0, 4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 48, 52, 56, 60, 64, 72, 80,
164
    88, 96, 104, 112, 124, 136, 148, 164, 180, 200, 224, 256, 288, 320, 352,
165
    384, 416, 448, 480
166
};
167
#endif
168
169
ALIGN static const uint16_t swb_offset_1024_24[] =
170
{
171
    0, 4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 52, 60, 68,
172
    76, 84, 92, 100, 108, 116, 124, 136, 148, 160, 172, 188, 204, 220,
173
    240, 260, 284, 308, 336, 364, 396, 432, 468, 508, 552, 600, 652, 704,
174
    768, 832, 896, 960, 1024
175
};
176
177
#ifdef LD_DEC
178
ALIGN static const uint16_t swb_offset_512_24[] =
179
{
180
    0, 4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 52, 60, 68,
181
    80, 92, 104, 120, 140, 164, 192, 224, 256, 288, 320, 352, 384, 416,
182
    448, 480, 512
183
};
184
185
ALIGN static const uint16_t swb_offset_480_24[] =
186
{
187
    0, 4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 52, 60, 68, 80, 92, 104, 120,
188
    140, 164, 192, 224, 256, 288, 320, 352, 384, 416, 448, 480
189
};
190
#endif
191
192
ALIGN static const uint16_t swb_offset_128_24[] =
193
{
194
    0, 4, 8, 12, 16, 20, 24, 28, 36, 44, 52, 64, 76, 92, 108, 128
195
};
196
197
ALIGN static const uint16_t swb_offset_1024_16[] =
198
{
199
    0, 8, 16, 24, 32, 40, 48, 56, 64, 72, 80, 88, 100, 112, 124,
200
    136, 148, 160, 172, 184, 196, 212, 228, 244, 260, 280, 300, 320, 344,
201
    368, 396, 424, 456, 492, 532, 572, 616, 664, 716, 772, 832, 896, 960, 1024
202
};
203
204
ALIGN static const uint16_t swb_offset_128_16[] =
205
{
206
    0, 4, 8, 12, 16, 20, 24, 28, 32, 40, 48, 60, 72, 88, 108, 128
207
};
208
209
ALIGN static const uint16_t swb_offset_1024_8[] =
210
{
211
    0, 12, 24, 36, 48, 60, 72, 84, 96, 108, 120, 132, 144, 156, 172,
212
    188, 204, 220, 236, 252, 268, 288, 308, 328, 348, 372, 396, 420, 448,
213
    476, 508, 544, 580, 620, 664, 712, 764, 820, 880, 944, 1024
214
};
215
216
ALIGN static const uint16_t swb_offset_128_8[] =
217
{
218
    0, 4, 8, 12, 16, 20, 24, 28, 36, 44, 52, 60, 72, 88, 108, 128
219
};
220
221
ALIGN static const uint16_t *swb_offset_1024_window[] =
222
{
223
    swb_offset_1024_96,      /* 96000 */
224
    swb_offset_1024_96,      /* 88200 */
225
    swb_offset_1024_64,      /* 64000 */
226
    swb_offset_1024_48,      /* 48000 */
227
    swb_offset_1024_48,      /* 44100 */
228
    swb_offset_1024_32,      /* 32000 */
229
    swb_offset_1024_24,      /* 24000 */
230
    swb_offset_1024_24,      /* 22050 */
231
    swb_offset_1024_16,      /* 16000 */
232
    swb_offset_1024_16,      /* 12000 */
233
    swb_offset_1024_16,      /* 11025 */
234
    swb_offset_1024_8        /* 8000  */
235
};
236
237
#ifdef LD_DEC
238
ALIGN static const uint16_t *swb_offset_512_window[] =
239
{
240
    0,                       /* 96000 */
241
    0,                       /* 88200 */
242
    0,                       /* 64000 */
243
    swb_offset_512_48,       /* 48000 */
244
    swb_offset_512_48,       /* 44100 */
245
    swb_offset_512_32,       /* 32000 */
246
    swb_offset_512_24,       /* 24000 */
247
    swb_offset_512_24,       /* 22050 */
248
    0,                       /* 16000 */
249
    0,                       /* 12000 */
250
    0,                       /* 11025 */
251
    0                        /* 8000  */
252
};
253
254
ALIGN static const uint16_t *swb_offset_480_window[] =
255
{
256
    0,                       /* 96000 */
257
    0,                       /* 88200 */
258
    0,                       /* 64000 */
259
    swb_offset_480_48,       /* 48000 */
260
    swb_offset_480_48,       /* 44100 */
261
    swb_offset_480_32,       /* 32000 */
262
    swb_offset_480_24,       /* 24000 */
263
    swb_offset_480_24,       /* 22050 */
264
    0,                       /* 16000 */
265
    0,                       /* 12000 */
266
    0,                       /* 11025 */
267
    0                        /* 8000  */
268
};
269
#endif
270
271
ALIGN static const  uint16_t *swb_offset_128_window[] =
272
{
273
    swb_offset_128_96,       /* 96000 */
274
    swb_offset_128_96,       /* 88200 */
275
    swb_offset_128_64,       /* 64000 */
276
    swb_offset_128_48,       /* 48000 */
277
    swb_offset_128_48,       /* 44100 */
278
    swb_offset_128_48,       /* 32000 */
279
    swb_offset_128_24,       /* 24000 */
280
    swb_offset_128_24,       /* 22050 */
281
    swb_offset_128_16,       /* 16000 */
282
    swb_offset_128_16,       /* 12000 */
283
    swb_offset_128_16,       /* 11025 */
284
    swb_offset_128_8         /* 8000  */
285
};
286
287
165k
#define bit_set(A, B) ((A) & (1<<(B)))
288
289
/* 4.5.2.3.4 */
290
/*
291
  - determine the number of windows in a window_sequence named num_windows
292
  - determine the number of window_groups named num_window_groups
293
  - determine the number of windows in each group named window_group_length[g]
294
  - determine the total number of scalefactor window bands named num_swb for
295
    the actual window type
296
  - determine swb_offset[swb], the offset of the first coefficient in
297
    scalefactor window band named swb of the window actually used
298
  - determine sect_sfb_offset[g][section],the offset of the first coefficient
299
    in section named section. This offset depends on window_sequence and
300
    scale_factor_grouping and is needed to decode the spectral_data().
301
*/
302
uint8_t window_grouping_info(NeAACDecStruct *hDecoder, ic_stream *ics)
303
235k
{
304
235k
    uint8_t i, g;
305
306
235k
    uint8_t sf_index = hDecoder->sf_index;
307
308
235k
    if (sf_index >= 12)
309
3
        return 32;
310
311
235k
    switch (ics->window_sequence) {
312
194k
    case ONLY_LONG_SEQUENCE:
313
208k
    case LONG_START_SEQUENCE:
314
212k
    case LONG_STOP_SEQUENCE:
315
212k
        ics->num_windows = 1;
316
212k
        ics->num_window_groups = 1;
317
212k
        ics->window_group_length[ics->num_window_groups-1] = 1;
318
212k
#ifdef LD_DEC
319
212k
        if (hDecoder->object_type == LD)
320
2.82k
        {
321
2.82k
            if (hDecoder->frameLength == 512)
322
1.31k
                ics->num_swb = num_swb_512_window[sf_index];
323
1.51k
            else /* if (hDecoder->frameLength == 480) */
324
1.51k
                ics->num_swb = num_swb_480_window[sf_index];
325
209k
        } else {
326
209k
#endif
327
209k
            if (hDecoder->frameLength == 1024)
328
178k
                ics->num_swb = num_swb_1024_window[sf_index];
329
30.9k
            else /* if (hDecoder->frameLength == 960) */
330
30.9k
                ics->num_swb = num_swb_960_window[sf_index];
331
209k
#ifdef LD_DEC
332
209k
        }
333
212k
#endif
334
335
212k
        if (ics->max_sfb > ics->num_swb)
336
83
        {
337
83
            return 32;
338
83
        }
339
340
        /* preparation of sect_sfb_offset for long blocks */
341
        /* also copy the last value! */
342
211k
#ifdef LD_DEC
343
211k
        if (hDecoder->object_type == LD)
344
2.81k
        {
345
2.81k
            if (hDecoder->frameLength == 512)
346
1.30k
            {
347
33.9k
                for (i = 0; i < ics->num_swb; i++)
348
32.6k
                {
349
32.6k
                    ics->sect_sfb_offset[0][i] = swb_offset_512_window[sf_index][i];
350
32.6k
                    ics->swb_offset[i] = swb_offset_512_window[sf_index][i];
351
32.6k
                }
352
1.51k
            } else /* if (hDecoder->frameLength == 480) */ {
353
40.4k
                for (i = 0; i < ics->num_swb; i++)
354
38.9k
                {
355
38.9k
                    ics->sect_sfb_offset[0][i] = swb_offset_480_window[sf_index][i];
356
38.9k
                    ics->swb_offset[i] = swb_offset_480_window[sf_index][i];
357
38.9k
                }
358
1.51k
            }
359
2.81k
            ics->sect_sfb_offset[0][ics->num_swb] = hDecoder->frameLength;
360
2.81k
            ics->swb_offset[ics->num_swb] = hDecoder->frameLength;
361
2.81k
            ics->swb_offset_max = hDecoder->frameLength;
362
209k
        } else {
363
209k
#endif
364
9.08M
            for (i = 0; i < ics->num_swb; i++)
365
8.87M
            {
366
8.87M
                ics->sect_sfb_offset[0][i] = swb_offset_1024_window[sf_index][i];
367
8.87M
                ics->swb_offset[i] = swb_offset_1024_window[sf_index][i];
368
8.87M
            }
369
209k
            ics->sect_sfb_offset[0][ics->num_swb] = hDecoder->frameLength;
370
209k
            ics->swb_offset[ics->num_swb] = hDecoder->frameLength;
371
209k
            ics->swb_offset_max = hDecoder->frameLength;
372
209k
#ifdef LD_DEC
373
209k
        }
374
211k
#endif
375
211k
        return 0;
376
23.6k
    case EIGHT_SHORT_SEQUENCE:
377
23.6k
        ics->num_windows = 8;
378
23.6k
        ics->num_window_groups = 1;
379
23.6k
        ics->window_group_length[ics->num_window_groups-1] = 1;
380
23.6k
        ics->num_swb = num_swb_128_window[sf_index];
381
382
23.6k
        if (ics->max_sfb > ics->num_swb)
383
6
        {
384
6
            return 32;
385
6
        }
386
387
347k
        for (i = 0; i < ics->num_swb; i++)
388
323k
            ics->swb_offset[i] = swb_offset_128_window[sf_index][i];
389
23.6k
        ics->swb_offset[ics->num_swb] = hDecoder->frameLength/8;
390
23.6k
        ics->swb_offset_max = hDecoder->frameLength/8;
391
392
188k
        for (i = 0; i < ics->num_windows-1; i++) {
393
165k
            if (bit_set(ics->scale_factor_grouping, 6-i) == 0)
394
132k
            {
395
132k
                ics->num_window_groups += 1;
396
132k
                ics->window_group_length[ics->num_window_groups-1] = 1;
397
132k
            } else {
398
32.5k
                ics->window_group_length[ics->num_window_groups-1] += 1;
399
32.5k
            }
400
165k
        }
401
402
        /* preparation of sect_sfb_offset for short blocks */
403
179k
        for (g = 0; g < ics->num_window_groups; g++)
404
156k
        {
405
156k
            uint16_t width;
406
156k
            uint8_t sect_sfb = 0;
407
156k
            uint16_t offset = 0;
408
409
2.30M
            for (i = 0; i < ics->num_swb; i++)
410
2.14M
            {
411
2.14M
                if (i+1 == ics->num_swb)
412
156k
                {
413
156k
                    width = (hDecoder->frameLength/8) - swb_offset_128_window[sf_index][i];
414
1.98M
                } else {
415
1.98M
                    width = swb_offset_128_window[sf_index][i+1] -
416
1.98M
                        swb_offset_128_window[sf_index][i];
417
1.98M
                }
418
2.14M
                width *= ics->window_group_length[g];
419
2.14M
                ics->sect_sfb_offset[g][sect_sfb++] = offset;
420
2.14M
                offset += width;
421
2.14M
            }
422
156k
            ics->sect_sfb_offset[g][sect_sfb] = offset;
423
156k
        }
424
23.6k
        return 0;
425
0
    default:
426
0
        return 32;
427
235k
    }
428
235k
}
429
430
/* iquant() * output = sign(input)*abs(input)^(4/3) */
431
static INLINE real_t iquant(int16_t q, const real_t *tab, uint8_t *error)
432
249M
{
433
#ifdef FIXED_POINT
434
/* For FIXED_POINT the iq_table is prescaled by 3 bits (iq_table[]/8) */
435
/* BIG_IQ_TABLE allows you to use the full 8192 value table, if this is not
436
 * defined a 1026 value table and interpolation will be used
437
 */
438
#ifndef BIG_IQ_TABLE
439
    static const real_t errcorr[] = {
440
        REAL_CONST(0), REAL_CONST(1.0/8.0), REAL_CONST(2.0/8.0), REAL_CONST(3.0/8.0),
441
        REAL_CONST(4.0/8.0),  REAL_CONST(5.0/8.0), REAL_CONST(6.0/8.0), REAL_CONST(7.0/8.0),
442
        REAL_CONST(0)
443
    };
444
    real_t x1, x2;
445
#endif
446
    int16_t sgn = 1;
447
448
    if (q < 0)
449
    {
450
        q = -q;
451
        sgn = -1;
452
    }
453
454
    if (q < IQ_TABLE_SIZE)
455
    {
456
//#define IQUANT_PRINT
457
#ifdef IQUANT_PRINT
458
        //printf("0x%.8X\n", sgn * tab[q]);
459
        printf("%d\n", sgn * tab[q]);
460
#endif
461
        return sgn * tab[q];
462
    }
463
464
#ifndef BIG_IQ_TABLE
465
    if (q >= 8192)
466
    {
467
        *error = 17;
468
        return 0;
469
    }
470
471
    /* linear interpolation */
472
    x1 = tab[q>>3];
473
    x2 = tab[(q>>3) + 1];
474
    return sgn * 16 * (MUL_R(errcorr[q&7],(x2-x1)) + x1);
475
#else
476
    *error = 17;
477
    return 0;
478
#endif
479
480
#else
481
249M
    if (q < 0)
482
59.7k
    {
483
        /* tab contains a value for all possible q [0,8192] */
484
59.7k
        if (-q < IQ_TABLE_SIZE)
485
58.8k
            return -tab[-q];
486
487
890
        *error = 17;
488
890
        return 0;
489
249M
    } else {
490
        /* tab contains a value for all possible q [0,8192] */
491
249M
        if (q < IQ_TABLE_SIZE)
492
249M
            return tab[q];
493
494
836
        *error = 17;
495
836
        return 0;
496
249M
    }
497
249M
#endif
498
249M
}
499
500
#ifndef FIXED_POINT
501
ALIGN static const real_t pow2sf_tab[] = {
502
    2.9802322387695313E-008, 5.9604644775390625E-008, 1.1920928955078125E-007,
503
    2.384185791015625E-007, 4.76837158203125E-007, 9.5367431640625E-007,
504
    1.9073486328125E-006, 3.814697265625E-006, 7.62939453125E-006,
505
    1.52587890625E-005, 3.0517578125E-005, 6.103515625E-005,
506
    0.0001220703125, 0.000244140625, 0.00048828125,
507
    0.0009765625, 0.001953125, 0.00390625,
508
    0.0078125, 0.015625, 0.03125,
509
    0.0625, 0.125, 0.25,
510
    0.5, 1.0, 2.0,
511
    4.0, 8.0, 16.0, 32.0,
512
    64.0, 128.0, 256.0,
513
    512.0, 1024.0, 2048.0,
514
    4096.0, 8192.0, 16384.0,
515
    32768.0, 65536.0, 131072.0,
516
    262144.0, 524288.0, 1048576.0,
517
    2097152.0, 4194304.0, 8388608.0,
518
    16777216.0, 33554432.0, 67108864.0,
519
    134217728.0, 268435456.0, 536870912.0,
520
    1073741824.0, 2147483648.0, 4294967296.0,
521
    8589934592.0, 17179869184.0, 34359738368.0,
522
    68719476736.0, 137438953472.0, 274877906944.0
523
};
524
#endif
525
526
/* quant_to_spec: perform dequantisation and scaling
527
 * and in case of short block it also does the deinterleaving
528
 */
529
/*
530
  For ONLY_LONG_SEQUENCE windows (num_window_groups = 1,
531
  window_group_length[0] = 1) the spectral data is in ascending spectral
532
  order.
533
  For the EIGHT_SHORT_SEQUENCE window, the spectral order depends on the
534
  grouping in the following manner:
535
  - Groups are ordered sequentially
536
  - Within a group, a scalefactor band consists of the spectral data of all
537
    grouped SHORT_WINDOWs for the associated scalefactor window band. To
538
    clarify via example, the length of a group is in the range of one to eight
539
    SHORT_WINDOWs.
540
  - If there are eight groups each with length one (num_window_groups = 8,
541
    window_group_length[0..7] = 1), the result is a sequence of eight spectra,
542
    each in ascending spectral order.
543
  - If there is only one group with length eight (num_window_groups = 1,
544
    window_group_length[0] = 8), the result is that spectral data of all eight
545
    SHORT_WINDOWs is interleaved by scalefactor window bands.
546
  - Within a scalefactor window band, the coefficients are in ascending
547
    spectral order.
548
*/
549
static uint8_t quant_to_spec(NeAACDecStruct *hDecoder,
550
                             ic_stream *ics, int16_t *quant_data,
551
                             real_t *spec_data, uint16_t frame_len)
552
248k
{
553
248k
    ALIGN static const real_t pow2_table[] =
554
248k
    {
555
248k
        COEF_CONST(1.0),
556
248k
        COEF_CONST(1.1892071150027210667174999705605), /* 2^0.25 */
557
248k
        COEF_CONST(1.4142135623730950488016887242097), /* 2^0.5 */
558
248k
        COEF_CONST(1.6817928305074290860622509524664) /* 2^0.75 */
559
248k
    };
560
248k
    const real_t *tab = iq_table;
561
562
248k
    uint8_t g, sfb, win;
563
248k
    uint16_t width, bin, k, gindex;
564
248k
    uint8_t error = 0; /* Init error flag */
565
248k
#ifndef FIXED_POINT
566
248k
    real_t scf;
567
#else
568
    int32_t sat_shift_mask = 0;
569
#endif
570
571
248k
    k = 0;
572
248k
    gindex = 0;
573
574
    /* In this case quant_to_spec is no-op and spec_data remains undefined.
575
     * Without peeking into AAC specification, there is no strong evidence if
576
     * such streams are invalid -> just calm down MSAN. */
577
248k
    if (ics->num_swb == 0)
578
837
        memset(spec_data, 0, frame_len * sizeof(real_t));
579
580
634k
    for (g = 0; g < ics->num_window_groups; g++)
581
386k
    {
582
386k
        uint16_t j = 0;
583
386k
        uint16_t gincrease = 0;
584
386k
        uint16_t win_inc = ics->swb_offset[ics->num_swb];
585
586
12.0M
        for (sfb = 0; sfb < ics->num_swb; sfb++)
587
11.6M
        {
588
11.6M
            int32_t exp, frac;
589
11.6M
            uint16_t wa = gindex + j;
590
11.6M
            int16_t scale_factor = ics->scale_factors[g][sfb];
591
592
11.6M
            width = ics->swb_offset[sfb+1] - ics->swb_offset[sfb];
593
594
#ifdef FIXED_POINT
595
            scale_factor -= 100;
596
            /* IMDCT pre-scaling */
597
            if (hDecoder->object_type == LD)
598
            {
599
                scale_factor -= 24 /*9*/;
600
            } else {
601
                if (ics->window_sequence == EIGHT_SHORT_SEQUENCE)
602
                    scale_factor -= 16 /*7*/;
603
                else
604
                    scale_factor -= 28 /*10*/;
605
            }
606
            if (scale_factor > 120)
607
                scale_factor = 120;  /* => exp <= 30 */
608
#else
609
11.6M
            (void)hDecoder;
610
11.6M
#endif
611
612
            /* scale_factor for IS or PNS, has different meaning; fill with almost zeroes */
613
11.6M
            if (is_intensity(ics, g, sfb) || is_noise(ics, g, sfb))
614
23.3k
            {
615
23.3k
                scale_factor = 0;
616
23.3k
            }
617
618
            /* scale_factor must be between 0 and 255 */
619
11.6M
            exp = (scale_factor /* - 100 */) >> 2;
620
            /* frac must always be > 0 */
621
11.6M
            frac = (scale_factor /* - 100 */) & 3;
622
623
11.6M
#ifndef FIXED_POINT
624
11.6M
            scf = pow2sf_tab[exp/*+25*/] * pow2_table[frac];
625
#else
626
            if (exp > 0)
627
                sat_shift_mask = SAT_SHIFT_MASK(exp);
628
#endif
629
630
23.8M
            for (win = 0; win < ics->window_group_length[g]; win++)
631
12.1M
            {
632
74.6M
                for (bin = 0; bin < width; bin += 4)
633
62.4M
                {
634
62.4M
                    uint16_t wb = wa + bin;
635
62.4M
#ifndef FIXED_POINT
636
62.4M
                    spec_data[wb+0] = iquant(quant_data[k+0], tab, &error) * scf;
637
62.4M
                    spec_data[wb+1] = iquant(quant_data[k+1], tab, &error) * scf;
638
62.4M
                    spec_data[wb+2] = iquant(quant_data[k+2], tab, &error) * scf;
639
62.4M
                    spec_data[wb+3] = iquant(quant_data[k+3], tab, &error) * scf;
640
#else
641
                    real_t iq0 = iquant(quant_data[k+0], tab, &error);
642
                    real_t iq1 = iquant(quant_data[k+1], tab, &error);
643
                    real_t iq2 = iquant(quant_data[k+2], tab, &error);
644
                    real_t iq3 = iquant(quant_data[k+3], tab, &error);
645
646
                    if (exp == -32)
647
                    {
648
                        spec_data[wb+0] = 0;
649
                        spec_data[wb+1] = 0;
650
                        spec_data[wb+2] = 0;
651
                        spec_data[wb+3] = 0;
652
                    } else if (exp <= 0) {
653
                        spec_data[wb+0] = iq0 >> -exp;
654
                        spec_data[wb+1] = iq1 >> -exp;
655
                        spec_data[wb+2] = iq2 >> -exp;
656
                        spec_data[wb+3] = iq3 >> -exp;
657
                    } else { /* exp > 0 */
658
                        spec_data[wb+0] = SAT_SHIFT(iq0, exp, sat_shift_mask);
659
                        spec_data[wb+1] = SAT_SHIFT(iq1, exp, sat_shift_mask);
660
                        spec_data[wb+2] = SAT_SHIFT(iq2, exp, sat_shift_mask);
661
                        spec_data[wb+3] = SAT_SHIFT(iq3, exp, sat_shift_mask);
662
                    }
663
                    if (frac != 0)
664
                    {
665
                        spec_data[wb+0] = MUL_C(spec_data[wb+0],pow2_table[frac]);
666
                        spec_data[wb+1] = MUL_C(spec_data[wb+1],pow2_table[frac]);
667
                        spec_data[wb+2] = MUL_C(spec_data[wb+2],pow2_table[frac]);
668
                        spec_data[wb+3] = MUL_C(spec_data[wb+3],pow2_table[frac]);
669
                    }
670
671
//#define SCFS_PRINT
672
#ifdef SCFS_PRINT
673
                    printf("%d\n", spec_data[gindex+(win*win_inc)+j+bin+0]);
674
                    printf("%d\n", spec_data[gindex+(win*win_inc)+j+bin+1]);
675
                    printf("%d\n", spec_data[gindex+(win*win_inc)+j+bin+2]);
676
                    printf("%d\n", spec_data[gindex+(win*win_inc)+j+bin+3]);
677
                    //printf("0x%.8X\n", spec_data[gindex+(win*win_inc)+j+bin+0]);
678
                    //printf("0x%.8X\n", spec_data[gindex+(win*win_inc)+j+bin+1]);
679
                    //printf("0x%.8X\n", spec_data[gindex+(win*win_inc)+j+bin+2]);
680
                    //printf("0x%.8X\n", spec_data[gindex+(win*win_inc)+j+bin+3]);
681
#endif
682
#endif
683
684
62.4M
                    gincrease += 4;
685
62.4M
                    k += 4;
686
62.4M
                }
687
12.1M
                wa += win_inc;
688
12.1M
            }
689
11.6M
            j += width;
690
11.6M
        }
691
386k
        gindex += gincrease;
692
386k
    }
693
694
248k
    return error;
695
248k
}
696
697
static uint8_t allocate_single_channel(NeAACDecStruct *hDecoder, uint8_t channel,
698
                                       uint8_t output_channels)
699
177k
{
700
177k
    int mul = 1;
701
702
177k
#ifdef MAIN_DEC
703
    /* MAIN object type prediction */
704
177k
    if (hDecoder->object_type == MAIN)
705
76.3k
    {
706
        /* allocate the state only when needed */
707
76.3k
        if (hDecoder->pred_stat[channel] != NULL)
708
1.69k
        {
709
1.69k
            faad_free(hDecoder->pred_stat[channel]);
710
1.69k
            hDecoder->pred_stat[channel] = NULL;
711
1.69k
        }
712
713
76.3k
        hDecoder->pred_stat[channel] = (pred_state*)faad_malloc(hDecoder->frameLength * sizeof(pred_state));
714
76.3k
        reset_all_predictors(hDecoder->pred_stat[channel], hDecoder->frameLength);
715
76.3k
    }
716
177k
#endif
717
718
177k
#ifdef LTP_DEC
719
177k
    if (is_ltp_ot(hDecoder->object_type))
720
50.1k
    {
721
        /* allocate the state only when needed */
722
50.1k
        if (hDecoder->lt_pred_stat[channel] != NULL)
723
869
        {
724
869
            faad_free(hDecoder->lt_pred_stat[channel]);
725
869
            hDecoder->lt_pred_stat[channel] = NULL;
726
869
        }
727
728
50.1k
        hDecoder->lt_pred_stat[channel] = (int16_t*)faad_malloc(hDecoder->frameLength*4 * sizeof(int16_t));
729
50.1k
        memset(hDecoder->lt_pred_stat[channel], 0, hDecoder->frameLength*4 * sizeof(int16_t));
730
50.1k
    }
731
177k
#endif
732
733
177k
    if (hDecoder->time_out[channel] != NULL)
734
3.99k
    {
735
3.99k
        faad_free(hDecoder->time_out[channel]);
736
3.99k
        hDecoder->time_out[channel] = NULL;
737
3.99k
    }
738
739
177k
    {
740
177k
        mul = 1;
741
177k
#ifdef SBR_DEC
742
177k
        hDecoder->sbr_alloced[hDecoder->fr_ch_ele] = 0;
743
177k
        if ((hDecoder->sbr_present_flag == 1) || (hDecoder->forceUpSampling == 1))
744
132k
        {
745
            /* SBR requires 2 times as much output data */
746
132k
            mul = 2;
747
132k
            hDecoder->sbr_alloced[hDecoder->fr_ch_ele] = 1;
748
132k
        }
749
177k
#endif
750
177k
        hDecoder->time_out[channel] = (real_t*)faad_malloc(mul*hDecoder->frameLength*sizeof(real_t));
751
177k
        memset(hDecoder->time_out[channel], 0, mul*hDecoder->frameLength*sizeof(real_t));
752
177k
    }
753
754
177k
#if (defined(PS_DEC) || defined(DRM_PS))
755
177k
    if (output_channels == 2)
756
4.06k
    {
757
4.06k
        if (hDecoder->time_out[channel+1] != NULL)
758
1.16k
        {
759
1.16k
            faad_free(hDecoder->time_out[channel+1]);
760
1.16k
            hDecoder->time_out[channel+1] = NULL;
761
1.16k
        }
762
763
4.06k
        hDecoder->time_out[channel+1] = (real_t*)faad_malloc(mul*hDecoder->frameLength*sizeof(real_t));
764
4.06k
        memset(hDecoder->time_out[channel+1], 0, mul*hDecoder->frameLength*sizeof(real_t));
765
4.06k
    }
766
177k
#endif
767
768
177k
    if (hDecoder->fb_intermed[channel] != NULL)
769
3.41k
    {
770
3.41k
        faad_free(hDecoder->fb_intermed[channel]);
771
3.41k
        hDecoder->fb_intermed[channel] = NULL;
772
3.41k
    }
773
774
177k
    hDecoder->fb_intermed[channel] = (real_t*)faad_malloc(hDecoder->frameLength*sizeof(real_t));
775
177k
    memset(hDecoder->fb_intermed[channel], 0, hDecoder->frameLength*sizeof(real_t));
776
777
#ifdef SSR_DEC
778
    if (hDecoder->object_type == SSR)
779
    {
780
        if (hDecoder->ssr_overlap[channel] == NULL)
781
        {
782
            hDecoder->ssr_overlap[channel] = (real_t*)faad_malloc(2*hDecoder->frameLength*sizeof(real_t));
783
            memset(hDecoder->ssr_overlap[channel], 0, 2*hDecoder->frameLength*sizeof(real_t));
784
        }
785
        if (hDecoder->prev_fmd[channel] == NULL)
786
        {
787
            uint16_t k;
788
            hDecoder->prev_fmd[channel] = (real_t*)faad_malloc(2*hDecoder->frameLength*sizeof(real_t));
789
            for (k = 0; k < 2*hDecoder->frameLength; k++)
790
                hDecoder->prev_fmd[channel][k] = REAL_CONST(-1);
791
        }
792
    }
793
#endif
794
795
177k
    return 0;
796
177k
}
797
798
static uint8_t allocate_channel_pair(NeAACDecStruct *hDecoder,
799
                                     uint8_t channel, uint8_t paired_channel)
800
20.2k
{
801
20.2k
    int mul = 1;
802
803
20.2k
#ifdef MAIN_DEC
804
    /* MAIN object type prediction */
805
20.2k
    if (hDecoder->object_type == MAIN)
806
9.92k
    {
807
        /* allocate the state only when needed */
808
9.92k
        if (hDecoder->pred_stat[channel] == NULL)
809
9.88k
        {
810
9.88k
            hDecoder->pred_stat[channel] = (pred_state*)faad_malloc(hDecoder->frameLength * sizeof(pred_state));
811
9.88k
            reset_all_predictors(hDecoder->pred_stat[channel], hDecoder->frameLength);
812
9.88k
        }
813
9.92k
        if (hDecoder->pred_stat[paired_channel] == NULL)
814
9.88k
        {
815
9.88k
            hDecoder->pred_stat[paired_channel] = (pred_state*)faad_malloc(hDecoder->frameLength * sizeof(pred_state));
816
9.88k
            reset_all_predictors(hDecoder->pred_stat[paired_channel], hDecoder->frameLength);
817
9.88k
        }
818
9.92k
    }
819
20.2k
#endif
820
821
20.2k
#ifdef LTP_DEC
822
20.2k
    if (is_ltp_ot(hDecoder->object_type))
823
8.11k
    {
824
        /* allocate the state only when needed */
825
8.11k
        if (hDecoder->lt_pred_stat[channel] == NULL)
826
8.05k
        {
827
8.05k
            hDecoder->lt_pred_stat[channel] = (int16_t*)faad_malloc(hDecoder->frameLength*4 * sizeof(int16_t));
828
8.05k
            memset(hDecoder->lt_pred_stat[channel], 0, hDecoder->frameLength*4 * sizeof(int16_t));
829
8.05k
        }
830
8.11k
        if (hDecoder->lt_pred_stat[paired_channel] == NULL)
831
8.05k
        {
832
8.05k
            hDecoder->lt_pred_stat[paired_channel] = (int16_t*)faad_malloc(hDecoder->frameLength*4 * sizeof(int16_t));
833
8.05k
            memset(hDecoder->lt_pred_stat[paired_channel], 0, hDecoder->frameLength*4 * sizeof(int16_t));
834
8.05k
        }
835
8.11k
    }
836
20.2k
#endif
837
838
20.2k
    {
839
20.2k
        mul = 1;
840
20.2k
#ifdef SBR_DEC
841
20.2k
        hDecoder->sbr_alloced[hDecoder->fr_ch_ele] = 0;
842
20.2k
        if ((hDecoder->sbr_present_flag == 1) || (hDecoder->forceUpSampling == 1))
843
15.2k
        {
844
            /* SBR requires 2 times as much output data */
845
15.2k
            mul = 2;
846
15.2k
            hDecoder->sbr_alloced[hDecoder->fr_ch_ele] = 1;
847
15.2k
        }
848
20.2k
#endif
849
20.2k
    }
850
20.2k
    if (hDecoder->time_out[channel] != NULL)
851
111
    {
852
111
        faad_free(hDecoder->time_out[channel]);
853
111
        hDecoder->time_out[channel] = NULL;
854
111
    }
855
20.2k
    if (hDecoder->time_out[paired_channel] != NULL)
856
108
    {
857
108
        faad_free(hDecoder->time_out[paired_channel]);
858
108
        hDecoder->time_out[paired_channel] = NULL;
859
108
    }
860
20.2k
    hDecoder->time_out[channel] = (real_t*)faad_malloc(mul*hDecoder->frameLength*sizeof(real_t));
861
20.2k
    memset(hDecoder->time_out[channel], 0, mul*hDecoder->frameLength*sizeof(real_t));
862
20.2k
    hDecoder->time_out[paired_channel] = (real_t*)faad_malloc(mul*hDecoder->frameLength*sizeof(real_t));
863
20.2k
    memset(hDecoder->time_out[paired_channel], 0, mul*hDecoder->frameLength*sizeof(real_t));
864
865
20.2k
    if (hDecoder->fb_intermed[channel] != NULL)
866
111
    {
867
111
        faad_free(hDecoder->fb_intermed[channel]);
868
111
        hDecoder->fb_intermed[channel] = NULL;
869
111
    }
870
20.2k
    if (hDecoder->fb_intermed[paired_channel] != NULL)
871
107
    {
872
107
        faad_free(hDecoder->fb_intermed[paired_channel]);
873
107
        hDecoder->fb_intermed[paired_channel] = NULL;
874
107
    }
875
20.2k
    hDecoder->fb_intermed[channel] = (real_t*)faad_malloc(hDecoder->frameLength*sizeof(real_t));
876
20.2k
    memset(hDecoder->fb_intermed[channel], 0, hDecoder->frameLength*sizeof(real_t));
877
20.2k
    hDecoder->fb_intermed[paired_channel] = (real_t*)faad_malloc(hDecoder->frameLength*sizeof(real_t));
878
20.2k
    memset(hDecoder->fb_intermed[paired_channel], 0, hDecoder->frameLength*sizeof(real_t));
879
880
#ifdef SSR_DEC
881
    if (hDecoder->object_type == SSR)
882
    {
883
        if (hDecoder->ssr_overlap[cpe->channel] == NULL)
884
        {
885
            hDecoder->ssr_overlap[cpe->channel] = (real_t*)faad_malloc(2*hDecoder->frameLength*sizeof(real_t));
886
            memset(hDecoder->ssr_overlap[cpe->channel], 0, 2*hDecoder->frameLength*sizeof(real_t));
887
        }
888
        if (hDecoder->ssr_overlap[cpe->paired_channel] == NULL)
889
        {
890
            hDecoder->ssr_overlap[cpe->paired_channel] = (real_t*)faad_malloc(2*hDecoder->frameLength*sizeof(real_t));
891
            memset(hDecoder->ssr_overlap[cpe->paired_channel], 0, 2*hDecoder->frameLength*sizeof(real_t));
892
        }
893
        if (hDecoder->prev_fmd[cpe->channel] == NULL)
894
        {
895
            uint16_t k;
896
            hDecoder->prev_fmd[cpe->channel] = (real_t*)faad_malloc(2*hDecoder->frameLength*sizeof(real_t));
897
            for (k = 0; k < 2*hDecoder->frameLength; k++)
898
                hDecoder->prev_fmd[cpe->channel][k] = REAL_CONST(-1);
899
        }
900
        if (hDecoder->prev_fmd[cpe->paired_channel] == NULL)
901
        {
902
            uint16_t k;
903
            hDecoder->prev_fmd[cpe->paired_channel] = (real_t*)faad_malloc(2*hDecoder->frameLength*sizeof(real_t));
904
            for (k = 0; k < 2*hDecoder->frameLength; k++)
905
                hDecoder->prev_fmd[cpe->paired_channel][k] = REAL_CONST(-1);
906
        }
907
    }
908
#endif
909
910
20.2k
    return 0;
911
20.2k
}
912
913
uint8_t reconstruct_single_channel(NeAACDecStruct *hDecoder, ic_stream *ics,
914
                                   element *sce, int16_t *spec_data)
915
200k
{
916
200k
    uint8_t retval;
917
200k
    uint8_t output_channels;
918
200k
    ALIGN real_t spec_coef[1024];
919
920
#ifdef PROFILE
921
    int64_t count = faad_get_ts();
922
#endif
923
924
925
    /* always allocate 2 channels, PS can always "suddenly" turn up */
926
#if ( (defined(DRM) && defined(DRM_PS)) )
927
    output_channels = 2;
928
#elif defined(PS_DEC)
929
200k
    if (hDecoder->ps_used[hDecoder->fr_ch_ele])
930
5.60k
        output_channels = 2;
931
194k
    else
932
194k
        output_channels = 1;
933
#else
934
    output_channels = 1;
935
#endif
936
937
200k
    if (hDecoder->element_output_channels[hDecoder->fr_ch_ele] == 0)
938
173k
    {
939
        /* element_output_channels not set yet */
940
173k
        hDecoder->element_output_channels[hDecoder->fr_ch_ele] = output_channels;
941
173k
    } else if (hDecoder->element_output_channels[hDecoder->fr_ch_ele] != output_channels) {
942
        /* element inconsistency */
943
944
        /* this only happens if PS is actually found but not in the first frame
945
         * this means that there is only 1 bitstream element!
946
         */
947
948
        /* The simplest way to fix the accounting,
949
         * is to reallocate this and all the following channels.
950
         */
951
572
        memset(&hDecoder->element_alloced[hDecoder->fr_ch_ele], 0,
952
572
            sizeof(uint8_t) * (MAX_SYNTAX_ELEMENTS - hDecoder->fr_ch_ele));
953
954
572
        hDecoder->element_output_channels[hDecoder->fr_ch_ele] = output_channels;
955
956
        //return 21;
957
572
    }
958
959
200k
    if (hDecoder->element_alloced[hDecoder->fr_ch_ele] == 0)
960
177k
    {
961
177k
        retval = allocate_single_channel(hDecoder, sce->channel, output_channels);
962
177k
        if (retval > 0)
963
0
            return retval;
964
965
177k
        hDecoder->element_alloced[hDecoder->fr_ch_ele] = 1;
966
177k
    }
967
968
    /* sanity check, CVE-2018-20199, CVE-2018-20360 */
969
200k
    if(!hDecoder->time_out[sce->channel])
970
0
        return 15;
971
200k
    if(output_channels > 1 && !hDecoder->time_out[sce->channel+1])
972
0
        return 15;
973
200k
    if(!hDecoder->fb_intermed[sce->channel])
974
0
        return 15;
975
976
    /* dequantisation and scaling */
977
200k
    retval = quant_to_spec(hDecoder, ics, spec_data, spec_coef, hDecoder->frameLength);
978
200k
    if (retval > 0)
979
63
        return retval;
980
981
#ifdef PROFILE
982
    count = faad_get_ts() - count;
983
    hDecoder->requant_cycles += count;
984
#endif
985
986
987
    /* pns decoding */
988
200k
    pns_decode(ics, NULL, spec_coef, NULL, hDecoder->frameLength, 0, hDecoder->object_type,
989
200k
        &(hDecoder->__r1), &(hDecoder->__r2));
990
991
200k
#ifdef MAIN_DEC
992
    /* MAIN object type prediction */
993
200k
    if (hDecoder->object_type == MAIN)
994
86.0k
    {
995
86.0k
    if (!hDecoder->pred_stat[sce->channel])
996
0
      return 33;
997
998
        /* intra channel prediction */
999
86.0k
        ic_prediction(ics, spec_coef, hDecoder->pred_stat[sce->channel], hDecoder->frameLength,
1000
86.0k
            hDecoder->sf_index);
1001
1002
        /* In addition, for scalefactor bands coded by perceptual
1003
           noise substitution the predictors belonging to the
1004
           corresponding spectral coefficients are reset.
1005
        */
1006
86.0k
        pns_reset_pred_state(ics, hDecoder->pred_stat[sce->channel]);
1007
86.0k
    }
1008
200k
#endif
1009
1010
200k
#ifdef LTP_DEC
1011
200k
    if (is_ltp_ot(hDecoder->object_type))
1012
53.4k
    {
1013
53.4k
#ifdef LD_DEC
1014
53.4k
        if (hDecoder->object_type == LD)
1015
718
        {
1016
718
            if (ics->ltp.data_present)
1017
84
            {
1018
84
                if (ics->ltp.lag_update)
1019
18
                    hDecoder->ltp_lag[sce->channel] = ics->ltp.lag;
1020
84
            }
1021
718
            ics->ltp.lag = hDecoder->ltp_lag[sce->channel];
1022
718
        }
1023
53.4k
#endif
1024
1025
        /* long term prediction */
1026
53.4k
        lt_prediction(ics, &(ics->ltp), spec_coef, hDecoder->lt_pred_stat[sce->channel], hDecoder->fb,
1027
53.4k
            ics->window_shape, hDecoder->window_shape_prev[sce->channel],
1028
53.4k
            hDecoder->sf_index, hDecoder->object_type, hDecoder->frameLength);
1029
53.4k
    }
1030
200k
#endif
1031
1032
    /* tns decoding */
1033
200k
    tns_decode_frame(ics, &(ics->tns), hDecoder->sf_index, hDecoder->object_type,
1034
200k
        spec_coef, hDecoder->frameLength);
1035
1036
    /* drc decoding */
1037
200k
#ifdef APPLY_DRC
1038
200k
    if (hDecoder->drc->present)
1039
12.9k
    {
1040
12.9k
        if (!hDecoder->drc->exclude_mask[sce->channel] || !hDecoder->drc->excluded_chns_present)
1041
11.8k
            drc_decode(hDecoder->drc, spec_coef);
1042
12.9k
    }
1043
200k
#endif
1044
    /* filter bank */
1045
#ifdef SSR_DEC
1046
    if (hDecoder->object_type != SSR)
1047
    {
1048
#endif
1049
200k
        ifilter_bank(hDecoder->fb, ics->window_sequence, ics->window_shape,
1050
200k
            hDecoder->window_shape_prev[sce->channel], spec_coef,
1051
200k
            hDecoder->time_out[sce->channel], hDecoder->fb_intermed[sce->channel],
1052
200k
            hDecoder->object_type, hDecoder->frameLength);
1053
#ifdef SSR_DEC
1054
    } else {
1055
        ssr_decode(&(ics->ssr), hDecoder->fb, ics->window_sequence, ics->window_shape,
1056
            hDecoder->window_shape_prev[sce->channel], spec_coef, hDecoder->time_out[sce->channel],
1057
            hDecoder->ssr_overlap[sce->channel], hDecoder->ipqf_buffer[sce->channel], hDecoder->prev_fmd[sce->channel],
1058
            hDecoder->frameLength);
1059
    }
1060
#endif
1061
1062
    /* save window shape for next frame */
1063
200k
    hDecoder->window_shape_prev[sce->channel] = ics->window_shape;
1064
1065
200k
#ifdef LTP_DEC
1066
200k
    if (is_ltp_ot(hDecoder->object_type))
1067
53.4k
    {
1068
53.4k
        lt_update_state(hDecoder->lt_pred_stat[sce->channel], hDecoder->time_out[sce->channel],
1069
53.4k
            hDecoder->fb_intermed[sce->channel], hDecoder->frameLength, hDecoder->object_type);
1070
53.4k
    }
1071
200k
#endif
1072
1073
200k
#ifdef SBR_DEC
1074
200k
    if (((hDecoder->sbr_present_flag == 1) || (hDecoder->forceUpSampling == 1))
1075
151k
        && hDecoder->sbr_alloced[hDecoder->fr_ch_ele])
1076
151k
    {
1077
151k
        int ele = hDecoder->fr_ch_ele;
1078
151k
        int ch = sce->channel;
1079
1080
        /* following case can happen when forceUpSampling == 1 */
1081
151k
        if (hDecoder->sbr[ele] == NULL)
1082
114k
        {
1083
114k
            hDecoder->sbr[ele] = sbrDecodeInit(hDecoder->frameLength,
1084
114k
                hDecoder->element_id[ele], 2*get_sample_rate(hDecoder->sf_index),
1085
114k
                hDecoder->downSampledSBR
1086
#ifdef DRM
1087
                , 0
1088
#endif
1089
114k
                );
1090
114k
        }
1091
151k
        if (!hDecoder->sbr[ele])
1092
40
            return 19;
1093
1094
151k
        if (sce->ics1.window_sequence == EIGHT_SHORT_SEQUENCE)
1095
18.0k
            hDecoder->sbr[ele]->maxAACLine = 8*min(sce->ics1.swb_offset[max(sce->ics1.max_sfb-1, 0)], sce->ics1.swb_offset_max);
1096
133k
        else
1097
133k
            hDecoder->sbr[ele]->maxAACLine = min(sce->ics1.swb_offset[max(sce->ics1.max_sfb-1, 0)], sce->ics1.swb_offset_max);
1098
1099
        /* check if any of the PS tools is used */
1100
151k
#if (defined(PS_DEC) || defined(DRM_PS))
1101
151k
        if (hDecoder->ps_used[ele] == 0)
1102
145k
        {
1103
145k
#endif
1104
145k
            retval = sbrDecodeSingleFrame(hDecoder->sbr[ele], hDecoder->time_out[ch],
1105
145k
                hDecoder->postSeekResetFlag, hDecoder->downSampledSBR);
1106
145k
#if (defined(PS_DEC) || defined(DRM_PS))
1107
145k
        } else {
1108
5.60k
            retval = sbrDecodeSingleFramePS(hDecoder->sbr[ele], hDecoder->time_out[ch],
1109
5.60k
                hDecoder->time_out[ch+1], hDecoder->postSeekResetFlag,
1110
5.60k
                hDecoder->downSampledSBR);
1111
5.60k
        }
1112
151k
#endif
1113
151k
        if (retval > 0)
1114
50
            return retval;
1115
151k
    } else if (((hDecoder->sbr_present_flag == 1) || (hDecoder->forceUpSampling == 1))
1116
3
        && !hDecoder->sbr_alloced[hDecoder->fr_ch_ele])
1117
3
    {
1118
3
        return 23;
1119
3
    }
1120
200k
#endif
1121
1122
    /* copy L to R when no PS is used */
1123
200k
#if (defined(PS_DEC) || defined(DRM_PS))
1124
200k
    if ((hDecoder->ps_used[hDecoder->fr_ch_ele] == 0) &&
1125
194k
        (hDecoder->element_output_channels[hDecoder->fr_ch_ele] == 2))
1126
0
    {
1127
0
        int ele = hDecoder->fr_ch_ele;
1128
0
        int ch = sce->channel;
1129
0
        int frame_size = (hDecoder->sbr_alloced[ele]) ? 2 : 1;
1130
0
        frame_size *= hDecoder->frameLength*sizeof(real_t);
1131
1132
0
        memcpy(hDecoder->time_out[ch+1], hDecoder->time_out[ch], frame_size);
1133
0
    }
1134
200k
#endif
1135
1136
200k
    return 0;
1137
200k
}
1138
1139
uint8_t reconstruct_channel_pair(NeAACDecStruct *hDecoder, ic_stream *ics1, ic_stream *ics2,
1140
                                 element *cpe, int16_t *spec_data1, int16_t *spec_data2)
1141
23.9k
{
1142
23.9k
    uint8_t retval;
1143
23.9k
    ALIGN real_t spec_coef1[1024];
1144
23.9k
    ALIGN real_t spec_coef2[1024];
1145
1146
#ifdef PROFILE
1147
    int64_t count = faad_get_ts();
1148
#endif
1149
23.9k
    if (hDecoder->element_alloced[hDecoder->fr_ch_ele] != 2)
1150
20.2k
    {
1151
20.2k
        retval = allocate_channel_pair(hDecoder, cpe->channel, (uint8_t)cpe->paired_channel);
1152
20.2k
        if (retval > 0)
1153
0
            return retval;
1154
1155
20.2k
        hDecoder->element_alloced[hDecoder->fr_ch_ele] = 2;
1156
20.2k
    }
1157
1158
    /* sanity check, CVE-2018-20199, CVE-2018-20360 */
1159
23.9k
    if(!hDecoder->time_out[cpe->channel] || !hDecoder->time_out[cpe->paired_channel])
1160
0
        return 15;
1161
23.9k
    if(!hDecoder->fb_intermed[cpe->channel] || !hDecoder->fb_intermed[cpe->paired_channel])
1162
0
        return 15;
1163
1164
    /* dequantisation and scaling */
1165
23.9k
    retval = quant_to_spec(hDecoder, ics1, spec_data1, spec_coef1, hDecoder->frameLength);
1166
23.9k
    if (retval > 0)
1167
58
        return retval;
1168
23.9k
    retval = quant_to_spec(hDecoder, ics2, spec_data2, spec_coef2, hDecoder->frameLength);
1169
23.9k
    if (retval > 0)
1170
3
        return retval;
1171
1172
#ifdef PROFILE
1173
    count = faad_get_ts() - count;
1174
    hDecoder->requant_cycles += count;
1175
#endif
1176
1177
    /* pns decoding */
1178
23.9k
    if (ics1->ms_mask_present)
1179
7.10k
    {
1180
7.10k
        pns_decode(ics1, ics2, spec_coef1, spec_coef2, hDecoder->frameLength, 1, hDecoder->object_type,
1181
7.10k
            &(hDecoder->__r1), &(hDecoder->__r2));
1182
16.8k
    } else {
1183
16.8k
        pns_decode(ics1, ics2, spec_coef1, spec_coef2, hDecoder->frameLength, 0, hDecoder->object_type,
1184
16.8k
            &(hDecoder->__r1), &(hDecoder->__r2));
1185
16.8k
    }
1186
1187
    /* mid/side decoding */
1188
23.9k
    ms_decode(ics1, ics2, spec_coef1, spec_coef2, hDecoder->frameLength);
1189
1190
#if 0
1191
    {
1192
        int i;
1193
        for (i = 0; i < 1024; i++)
1194
        {
1195
            //printf("%d\n", spec_coef1[i]);
1196
            printf("0x%.8X\n", spec_coef1[i]);
1197
        }
1198
        for (i = 0; i < 1024; i++)
1199
        {
1200
            //printf("%d\n", spec_coef2[i]);
1201
            printf("0x%.8X\n", spec_coef2[i]);
1202
        }
1203
    }
1204
#endif
1205
1206
    /* intensity stereo decoding */
1207
23.9k
    is_decode(ics1, ics2, spec_coef1, spec_coef2, hDecoder->frameLength);
1208
1209
#if 0
1210
    {
1211
        int i;
1212
        for (i = 0; i < 1024; i++)
1213
        {
1214
            printf("%d\n", spec_coef1[i]);
1215
            //printf("0x%.8X\n", spec_coef1[i]);
1216
        }
1217
        for (i = 0; i < 1024; i++)
1218
        {
1219
            printf("%d\n", spec_coef2[i]);
1220
            //printf("0x%.8X\n", spec_coef2[i]);
1221
        }
1222
    }
1223
#endif
1224
1225
23.9k
#ifdef MAIN_DEC
1226
    /* MAIN object type prediction */
1227
23.9k
    if (hDecoder->object_type == MAIN)
1228
11.4k
    {
1229
        /* intra channel prediction */
1230
11.4k
        ic_prediction(ics1, spec_coef1, hDecoder->pred_stat[cpe->channel], hDecoder->frameLength,
1231
11.4k
            hDecoder->sf_index);
1232
11.4k
        ic_prediction(ics2, spec_coef2, hDecoder->pred_stat[cpe->paired_channel], hDecoder->frameLength,
1233
11.4k
            hDecoder->sf_index);
1234
1235
        /* In addition, for scalefactor bands coded by perceptual
1236
           noise substitution the predictors belonging to the
1237
           corresponding spectral coefficients are reset.
1238
        */
1239
11.4k
        pns_reset_pred_state(ics1, hDecoder->pred_stat[cpe->channel]);
1240
11.4k
        pns_reset_pred_state(ics2, hDecoder->pred_stat[cpe->paired_channel]);
1241
11.4k
    }
1242
23.9k
#endif
1243
1244
23.9k
#ifdef LTP_DEC
1245
23.9k
    if (is_ltp_ot(hDecoder->object_type))
1246
9.71k
    {
1247
9.71k
        ltp_info *ltp1 = &(ics1->ltp);
1248
9.71k
        ltp_info *ltp2 = (cpe->common_window) ? &(ics2->ltp2) : &(ics2->ltp);
1249
9.71k
#ifdef LD_DEC
1250
9.71k
        if (hDecoder->object_type == LD)
1251
1.04k
        {
1252
1.04k
            if (ltp1->data_present)
1253
159
            {
1254
159
                if (ltp1->lag_update)
1255
66
                    hDecoder->ltp_lag[cpe->channel] = ltp1->lag;
1256
159
            }
1257
1.04k
            ltp1->lag = hDecoder->ltp_lag[cpe->channel];
1258
1.04k
            if (ltp2->data_present)
1259
75
            {
1260
75
                if (ltp2->lag_update)
1261
27
                    hDecoder->ltp_lag[cpe->paired_channel] = ltp2->lag;
1262
75
            }
1263
1.04k
            ltp2->lag = hDecoder->ltp_lag[cpe->paired_channel];
1264
1.04k
        }
1265
9.71k
#endif
1266
1267
        /* long term prediction */
1268
9.71k
        lt_prediction(ics1, ltp1, spec_coef1, hDecoder->lt_pred_stat[cpe->channel], hDecoder->fb,
1269
9.71k
            ics1->window_shape, hDecoder->window_shape_prev[cpe->channel],
1270
9.71k
            hDecoder->sf_index, hDecoder->object_type, hDecoder->frameLength);
1271
9.71k
        lt_prediction(ics2, ltp2, spec_coef2, hDecoder->lt_pred_stat[cpe->paired_channel], hDecoder->fb,
1272
9.71k
            ics2->window_shape, hDecoder->window_shape_prev[cpe->paired_channel],
1273
9.71k
            hDecoder->sf_index, hDecoder->object_type, hDecoder->frameLength);
1274
9.71k
    }
1275
23.9k
#endif
1276
1277
    /* tns decoding */
1278
23.9k
    tns_decode_frame(ics1, &(ics1->tns), hDecoder->sf_index, hDecoder->object_type,
1279
23.9k
        spec_coef1, hDecoder->frameLength);
1280
23.9k
    tns_decode_frame(ics2, &(ics2->tns), hDecoder->sf_index, hDecoder->object_type,
1281
23.9k
        spec_coef2, hDecoder->frameLength);
1282
1283
    /* drc decoding */
1284
23.9k
#if APPLY_DRC
1285
23.9k
    if (hDecoder->drc->present)
1286
693
    {
1287
693
        if (!hDecoder->drc->exclude_mask[cpe->channel] || !hDecoder->drc->excluded_chns_present)
1288
546
            drc_decode(hDecoder->drc, spec_coef1);
1289
693
        if (!hDecoder->drc->exclude_mask[cpe->paired_channel] || !hDecoder->drc->excluded_chns_present)
1290
555
            drc_decode(hDecoder->drc, spec_coef2);
1291
693
    }
1292
23.9k
#endif
1293
    /* filter bank */
1294
#ifdef SSR_DEC
1295
    if (hDecoder->object_type != SSR)
1296
    {
1297
#endif
1298
23.9k
        ifilter_bank(hDecoder->fb, ics1->window_sequence, ics1->window_shape,
1299
23.9k
            hDecoder->window_shape_prev[cpe->channel], spec_coef1,
1300
23.9k
            hDecoder->time_out[cpe->channel], hDecoder->fb_intermed[cpe->channel],
1301
23.9k
            hDecoder->object_type, hDecoder->frameLength);
1302
23.9k
        ifilter_bank(hDecoder->fb, ics2->window_sequence, ics2->window_shape,
1303
23.9k
            hDecoder->window_shape_prev[cpe->paired_channel], spec_coef2,
1304
23.9k
            hDecoder->time_out[cpe->paired_channel], hDecoder->fb_intermed[cpe->paired_channel],
1305
23.9k
            hDecoder->object_type, hDecoder->frameLength);
1306
#ifdef SSR_DEC
1307
    } else {
1308
        ssr_decode(&(ics1->ssr), hDecoder->fb, ics1->window_sequence, ics1->window_shape,
1309
            hDecoder->window_shape_prev[cpe->channel], spec_coef1, hDecoder->time_out[cpe->channel],
1310
            hDecoder->ssr_overlap[cpe->channel], hDecoder->ipqf_buffer[cpe->channel],
1311
            hDecoder->prev_fmd[cpe->channel], hDecoder->frameLength);
1312
        ssr_decode(&(ics2->ssr), hDecoder->fb, ics2->window_sequence, ics2->window_shape,
1313
            hDecoder->window_shape_prev[cpe->paired_channel], spec_coef2, hDecoder->time_out[cpe->paired_channel],
1314
            hDecoder->ssr_overlap[cpe->paired_channel], hDecoder->ipqf_buffer[cpe->paired_channel],
1315
            hDecoder->prev_fmd[cpe->paired_channel], hDecoder->frameLength);
1316
    }
1317
#endif
1318
1319
    /* save window shape for next frame */
1320
23.9k
    hDecoder->window_shape_prev[cpe->channel] = ics1->window_shape;
1321
23.9k
    hDecoder->window_shape_prev[cpe->paired_channel] = ics2->window_shape;
1322
1323
23.9k
#ifdef LTP_DEC
1324
23.9k
    if (is_ltp_ot(hDecoder->object_type))
1325
9.71k
    {
1326
9.71k
        lt_update_state(hDecoder->lt_pred_stat[cpe->channel], hDecoder->time_out[cpe->channel],
1327
9.71k
            hDecoder->fb_intermed[cpe->channel], hDecoder->frameLength, hDecoder->object_type);
1328
9.71k
        lt_update_state(hDecoder->lt_pred_stat[cpe->paired_channel], hDecoder->time_out[cpe->paired_channel],
1329
9.71k
            hDecoder->fb_intermed[cpe->paired_channel], hDecoder->frameLength, hDecoder->object_type);
1330
9.71k
    }
1331
23.9k
#endif
1332
1333
23.9k
#ifdef SBR_DEC
1334
23.9k
    if (((hDecoder->sbr_present_flag == 1) || (hDecoder->forceUpSampling == 1))
1335
18.1k
        && hDecoder->sbr_alloced[hDecoder->fr_ch_ele])
1336
18.1k
    {
1337
18.1k
        int ele = hDecoder->fr_ch_ele;
1338
18.1k
        int ch0 = cpe->channel;
1339
18.1k
        int ch1 = cpe->paired_channel;
1340
1341
        /* following case can happen when forceUpSampling == 1 */
1342
18.1k
        if (hDecoder->sbr[ele] == NULL)
1343
6.48k
        {
1344
6.48k
            hDecoder->sbr[ele] = sbrDecodeInit(hDecoder->frameLength,
1345
6.48k
                hDecoder->element_id[ele], 2*get_sample_rate(hDecoder->sf_index),
1346
6.48k
                hDecoder->downSampledSBR
1347
#ifdef DRM
1348
                , 0
1349
#endif
1350
6.48k
                );
1351
6.48k
        }
1352
18.1k
        if (!hDecoder->sbr[ele])
1353
41
            return 19;
1354
1355
18.0k
        if (cpe->ics1.window_sequence == EIGHT_SHORT_SEQUENCE)
1356
1.14k
            hDecoder->sbr[ele]->maxAACLine = 8*min(cpe->ics1.swb_offset[max(cpe->ics1.max_sfb-1, 0)], cpe->ics1.swb_offset_max);
1357
16.9k
        else
1358
16.9k
            hDecoder->sbr[ele]->maxAACLine = min(cpe->ics1.swb_offset[max(cpe->ics1.max_sfb-1, 0)], cpe->ics1.swb_offset_max);
1359
1360
18.0k
        retval = sbrDecodeCoupleFrame(hDecoder->sbr[ele],
1361
18.0k
            hDecoder->time_out[ch0], hDecoder->time_out[ch1],
1362
18.0k
            hDecoder->postSeekResetFlag, hDecoder->downSampledSBR);
1363
18.0k
        if (retval > 0)
1364
0
            return retval;
1365
18.0k
    } else if (((hDecoder->sbr_present_flag == 1) || (hDecoder->forceUpSampling == 1))
1366
2
        && !hDecoder->sbr_alloced[hDecoder->fr_ch_ele])
1367
2
    {
1368
2
        return 23;
1369
2
    }
1370
23.8k
#endif
1371
1372
23.8k
    return 0;
1373
23.9k
}