Coverage Report

Created: 2026-09-04 07:01

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
110k
#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
117k
{
304
117k
    uint8_t i, g;
305
306
117k
    uint8_t sf_index = hDecoder->sf_index;
307
308
117k
    if (sf_index >= 12)
309
0
        return 32;
310
311
117k
    switch (ics->window_sequence) {
312
89.1k
    case ONLY_LONG_SEQUENCE:
313
98.1k
    case LONG_START_SEQUENCE:
314
101k
    case LONG_STOP_SEQUENCE:
315
101k
        ics->num_windows = 1;
316
101k
        ics->num_window_groups = 1;
317
101k
        ics->window_group_length[ics->num_window_groups-1] = 1;
318
101k
#ifdef LD_DEC
319
101k
        if (hDecoder->object_type == LD)
320
1.20k
        {
321
1.20k
            if (hDecoder->frameLength == 512)
322
332
                ics->num_swb = num_swb_512_window[sf_index];
323
868
            else /* if (hDecoder->frameLength == 480) */
324
868
                ics->num_swb = num_swb_480_window[sf_index];
325
100k
        } else {
326
100k
#endif
327
100k
            if (hDecoder->frameLength == 1024)
328
76.3k
                ics->num_swb = num_swb_1024_window[sf_index];
329
24.4k
            else /* if (hDecoder->frameLength == 960) */
330
24.4k
                ics->num_swb = num_swb_960_window[sf_index];
331
100k
#ifdef LD_DEC
332
100k
        }
333
101k
#endif
334
335
101k
        if (ics->max_sfb > ics->num_swb)
336
77
        {
337
77
            return 32;
338
77
        }
339
340
        /* preparation of sect_sfb_offset for long blocks */
341
        /* also copy the last value! */
342
101k
#ifdef LD_DEC
343
101k
        if (hDecoder->object_type == LD)
344
1.19k
        {
345
1.19k
            if (hDecoder->frameLength == 512)
346
331
            {
347
8.69k
                for (i = 0; i < ics->num_swb; i++)
348
8.36k
                {
349
8.36k
                    ics->sect_sfb_offset[0][i] = swb_offset_512_window[sf_index][i];
350
8.36k
                    ics->swb_offset[i] = swb_offset_512_window[sf_index][i];
351
8.36k
                }
352
864
            } else /* if (hDecoder->frameLength == 480) */ {
353
30.9k
                for (i = 0; i < ics->num_swb; i++)
354
30.0k
                {
355
30.0k
                    ics->sect_sfb_offset[0][i] = swb_offset_480_window[sf_index][i];
356
30.0k
                    ics->swb_offset[i] = swb_offset_480_window[sf_index][i];
357
30.0k
                }
358
864
            }
359
1.19k
            ics->sect_sfb_offset[0][ics->num_swb] = hDecoder->frameLength;
360
1.19k
            ics->swb_offset[ics->num_swb] = hDecoder->frameLength;
361
1.19k
            ics->swb_offset_max = hDecoder->frameLength;
362
100k
        } else {
363
100k
#endif
364
4.30M
            for (i = 0; i < ics->num_swb; i++)
365
4.20M
            {
366
4.20M
                ics->sect_sfb_offset[0][i] = swb_offset_1024_window[sf_index][i];
367
4.20M
                ics->swb_offset[i] = swb_offset_1024_window[sf_index][i];
368
4.20M
            }
369
100k
            ics->sect_sfb_offset[0][ics->num_swb] = hDecoder->frameLength;
370
100k
            ics->swb_offset[ics->num_swb] = hDecoder->frameLength;
371
100k
            ics->swb_offset_max = hDecoder->frameLength;
372
100k
#ifdef LD_DEC
373
100k
        }
374
101k
#endif
375
101k
        if (ics->num_swb > 0 && ics->swb_offset[ics->num_swb] < ics->swb_offset[ics->num_swb-1]) {
376
0
            return 32;
377
0
        }
378
101k
        return 0;
379
15.7k
    case EIGHT_SHORT_SEQUENCE:
380
15.7k
        ics->num_windows = 8;
381
15.7k
        ics->num_window_groups = 1;
382
15.7k
        ics->window_group_length[ics->num_window_groups-1] = 1;
383
15.7k
        ics->num_swb = num_swb_128_window[sf_index];
384
385
15.7k
        if (ics->max_sfb > ics->num_swb)
386
3
        {
387
3
            return 32;
388
3
        }
389
390
226k
        for (i = 0; i < ics->num_swb; i++)
391
210k
            ics->swb_offset[i] = swb_offset_128_window[sf_index][i];
392
15.7k
        ics->swb_offset[ics->num_swb] = hDecoder->frameLength/8;
393
15.7k
        ics->swb_offset_max = hDecoder->frameLength/8;
394
395
126k
        for (i = 0; i < ics->num_windows-1; i++) {
396
110k
            if (bit_set(ics->scale_factor_grouping, 6-i) == 0)
397
93.5k
            {
398
93.5k
                ics->num_window_groups += 1;
399
93.5k
                ics->window_group_length[ics->num_window_groups-1] = 1;
400
93.5k
            } else {
401
16.6k
                ics->window_group_length[ics->num_window_groups-1] += 1;
402
16.6k
            }
403
110k
        }
404
405
        /* preparation of sect_sfb_offset for short blocks */
406
125k
        for (g = 0; g < ics->num_window_groups; g++)
407
109k
        {
408
109k
            uint16_t width;
409
109k
            uint8_t sect_sfb = 0;
410
109k
            uint16_t offset = 0;
411
412
1.56M
            for (i = 0; i < ics->num_swb; i++)
413
1.45M
            {
414
1.45M
                if (i+1 == ics->num_swb)
415
109k
                {
416
109k
                    width = (hDecoder->frameLength/8) - swb_offset_128_window[sf_index][i];
417
1.34M
                } else {
418
1.34M
                    width = swb_offset_128_window[sf_index][i+1] -
419
1.34M
                        swb_offset_128_window[sf_index][i];
420
1.34M
                }
421
1.45M
                width *= ics->window_group_length[g];
422
1.45M
                ics->sect_sfb_offset[g][sect_sfb++] = offset;
423
1.45M
                offset += width;
424
1.45M
            }
425
109k
            ics->sect_sfb_offset[g][sect_sfb] = offset;
426
109k
        }
427
15.7k
        return 0;
428
0
    default:
429
0
        return 32;
430
117k
    }
431
117k
}
432
433
/* iquant() * output = sign(input)*abs(input)^(4/3) */
434
static INLINE real_t iquant(int16_t q, const real_t *tab, uint8_t *error)
435
126M
{
436
126M
#ifdef FIXED_POINT
437
/* For FIXED_POINT the iq_table is prescaled by 3 bits (iq_table[]/8) */
438
/* BIG_IQ_TABLE allows you to use the full 8192 value table, if this is not
439
 * defined a 1026 value table and interpolation will be used
440
 */
441
126M
#ifndef BIG_IQ_TABLE
442
126M
    static const real_t errcorr[] = {
443
126M
        REAL_CONST(0), REAL_CONST(1.0/8.0), REAL_CONST(2.0/8.0), REAL_CONST(3.0/8.0),
444
126M
        REAL_CONST(4.0/8.0),  REAL_CONST(5.0/8.0), REAL_CONST(6.0/8.0), REAL_CONST(7.0/8.0),
445
126M
        REAL_CONST(0)
446
126M
    };
447
126M
    real_t x1, x2;
448
126M
#endif
449
126M
    int16_t sgn = 1;
450
    /* compute the magnitude in int: -q is evaluated as int and so does not
451
       wrap for q == -32768 the way an int16_t negation would, which keeps the
452
       comparison against IQ_TABLE_SIZE in range like the floating-point path */
453
126M
    int aq = q;
454
455
126M
    if (aq < 0)
456
89.6k
    {
457
89.6k
        aq = -aq;
458
89.6k
        sgn = -1;
459
89.6k
    }
460
461
126M
    if (aq < IQ_TABLE_SIZE)
462
126M
    {
463
//#define IQUANT_PRINT
464
#ifdef IQUANT_PRINT
465
        //printf("0x%.8X\n", sgn * tab[aq]);
466
        printf("%d\n", sgn * tab[aq]);
467
#endif
468
126M
        return sgn * tab[aq];
469
126M
    }
470
471
2.00k
#ifndef BIG_IQ_TABLE
472
2.00k
    if (aq >= 8192)
473
582
    {
474
582
        *error = 17;
475
582
        return 0;
476
582
    }
477
478
    /* linear interpolation */
479
1.42k
    x1 = tab[aq>>3];
480
1.42k
    x2 = tab[(aq>>3) + 1];
481
1.42k
    return sgn * 16 * (MUL_R(errcorr[aq&7],(x2-x1)) + x1);
482
#else
483
    *error = 17;
484
    return 0;
485
#endif
486
487
#else
488
    if (q < 0)
489
    {
490
        /* tab contains a value for all possible q [0,8192] */
491
        if (-q < IQ_TABLE_SIZE)
492
            return -tab[-q];
493
494
        *error = 17;
495
        return 0;
496
    } else {
497
        /* tab contains a value for all possible q [0,8192] */
498
        if (q < IQ_TABLE_SIZE)
499
            return tab[q];
500
501
        *error = 17;
502
        return 0;
503
    }
504
#endif
505
2.00k
}
506
507
#ifndef FIXED_POINT
508
ALIGN static const real_t pow2sf_tab[] = {
509
    2.9802322387695313E-008, 5.9604644775390625E-008, 1.1920928955078125E-007,
510
    2.384185791015625E-007, 4.76837158203125E-007, 9.5367431640625E-007,
511
    1.9073486328125E-006, 3.814697265625E-006, 7.62939453125E-006,
512
    1.52587890625E-005, 3.0517578125E-005, 6.103515625E-005,
513
    0.0001220703125, 0.000244140625, 0.00048828125,
514
    0.0009765625, 0.001953125, 0.00390625,
515
    0.0078125, 0.015625, 0.03125,
516
    0.0625, 0.125, 0.25,
517
    0.5, 1.0, 2.0,
518
    4.0, 8.0, 16.0, 32.0,
519
    64.0, 128.0, 256.0,
520
    512.0, 1024.0, 2048.0,
521
    4096.0, 8192.0, 16384.0,
522
    32768.0, 65536.0, 131072.0,
523
    262144.0, 524288.0, 1048576.0,
524
    2097152.0, 4194304.0, 8388608.0,
525
    16777216.0, 33554432.0, 67108864.0,
526
    134217728.0, 268435456.0, 536870912.0,
527
    1073741824.0, 2147483648.0, 4294967296.0,
528
    8589934592.0, 17179869184.0, 34359738368.0,
529
    68719476736.0, 137438953472.0, 274877906944.0
530
};
531
#endif
532
533
/* quant_to_spec: perform dequantisation and scaling
534
 * and in case of short block it also does the deinterleaving
535
 */
536
/*
537
  For ONLY_LONG_SEQUENCE windows (num_window_groups = 1,
538
  window_group_length[0] = 1) the spectral data is in ascending spectral
539
  order.
540
  For the EIGHT_SHORT_SEQUENCE window, the spectral order depends on the
541
  grouping in the following manner:
542
  - Groups are ordered sequentially
543
  - Within a group, a scalefactor band consists of the spectral data of all
544
    grouped SHORT_WINDOWs for the associated scalefactor window band. To
545
    clarify via example, the length of a group is in the range of one to eight
546
    SHORT_WINDOWs.
547
  - If there are eight groups each with length one (num_window_groups = 8,
548
    window_group_length[0..7] = 1), the result is a sequence of eight spectra,
549
    each in ascending spectral order.
550
  - If there is only one group with length eight (num_window_groups = 1,
551
    window_group_length[0] = 8), the result is that spectral data of all eight
552
    SHORT_WINDOWs is interleaved by scalefactor window bands.
553
  - Within a scalefactor window band, the coefficients are in ascending
554
    spectral order.
555
*/
556
static uint8_t quant_to_spec(NeAACDecStruct *hDecoder,
557
                             ic_stream *ics, int16_t *quant_data,
558
                             real_t *spec_data, uint16_t frame_len)
559
125k
{
560
125k
    ALIGN static const real_t pow2_table[] =
561
125k
    {
562
125k
        COEF_CONST(1.0),
563
125k
        COEF_CONST(1.1892071150027210667174999705605), /* 2^0.25 */
564
125k
        COEF_CONST(1.4142135623730950488016887242097), /* 2^0.5 */
565
125k
        COEF_CONST(1.6817928305074290860622509524664) /* 2^0.75 */
566
125k
    };
567
125k
    const real_t *tab = iq_table;
568
569
125k
    uint8_t g, sfb, win;
570
125k
    uint16_t width, bin, k, gindex;
571
125k
    uint8_t error = 0; /* Init error flag */
572
#ifndef FIXED_POINT
573
    real_t scf;
574
#else
575
125k
    int32_t sat_shift_mask = 0;
576
125k
#endif
577
578
125k
    k = 0;
579
125k
    gindex = 0;
580
581
    /* In this case quant_to_spec is no-op and spec_data remains undefined.
582
     * Without peeking into AAC specification, there is no strong evidence if
583
     * such streams are invalid -> just calm down MSAN. */
584
125k
    if (ics->num_swb == 0)
585
98
        memset(spec_data, 0, frame_len * sizeof(real_t));
586
587
347k
    for (g = 0; g < ics->num_window_groups; g++)
588
221k
    {
589
221k
        uint16_t j = 0;
590
221k
        uint16_t gincrease = 0;
591
221k
        uint16_t win_inc = ics->swb_offset[ics->num_swb];
592
593
6.27M
        for (sfb = 0; sfb < ics->num_swb; sfb++)
594
6.05M
        {
595
6.05M
            int32_t exp, frac;
596
6.05M
            uint16_t wa = gindex + j;
597
6.05M
            int16_t scale_factor = ics->scale_factors[g][sfb];
598
599
6.05M
            width = ics->swb_offset[sfb+1] - ics->swb_offset[sfb];
600
6.05M
            if (width + 3 >= 1024) 
601
0
            {
602
                // quant_data contains 1024 uint16_t, the k iterator + 3
603
                // should never reach more 1024
604
0
                error = 17;
605
0
                continue;
606
0
            }
607
608
6.05M
#ifdef FIXED_POINT
609
6.05M
            scale_factor -= 100;
610
            /* IMDCT pre-scaling */
611
6.05M
            if (hDecoder->object_type == LD)
612
37.7k
            {
613
37.7k
                scale_factor -= 24 /*9*/;
614
6.01M
            } else {
615
6.01M
                if (ics->window_sequence == EIGHT_SHORT_SEQUENCE)
616
1.49M
                    scale_factor -= 16 /*7*/;
617
4.52M
                else
618
4.52M
                    scale_factor -= 28 /*10*/;
619
6.01M
            }
620
6.05M
            if (scale_factor > 120)
621
337
                scale_factor = 120;  /* => exp <= 30 */
622
#else
623
            (void)hDecoder;
624
#endif
625
626
            /* scale_factor for IS or PNS, has different meaning; fill with almost zeroes */
627
6.05M
            if (is_intensity(ics, g, sfb) || is_noise(ics, g, sfb))
628
34.9k
            {
629
34.9k
                scale_factor = 0;
630
34.9k
            }
631
632
            /* scale_factor must be between 0 and 255 */
633
6.05M
            exp = (scale_factor /* - 100 */) >> 2;
634
            /* frac must always be > 0 */
635
6.05M
            frac = (scale_factor /* - 100 */) & 3;
636
637
#ifndef FIXED_POINT
638
            scf = pow2sf_tab[exp/*+25*/] * pow2_table[frac];
639
#else
640
6.05M
            if (exp > 0)
641
14.6k
                sat_shift_mask = SAT_SHIFT_MASK(exp);
642
6.05M
#endif
643
644
12.3M
            for (win = 0; win < ics->window_group_length[g]; win++)
645
6.30M
            {
646
37.8M
                for (bin = 0; bin < width; bin += 4)
647
31.5M
                {
648
31.5M
                    uint16_t wb = wa + bin;
649
#ifndef FIXED_POINT
650
                    spec_data[wb+0] = iquant(quant_data[k+0], tab, &error) * scf;
651
                    spec_data[wb+1] = iquant(quant_data[k+1], tab, &error) * scf;
652
                    spec_data[wb+2] = iquant(quant_data[k+2], tab, &error) * scf;
653
                    spec_data[wb+3] = iquant(quant_data[k+3], tab, &error) * scf;
654
#else
655
31.5M
                    real_t iq0 = iquant(quant_data[k+0], tab, &error);
656
31.5M
                    real_t iq1 = iquant(quant_data[k+1], tab, &error);
657
31.5M
                    real_t iq2 = iquant(quant_data[k+2], tab, &error);
658
31.5M
                    real_t iq3 = iquant(quant_data[k+3], tab, &error);
659
660
31.5M
                    if (exp == -32)
661
27.0M
                    {
662
27.0M
                        spec_data[wb+0] = 0;
663
27.0M
                        spec_data[wb+1] = 0;
664
27.0M
                        spec_data[wb+2] = 0;
665
27.0M
                        spec_data[wb+3] = 0;
666
27.0M
                    } else if (exp <= 0) {
667
4.40M
                        spec_data[wb+0] = iq0 >> -exp;
668
4.40M
                        spec_data[wb+1] = iq1 >> -exp;
669
4.40M
                        spec_data[wb+2] = iq2 >> -exp;
670
4.40M
                        spec_data[wb+3] = iq3 >> -exp;
671
4.40M
                    } else { /* exp > 0 */
672
75.3k
                        spec_data[wb+0] = SAT_SHIFT(iq0, exp, sat_shift_mask);
673
75.3k
                        spec_data[wb+1] = SAT_SHIFT(iq1, exp, sat_shift_mask);
674
75.3k
                        spec_data[wb+2] = SAT_SHIFT(iq2, exp, sat_shift_mask);
675
75.3k
                        spec_data[wb+3] = SAT_SHIFT(iq3, exp, sat_shift_mask);
676
75.3k
                    }
677
31.5M
                    if (frac != 0)
678
124k
                    {
679
124k
                        spec_data[wb+0] = MUL_C(spec_data[wb+0],pow2_table[frac]);
680
124k
                        spec_data[wb+1] = MUL_C(spec_data[wb+1],pow2_table[frac]);
681
124k
                        spec_data[wb+2] = MUL_C(spec_data[wb+2],pow2_table[frac]);
682
124k
                        spec_data[wb+3] = MUL_C(spec_data[wb+3],pow2_table[frac]);
683
124k
                    }
684
685
//#define SCFS_PRINT
686
#ifdef SCFS_PRINT
687
                    printf("%d\n", spec_data[gindex+(win*win_inc)+j+bin+0]);
688
                    printf("%d\n", spec_data[gindex+(win*win_inc)+j+bin+1]);
689
                    printf("%d\n", spec_data[gindex+(win*win_inc)+j+bin+2]);
690
                    printf("%d\n", spec_data[gindex+(win*win_inc)+j+bin+3]);
691
                    //printf("0x%.8X\n", spec_data[gindex+(win*win_inc)+j+bin+0]);
692
                    //printf("0x%.8X\n", spec_data[gindex+(win*win_inc)+j+bin+1]);
693
                    //printf("0x%.8X\n", spec_data[gindex+(win*win_inc)+j+bin+2]);
694
                    //printf("0x%.8X\n", spec_data[gindex+(win*win_inc)+j+bin+3]);
695
#endif
696
31.5M
#endif
697
698
31.5M
                    gincrease += 4;
699
31.5M
                    k += 4;
700
31.5M
                }
701
6.30M
                wa += win_inc;
702
6.30M
            }
703
6.05M
            j += width;
704
6.05M
        }
705
221k
        gindex += gincrease;
706
221k
    }
707
708
125k
    return error;
709
125k
}
710
711
static uint8_t allocate_single_channel(NeAACDecStruct *hDecoder, uint8_t channel,
712
                                       uint8_t output_channels)
713
82.2k
{
714
82.2k
    int mul = 1;
715
716
#ifdef MAIN_DEC
717
    /* MAIN object type prediction */
718
    if (hDecoder->object_type == MAIN)
719
    {
720
        /* allocate the state only when needed */
721
        if (hDecoder->pred_stat[channel] != NULL)
722
        {
723
            faad_free(hDecoder->pred_stat[channel]);
724
            hDecoder->pred_stat[channel] = NULL;
725
        }
726
727
        hDecoder->pred_stat[channel] = (pred_state*)faad_malloc(hDecoder->frameLength * sizeof(pred_state));
728
        reset_all_predictors(hDecoder->pred_stat[channel], hDecoder->frameLength);
729
    }
730
#endif
731
732
82.2k
#ifdef LTP_DEC
733
82.2k
    if (is_ltp_ot(hDecoder->object_type))
734
38.9k
    {
735
        /* allocate the state only when needed */
736
38.9k
        if (hDecoder->lt_pred_stat[channel] != NULL)
737
505
        {
738
505
            faad_free(hDecoder->lt_pred_stat[channel]);
739
505
            hDecoder->lt_pred_stat[channel] = NULL;
740
505
        }
741
742
38.9k
        hDecoder->lt_pred_stat[channel] = (int16_t*)faad_malloc(hDecoder->frameLength*4 * sizeof(int16_t));
743
38.9k
        memset(hDecoder->lt_pred_stat[channel], 0, hDecoder->frameLength*4 * sizeof(int16_t));
744
38.9k
    }
745
82.2k
#endif
746
747
82.2k
    if (hDecoder->time_out[channel] != NULL)
748
4.13k
    {
749
4.13k
        faad_free(hDecoder->time_out[channel]);
750
4.13k
        hDecoder->time_out[channel] = NULL;
751
4.13k
    }
752
753
82.2k
    {
754
82.2k
        mul = 1;
755
82.2k
#ifdef SBR_DEC
756
82.2k
        hDecoder->sbr_alloced[hDecoder->fr_ch_ele] = 0;
757
82.2k
        if ((hDecoder->sbr_present_flag == 1) || (hDecoder->forceUpSampling == 1))
758
64.6k
        {
759
            /* SBR requires 2 times as much output data */
760
64.6k
            mul = 2;
761
64.6k
            hDecoder->sbr_alloced[hDecoder->fr_ch_ele] = 1;
762
64.6k
        }
763
82.2k
#endif
764
82.2k
        hDecoder->time_out[channel] = (real_t*)faad_malloc(mul*hDecoder->frameLength*sizeof(real_t));
765
82.2k
        memset(hDecoder->time_out[channel], 0, mul*hDecoder->frameLength*sizeof(real_t));
766
82.2k
    }
767
768
82.2k
#if (defined(PS_DEC) || defined(DRM_PS))
769
82.2k
    if (output_channels == 2)
770
4.62k
    {
771
4.62k
        if (hDecoder->time_out[channel+1] != NULL)
772
1.68k
        {
773
1.68k
            faad_free(hDecoder->time_out[channel+1]);
774
1.68k
            hDecoder->time_out[channel+1] = NULL;
775
1.68k
        }
776
777
4.62k
        hDecoder->time_out[channel+1] = (real_t*)faad_malloc(mul*hDecoder->frameLength*sizeof(real_t));
778
4.62k
        memset(hDecoder->time_out[channel+1], 0, mul*hDecoder->frameLength*sizeof(real_t));
779
4.62k
    }
780
82.2k
#endif
781
782
82.2k
    if (hDecoder->fb_intermed[channel] != NULL)
783
3.36k
    {
784
3.36k
        faad_free(hDecoder->fb_intermed[channel]);
785
3.36k
        hDecoder->fb_intermed[channel] = NULL;
786
3.36k
    }
787
788
82.2k
    hDecoder->fb_intermed[channel] = (real_t*)faad_malloc(hDecoder->frameLength*sizeof(real_t));
789
82.2k
    memset(hDecoder->fb_intermed[channel], 0, hDecoder->frameLength*sizeof(real_t));
790
791
#ifdef SSR_DEC
792
    if (hDecoder->object_type == SSR)
793
    {
794
        if (hDecoder->ssr_overlap[channel] == NULL)
795
        {
796
            hDecoder->ssr_overlap[channel] = (real_t*)faad_malloc(2*hDecoder->frameLength*sizeof(real_t));
797
            memset(hDecoder->ssr_overlap[channel], 0, 2*hDecoder->frameLength*sizeof(real_t));
798
        }
799
        if (hDecoder->prev_fmd[channel] == NULL)
800
        {
801
            uint16_t k;
802
            hDecoder->prev_fmd[channel] = (real_t*)faad_malloc(2*hDecoder->frameLength*sizeof(real_t));
803
            for (k = 0; k < 2*hDecoder->frameLength; k++)
804
                hDecoder->prev_fmd[channel][k] = REAL_CONST(-1);
805
        }
806
    }
807
#endif
808
809
82.2k
    return 0;
810
82.2k
}
811
812
static uint8_t allocate_channel_pair(NeAACDecStruct *hDecoder,
813
                                     uint8_t channel, uint8_t paired_channel)
814
13.8k
{
815
13.8k
    int mul = 1;
816
817
#ifdef MAIN_DEC
818
    /* MAIN object type prediction */
819
    if (hDecoder->object_type == MAIN)
820
    {
821
        /* allocate the state only when needed */
822
        if (hDecoder->pred_stat[channel] == NULL)
823
        {
824
            hDecoder->pred_stat[channel] = (pred_state*)faad_malloc(hDecoder->frameLength * sizeof(pred_state));
825
            reset_all_predictors(hDecoder->pred_stat[channel], hDecoder->frameLength);
826
        }
827
        if (hDecoder->pred_stat[paired_channel] == NULL)
828
        {
829
            hDecoder->pred_stat[paired_channel] = (pred_state*)faad_malloc(hDecoder->frameLength * sizeof(pred_state));
830
            reset_all_predictors(hDecoder->pred_stat[paired_channel], hDecoder->frameLength);
831
        }
832
    }
833
#endif
834
835
13.8k
#ifdef LTP_DEC
836
13.8k
    if (is_ltp_ot(hDecoder->object_type))
837
4.97k
    {
838
        /* allocate the state only when needed */
839
4.97k
        if (hDecoder->lt_pred_stat[channel] == NULL)
840
4.97k
        {
841
4.97k
            hDecoder->lt_pred_stat[channel] = (int16_t*)faad_malloc(hDecoder->frameLength*4 * sizeof(int16_t));
842
4.97k
            memset(hDecoder->lt_pred_stat[channel], 0, hDecoder->frameLength*4 * sizeof(int16_t));
843
4.97k
        }
844
4.97k
        if (hDecoder->lt_pred_stat[paired_channel] == NULL)
845
4.97k
        {
846
4.97k
            hDecoder->lt_pred_stat[paired_channel] = (int16_t*)faad_malloc(hDecoder->frameLength*4 * sizeof(int16_t));
847
4.97k
            memset(hDecoder->lt_pred_stat[paired_channel], 0, hDecoder->frameLength*4 * sizeof(int16_t));
848
4.97k
        }
849
4.97k
    }
850
13.8k
#endif
851
852
13.8k
    {
853
13.8k
        mul = 1;
854
13.8k
#ifdef SBR_DEC
855
13.8k
        hDecoder->sbr_alloced[hDecoder->fr_ch_ele] = 0;
856
13.8k
        if ((hDecoder->sbr_present_flag == 1) || (hDecoder->forceUpSampling == 1))
857
12.4k
        {
858
            /* SBR requires 2 times as much output data */
859
12.4k
            mul = 2;
860
12.4k
            hDecoder->sbr_alloced[hDecoder->fr_ch_ele] = 1;
861
12.4k
        }
862
13.8k
#endif
863
13.8k
    }
864
13.8k
    if (hDecoder->time_out[channel] != NULL)
865
15
    {
866
15
        faad_free(hDecoder->time_out[channel]);
867
15
        hDecoder->time_out[channel] = NULL;
868
15
    }
869
13.8k
    if (hDecoder->time_out[paired_channel] != NULL)
870
13
    {
871
13
        faad_free(hDecoder->time_out[paired_channel]);
872
13
        hDecoder->time_out[paired_channel] = NULL;
873
13
    }
874
13.8k
    hDecoder->time_out[channel] = (real_t*)faad_malloc(mul*hDecoder->frameLength*sizeof(real_t));
875
13.8k
    memset(hDecoder->time_out[channel], 0, mul*hDecoder->frameLength*sizeof(real_t));
876
13.8k
    hDecoder->time_out[paired_channel] = (real_t*)faad_malloc(mul*hDecoder->frameLength*sizeof(real_t));
877
13.8k
    memset(hDecoder->time_out[paired_channel], 0, mul*hDecoder->frameLength*sizeof(real_t));
878
879
13.8k
    if (hDecoder->fb_intermed[channel] != NULL)
880
15
    {
881
15
        faad_free(hDecoder->fb_intermed[channel]);
882
15
        hDecoder->fb_intermed[channel] = NULL;
883
15
    }
884
13.8k
    if (hDecoder->fb_intermed[paired_channel] != NULL)
885
13
    {
886
13
        faad_free(hDecoder->fb_intermed[paired_channel]);
887
13
        hDecoder->fb_intermed[paired_channel] = NULL;
888
13
    }
889
13.8k
    hDecoder->fb_intermed[channel] = (real_t*)faad_malloc(hDecoder->frameLength*sizeof(real_t));
890
13.8k
    memset(hDecoder->fb_intermed[channel], 0, hDecoder->frameLength*sizeof(real_t));
891
13.8k
    hDecoder->fb_intermed[paired_channel] = (real_t*)faad_malloc(hDecoder->frameLength*sizeof(real_t));
892
13.8k
    memset(hDecoder->fb_intermed[paired_channel], 0, hDecoder->frameLength*sizeof(real_t));
893
894
#ifdef SSR_DEC
895
    if (hDecoder->object_type == SSR)
896
    {
897
        if (hDecoder->ssr_overlap[cpe->channel] == NULL)
898
        {
899
            hDecoder->ssr_overlap[cpe->channel] = (real_t*)faad_malloc(2*hDecoder->frameLength*sizeof(real_t));
900
            memset(hDecoder->ssr_overlap[cpe->channel], 0, 2*hDecoder->frameLength*sizeof(real_t));
901
        }
902
        if (hDecoder->ssr_overlap[cpe->paired_channel] == NULL)
903
        {
904
            hDecoder->ssr_overlap[cpe->paired_channel] = (real_t*)faad_malloc(2*hDecoder->frameLength*sizeof(real_t));
905
            memset(hDecoder->ssr_overlap[cpe->paired_channel], 0, 2*hDecoder->frameLength*sizeof(real_t));
906
        }
907
        if (hDecoder->prev_fmd[cpe->channel] == NULL)
908
        {
909
            uint16_t k;
910
            hDecoder->prev_fmd[cpe->channel] = (real_t*)faad_malloc(2*hDecoder->frameLength*sizeof(real_t));
911
            for (k = 0; k < 2*hDecoder->frameLength; k++)
912
                hDecoder->prev_fmd[cpe->channel][k] = REAL_CONST(-1);
913
        }
914
        if (hDecoder->prev_fmd[cpe->paired_channel] == NULL)
915
        {
916
            uint16_t k;
917
            hDecoder->prev_fmd[cpe->paired_channel] = (real_t*)faad_malloc(2*hDecoder->frameLength*sizeof(real_t));
918
            for (k = 0; k < 2*hDecoder->frameLength; k++)
919
                hDecoder->prev_fmd[cpe->paired_channel][k] = REAL_CONST(-1);
920
        }
921
    }
922
#endif
923
924
13.8k
    return 0;
925
13.8k
}
926
927
uint8_t reconstruct_single_channel(NeAACDecStruct *hDecoder, ic_stream *ics,
928
                                   element *sce, int16_t *spec_data)
929
92.0k
{
930
92.0k
    uint8_t retval;
931
92.0k
    uint8_t output_channels;
932
92.0k
    ALIGN real_t spec_coef[1024];
933
934
#ifdef PROFILE
935
    int64_t count = faad_get_ts();
936
#endif
937
938
939
    /* always allocate 2 channels, PS can always "suddenly" turn up */
940
#if ( (defined(DRM) && defined(DRM_PS)) )
941
    output_channels = 2;
942
#elif defined(PS_DEC)
943
92.0k
    if (hDecoder->ps_used[hDecoder->fr_ch_ele])
944
5.46k
        output_channels = 2;
945
86.6k
    else
946
86.6k
        output_channels = 1;
947
#else
948
    output_channels = 1;
949
#endif
950
951
92.0k
    if (hDecoder->element_output_channels[hDecoder->fr_ch_ele] == 0)
952
77.8k
    {
953
        /* element_output_channels not set yet */
954
77.8k
        hDecoder->element_output_channels[hDecoder->fr_ch_ele] = output_channels;
955
77.8k
    } else if (hDecoder->element_output_channels[hDecoder->fr_ch_ele] != output_channels) {
956
        /* element inconsistency */
957
958
        /* this only happens if PS is actually found but not in the first frame
959
         * this means that there is only 1 bitstream element!
960
         */
961
962
        /* The simplest way to fix the accounting,
963
         * is to reallocate this and all the following channels.
964
         */
965
792
        memset(&hDecoder->element_alloced[hDecoder->fr_ch_ele], 0,
966
792
            sizeof(uint8_t) * (MAX_SYNTAX_ELEMENTS - hDecoder->fr_ch_ele));
967
968
792
        hDecoder->element_output_channels[hDecoder->fr_ch_ele] = output_channels;
969
970
        //return 21;
971
792
    }
972
973
92.0k
    if (hDecoder->element_alloced[hDecoder->fr_ch_ele] == 0)
974
82.2k
    {
975
82.2k
        retval = allocate_single_channel(hDecoder, sce->channel, output_channels);
976
82.2k
        if (retval > 0)
977
0
            return retval;
978
979
82.2k
        hDecoder->element_alloced[hDecoder->fr_ch_ele] = 1;
980
82.2k
    }
981
982
    /* sanity check, CVE-2018-20199, CVE-2018-20360 */
983
92.0k
    if(!hDecoder->time_out[sce->channel])
984
0
        return 15;
985
92.0k
    if(output_channels > 1 && !hDecoder->time_out[sce->channel+1])
986
0
        return 15;
987
92.0k
    if(!hDecoder->fb_intermed[sce->channel])
988
0
        return 15;
989
990
    /* dequantisation and scaling */
991
92.0k
    retval = quant_to_spec(hDecoder, ics, spec_data, spec_coef, hDecoder->frameLength);
992
92.0k
    if (retval > 0)
993
26
        return retval;
994
995
#ifdef PROFILE
996
    count = faad_get_ts() - count;
997
    hDecoder->requant_cycles += count;
998
#endif
999
1000
1001
    /* pns decoding */
1002
92.0k
    pns_decode(ics, NULL, spec_coef, NULL, hDecoder->frameLength, 0, hDecoder->object_type,
1003
92.0k
        &(hDecoder->__r1), &(hDecoder->__r2));
1004
1005
#ifdef MAIN_DEC
1006
    /* MAIN object type prediction */
1007
    if (hDecoder->object_type == MAIN)
1008
    {
1009
        if (!hDecoder->pred_stat[sce->channel])
1010
            return 33;
1011
1012
        /* intra channel prediction */
1013
        ic_prediction(ics, spec_coef, hDecoder->pred_stat[sce->channel], hDecoder->frameLength,
1014
            hDecoder->sf_index);
1015
1016
        /* In addition, for scalefactor bands coded by perceptual
1017
           noise substitution the predictors belonging to the
1018
           corresponding spectral coefficients are reset.
1019
        */
1020
        pns_reset_pred_state(ics, hDecoder->pred_stat[sce->channel]);
1021
    }
1022
#endif
1023
1024
92.0k
#ifdef LTP_DEC
1025
92.0k
    if (is_ltp_ot(hDecoder->object_type))
1026
43.0k
    {
1027
43.0k
#ifdef LD_DEC
1028
43.0k
        if (hDecoder->object_type == LD)
1029
276
        {
1030
276
            if (ics->ltp.data_present)
1031
44
            {
1032
44
                if (ics->ltp.lag_update)
1033
21
                    hDecoder->ltp_lag[sce->channel] = ics->ltp.lag;
1034
44
            }
1035
276
            ics->ltp.lag = hDecoder->ltp_lag[sce->channel];
1036
276
        }
1037
43.0k
#endif
1038
1039
43.0k
        if (!hDecoder->lt_pred_stat[sce->channel])
1040
0
            return 34;
1041
1042
        /* long term prediction */
1043
43.0k
        lt_prediction(ics, &(ics->ltp), spec_coef, hDecoder->lt_pred_stat[sce->channel], hDecoder->fb,
1044
43.0k
            ics->window_shape, hDecoder->window_shape_prev[sce->channel],
1045
43.0k
            hDecoder->sf_index, hDecoder->object_type, hDecoder->frameLength);
1046
43.0k
    }
1047
92.0k
#endif
1048
1049
    /* tns decoding */
1050
92.0k
    tns_decode_frame(ics, &(ics->tns), hDecoder->sf_index, hDecoder->object_type,
1051
92.0k
        spec_coef, hDecoder->frameLength);
1052
1053
    /* drc decoding */
1054
92.0k
#ifdef APPLY_DRC
1055
92.0k
    if (hDecoder->drc->present)
1056
5.78k
    {
1057
5.78k
        if (!hDecoder->drc->exclude_mask[sce->channel] || !hDecoder->drc->excluded_chns_present)
1058
4.90k
            drc_decode(hDecoder->drc, spec_coef);
1059
5.78k
    }
1060
92.0k
#endif
1061
    /* filter bank */
1062
#ifdef SSR_DEC
1063
    if (hDecoder->object_type != SSR)
1064
    {
1065
#endif
1066
92.0k
        ifilter_bank(hDecoder->fb, ics->window_sequence, ics->window_shape,
1067
92.0k
            hDecoder->window_shape_prev[sce->channel], spec_coef,
1068
92.0k
            hDecoder->time_out[sce->channel], hDecoder->fb_intermed[sce->channel],
1069
92.0k
            hDecoder->object_type, hDecoder->frameLength);
1070
#ifdef SSR_DEC
1071
    } else {
1072
        ssr_decode(&(ics->ssr), hDecoder->fb, ics->window_sequence, ics->window_shape,
1073
            hDecoder->window_shape_prev[sce->channel], spec_coef, hDecoder->time_out[sce->channel],
1074
            hDecoder->ssr_overlap[sce->channel], hDecoder->ipqf_buffer[sce->channel], hDecoder->prev_fmd[sce->channel],
1075
            hDecoder->frameLength);
1076
    }
1077
#endif
1078
1079
    /* save window shape for next frame */
1080
92.0k
    hDecoder->window_shape_prev[sce->channel] = ics->window_shape;
1081
1082
92.0k
#ifdef LTP_DEC
1083
92.0k
    if (is_ltp_ot(hDecoder->object_type))
1084
43.0k
    {
1085
43.0k
        lt_update_state(hDecoder->lt_pred_stat[sce->channel], hDecoder->time_out[sce->channel],
1086
43.0k
            hDecoder->fb_intermed[sce->channel], hDecoder->frameLength, hDecoder->object_type);
1087
43.0k
    }
1088
92.0k
#endif
1089
1090
92.0k
#ifdef SBR_DEC
1091
92.0k
    if (((hDecoder->sbr_present_flag == 1) || (hDecoder->forceUpSampling == 1))
1092
73.1k
        && hDecoder->sbr_alloced[hDecoder->fr_ch_ele])
1093
73.1k
    {
1094
73.1k
        int ele = hDecoder->fr_ch_ele;
1095
73.1k
        int ch = sce->channel;
1096
1097
        /* following case can happen when forceUpSampling == 1 */
1098
73.1k
        if (hDecoder->sbr[ele] == NULL)
1099
49.9k
        {
1100
49.9k
            hDecoder->sbr[ele] = sbrDecodeInit(hDecoder->frameLength,
1101
49.9k
                hDecoder->element_id[ele], 2*get_sample_rate(hDecoder->sf_index),
1102
49.9k
                hDecoder->downSampledSBR
1103
#ifdef DRM
1104
                , 0
1105
#endif
1106
49.9k
                );
1107
49.9k
        }
1108
73.1k
        if (!hDecoder->sbr[ele])
1109
39
            return 19;
1110
1111
73.0k
        if (sce->ics1.window_sequence == EIGHT_SHORT_SEQUENCE)
1112
12.8k
            hDecoder->sbr[ele]->maxAACLine = 8*min(sce->ics1.swb_offset[max(sce->ics1.max_sfb-1, 0)], sce->ics1.swb_offset_max);
1113
60.2k
        else
1114
60.2k
            hDecoder->sbr[ele]->maxAACLine = min(sce->ics1.swb_offset[max(sce->ics1.max_sfb-1, 0)], sce->ics1.swb_offset_max);
1115
1116
        /* check if any of the PS tools is used */
1117
73.0k
#if (defined(PS_DEC) || defined(DRM_PS))
1118
73.0k
        if (hDecoder->ps_used[ele] == 0)
1119
67.6k
        {
1120
67.6k
#endif
1121
67.6k
            retval = sbrDecodeSingleFrame(hDecoder->sbr[ele], hDecoder->time_out[ch],
1122
67.6k
                hDecoder->postSeekResetFlag, hDecoder->downSampledSBR);
1123
67.6k
#if (defined(PS_DEC) || defined(DRM_PS))
1124
67.6k
        } else {
1125
5.46k
            retval = sbrDecodeSingleFramePS(hDecoder->sbr[ele], hDecoder->time_out[ch],
1126
5.46k
                hDecoder->time_out[ch+1], hDecoder->postSeekResetFlag,
1127
5.46k
                hDecoder->downSampledSBR);
1128
5.46k
        }
1129
73.0k
#endif
1130
73.0k
        if (retval > 0)
1131
12
            return retval;
1132
73.0k
    } else if (((hDecoder->sbr_present_flag == 1) || (hDecoder->forceUpSampling == 1))
1133
3
        && !hDecoder->sbr_alloced[hDecoder->fr_ch_ele])
1134
3
    {
1135
3
        return 23;
1136
3
    }
1137
91.9k
#endif
1138
1139
    /* copy L to R when no PS is used */
1140
91.9k
#if (defined(PS_DEC) || defined(DRM_PS))
1141
91.9k
    if ((hDecoder->ps_used[hDecoder->fr_ch_ele] == 0) &&
1142
86.5k
        (hDecoder->element_output_channels[hDecoder->fr_ch_ele] == 2))
1143
0
    {
1144
0
        int ele = hDecoder->fr_ch_ele;
1145
0
        int ch = sce->channel;
1146
0
        int frame_size = (hDecoder->sbr_alloced[ele]) ? 2 : 1;
1147
0
        frame_size *= hDecoder->frameLength*sizeof(real_t);
1148
1149
0
        memcpy(hDecoder->time_out[ch+1], hDecoder->time_out[ch], frame_size);
1150
0
    }
1151
91.9k
#endif
1152
1153
91.9k
    return 0;
1154
92.0k
}
1155
1156
uint8_t reconstruct_channel_pair(NeAACDecStruct *hDecoder, ic_stream *ics1, ic_stream *ics2,
1157
                                 element *cpe, int16_t *spec_data1, int16_t *spec_data2)
1158
16.8k
{
1159
16.8k
    uint8_t retval;
1160
16.8k
    ALIGN real_t spec_coef1[1024];
1161
16.8k
    ALIGN real_t spec_coef2[1024];
1162
1163
#ifdef PROFILE
1164
    int64_t count = faad_get_ts();
1165
#endif
1166
16.8k
    if (hDecoder->element_alloced[hDecoder->fr_ch_ele] != 2)
1167
13.8k
    {
1168
13.8k
        retval = allocate_channel_pair(hDecoder, cpe->channel, (uint8_t)cpe->paired_channel);
1169
13.8k
        if (retval > 0)
1170
0
            return retval;
1171
1172
13.8k
        hDecoder->element_alloced[hDecoder->fr_ch_ele] = 2;
1173
13.8k
    }
1174
1175
    /* sanity check, CVE-2018-20199, CVE-2018-20360 */
1176
16.8k
    if(!hDecoder->time_out[cpe->channel] || !hDecoder->time_out[cpe->paired_channel])
1177
0
        return 15;
1178
16.8k
    if(!hDecoder->fb_intermed[cpe->channel] || !hDecoder->fb_intermed[cpe->paired_channel])
1179
0
        return 15;
1180
1181
    /* dequantisation and scaling */
1182
16.8k
    retval = quant_to_spec(hDecoder, ics1, spec_data1, spec_coef1, hDecoder->frameLength);
1183
16.8k
    if (retval > 0)
1184
4
        return retval;
1185
16.8k
    retval = quant_to_spec(hDecoder, ics2, spec_data2, spec_coef2, hDecoder->frameLength);
1186
16.8k
    if (retval > 0)
1187
3
        return retval;
1188
1189
#ifdef PROFILE
1190
    count = faad_get_ts() - count;
1191
    hDecoder->requant_cycles += count;
1192
#endif
1193
1194
    /* pns decoding */
1195
16.8k
    if (ics1->ms_mask_present)
1196
4.44k
    {
1197
4.44k
        pns_decode(ics1, ics2, spec_coef1, spec_coef2, hDecoder->frameLength, 1, hDecoder->object_type,
1198
4.44k
            &(hDecoder->__r1), &(hDecoder->__r2));
1199
12.3k
    } else {
1200
12.3k
        pns_decode(ics1, ics2, spec_coef1, spec_coef2, hDecoder->frameLength, 0, hDecoder->object_type,
1201
12.3k
            &(hDecoder->__r1), &(hDecoder->__r2));
1202
12.3k
    }
1203
1204
    /* mid/side decoding */
1205
16.8k
    ms_decode(ics1, ics2, spec_coef1, spec_coef2, hDecoder->frameLength);
1206
1207
#if 0
1208
    {
1209
        int i;
1210
        for (i = 0; i < 1024; i++)
1211
        {
1212
            //printf("%d\n", spec_coef1[i]);
1213
            printf("0x%.8X\n", spec_coef1[i]);
1214
        }
1215
        for (i = 0; i < 1024; i++)
1216
        {
1217
            //printf("%d\n", spec_coef2[i]);
1218
            printf("0x%.8X\n", spec_coef2[i]);
1219
        }
1220
    }
1221
#endif
1222
1223
    /* intensity stereo decoding */
1224
16.8k
    is_decode(ics1, ics2, spec_coef1, spec_coef2, hDecoder->frameLength);
1225
1226
#if 0
1227
    {
1228
        int i;
1229
        for (i = 0; i < 1024; i++)
1230
        {
1231
            printf("%d\n", spec_coef1[i]);
1232
            //printf("0x%.8X\n", spec_coef1[i]);
1233
        }
1234
        for (i = 0; i < 1024; i++)
1235
        {
1236
            printf("%d\n", spec_coef2[i]);
1237
            //printf("0x%.8X\n", spec_coef2[i]);
1238
        }
1239
    }
1240
#endif
1241
1242
#ifdef MAIN_DEC
1243
    /* MAIN object type prediction */
1244
    if (hDecoder->object_type == MAIN)
1245
    {
1246
        if (!hDecoder->pred_stat[cpe->channel] || !hDecoder->pred_stat[cpe->paired_channel])
1247
            return 33;
1248
1249
        /* intra channel prediction */
1250
        ic_prediction(ics1, spec_coef1, hDecoder->pred_stat[cpe->channel], hDecoder->frameLength,
1251
            hDecoder->sf_index);
1252
        ic_prediction(ics2, spec_coef2, hDecoder->pred_stat[cpe->paired_channel], hDecoder->frameLength,
1253
            hDecoder->sf_index);
1254
1255
        /* In addition, for scalefactor bands coded by perceptual
1256
           noise substitution the predictors belonging to the
1257
           corresponding spectral coefficients are reset.
1258
        */
1259
        pns_reset_pred_state(ics1, hDecoder->pred_stat[cpe->channel]);
1260
        pns_reset_pred_state(ics2, hDecoder->pred_stat[cpe->paired_channel]);
1261
    }
1262
#endif
1263
1264
16.8k
#ifdef LTP_DEC
1265
16.8k
    if (is_ltp_ot(hDecoder->object_type))
1266
6.44k
    {
1267
6.44k
        ltp_info *ltp1 = &(ics1->ltp);
1268
6.44k
        ltp_info *ltp2 = (cpe->common_window) ? &(ics2->ltp2) : &(ics2->ltp);
1269
6.44k
#ifdef LD_DEC
1270
6.44k
        if (hDecoder->object_type == LD)
1271
449
        {
1272
449
            if (ltp1->data_present)
1273
43
            {
1274
43
                if (ltp1->lag_update)
1275
16
                    hDecoder->ltp_lag[cpe->channel] = ltp1->lag;
1276
43
            }
1277
449
            ltp1->lag = hDecoder->ltp_lag[cpe->channel];
1278
449
            if (ltp2->data_present)
1279
48
            {
1280
48
                if (ltp2->lag_update)
1281
28
                    hDecoder->ltp_lag[cpe->paired_channel] = ltp2->lag;
1282
48
            }
1283
449
            ltp2->lag = hDecoder->ltp_lag[cpe->paired_channel];
1284
449
        }
1285
6.44k
#endif
1286
1287
6.44k
        if (!hDecoder->lt_pred_stat[cpe->channel] || !hDecoder->lt_pred_stat[cpe->paired_channel])
1288
0
            return 34;
1289
1290
        /* long term prediction */
1291
6.44k
        lt_prediction(ics1, ltp1, spec_coef1, hDecoder->lt_pred_stat[cpe->channel], hDecoder->fb,
1292
6.44k
            ics1->window_shape, hDecoder->window_shape_prev[cpe->channel],
1293
6.44k
            hDecoder->sf_index, hDecoder->object_type, hDecoder->frameLength);
1294
6.44k
        lt_prediction(ics2, ltp2, spec_coef2, hDecoder->lt_pred_stat[cpe->paired_channel], hDecoder->fb,
1295
6.44k
            ics2->window_shape, hDecoder->window_shape_prev[cpe->paired_channel],
1296
6.44k
            hDecoder->sf_index, hDecoder->object_type, hDecoder->frameLength);
1297
6.44k
    }
1298
16.8k
#endif
1299
1300
    /* tns decoding */
1301
16.8k
    tns_decode_frame(ics1, &(ics1->tns), hDecoder->sf_index, hDecoder->object_type,
1302
16.8k
        spec_coef1, hDecoder->frameLength);
1303
16.8k
    tns_decode_frame(ics2, &(ics2->tns), hDecoder->sf_index, hDecoder->object_type,
1304
16.8k
        spec_coef2, hDecoder->frameLength);
1305
1306
    /* drc decoding */
1307
16.8k
#if APPLY_DRC
1308
16.8k
    if (hDecoder->drc->present)
1309
643
    {
1310
643
        if (!hDecoder->drc->exclude_mask[cpe->channel] || !hDecoder->drc->excluded_chns_present)
1311
572
            drc_decode(hDecoder->drc, spec_coef1);
1312
643
        if (!hDecoder->drc->exclude_mask[cpe->paired_channel] || !hDecoder->drc->excluded_chns_present)
1313
589
            drc_decode(hDecoder->drc, spec_coef2);
1314
643
    }
1315
16.8k
#endif
1316
    /* filter bank */
1317
#ifdef SSR_DEC
1318
    if (hDecoder->object_type != SSR)
1319
    {
1320
#endif
1321
16.8k
        ifilter_bank(hDecoder->fb, ics1->window_sequence, ics1->window_shape,
1322
16.8k
            hDecoder->window_shape_prev[cpe->channel], spec_coef1,
1323
16.8k
            hDecoder->time_out[cpe->channel], hDecoder->fb_intermed[cpe->channel],
1324
16.8k
            hDecoder->object_type, hDecoder->frameLength);
1325
16.8k
        ifilter_bank(hDecoder->fb, ics2->window_sequence, ics2->window_shape,
1326
16.8k
            hDecoder->window_shape_prev[cpe->paired_channel], spec_coef2,
1327
16.8k
            hDecoder->time_out[cpe->paired_channel], hDecoder->fb_intermed[cpe->paired_channel],
1328
16.8k
            hDecoder->object_type, hDecoder->frameLength);
1329
#ifdef SSR_DEC
1330
    } else {
1331
        ssr_decode(&(ics1->ssr), hDecoder->fb, ics1->window_sequence, ics1->window_shape,
1332
            hDecoder->window_shape_prev[cpe->channel], spec_coef1, hDecoder->time_out[cpe->channel],
1333
            hDecoder->ssr_overlap[cpe->channel], hDecoder->ipqf_buffer[cpe->channel],
1334
            hDecoder->prev_fmd[cpe->channel], hDecoder->frameLength);
1335
        ssr_decode(&(ics2->ssr), hDecoder->fb, ics2->window_sequence, ics2->window_shape,
1336
            hDecoder->window_shape_prev[cpe->paired_channel], spec_coef2, hDecoder->time_out[cpe->paired_channel],
1337
            hDecoder->ssr_overlap[cpe->paired_channel], hDecoder->ipqf_buffer[cpe->paired_channel],
1338
            hDecoder->prev_fmd[cpe->paired_channel], hDecoder->frameLength);
1339
    }
1340
#endif
1341
1342
    /* save window shape for next frame */
1343
16.8k
    hDecoder->window_shape_prev[cpe->channel] = ics1->window_shape;
1344
16.8k
    hDecoder->window_shape_prev[cpe->paired_channel] = ics2->window_shape;
1345
1346
16.8k
#ifdef LTP_DEC
1347
16.8k
    if (is_ltp_ot(hDecoder->object_type))
1348
6.44k
    {
1349
6.44k
        lt_update_state(hDecoder->lt_pred_stat[cpe->channel], hDecoder->time_out[cpe->channel],
1350
6.44k
            hDecoder->fb_intermed[cpe->channel], hDecoder->frameLength, hDecoder->object_type);
1351
6.44k
        lt_update_state(hDecoder->lt_pred_stat[cpe->paired_channel], hDecoder->time_out[cpe->paired_channel],
1352
6.44k
            hDecoder->fb_intermed[cpe->paired_channel], hDecoder->frameLength, hDecoder->object_type);
1353
6.44k
    }
1354
16.8k
#endif
1355
1356
16.8k
#ifdef SBR_DEC
1357
16.8k
    if (((hDecoder->sbr_present_flag == 1) || (hDecoder->forceUpSampling == 1))
1358
15.1k
        && hDecoder->sbr_alloced[hDecoder->fr_ch_ele])
1359
15.1k
    {
1360
15.1k
        int ele = hDecoder->fr_ch_ele;
1361
15.1k
        int ch0 = cpe->channel;
1362
15.1k
        int ch1 = cpe->paired_channel;
1363
1364
        /* following case can happen when forceUpSampling == 1 */
1365
15.1k
        if (hDecoder->sbr[ele] == NULL)
1366
5.04k
        {
1367
5.04k
            hDecoder->sbr[ele] = sbrDecodeInit(hDecoder->frameLength,
1368
5.04k
                hDecoder->element_id[ele], 2*get_sample_rate(hDecoder->sf_index),
1369
5.04k
                hDecoder->downSampledSBR
1370
#ifdef DRM
1371
                , 0
1372
#endif
1373
5.04k
                );
1374
5.04k
        }
1375
15.1k
        if (!hDecoder->sbr[ele])
1376
0
            return 19;
1377
1378
15.1k
        if (cpe->ics1.window_sequence == EIGHT_SHORT_SEQUENCE)
1379
506
            hDecoder->sbr[ele]->maxAACLine = 8*min(cpe->ics1.swb_offset[max(cpe->ics1.max_sfb-1, 0)], cpe->ics1.swb_offset_max);
1380
14.6k
        else
1381
14.6k
            hDecoder->sbr[ele]->maxAACLine = min(cpe->ics1.swb_offset[max(cpe->ics1.max_sfb-1, 0)], cpe->ics1.swb_offset_max);
1382
1383
15.1k
        retval = sbrDecodeCoupleFrame(hDecoder->sbr[ele],
1384
15.1k
            hDecoder->time_out[ch0], hDecoder->time_out[ch1],
1385
15.1k
            hDecoder->postSeekResetFlag, hDecoder->downSampledSBR);
1386
15.1k
        if (retval > 0)
1387
0
            return retval;
1388
15.1k
    } else if (((hDecoder->sbr_present_flag == 1) || (hDecoder->forceUpSampling == 1))
1389
0
        && !hDecoder->sbr_alloced[hDecoder->fr_ch_ele])
1390
0
    {
1391
0
        return 23;
1392
0
    }
1393
16.8k
#endif
1394
1395
16.8k
    return 0;
1396
16.8k
}