Coverage Report

Created: 2026-02-26 06:56

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/proc/self/cwd/libfaad/syntax.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: syntax.c,v 1.93 2009/01/26 23:51:15 menno Exp $
29
**/
30
31
/*
32
   Reads the AAC bitstream as defined in 14496-3 (MPEG-4 Audio)
33
*/
34
35
#include "common.h"
36
#include "structs.h"
37
38
#include <stdlib.h>
39
#include <stdio.h>
40
41
#include "syntax.h"
42
#include "specrec.h"
43
#include "huffman.h"
44
#include "bits.h"
45
#include "pulse.h"
46
#include "analysis.h"
47
#include "drc.h"
48
#ifdef ERROR_RESILIENCE
49
#include "rvlc.h"
50
#endif
51
#ifdef SBR_DEC
52
#include "sbr_syntax.h"
53
#endif
54
#include "mp4.h"
55
56
57
/* static function declarations */
58
static void decode_sce_lfe(NeAACDecStruct *hDecoder, NeAACDecFrameInfo *hInfo, bitfile *ld,
59
                           uint8_t id_syn_ele);
60
static void decode_cpe(NeAACDecStruct *hDecoder, NeAACDecFrameInfo *hInfo, bitfile *ld,
61
                       uint8_t id_syn_ele);
62
static uint8_t single_lfe_channel_element(NeAACDecStruct *hDecoder, bitfile *ld,
63
                                          uint8_t channel, uint8_t *tag);
64
static uint8_t channel_pair_element(NeAACDecStruct *hDecoder, bitfile *ld,
65
                                    uint8_t channel, uint8_t *tag);
66
#ifdef COUPLING_DEC
67
static uint8_t coupling_channel_element(NeAACDecStruct *hDecoder, bitfile *ld);
68
#endif
69
static uint16_t data_stream_element(NeAACDecStruct *hDecoder, bitfile *ld);
70
static uint8_t program_config_element(program_config *pce, bitfile *ld);
71
static uint8_t fill_element(NeAACDecStruct *hDecoder, bitfile *ld, drc_info *drc
72
#ifdef SBR_DEC
73
                            ,uint8_t sbr_ele
74
#endif
75
                            );
76
static uint8_t individual_channel_stream(NeAACDecStruct *hDecoder, element *ele,
77
                                         bitfile *ld, ic_stream *ics, uint8_t scal_flag,
78
                                         int16_t *spec_data);
79
static uint8_t ics_info(NeAACDecStruct *hDecoder, ic_stream *ics, bitfile *ld,
80
                        uint8_t common_window);
81
static uint8_t section_data(NeAACDecStruct *hDecoder, ic_stream *ics, bitfile *ld);
82
static uint8_t scale_factor_data(NeAACDecStruct *hDecoder, ic_stream *ics, bitfile *ld);
83
#ifdef SSR_DEC
84
static void gain_control_data(bitfile *ld, ic_stream *ics);
85
#endif
86
static uint8_t spectral_data(NeAACDecStruct *hDecoder, ic_stream *ics, bitfile *ld,
87
                             int16_t *spectral_data);
88
static uint8_t pulse_data(ic_stream *ics, pulse_info *pul, bitfile *ld);
89
static void tns_data(ic_stream *ics, tns_info *tns, bitfile *ld);
90
#ifdef LTP_DEC
91
static uint8_t ltp_data(NeAACDecStruct *hDecoder, ic_stream *ics, ltp_info *ltp, bitfile *ld);
92
#endif
93
static uint8_t adts_fixed_header(adts_header *adts, bitfile *ld);
94
static void adts_variable_header(adts_header *adts, bitfile *ld);
95
static void adts_error_check(adts_header *adts, bitfile *ld);
96
static uint8_t side_info(NeAACDecStruct *hDecoder, element *ele,
97
                         bitfile *ld, ic_stream *ics, uint8_t scal_flag);
98
#ifdef DRM
99
static int8_t DRM_aac_scalable_main_header(NeAACDecStruct *hDecoder, ic_stream *ics1, ic_stream *ics2,
100
                                           bitfile *ld, uint8_t this_layer_stereo);
101
#else
102
static uint16_t extension_payload(bitfile *ld, drc_info *drc, uint16_t count);
103
static uint8_t dynamic_range_info(bitfile *ld, drc_info *drc);
104
static uint8_t excluded_channels(bitfile *ld, drc_info *drc);
105
#endif
106
107
108
/* Table 4.4.1 */
109
int8_t GASpecificConfig(bitfile *ld, mp4AudioSpecificConfig *mp4ASC,
110
                        program_config *pce_out)
111
2.42k
{
112
2.42k
    program_config pce;
113
114
    /* 1024 or 960 */
115
2.42k
    mp4ASC->frameLengthFlag = faad_get1bit(ld
116
2.42k
        DEBUGVAR(1,138,"GASpecificConfig(): FrameLengthFlag"));
117
#ifndef ALLOW_SMALL_FRAMELENGTH
118
    if (mp4ASC->frameLengthFlag == 1)
119
        return -3;
120
#endif
121
122
2.42k
    mp4ASC->dependsOnCoreCoder = faad_get1bit(ld
123
2.42k
        DEBUGVAR(1,139,"GASpecificConfig(): DependsOnCoreCoder"));
124
2.42k
    if (mp4ASC->dependsOnCoreCoder == 1)
125
588
    {
126
588
        mp4ASC->coreCoderDelay = (uint16_t)faad_getbits(ld, 14
127
588
            DEBUGVAR(1,140,"GASpecificConfig(): CoreCoderDelay"));
128
588
    }
129
130
2.42k
    mp4ASC->extensionFlag = faad_get1bit(ld DEBUGVAR(1,141,"GASpecificConfig(): ExtensionFlag"));
131
2.42k
    if (mp4ASC->channelsConfiguration == 0)
132
419
    {
133
419
        if (program_config_element(&pce, ld))
134
2
            return -3;
135
        //mp4ASC->channelsConfiguration = pce.channels;
136
137
417
        if (pce_out != NULL)
138
417
            memcpy(pce_out, &pce, sizeof(program_config));
139
140
        /*
141
        if (pce.num_valid_cc_elements)
142
            return -3;
143
        */
144
417
    }
145
146
2.42k
#ifdef ERROR_RESILIENCE
147
2.42k
    if (mp4ASC->extensionFlag == 1)
148
1.63k
    {
149
        /* Error resilience not supported yet */
150
1.63k
        if (mp4ASC->objectTypeIndex >= ER_OBJECT_START)
151
1.40k
        {
152
1.40k
            mp4ASC->aacSectionDataResilienceFlag = faad_get1bit(ld
153
1.40k
                DEBUGVAR(1,144,"GASpecificConfig(): aacSectionDataResilienceFlag"));
154
1.40k
            mp4ASC->aacScalefactorDataResilienceFlag = faad_get1bit(ld
155
1.40k
                DEBUGVAR(1,145,"GASpecificConfig(): aacScalefactorDataResilienceFlag"));
156
1.40k
            mp4ASC->aacSpectralDataResilienceFlag = faad_get1bit(ld
157
1.40k
                DEBUGVAR(1,146,"GASpecificConfig(): aacSpectralDataResilienceFlag"));
158
1.40k
        }
159
        /* 1 bit: extensionFlag3 */
160
1.63k
        faad_getbits(ld, 1);
161
1.63k
  }
162
2.42k
#endif
163
164
2.42k
    return 0;
165
2.42k
}
166
167
/* Table 4.4.2 */
168
/* An MPEG-4 Audio decoder is only required to follow the Program
169
   Configuration Element in GASpecificConfig(). The decoder shall ignore
170
   any Program Configuration Elements that may occur in raw data blocks.
171
   PCEs transmitted in raw data blocks cannot be used to convey decoder
172
   configuration information.
173
*/
174
static uint8_t program_config_element(program_config *pce, bitfile *ld)
175
1.99k
{
176
1.99k
    uint8_t i;
177
178
1.99k
    memset(pce, 0, sizeof(program_config));
179
180
1.99k
    pce->channels = 0;
181
182
1.99k
    pce->element_instance_tag = (uint8_t)faad_getbits(ld, 4
183
1.99k
        DEBUGVAR(1,10,"program_config_element(): element_instance_tag"));
184
185
1.99k
    pce->object_type = (uint8_t)faad_getbits(ld, 2
186
1.99k
        DEBUGVAR(1,11,"program_config_element(): object_type"));
187
1.99k
    pce->sf_index = (uint8_t)faad_getbits(ld, 4
188
1.99k
        DEBUGVAR(1,12,"program_config_element(): sf_index"));
189
1.99k
    pce->num_front_channel_elements = (uint8_t)faad_getbits(ld, 4
190
1.99k
        DEBUGVAR(1,13,"program_config_element(): num_front_channel_elements"));
191
1.99k
    pce->num_side_channel_elements = (uint8_t)faad_getbits(ld, 4
192
1.99k
        DEBUGVAR(1,14,"program_config_element(): num_side_channel_elements"));
193
1.99k
    pce->num_back_channel_elements = (uint8_t)faad_getbits(ld, 4
194
1.99k
        DEBUGVAR(1,15,"program_config_element(): num_back_channel_elements"));
195
1.99k
    pce->num_lfe_channel_elements = (uint8_t)faad_getbits(ld, 2
196
1.99k
        DEBUGVAR(1,16,"program_config_element(): num_lfe_channel_elements"));
197
1.99k
    pce->num_assoc_data_elements = (uint8_t)faad_getbits(ld, 3
198
1.99k
        DEBUGVAR(1,17,"program_config_element(): num_assoc_data_elements"));
199
1.99k
    pce->num_valid_cc_elements = (uint8_t)faad_getbits(ld, 4
200
1.99k
        DEBUGVAR(1,18,"program_config_element(): num_valid_cc_elements"));
201
202
1.99k
    pce->mono_mixdown_present = faad_get1bit(ld
203
1.99k
        DEBUGVAR(1,19,"program_config_element(): mono_mixdown_present"));
204
1.99k
    if (pce->mono_mixdown_present == 1)
205
362
    {
206
362
        pce->mono_mixdown_element_number = (uint8_t)faad_getbits(ld, 4
207
362
            DEBUGVAR(1,20,"program_config_element(): mono_mixdown_element_number"));
208
362
    }
209
210
1.99k
    pce->stereo_mixdown_present = faad_get1bit(ld
211
1.99k
        DEBUGVAR(1,21,"program_config_element(): stereo_mixdown_present"));
212
1.99k
    if (pce->stereo_mixdown_present == 1)
213
307
    {
214
307
        pce->stereo_mixdown_element_number = (uint8_t)faad_getbits(ld, 4
215
307
            DEBUGVAR(1,22,"program_config_element(): stereo_mixdown_element_number"));
216
307
    }
217
218
1.99k
    pce->matrix_mixdown_idx_present = faad_get1bit(ld
219
1.99k
        DEBUGVAR(1,23,"program_config_element(): matrix_mixdown_idx_present"));
220
1.99k
    if (pce->matrix_mixdown_idx_present == 1)
221
252
    {
222
252
        pce->matrix_mixdown_idx = (uint8_t)faad_getbits(ld, 2
223
252
            DEBUGVAR(1,24,"program_config_element(): matrix_mixdown_idx"));
224
252
        pce->pseudo_surround_enable = faad_get1bit(ld
225
252
            DEBUGVAR(1,25,"program_config_element(): pseudo_surround_enable"));
226
252
    }
227
228
8.19k
    for (i = 0; i < pce->num_front_channel_elements; i++)
229
6.19k
    {
230
6.19k
        pce->front_element_is_cpe[i] = faad_get1bit(ld
231
6.19k
            DEBUGVAR(1,26,"program_config_element(): front_element_is_cpe"));
232
6.19k
        pce->front_element_tag_select[i] = (uint8_t)faad_getbits(ld, 4
233
6.19k
            DEBUGVAR(1,27,"program_config_element(): front_element_tag_select"));
234
235
6.19k
        if (pce->front_element_is_cpe[i] & 1)
236
1.79k
        {
237
1.79k
            pce->cpe_channel[pce->front_element_tag_select[i]] = pce->channels;
238
1.79k
            pce->num_front_channels += 2;
239
1.79k
            pce->channels += 2;
240
4.39k
        } else {
241
4.39k
            pce->sce_channel[pce->front_element_tag_select[i]] = pce->channels;
242
4.39k
            pce->num_front_channels++;
243
4.39k
            pce->channels++;
244
4.39k
        }
245
6.19k
    }
246
247
7.94k
    for (i = 0; i < pce->num_side_channel_elements; i++)
248
5.94k
    {
249
5.94k
        pce->side_element_is_cpe[i] = faad_get1bit(ld
250
5.94k
            DEBUGVAR(1,28,"program_config_element(): side_element_is_cpe"));
251
5.94k
        pce->side_element_tag_select[i] = (uint8_t)faad_getbits(ld, 4
252
5.94k
            DEBUGVAR(1,29,"program_config_element(): side_element_tag_select"));
253
254
5.94k
        if (pce->side_element_is_cpe[i] & 1)
255
1.44k
        {
256
1.44k
            pce->cpe_channel[pce->side_element_tag_select[i]] = pce->channels;
257
1.44k
            pce->num_side_channels += 2;
258
1.44k
            pce->channels += 2;
259
4.50k
        } else {
260
4.50k
            pce->sce_channel[pce->side_element_tag_select[i]] = pce->channels;
261
4.50k
            pce->num_side_channels++;
262
4.50k
            pce->channels++;
263
4.50k
        }
264
5.94k
    }
265
266
7.85k
    for (i = 0; i < pce->num_back_channel_elements; i++)
267
5.86k
    {
268
5.86k
        pce->back_element_is_cpe[i] = faad_get1bit(ld
269
5.86k
            DEBUGVAR(1,30,"program_config_element(): back_element_is_cpe"));
270
5.86k
        pce->back_element_tag_select[i] = (uint8_t)faad_getbits(ld, 4
271
5.86k
            DEBUGVAR(1,31,"program_config_element(): back_element_tag_select"));
272
273
5.86k
        if (pce->back_element_is_cpe[i] & 1)
274
1.51k
        {
275
1.51k
            pce->cpe_channel[pce->back_element_tag_select[i]] = pce->channels;
276
1.51k
            pce->channels += 2;
277
1.51k
            pce->num_back_channels += 2;
278
4.34k
        } else {
279
4.34k
            pce->sce_channel[pce->back_element_tag_select[i]] = pce->channels;
280
4.34k
            pce->num_back_channels++;
281
4.34k
            pce->channels++;
282
4.34k
        }
283
5.86k
    }
284
285
3.25k
    for (i = 0; i < pce->num_lfe_channel_elements; i++)
286
1.25k
    {
287
1.25k
        pce->lfe_element_tag_select[i] = (uint8_t)faad_getbits(ld, 4
288
1.25k
            DEBUGVAR(1,32,"program_config_element(): lfe_element_tag_select"));
289
290
1.25k
        pce->sce_channel[pce->lfe_element_tag_select[i]] = pce->channels;
291
1.25k
        pce->num_lfe_channels++;
292
1.25k
        pce->channels++;
293
1.25k
    }
294
295
3.97k
    for (i = 0; i < pce->num_assoc_data_elements; i++)
296
1.97k
        pce->assoc_data_element_tag_select[i] = (uint8_t)faad_getbits(ld, 4
297
1.97k
        DEBUGVAR(1,33,"program_config_element(): assoc_data_element_tag_select"));
298
299
6.29k
    for (i = 0; i < pce->num_valid_cc_elements; i++)
300
4.29k
    {
301
4.29k
        pce->cc_element_is_ind_sw[i] = faad_get1bit(ld
302
4.29k
            DEBUGVAR(1,34,"program_config_element(): cc_element_is_ind_sw"));
303
4.29k
        pce->valid_cc_element_tag_select[i] = (uint8_t)faad_getbits(ld, 4
304
4.29k
            DEBUGVAR(1,35,"program_config_element(): valid_cc_element_tag_select"));
305
4.29k
    }
306
307
1.99k
    faad_byte_align(ld);
308
309
1.99k
    pce->comment_field_bytes = (uint8_t)faad_getbits(ld, 8
310
1.99k
        DEBUGVAR(1,36,"program_config_element(): comment_field_bytes"));
311
312
20.4k
    for (i = 0; i < pce->comment_field_bytes; i++)
313
18.4k
    {
314
18.4k
        pce->comment_field_data[i] = (uint8_t)faad_getbits(ld, 8
315
18.4k
            DEBUGVAR(1,37,"program_config_element(): comment_field_data"));
316
18.4k
    }
317
1.99k
    pce->comment_field_data[i] = 0;
318
319
1.99k
    if (pce->channels > MAX_CHANNELS)
320
83
        return 22;
321
322
1.91k
    return 0;
323
1.99k
}
324
325
static void decode_sce_lfe(NeAACDecStruct *hDecoder,
326
                           NeAACDecFrameInfo *hInfo, bitfile *ld,
327
                           uint8_t id_syn_ele)
328
115k
{
329
115k
    uint8_t channels = hDecoder->fr_channels;
330
115k
    uint8_t tag = 0;
331
332
    /* One or two channels are used;
333
       exact number will be known after single_lfe_channel_element
334
    */
335
115k
    if (channels+2 > MAX_CHANNELS)
336
3.40k
    {
337
3.40k
        hInfo->error = 12;
338
3.40k
        return;
339
3.40k
    }
340
112k
    if (hDecoder->fr_ch_ele+1 > MAX_SYNTAX_ELEMENTS)
341
0
    {
342
0
        hInfo->error = 13;
343
0
        return;
344
0
    }
345
346
    /* for SCE hDecoder->element_output_channels[] is not set here because this
347
       can become 2 when some form of Parametric Stereo coding is used
348
    */
349
350
112k
    if (hDecoder->element_id[hDecoder->fr_ch_ele] != INVALID_ELEMENT_ID &&
351
14.7k
        hDecoder->element_id[hDecoder->fr_ch_ele] != id_syn_ele)
352
74
    {
353
        /* element inconsistency */
354
74
        hInfo->error = 21;
355
74
        return;
356
74
    }
357
358
    /* save the syntax element id */
359
112k
    hDecoder->element_id[hDecoder->fr_ch_ele] = id_syn_ele;
360
361
    /* decode the element */
362
112k
    hInfo->error = single_lfe_channel_element(hDecoder, ld, channels, &tag);
363
364
    /* map output channels position to internal data channels */
365
112k
    if (hDecoder->element_output_channels[hDecoder->fr_ch_ele] == 2)
366
111k
    {
367
        /* this might be faulty when pce_set is true */
368
111k
        hDecoder->internal_channel[channels] = channels;
369
111k
        hDecoder->internal_channel[channels+1] = channels+1;
370
111k
    } else {
371
620
        if (hDecoder->pce_set)
372
52
        {
373
52
            if (hDecoder->pce.channels > MAX_CHANNELS)
374
3
            {
375
3
                hInfo->error = 22;
376
3
                return;
377
3
            }
378
49
            hDecoder->internal_channel[hDecoder->pce.sce_channel[tag]] = channels;
379
568
        } else {
380
568
            hDecoder->internal_channel[channels] = channels;
381
568
        }
382
620
    }
383
384
112k
    hDecoder->fr_channels += hDecoder->element_output_channels[hDecoder->fr_ch_ele];
385
112k
    hDecoder->fr_ch_ele++;
386
112k
}
387
388
static void decode_cpe(NeAACDecStruct *hDecoder, NeAACDecFrameInfo *hInfo, bitfile *ld,
389
                       uint8_t id_syn_ele)
390
21.4k
{
391
21.4k
    uint8_t channels = hDecoder->fr_channels;
392
21.4k
    uint8_t tag = 0;
393
394
21.4k
    if (channels+2 > MAX_CHANNELS)
395
154
    {
396
154
        hInfo->error = 12;
397
154
        return;
398
154
    }
399
21.3k
    if (hDecoder->fr_ch_ele+1 > MAX_SYNTAX_ELEMENTS)
400
0
    {
401
0
        hInfo->error = 13;
402
0
        return;
403
0
    }
404
21.3k
    if (hDecoder->pce_set && (hDecoder->pce.channels > MAX_CHANNELS))
405
3
    {
406
3
        hInfo->error = 22;
407
3
        return;
408
3
    }
409
410
    /* for CPE the number of output channels is always 2 */
411
21.3k
    if (hDecoder->element_output_channels[hDecoder->fr_ch_ele] == 0)
412
17.9k
    {
413
        /* element_output_channels not set yet */
414
17.9k
        hDecoder->element_output_channels[hDecoder->fr_ch_ele] = 2;
415
17.9k
    } else if (hDecoder->element_output_channels[hDecoder->fr_ch_ele] != 2) {
416
        /* element inconsistency */
417
0
        hInfo->error = 21;
418
0
        return;
419
0
    }
420
421
21.3k
    if (hDecoder->element_id[hDecoder->fr_ch_ele] != INVALID_ELEMENT_ID &&
422
3.37k
        hDecoder->element_id[hDecoder->fr_ch_ele] != id_syn_ele)
423
46
    {
424
        /* element inconsistency */
425
46
        hInfo->error = 21;
426
46
        return;
427
46
    }
428
429
    /* save the syntax element id */
430
21.2k
    hDecoder->element_id[hDecoder->fr_ch_ele] = id_syn_ele;
431
432
    /* decode the element */
433
21.2k
    hInfo->error = channel_pair_element(hDecoder, ld, channels, &tag);
434
435
    /* map output channel position to internal data channels */
436
21.2k
    if (hDecoder->pce_set)
437
1.29k
    {
438
1.29k
        hDecoder->internal_channel[hDecoder->pce.cpe_channel[tag]] = channels;
439
1.29k
        hDecoder->internal_channel[hDecoder->pce.cpe_channel[tag]+1] = channels+1;
440
20.0k
    } else {
441
20.0k
        hDecoder->internal_channel[channels] = channels;
442
20.0k
        hDecoder->internal_channel[channels+1] = channels+1;
443
20.0k
    }
444
445
21.2k
    hDecoder->fr_channels += 2;
446
21.2k
    hDecoder->fr_ch_ele++;
447
21.2k
}
448
449
void raw_data_block(NeAACDecStruct *hDecoder, NeAACDecFrameInfo *hInfo,
450
                    bitfile *ld, program_config *pce, drc_info *drc)
451
8.39k
{
452
8.39k
    uint8_t id_syn_ele;
453
8.39k
    uint8_t ele_this_frame = 0;
454
455
8.39k
    hDecoder->fr_channels = 0;
456
8.39k
    hDecoder->fr_ch_ele = 0;
457
8.39k
    hDecoder->first_syn_ele = 25;
458
8.39k
    hDecoder->has_lfe = 0;
459
460
8.39k
#ifdef ERROR_RESILIENCE
461
8.39k
    if (hDecoder->object_type < ER_OBJECT_START)
462
5.47k
    {
463
5.47k
#endif
464
        /* Table 4.4.3: raw_data_block() */
465
499k
        while ((id_syn_ele = (uint8_t)faad_getbits(ld, LEN_SE_ID
466
499k
            DEBUGVAR(1,4,"NeAACDecDecode(): id_syn_ele"))) != ID_END)
467
498k
        {
468
498k
            switch (id_syn_ele) {
469
112k
            case ID_SCE:
470
112k
                ele_this_frame++;
471
112k
                if (hDecoder->first_syn_ele == 25) hDecoder->first_syn_ele = id_syn_ele;
472
112k
                decode_sce_lfe(hDecoder, hInfo, ld, id_syn_ele);
473
112k
                if (hInfo->error > 0)
474
3.94k
                    return;
475
108k
                break;
476
108k
            case ID_CPE:
477
17.5k
                ele_this_frame++;
478
17.5k
                if (hDecoder->first_syn_ele == 25) hDecoder->first_syn_ele = id_syn_ele;
479
17.5k
                decode_cpe(hDecoder, hInfo, ld, id_syn_ele);
480
17.5k
                if (hInfo->error > 0)
481
556
                    return;
482
16.9k
                break;
483
16.9k
            case ID_LFE:
484
63
#ifdef DRM
485
63
                hInfo->error = 32;
486
#else
487
                ele_this_frame++;
488
                hDecoder->has_lfe++;
489
                decode_sce_lfe(hDecoder, hInfo, ld, id_syn_ele);
490
#endif
491
63
                if (hInfo->error > 0)
492
63
                    return;
493
0
                break;
494
119
            case ID_CCE: /* not implemented yet, but skip the bits */
495
119
#ifdef DRM
496
119
                hInfo->error = 32;
497
#else
498
                ele_this_frame++;
499
#ifdef COUPLING_DEC
500
                hInfo->error = coupling_channel_element(hDecoder, ld);
501
#else
502
                hInfo->error = 6;
503
#endif
504
#endif
505
119
                if (hInfo->error > 0)
506
119
                    return;
507
0
                break;
508
365k
            case ID_DSE:
509
365k
                ele_this_frame++;
510
365k
                data_stream_element(hDecoder, ld);
511
365k
                break;
512
318
            case ID_PCE:
513
318
                if (ele_this_frame != 0)
514
85
                {
515
85
                    hInfo->error = 31;
516
85
                    return;
517
85
                }
518
233
                ele_this_frame++;
519
                /* 14496-4: 5.6.4.1.2.1.3: */
520
                /* program_configuration_element()'s in access units shall be ignored */
521
233
                program_config_element(pce, ld);
522
                //if ((hInfo->error = program_config_element(pce, ld)) > 0)
523
                //    return;
524
                //hDecoder->pce_set = 1;
525
233
                break;
526
1.70k
            case ID_FIL:
527
1.70k
                ele_this_frame++;
528
                /* one sbr_info describes a channel_element not a channel! */
529
                /* if we encounter SBR data here: error */
530
                /* SBR data will be read directly in the SCE/LFE/CPE element */
531
1.70k
                if ((hInfo->error = fill_element(hDecoder, ld, drc
532
1.70k
#ifdef SBR_DEC
533
1.70k
                    , INVALID_SBR_ELEMENT
534
1.70k
#endif
535
1.70k
                    )) > 0)
536
105
                    return;
537
1.59k
                break;
538
498k
            }
539
493k
            if (ld->error != 0)
540
0
            {
541
0
                hInfo->error = 32;
542
0
                return;
543
0
            }
544
493k
        }
545
5.47k
#ifdef ERROR_RESILIENCE
546
5.47k
    } else {
547
        /* Table 262: er_raw_data_block() */
548
2.91k
        switch (hDecoder->channelConfiguration)
549
2.91k
        {
550
0
        case 1:
551
0
            decode_sce_lfe(hDecoder, hInfo, ld, ID_SCE);
552
0
            if (hInfo->error > 0)
553
0
                return;
554
0
            break;
555
1.13k
        case 2:
556
1.13k
            decode_cpe(hDecoder, hInfo, ld, ID_CPE);
557
1.13k
            if (hInfo->error > 0)
558
211
                return;
559
924
            break;
560
924
        case 3:
561
149
            decode_sce_lfe(hDecoder, hInfo, ld, ID_SCE);
562
149
            if (hInfo->error > 0)
563
15
                return;
564
134
            decode_cpe(hDecoder, hInfo, ld, ID_CPE);
565
134
            if (hInfo->error > 0)
566
15
                return;
567
119
            break;
568
470
        case 4:
569
470
            decode_sce_lfe(hDecoder, hInfo, ld, ID_SCE);
570
470
            if (hInfo->error > 0)
571
62
                return;
572
408
            decode_cpe(hDecoder, hInfo, ld, ID_CPE);
573
408
            if (hInfo->error > 0)
574
16
                return;
575
392
            decode_sce_lfe(hDecoder, hInfo, ld, ID_SCE);
576
392
            if (hInfo->error > 0)
577
5
                return;
578
387
            break;
579
642
        case 5:
580
642
            decode_sce_lfe(hDecoder, hInfo, ld, ID_SCE);
581
642
            if (hInfo->error > 0)
582
121
                return;
583
521
            decode_cpe(hDecoder, hInfo, ld, ID_CPE);
584
521
            if (hInfo->error > 0)
585
16
                return;
586
505
            decode_cpe(hDecoder, hInfo, ld, ID_CPE);
587
505
            if (hInfo->error > 0)
588
4
                return;
589
501
            break;
590
501
        case 6:
591
122
            decode_sce_lfe(hDecoder, hInfo, ld, ID_SCE);
592
122
            if (hInfo->error > 0)
593
18
                return;
594
104
            decode_cpe(hDecoder, hInfo, ld, ID_CPE);
595
104
            if (hInfo->error > 0)
596
6
                return;
597
98
            decode_cpe(hDecoder, hInfo, ld, ID_CPE);
598
98
            if (hInfo->error > 0)
599
3
                return;
600
95
            decode_sce_lfe(hDecoder, hInfo, ld, ID_LFE);
601
95
            if (hInfo->error > 0)
602
16
                return;
603
79
            break;
604
395
        case 7: /* 8 channels */
605
395
            decode_sce_lfe(hDecoder, hInfo, ld, ID_SCE);
606
395
            if (hInfo->error > 0)
607
21
                return;
608
374
            decode_cpe(hDecoder, hInfo, ld, ID_CPE);
609
374
            if (hInfo->error > 0)
610
18
                return;
611
356
            decode_cpe(hDecoder, hInfo, ld, ID_CPE);
612
356
            if (hInfo->error > 0)
613
7
                return;
614
349
            decode_cpe(hDecoder, hInfo, ld, ID_CPE);
615
349
            if (hInfo->error > 0)
616
31
                return;
617
318
            decode_sce_lfe(hDecoder, hInfo, ld, ID_LFE);
618
318
            if (hInfo->error > 0)
619
22
                return;
620
296
            break;
621
296
        default:
622
3
            hInfo->error = 7;
623
3
            return;
624
2.91k
        }
625
#if 0
626
        cnt = bits_to_decode() / 8;
627
        while (cnt >= 1)
628
        {
629
            cnt -= extension_payload(cnt);
630
        }
631
#endif
632
2.91k
    }
633
2.91k
#endif
634
635
    /* new in corrigendum 14496-3:2002 */
636
2.91k
#ifdef DRM
637
2.91k
    if (hDecoder->object_type != DRM_ER_LC
638
#if 0
639
        && !hDecoder->latm_header_present
640
#endif
641
2.91k
        )
642
2.91k
#endif
643
2.91k
    {
644
2.91k
        faad_byte_align(ld);
645
2.91k
    }
646
647
2.91k
    return;
648
8.39k
}
649
650
/* Table 4.4.4 and */
651
/* Table 4.4.9 */
652
static uint8_t single_lfe_channel_element(NeAACDecStruct *hDecoder, bitfile *ld,
653
                                          uint8_t channel, uint8_t *tag)
654
112k
{
655
112k
    uint8_t retval = 0;
656
112k
    element sce = {0};
657
112k
    ic_stream *ics = &(sce.ics1);
658
112k
    ALIGN int16_t spec_data[1024] = {0};
659
660
112k
    sce.element_instance_tag = (uint8_t)faad_getbits(ld, LEN_TAG
661
112k
        DEBUGVAR(1,38,"single_lfe_channel_element(): element_instance_tag"));
662
663
112k
    *tag = sce.element_instance_tag;
664
112k
    sce.channel = channel;
665
112k
    sce.paired_channel = -1;
666
667
112k
    retval = individual_channel_stream(hDecoder, &sce, ld, ics, 0, spec_data);
668
112k
    if (retval > 0)
669
562
        return retval;
670
671
    /* IS not allowed in single channel */
672
111k
    if (ics->is_used)
673
80
        return 32;
674
675
111k
#ifdef SBR_DEC
676
    /* check if next bitstream element is a fill element */
677
    /* if so, read it now so SBR decoding can be done in case of a file with SBR */
678
111k
    if (faad_showbits(ld, LEN_SE_ID) == ID_FIL)
679
13.0k
    {
680
13.0k
        faad_flushbits(ld, LEN_SE_ID);
681
682
        /* one sbr_info describes a channel_element not a channel! */
683
13.0k
        if ((retval = fill_element(hDecoder, ld, hDecoder->drc, hDecoder->fr_ch_ele)) > 0)
684
35
        {
685
35
            return retval;
686
35
        }
687
13.0k
    }
688
111k
#endif
689
690
    /* noiseless coding is done, spectral reconstruction is done now */
691
111k
    retval = reconstruct_single_channel(hDecoder, ics, &sce, spec_data);
692
111k
    if (retval > 0)
693
69
        return retval;
694
695
111k
    return 0;
696
111k
}
697
698
/* Table 4.4.5 */
699
static uint8_t channel_pair_element(NeAACDecStruct *hDecoder, bitfile *ld,
700
                                    uint8_t channels, uint8_t *tag)
701
21.2k
{
702
21.2k
    ALIGN int16_t spec_data1[1024] = {0};
703
21.2k
    ALIGN int16_t spec_data2[1024] = {0};
704
21.2k
    element cpe = {0};
705
21.2k
    ic_stream *ics1 = &(cpe.ics1);
706
21.2k
    ic_stream *ics2 = &(cpe.ics2);
707
21.2k
    uint8_t result;
708
709
21.2k
    cpe.channel        = channels;
710
21.2k
    cpe.paired_channel = channels+1;
711
712
21.2k
    cpe.element_instance_tag = (uint8_t)faad_getbits(ld, LEN_TAG
713
21.2k
        DEBUGVAR(1,39,"channel_pair_element(): element_instance_tag"));
714
21.2k
    *tag = cpe.element_instance_tag;
715
716
21.2k
    if ((cpe.common_window = faad_get1bit(ld
717
21.2k
        DEBUGVAR(1,40,"channel_pair_element(): common_window"))) & 1)
718
12.8k
    {
719
        /* both channels have common ics information */
720
12.8k
        if ((result = ics_info(hDecoder, ics1, ld, cpe.common_window)) > 0)
721
77
            return result;
722
723
12.7k
        ics1->ms_mask_present = (uint8_t)faad_getbits(ld, 2
724
12.7k
            DEBUGVAR(1,41,"channel_pair_element(): ms_mask_present"));
725
12.7k
        if (ics1->ms_mask_present == 3)
726
24
        {
727
            /* bitstream error */
728
24
            return 32;
729
24
        }
730
12.7k
        if (ics1->ms_mask_present == 1)
731
2.57k
        {
732
2.57k
            uint8_t g, sfb;
733
7.30k
            for (g = 0; g < ics1->num_window_groups; g++)
734
4.72k
            {
735
12.5k
                for (sfb = 0; sfb < ics1->max_sfb; sfb++)
736
7.83k
                {
737
7.83k
                    ics1->ms_used[g][sfb] = faad_get1bit(ld
738
7.83k
                        DEBUGVAR(1,42,"channel_pair_element(): faad_get1bit"));
739
7.83k
                }
740
4.72k
            }
741
2.57k
        }
742
743
12.7k
#ifdef ERROR_RESILIENCE
744
12.7k
        if ((hDecoder->object_type >= ER_OBJECT_START) && (ics1->predictor_data_present))
745
47
        {
746
47
            if ((
747
#ifdef LTP_DEC
748
                ics1->ltp.data_present =
749
#endif
750
47
                faad_get1bit(ld DEBUGVAR(1,50,"channel_pair_element(): ltp.data_present"))) & 1)
751
4
            {
752
#ifdef LTP_DEC
753
                if ((result = ltp_data(hDecoder, ics1, &(ics1->ltp), ld)) > 0)
754
                {
755
                    return result;
756
                }
757
#else
758
4
                return 26;
759
4
#endif
760
4
            }
761
47
        }
762
12.7k
#endif
763
764
12.7k
        memcpy(ics2, ics1, sizeof(ic_stream));
765
12.7k
    } else {
766
8.47k
        ics1->ms_mask_present = 0;
767
8.47k
    }
768
769
21.1k
    if ((result = individual_channel_stream(hDecoder, &cpe, ld, ics1,
770
21.1k
        0, spec_data1)) > 0)
771
352
    {
772
352
        return result;
773
352
    }
774
775
20.8k
#ifdef ERROR_RESILIENCE
776
20.8k
    if (cpe.common_window && (hDecoder->object_type >= ER_OBJECT_START) &&
777
618
        (ics1->predictor_data_present))
778
32
    {
779
32
        if ((
780
#ifdef LTP_DEC
781
            ics1->ltp2.data_present =
782
#endif
783
32
            faad_get1bit(ld DEBUGVAR(1,50,"channel_pair_element(): ltp.data_present"))) & 1)
784
3
        {
785
#ifdef LTP_DEC
786
            if ((result = ltp_data(hDecoder, ics1, &(ics1->ltp2), ld)) > 0)
787
            {
788
                return result;
789
            }
790
#else
791
3
            return 26;
792
3
#endif
793
3
        }
794
32
    }
795
20.8k
#endif
796
797
20.8k
    if ((result = individual_channel_stream(hDecoder, &cpe, ld, ics2,
798
20.8k
        0, spec_data2)) > 0)
799
133
    {
800
133
        return result;
801
133
    }
802
803
20.7k
#ifdef SBR_DEC
804
    /* check if next bitstream element is a fill element */
805
    /* if so, read it now so SBR decoding can be done in case of a file with SBR */
806
20.7k
    if (faad_showbits(ld, LEN_SE_ID) == ID_FIL)
807
12.6k
    {
808
12.6k
        faad_flushbits(ld, LEN_SE_ID);
809
810
        /* one sbr_info describes a channel_element not a channel! */
811
12.6k
        if ((result = fill_element(hDecoder, ld, hDecoder->drc, hDecoder->fr_ch_ele)) > 0)
812
20
        {
813
20
            return result;
814
20
        }
815
12.6k
    }
816
20.6k
#endif
817
818
    /* noiseless coding is done, spectral reconstruction is done now */
819
20.6k
    if ((result = reconstruct_channel_pair(hDecoder, ics1, ics2, &cpe,
820
20.6k
        spec_data1, spec_data2)) > 0)
821
67
    {
822
67
        return result;
823
67
    }
824
825
20.6k
    return 0;
826
20.6k
}
827
828
/* Table 4.4.6 */
829
static uint8_t ics_info(NeAACDecStruct *hDecoder, ic_stream *ics, bitfile *ld,
830
                        uint8_t common_window)
831
141k
{
832
141k
    uint8_t retval = 0;
833
141k
    uint8_t ics_reserved_bit;
834
835
141k
    ics_reserved_bit = faad_get1bit(ld
836
141k
        DEBUGVAR(1,43,"ics_info(): ics_reserved_bit"));
837
141k
    if (ics_reserved_bit != 0)
838
290
        return 32;
839
141k
    ics->window_sequence = (uint8_t)faad_getbits(ld, 2
840
141k
        DEBUGVAR(1,44,"ics_info(): window_sequence"));
841
141k
    ics->window_shape = faad_get1bit(ld
842
141k
        DEBUGVAR(1,45,"ics_info(): window_shape"));
843
844
#ifdef LD_DEC
845
    /* No block switching in LD */
846
    if ((hDecoder->object_type == LD) && (ics->window_sequence != ONLY_LONG_SEQUENCE))
847
        return 32;
848
#endif
849
850
141k
    if (ics->window_sequence == EIGHT_SHORT_SEQUENCE)
851
14.6k
    {
852
14.6k
        ics->max_sfb = (uint8_t)faad_getbits(ld, 4
853
14.6k
            DEBUGVAR(1,46,"ics_info(): max_sfb (short)"));
854
14.6k
        ics->scale_factor_grouping = (uint8_t)faad_getbits(ld, 7
855
14.6k
            DEBUGVAR(1,47,"ics_info(): scale_factor_grouping"));
856
126k
    } else {
857
126k
        ics->max_sfb = (uint8_t)faad_getbits(ld, 6
858
126k
            DEBUGVAR(1,48,"ics_info(): max_sfb (long)"));
859
126k
    }
860
861
    /* get the grouping information */
862
141k
    if ((retval = window_grouping_info(hDecoder, ics)) > 0)
863
53
        return retval;
864
865
866
    /* should be an error */
867
    /* check the range of max_sfb */
868
141k
    if (ics->max_sfb > ics->num_swb)
869
0
        return 16;
870
871
141k
    if (ics->window_sequence != EIGHT_SHORT_SEQUENCE)
872
126k
    {
873
126k
        if ((ics->predictor_data_present = faad_get1bit(ld
874
126k
            DEBUGVAR(1,49,"ics_info(): predictor_data_present"))) & 1)
875
9.46k
        {
876
9.46k
            if (hDecoder->object_type == MAIN) /* MPEG2 style AAC predictor */
877
2.34k
            {
878
2.34k
                uint8_t sfb;
879
2.34k
                uint8_t predictor_reset, predictor_reset_group_number, prediction_used;
880
2.34k
                uint8_t limit = min(ics->max_sfb, max_pred_sfb(hDecoder->sf_index));
881
882
2.34k
                predictor_reset = faad_get1bit(ld DEBUGVAR(1,53,"ics_info(): pred.predictor_reset"));
883
2.34k
                if (predictor_reset)
884
2.14k
                {
885
2.14k
                    predictor_reset_group_number =
886
2.14k
                        (uint8_t)faad_getbits(ld, 5 DEBUGVAR(1,54,"ics_info(): pred.predictor_reset_group_number"));
887
2.14k
                } else {
888
205
                    predictor_reset_group_number = 0;
889
205
                }
890
891
12.9k
                for (sfb = 0; sfb < limit; sfb++)
892
10.6k
                {
893
10.6k
                    prediction_used = faad_get1bit(ld DEBUGVAR(1,55,"ics_info(): pred.prediction_used"));
894
#ifdef MAIN_DEC
895
                    ics->pred.prediction_used[sfb] = prediction_used;
896
#endif
897
10.6k
                }
898
#ifdef MAIN_DEC
899
                ics->pred.limit = limit;
900
                ics->pred.predictor_reset = predictor_reset;
901
                ics->pred.predictor_reset_group_number = predictor_reset_group_number;
902
#else
903
2.34k
                (void)predictor_reset_group_number;
904
2.34k
                (void)prediction_used;
905
2.34k
#endif
906
2.34k
            }
907
#ifdef LTP_DEC
908
            else { /* Long Term Prediction */
909
                if (hDecoder->object_type < ER_OBJECT_START)
910
                {
911
                    if ((ics->ltp.data_present = faad_get1bit(ld
912
                        DEBUGVAR(1,50,"ics_info(): ltp.data_present"))) & 1)
913
                    {
914
                        if ((retval = ltp_data(hDecoder, ics, &(ics->ltp), ld)) > 0)
915
                        {
916
                            return retval;
917
                        }
918
                    }
919
                    if (common_window)
920
                    {
921
                        if ((ics->ltp2.data_present = faad_get1bit(ld
922
                            DEBUGVAR(1,51,"ics_info(): ltp2.data_present"))) & 1)
923
                        {
924
                            if ((retval = ltp_data(hDecoder, ics, &(ics->ltp2), ld)) > 0)
925
                            {
926
                                return retval;
927
                            }
928
                        }
929
                    }
930
                }
931
#ifdef ERROR_RESILIENCE
932
                if (!common_window && (hDecoder->object_type >= ER_OBJECT_START))
933
                {
934
                    if ((ics->ltp.data_present = faad_get1bit(ld
935
                        DEBUGVAR(1,50,"ics_info(): ltp.data_present"))) & 1)
936
                    {
937
                        if ((retval = ltp_data(hDecoder, ics, &(ics->ltp), ld)) > 0)
938
                        {
939
                            return retval;
940
                        }
941
                    }
942
                }
943
#endif  /* ERROR_RESILIENCE */
944
            }
945
#else  /* LTP_DEC */
946
9.46k
            (void)common_window;
947
9.46k
#endif  /* LTP_DEC */
948
9.46k
        }
949
126k
    }
950
951
141k
    return retval;
952
141k
}
953
954
/* Table 4.4.7 */
955
static uint8_t pulse_data(ic_stream *ics, pulse_info *pul, bitfile *ld)
956
6.49k
{
957
6.49k
    uint8_t i;
958
959
6.49k
    pul->number_pulse = (uint8_t)faad_getbits(ld, 2
960
6.49k
        DEBUGVAR(1,56,"pulse_data(): number_pulse"));
961
6.49k
    pul->pulse_start_sfb = (uint8_t)faad_getbits(ld, 6
962
6.49k
        DEBUGVAR(1,57,"pulse_data(): pulse_start_sfb"));
963
964
    /* check the range of pulse_start_sfb */
965
6.49k
    if (pul->pulse_start_sfb > ics->num_swb)
966
48
        return 16;
967
968
15.3k
    for (i = 0; i < pul->number_pulse+1; i++)
969
8.87k
    {
970
8.87k
        pul->pulse_offset[i] = (uint8_t)faad_getbits(ld, 5
971
8.87k
            DEBUGVAR(1,58,"pulse_data(): pulse_offset"));
972
#if 0
973
        printf("%d\n", pul->pulse_offset[i]);
974
#endif
975
8.87k
        pul->pulse_amp[i] = (uint8_t)faad_getbits(ld, 4
976
8.87k
            DEBUGVAR(1,59,"pulse_data(): pulse_amp"));
977
#if 0
978
        printf("%d\n", pul->pulse_amp[i]);
979
#endif
980
8.87k
    }
981
982
6.44k
    return 0;
983
6.49k
}
984
985
#ifdef COUPLING_DEC
986
/* Table 4.4.8: Currently just for skipping the bits... */
987
static uint8_t coupling_channel_element(NeAACDecStruct *hDecoder, bitfile *ld)
988
{
989
    uint8_t c, result = 0;
990
    uint8_t ind_sw_cce_flag = 0;
991
    uint8_t num_gain_element_lists = 0;
992
    uint8_t num_coupled_elements = 0;
993
994
    element el_empty = {0};
995
    ic_stream ics_empty = {0};
996
    int16_t sh_data[1024];
997
998
    c = faad_getbits(ld, LEN_TAG
999
        DEBUGVAR(1,900,"coupling_channel_element(): element_instance_tag"));
1000
1001
    ind_sw_cce_flag = faad_get1bit(ld
1002
        DEBUGVAR(1,901,"coupling_channel_element(): ind_sw_cce_flag"));
1003
    num_coupled_elements = faad_getbits(ld, 3
1004
        DEBUGVAR(1,902,"coupling_channel_element(): num_coupled_elements"));
1005
1006
    for (c = 0; c < num_coupled_elements + 1; c++)
1007
    {
1008
        uint8_t cc_target_is_cpe, cc_target_tag_select;
1009
1010
        num_gain_element_lists++;
1011
1012
        cc_target_is_cpe = faad_get1bit(ld
1013
            DEBUGVAR(1,903,"coupling_channel_element(): cc_target_is_cpe"));
1014
        cc_target_tag_select = faad_getbits(ld, 4
1015
            DEBUGVAR(1,904,"coupling_channel_element(): cc_target_tag_select"));
1016
1017
        if (cc_target_is_cpe)
1018
        {
1019
            uint8_t cc_l = faad_get1bit(ld
1020
                DEBUGVAR(1,905,"coupling_channel_element(): cc_l"));
1021
            uint8_t cc_r = faad_get1bit(ld
1022
                DEBUGVAR(1,906,"coupling_channel_element(): cc_r"));
1023
1024
            if (cc_l && cc_r)
1025
                num_gain_element_lists++;
1026
        }
1027
    }
1028
1029
    faad_get1bit(ld
1030
        DEBUGVAR(1,907,"coupling_channel_element(): cc_domain"));
1031
    faad_get1bit(ld
1032
        DEBUGVAR(1,908,"coupling_channel_element(): gain_element_sign"));
1033
    faad_getbits(ld, 2
1034
        DEBUGVAR(1,909,"coupling_channel_element(): gain_element_scale"));
1035
1036
    if ((result = individual_channel_stream(hDecoder, &el_empty, ld, &ics_empty,
1037
        0, sh_data)) > 0)
1038
    {
1039
        return result;
1040
    }
1041
1042
    /* IS not allowed in single channel */
1043
    if (ics->is_used)
1044
        return 32;
1045
1046
    for (c = 1; c < num_gain_element_lists; c++)
1047
    {
1048
        uint8_t cge;
1049
1050
        if (ind_sw_cce_flag)
1051
        {
1052
            cge = 1;
1053
        } else {
1054
            cge = faad_get1bit(ld
1055
                DEBUGVAR(1,910,"coupling_channel_element(): common_gain_element_present"));
1056
        }
1057
1058
        if (cge)
1059
        {
1060
            huffman_scale_factor(ld);
1061
        } else {
1062
            uint8_t g, sfb;
1063
1064
            for (g = 0; g < ics_empty.num_window_groups; g++)
1065
            {
1066
                for (sfb = 0; sfb < ics_empty.max_sfb; sfb++)
1067
                {
1068
                    if (ics_empty.sfb_cb[g][sfb] != ZERO_HCB)
1069
                        huffman_scale_factor(ld);
1070
                }
1071
            }
1072
        }
1073
    }
1074
1075
    return 0;
1076
}
1077
#endif
1078
1079
/* Table 4.4.10 */
1080
static uint16_t data_stream_element(NeAACDecStruct *hDecoder, bitfile *ld)
1081
365k
{
1082
365k
    uint8_t byte_aligned;
1083
365k
    uint16_t i, count;
1084
365k
    (void)hDecoder;  /* TODO: remove parameter; rename method; why result is unused? */
1085
1086
365k
    /* element_instance_tag = */ faad_getbits(ld, LEN_TAG
1087
365k
        DEBUGVAR(1,60,"data_stream_element(): element_instance_tag"));
1088
365k
    byte_aligned = faad_get1bit(ld
1089
365k
        DEBUGVAR(1,61,"data_stream_element(): byte_aligned"));
1090
365k
    count = (uint16_t)faad_getbits(ld, 8
1091
365k
        DEBUGVAR(1,62,"data_stream_element(): count"));
1092
365k
    if (count == 255)
1093
1.92k
    {
1094
1.92k
        count += (uint16_t)faad_getbits(ld, 8
1095
1.92k
            DEBUGVAR(1,63,"data_stream_element(): extra count"));
1096
1.92k
    }
1097
365k
    if (byte_aligned)
1098
63.3k
        faad_byte_align(ld);
1099
1100
18.3M
    for (i = 0; i < count; i++)
1101
18.0M
    {
1102
18.0M
        faad_getbits(ld, LEN_BYTE
1103
18.0M
            DEBUGVAR(1,64,"data_stream_element(): data_stream_byte"));
1104
18.0M
    }
1105
1106
365k
    return count;
1107
365k
}
1108
1109
/* Table 4.4.11 */
1110
static uint8_t fill_element(NeAACDecStruct *hDecoder, bitfile *ld, drc_info *drc
1111
#ifdef SBR_DEC
1112
                            ,uint8_t sbr_ele
1113
#endif
1114
                            )
1115
27.4k
{
1116
27.4k
    uint16_t count;
1117
27.4k
#ifdef SBR_DEC
1118
27.4k
    uint8_t bs_extension_type;
1119
27.4k
#endif
1120
1121
27.4k
    count = (uint16_t)faad_getbits(ld, 4
1122
27.4k
        DEBUGVAR(1,65,"fill_element(): count"));
1123
27.4k
    if (count == 15)
1124
2.91k
    {
1125
2.91k
        count += (uint16_t)faad_getbits(ld, 8
1126
2.91k
            DEBUGVAR(1,66,"fill_element(): extra count")) - 1;
1127
2.91k
    }
1128
1129
27.4k
    if (count > 0)
1130
25.5k
    {
1131
25.5k
#ifdef SBR_DEC
1132
25.5k
        bs_extension_type = (uint8_t)faad_showbits(ld, 4);
1133
1134
25.5k
        if ((bs_extension_type == EXT_SBR_DATA) ||
1135
8.78k
            (bs_extension_type == EXT_SBR_DATA_CRC))
1136
25.4k
        {
1137
25.4k
            if (sbr_ele == INVALID_SBR_ELEMENT)
1138
38
                return 24;
1139
1140
25.4k
            if (!hDecoder->sbr[sbr_ele])
1141
22.1k
            {
1142
22.1k
                hDecoder->sbr[sbr_ele] = sbrDecodeInit(hDecoder->frameLength,
1143
22.1k
                    hDecoder->element_id[sbr_ele], 2*get_sample_rate(hDecoder->sf_index),
1144
22.1k
                    hDecoder->downSampledSBR
1145
22.1k
#ifdef DRM
1146
22.1k
                    , 0
1147
22.1k
#endif
1148
22.1k
                    );
1149
22.1k
            }
1150
25.4k
            if (!hDecoder->sbr[sbr_ele])
1151
0
                return 19;
1152
1153
25.4k
            hDecoder->sbr_present_flag = 1;
1154
1155
            /* parse the SBR data */
1156
25.4k
            hDecoder->sbr[sbr_ele]->ret = sbr_extension_data(ld, hDecoder->sbr[sbr_ele], count,
1157
25.4k
                hDecoder->postSeekResetFlag);
1158
1159
#if 0
1160
            if (hDecoder->sbr[sbr_ele]->ret > 0)
1161
            {
1162
                printf("%s\n", NeAACDecGetErrorMessage(hDecoder->sbr[sbr_ele]->ret));
1163
            }
1164
#endif
1165
1166
25.4k
#if (defined(PS_DEC) || defined(DRM_PS))
1167
25.4k
            if (hDecoder->sbr[sbr_ele]->ps_used)
1168
3.82k
            {
1169
3.82k
                hDecoder->ps_used[sbr_ele] = 1;
1170
1171
                /* set element independent flag to 1 as well */
1172
3.82k
                hDecoder->ps_used_global = 1;
1173
3.82k
            }
1174
25.4k
#endif
1175
25.4k
        } else {
1176
122
#endif
1177
#ifndef DRM
1178
            while (count > 0)
1179
            {
1180
                uint16_t payload_bytes = extension_payload(ld, drc, count);
1181
                if (payload_bytes <= count) {
1182
                    count -= payload_bytes;
1183
                } else {
1184
                    count = 0;
1185
                }
1186
            }
1187
#else
1188
122
            (void)drc;
1189
122
            return 30;
1190
122
#endif
1191
122
#ifdef SBR_DEC
1192
122
        }
1193
25.5k
#endif
1194
25.5k
    }
1195
1196
27.2k
    return 0;
1197
27.4k
}
1198
1199
/* Table 4.4.12 */
1200
#ifdef SSR_DEC
1201
static void gain_control_data(bitfile *ld, ic_stream *ics)
1202
{
1203
    uint8_t bd, wd, ad;
1204
    ssr_info *ssr = &(ics->ssr);
1205
1206
    ssr->max_band = (uint8_t)faad_getbits(ld, 2
1207
        DEBUGVAR(1,1000,"gain_control_data(): max_band"));
1208
1209
    if (ics->window_sequence == ONLY_LONG_SEQUENCE)
1210
    {
1211
        for (bd = 1; bd <= ssr->max_band; bd++)
1212
        {
1213
            for (wd = 0; wd < 1; wd++)
1214
            {
1215
                ssr->adjust_num[bd][wd] = (uint8_t)faad_getbits(ld, 3
1216
                    DEBUGVAR(1,1001,"gain_control_data(): adjust_num"));
1217
1218
                for (ad = 0; ad < ssr->adjust_num[bd][wd]; ad++)
1219
                {
1220
                    ssr->alevcode[bd][wd][ad] = (uint8_t)faad_getbits(ld, 4
1221
                        DEBUGVAR(1,1002,"gain_control_data(): alevcode"));
1222
                    ssr->aloccode[bd][wd][ad] = (uint8_t)faad_getbits(ld, 5
1223
                        DEBUGVAR(1,1003,"gain_control_data(): aloccode"));
1224
                }
1225
            }
1226
        }
1227
    } else if (ics->window_sequence == LONG_START_SEQUENCE) {
1228
        for (bd = 1; bd <= ssr->max_band; bd++)
1229
        {
1230
            for (wd = 0; wd < 2; wd++)
1231
            {
1232
                ssr->adjust_num[bd][wd] = (uint8_t)faad_getbits(ld, 3
1233
                    DEBUGVAR(1,1001,"gain_control_data(): adjust_num"));
1234
1235
                for (ad = 0; ad < ssr->adjust_num[bd][wd]; ad++)
1236
                {
1237
                    ssr->alevcode[bd][wd][ad] = (uint8_t)faad_getbits(ld, 4
1238
                        DEBUGVAR(1,1002,"gain_control_data(): alevcode"));
1239
                    if (wd == 0)
1240
                    {
1241
                        ssr->aloccode[bd][wd][ad] = (uint8_t)faad_getbits(ld, 4
1242
                            DEBUGVAR(1,1003,"gain_control_data(): aloccode"));
1243
                    } else {
1244
                        ssr->aloccode[bd][wd][ad] = (uint8_t)faad_getbits(ld, 2
1245
                            DEBUGVAR(1,1003,"gain_control_data(): aloccode"));
1246
                    }
1247
                }
1248
            }
1249
        }
1250
    } else if (ics->window_sequence == EIGHT_SHORT_SEQUENCE) {
1251
        for (bd = 1; bd <= ssr->max_band; bd++)
1252
        {
1253
            for (wd = 0; wd < 8; wd++)
1254
            {
1255
                ssr->adjust_num[bd][wd] = (uint8_t)faad_getbits(ld, 3
1256
                    DEBUGVAR(1,1001,"gain_control_data(): adjust_num"));
1257
1258
                for (ad = 0; ad < ssr->adjust_num[bd][wd]; ad++)
1259
                {
1260
                    ssr->alevcode[bd][wd][ad] = (uint8_t)faad_getbits(ld, 4
1261
                        DEBUGVAR(1,1002,"gain_control_data(): alevcode"));
1262
                    ssr->aloccode[bd][wd][ad] = (uint8_t)faad_getbits(ld, 2
1263
                        DEBUGVAR(1,1003,"gain_control_data(): aloccode"));
1264
                }
1265
            }
1266
        }
1267
    } else if (ics->window_sequence == LONG_STOP_SEQUENCE) {
1268
        for (bd = 1; bd <= ssr->max_band; bd++)
1269
        {
1270
            for (wd = 0; wd < 2; wd++)
1271
            {
1272
                ssr->adjust_num[bd][wd] = (uint8_t)faad_getbits(ld, 3
1273
                    DEBUGVAR(1,1001,"gain_control_data(): adjust_num"));
1274
1275
                for (ad = 0; ad < ssr->adjust_num[bd][wd]; ad++)
1276
                {
1277
                    ssr->alevcode[bd][wd][ad] = (uint8_t)faad_getbits(ld, 4
1278
                        DEBUGVAR(1,1002,"gain_control_data(): alevcode"));
1279
1280
                    if (wd == 0)
1281
                    {
1282
                        ssr->aloccode[bd][wd][ad] = (uint8_t)faad_getbits(ld, 4
1283
                            DEBUGVAR(1,1003,"gain_control_data(): aloccode"));
1284
                    } else {
1285
                        ssr->aloccode[bd][wd][ad] = (uint8_t)faad_getbits(ld, 5
1286
                            DEBUGVAR(1,1003,"gain_control_data(): aloccode"));
1287
                    }
1288
                }
1289
            }
1290
        }
1291
    }
1292
}
1293
#endif
1294
1295
#ifdef DRM
1296
/* Table 4.4.13 ASME */
1297
void DRM_aac_scalable_main_element(NeAACDecStruct *hDecoder, NeAACDecFrameInfo *hInfo,
1298
                                   bitfile *ld, program_config *pce, drc_info *drc)
1299
845
{
1300
845
    uint8_t channels = hDecoder->fr_channels = 0;
1301
845
    uint8_t this_layer_stereo = (hDecoder->channelConfiguration > 1) ? 1 : 0;
1302
845
    element cpe = {0};
1303
845
    ic_stream *ics1 = &(cpe.ics1);
1304
845
    ic_stream *ics2 = &(cpe.ics2);
1305
845
    ALIGN int16_t spec_data1[1024] = {0};
1306
845
    ALIGN int16_t spec_data2[1024] = {0};
1307
1308
845
    (void)drc;  /* TODO: remove unused parameter? */
1309
845
    (void)pce;  /* TODO: remove unused parameter? */
1310
1311
845
    hDecoder->fr_ch_ele = 0;
1312
1313
845
    hInfo->error = DRM_aac_scalable_main_header(hDecoder, ics1, ics2, ld, this_layer_stereo);
1314
845
    if (hInfo->error > 0)
1315
19
        return;
1316
1317
826
    cpe.common_window = 1;
1318
826
    if (this_layer_stereo)
1319
242
    {
1320
242
        hDecoder->element_id[0] = ID_CPE;
1321
242
        if (hDecoder->element_output_channels[hDecoder->fr_ch_ele] == 0)
1322
176
            hDecoder->element_output_channels[hDecoder->fr_ch_ele] = 2;
1323
584
    } else {
1324
584
        hDecoder->element_id[0] = ID_SCE;
1325
584
    }
1326
1327
826
    if (this_layer_stereo)
1328
242
    {
1329
242
        cpe.channel        = 0;
1330
242
        cpe.paired_channel = 1;
1331
242
    }
1332
1333
1334
    /* Stereo2 / Mono1 */
1335
826
    ics1->tns_data_present = faad_get1bit(ld);
1336
1337
#if defined(LTP_DEC)
1338
    ics1->ltp.data_present = faad_get1bit(ld);
1339
#elif defined (DRM)
1340
826
    if(faad_get1bit(ld)) {
1341
8
         hInfo->error = 26;
1342
8
         return;
1343
8
    }
1344
#else
1345
    faad_get1bit(ld);
1346
#endif
1347
1348
818
    hInfo->error = side_info(hDecoder, &cpe, ld, ics1, 1);
1349
818
    if (hInfo->error > 0)
1350
77
        return;
1351
741
    if (this_layer_stereo)
1352
197
    {
1353
        /* Stereo3 */
1354
197
        ics2->tns_data_present = faad_get1bit(ld);
1355
#ifdef LTP_DEC
1356
        ics1->ltp.data_present =
1357
#endif
1358
197
            faad_get1bit(ld);
1359
197
        hInfo->error = side_info(hDecoder, &cpe, ld, ics2, 1);
1360
197
        if (hInfo->error > 0)
1361
29
            return;
1362
197
    }
1363
    /* Stereo4 / Mono2 */
1364
712
    if (ics1->tns_data_present)
1365
118
        tns_data(ics1, &(ics1->tns), ld);
1366
712
    if (this_layer_stereo)
1367
168
    {
1368
        /* Stereo5 */
1369
168
        if (ics2->tns_data_present)
1370
63
            tns_data(ics2, &(ics2->tns), ld);
1371
168
    }
1372
1373
712
#ifdef DRM
1374
    /* CRC check */
1375
712
    if (hDecoder->object_type == DRM_ER_LC)
1376
712
    {
1377
712
        if ((hInfo->error = (uint8_t)faad_check_CRC(ld, (uint16_t)faad_get_processed_bits(ld) - 8)) > 0)
1378
179
            return;
1379
712
    }
1380
533
#endif
1381
1382
    /* Stereo6 / Mono3 */
1383
    /* error resilient spectral data decoding */
1384
533
    if ((hInfo->error = reordered_spectral_data(hDecoder, ics1, ld, spec_data1)) > 0)
1385
25
    {
1386
25
        return;
1387
25
    }
1388
508
    if (this_layer_stereo)
1389
68
    {
1390
        /* Stereo7 */
1391
        /* error resilient spectral data decoding */
1392
68
        if ((hInfo->error = reordered_spectral_data(hDecoder, ics2, ld, spec_data2)) > 0)
1393
3
        {
1394
3
            return;
1395
3
        }
1396
68
    }
1397
1398
1399
505
#ifdef DRM
1400
505
#ifdef SBR_DEC
1401
    /* In case of DRM we need to read the SBR info before channel reconstruction */
1402
505
    if ((hDecoder->sbr_present_flag == 1) && (hDecoder->object_type == DRM_ER_LC))
1403
469
    {
1404
469
        bitfile ld_sbr = {0};
1405
469
        uint32_t i;
1406
469
        uint16_t count = 0;
1407
469
        uint8_t *revbuffer;
1408
469
        uint8_t *prevbufstart;
1409
469
        uint8_t *pbufend;
1410
1411
        /* all forward bitreading should be finished at this point */
1412
469
        uint32_t bitsconsumed = faad_get_processed_bits(ld);
1413
469
        uint32_t buffer_size = faad_origbitbuffer_size(ld);
1414
469
        uint8_t *buffer = (uint8_t*)faad_origbitbuffer(ld);
1415
1416
469
        if (bitsconsumed + 8 > buffer_size*8)
1417
129
        {
1418
129
            hInfo->error = 14;
1419
129
            return;
1420
129
        }
1421
1422
340
        if (!hDecoder->sbr[0])
1423
249
        {
1424
249
            hDecoder->sbr[0] = sbrDecodeInit(hDecoder->frameLength, hDecoder->element_id[0],
1425
249
                2*get_sample_rate(hDecoder->sf_index), 0 /* ds SBR */, 1);
1426
249
        }
1427
340
        if (!hDecoder->sbr[0])
1428
0
        {
1429
0
            hInfo->error = 19;
1430
0
            return;
1431
0
        }
1432
1433
        /* Reverse bit reading of SBR data in DRM audio frame */
1434
340
        revbuffer = (uint8_t*)faad_malloc(buffer_size*sizeof(uint8_t));
1435
340
        prevbufstart = revbuffer;
1436
340
        pbufend = &buffer[buffer_size - 1];
1437
7.63M
        for (i = 0; i < buffer_size; i++)
1438
7.63M
            *prevbufstart++ = reverse_byte(*pbufend--);
1439
1440
        /* Set SBR data */
1441
        /* consider 8 bits from AAC-CRC */
1442
        /* SBR buffer size is original buffer size minus AAC buffer size */
1443
340
        count = (uint16_t)bit2byte(buffer_size*8 - bitsconsumed);
1444
340
        faad_initbits(&ld_sbr, revbuffer, count);
1445
1446
340
        hDecoder->sbr[0]->sample_rate = get_sample_rate(hDecoder->sf_index);
1447
340
        hDecoder->sbr[0]->sample_rate *= 2;
1448
1449
340
        faad_getbits(&ld_sbr, 8); /* Skip 8-bit CRC */
1450
1451
340
        hDecoder->sbr[0]->ret = sbr_extension_data(&ld_sbr, hDecoder->sbr[0], count, hDecoder->postSeekResetFlag);
1452
340
#if (defined(PS_DEC) || defined(DRM_PS))
1453
340
        if (hDecoder->sbr[0]->ps_used)
1454
213
        {
1455
213
            hDecoder->ps_used[0] = 1;
1456
213
            hDecoder->ps_used_global = 1;
1457
213
        }
1458
340
#endif
1459
1460
340
        if (ld_sbr.error)
1461
4
        {
1462
4
            hDecoder->sbr[0]->ret = 1;
1463
4
        }
1464
1465
        /* check CRC */
1466
        /* no need to check it if there was already an error */
1467
340
        if (hDecoder->sbr[0]->ret == 0)
1468
166
            hDecoder->sbr[0]->ret = (uint8_t)faad_check_CRC(&ld_sbr, (uint16_t)faad_get_processed_bits(&ld_sbr) - 8);
1469
1470
        /* SBR data was corrupted, disable it until the next header */
1471
340
        if (hDecoder->sbr[0]->ret != 0)
1472
205
        {
1473
205
            hDecoder->sbr[0]->header_count = 0;
1474
205
        }
1475
1476
340
        faad_endbits(&ld_sbr);
1477
1478
340
        if (revbuffer)
1479
340
            faad_free(revbuffer);
1480
340
    }
1481
376
#endif
1482
376
#endif
1483
1484
376
    if (this_layer_stereo)
1485
59
    {
1486
59
        hInfo->error = reconstruct_channel_pair(hDecoder, ics1, ics2, &cpe, spec_data1, spec_data2);
1487
59
        if (hInfo->error > 0)
1488
7
            return;
1489
317
    } else {
1490
317
        hInfo->error = reconstruct_single_channel(hDecoder, ics1, &cpe, spec_data1);
1491
317
        if (hInfo->error > 0)
1492
3
            return;
1493
317
    }
1494
1495
    /* map output channels position to internal data channels */
1496
366
    if (hDecoder->element_output_channels[hDecoder->fr_ch_ele] == 2)
1497
366
    {
1498
        /* this might be faulty when pce_set is true */
1499
366
        hDecoder->internal_channel[channels] = channels;
1500
366
        hDecoder->internal_channel[channels+1] = channels+1;
1501
366
    } else {
1502
0
        hDecoder->internal_channel[channels] = channels;
1503
0
    }
1504
1505
366
    hDecoder->fr_channels += hDecoder->element_output_channels[hDecoder->fr_ch_ele];
1506
366
    hDecoder->fr_ch_ele++;
1507
1508
366
    return;
1509
376
}
1510
1511
/* Table 4.4.15 */
1512
static int8_t DRM_aac_scalable_main_header(NeAACDecStruct *hDecoder, ic_stream *ics1, ic_stream *ics2,
1513
                                           bitfile *ld, uint8_t this_layer_stereo)
1514
845
{
1515
845
    uint8_t retval = 0;
1516
845
    uint8_t ics_reserved_bit;
1517
1518
845
    ics_reserved_bit = faad_get1bit(ld
1519
845
        DEBUGVAR(1,300,"aac_scalable_main_header(): ics_reserved_bits"));
1520
845
    if (ics_reserved_bit != 0)
1521
7
        return 32;
1522
838
    ics1->window_sequence = (uint8_t)faad_getbits(ld, 2
1523
838
        DEBUGVAR(1,301,"aac_scalable_main_header(): window_sequence"));
1524
838
    ics1->window_shape = faad_get1bit(ld
1525
838
        DEBUGVAR(1,302,"aac_scalable_main_header(): window_shape"));
1526
1527
838
    if (ics1->window_sequence == EIGHT_SHORT_SEQUENCE)
1528
151
    {
1529
151
        ics1->max_sfb = (uint8_t)faad_getbits(ld, 4
1530
151
            DEBUGVAR(1,303,"aac_scalable_main_header(): max_sfb (short)"));
1531
151
        ics1->scale_factor_grouping = (uint8_t)faad_getbits(ld, 7
1532
151
            DEBUGVAR(1,304,"aac_scalable_main_header(): scale_factor_grouping"));
1533
687
    } else {
1534
687
        ics1->max_sfb = (uint8_t)faad_getbits(ld, 6
1535
687
            DEBUGVAR(1,305,"aac_scalable_main_header(): max_sfb (long)"));
1536
687
    }
1537
1538
    /* get the grouping information */
1539
838
    if ((retval = window_grouping_info(hDecoder, ics1)) > 0)
1540
9
        return retval;
1541
1542
    /* should be an error */
1543
    /* check the range of max_sfb */
1544
829
    if (ics1->max_sfb > ics1->num_swb)
1545
0
        return 16;
1546
1547
829
    if (this_layer_stereo)
1548
245
    {
1549
245
        ics1->ms_mask_present = (uint8_t)faad_getbits(ld, 2
1550
245
            DEBUGVAR(1,306,"aac_scalable_main_header(): ms_mask_present"));
1551
245
        if (ics1->ms_mask_present == 3)
1552
3
        {
1553
            /* bitstream error */
1554
3
            return 32;
1555
3
        }
1556
242
        if (ics1->ms_mask_present == 1)
1557
59
        {
1558
59
            uint8_t g, sfb;
1559
227
            for (g = 0; g < ics1->num_window_groups; g++)
1560
168
            {
1561
1.64k
                for (sfb = 0; sfb < ics1->max_sfb; sfb++)
1562
1.48k
                {
1563
1.48k
                    ics1->ms_used[g][sfb] = faad_get1bit(ld
1564
1.48k
                        DEBUGVAR(1,307,"aac_scalable_main_header(): faad_get1bit"));
1565
1.48k
                }
1566
168
            }
1567
59
        }
1568
1569
242
        memcpy(ics2, ics1, sizeof(ic_stream));
1570
584
    } else {
1571
584
        ics1->ms_mask_present = 0;
1572
584
    }
1573
1574
826
    return 0;
1575
829
}
1576
#endif
1577
1578
static uint8_t side_info(NeAACDecStruct *hDecoder, element *ele,
1579
                         bitfile *ld, ic_stream *ics, uint8_t scal_flag)
1580
155k
{
1581
155k
    uint8_t result;
1582
1583
155k
    ics->global_gain = (uint8_t)faad_getbits(ld, 8
1584
155k
        DEBUGVAR(1,67,"individual_channel_stream(): global_gain"));
1585
1586
155k
    if (!ele->common_window && !scal_flag)
1587
128k
    {
1588
128k
        if ((result = ics_info(hDecoder, ics, ld, ele->common_window)) > 0)
1589
266
            return result;
1590
128k
    }
1591
1592
154k
    if ((result = section_data(hDecoder, ics, ld)) > 0)
1593
620
        return result;
1594
1595
154k
    if ((result = scale_factor_data(hDecoder, ics, ld)) > 0)
1596
7
        return result;
1597
1598
154k
    if (!scal_flag)
1599
153k
    {
1600
        /**
1601
         **  NOTE: It could be that pulse data is available in scalable AAC too,
1602
         **        as said in Amendment 1, this could be only the case for ER AAC,
1603
         **        though. (have to check this out later)
1604
         **/
1605
        /* get pulse data */
1606
153k
        if ((ics->pulse_data_present = faad_get1bit(ld
1607
153k
            DEBUGVAR(1,68,"individual_channel_stream(): pulse_data_present"))) & 1)
1608
6.49k
        {
1609
6.49k
            if ((result = pulse_data(ics, &(ics->pul), ld)) > 0)
1610
48
                return result;
1611
6.49k
        }
1612
1613
        /* get tns data */
1614
153k
        if ((ics->tns_data_present = faad_get1bit(ld
1615
153k
            DEBUGVAR(1,69,"individual_channel_stream(): tns_data_present"))) & 1)
1616
15.9k
        {
1617
15.9k
#ifdef ERROR_RESILIENCE
1618
15.9k
            if (hDecoder->object_type < ER_OBJECT_START)
1619
15.6k
#endif
1620
15.6k
                tns_data(ics, &(ics->tns), ld);
1621
15.9k
        }
1622
1623
        /* get gain control data */
1624
153k
        if ((ics->gain_control_data_present = faad_get1bit(ld
1625
153k
            DEBUGVAR(1,70,"individual_channel_stream(): gain_control_data_present"))) & 1)
1626
48
        {
1627
#ifdef SSR_DEC
1628
            if (hDecoder->object_type != SSR)
1629
                return 1;
1630
            else
1631
                gain_control_data(ld, ics);
1632
#else
1633
48
            return 1;
1634
48
#endif
1635
48
        }
1636
153k
    }
1637
1638
154k
#ifdef ERROR_RESILIENCE
1639
154k
    if (hDecoder->aacSpectralDataResilienceFlag)
1640
4.40k
    {
1641
4.40k
        ics->length_of_reordered_spectral_data = (uint16_t)faad_getbits(ld, 14
1642
4.40k
            DEBUGVAR(1,147,"individual_channel_stream(): length_of_reordered_spectral_data"));
1643
1644
4.40k
        if (hDecoder->channelConfiguration == 2)
1645
441
        {
1646
441
            if (ics->length_of_reordered_spectral_data > 6144)
1647
63
                ics->length_of_reordered_spectral_data = 6144;
1648
3.96k
        } else {
1649
3.96k
            if (ics->length_of_reordered_spectral_data > 12288)
1650
82
                ics->length_of_reordered_spectral_data = 12288;
1651
3.96k
        }
1652
1653
4.40k
        ics->length_of_longest_codeword = (uint8_t)faad_getbits(ld, 6
1654
4.40k
            DEBUGVAR(1,148,"individual_channel_stream(): length_of_longest_codeword"));
1655
4.40k
        if (ics->length_of_longest_codeword >= 49)
1656
224
            ics->length_of_longest_codeword = 49;
1657
4.40k
    }
1658
1659
    /* RVLC spectral data is put here */
1660
154k
    if (hDecoder->aacScalefactorDataResilienceFlag)
1661
6.71k
    {
1662
6.71k
        if ((result = rvlc_decode_scale_factors(ics, ld)) > 0)
1663
28
            return result;
1664
6.71k
    }
1665
154k
#endif
1666
1667
154k
    return 0;
1668
154k
}
1669
1670
/* Table 4.4.24 */
1671
static uint8_t individual_channel_stream(NeAACDecStruct *hDecoder, element *ele,
1672
                                         bitfile *ld, ic_stream *ics, uint8_t scal_flag,
1673
                                         int16_t *spec_data)
1674
154k
{
1675
154k
    uint8_t result;
1676
1677
154k
    result = side_info(hDecoder, ele, ld, ics, scal_flag);
1678
154k
    if (result > 0)
1679
911
        return result;
1680
1681
153k
    if (hDecoder->object_type >= ER_OBJECT_START)
1682
10.0k
    {
1683
10.0k
        if (ics->tns_data_present)
1684
301
            tns_data(ics, &(ics->tns), ld);
1685
10.0k
    }
1686
1687
153k
#ifdef DRM
1688
    /* CRC check */
1689
153k
    if (hDecoder->object_type == DRM_ER_LC)
1690
0
    {
1691
0
        if ((result = (uint8_t)faad_check_CRC(ld, (uint16_t)faad_get_processed_bits(ld) - 8)) > 0)
1692
0
            return result;
1693
0
    }
1694
153k
#endif
1695
1696
153k
#ifdef ERROR_RESILIENCE
1697
153k
    if (hDecoder->aacSpectralDataResilienceFlag)
1698
3.66k
    {
1699
        /* error resilient spectral data decoding */
1700
3.66k
        if ((result = reordered_spectral_data(hDecoder, ics, ld, spec_data)) > 0)
1701
69
        {
1702
69
            return result;
1703
69
        }
1704
149k
    } else {
1705
149k
#endif
1706
        /* decode the spectral data */
1707
149k
        if ((result = spectral_data(hDecoder, ics, ld, spec_data)) > 0)
1708
45
        {
1709
45
            return result;
1710
45
        }
1711
149k
#ifdef ERROR_RESILIENCE
1712
149k
    }
1713
153k
#endif
1714
1715
    /* pulse coding reconstruction */
1716
153k
    if (ics->pulse_data_present)
1717
6.43k
    {
1718
6.43k
        if (ics->window_sequence != EIGHT_SHORT_SEQUENCE)
1719
6.42k
        {
1720
6.42k
            if ((result = pulse_decode(ics, spec_data, hDecoder->frameLength)) > 0)
1721
8
                return result;
1722
6.42k
        } else {
1723
14
            return 2; /* pulse coding not allowed for short blocks */
1724
14
        }
1725
6.43k
    }
1726
1727
153k
    return 0;
1728
153k
}
1729
1730
/* Table 4.4.25 */
1731
static uint8_t section_data(NeAACDecStruct *hDecoder, ic_stream *ics, bitfile *ld)
1732
154k
{
1733
154k
    uint8_t g;
1734
154k
    uint8_t sect_esc_val, sect_bits;
1735
154k
    uint8_t sect_lim; /* 51 or 120, anyways less than 127. */
1736
1737
154k
    if (ics->window_sequence == EIGHT_SHORT_SEQUENCE) {
1738
16.2k
        sect_bits = 3;
1739
16.2k
        sect_lim = 8 * 15;
1740
138k
    } else {
1741
138k
        sect_bits = 5;
1742
138k
        sect_lim = MAX_SFB;
1743
138k
    }
1744
154k
    sect_esc_val = (1u<<sect_bits) - 1;
1745
1746
#if 0
1747
    printf("\ntotal sfb %d\n", ics->max_sfb);
1748
    printf("   sect    top     cb\n");
1749
#endif
1750
1751
396k
    for (g = 0; g < ics->num_window_groups; g++)
1752
242k
    {
1753
242k
        uint8_t k = 0;
1754
242k
        uint8_t i = 0;
1755
1756
310k
        while (k < ics->max_sfb)
1757
67.9k
        {
1758
67.9k
#ifdef ERROR_RESILIENCE
1759
67.9k
            uint8_t vcb11 = 0;
1760
67.9k
#endif
1761
67.9k
            uint8_t sfb;
1762
67.9k
            uint8_t sect_len_incr;
1763
67.9k
            uint8_t sect_len = 0;
1764
67.9k
            uint8_t sect_cb_bits = 4;
1765
1766
            /* if "faad_getbits" detects error and returns "0", "k" is never
1767
               incremented and we cannot leave the while loop */
1768
67.9k
            if (ld->error != 0)
1769
0
                return 14;
1770
67.9k
            if (i >= sect_lim)
1771
366
                return 15;
1772
1773
67.6k
#ifdef ERROR_RESILIENCE
1774
67.6k
            if (hDecoder->aacSectionDataResilienceFlag)
1775
19.5k
                sect_cb_bits = 5;
1776
67.6k
#endif
1777
1778
67.6k
            ics->sect_cb[g][i] = (uint8_t)faad_getbits(ld, sect_cb_bits
1779
67.6k
                DEBUGVAR(1,71,"section_data(): sect_cb"));
1780
1781
67.6k
            if (ics->sect_cb[g][i] == 12)
1782
47
                return 32;
1783
1784
#if 0
1785
            printf("%d\n", ics->sect_cb[g][i]);
1786
#endif
1787
1788
#ifndef DRM
1789
            if (ics->sect_cb[g][i] == NOISE_HCB)
1790
                ics->noise_used = 1;
1791
#else
1792
            /* PNS not allowed in DRM */
1793
67.5k
            if (ics->sect_cb[g][i] == NOISE_HCB)
1794
19
                return 29;
1795
67.5k
#endif
1796
67.5k
            if (ics->sect_cb[g][i] == INTENSITY_HCB2 || ics->sect_cb[g][i] == INTENSITY_HCB)
1797
2.05k
                ics->is_used = 1;
1798
1799
67.5k
#ifdef ERROR_RESILIENCE
1800
67.5k
            if (hDecoder->aacSectionDataResilienceFlag)
1801
19.5k
            {
1802
19.5k
                if ((ics->sect_cb[g][i] == 11) ||
1803
19.2k
                    ((ics->sect_cb[g][i] >= 16) && (ics->sect_cb[g][i] <= 32)))
1804
4.54k
                {
1805
4.54k
                    vcb11 = 1;
1806
4.54k
                }
1807
19.5k
            }
1808
67.5k
            if (vcb11)
1809
4.54k
            {
1810
4.54k
                sect_len_incr = 1;
1811
63.0k
            } else {
1812
63.0k
#endif
1813
63.0k
                sect_len_incr = (uint8_t)faad_getbits(ld, sect_bits
1814
63.0k
                    DEBUGVAR(1,72,"section_data(): sect_len_incr"));
1815
63.0k
#ifdef ERROR_RESILIENCE
1816
63.0k
            }
1817
67.5k
#endif
1818
68.1k
            while (sect_len_incr == sect_esc_val /* &&
1819
67.5k
                (k+sect_len < ics->max_sfb)*/)
1820
585
            {
1821
585
                sect_len += sect_len_incr;
1822
585
                if (sect_len > sect_lim)
1823
8
                    return 15;
1824
577
                sect_len_incr = (uint8_t)faad_getbits(ld, sect_bits
1825
577
                    DEBUGVAR(1,72,"section_data(): sect_len_incr"));
1826
577
            }
1827
1828
67.5k
            sect_len += sect_len_incr;
1829
1830
67.5k
            ics->sect_start[g][i] = k;
1831
67.5k
            ics->sect_end[g][i] = k + sect_len;
1832
1833
#if 0
1834
            printf("%d\n", ics->sect_start[g][i]);
1835
#endif
1836
#if 0
1837
            printf("%d\n", ics->sect_end[g][i]);
1838
#endif
1839
1840
67.5k
            if (sect_len > sect_lim)
1841
15
                return 15;
1842
67.5k
            if (k + sect_len > sect_lim)
1843
11
                return 15;
1844
1845
207k
            for (sfb = k; sfb < k + sect_len; sfb++)
1846
139k
            {
1847
139k
                ics->sfb_cb[g][sfb] = ics->sect_cb[g][i];
1848
#if 0
1849
                printf("%d\n", ics->sfb_cb[g][sfb]);
1850
#endif
1851
139k
            }
1852
1853
#if 0
1854
            printf(" %6d %6d %6d\n",
1855
                i,
1856
                ics->sect_end[g][i],
1857
                ics->sect_cb[g][i]);
1858
#endif
1859
1860
67.5k
            k += sect_len; /* k <= sect_lim */
1861
67.5k
            i++;
1862
67.5k
        }
1863
242k
        ics->num_sec[g] = i;
1864
1865
        /* the sum of all sect_len_incr elements for a given window
1866
         * group shall equal max_sfb */
1867
242k
        if (k != ics->max_sfb)
1868
154
        {
1869
154
            return 32;
1870
154
        }
1871
#if 0
1872
        printf("%d\n", ics->num_sec[g]);
1873
#endif
1874
242k
    }
1875
1876
#if 0
1877
    printf("\n");
1878
#endif
1879
1880
154k
    return 0;
1881
154k
}
1882
1883
/*
1884
 *  decode_scale_factors()
1885
 *   decodes the scalefactors from the bitstream
1886
 */
1887
/*
1888
 * All scalefactors (and also the stereo positions and pns energies) are
1889
 * transmitted using Huffman coded DPCM relative to the previous active
1890
 * scalefactor (respectively previous stereo position or previous pns energy,
1891
 * see subclause 4.6.2 and 4.6.3). The first active scalefactor is
1892
 * differentially coded relative to the global gain.
1893
 */
1894
static uint8_t decode_scale_factors(ic_stream *ics, bitfile *ld)
1895
147k
{
1896
147k
    uint8_t g, sfb;
1897
147k
    int16_t t;
1898
1899
147k
    int16_t scale_factor = ics->global_gain;
1900
147k
    int16_t is_position = 0;
1901
147k
    int16_t scale_factor_max = 255;
1902
#ifdef FIXED_POINT
1903
    /* TODO: consider rolling out to regular build. */
1904
#ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
1905
    /* The value is inexact, adjusted to current fuzzer findings. */
1906
    scale_factor_max = 165;
1907
#endif  // FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
1908
#endif  // FIXED_POINT
1909
#ifndef DRM
1910
    int8_t noise_pcm_flag = 1;
1911
    int16_t noise_energy = ics->global_gain - 90;
1912
#endif
1913
1914
380k
    for (g = 0; g < ics->num_window_groups; g++)
1915
232k
    {
1916
351k
        for (sfb = 0; sfb < ics->max_sfb; sfb++)
1917
118k
        {
1918
118k
            switch (ics->sfb_cb[g][sfb])
1919
118k
            {
1920
76.7k
            case ZERO_HCB: /* zero book */
1921
76.7k
                ics->scale_factors[g][sfb] = 0;
1922
//#define SF_PRINT
1923
#ifdef SF_PRINT
1924
                printf("%d\n", ics->scale_factors[g][sfb]);
1925
#endif
1926
76.7k
                break;
1927
4.48k
            case INTENSITY_HCB: /* intensity books */
1928
6.03k
            case INTENSITY_HCB2:
1929
1930
                /* decode intensity position */
1931
6.03k
                t = huffman_scale_factor(ld);
1932
6.03k
                is_position += (t - 60);
1933
6.03k
                ics->scale_factors[g][sfb] = is_position;
1934
#ifdef SF_PRINT
1935
                printf("%d\n", ics->scale_factors[g][sfb]);
1936
#endif
1937
1938
6.03k
                break;
1939
0
            case NOISE_HCB: /* noise books */
1940
1941
#ifndef DRM
1942
                /* decode noise energy */
1943
                if (noise_pcm_flag)
1944
                {
1945
                    noise_pcm_flag = 0;
1946
                    t = (int16_t)faad_getbits(ld, 9
1947
                        DEBUGVAR(1,73,"scale_factor_data(): first noise")) - 256;
1948
                } else {
1949
                    t = huffman_scale_factor(ld);
1950
                    t -= 60;
1951
                }
1952
                noise_energy += t;
1953
                ics->scale_factors[g][sfb] = noise_energy;
1954
#ifdef SF_PRINT
1955
                printf("%d\n", ics->scale_factors[g][sfb]);
1956
#endif
1957
#else
1958
                /* PNS not allowed in DRM */
1959
0
                return 29;
1960
0
#endif
1961
1962
0
                break;
1963
35.5k
            default: /* spectral books */
1964
1965
                /* ics->scale_factors[g][sfb] must be between 0 and 255 */
1966
1967
35.5k
                ics->scale_factors[g][sfb] = 0;
1968
1969
                /* decode scale factor */
1970
35.5k
                t = huffman_scale_factor(ld);
1971
35.5k
                scale_factor += (t - 60);
1972
35.5k
                if (scale_factor < 0 || scale_factor > 255)
1973
7
                    return 4;
1974
35.5k
                ics->scale_factors[g][sfb] = min(scale_factor, scale_factor_max);
1975
#ifdef SF_PRINT
1976
                printf("%d\n", ics->scale_factors[g][sfb]);
1977
#endif
1978
1979
35.5k
                break;
1980
118k
            }
1981
118k
        }
1982
232k
    }
1983
1984
147k
    return 0;
1985
147k
}
1986
1987
/* Table 4.4.26 */
1988
static uint8_t scale_factor_data(NeAACDecStruct *hDecoder, ic_stream *ics, bitfile *ld)
1989
154k
{
1990
154k
    uint8_t ret = 0;
1991
#ifdef PROFILE
1992
    int64_t count = faad_get_ts();
1993
#endif
1994
1995
154k
#ifdef ERROR_RESILIENCE
1996
154k
    if (!hDecoder->aacScalefactorDataResilienceFlag)
1997
147k
    {
1998
147k
#endif
1999
147k
        ret = decode_scale_factors(ics, ld);
2000
147k
#ifdef ERROR_RESILIENCE
2001
147k
    } else {
2002
        /* In ER AAC the parameters for RVLC are seperated from the actual
2003
           data that holds the scale_factors.
2004
           Strangely enough, 2 parameters for HCR are put inbetween them.
2005
        */
2006
6.71k
        ret = rvlc_scale_factor_data(ics, ld);
2007
6.71k
    }
2008
154k
#endif
2009
2010
#ifdef PROFILE
2011
    count = faad_get_ts() - count;
2012
    hDecoder->scalefac_cycles += count;
2013
#endif
2014
2015
154k
    return ret;
2016
154k
}
2017
2018
/* Table 4.4.27 */
2019
static void tns_data(ic_stream *ics, tns_info *tns, bitfile *ld)
2020
16.0k
{
2021
16.0k
    uint8_t w, filt, i, coef_bits;
2022
16.0k
    uint8_t n_filt_bits = 2;
2023
16.0k
    uint8_t length_bits = 6;
2024
16.0k
    uint8_t order_bits = 5;
2025
2026
16.0k
    if (ics->window_sequence == EIGHT_SHORT_SEQUENCE)
2027
1.32k
    {
2028
1.32k
        n_filt_bits = 1;
2029
1.32k
        length_bits = 4;
2030
1.32k
        order_bits = 3;
2031
1.32k
    }
2032
2033
41.4k
    for (w = 0; w < ics->num_windows; w++)
2034
25.3k
    {
2035
25.3k
        uint8_t start_coef_bits = 3;
2036
25.3k
        tns->n_filt[w] = (uint8_t)faad_getbits(ld, n_filt_bits
2037
25.3k
            DEBUGVAR(1,74,"tns_data(): n_filt"));
2038
#if 0
2039
        printf("%d\n", tns->n_filt[w]);
2040
#endif
2041
2042
25.3k
        if (tns->n_filt[w])
2043
8.80k
        {
2044
8.80k
            if ((tns->coef_res[w] = faad_get1bit(ld
2045
8.80k
                DEBUGVAR(1,75,"tns_data(): coef_res"))) & 1)
2046
3.28k
                start_coef_bits = 4;
2047
#if 0
2048
            printf("%d\n", tns->coef_res[w]);
2049
#endif
2050
8.80k
        }
2051
2052
37.3k
        for (filt = 0; filt < tns->n_filt[w]; filt++)
2053
11.9k
        {
2054
11.9k
            tns->length[w][filt] = (uint8_t)faad_getbits(ld, length_bits
2055
11.9k
                DEBUGVAR(1,76,"tns_data(): length"));
2056
#if 0
2057
            printf("%d\n", tns->length[w][filt]);
2058
#endif
2059
11.9k
            tns->order[w][filt]  = (uint8_t)faad_getbits(ld, order_bits
2060
11.9k
                DEBUGVAR(1,77,"tns_data(): order"));
2061
#if 0
2062
            printf("%d\n", tns->order[w][filt]);
2063
#endif
2064
11.9k
            if (tns->order[w][filt])
2065
5.82k
            {
2066
5.82k
                tns->direction[w][filt] = faad_get1bit(ld
2067
5.82k
                    DEBUGVAR(1,78,"tns_data(): direction"));
2068
#if 0
2069
                printf("%d\n", tns->direction[w][filt]);
2070
#endif
2071
5.82k
                tns->coef_compress[w][filt] = faad_get1bit(ld
2072
5.82k
                    DEBUGVAR(1,79,"tns_data(): coef_compress"));
2073
#if 0
2074
                printf("%d\n", tns->coef_compress[w][filt]);
2075
#endif
2076
2077
5.82k
                coef_bits = start_coef_bits - tns->coef_compress[w][filt];
2078
33.5k
                for (i = 0; i < tns->order[w][filt]; i++)
2079
27.7k
                {
2080
27.7k
                    tns->coef[w][filt][i] = (uint8_t)faad_getbits(ld, coef_bits
2081
27.7k
                        DEBUGVAR(1,80,"tns_data(): coef"));
2082
#if 0
2083
                    printf("%d\n", tns->coef[w][filt][i]);
2084
#endif
2085
27.7k
                }
2086
5.82k
            }
2087
11.9k
        }
2088
25.3k
    }
2089
16.0k
}
2090
2091
#ifdef LTP_DEC
2092
/* Table 4.4.28 */
2093
static uint8_t ltp_data(NeAACDecStruct *hDecoder, ic_stream *ics, ltp_info *ltp, bitfile *ld)
2094
{
2095
    uint8_t sfb, w;
2096
2097
    ltp->lag = 0;
2098
2099
#ifdef LD_DEC
2100
    if (hDecoder->object_type == LD)
2101
    {
2102
        ltp->lag_update = (uint8_t)faad_getbits(ld, 1
2103
            DEBUGVAR(1,142,"ltp_data(): lag_update"));
2104
2105
        if (ltp->lag_update)
2106
        {
2107
            ltp->lag = (uint16_t)faad_getbits(ld, 10
2108
                DEBUGVAR(1,81,"ltp_data(): lag"));
2109
        }
2110
    } else {
2111
#endif
2112
        ltp->lag = (uint16_t)faad_getbits(ld, 11
2113
            DEBUGVAR(1,81,"ltp_data(): lag"));
2114
#ifdef LD_DEC
2115
    }
2116
#endif
2117
2118
    /* Check length of lag */
2119
    if (ltp->lag > (hDecoder->frameLength << 1))
2120
        return 18;
2121
2122
    ltp->coef = (uint8_t)faad_getbits(ld, 3
2123
        DEBUGVAR(1,82,"ltp_data(): coef"));
2124
2125
    if (ics->window_sequence == EIGHT_SHORT_SEQUENCE)
2126
    {
2127
        for (w = 0; w < ics->num_windows; w++)
2128
        {
2129
            if ((ltp->short_used[w] = faad_get1bit(ld
2130
                DEBUGVAR(1,83,"ltp_data(): short_used"))) & 1)
2131
            {
2132
                ltp->short_lag_present[w] = faad_get1bit(ld
2133
                    DEBUGVAR(1,84,"ltp_data(): short_lag_present"));
2134
                if (ltp->short_lag_present[w])
2135
                {
2136
                    ltp->short_lag[w] = (uint8_t)faad_getbits(ld, 4
2137
                        DEBUGVAR(1,85,"ltp_data(): short_lag"));
2138
                }
2139
            }
2140
        }
2141
    } else {
2142
        ltp->last_band = (ics->max_sfb < MAX_LTP_SFB ? ics->max_sfb : MAX_LTP_SFB);
2143
2144
        for (sfb = 0; sfb < ltp->last_band; sfb++)
2145
        {
2146
            ltp->long_used[sfb] = faad_get1bit(ld
2147
                DEBUGVAR(1,86,"ltp_data(): long_used"));
2148
        }
2149
    }
2150
2151
    return 0;
2152
}
2153
#endif
2154
2155
/* Table 4.4.29 */
2156
static uint8_t spectral_data(NeAACDecStruct *hDecoder, ic_stream *ics, bitfile *ld,
2157
                             int16_t *spectral_data)
2158
149k
{
2159
149k
    int8_t i;
2160
149k
    uint8_t g;
2161
149k
    uint16_t inc, k, p = 0;
2162
149k
    uint8_t groups = 0;
2163
149k
    uint8_t sect_cb;
2164
149k
    uint8_t result;
2165
149k
    uint16_t nshort = hDecoder->frameLength/8;
2166
2167
#ifdef PROFILE
2168
    int64_t count = faad_get_ts();
2169
#endif
2170
2171
385k
    for(g = 0; g < ics->num_window_groups; g++)
2172
236k
    {
2173
236k
        p = groups*nshort;
2174
2175
267k
        for (i = 0; i < ics->num_sec[g]; i++)
2176
31.5k
        {
2177
31.5k
            sect_cb = ics->sect_cb[g][i];
2178
2179
31.5k
            inc = (sect_cb >= FIRST_PAIR_HCB) ? 2 : 4;
2180
2181
31.5k
            switch (sect_cb)
2182
31.5k
            {
2183
11.0k
            case ZERO_HCB:
2184
11.0k
            case NOISE_HCB:
2185
11.9k
            case INTENSITY_HCB:
2186
12.3k
            case INTENSITY_HCB2:
2187
//#define SD_PRINT
2188
#ifdef SD_PRINT
2189
                {
2190
                    int j;
2191
                    for (j = ics->sect_sfb_offset[g][ics->sect_start[g][i]]; j < ics->sect_sfb_offset[g][ics->sect_end[g][i]]; j++)
2192
                    {
2193
                        printf("%d\n", 0);
2194
                    }
2195
                }
2196
#endif
2197
//#define SFBO_PRINT
2198
#ifdef SFBO_PRINT
2199
                printf("%d\n", ics->sect_sfb_offset[g][ics->sect_start[g][i]]);
2200
#endif
2201
12.3k
                p += (ics->sect_sfb_offset[g][ics->sect_end[g][i]] -
2202
12.3k
                    ics->sect_sfb_offset[g][ics->sect_start[g][i]]);
2203
12.3k
                break;
2204
19.2k
            default:
2205
#ifdef SFBO_PRINT
2206
                printf("%d\n", ics->sect_sfb_offset[g][ics->sect_start[g][i]]);
2207
#endif
2208
19.2k
                for (k = ics->sect_sfb_offset[g][ics->sect_start[g][i]];
2209
249k
                     k < ics->sect_sfb_offset[g][ics->sect_end[g][i]]; k += inc)
2210
230k
                {
2211
230k
                    if ((result = huffman_spectral_data(sect_cb, ld, &spectral_data[p])) > 0)
2212
45
                        return result;
2213
#ifdef SD_PRINT
2214
                    {
2215
                        int j;
2216
                        for (j = p; j < p+inc; j++)
2217
                        {
2218
                            printf("%d\n", spectral_data[j]);
2219
                        }
2220
                    }
2221
#endif
2222
230k
                    p += inc;
2223
230k
                }
2224
19.1k
                break;
2225
31.5k
            }
2226
31.5k
        }
2227
236k
        groups += ics->window_group_length[g];
2228
236k
    }
2229
2230
#ifdef PROFILE
2231
    count = faad_get_ts() - count;
2232
    hDecoder->spectral_cycles += count;
2233
#endif
2234
2235
149k
    return 0;
2236
149k
}
2237
2238
#ifndef DRM
2239
/* Table 4.4.30 */
2240
static uint16_t extension_payload(bitfile *ld, drc_info *drc, uint16_t count)
2241
{
2242
    uint16_t i, n, dataElementLength;
2243
    uint8_t dataElementLengthPart;
2244
    uint8_t align = 4, data_element_version, loopCounter;
2245
2246
    uint8_t extension_type = (uint8_t)faad_getbits(ld, 4
2247
        DEBUGVAR(1,87,"extension_payload(): extension_type"));
2248
2249
    switch (extension_type)
2250
    {
2251
    case EXT_DYNAMIC_RANGE:
2252
        drc->present = 1;
2253
        n = dynamic_range_info(ld, drc);
2254
        return n;
2255
    case EXT_FILL_DATA:
2256
        /* fill_nibble = */ faad_getbits(ld, 4
2257
            DEBUGVAR(1,136,"extension_payload(): fill_nibble")); /* must be '0000' */
2258
        for (i = 0; i < count-1; i++)
2259
        {
2260
            /* fill_byte[i] = */ faad_getbits(ld, 8
2261
                DEBUGVAR(1,88,"extension_payload(): fill_byte")); /* must be '10100101' */
2262
        }
2263
        return count;
2264
    case EXT_DATA_ELEMENT:
2265
        data_element_version = (uint8_t)faad_getbits(ld, 4
2266
            DEBUGVAR(1,400,"extension_payload(): data_element_version"));
2267
        switch (data_element_version)
2268
        {
2269
        case ANC_DATA:
2270
            loopCounter = 0;
2271
            dataElementLength = 0;
2272
            do {
2273
                dataElementLengthPart = (uint8_t)faad_getbits(ld, 8
2274
                    DEBUGVAR(1,401,"extension_payload(): dataElementLengthPart"));
2275
                dataElementLength += dataElementLengthPart;
2276
                loopCounter++;
2277
            } while (dataElementLengthPart == 255);
2278
2279
            for (i = 0; i < dataElementLength; i++)
2280
            {
2281
                /* data_element_byte[i] = */ faad_getbits(ld, 8
2282
                    DEBUGVAR(1,402,"extension_payload(): data_element_byte"));
2283
                return (dataElementLength+loopCounter+1);
2284
            }
2285
        default:
2286
            align = 0;
2287
        }
2288
    case EXT_FIL:
2289
    default:
2290
        faad_getbits(ld, align
2291
            DEBUGVAR(1,88,"extension_payload(): fill_nibble"));
2292
        for (i = 0; i < count-1; i++)
2293
        {
2294
            /* other_bits[i] = */ faad_getbits(ld, 8
2295
               DEBUGVAR(1,89,"extension_payload(): fill_bit"));
2296
        }
2297
        return count;
2298
    }
2299
}
2300
2301
/* Table 4.4.31 */
2302
static uint8_t dynamic_range_info(bitfile *ld, drc_info *drc)
2303
{
2304
    uint8_t i, n = 1;
2305
    uint8_t band_incr;
2306
2307
    drc->num_bands = 1;
2308
2309
    if (faad_get1bit(ld
2310
        DEBUGVAR(1,90,"dynamic_range_info(): has instance_tag")) & 1)
2311
    {
2312
        drc->pce_instance_tag = (uint8_t)faad_getbits(ld, 4
2313
            DEBUGVAR(1,91,"dynamic_range_info(): pce_instance_tag"));
2314
        /* drc->drc_tag_reserved_bits = */ faad_getbits(ld, 4
2315
            DEBUGVAR(1,92,"dynamic_range_info(): drc_tag_reserved_bits"));
2316
        n++;
2317
    }
2318
2319
    drc->excluded_chns_present = faad_get1bit(ld
2320
        DEBUGVAR(1,93,"dynamic_range_info(): excluded_chns_present"));
2321
    if (drc->excluded_chns_present == 1)
2322
    {
2323
        n += excluded_channels(ld, drc);
2324
    }
2325
2326
    if (faad_get1bit(ld
2327
        DEBUGVAR(1,94,"dynamic_range_info(): has bands data")) & 1)
2328
    {
2329
        band_incr = (uint8_t)faad_getbits(ld, 4
2330
            DEBUGVAR(1,95,"dynamic_range_info(): band_incr"));
2331
        /* drc->drc_bands_reserved_bits = */ faad_getbits(ld, 4
2332
            DEBUGVAR(1,96,"dynamic_range_info(): drc_bands_reserved_bits"));
2333
        n++;
2334
        drc->num_bands += band_incr;
2335
2336
        for (i = 0; i < drc->num_bands; i++)
2337
        {
2338
            drc->band_top[i] = (uint8_t)faad_getbits(ld, 8
2339
                DEBUGVAR(1,97,"dynamic_range_info(): band_top"));
2340
            n++;
2341
        }
2342
    }
2343
2344
    if (faad_get1bit(ld
2345
        DEBUGVAR(1,98,"dynamic_range_info(): has prog_ref_level")) & 1)
2346
    {
2347
        drc->prog_ref_level = (uint8_t)faad_getbits(ld, 7
2348
            DEBUGVAR(1,99,"dynamic_range_info(): prog_ref_level"));
2349
        /* drc->prog_ref_level_reserved_bits = */ faad_get1bit(ld
2350
            DEBUGVAR(1,100,"dynamic_range_info(): prog_ref_level_reserved_bits"));
2351
        n++;
2352
    }
2353
2354
    for (i = 0; i < drc->num_bands; i++)
2355
    {
2356
        drc->dyn_rng_sgn[i] = faad_get1bit(ld
2357
            DEBUGVAR(1,101,"dynamic_range_info(): dyn_rng_sgn"));
2358
        drc->dyn_rng_ctl[i] = (uint8_t)faad_getbits(ld, 7
2359
            DEBUGVAR(1,102,"dynamic_range_info(): dyn_rng_ctl"));
2360
        n++;
2361
    }
2362
2363
    return n;
2364
}
2365
2366
/* Table 4.4.32 */
2367
static uint8_t excluded_channels(bitfile *ld, drc_info *drc)
2368
{
2369
    uint8_t i, n = 0;
2370
    uint8_t num_excl_chan = 7;
2371
2372
    for (i = 0; i < 7; i++)
2373
    {
2374
        drc->exclude_mask[i] = faad_get1bit(ld
2375
            DEBUGVAR(1,103,"excluded_channels(): exclude_mask"));
2376
    }
2377
    n++;
2378
2379
    while ((drc->additional_excluded_chns[n-1] = faad_get1bit(ld
2380
        DEBUGVAR(1,104,"excluded_channels(): additional_excluded_chns"))) == 1)
2381
    {
2382
        if (i >= MAX_CHANNELS - num_excl_chan - 7)
2383
            return n;
2384
        for (i = num_excl_chan; i < num_excl_chan+7; i++)
2385
        {
2386
            drc->exclude_mask[i] = faad_get1bit(ld
2387
                DEBUGVAR(1,105,"excluded_channels(): exclude_mask"));
2388
        }
2389
        n++;
2390
        num_excl_chan += 7;
2391
    }
2392
2393
    return n;
2394
}
2395
#endif
2396
2397
/* Annex A: Audio Interchange Formats */
2398
2399
/* Table 1.A.2 */
2400
void get_adif_header(adif_header *adif, bitfile *ld)
2401
114
{
2402
114
    uint8_t i;
2403
2404
    /* adif_id[0] = */ faad_getbits(ld, 8
2405
114
        DEBUGVAR(1,106,"get_adif_header(): adif_id[0]"));
2406
114
    /* adif_id[1] = */ faad_getbits(ld, 8
2407
114
        DEBUGVAR(1,107,"get_adif_header(): adif_id[1]"));
2408
114
    /* adif_id[2] = */ faad_getbits(ld, 8
2409
114
        DEBUGVAR(1,108,"get_adif_header(): adif_id[2]"));
2410
114
    /* adif_id[3] = */ faad_getbits(ld, 8
2411
114
        DEBUGVAR(1,109,"get_adif_header(): adif_id[3]"));
2412
114
    adif->copyright_id_present = faad_get1bit(ld
2413
114
        DEBUGVAR(1,110,"get_adif_header(): copyright_id_present"));
2414
114
    if(adif->copyright_id_present)
2415
13
    {
2416
130
        for (i = 0; i < 72/8; i++)
2417
117
        {
2418
117
            adif->copyright_id[i] = (int8_t)faad_getbits(ld, 8
2419
117
                DEBUGVAR(1,111,"get_adif_header(): copyright_id"));
2420
117
        }
2421
13
        adif->copyright_id[i] = 0;
2422
13
    }
2423
114
    adif->original_copy  = faad_get1bit(ld
2424
114
        DEBUGVAR(1,112,"get_adif_header(): original_copy"));
2425
114
    adif->home = faad_get1bit(ld
2426
114
        DEBUGVAR(1,113,"get_adif_header(): home"));
2427
114
    adif->bitstream_type = faad_get1bit(ld
2428
114
        DEBUGVAR(1,114,"get_adif_header(): bitstream_type"));
2429
114
    adif->bitrate = faad_getbits(ld, 23
2430
114
        DEBUGVAR(1,115,"get_adif_header(): bitrate"));
2431
114
    adif->num_program_config_elements = (uint8_t)faad_getbits(ld, 4
2432
114
        DEBUGVAR(1,116,"get_adif_header(): num_program_config_elements"));
2433
2434
1.46k
    for (i = 0; i < adif->num_program_config_elements + 1; i++)
2435
1.34k
    {
2436
1.34k
        if(adif->bitstream_type == 0)
2437
440
        {
2438
440
            adif->adif_buffer_fullness = faad_getbits(ld, 20
2439
440
                DEBUGVAR(1,117,"get_adif_header(): adif_buffer_fullness"));
2440
906
        } else {
2441
906
            adif->adif_buffer_fullness = 0;
2442
906
        }
2443
2444
1.34k
        program_config_element(&adif->pce[i], ld);
2445
1.34k
    }
2446
114
}
2447
2448
/* Table 1.A.5 */
2449
uint8_t adts_frame(adts_header *adts, bitfile *ld)
2450
5.60k
{
2451
    /* faad_byte_align(ld); */
2452
5.60k
    if (adts_fixed_header(adts, ld))
2453
5.43k
        return 5;
2454
167
    adts_variable_header(adts, ld);
2455
167
    adts_error_check(adts, ld);
2456
2457
167
    return 0;
2458
5.60k
}
2459
2460
/* Table 1.A.6 */
2461
static uint8_t adts_fixed_header(adts_header *adts, bitfile *ld)
2462
5.60k
{
2463
5.60k
    uint16_t i;
2464
5.60k
    uint8_t sync_err = 1;
2465
2466
    /* try to recover from sync errors */
2467
4.18M
    for (i = 0; i < 768; i++)
2468
4.18M
    {
2469
4.18M
        adts->syncword = (uint16_t)faad_showbits(ld, 12);
2470
4.18M
        if (adts->syncword != 0xFFF)
2471
4.18M
        {
2472
4.18M
            faad_getbits(ld, 8
2473
4.18M
                DEBUGVAR(0,0,""));
2474
4.18M
        } else {
2475
167
            sync_err = 0;
2476
167
            faad_getbits(ld, 12
2477
167
                DEBUGVAR(1,118,"adts_fixed_header(): syncword"));
2478
167
            break;
2479
167
        }
2480
4.18M
    }
2481
5.60k
    if (sync_err)
2482
5.43k
        return 5;
2483
2484
167
    adts->id = faad_get1bit(ld
2485
167
        DEBUGVAR(1,119,"adts_fixed_header(): id"));
2486
167
    adts->layer = (uint8_t)faad_getbits(ld, 2
2487
167
        DEBUGVAR(1,120,"adts_fixed_header(): layer"));
2488
167
    adts->protection_absent = faad_get1bit(ld
2489
167
        DEBUGVAR(1,121,"adts_fixed_header(): protection_absent"));
2490
167
    adts->profile = (uint8_t)faad_getbits(ld, 2
2491
167
        DEBUGVAR(1,122,"adts_fixed_header(): profile"));
2492
167
    adts->sf_index = (uint8_t)faad_getbits(ld, 4
2493
167
        DEBUGVAR(1,123,"adts_fixed_header(): sf_index"));
2494
167
    adts->private_bit = faad_get1bit(ld
2495
167
        DEBUGVAR(1,124,"adts_fixed_header(): private_bit"));
2496
167
    adts->channel_configuration = (uint8_t)faad_getbits(ld, 3
2497
167
        DEBUGVAR(1,125,"adts_fixed_header(): channel_configuration"));
2498
167
    adts->original = faad_get1bit(ld
2499
167
        DEBUGVAR(1,126,"adts_fixed_header(): original"));
2500
167
    adts->home = faad_get1bit(ld
2501
167
        DEBUGVAR(1,127,"adts_fixed_header(): home"));
2502
2503
167
    if (adts->old_format == 1)
2504
0
    {
2505
        /* Removed in corrigendum 14496-3:2002 */
2506
0
        if (adts->id == 0)
2507
0
        {
2508
0
            adts->emphasis = (uint8_t)faad_getbits(ld, 2
2509
0
                DEBUGVAR(1,128,"adts_fixed_header(): emphasis"));
2510
0
        }
2511
0
    }
2512
2513
167
    return 0;
2514
5.60k
}
2515
2516
/* Table 1.A.7 */
2517
static void adts_variable_header(adts_header *adts, bitfile *ld)
2518
167
{
2519
167
    adts->copyright_identification_bit = faad_get1bit(ld
2520
167
        DEBUGVAR(1,129,"adts_variable_header(): copyright_identification_bit"));
2521
167
    adts->copyright_identification_start = faad_get1bit(ld
2522
167
        DEBUGVAR(1,130,"adts_variable_header(): copyright_identification_start"));
2523
167
    adts->aac_frame_length = (uint16_t)faad_getbits(ld, 13
2524
167
        DEBUGVAR(1,131,"adts_variable_header(): aac_frame_length"));
2525
167
    adts->adts_buffer_fullness = (uint16_t)faad_getbits(ld, 11
2526
167
        DEBUGVAR(1,132,"adts_variable_header(): adts_buffer_fullness"));
2527
167
    adts->no_raw_data_blocks_in_frame = (uint8_t)faad_getbits(ld, 2
2528
167
        DEBUGVAR(1,133,"adts_variable_header(): no_raw_data_blocks_in_frame"));
2529
167
}
2530
2531
/* Table 1.A.8 */
2532
static void adts_error_check(adts_header *adts, bitfile *ld)
2533
167
{
2534
167
    if (adts->protection_absent == 0)
2535
47
    {
2536
47
        adts->crc_check = (uint16_t)faad_getbits(ld, 16
2537
47
            DEBUGVAR(1,134,"adts_error_check(): crc_check"));
2538
47
    }
2539
167
}
2540
2541
/* LATM parsing functions */
2542
#if 0
2543
2544
static uint32_t latm_get_value(bitfile *ld)
2545
{
2546
    uint32_t l, value;
2547
    uint8_t bytesForValue;
2548
2549
    bytesForValue = (uint8_t)faad_getbits(ld, 2);
2550
    value = 0;
2551
    for(l=0; l<bytesForValue; l++)
2552
        value = (value << 8) | (uint8_t)faad_getbits(ld, 8);
2553
2554
    return value;
2555
}
2556
2557
static uint32_t latmParsePayload(latm_header *latm, bitfile *ld)
2558
{
2559
    //assuming there's only one program with a single layer and 1 subFrame,
2560
    //allStreamsSametimeframing is set,
2561
    uint32_t framelen;
2562
    uint8_t tmp;
2563
2564
    //this should be the payload length field for the current configuration
2565
    framelen = 0;
2566
    if(latm->framelen_type==0)
2567
    {
2568
        do
2569
        {
2570
            tmp = (uint8_t)faad_getbits(ld, 8);
2571
            framelen += tmp;
2572
        } while(tmp==0xff);
2573
    }
2574
    else if(latm->framelen_type==1)
2575
        framelen=latm->frameLength;
2576
2577
    return framelen;
2578
}
2579
2580
static uint32_t latmAudioMuxElement(latm_header *latm, bitfile *ld)
2581
{
2582
    uint32_t ascLen, asc_bits=0;
2583
    uint32_t x1, y1, m, n, i;
2584
    program_config pce;
2585
    mp4AudioSpecificConfig mp4ASC;
2586
2587
    latm->useSameStreamMux = (uint8_t)faad_getbits(ld, 1);
2588
    if(!latm->useSameStreamMux)
2589
    {
2590
        //parseSameStreamMuxConfig
2591
        latm->version = (uint8_t) faad_getbits(ld, 1);
2592
        if(latm->version)
2593
            latm->versionA = (uint8_t) faad_getbits(ld, 1);
2594
        if(latm->versionA)
2595
        {
2596
            //dunno the payload format for versionA
2597
            fprintf(stderr, "versionA not supported\n");
2598
            return 0;
2599
        }
2600
        if(latm->version) //read taraBufferFullness
2601
            latm_get_value(ld);
2602
        latm->allStreamsSameTimeFraming = (uint8_t)faad_getbits(ld, 1);
2603
        latm->numSubFrames = (uint8_t)faad_getbits(ld, 6) + 1;
2604
        latm->numPrograms = (uint8_t)faad_getbits(ld, 4) + 1;
2605
        latm->numLayers = faad_getbits(ld, 3) + 1;
2606
        if(latm->numPrograms>1 || !latm->allStreamsSameTimeFraming || latm->numSubFrames>1 || latm->numLayers>1)
2607
        {
2608
            fprintf(stderr, "\r\nUnsupported LATM configuration: %d programs/ %d subframes, %d layers, allstreams: %d\n",
2609
                latm->numPrograms, latm->numSubFrames, latm->numLayers, latm->allStreamsSameTimeFraming);
2610
            return 0;
2611
        }
2612
        ascLen = 0;
2613
        if(latm->version)
2614
            ascLen = latm_get_value(ld);
2615
2616
        x1 = faad_get_processed_bits(ld);
2617
        if(AudioSpecificConfigFromBitfile(ld, &mp4ASC, &pce, 0, 1) < 0)
2618
            return 0;
2619
2620
        //horrid hack to unread the ASC bits and store them in latm->ASC
2621
        //the correct code would rely on an ideal faad_ungetbits()
2622
        y1 = faad_get_processed_bits(ld);
2623
        if((y1-x1) <= MAX_ASC_BYTES*8)
2624
        {
2625
            faad_rewindbits(ld);
2626
            m = x1;
2627
            while(m>0)
2628
            {
2629
                n = min(m, 32);
2630
                faad_getbits(ld, n);
2631
                m -= n;
2632
            }
2633
2634
            i = 0;
2635
            m = latm->ASCbits = y1 - x1;
2636
            while(m > 0)
2637
            {
2638
                n = min(m, 8);
2639
                latm->ASC[i++] = (uint8_t) faad_getbits(ld, n);
2640
                m -= n;
2641
            }
2642
        }
2643
2644
        asc_bits = y1-x1;
2645
2646
        if(ascLen>asc_bits)
2647
            faad_getbits(ld, ascLen-asc_bits);
2648
2649
        latm->framelen_type = (uint8_t) faad_getbits(ld, 3);
2650
        if(latm->framelen_type == 0)
2651
        {
2652
            latm->frameLength = 0;
2653
            faad_getbits(ld, 8); //buffer fullness for frame_len_type==0, useless
2654
        }
2655
        else if(latm->framelen_type == 1)
2656
        {
2657
            latm->frameLength = faad_getbits(ld, 9);
2658
            if(latm->frameLength==0)
2659
            {
2660
                fprintf(stderr, "Invalid frameLength: 0\r\n");
2661
                return 0;
2662
            }
2663
            latm->frameLength = (latm->frameLength+20)*8;
2664
        }
2665
        else
2666
        {   //hellish CELP or HCVX stuff, discard
2667
            fprintf(stderr, "Unsupported CELP/HCVX framelentype: %d\n", latm->framelen_type);
2668
            return 0;
2669
        }
2670
2671
        latm->otherDataLenBits = 0;
2672
        if(faad_getbits(ld, 1))
2673
        {   //other data present
2674
            int esc, tmp;
2675
            if(latm->version)
2676
                latm->otherDataLenBits = latm_get_value(ld);
2677
            else do
2678
            {
2679
                esc = faad_getbits(ld, 1);
2680
                tmp = faad_getbits(ld, 8);
2681
                latm->otherDataLenBits = (latm->otherDataLenBits << 8) + tmp;
2682
            } while(esc);
2683
        }
2684
        if(faad_getbits(ld, 1)) //crc
2685
            faad_getbits(ld, 8);
2686
        latm->inited = 1;
2687
      }
2688
2689
      //read payload
2690
      if(latm->inited)
2691
          return latmParsePayload(latm, ld);
2692
      else
2693
          return 0;
2694
}
2695
2696
uint32_t faad_latm_frame(latm_header *latm, bitfile *ld)
2697
{
2698
    uint16_t len;
2699
    uint32_t initpos, endpos, firstpos, ret;
2700
2701
    firstpos = faad_get_processed_bits(ld);
2702
    while (ld->bytes_left)
2703
    {
2704
        faad_byte_align(ld);
2705
        if(faad_showbits(ld, 11) != 0x2B7)
2706
        {
2707
            faad_getbits(ld, 8);
2708
            continue;
2709
        }
2710
        faad_getbits(ld, 11);
2711
        len = faad_getbits(ld, 13);
2712
        if(!len)
2713
            continue;
2714
        initpos = faad_get_processed_bits(ld);
2715
        ret = latmAudioMuxElement(latm, ld);
2716
        endpos = faad_get_processed_bits(ld);
2717
        if(ret>0)
2718
            return (len*8)-(endpos-initpos);
2719
        //faad_getbits(ld, initpos-endpos); //go back to initpos, but is valid a getbits(-N) ?
2720
    }
2721
    return 0xFFFFFFFF;
2722
}
2723
#endif