Coverage Report

Created: 2025-08-03 06:05

/proc/self/cwd/libfaad/decoder.c
Line
Count
Source (jump to first uncovered line)
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: decoder.c,v 1.119 2015/01/24 14:21:05 knik Exp $
29
**/
30
31
#include "common.h"
32
#include "structs.h"
33
34
#include <stdlib.h>
35
#include <stdio.h>
36
#include <string.h>
37
38
#include "mp4.h"
39
#include "syntax.h"
40
#include "error.h"
41
#include "output.h"
42
#include "filtbank.h"
43
#include "drc.h"
44
#ifdef SBR_DEC
45
#include "sbr_dec.h"
46
#include "sbr_syntax.h"
47
#endif
48
#ifdef SSR_DEC
49
#include "ssr.h"
50
#endif
51
52
#ifdef ANALYSIS
53
uint16_t dbg_count;
54
#endif
55
56
#if !defined(PACKAGE_VERSION)
57
#error "PACKAGE_VERSION must be defined"
58
#endif
59
60
/* static function declarations */
61
static void* aac_frame_decode(NeAACDecStruct *hDecoder,
62
                              NeAACDecFrameInfo *hInfo,
63
                              unsigned char *buffer,
64
                              unsigned long buffer_size,
65
                              void **sample_buffer2,
66
                              unsigned long sample_buffer_size);
67
static void create_channel_config(NeAACDecStruct *hDecoder,
68
                                  NeAACDecFrameInfo *hInfo);
69
70
71
int NeAACDecGetVersion(char **faad_id_string,
72
                                   char **faad_copyright_string)
73
320
{
74
320
    static char *libfaadName = PACKAGE_VERSION;
75
320
    static char *libCopyright =
76
320
        " Copyright 2002-2004: Ahead Software AG\n"
77
320
  " http://www.audiocoding.com\n"
78
320
  " bug tracking: https://sourceforge.net/p/faac/bugs/\n";
79
80
320
    if (faad_id_string)
81
320
        *faad_id_string = libfaadName;
82
83
320
    if (faad_copyright_string)
84
320
        *faad_copyright_string = libCopyright;
85
86
320
    return 0;
87
320
}
88
89
char* NeAACDecGetErrorMessage(unsigned char errcode)
90
320
{
91
320
    if (errcode >= NUM_ERROR_MESSAGES)
92
219
        return NULL;
93
101
    return err_msg[errcode];
94
320
}
95
96
unsigned long NeAACDecGetCapabilities(void)
97
1.28k
{
98
1.28k
    uint32_t cap = 0;
99
100
    /* can't do without it */
101
1.28k
    cap += LC_DEC_CAP;
102
103
#ifdef MAIN_DEC
104
320
    cap += MAIN_DEC_CAP;
105
#endif
106
#ifdef LTP_DEC
107
640
    cap += LTP_DEC_CAP;
108
#endif
109
#ifdef LD_DEC
110
640
    cap += LD_DEC_CAP;
111
#endif
112
1.28k
#ifdef ERROR_RESILIENCE
113
1.28k
    cap += ERROR_RESILIENCE_CAP;
114
1.28k
#endif
115
#ifdef FIXED_POINT
116
640
    cap += FIXED_POINT_CAP;
117
#endif
118
119
1.28k
    return cap;
120
1.28k
}
NeAACDecGetCapabilities
Line
Count
Source
97
320
{
98
320
    uint32_t cap = 0;
99
100
    /* can't do without it */
101
320
    cap += LC_DEC_CAP;
102
103
#ifdef MAIN_DEC
104
    cap += MAIN_DEC_CAP;
105
#endif
106
#ifdef LTP_DEC
107
    cap += LTP_DEC_CAP;
108
#endif
109
#ifdef LD_DEC
110
    cap += LD_DEC_CAP;
111
#endif
112
320
#ifdef ERROR_RESILIENCE
113
320
    cap += ERROR_RESILIENCE_CAP;
114
320
#endif
115
320
#ifdef FIXED_POINT
116
320
    cap += FIXED_POINT_CAP;
117
320
#endif
118
119
320
    return cap;
120
320
}
NeAACDecGetCapabilities
Line
Count
Source
97
320
{
98
320
    uint32_t cap = 0;
99
100
    /* can't do without it */
101
320
    cap += LC_DEC_CAP;
102
103
320
#ifdef MAIN_DEC
104
320
    cap += MAIN_DEC_CAP;
105
320
#endif
106
320
#ifdef LTP_DEC
107
320
    cap += LTP_DEC_CAP;
108
320
#endif
109
320
#ifdef LD_DEC
110
320
    cap += LD_DEC_CAP;
111
320
#endif
112
320
#ifdef ERROR_RESILIENCE
113
320
    cap += ERROR_RESILIENCE_CAP;
114
320
#endif
115
#ifdef FIXED_POINT
116
    cap += FIXED_POINT_CAP;
117
#endif
118
119
320
    return cap;
120
320
}
NeAACDecGetCapabilities
Line
Count
Source
97
320
{
98
320
    uint32_t cap = 0;
99
100
    /* can't do without it */
101
320
    cap += LC_DEC_CAP;
102
103
#ifdef MAIN_DEC
104
    cap += MAIN_DEC_CAP;
105
#endif
106
320
#ifdef LTP_DEC
107
320
    cap += LTP_DEC_CAP;
108
320
#endif
109
320
#ifdef LD_DEC
110
320
    cap += LD_DEC_CAP;
111
320
#endif
112
320
#ifdef ERROR_RESILIENCE
113
320
    cap += ERROR_RESILIENCE_CAP;
114
320
#endif
115
320
#ifdef FIXED_POINT
116
320
    cap += FIXED_POINT_CAP;
117
320
#endif
118
119
320
    return cap;
120
320
}
NeAACDecGetCapabilities
Line
Count
Source
97
320
{
98
320
    uint32_t cap = 0;
99
100
    /* can't do without it */
101
320
    cap += LC_DEC_CAP;
102
103
#ifdef MAIN_DEC
104
    cap += MAIN_DEC_CAP;
105
#endif
106
#ifdef LTP_DEC
107
    cap += LTP_DEC_CAP;
108
#endif
109
#ifdef LD_DEC
110
    cap += LD_DEC_CAP;
111
#endif
112
320
#ifdef ERROR_RESILIENCE
113
320
    cap += ERROR_RESILIENCE_CAP;
114
320
#endif
115
#ifdef FIXED_POINT
116
    cap += FIXED_POINT_CAP;
117
#endif
118
119
320
    return cap;
120
320
}
121
122
const unsigned char mes[] = { 0x67,0x20,0x61,0x20,0x20,0x20,0x6f,0x20,0x72,0x20,0x65,0x20,0x6e,0x20,0x20,0x20,0x74,0x20,0x68,0x20,0x67,0x20,0x69,0x20,0x72,0x20,0x79,0x20,0x70,0x20,0x6f,0x20,0x63 };
123
NeAACDecHandle NeAACDecOpen(void)
124
59.5k
{
125
59.5k
    uint8_t i;
126
59.5k
    NeAACDecStruct *hDecoder = NULL;
127
128
59.5k
    if ((hDecoder = (NeAACDecStruct*)faad_malloc(sizeof(NeAACDecStruct))) == NULL)
129
0
        return NULL;
130
131
59.5k
    memset(hDecoder, 0, sizeof(NeAACDecStruct));
132
133
59.5k
    hDecoder->cmes = mes;
134
59.5k
    hDecoder->config.outputFormat  = FAAD_FMT_16BIT;
135
59.5k
    hDecoder->config.defObjectType = MAIN;
136
59.5k
    hDecoder->config.defSampleRate = 44100; /* Default: 44.1kHz */
137
59.5k
    hDecoder->config.downMatrix = 0;
138
59.5k
    hDecoder->adts_header_present = 0;
139
59.5k
    hDecoder->adif_header_present = 0;
140
59.5k
    hDecoder->latm_header_present = 0;
141
59.5k
#ifdef ERROR_RESILIENCE
142
59.5k
    hDecoder->aacSectionDataResilienceFlag = 0;
143
59.5k
    hDecoder->aacScalefactorDataResilienceFlag = 0;
144
59.5k
    hDecoder->aacSpectralDataResilienceFlag = 0;
145
59.5k
#endif
146
59.5k
    hDecoder->frameLength = 1024;
147
148
59.5k
    hDecoder->frame = 0;
149
59.5k
    hDecoder->sample_buffer = NULL;
150
151
    // Same as (1, 1) after 1024 iterations; otherwise first values does not look random at all.
152
59.5k
    hDecoder->__r1 = 0x2bb431ea;
153
59.5k
    hDecoder->__r2 = 0x206155b7;
154
155
3.87M
    for (i = 0; i < MAX_CHANNELS; i++)
156
3.81M
    {
157
3.81M
        hDecoder->element_id[i] = INVALID_ELEMENT_ID;
158
3.81M
        hDecoder->window_shape_prev[i] = 0;
159
3.81M
        hDecoder->time_out[i] = NULL;
160
3.81M
        hDecoder->fb_intermed[i] = NULL;
161
#ifdef SSR_DEC
162
        hDecoder->ssr_overlap[i] = NULL;
163
        hDecoder->prev_fmd[i] = NULL;
164
#endif
165
#ifdef MAIN_DEC
166
        hDecoder->pred_stat[i] = NULL;
167
#endif
168
#ifdef LTP_DEC
169
        hDecoder->ltp_lag[i] = 0;
170
        hDecoder->lt_pred_stat[i] = NULL;
171
#endif
172
3.81M
    }
173
174
59.5k
#ifdef SBR_DEC
175
2.91M
    for (i = 0; i < MAX_SYNTAX_ELEMENTS; i++)
176
2.85M
    {
177
2.85M
        hDecoder->sbr[i] = NULL;
178
2.85M
    }
179
59.5k
#endif
180
181
59.5k
    hDecoder->drc = drc_init(REAL_CONST(1.0), REAL_CONST(1.0));
182
183
59.5k
    return hDecoder;
184
59.5k
}
NeAACDecOpen
Line
Count
Source
124
11.3k
{
125
11.3k
    uint8_t i;
126
11.3k
    NeAACDecStruct *hDecoder = NULL;
127
128
11.3k
    if ((hDecoder = (NeAACDecStruct*)faad_malloc(sizeof(NeAACDecStruct))) == NULL)
129
0
        return NULL;
130
131
11.3k
    memset(hDecoder, 0, sizeof(NeAACDecStruct));
132
133
11.3k
    hDecoder->cmes = mes;
134
11.3k
    hDecoder->config.outputFormat  = FAAD_FMT_16BIT;
135
11.3k
    hDecoder->config.defObjectType = MAIN;
136
11.3k
    hDecoder->config.defSampleRate = 44100; /* Default: 44.1kHz */
137
11.3k
    hDecoder->config.downMatrix = 0;
138
11.3k
    hDecoder->adts_header_present = 0;
139
11.3k
    hDecoder->adif_header_present = 0;
140
11.3k
    hDecoder->latm_header_present = 0;
141
11.3k
#ifdef ERROR_RESILIENCE
142
11.3k
    hDecoder->aacSectionDataResilienceFlag = 0;
143
11.3k
    hDecoder->aacScalefactorDataResilienceFlag = 0;
144
11.3k
    hDecoder->aacSpectralDataResilienceFlag = 0;
145
11.3k
#endif
146
11.3k
    hDecoder->frameLength = 1024;
147
148
11.3k
    hDecoder->frame = 0;
149
11.3k
    hDecoder->sample_buffer = NULL;
150
151
    // Same as (1, 1) after 1024 iterations; otherwise first values does not look random at all.
152
11.3k
    hDecoder->__r1 = 0x2bb431ea;
153
11.3k
    hDecoder->__r2 = 0x206155b7;
154
155
740k
    for (i = 0; i < MAX_CHANNELS; i++)
156
729k
    {
157
729k
        hDecoder->element_id[i] = INVALID_ELEMENT_ID;
158
729k
        hDecoder->window_shape_prev[i] = 0;
159
729k
        hDecoder->time_out[i] = NULL;
160
729k
        hDecoder->fb_intermed[i] = NULL;
161
#ifdef SSR_DEC
162
        hDecoder->ssr_overlap[i] = NULL;
163
        hDecoder->prev_fmd[i] = NULL;
164
#endif
165
#ifdef MAIN_DEC
166
        hDecoder->pred_stat[i] = NULL;
167
#endif
168
#ifdef LTP_DEC
169
        hDecoder->ltp_lag[i] = 0;
170
        hDecoder->lt_pred_stat[i] = NULL;
171
#endif
172
729k
    }
173
174
11.3k
#ifdef SBR_DEC
175
558k
    for (i = 0; i < MAX_SYNTAX_ELEMENTS; i++)
176
546k
    {
177
546k
        hDecoder->sbr[i] = NULL;
178
546k
    }
179
11.3k
#endif
180
181
11.3k
    hDecoder->drc = drc_init(REAL_CONST(1.0), REAL_CONST(1.0));
182
183
11.3k
    return hDecoder;
184
11.3k
}
NeAACDecOpen
Line
Count
Source
124
18.3k
{
125
18.3k
    uint8_t i;
126
18.3k
    NeAACDecStruct *hDecoder = NULL;
127
128
18.3k
    if ((hDecoder = (NeAACDecStruct*)faad_malloc(sizeof(NeAACDecStruct))) == NULL)
129
0
        return NULL;
130
131
18.3k
    memset(hDecoder, 0, sizeof(NeAACDecStruct));
132
133
18.3k
    hDecoder->cmes = mes;
134
18.3k
    hDecoder->config.outputFormat  = FAAD_FMT_16BIT;
135
18.3k
    hDecoder->config.defObjectType = MAIN;
136
18.3k
    hDecoder->config.defSampleRate = 44100; /* Default: 44.1kHz */
137
18.3k
    hDecoder->config.downMatrix = 0;
138
18.3k
    hDecoder->adts_header_present = 0;
139
18.3k
    hDecoder->adif_header_present = 0;
140
18.3k
    hDecoder->latm_header_present = 0;
141
18.3k
#ifdef ERROR_RESILIENCE
142
18.3k
    hDecoder->aacSectionDataResilienceFlag = 0;
143
18.3k
    hDecoder->aacScalefactorDataResilienceFlag = 0;
144
18.3k
    hDecoder->aacSpectralDataResilienceFlag = 0;
145
18.3k
#endif
146
18.3k
    hDecoder->frameLength = 1024;
147
148
18.3k
    hDecoder->frame = 0;
149
18.3k
    hDecoder->sample_buffer = NULL;
150
151
    // Same as (1, 1) after 1024 iterations; otherwise first values does not look random at all.
152
18.3k
    hDecoder->__r1 = 0x2bb431ea;
153
18.3k
    hDecoder->__r2 = 0x206155b7;
154
155
1.19M
    for (i = 0; i < MAX_CHANNELS; i++)
156
1.17M
    {
157
1.17M
        hDecoder->element_id[i] = INVALID_ELEMENT_ID;
158
1.17M
        hDecoder->window_shape_prev[i] = 0;
159
1.17M
        hDecoder->time_out[i] = NULL;
160
1.17M
        hDecoder->fb_intermed[i] = NULL;
161
#ifdef SSR_DEC
162
        hDecoder->ssr_overlap[i] = NULL;
163
        hDecoder->prev_fmd[i] = NULL;
164
#endif
165
1.17M
#ifdef MAIN_DEC
166
1.17M
        hDecoder->pred_stat[i] = NULL;
167
1.17M
#endif
168
1.17M
#ifdef LTP_DEC
169
1.17M
        hDecoder->ltp_lag[i] = 0;
170
1.17M
        hDecoder->lt_pred_stat[i] = NULL;
171
1.17M
#endif
172
1.17M
    }
173
174
18.3k
#ifdef SBR_DEC
175
900k
    for (i = 0; i < MAX_SYNTAX_ELEMENTS; i++)
176
882k
    {
177
882k
        hDecoder->sbr[i] = NULL;
178
882k
    }
179
18.3k
#endif
180
181
18.3k
    hDecoder->drc = drc_init(REAL_CONST(1.0), REAL_CONST(1.0));
182
183
18.3k
    return hDecoder;
184
18.3k
}
NeAACDecOpen
Line
Count
Source
124
11.3k
{
125
11.3k
    uint8_t i;
126
11.3k
    NeAACDecStruct *hDecoder = NULL;
127
128
11.3k
    if ((hDecoder = (NeAACDecStruct*)faad_malloc(sizeof(NeAACDecStruct))) == NULL)
129
0
        return NULL;
130
131
11.3k
    memset(hDecoder, 0, sizeof(NeAACDecStruct));
132
133
11.3k
    hDecoder->cmes = mes;
134
11.3k
    hDecoder->config.outputFormat  = FAAD_FMT_16BIT;
135
11.3k
    hDecoder->config.defObjectType = MAIN;
136
11.3k
    hDecoder->config.defSampleRate = 44100; /* Default: 44.1kHz */
137
11.3k
    hDecoder->config.downMatrix = 0;
138
11.3k
    hDecoder->adts_header_present = 0;
139
11.3k
    hDecoder->adif_header_present = 0;
140
11.3k
    hDecoder->latm_header_present = 0;
141
11.3k
#ifdef ERROR_RESILIENCE
142
11.3k
    hDecoder->aacSectionDataResilienceFlag = 0;
143
11.3k
    hDecoder->aacScalefactorDataResilienceFlag = 0;
144
11.3k
    hDecoder->aacSpectralDataResilienceFlag = 0;
145
11.3k
#endif
146
11.3k
    hDecoder->frameLength = 1024;
147
148
11.3k
    hDecoder->frame = 0;
149
11.3k
    hDecoder->sample_buffer = NULL;
150
151
    // Same as (1, 1) after 1024 iterations; otherwise first values does not look random at all.
152
11.3k
    hDecoder->__r1 = 0x2bb431ea;
153
11.3k
    hDecoder->__r2 = 0x206155b7;
154
155
740k
    for (i = 0; i < MAX_CHANNELS; i++)
156
729k
    {
157
729k
        hDecoder->element_id[i] = INVALID_ELEMENT_ID;
158
729k
        hDecoder->window_shape_prev[i] = 0;
159
729k
        hDecoder->time_out[i] = NULL;
160
729k
        hDecoder->fb_intermed[i] = NULL;
161
#ifdef SSR_DEC
162
        hDecoder->ssr_overlap[i] = NULL;
163
        hDecoder->prev_fmd[i] = NULL;
164
#endif
165
#ifdef MAIN_DEC
166
        hDecoder->pred_stat[i] = NULL;
167
#endif
168
729k
#ifdef LTP_DEC
169
729k
        hDecoder->ltp_lag[i] = 0;
170
729k
        hDecoder->lt_pred_stat[i] = NULL;
171
729k
#endif
172
729k
    }
173
174
11.3k
#ifdef SBR_DEC
175
558k
    for (i = 0; i < MAX_SYNTAX_ELEMENTS; i++)
176
546k
    {
177
546k
        hDecoder->sbr[i] = NULL;
178
546k
    }
179
11.3k
#endif
180
181
11.3k
    hDecoder->drc = drc_init(REAL_CONST(1.0), REAL_CONST(1.0));
182
183
11.3k
    return hDecoder;
184
11.3k
}
NeAACDecOpen
Line
Count
Source
124
18.3k
{
125
18.3k
    uint8_t i;
126
18.3k
    NeAACDecStruct *hDecoder = NULL;
127
128
18.3k
    if ((hDecoder = (NeAACDecStruct*)faad_malloc(sizeof(NeAACDecStruct))) == NULL)
129
0
        return NULL;
130
131
18.3k
    memset(hDecoder, 0, sizeof(NeAACDecStruct));
132
133
18.3k
    hDecoder->cmes = mes;
134
18.3k
    hDecoder->config.outputFormat  = FAAD_FMT_16BIT;
135
18.3k
    hDecoder->config.defObjectType = MAIN;
136
18.3k
    hDecoder->config.defSampleRate = 44100; /* Default: 44.1kHz */
137
18.3k
    hDecoder->config.downMatrix = 0;
138
18.3k
    hDecoder->adts_header_present = 0;
139
18.3k
    hDecoder->adif_header_present = 0;
140
18.3k
    hDecoder->latm_header_present = 0;
141
18.3k
#ifdef ERROR_RESILIENCE
142
18.3k
    hDecoder->aacSectionDataResilienceFlag = 0;
143
18.3k
    hDecoder->aacScalefactorDataResilienceFlag = 0;
144
18.3k
    hDecoder->aacSpectralDataResilienceFlag = 0;
145
18.3k
#endif
146
18.3k
    hDecoder->frameLength = 1024;
147
148
18.3k
    hDecoder->frame = 0;
149
18.3k
    hDecoder->sample_buffer = NULL;
150
151
    // Same as (1, 1) after 1024 iterations; otherwise first values does not look random at all.
152
18.3k
    hDecoder->__r1 = 0x2bb431ea;
153
18.3k
    hDecoder->__r2 = 0x206155b7;
154
155
1.19M
    for (i = 0; i < MAX_CHANNELS; i++)
156
1.17M
    {
157
1.17M
        hDecoder->element_id[i] = INVALID_ELEMENT_ID;
158
1.17M
        hDecoder->window_shape_prev[i] = 0;
159
1.17M
        hDecoder->time_out[i] = NULL;
160
1.17M
        hDecoder->fb_intermed[i] = NULL;
161
#ifdef SSR_DEC
162
        hDecoder->ssr_overlap[i] = NULL;
163
        hDecoder->prev_fmd[i] = NULL;
164
#endif
165
#ifdef MAIN_DEC
166
        hDecoder->pred_stat[i] = NULL;
167
#endif
168
#ifdef LTP_DEC
169
        hDecoder->ltp_lag[i] = 0;
170
        hDecoder->lt_pred_stat[i] = NULL;
171
#endif
172
1.17M
    }
173
174
18.3k
#ifdef SBR_DEC
175
900k
    for (i = 0; i < MAX_SYNTAX_ELEMENTS; i++)
176
882k
    {
177
882k
        hDecoder->sbr[i] = NULL;
178
882k
    }
179
18.3k
#endif
180
181
18.3k
    hDecoder->drc = drc_init(REAL_CONST(1.0), REAL_CONST(1.0));
182
183
18.3k
    return hDecoder;
184
18.3k
}
185
186
NeAACDecConfigurationPtr NeAACDecGetCurrentConfiguration(NeAACDecHandle hpDecoder)
187
28.6k
{
188
28.6k
    NeAACDecStruct* hDecoder = (NeAACDecStruct*)hpDecoder;
189
28.6k
    if (hDecoder)
190
28.6k
    {
191
28.6k
        NeAACDecConfigurationPtr config = &(hDecoder->config);
192
193
28.6k
        return config;
194
28.6k
    }
195
196
0
    return NULL;
197
28.6k
}
198
199
unsigned char NeAACDecSetConfiguration(NeAACDecHandle hpDecoder,
200
                                                   NeAACDecConfigurationPtr config)
201
28.9k
{
202
28.9k
    NeAACDecStruct* hDecoder = (NeAACDecStruct*)hpDecoder;
203
28.9k
    if (hDecoder && config)
204
28.9k
    {
205
        /* check if we can decode this object type */
206
28.9k
        if (can_decode_ot(config->defObjectType) < 0)
207
22
            return 0;
208
28.9k
        hDecoder->config.defObjectType = config->defObjectType;
209
210
        /* samplerate: anything but 0 should be possible */
211
28.9k
        if (config->defSampleRate == 0)
212
3
            return 0;
213
28.9k
        hDecoder->config.defSampleRate = config->defSampleRate;
214
215
        /* check output format */
216
28.9k
#ifdef FIXED_POINT
217
28.9k
        if ((config->outputFormat < 1) || (config->outputFormat > 4))
218
199
            return 0;
219
#else
220
        if ((config->outputFormat < 1) || (config->outputFormat > 5))
221
            return 0;
222
#endif
223
28.7k
        hDecoder->config.outputFormat = config->outputFormat;
224
225
28.7k
        if (config->downMatrix > 1)
226
31
            return 0;
227
28.6k
        hDecoder->config.downMatrix = config->downMatrix;
228
229
        /* OK */
230
28.6k
        return 1;
231
28.7k
    }
232
233
0
    return 0;
234
28.9k
}
235
236
237
#if 0
238
static int latmCheck(latm_header *latm, bitfile *ld)
239
{
240
    uint32_t good=0, bad=0, bits, m;
241
242
    while (ld->bytes_left)
243
    {
244
        bits = faad_latm_frame(latm, ld);
245
        if(bits==0xFFFFFFFF)
246
            bad++;
247
        else
248
        {
249
            good++;
250
            while(bits>0)
251
            {
252
                m = min(bits, 8);
253
                faad_getbits(ld, m);
254
                bits -= m;
255
            }
256
        }
257
    }
258
259
    return (good>0);
260
}
261
#endif
262
263
long NeAACDecInit(NeAACDecHandle hpDecoder,
264
                              unsigned char *buffer,
265
                              unsigned long buffer_size,
266
                              unsigned long *samplerate,
267
                              unsigned char *channels)
268
20.2k
{
269
20.2k
    uint32_t bits = 0;
270
20.2k
    bitfile ld;
271
20.2k
    adif_header adif;
272
20.2k
    adts_header adts;
273
20.2k
    NeAACDecStruct* hDecoder = (NeAACDecStruct*)hpDecoder;
274
275
276
20.2k
    if ((hDecoder == NULL) || (samplerate == NULL) || (channels == NULL) || (buffer_size == 0))
277
45
        return -1;
278
279
20.2k
    adts.old_format = hDecoder->config.useOldADTSFormat;
280
20.2k
    hDecoder->sf_index = get_sr_index(hDecoder->config.defSampleRate);
281
20.2k
    hDecoder->object_type = hDecoder->config.defObjectType;
282
20.2k
    *samplerate = get_sample_rate(hDecoder->sf_index);
283
20.2k
    *channels = 1;
284
285
20.2k
    if (buffer != NULL)
286
20.2k
    {
287
#if 0
288
        int is_latm;
289
        latm_header *l = &hDecoder->latm_config;
290
#endif
291
292
20.2k
        faad_initbits(&ld, buffer, buffer_size);
293
294
#if 0
295
        memset(l, 0, sizeof(latm_header));
296
        is_latm = latmCheck(l, &ld);
297
        l->inited = 0;
298
        l->frameLength = 0;
299
        faad_rewindbits(&ld);
300
        if(is_latm && l->ASCbits>0)
301
        {
302
            int32_t x;
303
            hDecoder->latm_header_present = 1;
304
            x = NeAACDecInit2(hDecoder, l->ASC, (l->ASCbits+7)/8, samplerate, channels);
305
            if(x!=0)
306
                hDecoder->latm_header_present = 0;
307
            return x;
308
        } else
309
#endif
310
        /* Check if an ADIF header is present */
311
20.2k
        if ((buffer_size >= 8) && (buffer[0] == 'A') && (buffer[1] == 'D') &&
312
20.2k
            (buffer[2] == 'I') && (buffer[3] == 'F'))
313
416
        {
314
416
            hDecoder->adif_header_present = 1;
315
316
416
            get_adif_header(&adif, &ld);
317
416
            faad_byte_align(&ld);
318
319
416
            hDecoder->sf_index = adif.pce[0].sf_index;
320
416
            hDecoder->object_type = adif.pce[0].object_type + 1;
321
322
416
            *samplerate = get_sample_rate(hDecoder->sf_index);
323
416
            *channels = adif.pce[0].channels;
324
325
416
            memcpy(&(hDecoder->pce), &(adif.pce[0]), sizeof(program_config));
326
416
            hDecoder->pce_set = 1;
327
328
416
            bits = bit2byte(faad_get_processed_bits(&ld));
329
330
        /* Check if an ADTS header is present */
331
19.8k
        } else if (adts_frame(&adts, &ld) == 0) {
332
572
            hDecoder->adts_header_present = 1;
333
334
572
            hDecoder->sf_index = adts.sf_index;
335
572
            hDecoder->object_type = adts.profile + 1;
336
337
572
            *samplerate = get_sample_rate(hDecoder->sf_index);
338
572
            *channels = (adts.channel_configuration > 6) ?
339
516
                2 : adts.channel_configuration;
340
572
        }
341
342
20.2k
        if (ld.error)
343
0
        {
344
0
            faad_endbits(&ld);
345
0
            return -1;
346
0
        }
347
20.2k
        faad_endbits(&ld);
348
20.2k
    }
349
350
20.2k
    if (!*samplerate)
351
168
        return -1;
352
353
20.0k
#if (defined(PS_DEC) || defined(DRM_PS))
354
    /* check if we have a mono file */
355
20.0k
    if (*channels == 1)
356
19.2k
    {
357
        /* upMatrix to 2 channels for implicit signalling of PS */
358
19.2k
        *channels = 2;
359
19.2k
    }
360
20.0k
#endif
361
362
20.0k
    hDecoder->channelConfiguration = *channels;
363
364
20.0k
#ifdef SBR_DEC
365
    /* implicit signalling */
366
20.0k
    if (*samplerate <= 24000 && (hDecoder->config.dontUpSampleImplicitSBR == 0))
367
9.18k
    {
368
9.18k
        *samplerate *= 2;
369
9.18k
        hDecoder->forceUpSampling = 1;
370
10.8k
    } else if (*samplerate > 24000 && (hDecoder->config.dontUpSampleImplicitSBR == 0)) {
371
10.8k
        hDecoder->downSampledSBR = 1;
372
10.8k
    }
373
20.0k
#endif
374
375
    /* must be done before frameLength is divided by 2 for LD */
376
#ifdef SSR_DEC
377
    if (hDecoder->object_type == SSR)
378
        hDecoder->fb = ssr_filter_bank_init(hDecoder->frameLength/SSR_BANDS);
379
    else
380
#endif
381
20.0k
        hDecoder->fb = filter_bank_init(hDecoder->frameLength);
382
383
#ifdef LD_DEC
384
13.0k
    if (hDecoder->object_type == LD)
385
573
        hDecoder->frameLength >>= 1;
386
#endif
387
388
20.0k
    if (can_decode_ot(hDecoder->object_type) < 0)
389
215
        return -1;
390
391
19.8k
    return bits;
392
20.0k
}
NeAACDecInit
Line
Count
Source
268
7.13k
{
269
7.13k
    uint32_t bits = 0;
270
7.13k
    bitfile ld;
271
7.13k
    adif_header adif;
272
7.13k
    adts_header adts;
273
7.13k
    NeAACDecStruct* hDecoder = (NeAACDecStruct*)hpDecoder;
274
275
276
7.13k
    if ((hDecoder == NULL) || (samplerate == NULL) || (channels == NULL) || (buffer_size == 0))
277
26
        return -1;
278
279
7.11k
    adts.old_format = hDecoder->config.useOldADTSFormat;
280
7.11k
    hDecoder->sf_index = get_sr_index(hDecoder->config.defSampleRate);
281
7.11k
    hDecoder->object_type = hDecoder->config.defObjectType;
282
7.11k
    *samplerate = get_sample_rate(hDecoder->sf_index);
283
7.11k
    *channels = 1;
284
285
7.11k
    if (buffer != NULL)
286
7.11k
    {
287
#if 0
288
        int is_latm;
289
        latm_header *l = &hDecoder->latm_config;
290
#endif
291
292
7.11k
        faad_initbits(&ld, buffer, buffer_size);
293
294
#if 0
295
        memset(l, 0, sizeof(latm_header));
296
        is_latm = latmCheck(l, &ld);
297
        l->inited = 0;
298
        l->frameLength = 0;
299
        faad_rewindbits(&ld);
300
        if(is_latm && l->ASCbits>0)
301
        {
302
            int32_t x;
303
            hDecoder->latm_header_present = 1;
304
            x = NeAACDecInit2(hDecoder, l->ASC, (l->ASCbits+7)/8, samplerate, channels);
305
            if(x!=0)
306
                hDecoder->latm_header_present = 0;
307
            return x;
308
        } else
309
#endif
310
        /* Check if an ADIF header is present */
311
7.11k
        if ((buffer_size >= 8) && (buffer[0] == 'A') && (buffer[1] == 'D') &&
312
7.11k
            (buffer[2] == 'I') && (buffer[3] == 'F'))
313
174
        {
314
174
            hDecoder->adif_header_present = 1;
315
316
174
            get_adif_header(&adif, &ld);
317
174
            faad_byte_align(&ld);
318
319
174
            hDecoder->sf_index = adif.pce[0].sf_index;
320
174
            hDecoder->object_type = adif.pce[0].object_type + 1;
321
322
174
            *samplerate = get_sample_rate(hDecoder->sf_index);
323
174
            *channels = adif.pce[0].channels;
324
325
174
            memcpy(&(hDecoder->pce), &(adif.pce[0]), sizeof(program_config));
326
174
            hDecoder->pce_set = 1;
327
328
174
            bits = bit2byte(faad_get_processed_bits(&ld));
329
330
        /* Check if an ADTS header is present */
331
6.93k
        } else if (adts_frame(&adts, &ld) == 0) {
332
108
            hDecoder->adts_header_present = 1;
333
334
108
            hDecoder->sf_index = adts.sf_index;
335
108
            hDecoder->object_type = adts.profile + 1;
336
337
108
            *samplerate = get_sample_rate(hDecoder->sf_index);
338
108
            *channels = (adts.channel_configuration > 6) ?
339
91
                2 : adts.channel_configuration;
340
108
        }
341
342
7.11k
        if (ld.error)
343
0
        {
344
0
            faad_endbits(&ld);
345
0
            return -1;
346
0
        }
347
7.11k
        faad_endbits(&ld);
348
7.11k
    }
349
350
7.11k
    if (!*samplerate)
351
68
        return -1;
352
353
7.04k
#if (defined(PS_DEC) || defined(DRM_PS))
354
    /* check if we have a mono file */
355
7.04k
    if (*channels == 1)
356
6.83k
    {
357
        /* upMatrix to 2 channels for implicit signalling of PS */
358
6.83k
        *channels = 2;
359
6.83k
    }
360
7.04k
#endif
361
362
7.04k
    hDecoder->channelConfiguration = *channels;
363
364
7.04k
#ifdef SBR_DEC
365
    /* implicit signalling */
366
7.04k
    if (*samplerate <= 24000 && (hDecoder->config.dontUpSampleImplicitSBR == 0))
367
3.27k
    {
368
3.27k
        *samplerate *= 2;
369
3.27k
        hDecoder->forceUpSampling = 1;
370
3.77k
    } else if (*samplerate > 24000 && (hDecoder->config.dontUpSampleImplicitSBR == 0)) {
371
3.77k
        hDecoder->downSampledSBR = 1;
372
3.77k
    }
373
7.04k
#endif
374
375
    /* must be done before frameLength is divided by 2 for LD */
376
#ifdef SSR_DEC
377
    if (hDecoder->object_type == SSR)
378
        hDecoder->fb = ssr_filter_bank_init(hDecoder->frameLength/SSR_BANDS);
379
    else
380
#endif
381
7.04k
        hDecoder->fb = filter_bank_init(hDecoder->frameLength);
382
383
#ifdef LD_DEC
384
    if (hDecoder->object_type == LD)
385
        hDecoder->frameLength >>= 1;
386
#endif
387
388
7.04k
    if (can_decode_ot(hDecoder->object_type) < 0)
389
122
        return -1;
390
391
6.92k
    return bits;
392
7.04k
}
NeAACDecInit
Line
Count
Source
268
13.1k
{
269
13.1k
    uint32_t bits = 0;
270
13.1k
    bitfile ld;
271
13.1k
    adif_header adif;
272
13.1k
    adts_header adts;
273
13.1k
    NeAACDecStruct* hDecoder = (NeAACDecStruct*)hpDecoder;
274
275
276
13.1k
    if ((hDecoder == NULL) || (samplerate == NULL) || (channels == NULL) || (buffer_size == 0))
277
19
        return -1;
278
279
13.1k
    adts.old_format = hDecoder->config.useOldADTSFormat;
280
13.1k
    hDecoder->sf_index = get_sr_index(hDecoder->config.defSampleRate);
281
13.1k
    hDecoder->object_type = hDecoder->config.defObjectType;
282
13.1k
    *samplerate = get_sample_rate(hDecoder->sf_index);
283
13.1k
    *channels = 1;
284
285
13.1k
    if (buffer != NULL)
286
13.1k
    {
287
#if 0
288
        int is_latm;
289
        latm_header *l = &hDecoder->latm_config;
290
#endif
291
292
13.1k
        faad_initbits(&ld, buffer, buffer_size);
293
294
#if 0
295
        memset(l, 0, sizeof(latm_header));
296
        is_latm = latmCheck(l, &ld);
297
        l->inited = 0;
298
        l->frameLength = 0;
299
        faad_rewindbits(&ld);
300
        if(is_latm && l->ASCbits>0)
301
        {
302
            int32_t x;
303
            hDecoder->latm_header_present = 1;
304
            x = NeAACDecInit2(hDecoder, l->ASC, (l->ASCbits+7)/8, samplerate, channels);
305
            if(x!=0)
306
                hDecoder->latm_header_present = 0;
307
            return x;
308
        } else
309
#endif
310
        /* Check if an ADIF header is present */
311
13.1k
        if ((buffer_size >= 8) && (buffer[0] == 'A') && (buffer[1] == 'D') &&
312
13.1k
            (buffer[2] == 'I') && (buffer[3] == 'F'))
313
242
        {
314
242
            hDecoder->adif_header_present = 1;
315
316
242
            get_adif_header(&adif, &ld);
317
242
            faad_byte_align(&ld);
318
319
242
            hDecoder->sf_index = adif.pce[0].sf_index;
320
242
            hDecoder->object_type = adif.pce[0].object_type + 1;
321
322
242
            *samplerate = get_sample_rate(hDecoder->sf_index);
323
242
            *channels = adif.pce[0].channels;
324
325
242
            memcpy(&(hDecoder->pce), &(adif.pce[0]), sizeof(program_config));
326
242
            hDecoder->pce_set = 1;
327
328
242
            bits = bit2byte(faad_get_processed_bits(&ld));
329
330
        /* Check if an ADTS header is present */
331
12.8k
        } else if (adts_frame(&adts, &ld) == 0) {
332
464
            hDecoder->adts_header_present = 1;
333
334
464
            hDecoder->sf_index = adts.sf_index;
335
464
            hDecoder->object_type = adts.profile + 1;
336
337
464
            *samplerate = get_sample_rate(hDecoder->sf_index);
338
464
            *channels = (adts.channel_configuration > 6) ?
339
425
                2 : adts.channel_configuration;
340
464
        }
341
342
13.1k
        if (ld.error)
343
0
        {
344
0
            faad_endbits(&ld);
345
0
            return -1;
346
0
        }
347
13.1k
        faad_endbits(&ld);
348
13.1k
    }
349
350
13.1k
    if (!*samplerate)
351
100
        return -1;
352
353
13.0k
#if (defined(PS_DEC) || defined(DRM_PS))
354
    /* check if we have a mono file */
355
13.0k
    if (*channels == 1)
356
12.4k
    {
357
        /* upMatrix to 2 channels for implicit signalling of PS */
358
12.4k
        *channels = 2;
359
12.4k
    }
360
13.0k
#endif
361
362
13.0k
    hDecoder->channelConfiguration = *channels;
363
364
13.0k
#ifdef SBR_DEC
365
    /* implicit signalling */
366
13.0k
    if (*samplerate <= 24000 && (hDecoder->config.dontUpSampleImplicitSBR == 0))
367
5.91k
    {
368
5.91k
        *samplerate *= 2;
369
5.91k
        hDecoder->forceUpSampling = 1;
370
7.11k
    } else if (*samplerate > 24000 && (hDecoder->config.dontUpSampleImplicitSBR == 0)) {
371
7.11k
        hDecoder->downSampledSBR = 1;
372
7.11k
    }
373
13.0k
#endif
374
375
    /* must be done before frameLength is divided by 2 for LD */
376
#ifdef SSR_DEC
377
    if (hDecoder->object_type == SSR)
378
        hDecoder->fb = ssr_filter_bank_init(hDecoder->frameLength/SSR_BANDS);
379
    else
380
#endif
381
13.0k
        hDecoder->fb = filter_bank_init(hDecoder->frameLength);
382
383
13.0k
#ifdef LD_DEC
384
13.0k
    if (hDecoder->object_type == LD)
385
573
        hDecoder->frameLength >>= 1;
386
13.0k
#endif
387
388
13.0k
    if (can_decode_ot(hDecoder->object_type) < 0)
389
93
        return -1;
390
391
12.9k
    return bits;
392
13.0k
}
393
394
/* Init the library using a DecoderSpecificInfo */
395
char NeAACDecInit2(NeAACDecHandle hpDecoder,
396
                               unsigned char *pBuffer,
397
                               unsigned long SizeOfDecoderSpecificInfo,
398
                               unsigned long *samplerate,
399
                               unsigned char *channels)
400
8.38k
{
401
8.38k
    NeAACDecStruct* hDecoder = (NeAACDecStruct*)hpDecoder;
402
8.38k
    int8_t rc;
403
8.38k
    mp4AudioSpecificConfig mp4ASC;
404
405
8.38k
    if((hDecoder == NULL)
406
8.38k
        || (pBuffer == NULL)
407
8.38k
        || (SizeOfDecoderSpecificInfo < 2)
408
8.38k
        || (samplerate == NULL)
409
8.38k
        || (channels == NULL))
410
19
    {
411
19
        return -1;
412
19
    }
413
414
8.37k
    hDecoder->adif_header_present = 0;
415
8.37k
    hDecoder->adts_header_present = 0;
416
417
    /* decode the audio specific config */
418
8.37k
    rc = AudioSpecificConfig2(pBuffer, SizeOfDecoderSpecificInfo, &mp4ASC,
419
8.37k
        &(hDecoder->pce), hDecoder->latm_header_present);
420
421
    /* copy the relevant info to the decoder handle */
422
8.37k
    *samplerate = mp4ASC.samplingFrequency;
423
8.37k
    if (mp4ASC.channelsConfiguration)
424
7.00k
    {
425
7.00k
        *channels = mp4ASC.channelsConfiguration;
426
7.00k
    } else {
427
1.36k
        *channels = hDecoder->pce.channels;
428
1.36k
        hDecoder->pce_set = 1;
429
1.36k
    }
430
8.37k
#if (defined(PS_DEC) || defined(DRM_PS))
431
    /* check if we have a mono file */
432
8.37k
    if (*channels == 1)
433
52
    {
434
        /* upMatrix to 2 channels for implicit signalling of PS */
435
52
        *channels = 2;
436
52
    }
437
8.37k
#endif
438
8.37k
    hDecoder->sf_index = mp4ASC.samplingFrequencyIndex;
439
8.37k
    hDecoder->object_type = mp4ASC.objectTypeIndex;
440
8.37k
#ifdef ERROR_RESILIENCE
441
8.37k
    hDecoder->aacSectionDataResilienceFlag = mp4ASC.aacSectionDataResilienceFlag;
442
8.37k
    hDecoder->aacScalefactorDataResilienceFlag = mp4ASC.aacScalefactorDataResilienceFlag;
443
8.37k
    hDecoder->aacSpectralDataResilienceFlag = mp4ASC.aacSpectralDataResilienceFlag;
444
8.37k
#endif
445
8.37k
#ifdef SBR_DEC
446
8.37k
    hDecoder->sbr_present_flag = mp4ASC.sbr_present_flag;
447
8.37k
    hDecoder->downSampledSBR = mp4ASC.downSampledSBR;
448
8.37k
    if (hDecoder->config.dontUpSampleImplicitSBR == 0)
449
8.37k
        hDecoder->forceUpSampling = mp4ASC.forceUpSampling;
450
0
    else
451
0
        hDecoder->forceUpSampling = 0;
452
453
    /* AAC core decoder samplerate is 2 times as low */
454
8.37k
    if (((hDecoder->sbr_present_flag == 1)&&(!hDecoder->downSampledSBR)) || hDecoder->forceUpSampling == 1)
455
5.36k
    {
456
5.36k
        hDecoder->sf_index = get_sr_index(mp4ASC.samplingFrequency / 2);
457
5.36k
    }
458
8.37k
#endif
459
460
8.37k
    if (rc != 0)
461
98
    {
462
98
        return rc;
463
98
    }
464
8.27k
    hDecoder->channelConfiguration = mp4ASC.channelsConfiguration;
465
8.27k
    if (mp4ASC.frameLengthFlag)
466
5.25k
#ifdef ALLOW_SMALL_FRAMELENGTH
467
5.25k
        hDecoder->frameLength = 960;
468
#else
469
        return -1;
470
#endif
471
472
    /* must be done before frameLength is divided by 2 for LD */
473
#ifdef SSR_DEC
474
    if (hDecoder->object_type == SSR)
475
        hDecoder->fb = ssr_filter_bank_init(hDecoder->frameLength/SSR_BANDS);
476
    else
477
#endif
478
8.27k
        hDecoder->fb = filter_bank_init(hDecoder->frameLength);
479
480
#ifdef LD_DEC
481
5.54k
    if (hDecoder->object_type == LD)
482
618
        hDecoder->frameLength >>= 1;
483
#endif
484
485
8.27k
    return 0;
486
8.37k
}
NeAACDecInit2
Line
Count
Source
400
2.78k
{
401
2.78k
    NeAACDecStruct* hDecoder = (NeAACDecStruct*)hpDecoder;
402
2.78k
    int8_t rc;
403
2.78k
    mp4AudioSpecificConfig mp4ASC;
404
405
2.78k
    if((hDecoder == NULL)
406
2.78k
        || (pBuffer == NULL)
407
2.78k
        || (SizeOfDecoderSpecificInfo < 2)
408
2.78k
        || (samplerate == NULL)
409
2.78k
        || (channels == NULL))
410
11
    {
411
11
        return -1;
412
11
    }
413
414
2.77k
    hDecoder->adif_header_present = 0;
415
2.77k
    hDecoder->adts_header_present = 0;
416
417
    /* decode the audio specific config */
418
2.77k
    rc = AudioSpecificConfig2(pBuffer, SizeOfDecoderSpecificInfo, &mp4ASC,
419
2.77k
        &(hDecoder->pce), hDecoder->latm_header_present);
420
421
    /* copy the relevant info to the decoder handle */
422
2.77k
    *samplerate = mp4ASC.samplingFrequency;
423
2.77k
    if (mp4ASC.channelsConfiguration)
424
2.22k
    {
425
2.22k
        *channels = mp4ASC.channelsConfiguration;
426
2.22k
    } else {
427
542
        *channels = hDecoder->pce.channels;
428
542
        hDecoder->pce_set = 1;
429
542
    }
430
2.77k
#if (defined(PS_DEC) || defined(DRM_PS))
431
    /* check if we have a mono file */
432
2.77k
    if (*channels == 1)
433
34
    {
434
        /* upMatrix to 2 channels for implicit signalling of PS */
435
34
        *channels = 2;
436
34
    }
437
2.77k
#endif
438
2.77k
    hDecoder->sf_index = mp4ASC.samplingFrequencyIndex;
439
2.77k
    hDecoder->object_type = mp4ASC.objectTypeIndex;
440
2.77k
#ifdef ERROR_RESILIENCE
441
2.77k
    hDecoder->aacSectionDataResilienceFlag = mp4ASC.aacSectionDataResilienceFlag;
442
2.77k
    hDecoder->aacScalefactorDataResilienceFlag = mp4ASC.aacScalefactorDataResilienceFlag;
443
2.77k
    hDecoder->aacSpectralDataResilienceFlag = mp4ASC.aacSpectralDataResilienceFlag;
444
2.77k
#endif
445
2.77k
#ifdef SBR_DEC
446
2.77k
    hDecoder->sbr_present_flag = mp4ASC.sbr_present_flag;
447
2.77k
    hDecoder->downSampledSBR = mp4ASC.downSampledSBR;
448
2.77k
    if (hDecoder->config.dontUpSampleImplicitSBR == 0)
449
2.77k
        hDecoder->forceUpSampling = mp4ASC.forceUpSampling;
450
0
    else
451
0
        hDecoder->forceUpSampling = 0;
452
453
    /* AAC core decoder samplerate is 2 times as low */
454
2.77k
    if (((hDecoder->sbr_present_flag == 1)&&(!hDecoder->downSampledSBR)) || hDecoder->forceUpSampling == 1)
455
1.66k
    {
456
1.66k
        hDecoder->sf_index = get_sr_index(mp4ASC.samplingFrequency / 2);
457
1.66k
    }
458
2.77k
#endif
459
460
2.77k
    if (rc != 0)
461
41
    {
462
41
        return rc;
463
41
    }
464
2.73k
    hDecoder->channelConfiguration = mp4ASC.channelsConfiguration;
465
2.73k
    if (mp4ASC.frameLengthFlag)
466
1.82k
#ifdef ALLOW_SMALL_FRAMELENGTH
467
1.82k
        hDecoder->frameLength = 960;
468
#else
469
        return -1;
470
#endif
471
472
    /* must be done before frameLength is divided by 2 for LD */
473
#ifdef SSR_DEC
474
    if (hDecoder->object_type == SSR)
475
        hDecoder->fb = ssr_filter_bank_init(hDecoder->frameLength/SSR_BANDS);
476
    else
477
#endif
478
2.73k
        hDecoder->fb = filter_bank_init(hDecoder->frameLength);
479
480
#ifdef LD_DEC
481
    if (hDecoder->object_type == LD)
482
        hDecoder->frameLength >>= 1;
483
#endif
484
485
2.73k
    return 0;
486
2.77k
}
NeAACDecInit2
Line
Count
Source
400
5.60k
{
401
5.60k
    NeAACDecStruct* hDecoder = (NeAACDecStruct*)hpDecoder;
402
5.60k
    int8_t rc;
403
5.60k
    mp4AudioSpecificConfig mp4ASC;
404
405
5.60k
    if((hDecoder == NULL)
406
5.60k
        || (pBuffer == NULL)
407
5.60k
        || (SizeOfDecoderSpecificInfo < 2)
408
5.60k
        || (samplerate == NULL)
409
5.60k
        || (channels == NULL))
410
8
    {
411
8
        return -1;
412
8
    }
413
414
5.59k
    hDecoder->adif_header_present = 0;
415
5.59k
    hDecoder->adts_header_present = 0;
416
417
    /* decode the audio specific config */
418
5.59k
    rc = AudioSpecificConfig2(pBuffer, SizeOfDecoderSpecificInfo, &mp4ASC,
419
5.59k
        &(hDecoder->pce), hDecoder->latm_header_present);
420
421
    /* copy the relevant info to the decoder handle */
422
5.59k
    *samplerate = mp4ASC.samplingFrequency;
423
5.59k
    if (mp4ASC.channelsConfiguration)
424
4.77k
    {
425
4.77k
        *channels = mp4ASC.channelsConfiguration;
426
4.77k
    } else {
427
822
        *channels = hDecoder->pce.channels;
428
822
        hDecoder->pce_set = 1;
429
822
    }
430
5.59k
#if (defined(PS_DEC) || defined(DRM_PS))
431
    /* check if we have a mono file */
432
5.59k
    if (*channels == 1)
433
18
    {
434
        /* upMatrix to 2 channels for implicit signalling of PS */
435
18
        *channels = 2;
436
18
    }
437
5.59k
#endif
438
5.59k
    hDecoder->sf_index = mp4ASC.samplingFrequencyIndex;
439
5.59k
    hDecoder->object_type = mp4ASC.objectTypeIndex;
440
5.59k
#ifdef ERROR_RESILIENCE
441
5.59k
    hDecoder->aacSectionDataResilienceFlag = mp4ASC.aacSectionDataResilienceFlag;
442
5.59k
    hDecoder->aacScalefactorDataResilienceFlag = mp4ASC.aacScalefactorDataResilienceFlag;
443
5.59k
    hDecoder->aacSpectralDataResilienceFlag = mp4ASC.aacSpectralDataResilienceFlag;
444
5.59k
#endif
445
5.59k
#ifdef SBR_DEC
446
5.59k
    hDecoder->sbr_present_flag = mp4ASC.sbr_present_flag;
447
5.59k
    hDecoder->downSampledSBR = mp4ASC.downSampledSBR;
448
5.59k
    if (hDecoder->config.dontUpSampleImplicitSBR == 0)
449
5.59k
        hDecoder->forceUpSampling = mp4ASC.forceUpSampling;
450
0
    else
451
0
        hDecoder->forceUpSampling = 0;
452
453
    /* AAC core decoder samplerate is 2 times as low */
454
5.59k
    if (((hDecoder->sbr_present_flag == 1)&&(!hDecoder->downSampledSBR)) || hDecoder->forceUpSampling == 1)
455
3.70k
    {
456
3.70k
        hDecoder->sf_index = get_sr_index(mp4ASC.samplingFrequency / 2);
457
3.70k
    }
458
5.59k
#endif
459
460
5.59k
    if (rc != 0)
461
57
    {
462
57
        return rc;
463
57
    }
464
5.54k
    hDecoder->channelConfiguration = mp4ASC.channelsConfiguration;
465
5.54k
    if (mp4ASC.frameLengthFlag)
466
3.42k
#ifdef ALLOW_SMALL_FRAMELENGTH
467
3.42k
        hDecoder->frameLength = 960;
468
#else
469
        return -1;
470
#endif
471
472
    /* must be done before frameLength is divided by 2 for LD */
473
#ifdef SSR_DEC
474
    if (hDecoder->object_type == SSR)
475
        hDecoder->fb = ssr_filter_bank_init(hDecoder->frameLength/SSR_BANDS);
476
    else
477
#endif
478
5.54k
        hDecoder->fb = filter_bank_init(hDecoder->frameLength);
479
480
5.54k
#ifdef LD_DEC
481
5.54k
    if (hDecoder->object_type == LD)
482
618
        hDecoder->frameLength >>= 1;
483
5.54k
#endif
484
485
5.54k
    return 0;
486
5.59k
}
487
488
#ifdef DRM
489
char NeAACDecInitDRM(NeAACDecHandle *hpDecoder,
490
                                 unsigned long samplerate,
491
                                 unsigned char channels)
492
839
{
493
839
    NeAACDecStruct** hDecoder = (NeAACDecStruct**)hpDecoder;
494
839
    if (hDecoder == NULL)
495
0
        return 1; /* error */
496
497
839
    NeAACDecClose(*hDecoder);
498
499
839
    *hDecoder = NeAACDecOpen();
500
501
    /* Special object type defined for DRM */
502
839
    (*hDecoder)->config.defObjectType = DRM_ER_LC;
503
504
839
    (*hDecoder)->config.defSampleRate = samplerate;
505
839
#ifdef ERROR_RESILIENCE // This shoudl always be defined for DRM
506
839
    (*hDecoder)->aacSectionDataResilienceFlag = 1; /* VCB11 */
507
839
    (*hDecoder)->aacScalefactorDataResilienceFlag = 0; /* no RVLC */
508
839
    (*hDecoder)->aacSpectralDataResilienceFlag = 1; /* HCR */
509
839
#endif
510
839
    (*hDecoder)->frameLength = 960;
511
839
    (*hDecoder)->sf_index = get_sr_index((*hDecoder)->config.defSampleRate);
512
839
    (*hDecoder)->object_type = (*hDecoder)->config.defObjectType;
513
514
839
    if ((channels == DRMCH_STEREO) || (channels == DRMCH_SBR_STEREO))
515
122
        (*hDecoder)->channelConfiguration = 2;
516
717
    else
517
717
        (*hDecoder)->channelConfiguration = 1;
518
519
839
#ifdef SBR_DEC
520
839
    if ((channels == DRMCH_MONO) || (channels == DRMCH_STEREO))
521
126
        (*hDecoder)->sbr_present_flag = 0;
522
713
    else
523
713
        (*hDecoder)->sbr_present_flag = 1;
524
839
#endif
525
526
839
    (*hDecoder)->fb = filter_bank_init((*hDecoder)->frameLength);
527
528
839
    return 0;
529
839
}
530
#endif
531
532
void NeAACDecClose(NeAACDecHandle hpDecoder)
533
10.8k
{
534
10.8k
    uint8_t i;
535
10.8k
    NeAACDecStruct* hDecoder = (NeAACDecStruct*)hpDecoder;
536
537
10.8k
    if (hDecoder == NULL)
538
0
        return;
539
540
#ifdef PROFILE
541
    printf("AAC decoder total:  %I64d cycles\n", hDecoder->cycles);
542
    printf("requant:            %I64d cycles\n", hDecoder->requant_cycles);
543
    printf("spectral_data:      %I64d cycles\n", hDecoder->spectral_cycles);
544
    printf("scalefactors:       %I64d cycles\n", hDecoder->scalefac_cycles);
545
    printf("output:             %I64d cycles\n", hDecoder->output_cycles);
546
#endif
547
548
704k
    for (i = 0; i < MAX_CHANNELS; i++)
549
693k
    {
550
693k
        if (hDecoder->time_out[i]) faad_free(hDecoder->time_out[i]);
551
693k
        if (hDecoder->fb_intermed[i]) faad_free(hDecoder->fb_intermed[i]);
552
#ifdef SSR_DEC
553
        if (hDecoder->ssr_overlap[i]) faad_free(hDecoder->ssr_overlap[i]);
554
        if (hDecoder->prev_fmd[i]) faad_free(hDecoder->prev_fmd[i]);
555
#endif
556
#ifdef MAIN_DEC
557
        if (hDecoder->pred_stat[i]) faad_free(hDecoder->pred_stat[i]);
558
#endif
559
#ifdef LTP_DEC
560
        if (hDecoder->lt_pred_stat[i]) faad_free(hDecoder->lt_pred_stat[i]);
561
#endif
562
693k
    }
563
564
#ifdef SSR_DEC
565
    if (hDecoder->object_type == SSR)
566
        ssr_filter_bank_end(hDecoder->fb);
567
    else
568
#endif
569
10.8k
        filter_bank_end(hDecoder->fb);
570
571
10.8k
    drc_end(hDecoder->drc);
572
573
10.8k
    if (hDecoder->sample_buffer) faad_free(hDecoder->sample_buffer);
574
575
10.8k
#ifdef SBR_DEC
576
531k
    for (i = 0; i < MAX_SYNTAX_ELEMENTS; i++)
577
520k
    {
578
520k
        if (hDecoder->sbr[i])
579
128k
            sbrDecodeEnd(hDecoder->sbr[i]);
580
520k
    }
581
10.8k
#endif
582
583
10.8k
    if (hDecoder) faad_free(hDecoder);
584
10.8k
}
585
586
void NeAACDecPostSeekReset(NeAACDecHandle hpDecoder, long frame)
587
21.0k
{
588
21.0k
    NeAACDecStruct* hDecoder = (NeAACDecStruct*)hpDecoder;
589
21.0k
    if (hDecoder)
590
21.0k
    {
591
21.0k
        hDecoder->postSeekResetFlag = 1;
592
593
21.0k
        if (frame != -1)
594
21.0k
            hDecoder->frame = frame;
595
21.0k
    }
596
21.0k
}
597
598
static void create_channel_config(NeAACDecStruct *hDecoder, NeAACDecFrameInfo *hInfo)
599
42.4k
{
600
42.4k
    hInfo->num_front_channels = 0;
601
42.4k
    hInfo->num_side_channels = 0;
602
42.4k
    hInfo->num_back_channels = 0;
603
42.4k
    hInfo->num_lfe_channels = 0;
604
42.4k
    memset(hInfo->channel_position, 0, MAX_CHANNELS*sizeof(uint8_t));
605
606
42.4k
    if (hDecoder->downMatrix)
607
4.58k
    {
608
4.58k
        hInfo->num_front_channels = 2;
609
4.58k
        hInfo->channel_position[0] = FRONT_CHANNEL_LEFT;
610
4.58k
        hInfo->channel_position[1] = FRONT_CHANNEL_RIGHT;
611
4.58k
        return;
612
4.58k
    }
613
614
    /* check if there is a PCE */
615
    /* TODO: why CPE flag is ignored? */
616
37.8k
    if (hDecoder->pce_set)
617
1.45k
    {
618
1.45k
        uint8_t i, chpos = 0;
619
1.45k
        uint8_t chdir, back_center = 0;
620
621
1.45k
        hInfo->num_front_channels = hDecoder->pce.num_front_channels;
622
1.45k
        hInfo->num_side_channels = hDecoder->pce.num_side_channels;
623
1.45k
        hInfo->num_back_channels = hDecoder->pce.num_back_channels;
624
1.45k
        hInfo->num_lfe_channels = hDecoder->pce.num_lfe_channels;
625
1.45k
        chdir = hInfo->num_front_channels;
626
1.45k
        if (chdir & 1)
627
664
        {
628
664
#if (defined(PS_DEC) || defined(DRM_PS))
629
664
            if (hInfo->num_front_channels == 1 &&
630
664
                hInfo->num_side_channels == 0 &&
631
664
                hInfo->num_back_channels == 0 &&
632
664
                hInfo->num_lfe_channels == 0)
633
140
            {
634
                /* When PS is enabled output is always stereo */
635
140
                hInfo->channel_position[chpos++] = FRONT_CHANNEL_LEFT;
636
140
                hInfo->channel_position[chpos++] = FRONT_CHANNEL_RIGHT;
637
140
            } else
638
524
#endif
639
524
            hInfo->channel_position[chpos++] = FRONT_CHANNEL_CENTER;
640
664
            chdir--;
641
664
        }
642
7.06k
        for (i = 0; i < chdir; i++)
643
5.61k
        {
644
5.61k
            hInfo->channel_position[chpos++] =
645
5.61k
                (i & 1) ? FRONT_CHANNEL_RIGHT : FRONT_CHANNEL_LEFT;
646
5.61k
        }
647
648
6.94k
        for (i = 0; i < hInfo->num_side_channels; i++)
649
5.49k
        {
650
5.49k
            hInfo->channel_position[chpos++] =
651
5.49k
                (i & 1) ? SIDE_CHANNEL_RIGHT : SIDE_CHANNEL_LEFT;
652
5.49k
        }
653
654
1.45k
        chdir = hInfo->num_back_channels;
655
1.45k
        if (chdir & 1)
656
248
        {
657
248
            back_center = 1;
658
248
            chdir--;
659
248
        }
660
5.18k
        for (i = 0; i < chdir; i++)
661
3.72k
        {
662
3.72k
            hInfo->channel_position[chpos++] =
663
3.72k
                (i & 1) ? BACK_CHANNEL_RIGHT : BACK_CHANNEL_LEFT;
664
3.72k
        }
665
1.45k
        if (back_center)
666
248
        {
667
248
            hInfo->channel_position[chpos++] = BACK_CHANNEL_CENTER;
668
248
        }
669
670
2.31k
        for (i = 0; i < hInfo->num_lfe_channels; i++)
671
860
        {
672
860
            hInfo->channel_position[chpos++] = LFE_CHANNEL;
673
860
        }
674
675
36.4k
    } else {
676
36.4k
        switch (hDecoder->channelConfiguration)
677
36.4k
        {
678
1.74k
        case 1:
679
1.74k
#if (defined(PS_DEC) || defined(DRM_PS))
680
            /* When PS is enabled output is always stereo */
681
1.74k
            hInfo->num_front_channels = 2;
682
1.74k
            hInfo->channel_position[0] = FRONT_CHANNEL_LEFT;
683
1.74k
            hInfo->channel_position[1] = FRONT_CHANNEL_RIGHT;
684
#else
685
            hInfo->num_front_channels = 1;
686
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
687
#endif
688
1.74k
            break;
689
17.1k
        case 2:
690
17.1k
            hInfo->num_front_channels = 2;
691
17.1k
            hInfo->channel_position[0] = FRONT_CHANNEL_LEFT;
692
17.1k
            hInfo->channel_position[1] = FRONT_CHANNEL_RIGHT;
693
17.1k
            break;
694
2.82k
        case 3:
695
2.82k
            hInfo->num_front_channels = 3;
696
2.82k
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
697
2.82k
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
698
2.82k
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
699
2.82k
            break;
700
4.08k
        case 4:
701
4.08k
            hInfo->num_front_channels = 3;
702
4.08k
            hInfo->num_back_channels = 1;
703
4.08k
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
704
4.08k
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
705
4.08k
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
706
4.08k
            hInfo->channel_position[3] = BACK_CHANNEL_CENTER;
707
4.08k
            break;
708
3.05k
        case 5:
709
3.05k
            hInfo->num_front_channels = 3;
710
3.05k
            hInfo->num_back_channels = 2;
711
3.05k
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
712
3.05k
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
713
3.05k
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
714
3.05k
            hInfo->channel_position[3] = BACK_CHANNEL_LEFT;
715
3.05k
            hInfo->channel_position[4] = BACK_CHANNEL_RIGHT;
716
3.05k
            break;
717
1.50k
        case 6:
718
1.50k
            hInfo->num_front_channels = 3;
719
1.50k
            hInfo->num_back_channels = 2;
720
1.50k
            hInfo->num_lfe_channels = 1;
721
1.50k
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
722
1.50k
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
723
1.50k
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
724
1.50k
            hInfo->channel_position[3] = BACK_CHANNEL_LEFT;
725
1.50k
            hInfo->channel_position[4] = BACK_CHANNEL_RIGHT;
726
1.50k
            hInfo->channel_position[5] = LFE_CHANNEL;
727
1.50k
            break;
728
5.23k
        case 7:
729
5.23k
            hInfo->num_front_channels = 3;
730
5.23k
            hInfo->num_side_channels = 2;
731
5.23k
            hInfo->num_back_channels = 2;
732
5.23k
            hInfo->num_lfe_channels = 1;
733
5.23k
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
734
5.23k
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
735
5.23k
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
736
5.23k
            hInfo->channel_position[3] = SIDE_CHANNEL_LEFT;
737
5.23k
            hInfo->channel_position[4] = SIDE_CHANNEL_RIGHT;
738
5.23k
            hInfo->channel_position[5] = BACK_CHANNEL_LEFT;
739
5.23k
            hInfo->channel_position[6] = BACK_CHANNEL_RIGHT;
740
5.23k
            hInfo->channel_position[7] = LFE_CHANNEL;
741
5.23k
            break;
742
864
        default: /* channelConfiguration == 0 || channelConfiguration > 7 */
743
864
            {
744
864
                uint8_t i;
745
864
                uint8_t ch = hDecoder->fr_channels - hDecoder->has_lfe;
746
864
                if (ch & 1) /* there's either a center front or a center back channel */
747
336
                {
748
336
                    uint8_t ch1 = (ch-1)/2;
749
336
                    if (hDecoder->first_syn_ele == ID_SCE)
750
212
                    {
751
212
                        hInfo->num_front_channels = ch1 + 1;
752
212
                        hInfo->num_back_channels = ch1;
753
212
                        hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
754
832
                        for (i = 1; i <= ch1; i+=2)
755
620
                        {
756
620
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
757
620
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
758
620
                        }
759
832
                        for (i = ch1+1; i < ch; i+=2)
760
620
                        {
761
620
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
762
620
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
763
620
                        }
764
212
                    } else {
765
124
                        hInfo->num_front_channels = ch1;
766
124
                        hInfo->num_back_channels = ch1 + 1;
767
736
                        for (i = 0; i < ch1; i+=2)
768
612
                        {
769
612
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
770
612
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
771
612
                        }
772
736
                        for (i = ch1; i < ch-1; i+=2)
773
612
                        {
774
612
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
775
612
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
776
612
                        }
777
124
                        hInfo->channel_position[ch-1] = BACK_CHANNEL_CENTER;
778
124
                    }
779
528
                } else {
780
528
                    uint8_t ch1 = (ch)/2;
781
528
                    hInfo->num_front_channels = ch1;
782
528
                    hInfo->num_back_channels = ch1;
783
528
                    if (ch1 & 1)
784
236
                    {
785
236
                        hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
786
1.54k
                        for (i = 1; i <= ch1; i+=2)
787
1.30k
                        {
788
1.30k
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
789
1.30k
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
790
1.30k
                        }
791
1.30k
                        for (i = ch1+1; i < ch-1; i+=2)
792
1.07k
                        {
793
1.07k
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
794
1.07k
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
795
1.07k
                        }
796
236
                        hInfo->channel_position[ch-1] = BACK_CHANNEL_CENTER;
797
292
                    } else {
798
1.31k
                        for (i = 0; i < ch1; i+=2)
799
1.02k
                        {
800
1.02k
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
801
1.02k
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
802
1.02k
                        }
803
1.31k
                        for (i = ch1; i < ch; i+=2)
804
1.02k
                        {
805
1.02k
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
806
1.02k
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
807
1.02k
                        }
808
292
                    }
809
528
                }
810
864
                hInfo->num_lfe_channels = hDecoder->has_lfe;
811
1.95k
                for (i = ch; i < hDecoder->fr_channels; i++)
812
1.08k
                {
813
1.08k
                    hInfo->channel_position[i] = LFE_CHANNEL;
814
1.08k
                }
815
864
            }
816
864
            break;
817
36.4k
        }
818
36.4k
    }
819
37.8k
}
decoder.c:create_channel_config
Line
Count
Source
599
10.6k
{
600
10.6k
    hInfo->num_front_channels = 0;
601
10.6k
    hInfo->num_side_channels = 0;
602
10.6k
    hInfo->num_back_channels = 0;
603
10.6k
    hInfo->num_lfe_channels = 0;
604
10.6k
    memset(hInfo->channel_position, 0, MAX_CHANNELS*sizeof(uint8_t));
605
606
10.6k
    if (hDecoder->downMatrix)
607
1.14k
    {
608
1.14k
        hInfo->num_front_channels = 2;
609
1.14k
        hInfo->channel_position[0] = FRONT_CHANNEL_LEFT;
610
1.14k
        hInfo->channel_position[1] = FRONT_CHANNEL_RIGHT;
611
1.14k
        return;
612
1.14k
    }
613
614
    /* check if there is a PCE */
615
    /* TODO: why CPE flag is ignored? */
616
9.46k
    if (hDecoder->pce_set)
617
363
    {
618
363
        uint8_t i, chpos = 0;
619
363
        uint8_t chdir, back_center = 0;
620
621
363
        hInfo->num_front_channels = hDecoder->pce.num_front_channels;
622
363
        hInfo->num_side_channels = hDecoder->pce.num_side_channels;
623
363
        hInfo->num_back_channels = hDecoder->pce.num_back_channels;
624
363
        hInfo->num_lfe_channels = hDecoder->pce.num_lfe_channels;
625
363
        chdir = hInfo->num_front_channels;
626
363
        if (chdir & 1)
627
166
        {
628
166
#if (defined(PS_DEC) || defined(DRM_PS))
629
166
            if (hInfo->num_front_channels == 1 &&
630
166
                hInfo->num_side_channels == 0 &&
631
166
                hInfo->num_back_channels == 0 &&
632
166
                hInfo->num_lfe_channels == 0)
633
35
            {
634
                /* When PS is enabled output is always stereo */
635
35
                hInfo->channel_position[chpos++] = FRONT_CHANNEL_LEFT;
636
35
                hInfo->channel_position[chpos++] = FRONT_CHANNEL_RIGHT;
637
35
            } else
638
131
#endif
639
131
            hInfo->channel_position[chpos++] = FRONT_CHANNEL_CENTER;
640
166
            chdir--;
641
166
        }
642
1.76k
        for (i = 0; i < chdir; i++)
643
1.40k
        {
644
1.40k
            hInfo->channel_position[chpos++] =
645
1.40k
                (i & 1) ? FRONT_CHANNEL_RIGHT : FRONT_CHANNEL_LEFT;
646
1.40k
        }
647
648
1.73k
        for (i = 0; i < hInfo->num_side_channels; i++)
649
1.37k
        {
650
1.37k
            hInfo->channel_position[chpos++] =
651
1.37k
                (i & 1) ? SIDE_CHANNEL_RIGHT : SIDE_CHANNEL_LEFT;
652
1.37k
        }
653
654
363
        chdir = hInfo->num_back_channels;
655
363
        if (chdir & 1)
656
62
        {
657
62
            back_center = 1;
658
62
            chdir--;
659
62
        }
660
1.29k
        for (i = 0; i < chdir; i++)
661
932
        {
662
932
            hInfo->channel_position[chpos++] =
663
932
                (i & 1) ? BACK_CHANNEL_RIGHT : BACK_CHANNEL_LEFT;
664
932
        }
665
363
        if (back_center)
666
62
        {
667
62
            hInfo->channel_position[chpos++] = BACK_CHANNEL_CENTER;
668
62
        }
669
670
578
        for (i = 0; i < hInfo->num_lfe_channels; i++)
671
215
        {
672
215
            hInfo->channel_position[chpos++] = LFE_CHANNEL;
673
215
        }
674
675
9.10k
    } else {
676
9.10k
        switch (hDecoder->channelConfiguration)
677
9.10k
        {
678
436
        case 1:
679
436
#if (defined(PS_DEC) || defined(DRM_PS))
680
            /* When PS is enabled output is always stereo */
681
436
            hInfo->num_front_channels = 2;
682
436
            hInfo->channel_position[0] = FRONT_CHANNEL_LEFT;
683
436
            hInfo->channel_position[1] = FRONT_CHANNEL_RIGHT;
684
#else
685
            hInfo->num_front_channels = 1;
686
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
687
#endif
688
436
            break;
689
4.27k
        case 2:
690
4.27k
            hInfo->num_front_channels = 2;
691
4.27k
            hInfo->channel_position[0] = FRONT_CHANNEL_LEFT;
692
4.27k
            hInfo->channel_position[1] = FRONT_CHANNEL_RIGHT;
693
4.27k
            break;
694
707
        case 3:
695
707
            hInfo->num_front_channels = 3;
696
707
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
697
707
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
698
707
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
699
707
            break;
700
1.02k
        case 4:
701
1.02k
            hInfo->num_front_channels = 3;
702
1.02k
            hInfo->num_back_channels = 1;
703
1.02k
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
704
1.02k
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
705
1.02k
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
706
1.02k
            hInfo->channel_position[3] = BACK_CHANNEL_CENTER;
707
1.02k
            break;
708
764
        case 5:
709
764
            hInfo->num_front_channels = 3;
710
764
            hInfo->num_back_channels = 2;
711
764
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
712
764
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
713
764
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
714
764
            hInfo->channel_position[3] = BACK_CHANNEL_LEFT;
715
764
            hInfo->channel_position[4] = BACK_CHANNEL_RIGHT;
716
764
            break;
717
375
        case 6:
718
375
            hInfo->num_front_channels = 3;
719
375
            hInfo->num_back_channels = 2;
720
375
            hInfo->num_lfe_channels = 1;
721
375
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
722
375
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
723
375
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
724
375
            hInfo->channel_position[3] = BACK_CHANNEL_LEFT;
725
375
            hInfo->channel_position[4] = BACK_CHANNEL_RIGHT;
726
375
            hInfo->channel_position[5] = LFE_CHANNEL;
727
375
            break;
728
1.30k
        case 7:
729
1.30k
            hInfo->num_front_channels = 3;
730
1.30k
            hInfo->num_side_channels = 2;
731
1.30k
            hInfo->num_back_channels = 2;
732
1.30k
            hInfo->num_lfe_channels = 1;
733
1.30k
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
734
1.30k
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
735
1.30k
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
736
1.30k
            hInfo->channel_position[3] = SIDE_CHANNEL_LEFT;
737
1.30k
            hInfo->channel_position[4] = SIDE_CHANNEL_RIGHT;
738
1.30k
            hInfo->channel_position[5] = BACK_CHANNEL_LEFT;
739
1.30k
            hInfo->channel_position[6] = BACK_CHANNEL_RIGHT;
740
1.30k
            hInfo->channel_position[7] = LFE_CHANNEL;
741
1.30k
            break;
742
216
        default: /* channelConfiguration == 0 || channelConfiguration > 7 */
743
216
            {
744
216
                uint8_t i;
745
216
                uint8_t ch = hDecoder->fr_channels - hDecoder->has_lfe;
746
216
                if (ch & 1) /* there's either a center front or a center back channel */
747
84
                {
748
84
                    uint8_t ch1 = (ch-1)/2;
749
84
                    if (hDecoder->first_syn_ele == ID_SCE)
750
53
                    {
751
53
                        hInfo->num_front_channels = ch1 + 1;
752
53
                        hInfo->num_back_channels = ch1;
753
53
                        hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
754
208
                        for (i = 1; i <= ch1; i+=2)
755
155
                        {
756
155
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
757
155
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
758
155
                        }
759
208
                        for (i = ch1+1; i < ch; i+=2)
760
155
                        {
761
155
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
762
155
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
763
155
                        }
764
53
                    } else {
765
31
                        hInfo->num_front_channels = ch1;
766
31
                        hInfo->num_back_channels = ch1 + 1;
767
184
                        for (i = 0; i < ch1; i+=2)
768
153
                        {
769
153
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
770
153
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
771
153
                        }
772
184
                        for (i = ch1; i < ch-1; i+=2)
773
153
                        {
774
153
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
775
153
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
776
153
                        }
777
31
                        hInfo->channel_position[ch-1] = BACK_CHANNEL_CENTER;
778
31
                    }
779
132
                } else {
780
132
                    uint8_t ch1 = (ch)/2;
781
132
                    hInfo->num_front_channels = ch1;
782
132
                    hInfo->num_back_channels = ch1;
783
132
                    if (ch1 & 1)
784
59
                    {
785
59
                        hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
786
386
                        for (i = 1; i <= ch1; i+=2)
787
327
                        {
788
327
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
789
327
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
790
327
                        }
791
327
                        for (i = ch1+1; i < ch-1; i+=2)
792
268
                        {
793
268
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
794
268
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
795
268
                        }
796
59
                        hInfo->channel_position[ch-1] = BACK_CHANNEL_CENTER;
797
73
                    } else {
798
328
                        for (i = 0; i < ch1; i+=2)
799
255
                        {
800
255
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
801
255
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
802
255
                        }
803
328
                        for (i = ch1; i < ch; i+=2)
804
255
                        {
805
255
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
806
255
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
807
255
                        }
808
73
                    }
809
132
                }
810
216
                hInfo->num_lfe_channels = hDecoder->has_lfe;
811
488
                for (i = ch; i < hDecoder->fr_channels; i++)
812
272
                {
813
272
                    hInfo->channel_position[i] = LFE_CHANNEL;
814
272
                }
815
216
            }
816
216
            break;
817
9.10k
        }
818
9.10k
    }
819
9.46k
}
decoder.c:create_channel_config
Line
Count
Source
599
10.6k
{
600
10.6k
    hInfo->num_front_channels = 0;
601
10.6k
    hInfo->num_side_channels = 0;
602
10.6k
    hInfo->num_back_channels = 0;
603
10.6k
    hInfo->num_lfe_channels = 0;
604
10.6k
    memset(hInfo->channel_position, 0, MAX_CHANNELS*sizeof(uint8_t));
605
606
10.6k
    if (hDecoder->downMatrix)
607
1.14k
    {
608
1.14k
        hInfo->num_front_channels = 2;
609
1.14k
        hInfo->channel_position[0] = FRONT_CHANNEL_LEFT;
610
1.14k
        hInfo->channel_position[1] = FRONT_CHANNEL_RIGHT;
611
1.14k
        return;
612
1.14k
    }
613
614
    /* check if there is a PCE */
615
    /* TODO: why CPE flag is ignored? */
616
9.46k
    if (hDecoder->pce_set)
617
363
    {
618
363
        uint8_t i, chpos = 0;
619
363
        uint8_t chdir, back_center = 0;
620
621
363
        hInfo->num_front_channels = hDecoder->pce.num_front_channels;
622
363
        hInfo->num_side_channels = hDecoder->pce.num_side_channels;
623
363
        hInfo->num_back_channels = hDecoder->pce.num_back_channels;
624
363
        hInfo->num_lfe_channels = hDecoder->pce.num_lfe_channels;
625
363
        chdir = hInfo->num_front_channels;
626
363
        if (chdir & 1)
627
166
        {
628
166
#if (defined(PS_DEC) || defined(DRM_PS))
629
166
            if (hInfo->num_front_channels == 1 &&
630
166
                hInfo->num_side_channels == 0 &&
631
166
                hInfo->num_back_channels == 0 &&
632
166
                hInfo->num_lfe_channels == 0)
633
35
            {
634
                /* When PS is enabled output is always stereo */
635
35
                hInfo->channel_position[chpos++] = FRONT_CHANNEL_LEFT;
636
35
                hInfo->channel_position[chpos++] = FRONT_CHANNEL_RIGHT;
637
35
            } else
638
131
#endif
639
131
            hInfo->channel_position[chpos++] = FRONT_CHANNEL_CENTER;
640
166
            chdir--;
641
166
        }
642
1.76k
        for (i = 0; i < chdir; i++)
643
1.40k
        {
644
1.40k
            hInfo->channel_position[chpos++] =
645
1.40k
                (i & 1) ? FRONT_CHANNEL_RIGHT : FRONT_CHANNEL_LEFT;
646
1.40k
        }
647
648
1.73k
        for (i = 0; i < hInfo->num_side_channels; i++)
649
1.37k
        {
650
1.37k
            hInfo->channel_position[chpos++] =
651
1.37k
                (i & 1) ? SIDE_CHANNEL_RIGHT : SIDE_CHANNEL_LEFT;
652
1.37k
        }
653
654
363
        chdir = hInfo->num_back_channels;
655
363
        if (chdir & 1)
656
62
        {
657
62
            back_center = 1;
658
62
            chdir--;
659
62
        }
660
1.29k
        for (i = 0; i < chdir; i++)
661
932
        {
662
932
            hInfo->channel_position[chpos++] =
663
932
                (i & 1) ? BACK_CHANNEL_RIGHT : BACK_CHANNEL_LEFT;
664
932
        }
665
363
        if (back_center)
666
62
        {
667
62
            hInfo->channel_position[chpos++] = BACK_CHANNEL_CENTER;
668
62
        }
669
670
578
        for (i = 0; i < hInfo->num_lfe_channels; i++)
671
215
        {
672
215
            hInfo->channel_position[chpos++] = LFE_CHANNEL;
673
215
        }
674
675
9.10k
    } else {
676
9.10k
        switch (hDecoder->channelConfiguration)
677
9.10k
        {
678
436
        case 1:
679
436
#if (defined(PS_DEC) || defined(DRM_PS))
680
            /* When PS is enabled output is always stereo */
681
436
            hInfo->num_front_channels = 2;
682
436
            hInfo->channel_position[0] = FRONT_CHANNEL_LEFT;
683
436
            hInfo->channel_position[1] = FRONT_CHANNEL_RIGHT;
684
#else
685
            hInfo->num_front_channels = 1;
686
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
687
#endif
688
436
            break;
689
4.27k
        case 2:
690
4.27k
            hInfo->num_front_channels = 2;
691
4.27k
            hInfo->channel_position[0] = FRONT_CHANNEL_LEFT;
692
4.27k
            hInfo->channel_position[1] = FRONT_CHANNEL_RIGHT;
693
4.27k
            break;
694
707
        case 3:
695
707
            hInfo->num_front_channels = 3;
696
707
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
697
707
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
698
707
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
699
707
            break;
700
1.02k
        case 4:
701
1.02k
            hInfo->num_front_channels = 3;
702
1.02k
            hInfo->num_back_channels = 1;
703
1.02k
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
704
1.02k
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
705
1.02k
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
706
1.02k
            hInfo->channel_position[3] = BACK_CHANNEL_CENTER;
707
1.02k
            break;
708
764
        case 5:
709
764
            hInfo->num_front_channels = 3;
710
764
            hInfo->num_back_channels = 2;
711
764
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
712
764
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
713
764
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
714
764
            hInfo->channel_position[3] = BACK_CHANNEL_LEFT;
715
764
            hInfo->channel_position[4] = BACK_CHANNEL_RIGHT;
716
764
            break;
717
375
        case 6:
718
375
            hInfo->num_front_channels = 3;
719
375
            hInfo->num_back_channels = 2;
720
375
            hInfo->num_lfe_channels = 1;
721
375
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
722
375
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
723
375
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
724
375
            hInfo->channel_position[3] = BACK_CHANNEL_LEFT;
725
375
            hInfo->channel_position[4] = BACK_CHANNEL_RIGHT;
726
375
            hInfo->channel_position[5] = LFE_CHANNEL;
727
375
            break;
728
1.30k
        case 7:
729
1.30k
            hInfo->num_front_channels = 3;
730
1.30k
            hInfo->num_side_channels = 2;
731
1.30k
            hInfo->num_back_channels = 2;
732
1.30k
            hInfo->num_lfe_channels = 1;
733
1.30k
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
734
1.30k
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
735
1.30k
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
736
1.30k
            hInfo->channel_position[3] = SIDE_CHANNEL_LEFT;
737
1.30k
            hInfo->channel_position[4] = SIDE_CHANNEL_RIGHT;
738
1.30k
            hInfo->channel_position[5] = BACK_CHANNEL_LEFT;
739
1.30k
            hInfo->channel_position[6] = BACK_CHANNEL_RIGHT;
740
1.30k
            hInfo->channel_position[7] = LFE_CHANNEL;
741
1.30k
            break;
742
216
        default: /* channelConfiguration == 0 || channelConfiguration > 7 */
743
216
            {
744
216
                uint8_t i;
745
216
                uint8_t ch = hDecoder->fr_channels - hDecoder->has_lfe;
746
216
                if (ch & 1) /* there's either a center front or a center back channel */
747
84
                {
748
84
                    uint8_t ch1 = (ch-1)/2;
749
84
                    if (hDecoder->first_syn_ele == ID_SCE)
750
53
                    {
751
53
                        hInfo->num_front_channels = ch1 + 1;
752
53
                        hInfo->num_back_channels = ch1;
753
53
                        hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
754
208
                        for (i = 1; i <= ch1; i+=2)
755
155
                        {
756
155
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
757
155
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
758
155
                        }
759
208
                        for (i = ch1+1; i < ch; i+=2)
760
155
                        {
761
155
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
762
155
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
763
155
                        }
764
53
                    } else {
765
31
                        hInfo->num_front_channels = ch1;
766
31
                        hInfo->num_back_channels = ch1 + 1;
767
184
                        for (i = 0; i < ch1; i+=2)
768
153
                        {
769
153
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
770
153
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
771
153
                        }
772
184
                        for (i = ch1; i < ch-1; i+=2)
773
153
                        {
774
153
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
775
153
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
776
153
                        }
777
31
                        hInfo->channel_position[ch-1] = BACK_CHANNEL_CENTER;
778
31
                    }
779
132
                } else {
780
132
                    uint8_t ch1 = (ch)/2;
781
132
                    hInfo->num_front_channels = ch1;
782
132
                    hInfo->num_back_channels = ch1;
783
132
                    if (ch1 & 1)
784
59
                    {
785
59
                        hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
786
386
                        for (i = 1; i <= ch1; i+=2)
787
327
                        {
788
327
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
789
327
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
790
327
                        }
791
327
                        for (i = ch1+1; i < ch-1; i+=2)
792
268
                        {
793
268
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
794
268
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
795
268
                        }
796
59
                        hInfo->channel_position[ch-1] = BACK_CHANNEL_CENTER;
797
73
                    } else {
798
328
                        for (i = 0; i < ch1; i+=2)
799
255
                        {
800
255
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
801
255
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
802
255
                        }
803
328
                        for (i = ch1; i < ch; i+=2)
804
255
                        {
805
255
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
806
255
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
807
255
                        }
808
73
                    }
809
132
                }
810
216
                hInfo->num_lfe_channels = hDecoder->has_lfe;
811
488
                for (i = ch; i < hDecoder->fr_channels; i++)
812
272
                {
813
272
                    hInfo->channel_position[i] = LFE_CHANNEL;
814
272
                }
815
216
            }
816
216
            break;
817
9.10k
        }
818
9.10k
    }
819
9.46k
}
decoder.c:create_channel_config
Line
Count
Source
599
10.6k
{
600
10.6k
    hInfo->num_front_channels = 0;
601
10.6k
    hInfo->num_side_channels = 0;
602
10.6k
    hInfo->num_back_channels = 0;
603
10.6k
    hInfo->num_lfe_channels = 0;
604
10.6k
    memset(hInfo->channel_position, 0, MAX_CHANNELS*sizeof(uint8_t));
605
606
10.6k
    if (hDecoder->downMatrix)
607
1.14k
    {
608
1.14k
        hInfo->num_front_channels = 2;
609
1.14k
        hInfo->channel_position[0] = FRONT_CHANNEL_LEFT;
610
1.14k
        hInfo->channel_position[1] = FRONT_CHANNEL_RIGHT;
611
1.14k
        return;
612
1.14k
    }
613
614
    /* check if there is a PCE */
615
    /* TODO: why CPE flag is ignored? */
616
9.46k
    if (hDecoder->pce_set)
617
363
    {
618
363
        uint8_t i, chpos = 0;
619
363
        uint8_t chdir, back_center = 0;
620
621
363
        hInfo->num_front_channels = hDecoder->pce.num_front_channels;
622
363
        hInfo->num_side_channels = hDecoder->pce.num_side_channels;
623
363
        hInfo->num_back_channels = hDecoder->pce.num_back_channels;
624
363
        hInfo->num_lfe_channels = hDecoder->pce.num_lfe_channels;
625
363
        chdir = hInfo->num_front_channels;
626
363
        if (chdir & 1)
627
166
        {
628
166
#if (defined(PS_DEC) || defined(DRM_PS))
629
166
            if (hInfo->num_front_channels == 1 &&
630
166
                hInfo->num_side_channels == 0 &&
631
166
                hInfo->num_back_channels == 0 &&
632
166
                hInfo->num_lfe_channels == 0)
633
35
            {
634
                /* When PS is enabled output is always stereo */
635
35
                hInfo->channel_position[chpos++] = FRONT_CHANNEL_LEFT;
636
35
                hInfo->channel_position[chpos++] = FRONT_CHANNEL_RIGHT;
637
35
            } else
638
131
#endif
639
131
            hInfo->channel_position[chpos++] = FRONT_CHANNEL_CENTER;
640
166
            chdir--;
641
166
        }
642
1.76k
        for (i = 0; i < chdir; i++)
643
1.40k
        {
644
1.40k
            hInfo->channel_position[chpos++] =
645
1.40k
                (i & 1) ? FRONT_CHANNEL_RIGHT : FRONT_CHANNEL_LEFT;
646
1.40k
        }
647
648
1.73k
        for (i = 0; i < hInfo->num_side_channels; i++)
649
1.37k
        {
650
1.37k
            hInfo->channel_position[chpos++] =
651
1.37k
                (i & 1) ? SIDE_CHANNEL_RIGHT : SIDE_CHANNEL_LEFT;
652
1.37k
        }
653
654
363
        chdir = hInfo->num_back_channels;
655
363
        if (chdir & 1)
656
62
        {
657
62
            back_center = 1;
658
62
            chdir--;
659
62
        }
660
1.29k
        for (i = 0; i < chdir; i++)
661
932
        {
662
932
            hInfo->channel_position[chpos++] =
663
932
                (i & 1) ? BACK_CHANNEL_RIGHT : BACK_CHANNEL_LEFT;
664
932
        }
665
363
        if (back_center)
666
62
        {
667
62
            hInfo->channel_position[chpos++] = BACK_CHANNEL_CENTER;
668
62
        }
669
670
578
        for (i = 0; i < hInfo->num_lfe_channels; i++)
671
215
        {
672
215
            hInfo->channel_position[chpos++] = LFE_CHANNEL;
673
215
        }
674
675
9.10k
    } else {
676
9.10k
        switch (hDecoder->channelConfiguration)
677
9.10k
        {
678
436
        case 1:
679
436
#if (defined(PS_DEC) || defined(DRM_PS))
680
            /* When PS is enabled output is always stereo */
681
436
            hInfo->num_front_channels = 2;
682
436
            hInfo->channel_position[0] = FRONT_CHANNEL_LEFT;
683
436
            hInfo->channel_position[1] = FRONT_CHANNEL_RIGHT;
684
#else
685
            hInfo->num_front_channels = 1;
686
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
687
#endif
688
436
            break;
689
4.27k
        case 2:
690
4.27k
            hInfo->num_front_channels = 2;
691
4.27k
            hInfo->channel_position[0] = FRONT_CHANNEL_LEFT;
692
4.27k
            hInfo->channel_position[1] = FRONT_CHANNEL_RIGHT;
693
4.27k
            break;
694
707
        case 3:
695
707
            hInfo->num_front_channels = 3;
696
707
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
697
707
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
698
707
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
699
707
            break;
700
1.02k
        case 4:
701
1.02k
            hInfo->num_front_channels = 3;
702
1.02k
            hInfo->num_back_channels = 1;
703
1.02k
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
704
1.02k
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
705
1.02k
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
706
1.02k
            hInfo->channel_position[3] = BACK_CHANNEL_CENTER;
707
1.02k
            break;
708
764
        case 5:
709
764
            hInfo->num_front_channels = 3;
710
764
            hInfo->num_back_channels = 2;
711
764
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
712
764
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
713
764
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
714
764
            hInfo->channel_position[3] = BACK_CHANNEL_LEFT;
715
764
            hInfo->channel_position[4] = BACK_CHANNEL_RIGHT;
716
764
            break;
717
375
        case 6:
718
375
            hInfo->num_front_channels = 3;
719
375
            hInfo->num_back_channels = 2;
720
375
            hInfo->num_lfe_channels = 1;
721
375
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
722
375
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
723
375
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
724
375
            hInfo->channel_position[3] = BACK_CHANNEL_LEFT;
725
375
            hInfo->channel_position[4] = BACK_CHANNEL_RIGHT;
726
375
            hInfo->channel_position[5] = LFE_CHANNEL;
727
375
            break;
728
1.30k
        case 7:
729
1.30k
            hInfo->num_front_channels = 3;
730
1.30k
            hInfo->num_side_channels = 2;
731
1.30k
            hInfo->num_back_channels = 2;
732
1.30k
            hInfo->num_lfe_channels = 1;
733
1.30k
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
734
1.30k
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
735
1.30k
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
736
1.30k
            hInfo->channel_position[3] = SIDE_CHANNEL_LEFT;
737
1.30k
            hInfo->channel_position[4] = SIDE_CHANNEL_RIGHT;
738
1.30k
            hInfo->channel_position[5] = BACK_CHANNEL_LEFT;
739
1.30k
            hInfo->channel_position[6] = BACK_CHANNEL_RIGHT;
740
1.30k
            hInfo->channel_position[7] = LFE_CHANNEL;
741
1.30k
            break;
742
216
        default: /* channelConfiguration == 0 || channelConfiguration > 7 */
743
216
            {
744
216
                uint8_t i;
745
216
                uint8_t ch = hDecoder->fr_channels - hDecoder->has_lfe;
746
216
                if (ch & 1) /* there's either a center front or a center back channel */
747
84
                {
748
84
                    uint8_t ch1 = (ch-1)/2;
749
84
                    if (hDecoder->first_syn_ele == ID_SCE)
750
53
                    {
751
53
                        hInfo->num_front_channels = ch1 + 1;
752
53
                        hInfo->num_back_channels = ch1;
753
53
                        hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
754
208
                        for (i = 1; i <= ch1; i+=2)
755
155
                        {
756
155
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
757
155
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
758
155
                        }
759
208
                        for (i = ch1+1; i < ch; i+=2)
760
155
                        {
761
155
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
762
155
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
763
155
                        }
764
53
                    } else {
765
31
                        hInfo->num_front_channels = ch1;
766
31
                        hInfo->num_back_channels = ch1 + 1;
767
184
                        for (i = 0; i < ch1; i+=2)
768
153
                        {
769
153
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
770
153
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
771
153
                        }
772
184
                        for (i = ch1; i < ch-1; i+=2)
773
153
                        {
774
153
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
775
153
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
776
153
                        }
777
31
                        hInfo->channel_position[ch-1] = BACK_CHANNEL_CENTER;
778
31
                    }
779
132
                } else {
780
132
                    uint8_t ch1 = (ch)/2;
781
132
                    hInfo->num_front_channels = ch1;
782
132
                    hInfo->num_back_channels = ch1;
783
132
                    if (ch1 & 1)
784
59
                    {
785
59
                        hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
786
386
                        for (i = 1; i <= ch1; i+=2)
787
327
                        {
788
327
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
789
327
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
790
327
                        }
791
327
                        for (i = ch1+1; i < ch-1; i+=2)
792
268
                        {
793
268
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
794
268
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
795
268
                        }
796
59
                        hInfo->channel_position[ch-1] = BACK_CHANNEL_CENTER;
797
73
                    } else {
798
328
                        for (i = 0; i < ch1; i+=2)
799
255
                        {
800
255
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
801
255
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
802
255
                        }
803
328
                        for (i = ch1; i < ch; i+=2)
804
255
                        {
805
255
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
806
255
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
807
255
                        }
808
73
                    }
809
132
                }
810
216
                hInfo->num_lfe_channels = hDecoder->has_lfe;
811
488
                for (i = ch; i < hDecoder->fr_channels; i++)
812
272
                {
813
272
                    hInfo->channel_position[i] = LFE_CHANNEL;
814
272
                }
815
216
            }
816
216
            break;
817
9.10k
        }
818
9.10k
    }
819
9.46k
}
decoder.c:create_channel_config
Line
Count
Source
599
10.6k
{
600
10.6k
    hInfo->num_front_channels = 0;
601
10.6k
    hInfo->num_side_channels = 0;
602
10.6k
    hInfo->num_back_channels = 0;
603
10.6k
    hInfo->num_lfe_channels = 0;
604
10.6k
    memset(hInfo->channel_position, 0, MAX_CHANNELS*sizeof(uint8_t));
605
606
10.6k
    if (hDecoder->downMatrix)
607
1.14k
    {
608
1.14k
        hInfo->num_front_channels = 2;
609
1.14k
        hInfo->channel_position[0] = FRONT_CHANNEL_LEFT;
610
1.14k
        hInfo->channel_position[1] = FRONT_CHANNEL_RIGHT;
611
1.14k
        return;
612
1.14k
    }
613
614
    /* check if there is a PCE */
615
    /* TODO: why CPE flag is ignored? */
616
9.46k
    if (hDecoder->pce_set)
617
363
    {
618
363
        uint8_t i, chpos = 0;
619
363
        uint8_t chdir, back_center = 0;
620
621
363
        hInfo->num_front_channels = hDecoder->pce.num_front_channels;
622
363
        hInfo->num_side_channels = hDecoder->pce.num_side_channels;
623
363
        hInfo->num_back_channels = hDecoder->pce.num_back_channels;
624
363
        hInfo->num_lfe_channels = hDecoder->pce.num_lfe_channels;
625
363
        chdir = hInfo->num_front_channels;
626
363
        if (chdir & 1)
627
166
        {
628
166
#if (defined(PS_DEC) || defined(DRM_PS))
629
166
            if (hInfo->num_front_channels == 1 &&
630
166
                hInfo->num_side_channels == 0 &&
631
166
                hInfo->num_back_channels == 0 &&
632
166
                hInfo->num_lfe_channels == 0)
633
35
            {
634
                /* When PS is enabled output is always stereo */
635
35
                hInfo->channel_position[chpos++] = FRONT_CHANNEL_LEFT;
636
35
                hInfo->channel_position[chpos++] = FRONT_CHANNEL_RIGHT;
637
35
            } else
638
131
#endif
639
131
            hInfo->channel_position[chpos++] = FRONT_CHANNEL_CENTER;
640
166
            chdir--;
641
166
        }
642
1.76k
        for (i = 0; i < chdir; i++)
643
1.40k
        {
644
1.40k
            hInfo->channel_position[chpos++] =
645
1.40k
                (i & 1) ? FRONT_CHANNEL_RIGHT : FRONT_CHANNEL_LEFT;
646
1.40k
        }
647
648
1.73k
        for (i = 0; i < hInfo->num_side_channels; i++)
649
1.37k
        {
650
1.37k
            hInfo->channel_position[chpos++] =
651
1.37k
                (i & 1) ? SIDE_CHANNEL_RIGHT : SIDE_CHANNEL_LEFT;
652
1.37k
        }
653
654
363
        chdir = hInfo->num_back_channels;
655
363
        if (chdir & 1)
656
62
        {
657
62
            back_center = 1;
658
62
            chdir--;
659
62
        }
660
1.29k
        for (i = 0; i < chdir; i++)
661
932
        {
662
932
            hInfo->channel_position[chpos++] =
663
932
                (i & 1) ? BACK_CHANNEL_RIGHT : BACK_CHANNEL_LEFT;
664
932
        }
665
363
        if (back_center)
666
62
        {
667
62
            hInfo->channel_position[chpos++] = BACK_CHANNEL_CENTER;
668
62
        }
669
670
578
        for (i = 0; i < hInfo->num_lfe_channels; i++)
671
215
        {
672
215
            hInfo->channel_position[chpos++] = LFE_CHANNEL;
673
215
        }
674
675
9.10k
    } else {
676
9.10k
        switch (hDecoder->channelConfiguration)
677
9.10k
        {
678
436
        case 1:
679
436
#if (defined(PS_DEC) || defined(DRM_PS))
680
            /* When PS is enabled output is always stereo */
681
436
            hInfo->num_front_channels = 2;
682
436
            hInfo->channel_position[0] = FRONT_CHANNEL_LEFT;
683
436
            hInfo->channel_position[1] = FRONT_CHANNEL_RIGHT;
684
#else
685
            hInfo->num_front_channels = 1;
686
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
687
#endif
688
436
            break;
689
4.27k
        case 2:
690
4.27k
            hInfo->num_front_channels = 2;
691
4.27k
            hInfo->channel_position[0] = FRONT_CHANNEL_LEFT;
692
4.27k
            hInfo->channel_position[1] = FRONT_CHANNEL_RIGHT;
693
4.27k
            break;
694
707
        case 3:
695
707
            hInfo->num_front_channels = 3;
696
707
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
697
707
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
698
707
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
699
707
            break;
700
1.02k
        case 4:
701
1.02k
            hInfo->num_front_channels = 3;
702
1.02k
            hInfo->num_back_channels = 1;
703
1.02k
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
704
1.02k
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
705
1.02k
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
706
1.02k
            hInfo->channel_position[3] = BACK_CHANNEL_CENTER;
707
1.02k
            break;
708
764
        case 5:
709
764
            hInfo->num_front_channels = 3;
710
764
            hInfo->num_back_channels = 2;
711
764
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
712
764
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
713
764
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
714
764
            hInfo->channel_position[3] = BACK_CHANNEL_LEFT;
715
764
            hInfo->channel_position[4] = BACK_CHANNEL_RIGHT;
716
764
            break;
717
375
        case 6:
718
375
            hInfo->num_front_channels = 3;
719
375
            hInfo->num_back_channels = 2;
720
375
            hInfo->num_lfe_channels = 1;
721
375
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
722
375
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
723
375
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
724
375
            hInfo->channel_position[3] = BACK_CHANNEL_LEFT;
725
375
            hInfo->channel_position[4] = BACK_CHANNEL_RIGHT;
726
375
            hInfo->channel_position[5] = LFE_CHANNEL;
727
375
            break;
728
1.30k
        case 7:
729
1.30k
            hInfo->num_front_channels = 3;
730
1.30k
            hInfo->num_side_channels = 2;
731
1.30k
            hInfo->num_back_channels = 2;
732
1.30k
            hInfo->num_lfe_channels = 1;
733
1.30k
            hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
734
1.30k
            hInfo->channel_position[1] = FRONT_CHANNEL_LEFT;
735
1.30k
            hInfo->channel_position[2] = FRONT_CHANNEL_RIGHT;
736
1.30k
            hInfo->channel_position[3] = SIDE_CHANNEL_LEFT;
737
1.30k
            hInfo->channel_position[4] = SIDE_CHANNEL_RIGHT;
738
1.30k
            hInfo->channel_position[5] = BACK_CHANNEL_LEFT;
739
1.30k
            hInfo->channel_position[6] = BACK_CHANNEL_RIGHT;
740
1.30k
            hInfo->channel_position[7] = LFE_CHANNEL;
741
1.30k
            break;
742
216
        default: /* channelConfiguration == 0 || channelConfiguration > 7 */
743
216
            {
744
216
                uint8_t i;
745
216
                uint8_t ch = hDecoder->fr_channels - hDecoder->has_lfe;
746
216
                if (ch & 1) /* there's either a center front or a center back channel */
747
84
                {
748
84
                    uint8_t ch1 = (ch-1)/2;
749
84
                    if (hDecoder->first_syn_ele == ID_SCE)
750
53
                    {
751
53
                        hInfo->num_front_channels = ch1 + 1;
752
53
                        hInfo->num_back_channels = ch1;
753
53
                        hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
754
208
                        for (i = 1; i <= ch1; i+=2)
755
155
                        {
756
155
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
757
155
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
758
155
                        }
759
208
                        for (i = ch1+1; i < ch; i+=2)
760
155
                        {
761
155
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
762
155
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
763
155
                        }
764
53
                    } else {
765
31
                        hInfo->num_front_channels = ch1;
766
31
                        hInfo->num_back_channels = ch1 + 1;
767
184
                        for (i = 0; i < ch1; i+=2)
768
153
                        {
769
153
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
770
153
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
771
153
                        }
772
184
                        for (i = ch1; i < ch-1; i+=2)
773
153
                        {
774
153
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
775
153
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
776
153
                        }
777
31
                        hInfo->channel_position[ch-1] = BACK_CHANNEL_CENTER;
778
31
                    }
779
132
                } else {
780
132
                    uint8_t ch1 = (ch)/2;
781
132
                    hInfo->num_front_channels = ch1;
782
132
                    hInfo->num_back_channels = ch1;
783
132
                    if (ch1 & 1)
784
59
                    {
785
59
                        hInfo->channel_position[0] = FRONT_CHANNEL_CENTER;
786
386
                        for (i = 1; i <= ch1; i+=2)
787
327
                        {
788
327
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
789
327
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
790
327
                        }
791
327
                        for (i = ch1+1; i < ch-1; i+=2)
792
268
                        {
793
268
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
794
268
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
795
268
                        }
796
59
                        hInfo->channel_position[ch-1] = BACK_CHANNEL_CENTER;
797
73
                    } else {
798
328
                        for (i = 0; i < ch1; i+=2)
799
255
                        {
800
255
                            hInfo->channel_position[i] = FRONT_CHANNEL_LEFT;
801
255
                            hInfo->channel_position[i+1] = FRONT_CHANNEL_RIGHT;
802
255
                        }
803
328
                        for (i = ch1; i < ch; i+=2)
804
255
                        {
805
255
                            hInfo->channel_position[i] = BACK_CHANNEL_LEFT;
806
255
                            hInfo->channel_position[i+1] = BACK_CHANNEL_RIGHT;
807
255
                        }
808
73
                    }
809
132
                }
810
216
                hInfo->num_lfe_channels = hDecoder->has_lfe;
811
488
                for (i = ch; i < hDecoder->fr_channels; i++)
812
272
                {
813
272
                    hInfo->channel_position[i] = LFE_CHANNEL;
814
272
                }
815
216
            }
816
216
            break;
817
9.10k
        }
818
9.10k
    }
819
9.46k
}
820
821
void* NeAACDecDecode(NeAACDecHandle hpDecoder,
822
                                 NeAACDecFrameInfo *hInfo,
823
                                 unsigned char *buffer,
824
                                 unsigned long buffer_size)
825
43.2k
{
826
43.2k
    NeAACDecStruct* hDecoder = (NeAACDecStruct*)hpDecoder;
827
43.2k
    return aac_frame_decode(hDecoder, hInfo, buffer, buffer_size, NULL, 0);
828
43.2k
}
829
830
void* NeAACDecDecode2(NeAACDecHandle hpDecoder,
831
                                  NeAACDecFrameInfo *hInfo,
832
                                  unsigned char *buffer,
833
                                  unsigned long buffer_size,
834
                                  void **sample_buffer,
835
                                  unsigned long sample_buffer_size)
836
12.7k
{
837
12.7k
    NeAACDecStruct* hDecoder = (NeAACDecStruct*)hpDecoder;
838
12.7k
    if ((sample_buffer_size == 0) || (sample_buffer == NULL) || (*sample_buffer == NULL))
839
119
    {
840
119
        hInfo->error = 27;
841
119
        return NULL;
842
119
    }
843
844
12.6k
    return aac_frame_decode(hDecoder, hInfo, buffer, buffer_size,
845
12.6k
        sample_buffer, sample_buffer_size);
846
12.7k
}
847
848
static void* aac_frame_decode(NeAACDecStruct *hDecoder,
849
                              NeAACDecFrameInfo *hInfo,
850
                              unsigned char *buffer,
851
                              unsigned long buffer_size,
852
                              void **sample_buffer2,
853
                              unsigned long sample_buffer_size)
854
55.8k
{
855
55.8k
    uint16_t i;
856
55.8k
    uint8_t channels = 0;
857
55.8k
    uint8_t output_channels = 0;
858
55.8k
    bitfile ld;
859
55.8k
    uint32_t bitsconsumed;
860
55.8k
    uint16_t frame_len;
861
55.8k
    void *sample_buffer;
862
#if 0
863
    uint32_t startbit=0, endbit=0, payload_bits=0;
864
#endif
865
55.8k
    uint32_t required_buffer_size=0;
866
867
#ifdef PROFILE
868
    int64_t count = faad_get_ts();
869
#endif
870
871
    /* safety checks */
872
55.8k
    if ((hDecoder == NULL) || (hInfo == NULL) || (buffer == NULL))
873
0
    {
874
0
        return NULL;
875
0
    }
876
877
#if 0
878
    printf("%d\n", buffer_size*8);
879
#endif
880
881
55.8k
    frame_len = hDecoder->frameLength;
882
883
884
55.8k
    memset(hInfo, 0, sizeof(NeAACDecFrameInfo));
885
55.8k
    memset(hDecoder->internal_channel, 0, MAX_CHANNELS*sizeof(hDecoder->internal_channel[0]));
886
887
#ifdef USE_TIME_LIMIT
888
    if ((TIME_LIMIT * get_sample_rate(hDecoder->sf_index)) > hDecoder->TL_count)
889
    {
890
        hDecoder->TL_count += 1024;
891
    } else {
892
        hInfo->error = (NUM_ERROR_MESSAGES-1);
893
        goto error;
894
    }
895
#endif
896
897
898
    /* check for some common metadata tag types in the bitstream
899
     * No need to return an error
900
     */
901
    /* ID3 */
902
55.8k
    if (buffer_size >= 128)
903
6.09k
    {
904
6.09k
        if (memcmp(buffer, "TAG", 3) == 0)
905
12
        {
906
            /* found it */
907
12
            hInfo->bytesconsumed = 128; /* 128 bytes fixed size */
908
            /* no error, but no output either */
909
12
            return NULL;
910
12
        }
911
6.09k
    }
912
913
914
    /* initialize the bitstream */
915
55.8k
    faad_initbits(&ld, buffer, buffer_size);
916
55.8k
    if (ld.error != 0)
917
22.6k
        return NULL;
918
919
#if 0
920
    {
921
        int i;
922
        for (i = 0; i < ((buffer_size+3)>>2); i++)
923
        {
924
            uint8_t *buf;
925
            uint32_t temp = 0;
926
            buf = faad_getbitbuffer(&ld, 32);
927
            //temp = getdword((void*)buf);
928
            temp = *((uint32_t*)buf);
929
            printf("0x%.8X\n", temp);
930
            free(buf);
931
        }
932
        faad_endbits(&ld);
933
        faad_initbits(&ld, buffer, buffer_size);
934
    }
935
#endif
936
937
#if 0
938
    if(hDecoder->latm_header_present)
939
    {
940
        payload_bits = faad_latm_frame(&hDecoder->latm_config, &ld);
941
        startbit = faad_get_processed_bits(&ld);
942
        if(payload_bits == -1U)
943
        {
944
            hInfo->error = 1;
945
            goto error;
946
        }
947
    }
948
#endif
949
950
#ifdef DRM
951
11.4k
    if (hDecoder->object_type == DRM_ER_LC)
952
1.03k
    {
953
        /* We do not support stereo right now */
954
1.03k
        if (0) //(hDecoder->channelConfiguration == 2)
955
0
        {
956
0
            hInfo->error = 28; // Throw CRC error
957
0
            goto error;
958
0
        }
959
960
1.03k
        faad_getbits(&ld, 8
961
1.03k
            DEBUGVAR(1,1,"NeAACDecDecode(): skip CRC"));
962
1.03k
    }
963
11.4k
#endif
964
965
33.2k
    if (hDecoder->adts_header_present)
966
766
    {
967
766
        adts_header adts;
968
969
766
        adts.old_format = hDecoder->config.useOldADTSFormat;
970
766
        if ((hInfo->error = adts_frame(&adts, &ld)) > 0)
971
102
            goto error;
972
973
        /* MPEG2 does byte_alignment() here,
974
         * but ADTS header is always multiple of 8 bits in MPEG2
975
         * so not needed to actually do it.
976
         */
977
766
    }
978
979
#ifdef ANALYSIS
980
    dbg_count = 0;
981
#endif
982
983
    /* decode the complete bitstream */
984
#ifdef DRM
985
11.4k
    if (/*(hDecoder->object_type == 6) ||*/ hDecoder->object_type == DRM_ER_LC)
986
1.03k
    {
987
1.03k
        DRM_aac_scalable_main_element(hDecoder, hInfo, &ld, &hDecoder->pce, hDecoder->drc);
988
10.4k
    } else {
989
10.4k
#endif
990
21.6k
        raw_data_block(hDecoder, hInfo, &ld, &hDecoder->pce, hDecoder->drc);
991
#ifdef DRM
992
    }
993
#endif
994
995
#if 0
996
    if(hDecoder->latm_header_present)
997
    {
998
        endbit = faad_get_processed_bits(&ld);
999
        if(endbit-startbit > payload_bits)
1000
            fprintf(stderr, "\r\nERROR, too many payload bits read: %u > %d. Please. report with a link to a sample\n",
1001
                endbit-startbit, payload_bits);
1002
        if(hDecoder->latm_config.otherDataLenBits > 0)
1003
            faad_getbits(&ld, hDecoder->latm_config.otherDataLenBits);
1004
        faad_byte_align(&ld);
1005
    }
1006
#endif
1007
1008
21.6k
    channels = hDecoder->fr_channels;
1009
1010
33.1k
    if (hInfo->error > 0)
1011
22.3k
        goto error;
1012
1013
    /* safety check */
1014
10.7k
    if (channels == 0 || channels > MAX_CHANNELS)
1015
97
    {
1016
        /* invalid number of channels */
1017
97
        hInfo->error = 12;
1018
97
        goto error;
1019
97
    }
1020
1021
    /* no more bit reading after this */
1022
10.6k
    bitsconsumed = faad_get_processed_bits(&ld);
1023
10.6k
    hInfo->bytesconsumed = bit2byte(bitsconsumed);
1024
10.6k
    if (ld.error)
1025
0
    {
1026
0
        hInfo->error = 14;
1027
0
        goto error;
1028
0
    }
1029
10.6k
    faad_endbits(&ld);
1030
1031
1032
10.6k
    if (!hDecoder->adts_header_present && !hDecoder->adif_header_present
1033
#if 0
1034
        && !hDecoder->latm_header_present
1035
#endif
1036
10.6k
        )
1037
10.4k
    {
1038
10.4k
        if (hDecoder->channelConfiguration == 0)
1039
329
            hDecoder->channelConfiguration = channels;
1040
1041
10.4k
        if (channels == 8) /* 7.1 */
1042
892
            hDecoder->channelConfiguration = 7;
1043
10.4k
        if (channels == 7) /* not a standard channelConfiguration */
1044
63
            hDecoder->channelConfiguration = 0;
1045
10.4k
    }
1046
1047
10.6k
    if ((channels == 5 || channels == 6) && hDecoder->config.downMatrix)
1048
1.13k
    {
1049
1.13k
        hDecoder->downMatrix = 1;
1050
1.13k
        output_channels = 2;
1051
9.48k
    } else {
1052
9.48k
        output_channels = channels;
1053
9.48k
    }
1054
1055
10.6k
#if (defined(PS_DEC) || defined(DRM_PS))
1056
10.6k
    hDecoder->upMatrix = 0;
1057
    /* check if we have a mono file */
1058
10.6k
    if (output_channels == 1)
1059
293
    {
1060
        /* upMatrix to 2 channels for implicit signalling of PS */
1061
293
        hDecoder->upMatrix = 1;
1062
293
        output_channels = 2;
1063
293
    }
1064
10.6k
#endif
1065
1066
    /* Make a channel configuration based on either a PCE or a channelConfiguration */
1067
10.6k
    if (!hDecoder->downMatrix && hDecoder->pce_set)
1068
372
    {
1069
        /* In some codepath program_config_element result is ignored. */
1070
372
        if (hDecoder->pce.channels > MAX_CHANNELS)
1071
9
        {
1072
9
            hInfo->error = 22;
1073
9
            return NULL;
1074
9
        }
1075
372
    }
1076
10.6k
    create_channel_config(hDecoder, hInfo);
1077
1078
    /* number of samples in this frame */
1079
10.6k
    hInfo->samples = frame_len*output_channels;
1080
    /* number of channels in this frame */
1081
10.6k
    hInfo->channels = output_channels;
1082
    /* samplerate */
1083
10.6k
    hInfo->samplerate = get_sample_rate(hDecoder->sf_index);
1084
    /* object type */
1085
10.6k
    hInfo->object_type = hDecoder->object_type;
1086
    /* sbr */
1087
10.6k
    hInfo->sbr = NO_SBR;
1088
    /* header type */
1089
10.6k
    hInfo->header_type = RAW;
1090
10.6k
    if (hDecoder->adif_header_present)
1091
0
        hInfo->header_type = ADIF;
1092
10.6k
    if (hDecoder->adts_header_present)
1093
205
        hInfo->header_type = ADTS;
1094
#if 0
1095
    if (hDecoder->latm_header_present)
1096
        hInfo->header_type = LATM;
1097
#endif
1098
10.6k
#if (defined(PS_DEC) || defined(DRM_PS))
1099
10.6k
    hInfo->ps = hDecoder->ps_used_global;
1100
10.6k
#endif
1101
1102
    /* check if frame has channel elements */
1103
10.6k
    if (channels == 0)
1104
0
    {
1105
0
        hDecoder->frame++;
1106
0
        return NULL;
1107
0
    }
1108
1109
10.6k
    {
1110
10.6k
        static const uint8_t str[] = { sizeof(int16_t), sizeof(int32_t), sizeof(int32_t),
1111
10.6k
            sizeof(float32_t), sizeof(double), sizeof(int16_t), sizeof(int16_t),
1112
10.6k
            sizeof(int16_t), sizeof(int16_t), 0, 0, 0
1113
10.6k
        };
1114
10.6k
        uint8_t stride = str[hDecoder->config.outputFormat-1];
1115
10.6k
#ifdef SBR_DEC
1116
10.6k
        if (((hDecoder->sbr_present_flag == 1)&&(!hDecoder->downSampledSBR)) || (hDecoder->forceUpSampling == 1))
1117
5.91k
        {
1118
5.91k
            stride = 2 * stride;
1119
5.91k
        }
1120
10.6k
#endif
1121
10.6k
        required_buffer_size = frame_len*output_channels*stride;
1122
10.6k
    }
1123
1124
    /* check if we want to use internal sample_buffer */
1125
10.6k
    if (sample_buffer_size == 0)
1126
7.32k
    {
1127
        /* allocate the buffer for the final samples */
1128
7.32k
        if (hDecoder->sample_buffer_size != required_buffer_size) 
1129
6.39k
        {
1130
6.39k
            if (hDecoder->sample_buffer)
1131
108
                faad_free(hDecoder->sample_buffer);
1132
6.39k
            hDecoder->sample_buffer = NULL;
1133
6.39k
            hDecoder->sample_buffer = faad_malloc(required_buffer_size);
1134
6.39k
            hDecoder->sample_buffer_size = required_buffer_size;
1135
6.39k
        }
1136
7.32k
    } else if (sample_buffer_size < required_buffer_size) {
1137
        /* provided sample buffer is not big enough */
1138
1.35k
        hInfo->error = 27;
1139
1.35k
        return NULL;
1140
1.35k
    }
1141
1142
9.25k
    if (sample_buffer_size == 0)
1143
7.32k
    {
1144
7.32k
        sample_buffer = hDecoder->sample_buffer;
1145
7.32k
    } else {
1146
1.93k
        sample_buffer = *sample_buffer2;
1147
1.93k
    }
1148
1149
9.25k
#ifdef SBR_DEC
1150
9.25k
    if ((hDecoder->sbr_present_flag == 1) || (hDecoder->forceUpSampling == 1))
1151
6.36k
    {
1152
6.36k
        uint8_t ele;
1153
1154
        /* this data is different when SBR is used or when the data is upsampled */
1155
6.36k
        if (!hDecoder->downSampledSBR)
1156
4.98k
        {
1157
4.98k
            frame_len *= 2;
1158
4.98k
            hInfo->samples *= 2;
1159
4.98k
            hInfo->samplerate *= 2;
1160
4.98k
        }
1161
1162
        /* check if every element was provided with SBR data */
1163
32.7k
        for (ele = 0; ele < hDecoder->fr_ch_ele; ele++)
1164
26.3k
        {
1165
26.3k
            if (hDecoder->sbr[ele] == NULL)
1166
10
            {
1167
10
                hInfo->error = 25;
1168
10
                goto error;
1169
10
            }
1170
26.3k
        }
1171
1172
        /* sbr */
1173
6.35k
        if (hDecoder->sbr_present_flag == 1)
1174
4.01k
        {
1175
4.01k
            hInfo->object_type = HE_AAC;
1176
4.01k
            hInfo->sbr = SBR_UPSAMPLED;
1177
4.01k
        } else {
1178
2.34k
            hInfo->sbr = NO_SBR_UPSAMPLED;
1179
2.34k
        }
1180
6.35k
        if (hDecoder->downSampledSBR)
1181
1.37k
        {
1182
1.37k
            hInfo->sbr = SBR_DOWNSAMPLED;
1183
1.37k
        }
1184
6.35k
    }
1185
9.24k
#endif
1186
1187
1188
9.24k
    sample_buffer = output_to_PCM(hDecoder, hDecoder->time_out, sample_buffer,
1189
9.24k
        output_channels, frame_len, hDecoder->config.outputFormat);
1190
1191
1192
#ifdef DRM
1193
    //conceal_output(hDecoder, frame_len, output_channels, sample_buffer);
1194
#endif
1195
1196
1197
9.24k
    hDecoder->postSeekResetFlag = 0;
1198
1199
9.24k
    hDecoder->frame++;
1200
#ifdef LD_DEC
1201
6.18k
    if (hDecoder->object_type != LD)
1202
5.41k
    {
1203
5.41k
#endif
1204
8.47k
        if (hDecoder->frame <= 1)
1205
3.13k
            hInfo->samples = 0;
1206
#ifdef LD_DEC
1207
765
    } else {
1208
        /* LD encoders will give lower delay */
1209
765
        if (hDecoder->frame <= 0)
1210
0
            hInfo->samples = 0;
1211
765
    }
1212
#endif
1213
1214
    /* cleanup */
1215
#ifdef ANALYSIS
1216
    fflush(stdout);
1217
#endif
1218
1219
#ifdef PROFILE
1220
    count = faad_get_ts() - count;
1221
    hDecoder->cycles += count;
1222
#endif
1223
1224
9.24k
    return sample_buffer;
1225
1226
22.5k
error:
1227
1228
    /* reset filterbank state */
1229
1.46M
    for (i = 0; i < MAX_CHANNELS; i++)
1230
1.44M
    {
1231
1.44M
        if (hDecoder->fb_intermed[i] != NULL)
1232
731k
        {
1233
731k
            memset(hDecoder->fb_intermed[i], 0, hDecoder->frameLength*sizeof(real_t));
1234
731k
        }
1235
1.44M
    }
1236
22.5k
#ifdef SBR_DEC
1237
1.10M
    for (i = 0; i < MAX_SYNTAX_ELEMENTS; i++)
1238
1.08M
    {
1239
1.08M
        if (hDecoder->sbr[i] != NULL)
1240
522k
        {
1241
522k
            sbrReset(hDecoder->sbr[i]);
1242
522k
        }
1243
1.08M
    }
1244
22.5k
#endif
1245
1246
1247
22.5k
    faad_endbits(&ld);
1248
1249
    /* cleanup */
1250
#ifdef ANALYSIS
1251
    fflush(stdout);
1252
#endif
1253
1254
22.5k
    return NULL;
1255
9.25k
}
decoder.c:aac_frame_decode
Line
Count
Source
854
19.1k
{
855
19.1k
    uint16_t i;
856
19.1k
    uint8_t channels = 0;
857
19.1k
    uint8_t output_channels = 0;
858
19.1k
    bitfile ld;
859
19.1k
    uint32_t bitsconsumed;
860
19.1k
    uint16_t frame_len;
861
19.1k
    void *sample_buffer;
862
#if 0
863
    uint32_t startbit=0, endbit=0, payload_bits=0;
864
#endif
865
19.1k
    uint32_t required_buffer_size=0;
866
867
#ifdef PROFILE
868
    int64_t count = faad_get_ts();
869
#endif
870
871
    /* safety checks */
872
19.1k
    if ((hDecoder == NULL) || (hInfo == NULL) || (buffer == NULL))
873
0
    {
874
0
        return NULL;
875
0
    }
876
877
#if 0
878
    printf("%d\n", buffer_size*8);
879
#endif
880
881
19.1k
    frame_len = hDecoder->frameLength;
882
883
884
19.1k
    memset(hInfo, 0, sizeof(NeAACDecFrameInfo));
885
19.1k
    memset(hDecoder->internal_channel, 0, MAX_CHANNELS*sizeof(hDecoder->internal_channel[0]));
886
887
#ifdef USE_TIME_LIMIT
888
    if ((TIME_LIMIT * get_sample_rate(hDecoder->sf_index)) > hDecoder->TL_count)
889
    {
890
        hDecoder->TL_count += 1024;
891
    } else {
892
        hInfo->error = (NUM_ERROR_MESSAGES-1);
893
        goto error;
894
    }
895
#endif
896
897
898
    /* check for some common metadata tag types in the bitstream
899
     * No need to return an error
900
     */
901
    /* ID3 */
902
19.1k
    if (buffer_size >= 128)
903
2.80k
    {
904
2.80k
        if (memcmp(buffer, "TAG", 3) == 0)
905
6
        {
906
            /* found it */
907
6
            hInfo->bytesconsumed = 128; /* 128 bytes fixed size */
908
            /* no error, but no output either */
909
6
            return NULL;
910
6
        }
911
2.80k
    }
912
913
914
    /* initialize the bitstream */
915
19.1k
    faad_initbits(&ld, buffer, buffer_size);
916
19.1k
    if (ld.error != 0)
917
7.70k
        return NULL;
918
919
#if 0
920
    {
921
        int i;
922
        for (i = 0; i < ((buffer_size+3)>>2); i++)
923
        {
924
            uint8_t *buf;
925
            uint32_t temp = 0;
926
            buf = faad_getbitbuffer(&ld, 32);
927
            //temp = getdword((void*)buf);
928
            temp = *((uint32_t*)buf);
929
            printf("0x%.8X\n", temp);
930
            free(buf);
931
        }
932
        faad_endbits(&ld);
933
        faad_initbits(&ld, buffer, buffer_size);
934
    }
935
#endif
936
937
#if 0
938
    if(hDecoder->latm_header_present)
939
    {
940
        payload_bits = faad_latm_frame(&hDecoder->latm_config, &ld);
941
        startbit = faad_get_processed_bits(&ld);
942
        if(payload_bits == -1U)
943
        {
944
            hInfo->error = 1;
945
            goto error;
946
        }
947
    }
948
#endif
949
950
11.4k
#ifdef DRM
951
11.4k
    if (hDecoder->object_type == DRM_ER_LC)
952
1.03k
    {
953
        /* We do not support stereo right now */
954
1.03k
        if (0) //(hDecoder->channelConfiguration == 2)
955
0
        {
956
0
            hInfo->error = 28; // Throw CRC error
957
0
            goto error;
958
0
        }
959
960
1.03k
        faad_getbits(&ld, 8
961
1.03k
            DEBUGVAR(1,1,"NeAACDecDecode(): skip CRC"));
962
1.03k
    }
963
11.4k
#endif
964
965
11.4k
    if (hDecoder->adts_header_present)
966
85
    {
967
85
        adts_header adts;
968
969
85
        adts.old_format = hDecoder->config.useOldADTSFormat;
970
85
        if ((hInfo->error = adts_frame(&adts, &ld)) > 0)
971
4
            goto error;
972
973
        /* MPEG2 does byte_alignment() here,
974
         * but ADTS header is always multiple of 8 bits in MPEG2
975
         * so not needed to actually do it.
976
         */
977
85
    }
978
979
#ifdef ANALYSIS
980
    dbg_count = 0;
981
#endif
982
983
    /* decode the complete bitstream */
984
11.4k
#ifdef DRM
985
11.4k
    if (/*(hDecoder->object_type == 6) ||*/ hDecoder->object_type == DRM_ER_LC)
986
1.03k
    {
987
1.03k
        DRM_aac_scalable_main_element(hDecoder, hInfo, &ld, &hDecoder->pce, hDecoder->drc);
988
10.4k
    } else {
989
10.4k
#endif
990
10.4k
        raw_data_block(hDecoder, hInfo, &ld, &hDecoder->pce, hDecoder->drc);
991
10.4k
#ifdef DRM
992
10.4k
    }
993
11.4k
#endif
994
995
#if 0
996
    if(hDecoder->latm_header_present)
997
    {
998
        endbit = faad_get_processed_bits(&ld);
999
        if(endbit-startbit > payload_bits)
1000
            fprintf(stderr, "\r\nERROR, too many payload bits read: %u > %d. Please. report with a link to a sample\n",
1001
                endbit-startbit, payload_bits);
1002
        if(hDecoder->latm_config.otherDataLenBits > 0)
1003
            faad_getbits(&ld, hDecoder->latm_config.otherDataLenBits);
1004
        faad_byte_align(&ld);
1005
    }
1006
#endif
1007
1008
11.4k
    channels = hDecoder->fr_channels;
1009
1010
11.4k
    if (hInfo->error > 0)
1011
7.69k
        goto error;
1012
1013
    /* safety check */
1014
3.76k
    if (channels == 0 || channels > MAX_CHANNELS)
1015
33
    {
1016
        /* invalid number of channels */
1017
33
        hInfo->error = 12;
1018
33
        goto error;
1019
33
    }
1020
1021
    /* no more bit reading after this */
1022
3.73k
    bitsconsumed = faad_get_processed_bits(&ld);
1023
3.73k
    hInfo->bytesconsumed = bit2byte(bitsconsumed);
1024
3.73k
    if (ld.error)
1025
0
    {
1026
0
        hInfo->error = 14;
1027
0
        goto error;
1028
0
    }
1029
3.73k
    faad_endbits(&ld);
1030
1031
1032
3.73k
    if (!hDecoder->adts_header_present && !hDecoder->adif_header_present
1033
#if 0
1034
        && !hDecoder->latm_header_present
1035
#endif
1036
3.73k
        )
1037
3.69k
    {
1038
3.69k
        if (hDecoder->channelConfiguration == 0)
1039
147
            hDecoder->channelConfiguration = channels;
1040
1041
3.69k
        if (channels == 8) /* 7.1 */
1042
157
            hDecoder->channelConfiguration = 7;
1043
3.69k
        if (channels == 7) /* not a standard channelConfiguration */
1044
0
            hDecoder->channelConfiguration = 0;
1045
3.69k
    }
1046
1047
3.73k
    if ((channels == 5 || channels == 6) && hDecoder->config.downMatrix)
1048
526
    {
1049
526
        hDecoder->downMatrix = 1;
1050
526
        output_channels = 2;
1051
3.20k
    } else {
1052
3.20k
        output_channels = channels;
1053
3.20k
    }
1054
1055
3.73k
#if (defined(PS_DEC) || defined(DRM_PS))
1056
3.73k
    hDecoder->upMatrix = 0;
1057
    /* check if we have a mono file */
1058
3.73k
    if (output_channels == 1)
1059
0
    {
1060
        /* upMatrix to 2 channels for implicit signalling of PS */
1061
0
        hDecoder->upMatrix = 1;
1062
0
        output_channels = 2;
1063
0
    }
1064
3.73k
#endif
1065
1066
    /* Make a channel configuration based on either a PCE or a channelConfiguration */
1067
3.73k
    if (!hDecoder->downMatrix && hDecoder->pce_set)
1068
163
    {
1069
        /* In some codepath program_config_element result is ignored. */
1070
163
        if (hDecoder->pce.channels > MAX_CHANNELS)
1071
3
        {
1072
3
            hInfo->error = 22;
1073
3
            return NULL;
1074
3
        }
1075
163
    }
1076
3.73k
    create_channel_config(hDecoder, hInfo);
1077
1078
    /* number of samples in this frame */
1079
3.73k
    hInfo->samples = frame_len*output_channels;
1080
    /* number of channels in this frame */
1081
3.73k
    hInfo->channels = output_channels;
1082
    /* samplerate */
1083
3.73k
    hInfo->samplerate = get_sample_rate(hDecoder->sf_index);
1084
    /* object type */
1085
3.73k
    hInfo->object_type = hDecoder->object_type;
1086
    /* sbr */
1087
3.73k
    hInfo->sbr = NO_SBR;
1088
    /* header type */
1089
3.73k
    hInfo->header_type = RAW;
1090
3.73k
    if (hDecoder->adif_header_present)
1091
0
        hInfo->header_type = ADIF;
1092
3.73k
    if (hDecoder->adts_header_present)
1093
39
        hInfo->header_type = ADTS;
1094
#if 0
1095
    if (hDecoder->latm_header_present)
1096
        hInfo->header_type = LATM;
1097
#endif
1098
3.73k
#if (defined(PS_DEC) || defined(DRM_PS))
1099
3.73k
    hInfo->ps = hDecoder->ps_used_global;
1100
3.73k
#endif
1101
1102
    /* check if frame has channel elements */
1103
3.73k
    if (channels == 0)
1104
0
    {
1105
0
        hDecoder->frame++;
1106
0
        return NULL;
1107
0
    }
1108
1109
3.73k
    {
1110
3.73k
        static const uint8_t str[] = { sizeof(int16_t), sizeof(int32_t), sizeof(int32_t),
1111
3.73k
            sizeof(float32_t), sizeof(double), sizeof(int16_t), sizeof(int16_t),
1112
3.73k
            sizeof(int16_t), sizeof(int16_t), 0, 0, 0
1113
3.73k
        };
1114
3.73k
        uint8_t stride = str[hDecoder->config.outputFormat-1];
1115
3.73k
#ifdef SBR_DEC
1116
3.73k
        if (((hDecoder->sbr_present_flag == 1)&&(!hDecoder->downSampledSBR)) || (hDecoder->forceUpSampling == 1))
1117
2.01k
        {
1118
2.01k
            stride = 2 * stride;
1119
2.01k
        }
1120
3.73k
#endif
1121
3.73k
        required_buffer_size = frame_len*output_channels*stride;
1122
3.73k
    }
1123
1124
    /* check if we want to use internal sample_buffer */
1125
3.73k
    if (sample_buffer_size == 0)
1126
2.00k
    {
1127
        /* allocate the buffer for the final samples */
1128
2.00k
        if (hDecoder->sample_buffer_size != required_buffer_size) 
1129
1.78k
        {
1130
1.78k
            if (hDecoder->sample_buffer)
1131
53
                faad_free(hDecoder->sample_buffer);
1132
1.78k
            hDecoder->sample_buffer = NULL;
1133
1.78k
            hDecoder->sample_buffer = faad_malloc(required_buffer_size);
1134
1.78k
            hDecoder->sample_buffer_size = required_buffer_size;
1135
1.78k
        }
1136
2.00k
    } else if (sample_buffer_size < required_buffer_size) {
1137
        /* provided sample buffer is not big enough */
1138
664
        hInfo->error = 27;
1139
664
        return NULL;
1140
664
    }
1141
1142
3.06k
    if (sample_buffer_size == 0)
1143
2.00k
    {
1144
2.00k
        sample_buffer = hDecoder->sample_buffer;
1145
2.00k
    } else {
1146
1.06k
        sample_buffer = *sample_buffer2;
1147
1.06k
    }
1148
1149
3.06k
#ifdef SBR_DEC
1150
3.06k
    if ((hDecoder->sbr_present_flag == 1) || (hDecoder->forceUpSampling == 1))
1151
2.22k
    {
1152
2.22k
        uint8_t ele;
1153
1154
        /* this data is different when SBR is used or when the data is upsampled */
1155
2.22k
        if (!hDecoder->downSampledSBR)
1156
1.53k
        {
1157
1.53k
            frame_len *= 2;
1158
1.53k
            hInfo->samples *= 2;
1159
1.53k
            hInfo->samplerate *= 2;
1160
1.53k
        }
1161
1162
        /* check if every element was provided with SBR data */
1163
12.0k
        for (ele = 0; ele < hDecoder->fr_ch_ele; ele++)
1164
9.81k
        {
1165
9.81k
            if (hDecoder->sbr[ele] == NULL)
1166
3
            {
1167
3
                hInfo->error = 25;
1168
3
                goto error;
1169
3
            }
1170
9.81k
        }
1171
1172
        /* sbr */
1173
2.21k
        if (hDecoder->sbr_present_flag == 1)
1174
1.72k
        {
1175
1.72k
            hInfo->object_type = HE_AAC;
1176
1.72k
            hInfo->sbr = SBR_UPSAMPLED;
1177
1.72k
        } else {
1178
492
            hInfo->sbr = NO_SBR_UPSAMPLED;
1179
492
        }
1180
2.21k
        if (hDecoder->downSampledSBR)
1181
688
        {
1182
688
            hInfo->sbr = SBR_DOWNSAMPLED;
1183
688
        }
1184
2.21k
    }
1185
3.06k
#endif
1186
1187
1188
3.06k
    sample_buffer = output_to_PCM(hDecoder, hDecoder->time_out, sample_buffer,
1189
3.06k
        output_channels, frame_len, hDecoder->config.outputFormat);
1190
1191
1192
3.06k
#ifdef DRM
1193
    //conceal_output(hDecoder, frame_len, output_channels, sample_buffer);
1194
3.06k
#endif
1195
1196
1197
3.06k
    hDecoder->postSeekResetFlag = 0;
1198
1199
3.06k
    hDecoder->frame++;
1200
#ifdef LD_DEC
1201
    if (hDecoder->object_type != LD)
1202
    {
1203
#endif
1204
3.06k
        if (hDecoder->frame <= 1)
1205
1.20k
            hInfo->samples = 0;
1206
#ifdef LD_DEC
1207
    } else {
1208
        /* LD encoders will give lower delay */
1209
        if (hDecoder->frame <= 0)
1210
            hInfo->samples = 0;
1211
    }
1212
#endif
1213
1214
    /* cleanup */
1215
#ifdef ANALYSIS
1216
    fflush(stdout);
1217
#endif
1218
1219
#ifdef PROFILE
1220
    count = faad_get_ts() - count;
1221
    hDecoder->cycles += count;
1222
#endif
1223
1224
3.06k
    return sample_buffer;
1225
1226
7.73k
error:
1227
1228
    /* reset filterbank state */
1229
502k
    for (i = 0; i < MAX_CHANNELS; i++)
1230
495k
    {
1231
495k
        if (hDecoder->fb_intermed[i] != NULL)
1232
190k
        {
1233
190k
            memset(hDecoder->fb_intermed[i], 0, hDecoder->frameLength*sizeof(real_t));
1234
190k
        }
1235
495k
    }
1236
7.73k
#ifdef SBR_DEC
1237
379k
    for (i = 0; i < MAX_SYNTAX_ELEMENTS; i++)
1238
371k
    {
1239
371k
        if (hDecoder->sbr[i] != NULL)
1240
143k
        {
1241
143k
            sbrReset(hDecoder->sbr[i]);
1242
143k
        }
1243
371k
    }
1244
7.73k
#endif
1245
1246
1247
7.73k
    faad_endbits(&ld);
1248
1249
    /* cleanup */
1250
#ifdef ANALYSIS
1251
    fflush(stdout);
1252
#endif
1253
1254
7.73k
    return NULL;
1255
3.06k
}
decoder.c:aac_frame_decode
Line
Count
Source
854
36.7k
{
855
36.7k
    uint16_t i;
856
36.7k
    uint8_t channels = 0;
857
36.7k
    uint8_t output_channels = 0;
858
36.7k
    bitfile ld;
859
36.7k
    uint32_t bitsconsumed;
860
36.7k
    uint16_t frame_len;
861
36.7k
    void *sample_buffer;
862
#if 0
863
    uint32_t startbit=0, endbit=0, payload_bits=0;
864
#endif
865
36.7k
    uint32_t required_buffer_size=0;
866
867
#ifdef PROFILE
868
    int64_t count = faad_get_ts();
869
#endif
870
871
    /* safety checks */
872
36.7k
    if ((hDecoder == NULL) || (hInfo == NULL) || (buffer == NULL))
873
0
    {
874
0
        return NULL;
875
0
    }
876
877
#if 0
878
    printf("%d\n", buffer_size*8);
879
#endif
880
881
36.7k
    frame_len = hDecoder->frameLength;
882
883
884
36.7k
    memset(hInfo, 0, sizeof(NeAACDecFrameInfo));
885
36.7k
    memset(hDecoder->internal_channel, 0, MAX_CHANNELS*sizeof(hDecoder->internal_channel[0]));
886
887
#ifdef USE_TIME_LIMIT
888
    if ((TIME_LIMIT * get_sample_rate(hDecoder->sf_index)) > hDecoder->TL_count)
889
    {
890
        hDecoder->TL_count += 1024;
891
    } else {
892
        hInfo->error = (NUM_ERROR_MESSAGES-1);
893
        goto error;
894
    }
895
#endif
896
897
898
    /* check for some common metadata tag types in the bitstream
899
     * No need to return an error
900
     */
901
    /* ID3 */
902
36.7k
    if (buffer_size >= 128)
903
3.29k
    {
904
3.29k
        if (memcmp(buffer, "TAG", 3) == 0)
905
6
        {
906
            /* found it */
907
6
            hInfo->bytesconsumed = 128; /* 128 bytes fixed size */
908
            /* no error, but no output either */
909
6
            return NULL;
910
6
        }
911
3.29k
    }
912
913
914
    /* initialize the bitstream */
915
36.6k
    faad_initbits(&ld, buffer, buffer_size);
916
36.6k
    if (ld.error != 0)
917
14.9k
        return NULL;
918
919
#if 0
920
    {
921
        int i;
922
        for (i = 0; i < ((buffer_size+3)>>2); i++)
923
        {
924
            uint8_t *buf;
925
            uint32_t temp = 0;
926
            buf = faad_getbitbuffer(&ld, 32);
927
            //temp = getdword((void*)buf);
928
            temp = *((uint32_t*)buf);
929
            printf("0x%.8X\n", temp);
930
            free(buf);
931
        }
932
        faad_endbits(&ld);
933
        faad_initbits(&ld, buffer, buffer_size);
934
    }
935
#endif
936
937
#if 0
938
    if(hDecoder->latm_header_present)
939
    {
940
        payload_bits = faad_latm_frame(&hDecoder->latm_config, &ld);
941
        startbit = faad_get_processed_bits(&ld);
942
        if(payload_bits == -1U)
943
        {
944
            hInfo->error = 1;
945
            goto error;
946
        }
947
    }
948
#endif
949
950
#ifdef DRM
951
    if (hDecoder->object_type == DRM_ER_LC)
952
    {
953
        /* We do not support stereo right now */
954
        if (0) //(hDecoder->channelConfiguration == 2)
955
        {
956
            hInfo->error = 28; // Throw CRC error
957
            goto error;
958
        }
959
960
        faad_getbits(&ld, 8
961
            DEBUGVAR(1,1,"NeAACDecDecode(): skip CRC"));
962
    }
963
#endif
964
965
21.7k
    if (hDecoder->adts_header_present)
966
681
    {
967
681
        adts_header adts;
968
969
681
        adts.old_format = hDecoder->config.useOldADTSFormat;
970
681
        if ((hInfo->error = adts_frame(&adts, &ld)) > 0)
971
98
            goto error;
972
973
        /* MPEG2 does byte_alignment() here,
974
         * but ADTS header is always multiple of 8 bits in MPEG2
975
         * so not needed to actually do it.
976
         */
977
681
    }
978
979
#ifdef ANALYSIS
980
    dbg_count = 0;
981
#endif
982
983
    /* decode the complete bitstream */
984
#ifdef DRM
985
    if (/*(hDecoder->object_type == 6) ||*/ hDecoder->object_type == DRM_ER_LC)
986
    {
987
        DRM_aac_scalable_main_element(hDecoder, hInfo, &ld, &hDecoder->pce, hDecoder->drc);
988
    } else {
989
#endif
990
21.6k
        raw_data_block(hDecoder, hInfo, &ld, &hDecoder->pce, hDecoder->drc);
991
#ifdef DRM
992
    }
993
#endif
994
995
#if 0
996
    if(hDecoder->latm_header_present)
997
    {
998
        endbit = faad_get_processed_bits(&ld);
999
        if(endbit-startbit > payload_bits)
1000
            fprintf(stderr, "\r\nERROR, too many payload bits read: %u > %d. Please. report with a link to a sample\n",
1001
                endbit-startbit, payload_bits);
1002
        if(hDecoder->latm_config.otherDataLenBits > 0)
1003
            faad_getbits(&ld, hDecoder->latm_config.otherDataLenBits);
1004
        faad_byte_align(&ld);
1005
    }
1006
#endif
1007
1008
21.6k
    channels = hDecoder->fr_channels;
1009
1010
21.6k
    if (hInfo->error > 0)
1011
14.6k
        goto error;
1012
1013
    /* safety check */
1014
6.95k
    if (channels == 0 || channels > MAX_CHANNELS)
1015
64
    {
1016
        /* invalid number of channels */
1017
64
        hInfo->error = 12;
1018
64
        goto error;
1019
64
    }
1020
1021
    /* no more bit reading after this */
1022
6.88k
    bitsconsumed = faad_get_processed_bits(&ld);
1023
6.88k
    hInfo->bytesconsumed = bit2byte(bitsconsumed);
1024
6.88k
    if (ld.error)
1025
0
    {
1026
0
        hInfo->error = 14;
1027
0
        goto error;
1028
0
    }
1029
6.88k
    faad_endbits(&ld);
1030
1031
1032
6.88k
    if (!hDecoder->adts_header_present && !hDecoder->adif_header_present
1033
#if 0
1034
        && !hDecoder->latm_header_present
1035
#endif
1036
6.88k
        )
1037
6.72k
    {
1038
6.72k
        if (hDecoder->channelConfiguration == 0)
1039
182
            hDecoder->channelConfiguration = channels;
1040
1041
6.72k
        if (channels == 8) /* 7.1 */
1042
735
            hDecoder->channelConfiguration = 7;
1043
6.72k
        if (channels == 7) /* not a standard channelConfiguration */
1044
63
            hDecoder->channelConfiguration = 0;
1045
6.72k
    }
1046
1047
6.88k
    if ((channels == 5 || channels == 6) && hDecoder->config.downMatrix)
1048
610
    {
1049
610
        hDecoder->downMatrix = 1;
1050
610
        output_channels = 2;
1051
6.27k
    } else {
1052
6.27k
        output_channels = channels;
1053
6.27k
    }
1054
1055
6.88k
#if (defined(PS_DEC) || defined(DRM_PS))
1056
6.88k
    hDecoder->upMatrix = 0;
1057
    /* check if we have a mono file */
1058
6.88k
    if (output_channels == 1)
1059
293
    {
1060
        /* upMatrix to 2 channels for implicit signalling of PS */
1061
293
        hDecoder->upMatrix = 1;
1062
293
        output_channels = 2;
1063
293
    }
1064
6.88k
#endif
1065
1066
    /* Make a channel configuration based on either a PCE or a channelConfiguration */
1067
6.88k
    if (!hDecoder->downMatrix && hDecoder->pce_set)
1068
209
    {
1069
        /* In some codepath program_config_element result is ignored. */
1070
209
        if (hDecoder->pce.channels > MAX_CHANNELS)
1071
6
        {
1072
6
            hInfo->error = 22;
1073
6
            return NULL;
1074
6
        }
1075
209
    }
1076
6.88k
    create_channel_config(hDecoder, hInfo);
1077
1078
    /* number of samples in this frame */
1079
6.88k
    hInfo->samples = frame_len*output_channels;
1080
    /* number of channels in this frame */
1081
6.88k
    hInfo->channels = output_channels;
1082
    /* samplerate */
1083
6.88k
    hInfo->samplerate = get_sample_rate(hDecoder->sf_index);
1084
    /* object type */
1085
6.88k
    hInfo->object_type = hDecoder->object_type;
1086
    /* sbr */
1087
6.88k
    hInfo->sbr = NO_SBR;
1088
    /* header type */
1089
6.88k
    hInfo->header_type = RAW;
1090
6.88k
    if (hDecoder->adif_header_present)
1091
0
        hInfo->header_type = ADIF;
1092
6.88k
    if (hDecoder->adts_header_present)
1093
166
        hInfo->header_type = ADTS;
1094
#if 0
1095
    if (hDecoder->latm_header_present)
1096
        hInfo->header_type = LATM;
1097
#endif
1098
6.88k
#if (defined(PS_DEC) || defined(DRM_PS))
1099
6.88k
    hInfo->ps = hDecoder->ps_used_global;
1100
6.88k
#endif
1101
1102
    /* check if frame has channel elements */
1103
6.88k
    if (channels == 0)
1104
0
    {
1105
0
        hDecoder->frame++;
1106
0
        return NULL;
1107
0
    }
1108
1109
6.88k
    {
1110
6.88k
        static const uint8_t str[] = { sizeof(int16_t), sizeof(int32_t), sizeof(int32_t),
1111
6.88k
            sizeof(float32_t), sizeof(double), sizeof(int16_t), sizeof(int16_t),
1112
6.88k
            sizeof(int16_t), sizeof(int16_t), 0, 0, 0
1113
6.88k
        };
1114
6.88k
        uint8_t stride = str[hDecoder->config.outputFormat-1];
1115
6.88k
#ifdef SBR_DEC
1116
6.88k
        if (((hDecoder->sbr_present_flag == 1)&&(!hDecoder->downSampledSBR)) || (hDecoder->forceUpSampling == 1))
1117
3.89k
        {
1118
3.89k
            stride = 2 * stride;
1119
3.89k
        }
1120
6.88k
#endif
1121
6.88k
        required_buffer_size = frame_len*output_channels*stride;
1122
6.88k
    }
1123
1124
    /* check if we want to use internal sample_buffer */
1125
6.88k
    if (sample_buffer_size == 0)
1126
5.31k
    {
1127
        /* allocate the buffer for the final samples */
1128
5.31k
        if (hDecoder->sample_buffer_size != required_buffer_size) 
1129
4.60k
        {
1130
4.60k
            if (hDecoder->sample_buffer)
1131
55
                faad_free(hDecoder->sample_buffer);
1132
4.60k
            hDecoder->sample_buffer = NULL;
1133
4.60k
            hDecoder->sample_buffer = faad_malloc(required_buffer_size);
1134
4.60k
            hDecoder->sample_buffer_size = required_buffer_size;
1135
4.60k
        }
1136
5.31k
    } else if (sample_buffer_size < required_buffer_size) {
1137
        /* provided sample buffer is not big enough */
1138
694
        hInfo->error = 27;
1139
694
        return NULL;
1140
694
    }
1141
1142
6.18k
    if (sample_buffer_size == 0)
1143
5.31k
    {
1144
5.31k
        sample_buffer = hDecoder->sample_buffer;
1145
5.31k
    } else {
1146
869
        sample_buffer = *sample_buffer2;
1147
869
    }
1148
1149
6.18k
#ifdef SBR_DEC
1150
6.18k
    if ((hDecoder->sbr_present_flag == 1) || (hDecoder->forceUpSampling == 1))
1151
4.14k
    {
1152
4.14k
        uint8_t ele;
1153
1154
        /* this data is different when SBR is used or when the data is upsampled */
1155
4.14k
        if (!hDecoder->downSampledSBR)
1156
3.45k
        {
1157
3.45k
            frame_len *= 2;
1158
3.45k
            hInfo->samples *= 2;
1159
3.45k
            hInfo->samplerate *= 2;
1160
3.45k
        }
1161
1162
        /* check if every element was provided with SBR data */
1163
20.7k
        for (ele = 0; ele < hDecoder->fr_ch_ele; ele++)
1164
16.5k
        {
1165
16.5k
            if (hDecoder->sbr[ele] == NULL)
1166
7
            {
1167
7
                hInfo->error = 25;
1168
7
                goto error;
1169
7
            }
1170
16.5k
        }
1171
1172
        /* sbr */
1173
4.13k
        if (hDecoder->sbr_present_flag == 1)
1174
2.28k
        {
1175
2.28k
            hInfo->object_type = HE_AAC;
1176
2.28k
            hInfo->sbr = SBR_UPSAMPLED;
1177
2.28k
        } else {
1178
1.85k
            hInfo->sbr = NO_SBR_UPSAMPLED;
1179
1.85k
        }
1180
4.13k
        if (hDecoder->downSampledSBR)
1181
686
        {
1182
686
            hInfo->sbr = SBR_DOWNSAMPLED;
1183
686
        }
1184
4.13k
    }
1185
6.18k
#endif
1186
1187
1188
6.18k
    sample_buffer = output_to_PCM(hDecoder, hDecoder->time_out, sample_buffer,
1189
6.18k
        output_channels, frame_len, hDecoder->config.outputFormat);
1190
1191
1192
#ifdef DRM
1193
    //conceal_output(hDecoder, frame_len, output_channels, sample_buffer);
1194
#endif
1195
1196
1197
6.18k
    hDecoder->postSeekResetFlag = 0;
1198
1199
6.18k
    hDecoder->frame++;
1200
6.18k
#ifdef LD_DEC
1201
6.18k
    if (hDecoder->object_type != LD)
1202
5.41k
    {
1203
5.41k
#endif
1204
5.41k
        if (hDecoder->frame <= 1)
1205
1.93k
            hInfo->samples = 0;
1206
5.41k
#ifdef LD_DEC
1207
5.41k
    } else {
1208
        /* LD encoders will give lower delay */
1209
765
        if (hDecoder->frame <= 0)
1210
0
            hInfo->samples = 0;
1211
765
    }
1212
6.18k
#endif
1213
1214
    /* cleanup */
1215
#ifdef ANALYSIS
1216
    fflush(stdout);
1217
#endif
1218
1219
#ifdef PROFILE
1220
    count = faad_get_ts() - count;
1221
    hDecoder->cycles += count;
1222
#endif
1223
1224
6.18k
    return sample_buffer;
1225
1226
14.8k
error:
1227
1228
    /* reset filterbank state */
1229
966k
    for (i = 0; i < MAX_CHANNELS; i++)
1230
951k
    {
1231
951k
        if (hDecoder->fb_intermed[i] != NULL)
1232
540k
        {
1233
540k
            memset(hDecoder->fb_intermed[i], 0, hDecoder->frameLength*sizeof(real_t));
1234
540k
        }
1235
951k
    }
1236
14.8k
#ifdef SBR_DEC
1237
728k
    for (i = 0; i < MAX_SYNTAX_ELEMENTS; i++)
1238
713k
    {
1239
713k
        if (hDecoder->sbr[i] != NULL)
1240
379k
        {
1241
379k
            sbrReset(hDecoder->sbr[i]);
1242
379k
        }
1243
713k
    }
1244
14.8k
#endif
1245
1246
1247
14.8k
    faad_endbits(&ld);
1248
1249
    /* cleanup */
1250
#ifdef ANALYSIS
1251
    fflush(stdout);
1252
#endif
1253
1254
14.8k
    return NULL;
1255
6.18k
}