Coverage Report

Created: 2025-07-23 06:30

/proc/self/cwd/libfaad/pns.c
Line
Count
Source
1
/*
2
** FAAD2 - Freeware Advanced Audio (AAC) Decoder including SBR decoding
3
** Copyright (C) 2003-2005 M. Bakker, Nero AG, http://www.nero.com
4
**
5
** This program is free software; you can redistribute it and/or modify
6
** it under the terms of the GNU General Public License as published by
7
** the Free Software Foundation; either version 2 of the License, or
8
** (at your option) any later version.
9
**
10
** This program is distributed in the hope that it will be useful,
11
** but WITHOUT ANY WARRANTY; without even the implied warranty of
12
** MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13
** GNU General Public License for more details.
14
**
15
** You should have received a copy of the GNU General Public License
16
** along with this program; if not, write to the Free Software
17
** Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
18
**
19
** Any non-GPL usage of this software or parts of this software is strictly
20
** forbidden.
21
**
22
** The "appropriate copyright message" mentioned in section 2c of the GPLv2
23
** must read: "Code from FAAD2 is copyright (c) Nero AG, www.nero.com"
24
**
25
** Commercial non-GPL licensing of this software is possible.
26
** For more info contact Nero AG through Mpeg4AAClicense@nero.com.
27
**
28
** $Id: pns.c,v 1.39 2010/06/04 20:47:56 menno Exp $
29
**/
30
31
#include "common.h"
32
#include "structs.h"
33
34
#include "pns.h"
35
36
37
/* static function declarations */
38
static void gen_rand_vector(real_t *spec, int16_t scale_factor, uint16_t size,
39
                            uint8_t sub,
40
                            /* RNG states */ uint32_t *__r1, uint32_t *__r2);
41
42
43
#ifdef FIXED_POINT
44
45
static real_t const pow2_table[] =
46
{
47
    COEF_CONST(1.0),
48
    COEF_CONST(1.18920711500272),
49
    COEF_CONST(1.41421356237310),
50
    COEF_CONST(1.68179283050743)
51
};
52
53
// mean_energy_table[x] == sqrt(3 / x)
54
static real_t const mean_energy_table[] =
55
{
56
    COEF_CONST(0.0),                // should not happen
57
    COEF_CONST(1.7320508075688772),
58
    COEF_CONST(1.224744871391589),
59
    COEF_CONST(1.0),                // sqrt(3/3)
60
    COEF_CONST(0.8660254037844386),
61
    COEF_CONST(0.7745966692414834),
62
    COEF_CONST(0.7071067811865476),
63
    COEF_CONST(0.6546536707079771),
64
    COEF_CONST(0.6123724356957945),
65
    COEF_CONST(0.5773502691896257),
66
    COEF_CONST(0.5477225575051661),
67
    COEF_CONST(0.5222329678670935),
68
    COEF_CONST(0.5),                // sqrt(3/12)
69
    COEF_CONST(0.4803844614152614),
70
    COEF_CONST(0.4629100498862757),
71
    COEF_CONST(0.4472135954999579),
72
};
73
#endif
74
75
/* The function gen_rand_vector(addr, size) generates a vector of length
76
   <size> with signed random values of average energy MEAN_NRG per random
77
   value. A suitable random number generator can be realized using one
78
   multiplication/accumulation per random value.
79
*/
80
static INLINE void gen_rand_vector(real_t *spec, int16_t scale_factor, uint16_t size,
81
                                   uint8_t sub,
82
                                   /* RNG states */ uint32_t *__r1, uint32_t *__r2)
83
87.4k
{
84
#ifndef FIXED_POINT
85
    uint16_t i;
86
    real_t energy = 0.0;
87
    (void)sub;
88
89
38.4k
    scale_factor = min(max(scale_factor, -120), 120);
90
91
359k
    for (i = 0; i < size; i++)
92
320k
    {
93
320k
        real_t tmp = (real_t)(int32_t)ne_rng(__r1, __r2);
94
320k
        spec[i] = tmp;
95
320k
        energy += tmp*tmp;
96
320k
    }
97
98
38.4k
    if (energy > 0)
99
16.6k
    {
100
16.6k
        real_t scale = (real_t)1.0/(real_t)sqrt(energy);
101
16.6k
        scale *= (real_t)pow(2.0, 0.25 * scale_factor);
102
337k
        for (i = 0; i < size; i++)
103
320k
        {
104
320k
            spec[i] *= scale;
105
320k
        }
106
16.6k
    }
107
#else
108
    uint16_t i;
109
    real_t scale;
110
    int32_t exp, frac;
111
    int32_t idx, mask;
112
113
    /* IMDCT pre-scaling */
114
    scale_factor -= 4 * sub;
115
116
    // 52 stands for 2**13 == 8192 factor; larger factor causes overflows later (in cfft).
117
48.9k
    scale_factor = min(max(scale_factor, -(REAL_BITS * 4)), 52);
118
119
    exp = scale_factor >> 2;
120
    frac = scale_factor & 3;
121
122
    /* 29 <= REAL_BITS + exp <= 0 */
123
48.9k
    mask = (1 << (REAL_BITS + exp)) - 1;
124
125
    idx = size;
126
48.9k
    scale = COEF_CONST(1);
127
    // At most 2 iterations.
128
56.2k
    while (idx >= 16)
129
7.35k
    {
130
7.35k
        idx >>= 2;
131
7.35k
        scale >>= 1;
132
7.35k
    }
133
48.9k
    scale = MUL_C(scale, mean_energy_table[idx]);
134
48.9k
    if (frac)
135
8.84k
        scale = MUL_C(scale, pow2_table[frac]);
136
    // scale is less than 4.0 now.
137
138
508k
    for (i = 0; i < size; i++)
139
459k
    {
140
459k
        real_t tmp = (int32_t)ne_rng(__r1, __r2);
141
459k
        if (tmp < 0)
142
232k
            tmp = -(tmp & mask);
143
227k
        else
144
227k
            tmp = (tmp & mask);
145
459k
        spec[i] = MUL_C(tmp, scale);
146
459k
    }
147
#endif
148
87.4k
}
pns.c:gen_rand_vector
Line
Count
Source
83
48.9k
{
84
#ifndef FIXED_POINT
85
    uint16_t i;
86
    real_t energy = 0.0;
87
    (void)sub;
88
89
    scale_factor = min(max(scale_factor, -120), 120);
90
91
    for (i = 0; i < size; i++)
92
    {
93
        real_t tmp = (real_t)(int32_t)ne_rng(__r1, __r2);
94
        spec[i] = tmp;
95
        energy += tmp*tmp;
96
    }
97
98
    if (energy > 0)
99
    {
100
        real_t scale = (real_t)1.0/(real_t)sqrt(energy);
101
        scale *= (real_t)pow(2.0, 0.25 * scale_factor);
102
        for (i = 0; i < size; i++)
103
        {
104
            spec[i] *= scale;
105
        }
106
    }
107
#else
108
48.9k
    uint16_t i;
109
48.9k
    real_t scale;
110
48.9k
    int32_t exp, frac;
111
48.9k
    int32_t idx, mask;
112
113
    /* IMDCT pre-scaling */
114
48.9k
    scale_factor -= 4 * sub;
115
116
    // 52 stands for 2**13 == 8192 factor; larger factor causes overflows later (in cfft).
117
48.9k
    scale_factor = min(max(scale_factor, -(REAL_BITS * 4)), 52);
118
119
48.9k
    exp = scale_factor >> 2;
120
48.9k
    frac = scale_factor & 3;
121
122
    /* 29 <= REAL_BITS + exp <= 0 */
123
48.9k
    mask = (1 << (REAL_BITS + exp)) - 1;
124
125
48.9k
    idx = size;
126
48.9k
    scale = COEF_CONST(1);
127
    // At most 2 iterations.
128
56.2k
    while (idx >= 16)
129
7.35k
    {
130
7.35k
        idx >>= 2;
131
7.35k
        scale >>= 1;
132
7.35k
    }
133
48.9k
    scale = MUL_C(scale, mean_energy_table[idx]);
134
48.9k
    if (frac)
135
8.84k
        scale = MUL_C(scale, pow2_table[frac]);
136
    // scale is less than 4.0 now.
137
138
508k
    for (i = 0; i < size; i++)
139
459k
    {
140
459k
        real_t tmp = (int32_t)ne_rng(__r1, __r2);
141
459k
        if (tmp < 0)
142
232k
            tmp = -(tmp & mask);
143
227k
        else
144
227k
            tmp = (tmp & mask);
145
459k
        spec[i] = MUL_C(tmp, scale);
146
459k
    }
147
48.9k
#endif
148
48.9k
}
pns.c:gen_rand_vector
Line
Count
Source
83
38.4k
{
84
38.4k
#ifndef FIXED_POINT
85
38.4k
    uint16_t i;
86
38.4k
    real_t energy = 0.0;
87
38.4k
    (void)sub;
88
89
38.4k
    scale_factor = min(max(scale_factor, -120), 120);
90
91
359k
    for (i = 0; i < size; i++)
92
320k
    {
93
320k
        real_t tmp = (real_t)(int32_t)ne_rng(__r1, __r2);
94
320k
        spec[i] = tmp;
95
320k
        energy += tmp*tmp;
96
320k
    }
97
98
38.4k
    if (energy > 0)
99
16.6k
    {
100
16.6k
        real_t scale = (real_t)1.0/(real_t)sqrt(energy);
101
16.6k
        scale *= (real_t)pow(2.0, 0.25 * scale_factor);
102
337k
        for (i = 0; i < size; i++)
103
320k
        {
104
320k
            spec[i] *= scale;
105
320k
        }
106
16.6k
    }
107
#else
108
    uint16_t i;
109
    real_t scale;
110
    int32_t exp, frac;
111
    int32_t idx, mask;
112
113
    /* IMDCT pre-scaling */
114
    scale_factor -= 4 * sub;
115
116
    // 52 stands for 2**13 == 8192 factor; larger factor causes overflows later (in cfft).
117
    scale_factor = min(max(scale_factor, -(REAL_BITS * 4)), 52);
118
119
    exp = scale_factor >> 2;
120
    frac = scale_factor & 3;
121
122
    /* 29 <= REAL_BITS + exp <= 0 */
123
    mask = (1 << (REAL_BITS + exp)) - 1;
124
125
    idx = size;
126
    scale = COEF_CONST(1);
127
    // At most 2 iterations.
128
    while (idx >= 16)
129
    {
130
        idx >>= 2;
131
        scale >>= 1;
132
    }
133
    scale = MUL_C(scale, mean_energy_table[idx]);
134
    if (frac)
135
        scale = MUL_C(scale, pow2_table[frac]);
136
    // scale is less than 4.0 now.
137
138
    for (i = 0; i < size; i++)
139
    {
140
        real_t tmp = (int32_t)ne_rng(__r1, __r2);
141
        if (tmp < 0)
142
            tmp = -(tmp & mask);
143
        else
144
            tmp = (tmp & mask);
145
        spec[i] = MUL_C(tmp, scale);
146
    }
147
#endif
148
38.4k
}
149
150
void pns_decode(ic_stream *ics_left, ic_stream *ics_right,
151
                real_t *spec_left, real_t *spec_right, uint16_t frame_len,
152
                uint8_t channel_pair, uint8_t object_type,
153
                /* RNG states */ uint32_t *__r1, uint32_t *__r2)
154
670k
{
155
670k
    uint8_t g, sfb, b;
156
670k
    uint16_t begin, end;
157
158
670k
    uint8_t group = 0;
159
670k
    uint16_t nshort = frame_len >> 3;
160
161
670k
    uint8_t sub = 0;
162
163
#ifdef FIXED_POINT
164
    /* IMDCT scaling */
165
291k
    if (object_type == LD)
166
1.23k
    {
167
1.23k
        sub = 9 /*9*/;
168
290k
    } else {
169
290k
        if (ics_left->window_sequence == EIGHT_SHORT_SEQUENCE)
170
23.7k
            sub = 7 /*7*/;
171
266k
        else
172
266k
            sub = 10 /*10*/;
173
290k
    }
174
#else
175
    (void)object_type;
176
#endif
177
178
1.67M
    for (g = 0; g < ics_left->num_window_groups; g++)
179
1.00M
    {
180
        /* Do perceptual noise substitution decoding */
181
2.09M
        for (b = 0; b < ics_left->window_group_length[g]; b++)
182
1.08M
        {
183
1.08M
            uint16_t base = group * nshort;
184
1.50M
            for (sfb = 0; sfb < ics_left->max_sfb; sfb++)
185
421k
            {
186
421k
                uint32_t r1_dep = 0, r2_dep = 0;
187
188
421k
                if (is_noise(ics_left, g, sfb))
189
57.7k
                {
190
#ifdef LTP_DEC
191
                    /* Simultaneous use of LTP and PNS is not prevented in the
192
                       syntax. If both LTP, and PNS are enabled on the same
193
                       scalefactor band, PNS takes precedence, and no prediction
194
                       is applied to this band.
195
                    */
196
                    ics_left->ltp.long_used[sfb] = 0;
197
                    ics_left->ltp2.long_used[sfb] = 0;
198
#endif
199
200
#ifdef MAIN_DEC
201
                    /* For scalefactor bands coded using PNS the corresponding
202
                       predictors are switched to "off".
203
                    */
204
                    ics_left->pred.prediction_used[sfb] = 0;
205
#endif
206
57.7k
                    begin = min(base + ics_left->swb_offset[sfb], ics_left->swb_offset_max);
207
57.7k
                    end = min(base + ics_left->swb_offset[sfb+1], ics_left->swb_offset_max);
208
209
57.7k
                    r1_dep = *__r1;
210
57.7k
                    r2_dep = *__r2;
211
212
                    /* Generate random vector */
213
57.7k
                    gen_rand_vector(&spec_left[begin],
214
57.7k
                        ics_left->scale_factors[g][sfb], end - begin, sub, __r1, __r2);
215
57.7k
                }
216
217
/* From the spec:
218
   If the same scalefactor band and group is coded by perceptual noise
219
   substitution in both channels of a channel pair, the correlation of
220
   the noise signal can be controlled by means of the ms_used field: While
221
   the default noise generation process works independently for each channel
222
   (separate generation of random vectors), the same random vector is used
223
   for both channels if ms_used[] is set for a particular scalefactor band
224
   and group. In this case, no M/S stereo coding is carried out (because M/S
225
   stereo coding and noise substitution coding are mutually exclusive).
226
   If the same scalefactor band and group is coded by perceptual noise
227
   substitution in only one channel of a channel pair the setting of ms_used[]
228
   is not evaluated.
229
*/
230
421k
                if ((ics_right != NULL)
231
421k
                    && is_noise(ics_right, g, sfb))
232
29.6k
                {
233
#ifdef LTP_DEC
234
                    /* See comment above. */
235
                    ics_right->ltp.long_used[sfb] = 0;
236
                    ics_right->ltp2.long_used[sfb] = 0;
237
#endif
238
#ifdef MAIN_DEC
239
                    /* See comment above. */
240
                    ics_right->pred.prediction_used[sfb] = 0;
241
#endif
242
243
29.6k
                    if (channel_pair && is_noise(ics_left, g, sfb) &&
244
29.6k
                        (((ics_left->ms_mask_present == 1) &&
245
13.5k
                        (ics_left->ms_used[g][sfb])) ||
246
13.5k
                        (ics_left->ms_mask_present == 2)))
247
7.87k
                    {
248
                        /*uint16_t c;*/
249
250
7.87k
                        begin = min(base + ics_right->swb_offset[sfb], ics_right->swb_offset_max);
251
7.87k
                        end = min(base + ics_right->swb_offset[sfb+1], ics_right->swb_offset_max);
252
253
                        /* Generate random vector dependent on left channel*/
254
7.87k
                        gen_rand_vector(&spec_right[begin],
255
7.87k
                            ics_right->scale_factors[g][sfb], end - begin, sub, &r1_dep, &r2_dep);
256
257
21.7k
                    } else /*if (ics_left->ms_mask_present == 0)*/ {
258
21.7k
                        begin = min(base + ics_right->swb_offset[sfb], ics_right->swb_offset_max);
259
21.7k
                        end = min(base + ics_right->swb_offset[sfb+1], ics_right->swb_offset_max);
260
261
                        /* Generate random vector */
262
21.7k
                        gen_rand_vector(&spec_right[begin],
263
21.7k
                            ics_right->scale_factors[g][sfb], end - begin, sub, __r1, __r2);
264
21.7k
                    }
265
29.6k
                }
266
421k
            } /* sfb */
267
1.08M
            group++;
268
1.08M
        } /* b */
269
1.00M
    } /* g */
270
670k
}
pns_decode
Line
Count
Source
154
291k
{
155
291k
    uint8_t g, sfb, b;
156
291k
    uint16_t begin, end;
157
158
291k
    uint8_t group = 0;
159
291k
    uint16_t nshort = frame_len >> 3;
160
161
291k
    uint8_t sub = 0;
162
163
291k
#ifdef FIXED_POINT
164
    /* IMDCT scaling */
165
291k
    if (object_type == LD)
166
1.23k
    {
167
1.23k
        sub = 9 /*9*/;
168
290k
    } else {
169
290k
        if (ics_left->window_sequence == EIGHT_SHORT_SEQUENCE)
170
23.7k
            sub = 7 /*7*/;
171
266k
        else
172
266k
            sub = 10 /*10*/;
173
290k
    }
174
#else
175
    (void)object_type;
176
#endif
177
178
724k
    for (g = 0; g < ics_left->num_window_groups; g++)
179
432k
    {
180
        /* Do perceptual noise substitution decoding */
181
890k
        for (b = 0; b < ics_left->window_group_length[g]; b++)
182
458k
        {
183
458k
            uint16_t base = group * nshort;
184
664k
            for (sfb = 0; sfb < ics_left->max_sfb; sfb++)
185
206k
            {
186
206k
                uint32_t r1_dep = 0, r2_dep = 0;
187
188
206k
                if (is_noise(ics_left, g, sfb))
189
30.8k
                {
190
#ifdef LTP_DEC
191
                    /* Simultaneous use of LTP and PNS is not prevented in the
192
                       syntax. If both LTP, and PNS are enabled on the same
193
                       scalefactor band, PNS takes precedence, and no prediction
194
                       is applied to this band.
195
                    */
196
                    ics_left->ltp.long_used[sfb] = 0;
197
                    ics_left->ltp2.long_used[sfb] = 0;
198
#endif
199
200
#ifdef MAIN_DEC
201
                    /* For scalefactor bands coded using PNS the corresponding
202
                       predictors are switched to "off".
203
                    */
204
                    ics_left->pred.prediction_used[sfb] = 0;
205
#endif
206
30.8k
                    begin = min(base + ics_left->swb_offset[sfb], ics_left->swb_offset_max);
207
30.8k
                    end = min(base + ics_left->swb_offset[sfb+1], ics_left->swb_offset_max);
208
209
30.8k
                    r1_dep = *__r1;
210
30.8k
                    r2_dep = *__r2;
211
212
                    /* Generate random vector */
213
30.8k
                    gen_rand_vector(&spec_left[begin],
214
30.8k
                        ics_left->scale_factors[g][sfb], end - begin, sub, __r1, __r2);
215
30.8k
                }
216
217
/* From the spec:
218
   If the same scalefactor band and group is coded by perceptual noise
219
   substitution in both channels of a channel pair, the correlation of
220
   the noise signal can be controlled by means of the ms_used field: While
221
   the default noise generation process works independently for each channel
222
   (separate generation of random vectors), the same random vector is used
223
   for both channels if ms_used[] is set for a particular scalefactor band
224
   and group. In this case, no M/S stereo coding is carried out (because M/S
225
   stereo coding and noise substitution coding are mutually exclusive).
226
   If the same scalefactor band and group is coded by perceptual noise
227
   substitution in only one channel of a channel pair the setting of ms_used[]
228
   is not evaluated.
229
*/
230
206k
                if ((ics_right != NULL)
231
206k
                    && is_noise(ics_right, g, sfb))
232
18.0k
                {
233
#ifdef LTP_DEC
234
                    /* See comment above. */
235
                    ics_right->ltp.long_used[sfb] = 0;
236
                    ics_right->ltp2.long_used[sfb] = 0;
237
#endif
238
#ifdef MAIN_DEC
239
                    /* See comment above. */
240
                    ics_right->pred.prediction_used[sfb] = 0;
241
#endif
242
243
18.0k
                    if (channel_pair && is_noise(ics_left, g, sfb) &&
244
18.0k
                        (((ics_left->ms_mask_present == 1) &&
245
6.09k
                        (ics_left->ms_used[g][sfb])) ||
246
6.09k
                        (ics_left->ms_mask_present == 2)))
247
2.73k
                    {
248
                        /*uint16_t c;*/
249
250
2.73k
                        begin = min(base + ics_right->swb_offset[sfb], ics_right->swb_offset_max);
251
2.73k
                        end = min(base + ics_right->swb_offset[sfb+1], ics_right->swb_offset_max);
252
253
                        /* Generate random vector dependent on left channel*/
254
2.73k
                        gen_rand_vector(&spec_right[begin],
255
2.73k
                            ics_right->scale_factors[g][sfb], end - begin, sub, &r1_dep, &r2_dep);
256
257
15.3k
                    } else /*if (ics_left->ms_mask_present == 0)*/ {
258
15.3k
                        begin = min(base + ics_right->swb_offset[sfb], ics_right->swb_offset_max);
259
15.3k
                        end = min(base + ics_right->swb_offset[sfb+1], ics_right->swb_offset_max);
260
261
                        /* Generate random vector */
262
15.3k
                        gen_rand_vector(&spec_right[begin],
263
15.3k
                            ics_right->scale_factors[g][sfb], end - begin, sub, __r1, __r2);
264
15.3k
                    }
265
18.0k
                }
266
206k
            } /* sfb */
267
458k
            group++;
268
458k
        } /* b */
269
432k
    } /* g */
270
291k
}
pns_decode
Line
Count
Source
154
378k
{
155
378k
    uint8_t g, sfb, b;
156
378k
    uint16_t begin, end;
157
158
378k
    uint8_t group = 0;
159
378k
    uint16_t nshort = frame_len >> 3;
160
161
378k
    uint8_t sub = 0;
162
163
#ifdef FIXED_POINT
164
    /* IMDCT scaling */
165
    if (object_type == LD)
166
    {
167
        sub = 9 /*9*/;
168
    } else {
169
        if (ics_left->window_sequence == EIGHT_SHORT_SEQUENCE)
170
            sub = 7 /*7*/;
171
        else
172
            sub = 10 /*10*/;
173
    }
174
#else
175
378k
    (void)object_type;
176
378k
#endif
177
178
954k
    for (g = 0; g < ics_left->num_window_groups; g++)
179
575k
    {
180
        /* Do perceptual noise substitution decoding */
181
1.20M
        for (b = 0; b < ics_left->window_group_length[g]; b++)
182
625k
        {
183
625k
            uint16_t base = group * nshort;
184
840k
            for (sfb = 0; sfb < ics_left->max_sfb; sfb++)
185
215k
            {
186
215k
                uint32_t r1_dep = 0, r2_dep = 0;
187
188
215k
                if (is_noise(ics_left, g, sfb))
189
26.9k
                {
190
26.9k
#ifdef LTP_DEC
191
                    /* Simultaneous use of LTP and PNS is not prevented in the
192
                       syntax. If both LTP, and PNS are enabled on the same
193
                       scalefactor band, PNS takes precedence, and no prediction
194
                       is applied to this band.
195
                    */
196
26.9k
                    ics_left->ltp.long_used[sfb] = 0;
197
26.9k
                    ics_left->ltp2.long_used[sfb] = 0;
198
26.9k
#endif
199
200
26.9k
#ifdef MAIN_DEC
201
                    /* For scalefactor bands coded using PNS the corresponding
202
                       predictors are switched to "off".
203
                    */
204
26.9k
                    ics_left->pred.prediction_used[sfb] = 0;
205
26.9k
#endif
206
26.9k
                    begin = min(base + ics_left->swb_offset[sfb], ics_left->swb_offset_max);
207
26.9k
                    end = min(base + ics_left->swb_offset[sfb+1], ics_left->swb_offset_max);
208
209
26.9k
                    r1_dep = *__r1;
210
26.9k
                    r2_dep = *__r2;
211
212
                    /* Generate random vector */
213
26.9k
                    gen_rand_vector(&spec_left[begin],
214
26.9k
                        ics_left->scale_factors[g][sfb], end - begin, sub, __r1, __r2);
215
26.9k
                }
216
217
/* From the spec:
218
   If the same scalefactor band and group is coded by perceptual noise
219
   substitution in both channels of a channel pair, the correlation of
220
   the noise signal can be controlled by means of the ms_used field: While
221
   the default noise generation process works independently for each channel
222
   (separate generation of random vectors), the same random vector is used
223
   for both channels if ms_used[] is set for a particular scalefactor band
224
   and group. In this case, no M/S stereo coding is carried out (because M/S
225
   stereo coding and noise substitution coding are mutually exclusive).
226
   If the same scalefactor band and group is coded by perceptual noise
227
   substitution in only one channel of a channel pair the setting of ms_used[]
228
   is not evaluated.
229
*/
230
215k
                if ((ics_right != NULL)
231
215k
                    && is_noise(ics_right, g, sfb))
232
11.5k
                {
233
11.5k
#ifdef LTP_DEC
234
                    /* See comment above. */
235
11.5k
                    ics_right->ltp.long_used[sfb] = 0;
236
11.5k
                    ics_right->ltp2.long_used[sfb] = 0;
237
11.5k
#endif
238
11.5k
#ifdef MAIN_DEC
239
                    /* See comment above. */
240
11.5k
                    ics_right->pred.prediction_used[sfb] = 0;
241
11.5k
#endif
242
243
11.5k
                    if (channel_pair && is_noise(ics_left, g, sfb) &&
244
11.5k
                        (((ics_left->ms_mask_present == 1) &&
245
7.46k
                        (ics_left->ms_used[g][sfb])) ||
246
7.46k
                        (ics_left->ms_mask_present == 2)))
247
5.13k
                    {
248
                        /*uint16_t c;*/
249
250
5.13k
                        begin = min(base + ics_right->swb_offset[sfb], ics_right->swb_offset_max);
251
5.13k
                        end = min(base + ics_right->swb_offset[sfb+1], ics_right->swb_offset_max);
252
253
                        /* Generate random vector dependent on left channel*/
254
5.13k
                        gen_rand_vector(&spec_right[begin],
255
5.13k
                            ics_right->scale_factors[g][sfb], end - begin, sub, &r1_dep, &r2_dep);
256
257
6.42k
                    } else /*if (ics_left->ms_mask_present == 0)*/ {
258
6.42k
                        begin = min(base + ics_right->swb_offset[sfb], ics_right->swb_offset_max);
259
6.42k
                        end = min(base + ics_right->swb_offset[sfb+1], ics_right->swb_offset_max);
260
261
                        /* Generate random vector */
262
6.42k
                        gen_rand_vector(&spec_right[begin],
263
6.42k
                            ics_right->scale_factors[g][sfb], end - begin, sub, __r1, __r2);
264
6.42k
                    }
265
11.5k
                }
266
215k
            } /* sfb */
267
625k
            group++;
268
625k
        } /* b */
269
575k
    } /* g */
270
378k
}