Coverage Report

Created: 2025-11-24 06:22

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/proc/self/cwd/libfaad/output.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: output.c,v 1.47 2009/01/26 23:51:15 menno Exp $
29
**/
30
31
#include "common.h"
32
#include "structs.h"
33
34
#include "output.h"
35
36
#ifndef FIXED_POINT
37
38
39
13.0M
#define FLOAT_SCALE (1.0f/(1<<15))
40
41
2.37M
#define DM_MUL REAL_CONST(0.3203772410170407) // 1/(1+sqrt(2) + 1/sqrt(2))
42
4.75M
#define RSQRT2 REAL_CONST(0.7071067811865475244) // 1/sqrt(2)
43
44
45
static INLINE real_t get_sample(real_t **input, uint8_t channel, uint16_t sample,
46
                                uint8_t down_matrix, uint8_t *internal_channel)
47
41.7M
{
48
41.7M
    if (!down_matrix)
49
39.4M
        return input[internal_channel[channel]][sample];
50
51
2.37M
    if (channel == 0)
52
1.17M
    {
53
1.17M
        return DM_MUL * (input[internal_channel[1]][sample] +
54
1.17M
            input[internal_channel[0]][sample] * RSQRT2 +
55
1.17M
            input[internal_channel[3]][sample] * RSQRT2);
56
1.20M
    } else {
57
1.20M
        return DM_MUL * (input[internal_channel[2]][sample] +
58
1.20M
            input[internal_channel[0]][sample] * RSQRT2 +
59
1.20M
            input[internal_channel[4]][sample] * RSQRT2);
60
1.20M
    }
61
2.37M
}
62
63
#ifndef HAS_LRINTF
64
35.8M
#define CLIP(sample, max, min) \
65
35.8M
if (sample >= 0.0f)            \
66
30.6M
{                              \
67
30.6M
    sample += 0.5f;            \
68
30.6M
    if (sample >= max)         \
69
30.6M
        sample = max;          \
70
30.6M
} else {                       \
71
5.18M
    sample += -0.5f;           \
72
5.18M
    if (sample <= min)         \
73
5.18M
        sample = min;          \
74
5.18M
}
75
#else
76
#define CLIP(sample, max, min) \
77
if (sample >= 0.0f)            \
78
{                              \
79
    if (sample >= max)         \
80
        sample = max;          \
81
} else {                       \
82
    if (sample <= min)         \
83
        sample = min;          \
84
}
85
#endif
86
87
7.74k
#define CONV(a,b) ((a<<1)|(b&0x1))
88
89
static void to_PCM_16bit(NeAACDecStruct *hDecoder, real_t **input,
90
                         uint8_t channels, uint16_t frame_len,
91
                         int16_t **sample_buffer)
92
1.84k
{
93
1.84k
    uint8_t ch, ch1;
94
1.84k
    uint16_t i;
95
96
1.84k
    switch (CONV(channels,hDecoder->downMatrix))
97
1.84k
    {
98
0
    case CONV(1,0):
99
0
    case CONV(1,1):
100
0
        for(i = 0; i < frame_len; i++)
101
0
        {
102
0
            real_t inp = input[hDecoder->internal_channel[0]][i];
103
104
0
            CLIP(inp, 32767.0f, -32768.0f);
105
106
0
            (*sample_buffer)[i] = (int16_t)lrintf(inp);
107
0
        }
108
0
        break;
109
886
    case CONV(2,0):
110
886
        if (hDecoder->upMatrix)
111
51
        {
112
51
            ch  = hDecoder->internal_channel[0];
113
84.7k
            for(i = 0; i < frame_len; i++)
114
84.7k
            {
115
84.7k
                real_t inp0 = input[ch][i];
116
117
84.7k
                CLIP(inp0, 32767.0f, -32768.0f);
118
119
84.7k
                (*sample_buffer)[(i*2)+0] = (int16_t)lrintf(inp0);
120
84.7k
                (*sample_buffer)[(i*2)+1] = (int16_t)lrintf(inp0);
121
84.7k
            }
122
835
        } else {
123
835
            ch  = hDecoder->internal_channel[0];
124
835
            ch1 = hDecoder->internal_channel[1];
125
1.30M
            for(i = 0; i < frame_len; i++)
126
1.30M
            {
127
1.30M
                real_t inp0 = input[ch ][i];
128
1.30M
                real_t inp1 = input[ch1][i];
129
130
1.30M
                CLIP(inp0, 32767.0f, -32768.0f);
131
1.30M
                CLIP(inp1, 32767.0f, -32768.0f);
132
133
1.30M
                (*sample_buffer)[(i*2)+0] = (int16_t)lrintf(inp0);
134
1.30M
                (*sample_buffer)[(i*2)+1] = (int16_t)lrintf(inp1);
135
1.30M
            }
136
835
        }
137
886
        break;
138
963
    default:
139
10.8k
        for (ch = 0; ch < channels; ch++)
140
9.85k
        {
141
14.3M
            for(i = 0; i < frame_len; i++)
142
14.2M
            {
143
14.2M
                real_t inp = get_sample(input, ch, i, hDecoder->downMatrix, hDecoder->internal_channel);
144
145
14.2M
                CLIP(inp, 32767.0f, -32768.0f);
146
147
14.2M
                (*sample_buffer)[(i*channels)+ch] = (int16_t)lrintf(inp);
148
14.2M
            }
149
9.85k
        }
150
963
        break;
151
1.84k
    }
152
1.84k
}
153
154
static void to_PCM_24bit(NeAACDecStruct *hDecoder, real_t **input,
155
                         uint8_t channels, uint16_t frame_len,
156
                         int32_t **sample_buffer)
157
1.19k
{
158
1.19k
    uint8_t ch, ch1;
159
1.19k
    uint16_t i;
160
161
1.19k
    switch (CONV(channels,hDecoder->downMatrix))
162
1.19k
    {
163
0
    case CONV(1,0):
164
0
    case CONV(1,1):
165
0
        for(i = 0; i < frame_len; i++)
166
0
        {
167
0
            real_t inp = input[hDecoder->internal_channel[0]][i];
168
169
0
            inp *= 256.0f;
170
0
            CLIP(inp, 8388607.0f, -8388608.0f);
171
172
0
            (*sample_buffer)[i] = (int32_t)lrintf(inp);
173
0
        }
174
0
        break;
175
571
    case CONV(2,0):
176
571
        if (hDecoder->upMatrix)
177
36
        {
178
36
            ch = hDecoder->internal_channel[0];
179
55.9k
            for(i = 0; i < frame_len; i++)
180
55.9k
            {
181
55.9k
                real_t inp0 = input[ch][i];
182
183
55.9k
                inp0 *= 256.0f;
184
55.9k
                CLIP(inp0, 8388607.0f, -8388608.0f);
185
186
55.9k
                (*sample_buffer)[(i*2)+0] = (int32_t)lrintf(inp0);
187
55.9k
                (*sample_buffer)[(i*2)+1] = (int32_t)lrintf(inp0);
188
55.9k
            }
189
535
        } else {
190
535
            ch  = hDecoder->internal_channel[0];
191
535
            ch1 = hDecoder->internal_channel[1];
192
814k
            for(i = 0; i < frame_len; i++)
193
814k
            {
194
814k
                real_t inp0 = input[ch ][i];
195
814k
                real_t inp1 = input[ch1][i];
196
197
814k
                inp0 *= 256.0f;
198
814k
                inp1 *= 256.0f;
199
814k
                CLIP(inp0, 8388607.0f, -8388608.0f);
200
814k
                CLIP(inp1, 8388607.0f, -8388608.0f);
201
202
814k
                (*sample_buffer)[(i*2)+0] = (int32_t)lrintf(inp0);
203
814k
                (*sample_buffer)[(i*2)+1] = (int32_t)lrintf(inp1);
204
814k
            }
205
535
        }
206
571
        break;
207
627
    default:
208
6.26k
        for (ch = 0; ch < channels; ch++)
209
5.64k
        {
210
8.47M
            for(i = 0; i < frame_len; i++)
211
8.47M
            {
212
8.47M
                real_t inp = get_sample(input, ch, i, hDecoder->downMatrix, hDecoder->internal_channel);
213
214
8.47M
                inp *= 256.0f;
215
8.47M
                CLIP(inp, 8388607.0f, -8388608.0f);
216
217
8.47M
                (*sample_buffer)[(i*channels)+ch] = (int32_t)lrintf(inp);
218
8.47M
            }
219
5.64k
        }
220
627
        break;
221
1.19k
    }
222
1.19k
}
223
224
static void to_PCM_32bit(NeAACDecStruct *hDecoder, real_t **input,
225
                         uint8_t channels, uint16_t frame_len,
226
                         int32_t **sample_buffer)
227
1.19k
{
228
1.19k
    uint8_t ch, ch1;
229
1.19k
    uint16_t i;
230
231
1.19k
    switch (CONV(channels,hDecoder->downMatrix))
232
1.19k
    {
233
0
    case CONV(1,0):
234
0
    case CONV(1,1):
235
0
        for(i = 0; i < frame_len; i++)
236
0
        {
237
0
            real_t inp = input[hDecoder->internal_channel[0]][i];
238
239
0
            inp *= 65536.0f;
240
0
            CLIP(inp, 2147483647.0f, -2147483648.0f);
241
242
0
            (*sample_buffer)[i] = (int32_t)lrintf(inp);
243
0
        }
244
0
        break;
245
632
    case CONV(2,0):
246
632
        if (hDecoder->upMatrix)
247
32
        {
248
32
            ch = hDecoder->internal_channel[0];
249
52.1k
            for(i = 0; i < frame_len; i++)
250
52.0k
            {
251
52.0k
                real_t inp0 = input[ch][i];
252
253
52.0k
                inp0 *= 65536.0f;
254
52.0k
                CLIP(inp0, 2147483647.0f, -2147483648.0f);
255
256
52.0k
                (*sample_buffer)[(i*2)+0] = (int32_t)lrintf(inp0);
257
52.0k
                (*sample_buffer)[(i*2)+1] = (int32_t)lrintf(inp0);
258
52.0k
            }
259
600
        } else {
260
600
            ch  = hDecoder->internal_channel[0];
261
600
            ch1 = hDecoder->internal_channel[1];
262
890k
            for(i = 0; i < frame_len; i++)
263
889k
            {
264
889k
                real_t inp0 = input[ch ][i];
265
889k
                real_t inp1 = input[ch1][i];
266
267
889k
                inp0 *= 65536.0f;
268
889k
                inp1 *= 65536.0f;
269
889k
                CLIP(inp0, 2147483647.0f, -2147483648.0f);
270
889k
                CLIP(inp1, 2147483647.0f, -2147483648.0f);
271
272
889k
                (*sample_buffer)[(i*2)+0] = (int32_t)lrintf(inp0);
273
889k
                (*sample_buffer)[(i*2)+1] = (int32_t)lrintf(inp1);
274
889k
            }
275
600
        }
276
632
        break;
277
559
    default:
278
5.34k
        for (ch = 0; ch < channels; ch++)
279
4.79k
        {
280
6.86M
            for(i = 0; i < frame_len; i++)
281
6.86M
            {
282
6.86M
                real_t inp = get_sample(input, ch, i, hDecoder->downMatrix, hDecoder->internal_channel);
283
284
6.86M
                inp *= 65536.0f;
285
6.86M
                CLIP(inp, 2147483647.0f, -2147483648.0f);
286
287
6.86M
                (*sample_buffer)[(i*channels)+ch] = (int32_t)lrintf(inp);
288
6.86M
            }
289
4.79k
        }
290
559
        break;
291
1.19k
    }
292
1.19k
}
293
294
static void to_PCM_float(NeAACDecStruct *hDecoder, real_t **input,
295
                         uint8_t channels, uint16_t frame_len,
296
                         float32_t **sample_buffer)
297
575
{
298
575
    uint8_t ch, ch1;
299
575
    uint16_t i;
300
301
575
    switch (CONV(channels,hDecoder->downMatrix))
302
575
    {
303
0
    case CONV(1,0):
304
0
    case CONV(1,1):
305
0
        for(i = 0; i < frame_len; i++)
306
0
        {
307
0
            real_t inp = input[hDecoder->internal_channel[0]][i];
308
0
            (*sample_buffer)[i] = inp*FLOAT_SCALE;
309
0
        }
310
0
        break;
311
159
    case CONV(2,0):
312
159
        if (hDecoder->upMatrix)
313
9
        {
314
9
            ch = hDecoder->internal_channel[0];
315
15.1k
            for(i = 0; i < frame_len; i++)
316
15.1k
            {
317
15.1k
                real_t inp0 = input[ch][i];
318
15.1k
                (*sample_buffer)[(i*2)+0] = inp0*FLOAT_SCALE;
319
15.1k
                (*sample_buffer)[(i*2)+1] = inp0*FLOAT_SCALE;
320
15.1k
            }
321
150
        } else {
322
150
            ch  = hDecoder->internal_channel[0];
323
150
            ch1 = hDecoder->internal_channel[1];
324
229k
            for(i = 0; i < frame_len; i++)
325
229k
            {
326
229k
                real_t inp0 = input[ch ][i];
327
229k
                real_t inp1 = input[ch1][i];
328
229k
                (*sample_buffer)[(i*2)+0] = inp0*FLOAT_SCALE;
329
229k
                (*sample_buffer)[(i*2)+1] = inp1*FLOAT_SCALE;
330
229k
            }
331
150
        }
332
159
        break;
333
416
    default:
334
4.45k
        for (ch = 0; ch < channels; ch++)
335
4.03k
        {
336
5.96M
            for(i = 0; i < frame_len; i++)
337
5.95M
            {
338
5.95M
                real_t inp = get_sample(input, ch, i, hDecoder->downMatrix, hDecoder->internal_channel);
339
5.95M
                (*sample_buffer)[(i*channels)+ch] = inp*FLOAT_SCALE;
340
5.95M
            }
341
4.03k
        }
342
416
        break;
343
575
    }
344
575
}
345
346
static void to_PCM_double(NeAACDecStruct *hDecoder, real_t **input,
347
                          uint8_t channels, uint16_t frame_len,
348
                          double **sample_buffer)
349
526
{
350
526
    uint8_t ch, ch1;
351
526
    uint16_t i;
352
353
526
    switch (CONV(channels,hDecoder->downMatrix))
354
526
    {
355
0
    case CONV(1,0):
356
0
    case CONV(1,1):
357
0
        for(i = 0; i < frame_len; i++)
358
0
        {
359
0
            real_t inp = input[hDecoder->internal_channel[0]][i];
360
0
            (*sample_buffer)[i] = (double)inp*FLOAT_SCALE;
361
0
        }
362
0
        break;
363
155
    case CONV(2,0):
364
155
        if (hDecoder->upMatrix)
365
28
        {
366
28
            ch = hDecoder->internal_channel[0];
367
43.9k
            for(i = 0; i < frame_len; i++)
368
43.9k
            {
369
43.9k
                real_t inp0 = input[ch][i];
370
43.9k
                (*sample_buffer)[(i*2)+0] = (double)inp0*FLOAT_SCALE;
371
43.9k
                (*sample_buffer)[(i*2)+1] = (double)inp0*FLOAT_SCALE;
372
43.9k
            }
373
127
        } else {
374
127
            ch  = hDecoder->internal_channel[0];
375
127
            ch1 = hDecoder->internal_channel[1];
376
152k
            for(i = 0; i < frame_len; i++)
377
152k
            {
378
152k
                real_t inp0 = input[ch ][i];
379
152k
                real_t inp1 = input[ch1][i];
380
152k
                (*sample_buffer)[(i*2)+0] = (double)inp0*FLOAT_SCALE;
381
152k
                (*sample_buffer)[(i*2)+1] = (double)inp1*FLOAT_SCALE;
382
152k
            }
383
127
        }
384
155
        break;
385
371
    default:
386
4.41k
        for (ch = 0; ch < channels; ch++)
387
4.04k
        {
388
6.19M
            for(i = 0; i < frame_len; i++)
389
6.19M
            {
390
6.19M
                real_t inp = get_sample(input, ch, i, hDecoder->downMatrix, hDecoder->internal_channel);
391
6.19M
                (*sample_buffer)[(i*channels)+ch] = (double)inp*FLOAT_SCALE;
392
6.19M
            }
393
4.04k
        }
394
371
        break;
395
526
    }
396
526
}
397
398
void *output_to_PCM(NeAACDecStruct *hDecoder,
399
                    real_t **input, void *sample_buffer, uint8_t channels,
400
                    uint16_t frame_len, uint8_t format)
401
10.6k
{
402
10.6k
    int16_t   *short_sample_buffer = (int16_t*)sample_buffer;
403
10.6k
    int32_t   *int_sample_buffer = (int32_t*)sample_buffer;
404
10.6k
    float32_t *float_sample_buffer = (float32_t*)sample_buffer;
405
10.6k
    double    *double_sample_buffer = (double*)sample_buffer;
406
407
#ifdef PROFILE
408
    int64_t count = faad_get_ts();
409
#endif
410
411
    /* Copy output to a standard PCM buffer */
412
10.6k
    switch (format)
413
10.6k
    {
414
3.69k
    case FAAD_FMT_16BIT:
415
3.69k
        to_PCM_16bit(hDecoder, input, channels, frame_len, &short_sample_buffer);
416
3.69k
        break;
417
2.39k
    case FAAD_FMT_24BIT:
418
2.39k
        to_PCM_24bit(hDecoder, input, channels, frame_len, &int_sample_buffer);
419
2.39k
        break;
420
2.38k
    case FAAD_FMT_32BIT:
421
2.38k
        to_PCM_32bit(hDecoder, input, channels, frame_len, &int_sample_buffer);
422
2.38k
        break;
423
1.15k
    case FAAD_FMT_FLOAT:
424
1.15k
        to_PCM_float(hDecoder, input, channels, frame_len, &float_sample_buffer);
425
1.15k
        break;
426
1.05k
    case FAAD_FMT_DOUBLE:
427
1.05k
        to_PCM_double(hDecoder, input, channels, frame_len, &double_sample_buffer);
428
1.05k
        break;
429
10.6k
    }
430
431
#ifdef PROFILE
432
    count = faad_get_ts() - count;
433
    hDecoder->output_cycles += count;
434
#endif
435
436
10.6k
    return sample_buffer;
437
10.6k
}
output_to_PCM
Line
Count
Source
401
5.33k
{
402
5.33k
    int16_t   *short_sample_buffer = (int16_t*)sample_buffer;
403
5.33k
    int32_t   *int_sample_buffer = (int32_t*)sample_buffer;
404
5.33k
    float32_t *float_sample_buffer = (float32_t*)sample_buffer;
405
5.33k
    double    *double_sample_buffer = (double*)sample_buffer;
406
407
#ifdef PROFILE
408
    int64_t count = faad_get_ts();
409
#endif
410
411
    /* Copy output to a standard PCM buffer */
412
5.33k
    switch (format)
413
5.33k
    {
414
1.84k
    case FAAD_FMT_16BIT:
415
1.84k
        to_PCM_16bit(hDecoder, input, channels, frame_len, &short_sample_buffer);
416
1.84k
        break;
417
1.19k
    case FAAD_FMT_24BIT:
418
1.19k
        to_PCM_24bit(hDecoder, input, channels, frame_len, &int_sample_buffer);
419
1.19k
        break;
420
1.19k
    case FAAD_FMT_32BIT:
421
1.19k
        to_PCM_32bit(hDecoder, input, channels, frame_len, &int_sample_buffer);
422
1.19k
        break;
423
575
    case FAAD_FMT_FLOAT:
424
575
        to_PCM_float(hDecoder, input, channels, frame_len, &float_sample_buffer);
425
575
        break;
426
526
    case FAAD_FMT_DOUBLE:
427
526
        to_PCM_double(hDecoder, input, channels, frame_len, &double_sample_buffer);
428
526
        break;
429
5.33k
    }
430
431
#ifdef PROFILE
432
    count = faad_get_ts() - count;
433
    hDecoder->output_cycles += count;
434
#endif
435
436
5.33k
    return sample_buffer;
437
5.33k
}
output_to_PCM
Line
Count
Source
401
5.33k
{
402
5.33k
    int16_t   *short_sample_buffer = (int16_t*)sample_buffer;
403
5.33k
    int32_t   *int_sample_buffer = (int32_t*)sample_buffer;
404
5.33k
    float32_t *float_sample_buffer = (float32_t*)sample_buffer;
405
5.33k
    double    *double_sample_buffer = (double*)sample_buffer;
406
407
#ifdef PROFILE
408
    int64_t count = faad_get_ts();
409
#endif
410
411
    /* Copy output to a standard PCM buffer */
412
5.33k
    switch (format)
413
5.33k
    {
414
1.84k
    case FAAD_FMT_16BIT:
415
1.84k
        to_PCM_16bit(hDecoder, input, channels, frame_len, &short_sample_buffer);
416
1.84k
        break;
417
1.19k
    case FAAD_FMT_24BIT:
418
1.19k
        to_PCM_24bit(hDecoder, input, channels, frame_len, &int_sample_buffer);
419
1.19k
        break;
420
1.19k
    case FAAD_FMT_32BIT:
421
1.19k
        to_PCM_32bit(hDecoder, input, channels, frame_len, &int_sample_buffer);
422
1.19k
        break;
423
575
    case FAAD_FMT_FLOAT:
424
575
        to_PCM_float(hDecoder, input, channels, frame_len, &float_sample_buffer);
425
575
        break;
426
526
    case FAAD_FMT_DOUBLE:
427
526
        to_PCM_double(hDecoder, input, channels, frame_len, &double_sample_buffer);
428
526
        break;
429
5.33k
    }
430
431
#ifdef PROFILE
432
    count = faad_get_ts() - count;
433
    hDecoder->output_cycles += count;
434
#endif
435
436
5.33k
    return sample_buffer;
437
5.33k
}
438
439
#else
440
441
#define DM_MUL FRAC_CONST(0.3203772410170407) // 1/(1+sqrt(2) + 1/sqrt(2))
442
#define RSQRT2 FRAC_CONST(0.7071067811865475244) // 1/sqrt(2)
443
#define BOTH FRAC_CONST(0.2265409196609864215998) // 1/(sqrt(2) + 2 + 1)
444
445
static INLINE real_t get_sample(real_t **input, uint8_t channel, uint16_t sample,
446
                                uint8_t down_matrix, uint8_t up_matrix,
447
                                uint8_t *internal_channel)
448
30.7M
{
449
30.7M
    real_t C;
450
30.7M
    if (up_matrix == 1)
451
267k
        return input[internal_channel[0]][sample];
452
453
30.4M
    if (!down_matrix)
454
29.8M
        return input[internal_channel[channel]][sample];
455
456
604k
    C = MUL_F(input[internal_channel[0]][sample], BOTH);
457
604k
    if (channel == 0)
458
292k
    {
459
292k
        real_t L_S = MUL_F(input[internal_channel[3]][sample], BOTH);
460
292k
        real_t core = MUL_F(input[internal_channel[1]][sample], DM_MUL);
461
292k
        return core + C + L_S;
462
311k
    } else {
463
311k
        real_t R_S = MUL_F(input[internal_channel[4]][sample], BOTH);
464
311k
        real_t core = MUL_F(input[internal_channel[2]][sample], DM_MUL);
465
311k
        return core + C + R_S;
466
311k
    }
467
604k
}
468
469
void* output_to_PCM(NeAACDecStruct *hDecoder,
470
                    real_t **input, void *sample_buffer, uint8_t channels,
471
                    uint16_t frame_len, uint8_t format)
472
6.61k
{
473
6.61k
    uint8_t ch;
474
6.61k
    uint16_t i;
475
6.61k
    int16_t *short_sample_buffer = (int16_t*)sample_buffer;
476
6.61k
    int32_t *int_sample_buffer = (int32_t*)sample_buffer;
477
6.61k
    int32_t exp, half, sat_shift_mask;
478
479
    /* Copy output to a standard PCM buffer */
480
47.9k
    for (ch = 0; ch < channels; ch++)
481
41.3k
    {
482
41.3k
        switch (format)
483
41.3k
        {
484
10.9k
        case FAAD_FMT_16BIT:
485
16.9M
            for(i = 0; i < frame_len; i++)
486
16.9M
            {
487
16.9M
                int32_t tmp = get_sample(input, ch, i, hDecoder->downMatrix, hDecoder->upMatrix,
488
16.9M
                    hDecoder->internal_channel);
489
16.9M
                if (tmp >= 0)
490
15.8M
                {
491
15.8M
                    tmp += (1 << (REAL_BITS-1));
492
15.8M
                    if (tmp >= REAL_CONST(32767))
493
50.6k
                    {
494
50.6k
                        tmp = REAL_CONST(32767);
495
50.6k
                    }
496
15.8M
                } else {
497
1.04M
                    tmp += -(1 << (REAL_BITS-1));
498
1.04M
                    if (tmp <= REAL_CONST(-32768))
499
52.2k
                    {
500
52.2k
                        tmp = REAL_CONST(-32768);
501
52.2k
                    }
502
1.04M
                }
503
16.9M
                tmp >>= REAL_BITS;
504
16.9M
                short_sample_buffer[(i*channels)+ch] = (int16_t)tmp;
505
16.9M
            }
506
10.9k
            break;
507
14.3k
        case FAAD_FMT_24BIT:
508
21.0M
            for(i = 0; i < frame_len; i++)
509
21.0M
            {
510
21.0M
                int32_t tmp = get_sample(input, ch, i, hDecoder->downMatrix, hDecoder->upMatrix,
511
21.0M
                    hDecoder->internal_channel);
512
21.0M
                if (tmp >= 0)
513
19.2M
                {
514
19.2M
                    tmp += (1 << (REAL_BITS-9));
515
19.2M
                    tmp >>= (REAL_BITS-8);
516
19.2M
                    if (tmp >= 8388607)
517
31.1k
                    {
518
31.1k
                        tmp = 8388607;
519
31.1k
                    }
520
19.2M
                } else {
521
1.82M
                    tmp += -(1 << (REAL_BITS-9));
522
1.82M
                    tmp >>= (REAL_BITS-8);
523
1.82M
                    if (tmp <= -8388608)
524
29.6k
                    {
525
29.6k
                        tmp = -8388608;
526
29.6k
                    }
527
1.82M
                }
528
21.0M
                int_sample_buffer[(i*channels)+ch] = (int32_t)tmp;
529
21.0M
            }
530
14.3k
            break;
531
9.50k
        case FAAD_FMT_32BIT:
532
9.50k
            exp = 16 - REAL_BITS;
533
9.50k
            half = 1 << (exp - 1);
534
9.50k
            sat_shift_mask = SAT_SHIFT_MASK(exp);
535
13.5M
            for(i = 0; i < frame_len; i++)
536
13.5M
            {
537
13.5M
                int32_t tmp = get_sample(input, ch, i, hDecoder->downMatrix, hDecoder->upMatrix,
538
13.5M
                    hDecoder->internal_channel);
539
13.5M
                if (tmp >= 0)
540
12.4M
                {
541
12.4M
                    tmp += half;
542
12.4M
                } else {
543
1.07M
                    tmp += -half;
544
1.07M
                }
545
13.5M
                tmp = SAT_SHIFT(tmp, exp, sat_shift_mask);
546
13.5M
                int_sample_buffer[(i*channels)+ch] = tmp;
547
13.5M
            }
548
9.50k
            break;
549
6.60k
        case FAAD_FMT_FIXED:
550
10.0M
            for(i = 0; i < frame_len; i++)
551
10.0M
            {
552
10.0M
                real_t tmp = get_sample(input, ch, i, hDecoder->downMatrix, hDecoder->upMatrix,
553
10.0M
                    hDecoder->internal_channel);
554
10.0M
                int_sample_buffer[(i*channels)+ch] = (int32_t)tmp;
555
10.0M
            }
556
6.60k
            break;
557
41.3k
        }
558
41.3k
    }
559
560
6.61k
    return sample_buffer;
561
6.61k
}
output_to_PCM
Line
Count
Source
472
3.30k
{
473
3.30k
    uint8_t ch;
474
3.30k
    uint16_t i;
475
3.30k
    int16_t *short_sample_buffer = (int16_t*)sample_buffer;
476
3.30k
    int32_t *int_sample_buffer = (int32_t*)sample_buffer;
477
3.30k
    int32_t exp, half, sat_shift_mask;
478
479
    /* Copy output to a standard PCM buffer */
480
23.9k
    for (ch = 0; ch < channels; ch++)
481
20.6k
    {
482
20.6k
        switch (format)
483
20.6k
        {
484
5.45k
        case FAAD_FMT_16BIT:
485
8.47M
            for(i = 0; i < frame_len; i++)
486
8.46M
            {
487
8.46M
                int32_t tmp = get_sample(input, ch, i, hDecoder->downMatrix, hDecoder->upMatrix,
488
8.46M
                    hDecoder->internal_channel);
489
8.46M
                if (tmp >= 0)
490
7.94M
                {
491
7.94M
                    tmp += (1 << (REAL_BITS-1));
492
7.94M
                    if (tmp >= REAL_CONST(32767))
493
25.3k
                    {
494
25.3k
                        tmp = REAL_CONST(32767);
495
25.3k
                    }
496
7.94M
                } else {
497
522k
                    tmp += -(1 << (REAL_BITS-1));
498
522k
                    if (tmp <= REAL_CONST(-32768))
499
26.1k
                    {
500
26.1k
                        tmp = REAL_CONST(-32768);
501
26.1k
                    }
502
522k
                }
503
8.46M
                tmp >>= REAL_BITS;
504
8.46M
                short_sample_buffer[(i*channels)+ch] = (int16_t)tmp;
505
8.46M
            }
506
5.45k
            break;
507
7.15k
        case FAAD_FMT_24BIT:
508
10.5M
            for(i = 0; i < frame_len; i++)
509
10.5M
            {
510
10.5M
                int32_t tmp = get_sample(input, ch, i, hDecoder->downMatrix, hDecoder->upMatrix,
511
10.5M
                    hDecoder->internal_channel);
512
10.5M
                if (tmp >= 0)
513
9.62M
                {
514
9.62M
                    tmp += (1 << (REAL_BITS-9));
515
9.62M
                    tmp >>= (REAL_BITS-8);
516
9.62M
                    if (tmp >= 8388607)
517
15.5k
                    {
518
15.5k
                        tmp = 8388607;
519
15.5k
                    }
520
9.62M
                } else {
521
910k
                    tmp += -(1 << (REAL_BITS-9));
522
910k
                    tmp >>= (REAL_BITS-8);
523
910k
                    if (tmp <= -8388608)
524
14.8k
                    {
525
14.8k
                        tmp = -8388608;
526
14.8k
                    }
527
910k
                }
528
10.5M
                int_sample_buffer[(i*channels)+ch] = (int32_t)tmp;
529
10.5M
            }
530
7.15k
            break;
531
4.75k
        case FAAD_FMT_32BIT:
532
4.75k
            exp = 16 - REAL_BITS;
533
4.75k
            half = 1 << (exp - 1);
534
4.75k
            sat_shift_mask = SAT_SHIFT_MASK(exp);
535
6.75M
            for(i = 0; i < frame_len; i++)
536
6.75M
            {
537
6.75M
                int32_t tmp = get_sample(input, ch, i, hDecoder->downMatrix, hDecoder->upMatrix,
538
6.75M
                    hDecoder->internal_channel);
539
6.75M
                if (tmp >= 0)
540
6.21M
                {
541
6.21M
                    tmp += half;
542
6.21M
                } else {
543
538k
                    tmp += -half;
544
538k
                }
545
6.75M
                tmp = SAT_SHIFT(tmp, exp, sat_shift_mask);
546
6.75M
                int_sample_buffer[(i*channels)+ch] = tmp;
547
6.75M
            }
548
4.75k
            break;
549
3.30k
        case FAAD_FMT_FIXED:
550
5.00M
            for(i = 0; i < frame_len; i++)
551
5.00M
            {
552
5.00M
                real_t tmp = get_sample(input, ch, i, hDecoder->downMatrix, hDecoder->upMatrix,
553
5.00M
                    hDecoder->internal_channel);
554
5.00M
                int_sample_buffer[(i*channels)+ch] = (int32_t)tmp;
555
5.00M
            }
556
3.30k
            break;
557
20.6k
        }
558
20.6k
    }
559
560
3.30k
    return sample_buffer;
561
3.30k
}
output_to_PCM
Line
Count
Source
472
3.30k
{
473
3.30k
    uint8_t ch;
474
3.30k
    uint16_t i;
475
3.30k
    int16_t *short_sample_buffer = (int16_t*)sample_buffer;
476
3.30k
    int32_t *int_sample_buffer = (int32_t*)sample_buffer;
477
3.30k
    int32_t exp, half, sat_shift_mask;
478
479
    /* Copy output to a standard PCM buffer */
480
23.9k
    for (ch = 0; ch < channels; ch++)
481
20.6k
    {
482
20.6k
        switch (format)
483
20.6k
        {
484
5.45k
        case FAAD_FMT_16BIT:
485
8.47M
            for(i = 0; i < frame_len; i++)
486
8.46M
            {
487
8.46M
                int32_t tmp = get_sample(input, ch, i, hDecoder->downMatrix, hDecoder->upMatrix,
488
8.46M
                    hDecoder->internal_channel);
489
8.46M
                if (tmp >= 0)
490
7.94M
                {
491
7.94M
                    tmp += (1 << (REAL_BITS-1));
492
7.94M
                    if (tmp >= REAL_CONST(32767))
493
25.3k
                    {
494
25.3k
                        tmp = REAL_CONST(32767);
495
25.3k
                    }
496
7.94M
                } else {
497
522k
                    tmp += -(1 << (REAL_BITS-1));
498
522k
                    if (tmp <= REAL_CONST(-32768))
499
26.1k
                    {
500
26.1k
                        tmp = REAL_CONST(-32768);
501
26.1k
                    }
502
522k
                }
503
8.46M
                tmp >>= REAL_BITS;
504
8.46M
                short_sample_buffer[(i*channels)+ch] = (int16_t)tmp;
505
8.46M
            }
506
5.45k
            break;
507
7.15k
        case FAAD_FMT_24BIT:
508
10.5M
            for(i = 0; i < frame_len; i++)
509
10.5M
            {
510
10.5M
                int32_t tmp = get_sample(input, ch, i, hDecoder->downMatrix, hDecoder->upMatrix,
511
10.5M
                    hDecoder->internal_channel);
512
10.5M
                if (tmp >= 0)
513
9.62M
                {
514
9.62M
                    tmp += (1 << (REAL_BITS-9));
515
9.62M
                    tmp >>= (REAL_BITS-8);
516
9.62M
                    if (tmp >= 8388607)
517
15.5k
                    {
518
15.5k
                        tmp = 8388607;
519
15.5k
                    }
520
9.62M
                } else {
521
910k
                    tmp += -(1 << (REAL_BITS-9));
522
910k
                    tmp >>= (REAL_BITS-8);
523
910k
                    if (tmp <= -8388608)
524
14.8k
                    {
525
14.8k
                        tmp = -8388608;
526
14.8k
                    }
527
910k
                }
528
10.5M
                int_sample_buffer[(i*channels)+ch] = (int32_t)tmp;
529
10.5M
            }
530
7.15k
            break;
531
4.75k
        case FAAD_FMT_32BIT:
532
4.75k
            exp = 16 - REAL_BITS;
533
4.75k
            half = 1 << (exp - 1);
534
4.75k
            sat_shift_mask = SAT_SHIFT_MASK(exp);
535
6.75M
            for(i = 0; i < frame_len; i++)
536
6.75M
            {
537
6.75M
                int32_t tmp = get_sample(input, ch, i, hDecoder->downMatrix, hDecoder->upMatrix,
538
6.75M
                    hDecoder->internal_channel);
539
6.75M
                if (tmp >= 0)
540
6.21M
                {
541
6.21M
                    tmp += half;
542
6.21M
                } else {
543
538k
                    tmp += -half;
544
538k
                }
545
6.75M
                tmp = SAT_SHIFT(tmp, exp, sat_shift_mask);
546
6.75M
                int_sample_buffer[(i*channels)+ch] = tmp;
547
6.75M
            }
548
4.75k
            break;
549
3.30k
        case FAAD_FMT_FIXED:
550
5.00M
            for(i = 0; i < frame_len; i++)
551
5.00M
            {
552
5.00M
                real_t tmp = get_sample(input, ch, i, hDecoder->downMatrix, hDecoder->upMatrix,
553
5.00M
                    hDecoder->internal_channel);
554
5.00M
                int_sample_buffer[(i*channels)+ch] = (int32_t)tmp;
555
5.00M
            }
556
3.30k
            break;
557
20.6k
        }
558
20.6k
    }
559
560
3.30k
    return sample_buffer;
561
3.30k
}
562
563
#endif