Coverage Report

Created: 2026-02-26 06:56

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/proc/self/cwd/libfaad/filtbank.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: filtbank.c,v 1.46 2009/01/26 23:51:15 menno Exp $
29
**/
30
31
#include "common.h"
32
#include "structs.h"
33
34
#include <stdlib.h>
35
#ifdef _WIN32_WCE
36
#define assert(x)
37
#else
38
#include <assert.h>
39
#endif
40
41
#include "filtbank.h"
42
#include "syntax.h"
43
#include "kbd_win.h"
44
#include "sine_win.h"
45
#include "mdct.h"
46
47
48
fb_info *filter_bank_init(uint16_t frame_len)
49
26.1k
{
50
26.1k
    uint16_t nshort = frame_len/8;
51
#ifdef LD_DEC
52
    uint16_t frame_len_ld = frame_len/2;
53
#endif
54
55
26.1k
    fb_info *fb = (fb_info*)faad_malloc(sizeof(fb_info));
56
26.1k
    memset(fb, 0, sizeof(fb_info));
57
58
    /* normal */
59
26.1k
    fb->mdct256 = faad_mdct_init(2*nshort);
60
26.1k
    fb->mdct2048 = faad_mdct_init(2*frame_len);
61
#ifdef LD_DEC
62
    /* LD */
63
    fb->mdct1024 = faad_mdct_init(2*frame_len_ld);
64
#endif
65
66
26.1k
#ifdef ALLOW_SMALL_FRAMELENGTH
67
26.1k
    if (frame_len == 1024)
68
20.3k
    {
69
20.3k
#endif
70
20.3k
        fb->long_window[0]  = sine_long_1024;
71
20.3k
        fb->short_window[0] = sine_short_128;
72
20.3k
        fb->long_window[1]  = kbd_long_1024;
73
20.3k
        fb->short_window[1] = kbd_short_128;
74
#ifdef LD_DEC
75
        fb->ld_window[0] = sine_mid_512;
76
        fb->ld_window[1] = ld_mid_512;
77
#endif
78
20.3k
#ifdef ALLOW_SMALL_FRAMELENGTH
79
20.3k
    } else /* (frame_len == 960) */ {
80
5.85k
        fb->long_window[0]  = sine_long_960;
81
5.85k
        fb->short_window[0] = sine_short_120;
82
5.85k
        fb->long_window[1]  = kbd_long_960;
83
5.85k
        fb->short_window[1] = kbd_short_120;
84
#ifdef LD_DEC
85
        fb->ld_window[0] = sine_mid_480;
86
        fb->ld_window[1] = ld_mid_480;
87
#endif
88
5.85k
    }
89
26.1k
#endif
90
91
26.1k
    return fb;
92
26.1k
}
93
94
void filter_bank_end(fb_info *fb)
95
26.6k
{
96
26.6k
    if (fb != NULL)
97
26.1k
    {
98
#ifdef PROFILE
99
        printf("FB:                 %I64d cycles\n", fb->cycles);
100
#endif
101
102
26.1k
        faad_mdct_end(fb->mdct256);
103
26.1k
        faad_mdct_end(fb->mdct2048);
104
#ifdef LD_DEC
105
        faad_mdct_end(fb->mdct1024);
106
#endif
107
108
26.1k
        faad_free(fb);
109
26.1k
    }
110
26.6k
}
111
112
static INLINE void imdct_long(fb_info *fb, real_t *in_data, real_t *out_data, uint16_t len)
113
169k
{
114
#ifdef LD_DEC
115
    mdct_info *mdct = NULL;
116
117
    switch (len)
118
    {
119
    case 2048:
120
    case 1920:
121
        mdct = fb->mdct2048;
122
        break;
123
    case 1024:
124
    case 960:
125
        mdct = fb->mdct1024;
126
        break;
127
    }
128
129
    faad_imdct(mdct, in_data, out_data);
130
#else
131
169k
    (void)len;
132
169k
    faad_imdct(fb->mdct2048, in_data, out_data);
133
169k
#endif
134
169k
}
135
136
137
#ifdef LTP_DEC
138
static INLINE void mdct(fb_info *fb, real_t *in_data, real_t *out_data, uint16_t len)
139
13.5k
{
140
13.5k
    mdct_info *mdct = NULL;
141
142
13.5k
    switch (len)
143
13.5k
    {
144
5.42k
    case 2048:
145
13.0k
    case 1920:
146
13.0k
        mdct = fb->mdct2048;
147
13.0k
        break;
148
0
    case 256:
149
0
    case 240:
150
0
        mdct = fb->mdct256;
151
0
        break;
152
0
#ifdef LD_DEC
153
288
    case 1024:
154
508
    case 960:
155
508
        mdct = fb->mdct1024;
156
508
        break;
157
13.5k
#endif
158
13.5k
    }
159
160
13.5k
    faad_mdct(mdct, in_data, out_data);
161
13.5k
}
162
#endif
163
164
void ifilter_bank(fb_info *fb, uint8_t window_sequence, uint8_t window_shape,
165
                  uint8_t window_shape_prev, real_t *freq_in,
166
                  real_t *time_out, real_t *overlap,
167
                  uint8_t object_type, uint16_t frame_len)
168
1.32M
{
169
1.32M
    int16_t i;
170
1.32M
    ALIGN real_t transf_buf[2*1024] = {0};
171
172
1.32M
    const real_t *window_long = NULL;
173
1.32M
    const real_t *window_long_prev = NULL;
174
1.32M
    const real_t *window_short = NULL;
175
1.32M
    const real_t *window_short_prev = NULL;
176
177
1.32M
    uint16_t nlong = frame_len;
178
1.32M
    uint16_t nshort = frame_len/8;
179
1.32M
    uint16_t trans = nshort/2;
180
181
1.32M
    uint16_t nflat_ls = (nlong-nshort)/2;
182
183
#ifdef PROFILE
184
    int64_t count = faad_get_ts();
185
#endif
186
187
    /* select windows of current frame and previous frame (Sine or KBD) */
188
#ifdef LD_DEC
189
930k
    if (object_type == LD)
190
8.95k
    {
191
8.95k
        window_long       = fb->ld_window[window_shape];
192
8.95k
        window_long_prev  = fb->ld_window[window_shape_prev];
193
921k
    } else {
194
#else
195
        (void)object_type;
196
#endif
197
921k
        window_long       = fb->long_window[window_shape];
198
921k
        window_long_prev  = fb->long_window[window_shape_prev];
199
921k
        window_short      = fb->short_window[window_shape];
200
921k
        window_short_prev = fb->short_window[window_shape_prev];
201
#ifdef LD_DEC
202
    }
203
#endif
204
205
#if 0
206
    for (i = 0; i < 1024; i++)
207
    {
208
        printf("%d\n", freq_in[i]);
209
    }
210
#endif
211
212
#if 0
213
    printf("%d %d\n", window_sequence, window_shape);
214
#endif
215
216
1.32M
    switch (window_sequence)
217
1.32M
    {
218
1.05M
    case ONLY_LONG_SEQUENCE:
219
        /* perform iMDCT */
220
1.05M
        imdct_long(fb, freq_in, transf_buf, 2*nlong);
221
222
        /* add second half output of previous frame to windowed output of current frame */
223
268M
        for (i = 0; i < nlong; i+=4)
224
267M
        {
225
267M
            time_out[i]   = overlap[i]   + MUL_F(transf_buf[i],window_long_prev[i]);
226
267M
            time_out[i+1] = overlap[i+1] + MUL_F(transf_buf[i+1],window_long_prev[i+1]);
227
267M
            time_out[i+2] = overlap[i+2] + MUL_F(transf_buf[i+2],window_long_prev[i+2]);
228
267M
            time_out[i+3] = overlap[i+3] + MUL_F(transf_buf[i+3],window_long_prev[i+3]);
229
267M
        }
230
231
        /* window the second half and save as overlap for next frame */
232
268M
        for (i = 0; i < nlong; i+=4)
233
267M
        {
234
267M
            overlap[i]   = MUL_F(transf_buf[nlong+i],window_long[nlong-1-i]);
235
267M
            overlap[i+1] = MUL_F(transf_buf[nlong+i+1],window_long[nlong-2-i]);
236
267M
            overlap[i+2] = MUL_F(transf_buf[nlong+i+2],window_long[nlong-3-i]);
237
267M
            overlap[i+3] = MUL_F(transf_buf[nlong+i+3],window_long[nlong-4-i]);
238
267M
        }
239
1.05M
        break;
240
241
81.9k
    case LONG_START_SEQUENCE:
242
        /* perform iMDCT */
243
81.9k
        imdct_long(fb, freq_in, transf_buf, 2*nlong);
244
245
        /* add second half output of previous frame to windowed output of current frame */
246
20.4M
        for (i = 0; i < nlong; i+=4)
247
20.4M
        {
248
20.4M
            time_out[i]   = overlap[i]   + MUL_F(transf_buf[i],window_long_prev[i]);
249
20.4M
            time_out[i+1] = overlap[i+1] + MUL_F(transf_buf[i+1],window_long_prev[i+1]);
250
20.4M
            time_out[i+2] = overlap[i+2] + MUL_F(transf_buf[i+2],window_long_prev[i+2]);
251
20.4M
            time_out[i+3] = overlap[i+3] + MUL_F(transf_buf[i+3],window_long_prev[i+3]);
252
20.4M
        }
253
254
        /* window the second half and save as overlap for next frame */
255
        /* construct second half window using padding with 1's and 0's */
256
35.7M
        for (i = 0; i < nflat_ls; i++)
257
35.7M
            overlap[i] = transf_buf[nlong+i];
258
10.2M
        for (i = 0; i < nshort; i++)
259
10.2M
            overlap[nflat_ls+i] = MUL_F(transf_buf[nlong+nflat_ls+i],window_short[nshort-i-1]);
260
35.7M
        for (i = 0; i < nflat_ls; i++)
261
35.7M
            overlap[nflat_ls+nshort+i] = 0;
262
81.9k
        break;
263
264
140k
    case EIGHT_SHORT_SEQUENCE:
265
        /* perform iMDCT for each short block */
266
140k
        faad_imdct(fb->mdct256, freq_in+0*nshort, transf_buf+2*nshort*0);
267
140k
        faad_imdct(fb->mdct256, freq_in+1*nshort, transf_buf+2*nshort*1);
268
140k
        faad_imdct(fb->mdct256, freq_in+2*nshort, transf_buf+2*nshort*2);
269
140k
        faad_imdct(fb->mdct256, freq_in+3*nshort, transf_buf+2*nshort*3);
270
140k
        faad_imdct(fb->mdct256, freq_in+4*nshort, transf_buf+2*nshort*4);
271
140k
        faad_imdct(fb->mdct256, freq_in+5*nshort, transf_buf+2*nshort*5);
272
140k
        faad_imdct(fb->mdct256, freq_in+6*nshort, transf_buf+2*nshort*6);
273
140k
        faad_imdct(fb->mdct256, freq_in+7*nshort, transf_buf+2*nshort*7);
274
275
        /* add second half output of previous frame to windowed output of current frame */
276
62.5M
        for (i = 0; i < nflat_ls; i++)
277
62.3M
            time_out[i] = overlap[i];
278
17.9M
        for(i = 0; i < nshort; i++)
279
17.8M
        {
280
17.8M
            time_out[nflat_ls+         i] = overlap[nflat_ls+         i] + MUL_F(transf_buf[nshort*0+i],window_short_prev[i]);
281
17.8M
            time_out[nflat_ls+1*nshort+i] = overlap[nflat_ls+nshort*1+i] + MUL_F(transf_buf[nshort*1+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*2+i],window_short[i]);
282
17.8M
            time_out[nflat_ls+2*nshort+i] = overlap[nflat_ls+nshort*2+i] + MUL_F(transf_buf[nshort*3+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*4+i],window_short[i]);
283
17.8M
            time_out[nflat_ls+3*nshort+i] = overlap[nflat_ls+nshort*3+i] + MUL_F(transf_buf[nshort*5+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*6+i],window_short[i]);
284
17.8M
            if (i < trans)
285
8.91M
                time_out[nflat_ls+4*nshort+i] = overlap[nflat_ls+nshort*4+i] + MUL_F(transf_buf[nshort*7+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*8+i],window_short[i]);
286
17.8M
        }
287
288
        /* window the second half and save as overlap for next frame */
289
17.9M
        for(i = 0; i < nshort; i++)
290
17.8M
        {
291
17.8M
            if (i >= trans)
292
8.91M
                overlap[nflat_ls+4*nshort+i-nlong] = MUL_F(transf_buf[nshort*7+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*8+i],window_short[i]);
293
17.8M
            overlap[nflat_ls+5*nshort+i-nlong] = MUL_F(transf_buf[nshort*9+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*10+i],window_short[i]);
294
17.8M
            overlap[nflat_ls+6*nshort+i-nlong] = MUL_F(transf_buf[nshort*11+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*12+i],window_short[i]);
295
17.8M
            overlap[nflat_ls+7*nshort+i-nlong] = MUL_F(transf_buf[nshort*13+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*14+i],window_short[i]);
296
17.8M
            overlap[nflat_ls+8*nshort+i-nlong] = MUL_F(transf_buf[nshort*15+i],window_short[nshort-1-i]);
297
17.8M
        }
298
62.5M
        for (i = 0; i < nflat_ls; i++)
299
62.3M
            overlap[nflat_ls+nshort+i] = 0;
300
140k
        break;
301
302
43.6k
    case LONG_STOP_SEQUENCE:
303
        /* perform iMDCT */
304
43.6k
        imdct_long(fb, freq_in, transf_buf, 2*nlong);
305
306
        /* add second half output of previous frame to windowed output of current frame */
307
        /* construct first half window using padding with 1's and 0's */
308
19.3M
        for (i = 0; i < nflat_ls; i++)
309
19.2M
            time_out[i] = overlap[i];
310
5.55M
        for (i = 0; i < nshort; i++)
311
5.50M
            time_out[nflat_ls+i] = overlap[nflat_ls+i] + MUL_F(transf_buf[nflat_ls+i],window_short_prev[i]);
312
19.3M
        for (i = 0; i < nflat_ls; i++)
313
19.2M
            time_out[nflat_ls+nshort+i] = overlap[nflat_ls+nshort+i] + transf_buf[nflat_ls+nshort+i];
314
315
        /* window the second half and save as overlap for next frame */
316
44.0M
        for (i = 0; i < nlong; i++)
317
44.0M
            overlap[i] = MUL_F(transf_buf[nlong+i],window_long[nlong-1-i]);
318
43.6k
    break;
319
1.32M
    }
320
321
#if 0
322
    for (i = 0; i < 1024; i++)
323
    {
324
        printf("%d\n", time_out[i]);
325
        //printf("0x%.8X\n", time_out[i]);
326
    }
327
#endif
328
329
330
#ifdef PROFILE
331
    count = faad_get_ts() - count;
332
    fb->cycles += count;
333
#endif
334
1.32M
}
ifilter_bank
Line
Count
Source
168
197k
{
169
197k
    int16_t i;
170
197k
    ALIGN real_t transf_buf[2*1024] = {0};
171
172
197k
    const real_t *window_long = NULL;
173
197k
    const real_t *window_long_prev = NULL;
174
197k
    const real_t *window_short = NULL;
175
197k
    const real_t *window_short_prev = NULL;
176
177
197k
    uint16_t nlong = frame_len;
178
197k
    uint16_t nshort = frame_len/8;
179
197k
    uint16_t trans = nshort/2;
180
181
197k
    uint16_t nflat_ls = (nlong-nshort)/2;
182
183
#ifdef PROFILE
184
    int64_t count = faad_get_ts();
185
#endif
186
187
    /* select windows of current frame and previous frame (Sine or KBD) */
188
#ifdef LD_DEC
189
    if (object_type == LD)
190
    {
191
        window_long       = fb->ld_window[window_shape];
192
        window_long_prev  = fb->ld_window[window_shape_prev];
193
    } else {
194
#else
195
197k
        (void)object_type;
196
197k
#endif
197
197k
        window_long       = fb->long_window[window_shape];
198
197k
        window_long_prev  = fb->long_window[window_shape_prev];
199
197k
        window_short      = fb->short_window[window_shape];
200
197k
        window_short_prev = fb->short_window[window_shape_prev];
201
#ifdef LD_DEC
202
    }
203
#endif
204
205
#if 0
206
    for (i = 0; i < 1024; i++)
207
    {
208
        printf("%d\n", freq_in[i]);
209
    }
210
#endif
211
212
#if 0
213
    printf("%d %d\n", window_sequence, window_shape);
214
#endif
215
216
197k
    switch (window_sequence)
217
197k
    {
218
149k
    case ONLY_LONG_SEQUENCE:
219
        /* perform iMDCT */
220
149k
        imdct_long(fb, freq_in, transf_buf, 2*nlong);
221
222
        /* add second half output of previous frame to windowed output of current frame */
223
37.8M
        for (i = 0; i < nlong; i+=4)
224
37.6M
        {
225
37.6M
            time_out[i]   = overlap[i]   + MUL_F(transf_buf[i],window_long_prev[i]);
226
37.6M
            time_out[i+1] = overlap[i+1] + MUL_F(transf_buf[i+1],window_long_prev[i+1]);
227
37.6M
            time_out[i+2] = overlap[i+2] + MUL_F(transf_buf[i+2],window_long_prev[i+2]);
228
37.6M
            time_out[i+3] = overlap[i+3] + MUL_F(transf_buf[i+3],window_long_prev[i+3]);
229
37.6M
        }
230
231
        /* window the second half and save as overlap for next frame */
232
37.8M
        for (i = 0; i < nlong; i+=4)
233
37.6M
        {
234
37.6M
            overlap[i]   = MUL_F(transf_buf[nlong+i],window_long[nlong-1-i]);
235
37.6M
            overlap[i+1] = MUL_F(transf_buf[nlong+i+1],window_long[nlong-2-i]);
236
37.6M
            overlap[i+2] = MUL_F(transf_buf[nlong+i+2],window_long[nlong-3-i]);
237
37.6M
            overlap[i+3] = MUL_F(transf_buf[nlong+i+3],window_long[nlong-4-i]);
238
37.6M
        }
239
149k
        break;
240
241
10.4k
    case LONG_START_SEQUENCE:
242
        /* perform iMDCT */
243
10.4k
        imdct_long(fb, freq_in, transf_buf, 2*nlong);
244
245
        /* add second half output of previous frame to windowed output of current frame */
246
2.59M
        for (i = 0; i < nlong; i+=4)
247
2.58M
        {
248
2.58M
            time_out[i]   = overlap[i]   + MUL_F(transf_buf[i],window_long_prev[i]);
249
2.58M
            time_out[i+1] = overlap[i+1] + MUL_F(transf_buf[i+1],window_long_prev[i+1]);
250
2.58M
            time_out[i+2] = overlap[i+2] + MUL_F(transf_buf[i+2],window_long_prev[i+2]);
251
2.58M
            time_out[i+3] = overlap[i+3] + MUL_F(transf_buf[i+3],window_long_prev[i+3]);
252
2.58M
        }
253
254
        /* window the second half and save as overlap for next frame */
255
        /* construct second half window using padding with 1's and 0's */
256
4.53M
        for (i = 0; i < nflat_ls; i++)
257
4.52M
            overlap[i] = transf_buf[nlong+i];
258
1.30M
        for (i = 0; i < nshort; i++)
259
1.29M
            overlap[nflat_ls+i] = MUL_F(transf_buf[nlong+nflat_ls+i],window_short[nshort-i-1]);
260
4.53M
        for (i = 0; i < nflat_ls; i++)
261
4.52M
            overlap[nflat_ls+nshort+i] = 0;
262
10.4k
        break;
263
264
27.8k
    case EIGHT_SHORT_SEQUENCE:
265
        /* perform iMDCT for each short block */
266
27.8k
        faad_imdct(fb->mdct256, freq_in+0*nshort, transf_buf+2*nshort*0);
267
27.8k
        faad_imdct(fb->mdct256, freq_in+1*nshort, transf_buf+2*nshort*1);
268
27.8k
        faad_imdct(fb->mdct256, freq_in+2*nshort, transf_buf+2*nshort*2);
269
27.8k
        faad_imdct(fb->mdct256, freq_in+3*nshort, transf_buf+2*nshort*3);
270
27.8k
        faad_imdct(fb->mdct256, freq_in+4*nshort, transf_buf+2*nshort*4);
271
27.8k
        faad_imdct(fb->mdct256, freq_in+5*nshort, transf_buf+2*nshort*5);
272
27.8k
        faad_imdct(fb->mdct256, freq_in+6*nshort, transf_buf+2*nshort*6);
273
27.8k
        faad_imdct(fb->mdct256, freq_in+7*nshort, transf_buf+2*nshort*7);
274
275
        /* add second half output of previous frame to windowed output of current frame */
276
12.3M
        for (i = 0; i < nflat_ls; i++)
277
12.2M
            time_out[i] = overlap[i];
278
3.54M
        for(i = 0; i < nshort; i++)
279
3.51M
        {
280
3.51M
            time_out[nflat_ls+         i] = overlap[nflat_ls+         i] + MUL_F(transf_buf[nshort*0+i],window_short_prev[i]);
281
3.51M
            time_out[nflat_ls+1*nshort+i] = overlap[nflat_ls+nshort*1+i] + MUL_F(transf_buf[nshort*1+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*2+i],window_short[i]);
282
3.51M
            time_out[nflat_ls+2*nshort+i] = overlap[nflat_ls+nshort*2+i] + MUL_F(transf_buf[nshort*3+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*4+i],window_short[i]);
283
3.51M
            time_out[nflat_ls+3*nshort+i] = overlap[nflat_ls+nshort*3+i] + MUL_F(transf_buf[nshort*5+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*6+i],window_short[i]);
284
3.51M
            if (i < trans)
285
1.75M
                time_out[nflat_ls+4*nshort+i] = overlap[nflat_ls+nshort*4+i] + MUL_F(transf_buf[nshort*7+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*8+i],window_short[i]);
286
3.51M
        }
287
288
        /* window the second half and save as overlap for next frame */
289
3.54M
        for(i = 0; i < nshort; i++)
290
3.51M
        {
291
3.51M
            if (i >= trans)
292
1.75M
                overlap[nflat_ls+4*nshort+i-nlong] = MUL_F(transf_buf[nshort*7+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*8+i],window_short[i]);
293
3.51M
            overlap[nflat_ls+5*nshort+i-nlong] = MUL_F(transf_buf[nshort*9+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*10+i],window_short[i]);
294
3.51M
            overlap[nflat_ls+6*nshort+i-nlong] = MUL_F(transf_buf[nshort*11+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*12+i],window_short[i]);
295
3.51M
            overlap[nflat_ls+7*nshort+i-nlong] = MUL_F(transf_buf[nshort*13+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*14+i],window_short[i]);
296
3.51M
            overlap[nflat_ls+8*nshort+i-nlong] = MUL_F(transf_buf[nshort*15+i],window_short[nshort-1-i]);
297
3.51M
        }
298
12.3M
        for (i = 0; i < nflat_ls; i++)
299
12.2M
            overlap[nflat_ls+nshort+i] = 0;
300
27.8k
        break;
301
302
10.2k
    case LONG_STOP_SEQUENCE:
303
        /* perform iMDCT */
304
10.2k
        imdct_long(fb, freq_in, transf_buf, 2*nlong);
305
306
        /* add second half output of previous frame to windowed output of current frame */
307
        /* construct first half window using padding with 1's and 0's */
308
4.56M
        for (i = 0; i < nflat_ls; i++)
309
4.55M
            time_out[i] = overlap[i];
310
1.31M
        for (i = 0; i < nshort; i++)
311
1.30M
            time_out[nflat_ls+i] = overlap[nflat_ls+i] + MUL_F(transf_buf[nflat_ls+i],window_short_prev[i]);
312
4.56M
        for (i = 0; i < nflat_ls; i++)
313
4.55M
            time_out[nflat_ls+nshort+i] = overlap[nflat_ls+nshort+i] + transf_buf[nflat_ls+nshort+i];
314
315
        /* window the second half and save as overlap for next frame */
316
10.4M
        for (i = 0; i < nlong; i++)
317
10.4M
            overlap[i] = MUL_F(transf_buf[nlong+i],window_long[nlong-1-i]);
318
10.2k
    break;
319
197k
    }
320
321
#if 0
322
    for (i = 0; i < 1024; i++)
323
    {
324
        printf("%d\n", time_out[i]);
325
        //printf("0x%.8X\n", time_out[i]);
326
    }
327
#endif
328
329
330
#ifdef PROFILE
331
    count = faad_get_ts() - count;
332
    fb->cycles += count;
333
#endif
334
197k
}
ifilter_bank
Line
Count
Source
168
465k
{
169
465k
    int16_t i;
170
465k
    ALIGN real_t transf_buf[2*1024] = {0};
171
172
465k
    const real_t *window_long = NULL;
173
465k
    const real_t *window_long_prev = NULL;
174
465k
    const real_t *window_short = NULL;
175
465k
    const real_t *window_short_prev = NULL;
176
177
465k
    uint16_t nlong = frame_len;
178
465k
    uint16_t nshort = frame_len/8;
179
465k
    uint16_t trans = nshort/2;
180
181
465k
    uint16_t nflat_ls = (nlong-nshort)/2;
182
183
#ifdef PROFILE
184
    int64_t count = faad_get_ts();
185
#endif
186
187
    /* select windows of current frame and previous frame (Sine or KBD) */
188
465k
#ifdef LD_DEC
189
465k
    if (object_type == LD)
190
4.47k
    {
191
4.47k
        window_long       = fb->ld_window[window_shape];
192
4.47k
        window_long_prev  = fb->ld_window[window_shape_prev];
193
460k
    } else {
194
#else
195
        (void)object_type;
196
#endif
197
460k
        window_long       = fb->long_window[window_shape];
198
460k
        window_long_prev  = fb->long_window[window_shape_prev];
199
460k
        window_short      = fb->short_window[window_shape];
200
460k
        window_short_prev = fb->short_window[window_shape_prev];
201
460k
#ifdef LD_DEC
202
460k
    }
203
465k
#endif
204
205
#if 0
206
    for (i = 0; i < 1024; i++)
207
    {
208
        printf("%d\n", freq_in[i]);
209
    }
210
#endif
211
212
#if 0
213
    printf("%d %d\n", window_sequence, window_shape);
214
#endif
215
216
465k
    switch (window_sequence)
217
465k
    {
218
380k
    case ONLY_LONG_SEQUENCE:
219
        /* perform iMDCT */
220
380k
        imdct_long(fb, freq_in, transf_buf, 2*nlong);
221
222
        /* add second half output of previous frame to windowed output of current frame */
223
96.4M
        for (i = 0; i < nlong; i+=4)
224
96.0M
        {
225
96.0M
            time_out[i]   = overlap[i]   + MUL_F(transf_buf[i],window_long_prev[i]);
226
96.0M
            time_out[i+1] = overlap[i+1] + MUL_F(transf_buf[i+1],window_long_prev[i+1]);
227
96.0M
            time_out[i+2] = overlap[i+2] + MUL_F(transf_buf[i+2],window_long_prev[i+2]);
228
96.0M
            time_out[i+3] = overlap[i+3] + MUL_F(transf_buf[i+3],window_long_prev[i+3]);
229
96.0M
        }
230
231
        /* window the second half and save as overlap for next frame */
232
96.4M
        for (i = 0; i < nlong; i+=4)
233
96.0M
        {
234
96.0M
            overlap[i]   = MUL_F(transf_buf[nlong+i],window_long[nlong-1-i]);
235
96.0M
            overlap[i+1] = MUL_F(transf_buf[nlong+i+1],window_long[nlong-2-i]);
236
96.0M
            overlap[i+2] = MUL_F(transf_buf[nlong+i+2],window_long[nlong-3-i]);
237
96.0M
            overlap[i+3] = MUL_F(transf_buf[nlong+i+3],window_long[nlong-4-i]);
238
96.0M
        }
239
380k
        break;
240
241
30.5k
    case LONG_START_SEQUENCE:
242
        /* perform iMDCT */
243
30.5k
        imdct_long(fb, freq_in, transf_buf, 2*nlong);
244
245
        /* add second half output of previous frame to windowed output of current frame */
246
7.64M
        for (i = 0; i < nlong; i+=4)
247
7.61M
        {
248
7.61M
            time_out[i]   = overlap[i]   + MUL_F(transf_buf[i],window_long_prev[i]);
249
7.61M
            time_out[i+1] = overlap[i+1] + MUL_F(transf_buf[i+1],window_long_prev[i+1]);
250
7.61M
            time_out[i+2] = overlap[i+2] + MUL_F(transf_buf[i+2],window_long_prev[i+2]);
251
7.61M
            time_out[i+3] = overlap[i+3] + MUL_F(transf_buf[i+3],window_long_prev[i+3]);
252
7.61M
        }
253
254
        /* window the second half and save as overlap for next frame */
255
        /* construct second half window using padding with 1's and 0's */
256
13.3M
        for (i = 0; i < nflat_ls; i++)
257
13.3M
            overlap[i] = transf_buf[nlong+i];
258
3.84M
        for (i = 0; i < nshort; i++)
259
3.80M
            overlap[nflat_ls+i] = MUL_F(transf_buf[nlong+nflat_ls+i],window_short[nshort-i-1]);
260
13.3M
        for (i = 0; i < nflat_ls; i++)
261
13.3M
            overlap[nflat_ls+nshort+i] = 0;
262
30.5k
        break;
263
264
42.6k
    case EIGHT_SHORT_SEQUENCE:
265
        /* perform iMDCT for each short block */
266
42.6k
        faad_imdct(fb->mdct256, freq_in+0*nshort, transf_buf+2*nshort*0);
267
42.6k
        faad_imdct(fb->mdct256, freq_in+1*nshort, transf_buf+2*nshort*1);
268
42.6k
        faad_imdct(fb->mdct256, freq_in+2*nshort, transf_buf+2*nshort*2);
269
42.6k
        faad_imdct(fb->mdct256, freq_in+3*nshort, transf_buf+2*nshort*3);
270
42.6k
        faad_imdct(fb->mdct256, freq_in+4*nshort, transf_buf+2*nshort*4);
271
42.6k
        faad_imdct(fb->mdct256, freq_in+5*nshort, transf_buf+2*nshort*5);
272
42.6k
        faad_imdct(fb->mdct256, freq_in+6*nshort, transf_buf+2*nshort*6);
273
42.6k
        faad_imdct(fb->mdct256, freq_in+7*nshort, transf_buf+2*nshort*7);
274
275
        /* add second half output of previous frame to windowed output of current frame */
276
18.9M
        for (i = 0; i < nflat_ls; i++)
277
18.8M
            time_out[i] = overlap[i];
278
5.44M
        for(i = 0; i < nshort; i++)
279
5.39M
        {
280
5.39M
            time_out[nflat_ls+         i] = overlap[nflat_ls+         i] + MUL_F(transf_buf[nshort*0+i],window_short_prev[i]);
281
5.39M
            time_out[nflat_ls+1*nshort+i] = overlap[nflat_ls+nshort*1+i] + MUL_F(transf_buf[nshort*1+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*2+i],window_short[i]);
282
5.39M
            time_out[nflat_ls+2*nshort+i] = overlap[nflat_ls+nshort*2+i] + MUL_F(transf_buf[nshort*3+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*4+i],window_short[i]);
283
5.39M
            time_out[nflat_ls+3*nshort+i] = overlap[nflat_ls+nshort*3+i] + MUL_F(transf_buf[nshort*5+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*6+i],window_short[i]);
284
5.39M
            if (i < trans)
285
2.69M
                time_out[nflat_ls+4*nshort+i] = overlap[nflat_ls+nshort*4+i] + MUL_F(transf_buf[nshort*7+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*8+i],window_short[i]);
286
5.39M
        }
287
288
        /* window the second half and save as overlap for next frame */
289
5.44M
        for(i = 0; i < nshort; i++)
290
5.39M
        {
291
5.39M
            if (i >= trans)
292
2.69M
                overlap[nflat_ls+4*nshort+i-nlong] = MUL_F(transf_buf[nshort*7+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*8+i],window_short[i]);
293
5.39M
            overlap[nflat_ls+5*nshort+i-nlong] = MUL_F(transf_buf[nshort*9+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*10+i],window_short[i]);
294
5.39M
            overlap[nflat_ls+6*nshort+i-nlong] = MUL_F(transf_buf[nshort*11+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*12+i],window_short[i]);
295
5.39M
            overlap[nflat_ls+7*nshort+i-nlong] = MUL_F(transf_buf[nshort*13+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*14+i],window_short[i]);
296
5.39M
            overlap[nflat_ls+8*nshort+i-nlong] = MUL_F(transf_buf[nshort*15+i],window_short[nshort-1-i]);
297
5.39M
        }
298
18.9M
        for (i = 0; i < nflat_ls; i++)
299
18.8M
            overlap[nflat_ls+nshort+i] = 0;
300
42.6k
        break;
301
302
11.5k
    case LONG_STOP_SEQUENCE:
303
        /* perform iMDCT */
304
11.5k
        imdct_long(fb, freq_in, transf_buf, 2*nlong);
305
306
        /* add second half output of previous frame to windowed output of current frame */
307
        /* construct first half window using padding with 1's and 0's */
308
5.09M
        for (i = 0; i < nflat_ls; i++)
309
5.08M
            time_out[i] = overlap[i];
310
1.46M
        for (i = 0; i < nshort; i++)
311
1.45M
            time_out[nflat_ls+i] = overlap[nflat_ls+i] + MUL_F(transf_buf[nflat_ls+i],window_short_prev[i]);
312
5.09M
        for (i = 0; i < nflat_ls; i++)
313
5.08M
            time_out[nflat_ls+nshort+i] = overlap[nflat_ls+nshort+i] + transf_buf[nflat_ls+nshort+i];
314
315
        /* window the second half and save as overlap for next frame */
316
11.6M
        for (i = 0; i < nlong; i++)
317
11.6M
            overlap[i] = MUL_F(transf_buf[nlong+i],window_long[nlong-1-i]);
318
11.5k
    break;
319
465k
    }
320
321
#if 0
322
    for (i = 0; i < 1024; i++)
323
    {
324
        printf("%d\n", time_out[i]);
325
        //printf("0x%.8X\n", time_out[i]);
326
    }
327
#endif
328
329
330
#ifdef PROFILE
331
    count = faad_get_ts() - count;
332
    fb->cycles += count;
333
#endif
334
465k
}
ifilter_bank
Line
Count
Source
168
465k
{
169
465k
    int16_t i;
170
465k
    ALIGN real_t transf_buf[2*1024] = {0};
171
172
465k
    const real_t *window_long = NULL;
173
465k
    const real_t *window_long_prev = NULL;
174
465k
    const real_t *window_short = NULL;
175
465k
    const real_t *window_short_prev = NULL;
176
177
465k
    uint16_t nlong = frame_len;
178
465k
    uint16_t nshort = frame_len/8;
179
465k
    uint16_t trans = nshort/2;
180
181
465k
    uint16_t nflat_ls = (nlong-nshort)/2;
182
183
#ifdef PROFILE
184
    int64_t count = faad_get_ts();
185
#endif
186
187
    /* select windows of current frame and previous frame (Sine or KBD) */
188
465k
#ifdef LD_DEC
189
465k
    if (object_type == LD)
190
4.47k
    {
191
4.47k
        window_long       = fb->ld_window[window_shape];
192
4.47k
        window_long_prev  = fb->ld_window[window_shape_prev];
193
460k
    } else {
194
#else
195
        (void)object_type;
196
#endif
197
460k
        window_long       = fb->long_window[window_shape];
198
460k
        window_long_prev  = fb->long_window[window_shape_prev];
199
460k
        window_short      = fb->short_window[window_shape];
200
460k
        window_short_prev = fb->short_window[window_shape_prev];
201
460k
#ifdef LD_DEC
202
460k
    }
203
465k
#endif
204
205
#if 0
206
    for (i = 0; i < 1024; i++)
207
    {
208
        printf("%d\n", freq_in[i]);
209
    }
210
#endif
211
212
#if 0
213
    printf("%d %d\n", window_sequence, window_shape);
214
#endif
215
216
465k
    switch (window_sequence)
217
465k
    {
218
380k
    case ONLY_LONG_SEQUENCE:
219
        /* perform iMDCT */
220
380k
        imdct_long(fb, freq_in, transf_buf, 2*nlong);
221
222
        /* add second half output of previous frame to windowed output of current frame */
223
96.4M
        for (i = 0; i < nlong; i+=4)
224
96.0M
        {
225
96.0M
            time_out[i]   = overlap[i]   + MUL_F(transf_buf[i],window_long_prev[i]);
226
96.0M
            time_out[i+1] = overlap[i+1] + MUL_F(transf_buf[i+1],window_long_prev[i+1]);
227
96.0M
            time_out[i+2] = overlap[i+2] + MUL_F(transf_buf[i+2],window_long_prev[i+2]);
228
96.0M
            time_out[i+3] = overlap[i+3] + MUL_F(transf_buf[i+3],window_long_prev[i+3]);
229
96.0M
        }
230
231
        /* window the second half and save as overlap for next frame */
232
96.4M
        for (i = 0; i < nlong; i+=4)
233
96.0M
        {
234
96.0M
            overlap[i]   = MUL_F(transf_buf[nlong+i],window_long[nlong-1-i]);
235
96.0M
            overlap[i+1] = MUL_F(transf_buf[nlong+i+1],window_long[nlong-2-i]);
236
96.0M
            overlap[i+2] = MUL_F(transf_buf[nlong+i+2],window_long[nlong-3-i]);
237
96.0M
            overlap[i+3] = MUL_F(transf_buf[nlong+i+3],window_long[nlong-4-i]);
238
96.0M
        }
239
380k
        break;
240
241
30.5k
    case LONG_START_SEQUENCE:
242
        /* perform iMDCT */
243
30.5k
        imdct_long(fb, freq_in, transf_buf, 2*nlong);
244
245
        /* add second half output of previous frame to windowed output of current frame */
246
7.64M
        for (i = 0; i < nlong; i+=4)
247
7.61M
        {
248
7.61M
            time_out[i]   = overlap[i]   + MUL_F(transf_buf[i],window_long_prev[i]);
249
7.61M
            time_out[i+1] = overlap[i+1] + MUL_F(transf_buf[i+1],window_long_prev[i+1]);
250
7.61M
            time_out[i+2] = overlap[i+2] + MUL_F(transf_buf[i+2],window_long_prev[i+2]);
251
7.61M
            time_out[i+3] = overlap[i+3] + MUL_F(transf_buf[i+3],window_long_prev[i+3]);
252
7.61M
        }
253
254
        /* window the second half and save as overlap for next frame */
255
        /* construct second half window using padding with 1's and 0's */
256
13.3M
        for (i = 0; i < nflat_ls; i++)
257
13.3M
            overlap[i] = transf_buf[nlong+i];
258
3.84M
        for (i = 0; i < nshort; i++)
259
3.80M
            overlap[nflat_ls+i] = MUL_F(transf_buf[nlong+nflat_ls+i],window_short[nshort-i-1]);
260
13.3M
        for (i = 0; i < nflat_ls; i++)
261
13.3M
            overlap[nflat_ls+nshort+i] = 0;
262
30.5k
        break;
263
264
42.6k
    case EIGHT_SHORT_SEQUENCE:
265
        /* perform iMDCT for each short block */
266
42.6k
        faad_imdct(fb->mdct256, freq_in+0*nshort, transf_buf+2*nshort*0);
267
42.6k
        faad_imdct(fb->mdct256, freq_in+1*nshort, transf_buf+2*nshort*1);
268
42.6k
        faad_imdct(fb->mdct256, freq_in+2*nshort, transf_buf+2*nshort*2);
269
42.6k
        faad_imdct(fb->mdct256, freq_in+3*nshort, transf_buf+2*nshort*3);
270
42.6k
        faad_imdct(fb->mdct256, freq_in+4*nshort, transf_buf+2*nshort*4);
271
42.6k
        faad_imdct(fb->mdct256, freq_in+5*nshort, transf_buf+2*nshort*5);
272
42.6k
        faad_imdct(fb->mdct256, freq_in+6*nshort, transf_buf+2*nshort*6);
273
42.6k
        faad_imdct(fb->mdct256, freq_in+7*nshort, transf_buf+2*nshort*7);
274
275
        /* add second half output of previous frame to windowed output of current frame */
276
18.9M
        for (i = 0; i < nflat_ls; i++)
277
18.8M
            time_out[i] = overlap[i];
278
5.44M
        for(i = 0; i < nshort; i++)
279
5.39M
        {
280
5.39M
            time_out[nflat_ls+         i] = overlap[nflat_ls+         i] + MUL_F(transf_buf[nshort*0+i],window_short_prev[i]);
281
5.39M
            time_out[nflat_ls+1*nshort+i] = overlap[nflat_ls+nshort*1+i] + MUL_F(transf_buf[nshort*1+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*2+i],window_short[i]);
282
5.39M
            time_out[nflat_ls+2*nshort+i] = overlap[nflat_ls+nshort*2+i] + MUL_F(transf_buf[nshort*3+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*4+i],window_short[i]);
283
5.39M
            time_out[nflat_ls+3*nshort+i] = overlap[nflat_ls+nshort*3+i] + MUL_F(transf_buf[nshort*5+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*6+i],window_short[i]);
284
5.39M
            if (i < trans)
285
2.69M
                time_out[nflat_ls+4*nshort+i] = overlap[nflat_ls+nshort*4+i] + MUL_F(transf_buf[nshort*7+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*8+i],window_short[i]);
286
5.39M
        }
287
288
        /* window the second half and save as overlap for next frame */
289
5.44M
        for(i = 0; i < nshort; i++)
290
5.39M
        {
291
5.39M
            if (i >= trans)
292
2.69M
                overlap[nflat_ls+4*nshort+i-nlong] = MUL_F(transf_buf[nshort*7+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*8+i],window_short[i]);
293
5.39M
            overlap[nflat_ls+5*nshort+i-nlong] = MUL_F(transf_buf[nshort*9+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*10+i],window_short[i]);
294
5.39M
            overlap[nflat_ls+6*nshort+i-nlong] = MUL_F(transf_buf[nshort*11+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*12+i],window_short[i]);
295
5.39M
            overlap[nflat_ls+7*nshort+i-nlong] = MUL_F(transf_buf[nshort*13+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*14+i],window_short[i]);
296
5.39M
            overlap[nflat_ls+8*nshort+i-nlong] = MUL_F(transf_buf[nshort*15+i],window_short[nshort-1-i]);
297
5.39M
        }
298
18.9M
        for (i = 0; i < nflat_ls; i++)
299
18.8M
            overlap[nflat_ls+nshort+i] = 0;
300
42.6k
        break;
301
302
11.5k
    case LONG_STOP_SEQUENCE:
303
        /* perform iMDCT */
304
11.5k
        imdct_long(fb, freq_in, transf_buf, 2*nlong);
305
306
        /* add second half output of previous frame to windowed output of current frame */
307
        /* construct first half window using padding with 1's and 0's */
308
5.09M
        for (i = 0; i < nflat_ls; i++)
309
5.08M
            time_out[i] = overlap[i];
310
1.46M
        for (i = 0; i < nshort; i++)
311
1.45M
            time_out[nflat_ls+i] = overlap[nflat_ls+i] + MUL_F(transf_buf[nflat_ls+i],window_short_prev[i]);
312
5.09M
        for (i = 0; i < nflat_ls; i++)
313
5.08M
            time_out[nflat_ls+nshort+i] = overlap[nflat_ls+nshort+i] + transf_buf[nflat_ls+nshort+i];
314
315
        /* window the second half and save as overlap for next frame */
316
11.6M
        for (i = 0; i < nlong; i++)
317
11.6M
            overlap[i] = MUL_F(transf_buf[nlong+i],window_long[nlong-1-i]);
318
11.5k
    break;
319
465k
    }
320
321
#if 0
322
    for (i = 0; i < 1024; i++)
323
    {
324
        printf("%d\n", time_out[i]);
325
        //printf("0x%.8X\n", time_out[i]);
326
    }
327
#endif
328
329
330
#ifdef PROFILE
331
    count = faad_get_ts() - count;
332
    fb->cycles += count;
333
#endif
334
465k
}
ifilter_bank
Line
Count
Source
168
197k
{
169
197k
    int16_t i;
170
197k
    ALIGN real_t transf_buf[2*1024] = {0};
171
172
197k
    const real_t *window_long = NULL;
173
197k
    const real_t *window_long_prev = NULL;
174
197k
    const real_t *window_short = NULL;
175
197k
    const real_t *window_short_prev = NULL;
176
177
197k
    uint16_t nlong = frame_len;
178
197k
    uint16_t nshort = frame_len/8;
179
197k
    uint16_t trans = nshort/2;
180
181
197k
    uint16_t nflat_ls = (nlong-nshort)/2;
182
183
#ifdef PROFILE
184
    int64_t count = faad_get_ts();
185
#endif
186
187
    /* select windows of current frame and previous frame (Sine or KBD) */
188
#ifdef LD_DEC
189
    if (object_type == LD)
190
    {
191
        window_long       = fb->ld_window[window_shape];
192
        window_long_prev  = fb->ld_window[window_shape_prev];
193
    } else {
194
#else
195
197k
        (void)object_type;
196
197k
#endif
197
197k
        window_long       = fb->long_window[window_shape];
198
197k
        window_long_prev  = fb->long_window[window_shape_prev];
199
197k
        window_short      = fb->short_window[window_shape];
200
197k
        window_short_prev = fb->short_window[window_shape_prev];
201
#ifdef LD_DEC
202
    }
203
#endif
204
205
#if 0
206
    for (i = 0; i < 1024; i++)
207
    {
208
        printf("%d\n", freq_in[i]);
209
    }
210
#endif
211
212
#if 0
213
    printf("%d %d\n", window_sequence, window_shape);
214
#endif
215
216
197k
    switch (window_sequence)
217
197k
    {
218
149k
    case ONLY_LONG_SEQUENCE:
219
        /* perform iMDCT */
220
149k
        imdct_long(fb, freq_in, transf_buf, 2*nlong);
221
222
        /* add second half output of previous frame to windowed output of current frame */
223
37.8M
        for (i = 0; i < nlong; i+=4)
224
37.6M
        {
225
37.6M
            time_out[i]   = overlap[i]   + MUL_F(transf_buf[i],window_long_prev[i]);
226
37.6M
            time_out[i+1] = overlap[i+1] + MUL_F(transf_buf[i+1],window_long_prev[i+1]);
227
37.6M
            time_out[i+2] = overlap[i+2] + MUL_F(transf_buf[i+2],window_long_prev[i+2]);
228
37.6M
            time_out[i+3] = overlap[i+3] + MUL_F(transf_buf[i+3],window_long_prev[i+3]);
229
37.6M
        }
230
231
        /* window the second half and save as overlap for next frame */
232
37.8M
        for (i = 0; i < nlong; i+=4)
233
37.6M
        {
234
37.6M
            overlap[i]   = MUL_F(transf_buf[nlong+i],window_long[nlong-1-i]);
235
37.6M
            overlap[i+1] = MUL_F(transf_buf[nlong+i+1],window_long[nlong-2-i]);
236
37.6M
            overlap[i+2] = MUL_F(transf_buf[nlong+i+2],window_long[nlong-3-i]);
237
37.6M
            overlap[i+3] = MUL_F(transf_buf[nlong+i+3],window_long[nlong-4-i]);
238
37.6M
        }
239
149k
        break;
240
241
10.4k
    case LONG_START_SEQUENCE:
242
        /* perform iMDCT */
243
10.4k
        imdct_long(fb, freq_in, transf_buf, 2*nlong);
244
245
        /* add second half output of previous frame to windowed output of current frame */
246
2.59M
        for (i = 0; i < nlong; i+=4)
247
2.58M
        {
248
2.58M
            time_out[i]   = overlap[i]   + MUL_F(transf_buf[i],window_long_prev[i]);
249
2.58M
            time_out[i+1] = overlap[i+1] + MUL_F(transf_buf[i+1],window_long_prev[i+1]);
250
2.58M
            time_out[i+2] = overlap[i+2] + MUL_F(transf_buf[i+2],window_long_prev[i+2]);
251
2.58M
            time_out[i+3] = overlap[i+3] + MUL_F(transf_buf[i+3],window_long_prev[i+3]);
252
2.58M
        }
253
254
        /* window the second half and save as overlap for next frame */
255
        /* construct second half window using padding with 1's and 0's */
256
4.53M
        for (i = 0; i < nflat_ls; i++)
257
4.52M
            overlap[i] = transf_buf[nlong+i];
258
1.30M
        for (i = 0; i < nshort; i++)
259
1.29M
            overlap[nflat_ls+i] = MUL_F(transf_buf[nlong+nflat_ls+i],window_short[nshort-i-1]);
260
4.53M
        for (i = 0; i < nflat_ls; i++)
261
4.52M
            overlap[nflat_ls+nshort+i] = 0;
262
10.4k
        break;
263
264
27.8k
    case EIGHT_SHORT_SEQUENCE:
265
        /* perform iMDCT for each short block */
266
27.8k
        faad_imdct(fb->mdct256, freq_in+0*nshort, transf_buf+2*nshort*0);
267
27.8k
        faad_imdct(fb->mdct256, freq_in+1*nshort, transf_buf+2*nshort*1);
268
27.8k
        faad_imdct(fb->mdct256, freq_in+2*nshort, transf_buf+2*nshort*2);
269
27.8k
        faad_imdct(fb->mdct256, freq_in+3*nshort, transf_buf+2*nshort*3);
270
27.8k
        faad_imdct(fb->mdct256, freq_in+4*nshort, transf_buf+2*nshort*4);
271
27.8k
        faad_imdct(fb->mdct256, freq_in+5*nshort, transf_buf+2*nshort*5);
272
27.8k
        faad_imdct(fb->mdct256, freq_in+6*nshort, transf_buf+2*nshort*6);
273
27.8k
        faad_imdct(fb->mdct256, freq_in+7*nshort, transf_buf+2*nshort*7);
274
275
        /* add second half output of previous frame to windowed output of current frame */
276
12.3M
        for (i = 0; i < nflat_ls; i++)
277
12.2M
            time_out[i] = overlap[i];
278
3.54M
        for(i = 0; i < nshort; i++)
279
3.51M
        {
280
3.51M
            time_out[nflat_ls+         i] = overlap[nflat_ls+         i] + MUL_F(transf_buf[nshort*0+i],window_short_prev[i]);
281
3.51M
            time_out[nflat_ls+1*nshort+i] = overlap[nflat_ls+nshort*1+i] + MUL_F(transf_buf[nshort*1+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*2+i],window_short[i]);
282
3.51M
            time_out[nflat_ls+2*nshort+i] = overlap[nflat_ls+nshort*2+i] + MUL_F(transf_buf[nshort*3+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*4+i],window_short[i]);
283
3.51M
            time_out[nflat_ls+3*nshort+i] = overlap[nflat_ls+nshort*3+i] + MUL_F(transf_buf[nshort*5+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*6+i],window_short[i]);
284
3.51M
            if (i < trans)
285
1.75M
                time_out[nflat_ls+4*nshort+i] = overlap[nflat_ls+nshort*4+i] + MUL_F(transf_buf[nshort*7+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*8+i],window_short[i]);
286
3.51M
        }
287
288
        /* window the second half and save as overlap for next frame */
289
3.54M
        for(i = 0; i < nshort; i++)
290
3.51M
        {
291
3.51M
            if (i >= trans)
292
1.75M
                overlap[nflat_ls+4*nshort+i-nlong] = MUL_F(transf_buf[nshort*7+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*8+i],window_short[i]);
293
3.51M
            overlap[nflat_ls+5*nshort+i-nlong] = MUL_F(transf_buf[nshort*9+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*10+i],window_short[i]);
294
3.51M
            overlap[nflat_ls+6*nshort+i-nlong] = MUL_F(transf_buf[nshort*11+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*12+i],window_short[i]);
295
3.51M
            overlap[nflat_ls+7*nshort+i-nlong] = MUL_F(transf_buf[nshort*13+i],window_short[nshort-1-i]) + MUL_F(transf_buf[nshort*14+i],window_short[i]);
296
3.51M
            overlap[nflat_ls+8*nshort+i-nlong] = MUL_F(transf_buf[nshort*15+i],window_short[nshort-1-i]);
297
3.51M
        }
298
12.3M
        for (i = 0; i < nflat_ls; i++)
299
12.2M
            overlap[nflat_ls+nshort+i] = 0;
300
27.8k
        break;
301
302
10.2k
    case LONG_STOP_SEQUENCE:
303
        /* perform iMDCT */
304
10.2k
        imdct_long(fb, freq_in, transf_buf, 2*nlong);
305
306
        /* add second half output of previous frame to windowed output of current frame */
307
        /* construct first half window using padding with 1's and 0's */
308
4.56M
        for (i = 0; i < nflat_ls; i++)
309
4.55M
            time_out[i] = overlap[i];
310
1.31M
        for (i = 0; i < nshort; i++)
311
1.30M
            time_out[nflat_ls+i] = overlap[nflat_ls+i] + MUL_F(transf_buf[nflat_ls+i],window_short_prev[i]);
312
4.56M
        for (i = 0; i < nflat_ls; i++)
313
4.55M
            time_out[nflat_ls+nshort+i] = overlap[nflat_ls+nshort+i] + transf_buf[nflat_ls+nshort+i];
314
315
        /* window the second half and save as overlap for next frame */
316
10.4M
        for (i = 0; i < nlong; i++)
317
10.4M
            overlap[i] = MUL_F(transf_buf[nlong+i],window_long[nlong-1-i]);
318
10.2k
    break;
319
197k
    }
320
321
#if 0
322
    for (i = 0; i < 1024; i++)
323
    {
324
        printf("%d\n", time_out[i]);
325
        //printf("0x%.8X\n", time_out[i]);
326
    }
327
#endif
328
329
330
#ifdef PROFILE
331
    count = faad_get_ts() - count;
332
    fb->cycles += count;
333
#endif
334
197k
}
335
336
337
#ifdef LTP_DEC
338
/* only works for LTP -> no overlapping, no short blocks */
339
void filter_bank_ltp(fb_info *fb, uint8_t window_sequence, uint8_t window_shape,
340
                     uint8_t window_shape_prev, real_t *in_data, real_t *out_mdct,
341
                     uint8_t object_type, uint16_t frame_len)
342
27.0k
{
343
27.0k
    int16_t i;
344
27.0k
    ALIGN real_t windowed_buf[2*1024] = {0};
345
346
27.0k
    const real_t *window_long = NULL;
347
27.0k
    const real_t *window_long_prev = NULL;
348
27.0k
    const real_t *window_short = NULL;
349
27.0k
    const real_t *window_short_prev = NULL;
350
351
27.0k
    uint16_t nlong = frame_len;
352
27.0k
    uint16_t nshort = frame_len/8;
353
27.0k
    uint16_t nflat_ls = (nlong-nshort)/2;
354
355
27.0k
    assert(window_sequence != EIGHT_SHORT_SEQUENCE);
356
357
27.0k
#ifdef LD_DEC
358
27.0k
    if (object_type == LD)
359
1.01k
    {
360
1.01k
        window_long       = fb->ld_window[window_shape];
361
1.01k
        window_long_prev  = fb->ld_window[window_shape_prev];
362
26.0k
    } else {
363
26.0k
#endif
364
26.0k
        window_long       = fb->long_window[window_shape];
365
26.0k
        window_long_prev  = fb->long_window[window_shape_prev];
366
26.0k
        window_short      = fb->short_window[window_shape];
367
26.0k
        window_short_prev = fb->short_window[window_shape_prev];
368
26.0k
#ifdef LD_DEC
369
26.0k
    }
370
27.0k
#endif
371
372
27.0k
    switch(window_sequence)
373
27.0k
    {
374
4.15k
    case ONLY_LONG_SEQUENCE:
375
3.65M
        for (i = nlong-1; i >= 0; i--)
376
3.64M
        {
377
3.64M
            windowed_buf[i] = MUL_F(in_data[i], window_long_prev[i]);
378
3.64M
            windowed_buf[i+nlong] = MUL_F(in_data[i+nlong], window_long[nlong-1-i]);
379
3.64M
        }
380
4.15k
        mdct(fb, windowed_buf, out_mdct, 2*nlong);
381
4.15k
        break;
382
383
16.0k
    case LONG_START_SEQUENCE:
384
15.8M
        for (i = 0; i < nlong; i++)
385
15.8M
            windowed_buf[i] = MUL_F(in_data[i], window_long_prev[i]);
386
6.93M
        for (i = 0; i < nflat_ls; i++)
387
6.91M
            windowed_buf[i+nlong] = in_data[i+nlong];
388
1.99M
        for (i = 0; i < nshort; i++)
389
1.97M
            windowed_buf[i+nlong+nflat_ls] = MUL_F(in_data[i+nlong+nflat_ls], window_short[nshort-1-i]);
390
6.93M
        for (i = 0; i < nflat_ls; i++)
391
6.91M
            windowed_buf[i+nlong+nflat_ls+nshort] = 0;
392
16.0k
        mdct(fb, windowed_buf, out_mdct, 2*nlong);
393
16.0k
        break;
394
395
6.86k
    case LONG_STOP_SEQUENCE:
396
2.96M
        for (i = 0; i < nflat_ls; i++)
397
2.95M
            windowed_buf[i] = 0;
398
850k
        for (i = 0; i < nshort; i++)
399
844k
            windowed_buf[i+nflat_ls] = MUL_F(in_data[i+nflat_ls], window_short_prev[i]);
400
2.96M
        for (i = 0; i < nflat_ls; i++)
401
2.95M
            windowed_buf[i+nflat_ls+nshort] = in_data[i+nflat_ls+nshort];
402
6.75M
        for (i = 0; i < nlong; i++)
403
6.75M
            windowed_buf[i+nlong] = MUL_F(in_data[i+nlong], window_long[nlong-1-i]);
404
6.86k
        mdct(fb, windowed_buf, out_mdct, 2*nlong);
405
6.86k
        break;
406
27.0k
    }
407
27.0k
}
filter_bank_ltp
Line
Count
Source
342
13.5k
{
343
13.5k
    int16_t i;
344
13.5k
    ALIGN real_t windowed_buf[2*1024] = {0};
345
346
13.5k
    const real_t *window_long = NULL;
347
13.5k
    const real_t *window_long_prev = NULL;
348
13.5k
    const real_t *window_short = NULL;
349
13.5k
    const real_t *window_short_prev = NULL;
350
351
13.5k
    uint16_t nlong = frame_len;
352
13.5k
    uint16_t nshort = frame_len/8;
353
13.5k
    uint16_t nflat_ls = (nlong-nshort)/2;
354
355
13.5k
    assert(window_sequence != EIGHT_SHORT_SEQUENCE);
356
357
13.5k
#ifdef LD_DEC
358
13.5k
    if (object_type == LD)
359
508
    {
360
508
        window_long       = fb->ld_window[window_shape];
361
508
        window_long_prev  = fb->ld_window[window_shape_prev];
362
13.0k
    } else {
363
13.0k
#endif
364
13.0k
        window_long       = fb->long_window[window_shape];
365
13.0k
        window_long_prev  = fb->long_window[window_shape_prev];
366
13.0k
        window_short      = fb->short_window[window_shape];
367
13.0k
        window_short_prev = fb->short_window[window_shape_prev];
368
13.0k
#ifdef LD_DEC
369
13.0k
    }
370
13.5k
#endif
371
372
13.5k
    switch(window_sequence)
373
13.5k
    {
374
2.07k
    case ONLY_LONG_SEQUENCE:
375
1.82M
        for (i = nlong-1; i >= 0; i--)
376
1.82M
        {
377
1.82M
            windowed_buf[i] = MUL_F(in_data[i], window_long_prev[i]);
378
1.82M
            windowed_buf[i+nlong] = MUL_F(in_data[i+nlong], window_long[nlong-1-i]);
379
1.82M
        }
380
2.07k
        mdct(fb, windowed_buf, out_mdct, 2*nlong);
381
2.07k
        break;
382
383
8.02k
    case LONG_START_SEQUENCE:
384
7.91M
        for (i = 0; i < nlong; i++)
385
7.90M
            windowed_buf[i] = MUL_F(in_data[i], window_long_prev[i]);
386
3.46M
        for (i = 0; i < nflat_ls; i++)
387
3.45M
            windowed_buf[i+nlong] = in_data[i+nlong];
388
996k
        for (i = 0; i < nshort; i++)
389
988k
            windowed_buf[i+nlong+nflat_ls] = MUL_F(in_data[i+nlong+nflat_ls], window_short[nshort-1-i]);
390
3.46M
        for (i = 0; i < nflat_ls; i++)
391
3.45M
            windowed_buf[i+nlong+nflat_ls+nshort] = 0;
392
8.02k
        mdct(fb, windowed_buf, out_mdct, 2*nlong);
393
8.02k
        break;
394
395
3.43k
    case LONG_STOP_SEQUENCE:
396
1.48M
        for (i = 0; i < nflat_ls; i++)
397
1.47M
            windowed_buf[i] = 0;
398
425k
        for (i = 0; i < nshort; i++)
399
422k
            windowed_buf[i+nflat_ls] = MUL_F(in_data[i+nflat_ls], window_short_prev[i]);
400
1.48M
        for (i = 0; i < nflat_ls; i++)
401
1.47M
            windowed_buf[i+nflat_ls+nshort] = in_data[i+nflat_ls+nshort];
402
3.37M
        for (i = 0; i < nlong; i++)
403
3.37M
            windowed_buf[i+nlong] = MUL_F(in_data[i+nlong], window_long[nlong-1-i]);
404
3.43k
        mdct(fb, windowed_buf, out_mdct, 2*nlong);
405
3.43k
        break;
406
13.5k
    }
407
13.5k
}
filter_bank_ltp
Line
Count
Source
342
13.5k
{
343
13.5k
    int16_t i;
344
13.5k
    ALIGN real_t windowed_buf[2*1024] = {0};
345
346
13.5k
    const real_t *window_long = NULL;
347
13.5k
    const real_t *window_long_prev = NULL;
348
13.5k
    const real_t *window_short = NULL;
349
13.5k
    const real_t *window_short_prev = NULL;
350
351
13.5k
    uint16_t nlong = frame_len;
352
13.5k
    uint16_t nshort = frame_len/8;
353
13.5k
    uint16_t nflat_ls = (nlong-nshort)/2;
354
355
13.5k
    assert(window_sequence != EIGHT_SHORT_SEQUENCE);
356
357
13.5k
#ifdef LD_DEC
358
13.5k
    if (object_type == LD)
359
508
    {
360
508
        window_long       = fb->ld_window[window_shape];
361
508
        window_long_prev  = fb->ld_window[window_shape_prev];
362
13.0k
    } else {
363
13.0k
#endif
364
13.0k
        window_long       = fb->long_window[window_shape];
365
13.0k
        window_long_prev  = fb->long_window[window_shape_prev];
366
13.0k
        window_short      = fb->short_window[window_shape];
367
13.0k
        window_short_prev = fb->short_window[window_shape_prev];
368
13.0k
#ifdef LD_DEC
369
13.0k
    }
370
13.5k
#endif
371
372
13.5k
    switch(window_sequence)
373
13.5k
    {
374
2.07k
    case ONLY_LONG_SEQUENCE:
375
1.82M
        for (i = nlong-1; i >= 0; i--)
376
1.82M
        {
377
1.82M
            windowed_buf[i] = MUL_F(in_data[i], window_long_prev[i]);
378
1.82M
            windowed_buf[i+nlong] = MUL_F(in_data[i+nlong], window_long[nlong-1-i]);
379
1.82M
        }
380
2.07k
        mdct(fb, windowed_buf, out_mdct, 2*nlong);
381
2.07k
        break;
382
383
8.02k
    case LONG_START_SEQUENCE:
384
7.91M
        for (i = 0; i < nlong; i++)
385
7.90M
            windowed_buf[i] = MUL_F(in_data[i], window_long_prev[i]);
386
3.46M
        for (i = 0; i < nflat_ls; i++)
387
3.45M
            windowed_buf[i+nlong] = in_data[i+nlong];
388
996k
        for (i = 0; i < nshort; i++)
389
988k
            windowed_buf[i+nlong+nflat_ls] = MUL_F(in_data[i+nlong+nflat_ls], window_short[nshort-1-i]);
390
3.46M
        for (i = 0; i < nflat_ls; i++)
391
3.45M
            windowed_buf[i+nlong+nflat_ls+nshort] = 0;
392
8.02k
        mdct(fb, windowed_buf, out_mdct, 2*nlong);
393
8.02k
        break;
394
395
3.43k
    case LONG_STOP_SEQUENCE:
396
1.48M
        for (i = 0; i < nflat_ls; i++)
397
1.47M
            windowed_buf[i] = 0;
398
425k
        for (i = 0; i < nshort; i++)
399
422k
            windowed_buf[i+nflat_ls] = MUL_F(in_data[i+nflat_ls], window_short_prev[i]);
400
1.48M
        for (i = 0; i < nflat_ls; i++)
401
1.47M
            windowed_buf[i+nflat_ls+nshort] = in_data[i+nflat_ls+nshort];
402
3.37M
        for (i = 0; i < nlong; i++)
403
3.37M
            windowed_buf[i+nlong] = MUL_F(in_data[i+nlong], window_long[nlong-1-i]);
404
3.43k
        mdct(fb, windowed_buf, out_mdct, 2*nlong);
405
3.43k
        break;
406
13.5k
    }
407
13.5k
}
408
#endif