Coverage Report

Created: 2025-11-24 06:03

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/vorbis/lib/block.c
Line
Count
Source
1
/********************************************************************
2
 *                                                                  *
3
 * THIS FILE IS PART OF THE OggVorbis SOFTWARE CODEC SOURCE CODE.   *
4
 * USE, DISTRIBUTION AND REPRODUCTION OF THIS LIBRARY SOURCE IS     *
5
 * GOVERNED BY A BSD-STYLE SOURCE LICENSE INCLUDED WITH THIS SOURCE *
6
 * IN 'COPYING'. PLEASE READ THESE TERMS BEFORE DISTRIBUTING.       *
7
 *                                                                  *
8
 * THE OggVorbis SOURCE CODE IS (C) COPYRIGHT 1994-2015             *
9
 * by the Xiph.Org Foundation https://xiph.org/                     *
10
 *                                                                  *
11
 ********************************************************************
12
13
 function: PCM data vector blocking, windowing and dis/reassembly
14
15
 Handle windowing, overlap-add, etc of the PCM vectors.  This is made
16
 more amusing by Vorbis' current two allowed block sizes.
17
18
 ********************************************************************/
19
20
#include <stdio.h>
21
#include <stdlib.h>
22
#include <string.h>
23
#include <ogg/ogg.h>
24
#include "vorbis/codec.h"
25
#include "codec_internal.h"
26
27
#include "window.h"
28
#include "mdct.h"
29
#include "lpc.h"
30
#include "registry.h"
31
#include "misc.h"
32
33
/* pcm accumulator examples (not exhaustive):
34
35
 <-------------- lW ---------------->
36
                   <--------------- W ---------------->
37
:            .....|.....       _______________         |
38
:        .'''     |     '''_---      |       |\        |
39
:.....'''         |_____--- '''......|       | \_______|
40
:.................|__________________|_______|__|______|
41
                  |<------ Sl ------>|      > Sr <     |endW
42
                  |beginSl           |endSl  |  |endSr
43
                  |beginW            |endlW  |beginSr
44
45
46
                      |< lW >|
47
                   <--------------- W ---------------->
48
                  |   |  ..  ______________            |
49
                  |   | '  `/        |     ---_        |
50
                  |___.'___/`.       |         ---_____|
51
                  |_______|__|_______|_________________|
52
                  |      >|Sl|<      |<------ Sr ----->|endW
53
                  |       |  |endSl  |beginSr          |endSr
54
                  |beginW |  |endlW
55
                  mult[0] |beginSl                     mult[n]
56
57
 <-------------- lW ----------------->
58
                          |<--W-->|
59
:            ..............  ___  |   |
60
:        .'''             |`/   \ |   |
61
:.....'''                 |/`....\|...|
62
:.........................|___|___|___|
63
                          |Sl |Sr |endW
64
                          |   |   |endSr
65
                          |   |beginSr
66
                          |   |endSl
67
                          |beginSl
68
                          |beginW
69
*/
70
71
/* block abstraction setup *********************************************/
72
73
#ifndef WORD_ALIGN
74
5.67M
#define WORD_ALIGN 8
75
#endif
76
77
9.12k
int vorbis_block_init(vorbis_dsp_state *v, vorbis_block *vb){
78
9.12k
  int i;
79
9.12k
  memset(vb,0,sizeof(*vb));
80
9.12k
  vb->vd=v;
81
9.12k
  vb->localalloc=0;
82
9.12k
  vb->localstore=NULL;
83
9.12k
  if(v->analysisp){
84
0
    vorbis_block_internal *vbi=
85
0
      vb->internal=_ogg_calloc(1,sizeof(vorbis_block_internal));
86
0
    vbi->ampmax=-9999;
87
88
0
    for(i=0;i<PACKETBLOBS;i++){
89
0
      if(i==PACKETBLOBS/2){
90
0
        vbi->packetblob[i]=&vb->opb;
91
0
      }else{
92
0
        vbi->packetblob[i]=
93
0
          _ogg_calloc(1,sizeof(oggpack_buffer));
94
0
      }
95
0
      oggpack_writeinit(vbi->packetblob[i]);
96
0
    }
97
0
  }
98
99
9.12k
  return(0);
100
9.12k
}
101
102
2.83M
void *_vorbis_block_alloc(vorbis_block *vb,long bytes){
103
2.83M
  bytes=(bytes+(WORD_ALIGN-1)) & ~(WORD_ALIGN-1);
104
2.83M
  if(bytes+vb->localtop>vb->localalloc){
105
    /* can't just _ogg_realloc... there are outstanding pointers */
106
407k
    if(vb->localstore){
107
401k
      struct alloc_chain *link=_ogg_malloc(sizeof(*link));
108
401k
      vb->totaluse+=vb->localtop;
109
401k
      link->next=vb->reap;
110
401k
      link->ptr=vb->localstore;
111
401k
      vb->reap=link;
112
401k
    }
113
    /* highly conservative */
114
407k
    vb->localalloc=bytes;
115
407k
    vb->localstore=_ogg_malloc(vb->localalloc);
116
407k
    vb->localtop=0;
117
407k
  }
118
2.83M
  {
119
2.83M
    void *ret=(void *)(((char *)vb->localstore)+vb->localtop);
120
2.83M
    vb->localtop+=bytes;
121
2.83M
    return ret;
122
2.83M
  }
123
2.83M
}
124
125
/* reap the chain, pull the ripcord */
126
2.09M
void _vorbis_block_ripcord(vorbis_block *vb){
127
  /* reap the chain */
128
2.09M
  struct alloc_chain *reap=vb->reap;
129
2.49M
  while(reap){
130
401k
    struct alloc_chain *next=reap->next;
131
401k
    _ogg_free(reap->ptr);
132
401k
    memset(reap,0,sizeof(*reap));
133
401k
    _ogg_free(reap);
134
401k
    reap=next;
135
401k
  }
136
  /* consolidate storage */
137
2.09M
  if(vb->totaluse){
138
7.59k
    vb->localstore=_ogg_realloc(vb->localstore,vb->totaluse+vb->localalloc);
139
7.59k
    vb->localalloc+=vb->totaluse;
140
7.59k
    vb->totaluse=0;
141
7.59k
  }
142
143
  /* pull the ripcord */
144
2.09M
  vb->localtop=0;
145
2.09M
  vb->reap=NULL;
146
2.09M
}
147
148
11.8k
int vorbis_block_clear(vorbis_block *vb){
149
11.8k
  int i;
150
11.8k
  vorbis_block_internal *vbi=vb->internal;
151
152
11.8k
  _vorbis_block_ripcord(vb);
153
11.8k
  if(vb->localstore)_ogg_free(vb->localstore);
154
155
11.8k
  if(vbi){
156
0
    for(i=0;i<PACKETBLOBS;i++){
157
0
      oggpack_writeclear(vbi->packetblob[i]);
158
0
      if(i!=PACKETBLOBS/2)_ogg_free(vbi->packetblob[i]);
159
0
    }
160
0
    _ogg_free(vbi);
161
0
  }
162
11.8k
  memset(vb,0,sizeof(*vb));
163
11.8k
  return(0);
164
11.8k
}
165
166
/* Analysis side code, but directly related to blocking.  Thus it's
167
   here and not in analysis.c (which is for analysis transforms only).
168
   The init is here because some of it is shared */
169
170
9.22k
static int _vds_shared_init(vorbis_dsp_state *v,vorbis_info *vi,int encp){
171
9.22k
  int i;
172
9.22k
  codec_setup_info *ci=vi->codec_setup;
173
9.22k
  private_state *b=NULL;
174
9.22k
  int hs;
175
176
9.22k
  if(ci==NULL||
177
9.22k
     ci->modes<=0||
178
9.22k
     ci->blocksizes[0]<64||
179
9.22k
     ci->blocksizes[1]<ci->blocksizes[0]){
180
0
    return 1;
181
0
  }
182
9.22k
  hs=ci->halfrate_flag;
183
184
9.22k
  memset(v,0,sizeof(*v));
185
9.22k
  b=v->backend_state=_ogg_calloc(1,sizeof(*b));
186
187
9.22k
  v->vi=vi;
188
9.22k
  b->modebits=ov_ilog(ci->modes-1);
189
190
9.22k
  b->transform[0]=_ogg_calloc(VI_TRANSFORMB,sizeof(*b->transform[0]));
191
9.22k
  b->transform[1]=_ogg_calloc(VI_TRANSFORMB,sizeof(*b->transform[1]));
192
193
  /* MDCT is tranform 0 */
194
195
9.22k
  b->transform[0][0]=_ogg_calloc(1,sizeof(mdct_lookup));
196
9.22k
  b->transform[1][0]=_ogg_calloc(1,sizeof(mdct_lookup));
197
9.22k
  mdct_init(b->transform[0][0],ci->blocksizes[0]>>hs);
198
9.22k
  mdct_init(b->transform[1][0],ci->blocksizes[1]>>hs);
199
200
  /* Vorbis I uses only window type 0 */
201
  /* note that the correct computation below is technically:
202
       b->window[0]=ov_ilog(ci->blocksizes[0]-1)-6;
203
       b->window[1]=ov_ilog(ci->blocksizes[1]-1)-6;
204
    but since blocksizes are always powers of two,
205
    the below is equivalent.
206
   */
207
9.22k
  b->window[0]=ov_ilog(ci->blocksizes[0])-7;
208
9.22k
  b->window[1]=ov_ilog(ci->blocksizes[1])-7;
209
210
9.22k
  if(encp){ /* encode/decode differ here */
211
212
    /* analysis always needs an fft */
213
0
    drft_init(&b->fft_look[0],ci->blocksizes[0]);
214
0
    drft_init(&b->fft_look[1],ci->blocksizes[1]);
215
216
    /* finish the codebooks */
217
0
    if(!ci->fullbooks){
218
0
      ci->fullbooks=_ogg_calloc(ci->books,sizeof(*ci->fullbooks));
219
0
      for(i=0;i<ci->books;i++)
220
0
        vorbis_book_init_encode(ci->fullbooks+i,ci->book_param[i]);
221
0
    }
222
223
0
    b->psy=_ogg_calloc(ci->psys,sizeof(*b->psy));
224
0
    for(i=0;i<ci->psys;i++){
225
0
      _vp_psy_init(b->psy+i,
226
0
                   ci->psy_param[i],
227
0
                   &ci->psy_g_param,
228
0
                   ci->blocksizes[ci->psy_param[i]->blockflag]/2,
229
0
                   vi->rate);
230
0
    }
231
232
0
    v->analysisp=1;
233
9.22k
  }else{
234
    /* finish the codebooks */
235
9.22k
    if(!ci->fullbooks){
236
9.22k
      ci->fullbooks=_ogg_calloc(ci->books,sizeof(*ci->fullbooks));
237
33.0k
      for(i=0;i<ci->books;i++){
238
23.8k
        if(ci->book_param[i]==NULL)
239
0
          goto abort_books;
240
23.8k
        if(vorbis_book_init_decode(ci->fullbooks+i,ci->book_param[i]))
241
96
          goto abort_books;
242
        /* decode codebooks are now standalone after init */
243
23.7k
        vorbis_staticbook_destroy(ci->book_param[i]);
244
23.7k
        ci->book_param[i]=NULL;
245
23.7k
      }
246
9.22k
    }
247
9.22k
  }
248
249
  /* initialize the storage vectors. blocksize[1] is small for encode,
250
     but the correct size for decode */
251
9.12k
  v->pcm_storage=ci->blocksizes[1];
252
9.12k
  v->pcm=_ogg_malloc(vi->channels*sizeof(*v->pcm));
253
9.12k
  v->pcmret=_ogg_malloc(vi->channels*sizeof(*v->pcmret));
254
9.12k
  {
255
9.12k
    int i;
256
694k
    for(i=0;i<vi->channels;i++)
257
685k
      v->pcm[i]=_ogg_calloc(v->pcm_storage,sizeof(*v->pcm[i]));
258
9.12k
  }
259
260
  /* all 1 (large block) or 0 (small block) */
261
  /* explicitly set for the sake of clarity */
262
9.12k
  v->lW=0; /* previous window size */
263
9.12k
  v->W=0;  /* current window size */
264
265
  /* all vector indexes */
266
9.12k
  v->centerW=ci->blocksizes[1]/2;
267
268
9.12k
  v->pcm_current=v->centerW;
269
270
  /* initialize all the backend lookups */
271
9.12k
  b->flr=_ogg_calloc(ci->floors,sizeof(*b->flr));
272
9.12k
  b->residue=_ogg_calloc(ci->residues,sizeof(*b->residue));
273
274
19.6k
  for(i=0;i<ci->floors;i++)
275
10.5k
    b->flr[i]=_floor_P[ci->floor_type[i]]->
276
10.5k
      look(v,ci->floor_param[i]);
277
278
20.0k
  for(i=0;i<ci->residues;i++)
279
10.9k
    b->residue[i]=_residue_P[ci->residue_type[i]]->
280
10.9k
      look(v,ci->residue_param[i]);
281
282
9.12k
  return 0;
283
96
 abort_books:
284
1.37k
  for(i=0;i<ci->books;i++){
285
1.27k
    if(ci->book_param[i]!=NULL){
286
730
      vorbis_staticbook_destroy(ci->book_param[i]);
287
730
      ci->book_param[i]=NULL;
288
730
    }
289
1.27k
  }
290
96
  vorbis_dsp_clear(v);
291
96
  return -1;
292
9.22k
}
293
294
/* arbitrary settings and spec-mandated numbers get filled in here */
295
0
int vorbis_analysis_init(vorbis_dsp_state *v,vorbis_info *vi){
296
0
  private_state *b=NULL;
297
298
0
  if(_vds_shared_init(v,vi,1))return 1;
299
0
  b=v->backend_state;
300
0
  b->psy_g_look=_vp_global_look(vi);
301
302
  /* Initialize the envelope state storage */
303
0
  b->ve=_ogg_calloc(1,sizeof(*b->ve));
304
0
  _ve_envelope_init(b->ve,vi);
305
306
0
  vorbis_bitrate_init(vi,&b->bms);
307
308
  /* compressed audio packets start after the headers
309
     with sequence number 3 */
310
0
  v->sequence=3;
311
312
0
  return(0);
313
0
}
314
315
12.0k
void vorbis_dsp_clear(vorbis_dsp_state *v){
316
12.0k
  int i;
317
12.0k
  if(v){
318
12.0k
    vorbis_info *vi=v->vi;
319
12.0k
    codec_setup_info *ci=(vi?vi->codec_setup:NULL);
320
12.0k
    private_state *b=v->backend_state;
321
322
12.0k
    if(b){
323
324
9.22k
      if(b->ve){
325
0
        _ve_envelope_clear(b->ve);
326
0
        _ogg_free(b->ve);
327
0
      }
328
329
9.22k
      if(b->transform[0]){
330
9.22k
        mdct_clear(b->transform[0][0]);
331
9.22k
        _ogg_free(b->transform[0][0]);
332
9.22k
        _ogg_free(b->transform[0]);
333
9.22k
      }
334
9.22k
      if(b->transform[1]){
335
9.22k
        mdct_clear(b->transform[1][0]);
336
9.22k
        _ogg_free(b->transform[1][0]);
337
9.22k
        _ogg_free(b->transform[1]);
338
9.22k
      }
339
340
9.22k
      if(b->flr){
341
9.12k
        if(ci)
342
19.6k
          for(i=0;i<ci->floors;i++)
343
10.5k
            _floor_P[ci->floor_type[i]]->
344
10.5k
              free_look(b->flr[i]);
345
9.12k
        _ogg_free(b->flr);
346
9.12k
      }
347
9.22k
      if(b->residue){
348
9.12k
        if(ci)
349
20.0k
          for(i=0;i<ci->residues;i++)
350
10.9k
            _residue_P[ci->residue_type[i]]->
351
10.9k
              free_look(b->residue[i]);
352
9.12k
        _ogg_free(b->residue);
353
9.12k
      }
354
9.22k
      if(b->psy){
355
0
        if(ci)
356
0
          for(i=0;i<ci->psys;i++)
357
0
            _vp_psy_clear(b->psy+i);
358
0
        _ogg_free(b->psy);
359
0
      }
360
361
9.22k
      if(b->psy_g_look)_vp_global_free(b->psy_g_look);
362
9.22k
      vorbis_bitrate_clear(&b->bms);
363
364
9.22k
      drft_clear(&b->fft_look[0]);
365
9.22k
      drft_clear(&b->fft_look[1]);
366
367
9.22k
    }
368
369
12.0k
    if(v->pcm){
370
9.12k
      if(vi)
371
694k
        for(i=0;i<vi->channels;i++)
372
685k
          if(v->pcm[i])_ogg_free(v->pcm[i]);
373
9.12k
      _ogg_free(v->pcm);
374
9.12k
      if(v->pcmret)_ogg_free(v->pcmret);
375
9.12k
      if(v->preextrapolate_work)_ogg_free(v->preextrapolate_work);
376
9.12k
    }
377
378
12.0k
    if(b){
379
      /* free header, header1, header2 */
380
9.22k
      if(b->header)_ogg_free(b->header);
381
9.22k
      if(b->header1)_ogg_free(b->header1);
382
9.22k
      if(b->header2)_ogg_free(b->header2);
383
9.22k
      _ogg_free(b);
384
9.22k
    }
385
386
12.0k
    memset(v,0,sizeof(*v));
387
12.0k
  }
388
12.0k
}
389
390
0
float **vorbis_analysis_buffer(vorbis_dsp_state *v, int vals){
391
0
  int i;
392
0
  vorbis_info *vi=v->vi;
393
0
  private_state *b=v->backend_state;
394
395
  /* free header, header1, header2 */
396
0
  if(b->header) {
397
0
    _ogg_free(b->header);
398
0
    b->header=NULL;
399
0
  }
400
0
  if(b->header1) {
401
0
    _ogg_free(b->header1);
402
0
    b->header1=NULL;
403
0
  }
404
0
  if(b->header2) {
405
0
    _ogg_free(b->header2);
406
0
    b->header2=NULL;
407
0
  }
408
409
  /* Do we have enough storage space for the requested buffer? If not,
410
     expand the PCM (and envelope) storage */
411
412
0
  if(v->pcm_current+vals>=v->pcm_storage){
413
0
    v->pcm_storage=v->pcm_current+vals*2;
414
415
0
    for(i=0;i<vi->channels;i++){
416
0
      v->pcm[i]=_ogg_realloc(v->pcm[i],v->pcm_storage*sizeof(*v->pcm[i]));
417
0
    }
418
0
  }
419
420
0
  for(i=0;i<vi->channels;i++)
421
0
    v->pcmret[i]=v->pcm[i]+v->pcm_current;
422
423
0
  return(v->pcmret);
424
0
}
425
426
0
static void _preextrapolate_helper(vorbis_dsp_state *v){
427
0
  int i;
428
0
  int order=16;
429
0
  float *lpc=alloca(order*sizeof(*lpc));
430
0
  float *work;
431
0
  int workbuf=v->pcm_current*sizeof(*work);
432
0
  long j;
433
0
  v->preextrapolate=1;
434
435
0
  if(workbuf<8*1024) /* 8 KiB */
436
0
    work=alloca(workbuf);
437
0
  else
438
    /* workbuf is too big to safely allocate on the stack */
439
0
    work=v->preextrapolate_work=_ogg_realloc(v->preextrapolate_work,workbuf);
440
441
0
  if(v->pcm_current-v->centerW>order*2 && work){ /* safety */
442
0
    for(i=0;i<v->vi->channels;i++){
443
      /* need to run the extrapolation in reverse! */
444
0
      for(j=0;j<v->pcm_current;j++)
445
0
        work[j]=v->pcm[i][v->pcm_current-j-1];
446
447
      /* prime as above */
448
0
      vorbis_lpc_from_data(work,lpc,v->pcm_current-v->centerW,order);
449
450
#if 0
451
      if(v->vi->channels==2){
452
        if(i==0)
453
          _analysis_output("predataL",0,work,v->pcm_current-v->centerW,0,0,0);
454
        else
455
          _analysis_output("predataR",0,work,v->pcm_current-v->centerW,0,0,0);
456
      }else{
457
        _analysis_output("predata",0,work,v->pcm_current-v->centerW,0,0,0);
458
      }
459
#endif
460
461
      /* run the predictor filter */
462
0
      vorbis_lpc_predict(lpc,work+v->pcm_current-v->centerW-order,
463
0
                         order,
464
0
                         work+v->pcm_current-v->centerW,
465
0
                         v->centerW);
466
467
0
      for(j=0;j<v->pcm_current;j++)
468
0
        v->pcm[i][v->pcm_current-j-1]=work[j];
469
470
0
    }
471
0
  }
472
0
}
473
474
475
/* call with val<=0 to set eof */
476
477
0
int vorbis_analysis_wrote(vorbis_dsp_state *v, int vals){
478
0
  vorbis_info *vi=v->vi;
479
0
  codec_setup_info *ci=vi->codec_setup;
480
481
0
  if(vals<=0){
482
0
    int order=32;
483
0
    int i;
484
0
    float *lpc=alloca(order*sizeof(*lpc));
485
486
    /* if it wasn't done earlier (very short sample) */
487
0
    if(!v->preextrapolate)
488
0
      _preextrapolate_helper(v);
489
490
    /* We're encoding the end of the stream.  Just make sure we have
491
       [at least] a few full blocks of zeroes at the end. */
492
    /* actually, we don't want zeroes; that could drop a large
493
       amplitude off a cliff, creating spread spectrum noise that will
494
       suck to encode.  Extrapolate for the sake of cleanliness. */
495
496
0
    vorbis_analysis_buffer(v,ci->blocksizes[1]*3);
497
0
    v->eofflag=v->pcm_current;
498
0
    v->pcm_current+=ci->blocksizes[1]*3;
499
500
0
    for(i=0;i<vi->channels;i++){
501
0
      if(v->eofflag>order*2){
502
        /* extrapolate with LPC to fill in */
503
0
        long n;
504
505
        /* make a predictor filter */
506
0
        n=v->eofflag;
507
0
        if(n>ci->blocksizes[1])n=ci->blocksizes[1];
508
0
        vorbis_lpc_from_data(v->pcm[i]+v->eofflag-n,lpc,n,order);
509
510
        /* run the predictor filter */
511
0
        vorbis_lpc_predict(lpc,v->pcm[i]+v->eofflag-order,order,
512
0
                           v->pcm[i]+v->eofflag,v->pcm_current-v->eofflag);
513
0
      }else{
514
        /* not enough data to extrapolate (unlikely to happen due to
515
           guarding the overlap, but bulletproof in case that
516
           assumtion goes away). zeroes will do. */
517
0
        memset(v->pcm[i]+v->eofflag,0,
518
0
               (v->pcm_current-v->eofflag)*sizeof(*v->pcm[i]));
519
520
0
      }
521
0
    }
522
0
  }else{
523
524
0
    if(v->pcm_current+vals>v->pcm_storage)
525
0
      return(OV_EINVAL);
526
527
0
    v->pcm_current+=vals;
528
529
    /* we may want to reverse extrapolate the beginning of a stream
530
       too... in case we're beginning on a cliff! */
531
    /* clumsy, but simple.  It only runs once, so simple is good. */
532
0
    if(!v->preextrapolate && v->pcm_current-v->centerW>ci->blocksizes[1])
533
0
      _preextrapolate_helper(v);
534
535
0
  }
536
0
  return(0);
537
0
}
538
539
/* do the deltas, envelope shaping, pre-echo and determine the size of
540
   the next block on which to continue analysis */
541
0
int vorbis_analysis_blockout(vorbis_dsp_state *v,vorbis_block *vb){
542
0
  int i;
543
0
  vorbis_info *vi=v->vi;
544
0
  codec_setup_info *ci=vi->codec_setup;
545
0
  private_state *b=v->backend_state;
546
0
  vorbis_look_psy_global *g=b->psy_g_look;
547
0
  long beginW=v->centerW-ci->blocksizes[v->W]/2,centerNext;
548
0
  vorbis_block_internal *vbi=(vorbis_block_internal *)vb->internal;
549
550
  /* check to see if we're started... */
551
0
  if(!v->preextrapolate)return(0);
552
553
  /* check to see if we're done... */
554
0
  if(v->eofflag==-1)return(0);
555
556
  /* By our invariant, we have lW, W and centerW set.  Search for
557
     the next boundary so we can determine nW (the next window size)
558
     which lets us compute the shape of the current block's window */
559
560
  /* we do an envelope search even on a single blocksize; we may still
561
     be throwing more bits at impulses, and envelope search handles
562
     marking impulses too. */
563
0
  {
564
0
    long bp=_ve_envelope_search(v);
565
0
    if(bp==-1){
566
567
0
      if(v->eofflag==0)return(0); /* not enough data currently to search for a
568
                                     full long block */
569
0
      v->nW=0;
570
0
    }else{
571
572
0
      if(ci->blocksizes[0]==ci->blocksizes[1])
573
0
        v->nW=0;
574
0
      else
575
0
        v->nW=bp;
576
0
    }
577
0
  }
578
579
0
  centerNext=v->centerW+ci->blocksizes[v->W]/4+ci->blocksizes[v->nW]/4;
580
581
0
  {
582
    /* center of next block + next block maximum right side. */
583
584
0
    long blockbound=centerNext+ci->blocksizes[v->nW]/2;
585
0
    if(v->pcm_current<blockbound)return(0); /* not enough data yet;
586
                                               although this check is
587
                                               less strict that the
588
                                               _ve_envelope_search,
589
                                               the search is not run
590
                                               if we only use one
591
                                               block size */
592
593
594
0
  }
595
596
  /* fill in the block.  Note that for a short window, lW and nW are *short*
597
     regardless of actual settings in the stream */
598
599
0
  _vorbis_block_ripcord(vb);
600
0
  vb->lW=v->lW;
601
0
  vb->W=v->W;
602
0
  vb->nW=v->nW;
603
604
0
  if(v->W){
605
0
    if(!v->lW || !v->nW){
606
0
      vbi->blocktype=BLOCKTYPE_TRANSITION;
607
      /*fprintf(stderr,"-");*/
608
0
    }else{
609
0
      vbi->blocktype=BLOCKTYPE_LONG;
610
      /*fprintf(stderr,"_");*/
611
0
    }
612
0
  }else{
613
0
    if(_ve_envelope_mark(v)){
614
0
      vbi->blocktype=BLOCKTYPE_IMPULSE;
615
      /*fprintf(stderr,"|");*/
616
617
0
    }else{
618
0
      vbi->blocktype=BLOCKTYPE_PADDING;
619
      /*fprintf(stderr,".");*/
620
621
0
    }
622
0
  }
623
624
0
  vb->vd=v;
625
0
  vb->sequence=v->sequence++;
626
0
  vb->granulepos=v->granulepos;
627
0
  vb->pcmend=ci->blocksizes[v->W];
628
629
  /* copy the vectors; this uses the local storage in vb */
630
631
  /* this tracks 'strongest peak' for later psychoacoustics */
632
  /* moved to the global psy state; clean this mess up */
633
0
  if(vbi->ampmax>g->ampmax)g->ampmax=vbi->ampmax;
634
0
  g->ampmax=_vp_ampmax_decay(g->ampmax,v);
635
0
  vbi->ampmax=g->ampmax;
636
637
0
  vb->pcm=_vorbis_block_alloc(vb,sizeof(*vb->pcm)*vi->channels);
638
0
  vbi->pcmdelay=_vorbis_block_alloc(vb,sizeof(*vbi->pcmdelay)*vi->channels);
639
0
  for(i=0;i<vi->channels;i++){
640
0
    vbi->pcmdelay[i]=
641
0
      _vorbis_block_alloc(vb,(vb->pcmend+beginW)*sizeof(*vbi->pcmdelay[i]));
642
0
    memcpy(vbi->pcmdelay[i],v->pcm[i],(vb->pcmend+beginW)*sizeof(*vbi->pcmdelay[i]));
643
0
    vb->pcm[i]=vbi->pcmdelay[i]+beginW;
644
645
    /* before we added the delay
646
       vb->pcm[i]=_vorbis_block_alloc(vb,vb->pcmend*sizeof(*vb->pcm[i]));
647
       memcpy(vb->pcm[i],v->pcm[i]+beginW,ci->blocksizes[v->W]*sizeof(*vb->pcm[i]));
648
    */
649
650
0
  }
651
652
  /* handle eof detection: eof==0 means that we've not yet received EOF
653
                           eof>0  marks the last 'real' sample in pcm[]
654
                           eof<0  'no more to do'; doesn't get here */
655
656
0
  if(v->eofflag){
657
0
    if(v->centerW>=v->eofflag){
658
0
      v->eofflag=-1;
659
0
      vb->eofflag=1;
660
0
      return(1);
661
0
    }
662
0
  }
663
664
  /* advance storage vectors and clean up */
665
0
  {
666
0
    int new_centerNext=ci->blocksizes[1]/2;
667
0
    int movementW=centerNext-new_centerNext;
668
669
0
    if(movementW>0){
670
671
0
      _ve_envelope_shift(b->ve,movementW);
672
0
      v->pcm_current-=movementW;
673
674
0
      for(i=0;i<vi->channels;i++)
675
0
        memmove(v->pcm[i],v->pcm[i]+movementW,
676
0
                v->pcm_current*sizeof(*v->pcm[i]));
677
678
679
0
      v->lW=v->W;
680
0
      v->W=v->nW;
681
0
      v->centerW=new_centerNext;
682
683
0
      if(v->eofflag){
684
0
        v->eofflag-=movementW;
685
0
        if(v->eofflag<=0)v->eofflag=-1;
686
        /* do not add padding to end of stream! */
687
0
        if(v->centerW>=v->eofflag){
688
0
          v->granulepos+=movementW-(v->centerW-v->eofflag);
689
0
        }else{
690
0
          v->granulepos+=movementW;
691
0
        }
692
0
      }else{
693
0
        v->granulepos+=movementW;
694
0
      }
695
0
    }
696
0
  }
697
698
  /* done */
699
0
  return(1);
700
0
}
701
702
9.12k
int vorbis_synthesis_restart(vorbis_dsp_state *v){
703
9.12k
  vorbis_info *vi=v->vi;
704
9.12k
  codec_setup_info *ci;
705
9.12k
  int hs;
706
707
9.12k
  if(!v->backend_state)return -1;
708
9.12k
  if(!vi)return -1;
709
9.12k
  ci=vi->codec_setup;
710
9.12k
  if(!ci)return -1;
711
9.12k
  hs=ci->halfrate_flag;
712
713
9.12k
  v->centerW=ci->blocksizes[1]>>(hs+1);
714
9.12k
  v->pcm_current=v->centerW>>hs;
715
716
9.12k
  v->pcm_returned=-1;
717
9.12k
  v->granulepos=-1;
718
9.12k
  v->sequence=-1;
719
9.12k
  v->eofflag=0;
720
9.12k
  ((private_state *)(v->backend_state))->sample_count=-1;
721
722
9.12k
  return(0);
723
9.12k
}
724
725
9.22k
int vorbis_synthesis_init(vorbis_dsp_state *v,vorbis_info *vi){
726
9.22k
  if(_vds_shared_init(v,vi,0)){
727
96
    vorbis_dsp_clear(v);
728
96
    return 1;
729
96
  }
730
9.12k
  vorbis_synthesis_restart(v);
731
9.12k
  return 0;
732
9.22k
}
733
734
/* Unlike in analysis, the window is only partially applied for each
735
   block.  The time domain envelope is not yet handled at the point of
736
   calling (as it relies on the previous block). */
737
738
110k
int vorbis_synthesis_blockin(vorbis_dsp_state *v,vorbis_block *vb){
739
110k
  vorbis_info *vi=v->vi;
740
110k
  codec_setup_info *ci=vi->codec_setup;
741
110k
  private_state *b=v->backend_state;
742
110k
  int hs=ci->halfrate_flag;
743
110k
  int i,j;
744
745
110k
  if(!vb)return(OV_EINVAL);
746
110k
  if(v->pcm_current>v->pcm_returned  && v->pcm_returned!=-1)return(OV_EINVAL);
747
748
106k
  v->lW=v->W;
749
106k
  v->W=vb->W;
750
106k
  v->nW=-1;
751
752
106k
  if((v->sequence==-1)||
753
100k
     (v->sequence+1 != vb->sequence)){
754
81.0k
    v->granulepos=-1; /* out of sequence; lose count */
755
81.0k
    b->sample_count=-1;
756
81.0k
  }
757
758
106k
  v->sequence=vb->sequence;
759
760
106k
  if(vb->pcm){  /* no pcm to process if vorbis_synthesis_trackonly
761
                   was called on block */
762
106k
    int n=ci->blocksizes[v->W]>>(hs+1);
763
106k
    int n0=ci->blocksizes[0]>>(hs+1);
764
106k
    int n1=ci->blocksizes[1]>>(hs+1);
765
766
106k
    int thisCenter;
767
106k
    int prevCenter;
768
769
106k
    v->glue_bits+=vb->glue_bits;
770
106k
    v->time_bits+=vb->time_bits;
771
106k
    v->floor_bits+=vb->floor_bits;
772
106k
    v->res_bits+=vb->res_bits;
773
774
106k
    if(v->centerW){
775
55.0k
      thisCenter=n1;
776
55.0k
      prevCenter=0;
777
55.0k
    }else{
778
51.5k
      thisCenter=0;
779
51.5k
      prevCenter=n1;
780
51.5k
    }
781
782
    /* v->pcm is now used like a two-stage double buffer.  We don't want
783
       to have to constantly shift *or* adjust memory usage.  Don't
784
       accept a new block until the old is shifted out */
785
786
2.09M
    for(j=0;j<vi->channels;j++){
787
      /* the overlap/add section */
788
1.99M
      if(v->lW){
789
900k
        if(v->W){
790
          /* large/large */
791
892k
          const float *w=_vorbis_window_get(b->window[1]-hs);
792
892k
          float *pcm=v->pcm[j]+prevCenter;
793
892k
          float *p=vb->pcm[j];
794
999M
          for(i=0;i<n1;i++)
795
998M
            pcm[i]=pcm[i]*w[n1-i-1] + p[i]*w[i];
796
892k
        }else{
797
          /* large/small */
798
8.34k
          const float *w=_vorbis_window_get(b->window[0]-hs);
799
8.34k
          float *pcm=v->pcm[j]+prevCenter+n1/2-n0/2;
800
8.34k
          float *p=vb->pcm[j];
801
2.23M
          for(i=0;i<n0;i++)
802
2.22M
            pcm[i]=pcm[i]*w[n0-i-1] +p[i]*w[i];
803
8.34k
        }
804
1.09M
      }else{
805
1.09M
        if(v->W){
806
          /* small/large */
807
209k
          const float *w=_vorbis_window_get(b->window[0]-hs);
808
209k
          float *pcm=v->pcm[j]+prevCenter;
809
209k
          float *p=vb->pcm[j]+n1/2-n0/2;
810
67.6M
          for(i=0;i<n0;i++)
811
67.4M
            pcm[i]=pcm[i]*w[n0-i-1] +p[i]*w[i];
812
60.4M
          for(;i<n1/2+n0/2;i++)
813
60.1M
            pcm[i]=p[i];
814
883k
        }else{
815
          /* small/small */
816
883k
          const float *w=_vorbis_window_get(b->window[0]-hs);
817
883k
          float *pcm=v->pcm[j]+prevCenter;
818
883k
          float *p=vb->pcm[j];
819
379M
          for(i=0;i<n0;i++)
820
378M
            pcm[i]=pcm[i]*w[n0-i-1] +p[i]*w[i];
821
883k
        }
822
1.09M
      }
823
824
      /* the copy section */
825
1.99M
      {
826
1.99M
        float *pcm=v->pcm[j]+thisCenter;
827
1.99M
        float *p=vb->pcm[j]+n;
828
1.56G
        for(i=0;i<n;i++)
829
1.56G
          pcm[i]=p[i];
830
1.99M
      }
831
1.99M
    }
832
833
106k
    if(v->centerW)
834
55.0k
      v->centerW=0;
835
51.5k
    else
836
51.5k
      v->centerW=n1;
837
838
    /* deal with initial packet state; we do this using the explicit
839
       pcm_returned==-1 flag otherwise we're sensitive to first block
840
       being short or long */
841
842
106k
    if(v->pcm_returned==-1){
843
6.26k
      v->pcm_returned=thisCenter;
844
6.26k
      v->pcm_current=thisCenter;
845
100k
    }else{
846
100k
      v->pcm_returned=prevCenter;
847
100k
      v->pcm_current=prevCenter+
848
100k
        ((ci->blocksizes[v->lW]/4+
849
100k
        ci->blocksizes[v->W]/4)>>hs);
850
100k
    }
851
852
106k
  }
853
854
  /* track the frame number... This is for convenience, but also
855
     making sure our last packet doesn't end with added padding.  If
856
     the last packet is partial, the number of samples we'll have to
857
     return will be past the vb->granulepos.
858
859
     This is not foolproof!  It will be confused if we begin
860
     decoding at the last page after a seek or hole.  In that case,
861
     we don't have a starting point to judge where the last frame
862
     is.  For this reason, vorbisfile will always try to make sure
863
     it reads the last two marked pages in proper sequence */
864
865
106k
  if(b->sample_count==-1){
866
81.0k
    b->sample_count=0;
867
81.0k
  }else{
868
25.5k
    b->sample_count+=ci->blocksizes[v->lW]/4+ci->blocksizes[v->W]/4;
869
25.5k
  }
870
871
106k
  if(v->granulepos==-1){
872
103k
    if(vb->granulepos!=-1){ /* only set if we have a position to set to */
873
874
17.7k
      v->granulepos=vb->granulepos;
875
876
      /* is this a short page? */
877
17.7k
      if(b->sample_count>v->granulepos){
878
        /* corner case; if this is both the first and last audio page,
879
           then spec says the end is cut, not beginning */
880
6.86k
       long extra=b->sample_count-vb->granulepos;
881
882
        /* we use ogg_int64_t for granule positions because a
883
           uint64 isn't universally available.  Unfortunately,
884
           that means granposes can be 'negative' and result in
885
           extra being negative */
886
6.86k
        if(extra<0)
887
35
          extra=0;
888
889
6.86k
        if(vb->eofflag){
890
          /* trim the end */
891
          /* no preceding granulepos; assume we started at zero (we'd
892
             have to in a short single-page stream) */
893
          /* granulepos could be -1 due to a seek, but that would result
894
             in a long count, not short count */
895
896
          /* Guard against corrupt/malicious frames that set EOP and
897
             a backdated granpos; don't rewind more samples than we
898
             actually have */
899
3.59k
          if(extra > (v->pcm_current - v->pcm_returned)<<hs)
900
3.24k
            extra = (v->pcm_current - v->pcm_returned)<<hs;
901
902
3.59k
          v->pcm_current-=extra>>hs;
903
3.59k
        }else{
904
          /* trim the beginning */
905
3.26k
          v->pcm_returned+=extra>>hs;
906
3.26k
          if(v->pcm_returned>v->pcm_current)
907
1.58k
            v->pcm_returned=v->pcm_current;
908
3.26k
        }
909
910
6.86k
      }
911
912
17.7k
    }
913
103k
  }else{
914
2.78k
    v->granulepos+=ci->blocksizes[v->lW]/4+ci->blocksizes[v->W]/4;
915
2.78k
    if(vb->granulepos!=-1 && v->granulepos!=vb->granulepos){
916
917
2.05k
      if(v->granulepos>vb->granulepos){
918
1.72k
        long extra=v->granulepos-vb->granulepos;
919
920
1.72k
        if(extra)
921
1.72k
          if(vb->eofflag){
922
            /* partial last frame.  Strip the extra samples off */
923
924
            /* Guard against corrupt/malicious frames that set EOP and
925
               a backdated granpos; don't rewind more samples than we
926
               actually have */
927
1.06k
            if(extra > (v->pcm_current - v->pcm_returned)<<hs)
928
563
              extra = (v->pcm_current - v->pcm_returned)<<hs;
929
930
            /* we use ogg_int64_t for granule positions because a
931
               uint64 isn't universally available.  Unfortunately,
932
               that means granposes can be 'negative' and result in
933
               extra being negative */
934
1.06k
            if(extra<0)
935
393
              extra=0;
936
937
1.06k
            v->pcm_current-=extra>>hs;
938
1.06k
          } /* else {Shouldn't happen *unless* the bitstream is out of
939
               spec.  Either way, believe the bitstream } */
940
1.72k
      } /* else {Shouldn't happen *unless* the bitstream is out of
941
           spec.  Either way, believe the bitstream } */
942
2.05k
      v->granulepos=vb->granulepos;
943
2.05k
    }
944
2.78k
  }
945
946
  /* Update, cleanup */
947
948
106k
  if(vb->eofflag)v->eofflag=1;
949
106k
  return(0);
950
951
110k
}
952
953
/* pcm==NULL indicates we just want the pending samples, no more */
954
851k
int vorbis_synthesis_pcmout(vorbis_dsp_state *v,float ***pcm){
955
851k
  vorbis_info *vi=v->vi;
956
957
851k
  if(v->pcm_returned>-1 && v->pcm_returned<v->pcm_current){
958
588k
    if(pcm){
959
484k
      int i;
960
61.8M
      for(i=0;i<vi->channels;i++)
961
61.4M
        v->pcmret[i]=v->pcm[i]+v->pcm_returned;
962
484k
      *pcm=v->pcmret;
963
484k
    }
964
588k
    return(v->pcm_current-v->pcm_returned);
965
588k
  }
966
262k
  return(0);
967
851k
}
968
969
484k
int vorbis_synthesis_read(vorbis_dsp_state *v,int n){
970
484k
  if(n && v->pcm_returned+n>v->pcm_current)return(OV_EINVAL);
971
484k
  v->pcm_returned+=n;
972
484k
  return(0);
973
484k
}
974
975
/* intended for use with a specific vorbisfile feature; we want access
976
   to the [usually synthetic/postextrapolated] buffer and lapping at
977
   the end of a decode cycle, specifically, a half-short-block worth.
978
   This funtion works like pcmout above, except it will also expose
979
   this implicit buffer data not normally decoded. */
980
0
int vorbis_synthesis_lapout(vorbis_dsp_state *v,float ***pcm){
981
0
  vorbis_info *vi=v->vi;
982
0
  codec_setup_info *ci=vi->codec_setup;
983
0
  int hs=ci->halfrate_flag;
984
985
0
  int n=ci->blocksizes[v->W]>>(hs+1);
986
0
  int n0=ci->blocksizes[0]>>(hs+1);
987
0
  int n1=ci->blocksizes[1]>>(hs+1);
988
0
  int i,j;
989
990
0
  if(v->pcm_returned<0)return 0;
991
992
  /* our returned data ends at pcm_returned; because the synthesis pcm
993
     buffer is a two-fragment ring, that means our data block may be
994
     fragmented by buffering, wrapping or a short block not filling
995
     out a buffer.  To simplify things, we unfragment if it's at all
996
     possibly needed. Otherwise, we'd need to call lapout more than
997
     once as well as hold additional dsp state.  Opt for
998
     simplicity. */
999
1000
  /* centerW was advanced by blockin; it would be the center of the
1001
     *next* block */
1002
0
  if(v->centerW==n1){
1003
    /* the data buffer wraps; swap the halves */
1004
    /* slow, sure, small */
1005
0
    for(j=0;j<vi->channels;j++){
1006
0
      float *p=v->pcm[j];
1007
0
      for(i=0;i<n1;i++){
1008
0
        float temp=p[i];
1009
0
        p[i]=p[i+n1];
1010
0
        p[i+n1]=temp;
1011
0
      }
1012
0
    }
1013
1014
0
    v->pcm_current-=n1;
1015
0
    v->pcm_returned-=n1;
1016
0
    v->centerW=0;
1017
0
  }
1018
1019
  /* solidify buffer into contiguous space */
1020
0
  if((v->lW^v->W)==1){
1021
    /* long/short or short/long */
1022
0
    for(j=0;j<vi->channels;j++){
1023
0
      float *s=v->pcm[j];
1024
0
      float *d=v->pcm[j]+(n1-n0)/2;
1025
0
      for(i=(n1+n0)/2-1;i>=0;--i)
1026
0
        d[i]=s[i];
1027
0
    }
1028
0
    v->pcm_returned+=(n1-n0)/2;
1029
0
    v->pcm_current+=(n1-n0)/2;
1030
0
  }else{
1031
0
    if(v->lW==0){
1032
      /* short/short */
1033
0
      for(j=0;j<vi->channels;j++){
1034
0
        float *s=v->pcm[j];
1035
0
        float *d=v->pcm[j]+n1-n0;
1036
0
        for(i=n0-1;i>=0;--i)
1037
0
          d[i]=s[i];
1038
0
      }
1039
0
      v->pcm_returned+=n1-n0;
1040
0
      v->pcm_current+=n1-n0;
1041
0
    }
1042
0
  }
1043
1044
0
  if(pcm){
1045
0
    int i;
1046
0
    for(i=0;i<vi->channels;i++)
1047
0
      v->pcmret[i]=v->pcm[i]+v->pcm_returned;
1048
0
    *pcm=v->pcmret;
1049
0
  }
1050
1051
0
  return(n1+n-v->pcm_returned);
1052
1053
0
}
1054
1055
0
const float *vorbis_window(vorbis_dsp_state *v,int W){
1056
0
  vorbis_info *vi=v->vi;
1057
0
  codec_setup_info *ci=vi->codec_setup;
1058
0
  int hs=ci->halfrate_flag;
1059
0
  private_state *b=v->backend_state;
1060
1061
0
  if(b->window[W]-1<0)return NULL;
1062
0
  return _vorbis_window_get(b->window[W]-hs);
1063
0
}