Coverage Report

Created: 2026-05-23 07:06

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/vorbis/lib/sharedbook.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: basic shared codebook operations
14
15
 ********************************************************************/
16
17
#include <stdlib.h>
18
#include <limits.h>
19
#include <math.h>
20
#include <string.h>
21
#include <ogg/ogg.h>
22
#include "os.h"
23
#include "misc.h"
24
#include "vorbis/codec.h"
25
#include "codebook.h"
26
#include "scales.h"
27
28
/**** pack/unpack helpers ******************************************/
29
30
383k
int ov_ilog(ogg_uint32_t v){
31
383k
  int ret;
32
2.72M
  for(ret=0;v;ret++)v>>=1;
33
383k
  return ret;
34
383k
}
35
36
/* 32 bit float (not IEEE; nonnormalized mantissa +
37
   biased exponent) : neeeeeee eeemmmmm mmmmmmmm mmmmmmmm
38
   Why not IEEE?  It's just not that important here. */
39
40
#define VQ_FEXP 10
41
3.60k
#define VQ_FMAN 21
42
1.80k
#define VQ_FEXP_BIAS 768 /* bias toward values smaller than 1. */
43
44
/* doesn't currently guard under/overflow */
45
0
long _float32_pack(float val){
46
0
  int sign=0;
47
0
  long exp;
48
0
  long mant;
49
0
  if(val<0){
50
0
    sign=0x80000000;
51
0
    val= -val;
52
0
  }
53
0
  exp= floor(log(val)/log(2.f)+.001); /* +epsilon */
54
0
  mant=rint(ldexp(val,(VQ_FMAN-1)-exp));
55
0
  exp=(exp+VQ_FEXP_BIAS)<<VQ_FMAN;
56
57
0
  return(sign|exp|mant);
58
0
}
59
60
1.80k
float _float32_unpack(long val){
61
1.80k
  double mant=val&0x1fffff;
62
1.80k
  int    sign=val&0x80000000;
63
1.80k
  long   exp =(val&0x7fe00000L)>>VQ_FMAN;
64
1.80k
  if(sign)mant= -mant;
65
1.80k
  exp=exp-(VQ_FMAN-1)-VQ_FEXP_BIAS;
66
  /* clamp excessive exponent values */
67
1.80k
  if (exp>63){
68
47
    exp=63;
69
47
  }
70
1.80k
  if (exp<-63){
71
1.39k
    exp=-63;
72
1.39k
  }
73
1.80k
  return(ldexp(mant,exp));
74
1.80k
}
75
76
/* given a list of word lengths, generate a list of codewords.  Works
77
   for length ordered or unordered, always assigns the lowest valued
78
   codewords first.  Extended to handle unused entries (length 0) */
79
1.04k
ogg_uint32_t *_make_words(char *l,long n,long sparsecount){
80
1.04k
  long i,j,count=0;
81
1.04k
  ogg_uint32_t marker[33];
82
1.04k
  ogg_uint32_t *r=_ogg_malloc((sparsecount?sparsecount:n)*sizeof(*r));
83
1.04k
  memset(marker,0,sizeof(marker));
84
85
3.21k
  for(i=0;i<n;i++){
86
2.17k
    long length=l[i];
87
2.17k
    if(length>0){
88
2.16k
      ogg_uint32_t entry=marker[length];
89
90
      /* when we claim a node for an entry, we also claim the nodes
91
         below it (pruning off the imagined tree that may have dangled
92
         from it) as well as blocking the use of any nodes directly
93
         above for leaves */
94
95
      /* update ourself */
96
2.16k
      if(length<32 && (entry>>length)){
97
        /* error condition; the lengths must specify an overpopulated tree */
98
14
        _ogg_free(r);
99
14
        return(NULL);
100
14
      }
101
2.15k
      r[count++]=entry;
102
103
      /* Look to see if the next shorter marker points to the node
104
         above. if so, update it and repeat.  */
105
2.15k
      {
106
7.80k
        for(j=length;j>0;j--){
107
108
6.75k
          if(marker[j]&1){
109
            /* have to jump branches */
110
1.10k
            if(j==1)
111
277
              marker[1]++;
112
828
            else
113
828
              marker[j]=marker[j-1]<<1;
114
1.10k
            break; /* invariant says next upper marker would already
115
                      have been moved if it was on the same path */
116
1.10k
          }
117
5.64k
          marker[j]++;
118
5.64k
        }
119
2.15k
      }
120
121
      /* prune the tree; the implicit invariant says all the longer
122
         markers were dangling from our just-taken node.  Dangle them
123
         from our *new* node. */
124
40.0k
      for(j=length+1;j<33;j++)
125
38.5k
        if((marker[j]>>1) == entry){
126
37.9k
          entry=marker[j];
127
37.9k
          marker[j]=marker[j-1]<<1;
128
37.9k
        }else
129
586
          break;
130
2.15k
    }else
131
9
      if(sparsecount==0)count++;
132
2.17k
  }
133
134
  /* any underpopulated tree must be rejected. */
135
  /* Single-entry codebooks are a retconned extension to the spec.
136
     They have a single codeword '0' of length 1 that results in an
137
     underpopulated tree.  Shield that case from the underformed tree check. */
138
1.03k
  if(!(count==1 && marker[2]==2)){
139
8.62k
    for(i=1;i<33;i++)
140
8.37k
      if(marker[i] & (0xffffffffUL>>(32-i))){
141
134
        _ogg_free(r);
142
134
        return(NULL);
143
134
      }
144
391
  }
145
146
  /* bitreverse the words because our bitwise packer/unpacker is LSb
147
     endian */
148
2.05k
  for(i=0,count=0;i<n;i++){
149
1.15k
    ogg_uint32_t temp=0;
150
2.31k
    for(j=0;j<l[i];j++){
151
1.15k
      temp<<=1;
152
1.15k
      temp|=(r[count]>>j)&1;
153
1.15k
    }
154
155
1.15k
    if(sparsecount){
156
1.15k
      if(l[i])
157
1.15k
        r[count++]=temp;
158
1.15k
    }else
159
0
      r[count++]=temp;
160
1.15k
  }
161
162
901
  return(r);
163
1.03k
}
164
165
/* there might be a straightforward one-line way to do the below
166
   that's portable and totally safe against roundoff, but I haven't
167
   thought of it.  Therefore, we opt on the side of caution */
168
2.28k
long _book_maptype1_quantvals(const static_codebook *b){
169
2.28k
  long vals;
170
2.28k
  if(b->entries<1){
171
12
    return(0);
172
12
  }
173
2.27k
  vals=floor(pow((float)b->entries,1.f/b->dim));
174
175
  /* the above *should* be reliable, but we'll not assume that FP is
176
     ever reliable when bitstream sync is at stake; verify via integer
177
     means that vals really is the greatest value of dim for which
178
     vals^b->bim <= b->entries */
179
  /* treat the above as an initial guess */
180
2.27k
  if(vals<1){
181
0
    vals=1;
182
0
  }
183
2.27k
  while(1){
184
2.27k
    long acc=1;
185
2.27k
    long acc1=1;
186
2.27k
    int i;
187
27.8M
    for(i=0;i<b->dim;i++){
188
27.8M
      if(b->entries/vals<acc)break;
189
27.8M
      acc*=vals;
190
27.8M
      if(LONG_MAX/(vals+1)<acc1)acc1=LONG_MAX;
191
58.7k
      else acc1*=vals+1;
192
27.8M
    }
193
2.27k
    if(i>=b->dim && acc<=b->entries && acc1>b->entries){
194
2.27k
      return(vals);
195
2.27k
    }else{
196
0
      if(i<b->dim || acc>b->entries){
197
0
        vals--;
198
0
      }else{
199
0
        vals++;
200
0
      }
201
0
    }
202
2.27k
  }
203
2.27k
}
204
205
/* unpack the quantized list of values for encode/decode ***********/
206
/* we need to deal with two map types: in map type 1, the values are
207
   generated algorithmically (each column of the vector counts through
208
   the values in the quant vector). in map type 2, all the values came
209
   in in an explicit list.  Both value lists must be unpacked */
210
901
float *_book_unquantize(const static_codebook *b,int n,int *sparsemap){
211
901
  long j,k,count=0;
212
901
  if(b->maptype==1 || b->maptype==2){
213
901
    int quantvals;
214
901
    float mindel=_float32_unpack(b->q_min);
215
901
    float delta=_float32_unpack(b->q_delta);
216
901
    float *r=_ogg_calloc(n*b->dim,sizeof(*r));
217
218
    /* maptype 1 and 2 both use a quantized value vector, but
219
       different sizes */
220
901
    switch(b->maptype){
221
896
    case 1:
222
      /* most of the time, entries%dimensions == 0, but we need to be
223
         well defined.  We define that the possible vales at each
224
         scalar is values == entries/dim.  If entries%dim != 0, we'll
225
         have 'too few' values (values*dim<entries), which means that
226
         we'll have 'left over' entries; left over entries use zeroed
227
         values (and are wasted).  So don't generate codebooks like
228
         that */
229
896
      quantvals=_book_maptype1_quantvals(b);
230
2.04k
      for(j=0;j<b->entries;j++){
231
1.15k
        if((sparsemap && b->lengthlist[j]) || !sparsemap){
232
1.15k
          float last=0.f;
233
1.15k
          int indexdiv=1;
234
17.4M
          for(k=0;k<b->dim;k++){
235
17.4M
            int index= (j/indexdiv)%quantvals;
236
17.4M
            float val=b->quantlist[index];
237
17.4M
            val=fabs(val)*delta+mindel+last;
238
17.4M
            if(b->q_sequencep)last=val;
239
17.4M
            if(sparsemap)
240
17.4M
              r[sparsemap[count]*b->dim+k]=val;
241
0
            else
242
0
              r[count*b->dim+k]=val;
243
17.4M
            indexdiv*=quantvals;
244
17.4M
          }
245
1.15k
          count++;
246
1.15k
        }
247
248
1.15k
      }
249
896
      break;
250
5
    case 2:
251
10
      for(j=0;j<b->entries;j++){
252
5
        if((sparsemap && b->lengthlist[j]) || !sparsemap){
253
5
          float last=0.f;
254
255
12
          for(k=0;k<b->dim;k++){
256
7
            float val=b->quantlist[j*b->dim+k];
257
7
            val=fabs(val)*delta+mindel+last;
258
7
            if(b->q_sequencep)last=val;
259
7
            if(sparsemap)
260
7
              r[sparsemap[count]*b->dim+k]=val;
261
0
            else
262
0
              r[count*b->dim+k]=val;
263
7
          }
264
5
          count++;
265
5
        }
266
5
      }
267
5
      break;
268
901
    }
269
270
901
    return(r);
271
901
  }
272
0
  return(NULL);
273
901
}
274
275
1.68k
void vorbis_staticbook_destroy(static_codebook *b){
276
1.68k
  if(b->allocedp){
277
1.68k
    if(b->quantlist)_ogg_free(b->quantlist);
278
1.68k
    if(b->lengthlist)_ogg_free(b->lengthlist);
279
1.68k
    memset(b,0,sizeof(*b));
280
1.68k
    _ogg_free(b);
281
1.68k
  } /* otherwise, it is in static memory */
282
1.68k
}
283
284
1.19k
void vorbis_book_clear(codebook *b){
285
  /* static book is not cleared; we're likely called on the lookup and
286
     the static codebook belongs to the info struct */
287
1.19k
  if(b->valuelist)_ogg_free(b->valuelist);
288
1.19k
  if(b->codelist)_ogg_free(b->codelist);
289
290
1.19k
  if(b->dec_index)_ogg_free(b->dec_index);
291
1.19k
  if(b->dec_codelengths)_ogg_free(b->dec_codelengths);
292
1.19k
  if(b->dec_firsttable)_ogg_free(b->dec_firsttable);
293
294
1.19k
  memset(b,0,sizeof(*b));
295
1.19k
}
296
297
0
int vorbis_book_init_encode(codebook *c,const static_codebook *s){
298
299
0
  memset(c,0,sizeof(*c));
300
0
  c->c=s;
301
0
  c->entries=s->entries;
302
0
  c->used_entries=s->entries;
303
0
  c->dim=s->dim;
304
0
  c->codelist=_make_words(s->lengthlist,s->entries,0);
305
  /* c->valuelist=_book_unquantize(s,s->entries,NULL); */
306
0
  c->quantvals=_book_maptype1_quantvals(s);
307
0
  c->minval=(int)rint(_float32_unpack(s->q_min));
308
0
  c->delta=(int)rint(_float32_unpack(s->q_delta));
309
310
0
  return(0);
311
0
}
312
313
9.89k
static ogg_uint32_t bitreverse(ogg_uint32_t x){
314
9.89k
  x=    ((x>>16)&0x0000ffffUL) | ((x<<16)&0xffff0000UL);
315
9.89k
  x=    ((x>> 8)&0x00ff00ffUL) | ((x<< 8)&0xff00ff00UL);
316
9.89k
  x=    ((x>> 4)&0x0f0f0f0fUL) | ((x<< 4)&0xf0f0f0f0UL);
317
9.89k
  x=    ((x>> 2)&0x33333333UL) | ((x<< 2)&0xccccccccUL);
318
9.89k
  return((x>> 1)&0x55555555UL) | ((x<< 1)&0xaaaaaaaaUL);
319
9.89k
}
320
321
257
static int sort32a(const void *a,const void *b){
322
257
  return ( **(ogg_uint32_t **)a>**(ogg_uint32_t **)b)-
323
257
    ( **(ogg_uint32_t **)a<**(ogg_uint32_t **)b);
324
257
}
325
326
/* decode codebook arrangement is more heavily optimized than encode */
327
1.04k
int vorbis_book_init_decode(codebook *c,const static_codebook *s){
328
1.04k
  int i,j,n=0,tabn;
329
1.04k
  int *sortindex=NULL;
330
1.04k
  ogg_uint32_t *codes=NULL;
331
1.04k
  ogg_uint32_t **codep=NULL;
332
333
1.04k
  memset(c,0,sizeof(*c));
334
335
  /* count actually used entries and find max length */
336
4.04k
  for(i=0;i<s->entries;i++)
337
2.99k
    if(s->lengthlist[i]>0)
338
2.98k
      n++;
339
340
1.04k
  c->entries=s->entries;
341
1.04k
  c->used_entries=n;
342
1.04k
  c->dim=s->dim;
343
344
1.04k
  if(n>0){
345
    /* two different remappings go on here.
346
347
    First, we collapse the likely sparse codebook down only to
348
    actually represented values/words.  This collapsing needs to be
349
    indexed as map-valueless books are used to encode original entry
350
    positions as integers.
351
352
    Second, we reorder all vectors, including the entry index above,
353
    by sorted bitreversed codeword to allow treeless decode. */
354
355
    /* perform sort */
356
1.04k
    codes=_make_words(s->lengthlist,s->entries,c->used_entries);
357
1.04k
    if(codes==NULL)goto err_out;
358
359
901
    codep=_ogg_malloc(sizeof(*codep)*n);
360
901
    if(codep==NULL)goto err_out;
361
362
2.05k
    for(i=0;i<n;i++){
363
1.15k
      codes[i]=bitreverse(codes[i]);
364
1.15k
      codep[i]=codes+i;
365
1.15k
    }
366
367
901
    qsort(codep,n,sizeof(*codep),sort32a);
368
369
901
    sortindex=_ogg_malloc(n*sizeof(*sortindex));
370
901
    if(sortindex==NULL)goto err_out;
371
372
901
    c->codelist=_ogg_malloc(n*sizeof(*c->codelist));
373
901
    if(c->codelist==NULL)goto err_out;
374
    /* the index is a reverse index */
375
2.05k
    for(i=0;i<n;i++){
376
1.15k
      int position=codep[i]-codes;
377
1.15k
      sortindex[position]=i;
378
1.15k
    }
379
901
    _ogg_free(codep); codep=NULL;
380
381
2.05k
    for(i=0;i<n;i++)
382
1.15k
      c->codelist[sortindex[i]]=codes[i];
383
901
    _ogg_free(codes); codes=NULL;
384
385
901
    c->valuelist=_book_unquantize(s,n,sortindex);
386
901
    c->dec_index=_ogg_malloc(n*sizeof(*c->dec_index));
387
901
    if(c->dec_index==NULL)goto err_out;
388
389
2.05k
    for(n=0,i=0;i<s->entries;i++)
390
1.15k
      if(s->lengthlist[i]>0)
391
1.15k
        c->dec_index[sortindex[n++]]=i;
392
393
901
    c->dec_codelengths=_ogg_malloc(n*sizeof(*c->dec_codelengths));
394
901
    if(c->dec_codelengths==NULL)goto err_out;
395
901
    c->dec_maxlength=0;
396
2.05k
    for(n=0,i=0;i<s->entries;i++)
397
1.15k
      if(s->lengthlist[i]>0){
398
1.15k
        c->dec_codelengths[sortindex[n++]]=s->lengthlist[i];
399
1.15k
        if(s->lengthlist[i]>c->dec_maxlength)
400
901
          c->dec_maxlength=s->lengthlist[i];
401
1.15k
      }
402
901
    _ogg_free(sortindex); sortindex=NULL;
403
404
901
    if(n==1 && c->dec_maxlength==1){
405
      /* special case the 'single entry codebook' with a single bit
406
       fastpath table (that always returns entry 0 )in order to use
407
       unmodified decode paths. */
408
644
      c->dec_firsttablen=1;
409
644
      c->dec_firsttable=_ogg_calloc(2,sizeof(*c->dec_firsttable));
410
644
      if(c->dec_firsttable==NULL)goto err_out;
411
644
      c->dec_firsttable[0]=c->dec_firsttable[1]=1;
412
413
644
    }else{
414
257
      c->dec_firsttablen=ov_ilog(c->used_entries)-4; /* this is magic */
415
257
      if(c->dec_firsttablen<5)c->dec_firsttablen=5;
416
257
      if(c->dec_firsttablen>8)c->dec_firsttablen=8;
417
418
257
      tabn=1<<c->dec_firsttablen;
419
257
      c->dec_firsttable=_ogg_calloc(tabn,sizeof(*c->dec_firsttable));
420
257
      if(c->dec_firsttable==NULL)goto err_out;
421
422
771
      for(i=0;i<n;i++){
423
514
        if(c->dec_codelengths[i]<=c->dec_firsttablen){
424
514
          ogg_uint32_t orig=bitreverse(c->codelist[i]);
425
8.73k
          for(j=0;j<(1<<(c->dec_firsttablen-c->dec_codelengths[i]));j++)
426
8.22k
            c->dec_firsttable[orig|(j<<c->dec_codelengths[i])]=i+1;
427
514
        }
428
514
      }
429
430
      /* now fill in 'unused' entries in the firsttable with hi/lo search
431
         hints for the non-direct-hits */
432
257
      {
433
257
        ogg_uint32_t mask=0xfffffffeUL<<(31-c->dec_firsttablen);
434
257
        long lo=0,hi=0;
435
436
8.48k
        for(i=0;i<tabn;i++){
437
8.22k
          ogg_uint32_t word=((ogg_uint32_t)i<<(32-c->dec_firsttablen));
438
8.22k
          if(c->dec_firsttable[bitreverse(word)]==0){
439
0
            while((lo+1)<n && c->codelist[lo+1]<=word)lo++;
440
0
            while(    hi<n && word>=(c->codelist[hi]&mask))hi++;
441
442
            /* we only actually have 15 bits per hint to play with here.
443
               In order to overflow gracefully (nothing breaks, efficiency
444
               just drops), encode as the difference from the extremes. */
445
0
            {
446
0
              unsigned long loval=lo;
447
0
              unsigned long hival=n-hi;
448
449
0
              if(loval>0x7fff)loval=0x7fff;
450
0
              if(hival>0x7fff)hival=0x7fff;
451
0
              c->dec_firsttable[bitreverse(word)]=
452
0
                0x80000000UL | (loval<<15) | hival;
453
0
            }
454
0
          }
455
8.22k
        }
456
257
      }
457
257
    }
458
901
  }
459
460
901
  return(0);
461
148
 err_out:
462
148
  _ogg_free(sortindex);
463
148
  _ogg_free(codep);
464
148
  _ogg_free(codes);
465
148
  vorbis_book_clear(c);
466
148
  return(-1);
467
1.04k
}
468
469
0
long vorbis_book_codeword(codebook *book,int entry){
470
0
  if(book->c) /* only use with encode; decode optimizations are
471
                 allowed to break this */
472
0
    return book->codelist[entry];
473
0
  return -1;
474
0
}
475
476
0
long vorbis_book_codelen(codebook *book,int entry){
477
0
  if(book->c) /* only use with encode; decode optimizations are
478
                 allowed to break this */
479
0
    return book->c->lengthlist[entry];
480
0
  return -1;
481
0
}
482
483
#ifdef _V_SELFTEST
484
485
/* Unit tests of the dequantizer; this stuff will be OK
486
   cross-platform, I simply want to be sure that special mapping cases
487
   actually work properly; a bug could go unnoticed for a while */
488
489
#include <stdio.h>
490
491
/* cases:
492
493
   no mapping
494
   full, explicit mapping
495
   algorithmic mapping
496
497
   nonsequential
498
   sequential
499
*/
500
501
static long full_quantlist1[]={0,1,2,3,    4,5,6,7, 8,3,6,1};
502
static long partial_quantlist1[]={0,7,2};
503
504
/* no mapping */
505
static_codebook test1={
506
  4,16,
507
  NULL,
508
  0,
509
  0,0,0,0,
510
  NULL,
511
  0
512
};
513
static float *test1_result=NULL;
514
515
/* linear, full mapping, nonsequential */
516
static_codebook test2={
517
  4,3,
518
  NULL,
519
  2,
520
  -533200896,1611661312,4,0,
521
  full_quantlist1,
522
  0
523
};
524
static float test2_result[]={-3,-2,-1,0, 1,2,3,4, 5,0,3,-2};
525
526
/* linear, full mapping, sequential */
527
static_codebook test3={
528
  4,3,
529
  NULL,
530
  2,
531
  -533200896,1611661312,4,1,
532
  full_quantlist1,
533
  0
534
};
535
static float test3_result[]={-3,-5,-6,-6, 1,3,6,10, 5,5,8,6};
536
537
/* linear, algorithmic mapping, nonsequential */
538
static_codebook test4={
539
  3,27,
540
  NULL,
541
  1,
542
  -533200896,1611661312,4,0,
543
  partial_quantlist1,
544
  0
545
};
546
static float test4_result[]={-3,-3,-3, 4,-3,-3, -1,-3,-3,
547
                              -3, 4,-3, 4, 4,-3, -1, 4,-3,
548
                              -3,-1,-3, 4,-1,-3, -1,-1,-3,
549
                              -3,-3, 4, 4,-3, 4, -1,-3, 4,
550
                              -3, 4, 4, 4, 4, 4, -1, 4, 4,
551
                              -3,-1, 4, 4,-1, 4, -1,-1, 4,
552
                              -3,-3,-1, 4,-3,-1, -1,-3,-1,
553
                              -3, 4,-1, 4, 4,-1, -1, 4,-1,
554
                              -3,-1,-1, 4,-1,-1, -1,-1,-1};
555
556
/* linear, algorithmic mapping, sequential */
557
static_codebook test5={
558
  3,27,
559
  NULL,
560
  1,
561
  -533200896,1611661312,4,1,
562
  partial_quantlist1,
563
  0
564
};
565
static float test5_result[]={-3,-6,-9, 4, 1,-2, -1,-4,-7,
566
                              -3, 1,-2, 4, 8, 5, -1, 3, 0,
567
                              -3,-4,-7, 4, 3, 0, -1,-2,-5,
568
                              -3,-6,-2, 4, 1, 5, -1,-4, 0,
569
                              -3, 1, 5, 4, 8,12, -1, 3, 7,
570
                              -3,-4, 0, 4, 3, 7, -1,-2, 2,
571
                              -3,-6,-7, 4, 1, 0, -1,-4,-5,
572
                              -3, 1, 0, 4, 8, 7, -1, 3, 2,
573
                              -3,-4,-5, 4, 3, 2, -1,-2,-3};
574
575
void run_test(static_codebook *b,float *comp){
576
  float *out=_book_unquantize(b,b->entries,NULL);
577
  int i;
578
579
  if(comp){
580
    if(!out){
581
      fprintf(stderr,"_book_unquantize incorrectly returned NULL\n");
582
      exit(1);
583
    }
584
585
    for(i=0;i<b->entries*b->dim;i++)
586
      if(fabs(out[i]-comp[i])>.0001){
587
        fprintf(stderr,"disagreement in unquantized and reference data:\n"
588
                "position %d, %g != %g\n",i,out[i],comp[i]);
589
        exit(1);
590
      }
591
592
  }else{
593
    if(out){
594
      fprintf(stderr,"_book_unquantize returned a value array: \n"
595
              " correct result should have been NULL\n");
596
      exit(1);
597
    }
598
  }
599
  _ogg_free(out);
600
}
601
602
int main(){
603
  /* run the nine dequant tests, and compare to the hand-rolled results */
604
  fprintf(stderr,"Dequant test 1... ");
605
  run_test(&test1,test1_result);
606
  fprintf(stderr,"OK\nDequant test 2... ");
607
  run_test(&test2,test2_result);
608
  fprintf(stderr,"OK\nDequant test 3... ");
609
  run_test(&test3,test3_result);
610
  fprintf(stderr,"OK\nDequant test 4... ");
611
  run_test(&test4,test4_result);
612
  fprintf(stderr,"OK\nDequant test 5... ");
613
  run_test(&test5,test5_result);
614
  fprintf(stderr,"OK\n\n");
615
616
  return(0);
617
}
618
619
#endif