Coverage Report

Created: 2025-10-13 06:54

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/speex/libspeex/bits.c
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Source
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/* Copyright (C) 2002 Jean-Marc Valin
2
   File: speex_bits.c
3
4
   Handles bit packing/unpacking
5
6
   Redistribution and use in source and binary forms, with or without
7
   modification, are permitted provided that the following conditions
8
   are met:
9
10
   - Redistributions of source code must retain the above copyright
11
   notice, this list of conditions and the following disclaimer.
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13
   - Redistributions in binary form must reproduce the above copyright
14
   notice, this list of conditions and the following disclaimer in the
15
   documentation and/or other materials provided with the distribution.
16
17
   - Neither the name of the Xiph.org Foundation nor the names of its
18
   contributors may be used to endorse or promote products derived from
19
   this software without specific prior written permission.
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21
   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
22
   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
23
   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
25
   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
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   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
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   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
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   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
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   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
31
   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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35
#ifdef HAVE_CONFIG_H
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#include "config.h"
37
#endif
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39
#include "speex/speex_bits.h"
40
#include "arch.h"
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#include "os_support.h"
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43
/* Maximum size of the bit-stream (for fixed-size allocation) */
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#ifndef MAX_CHARS_PER_FRAME
45
5.06k
#define MAX_CHARS_PER_FRAME (2000/BYTES_PER_CHAR)
46
#endif
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48
EXPORT void speex_bits_init(SpeexBits *bits)
49
2.53k
{
50
2.53k
   bits->chars = (char*)speex_alloc(MAX_CHARS_PER_FRAME);
51
2.53k
   if (!bits->chars)
52
0
      return;
53
54
2.53k
   bits->buf_size = MAX_CHARS_PER_FRAME;
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56
2.53k
   bits->owner=1;
57
58
2.53k
   speex_bits_reset(bits);
59
2.53k
}
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61
EXPORT void speex_bits_init_buffer(SpeexBits *bits, void *buff, int buf_size)
62
0
{
63
0
   bits->chars = (char*)buff;
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0
   bits->buf_size = buf_size;
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66
0
   bits->owner=0;
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68
0
   speex_bits_reset(bits);
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0
}
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71
EXPORT void speex_bits_set_bit_buffer(SpeexBits *bits, void *buff, int buf_size)
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0
{
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0
   bits->chars = (char*)buff;
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0
   bits->buf_size = buf_size;
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76
0
   bits->owner=0;
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78
0
   bits->nbBits=buf_size<<LOG2_BITS_PER_CHAR;
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0
   bits->charPtr=0;
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0
   bits->bitPtr=0;
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0
   bits->overflow=0;
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83
0
}
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85
EXPORT void speex_bits_destroy(SpeexBits *bits)
86
2.53k
{
87
2.53k
   if (bits->owner)
88
2.53k
      speex_free(bits->chars);
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   /* Will do something once the allocation is dynamic */
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2.53k
}
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92
EXPORT void speex_bits_reset(SpeexBits *bits)
93
2.53k
{
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   /* We only need to clear the first byte now */
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2.53k
   bits->chars[0]=0;
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2.53k
   bits->nbBits=0;
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2.53k
   bits->charPtr=0;
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2.53k
   bits->bitPtr=0;
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2.53k
   bits->overflow=0;
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2.53k
}
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102
EXPORT void speex_bits_rewind(SpeexBits *bits)
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0
{
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0
   bits->charPtr=0;
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0
   bits->bitPtr=0;
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0
   bits->overflow=0;
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0
}
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109
EXPORT void speex_bits_read_from(SpeexBits *bits, const char *chars, int len)
110
22.5k
{
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22.5k
   int i;
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22.5k
   int nchars = len / BYTES_PER_CHAR;
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22.5k
   if (nchars > bits->buf_size)
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17
   {
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17
      speex_notify("Packet is larger than allocated buffer");
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17
      if (bits->owner)
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17
      {
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17
         char *tmp = (char*)speex_realloc(bits->chars, nchars);
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17
         if (tmp)
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17
         {
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17
            bits->buf_size=nchars;
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17
            bits->chars=tmp;
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17
         } else {
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0
            nchars=bits->buf_size;
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0
            speex_warning("Could not resize input buffer: truncating input");
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0
         }
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17
      } else {
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0
         speex_warning("Do not own input buffer: truncating oversize input");
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0
         nchars=bits->buf_size;
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0
      }
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17
   }
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#if (BYTES_PER_CHAR==2)
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/* Swap bytes to proper endian order (could be done externally) */
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#define HTOLS(A) ((((A) >> 8)&0xff)|(((A) & 0xff)<<8))
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#else
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184k
#define HTOLS(A) (A)
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22.5k
#endif
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206k
   for (i=0;i<nchars;i++)
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184k
      bits->chars[i]=HTOLS(chars[i]);
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22.5k
   bits->nbBits=nchars<<LOG2_BITS_PER_CHAR;
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22.5k
   bits->charPtr=0;
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22.5k
   bits->bitPtr=0;
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22.5k
   bits->overflow=0;
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22.5k
}
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static void speex_bits_flush(SpeexBits *bits)
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0
{
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0
   int nchars = ((bits->nbBits+BITS_PER_CHAR-1)>>LOG2_BITS_PER_CHAR);
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0
   if (bits->charPtr>0)
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0
      SPEEX_MOVE(bits->chars, &bits->chars[bits->charPtr], nchars-bits->charPtr);
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0
   bits->nbBits -= bits->charPtr<<LOG2_BITS_PER_CHAR;
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0
   bits->charPtr=0;
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0
}
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EXPORT void speex_bits_read_whole_bytes(SpeexBits *bits, const char *chars, int nbytes)
157
0
{
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0
   int i,pos;
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0
   int nchars = nbytes/BYTES_PER_CHAR;
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161
0
   if (((bits->nbBits+BITS_PER_CHAR-1)>>LOG2_BITS_PER_CHAR)+nchars > bits->buf_size)
162
0
   {
163
      /* Packet is larger than allocated buffer */
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0
      if (bits->owner)
165
0
      {
166
0
         char *tmp = (char*)speex_realloc(bits->chars, (bits->nbBits>>LOG2_BITS_PER_CHAR)+nchars+1);
167
0
         if (tmp)
168
0
         {
169
0
            bits->buf_size=(bits->nbBits>>LOG2_BITS_PER_CHAR)+nchars+1;
170
0
            bits->chars=tmp;
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0
         } else {
172
0
            nchars=bits->buf_size-(bits->nbBits>>LOG2_BITS_PER_CHAR)-1;
173
0
            speex_warning("Could not resize input buffer: truncating oversize input");
174
0
         }
175
0
      } else {
176
0
         speex_warning("Do not own input buffer: truncating oversize input");
177
0
         nchars=bits->buf_size;
178
0
      }
179
0
   }
180
181
0
   speex_bits_flush(bits);
182
0
   pos=bits->nbBits>>LOG2_BITS_PER_CHAR;
183
0
   for (i=0;i<nchars;i++)
184
0
      bits->chars[pos+i]=HTOLS(chars[i]);
185
0
   bits->nbBits+=nchars<<LOG2_BITS_PER_CHAR;
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0
}
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188
EXPORT int speex_bits_write(SpeexBits *bits, char *chars, int max_nbytes)
189
0
{
190
0
   int i;
191
0
   int max_nchars = max_nbytes/BYTES_PER_CHAR;
192
0
   int charPtr, bitPtr, nbBits;
193
194
   /* Insert terminator, but save the data so we can put it back after */
195
0
   bitPtr=bits->bitPtr;
196
0
   charPtr=bits->charPtr;
197
0
   nbBits=bits->nbBits;
198
0
   speex_bits_insert_terminator(bits);
199
0
   bits->bitPtr=bitPtr;
200
0
   bits->charPtr=charPtr;
201
0
   bits->nbBits=nbBits;
202
203
0
   if (max_nchars > ((bits->nbBits+BITS_PER_CHAR-1)>>LOG2_BITS_PER_CHAR))
204
0
      max_nchars = ((bits->nbBits+BITS_PER_CHAR-1)>>LOG2_BITS_PER_CHAR);
205
206
0
   for (i=0;i<max_nchars;i++)
207
0
      chars[i]=HTOLS(bits->chars[i]);
208
0
   return max_nchars*BYTES_PER_CHAR;
209
0
}
210
211
EXPORT int speex_bits_write_whole_bytes(SpeexBits *bits, char *chars, int max_nbytes)
212
0
{
213
0
   int max_nchars = max_nbytes/BYTES_PER_CHAR;
214
0
   int i;
215
0
   if (max_nchars > ((bits->nbBits)>>LOG2_BITS_PER_CHAR))
216
0
      max_nchars = ((bits->nbBits)>>LOG2_BITS_PER_CHAR);
217
0
   for (i=0;i<max_nchars;i++)
218
0
      chars[i]=HTOLS(bits->chars[i]);
219
220
0
   if (bits->bitPtr>0)
221
0
      bits->chars[0]=bits->chars[max_nchars];
222
0
   else
223
0
      bits->chars[0]=0;
224
0
   bits->charPtr=0;
225
0
   bits->nbBits &= (BITS_PER_CHAR-1);
226
0
   return max_nchars*BYTES_PER_CHAR;
227
0
}
228
229
EXPORT void speex_bits_pack(SpeexBits *bits, int data, int nbBits)
230
0
{
231
0
   unsigned int d=data;
232
233
0
   if (bits->charPtr+((nbBits+bits->bitPtr)>>LOG2_BITS_PER_CHAR) >= bits->buf_size)
234
0
   {
235
0
      speex_notify("Buffer too small to pack bits");
236
0
      if (bits->owner)
237
0
      {
238
0
         int new_nchars = ((bits->buf_size+5)*3)>>1;
239
0
         char *tmp = (char*)speex_realloc(bits->chars, new_nchars);
240
0
         if (tmp)
241
0
         {
242
0
            bits->buf_size=new_nchars;
243
0
            bits->chars=tmp;
244
0
         } else {
245
0
            speex_warning("Could not resize input buffer: not packing");
246
0
            return;
247
0
         }
248
0
      } else {
249
0
         speex_warning("Do not own input buffer: not packing");
250
0
         return;
251
0
      }
252
0
   }
253
254
0
   while(nbBits)
255
0
   {
256
0
      int bit;
257
0
      bit = (d>>(nbBits-1))&1;
258
0
      bits->chars[bits->charPtr] |= bit<<(BITS_PER_CHAR-1-bits->bitPtr);
259
0
      bits->bitPtr++;
260
261
0
      if (bits->bitPtr==BITS_PER_CHAR)
262
0
      {
263
0
         bits->bitPtr=0;
264
0
         bits->charPtr++;
265
0
         bits->chars[bits->charPtr] = 0;
266
0
      }
267
0
      bits->nbBits++;
268
0
      nbBits--;
269
0
   }
270
0
}
271
272
EXPORT int speex_bits_unpack_signed(SpeexBits *bits, int nbBits)
273
0
{
274
0
   unsigned int d=speex_bits_unpack_unsigned(bits,nbBits);
275
   /* If number is negative */
276
0
   if (d>>(nbBits-1))
277
0
   {
278
0
      d |= (~0u)<<nbBits;
279
0
   }
280
0
   return d;
281
0
}
282
283
EXPORT unsigned int speex_bits_unpack_unsigned(SpeexBits *bits, int nbBits)
284
456k
{
285
456k
   unsigned int d=0;
286
456k
   if ((bits->charPtr<<LOG2_BITS_PER_CHAR)+bits->bitPtr+nbBits>bits->nbBits)
287
280k
      bits->overflow=1;
288
456k
   if (bits->overflow)
289
331k
      return 0;
290
588k
   while(nbBits)
291
463k
   {
292
463k
      d<<=1;
293
463k
      d |= (bits->chars[bits->charPtr]>>(BITS_PER_CHAR-1 - bits->bitPtr))&1;
294
463k
      bits->bitPtr++;
295
463k
      if (bits->bitPtr==BITS_PER_CHAR)
296
47.7k
      {
297
47.7k
         bits->bitPtr=0;
298
47.7k
         bits->charPtr++;
299
47.7k
      }
300
463k
      nbBits--;
301
463k
   }
302
124k
   return d;
303
456k
}
304
305
EXPORT unsigned int speex_bits_peek_unsigned(SpeexBits *bits, int nbBits)
306
0
{
307
0
   unsigned int d=0;
308
0
   int bitPtr, charPtr;
309
0
   char *chars;
310
311
0
   if ((bits->charPtr<<LOG2_BITS_PER_CHAR)+bits->bitPtr+nbBits>bits->nbBits)
312
0
     bits->overflow=1;
313
0
   if (bits->overflow)
314
0
      return 0;
315
316
0
   bitPtr=bits->bitPtr;
317
0
   charPtr=bits->charPtr;
318
0
   chars = bits->chars;
319
0
   while(nbBits)
320
0
   {
321
0
      d<<=1;
322
0
      d |= (chars[charPtr]>>(BITS_PER_CHAR-1 - bitPtr))&1;
323
0
      bitPtr++;
324
0
      if (bitPtr==BITS_PER_CHAR)
325
0
      {
326
0
         bitPtr=0;
327
0
         charPtr++;
328
0
      }
329
0
      nbBits--;
330
0
   }
331
0
   return d;
332
0
}
333
334
EXPORT int speex_bits_peek(SpeexBits *bits)
335
12.5k
{
336
12.5k
   if ((bits->charPtr<<LOG2_BITS_PER_CHAR)+bits->bitPtr+1>bits->nbBits)
337
0
      bits->overflow=1;
338
12.5k
   if (bits->overflow)
339
0
      return 0;
340
12.5k
   return (bits->chars[bits->charPtr]>>(BITS_PER_CHAR-1 - bits->bitPtr))&1;
341
12.5k
}
342
343
EXPORT void speex_bits_advance(SpeexBits *bits, int n)
344
5.96k
{
345
5.96k
    if (((bits->charPtr<<LOG2_BITS_PER_CHAR)+bits->bitPtr+n>bits->nbBits) || bits->overflow){
346
2.61k
      bits->overflow=1;
347
2.61k
      return;
348
2.61k
    }
349
3.34k
   bits->charPtr += (bits->bitPtr+n) >> LOG2_BITS_PER_CHAR; /* divide by BITS_PER_CHAR */
350
3.34k
   bits->bitPtr = (bits->bitPtr+n) & (BITS_PER_CHAR-1);       /* modulo by BITS_PER_CHAR */
351
3.34k
}
352
353
EXPORT int speex_bits_remaining(SpeexBits *bits)
354
101k
{
355
101k
   if (bits->overflow)
356
24.8k
      return -1;
357
76.7k
   else
358
76.7k
      return bits->nbBits-((bits->charPtr<<LOG2_BITS_PER_CHAR)+bits->bitPtr);
359
101k
}
360
361
EXPORT int speex_bits_nbytes(SpeexBits *bits)
362
0
{
363
0
   return ((bits->nbBits+BITS_PER_CHAR-1)>>LOG2_BITS_PER_CHAR);
364
0
}
365
366
EXPORT void speex_bits_insert_terminator(SpeexBits *bits)
367
0
{
368
0
   if (bits->bitPtr)
369
0
      speex_bits_pack(bits, 0, 1);
370
0
   while (bits->bitPtr)
371
0
      speex_bits_pack(bits, 1, 1);
372
0
}