Coverage Report

Created: 2025-10-13 06:42

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/aac/libSBRdec/src/psbitdec.cpp
Line
Count
Source
1
/* -----------------------------------------------------------------------------
2
Software License for The Fraunhofer FDK AAC Codec Library for Android
3
4
© Copyright  1995 - 2018 Fraunhofer-Gesellschaft zur Förderung der angewandten
5
Forschung e.V. All rights reserved.
6
7
 1.    INTRODUCTION
8
The Fraunhofer FDK AAC Codec Library for Android ("FDK AAC Codec") is software
9
that implements the MPEG Advanced Audio Coding ("AAC") encoding and decoding
10
scheme for digital audio. This FDK AAC Codec software is intended to be used on
11
a wide variety of Android devices.
12
13
AAC's HE-AAC and HE-AAC v2 versions are regarded as today's most efficient
14
general perceptual audio codecs. AAC-ELD is considered the best-performing
15
full-bandwidth communications codec by independent studies and is widely
16
deployed. AAC has been standardized by ISO and IEC as part of the MPEG
17
specifications.
18
19
Patent licenses for necessary patent claims for the FDK AAC Codec (including
20
those of Fraunhofer) may be obtained through Via Licensing
21
(www.vialicensing.com) or through the respective patent owners individually for
22
the purpose of encoding or decoding bit streams in products that are compliant
23
with the ISO/IEC MPEG audio standards. Please note that most manufacturers of
24
Android devices already license these patent claims through Via Licensing or
25
directly from the patent owners, and therefore FDK AAC Codec software may
26
already be covered under those patent licenses when it is used for those
27
licensed purposes only.
28
29
Commercially-licensed AAC software libraries, including floating-point versions
30
with enhanced sound quality, are also available from Fraunhofer. Users are
31
encouraged to check the Fraunhofer website for additional applications
32
information and documentation.
33
34
2.    COPYRIGHT LICENSE
35
36
Redistribution and use in source and binary forms, with or without modification,
37
are permitted without payment of copyright license fees provided that you
38
satisfy the following conditions:
39
40
You must retain the complete text of this software license in redistributions of
41
the FDK AAC Codec or your modifications thereto in source code form.
42
43
You must retain the complete text of this software license in the documentation
44
and/or other materials provided with redistributions of the FDK AAC Codec or
45
your modifications thereto in binary form. You must make available free of
46
charge copies of the complete source code of the FDK AAC Codec and your
47
modifications thereto to recipients of copies in binary form.
48
49
The name of Fraunhofer may not be used to endorse or promote products derived
50
from this library without prior written permission.
51
52
You may not charge copyright license fees for anyone to use, copy or distribute
53
the FDK AAC Codec software or your modifications thereto.
54
55
Your modified versions of the FDK AAC Codec must carry prominent notices stating
56
that you changed the software and the date of any change. For modified versions
57
of the FDK AAC Codec, the term "Fraunhofer FDK AAC Codec Library for Android"
58
must be replaced by the term "Third-Party Modified Version of the Fraunhofer FDK
59
AAC Codec Library for Android."
60
61
3.    NO PATENT LICENSE
62
63
NO EXPRESS OR IMPLIED LICENSES TO ANY PATENT CLAIMS, including without
64
limitation the patents of Fraunhofer, ARE GRANTED BY THIS SOFTWARE LICENSE.
65
Fraunhofer provides no warranty of patent non-infringement with respect to this
66
software.
67
68
You may use this FDK AAC Codec software or modifications thereto only for
69
purposes that are authorized by appropriate patent licenses.
70
71
4.    DISCLAIMER
72
73
This FDK AAC Codec software is provided by Fraunhofer on behalf of the copyright
74
holders and contributors "AS IS" and WITHOUT ANY EXPRESS OR IMPLIED WARRANTIES,
75
including but not limited to the implied warranties of merchantability and
76
fitness for a particular purpose. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
77
CONTRIBUTORS BE LIABLE for any direct, indirect, incidental, special, exemplary,
78
or consequential damages, including but not limited to procurement of substitute
79
goods or services; loss of use, data, or profits, or business interruption,
80
however caused and on any theory of liability, whether in contract, strict
81
liability, or tort (including negligence), arising in any way out of the use of
82
this software, even if advised of the possibility of such damage.
83
84
5.    CONTACT INFORMATION
85
86
Fraunhofer Institute for Integrated Circuits IIS
87
Attention: Audio and Multimedia Departments - FDK AAC LL
88
Am Wolfsmantel 33
89
91058 Erlangen, Germany
90
91
www.iis.fraunhofer.de/amm
92
amm-info@iis.fraunhofer.de
93
----------------------------------------------------------------------------- */
94
95
/**************************** SBR decoder library ******************************
96
97
   Author(s):
98
99
   Description:
100
101
*******************************************************************************/
102
103
#include "psbitdec.h"
104
105
#include "sbr_rom.h"
106
#include "huff_dec.h"
107
108
/* PS dec privat functions */
109
SBR_ERROR ResetPsDec(HANDLE_PS_DEC h_ps_d);
110
111
/***************************************************************************/
112
/*!
113
  \brief  huffman decoding by codebook table
114
115
  \return index of huffman codebook table
116
117
****************************************************************************/
118
static SCHAR decode_huff_cw(
119
    Huffman h,                    /*!< pointer to huffman codebook table */
120
    HANDLE_FDK_BITSTREAM hBitBuf, /*!< Handle to Bitbuffer */
121
    int *length)                  /*!< length of huffman codeword (or NULL) */
122
274k
{
123
274k
  UCHAR bit = 0;
124
274k
  SCHAR index = 0;
125
274k
  UCHAR bitCount = 0;
126
127
900k
  while (index >= 0) {
128
625k
    bit = FDKreadBits(hBitBuf, 1);
129
625k
    bitCount++;
130
625k
    index = h[index][bit];
131
625k
  }
132
274k
  if (length) {
133
0
    *length = bitCount;
134
0
  }
135
274k
  return (index + 64); /* Add offset */
136
274k
}
137
138
/***************************************************************************/
139
/*!
140
  \brief  helper function - limiting of value to min/max values
141
142
  \return limited value
143
144
****************************************************************************/
145
146
57.6k
static SCHAR limitMinMax(SCHAR i, SCHAR min, SCHAR max) {
147
57.6k
  if (i < min)
148
2.78k
    return min;
149
54.8k
  else if (i > max)
150
1.01k
    return max;
151
53.7k
  else
152
53.7k
    return i;
153
57.6k
}
154
155
/***************************************************************************/
156
/*!
157
  \brief  Decodes delta values in-place and updates
158
          data buffers according to quantization classes.
159
160
  When delta coded in frequency the first element is deltacode from zero.
161
  aIndex buffer is decoded from delta values to actual values.
162
163
  \return none
164
165
****************************************************************************/
166
static void deltaDecodeArray(
167
    SCHAR enable, SCHAR *aIndex,  /*!< ICC/IID parameters */
168
    SCHAR *aPrevFrameIndex,       /*!< ICC/IID parameters  of previous frame */
169
    SCHAR DtDf, UCHAR nrElements, /*!< as conveyed in bitstream */
170
                                  /*!< output array size: nrElements*stride */
171
    UCHAR stride,                 /*!< 1=dflt, 2=half freq. resolution */
172
9.73k
    SCHAR minIdx, SCHAR maxIdx) {
173
9.73k
  int i;
174
175
  /* Delta decode */
176
9.73k
  if (enable == 1) {
177
1.83k
    if (DtDf == 0) { /* Delta coded in freq */
178
1.09k
      aIndex[0] = 0 + aIndex[0];
179
1.09k
      aIndex[0] = limitMinMax(aIndex[0], minIdx, maxIdx);
180
34.2k
      for (i = 1; i < nrElements; i++) {
181
33.1k
        aIndex[i] = aIndex[i - 1] + aIndex[i];
182
33.1k
        aIndex[i] = limitMinMax(aIndex[i], minIdx, maxIdx);
183
33.1k
      }
184
1.09k
    } else { /* Delta time */
185
24.1k
      for (i = 0; i < nrElements; i++) {
186
23.3k
        aIndex[i] = aPrevFrameIndex[i * stride] + aIndex[i];
187
23.3k
        aIndex[i] = limitMinMax(aIndex[i], minIdx, maxIdx);
188
23.3k
      }
189
740
    }
190
7.89k
  } else { /* No data is sent, set index to zero */
191
103k
    for (i = 0; i < nrElements; i++) {
192
95.2k
      aIndex[i] = 0;
193
95.2k
    }
194
7.89k
  }
195
9.73k
  if (stride == 2) {
196
145k
    for (i = nrElements * stride - 1; i > 0; i--) {
197
137k
      aIndex[i] = aIndex[i >> 1];
198
137k
    }
199
7.25k
  }
200
9.73k
}
201
202
/***************************************************************************/
203
/*!
204
  \brief Mapping of ICC/IID parameters to 20 stereo bands
205
206
  \return none
207
208
****************************************************************************/
209
static void map34IndexTo20(SCHAR *aIndex, /*!< decoded ICC/IID parameters */
210
                           UCHAR noBins)  /*!< number of stereo bands     */
211
3.05k
{
212
3.05k
  aIndex[0] = (2 * aIndex[0] + aIndex[1]) / 3;
213
3.05k
  aIndex[1] = (aIndex[1] + 2 * aIndex[2]) / 3;
214
3.05k
  aIndex[2] = (2 * aIndex[3] + aIndex[4]) / 3;
215
3.05k
  aIndex[3] = (aIndex[4] + 2 * aIndex[5]) / 3;
216
3.05k
  aIndex[4] = (aIndex[6] + aIndex[7]) / 2;
217
3.05k
  aIndex[5] = (aIndex[8] + aIndex[9]) / 2;
218
3.05k
  aIndex[6] = aIndex[10];
219
3.05k
  aIndex[7] = aIndex[11];
220
3.05k
  aIndex[8] = (aIndex[12] + aIndex[13]) / 2;
221
3.05k
  aIndex[9] = (aIndex[14] + aIndex[15]) / 2;
222
3.05k
  aIndex[10] = aIndex[16];
223
  /* For IPD/OPD it stops here */
224
225
3.05k
  if (noBins == NO_HI_RES_BINS) {
226
3.05k
    aIndex[11] = aIndex[17];
227
3.05k
    aIndex[12] = aIndex[18];
228
3.05k
    aIndex[13] = aIndex[19];
229
3.05k
    aIndex[14] = (aIndex[20] + aIndex[21]) / 2;
230
3.05k
    aIndex[15] = (aIndex[22] + aIndex[23]) / 2;
231
3.05k
    aIndex[16] = (aIndex[24] + aIndex[25]) / 2;
232
3.05k
    aIndex[17] = (aIndex[26] + aIndex[27]) / 2;
233
3.05k
    aIndex[18] = (aIndex[28] + aIndex[29] + aIndex[30] + aIndex[31]) / 4;
234
3.05k
    aIndex[19] = (aIndex[32] + aIndex[33]) / 2;
235
3.05k
  }
236
3.05k
}
237
238
/***************************************************************************/
239
/*!
240
  \brief  Decodes delta coded IID, ICC, IPD and OPD indices
241
242
  \return PS processing flag. If set to 1
243
244
****************************************************************************/
245
int DecodePs(struct PS_DEC *h_ps_d,  /*!< PS handle */
246
             const UCHAR frameError, /*!< Flag telling that frame had errors */
247
3.93k
             PS_DEC_COEFFICIENTS *pScratch) {
248
3.93k
  MPEG_PS_BS_DATA *pBsData;
249
3.93k
  UCHAR gr, env;
250
3.93k
  int bPsHeaderValid, bPsDataAvail;
251
252
  /* Assign Scratch */
253
3.93k
  h_ps_d->specificTo.mpeg.pCoef = pScratch;
254
255
  /* Shortcuts to avoid deferencing and keep the code readable */
256
3.93k
  pBsData = &h_ps_d->bsData[h_ps_d->processSlot].mpeg;
257
3.93k
  bPsHeaderValid = pBsData->bPsHeaderValid;
258
3.93k
  bPsDataAvail =
259
3.93k
      (h_ps_d->bPsDataAvail[h_ps_d->processSlot] == ppt_mpeg) ? 1 : 0;
260
261
  /***************************************************************************************
262
   * Decide whether to process or to conceal PS data or not. */
263
264
3.93k
  if ((h_ps_d->psDecodedPrv && !frameError && !bPsDataAvail) ||
265
3.86k
      (!h_ps_d->psDecodedPrv &&
266
965
       (frameError || !bPsDataAvail || !bPsHeaderValid))) {
267
    /* Don't apply PS processing.
268
     * Declare current PS header and bitstream data invalid. */
269
430
    pBsData->bPsHeaderValid = 0;
270
430
    h_ps_d->bPsDataAvail[h_ps_d->processSlot] = ppt_none;
271
430
    return (0);
272
430
  }
273
274
3.50k
  if (frameError ||
275
2.04k
      !bPsHeaderValid) { /* no new PS data available (e.g. frame loss) */
276
    /* => keep latest data constant (i.e. FIX with noEnv=0) */
277
2.04k
    pBsData->noEnv = 0;
278
2.04k
  }
279
280
  /***************************************************************************************
281
   * Decode bitstream payload or prepare parameter for concealment:
282
   */
283
8.36k
  for (env = 0; env < pBsData->noEnv; env++) {
284
4.86k
    SCHAR *aPrevIidIndex;
285
4.86k
    SCHAR *aPrevIccIndex;
286
287
4.86k
    UCHAR noIidSteps = pBsData->bFineIidQ ? NO_IID_STEPS_FINE : NO_IID_STEPS;
288
289
4.86k
    if (env == 0) {
290
1.36k
      aPrevIidIndex = h_ps_d->specificTo.mpeg.aIidPrevFrameIndex;
291
1.36k
      aPrevIccIndex = h_ps_d->specificTo.mpeg.aIccPrevFrameIndex;
292
3.50k
    } else {
293
3.50k
      aPrevIidIndex = pBsData->aaIidIndex[env - 1];
294
3.50k
      aPrevIccIndex = pBsData->aaIccIndex[env - 1];
295
3.50k
    }
296
297
4.86k
    deltaDecodeArray(pBsData->bEnableIid, pBsData->aaIidIndex[env],
298
4.86k
                     aPrevIidIndex, pBsData->abIidDtFlag[env],
299
4.86k
                     FDK_sbrDecoder_aNoIidBins[pBsData->freqResIid],
300
4.86k
                     (pBsData->freqResIid) ? 1 : 2, -noIidSteps, noIidSteps);
301
302
4.86k
    deltaDecodeArray(pBsData->bEnableIcc, pBsData->aaIccIndex[env],
303
4.86k
                     aPrevIccIndex, pBsData->abIccDtFlag[env],
304
4.86k
                     FDK_sbrDecoder_aNoIccBins[pBsData->freqResIcc],
305
4.86k
                     (pBsData->freqResIcc) ? 1 : 2, 0, NO_ICC_STEPS - 1);
306
4.86k
  } /* for (env=0; env<pBsData->noEnv; env++) */
307
308
  /* handling of FIX noEnv=0 */
309
3.50k
  if (pBsData->noEnv == 0) {
310
    /* set noEnv=1, keep last parameters or force 0 if not enabled */
311
2.14k
    pBsData->noEnv = 1;
312
313
2.14k
    if (pBsData->bEnableIid) {
314
928
      pBsData->bFineIidQ = h_ps_d->specificTo.mpeg.bPrevFrameFineIidQ;
315
928
      pBsData->freqResIid = h_ps_d->specificTo.mpeg.prevFreqResIid;
316
32.4k
      for (gr = 0; gr < NO_HI_RES_IID_BINS; gr++) {
317
31.5k
        pBsData->aaIidIndex[pBsData->noEnv - 1][gr] =
318
31.5k
            h_ps_d->specificTo.mpeg.aIidPrevFrameIndex[gr];
319
31.5k
      }
320
1.21k
    } else {
321
42.4k
      for (gr = 0; gr < NO_HI_RES_IID_BINS; gr++) {
322
41.2k
        pBsData->aaIidIndex[pBsData->noEnv - 1][gr] = 0;
323
41.2k
      }
324
1.21k
    }
325
326
2.14k
    if (pBsData->bEnableIcc) {
327
888
      pBsData->freqResIcc = h_ps_d->specificTo.mpeg.prevFreqResIcc;
328
31.0k
      for (gr = 0; gr < NO_HI_RES_ICC_BINS; gr++) {
329
30.1k
        pBsData->aaIccIndex[pBsData->noEnv - 1][gr] =
330
30.1k
            h_ps_d->specificTo.mpeg.aIccPrevFrameIndex[gr];
331
30.1k
      }
332
1.25k
    } else {
333
43.8k
      for (gr = 0; gr < NO_HI_RES_ICC_BINS; gr++) {
334
42.6k
        pBsData->aaIccIndex[pBsData->noEnv - 1][gr] = 0;
335
42.6k
      }
336
1.25k
    }
337
2.14k
  }
338
339
  /* Update previous frame Iid quantization */
340
3.50k
  h_ps_d->specificTo.mpeg.bPrevFrameFineIidQ = pBsData->bFineIidQ;
341
342
  /* Update previous frequency resolution for IID */
343
3.50k
  h_ps_d->specificTo.mpeg.prevFreqResIid = pBsData->freqResIid;
344
345
  /* Update previous frequency resolution for ICC */
346
3.50k
  h_ps_d->specificTo.mpeg.prevFreqResIcc = pBsData->freqResIcc;
347
348
  /* Update previous frame index buffers */
349
122k
  for (gr = 0; gr < NO_HI_RES_IID_BINS; gr++) {
350
119k
    h_ps_d->specificTo.mpeg.aIidPrevFrameIndex[gr] =
351
119k
        pBsData->aaIidIndex[pBsData->noEnv - 1][gr];
352
119k
  }
353
122k
  for (gr = 0; gr < NO_HI_RES_ICC_BINS; gr++) {
354
119k
    h_ps_d->specificTo.mpeg.aIccPrevFrameIndex[gr] =
355
119k
        pBsData->aaIccIndex[pBsData->noEnv - 1][gr];
356
119k
  }
357
358
  /* PS data from bitstream (if avail) was decoded now */
359
3.50k
  h_ps_d->bPsDataAvail[h_ps_d->processSlot] = ppt_none;
360
361
  /* handling of env borders for FIX & VAR */
362
3.50k
  if (pBsData->bFrameClass == 0) {
363
    /* FIX_BORDERS NoEnv=0,1,2,4 */
364
1.60k
    pBsData->aEnvStartStop[0] = 0;
365
2.37k
    for (env = 1; env < pBsData->noEnv; env++) {
366
769
      pBsData->aEnvStartStop[env] =
367
769
          (env * h_ps_d->noSubSamples) / pBsData->noEnv;
368
769
    }
369
1.60k
    pBsData->aEnvStartStop[pBsData->noEnv] = h_ps_d->noSubSamples;
370
    /* 1024 (32 slots) env borders:  0, 8, 16, 24, 32 */
371
    /*  960 (30 slots) env borders:  0, 7, 15, 22, 30 */
372
1.89k
  } else { /* if (h_ps_d->bFrameClass == 0) */
373
    /* VAR_BORDERS NoEnv=1,2,3,4 */
374
1.89k
    pBsData->aEnvStartStop[0] = 0;
375
376
    /* handle case aEnvStartStop[noEnv]<noSubSample for VAR_BORDERS by
377
       duplicating last PS parameters and incrementing noEnv */
378
1.89k
    if (pBsData->aEnvStartStop[pBsData->noEnv] < h_ps_d->noSubSamples) {
379
55.4k
      for (gr = 0; gr < NO_HI_RES_IID_BINS; gr++) {
380
53.8k
        pBsData->aaIidIndex[pBsData->noEnv][gr] =
381
53.8k
            pBsData->aaIidIndex[pBsData->noEnv - 1][gr];
382
53.8k
      }
383
55.4k
      for (gr = 0; gr < NO_HI_RES_ICC_BINS; gr++) {
384
53.8k
        pBsData->aaIccIndex[pBsData->noEnv][gr] =
385
53.8k
            pBsData->aaIccIndex[pBsData->noEnv - 1][gr];
386
53.8k
      }
387
1.58k
      pBsData->noEnv++;
388
1.58k
      pBsData->aEnvStartStop[pBsData->noEnv] = h_ps_d->noSubSamples;
389
1.58k
    }
390
391
    /* enforce strictly monotonic increasing borders */
392
6.21k
    for (env = 1; env < pBsData->noEnv; env++) {
393
4.32k
      UCHAR thr;
394
4.32k
      thr = (UCHAR)h_ps_d->noSubSamples - (pBsData->noEnv - env);
395
4.32k
      if (pBsData->aEnvStartStop[env] > thr) {
396
742
        pBsData->aEnvStartStop[env] = thr;
397
3.57k
      } else {
398
3.57k
        thr = pBsData->aEnvStartStop[env - 1] + 1;
399
3.57k
        if (pBsData->aEnvStartStop[env] < thr) {
400
2.26k
          pBsData->aEnvStartStop[env] = thr;
401
2.26k
        }
402
3.57k
      }
403
4.32k
    }
404
1.89k
  } /* if (h_ps_d->bFrameClass == 0) ... else */
405
406
  /* copy data prior to possible 20<->34 in-place mapping */
407
12.0k
  for (env = 0; env < pBsData->noEnv; env++) {
408
8.59k
    UCHAR i;
409
300k
    for (i = 0; i < NO_HI_RES_IID_BINS; i++) {
410
292k
      h_ps_d->specificTo.mpeg.pCoef->aaIidIndexMapped[env][i] =
411
292k
          pBsData->aaIidIndex[env][i];
412
292k
    }
413
300k
    for (i = 0; i < NO_HI_RES_ICC_BINS; i++) {
414
292k
      h_ps_d->specificTo.mpeg.pCoef->aaIccIndexMapped[env][i] =
415
292k
          pBsData->aaIccIndex[env][i];
416
292k
    }
417
8.59k
  }
418
419
  /* MPEG baseline PS */
420
  /* Baseline version of PS always uses the hybrid filter structure with 20
421
   * stereo bands. */
422
  /* If ICC/IID parameters for 34 stereo bands are decoded they have to be
423
   * mapped to 20   */
424
  /* stereo bands. */
425
  /* Additionaly the IPD/OPD parameters won't be used. */
426
427
12.0k
  for (env = 0; env < pBsData->noEnv; env++) {
428
8.59k
    if (pBsData->freqResIid == 2)
429
1.72k
      map34IndexTo20(h_ps_d->specificTo.mpeg.pCoef->aaIidIndexMapped[env],
430
1.72k
                     NO_HI_RES_IID_BINS);
431
8.59k
    if (pBsData->freqResIcc == 2)
432
1.32k
      map34IndexTo20(h_ps_d->specificTo.mpeg.pCoef->aaIccIndexMapped[env],
433
1.32k
                     NO_HI_RES_ICC_BINS);
434
435
    /* IPD/OPD is disabled in baseline version and thus was removed here */
436
8.59k
  }
437
438
3.50k
  return (1);
439
3.93k
}
440
441
/***************************************************************************/
442
/*!
443
444
  \brief  Reads parametric stereo data from bitstream
445
446
  \return
447
448
****************************************************************************/
449
unsigned int ReadPsData(
450
    HANDLE_PS_DEC h_ps_d,         /*!< handle to struct PS_DEC */
451
    HANDLE_FDK_BITSTREAM hBitBuf, /*!< handle to struct BIT_BUF */
452
    int nBitsLeft                 /*!< max number of bits available */
453
9.74k
) {
454
9.74k
  MPEG_PS_BS_DATA *pBsData;
455
456
9.74k
  UCHAR gr, env;
457
9.74k
  SCHAR dtFlag;
458
9.74k
  INT startbits;
459
9.74k
  Huffman CurrentTable;
460
9.74k
  SCHAR bEnableHeader;
461
462
9.74k
  if (!h_ps_d) return 0;
463
464
9.74k
  pBsData = &h_ps_d->bsData[h_ps_d->bsReadSlot].mpeg;
465
466
9.74k
  if (h_ps_d->bsReadSlot != h_ps_d->bsLastSlot) {
467
    /* Copy last header data */
468
5.63k
    FDKmemcpy(pBsData, &h_ps_d->bsData[h_ps_d->bsLastSlot].mpeg,
469
5.63k
              sizeof(MPEG_PS_BS_DATA));
470
5.63k
  }
471
472
9.74k
  startbits = (INT)FDKgetValidBits(hBitBuf);
473
474
9.74k
  bEnableHeader = (SCHAR)FDKreadBits(hBitBuf, 1);
475
476
  /* Read header */
477
9.74k
  if (bEnableHeader) {
478
5.11k
    pBsData->bPsHeaderValid = 1;
479
5.11k
    pBsData->bEnableIid = (UCHAR)FDKreadBits(hBitBuf, 1);
480
5.11k
    if (pBsData->bEnableIid) {
481
2.65k
      pBsData->modeIid = (UCHAR)FDKreadBits(hBitBuf, 3);
482
2.65k
    }
483
484
5.11k
    pBsData->bEnableIcc = (UCHAR)FDKreadBits(hBitBuf, 1);
485
5.11k
    if (pBsData->bEnableIcc) {
486
1.73k
      pBsData->modeIcc = (UCHAR)FDKreadBits(hBitBuf, 3);
487
1.73k
    }
488
489
5.11k
    pBsData->bEnableExt = (UCHAR)FDKreadBits(hBitBuf, 1);
490
5.11k
  }
491
492
9.74k
  pBsData->bFrameClass = (UCHAR)FDKreadBits(hBitBuf, 1);
493
9.74k
  if (pBsData->bFrameClass == 0) {
494
    /* FIX_BORDERS NoEnv=0,1,2,4 */
495
2.87k
    pBsData->noEnv =
496
2.87k
        FDK_sbrDecoder_aFixNoEnvDecode[(UCHAR)FDKreadBits(hBitBuf, 2)];
497
    /* all additional handling of env borders is now in DecodePs() */
498
6.87k
  } else {
499
    /* VAR_BORDERS NoEnv=1,2,3,4 */
500
6.87k
    pBsData->noEnv = 1 + (UCHAR)FDKreadBits(hBitBuf, 2);
501
27.7k
    for (env = 1; env < pBsData->noEnv + 1; env++)
502
20.8k
      pBsData->aEnvStartStop[env] = ((UCHAR)FDKreadBits(hBitBuf, 5)) + 1;
503
    /* all additional handling of env borders is now in DecodePs() */
504
6.87k
  }
505
506
  /* verify that IID & ICC modes (quant grid, freq res) are supported */
507
9.74k
  if ((pBsData->modeIid > 5) || (pBsData->modeIcc > 5)) {
508
    /* no useful PS data could be read from bitstream */
509
1.19k
    h_ps_d->bPsDataAvail[h_ps_d->bsReadSlot] = ppt_none;
510
    /* discard all remaining bits */
511
1.19k
    nBitsLeft -= startbits - (INT)FDKgetValidBits(hBitBuf);
512
42.8k
    while (nBitsLeft > 0) {
513
41.6k
      int i = nBitsLeft;
514
41.6k
      if (i > 8) {
515
40.5k
        i = 8;
516
40.5k
      }
517
41.6k
      FDKreadBits(hBitBuf, i);
518
41.6k
      nBitsLeft -= i;
519
41.6k
    }
520
1.19k
    return (UINT)(startbits - (INT)FDKgetValidBits(hBitBuf));
521
1.19k
  }
522
523
8.55k
  if (pBsData->modeIid > 2) {
524
1.68k
    pBsData->freqResIid = pBsData->modeIid - 3;
525
1.68k
    pBsData->bFineIidQ = 1;
526
6.86k
  } else {
527
6.86k
    pBsData->freqResIid = pBsData->modeIid;
528
6.86k
    pBsData->bFineIidQ = 0;
529
6.86k
  }
530
531
8.55k
  if (pBsData->modeIcc > 2) {
532
2.21k
    pBsData->freqResIcc = pBsData->modeIcc - 3;
533
6.33k
  } else {
534
6.33k
    pBsData->freqResIcc = pBsData->modeIcc;
535
6.33k
  }
536
537
  /* Extract IID data */
538
8.55k
  if (pBsData->bEnableIid) {
539
10.8k
    for (env = 0; env < pBsData->noEnv; env++) {
540
7.71k
      dtFlag = (SCHAR)FDKreadBits(hBitBuf, 1);
541
7.71k
      if (!dtFlag) {
542
3.94k
        if (pBsData->bFineIidQ)
543
1.61k
          CurrentTable = (Huffman)&aBookPsIidFineFreqDecode;
544
2.32k
        else
545
2.32k
          CurrentTable = (Huffman)&aBookPsIidFreqDecode;
546
3.94k
      } else {
547
3.77k
        if (pBsData->bFineIidQ)
548
1.52k
          CurrentTable = (Huffman)&aBookPsIidFineTimeDecode;
549
2.25k
        else
550
2.25k
          CurrentTable = (Huffman)&aBookPsIidTimeDecode;
551
3.77k
      }
552
553
169k
      for (gr = 0; gr < FDK_sbrDecoder_aNoIidBins[pBsData->freqResIid]; gr++)
554
162k
        pBsData->aaIidIndex[env][gr] =
555
162k
            decode_huff_cw(CurrentTable, hBitBuf, NULL);
556
7.71k
      pBsData->abIidDtFlag[env] = dtFlag;
557
7.71k
    }
558
3.16k
  }
559
560
  /* Extract ICC data */
561
8.55k
  if (pBsData->bEnableIcc) {
562
8.69k
    for (env = 0; env < pBsData->noEnv; env++) {
563
6.07k
      dtFlag = (SCHAR)FDKreadBits(hBitBuf, 1);
564
6.07k
      if (!dtFlag)
565
4.37k
        CurrentTable = (Huffman)&aBookPsIccFreqDecode;
566
1.69k
      else
567
1.69k
        CurrentTable = (Huffman)&aBookPsIccTimeDecode;
568
569
118k
      for (gr = 0; gr < FDK_sbrDecoder_aNoIccBins[pBsData->freqResIcc]; gr++)
570
112k
        pBsData->aaIccIndex[env][gr] =
571
112k
            decode_huff_cw(CurrentTable, hBitBuf, NULL);
572
6.07k
      pBsData->abIccDtFlag[env] = dtFlag;
573
6.07k
    }
574
2.61k
  }
575
576
8.55k
  if (pBsData->bEnableExt) {
577
    /*!
578
    Decoders that support only the baseline version of the PS tool are allowed
579
    to ignore the IPD/OPD data, but according header data has to be parsed.
580
    ISO/IEC 14496-3 Subpart 8 Annex 4
581
    */
582
583
2.70k
    int cnt = FDKreadBits(hBitBuf, PS_EXTENSION_SIZE_BITS);
584
2.70k
    if (cnt == (1 << PS_EXTENSION_SIZE_BITS) - 1) {
585
607
      cnt += FDKreadBits(hBitBuf, PS_EXTENSION_ESC_COUNT_BITS);
586
607
    }
587
115k
    while (cnt--) FDKreadBits(hBitBuf, 8);
588
2.70k
  }
589
590
  /* new PS data was read from bitstream */
591
8.55k
  h_ps_d->bPsDataAvail[h_ps_d->bsReadSlot] = ppt_mpeg;
592
593
8.55k
  return (startbits - (INT)FDKgetValidBits(hBitBuf));
594
9.74k
}