Coverage Report

Created: 2026-08-13 06:43

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/aac/libAACdec/src/aacdec_hcr.cpp
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Count
Source
1
/* -----------------------------------------------------------------------------
2
Software License for The Fraunhofer FDK AAC Codec Library for Android
3
4
© Copyright  1995 - 2019 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
/**************************** AAC decoder library ******************************
96
97
   Author(s):   Robert Weidner (DSP Solutions)
98
99
   Description: HCR Decoder: HCR initialization, preprocess HCR sideinfo,
100
                decode priority codewords (PCWs)
101
102
*******************************************************************************/
103
104
#include "aacdec_hcr.h"
105
106
#include "aacdec_hcr_types.h"
107
#include "aacdec_hcr_bit.h"
108
#include "aacdec_hcrs.h"
109
#include "aac_ram.h"
110
#include "aac_rom.h"
111
#include "channel.h"
112
#include "block.h"
113
114
#include "aacdecoder.h" /* for ID_CPE, ID_SCE ... */
115
#include "FDK_bitstream.h"
116
117
extern int mlFileChCurr;
118
119
static void errDetectorInHcrSideinfoShrt(SCHAR cb, SHORT numLine,
120
                                         UINT *errorWord);
121
122
static void errDetectorInHcrLengths(SCHAR lengthOfLongestCodeword,
123
                                    SHORT lengthOfReorderedSpectralData,
124
                                    UINT *errorWord);
125
126
static void HcrCalcNumCodeword(H_HCR_INFO pHcr);
127
static void HcrSortCodebookAndNumCodewordInSection(H_HCR_INFO pHcr);
128
static void HcrPrepareSegmentationGrid(H_HCR_INFO pHcr);
129
static void HcrExtendedSectionInfo(H_HCR_INFO pHcr);
130
131
static void DeriveNumberOfExtendedSortedSectionsInSets(
132
    UINT numSegment, USHORT *pNumExtendedSortedCodewordInSection,
133
    int numExtendedSortedCodewordInSectionIdx,
134
    USHORT *pNumExtendedSortedSectionsInSets,
135
    int numExtendedSortedSectionsInSetsIdx);
136
137
static INT DecodeEscapeSequence(HANDLE_FDK_BITSTREAM bs, const INT bsAnchor,
138
                                INT quantSpecCoef, INT *pLeftStartOfSegment,
139
                                SCHAR *pRemainingBitsInSegment,
140
                                int *pNumDecodedBits, UINT *errorWord);
141
142
static int DecodePCW_Sign(HANDLE_FDK_BITSTREAM bs, const INT bsAnchor,
143
                          UINT codebookDim, const SCHAR *pQuantVal,
144
                          FIXP_DBL *pQuantSpecCoef, int *quantSpecCoefIdx,
145
                          INT *pLeftStartOfSegment,
146
                          SCHAR *pRemainingBitsInSegment, int *pNumDecodedBits);
147
148
static const SCHAR *DecodePCW_Body(HANDLE_FDK_BITSTREAM bs, const INT bsAnchor,
149
                                   const UINT *pCurrentTree,
150
                                   const SCHAR *pQuantValBase,
151
                                   INT *pLeftStartOfSegment,
152
                                   SCHAR *pRemainingBitsInSegment,
153
                                   int *pNumDecodedBits);
154
155
static void DecodePCWs(HANDLE_FDK_BITSTREAM bs, H_HCR_INFO pHcr);
156
157
static void HcrReorderQuantizedSpectralCoefficients(
158
    H_HCR_INFO pHcr, CAacDecoderChannelInfo *pAacDecoderChannelInfo,
159
    const SamplingRateInfo *pSamplingRateInfo);
160
161
static UCHAR errDetectPcwSegmentation(SCHAR remainingBitsInSegment,
162
                                      H_HCR_INFO pHcr, PCW_TYPE kind,
163
                                      FIXP_DBL *qsc_base_of_cw,
164
                                      UCHAR dimension);
165
166
static void errDetectWithinSegmentationFinal(H_HCR_INFO pHcr);
167
168
/*---------------------------------------------------------------------------------------------
169
     description:   Check if codebook and numSect are within allowed range
170
(short only)
171
--------------------------------------------------------------------------------------------
172
*/
173
static void errDetectorInHcrSideinfoShrt(SCHAR cb, SHORT numLine,
174
112k
                                         UINT *errorWord) {
175
112k
  if (cb < ZERO_HCB || cb >= MAX_CB_CHECK || cb == BOOKSCL) {
176
0
    *errorWord |= CB_OUT_OF_RANGE_SHORT_BLOCK;
177
0
  }
178
112k
  if (numLine < 0 || numLine > 1024) {
179
0
    *errorWord |= LINE_IN_SECT_OUT_OF_RANGE_SHORT_BLOCK;
180
0
  }
181
112k
}
182
183
/*---------------------------------------------------------------------------------------------
184
     description:   Check both HCR lengths
185
--------------------------------------------------------------------------------------------
186
*/
187
static void errDetectorInHcrLengths(SCHAR lengthOfLongestCodeword,
188
                                    SHORT lengthOfReorderedSpectralData,
189
10.1k
                                    UINT *errorWord) {
190
10.1k
  if (lengthOfReorderedSpectralData < lengthOfLongestCodeword) {
191
7
    *errorWord |= HCR_SI_LENGTHS_FAILURE;
192
7
  }
193
10.1k
}
194
195
/*---------------------------------------------------------------------------------------------
196
     description:   Decode (and adapt if necessary) the two HCR sideinfo
197
components: 'reordered_spectral_data_length' and 'longest_codeword_length'
198
--------------------------------------------------------------------------------------------
199
*/
200
201
void CHcr_Read(HANDLE_FDK_BITSTREAM bs,
202
               CAacDecoderChannelInfo *pAacDecoderChannelInfo,
203
10.5k
               const MP4_ELEMENT_ID globalHcrType) {
204
10.5k
  SHORT lengOfReorderedSpectralData;
205
10.5k
  SCHAR lengOfLongestCodeword;
206
207
10.5k
  pAacDecoderChannelInfo->pDynData->specificTo.aac.lenOfReorderedSpectralData =
208
10.5k
      0;
209
10.5k
  pAacDecoderChannelInfo->pDynData->specificTo.aac.lenOfLongestCodeword = 0;
210
211
  /* ------- SI-Value No 1 ------- */
212
10.5k
  lengOfReorderedSpectralData = FDKreadBits(bs, 14) + ERROR_LORSD;
213
10.5k
  if (globalHcrType == ID_CPE) {
214
9.34k
    if ((lengOfReorderedSpectralData >= 0) &&
215
9.34k
        (lengOfReorderedSpectralData <= CPE_TOP_LENGTH)) {
216
9.28k
      pAacDecoderChannelInfo->pDynData->specificTo.aac
217
9.28k
          .lenOfReorderedSpectralData =
218
9.28k
          lengOfReorderedSpectralData; /* the decoded value is within range */
219
9.28k
    } else {
220
64
      if (lengOfReorderedSpectralData > CPE_TOP_LENGTH) {
221
64
        pAacDecoderChannelInfo->pDynData->specificTo.aac
222
64
            .lenOfReorderedSpectralData =
223
64
            CPE_TOP_LENGTH; /* use valid maximum */
224
64
      }
225
64
    }
226
9.34k
  } else if (globalHcrType == ID_SCE || globalHcrType == ID_LFE ||
227
1.18k
             globalHcrType == ID_CCE) {
228
1.18k
    if ((lengOfReorderedSpectralData >= 0) &&
229
1.18k
        (lengOfReorderedSpectralData <= SCE_TOP_LENGTH)) {
230
1.13k
      pAacDecoderChannelInfo->pDynData->specificTo.aac
231
1.13k
          .lenOfReorderedSpectralData =
232
1.13k
          lengOfReorderedSpectralData; /* the decoded value is within range */
233
1.13k
    } else {
234
53
      if (lengOfReorderedSpectralData > SCE_TOP_LENGTH) {
235
53
        pAacDecoderChannelInfo->pDynData->specificTo.aac
236
53
            .lenOfReorderedSpectralData =
237
53
            SCE_TOP_LENGTH; /* use valid maximum */
238
53
      }
239
53
    }
240
1.18k
  }
241
242
  /* ------- SI-Value No 2 ------- */
243
10.5k
  lengOfLongestCodeword = FDKreadBits(bs, 6) + ERROR_LOLC;
244
10.5k
  if ((lengOfLongestCodeword >= 0) &&
245
10.5k
      (lengOfLongestCodeword <= LEN_OF_LONGEST_CW_TOP_LENGTH)) {
246
3.59k
    pAacDecoderChannelInfo->pDynData->specificTo.aac.lenOfLongestCodeword =
247
3.59k
        lengOfLongestCodeword; /* the decoded value is within range */
248
6.94k
  } else {
249
6.94k
    if (lengOfLongestCodeword > LEN_OF_LONGEST_CW_TOP_LENGTH) {
250
6.94k
      pAacDecoderChannelInfo->pDynData->specificTo.aac.lenOfLongestCodeword =
251
6.94k
          LEN_OF_LONGEST_CW_TOP_LENGTH; /* use valid maximum */
252
6.94k
    }
253
6.94k
  }
254
10.5k
}
255
256
/*---------------------------------------------------------------------------------------------
257
     description:   Set up HCR - must be called before every call to
258
HcrDecoder(). For short block a sorting algorithm is applied to get the SI in
259
the order that HCR could assemble the qsc's as if it is a long block.
260
-----------------------------------------------------------------------------------------------
261
        return:     error log
262
--------------------------------------------------------------------------------------------
263
*/
264
265
UINT HcrInit(H_HCR_INFO pHcr, CAacDecoderChannelInfo *pAacDecoderChannelInfo,
266
             const SamplingRateInfo *pSamplingRateInfo,
267
10.1k
             HANDLE_FDK_BITSTREAM bs) {
268
10.1k
  CIcsInfo *pIcsInfo = &pAacDecoderChannelInfo->icsInfo;
269
10.1k
  SHORT *pNumLinesInSec;
270
10.1k
  UCHAR *pCodeBk;
271
10.1k
  SHORT numSection;
272
10.1k
  SCHAR cb;
273
10.1k
  int numLine;
274
10.1k
  int i;
275
276
10.1k
  pHcr->decInOut.lengthOfReorderedSpectralData =
277
10.1k
      pAacDecoderChannelInfo->pDynData->specificTo.aac
278
10.1k
          .lenOfReorderedSpectralData;
279
10.1k
  pHcr->decInOut.lengthOfLongestCodeword =
280
10.1k
      pAacDecoderChannelInfo->pDynData->specificTo.aac.lenOfLongestCodeword;
281
10.1k
  pHcr->decInOut.pQuantizedSpectralCoefficientsBase =
282
10.1k
      pAacDecoderChannelInfo->pSpectralCoefficient;
283
10.1k
  pHcr->decInOut.quantizedSpectralCoefficientsIdx = 0;
284
10.1k
  pHcr->decInOut.pCodebook =
285
10.1k
      pAacDecoderChannelInfo->pDynData->specificTo.aac.aCodeBooks4Hcr;
286
10.1k
  pHcr->decInOut.pNumLineInSect =
287
10.1k
      pAacDecoderChannelInfo->pDynData->specificTo.aac.aNumLineInSec4Hcr;
288
10.1k
  pHcr->decInOut.numSection =
289
10.1k
      pAacDecoderChannelInfo->pDynData->specificTo.aac.numberSection;
290
10.1k
  pHcr->decInOut.errorLog = 0;
291
10.1k
  pHcr->nonPcwSideinfo.pResultBase =
292
10.1k
      SPEC_LONG(pAacDecoderChannelInfo->pSpectralCoefficient);
293
294
10.1k
  FDKsyncCache(bs);
295
10.1k
  pHcr->decInOut.bitstreamAnchor = (INT)FDKgetValidBits(bs);
296
297
10.1k
  if (!IsLongBlock(&pAacDecoderChannelInfo->icsInfo)) /* short block */
298
5.65k
  {
299
5.65k
    SHORT band;
300
5.65k
    SHORT maxBand;
301
5.65k
    SCHAR group;
302
5.65k
    SCHAR winGroupLen;
303
5.65k
    SCHAR window;
304
5.65k
    SCHAR numUnitInBand;
305
5.65k
    SCHAR cntUnitInBand;
306
5.65k
    SCHAR groupWin;
307
5.65k
    SCHAR cb_prev;
308
309
5.65k
    UCHAR *pCodeBook;
310
5.65k
    const SHORT *BandOffsets;
311
5.65k
    SCHAR numOfGroups;
312
313
5.65k
    pCodeBook = pAacDecoderChannelInfo->pDynData->aCodeBook; /* in */
314
5.65k
    pNumLinesInSec = pHcr->decInOut.pNumLineInSect;          /* out */
315
5.65k
    pCodeBk = pHcr->decInOut.pCodebook;                      /* out */
316
5.65k
    BandOffsets =
317
5.65k
        GetScaleFactorBandOffsets(pIcsInfo, pSamplingRateInfo); /* aux */
318
5.65k
    numOfGroups = GetWindowGroups(pIcsInfo);
319
320
5.65k
    numLine = 0;
321
5.65k
    numSection = 0;
322
5.65k
    cb = pCodeBook[0];
323
5.65k
    cb_prev = pCodeBook[0];
324
325
    /* convert HCR-sideinfo into a unitwise manner: When the cb changes, a new
326
     * section starts */
327
328
5.65k
    *pCodeBk++ = cb_prev;
329
330
5.65k
    maxBand = GetScaleFactorBandsTransmitted(&pAacDecoderChannelInfo->icsInfo);
331
34.0k
    for (band = 0; band < maxBand;
332
28.3k
         band++) { /* from low to high sfbs i.e. from low to high frequencies */
333
28.3k
      numUnitInBand =
334
28.3k
          ((BandOffsets[band + 1] - BandOffsets[band]) >>
335
28.3k
           FOUR_LOG_DIV_TWO_LOG); /* get the number of units in current sfb */
336
58.3k
      for (cntUnitInBand = numUnitInBand; cntUnitInBand != 0;
337
29.9k
           cntUnitInBand--) { /* for every unit in the band */
338
144k
        for (window = 0, group = 0; group < numOfGroups; group++) {
339
114k
          winGroupLen = (SCHAR)GetWindowGroupLength(
340
114k
              &pAacDecoderChannelInfo->icsInfo, group);
341
353k
          for (groupWin = winGroupLen; groupWin != 0; groupWin--, window++) {
342
239k
            cb = pCodeBook[group * 16 + band];
343
239k
            if (cb != cb_prev) {
344
106k
              errDetectorInHcrSideinfoShrt(cb, numLine,
345
106k
                                           &pHcr->decInOut.errorLog);
346
106k
              if (pHcr->decInOut.errorLog != 0) {
347
0
                return (pHcr->decInOut.errorLog);
348
0
              }
349
106k
              *pCodeBk++ = cb;
350
106k
              *pNumLinesInSec++ = numLine;
351
106k
              numSection++;
352
353
106k
              cb_prev = cb;
354
106k
              numLine = LINES_PER_UNIT;
355
133k
            } else {
356
133k
              numLine += LINES_PER_UNIT;
357
133k
            }
358
239k
          }
359
114k
        }
360
29.9k
      }
361
28.3k
    }
362
363
5.65k
    numSection++;
364
365
5.65k
    errDetectorInHcrSideinfoShrt(cb, numLine, &pHcr->decInOut.errorLog);
366
5.65k
    if (numSection <= 0 || numSection > 1024 / 2) {
367
0
      pHcr->decInOut.errorLog |= NUM_SECT_OUT_OF_RANGE_SHORT_BLOCK;
368
0
    }
369
5.65k
    errDetectorInHcrLengths(pHcr->decInOut.lengthOfLongestCodeword,
370
5.65k
                            pHcr->decInOut.lengthOfReorderedSpectralData,
371
5.65k
                            &pHcr->decInOut.errorLog);
372
5.65k
    if (pHcr->decInOut.errorLog != 0) {
373
4
      return (pHcr->decInOut.errorLog);
374
4
    }
375
376
5.64k
    *pCodeBk = cb;
377
5.64k
    *pNumLinesInSec = numLine;
378
5.64k
    pHcr->decInOut.numSection = numSection;
379
380
5.64k
  } else /* end short block prepare SI */
381
4.54k
  {      /* long block */
382
4.54k
    errDetectorInHcrLengths(pHcr->decInOut.lengthOfLongestCodeword,
383
4.54k
                            pHcr->decInOut.lengthOfReorderedSpectralData,
384
4.54k
                            &pHcr->decInOut.errorLog);
385
4.54k
    numSection = pHcr->decInOut.numSection;
386
4.54k
    pNumLinesInSec = pHcr->decInOut.pNumLineInSect;
387
4.54k
    pCodeBk = pHcr->decInOut.pCodebook;
388
4.54k
    if (numSection <= 0 || numSection > 64) {
389
23
      pHcr->decInOut.errorLog |= NUM_SECT_OUT_OF_RANGE_LONG_BLOCK;
390
23
      numSection = 0;
391
23
    }
392
393
9.46k
    for (i = numSection; i != 0; i--) {
394
4.92k
      cb = *pCodeBk++;
395
396
4.92k
      if (cb < ZERO_HCB || cb >= MAX_CB_CHECK || cb == BOOKSCL) {
397
0
        pHcr->decInOut.errorLog |= CB_OUT_OF_RANGE_LONG_BLOCK;
398
0
      }
399
400
4.92k
      numLine = *pNumLinesInSec++;
401
      /* FDK_ASSERT(numLine > 0); */
402
403
4.92k
      if ((numLine <= 0) || (numLine > 1024)) {
404
103
        pHcr->decInOut.errorLog |= LINE_IN_SECT_OUT_OF_RANGE_LONG_BLOCK;
405
103
      }
406
4.92k
    }
407
4.54k
    if (pHcr->decInOut.errorLog != 0) {
408
38
      return (pHcr->decInOut.errorLog);
409
38
    }
410
4.54k
  }
411
412
10.1k
  pCodeBk = pHcr->decInOut.pCodebook;
413
126k
  for (i = 0; i < numSection; i++) {
414
116k
    if ((*pCodeBk == NOISE_HCB) || (*pCodeBk == INTENSITY_HCB2) ||
415
113k
        (*pCodeBk == INTENSITY_HCB)) {
416
17.8k
      *pCodeBk = 0;
417
17.8k
    }
418
116k
    pCodeBk++;
419
116k
  }
420
421
  /* HCR-sideinfo-input is complete and seems to be valid */
422
423
10.1k
  return (pHcr->decInOut.errorLog);
424
10.1k
}
425
426
/*---------------------------------------------------------------------------------------------
427
     description:   This function decodes the codewords of the spectral
428
coefficients from the bitstream according to the HCR algorithm and stores the
429
quantized spectral coefficients in correct order in the output buffer.
430
--------------------------------------------------------------------------------------------
431
*/
432
433
UINT HcrDecoder(H_HCR_INFO pHcr, CAacDecoderChannelInfo *pAacDecoderChannelInfo,
434
                const SamplingRateInfo *pSamplingRateInfo,
435
10.1k
                HANDLE_FDK_BITSTREAM bs) {
436
10.1k
  int pTmp1, pTmp2, pTmp3, pTmp4;
437
10.1k
  int pTmp5;
438
439
10.1k
  INT bitCntOffst;
440
10.1k
  INT saveBitCnt = (INT)FDKgetValidBits(bs); /* save bitstream position */
441
442
10.1k
  HcrCalcNumCodeword(pHcr);
443
444
10.1k
  HcrSortCodebookAndNumCodewordInSection(pHcr);
445
446
10.1k
  HcrPrepareSegmentationGrid(pHcr);
447
448
10.1k
  HcrExtendedSectionInfo(pHcr);
449
450
10.1k
  if ((pHcr->decInOut.errorLog & HCR_FATAL_PCW_ERROR_MASK) != 0) {
451
5
    return (pHcr->decInOut.errorLog); /* sideinfo is massively corrupt, return
452
                                         from HCR without having decoded
453
                                         anything */
454
5
  }
455
456
10.1k
  DeriveNumberOfExtendedSortedSectionsInSets(
457
10.1k
      pHcr->segmentInfo.numSegment,
458
10.1k
      pHcr->sectionInfo.pNumExtendedSortedCodewordInSection,
459
10.1k
      pHcr->sectionInfo.numExtendedSortedCodewordInSectionIdx,
460
10.1k
      pHcr->sectionInfo.pNumExtendedSortedSectionsInSets,
461
10.1k
      pHcr->sectionInfo.numExtendedSortedSectionsInSetsIdx);
462
463
  /* store */
464
10.1k
  pTmp1 = pHcr->sectionInfo.numExtendedSortedCodewordInSectionIdx;
465
10.1k
  pTmp2 = pHcr->sectionInfo.extendedSortedCodebookIdx;
466
10.1k
  pTmp3 = pHcr->sectionInfo.numExtendedSortedSectionsInSetsIdx;
467
10.1k
  pTmp4 = pHcr->decInOut.quantizedSpectralCoefficientsIdx;
468
10.1k
  pTmp5 = pHcr->sectionInfo.maxLenOfCbInExtSrtSecIdx;
469
470
  /* ------- decode meaningful PCWs ------ */
471
10.1k
  DecodePCWs(bs, pHcr);
472
473
10.1k
  if ((pHcr->decInOut.errorLog & HCR_FATAL_PCW_ERROR_MASK) == 0) {
474
    /* ------ decode the non-PCWs -------- */
475
7.18k
    DecodeNonPCWs(bs, pHcr);
476
7.18k
  }
477
478
10.1k
  errDetectWithinSegmentationFinal(pHcr);
479
480
  /* restore */
481
10.1k
  pHcr->sectionInfo.numExtendedSortedCodewordInSectionIdx = pTmp1;
482
10.1k
  pHcr->sectionInfo.extendedSortedCodebookIdx = pTmp2;
483
10.1k
  pHcr->sectionInfo.numExtendedSortedSectionsInSetsIdx = pTmp3;
484
10.1k
  pHcr->decInOut.quantizedSpectralCoefficientsIdx = pTmp4;
485
10.1k
  pHcr->sectionInfo.maxLenOfCbInExtSrtSecIdx = pTmp5;
486
487
10.1k
  HcrReorderQuantizedSpectralCoefficients(pHcr, pAacDecoderChannelInfo,
488
10.1k
                                          pSamplingRateInfo);
489
490
  /* restore bitstream position */
491
10.1k
  bitCntOffst = (INT)FDKgetValidBits(bs) - saveBitCnt;
492
10.1k
  if (bitCntOffst) {
493
9.85k
    FDKpushBiDirectional(bs, bitCntOffst);
494
9.85k
  }
495
496
10.1k
  return (pHcr->decInOut.errorLog);
497
10.1k
}
498
499
/*---------------------------------------------------------------------------------------------
500
     description:   This function reorders the quantized spectral coefficients
501
sectionwise for long- and short-blocks and compares to the LAV (Largest Absolute
502
Value of the current codebook) -- a counter is incremented if there is an error
503
                    detected.
504
                    Additional for short-blocks a unit-based-deinterleaving is
505
applied. Moreover (for short blocks) the scaling is derived (compare plain
506
huffman decoder).
507
--------------------------------------------------------------------------------------------
508
*/
509
510
static void HcrReorderQuantizedSpectralCoefficients(
511
    H_HCR_INFO pHcr, CAacDecoderChannelInfo *pAacDecoderChannelInfo,
512
10.1k
    const SamplingRateInfo *pSamplingRateInfo) {
513
10.1k
  INT qsc;
514
10.1k
  UINT abs_qsc;
515
10.1k
  UINT i, j;
516
10.1k
  USHORT numSpectralValuesInSection;
517
10.1k
  FIXP_DBL *pTeVa;
518
10.1k
  USHORT lavErrorCnt = 0;
519
520
10.1k
  UINT numSection = pHcr->decInOut.numSection;
521
10.1k
  SPECTRAL_PTR pQuantizedSpectralCoefficientsBase =
522
10.1k
      pHcr->decInOut.pQuantizedSpectralCoefficientsBase;
523
10.1k
  FIXP_DBL *pQuantizedSpectralCoefficients =
524
10.1k
      SPEC_LONG(pHcr->decInOut.pQuantizedSpectralCoefficientsBase);
525
10.1k
  const UCHAR *pCbDimShift = aDimCbShift;
526
10.1k
  const USHORT *pLargestAbsVal = aLargestAbsoluteValue;
527
10.1k
  UCHAR *pSortedCodebook = pHcr->sectionInfo.pSortedCodebook;
528
10.1k
  USHORT *pNumSortedCodewordInSection =
529
10.1k
      pHcr->sectionInfo.pNumSortedCodewordInSection;
530
10.1k
  USHORT *pReorderOffset = pHcr->sectionInfo.pReorderOffset;
531
10.1k
  FIXP_DBL pTempValues[1024];
532
10.1k
  FIXP_DBL *pBak = pTempValues;
533
534
10.1k
  FDKmemclear(pTempValues, 1024 * sizeof(FIXP_DBL));
535
536
  /* long and short: check if decoded huffman-values (quantized spectral
537
   * coefficients) are within range */
538
126k
  for (i = numSection; i != 0; i--) {
539
116k
    numSpectralValuesInSection = *pNumSortedCodewordInSection++
540
116k
                                 << pCbDimShift[*pSortedCodebook];
541
116k
    pTeVa = &pTempValues[*pReorderOffset++];
542
2.34M
    for (j = numSpectralValuesInSection; j != 0; j--) {
543
2.23M
      qsc = *pQuantizedSpectralCoefficients++;
544
2.23M
      abs_qsc = fAbs(qsc);
545
2.23M
      if (abs_qsc <= pLargestAbsVal[*pSortedCodebook]) {
546
2.22M
        *pTeVa++ = (FIXP_DBL)qsc; /* the qsc value is within range */
547
2.22M
      } else {                    /* line is too high .. */
548
9.09k
        if (abs_qsc ==
549
9.09k
            Q_VALUE_INVALID) { /* .. because of previous marking --> dont set
550
                                  LAV flag (would be confusing), just copy out
551
                                  the already marked value */
552
6.43k
          *pTeVa++ = (FIXP_DBL)qsc;
553
6.43k
        } else { /* .. because a too high value was decoded for this cb --> set
554
                    LAV flag */
555
2.66k
          *pTeVa++ = (FIXP_DBL)Q_VALUE_INVALID;
556
2.66k
          lavErrorCnt += 1;
557
2.66k
        }
558
9.09k
      }
559
2.23M
    }
560
116k
    pSortedCodebook++;
561
116k
  }
562
563
10.1k
  if (!IsLongBlock(&pAacDecoderChannelInfo->icsInfo)) {
564
5.64k
    FIXP_DBL *pOut;
565
5.64k
    FIXP_DBL locMax;
566
5.64k
    FIXP_DBL tmp;
567
5.64k
    SCHAR groupoffset;
568
5.64k
    SCHAR group;
569
5.64k
    SCHAR band;
570
5.64k
    SCHAR groupwin;
571
5.64k
    SCHAR window;
572
5.64k
    SCHAR numWinGroup;
573
5.64k
    SHORT interm;
574
5.64k
    SCHAR numSfbTransm;
575
5.64k
    SCHAR winGroupLen;
576
5.64k
    SHORT index;
577
5.64k
    INT msb;
578
5.64k
    INT lsb;
579
580
5.64k
    SHORT *pScaleFacHcr = pAacDecoderChannelInfo->pDynData->aScaleFactor;
581
5.64k
    SHORT *pSfbSclHcr = pAacDecoderChannelInfo->pDynData->aSfbScale;
582
5.64k
    const SHORT *BandOffsets = GetScaleFactorBandOffsets(
583
5.64k
        &pAacDecoderChannelInfo->icsInfo, pSamplingRateInfo);
584
585
5.64k
    pBak = pTempValues;
586
    /* deinterleave unitwise for short blocks */
587
50.8k
    for (window = 0; window < (8); window++) {
588
45.1k
      pOut = SPEC(pQuantizedSpectralCoefficientsBase, window,
589
45.1k
                  pAacDecoderChannelInfo->granuleLength);
590
1.49M
      for (i = 0; i < (LINES_PER_UNIT_GROUP); i++) {
591
1.44M
        pTeVa = pBak + (window << FOUR_LOG_DIV_TWO_LOG) +
592
1.44M
                i * 32; /* distance of lines between unit groups has to be
593
                           constant for every framelength (32)!  */
594
7.22M
        for (j = (LINES_PER_UNIT); j != 0; j--) {
595
5.78M
          *pOut++ = *pTeVa++;
596
5.78M
        }
597
1.44M
      }
598
45.1k
    }
599
600
    /* short blocks only */
601
    /* derive global scaling-value for every sfb and every window (as it is done
602
     * in plain-huffman-decoder at short blocks) */
603
5.64k
    groupoffset = 0;
604
605
5.64k
    numWinGroup = GetWindowGroups(&pAacDecoderChannelInfo->icsInfo);
606
5.64k
    numSfbTransm =
607
5.64k
        GetScaleFactorBandsTransmitted(&pAacDecoderChannelInfo->icsInfo);
608
609
28.2k
    for (group = 0; group < numWinGroup; group++) {
610
22.5k
      winGroupLen =
611
22.5k
          GetWindowGroupLength(&pAacDecoderChannelInfo->icsInfo, group);
612
133k
      for (band = 0; band < numSfbTransm; band++) {
613
111k
        interm = group * 16 + band;
614
111k
        msb = pScaleFacHcr[interm] >> 2;
615
111k
        lsb = pScaleFacHcr[interm] & 3;
616
337k
        for (groupwin = 0; groupwin < winGroupLen; groupwin++) {
617
226k
          window = groupoffset + groupwin;
618
226k
          pBak = SPEC(pQuantizedSpectralCoefficientsBase, window,
619
226k
                      pAacDecoderChannelInfo->granuleLength);
620
226k
          locMax = FL2FXCONST_DBL(0.0f);
621
465k
          for (index = BandOffsets[band]; index < BandOffsets[band + 1];
622
239k
               index += LINES_PER_UNIT) {
623
239k
            pTeVa = &pBak[index];
624
1.19M
            for (i = LINES_PER_UNIT; i != 0; i--) {
625
956k
              tmp = (*pTeVa < FL2FXCONST_DBL(0.0f)) ? -*pTeVa++ : *pTeVa++;
626
956k
              locMax = fixMax(tmp, locMax);
627
956k
            }
628
239k
          }
629
226k
          if (fixp_abs(locMax) > (FIXP_DBL)MAX_QUANTIZED_VALUE) {
630
2.96k
            locMax = (FIXP_DBL)MAX_QUANTIZED_VALUE;
631
2.96k
          }
632
226k
          pSfbSclHcr[window * 16 + band] =
633
226k
              msb - GetScaleFromValue(
634
226k
                        locMax, lsb); /* save global scale maxima in this sfb */
635
226k
        }
636
111k
      }
637
22.5k
      groupoffset +=
638
22.5k
          GetWindowGroupLength(&pAacDecoderChannelInfo->icsInfo, group);
639
22.5k
    }
640
5.64k
  } else {
641
    /* copy straight for long-blocks */
642
4.49k
    pQuantizedSpectralCoefficients =
643
4.49k
        SPEC_LONG(pQuantizedSpectralCoefficientsBase);
644
4.61M
    for (i = 1024; i != 0; i--) {
645
4.60M
      *pQuantizedSpectralCoefficients++ = *pBak++;
646
4.60M
    }
647
4.49k
  }
648
649
10.1k
  if (lavErrorCnt != 0) {
650
225
    pHcr->decInOut.errorLog |= LAV_VIOLATION;
651
225
  }
652
10.1k
}
653
654
/*---------------------------------------------------------------------------------------------
655
     description:   This function calculates the number of codewords
656
                    for each section (numCodewordInSection) and the number of
657
codewords for all sections (numCodeword). For zero and intensity codebooks a
658
entry is also done in the variable numCodewordInSection. It is assumed that the
659
codebook is a two tuples codebook. This is needed later for the calculation of
660
the base addresses for the reordering of the quantize spectral coefficients at
661
the end of the hcr tool. The variable numCodeword contain the number of
662
codewords which are really in the bitstream. Zero or intensity codebooks does
663
not increase the variable numCodewords.
664
-----------------------------------------------------------------------------------------------
665
        return:   -
666
--------------------------------------------------------------------------------------------
667
*/
668
669
10.1k
static void HcrCalcNumCodeword(H_HCR_INFO pHcr) {
670
10.1k
  int hcrSection;
671
10.1k
  UINT numCodeword;
672
673
10.1k
  UINT numSection = pHcr->decInOut.numSection;
674
10.1k
  UCHAR *pCodebook = pHcr->decInOut.pCodebook;
675
10.1k
  SHORT *pNumLineInSection = pHcr->decInOut.pNumLineInSect;
676
10.1k
  const UCHAR *pCbDimShift = aDimCbShift;
677
678
10.1k
  USHORT *pNumCodewordInSection = pHcr->sectionInfo.pNumCodewordInSection;
679
680
10.1k
  numCodeword = 0;
681
126k
  for (hcrSection = numSection; hcrSection != 0; hcrSection--) {
682
116k
    *pNumCodewordInSection = *pNumLineInSection++ >> pCbDimShift[*pCodebook];
683
116k
    if (*pCodebook != 0) {
684
83.4k
      numCodeword += *pNumCodewordInSection;
685
83.4k
    }
686
116k
    pNumCodewordInSection++;
687
116k
    pCodebook++;
688
116k
  }
689
10.1k
  pHcr->sectionInfo.numCodeword = numCodeword;
690
10.1k
}
691
692
/*---------------------------------------------------------------------------------------------
693
     description:   This function calculates the number
694
                    of sorted codebooks and sorts the codebooks and the
695
numCodewordInSection according to the priority.
696
--------------------------------------------------------------------------------------------
697
*/
698
699
10.1k
static void HcrSortCodebookAndNumCodewordInSection(H_HCR_INFO pHcr) {
700
10.1k
  UINT i, j, k;
701
10.1k
  UCHAR temp;
702
10.1k
  UINT counter;
703
10.1k
  UINT startOffset;
704
10.1k
  UINT numZeroSection;
705
10.1k
  UCHAR *pDest;
706
10.1k
  UINT numSectionDec;
707
708
10.1k
  UINT numSection = pHcr->decInOut.numSection;
709
10.1k
  UCHAR *pCodebook = pHcr->decInOut.pCodebook;
710
10.1k
  UCHAR *pSortedCodebook = pHcr->sectionInfo.pSortedCodebook;
711
10.1k
  USHORT *pNumCodewordInSection = pHcr->sectionInfo.pNumCodewordInSection;
712
10.1k
  USHORT *pNumSortedCodewordInSection =
713
10.1k
      pHcr->sectionInfo.pNumSortedCodewordInSection;
714
10.1k
  UCHAR *pCodebookSwitch = pHcr->sectionInfo.pCodebookSwitch;
715
10.1k
  USHORT *pReorderOffset = pHcr->sectionInfo.pReorderOffset;
716
10.1k
  const UCHAR *pCbPriority = aCbPriority;
717
10.1k
  const UCHAR *pMinOfCbPair = aMinOfCbPair;
718
10.1k
  const UCHAR *pMaxOfCbPair = aMaxOfCbPair;
719
10.1k
  const UCHAR *pCbDimShift = aDimCbShift;
720
721
10.1k
  UINT searchStart = 0;
722
723
  /* calculate *pNumSortedSection and store the priorities in array
724
   * pSortedCdebook */
725
10.1k
  pDest = pSortedCodebook;
726
10.1k
  numZeroSection = 0;
727
126k
  for (i = numSection; i != 0; i--) {
728
116k
    if (pCbPriority[*pCodebook] == 0) {
729
33.4k
      numZeroSection += 1;
730
33.4k
    }
731
116k
    *pDest++ = pCbPriority[*pCodebook++];
732
116k
  }
733
10.1k
  pHcr->sectionInfo.numSortedSection =
734
10.1k
      numSection - numZeroSection; /* numSortedSection contains no zero or
735
                                      intensity section */
736
10.1k
  pCodebook = pHcr->decInOut.pCodebook;
737
738
  /* sort priorities of the codebooks in array pSortedCdebook[] */
739
10.1k
  numSectionDec = numSection - 1;
740
10.1k
  if (numSectionDec > 0) {
741
5.76k
    counter = numSectionDec;
742
112k
    for (j = numSectionDec; j != 0; j--) {
743
1.35M
      for (i = 0; i < counter; i++) {
744
        /* swap priorities */
745
1.24M
        if (pSortedCodebook[i + 1] > pSortedCodebook[i]) {
746
489k
          temp = pSortedCodebook[i];
747
489k
          pSortedCodebook[i] = pSortedCodebook[i + 1];
748
489k
          pSortedCodebook[i + 1] = temp;
749
489k
        }
750
1.24M
      }
751
106k
      counter -= 1;
752
106k
    }
753
5.76k
  }
754
755
  /* clear codebookSwitch array */
756
126k
  for (i = numSection; i != 0; i--) {
757
116k
    *pCodebookSwitch++ = 0;
758
116k
  }
759
10.1k
  pCodebookSwitch = pHcr->sectionInfo.pCodebookSwitch;
760
761
  /* sort sectionCodebooks and numCodwordsInSection and calculate
762
   * pReorderOffst[j] */
763
126k
  for (j = 0; j < numSection; j++) {
764
1.01M
    for (i = searchStart; i < numSection; i++) {
765
1.01M
      if (pCodebookSwitch[i] == 0 &&
766
605k
          (pMinOfCbPair[pSortedCodebook[j]] == pCodebook[i] ||
767
517k
           pMaxOfCbPair[pSortedCodebook[j]] == pCodebook[i])) {
768
116k
        pCodebookSwitch[i] = 1;
769
116k
        pSortedCodebook[j] = pCodebook[i]; /* sort codebook */
770
116k
        pNumSortedCodewordInSection[j] =
771
116k
            pNumCodewordInSection[i]; /* sort NumCodewordInSection */
772
773
116k
        startOffset = 0;
774
1.36M
        for (k = 0; k < i; k++) { /* make entry in pReorderOffst */
775
1.24M
          startOffset += pNumCodewordInSection[k] << pCbDimShift[pCodebook[k]];
776
1.24M
        }
777
116k
        pReorderOffset[j] =
778
116k
            startOffset; /* offset for reordering the codewords */
779
780
116k
        if (i == searchStart) {
781
41.3k
          k = i;
782
159k
          while (pCodebookSwitch[k++] == 1) searchStart++;
783
41.3k
        }
784
116k
        break;
785
116k
      }
786
1.01M
    }
787
116k
  }
788
10.1k
}
789
790
/*---------------------------------------------------------------------------------------------
791
     description:   This function calculates the segmentation, which includes
792
numSegment, leftStartOfSegment, rightStartOfSegment and remainingBitsInSegment.
793
                    The segmentation could be visualized a as kind of
794
'overlay-grid' for the bitstream-block holding the HCR-encoded
795
quantized-spectral-coefficients.
796
--------------------------------------------------------------------------------------------
797
*/
798
799
10.1k
static void HcrPrepareSegmentationGrid(H_HCR_INFO pHcr) {
800
10.1k
  USHORT i, j;
801
10.1k
  USHORT numSegment = 0;
802
10.1k
  INT segmentStart = 0;
803
10.1k
  UCHAR segmentWidth;
804
10.1k
  UCHAR lastSegmentWidth;
805
10.1k
  UCHAR sortedCodebook;
806
10.1k
  UCHAR endFlag = 0;
807
10.1k
  INT intermediateResult;
808
809
10.1k
  SCHAR lengthOfLongestCodeword = pHcr->decInOut.lengthOfLongestCodeword;
810
10.1k
  SHORT lengthOfReorderedSpectralData =
811
10.1k
      pHcr->decInOut.lengthOfReorderedSpectralData;
812
10.1k
  UINT numSortedSection = pHcr->sectionInfo.numSortedSection;
813
10.1k
  UCHAR *pSortedCodebook = pHcr->sectionInfo.pSortedCodebook;
814
10.1k
  USHORT *pNumSortedCodewordInSection =
815
10.1k
      pHcr->sectionInfo.pNumSortedCodewordInSection;
816
10.1k
  INT *pLeftStartOfSegment = pHcr->segmentInfo.pLeftStartOfSegment;
817
10.1k
  INT *pRightStartOfSegment = pHcr->segmentInfo.pRightStartOfSegment;
818
10.1k
  SCHAR *pRemainingBitsInSegment = pHcr->segmentInfo.pRemainingBitsInSegment;
819
10.1k
  const UCHAR *pMaxCwLength = aMaxCwLen;
820
821
49.6k
  for (i = numSortedSection; i != 0; i--) {
822
47.7k
    sortedCodebook = *pSortedCodebook++;
823
47.7k
    segmentWidth =
824
47.7k
        fMin((INT)pMaxCwLength[sortedCodebook], (INT)lengthOfLongestCodeword);
825
826
433k
    for (j = *pNumSortedCodewordInSection; j != 0; j--) {
827
      /* width allows a new segment */
828
394k
      intermediateResult = segmentStart;
829
394k
      if ((segmentStart + segmentWidth) <= lengthOfReorderedSpectralData) {
830
        /* store segment start, segment length and increment the number of
831
         * segments */
832
385k
        *pLeftStartOfSegment++ = intermediateResult;
833
385k
        *pRightStartOfSegment++ = intermediateResult + segmentWidth - 1;
834
385k
        *pRemainingBitsInSegment++ = segmentWidth;
835
385k
        segmentStart += segmentWidth;
836
385k
        numSegment += 1;
837
385k
      }
838
      /* width does not allow a new segment */
839
8.31k
      else {
840
        /* correct the last segment length */
841
8.31k
        pLeftStartOfSegment--;
842
8.31k
        pRightStartOfSegment--;
843
8.31k
        pRemainingBitsInSegment--;
844
8.31k
        segmentStart = *pLeftStartOfSegment;
845
846
8.31k
        lastSegmentWidth = lengthOfReorderedSpectralData - segmentStart;
847
8.31k
        *pRemainingBitsInSegment = lastSegmentWidth;
848
8.31k
        *pRightStartOfSegment = segmentStart + lastSegmentWidth - 1;
849
8.31k
        endFlag = 1;
850
8.31k
        break;
851
8.31k
      }
852
394k
    }
853
47.7k
    pNumSortedCodewordInSection++;
854
47.7k
    if (endFlag != 0) {
855
8.31k
      break;
856
8.31k
    }
857
47.7k
  }
858
10.1k
  pHcr->segmentInfo.numSegment = numSegment;
859
10.1k
}
860
861
/*---------------------------------------------------------------------------------------------
862
     description:   This function adapts the sorted section boundaries to the
863
boundaries of segmentation. If the section lengths does not fit completely into
864
the current segment, the section is spitted into two so called 'extended
865
                    sections'. The extended-section-info
866
(pNumExtendedSortedCodewordInSectin and pExtendedSortedCodebook) is updated in
867
this case.
868
869
--------------------------------------------------------------------------------------------
870
*/
871
872
10.1k
static void HcrExtendedSectionInfo(H_HCR_INFO pHcr) {
873
10.1k
  UINT srtSecCnt = 0; /* counter for sorted sections */
874
10.1k
  UINT xSrtScCnt = 0; /* counter for extended sorted sections */
875
10.1k
  UINT remainNumCwInSortSec;
876
10.1k
  UINT inSegmentRemainNumCW;
877
878
10.1k
  UINT numSortedSection = pHcr->sectionInfo.numSortedSection;
879
10.1k
  UCHAR *pSortedCodebook = pHcr->sectionInfo.pSortedCodebook;
880
10.1k
  USHORT *pNumSortedCodewordInSection =
881
10.1k
      pHcr->sectionInfo.pNumSortedCodewordInSection;
882
10.1k
  UCHAR *pExtendedSortedCoBo = pHcr->sectionInfo.pExtendedSortedCodebook;
883
10.1k
  USHORT *pNumExtSortCwInSect =
884
10.1k
      pHcr->sectionInfo.pNumExtendedSortedCodewordInSection;
885
10.1k
  UINT numSegment = pHcr->segmentInfo.numSegment;
886
10.1k
  UCHAR *pMaxLenOfCbInExtSrtSec = pHcr->sectionInfo.pMaxLenOfCbInExtSrtSec;
887
10.1k
  SCHAR lengthOfLongestCodeword = pHcr->decInOut.lengthOfLongestCodeword;
888
10.1k
  const UCHAR *pMaxCwLength = aMaxCwLen;
889
890
10.1k
  remainNumCwInSortSec = pNumSortedCodewordInSection[srtSecCnt];
891
10.1k
  inSegmentRemainNumCW = numSegment;
892
893
135k
  while (srtSecCnt < numSortedSection) {
894
124k
    if (inSegmentRemainNumCW < remainNumCwInSortSec) {
895
41.4k
      pNumExtSortCwInSect[xSrtScCnt] = inSegmentRemainNumCW;
896
41.4k
      pExtendedSortedCoBo[xSrtScCnt] = pSortedCodebook[srtSecCnt];
897
898
41.4k
      remainNumCwInSortSec -= inSegmentRemainNumCW;
899
41.4k
      inSegmentRemainNumCW = numSegment;
900
      /* data of a sorted section was not integrated in extended sorted section
901
       */
902
83.3k
    } else if (inSegmentRemainNumCW == remainNumCwInSortSec) {
903
6.54k
      pNumExtSortCwInSect[xSrtScCnt] = inSegmentRemainNumCW;
904
6.54k
      pExtendedSortedCoBo[xSrtScCnt] = pSortedCodebook[srtSecCnt];
905
906
6.54k
      srtSecCnt++;
907
6.54k
      remainNumCwInSortSec = pNumSortedCodewordInSection[srtSecCnt];
908
6.54k
      inSegmentRemainNumCW = numSegment;
909
      /* data of a sorted section was integrated in extended sorted section */
910
76.8k
    } else { /* inSegmentRemainNumCW > remainNumCwInSortSec */
911
76.8k
      pNumExtSortCwInSect[xSrtScCnt] = remainNumCwInSortSec;
912
76.8k
      pExtendedSortedCoBo[xSrtScCnt] = pSortedCodebook[srtSecCnt];
913
914
76.8k
      inSegmentRemainNumCW -= remainNumCwInSortSec;
915
76.8k
      srtSecCnt++;
916
76.8k
      remainNumCwInSortSec = pNumSortedCodewordInSection[srtSecCnt];
917
      /* data of a sorted section was integrated in extended sorted section */
918
76.8k
    }
919
124k
    pMaxLenOfCbInExtSrtSec[xSrtScCnt] =
920
124k
        fMin((INT)pMaxCwLength[pExtendedSortedCoBo[xSrtScCnt]],
921
124k
             (INT)lengthOfLongestCodeword);
922
923
124k
    xSrtScCnt += 1;
924
925
124k
    if (xSrtScCnt >= (MAX_SFB_HCR + MAX_HCR_SETS)) {
926
5
      pHcr->decInOut.errorLog |= EXTENDED_SORTED_COUNTER_OVERFLOW;
927
5
      return;
928
5
    }
929
124k
  }
930
10.1k
  pNumExtSortCwInSect[xSrtScCnt] = 0;
931
10.1k
}
932
933
/*---------------------------------------------------------------------------------------------
934
     description:   This function calculates the number of extended sorted
935
sections which belong to the sets. Each set from set 0 (one and only set for the
936
PCWs) till to the last set gets a entry in the array to which
937
                    'pNumExtendedSortedSectinsInSets' points to.
938
939
                    Calculation: The entrys in
940
pNumExtendedSortedCodewordInSectin are added untill the value numSegment is
941
reached. Then the sum_variable is cleared and the calculation starts from the
942
beginning. As much extended sorted Sections are summed up to reach the value
943
numSegment, as much is the current entry in *pNumExtendedSortedCodewordInSectin.
944
--------------------------------------------------------------------------------------------
945
*/
946
static void DeriveNumberOfExtendedSortedSectionsInSets(
947
    UINT numSegment, USHORT *pNumExtendedSortedCodewordInSection,
948
    int numExtendedSortedCodewordInSectionIdx,
949
    USHORT *pNumExtendedSortedSectionsInSets,
950
10.1k
    int numExtendedSortedSectionsInSetsIdx) {
951
10.1k
  USHORT counter = 0;
952
10.1k
  UINT cwSum = 0;
953
10.1k
  USHORT *pNumExSortCwInSec = pNumExtendedSortedCodewordInSection;
954
10.1k
  USHORT *pNumExSortSecInSets = pNumExtendedSortedSectionsInSets;
955
956
129k
  while (pNumExSortCwInSec[numExtendedSortedCodewordInSectionIdx] != 0) {
957
120k
    cwSum += pNumExSortCwInSec[numExtendedSortedCodewordInSectionIdx];
958
120k
    numExtendedSortedCodewordInSectionIdx++;
959
120k
    if (numExtendedSortedCodewordInSectionIdx >= (MAX_SFB_HCR + MAX_HCR_SETS)) {
960
0
      return;
961
0
    }
962
120k
    if (cwSum > numSegment) {
963
0
      return;
964
0
    }
965
120k
    counter++;
966
120k
    if (counter > 1024 / 4) {
967
0
      return;
968
0
    }
969
120k
    if (cwSum == numSegment) {
970
44.7k
      pNumExSortSecInSets[numExtendedSortedSectionsInSetsIdx] = counter;
971
44.7k
      numExtendedSortedSectionsInSetsIdx++;
972
44.7k
      if (numExtendedSortedSectionsInSetsIdx >= MAX_HCR_SETS) {
973
1.29k
        return;
974
1.29k
      }
975
43.4k
      counter = 0;
976
43.4k
      cwSum = 0;
977
43.4k
    }
978
120k
  }
979
8.84k
  pNumExSortSecInSets[numExtendedSortedSectionsInSetsIdx] =
980
8.84k
      counter; /* save last entry for the last - probably shorter - set */
981
8.84k
}
982
983
/*---------------------------------------------------------------------------------------------
984
     description:   This function decodes all priority codewords (PCWs) in a
985
spectrum (within set 0). The calculation of the PCWs is managed in two loops.
986
The loopcounter of the outer loop is set to the first value pointer
987
                    pNumExtendedSortedSectionsInSets points to. This value
988
represents the number of extended sorted sections within set 0. The loopcounter
989
of the inner loop is set to the first value pointer
990
                    pNumExtendedSortedCodewordInSectin points to. The value
991
represents the number of extended sorted codewords in sections (the original
992
sections have been splitted to go along with the borders of the sets). Each time
993
the number of the extended sorted codewords in sections are de- coded, the
994
pointer 'pNumExtendedSortedCodewordInSectin' is incremented by one.
995
--------------------------------------------------------------------------------------------
996
*/
997
10.1k
static void DecodePCWs(HANDLE_FDK_BITSTREAM bs, H_HCR_INFO pHcr) {
998
10.1k
  UINT i;
999
10.1k
  USHORT extSortSec;
1000
10.1k
  USHORT curExtSortCwInSec;
1001
10.1k
  UCHAR codebook;
1002
10.1k
  UCHAR dimension;
1003
10.1k
  const UINT *pCurrentTree;
1004
10.1k
  const SCHAR *pQuantValBase;
1005
10.1k
  const SCHAR *pQuantVal;
1006
1007
10.1k
  USHORT *pNumExtendedSortedCodewordInSection =
1008
10.1k
      pHcr->sectionInfo.pNumExtendedSortedCodewordInSection;
1009
10.1k
  int numExtendedSortedCodewordInSectionIdx =
1010
10.1k
      pHcr->sectionInfo.numExtendedSortedCodewordInSectionIdx;
1011
10.1k
  UCHAR *pExtendedSortedCodebook = pHcr->sectionInfo.pExtendedSortedCodebook;
1012
10.1k
  int extendedSortedCodebookIdx = pHcr->sectionInfo.extendedSortedCodebookIdx;
1013
10.1k
  USHORT *pNumExtendedSortedSectionsInSets =
1014
10.1k
      pHcr->sectionInfo.pNumExtendedSortedSectionsInSets;
1015
10.1k
  int numExtendedSortedSectionsInSetsIdx =
1016
10.1k
      pHcr->sectionInfo.numExtendedSortedSectionsInSetsIdx;
1017
10.1k
  FIXP_DBL *pQuantizedSpectralCoefficients =
1018
10.1k
      SPEC_LONG(pHcr->decInOut.pQuantizedSpectralCoefficientsBase);
1019
10.1k
  int quantizedSpectralCoefficientsIdx =
1020
10.1k
      pHcr->decInOut.quantizedSpectralCoefficientsIdx;
1021
10.1k
  INT *pLeftStartOfSegment = pHcr->segmentInfo.pLeftStartOfSegment;
1022
10.1k
  SCHAR *pRemainingBitsInSegment = pHcr->segmentInfo.pRemainingBitsInSegment;
1023
10.1k
  UCHAR *pMaxLenOfCbInExtSrtSec = pHcr->sectionInfo.pMaxLenOfCbInExtSrtSec;
1024
10.1k
  int maxLenOfCbInExtSrtSecIdx = pHcr->sectionInfo.maxLenOfCbInExtSrtSecIdx;
1025
10.1k
  UCHAR maxAllowedCwLen;
1026
10.1k
  int numDecodedBits;
1027
10.1k
  const UCHAR *pCbDimension = aDimCb;
1028
10.1k
  const UCHAR *pCbSign = aSignCb;
1029
1030
  /* clear result array */
1031
10.1k
  FDKmemclear(pQuantizedSpectralCoefficients + quantizedSpectralCoefficientsIdx,
1032
10.1k
              1024 * sizeof(FIXP_DBL));
1033
1034
  /* decode all PCWs in the extended sorted section(s) belonging to set 0 */
1035
10.1k
  for (extSortSec =
1036
10.1k
           pNumExtendedSortedSectionsInSets[numExtendedSortedSectionsInSetsIdx];
1037
35.0k
       extSortSec != 0; extSortSec--) {
1038
29.2k
    codebook =
1039
29.2k
        pExtendedSortedCodebook[extendedSortedCodebookIdx]; /* get codebook for
1040
                                                               this extended
1041
                                                               sorted section
1042
                                                               and increment ptr
1043
                                                               to cb of next
1044
                                                               ext. sort sec */
1045
29.2k
    extendedSortedCodebookIdx++;
1046
29.2k
    if (extendedSortedCodebookIdx >= (MAX_SFB_HCR + MAX_HCR_SETS)) {
1047
0
      return;
1048
0
    }
1049
29.2k
    dimension = pCbDimension[codebook]; /* get dimension of codebook of this
1050
                                           extended sort. sec. */
1051
29.2k
    pCurrentTree =
1052
29.2k
        aHuffTable[codebook]; /* convert codebook to pointer to QSCs */
1053
29.2k
    pQuantValBase =
1054
29.2k
        aQuantTable[codebook]; /* convert codebook to index to table of QSCs */
1055
29.2k
    maxAllowedCwLen = pMaxLenOfCbInExtSrtSec[maxLenOfCbInExtSrtSecIdx];
1056
29.2k
    maxLenOfCbInExtSrtSecIdx++;
1057
29.2k
    if (maxLenOfCbInExtSrtSecIdx >= (MAX_SFB_HCR + MAX_HCR_SETS)) {
1058
0
      return;
1059
0
    }
1060
1061
    /* switch for decoding with different codebooks: */
1062
29.2k
    if (pCbSign[codebook] ==
1063
29.2k
        0) { /* no sign bits follow after the codeword-body */
1064
      /* PCW_BodyONLY */
1065
      /*==============*/
1066
1067
908
      for (curExtSortCwInSec = pNumExtendedSortedCodewordInSection
1068
908
               [numExtendedSortedCodewordInSectionIdx];
1069
5.90k
           curExtSortCwInSec != 0; curExtSortCwInSec--) {
1070
5.23k
        numDecodedBits = 0;
1071
1072
        /* decode PCW_BODY */
1073
5.23k
        pQuantVal = DecodePCW_Body(
1074
5.23k
            bs, pHcr->decInOut.bitstreamAnchor, pCurrentTree, pQuantValBase,
1075
5.23k
            pLeftStartOfSegment, pRemainingBitsInSegment, &numDecodedBits);
1076
1077
        /* result is written out here because NO sign bits follow the body */
1078
20.0k
        for (i = dimension; i != 0; i--) {
1079
14.8k
          pQuantizedSpectralCoefficients[quantizedSpectralCoefficientsIdx] =
1080
14.8k
              (FIXP_DBL)*pQuantVal++; /* write quant. spec. coef. into
1081
                                         spectrum; sign is already valid */
1082
14.8k
          quantizedSpectralCoefficientsIdx++;
1083
14.8k
          if (quantizedSpectralCoefficientsIdx >= 1024) {
1084
4
            return;
1085
4
          }
1086
14.8k
        }
1087
1088
        /* one more PCW should be decoded */
1089
1090
5.23k
        if (maxAllowedCwLen < (numDecodedBits + ERROR_PCW_BODY_ONLY_TOO_LONG)) {
1091
236
          pHcr->decInOut.errorLog |= TOO_MANY_PCW_BODY_BITS_DECODED;
1092
236
        }
1093
1094
5.23k
        if (1 == errDetectPcwSegmentation(
1095
5.23k
                     *pRemainingBitsInSegment - ERROR_PCW_BODY, pHcr, PCW_BODY,
1096
5.23k
                     pQuantizedSpectralCoefficients +
1097
5.23k
                         quantizedSpectralCoefficientsIdx - dimension,
1098
5.23k
                     dimension)) {
1099
236
          return;
1100
236
        }
1101
4.99k
        pLeftStartOfSegment++; /* update pointer for decoding the next PCW */
1102
4.99k
        pRemainingBitsInSegment++; /* update pointer for decoding the next PCW
1103
                                    */
1104
4.99k
      }
1105
28.3k
    } else if ((codebook < 11) && (pCbSign[codebook] ==
1106
8.60k
                                   1)) { /* possibly there follow 1,2,3 or 4
1107
                                            sign bits after the codeword-body */
1108
      /* PCW_Body and PCW_Sign */
1109
      /*=======================*/
1110
1111
8.60k
      for (curExtSortCwInSec = pNumExtendedSortedCodewordInSection
1112
8.60k
               [numExtendedSortedCodewordInSectionIdx];
1113
140k
           curExtSortCwInSec != 0; curExtSortCwInSec--) {
1114
132k
        int err;
1115
132k
        numDecodedBits = 0;
1116
1117
132k
        pQuantVal = DecodePCW_Body(
1118
132k
            bs, pHcr->decInOut.bitstreamAnchor, pCurrentTree, pQuantValBase,
1119
132k
            pLeftStartOfSegment, pRemainingBitsInSegment, &numDecodedBits);
1120
1121
132k
        err = DecodePCW_Sign(
1122
132k
            bs, pHcr->decInOut.bitstreamAnchor, dimension, pQuantVal,
1123
132k
            pQuantizedSpectralCoefficients, &quantizedSpectralCoefficientsIdx,
1124
132k
            pLeftStartOfSegment, pRemainingBitsInSegment, &numDecodedBits);
1125
132k
        if (err != 0) {
1126
328
          return;
1127
328
        }
1128
        /* one more PCW should be decoded */
1129
1130
131k
        if (maxAllowedCwLen < (numDecodedBits + ERROR_PCW_BODY_SIGN_TOO_LONG)) {
1131
12
          pHcr->decInOut.errorLog |= TOO_MANY_PCW_BODY_SIGN_BITS_DECODED;
1132
12
        }
1133
1134
131k
        if (1 == errDetectPcwSegmentation(
1135
131k
                     *pRemainingBitsInSegment - ERROR_PCW_BODY_SIGN, pHcr,
1136
131k
                     PCW_BODY_SIGN,
1137
131k
                     pQuantizedSpectralCoefficients +
1138
131k
                         quantizedSpectralCoefficientsIdx - dimension,
1139
131k
                     dimension)) {
1140
12
          return;
1141
12
        }
1142
131k
        pLeftStartOfSegment++;
1143
131k
        pRemainingBitsInSegment++;
1144
131k
      }
1145
19.7k
    } else if ((pCbSign[codebook] == 1) &&
1146
19.7k
               (codebook >= 11)) { /* possibly there follow some sign bits and
1147
                                      maybe one or two escape sequences after
1148
                                      the cw-body */
1149
      /* PCW_Body, PCW_Sign and maybe PCW_Escape */
1150
      /*=========================================*/
1151
1152
19.7k
      for (curExtSortCwInSec = pNumExtendedSortedCodewordInSection
1153
19.7k
               [numExtendedSortedCodewordInSectionIdx];
1154
84.0k
           curExtSortCwInSec != 0; curExtSortCwInSec--) {
1155
68.0k
        int err;
1156
68.0k
        numDecodedBits = 0;
1157
1158
        /* decode PCW_BODY */
1159
68.0k
        pQuantVal = DecodePCW_Body(
1160
68.0k
            bs, pHcr->decInOut.bitstreamAnchor, pCurrentTree, pQuantValBase,
1161
68.0k
            pLeftStartOfSegment, pRemainingBitsInSegment, &numDecodedBits);
1162
1163
68.0k
        err = DecodePCW_Sign(
1164
68.0k
            bs, pHcr->decInOut.bitstreamAnchor, dimension, pQuantVal,
1165
68.0k
            pQuantizedSpectralCoefficients, &quantizedSpectralCoefficientsIdx,
1166
68.0k
            pLeftStartOfSegment, pRemainingBitsInSegment, &numDecodedBits);
1167
68.0k
        if (err != 0) {
1168
1.00k
          return;
1169
1.00k
        }
1170
1171
        /* decode PCW_ESCAPE if present */
1172
67.0k
        quantizedSpectralCoefficientsIdx -= DIMENSION_OF_ESCAPE_CODEBOOK;
1173
1174
67.0k
        if (fixp_abs(pQuantizedSpectralCoefficients
1175
67.0k
                         [quantizedSpectralCoefficientsIdx]) ==
1176
67.0k
            (FIXP_DBL)ESCAPE_VALUE) {
1177
1.62k
          pQuantizedSpectralCoefficients[quantizedSpectralCoefficientsIdx] =
1178
1.62k
              (FIXP_DBL)DecodeEscapeSequence(
1179
1.62k
                  bs, pHcr->decInOut.bitstreamAnchor,
1180
1.62k
                  pQuantizedSpectralCoefficients
1181
1.62k
                      [quantizedSpectralCoefficientsIdx],
1182
1.62k
                  pLeftStartOfSegment, pRemainingBitsInSegment, &numDecodedBits,
1183
1.62k
                  &pHcr->decInOut.errorLog);
1184
1.62k
        }
1185
67.0k
        quantizedSpectralCoefficientsIdx++;
1186
67.0k
        if (quantizedSpectralCoefficientsIdx >= 1024) {
1187
0
          return;
1188
0
        }
1189
1190
67.0k
        if (fixp_abs(pQuantizedSpectralCoefficients
1191
67.0k
                         [quantizedSpectralCoefficientsIdx]) ==
1192
67.0k
            (FIXP_DBL)ESCAPE_VALUE) {
1193
3.64k
          pQuantizedSpectralCoefficients[quantizedSpectralCoefficientsIdx] =
1194
3.64k
              (FIXP_DBL)DecodeEscapeSequence(
1195
3.64k
                  bs, pHcr->decInOut.bitstreamAnchor,
1196
3.64k
                  pQuantizedSpectralCoefficients
1197
3.64k
                      [quantizedSpectralCoefficientsIdx],
1198
3.64k
                  pLeftStartOfSegment, pRemainingBitsInSegment, &numDecodedBits,
1199
3.64k
                  &pHcr->decInOut.errorLog);
1200
3.64k
        }
1201
67.0k
        quantizedSpectralCoefficientsIdx++;
1202
67.0k
        if (quantizedSpectralCoefficientsIdx >= 1024) {
1203
0
          return;
1204
0
        }
1205
1206
        /* one more PCW should be decoded */
1207
1208
67.0k
        if (maxAllowedCwLen <
1209
67.0k
            (numDecodedBits + ERROR_PCW_BODY_SIGN_ESC_TOO_LONG)) {
1210
2.70k
          pHcr->decInOut.errorLog |= TOO_MANY_PCW_BODY_SIGN_ESC_BITS_DECODED;
1211
2.70k
        }
1212
1213
67.0k
        if (1 == errDetectPcwSegmentation(
1214
67.0k
                     *pRemainingBitsInSegment - ERROR_PCW_BODY_SIGN_ESC, pHcr,
1215
67.0k
                     PCW_BODY_SIGN_ESC,
1216
67.0k
                     pQuantizedSpectralCoefficients +
1217
67.0k
                         quantizedSpectralCoefficientsIdx -
1218
67.0k
                         DIMENSION_OF_ESCAPE_CODEBOOK,
1219
67.0k
                     DIMENSION_OF_ESCAPE_CODEBOOK)) {
1220
2.70k
          return;
1221
2.70k
        }
1222
64.3k
        pLeftStartOfSegment++;
1223
64.3k
        pRemainingBitsInSegment++;
1224
64.3k
      }
1225
19.7k
    }
1226
1227
    /* all PCWs belonging to this extended section should be decoded */
1228
24.9k
    numExtendedSortedCodewordInSectionIdx++;
1229
24.9k
    if (numExtendedSortedCodewordInSectionIdx >= MAX_SFB_HCR + MAX_HCR_SETS) {
1230
0
      return;
1231
0
    }
1232
24.9k
  }
1233
  /* all PCWs should be decoded */
1234
1235
5.86k
  numExtendedSortedSectionsInSetsIdx++;
1236
5.86k
  if (numExtendedSortedSectionsInSetsIdx >= MAX_HCR_SETS) {
1237
0
    return;
1238
0
  }
1239
1240
  /* Write back indexes into structure */
1241
5.86k
  pHcr->sectionInfo.numExtendedSortedCodewordInSectionIdx =
1242
5.86k
      numExtendedSortedCodewordInSectionIdx;
1243
5.86k
  pHcr->sectionInfo.extendedSortedCodebookIdx = extendedSortedCodebookIdx;
1244
5.86k
  pHcr->sectionInfo.numExtendedSortedSectionsInSetsIdx =
1245
5.86k
      numExtendedSortedSectionsInSetsIdx;
1246
5.86k
  pHcr->decInOut.quantizedSpectralCoefficientsIdx =
1247
5.86k
      quantizedSpectralCoefficientsIdx;
1248
5.86k
  pHcr->sectionInfo.maxLenOfCbInExtSrtSecIdx = maxLenOfCbInExtSrtSecIdx;
1249
5.86k
}
1250
1251
/*---------------------------------------------------------------------------------------------
1252
     description:   This function checks immediately after every decoded PCW,
1253
whether out of the current segment too many bits have been read or not. If an
1254
error occurrs, probably the sideinfo or the HCR-bitstream block holding the
1255
huffman encoded quantized spectral coefficients is distorted. In this case the
1256
two or four quantized spectral coefficients belonging to the current codeword
1257
                    are marked (for being detected by concealment later).
1258
--------------------------------------------------------------------------------------------
1259
*/
1260
static UCHAR errDetectPcwSegmentation(SCHAR remainingBitsInSegment,
1261
                                      H_HCR_INFO pHcr, PCW_TYPE kind,
1262
                                      FIXP_DBL *qsc_base_of_cw,
1263
204k
                                      UCHAR dimension) {
1264
204k
  SCHAR i;
1265
204k
  if (remainingBitsInSegment < 0) {
1266
    /* log the error */
1267
2.94k
    switch (kind) {
1268
236
      case PCW_BODY:
1269
236
        pHcr->decInOut.errorLog |= SEGMENT_OVERRIDE_ERR_PCW_BODY;
1270
236
        break;
1271
12
      case PCW_BODY_SIGN:
1272
12
        pHcr->decInOut.errorLog |= SEGMENT_OVERRIDE_ERR_PCW_BODY_SIGN;
1273
12
        break;
1274
2.70k
      case PCW_BODY_SIGN_ESC:
1275
2.70k
        pHcr->decInOut.errorLog |= SEGMENT_OVERRIDE_ERR_PCW_BODY_SIGN_ESC;
1276
2.70k
        break;
1277
2.94k
    }
1278
    /* mark the erred lines */
1279
9.30k
    for (i = dimension; i != 0; i--) {
1280
6.35k
      *qsc_base_of_cw++ = (FIXP_DBL)Q_VALUE_INVALID;
1281
6.35k
    }
1282
2.94k
    return 1;
1283
2.94k
  }
1284
201k
  return 0;
1285
204k
}
1286
1287
/*---------------------------------------------------------------------------------------------
1288
     description:   This function checks if all segments are empty after
1289
decoding. There are _no lines markded_ as invalid because it could not be traced
1290
back where from the remaining bits are.
1291
--------------------------------------------------------------------------------------------
1292
*/
1293
10.1k
static void errDetectWithinSegmentationFinal(H_HCR_INFO pHcr) {
1294
10.1k
  UCHAR segmentationErrorFlag = 0;
1295
10.1k
  USHORT i;
1296
10.1k
  SCHAR *pRemainingBitsInSegment = pHcr->segmentInfo.pRemainingBitsInSegment;
1297
10.1k
  UINT numSegment = pHcr->segmentInfo.numSegment;
1298
1299
396k
  for (i = numSegment; i != 0; i--) {
1300
385k
    if (*pRemainingBitsInSegment++ != 0) {
1301
231k
      segmentationErrorFlag = 1;
1302
231k
    }
1303
385k
  }
1304
10.1k
  if (segmentationErrorFlag == 1) {
1305
7.10k
    pHcr->decInOut.errorLog |= BIT_IN_SEGMENTATION_ERROR;
1306
7.10k
  }
1307
10.1k
}
1308
1309
/*---------------------------------------------------------------------------------------------
1310
     description:   This function walks one step within the decoding tree. Which
1311
branch is taken depends on the decoded carryBit input parameter.
1312
--------------------------------------------------------------------------------------------
1313
*/
1314
void CarryBitToBranchValue(UCHAR carryBit, UINT treeNode, UINT *branchValue,
1315
5.28M
                           UINT *branchNode) {
1316
5.28M
  if (carryBit == 0) {
1317
3.73M
    *branchNode =
1318
3.73M
        (treeNode & MASK_LEFT) >> LEFT_OFFSET; /* MASK_LEFT:  00FFF000 */
1319
3.73M
  } else {
1320
1.54M
    *branchNode = treeNode & MASK_RIGHT; /* MASK_RIGHT: 00000FFF */
1321
1.54M
  }
1322
1323
5.28M
  *branchValue = *branchNode & CLR_BIT_10; /* clear bit 10 (if set) */
1324
5.28M
}
1325
1326
/*---------------------------------------------------------------------------------------------
1327
     description:   Decodes the body of a priority codeword (PCW)
1328
-----------------------------------------------------------------------------------------------
1329
        return:   - return value is pointer to first of two or four quantized
1330
spectral coefficients
1331
--------------------------------------------------------------------------------------------
1332
*/
1333
static const SCHAR *DecodePCW_Body(HANDLE_FDK_BITSTREAM bs, const INT bsAnchor,
1334
                                   const UINT *pCurrentTree,
1335
                                   const SCHAR *pQuantValBase,
1336
                                   INT *pLeftStartOfSegment,
1337
                                   SCHAR *pRemainingBitsInSegment,
1338
205k
                                   int *pNumDecodedBits) {
1339
205k
  UCHAR carryBit;
1340
205k
  UINT branchNode;
1341
205k
  UINT treeNode;
1342
205k
  UINT branchValue;
1343
205k
  const SCHAR *pQuantVal;
1344
1345
  /* decode PCW_BODY */
1346
205k
  treeNode = *pCurrentTree; /* get first node of current tree belonging to
1347
                               current codebook */
1348
1349
  /* decode whole PCW-codeword-body */
1350
914k
  while (1) {
1351
914k
    carryBit = HcrGetABitFromBitstream(bs, bsAnchor, pLeftStartOfSegment,
1352
914k
                                       pLeftStartOfSegment, /* dummy */
1353
914k
                                       FROM_LEFT_TO_RIGHT);
1354
914k
    *pRemainingBitsInSegment -= 1;
1355
914k
    *pNumDecodedBits += 1;
1356
1357
914k
    CarryBitToBranchValue(carryBit, treeNode, &branchValue, &branchNode);
1358
1359
914k
    if ((branchNode & TEST_BIT_10) ==
1360
914k
        TEST_BIT_10) { /* test bit 10 ; if set --> codeword-body is complete */
1361
205k
      break; /* end of branch in tree reached  i.e. a whole PCW-Body is decoded
1362
              */
1363
709k
    } else {
1364
709k
      treeNode = *(
1365
709k
          pCurrentTree +
1366
709k
          branchValue); /* update treeNode for further step in decoding tree */
1367
709k
    }
1368
914k
  }
1369
1370
205k
  pQuantVal =
1371
205k
      pQuantValBase + branchValue; /* update pointer to valid first of 2 or 4
1372
                                      quantized values */
1373
1374
205k
  return pQuantVal;
1375
205k
}
1376
1377
/*---------------------------------------------------------------------------------------------
1378
     description:   This function decodes one escape sequence. In case of a
1379
escape codebook and in case of the absolute value of the quantized spectral
1380
value == 16, a escapeSequence is decoded in two steps:
1381
                      1. escape prefix
1382
                      2. escape word
1383
--------------------------------------------------------------------------------------------
1384
*/
1385
1386
static INT DecodeEscapeSequence(HANDLE_FDK_BITSTREAM bs, const INT bsAnchor,
1387
                                INT quantSpecCoef, INT *pLeftStartOfSegment,
1388
                                SCHAR *pRemainingBitsInSegment,
1389
5.26k
                                int *pNumDecodedBits, UINT *errorWord) {
1390
5.26k
  UINT i;
1391
5.26k
  INT sign;
1392
5.26k
  UINT escapeOnesCounter = 0;
1393
5.26k
  UINT carryBit;
1394
5.26k
  INT escape_word = 0;
1395
1396
  /* decode escape prefix */
1397
7.81k
  while (1) {
1398
7.81k
    carryBit = HcrGetABitFromBitstream(bs, bsAnchor, pLeftStartOfSegment,
1399
7.81k
                                       pLeftStartOfSegment, /* dummy */
1400
7.81k
                                       FROM_LEFT_TO_RIGHT);
1401
7.81k
    *pRemainingBitsInSegment -= 1;
1402
7.81k
    *pNumDecodedBits += 1;
1403
7.81k
    if (*pRemainingBitsInSegment < 0) {
1404
243
      return Q_VALUE_INVALID;
1405
243
    }
1406
1407
7.57k
    if (carryBit != 0) {
1408
2.55k
      escapeOnesCounter += 1;
1409
5.01k
    } else {
1410
5.01k
      escapeOnesCounter += 4;
1411
5.01k
      break;
1412
5.01k
    }
1413
7.57k
  }
1414
1415
  /* decode escape word */
1416
24.7k
  for (i = escapeOnesCounter; i != 0; i--) {
1417
22.0k
    carryBit = HcrGetABitFromBitstream(bs, bsAnchor, pLeftStartOfSegment,
1418
22.0k
                                       pLeftStartOfSegment, /* dummy */
1419
22.0k
                                       FROM_LEFT_TO_RIGHT);
1420
22.0k
    *pRemainingBitsInSegment -= 1;
1421
22.0k
    *pNumDecodedBits += 1;
1422
22.0k
    if (*pRemainingBitsInSegment < 0) {
1423
2.32k
      return Q_VALUE_INVALID;
1424
2.32k
    }
1425
1426
19.7k
    escape_word <<= 1;
1427
19.7k
    escape_word = escape_word | carryBit;
1428
19.7k
  }
1429
1430
2.69k
  sign = (quantSpecCoef >= 0) ? 1 : -1;
1431
1432
2.69k
  if (escapeOnesCounter < 13) {
1433
2.62k
    quantSpecCoef = sign * (((INT)1 << escapeOnesCounter) + escape_word);
1434
2.62k
  } else {
1435
73
    *errorWord |= TOO_MANY_PCW_BODY_SIGN_ESC_BITS_DECODED;
1436
73
    quantSpecCoef = Q_VALUE_INVALID;
1437
73
  }
1438
2.69k
  return quantSpecCoef;
1439
5.01k
}
1440
1441
/*---------------------------------------------------------------------------------------------
1442
     description:   Decodes the Signbits of a priority codeword (PCW) and writes
1443
out the resulting quantized spectral values into unsorted sections
1444
-----------------------------------------------------------------------------------------------
1445
        output:   - two or four lines at position in corresponding section
1446
(which are not located at the desired position, i.e. they must be reordered in
1447
the last of eight function of HCR)
1448
-----------------------------------------------------------------------------------------------
1449
        return:   - updated pQuantSpecCoef pointer (to next empty storage for a
1450
line)
1451
--------------------------------------------------------------------------------------------
1452
*/
1453
static int DecodePCW_Sign(HANDLE_FDK_BITSTREAM bs, const INT bsAnchor,
1454
                          UINT codebookDim, const SCHAR *pQuantVal,
1455
                          FIXP_DBL *pQuantSpecCoef, int *quantSpecCoefIdx,
1456
                          INT *pLeftStartOfSegment,
1457
                          SCHAR *pRemainingBitsInSegment,
1458
200k
                          int *pNumDecodedBits) {
1459
200k
  UINT i;
1460
200k
  UINT carryBit;
1461
200k
  INT quantSpecCoef;
1462
1463
603k
  for (i = codebookDim; i != 0; i--) {
1464
404k
    quantSpecCoef = *pQuantVal++;
1465
404k
    if (quantSpecCoef != 0) {
1466
294k
      carryBit = HcrGetABitFromBitstream(bs, bsAnchor, pLeftStartOfSegment,
1467
294k
                                         pLeftStartOfSegment, /* dummy */
1468
294k
                                         FROM_LEFT_TO_RIGHT);
1469
294k
      *pRemainingBitsInSegment -= 1;
1470
294k
      *pNumDecodedBits += 1;
1471
294k
      if (*pRemainingBitsInSegment < 0 || *pNumDecodedBits >= (1024 >> 1)) {
1472
1.31k
        return -1;
1473
1.31k
      }
1474
1475
      /* adapt sign of values according to the decoded sign bit */
1476
293k
      if (carryBit != 0) {
1477
77.4k
        pQuantSpecCoef[*quantSpecCoefIdx] = -(FIXP_DBL)quantSpecCoef;
1478
215k
      } else {
1479
215k
        pQuantSpecCoef[*quantSpecCoefIdx] = (FIXP_DBL)quantSpecCoef;
1480
215k
      }
1481
293k
    } else {
1482
110k
      pQuantSpecCoef[*quantSpecCoefIdx] = FL2FXCONST_DBL(0.0f);
1483
110k
    }
1484
403k
    *quantSpecCoefIdx += 1;
1485
403k
    if (*quantSpecCoefIdx >= 1024) {
1486
19
      return -1;
1487
19
    }
1488
403k
  }
1489
198k
  return 0;
1490
200k
}
1491
1492
/*---------------------------------------------------------------------------------------------
1493
     description:   Mutes spectral lines which have been marked as erroneous
1494
(Q_VALUE_INVALID)
1495
--------------------------------------------------------------------------------------------
1496
*/
1497
7.12k
void HcrMuteErroneousLines(H_HCR_INFO hHcr) {
1498
7.12k
  int c;
1499
7.12k
  FIXP_DBL *RESTRICT pLong =
1500
7.12k
      SPEC_LONG(hHcr->decInOut.pQuantizedSpectralCoefficientsBase);
1501
1502
  /* if there is a line with value Q_VALUE_INVALID mute it */
1503
7.29M
  for (c = 0; c < 1024; c++) {
1504
7.29M
    if (pLong[c] == (FIXP_DBL)Q_VALUE_INVALID) {
1505
9.09k
      pLong[c] = FL2FXCONST_DBL(0.0f); /* muting */
1506
9.09k
    }
1507
7.29M
  }
1508
7.12k
}