Coverage Report

Created: 2026-01-16 07:48

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/src/fdk-aac/libSBRdec/src/sbrdecoder.cpp
Line
Count
Source
1
/* -----------------------------------------------------------------------------
2
Software License for The Fraunhofer FDK AAC Codec Library for Android
3
4
© Copyright  1995 - 2021 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
/*!
104
  \file
105
  \brief  SBR decoder frontend
106
  This module provides a frontend to the SBR decoder. The function openSBR() is
107
  called for initialization. The function sbrDecoder_Apply() is called for each
108
  frame. sbr_Apply() will call the required functions to decode the raw SBR data
109
  (provided by env_extr.cpp), to decode the envelope data and noise floor levels
110
  [decodeSbrData()], and to finally apply SBR to the current frame [sbr_dec()].
111
112
  \sa sbrDecoder_Apply(), \ref documentationOverview
113
*/
114
115
/*!
116
  \page documentationOverview Overview of important information resources and
117
  source code documentation
118
119
  As part of this documentation you can find more extensive descriptions about
120
  key concepts and algorithms at the following locations:
121
122
  <h2>Programming</h2>
123
124
  \li Buffer management: sbrDecoder_Apply() and sbr_dec()
125
  \li Internal scale factors to maximize SNR on fixed point processors:
126
  #QMF_SCALE_FACTOR \li Special mantissa-exponent format: Created in
127
  requantizeEnvelopeData() and used in calculateSbrEnvelope()
128
129
  <h2>Algorithmic details</h2>
130
  \li About the SBR data format: \ref SBR_HEADER_ELEMENT and \ref
131
  SBR_STANDARD_ELEMENT \li Details about the bitstream decoder: env_extr.cpp \li
132
  Details about the QMF filterbank and the provided polyphase implementation:
133
  qmf_dec.cpp \li Details about the transposer: lpp_tran.cpp \li Details about
134
  the envelope adjuster: env_calc.cpp
135
136
*/
137
138
#include "sbrdecoder.h"
139
140
#include "FDK_bitstream.h"
141
142
#include "sbrdec_freq_sca.h"
143
#include "env_extr.h"
144
#include "sbr_dec.h"
145
#include "env_dec.h"
146
#include "FDK_crc.h"
147
#include "sbr_ram.h"
148
#include "sbr_rom.h"
149
#include "lpp_tran.h"
150
#include "transcendent.h"
151
152
#include "sbrdec_drc.h"
153
154
#include "psbitdec.h"
155
156
/* Decoder library info */
157
#define SBRDECODER_LIB_VL0 3
158
#define SBRDECODER_LIB_VL1 1
159
#define SBRDECODER_LIB_VL2 0
160
0
#define SBRDECODER_LIB_TITLE "SBR Decoder"
161
#ifdef SUPPRESS_BUILD_DATE_INFO
162
#define SBRDECODER_LIB_BUILD_DATE ""
163
#define SBRDECODER_LIB_BUILD_TIME ""
164
#else
165
0
#define SBRDECODER_LIB_BUILD_DATE __DATE__
166
0
#define SBRDECODER_LIB_BUILD_TIME __TIME__
167
#endif
168
169
2.35M
static void setFrameErrorFlag(SBR_DECODER_ELEMENT *pSbrElement, UCHAR value) {
170
2.35M
  if (pSbrElement != NULL) {
171
2.35M
    switch (value) {
172
1.79M
      case FRAME_ERROR_ALLSLOTS:
173
1.79M
        FDKmemset(pSbrElement->frameErrorFlag, FRAME_ERROR,
174
1.79M
                  sizeof(pSbrElement->frameErrorFlag));
175
1.79M
        break;
176
562k
      default:
177
562k
        pSbrElement->frameErrorFlag[pSbrElement->useFrameSlot] = value;
178
2.35M
    }
179
2.35M
  }
180
2.35M
}
181
182
817k
static UCHAR getHeaderSlot(UCHAR currentSlot, UCHAR hdrSlotUsage[(1) + 1]) {
183
817k
  UINT occupied = 0;
184
817k
  int s;
185
817k
  UCHAR slot = hdrSlotUsage[currentSlot];
186
187
817k
  FDK_ASSERT((1) + 1 < 32);
188
189
2.28M
  for (s = 0; s < (1) + 1; s++) {
190
1.63M
    if ((hdrSlotUsage[s] == slot) && (s != slot)) {
191
165k
      occupied = 1;
192
165k
      break;
193
165k
    }
194
1.63M
  }
195
196
817k
  if (occupied) {
197
165k
    occupied = 0;
198
199
496k
    for (s = 0; s < (1) + 1; s++) {
200
330k
      occupied |= 1 << hdrSlotUsage[s];
201
330k
    }
202
330k
    for (s = 0; s < (1) + 1; s++) {
203
330k
      if (!(occupied & 0x1)) {
204
165k
        slot = s;
205
165k
        break;
206
165k
      }
207
165k
      occupied >>= 1;
208
165k
    }
209
165k
  }
210
211
817k
  return slot;
212
817k
}
213
214
static void copySbrHeader(HANDLE_SBR_HEADER_DATA hDst,
215
0
                          const HANDLE_SBR_HEADER_DATA hSrc) {
216
  /* copy the whole header memory (including pointers) */
217
0
  FDKmemcpy(hDst, hSrc, sizeof(SBR_HEADER_DATA));
218
219
  /* update pointers */
220
0
  hDst->freqBandData.freqBandTable[0] = hDst->freqBandData.freqBandTableLo;
221
0
  hDst->freqBandData.freqBandTable[1] = hDst->freqBandData.freqBandTableHi;
222
0
}
223
224
static int compareSbrHeader(const HANDLE_SBR_HEADER_DATA hHdr1,
225
0
                            const HANDLE_SBR_HEADER_DATA hHdr2) {
226
0
  int result = 0;
227
228
  /* compare basic data */
229
0
  result |= (hHdr1->syncState != hHdr2->syncState) ? 1 : 0;
230
0
  result |= (hHdr1->status != hHdr2->status) ? 1 : 0;
231
0
  result |= (hHdr1->frameErrorFlag != hHdr2->frameErrorFlag) ? 1 : 0;
232
0
  result |= (hHdr1->numberTimeSlots != hHdr2->numberTimeSlots) ? 1 : 0;
233
0
  result |=
234
0
      (hHdr1->numberOfAnalysisBands != hHdr2->numberOfAnalysisBands) ? 1 : 0;
235
0
  result |= (hHdr1->timeStep != hHdr2->timeStep) ? 1 : 0;
236
0
  result |= (hHdr1->sbrProcSmplRate != hHdr2->sbrProcSmplRate) ? 1 : 0;
237
238
  /* compare bitstream data */
239
0
  result |=
240
0
      FDKmemcmp(&hHdr1->bs_data, &hHdr2->bs_data, sizeof(SBR_HEADER_DATA_BS));
241
0
  result |=
242
0
      FDKmemcmp(&hHdr1->bs_dflt, &hHdr2->bs_dflt, sizeof(SBR_HEADER_DATA_BS));
243
0
  result |= FDKmemcmp(&hHdr1->bs_info, &hHdr2->bs_info,
244
0
                      sizeof(SBR_HEADER_DATA_BS_INFO));
245
246
  /* compare frequency band data */
247
0
  result |= FDKmemcmp(&hHdr1->freqBandData, &hHdr2->freqBandData,
248
0
                      (8 + MAX_NUM_LIMITERS + 1) * sizeof(UCHAR));
249
0
  result |= FDKmemcmp(hHdr1->freqBandData.freqBandTableLo,
250
0
                      hHdr2->freqBandData.freqBandTableLo,
251
0
                      (MAX_FREQ_COEFFS / 2 + 1) * sizeof(UCHAR));
252
0
  result |= FDKmemcmp(hHdr1->freqBandData.freqBandTableHi,
253
0
                      hHdr2->freqBandData.freqBandTableHi,
254
0
                      (MAX_FREQ_COEFFS + 1) * sizeof(UCHAR));
255
0
  result |= FDKmemcmp(hHdr1->freqBandData.freqBandTableNoise,
256
0
                      hHdr2->freqBandData.freqBandTableNoise,
257
0
                      (MAX_NOISE_COEFFS + 1) * sizeof(UCHAR));
258
0
  result |=
259
0
      FDKmemcmp(hHdr1->freqBandData.v_k_master, hHdr2->freqBandData.v_k_master,
260
0
                (MAX_FREQ_COEFFS + 1) * sizeof(UCHAR));
261
262
0
  return result;
263
0
}
264
265
/*!
266
  \brief Reset SBR decoder.
267
268
  Reset should only be called if SBR has been sucessfully detected by
269
  an appropriate checkForPayload() function.
270
271
  \return Error code.
272
*/
273
static SBR_ERROR sbrDecoder_ResetElement(HANDLE_SBRDECODER self,
274
                                         int sampleRateIn, int sampleRateOut,
275
                                         int samplesPerFrame,
276
                                         const MP4_ELEMENT_ID elementID,
277
                                         const int elementIndex,
278
97.9k
                                         const int overlap) {
279
97.9k
  SBR_ERROR sbrError = SBRDEC_OK;
280
97.9k
  HANDLE_SBR_HEADER_DATA hSbrHeader;
281
97.9k
  UINT qmfFlags = 0;
282
283
97.9k
  int i, synDownsampleFac;
284
285
  /* USAC: assuming theoretical case 8 kHz output sample rate with 4:1 SBR */
286
97.9k
  const int sbr_min_sample_rate_in = IS_USAC(self->coreCodec) ? 2000 : 6400;
287
288
  /* Check in/out samplerates */
289
97.9k
  if (sampleRateIn < sbr_min_sample_rate_in || sampleRateIn > (96000)) {
290
1
    sbrError = SBRDEC_UNSUPPORTED_CONFIG;
291
1
    goto bail;
292
1
  }
293
294
97.9k
  if (sampleRateOut > (96000)) {
295
4
    sbrError = SBRDEC_UNSUPPORTED_CONFIG;
296
4
    goto bail;
297
4
  }
298
299
  /* Set QMF mode flags */
300
97.9k
  if (self->flags & SBRDEC_LOW_POWER) qmfFlags |= QMF_FLAG_LP;
301
302
97.9k
  if (self->coreCodec == AOT_ER_AAC_ELD) {
303
2.42k
    if (self->flags & SBRDEC_LD_MPS_QMF) {
304
0
      qmfFlags |= QMF_FLAG_MPSLDFB;
305
2.42k
    } else {
306
2.42k
      qmfFlags |= QMF_FLAG_CLDFB;
307
2.42k
    }
308
2.42k
  }
309
310
  /* Set downsampling factor for synthesis filter bank */
311
97.9k
  if (sampleRateOut == 0) {
312
    /* no single rate mode */
313
90.7k
    sampleRateOut =
314
90.7k
        sampleRateIn
315
90.7k
        << 1; /* In case of implicit signalling, assume dual rate SBR */
316
90.7k
  }
317
318
97.9k
  if (sampleRateIn == sampleRateOut) {
319
2.10k
    synDownsampleFac = 2;
320
2.10k
    self->flags |= SBRDEC_DOWNSAMPLE;
321
95.8k
  } else {
322
95.8k
    synDownsampleFac = 1;
323
95.8k
    self->flags &= ~SBRDEC_DOWNSAMPLE;
324
95.8k
  }
325
326
97.9k
  self->synDownsampleFac = synDownsampleFac;
327
97.9k
  self->sampleRateOut = sampleRateOut;
328
329
97.9k
  {
330
293k
    for (i = 0; i < (1) + 1; i++) {
331
195k
      int setDflt;
332
195k
      hSbrHeader = &(self->sbrHeader[elementIndex][i]);
333
195k
      setDflt = ((hSbrHeader->syncState == SBR_NOT_INITIALIZED) ||
334
2.01k
                 (self->flags & SBRDEC_FORCE_RESET))
335
195k
                    ? 1
336
195k
                    : 0;
337
338
      /* init a default header such that we can at least do upsampling later */
339
195k
      sbrError = initHeaderData(hSbrHeader, sampleRateIn, sampleRateOut,
340
195k
                                self->downscaleFactor, samplesPerFrame,
341
195k
                                self->flags, setDflt);
342
343
      /* Set synchState to UPSAMPLING in case it already is initialized */
344
195k
      hSbrHeader->syncState = hSbrHeader->syncState > UPSAMPLING
345
195k
                                  ? UPSAMPLING
346
195k
                                  : hSbrHeader->syncState;
347
195k
    }
348
97.9k
  }
349
350
97.9k
  if (sbrError != SBRDEC_OK) {
351
225
    goto bail;
352
225
  }
353
354
97.7k
  if (!self->pQmfDomain->globalConf.qmfDomainExplicitConfig) {
355
97.7k
    self->pQmfDomain->globalConf.flags_requested |= qmfFlags;
356
97.7k
    self->pQmfDomain->globalConf.nBandsAnalysis_requested =
357
97.7k
        self->sbrHeader[elementIndex][0].numberOfAnalysisBands;
358
97.7k
    self->pQmfDomain->globalConf.nBandsSynthesis_requested =
359
97.7k
        (synDownsampleFac == 1) ? 64 : 32; /* may be overwritten by MPS */
360
97.7k
    self->pQmfDomain->globalConf.nBandsSynthesis_requested /=
361
97.7k
        self->downscaleFactor;
362
97.7k
    self->pQmfDomain->globalConf.nQmfTimeSlots_requested =
363
97.7k
        self->sbrHeader[elementIndex][0].numberTimeSlots *
364
97.7k
        self->sbrHeader[elementIndex][0].timeStep;
365
97.7k
    self->pQmfDomain->globalConf.nQmfOvTimeSlots_requested = overlap;
366
97.7k
    self->pQmfDomain->globalConf.nQmfProcBands_requested = 64; /* always 64 */
367
97.7k
    self->pQmfDomain->globalConf.nQmfProcChannels_requested =
368
97.7k
        1; /* may be overwritten by MPS */
369
97.7k
  }
370
371
  /* Init SBR channels going to be assigned to a SBR element */
372
97.7k
  {
373
97.7k
    int ch;
374
267k
    for (ch = 0; ch < self->pSbrElement[elementIndex]->nChannels; ch++) {
375
169k
      int headerIndex =
376
169k
          getHeaderSlot(self->pSbrElement[elementIndex]->useFrameSlot,
377
169k
                        self->pSbrElement[elementIndex]->useHeaderSlot);
378
379
      /* and create sbrDec */
380
169k
      sbrError =
381
169k
          createSbrDec(self->pSbrElement[elementIndex]->pSbrChannel[ch],
382
169k
                       &self->sbrHeader[elementIndex][headerIndex],
383
169k
                       &self->pSbrElement[elementIndex]->transposerSettings,
384
169k
                       synDownsampleFac, qmfFlags, self->flags, overlap, ch,
385
169k
                       self->codecFrameSize);
386
387
169k
      if (sbrError != SBRDEC_OK) {
388
24
        goto bail;
389
24
      }
390
169k
    }
391
97.7k
  }
392
393
  // FDKmemclear(sbr_OverlapBuffer, sizeof(sbr_OverlapBuffer));
394
395
97.6k
  if (self->numSbrElements == 1) {
396
63.3k
    switch (self->coreCodec) {
397
57.7k
      case AOT_AAC_LC:
398
57.7k
      case AOT_SBR:
399
57.7k
      case AOT_PS:
400
57.8k
      case AOT_ER_AAC_SCAL:
401
57.8k
      case AOT_DRM_AAC:
402
57.8k
      case AOT_DRM_SURROUND:
403
57.8k
        if (CreatePsDec(&self->hParametricStereoDec, samplesPerFrame)) {
404
0
          sbrError = SBRDEC_CREATE_ERROR;
405
0
          goto bail;
406
0
        }
407
57.8k
        break;
408
57.8k
      default:
409
5.48k
        break;
410
63.3k
    }
411
63.3k
  }
412
413
  /* Init frame delay slot handling */
414
97.6k
  self->pSbrElement[elementIndex]->useFrameSlot = 0;
415
293k
  for (i = 0; i < ((1) + 1); i++) {
416
195k
    self->pSbrElement[elementIndex]->useHeaderSlot[i] = i;
417
195k
  }
418
419
97.9k
bail:
420
421
97.9k
  return sbrError;
422
97.6k
}
423
424
/*!
425
  \brief Assign QMF domain provided QMF channels to SBR channels.
426
427
  \return void
428
*/
429
97.9k
static void sbrDecoder_AssignQmfChannels2SbrChannels(HANDLE_SBRDECODER self) {
430
97.9k
  int ch, el, absCh_offset = 0;
431
235k
  for (el = 0; el < self->numSbrElements; el++) {
432
137k
    if (self->pSbrElement[el] != NULL) {
433
383k
      for (ch = 0; ch < self->pSbrElement[el]->nChannels; ch++) {
434
246k
        FDK_ASSERT(((absCh_offset + ch) < ((8) + (1))) &&
435
246k
                   ((absCh_offset + ch) < ((8) + (1))));
436
246k
        self->pSbrElement[el]->pSbrChannel[ch]->SbrDec.qmfDomainInCh =
437
246k
            &self->pQmfDomain->QmfDomainIn[absCh_offset + ch];
438
246k
        self->pSbrElement[el]->pSbrChannel[ch]->SbrDec.qmfDomainOutCh =
439
246k
            &self->pQmfDomain->QmfDomainOut[absCh_offset + ch];
440
246k
      }
441
136k
      absCh_offset += self->pSbrElement[el]->nChannels;
442
136k
    }
443
137k
  }
444
97.9k
}
445
446
SBR_ERROR sbrDecoder_Open(HANDLE_SBRDECODER *pSelf,
447
13.5k
                          HANDLE_FDK_QMF_DOMAIN pQmfDomain) {
448
13.5k
  HANDLE_SBRDECODER self = NULL;
449
13.5k
  SBR_ERROR sbrError = SBRDEC_OK;
450
13.5k
  int elIdx;
451
452
13.5k
  if ((pSelf == NULL) || (pQmfDomain == NULL)) {
453
0
    return SBRDEC_INVALID_ARGUMENT;
454
0
  }
455
456
  /* Get memory for this instance */
457
13.5k
  self = GetRam_SbrDecoder();
458
13.5k
  if (self == NULL) {
459
0
    sbrError = SBRDEC_MEM_ALLOC_FAILED;
460
0
    goto bail;
461
0
  }
462
463
13.5k
  self->pQmfDomain = pQmfDomain;
464
465
  /*
466
  Already zero because of calloc
467
  self->numSbrElements = 0;
468
  self->numSbrChannels = 0;
469
  self->codecFrameSize = 0;
470
  */
471
472
13.5k
  self->numDelayFrames = (1); /* set to the max value by default */
473
474
  /* Initialize header sync state */
475
121k
  for (elIdx = 0; elIdx < (8); elIdx += 1) {
476
108k
    int i;
477
325k
    for (i = 0; i < (1) + 1; i += 1) {
478
216k
      self->sbrHeader[elIdx][i].syncState = SBR_NOT_INITIALIZED;
479
216k
    }
480
108k
  }
481
482
13.5k
  *pSelf = self;
483
484
13.5k
bail:
485
13.5k
  return sbrError;
486
13.5k
}
487
488
/**
489
 * \brief determine if the given core codec AOT can be processed or not.
490
 * \param coreCodec core codec audio object type.
491
 * \return 1 if SBR can be processed, 0 if SBR cannot be processed/applied.
492
 */
493
409k
static int sbrDecoder_isCoreCodecValid(AUDIO_OBJECT_TYPE coreCodec) {
494
409k
  switch (coreCodec) {
495
224k
    case AOT_AAC_LC:
496
224k
    case AOT_SBR:
497
224k
    case AOT_PS:
498
247k
    case AOT_ER_AAC_SCAL:
499
390k
    case AOT_ER_AAC_ELD:
500
390k
    case AOT_DRM_AAC:
501
390k
    case AOT_DRM_SURROUND:
502
409k
    case AOT_USAC:
503
409k
      return 1;
504
405
    default:
505
405
      return 0;
506
409k
  }
507
409k
}
508
509
static void sbrDecoder_DestroyElement(HANDLE_SBRDECODER self,
510
1.99M
                                      const int elementIndex) {
511
1.99M
  if (self->pSbrElement[elementIndex] != NULL) {
512
95.9k
    int ch;
513
514
287k
    for (ch = 0; ch < SBRDEC_MAX_CH_PER_ELEMENT; ch++) {
515
191k
      if (self->pSbrElement[elementIndex]->pSbrChannel[ch] != NULL) {
516
165k
        deleteSbrDec(self->pSbrElement[elementIndex]->pSbrChannel[ch]);
517
165k
        FreeRam_SbrDecChannel(
518
165k
            &self->pSbrElement[elementIndex]->pSbrChannel[ch]);
519
165k
        self->numSbrChannels -= 1;
520
165k
      }
521
191k
    }
522
95.9k
    FreeRam_SbrDecElement(&self->pSbrElement[elementIndex]);
523
95.9k
    self->numSbrElements -= 1;
524
95.9k
  }
525
1.99M
}
526
527
SBR_ERROR sbrDecoder_InitElement(
528
    HANDLE_SBRDECODER self, const int sampleRateIn, const int sampleRateOut,
529
    const int samplesPerFrame, const AUDIO_OBJECT_TYPE coreCodec,
530
    const MP4_ELEMENT_ID elementID, const int elementIndex,
531
    const UCHAR harmonicSBR, const UCHAR stereoConfigIndex,
532
395k
    const UCHAR configMode, UCHAR *configChanged, const INT downscaleFactor) {
533
395k
  SBR_ERROR sbrError = SBRDEC_OK;
534
395k
  int chCnt = 0;
535
395k
  int nSbrElementsStart;
536
395k
  int nSbrChannelsStart;
537
395k
  if (self == NULL) {
538
0
    return SBRDEC_INVALID_ARGUMENT;
539
0
  }
540
541
395k
  nSbrElementsStart = self->numSbrElements;
542
395k
  nSbrChannelsStart = self->numSbrChannels;
543
544
  /* Check core codec AOT */
545
395k
  if (!sbrDecoder_isCoreCodecValid(coreCodec) || elementIndex >= (8)) {
546
405
    sbrError = SBRDEC_UNSUPPORTED_CONFIG;
547
405
    goto bail;
548
405
  }
549
550
394k
  if (elementID != ID_SCE && elementID != ID_CPE && elementID != ID_LFE) {
551
0
    sbrError = SBRDEC_UNSUPPORTED_CONFIG;
552
0
    goto bail;
553
0
  }
554
555
394k
  if (self->sampleRateIn == sampleRateIn &&
556
363k
      self->codecFrameSize == samplesPerFrame && self->coreCodec == coreCodec &&
557
363k
      self->pSbrElement[elementIndex] != NULL &&
558
291k
      self->pSbrElement[elementIndex]->elementID == elementID &&
559
289k
      !(self->flags & SBRDEC_FORCE_RESET) &&
560
289k
      ((sampleRateOut == 0) ? 1 : (self->sampleRateOut == sampleRateOut)) &&
561
289k
      ((harmonicSBR == 2) ? 1
562
289k
                          : (self->harmonicSBR ==
563
0
                             harmonicSBR)) /* The value 2 signalizes that
564
                                              harmonicSBR shall be ignored in
565
                                              the config change detection */
566
394k
  ) {
567
    /* Nothing to do */
568
289k
    return SBRDEC_OK;
569
289k
  } else {
570
105k
    if (configMode & AC_CM_DET_CFG_CHANGE) {
571
7.17k
      *configChanged = 1;
572
7.17k
    }
573
105k
  }
574
575
  /* reaching this point the SBR-decoder gets (re-)configured */
576
577
  /* The flags field is used for all elements! */
578
105k
  self->flags &=
579
105k
      (SBRDEC_FORCE_RESET | SBRDEC_FLUSH); /* Keep the global flags. They will
580
                                              be reset after decoding. */
581
105k
  self->flags |= (downscaleFactor > 1) ? SBRDEC_ELD_DOWNSCALE : 0;
582
105k
  self->flags |= (coreCodec == AOT_ER_AAC_ELD) ? SBRDEC_ELD_GRID : 0;
583
105k
  self->flags |= (coreCodec == AOT_ER_AAC_SCAL) ? SBRDEC_SYNTAX_SCAL : 0;
584
105k
  self->flags |=
585
105k
      (coreCodec == AOT_DRM_AAC) ? SBRDEC_SYNTAX_SCAL | SBRDEC_SYNTAX_DRM : 0;
586
105k
  self->flags |= (coreCodec == AOT_DRM_SURROUND)
587
105k
                     ? SBRDEC_SYNTAX_SCAL | SBRDEC_SYNTAX_DRM
588
105k
                     : 0;
589
105k
  self->flags |= (coreCodec == AOT_USAC) ? SBRDEC_SYNTAX_USAC : 0;
590
  /* Robustness: Take integer division rounding into consideration. E.g. 22050
591
   * Hz with 4:1 SBR => 5512 Hz core sampling rate. */
592
105k
  self->flags |= (sampleRateIn == sampleRateOut / 4) ? SBRDEC_QUAD_RATE : 0;
593
105k
  self->flags |= (harmonicSBR == 1) ? SBRDEC_USAC_HARMONICSBR : 0;
594
595
105k
  if (configMode & AC_CM_DET_CFG_CHANGE) {
596
7.17k
    return SBRDEC_OK;
597
7.17k
  }
598
599
97.9k
  self->sampleRateIn = sampleRateIn;
600
97.9k
  self->codecFrameSize = samplesPerFrame;
601
97.9k
  self->coreCodec = coreCodec;
602
97.9k
  self->harmonicSBR = harmonicSBR;
603
97.9k
  self->downscaleFactor = downscaleFactor;
604
605
  /* Init SBR elements */
606
97.9k
  {
607
97.9k
    int elChannels, ch;
608
609
97.9k
    if (self->pSbrElement[elementIndex] == NULL) {
610
95.9k
      self->pSbrElement[elementIndex] = GetRam_SbrDecElement(elementIndex);
611
95.9k
      if (self->pSbrElement[elementIndex] == NULL) {
612
0
        sbrError = SBRDEC_MEM_ALLOC_FAILED;
613
0
        goto bail;
614
0
      }
615
95.9k
      self->numSbrElements++;
616
95.9k
    } else {
617
2.01k
      self->numSbrChannels -= self->pSbrElement[elementIndex]->nChannels;
618
2.01k
    }
619
620
    /* Determine amount of channels for this element */
621
97.9k
    switch (elementID) {
622
0
      case ID_NONE:
623
17.1k
      case ID_CPE:
624
17.1k
        elChannels = 2;
625
17.1k
        break;
626
357
      case ID_LFE:
627
80.8k
      case ID_SCE:
628
80.8k
        elChannels = 1;
629
80.8k
        break;
630
0
      default:
631
0
        elChannels = 0;
632
0
        break;
633
97.9k
    }
634
635
    /* Handle case of Parametric Stereo */
636
97.9k
    if (elementIndex == 0 && elementID == ID_SCE) {
637
59.5k
      switch (coreCodec) {
638
54.7k
        case AOT_AAC_LC:
639
54.7k
        case AOT_SBR:
640
54.7k
        case AOT_PS:
641
54.8k
        case AOT_ER_AAC_SCAL:
642
54.8k
        case AOT_DRM_AAC:
643
54.8k
        case AOT_DRM_SURROUND:
644
54.8k
          elChannels = 2;
645
54.8k
          break;
646
4.72k
        default:
647
4.72k
          break;
648
59.5k
      }
649
59.5k
    }
650
651
    /* Sanity check to avoid memory leaks */
652
97.9k
    if (elChannels < self->pSbrElement[elementIndex]->nChannels ||
653
97.9k
        (self->numSbrChannels + elChannels) > (8) + (1)) {
654
0
      self->numSbrChannels += self->pSbrElement[elementIndex]->nChannels;
655
0
      sbrError = SBRDEC_PARSE_ERROR;
656
0
      goto bail;
657
0
    }
658
659
    /* Save element ID for sanity checks and to have a fallback for concealment.
660
     */
661
97.9k
    self->pSbrElement[elementIndex]->elementID = elementID;
662
97.9k
    self->pSbrElement[elementIndex]->nChannels = elChannels;
663
664
267k
    for (ch = 0; ch < elChannels; ch++) {
665
169k
      if (self->pSbrElement[elementIndex]->pSbrChannel[ch] == NULL) {
666
165k
        self->pSbrElement[elementIndex]->pSbrChannel[ch] =
667
165k
            GetRam_SbrDecChannel(chCnt);
668
165k
        if (self->pSbrElement[elementIndex]->pSbrChannel[ch] == NULL) {
669
0
          sbrError = SBRDEC_MEM_ALLOC_FAILED;
670
0
          goto bail;
671
0
        }
672
165k
      }
673
169k
      self->numSbrChannels++;
674
675
169k
      sbrDecoder_drcInitChannel(&self->pSbrElement[elementIndex]
676
169k
                                     ->pSbrChannel[ch]
677
169k
                                     ->SbrDec.sbrDrcChannel);
678
679
169k
      chCnt++;
680
169k
    }
681
97.9k
  }
682
683
97.9k
  if (!self->pQmfDomain->globalConf.qmfDomainExplicitConfig) {
684
97.9k
    self->pQmfDomain->globalConf.nInputChannels_requested =
685
97.9k
        self->numSbrChannels;
686
97.9k
    self->pQmfDomain->globalConf.nOutputChannels_requested =
687
97.9k
        fMax((INT)self->numSbrChannels,
688
97.9k
             (INT)self->pQmfDomain->globalConf.nOutputChannels_requested);
689
97.9k
  }
690
691
  /* Make sure each SBR channel has one QMF channel assigned even if
692
   * numSbrChannels or element set-up has changed. */
693
97.9k
  sbrDecoder_AssignQmfChannels2SbrChannels(self);
694
695
  /* clear error flags for all delay slots */
696
97.9k
  FDKmemclear(self->pSbrElement[elementIndex]->frameErrorFlag,
697
97.9k
              ((1) + 1) * sizeof(UCHAR));
698
699
97.9k
  {
700
97.9k
    int overlap;
701
702
97.9k
    if (coreCodec == AOT_ER_AAC_ELD) {
703
2.43k
      overlap = 0;
704
95.5k
    } else if (self->flags & SBRDEC_QUAD_RATE) {
705
430
      overlap = (3 * 4);
706
95.0k
    } else {
707
95.0k
      overlap = (3 * 2);
708
95.0k
    }
709
    /* Initialize this instance */
710
97.9k
    sbrError = sbrDecoder_ResetElement(self, sampleRateIn, sampleRateOut,
711
97.9k
                                       samplesPerFrame, elementID, elementIndex,
712
97.9k
                                       overlap);
713
97.9k
  }
714
715
98.3k
bail:
716
98.3k
  if (sbrError != SBRDEC_OK) {
717
659
    if ((nSbrElementsStart < self->numSbrElements) ||
718
415
        (nSbrChannelsStart < self->numSbrChannels)) {
719
      /* Free the memory allocated for this element */
720
244
      sbrDecoder_DestroyElement(self, elementIndex);
721
415
    } else if ((elementIndex < (8)) &&
722
415
               (self->pSbrElement[elementIndex] !=
723
415
                NULL)) { /* Set error flag to trigger concealment */
724
10
      setFrameErrorFlag(self->pSbrElement[elementIndex], FRAME_ERROR);
725
10
    }
726
659
  }
727
728
98.3k
  return sbrError;
729
97.9k
}
730
731
/**
732
 * \brief Free config dependent SBR memory.
733
 * \param self SBR decoder instance handle
734
 */
735
235k
SBR_ERROR sbrDecoder_FreeMem(HANDLE_SBRDECODER *self) {
736
235k
  int i;
737
235k
  int elIdx;
738
739
235k
  if (self != NULL && *self != NULL) {
740
2.11M
    for (i = 0; i < (8); i++) {
741
1.88M
      sbrDecoder_DestroyElement(*self, i);
742
1.88M
    }
743
744
2.11M
    for (elIdx = 0; elIdx < (8); elIdx += 1) {
745
5.64M
      for (i = 0; i < (1) + 1; i += 1) {
746
3.76M
        (*self)->sbrHeader[elIdx][i].syncState = SBR_NOT_INITIALIZED;
747
3.76M
      }
748
1.88M
    }
749
235k
  }
750
751
235k
  return SBRDEC_OK;
752
235k
}
753
754
/**
755
 * \brief Apply decoded SBR header for one element.
756
 * \param self SBR decoder instance handle
757
 * \param hSbrHeader SBR header handle to be processed.
758
 * \param hSbrChannel pointer array to the SBR element channels corresponding to
759
 * the SBR header.
760
 * \param headerStatus header status value returned from SBR header parser.
761
 * \param numElementChannels amount of channels for the SBR element whos header
762
 * is to be processed.
763
 */
764
static SBR_ERROR sbrDecoder_HeaderUpdate(HANDLE_SBRDECODER self,
765
                                         HANDLE_SBR_HEADER_DATA hSbrHeader,
766
                                         SBR_HEADER_STATUS headerStatus,
767
                                         HANDLE_SBR_CHANNEL hSbrChannel[],
768
430k
                                         const int numElementChannels) {
769
430k
  SBR_ERROR errorStatus = SBRDEC_OK;
770
771
  /*
772
    change of control data, reset decoder
773
  */
774
430k
  errorStatus = resetFreqBandTables(hSbrHeader, self->flags);
775
776
430k
  if (errorStatus == SBRDEC_OK) {
777
318k
    if (hSbrHeader->syncState == UPSAMPLING && headerStatus != HEADER_RESET) {
778
#if (SBRDEC_MAX_HB_FADE_FRAMES > 0)
779
      int ch;
780
      for (ch = 0; ch < numElementChannels; ch += 1) {
781
        hSbrChannel[ch]->SbrDec.highBandFadeCnt = SBRDEC_MAX_HB_FADE_FRAMES;
782
      }
783
784
#endif
785
      /* As the default header would limit the frequency range,
786
         lowSubband and highSubband must be patched. */
787
120k
      hSbrHeader->freqBandData.lowSubband = hSbrHeader->numberOfAnalysisBands;
788
120k
      hSbrHeader->freqBandData.highSubband = hSbrHeader->numberOfAnalysisBands;
789
120k
    }
790
791
    /* Trigger a reset before processing this slot */
792
318k
    hSbrHeader->status |= SBRDEC_HDR_STAT_RESET;
793
318k
  }
794
795
430k
  return errorStatus;
796
430k
}
797
798
INT sbrDecoder_Header(HANDLE_SBRDECODER self, HANDLE_FDK_BITSTREAM hBs,
799
                      const INT sampleRateIn, const INT sampleRateOut,
800
                      const INT samplesPerFrame,
801
                      const AUDIO_OBJECT_TYPE coreCodec,
802
                      const MP4_ELEMENT_ID elementID, const INT elementIndex,
803
                      const UCHAR harmonicSBR, const UCHAR stereoConfigIndex,
804
                      const UCHAR configMode, UCHAR *configChanged,
805
14.1k
                      const INT downscaleFactor) {
806
14.1k
  SBR_HEADER_STATUS headerStatus;
807
14.1k
  HANDLE_SBR_HEADER_DATA hSbrHeader;
808
14.1k
  SBR_ERROR sbrError = SBRDEC_OK;
809
14.1k
  int headerIndex;
810
14.1k
  UINT flagsSaved =
811
14.1k
      0; /* flags should not be changed in AC_CM_DET_CFG_CHANGE - mode after
812
            parsing */
813
814
14.1k
  if (self == NULL || elementIndex >= (8)) {
815
0
    return SBRDEC_UNSUPPORTED_CONFIG;
816
0
  }
817
818
14.1k
  if (!sbrDecoder_isCoreCodecValid(coreCodec)) {
819
0
    return SBRDEC_UNSUPPORTED_CONFIG;
820
0
  }
821
822
14.1k
  if (configMode & AC_CM_DET_CFG_CHANGE) {
823
7.17k
    flagsSaved = self->flags; /* store */
824
7.17k
  }
825
826
14.1k
  sbrError = sbrDecoder_InitElement(
827
14.1k
      self, sampleRateIn, sampleRateOut, samplesPerFrame, coreCodec, elementID,
828
14.1k
      elementIndex, harmonicSBR, stereoConfigIndex, configMode, configChanged,
829
14.1k
      downscaleFactor);
830
831
14.1k
  if ((sbrError != SBRDEC_OK) || (elementID == ID_LFE)) {
832
707
    goto bail;
833
707
  }
834
835
13.4k
  if (configMode & AC_CM_DET_CFG_CHANGE) {
836
6.82k
    hSbrHeader = NULL;
837
6.82k
  } else {
838
6.59k
    headerIndex = getHeaderSlot(self->pSbrElement[elementIndex]->useFrameSlot,
839
6.59k
                                self->pSbrElement[elementIndex]->useHeaderSlot);
840
841
6.59k
    hSbrHeader = &(self->sbrHeader[elementIndex][headerIndex]);
842
6.59k
  }
843
844
13.4k
  headerStatus = sbrGetHeaderData(hSbrHeader, hBs, self->flags, 0, configMode);
845
846
13.4k
  if (coreCodec == AOT_USAC) {
847
9.19k
    if (configMode & AC_CM_DET_CFG_CHANGE) {
848
4.69k
      self->flags = flagsSaved; /* restore */
849
4.69k
    }
850
9.19k
    return sbrError;
851
9.19k
  }
852
853
4.22k
  if (configMode & AC_CM_ALLOC_MEM) {
854
2.09k
    SBR_DECODER_ELEMENT *pSbrElement;
855
856
2.09k
    pSbrElement = self->pSbrElement[elementIndex];
857
858
    /* Sanity check */
859
2.09k
    if (pSbrElement != NULL) {
860
2.09k
      if ((elementID == ID_CPE && pSbrElement->nChannels != 2) ||
861
2.09k
          (elementID != ID_CPE && pSbrElement->nChannels != 1)) {
862
0
        return SBRDEC_UNSUPPORTED_CONFIG;
863
0
      }
864
2.09k
      if (headerStatus == HEADER_RESET) {
865
2.09k
        sbrError = sbrDecoder_HeaderUpdate(self, hSbrHeader, headerStatus,
866
2.09k
                                           pSbrElement->pSbrChannel,
867
2.09k
                                           pSbrElement->nChannels);
868
869
2.09k
        if (sbrError == SBRDEC_OK) {
870
2.07k
          hSbrHeader->syncState = SBR_HEADER;
871
2.07k
          hSbrHeader->status |= SBRDEC_HDR_STAT_UPDATE;
872
2.07k
        } else {
873
19
          hSbrHeader->syncState = SBR_NOT_INITIALIZED;
874
19
          hSbrHeader->status = HEADER_ERROR;
875
19
        }
876
2.09k
      }
877
2.09k
    }
878
2.09k
  }
879
4.92k
bail:
880
4.92k
  if (configMode & AC_CM_DET_CFG_CHANGE) {
881
2.48k
    self->flags = flagsSaved; /* restore */
882
2.48k
  }
883
4.92k
  return sbrError;
884
4.22k
}
885
886
SBR_ERROR sbrDecoder_SetParam(HANDLE_SBRDECODER self, const SBRDEC_PARAM param,
887
8.85M
                              const INT value) {
888
8.85M
  SBR_ERROR errorStatus = SBRDEC_OK;
889
890
  /* configure the subsystems */
891
8.85M
  switch (param) {
892
1.94M
    case SBR_SYSTEM_BITSTREAM_DELAY:
893
1.94M
      if (value < 0 || value > (1)) {
894
0
        errorStatus = SBRDEC_SET_PARAM_FAIL;
895
0
        break;
896
0
      }
897
1.94M
      if (self == NULL) {
898
0
        errorStatus = SBRDEC_NOT_INITIALIZED;
899
1.94M
      } else {
900
1.94M
        self->numDelayFrames = (UCHAR)value;
901
1.94M
      }
902
1.94M
      break;
903
2.48M
    case SBR_QMF_MODE:
904
2.48M
      if (self == NULL) {
905
0
        errorStatus = SBRDEC_NOT_INITIALIZED;
906
2.48M
      } else {
907
2.48M
        if (value == 1) {
908
995k
          self->flags |= SBRDEC_LOW_POWER;
909
1.49M
        } else {
910
1.49M
          self->flags &= ~SBRDEC_LOW_POWER;
911
1.49M
        }
912
2.48M
      }
913
2.48M
      break;
914
376k
    case SBR_LD_QMF_TIME_ALIGN:
915
376k
      if (self == NULL) {
916
0
        errorStatus = SBRDEC_NOT_INITIALIZED;
917
376k
      } else {
918
376k
        if (value == 1) {
919
15.5k
          self->flags |= SBRDEC_LD_MPS_QMF;
920
360k
        } else {
921
360k
          self->flags &= ~SBRDEC_LD_MPS_QMF;
922
360k
        }
923
376k
      }
924
376k
      break;
925
1.91M
    case SBR_FLUSH_DATA:
926
1.91M
      if (value != 0) {
927
27.9k
        if (self == NULL) {
928
0
          errorStatus = SBRDEC_NOT_INITIALIZED;
929
27.9k
        } else {
930
27.9k
          self->flags |= SBRDEC_FLUSH;
931
27.9k
        }
932
27.9k
      }
933
1.91M
      break;
934
0
    case SBR_CLEAR_HISTORY:
935
0
      if (value != 0) {
936
0
        if (self == NULL) {
937
0
          errorStatus = SBRDEC_NOT_INITIALIZED;
938
0
        } else {
939
0
          self->flags |= SBRDEC_FORCE_RESET;
940
0
        }
941
0
      }
942
0
      break;
943
207k
    case SBR_BS_INTERRUPTION: {
944
207k
      int elementIndex;
945
946
207k
      if (self == NULL) {
947
0
        errorStatus = SBRDEC_NOT_INITIALIZED;
948
0
        break;
949
0
      }
950
951
      /* Loop over SBR elements */
952
387k
      for (elementIndex = 0; elementIndex < self->numSbrElements;
953
207k
           elementIndex++) {
954
179k
        if (self->pSbrElement[elementIndex] != NULL) {
955
178k
          HANDLE_SBR_HEADER_DATA hSbrHeader;
956
178k
          int headerIndex =
957
178k
              getHeaderSlot(self->pSbrElement[elementIndex]->useFrameSlot,
958
178k
                            self->pSbrElement[elementIndex]->useHeaderSlot);
959
960
178k
          hSbrHeader = &(self->sbrHeader[elementIndex][headerIndex]);
961
962
          /* Set sync state UPSAMPLING for the corresponding slot.
963
             This switches off bitstream parsing until a new header arrives. */
964
178k
          if (hSbrHeader->syncState != SBR_NOT_INITIALIZED) {
965
159k
            hSbrHeader->syncState = UPSAMPLING;
966
159k
            hSbrHeader->status |= SBRDEC_HDR_STAT_UPDATE;
967
159k
          }
968
178k
        }
969
179k
      }
970
207k
    } break;
971
972
1.91M
    case SBR_SKIP_QMF:
973
1.91M
      if (self == NULL) {
974
0
        errorStatus = SBRDEC_NOT_INITIALIZED;
975
1.91M
      } else {
976
1.91M
        if (value == 1) {
977
26.8k
          self->flags |= SBRDEC_SKIP_QMF_ANA;
978
1.88M
        } else {
979
1.88M
          self->flags &= ~SBRDEC_SKIP_QMF_ANA;
980
1.88M
        }
981
1.91M
        if (value == 2) {
982
76.6k
          self->flags |= SBRDEC_SKIP_QMF_SYN;
983
1.83M
        } else {
984
1.83M
          self->flags &= ~SBRDEC_SKIP_QMF_SYN;
985
1.83M
        }
986
1.91M
      }
987
1.91M
      break;
988
0
    default:
989
0
      errorStatus = SBRDEC_SET_PARAM_FAIL;
990
0
      break;
991
8.85M
  } /* switch(param) */
992
993
8.85M
  return (errorStatus);
994
8.85M
}
995
996
static SBRDEC_DRC_CHANNEL *sbrDecoder_drcGetChannel(
997
2.54M
    const HANDLE_SBRDECODER self, const INT channel) {
998
2.54M
  SBRDEC_DRC_CHANNEL *pSbrDrcChannelData = NULL;
999
2.54M
  int elementIndex, elChanIdx = 0, numCh = 0;
1000
1001
5.78M
  for (elementIndex = 0; (elementIndex < (8)) && (numCh <= channel);
1002
3.25M
       elementIndex++) {
1003
3.25M
    SBR_DECODER_ELEMENT *pSbrElement = self->pSbrElement[elementIndex];
1004
3.25M
    int c, elChannels;
1005
1006
3.25M
    elChanIdx = 0;
1007
3.25M
    if (pSbrElement == NULL) break;
1008
1009
    /* Determine amount of channels for this element */
1010
3.23M
    switch (pSbrElement->elementID) {
1011
955k
      case ID_CPE:
1012
955k
        elChannels = 2;
1013
955k
        break;
1014
35.9k
      case ID_LFE:
1015
2.28M
      case ID_SCE:
1016
2.28M
        elChannels = 1;
1017
2.28M
        break;
1018
0
      case ID_NONE:
1019
0
      default:
1020
0
        elChannels = 0;
1021
0
        break;
1022
3.23M
    }
1023
1024
    /* Limit with actual allocated element channels */
1025
3.23M
    elChannels = fMin(elChannels, pSbrElement->nChannels);
1026
1027
7.10M
    for (c = 0; (c < elChannels) && (numCh <= channel); c++) {
1028
3.86M
      if (pSbrElement->pSbrChannel[elChanIdx] != NULL) {
1029
3.86M
        numCh++;
1030
3.86M
        elChanIdx++;
1031
3.86M
      }
1032
3.86M
    }
1033
3.23M
  }
1034
2.54M
  elementIndex -= 1;
1035
2.54M
  elChanIdx -= 1;
1036
1037
2.54M
  if (elChanIdx < 0 || elementIndex < 0) {
1038
14.4k
    return NULL;
1039
14.4k
  }
1040
1041
2.53M
  if (self->pSbrElement[elementIndex] != NULL) {
1042
2.53M
    if (self->pSbrElement[elementIndex]->pSbrChannel[elChanIdx] != NULL) {
1043
2.53M
      pSbrDrcChannelData = &self->pSbrElement[elementIndex]
1044
2.53M
                                ->pSbrChannel[elChanIdx]
1045
2.53M
                                ->SbrDec.sbrDrcChannel;
1046
2.53M
    }
1047
2.53M
  }
1048
1049
2.53M
  return (pSbrDrcChannelData);
1050
2.54M
}
1051
1052
SBR_ERROR sbrDecoder_drcFeedChannel(HANDLE_SBRDECODER self, INT ch,
1053
                                    UINT numBands, FIXP_DBL *pNextFact_mag,
1054
                                    INT nextFact_exp,
1055
                                    SHORT drcInterpolationScheme,
1056
1.26M
                                    UCHAR winSequence, USHORT *pBandTop) {
1057
1.26M
  SBRDEC_DRC_CHANNEL *pSbrDrcChannelData = NULL;
1058
1.26M
  int band, isValidData = 0;
1059
1060
1.26M
  if (self == NULL) {
1061
0
    return SBRDEC_NOT_INITIALIZED;
1062
0
  }
1063
1.26M
  if (ch > (8) || pNextFact_mag == NULL) {
1064
0
    return SBRDEC_SET_PARAM_FAIL;
1065
0
  }
1066
1067
  /* Search for gain values different to 1.0f */
1068
2.28M
  for (band = 0; band < (int)numBands; band += 1) {
1069
1.27M
    if (!((pNextFact_mag[band] == FL2FXCONST_DBL(0.5)) &&
1070
1.01M
          (nextFact_exp == 1)) &&
1071
251k
        !((pNextFact_mag[band] == (FIXP_DBL)MAXVAL_DBL) &&
1072
251k
          (nextFact_exp == 0))) {
1073
251k
      isValidData = 1;
1074
251k
      break;
1075
251k
    }
1076
1.27M
  }
1077
1078
  /* Find the right SBR channel */
1079
1.26M
  pSbrDrcChannelData = sbrDecoder_drcGetChannel(self, ch);
1080
1081
1.26M
  if (pSbrDrcChannelData != NULL) {
1082
1.25M
    if (pSbrDrcChannelData->enable ||
1083
1.01M
        isValidData) { /* Activate processing only with real and valid data */
1084
258k
      int i;
1085
1086
258k
      pSbrDrcChannelData->enable = 1;
1087
258k
      pSbrDrcChannelData->numBandsNext = numBands;
1088
1089
258k
      pSbrDrcChannelData->winSequenceNext = winSequence;
1090
258k
      pSbrDrcChannelData->drcInterpolationSchemeNext = drcInterpolationScheme;
1091
258k
      pSbrDrcChannelData->nextFact_exp = nextFact_exp;
1092
1093
2.87M
      for (i = 0; i < (int)numBands; i++) {
1094
2.61M
        pSbrDrcChannelData->bandTopNext[i] = pBandTop[i];
1095
2.61M
        pSbrDrcChannelData->nextFact_mag[i] = pNextFact_mag[i];
1096
2.61M
      }
1097
258k
    }
1098
1.25M
  }
1099
1100
1.26M
  return SBRDEC_OK;
1101
1.26M
}
1102
1103
1.36M
void sbrDecoder_drcDisable(HANDLE_SBRDECODER self, INT ch) {
1104
1.36M
  SBRDEC_DRC_CHANNEL *pSbrDrcChannelData = NULL;
1105
1106
1.36M
  if ((self == NULL) || (ch > (8)) || (self->numSbrElements == 0) ||
1107
1.28M
      (self->numSbrChannels == 0)) {
1108
83.3k
    return;
1109
83.3k
  }
1110
1111
  /* Find the right SBR channel */
1112
1.28M
  pSbrDrcChannelData = sbrDecoder_drcGetChannel(self, ch);
1113
1114
1.28M
  if (pSbrDrcChannelData != NULL) {
1115
1.27M
    sbrDecoder_drcInitChannel(pSbrDrcChannelData);
1116
1.27M
  }
1117
1.28M
}
1118
1119
SBR_ERROR sbrDecoder_Parse(HANDLE_SBRDECODER self, HANDLE_FDK_BITSTREAM hBs,
1120
                           UCHAR *pDrmBsBuffer, USHORT drmBsBufferSize,
1121
                           int *count, int bsPayLen, int crcFlag,
1122
                           MP4_ELEMENT_ID prevElement, int elementIndex,
1123
562k
                           UINT acFlags, UINT acElFlags[]) {
1124
562k
  SBR_DECODER_ELEMENT *hSbrElement = NULL;
1125
562k
  HANDLE_SBR_HEADER_DATA hSbrHeader = NULL;
1126
562k
  HANDLE_SBR_CHANNEL *pSbrChannel;
1127
1128
562k
  SBR_FRAME_DATA *hFrameDataLeft = NULL;
1129
562k
  SBR_FRAME_DATA *hFrameDataRight = NULL;
1130
562k
  SBR_FRAME_DATA frameDataLeftCopy;
1131
562k
  SBR_FRAME_DATA frameDataRightCopy;
1132
1133
562k
  SBR_ERROR errorStatus = SBRDEC_OK;
1134
562k
  SBR_HEADER_STATUS headerStatus = HEADER_NOT_PRESENT;
1135
1136
562k
  INT startPos = FDKgetValidBits(hBs);
1137
562k
  FDK_CRCINFO crcInfo;
1138
562k
  INT crcReg = 0;
1139
562k
  USHORT sbrCrc = 0;
1140
562k
  UINT crcPoly;
1141
562k
  UINT crcStartValue = 0;
1142
562k
  UINT crcLen;
1143
1144
562k
  HANDLE_FDK_BITSTREAM hBsOriginal = hBs;
1145
562k
  FDK_BITSTREAM bsBwd;
1146
1147
562k
  const int fGlobalIndependencyFlag = acFlags & AC_INDEP;
1148
562k
  const int bs_pvc = acElFlags[elementIndex] & AC_EL_USAC_PVC;
1149
562k
  const int bs_interTes = acElFlags[elementIndex] & AC_EL_USAC_ITES;
1150
562k
  int stereo;
1151
562k
  int fDoDecodeSbrData = 1;
1152
562k
  int alignBits = 0;
1153
1154
562k
  int lastSlot, lastHdrSlot = 0, thisHdrSlot = 0;
1155
1156
562k
  if (*count <= 0) {
1157
99.0k
    setFrameErrorFlag(self->pSbrElement[elementIndex], FRAME_ERROR);
1158
99.0k
    return SBRDEC_OK;
1159
99.0k
  }
1160
1161
  /* SBR sanity checks */
1162
463k
  if (self == NULL) {
1163
0
    errorStatus = SBRDEC_NOT_INITIALIZED;
1164
0
    goto bail;
1165
0
  }
1166
1167
  /* Reverse bits of DRM SBR payload */
1168
463k
  if ((self->flags & SBRDEC_SYNTAX_DRM) && *count > 0) {
1169
0
    int dataBytes, dataBits;
1170
1171
0
    FDK_ASSERT(drmBsBufferSize >= (512));
1172
0
    dataBits = *count;
1173
1174
0
    if (dataBits > ((512) * 8)) {
1175
      /* do not flip more data than needed */
1176
0
      dataBits = (512) * 8;
1177
0
    }
1178
1179
0
    dataBytes = (dataBits + 7) >> 3;
1180
1181
0
    int j;
1182
1183
0
    if ((j = (int)FDKgetValidBits(hBs)) != 8) {
1184
0
      FDKpushBiDirectional(hBs, (j - 8));
1185
0
    }
1186
1187
0
    j = 0;
1188
0
    for (; dataBytes > 0; dataBytes--) {
1189
0
      int i;
1190
0
      UCHAR tmpByte;
1191
0
      UCHAR buffer = 0x00;
1192
1193
0
      tmpByte = (UCHAR)FDKreadBits(hBs, 8);
1194
0
      for (i = 0; i < 4; i++) {
1195
0
        int shift = 2 * i + 1;
1196
0
        buffer |= (tmpByte & (0x08 >> i)) << shift;
1197
0
        buffer |= (tmpByte & (0x10 << i)) >> shift;
1198
0
      }
1199
0
      pDrmBsBuffer[j++] = buffer;
1200
0
      FDKpushBack(hBs, 16);
1201
0
    }
1202
1203
0
    FDKinitBitStream(&bsBwd, pDrmBsBuffer, (512), dataBits, BS_READER);
1204
1205
    /* Use reversed data */
1206
0
    hBs = &bsBwd;
1207
0
    bsPayLen = *count;
1208
0
  }
1209
1210
  /* Remember start position of  SBR element */
1211
463k
  startPos = FDKgetValidBits(hBs);
1212
1213
  /* SBR sanity checks */
1214
463k
  if (self->pSbrElement[elementIndex] == NULL) {
1215
0
    errorStatus = SBRDEC_NOT_INITIALIZED;
1216
0
    goto bail;
1217
0
  }
1218
463k
  hSbrElement = self->pSbrElement[elementIndex];
1219
1220
463k
  lastSlot = (hSbrElement->useFrameSlot > 0) ? hSbrElement->useFrameSlot - 1
1221
463k
                                             : self->numDelayFrames;
1222
463k
  lastHdrSlot = hSbrElement->useHeaderSlot[lastSlot];
1223
463k
  thisHdrSlot = getHeaderSlot(
1224
463k
      hSbrElement->useFrameSlot,
1225
463k
      hSbrElement->useHeaderSlot); /* Get a free header slot not used by
1226
                                      frames not processed yet. */
1227
1228
  /* Assign the free slot to store a new header if there is one. */
1229
463k
  hSbrHeader = &self->sbrHeader[elementIndex][thisHdrSlot];
1230
1231
463k
  pSbrChannel = hSbrElement->pSbrChannel;
1232
463k
  stereo = (hSbrElement->elementID == ID_CPE) ? 1 : 0;
1233
1234
463k
  hFrameDataLeft = &self->pSbrElement[elementIndex]
1235
463k
                        ->pSbrChannel[0]
1236
463k
                        ->frameData[hSbrElement->useFrameSlot];
1237
463k
  if (stereo) {
1238
42.0k
    hFrameDataRight = &self->pSbrElement[elementIndex]
1239
42.0k
                           ->pSbrChannel[1]
1240
42.0k
                           ->frameData[hSbrElement->useFrameSlot];
1241
42.0k
  }
1242
1243
  /* store frameData; new parsed frameData possibly corrupted */
1244
463k
  FDKmemcpy(&frameDataLeftCopy, hFrameDataLeft, sizeof(SBR_FRAME_DATA));
1245
463k
  if (stereo) {
1246
42.0k
    FDKmemcpy(&frameDataRightCopy, hFrameDataRight, sizeof(SBR_FRAME_DATA));
1247
42.0k
  }
1248
1249
  /* reset PS flag; will be set after PS was found */
1250
463k
  self->flags &= ~SBRDEC_PS_DECODED;
1251
1252
463k
  if (hSbrHeader->status & SBRDEC_HDR_STAT_UPDATE) {
1253
    /* Got a new header from extern (e.g. from an ASC) */
1254
54.7k
    headerStatus = HEADER_OK;
1255
54.7k
    hSbrHeader->status &= ~SBRDEC_HDR_STAT_UPDATE;
1256
408k
  } else if (thisHdrSlot != lastHdrSlot) {
1257
    /* Copy the last header into this slot otherwise the
1258
       header compare will trigger more HEADER_RESETs than needed. */
1259
0
    copySbrHeader(hSbrHeader, &self->sbrHeader[elementIndex][lastHdrSlot]);
1260
0
  }
1261
1262
  /*
1263
     Check if bit stream data is valid and matches the element context
1264
  */
1265
463k
  if (((prevElement != ID_SCE) && (prevElement != ID_CPE)) ||
1266
460k
      prevElement != hSbrElement->elementID) {
1267
    /* In case of LFE we also land here, since there is no LFE SBR element (do
1268
     * upsampling only) */
1269
2.25k
    fDoDecodeSbrData = 0;
1270
2.25k
  }
1271
1272
463k
  if (fDoDecodeSbrData) {
1273
460k
    if ((INT)FDKgetValidBits(hBs) <= 0) {
1274
0
      fDoDecodeSbrData = 0;
1275
0
    }
1276
460k
  }
1277
1278
  /*
1279
     SBR CRC-check
1280
  */
1281
463k
  if (fDoDecodeSbrData) {
1282
460k
    if (crcFlag) {
1283
64.4k
      switch (self->coreCodec) {
1284
0
        case AOT_DRM_AAC:
1285
0
        case AOT_DRM_SURROUND:
1286
0
          crcPoly = 0x001d;
1287
0
          crcLen = 8;
1288
0
          crcStartValue = 0x000000ff;
1289
0
          break;
1290
64.4k
        default:
1291
64.4k
          crcPoly = 0x0633;
1292
64.4k
          crcLen = 10;
1293
64.4k
          crcStartValue = 0x00000000;
1294
64.4k
          break;
1295
64.4k
      }
1296
64.4k
      sbrCrc = (USHORT)FDKreadBits(hBs, crcLen);
1297
      /* Setup CRC decoder */
1298
64.4k
      FDKcrcInit(&crcInfo, crcPoly, crcStartValue, crcLen);
1299
      /* Start CRC region */
1300
64.4k
      crcReg = FDKcrcStartReg(&crcInfo, hBs, 0);
1301
64.4k
    }
1302
460k
  } /* if (fDoDecodeSbrData) */
1303
1304
  /*
1305
     Read in the header data and issue a reset if change occured
1306
  */
1307
463k
  if (fDoDecodeSbrData) {
1308
460k
    int sbrHeaderPresent;
1309
1310
460k
    if (self->flags & (SBRDEC_SYNTAX_RSVD50 | SBRDEC_SYNTAX_USAC)) {
1311
237k
      SBR_HEADER_DATA_BS_INFO newSbrInfo;
1312
237k
      int sbrInfoPresent;
1313
1314
237k
      if (bs_interTes) {
1315
83.3k
        self->flags |= SBRDEC_USAC_ITES;
1316
153k
      } else {
1317
153k
        self->flags &= ~SBRDEC_USAC_ITES;
1318
153k
      }
1319
1320
237k
      if (fGlobalIndependencyFlag) {
1321
182k
        self->flags |= SBRDEC_USAC_INDEP;
1322
182k
        sbrInfoPresent = 1;
1323
182k
        sbrHeaderPresent = 1;
1324
182k
      } else {
1325
54.5k
        self->flags &= ~SBRDEC_USAC_INDEP;
1326
54.5k
        sbrInfoPresent = FDKreadBit(hBs);
1327
54.5k
        if (sbrInfoPresent) {
1328
15.6k
          sbrHeaderPresent = FDKreadBit(hBs);
1329
38.9k
        } else {
1330
38.9k
          sbrHeaderPresent = 0;
1331
38.9k
        }
1332
54.5k
      }
1333
1334
237k
      if (sbrInfoPresent) {
1335
198k
        newSbrInfo.ampResolution = FDKreadBit(hBs);
1336
198k
        newSbrInfo.xover_band = FDKreadBits(hBs, 4);
1337
198k
        newSbrInfo.sbr_preprocessing = FDKreadBit(hBs);
1338
198k
        if (bs_pvc) {
1339
59.4k
          newSbrInfo.pvc_mode = FDKreadBits(hBs, 2);
1340
          /* bs_pvc_mode: 0 -> no PVC, 1 -> PVC mode 1, 2 -> PVC mode 2, 3 ->
1341
           * reserved */
1342
59.4k
          if (newSbrInfo.pvc_mode > 2) {
1343
8.99k
            headerStatus = HEADER_ERROR;
1344
8.99k
          }
1345
59.4k
          if (stereo && newSbrInfo.pvc_mode > 0) {
1346
            /* bs_pvc is always transmitted but pvc_mode is set to zero in case
1347
             * of stereo SBR. The config might be wrong but we cannot tell for
1348
             * sure. */
1349
562
            newSbrInfo.pvc_mode = 0;
1350
562
          }
1351
138k
        } else {
1352
138k
          newSbrInfo.pvc_mode = 0;
1353
138k
        }
1354
198k
        if (headerStatus != HEADER_ERROR) {
1355
189k
          if (FDKmemcmp(&hSbrHeader->bs_info, &newSbrInfo,
1356
189k
                        sizeof(SBR_HEADER_DATA_BS_INFO))) {
1357
            /* in case of ampResolution and preprocessing change no full reset
1358
             * required    */
1359
            /* HEADER reset would trigger HBE transposer reset which breaks
1360
             * eSbr_3_Eaa.mp4 */
1361
168k
            if ((hSbrHeader->bs_info.pvc_mode != newSbrInfo.pvc_mode) ||
1362
145k
                (hSbrHeader->bs_info.xover_band != newSbrInfo.xover_band)) {
1363
133k
              headerStatus = HEADER_RESET;
1364
133k
            } else {
1365
34.1k
              headerStatus = HEADER_OK;
1366
34.1k
            }
1367
1368
168k
            hSbrHeader->bs_info = newSbrInfo;
1369
168k
          } else {
1370
21.3k
            headerStatus = HEADER_OK;
1371
21.3k
          }
1372
189k
        }
1373
198k
      }
1374
237k
      if (headerStatus == HEADER_ERROR) {
1375
        /* Corrupt SBR info data, do not decode and switch to UPSAMPLING */
1376
8.99k
        hSbrHeader->syncState = hSbrHeader->syncState > UPSAMPLING
1377
8.99k
                                    ? UPSAMPLING
1378
8.99k
                                    : hSbrHeader->syncState;
1379
8.99k
        fDoDecodeSbrData = 0;
1380
8.99k
        sbrHeaderPresent = 0;
1381
8.99k
      }
1382
1383
237k
      if (sbrHeaderPresent && fDoDecodeSbrData) {
1384
177k
        int useDfltHeader;
1385
1386
177k
        useDfltHeader = FDKreadBit(hBs);
1387
1388
177k
        if (useDfltHeader) {
1389
72.5k
          sbrHeaderPresent = 0;
1390
72.5k
          if (FDKmemcmp(&hSbrHeader->bs_data, &hSbrHeader->bs_dflt,
1391
72.5k
                        sizeof(SBR_HEADER_DATA_BS)) ||
1392
72.3k
              hSbrHeader->syncState != SBR_ACTIVE) {
1393
72.3k
            hSbrHeader->bs_data = hSbrHeader->bs_dflt;
1394
72.3k
            headerStatus = HEADER_RESET;
1395
72.3k
          }
1396
72.5k
        }
1397
177k
      }
1398
237k
    } else {
1399
223k
      sbrHeaderPresent = FDKreadBit(hBs);
1400
223k
    }
1401
1402
460k
    if (sbrHeaderPresent) {
1403
251k
      headerStatus = sbrGetHeaderData(hSbrHeader, hBs, self->flags, 1, 0);
1404
251k
    }
1405
1406
460k
    if (headerStatus == HEADER_RESET) {
1407
307k
      errorStatus = sbrDecoder_HeaderUpdate(
1408
307k
          self, hSbrHeader, headerStatus, pSbrChannel, hSbrElement->nChannels);
1409
1410
307k
      if (errorStatus == SBRDEC_OK) {
1411
195k
        hSbrHeader->syncState = SBR_HEADER;
1412
195k
      } else {
1413
111k
        hSbrHeader->syncState = SBR_NOT_INITIALIZED;
1414
111k
        headerStatus = HEADER_ERROR;
1415
111k
      }
1416
307k
    }
1417
1418
460k
    if (errorStatus != SBRDEC_OK) {
1419
111k
      fDoDecodeSbrData = 0;
1420
111k
    }
1421
460k
  } /* if (fDoDecodeSbrData) */
1422
1423
  /*
1424
    Print debugging output only if state has changed
1425
  */
1426
1427
  /* read frame data */
1428
463k
  if ((hSbrHeader->syncState >= SBR_HEADER) && fDoDecodeSbrData) {
1429
302k
    int sbrFrameOk;
1430
    /* read the SBR element data */
1431
302k
    if (!stereo && (self->hParametricStereoDec != NULL)) {
1432
      /* update slot index for PS bitstream parsing */
1433
125k
      self->hParametricStereoDec->bsLastSlot =
1434
125k
          self->hParametricStereoDec->bsReadSlot;
1435
125k
      self->hParametricStereoDec->bsReadSlot = hSbrElement->useFrameSlot;
1436
125k
    }
1437
302k
    sbrFrameOk = sbrGetChannelElement(
1438
302k
        hSbrHeader, hFrameDataLeft, (stereo) ? hFrameDataRight : NULL,
1439
302k
        &pSbrChannel[0]->prevFrameData,
1440
302k
        pSbrChannel[0]->SbrDec.PvcStaticData.pvc_mode_last, hBs,
1441
302k
        (stereo) ? NULL : self->hParametricStereoDec, self->flags,
1442
302k
        self->pSbrElement[elementIndex]->transposerSettings.overlap);
1443
1444
302k
    if (!sbrFrameOk) {
1445
56.8k
      fDoDecodeSbrData = 0;
1446
245k
    } else {
1447
245k
      INT valBits;
1448
1449
245k
      if (bsPayLen > 0) {
1450
104k
        valBits = bsPayLen - ((INT)startPos - (INT)FDKgetValidBits(hBs));
1451
141k
      } else {
1452
141k
        valBits = (INT)FDKgetValidBits(hBs);
1453
141k
      }
1454
1455
      /* sanity check of remaining bits */
1456
245k
      if (valBits < 0) {
1457
89.6k
        fDoDecodeSbrData = 0;
1458
155k
      } else {
1459
155k
        switch (self->coreCodec) {
1460
0
          case AOT_SBR:
1461
0
          case AOT_PS:
1462
48.5k
          case AOT_AAC_LC: {
1463
            /* This sanity check is only meaningful with General Audio
1464
             * bitstreams */
1465
48.5k
            alignBits = valBits & 0x7;
1466
1467
48.5k
            if (valBits > alignBits) {
1468
12.0k
              fDoDecodeSbrData = 0;
1469
12.0k
            }
1470
48.5k
          } break;
1471
107k
          default:
1472
            /* No sanity check available */
1473
107k
            break;
1474
155k
        }
1475
155k
      }
1476
245k
    }
1477
302k
  } else {
1478
    /* The returned bit count will not be the actual payload size since we did
1479
       not parse the frame data. Return an error so that the caller can react
1480
       respectively. */
1481
160k
    errorStatus = SBRDEC_PARSE_ERROR;
1482
160k
  }
1483
1484
463k
  if (crcFlag && (hSbrHeader->syncState >= SBR_HEADER) && fDoDecodeSbrData) {
1485
2.79k
    FDKpushFor(hBs, alignBits);
1486
2.79k
    FDKcrcEndReg(&crcInfo, hBs, crcReg); /* End CRC region */
1487
2.79k
    FDKpushBack(hBs, alignBits);
1488
    /* Check CRC */
1489
2.79k
    if ((FDKcrcGetCRC(&crcInfo) ^ crcStartValue) != sbrCrc) {
1490
2.53k
      fDoDecodeSbrData = 0;
1491
2.53k
      if (headerStatus != HEADER_NOT_PRESENT) {
1492
1.60k
        headerStatus = HEADER_ERROR;
1493
1.60k
        hSbrHeader->syncState = SBR_NOT_INITIALIZED;
1494
1.60k
      }
1495
2.53k
    }
1496
2.79k
  }
1497
1498
463k
  if (!fDoDecodeSbrData) {
1499
    /* Set error flag for this slot to trigger concealment */
1500
284k
    setFrameErrorFlag(self->pSbrElement[elementIndex], FRAME_ERROR);
1501
    /* restore old frameData for concealment */
1502
284k
    FDKmemcpy(hFrameDataLeft, &frameDataLeftCopy, sizeof(SBR_FRAME_DATA));
1503
284k
    if (stereo) {
1504
17.7k
      FDKmemcpy(hFrameDataRight, &frameDataRightCopy, sizeof(SBR_FRAME_DATA));
1505
17.7k
    }
1506
284k
    errorStatus = SBRDEC_PARSE_ERROR;
1507
284k
  } else {
1508
    /* Everything seems to be ok so clear the error flag */
1509
178k
    setFrameErrorFlag(self->pSbrElement[elementIndex], FRAME_OK);
1510
178k
  }
1511
1512
463k
  if (!stereo) {
1513
    /* Turn coupling off explicitely to avoid access to absent right frame data
1514
       that might occur with corrupt bitstreams. */
1515
421k
    hFrameDataLeft->coupling = COUPLING_OFF;
1516
421k
  }
1517
1518
463k
bail:
1519
1520
463k
  if (self != NULL) {
1521
463k
    if (self->flags & SBRDEC_SYNTAX_DRM) {
1522
0
      hBs = hBsOriginal;
1523
0
    }
1524
1525
463k
    if (errorStatus != SBRDEC_NOT_INITIALIZED) {
1526
463k
      int useOldHdr =
1527
463k
          ((headerStatus == HEADER_NOT_PRESENT) ||
1528
346k
           (headerStatus == HEADER_ERROR) ||
1529
224k
           (headerStatus == HEADER_RESET && errorStatus == SBRDEC_PARSE_ERROR))
1530
463k
              ? 1
1531
463k
              : 0;
1532
1533
463k
      if (!useOldHdr && (thisHdrSlot != lastHdrSlot) && (hSbrHeader != NULL)) {
1534
0
        useOldHdr |=
1535
0
            (compareSbrHeader(hSbrHeader,
1536
0
                              &self->sbrHeader[elementIndex][lastHdrSlot]) == 0)
1537
0
                ? 1
1538
0
                : 0;
1539
0
      }
1540
1541
463k
      if (hSbrElement != NULL) {
1542
463k
        if (useOldHdr != 0) {
1543
          /* Use the old header for this frame */
1544
359k
          hSbrElement->useHeaderSlot[hSbrElement->useFrameSlot] = lastHdrSlot;
1545
359k
        } else {
1546
          /* Use the new header for this frame */
1547
104k
          hSbrElement->useHeaderSlot[hSbrElement->useFrameSlot] = thisHdrSlot;
1548
104k
        }
1549
1550
        /* Move frame pointer to the next slot which is up to be decoded/applied
1551
         * next */
1552
463k
        hSbrElement->useFrameSlot =
1553
463k
            (hSbrElement->useFrameSlot + 1) % (self->numDelayFrames + 1);
1554
463k
      }
1555
463k
    }
1556
463k
  }
1557
1558
463k
  *count -= startPos - (INT)FDKgetValidBits(hBs);
1559
1560
463k
  return errorStatus;
1561
463k
}
1562
1563
/**
1564
 * \brief Render one SBR element into time domain signal.
1565
 * \param self SBR decoder handle
1566
 * \param timeData pointer to output buffer
1567
 * \param channelMapping pointer to UCHAR array where next 2 channel offsets are
1568
 * stored.
1569
 * \param elementIndex enumerating index of the SBR element to render.
1570
 * \param numInChannels number of channels from core coder.
1571
 * \param numOutChannels pointer to a location to return number of output
1572
 * channels.
1573
 * \param psPossible flag indicating if PS is possible or not.
1574
 * \return SBRDEC_OK if successfull, else error code
1575
 */
1576
static SBR_ERROR sbrDecoder_DecodeElement(
1577
    HANDLE_SBRDECODER self, LONG *input, LONG *timeData, const int timeDataSize,
1578
    const FDK_channelMapDescr *const mapDescr, const int mapIdx,
1579
    int channelIndex, const int elementIndex, const int numInChannels,
1580
2.17M
    int *numOutChannels, const int psPossible) {
1581
2.17M
  SBR_DECODER_ELEMENT *hSbrElement = self->pSbrElement[elementIndex];
1582
2.17M
  HANDLE_SBR_CHANNEL *pSbrChannel =
1583
2.17M
      self->pSbrElement[elementIndex]->pSbrChannel;
1584
2.17M
  HANDLE_SBR_HEADER_DATA hSbrHeader =
1585
2.17M
      &self->sbrHeader[elementIndex]
1586
2.17M
                      [hSbrElement->useHeaderSlot[hSbrElement->useFrameSlot]];
1587
2.17M
  HANDLE_PS_DEC h_ps_d = self->hParametricStereoDec;
1588
1589
  /* get memory for frame data from scratch */
1590
2.17M
  SBR_FRAME_DATA *hFrameDataLeft = NULL;
1591
2.17M
  SBR_FRAME_DATA *hFrameDataRight = NULL;
1592
1593
2.17M
  SBR_ERROR errorStatus = SBRDEC_OK;
1594
1595
2.17M
  INT strideOut, offset0 = 255, offset0_block = 0, offset1 = 255,
1596
2.17M
                 offset1_block = 0;
1597
2.17M
  INT codecFrameSize = self->codecFrameSize;
1598
1599
2.17M
  int stereo = (hSbrElement->elementID == ID_CPE) ? 1 : 0;
1600
2.17M
  int numElementChannels =
1601
2.17M
      hSbrElement
1602
2.17M
          ->nChannels; /* Number of channels of the current SBR element */
1603
1604
2.17M
  hFrameDataLeft =
1605
2.17M
      &hSbrElement->pSbrChannel[0]->frameData[hSbrElement->useFrameSlot];
1606
2.17M
  if (stereo) {
1607
322k
    hFrameDataRight =
1608
322k
        &hSbrElement->pSbrChannel[1]->frameData[hSbrElement->useFrameSlot];
1609
322k
  }
1610
1611
2.17M
  if (self->flags & SBRDEC_FLUSH) {
1612
29.9k
    if (self->numFlushedFrames > self->numDelayFrames) {
1613
29.9k
      int hdrIdx;
1614
      /* No valid SBR payload available, hence switch to upsampling (in all
1615
       * headers) */
1616
89.9k
      for (hdrIdx = 0; hdrIdx < ((1) + 1); hdrIdx += 1) {
1617
59.9k
        if (self->sbrHeader[elementIndex][hdrIdx].syncState > UPSAMPLING) {
1618
8.72k
          self->sbrHeader[elementIndex][hdrIdx].syncState = UPSAMPLING;
1619
8.72k
        }
1620
59.9k
      }
1621
29.9k
    } else {
1622
      /* Move frame pointer to the next slot which is up to be decoded/applied
1623
       * next */
1624
0
      hSbrElement->useFrameSlot =
1625
0
          (hSbrElement->useFrameSlot + 1) % (self->numDelayFrames + 1);
1626
      /* Update header and frame data pointer because they have already been set
1627
       */
1628
0
      hSbrHeader =
1629
0
          &self->sbrHeader[elementIndex]
1630
0
                          [hSbrElement
1631
0
                               ->useHeaderSlot[hSbrElement->useFrameSlot]];
1632
0
      hFrameDataLeft =
1633
0
          &hSbrElement->pSbrChannel[0]->frameData[hSbrElement->useFrameSlot];
1634
0
      if (stereo) {
1635
0
        hFrameDataRight =
1636
0
            &hSbrElement->pSbrChannel[1]->frameData[hSbrElement->useFrameSlot];
1637
0
      }
1638
0
    }
1639
29.9k
  }
1640
1641
  /* Update the header error flag */
1642
2.17M
  hSbrHeader->frameErrorFlag =
1643
2.17M
      hSbrElement->frameErrorFlag[hSbrElement->useFrameSlot];
1644
1645
  /*
1646
     Prepare filterbank for upsampling if no valid bit stream data is available.
1647
   */
1648
2.17M
  if (hSbrHeader->syncState == SBR_NOT_INITIALIZED) {
1649
120k
    errorStatus =
1650
120k
        initHeaderData(hSbrHeader, self->sampleRateIn, self->sampleRateOut,
1651
120k
                       self->downscaleFactor, codecFrameSize, self->flags,
1652
120k
                       1 /* SET_DEFAULT_HDR */
1653
120k
        );
1654
1655
120k
    if (errorStatus != SBRDEC_OK) {
1656
0
      return errorStatus;
1657
0
    }
1658
1659
120k
    hSbrHeader->syncState = UPSAMPLING;
1660
1661
120k
    errorStatus = sbrDecoder_HeaderUpdate(self, hSbrHeader, HEADER_NOT_PRESENT,
1662
120k
                                          pSbrChannel, hSbrElement->nChannels);
1663
1664
120k
    if (errorStatus != SBRDEC_OK) {
1665
0
      hSbrHeader->syncState = SBR_NOT_INITIALIZED;
1666
0
      return errorStatus;
1667
0
    }
1668
120k
  }
1669
1670
  /* reset */
1671
2.17M
  if (hSbrHeader->status & SBRDEC_HDR_STAT_RESET) {
1672
1.70M
    int ch;
1673
1.70M
    int applySbrProc = (hSbrHeader->syncState == SBR_ACTIVE ||
1674
1.70M
                        (hSbrHeader->frameErrorFlag == 0 &&
1675
189k
                         hSbrHeader->syncState == SBR_HEADER));
1676
3.83M
    for (ch = 0; ch < numElementChannels; ch++) {
1677
2.13M
      SBR_ERROR errorStatusTmp = SBRDEC_OK;
1678
1679
2.13M
      errorStatusTmp = resetSbrDec(
1680
2.13M
          &pSbrChannel[ch]->SbrDec, hSbrHeader, &pSbrChannel[ch]->prevFrameData,
1681
2.13M
          self->synDownsampleFac, self->flags, pSbrChannel[ch]->frameData);
1682
1683
2.13M
      if (errorStatusTmp != SBRDEC_OK) {
1684
18.5k
        hSbrHeader->syncState = UPSAMPLING;
1685
18.5k
      }
1686
2.13M
    }
1687
1.70M
    if (applySbrProc) {
1688
41.5k
      hSbrHeader->status &= ~SBRDEC_HDR_STAT_RESET;
1689
41.5k
    }
1690
1.70M
  }
1691
1692
  /* decoding */
1693
2.17M
  if ((hSbrHeader->syncState == SBR_ACTIVE) ||
1694
1.71M
      ((hSbrHeader->syncState == SBR_HEADER) &&
1695
622k
       (hSbrHeader->frameErrorFlag == 0))) {
1696
503k
    errorStatus = SBRDEC_OK;
1697
1698
503k
    decodeSbrData(hSbrHeader, hFrameDataLeft, &pSbrChannel[0]->prevFrameData,
1699
503k
                  (stereo) ? hFrameDataRight : NULL,
1700
503k
                  (stereo) ? &pSbrChannel[1]->prevFrameData : NULL);
1701
1702
    /* Now we have a full parameter set and can do parameter
1703
       based concealment instead of plain upsampling. */
1704
503k
    hSbrHeader->syncState = SBR_ACTIVE;
1705
503k
  }
1706
1707
2.17M
  if (timeDataSize <
1708
2.17M
      hSbrHeader->numberTimeSlots * hSbrHeader->timeStep *
1709
2.17M
          self->pQmfDomain->globalConf.nBandsSynthesis *
1710
2.17M
          (psPossible ? fMax(2, numInChannels) : numInChannels)) {
1711
0
    return SBRDEC_OUTPUT_BUFFER_TOO_SMALL;
1712
0
  }
1713
1714
2.17M
  {
1715
2.17M
    self->flags &= ~SBRDEC_PS_DECODED;
1716
2.17M
    C_ALLOC_SCRATCH_START(pPsScratch, struct PS_DEC_COEFFICIENTS, 1)
1717
1718
    /* decode PS data if available */
1719
2.17M
    if (h_ps_d != NULL && psPossible && (hSbrHeader->syncState == SBR_ACTIVE)) {
1720
28.8k
      int applyPs = 1;
1721
1722
      /* define which frame delay line slot to process */
1723
28.8k
      h_ps_d->processSlot = hSbrElement->useFrameSlot;
1724
1725
28.8k
      applyPs = DecodePs(h_ps_d, hSbrHeader->frameErrorFlag, pPsScratch);
1726
28.8k
      self->flags |= (applyPs) ? SBRDEC_PS_DECODED : 0;
1727
28.8k
    }
1728
1729
2.17M
    offset0 = FDK_chMapDescr_getMapValue(mapDescr, channelIndex, mapIdx);
1730
2.17M
    offset0_block = offset0 * codecFrameSize;
1731
2.17M
    if (stereo || psPossible) {
1732
      /* the value of offset1 only matters if the condition is true, however if
1733
      it is not true channelIndex+1 may exceed the channel map resutling in an
1734
      error, though the value of offset1 is actually meaningless. This is
1735
      prevented here. */
1736
405k
      offset1 = FDK_chMapDescr_getMapValue(mapDescr, channelIndex + 1, mapIdx);
1737
405k
      offset1_block = offset1 * codecFrameSize;
1738
405k
    }
1739
    /* Set strides for reading and writing */
1740
2.17M
    if (psPossible)
1741
82.0k
      strideOut = (numInChannels < 2) ? 2 : numInChannels;
1742
2.09M
    else
1743
2.09M
      strideOut = numInChannels;
1744
1745
    /* use same buffers for left and right channel and apply PS per timeslot */
1746
    /* Process left channel */
1747
2.17M
    sbr_dec(&pSbrChannel[0]->SbrDec, input + offset0_block, timeData + offset0,
1748
2.17M
            (self->flags & SBRDEC_PS_DECODED) ? &pSbrChannel[1]->SbrDec : NULL,
1749
2.17M
            timeData + offset1, strideOut, hSbrHeader, hFrameDataLeft,
1750
2.17M
            &pSbrChannel[0]->prevFrameData,
1751
2.17M
            (hSbrHeader->syncState == SBR_ACTIVE), h_ps_d, self->flags,
1752
2.17M
            codecFrameSize, self->sbrInDataHeadroom);
1753
1754
2.17M
    if (stereo) {
1755
      /* Process right channel */
1756
322k
      sbr_dec(&pSbrChannel[1]->SbrDec, input + offset1_block,
1757
322k
              timeData + offset1, NULL, NULL, strideOut, hSbrHeader,
1758
322k
              hFrameDataRight, &pSbrChannel[1]->prevFrameData,
1759
322k
              (hSbrHeader->syncState == SBR_ACTIVE), NULL, self->flags,
1760
322k
              codecFrameSize, self->sbrInDataHeadroom);
1761
322k
    }
1762
1763
2.17M
    C_ALLOC_SCRATCH_END(pPsScratch, struct PS_DEC_COEFFICIENTS, 1)
1764
2.17M
  }
1765
1766
2.17M
  if (h_ps_d != NULL) {
1767
    /* save PS status for next run */
1768
410k
    h_ps_d->psDecodedPrv = (self->flags & SBRDEC_PS_DECODED) ? 1 : 0;
1769
410k
  }
1770
1771
2.17M
  if (psPossible && !(self->flags & SBRDEC_SKIP_QMF_SYN)) {
1772
82.0k
    FDK_ASSERT(strideOut > 1);
1773
82.0k
    if (!(self->flags & SBRDEC_PS_DECODED)) {
1774
      /* A decoder which is able to decode PS has to produce a stereo output
1775
       * even if no PS data is available. */
1776
      /* So copy left channel to right channel. */
1777
68.4k
      int copyFrameSize =
1778
68.4k
          codecFrameSize * self->pQmfDomain->QmfDomainOut->fb.no_channels;
1779
68.4k
      copyFrameSize /= self->pQmfDomain->QmfDomainIn->fb.no_channels;
1780
68.4k
      LONG *ptr;
1781
68.4k
      INT i;
1782
68.4k
      FDK_ASSERT(strideOut == 2);
1783
1784
68.4k
      ptr = timeData;
1785
70.1M
      for (i = copyFrameSize >> 1; i--;) {
1786
70.0M
        LONG tmp; /* This temporal variable is required because some compilers
1787
                     can't do *ptr++ = *ptr++ correctly. */
1788
70.0M
        tmp = *ptr++;
1789
70.0M
        *ptr++ = tmp;
1790
70.0M
        tmp = *ptr++;
1791
70.0M
        *ptr++ = tmp;
1792
70.0M
      }
1793
68.4k
    }
1794
82.0k
    *numOutChannels = 2; /* Output minimum two channels when PS is enabled. */
1795
82.0k
  }
1796
1797
2.17M
  return errorStatus;
1798
2.17M
}
1799
1800
SBR_ERROR sbrDecoder_Apply(HANDLE_SBRDECODER self, LONG *input, LONG *timeData,
1801
                           const int timeDataSize, int *numChannels,
1802
                           int *sampleRate,
1803
                           const FDK_channelMapDescr *const mapDescr,
1804
                           const int mapIdx, const int coreDecodedOk,
1805
                           UCHAR *psDecoded, const INT inDataHeadroom,
1806
1.91M
                           INT *outDataHeadroom) {
1807
1.91M
  SBR_ERROR errorStatus = SBRDEC_OK;
1808
1809
1.91M
  int psPossible;
1810
1.91M
  int sbrElementNum;
1811
1.91M
  int numCoreChannels;
1812
1.91M
  int numSbrChannels = 0;
1813
1814
1.91M
  if ((self == NULL) || (timeData == NULL) || (numChannels == NULL) ||
1815
1.91M
      (sampleRate == NULL) || (psDecoded == NULL) ||
1816
1.91M
      !FDK_chMapDescr_isValid(mapDescr)) {
1817
0
    return SBRDEC_INVALID_ARGUMENT;
1818
0
  }
1819
1820
1.91M
  psPossible = *psDecoded;
1821
1.91M
  numCoreChannels = *numChannels;
1822
1.91M
  if (numCoreChannels <= 0) {
1823
0
    return SBRDEC_INVALID_ARGUMENT;
1824
0
  }
1825
1826
1.91M
  if (self->numSbrElements < 1) {
1827
    /* exit immediately to avoid access violations */
1828
0
    return SBRDEC_NOT_INITIALIZED;
1829
0
  }
1830
1831
  /* Sanity check of allocated SBR elements. */
1832
4.09M
  for (sbrElementNum = 0; sbrElementNum < self->numSbrElements;
1833
2.18M
       sbrElementNum++) {
1834
2.18M
    if (self->pSbrElement[sbrElementNum] == NULL) {
1835
1.35k
      return SBRDEC_NOT_INITIALIZED;
1836
1.35k
    }
1837
2.18M
  }
1838
1839
1.91M
  if (self->numSbrElements != 1 || self->pSbrElement[0]->elementID != ID_SCE) {
1840
353k
    psPossible = 0;
1841
353k
  }
1842
1843
1.91M
  self->sbrInDataHeadroom = inDataHeadroom;
1844
1.91M
  *outDataHeadroom = (INT)(8);
1845
1846
  /* Make sure that even if no SBR data was found/parsed *psDecoded is returned
1847
   * 1 if psPossible was 0. */
1848
1.91M
  if (psPossible == 0) {
1849
1.83M
    self->flags &= ~SBRDEC_PS_DECODED;
1850
1.83M
  }
1851
1852
  /* replaces channel based reset inside sbr_dec() */
1853
1.91M
  if (((self->flags & SBRDEC_LOW_POWER) ? 1 : 0) !=
1854
1.91M
      ((self->pQmfDomain->globalConf.flags & QMF_FLAG_LP) ? 1 : 0)) {
1855
21.8k
    if (self->flags & SBRDEC_LOW_POWER) {
1856
19.2k
      self->pQmfDomain->globalConf.flags |= QMF_FLAG_LP;
1857
19.2k
      self->pQmfDomain->globalConf.flags_requested |= QMF_FLAG_LP;
1858
19.2k
    } else {
1859
2.63k
      self->pQmfDomain->globalConf.flags &= ~QMF_FLAG_LP;
1860
2.63k
      self->pQmfDomain->globalConf.flags_requested &= ~QMF_FLAG_LP;
1861
2.63k
    }
1862
21.8k
    if (FDK_QmfDomain_InitFilterBank(self->pQmfDomain, QMF_FLAG_KEEP_STATES)) {
1863
0
      return SBRDEC_UNSUPPORTED_CONFIG;
1864
0
    }
1865
21.8k
  }
1866
1.91M
  if (self->numSbrChannels > self->pQmfDomain->globalConf.nInputChannels) {
1867
0
    return SBRDEC_UNSUPPORTED_CONFIG;
1868
0
  }
1869
1870
1.91M
  if (self->flags & SBRDEC_FLUSH) {
1871
    /* flushing is signalized, hence increment the flush frame counter */
1872
27.9k
    self->numFlushedFrames++;
1873
1.88M
  } else {
1874
    /* no flushing is signalized, hence reset the flush frame counter */
1875
1.88M
    self->numFlushedFrames = 0;
1876
1.88M
  }
1877
1878
  /* Loop over SBR elements */
1879
2.18M
  for (sbrElementNum = 0; sbrElementNum < self->numSbrElements;
1880
2.17M
       sbrElementNum++) {
1881
2.17M
    int numElementChan;
1882
1883
2.17M
    if (psPossible &&
1884
82.0k
        self->pSbrElement[sbrElementNum]->pSbrChannel[1] == NULL) {
1885
      /* Disable PS and try decoding SBR mono. */
1886
0
      psPossible = 0;
1887
0
    }
1888
1889
2.17M
    numElementChan =
1890
2.17M
        (self->pSbrElement[sbrElementNum]->elementID == ID_CPE) ? 2 : 1;
1891
1892
    /* If core signal is bad then force upsampling */
1893
2.17M
    if (!coreDecodedOk) {
1894
1.79M
      setFrameErrorFlag(self->pSbrElement[sbrElementNum], FRAME_ERROR_ALLSLOTS);
1895
1.79M
    }
1896
1897
2.17M
    errorStatus = sbrDecoder_DecodeElement(
1898
2.17M
        self, input, timeData, timeDataSize, mapDescr, mapIdx, numSbrChannels,
1899
2.17M
        sbrElementNum,
1900
2.17M
        numCoreChannels, /* is correct even for USC SCI==2 case */
1901
2.17M
        &numElementChan, psPossible);
1902
1903
2.17M
    if (errorStatus != SBRDEC_OK) {
1904
0
      goto bail;
1905
0
    }
1906
1907
2.17M
    numSbrChannels += numElementChan;
1908
1909
2.17M
    if (numSbrChannels >= numCoreChannels) {
1910
1.90M
      break;
1911
1.90M
    }
1912
2.17M
  }
1913
1914
  /* Update numChannels and samplerate */
1915
  /* Do not mess with output channels in case of USAC. numSbrChannels !=
1916
   * numChannels for stereoConfigIndex == 2 */
1917
1.91M
  if (!(self->flags & SBRDEC_SYNTAX_USAC)) {
1918
670k
    *numChannels = numSbrChannels;
1919
670k
  }
1920
1.91M
  *sampleRate = self->sampleRateOut;
1921
1.91M
  *psDecoded = (self->flags & SBRDEC_PS_DECODED) ? 1 : 0;
1922
1923
  /* Clear reset and flush flag because everything seems to be done
1924
   * successfully. */
1925
1.91M
  self->flags &= ~SBRDEC_FORCE_RESET;
1926
1.91M
  self->flags &= ~SBRDEC_FLUSH;
1927
1928
1.91M
bail:
1929
1930
1.91M
  return errorStatus;
1931
1.91M
}
1932
1933
13.5k
SBR_ERROR sbrDecoder_Close(HANDLE_SBRDECODER *pSelf) {
1934
13.5k
  HANDLE_SBRDECODER self = *pSelf;
1935
13.5k
  int i;
1936
1937
13.5k
  if (self != NULL) {
1938
13.5k
    if (self->hParametricStereoDec != NULL) {
1939
2.90k
      DeletePsDec(&self->hParametricStereoDec);
1940
2.90k
    }
1941
1942
121k
    for (i = 0; i < (8); i++) {
1943
108k
      sbrDecoder_DestroyElement(self, i);
1944
108k
    }
1945
1946
13.5k
    FreeRam_SbrDecoder(pSelf);
1947
13.5k
  }
1948
1949
13.5k
  return SBRDEC_OK;
1950
13.5k
}
1951
1952
0
INT sbrDecoder_GetLibInfo(LIB_INFO *info) {
1953
0
  int i;
1954
1955
0
  if (info == NULL) {
1956
0
    return -1;
1957
0
  }
1958
1959
  /* search for next free tab */
1960
0
  for (i = 0; i < FDK_MODULE_LAST; i++) {
1961
0
    if (info[i].module_id == FDK_NONE) break;
1962
0
  }
1963
0
  if (i == FDK_MODULE_LAST) return -1;
1964
0
  info += i;
1965
1966
0
  info->module_id = FDK_SBRDEC;
1967
0
  info->version =
1968
0
      LIB_VERSION(SBRDECODER_LIB_VL0, SBRDECODER_LIB_VL1, SBRDECODER_LIB_VL2);
1969
0
  LIB_VERSION_STRING(info);
1970
0
  info->build_date = SBRDECODER_LIB_BUILD_DATE;
1971
0
  info->build_time = SBRDECODER_LIB_BUILD_TIME;
1972
0
  info->title = SBRDECODER_LIB_TITLE;
1973
1974
  /* Set flags */
1975
0
  info->flags = 0 | CAPF_SBR_HQ | CAPF_SBR_LP | CAPF_SBR_PS_MPEG |
1976
0
                CAPF_SBR_DRM_BS | CAPF_SBR_CONCEALMENT | CAPF_SBR_DRC |
1977
0
                CAPF_SBR_ELD_DOWNSCALE | CAPF_SBR_HBEHQ;
1978
  /* End of flags */
1979
1980
0
  return 0;
1981
0
}
1982
1983
1.88M
UINT sbrDecoder_GetDelay(const HANDLE_SBRDECODER self) {
1984
1.88M
  UINT outputDelay = 0;
1985
1986
1.88M
  if (self != NULL) {
1987
1.88M
    UINT flags = self->flags;
1988
1989
    /* See chapter 1.6.7.2 of ISO/IEC 14496-3 for the GA-SBR figures below. */
1990
1991
    /* Are we initialized? */
1992
1.88M
    if ((self->numSbrChannels > 0) && (self->numSbrElements > 0)) {
1993
      /* Add QMF synthesis delay */
1994
1.88M
      if ((flags & SBRDEC_ELD_GRID) && IS_LOWDELAY(self->coreCodec)) {
1995
        /* Low delay SBR: */
1996
376k
        if (!(flags & SBRDEC_SKIP_QMF_SYN)) {
1997
376k
          outputDelay +=
1998
376k
              (flags & SBRDEC_DOWNSAMPLE) ? 32 : 64; /* QMF synthesis */
1999
376k
          if (flags & SBRDEC_LD_MPS_QMF) {
2000
15.5k
            outputDelay += 32;
2001
15.5k
          }
2002
376k
        }
2003
1.50M
      } else if (!IS_USAC(self->coreCodec)) {
2004
        /* By the method of elimination this is the GA (AAC-LC, HE-AAC, ...)
2005
         * branch: */
2006
294k
        outputDelay += (flags & SBRDEC_DOWNSAMPLE) ? 481 : 962;
2007
294k
        if (flags & SBRDEC_SKIP_QMF_SYN) {
2008
0
          outputDelay -= 257; /* QMF synthesis */
2009
0
        }
2010
294k
      }
2011
1.88M
    }
2012
1.88M
  }
2013
2014
1.88M
  return (outputDelay);
2015
1.88M
}