Coverage Report

Created: 2025-08-29 06:10

/src/aac/libDRCdec/src/drcDec_gainDecoder.cpp
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/* -----------------------------------------------------------------------------
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Software License for The Fraunhofer FDK AAC Codec Library for Android
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© Copyright  1995 - 2019 Fraunhofer-Gesellschaft zur Förderung der angewandten
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Forschung e.V. All rights reserved.
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7
 1.    INTRODUCTION
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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
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a wide variety of Android devices.
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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
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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
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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.
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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.
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2.    COPYRIGHT LICENSE
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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:
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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.
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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.
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49
The name of Fraunhofer may not be used to endorse or promote products derived
50
from this library without prior written permission.
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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."
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3.    NO PATENT LICENSE
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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.
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You may use this FDK AAC Codec software or modifications thereto only for
69
purposes that are authorized by appropriate patent licenses.
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4.    DISCLAIMER
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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
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Am Wolfsmantel 33
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91058 Erlangen, Germany
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www.iis.fraunhofer.de/amm
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amm-info@iis.fraunhofer.de
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----------------------------------------------------------------------------- */
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/************************* MPEG-D DRC decoder library **************************
96
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   Author(s):
98
99
   Description:
100
101
*******************************************************************************/
102
103
#include "drcDec_types.h"
104
#include "drcDec_gainDecoder.h"
105
#include "drcGainDec_preprocess.h"
106
#include "drcGainDec_init.h"
107
#include "drcGainDec_process.h"
108
#include "drcDec_tools.h"
109
110
/*******************************************/
111
/* static functions                        */
112
/*******************************************/
113
114
static int _fitsLocation(DRC_INSTRUCTIONS_UNI_DRC* pInst,
115
25.3k
                         const GAIN_DEC_LOCATION drcLocation) {
116
25.3k
  int downmixId = pInst->drcApplyToDownmix ? pInst->downmixId[0] : 0;
117
25.3k
  switch (drcLocation) {
118
12.7k
    case GAIN_DEC_DRC1:
119
12.7k
      return (downmixId == 0);
120
0
    case GAIN_DEC_DRC1_DRC2:
121
0
      return ((downmixId == 0) || (downmixId == DOWNMIX_ID_ANY_DOWNMIX));
122
0
    case GAIN_DEC_DRC2:
123
0
      return (downmixId == DOWNMIX_ID_ANY_DOWNMIX);
124
0
    case GAIN_DEC_DRC3:
125
0
      return ((downmixId != 0) && (downmixId != DOWNMIX_ID_ANY_DOWNMIX));
126
12.6k
    case GAIN_DEC_DRC2_DRC3:
127
12.6k
      return (downmixId != 0);
128
25.3k
  }
129
0
  return 0;
130
25.3k
}
131
132
static void _setChannelGains(HANDLE_DRC_GAIN_DECODER hGainDec,
133
                             const int numChannelGains,
134
10.5k
                             const FIXP_DBL* channelGainDb) {
135
10.5k
  int i, channelGain_e;
136
10.5k
  FIXP_DBL channelGain;
137
10.5k
  FDK_ASSERT(numChannelGains <= 8);
138
23.4k
  for (i = 0; i < numChannelGains; i++) {
139
12.9k
    if (channelGainDb[i] == (FIXP_DBL)MINVAL_DBL) {
140
0
      hGainDec->channelGain[i] = (FIXP_DBL)0;
141
12.9k
    } else {
142
      /* add loudness normalisation gain (dB) to channel gain (dB) */
143
12.9k
      FIXP_DBL tmp_channelGainDb = (channelGainDb[i] >> 1) +
144
12.9k
                                   (hGainDec->loudnessNormalisationGainDb >> 2);
145
12.9k
      tmp_channelGainDb =
146
12.9k
          SATURATE_LEFT_SHIFT(tmp_channelGainDb, 1, DFRACT_BITS);
147
12.9k
      channelGain = dB2lin(tmp_channelGainDb, 8, &channelGain_e);
148
12.9k
      hGainDec->channelGain[i] = scaleValue(channelGain, channelGain_e - 8);
149
12.9k
    }
150
12.9k
  }
151
10.5k
}
152
153
/*******************************************/
154
/* public functions                        */
155
/*******************************************/
156
157
DRC_ERROR
158
30.4k
drcDec_GainDecoder_Open(HANDLE_DRC_GAIN_DECODER* phGainDec) {
159
30.4k
  DRC_GAIN_DECODER* hGainDec = NULL;
160
161
30.4k
  hGainDec = (DRC_GAIN_DECODER*)FDKcalloc(1, sizeof(DRC_GAIN_DECODER));
162
30.4k
  if (hGainDec == NULL) return DE_MEMORY_ERROR;
163
164
30.4k
  hGainDec->multiBandActiveDrcIndex = -1;
165
30.4k
  hGainDec->channelGainActiveDrcIndex = -1;
166
167
30.4k
  *phGainDec = hGainDec;
168
169
30.4k
  return DE_OK;
170
30.4k
}
171
172
DRC_ERROR
173
141k
drcDec_GainDecoder_Init(HANDLE_DRC_GAIN_DECODER hGainDec) {
174
141k
  DRC_ERROR err = DE_OK;
175
176
141k
  err = initGainDec(hGainDec);
177
141k
  if (err) return err;
178
179
141k
  initDrcGainBuffers(hGainDec->frameSize, &hGainDec->drcGainBuffers);
180
181
141k
  return err;
182
141k
}
183
184
DRC_ERROR
185
drcDec_GainDecoder_SetParam(HANDLE_DRC_GAIN_DECODER hGainDec,
186
                            const GAIN_DEC_PARAM paramType,
187
304k
                            const int paramValue) {
188
304k
  switch (paramType) {
189
152k
    case GAIN_DEC_FRAME_SIZE:
190
152k
      if (paramValue < 0) return DE_PARAM_OUT_OF_RANGE;
191
152k
      hGainDec->frameSize = paramValue;
192
152k
      break;
193
152k
    case GAIN_DEC_SAMPLE_RATE:
194
152k
      if (paramValue < 0) return DE_PARAM_OUT_OF_RANGE;
195
152k
      hGainDec->deltaTminDefault = getDeltaTmin(paramValue);
196
152k
      break;
197
0
    default:
198
0
      return DE_PARAM_INVALID;
199
304k
  }
200
304k
  return DE_OK;
201
304k
}
202
203
DRC_ERROR
204
drcDec_GainDecoder_SetCodecDependentParameters(
205
    HANDLE_DRC_GAIN_DECODER hGainDec, const DELAY_MODE delayMode,
206
    const int timeDomainSupported,
207
17.6k
    const SUBBAND_DOMAIN_MODE subbandDomainSupported) {
208
17.6k
  if ((delayMode != DM_REGULAR_DELAY) && (delayMode != DM_LOW_DELAY)) {
209
0
    return DE_NOT_OK;
210
0
  }
211
17.6k
  hGainDec->delayMode = delayMode;
212
17.6k
  hGainDec->timeDomainSupported = timeDomainSupported;
213
17.6k
  hGainDec->subbandDomainSupported = subbandDomainSupported;
214
215
17.6k
  return DE_OK;
216
17.6k
}
217
218
DRC_ERROR
219
drcDec_GainDecoder_Config(HANDLE_DRC_GAIN_DECODER hGainDec,
220
                          HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
221
                          const UCHAR numSelectedDrcSets,
222
                          const SCHAR* selectedDrcSetIds,
223
94.3k
                          const UCHAR* selectedDownmixIds) {
224
94.3k
  DRC_ERROR err = DE_OK;
225
94.3k
  int a;
226
227
94.3k
  hGainDec->nActiveDrcs = 0;
228
94.3k
  hGainDec->multiBandActiveDrcIndex = -1;
229
94.3k
  hGainDec->channelGainActiveDrcIndex = -1;
230
194k
  for (a = 0; a < numSelectedDrcSets; a++) {
231
100k
    err = initActiveDrc(hGainDec, hUniDrcConfig, selectedDrcSetIds[a],
232
100k
                        selectedDownmixIds[a]);
233
100k
    if (err) return err;
234
100k
  }
235
236
93.7k
  err = initActiveDrcOffset(hGainDec);
237
93.7k
  if (err) return err;
238
239
91.9k
  return err;
240
93.7k
}
241
242
DRC_ERROR
243
30.4k
drcDec_GainDecoder_Close(HANDLE_DRC_GAIN_DECODER* phGainDec) {
244
30.4k
  if (*phGainDec != NULL) {
245
30.4k
    FDKfree(*phGainDec);
246
30.4k
    *phGainDec = NULL;
247
30.4k
  }
248
249
30.4k
  return DE_OK;
250
30.4k
}
251
252
DRC_ERROR
253
drcDec_GainDecoder_Preprocess(HANDLE_DRC_GAIN_DECODER hGainDec,
254
                              HANDLE_UNI_DRC_GAIN hUniDrcGain,
255
                              const FIXP_DBL loudnessNormalizationGainDb,
256
10.5k
                              const FIXP_SGL boost, const FIXP_SGL compress) {
257
10.5k
  DRC_ERROR err = DE_OK;
258
10.5k
  int a, c;
259
260
  /* lnbPointer is the index on the most recent node buffer */
261
10.5k
  hGainDec->drcGainBuffers.lnbPointer++;
262
10.5k
  if (hGainDec->drcGainBuffers.lnbPointer >= NUM_LNB_FRAMES)
263
1.79k
    hGainDec->drcGainBuffers.lnbPointer = 0;
264
265
23.2k
  for (a = 0; a < hGainDec->nActiveDrcs; a++) {
266
    /* prepare gain interpolation of sequences used by copying and modifying
267
     * nodes in node buffers */
268
13.3k
    err = prepareDrcGain(hGainDec, hUniDrcGain, compress, boost,
269
13.3k
                         loudnessNormalizationGainDb, a);
270
13.3k
    if (err) return err;
271
13.3k
  }
272
273
39.7k
  for (a = 0; a < MAX_ACTIVE_DRCS; a++) {
274
268k
    for (c = 0; c < 8; c++) {
275
238k
      hGainDec->activeDrc[a]
276
238k
          .lnbIndexForChannel[c][hGainDec->drcGainBuffers.lnbPointer] =
277
238k
          -1; /* "no DRC processing" */
278
238k
    }
279
29.7k
    hGainDec->activeDrc[a].subbandGainsReady = 0;
280
29.7k
  }
281
282
89.3k
  for (c = 0; c < 8; c++) {
283
79.4k
    hGainDec->drcGainBuffers
284
79.4k
        .channelGain[c][hGainDec->drcGainBuffers.lnbPointer] =
285
79.4k
        FL2FXCONST_DBL(1.0f / (float)(1 << 8));
286
79.4k
  }
287
288
9.92k
  return err;
289
10.5k
}
290
291
/* create gain sequence out of gain sequences of last frame for concealment and
292
 * flushing */
293
DRC_ERROR
294
drcDec_GainDecoder_Conceal(HANDLE_DRC_GAIN_DECODER hGainDec,
295
                           HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
296
7.76k
                           HANDLE_UNI_DRC_GAIN hUniDrcGain) {
297
7.76k
  int seq, gainSequenceCount;
298
7.76k
  DRC_COEFFICIENTS_UNI_DRC* pCoef =
299
7.76k
      selectDrcCoefficients(hUniDrcConfig, LOCATION_SELECTED);
300
7.76k
  if (pCoef && pCoef->gainSequenceCount) {
301
3.67k
    gainSequenceCount = fMin(pCoef->gainSequenceCount, (UCHAR)12);
302
4.09k
  } else {
303
4.09k
    gainSequenceCount = 1;
304
4.09k
  }
305
306
36.8k
  for (seq = 0; seq < gainSequenceCount; seq++) {
307
29.1k
    int lastNodeIndex = 0;
308
29.1k
    FIXP_SGL lastGainDb = (FIXP_SGL)0;
309
310
29.1k
    lastNodeIndex = hUniDrcGain->nNodes[seq] - 1;
311
29.1k
    if ((lastNodeIndex >= 0) && (lastNodeIndex < 16)) {
312
26.0k
      lastGainDb = hUniDrcGain->gainNode[seq][lastNodeIndex].gainDb;
313
26.0k
    }
314
315
29.1k
    hUniDrcGain->nNodes[seq] = 1;
316
29.1k
    if (lastGainDb > (FIXP_SGL)0) {
317
5.55k
      hUniDrcGain->gainNode[seq][0].gainDb =
318
5.55k
          FX_DBL2FX_SGL(fMult(FL2FXCONST_SGL(0.9f), lastGainDb));
319
23.5k
    } else {
320
23.5k
      hUniDrcGain->gainNode[seq][0].gainDb =
321
23.5k
          FX_DBL2FX_SGL(fMult(FL2FXCONST_SGL(0.98f), lastGainDb));
322
23.5k
    }
323
29.1k
    hUniDrcGain->gainNode[seq][0].time = hGainDec->frameSize - 1;
324
29.1k
  }
325
7.76k
  return DE_OK;
326
7.76k
}
327
328
void drcDec_GainDecoder_SetChannelGains(HANDLE_DRC_GAIN_DECODER hGainDec,
329
                                        const int numChannels,
330
                                        const int frameSize,
331
                                        const FIXP_DBL* channelGainDb,
332
                                        const int audioBufferChannelOffset,
333
10.5k
                                        FIXP_DBL* audioBuffer) {
334
10.5k
  int c, i;
335
336
10.5k
  if (hGainDec->channelGainActiveDrcIndex >= 0) {
337
    /* channel gains will be applied in drcDec_GainDecoder_ProcessTimeDomain or
338
     * drcDec_GainDecoder_ProcessSubbandDomain, respectively. */
339
7.64k
    _setChannelGains(hGainDec, numChannels, channelGainDb);
340
341
7.64k
    if (!hGainDec->status) { /* overwrite previous channel gains at startup */
342
460
      DRC_GAIN_BUFFERS* pDrcGainBuffers = &hGainDec->drcGainBuffers;
343
933
      for (c = 0; c < numChannels; c++) {
344
2.83k
        for (i = 0; i < NUM_LNB_FRAMES; i++) {
345
2.36k
          pDrcGainBuffers->channelGain[c][i] = hGainDec->channelGain[c];
346
2.36k
        }
347
473
      }
348
460
      hGainDec->status = 1;
349
460
    }
350
7.64k
  } else {
351
    /* smooth and apply channel gains */
352
2.87k
    FIXP_DBL prevChannelGain[8];
353
7.68k
    for (c = 0; c < numChannels; c++) {
354
4.81k
      prevChannelGain[c] = hGainDec->channelGain[c];
355
4.81k
    }
356
357
2.87k
    _setChannelGains(hGainDec, numChannels, channelGainDb);
358
359
2.87k
    if (!hGainDec->status) { /* overwrite previous channel gains at startup */
360
761
      for (c = 0; c < numChannels; c++)
361
457
        prevChannelGain[c] = hGainDec->channelGain[c];
362
304
      hGainDec->status = 1;
363
304
    }
364
365
7.68k
    for (c = 0; c < numChannels; c++) {
366
4.81k
      INT n_min = fMin(fMin(CntLeadingZeros(prevChannelGain[c]),
367
4.81k
                            CntLeadingZeros(hGainDec->channelGain[c])) -
368
4.81k
                           1,
369
4.81k
                       9);
370
4.81k
      FIXP_DBL gain = prevChannelGain[c] << n_min;
371
4.81k
      FIXP_DBL stepsize = ((hGainDec->channelGain[c] << n_min) - gain);
372
4.81k
      if (stepsize != (FIXP_DBL)0) {
373
218
        if (frameSize == 1024)
374
0
          stepsize = stepsize >> 10;
375
218
        else
376
218
          stepsize = (LONG)stepsize / frameSize;
377
218
      }
378
4.81k
      n_min = 9 - n_min;
379
#ifdef FUNCTION_drcDec_GainDecoder_SetChannelGains_func1
380
      drcDec_GainDecoder_SetChannelGains_func1(audioBuffer, gain, stepsize,
381
                                               n_min, frameSize);
382
#else
383
8.75M
      for (i = 0; i < frameSize; i++) {
384
8.74M
        audioBuffer[i] = fMultDiv2(audioBuffer[i], gain) << n_min;
385
8.74M
        gain += stepsize;
386
8.74M
      }
387
4.81k
#endif
388
4.81k
      audioBuffer += audioBufferChannelOffset;
389
4.81k
    }
390
2.87k
  }
391
10.5k
}
392
393
DRC_ERROR
394
drcDec_GainDecoder_ProcessTimeDomain(
395
    HANDLE_DRC_GAIN_DECODER hGainDec, const int delaySamples,
396
    const GAIN_DEC_LOCATION drcLocation, const int channelOffset,
397
    const int drcChannelOffset, const int numChannelsProcessed,
398
19.8k
    const int timeDataChannelOffset, FIXP_DBL* audioIOBuffer) {
399
19.8k
  DRC_ERROR err = DE_OK;
400
19.8k
  int a;
401
402
19.8k
  if (!hGainDec->timeDomainSupported) {
403
0
    return DE_NOT_OK;
404
0
  }
405
406
45.0k
  for (a = 0; a < hGainDec->nActiveDrcs; a++) {
407
25.3k
    if (!_fitsLocation(hGainDec->activeDrc[a].pInst, drcLocation)) continue;
408
409
    /* Apply DRC */
410
12.7k
    err = processDrcTime(hGainDec, a, delaySamples, channelOffset,
411
12.7k
                         drcChannelOffset, numChannelsProcessed,
412
12.7k
                         timeDataChannelOffset, audioIOBuffer);
413
12.7k
    if (err) return err;
414
12.7k
  }
415
416
19.7k
  return err;
417
19.8k
}
418
419
DRC_ERROR
420
drcDec_GainDecoder_ProcessSubbandDomain(
421
    HANDLE_DRC_GAIN_DECODER hGainDec, const int delaySamples,
422
    const GAIN_DEC_LOCATION drcLocation, const int channelOffset,
423
    const int drcChannelOffset, const int numChannelsProcessed,
424
    const int processSingleTimeslot, FIXP_DBL* audioIOBufferReal[],
425
0
    FIXP_DBL* audioIOBufferImag[]) {
426
0
  DRC_ERROR err = DE_OK;
427
0
  int a;
428
429
0
  if (hGainDec->subbandDomainSupported == SDM_OFF) {
430
0
    return DE_NOT_OK;
431
0
  }
432
433
0
  for (a = 0; a < hGainDec->nActiveDrcs; a++) {
434
0
    if (!_fitsLocation(hGainDec->activeDrc[a].pInst, drcLocation)) continue;
435
436
    /* Apply DRC */
437
0
    err = processDrcSubband(hGainDec, a, delaySamples, channelOffset,
438
0
                            drcChannelOffset, numChannelsProcessed,
439
0
                            processSingleTimeslot, audioIOBufferReal,
440
0
                            audioIOBufferImag);
441
0
    if (err) return err;
442
0
  }
443
444
0
  return err;
445
0
}
446
447
DRC_ERROR
448
drcDec_GainDecoder_SetLoudnessNormalizationGainDb(
449
10.5k
    HANDLE_DRC_GAIN_DECODER hGainDec, FIXP_DBL loudnessNormalizationGainDb) {
450
10.5k
  hGainDec->loudnessNormalisationGainDb = loudnessNormalizationGainDb;
451
452
10.5k
  return DE_OK;
453
10.5k
}
454
455
3.04k
int drcDec_GainDecoder_GetFrameSize(HANDLE_DRC_GAIN_DECODER hGainDec) {
456
3.04k
  if (hGainDec == NULL) return -1;
457
458
3.04k
  return hGainDec->frameSize;
459
3.04k
}
460
461
3.04k
int drcDec_GainDecoder_GetDeltaTminDefault(HANDLE_DRC_GAIN_DECODER hGainDec) {
462
3.04k
  if (hGainDec == NULL) return -1;
463
464
3.04k
  return hGainDec->deltaTminDefault;
465
3.04k
}