Coverage Report

Created: 2026-01-16 07:48

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/fdk-aac/libDRCdec/src/drcDec_selectionProcess.cpp
Line
Count
Source
1
/* -----------------------------------------------------------------------------
2
Software License for The Fraunhofer FDK AAC Codec Library for Android
3
4
© Copyright  1995 - 2019 Fraunhofer-Gesellschaft zur Förderung der angewandten
5
Forschung e.V. All rights reserved.
6
7
 1.    INTRODUCTION
8
The Fraunhofer FDK AAC Codec Library for Android ("FDK AAC Codec") is software
9
that implements the MPEG Advanced Audio Coding ("AAC") encoding and decoding
10
scheme for digital audio. This FDK AAC Codec software is intended to be used on
11
a wide variety of Android devices.
12
13
AAC's HE-AAC and HE-AAC v2 versions are regarded as today's most efficient
14
general perceptual audio codecs. AAC-ELD is considered the best-performing
15
full-bandwidth communications codec by independent studies and is widely
16
deployed. AAC has been standardized by ISO and IEC as part of the MPEG
17
specifications.
18
19
Patent licenses for necessary patent claims for the FDK AAC Codec (including
20
those of Fraunhofer) may be obtained through Via Licensing
21
(www.vialicensing.com) or through the respective patent owners individually for
22
the purpose of encoding or decoding bit streams in products that are compliant
23
with the ISO/IEC MPEG audio standards. Please note that most manufacturers of
24
Android devices already license these patent claims through Via Licensing or
25
directly from the patent owners, and therefore FDK AAC Codec software may
26
already be covered under those patent licenses when it is used for those
27
licensed purposes only.
28
29
Commercially-licensed AAC software libraries, including floating-point versions
30
with enhanced sound quality, are also available from Fraunhofer. Users are
31
encouraged to check the Fraunhofer website for additional applications
32
information and documentation.
33
34
2.    COPYRIGHT LICENSE
35
36
Redistribution and use in source and binary forms, with or without modification,
37
are permitted without payment of copyright license fees provided that you
38
satisfy the following conditions:
39
40
You must retain the complete text of this software license in redistributions of
41
the FDK AAC Codec or your modifications thereto in source code form.
42
43
You must retain the complete text of this software license in the documentation
44
and/or other materials provided with redistributions of the FDK AAC Codec or
45
your modifications thereto in binary form. You must make available free of
46
charge copies of the complete source code of the FDK AAC Codec and your
47
modifications thereto to recipients of copies in binary form.
48
49
The name of Fraunhofer may not be used to endorse or promote products derived
50
from this library without prior written permission.
51
52
You may not charge copyright license fees for anyone to use, copy or distribute
53
the FDK AAC Codec software or your modifications thereto.
54
55
Your modified versions of the FDK AAC Codec must carry prominent notices stating
56
that you changed the software and the date of any change. For modified versions
57
of the FDK AAC Codec, the term "Fraunhofer FDK AAC Codec Library for Android"
58
must be replaced by the term "Third-Party Modified Version of the Fraunhofer FDK
59
AAC Codec Library for Android."
60
61
3.    NO PATENT LICENSE
62
63
NO EXPRESS OR IMPLIED LICENSES TO ANY PATENT CLAIMS, including without
64
limitation the patents of Fraunhofer, ARE GRANTED BY THIS SOFTWARE LICENSE.
65
Fraunhofer provides no warranty of patent non-infringement with respect to this
66
software.
67
68
You may use this FDK AAC Codec software or modifications thereto only for
69
purposes that are authorized by appropriate patent licenses.
70
71
4.    DISCLAIMER
72
73
This FDK AAC Codec software is provided by Fraunhofer on behalf of the copyright
74
holders and contributors "AS IS" and WITHOUT ANY EXPRESS OR IMPLIED WARRANTIES,
75
including but not limited to the implied warranties of merchantability and
76
fitness for a particular purpose. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
77
CONTRIBUTORS BE LIABLE for any direct, indirect, incidental, special, exemplary,
78
or consequential damages, including but not limited to procurement of substitute
79
goods or services; loss of use, data, or profits, or business interruption,
80
however caused and on any theory of liability, whether in contract, strict
81
liability, or tort (including negligence), arising in any way out of the use of
82
this software, even if advised of the possibility of such damage.
83
84
5.    CONTACT INFORMATION
85
86
Fraunhofer Institute for Integrated Circuits IIS
87
Attention: Audio and Multimedia Departments - FDK AAC LL
88
Am Wolfsmantel 33
89
91058 Erlangen, Germany
90
91
www.iis.fraunhofer.de/amm
92
amm-info@iis.fraunhofer.de
93
----------------------------------------------------------------------------- */
94
95
/************************* MPEG-D DRC decoder library **************************
96
97
   Author(s):   Andreas Hoelzer
98
99
   Description: DRC Set Selection
100
101
*******************************************************************************/
102
103
#include "drcDec_selectionProcess.h"
104
#include "drcDec_tools.h"
105
106
typedef enum {
107
  DETR_NONE = 0,
108
  DETR_NIGHT = 1,
109
  DETR_NOISY = 2,
110
  DETR_LIMITED = 3,
111
  DETR_LOWLEVEL = 4,
112
  DETR_DIALOG = 5,
113
  DETR_GENERAL_COMPR = 6,
114
  DETR_EXPAND = 7,
115
  DETR_ARTISTIC = 8,
116
  DETR_COUNT
117
} DRC_EFFECT_TYPE_REQUEST;
118
119
typedef enum {
120
  DFRT_EFFECT_TYPE,
121
  DFRT_DYNAMIC_RANGE,
122
  DFRT_DRC_CHARACTERISTIC
123
} DRC_FEATURE_REQUEST_TYPE;
124
125
typedef enum {
126
  MDR_DEFAULT = 0,
127
  MDR_PROGRAM_LOUDNESS = 1,
128
  MDR_ANCHOR_LOUDNESS = 2
129
} METHOD_DEFINITION_REQUEST;
130
131
typedef enum {
132
  MSR_DEFAULT = 0,
133
  MSR_BS_1770_4 = 1,
134
  MSR_USER = 2,
135
  MSR_EXPERT_PANEL = 3,
136
  MSR_RESERVED_A = 4,
137
  MSR_RESERVED_B = 5,
138
  MSR_RESERVED_C = 6,
139
  MSR_RESERVED_D = 7,
140
  MSR_RESERVED_E = 8
141
} MEASUREMENT_SYSTEM_REQUEST;
142
143
typedef enum {
144
  LPR_DEFAULT = 0,
145
  LPR_OFF = 1,
146
  LPR_HIGHPASS = 2
147
} LOUDNESS_PREPROCESSING_REQUEST;
148
149
typedef enum {
150
  DRMRT_SHORT_TERM_LOUDNESS_TO_AVG = 0,
151
  DRMRT_MOMENTARY_LOUDNESS_TO_AVG = 1,
152
  DRMRT_TOP_OF_LOUDNESS_RANGE_TO_AVG = 2
153
} DYN_RANGE_MEASUREMENT_REQUEST_TYPE;
154
155
typedef enum {
156
  TCRT_DOWNMIX_ID = 0,
157
  TCRT_TARGET_LAYOUT = 1,
158
  TCRT_TARGET_CHANNEL_COUNT = 2
159
} TARGET_CONFIG_REQUEST_TYPE;
160
161
typedef shouldBeUnion {
162
  struct {
163
    UCHAR numRequests;
164
    UCHAR numRequestsDesired;
165
    DRC_EFFECT_TYPE_REQUEST request[MAX_REQUESTS_DRC_EFFECT_TYPE];
166
  } drcEffectType;
167
  struct {
168
    DYN_RANGE_MEASUREMENT_REQUEST_TYPE measurementRequestType;
169
    UCHAR requestedIsRange;
170
    FIXP_DBL requestValue;    /* e = 7 */
171
    FIXP_DBL requestValueMin; /* e = 7 */
172
    FIXP_DBL requestValueMax; /* e = 7 */
173
  } dynamicRange;
174
  UCHAR drcCharacteristic;
175
}
176
DRC_FEATURE_REQUEST;
177
178
typedef struct {
179
  /* system parameters */
180
  SCHAR baseChannelCount;
181
  SCHAR baseLayout; /* not supported */
182
  TARGET_CONFIG_REQUEST_TYPE targetConfigRequestType;
183
  UCHAR numDownmixIdRequests;
184
  UCHAR downmixIdRequested[MAX_REQUESTS_DOWNMIX_ID];
185
  UCHAR targetLayoutRequested;
186
  UCHAR targetChannelCountRequested;
187
  LONG audioSampleRate; /* needed for complexity estimation, currently not
188
                           supported */
189
190
  /* loudness normalization parameters */
191
  UCHAR loudnessNormalizationOn;
192
  FIXP_DBL targetLoudness; /* e = 7 */
193
  UCHAR albumMode;
194
  UCHAR peakLimiterPresent;
195
  UCHAR loudnessDeviationMax; /* resolution: 1 dB */
196
  METHOD_DEFINITION_REQUEST loudnessMeasurementMethod;
197
  MEASUREMENT_SYSTEM_REQUEST loudnessMeasurementSystem;
198
  LOUDNESS_PREPROCESSING_REQUEST loudnessMeasurementPreProc; /* not supported */
199
  LONG deviceCutOffFrequency;                                /* not supported */
200
  FIXP_DBL loudnessNormalizationGainDbMax;                   /* e = 7 */
201
  FIXP_DBL loudnessNormalizationGainModificationDb;          /* e = 7 */
202
  FIXP_DBL outputPeakLevelMax;                               /* e = 7 */
203
204
  /* dynamic range control parameters */
205
  UCHAR dynamicRangeControlOn;
206
  UCHAR numDrcFeatureRequests;
207
  DRC_FEATURE_REQUEST_TYPE drcFeatureRequestType[MAX_REQUESTS_DRC_FEATURE];
208
  DRC_FEATURE_REQUEST drcFeatureRequest[MAX_REQUESTS_DRC_FEATURE];
209
210
  /* other */
211
  FIXP_SGL boost;                /* e = 1 */
212
  FIXP_SGL compress;             /* e = 1 */
213
  UCHAR drcCharacteristicTarget; /* not supported */
214
} SEL_PROC_INPUT, *HANDLE_SEL_PROC_INPUT;
215
216
/* Table E.1 of ISO/IEC DIS 23003-4: Recommended order of fallback effect type
217
 * requests */
218
static DRC_EFFECT_TYPE_REQUEST fallbackEffectTypeRequests[6][5] = {
219
    /* Night */ {DETR_GENERAL_COMPR, DETR_NOISY, DETR_LIMITED, DETR_LOWLEVEL,
220
                 DETR_DIALOG},
221
    /* Noisy */
222
    {DETR_GENERAL_COMPR, DETR_NIGHT, DETR_LIMITED, DETR_LOWLEVEL, DETR_DIALOG},
223
    /* Limited */
224
    {DETR_GENERAL_COMPR, DETR_NIGHT, DETR_NOISY, DETR_LOWLEVEL, DETR_DIALOG},
225
    /* LowLevel */
226
    {DETR_GENERAL_COMPR, DETR_NOISY, DETR_NIGHT, DETR_LIMITED, DETR_DIALOG},
227
    /* Dialog */
228
    {DETR_GENERAL_COMPR, DETR_NIGHT, DETR_NOISY, DETR_LIMITED, DETR_LOWLEVEL},
229
    /* General */
230
    {DETR_NIGHT, DETR_NOISY, DETR_LIMITED, DETR_LOWLEVEL, DETR_DIALOG}};
231
232
/*******************************************/
233
typedef struct {
234
  UCHAR selectionFlag;
235
  UCHAR downmixIdRequestIndex;
236
  FIXP_DBL outputPeakLevel;                     /* e = 7 */
237
  FIXP_DBL loudnessNormalizationGainDbAdjusted; /* e = 7 */
238
  FIXP_DBL outputLoudness;                      /* e = 7 */
239
  DRC_INSTRUCTIONS_UNI_DRC* pInst;
240
241
} DRCDEC_SELECTION_DATA;
242
243
typedef struct {
244
  UCHAR numData;
245
  DRCDEC_SELECTION_DATA data[(12 + 1 + 6)];
246
247
} DRCDEC_SELECTION;
248
249
/*******************************************/
250
/* helper functions                        */
251
/*******************************************/
252
253
247k
static int _isError(int x) {
254
247k
  if (x < DRCDEC_SELECTION_PROCESS_WARNING) {
255
13
    return 1;
256
13
  }
257
258
247k
  return 0;
259
247k
}
260
261
/* compare and assign */
262
0
static inline int _compAssign(UCHAR* dest, const UCHAR src) {
263
0
  int diff = 0;
264
0
  if (*dest != src) diff = 1;
265
0
  *dest = src;
266
0
  return diff;
267
0
}
268
269
235k
static inline int _compAssign(SCHAR* dest, const SCHAR src) {
270
235k
  int diff = 0;
271
235k
  if (*dest != src) diff = 1;
272
235k
  *dest = src;
273
235k
  return diff;
274
235k
}
275
276
242k
static inline int _compAssign(FIXP_DBL* dest, const FIXP_DBL src) {
277
242k
  int diff = 0;
278
242k
  if (*dest != src) diff = 1;
279
242k
  *dest = src;
280
242k
  return diff;
281
242k
}
282
283
0
static inline int _compAssign(FIXP_SGL* dest, const FIXP_SGL src) {
284
0
  int diff = 0;
285
0
  if (*dest != src) diff = 1;
286
0
  *dest = src;
287
0
  return diff;
288
0
}
289
290
0
static inline int _compAssign(TARGET_CONFIG_REQUEST_TYPE* dest, const int src) {
291
0
  int diff = 0;
292
0
  if (*dest != src) diff = 1;
293
0
  *dest = (TARGET_CONFIG_REQUEST_TYPE)src;
294
0
  return diff;
295
0
}
296
297
0
static inline int _compAssign(METHOD_DEFINITION_REQUEST* dest, const int src) {
298
0
  int diff = 0;
299
0
  if (*dest != src) diff = 1;
300
0
  *dest = (METHOD_DEFINITION_REQUEST)src;
301
0
  return diff;
302
0
}
303
304
0
static inline int _compAssign(DRC_FEATURE_REQUEST_TYPE* dest, const int src) {
305
0
  int diff = 0;
306
0
  if (*dest != src) diff = 1;
307
0
  *dest = (DRC_FEATURE_REQUEST_TYPE)src;
308
0
  return diff;
309
0
}
310
311
0
static inline int _compAssign(DRC_EFFECT_TYPE_REQUEST* dest, const int src) {
312
0
  int diff = 0;
313
0
  if (*dest != src) diff = 1;
314
0
  *dest = (DRC_EFFECT_TYPE_REQUEST)src;
315
0
  return diff;
316
0
}
317
318
static DRCDEC_SELECTION_DATA* _drcdec_selection_addNew(
319
    DRCDEC_SELECTION* pSelection);
320
321
static DRCDEC_SELECTION_DATA* _drcdec_selection_add(
322
    DRCDEC_SELECTION* pSelection, DRCDEC_SELECTION_DATA* pDataIn);
323
324
static int _drcdec_selection_clear(DRCDEC_SELECTION* pSelection);
325
326
static int _drcdec_selection_getNumber(DRCDEC_SELECTION* pSelection);
327
328
static int _drcdec_selection_setNumber(DRCDEC_SELECTION* pSelection, int num);
329
330
static DRCDEC_SELECTION_DATA* _drcdec_selection_getAt(
331
    DRCDEC_SELECTION* pSelection, int at);
332
333
static int _swapSelectionAndClear(DRCDEC_SELECTION** ppCandidatesPotential,
334
                                  DRCDEC_SELECTION** ppCandidatesSelected);
335
336
static int _swapSelection(DRCDEC_SELECTION** ppCandidatesPotential,
337
                          DRCDEC_SELECTION** ppCandidatesSelected);
338
339
/*******************************************/
340
/* declarations of static functions        */
341
/*******************************************/
342
343
static DRCDEC_SELECTION_PROCESS_RETURN _initDefaultParams(
344
    HANDLE_SEL_PROC_INPUT hSelProcInput);
345
346
static DRCDEC_SELECTION_PROCESS_RETURN _initCodecModeParams(
347
    HANDLE_SEL_PROC_INPUT hSelProcInput, const SEL_PROC_CODEC_MODE codecMode);
348
349
static DRCDEC_SELECTION_PROCESS_RETURN _drcSetPreSelection(
350
    SEL_PROC_INPUT* hSelProcInput, HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
351
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet,
352
    DRCDEC_SELECTION** ppCandidatesPotential,
353
    DRCDEC_SELECTION** ppCandidatesSelected, SEL_PROC_CODEC_MODE codecMode);
354
355
static DRCDEC_SELECTION_PROCESS_RETURN _drcSetFinalSelection_peakValue0(
356
    DRCDEC_SELECTION* pCandidatesPotential,
357
    DRCDEC_SELECTION* pCandidatesSelected);
358
359
static DRCDEC_SELECTION_PROCESS_RETURN _dynamicRangeMeasurement(
360
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet, DRC_INSTRUCTIONS_UNI_DRC* pInst,
361
    UCHAR downmixIdRequested,
362
    DYN_RANGE_MEASUREMENT_REQUEST_TYPE dynamicRangeMeasurementType,
363
    int albumMode, int* peakToAveragePresent, FIXP_DBL* peakToAverage);
364
365
static DRCDEC_SELECTION_PROCESS_RETURN _channelLayoutToDownmixIdMapping(
366
    HANDLE_SEL_PROC_INPUT hSelProcInput, HANDLE_UNI_DRC_CONFIG hUniDrcConfig);
367
368
static DRCDEC_SELECTION_PROCESS_RETURN _generateVirtualDrcSets(
369
    HANDLE_SEL_PROC_INPUT hSelProcInput, HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
370
    SEL_PROC_CODEC_MODE codecMode);
371
372
static DRCDEC_SELECTION_PROCESS_RETURN _drcSetRequestSelection(
373
    SEL_PROC_INPUT* hSelProcInput, HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
374
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet,
375
    DRCDEC_SELECTION** ppCandidatesPotential,
376
    DRCDEC_SELECTION** ppCandidatesSelected);
377
378
static DRCDEC_SELECTION_PROCESS_RETURN _drcSetFinalSelection(
379
    HANDLE_SEL_PROC_INPUT hSelProcInput, HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
380
    DRCDEC_SELECTION** ppCandidatesPotential,
381
    DRCDEC_SELECTION** ppCandidatesSelected, SEL_PROC_CODEC_MODE codecMode);
382
383
static DRCDEC_SELECTION_PROCESS_RETURN _generateOutputInfo(
384
    HANDLE_SEL_PROC_INPUT hSelProcInput, HANDLE_SEL_PROC_OUTPUT hSelProcOutput,
385
    HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
386
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet,
387
    DRCDEC_SELECTION_DATA* pSelectionData, SEL_PROC_CODEC_MODE codecMode);
388
389
static DRCDEC_SELECTION_PROCESS_RETURN _selectDownmixMatrix(
390
    HANDLE_SEL_PROC_OUTPUT hSelProcOutput, HANDLE_UNI_DRC_CONFIG hUniDrcConfig);
391
392
static DRCDEC_SELECTION_PROCESS_RETURN _getLoudness(
393
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet, int albumMode,
394
    METHOD_DEFINITION_REQUEST measurementMethodRequested,
395
    MEASUREMENT_SYSTEM_REQUEST measurementSystemRequested,
396
    FIXP_DBL targetLoudness, int drcSetId, int downmixIdRequested,
397
    FIXP_DBL* pLoudnessNormalizationGain, FIXP_DBL* pLoudness);
398
399
static DRCDEC_SELECTION_PROCESS_RETURN _getMixingLevel(
400
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet, int downmixIdRequested,
401
    int drcSetIdRequested, int albumMode, FIXP_DBL* pMixingLevel);
402
403
static DRCDEC_SELECTION_PROCESS_RETURN _getSignalPeakLevel(
404
    HANDLE_SEL_PROC_INPUT hSelProcInput, HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
405
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet, DRC_INSTRUCTIONS_UNI_DRC* pInst,
406
    int downmixIdRequested, int* explicitPeakInformationPresent,
407
    FIXP_DBL* signalPeakLevelOut, /* e = 7 */
408
    SEL_PROC_CODEC_MODE codecMode);
409
410
static DRCDEC_SELECTION_PROCESS_RETURN _extractLoudnessPeakToAverageValue(
411
    LOUDNESS_INFO* loudnessInfo,
412
    DYN_RANGE_MEASUREMENT_REQUEST_TYPE dynamicRangeMeasurementType,
413
    int* pLoudnessPeakToAverageValuePresent,
414
    FIXP_DBL* pLoudnessPeakToAverageValue);
415
416
static DRCDEC_SELECTION_PROCESS_RETURN _selectAlbumLoudness(
417
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet,
418
    DRCDEC_SELECTION* pCandidatesPotential,
419
    DRCDEC_SELECTION* pCandidatesSelected);
420
421
static int _findMethodDefinition(LOUDNESS_INFO* pLoudnessInfo,
422
                                 int methodDefinition, int startIndex);
423
424
/*******************************************/
425
/* public functions                        */
426
/*******************************************/
427
428
struct s_drcdec_selection_process {
429
  SEL_PROC_CODEC_MODE codecMode;
430
  SEL_PROC_INPUT selProcInput;
431
  DRCDEC_SELECTION
432
  selectionData[2]; /* 2 instances, one before and one after selection */
433
};
434
435
DRCDEC_SELECTION_PROCESS_RETURN
436
13.5k
drcDec_SelectionProcess_Create(HANDLE_DRC_SELECTION_PROCESS* phInstance) {
437
13.5k
  HANDLE_DRC_SELECTION_PROCESS hInstance;
438
13.5k
  hInstance = (HANDLE_DRC_SELECTION_PROCESS)FDKcalloc(
439
13.5k
      1, sizeof(struct s_drcdec_selection_process));
440
441
13.5k
  if (!hInstance) return DRCDEC_SELECTION_PROCESS_OUTOFMEMORY;
442
443
13.5k
  hInstance->codecMode = SEL_PROC_CODEC_MODE_UNDEFINED;
444
445
13.5k
  *phInstance = hInstance;
446
13.5k
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
447
13.5k
}
448
449
DRCDEC_SELECTION_PROCESS_RETURN
450
13.5k
drcDec_SelectionProcess_Init(HANDLE_DRC_SELECTION_PROCESS hInstance) {
451
13.5k
  if (!hInstance) return DRCDEC_SELECTION_PROCESS_NOT_OK;
452
453
13.5k
  _initDefaultParams(&hInstance->selProcInput);
454
13.5k
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
455
13.5k
}
456
457
DRCDEC_SELECTION_PROCESS_RETURN
458
drcDec_SelectionProcess_SetCodecMode(HANDLE_DRC_SELECTION_PROCESS hInstance,
459
5.28k
                                     const SEL_PROC_CODEC_MODE codecMode) {
460
5.28k
  DRCDEC_SELECTION_PROCESS_RETURN retVal = DRCDEC_SELECTION_PROCESS_NO_ERROR;
461
462
5.28k
  if (!hInstance) return DRCDEC_SELECTION_PROCESS_NOT_OK;
463
464
5.28k
  switch (codecMode) {
465
0
    case SEL_PROC_MPEG_4_AAC:
466
5.28k
    case SEL_PROC_MPEG_D_USAC:
467
5.28k
    case SEL_PROC_TEST_TIME_DOMAIN:
468
5.28k
    case SEL_PROC_TEST_QMF_DOMAIN:
469
5.28k
    case SEL_PROC_TEST_STFT_DOMAIN:
470
5.28k
      hInstance->codecMode = codecMode;
471
5.28k
      break;
472
473
0
    case SEL_PROC_CODEC_MODE_UNDEFINED:
474
0
    default:
475
0
      return DRCDEC_SELECTION_PROCESS_NOT_OK;
476
5.28k
  }
477
478
5.28k
  retVal = _initCodecModeParams(&(hInstance->selProcInput),
479
5.28k
                                hInstance->codecMode = codecMode);
480
481
5.28k
  return retVal;
482
5.28k
}
483
484
DRCDEC_SELECTION_PROCESS_RETURN
485
drcDec_SelectionProcess_SetParam(HANDLE_DRC_SELECTION_PROCESS hInstance,
486
                                 const SEL_PROC_USER_PARAM requestType,
487
477k
                                 FIXP_DBL requestValue, int* pDiff) {
488
477k
  INT requestValueInt = (INT)requestValue;
489
477k
  int i, diff = 0;
490
477k
  SEL_PROC_INPUT* pSelProcInput = &(hInstance->selProcInput);
491
492
477k
  switch (requestType) {
493
0
    case SEL_PROC_LOUDNESS_NORMALIZATION_ON:
494
0
      if ((requestValueInt != 0) && (requestValueInt != 1))
495
0
        return DRCDEC_SELECTION_PROCESS_PARAM_OUT_OF_RANGE;
496
0
      diff |=
497
0
          _compAssign(&pSelProcInput->loudnessNormalizationOn, requestValueInt);
498
0
      break;
499
6.92k
    case SEL_PROC_TARGET_LOUDNESS:
500
      /* Lower boundary: drcSetTargetLoudnessValueLower default value.
501
         Upper boundary: drcSetTargetLoudnessValueUpper default value */
502
6.92k
      if ((requestValue < FL2FXCONST_DBL(-63.0f / (float)(1 << 7))) ||
503
6.92k
          (requestValue > (FIXP_DBL)0))
504
0
        return DRCDEC_SELECTION_PROCESS_PARAM_OUT_OF_RANGE;
505
6.92k
      if (requestValue >
506
6.92k
          FL2FXCONST_DBL(-10.0f /
507
6.92k
                         (float)(1 << 7))) /* recommended maximum value */
508
0
        requestValue = FL2FXCONST_DBL(-10.0f / (float)(1 << 7));
509
6.92k
      diff |= _compAssign(&pSelProcInput->targetLoudness, requestValue);
510
6.92k
      break;
511
0
    case SEL_PROC_EFFECT_TYPE:
512
0
      if ((requestValueInt < -1) || (requestValueInt >= DETR_COUNT))
513
0
        return DRCDEC_SELECTION_PROCESS_PARAM_OUT_OF_RANGE;
514
      /* Caution. This overrides all drcFeatureRequests requested so far! */
515
0
      if (requestValueInt == -1) {
516
0
        diff |= _compAssign(&pSelProcInput->dynamicRangeControlOn, 0);
517
0
      } else if (requestValueInt == DETR_NONE) {
518
0
        diff |= _compAssign(&pSelProcInput->dynamicRangeControlOn, 1);
519
0
        diff |= _compAssign(&pSelProcInput->numDrcFeatureRequests, 0);
520
0
      } else {
521
0
        diff |= _compAssign(&pSelProcInput->dynamicRangeControlOn, 1);
522
0
        diff |= _compAssign(&pSelProcInput->numDrcFeatureRequests, 1);
523
0
        diff |= _compAssign(&pSelProcInput->drcFeatureRequestType[0],
524
0
                            DFRT_EFFECT_TYPE);
525
0
        diff |= _compAssign(&pSelProcInput->drcFeatureRequest[0]
526
0
                                 .drcEffectType.numRequestsDesired,
527
0
                            1);
528
0
        diff |= _compAssign(
529
0
            &pSelProcInput->drcFeatureRequest[0].drcEffectType.request[0],
530
0
            requestValueInt);
531
0
        if ((requestValueInt > DETR_NONE) &&
532
0
            (requestValueInt <= DETR_GENERAL_COMPR)) {
533
          /* use fallback effect type requests */
534
0
          for (i = 0; i < 5; i++) {
535
0
            diff |=
536
0
                _compAssign(&pSelProcInput->drcFeatureRequest[0]
537
0
                                 .drcEffectType.request[i + 1],
538
0
                            fallbackEffectTypeRequests[requestValueInt - 1][i]);
539
0
          }
540
0
          diff |= _compAssign(
541
0
              &pSelProcInput->drcFeatureRequest[0].drcEffectType.numRequests,
542
0
              6);
543
0
        } else {
544
0
          diff |= _compAssign(
545
0
              &pSelProcInput->drcFeatureRequest[0].drcEffectType.numRequests,
546
0
              1);
547
0
        }
548
0
      }
549
0
      break;
550
0
    case SEL_PROC_LOUDNESS_MEASUREMENT_METHOD:
551
0
      if ((requestValueInt < 0) || (requestValueInt > 2))
552
0
        return DRCDEC_SELECTION_PROCESS_PARAM_OUT_OF_RANGE;
553
0
      diff |= _compAssign(&pSelProcInput->loudnessMeasurementMethod,
554
0
                          requestValueInt);
555
0
      break;
556
0
    case SEL_PROC_ALBUM_MODE:
557
0
      if ((requestValueInt < 0) || (requestValueInt > 1))
558
0
        return DRCDEC_SELECTION_PROCESS_PARAM_OUT_OF_RANGE;
559
0
      diff |= _compAssign(&pSelProcInput->albumMode, requestValueInt);
560
0
      break;
561
0
    case SEL_PROC_DOWNMIX_ID:
562
0
      diff |=
563
0
          _compAssign(&pSelProcInput->targetConfigRequestType, TCRT_DOWNMIX_ID);
564
0
      if (requestValueInt < 0) { /* negative requests signal no downmixId */
565
0
        diff |= _compAssign(&pSelProcInput->numDownmixIdRequests, 0);
566
0
      } else {
567
0
        diff |= _compAssign(&pSelProcInput->numDownmixIdRequests, 1);
568
0
        diff |=
569
0
            _compAssign(&pSelProcInput->downmixIdRequested[0], requestValueInt);
570
0
      }
571
0
      break;
572
0
    case SEL_PROC_TARGET_LAYOUT:
573
      /* Request target layout according to ChannelConfiguration in ISO/IEC
574
       * 23001-8 (CICP) */
575
0
      if ((requestValueInt < 1) || (requestValueInt > 63))
576
0
        return DRCDEC_SELECTION_PROCESS_PARAM_OUT_OF_RANGE;
577
0
      diff |= _compAssign(&pSelProcInput->targetConfigRequestType,
578
0
                          TCRT_TARGET_LAYOUT);
579
0
      diff |=
580
0
          _compAssign(&pSelProcInput->targetLayoutRequested, requestValueInt);
581
0
      break;
582
0
    case SEL_PROC_TARGET_CHANNEL_COUNT:
583
0
      if ((requestValueInt < 1) || (requestValueInt > 8))
584
0
        return DRCDEC_SELECTION_PROCESS_PARAM_OUT_OF_RANGE;
585
0
      diff |= _compAssign(&pSelProcInput->targetConfigRequestType,
586
0
                          TCRT_TARGET_CHANNEL_COUNT);
587
0
      diff |= _compAssign(&pSelProcInput->targetChannelCountRequested,
588
0
                          requestValueInt);
589
0
      break;
590
235k
    case SEL_PROC_BASE_CHANNEL_COUNT:
591
235k
      if (requestValueInt < 0)
592
0
        return DRCDEC_SELECTION_PROCESS_PARAM_OUT_OF_RANGE;
593
235k
      diff |= _compAssign(&pSelProcInput->baseChannelCount, requestValueInt);
594
235k
      break;
595
235k
    case SEL_PROC_SAMPLE_RATE:
596
235k
      if (requestValueInt < 0)
597
0
        return DRCDEC_SELECTION_PROCESS_PARAM_OUT_OF_RANGE;
598
235k
      diff |= _compAssign(&pSelProcInput->audioSampleRate, requestValueInt);
599
235k
      break;
600
0
    case SEL_PROC_BOOST:
601
0
      if ((requestValue < (FIXP_DBL)0) ||
602
0
          (requestValue > FL2FXCONST_DBL(1.0f / (float)(1 << 1))))
603
0
        return DRCDEC_SELECTION_PROCESS_PARAM_OUT_OF_RANGE;
604
0
      diff |= _compAssign(
605
0
          &pSelProcInput->boost,
606
0
          FX_DBL2FX_SGL(
607
0
              requestValue +
608
0
              (FIXP_DBL)(1 << 15))); /* convert to FIXP_SGL with rounding */
609
0
      break;
610
0
    case SEL_PROC_COMPRESS:
611
0
      if ((requestValue < (FIXP_DBL)0) ||
612
0
          (requestValue > FL2FXCONST_DBL(1.0f / (float)(1 << 1))))
613
0
        return DRCDEC_SELECTION_PROCESS_PARAM_OUT_OF_RANGE;
614
0
      diff |= _compAssign(
615
0
          &pSelProcInput->compress,
616
0
          FX_DBL2FX_SGL(
617
0
              requestValue +
618
0
              (FIXP_DBL)(1 << 15))); /* convert to FIXP_SGL with rounding */
619
0
      break;
620
0
    default:
621
0
      return DRCDEC_SELECTION_PROCESS_INVALID_PARAM;
622
477k
  }
623
624
477k
  if (pDiff != NULL) {
625
477k
    *pDiff |= diff;
626
477k
  }
627
628
477k
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
629
477k
}
630
631
FIXP_DBL
632
drcDec_SelectionProcess_GetParam(HANDLE_DRC_SELECTION_PROCESS hInstance,
633
9.36M
                                 const SEL_PROC_USER_PARAM requestType) {
634
9.36M
  SEL_PROC_INPUT* pSelProcInput = &(hInstance->selProcInput);
635
636
9.36M
  switch (requestType) {
637
4.68M
    case SEL_PROC_LOUDNESS_NORMALIZATION_ON:
638
4.68M
      return (FIXP_DBL)pSelProcInput->loudnessNormalizationOn;
639
4.68M
    case SEL_PROC_DYNAMIC_RANGE_CONTROL_ON:
640
4.68M
      return (FIXP_DBL)pSelProcInput->dynamicRangeControlOn;
641
0
    default:
642
0
      return (FIXP_DBL)0;
643
9.36M
  }
644
9.36M
}
645
646
DRCDEC_SELECTION_PROCESS_RETURN
647
13.5k
drcDec_SelectionProcess_Delete(HANDLE_DRC_SELECTION_PROCESS* phInstance) {
648
13.5k
  if (phInstance == NULL || *phInstance == NULL)
649
0
    return DRCDEC_SELECTION_PROCESS_INVALID_HANDLE;
650
651
13.5k
  FDKfree(*phInstance);
652
13.5k
  *phInstance = NULL;
653
13.5k
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
654
13.5k
}
655
656
DRCDEC_SELECTION_PROCESS_RETURN
657
drcDec_SelectionProcess_Process(HANDLE_DRC_SELECTION_PROCESS hInstance,
658
                                HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
659
                                HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet,
660
235k
                                HANDLE_SEL_PROC_OUTPUT hSelProcOutput) {
661
235k
  DRCDEC_SELECTION_PROCESS_RETURN retVal = DRCDEC_SELECTION_PROCESS_NO_ERROR;
662
235k
  DRCDEC_SELECTION* pCandidatesSelected;
663
235k
  DRCDEC_SELECTION* pCandidatesPotential;
664
665
235k
  if (hInstance == NULL) return DRCDEC_SELECTION_PROCESS_INVALID_HANDLE;
666
667
235k
  pCandidatesSelected = &(hInstance->selectionData[0]);
668
235k
  pCandidatesPotential = &(hInstance->selectionData[1]);
669
235k
  _drcdec_selection_setNumber(pCandidatesSelected, 0);
670
235k
  _drcdec_selection_setNumber(pCandidatesPotential, 0);
671
672
235k
  retVal = _generateVirtualDrcSets(&(hInstance->selProcInput), hUniDrcConfig,
673
235k
                                   hInstance->codecMode);
674
235k
  if (retVal) return (retVal);
675
676
235k
  if (hInstance->selProcInput.baseChannelCount !=
677
235k
      hUniDrcConfig->channelLayout.baseChannelCount) {
678
235k
    hInstance->selProcInput.baseChannelCount =
679
235k
        hUniDrcConfig->channelLayout.baseChannelCount;
680
235k
  }
681
682
235k
  if ((hInstance->selProcInput.targetConfigRequestType != 0) ||
683
235k
      (hInstance->selProcInput.targetConfigRequestType == 0 &&
684
235k
       hInstance->selProcInput.numDownmixIdRequests == 0)) {
685
12.0k
    retVal = _channelLayoutToDownmixIdMapping(&(hInstance->selProcInput),
686
12.0k
                                              hUniDrcConfig);
687
688
12.0k
    if (_isError(retVal)) return (retVal);
689
12.0k
  }
690
691
235k
  retVal = _drcSetPreSelection(&(hInstance->selProcInput), hUniDrcConfig,
692
235k
                               hLoudnessInfoSet, &pCandidatesPotential,
693
235k
                               &pCandidatesSelected, hInstance->codecMode);
694
235k
  if (retVal) return (retVal);
695
696
235k
  if (hInstance->selProcInput.albumMode) {
697
0
    _swapSelectionAndClear(&pCandidatesPotential, &pCandidatesSelected);
698
699
0
    retVal = _selectAlbumLoudness(hLoudnessInfoSet, pCandidatesPotential,
700
0
                                  pCandidatesSelected);
701
0
    if (retVal) return (retVal);
702
703
0
    if (_drcdec_selection_getNumber(pCandidatesSelected) == 0) {
704
0
      _swapSelection(&pCandidatesPotential, &pCandidatesSelected);
705
0
    }
706
0
  }
707
708
235k
  _swapSelectionAndClear(&pCandidatesPotential, &pCandidatesSelected);
709
710
235k
  retVal = _drcSetRequestSelection(&(hInstance->selProcInput), hUniDrcConfig,
711
235k
                                   hLoudnessInfoSet, &pCandidatesPotential,
712
235k
                                   &pCandidatesSelected);
713
235k
  if (retVal) return (retVal);
714
715
235k
  retVal = _drcSetFinalSelection(&(hInstance->selProcInput), hUniDrcConfig,
716
235k
                                 &pCandidatesPotential, &pCandidatesSelected,
717
235k
                                 hInstance->codecMode);
718
235k
  if (retVal) return (retVal);
719
720
235k
  retVal = _generateOutputInfo(
721
235k
      &(hInstance->selProcInput), hSelProcOutput, hUniDrcConfig,
722
235k
      hLoudnessInfoSet, &(pCandidatesSelected->data[0]), hInstance->codecMode);
723
724
235k
  if (_isError(retVal)) return (retVal);
725
726
235k
  retVal = _selectDownmixMatrix(hSelProcOutput, hUniDrcConfig);
727
235k
  if (retVal) return (retVal);
728
729
235k
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
730
235k
}
731
732
/*******************************************/
733
/* static functions                        */
734
/*******************************************/
735
736
static DRCDEC_SELECTION_PROCESS_RETURN _initDefaultParams(
737
13.5k
    HANDLE_SEL_PROC_INPUT hSelProcInput) {
738
13.5k
  DRCDEC_SELECTION_PROCESS_RETURN retVal = DRCDEC_SELECTION_PROCESS_NO_ERROR;
739
740
13.5k
  if (hSelProcInput == NULL) return DRCDEC_SELECTION_PROCESS_INVALID_HANDLE;
741
742
  /* system parameters */
743
13.5k
  hSelProcInput->baseChannelCount = -1;
744
13.5k
  hSelProcInput->baseLayout = -1;
745
13.5k
  hSelProcInput->targetConfigRequestType = TCRT_DOWNMIX_ID;
746
13.5k
  hSelProcInput->numDownmixIdRequests = 0;
747
748
  /* loudness normalization parameters */
749
13.5k
  hSelProcInput->albumMode = 0;
750
13.5k
  hSelProcInput->peakLimiterPresent = 0;
751
13.5k
  hSelProcInput->loudnessNormalizationOn = 1;
752
13.5k
  hSelProcInput->targetLoudness = FL2FXCONST_DBL(-24.0f / (float)(1 << 7));
753
13.5k
  hSelProcInput->loudnessDeviationMax = DEFAULT_LOUDNESS_DEVIATION_MAX;
754
13.5k
  hSelProcInput->loudnessMeasurementMethod = MDR_ANCHOR_LOUDNESS;
755
13.5k
  hSelProcInput->loudnessMeasurementSystem = MSR_EXPERT_PANEL;
756
13.5k
  hSelProcInput->loudnessMeasurementPreProc = LPR_DEFAULT;
757
13.5k
  hSelProcInput->deviceCutOffFrequency = 500;
758
13.5k
  hSelProcInput->loudnessNormalizationGainDbMax =
759
13.5k
      (FIXP_DBL)MAXVAL_DBL; /* infinity as default */
760
13.5k
  hSelProcInput->loudnessNormalizationGainModificationDb = (FIXP_DBL)0;
761
13.5k
  hSelProcInput->outputPeakLevelMax = (FIXP_DBL)0;
762
13.5k
  if (hSelProcInput->peakLimiterPresent == 1) {
763
0
    hSelProcInput->outputPeakLevelMax = FL2FXCONST_DBL(6.0f / (float)(1 << 7));
764
0
  }
765
766
  /* dynamic range control parameters */
767
13.5k
  hSelProcInput->dynamicRangeControlOn = 1;
768
769
13.5k
  hSelProcInput->numDrcFeatureRequests = 0;
770
771
  /* other parameters */
772
13.5k
  hSelProcInput->boost = FL2FXCONST_SGL(1.f / (float)(1 << 1));
773
13.5k
  hSelProcInput->compress = FL2FXCONST_SGL(1.f / (float)(1 << 1));
774
13.5k
  hSelProcInput->drcCharacteristicTarget = 0;
775
776
13.5k
  return retVal;
777
13.5k
}
778
779
static DRCDEC_SELECTION_PROCESS_RETURN _initCodecModeParams(
780
5.28k
    HANDLE_SEL_PROC_INPUT hSelProcInput, const SEL_PROC_CODEC_MODE codecMode) {
781
5.28k
  DRCDEC_SELECTION_PROCESS_RETURN retVal = DRCDEC_SELECTION_PROCESS_NO_ERROR;
782
783
5.28k
  if (hSelProcInput == NULL) return DRCDEC_SELECTION_PROCESS_INVALID_HANDLE;
784
785
5.28k
  switch (codecMode) {
786
0
    case SEL_PROC_MPEG_H_3DA:
787
0
      hSelProcInput->loudnessDeviationMax = 0;
788
0
      hSelProcInput->peakLimiterPresent = 1; /* peak limiter is mandatory */
789
      /* The peak limiter also has to catch overshoots due to user
790
      interactivity, downmixing etc. Therefore the maximum output peak level is
791
      reduced to 0 dB. */
792
0
      hSelProcInput->outputPeakLevelMax = (FIXP_DBL)0;
793
0
      break;
794
0
    case SEL_PROC_MPEG_4_AAC:
795
5.28k
    case SEL_PROC_MPEG_D_USAC:
796
5.28k
      hSelProcInput->loudnessDeviationMax = DEFAULT_LOUDNESS_DEVIATION_MAX;
797
5.28k
      hSelProcInput->peakLimiterPresent = 1;
798
      /* A peak limiter is present at the end of the decoder, therefore we can
799
       * allow for a maximum output peak level greater than full scale
800
       */
801
5.28k
      hSelProcInput->outputPeakLevelMax =
802
5.28k
          FL2FXCONST_DBL(6.0f / (float)(1 << 7));
803
5.28k
      break;
804
0
    case SEL_PROC_TEST_TIME_DOMAIN:
805
0
    case SEL_PROC_TEST_QMF_DOMAIN:
806
0
    case SEL_PROC_TEST_STFT_DOMAIN:
807
      /* for testing, adapt to default settings in reference software */
808
0
      hSelProcInput->loudnessNormalizationOn = 0;
809
0
      hSelProcInput->dynamicRangeControlOn = 0;
810
0
      break;
811
0
    case SEL_PROC_CODEC_MODE_UNDEFINED:
812
0
    default:
813
0
      hSelProcInput->loudnessDeviationMax = DEFAULT_LOUDNESS_DEVIATION_MAX;
814
0
      hSelProcInput->peakLimiterPresent = 0;
815
5.28k
  }
816
817
5.28k
  return retVal;
818
5.28k
}
819
820
static DRCDEC_SELECTION_PROCESS_RETURN _channelLayoutToDownmixIdMapping(
821
12.0k
    HANDLE_SEL_PROC_INPUT hSelProcInput, HANDLE_UNI_DRC_CONFIG hUniDrcConfig) {
822
12.0k
  DRCDEC_SELECTION_PROCESS_RETURN retVal = DRCDEC_SELECTION_PROCESS_NO_ERROR;
823
824
12.0k
  DOWNMIX_INSTRUCTIONS* pDown = NULL;
825
826
12.0k
  int i;
827
828
12.0k
  hSelProcInput->numDownmixIdRequests = 0;
829
830
12.0k
  switch (hSelProcInput->targetConfigRequestType) {
831
12.0k
    case TCRT_DOWNMIX_ID:
832
12.0k
      if (hSelProcInput->numDownmixIdRequests == 0) {
833
12.0k
        hSelProcInput->downmixIdRequested[0] = 0;
834
12.0k
        hSelProcInput->numDownmixIdRequests = 1;
835
12.0k
      }
836
837
12.0k
      break;
838
839
0
    case TCRT_TARGET_LAYOUT:
840
0
      if (hSelProcInput->targetLayoutRequested == hSelProcInput->baseLayout) {
841
0
        hSelProcInput->downmixIdRequested[0] = 0;
842
0
        hSelProcInput->numDownmixIdRequests = 1;
843
0
      }
844
845
0
      if (hSelProcInput->numDownmixIdRequests == 0) {
846
0
        for (i = 0; i < hUniDrcConfig->downmixInstructionsCount; i++) {
847
0
          pDown = &(hUniDrcConfig->downmixInstructions[i]);
848
849
0
          if (hSelProcInput->targetLayoutRequested == pDown->targetLayout) {
850
0
            hSelProcInput
851
0
                ->downmixIdRequested[hSelProcInput->numDownmixIdRequests] =
852
0
                pDown->downmixId;
853
0
            hSelProcInput->numDownmixIdRequests++;
854
0
          }
855
0
        }
856
0
      }
857
858
0
      if (hSelProcInput->baseLayout == -1) {
859
0
        retVal = DRCDEC_SELECTION_PROCESS_WARNING;
860
0
      }
861
862
0
      if (hSelProcInput->numDownmixIdRequests == 0) {
863
0
        hSelProcInput->downmixIdRequested[0] = 0;
864
0
        hSelProcInput->numDownmixIdRequests = 1;
865
0
        retVal = DRCDEC_SELECTION_PROCESS_WARNING;
866
0
      }
867
868
0
      break;
869
870
0
    case TCRT_TARGET_CHANNEL_COUNT:
871
0
      if (hSelProcInput->targetChannelCountRequested ==
872
0
          hSelProcInput->baseChannelCount) {
873
0
        hSelProcInput->downmixIdRequested[0] = 0;
874
0
        hSelProcInput->numDownmixIdRequests = 1;
875
0
      }
876
877
0
      if (hSelProcInput->numDownmixIdRequests == 0) {
878
0
        for (i = 0; i < hUniDrcConfig->downmixInstructionsCount; i++) {
879
0
          pDown = &(hUniDrcConfig->downmixInstructions[i]);
880
881
0
          if (hSelProcInput->targetChannelCountRequested ==
882
0
              pDown->targetChannelCount) {
883
0
            hSelProcInput
884
0
                ->downmixIdRequested[hSelProcInput->numDownmixIdRequests] =
885
0
                pDown->downmixId;
886
0
            hSelProcInput->numDownmixIdRequests++;
887
0
          }
888
0
        }
889
0
      }
890
891
0
      if (hSelProcInput->baseChannelCount == -1) {
892
0
        retVal = DRCDEC_SELECTION_PROCESS_WARNING;
893
0
      }
894
895
0
      if (hSelProcInput->numDownmixIdRequests == 0) {
896
0
        retVal = DRCDEC_SELECTION_PROCESS_WARNING;
897
0
        hSelProcInput->downmixIdRequested[0] = 0;
898
0
        hSelProcInput->numDownmixIdRequests = 1;
899
0
      }
900
901
0
      break;
902
903
0
    default:
904
0
      return DRCDEC_SELECTION_PROCESS_NOT_OK;
905
12.0k
  }
906
907
12.0k
  return retVal;
908
12.0k
}
909
910
/*******************************************/
911
912
/* Note: Numbering of DRC pre-selection steps according to MPEG-D Part-4 DRC
913
 * Amd1 */
914
915
/* #1: DownmixId of DRC set matches the requested downmixId.
916
   #2: Output channel layout of DRC set matches the requested layout.
917
   #3: Channel count of DRC set matches the requested channel count. */
918
static DRCDEC_SELECTION_PROCESS_RETURN _preSelectionRequirement123(
919
    int nRequestedDownmixId, DRC_INSTRUCTIONS_UNI_DRC* pDrcInstructionUniDrc,
920
236k
    int* pMatchFound) {
921
236k
  int i;
922
236k
  *pMatchFound = 0;
923
924
237k
  for (i = 0; i < pDrcInstructionUniDrc->downmixIdCount; i++) {
925
236k
    if ((pDrcInstructionUniDrc->downmixId[i] == nRequestedDownmixId) ||
926
836
        (pDrcInstructionUniDrc->downmixId[i] == DOWNMIX_ID_ANY_DOWNMIX) ||
927
785
        ((pDrcInstructionUniDrc->downmixId[i] == DOWNMIX_ID_BASE_LAYOUT) &&
928
235k
         (pDrcInstructionUniDrc->drcSetId > 0))) {
929
235k
      *pMatchFound = 1;
930
235k
      break;
931
235k
    }
932
236k
  }
933
934
236k
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
935
236k
}
936
937
/* #4: The DRC set is not a "Fade-" or "Ducking-" only DRC set. */
938
static DRCDEC_SELECTION_PROCESS_RETURN _preSelectionRequirement4(
939
    DRC_INSTRUCTIONS_UNI_DRC* pDrcInstruction, int nDynamicRangeControlOn,
940
235k
    int* pMatchFound) {
941
235k
  *pMatchFound = 0;
942
943
235k
  if (nDynamicRangeControlOn == 1) {
944
235k
    if ((pDrcInstruction->drcSetEffect != EB_FADE) &&
945
235k
        (pDrcInstruction->drcSetEffect != EB_DUCK_OTHER) &&
946
235k
        (pDrcInstruction->drcSetEffect != EB_DUCK_SELF) &&
947
235k
        (pDrcInstruction->drcSetEffect != 0 || pDrcInstruction->drcSetId < 0)) {
948
235k
      *pMatchFound = 1;
949
235k
    }
950
235k
  } else {
951
0
    *pMatchFound = 1;
952
0
  }
953
954
235k
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
955
235k
}
956
957
/* #5: The number of DRC bands is supported. Moreover, gainSetIndex and
958
 * gainSequenceIndex are within the allowed range. */
959
static DRCDEC_SELECTION_PROCESS_RETURN _preSelectionRequirement5(
960
    DRC_INSTRUCTIONS_UNI_DRC* pDrcInstructionUniDrc,
961
237k
    DRC_COEFFICIENTS_UNI_DRC* pCoef, int* pMatchFound) {
962
237k
  int b, i;
963
964
237k
  *pMatchFound = 1;
965
966
237k
  if (pDrcInstructionUniDrc->drcSetId < 0) /* virtual DRC sets are okay */
967
235k
  {
968
235k
    return DRCDEC_SELECTION_PROCESS_NO_ERROR;
969
235k
  }
970
971
2.11k
  if (pCoef == NULL) /* check for parametricDRC */
972
166
  {
973
166
    *pMatchFound = 0; /* parametricDRC not supported */
974
166
    return DRCDEC_SELECTION_PROCESS_NO_ERROR;
975
166
  }
976
977
1.94k
  if (pCoef->drcLocation !=
978
1.94k
      pDrcInstructionUniDrc
979
1.94k
          ->drcLocation) /* drcLocation must be LOCATION_SELECTED */
980
1.75k
  {
981
1.75k
    *pMatchFound = 0;
982
1.75k
    return DRCDEC_SELECTION_PROCESS_NO_ERROR;
983
1.75k
  }
984
985
245
  for (i = 0; i < pDrcInstructionUniDrc->nDrcChannelGroups; i++) {
986
88
    int indexDrcCoeff = pDrcInstructionUniDrc->gainSetIndexForChannelGroup[i];
987
88
    int bandCount = 0;
988
989
88
    if (indexDrcCoeff >= 12) {
990
32
      *pMatchFound = 0;
991
32
      return DRCDEC_SELECTION_PROCESS_NO_ERROR;
992
32
    }
993
994
56
    if (indexDrcCoeff > pCoef->gainSetCount - 1) /* check for parametricDRC */
995
34
    {
996
34
      continue;
997
34
    }
998
999
22
    GAIN_SET* gainSet = &(pCoef->gainSet[indexDrcCoeff]);
1000
22
    bandCount = gainSet->bandCount;
1001
1002
22
    if (bandCount > 4) {
1003
0
      *pMatchFound = 0;
1004
0
    }
1005
1006
66
    for (b = 0; b < bandCount; b++) {
1007
44
      if ((gainSet->gainSequenceIndex[b] >= 12) ||
1008
44
          (gainSet->gainSequenceIndex[b] >= pCoef->gainSequenceCount)) {
1009
0
        *pMatchFound = 0;
1010
0
        return DRCDEC_SELECTION_PROCESS_NO_ERROR;
1011
0
      }
1012
44
    }
1013
22
  }
1014
1015
157
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
1016
189
}
1017
1018
/* #6: Independent use of DRC set is permitted.*/
1019
static DRCDEC_SELECTION_PROCESS_RETURN _preSelectionRequirement6(
1020
235k
    DRC_INSTRUCTIONS_UNI_DRC* pDrcInstructionUniDrc, int* pMatchFound) {
1021
235k
  *pMatchFound = 0;
1022
1023
235k
  if (((pDrcInstructionUniDrc->dependsOnDrcSetPresent == 0) &&
1024
235k
       (pDrcInstructionUniDrc->noIndependentUse == 0)) ||
1025
235k
      (pDrcInstructionUniDrc->dependsOnDrcSetPresent == 1)) {
1026
235k
    *pMatchFound = 1;
1027
235k
  }
1028
1029
235k
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
1030
235k
}
1031
1032
/* #7: DRC sets that require EQ are only permitted if EQ is supported. */
1033
static DRCDEC_SELECTION_PROCESS_RETURN _preSelectionRequirement7(
1034
235k
    DRC_INSTRUCTIONS_UNI_DRC* pDrcInstructionUniDrc, int* pMatchFound) {
1035
235k
  *pMatchFound = 1;
1036
1037
235k
  if (pDrcInstructionUniDrc->requiresEq) {
1038
    /* EQ is not supported */
1039
0
    *pMatchFound = 0;
1040
0
  }
1041
1042
235k
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
1043
235k
}
1044
1045
static void _setSelectionDataInfo(
1046
    DRCDEC_SELECTION_DATA* pData, FIXP_DBL loudness, /* e = 7 */
1047
    FIXP_DBL loudnessNormalizationGainDb,            /* e = 7 */
1048
    FIXP_DBL loudnessNormalizationGainDbMax,         /* e = 7 */
1049
    FIXP_DBL loudnessDeviationMax,                   /* e = 7 */
1050
    FIXP_DBL signalPeakLevel,                        /* e = 7 */
1051
    FIXP_DBL outputPeakLevelMax,                     /* e = 7 */
1052
235k
    int applyAdjustment) {
1053
235k
  FIXP_DBL adjustment = 0; /* e = 8 */
1054
1055
  /* use e = 8 for all function parameters to prevent overflow */
1056
235k
  loudness >>= 1;
1057
235k
  loudnessNormalizationGainDb >>= 1;
1058
235k
  loudnessNormalizationGainDbMax >>= 1;
1059
235k
  loudnessDeviationMax >>= 1;
1060
235k
  signalPeakLevel >>= 1;
1061
235k
  outputPeakLevelMax >>= 1;
1062
1063
235k
  if (applyAdjustment) {
1064
0
    adjustment =
1065
0
        fMax((FIXP_DBL)0, signalPeakLevel + loudnessNormalizationGainDb -
1066
0
                              outputPeakLevelMax);
1067
0
    adjustment = fMin(adjustment, fMax((FIXP_DBL)0, loudnessDeviationMax));
1068
0
  }
1069
1070
235k
  pData->loudnessNormalizationGainDbAdjusted = fMin(
1071
235k
      loudnessNormalizationGainDb - adjustment, loudnessNormalizationGainDbMax);
1072
235k
  pData->outputLoudness = loudness + pData->loudnessNormalizationGainDbAdjusted;
1073
235k
  pData->outputPeakLevel =
1074
235k
      signalPeakLevel + pData->loudnessNormalizationGainDbAdjusted;
1075
1076
  /* shift back to e = 7 using saturation */
1077
235k
  pData->loudnessNormalizationGainDbAdjusted = SATURATE_LEFT_SHIFT(
1078
235k
      pData->loudnessNormalizationGainDbAdjusted, 1, DFRACT_BITS);
1079
235k
  pData->outputLoudness =
1080
235k
      SATURATE_LEFT_SHIFT(pData->outputLoudness, 1, DFRACT_BITS);
1081
235k
  pData->outputPeakLevel =
1082
235k
      SATURATE_LEFT_SHIFT(pData->outputPeakLevel, 1, DFRACT_BITS);
1083
235k
}
1084
1085
static int _targetLoudnessInRange(
1086
258
    DRC_INSTRUCTIONS_UNI_DRC* pDrcInstructionUniDrc, FIXP_DBL targetLoudness) {
1087
258
  int retVal = 0;
1088
1089
258
  FIXP_DBL drcSetTargetLoudnessValueUpper =
1090
258
      ((FIXP_DBL)pDrcInstructionUniDrc->drcSetTargetLoudnessValueUpper)
1091
258
      << (DFRACT_BITS - 1 - 7);
1092
258
  FIXP_DBL drcSetTargetLoudnessValueLower =
1093
258
      ((FIXP_DBL)pDrcInstructionUniDrc->drcSetTargetLoudnessValueLower)
1094
258
      << (DFRACT_BITS - 1 - 7);
1095
1096
258
  if (pDrcInstructionUniDrc->drcSetTargetLoudnessPresent &&
1097
9
      drcSetTargetLoudnessValueUpper >= targetLoudness &&
1098
3
      drcSetTargetLoudnessValueLower < targetLoudness) {
1099
1
    retVal = 1;
1100
1
  }
1101
1102
258
  return retVal;
1103
258
}
1104
1105
static int _drcSetIsUsable(HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
1106
2.98k
                           DRC_INSTRUCTIONS_UNI_DRC* pInst) {
1107
2.98k
  int usable = 0;
1108
2.98k
  DRC_COEFFICIENTS_UNI_DRC* pCoef =
1109
2.98k
      selectDrcCoefficients(hUniDrcConfig, LOCATION_SELECTED);
1110
1111
  /* check if ID is unique */
1112
2.98k
  if (selectDrcInstructions(hUniDrcConfig, pInst->drcSetId) != pInst) return 0;
1113
  /* sanity check on drcInstructions */
1114
1.90k
  _preSelectionRequirement5(pInst, pCoef, &usable);
1115
1.90k
  return usable;
1116
2.98k
}
1117
1118
/* #8: The range of the target loudness specified for a DRC set has to include
1119
 * the requested decoder target loudness. */
1120
static DRCDEC_SELECTION_PROCESS_RETURN _preSelectionRequirement8(
1121
    SEL_PROC_INPUT* hSelProcInput, int downmixIdIndex,
1122
    HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
1123
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet,
1124
    DRC_INSTRUCTIONS_UNI_DRC* pDrcInstructionUniDrc,
1125
    DRCDEC_SELECTION* pCandidatesPotential,
1126
235k
    DRCDEC_SELECTION* pCandidatesSelected, SEL_PROC_CODEC_MODE codecMode) {
1127
235k
  DRCDEC_SELECTION_PROCESS_RETURN retVal = DRCDEC_SELECTION_PROCESS_NO_ERROR;
1128
235k
  int explicitPeakInformationPresent;
1129
235k
  FIXP_DBL signalPeakLevel;
1130
235k
  int addToCandidate = 0;
1131
1132
235k
  FIXP_DBL loudnessNormalizationGainDb;
1133
235k
  FIXP_DBL loudness;
1134
1135
235k
  FIXP_DBL loudnessDeviationMax =
1136
235k
      ((FIXP_DBL)hSelProcInput->loudnessDeviationMax) << (DFRACT_BITS - 1 - 7);
1137
1138
235k
  {
1139
235k
    retVal = _getLoudness(hLoudnessInfoSet, hSelProcInput->albumMode,
1140
235k
                          hSelProcInput->loudnessMeasurementMethod,
1141
235k
                          hSelProcInput->loudnessMeasurementSystem,
1142
235k
                          hSelProcInput->targetLoudness,
1143
235k
                          pDrcInstructionUniDrc->drcSetId,
1144
235k
                          hSelProcInput->downmixIdRequested[downmixIdIndex],
1145
235k
                          &loudnessNormalizationGainDb, &loudness);
1146
235k
    if (retVal) return (retVal);
1147
235k
  }
1148
1149
235k
  if (!hSelProcInput->loudnessNormalizationOn) {
1150
0
    loudnessNormalizationGainDb = (FIXP_DBL)0;
1151
0
  }
1152
1153
235k
  retVal = _getSignalPeakLevel(
1154
235k
      hSelProcInput, hUniDrcConfig, hLoudnessInfoSet, pDrcInstructionUniDrc,
1155
235k
      hSelProcInput->downmixIdRequested[downmixIdIndex],
1156
235k
      &explicitPeakInformationPresent, &signalPeakLevel, codecMode
1157
1158
235k
  );
1159
235k
  if (retVal) return (retVal);
1160
1161
235k
  if (hSelProcInput->dynamicRangeControlOn) {
1162
235k
    if (explicitPeakInformationPresent == 0) {
1163
235k
      if (pDrcInstructionUniDrc->drcSetTargetLoudnessPresent &&
1164
5
          ((hSelProcInput->loudnessNormalizationOn &&
1165
5
            _targetLoudnessInRange(pDrcInstructionUniDrc,
1166
5
                                   hSelProcInput->targetLoudness)) ||
1167
4
           !hSelProcInput->loudnessNormalizationOn)) {
1168
1
        DRCDEC_SELECTION_DATA* pData =
1169
1
            _drcdec_selection_addNew(pCandidatesSelected);
1170
1
        if (pData == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1171
1172
1
        _setSelectionDataInfo(pData, loudness, loudnessNormalizationGainDb,
1173
1
                              hSelProcInput->loudnessNormalizationGainDbMax,
1174
1
                              loudnessDeviationMax, signalPeakLevel,
1175
1
                              hSelProcInput->outputPeakLevelMax, 0);
1176
1
        pData->downmixIdRequestIndex = downmixIdIndex;
1177
1
        pData->pInst = pDrcInstructionUniDrc;
1178
1
        pData->selectionFlag =
1179
1
            1; /* signal pre-selection step dealing with drcSetTargetLoudness */
1180
1181
1
        if (hSelProcInput->loudnessNormalizationOn) {
1182
1
          pData->outputPeakLevel =
1183
1
              hSelProcInput->targetLoudness -
1184
1
              (((FIXP_DBL)pData->pInst->drcSetTargetLoudnessValueUpper)
1185
1
               << (DFRACT_BITS - 1 - 7));
1186
1
        } else {
1187
0
          pData->outputPeakLevel = (FIXP_DBL)0;
1188
0
        }
1189
235k
      } else {
1190
235k
        if ((!hSelProcInput->loudnessNormalizationOn) ||
1191
235k
            (!pDrcInstructionUniDrc->drcSetTargetLoudnessPresent) ||
1192
4
            (hSelProcInput->loudnessNormalizationOn &&
1193
4
             _targetLoudnessInRange(pDrcInstructionUniDrc,
1194
235k
                                    hSelProcInput->targetLoudness))) {
1195
235k
          addToCandidate = 1;
1196
235k
        }
1197
235k
      }
1198
235k
    } else {
1199
19
      addToCandidate = 1;
1200
19
    }
1201
1202
235k
    if (addToCandidate) {
1203
235k
      DRCDEC_SELECTION_DATA* pData =
1204
235k
          _drcdec_selection_addNew(pCandidatesPotential);
1205
235k
      if (pData == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1206
1207
235k
      _setSelectionDataInfo(pData, loudness, loudnessNormalizationGainDb,
1208
235k
                            hSelProcInput->loudnessNormalizationGainDbMax,
1209
235k
                            loudnessDeviationMax, signalPeakLevel,
1210
235k
                            hSelProcInput->outputPeakLevelMax, 0);
1211
235k
      pData->downmixIdRequestIndex = downmixIdIndex;
1212
235k
      pData->pInst = pDrcInstructionUniDrc;
1213
235k
      pData->selectionFlag = 0;
1214
235k
    }
1215
235k
  } else {
1216
0
    if (pDrcInstructionUniDrc->drcSetId < 0) {
1217
0
      DRCDEC_SELECTION_DATA* pData =
1218
0
          _drcdec_selection_addNew(pCandidatesSelected);
1219
0
      if (pData == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1220
1221
0
      _setSelectionDataInfo(pData, loudness, loudnessNormalizationGainDb,
1222
0
                            hSelProcInput->loudnessNormalizationGainDbMax,
1223
0
                            loudnessDeviationMax, signalPeakLevel,
1224
0
                            hSelProcInput->outputPeakLevelMax, 1);
1225
1226
0
      pData->downmixIdRequestIndex = downmixIdIndex;
1227
0
      pData->pInst = pDrcInstructionUniDrc;
1228
0
      pData->selectionFlag = 0;
1229
0
    }
1230
0
  }
1231
1232
235k
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
1233
235k
}
1234
1235
/* #9: Clipping is minimized. */
1236
static DRCDEC_SELECTION_PROCESS_RETURN _preSelectionRequirement9(
1237
    SEL_PROC_INPUT* hSelProcInput, DRCDEC_SELECTION* pCandidatesPotential,
1238
235k
    DRCDEC_SELECTION* pCandidatesSelected) {
1239
235k
  int i;
1240
1241
470k
  for (i = 0; i < _drcdec_selection_getNumber(pCandidatesPotential); i++) {
1242
235k
    DRCDEC_SELECTION_DATA* pCandidate =
1243
235k
        _drcdec_selection_getAt(pCandidatesPotential, i);
1244
235k
    if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1245
1246
235k
    if (pCandidate->outputPeakLevel <= hSelProcInput->outputPeakLevelMax) {
1247
235k
      if (_drcdec_selection_add(pCandidatesSelected, pCandidate) == NULL)
1248
0
        return DRCDEC_SELECTION_PROCESS_NOT_OK;
1249
235k
    }
1250
235k
  }
1251
1252
235k
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
1253
235k
}
1254
1255
static DRCDEC_SELECTION_PROCESS_RETURN _drcSetPreSelectionSingleInstruction(
1256
    SEL_PROC_INPUT* hSelProcInput, int downmixIdIndex,
1257
    HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
1258
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet,
1259
    DRC_INSTRUCTIONS_UNI_DRC* pDrcInstructionUniDrc,
1260
    DRCDEC_SELECTION* pCandidatesPotential,
1261
236k
    DRCDEC_SELECTION* pCandidatesSelected, SEL_PROC_CODEC_MODE codecMode) {
1262
236k
  DRCDEC_SELECTION_PROCESS_RETURN retVal = DRCDEC_SELECTION_PROCESS_NO_ERROR;
1263
236k
  int matchFound = 0;
1264
236k
  DRC_COEFFICIENTS_UNI_DRC* pCoef =
1265
236k
      selectDrcCoefficients(hUniDrcConfig, LOCATION_SELECTED);
1266
1267
236k
  retVal = _preSelectionRequirement123(
1268
236k
      hSelProcInput->downmixIdRequested[downmixIdIndex], pDrcInstructionUniDrc,
1269
236k
      &matchFound);
1270
1271
236k
  if (!retVal && matchFound)
1272
235k
    retVal = _preSelectionRequirement4(pDrcInstructionUniDrc,
1273
235k
                                       hSelProcInput->dynamicRangeControlOn,
1274
235k
                                       &matchFound);
1275
1276
236k
  if (!retVal && matchFound)
1277
235k
    retVal =
1278
235k
        _preSelectionRequirement5(pDrcInstructionUniDrc, pCoef, &matchFound);
1279
1280
236k
  if (!retVal && matchFound)
1281
235k
    retVal = _preSelectionRequirement6(pDrcInstructionUniDrc, &matchFound);
1282
1283
236k
  if (!retVal && matchFound)
1284
235k
    retVal = _preSelectionRequirement7(pDrcInstructionUniDrc, &matchFound);
1285
1286
236k
  if (!retVal && matchFound)
1287
235k
    retVal = _preSelectionRequirement8(
1288
235k
        hSelProcInput, downmixIdIndex, hUniDrcConfig, hLoudnessInfoSet,
1289
235k
        pDrcInstructionUniDrc, pCandidatesPotential, pCandidatesSelected,
1290
235k
        codecMode);
1291
1292
236k
  return retVal;
1293
236k
}
1294
1295
static DRCDEC_SELECTION_PROCESS_RETURN _drcSetSelectionAddCandidates(
1296
    SEL_PROC_INPUT* hSelProcInput, DRCDEC_SELECTION* pCandidatesPotential,
1297
3
    DRCDEC_SELECTION* pCandidatesSelected) {
1298
3
  DRCDEC_SELECTION_PROCESS_RETURN retVal = DRCDEC_SELECTION_PROCESS_NO_ERROR;
1299
3
  int nHitCount = 0;
1300
3
  int i;
1301
1302
3
  DRCDEC_SELECTION_DATA* pCandidate = NULL;
1303
3
  DRC_INSTRUCTIONS_UNI_DRC* pDrcInstructionUniDrc = NULL;
1304
1305
6
  for (i = 0; i < _drcdec_selection_getNumber(pCandidatesPotential); i++) {
1306
3
    pCandidate = _drcdec_selection_getAt(pCandidatesPotential, i);
1307
3
    if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1308
1309
3
    pDrcInstructionUniDrc = pCandidate->pInst;
1310
1311
3
    if (_targetLoudnessInRange(pDrcInstructionUniDrc,
1312
3
                               hSelProcInput->targetLoudness)) {
1313
0
      nHitCount++;
1314
0
    }
1315
3
  }
1316
1317
3
  if (nHitCount != 0) {
1318
0
    for (i = 0; i < _drcdec_selection_getNumber(pCandidatesPotential); i++) {
1319
0
      pCandidate = _drcdec_selection_getAt(pCandidatesPotential, i);
1320
0
      if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1321
1322
0
      pDrcInstructionUniDrc = pCandidate->pInst;
1323
1324
0
      if (_targetLoudnessInRange(pDrcInstructionUniDrc,
1325
0
                                 hSelProcInput->targetLoudness)) {
1326
0
        if (_drcdec_selection_add(pCandidatesSelected, pCandidate) == NULL)
1327
0
          return DRCDEC_SELECTION_PROCESS_NOT_OK;
1328
0
      }
1329
0
    }
1330
3
  } else {
1331
3
    FIXP_DBL lowestPeakLevel = MAXVAL_DBL; /* e = 7 */
1332
3
    FIXP_DBL peakLevel = 0;                /* e = 7 */
1333
1334
6
    for (i = 0; i < _drcdec_selection_getNumber(pCandidatesPotential); i++) {
1335
3
      pCandidate = _drcdec_selection_getAt(pCandidatesPotential, i);
1336
3
      if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1337
1338
3
      peakLevel = pCandidate->outputPeakLevel;
1339
1340
3
      if (peakLevel < lowestPeakLevel) {
1341
3
        lowestPeakLevel = peakLevel;
1342
3
      }
1343
3
    }
1344
1345
    /* add all with lowest peak level or max 1dB above */
1346
6
    for (i = 0; i < _drcdec_selection_getNumber(pCandidatesPotential); i++) {
1347
3
      FIXP_DBL loudnessDeviationMax =
1348
3
          ((FIXP_DBL)hSelProcInput->loudnessDeviationMax)
1349
3
          << (DFRACT_BITS - 1 - 7); /* e = 7 */
1350
1351
3
      pCandidate = _drcdec_selection_getAt(pCandidatesPotential, i);
1352
3
      if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1353
1354
3
      peakLevel = pCandidate->outputPeakLevel;
1355
1356
3
      if (peakLevel == lowestPeakLevel ||
1357
0
          peakLevel <=
1358
3
              lowestPeakLevel + FL2FXCONST_DBL(1.0f / (float)(1 << 7))) {
1359
3
        FIXP_DBL adjustment =
1360
3
            fMax((FIXP_DBL)0, peakLevel - hSelProcInput->outputPeakLevelMax);
1361
3
        adjustment = fMin(adjustment, fMax((FIXP_DBL)0, loudnessDeviationMax));
1362
1363
3
        pCandidate->loudnessNormalizationGainDbAdjusted -= adjustment;
1364
3
        pCandidate->outputPeakLevel -= adjustment;
1365
3
        pCandidate->outputLoudness -= adjustment;
1366
3
        if (_drcdec_selection_add(pCandidatesSelected, pCandidate) == NULL)
1367
0
          return DRCDEC_SELECTION_PROCESS_NOT_OK;
1368
3
      }
1369
3
    }
1370
3
  }
1371
1372
3
  return retVal;
1373
3
}
1374
1375
static DRCDEC_SELECTION_PROCESS_RETURN _dependentDrcInstruction(
1376
    HANDLE_UNI_DRC_CONFIG hUniDrcConfig, DRC_INSTRUCTIONS_UNI_DRC* pInst,
1377
0
    DRC_INSTRUCTIONS_UNI_DRC** ppDrcInstructionsDependent) {
1378
0
  int i;
1379
0
  DRC_INSTRUCTIONS_UNI_DRC* pDependentDrc = NULL;
1380
1381
0
  for (i = 0; i < hUniDrcConfig->drcInstructionsUniDrcCount; i++) {
1382
0
    pDependentDrc =
1383
0
        (DRC_INSTRUCTIONS_UNI_DRC*)&(hUniDrcConfig->drcInstructionsUniDrc[i]);
1384
1385
0
    if (pDependentDrc->drcSetId == pInst->dependsOnDrcSet) {
1386
0
      break;
1387
0
    }
1388
0
  }
1389
1390
0
  if (i == hUniDrcConfig->drcInstructionsUniDrcCount) {
1391
0
    return DRCDEC_SELECTION_PROCESS_NOT_OK;
1392
0
  }
1393
1394
0
  if (pDependentDrc->dependsOnDrcSetPresent == 1) {
1395
0
    return DRCDEC_SELECTION_PROCESS_NOT_OK;
1396
0
  }
1397
1398
0
  *ppDrcInstructionsDependent = pDependentDrc;
1399
1400
0
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
1401
0
}
1402
1403
static DRCDEC_SELECTION_PROCESS_RETURN _selectDrcSetEffectNone(
1404
    HANDLE_UNI_DRC_CONFIG hUniDrcConfig, DRCDEC_SELECTION* pCandidatesPotential,
1405
235k
    DRCDEC_SELECTION* pCandidatesSelected) {
1406
235k
  int i;
1407
1408
470k
  for (i = 0; i < _drcdec_selection_getNumber(pCandidatesPotential); i++) {
1409
235k
    DRCDEC_SELECTION_DATA* pCandidate =
1410
235k
        _drcdec_selection_getAt(pCandidatesPotential, i);
1411
235k
    if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1412
1413
235k
    if ((pCandidate->pInst->drcSetEffect & 0xff) == 0) {
1414
235k
      if (_drcdec_selection_add(pCandidatesSelected, pCandidate) == NULL)
1415
0
        return DRCDEC_SELECTION_PROCESS_NOT_OK;
1416
235k
    }
1417
235k
  }
1418
1419
235k
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
1420
235k
}
1421
1422
static DRCDEC_SELECTION_PROCESS_RETURN _selectSingleEffectType(
1423
    HANDLE_UNI_DRC_CONFIG hUniDrcConfig, DRC_EFFECT_TYPE_REQUEST effectType,
1424
    DRCDEC_SELECTION* pCandidatesPotential,
1425
0
    DRCDEC_SELECTION* pCandidatesSelected) {
1426
0
  int i;
1427
0
  DRCDEC_SELECTION_PROCESS_RETURN retVal = DRCDEC_SELECTION_PROCESS_NO_ERROR;
1428
0
  DRC_INSTRUCTIONS_UNI_DRC* pInst;
1429
0
  DRC_INSTRUCTIONS_UNI_DRC* pDrcInstructionsDependent;
1430
1431
0
  if (effectType == DETR_NONE) {
1432
0
    retVal = _selectDrcSetEffectNone(hUniDrcConfig, pCandidatesPotential,
1433
0
                                     pCandidatesSelected);
1434
0
    if (retVal) return (retVal);
1435
0
  } else {
1436
0
    int effectBitPosition = 1 << (effectType - 1);
1437
1438
0
    for (i = 0; i < _drcdec_selection_getNumber(pCandidatesPotential); i++) {
1439
0
      DRCDEC_SELECTION_DATA* pCandidate =
1440
0
          _drcdec_selection_getAt(pCandidatesPotential, i);
1441
0
      if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1442
1443
0
      pInst = pCandidate->pInst;
1444
1445
0
      if (!pInst->dependsOnDrcSetPresent) {
1446
0
        if ((pInst->drcSetEffect & effectBitPosition)) {
1447
0
          if (_drcdec_selection_add(pCandidatesSelected, pCandidate) == NULL)
1448
0
            return DRCDEC_SELECTION_PROCESS_NOT_OK;
1449
0
        }
1450
0
      } else {
1451
0
        retVal = _dependentDrcInstruction(hUniDrcConfig, pInst,
1452
0
                                          &pDrcInstructionsDependent);
1453
0
        if (retVal) return (retVal);
1454
1455
0
        if (((pInst->drcSetEffect & effectBitPosition)) ||
1456
0
            ((pDrcInstructionsDependent->drcSetEffect & effectBitPosition))) {
1457
0
          if (_drcdec_selection_add(pCandidatesSelected, pCandidate) == NULL)
1458
0
            return DRCDEC_SELECTION_PROCESS_NOT_OK;
1459
0
        }
1460
0
      }
1461
0
    }
1462
0
  }
1463
1464
0
  return retVal;
1465
0
}
1466
1467
static DRCDEC_SELECTION_PROCESS_RETURN _selectEffectTypeFeature(
1468
    HANDLE_UNI_DRC_CONFIG hUniDrcConfig, DRC_FEATURE_REQUEST drcFeatureRequest,
1469
    DRCDEC_SELECTION** ppCandidatesPotential,
1470
0
    DRCDEC_SELECTION** ppCandidatesSelected) {
1471
0
  DRCDEC_SELECTION_PROCESS_RETURN retVal = DRCDEC_SELECTION_PROCESS_NO_ERROR;
1472
0
  int i;
1473
0
  int desiredEffectTypeFound = 0;
1474
1475
0
  for (i = 0; i < drcFeatureRequest.drcEffectType.numRequestsDesired; i++) {
1476
0
    retVal = _selectSingleEffectType(
1477
0
        hUniDrcConfig, drcFeatureRequest.drcEffectType.request[i],
1478
0
        *ppCandidatesPotential, *ppCandidatesSelected);
1479
0
    if (retVal) return (retVal);
1480
1481
0
    if (_drcdec_selection_getNumber(*ppCandidatesSelected)) {
1482
0
      desiredEffectTypeFound = 1;
1483
0
      _swapSelectionAndClear(ppCandidatesPotential, ppCandidatesSelected);
1484
0
    }
1485
0
  }
1486
1487
0
  if (!desiredEffectTypeFound) {
1488
0
    for (i = drcFeatureRequest.drcEffectType.numRequestsDesired;
1489
0
         i < drcFeatureRequest.drcEffectType.numRequests; i++) {
1490
0
      retVal = _selectSingleEffectType(
1491
0
          hUniDrcConfig, drcFeatureRequest.drcEffectType.request[i],
1492
0
          *ppCandidatesPotential, *ppCandidatesSelected);
1493
0
      if (retVal) return (retVal);
1494
1495
0
      if (_drcdec_selection_getNumber(*ppCandidatesSelected)) {
1496
0
        _swapSelectionAndClear(ppCandidatesPotential, ppCandidatesSelected);
1497
0
        break;
1498
0
      }
1499
0
    }
1500
0
  }
1501
1502
0
  _swapSelection(ppCandidatesPotential, ppCandidatesSelected);
1503
1504
0
  return retVal;
1505
0
}
1506
1507
static DRCDEC_SELECTION_PROCESS_RETURN _selectDynamicRange(
1508
    HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
1509
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet,
1510
    DRC_FEATURE_REQUEST drcFeatureRequest, UCHAR* pDownmixIdRequested,
1511
    int albumMode, DRCDEC_SELECTION* pCandidatesPotential,
1512
0
    DRCDEC_SELECTION* ppCandidatesSelected) {
1513
0
  DRCDEC_SELECTION_PROCESS_RETURN retVal = DRCDEC_SELECTION_PROCESS_NO_ERROR;
1514
0
  int i;
1515
0
  int peakToAveragePresent;
1516
0
  FIXP_DBL peakToAverage;
1517
1518
0
  FIXP_DBL minVal = MAXVAL_DBL;
1519
0
  FIXP_DBL val = 0;
1520
1521
0
  int numSelectedCandidates = _drcdec_selection_getNumber(ppCandidatesSelected);
1522
1523
0
  for (i = 0; i < _drcdec_selection_getNumber(pCandidatesPotential); i++) {
1524
0
    DRCDEC_SELECTION_DATA* pCandidate =
1525
0
        _drcdec_selection_getAt(pCandidatesPotential, i);
1526
0
    if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1527
1528
0
    retVal = _dynamicRangeMeasurement(
1529
0
        hLoudnessInfoSet, pCandidate->pInst,
1530
0
        pDownmixIdRequested[pCandidate->downmixIdRequestIndex],
1531
0
        drcFeatureRequest.dynamicRange.measurementRequestType, albumMode,
1532
0
        &peakToAveragePresent, &peakToAverage);
1533
0
    if (retVal) return (retVal);
1534
1535
0
    if (peakToAveragePresent) {
1536
0
      if (!drcFeatureRequest.dynamicRange.requestedIsRange) {
1537
0
        val = fAbs(drcFeatureRequest.dynamicRange.requestValue - peakToAverage);
1538
1539
0
        if (minVal > val) {
1540
0
          minVal = val;
1541
1542
0
          _drcdec_selection_setNumber(ppCandidatesSelected,
1543
0
                                      numSelectedCandidates);
1544
0
        }
1545
0
        if (_drcdec_selection_add(ppCandidatesSelected, pCandidate) == NULL)
1546
0
          return DRCDEC_SELECTION_PROCESS_NOT_OK;
1547
0
      } else {
1548
0
        if ((peakToAverage >= drcFeatureRequest.dynamicRange.requestValueMin) &&
1549
0
            (peakToAverage <= drcFeatureRequest.dynamicRange.requestValueMax)) {
1550
0
          if (_drcdec_selection_add(ppCandidatesSelected, pCandidate) == NULL)
1551
0
            return DRCDEC_SELECTION_PROCESS_NOT_OK;
1552
0
        }
1553
0
      }
1554
0
    }
1555
0
  }
1556
1557
0
  return retVal;
1558
0
}
1559
1560
static DRCDEC_SELECTION_PROCESS_RETURN _selectSingleDrcCharacteristic(
1561
    HANDLE_UNI_DRC_CONFIG hUniDrcConfig, int requestedDrcCharacteristic,
1562
    DRCDEC_SELECTION** ppCandidatesPotential,
1563
0
    DRCDEC_SELECTION** ppCandidatesSelected) {
1564
0
  int i, j, b;
1565
0
  int hit = 0;
1566
1567
0
  DRC_INSTRUCTIONS_UNI_DRC* pInst = NULL;
1568
0
  DRC_COEFFICIENTS_UNI_DRC* pCoef = NULL;
1569
0
  GAIN_SET* pGainSet = NULL;
1570
1571
0
  if (requestedDrcCharacteristic < 1) {
1572
0
    return DRCDEC_SELECTION_PROCESS_NOT_OK;
1573
0
  }
1574
1575
0
  pCoef = selectDrcCoefficients(hUniDrcConfig, LOCATION_SELECTED);
1576
1577
0
  if (pCoef == NULL) /* check for parametricDRC */
1578
0
  {
1579
0
    return DRCDEC_SELECTION_PROCESS_NO_ERROR;
1580
0
  }
1581
1582
0
  for (i = 0; i < _drcdec_selection_getNumber(*ppCandidatesPotential); i++) {
1583
0
    DRCDEC_SELECTION_DATA* pCandidate =
1584
0
        _drcdec_selection_getAt(*ppCandidatesPotential, i);
1585
0
    if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1586
1587
0
    pInst = pCandidate->pInst;
1588
1589
0
    hit = 0;
1590
1591
0
    for (j = 0; j < pInst->nDrcChannelGroups; j++) {
1592
0
      int bandCount = 0;
1593
0
      int indexDrcCoeff = pInst->gainSetIndexForChannelGroup[j];
1594
1595
0
      if (indexDrcCoeff > pCoef->gainSetCount - 1) /* check for parametricDRC */
1596
0
      {
1597
0
        return DRCDEC_SELECTION_PROCESS_NO_ERROR;
1598
0
      }
1599
1600
0
      pGainSet = &(pCoef->gainSet[indexDrcCoeff]);
1601
0
      bandCount = pGainSet->bandCount;
1602
1603
0
      for (b = 0; b < bandCount; b++) {
1604
0
        if ((pGainSet->drcCharacteristic[b].isCICP) &&
1605
0
            (pGainSet->drcCharacteristic[b].cicpIndex ==
1606
0
             requestedDrcCharacteristic)) {
1607
0
          hit = 1;
1608
0
          break;
1609
0
        }
1610
0
      }
1611
1612
0
      if (hit) break;
1613
0
    }
1614
1615
0
    if (hit) {
1616
0
      if (_drcdec_selection_add(*ppCandidatesSelected, pCandidate) == NULL)
1617
0
        return DRCDEC_SELECTION_PROCESS_NOT_OK;
1618
0
    }
1619
0
  }
1620
1621
0
  if (_drcdec_selection_getNumber(*ppCandidatesSelected)) {
1622
0
    _swapSelectionAndClear(ppCandidatesPotential, ppCandidatesSelected);
1623
0
  }
1624
1625
0
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
1626
0
}
1627
1628
static DRCDEC_SELECTION_PROCESS_RETURN _selectDrcCharacteristic(
1629
    HANDLE_UNI_DRC_CONFIG hUniDrcConfig, int drcCharacteristicRequested,
1630
    DRCDEC_SELECTION** ppCandidatesPotential,
1631
0
    DRCDEC_SELECTION** ppCandidatesSelected) {
1632
0
  DRCDEC_SELECTION_PROCESS_RETURN retVal = DRCDEC_SELECTION_PROCESS_NO_ERROR;
1633
1634
0
  const int secondTry[12] = {0, 2, 3, 4, 5, 6, 5, 9, 10, 7, 8, 10};
1635
1636
0
  retVal = _selectSingleDrcCharacteristic(
1637
0
      hUniDrcConfig, drcCharacteristicRequested, ppCandidatesPotential,
1638
0
      ppCandidatesSelected);
1639
0
  if (retVal) return (retVal);
1640
1641
0
  if ((drcCharacteristicRequested <= 11) &&
1642
0
      (_drcdec_selection_getNumber(*ppCandidatesSelected) == 0)) {
1643
0
    retVal = _selectSingleDrcCharacteristic(
1644
0
        hUniDrcConfig, secondTry[drcCharacteristicRequested],
1645
0
        ppCandidatesPotential, ppCandidatesSelected);
1646
0
    if (retVal) return (retVal);
1647
0
  }
1648
1649
0
  if (_drcdec_selection_getNumber(*ppCandidatesSelected) == 0) {
1650
0
    if ((drcCharacteristicRequested >= 2) &&
1651
0
        (drcCharacteristicRequested <= 5)) {
1652
0
      retVal = _selectSingleDrcCharacteristic(
1653
0
          hUniDrcConfig, drcCharacteristicRequested - 1, ppCandidatesPotential,
1654
0
          ppCandidatesSelected);
1655
0
      if (retVal) return (retVal);
1656
0
    } else if (drcCharacteristicRequested == 11) {
1657
0
      retVal = _selectSingleDrcCharacteristic(
1658
0
          hUniDrcConfig, 9, ppCandidatesPotential, ppCandidatesSelected);
1659
0
      if (retVal) return (retVal);
1660
0
    }
1661
0
  }
1662
1663
0
  _swapSelection(ppCandidatesPotential, ppCandidatesSelected);
1664
1665
0
  return retVal;
1666
0
}
1667
1668
static DRCDEC_SELECTION_PROCESS_RETURN _drcSetFinalSelection_peakValue0(
1669
    DRCDEC_SELECTION* pCandidatesPotential,
1670
49
    DRCDEC_SELECTION* pCandidatesSelected) {
1671
49
  int i;
1672
1673
305
  for (i = 0; i < _drcdec_selection_getNumber(pCandidatesPotential); i++) {
1674
256
    DRCDEC_SELECTION_DATA* pCandidate =
1675
256
        _drcdec_selection_getAt(pCandidatesPotential, i);
1676
256
    if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1677
1678
256
    if (pCandidate->outputPeakLevel <= FIXP_DBL(0)) {
1679
256
      if (_drcdec_selection_add(pCandidatesSelected, pCandidate) == NULL)
1680
0
        return DRCDEC_SELECTION_PROCESS_NOT_OK;
1681
256
    }
1682
256
  }
1683
1684
49
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
1685
49
}
1686
1687
static DRCDEC_SELECTION_PROCESS_RETURN _drcSetFinalSelection_downmixId(
1688
    HANDLE_SEL_PROC_INPUT hSelProcInput,
1689
    DRCDEC_SELECTION** ppCandidatesPotential,
1690
49
    DRCDEC_SELECTION** ppCandidatesSelected) {
1691
49
  int i, j;
1692
49
  DRCDEC_SELECTION_DATA* pCandidate = NULL;
1693
49
  DRC_INSTRUCTIONS_UNI_DRC* pInst = NULL;
1694
1695
305
  for (i = 0; i < _drcdec_selection_getNumber(*ppCandidatesPotential); i++) {
1696
256
    pCandidate = _drcdec_selection_getAt(*ppCandidatesPotential, i);
1697
256
    if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1698
1699
256
    pInst = pCandidate->pInst;
1700
1701
542
    for (j = 0; j < pInst->downmixIdCount; j++) {
1702
286
      if (DOWNMIX_ID_BASE_LAYOUT != pInst->downmixId[j] &&
1703
37
          DOWNMIX_ID_ANY_DOWNMIX != pInst->downmixId[j] &&
1704
19
          hSelProcInput
1705
19
                  ->downmixIdRequested[pCandidate->downmixIdRequestIndex] ==
1706
19
              pInst->downmixId[j]) {
1707
0
        if (_drcdec_selection_add(*ppCandidatesSelected, pCandidate) == NULL)
1708
0
          return DRCDEC_SELECTION_PROCESS_NOT_OK;
1709
0
      }
1710
286
    }
1711
256
  }
1712
1713
49
  if (_drcdec_selection_getNumber(*ppCandidatesSelected) == 0) {
1714
49
    _swapSelection(ppCandidatesPotential, ppCandidatesSelected);
1715
49
  }
1716
1717
49
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
1718
49
}
1719
1720
512
static int _crossSum(int value) {
1721
512
  int sum = 0;
1722
1723
668
  while (value != 0) {
1724
156
    if ((value & 1) == 1) {
1725
30
      sum++;
1726
30
    }
1727
1728
156
    value >>= 1;
1729
156
  }
1730
1731
512
  return sum;
1732
512
}
1733
1734
static DRCDEC_SELECTION_PROCESS_RETURN _drcSetFinalSelection_effectTypes(
1735
    DRCDEC_SELECTION* pCandidatesPotential,
1736
49
    DRCDEC_SELECTION* pCandidatesSelected) {
1737
49
  int i;
1738
49
  int minNumEffects = 1000;
1739
49
  int numEffects = 0;
1740
49
  int effects = 0;
1741
49
  DRCDEC_SELECTION_DATA* pCandidate = NULL;
1742
49
  DRC_INSTRUCTIONS_UNI_DRC* pInst = NULL;
1743
1744
305
  for (i = 0; i < _drcdec_selection_getNumber(pCandidatesPotential); i++) {
1745
256
    pCandidate = _drcdec_selection_getAt(pCandidatesPotential, i);
1746
256
    if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1747
1748
256
    pInst = pCandidate->pInst;
1749
1750
256
    effects = pInst->drcSetEffect;
1751
256
    effects &= 0xffff ^ (EB_GENERAL_COMPR);
1752
256
    numEffects = _crossSum(effects);
1753
1754
256
    if (numEffects < minNumEffects) {
1755
54
      minNumEffects = numEffects;
1756
54
    }
1757
256
  }
1758
1759
  /* add all with minimum number of effects */
1760
305
  for (i = 0; i < _drcdec_selection_getNumber(pCandidatesPotential); i++) {
1761
256
    pCandidate = _drcdec_selection_getAt(pCandidatesPotential, i);
1762
256
    if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1763
1764
256
    pInst = pCandidate->pInst;
1765
1766
256
    effects = pInst->drcSetEffect;
1767
256
    effects &= 0xffff ^ (EB_GENERAL_COMPR);
1768
256
    numEffects = _crossSum(effects);
1769
1770
256
    if (numEffects == minNumEffects) {
1771
251
      if (_drcdec_selection_add(pCandidatesSelected, pCandidate) == NULL)
1772
0
        return DRCDEC_SELECTION_PROCESS_NOT_OK;
1773
251
    }
1774
256
  }
1775
1776
49
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
1777
49
}
1778
1779
static DRCDEC_SELECTION_PROCESS_RETURN _selectSmallestTargetLoudnessValueUpper(
1780
    DRCDEC_SELECTION* pCandidatesPotential,
1781
0
    DRCDEC_SELECTION* pCandidatesSelected) {
1782
0
  int i;
1783
0
  SCHAR minVal = 0x7F;
1784
0
  SCHAR val = 0;
1785
0
  DRCDEC_SELECTION_DATA* pCandidate = NULL;
1786
1787
0
  for (i = 0; i < _drcdec_selection_getNumber(pCandidatesPotential); i++) {
1788
0
    pCandidate = _drcdec_selection_getAt(pCandidatesPotential, i);
1789
0
    if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1790
1791
0
    val = pCandidate->pInst->drcSetTargetLoudnessValueUpper;
1792
1793
0
    if (val < minVal) {
1794
0
      minVal = val;
1795
0
    }
1796
0
  }
1797
1798
  /* add all with same smallest drcSetTargetLoudnessValueUpper */
1799
0
  for (i = 0; i < _drcdec_selection_getNumber(pCandidatesPotential); i++) {
1800
0
    pCandidate = _drcdec_selection_getAt(pCandidatesPotential, i);
1801
0
    if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1802
1803
0
    val = pCandidate->pInst->drcSetTargetLoudnessValueUpper;
1804
1805
0
    if (val == minVal) {
1806
0
      if (_drcdec_selection_add(pCandidatesSelected, pCandidate) == NULL)
1807
0
        return DRCDEC_SELECTION_PROCESS_NOT_OK;
1808
0
    }
1809
0
  }
1810
1811
0
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
1812
0
}
1813
1814
static DRCDEC_SELECTION_PROCESS_RETURN _drcSetFinalSelection_targetLoudness(
1815
    FIXP_DBL targetLoudness, DRCDEC_SELECTION* pCandidatesPotential,
1816
44
    DRCDEC_SELECTION* pCandidatesSelected) {
1817
44
  DRCDEC_SELECTION_PROCESS_RETURN retVal = DRCDEC_SELECTION_PROCESS_NO_ERROR;
1818
44
  int i;
1819
44
  DRCDEC_SELECTION_DATA* pCandidate = NULL;
1820
1821
290
  for (i = 0; i < _drcdec_selection_getNumber(pCandidatesPotential); i++) {
1822
246
    pCandidate = _drcdec_selection_getAt(pCandidatesPotential, i);
1823
246
    if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1824
1825
246
    if (pCandidate->selectionFlag == 0) {
1826
246
      if (_drcdec_selection_add(pCandidatesSelected, pCandidate) == NULL)
1827
0
        return DRCDEC_SELECTION_PROCESS_NOT_OK;
1828
246
    }
1829
246
  }
1830
1831
44
  if (_drcdec_selection_getNumber(pCandidatesSelected) == 0) {
1832
0
    retVal = _selectSmallestTargetLoudnessValueUpper(pCandidatesPotential,
1833
0
                                                     pCandidatesSelected);
1834
0
    if (retVal) return (retVal);
1835
0
  }
1836
1837
44
  if (_drcdec_selection_getNumber(pCandidatesSelected) > 1) {
1838
44
    DRC_INSTRUCTIONS_UNI_DRC* pDrcInstructionUniDrc = NULL;
1839
1840
44
    _swapSelectionAndClear(&pCandidatesPotential, &pCandidatesSelected);
1841
1842
290
    for (i = 0; i < _drcdec_selection_getNumber(pCandidatesPotential); i++) {
1843
246
      pCandidate = _drcdec_selection_getAt(pCandidatesPotential, i);
1844
246
      if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1845
1846
246
      pDrcInstructionUniDrc = pCandidate->pInst;
1847
1848
246
      if (_targetLoudnessInRange(pDrcInstructionUniDrc, targetLoudness)) {
1849
0
        if (_drcdec_selection_add(pCandidatesSelected, pCandidate) == NULL)
1850
0
          return DRCDEC_SELECTION_PROCESS_NOT_OK;
1851
0
      }
1852
246
    }
1853
1854
44
    if (_drcdec_selection_getNumber(pCandidatesSelected) > 1) {
1855
0
      _swapSelectionAndClear(&pCandidatesPotential, &pCandidatesSelected);
1856
1857
0
      retVal = _selectSmallestTargetLoudnessValueUpper(pCandidatesPotential,
1858
0
                                                       pCandidatesSelected);
1859
0
      if (retVal) return (retVal);
1860
0
    }
1861
44
  }
1862
1863
44
  return retVal;
1864
44
}
1865
1866
static DRCDEC_SELECTION_PROCESS_RETURN _drcSetFinalSelection_peakValueLargest(
1867
    DRCDEC_SELECTION* pCandidatesPotential,
1868
44
    DRCDEC_SELECTION* pCandidatesSelected) {
1869
44
  int i;
1870
44
  FIXP_DBL largestPeakLevel = MINVAL_DBL;
1871
44
  FIXP_DBL peakLevel = 0;
1872
44
  DRCDEC_SELECTION_DATA* pCandidate = NULL;
1873
1874
290
  for (i = 0; i < _drcdec_selection_getNumber(pCandidatesPotential); i++) {
1875
246
    pCandidate = _drcdec_selection_getAt(pCandidatesPotential, i);
1876
246
    if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1877
1878
246
    peakLevel = pCandidate->outputPeakLevel;
1879
1880
246
    if (peakLevel > largestPeakLevel) {
1881
44
      largestPeakLevel = peakLevel;
1882
44
    }
1883
246
  }
1884
1885
  /* add all with same largest peak level */
1886
290
  for (i = 0; i < _drcdec_selection_getNumber(pCandidatesPotential); i++) {
1887
246
    pCandidate = _drcdec_selection_getAt(pCandidatesPotential, i);
1888
246
    if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1889
1890
246
    peakLevel = pCandidate->outputPeakLevel;
1891
1892
246
    if (peakLevel == largestPeakLevel) {
1893
246
      if (_drcdec_selection_add(pCandidatesSelected, pCandidate) == NULL)
1894
0
        return DRCDEC_SELECTION_PROCESS_NOT_OK;
1895
246
    }
1896
246
  }
1897
1898
44
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
1899
44
}
1900
1901
static DRCDEC_SELECTION_PROCESS_RETURN _drcSetFinalSelection_drcSetId(
1902
    DRCDEC_SELECTION* pCandidatesPotential,
1903
44
    DRCDEC_SELECTION* pCandidatesSelected) {
1904
44
  int i;
1905
44
  int largestId = -1000;
1906
44
  int id = 0;
1907
44
  DRCDEC_SELECTION_DATA* pCandidate = NULL;
1908
44
  DRCDEC_SELECTION_DATA* pCandidateSelected = NULL;
1909
1910
290
  for (i = 0; i < _drcdec_selection_getNumber(pCandidatesPotential); i++) {
1911
246
    pCandidate = _drcdec_selection_getAt(pCandidatesPotential, i);
1912
246
    if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
1913
1914
246
    id = pCandidate->pInst->drcSetId;
1915
1916
246
    if (id > largestId) {
1917
44
      largestId = id;
1918
44
      pCandidateSelected = pCandidate;
1919
44
    }
1920
246
  }
1921
1922
44
  if (pCandidateSelected != NULL) {
1923
44
    if (_drcdec_selection_add(pCandidatesSelected, pCandidateSelected) == NULL)
1924
0
      return DRCDEC_SELECTION_PROCESS_NOT_OK;
1925
44
  } else {
1926
0
    return DRCDEC_SELECTION_PROCESS_NOT_OK;
1927
0
  }
1928
1929
44
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
1930
44
}
1931
1932
static DRCDEC_SELECTION_PROCESS_RETURN _drcSetFinalSelection(
1933
    HANDLE_SEL_PROC_INPUT hSelProcInput, HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
1934
    DRCDEC_SELECTION** ppCandidatesPotential,
1935
235k
    DRCDEC_SELECTION** ppCandidatesSelected, SEL_PROC_CODEC_MODE codecMode) {
1936
235k
  DRCDEC_SELECTION_PROCESS_RETURN retVal = DRCDEC_SELECTION_PROCESS_NO_ERROR;
1937
1938
235k
  if (_drcdec_selection_getNumber(*ppCandidatesPotential) == 0) {
1939
0
    return DRCDEC_SELECTION_PROCESS_NOT_OK;
1940
235k
  } else if (_drcdec_selection_getNumber(*ppCandidatesPotential) == 1) {
1941
235k
    _swapSelection(ppCandidatesPotential, ppCandidatesSelected);
1942
    /* finished */
1943
235k
  } else /* > 1 */
1944
49
  {
1945
49
    retVal = _drcSetFinalSelection_peakValue0(*ppCandidatesPotential,
1946
49
                                              *ppCandidatesSelected);
1947
49
    if (retVal) return (retVal);
1948
1949
49
    if (_drcdec_selection_getNumber(*ppCandidatesSelected) > 1) {
1950
49
      _swapSelectionAndClear(ppCandidatesPotential, ppCandidatesSelected);
1951
49
      retVal = _drcSetFinalSelection_downmixId(
1952
49
          hSelProcInput, ppCandidatesPotential, ppCandidatesSelected);
1953
49
      if (retVal) return (retVal);
1954
49
    }
1955
1956
49
    if (_drcdec_selection_getNumber(*ppCandidatesSelected) > 1) {
1957
49
      _swapSelectionAndClear(ppCandidatesPotential, ppCandidatesSelected);
1958
49
      retVal = _drcSetFinalSelection_effectTypes(*ppCandidatesPotential,
1959
49
                                                 *ppCandidatesSelected);
1960
49
      if (retVal) return (retVal);
1961
49
    }
1962
1963
49
    if (_drcdec_selection_getNumber(*ppCandidatesSelected) > 1) {
1964
44
      _swapSelectionAndClear(ppCandidatesPotential, ppCandidatesSelected);
1965
44
      retVal = _drcSetFinalSelection_targetLoudness(
1966
44
          hSelProcInput->targetLoudness, *ppCandidatesPotential,
1967
44
          *ppCandidatesSelected);
1968
44
      if (retVal) return (retVal);
1969
44
    }
1970
1971
49
    if (_drcdec_selection_getNumber(*ppCandidatesSelected) > 1) {
1972
44
      _swapSelectionAndClear(ppCandidatesPotential, ppCandidatesSelected);
1973
44
      retVal = _drcSetFinalSelection_peakValueLargest(*ppCandidatesPotential,
1974
44
                                                      *ppCandidatesSelected);
1975
44
      if (retVal) return (retVal);
1976
44
    }
1977
1978
49
    if (_drcdec_selection_getNumber(*ppCandidatesSelected) > 1) {
1979
44
      _swapSelectionAndClear(ppCandidatesPotential, ppCandidatesSelected);
1980
44
      retVal = _drcSetFinalSelection_drcSetId(*ppCandidatesPotential,
1981
44
                                              *ppCandidatesSelected);
1982
44
      if (retVal) return (retVal);
1983
44
    }
1984
49
  }
1985
1986
235k
  if (_drcdec_selection_getNumber(*ppCandidatesSelected) == 0) {
1987
0
    return DRCDEC_SELECTION_PROCESS_NOT_OK;
1988
0
  }
1989
1990
235k
  return retVal;
1991
235k
}
1992
1993
static DRCDEC_SELECTION_PROCESS_RETURN _generateVirtualDrcSets(
1994
    HANDLE_SEL_PROC_INPUT hSelProcInput, HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
1995
235k
    SEL_PROC_CODEC_MODE codecMode) {
1996
235k
  int i;
1997
235k
  int nMixes = hUniDrcConfig->downmixInstructionsCount + 1;
1998
235k
  int index = hUniDrcConfig->drcInstructionsUniDrcCount;
1999
235k
  int indexVirtual = -1;
2000
235k
  DRC_INSTRUCTIONS_UNI_DRC* pDrcInstruction =
2001
235k
      &(hUniDrcConfig->drcInstructionsUniDrc[index]);
2002
2003
235k
  if (codecMode == SEL_PROC_MPEG_H_3DA) {
2004
0
    nMixes = 1;
2005
0
  }
2006
2007
235k
  if ((index + nMixes) > (12 + 1 + 6)) {
2008
0
    return DRCDEC_SELECTION_PROCESS_NOT_OK;
2009
0
  }
2010
2011
235k
  FDKmemset(pDrcInstruction, 0, sizeof(DRC_INSTRUCTIONS_UNI_DRC));
2012
2013
235k
  pDrcInstruction->drcSetId = indexVirtual;
2014
235k
  index++;
2015
235k
  indexVirtual--;
2016
235k
  pDrcInstruction->downmixIdCount = 1;
2017
2018
235k
  if ((codecMode == SEL_PROC_MPEG_H_3DA) &&
2019
0
      (hSelProcInput->numDownmixIdRequests)) {
2020
0
    pDrcInstruction->downmixId[0] = hSelProcInput->downmixIdRequested[0];
2021
235k
  } else {
2022
235k
    pDrcInstruction->downmixId[0] = DOWNMIX_ID_BASE_LAYOUT;
2023
235k
  }
2024
2025
235k
  for (i = 1; i < nMixes; i++) {
2026
256
    pDrcInstruction = &(hUniDrcConfig->drcInstructionsUniDrc[index]);
2027
256
    FDKmemset(pDrcInstruction, 0, sizeof(DRC_INSTRUCTIONS_UNI_DRC));
2028
256
    pDrcInstruction->drcSetId = indexVirtual;
2029
256
    pDrcInstruction->downmixId[0] =
2030
256
        hUniDrcConfig->downmixInstructions[i - 1].downmixId;
2031
256
    pDrcInstruction->downmixIdCount = 1;
2032
256
    index++;
2033
256
    indexVirtual--;
2034
256
  }
2035
2036
235k
  hUniDrcConfig->drcInstructionsCountInclVirtual =
2037
235k
      hUniDrcConfig->drcInstructionsUniDrcCount + nMixes;
2038
2039
235k
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
2040
235k
}
2041
2042
static DRCDEC_SELECTION_PROCESS_RETURN _generateOutputInfo(
2043
    HANDLE_SEL_PROC_INPUT hSelProcInput, HANDLE_SEL_PROC_OUTPUT hSelProcOutput,
2044
    HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
2045
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet,
2046
235k
    DRCDEC_SELECTION_DATA* pSelectionData, SEL_PROC_CODEC_MODE codecMode) {
2047
235k
  DRCDEC_SELECTION_PROCESS_RETURN retVal = DRCDEC_SELECTION_PROCESS_NO_ERROR;
2048
2049
235k
  int i, j;
2050
235k
  int hasDependend = 0;
2051
235k
  int hasFading = 0;
2052
235k
  int hasDucking = 0;
2053
235k
  int selectedDrcSetIds;
2054
235k
  int selectedDownmixIds;
2055
235k
  FIXP_DBL mixingLevel = 0;
2056
235k
  int albumMode = hSelProcInput->albumMode;
2057
235k
  UCHAR* pDownmixIdRequested = hSelProcInput->downmixIdRequested;
2058
235k
  FIXP_SGL boost = hSelProcInput->boost;
2059
235k
  FIXP_SGL compress = hSelProcInput->compress;
2060
2061
235k
  hSelProcOutput->numSelectedDrcSets = 1;
2062
235k
  hSelProcOutput->selectedDrcSetIds[0] = pSelectionData->pInst->drcSetId;
2063
235k
  hSelProcOutput->selectedDownmixIds[0] =
2064
235k
      pSelectionData->pInst->drcApplyToDownmix == 1
2065
235k
          ? pSelectionData->pInst->downmixId[0]
2066
235k
          : 0;
2067
235k
  hSelProcOutput->loudnessNormalizationGainDb =
2068
235k
      pSelectionData->loudnessNormalizationGainDbAdjusted +
2069
235k
      hSelProcInput->loudnessNormalizationGainModificationDb;
2070
235k
  hSelProcOutput->outputPeakLevelDb = pSelectionData->outputPeakLevel;
2071
235k
  hSelProcOutput->outputLoudness = pSelectionData->outputLoudness;
2072
2073
235k
  hSelProcOutput->boost = boost;
2074
235k
  hSelProcOutput->compress = compress;
2075
235k
  hSelProcOutput->baseChannelCount =
2076
235k
      hUniDrcConfig->channelLayout.baseChannelCount;
2077
235k
  hSelProcOutput->targetChannelCount =
2078
235k
      hUniDrcConfig->channelLayout.baseChannelCount;
2079
235k
  hSelProcOutput->activeDownmixId =
2080
235k
      pDownmixIdRequested[pSelectionData->downmixIdRequestIndex];
2081
2082
235k
  _getMixingLevel(hLoudnessInfoSet, *pDownmixIdRequested,
2083
235k
                  hSelProcOutput->selectedDrcSetIds[0], albumMode,
2084
235k
                  &mixingLevel);
2085
235k
  hSelProcOutput->mixingLevel = mixingLevel;
2086
2087
  /*dependent*/
2088
235k
  if (pSelectionData->pInst->dependsOnDrcSetPresent) {
2089
0
    int dependsOnDrcSetID = pSelectionData->pInst->dependsOnDrcSet;
2090
2091
0
    for (i = 0; i < hUniDrcConfig->drcInstructionsCountInclVirtual; i++) {
2092
0
      DRC_INSTRUCTIONS_UNI_DRC* pInst =
2093
0
          &(hUniDrcConfig->drcInstructionsUniDrc[i]);
2094
0
      if (!_drcSetIsUsable(hUniDrcConfig, pInst)) continue;
2095
2096
0
      if (pInst->drcSetId == dependsOnDrcSetID) {
2097
0
        hSelProcOutput->selectedDrcSetIds[hSelProcOutput->numSelectedDrcSets] =
2098
0
            hUniDrcConfig->drcInstructionsUniDrc[i].drcSetId;
2099
0
        hSelProcOutput->selectedDownmixIds[hSelProcOutput->numSelectedDrcSets] =
2100
0
            hUniDrcConfig->drcInstructionsUniDrc[i].drcApplyToDownmix == 1
2101
0
                ? hUniDrcConfig->drcInstructionsUniDrc[i].downmixId[0]
2102
0
                : 0;
2103
0
        hSelProcOutput->numSelectedDrcSets++;
2104
0
        hasDependend = 1;
2105
0
        break;
2106
0
      }
2107
0
    }
2108
0
  }
2109
2110
  /* fading */
2111
235k
  if (hSelProcInput->albumMode == 0) {
2112
236k
    for (i = 0; i < hUniDrcConfig->drcInstructionsUniDrcCount; i++) {
2113
1.04k
      DRC_INSTRUCTIONS_UNI_DRC* pInst =
2114
1.04k
          &(hUniDrcConfig->drcInstructionsUniDrc[i]);
2115
1.04k
      if (!_drcSetIsUsable(hUniDrcConfig, pInst)) continue;
2116
2117
57
      if (pInst->drcSetEffect & EB_FADE) {
2118
13
        if (pInst->downmixId[0] == DOWNMIX_ID_ANY_DOWNMIX) {
2119
0
          hSelProcOutput->numSelectedDrcSets = hasDependend + 1;
2120
0
          hSelProcOutput
2121
0
              ->selectedDrcSetIds[hSelProcOutput->numSelectedDrcSets] =
2122
0
              hUniDrcConfig->drcInstructionsUniDrc[i].drcSetId;
2123
0
          hSelProcOutput
2124
0
              ->selectedDownmixIds[hSelProcOutput->numSelectedDrcSets] =
2125
0
              hUniDrcConfig->drcInstructionsUniDrc[i].drcApplyToDownmix == 1
2126
0
                  ? hUniDrcConfig->drcInstructionsUniDrc[i].downmixId[0]
2127
0
                  : 0;
2128
0
          hSelProcOutput->numSelectedDrcSets++;
2129
0
          hasFading = 1;
2130
2131
13
        } else {
2132
13
          retVal = DRCDEC_SELECTION_PROCESS_NOT_OK;
2133
13
          if (retVal) return DRCDEC_SELECTION_PROCESS_NOT_OK;
2134
13
        }
2135
13
      }
2136
57
    }
2137
235k
  }
2138
2139
  /* ducking */
2140
236k
  for (i = 0; i < hUniDrcConfig->drcInstructionsUniDrcCount; i++) {
2141
1.00k
    DRC_INSTRUCTIONS_UNI_DRC* pInst =
2142
1.00k
        &(hUniDrcConfig->drcInstructionsUniDrc[i]);
2143
1.00k
    if (!_drcSetIsUsable(hUniDrcConfig, pInst)) continue;
2144
2145
43
    if (pInst->drcSetEffect & (EB_DUCK_OTHER | EB_DUCK_SELF)) {
2146
84
      for (j = 0; j < pInst->downmixIdCount; j++) {
2147
63
        if (pInst->downmixId[j] == hSelProcOutput->activeDownmixId) {
2148
22
          hSelProcOutput->numSelectedDrcSets =
2149
22
              hasDependend + 1; /* ducking overrides fading */
2150
2151
22
          hSelProcOutput
2152
22
              ->selectedDrcSetIds[hSelProcOutput->numSelectedDrcSets] =
2153
22
              hUniDrcConfig->drcInstructionsUniDrc[i].drcSetId;
2154
          /* force ducking DRC set to be processed on base layout */
2155
22
          hSelProcOutput
2156
22
              ->selectedDownmixIds[hSelProcOutput->numSelectedDrcSets] = 0;
2157
22
          hSelProcOutput->numSelectedDrcSets++;
2158
22
          hasDucking = 1;
2159
22
        }
2160
63
      }
2161
21
    }
2162
43
  }
2163
2164
  /* repeat for DOWNMIX_ID_BASE_LAYOUT if no ducking found*/
2165
2166
235k
  if (!hasDucking) {
2167
236k
    for (i = 0; i < hUniDrcConfig->drcInstructionsUniDrcCount; i++) {
2168
938
      DRC_INSTRUCTIONS_UNI_DRC* pInst =
2169
938
          &(hUniDrcConfig->drcInstructionsUniDrc[i]);
2170
938
      if (!_drcSetIsUsable(hUniDrcConfig, pInst)) continue;
2171
2172
26
      if (pInst->drcSetEffect & (EB_DUCK_OTHER | EB_DUCK_SELF)) {
2173
23
        for (j = 0; j < pInst->downmixIdCount; j++) {
2174
17
          if (pInst->downmixId[j] == DOWNMIX_ID_BASE_LAYOUT) {
2175
0
            hSelProcOutput->numSelectedDrcSets = hasDependend + hasFading + 1;
2176
0
            hSelProcOutput
2177
0
                ->selectedDrcSetIds[hSelProcOutput->numSelectedDrcSets] =
2178
0
                hUniDrcConfig->drcInstructionsUniDrc[i].drcSetId;
2179
            /* force ducking DRC set to be processed on base layout */
2180
0
            hSelProcOutput
2181
0
                ->selectedDownmixIds[hSelProcOutput->numSelectedDrcSets] = 0;
2182
0
            hSelProcOutput->numSelectedDrcSets++;
2183
0
          }
2184
17
        }
2185
6
      }
2186
26
    }
2187
235k
  }
2188
2189
235k
  if (hSelProcOutput->numSelectedDrcSets > 3) {
2190
    /* maximum permitted number of applied DRC sets is 3, see section 6.3.5 of
2191
     * ISO/IEC 23003-4 */
2192
0
    hSelProcOutput->numSelectedDrcSets = 0;
2193
0
    return DRCDEC_SELECTION_PROCESS_NOT_OK;
2194
0
  }
2195
2196
  /* sorting: Ducking/Fading -> Dependent -> Selected */
2197
235k
  if (hSelProcOutput->numSelectedDrcSets == 3) {
2198
0
    selectedDrcSetIds = hSelProcOutput->selectedDrcSetIds[0];
2199
0
    selectedDownmixIds = hSelProcOutput->selectedDownmixIds[0];
2200
0
    hSelProcOutput->selectedDrcSetIds[0] = hSelProcOutput->selectedDrcSetIds[2];
2201
0
    hSelProcOutput->selectedDownmixIds[0] =
2202
0
        hSelProcOutput->selectedDownmixIds[2];
2203
0
    hSelProcOutput->selectedDrcSetIds[2] = selectedDrcSetIds;
2204
0
    hSelProcOutput->selectedDownmixIds[2] = selectedDownmixIds;
2205
235k
  } else if (hSelProcOutput->numSelectedDrcSets == 2) {
2206
13
    selectedDrcSetIds = hSelProcOutput->selectedDrcSetIds[0];
2207
13
    selectedDownmixIds = hSelProcOutput->selectedDownmixIds[0];
2208
13
    hSelProcOutput->selectedDrcSetIds[0] = hSelProcOutput->selectedDrcSetIds[1];
2209
13
    hSelProcOutput->selectedDownmixIds[0] =
2210
13
        hSelProcOutput->selectedDownmixIds[1];
2211
13
    hSelProcOutput->selectedDrcSetIds[1] = selectedDrcSetIds;
2212
13
    hSelProcOutput->selectedDownmixIds[1] = selectedDownmixIds;
2213
13
  }
2214
2215
235k
  return retVal;
2216
235k
}
2217
2218
static DRCDEC_SELECTION_PROCESS_RETURN _selectDownmixMatrix(
2219
    HANDLE_SEL_PROC_OUTPUT hSelProcOutput,
2220
235k
    HANDLE_UNI_DRC_CONFIG hUniDrcConfig) {
2221
235k
  int i;
2222
235k
  hSelProcOutput->baseChannelCount =
2223
235k
      hUniDrcConfig->channelLayout.baseChannelCount;
2224
235k
  hSelProcOutput->targetChannelCount =
2225
235k
      hUniDrcConfig->channelLayout.baseChannelCount;
2226
235k
  hSelProcOutput->targetLayout = -1;
2227
235k
  hSelProcOutput->downmixMatrixPresent = 0;
2228
2229
235k
  if (hSelProcOutput->activeDownmixId != 0) {
2230
0
    for (i = 0; i < hUniDrcConfig->downmixInstructionsCount; i++) {
2231
0
      DOWNMIX_INSTRUCTIONS* pDown = &(hUniDrcConfig->downmixInstructions[i]);
2232
0
      if (pDown->targetChannelCount > 8) {
2233
0
        continue;
2234
0
      }
2235
2236
0
      if (hSelProcOutput->activeDownmixId == pDown->downmixId) {
2237
0
        hSelProcOutput->targetChannelCount = pDown->targetChannelCount;
2238
0
        hSelProcOutput->targetLayout = pDown->targetLayout;
2239
2240
0
        if (pDown->downmixCoefficientsPresent) {
2241
0
          int j, k;
2242
0
          FIXP_DBL downmixOffset = getDownmixOffset(
2243
0
              pDown, hSelProcOutput->baseChannelCount); /* e = 1 */
2244
2245
0
          for (j = 0; j < hSelProcOutput->baseChannelCount; j++) {
2246
0
            for (k = 0; k < hSelProcOutput->targetChannelCount; k++) {
2247
0
              hSelProcOutput->downmixMatrix[j][k] =
2248
0
                  fMultDiv2(
2249
0
                      downmixOffset,
2250
0
                      pDown->downmixCoefficient[j + k * hSelProcOutput
2251
0
                                                            ->baseChannelCount])
2252
0
                  << 2;
2253
0
            }
2254
0
          }
2255
2256
0
          hSelProcOutput->downmixMatrixPresent = 1;
2257
0
        }
2258
0
        break;
2259
0
      }
2260
0
    }
2261
0
  }
2262
2263
235k
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
2264
235k
}
2265
2266
static DRCDEC_SELECTION_PROCESS_RETURN _drcSetPreSelection(
2267
    SEL_PROC_INPUT* hSelProcInput, HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
2268
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet,
2269
    DRCDEC_SELECTION** ppCandidatesPotential,
2270
235k
    DRCDEC_SELECTION** ppCandidatesSelected, SEL_PROC_CODEC_MODE codecMode) {
2271
235k
  DRCDEC_SELECTION_PROCESS_RETURN retVal = DRCDEC_SELECTION_PROCESS_NO_ERROR;
2272
235k
  int i, j;
2273
2274
470k
  for (i = 0; i < hSelProcInput->numDownmixIdRequests; i++) {
2275
471k
    for (j = 0; j < hUniDrcConfig->drcInstructionsCountInclVirtual; j++) {
2276
236k
      DRC_INSTRUCTIONS_UNI_DRC* pDrcInstruction =
2277
236k
          &(hUniDrcConfig->drcInstructionsUniDrc[j]);
2278
      /* check if ID is unique */
2279
236k
      if (selectDrcInstructions(hUniDrcConfig, pDrcInstruction->drcSetId) !=
2280
236k
          pDrcInstruction)
2281
387
        continue;
2282
2283
236k
      retVal = _drcSetPreSelectionSingleInstruction(
2284
236k
          hSelProcInput, i, hUniDrcConfig, hLoudnessInfoSet, pDrcInstruction,
2285
236k
          *ppCandidatesPotential, *ppCandidatesSelected, codecMode);
2286
236k
      if (retVal) return DRCDEC_SELECTION_PROCESS_NOT_OK;
2287
236k
    }
2288
235k
  }
2289
2290
235k
  retVal = _preSelectionRequirement9(hSelProcInput, *ppCandidatesPotential,
2291
235k
                                     *ppCandidatesSelected);
2292
235k
  if (retVal) return DRCDEC_SELECTION_PROCESS_NOT_OK;
2293
2294
235k
  if (_drcdec_selection_getNumber(*ppCandidatesSelected) == 0) {
2295
3
    retVal = _drcSetSelectionAddCandidates(
2296
3
        hSelProcInput, *ppCandidatesPotential, *ppCandidatesSelected);
2297
3
    if (retVal) return DRCDEC_SELECTION_PROCESS_NOT_OK;
2298
3
  }
2299
2300
235k
  return retVal;
2301
235k
}
2302
2303
static DRCDEC_SELECTION_PROCESS_RETURN _drcSetRequestSelection(
2304
    SEL_PROC_INPUT* hSelProcInput, HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
2305
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet,
2306
    DRCDEC_SELECTION** ppCandidatesPotential,
2307
235k
    DRCDEC_SELECTION** ppCandidatesSelected) {
2308
235k
  DRCDEC_SELECTION_PROCESS_RETURN retVal;
2309
235k
  int i;
2310
2311
235k
  if (_drcdec_selection_getNumber(*ppCandidatesPotential) == 0) {
2312
0
    retVal = DRCDEC_SELECTION_PROCESS_NOT_OK;
2313
0
    if (retVal) return DRCDEC_SELECTION_PROCESS_NOT_OK;
2314
0
  }
2315
2316
235k
  if (hSelProcInput->dynamicRangeControlOn) {
2317
235k
    if (hSelProcInput->numDrcFeatureRequests == 0) {
2318
235k
      retVal = _selectDrcSetEffectNone(hUniDrcConfig, *ppCandidatesPotential,
2319
235k
                                       *ppCandidatesSelected);
2320
235k
      if (retVal) return (retVal);
2321
2322
235k
      if (_drcdec_selection_getNumber(*ppCandidatesSelected) == 0) {
2323
0
        DRC_FEATURE_REQUEST fallbackRequest;
2324
0
        fallbackRequest.drcEffectType.numRequests = 5;
2325
0
        fallbackRequest.drcEffectType.numRequestsDesired = 5;
2326
0
        fallbackRequest.drcEffectType.request[0] = DETR_GENERAL_COMPR;
2327
0
        fallbackRequest.drcEffectType.request[1] = DETR_NIGHT;
2328
0
        fallbackRequest.drcEffectType.request[2] = DETR_NOISY;
2329
0
        fallbackRequest.drcEffectType.request[3] = DETR_LIMITED;
2330
0
        fallbackRequest.drcEffectType.request[4] = DETR_LOWLEVEL;
2331
2332
0
        retVal = _selectEffectTypeFeature(hUniDrcConfig, fallbackRequest,
2333
0
                                          ppCandidatesPotential,
2334
0
                                          ppCandidatesSelected);
2335
0
        if (retVal) return DRCDEC_SELECTION_PROCESS_NOT_OK;
2336
0
      }
2337
2338
235k
      _swapSelectionAndClear(ppCandidatesPotential, ppCandidatesSelected);
2339
235k
    } else {
2340
0
      for (i = 0; i < hSelProcInput->numDrcFeatureRequests; i++) {
2341
0
        if (hSelProcInput->drcFeatureRequestType[i] == DFRT_EFFECT_TYPE) {
2342
0
          retVal = _selectEffectTypeFeature(
2343
0
              hUniDrcConfig, hSelProcInput->drcFeatureRequest[i],
2344
0
              ppCandidatesPotential, ppCandidatesSelected);
2345
2346
0
          _swapSelectionAndClear(ppCandidatesPotential, ppCandidatesSelected);
2347
0
          if (retVal) return DRCDEC_SELECTION_PROCESS_NOT_OK;
2348
0
        }
2349
2350
0
        else if (hSelProcInput->drcFeatureRequestType[i] ==
2351
0
                 DFRT_DYNAMIC_RANGE) {
2352
0
          retVal = _selectDynamicRange(
2353
0
              hUniDrcConfig, hLoudnessInfoSet,
2354
0
              hSelProcInput->drcFeatureRequest[i],
2355
0
              hSelProcInput->downmixIdRequested, hSelProcInput->albumMode,
2356
0
              *ppCandidatesPotential, *ppCandidatesSelected);
2357
2358
0
          if (_drcdec_selection_getNumber(*ppCandidatesSelected) > 0) {
2359
0
            _swapSelectionAndClear(ppCandidatesPotential, ppCandidatesSelected);
2360
0
          }
2361
0
          if (retVal) return DRCDEC_SELECTION_PROCESS_NOT_OK;
2362
0
        } else if (hSelProcInput->drcFeatureRequestType[i] ==
2363
0
                   DFRT_DRC_CHARACTERISTIC) {
2364
0
          retVal = _selectDrcCharacteristic(
2365
0
              hUniDrcConfig,
2366
0
              hSelProcInput->drcFeatureRequest[i].drcCharacteristic,
2367
0
              ppCandidatesPotential, ppCandidatesSelected);
2368
2369
0
          if (_drcdec_selection_getNumber(*ppCandidatesSelected) > 0) {
2370
0
            _swapSelectionAndClear(ppCandidatesPotential, ppCandidatesSelected);
2371
0
          }
2372
0
          if (retVal) return DRCDEC_SELECTION_PROCESS_NOT_OK;
2373
0
        }
2374
0
      }
2375
0
    }
2376
235k
  }
2377
2378
235k
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
2379
235k
}
2380
2381
/*******************************************/
2382
static DRCDEC_SELECTION_PROCESS_RETURN _dynamicRangeMeasurement(
2383
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet, DRC_INSTRUCTIONS_UNI_DRC* pInst,
2384
    UCHAR downmixIdRequested,
2385
    DYN_RANGE_MEASUREMENT_REQUEST_TYPE dynamicRangeMeasurementType,
2386
0
    int albumMode, int* pPeakToAveragePresent, FIXP_DBL* pPeakToAverage) {
2387
0
  int i;
2388
0
  DRCDEC_SELECTION_PROCESS_RETURN retVal = DRCDEC_SELECTION_PROCESS_NO_ERROR;
2389
0
  int drcSetId = fMax(0, pInst->drcSetId);
2390
2391
0
  *pPeakToAveragePresent = 0;
2392
2393
0
  if (albumMode) {
2394
0
    for (i = 0; i < hLoudnessInfoSet->loudnessInfoAlbumCount; i++) {
2395
0
      LOUDNESS_INFO* pLoudnessInfo = &(hLoudnessInfoSet->loudnessInfoAlbum[i]);
2396
2397
0
      if (drcSetId == pLoudnessInfo->drcSetId) {
2398
0
        if (downmixIdRequested == pLoudnessInfo->downmixId) {
2399
0
          retVal = _extractLoudnessPeakToAverageValue(
2400
0
              pLoudnessInfo, dynamicRangeMeasurementType, pPeakToAveragePresent,
2401
0
              pPeakToAverage);
2402
0
          if (retVal) return (retVal);
2403
0
        }
2404
0
      }
2405
0
    }
2406
0
  }
2407
2408
0
  if (*pPeakToAveragePresent == 0) {
2409
0
    for (i = 0; i < hLoudnessInfoSet->loudnessInfoCount; i++) {
2410
0
      LOUDNESS_INFO* pLoudnessInfo = &(hLoudnessInfoSet->loudnessInfo[i]);
2411
2412
0
      if (drcSetId == pLoudnessInfo->drcSetId) {
2413
0
        if (downmixIdRequested == pLoudnessInfo->downmixId) {
2414
0
          retVal = _extractLoudnessPeakToAverageValue(
2415
0
              pLoudnessInfo, dynamicRangeMeasurementType, pPeakToAveragePresent,
2416
0
              pPeakToAverage);
2417
0
          if (retVal) return (retVal);
2418
0
        }
2419
0
      }
2420
0
    }
2421
0
  }
2422
2423
0
  return retVal;
2424
0
}
2425
/*******************************************/
2426
2427
static DRCDEC_SELECTION_DATA* _drcdec_selection_addNew(
2428
235k
    DRCDEC_SELECTION* pSelection) {
2429
235k
  if (pSelection->numData < (12 + 1 + 6)) {
2430
235k
    DRCDEC_SELECTION_DATA* pData = &(pSelection->data[pSelection->numData]);
2431
235k
    FDKmemset(pData, 0, sizeof(DRCDEC_SELECTION_DATA));
2432
235k
    pSelection->numData++;
2433
2434
235k
    return pData;
2435
235k
  } else {
2436
0
    return NULL;
2437
0
  }
2438
235k
}
2439
2440
static DRCDEC_SELECTION_DATA* _drcdec_selection_add(
2441
472k
    DRCDEC_SELECTION* pSelection, DRCDEC_SELECTION_DATA* pDataIn) {
2442
472k
  if (pSelection->numData < (12 + 1 + 6)) {
2443
472k
    DRCDEC_SELECTION_DATA* pData = &(pSelection->data[pSelection->numData]);
2444
472k
    FDKmemcpy(pData, pDataIn, sizeof(DRCDEC_SELECTION_DATA));
2445
472k
    pSelection->numData++;
2446
472k
    return pData;
2447
472k
  } else {
2448
0
    return NULL;
2449
0
  }
2450
472k
}
2451
2452
470k
static int _drcdec_selection_clear(DRCDEC_SELECTION* pSelection) {
2453
470k
  return pSelection->numData = 0;
2454
470k
}
2455
2456
2.35M
static int _drcdec_selection_getNumber(DRCDEC_SELECTION* pSelection) {
2457
2.35M
  return pSelection->numData;
2458
2.35M
}
2459
2460
470k
static int _drcdec_selection_setNumber(DRCDEC_SELECTION* pSelection, int num) {
2461
470k
  if (num >= 0 && num < pSelection->numData) {
2462
223k
    return pSelection->numData = num;
2463
247k
  } else {
2464
247k
    return pSelection->numData;
2465
247k
  }
2466
470k
}
2467
2468
static DRCDEC_SELECTION_DATA* _drcdec_selection_getAt(
2469
473k
    DRCDEC_SELECTION* pSelection, int at) {
2470
473k
  if (at >= 0 && at < (12 + 1 + 6)) {
2471
473k
    return &(pSelection->data[at]);
2472
473k
  } else {
2473
0
    return NULL;
2474
0
  }
2475
473k
}
2476
2477
static int _swapSelectionAndClear(DRCDEC_SELECTION** ppCandidatesPotential,
2478
470k
                                  DRCDEC_SELECTION** ppCandidatesSelected) {
2479
470k
  DRCDEC_SELECTION* pTmp = *ppCandidatesPotential;
2480
470k
  *ppCandidatesPotential = *ppCandidatesSelected;
2481
470k
  *ppCandidatesSelected = pTmp;
2482
470k
  _drcdec_selection_clear(*ppCandidatesSelected);
2483
470k
  return 0;
2484
470k
}
2485
2486
static int _swapSelection(DRCDEC_SELECTION** ppCandidatesPotential,
2487
235k
                          DRCDEC_SELECTION** ppCandidatesSelected) {
2488
235k
  DRCDEC_SELECTION* pTmp = *ppCandidatesPotential;
2489
235k
  *ppCandidatesPotential = *ppCandidatesSelected;
2490
235k
  *ppCandidatesSelected = pTmp;
2491
235k
  return 0;
2492
235k
}
2493
2494
/*******************************************/
2495
2496
static LOUDNESS_INFO* _getLoudnessInfoStructure(
2497
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet, int drcSetId, int downmixId,
2498
2.12M
    int albumMode) {
2499
2.12M
  int i, j;
2500
2.12M
  int count;
2501
2502
2.12M
  LOUDNESS_INFO* pLoudnessInfo = NULL;
2503
2504
2.12M
  if (albumMode) {
2505
0
    count = hLoudnessInfoSet->loudnessInfoAlbumCount;
2506
0
    pLoudnessInfo = hLoudnessInfoSet->loudnessInfoAlbum;
2507
2.12M
  } else {
2508
2.12M
    count = hLoudnessInfoSet->loudnessInfoCount;
2509
2.12M
    pLoudnessInfo = hLoudnessInfoSet->loudnessInfo;
2510
2.12M
  }
2511
2512
2.12M
  for (i = 0; i < count; i++) {
2513
407
    if ((pLoudnessInfo[i].drcSetId == drcSetId) &&
2514
154
        (pLoudnessInfo[i].downmixId == downmixId)) {
2515
94
      for (j = 0; j < pLoudnessInfo[i].measurementCount; j++) {
2516
30
        if ((pLoudnessInfo[i].loudnessMeasurement[j].methodDefinition == 1) ||
2517
24
            (pLoudnessInfo[i].loudnessMeasurement[j].methodDefinition == 2)) {
2518
9
          return &pLoudnessInfo[i];
2519
9
        }
2520
30
      }
2521
73
    }
2522
407
  }
2523
2524
2.12M
  return NULL;
2525
2.12M
}
2526
2527
static LOUDNESS_INFO* _getApplicableLoudnessInfoStructure(
2528
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet, int drcSetId,
2529
235k
    int downmixIdRequested, int albumMode) {
2530
235k
  LOUDNESS_INFO* pLoudnessInfo = NULL;
2531
2532
  /* default value */
2533
235k
  pLoudnessInfo = _getLoudnessInfoStructure(hLoudnessInfoSet, drcSetId,
2534
235k
                                            downmixIdRequested, albumMode);
2535
2536
  /* fallback values */
2537
235k
  if (pLoudnessInfo == NULL) {
2538
235k
    pLoudnessInfo =
2539
235k
        _getLoudnessInfoStructure(hLoudnessInfoSet, drcSetId, 0x7F, albumMode);
2540
235k
  }
2541
2542
235k
  if (pLoudnessInfo == NULL) {
2543
235k
    pLoudnessInfo = _getLoudnessInfoStructure(hLoudnessInfoSet, 0x3F,
2544
235k
                                              downmixIdRequested, albumMode);
2545
235k
  }
2546
2547
235k
  if (pLoudnessInfo == NULL) {
2548
235k
    pLoudnessInfo = _getLoudnessInfoStructure(hLoudnessInfoSet, 0,
2549
235k
                                              downmixIdRequested, albumMode);
2550
235k
  }
2551
2552
235k
  if (pLoudnessInfo == NULL) {
2553
235k
    pLoudnessInfo =
2554
235k
        _getLoudnessInfoStructure(hLoudnessInfoSet, 0x3F, 0x7F, albumMode);
2555
235k
  }
2556
2557
235k
  if (pLoudnessInfo == NULL) {
2558
235k
    pLoudnessInfo =
2559
235k
        _getLoudnessInfoStructure(hLoudnessInfoSet, 0, 0x7F, albumMode);
2560
235k
  }
2561
2562
235k
  if (pLoudnessInfo == NULL) {
2563
235k
    pLoudnessInfo =
2564
235k
        _getLoudnessInfoStructure(hLoudnessInfoSet, drcSetId, 0, albumMode);
2565
235k
  }
2566
2567
235k
  if (pLoudnessInfo == NULL) {
2568
235k
    pLoudnessInfo =
2569
235k
        _getLoudnessInfoStructure(hLoudnessInfoSet, 0x3F, 0, albumMode);
2570
235k
  }
2571
2572
235k
  if (pLoudnessInfo == NULL) {
2573
235k
    pLoudnessInfo =
2574
235k
        _getLoudnessInfoStructure(hLoudnessInfoSet, 0, 0, albumMode);
2575
235k
  }
2576
2577
235k
  return pLoudnessInfo;
2578
235k
}
2579
2580
/*******************************************/
2581
2582
typedef struct {
2583
  FIXP_DBL value;
2584
  int order;
2585
} VALUE_ORDER;
2586
2587
235k
void _initValueOrder(VALUE_ORDER* pValue) {
2588
235k
  pValue->value = (FIXP_DBL)0;
2589
235k
  pValue->order = -1;
2590
235k
}
2591
2592
enum {
2593
  MS_BONUS0 = 0,
2594
  MS_BONUS1770,
2595
  MS_BONUSUSER,
2596
  MS_BONUSEXPERT,
2597
  MS_RESA,
2598
  MS_RESB,
2599
  MS_RESC,
2600
  MS_RESD,
2601
  MS_RESE,
2602
  MS_PROGRAMLOUDNESS,
2603
  MS_PEAKLOUDNESS
2604
};
2605
2606
static DRCDEC_SELECTION_PROCESS_RETURN _getMethodValue(
2607
    VALUE_ORDER* pValueOrder, FIXP_DBL value, int measurementSystem,
2608
11
    int measurementSystemRequested) {
2609
11
  const int rows = 11;
2610
11
  const int columns = 12;
2611
11
  const int pOrdering[rows][columns] = {
2612
11
      {0, 0, 8, 0, 1, 3, 0, 5, 6, 7, 4, 2}, /* default = bonus1770 */
2613
11
      {0, 0, 8, 0, 1, 3, 0, 5, 6, 7, 4, 2}, /* bonus1770 */
2614
11
      {0, 0, 1, 0, 8, 5, 0, 2, 3, 4, 6, 7}, /* bonusUser */
2615
11
      {0, 0, 3, 0, 1, 8, 0, 4, 5, 6, 7, 2}, /* bonusExpert */
2616
11
      {0, 0, 5, 0, 1, 3, 0, 8, 6, 7, 4, 2}, /* ResA */
2617
11
      {0, 0, 5, 0, 1, 3, 0, 6, 8, 7, 4, 2}, /* ResB */
2618
11
      {0, 0, 5, 0, 1, 3, 0, 6, 7, 8, 4, 2}, /* ResC */
2619
11
      {0, 0, 3, 0, 1, 7, 0, 4, 5, 6, 8, 2}, /* ResD */
2620
11
      {0, 0, 1, 0, 7, 5, 0, 2, 3, 4, 6, 8}, /* ResE */
2621
11
      {0, 0, 1, 0, 0, 0, 0, 2, 3, 4, 0, 0}, /* ProgramLoudness */
2622
11
      {0, 7, 0, 0, 0, 0, 6, 5, 4, 3, 2, 1}  /* PeakLoudness */
2623
11
  };
2624
2625
11
  if (measurementSystemRequested < 0 || measurementSystemRequested >= rows ||
2626
11
      measurementSystem < 0 || measurementSystem >= columns) {
2627
4
    return DRCDEC_SELECTION_PROCESS_NOT_OK;
2628
4
  }
2629
2630
7
  if (pOrdering[measurementSystemRequested][measurementSystem] >
2631
7
      pValueOrder->order) {
2632
6
    pValueOrder->order =
2633
6
        pOrdering[measurementSystemRequested][measurementSystem];
2634
6
    pValueOrder->value = value;
2635
6
  }
2636
2637
7
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
2638
11
}
2639
2640
/*******************************************/
2641
2642
static DRCDEC_SELECTION_PROCESS_RETURN _getLoudness(
2643
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet, int albumMode,
2644
    METHOD_DEFINITION_REQUEST measurementMethodRequested,
2645
    MEASUREMENT_SYSTEM_REQUEST measurementSystemRequested,
2646
    FIXP_DBL targetLoudness, /* e = 7 */
2647
    int drcSetId, int downmixIdRequested,
2648
    FIXP_DBL* pLoudnessNormalizationGain, /* e = 7 */
2649
    FIXP_DBL* pLoudness)                  /* e = 7 */
2650
235k
{
2651
235k
  int index;
2652
2653
235k
  LOUDNESS_INFO* pLoudnessInfo = NULL;
2654
235k
  VALUE_ORDER valueOrder;
2655
2656
  /* map MDR_DEFAULT to MDR_PROGRAM_LOUDNESS */
2657
235k
  METHOD_DEFINITION_REQUEST requestedMethodDefinition =
2658
235k
      measurementMethodRequested < MDR_ANCHOR_LOUDNESS ? MDR_PROGRAM_LOUDNESS
2659
235k
                                                       : MDR_ANCHOR_LOUDNESS;
2660
2661
235k
  if (measurementMethodRequested > MDR_ANCHOR_LOUDNESS) {
2662
0
    return DRCDEC_SELECTION_PROCESS_NOT_OK;
2663
0
  }
2664
2665
235k
  _initValueOrder(&valueOrder);
2666
2667
235k
  *pLoudness = UNDEFINED_LOUDNESS_VALUE;
2668
235k
  *pLoudnessNormalizationGain = (FIXP_DBL)0;
2669
2670
235k
  if (drcSetId < 0) {
2671
235k
    drcSetId = 0;
2672
235k
  }
2673
2674
235k
  pLoudnessInfo = _getApplicableLoudnessInfoStructure(
2675
235k
      hLoudnessInfoSet, drcSetId, downmixIdRequested, albumMode);
2676
2677
235k
  if (albumMode && (pLoudnessInfo == NULL)) {
2678
0
    pLoudnessInfo = _getApplicableLoudnessInfoStructure(
2679
0
        hLoudnessInfoSet, drcSetId, downmixIdRequested, 0);
2680
0
  }
2681
2682
235k
  if (pLoudnessInfo == NULL) {
2683
235k
    return DRCDEC_SELECTION_PROCESS_NO_ERROR;
2684
235k
  }
2685
2686
9
  index = -1;
2687
2688
12
  do {
2689
12
    index = _findMethodDefinition(pLoudnessInfo, requestedMethodDefinition,
2690
12
                                  index + 1);
2691
2692
12
    if (index >= 0) {
2693
3
      _getMethodValue(
2694
3
          &valueOrder, pLoudnessInfo->loudnessMeasurement[index].methodValue,
2695
3
          pLoudnessInfo->loudnessMeasurement[index].measurementSystem,
2696
3
          measurementSystemRequested);
2697
3
    }
2698
12
  } while (index >= 0);
2699
2700
  /* repeat with other method definition */
2701
9
  if (valueOrder.order == -1) {
2702
7
    index = -1;
2703
2704
15
    do {
2705
15
      index = _findMethodDefinition(
2706
15
          pLoudnessInfo,
2707
15
          requestedMethodDefinition == MDR_PROGRAM_LOUDNESS
2708
15
              ? MDR_ANCHOR_LOUDNESS
2709
15
              : MDR_PROGRAM_LOUDNESS,
2710
15
          index + 1);
2711
2712
15
      if (index >= 0) {
2713
8
        _getMethodValue(
2714
8
            &valueOrder, pLoudnessInfo->loudnessMeasurement[index].methodValue,
2715
8
            pLoudnessInfo->loudnessMeasurement[index].measurementSystem,
2716
8
            measurementSystemRequested);
2717
8
      }
2718
15
    } while (index >= 0);
2719
7
  }
2720
2721
9
  if (valueOrder.order == -1) {
2722
4
    return DRCDEC_SELECTION_PROCESS_NOT_OK;
2723
5
  } else {
2724
5
    *pLoudnessNormalizationGain = targetLoudness - valueOrder.value;
2725
5
    *pLoudness = valueOrder.value;
2726
5
  }
2727
2728
5
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
2729
9
}
2730
2731
/*******************************************/
2732
2733
static int _truePeakLevelIsPresent(HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet,
2734
471k
                                   int drcSetId, int downmixId, int albumMode) {
2735
471k
  int i;
2736
471k
  int count;
2737
471k
  LOUDNESS_INFO* pLoudnessInfo = NULL;
2738
2739
471k
  if (albumMode) {
2740
0
    count = hLoudnessInfoSet->loudnessInfoAlbumCount;
2741
0
    pLoudnessInfo = hLoudnessInfoSet->loudnessInfoAlbum;
2742
471k
  } else {
2743
471k
    count = hLoudnessInfoSet->loudnessInfoCount;
2744
471k
    pLoudnessInfo = hLoudnessInfoSet->loudnessInfo;
2745
471k
  }
2746
2747
471k
  for (i = 0; i < count; i++) {
2748
86
    if ((pLoudnessInfo[i].drcSetId == drcSetId) &&
2749
33
        (pLoudnessInfo[i].downmixId == downmixId)) {
2750
21
      if (pLoudnessInfo[i].truePeakLevelPresent) return 1;
2751
21
    }
2752
86
  }
2753
2754
471k
  return 0;
2755
471k
}
2756
2757
static DRCDEC_SELECTION_PROCESS_RETURN _getTruePeakLevel(
2758
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet, int drcSetId, int downmixId,
2759
8
    int albumMode, FIXP_DBL* pTruePeakLevel) {
2760
8
  int i;
2761
8
  int count;
2762
8
  LOUDNESS_INFO* pLoudnessInfo = NULL;
2763
2764
8
  if (albumMode) {
2765
0
    count = hLoudnessInfoSet->loudnessInfoAlbumCount;
2766
0
    pLoudnessInfo = hLoudnessInfoSet->loudnessInfoAlbum;
2767
8
  } else {
2768
8
    count = hLoudnessInfoSet->loudnessInfoCount;
2769
8
    pLoudnessInfo = hLoudnessInfoSet->loudnessInfo;
2770
8
  }
2771
2772
11
  for (i = 0; i < count; i++) {
2773
11
    if ((pLoudnessInfo[i].drcSetId == drcSetId) &&
2774
9
        (pLoudnessInfo[i].downmixId == downmixId)) {
2775
8
      if (pLoudnessInfo[i].truePeakLevelPresent) {
2776
8
        *pTruePeakLevel = pLoudnessInfo[i].truePeakLevel;
2777
8
        return DRCDEC_SELECTION_PROCESS_NO_ERROR;
2778
8
      }
2779
8
    }
2780
11
  }
2781
2782
0
  return DRCDEC_SELECTION_PROCESS_NOT_OK;
2783
8
}
2784
2785
static int _samplePeakLevelIsPresent(HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet,
2786
                                     int drcSetId, int downmixId,
2787
471k
                                     int albumMode) {
2788
471k
  int i;
2789
471k
  int count;
2790
471k
  LOUDNESS_INFO* pLoudnessInfo = NULL;
2791
2792
471k
  if (albumMode) {
2793
0
    count = hLoudnessInfoSet->loudnessInfoAlbumCount;
2794
0
    pLoudnessInfo = hLoudnessInfoSet->loudnessInfoAlbum;
2795
471k
  } else {
2796
471k
    count = hLoudnessInfoSet->loudnessInfoCount;
2797
471k
    pLoudnessInfo = hLoudnessInfoSet->loudnessInfo;
2798
471k
  }
2799
2800
471k
  for (i = 0; i < count; i++) {
2801
75
    if ((pLoudnessInfo[i].drcSetId == drcSetId) &&
2802
24
        (pLoudnessInfo[i].downmixId == downmixId)) {
2803
13
      if (pLoudnessInfo[i].samplePeakLevelPresent) return 1;
2804
13
    }
2805
75
  }
2806
2807
471k
  return 0;
2808
471k
}
2809
2810
static DRCDEC_SELECTION_PROCESS_RETURN _getSamplePeakLevel(
2811
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet, int drcSetId, int downmixId,
2812
    int albumMode, FIXP_DBL* pSamplePeakLevel /* e = 7 */
2813
4
) {
2814
4
  int i;
2815
4
  int count;
2816
4
  LOUDNESS_INFO* pLoudnessInfo = NULL;
2817
2818
4
  if (albumMode) {
2819
0
    count = hLoudnessInfoSet->loudnessInfoAlbumCount;
2820
0
    pLoudnessInfo = hLoudnessInfoSet->loudnessInfoAlbum;
2821
4
  } else {
2822
4
    count = hLoudnessInfoSet->loudnessInfoCount;
2823
4
    pLoudnessInfo = hLoudnessInfoSet->loudnessInfo;
2824
4
  }
2825
2826
7
  for (i = 0; i < count; i++) {
2827
7
    if ((pLoudnessInfo[i].drcSetId == drcSetId) &&
2828
6
        (pLoudnessInfo[i].downmixId == downmixId)) {
2829
5
      if (pLoudnessInfo[i].samplePeakLevelPresent) {
2830
4
        *pSamplePeakLevel = pLoudnessInfo[i].samplePeakLevel;
2831
4
        return DRCDEC_SELECTION_PROCESS_NO_ERROR;
2832
4
      }
2833
5
    }
2834
7
  }
2835
2836
0
  return DRCDEC_SELECTION_PROCESS_NOT_OK;
2837
4
}
2838
2839
static int _limiterPeakTargetIsPresent(
2840
235k
    DRC_INSTRUCTIONS_UNI_DRC* pDrcInstruction, int drcSetId, int downmixId) {
2841
235k
  int i;
2842
2843
235k
  if (pDrcInstruction->limiterPeakTargetPresent) {
2844
9
    if ((pDrcInstruction->downmixId[0] == downmixId) ||
2845
6
        (pDrcInstruction->downmixId[0] == 0x7F)) {
2846
3
      return 1;
2847
3
    }
2848
2849
29
    for (i = 0; i < pDrcInstruction->downmixIdCount; i++) {
2850
27
      if (pDrcInstruction->downmixId[i] == downmixId) {
2851
4
        return 1;
2852
4
      }
2853
27
    }
2854
6
  }
2855
2856
235k
  return 0;
2857
235k
}
2858
2859
static DRCDEC_SELECTION_PROCESS_RETURN _getLimiterPeakTarget(
2860
    DRC_INSTRUCTIONS_UNI_DRC* pDrcInstruction, int drcSetId, int downmixId,
2861
7
    FIXP_DBL* pLimiterPeakTarget) {
2862
7
  int i;
2863
2864
7
  if (pDrcInstruction->limiterPeakTargetPresent) {
2865
7
    if ((pDrcInstruction->downmixId[0] == downmixId) ||
2866
4
        (pDrcInstruction->downmixId[0] == 0x7F)) {
2867
3
      *pLimiterPeakTarget =
2868
3
          ((FX_SGL2FX_DBL(pDrcInstruction->limiterPeakTarget) >> 2));
2869
3
      return DRCDEC_SELECTION_PROCESS_NO_ERROR;
2870
3
    }
2871
2872
16
    for (i = 0; i < pDrcInstruction->downmixIdCount; i++) {
2873
16
      if (pDrcInstruction->downmixId[i] == downmixId) {
2874
4
        *pLimiterPeakTarget =
2875
4
            ((FX_SGL2FX_DBL(pDrcInstruction->limiterPeakTarget) >> 2));
2876
4
        return DRCDEC_SELECTION_PROCESS_NO_ERROR;
2877
4
      }
2878
16
    }
2879
4
  }
2880
2881
0
  return DRCDEC_SELECTION_PROCESS_NOT_OK;
2882
7
}
2883
2884
static int _downmixCoefficientsArePresent(HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
2885
0
                                          int downmixId, int* pIndex) {
2886
0
  int i;
2887
0
  *pIndex = -1;
2888
2889
0
  for (i = 0; i < hUniDrcConfig->downmixInstructionsCount; i++) {
2890
0
    if (hUniDrcConfig->downmixInstructions[i].downmixId == downmixId) {
2891
0
      if (hUniDrcConfig->downmixInstructions[i].downmixCoefficientsPresent) {
2892
0
        if (hUniDrcConfig->downmixInstructions[i].targetChannelCount > 8)
2893
0
          return 0;
2894
0
        *pIndex = i;
2895
0
        return 1;
2896
0
      }
2897
0
    }
2898
0
  }
2899
2900
0
  return 0;
2901
0
}
2902
2903
static DRCDEC_SELECTION_PROCESS_RETURN _getSignalPeakLevel(
2904
    HANDLE_SEL_PROC_INPUT hSelProcInput, HANDLE_UNI_DRC_CONFIG hUniDrcConfig,
2905
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet, DRC_INSTRUCTIONS_UNI_DRC* pInst,
2906
    int downmixIdRequested, int* explicitPeakInformationPresent,
2907
    FIXP_DBL* signalPeakLevelOut, /* e = 7 */
2908
    SEL_PROC_CODEC_MODE codecMode
2909
2910
235k
) {
2911
235k
  DRCDEC_SELECTION_PROCESS_RETURN retVal = DRCDEC_SELECTION_PROCESS_NO_ERROR;
2912
2913
235k
  int albumMode = hSelProcInput->albumMode;
2914
2915
235k
  FIXP_DBL signalPeakLevelTmp = (FIXP_DBL)0;
2916
235k
  FIXP_DBL signalPeakLevel = FIXP_DBL(0);
2917
2918
235k
  int dmxId = downmixIdRequested;
2919
2920
235k
  int drcSetId = pInst->drcSetId;
2921
2922
235k
  if (drcSetId < 0) {
2923
235k
    drcSetId = 0;
2924
235k
  }
2925
2926
235k
  *explicitPeakInformationPresent = 1;
2927
2928
235k
  if (_truePeakLevelIsPresent(hLoudnessInfoSet, drcSetId, dmxId, albumMode)) {
2929
6
    retVal = _getTruePeakLevel(hLoudnessInfoSet, drcSetId, dmxId, albumMode,
2930
6
                               &signalPeakLevel);
2931
6
    if (retVal) return (retVal);
2932
235k
  } else if (_samplePeakLevelIsPresent(hLoudnessInfoSet, drcSetId, dmxId,
2933
235k
                                       albumMode)) {
2934
3
    retVal = _getSamplePeakLevel(hLoudnessInfoSet, drcSetId, dmxId, albumMode,
2935
3
                                 &signalPeakLevel);
2936
3
    if (retVal) return (retVal);
2937
235k
  } else if (_truePeakLevelIsPresent(hLoudnessInfoSet, 0x3F, dmxId,
2938
235k
                                     albumMode)) {
2939
2
    retVal = _getTruePeakLevel(hLoudnessInfoSet, 0x3F, dmxId, albumMode,
2940
2
                               &signalPeakLevel);
2941
2
    if (retVal) return (retVal);
2942
235k
  } else if (_samplePeakLevelIsPresent(hLoudnessInfoSet, 0x3F, dmxId,
2943
235k
                                       albumMode)) {
2944
1
    retVal = _getSamplePeakLevel(hLoudnessInfoSet, 0x3F, dmxId, albumMode,
2945
1
                                 &signalPeakLevel);
2946
1
    if (retVal) return (retVal);
2947
235k
  } else if (_limiterPeakTargetIsPresent(pInst, drcSetId, dmxId)) {
2948
7
    retVal = _getLimiterPeakTarget(pInst, drcSetId, dmxId, &signalPeakLevel);
2949
7
    if (retVal) return (retVal);
2950
235k
  } else if (dmxId != 0) {
2951
0
    int downmixInstructionIndex = 0;
2952
0
    FIXP_DBL downmixPeakLevelDB = 0;
2953
2954
0
    *explicitPeakInformationPresent = 0;
2955
2956
0
    signalPeakLevelTmp = FIXP_DBL(0);
2957
2958
0
    if (_downmixCoefficientsArePresent(hUniDrcConfig, dmxId,
2959
0
                                       &downmixInstructionIndex)) {
2960
0
      FIXP_DBL dB_m;
2961
0
      int dB_e;
2962
0
      FIXP_DBL coeff;
2963
0
      FIXP_DBL sum, maxSum; /* e = 7, so it is possible to sum up up to 32
2964
                               downmix coefficients (with e = 2) */
2965
0
      int i, j;
2966
0
      DOWNMIX_INSTRUCTIONS* pDown =
2967
0
          &(hUniDrcConfig->downmixInstructions[downmixInstructionIndex]);
2968
0
      FIXP_DBL downmixOffset = getDownmixOffset(
2969
0
          pDown, hUniDrcConfig->channelLayout.baseChannelCount); /* e = 1 */
2970
0
      maxSum = (FIXP_DBL)0;
2971
2972
0
      for (i = 0; i < pDown->targetChannelCount; i++) {
2973
0
        sum = (FIXP_DBL)0;
2974
0
        for (j = 0; j < hUniDrcConfig->channelLayout.baseChannelCount; j++) {
2975
0
          coeff = pDown->downmixCoefficient[j + i * hUniDrcConfig->channelLayout
2976
0
                                                        .baseChannelCount];
2977
0
          sum += coeff >> 5;
2978
0
        }
2979
0
        if (maxSum < sum) maxSum = sum;
2980
0
      }
2981
2982
0
      maxSum = fMultDiv2(maxSum, downmixOffset) << 2;
2983
2984
0
      if (maxSum == FL2FXCONST_DBL(1.0f / (float)(1 << 7))) {
2985
0
        downmixPeakLevelDB = (FIXP_DBL)0;
2986
0
      } else {
2987
0
        dB_m = lin2dB(maxSum, 7, &dB_e); /* e_maxSum = 7 */
2988
0
        downmixPeakLevelDB =
2989
0
            scaleValue(dB_m, dB_e - 7); /* e_downmixPeakLevelDB = 7 */
2990
0
      }
2991
0
    }
2992
2993
0
    if (_truePeakLevelIsPresent(hLoudnessInfoSet, drcSetId, 0, albumMode)) {
2994
0
      retVal = _getTruePeakLevel(hLoudnessInfoSet, drcSetId, 0, albumMode,
2995
0
                                 &signalPeakLevelTmp);
2996
0
      if (retVal) return (retVal);
2997
0
    } else if (_samplePeakLevelIsPresent(hLoudnessInfoSet, drcSetId, 0,
2998
0
                                         albumMode)) {
2999
0
      retVal = _getSamplePeakLevel(hLoudnessInfoSet, drcSetId, 0, albumMode,
3000
0
                                   &signalPeakLevelTmp);
3001
0
      if (retVal) return (retVal);
3002
0
    } else if (_truePeakLevelIsPresent(hLoudnessInfoSet, 0x3F, 0, albumMode)) {
3003
0
      retVal = _getTruePeakLevel(hLoudnessInfoSet, 0x3F, 0, albumMode,
3004
0
                                 &signalPeakLevelTmp);
3005
0
      if (retVal) return (retVal);
3006
0
    } else if (_samplePeakLevelIsPresent(hLoudnessInfoSet, 0x3F, 0,
3007
0
                                         albumMode)) {
3008
0
      retVal = _getSamplePeakLevel(hLoudnessInfoSet, 0x3F, 0, albumMode,
3009
0
                                   &signalPeakLevelTmp);
3010
0
      if (retVal) return (retVal);
3011
0
    } else if (_limiterPeakTargetIsPresent(pInst, drcSetId, 0)) {
3012
0
      retVal = _getLimiterPeakTarget(pInst, drcSetId, 0, &signalPeakLevelTmp);
3013
0
      if (retVal) return (retVal);
3014
0
    }
3015
3016
0
    signalPeakLevel = signalPeakLevelTmp + downmixPeakLevelDB;
3017
235k
  } else {
3018
235k
    signalPeakLevel = FIXP_DBL(0); /* worst case estimate */
3019
235k
    *explicitPeakInformationPresent = FIXP_DBL(0);
3020
235k
  }
3021
3022
235k
  *signalPeakLevelOut = signalPeakLevel;
3023
3024
235k
  return retVal;
3025
235k
}
3026
3027
static DRCDEC_SELECTION_PROCESS_RETURN _extractLoudnessPeakToAverageValue(
3028
    LOUDNESS_INFO* loudnessInfo,
3029
    DYN_RANGE_MEASUREMENT_REQUEST_TYPE dynamicRangeMeasurementType,
3030
    int* pLoudnessPeakToAverageValuePresent,
3031
0
    FIXP_DBL* pLoudnessPeakToAverageValue) {
3032
0
  int i;
3033
3034
0
  VALUE_ORDER valueOrderLoudness;
3035
0
  VALUE_ORDER valueOrderPeakLoudness;
3036
3037
0
  _initValueOrder(&valueOrderLoudness);
3038
0
  _initValueOrder(&valueOrderPeakLoudness);
3039
3040
0
  LOUDNESS_MEASUREMENT* pLoudnessMeasure = NULL;
3041
3042
0
  *pLoudnessPeakToAverageValuePresent = 0;
3043
3044
0
  for (i = 0; i < loudnessInfo->measurementCount; i++) {
3045
0
    pLoudnessMeasure = &(loudnessInfo->loudnessMeasurement[i]);
3046
3047
0
    if (pLoudnessMeasure->methodDefinition == MD_PROGRAM_LOUDNESS) {
3048
0
      _getMethodValue(&valueOrderLoudness, pLoudnessMeasure->methodValue,
3049
0
                      pLoudnessMeasure->measurementSystem, MS_PROGRAMLOUDNESS);
3050
0
    }
3051
3052
0
    if ((dynamicRangeMeasurementType == DRMRT_SHORT_TERM_LOUDNESS_TO_AVG) &&
3053
0
        (pLoudnessMeasure->methodDefinition == MD_SHORT_TERM_LOUDNESS_MAX)) {
3054
0
      _getMethodValue(&valueOrderPeakLoudness, pLoudnessMeasure->methodValue,
3055
0
                      pLoudnessMeasure->measurementSystem, MS_PEAKLOUDNESS);
3056
0
    }
3057
3058
0
    if ((dynamicRangeMeasurementType == DRMRT_MOMENTARY_LOUDNESS_TO_AVG) &&
3059
0
        (pLoudnessMeasure->methodDefinition == MD_MOMENTARY_LOUDNESS_MAX)) {
3060
0
      _getMethodValue(&valueOrderPeakLoudness, pLoudnessMeasure->methodValue,
3061
0
                      pLoudnessMeasure->measurementSystem, MS_PEAKLOUDNESS);
3062
0
    }
3063
3064
0
    if ((dynamicRangeMeasurementType == DRMRT_TOP_OF_LOUDNESS_RANGE_TO_AVG) &&
3065
0
        (pLoudnessMeasure->methodDefinition == MD_MAX_OF_LOUDNESS_RANGE)) {
3066
0
      _getMethodValue(&valueOrderPeakLoudness, pLoudnessMeasure->methodValue,
3067
0
                      pLoudnessMeasure->measurementSystem, MS_PEAKLOUDNESS);
3068
0
    }
3069
0
  }
3070
3071
0
  if ((valueOrderLoudness.order > -1) && (valueOrderPeakLoudness.order > -1)) {
3072
0
    *pLoudnessPeakToAverageValue =
3073
0
        valueOrderPeakLoudness.value - valueOrderLoudness.value;
3074
0
    *pLoudnessPeakToAverageValuePresent = 1;
3075
0
  }
3076
3077
0
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
3078
0
}
3079
3080
/*******************************************/
3081
3082
static DRCDEC_SELECTION_PROCESS_RETURN _selectAlbumLoudness(
3083
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet,
3084
    DRCDEC_SELECTION* pCandidatesPotential,
3085
0
    DRCDEC_SELECTION* pCandidatesSelected) {
3086
0
  int i, j;
3087
3088
0
  for (i = 0; i < _drcdec_selection_getNumber(pCandidatesPotential); i++) {
3089
0
    DRCDEC_SELECTION_DATA* pCandidate =
3090
0
        _drcdec_selection_getAt(pCandidatesPotential, i);
3091
0
    if (pCandidate == NULL) return DRCDEC_SELECTION_PROCESS_NOT_OK;
3092
3093
0
    for (j = 0; j < hLoudnessInfoSet->loudnessInfoAlbumCount; j++) {
3094
0
      if (pCandidate->pInst->drcSetId ==
3095
0
          hLoudnessInfoSet->loudnessInfoAlbum[j].drcSetId) {
3096
0
        if (_drcdec_selection_add(pCandidatesSelected, pCandidate) == NULL)
3097
0
          return DRCDEC_SELECTION_PROCESS_NOT_OK;
3098
0
      }
3099
0
    }
3100
0
  }
3101
3102
0
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
3103
0
}
3104
3105
/*******************************************/
3106
3107
static int _findMethodDefinition(LOUDNESS_INFO* pLoudnessInfo,
3108
47
                                 int methodDefinition, int startIndex) {
3109
47
  int i;
3110
47
  int index = -1;
3111
3112
70
  for (i = startIndex; i < pLoudnessInfo->measurementCount; i++) {
3113
35
    if (pLoudnessInfo->loudnessMeasurement[i].methodDefinition ==
3114
35
        methodDefinition) {
3115
12
      index = i;
3116
12
      break;
3117
12
    }
3118
35
  }
3119
3120
47
  return index;
3121
47
}
3122
3123
/*******************************************/
3124
3125
static DRCDEC_SELECTION_PROCESS_RETURN _getMixingLevel(
3126
    HANDLE_LOUDNESS_INFO_SET hLoudnessInfoSet, int downmixIdRequested,
3127
235k
    int drcSetIdRequested, int albumMode, FIXP_DBL* pMixingLevel) {
3128
235k
  const FIXP_DBL mixingLevelDefault = FL2FXCONST_DBL(85.0f / (float)(1 << 7));
3129
3130
235k
  int i;
3131
235k
  int count;
3132
3133
235k
  LOUDNESS_INFO* pLoudnessInfo = NULL;
3134
3135
235k
  *pMixingLevel = mixingLevelDefault;
3136
3137
235k
  if (drcSetIdRequested < 0) {
3138
235k
    drcSetIdRequested = 0;
3139
235k
  }
3140
3141
235k
  if (albumMode) {
3142
0
    count = hLoudnessInfoSet->loudnessInfoAlbumCount;
3143
0
    pLoudnessInfo = hLoudnessInfoSet->loudnessInfoAlbum;
3144
235k
  } else {
3145
235k
    count = hLoudnessInfoSet->loudnessInfoCount;
3146
235k
    pLoudnessInfo = hLoudnessInfoSet->loudnessInfo;
3147
235k
  }
3148
3149
235k
  for (i = 0; i < count; i++) {
3150
50
    if ((drcSetIdRequested == pLoudnessInfo[i].drcSetId) &&
3151
25
        ((downmixIdRequested == pLoudnessInfo[i].downmixId) ||
3152
20
         (DOWNMIX_ID_ANY_DOWNMIX == pLoudnessInfo[i].downmixId))) {
3153
20
      int index = _findMethodDefinition(&pLoudnessInfo[i], MD_MIXING_LEVEL, 0);
3154
3155
20
      if (index >= 0) {
3156
1
        *pMixingLevel = pLoudnessInfo[i].loudnessMeasurement[index].methodValue;
3157
1
        break;
3158
1
      }
3159
20
    }
3160
50
  }
3161
3162
235k
  return DRCDEC_SELECTION_PROCESS_NO_ERROR;
3163
235k
}
3164
3165
/*******************************************/