LCOV - code coverage report
Current view: top level - lib_dec - ivas_binRenderer_internal.c (source / functions) Hit Total Coverage
Test: Coverage on main -- long test vectors @ a21f94bc6bac334fe001a5bad2f7b32b79038097 Lines: 409 539 75.9 %
Date: 2025-11-01 09:50:07 Functions: 14 16 87.5 %

          Line data    Source code
       1             : /******************************************************************************************************
       2             : 
       3             :    (C) 2022-2025 IVAS codec Public Collaboration with portions copyright Dolby International AB, Ericsson AB,
       4             :    Fraunhofer-Gesellschaft zur Foerderung der angewandten Forschung e.V., Huawei Technologies Co. LTD.,
       5             :    Koninklijke Philips N.V., Nippon Telegraph and Telephone Corporation, Nokia Technologies Oy, Orange,
       6             :    Panasonic Holdings Corporation, Qualcomm Technologies, Inc., VoiceAge Corporation, and other
       7             :    contributors to this repository. All Rights Reserved.
       8             : 
       9             :    This software is protected by copyright law and by international treaties.
      10             :    The IVAS codec Public Collaboration consisting of Dolby International AB, Ericsson AB,
      11             :    Fraunhofer-Gesellschaft zur Foerderung der angewandten Forschung e.V., Huawei Technologies Co. LTD.,
      12             :    Koninklijke Philips N.V., Nippon Telegraph and Telephone Corporation, Nokia Technologies Oy, Orange,
      13             :    Panasonic Holdings Corporation, Qualcomm Technologies, Inc., VoiceAge Corporation, and other
      14             :    contributors to this repository retain full ownership rights in their respective contributions in
      15             :    the software. This notice grants no license of any kind, including but not limited to patent
      16             :    license, nor is any license granted by implication, estoppel or otherwise.
      17             : 
      18             :    Contributors are required to enter into the IVAS codec Public Collaboration agreement before making
      19             :    contributions.
      20             : 
      21             :    This software is provided "AS IS", without any express or implied warranties. The software is in the
      22             :    development stage. It is intended exclusively for experts who have experience with such software and
      23             :    solely for the purpose of inspection. All implied warranties of non-infringement, merchantability
      24             :    and fitness for a particular purpose are hereby disclaimed and excluded.
      25             : 
      26             :    Any dispute, controversy or claim arising under or in relation to providing this software shall be
      27             :    submitted to and settled by the final, binding jurisdiction of the courts of Munich, Germany in
      28             :    accordance with the laws of the Federal Republic of Germany excluding its conflict of law rules and
      29             :    the United Nations Convention on Contracts on the International Sales of Goods.
      30             : 
      31             : *******************************************************************************************************/
      32             : 
      33             : #include <stdint.h>
      34             : #include "options.h"
      35             : #include <math.h>
      36             : #include "prot.h"
      37             : #include "ivas_prot.h"
      38             : #include "ivas_prot_rend.h"
      39             : #include "cnst.h"
      40             : #include "ivas_cnst.h"
      41             : #include "ivas_rom_rend.h"
      42             : #include "ivas_rom_dec.h"
      43             : #include "ivas_rom_com.h"
      44             : #include "ivas_rom_binauralRenderer.h"
      45             : #ifdef DEBUGGING
      46             : #include "debug.h"
      47             : #endif
      48             : #include "wmc_auto.h"
      49             : 
      50             : 
      51             : /*-------------------------------------------------------------------------
      52             :  * Local constants
      53             :  *------------------------------------------------------------------------*/
      54             : 
      55             : #define REVERB_INPUT_DOWNMIX_CHANNELS ( 11 )
      56             : /* Downmix table for sparse frequency domain reverberator */
      57             : const float dmxmtx_table[BINAURAL_CHANNELS][REVERB_INPUT_DOWNMIX_CHANNELS] = {
      58             :     { 1.0f, 0.0f, 0.70709997f, 1.0f, 0.0f, 1.0f, 0.0f, 1.0f, 0.0f, 1.0f, 0.0f },
      59             :     { 0.0f, 1.0f, 0.70709997f, 0.0f, 1.0f, 0.0f, 1.0f, 0.0f, 1.0f, 0.0f, 1.0f },
      60             : };
      61             : 
      62             : /*-------------------------------------------------------------------------
      63             :  * ivas_binRenderer_filterModule()
      64             :  *
      65             :  *
      66             :  *-------------------------------------------------------------------------*/
      67             : 
      68     4370880 : static void ivas_binRenderer_filterModule(
      69             :     float out_Conv_CLDFB_real[BINAURAL_CHANNELS][MAX_PARAM_SPATIAL_SUBFRAMES][CLDFB_NO_CHANNELS_MAX], /* o  : real part of Binaural signals     */
      70             :     float out_Conv_CLDFB_imag[BINAURAL_CHANNELS][MAX_PARAM_SPATIAL_SUBFRAMES][CLDFB_NO_CHANNELS_MAX], /* o  : imag part of Binaural signals     */
      71             :     float CLDFB_real[][MAX_PARAM_SPATIAL_SUBFRAMES][CLDFB_NO_CHANNELS_MAX],                           /* i  : real part of LS signals           */
      72             :     float CLDFB_imag[][MAX_PARAM_SPATIAL_SUBFRAMES][CLDFB_NO_CHANNELS_MAX],                           /* i  : imag part of LS signals           */
      73             :     const int16_t numTimeSlots,                                                                       /* i  : number of time slots to process   */
      74             :     BINAURAL_RENDERER_HANDLE hBinRenderer,                                                            /* i/o: fastconv binaural renderer handle */
      75             :     const int16_t pos_idx                                                                             /* i  : pose index                        */
      76             : )
      77             : {
      78             :     int16_t bandIdx, k, chIdx, tapIdx;
      79             :     float *filterStatesLeftRealPtr, *filterStatesLeftImagPtr;
      80             :     const float *filterTapsLeftRealPtr, *filterTapsLeftImagPtr, *filterTapsRightRealPtr, *filterTapsRightImagPtr;
      81             : 
      82   202047330 :     for ( bandIdx = 0; bandIdx < hBinRenderer->conv_band; bandIdx++ )
      83             :     {
      84  2840229450 :         for ( chIdx = 0; chIdx < hBinRenderer->nInChannels; chIdx++ )
      85             :         {
      86  2642553000 :             filterStatesLeftRealPtr = (float *) &( hBinRenderer->hBinRenConvModule->filterStatesLeftReal[pos_idx][bandIdx][chIdx][0] );
      87  2642553000 :             filterStatesLeftImagPtr = (float *) &( hBinRenderer->hBinRenConvModule->filterStatesLeftImag[pos_idx][bandIdx][chIdx][0] );
      88             : 
      89  2642553000 :             filterTapsLeftRealPtr = hBinRenderer->hBinRenConvModule->filterTapsLeftReal[bandIdx][chIdx];
      90  2642553000 :             filterTapsLeftImagPtr = hBinRenderer->hBinRenConvModule->filterTapsLeftImag[bandIdx][chIdx];
      91  2642553000 :             filterTapsRightRealPtr = hBinRenderer->hBinRenConvModule->filterTapsRightReal[bandIdx][chIdx];
      92  2642553000 :             filterTapsRightImagPtr = hBinRenderer->hBinRenConvModule->filterTapsRightImag[bandIdx][chIdx];
      93             : 
      94 13172907240 :             for ( k = 0; k < numTimeSlots; k++ )
      95             :             {
      96 10530354240 :                 float outRealLeft = 0.0f, outRealRight = 0.0f, outImagLeft = 0.0f, outImagRight = 0.0f;
      97             : 
      98 >13093*10^7 :                 for ( tapIdx = hBinRenderer->hBinRenConvModule->numTapsArray[bandIdx] - 1; tapIdx > 0; tapIdx-- )
      99             :                 {
     100 >12040*10^7 :                     filterStatesLeftRealPtr[tapIdx] = filterStatesLeftRealPtr[tapIdx - 1];
     101 >12040*10^7 :                     filterStatesLeftImagPtr[tapIdx] = filterStatesLeftImagPtr[tapIdx - 1];
     102             : 
     103             :                     /* Left Real and Imag */
     104 >12040*10^7 :                     outRealLeft += ( filterStatesLeftRealPtr[tapIdx] * filterTapsLeftRealPtr[tapIdx] ) - ( filterStatesLeftImagPtr[tapIdx] * filterTapsLeftImagPtr[tapIdx] );
     105 >12040*10^7 :                     outImagLeft += ( filterStatesLeftRealPtr[tapIdx] * filterTapsLeftImagPtr[tapIdx] ) + ( filterStatesLeftImagPtr[tapIdx] * filterTapsLeftRealPtr[tapIdx] );
     106             : 
     107             :                     /* Right Real and Imag*/
     108 >12040*10^7 :                     outRealRight += ( filterStatesLeftRealPtr[tapIdx] * filterTapsRightRealPtr[tapIdx] ) - ( filterStatesLeftImagPtr[tapIdx] * filterTapsRightImagPtr[tapIdx] );
     109 >12040*10^7 :                     outImagRight += ( filterStatesLeftRealPtr[tapIdx] * filterTapsRightImagPtr[tapIdx] ) + ( filterStatesLeftImagPtr[tapIdx] * filterTapsRightRealPtr[tapIdx] );
     110             :                 }
     111             : 
     112 10530354240 :                 filterStatesLeftRealPtr[0] = CLDFB_real[chIdx][k][bandIdx];
     113 10530354240 :                 filterStatesLeftImagPtr[0] = CLDFB_imag[chIdx][k][bandIdx];
     114             : 
     115             : 
     116             :                 /* Left Real and Imag */
     117 10530354240 :                 out_Conv_CLDFB_real[0][k][bandIdx] += outRealLeft + ( filterStatesLeftRealPtr[0] * filterTapsLeftRealPtr[0] ) - ( filterStatesLeftImagPtr[0] * filterTapsLeftImagPtr[0] );
     118 10530354240 :                 out_Conv_CLDFB_imag[0][k][bandIdx] += outImagLeft + ( filterStatesLeftRealPtr[0] * filterTapsLeftImagPtr[0] ) + ( filterStatesLeftImagPtr[0] * filterTapsLeftRealPtr[0] );
     119             : 
     120             :                 /* Right Real and Imag */
     121 10530354240 :                 out_Conv_CLDFB_real[1][k][bandIdx] += outRealRight + ( filterStatesLeftRealPtr[0] * filterTapsRightRealPtr[0] ) - ( filterStatesLeftImagPtr[0] * filterTapsRightImagPtr[0] );
     122 10530354240 :                 out_Conv_CLDFB_imag[1][k][bandIdx] += outImagRight + ( filterStatesLeftRealPtr[0] * filterTapsRightImagPtr[0] ) + ( filterStatesLeftImagPtr[0] * filterTapsRightRealPtr[0] );
     123             :             }
     124             :         }
     125             :     }
     126             : 
     127     4370880 :     return;
     128             : }
     129             : 
     130             : 
     131             : /*-------------------------------------------------------------------------
     132             :  * ivas_binRenderer_convModuleOpen()
     133             :  *
     134             :  * Open convolution module handle of fastconv binaural renderer
     135             :  *-------------------------------------------------------------------------*/
     136             : 
     137       10035 : static ivas_error ivas_binRenderer_convModuleOpen(
     138             :     BINAURAL_RENDERER_HANDLE hBinRenderer,
     139             :     const int16_t renderer_type,
     140             :     const int16_t isLoudspeaker,
     141             :     const AUDIO_CONFIG input_config,
     142             :     const HRTFS_FASTCONV_HANDLE hHrtf,
     143             :     const int16_t num_poses )
     144             : {
     145             :     int16_t bandIdx, chIdx;
     146             :     BINRENDERER_CONV_MODULE_HANDLE hBinRenConvModule;
     147             :     int16_t pos_idx;
     148             : 
     149             :     /*-----------------------------------------------------------------*
     150             :      * prepare library opening
     151             :      *-----------------------------------------------------------------*/
     152             : 
     153       10035 :     if ( ( hBinRenConvModule = (BINRENDERER_CONV_MODULE_HANDLE) malloc( sizeof( BINRENDERER_CONV_MODULE ) ) ) == NULL )
     154             :     {
     155           0 :         return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for Convolution Module \n" ) );
     156             :     }
     157             : 
     158       10035 :     if ( !isLoudspeaker )
     159             :     {
     160        5478 :         hBinRenderer->nInChannels = audioCfg2channels( input_config );
     161             :     }
     162             :     else
     163             :     {
     164             :         /* Note: needs to be revisited if multiple LFE support is required */
     165        4557 :         hBinRenderer->nInChannels = ( audioCfg2channels( input_config ) - isLoudspeaker );
     166             :     }
     167             : 
     168       10035 :     hBinRenConvModule->numTaps = hHrtf->ntaps;
     169             : 
     170       10035 :     if ( renderer_type == RENDERER_BINAURAL_FASTCONV_ROOM )
     171             :     {
     172             :         /* Use variable order filtering */
     173        1788 :         bandIdx = 0;
     174       10728 :         for ( ; bandIdx < 5; bandIdx++ )
     175             :         {
     176        8940 :             hBinRenConvModule->numTapsArray[bandIdx] = hBinRenConvModule->numTaps;
     177             :         }
     178       10728 :         for ( ; bandIdx < 10; bandIdx++ )
     179             :         {
     180        8940 :             hBinRenConvModule->numTapsArray[bandIdx] = (int16_t) ceilf( 0.6f * hBinRenConvModule->numTaps );
     181             :         }
     182       19668 :         for ( ; bandIdx < 20; bandIdx++ )
     183             :         {
     184       17880 :             hBinRenConvModule->numTapsArray[bandIdx] = (int16_t) ceilf( 0.5f * hBinRenConvModule->numTaps );
     185             :         }
     186       19668 :         for ( ; bandIdx < 30; bandIdx++ )
     187             :         {
     188       17880 :             hBinRenConvModule->numTapsArray[bandIdx] = (int16_t) ceilf( 0.4f * hBinRenConvModule->numTaps );
     189             :         }
     190       28458 :         for ( ; bandIdx < hBinRenderer->conv_band; bandIdx++ )
     191             :         {
     192       26670 :             hBinRenConvModule->numTapsArray[bandIdx] = (int16_t) ceilf( 0.3f * hBinRenConvModule->numTaps );
     193             :         }
     194             :     }
     195             :     else
     196             :     {
     197             :         /* Use fixed order filtering */
     198        8247 :         bandIdx = 0;
     199      350007 :         for ( ; bandIdx < hBinRenderer->conv_band; bandIdx++ )
     200             :         {
     201      341760 :             hBinRenConvModule->numTapsArray[bandIdx] = hBinRenConvModule->numTaps;
     202             :         }
     203             :     }
     204             : 
     205             :     /* allocate memory for filter states */
     206       10035 :     if ( ( hBinRenConvModule->filterTapsLeftReal = (float ***) malloc( hBinRenderer->conv_band * sizeof( float ** ) ) ) == NULL )
     207             :     {
     208           0 :         return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for Convolution Module \n" ) );
     209             :     }
     210             : 
     211       10035 :     if ( ( hBinRenConvModule->filterTapsLeftImag = (float ***) malloc( hBinRenderer->conv_band * sizeof( float ** ) ) ) == NULL )
     212             :     {
     213           0 :         return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for Convolution Module \n" ) );
     214             :     }
     215             : 
     216       10035 :     if ( ( hBinRenConvModule->filterTapsRightReal = (float ***) malloc( hBinRenderer->conv_band * sizeof( float ** ) ) ) == NULL )
     217             :     {
     218           0 :         return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for Convolution Module \n" ) );
     219             :     }
     220             : 
     221       10035 :     if ( ( hBinRenConvModule->filterTapsRightImag = (float ***) malloc( hBinRenderer->conv_band * sizeof( float ** ) ) ) == NULL )
     222             :     {
     223           0 :         return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for Convolution Module \n" ) );
     224             :     }
     225             : 
     226      427665 :     for ( bandIdx = 0; bandIdx < hBinRenderer->conv_band; bandIdx++ )
     227             :     {
     228      417630 :         if ( ( hBinRenConvModule->filterTapsLeftReal[bandIdx] = (float **) malloc( hBinRenderer->nInChannels * sizeof( float * ) ) ) == NULL )
     229             :         {
     230           0 :             return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for Convolution Module \n" ) );
     231             :         }
     232             : 
     233      417630 :         if ( ( hBinRenConvModule->filterTapsLeftImag[bandIdx] = (float **) malloc( hBinRenderer->nInChannels * sizeof( float * ) ) ) == NULL )
     234             :         {
     235           0 :             return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for Convolution Module \n" ) );
     236             :         }
     237             : 
     238      417630 :         if ( ( hBinRenConvModule->filterTapsRightReal[bandIdx] = (float **) malloc( hBinRenderer->nInChannels * sizeof( float * ) ) ) == NULL )
     239             :         {
     240           0 :             return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for Convolution Module \n" ) );
     241             :         }
     242             : 
     243      417630 :         if ( ( hBinRenConvModule->filterTapsRightImag[bandIdx] = (float **) malloc( hBinRenderer->nInChannels * sizeof( float * ) ) ) == NULL )
     244             :         {
     245           0 :             return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for Convolution Module \n" ) );
     246             :         }
     247             :     }
     248             : 
     249       10035 :     if ( ( hBinRenConvModule->filterStatesLeftReal = (float ****) malloc( num_poses * sizeof( float *** ) ) ) == NULL )
     250             :     {
     251           0 :         return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for Convolution Module \n" ) );
     252             :     }
     253             : 
     254       10035 :     if ( ( hBinRenConvModule->filterStatesLeftImag = (float ****) malloc( num_poses * sizeof( float *** ) ) ) == NULL )
     255             :     {
     256           0 :         return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for Convolution Module \n" ) );
     257             :     }
     258             : 
     259       20070 :     for ( pos_idx = 0; pos_idx < num_poses; pos_idx++ )
     260             :     {
     261       10035 :         if ( ( hBinRenConvModule->filterStatesLeftReal[pos_idx] = (float ***) malloc( hBinRenderer->conv_band * sizeof( float ** ) ) ) == NULL )
     262             :         {
     263           0 :             return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for Convolution Module \n" ) );
     264             :         }
     265             : 
     266       10035 :         if ( ( hBinRenConvModule->filterStatesLeftImag[pos_idx] = (float ***) malloc( hBinRenderer->conv_band * sizeof( float ** ) ) ) == NULL )
     267             :         {
     268           0 :             return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for Convolution Module \n" ) );
     269             :         }
     270             : 
     271      427665 :         for ( bandIdx = 0; bandIdx < hBinRenderer->conv_band; bandIdx++ )
     272             :         {
     273      417630 :             if ( ( hBinRenConvModule->filterStatesLeftReal[pos_idx][bandIdx] = (float **) malloc( hBinRenderer->nInChannels * sizeof( float * ) ) ) == NULL )
     274             :             {
     275           0 :                 return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for Convolution Module \n" ) );
     276             :             }
     277             : 
     278      417630 :             if ( ( hBinRenConvModule->filterStatesLeftImag[pos_idx][bandIdx] = (float **) malloc( hBinRenderer->nInChannels * sizeof( float * ) ) ) == NULL )
     279             :             {
     280           0 :                 return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for Convolution Module \n" ) );
     281             :             }
     282             : 
     283     5494440 :             for ( chIdx = 0; chIdx < hBinRenderer->nInChannels; chIdx++ )
     284             :             {
     285     5076810 :                 if ( ( hBinRenConvModule->filterStatesLeftReal[pos_idx][bandIdx][chIdx] = (float *) malloc( hBinRenConvModule->numTapsArray[bandIdx] * sizeof( float ) ) ) == NULL )
     286             :                 {
     287           0 :                     return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for Convolution Module \n" ) );
     288             :                 }
     289             : 
     290     5076810 :                 if ( ( hBinRenConvModule->filterStatesLeftImag[pos_idx][bandIdx][chIdx] = (float *) malloc( hBinRenConvModule->numTapsArray[bandIdx] * sizeof( float ) ) ) == NULL )
     291             :                 {
     292           0 :                     return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for Convolution Module \n" ) );
     293             :                 }
     294             :             }
     295             :         }
     296             :     }
     297             : 
     298             :     /* set memories */
     299      427665 :     for ( bandIdx = 0; bandIdx < hBinRenderer->conv_band; bandIdx++ )
     300             :     {
     301     5494440 :         for ( chIdx = 0; chIdx < hBinRenderer->nInChannels; chIdx++ )
     302             :         {
     303     5076810 :             int16_t tmp = 0;
     304             : 
     305     5076810 :             tmp = chIdx;
     306     5076810 :             if ( isLoudspeaker )
     307             :             {
     308     1197450 :                 if ( input_config == IVAS_AUDIO_CONFIG_5_1 )
     309             :                 {
     310      578250 :                     tmp = channelIndex_CICP6[chIdx];
     311             :                 }
     312      619200 :                 else if ( input_config == IVAS_AUDIO_CONFIG_7_1 )
     313             :                 {
     314           0 :                     tmp = channelIndex_CICP12[chIdx];
     315             :                 }
     316      619200 :                 else if ( input_config == IVAS_AUDIO_CONFIG_5_1_2 )
     317             :                 {
     318       62160 :                     tmp = channelIndex_CICP14[chIdx];
     319             :                 }
     320      557040 :                 else if ( input_config == IVAS_AUDIO_CONFIG_5_1_4 )
     321             :                 {
     322           0 :                     tmp = channelIndex_CICP16[chIdx];
     323             :                 }
     324      557040 :                 else if ( input_config == IVAS_AUDIO_CONFIG_7_1_4 )
     325             :                 {
     326      557040 :                     tmp = channelIndex_CICP19[chIdx];
     327             :                 }
     328             : #ifdef DEBUGGING
     329             :                 else
     330             :                 {
     331             :                     return IVAS_ERROR( IVAS_ERR_INTERNAL_FATAL, "Error: Channel configuration not specified!\n\n" );
     332             :                 }
     333             : #endif
     334             :             }
     335             : 
     336     5076810 :             hBinRenConvModule->filterTapsLeftReal[bandIdx][chIdx] = hHrtf->leftReal[bandIdx][tmp];
     337     5076810 :             hBinRenConvModule->filterTapsLeftImag[bandIdx][chIdx] = hHrtf->leftImag[bandIdx][tmp];
     338     5076810 :             hBinRenConvModule->filterTapsRightReal[bandIdx][chIdx] = hHrtf->rightReal[bandIdx][tmp];
     339     5076810 :             hBinRenConvModule->filterTapsRightImag[bandIdx][chIdx] = hHrtf->rightImag[bandIdx][tmp];
     340             :         }
     341             :     }
     342             : 
     343       20070 :     for ( pos_idx = 0; pos_idx < num_poses; pos_idx++ )
     344             :     {
     345      427665 :         for ( bandIdx = 0; bandIdx < hBinRenderer->conv_band; bandIdx++ )
     346             :         {
     347     5494440 :             for ( chIdx = 0; chIdx < hBinRenderer->nInChannels; chIdx++ )
     348             :             {
     349             :                 /* set the memories to zero */
     350     5076810 :                 set_zero( hBinRenConvModule->filterStatesLeftReal[pos_idx][bandIdx][chIdx], hBinRenConvModule->numTapsArray[bandIdx] );
     351     5076810 :                 set_zero( hBinRenConvModule->filterStatesLeftImag[pos_idx][bandIdx][chIdx], hBinRenConvModule->numTapsArray[bandIdx] );
     352             :             }
     353             :         }
     354             :     }
     355             : 
     356       10035 :     hBinRenderer->hBinRenConvModule = hBinRenConvModule;
     357             : 
     358       10035 :     return IVAS_ERR_OK;
     359             : }
     360             : 
     361             : 
     362             : /*-------------------------------------------------------------------------*
     363             :  * ivas_init_binaural_hrtf()
     364             :  *
     365             :  * initialize memory for HrtfFastConv structure elements
     366             :  *-------------------------------------------------------------------------*/
     367             : 
     368        2829 : void ivas_init_binaural_hrtf(
     369             :     HRTFS_FASTCONV *HrtfFastConv /* i/o: FASTCONV HRTF structure */
     370             : )
     371             : {
     372             :     int16_t i;
     373             : 
     374        2829 :     HrtfFastConv->leftReal = NULL;
     375        2829 :     HrtfFastConv->leftImag = NULL;
     376        2829 :     HrtfFastConv->rightReal = NULL;
     377        2829 :     HrtfFastConv->rightImag = NULL;
     378        2829 :     HrtfFastConv->FASTCONV_latency_s = 0x00;
     379             : 
     380        2829 :     HrtfFastConv->n_channels = 0;
     381        2829 :     HrtfFastConv->allocate_init_flag = 0x00;
     382        2829 :     HrtfFastConv->ntaps = 0;
     383             : 
     384      172569 :     for ( i = 0; i < CLDFB_NO_CHANNELS_MAX; i++ )
     385             :     {
     386      169740 :         HrtfFastConv->fastconvReverberationEneCorrections[i] = 0x00;
     387      169740 :         HrtfFastConv->fastconvReverberationEneCorrections[i] = 0x00;
     388             :     }
     389             : 
     390        2829 :     return;
     391             : }
     392             : 
     393             : 
     394             : /*-------------------------------------------------------------------------*
     395             :  * ivas_alloc_pppMem()
     396             :  *
     397             :  * Allocate memory for tripple pointer elements
     398             :  *-------------------------------------------------------------------------*/
     399             : 
     400       11316 : static ivas_error ivas_alloc_pppMem(
     401             :     float ****pppMem,
     402             :     const int16_t dim1,
     403             :     const int16_t dim2,
     404             :     const int16_t dim3,
     405             :     const int16_t allocate_init_flag )
     406             : {
     407             :     int16_t i, j;
     408       11316 :     float ***localMem = NULL;
     409             : 
     410       11316 :     if ( ( localMem = (float ***) malloc( dim1 * sizeof( float ** ) ) ) == NULL )
     411             :     {
     412           0 :         return IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for HRTF memory" );
     413             :     }
     414             : 
     415      577116 :     for ( i = 0; i < dim1; i++ )
     416             :     {
     417      565800 :         if ( ( localMem[i] = (float **) malloc( dim2 * sizeof( float * ) ) ) == NULL )
     418             :         {
     419           0 :             return IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for HRTF memory" );
     420             :         }
     421      565800 :         if ( allocate_init_flag == 0 )
     422             :         {
     423     8942400 :             for ( j = 0; j < dim2; j++ )
     424             :             {
     425     8404800 :                 if ( ( localMem[i][j] = (float *) malloc( dim3 * sizeof( float ) ) ) == NULL )
     426             :                 {
     427           0 :                     return IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for HRTF memory" );
     428             :                 }
     429             :             }
     430             :         }
     431             :     }
     432             : 
     433       11316 :     *pppMem = localMem;
     434             : 
     435       11316 :     return IVAS_ERR_OK;
     436             : }
     437             : 
     438             : 
     439             : /*-------------------------------------------------------------------------*
     440             :  * ivas_allocate_binaural_hrtf()
     441             :  *
     442             :  * Allocate memory for HrtfFastConv structure elements
     443             :  *-------------------------------------------------------------------------*/
     444             : 
     445        3021 : ivas_error ivas_allocate_binaural_hrtf(
     446             :     HRTFS_FASTCONV *HrtfFastConv,    /* i/o: FASTCONV HRTF structure     */
     447             :     const int16_t n_channels,        /* i : number of input channels     */
     448             :     const int16_t allocate_init_flag /* i  : Memory allocation flag      */
     449             : )
     450             : {
     451        3021 :     HrtfFastConv->n_channels = n_channels;
     452             : 
     453        3021 :     if ( ( HrtfFastConv->leftReal != NULL ) && ( HrtfFastConv->leftImag != NULL ) && ( HrtfFastConv->rightReal != NULL ) && ( HrtfFastConv->rightImag != NULL ) )
     454             :     {
     455         192 :         return IVAS_ERR_OK;
     456             :     }
     457             :     else
     458             :     {
     459        2829 :         if ( IVAS_ERR_OK != ivas_alloc_pppMem( &HrtfFastConv->leftReal, BINAURAL_CONVBANDS, n_channels, HrtfFastConv->ntaps, allocate_init_flag ) )
     460             :         {
     461           0 :             return IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for HrtfFastConv->leftReal" );
     462             :         }
     463        2829 :         if ( IVAS_ERR_OK != ivas_alloc_pppMem( &HrtfFastConv->leftImag, BINAURAL_CONVBANDS, n_channels, HrtfFastConv->ntaps, allocate_init_flag ) )
     464             :         {
     465           0 :             return IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for HrtfFastConv->leftImag" );
     466             :         }
     467        2829 :         if ( IVAS_ERR_OK != ivas_alloc_pppMem( &HrtfFastConv->rightReal, BINAURAL_CONVBANDS, n_channels, HrtfFastConv->ntaps, allocate_init_flag ) )
     468             :         {
     469           0 :             return IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for HrtfFastConv->rightReal" );
     470             :         }
     471        2829 :         if ( IVAS_ERR_OK != ivas_alloc_pppMem( &HrtfFastConv->rightImag, BINAURAL_CONVBANDS, n_channels, HrtfFastConv->ntaps, allocate_init_flag ) )
     472             :         {
     473           0 :             return IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for HrtfFastConv->rightImag" );
     474             :         }
     475             :     }
     476             : 
     477        2829 :     return IVAS_ERR_OK;
     478             : }
     479             : 
     480             : 
     481             : /*-------------------------------------------------------------------------*
     482             :  * ivas_binaural_hrtf_open()
     483             :  *
     484             :  *
     485             :  *-------------------------------------------------------------------------*/
     486             : 
     487       10035 : static ivas_error ivas_binaural_hrtf_open(
     488             :     HRTFS_FASTCONV_HANDLE *hHrtfFastConv, /* i  : fastconv HRTF handle */
     489             :     const AUDIO_CONFIG input_config,      /* i  : output configuration */
     490             :     const RENDERER_TYPE renderer_type     /* i  : renderer type        */
     491             : )
     492             : {
     493             :     int16_t i, j;
     494             :     ivas_error error;
     495             :     int16_t n_channels;
     496             : 
     497       10035 :     if ( hHrtfFastConv != NULL && *hHrtfFastConv != NULL )
     498             :     {
     499             :         /* Tables already loaded from file */
     500        9894 :         return IVAS_ERR_OK;
     501             :     }
     502             :     else
     503             :     {
     504             :         /* Initialise tables from ROM */
     505             :         HRTFS_FASTCONV *HrtfFastConv;
     506             : 
     507         141 :         if ( ( HrtfFastConv = (HRTFS_FASTCONV *) malloc( sizeof( HRTFS_FASTCONV ) ) ) == NULL )
     508             :         {
     509           0 :             return IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Could not allocate memory for FastConv HRTF tables" );
     510             :         }
     511             : 
     512         141 :         ivas_init_binaural_hrtf( HrtfFastConv );
     513             : 
     514         141 :         if ( input_config == IVAS_AUDIO_CONFIG_BINAURAL || renderer_type == RENDERER_BINAURAL_FASTCONV )
     515             :         {
     516          99 :             HrtfFastConv->FASTCONV_latency_s = FASTCONV_HRIR_latency_s;
     517          99 :             HrtfFastConv->ntaps = BINAURAL_NTAPS;
     518             :         }
     519         141 :         if ( input_config == IVAS_AUDIO_CONFIG_HOA2 )
     520             :         {
     521           0 :             HrtfFastConv->FASTCONV_latency_s = FASTCONV_HOA2_latency_s;
     522           0 :             HrtfFastConv->ntaps = BINAURAL_NTAPS_SBA;
     523             :         }
     524         141 :         if ( input_config == IVAS_AUDIO_CONFIG_HOA3 )
     525             :         {
     526         105 :             HrtfFastConv->FASTCONV_latency_s = FASTCONV_HOA3_latency_s;
     527         105 :             HrtfFastConv->ntaps = BINAURAL_NTAPS_SBA;
     528             :         }
     529         141 :         if ( input_config == IVAS_AUDIO_CONFIG_FOA )
     530             :         {
     531           0 :             HrtfFastConv->FASTCONV_latency_s = FASTCONV_FOA_latency_s;
     532           0 :             HrtfFastConv->ntaps = BINAURAL_NTAPS_SBA;
     533             :         }
     534         141 :         if ( input_config == IVAS_AUDIO_CONFIG_BINAURAL || renderer_type == RENDERER_BINAURAL_FASTCONV_ROOM )
     535             :         {
     536          42 :             HrtfFastConv->FASTCONV_latency_s = FASTCONV_BRIR_latency_s;
     537          42 :             HrtfFastConv->ntaps = BINAURAL_NTAPS_MAX;
     538             :         }
     539             : 
     540         141 :         HrtfFastConv->allocate_init_flag = 1;
     541             : 
     542         141 :         n_channels = 0;
     543         141 :         if ( ( renderer_type == RENDERER_BINAURAL_FASTCONV || renderer_type == RENDERER_BINAURAL_FASTCONV_ROOM ) && input_config != IVAS_AUDIO_CONFIG_INVALID )
     544             :         {
     545         141 :             n_channels = HRTF_LS_CHANNELS;
     546             :         }
     547             : 
     548         141 :         if ( renderer_type == RENDERER_BINAURAL_FASTCONV )
     549             :         {
     550          99 :             if ( input_config == IVAS_AUDIO_CONFIG_HOA3 )
     551             :             {
     552          84 :                 n_channels = HOA3_CHANNELS;
     553             :             }
     554          15 :             else if ( input_config == IVAS_AUDIO_CONFIG_HOA2 )
     555             :             {
     556           0 :                 n_channels = HOA2_CHANNELS;
     557             :             }
     558          15 :             else if ( input_config == IVAS_AUDIO_CONFIG_FOA )
     559             :             {
     560           0 :                 n_channels = FOA_CHANNELS;
     561             :             }
     562             :         }
     563             : 
     564         141 :         if ( ( error = ivas_allocate_binaural_hrtf( HrtfFastConv, n_channels, HrtfFastConv->allocate_init_flag ) ) != IVAS_ERR_OK )
     565             :         {
     566           0 :             return error;
     567             :         }
     568             : 
     569        7191 :         for ( i = 0; i < BINAURAL_CONVBANDS; i++ )
     570             :         {
     571        7050 :             if ( renderer_type == RENDERER_BINAURAL_FASTCONV && HrtfFastConv->n_channels == HRTF_LS_CHANNELS )
     572             :             {
     573       12000 :                 for ( j = 0; j < HRTF_LS_CHANNELS; j++ )
     574             :                 {
     575       11250 :                     HrtfFastConv->leftReal[i][j] = leftHRIRReal[i][j];
     576       11250 :                     HrtfFastConv->leftImag[i][j] = leftHRIRImag[i][j];
     577       11250 :                     HrtfFastConv->rightReal[i][j] = rightHRIRReal[i][j];
     578       11250 :                     HrtfFastConv->rightImag[i][j] = rightHRIRImag[i][j];
     579             :                 }
     580             :             }
     581        6300 :             else if ( renderer_type == RENDERER_BINAURAL_FASTCONV_ROOM && HrtfFastConv->n_channels == HRTF_LS_CHANNELS )
     582             :             {
     583       33600 :                 for ( j = 0; j < HRTF_LS_CHANNELS; j++ )
     584             :                 {
     585       31500 :                     HrtfFastConv->leftReal[i][j] = leftBRIRReal[i][j];
     586       31500 :                     HrtfFastConv->leftImag[i][j] = leftBRIRImag[i][j];
     587       31500 :                     HrtfFastConv->rightReal[i][j] = rightBRIRReal[i][j];
     588       31500 :                     HrtfFastConv->rightImag[i][j] = rightBRIRImag[i][j];
     589             :                 }
     590             :             }
     591             : 
     592        7050 :             if ( input_config == IVAS_AUDIO_CONFIG_HOA3 && HrtfFastConv->n_channels == HOA3_CHANNELS )
     593             :             {
     594       71400 :                 for ( j = 0; j < HOA3_CHANNELS; j++ )
     595             :                 {
     596       67200 :                     HrtfFastConv->leftReal[i][j] = leftHRIRReal_HOA3[i][j];
     597       67200 :                     HrtfFastConv->leftImag[i][j] = leftHRIRImag_HOA3[i][j];
     598       67200 :                     HrtfFastConv->rightReal[i][j] = rightHRIRReal_HOA3[i][j];
     599       67200 :                     HrtfFastConv->rightImag[i][j] = rightHRIRImag_HOA3[i][j];
     600             :                 }
     601             :             }
     602             : 
     603             :             /* Note: IVAS_AUDIO_CONFIG_HOA2 and IVAS_AUDIO_CONFIG_FOA input configs. are not relevant in internal renderer
     604             :             as SBA to binaural always synthesizes HOA3 output for binauralization. However, the external renderer can use them. */
     605        7050 :             if ( input_config == IVAS_AUDIO_CONFIG_HOA2 && HrtfFastConv->n_channels == HOA2_CHANNELS )
     606             :             {
     607           0 :                 for ( j = 0; j < HOA2_CHANNELS; j++ )
     608             :                 {
     609           0 :                     HrtfFastConv->leftReal[i][j] = leftHRIRReal_HOA2[i][j];
     610           0 :                     HrtfFastConv->leftImag[i][j] = leftHRIRImag_HOA2[i][j];
     611           0 :                     HrtfFastConv->rightReal[i][j] = rightHRIRReal_HOA2[i][j];
     612           0 :                     HrtfFastConv->rightImag[i][j] = rightHRIRImag_HOA2[i][j];
     613             :                 }
     614             :             }
     615             : 
     616        7050 :             if ( input_config == IVAS_AUDIO_CONFIG_FOA && HrtfFastConv->n_channels == FOA_CHANNELS )
     617             :             {
     618           0 :                 for ( j = 0; j < FOA_CHANNELS; j++ )
     619             :                 {
     620           0 :                     HrtfFastConv->leftReal[i][j] = leftHRIRReal_FOA[i][j];
     621           0 :                     HrtfFastConv->leftImag[i][j] = leftHRIRImag_FOA[i][j];
     622           0 :                     HrtfFastConv->rightReal[i][j] = rightHRIRReal_FOA[i][j];
     623           0 :                     HrtfFastConv->rightImag[i][j] = rightHRIRImag_FOA[i][j];
     624             :                 }
     625             :             }
     626             :         }
     627             : 
     628         141 :         mvr2r( fastconvReverberationTimes, HrtfFastConv->fastconvReverberationTimes, CLDFB_NO_CHANNELS_MAX );
     629         141 :         mvr2r( fastconvReverberationEneCorrections, HrtfFastConv->fastconvReverberationEneCorrections, CLDFB_NO_CHANNELS_MAX );
     630             : 
     631         141 :         *hHrtfFastConv = HrtfFastConv;
     632             : 
     633         141 :         return IVAS_ERR_OK;
     634             :     }
     635             : }
     636             : 
     637             : 
     638             : /*-------------------------------------------------------------------------*
     639             :  * ivas_binaural_obtain_DMX()
     640             :  *
     641             :  *
     642             :  *-------------------------------------------------------------------------*/
     643             : 
     644     2744298 : static void ivas_binaural_obtain_DMX(
     645             :     const int16_t numTimeSlots,
     646             :     BINAURAL_RENDERER_HANDLE hBinRenderer,                               /* i/o: fastconv binaural renderer handle */
     647             :     float RealBuffer[][CLDFB_SLOTS_PER_SUBFRAME][CLDFB_NO_CHANNELS_MAX], /* i  : Contains the LS signals           */
     648             :     float ImagBuffer[][CLDFB_SLOTS_PER_SUBFRAME][CLDFB_NO_CHANNELS_MAX], /* i  : Contains the LS signals           */
     649             :     float realDMX[][CLDFB_SLOTS_PER_SUBFRAME][CLDFB_NO_CHANNELS_MAX],
     650             :     float imagDMX[][CLDFB_SLOTS_PER_SUBFRAME][CLDFB_NO_CHANNELS_MAX] )
     651             : {
     652             :     int16_t chIdx, bandIdx, k;
     653             : 
     654     2744298 :     if ( hBinRenderer->ivas_format == MC_FORMAT )
     655             :     {
     656             :         /* Obtain the downmix */
     657             :         float P_in[CLDFB_NO_CHANNELS_MAX];
     658             :         float P_out, factEQ;
     659             :         int16_t chOutIdx;
     660             :         float temp1, temp2;
     661             : 
     662     4333920 :         for ( k = 0; k < numTimeSlots; k++ )
     663             :         {
     664    10401408 :             for ( chOutIdx = 0; chOutIdx < BINAURAL_CHANNELS; chOutIdx++ )
     665             :             {
     666     6934272 :                 set_zero( realDMX[chOutIdx][k], CLDFB_NO_CHANNELS_MAX );
     667     6934272 :                 set_zero( imagDMX[chOutIdx][k], CLDFB_NO_CHANNELS_MAX );
     668             :             }
     669             :         }
     670             : 
     671     2600352 :         for ( chOutIdx = 0; chOutIdx < BINAURAL_CHANNELS; chOutIdx++ )
     672             :         {
     673     1733568 :             set_zero( P_in, hBinRenderer->conv_band );
     674             : 
     675    16304448 :             for ( chIdx = 0; chIdx < hBinRenderer->nInChannels; chIdx++ )
     676             :             {
     677    14570880 :                 float dmxConst = dmxmtx_table[chOutIdx][chIdx];
     678             : 
     679   701087520 :                 for ( bandIdx = 0; bandIdx < hBinRenderer->conv_band; bandIdx++ )
     680             :                 {
     681  3432583200 :                     for ( k = 0; k < numTimeSlots; k++ )
     682             :                     {
     683  2746066560 :                         temp1 = RealBuffer[chIdx][k][bandIdx] * dmxConst;
     684  2746066560 :                         temp2 = ImagBuffer[chIdx][k][bandIdx] * dmxConst;
     685  2746066560 :                         realDMX[chOutIdx][k][bandIdx] += temp1;
     686  2746066560 :                         imagDMX[chOutIdx][k][bandIdx] += temp2;
     687             : 
     688  2746066560 :                         P_in[bandIdx] += temp1 * temp1 + temp2 * temp2;
     689             :                     }
     690             :                 }
     691             :             }
     692             : 
     693    82972608 :             for ( bandIdx = 0; bandIdx < hBinRenderer->conv_band; bandIdx++ )
     694             :             {
     695    81239040 :                 P_out = 0.f;
     696   406195200 :                 for ( k = 0; k < numTimeSlots; k++ )
     697             :                 {
     698   324956160 :                     temp1 = realDMX[chOutIdx][k][bandIdx];
     699   324956160 :                     temp2 = imagDMX[chOutIdx][k][bandIdx];
     700   324956160 :                     P_out += temp1 * temp1 + temp2 * temp2;
     701             :                 }
     702    81239040 :                 factEQ = sqrtf( P_in[bandIdx] / ( P_out + 1e-20f ) );
     703    81239040 :                 if ( ( factEQ <= 1e-20f ) || ( P_in[bandIdx] <= 1e-20f ) || ( P_out <= 1e-20f ) )
     704             :                 {
     705      877878 :                     factEQ = 1.0f;
     706             :                 }
     707             : 
     708    81239040 :                 factEQ = max( min( factEQ, 2.0f ), 0.5f );
     709   406195200 :                 for ( k = 0; k < numTimeSlots; k++ )
     710             :                 {
     711   324956160 :                     realDMX[chOutIdx][k][bandIdx] *= factEQ;
     712   324956160 :                     imagDMX[chOutIdx][k][bandIdx] *= factEQ;
     713             :                 }
     714             :             }
     715             :         }
     716             :     }
     717     1877514 :     else if ( hBinRenderer->ivas_format == SBA_FORMAT || hBinRenderer->ivas_format == MASA_FORMAT )
     718             :     {
     719             :         float *outRealLeftPtr, *outImagLeftPtr, *outRealRightPtr, *outImagRightPtr;
     720             :         float *inRealPtr, *inImagPtr;
     721             : 
     722             :         /*compute DMX */
     723     9350655 :         for ( k = 0; k < numTimeSlots; k++ )
     724             :         {
     725     7473141 :             outRealLeftPtr = realDMX[0][k];
     726     7473141 :             outImagLeftPtr = imagDMX[0][k];
     727     7473141 :             outRealRightPtr = realDMX[1][k];
     728     7473141 :             outImagRightPtr = imagDMX[1][k];
     729     7473141 :             set_zero( outRealLeftPtr, CLDFB_NO_CHANNELS_MAX );
     730     7473141 :             set_zero( outImagLeftPtr, CLDFB_NO_CHANNELS_MAX );
     731     7473141 :             set_zero( outRealRightPtr, CLDFB_NO_CHANNELS_MAX );
     732     7473141 :             set_zero( outImagRightPtr, CLDFB_NO_CHANNELS_MAX );
     733             : 
     734             :             /*Ambisonics input requires different processing*/
     735     7473141 :             if ( hBinRenderer->nInChannels == HOA3_CHANNELS )
     736             :             {
     737             :                 float *inRealPtr_W, *inImagPtr_W;
     738             :                 float *inRealPtr_Y, *inImagPtr_Y;
     739             : 
     740     4762581 :                 inRealPtr_W = (float *) &( RealBuffer[0][k][0] );
     741     4762581 :                 inImagPtr_W = (float *) &( ImagBuffer[0][k][0] );
     742             : 
     743     4762581 :                 inRealPtr_Y = (float *) &( RealBuffer[1][k][0] );
     744     4762581 :                 inImagPtr_Y = (float *) &( ImagBuffer[1][k][0] );
     745             : 
     746   212600601 :                 for ( bandIdx = 0; bandIdx < hBinRenderer->conv_band; bandIdx++ )
     747             :                 {
     748   207838020 :                     outRealLeftPtr[bandIdx] = inRealPtr_W[bandIdx] + inRealPtr_Y[bandIdx];
     749   207838020 :                     outImagLeftPtr[bandIdx] = inImagPtr_W[bandIdx] + inImagPtr_Y[bandIdx];
     750             : 
     751   207838020 :                     outRealRightPtr[bandIdx] = inRealPtr_W[bandIdx] - inRealPtr_Y[bandIdx];
     752   207838020 :                     outImagRightPtr[bandIdx] = inImagPtr_W[bandIdx] - inImagPtr_Y[bandIdx];
     753             :                 }
     754             :             }
     755             :             else
     756             :             {
     757    32526720 :                 for ( chIdx = 0; chIdx < hBinRenderer->nInChannels; chIdx++ )
     758             :                 {
     759    29816160 :                     float foa_const = hBinRenderer->hReverb->foa_enc[chIdx][1];
     760             : 
     761    29816160 :                     inRealPtr = (float *) &( RealBuffer[chIdx][k][0] );
     762    29816160 :                     inImagPtr = (float *) &( ImagBuffer[chIdx][k][0] );
     763             : 
     764  1265695200 :                     for ( bandIdx = 0; bandIdx < hBinRenderer->conv_band; bandIdx++ )
     765             :                     {
     766  1235879040 :                         outRealLeftPtr[bandIdx] += inRealPtr[bandIdx] * ( 1.f + foa_const );
     767  1235879040 :                         outImagLeftPtr[bandIdx] += inImagPtr[bandIdx] * ( 1.f + foa_const );
     768             : 
     769  1235879040 :                         outRealRightPtr[bandIdx] += inRealPtr[bandIdx] * ( 1.f - foa_const );
     770  1235879040 :                         outImagRightPtr[bandIdx] += inImagPtr[bandIdx] * ( 1.f - foa_const );
     771             :                     }
     772             :                 }
     773             :             }
     774             :         }
     775             :     }
     776             : 
     777     2744298 :     return;
     778             : }
     779             : 
     780             : 
     781             : /*-------------------------------------------------------------------------
     782             :  * ivas_rend_openCldfbRend()
     783             :  *
     784             :  * Allocate and initialize CLDFB fast conv renderer handle
     785             :  *------------------------------------------------------------------------*/
     786             : 
     787           0 : ivas_error ivas_rend_openCldfbRend(
     788             :     CLDFB_REND_WRAPPER *pCldfbRend,
     789             :     const AUDIO_CONFIG inConfig,
     790             :     const AUDIO_CONFIG outConfig,
     791             :     const MULTI_BIN_REND_POSE_DATA *pMultiBinPoseData,
     792             :     const int32_t output_Fs )
     793             : {
     794             :     BINAURAL_RENDERER_HANDLE hBinRenderer;
     795             :     int16_t convBand;
     796             :     ivas_error error;
     797             : 
     798             :     /*-----------------------------------------------------------------*
     799             :      * prepare library opening
     800             :      *-----------------------------------------------------------------*/
     801             : 
     802           0 :     if ( ( hBinRenderer = (BINAURAL_RENDERER_HANDLE) malloc( sizeof( BINAURAL_RENDERER ) ) ) == NULL )
     803             :     {
     804           0 :         return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for Binaural Renderer\n" ) );
     805             :     }
     806             : 
     807           0 :     if ( ( hBinRenderer->hInputSetup = (IVAS_OUTPUT_SETUP_HANDLE) malloc( sizeof( IVAS_OUTPUT_SETUP ) ) ) == NULL )
     808             :     {
     809           0 :         return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for output setup Binaural Renderer\n" ) );
     810             :     }
     811             : 
     812           0 :     hBinRenderer->rotInCldfb = 1;
     813           0 :     hBinRenderer->ivas_format = SBA_FORMAT;
     814             : 
     815           0 :     hBinRenderer->max_band = (int16_t) ( ( BINAURAL_MAXBANDS * output_Fs ) / 48000 );
     816           0 :     convBand = hBinRenderer->max_band;
     817             : 
     818           0 :     hBinRenderer->timeSlots = MAX_PARAM_SPATIAL_SUBFRAMES; /* Corresponds to 5 msec sound to motion latency */
     819             : 
     820           0 :     if ( convBand > BINAURAL_CONVBANDS )
     821             :     {
     822           0 :         hBinRenderer->conv_band = BINAURAL_CONVBANDS;
     823             :     }
     824             :     else
     825             :     {
     826           0 :         hBinRenderer->conv_band = convBand;
     827             :     }
     828             : 
     829           0 :     ivas_output_init( hBinRenderer->hInputSetup, inConfig );
     830           0 :     if ( ( error = getAudioConfigNumChannels( inConfig, &hBinRenderer->hInputSetup->nchan_out_woLFE ) ) != IVAS_ERR_OK )
     831             :     {
     832           0 :         return error;
     833             :     }
     834             : 
     835           0 :     if ( outConfig == IVAS_AUDIO_CONFIG_BINAURAL_SPLIT_CODED || outConfig == IVAS_AUDIO_CONFIG_BINAURAL_SPLIT_PCM )
     836             :     {
     837             : #ifdef SPLIT_REND_WITH_HEAD_ROT_DEBUG
     838             :         hBinRenderer->numPoses = pMultiBinPoseData->num_poses + 1;
     839             : #else
     840           0 :         hBinRenderer->numPoses = pMultiBinPoseData->num_poses;
     841             : #endif
     842             :     }
     843             :     else
     844             :     {
     845           0 :         hBinRenderer->numPoses = 1;
     846             :     }
     847             : 
     848             :     /* Load HRTF tables */
     849           0 :     if ( ( error = ivas_binaural_hrtf_open( &pCldfbRend->hHrtfFastConv, hBinRenderer->hInputSetup->output_config, RENDERER_BINAURAL_FASTCONV ) ) != IVAS_ERR_OK )
     850             :     {
     851           0 :         return error;
     852             :     }
     853             : 
     854             :     /* Allocate memories and buffers needed for convolutional module */
     855           0 :     if ( ( error = ivas_binRenderer_convModuleOpen( hBinRenderer, RENDERER_BINAURAL_FASTCONV, hBinRenderer->hInputSetup->is_loudspeaker_setup, inConfig, pCldfbRend->hHrtfFastConv, hBinRenderer->numPoses ) ) != IVAS_ERR_OK )
     856             :     {
     857           0 :         return error;
     858             :     }
     859             : 
     860           0 :     pCldfbRend->binaural_latency_ns = (int32_t) ( pCldfbRend->hHrtfFastConv->FASTCONV_latency_s * 1000000000.f );
     861             : 
     862           0 :     hBinRenderer->hReverb = NULL;
     863           0 :     hBinRenderer->hEFAPdata = NULL;
     864             : 
     865           0 :     pCldfbRend->hCldfbRend = hBinRenderer;
     866             : 
     867           0 :     return IVAS_ERR_OK;
     868             : }
     869             : 
     870             : 
     871             : /*-------------------------------------------------------------------------
     872             :  * ivas_binRenderer_open()
     873             :  *
     874             :  * Open fastconv binaural renderer handle
     875             :  *-------------------------------------------------------------------------*/
     876             : 
     877       10035 : ivas_error ivas_binRenderer_open(
     878             :     Decoder_Struct *st_ivas /* i/o: IVAS decoder structure  */
     879             : )
     880             : {
     881             :     BINAURAL_RENDERER_HANDLE hBinRenderer;
     882             :     int16_t convBand, k;
     883             :     ivas_error error;
     884             :     const IVAS_ROOM_ACOUSTICS_CONFIG_DATA *pRoomAcoustics;
     885             : 
     886             :     /*-----------------------------------------------------------------*
     887             :      * prepare library opening
     888             :      *-----------------------------------------------------------------*/
     889             : 
     890       10035 :     if ( ( hBinRenderer = (BINAURAL_RENDERER_HANDLE) malloc( sizeof( BINAURAL_RENDERER ) ) ) == NULL )
     891             :     {
     892           0 :         return ( IVAS_ERROR( IVAS_ERR_FAILED_ALLOC, "Can not allocate memory for Binaural Renderer\n" ) );
     893             :     }
     894             : 
     895       10035 :     hBinRenderer->hInputSetup = &st_ivas->hIntSetup;
     896             : 
     897             :     /* Define of head rotation has to be done in binRendeder in CLDFB*/
     898       10035 :     hBinRenderer->rotInCldfb = 0;
     899       10035 :     if ( st_ivas->ivas_format == MC_FORMAT || st_ivas->ivas_format == SBA_FORMAT || st_ivas->ivas_format == SBA_ISM_FORMAT )
     900             :     {
     901       10035 :         hBinRenderer->rotInCldfb = 1;
     902             :     }
     903             : 
     904       10035 :     if ( st_ivas->hDecoderConfig->output_config == IVAS_AUDIO_CONFIG_BINAURAL_SPLIT_CODED || st_ivas->hDecoderConfig->output_config == IVAS_AUDIO_CONFIG_BINAURAL_SPLIT_PCM )
     905             :     {
     906             : #ifdef SPLIT_REND_WITH_HEAD_ROT_DEBUG
     907             :         hBinRenderer->numPoses = st_ivas->hSplitBinRend->splitrend.multiBinPoseData.num_poses + 1;
     908             : #else
     909           0 :         hBinRenderer->numPoses = st_ivas->hSplitBinRend->splitrend.multiBinPoseData.num_poses;
     910             : #endif
     911             :     }
     912             :     else
     913             :     {
     914       10035 :         hBinRenderer->numPoses = 1;
     915             :     }
     916             : 
     917             :     /* Declare some common variables needed for renderer */
     918             :     /* Which format used for binaural rendering (needed for late reverb) ? MC or SBA */
     919       10035 :     if ( st_ivas->hIntSetup.is_loudspeaker_setup )
     920             :     {
     921        4536 :         hBinRenderer->ivas_format = MC_FORMAT;
     922             :     }
     923             :     else
     924             :     {
     925        5499 :         hBinRenderer->ivas_format = SBA_FORMAT;
     926             :     }
     927       10035 :     hBinRenderer->max_band = (int16_t) ( ( BINAURAL_MAXBANDS * st_ivas->hDecoderConfig->output_Fs ) / 48000 );
     928       10035 :     convBand = hBinRenderer->max_band;
     929             : 
     930       10035 :     hBinRenderer->timeSlots = MAX_PARAM_SPATIAL_SUBFRAMES; /* Corresponds to 5 msec sound to motion latency */
     931             : 
     932       10035 :     if ( convBand > BINAURAL_CONVBANDS )
     933             :     {
     934        6393 :         hBinRenderer->conv_band = BINAURAL_CONVBANDS;
     935             :     }
     936             :     else
     937             :     {
     938        3642 :         hBinRenderer->conv_band = convBand;
     939             :     }
     940             : 
     941             :     /*LFE rendering switched off by default*/
     942       10035 :     hBinRenderer->render_lfe = 0;
     943             : 
     944       10035 :     if ( st_ivas->ivas_format != ISM_FORMAT && st_ivas->hIntSetup.is_loudspeaker_setup )
     945             :     {
     946        4536 :         hBinRenderer->render_lfe = 1;
     947             :     }
     948             : 
     949       10035 :     if ( st_ivas->hHrtfFastConv == NULL && st_ivas->hDecoderConfig->Opt_HRTF_binary )
     950             :     {
     951           0 :         return IVAS_ERROR( IVAS_ERR_INTERNAL, "HRTF binary file present but not used in FastConv renderer" );
     952             :     }
     953             : 
     954             :     /* Load HRTF tables */
     955       10035 :     if ( ( error = ivas_binaural_hrtf_open( &st_ivas->hHrtfFastConv, st_ivas->hIntSetup.output_config, st_ivas->renderer_type ) ) != IVAS_ERR_OK )
     956             :     {
     957           0 :         return error;
     958             :     }
     959             : 
     960       10035 :     if ( st_ivas->renderer_type == RENDERER_BINAURAL_FASTCONV_ROOM && ( st_ivas->hIntSetup.is_loudspeaker_setup == 0 ) )
     961          21 :     {
     962             :         IVAS_OUTPUT_SETUP out_setup;
     963             : 
     964             :         /* Allocate memories and buffers needed for convolutional module in CICP19 */
     965          21 :         if ( ( error = ivas_binRenderer_convModuleOpen( hBinRenderer, st_ivas->renderer_type, 1, IVAS_AUDIO_CONFIG_7_1_4, st_ivas->hHrtfFastConv, hBinRenderer->numPoses ) ) != IVAS_ERR_OK )
     966             :         {
     967           0 :             return error;
     968             :         }
     969             : 
     970          21 :         ivas_output_init( &out_setup, IVAS_AUDIO_CONFIG_7_1_4 );
     971             : 
     972          21 :         if ( st_ivas->hoa_dec_mtx == NULL )
     973             :         {
     974          21 :             if ( ( error = ivas_sba_get_hoa_dec_matrix( out_setup, &st_ivas->hoa_dec_mtx, st_ivas->hIntSetup.ambisonics_order ) ) != IVAS_ERR_OK )
     975             :             {
     976           0 :                 return error;
     977             :             }
     978             :         }
     979             : 
     980          21 :         hBinRenderer->hoa_dec_mtx = st_ivas->hoa_dec_mtx;
     981          21 :         st_ivas->binaural_latency_ns = (int32_t) ( st_ivas->hHrtfFastConv->FASTCONV_latency_s * 1000000000.f );
     982             :     }
     983             :     else
     984             :     {
     985             :         /* Allocate memories and buffers needed for convolutional module */
     986       10014 :         if ( ( error = ivas_binRenderer_convModuleOpen( hBinRenderer, st_ivas->renderer_type, st_ivas->hIntSetup.is_loudspeaker_setup, st_ivas->hIntSetup.output_config, st_ivas->hHrtfFastConv, hBinRenderer->numPoses ) ) != IVAS_ERR_OK )
     987             :         {
     988           0 :             return error;
     989             :         }
     990             : 
     991       10014 :         st_ivas->binaural_latency_ns = (int32_t) ( st_ivas->hHrtfFastConv->FASTCONV_latency_s * 1000000000.f );
     992             :     }
     993             : 
     994             :     /* Allocate memories needed for reverb module */
     995       10035 :     if ( st_ivas->renderer_type == RENDERER_BINAURAL_FASTCONV_ROOM || ( st_ivas->renderer_type == RENDERER_BINAURAL_FASTCONV && st_ivas->hOutSetup.output_config == IVAS_AUDIO_CONFIG_BINAURAL_ROOM_REVERB ) )
     996             :     {
     997        4857 :         pRoomAcoustics = ( st_ivas->hOutSetup.output_config == IVAS_AUDIO_CONFIG_BINAURAL_ROOM_REVERB ) ? &( st_ivas->hRenderConfig->roomAcoustics ) : NULL;
     998             : 
     999        4857 :         if ( ( error = ivas_binaural_reverb_init( &( hBinRenderer->hReverb ),
    1000             :                                                   st_ivas->hHrtfStatistics,
    1001        4857 :                                                   hBinRenderer->conv_band,
    1002        4857 :                                                   hBinRenderer->timeSlots,
    1003             :                                                   pRoomAcoustics,
    1004        4857 :                                                   st_ivas->hDecoderConfig->output_Fs,
    1005        4857 :                                                   st_ivas->hHrtfFastConv->fastconvReverberationTimes,
    1006        4857 :                                                   st_ivas->hHrtfFastConv->fastconvReverberationEneCorrections,
    1007             :                                                   NULL ) ) != IVAS_ERR_OK )
    1008             : 
    1009             :         {
    1010           0 :             return error;
    1011             :         }
    1012             :     }
    1013             :     else
    1014             :     {
    1015        5178 :         hBinRenderer->hReverb = NULL;
    1016             :     }
    1017             : 
    1018       10035 :     hBinRenderer->hEFAPdata = NULL;
    1019             : 
    1020       10035 :     if ( hBinRenderer->hReverb != NULL && hBinRenderer->nInChannels != HOA3_CHANNELS )
    1021             :     {
    1022        3099 :         if ( hBinRenderer->hInputSetup->is_loudspeaker_setup == 0 )
    1023             :         {
    1024         252 :             for ( k = 0; k < 11; k++ )
    1025             :             {
    1026         231 :                 ivas_dirac_dec_get_response( (int16_t) ls_azimuth_CICP19[k], (int16_t) ls_elevation_CICP19[k], hBinRenderer->hReverb->foa_enc[k], 1 );
    1027             :             }
    1028             :         }
    1029             : #ifdef IVAS_RTPDUMP
    1030        3078 :         else if ( st_ivas->ivas_format == MC_FORMAT && ( st_ivas->hDecoderConfig->Opt_Headrotation || st_ivas->hDecoderConfig->Opt_ExternalOrientation || st_ivas->hCombinedOrientationData ) )
    1031             : #else
    1032             :         else if ( st_ivas->ivas_format == MC_FORMAT && ( st_ivas->hDecoderConfig->Opt_Headrotation || st_ivas->hDecoderConfig->Opt_ExternalOrientation ) )
    1033             : #endif
    1034             :         {
    1035           6 :             if ( ( error = efap_init_data( &( st_ivas->hEFAPdata ), st_ivas->hIntSetup.ls_azimuth, st_ivas->hIntSetup.ls_elevation, st_ivas->hIntSetup.nchan_out_woLFE, EFAP_MODE_EFAP ) ) != IVAS_ERR_OK )
    1036             :             {
    1037           0 :                 return error;
    1038             :             }
    1039             : 
    1040             :             /* Copy handles to bin renderer handle*/
    1041           6 :             hBinRenderer->hEFAPdata = st_ivas->hEFAPdata;
    1042             :         }
    1043             :     }
    1044             : 
    1045             :     /* Copy the handles to main handle */
    1046       10035 :     st_ivas->hBinRenderer = hBinRenderer;
    1047             : 
    1048       10035 :     return IVAS_ERR_OK;
    1049             : }
    1050             : 
    1051             : 
    1052             : /*-------------------------------------------------------------------------
    1053             :  * ivas_binRenderer_convModuleClose()
    1054             :  *
    1055             :  * Close convolution module handle of fastconv binaural renderer
    1056             :  *------------------------------------------------------------------------*/
    1057             : 
    1058       10035 : static void ivas_binRenderer_convModuleClose(
    1059             :     BINAURAL_RENDERER_HANDLE *hBinRenderer, /* i/o: fastconv binaural renderer handle    */
    1060             :     const int16_t num_poses                 /* i  : number of poses                      */
    1061             : )
    1062             : {
    1063             :     int16_t bandIdx, chIdx;
    1064             :     int16_t posIdx;
    1065             :     BINRENDERER_CONV_MODULE_HANDLE hBinRenConvModule;
    1066             : 
    1067       10035 :     hBinRenConvModule = ( *hBinRenderer )->hBinRenConvModule;
    1068             : 
    1069       10035 :     if ( hBinRenConvModule == NULL )
    1070             :     {
    1071           0 :         return;
    1072             :     }
    1073             : 
    1074      427665 :     for ( bandIdx = 0; bandIdx < ( *hBinRenderer )->conv_band; bandIdx++ )
    1075             :     {
    1076      417630 :         free( hBinRenConvModule->filterTapsLeftReal[bandIdx] );
    1077      417630 :         hBinRenConvModule->filterTapsLeftReal[bandIdx] = NULL;
    1078             : 
    1079      417630 :         free( hBinRenConvModule->filterTapsLeftImag[bandIdx] );
    1080      417630 :         hBinRenConvModule->filterTapsLeftImag[bandIdx] = NULL;
    1081             : 
    1082      417630 :         free( hBinRenConvModule->filterTapsRightReal[bandIdx] );
    1083      417630 :         hBinRenConvModule->filterTapsRightReal[bandIdx] = NULL;
    1084             : 
    1085      417630 :         free( hBinRenConvModule->filterTapsRightImag[bandIdx] );
    1086      417630 :         hBinRenConvModule->filterTapsRightImag[bandIdx] = NULL;
    1087             :     }
    1088             : 
    1089       10035 :     free( hBinRenConvModule->filterTapsLeftReal );
    1090       10035 :     hBinRenConvModule->filterTapsLeftReal = NULL;
    1091             : 
    1092       10035 :     free( hBinRenConvModule->filterTapsLeftImag );
    1093       10035 :     hBinRenConvModule->filterTapsLeftImag = NULL;
    1094             : 
    1095       10035 :     free( hBinRenConvModule->filterTapsRightReal );
    1096       10035 :     hBinRenConvModule->filterTapsRightReal = NULL;
    1097             : 
    1098       10035 :     free( hBinRenConvModule->filterTapsRightImag );
    1099       10035 :     hBinRenConvModule->filterTapsRightImag = NULL;
    1100             : 
    1101       20070 :     for ( posIdx = 0; posIdx < num_poses; posIdx++ )
    1102             :     {
    1103      427665 :         for ( bandIdx = 0; bandIdx < ( *hBinRenderer )->conv_band; bandIdx++ )
    1104             :         {
    1105     5494440 :             for ( chIdx = 0; chIdx < ( *hBinRenderer )->nInChannels; chIdx++ )
    1106             :             {
    1107     5076810 :                 free( hBinRenConvModule->filterStatesLeftReal[posIdx][bandIdx][chIdx] );
    1108     5076810 :                 hBinRenConvModule->filterStatesLeftReal[posIdx][bandIdx][chIdx] = NULL;
    1109             : 
    1110     5076810 :                 free( hBinRenConvModule->filterStatesLeftImag[posIdx][bandIdx][chIdx] );
    1111     5076810 :                 hBinRenConvModule->filterStatesLeftImag[posIdx][bandIdx][chIdx] = NULL;
    1112             :             }
    1113             : 
    1114      417630 :             free( hBinRenConvModule->filterStatesLeftReal[posIdx][bandIdx] );
    1115      417630 :             hBinRenConvModule->filterStatesLeftReal[posIdx][bandIdx] = NULL;
    1116             : 
    1117      417630 :             free( hBinRenConvModule->filterStatesLeftImag[posIdx][bandIdx] );
    1118      417630 :             hBinRenConvModule->filterStatesLeftImag[posIdx][bandIdx] = NULL;
    1119             :         }
    1120             : 
    1121       10035 :         free( hBinRenConvModule->filterStatesLeftReal[posIdx] );
    1122       10035 :         hBinRenConvModule->filterStatesLeftReal[posIdx] = NULL;
    1123             : 
    1124       10035 :         free( hBinRenConvModule->filterStatesLeftImag[posIdx] );
    1125       10035 :         hBinRenConvModule->filterStatesLeftImag[posIdx] = NULL;
    1126             :     }
    1127       10035 :     free( hBinRenConvModule->filterStatesLeftReal );
    1128       10035 :     hBinRenConvModule->filterStatesLeftReal = NULL;
    1129             : 
    1130       10035 :     free( hBinRenConvModule->filterStatesLeftImag );
    1131       10035 :     hBinRenConvModule->filterStatesLeftImag = NULL;
    1132             : 
    1133       10035 :     free( ( *hBinRenderer )->hBinRenConvModule );
    1134       10035 :     ( *hBinRenderer )->hBinRenConvModule = NULL;
    1135             : 
    1136       10035 :     return;
    1137             : }
    1138             : 
    1139             : 
    1140             : /*-------------------------------------------------------------------------
    1141             :  * ivas_binRenderer_close()
    1142             :  *
    1143             :  * Close fastconv binaural renderer memories
    1144             :  *------------------------------------------------------------------------*/
    1145             : 
    1146       11836 : void ivas_binRenderer_close(
    1147             :     BINAURAL_RENDERER_HANDLE *hBinRenderer /* i/o: fastconv binaural renderer handle    */
    1148             : )
    1149             : {
    1150       11836 :     if ( hBinRenderer == NULL || *hBinRenderer == NULL )
    1151             :     {
    1152        1801 :         return;
    1153             :     }
    1154             : 
    1155       10035 :     if ( ( *hBinRenderer )->hBinRenConvModule != NULL )
    1156             :     {
    1157       10035 :         ivas_binRenderer_convModuleClose( hBinRenderer, ( *hBinRenderer )->numPoses );
    1158             :     }
    1159             : 
    1160       10035 :     if ( ( *hBinRenderer )->hReverb != NULL )
    1161             :     {
    1162        4857 :         ivas_binaural_reverb_close( &( ( *hBinRenderer )->hReverb ) );
    1163             :     }
    1164             : 
    1165       10035 :     free( *hBinRenderer );
    1166       10035 :     *hBinRenderer = NULL;
    1167             : 
    1168       10035 :     return;
    1169             : }
    1170             : 
    1171             : 
    1172             : /*-------------------------------------------------------------------------
    1173             :  * ivas_free_pppHrtfMem()
    1174             :  *
    1175             :  * Free fastconv binaural renderer hrtf memories
    1176             :  *------------------------------------------------------------------------*/
    1177             : 
    1178       11316 : static void ivas_free_pppHrtfMem(
    1179             :     float ****ppppHRIR,
    1180             :     const int16_t dim,
    1181             :     const int16_t alloc_init )
    1182             : {
    1183             :     int16_t i, j;
    1184             : 
    1185       11316 :     if ( *ppppHRIR != NULL )
    1186             :     {
    1187      577116 :         for ( i = 0; i < BINAURAL_CONVBANDS; i++ )
    1188             :         {
    1189      565800 :             if ( alloc_init == 0 )
    1190             :             {
    1191     8942400 :                 for ( j = 0; j < dim; j++ )
    1192             :                 {
    1193     8404800 :                     free( ( *ppppHRIR )[i][j] );
    1194     8404800 :                     ( *ppppHRIR )[i][j] = NULL;
    1195             :                 }
    1196             :             }
    1197      565800 :             free( ( *ppppHRIR )[i] );
    1198      565800 :             ( *ppppHRIR )[i] = NULL;
    1199             :         }
    1200       11316 :         free( *ppppHRIR );
    1201       11316 :         *ppppHRIR = NULL;
    1202             :     }
    1203             : 
    1204       11316 :     return;
    1205             : }
    1206             : 
    1207             : 
    1208             : /*-------------------------------------------------------------------------
    1209             :  * ivas_binaural_hrtf_close()
    1210             :  *
    1211             :  * Close fastconv binaural renderer hrtf memories
    1212             :  *------------------------------------------------------------------------*/
    1213             : 
    1214       16504 : void ivas_binaural_hrtf_close(
    1215             :     HRTFS_FASTCONV_HANDLE *hHrtfFastConv /* i  : fastconv HRTF handle */
    1216             : )
    1217             : {
    1218             :     int16_t allocate_init_flag;
    1219             :     int16_t n_channels;
    1220             : 
    1221       16504 :     if ( hHrtfFastConv == NULL || *hHrtfFastConv == NULL )
    1222             :     {
    1223       13675 :         return;
    1224             :     }
    1225             : 
    1226        2829 :     allocate_init_flag = ( *hHrtfFastConv )->allocate_init_flag;
    1227        2829 :     n_channels = ( *hHrtfFastConv )->n_channels;
    1228             : 
    1229        2829 :     ivas_free_pppHrtfMem( &( *hHrtfFastConv )->leftReal, n_channels, allocate_init_flag );
    1230        2829 :     ivas_free_pppHrtfMem( &( *hHrtfFastConv )->leftImag, n_channels, allocate_init_flag );
    1231        2829 :     ivas_free_pppHrtfMem( &( *hHrtfFastConv )->rightReal, n_channels, allocate_init_flag );
    1232        2829 :     ivas_free_pppHrtfMem( &( *hHrtfFastConv )->rightImag, n_channels, allocate_init_flag );
    1233             : 
    1234        2829 :     return;
    1235             : }
    1236             : 
    1237             : 
    1238             : /*-------------------------------------------------------------------------*
    1239             :  * ivas_binaural_add_LFE()
    1240             :  *
    1241             :  * The functions adds the LFE to the left and right channels after binaural rendering
    1242             :  *-------------------------------------------------------------------------*/
    1243             : 
    1244     1795364 : void ivas_binaural_add_LFE(
    1245             :     Decoder_Struct *st_ivas, /* i/o: IVAS decoder structure                                 */
    1246             :     int16_t output_frame,    /* i  : length of input frame                                  */
    1247             :     float *input_f[],        /* i  : transport channels                                     */
    1248             :     float *output_f[]        /* o  : synthesized core-coder transport channels/DirAC output */
    1249             : )
    1250             : {
    1251             :     int16_t render_lfe, idx_lfe;
    1252             :     float gain;
    1253             :     float lfe_tc[L_FRAME48k];
    1254             : 
    1255     1795364 :     if ( st_ivas->hBinRenderer != NULL )
    1256             :     {
    1257       62916 :         render_lfe = st_ivas->hBinRenderer->render_lfe;
    1258             :     }
    1259             :     else
    1260             :     {
    1261     1732448 :         render_lfe = TRUE;
    1262             :     }
    1263             : 
    1264     1795364 :     if ( render_lfe )
    1265             :     {
    1266     1795364 :         if ( st_ivas->renderer_type == RENDERER_BINAURAL_OBJECTS_TD )
    1267             :         {
    1268      281935 :             gain = GAIN_LFE;
    1269             :         }
    1270             :         else
    1271             :         {
    1272     1513429 :             gain = ( ( st_ivas->hCrendWrapper != NULL ) && ( st_ivas->hCrendWrapper->hHrtfCrend != NULL ) ) ? st_ivas->hCrendWrapper->hHrtfCrend->gain_lfe : GAIN_LFE;
    1273             :         }
    1274             : 
    1275     3515601 :         for ( idx_lfe = 0; idx_lfe < st_ivas->hIntSetup.num_lfe; idx_lfe++ )
    1276             :         {
    1277     1720237 :             v_multc( input_f[st_ivas->hIntSetup.index_lfe[idx_lfe]], gain, lfe_tc, output_frame );
    1278             :             /* copy LFE to left and right channels */
    1279     1720237 :             v_add( output_f[0], lfe_tc, output_f[0], output_frame );
    1280     1720237 :             v_add( output_f[1], lfe_tc, output_f[1], output_frame );
    1281             :         }
    1282             :     }
    1283             : 
    1284     1795364 :     return;
    1285             : }
    1286             : 
    1287             : 
    1288             : /*-------------------------------------------------------------------------
    1289             :  * ivas_binRenderer()
    1290             :  *
    1291             :  * Fastconv binaural renderer main function
    1292             :  *-------------------------------------------------------------------------*/
    1293             : 
    1294     4370880 : void ivas_binRenderer(
    1295             :     BINAURAL_RENDERER_HANDLE hBinRenderer, /* i/o: binaural renderer handle                     */
    1296             :     const MULTI_BIN_REND_POSE_DATA *pMultiBinPoseData,
    1297             :     COMBINED_ORIENTATION_HANDLE hCombinedOrientationData, /* i  : combined head and external orientation handle*/
    1298             :     const int16_t numTimeSlots,                           /* i  : number of time slots to render               */
    1299             : #ifdef SPLIT_REND_WITH_HEAD_ROT_DEBUG
    1300             :     HEAD_TRACK_DATA_HANDLE hPostRendHeadTrackData,
    1301             : #endif
    1302             :     float Cldfb_RealBuffer_Binaural[][BINAURAL_CHANNELS][MAX_PARAM_SPATIAL_SUBFRAMES][CLDFB_NO_CHANNELS_MAX], /* o  : Rotated Binaural signals */
    1303             :     float Cldfb_ImagBuffer_Binaural[][BINAURAL_CHANNELS][MAX_PARAM_SPATIAL_SUBFRAMES][CLDFB_NO_CHANNELS_MAX], /* o  : Rotated Binaural signals */
    1304             :     float RealBuffer[][MAX_PARAM_SPATIAL_SUBFRAMES][CLDFB_NO_CHANNELS_MAX],                                   /* i  : LS signals       */
    1305             :     float ImagBuffer[][MAX_PARAM_SPATIAL_SUBFRAMES][CLDFB_NO_CHANNELS_MAX]                                    /* i  : LS signals       */
    1306             : )
    1307             : {
    1308             :     int16_t chIdx, k;
    1309             :     int16_t pos_idx, num_poses;
    1310             :     float RealBuffer_local[MAX_OUTPUT_CHANNELS][MAX_PARAM_SPATIAL_SUBFRAMES][CLDFB_NO_CHANNELS_MAX];
    1311             :     float ImagBuffer_local[MAX_OUTPUT_CHANNELS][MAX_PARAM_SPATIAL_SUBFRAMES][CLDFB_NO_CHANNELS_MAX];
    1312             : 
    1313     4370880 :     push_wmops( "fastconv_binaural_rendering" );
    1314     4370880 :     num_poses = hBinRenderer->numPoses;
    1315             : 
    1316             :     /* Compute Convolution */
    1317             :     /* memory reset for the binaural output */
    1318     8741760 :     for ( pos_idx = 0; pos_idx < num_poses; pos_idx++ )
    1319             :     {
    1320    13112640 :         for ( chIdx = 0; chIdx < BINAURAL_CHANNELS; chIdx++ )
    1321             :         {
    1322    43596504 :             for ( k = 0; k < numTimeSlots; k++ )
    1323             :             {
    1324    34854744 :                 set_zero( Cldfb_RealBuffer_Binaural[pos_idx][chIdx][k], CLDFB_NO_CHANNELS_MAX );
    1325    34854744 :                 set_zero( Cldfb_ImagBuffer_Binaural[pos_idx][chIdx][k], CLDFB_NO_CHANNELS_MAX );
    1326             :             }
    1327             :         }
    1328             :     }
    1329             : 
    1330    66258348 :     for ( chIdx = 0; chIdx < hBinRenderer->hInputSetup->nchan_out_woLFE; chIdx++ )
    1331             :     {
    1332   308538972 :         for ( k = 0; k < numTimeSlots; k++ )
    1333             :         {
    1334   246651504 :             mvr2r( RealBuffer[chIdx][k], RealBuffer_local[chIdx][k], CLDFB_NO_CHANNELS_MAX );
    1335   246651504 :             mvr2r( ImagBuffer[chIdx][k], ImagBuffer_local[chIdx][k], CLDFB_NO_CHANNELS_MAX );
    1336             :         }
    1337             :     }
    1338             : 
    1339             :     /* Head rotation in HOA3 or CICPx */
    1340     4370880 :     if ( hCombinedOrientationData != NULL && hCombinedOrientationData->enableCombinedOrientation[hCombinedOrientationData->subframe_idx] && hBinRenderer->rotInCldfb )
    1341             :     {
    1342     1865013 :         if ( hBinRenderer->hInputSetup->is_loudspeaker_setup == 0 )
    1343             :         {
    1344             :             /* Rotation in SHD (HOA3) */
    1345     1669797 :             if ( hCombinedOrientationData->shd_rot_max_order == -1 )
    1346             :             {
    1347      774477 :                 rotateFrame_shd_cldfb( RealBuffer, ImagBuffer, hCombinedOrientationData->Rmat[hCombinedOrientationData->subframe_idx], hBinRenderer->hInputSetup->nchan_out_woLFE, numTimeSlots, 3 );
    1348             :             }
    1349      895320 :             else if ( hCombinedOrientationData->shd_rot_max_order > 0 )
    1350             :             {
    1351        9600 :                 rotateFrame_shd_cldfb( RealBuffer, ImagBuffer, hCombinedOrientationData->Rmat[hCombinedOrientationData->subframe_idx], hBinRenderer->hInputSetup->nchan_out_woLFE, numTimeSlots, hCombinedOrientationData->shd_rot_max_order );
    1352             :             }
    1353             :         }
    1354             :         else
    1355             :         {
    1356             :             /* Rotation in SD (CICPx) */
    1357      195216 :             rotateFrame_sd_cldfb( hCombinedOrientationData->Rmat[hCombinedOrientationData->subframe_idx], RealBuffer, ImagBuffer, hBinRenderer->hInputSetup, hBinRenderer->hEFAPdata, numTimeSlots, hBinRenderer->conv_band );
    1358             :         }
    1359             :     }
    1360             : 
    1361             :     /* HOA decoding to CICP19 if needed*/
    1362     4370880 :     if ( hBinRenderer->hInputSetup->is_loudspeaker_setup == 0 &&
    1363     3360348 :          ( hBinRenderer->nInChannels != HOA3_CHANNELS && hBinRenderer->nInChannels != HOA2_CHANNELS && hBinRenderer->nInChannels != FOA_CHANNELS ) )
    1364             :     {
    1365      677640 :         ivas_sba2mc_cldfb( *( hBinRenderer->hInputSetup ), RealBuffer, ImagBuffer, hBinRenderer->nInChannels, hBinRenderer->conv_band, numTimeSlots, hBinRenderer->hoa_dec_mtx );
    1366             :     }
    1367             : 
    1368     4370880 :     ivas_binRenderer_filterModule( Cldfb_RealBuffer_Binaural[0], Cldfb_ImagBuffer_Binaural[0], RealBuffer, ImagBuffer, numTimeSlots, hBinRenderer, 0 );
    1369             : 
    1370     4370880 :     if ( pMultiBinPoseData != NULL )
    1371             :     {
    1372           0 :         if ( pMultiBinPoseData->num_poses > 1 )
    1373             :         {
    1374             :             IVAS_QUATERNION Quaternions_rel, Quaternions_abs, *Quaternions_ref;
    1375             :             float Rmat_local[3][3];
    1376             : 
    1377           0 :             if ( hCombinedOrientationData && hBinRenderer->rotInCldfb )
    1378             :             {
    1379           0 :                 Quaternions_ref = &hCombinedOrientationData->Quaternions[0];
    1380           0 :                 Quaternions_rel.w = -3.0f; /*euler*/
    1381           0 :                 Quaternions_abs.w = -3.0f;
    1382             : 
    1383           0 :                 if ( hCombinedOrientationData->shd_rot_max_order == 0 )
    1384             :                 {
    1385             :                     /*HOA signal already rotated by DirAC*/
    1386           0 :                     Quaternions_abs.x = 0.0f;
    1387           0 :                     Quaternions_abs.y = 0.0f;
    1388           0 :                     Quaternions_abs.z = 0.0f;
    1389             :                 }
    1390             :                 else
    1391             :                 {
    1392             :                     /*euler*/
    1393           0 :                     Quat2EulerDegree( *Quaternions_ref, &Quaternions_abs.z, &Quaternions_abs.y, &Quaternions_abs.x ); /*order in Quat2Euler seems to be reversed ?*/
    1394             :                 }
    1395             : 
    1396           0 :                 for ( pos_idx = 1; pos_idx < pMultiBinPoseData->num_poses; pos_idx++ )
    1397             :                 {
    1398           0 :                     for ( chIdx = 0; chIdx < hBinRenderer->hInputSetup->nchan_out_woLFE; chIdx++ )
    1399             :                     {
    1400           0 :                         for ( k = 0; k < numTimeSlots; k++ )
    1401             :                         {
    1402           0 :                             mvr2r( RealBuffer_local[chIdx][k], RealBuffer[chIdx][k], CLDFB_NO_CHANNELS_MAX );
    1403           0 :                             mvr2r( ImagBuffer_local[chIdx][k], ImagBuffer[chIdx][k], CLDFB_NO_CHANNELS_MAX );
    1404             :                         }
    1405             :                     }
    1406           0 :                     Quaternions_rel.x = pMultiBinPoseData->relative_head_poses[pos_idx][0] - pMultiBinPoseData->relative_head_poses[pos_idx - 1][0];
    1407           0 :                     Quaternions_rel.y = pMultiBinPoseData->relative_head_poses[pos_idx][1] - pMultiBinPoseData->relative_head_poses[pos_idx - 1][1];
    1408           0 :                     Quaternions_rel.z = pMultiBinPoseData->relative_head_poses[pos_idx][2] - pMultiBinPoseData->relative_head_poses[pos_idx - 1][2];
    1409           0 :                     Quaternions_abs.x = Quaternions_abs.x + Quaternions_rel.x;
    1410           0 :                     Quaternions_abs.y = Quaternions_abs.y + Quaternions_rel.y;
    1411           0 :                     Quaternions_abs.z = Quaternions_abs.z + Quaternions_rel.z;
    1412             : 
    1413           0 :                     QuatToRotMat( Quaternions_abs, Rmat_local );
    1414             : 
    1415           0 :                     if ( hBinRenderer->hInputSetup->is_loudspeaker_setup )
    1416             :                     {
    1417           0 :                         rotateFrame_sd_cldfb( Rmat_local, RealBuffer, ImagBuffer, hBinRenderer->hInputSetup, hBinRenderer->hEFAPdata, numTimeSlots, hBinRenderer->conv_band );
    1418             :                     }
    1419             :                     else
    1420             :                     {
    1421           0 :                         rotateFrame_shd_cldfb( RealBuffer, ImagBuffer, Rmat_local, hBinRenderer->hInputSetup->nchan_out_woLFE, numTimeSlots, hBinRenderer->hInputSetup->ambisonics_order );
    1422             :                     }
    1423             : 
    1424           0 :                     ivas_binRenderer_filterModule( Cldfb_RealBuffer_Binaural[pos_idx], Cldfb_ImagBuffer_Binaural[pos_idx], RealBuffer, ImagBuffer, numTimeSlots, hBinRenderer, pos_idx );
    1425             :                 }
    1426             :             }
    1427             :         }
    1428             :     }
    1429             : 
    1430             :     /* Obtain the binaural dmx and compute the reverb */
    1431     4370880 :     if ( hBinRenderer->hReverb != NULL )
    1432             :     {
    1433             :         float reverbRe[BINAURAL_CHANNELS][CLDFB_SLOTS_PER_SUBFRAME][CLDFB_NO_CHANNELS_MAX];
    1434             :         float reverbIm[BINAURAL_CHANNELS][CLDFB_SLOTS_PER_SUBFRAME][CLDFB_NO_CHANNELS_MAX];
    1435             :         float inRe[BINAURAL_CHANNELS][CLDFB_SLOTS_PER_SUBFRAME][CLDFB_NO_CHANNELS_MAX];
    1436             :         float inIm[BINAURAL_CHANNELS][CLDFB_SLOTS_PER_SUBFRAME][CLDFB_NO_CHANNELS_MAX];
    1437             : 
    1438     2744298 :         ivas_binaural_obtain_DMX( numTimeSlots, hBinRenderer, RealBuffer, ImagBuffer, inRe, inIm );
    1439             : 
    1440     8232894 :         for ( chIdx = 0; chIdx < BINAURAL_CHANNELS; chIdx++ )
    1441             :         {
    1442    27369150 :             for ( k = 0; k < numTimeSlots; k++ )
    1443             :             {
    1444    21880554 :                 set_zero( reverbRe[chIdx][k], hBinRenderer->max_band );
    1445    21880554 :                 set_zero( reverbIm[chIdx][k], hBinRenderer->max_band );
    1446             :             }
    1447             :         }
    1448             : 
    1449     2744298 :         ivas_binaural_reverb_processSubframe( hBinRenderer->hReverb, BINAURAL_CHANNELS, numTimeSlots, inRe, inIm, reverbRe, reverbIm );
    1450             : 
    1451             :         /* Add the conv module and reverb module output */
    1452     8232894 :         for ( chIdx = 0; chIdx < BINAURAL_CHANNELS; chIdx++ )
    1453             :         {
    1454    27369150 :             for ( k = 0; k < numTimeSlots; k++ )
    1455             :             {
    1456    43761108 :                 for ( pos_idx = 0; pos_idx < num_poses; pos_idx++ )
    1457             :                 {
    1458             :                     /* Combine first and second parts to generate binaural output signal with room effect */
    1459    21880554 :                     v_add( Cldfb_RealBuffer_Binaural[pos_idx][chIdx][k], reverbRe[chIdx][k], Cldfb_RealBuffer_Binaural[pos_idx][chIdx][k], hBinRenderer->conv_band );
    1460    21880554 :                     v_add( Cldfb_ImagBuffer_Binaural[pos_idx][chIdx][k], reverbIm[chIdx][k], Cldfb_ImagBuffer_Binaural[pos_idx][chIdx][k], hBinRenderer->conv_band );
    1461             :                 }
    1462             :             }
    1463             :         }
    1464             :     }
    1465             : 
    1466     4370880 :     pop_wmops();
    1467     4370880 :     return;
    1468             : }
    1469             : 
    1470             : 
    1471             : /*-------------------------------------------------------------------------
    1472             :  * ivas_rend_CldfbMultiBinRendProcess()
    1473             :  *
    1474             :  *
    1475             :  *-------------------------------------------------------------------------*/
    1476             : 
    1477           0 : void ivas_rend_CldfbMultiBinRendProcess(
    1478             :     const BINAURAL_RENDERER_HANDLE hCldfbRend,
    1479             :     const COMBINED_ORIENTATION_HANDLE *pCombinedOrientationData,
    1480             :     const MULTI_BIN_REND_POSE_DATA *pMultiBinPoseData,
    1481             :     float Cldfb_In_Real[][CLDFB_NO_COL_MAX][CLDFB_NO_CHANNELS_MAX],
    1482             :     float Cldfb_In_Imag[][CLDFB_NO_COL_MAX][CLDFB_NO_CHANNELS_MAX],
    1483             :     float Cldfb_Out_Real[MAX_HEAD_ROT_POSES * BINAURAL_CHANNELS][CLDFB_NO_COL_MAX][CLDFB_NO_CHANNELS_MAX], /* o  : Binaural signals */
    1484             :     float Cldfb_Out_Imag[MAX_HEAD_ROT_POSES * BINAURAL_CHANNELS][CLDFB_NO_COL_MAX][CLDFB_NO_CHANNELS_MAX],
    1485             :     const int16_t low_res_pre_rend_rot,
    1486             :     const int16_t num_subframes )
    1487             : {
    1488             :     int16_t slot_idx, ch_idx, idx, pose_idx, i, j;
    1489             :     int16_t sf_idx;
    1490             :     float Cldfb_RealBuffer_sfIn[MAX_INPUT_CHANNELS][MAX_PARAM_SPATIAL_SUBFRAMES][CLDFB_NO_CHANNELS_MAX];
    1491             :     float Cldfb_ImagBuffer_sfIn[MAX_INPUT_CHANNELS][MAX_PARAM_SPATIAL_SUBFRAMES][CLDFB_NO_CHANNELS_MAX];
    1492             : #ifdef SPLIT_REND_WITH_HEAD_ROT_DEBUG
    1493             :     HEAD_TRACK_DATA head_track_post;
    1494             :     float Cldfb_RealBuffer_Binaural[MAX_HEAD_ROT_POSES + 1][BINAURAL_CHANNELS][MAX_PARAM_SPATIAL_SUBFRAMES][CLDFB_NO_CHANNELS_MAX];
    1495             :     float Cldfb_ImagBuffer_Binaural[MAX_HEAD_ROT_POSES + 1][BINAURAL_CHANNELS][MAX_PARAM_SPATIAL_SUBFRAMES][CLDFB_NO_CHANNELS_MAX];
    1496             : #else
    1497             :     float Cldfb_RealBuffer_Binaural[MAX_HEAD_ROT_POSES][BINAURAL_CHANNELS][MAX_PARAM_SPATIAL_SUBFRAMES][CLDFB_NO_CHANNELS_MAX];
    1498             :     float Cldfb_ImagBuffer_Binaural[MAX_HEAD_ROT_POSES][BINAURAL_CHANNELS][MAX_PARAM_SPATIAL_SUBFRAMES][CLDFB_NO_CHANNELS_MAX];
    1499             : #endif
    1500             : 
    1501           0 :     for ( sf_idx = 0; sf_idx < num_subframes; sf_idx++ )
    1502             :     {
    1503           0 :         for ( slot_idx = 0; slot_idx < MAX_PARAM_SPATIAL_SUBFRAMES; slot_idx++ )
    1504             :         {
    1505           0 :             idx = sf_idx * MAX_PARAM_SPATIAL_SUBFRAMES + slot_idx;
    1506           0 :             for ( ch_idx = 0; ch_idx < hCldfbRend->nInChannels; ch_idx++ )
    1507             :             {
    1508           0 :                 mvr2r( &Cldfb_In_Real[ch_idx][idx][0], &Cldfb_RealBuffer_sfIn[ch_idx][slot_idx][0], hCldfbRend->max_band );
    1509           0 :                 mvr2r( &Cldfb_In_Imag[ch_idx][idx][0], &Cldfb_ImagBuffer_sfIn[ch_idx][slot_idx][0], hCldfbRend->max_band );
    1510             :             }
    1511             :         }
    1512             : 
    1513           0 :         if ( ( *pCombinedOrientationData ) != NULL )
    1514             :         {
    1515           0 :             if ( ( low_res_pre_rend_rot ) && ( pMultiBinPoseData->poseCorrectionMode == ISAR_SPLIT_REND_POSE_CORRECTION_MODE_CLDFB ) )
    1516             :             {
    1517           0 :                 ( *pCombinedOrientationData )->Quaternions[sf_idx] = ( *pCombinedOrientationData )->Quaternions[0];
    1518           0 :                 for ( i = 0; i < 3; i++ )
    1519             :                 {
    1520           0 :                     for ( j = 0; j < 3; j++ )
    1521             :                     {
    1522           0 :                         ( *pCombinedOrientationData )->Rmat[sf_idx][i][j] = ( *pCombinedOrientationData )->Rmat[0][i][j];
    1523             :                     }
    1524             :                 }
    1525             :             }
    1526           0 :             ( *pCombinedOrientationData )->shd_rot_max_order = -1;
    1527             :         }
    1528             : 
    1529             : #ifdef SPLIT_REND_WITH_HEAD_ROT_DEBUG
    1530             :         head_track_post.num_quaternions = 0;
    1531             :         head_track_post.shd_rot_max_order = -1;
    1532             :         head_track_post.Quaternions[0] = ivas_split_rend_get_sf_rot_data( pHeadRotData->headPositionsPostRend, sf_idx );
    1533             : 
    1534             : #endif
    1535             : #ifdef SPLIT_REND_WITH_HEAD_ROT_DEBUG
    1536             :         ivas_binRenderer( hCldfbRend, pMultiBinPoseData, *pCombinedOrientationData, MAX_PARAM_SPATIAL_SUBFRAMES, &head_track_post, Cldfb_RealBuffer_Binaural, Cldfb_ImagBuffer_Binaural, Cldfb_RealBuffer_sfIn, Cldfb_ImagBuffer_sfIn );
    1537             : #else
    1538           0 :         ivas_binRenderer( hCldfbRend, pMultiBinPoseData, *pCombinedOrientationData, MAX_PARAM_SPATIAL_SUBFRAMES, Cldfb_RealBuffer_Binaural, Cldfb_ImagBuffer_Binaural, Cldfb_RealBuffer_sfIn, Cldfb_ImagBuffer_sfIn );
    1539             : #endif
    1540             : 
    1541           0 :         for ( pose_idx = 0; pose_idx < hCldfbRend->numPoses; pose_idx++ )
    1542             :         {
    1543           0 :             for ( slot_idx = 0; slot_idx < MAX_PARAM_SPATIAL_SUBFRAMES; slot_idx++ )
    1544             :             {
    1545           0 :                 idx = sf_idx * MAX_PARAM_SPATIAL_SUBFRAMES + slot_idx;
    1546           0 :                 for ( ch_idx = 0; ch_idx < BINAURAL_CHANNELS; ch_idx++ )
    1547             :                 {
    1548           0 :                     mvr2r( &Cldfb_RealBuffer_Binaural[pose_idx][ch_idx][slot_idx][0], &Cldfb_Out_Real[( pose_idx * BINAURAL_CHANNELS ) + ch_idx][idx][0], hCldfbRend->max_band );
    1549           0 :                     mvr2r( &Cldfb_ImagBuffer_Binaural[pose_idx][ch_idx][slot_idx][0], &Cldfb_Out_Imag[( pose_idx * BINAURAL_CHANNELS ) + ch_idx][idx][0], hCldfbRend->max_band );
    1550             :                 }
    1551             :             }
    1552             :         }
    1553             :     }
    1554             : 
    1555           0 :     return;
    1556             : }

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