Paul Davis
3deba1921b
git-svn-id: svn://localhost/ardour2/branches/3.0@9029 d708f5d6-7413-0410-9779-e7cbd77b26cf
227 lines
5.4 KiB
C++
227 lines
5.4 KiB
C++
/* -*- c-basic-offset: 4 indent-tabs-mode: nil -*- vi:set ts=8 sts=4 sw=4: */
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/*
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QM DSP Library
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Centre for Digital Music, Queen Mary, University of London.
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This file 2005-2006 Christian Landone.
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License as
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published by the Free Software Foundation; either version 2 of the
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License, or (at your option) any later version. See the file
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COPYING included with this distribution for more information.
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*/
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#include "Decimator.h"
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#include <iostream>
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//////////////////////////////////////////////////////////////////////
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// Construction/Destruction
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//////////////////////////////////////////////////////////////////////
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Decimator::Decimator( unsigned int inLength, unsigned int decFactor )
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{
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m_inputLength = 0;
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m_outputLength = 0;
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m_decFactor = 1;
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initialise( inLength, decFactor );
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}
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Decimator::~Decimator()
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{
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deInitialise();
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}
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void Decimator::initialise( unsigned int inLength, unsigned int decFactor)
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{
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m_inputLength = inLength;
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m_decFactor = decFactor;
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m_outputLength = m_inputLength / m_decFactor;
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decBuffer = new double[ m_inputLength ];
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// If adding new factors here, add them to
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// getHighestSupportedFactor in the header as well
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if(m_decFactor == 8)
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{
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//////////////////////////////////////////////////
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b[0] = 0.060111378492136;
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b[1] = -0.257323420830598;
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b[2] = 0.420583503165928;
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b[3] = -0.222750785197418;
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b[4] = -0.222750785197418;
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b[5] = 0.420583503165928;
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b[6] = -0.257323420830598;
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b[7] = 0.060111378492136;
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a[0] = 1;
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a[1] = -5.667654878577432;
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a[2] = 14.062452278088417;
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a[3] = -19.737303840697738;
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a[4] = 16.889698874608641;
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a[5] = -8.796600612325928;
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a[6] = 2.577553446979888;
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a[7] = -0.326903916815751;
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//////////////////////////////////////////////////
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}
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else if( m_decFactor == 4 )
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{
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//////////////////////////////////////////////////
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b[ 0 ] = 0.10133306904918619;
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b[ 1 ] = -0.2447523353702363;
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b[ 2 ] = 0.33622528590120965;
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b[ 3 ] = -0.13936581560633518;
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b[ 4 ] = -0.13936581560633382;
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b[ 5 ] = 0.3362252859012087;
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b[ 6 ] = -0.2447523353702358;
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b[ 7 ] = 0.10133306904918594;
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a[ 0 ] = 1;
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a[ 1 ] = -3.9035590278139427;
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a[ 2 ] = 7.5299379980621133;
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a[ 3 ] = -8.6890803793177511;
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a[ 4 ] = 6.4578667096099176;
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a[ 5 ] = -3.0242979431223631;
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a[ 6 ] = 0.83043385136748382;
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a[ 7 ] = -0.094420800837809335;
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//////////////////////////////////////////////////
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}
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else if( m_decFactor == 2 )
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{
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//////////////////////////////////////////////////
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b[ 0 ] = 0.20898944260075727;
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b[ 1 ] = 0.40011234879814367;
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b[ 2 ] = 0.819741973072733;
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b[ 3 ] = 1.0087419911682323;
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b[ 4 ] = 1.0087419911682325;
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b[ 5 ] = 0.81974197307273156;
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b[ 6 ] = 0.40011234879814295;
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b[ 7 ] = 0.20898944260075661;
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a[ 0 ] = 1;
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a[ 1 ] = 0.0077331184208358217;
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a[ 2 ] = 1.9853971155964376;
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a[ 3 ] = 0.19296739275341004;
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a[ 4 ] = 1.2330748872852182;
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a[ 5 ] = 0.18705341389316466;
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a[ 6 ] = 0.23659265908013868;
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a[ 7 ] = 0.032352924250533946;
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}
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else
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{
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if ( m_decFactor != 1 ) {
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std::cerr << "WARNING: Decimator::initialise: unsupported decimation factor " << m_decFactor << ", no antialiasing filter will be used" << std::endl;
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}
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//////////////////////////////////////////////////
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b[ 0 ] = 1;
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b[ 1 ] = 0;
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b[ 2 ] = 0;
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b[ 3 ] = 0;
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b[ 4 ] = 0;
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b[ 5 ] = 0;
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b[ 6 ] = 0;
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b[ 7 ] = 0;
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a[ 0 ] = 1;
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a[ 1 ] = 0;
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a[ 2 ] = 0;
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a[ 3 ] = 0;
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a[ 4 ] = 0;
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a[ 5 ] = 0;
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a[ 6 ] = 0;
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a[ 7 ] = 0;
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}
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resetFilter();
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}
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void Decimator::deInitialise()
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{
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delete [] decBuffer;
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}
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void Decimator::resetFilter()
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{
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Input = Output = 0;
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o1=o2=o3=o4=o5=o6=o7=0;
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}
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void Decimator::doAntiAlias(const double *src, double *dst, unsigned int length)
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{
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for( unsigned int i = 0; i < length; i++ )
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{
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Input = (double)src[ i ];
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Output = Input * b[ 0 ] + o1;
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o1 = Input * b[ 1 ] - Output * a[ 1 ] + o2;
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o2 = Input * b[ 2 ] - Output * a[ 2 ] + o3;
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o3 = Input * b[ 3 ] - Output * a[ 3 ] + o4;
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o4 = Input * b[ 4 ] - Output * a[ 4 ] + o5;
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o5 = Input * b[ 5 ] - Output * a[ 5 ] + o6;
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o6 = Input * b[ 6 ] - Output * a[ 6 ] + o7;
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o7 = Input * b[ 7 ] - Output * a[ 7 ] ;
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dst[ i ] = Output;
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}
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}
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void Decimator::doAntiAlias(const float *src, double *dst, unsigned int length)
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{
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for( unsigned int i = 0; i < length; i++ )
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{
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Input = (double)src[ i ];
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Output = Input * b[ 0 ] + o1;
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o1 = Input * b[ 1 ] - Output * a[ 1 ] + o2;
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o2 = Input * b[ 2 ] - Output * a[ 2 ] + o3;
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o3 = Input * b[ 3 ] - Output * a[ 3 ] + o4;
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o4 = Input * b[ 4 ] - Output * a[ 4 ] + o5;
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o5 = Input * b[ 5 ] - Output * a[ 5 ] + o6;
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o6 = Input * b[ 6 ] - Output * a[ 6 ] + o7;
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o7 = Input * b[ 7 ] - Output * a[ 7 ] ;
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dst[ i ] = Output;
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}
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}
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void Decimator::process(const double *src, double *dst)
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{
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if( m_decFactor != 1 )
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{
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doAntiAlias( src, decBuffer, m_inputLength );
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}
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unsigned idx = 0;
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for( unsigned int i = 0; i < m_outputLength; i++ )
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{
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dst[ idx++ ] = decBuffer[ m_decFactor * i ];
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}
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}
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void Decimator::process(const float *src, float *dst)
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{
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if( m_decFactor != 1 )
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{
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doAntiAlias( src, decBuffer, m_inputLength );
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}
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unsigned idx = 0;
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for( unsigned int i = 0; i < m_outputLength; i++ )
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{
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dst[ idx++ ] = decBuffer[ m_decFactor * i ];
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}
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}
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