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160 lines
5.3 KiB
C++
160 lines
5.3 KiB
C++
#ifndef STK_NREV_H
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#define STK_NREV_H
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#include "Effect.h"
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#include "Delay.h"
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namespace stk {
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/***************************************************/
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/*! \class NRev
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\brief CCRMA's NRev reverberator class.
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This class takes a monophonic input signal and produces a stereo
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output signal. It is derived from the CLM NRev function, which is
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based on the use of networks of simple allpass and comb delay
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filters. This particular arrangement consists of 6 comb filters
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in parallel, followed by 3 allpass filters, a lowpass filter, and
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another allpass in series, followed by two allpass filters in
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parallel with corresponding right and left outputs.
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by Perry R. Cook and Gary P. Scavone, 1995-2012.
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*/
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/***************************************************/
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class NRev : public Effect
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{
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public:
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//! Class constructor taking a T60 decay time argument (one second default value).
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NRev( StkFloat T60 = 1.0 );
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//! Reset and clear all internal state.
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void clear( void );
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//! Set the reverberation T60 decay time.
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void setT60( StkFloat T60 );
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//! Return the specified channel value of the last computed stereo frame.
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/*!
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Use the lastFrame() function to get both values of the last
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computed stereo frame. The \c channel argument must be 0 or 1
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(the first channel is specified by 0). However, range checking is
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only performed if _STK_DEBUG_ is defined during compilation, in
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which case an out-of-range value will trigger an StkError
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exception.
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*/
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StkFloat lastOut( unsigned int channel = 0 );
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//! Input one sample to the effect and return the specified \c channel value of the computed stereo frame.
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/*!
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Use the lastFrame() function to get both values of the computed
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stereo output frame. The \c channel argument must be 0 or 1 (the
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first channel is specified by 0). However, range checking is only
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performed if _STK_DEBUG_ is defined during compilation, in which
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case an out-of-range value will trigger an StkError exception.
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*/
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StkFloat tick( StkFloat input, unsigned int channel = 0 );
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//! Take a channel of the StkFrames object as inputs to the effect and replace with stereo outputs.
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/*!
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The StkFrames argument reference is returned. The stereo
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outputs are written to the StkFrames argument starting at the
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specified \c channel. Therefore, the \c channel argument must be
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less than ( channels() - 1 ) of the StkFrames argument (the first
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channel is specified by 0). However, range checking is only
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performed if _STK_DEBUG_ is defined during compilation, in which
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case an out-of-range value will trigger an StkError exception.
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*/
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StkFrames& tick( StkFrames& frames, unsigned int channel = 0 );
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//! Take a channel of the \c iFrames object as inputs to the effect and write stereo outputs to the \c oFrames object.
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/*!
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The \c iFrames object reference is returned. The \c iChannel
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argument must be less than the number of channels in the \c
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iFrames argument (the first channel is specified by 0). The \c
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oChannel argument must be less than ( channels() - 1 ) of the \c
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oFrames argument. However, range checking is only performed if
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_STK_DEBUG_ is defined during compilation, in which case an
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out-of-range value will trigger an StkError exception.
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*/
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StkFrames& tick( StkFrames& iFrames, StkFrames &oFrames, unsigned int iChannel = 0, unsigned int oChannel = 0 );
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protected:
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Delay allpassDelays_[8];
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Delay combDelays_[6];
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StkFloat allpassCoefficient_;
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StkFloat combCoefficient_[6];
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StkFloat lowpassState_;
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};
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inline StkFloat NRev :: lastOut( unsigned int channel )
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{
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#if defined(_STK_DEBUG_)
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if ( channel > 1 ) {
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oStream_ << "NRev::lastOut(): channel argument must be less than 2!";
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handleError( StkError::FUNCTION_ARGUMENT );
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}
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#endif
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return lastFrame_[channel];
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}
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inline StkFloat NRev :: tick( StkFloat input, unsigned int channel )
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{
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#if defined(_STK_DEBUG_)
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if ( channel > 1 ) {
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oStream_ << "NRev::tick(): channel argument must be less than 2!";
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handleError( StkError::FUNCTION_ARGUMENT );
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}
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#endif
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StkFloat temp, temp0, temp1, temp2, temp3;
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int i;
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temp0 = 0.0;
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for ( i=0; i<6; i++ ) {
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temp = input + (combCoefficient_[i] * combDelays_[i].lastOut());
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temp0 += combDelays_[i].tick(temp);
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}
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for ( i=0; i<3; i++ ) {
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temp = allpassDelays_[i].lastOut();
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temp1 = allpassCoefficient_ * temp;
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temp1 += temp0;
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allpassDelays_[i].tick(temp1);
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temp0 = -(allpassCoefficient_ * temp1) + temp;
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}
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// One-pole lowpass filter.
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lowpassState_ = 0.7 * lowpassState_ + 0.3 * temp0;
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temp = allpassDelays_[3].lastOut();
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temp1 = allpassCoefficient_ * temp;
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temp1 += lowpassState_;
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allpassDelays_[3].tick( temp1 );
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temp1 = -( allpassCoefficient_ * temp1 ) + temp;
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temp = allpassDelays_[4].lastOut();
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temp2 = allpassCoefficient_ * temp;
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temp2 += temp1;
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allpassDelays_[4].tick( temp2 );
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lastFrame_[0] = effectMix_*( -( allpassCoefficient_ * temp2 ) + temp );
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temp = allpassDelays_[5].lastOut();
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temp3 = allpassCoefficient_ * temp;
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temp3 += temp1;
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allpassDelays_[5].tick( temp3 );
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lastFrame_[1] = effectMix_*( - ( allpassCoefficient_ * temp3 ) + temp );
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temp = ( 1.0 - effectMix_ ) * input;
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lastFrame_[0] += temp;
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lastFrame_[1] += temp;
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return lastFrame_[channel];
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}
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} // stk namespace
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#endif
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