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172 lines
6.2 KiB
C++
172 lines
6.2 KiB
C++
#ifndef STK_CHORUS_H
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#define STK_CHORUS_H
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#include "Effect.h"
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#include "DelayL.h"
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#include "SineWave.h"
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namespace stk {
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/***************************************************/
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/*! \class Chorus
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\brief STK chorus effect class.
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This class implements a chorus effect. It takes a monophonic
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input signal and produces a stereo output signal.
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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 Chorus : public Effect
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{
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public:
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//! Class constructor, taking the median desired delay length.
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/*!
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An StkError can be thrown if the rawwave path is incorrect.
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*/
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Chorus( StkFloat baseDelay = 6000 );
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//! Reset and clear all internal state.
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void clear( void );
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//! Set modulation depth in range 0.0 - 1.0.
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void setModDepth( StkFloat depth );
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//! Set modulation frequency.
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void setModFrequency( StkFloat frequency );
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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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DelayL delayLine_[2];
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SineWave mods_[2];
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StkFloat baseLength_;
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StkFloat modDepth_;
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};
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inline StkFloat Chorus :: 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_ << "Chorus::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 Chorus :: 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_ << "Chorus::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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delayLine_[0].setDelay( baseLength_ * 0.707 * ( 1.0 + modDepth_ * mods_[0].tick() ) );
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delayLine_[1].setDelay( baseLength_ * 0.5 * ( 1.0 - modDepth_ * mods_[1].tick() ) );
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lastFrame_[0] = effectMix_ * ( delayLine_[0].tick( input ) - input ) + input;
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lastFrame_[1] = effectMix_ * ( delayLine_[1].tick( input ) - input ) + input;
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return lastFrame_[channel];
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}
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inline StkFrames& Chorus :: tick( StkFrames& frames, unsigned int channel )
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{
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#if defined(_STK_DEBUG_)
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if ( channel >= frames.channels() - 1 ) {
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oStream_ << "Chorus::tick(): channel and StkFrames arguments are incompatible!";
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handleError( StkError::FUNCTION_ARGUMENT );
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}
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#endif
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StkFloat *samples = &frames[channel];
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unsigned int hop = frames.channels() - 1;
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for ( unsigned int i=0; i<frames.frames(); i++, samples += hop ) {
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delayLine_[0].setDelay( baseLength_ * 0.707 * ( 1.0 + modDepth_ * mods_[0].tick() ) );
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delayLine_[1].setDelay( baseLength_ * 0.5 * ( 1.0 - modDepth_ * mods_[1].tick() ) );
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*samples = effectMix_ * ( delayLine_[0].tick( *samples ) - *samples ) + *samples;
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samples++;
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*samples = effectMix_ * ( delayLine_[1].tick( *samples ) - *samples ) + *samples;
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}
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lastFrame_[0] = *(samples-hop);
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lastFrame_[1] = *(samples-hop+1);
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return frames;
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}
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inline StkFrames& Chorus :: tick( StkFrames& iFrames, StkFrames& oFrames, unsigned int iChannel, unsigned int oChannel )
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{
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#if defined(_STK_DEBUG_)
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if ( iChannel >= iFrames.channels() || oChannel >= oFrames.channels() - 1 ) {
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oStream_ << "Chorus::tick(): channel and StkFrames arguments are incompatible!";
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handleError( StkError::FUNCTION_ARGUMENT );
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}
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#endif
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StkFloat *iSamples = &iFrames[iChannel];
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StkFloat *oSamples = &oFrames[oChannel];
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unsigned int iHop = iFrames.channels(), oHop = oFrames.channels();
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for ( unsigned int i=0; i<iFrames.frames(); i++, iSamples += iHop, oSamples += oHop ) {
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delayLine_[0].setDelay( baseLength_ * 0.707 * ( 1.0 + modDepth_ * mods_[0].tick() ) );
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delayLine_[1].setDelay( baseLength_ * 0.5 * ( 1.0 - modDepth_ * mods_[1].tick() ) );
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*oSamples = effectMix_ * ( delayLine_[0].tick( *iSamples ) - *iSamples ) + *iSamples;
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*(oSamples+1) = effectMix_ * ( delayLine_[1].tick( *iSamples ) - *iSamples ) + *iSamples;
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}
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lastFrame_[0] = *(oSamples-oHop);
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lastFrame_[1] = *(oSamples-oHop+1);
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return iFrames;
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}
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} // stk namespace
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#endif
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