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https://github.com/cookiengineer/audacity
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76 lines
1.6 KiB
C++
76 lines
1.6 KiB
C++
/***************************************************/
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/*! \class Sitar
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\brief STK sitar string model class.
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This class implements a sitar plucked string
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physical model based on the Karplus-Strong
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algorithm.
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This is a digital waveguide model, making its
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use possibly subject to patents held by
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Stanford University, Yamaha, and others.
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There exist at least two patents, assigned to
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Stanford, bearing the names of Karplus and/or
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Strong.
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by Perry R. Cook and Gary P. Scavone, 1995 - 2005.
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*/
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/***************************************************/
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#ifndef STK_SITAR_H
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#define STK_SITAR_H
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#include "Instrmnt.h"
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#include "DelayA.h"
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#include "OneZero.h"
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#include "Noise.h"
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#include "ADSR.h"
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namespace Nyq
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{
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class Sitar : public Instrmnt
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{
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public:
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//! Class constructor, taking the lowest desired playing frequency.
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Sitar( StkFloat lowestFrequency = 20 );
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//! Class destructor.
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~Sitar();
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//! Reset and clear all internal state.
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void clear();
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//! Set instrument parameters for a particular frequency.
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void setFrequency(StkFloat frequency);
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//! Pluck the string with the given amplitude using the current frequency.
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void pluck(StkFloat amplitude);
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//! Start a note with the given frequency and amplitude.
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void noteOn(StkFloat frequency, StkFloat amplitude);
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//! Stop a note with the given amplitude (speed of decay).
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void noteOff(StkFloat amplitude);
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protected:
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StkFloat computeSample( void );
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DelayA delayLine_;
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OneZero loopFilter_;
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Noise noise_;
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ADSR envelope_;
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StkFloat loopGain_;
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StkFloat amGain_;
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StkFloat delay_;
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StkFloat targetDelay_;
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};
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} // namespace Nyq
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#endif
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