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📄 blowhole.h

📁 Mobile STK for Symbian OS V0.1
💻 H
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/***************************************************//*! \class BlowHole    \brief STK clarinet physical model with one           register hole and one tonehole.    This class is based on the clarinet model,    with the addition of a two-port register hole    and a three-port dynamic tonehole    implementation, as discussed by Scavone and    Cook (1998).    In this implementation, the distances between    the reed/register hole and tonehole/bell are    fixed.  As a result, both the tonehole and    register hole will have variable influence on    the playing frequency, which is dependent on    the length of the air column.  In addition,    the highest playing freqeuency is limited by    these fixed lengths.    This is a digital waveguide model, making its    use possibly subject to patents held by Stanford    University, Yamaha, and others.    Control Change Numbers:        - Reed Stiffness = 2       - Noise Gain = 4       - Tonehole State = 11       - Register State = 1       - Breath Pressure = 128    by Perry R. Cook and Gary P. Scavone, 1995 - 2005.*//***************************************************/#ifndef STK_BLOWHOLE_H#define STK_BLOWHOLE_H#include "Instrmnt.h"#include "DelayL.h"#include "ReedTable.h"#include "OneZero.h"#include "PoleZero.h"#include "Envelope.h"#include "Noise.h"#include "SineWave.h"class BlowHole : public Instrmnt{ public:  //! Class constructor.  /*!    An StkError will be thrown if the rawwave path is incorrectly set.  */  BlowHole(StkFloat lowestFrequency);  //! Class destructor.  ~BlowHole();  //! Reset and clear all internal state.  void clear();  //! Set instrument parameters for a particular frequency.  void setFrequency(StkFloat frequency);  //! Set the tonehole state (0.0 = closed, 1.0 = fully open).  void setTonehole(StkFloat newValue);  //! Set the register hole state (0.0 = closed, 1.0 = fully open).  void setVent(StkFloat newValue);  //! Apply breath pressure to instrument with given amplitude and rate of increase.  void startBlowing(StkFloat amplitude, StkFloat rate);  //! Decrease breath pressure with given rate of decrease.  void stopBlowing(StkFloat rate);  //! Start a note with the given frequency and amplitude.  void noteOn(StkFloat frequency, StkFloat amplitude);  //! Stop a note with the given amplitude (speed of decay).  void noteOff(StkFloat amplitude);  //! Perform the control change specified by \e number and \e value (0.0 - 128.0).  void controlChange(int number, StkFloat value); protected:  StkFloat computeSample( void );  DelayL    delays_[3];  ReedTable reedTable_;  OneZero   filter_;  PoleZero  tonehole_;  PoleZero  vent_;  Envelope  envelope_;  Noise     noise_;  SineWave vibrato_;  unsigned long length_;  StkFloat scatter_;  StkFloat thCoeff_;  StkFloat rhGain_;  StkFloat outputGain_;  StkFloat noiseGain_;  StkFloat vibratoGain_;};#endif

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