mirror of
https://github.com/LMMS/lmms.git
synced 2026-01-23 22:08:02 -05:00
* cleaned up code and improved coding style
* removed old SINGLE_SOURCE_COMPILE macro relicts
* use QString::toUtf8() instead of QString::toAscii() wherever possible
(cherry picked from commit 0bb54199b0)
844 lines
19 KiB
C++
844 lines
19 KiB
C++
/*
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* lb303.cpp - implementation of class lb303 which is a bass synth attempting
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* to emulate the Roland TB303 bass synth
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*
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* Copyright (c) 2006-2008 Paul Giblock <pgib/at/users.sourceforge.net>
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*
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* This file is part of Linux MultiMedia Studio - http://lmms.sourceforge.net
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*
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* lb303FilterIIR2 is based on the gsyn filter code by Andy Sloane.
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*
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* lb303Filter3Pole is based on the TB303 instrument written by
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* Josep M Comajuncosas for the CSounds library
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*
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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
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* License as published by the Free Software Foundation; either
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* version 2 of the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* General Public License for more details.
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*
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* You should have received a copy of the GNU General Public
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* License along with this program (see COPYING); if not, write to the
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* Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
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* Boston, MA 02110-1301 USA.
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*
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*/
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#include <QtXml/QDomDocument>
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#include "lb303.h"
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#include "engine.h"
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#include "instrument_play_handle.h"
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#include "instrument_track.h"
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#include "knob.h"
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#include "note_play_handle.h"
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#include "templates.h"
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#include "audio_port.h"
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#include "embed.cpp"
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#include "moc_lb303.cxx"
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// Envelope Recalculation period
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#define ENVINC 64
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//
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// New config
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//
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#define LB_24_IGNORE_ENVELOPE
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#define LB_FILTERED
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//#define LB_DECAY
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//#define LB_24_RES_TRICK
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#define LB_DIST_RATIO 4.0
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#define LB_24_VOL_ADJUST 3.0
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//#define LB_DECAY_NOTES
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#define LB_DEBUG
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#ifdef LB_DEBUG
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#include <assert.h>
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#endif
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//
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// Old config
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//
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//#define engine::getMixer()->processingSampleRate() 44100.0f
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extern "C"
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{
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plugin::descriptor PLUGIN_EXPORT lb303_plugin_descriptor =
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{
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STRINGIFY( PLUGIN_NAME ),
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"LB303",
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QT_TRANSLATE_NOOP( "pluginBrowser",
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"Incomplete monophonic immitation tb303" ),
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"Paul Giblock <pgib/at/users.sf.net>",
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0x0100,
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plugin::Instrument,
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new pluginPixmapLoader( "logo" ),
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NULL
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};
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}
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//
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// lb303Filter
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//
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lb303Filter::lb303Filter(lb303FilterKnobState* p_fs) :
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fs(p_fs),
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vcf_c0(0),
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vcf_e0(0),
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vcf_e1(0)
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{
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};
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void lb303Filter::recalc()
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{
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vcf_e1 = exp(6.109 + 1.5876*(fs->envmod) + 2.1553*(fs->cutoff) - 1.2*(1.0-(fs->reso)));
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vcf_e0 = exp(5.613 - 0.8*(fs->envmod) + 2.1553*(fs->cutoff) - 0.7696*(1.0-(fs->reso)));
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vcf_e0*=M_PI/engine::getMixer()->processingSampleRate();
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vcf_e1*=M_PI/engine::getMixer()->processingSampleRate();
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vcf_e1 -= vcf_e0;
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vcf_rescoeff = exp(-1.20 + 3.455*(fs->reso));
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};
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void lb303Filter::envRecalc()
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{
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vcf_c0 *= fs->envdecay; // Filter Decay. vcf_decay is adjusted for Hz and ENVINC
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// vcf_rescoeff = exp(-1.20 + 3.455*(fs->reso)); moved above
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};
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void lb303Filter::playNote()
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{
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vcf_c0 = vcf_e1;
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}
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//
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// lb303FilterIIR2
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//
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lb303FilterIIR2::lb303FilterIIR2(lb303FilterKnobState* p_fs) :
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lb303Filter(p_fs),
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vcf_d1(0),
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vcf_d2(0),
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vcf_a(0),
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vcf_b(0),
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vcf_c(1)
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{
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m_dist = new effectLib::distortion<>( 1.0, 1.0f);
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};
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lb303FilterIIR2::~lb303FilterIIR2()
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{
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delete m_dist;
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}
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void lb303FilterIIR2::recalc()
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{
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lb303Filter::recalc();
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//m_dist->setThreshold(0.5+(fs->dist*2.0));
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m_dist->setThreshold(fs->dist*75.0);
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};
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void lb303FilterIIR2::envRecalc()
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{
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float k, w;
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lb303Filter::envRecalc();
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w = vcf_e0 + vcf_c0; // e0 is adjusted for Hz and doesn't need ENVINC
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k = exp(-w/vcf_rescoeff); // Does this mean c0 is inheritantly?
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vcf_a = 2.0*cos(2.0*w) * k;
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vcf_b = -k*k;
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vcf_c = 1.0 - vcf_a - vcf_b;
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}
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float lb303FilterIIR2::process(const float& samp)
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{
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float ret = vcf_a*vcf_d1 + vcf_b*vcf_d2 + vcf_c*samp;
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// Delayed samples for filter
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vcf_d2 = vcf_d1;
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vcf_d1 = ret;
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if(fs->dist > 0)
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ret=m_dist->nextSample(ret);
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// output = IIR2 + dry
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return ret;
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}
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//
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// lb303Filter3Pole
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//
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lb303Filter3Pole::lb303Filter3Pole(lb303FilterKnobState *p_fs) :
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lb303Filter(p_fs),
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ay1(0),
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ay2(0),
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aout(0),
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lastin(0)
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{
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};
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void lb303Filter3Pole::recalc()
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{
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// DO NOT CALL BASE CLASS
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vcf_e0 = 0.000001;
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vcf_e1 = 1.0;
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}
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// TODO: Try using k instead of vcf_reso
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void lb303Filter3Pole::envRecalc()
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{
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float w,k;
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float kfco;
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lb303Filter::envRecalc();
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// e0 is adjusted for Hz and doesn't need ENVINC
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w = vcf_e0 + vcf_c0;
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k = (fs->cutoff > 0.975)?0.975:fs->cutoff;
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kfco = 50.f + (k)*((2300.f-1600.f*(fs->envmod))+(w) *
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(700.f+1500.f*(k)+(1500.f+(k)*(engine::getMixer()->processingSampleRate()/2.f-6000.f)) *
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(fs->envmod)) );
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//+iacc*(.3+.7*kfco*kenvmod)*kaccent*kaccurve*2000
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#ifdef LB_24_IGNORE_ENVELOPE
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// kfcn = fs->cutoff;
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kfcn = 2.0 * kfco / engine::getMixer()->processingSampleRate();
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#else
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kfcn = w;
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#endif
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kp = ((-2.7528*kfcn + 3.0429)*kfcn + 1.718)*kfcn - 0.9984;
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kp1 = kp+1.0;
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kp1h = 0.5*kp1;
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#ifdef LB_24_RES_TRICK
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k = exp(-w/vcf_rescoeff);
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kres = (((k))) * (((-2.7079*kp1 + 10.963)*kp1 - 14.934)*kp1 + 8.4974);
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#else
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kres = (((fs->reso))) * (((-2.7079*kp1 + 10.963)*kp1 - 14.934)*kp1 + 8.4974);
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#endif
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value = 1.0+( (fs->dist) *(1.5 + 2.0*kres*(1.0-kfcn))); // ENVMOD was DIST
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}
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float lb303Filter3Pole::process(const float& samp)
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{
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float ax1 = lastin;
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float ay11 = ay1;
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float ay31 = ay2;
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lastin = (samp) - tanh(kres*aout);
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ay1 = kp1h * (lastin+ax1) - kp*ay1;
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ay2 = kp1h * (ay1 + ay11) - kp*ay2;
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aout = kp1h * (ay2 + ay31) - kp*aout;
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return tanh(aout*value)*LB_24_VOL_ADJUST/(1.0+fs->dist);
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}
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//
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// LBSynth
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//
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lb303Synth::lb303Synth( instrumentTrack * _instrumentTrack ) :
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instrument( _instrumentTrack, &lb303_plugin_descriptor ),
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vcf_cut_knob( 0.75f, 0.0f, 1.5f, 0.005f, this, tr( "VCF Cutoff Frequency" ) ),
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vcf_res_knob( 0.75f, 0.0f, 1.25f, 0.005f, this, tr( "VCF Resonance" ) ),
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vcf_mod_knob( 0.1f, 0.0f, 1.0f, 0.005f, this, tr( "VCF Envelope Mod" ) ),
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vcf_dec_knob( 0.1f, 0.0f, 1.0f, 0.005f, this, tr( "VCF Envelope Decay" ) ),
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dist_knob( 0.0f, 0.0f, 1.0f, 0.01f, this, tr( "Distortion" ) ),
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wave_knob( 0.0f, 0.0f, 5.0f, 1.0f, this, tr( "Waveform" ) ),
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slide_dec_knob( 0.6f, 0.0f, 1.0f, 0.005f, this, tr( "Slide Decay" ) ),
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slideToggle( FALSE, this, tr( "Slide" ) ),
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accentToggle( FALSE, this, tr( "Accent" ) ),
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deadToggle( FALSE, this, tr( "Dead" ) ),
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db24Toggle( FALSE, this, tr( "24dB/oct Filter" ) )
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{
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connect( engine::getMixer(), SIGNAL( sampleRateChanged( ) ),
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this, SLOT ( filterChanged( ) ) );
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connect( &vcf_cut_knob, SIGNAL( dataChanged( ) ),
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this, SLOT ( filterChanged( ) ) );
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connect( &vcf_res_knob, SIGNAL( dataChanged( ) ),
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this, SLOT ( filterChanged( ) ) );
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connect( &vcf_mod_knob, SIGNAL( dataChanged( ) ),
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this, SLOT ( filterChanged( ) ) );
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connect( &vcf_dec_knob, SIGNAL( dataChanged( ) ),
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this, SLOT ( filterChanged( ) ) );
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connect( &db24Toggle, SIGNAL( dataChanged( ) ),
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this, SLOT ( db24Toggled( ) ) );
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connect( &dist_knob, SIGNAL( dataChanged( ) ),
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this, SLOT ( filterChanged( )));
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// SYNTH
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vco_inc = 0.0;
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vco_c = 0;
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vco_k = 0;
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vco_slide = 0; vco_slideinc = 0;
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vco_slidebase = 0;
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fs.cutoff = 0;
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fs.envmod = 0;
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fs.reso = 0;
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fs.envdecay = 0;
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fs.dist = 0;
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vcf_envpos = ENVINC;
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// Start VCA on an attack.
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vca_mode = 3;
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vca_a = 0;
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//vca_attack = 1.0 - 0.94406088;
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vca_attack = 1.0 - 0.96406088;
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vca_decay = 0.99897516;
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vco_shape = SAWTOOTH;
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// Experimenting with a0 between original (0.5) and 1.0
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vca_a0 = 0.5;
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vca_a = 9;
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vca_mode = 3;
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vcf = new lb303FilterIIR2(&fs);
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sample_cnt = 0;
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release_frame = 1<<24;
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catch_frame = 0;
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catch_decay = 0;
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recalcFilter();
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last_offset = 0;
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new_freq = -1;
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current_freq = -1;
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delete_freq = -1;
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instrumentPlayHandle * iph = new instrumentPlayHandle( this );
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engine::getMixer()->addPlayHandle( iph );
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filterChanged();
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}
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lb303Synth::~lb303Synth()
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{
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delete vcf;
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}
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void lb303Synth::saveSettings( QDomDocument & _doc,
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QDomElement & _this )
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{
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vcf_cut_knob.saveSettings( _doc, _this, "vcf_cut" );
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vcf_res_knob.saveSettings( _doc, _this, "vcf_res" );
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vcf_mod_knob.saveSettings( _doc, _this, "vcf_mod" );
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vcf_dec_knob.saveSettings( _doc, _this, "vcf_dec" );
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wave_knob.saveSettings( _doc, _this, "shape");
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dist_knob.saveSettings( _doc, _this, "dist");
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slide_dec_knob.saveSettings( _doc, _this, "slide_dec");
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slideToggle.saveSettings( _doc, _this, "slide");
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deadToggle.saveSettings( _doc, _this, "dead");
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db24Toggle.saveSettings( _doc, _this, "db24");
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}
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void lb303Synth::loadSettings( const QDomElement & _this )
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{
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vcf_cut_knob.loadSettings( _this, "vcf_cut" );
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vcf_res_knob.loadSettings( _this, "vcf_res" );
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vcf_mod_knob.loadSettings( _this, "vcf_mod" );
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vcf_dec_knob.loadSettings( _this, "vcf_dec" );
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dist_knob.loadSettings( _this, "dist");
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wave_knob.loadSettings( _this, "shape");
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slide_dec_knob.loadSettings( _this, "slide_dec");
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slideToggle.loadSettings( _this, "slide");
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deadToggle.loadSettings( _this, "dead");
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db24Toggle.loadSettings( _this, "db24");
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filterChanged();
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}
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// TODO: Split into one function per knob. envdecay doesn't require
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// recalcFilter.
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void lb303Synth::filterChanged( void )
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{
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fs.cutoff = vcf_cut_knob.value();
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fs.reso = vcf_res_knob.value();
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fs.envmod = vcf_mod_knob.value();
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fs.dist = LB_DIST_RATIO*dist_knob.value();
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float d = 0.2 + (2.3*vcf_dec_knob.value());
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d *= engine::getMixer()->processingSampleRate(); // d *= smpl rate
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fs.envdecay = pow(0.1, 1.0/d * ENVINC); // decay is 0.1 to the 1/d * ENVINC
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// vcf_envdecay is now adjusted for both
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// sampling rate and ENVINC
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recalcFilter();
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}
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void lb303Synth::db24Toggled( void )
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{
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delete vcf;
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if(db24Toggle.value()) {
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vcf = new lb303Filter3Pole(&fs);
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}
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else {
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vcf = new lb303FilterIIR2(&fs);
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}
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recalcFilter();
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}
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QString lb303Synth::nodeName( void ) const
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{
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return( lb303_plugin_descriptor.name );
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}
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void lb303Synth::recalcFilter()
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{
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vcf->recalc();
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vcf_envpos = ENVINC; // Trigger filter update in process()
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}
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inline int MIN(int a, int b) {
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return (a<b)?a:b;
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}
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inline float GET_INC(float freq) {
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return freq/engine::getMixer()->processingSampleRate(); // TODO: Use actual sampling rate.
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}
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int lb303Synth::process(sampleFrame *outbuf, const Uint32 size)
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{
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unsigned int i;
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float w;
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float samp;
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if( delete_freq == current_freq ) {
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// Normal release
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delete_freq = -1;
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vca_mode = 1;
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}
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if( new_freq > 0.0f ) {
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lb303Note note;
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note.vco_inc = GET_INC( true_freq );
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note.dead = deadToggle.value();
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initNote(¬e);
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current_freq = new_freq;
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new_freq = -1.0f;
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}
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// TODO: NORMAL RELEASE
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// vca_mode = 1;
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for(i=0;i<size;i++) {
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// update vcf
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if(vcf_envpos >= ENVINC) {
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vcf->envRecalc();
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vcf_envpos = 0;
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if (vco_slide) {
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vco_inc=vco_slidebase-vco_slide;
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// Calculate coeff from dec_knob on knob change.
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vco_slide*= 0.9+(slide_dec_knob.value()*0.0999); // TODO: Adjust for Hz and ENVINC
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}
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}
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sample_cnt++;
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vcf_envpos++;
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int decay_frames = 128;
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// update vco
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vco_c += vco_inc;
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if(vco_c > 0.5)
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vco_c -= 1.0;
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/*LB303
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if (catch_decay > 0) {
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if (catch_decay < decay_frames) {
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catch_decay++;
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}
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}*/
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switch(int(rint(wave_knob.value()))) {
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case 0: vco_shape = SAWTOOTH; break;
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|
case 1: vco_shape = INVERTED_SAWTOOTH; break;
|
|
case 2: vco_shape = TRIANGLE; break;
|
|
case 3: vco_shape = SQUARE; break;
|
|
case 4: vco_shape = ROUND_SQUARE; break;
|
|
case 5: vco_shape = MOOG; break;
|
|
default: vco_shape = SAWTOOTH; break;
|
|
}
|
|
|
|
// add vco_shape_param the changes the shape of each curve.
|
|
// merge sawtooths with triangle and square with round square?
|
|
switch (vco_shape) {
|
|
case SAWTOOTH: // p0: curviness of line
|
|
vco_k = vco_c; // Is this sawtooth backwards?
|
|
break;
|
|
|
|
case INVERTED_SAWTOOTH: // p0: curviness of line
|
|
vco_k = -vco_c; // Is this sawtooth backwards?
|
|
break;
|
|
|
|
case TRIANGLE: // p0: duty rev.saw<->triangle<->saw p1: curviness
|
|
vco_k = (vco_c*2.0)+0.5;
|
|
if (vco_k>0.5)
|
|
vco_k = 1.0- vco_k;
|
|
break;
|
|
|
|
case SQUARE: // p0: slope of top
|
|
vco_k = (vco_c<0)?0.5:-0.5;
|
|
break;
|
|
|
|
case ROUND_SQUARE: // p0: width of round
|
|
vco_k = (vco_c<0)?(sqrtf(1-(vco_c*vco_c*4))-0.5):-0.5;
|
|
break;
|
|
|
|
case MOOG: // Maybe the fall should be exponential/sinsoidal instead of quadric.
|
|
// [-0.5, 0]: Rise, [0,0.25]: Slope down, [0.25,0.5]: Low
|
|
vco_k = (vco_c*2.0)+0.5;
|
|
if (vco_k>1.0) {
|
|
vco_k = -0.5 ;
|
|
}
|
|
else if (vco_k>0.5) {
|
|
w = 2.0*(vco_k-0.5)-1.0;
|
|
vco_k = 0.5 - sqrtf(1.0-(w*w));
|
|
}
|
|
vco_k *= 2.0; // MOOG wave gets filtered away
|
|
break;
|
|
}
|
|
|
|
// Write out samples.
|
|
samp = vcf->process(vco_k) * vca_a;
|
|
|
|
/*
|
|
float releaseFrames = desiredReleaseFrames();
|
|
samp *= (releaseFrames - catch_decay)/releaseFrames;
|
|
*/
|
|
//LB303 samp *= (float)(decay_frames - catch_decay)/(float)decay_frames;
|
|
|
|
for(int c=0; c<DEFAULT_CHANNELS; c++) {
|
|
outbuf[i][c]=samp;
|
|
}
|
|
|
|
|
|
/*LB303
|
|
if((int)i>=release_frame) {
|
|
vca_mode=1;
|
|
}
|
|
*/
|
|
|
|
// Handle Envelope
|
|
if(vca_mode==0) {
|
|
vca_a+=(vca_a0-vca_a)*vca_attack;
|
|
if(sample_cnt>=0.5*engine::getMixer()->processingSampleRate())
|
|
vca_mode = 2;
|
|
}
|
|
else if(vca_mode == 1) {
|
|
vca_a *= vca_decay;
|
|
|
|
// the following line actually speeds up processing
|
|
if(vca_a < (1/65536.0)) {
|
|
vca_a = 0;
|
|
vca_mode = 3;
|
|
}
|
|
}
|
|
|
|
}
|
|
return 1;
|
|
}
|
|
|
|
|
|
/* Prepares the active LB303 note. I separated this into a function because it
|
|
* needs to be called onplayNote() when a new note is started. It also needs
|
|
* to be called from process() when a prior edge-to-edge note is done releasing.
|
|
*/
|
|
|
|
void lb303Synth::initNote( lb303Note *n)
|
|
{
|
|
catch_decay = 0;
|
|
|
|
vco_inc = n->vco_inc;
|
|
|
|
// Always reset vca on non-dead notes, and
|
|
// Only reset vca on decaying(decayed) and never-played
|
|
if(n->dead == 0 || (vca_mode==1 || vca_mode==3)) {
|
|
//printf(" good\n");
|
|
sample_cnt = 0;
|
|
vca_mode = 0;
|
|
// LB303:
|
|
//vca_a = 0;
|
|
}
|
|
else {
|
|
vca_mode = 2;
|
|
}
|
|
|
|
// Initiate Slide
|
|
// TODO: Break out into function, should be called again on detuneChanged
|
|
if (vco_slideinc) {
|
|
vco_slide = vco_inc-vco_slideinc; // Slide amount
|
|
vco_slidebase = vco_inc; // The REAL frequency
|
|
vco_slideinc = 0; // reset from-note
|
|
}
|
|
else {
|
|
vco_slide = 0;
|
|
}
|
|
// End break-out
|
|
|
|
// Slide-from note, save inc for next note
|
|
if (slideToggle.value()) {
|
|
vco_slideinc = vco_inc; // May need to equal vco_slidebase+vco_slide if last note slid
|
|
}
|
|
|
|
|
|
recalcFilter();
|
|
|
|
if(n->dead ==0){
|
|
// Swap next two blocks??
|
|
vcf->playNote();
|
|
// Ensure envelope is recalculated
|
|
vcf_envpos = ENVINC;
|
|
|
|
// Double Check
|
|
//vca_mode = 0;
|
|
//vca_a = 0.0;
|
|
}
|
|
}
|
|
|
|
|
|
void lb303Synth::playNote( notePlayHandle * _n,
|
|
sampleFrame * _working_buffer )
|
|
{
|
|
if( _n->arpBaseNote() )
|
|
{
|
|
//return;
|
|
}
|
|
|
|
// Currently have release/decay disabled
|
|
// Start the release decay if this is the first release period.
|
|
//if (_n->released() && catch_decay == 0)
|
|
// catch_decay = 1;
|
|
|
|
bool decay_note = false;
|
|
|
|
release_frame = _n->framesLeft() - desiredReleaseFrames();
|
|
|
|
|
|
if(deadToggle.value() == 0 && decay_note) {
|
|
}
|
|
/// Start a new note.
|
|
else if( _n->totalFramesPlayed() == 0 ) {
|
|
new_freq = _n->unpitchedFrequency();
|
|
true_freq = _n->frequency();
|
|
_n->m_pluginData = this;
|
|
}
|
|
|
|
// Check for slide
|
|
if( _n->unpitchedFrequency() == current_freq ) {
|
|
true_freq = _n->frequency();
|
|
|
|
if( slideToggle.value() ) {
|
|
vco_slidebase = GET_INC( true_freq ); // The REAL frequency
|
|
}
|
|
else {
|
|
vco_inc = GET_INC( true_freq );
|
|
}
|
|
}
|
|
}
|
|
|
|
|
|
|
|
void lb303Synth::play( sampleFrame * _working_buffer )
|
|
{
|
|
//printf(".");
|
|
const fpp_t frames = engine::getMixer()->framesPerPeriod();
|
|
|
|
process( _working_buffer, frames);
|
|
getInstrumentTrack()->processAudioBuffer( _working_buffer, frames,
|
|
NULL );
|
|
}
|
|
|
|
|
|
|
|
void lb303Synth::deleteNotePluginData( notePlayHandle * _n )
|
|
{
|
|
//printf("GONE\n");
|
|
if( _n->unpitchedFrequency() == current_freq )
|
|
{
|
|
delete_freq = current_freq;
|
|
}
|
|
}
|
|
|
|
|
|
pluginView * lb303Synth::instantiateView( QWidget * _parent )
|
|
{
|
|
return( new lb303SynthView( this, _parent ) );
|
|
}
|
|
|
|
|
|
lb303SynthView::lb303SynthView( instrument * _instrument, QWidget * _parent ) :
|
|
instrumentView( _instrument, _parent )
|
|
{
|
|
// GUI
|
|
m_vcfCutKnob = new knob( knobBright_26, this );
|
|
m_vcfCutKnob->move( 75, 130 );
|
|
m_vcfCutKnob->setHintText( tr( "Cutoff Freq:" ) + " ", "" );
|
|
m_vcfCutKnob->setLabel( tr("CUT") );
|
|
|
|
m_vcfResKnob = new knob( knobBright_26, this );
|
|
m_vcfResKnob->move( 120, 130 );
|
|
m_vcfResKnob->setHintText( tr( "Resonance:" ) + " ", "" );
|
|
m_vcfResKnob->setLabel( tr("RES") );
|
|
|
|
m_vcfModKnob = new knob( knobBright_26, this );
|
|
m_vcfModKnob->move( 165, 130 );
|
|
m_vcfModKnob->setHintText( tr( "Env Mod:" ) + " ", "" );
|
|
m_vcfModKnob->setLabel( tr("ENV MOD") );
|
|
|
|
m_vcfDecKnob = new knob( knobBright_26, this );
|
|
m_vcfDecKnob->move( 210, 130 );
|
|
m_vcfDecKnob->setHintText( tr( "Decay:" ) + " ", "" );
|
|
m_vcfDecKnob->setLabel( tr("DEC") );
|
|
|
|
m_slideToggle = new ledCheckBox( "Slide", this );
|
|
m_slideToggle->move( 10, 180 );
|
|
|
|
m_accentToggle = new ledCheckBox( "Accent", this );
|
|
m_accentToggle->move( 10, 200 );
|
|
m_accentToggle->setDisabled(true);
|
|
|
|
m_deadToggle = new ledCheckBox( "Dead", this );
|
|
m_deadToggle->move( 10, 220 );
|
|
|
|
m_db24Toggle = new ledCheckBox( "24dB/oct", this );
|
|
m_db24Toggle->setWhatsThis(
|
|
tr( "303-es-que, 24dB/octave, 3 pole filter" ) );
|
|
m_db24Toggle->move( 10, 150);
|
|
|
|
|
|
m_slideDecKnob = new knob( knobBright_26, this );
|
|
m_slideDecKnob->move( 210, 75 );
|
|
m_slideDecKnob->setHintText( tr( "Slide Decay:" ) + " ", "" );
|
|
m_slideDecKnob->setLabel( tr( "SLIDE"));
|
|
|
|
m_distKnob = new knob( knobBright_26, this );
|
|
m_distKnob->move( 210, 190 );
|
|
m_distKnob->setHintText( tr( "DIST:" ) + " ", "" );
|
|
m_distKnob->setLabel( tr( "DIST"));
|
|
|
|
|
|
m_waveKnob = new knob( knobBright_26, this );
|
|
m_waveKnob->move( 120, 75 );
|
|
m_waveKnob->setHintText( tr( "WAVE:" ) + " ", "" );
|
|
m_waveKnob->setLabel( tr( "WAVE"));
|
|
|
|
|
|
setAutoFillBackground( TRUE );
|
|
QPalette pal;
|
|
pal.setBrush( backgroundRole(), PLUGIN_NAME::getIconPixmap(
|
|
"artwork" ) );
|
|
setPalette( pal );
|
|
}
|
|
|
|
|
|
lb303SynthView::~lb303SynthView()
|
|
{
|
|
}
|
|
|
|
|
|
void lb303SynthView::modelChanged( void )
|
|
{
|
|
lb303Synth * syn = castModel<lb303Synth>();
|
|
|
|
m_vcfCutKnob->setModel( &syn->vcf_cut_knob );
|
|
m_vcfResKnob->setModel( &syn->vcf_res_knob );
|
|
m_vcfDecKnob->setModel( &syn->vcf_dec_knob );
|
|
m_vcfModKnob->setModel( &syn->vcf_mod_knob );
|
|
m_slideDecKnob->setModel( &syn->slide_dec_knob );
|
|
|
|
m_distKnob->setModel( &syn->dist_knob );
|
|
m_waveKnob->setModel( &syn->wave_knob );
|
|
|
|
m_slideToggle->setModel( &syn->slideToggle );
|
|
m_accentToggle->setModel( &syn->accentToggle );
|
|
m_deadToggle->setModel( &syn->deadToggle );
|
|
m_db24Toggle->setModel( &syn->db24Toggle );
|
|
}
|
|
|
|
|
|
|
|
extern "C"
|
|
{
|
|
|
|
// neccessary for getting instance out of shared lib
|
|
plugin * PLUGIN_EXPORT lmms_plugin_main( model *, void * _data )
|
|
{
|
|
|
|
return( new lb303Synth(
|
|
static_cast<instrumentTrack *>( _data ) ) );
|
|
}
|
|
|
|
|
|
}
|
|
|
|
|