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* Move common effect processing code to wrapper method
- Introduce `processImpl` and `sleepImpl` methods, and adapt each effect
plugin to use them
- Use double for RMS out sum in Compressor and LOMM
- Run `checkGate` for GranularPitchShifterEffect
- Minor changes to LadspaEffect
- Remove dynamic allocations and VLAs from VstEffect's process method
- Some minor style/formatting fixes
* Fix VstEffect regression
* GranularPitchShifterEffect should not call `checkGate`
* Apply suggestions from code review
Co-authored-by: saker <sakertooth@gmail.com>
* Follow naming convention for local variables
* Add `MAXIMUM_BUFFER_SIZE` and use it in VstEffect
* Revert "GranularPitchShifterEffect should not call `checkGate`"
This reverts commit 67526f0ffe.
* VstEffect: Simplify setting "Don't Run" state
* Rename `sleepImpl` to `processBypassedImpl`
* Use `MAXIMUM_BUFFER_SIZE` in SetupDialog
* Pass `outSum` as out parameter; Fix LadspaEffect mutex
* Move outSum calculations to wrapper method
* Fix Linux build
* Oops
* Apply suggestions from code review
Co-authored-by: Johannes Lorenz <1042576+JohannesLorenz@users.noreply.github.com>
* Apply suggestions from code review
Co-authored-by: saker <sakertooth@gmail.com>
---------
Co-authored-by: saker <sakertooth@gmail.com>
Co-authored-by: Johannes Lorenz <1042576+JohannesLorenz@users.noreply.github.com>
223 lines
5.8 KiB
C++
223 lines
5.8 KiB
C++
/*
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* CrossoverEQ.cpp - A native 4-band Crossover Equalizer
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* good for simulating tonestacks or simple peakless (flat-band) equalization
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*
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* Copyright (c) 2014 Vesa Kivimäki <contact/dot/diizy/at/nbl/dot/fi>
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* Copyright (c) 2006-2014 Tobias Doerffel <tobydox/at/users.sourceforge.net>
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*
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* This file is part of LMMS - https://lmms.io
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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 "CrossoverEQ.h"
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#include "lmms_math.h"
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#include "embed.h"
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#include "plugin_export.h"
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namespace lmms
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{
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extern "C"
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{
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Plugin::Descriptor PLUGIN_EXPORT crossovereq_plugin_descriptor =
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{
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LMMS_STRINGIFY( PLUGIN_NAME ),
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"Crossover Equalizer",
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QT_TRANSLATE_NOOP( "PluginBrowser", "A 4-band Crossover Equalizer" ),
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"Vesa Kivimäki <contact/dot/diizy/at/nbl/dot/fi>",
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0x0100,
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Plugin::Type::Effect,
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new PluginPixmapLoader( "logo" ),
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nullptr,
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nullptr,
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};
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}
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CrossoverEQEffect::CrossoverEQEffect( Model* parent, const Descriptor::SubPluginFeatures::Key* key ) :
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Effect( &crossovereq_plugin_descriptor, parent, key ),
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m_controls( this ),
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m_sampleRate( Engine::audioEngine()->outputSampleRate() ),
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m_lp1( m_sampleRate ),
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m_lp2( m_sampleRate ),
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m_lp3( m_sampleRate ),
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m_hp2( m_sampleRate ),
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m_hp3( m_sampleRate ),
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m_hp4( m_sampleRate ),
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m_needsUpdate( true )
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{
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m_tmp2 = new SampleFrame[Engine::audioEngine()->framesPerPeriod()];
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m_tmp1 = new SampleFrame[Engine::audioEngine()->framesPerPeriod()];
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m_work = new SampleFrame[Engine::audioEngine()->framesPerPeriod()];
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}
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CrossoverEQEffect::~CrossoverEQEffect()
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{
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delete[] m_tmp1;
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delete[] m_tmp2;
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delete[] m_work;
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}
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void CrossoverEQEffect::sampleRateChanged()
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{
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m_sampleRate = Engine::audioEngine()->outputSampleRate();
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m_lp1.setSampleRate( m_sampleRate );
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m_lp2.setSampleRate( m_sampleRate );
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m_lp3.setSampleRate( m_sampleRate );
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m_hp2.setSampleRate( m_sampleRate );
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m_hp3.setSampleRate( m_sampleRate );
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m_hp4.setSampleRate( m_sampleRate );
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m_needsUpdate = true;
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}
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Effect::ProcessStatus CrossoverEQEffect::processImpl(SampleFrame* buf, const fpp_t frames)
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{
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// filters update
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if( m_needsUpdate || m_controls.m_xover12.isValueChanged() )
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{
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m_lp1.setLowpass( m_controls.m_xover12.value() );
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m_hp2.setHighpass( m_controls.m_xover12.value() );
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}
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if( m_needsUpdate || m_controls.m_xover23.isValueChanged() )
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{
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m_lp2.setLowpass( m_controls.m_xover23.value() );
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m_hp3.setHighpass( m_controls.m_xover23.value() );
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}
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if( m_needsUpdate || m_controls.m_xover34.isValueChanged() )
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{
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m_lp3.setLowpass( m_controls.m_xover34.value() );
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m_hp4.setHighpass( m_controls.m_xover34.value() );
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}
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// gain values update
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if( m_needsUpdate || m_controls.m_gain1.isValueChanged() )
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{
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m_gain1 = dbfsToAmp( m_controls.m_gain1.value() );
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}
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if( m_needsUpdate || m_controls.m_gain2.isValueChanged() )
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{
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m_gain2 = dbfsToAmp( m_controls.m_gain2.value() );
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}
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if( m_needsUpdate || m_controls.m_gain3.isValueChanged() )
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{
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m_gain3 = dbfsToAmp( m_controls.m_gain3.value() );
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}
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if( m_needsUpdate || m_controls.m_gain4.isValueChanged() )
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{
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m_gain4 = dbfsToAmp( m_controls.m_gain4.value() );
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}
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// mute values update
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const bool mute1 = m_controls.m_mute1.value();
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const bool mute2 = m_controls.m_mute2.value();
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const bool mute3 = m_controls.m_mute3.value();
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const bool mute4 = m_controls.m_mute4.value();
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m_needsUpdate = false;
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zeroSampleFrames(m_work, frames);
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// run temp bands
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for (auto f = std::size_t{0}; f < frames; ++f)
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{
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m_tmp1[f][0] = m_lp2.update( buf[f][0], 0 );
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m_tmp1[f][1] = m_lp2.update( buf[f][1], 1 );
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m_tmp2[f][0] = m_hp3.update( buf[f][0], 0 );
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m_tmp2[f][1] = m_hp3.update( buf[f][1], 1 );
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}
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// run band 1
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if( mute1 )
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{
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for (auto f = std::size_t{0}; f < frames; ++f)
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{
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m_work[f][0] += m_lp1.update( m_tmp1[f][0], 0 ) * m_gain1;
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m_work[f][1] += m_lp1.update( m_tmp1[f][1], 1 ) * m_gain1;
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}
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}
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// run band 2
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if( mute2 )
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{
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for (auto f = std::size_t{0}; f < frames; ++f)
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{
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m_work[f][0] += m_hp2.update( m_tmp1[f][0], 0 ) * m_gain2;
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m_work[f][1] += m_hp2.update( m_tmp1[f][1], 1 ) * m_gain2;
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}
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}
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// run band 3
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if( mute3 )
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{
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for (auto f = std::size_t{0}; f < frames; ++f)
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{
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m_work[f][0] += m_lp3.update( m_tmp2[f][0], 0 ) * m_gain3;
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m_work[f][1] += m_lp3.update( m_tmp2[f][1], 1 ) * m_gain3;
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}
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}
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// run band 4
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if( mute4 )
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{
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for (auto f = std::size_t{0}; f < frames; ++f)
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{
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m_work[f][0] += m_hp4.update( m_tmp2[f][0], 0 ) * m_gain4;
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m_work[f][1] += m_hp4.update( m_tmp2[f][1], 1 ) * m_gain4;
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}
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}
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const float d = dryLevel();
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const float w = wetLevel();
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for (auto f = std::size_t{0}; f < frames; ++f)
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{
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buf[f][0] = d * buf[f][0] + w * m_work[f][0];
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buf[f][1] = d * buf[f][1] + w * m_work[f][1];
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}
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return ProcessStatus::ContinueIfNotQuiet;
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}
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void CrossoverEQEffect::clearFilterHistories()
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{
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m_lp1.clearHistory();
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m_lp2.clearHistory();
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m_lp3.clearHistory();
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m_hp2.clearHistory();
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m_hp3.clearHistory();
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m_hp4.clearHistory();
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}
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extern "C"
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{
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// necessary for getting instance out of shared lib
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PLUGIN_EXPORT Plugin * lmms_plugin_main( Model* parent, void* data )
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{
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return new CrossoverEQEffect( parent, static_cast<const Plugin::Descriptor::SubPluginFeatures::Key *>( data ) );
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}
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}
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} // namespace lmms
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