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* use c++ std::* math functions This updates usages of sin, cos, tan, pow, exp, log, log10, sqrt, fmod, fabs, and fabsf, excluding any usages that look like they might be part of a submodule or 3rd-party code. There's probably some std math functions not listed here that haven't been updated yet. * fix std::sqrt typo lmao one always sneaks by * Apply code review suggestions - std::pow(2, x) -> std::exp2(x) - std::pow(10, x) -> lmms::fastPow10f(x) - std::pow(x, 2) -> x * x, std::pow(x, 3) -> x * x * x, etc. - Resolve TODOs, fix typos, and so forth Co-authored-by: Rossmaxx <74815851+Rossmaxx@users.noreply.github.com> * Fix double -> float truncation, DrumSynth fix I mistakenly introduced a bug in my recent PR regarding template constants, in which a -1 that was supposed to appear outside of an abs() instead was moved inside it, screwing up the generated waveform. I fixed that and also simplified the function by factoring out the phase domain wrapping using the new `ediv()` function from this PR. It should behave how it's supposed to now... assuming all my parentheses are in the right place lol * Annotate magic numbers with TODOs for C++20 * On second thought, why wait? What else is lmms::numbers for? * begone inline Co-authored-by: Rossmaxx <74815851+Rossmaxx@users.noreply.github.com> * begone other inline Co-authored-by: Rossmaxx <74815851+Rossmaxx@users.noreply.github.com> * Re-inline function in lmms_math.h For functions, constexpr implies inline so this just re-adds inline to the one that isn't constexpr yet * Formatting fixes, readability improvements Co-authored-by: Dalton Messmer <messmer.dalton@gmail.com> * Fix previously missed pow() calls, cleanup Co-authored-by: Dalton Messmer <messmer.dalton@gmail.com> * Just delete ediv() entirely lmao No ediv(), no std::fmod(), no std::remainder(), just std::floor(). It should all work for negative phase inputs as well. If I end up needing ediv() in the future, I can add it then. * Simplify DrumSynth triangle waveform This reuses more work and is also a lot more easy to visualize. It's probably a meaningless micro-optimization, but it might be worth changing it back to a switch-case and just calculating ph_tau and saw01 at the beginning of the function in all code paths, even if it goes unused for the first two cases. Guess I'll see if anybody has strong opinions about it. * Move multiplication inside abs() * Clean up a few more pow(x, 2) -> x * x * Remove numbers::inv_pi, numbers::inv_tau * delete spooky leading 0 Co-authored-by: Dalton Messmer <messmer.dalton@gmail.com> --------- Co-authored-by: Rossmaxx <74815851+Rossmaxx@users.noreply.github.com> Co-authored-by: Dalton Messmer <messmer.dalton@gmail.com>
558 lines
13 KiB
C++
558 lines
13 KiB
C++
/*
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* BitInvader.cpp - instrument which uses a usereditable wavetable
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*
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* Copyright (c) 2006-2008 Andreas Brandmaier <andy/at/brandmaier/dot/de>
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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 <QDomElement>
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#include "BitInvader.h"
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#include "AudioEngine.h"
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#include "base64.h"
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#include "Engine.h"
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#include "Graph.h"
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#include "InstrumentTrack.h"
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#include "Knob.h"
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#include "LedCheckBox.h"
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#include "NotePlayHandle.h"
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#include "PixmapButton.h"
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#include "Song.h"
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#include "interpolation.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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static const int wavetableSize = 200;
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static const float defaultNormalizationFactor = 1.0f;
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extern "C"
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{
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Plugin::Descriptor PLUGIN_EXPORT bitinvader_plugin_descriptor =
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{
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LMMS_STRINGIFY( PLUGIN_NAME ),
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"BitInvader",
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QT_TRANSLATE_NOOP( "PluginBrowser",
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"Customizable wavetable synthesizer" ),
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"Andreas Brandmaier <andreas/at/brandmaier/dot/de>",
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0x0100,
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Plugin::Type::Instrument,
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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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BSynth::BSynth( float * _shape, NotePlayHandle * _nph, bool _interpolation,
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float _factor, const sample_rate_t _sample_rate ) :
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sample_index( 0 ),
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sample_realindex( 0 ),
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nph( _nph ),
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sample_rate( _sample_rate ),
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interpolation( _interpolation)
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{
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sample_shape = new float[wavetableSize];
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for (int i=0; i < wavetableSize; ++i)
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{
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float buf = _shape[i] * _factor;
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/* Double check that normalization has been performed correctly,
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i.e., the absolute value of all samples is <= 1.0 if _factor
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is different to the default normalization factor. If there is
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a value > 1.0, clip the sample to 1.0 to limit the range. */
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if ((_factor != defaultNormalizationFactor) && (std::abs(buf) > 1.0f))
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{
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buf = (buf < 0) ? -1.0f : 1.0f;
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}
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sample_shape[i] = buf;
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}
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}
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BSynth::~BSynth()
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{
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delete[] sample_shape;
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}
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sample_t BSynth::nextStringSample( float sample_length )
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{
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auto sample_step = static_cast<float>(sample_length / (sample_rate / nph->frequency()));
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// check overflow
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while (sample_realindex >= sample_length) {
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sample_realindex -= sample_length;
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}
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const auto currentRealIndex = sample_realindex;
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const auto currentIndex = static_cast<int>(sample_realindex);
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sample_realindex += sample_step;
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if (!interpolation)
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{
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sample_index = currentIndex;
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return sample_shape[sample_index];
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}
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const auto nextIndex = currentIndex < sample_length - 1 ? currentIndex + 1 : 0;
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return linearInterpolate(sample_shape[currentIndex], sample_shape[nextIndex], fraction(currentRealIndex));
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}
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/***********************************************************************
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*
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* class BitInvader
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*
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* lmms - plugin
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*
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***********************************************************************/
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BitInvader::BitInvader( InstrumentTrack * _instrument_track ) :
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Instrument( _instrument_track, &bitinvader_plugin_descriptor ),
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m_sampleLength(wavetableSize, 4, wavetableSize, 1, this, tr("Sample length")),
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m_graph(-1.0f, 1.0f, wavetableSize, this),
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m_interpolation(false, this, tr("Interpolation")),
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m_normalize(false, this, tr("Normalize"))
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{
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m_graph.setWaveToSine();
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lengthChanged();
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connect( &m_sampleLength, SIGNAL( dataChanged() ),
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this, SLOT( lengthChanged() ), Qt::DirectConnection );
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connect( &m_graph, SIGNAL( samplesChanged( int, int ) ),
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this, SLOT( samplesChanged( int, int ) ) );
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}
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void BitInvader::saveSettings( QDomDocument & _doc, QDomElement & _this )
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{
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// Save plugin version
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_this.setAttribute( "version", "0.1" );
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// Save sample length
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m_sampleLength.saveSettings( _doc, _this, "sampleLength" );
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// Save sample shape base64-encoded
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QString sampleString;
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base64::encode((const char *)m_graph.samples(),
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wavetableSize * sizeof(float), sampleString);
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_this.setAttribute( "sampleShape", sampleString );
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// save LED normalize
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m_interpolation.saveSettings( _doc, _this, "interpolation" );
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// save LED
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m_normalize.saveSettings( _doc, _this, "normalize" );
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}
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void BitInvader::loadSettings( const QDomElement & _this )
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{
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// Clear wavetable before loading a new
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m_graph.clear();
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// Load sample length
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m_sampleLength.loadSettings( _this, "sampleLength" );
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int sampleLength = (int)m_sampleLength.value();
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// Load sample shape
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int size = 0;
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char * dst = 0;
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base64::decode( _this.attribute( "sampleShape"), &dst, &size );
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m_graph.setLength(size / sizeof(float));
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m_graph.setSamples(reinterpret_cast<float*>(dst));
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m_graph.setLength(sampleLength);
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delete[] dst;
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// Load LED normalize
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m_interpolation.loadSettings( _this, "interpolation" );
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// Load LED
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m_normalize.loadSettings( _this, "normalize" );
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}
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void BitInvader::lengthChanged()
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{
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m_graph.setLength( (int) m_sampleLength.value() );
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normalize();
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}
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void BitInvader::samplesChanged( int _begin, int _end )
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{
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normalize();
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//engine::getSongEditor()->setModified();
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}
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void BitInvader::normalize()
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{
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// analyze
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float max = std::numeric_limits<float>::epsilon();
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const float* samples = m_graph.samples();
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for(int i=0; i < m_graph.length(); i++)
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{
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const float f = std::abs(samples[i]);
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if (f > max) { max = f; }
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}
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m_normalizeFactor = 1.0 / max;
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}
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QString BitInvader::nodeName() const
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{
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return( bitinvader_plugin_descriptor.name );
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}
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void BitInvader::playNote( NotePlayHandle * _n,
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SampleFrame* _working_buffer )
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{
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if (!_n->m_pluginData)
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{
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float factor = !m_normalize.value() ? defaultNormalizationFactor : m_normalizeFactor;
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_n->m_pluginData = new BSynth(
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const_cast<float*>( m_graph.samples() ),
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_n,
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m_interpolation.value(), factor,
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Engine::audioEngine()->outputSampleRate() );
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}
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const fpp_t frames = _n->framesLeftForCurrentPeriod();
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const f_cnt_t offset = _n->noteOffset();
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auto ps = static_cast<BSynth*>(_n->m_pluginData);
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for( fpp_t frame = offset; frame < frames + offset; ++frame )
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{
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_working_buffer[frame] = SampleFrame(ps->nextStringSample(m_graph.length()));
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}
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applyRelease( _working_buffer, _n );
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}
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void BitInvader::deleteNotePluginData( NotePlayHandle * _n )
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{
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delete static_cast<BSynth *>( _n->m_pluginData );
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}
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gui::PluginView * BitInvader::instantiateView( QWidget * _parent )
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{
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return( new gui::BitInvaderView( this, _parent ) );
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}
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namespace gui
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{
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BitInvaderView::BitInvaderView( Instrument * _instrument,
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QWidget * _parent ) :
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InstrumentViewFixedSize( _instrument, _parent )
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{
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setAutoFillBackground( true );
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QPalette pal;
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pal.setBrush( backgroundRole(), PLUGIN_NAME::getIconPixmap(
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"artwork" ) );
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setPalette( pal );
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m_sampleLengthKnob = new Knob( KnobType::Dark28, this );
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m_sampleLengthKnob->move( 6, 201 );
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m_sampleLengthKnob->setHintText( tr( "Sample length" ), "" );
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m_graph = new Graph( this, Graph::Style::Nearest, 204, 134 );
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m_graph->move(23,59); // 55,120 - 2px border
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m_graph->setAutoFillBackground( true );
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m_graph->setGraphColor( QColor( 255, 255, 255 ) );
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m_graph->setToolTip(tr("Draw your own waveform here "
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"by dragging your mouse on this graph."
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));
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pal = QPalette();
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pal.setBrush( backgroundRole(),
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PLUGIN_NAME::getIconPixmap("wavegraph") );
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m_graph->setPalette( pal );
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m_sinWaveBtn = new PixmapButton( this, tr( "Sine wave" ) );
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m_sinWaveBtn->move( 131, 205 );
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m_sinWaveBtn->setActiveGraphic( embed::getIconPixmap(
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"sin_wave_active" ) );
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m_sinWaveBtn->setInactiveGraphic( embed::getIconPixmap(
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"sin_wave_inactive" ) );
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m_sinWaveBtn->setToolTip(
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tr( "Sine wave" ) );
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m_triangleWaveBtn = new PixmapButton( this, tr( "Triangle wave" ) );
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m_triangleWaveBtn->move( 131 + 14, 205 );
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m_triangleWaveBtn->setActiveGraphic(
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embed::getIconPixmap( "triangle_wave_active" ) );
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m_triangleWaveBtn->setInactiveGraphic(
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embed::getIconPixmap( "triangle_wave_inactive" ) );
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m_triangleWaveBtn->setToolTip(
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tr( "Triangle wave" ) );
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m_sawWaveBtn = new PixmapButton( this, tr( "Saw wave" ) );
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m_sawWaveBtn->move( 131 + 14*2, 205 );
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m_sawWaveBtn->setActiveGraphic( embed::getIconPixmap(
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"saw_wave_active" ) );
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m_sawWaveBtn->setInactiveGraphic( embed::getIconPixmap(
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"saw_wave_inactive" ) );
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m_sawWaveBtn->setToolTip(
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tr( "Saw wave" ) );
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m_sqrWaveBtn = new PixmapButton( this, tr( "Square wave" ) );
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m_sqrWaveBtn->move( 131 + 14*3, 205 );
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m_sqrWaveBtn->setActiveGraphic( embed::getIconPixmap(
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"square_wave_active" ) );
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m_sqrWaveBtn->setInactiveGraphic( embed::getIconPixmap(
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"square_wave_inactive" ) );
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m_sqrWaveBtn->setToolTip(
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tr( "Square wave" ) );
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m_whiteNoiseWaveBtn = new PixmapButton( this,
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tr( "White noise" ) );
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m_whiteNoiseWaveBtn->move( 131 + 14*4, 205 );
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m_whiteNoiseWaveBtn->setActiveGraphic(
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embed::getIconPixmap( "white_noise_wave_active" ) );
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m_whiteNoiseWaveBtn->setInactiveGraphic(
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embed::getIconPixmap( "white_noise_wave_inactive" ) );
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m_whiteNoiseWaveBtn->setToolTip(
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tr( "White noise" ) );
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m_usrWaveBtn = new PixmapButton( this, tr( "User-defined wave" ) );
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m_usrWaveBtn->move( 131 + 14*5, 205 );
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m_usrWaveBtn->setActiveGraphic( embed::getIconPixmap(
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"usr_wave_active" ) );
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m_usrWaveBtn->setInactiveGraphic( embed::getIconPixmap(
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"usr_wave_inactive" ) );
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m_usrWaveBtn->setToolTip(
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tr( "User-defined wave" ) );
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m_smoothBtn = new PixmapButton( this, tr( "Smooth waveform" ) );
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m_smoothBtn->move( 131 + 14*6, 205 );
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m_smoothBtn->setActiveGraphic( PLUGIN_NAME::getIconPixmap(
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"smooth_active" ) );
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m_smoothBtn->setInactiveGraphic( PLUGIN_NAME::getIconPixmap(
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"smooth_inactive" ) );
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m_smoothBtn->setToolTip(
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tr( "Smooth waveform" ) );
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m_interpolationToggle = new LedCheckBox( "Interpolation", this,
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tr( "Interpolation" ), LedCheckBox::LedColor::Yellow );
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m_interpolationToggle->move( 131, 221 );
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m_normalizeToggle = new LedCheckBox( "Normalize", this,
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tr( "Normalize" ), LedCheckBox::LedColor::Green );
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m_normalizeToggle->move( 131, 236 );
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connect( m_sinWaveBtn, SIGNAL (clicked () ),
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this, SLOT ( sinWaveClicked() ) );
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connect( m_triangleWaveBtn, SIGNAL ( clicked () ),
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this, SLOT ( triangleWaveClicked() ) );
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connect( m_sawWaveBtn, SIGNAL (clicked () ),
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this, SLOT ( sawWaveClicked() ) );
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connect( m_sqrWaveBtn, SIGNAL ( clicked () ),
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this, SLOT ( sqrWaveClicked() ) );
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connect( m_whiteNoiseWaveBtn, SIGNAL ( clicked () ),
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this, SLOT ( noiseWaveClicked() ) );
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connect( m_usrWaveBtn, SIGNAL ( clicked () ),
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this, SLOT ( usrWaveClicked() ) );
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connect( m_smoothBtn, SIGNAL ( clicked () ),
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this, SLOT ( smoothClicked() ) );
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connect( m_interpolationToggle, SIGNAL( toggled( bool ) ),
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this, SLOT ( interpolationToggled( bool ) ) );
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connect( m_normalizeToggle, SIGNAL( toggled( bool ) ),
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this, SLOT ( normalizeToggled( bool ) ) );
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}
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void BitInvaderView::modelChanged()
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{
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auto b = castModel<BitInvader>();
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m_graph->setModel( &b->m_graph );
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m_sampleLengthKnob->setModel( &b->m_sampleLength );
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m_interpolationToggle->setModel( &b->m_interpolation );
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m_normalizeToggle->setModel( &b->m_normalize );
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}
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void BitInvaderView::sinWaveClicked()
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{
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m_graph->model()->clearInvisible();
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m_graph->model()->setWaveToSine();
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Engine::getSong()->setModified();
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}
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void BitInvaderView::triangleWaveClicked()
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{
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m_graph->model()->clearInvisible();
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m_graph->model()->setWaveToTriangle();
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Engine::getSong()->setModified();
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}
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void BitInvaderView::sawWaveClicked()
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{
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m_graph->model()->clearInvisible();
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m_graph->model()->setWaveToSaw();
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Engine::getSong()->setModified();
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}
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void BitInvaderView::sqrWaveClicked()
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{
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m_graph->model()->clearInvisible();
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m_graph->model()->setWaveToSquare();
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Engine::getSong()->setModified();
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}
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void BitInvaderView::noiseWaveClicked()
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{
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m_graph->model()->clearInvisible();
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m_graph->model()->setWaveToNoise();
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Engine::getSong()->setModified();
|
|
}
|
|
|
|
|
|
|
|
|
|
void BitInvaderView::usrWaveClicked()
|
|
{
|
|
QString fileName = m_graph->model()->setWaveToUser();
|
|
if (!fileName.isEmpty())
|
|
{
|
|
m_usrWaveBtn->setToolTip(fileName);
|
|
m_graph->model()->clearInvisible();
|
|
Engine::getSong()->setModified();
|
|
}
|
|
}
|
|
|
|
|
|
|
|
|
|
void BitInvaderView::smoothClicked()
|
|
{
|
|
m_graph->model()->smooth();
|
|
Engine::getSong()->setModified();
|
|
}
|
|
|
|
|
|
|
|
|
|
void BitInvaderView::interpolationToggled( bool value )
|
|
{
|
|
m_graph->setGraphStyle( value ? Graph::Style::Linear : Graph::Style::Nearest);
|
|
Engine::getSong()->setModified();
|
|
}
|
|
|
|
|
|
|
|
|
|
void BitInvaderView::normalizeToggled( bool value )
|
|
{
|
|
Engine::getSong()->setModified();
|
|
}
|
|
|
|
|
|
} // namespace gui
|
|
|
|
|
|
extern "C"
|
|
{
|
|
|
|
// necessary for getting instance out of shared lib
|
|
PLUGIN_EXPORT Plugin * lmms_plugin_main( Model *m, void * )
|
|
{
|
|
return( new BitInvader( static_cast<InstrumentTrack *>( m ) ) );
|
|
}
|
|
|
|
|
|
}
|
|
|
|
|
|
} // namespace lmms
|