mirror of
https://github.com/LMMS/lmms.git
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Summary: * `NULL` -> `nullptr` * `gui` -> Function `getGUI()` * `pluginFactory` -> Function `getPluginFactory()` * `assert` (redefinition) -> using `NDEBUG` instead, which standard `assert` respects. * `powf` (C stdlib symbol clash) -> removed and all expansions replaced with calls to `std::pow`. * `exp10` (nonstandard function symbol clash) -> removed and all expansions replaced with calls to `std::pow`. * `PATH_DEV_DSP` -> File-scope QString of identical name and value. * `VST_SNC_SHM_KEY_FILE` -> constexpr char* with identical name and value. * `MM_ALLOC` and `MM_FREE` -> Functions with identical name and implementation. * `INVAL`, `OUTVAL`, etc. for automation nodes -> Functions with identical names and implementations. * BandLimitedWave.h: All integer constant macros replaced with constexpr ints of same name and value. * `FAST_RAND_MAX` -> constexpr int of same name and value. * `QSTR_TO_STDSTR` -> Function with identical name and equivalent implementation. * `CCONST` -> constexpr function template with identical name and implementation. * `F_OPEN_UTF8` -> Function with identical name and equivalent implementation. * `LADSPA_PATH_SEPARATOR` -> constexpr char with identical name and value. * `UI_CTRL_KEY` -> constexpr char* with identical name and value. * `ALIGN_SIZE` -> Renamed to `LMMS_ALIGN_SIZE` and converted from a macro to a constexpr size_t. * `JACK_MIDI_BUFFER_MAX` -> constexpr size_t with identical name and value. * versioninfo.h: `PLATFORM`, `MACHINE` and `COMPILER_VERSION` -> prefixed with `LMMS_BUILDCONF_` and converted from macros to constexpr char* literals. * Header guard _OSCILLOSCOPE -> renamed to OSCILLOSCOPE_H * Header guard _TIME_DISPLAY_WIDGET -> renamed to TIME_DISPLAY_WIDGET_H * C-style typecasts in DrumSynth.cpp have been replaced with `static_cast`. * constexpr numerical constants are initialized with assignment notation instead of curly brace intializers. * In portsmf, `Alg_seq::operator[]` will throw an exception instead of returning null if the operator index is out of range. Additionally, in many places, global constants that were declared as `const T foo = bar;` were changed from const to constexpr, leaving them const and making them potentially evaluable at compile time. Some macros that only appeared in single source files and were unused in those files have been removed entirely.
360 lines
8.6 KiB
C++
360 lines
8.6 KiB
C++
/*
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* MidiExport.cpp - support for Exporting MIDI files
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*
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* Copyright (c) 2015 Mohamed Abdel Maksoud <mohamed at amaksoud.com>
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* Copyright (c) 2017 Hyunjin Song <tteu.ingog/at/gmail.com>
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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 <QDomDocument>
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#include <QDir>
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#include <QApplication>
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#include <QMessageBox>
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#include <QProgressDialog>
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#include "MidiExport.h"
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#include "lmms_math.h"
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#include "TrackContainer.h"
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#include "BBTrack.h"
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#include "DataFile.h"
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#include "InstrumentTrack.h"
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#include "LocaleHelper.h"
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#include "plugin_export.h"
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extern "C"
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{
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Plugin::Descriptor PLUGIN_EXPORT midiexport_plugin_descriptor =
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{
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STRINGIFY( PLUGIN_NAME ),
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"MIDI Export",
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QT_TRANSLATE_NOOP( "PluginBrowser",
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"Filter for exporting MIDI-files from LMMS" ),
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"Mohamed Abdel Maksoud <mohamed at amaksoud.com> and "
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"Hyunjin Song <tteu.ingog/at/gmail.com>",
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0x0100,
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Plugin::ExportFilter,
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nullptr,
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nullptr,
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nullptr,
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} ;
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}
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MidiExport::MidiExport() : ExportFilter( &midiexport_plugin_descriptor)
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{
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}
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MidiExport::~MidiExport()
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{
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}
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bool MidiExport::tryExport(const TrackContainer::TrackList &tracks,
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const TrackContainer::TrackList &tracks_BB,
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int tempo, int masterPitch, const QString &filename)
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{
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QFile f(filename);
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f.open(QIODevice::WriteOnly);
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QDataStream midiout(&f);
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InstrumentTrack* instTrack;
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BBTrack* bbTrack;
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QDomElement element;
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int nTracks = 0;
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uint8_t buffer[BUFFER_SIZE];
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uint32_t size;
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for (const Track* track : tracks) if (track->type() == Track::InstrumentTrack) nTracks++;
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for (const Track* track : tracks_BB) if (track->type() == Track::InstrumentTrack) nTracks++;
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// midi header
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MidiFile::MIDIHeader header(nTracks);
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size = header.writeToBuffer(buffer);
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midiout.writeRawData((char *)buffer, size);
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std::vector<std::vector<std::pair<int,int>>> plists;
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// midi tracks
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for (Track* track : tracks)
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{
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DataFile dataFile(DataFile::SongProject);
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MTrack mtrack;
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if (track->type() == Track::InstrumentTrack)
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{
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mtrack.addName(track->name().toStdString(), 0);
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//mtrack.addProgramChange(0, 0);
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mtrack.addTempo(tempo, 0);
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instTrack = dynamic_cast<InstrumentTrack *>(track);
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element = instTrack->saveState(dataFile, dataFile.content());
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int base_pitch = 0;
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double base_volume = 1.0;
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int base_time = 0;
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MidiNoteVector pat;
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for (QDomNode n = element.firstChild(); !n.isNull(); n = n.nextSibling())
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{
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if (n.nodeName() == "instrumenttrack")
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{
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QDomElement it = n.toElement();
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base_pitch = (69 - it.attribute("basenote", "69").toInt());
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if (it.attribute("usemasterpitch", "1").toInt())
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{
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base_pitch += masterPitch;
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}
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base_volume = LocaleHelper::toDouble(it.attribute("volume", "100"))/100.0;
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}
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if (n.nodeName() == "pattern")
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{
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base_time = n.toElement().attribute("pos", "0").toInt();
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writePattern(pat, n, base_pitch, base_volume, base_time);
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}
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}
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ProcessBBNotes(pat, INT_MAX);
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writePatternToTrack(mtrack, pat);
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size = mtrack.writeToBuffer(buffer);
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midiout.writeRawData((char *)buffer, size);
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}
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if (track->type() == Track::BBTrack)
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{
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bbTrack = dynamic_cast<BBTrack *>(track);
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element = bbTrack->saveState(dataFile, dataFile.content());
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std::vector<std::pair<int,int>> plist;
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for (QDomNode n = element.firstChild(); !n.isNull(); n = n.nextSibling())
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{
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if (n.nodeName() == "bbtco")
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{
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QDomElement it = n.toElement();
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int pos = it.attribute("pos", "0").toInt();
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int len = it.attribute("len", "0").toInt();
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plist.push_back(std::pair<int,int>(pos, pos+len));
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}
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}
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std::sort(plist.begin(), plist.end());
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plists.push_back(plist);
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}
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} // for each track
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// midi tracks in BB tracks
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for (Track* track : tracks_BB)
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{
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DataFile dataFile(DataFile::SongProject);
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MTrack mtrack;
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auto itr = plists.begin();
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std::vector<std::pair<int,int>> st;
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if (track->type() != Track::InstrumentTrack) continue;
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mtrack.addName(track->name().toStdString(), 0);
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//mtrack.addProgramChange(0, 0);
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mtrack.addTempo(tempo, 0);
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instTrack = dynamic_cast<InstrumentTrack *>(track);
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element = instTrack->saveState(dataFile, dataFile.content());
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int base_pitch = 0;
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double base_volume = 1.0;
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for (QDomNode n = element.firstChild(); !n.isNull(); n = n.nextSibling())
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{
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if (n.nodeName() == "instrumenttrack")
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{
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QDomElement it = n.toElement();
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base_pitch = (69 - it.attribute("basenote", "69").toInt());
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if (it.attribute("usemasterpitch", "1").toInt())
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{
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base_pitch += masterPitch;
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}
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base_volume = LocaleHelper::toDouble(it.attribute("volume", "100")) / 100.0;
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}
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if (n.nodeName() == "pattern")
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{
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std::vector<std::pair<int,int>> &plist = *itr;
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MidiNoteVector nv, pat;
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writePattern(pat, n, base_pitch, base_volume, 0);
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// workaround for nested BBTCOs
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int pos = 0;
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int len = n.toElement().attribute("steps", "1").toInt() * 12;
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for (auto it = plist.begin(); it != plist.end(); ++it)
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{
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while (!st.empty() && st.back().second <= it->first)
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{
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writeBBPattern(pat, nv, len, st.back().first, pos, st.back().second);
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pos = st.back().second;
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st.pop_back();
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}
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if (!st.empty() && st.back().second <= it->second)
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{
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writeBBPattern(pat, nv, len, st.back().first, pos, it->first);
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pos = it->first;
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while (!st.empty() && st.back().second <= it->second)
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{
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st.pop_back();
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}
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}
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st.push_back(*it);
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pos = it->first;
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}
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while (!st.empty())
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{
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writeBBPattern(pat, nv, len, st.back().first, pos, st.back().second);
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pos = st.back().second;
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st.pop_back();
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}
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ProcessBBNotes(nv, pos);
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writePatternToTrack(mtrack, nv);
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++itr;
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}
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}
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size = mtrack.writeToBuffer(buffer);
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midiout.writeRawData((char *)buffer, size);
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}
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return true;
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}
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void MidiExport::writePattern(MidiNoteVector &pat, QDomNode n,
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int base_pitch, double base_volume, int base_time)
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{
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// TODO interpret steps="12" muted="0" type="1" name="Piano1" len="2592"
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for (QDomNode nn = n.firstChild(); !nn.isNull(); nn = nn.nextSibling())
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{
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QDomElement note = nn.toElement();
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if (note.attribute("len", "0") == "0") continue;
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// TODO interpret pan="0" fxch="0" pitchrange="1"
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MidiNote mnote;
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mnote.pitch = qMax(0, qMin(127, note.attribute("key", "0").toInt() + base_pitch));
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// Map from LMMS volume to MIDI velocity
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mnote.volume = qMin(qRound(base_volume * LocaleHelper::toDouble(note.attribute("vol", "100")) * (127.0 / 200.0)), 127);
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mnote.time = base_time + note.attribute("pos", "0").toInt();
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mnote.duration = note.attribute("len", "0").toInt();
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pat.push_back(mnote);
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}
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}
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void MidiExport::writePatternToTrack(MTrack &mtrack, MidiNoteVector &nv)
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{
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for (auto it = nv.begin(); it != nv.end(); ++it)
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{
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mtrack.addNote(it->pitch, it->volume, it->time / 48.0, it->duration / 48.0);
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}
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}
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void MidiExport::writeBBPattern(MidiNoteVector &src, MidiNoteVector &dst,
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int len, int base, int start, int end)
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{
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if (start >= end) { return; }
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start -= base;
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end -= base;
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std::sort(src.begin(), src.end());
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for (auto it = src.begin(); it != src.end(); ++it)
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{
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for (int time = it->time + ceil((start - it->time) / len)
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* len; time < end; time += len)
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{
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MidiNote note;
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note.duration = it->duration;
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note.pitch = it->pitch;
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note.time = base + time;
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note.volume = it->volume;
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dst.push_back(note);
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}
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}
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}
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void MidiExport::ProcessBBNotes(MidiNoteVector &nv, int cutPos)
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{
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std::sort(nv.begin(), nv.end());
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int cur = INT_MAX, next = INT_MAX;
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for (auto it = nv.rbegin(); it != nv.rend(); ++it)
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{
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if (it->time < cur)
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{
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next = cur;
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cur = it->time;
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}
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if (it->duration < 0)
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{
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it->duration = qMin(qMin(-it->duration, next - cur), cutPos - it->time);
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}
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}
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}
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void MidiExport::error()
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{
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//qDebug() << "MidiExport error: " << m_error ;
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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 *, void * _data )
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{
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return new MidiExport();
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}
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}
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