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1 /* -*- c-basic-offset: 4 indent-tabs-mode: nil -*- vi:set ts=8 sts=4 sw=4: */
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2
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3 /*
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4 Sonic Visualiser
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5 An audio file viewer and annotation editor.
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6 Centre for Digital Music, Queen Mary, University of London.
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7
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8 This program is free software; you can redistribute it and/or
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9 modify it under the terms of the GNU General Public License as
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10 published by the Free Software Foundation; either version 2 of the
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11 License, or (at your option) any later version. See the file
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12 COPYING included with this distribution for more information.
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13 */
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14
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15
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16 /*
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17 This is a modified version of a source file from the
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18 Rosegarden MIDI and audio sequencer and notation editor.
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19 This file copyright 2000-2007 Richard Bown and Chris Cannam
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20 and copyright 2007 QMUL.
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21 */
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22
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23 #include "MIDIFileWriter.h"
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24
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25 #include "data/midi/MIDIEvent.h"
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26 #include "model/NoteData.h"
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27
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28 #include "base/Pitch.h"
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29
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30 #include <QCoreApplication>
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31
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32 #include <algorithm>
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33 #include <fstream>
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34
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35 //#define DEBUG_MIDI_FILE_WRITER 1
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36
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37 using std::ofstream;
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38 using std::string;
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39 using std::ios;
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40
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41 using namespace MIDIConstants;
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42
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43 MIDIFileWriter::MIDIFileWriter(QString path, const NoteExportable *exportable,
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44 sv_samplerate_t sampleRate, float tempo) :
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45 m_path(path),
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46 m_exportable(exportable),
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47 m_sampleRate(sampleRate),
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48 m_tempo(tempo),
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49 m_midiFile(0)
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50 {
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51 if (!convert()) {
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52 m_error = "Conversion from model to internal MIDI format failed";
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53 }
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54 }
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55
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56 MIDIFileWriter::~MIDIFileWriter()
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57 {
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58 for (MIDIComposition::iterator i = m_midiComposition.begin();
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59 i != m_midiComposition.end(); ++i) {
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60
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61 for (MIDITrack::iterator j = i->second.begin();
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62 j != i->second.end(); ++j) {
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63 delete *j;
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64 }
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65
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66 i->second.clear();
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67 }
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68
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69 m_midiComposition.clear();
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70 }
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71
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72 bool
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73 MIDIFileWriter::isOK() const
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74 {
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75 return m_error == "";
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76 }
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77
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78 QString
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79 MIDIFileWriter::getError() const
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80 {
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81 return m_error;
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82 }
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83
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84 void
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85 MIDIFileWriter::write()
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86 {
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87 writeComposition();
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88 }
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89
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90 string
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91 MIDIFileWriter::intToMIDIBytes(int number) const
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92 {
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93 MIDIByte upper;
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94 MIDIByte lower;
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95
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96 upper = MIDIByte((number & 0xFF00) >> 8);
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97 lower = MIDIByte( number & 0x00FF);
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98
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99 string rv;
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100 rv += upper;
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101 rv += lower;
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102 return rv;
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103 }
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104
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105 string
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106 MIDIFileWriter::longToMIDIBytes(unsigned long number) const
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107 {
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108 MIDIByte upper1;
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109 MIDIByte lower1;
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110 MIDIByte upper2;
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111 MIDIByte lower2;
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112
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113 upper1 = MIDIByte((number & 0xff000000) >> 24);
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114 lower1 = MIDIByte((number & 0x00ff0000) >> 16);
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115 upper2 = MIDIByte((number & 0x0000ff00) >> 8);
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116 lower2 = MIDIByte((number & 0x000000ff));
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117
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118 string rv;
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119 rv += upper1;
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120 rv += lower1;
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121 rv += upper2;
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122 rv += lower2;
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123 return rv;
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124 }
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125
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126 // Turn a delta time into a MIDI time - overlapping into
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127 // a maximum of four bytes using the MSB as the carry on
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128 // flag.
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129 //
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130 string
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131 MIDIFileWriter::longToVarBuffer(unsigned long number) const
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132 {
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133 string rv;
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134
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135 long inNumber = number;
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136 long outNumber;
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137
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138 // get the lowest 7 bits of the number
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139 outNumber = number & 0x7f;
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140
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141 // Shift and test and move the numbers
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142 // on if we need them - setting the MSB
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143 // as we go.
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144 //
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145 while ((inNumber >>= 7 ) > 0) {
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146 outNumber <<= 8;
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147 outNumber |= 0x80;
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148 outNumber += (inNumber & 0x7f);
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149 }
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150
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151 // Now move the converted number out onto the buffer
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152 //
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153 while (true) {
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154 rv += (MIDIByte)(outNumber & 0xff);
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155 if (outNumber & 0x80)
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156 outNumber >>= 8;
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157 else
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158 break;
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159 }
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160
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161 return rv;
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162 }
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163
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164 bool
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165 MIDIFileWriter::writeHeader()
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166 {
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167 *m_midiFile << MIDI_FILE_HEADER;
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168
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169 // Number of bytes in header
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170 *m_midiFile << (MIDIByte) 0x00;
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171 *m_midiFile << (MIDIByte) 0x00;
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172 *m_midiFile << (MIDIByte) 0x00;
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173 *m_midiFile << (MIDIByte) 0x06;
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174
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175 // File format
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176 *m_midiFile << (MIDIByte) 0x00;
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177 *m_midiFile << (MIDIByte) m_format;
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178
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179 *m_midiFile << intToMIDIBytes(m_numberOfTracks);
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180
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181 *m_midiFile << intToMIDIBytes(m_timingDivision);
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182
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183 return true;
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184 }
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185
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186 bool
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187 MIDIFileWriter::writeTrack(int trackNumber)
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188 {
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189 bool retOK = true;
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190 MIDIByte eventCode = 0;
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191 MIDITrack::iterator midiEvent;
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192
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193 // First we write into the trackBuffer, then write it out to the
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194 // file with its accompanying length.
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195 //
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196 string trackBuffer;
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197
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198 for (midiEvent = m_midiComposition[trackNumber].begin();
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199 midiEvent != m_midiComposition[trackNumber].end();
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200 midiEvent++) {
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201
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202 // Write the time to the buffer in MIDI format
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203 trackBuffer += longToVarBuffer((*midiEvent)->getTime());
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204
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205 if ((*midiEvent)->isMeta()) {
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206 trackBuffer += MIDI_FILE_META_EVENT;
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207 trackBuffer += (*midiEvent)->getMetaEventCode();
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208
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209 // Variable length number field
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210 trackBuffer += longToVarBuffer((*midiEvent)->
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211 getMetaMessage().length());
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212
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213 trackBuffer += (*midiEvent)->getMetaMessage();
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214 } else {
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215 // Send the normal event code (with encoded channel information)
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216 if (((*midiEvent)->getEventCode() != eventCode) ||
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217 ((*midiEvent)->getEventCode() == MIDI_SYSTEM_EXCLUSIVE)) {
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218 trackBuffer += (*midiEvent)->getEventCode();
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219 eventCode = (*midiEvent)->getEventCode();
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220 }
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221
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222 // Send the relevant data
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223 //
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224 switch ((*midiEvent)->getMessageType()) {
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225 case MIDI_NOTE_ON:
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226 case MIDI_NOTE_OFF:
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227 case MIDI_POLY_AFTERTOUCH:
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228 trackBuffer += (*midiEvent)->getData1();
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229 trackBuffer += (*midiEvent)->getData2();
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230 break;
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231
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232 case MIDI_CTRL_CHANGE:
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233 trackBuffer += (*midiEvent)->getData1();
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234 trackBuffer += (*midiEvent)->getData2();
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235 break;
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236
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237 case MIDI_PROG_CHANGE:
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238 trackBuffer += (*midiEvent)->getData1();
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239 break;
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240
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241 case MIDI_CHNL_AFTERTOUCH:
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242 trackBuffer += (*midiEvent)->getData1();
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243 break;
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244
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245 case MIDI_PITCH_BEND:
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246 trackBuffer += (*midiEvent)->getData1();
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247 trackBuffer += (*midiEvent)->getData2();
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248 break;
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249
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250 case MIDI_SYSTEM_EXCLUSIVE:
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251 // write out message length
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252 trackBuffer +=
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253 longToVarBuffer((*midiEvent)->getMetaMessage().length());
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254
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255 // now the message
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256 trackBuffer += (*midiEvent)->getMetaMessage();
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257 break;
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258
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259 default:
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260 break;
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261 }
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262 }
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263 }
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264
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265 // Now we write the track - First the standard header..
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266 //
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267 *m_midiFile << MIDI_TRACK_HEADER;
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268
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269 // ..now the length of the buffer..
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270 //
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271 *m_midiFile << longToMIDIBytes((long)trackBuffer.length());
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272
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273 // ..then the buffer itself..
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274 //
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275 *m_midiFile << trackBuffer;
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276
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277 return retOK;
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278 }
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279
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280 bool
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281 MIDIFileWriter::writeComposition()
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282 {
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283 bool retOK = true;
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284
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285 m_midiFile =
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286 new ofstream(m_path.toLocal8Bit().data(), ios::out | ios::binary);
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287
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288 if (!(*m_midiFile)) {
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289 m_error = "Can't open file for writing.";
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290 delete m_midiFile;
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291 m_midiFile = 0;
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292 return false;
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293 }
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294
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295 if (!writeHeader()) {
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296 retOK = false;
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297 }
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298
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299 for (unsigned int i = 0; i < m_numberOfTracks; i++) {
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300 if (!writeTrack(i)) {
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301 retOK = false;
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302 }
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303 }
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304
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305 m_midiFile->close();
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306 delete m_midiFile;
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307 m_midiFile = 0;
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308
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309 if (!retOK) {
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310 m_error = "MIDI file write failed";
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311 }
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312
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313 return retOK;
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314 }
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315
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316 bool
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317 MIDIFileWriter::convert()
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318 {
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319 m_timingDivision = 480;
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320 m_format = MIDI_SINGLE_TRACK_FILE;
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321 m_numberOfTracks = 1;
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322
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323 int track = 0;
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324
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325 MIDIEvent *event;
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326
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327 event = new MIDIEvent
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328 (0, MIDI_FILE_META_EVENT, MIDI_CUE_POINT,
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329 ("Exported from " + qApp->applicationName()).toStdString());
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330 m_midiComposition[track].push_back(event);
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331
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332 long tempoValue = long(60000000.0 / m_tempo + 0.01);
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333 string tempoString;
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334 tempoString += (MIDIByte)(tempoValue >> 16 & 0xFF);
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335 tempoString += (MIDIByte)(tempoValue >> 8 & 0xFF);
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336 tempoString += (MIDIByte)(tempoValue & 0xFF);
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337
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338 event = new MIDIEvent(0, MIDI_FILE_META_EVENT, MIDI_SET_TEMPO,
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339 tempoString);
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340 m_midiComposition[track].push_back(event);
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341
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342 // Omit time signature
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343
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344 NoteList notes = m_exportable->getNotes();
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345
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346 for (NoteList::const_iterator i = notes.begin(); i != notes.end(); ++i) {
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347
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348 sv_frame_t frame = i->start;
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349 sv_frame_t duration = i->duration;
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350 int pitch = i->midiPitch;
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351 int velocity = i->velocity;
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352 int channel = i->channel;
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353
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354 if (pitch < 0) pitch = 0;
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355 if (pitch > 127) pitch = 127;
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356
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357 if (channel < 0) channel = 0;
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358 if (channel > 15) channel = 0;
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359
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360 // Convert frame to MIDI time
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361
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362 double seconds = double(frame) / m_sampleRate;
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363 double quarters = (seconds * m_tempo) / 60.0;
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364 unsigned long midiTime = int(quarters * m_timingDivision + 0.5);
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365
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366 // Get the sounding time for the matching NOTE_OFF
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367 seconds = double(frame + duration) / m_sampleRate;
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368 quarters = (seconds * m_tempo) / 60.0;
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369 unsigned long endTime = int(quarters * m_timingDivision + 0.5);
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370
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371 // At this point all the notes we insert have absolute times
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372 // in the delta time fields. We resolve these into delta
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373 // times further down (can't do it until all the note offs are
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374 // in place).
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375
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376 event = new MIDIEvent(midiTime,
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377 MIDI_NOTE_ON | channel,
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378 pitch,
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379 velocity);
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380 m_midiComposition[track].push_back(event);
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381
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382 event = new MIDIEvent(endTime,
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383 MIDI_NOTE_OFF | channel,
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384 pitch,
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385 127); // loudest silence you can muster
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386
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387 m_midiComposition[track].push_back(event);
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388
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389 #ifdef DEBUG_MIDI_FILE_WRITER
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390 cerr << "midiTime = " << midiTime << ", endTime = " << endTime << endl;
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391 #endif
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392 }
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393
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394 // Now gnash through the MIDI events and turn the absolute times
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395 // into delta times.
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396 //
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397 for (unsigned int i = 0; i < m_numberOfTracks; i++) {
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398
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399 unsigned long lastMidiTime = 0;
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Chris@301
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400
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Chris@301
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401 // First sort the track with the MIDIEvent comparator. Use
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Chris@301
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402 // stable_sort so that events with equal times are maintained
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Chris@301
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403 // in their current order.
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Chris@301
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404 //
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Chris@301
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405 std::stable_sort(m_midiComposition[i].begin(),
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Chris@301
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406 m_midiComposition[i].end(),
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Chris@301
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407 MIDIEventCmp());
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Chris@301
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408
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Chris@301
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409 for (MIDITrack::iterator it = m_midiComposition[i].begin();
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Chris@301
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410 it != m_midiComposition[i].end(); it++) {
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Chris@301
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411 unsigned long deltaTime = (*it)->getTime() - lastMidiTime;
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Chris@1128
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412 #ifdef DEBUG_MIDI_FILE_WRITER
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Chris@1128
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413 cerr << "time = " << (*it)->getTime() << ", lastMidiTime = " << lastMidiTime << ", deltaTime = " << deltaTime << endl;
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Chris@1128
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414 #endif
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Chris@301
|
415 lastMidiTime = (*it)->getTime();
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Chris@301
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416 (*it)->setTime(deltaTime);
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Chris@301
|
417 }
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Chris@301
|
418
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Chris@301
|
419 // Insert end of track event (delta time = 0)
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Chris@301
|
420 //
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Chris@301
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421 event = new MIDIEvent(0, MIDI_FILE_META_EVENT,
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Chris@301
|
422 MIDI_END_OF_TRACK, "");
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Chris@301
|
423
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Chris@301
|
424 m_midiComposition[i].push_back(event);
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Chris@301
|
425 }
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Chris@301
|
426
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Chris@301
|
427 return true;
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Chris@301
|
428 }
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Chris@301
|
429
|