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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 This file copyright 2006 Chris Cannam.
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8
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9 This program is free software; you can redistribute it and/or
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10 modify it under the terms of the GNU General Public License as
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11 published by the Free Software Foundation; either version 2 of the
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12 License, or (at your option) any later version. See the file
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13 COPYING included with this distribution for more information.
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14 */
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15
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16 #ifdef HAVE_PORTAUDIO
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17
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18 #include "AudioPortAudioTarget.h"
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19 #include "AudioCallbackPlaySource.h"
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20
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21 #include <iostream>
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22 #include <cassert>
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23 #include <cmath>
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24
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25 //#define DEBUG_AUDIO_PORT_AUDIO_TARGET 1
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26
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27 AudioPortAudioTarget::AudioPortAudioTarget(AudioCallbackPlaySource *source) :
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28 AudioCallbackPlayTarget(source),
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29 m_stream(0),
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30 m_bufferSize(0),
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31 m_sampleRate(0),
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32 m_latency(0),
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33 m_done(false)
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34 {
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35 PaError err;
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36
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37 #ifdef DEBUG_AUDIO_PORT_AUDIO_TARGET
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38 #ifdef HAVE_PORTAUDIO_V18
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39 std::cerr << "AudioPortAudioTarget: Initialising for PortAudio v18" << std::endl;
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40 #else
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41 std::cerr << "AudioPortAudioTarget: Initialising for PortAudio v19" << std::endl;
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42 #endif
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43 #endif
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44
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45 err = Pa_Initialize();
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46 if (err != paNoError) {
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47 std::cerr << "ERROR: AudioPortAudioTarget: Failed to initialize PortAudio: " << Pa_GetErrorText(err) << std::endl;
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48 return;
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49 }
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50
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51 m_bufferSize = 2048;
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52 m_sampleRate = 44100;
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53 if (m_source && (m_source->getSourceSampleRate() != 0)) {
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54 m_sampleRate = m_source->getSourceSampleRate();
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55 }
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56
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57 #ifdef HAVE_PORTAUDIO_V18
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58 m_latency = Pa_GetMinNumBuffers(m_bufferSize, m_sampleRate) * m_bufferSize;
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59 #endif
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60
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61 #ifdef HAVE_PORTAUDIO_V18
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62 err = Pa_OpenDefaultStream(&m_stream, 0, 2, paFloat32,
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63 m_sampleRate, m_bufferSize, 0,
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64 processStatic, this);
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65 #else
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66 PaStreamParameters op;
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67 op.device = 0;
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68 op.channelCount = 2;
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69 op.sampleFormat = paFloat32;
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70 op.suggestedLatency = 0.2;
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71 op.hostApiSpecificStreamInfo = 0;
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72 err = Pa_OpenStream(&m_stream, 0, &op, m_sampleRate,
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73 paFramesPerBufferUnspecified,
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74 paNoFlag, processStatic, this);
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75 #endif
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76
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77 if (err != paNoError) {
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78 std::cerr << "ERROR: AudioPortAudioTarget: Failed to open PortAudio stream: " << Pa_GetErrorText(err) << std::endl;
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79 m_stream = 0;
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80 Pa_Terminate();
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81 return;
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82 }
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83
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84 #ifndef HAVE_PORTAUDIO_V18
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85 const PaStreamInfo *info = Pa_GetStreamInfo(m_stream);
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86 m_latency = int(info->outputLatency * m_sampleRate + 0.001);
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87 m_bufferSize = m_latency;
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88 #endif
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89
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90 std::cerr << "PortAudio latency = " << m_latency << " frames" << std::endl;
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91
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92 err = Pa_StartStream(m_stream);
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93
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94 if (err != paNoError) {
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95 std::cerr << "ERROR: AudioPortAudioTarget: Failed to start PortAudio stream: " << Pa_GetErrorText(err) << std::endl;
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96 Pa_CloseStream(m_stream);
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97 m_stream = 0;
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98 Pa_Terminate();
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99 return;
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100 }
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101
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102 if (m_source) {
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103 std::cerr << "AudioPortAudioTarget: block size " << m_bufferSize << std::endl;
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104 m_source->setTarget(this, m_bufferSize);
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105 m_source->setTargetSampleRate(m_sampleRate);
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106 m_source->setTargetPlayLatency(m_latency);
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107 }
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108
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109 #ifdef DEBUG_PORT_AUDIO_TARGET
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110 std::cerr << "AudioPortAudioTarget: initialised OK" << std::endl;
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111 #endif
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112 }
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113
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114 AudioPortAudioTarget::~AudioPortAudioTarget()
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115 {
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116 std::cerr << "AudioPortAudioTarget::~AudioPortAudioTarget()" << std::endl;
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117
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118 if (m_source) {
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119 m_source->setTarget(0, m_bufferSize);
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120 }
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121
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122 shutdown();
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123
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124 if (m_stream) {
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125
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126 std::cerr << "closing stream" << std::endl;
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127
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128 PaError err;
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129 err = Pa_CloseStream(m_stream);
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130 if (err != paNoError) {
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131 std::cerr << "ERROR: AudioPortAudioTarget: Failed to close PortAudio stream: " << Pa_GetErrorText(err) << std::endl;
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132 }
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133
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134 std::cerr << "terminating" << std::endl;
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135
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136 err = Pa_Terminate();
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137 if (err != paNoError) {
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138 std::cerr << "ERROR: AudioPortAudioTarget: Failed to terminate PortAudio: " << Pa_GetErrorText(err) << std::endl;
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139 }
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140 }
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141
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142 m_stream = 0;
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143
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144 std::cerr << "AudioPortAudioTarget::~AudioPortAudioTarget() done" << std::endl;
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145 }
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146
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147 void
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148 AudioPortAudioTarget::shutdown()
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149 {
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150 m_done = true;
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151 }
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152
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153 bool
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154 AudioPortAudioTarget::isOK() const
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155 {
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156 return (m_stream != 0);
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157 }
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158
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159 double
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160 AudioPortAudioTarget::getCurrentTime() const
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161 {
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162 if (!m_stream) return 0.0;
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163 else return Pa_GetStreamTime(m_stream);
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164 }
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165
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166 #ifdef HAVE_PORTAUDIO_V18
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167 int
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168 AudioPortAudioTarget::processStatic(void *input, void *output,
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169 unsigned long nframes,
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170 PaTimestamp outTime, void *data)
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171 {
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172 return ((AudioPortAudioTarget *)data)->process(input, output,
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173 nframes, outTime);
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174 }
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175 #else
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176 int
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177 AudioPortAudioTarget::processStatic(const void *input, void *output,
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178 unsigned long nframes,
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179 const PaStreamCallbackTimeInfo *timeInfo,
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180 PaStreamCallbackFlags flags, void *data)
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181 {
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182 return ((AudioPortAudioTarget *)data)->process(input, output,
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183 nframes, timeInfo,
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184 flags);
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185 }
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186 #endif
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187
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188 void
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189 AudioPortAudioTarget::sourceModelReplaced()
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190 {
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191 m_source->setTargetSampleRate(m_sampleRate);
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192 }
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193
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194 #ifdef HAVE_PORTAUDIO_V18
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195 int
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196 AudioPortAudioTarget::process(void *inputBuffer, void *outputBuffer,
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197 unsigned long nframes,
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198 PaTimestamp)
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199 #else
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200 int
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201 AudioPortAudioTarget::process(const void *, void *outputBuffer,
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202 unsigned long nframes,
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203 const PaStreamCallbackTimeInfo *,
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204 PaStreamCallbackFlags)
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205 #endif
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206 {
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207 #ifdef DEBUG_AUDIO_PORT_AUDIO_TARGET
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208 std::cout << "AudioPortAudioTarget::process(" << nframes << ")" << std::endl;
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209 #endif
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210
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211 if (!m_source || m_done) return 0;
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212
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213 float *output = (float *)outputBuffer;
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214
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215 assert(nframes <= m_bufferSize);
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216
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217 static float **tmpbuf = 0;
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218 static size_t tmpbufch = 0;
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219 static size_t tmpbufsz = 0;
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220
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221 size_t sourceChannels = m_source->getSourceChannelCount();
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222
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223 // Because we offer pan, we always want at least 2 channels
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224 if (sourceChannels < 2) sourceChannels = 2;
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225
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226 if (!tmpbuf || tmpbufch != sourceChannels || int(tmpbufsz) < m_bufferSize) {
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227
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228 if (tmpbuf) {
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229 for (size_t i = 0; i < tmpbufch; ++i) {
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230 delete[] tmpbuf[i];
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231 }
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232 delete[] tmpbuf;
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233 }
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234
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235 tmpbufch = sourceChannels;
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236 tmpbufsz = m_bufferSize;
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237 tmpbuf = new float *[tmpbufch];
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238
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239 for (size_t i = 0; i < tmpbufch; ++i) {
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240 tmpbuf[i] = new float[tmpbufsz];
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241 }
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242 }
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243
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244 size_t received = m_source->getSourceSamples(nframes, tmpbuf);
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245
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246 float peakLeft = 0.0, peakRight = 0.0;
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247
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248 for (size_t ch = 0; ch < 2; ++ch) {
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249
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250 float peak = 0.0;
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251
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252 if (ch < sourceChannels) {
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253
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254 // PortAudio samples are interleaved
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255 for (size_t i = 0; i < nframes; ++i) {
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256 if (i < received) {
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257 output[i * 2 + ch] = tmpbuf[ch][i] * m_outputGain;
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258 float sample = fabsf(output[i * 2 + ch]);
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259 if (sample > peak) peak = sample;
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260 } else {
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261 output[i * 2 + ch] = 0;
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262 }
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263 }
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264
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265 } else if (ch == 1 && sourceChannels == 1) {
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266
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267 for (size_t i = 0; i < nframes; ++i) {
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268 if (i < received) {
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269 output[i * 2 + ch] = tmpbuf[0][i] * m_outputGain;
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270 float sample = fabsf(output[i * 2 + ch]);
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271 if (sample > peak) peak = sample;
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272 } else {
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273 output[i * 2 + ch] = 0;
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274 }
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275 }
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276
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277 } else {
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278 for (size_t i = 0; i < nframes; ++i) {
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279 output[i * 2 + ch] = 0;
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280 }
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281 }
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282
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283 if (ch == 0) peakLeft = peak;
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284 if (ch > 0 || sourceChannels == 1) peakRight = peak;
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285 }
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286
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287 m_source->setOutputLevels(peakLeft, peakRight);
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288
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289 return 0;
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290 }
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291
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292 #endif /* HAVE_PORTAUDIO */
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293
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