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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 Vamp
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5
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6 An API for audio analysis and feature extraction plugins.
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7
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8 Centre for Digital Music, Queen Mary, University of London.
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9 Copyright 2006 Chris Cannam.
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10
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11 Permission is hereby granted, free of charge, to any person
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12 obtaining a copy of this software and associated documentation
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13 files (the "Software"), to deal in the Software without
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14 restriction, including without limitation the rights to use, copy,
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15 modify, merge, publish, distribute, sublicense, and/or sell copies
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16 of the Software, and to permit persons to whom the Software is
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17 furnished to do so, subject to the following conditions:
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18
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19 The above copyright notice and this permission notice shall be
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20 included in all copies or substantial portions of the Software.
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21
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22 THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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23 EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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24 MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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25 NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR
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26 ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF
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27 CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
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28 WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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29
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30 Except as contained in this notice, the names of the Centre for
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31 Digital Music; Queen Mary, University of London; and Chris Cannam
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32 shall not be used in advertising or otherwise to promote the sale,
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33 use or other dealings in this Software without prior written
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34 authorization.
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35 */
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36
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37 #include <vamp-hostsdk/PluginHostAdapter.h>
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38 #include <cstdlib>
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39
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40 #if ( VAMP_SDK_MAJOR_VERSION != 2 || VAMP_SDK_MINOR_VERSION != 0 )
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41 #error Incorrect Vamp SDK header included (not the expected 2.0 SDK)
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42 #endif
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43
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44 namespace Vamp
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45 {
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46
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47 PluginHostAdapter::PluginHostAdapter(const VampPluginDescriptor *descriptor,
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48 float inputSampleRate) :
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49 Plugin(inputSampleRate),
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50 m_descriptor(descriptor)
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51 {
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52 // std::cerr << "PluginHostAdapter::PluginHostAdapter (plugin = " << descriptor->name << ")" << std::endl;
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53 m_handle = m_descriptor->instantiate(m_descriptor, inputSampleRate);
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54 if (!m_handle) {
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55 // std::cerr << "WARNING: PluginHostAdapter: Plugin instantiation failed for plugin " << m_descriptor->name << std::endl;
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56 }
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57 }
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58
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59 PluginHostAdapter::~PluginHostAdapter()
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60 {
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61 // std::cerr << "PluginHostAdapter::~PluginHostAdapter (plugin = " << m_descriptor->name << ")" << std::endl;
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62 if (m_handle) m_descriptor->cleanup(m_handle);
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63 }
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64
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65 std::vector<std::string>
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66 PluginHostAdapter::getPluginPath()
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67 {
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68 std::vector<std::string> path;
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69 std::string envPath;
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70
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71 char *cpath = getenv("VAMP_PATH");
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72 if (cpath) envPath = cpath;
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73
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74 #ifdef _WIN32
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75 #define PATH_SEPARATOR ';'
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76 #define DEFAULT_VAMP_PATH "%ProgramFiles%\\Vamp Plugins"
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77 #else
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78 #define PATH_SEPARATOR ':'
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79 #ifdef __APPLE__
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80 #define DEFAULT_VAMP_PATH "$HOME/Library/Audio/Plug-Ins/Vamp:/Library/Audio/Plug-Ins/Vamp"
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81 #else
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82 #define DEFAULT_VAMP_PATH "$HOME/vamp:$HOME/.vamp:/usr/local/lib/vamp:/usr/lib/vamp"
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83 #endif
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84 #endif
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85
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86 if (envPath == "") {
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87 envPath = DEFAULT_VAMP_PATH;
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88 char *chome = getenv("HOME");
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89 if (chome) {
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90 std::string home(chome);
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91 std::string::size_type f;
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92 while ((f = envPath.find("$HOME")) != std::string::npos &&
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93 f < envPath.length()) {
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94 envPath.replace(f, 5, home);
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95 }
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96 }
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97 #ifdef _WIN32
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98 char *cpfiles = getenv("ProgramFiles");
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99 if (!cpfiles) cpfiles = "C:\\Program Files";
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100 std::string pfiles(cpfiles);
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101 std::string::size_type f;
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102 while ((f = envPath.find("%ProgramFiles%")) != std::string::npos &&
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103 f < envPath.length()) {
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104 envPath.replace(f, 14, pfiles);
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105 }
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106 #endif
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107 }
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108
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109 std::string::size_type index = 0, newindex = 0;
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110
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111 while ((newindex = envPath.find(PATH_SEPARATOR, index)) < envPath.size()) {
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112 path.push_back(envPath.substr(index, newindex - index));
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113 index = newindex + 1;
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114 }
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115
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116 path.push_back(envPath.substr(index));
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117
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118 return path;
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119 }
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120
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121 bool
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122 PluginHostAdapter::initialise(size_t channels,
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123 size_t stepSize,
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124 size_t blockSize)
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125 {
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126 if (!m_handle) return false;
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127 return m_descriptor->initialise(m_handle, channels, stepSize, blockSize) ?
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128 true : false;
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129 }
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130
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131 void
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132 PluginHostAdapter::reset()
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133 {
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134 if (!m_handle) {
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135 // std::cerr << "PluginHostAdapter::reset: no handle" << std::endl;
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136 return;
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137 }
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138 // std::cerr << "PluginHostAdapter::reset(" << m_handle << ")" << std::endl;
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139 m_descriptor->reset(m_handle);
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140 }
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141
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142 PluginHostAdapter::InputDomain
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143 PluginHostAdapter::getInputDomain() const
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144 {
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145 if (m_descriptor->inputDomain == vampFrequencyDomain) {
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146 return FrequencyDomain;
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147 } else {
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148 return TimeDomain;
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149 }
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150 }
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151
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152 unsigned int
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153 PluginHostAdapter::getVampApiVersion() const
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154 {
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155 return m_descriptor->vampApiVersion;
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156 }
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157
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158 std::string
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159 PluginHostAdapter::getIdentifier() const
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160 {
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161 return m_descriptor->identifier;
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162 }
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163
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164 std::string
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165 PluginHostAdapter::getName() const
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166 {
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167 return m_descriptor->name;
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168 }
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169
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170 std::string
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171 PluginHostAdapter::getDescription() const
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172 {
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173 return m_descriptor->description;
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174 }
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175
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176 std::string
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177 PluginHostAdapter::getMaker() const
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178 {
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179 return m_descriptor->maker;
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180 }
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181
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182 int
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183 PluginHostAdapter::getPluginVersion() const
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184 {
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185 return m_descriptor->pluginVersion;
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186 }
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187
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188 std::string
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189 PluginHostAdapter::getCopyright() const
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190 {
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191 return m_descriptor->copyright;
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192 }
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193
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194 PluginHostAdapter::ParameterList
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195 PluginHostAdapter::getParameterDescriptors() const
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196 {
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197 ParameterList list;
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198 for (unsigned int i = 0; i < m_descriptor->parameterCount; ++i) {
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199 const VampParameterDescriptor *spd = m_descriptor->parameters[i];
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200 ParameterDescriptor pd;
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201 pd.identifier = spd->identifier;
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202 pd.name = spd->name;
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203 pd.description = spd->description;
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204 pd.unit = spd->unit;
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205 pd.minValue = spd->minValue;
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206 pd.maxValue = spd->maxValue;
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207 pd.defaultValue = spd->defaultValue;
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208 pd.isQuantized = spd->isQuantized;
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209 pd.quantizeStep = spd->quantizeStep;
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210 if (pd.isQuantized && spd->valueNames) {
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211 for (unsigned int j = 0; spd->valueNames[j]; ++j) {
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212 pd.valueNames.push_back(spd->valueNames[j]);
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213 }
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214 }
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215 list.push_back(pd);
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216 }
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217 return list;
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218 }
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219
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220 float
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221 PluginHostAdapter::getParameter(std::string param) const
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222 {
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223 if (!m_handle) return 0.0;
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224
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225 for (unsigned int i = 0; i < m_descriptor->parameterCount; ++i) {
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226 if (param == m_descriptor->parameters[i]->identifier) {
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227 return m_descriptor->getParameter(m_handle, i);
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228 }
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229 }
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230
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231 return 0.0;
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232 }
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233
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234 void
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235 PluginHostAdapter::setParameter(std::string param,
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236 float value)
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237 {
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238 if (!m_handle) return;
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239
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240 for (unsigned int i = 0; i < m_descriptor->parameterCount; ++i) {
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241 if (param == m_descriptor->parameters[i]->identifier) {
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242 m_descriptor->setParameter(m_handle, i, value);
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243 return;
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244 }
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245 }
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246 }
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247
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248 PluginHostAdapter::ProgramList
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249 PluginHostAdapter::getPrograms() const
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250 {
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251 ProgramList list;
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252
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253 for (unsigned int i = 0; i < m_descriptor->programCount; ++i) {
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254 list.push_back(m_descriptor->programs[i]);
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255 }
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256
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257 return list;
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258 }
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259
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260 std::string
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261 PluginHostAdapter::getCurrentProgram() const
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262 {
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263 if (!m_handle) return "";
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264
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265 int pn = m_descriptor->getCurrentProgram(m_handle);
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266 return m_descriptor->programs[pn];
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267 }
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268
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269 void
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270 PluginHostAdapter::selectProgram(std::string program)
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271 {
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272 if (!m_handle) return;
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273
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274 for (unsigned int i = 0; i < m_descriptor->programCount; ++i) {
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275 if (program == m_descriptor->programs[i]) {
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276 m_descriptor->selectProgram(m_handle, i);
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277 return;
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278 }
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279 }
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cannam@1
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280 }
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281
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282 size_t
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283 PluginHostAdapter::getPreferredStepSize() const
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284 {
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285 if (!m_handle) return 0;
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286 return m_descriptor->getPreferredStepSize(m_handle);
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287 }
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288
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289 size_t
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290 PluginHostAdapter::getPreferredBlockSize() const
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291 {
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292 if (!m_handle) return 0;
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293 return m_descriptor->getPreferredBlockSize(m_handle);
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294 }
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295
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296 size_t
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297 PluginHostAdapter::getMinChannelCount() const
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cannam@26
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298 {
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cannam@26
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299 if (!m_handle) return 0;
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cannam@26
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300 return m_descriptor->getMinChannelCount(m_handle);
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301 }
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cannam@26
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302
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cannam@26
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303 size_t
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cannam@26
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304 PluginHostAdapter::getMaxChannelCount() const
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cannam@26
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305 {
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cannam@26
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306 if (!m_handle) return 0;
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cannam@26
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307 return m_descriptor->getMaxChannelCount(m_handle);
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cannam@26
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308 }
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cannam@26
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309
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cannam@1
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310 PluginHostAdapter::OutputList
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cannam@1
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311 PluginHostAdapter::getOutputDescriptors() const
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cannam@1
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312 {
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313 OutputList list;
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cannam@15
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314 if (!m_handle) {
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cannam@15
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315 // std::cerr << "PluginHostAdapter::getOutputDescriptors: no handle " << std::endl;
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cannam@15
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316 return list;
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cannam@15
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317 }
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cannam@1
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318
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cannam@1
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319 unsigned int count = m_descriptor->getOutputCount(m_handle);
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cannam@1
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320
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cannam@1
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321 for (unsigned int i = 0; i < count; ++i) {
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cannam@1
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322 VampOutputDescriptor *sd = m_descriptor->getOutputDescriptor(m_handle, i);
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cannam@1
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323 OutputDescriptor d;
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cannam@49
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324 d.identifier = sd->identifier;
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cannam@1
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325 d.name = sd->name;
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cannam@1
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326 d.description = sd->description;
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cannam@1
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327 d.unit = sd->unit;
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cannam@9
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328 d.hasFixedBinCount = sd->hasFixedBinCount;
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cannam@9
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329 d.binCount = sd->binCount;
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cannam@240
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330 if (d.hasFixedBinCount && sd->binNames) {
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cannam@9
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331 for (unsigned int j = 0; j < sd->binCount; ++j) {
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cannam@9
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332 d.binNames.push_back(sd->binNames[j] ? sd->binNames[j] : "");
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cannam@9
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333 }
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cannam@1
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334 }
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cannam@1
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335 d.hasKnownExtents = sd->hasKnownExtents;
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cannam@1
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336 d.minValue = sd->minValue;
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cannam@1
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337 d.maxValue = sd->maxValue;
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cannam@1
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338 d.isQuantized = sd->isQuantized;
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cannam@1
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339 d.quantizeStep = sd->quantizeStep;
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cannam@1
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340
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cannam@1
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341 switch (sd->sampleType) {
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cannam@1
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342 case vampOneSamplePerStep:
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cannam@1
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343 d.sampleType = OutputDescriptor::OneSamplePerStep; break;
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cannam@1
|
344 case vampFixedSampleRate:
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cannam@1
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345 d.sampleType = OutputDescriptor::FixedSampleRate; break;
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cannam@1
|
346 case vampVariableSampleRate:
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cannam@1
|
347 d.sampleType = OutputDescriptor::VariableSampleRate; break;
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cannam@1
|
348 }
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cannam@1
|
349
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cannam@1
|
350 d.sampleRate = sd->sampleRate;
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cannam@1
|
351
|
cannam@192
|
352 if (m_descriptor->vampApiVersion >= 2) {
|
cannam@192
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353 d.hasDuration = sd->hasDuration;
|
cannam@192
|
354 } else {
|
cannam@192
|
355 d.hasDuration = false;
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cannam@192
|
356 }
|
cannam@192
|
357
|
cannam@1
|
358 list.push_back(d);
|
cannam@1
|
359
|
cannam@1
|
360 m_descriptor->releaseOutputDescriptor(sd);
|
cannam@1
|
361 }
|
cannam@1
|
362
|
cannam@1
|
363 return list;
|
cannam@1
|
364 }
|
cannam@1
|
365
|
cannam@1
|
366 PluginHostAdapter::FeatureSet
|
cannam@47
|
367 PluginHostAdapter::process(const float *const *inputBuffers,
|
cannam@47
|
368 RealTime timestamp)
|
cannam@1
|
369 {
|
cannam@1
|
370 FeatureSet fs;
|
cannam@1
|
371 if (!m_handle) return fs;
|
cannam@1
|
372
|
cannam@1
|
373 int sec = timestamp.sec;
|
cannam@1
|
374 int nsec = timestamp.nsec;
|
cannam@1
|
375
|
cannam@12
|
376 VampFeatureList *features = m_descriptor->process(m_handle,
|
cannam@1
|
377 inputBuffers,
|
cannam@1
|
378 sec, nsec);
|
cannam@1
|
379
|
cannam@1
|
380 convertFeatures(features, fs);
|
cannam@1
|
381 m_descriptor->releaseFeatureSet(features);
|
cannam@1
|
382 return fs;
|
cannam@1
|
383 }
|
cannam@1
|
384
|
cannam@1
|
385 PluginHostAdapter::FeatureSet
|
cannam@1
|
386 PluginHostAdapter::getRemainingFeatures()
|
cannam@1
|
387 {
|
cannam@1
|
388 FeatureSet fs;
|
cannam@1
|
389 if (!m_handle) return fs;
|
cannam@1
|
390
|
cannam@12
|
391 VampFeatureList *features = m_descriptor->getRemainingFeatures(m_handle);
|
cannam@1
|
392
|
cannam@1
|
393 convertFeatures(features, fs);
|
cannam@1
|
394 m_descriptor->releaseFeatureSet(features);
|
cannam@1
|
395 return fs;
|
cannam@1
|
396 }
|
cannam@1
|
397
|
cannam@1
|
398 void
|
cannam@12
|
399 PluginHostAdapter::convertFeatures(VampFeatureList *features,
|
cannam@1
|
400 FeatureSet &fs)
|
cannam@1
|
401 {
|
cannam@7
|
402 if (!features) return;
|
cannam@7
|
403
|
cannam@12
|
404 unsigned int outputs = m_descriptor->getOutputCount(m_handle);
|
cannam@12
|
405
|
cannam@12
|
406 for (unsigned int i = 0; i < outputs; ++i) {
|
cannam@1
|
407
|
cannam@12
|
408 VampFeatureList &list = features[i];
|
cannam@1
|
409
|
cannam@1
|
410 if (list.featureCount > 0) {
|
cannam@1
|
411
|
cannam@108
|
412 Feature feature;
|
cannam@168
|
413 feature.values.reserve(list.features[0].v1.valueCount);
|
cannam@108
|
414
|
cannam@1
|
415 for (unsigned int j = 0; j < list.featureCount; ++j) {
|
cannam@108
|
416
|
cannam@168
|
417 feature.hasTimestamp = list.features[j].v1.hasTimestamp;
|
cannam@168
|
418 feature.timestamp = RealTime(list.features[j].v1.sec,
|
cannam@168
|
419 list.features[j].v1.nsec);
|
cannam@168
|
420 feature.hasDuration = false;
|
cannam@1
|
421
|
cannam@167
|
422 if (m_descriptor->vampApiVersion >= 2) {
|
cannam@168
|
423 unsigned int j2 = j + list.featureCount;
|
cannam@168
|
424 feature.hasDuration = list.features[j2].v2.hasDuration;
|
cannam@168
|
425 feature.duration = RealTime(list.features[j2].v2.durationSec,
|
cannam@168
|
426 list.features[j2].v2.durationNsec);
|
cannam@167
|
427 }
|
cannam@167
|
428
|
cannam@168
|
429 for (unsigned int k = 0; k < list.features[j].v1.valueCount; ++k) {
|
cannam@168
|
430 feature.values.push_back(list.features[j].v1.values[k]);
|
cannam@1
|
431 }
|
cannam@7
|
432
|
cannam@168
|
433 if (list.features[j].v1.label) {
|
cannam@168
|
434 feature.label = list.features[j].v1.label;
|
cannam@7
|
435 }
|
cannam@1
|
436
|
cannam@1
|
437 fs[i].push_back(feature);
|
cannam@108
|
438
|
cannam@168
|
439 if (list.features[j].v1.valueCount > 0) {
|
cannam@108
|
440 feature.values.clear();
|
cannam@108
|
441 }
|
cannam@108
|
442
|
cannam@168
|
443 if (list.features[j].v1.label) {
|
cannam@108
|
444 feature.label = "";
|
cannam@108
|
445 }
|
cannam@1
|
446 }
|
cannam@1
|
447 }
|
cannam@1
|
448 }
|
cannam@1
|
449 }
|
cannam@1
|
450
|
cannam@1
|
451 }
|