annotate src/vamp-plugin-sdk-2.5/examples/AmplitudeFollower.cpp @ 83:ae30d91d2ffe

Replace these with versions built using an older toolset (so as to avoid ABI compatibilities when linking on Ubuntu 14.04 for packaging purposes)
author Chris Cannam
date Fri, 07 Feb 2020 11:51:13 +0000
parents 619f715526df
children
rev   line source
Chris@23 1 /* -*- c-basic-offset: 4 indent-tabs-mode: nil -*- vi:set ts=8 sts=4 sw=4: */
Chris@23 2
Chris@23 3 /*
Chris@23 4 Vamp
Chris@23 5
Chris@23 6 An API for audio analysis and feature extraction plugins.
Chris@23 7
Chris@23 8 Centre for Digital Music, Queen Mary, University of London.
Chris@23 9 This file copyright 2006 Dan Stowell.
Chris@23 10
Chris@23 11 Permission is hereby granted, free of charge, to any person
Chris@23 12 obtaining a copy of this software and associated documentation
Chris@23 13 files (the "Software"), to deal in the Software without
Chris@23 14 restriction, including without limitation the rights to use, copy,
Chris@23 15 modify, merge, publish, distribute, sublicense, and/or sell copies
Chris@23 16 of the Software, and to permit persons to whom the Software is
Chris@23 17 furnished to do so, subject to the following conditions:
Chris@23 18
Chris@23 19 The above copyright notice and this permission notice shall be
Chris@23 20 included in all copies or substantial portions of the Software.
Chris@23 21
Chris@23 22 THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
Chris@23 23 EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
Chris@23 24 MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
Chris@23 25 NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR
Chris@23 26 ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF
Chris@23 27 CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
Chris@23 28 WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
Chris@23 29
Chris@23 30 Except as contained in this notice, the names of the Centre for
Chris@23 31 Digital Music; Queen Mary, University of London; and Chris Cannam
Chris@23 32 shall not be used in advertising or otherwise to promote the sale,
Chris@23 33 use or other dealings in this Software without prior written
Chris@23 34 authorization.
Chris@23 35 */
Chris@23 36
Chris@23 37 #include "AmplitudeFollower.h"
Chris@23 38
Chris@23 39 #include <cmath>
Chris@23 40
Chris@23 41 #include <string>
Chris@23 42 #include <vector>
Chris@23 43 #include <iostream>
Chris@23 44
Chris@23 45 using std::string;
Chris@23 46 using std::vector;
Chris@23 47 using std::cerr;
Chris@23 48 using std::endl;
Chris@23 49
Chris@23 50 /**
Chris@23 51 * An implementation of SuperCollider's amplitude-follower algorithm
Chris@23 52 * as a simple Vamp plugin.
Chris@23 53 */
Chris@23 54
Chris@23 55 AmplitudeFollower::AmplitudeFollower(float inputSampleRate) :
Chris@23 56 Plugin(inputSampleRate),
Chris@23 57 m_stepSize(0),
Chris@23 58 m_previn(0.0f),
Chris@23 59 m_clampcoef(0.01f),
Chris@23 60 m_relaxcoef(0.01f)
Chris@23 61 {
Chris@23 62 }
Chris@23 63
Chris@23 64 AmplitudeFollower::~AmplitudeFollower()
Chris@23 65 {
Chris@23 66 }
Chris@23 67
Chris@23 68 string
Chris@23 69 AmplitudeFollower::getIdentifier() const
Chris@23 70 {
Chris@23 71 return "amplitudefollower";
Chris@23 72 }
Chris@23 73
Chris@23 74 string
Chris@23 75 AmplitudeFollower::getName() const
Chris@23 76 {
Chris@23 77 return "Amplitude Follower";
Chris@23 78 }
Chris@23 79
Chris@23 80 string
Chris@23 81 AmplitudeFollower::getDescription() const
Chris@23 82 {
Chris@23 83 return "Track the amplitude of the audio signal";
Chris@23 84 }
Chris@23 85
Chris@23 86 string
Chris@23 87 AmplitudeFollower::getMaker() const
Chris@23 88 {
Chris@23 89 return "Vamp SDK Example Plugins";
Chris@23 90 }
Chris@23 91
Chris@23 92 int
Chris@23 93 AmplitudeFollower::getPluginVersion() const
Chris@23 94 {
Chris@23 95 return 1;
Chris@23 96 }
Chris@23 97
Chris@23 98 string
Chris@23 99 AmplitudeFollower::getCopyright() const
Chris@23 100 {
Chris@23 101 return "Code copyright 2006 Dan Stowell; method from SuperCollider. Freely redistributable (BSD license)";
Chris@23 102 }
Chris@23 103
Chris@23 104 bool
Chris@23 105 AmplitudeFollower::initialise(size_t channels, size_t stepSize, size_t blockSize)
Chris@23 106 {
Chris@23 107 if (channels < getMinChannelCount() ||
Chris@23 108 channels > getMaxChannelCount()) return false;
Chris@23 109
Chris@23 110 m_stepSize = std::min(stepSize, blockSize);
Chris@23 111
Chris@23 112 // Translate the coefficients
Chris@23 113 // from their "convenient" 60dB convergence-time values
Chris@23 114 // to real coefficients
Chris@23 115 m_clampcoef = m_clampcoef==0.0 ? 0.0 : exp(log(0.1)/(m_clampcoef * m_inputSampleRate));
Chris@23 116 m_relaxcoef = m_relaxcoef==0.0 ? 0.0 : exp(log(0.1)/(m_relaxcoef * m_inputSampleRate));
Chris@23 117
Chris@23 118 return true;
Chris@23 119 }
Chris@23 120
Chris@23 121 void
Chris@23 122 AmplitudeFollower::reset()
Chris@23 123 {
Chris@23 124 m_previn = 0.0f;
Chris@23 125 }
Chris@23 126
Chris@23 127 AmplitudeFollower::OutputList
Chris@23 128 AmplitudeFollower::getOutputDescriptors() const
Chris@23 129 {
Chris@23 130 OutputList list;
Chris@23 131
Chris@23 132 OutputDescriptor sca;
Chris@23 133 sca.identifier = "amplitude";
Chris@23 134 sca.name = "Amplitude";
Chris@23 135 sca.description = "The peak tracked amplitude for the current processing block";
Chris@23 136 sca.unit = "V";
Chris@23 137 sca.hasFixedBinCount = true;
Chris@23 138 sca.binCount = 1;
Chris@23 139 sca.hasKnownExtents = false;
Chris@23 140 sca.isQuantized = false;
Chris@23 141 sca.sampleType = OutputDescriptor::OneSamplePerStep;
Chris@23 142 list.push_back(sca);
Chris@23 143
Chris@23 144 return list;
Chris@23 145 }
Chris@23 146
Chris@23 147 AmplitudeFollower::ParameterList
Chris@23 148 AmplitudeFollower::getParameterDescriptors() const
Chris@23 149 {
Chris@23 150 ParameterList list;
Chris@23 151
Chris@23 152 ParameterDescriptor att;
Chris@23 153 att.identifier = "attack";
Chris@23 154 att.name = "Attack time";
Chris@23 155 att.description = "The 60dB convergence time for an increase in amplitude";
Chris@23 156 att.unit = "s";
Chris@23 157 att.minValue = 0.0f;
Chris@23 158 att.maxValue = 1.f;
Chris@23 159 att.defaultValue = 0.01f;
Chris@23 160 att.isQuantized = false;
Chris@23 161
Chris@23 162 list.push_back(att);
Chris@23 163
Chris@23 164 ParameterDescriptor dec;
Chris@23 165 dec.identifier = "release";
Chris@23 166 dec.name = "Release time";
Chris@23 167 dec.description = "The 60dB convergence time for a decrease in amplitude";
Chris@23 168 dec.unit = "s";
Chris@23 169 dec.minValue = 0.0f;
Chris@23 170 dec.maxValue = 1.f;
Chris@23 171 dec.defaultValue = 0.01f;
Chris@23 172 dec.isQuantized = false;
Chris@23 173
Chris@23 174 list.push_back(dec);
Chris@23 175
Chris@23 176 return list;
Chris@23 177 }
Chris@23 178
Chris@23 179 void AmplitudeFollower::setParameter(std::string paramid, float newval)
Chris@23 180 {
Chris@23 181 if (paramid == "attack") {
Chris@23 182 m_clampcoef = newval;
Chris@23 183 } else if (paramid == "release") {
Chris@23 184 m_relaxcoef = newval;
Chris@23 185 }
Chris@23 186 }
Chris@23 187
Chris@23 188 float AmplitudeFollower::getParameter(std::string paramid) const
Chris@23 189 {
Chris@23 190 if (paramid == "attack") {
Chris@23 191 return m_clampcoef;
Chris@23 192 } else if (paramid == "release") {
Chris@23 193 return m_relaxcoef;
Chris@23 194 }
Chris@23 195
Chris@23 196 return 0.0f;
Chris@23 197 }
Chris@23 198
Chris@23 199 AmplitudeFollower::FeatureSet
Chris@23 200 AmplitudeFollower::process(const float *const *inputBuffers,
Chris@23 201 Vamp::RealTime timestamp)
Chris@23 202 {
Chris@23 203 if (m_stepSize == 0) {
Chris@23 204 cerr << "ERROR: AmplitudeFollower::process: "
Chris@23 205 << "AmplitudeFollower has not been initialised"
Chris@23 206 << endl;
Chris@23 207 return FeatureSet();
Chris@23 208 }
Chris@23 209
Chris@23 210 float previn = m_previn;
Chris@23 211
Chris@23 212 FeatureSet returnFeatures;
Chris@23 213
Chris@23 214 float val;
Chris@23 215 float peak = 0.0f;
Chris@23 216
Chris@23 217 for (size_t i = 0; i < m_stepSize; ++i) {
Chris@23 218
Chris@23 219 val = fabs(inputBuffers[0][i]);
Chris@23 220
Chris@23 221 if (val < previn) {
Chris@23 222 val = val + (previn - val) * m_relaxcoef;
Chris@23 223 } else {
Chris@23 224 val = val + (previn - val) * m_clampcoef;
Chris@23 225 }
Chris@23 226
Chris@23 227 if (val > peak) peak = val;
Chris@23 228 previn = val;
Chris@23 229 }
Chris@23 230
Chris@23 231 m_previn = previn;
Chris@23 232
Chris@23 233 // Now store the "feature" (peak amp) for this sample
Chris@23 234 Feature feature;
Chris@23 235 feature.hasTimestamp = false;
Chris@23 236 feature.values.push_back(peak);
Chris@23 237 returnFeatures[0].push_back(feature);
Chris@23 238
Chris@23 239 return returnFeatures;
Chris@23 240 }
Chris@23 241
Chris@23 242 AmplitudeFollower::FeatureSet
Chris@23 243 AmplitudeFollower::getRemainingFeatures()
Chris@23 244 {
Chris@23 245 return FeatureSet();
Chris@23 246 }
Chris@23 247