cannam@108: /* -*- c-basic-offset: 4 indent-tabs-mode: nil -*- vi:set ts=8 sts=4 sw=4: */ cannam@108: cannam@108: /* cannam@108: Vamp cannam@108: cannam@108: An API for audio analysis and feature extraction plugins. cannam@108: cannam@108: Centre for Digital Music, Queen Mary, University of London. cannam@108: Copyright 2006 Chris Cannam. cannam@108: cannam@108: Permission is hereby granted, free of charge, to any person cannam@108: obtaining a copy of this software and associated documentation cannam@108: files (the "Software"), to deal in the Software without cannam@108: restriction, including without limitation the rights to use, copy, cannam@108: modify, merge, publish, distribute, sublicense, and/or sell copies cannam@108: of the Software, and to permit persons to whom the Software is cannam@108: furnished to do so, subject to the following conditions: cannam@108: cannam@108: The above copyright notice and this permission notice shall be cannam@108: included in all copies or substantial portions of the Software. cannam@108: cannam@108: THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, cannam@108: EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF cannam@108: MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND cannam@108: NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR cannam@108: ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF cannam@108: CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION cannam@108: WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. cannam@108: cannam@108: Except as contained in this notice, the names of the Centre for cannam@108: Digital Music; Queen Mary, University of London; and Chris Cannam cannam@108: shall not be used in advertising or otherwise to promote the sale, cannam@108: use or other dealings in this Software without prior written cannam@108: authorization. cannam@108: */ cannam@108: cannam@108: #include "ZeroCrossing.h" cannam@108: cannam@108: using std::string; cannam@108: using std::vector; cannam@108: using std::cerr; cannam@108: using std::endl; cannam@108: cannam@108: #include cannam@108: cannam@108: ZeroCrossing::ZeroCrossing(float inputSampleRate) : cannam@108: Plugin(inputSampleRate), cannam@108: m_stepSize(0), cannam@108: m_previousSample(0.0f) cannam@108: { cannam@108: } cannam@108: cannam@108: ZeroCrossing::~ZeroCrossing() cannam@108: { cannam@108: } cannam@108: cannam@108: string cannam@108: ZeroCrossing::getIdentifier() const cannam@108: { cannam@108: return "zerocrossing"; cannam@108: } cannam@108: cannam@108: string cannam@108: ZeroCrossing::getName() const cannam@108: { cannam@108: return "Zero Crossings"; cannam@108: } cannam@108: cannam@108: string cannam@108: ZeroCrossing::getDescription() const cannam@108: { cannam@108: return "Detect and count zero crossing points"; cannam@108: } cannam@108: cannam@108: string cannam@108: ZeroCrossing::getMaker() const cannam@108: { cannam@108: return "Vamp SDK Example Plugins"; cannam@108: } cannam@108: cannam@108: int cannam@108: ZeroCrossing::getPluginVersion() const cannam@108: { cannam@108: return 2; cannam@108: } cannam@108: cannam@108: string cannam@108: ZeroCrossing::getCopyright() const cannam@108: { cannam@108: return "Freely redistributable (BSD license)"; cannam@108: } cannam@108: cannam@108: bool cannam@108: ZeroCrossing::initialise(size_t channels, size_t stepSize, size_t blockSize) cannam@108: { cannam@108: if (channels < getMinChannelCount() || cannam@108: channels > getMaxChannelCount()) return false; cannam@108: cannam@108: m_stepSize = std::min(stepSize, blockSize); cannam@108: cannam@108: return true; cannam@108: } cannam@108: cannam@108: void cannam@108: ZeroCrossing::reset() cannam@108: { cannam@108: m_previousSample = 0.0f; cannam@108: } cannam@108: cannam@108: ZeroCrossing::OutputList cannam@108: ZeroCrossing::getOutputDescriptors() const cannam@108: { cannam@108: OutputList list; cannam@108: cannam@108: OutputDescriptor zc; cannam@108: zc.identifier = "counts"; cannam@108: zc.name = "Zero Crossing Counts"; cannam@108: zc.description = "The number of zero crossing points per processing block"; cannam@108: zc.unit = "crossings"; cannam@108: zc.hasFixedBinCount = true; cannam@108: zc.binCount = 1; cannam@108: zc.hasKnownExtents = false; cannam@108: zc.isQuantized = true; cannam@108: zc.quantizeStep = 1.0; cannam@108: zc.sampleType = OutputDescriptor::OneSamplePerStep; cannam@108: list.push_back(zc); cannam@108: cannam@108: zc.identifier = "zerocrossings"; cannam@108: zc.name = "Zero Crossings"; cannam@108: zc.description = "The locations of zero crossing points"; cannam@108: zc.unit = ""; cannam@108: zc.hasFixedBinCount = true; cannam@108: zc.binCount = 0; cannam@108: zc.sampleType = OutputDescriptor::VariableSampleRate; cannam@108: zc.sampleRate = m_inputSampleRate; cannam@108: list.push_back(zc); cannam@108: cannam@108: return list; cannam@108: } cannam@108: cannam@108: ZeroCrossing::FeatureSet cannam@108: ZeroCrossing::process(const float *const *inputBuffers, cannam@108: Vamp::RealTime timestamp) cannam@108: { cannam@108: if (m_stepSize == 0) { cannam@108: cerr << "ERROR: ZeroCrossing::process: " cannam@108: << "ZeroCrossing has not been initialised" cannam@108: << endl; cannam@108: return FeatureSet(); cannam@108: } cannam@108: cannam@108: float prev = m_previousSample; cannam@108: size_t count = 0; cannam@108: cannam@108: FeatureSet returnFeatures; cannam@108: cannam@108: for (size_t i = 0; i < m_stepSize; ++i) { cannam@108: cannam@108: float sample = inputBuffers[0][i]; cannam@108: bool crossing = false; cannam@108: cannam@108: if (sample <= 0.0) { cannam@108: if (prev > 0.0) crossing = true; cannam@108: } else if (sample > 0.0) { cannam@108: if (prev <= 0.0) crossing = true; cannam@108: } cannam@108: cannam@108: if (crossing) { cannam@108: ++count; cannam@108: Feature feature; cannam@108: feature.hasTimestamp = true; cannam@108: feature.timestamp = timestamp + cannam@108: Vamp::RealTime::frame2RealTime(i, (size_t)m_inputSampleRate); cannam@108: returnFeatures[1].push_back(feature); cannam@108: } cannam@108: cannam@108: prev = sample; cannam@108: } cannam@108: cannam@108: m_previousSample = prev; cannam@108: cannam@108: Feature feature; cannam@108: feature.hasTimestamp = false; cannam@108: feature.values.push_back(float(count)); cannam@108: cannam@108: returnFeatures[0].push_back(feature); cannam@108: return returnFeatures; cannam@108: } cannam@108: cannam@108: ZeroCrossing::FeatureSet cannam@108: ZeroCrossing::getRemainingFeatures() cannam@108: { cannam@108: return FeatureSet(); cannam@108: } cannam@108: