view cpp-qm-dsp/CQSpectrogram.h @ 90:bfc7cf71f2ef

Rearrange classes so the basic ConstantQ produces a complex output, and CQSpectrogram (formerly CQInterpolated) is required if you want a real output
author Chris Cannam <c.cannam@qmul.ac.uk>
date Fri, 09 May 2014 10:05:16 +0100
parents
children fa1709ed4a3c
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/* -*- c-basic-offset: 4 indent-tabs-mode: nil -*-  vi:set ts=8 sts=4 sw=4: */
/*
    Constant-Q library
    Copyright (c) 2013-2014 Queen Mary, University of London

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    obtaining a copy of this software and associated documentation
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    The above copyright notice and this permission notice shall be
    included in all copies or substantial portions of the Software.

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    WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.

    Except as contained in this notice, the names of the Centre for
    Digital Music; Queen Mary, University of London; and Chris Cannam
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*/

#ifndef CQSPECTROGRAM_H
#define CQSPECTROGRAM_H

#include "ConstantQ.h"

class CQSpectrogram : public CQBase
{
public:
    enum Interpolation {
	InterpolateZeros, // leave empty cells as zero
	InterpolateHold, // repeat prior cell
	InterpolateLinear, // linear interpolation between consecutive time cells
    };

    CQSpectrogram(double sampleRate,
                  double minFreq, double maxFreq,
                  int binsPerOctave,
                  Interpolation interpolation);
    ~CQSpectrogram();

    virtual double getSampleRate() const { return m_cq.getSampleRate(); }
    virtual int getBinsPerOctave() const { return m_cq.getBinsPerOctave(); }
    virtual int getOctaves() const { return m_cq.getOctaves(); }
    virtual int getTotalBins() const { return m_cq.getTotalBins(); }
    virtual int getColumnHop() const { return m_cq.getColumnHop(); }
    virtual int getLatency() const { return m_cq.getLatency(); } 
    virtual double getMaxFrequency() const { return m_cq.getMaxFrequency(); }
    virtual double getMinFrequency() const { return m_cq.getMinFrequency(); }
    virtual double getBinFrequency(int bin) const { return m_cq.getBinFrequency(bin); }

    RealBlock process(const RealSequence &);
    RealBlock getRemainingOutput();

private:
    ConstantQ m_cq;
    Interpolation m_interpolation;

    RealBlock m_buffer;
    RealBlock postProcess(const ComplexBlock &, bool insist);
    RealBlock fetchHold(bool insist);
    RealBlock fetchLinear(bool insist);
    RealBlock linearInterpolated(const RealBlock &, int, int);
    RealColumn m_prevColumn;
};

#endif