HRTFDatabase.h   [plain text]


/*
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#ifndef HRTFDatabase_h
#define HRTFDatabase_h

#include "HRTFElevation.h"
#include <memory>
#include <wtf/Forward.h>
#include <wtf/Noncopyable.h>
#include <wtf/Vector.h>

namespace WebCore {

class HRTFKernel;

class HRTFDatabase final {
    WTF_MAKE_FAST_ALLOCATED;
    WTF_MAKE_NONCOPYABLE(HRTFDatabase);
public:
    explicit HRTFDatabase(float sampleRate);

    // getKernelsFromAzimuthElevation() returns a left and right ear kernel, and an interpolated left and right frame delay for the given azimuth and elevation.
    // azimuthBlend must be in the range 0 -> 1.
    // Valid values for azimuthIndex are 0 -> HRTFElevation::NumberOfTotalAzimuths - 1 (corresponding to angles of 0 -> 360).
    // Valid values for elevationAngle are MinElevation -> MaxElevation.
    void getKernelsFromAzimuthElevation(double azimuthBlend, unsigned azimuthIndex, double elevationAngle, HRTFKernel* &kernelL, HRTFKernel* &kernelR, double& frameDelayL, double& frameDelayR);

    // Returns the number of different azimuth angles.
    static unsigned numberOfAzimuths() { return HRTFElevation::NumberOfTotalAzimuths; }

    float sampleRate() const { return m_sampleRate; }

    // Number of elevations loaded from resource.
    static const unsigned NumberOfRawElevations;

private:
    // Minimum and maximum elevation angles (inclusive) for a HRTFDatabase.
    static const int MinElevation;
    static const int MaxElevation;
    static const unsigned RawElevationAngleSpacing;

    // Interpolates by this factor to get the total number of elevations from every elevation loaded from resource.
    static const unsigned InterpolationFactor;
    
    // Total number of elevations after interpolation.
    static const unsigned NumberOfTotalElevations;

    // Returns the index for the correct HRTFElevation given the elevation angle.
    static unsigned indexFromElevationAngle(double);

    Vector<std::unique_ptr<HRTFElevation>> m_elevations;
    float m_sampleRate;
};

} // namespace WebCore

#endif // HRTFDatabase_h