##// END OF EJS Templates
Call the calculation of the thresholds in the scale editor (with each click on the 'automatic' mode)
Call the calculation of the thresholds in the scale editor (with each click on the 'automatic' mode)

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r1029:2928e8449245
r1062:b014e09f2329
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SpectrogramSeries.h
40 lines | 1.5 KiB | text/x-c | CLexer
#ifndef SCIQLOP_SPECTROGRAMSERIES_H
#define SCIQLOP_SPECTROGRAMSERIES_H
#include "CoreGlobal.h"
#include <Data/DataSeries.h>
/**
* @brief The SpectrogramSeries class is the implementation for a data series representing a
* spectrogram.
*
* It defines values on a x-axis and a y-axis.
*/
class SCIQLOP_CORE_EXPORT SpectrogramSeries : public DataSeries<2> {
public:
/// Ctor
explicit SpectrogramSeries(std::vector<double> xAxisData, std::vector<double> yAxisData,
std::vector<double> valuesData, const Unit &xAxisUnit,
const Unit &yAxisUnit, const Unit &valuesUnit,
double xResolution = std::numeric_limits<double>::quiet_NaN());
/// Ctor directly with the y-axis
explicit SpectrogramSeries(std::shared_ptr<ArrayData<1> > xAxisData, const Unit &xAxisUnit,
std::shared_ptr<ArrayData<2> > valuesData, const Unit &valuesUnit,
OptionalAxis yAxis,
double xResolution = std::numeric_limits<double>::quiet_NaN());
/// @sa DataSeries::clone()
std::unique_ptr<IDataSeries> clone() const override;
/// @sa DataSeries::subDataSeries()
std::shared_ptr<IDataSeries> subDataSeries(const SqpRange &range) override;
inline double xResolution() const noexcept { return m_XResolution; }
private:
double m_XResolution; ///< Resolution used on x-axis to build the spectrogram
};
#endif // SCIQLOP_SPECTROGRAMSERIES_H