##// END OF EJS Templates
The data of the variable is now requested with the new provided...
The data of the variable is now requested with the new provided parameters

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ArrayData.h
82 lines | 2.2 KiB | text/x-c | CLexer
#ifndef SCIQLOP_ARRAYDATA_H
#define SCIQLOP_ARRAYDATA_H
#include <QVector>
/**
* @brief The ArrayData class represents a dataset for a data series.
*
* A dataset can be unidimensional or two-dimensional. This property is determined by the Dim
* template-parameter.
*
* @tparam Dim the dimension of the ArrayData (one or two)
* @sa IDataSeries
*/
template <int Dim>
class ArrayData {
public:
/**
* Ctor for a unidimensional ArrayData
* @param nbColumns the number of values the ArrayData will hold
*/
template <int D = Dim, typename = std::enable_if_t<D == 1> >
explicit ArrayData(int nbColumns) : m_Data{1, QVector<double>{}}
{
m_Data[0].resize(nbColumns);
}
/**
* Sets a data at a specified index. The index has to be valid to be effective
* @param index the index to which the data will be set
* @param data the data to set
* @remarks this method is only available for a unidimensional ArrayData
*/
template <int D = Dim, typename = std::enable_if_t<D == 1> >
void setData(int index, double data) noexcept
{
if (index >= 0 && index < m_Data.at(0).size()) {
m_Data[0].replace(index, data);
}
}
/**
* @return the data as a vector
* @remarks this method is only available for a unidimensional ArrayData
*/
template <int D = Dim, typename = std::enable_if_t<D == 1> >
const QVector<double> &data() const noexcept
{
return m_Data[0];
}
/**
* @return the data as a vector
* @remarks this method is only available for a unidimensional ArrayData
*/
template <int D = Dim, typename = std::enable_if_t<D == 1> >
const QVector<double> &data(double tStart, double tEnd) const noexcept
{
return m_Data.at(tStart);
}
// TODO Comment
template <int D = Dim, typename = std::enable_if_t<D == 1> >
void merge(const ArrayData<1> &arrayData)
{
if (!m_Data.empty()) {
m_Data[0] += arrayData.data();
}
}
template <int D = Dim, typename = std::enable_if_t<D == 1> >
int size()
{
return m_Data[0].size();
}
private:
QVector<QVector<double> > m_Data;
};
#endif // SCIQLOP_ARRAYDATA_H