BornAgain  1.19.0
Simulate and fit neutron and x-ray scattering at grazing incidence
VariableBinAxis.h
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1 // ************************************************************************************************
2 //
3 // BornAgain: simulate and fit reflection and scattering
4 //
5 //! @file Base/Axis/VariableBinAxis.h
6 //! @brief Defines class VariableBinAxis.
7 //!
8 //! @homepage http://www.bornagainproject.org
9 //! @license GNU General Public License v3 or higher (see COPYING)
10 //! @copyright Forschungszentrum Jülich GmbH 2018
11 //! @authors Scientific Computing Group at MLZ (see CITATION, AUTHORS)
12 //
13 // ************************************************************************************************
14 
15 #ifndef BORNAGAIN_BASE_AXIS_VARIABLEBINAXIS_H
16 #define BORNAGAIN_BASE_AXIS_VARIABLEBINAXIS_H
17 
18 #include "Base/Axis/IAxis.h"
19 
20 //! Axis with variable bin size.
21 //! @ingroup tools
22 
23 class VariableBinAxis : public IAxis {
24 public:
25  //! VariableBinAxis constructor.
26  //! @param name Axis name
27  //! @param nbins number of bins
28  //! @param bin_boundaries Array of size nbins+1 containing low-edges for each
29  //! bin and upper edge of last bin.
30  VariableBinAxis(const std::string& name, size_t nbins,
31  const std::vector<double>& bin_boundaries);
32  virtual ~VariableBinAxis() {}
33 
34  VariableBinAxis* clone() const;
35 
36  size_t size() const { return m_nbins; }
37 
38  double operator[](size_t index) const;
39 
40  Bin1D bin(size_t index) const;
41 
42  double lowerBound() const;
43  double upperBound() const;
44 
45  double binCenter(size_t index) const;
46 
47  size_t findClosestIndex(double value) const;
48 
49  std::vector<double> binCenters() const;
50  std::vector<double> binBoundaries() const { return m_bin_boundaries; }
51 
52  virtual VariableBinAxis* createClippedAxis(double left, double right) const;
53 
54 protected:
55  VariableBinAxis(const std::string& name, size_t nbins = 0);
56  void setBinBoundaries(const std::vector<double>& bin_boundaries);
57 
58  virtual void print(std::ostream& ostr) const;
59  virtual bool equals(const IAxis& other) const;
60  size_t m_nbins;
61 
62 private:
63  std::vector<double> m_bin_boundaries; //!< vector containing the bin limits
64 };
65 
66 #endif // BORNAGAIN_BASE_AXIS_VARIABLEBINAXIS_H
Defines interface IAxis.
Interface for one-dimensional axes.
Definition: IAxis.h:25
Axis with variable bin size.
double upperBound() const
Returns value of last point of axis.
size_t size() const
retrieve the number of bins
void setBinBoundaries(const std::vector< double > &bin_boundaries)
double operator[](size_t index) const
indexed accessor retrieves a sample
double binCenter(size_t index) const
virtual bool equals(const IAxis &other) const
std::vector< double > binBoundaries() const
VariableBinAxis(const std::string &name, size_t nbins, const std::vector< double > &bin_boundaries)
VariableBinAxis constructor.
std::vector< double > m_bin_boundaries
vector containing the bin limits
Bin1D bin(size_t index) const
retrieve a 1d bin for the given index
double lowerBound() const
Returns value of first point of axis.
virtual ~VariableBinAxis()
virtual VariableBinAxis * createClippedAxis(double left, double right) const
Creates a new clipped axis.
size_t findClosestIndex(double value) const
find bin index which is best match for given value
std::vector< double > binCenters() const
virtual void print(std::ostream &ostr) const
VariableBinAxis * clone() const
clone function
QString const & name(EShape k)
Definition: particles.cpp:21
Definition: Bin.h:20