Logo ROOT   6.14/05
Reference Guide
TSpectrumTransform.h
Go to the documentation of this file.
1 // @(#)root/spectrum:$Id$
2 // Author: Miroslav Morhac 25/09/06
3 
4 /*************************************************************************
5  * Copyright (C) 1995-2006, Rene Brun and Fons Rademakers. *
6  * All rights reserved. *
7  * *
8  * For the licensing terms see $ROOTSYS/LICENSE. *
9  * For the list of contributors see $ROOTSYS/README/CREDITS. *
10  *************************************************************************/
11 #ifndef ROOT_TSpectrumTransform
12 #define ROOT_TSpectrumTransform
13 
14 #include "TNamed.h"
15 
16 class TH1;
17 
18 class TSpectrumTransform : public TNamed {
19 
20 protected:
21  Int_t fSize; ///< length of transformed data
22  Int_t fTransformType; ///< type of transformation (Haar, Walsh, Cosine, Sine, Fourier, Hartley, Fourier-Walsh, Fourier-Haar, Walsh-Haar, Cosine-Walsh, Cosine-Haar, Sine-Walsh, Sine-Haar)
23  Int_t fDegree; ///< degree of mixed transform, applies only for Fourier-Walsh, Fourier-Haar, Walsh-Haar, Cosine-Walsh, Cosine-Haar, Sine-Walsh, Sine-Haar transforms
24  Int_t fDirection; ///< forward or inverse transform
25  Int_t fXmin; ///< first channel of filtered or enhanced region
26  Int_t fXmax; ///< last channel of filtered or enhanced region
27  Double_t fFilterCoeff; ///< value set in the filtered region
28  Double_t fEnhanceCoeff; ///< multiplication coefficient applied in enhanced region;
29 
30 public:
31  enum {
47  };
50  virtual ~TSpectrumTransform();
51 
52 protected:
53  void BitReverse(Double_t *working_space,Int_t num);
54  void BitReverseHaar(Double_t *working_space,Int_t shift,Int_t num,Int_t start);
55  void Fourier(Double_t *working_space,Int_t num,Int_t hartley,Int_t direction,Int_t zt_clear);
56  Int_t GeneralExe(Double_t *working_space,Int_t zt_clear,Int_t num,Int_t degree,Int_t type);
57  Int_t GeneralInv(Double_t *working_space,Int_t num,Int_t degree,Int_t type);
58  void Haar(Double_t *working_space,Int_t num,Int_t direction);
59  void Walsh(Double_t *working_space,Int_t num);
60 
61 public:
62  void Enhance(const Double_t *source, Double_t *destVector);
63  void FilterZonal(const Double_t *source, Double_t *destVector);
64  void SetDirection(Int_t direction);
65  void SetEnhanceCoeff(Double_t enhanceCoeff);
66  void SetFilterCoeff(Double_t filterCoeff);
67  void SetRegion(Int_t xmin, Int_t xmax);
68  void SetTransformType(Int_t transType, Int_t degree);
69  void Transform(const Double_t *source, Double_t *destVector);
70 
71  ClassDef(TSpectrumTransform,1) //Spectrum Transformer, it calculates classic orthogonal 1D transforms
72 };
73 
74 
75 #endif
76 
Int_t fXmax
last channel of filtered or enhanced region
virtual ~TSpectrumTransform()
Destructor.
float xmin
Definition: THbookFile.cxx:93
Int_t fDirection
forward or inverse transform
void SetTransformType(Int_t transType, Int_t degree)
This function sets the following parameters for transform:
Int_t fSize
length of transformed data
int Int_t
Definition: RtypesCore.h:41
Advanced 1-dimensional orthogonal transform functions.
Int_t fXmin
first channel of filtered or enhanced region
#define ClassDef(name, id)
Definition: Rtypes.h:320
The TNamed class is the base class for all named ROOT classes.
Definition: TNamed.h:29
void Transform(const Double_t *source, Double_t *destVector)
This function transforms the source spectrum.
void SetEnhanceCoeff(Double_t enhanceCoeff)
This function sets the enhancement coefficient:
void FilterZonal(const Double_t *source, Double_t *destVector)
This function transforms the source spectrum.
Double_t fFilterCoeff
value set in the filtered region
Int_t GeneralInv(Double_t *working_space, Int_t num, Int_t degree, Int_t type)
This function calculates inverse generalized (mixed) transforms Function parameters: ...
void SetRegion(Int_t xmin, Int_t xmax)
This function sets the filtering or enhancement region:
void Haar(Double_t *working_space, Int_t num, Int_t direction)
This function calculates Haar transform of a part of data Function parameters:
float xmax
Definition: THbookFile.cxx:93
void BitReverse(Double_t *working_space, Int_t num)
This function carries out bit-reverse reordering of data Function parameters:
Int_t GeneralExe(Double_t *working_space, Int_t zt_clear, Int_t num, Int_t degree, Int_t type)
This function calculates generalized (mixed) transforms of different degrees Function parameters: ...
static constexpr double degree
double Double_t
Definition: RtypesCore.h:55
int type
Definition: TGX11.cxx:120
The TH1 histogram class.
Definition: TH1.h:56
Double_t fEnhanceCoeff
multiplication coefficient applied in enhanced region;
Int_t fTransformType
type of transformation (Haar, Walsh, Cosine, Sine, Fourier, Hartley, Fourier-Walsh, Fourier-Haar, Walsh-Haar, Cosine-Walsh, Cosine-Haar, Sine-Walsh, Sine-Haar)
Int_t fDegree
degree of mixed transform, applies only for Fourier-Walsh, Fourier-Haar, Walsh-Haar, Cosine-Walsh, Cosine-Haar, Sine-Walsh, Sine-Haar transforms
void SetFilterCoeff(Double_t filterCoeff)
This function sets the filter coefficient:
TSpectrumTransform()
default constructor
void Enhance(const Double_t *source, Double_t *destVector)
This function transforms the source spectrum.
void Fourier(Double_t *working_space, Int_t num, Int_t hartley, Int_t direction, Int_t zt_clear)
This function calculates Fourier based transform of a part of data Function parameters: ...
void Walsh(Double_t *working_space, Int_t num)
This function calculates Walsh transform of a part of data Function parameters:
void SetDirection(Int_t direction)
This function sets the direction of the transform:
void BitReverseHaar(Double_t *working_space, Int_t shift, Int_t num, Int_t start)
This function carries out bit-reverse reordering for Haar transform Function parameters: ...