source: Sophya/trunk/SophyaLib/HiStats/histos.h@ 2834

Last change on this file since 2834 was 2630, checked in by cmv, 21 years ago

gestion des param par default, cmv+rz 26/10/04

File size: 8.7 KB
RevLine 
[763]1// This may look like C code, but it is really -*- C++ -*-
2//
[2630]3// $Id: histos.h,v 1.20 2004-10-26 16:26:39 cmv Exp $
[763]4//
5
6#ifndef HISTOS_SEEN
7#define HISTOS_SEEN
8
9#include "objfio.h"
[2322]10#include <iostream>
[763]11#include <stdio.h>
12#include "peida.h"
13#include "tvector.h"
14#include "ppersist.h"
15#include "anydataobj.h"
16
17namespace SOPHYA {
18
[926]19//! 1 dimension histograms
[763]20class Histo : public AnyDataObj {
21 friend class ObjFileIO<Histo>;
22public:
23
24 // CREATOR / DESTRUCTOR
25 Histo();
[1092]26 Histo(r_8 xMin, r_8 xMax, int_4 nBin=100);
27 Histo(r_4 xMin, r_4 xMax, int_4 nBin=100);
[763]28 Histo(const Histo& H);
[1056]29 virtual ~Histo();
[763]30
31 // OPTIONS
[1056]32 void Errors();
[763]33
34 // UPDATING or SETTING
[1056]35 void Zero();
[2630]36 void Add(r_8 x, r_8 w);
37 inline void Add(r_8 x) {Add(x,1.);}
38 void AddBin(int_4 numBin, r_8 w);
39 inline void AddBin(int_4 numBin) {AddBin(numBin,1.);}
40 void SetBin(r_8 x, r_8 w);
41 inline void SetBin(r_8 x) {SetBin(x,1.);}
42 void SetBin(int_4 numBin, r_8 w);
43 inline void SetBin(int_4 numBin) {SetBin(numBin,1.);}
[1092]44 void SetErr2(r_8 x, r_8 e2);
45 void SetErr2(int_4 numBin, r_8 e2);
46 void SetErr(r_8 x, r_8 e);
47 void SetErr(int_4 numBin, r_8 e);
[1135]48 virtual void UpdateHisto(bool force=false) const;
[763]49
50 // Operators
51 Histo& operator = (const Histo& h);
[1092]52 Histo& operator *= (r_8 b);
53 Histo& operator /= (r_8 b);
54 Histo& operator += (r_8 b);
55 Histo& operator -= (r_8 b);
[763]56 Histo& operator += (const Histo& a);
57 Histo& operator -= (const Histo& a);
58 Histo& operator *= (const Histo& a);
59 Histo& operator /= (const Histo& a);
60
61 // get/put dans/depuis un vector
[1109]62 void GetAbsc(TVector<r_8>& v) const;
63 void GetValue(TVector<r_8>& v) const;
64 void GetError2(TVector<r_8>& v) const;
65 void GetError(TVector<r_8>& v) const;
[1092]66 void PutValue(TVector<r_8>& v, int_4 ierr=0);
67 void PutValueAdd(TVector<r_8> &v, int_4 ierr=0);
[943]68 void PutError2(TVector<r_8>& v);
69 void PutError2Add(TVector<r_8>& v);
70 void PutError(TVector<r_8>& v);
[763]71
72 // INLINES
[914]73 //! Retourne l'abscisse minimum
[1092]74 inline r_8 XMin() const {return mMin;}
[914]75 //! Retourne l'abscisse maximum
[1092]76 inline r_8 XMax() const {return mMax;}
[914]77 //! Retourne le nombre de bins
[1092]78 inline int_4 NBins() const {return mBins;}
[914]79 //! Retourne la largeur du bin
[1092]80 inline r_8 BinWidth() const {return binWidth;}
[914]81 //! Retourne le pointeur sur le tableaux des contenus
[1092]82 inline r_8* Bins() const {return mData;}
[914]83 //! Retourne le contenu du bin i
[1092]84 inline r_8 operator()(int_4 i) const {return mData[i];}
[914]85 //! Remplit le contenu du bin i
[1092]86 inline r_8& operator()(int_4 i) {return mData[i];}
[914]87 //! retourne "true" si il y a des erreurs stoquees
[1109]88 inline bool HasErrors() const
[1092]89 {if(mErr2) return true; else return false;}
[914]90 //! Retourne l'erreur du bin i
[1092]91 inline r_8 Error(int_4 i) const
92 {if(mErr2) {if(mErr2[i]>0.) return sqrt(mErr2[i]); else return 0.;}
[1056]93 else return 0.;}
[914]94 //! Retourne l'erreur au carre du bin i
[1092]95 inline r_8 Error2(int_4 i) const
96 {if(mErr2) return mErr2[i]; else return 0.;}
[914]97 //! Remplit l'erreur au carre du bin i
[1092]98 inline r_8& Error2(int_4 i) {return mErr2[i];}
[914]99 //! Retourne la somme ponderee
[1092]100 inline r_8 NData() const {return nHist;}
[914]101 //! Retourne le nombre d'entrees
[2628]102 inline uint_8 NEntries() const {return nEntries;}
[914]103 //! Retourne le nombre d'overflow
[1092]104 inline r_8 NOver() const {return mOver;}
[914]105 //! Retourne le nombre d'underflow
[1092]106 inline r_8 NUnder() const {return mUnder;}
[763]107
[914]108 //! Retourne l'abscisse du bord inferieur du bin i
[1092]109 inline r_8 BinLowEdge(int_4 i) const {return mMin + i*binWidth;}
[914]110 //! Retourne l'abscisse du centre du bin i
[1092]111 inline r_8 BinCenter(int_4 i) const {return mMin + (i+0.5)*binWidth;}
[914]112 //! Retourne l'abscisse du bord superieur du bin i
[1092]113 inline r_8 BinHighEdge(int_4 i) const {return mMin + (i+1)*binWidth;}
[914]114 //! Retourne le numero du bin contenant l'abscisse x
[1092]115 inline int_4 FindBin(r_8 x) const
116 {return (int_4) floor((x - mMin) / binWidth);}
[763]117
118 // Info, statistique et calculs sur les histogrammes
[1092]119 int_4 BinNonNul() const;
120 int_4 ErrNonNul() const;
121 int_4 IMax() const;
122 int_4 IMin() const;
123 r_8 VMax() const;
124 r_8 VMin() const;
125 r_8 Mean() const;
126 r_8 Sigma() const;
127 r_8 MeanLH(int_4 il,int_4 ih) const;
128 r_8 SigmaLH(int_4 il,int_4 ih) const;
129 r_8 Mean(r_8 x0, r_8 dx) const;
130 r_8 Sigma(r_8 x0, r_8 dx) const;
131 r_8 CleanedMean() const;
132 r_8 CleanedMean(r_8& sigma) const;
133 int_4 BinPercent(r_8 per) const;
[1109]134 int_4 BinPercent(r_8 x,r_8 per,int_4& imin,int_4& imax) const;
135 int_4 BinPercent(r_8 x,r_8 per,r_8& xmin,r_8& xmax) const;
[1092]136 void HInteg(r_8 norm = 0.);
[1056]137 void HDeriv();
[1092]138 virtual void HRebin(int_4 nbinew);
[763]139
[1109]140 int_4 MaxiLocal(r_8& maxi,int_4& imax,r_8& maxn,int_4& imaxn) const;
[1092]141 r_8 FitMax(int_4 degree=2, r_8 frac=0.5f, int_4 debug=0) const;
142 r_8 FindWidth(r_8 xmax,r_8 frac=0.5f, int_4 debug=0) const;
143 r_8 FindWidth(r_8 frac=0.5f, int_4 debug=0) const;
[1109]144 int_4 EstimeMax(r_8& xm,int_4 SzPav = 3) const;
145 int_4 EstimeMax(int_4& im,r_8& xm,int_4 SzPav = 3) const;
146 void EstimeWidthS(r_8 frac,r_8& widthG,r_8& widthD) const;
[763]147
148 // Print et Display ASCII
[1413]149 virtual void Show(ostream& os) const;
150 inline void Show() const { Show(cout); }
[1092]151 void Print(int_4 dyn = 100, r_8 hmin = 1., r_8 hmax = -1.,
[1201]152 int_4 pflag = 0, int_4 il = 1, int_4 ih = -1) const;
[1413]153
[763]154protected:
155 void Delete();
156
[1092]157 r_8* mData; //!< donnees
158 r_8* mErr2; //!< erreurs carrees
159 r_8 mUnder; //!< underflow
160 r_8 mOver; //!< overflow
161 r_8 nHist; //!< somme ponderee des entrees
[2628]162 uint_8 nEntries; //!< nombre d'entrees
[1092]163 int_4 mBins; //!< nombre de bins
164 r_8 mMin; //!< abscisse minimum
165 r_8 mMax; //!< abscisse maximum
166 r_8 binWidth; //!< largeur du bin
[763]167};
168
[1413]169/*! Prints histogram information on stream \b s (h.Show(s)) */
170inline ostream& operator << (ostream& s, Histo const & h)
171 { h.Show(s); return(s); }
[763]172
[958]173/*! \ingroup HiStats \fn operator<<(POuttPersist&,Histo)
174 \brief Persistance management */
[763]175inline POutPersist& operator << (POutPersist& os, Histo & obj)
176{ ObjFileIO<Histo> fio(&obj); fio.Write(os); return(os); }
[958]177/*! \ingroup HiStats \fn operator<<(POuttPersist&,Histo)
178 \brief Persistance management */
[763]179inline PInPersist& operator >> (PInPersist& is, Histo & obj)
[2479]180{ ObjFileIO<Histo> fio(&obj); is.SkipToNextObject(); fio.Read(is); return(is); }
[763]181
182// Classe pour la gestion de persistance
183// ObjFileIO<Histo>
184
[1092]185/*! \ingroup HiStats \fn operator*(const Histo&,r_8)
[1053]186 \brief Operateur H2 = H1 * b */
[1092]187inline Histo operator * (const Histo& a, r_8 b)
[1053]188{
189 Histo result(a);
190 return (result *= b);
191}
[763]192
[1092]193/*! \ingroup HiStats \fn operator*(r_8,const Histo&)
[1053]194 \brief Operateur H2 = b * H1 */
[1092]195inline Histo operator * (r_8 b, const Histo& a)
[1053]196{
197 Histo result(a);
198 return (result *= b);
199}
200
[1092]201/*! \ingroup HiStats \fn operator/(const Histo&,r_8)
[1053]202 \brief Operateur H2 = H1 / b */
[1092]203inline Histo operator / (const Histo& a, r_8 b)
[1053]204{
205 Histo result(a);
206 return (result /= b);
207}
208
[1092]209/*! \ingroup HiStats \fn operator+(const Histo&,r_8)
[1053]210 \brief Operateur H2 = H1 + b */
[1092]211inline Histo operator + (const Histo& a, r_8 b)
[1053]212{
213 Histo result(a);
214 return (result += b);
215}
216
[1092]217/*! \ingroup HiStats \fn operator+(r_8,const Histo&)
[1053]218 \brief Operateur H2 = b + H1 */
[1092]219inline Histo operator + (r_8 b, const Histo& a)
[1053]220{
221 Histo result(a);
222 return (result += b);
223}
224
[1092]225/*! \ingroup HiStats \fn operator-(const Histo&,r_8)
[1053]226 \brief Operateur H2 = H1 - b */
[1092]227inline Histo operator - (const Histo& a, r_8 b)
[1053]228{
229 Histo result(a);
230 return (result -= b);
231}
232
[1092]233/*! \ingroup HiStats \fn operator-(r_8,const Histo&)
[1053]234 \brief Operateur H2 = b - H1 */
[1092]235inline Histo operator - (r_8 b, const Histo& a)
[1053]236{
237 Histo result(a);
238 result *= -1.;
239 return (result += b);
240}
241
242/*! \ingroup HiStats \fn operator+(const Histo&,const Histo&)
243 \brief Operateur H = H1 + H2 */
244inline Histo operator + (const Histo& a, const Histo& b)
245{
[2507]246if (b.NBins()!=a.NBins()) throw SzMismatchError(PExcLongMessage(""));
[1053]247Histo c(a);
248return (c += b);
249}
250
251/*! \ingroup HiStats \fn operator-(const Histo&,const Histo&)
252 \brief Operateur H = H1 - H2 */
253inline Histo operator - (const Histo& a, const Histo& b)
254{
[2507]255if (b.NBins()!=a.NBins()) throw SzMismatchError(PExcLongMessage(""));
[1053]256Histo c(a);
257return (c -= b);
258}
259
260/*! \ingroup HiStats \fn operator*(const Histo&,const Histo&)
261 \brief Operateur H = H1 * H2 */
262inline Histo operator * (const Histo& a, const Histo& b)
263{
[2507]264if (b.NBins()!=a.NBins()) throw SzMismatchError(PExcLongMessage(""));
[1053]265Histo c(a);
266return (c *= b);
267}
268
269/*! \ingroup HiStats \fn operator/(const Histo&,const Histo&)
270 \brief Operateur H = H1 / H2 */
271inline Histo operator / (const Histo& a, const Histo& b)
272{
[2507]273if (b.NBins()!=a.NBins()) throw SzMismatchError(PExcLongMessage(""));
[1053]274Histo c(a);
275return (c /= b);
276}
277
[763]278} // Fin du namespace
279
280#endif // HISTOS_SEEN
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