RooAbsRealLValue.h

Go to the documentation of this file.
00001 /*****************************************************************************
00002  * Project: RooFit                                                           *
00003  * Package: RooFitCore                                                       *
00004  *    File: $Id: RooAbsRealLValue.h,v 1.37 2007/07/13 21:50:24 wouter Exp $
00005  * Authors:                                                                  *
00006  *   WV, Wouter Verkerke, UC Santa Barbara, verkerke@slac.stanford.edu       *
00007  *   DK, David Kirkby,    UC Irvine,         dkirkby@uci.edu                 *
00008  *                                                                           *
00009  * Copyright (c) 2000-2005, Regents of the University of California          *
00010  *                          and Stanford University. All rights reserved.    *
00011  *                                                                           *
00012  * Redistribution and use in source and binary forms,                        *
00013  * with or without modification, are permitted according to the terms        *
00014  * listed in LICENSE (http://roofit.sourceforge.net/license.txt)             *
00015  *****************************************************************************/
00016 #ifndef ROO_ABS_REAL_LVALUE
00017 #define ROO_ABS_REAL_LVALUE
00018 
00019 #include "Riosfwd.h"
00020 #include <math.h>
00021 #include <float.h>
00022 #include "TString.h"
00023 
00024 #include "RooAbsReal.h"
00025 #include "RooNumber.h"
00026 #include "RooAbsLValue.h"
00027 #include "RooAbsBinning.h"
00028 
00029 class RooArgSet ;
00030 
00031 class RooAbsRealLValue : public RooAbsReal, public RooAbsLValue {
00032 public:
00033   // Constructors, assignment etc.
00034   inline RooAbsRealLValue() { }
00035   RooAbsRealLValue(const char *name, const char *title, const char *unit= "") ;
00036   RooAbsRealLValue(const RooAbsRealLValue& other, const char* name=0);
00037   virtual ~RooAbsRealLValue();
00038   
00039   // Parameter value and error accessors
00040   virtual void setVal(Double_t value)=0;
00041   virtual RooAbsArg& operator=(const RooAbsReal& other) ;
00042   virtual RooAbsArg& operator=(Double_t newValue);
00043   virtual RooAbsArg& operator=(Int_t ival) { return operator=((Double_t)ival) ; }
00044 
00045   // Implementation of RooAbsLValue
00046   virtual void setBin(Int_t ibin, const char* rangeName=0) ;
00047   virtual Int_t getBin(const char* rangeName=0) const { return getBinning(rangeName).binNumber(getVal()) ; }
00048   virtual Int_t numBins(const char* rangeName=0) const { return getBins(rangeName) ; }
00049   virtual Double_t getBinWidth(Int_t i, const char* rangeName=0) const { return getBinning(rangeName).binWidth(i) ; }
00050   virtual Double_t volume(const char* rangeName) const { return getMax(rangeName)-getMin(rangeName) ; }
00051   virtual void randomize(const char* rangeName=0);
00052 
00053   virtual const RooAbsBinning* getBinningPtr(const char* rangeName) const { return &getBinning(rangeName) ; }
00054   virtual Int_t getBin(const RooAbsBinning* ptr) const { return ptr->binNumber(getVal()) ; }
00055 
00056   virtual void setBin(Int_t ibin, const RooAbsBinning& binning) ;
00057   virtual Int_t getBin(const RooAbsBinning& binning) const { return binning.binNumber(getVal()) ; }
00058   virtual Int_t numBins(const RooAbsBinning& binning) const { return binning.numBins() ; }
00059   virtual Double_t getBinWidth(Int_t i, const RooAbsBinning& binning) const { return binning.binWidth(i) ; }
00060   virtual Double_t volume(const RooAbsBinning& binning) const { return binning.highBound() - binning.lowBound() ; }
00061   virtual void randomize(const RooAbsBinning& binning) ;
00062 
00063 
00064   virtual void setBinFast(Int_t ibin, const RooAbsBinning& binning) ;
00065   
00066   // Get fit range limits
00067 
00068   virtual const RooAbsBinning& getBinning(const char* name=0, Bool_t verbose=kTRUE, Bool_t createOnTheFly=kFALSE) const = 0 ;
00069   virtual RooAbsBinning& getBinning(const char* name=0, Bool_t verbose=kTRUE, Bool_t createOnTheFly=kFALSE) = 0 ;
00070   virtual Bool_t hasBinning(const char* name) const = 0 ;
00071   virtual Bool_t inRange(const char* name) const ;
00072   virtual Int_t getBins(const char* name=0) const { return getBinning(name).numBins() ; }
00073   virtual Double_t getMin(const char* name=0) const { return getBinning(name).lowBound() ; }
00074   virtual Double_t getMax(const char* name=0) const { return getBinning(name).highBound() ; }
00075   inline Bool_t hasMin(const char* name=0) const { return !RooNumber::isInfinite(getMin(name)); }
00076   inline Bool_t hasMax(const char* name=0) const { return !RooNumber::isInfinite(getMax(name)); }
00077   virtual Bool_t hasRange(const char* name) const { return hasBinning(name) ; }
00078 
00079   // Jacobian term management
00080   virtual Bool_t isJacobianOK(const RooArgSet& depList) const ;
00081   virtual Double_t jacobian() const { return 1 ; }
00082 
00083   inline virtual Bool_t isLValue() const { return kTRUE; }
00084 
00085   // Test a value against our fit range
00086   Bool_t inRange(Double_t value, const char* rangeName, Double_t* clippedValue=0) const;
00087   virtual Bool_t isValidReal(Double_t value, Bool_t printError=kFALSE) const ; 
00088 
00089   // Constant and Projected flags 
00090   inline void setConstant(Bool_t value= kTRUE) { setAttribute("Constant",value); setValueDirty() ; setShapeDirty() ; }
00091 
00092   // I/O streaming interface (machine readable)
00093   virtual Bool_t readFromStream(istream& is, Bool_t compact, Bool_t verbose=kFALSE) ;
00094   virtual void writeToStream(ostream& os, Bool_t compact) const ;
00095 
00096   // Printing interface (human readable)
00097   virtual void printMultiline(ostream& os, Int_t contents, Bool_t verbose=kFALSE, TString indent="") const ;
00098 
00099   
00100   // Build 1-dimensional plots
00101   RooPlot* frame(const RooCmdArg& arg1, const RooCmdArg& arg2=RooCmdArg::none(), 
00102                  const RooCmdArg& arg3=RooCmdArg::none(), const RooCmdArg& arg4=RooCmdArg::none(), const RooCmdArg& arg5=RooCmdArg::none(), 
00103                  const RooCmdArg& arg6=RooCmdArg::none(), const RooCmdArg& arg7=RooCmdArg::none(), const RooCmdArg& arg8=RooCmdArg::none()) const ;
00104   RooPlot *frame(const RooLinkedList& cmdList) const ;
00105   RooPlot *frame(Double_t lo, Double_t hi, Int_t nbins) const;
00106   RooPlot *frame(Double_t lo, Double_t hi) const;
00107   RooPlot *frame(Int_t nbins) const;
00108   RooPlot *frame() const;
00109 
00110   // Create empty 1,2, and 3D histograms from a list of 1-3 RooAbsReals
00111   TH1 *createHistogram(const char *name, 
00112                        const RooCmdArg& arg1=RooCmdArg::none(), const RooCmdArg& arg2=RooCmdArg::none(), 
00113                        const RooCmdArg& arg3=RooCmdArg::none(), const RooCmdArg& arg4=RooCmdArg::none(), 
00114                        const RooCmdArg& arg5=RooCmdArg::none(), const RooCmdArg& arg6=RooCmdArg::none(), 
00115                        const RooCmdArg& arg7=RooCmdArg::none(), const RooCmdArg& arg8=RooCmdArg::none()) const ;
00116   TH1 *createHistogram(const char *name, const RooLinkedList& cmdList) const ;
00117  
00118   TH1F *createHistogram(const char *name, const char *yAxisLabel) const ;
00119   TH1F *createHistogram(const char *name, const char *yAxisLabel, Double_t xlo, Double_t xhi, Int_t nBins) const ;
00120   TH1F *createHistogram(const char *name, const char *yAxisLabel, const RooAbsBinning& bins) const ;
00121 
00122   TH2F *createHistogram(const char *name, const RooAbsRealLValue &yvar, const char *zAxisLabel=0, 
00123                         Double_t* xlo=0, Double_t* xhi=0, Int_t* nBins=0) const ;
00124   TH2F *createHistogram(const char *name, const RooAbsRealLValue &yvar, const char *zAxisLabel, const RooAbsBinning** bins) const ;
00125   
00126 
00127   TH3F *createHistogram(const char *name, const RooAbsRealLValue &yvar, const RooAbsRealLValue &zvar,
00128                         const char *tAxisLabel, Double_t* xlo=0, Double_t* xhi=0, Int_t* nBins=0) const ;
00129   TH3F *createHistogram(const char *name, const RooAbsRealLValue &yvar, const RooAbsRealLValue &zvar, const char* tAxisLabel, const RooAbsBinning** bins) const ;
00130   
00131   static TH1* createHistogram(const char *name, RooArgList &vars, const char *tAxisLabel, Double_t* xlo, Double_t* xhi, Int_t* nBins) ;
00132   static TH1* createHistogram(const char *name, RooArgList &vars, const char *tAxisLabel, const RooAbsBinning** bins) ;
00133 
00134 protected:
00135 
00136   friend class RooRealBinding ;
00137 
00138   virtual void setValFast(Double_t value) { setVal(value) ; }
00139 
00140   virtual void setVal(Double_t value, const char* /*rangeName*/) { 
00141     // Set object value to 'value'
00142     return setVal(value) ; 
00143   }
00144   Bool_t fitRangeOKForPlotting() const ;
00145   void copyCache(const RooAbsArg* source, Bool_t valueOnly=kFALSE) ;
00146 
00147   ClassDef(RooAbsRealLValue,1) // Abstract modifiable real-valued object
00148 };
00149 
00150 #endif

Generated on Tue Jul 5 14:26:02 2011 for ROOT_528-00b_version by  doxygen 1.5.1