#ifndef ROOCFUNCTION1BINDING
#define ROOCFUNCTION1BINDING
#include "TString.h"
#include "RooAbsReal.h"
#include "RooAbsPdf.h"
#include "RooRealProxy.h"
#include "RooMsgService.h"
#include <string>
#include <map>
#include <vector>
namespace RooFit {
typedef Double_t (*CFUNCD1D)(Double_t) ;
typedef Double_t (*CFUNCD1I)(Int_t) ;
RooAbsReal* bindFunction(const char* name,void* func,RooAbsReal& x) ;
RooAbsPdf*  bindPdf(const char* name,void* func,RooAbsReal& x) ;
#ifndef __CINT__
RooAbsReal* bindFunction(const char* name,CFUNCD1D func,RooAbsReal& x) ;
RooAbsReal* bindFunction(const char* name,CFUNCD1I func,RooAbsReal& x) ;
RooAbsPdf*  bindPdf(const char* name,CFUNCD1D func,RooAbsReal& x) ;
RooAbsPdf*  bindPdf(const char* name,CFUNCD1I func,RooAbsReal& x) ;
#endif
}
template<class VO, class VI>
class RooCFunction1Map {
 public:
  RooCFunction1Map() {} ;
  void add(const char* name, VO (*ptr)(VI), const char* arg1name="x") {
    
    _ptrmap[name] = ptr ;
    _namemap[ptr] = name ;
    _argnamemap[ptr].push_back(arg1name) ;
  }
  
  const char* lookupName(VO (*ptr)(VI)) {
    
    return _namemap[ptr].c_str() ;
  }
    
  VO (*lookupPtr(const char* name))(VI) {
    
    return _ptrmap[name] ;
  }
  const char* lookupArgName(VO (*ptr)(VI), UInt_t iarg) {
    
    
    if (iarg<_argnamemap[ptr].size()) {
      return (_argnamemap[ptr])[iarg].c_str() ;
    }
    switch (iarg) {
    case 0: return "x" ;
    case 1: return "y" ;
    case 2: return "z" ;
    }
    return "w" ;
  }
  
 private:
#ifndef __CINT__
  std::map<std::string,VO (*)(VI)> _ptrmap ; 
  std::map<VO (*)(VI),std::string> _namemap ; 
  std::map<VO (*)(VI),std::vector<std::string> > _argnamemap ; 
#endif
} ;
template<class VO, class VI>
class RooCFunction1Ref : public TObject {
 public:
  RooCFunction1Ref(VO (*ptr)(VI)=0) : _ptr(ptr) {
    
  } ;
  ~RooCFunction1Ref() {} ;
  VO operator()(VI x) const {
    
    return (*_ptr)(x) ;
  }
  const char* name() const {
    
    
    
    const char* result = fmap().lookupName(_ptr) ;
    if (result && strlen(result)) {
      return result ;
    } 
    return Form("(0x%08x)",_ptr) ;
  }
  const char* argName(Int_t iarg) {
    
    return fmap().lookupArgName(_ptr,iarg) ;    
  }
  static RooCFunction1Map<VO,VI>& fmap() {
    
    if (!_fmap) {
      _fmap = new RooCFunction1Map<VO,VI> ;
    }
    return *_fmap ;
  }
 private:
  static VO dummyFunction(VI) {
    
    
    return 0 ;
  }
  VO (*_ptr)(VI) ; 
  static RooCFunction1Map<VO,VI>* _fmap ; 
  ClassDef(RooCFunction1Ref,1) 
} ;
template<class VO, class VI>
void RooCFunction1Ref<VO,VI>::Streamer(TBuffer &R__b)
{
  
  
  
  
  
  
  
  
  typedef ::RooCFunction1Ref<VO,VI> thisClass;
   
   if (R__b.IsReading()) {
     UInt_t R__s, R__c;
     R__b.ReadVersion(&R__s, &R__c);      
     
     TString tmpName ;
     tmpName.Streamer(R__b) ;       
     if (tmpName=="UNKNOWN") {
       coutW(ObjectHandling) << "WARNING: Objected embeds function pointer to unknown function, object will not be functional" << endl ;
       _ptr = dummyFunction ;
     } else {
     
       
       _ptr = fmap().lookupPtr(tmpName.Data()) ;
       if (_ptr==0) {
	 coutW(ObjectHandling) << "ERROR: Objected embeds pointer to function named " << tmpName 
			       << " but no such function is registered, object will not be functional" << endl ;
       }
     }
     R__b.CheckByteCount(R__s, R__c, thisClass::IsA());
   } else {
     
     UInt_t R__c;
     R__c = R__b.WriteVersion(thisClass::IsA(), kTRUE);    
     
     TString tmpName = fmap().lookupName(_ptr) ;
     if (tmpName.Length()==0) {
       coutW(ObjectHandling) << "WARNING: Cannot persist unknown function pointer " << Form("0x%08x",_ptr) 
			     << " written object will not be functional when read back" <<  endl ;
       tmpName="UNKNOWN" ;
     } 
     
     
     tmpName.Streamer(R__b) ;            
     R__b.SetByteCount(R__c, kTRUE);
     
   }
}
template<class VO,class VI>
class RooCFunction1Binding : public RooAbsReal {
public:
  RooCFunction1Binding() {
    
  } ; 
  RooCFunction1Binding(const char *name, const char *title, VO (*_func)(VI), RooAbsReal& _x);
  RooCFunction1Binding(const RooCFunction1Binding& other, const char* name=0) ;
  virtual TObject* clone(const char* newname) const { return new RooCFunction1Binding(*this,newname); }
  inline virtual ~RooCFunction1Binding() { }
  void printArgs(ostream& os) const {
    
    os << "[ function=" << func.name() << " " ;    
    for (Int_t i=0 ; i<numProxies() ; i++) {
      RooAbsProxy* p = getProxy(i) ;
      if (!TString(p->name()).BeginsWith("!")) {
	p->print(os) ;
	os << " " ;
      }
    }    
    os << "]" ;  
  }
protected:
  RooCFunction1Ref<VO,VI> func ; 
  RooRealProxy x ;              
  
  Double_t evaluate() const {
    
    return func(x) ;
  }
private:
  ClassDef(RooCFunction1Binding,1) 
};
template<class VO,class VI>
RooCFunction1Binding<VO,VI>::RooCFunction1Binding(const char *name, const char *title, VO (*_func)(VI), RooAbsReal& _x) :
  RooAbsReal(name,title), 
  func(_func),
  x(func.argName(0),func.argName(0),this,_x)
{ 
  
  
  
  
} 
template<class VO,class VI>
RooCFunction1Binding<VO,VI>::RooCFunction1Binding(const RooCFunction1Binding& other, const char* name) :  
  RooAbsReal(other,name), 
  func(other.func),
  x("x",this,other.x)
{ 
  
} 
template<class VO,class VI>
class RooCFunction1PdfBinding : public RooAbsPdf {
public:
  RooCFunction1PdfBinding() {
    
  } ; 
  RooCFunction1PdfBinding(const char *name, const char *title, VO (*_func)(VI), RooAbsReal& _x);
  RooCFunction1PdfBinding(const RooCFunction1PdfBinding& other, const char* name=0) ;
  virtual TObject* clone(const char* newname) const { return new RooCFunction1PdfBinding(*this,newname); }
  inline virtual ~RooCFunction1PdfBinding() { }
  void printArgs(ostream& os) const {
    
    os << "[ function=" << func.name() << " " ;    
    for (Int_t i=0 ; i<numProxies() ; i++) {
      RooAbsProxy* p = getProxy(i) ;
      if (!TString(p->name()).BeginsWith("!")) {
	p->print(os) ;
	os << " " ;
      }
    }    
    os << "]" ;  
  }
protected:
  RooCFunction1Ref<VO,VI> func ; 
  RooRealProxy x ;              
  
  Double_t evaluate() const {
    
    return func(x) ;
  }
private:
  ClassDef(RooCFunction1PdfBinding,1) 
};
template<class VO,class VI>
RooCFunction1PdfBinding<VO,VI>::RooCFunction1PdfBinding(const char *name, const char *title, VO (*_func)(VI), RooAbsReal& _x) :
  RooAbsPdf(name,title), 
  func(_func),
  x(func.argName(0),func.argName(0),this,_x)
{ 
  
  
  
  
} 
template<class VO,class VI>
RooCFunction1PdfBinding<VO,VI>::RooCFunction1PdfBinding(const RooCFunction1PdfBinding& other, const char* name) :  
  RooAbsPdf(other,name), 
  func(other.func),
  x("x",this,other.x)
{ 
  
} 
template <>        void RooCFunction1Ref<Double_t,Double_t>::ShowMembers(TMemberInspector &R__insp, char *R__parent) ;
template <>    void RooCFunction1Binding<Double_t,Double_t>::ShowMembers(TMemberInspector &R__insp, char *R__parent) ;
template <> void RooCFunction1PdfBinding<Double_t,Double_t>::ShowMembers(TMemberInspector &R__insp, char *R__parent) ;
template <>        void RooCFunction1Ref<Double_t,Int_t>::ShowMembers(TMemberInspector &R__insp, char *R__parent) ;
template <>    void RooCFunction1Binding<Double_t,Int_t>::ShowMembers(TMemberInspector &R__insp, char *R__parent) ;
template <> void RooCFunction1PdfBinding<Double_t,Int_t>::ShowMembers(TMemberInspector &R__insp, char *R__parent) ;
 
#endif
Last change: Mon Aug 25 11:35:20 2008
Last generated: 2008-08-25 11:35
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