// RooRealVar represents a fundamental (non-derived) real valued object
//
// This class also holds an (asymmetic) error, a default range and
// a optionally series of alternate named ranges.
// END_HTML
#include "RooFit.h"
#include "Riostream.h"
#include <math.h>
#include <stdlib.h>
#include <string.h>
#include <ctype.h>
#include <iomanip>
#include "TObjString.h"
#include "TTree.h"
#include "RooRealVar.h"
#include "RooStreamParser.h"
#include "RooErrorVar.h"
#include "RooRangeBinning.h"
#include "RooCmdConfig.h"
#include "RooMsgService.h"
#include "RooParamBinning.h"
ClassImp(RooRealVar)
;
Bool_t RooRealVar::_printScientific(kFALSE) ;
Int_t RooRealVar::_printSigDigits(5) ;
RooSharedPropertiesList RooRealVar::_sharedPropList ;
RooRealVarSharedProperties RooRealVar::_nullProp("00000000-0000-0000-0000-000000000000") ;
RooRealVar::RooRealVar() : _error(0), _asymErrLo(0), _asymErrHi(0), _binning(0), _sharedProp(0)
{
}
RooRealVar::RooRealVar(const char *name, const char *title,
Double_t value, const char *unit) :
RooAbsRealLValue(name, title, unit), _error(-1), _asymErrLo(1), _asymErrHi(-1), _sharedProp(0)
{
_binning = new RooUniformBinning(-1,1,100) ;
_value = value ;
removeRange();
setConstant(kTRUE) ;
}
RooRealVar::RooRealVar(const char *name, const char *title,
Double_t minValue, Double_t maxValue,
const char *unit) :
RooAbsRealLValue(name, title, unit), _error(-1), _asymErrLo(1), _asymErrHi(-1), _sharedProp(0)
{
_binning = new RooUniformBinning(minValue,maxValue,100) ;
_value= 0.5*(minValue + maxValue);
setRange(minValue,maxValue) ;
}
RooRealVar::RooRealVar(const char *name, const char *title,
Double_t value, Double_t minValue, Double_t maxValue,
const char *unit) :
RooAbsRealLValue(name, title, unit), _error(-1), _asymErrLo(1), _asymErrHi(-1), _sharedProp(0)
{
_value = value ;
_binning = new RooUniformBinning(minValue,maxValue,100) ;
setRange(minValue,maxValue) ;
}
RooRealVar::RooRealVar(const RooRealVar& other, const char* name) :
RooAbsRealLValue(other,name),
_error(other._error),
_asymErrLo(other._asymErrLo),
_asymErrHi(other._asymErrHi)
{
_sharedProp = (RooRealVarSharedProperties*) _sharedPropList.registerProperties(other.sharedProp()) ;
_binning = other._binning->clone() ;
_binning->insertHook(*this) ;
RooAbsBinning* ab ;
TIterator* iter = other._altNonSharedBinning.MakeIterator() ;
while((ab=(RooAbsBinning*)iter->Next())) {
RooAbsBinning* abc = ab->clone() ;
_altNonSharedBinning.Add(abc) ;
abc->insertHook(*this) ;
}
delete iter ;
}
RooRealVar::~RooRealVar()
{
delete _binning ;
_altNonSharedBinning.Delete() ;
if (_sharedProp) {
_sharedPropList.unregisterProperties(_sharedProp) ;
}
}
Double_t RooRealVar::getVal(const RooArgSet*) const
{
return _value ;
}
void RooRealVar::setVal(Double_t value)
{
Double_t clipValue ;
inRange(value,0,&clipValue) ;
if (clipValue != _value) {
setValueDirty() ;
_value = clipValue;
}
}
void RooRealVar::setVal(Double_t value, const char* rangeName)
{
Double_t clipValue ;
inRange(value,rangeName,&clipValue) ;
if (clipValue != _value) {
setValueDirty() ;
_value = clipValue;
}
}
RooErrorVar* RooRealVar::errorVar() const
{
TString name(GetName()), title(GetTitle()) ;
name.Append("err") ;
title.Append(" Error") ;
return new RooErrorVar(name,title,*this) ;
}
Bool_t RooRealVar::hasBinning(const char* name) const
{
return sharedProp()->_altBinning.FindObject(name) ? kTRUE : kFALSE ;
}
const RooAbsBinning& RooRealVar::getBinning(const char* name, Bool_t verbose, Bool_t createOnTheFly) const
{
return const_cast<RooRealVar*>(this)->getBinning(name, verbose, createOnTheFly) ;
}
RooAbsBinning& RooRealVar::getBinning(const char* name, Bool_t verbose, Bool_t createOnTheFly)
{
if (name==0) {
return *_binning ;
}
RooAbsBinning* binning = (RooAbsBinning*) _altNonSharedBinning.FindObject(name) ;
if (binning) {
return *binning ;
}
binning = (RooAbsBinning*) (sharedProp()->_altBinning).FindObject(name) ;
if (binning) {
return *binning ;
}
if (!createOnTheFly) {
return *_binning ;
}
binning = new RooRangeBinning(getMin(),getMax(),name) ;
if (verbose) {
coutI(Eval) << "RooRealVar::getBinning(" << GetName() << ") new range named '"
<< name << "' created with default bounds" << endl ;
}
sharedProp()->_altBinning.Add(binning) ;
return *binning ;
}
void RooRealVar::setBinning(const RooAbsBinning& binning, const char* name)
{
if (!name) {
if (_binning) {
_binning->removeHook(*this) ;
delete _binning ;
}
_binning = binning.clone() ;
_binning->insertHook(*this) ;
} else {
RooLinkedList* altBinning = binning.isShareable() ? &(sharedProp()->_altBinning) : &_altNonSharedBinning ;
RooAbsBinning* oldBinning = (RooAbsBinning*) altBinning->FindObject(name) ;
if (oldBinning) {
altBinning->Remove(oldBinning) ;
oldBinning->removeHook(*this) ;
delete oldBinning ;
}
RooAbsBinning* newBinning = binning.clone() ;
newBinning->SetName(name) ;
newBinning->SetTitle(name) ;
newBinning->insertHook(*this) ;
altBinning->Add(newBinning) ;
}
}
void RooRealVar::setMin(const char* name, Double_t value)
{
RooAbsBinning& binning = getBinning(name,kTRUE,kTRUE) ;
if (value >= getMax()) {
coutW(InputArguments) << "RooRealVar::setMin(" << GetName()
<< "): Proposed new fit min. larger than max., setting min. to max." << endl ;
binning.setMin(getMax()) ;
} else {
binning.setMin(value) ;
}
if (!name) {
Double_t clipValue ;
if (!inRange(_value,0,&clipValue)) {
setVal(clipValue) ;
}
}
setShapeDirty() ;
}
void RooRealVar::setMax(const char* name, Double_t value)
{
RooAbsBinning& binning = getBinning(name,kTRUE,kTRUE) ;
if (value < getMin()) {
coutW(InputArguments) << "RooRealVar::setMax(" << GetName()
<< "): Proposed new fit max. smaller than min., setting max. to min." << endl ;
binning.setMax(getMin()) ;
} else {
binning.setMax(value) ;
}
if (!name) {
Double_t clipValue ;
if (!inRange(_value,0,&clipValue)) {
setVal(clipValue) ;
}
}
setShapeDirty() ;
}
void RooRealVar::setRange(const char* name, Double_t min, Double_t max)
{
Bool_t exists = name ? (sharedProp()->_altBinning.FindObject(name)?kTRUE:kFALSE) : kTRUE ;
RooAbsBinning& binning = getBinning(name,kFALSE,kTRUE) ;
if (min>max) {
coutW(InputArguments) << "RooRealVar::setRange(" << GetName()
<< "): Proposed new fit max. smaller than min., setting max. to min." << endl ;
binning.setRange(min,min) ;
} else {
binning.setRange(min,max) ;
}
if (!exists) {
coutI(Eval) << "RooRealVar::setRange(" << GetName()
<< ") new range named '" << name << "' created with bounds ["
<< min << "," << max << "]" << endl ;
}
setShapeDirty() ;
}
void RooRealVar::setRange(const char* name, RooAbsReal& min, RooAbsReal& max)
{
RooParamBinning pb(min,max,100) ;
setBinning(pb,name) ;
}
Bool_t RooRealVar::readFromStream(istream& is, Bool_t compact, Bool_t verbose)
{
TString token,errorPrefix("RooRealVar::readFromStream(") ;
errorPrefix.Append(GetName()) ;
errorPrefix.Append(")") ;
RooStreamParser parser(is,errorPrefix) ;
Double_t value(0) ;
if (compact) {
if (parser.readDouble(value,verbose)) return kTRUE ;
if (isValidReal(value,verbose)) {
setVal(value) ;
return kFALSE ;
} else {
return kTRUE ;
}
} else {
Bool_t haveValue(kFALSE) ;
Bool_t haveConstant(kFALSE) ;
removeError() ;
removeAsymError() ;
Bool_t reprocessToken = kFALSE ;
while(1) {
if (parser.atEOL() || parser.atEOF()) break ;
if (!reprocessToken) {
token=parser.readToken() ;
}
reprocessToken = kFALSE ;
if (!token.CompareTo("+")) {
if (parser.expectToken("/",kTRUE) ||
parser.expectToken("-",kTRUE)) {
break ;
}
TString tmp = parser.readToken() ;
if (tmp.CompareTo("(")) {
Double_t error ;
parser.convertToDouble(tmp,error) ;
setError(error) ;
} else {
Double_t asymErrLo, asymErrHi ;
if (parser.readDouble(asymErrLo,kTRUE) ||
parser.expectToken(",",kTRUE) ||
parser.readDouble(asymErrHi,kTRUE) ||
parser.expectToken(")",kTRUE)) break ;
setAsymError(asymErrLo,asymErrHi) ;
}
} else if (!token.CompareTo("C")) {
setConstant(kTRUE) ;
haveConstant = kTRUE ;
} else if (!token.CompareTo("P")) {
Double_t plotMin(0), plotMax(0) ;
Int_t plotBins(0) ;
if (parser.expectToken("(",kTRUE) ||
parser.readDouble(plotMin,kTRUE) ||
parser.expectToken("-",kTRUE) ||
parser.readDouble(plotMax,kTRUE) ||
parser.expectToken(":",kTRUE) ||
parser.readInteger(plotBins,kTRUE) ||
parser.expectToken(")",kTRUE)) break ;
coutW(Eval) << "RooRealVar::readFromStrem(" << GetName()
<< ") WARNING: plot range deprecated, removed P(...) token" << endl ;
} else if (!token.CompareTo("F")) {
Double_t fitMin, fitMax ;
Int_t fitBins ;
if (parser.expectToken("(",kTRUE) ||
parser.readDouble(fitMin,kTRUE) ||
parser.expectToken("-",kTRUE) ||
parser.readDouble(fitMax,kTRUE) ||
parser.expectToken(":",kTRUE) ||
parser.readInteger(fitBins,kTRUE) ||
parser.expectToken(")",kTRUE)) break ;
coutW(Eval) << "RooRealVar::readFromStream(" << GetName()
<< ") WARNING: F(lo-hi:bins) token deprecated, use L(lo-hi) B(bins)" << endl ;
if (!haveConstant) setConstant(kFALSE) ;
} else if (!token.CompareTo("L")) {
Double_t fitMin, fitMax ;
if (parser.expectToken("(",kTRUE) ||
parser.readDouble(fitMin,kTRUE) ||
parser.expectToken("-",kTRUE) ||
parser.readDouble(fitMax,kTRUE) ||
parser.expectToken(")",kTRUE)) break ;
setRange(fitMin,fitMax) ;
if (!haveConstant) setConstant(kFALSE) ;
} else if (!token.CompareTo("B")) {
Int_t fitBins ;
if (parser.expectToken("(",kTRUE) ||
parser.readInteger(fitBins,kTRUE) ||
parser.expectToken(")",kTRUE)) break ;
setBins(fitBins) ;
} else {
if (parser.convertToDouble(token,value)) { parser.zapToEnd() ; break ; }
haveValue = kTRUE ;
}
}
if (haveValue) setVal(value) ;
return kFALSE ;
}
}
void RooRealVar::writeToStream(ostream& os, Bool_t compact) const
{
if (compact) {
os << getVal() ;
} else {
if (_printScientific) {
char fmtVal[16], fmtErr[16] ;
sprintf(fmtVal,"%%.%de",_printSigDigits) ;
sprintf(fmtErr,"%%.%de",(_printSigDigits+1)/2) ;
if (_value>=0) os << " " ;
os << Form(fmtVal,_value) ;
if (hasAsymError()) {
os << " +/- (" << Form(fmtErr,getAsymErrorLo())
<< ", " << Form(fmtErr,getAsymErrorHi()) << ")" ;
} else if (hasError()) {
os << " +/- " << Form(fmtErr,getError()) ;
}
os << " " ;
} else {
os << format(_printSigDigits,"EFA")->Data() << " " ;
}
if (isConstant()) {
os << "C " ;
}
os << "L(" ;
if(hasMin()) {
os << getMin();
}
else {
os << "-INF";
}
if(hasMax()) {
os << " - " << getMax() ;
}
else {
os << " - +INF";
}
os << ") " ;
if (getBins()!=100) {
os << "B(" << getBins() << ") " ;
}
if (!_unit.IsNull())
os << "// [" << getUnit() << "]" ;
}
}
void RooRealVar::printValue(ostream& os) const
{
os << getVal() ;
if(hasError() && !hasAsymError()) {
os << " +/- " << getError() ;
} else if (hasAsymError()) {
os << " +/- (" << getAsymErrorLo() << "," << getAsymErrorHi() << ")" ;
}
}
void RooRealVar::printExtras(ostream& os) const
{
if (isConstant()) {
os << "C " ;
}
os << " L(" ;
if(hasMin()) {
os << getMin();
}
else {
os << "-INF";
}
if(hasMax()) {
os << " - " << getMax() ;
}
else {
os << " - +INF";
}
os << ") " ;
if (getBins()!=100) {
os << "B(" << getBins() << ") " ;
}
if (!_unit.IsNull())
os << "// [" << getUnit() << "]" ;
}
Int_t RooRealVar::defaultPrintContents(Option_t* opt) const
{
if (opt && TString(opt)=="I") {
return kName|kClassName|kValue ;
}
return kName|kClassName|kValue|kExtras ;
}
void RooRealVar::printMultiline(ostream& os, Int_t contents, Bool_t verbose, TString indent) const
{
RooAbsRealLValue::printMultiline(os,contents,verbose,indent);
os << indent << "--- RooRealVar ---" << endl;
TString unit(_unit);
if(!unit.IsNull()) unit.Prepend(' ');
os << indent << " Error = " << getError() << unit << endl;
}
TString* RooRealVar::format(const RooCmdArg& formatArg) const
{
RooCmdArg tmp(formatArg) ;
tmp.setProcessRecArgs(kTRUE) ;
RooCmdConfig pc(Form("RooRealVar::format(%s)",GetName())) ;
pc.defineString("what","FormatArgs",0,"") ;
pc.defineInt("autop","FormatArgs::AutoPrecision",0,2) ;
pc.defineInt("fixedp","FormatArgs::FixedPrecision",0,2) ;
pc.defineInt("tlatex","FormatArgs::TLatexStyle",0,0) ;
pc.defineInt("latex","FormatArgs::LatexStyle",0,0) ;
pc.defineInt("latext","FormatArgs::LatexTableStyle",0,0) ;
pc.defineInt("verbn","FormatArgs::VerbatimName",0,0) ;
pc.defineMutex("FormatArgs::TLatexStyle","FormatArgs::LatexStyle","FormatArgs::LatexTableStyle") ;
pc.defineMutex("FormatArgs::AutoPrecision","FormatArgs::FixedPrecision") ;
pc.process(tmp) ;
if (!pc.ok(kTRUE)) {
return 0 ;
}
TString options ;
options = pc.getString("what") ;
if (pc.getInt("tlatex")) {
options += "L" ;
} else if (pc.getInt("latex")) {
options += "X" ;
} else if (pc.getInt("latext")) {
options += "Y" ;
}
if (pc.getInt("verbn")) options += "V" ;
Int_t sigDigits = 2 ;
if (pc.hasProcessed("FormatArgs::AutoPrecision")) {
options += "P" ;
sigDigits = pc.getInt("autop") ;
} else if (pc.hasProcessed("FormatArgs::FixedPrecision")) {
options += "F" ;
sigDigits = pc.getInt("fixedp") ;
}
return format(sigDigits,options) ;
}
TString *RooRealVar::format(Int_t sigDigits, const char *options) const
{
TString opts(options);
opts.ToLower();
Bool_t showName= opts.Contains("n");
Bool_t hideValue= opts.Contains("h");
Bool_t showError= opts.Contains("e");
Bool_t showUnit= opts.Contains("u");
Bool_t tlatexMode= opts.Contains("l");
Bool_t latexMode= opts.Contains("x");
Bool_t latexTableMode = opts.Contains("y") ;
Bool_t latexVerbatimName = opts.Contains("v") ;
if (latexTableMode) latexMode = kTRUE ;
Bool_t asymError= opts.Contains("a") ;
Bool_t useErrorForPrecision= (((showError && hasError(kFALSE) && !isConstant()) || opts.Contains("p")) && !opts.Contains("f")) ;
if(sigDigits < 1) sigDigits= 1;
Int_t leadingDigitVal = 0;
if (useErrorForPrecision) {
leadingDigitVal = (Int_t)floor(log10(fabs(_error+1e-10)));
if (_value==0&&_error==0) leadingDigitVal=0 ;
} else {
leadingDigitVal = (Int_t)floor(log10(fabs(_value+1e-10)));
if (_value==0) leadingDigitVal=0 ;
}
Int_t leadingDigitErr= (Int_t)floor(log10(fabs(_error)));
Int_t whereVal= leadingDigitVal - sigDigits + 1;
Int_t whereErr= leadingDigitErr - sigDigits + 1;
char fmtVal[16], fmtErr[16];
if (_value<0) whereVal -= 1 ;
sprintf(fmtVal,"%%.%df", whereVal < 0 ? -whereVal : 0);
sprintf(fmtErr,"%%.%df", whereErr < 0 ? -whereErr : 0);
TString *text= new TString();
if(latexMode) text->Append("$");
if(showName) {
if (latexTableMode && latexVerbatimName) {
text->Append("\\verb+") ;
}
text->Append(getPlotLabel());
if (latexVerbatimName) text->Append("+") ;
if (!latexTableMode) {
text->Append(" = ");
} else {
text->Append(" $ & $ ");
}
}
if (_value>=0) text->Append(" ") ;
char buffer[256];
if(!hideValue) {
chopAt(_value, whereVal);
sprintf(buffer, fmtVal, _value);
text->Append(buffer);
}
if(hasError(kFALSE) && showError && !(asymError && hasAsymError(kFALSE))) {
if(tlatexMode) {
text->Append(" #pm ");
}
else if(latexMode) {
text->Append("\\pm ");
}
else {
text->Append(" +/- ");
}
sprintf(buffer, fmtErr, getError());
text->Append(buffer);
}
if (asymError && hasAsymError() && showError) {
if(tlatexMode) {
text->Append(" #pm ");
text->Append("_{") ;
sprintf(buffer, fmtErr, getAsymErrorLo());
text->Append(buffer);
text->Append("}^{+") ;
sprintf(buffer, fmtErr, getAsymErrorHi());
text->Append(buffer);
text->Append("}") ;
}
else if(latexMode) {
text->Append("\\pm ");
text->Append("_{") ;
sprintf(buffer, fmtErr, getAsymErrorLo());
text->Append(buffer);
text->Append("}^{+") ;
sprintf(buffer, fmtErr, getAsymErrorHi());
text->Append(buffer);
text->Append("}") ;
}
else {
text->Append(" +/- ");
text->Append(" (") ;
sprintf(buffer, fmtErr, getAsymErrorLo());
text->Append(buffer);
text->Append(", ") ;
sprintf(buffer, fmtErr, getAsymErrorHi());
text->Append(buffer);
text->Append(")") ;
}
}
if(!_unit.IsNull() && showUnit) {
text->Append(' ');
text->Append(_unit);
}
if(latexMode) text->Append("$");
return text;
}
Double_t RooRealVar::chopAt(Double_t what, Int_t where) const
{
Double_t scale= pow(10.0,where);
Int_t trunc= (Int_t)floor(what/scale + 0.5);
return (Double_t)trunc*scale;
}
void RooRealVar::attachToTree(TTree& t, Int_t bufSize)
{
RooAbsReal::attachToTree(t,bufSize) ;
if (getAttribute("StoreError")) {
TString errName(GetName()) ;
errName.Append("_err") ;
TBranch* branch = t.GetBranch(errName) ;
if (branch) {
t.SetBranchAddress(errName,&_error) ;
} else {
TString format2(errName);
format2.Append("/D");
t.Branch(errName, &_error, (const Text_t*)format2, bufSize);
}
}
if (getAttribute("StoreAsymError")) {
TString loName(GetName()) ;
loName.Append("_aerr_lo") ;
TBranch* lobranch = t.GetBranch(loName) ;
if (lobranch) {
t.SetBranchAddress(loName,&_asymErrLo) ;
} else {
TString format2(loName);
format2.Append("/D");
t.Branch(loName, &_asymErrLo, (const Text_t*)format2, bufSize);
}
TString hiName(GetName()) ;
hiName.Append("_aerr_hi") ;
TBranch* hibranch = t.GetBranch(hiName) ;
if (hibranch) {
t.SetBranchAddress(hiName,&_asymErrHi) ;
} else {
TString format2(hiName);
format2.Append("/D");
t.Branch(hiName, &_asymErrHi, (const Text_t*)format2, bufSize);
}
}
}
void RooRealVar::fillTreeBranch(TTree& t)
{
TString cleanName(cleanBranchName()) ;
TBranch* valBranch = t.GetBranch(cleanName) ;
if (!valBranch) {
coutE(Eval) << "RooAbsReal::fillTreeBranch(" << GetName() << ") ERROR: not attached to tree" << endl ;
assert(0) ;
}
valBranch->Fill() ;
if (getAttribute("StoreError")) {
TString errName(GetName()) ;
errName.Append("_err") ;
TBranch* errBranch = t.GetBranch(errName) ;
if (errBranch) errBranch->Fill() ;
}
if (getAttribute("StoreAsymError")) {
TString loName(GetName()) ;
loName.Append("_aerr_lo") ;
TBranch* loBranch = t.GetBranch(loName) ;
if (loBranch) loBranch->Fill() ;
TString hiName(GetName()) ;
hiName.Append("_aerr_hi") ;
TBranch* hiBranch = t.GetBranch(hiName) ;
if (hiBranch) hiBranch->Fill() ;
}
}
void RooRealVar::copyCache(const RooAbsArg* source)
{
RooAbsReal::copyCache(source) ;
RooRealVar* other = dynamic_cast<RooRealVar*>(const_cast<RooAbsArg*>(source)) ;
if (other) {
_error = other->_error ;
_asymErrLo = other->_asymErrLo ;
_asymErrHi = other->_asymErrHi ;
}
}
void RooRealVar::Streamer(TBuffer &R__b)
{
UInt_t R__s, R__c;
if (R__b.IsReading()) {
Version_t R__v = R__b.ReadVersion(&R__s, &R__c); if (R__v) { }
RooAbsRealLValue::Streamer(R__b);
if (R__v==1) {
coutI(Eval) << "RooRealVar::Streamer(" << GetName() << ") converting version 1 data format" << endl ;
Double_t fitMin, fitMax ;
Int_t fitBins ;
R__b >> fitMin;
R__b >> fitMax;
R__b >> fitBins;
_binning = new RooUniformBinning(fitMin,fitMax,fitBins) ;
}
R__b >> _error;
R__b >> _asymErrLo;
R__b >> _asymErrHi;
if (R__v>=2) {
R__b >> _binning;
}
if (R__v==3) {
R__b >> _sharedProp ;
_sharedProp = (RooRealVarSharedProperties*) _sharedPropList.registerProperties(_sharedProp,kFALSE) ;
}
if (R__v==4) {
RooRealVarSharedProperties* tmpSharedProp = new RooRealVarSharedProperties() ;
tmpSharedProp->Streamer(R__b) ;
if (!(_nullProp==*tmpSharedProp)) {
_sharedProp = (RooRealVarSharedProperties*) _sharedPropList.registerProperties(tmpSharedProp,kFALSE) ;
} else {
delete tmpSharedProp ;
_sharedProp = 0 ;
}
}
R__b.CheckByteCount(R__s, R__c, RooRealVar::IsA());
} else {
R__c = R__b.WriteVersion(RooRealVar::IsA(), kTRUE);
RooAbsRealLValue::Streamer(R__b);
R__b << _error;
R__b << _asymErrLo;
R__b << _asymErrHi;
R__b << _binning;
if (_sharedProp) {
_sharedProp->Streamer(R__b) ;
} else {
_nullProp.Streamer(R__b) ;
}
R__b.SetByteCount(R__c, kTRUE);
}
}
void RooRealVar::deleteSharedProperties()
{
if (_sharedProp) {
_sharedPropList.unregisterProperties(_sharedProp) ;
_sharedProp = 0 ;
}
}
void RooRealVar::printScientific(Bool_t flag)
{
_printScientific = flag ;
}
void RooRealVar::printSigDigits(Int_t ndig)
{
_printSigDigits = ndig>1?ndig:1 ;
}
Last change: Mon Aug 25 11:36:56 2008
Last generated: 2008-08-25 11:36
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