[HLFactoryComplexExample] echo: In the middle!
[HLFactoryComplexExample] echo: At the end!
[#1] INFO:ObjectHandling -- RooWorkspace::import(rs603_ws) importing dataset data1
[#1] INFO:ObjectHandling -- RooWorkspace::import(rs603_ws) importing RooRealVar::x
[#1] INFO:ObjectHandling -- RooWorkspace::import(rs603_ws) importing dataset data2
-------------------------------------------------------------------
Rootfile and Workspace prepared
-------------------------------------------------------------------
[HLFactoryElaborateExample] echo: In the middle!
[HLFactoryElaborateExample] echo: Now reading the included file!
[HLFactoryElaborateExample] echo: Including datasets in a Workspace in a Root file...
[#1] INFO:ObjectHandling -- RooWorkspace::import(HLFactoryElaborateExample_ws) importing dataset data1
[#1] INFO:ObjectHandling -- RooWorkspace::import(HLFactoryElaborateExample_ws) importing dataset data2
[HLFactoryElaborateExample] echo: At the end!
RooDataSet::data1[x] = 219 entries
RooCategory::HLFactoryElaborateExample_category = model2(idx = 1)
[#1] INFO:Minimization -- p.d.f. provides expected number of events, including extended term in likelihood.
[#1] INFO:Fitting -- RooAbsPdf::fitTo(HLFactoryElaborateExample_sigbkg) fixing normalization set for coefficient determination to observables in data
[#1] INFO:Fitting -- using CPU computation library compiled with -mavx512
[#1] INFO:Fitting -- RooAddition::defaultErrorLevel(nll_HLFactoryElaborateExample_sigbkg_HLFactoryElaborateExample_TotData) Summation contains a RooNLLVar, using its error level
[#1] INFO:Minimization -- RooAbsMinimizerFcn::setOptimizeConst: activating const optimization
Minuit2Minimizer: Minimize with max-calls 3000 convergence for edm < 1 strategy 1
Minuit2Minimizer : Valid minimum - status = 0
FVAL = 165.576629828310047
Edm = 9.1012473393962637e-07
Nfcn = 106
mean1 = 50.6657 +/- 0.411801 (limited)
mean2 = 79.8756 +/- 0.629188 (limited)
nbkg1 = 87.4181 +/- 10.4372 (limited)
nbkg2 = 67.5739 +/- 9.49233 (limited)
nsig1 = 131.59 +/- 12.3613 (limited)
nsig2 = 96.4299 +/- 10.9011 (limited)
[#1] INFO:Minimization -- RooAbsMinimizerFcn::setOptimizeConst: deactivating const optimization
[#1] INFO:Plotting -- RooSimultaneous::plotOn(HLFactoryElaborateExample_sigbkg) plot on x represents a slice in the index category (HLFactoryElaborateExample_category)
[#1] INFO:Plotting -- RooAbsReal::plotOn(sb_model1) slice variable HLFactoryElaborateExample_category was not projected anyway
[#1] INFO:Plotting -- RooSimultaneous::plotOn(HLFactoryElaborateExample_sigbkg) plot on x represents a slice in the index category (HLFactoryElaborateExample_category)
[#1] INFO:Plotting -- RooAbsReal::plotOn(sb_model2) slice variable HLFactoryElaborateExample_category was not projected anyway
#include <fstream>
using std::ofstream, std::cout;
{
ofile <<
"// The simplest card for combination\n\n";
ofile <<
"gauss1 = Gaussian(x[0,100],mean1[50,0,100],4);\n";
ofile <<
"flat1 = Polynomial(x,0);\n";
ofile <<
"sb_model1 = SUM(nsig1[120,0,300]*gauss1 , nbkg1[100,0,1000]*flat1);\n\n";
ofile <<
"echo In the middle!;\n\n";
ofile <<
"gauss2 = Gaussian(x,mean2[80,0,100],5);\n";
ofile <<
"flat2 = Polynomial(x,0);\n";
ofile <<
"sb_model2 = SUM(nsig2[90,0,400]*gauss2 , nbkg2[80,0,1000]*flat2);\n\n";
ofile <<
"echo At the end!;\n";
ofile2 <<
"// The simplest card for combination\n\n";
ofile2 <<
"gauss1 = Gaussian(x[0,100],mean1[50,0,100],4);\n";
ofile2 <<
"flat1 = Polynomial(x,0);\n";
ofile2 <<
"sb_model1 = SUM(nsig1[120,0,300]*gauss1 , nbkg1[100,0,1000]*flat1);\n\n";
ofile2 <<
"echo In the middle!;\n\n";
ofile2 <<
"gauss2 = Gaussian(x,mean2[80,0,100],5);\n";
ofile2 <<
"flat2 = Polynomial(x,0);\n";
ofile2 <<
"sb_model2 = SUM(nsig2[90,0,400]*gauss2 , nbkg2[80,0,1000]*flat2);\n\n";
ofile2 <<
"#include rs603_included_card.rs;\n\n";
ofile2 <<
"echo At the end!;\n";
ofile3 <<
"echo Now reading the included file!;\n\n";
ofile3 <<
"echo Including datasets in a Workspace in a Root file...;\n";
ofile3 <<
"data1 = import(rs603_infile.root,\n";
ofile3 <<
"data2 = import(rs603_infile.root,\n";
HLFactory hlf(
"HLFactoryComplexExample",
"rs603_card_WsMaker.rs",
false);
auto pdf1 =
hlf.GetWs()->pdf(
"sb_model1");
auto pdf2 =
hlf.GetWs()->pdf(
"sb_model2");
cout << "-------------------------------------------------------------------\n"
<< " Rootfile and Workspace prepared \n"
<< "-------------------------------------------------------------------\n";
pdf1 =
hlf_2.GetWs()->pdf(
"sb_model1");
pdf2 =
hlf_2.GetWs()->pdf(
"sb_model2");
hlf_2.AddChannel(
"model1",
"sb_model1",
"flat1",
"data1");
hlf_2.AddChannel(
"model2",
"sb_model2",
"flat2",
"data2");
auto pdf =
hlf_2.GetTotSigBkgPdf();
gROOT->SetStyle(
"Plain");
}
ROOT::Detail::TRangeCast< T, true > TRangeDynCast
TRangeDynCast is an adapter class that allows the typed iteration through a TCollection.
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void data
RooArgSet is a container object that can hold multiple RooAbsArg objects.
Variable that can be changed from the outside.
HLFactory is an High Level model Factory allows you to describe your models in a configuration file (...
Persistable container for RooFit projects.
A ROOT file is an on-disk file, usually with extension .root, that stores objects in a file-system-li...
The namespace RooFit contains mostly switches that change the behaviour of functions of PDFs (or othe...
Namespace for the RooStats classes.