124using std::cout, std::endl;
148 filename =
"results/example_combined_GaussExample_model.root";
153 cout <<
"will run standard hist2workspace example" << endl;
154 gROOT->ProcessLine(
".! prepareHistFactory .");
155 gROOT->ProcessLine(
".! hist2workspace config/example.xml");
156 cout <<
"\n\n---------------------" << endl;
157 cout <<
"Done creating example input" << endl;
158 cout <<
"---------------------\n\n" << endl;
179 cout <<
"Found data and ModelConfig:" << endl;
201 fc.CreateConfBelt(
true);
221 if (!
mc->GetPdf()->canBeExtended()) {
222 if (
data->numEntries() == 1)
223 fc.FluctuateNumDataEntries(
false);
225 cout <<
"Not sure what to do about this model" << endl;
239 if (
mc->GetGlobalObservables()) {
240 cout <<
"will use global observables for unconditional ensemble" << endl;
241 mc->GetGlobalObservables()->Print();
290 std::unique_ptr<RooAbsReal>
nll{
mc->GetPdf()->createNLL(*
data)};
291 std::unique_ptr<RooAbsReal> profile{
nll->createProfile(*
mc->GetParametersOfInterest())};
295 if (
mc->GetNuisanceParameters())
300 cout <<
"\nWill use these parameter points to generate pseudo data for bkg only" << endl;
312 histOfUL->GetXaxis()->SetTitle(
"Upper Limit (background only)");
313 histOfUL->GetYaxis()->SetTitle(
"Entries");
318 w->loadSnapshot(
"paramsToGenerateData");
321 std::unique_ptr<RooDataSet>
toyData;
323 if (!
mc->GetPdf()->canBeExtended()) {
324 if (
data->numEntries() == 1)
325 toyData = std::unique_ptr<RooDataSet>{
mc->GetPdf()->generate(*
mc->GetObservables(), 1)};
327 cout <<
"Not sure what to do about this model" << endl;
330 toyData = std::unique_ptr<RooDataSet>{
mc->GetPdf()->generate(*
mc->GetObservables(), Extended())};
342 std::unique_ptr<RooDataSet>
one{
mc->GetPdf()->generate(*
mc->GetGlobalObservables(), 1)};
344 std::unique_ptr<RooArgSet> allVars{
mc->GetPdf()->getVariables()};
345 allVars->assign(*values);
347 std::unique_ptr<RooDataSet>
one{
simPdf->generateSimGlobal(*
mc->GetGlobalObservables(), 1)};
349 std::unique_ptr<RooArgSet> allVars{
mc->GetPdf()->getVariables()};
350 allVars->assign(*values);
388 c1->SaveAs(
"two-sided_upper_limit_output.pdf");
407 for (
int i = 1; i <=
cumulative->GetNbinsX(); ++i) {
420 cout <<
"-1 sigma band " <<
band1sigDown <<
" [Power Constraint)]" << endl;
421 cout <<
"median of band " <<
bandMedian << endl;
422 cout <<
"+1 sigma band " <<
band1sigUp << endl;
423 cout <<
"+2 sigma band " <<
band2sigUp << endl;
426 cout <<
"\nobserved 95% upper-limit " <<
interval->UpperLimit(*
firstPOI) << endl;
427 cout <<
"CLb strict [P(toy>obs|0)] for observed 95% upper-limit " << CLb << endl;
428 cout <<
"CLb inclusive [P(toy>=obs|0)] for observed 95% upper-limit " <<
CLbinclusive << endl;
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
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void char Point_t Rectangle_t WindowAttributes_t Float_t Float_t Float_t Int_t Int_t UInt_t UInt_t Rectangle_t Int_t Int_t Window_t TString Int_t GCValues_t GetPrimarySelectionOwner GetDisplay GetScreen GetColormap GetNativeEvent const char const char dpyName wid window const char font_name cursor keysym reg const char only_if_exist regb h Point_t winding char text const char depth char const char Int_t count const char ColorStruct_t color const char filename
R__EXTERN TSystem * gSystem
Abstract base class for binned and unbinned datasets.
RooArgSet is a container object that can hold multiple RooAbsArg objects.
Container class to hold unbinned data.
Variable that can be changed from the outside.
Facilitates simultaneous fitting of multiple PDFs to subsets of a given dataset.
ConfidenceBelt is a concrete implementation of the ConfInterval interface.
The FeldmanCousins class (like the Feldman-Cousins technique) is essentially a specific configuration...
ModelConfig is a simple class that holds configuration information specifying how a model should be u...
PointSetInterval is a concrete implementation of the ConfInterval interface.
ProfileLikelihoodTestStat is an implementation of the TestStatistic interface that calculates the pro...
Holds configuration options for proof and proof-lite.
ToyMCSampler is an implementation of the TestStatSampler interface.
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...
static TFile * Open(const char *name, Option_t *option="", const char *ftitle="", Int_t compress=ROOT::RCompressionSetting::EDefaults::kUseCompiledDefault, Int_t netopt=0)
Create / open a file.
1-D histogram with a float per channel (see TH1 documentation)
virtual Bool_t AccessPathName(const char *path, EAccessMode mode=kFileExists)
Returns FALSE if one can access a file using the specified access mode.
double nll(double pdf, double weight, int binnedL, int doBinOffset)
The namespace RooFit contains mostly switches that change the behaviour of functions of PDFs (or othe...
Namespace for the RooStats classes.
double SignificanceToPValue(double Z)
returns p-value corresponding to a 1-sided significance