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Reference Guide
rf510_wsnamedsets.C
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1/// \file
2/// \ingroup tutorial_roofit
3/// \notebook -js
4/// Organization and simultaneous fits: working with named parameter sets and parameter snapshots in workspaces
5///
6/// \macro_image
7/// \macro_output
8/// \macro_code
9/// \author 04/2009 - Wouter Verkerke
10
11#include "RooRealVar.h"
12#include "RooDataSet.h"
13#include "RooGaussian.h"
14#include "RooConstVar.h"
15#include "RooChebychev.h"
16#include "RooAddPdf.h"
17#include "RooWorkspace.h"
18#include "RooPlot.h"
19#include "TCanvas.h"
20#include "TAxis.h"
21#include "TFile.h"
22#include "TH1.h"
23
24using namespace RooFit;
25
26void fillWorkspace(RooWorkspace &w);
27
28void rf510_wsnamedsets()
29{
30 // C r e a t e m o d e l a n d d a t a s e t
31 // -----------------------------------------------
32
33 RooWorkspace *w = new RooWorkspace("w");
34 fillWorkspace(*w);
35
36 // Exploit convention encoded in named set "parameters" and "observables"
37 // to use workspace contents w/o need for introspected
38 RooAbsPdf *model = w->pdf("model");
39
40 // Generate data from p.d.f. in given observables
41 RooDataSet *data = model->generate(*w->set("observables"), 1000);
42
43 // Fit model to data
44 model->fitTo(*data);
45
46 // Plot fitted model and data on frame of first (only) observable
47 RooPlot *frame = ((RooRealVar *)w->set("observables")->first())->frame();
48 data->plotOn(frame);
49 model->plotOn(frame);
50
51 // Overlay plot with model with reference parameters as stored in snapshots
52 w->loadSnapshot("reference_fit");
53 model->plotOn(frame, LineColor(kRed));
54 w->loadSnapshot("reference_fit_bkgonly");
55 model->plotOn(frame, LineColor(kRed), LineStyle(kDashed));
56
57 // Draw the frame on the canvas
58 new TCanvas("rf510_wsnamedsets", "rf503_wsnamedsets", 600, 600);
59 gPad->SetLeftMargin(0.15);
60 frame->GetYaxis()->SetTitleOffset(1.4);
61 frame->Draw();
62
63 // Print workspace contents
64 w->Print();
65
66 // Workspace will remain in memory after macro finishes
67 gDirectory->Add(w);
68}
69
70void fillWorkspace(RooWorkspace &w)
71{
72 // C r e a t e m o d e l
73 // -----------------------
74
75 // Declare observable x
76 RooRealVar x("x", "x", 0, 10);
77
78 // Create two Gaussian PDFs g1(x,mean1,sigma) anf g2(x,mean2,sigma) and their parameters
79 RooRealVar mean("mean", "mean of gaussians", 5, 0, 10);
80 RooRealVar sigma1("sigma1", "width of gaussians", 0.5);
81 RooRealVar sigma2("sigma2", "width of gaussians", 1);
82
83 RooGaussian sig1("sig1", "Signal component 1", x, mean, sigma1);
84 RooGaussian sig2("sig2", "Signal component 2", x, mean, sigma2);
85
86 // Build Chebychev polynomial p.d.f.
87 RooRealVar a0("a0", "a0", 0.5, 0., 1.);
88 RooRealVar a1("a1", "a1", 0.2, 0., 1.);
89 RooChebychev bkg("bkg", "Background", x, RooArgSet(a0, a1));
90
91 // Sum the signal components into a composite signal p.d.f.
92 RooRealVar sig1frac("sig1frac", "fraction of component 1 in signal", 0.8, 0., 1.);
93 RooAddPdf sig("sig", "Signal", RooArgList(sig1, sig2), sig1frac);
94
95 // Sum the composite signal and background
96 RooRealVar bkgfrac("bkgfrac", "fraction of background", 0.5, 0., 1.);
97 RooAddPdf model("model", "g1+g2+a", RooArgList(bkg, sig), bkgfrac);
98
99 // Import model into p.d.f.
100 w.import(model);
101
102 // E n c o d e d e f i n i t i o n o f p a r a m e t e r s i n w o r k s p a c e
103 // ---------------------------------------------------------------------------------------
104
105 // Define named sets "parameters" and "observables", which list which variables should be considered
106 // parameters and observables by the users convention
107 //
108 // Variables appearing in sets _must_ live in the workspace already, or the autoImport flag
109 // of defineSet must be set to import them on the fly. Named sets contain only references
110 // to the original variables, therefore the value of observables in named sets already
111 // reflect their 'current' value
112 RooArgSet *params = (RooArgSet *)model.getParameters(x);
113 w.defineSet("parameters", *params);
114 w.defineSet("observables", x);
115
116 // E n c o d e r e f e r e n c e v a l u e f o r p a r a m e t e r s i n w o r k s p a c e
117 // ---------------------------------------------------------------------------------------------------
118
119 // Define a parameter 'snapshot' in the p.d.f.
120 // Unlike a named set, a parameter snapshot stores an independent set of values for
121 // a given set of variables in the workspace. The values can be stored and reloaded
122 // into the workspace variable objects using the loadSnapshot() and saveSnapshot()
123 // methods. A snapshot saves the value of each variable, any errors that are stored
124 // with it as well as the 'Constant' flag that is used in fits to determine if a
125 // parameter is kept fixed or not.
126
127 // Do a dummy fit to a (supposedly) reference dataset here and store the results
128 // of that fit into a snapshot
129 RooDataSet *refData = model.generate(x, 10000);
130 model.fitTo(*refData, PrintLevel(-1));
131
132 // The kTRUE flag imports the values of the objects in (*params) into the workspace
133 // If not set, the present values of the workspace parameters objects are stored
134 w.saveSnapshot("reference_fit", *params, kTRUE);
135
136 // Make another fit with the signal component forced to zero
137 // and save those parameters too
138
139 bkgfrac.setVal(1);
140 bkgfrac.setConstant(kTRUE);
141 bkgfrac.removeError();
142 model.fitTo(*refData, PrintLevel(-1));
143
144 w.saveSnapshot("reference_fit_bkgonly", *params, kTRUE);
145}
const Bool_t kTRUE
Definition: RtypesCore.h:87
@ kRed
Definition: Rtypes.h:64
@ kDashed
Definition: TAttLine.h:48
#define gDirectory
Definition: TDirectory.h:218
#define gPad
Definition: TVirtualPad.h:286
RooArgSet * getParameters(const RooAbsData *data, Bool_t stripDisconnected=kTRUE) const
Create a list of leaf nodes in the arg tree starting with ourself as top node that don't match any of...
Definition: RooAbsArg.cxx:543
RooAbsArg * first() const
virtual RooPlot * plotOn(RooPlot *frame, const RooCmdArg &arg1=RooCmdArg::none(), const RooCmdArg &arg2=RooCmdArg::none(), const RooCmdArg &arg3=RooCmdArg::none(), const RooCmdArg &arg4=RooCmdArg::none(), const RooCmdArg &arg5=RooCmdArg::none(), const RooCmdArg &arg6=RooCmdArg::none(), const RooCmdArg &arg7=RooCmdArg::none(), const RooCmdArg &arg8=RooCmdArg::none()) const
Calls RooPlot* plotOn(RooPlot* frame, const RooLinkedList& cmdList) const ;.
Definition: RooAbsData.cxx:552
RooDataSet * generate(const RooArgSet &whatVars, Int_t nEvents, const RooCmdArg &arg1, const RooCmdArg &arg2=RooCmdArg::none(), const RooCmdArg &arg3=RooCmdArg::none(), const RooCmdArg &arg4=RooCmdArg::none(), const RooCmdArg &arg5=RooCmdArg::none())
See RooAbsPdf::generate(const RooArgSet&,const RooCmdArg&,const RooCmdArg&,const RooCmdArg&,...
Definition: RooAbsPdf.h:56
virtual RooFitResult * fitTo(RooAbsData &data, const RooCmdArg &arg1=RooCmdArg::none(), const RooCmdArg &arg2=RooCmdArg::none(), const RooCmdArg &arg3=RooCmdArg::none(), const RooCmdArg &arg4=RooCmdArg::none(), const RooCmdArg &arg5=RooCmdArg::none(), const RooCmdArg &arg6=RooCmdArg::none(), const RooCmdArg &arg7=RooCmdArg::none(), const RooCmdArg &arg8=RooCmdArg::none())
Fit PDF to given dataset.
Definition: RooAbsPdf.cxx:1119
virtual RooPlot * plotOn(RooPlot *frame, const RooCmdArg &arg1=RooCmdArg::none(), const RooCmdArg &arg2=RooCmdArg::none(), const RooCmdArg &arg3=RooCmdArg::none(), const RooCmdArg &arg4=RooCmdArg::none(), const RooCmdArg &arg5=RooCmdArg::none(), const RooCmdArg &arg6=RooCmdArg::none(), const RooCmdArg &arg7=RooCmdArg::none(), const RooCmdArg &arg8=RooCmdArg::none(), const RooCmdArg &arg9=RooCmdArg::none(), const RooCmdArg &arg10=RooCmdArg::none()) const
Helper calling plotOn(RooPlot*, RooLinkedList&) const.
Definition: RooAbsPdf.h:119
RooAddPdf is an efficient implementation of a sum of PDFs of the form.
Definition: RooAddPdf.h:29
RooArgList is a container object that can hold multiple RooAbsArg objects.
Definition: RooArgList.h:21
RooArgSet is a container object that can hold multiple RooAbsArg objects.
Definition: RooArgSet.h:28
Chebychev polynomial p.d.f.
Definition: RooChebychev.h:25
RooDataSet is a container class to hold unbinned data.
Definition: RooDataSet.h:31
Plain Gaussian p.d.f.
Definition: RooGaussian.h:25
A RooPlot is a plot frame and a container for graphics objects within that frame.
Definition: RooPlot.h:41
TAxis * GetYaxis() const
Definition: RooPlot.cxx:1123
virtual void Draw(Option_t *options=0)
Draw this plot and all of the elements it contains.
Definition: RooPlot.cxx:558
RooRealVar represents a fundamental (non-derived) real valued object.
Definition: RooRealVar.h:36
The RooWorkspace is a persistable container for RooFit projects.
Definition: RooWorkspace.h:43
void Print(Option_t *opts=0) const
Print contents of the workspace.
Bool_t defineSet(const char *name, const RooArgSet &aset, Bool_t importMissing=kFALSE)
Define a named RooArgSet with given constituents.
Bool_t saveSnapshot(const char *name, const char *paramNames)
Save snapshot of values and attributes (including "Constant") of parameters 'params' If importValues ...
Bool_t loadSnapshot(const char *name)
Load the values and attributes of the parameters in the snapshot saved with the given name.
Bool_t import(const RooAbsArg &arg, const RooCmdArg &arg1=RooCmdArg(), const RooCmdArg &arg2=RooCmdArg(), const RooCmdArg &arg3=RooCmdArg(), const RooCmdArg &arg4=RooCmdArg(), const RooCmdArg &arg5=RooCmdArg(), const RooCmdArg &arg6=RooCmdArg(), const RooCmdArg &arg7=RooCmdArg(), const RooCmdArg &arg8=RooCmdArg(), const RooCmdArg &arg9=RooCmdArg())
Import a RooAbsArg object, e.g.
const RooArgSet * set(const char *name)
Return pointer to previously defined named set with given nmame If no such set is found a null pointe...
RooAbsPdf * pdf(const char *name) const
Retrieve p.d.f (RooAbsPdf) with given name. A null pointer is returned if not found.
virtual void SetTitleOffset(Float_t offset=1)
Set distance between the axis and the axis title Offset is a correction factor with respect to the "s...
Definition: TAttAxis.cxx:294
The Canvas class.
Definition: TCanvas.h:31
Double_t x[n]
Definition: legend1.C:17
Template specialisation used in RooAbsArg:
RooCmdArg PrintLevel(Int_t code)
RooCmdArg LineColor(Color_t color)
RooCmdArg LineStyle(Style_t style)