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Reference Guide
rf206_treevistools.C
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1/// \file
2/// \ingroup tutorial_roofit
3/// \notebook -nodraw
4/// Addition and convolution: tools for visualization of RooAbsArg expression trees
5///
6/// \macro_output
7/// \macro_code
8/// \author 07/2008 - Wouter Verkerke
9
10#include "RooRealVar.h"
11#include "RooDataSet.h"
12#include "RooGaussian.h"
13#include "RooChebychev.h"
14#include "RooAddPdf.h"
15#include "RooExponential.h"
16#include "TCanvas.h"
17#include "TAxis.h"
18#include "RooPlot.h"
19using namespace RooFit;
20
22{
23 // S e t u p c o m p o s i t e p d f
24 // --------------------------------------
25
26 // Declare observable x
27 RooRealVar x("x", "x", 0, 10);
28
29 // Create two Gaussian PDFs g1(x,mean1,sigma) anf g2(x,mean2,sigma) and their parameters
30 RooRealVar mean("mean", "mean of gaussians", 5);
31 RooRealVar sigma1("sigma1", "width of gaussians", 0.5);
32 RooRealVar sigma2("sigma2", "width of gaussians", 1);
33 RooGaussian sig1("sig1", "Signal component 1", x, mean, sigma1);
34 RooGaussian sig2("sig2", "Signal component 2", x, mean, sigma2);
35
36 // Sum the signal components into a composite signal p.d.f.
37 RooRealVar sig1frac("sig1frac", "fraction of component 1 in signal", 0.8, 0., 1.);
38 RooAddPdf sig("sig", "Signal", RooArgList(sig1, sig2), sig1frac);
39
40 // Build Chebychev polynomial p.d.f.
41 RooRealVar a0("a0", "a0", 0.5, 0., 1.);
42 RooRealVar a1("a1", "a1", 0.2, 0., 1.);
43 RooChebychev bkg1("bkg1", "Background 1", x, RooArgSet(a0, a1));
44
45 // Build expontential pdf
46 RooRealVar alpha("alpha", "alpha", -1);
47 RooExponential bkg2("bkg2", "Background 2", x, alpha);
48
49 // Sum the background components into a composite background p.d.f.
50 RooRealVar bkg1frac("bkg1frac", "fraction of component 1 in background", 0.2, 0., 1.);
51 RooAddPdf bkg("bkg", "Signal", RooArgList(bkg1, bkg2), bkg1frac);
52
53 // Sum the composite signal and background
54 RooRealVar bkgfrac("bkgfrac", "fraction of background", 0.5, 0., 1.);
55 RooAddPdf model("model", "g1+g2+a", RooArgList(bkg, sig), bkgfrac);
56
57 // P r i n t c o m p o s i t e t r e e i n A S C I I
58 // -----------------------------------------------------------
59
60 // Print tree to stdout
61 model.Print("t");
62
63 // Print tree to file
64 model.printCompactTree("", "rf206_asciitree.txt");
65
66 // D r a w c o m p o s i t e t r e e g r a p h i c a l l y
67 // -------------------------------------------------------------
68
69 // Print GraphViz DOT file with representation of tree
70 model.graphVizTree("rf206_model.dot");
71
72 // Make graphic output file with one of the GraphViz tools
73 // (freely available from www.graphviz.org)
74 //
75 // 'Top-to-bottom graph'
76 // unix> dot -Tgif -o rf207_model_dot.gif rf207_model.dot
77 //
78 // 'Spring-model graph'
79 // unix> fdp -Tgif -o rf207_model_fdp.gif rf207_model.dot
80}
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
Exponential p.d.f.
Plain Gaussian p.d.f.
Definition: RooGaussian.h:25
RooRealVar represents a fundamental (non-derived) real valued object.
Definition: RooRealVar.h:36
Double_t x[n]
Definition: legend1.C:17
Template specialisation used in RooAbsArg: