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Comparing UserCode/cbrown/AnalysisFramework/Plotting/Modules/Setup.C (file contents):
Revision 1.2 by buchmann, Wed Jul 6 11:01:20 2011 UTC vs.
Revision 1.32 by buchmann, Thu Sep 1 12:04:50 2011 UTC

# Line 1 | Line 1
1   #include <iostream>
2 + #include <fstream>
3   #include <TCut.h>
4 + #include <TColor.h>
5 + #include <TStyle.h>
6 +
7   #ifndef SampleClassLoaded
8   #include "SampleClass.C"
9   #endif
10 <
10 > #define SetupLoaded
11  
12   using namespace std;
13  
14  
15   namespace PlottingSetup {
16 <  float luminosity=751.0;//486.0;//468.0//336.;//pb^{-1}
16 >  
17 >  string directoryname="Testing";
18 >  
19 >  float luminosity=2046;//1936;//751.0;//486.0;//468.0//336.;//pb^{-1}
20 >  float lumiuncert=0.04;// to be indicated in [0,1] range, e.g. for 4% write 0.04
21    string jzbvariabledata="jzb[1]+0.06*pt";
22    string jzbvariablemc="jzb[1]+0.04*pt";
23 +  float jzbHigh = 350.; // Range for JZB plots
24    
25    samplecollection allsamples("completesamplecollection");
26 +  samplecollection signalsamples("signalsamplecollection");
27 +  samplecollection scansample("scansamplecollection");
28    int data=1;
29    int mc=0;
30    int mcwithsignal=2;
# Line 21 | Line 32 | namespace PlottingSetup {
32    TCut cutmass("abs(mll-91.2)<20");
33    //TCut cutmass("mll>2");
34    TCut basiccut("mll>2");//basically nothing.
35 <  TCut basicqualitycut("(pfJetGoodNum>=2&&pfJetGoodID[0])&&(pfJetGoodNum>=2&&pfJetGoodID[1])");//don't use this for the "essential cut", because we want to plot nJets as well as mll in the inclusive case; we thus use it as an addition nJets cut.
35 >  TCut basicqualitycut("(pfJetGoodNum>=2&&pfJetGoodID[0]!=0)&&(pfJetGoodNum>=2&&pfJetGoodID[1]!=0)");//don't use this for the "essential cut", because we want to plot nJets as well as mll in the inclusive case; we thus use it as an addition nJets cut.
36    //TCut jetqualitycut("(pfJetGoodNum>=2&&pfJetGoodID[0])&&(pfJetGoodNum>=2&&pfJetGoodID[1])");//now part of the basiccut
37    //TCut jetqualitycut("mll>0");
38 +  
39    TCut cutnJets("pfJetGoodNum>=3"&&basicqualitycut);
40 +  TCut cutnJetsJESdown("pfJetGoodNum25>=3"&&basicqualitycut);
41 +  TCut cutnJetsJESup("pfJetGoodNum35>=3"&&basicqualitycut);
42    TCut cutOSOF("(id1!=id2)&&(ch1*ch2<0)");
43    TCut cutOSSF("(id1==id2)&&(ch1*ch2<0)");
44 +  TCut sidebandcut("(mll>55&&mll<70)||(mll>112&&mll<160)");
45 +
46 +  //TCut sidebandcut("(mll>61&&mll<70)||(mll>112&&mll<190)");
47    //TCut basiccut("(passed_triggers||!is_data)");
48    
49 +  // SUSY scan parameters
50 + //  float mglustart=25;float mgluend=1200;float mglustep=25; //guessed values for official file
51 + //  float mLSPstart=25;float mLSPend=1200;float mLSPstep=25; //guessed values for official file
52 +  float mglustart=25;float mgluend=1200;float mglustep=25;
53 +  float mLSPstart=25;float mLSPend=1200;float mLSPstep=25;
54 +  
55 +  float m0start=20;  float m0end=2000;  float m0step=20;
56 +  float m12start=20; float m12end=760;  float m12step=20;
57 +
58 +  
59    TCut essential(passtrig);//add here any cuts you ALWAYS want
60    int dogaus=0;
61    int doKM=1;
# Line 36 | Line 63 | namespace PlottingSetup {
63    int dogaus3sigma=3;
64    int Kostasmethod=-99;
65    
66 <  float fitresultconstdata=0;//this is the result when fitting in the 0-30 GeV range!
67 <  float fitresultconstmc=0;//this is the result when fitting in the 0-30 GeV range!
66 >  float fitresultconstdata=0;//this is the result when fitting in the 0-30 GeV range
67 >  float fitresultconstmc=0;//this is the result when fitting in the 0-30 GeV range
68    
69    int method=-1;
70 <
70 >  
71 >  //now some style issues:
72 >  float DataMarkerSize=1.2;
73 >  
74 >  //here we save our number of predicted and observed events (with errors)
75 >  vector<float> Nobs;
76 >  vector<float> Npred;
77 >  vector<float> Nprederr;
78 >  
79 >  int noJES=0;
80 >  int JESdown=1;
81 >  int JESup=2;
82 >  
83 >  //some refinement: nicer color gradient
84 >  Double_t stops[5] = { 0.00, 0.34, 0.61, 0.84, 1.00 };
85 >  Double_t red[5]   = { 0.00, 0.00, 0.87, 1.00, 0.51 };
86 >  Double_t green[5] = { 0.00, 0.81, 1.00, 0.20, 0.00 };
87 >  Double_t blue[5]  = { 0.51, 1.00, 0.12, 0.00, 0.00 };
88 >  int fi=TColor::CreateGradientColorTable(5, stops, red, green,blue, 255);
89 >  
90 >  // LIMITS
91 >  int nlimittoys=50; // how many toys for setting limits
92 >  string limitmethod="bayesian";//what method to use to set limits
93 >  int limitpatience=50; // for how many minutes should the limit calculation (for one configuration!) be allowed to run before being aborted? this only has an effect when when running on the grid.
94 >  bool ConsiderSignalContaminationForLimits=false; //whether or not to consider signal contamination when computing limits (standard:true)
95 >  
96 >  float JZBPeakPositionData=-999;
97 >  float JZBPeakPositionMC=-999;
98 >  float JZBPeakWidthData=-999;
99 >  float JZBPeakWidthMC=-999;
100 >  
101   }

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