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Comparing UserCode/cbrown/AnalysisFramework/Plotting/Modules/Setup.C (file contents):
Revision 1.30 by buchmann, Tue Aug 30 14:52:31 2011 UTC vs.
Revision 1.48 by buchmann, Mon Nov 7 15:23:24 2011 UTC

# Line 13 | Line 13 | using namespace std;
13  
14  
15   namespace PlottingSetup {
16 +
17 + //  string directoryname="official_2096ipb___forPASv5_withPDF";
18 +  string directoryname="official_3523ipb___forAN_prepaper_NewSelection";
19    
20 <  string directoryname="Testing";
20 >  bool RestrictToMassPeak=true; //if you want to switch between offpeak ("false") and onpeak ("true") analysis please use this switch; the masscut below will be adapted automatically when adding samples :-)
21    
22 <  float luminosity=1936;//751.0;//486.0;//468.0//336.;//pb^{-1}
23 <  float lumiuncert=0.04;// to be indicated in [0,1] range, e.g. for 4% write 0.04
22 >  float luminosity=3523.18;//2096.0;//3172.73;//2096.0;//1936;//751.0;//486.0;//468.0//336.;//pb^{-1}
23 > //  float luminosity=3523.18;//2096.0;//3172.73;//2096.0;//1936;//751.0;//486.0;//468.0//336.;//pb^{-1}
24 > //  float luminosity=2096.0;//3172.73;//2096.0;//1936;//751.0;//486.0;//468.0//336.;//pb^{-1}
25 >  float lumiuncert=0.045;// to be indicated in [0,1] range, e.g. for 4% write 0.04
26 >
27    string jzbvariabledata="jzb[1]+0.06*pt";
28    string jzbvariablemc="jzb[1]+0.04*pt";
29    float jzbHigh = 350.; // Range for JZB plots
30 <  
30 >
31    samplecollection allsamples("completesamplecollection");
32    samplecollection signalsamples("signalsamplecollection");
33    samplecollection scansample("scansamplecollection");
34 +  samplecollection raresample("raresamplecollection");
35    int data=1;
36    int mc=0;
37    int mcwithsignal=2;
38    TCut passtrig("(passed_triggers||!is_data)");
39    TCut cutmass("abs(mll-91.2)<20");
40 +  TCut genMassCut("abs(genMll-91.2)<20");
41 +  TCut openmasscut("mll>40"); // this is the mass cut used in the off peak analysis!
42 +  TCut openGenmasscut("genMll>40");
43    //TCut cutmass("mll>2");
44    TCut basiccut("mll>2");//basically nothing.
45    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.
# Line 47 | Line 57 | namespace PlottingSetup {
57    //TCut basiccut("(passed_triggers||!is_data)");
58    
59    // 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
60    float mglustart=25;float mgluend=1200;float mglustep=25;
61    float mLSPstart=25;float mLSPend=1200;float mLSPstep=25;
54
62    
63 +  float m0start=20;  float m0end=2000;  float m0step=20;
64 +  float m12start=20; float m12end=760;  float m12step=20;
65 +  
66 +  int ScanXzones=10; // number of zones in x for (mSUGRA) scans
67 +  int ScanYzones=10; // number of zones in y for (mSUGRA) scans
68 +
69    TCut essential(passtrig);//add here any cuts you ALWAYS want
70    int dogaus=0;
71    int doKM=1;
# Line 63 | Line 76 | namespace PlottingSetup {
76    float fitresultconstdata=0;//this is the result when fitting in the 0-30 GeV range
77    float fitresultconstmc=0;//this is the result when fitting in the 0-30 GeV range
78    
79 <  int method=-1;
79 >  int method=-1;//Fitting method
80    
81    //now some style issues:
82    float DataMarkerSize=1.2;
# Line 73 | Line 86 | namespace PlottingSetup {
86    vector<float> Npred;
87    vector<float> Nprederr;
88    
89 +  //here we save our "flipped" number of predicted and observed events (with errors) -- this means that we consider JZB<-X as observed and construct the corresponding prediction
90 +  bool alwaysflip=false;
91 +  vector<float> flippedNobs;
92 +  vector<float> flippedNpred;
93 +  vector<float> flippedNprederr;
94 +  
95    int noJES=0;
96    int JESdown=1;
97    int JESup=2;
# Line 84 | Line 103 | namespace PlottingSetup {
103    Double_t blue[5]  = { 0.51, 1.00, 0.12, 0.00, 0.00 };
104    int fi=TColor::CreateGradientColorTable(5, stops, red, green,blue, 255);
105    
106 <  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.
107 <  bool ConsiderSignalContaminationForLimits=false; //whether or not to consider signal contamination when computing limits (standard:true)
106 >  // LIMITS
107 >  int nlimittoys=1000; // how many toys for setting limits
108 >  string limitmethod="cls";//what method to use to set limits
109 >  int limitpatience=15; // 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.
110 >  bool ConsiderSignalContaminationForLimits=true; //whether or not to consider signal contamination when computing limits (standard:true)
111 >  int nuisancemodel=1;
112    
113    float JZBPeakPositionData=-999;
114    float JZBPeakPositionMC=-999;
115    float JZBPeakWidthData=-999;
116    float JZBPeakWidthMC=-999;
117 <  
117 >
118 >  // two possible future systematics that ATM only take up CPU time in SUSY scans
119 >  bool computeJZBefficiency=false;
120 >  bool computeJZBresponse=false;
121 >
122 >
123 >  //watch out, the cbafbasedir string is in GeneralToolBox
124   }

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