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Comparing UserCode/cbrown/Development/Plotting/Modules/Setup.C (file contents):
Revision 1.1 by buchmann, Mon Jan 30 14:46:26 2012 UTC vs.
Revision 1.13 by buchmann, Tue Apr 10 13:45:00 2012 UTC

# Line 18 | Line 18 | using namespace std;
18  
19   namespace PlottingSetup {
20  
21 <  string directoryname="Results_With_4653ipb__Step8___AllInOne___PAPERMODE";
21 >  string directoryname="Jellyfish_tests";
22    
23 <  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 :-)
23 >  bool RestrictToMassPeak=false; //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 :-)
24    
25 <  float luminosity=4653.74;//p3523.18;//2096.0;//3172.73;//2096.0;//1936;//751.0;//486.0;//468.0//336.;//pb^{-1}
25 >  float luminosity=4980;//4653.74;//p3523.18;//2096.0;//3172.73;//2096.0;//1936;//751.0;//486.0;//468.0//336.;//pb^{-1}
26   //  float luminosity=3523.18;//2096.0;//3172.73;//2096.0;//1936;//751.0;//486.0;//468.0//336.;//pb^{-1}
27   //  float luminosity=2096.0;//3172.73;//2096.0;//1936;//751.0;//486.0;//468.0//336.;//pb^{-1}
28 <  float lumiuncert=0.045;// to be indicated in [0,1] range, e.g. for 4% write 0.04
28 >  float lumiuncert=0.022;//0.045;// to be indicated in [0,1] range, e.g. for 4% write 0.04
29  
30 <  string jzbvariabledata="jzb[1]+0.06*pt";
31 <  string jzbvariablemc="jzb[1]+0.04*pt";
30 > //  string jzbvariabledata="jzb[1]+0.06*pt";
31 > //  string jzbvariablemc="jzb[1]+0.04*pt";
32 >  string jzbvariabledata="(jzb[1]+0.053*pt)";
33 >  string jzbvariablemc="(jzb[1]+0.043*pt)";
34    float jzbHigh = 400.; // Range for JZB plots
35  
36    samplecollection allsamples("completesamplecollection");
37 +  samplecollection qcdsamples("QCDcollection");
38    samplecollection signalsamples("signalsamplecollection");
39    samplecollection systsamples("systematicssamplecollection");
40    samplecollection scansample("scansamplecollection");
# Line 39 | Line 42 | namespace PlottingSetup {
42    int data=1;
43    int mc=0;
44    int mcwithsignal=2;
45 <  TCut passtrig("(passed_triggers||!is_data)");
46 <  TCut cutmass("abs(mll-91.2)<20");
47 <  TCut genMassCut("abs(genMll-91.2)<20");
48 <  TCut openmasscut("mll>40"); // this is the mass cut used in the off peak analysis!
49 <  TCut openGenmasscut("genMll>40");
45 >  TCut leptoncut("(pt1>20&&pt2>20)");
46 >  TCut passtrig("(passed_triggers||!is_data)"&&leptoncut);
47 >  
48 >  TCut openmasscut("mll>20"); // this is the mass cut used in the off peak analysis!
49 >  TCut openGenmasscut("genMll>20");
50 >  TCut opensidebandcut("mll>500&&mll<100"); // this won't let anything thru ...
51 >  
52 >  TCut Restrmasscut("abs(mll-91.2)<20"); // this is the mass cut used in the off peak analysis!
53 >  TCut RestrGenmasscut("abs(genMll-91.2)<20");
54 >  TCut Restrsidebandcut("((mll>55&&mll<70)||(mll>112&&mll<160))");
55 >  
56 >  TCut cutmass(Restrmasscut);
57 >  TCut genMassCut(RestrGenmasscut);
58 >  
59 >  
60    //TCut cutmass("mll>2");
61 <  TCut basiccut("mll>2");//basically nothing.
62 <  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.
61 > //  TCut basiccut("mll>2"&&leptoncut&&"(bTagProbTHighEff[0]>1.7)&&(bTagProbTHighEff[1]>1.7)");//basically nothing.
62 >  TCut basiccut("mll>2"&&leptoncut);//basically nothing
63 >  TCut basicqualitycut("(pfJetGoodNum>=2&&pfJetGoodID[0]!=0)&&(pfJetGoodNum>=2&&pfJetGoodID[1]!=0)"&&basiccut);//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.
64    //TCut jetqualitycut("(pfJetGoodNum>=2&&pfJetGoodID[0])&&(pfJetGoodNum>=2&&pfJetGoodID[1])");//now part of the basiccut
65    //TCut jetqualitycut("mll>0");
66    
67    TCut cutnJets("pfJetGoodNum>=3"&&basicqualitycut);
68 <  TCut cutnJetsJESdown("pfJetGoodNum25>=3"&&basicqualitycut);
69 <  TCut cutnJetsJESup("pfJetGoodNum35>=3"&&basicqualitycut);
68 >  TCut cutnJetsJESdown("pfJetGoodNumm1sigma>=3"&&basicqualitycut);
69 >  TCut cutnJetsJESup("pfJetGoodNump1sigma>=3"&&basicqualitycut);
70    TCut cutOSOF("(id1!=id2)&&(ch1*ch2<0)");
71    TCut cutOSSF("(id1==id2)&&(ch1*ch2<0)");
72 <  TCut sidebandcut("(mll>55&&mll<70)||(mll>112&&mll<160)");
72 >  TCut sidebandcut(Restrsidebandcut);
73  
74    // SUSY scan parameters
75    float mglustart=25;float mgluend=1200;float mglustep=25;
76    float mLSPstart=25;float mLSPend=1200;float mLSPstep=25;
77    
78 <  float m0start=20;  float m0end=2000;  float m0step=20;
79 <  float m12start=20; float m12end=760;  float m12step=20;
80 <  
78 >  float m0start=0;  float m0end=3000;  float m0step=20;
79 >  float m12start=0; float m12end=1000;  float m12step=20;
80 >
81    int ScanXzones=15; // number of zones in x for (mSUGRA) scans
82    int ScanYzones=15; // number of zones in y for (mSUGRA) scans
83 +  
84 +  string mSUGRAxsFile="../../Plotting/Modules/external/msugra_m0_m12_10_0_1_NLO_1.0.txt";
85  
86    //scan types:
87    int mSUGRA=1;
# Line 94 | Line 110 | namespace PlottingSetup {
110    
111    //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
112    bool alwaysflip=false;
113 +  bool allowflipping=true;
114    vector<float> flippedNobs;
115    vector<float> flippedNpred;
116    vector<float> flippedNprederr;
# Line 112 | Line 129 | namespace PlottingSetup {
129    // LIMITS
130    int nlimittoys=1000; // how many toys for setting limits
131    string limitmethod="cls";//what method to use to set limits
132 <  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 t3 batch; the value for CRAB is on the next line
132 >  int limitpatience=20; // 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 t3 batch; the value for CRAB is on the next line
133    int limitpatienceCRAB=60;
134    bool ConsiderSignalContaminationForLimits=true; //whether or not to consider signal contamination when computing limits (standard:true)
135    int nuisancemodel=1;
# Line 126 | Line 143 | namespace PlottingSetup {
143    bool computeJZBefficiency=false;
144    bool computeJZBresponse=false;
145  
146 <  bool requireZ=true;
146 >  bool requireZ=true;//this is switched to "off" automatically when doing offpeak!
147 >
148 > //  string ScanSampleDirectory="DileptonScan__pieces"; // possibilities (atm) : SMS_T5zz/, SMS_T5zzl/, SMS_T5zzh/, GMSB/, mSUGRA/     note: this string needs to either contain "SMS", "GMSB", or "mSUGRA"
149 >  string ScanSampleDirectory="SMS_T1lh"; // possibilities (atm) : SMS_T5zz/, SMS_T5zzl/, SMS_T5zzh/, GMSB/, mSUGRA/     note: this string needs to either contain "SMS", "GMSB", or "mSUGRA"
150  
151 <  string ScanSampleDirectory="SMS_T5zz/"; // possibilities (atm) : SMS_T5zz/, SMS_T5zzl/, SMS_T5zzh/, GMSB/, mSUGRA/     note: this string needs to either contain "SMS", "GMSB", or "mSUGRA"
151 >  string FilterEfficiencyFile = "/shome/buchmann/JellyfishCBAF/DistributedModelCalculations/Limits/FilterEfficiencyv3.root";
152 >  string CMSSW_dir = "/shome/buchmann/final_production_2011/CMSSW_4_2_8/src/";
153  
154    ResultLibrary allresults;
155   }

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