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Comparing UserCode/cbrown/Development/Plotting/Modules/Plotting_Functions.C (file contents):
Revision 1.57 by buchmann, Thu Sep 6 10:19:18 2012 UTC vs.
Revision 1.69 by buchmann, Wed Sep 19 15:33:46 2012 UTC

# Line 89 | Line 89 | void find_one_peak_combination(TCut spec
89  
90   void find_peaks(float &MCPeak,float &MCPeakError, float &DataPeak, float &DataPeakError, stringstream &result, bool doPUreweighting, stringstream &datajzb, stringstream &mcjzb, string sSpecialCut="", bool SwitchOffNJetsCut=false)
91   {
92 +  bool overunderflowstatus=addoverunderflowbins;
93    switch_overunderflow(false);
94    
95    TCut SpecialCut("mll>=0");
# Line 160 | Line 161 | void find_peaks(float &MCPeak,float &MCP
161      MCPeakError=mcpeakerr;
162      DataPeak=datapeak;
163      DataPeakError=datapeakerr;
164 <    
164 <    switch_overunderflow(true);
165 <  
164 >    switch_overunderflow(overunderflowstatus);
165   }
166  
167   void make_special_obs_pred_mll_plot(string datajzb, string mcjzb, float jzbthreshold, float binWidth = 5.0) {
# Line 373 | Line 372 | void draw_ratio_plot(TH1* hdata, THStack
372   }
373  
374   float make_one_OFSF_plot(string variable, string addcut, string legendTitle, int nbins, float min, float max, float ymax, bool logscale,
375 <                        string xlabel, string filename, bool plotratio=true, bool loadlastminmax=false, float legendPosition=0.55) {
375 >                        string xlabel, string filename, float legendPosition=0.55) {
376  
377    TCut ibasiccut=basiccut;
378    bool draw_separation_lines=false;
# Line 391 | Line 390 | float make_one_OFSF_plot(string variable
390    rcan->SetLogy(logscale);
391    rcan->cd();
392  
393 +  std::cout << "OF/SF comparison: variable = " << variable << ", cut = " << cutSF.GetTitle() << std::endl;
394    TH1F *datahistoSF = allsamples.Draw("datahistoSF",variable,nbins,min,max, xlabel, "events",cutSF,data,luminosity);
395    TH1F *datahistoOF = allsamples.Draw("datahistoOF",variable,nbins,min,max, xlabel, "events",cutOF,data,luminosity);
396 <  string signal("LM3");
397 <  TH1F* signalhisto = new TH1F("signalhisto",signal.c_str(),nbins,min,max);
398 <  int idx = signalsamples.FindSample(signal)[0];
399 <  (signalsamples.collection)[idx].events->Project("signalhisto",variable.c_str(),cutSF);
400 <  signalhisto->Scale((signalsamples.collection)[idx].weight*luminosity);
401 <  signalhisto->SetLineColor((signalsamples.collection)[idx].samplecolor);
402 <  signalhisto->SetLineStyle(2);
396 > //   string signal("LM3");
397 > //   TH1F* signalhisto = new TH1F("signalhisto",signal.c_str(),nbins,min,max);
398 > //   int idx = signalsamples.FindSample(signal)[0];
399 > //   (signalsamples.collection)[idx].events->Project("signalhisto",variable.c_str(),cutSF);
400 > //   signalhisto->Scale((signalsamples.collection)[idx].weight*luminosity);
401 > //   signalhisto->SetLineColor((signalsamples.collection)[idx].samplecolor);
402 > //   signalhisto->SetLineStyle(2);
403    datahistoSF->SetMarkerSize(DataMarkerSize);
404    datahistoOF->SetLineColor(kRed);
405  
# Line 410 | Line 410 | float make_one_OFSF_plot(string variable
410    }
411    if (ymax<0) {
412      if ( logscale ) datahistoSF->SetMaximum(5.3*datahistoSF->GetMaximum());
413 <    else datahistoSF->SetMaximum(1.5*datahistoSF->GetMaximum());
413 >    else datahistoSF->SetMaximum(1.8*datahistoSF->GetMaximum());
414    } else {
415      datahistoSF->SetMaximum(ymax);
416    }
# Line 429 | Line 429 | float make_one_OFSF_plot(string variable
429    } else {
430      mleg->AddEntry((TObject*)0, "", "");
431    }
432 <  mleg->AddEntry(signalhisto, "LM3", "L");
432 >  //mleg->AddEntry(signalhisto, "LM3", "L");
433  
434    datahistoSF->Draw("E1");
435    if (datahistoOF->Integral()>0) datahistoOF->Draw("HIST,SAMES");
436 <  signalhisto->Draw("HIST,SAMES");
436 >  //signalhisto->Draw("HIST,SAMES");
437    mleg->Draw();
438    DrawPrelim();
439 <  if (datahistoOF->Integral()>0) save_with_ratio( datahistoSF, datahistoOF, rcan, "SFOF/" + filename, false, false, "SF/OF" );
440 <  else CompleteSave(ckin, "SFOF/" + filename);
439 >  if (datahistoOF->Integral()>0) {
440 >    save_with_ratio( datahistoSF, datahistoOF, rcan, "SFOF/" + filename, false, false, "SF/OF" );
441 >  } else {
442 >    CompleteSave(rcan, "SFOF/" + filename);
443 >    delete rcan;
444 >  }
445  
446    datahistoSF->Delete();
447    datahistoOF->Delete();
448 <  signalhisto->Delete();
448 >  //signalhisto->Delete();
449    delete mleg;
450    delete ckin;
451  
# Line 488 | Line 492 | float make_data_comparison_plot(string v
492    data1->GetYaxis()->CenterTitle();
493  
494    TLegend *mleg = make_legend("",legendPosition,0.7,false,legendPosition+0.2);
495 <  mleg->AddEntry(data1, "Old 5/fb", "PL");
496 <  mleg->AddEntry(data2, "New x/fb", "L");
495 >  mleg->AddEntry(data1, "New 3.8/fb", "PL");
496 >  mleg->AddEntry(data2, "Old 5.1/fb", "L");
497  
498    data1->Draw("E1");
499    data2->Draw("HIST,SAMES");
# Line 507 | Line 511 | float make_data_comparison_plot(string v
511   void make_OFSF_plots(string variable, string addcut, int nbins, float min, float max, bool logscale,
512                       string xlabel, string filename, float legendPosition=0.55) {
513  
514 <  string mllcuts[] = { "mll>20","mll>20&&mll<70", "mll>75&&mll<105", "mll>120" };
515 <  string mllcutname[] = { "m_{ll} > 20 GeV", "20 < m_{ll} < 70 GeV", "75 < m_{ll} < 105 GeV", "m_{ll} > 120 GeV" };
514 >  string mllcuts[] = { "mll>20","mll>15&&mll<70", "mll>75&&mll<105", "mll>120" };
515 >  string mllcutname[] = { "m_{ll} > 20 GeV", "20 < m_{ll} < 70 GeV", "70 < m_{ll} < 110 GeV", "m_{ll} > 120 GeV" };
516    string plotname[] = {"_all","_low","_peak","_high"};
517    float ymax;
518  
# Line 518 | Line 522 | void make_OFSF_plots(string variable, st
522    for ( int i=start; i<4; ++i ) {
523      if ( addcut != "" ) mllcuts[i] += "&&"+addcut;
524      if ( i==start ) {
525 <      ymax = make_one_OFSF_plot(variable, mllcuts[i],            mllcutname[i], nbins, min, max, -1, logscale, xlabel,
525 >      ymax = make_one_OFSF_plot(variable, mllcuts[i], mllcutname[i], nbins, min, max, -1, logscale, xlabel,
526                           filename+plotname[i], legendPosition );
527      } else {
528 <      make_one_OFSF_plot(variable, mllcuts[i],            mllcutname[i], nbins, min, max, ymax, logscale, xlabel,
528 >      make_one_OFSF_plot(variable, mllcuts[i],        mllcutname[i], nbins, min, max, ymax, logscale, xlabel,
529                           filename+plotname[i], legendPosition );
530      }
531      make_one_OFSF_plot(variable, "id1==1&&id1==id2&&"+mllcuts[i], mllcutname[i], nbins, min, max, ymax, logscale, xlabel,
# Line 541 | Line 545 | void make_kin_plot(string variable, stri
545   //  TCut basiccut("(pfJetGoodNum>=2&&pfJetGoodID[0])&&(pfJetGoodNum>=2&&pfJetGoodID[1])&&(passed_triggers||!is_data)");
546    TCut ibasiccut=basiccut;
547    bool draw_separation_lines=false;
548 +  bool drawsignal = false;
549    
550    if(isPF) ibasiccut=basiccut&&"pfjzb[0]>-998";
551  
# Line 562 | Line 567 | void make_kin_plot(string variable, stri
567    //Step 2: Refine the cut
568    TCut cut;
569    cut=cutmass&&cutOSSF&&cutnJets&&ibasiccut;
570 <  if(filename=="nJets" || filename=="nJets_inclusive") cut=cutmass&&cutOSSF&&ibasiccut;
571 <  if(filename=="nJets_osof" || filename=="nJets_osof_inclusive") cut=cutmass&&cutOSOF&&ibasiccut;
570 >  if(filename=="nJets" || filename=="nJets_inclusive" || filename=="nJets_met100" || filename=="nJets_inclusive_met100") cut=cutmass&&cutOSSF&&ibasiccut;
571 >  if(filename=="nJets_osof" || filename=="nJets_osof_inclusive" || filename=="nJets_osof_met100" || filename=="nJets_osof_inclusive_met100") cut=cutmass&&cutOSOF&&ibasiccut;
572    if(filename=="nJets_nocuts_except_mll_ossf") cut=cutmass&&cutOSSF;
573 <  if(filename=="mll") {
573 >  if(filename=="mll"||filename=="mll_met100") {
574          cut=cutOSSF&&cutnJets&&ibasiccut;
575          draw_separation_lines=true;
576    }
577 <  if(filename=="mll_ee") cut=cutOSSF&&cutnJets&&ibasiccut&&"id1==0";
578 <  if(filename=="mll_mm") cut=cutOSSF&&cutnJets&&ibasiccut&&"id1==1";
579 <  if(filename=="mll_osof") {
577 >  if(filename=="mll_ee"||filename=="mll_ee_met100") cut=cutOSSF&&cutnJets&&ibasiccut&&"id1==0";
578 >  if(filename=="mll_mm"||filename=="mll_mm_met100") cut=cutOSSF&&cutnJets&&ibasiccut&&"id1==1";
579 >  if(filename=="mll_osof"||filename=="mll_osof_met100") {
580          cut=cutOSOF&&cutnJets&&ibasiccut;
581          draw_separation_lines=true;
582    }
# Line 579 | Line 584 | void make_kin_plot(string variable, stri
584    if(Contains(filename,"mll_ee_above")) cut=cut&&"id1==0";
585    if(Contains(filename,"mll_mm_above")) cut=cut&&"id1==1";
586    if(Contains(filename,"mll_osof_aboveJZB")) cut=cutOSOF&&cutnJets&&ibasiccut;
587 <  if(filename=="mll_inclusive"||filename=="mll_inclusive_highrange") cut=cutmass&&cutOSSF;
588 <  if(filename=="mll_inclusive_osof") cut=cutmass&&cutOSOF;
589 <  if(filename=="mll_inclusive_ee") cut=cutmass&&cutOSSF&&"id1==0";
590 <  if(filename=="mll_inclusive_mm") cut=cutmass&&cutOSSF&&"id1==1";
587 >  if(filename=="mll_inclusive"||filename=="mll_inclusive_highrange") cut=cutOSSF;
588 >  if(filename=="mll_inclusive_osof") cut=cutOSOF;
589 >  if(filename=="mll_inclusive_ee") cut=cutOSSF&&"id1==0";
590 >  if(filename=="mll_inclusive_mm") cut=cutOSSF&&"id1==1";
591    if(filename=="pfJetGoodEta_0") cut=cutOSSF&&cutmass&&ibasiccut&&cutnJets;
592    if(filename=="pfJetGoodPt_0") cut=cutOSSF&&cutmass&&ibasiccut&&cutnJets;
593    if(filename=="numVtx") cut=cutmass&&ibasiccut;
# Line 603 | Line 608 | void make_kin_plot(string variable, stri
608    if (logscale) datahisto->SetMaximum(5.3*datahisto->GetMaximum());
609    else datahisto->SetMaximum(1.3*datahisto->GetMaximum());
610  
611 <  cout << "******** Cut used : " << (const char*) cut << endl;
611 >  cout << "******** Cut used : " << (const char*) cut << " for plot " << filename << endl;
612    if(loadlastminmax) {
613          datahisto->SetMinimum(lastrange_min);
614          datahisto->SetMaximum(lastrange_max);
# Line 617 | Line 622 | void make_kin_plot(string variable, stri
622    string signal("LM3");
623    TH1F* signalhisto = new TH1F("signalhisto",signal.c_str(),nbins,min,max);
624    int idx = signalsamples.FindSample(signal)[0];
625 <  (signalsamples.collection)[idx].events->Project("signalhisto",variable.c_str(),cut);
626 <  signalhisto->Scale((signalsamples.collection)[idx].weight*luminosity);
627 <  signalhisto->SetLineColor(kOrange);
625 >  if(drawsignal) (signalsamples.collection)[idx].events->Project("signalhisto",variable.c_str(),cut);
626 >  if(drawsignal) signalhisto->Scale((signalsamples.collection)[idx].weight*luminosity);
627 >  if(drawsignal) signalhisto->SetLineColor(kOrange);
628  
629    THStack mcstack   = allsamples.DrawStack("mcstack",  variable,nbins,min,max,xlabel,"events",cut,mc,luminosity);
630    datahisto->Draw("e1");
# Line 668 | Line 673 | void make_kin_plot(string variable, stri
673          kinpad->SetLogy(logscale);
674          datahisto->Draw("e1");
675          mcstack.Draw("same");
676 <        signalhisto->Draw("same");
676 >        if(drawsignal) signalhisto->Draw("same");
677          datahisto->Draw("same,e1");
678          datahisto->Draw("same,axis");
679          if(RestrictToMassPeak&&draw_separation_lines) {
# Line 676 | Line 681 | void make_kin_plot(string variable, stri
681            upperboundary->Draw("same");
682          }
683            
684 <        kinleg->AddEntry("signalhisto",signal.c_str(),"l");
684 >        if(drawsignal) kinleg->AddEntry("signalhisto",signal.c_str(),"l");
685          kinleg->Draw();
686          write_cut->Draw();
687          DrawPrelim();
# Line 691 | Line 696 | void make_kin_plot(string variable, stri
696          else CompleteSave(ckin,"kin/"+filename);
697    }
698    datahisto->Delete();
699 +  delete signalhisto;
700    delete ckin;
701   }
702  
# Line 741 | Line 747 | void make_JES_plot(TCut cut, string name
747  
748   void do_kinematic_plots(string mcjzb, string datajzb, bool doPF=false)
749   {
750 + //  switch_overunderflow(true);
751    bool dolog=true;
752    bool nolog=false;
753  
754    bool doOFSF = false;
755 <  bool doKin  = false;
756 <  bool doDataComp = true;
755 >  bool doKin  = true;
756 >  bool doDataComp = false;
757    
758  
759    if(doPF) write_warning(__FUNCTION__,"Please use caution when trying to produce PF plots; not all versions of the JZB trees have these variables!");
# Line 758 | Line 765 | void do_kinematic_plots(string mcjzb, st
765    }
766  
767    if ( doOFSF ) {
768 <    make_OFSF_plots("mll", "met[4]>100", 60, 20., 320., false, "m_{ll}", "mll");
768 >     make_OFSF_plots("mll", "met[4]>100", 60, 20., 320., false, "m_{ll}", "mll");
769 >
770 >     make_OFSF_plots("pfJetGoodNum40", "met[4]>100",                        7, 3, 10, true, "#(jets)", "njets");
771 >     make_OFSF_plots("pfJetGoodNum40", "met[4]>100&&pfJetGoodNumBtag30==0", 7, 3, 10, true, "#(jets)", "njets_btagVeto");
772 >     make_OFSF_plots("pfJetGoodNum40", "met[4]>100&&pfJetGoodNumBtag30>0",  7, 3, 10, true, "#(jets)", "njets_AtLeastOneBJet30");
773  
774 <    make_OFSF_plots("pfJetGoodNum40",     "met[4]>100", 7, 3, 10, true, "#(jets)", "njets");
775 <    make_OFSF_plots("pfJetGoodNum40",     "met[4]>100&&pfJetGoodNumBtag30==0", 7, 3, 10, true, "#(jets)", "njets_btagVeto");
776 <    make_OFSF_plots("pfJetGoodNum40",     "met[4]>100&&pfJetGoodNumBtag30>0", 7, 3, 10, true, "#(jets)", "njets_AtLeastOneBJet30");
777 <
778 <    make_OFSF_plots("pfJetGoodNumBtag30", "met[4]>100", 5, 0, 5, true, "#(b-jets)", "nbjets");
768 <    make_OFSF_plots("iso1", "met[4]>100", 20, 0, 0.3, true, "lepton 1 isolation", "iso1");
769 <    make_OFSF_plots("iso2", "met[4]>100", 20, 0, 0.3, true, "lepton 2 isolation", "iso2");
774 >     make_OFSF_plots("pfJetGoodNumBtag30", "met[4]>100", 5, 0, 5, true, "#(b-jets)", "nbjets");
775 >     make_OFSF_plots("pfJetGoodPtBtag[0]", "met[4]>100&&pfJetGoodNumBtag30>0", 20, 0, 400, true, "p_{T}(leading b-jet)", "ptb1");
776 >
777 > //     make_OFSF_plots("iso1", "met[4]>100", 20, 0, 0.3, true, "lepton 1 isolation", "iso1");
778 > //     make_OFSF_plots("iso2", "met[4]>100", 20, 0, 0.3, true, "lepton 2 isolation", "iso2");
779      //  make_OFSF_plots("pt1",  "met[4]>100", 30, 0., 300., true, "p_{T,1}", "pt1");
780      //  make_OFSF_plots("pt2",  "met[4]>100", 22, 0., 220., true, "p_{T,2}", "pt2");
781 <    make_OFSF_plots("eta1", "met[4]>100", 10, -2.5, 2.5, false, "#eta_{1}", "eta1", 0.15);
782 <    make_OFSF_plots("eta2", "met[4]>100", 10, -2.5, 2.5, false, "#eta_{2}", "eta2", 0.15);
781 > //     make_OFSF_plots("eta1", "met[4]>100", 10, -2.5, 2.5, false, "#eta_{1}", "eta1", 0.15);
782 > //     make_OFSF_plots("eta2", "met[4]>100", 10, -2.5, 2.5, false, "#eta_{2}", "eta2", 0.15);
783      //  make_OFSF_plots("phi1", "met[4]>100", 10, -TMath::Pi(), TMath::Pi(), false, "#phi_{1}", "phi1", 0.2);
784      //  make_OFSF_plots("phi2", "met[4]>100", 10, -TMath::Pi(), TMath::Pi(), false, "#phi_{2}", "phi2", 0.2);
785 <    //  make_OFSF_plots("pfJetGoodPt[0]/pfJetGoodPt[1]", "met[4]>100", 20, 1, 10, true, "pt_{j}^{1}/pt_{j}^{2}", "jpt1pt2", 0.2);
785 >    make_OFSF_plots("pfJetGoodPt[0]/pfJetGoodPt[1]", "met[4]>100", 20, 1, 10, true, "pt_{j}^{1}/pt_{j}^{2}", "jpt1pt2", 0.2);
786      make_OFSF_plots("TMath::Abs(pfJetDphiMet[0])", "met[4]>100", 16, 0, 3.2, false, "|#Delta#phi(jet1,MET)|", "dphij1met", 0.2);
787      make_OFSF_plots("TMath::Abs(dphi)", "met[4]>100", 16, 0, 3.2, false, "|#Delta#phi(l1,l2)|", "dphi", 0.2);
788 <    //  make_OFSF_plots("TMath::Abs(dphiMet1)", "met[4]>100", 16, 0, 3.2, false, "|#Delta#phi(l1,MET)|", "dphiMet1", 0.2);
789 <    //  make_OFSF_plots("TMath::Abs(dphiMet2)", "met[4]>100", 16, 0, 3.2, false, "|#Delta#phi(l2,MET)|", "dphiMet2", 0.2);
788 >    make_OFSF_plots("TMath::Abs(dphiMet1)", "met[4]>100", 16, 0, 3.2, false, "|#Delta#phi(l1,MET)|", "dphiMet1", 0.2);
789 >    make_OFSF_plots("TMath::Abs(dphiMet2)", "met[4]>100", 16, 0, 3.2, false, "|#Delta#phi(l2,MET)|", "dphiMet2", 0.2);
790      make_OFSF_plots("TMath::Min(TMath::Abs(dphiMet1), TMath::Abs(dphiMet2))", "met[4]>100", 16, 0, 3.2, false, "Min(|#Delta#phi(l,MET)|)", "dphilc");
791      make_OFSF_plots("TMath::Min(TMath::Abs(pfJetDphiMet[0]), TMath::Min(TMath::Abs(pfJetDphiMet[1]), TMath::Abs(pfJetDphiMet[2])))", "met[4]>100", 16, 0, 3.2, false, "Min(|#Delta#phi(jet,MET)|)", "dphijc");
792      make_OFSF_plots("TMath::Min((TMath::Pi()-TMath::Abs(dphiMet1)), (TMath::Pi() - TMath::Abs(dphiMet2)))", "met[4]>100", 16, 0, 3.2, false, "Min(#pi - |#Delta#phi(l,MET)|)", "dphilco");
# Line 786 | Line 795 | void do_kinematic_plots(string mcjzb, st
795  
796    if ( doDataComp && !PlottingSetup::openBox ) {
797      TCut mllCut("");
798 <    if ( !PlottingSetup::openBox ) mllCut = "mll>120";
798 >    float massmin = 15.;
799 >    float massmax = 315;
800 >    int massnbins = 60;
801 >    if ( !PlottingSetup::openBox ) {
802 >      mllCut = "mll>70";
803 >      massmin = 120;
804 >      massmax = 360;
805 >      massnbins = 14;
806 >    }
807  
808      TCut cutSignal = cutmass&&cutnJets&&"met[4]>100";
809 <    make_data_comparison_plot("mll", cutOSSF&&cutSignal&&mllCut,           60, 20., 320.,-1., false, "m_{ll}", "mll_SF_sig");
810 <    make_data_comparison_plot("mll", cutOSSF&&cutSignal&&mllCut&&"id1==0", 60, 20., 320.,-1., false, "m_{ll}", "mll_SF_sig_ee");
794 <    make_data_comparison_plot("mll", cutOSSF&&cutSignal&&mllCut&&"id1==1", 60, 20., 320.,-1., false, "m_{ll}", "mll_SF_sig_mm");
795 <
796 <    make_data_comparison_plot("mll", cutOSSF&&cutSignal&&mllCut&&"pfJetGoodNumBtag30==0",           60, 20., 320.,-1., false, "m_{ll}", "mll_SF_sig_btagVeto");
797 <    make_data_comparison_plot("mll", cutOSSF&&cutSignal&&mllCut&&"id1==0&&pfJetGoodNumBtag30==0", 60, 20., 320.,-1., false, "m_{ll}", "mll_SF_sig_ee_btagVeto");
798 <    make_data_comparison_plot("mll", cutOSSF&&cutSignal&&mllCut&&"id1==1&&pfJetGoodNumBtag30==0", 60, 20., 320.,-1., false, "m_{ll}", "mll_SF_sig_mm_btagVeto");
799 <
800 <    make_data_comparison_plot("mll", cutOSSF&&cutSignal&&mllCut&&"pfJetGoodNumBtag30>0",           60, 20., 320.,-1., false, "m_{ll}", "mll_SF_sig_AtLeastOneBJet");
801 <    make_data_comparison_plot("mll", cutOSSF&&cutSignal&&mllCut&&"id1==0&&pfJetGoodNumBtag30>0", 60, 20., 320.,-1., false, "m_{ll}", "mll_SF_sig_ee_AtLeastOneBJet");
802 <    make_data_comparison_plot("mll", cutOSSF&&cutSignal&&mllCut&&"id1==1&&pfJetGoodNumBtag30>0", 60, 20., 320.,-1., false, "m_{ll}", "mll_SF_sig_mm_AtLeastOneBJet");
809 >    make_data_comparison_plot("mll", cutOSSF,60, 15., 315.,-1., true, "m_{ll}", "mll_SF_inclusive");
810 >    make_data_comparison_plot("mll", cutOSOF,60, 15., 315.,-1., true, "m_{ll}", "mll_OF_inclusive");
811  
812 <    make_data_comparison_plot("mll", cutOSOF&&cutSignal, 60, 20., 320.,-1., false, "m_{ll}", "mll_OF_sig");
813 <    make_data_comparison_plot("mll", cutmass&&"met[4]>100&&met[4]<150&&pfJetGoodNum40<3", 60, 20., 320.,-1., false, "m_{ll}", "mll_SF_CR");
812 >    make_data_comparison_plot("mll", cutOSSF&&cutSignal&&mllCut,           massnbins, 15., 315.,-1., false, "m_{ll}", "mll_SF_sig");
813 >    make_data_comparison_plot("mll", cutOSSF&&cutSignal&&mllCut&&"pfJetGoodNumBtag30==0", massnbins, 15., 315.,-1., false, "m_{ll}", "mll_SF_sig_btagVeto");
814 >    make_data_comparison_plot("mll", cutOSSF&&cutSignal&&mllCut&&"pfJetGoodNumBtag30>0",  massnbins, 15., 315.,-1., false, "m_{ll}", "mll_SF_sig_AtLeastOneBJet");
815 >
816 >    make_data_comparison_plot("mll", mllCut&&cutOSOF&&cutSignal, massnbins, 15., 315.,-1., false, "m_{ll}", "mll_OF_sig");
817 >    make_data_comparison_plot("mll", cutmass&&cutOSSF&&"met[4]>100&&met[4]<150&&pfJetGoodNum40==2", massnbins, 15., 315.,-1., false, "m_{ll}", "mll_SF_CR");
818 >    make_data_comparison_plot("mll", cutmass&&cutOSOF&&"met[4]>100&&met[4]<150&&pfJetGoodNum40==2", massnbins, 15., 315.,-1., false, "m_{ll}", "mll_OF_CR");
819 >
820 >    make_data_comparison_plot("pfJetGoodNum40", cutOSSF&&cutSignal&&mllCut, 8, 0., 8.,-1., false, "#(jets)", "njets_SF_sig");
821 >    make_data_comparison_plot("pfJetGoodNum40", cutOSOF&&cutSignal&&mllCut, 8, 0., 8.,-1., false, "#(jets)", "njets_OF_sig");
822 >    make_data_comparison_plot("pfJetGoodNumBtag30", cutOSSF&&cutSignal&&mllCut, 8, 0., 8.,-1., false, "#(b-jets)", "nbjets_SF_sig");
823 >    make_data_comparison_plot("pfJetGoodNumBtag30", cutOSOF&&cutSignal&&mllCut, 8, 0., 8.,-1., false, "#(b-jets)", "nbjets_OF_sig");
824    }
825  
826  
827    if ( doKin ) {
828      string mllCut("");
829 <    if ( !PlottingSetup::openBox ) mllCut = "&&mll>120";
829 >    if ( !PlottingSetup::openBox ) mllCut = "&&mll>70";
830  
831 +    make_kin_plot("pfJetGoodPt[0]/pfJetGoodPt[1]","",45,1,10,dolog,"pt_{j}^{1}/pt_{j}^{2}","j1j2ratio",doPF,true);
832 +    make_kin_plot("TMath::Abs(pfJetDphiMet[0])","",32,0,3.2,nolog,"|#Delta#phi(jet1,MET)|","dphiJ1MET",doPF,true);
833      // Plots in signal region
834 <    make_kin_plot("met[4]","",70,0,350,dolog,"MET [GeV]","met",doPF,true);
835 <    make_kin_plot("mll","mll>20&&met[4]>100"+mllCut,(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll",doPF,true);
836 <    make_kin_plot("mll","mll>20&&met[4]>100",(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_osof",doPF,true,true);
837 <    make_kin_plot("mll","mll>20&&met[4]>100"+mllCut,(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_ee",doPF,true);
838 <    make_kin_plot("mll","mll>20&&met[4]>100"+mllCut,(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_mm",doPF,true);
834 > //     make_kin_plot("met[4]","",70,0,350,dolog,"MET [GeV]","met",doPF,true);
835 >    make_kin_plot("mll","mll>20"+mllCut,(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll",doPF,true);
836 >    make_kin_plot("mll","mll>20",(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_osof",doPF,true,true);
837 >    make_kin_plot("mll","mll>20"+mllCut,(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_ee",doPF,true);
838 >    make_kin_plot("mll","mll>20"+mllCut,(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_mm",doPF,true);
839 >    
840 >    make_kin_plot("pfJetGoodNum40",mllCut,9,-0.5,8.5,dolog,"nJets","nJets",doPF);
841 >    make_kin_plot("pfJetGoodNum40","",9,-0.5,8.5,dolog,"nJets","nJets_osof",doPF);
842 >    
843 >    make_kin_plot("mll","mll>20&&met[4]>100"+mllCut,(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_met100",doPF,true);
844 >    make_kin_plot("mll","mll>20&&met[4]>100",(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_osof_met100",doPF,true,true);
845 >    make_kin_plot("mll","mll>20&&met[4]>100"+mllCut,(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_ee_met100",doPF,true);
846 >    make_kin_plot("mll","mll>20&&met[4]>100"+mllCut,(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_mm_met100",doPF,true);
847      
848 <    make_kin_plot("pfJetGoodNum40","met[4]>100"+mllCut,9,-0.5,8.5,dolog,"nJets","nJets",doPF);
849 <    make_kin_plot("pfJetGoodNum40","met[4]>100",9,-0.5,8.5,dolog,"nJets","nJets_osof",doPF);
848 >    
849 >    make_kin_plot("pfJetGoodNum40","met[4]>100"+mllCut,9,-0.5,8.5,dolog,"nJets","nJets_met100",doPF);
850 >    make_kin_plot("pfJetGoodNum40","met[4]>100",9,-0.5,8.5,dolog,"nJets","nJets_osof_met100",doPF);
851  
852      // Further inclusive invariant mass plots
853      make_kin_plot("mll","",(int)((mll_hi-mll_low))/5,mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_inclusive",doPF,true);
# Line 829 | Line 858 | void do_kinematic_plots(string mcjzb, st
858      //make_kin_plot("mll","",(int)((350-mll_low))/5,mll_low,350,dolog,"m_{ll} [GeV]","mll_inclusive_highrange",doPF);
859      //if(!doPF) make_special_mll_plot((int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]");
860      
832    //make_kin_plot("pfJetGoodPt[0]/pfJetGoodPt[1]","",45,1,10,dolog,"pt_{j}^{1}/pt_{j}^{2}","j1j2ratio",doPF,true);
833    //make_kin_plot("TMath::Abs(pfJetDphiMet[0])","",32,0,3.2,nolog,"|#Delta#phi(jet1,MET)|","dphiJ1MET",doPF,true);
861      
862      // Number of jets
863      make_kin_plot("pfJetGoodNum40","",9,-0.5,8.5,dolog,"nJets","nJets_inclusive",doPF);
# Line 873 | Line 900 | void do_kinematic_plots(string mcjzb, st
900   //   make_special_obs_pred_mll_plot(datajzb,mcjzb,0);
901   //   make_special_obs_pred_mll_plot(datajzb,mcjzb,50);
902   //   make_special_obs_pred_mll_plot(datajzb,mcjzb,80);
903 < //   make_special_obs_pred_mll_plot(datajzb,mcjzb,100);
903 >   make_special_obs_pred_mll_plot(datajzb,mcjzb,100);
904   //   make_special_obs_pred_mll_plot(datajzb,mcjzb,150);
905   //   make_special_obs_pred_mll_plot(datajzb,mcjzb,200);
906   //   make_special_obs_pred_mll_plot(datajzb,mcjzb,250);
# Line 881 | Line 908 | void do_kinematic_plots(string mcjzb, st
908   //   make_JES_plot(cutmass&&cutOSSF&&basiccut,"_ossf");
909   //   make_JES_plot(cutmass&&cutOSOF&&basiccut,"_osof");
910  
911 +  switch_overunderflow(false);
912   }
913  
914   void make_comp_plot( string var, string xlabel, string filename, float jzbcut, string mcjzb, string datajzb,
# Line 950 | Line 978 | void region_comparison_plots(string mcjz
978  
979   //  switch_overunderflow(true);  // switching overflow/underflow bins on
980      
981 <  
981 >  switch_overunderflow(true);
982      flag_this_change(__FUNCTION__,__LINE__,true);//PlottingSetup::RestrictToMassPeak ---- the arguments changed
983    for(int ijzb=0;ijzb<(int)jzb_cuts.size();ijzb++) {
984      float jzbcut=jzb_cuts[ijzb]; // Comparison plots are done for this JZB cut
# Line 1267 | Line 1295 | if you want to start from scratch (witho
1295  
1296   void do_prediction_plot(string jzb, TCanvas *globalcanvas, float high, int use_data, bool overlay_signal = false,string subdir="" )
1297   {
1298 < //  switch_overunderflow(true);
1298 >  
1299    bool is_data=false;
1300    bool use_signal=false;
1301    if(use_data==1) is_data=true;
1302    if(use_data==2) use_signal=true;
1303 <  int nbins=50;//100;
1304 <  if(is_data) nbins=50;
1303 >  int nbins=int(high/10);//100;
1304 >  if(is_data) nbins=int(high/10);
1305    float low=0;
1306 <  float hi=500;
1306 >  float hi=high;
1307 >  
1308 >  stringstream cutpositiveS;
1309 >  cutpositiveS << "(" << jzb << ">0)";
1310 >  TCut cutpositive(cutpositiveS.str().c_str());
1311 >  stringstream cutnegativeS;
1312 >  cutnegativeS << "(" << jzb << "<0)";
1313 >  TCut cutnegative(cutnegativeS.str().c_str());
1314 >  
1315    
1316    TH1F *blankback = new TH1F("blankback","blankback",int(high/10),0,high);
1317 <  TH1F *RcorrJZBeemm   = allsamples.Draw("RcorrJZBeemm",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,is_data, luminosity,use_signal);
1318 <  TH1F *LcorrJZBeemm   = allsamples.Draw("LcorrJZBeemm",("-"+jzb).c_str(),nbins,low,hi, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,is_data, luminosity,use_signal);
1319 <  TH1F *RcorrJZBem     = allsamples.Draw("RcorrJZBem",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutmass&&cutOSOF&&cutnJets,is_data, luminosity,use_signal);
1320 <  TH1F *LcorrJZBem     = allsamples.Draw("LcorrJZBem",("-"+jzb).c_str(),nbins,low,hi, "JZB [GeV]", "events", cutmass&&cutOSOF&&cutnJets,is_data, luminosity,use_signal);
1317 >  TH1F *RcorrJZBeemm   = allsamples.Draw("RcorrJZBeemm",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutpositive&&cutmass&&cutOSSF&&cutnJets,is_data, luminosity,use_signal);
1318 >  TH1F *LcorrJZBeemm   = allsamples.Draw("LcorrJZBeemm",("-"+jzb).c_str(),nbins,low,hi, "JZB [GeV]", "events", cutnegative&&cutmass&&cutOSSF&&cutnJets,is_data, luminosity,use_signal);
1319 >  TH1F *RcorrJZBem     = allsamples.Draw("RcorrJZBem",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutpositive&&cutmass&&cutOSOF&&cutnJets,is_data, luminosity,use_signal);
1320 >  TH1F *LcorrJZBem     = allsamples.Draw("LcorrJZBem",("-"+jzb).c_str(),nbins,low,hi, "JZB [GeV]", "events", cutnegative&&cutmass&&cutOSOF&&cutnJets,is_data, luminosity,use_signal);
1321  
1322    blankback->GetXaxis()->SetTitle(RcorrJZBeemm->GetXaxis()->GetTitle());
1323    blankback->GetYaxis()->SetTitle(RcorrJZBeemm->GetYaxis()->GetTitle());
# Line 1296 | Line 1332 | void do_prediction_plot(string jzb, TCan
1332    
1333    TH1F *RcorrJZBeemmNoS;
1334  
1335 <    //these are for the ratio
1336 <  
1337 <  TH1F *JRcorrJZBeemm   = allsamples.Draw("JRcorrJZBeemm",jzb.c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,is_data, luminosity,use_signal);
1338 <  TH1F *JLcorrJZBeemm   = allsamples.Draw("JLcorrJZBeemm",("-"+jzb).c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,is_data, luminosity,use_signal);
1339 <  TH1F *JRcorrJZBem     = allsamples.Draw("JRcorrJZBem",jzb.c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutmass&&cutOSOF&&cutnJets,is_data, luminosity,use_signal);
1304 <  TH1F *JLcorrJZBem     = allsamples.Draw("JLcorrJZBem",("-"+jzb).c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutmass&&cutOSOF&&cutnJets,is_data, luminosity,use_signal);
1335 >  //these are for the ratio
1336 >  TH1F *JRcorrJZBeemm   = allsamples.Draw("JRcorrJZBeemm",jzb.c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutpositive&&cutmass&&cutOSSF&&cutnJets,is_data, luminosity,use_signal);
1337 >  TH1F *JLcorrJZBeemm   = allsamples.Draw("JLcorrJZBeemm",("-"+jzb).c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutnegative&&cutmass&&cutOSSF&&cutnJets,is_data, luminosity,use_signal);
1338 >  TH1F *JRcorrJZBem     = allsamples.Draw("JRcorrJZBem",jzb.c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutpositive&&cutmass&&cutOSOF&&cutnJets,is_data, luminosity,use_signal);
1339 >  TH1F *JLcorrJZBem     = allsamples.Draw("JLcorrJZBem",("-"+jzb).c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutnegative&&cutmass&&cutOSOF&&cutnJets,is_data, luminosity,use_signal);
1340    
1341    TH1F *JRcorrJZBSBem;
1342    TH1F *JLcorrJZBSBem;
1343    TH1F *JRcorrJZBSBeemm;
1344    TH1F *JLcorrJZBSBeemm;
1345    
1346 <  if(use_data==2 || overlay_signal) RcorrJZBeemmNoS = allsamples.Draw("RcorrJZBeemmNoS",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,is_data, luminosity,false);
1346 >  if(use_data==2 || overlay_signal) RcorrJZBeemmNoS = allsamples.Draw("RcorrJZBeemmNoS",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutpositive&&cutmass&&cutOSSF&&cutnJets,is_data, luminosity,false);
1347  
1348    
1349    if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) {
1350 <    RcorrJZBSBem   = allsamples.Draw("RcorrJZBSBem",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity,use_signal);
1351 <    LcorrJZBSBem   = allsamples.Draw("LcorrJZBSBem",("-"+jzb).c_str(),nbins,low,hi, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity,use_signal);
1352 <    RcorrJZBSBeemm = allsamples.Draw("RcorrJZBSBeemm",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", sidebandcut&&cutOSSF&&cutnJets,is_data, luminosity,use_signal);
1353 <    LcorrJZBSBeemm = allsamples.Draw("LcorrJZBSBeemm",("-"+jzb).c_str(),nbins,low,hi, "JZB [GeV]", "events", sidebandcut&&cutOSSF&&cutnJets,is_data, luminosity,use_signal);
1350 >    RcorrJZBSBem   = allsamples.Draw("RcorrJZBSBem",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutpositive&&sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity,use_signal);
1351 >    LcorrJZBSBem   = allsamples.Draw("LcorrJZBSBem",("-"+jzb).c_str(),nbins,low,hi, "JZB [GeV]", "events", cutnegative&&sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity,use_signal);
1352 >    RcorrJZBSBeemm = allsamples.Draw("RcorrJZBSBeemm",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutpositive&&sidebandcut&&cutOSSF&&cutnJets,is_data, luminosity,use_signal);
1353 >    LcorrJZBSBeemm = allsamples.Draw("LcorrJZBSBeemm",("-"+jzb).c_str(),nbins,low,hi, "JZB [GeV]", "events", cutnegative&&sidebandcut&&cutOSSF&&cutnJets,is_data, luminosity,use_signal);
1354      
1355      //these are for the ratio
1356 <    JRcorrJZBSBem   = allsamples.Draw("JRcorrJZBSBem",jzb.c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity,use_signal);
1357 <    JLcorrJZBSBem   = allsamples.Draw("JLcorrJZBSBem",("-"+jzb).c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity,use_signal);
1358 <    JRcorrJZBSBeemm = allsamples.Draw("JRcorrJZBSBeemm",jzb.c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", sidebandcut&&cutOSSF&&cutnJets,is_data, luminosity,use_signal);
1359 <    JLcorrJZBSBeemm = allsamples.Draw("JLcorrJZBSBeemm",("-"+jzb).c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", sidebandcut&&cutOSSF&&cutnJets,is_data, luminosity,use_signal);
1356 >    JRcorrJZBSBem   = allsamples.Draw("JRcorrJZBSBem",jzb.c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutpositive&&sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity,use_signal);
1357 >    JLcorrJZBSBem   = allsamples.Draw("JLcorrJZBSBem",("-"+jzb).c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutnegative&&sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity,use_signal);
1358 >    JRcorrJZBSBeemm = allsamples.Draw("JRcorrJZBSBeemm",jzb.c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutpositive&&sidebandcut&&cutOSSF&&cutnJets,is_data, luminosity,use_signal);
1359 >    JLcorrJZBSBeemm = allsamples.Draw("JLcorrJZBSBeemm",("-"+jzb).c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutnegative&&sidebandcut&&cutOSSF&&cutnJets,is_data, luminosity,use_signal);
1360    }
1361    
1362    TH1F *lm4RcorrJZBeemm;
1363 <  if(overlay_signal || use_data == 2 || use_data == 1) lm4RcorrJZBeemm = allsamples.Draw("lm4RcorrJZBSBeemm",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,is_data, luminosity,allsamples.FindSample("LM"));
1363 >  if(overlay_signal || use_data == 2 || use_data == 1) lm4RcorrJZBeemm = allsamples.Draw("lm4RcorrJZBSBeemm",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutpositive&&cutmass&&cutOSSF&&cutnJets,is_data, luminosity,allsamples.FindSample("LM"));
1364    
1365    flag_this_change(__FUNCTION__,__LINE__,true);//PlottingSetup::RestrictToMassPeak ---- prediction changed.
1366    
# Line 1389 | Line 1424 | void do_prediction_plot(string jzb, TCan
1424    SQRT(BpredSys);
1425    BpredSys->Divide(JBpred);
1426  
1392  
1427    flag_this_change(__FUNCTION__,__LINE__,true);//PlottingSetup::RestrictToMassPeak ---- prediction changed
1428    TH1F *Tpred = (TH1F*)RcorrJZBem->Clone("Bpred");
1429    Tpred->Add(LcorrJZBem,-1.0);
# Line 1442 | Line 1476 | void do_prediction_plot(string jzb, TCan
1476      Bpred->Draw("hist,same");
1477      //analytical_function[0]->Draw("same"); analytical_function[1]->Draw("same");analytical_function[2]->Draw("same");
1478      RcorrJZBeemm->Draw("e1x0,same");//HAVE IT ON TOP!
1479 <    lm4RcorrJZBeemm->Draw("hist,same");
1479 >    //lm4RcorrJZBeemm->Draw("hist,same");
1480      legBpred->AddEntry(RcorrJZBeemm,"observed","p");
1481      legBpred->AddEntry(Bpred,"predicted","l");
1482   //    legBpred->AddEntry(analytical_function[1],"predicted fit","l");
1483   //    legBpred->AddEntry(analytical_function[2],"stat. uncert.","l");
1484 <    legBpred->AddEntry(lm4RcorrJZBeemm,(allsamples.collection[allsamples.FindSample("LM")[0]].samplename).c_str(),"l");
1484 > //     legBpred->AddEntry(lm4RcorrJZBeemm,(allsamples.collection[allsamples.FindSample("LM")[0]].samplename).c_str(),"l");
1485      legBpred->Draw();
1486      DrawPrelim();
1487  
# Line 1457 | Line 1491 | void do_prediction_plot(string jzb, TCan
1491      Bpred->SetLineWidth(2);
1492      predcomppad->cd();
1493      predcomppad->SetLogy(1);
1460    
1494      TH1F *jzbnegative = (TH1F*)LcorrJZBeemm->Clone("jzbnegative");
1495      TH1F *sidebandsemu = (TH1F*)Bpred->Clone("sidebandsemu");
1496      sidebandsemu->Add(jzbnegative,-1);
# Line 1479 | Line 1512 | void do_prediction_plot(string jzb, TCan
1512   //    lm4RcorrJZBeemm->SetLineColor(kOrange+1);
1513      lm4RcorrJZBeemm->SetLineWidth(2);
1514      //lm4RcorrJZBeemm->SetLineWidth(2); // paper style. overruled.
1515 <    lm4RcorrJZBeemm->Draw("histo,same");
1515 > //     lm4RcorrJZBeemm->Draw("histo,same");
1516      DrawPrelim();
1517      TLegend *speciallegBpred = make_legend("",0.45,0.55);
1518      //TLegend *speciallegBpred = make_legend("",0.35,0.55); // paper style. overruled.
# Line 1489 | Line 1522 | void do_prediction_plot(string jzb, TCan
1522      if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) speciallegBpred->AddEntry(sidebandsemu,"Sidebands/e#mu (data)","f");
1523      else speciallegBpred->AddEntry(sidebandsemu,"e#mu (data)","f");
1524   //    speciallegBpred->AddEntry(lm4RcorrJZBeemmC,"LM4","l");
1525 <    speciallegBpred->AddEntry(lm4RcorrJZBeemm,"LM4","l");
1525 > //     speciallegBpred->AddEntry(lm4RcorrJZBeemm,"LM4","l");
1526      speciallegBpred->Draw();
1527      save_with_ratio(JRcorrJZBeemm,JBpred,predcomppad,subdir+"Bpred_Data_____PredictionComposition",true,true,"data/pred",BpredSys);
1528      
# Line 1525 | Line 1558 | void do_prediction_plot(string jzb, TCan
1558      legBpred->AddEntry(Bpred,"MC predicted","l");    
1559      if(versok) legBpred->AddEntry((TObject*)0,"",""); // Just for alignment // causes seg fault on root v5.18
1560      if(versok) legBpred->AddEntry((TObject*)0,"",""); // causes seg fault on root v5.18
1561 <    if ( overlay_signal ) legBpred->AddEntry(lm4RcorrJZBeemm,"LM4","l");
1561 > //     if ( overlay_signal ) legBpred->AddEntry(lm4RcorrJZBeemm,"LM4","l");
1562      legBpred->Draw();
1563      DrawMCPrelim();
1564      Bpredsaveas="Bpred_MC";
# Line 1557 | Line 1590 | void do_prediction_plot(string jzb, TCan
1590        
1591        RcorrJZBeemmNoS->SetLineStyle(2);
1592        legBpred2->AddEntry(RcorrJZBeemmNoS,"MC B","l");
1593 <      legBpred2->AddEntry(lm4RcorrJZBeemm,"MC S","l");
1593 > //       legBpred2->AddEntry(lm4RcorrJZBeemm,"MC S","l");
1594        legBpred2->Draw();
1595        RcorrJZBeemmNoS->SetLineColor(TColor::GetColor("#61210B"));
1596        RcorrJZBeemmNoS->Draw("histo,same");
# Line 1576 | Line 1609 | void do_prediction_plot(string jzb, TCan
1609    //save_with_ratio(JRcorrJZBeemm,JBpred,kinpad,Bpredsaveas,true,use_data!=1,ytitle);
1610    save_with_ratio(JRcorrJZBeemm,JBpred,kinpad,subdir+Bpredsaveas,true,false,ytitle,BpredSys);//not extending the y range anymore up to 4
1611  
1612 +
1613    
1614    flag_this_change(__FUNCTION__,__LINE__,true);//PlottingSetup::RestrictToMassPeak
1615    // The part below is meaningless for the offpeak analysis (it's a comparison of the different estimates but there is but one estimate!)
# Line 1634 | Line 1668 | void do_prediction_plot(string jzb, TCan
1668        legBpredc->AddEntry(Bpredem,"MC OFZP","l");
1669        legBpredc->AddEntry(BpredSBem,"MC OFSB","l");
1670        legBpredc->AddEntry(BpredSBeemm,"MC SFSB","l");
1671 <      if ( overlay_signal ) legBpred->AddEntry(lm4RcorrJZBeemm,"LM4","l");
1671 > //       if ( overlay_signal ) legBpred->AddEntry(lm4RcorrJZBeemm,"LM4","l");
1672        legBpredc->Draw();
1673        CompleteSave(globalcanvas,subdir+"Bpred_MCwithS_comparison");
1674      }
# Line 1670 | Line 1704 | void do_prediction_plot(string jzb, TCan
1704      delete JLcorrJZBSBeemm;
1705    }
1706    if(overlay_signal || use_data==2) delete lm4RcorrJZBeemm;
1673  switch_overunderflow(false);
1707   }
1708  
1709   void do_prediction_plots(string mcjzb, string datajzb, float DataSigma, float MCSigma, bool overlay_signal ) {
1710 +  switch_overunderflow(true);
1711    TCanvas *globalcanvas = new TCanvas("globalcanvas","Prediction Canvas");
1712    do_prediction_plot(datajzb,globalcanvas,jzbHigh ,data,overlay_signal);
1713    if ( !PlottingSetup::Approved ) {
# Line 1682 | Line 1716 | void do_prediction_plots(string mcjzb, s
1716    } else {
1717      write_info(__FUNCTION__,"You set approved to true, therefore not producing prediction/observation plots for MC with and without signal.");
1718    }
1719 < }
1720 <
1687 < void do_ratio_plot(int is_data,vector<float> binning, string jzb, TCanvas *can, float high=-9999) {
1688 <  bool do_data=0;
1689 <  bool dosignal=0;
1690 <  if(is_data==1) do_data=1;
1691 <  if(is_data==2) dosignal=1;
1692 <  TH1F *RcorrJZBeemm   = allsamples.Draw("RcorrJZBeemm",jzb.c_str(),binning, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,do_data, luminosity,dosignal);
1693 <  TH1F *LcorrJZBeemm   = allsamples.Draw("LcorrJZBeemm",("-"+jzb).c_str(),binning, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,do_data, luminosity,dosignal);
1694 <  TH1F *RcorrJZBem     = allsamples.Draw("RcorrJZBem",jzb.c_str(),binning, "JZB [GeV]", "events", cutmass&&cutOSOF&&cutnJets,do_data, luminosity,dosignal);
1695 <  TH1F *LcorrJZBem     = allsamples.Draw("LcorrJZBem",("-"+jzb).c_str(),binning, "JZB [GeV]", "events", cutmass&&cutOSOF&&cutnJets,do_data, luminosity,dosignal);
1696 <  
1697 <  TH1F *RcorrJZBSBem;
1698 <  TH1F *LcorrJZBSBem;
1699 <  TH1F *RcorrJZBSBeemm;
1700 <  TH1F *LcorrJZBSbeemm;
1701 <  
1702 <  if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) {
1703 <    RcorrJZBSBem   = allsamples.Draw("RcorrJZBSbem",jzb.c_str(),binning, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets,do_data, luminosity,dosignal);
1704 <    LcorrJZBSBem   = allsamples.Draw("LcorrJZBSbem",("-"+jzb).c_str(),binning, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets,do_data, luminosity,dosignal);
1705 <    RcorrJZBSBeemm = allsamples.Draw("RcorrJZBSbeemm",jzb.c_str(),binning, "JZB [GeV]", "events", sidebandcut&&cutOSSF&&cutnJets,do_data, luminosity,dosignal);
1706 <    LcorrJZBSbeemm = allsamples.Draw("LcorrJZBSbeemm",("-"+jzb).c_str(),binning, "JZB [GeV]", "events", sidebandcut&&cutOSSF&&cutnJets,do_data, luminosity,dosignal);
1707 <  }
1708 <  
1709 <
1710 <
1711 <
1712 <  flag_this_change(__FUNCTION__,__LINE__,true);//PlottingSetup::RestrictToMassPeak
1713 <  TH1F *Bpred = (TH1F*)LcorrJZBeemm->Clone("Bpred");
1714 <  if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) {
1715 <    Bpred->Add(RcorrJZBem,1.0/3);
1716 <    Bpred->Add(LcorrJZBem,-1.0/3);
1717 <    Bpred->Add(RcorrJZBSBem,1.0/3);
1718 <    Bpred->Add(LcorrJZBSBem,-1.0/3);
1719 <    Bpred->Add(RcorrJZBSBeemm,1.0/3);
1720 <    Bpred->Add(LcorrJZBSbeemm,-1.0/3);
1721 <  } else {
1722 <    Bpred->Add(RcorrJZBem,1.0);
1723 <    Bpred->Add(LcorrJZBem,-1.0);
1724 <  }
1725 <
1726 <  can->cd();
1727 <  can->SetLogy(0);
1728 <  Bpred->SetLineColor(kRed);
1729 <  Bpred->SetStats(0);
1730 <  if(high>0) Bpred->GetXaxis()->SetRangeUser(0,high);
1731 <  TH1F *JZBratioforfitting=(TH1F*)RcorrJZBeemm->Clone("JZBratioforfitting");
1732 <  JZBratioforfitting->Divide(Bpred);
1733 <  TGraphAsymmErrors *JZBratio = histRatio(RcorrJZBeemm,Bpred,is_data,binning,false);
1734 <  
1735 <  
1736 <  JZBratio->SetTitle("");
1737 <  JZBratio->GetYaxis()->SetRangeUser(0.0,9.0);
1738 < //  if(is_data==1) JZBratio->GetXaxis()->SetRangeUser(0,jzbHigh );
1739 <  
1740 <  TF1 *pol0 = new TF1("pol0","[0]",0,1000);
1741 <  TF1 *pol0d = new TF1("pol0","[0]",0,1000);
1742 < //  straightline_fit->SetParameter(0,1);
1743 <  JZBratioforfitting->Fit(pol0,"Q0R","",0,30);
1744 <  pol0d->SetParameter(0,pol0->GetParameter(0));
1745 <  
1746 <  JZBratio->GetYaxis()->SetTitle("Observed/Predicted");
1747 <  JZBratio->GetXaxis()->SetTitle("JZB [GeV]");
1748 <  if ( high>0 ) JZBratio->GetXaxis()->SetRangeUser(0.0,high);
1749 <  JZBratio->GetYaxis()->SetNdivisions(519);
1750 <  JZBratio->GetYaxis()->SetRangeUser(0.0,4.0);
1751 <  JZBratio->GetYaxis()->CenterTitle();
1752 <  JZBratio->GetXaxis()->CenterTitle();
1753 <  JZBratio->SetMarkerSize(DataMarkerSize);
1754 <  JZBratio->Draw("AP");
1755 <  /////----------------------------
1756 <  TPaveText *writeresult = new TPaveText(0.15,0.78,0.49,0.91,"blNDC");
1757 <  writeresult->SetFillStyle(4000);
1758 <  writeresult->SetFillColor(kWhite);
1759 <  writeresult->SetTextFont(42);
1760 <  writeresult->SetTextSize(0.03);
1761 <  writeresult->SetTextAlign(12);
1762 <  ostringstream jzb_agreement_data_text;
1763 <  jzb_agreement_data_text<< setprecision(2) << "mean =" << pol0->GetParameter(0) << " #pm " << setprecision(1) <<  pol0->GetParError(0);
1764 <  if(is_data==1) fitresultconstdata=pol0->GetParameter(0);// data
1765 <  if(is_data==0) fitresultconstmc=pol0->GetParameter(0); // monte carlo, no signal
1766 < /*  if(is_data) writeresult->AddText("Data closure test");
1767 <  else writeresult->AddText("MC closure test");
1768 <  */
1769 <  writeresult->AddText(jzb_agreement_data_text.str().c_str());
1770 < //  writeresult->Draw("same");
1771 < //  pol0d->Draw("same");
1772 <  TF1 *topline =  new TF1("","1.5",0,1000);
1773 <  TF1 *bottomline =  new TF1("","0.5",0,1000);
1774 <  topline->SetLineColor(kBlue);
1775 <  topline->SetLineStyle(2);
1776 <  bottomline->SetLineColor(kBlue);
1777 <  bottomline->SetLineStyle(2);
1778 < //  topline->Draw("same");
1779 < //  bottomline->Draw("same");
1780 <  TF1 *oneline = new TF1("","1.0",0,1000);
1781 <  oneline->SetLineColor(kBlue);
1782 <  oneline->SetLineStyle(1);
1783 <  oneline->Draw("same");
1784 <  TLegend *phony_leg = make_legend("ratio",0.6,0.55,false);//this line is just to have the default CMS Preliminary (...) on the canvas as well.
1785 <  if(is_data==1) DrawPrelim();
1786 <  else DrawMCPrelim();
1787 <  TLegend *leg = new TLegend(0.55,0.75,0.89,0.89);
1788 <  leg->SetTextFont(42);
1789 <  leg->SetTextSize(0.04);
1790 < //   if(is_data==1) leg->SetHeader("Ratio (data)");
1791 < //   else leg->SetHeader("Ratio (MC)");
1792 <
1793 <  TString MCtitle("MC ");
1794 <  if (is_data==1) MCtitle = "";
1795 <
1796 <  leg->SetFillStyle(4000);
1797 <  leg->SetFillColor(kWhite);
1798 <  leg->SetTextFont(42);
1799 < //  leg->AddEntry(topline,"+20\% sys envelope","l");
1800 <  leg->AddEntry(JZBratio,MCtitle+"obs / "+MCtitle+"pred","p");
1801 <  leg->AddEntry(oneline,"ratio = 1","l");
1802 < //  leg->AddEntry(pol0d,"fit in [0,30] GeV","l");
1803 < //  leg->AddEntry(bottomline,"#pm50% envelope","l");
1804 <
1805 <
1806 <  //leg->Draw("same"); // no longer drawing legend
1807 <
1808 <  if(is_data==1) CompleteSave(can, "jzb_ratio_data");
1809 <  if(is_data==0) CompleteSave(can, "jzb_ratio_mc");
1810 <  if(is_data==2) CompleteSave(can, "jzb_ratio_mc_BandS");//special case, MC with signal!
1811 <  
1812 <  delete RcorrJZBeemm;
1813 <  delete LcorrJZBeemm;
1814 <  delete RcorrJZBem;
1815 <  delete LcorrJZBem;
1816 <  
1817 <  delete RcorrJZBSBem;
1818 <  delete LcorrJZBSBem;
1819 <  delete RcorrJZBSBeemm;
1820 <  delete LcorrJZBSbeemm;
1821 < }
1822 <
1823 < void do_ratio_plots(string mcjzb,string datajzb,vector<float> ratio_binning) {
1824 <  TCanvas *globalc = new TCanvas("globalc","Ratio Plot Canvas");
1825 <  globalc->SetLogy(0);
1826 <  
1827 <  do_ratio_plot(mc,ratio_binning,mcjzb,globalc, jzbHigh  );
1828 <  do_ratio_plot(data,ratio_binning,datajzb,globalc, jzbHigh  );
1829 <  do_ratio_plot(mcwithsignal,ratio_binning,mcjzb,globalc, jzbHigh  );
1719 >  delete globalcanvas;
1720 >  switch_overunderflow(false);
1721   }
1722  
1723   string give_jzb_expression(float peak, int type) {
# Line 2094 | Line 1985 | void produce_stretched_jzb_plots(string
1985    
1986  
1987   void diboson_plots(string mcjzb, string datajzb,vector<float> ratio_binning) {
1988 +  switch_overunderflow(true);
1989    vector<int> SamplesToBeModified = allsamples.FindSampleBySampleName("WW/WZ/ZZ");
1990    
1991    if(SamplesToBeModified.size()==0 || SamplesToBeModified[0]==-1) {
# Line 2133 | Line 2025 | void diboson_plots(string mcjzb, string
2025      dout << "     Reset xs for sample " << (allsamples.collection)[SamplesToBeModified[i]].samplename << " from " << Upxs << " to " << (allsamples.collection)[SamplesToBeModified[i]].xs << " (by a factor of " << stretchfactor << ") and reset the correct name (from " << Upname << ")" << endl;
2026      
2027    }
2028 <  
2028 > //   switch_overunderflow(false);
2029   }
2030  
2031  
# Line 2168 | Line 2060 | void draw_normalized_data_vs_data_histo(
2060  
2061  
2062   void jzb_plots(string mcjzb, string datajzb,vector<float> ratio_binning) {
2063 +  switch_overunderflow(true);
2064    TCanvas *can = new TCanvas("can","JZB Plots Canvas");
2065    float max=jzbHigh ;
2066    float min=-120;
# Line 2204 | Line 2097 | void jzb_plots(string mcjzb, string data
2097      if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) draw_pure_jzb_histo(cutOSOF&&cutnJets&&sidebandcut,datajzb,mcjzb,"jzb_OS_OFSB_coarse",can,coarse_binning);
2098    }
2099    delete can;
2100 +  switch_overunderflow(false);
2101   }
2102  
2103  
# Line 2744 | Line 2638 | void ttbar_sidebands_comparison(string m
2638    //in the case of the on peak analysis, we compare the 3 control regions to the real value
2639    //in the case of the OFF peak analysis, we compare our control region to the real value
2640    TCut weightbackup=cutWeight;
2641 +  switch_overunderflow(true);
2642    
2643    bool doPURW=false;
2644    
# Line 2810 | Line 2705 | void ttbar_sidebands_comparison(string m
2705      histos.push_back(TSem);
2706      histos.push_back(TSeemm);
2707    }
2708 <  draw_all_ttbar_histos(tcan,histos,"histo",1);
2708 >  draw_all_ttbar_histos(tcan,histos,"histo",8);
2709    
2710    TLegend *leg = make_legend("MC t#bar{t}",0.6,0.65,false);
2711    leg->AddEntry(TZeemm,"SFZP","l");
# Line 2822 | Line 2717 | void ttbar_sidebands_comparison(string m
2717    leg->Draw("same");
2718    DrawMCPrelim(simulatedlumi);
2719    CompleteSave(tcan,"Systematics/"+prestring+"/ttbar_shape_comparison");
2720 +  
2721    TH1F *TZemcopy = (TH1F*)TZem->Clone("TZemcopy");
2722    TH1F *TZeemmcopy = (TH1F*)TZeemm->Clone("TZeemmcopy");
2723    TH1F *TSeemmcopy;
# Line 2887 | Line 2783 | void ttbar_sidebands_comparison(string m
2783    DrawMCPrelim(simulatedlumi);
2784    CompleteSave(tcan,"Systematics/"+prestring+"/ttbar_shape_comparison_ratio");
2785    
2786 +  
2787    if (0) { // Turn this off: we don't need this
2788  
2789      ///-------------- second part: only look at the quantity we actually care about!
# Line 2992 | Line 2889 | void ttbar_sidebands_comparison(string m
2889  
2890    delete tcan;
2891    cutWeight=weightbackup;
2892 +  switch_overunderflow(false);
2893   }
2894  
2895   void ttbar_sidebands_comparison(string mcjzb, vector<float> jzb_binning) {
# Line 3026 | Line 2924 | void ttbar_sidebands_comparison(string m
2924    nicer_binning.push_back(150);
2925    //nicer_binning.push_back(175);
2926    nicer_binning.push_back(200);
2927 <  nicer_binning.push_back(250);
2928 <  nicer_binning.push_back(300);
2929 <  nicer_binning.push_back(400);
2927 > //  nicer_binning.push_back(250);
2928 > //  nicer_binning.push_back(300);
2929 > //  nicer_binning.push_back(400);
2930    
2931    ttbar_sidebands_comparison(mcjzb,nicer_binning, "ttbar/");
2932   }
2933  
2934  
2935   void zjets_prediction_comparison(string mcjzbWithPUa) {
2936 +  cout << "****************************************************************************************************************************************************************" << endl;
2937    TCanvas *zcan = new TCanvas("zcan","zcan");  
2938   //  zcan->SetLogy(1);
2939    TCut weightbackup=cutWeight;
2940    
2941 <  bool UsePURW=false;
2941 >  bool UsePURW=true;
2942    
2943    
2944    string mcjzb;
2945    if(UsePURW) {
2946      mcjzb=mcjzbWithPUa;
2947 +    cout << "Using PURW peak positions" << endl;
2948    } else {
2949      // Do it without PU re-weighting
2950 +    cutWeight="1.0";
2951      float MCPeakNoPU=0,MCPeakErrorNoPU=0,DataPeakNoPU=0,DataPeakErrorNoPU=0,MCSigma=0,DataSigma=0;
2952      stringstream resultsNoPU;
2953      stringstream noPUdatajzb;
# Line 3057 | Line 2958 | void zjets_prediction_comparison(string
2958      
2959      mcjzb = noPUmcjzb.str();
2960      
3060    cutWeight="1.0";
2961    }
2962  
2963    
# Line 3081 | Line 2981 | void zjets_prediction_comparison(string
2981    string var( "abs("+mcjzb+")" );
2982    
2983    TCut notTau("abs(genMID1)!=15");
2984 <  TCut ONLYTau("mll>20");
2984 >  TCut ee_mm_tautau("mll>0");
2985    
2986  
2987    TH1F *hJZBpos = systsamples.Draw("hJZBpos",var,binning, "JZB [GeV]", "events",cutmass&&cutOSSF&&cutnJets&&notTau&&kPos,mc,simulatedlumi,systsamples.FindSample("/DY"));
# Line 3110 | Line 3010 | void zjets_prediction_comparison(string
3010    }
3011    
3012    zcan->SetLogy(0);
3013 <  hratio->GetYaxis()->SetRangeUser(0,2.0);
3013 >  hratio->GetYaxis()->SetRangeUser(0,2.5);
3014    hratio->GetYaxis()->SetTitle("Observed/Predicted");
3015    hratio->Draw("e1");
3016    
# Line 3136 | Line 3036 | void zjets_prediction_comparison(string
3036    
3037    TCut reducedNJets(cutnJets);
3038    
3039 <  TH1F *TAUhJZBpos = systsamples.Draw("TAUhJZBpos",var,binning, "JZB [GeV]", "events",cutmass&&cutOSSF&&reducedNJets&&ONLYTau&&kPos,mc,simulatedlumi,systsamples.FindSample("/DY"));
3040 <  TH1F *LcorrJZBeemm     = systsamples.Draw("LcorrJZBeemm",var,binning, "JZB [GeV]", "events",cutmass&&cutOSSF&&reducedNJets&&ONLYTau&&kNeg,mc,simulatedlumi,systsamples.FindSample("/DY"));
3041 <  TH1F *RcorrJZBem       = systsamples.Draw("RcorrJZBem",var,binning, "JZB [GeV]", "events",cutmass&&cutOSOF&&reducedNJets&&ONLYTau&&kPos,mc,simulatedlumi,systsamples.FindSample("/DY"));
3042 <  TH1F *LcorrJZBem       = systsamples.Draw("LcorrJZBem",var,binning, "JZB [GeV]", "events",cutmass&&cutOSOF&&reducedNJets&&ONLYTau&&kNeg,mc,simulatedlumi,systsamples.FindSample("/DY"));
3039 >  TH1F *TAUhJZBpos = systsamples.Draw("TAUhJZBpos",var,binning, "JZB [GeV]", "events",cutmass&&cutOSSF&&reducedNJets&&ee_mm_tautau&&kPos,mc,simulatedlumi,systsamples.FindSample("/DY"));
3040 >  TH1F *LcorrJZBeemm     = systsamples.Draw("LcorrJZBeemm",var,binning, "JZB [GeV]", "events",cutmass&&cutOSSF&&reducedNJets&&ee_mm_tautau&&kNeg,mc,simulatedlumi,systsamples.FindSample("/DY"));
3041 >  TH1F *RcorrJZBem       = systsamples.Draw("RcorrJZBem",var,binning, "JZB [GeV]", "events",cutmass&&cutOSOF&&reducedNJets&&ee_mm_tautau&&kPos,mc,simulatedlumi,systsamples.FindSample("/DY"));
3042 >  TH1F *LcorrJZBem       = systsamples.Draw("LcorrJZBem",var,binning, "JZB [GeV]", "events",cutmass&&cutOSOF&&reducedNJets&&ee_mm_tautau&&kNeg,mc,simulatedlumi,systsamples.FindSample("/DY"));
3043  
3044    TH1F *RcorrJZBSBem;
3045    TH1F *LcorrJZBSBem;
# Line 3147 | Line 3047 | void zjets_prediction_comparison(string
3047    TH1F *LcorrJZBSBeemm;
3048  
3049    if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) {
3050 <    RcorrJZBSBem   = systsamples.Draw("RcorrJZBSBem",var,binning, "JZB [GeV]", "events",sidebandcut&&cutOSOF&&reducedNJets&&ONLYTau&&kPos,mc,simulatedlumi,systsamples.FindSample("/DY"));
3051 <    LcorrJZBSBem   = systsamples.Draw("LcorrJZBSBem",var,binning, "JZB [GeV]", "events",sidebandcut&&cutOSOF&&reducedNJets&&ONLYTau&&kNeg,mc,simulatedlumi,systsamples.FindSample("/DY"));
3052 <    RcorrJZBSBeemm = systsamples.Draw("RcorrJZBSBeemm",var,binning, "JZB [GeV]", "events",sidebandcut&&cutOSSF&&reducedNJets&&ONLYTau&&kPos,mc,simulatedlumi,systsamples.FindSample("/DY"));
3053 <    LcorrJZBSBeemm = systsamples.Draw("LcorrJZBSBeemm",var,binning, "JZB [GeV]", "events",sidebandcut&&cutOSSF&&reducedNJets&&ONLYTau&&kNeg,mc,simulatedlumi,systsamples.FindSample("/DY"));
3050 >    RcorrJZBSBem   = systsamples.Draw("RcorrJZBSBem",var,binning, "JZB [GeV]", "events",sidebandcut&&cutOSOF&&reducedNJets&&ee_mm_tautau&&kPos,mc,simulatedlumi,systsamples.FindSample("/DY"));
3051 >    LcorrJZBSBem   = systsamples.Draw("LcorrJZBSBem",var,binning, "JZB [GeV]", "events",sidebandcut&&cutOSOF&&reducedNJets&&ee_mm_tautau&&kNeg,mc,simulatedlumi,systsamples.FindSample("/DY"));
3052 >    RcorrJZBSBeemm = systsamples.Draw("RcorrJZBSBeemm",var,binning, "JZB [GeV]", "events",sidebandcut&&cutOSSF&&reducedNJets&&ee_mm_tautau&&kPos,mc,simulatedlumi,systsamples.FindSample("/DY"));
3053 >    LcorrJZBSBeemm = systsamples.Draw("LcorrJZBSBeemm",var,binning, "JZB [GeV]", "events",sidebandcut&&cutOSSF&&reducedNJets&&ee_mm_tautau&&kNeg,mc,simulatedlumi,systsamples.FindSample("/DY"));
3054    }
3055    
3056    TH1F *Bpred = (TH1F*)LcorrJZBeemm->Clone("Bpred");
# Line 3199 | Line 3099 | void zjets_prediction_comparison(string
3099    center->Draw("same");
3100    bottom->Draw("same");
3101    
3102 <  TLegend *TAUleg2 = make_legend("MC Z+jets #rightarrow #tau#tau",0.25,0.75,false);
3102 >  TLegend *TAUleg2 = make_legend("MC Z+jets #rightarrow ee,#mu#mu",0.25,0.75,false);
3103    TAUleg2->AddEntry(TAUhratio,"obs / pred","pe");
3104    TAUleg2->AddEntry(bottom,"syst. envelope","l");
3105    TAUleg2->Draw("same");

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