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root/cvsroot/UserCode/MitHzz4l/NonMCBackground/src/plotZPlusFake.cc
Revision: 1.3
Committed: Fri Jul 13 07:44:52 2012 UTC (12 years, 10 months ago) by dkralph
Content type: text/plain
Branch: MAIN
Changes since 1.2: +3 -1 lines
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File Contents

# User Rev Content
1 dkralph 1.1 #include <iostream>
2     #include <algorithm>
3     #include <iomanip>
4     // #include <pair.h>
5    
6     #include "RooHistPdf.h"
7     #include "RooGlobalFunc.h"
8     #include "RooPlot.h"
9     #include "RooRealVar.h"
10     #include "RooDataHist.h"
11     #include "RooGenericPdf.h"
12     #include "RooDataSet.h"
13     #include "RooAddPdf.h"
14     #include "RooFormulaVar.h"
15     #include "RooFitResult.h"
16     #include "RooCurve.h"
17     #include "RooBinning.h"
18     #include "RooExponential.h"
19     #include "RooExtendPdf.h"
20    
21 dkralph 1.2 #include "RunLumiSet.h"
22    
23 dkralph 1.1 #include "TCanvas.h"
24     #include "TChain.h"
25     #include "TString.h"
26     #include "TStyle.h"
27     #include "TH1D.h"
28    
29     #include "CPlot.h"
30     #include "FOArgs.h"
31    
32     #include "fake_defs.h"
33     #include "Various.h"
34     #include "CommonDefs.h"
35 dkralph 1.2 #include "PlotHeaders.h"
36 dkralph 1.1
37     #ifndef CMSSW_BASE
38     #define CMSSW_BASE "../../"
39     #endif
40    
41     using namespace std;
42     using namespace RooFit;
43    
44     TCanvas *can;
45    
46     void fillHist(CSample *cs, TString channel, TString type, TString var, double val, double wgt, double wgt_lo=0, double wgt_hi=0);
47 dkralph 1.2 void makeHTML(FOFlags &ctrl, TString type, TString plotLabel);
48 dkralph 1.1 map<TString,map<TString,TH1D*>* > init_hists(FOFlags &ctrl, TString str="");
49     TString f_to_a(double val) { stringstream ss; ss << fixed << setprecision(2) << val; return TString(ss.str().c_str()); }
50    
51     //----------------------------------------------------------------------------------------
52     int main(int argc, char** argv)
53     {
54     double lumi = 5000;
55    
56     FOFlags ctrl;
57     parse_foargs( argc, argv, ctrl );
58     ctrl.dump();
59    
60     can = new TCanvas("can","can");
61    
62 dkralph 1.2 FR_struct fr2011 = initFRs(ctrl.mufakefile2011,ctrl.elefakefile2011);
63     FR_struct fr2012 = initFRs(ctrl.mufakefile2012,ctrl.elefakefile2012);
64 dkralph 1.1
65     TString cmsswpath(CMSSW_BASE + TString("/src"));
66     string xspath = (string(cmsswpath)+"/MitPhysics/data/xs.dat");
67     SimpleTable xstab(xspath.c_str());
68    
69     vector<CSample*> samplev;
70 dkralph 1.2 TString ntupledir(""),label(""),plotLabel("");
71     readConfigFile(ctrl.config, ntupledir, label, plotLabel, samplev, &ctrl, init_hists);
72 dkralph 1.1
73 dkralph 1.2 RunLumiSet rls;
74     UInt_t minRun=999999999,maxRun=0;
75 dkralph 1.1 for(unsigned ics=0; ics<samplev.size(); ics++) {
76     CSample *cs = samplev[ics];
77     cout << cs->name << endl;
78     for(unsigned ifs=0; ifs<(cs->fsv).size(); ifs++) {
79     filestuff *fs = (cs->fsv)[ifs];
80     cout << "\t" << fs->fname_ << endl;
81 dkralph 1.2 FR_struct *fr = (fs->era_==2011) ? &fr2011 : &fr2012;
82     unsigned nDuplSkipped=0;
83 dkralph 1.1 for(unsigned ientry=0; ientry<fs->getentries("FOtree"); ientry++) {
84     fs->getentry(ientry,"","FOtree");
85     fs->getentry(ientry,"info","zznt");
86 dkralph 1.2
87     if(fs->isdata_) {
88     setMinMaxRun(fs->info->run, minRun, maxRun);
89     bool dupl = takeCareOfDuplicateEvents(fs->info->run, fs->info->evt, rls, nDuplSkipped);
90     if(dupl) continue;
91 dkralph 1.1 }
92    
93     double wgt=1;
94 dkralph 1.2 if(!fs->isdata_) {
95     double xsWgt = lumi*xstab.Get(fs->dataset_)/fs->total_entries_;
96     // double puWgt = weightTrue2012(fs->info->npu);
97     wgt = xsWgt;//*puWgt;
98     // cout << "npu: " << fs->info->npu
99     }
100    
101     if(fs->info->met > 25) continue;
102 dkralph 1.1
103     unsigned npass = fs->passingL->size();
104     unsigned nfail = fs->failingL->size();
105    
106     float best_z_mass = -99999;
107     pair<int,int> best_z_indices;
108     for(unsigned ilep1=0; ilep1<npass; ilep1++) {
109     SimpleLepton lep1 = (*fs->passingL)[ilep1];
110     for(unsigned ilep2=ilep1+1; ilep2<npass; ilep2++) {
111     SimpleLepton lep2 = (*fs->passingL)[ilep2];
112     if(abs(lep1.type) != abs(lep2.type)) continue;
113     if(lep1.charge == lep2.charge) continue;
114    
115     if(lep1.vec.Pt() < 20 && lep2.vec.Pt() < 20) continue;
116     if(lep1.vec.Pt() < 10 || lep2.vec.Pt() < 10) continue;
117    
118     float tmpM = ((lep1.vec)+(lep2.vec)).M();
119     if( fabs(tmpM-Z_MASS) < fabs(best_z_mass-Z_MASS) ) {
120     best_z_mass = tmpM;
121     best_z_indices = pair<int,int> (ilep1,ilep2);
122     }
123     }
124     }
125     assert( best_z_mass != 0 );
126     if( best_z_mass < 80 || best_z_mass > 100 ) continue;
127     EventData evtdata;
128     evtdata.Z1leptons.push_back((*fs->passingL)[best_z_indices.first]);
129     evtdata.Z1leptons.push_back((*fs->passingL)[best_z_indices.second]);
130    
131     //
132     // Look extra leptons
133     //
134     vector<SimpleLepton> ex_leps;
135     vector<TString> types;
136     for(unsigned ipass=0; ipass<npass; ipass++) {
137     SimpleLepton ex_lep = (*fs->passingL)[ipass];
138     if(ipass == best_z_indices.first) continue;
139     if(ipass == best_z_indices.second) continue;
140     ex_leps.push_back(ex_lep);
141     types.push_back("pass");
142     }
143     for(unsigned ifail=0; ifail<nfail; ifail++) {
144     SimpleLepton ex_lep = (*fs->failingL)[ifail];
145     ex_leps.push_back(ex_lep);
146     types.push_back("fail");
147     }
148    
149 dkralph 1.2 if(npass>3) continue;
150    
151 dkralph 1.1 for(unsigned iextra=0; iextra<ex_leps.size(); iextra++) {
152     SimpleLepton ex_lep = ex_leps[iextra];
153    
154 dkralph 1.2 if(types[iextra]=="fail" && npass>2) continue;
155 dkralph 1.3 SimpleLepton lep1=evtdata.Z1leptons[0],lep2=evtdata.Z1leptons[1];
156     if( dr(lep1,ex_lep) < 0.3) continue;
157     if( dr(lep2,ex_lep) < 0.3) continue;
158 dkralph 1.2
159    
160 dkralph 1.1 TString channel;
161     if(abs(ex_lep.type) == 13) channel = "mu";
162     if(abs(ex_lep.type) == 11) channel = "ele";
163    
164     // if( !(fabs(lep1.ip3dSig) > 3. &&
165     // fabs(lep2.ip3dSig) > 5.) &&
166     // !(fabs(lep2.ip3dSig) > 3. &&
167     // fabs(lep1.ip3dSig) > 5.) ) continue;
168    
169     evtdata.Z2leptons.clear();
170     //????????????????????????????????????????????????????????????????????????????????????????
171     // hack:
172     evtdata.Z2leptons.push_back((*fs->passingL)[best_z_indices.first]);
173     evtdata.Z2leptons.push_back((*fs->passingL)[best_z_indices.second]);
174     //????????????????????????????????????????????????????????????????????????????????????????
175     KinematicsStruct kine;
176     fillKinematics(evtdata,kine);
177 dkralph 1.2 TLorentzVector l1l3(lep1.vec+ex_lep.vec);
178     TLorentzVector l2l3(lep2.vec+ex_lep.vec);
179 dkralph 1.1
180     if(types[iextra]=="pass") {
181     fillHist( cs, channel, "obs", "run", fs->info->run , wgt);
182     fillHist( cs, channel, "obs", "mZ1", kine.mZ1 , wgt);
183     fillHist( cs, channel, "obs", "Z1pt", kine.Z1pt , wgt);
184 dkralph 1.2 fillHist( cs, channel, "obs", "ip3ds_l1", lep1.ip3dSig , wgt);
185     fillHist( cs, channel, "obs", "ip3ds_l2", lep2.ip3dSig , wgt);
186     fillHist( cs, channel, "obs", "ip3ds_l3", ex_lep.ip3dSig , wgt);
187     fillHist( cs, channel, "obs", "pt_l1", lep1.vec.Pt() , wgt);
188     fillHist( cs, channel, "obs", "pt_l2", lep2.vec.Pt() , wgt);
189 dkralph 1.1 fillHist( cs, channel, "obs", "pt_l3", ex_lep.vec.Pt() , wgt);
190 dkralph 1.2 fillHist( cs, channel, "obs", "pt_l3_lo", ex_lep.vec.Pt() , wgt);
191     fillHist( cs, channel, "obs", "eta_l1", lep1.vec.Eta(), wgt);
192     fillHist( cs, channel, "obs", "eta_l2", lep2.vec.Eta(), wgt);
193     fillHist( cs, channel, "obs", "eta_l3", ex_lep.vec.Eta(), wgt);
194     fillHist( cs, channel, "obs", "dR_l1l3_lo",dr(lep1,ex_lep), wgt);
195     fillHist( cs, channel, "obs", "dR_l1l3", dr(lep1,ex_lep), wgt);
196     fillHist( cs, channel, "obs", "dR_l2l3_lo",dr(lep2,ex_lep), wgt);
197     fillHist( cs, channel, "obs", "dR_l2l3", dr(lep2,ex_lep), wgt);
198     fillHist( cs, channel, "obs", "ml1l3", l1l3.M(), wgt);
199     fillHist( cs, channel, "obs", "ml2l3", l2l3.M(), wgt);
200     fillHist( cs, channel, "obs", "met", fs->info->met, wgt);
201 dkralph 1.1 } else if(types[iextra]=="fail") {
202 dkralph 1.2 double fwgt = get_fake_weight("",ex_lep,*fr);
203     double fwgt_lo = get_fake_weight("lo",ex_lep,*fr);
204     double fwgt_hi = get_fake_weight("hi",ex_lep,*fr);
205 dkralph 1.1 double centr = wgt*fwgt;
206     double lo = wgt*fwgt_lo;
207     double hi = wgt*fwgt_hi;
208 dkralph 1.2
209     fillHist( cs, channel, "pred", "run", fs->info->run, centr, lo, hi);
210     fillHist( cs, channel, "pred", "mZ1", kine.mZ1, centr, lo, hi);
211     fillHist( cs, channel, "pred", "Z1pt", kine.Z1pt, centr, lo, hi);
212     fillHist( cs, channel, "pred", "ip3ds_l1", lep1.ip3dSig, centr, lo, hi);
213     fillHist( cs, channel, "pred", "ip3ds_l2", lep2.ip3dSig, centr, lo, hi);
214     fillHist( cs, channel, "pred", "ip3ds_l3", ex_lep.ip3dSig, centr, lo, hi);
215     fillHist( cs, channel, "pred", "pt_l1", lep1.vec.Pt(), centr, lo, hi);
216     fillHist( cs, channel, "pred", "pt_l2", lep2.vec.Pt(), centr, lo, hi);
217     fillHist( cs, channel, "pred", "pt_l3", ex_lep.vec.Pt(), centr, lo, hi);
218     fillHist( cs, channel, "pred", "pt_l3_lo", ex_lep.vec.Pt(), centr, lo, hi);
219     fillHist( cs, channel, "pred", "eta_l1", lep1.vec.Eta(), centr, lo, hi);
220     fillHist( cs, channel, "pred", "eta_l2", lep2.vec.Eta(), centr, lo, hi);
221     fillHist( cs, channel, "pred", "eta_l3", ex_lep.vec.Eta(), centr, lo, hi);
222     fillHist( cs, channel, "pred", "dR_l1l3_lo",dr(lep1,ex_lep), centr, lo, hi);
223     fillHist( cs, channel, "pred", "dR_l1l3", dr(lep1,ex_lep), centr, lo, hi);
224     fillHist( cs, channel, "pred", "dR_l2l3_lo",dr(lep2,ex_lep), centr, lo, hi);
225     fillHist( cs, channel, "pred", "dR_l2l3", dr(lep2,ex_lep), centr, lo, hi);
226     fillHist( cs, channel, "pred", "ml1l3", l1l3.M(), centr, lo, hi);
227     fillHist( cs, channel, "pred", "ml2l3", l2l3.M(), centr, lo, hi);
228     fillHist( cs, channel, "pred", "met", fs->info->met, centr, lo, hi);
229 dkralph 1.1 } else assert(0);
230     }
231     }
232 dkralph 1.2 cout << "\t\tWARNING: skipped " << nDuplSkipped << " duplicate events" << endl;
233 dkralph 1.1 }
234     }
235 dkralph 1.2 cout << "run range: " << setw(12) << minRun << setw(12) << maxRun << endl;
236 dkralph 1.1
237     assert(samplev.size()>0);
238     vector<TString> typev;
239     typev.push_back("both");
240     typev.push_back("mu");
241     typev.push_back("ele");
242     for(unsigned itype=0; itype<typev.size(); itype++) {
243     TString type(typev[itype]);
244 dkralph 1.2 gSystem->mkdir(ctrl.outdir+"/"+plotLabel+"/"+type,true);
245     TFile runHistFile(ctrl.outdir+"/"+plotLabel+"/"+type+"/runs.root","recreate");
246 dkralph 1.1 map<TString,TH1D*>::iterator it_v;
247     for(it_v=(*(samplev[0]->hists)[type+"_obs"]).begin(); it_v!=(*(samplev[0]->hists)[type+"_obs"]).end(); it_v++) {
248     TString var((*it_v).first);
249 dkralph 1.2 CPlot cplot(var,"",(*(samplev[0]->hists)[type+"_obs"])[var]->GetXaxis()->GetTitle(),"events",ctrl.outdir+"/"+plotLabel+"/"+type+"/plots");
250     double ymax=0;
251 dkralph 1.1 for(unsigned isam=0; isam<samplev.size(); isam++) {
252     CSample *cs = samplev[isam];
253     TH1D *hObs = (*(cs->hists)[type+"_obs"])[var];
254     TH1D *hPred = (*(cs->hists)[type+"_pred"])[var];
255     TH1D *hPred_lo = (*(cs->hists)[type+"_pred_lo"])[var];
256     TH1D *hPred_hi = (*(cs->hists)[type+"_pred_hi"])[var];
257     if(cs->isdata) {
258 dkralph 1.2 cplot.AddHist1D(hObs,cs->legend+": "+integral_str(hObs),"E");
259 dkralph 1.1 double ratio = integrateHist(hObs) / integrateHist(hPred);
260     cplot.AddHist1D(hPred,"FR predic: "+integral_str(hPred),"hist",kRed);
261     cplot.AddHist1D(hPred_lo,"stat lo: "+integral_str(hPred_lo),"hist",kRed,kDashed);
262     cplot.AddHist1D(hPred_hi,"stat hi: "+integral_str(hPred_hi),"hist",kRed,kDashed);
263 dkralph 1.2 ymax = max(ymax,histMax(hObs,hPred));
264 dkralph 1.1 } else {
265 dkralph 1.2 cplot.AddToStack(hObs,cs->legend+": "+integral_str(hObs),kCyan-6);
266     ymax = max(ymax,histMax(hObs,hPred));
267 dkralph 1.1 }
268     if(cs->isdata && var=="run") {
269     assert(hObs->GetBinContent(0)==0 && hObs->GetBinContent(hObs->GetXaxis()->GetNbins()+1)==0);
270     hObs->Write("runs");
271     }
272     if(var.Contains("ip3d")) {
273     double maxVal = max(hObs->GetMaximum(), hPred->GetMaximum());
274     double isoMin = 0.00005*maxVal;
275     double isoMax = 1.8*maxVal;
276     cplot.SetYRange(isoMin,isoMax);
277 dkralph 1.2 cplot.SetLogy();
278     } else {
279     cplot.SetYRange(0,1.2*ymax);
280 dkralph 1.1 }
281 dkralph 1.2
282 dkralph 1.1 }
283     cplot.Draw(can,true,"png");
284     }
285     runHistFile.Close();
286 dkralph 1.2 makeHTML(ctrl,type, plotLabel);
287 dkralph 1.1 }
288     }
289     //----------------------------------------------------------------------------------------
290     map<TString,map<TString,TH1D*>* > init_hists(FOFlags &ctrl, TString str)
291     {
292     map<TString,map<TString,TH1D*>* > hists;
293    
294     map<TString,TH1D*> *h_mu_obs = new map<TString,TH1D*>; hists["mu_obs"] = h_mu_obs;
295     map<TString,TH1D*> *h_mu_pred = new map<TString,TH1D*>; hists["mu_pred"] = h_mu_pred;
296     map<TString,TH1D*> *h_mu_pred_lo = new map<TString,TH1D*>; hists["mu_pred_lo"] = h_mu_pred_lo;
297     map<TString,TH1D*> *h_mu_pred_hi = new map<TString,TH1D*>; hists["mu_pred_hi"] = h_mu_pred_hi;
298    
299     map<TString,TH1D*> *h_ele_obs = new map<TString,TH1D*>; hists["ele_obs"] = h_ele_obs;
300     map<TString,TH1D*> *h_ele_pred = new map<TString,TH1D*>; hists["ele_pred"] = h_ele_pred;
301     map<TString,TH1D*> *h_ele_pred_lo = new map<TString,TH1D*>; hists["ele_pred_lo"] = h_ele_pred_lo;
302     map<TString,TH1D*> *h_ele_pred_hi = new map<TString,TH1D*>; hists["ele_pred_hi"] = h_ele_pred_hi;
303    
304     map<TString,TH1D*> *h_both_obs = new map<TString,TH1D*>; hists["both_obs"] = h_both_obs;
305     map<TString,TH1D*> *h_both_pred = new map<TString,TH1D*>; hists["both_pred"] = h_both_pred;
306     map<TString,TH1D*> *h_both_pred_lo = new map<TString,TH1D*>; hists["both_pred_lo"] = h_both_pred_lo;
307     map<TString,TH1D*> *h_both_pred_hi = new map<TString,TH1D*>; hists["both_pred_hi"] = h_both_pred_hi;
308    
309     map<TString,map<TString,TH1D*>* >::iterator it_h;
310     for(it_h=hists.begin(); it_h!=hists.end(); it_h++) {
311     (*((*it_h).second))["run"] = new TH1D(TString("run") +"_"+(*it_h).first+str,";#bf{run};", 50,160800,196535); (*((*it_h).second))["run"]->Sumw2();
312 dkralph 1.2 (*((*it_h).second))["mZ1"] = new TH1D(TString("mZ1") +"_"+(*it_h).first+str,";#bf{mZ1 [GeV]};", 37,70,110); (*((*it_h).second))["mZ1"]->Sumw2();
313     (*((*it_h).second))["Z1pt"] = new TH1D(TString("Z1pt") +"_"+(*it_h).first+str,";#bf{Z1pt [GeV]};", 37,0,100); (*((*it_h).second))["Z1pt"]->Sumw2();
314 dkralph 1.1
315     (*((*it_h).second))["pt_l1"] = new TH1D(TString("pt_l1") +"_"+(*it_h).first+str,";#bf{l1 p_{T} [GeV]};", 37,0,120); (*((*it_h).second))["pt_l1"]->Sumw2();
316 dkralph 1.2 (*((*it_h).second))["pt_l2"] = new TH1D(TString("pt_l2") +"_"+(*it_h).first+str,";#bf{l2 p_{T} [GeV]};", 37,0,65); (*((*it_h).second))["pt_l2"]->Sumw2();
317     (*((*it_h).second))["pt_l3_lo"] = new TH1D(TString("pt_l3_lo") +"_"+(*it_h).first+str,";#bf{l3_lo p_{T} [GeV]};",37,3,15); (*((*it_h).second))["pt_l3_lo"]->Sumw2();
318     (*((*it_h).second))["pt_l3"] = new TH1D(TString("pt_l3") +"_"+(*it_h).first+str,";#bf{l3 p_{T} [GeV]};", 37,10,40); (*((*it_h).second))["pt_l3"]->Sumw2();
319 dkralph 1.1
320     (*((*it_h).second))["eta_l1"] = new TH1D(TString("eta_l1")+"_"+(*it_h).first+str,";#bf{l1 #eta};", 25,-2.5,2.5); (*((*it_h).second))["eta_l1"]->Sumw2();
321     (*((*it_h).second))["eta_l2"] = new TH1D(TString("eta_l2")+"_"+(*it_h).first+str,";#bf{l2 #eta};", 25,-2.5,2.5); (*((*it_h).second))["eta_l2"]->Sumw2();
322     (*((*it_h).second))["eta_l3"] = new TH1D(TString("eta_l3")+"_"+(*it_h).first+str,";#bf{l3 #eta};", 25,-2.5,2.5); (*((*it_h).second))["eta_l3"]->Sumw2();
323    
324     (*((*it_h).second))["ip3ds_l1"] = new TH1D(TString("ip3ds_l1") +"_"+(*it_h).first+str,";#bf{ip3ds l1};",30,0,10); (*((*it_h).second))["ip3ds_l1"]->Sumw2();
325     (*((*it_h).second))["ip3ds_l2"] = new TH1D(TString("ip3ds_l2") +"_"+(*it_h).first+str,";#bf{ip3ds l2};",30,0,10); (*((*it_h).second))["ip3ds_l2"]->Sumw2();
326     (*((*it_h).second))["ip3ds_l3"] = new TH1D(TString("ip3ds_l3") +"_"+(*it_h).first+str,";#bf{ip3ds l3};",30,0,8); (*((*it_h).second))["ip3ds_l3"]->Sumw2();
327 dkralph 1.2
328     (*((*it_h).second))["dR_l1l3_lo"] = new TH1D(TString("dR_l1l3_lo") +"_"+(*it_h).first+str,";#bf{#Delta R l3,l4};",75,0,.2); (*((*it_h).second))["dR_l1l3_lo"]->Sumw2();
329     (*((*it_h).second))["dR_l1l3"] = new TH1D(TString("dR_l1l3") +"_"+(*it_h).first+str,";#bf{#Delta R l3,l4};",75,0,6); (*((*it_h).second))["dR_l1l3"]->Sumw2();
330     (*((*it_h).second))["dR_l2l3_lo"] = new TH1D(TString("dR_l2l3_lo") +"_"+(*it_h).first+str,";#bf{#Delta R l3,l4};",75,0,.2); (*((*it_h).second))["dR_l2l3_lo"]->Sumw2();
331     (*((*it_h).second))["dR_l2l3"] = new TH1D(TString("dR_l2l3") +"_"+(*it_h).first+str,";#bf{#Delta R l3,l4};",75,0,6); (*((*it_h).second))["dR_l2l3"]->Sumw2();
332    
333     (*((*it_h).second))["ml1l3"] = new TH1D(TString("ml1l3") +"_"+(*it_h).first+str,";#bf{m_{l1l3} [GeV]};",50,0,120); (*((*it_h).second))["ml1l3"]->Sumw2();
334     (*((*it_h).second))["ml2l3"] = new TH1D(TString("ml2l3") +"_"+(*it_h).first+str,";#bf{m_{l2l3} [GeV]};",50,0,120); (*((*it_h).second))["ml2l3"]->Sumw2();
335    
336     (*((*it_h).second))["met"] = new TH1D(TString("met") +"_"+(*it_h).first+str,";#bf{m_{l2l3} [GeV]};",50,0,50); (*((*it_h).second))["met"]->Sumw2();
337 dkralph 1.1 }
338    
339     return hists;
340     }
341     //--------------------------------------------------------------------------------------------------
342 dkralph 1.2 void makeHTML(FOFlags &ctrl, TString type, TString plotLabel)
343 dkralph 1.1 {
344     TString title("Z Plus Fake: "+type);
345     ofstream htmlfile;
346     char htmlfname[100];
347 dkralph 1.2 sprintf(htmlfname,"%s/plots.html",TString(ctrl.outdir+"/"+plotLabel+"/"+type).Data());
348 dkralph 1.1 htmlfile.open(htmlfname);
349    
350     htmlfile << "<!DOCTYPE html" << endl;
351     htmlfile << " PUBLIC \"-//W3C//DTD HTML 3.2//EN\">" << endl;
352     htmlfile << "<html>" << endl;
353    
354     htmlfile << "<head><title>"+title+"</title></head>" << endl;
355     htmlfile << "<body bgcolor=\"EEEEEE\">" << endl;
356     htmlfile << "<h3 style=\"text-align:left; color:DD6600;\">"+title+"</h3>" << endl;
357    
358     htmlfile << "<table border=\"0\" cellspacing=\"5\" width=\"100%\">" << endl;
359     htmlfile << "<tr>" << endl;
360     htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/mZ1.png\"><img src=\"plots/mZ1.png\" alt=\"plots/mZ1.png\" width=\"100%\"></a></td>" << endl;
361     htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/Z1pt.png\"><img src=\"plots/Z1pt.png\" alt=\"plots/Z1pt.png\" width=\"100%\"></a></td>" << endl;
362     htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/run.png\"><img src=\"plots/run.png\" alt=\"plots/run.png\" width=\"100%\"></a></td>" << endl;
363     htmlfile << "</tr>" << endl;
364    
365     htmlfile << "<tr>" << endl;
366     htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/ip3ds_l1.png\"><img src=\"plots/ip3ds_l1.png\" alt=\"plots/ip3ds_l1.png\" width=\"100%\"></a></td>" << endl;
367     htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/ip3ds_l2.png\"><img src=\"plots/ip3ds_l2.png\" alt=\"plots/ip3ds_l2.png\" width=\"100%\"></a></td>" << endl;
368     htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/ip3ds_l3.png\"><img src=\"plots/ip3ds_l3.png\" alt=\"plots/ip3ds_l3.png\" width=\"100%\"></a></td>" << endl;
369     htmlfile << "</tr>" << endl;
370    
371     htmlfile << "<tr>" << endl;
372     htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/pt_l1.png\"><img src=\"plots/pt_l1.png\" alt=\"plots/pt_l1.png\" width=\"100%\"></a></td>" << endl;
373     htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/pt_l2.png\"><img src=\"plots/pt_l2.png\" alt=\"plots/pt_l2.png\" width=\"100%\"></a></td>" << endl;
374 dkralph 1.2 htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/pt_l3_lo.png\"><img src=\"plots/pt_l3_lo.png\" alt=\"plots/pt_l3_lo.png\" width=\"100%\"></a></td>" << endl;
375 dkralph 1.1 htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/pt_l3.png\"><img src=\"plots/pt_l3.png\" alt=\"plots/pt_l3.png\" width=\"100%\"></a></td>" << endl;
376     htmlfile << "</tr>" << endl;
377    
378     htmlfile << "<tr>" << endl;
379     htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/eta_l1.png\"><img src=\"plots/eta_l1.png\" alt=\"plots/eta_l1.png\" width=\"100%\"></a></td>" << endl;
380     htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/eta_l2.png\"><img src=\"plots/eta_l2.png\" alt=\"plots/eta_l2.png\" width=\"100%\"></a></td>" << endl;
381     htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/eta_l3.png\"><img src=\"plots/eta_l3.png\" alt=\"plots/eta_l3.png\" width=\"100%\"></a></td>" << endl;
382     htmlfile << "</tr>" << endl;
383 dkralph 1.2
384     htmlfile << "<tr>" << endl;
385     htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/dR_l1l3_lo.png\"><img src=\"plots/dR_l1l3_lo.png\" alt=\"plots/dR_l1l3_lo.png\" width=\"100%\"></a></td>" << endl;
386     htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/dR_l1l3.png\"><img src=\"plots/dR_l1l3.png\" alt=\"plots/dR_l1l3.png\" width=\"100%\"></a></td>" << endl;
387     htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/dR_l2l3_lo.png\"><img src=\"plots/dR_l2l3_lo.png\" alt=\"plots/dR_l2l3_lo.png\" width=\"100%\"></a></td>" << endl;
388     htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/dR_l2l3.png\"><img src=\"plots/dR_l2l3.png\" alt=\"plots/dR_l2l3.png\" width=\"100%\"></a></td>" << endl;
389     // htmlfile << "<td width=\"25%\"><a><</a></td>" << endl;
390     htmlfile << "</tr>" << endl;
391    
392     htmlfile << "<tr>" << endl;
393     htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/ml1l3.png\"><img src=\"plots/ml1l3.png\" alt=\"plots/ml1l3.png\" width=\"100%\"></a></td>" << endl;
394     htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/ml2l3.png\"><img src=\"plots/ml2l3.png\" alt=\"plots/ml2l3.png\" width=\"100%\"></a></td>" << endl;
395     htmlfile << "<td width=\"25%\"><a target=\"_blank\" href=\"plots/met.png\"><img src=\"plots/met.png\" alt=\"plots/met.png\" width=\"100%\"></a></td>" << endl;
396     htmlfile << "<td width=\"25%\"><a></a></td>" << endl;
397     htmlfile << "</tr>" << endl;
398    
399 dkralph 1.1 htmlfile << "</table>" << endl;
400    
401     htmlfile << "<hr />" << endl;
402    
403     htmlfile << "<hr />" << endl;
404    
405     htmlfile << "</body>" << endl;
406     htmlfile << "</html>" << endl;
407     htmlfile.close();
408     }
409     //----------------------------------------------------------------------------------------
410     void fillHist(CSample *cs, TString channel, TString type, TString var, double val, double wgt, double wgt_lo, double wgt_hi)
411     {
412     (*(cs->hists)["both_"+type])[var]->Fill( val, wgt);
413     (*(cs->hists)[channel+"_"+type])[var]->Fill( val, wgt);
414     if(type=="pred") {
415     (*(cs->hists)["both_"+type+"_lo"])[var]->Fill( val, wgt_lo);
416     (*(cs->hists)["both_"+type+"_hi"])[var]->Fill( val, wgt_hi);
417     (*(cs->hists)[channel+"_"+type+"_lo"])[var]->Fill( val, wgt_lo);
418     (*(cs->hists)[channel+"_"+type+"_hi"])[var]->Fill( val, wgt_hi);
419     }
420     }