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root/cvsroot/UserCode/cbrown/AnalysisFramework/Plotting/Modules/ExclusionPlot.C
Revision: 1.16
Committed: Tue Dec 13 09:54:38 2011 UTC (13 years, 4 months ago) by buchmann
Content type: text/plain
Branch: MAIN
Changes since 1.15: +15 -9 lines
Log Message:
Updated exclusion line algorithm so that the connection from the last point to the diagonal is orthogonal to the diagonal (the angle is no longer conserved)

File Contents

# User Rev Content
1 buchmann 1.1 #include <iostream>
2     #include <vector>
3     #include <sys/stat.h>
4     #include <sstream>
5    
6     #include <TCut.h>
7     #include <TLatex.h>
8     #include <TROOT.h>
9     #include <TCanvas.h>
10     #include <TPad.h>
11     #include <TFile.h>
12     #include <TTree.h>
13     #include <TString.h>
14     #include <TMath.h>
15     #include <stdio.h>
16     #include <stdlib.h>
17     #include <TH2.h>
18     #include <TColor.h>
19     #include <TStyle.h>
20     #include <TText.h>
21     #include <TKey.h>
22     #include <TPaletteAxis.h>
23     #include <TGraph.h>
24     #include <TLegend.h>
25     #include <TLegendEntry.h>
26     #include "external/ExclusionPlot/Functions.C"
27    
28     using namespace std;
29    
30     bool draweachone=false;
31     bool draw2sigma=true;
32    
33 buchmann 1.12 float limits_lower_bound=0.05;
34 buchmann 1.1 float limits_upper_bound=10;
35     float limits_ratio_lower_bound=0.005;
36     float limits_ratio_upper_bound=10;
37    
38     float standardmargin=0.1;
39     float indentedmargin=0.16;
40    
41 buchmann 1.5 bool drawefficiencydesertline=false;
42    
43 buchmann 1.1 string xsecfilename;
44    
45 buchmann 1.10 void set_range(TH2F *histo, int scantype, bool pushoutlabels);
46 buchmann 1.1 void smooth_line(TGraph *gr);
47     void decorate_mSUGRA(TH2F *cleanhisto, TVirtualPad *cvsSys,TGraph *expected,TGraph *expected2,TGraph *observed);
48     TH2F* adjust_histo(TH2F *oldhist, TH2F *refhisto);
49 buchmann 1.13 TGraph* get_mSUGRA_exclusion_line(TH2F *exclusionhisto, int scantype);
50     TGraph* thin_line(TGraph *gr);
51     TGraph *MarcosExclusionLine(TH2F *exclusionshape, int scantype);
52 buchmann 1.1
53 buchmann 1.13 void fill_with_text(TGraph *real, TGraph *down, TGraph *up, TVirtualPad *can, int scantype) {
54 buchmann 1.1 can->cd();
55     TLegend* this_leg = new TLegend(0.18,0.6,0.38,0.75);
56     this_leg->SetFillColor(0);
57     this_leg->SetBorderSize(0);
58     this_leg->SetTextSize(0.035);
59 buchmann 1.11 if(scantype==PlottingSetup::SMS||scantype==PlottingSetup::GMSB) {
60 buchmann 1.1 this_leg->AddEntry(real,"#sigma^{prod} = #sigma^{NLO-QCD}" , "l");
61     this_leg->AddEntry(up,"#sigma^{prod} = 3 #times #sigma^{NLO-QCD}" , "l");
62     this_leg->AddEntry(down,"#sigma^{prod} = 1/3 #times #sigma^{NLO-QCD}" , "l");
63     } else {
64     write_warning(__FUNCTION__,"Not implemented yet for mSUGRA");
65     }
66    
67     this_leg->Draw();
68    
69 buchmann 1.12 string legT5zz="pp #rightarrow #tilde{g} #tilde{g}, #tilde{g} #rightarrow 2j + #chi^{0}_{2}, #chi^{0}_{2} #rightarrow Z + LSP";
70 buchmann 1.2 string legT5zzl2="m(#tilde{q}) >> m(#tilde{g})";
71 buchmann 1.13 string legT5zzl3=" GMSB";
72 buchmann 1.1 TText *title = write_text(0.18,0.85,legT5zz);
73     title->SetTextAlign(11);
74     title->SetTextSize(0.035);
75 buchmann 1.11 if(scantype!=PlottingSetup::mSUGRA) title->Draw("same");
76 buchmann 1.1 TText *title2 = write_text(0.18,0.79,legT5zzl2);
77     title2->SetTextAlign(11);
78     title2->SetTextSize(0.035);
79 buchmann 1.11 if(scantype!=PlottingSetup::mSUGRA) title2->Draw("same");
80 buchmann 1.13 TText *title3 = write_text(0.40,0.79,legT5zzl3);
81     title3->SetTextAlign(11);
82     title3->SetTextSize(0.035);
83     title3->SetTextColor(kRed);
84     // if(scantype==PlottingSetup::GMSB) title3->Draw("same");
85 buchmann 1.1 DrawPrelim();
86     TLine *line;
87 buchmann 1.13 float verticaloffset=0.0;
88     if(scantype==PlottingSetup::GMSB) verticaloffset=75.0;
89     line = new TLine(50.+75.0, 50.0+verticaloffset, 1200., 1200.0-75.0+verticaloffset);
90 buchmann 1.1 line->SetLineStyle(2);
91     line->SetLineWidth(2);
92     line->Draw("same");
93     }
94    
95 buchmann 1.10 TH2F* prep_histo(TH2F *oldhist, int scantype) {///DONE
96 buchmann 1.1 TH2F *histo = new TH2F(oldhist->GetName(),oldhist->GetName(),
97     oldhist->GetNbinsX(),oldhist->GetXaxis()->GetBinLowEdge(1),oldhist->GetXaxis()->GetBinLowEdge(oldhist->GetNbinsX())+oldhist->GetXaxis()->GetBinWidth(oldhist->GetNbinsX()),
98     oldhist->GetNbinsY(),oldhist->GetYaxis()->GetBinLowEdge(1),oldhist->GetYaxis()->GetBinLowEdge(oldhist->GetNbinsY())+oldhist->GetYaxis()->GetBinWidth(oldhist->GetNbinsY()));
99    
100     for(int ix=1;ix<=oldhist->GetNbinsX();ix++) {
101     for(int iy=1;iy<=oldhist->GetNbinsX();iy++) {
102     histo->SetBinContent(ix,iy,oldhist->GetBinContent(ix,iy));
103     }
104     }
105     return histo;
106     }
107    
108     TH2F* make_exclusion_shape(TH2F *excl, int isprimary) {
109     TH2F *exclusion = (TH2F*)excl->Clone("exclusion");
110     for(int i=1; i<(excl->GetNbinsX()+1); i++) {
111     for(int j=1; j<(excl->GetNbinsY()+1); j++) {
112     if(excl->GetBinContent(i,j)<1&&excl->GetBinContent(i,j)>0) exclusion->SetBinContent(i,j,0.01);
113     else exclusion->SetBinContent(i,j,0);
114     }
115     }
116     exclusion->SetLineColor(kBlue);
117     exclusion->SetLineWidth(2);
118     exclusion->SetLineStyle(isprimary);
119     return exclusion;
120     }
121    
122 buchmann 1.13 void produce_extensive_plots(TH2F *xsec,TH2F *limits,TH2F *rellimits, TH2F *rellimitsd3, TH2F *rellimitst3, int scantype) {
123 buchmann 1.1 TCanvas *ca = new TCanvas("ca","ca",1200,1200);
124     ca->Divide(2,2);
125     ca->cd(1);
126     ca->cd(1)->SetLogz(1);
127     xsec->GetZaxis()->SetRangeUser(0.001,1000);
128     xsec->Draw("COLZ");
129     TText *title0 = write_title("Reference Cross Section");
130     title0->Draw("same");
131     ca->cd(2);
132     ca->cd(2)->SetLogz(1);
133     limits->GetZaxis()->SetRangeUser(limits_lower_bound,limits_upper_bound);
134     limits->Draw("COLZ");
135     TText *title = write_title("Cross Section Upper Limit");
136     title->Draw("same");
137     ca->cd(3);
138     ca->cd(3)->SetLogz(1);
139     TH2F *limit_ref = (TH2F*)limits->Clone("limit_ref");
140     limit_ref->Divide(xsec);
141     limit_ref->GetZaxis()->SetRangeUser(limits_ratio_lower_bound,limits_ratio_upper_bound);
142     limit_ref->Draw("COLZ");
143     TText *title2 = write_title("Cross Section UL / XS");
144     title2->Draw("same");
145     ca->cd(4);
146     ca->cd(4)->SetLogz(1);
147     limits->SetTitle("");
148     limits->GetZaxis()->SetRangeUser(limits_lower_bound,limits_upper_bound);
149     limits->SetZTitle("95% CL upper limit on #sigma [pb]");
150    
151     limits->GetZaxis()->SetTitleOffset(0.95);
152     limits->GetZaxis()->CenterTitle();
153     limits->Draw("COLZ");
154 buchmann 1.13
155     TGraph *exclline = MarcosExclusionLine(rellimits, scantype);
156     TGraph *thinexclline = thin_line(exclline);
157    
158     TGraph *excllinet3 = MarcosExclusionLine(rellimitst3, scantype);
159     excllinet3->SetLineStyle(2);
160     TGraph *thinexcllinet3 = thin_line(excllinet3);
161    
162     TGraph *excllined3 = MarcosExclusionLine(rellimitsd3, scantype);
163     excllined3->SetLineStyle(3);
164     TGraph *thinexcllined3 = thin_line(excllined3);
165    
166     ca->cd(4);
167     exclline->Draw();
168     thinexclline->Draw();
169     excllinet3->Draw();
170     thinexcllinet3->Draw();
171     excllined3->Draw();
172     thinexcllined3->Draw();
173 buchmann 1.1 stringstream partial;
174     partial << "Limits/exclusion__" << limits->GetName();
175 buchmann 1.13 fill_with_text(exclline,excllined3,excllinet3,ca->cd(4),scantype);
176 buchmann 1.1 CompleteSave(ca,partial.str());
177     delete ca;
178     }
179    
180 buchmann 1.13 bool fail(double xs, double xsLimit) {return xsLimit>1 or !xsLimit;}
181 buchmann 1.1
182 buchmann 1.13 void get_Marias_exclusion_line(TH2F *limit_ref, float pointsX[200], float pointsY[200], int &ixNew, int &counter, int &foundDiag) {
183     // part of Mariarosaria's getRefXsecGraph function
184     double refMult = 3.0;
185     bool enough = false;
186     Int_t nBinX= limit_ref->GetXaxis()->GetNbins();
187     Int_t nBinY= limit_ref->GetYaxis()->GetNbins();
188     for(int i=1; i<(nBinX+1); i++) {
189     for(int j=1; j<(nBinY+1); j++) {
190 buchmann 1.14 if(limit_ref->GetBinContent(i,j-1)==0) continue;
191     if(limit_ref->GetBinContent(i,j+1)==0) continue;
192     if(limit_ref->GetBinContent(i,j)==0) continue;
193 buchmann 1.13 if( limit_ref->GetBinContent(i,j)>0. && limit_ref->GetBinContent(i,j)<=1.) {
194     double xsLimitAbove = limit_ref->GetBinContent(i, j+1);
195     double xsLimitBelow = limit_ref->GetBinContent(i, j-1);
196    
197     double xsLimit = limit_ref->GetBinContent(i, j);
198     if((fail(1.0,xsLimitAbove)) && (!fail(1.0,xsLimit)) ) {
199     pointsX[counter]=limit_ref->GetXaxis()->GetBinCenter(i);
200     pointsY[counter]=limit_ref->GetYaxis()->GetBinCenter(j);
201     counter++;
202     enough = !xsLimitAbove;
203     if(!enough && !foundDiag) foundDiag=counter;
204     // cout << "enough " << enough << " foundDiag " << foundDiag << endl;
205     }
206     }
207     }
208     }
209    
210     }
211    
212     TH2F* flipth2f(TH2F *histo) {
213     if(histo->GetNbinsX()!=histo->GetNbinsY()) {
214     write_error(__FUNCTION__,"number of bins is not the same for x & y !!!");
215     return NULL;
216     }
217     TH2F *rethisto = (TH2F*)histo->Clone();
218     for(int i=1;i<histo->GetNbinsX();i++) {
219     for(int j=1;j<histo->GetNbinsY();j++) {
220     rethisto->SetBinContent(j,i,histo->GetBinContent(i,j));
221     }
222     }
223     return rethisto;
224     }
225    
226     TGraph* get_exclusion_line(TH2F *limit_ref) {
227    
228     float pointsX[200];
229     float pointsY[200];
230     int ixNew=0;
231     int counter=0;
232     int foundDiag=0;
233    
234     TH2F *fakehisto = flipth2f(limit_ref);
235     get_Marias_exclusion_line(fakehisto,pointsY,pointsX,ixNew,counter,foundDiag);// x&y deliberately switched!
236     if(counter>1) {
237     pointsX[counter]=pointsX[counter-1];
238     pointsY[counter]=50;
239     }
240    
241     const int newCounter=counter;
242     Double_t newPointsX[newCounter+1];
243     Double_t newPointsY[newCounter+1];
244 buchmann 1.14 float lastx=-100;
245     float lasty=-100;
246    
247 buchmann 1.13
248     for (int ix = 0; ix < counter+1; ++ix) {
249     if(ix<(foundDiag-2)) continue;
250     if(ix!=counter && pointsX[ix+1]==pointsX[ix]) continue;
251 buchmann 1.14 if(pointsX[ix]<PlottingSetup::mglustart) continue;
252     if(lasty>-100&&pointsY[ix]<51) continue;
253     // cout << pointsX[ix] << " , " << pointsY[ix] << endl;
254 buchmann 1.13 newPointsX[ixNew]=pointsX[ix];
255     newPointsY[ixNew]=pointsY[ix];
256     ixNew++;
257 buchmann 1.14 lastx=pointsX[ix];
258     lasty=pointsY[ix];
259 buchmann 1.13 }
260     string titleHisto="tester";
261     // sprintf(titleHisto,"graph_%s_%f",limit_ref->GetName(),refMult);
262     // cout << "HERE " << titleHisto << endl;
263    
264     TGraph * gr = new TGraph(ixNew,newPointsX,newPointsY);
265     gr->SetName(titleHisto.c_str());
266     gr->Draw("same");
267     return gr;
268     }
269 buchmann 1.14
270 buchmann 1.13 TGraph *MarcosExclusionLine(TH2F *exclusionshape, int scantype) {
271 buchmann 1.14 // write_warning(__FUNCTION__,"USING MARIAS ALGORITHM...");
272     // return get_exclusion_line(exclusionshape);
273    
274 buchmann 1.13 TH2F *fakehisto = flipth2f(exclusionshape);
275     TGraph *fakegraph = get_mSUGRA_exclusion_line(fakehisto, scantype);
276     TGraph *realgraph = new TGraph(fakegraph->GetN());
277     double x,y;
278 buchmann 1.15 float last_x=0;
279     float last_y=0;
280     int counter=0;
281 buchmann 1.13 for(int i=0;i<fakegraph->GetN();i++) {
282     fakegraph->GetPoint(i,x,y);
283 buchmann 1.15 if(scantype==PlottingSetup::SMS) {
284     if(y-x<75) {
285     realgraph->SetPoint(counter,last_x,last_y);
286     counter++;
287     continue;
288     }
289     }
290     realgraph->SetPoint(counter,y,x);
291     last_x=y;
292     last_y=x;
293     counter++;
294 buchmann 1.13 }
295 buchmann 1.16 realgraph->SetLineColor(TColor::GetColor("#151515")); //nice black
296 buchmann 1.13 realgraph->SetLineWidth(3);
297    
298     return realgraph;
299     }
300    
301     TGraph* thin_line(TGraph *gr) {
302     TGraph *thin = (TGraph*) gr->Clone(concatenate("thin",gr->GetTitle()));
303     thin->SetLineWidth(1);
304     thin->SetLineColor(kWhite);
305     return thin;
306     }
307 buchmann 1.1
308 buchmann 1.10 void make_SMS_exclusion(TH2F *rawlimits,TH2F *xsec,int scantype) {
309     TH2F *limits = prep_histo(rawlimits,scantype); // this is to be independent of the style used at creation time
310 buchmann 1.1 //here we get some limits and the cross section; we want to make an exclusion plot!
311     TH2F *rellimits = (TH2F*)limits->Clone("rellimits");
312     TH2F *rellimitsd3 = (TH2F*)limits->Clone("rellimitsd3"); // one third the cross section ("divided by 3" -> d3)
313     TH2F *rellimitst3 = (TH2F*)limits->Clone("rellimitst3"); // three times the cross section ("times 3" -> t3)
314    
315     if(!xsec ) {
316     cout << "Watch out, cross section map is invalid!" << endl;
317     return;
318     }
319    
320     rellimits->Divide(xsec);
321    
322    
323     for(int i=1;i<=rellimits->GetNbinsX();i++) {
324     for(int j=1;j<=rellimits->GetNbinsY();j++) {
325     rellimitst3->SetBinContent(i,j,(rellimits->GetBinContent(i,j))/3.0);
326     rellimitsd3->SetBinContent(i,j,(rellimits->GetBinContent(i,j))*3.0);
327     }
328     }
329    
330 buchmann 1.12
331 buchmann 1.13 // TH2F *exclusionshape = make_exclusion_shape(rellimits,1);
332     // TH2F *exclusionshapet3 = make_exclusion_shape(rellimitst3,2);
333     // TH2F *exclusionshaped3 = make_exclusion_shape(rellimitsd3,3);
334 buchmann 1.1
335     //Now let's produce the plots!
336    
337 buchmann 1.10 set_range(xsec,scantype,false);
338     set_range(limits,scantype,false);
339 buchmann 1.13
340     TGraph *exclline = MarcosExclusionLine(rellimits, scantype);
341     TGraph *thinexcline = thin_line(exclline);
342    
343     TGraph *excllinet3 = MarcosExclusionLine(rellimitst3, scantype);
344     excllinet3->SetLineStyle(2);
345     TGraph *thinexclinet3 = thin_line(excllinet3);
346    
347     TGraph *excllined3 = MarcosExclusionLine(rellimitsd3, scantype);
348     excllined3->SetLineStyle(3);
349     TGraph *thinexclined3 = thin_line(excllined3);
350    
351     produce_extensive_plots(xsec,limits,rellimits, rellimitst3, rellimitsd3,scantype);
352 buchmann 1.1
353     TCanvas *finalcanvas = new TCanvas("finalcanvas","finalcanvas");
354     finalcanvas->SetLogz(1);
355     finalcanvas->cd();
356     limits->Draw("COLZ");
357 buchmann 1.13
358    
359 buchmann 1.5 TLine *desertline;
360     if(drawefficiencydesertline) {
361     desertline = new TLine(375,50,1200,875);
362     desertline->SetLineWidth(3);
363     desertline->SetLineColor(kBlack);
364     desertline->Draw("same");
365     }
366    
367 buchmann 1.13 fill_with_text(exclline,excllined3,excllinet3,finalcanvas,scantype);
368 buchmann 1.1 stringstream real;
369     real << "Limits/final_exclusion__" << limits->GetName();
370 buchmann 1.15 exclline->Draw("l");
371 buchmann 1.13 thinexcline->Draw("");
372     excllinet3->Draw("");
373     thinexclinet3->Draw("");
374     excllined3->Draw("");
375     thinexclined3->Draw("");
376 buchmann 1.1 CompleteSave(finalcanvas,real.str());
377    
378     delete finalcanvas;
379     }
380    
381     TH1* getHisto(char * filename, char* histoName, char * dirName, int nBin, double lumi)
382     {
383     TH1 * hpt_=0;
384     TFile *file0 = TFile::Open(filename);
385     if(!file0) return hpt_;
386     TDirectory *dir;
387     TH2D * hMuPt;
388     TH1* H;
389    
390     if(dirName == "0") {
391     hMuPt = (TH2D*) file0->Get(histoName);
392     } else {
393     dir = (TDirectory*) file0->Get(dirName);
394     if(!dir) return hpt_;
395     hMuPt = (TH2D*) dir->Get(histoName);
396     }
397    
398     if(hMuPt) {
399     hpt_ = (TH1*) hMuPt->Clone();
400     hpt_->Sumw2();
401     hpt_->Scale(1./lumi); // this take into into account the luminosity
402     hpt_->SetLineWidth(2);
403     hpt_->Rebin(nBin);
404     double nBinX=hpt_->GetNbinsX();
405    
406     // overFlow
407 buchmann 1.5 hpt_->SetBinContent((int)nBinX,hpt_->GetBinContent((int)nBinX)+hpt_->GetBinContent((int)nBinX+1));
408 buchmann 1.1 hpt_->SetDirectory(0);
409     file0->Close();
410     hpt_->SetLineWidth(3);
411     }
412     return hpt_;
413     }
414    
415 buchmann 1.6 pair <float,float> find_point(TH2F* histo, int xbin, bool mSUGRA=true) {
416     TH1F *flathisto;
417     if(mSUGRA) flathisto = new TH1F("flat","flat",histo->GetNbinsY(),histo->GetYaxis()->GetBinLowEdge(1),histo->GetYaxis()->GetBinLowEdge(histo->GetNbinsY())+histo->GetYaxis()->GetBinWidth(histo->GetNbinsY()));
418     else flathisto = new TH1F("flat","flat",histo->GetNbinsX(),histo->GetXaxis()->GetBinLowEdge(1),histo->GetXaxis()->GetBinLowEdge(histo->GetNbinsX())+histo->GetXaxis()->GetBinWidth(histo->GetNbinsX()));
419    
420     int nbins=histo->GetNbinsY();
421     if(!mSUGRA) nbins=histo->GetNbinsX();
422     for(int i=1;i<nbins;i++) {
423 buchmann 1.1 float value=(histo->GetBinContent(xbin,i));
424     if(value<20&&value>0) flathisto->SetBinContent(i,value);
425     }
426    
427     float pointone=-100;
428 buchmann 1.6 nbins=flathisto->GetNbinsX();
429     if(!mSUGRA) nbins=flathisto->GetNbinsY();
430     for(int i=nbins;i>=1;i--) {
431 buchmann 1.1 if(pointone<0&&flathisto->GetBinContent(i)<1&&flathisto->GetBinContent(i)>0) pointone=flathisto->GetBinLowEdge(i)+flathisto->GetBinWidth(i);
432     }
433     pair <float,float> anything;
434 buchmann 1.6 if(mSUGRA) anything.first=histo->GetXaxis()->GetBinCenter(xbin);
435     else anything.first=histo->GetYaxis()->GetBinCenter(xbin);
436 buchmann 1.1 anything.second=pointone;
437     stringstream flatname;
438     delete flathisto;
439     return anything;
440     }
441    
442 buchmann 1.6 pair <float,float> find_interpolated_point(TH2F* histo, int xbin, bool mSUGRA=true) {
443 buchmann 1.1
444     int minaccept=4;
445     TCanvas *flatcan = new TCanvas("flatcan","flatcan");
446     stringstream histoname;
447     histoname << "exclusion shape for x bin " << xbin;
448 buchmann 1.6 TH1F *flathisto;
449     if(mSUGRA) flathisto = new TH1F("flat",histoname.str().c_str(),histo->GetNbinsY(),histo->GetYaxis()->GetBinLowEdge(1),histo->GetYaxis()->GetBinLowEdge(histo->GetNbinsY())+histo->GetYaxis()->GetBinWidth(histo->GetNbinsY()));
450     else flathisto = new TH1F("flat",histoname.str().c_str(),histo->GetNbinsX(),histo->GetXaxis()->GetBinLowEdge(1),histo->GetXaxis()->GetBinLowEdge(histo->GetNbinsX())+histo->GetXaxis()->GetBinWidth(histo->GetNbinsX()));
451 buchmann 1.1
452     int acceptedpoints=0;
453 buchmann 1.6 int nbins=histo->GetNbinsY();
454     if(!mSUGRA) histo->GetNbinsX();
455     for(int i=1;i<nbins;i++) {
456 buchmann 1.1 float value=0;
457 buchmann 1.6 if(i<=nbins-2) value=((1/3.0)*(histo->GetBinContent(xbin,i)+histo->GetBinContent(xbin+1,i)+histo->GetBinContent(xbin+2,i)));
458     if(i==nbins-1) value=((1/2.0)*(histo->GetBinContent(xbin,i)+histo->GetBinContent(xbin,i+1)));
459     if(i==nbins) value=(histo->GetBinContent(xbin,i));
460 buchmann 1.1 if(value<20&&value>0) {
461     flathisto->SetBinContent(i,value);
462     flathisto->SetBinError(i,TMath::Sqrt(value));
463     acceptedpoints++;
464     }
465     }
466    
467     float pointone=-100;
468     TLine *excluded;
469     if(acceptedpoints>minaccept) {
470     flathisto->Fit("expo","Q");
471     TF1 *fitfunc = (TF1*)flathisto->GetFunction("expo");
472     pointone=-(fitfunc->GetParameter(0)/fitfunc->GetParameter(1));
473     excluded=new TLine(pointone,0,pointone,10);
474     }
475    
476     pair <float,float> anything;
477     anything.first=histo->GetXaxis()->GetBinCenter(xbin);
478     anything.second=pointone;
479     stringstream flatname;
480     flathisto->GetYaxis()->SetRangeUser(0,10);
481     flathisto->Draw();
482     if(acceptedpoints>minaccept) excluded->SetLineColor(kGreen);
483     if(acceptedpoints>minaccept) excluded->SetLineStyle(2);
484     if(acceptedpoints>minaccept) excluded->SetLineWidth(2);
485     if(acceptedpoints>minaccept) excluded->Draw("same");
486     flatname << "Limits/partials/partial_" << xbin << "___" << histo->GetName() << ".png";
487     if(draweachone) CompleteSave(flatcan,flatname.str());
488     delete flatcan;
489     delete flathisto;
490     return anything;
491     }
492    
493 buchmann 1.13 void project_to_last_point_on_line(float x2, float y2, float x1, float y1, float &x, float &y, int scantype) {
494 buchmann 1.16 // original code: continue the same way to the diagonal (i.e. conserve the angle to the diagonal)
495     /*
496 buchmann 1.13 float deltax=x2-x1;
497     float deltay=y2-y1;
498     float b = (y1-x1)/(deltax-deltay);
499     if(scantype==PlottingSetup::SMS) b = (y1-75.-x1)/(deltax-deltay);
500     x = x1 + b * deltax;
501     y = y1 + b * deltay;
502     if(x<0||y<0) x=-1;
503 buchmann 1.16 if((scantype==PlottingSetup::GMSB||scantype==PlottingSetup::SMS) && (x>PlottingSetup::mgluend||y>PlottingSetup::mLSPend)) x=-1;
504     */
505     //new code: just connect directly with the diagonal
506     float b = 0;
507     if(scantype==PlottingSetup::SMS) b = -75;
508     //float alpha = (b+x2-y2)/2.0;
509     x = floor((x2+y2-b)/2.0);
510     y = floor(x + b);
511 buchmann 1.13 }
512    
513     TGraph* get_mSUGRA_exclusion_line(TH2F *exclusionhisto, int scantype) {
514 buchmann 1.1 exclusionhisto->SetStats(0);
515     exclusionhisto->GetZaxis()->SetRangeUser(0,2);
516    
517     vector<pair <float,float> > points;
518    
519     for(int i=1;i<exclusionhisto->GetNbinsX();i++) {
520     pair<float,float> anything = find_point(exclusionhisto,i);
521     pair<float,float> intthing = find_interpolated_point(exclusionhisto,i);
522     float value=anything.second;
523     if(intthing.second>anything.second) anything.second=intthing.second;
524 buchmann 1.13 if(anything.second>100&&anything.second<1500) points.push_back(anything);
525 buchmann 1.1 }
526    
527     Double_t xpoints[points.size()];
528     Double_t spoints[points.size()];
529    
530 buchmann 1.13 TGraph *graph = new TGraph(points.size()+1);
531 buchmann 1.1 graph->SetLineColor(kBlack);
532     graph->SetLineWidth(2);
533    
534 buchmann 1.13 int pointcounter=0;
535     float lastx=0;
536     float lasty=0;
537     float lastx2=0;
538     float lasty2=0;
539    
540 buchmann 1.1 for(int i=0;i<points.size();i++) {
541     xpoints[i]=points[i].first;
542 buchmann 1.13 spoints[i]=points[i].second;
543     if(scantype==PlottingSetup::mSUGRA) {
544     if(i>1&&i<points.size()-1) spoints[i]=(1.0/3.0)*(points[i-1].second+points[i].second+points[i+1].second);
545     if(i>2&&i<points.size()-2) spoints[i]=(1.0/5.0)*(points[i-2].second+points[i-1].second+points[i].second+points[i+1].second+points[i+2].second);
546     if(i>3&&i<points.size()-3) spoints[i]=(1.0/7.0)*(points[i-3].second+points[i-2].second+points[i-1].second+points[i].second+points[i+1].second+points[i+2].second+points[i+3].second);
547     }
548    
549     bool usethispoint=true;
550 buchmann 1.16 if(scantype==PlottingSetup::GMSB) if(spoints[i]<points[i].first) usethispoint=false;
551     if(scantype==PlottingSetup::SMS) if(spoints[i]-75.<points[i].first) usethispoint=false;
552    
553 buchmann 1.13 if((scantype==PlottingSetup::GMSB||scantype==PlottingSetup::SMS) && (spoints[i]>PlottingSetup::mgluend||points[i].first>PlottingSetup::mLSPend)) usethispoint=false;
554    
555     if(usethispoint) {
556     graph->SetPoint(pointcounter,points[i].first,spoints[i]);
557     lastx2=lastx;
558     lasty2=lasty;
559     lastx=points[i].first;
560     lasty=spoints[i];
561     pointcounter++;
562     }
563 buchmann 1.1 }
564 buchmann 1.13 for(int i=pointcounter;i<points.size();i++) graph->SetPoint(i,lastx,lasty);
565     if(scantype==PlottingSetup::GMSB||scantype==PlottingSetup::SMS) {
566     //The final point will be a continuation of the last one, towards the diagonal
567     float x,y;
568     project_to_last_point_on_line(lastx,lasty,lastx2,lasty2,x,y,scantype);
569 buchmann 1.16 if(x>0&&y>0) graph->SetPoint(points.size(),y,x);
570 buchmann 1.13 else graph->SetPoint(points.size(),lastx,lasty);
571     }
572    
573 buchmann 1.1 return graph;
574     }
575    
576     void draw_mSUGRA_exclusion(TH2F *crosssection, TH2F *limitmap, TH2F *expmap, TH2F *expplusmap, TH2F *expminusmap, TH2F *exp2plusmap, TH2F *exp2minusmap) {
577     TH2F *cleanhisto = (TH2F*)limitmap->Clone("clean");
578     for(int ix=1;ix<=cleanhisto->GetNbinsX();ix++) {
579     for(int iy=1;iy<=cleanhisto->GetNbinsY();iy++) {
580     cleanhisto->SetBinContent(ix,iy,0);
581     }
582     }
583    
584     TH2F *limits = (TH2F*)limitmap->Clone("limits");
585     set_range(limits,true,false);
586     limitmap->Divide(crosssection);
587     expminusmap->Divide(crosssection);
588     expplusmap->Divide(crosssection);
589     exp2minusmap->Divide(crosssection);
590     exp2plusmap->Divide(crosssection);
591     expmap->Divide(crosssection);
592 buchmann 1.13 TGraph *observed = get_mSUGRA_exclusion_line(limitmap, PlottingSetup::mSUGRA);
593 buchmann 1.1 observed->SetLineColor(kRed);
594 buchmann 1.13 TGraph *expminus = get_mSUGRA_exclusion_line(expminusmap, PlottingSetup::mSUGRA);
595     TGraph *expplus = get_mSUGRA_exclusion_line(expplusmap, PlottingSetup::mSUGRA);
596 buchmann 1.1 TGraph *exp2minus;
597 buchmann 1.13 if(draw2sigma) exp2minus = get_mSUGRA_exclusion_line(exp2minusmap, PlottingSetup::mSUGRA);
598 buchmann 1.1 TGraph *exp2plus;
599 buchmann 1.13 if(draw2sigma) exp2plus = get_mSUGRA_exclusion_line(exp2plusmap, PlottingSetup::mSUGRA);
600 buchmann 1.1
601     TGraph *expected = new TGraph(expminus->GetN()+expplus->GetN());
602     TGraph *expected2;
603     if(draw2sigma) expected2 = new TGraph(exp2minus->GetN()+exp2plus->GetN());
604     for(int i=0;i<=expminus->GetN();i++) {
605     Double_t x,y;
606     expminus->GetPoint(i,x,y);
607     expected->SetPoint(i,x,y);
608     }
609    
610     for(int i=0;i<=exp2minus->GetN();i++) {
611     Double_t x,y;
612     exp2minus->GetPoint(i,x,y);
613     expected2->SetPoint(i,x,y);
614     }
615     for(int i=exp2plus->GetN()-1;i>=0;i--) {
616     Double_t x,y;
617     exp2plus->GetPoint(i,x,y);
618     expected2->SetPoint(exp2minus->GetN()+(exp2plus->GetN()-i),x,y);
619     }
620     for(int i=expplus->GetN()-1;i>=0;i--) {
621     Double_t x,y;
622     expplus->GetPoint(i,x,y);
623     expected->SetPoint(expminus->GetN()+(expplus->GetN()-i),x,y);
624     }
625     expected->SetFillColor(TColor::GetColor("#9FF781"));
626     if(draw2sigma) expected2->SetFillColor(TColor::GetColor("#F3F781"));
627    
628     smooth_line(observed);
629     smooth_line(expected);
630     if(draw2sigma) smooth_line(expected2);
631    
632     TCanvas *te = new TCanvas("te","te");
633     decorate_mSUGRA(cleanhisto,te,expected,expected2,observed);
634     stringstream saveas;
635     if((int)((string)limitmap->GetName()).find("limitmap")>0) saveas << "Limits/final_exclusion_for_JZB_geq_" << ((string)limitmap->GetName()).substr(((string)limitmap->GetName()).find("limitmap")+8,10);
636     else saveas << "Limits/final_exclusion_for_bestlimits";
637     CompleteSave(te,saveas.str());
638     delete te;
639    
640     TCanvas *overview = new TCanvas("overview","overview",1000,1000);
641     set_range(crosssection,true,false);
642     set_range(limits,true,false);
643     set_range(limitmap,true,false);
644    
645     overview->Divide(2,2);
646     overview->cd(1);
647     overview->cd(1)->SetLogz(1);
648     crosssection->GetZaxis()->SetRangeUser(0.0001,100);
649     crosssection->Draw("COLZ");
650     TText *title0 = write_title("Cross Section");
651     title0->Draw("same");
652     overview->cd(2);
653     overview->cd(2)->SetLogz(1);
654     limits->GetZaxis()->SetRangeUser(0.1,100);
655     limits->Draw("COLZ");
656     TText *title1 = write_title("Cross Section Upper Limit");
657     title1->Draw("same");
658     overview->cd(3);
659     limitmap->Draw("COLZ");
660     TText *title2 = write_title("UL/XS");
661     title2->Draw("same");
662     observed->Draw("c");
663     overview->cd(4);
664     decorate_mSUGRA(cleanhisto,overview->cd(4),expected,expected2,observed);
665     stringstream saveas2;
666     if((int)((string)limitmap->GetName()).find("limitmap")>0) saveas2 << "Limits/exclusion_overview_for_JZB_geq_" << ((string)limitmap->GetName()).substr(((string)limitmap->GetName()).find("limitmap")+8,10);
667     else saveas2 << "Limits/exclusion_overview_for_bestlimits";
668     CompleteSave(overview,saveas2.str());
669     delete overview;
670    
671    
672     }
673    
674     TH2F* get_XS(string filename, string mass, TH2F *histo) {///DONE
675     TH1 *hRef=getHisto((char*) filename.c_str(), (char*) mass.c_str(), (char*) "0", 1,1);
676     TH2F * xsec= new TH2F("xsec","xsec",60, 0., 1500., 60, 0., 1500.);
677     for(int i=1; i<(histo->GetNbinsX()+1); i++) {
678     for(int j=1; j<(histo->GetNbinsY()+1); j++) {
679     if(!(histo->GetBinContent(i,j)==0)) xsec->SetBinContent(i,j,hRef->GetBinContent(hRef->FindBin(xsec->GetXaxis()->GetBinCenter(i))));
680     }
681     }
682     return xsec;
683     }
684    
685     string give_nice_source_label(string name) {
686     int mappoint=name.find("map");
687     if(mappoint<0||mappoint>500) return name; // this mean that something weird is happening
688     stringstream nice_label;
689     nice_label << "JZB > " << name.substr(mappoint+3,name.size()) << " GeV";
690     return nice_label.str();
691     }
692    
693 buchmann 1.7 Int_t get_exclusion_region_color(double value, TH2F *histo) {
694     Double_t wmin = histo->GetMinimum();
695     Double_t wmax = histo->GetMaximum();
696     Double_t wlmin = wmin;
697     Double_t wlmax = wmax;
698    
699 buchmann 1.12
700 buchmann 1.7 Int_t ncolors = gStyle->GetNumberOfColors();
701     Int_t ndivz = histo->GetContour();
702     if (ndivz == 0) return 0;
703     ndivz = TMath::Abs(ndivz);
704     Int_t theColor, color;
705     Double_t scale = ndivz / (wlmax - wlmin);
706    
707     if (value < wlmin) value = wlmin;
708    
709     color = Int_t(0.01 + (value - wlmin) * scale);
710    
711     theColor = Int_t((color + 0.99) * Double_t(ncolors) / Double_t(ndivz));
712     return gStyle->GetColorPalette(theColor);
713     }
714    
715    
716 buchmann 1.10 TH2F *make_best_limits(vector<TH2F*> explimits,vector<TH2F*> obslimits, int scantype, vector<TH2F*> exp1mlimits, vector<TH2F*> exp1plimits, vector<TH2F*> exp2mlimits, vector<TH2F*> exp2plimits, vector<TH2F*> &allbestexplimits) {
717 buchmann 1.1 if(obslimits.size()==0) {
718     write_warning(__FUNCTION__,"There are no observed limits! Cannot continue!");
719     TH2F *err;
720     return err;
721     }
722     if(explimits.size()==0) {
723     write_warning(__FUNCTION__,"There are no expected limits! Will compute best limits based on observed limits! (WATCH OUT THIS IS DISCOURAGED!");
724     for(int i=0;i<obslimits.size();i++) explimits.push_back(obslimits[i]);
725     }
726     TH2F *bestlimit=(TH2F*)obslimits[0]->Clone("bestlimits");
727 buchmann 1.6 TH2F *bestexplimit=(TH2F*)obslimits[0]->Clone("bestexplimits");
728 buchmann 1.1 TH2F *bestlimitsource=(TH2F*)obslimits[0]->Clone("bestlimitsource");
729 buchmann 1.6 TH2F *bestexp1plimit=(TH2F*)obslimits[0]->Clone("bestexp1plimit");
730     TH2F *bestexp1mlimit=(TH2F*)obslimits[0]->Clone("bestexp1mlimit");
731     TH2F *bestexp2plimit=(TH2F*)obslimits[0]->Clone("bestexp2plimit");
732     TH2F *bestexp2mlimit=(TH2F*)obslimits[0]->Clone("bestexp2mlimit");
733 buchmann 1.1
734     for(int i=1;i<=explimits[0]->GetNbinsX();i++) {
735     for(int j=1;j<=explimits[0]->GetNbinsY();j++) {
736     float min=explimits[0]->GetBinContent(i,j);
737     float omin=obslimits[0]->GetBinContent(i,j);
738     int source=1;
739     for(int k=0;k<explimits.size();k++) {
740     float currlim=explimits[k]->GetBinContent(i,j);
741 buchmann 1.6 if(currlim<min&&currlim>0) {
742 buchmann 1.1 min=currlim;
743     omin=obslimits[k]->GetBinContent(i,j);
744     source=k+1;
745     }
746     }
747     if(min>0) {
748     bestlimitsource->SetBinContent(i,j,source);
749     bestlimit->SetBinContent(i,j,omin);
750     bestexplimit->SetBinContent(i,j,min);
751 buchmann 1.11 if(scantype==PlottingSetup::mSUGRA) {
752 buchmann 1.1 bestexp1plimit->SetBinContent(i,j,exp1plimits[source-1]->GetBinContent(i,j));
753     bestexp1mlimit->SetBinContent(i,j,exp1mlimits[source-1]->GetBinContent(i,j));
754     bestexp2plimit->SetBinContent(i,j,exp2plimits[source-1]->GetBinContent(i,j));
755     bestexp2mlimit->SetBinContent(i,j,exp2mlimits[source-1]->GetBinContent(i,j));
756     }
757     }
758     }
759     }
760 buchmann 1.8 gStyle->SetPadRightMargin(standardmargin);
761 buchmann 1.1 TCanvas *canlimsource = new TCanvas("limsource","Source of best limits");
762 buchmann 1.10 set_range(bestlimitsource,scantype,false);
763 buchmann 1.1 bestlimitsource->SetTitle("Source of limit for best limits");
764     bestlimitsource->GetZaxis()->SetRangeUser(0,explimits.size()+1);
765 buchmann 1.7 bestlimitsource->Draw("COL");
766 buchmann 1.12 gPad->Update();
767 buchmann 1.11 if(scantype!=PlottingSetup::mSUGRA) bestlimitsource->Draw("TEXT,same");
768 buchmann 1.12 TLegend *sourceleg = new TLegend(0.2,0.6,0.55,0.85);
769 buchmann 1.1 for(int i=0;i<explimits.size();i++) {
770     stringstream legendentry;
771     legendentry << i+1 << " = " << give_nice_source_label(explimits[i]->GetName());
772 buchmann 1.7 Int_t currcol=get_exclusion_region_color(i+1,bestlimitsource);
773     explimits[i]->SetFillColor(currcol);
774     explimits[i]->SetLineColor(currcol);
775     sourceleg->AddEntry(explimits[i], legendentry.str().c_str(),"f");
776 buchmann 1.1 }
777     sourceleg->SetLineColor(kWhite);sourceleg->SetFillColor(kWhite);
778     sourceleg->SetTextSize(0.03);
779     sourceleg->Draw("same");
780     DrawPrelim();
781 buchmann 1.6
782 buchmann 1.1 CompleteSave(canlimsource,"Limits/SourceOfBestLimits");
783 buchmann 1.12 gStyle->SetPadRightMargin(indentedmargin);
784 buchmann 1.1 allbestexplimits.push_back(bestexplimit);
785     allbestexplimits.push_back(bestexp1plimit);
786     allbestexplimits.push_back(bestexp1mlimit);
787     allbestexplimits.push_back(bestexp2plimit);
788     allbestexplimits.push_back(bestexp2mlimit);
789    
790     delete canlimsource;
791     delete bestexplimit;
792     delete bestlimitsource;
793     return bestlimit;
794     }
795    
796    
797 buchmann 1.10 void create_exclusion_plots(vector<TH2F*> limits, int scantype) {
798 buchmann 1.1 TFile *xsecfile;
799 buchmann 1.11 if(scantype!=PlottingSetup::mSUGRA) {
800 buchmann 1.1 xsecfile = new TFile(xsecfilename.c_str());
801 buchmann 1.11 if(xsecfile->IsZombie()&&(scantype!=PlottingSetup::mSUGRA)) {
802 buchmann 1.1 write_error(__FUNCTION__,"Cross section file is invalid!!!!");
803     return;
804     }
805     xsecfile->Close();
806     }
807 buchmann 1.11 if(scantype!=PlottingSetup::mSUGRA) for(int i=0;i<limits.size();i++) limits[i]->Scale(1./0.19); // because for T5zz we forced one z to decay leptonically
808 buchmann 1.1
809     vector<TH2F*> explimits;
810     vector<TH2F*> exp1mlimits;
811     vector<TH2F*> exp1plimits;
812     vector<TH2F*> exp2mlimits;
813     vector<TH2F*> exp2plimits;
814     vector<TH2F*> obslimits;
815 buchmann 1.3 vector<TH2F*> flipmaps;
816 buchmann 1.1 vector<TH2F*> crosssections;
817    
818     for(int ilim=0;ilim<limits.size();ilim++) {
819     if(TString(limits[ilim]->GetName()).Contains("_explimitmap")) explimits.push_back(limits[ilim]);
820 buchmann 1.11 if(scantype==PlottingSetup::mSUGRA && TString(limits[ilim]->GetName()).Contains("_exp1plimitmap")) exp1plimits.push_back(limits[ilim]);
821     if(scantype==PlottingSetup::mSUGRA && TString(limits[ilim]->GetName()).Contains("_exp1mlimitmap")) exp1mlimits.push_back(limits[ilim]);
822     if(scantype==PlottingSetup::mSUGRA && TString(limits[ilim]->GetName()).Contains("_exp2plimitmap")) exp2plimits.push_back(limits[ilim]);
823     if(scantype==PlottingSetup::mSUGRA && TString(limits[ilim]->GetName()).Contains("_exp2mlimitmap")) exp2mlimits.push_back(limits[ilim]);
824     if(scantype==PlottingSetup::mSUGRA && TString(limits[ilim]->GetName()).Contains("_absolutecrosssectionmap")) crosssections.push_back(limits[ilim]);
825 buchmann 1.1 if(TString(limits[ilim]->GetName()).Contains("_limitmap")) obslimits.push_back(limits[ilim]);
826 buchmann 1.4 // if(TString(limits[ilim]->GetName()).Contains("_limitflipmap")) flipmaps.push_back(limits[ilim]);
827 buchmann 1.1 }
828    
829     TH2F *xsec;
830 buchmann 1.11 if(scantype!=PlottingSetup::mSUGRA) xsec = adjust_histo(get_XS(xsecfilename,"gluino",limits[0]),limits[0]);
831 buchmann 1.1 vector<TH2F*> bestexplimits;
832 buchmann 1.10 TH2F *bestlimits = make_best_limits(explimits,obslimits,scantype, exp1mlimits, exp1plimits, exp2mlimits, exp2plimits, bestexplimits);
833 buchmann 1.1 bestlimits->GetZaxis()->SetRangeUser(limits_lower_bound,limits_upper_bound);
834    
835     for(int ilim=0;ilim<limits.size();ilim++) {
836     limits[ilim]->GetZaxis()->SetRangeUser(limits_lower_bound,limits_upper_bound);
837     }
838    
839 buchmann 1.11 if(scantype!=PlottingSetup::mSUGRA) {
840 buchmann 1.10 for(int ilim=0;ilim<obslimits.size();ilim++) make_SMS_exclusion(obslimits[ilim],xsec,scantype);
841     make_SMS_exclusion(bestlimits,xsec,scantype);
842 buchmann 1.1 } else {
843     for(int ilim=0;ilim<obslimits.size();ilim++) {
844     draw_mSUGRA_exclusion(crosssections[0], obslimits[ilim], explimits[ilim], exp1mlimits[ilim], exp1plimits[ilim], exp2mlimits[ilim], exp2plimits[ilim]);
845     }
846     draw_mSUGRA_exclusion(crosssections[0], bestlimits, bestexplimits[0], bestexplimits[1], bestexplimits[2], bestexplimits[3], bestexplimits[4]);
847     }
848     delete bestlimits;
849     }
850    
851     void decorate_mSUGRA(TH2F *cleanhisto, TVirtualPad *cvsSys,TGraph *expected,TGraph *expected2,TGraph *observed) {
852     cvsSys->SetRightMargin(standardmargin);
853     Int_t tanBeta_ = 10;
854     Bool_t plotLO_ = false;
855    
856     //convert tanb value to string
857     std::stringstream tmp;
858     tmp << tanBeta_;
859     TString tanb( tmp.str() );
860    
861     //set old exclusion Limits
862     TGraph* LEP_ch = set_lep_ch(tanBeta_);
863     TGraph* LEP_sl = set_lep_sl(tanBeta_);//slepton curve
864     TGraph* TEV_sg_cdf = set_tev_sg_cdf(tanBeta_);//squark gluino cdf
865     TGraph* TEV_sg_d0 = set_tev_sg_d0(tanBeta_);//squark gluino d0
866     TGraph* stau = set_tev_stau(tanBeta_);//stau
867     TGraph* NoEWSB = set_NoEWSB(tanBeta_);
868    
869     TGraph* TEV_sn_d0_1 = set_sneutrino_d0_1(tanBeta_);
870     TGraph* TEV_sn_d0_2 = set_sneutrino_d0_2(tanBeta_);
871    
872     //constant ssqquark and gluino lines
873     TF1* lnsq[10];
874     TF1* lngl[10];
875    
876     TLatex* sq_text[10];
877     TLatex* gl_text[10];
878    
879     for(int i = 0; i < 6; i++){
880     lnsq[i] = constant_squark(tanBeta_,i);
881     sq_text[i] = constant_squark_text(i,*lnsq[i],tanBeta_);
882     lngl[i] = constant_gluino(tanBeta_,i);
883     gl_text[i] = constant_gluino_text(i,*lngl[i]);
884     }
885    
886     //Legends
887     TLegend* legst = makeStauLegend(0.05,tanBeta_);
888     TLegend* legNoEWSB = makeNoEWSBLegend(0.05,tanBeta_);
889     TLegend* legexp = makeExpLegend( *TEV_sg_cdf,*TEV_sg_d0,*LEP_ch,*LEP_sl,*TEV_sn_d0_1,0.035,tanBeta_);
890    
891     TEV_sn_d0_1->SetLineWidth(1);
892     TEV_sn_d0_2->SetLineWidth(1);
893     TEV_sg_d0->SetLineWidth(1);
894    
895     double m0min = 0;
896     if (tanBeta_ == 50) m0min=200;
897     TH2F* hist = new TH2F("h","h",100,m0min,1000,100,120,700);
898     hist->Draw();
899     hist->GetXaxis()->SetTitle("m_{0} [GeV]");
900     hist->GetXaxis()->CenterTitle();
901     hist->GetYaxis()->SetTitle("m_{1/2} [GeV]");
902     hist->GetYaxis()->CenterTitle();
903     hist->GetXaxis()->SetTitleSize(0.04);
904     hist->GetYaxis()->SetTitleSize(0.04);
905     hist->GetXaxis()->SetTitleOffset(1.2);
906     hist->GetYaxis()->SetTitleOffset(1.5);
907     hist->GetXaxis()->SetNdivisions(506);
908     hist->GetYaxis()->SetNdivisions(506);
909    
910     int col[]={2,3,4};
911    
912     TLegend* myleg;
913    
914     if( plotLO_ ) myleg = new TLegend(0.3,0.65,0.65,0.8,NULL,"brNDC");
915     else myleg = new TLegend(0.25,0.76,0.44,0.91,NULL,"brNDC");
916    
917     myleg->SetFillColor(0);
918     myleg->SetShadowColor(0);
919     myleg->SetTextSize(0.04);
920     myleg->SetBorderSize(0);
921    
922     //constant squark and gluino mass contours
923     for (int it=0;it<5;it++) {
924     lngl[it]->Draw("same");
925     lnsq[it]->Draw("same");
926     sq_text[it]->Draw();
927     gl_text[it]->Draw();
928     }
929    
930     //exclusion limits previous experiments
931     if(tanBeta_ == 3){
932     TEV_sn_d0_1->Draw("fsame");
933     TEV_sn_d0_2->Draw("fsame");
934     }
935     LEP_ch->Draw("fsame");
936     if (tanBeta_ != 50) LEP_sl->Draw("fsame");
937    
938     //remove CDF/D0 excluded regions
939     TEV_sg_cdf->Draw("fsame");
940     TEV_sg_d0->Draw("same");
941     TEV_sg_d0->Draw("fsame");
942    
943     //other labels
944     Double_t xpos = 0;
945     Double_t xposi = 0;
946     Double_t ypos = 0;
947     if(tanBeta_ == 50) xposi = 100;
948     if(tanBeta_ == 50) xpos = 200;
949     if(tanBeta_ == 50) ypos = -10;
950    
951     TString text_tanBeta;
952     text_tanBeta = "tan#beta = "+tanb+", A_{0} = 0, #mu > 0";
953     TLatex* cmssmpars = new TLatex(/*530.+xpos,690.+ypos-130*/150,650,text_tanBeta);
954    
955     cmssmpars->SetTextSize(0.03);
956     cmssmpars->Draw("same");
957    
958     TLatex* lep_chargino = new TLatex(250,135,"LEP2 #tilde{#chi}_{1}^{#pm}");
959     lep_chargino->SetTextSize(0.03);
960     lep_chargino->SetTextFont(42);
961    
962     TLatex* lep_slepton = new TLatex(26,190,"LEP2 #tilde{#font[12]{l}}^{#pm}");
963     lep_slepton->SetTextSize(0.03);
964     lep_slepton->SetTextAngle(-83);
965     lep_slepton->SetTextFont(42);
966    
967     if(draw2sigma) expected2->Draw("f");
968     expected->SetLineColor(expected->GetFillColor());
969     expected2->SetLineColor(expected2->GetFillColor());
970     expected->Draw("f");
971     observed->Draw("c");
972    
973     stau->Draw("fsame");
974     NoEWSB->Draw("fsame");
975    
976     legexp->AddEntry(observed,"Observed limit","l");
977     legexp->AddEntry(expected,"Expected 1#sigma limit","f");
978     if(draw2sigma) legexp->AddEntry(expected2,"Expected 2#sigma limit","f");
979     legexp->SetY1(0.60);
980     legexp->SetX1(0.55);
981     legexp->Draw();
982     legst->Draw();
983    
984     hist->Draw("sameaxis");
985     cvsSys->RedrawAxis();
986     cvsSys->Update();
987     DrawPrelim();
988     }
989    
990     void smooth_line_once(TGraph *gr) {
991     //going to smooth graph
992     //need to take into account the DIRECTION we're heading so we noticed for expected shape when we turn around and go back
993     float previousX=-100;
994     int sign=1;
995     for(int i=0;i<gr->GetN();i++) {
996     Double_t x,y,x1,y1,x2,y2;
997     bool turning=false;
998     gr->GetPoint(i,x,y);
999     gr->GetPoint(i+1,x1,y1);//need to handle exception here
1000     gr->GetPoint(i-1,x2,y2);//need to handle exception here
1001     if(i!=gr->GetN()-1&& (sign*x<=sign*previousX||sign*x1<=sign*x)) {
1002     //turned around!
1003     sign=(-1)*sign;
1004     // do NOT do any smoothing on this point!
1005     } else {
1006     float newval=y;
1007     if(i>0&&i<(gr->GetN())-1) newval=(1.0/3.0)*(y+y1+y2);
1008     if(i==0) newval=(1.0/2.0)*(y+y1);
1009     if(i==gr->GetN()-1) newval=(1.0/2.0)*(y+y2);
1010     gr->SetPoint(i,x,newval);
1011     }
1012     previousX=x;
1013     }
1014     }
1015    
1016     void smooth_line(TGraph *gr) {
1017     smooth_line_once(gr);
1018     smooth_line_once(gr);
1019     smooth_line_once(gr);
1020     }
1021 buchmann 1.10 void set_range(TH2F *histo, int scantype, bool pushoutyz=false) {
1022 buchmann 1.11 if(scantype==PlottingSetup::mSUGRA) {
1023 buchmann 1.1 histo->GetXaxis()->SetRangeUser(0,2000);
1024     histo->GetYaxis()->SetRangeUser(0,800);
1025     histo->GetXaxis()->SetTitle("m_{0} [GeV]");
1026     histo->GetYaxis()->SetTitle("m_{1/2} [GeV]");
1027     histo->GetXaxis()->SetRangeUser(0,2000);
1028     histo->GetXaxis()->SetNdivisions(504,true);
1029 buchmann 1.11 }
1030     if(scantype==PlottingSetup::SMS) {
1031 buchmann 1.1 histo->GetXaxis()->SetRangeUser(50,1200);
1032     histo->GetYaxis()->SetRangeUser(50,1200);
1033     histo->GetXaxis()->SetTitle("m_{#tilde{g}} [GeV]");
1034     histo->GetYaxis()->SetTitle("m_{LSP} [GeV]");
1035     histo->GetXaxis()->SetTitleSize(0.04);
1036     histo->GetYaxis()->SetTitleSize(0.04);
1037     histo->GetZaxis()->SetTitleSize(0.04);
1038     histo->GetXaxis()->SetTitleOffset(1.2);
1039     histo->GetYaxis()->SetTitleOffset(1.5);
1040     if(pushoutyz) histo->GetZaxis()->SetTitleOffset(1.6);
1041 buchmann 1.10 }
1042 buchmann 1.11 if(scantype==PlottingSetup::GMSB) {
1043 buchmann 1.12 histo->GetXaxis()->SetRangeUser(100,1200);
1044     histo->GetYaxis()->SetRangeUser(100,1200);
1045 buchmann 1.10 histo->GetXaxis()->SetTitle("m_{#tilde{g}} [GeV]");
1046 buchmann 1.13 histo->GetYaxis()->SetTitle("m_{#chi} [GeV]");
1047 buchmann 1.10 histo->GetXaxis()->SetTitleSize(0.04);
1048     histo->GetYaxis()->SetTitleSize(0.04);
1049     histo->GetZaxis()->SetTitleSize(0.04);
1050     histo->GetXaxis()->SetTitleOffset(1.2);
1051     histo->GetYaxis()->SetTitleOffset(1.5);
1052     if(pushoutyz) histo->GetZaxis()->SetTitleOffset(1.6);
1053     }
1054 buchmann 1.1
1055     histo->GetXaxis()->CenterTitle();
1056     histo->GetYaxis()->CenterTitle();
1057     histo->SetStats(0);
1058     }
1059    
1060     TH2F* adjust_histo(TH2F *oldhist, TH2F *refhisto) {
1061     TH2F *histo = new TH2F(refhisto->GetName(),refhisto->GetName(),
1062     refhisto->GetNbinsX(),refhisto->GetXaxis()->GetBinLowEdge(1),refhisto->GetXaxis()->GetBinLowEdge(refhisto->GetNbinsX())+refhisto->GetXaxis()->GetBinWidth(refhisto->GetNbinsX()),
1063     refhisto->GetNbinsY(),refhisto->GetYaxis()->GetBinLowEdge(1),refhisto->GetYaxis()->GetBinLowEdge(refhisto->GetNbinsY())+refhisto->GetYaxis()->GetBinWidth(refhisto->GetNbinsY()));
1064    
1065     for(int ix=1;ix<=refhisto->GetNbinsX();ix++) {
1066     for(int iy=1;iy<=refhisto->GetNbinsX();iy++) {
1067     int binnum=refhisto->FindBin(refhisto->GetXaxis()->GetBinCenter(ix),refhisto->GetYaxis()->GetBinCenter(iy));
1068     histo->SetBinContent(binnum,oldhist->GetBinContent(ix,iy));
1069     }
1070     }
1071     return histo;
1072     }
1073    
1074 buchmann 1.10 void process_syst_plot(TH2F *rhisto,string saveto,int scantype) {
1075     TH2F *histo = prep_histo(rhisto,scantype); // this is to be independent of the style used at creation time
1076 buchmann 1.1 float rightmargin=gStyle->GetPadRightMargin();
1077     gStyle->SetPadRightMargin(0.20);
1078     TString name = rhisto->GetName();
1079     if(name.Contains("Nevents")) gStyle->SetPadRightMargin(0.22);
1080     TCanvas *can = new TCanvas("syst_plot","Systematics Plot");
1081 buchmann 1.10 set_range(histo,scantype,true);
1082 buchmann 1.1
1083    
1084     if(name.Contains("efficiency")) {
1085     histo->GetZaxis()->SetTitle("A #times #varepsilon (#geq 1 Z(ll))");
1086 pablom 1.9 //histo->GetZaxis()->SetRangeUser(0.0,0.3);
1087 buchmann 1.1 }
1088     if(name.Contains("Nevents")) {
1089     histo->GetZaxis()->SetTitle("N(events)");
1090     histo->GetZaxis()->SetTitleOffset(histo->GetZaxis()->GetTitleOffset()+0.4);
1091     }
1092     if(name.Contains("sysjes")) {
1093     histo->GetZaxis()->SetTitle("Jet Energy Scale");
1094     histo->GetZaxis()->SetRangeUser(0.0,0.2);
1095     }
1096     if(name.Contains("sysjsu")) {
1097     histo->GetZaxis()->SetTitle("JZB Scale Uncertainty");
1098     histo->GetZaxis()->SetRangeUser(0.0,0.5);
1099     }
1100     if(name.Contains("sysresmap")) {
1101     histo->GetZaxis()->SetTitle("Resulution");
1102     histo->GetZaxis()->SetRangeUser(0.0,0.5);
1103     }
1104     if(name.Contains("sysstatmap")) {
1105     histo->GetZaxis()->SetTitle("Statistical Error");
1106     histo->GetZaxis()->SetRangeUser(0.0,0.01);
1107     }
1108     if(name.Contains("systotmap")) {
1109     histo->GetZaxis()->SetTitle("All Systematic Errors");
1110     histo->GetZaxis()->SetRangeUser(0.0,0.5);
1111     }
1112    
1113     histo->GetZaxis()->CenterTitle();
1114     gStyle->SetStripDecimals(false);
1115     histo->GetXaxis()->SetDecimals(true);
1116    
1117     histo->Draw("COLZ");
1118     DrawPrelim();
1119    
1120     CompleteSave(can,(saveto+(string)histo->GetName()));
1121    
1122     gStyle->SetPadRightMargin(rightmargin);
1123    
1124     delete can;
1125     }
1126    
1127 buchmann 1.10 void make_all_syst_plots(vector<TH2F*> all_histos,int scantype) {
1128 buchmann 1.1 string saveto="Systematics/";
1129     for(int iplot=0;iplot<all_histos.size();iplot++) {
1130 buchmann 1.10 process_syst_plot(all_histos[iplot],saveto,scantype);
1131 buchmann 1.1 }
1132     }
1133    
1134     void process_file(TFile* file, float stdmargin) {
1135     standardmargin=stdmargin;
1136     xsecfilename="reference_xSec_SMS.root";
1137    
1138     // can receive a file with systematics and limits mixed, or a file with systematics only , or a file with limits only.
1139     TIter nextkey(file->GetListOfKeys());
1140     TKey *key;
1141    
1142 buchmann 1.11 int scantype=PlottingSetup::SMS;
1143 buchmann 1.1
1144     vector<TH2F*> systematics_histos;
1145     vector<TH2F*> limits_histos;
1146     while ((key = (TKey*)nextkey()))
1147     {
1148     TObject *obj = key->ReadObj();
1149     if (!(obj->IsA()->InheritsFrom("TH2"))) continue;
1150     TString name=(TString)(obj->GetName());
1151     bool is_limit=false;
1152     bool is_systematic=false;
1153    
1154     if(name.Contains("limitmap")) is_limit=true;
1155     if(name.Contains("explimitmap")) is_limit=true;
1156     if(name.Contains("exp1plimitmap")) is_limit=true;
1157     if(name.Contains("exp2plimitmap")) is_limit=true;
1158     if(name.Contains("exp1mlimitmap")) is_limit=true;
1159     if(name.Contains("exp2mlimitmap")) is_limit=true;
1160     if(name.Contains("exclusionmap")) is_limit=true;
1161     if(name.Contains("crosssectionmap")) is_limit=true;
1162     if(name.Contains("absolutecrosssectionmap")) is_limit=true;
1163     if(name.Contains("limitflipmap")) is_limit=true;
1164    
1165     if(name.Contains("sysjes")) is_systematic=true;
1166     if(name.Contains("sysjsu")) is_systematic=true;
1167     if(name.Contains("sysresmap")) is_systematic=true;
1168     if(name.Contains("efficiencymap")) is_systematic=true;
1169     if(name.Contains("efficiencymapAcc")) is_systematic=true;
1170     if(name.Contains("efficiencymapID")) is_systematic=true;
1171     if(name.Contains("efficiencymapJets")) is_systematic=true;
1172     if(name.Contains("efficiencymapSignal")) is_systematic=true;
1173     if(name.Contains("noscefficiencymap")) is_systematic=true;
1174     if(name.Contains("Neventsmap")) is_systematic=true;
1175     if(name.Contains("ipointmap")) is_systematic=true;
1176     if(name.Contains("syspdfmap")) is_systematic=true;
1177     if(name.Contains("systotmap")) is_systematic=true;
1178     if(name.Contains("sysstatmap")) is_systematic=true;
1179     if(name.Contains("timemap")) is_systematic=true;
1180     if(name.Contains("flipmap")) is_systematic=true;
1181    
1182     if(is_limit) limits_histos.push_back((TH2F*) obj);
1183     else if(is_systematic) systematics_histos.push_back((TH2F*) obj);
1184 buchmann 1.11 if(name.Contains("mSUGRA")) scantype=PlottingSetup::mSUGRA;
1185     if(name.Contains("GMSB")) scantype=PlottingSetup::GMSB;
1186 buchmann 1.1 }
1187 buchmann 1.10 if(systematics_histos.size()>0) make_all_syst_plots(systematics_histos,scantype);
1188     if(limits_histos.size()>0) create_exclusion_plots(limits_histos,scantype);
1189 buchmann 1.1 }
1190