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root/cvsroot/UserCode/cbrown/Development/Plotting/Selective_Plot_Generator.C
Revision: 1.7
Committed: Wed Apr 18 09:20:36 2012 UTC (13 years ago) by buchmann
Content type: text/plain
Branch: MAIN
Changes since 1.6: +7 -2 lines
Log Message:
Added diboson plots (pred/obs and jzb plots)

File Contents

# User Rev Content
1 buchmann 1.1 #include <iostream>
2     #include <vector>
3     #include <sys/stat.h>
4     #include <getopt.h>
5     #include <stdio.h>
6     #include <stdlib.h>
7     #include "Modules/GeneralToolBox.C"
8     #include "Modules/SampleClass.C"
9     #include "Modules/setTDRStyle.C"
10     #include "Modules/Setup.C"
11     #include "Modules/Poisson_Calculator.C"
12     #include "Modules/ActiveSamples.C"
13     #include "Modules/PeakFinder.C"
14     #include "Modules/UpperLimitsWithShape.C"
15     #include "Modules/Plotting_Functions.C"
16     #include "Modules/LimitCalculation.C"
17     #include "Modules/ResultModule.C"
18 buchmann 1.4 #include "Modules/CrossSectionReader.C"
19 buchmann 1.1 #include "Modules/Systematics.C"
20     #include "Modules/SUSYScan.C"
21    
22     #include <TCut.h>
23     #include <TROOT.h>
24     #include <TCanvas.h>
25     #include <TMath.h>
26     #include <TColor.h>
27     #include <TPaveText.h>
28     #include <TRandom.h>
29     #include <TH1.h>
30     #include <TH2.h>
31     #include <TF1.h>
32     #include <TSQLResult.h>
33    
34     #ifndef Verbosity
35     #define Verbosity 0
36     #endif
37     #ifndef HUSH
38     #define HUSH 1
39     #endif
40    
41     using namespace PlottingSetup;
42    
43     void usage(int passed=0 ) {
44     std::cout << "USAGE : " << std::endl;
45     std::cout << "You can use different options when running this program : " << std::endl;
46     std::cout << std::endl;
47     std::cout << "\033[1;34m all\033[0m \t\t All processes of the standard workflow" << std::endl;
48     std::cout << "\033[1;34m peak\033[0m \t\t Peak finding" << std::endl;
49     std::cout << "\033[1;34m kin\033[0m \t\t Kinematic plots" << std::endl;
50     std::cout << "\033[1;34m pfkin\033[0m \t Kinematic plots for PF variables" << std::endl;
51     std::cout << "\033[1;34m region\033[0m \t Region comparison plots" << std::endl;
52     std::cout << "\033[1;34m lepton\033[0m \t Lepton comparison plots" << std::endl;
53     std::cout << "\033[1;34m jzb\033[0m \t\t JZB plots" << std::endl;
54     std::cout << "\033[1;34m pred\033[0m \t\t Prediction plots" << std::endl;
55     std::cout << "\033[1;34m ratio\033[0m \t Ratio plots (standalone ratio plot)" << std::endl;
56     std::cout << "\033[1;34m signalbg\033[0m \t Signal vs. background plots (shape comparison)" << std::endl;
57     std::cout << "\033[1;34m ttbar\033[0m \t TTbar sideband comparison" << std::endl;
58     std::cout << "\033[1;34m zjets\033[0m \t ZJets plots" << std::endl;
59 buchmann 1.7 std::cout << "\033[1;34m diboson\033[0m \t Diboson plots" << std::endl;
60 buchmann 1.1 std::cout << "\033[1;34m results\033[0m \t Compute results (JZB>X)" << std::endl;
61     std::cout << "\033[1;34m syst\033[0m \t\t Compute systematics" << std::endl;
62     std::cout << "\033[1;34m eff\033[0m \t\t Compute all (partial) efficiencies" << std::endl;
63     std::cout << "\033[1;34m shapes\033[0m \t Prepare ROOT files for computing limits using shapes" << std::endl;
64     std::cout << "\033[1;34m counting\033[0m \t Establish limits with counting experiment" << std::endl;
65 buchmann 1.2 std::cout << "\033[1;34m qcd\033[0m \t\t Show that QCD is negligible" << endl;
66 buchmann 1.1 std::cout << "\033[1;34m response\033[0m \t Compute response correction" << std::endl;
67     std::cout << "\033[1;34m pickup\033[0m \t Pick up interesting events" << std::endl;
68     std::cout << "\033[1;34m yields\033[0m \t Compute MC yields for this lumi" << std::endl;
69     std::cout << "\033[1;34m sideassess\033[0m\t Assessment of the mass sidebands definition in the data" << std::endl;
70     std::cout << "\033[1;34m jes\033[0m \t\t Make Jet Energy Scale (JES) plot" << std::endl;
71     std::cout << "\033[1;34m save\033[0m \t\t Save results in a template file (for reuse when establishing limits for scans)" << std::endl;
72     std::cout << "\033[1;34m png\033[0m \t\t Save all plots as pngs (also available: --pdf, --root, --eps, --C) standard: png&pdf" << std::endl;
73     std::cout << "\033[1;34m offpeak\033[0m \t Sets offpeak to true (i.e. carry out off-peak analysis!)" << std::endl;
74     std::cout << "\033[1;34m onpeak\033[0m \t Sets onpeak to true (i.e. carry out standard on-peak analysis!)" << std::endl;
75 buchmann 1.2 std::cout << "\033[1;34m jzbcuts\033[0m \t Sets the jzb cuts (please provide them in the format 50,100,150,200 and so on (comma separated)" << endl;
76     std::cout << "\033[1;34m ptsanity\033[0m \t Checks whether all samples have the correct pt range (additional canvas for you to check)" << endl;
77 buchmann 1.3 std::cout << "\033[1;34m mlls\033[0m \t Draw dilepton invariant mass for all signals" << endl;
78 buchmann 1.1 std::cout << std::endl;
79     std::cout << "\033[1;34m dir (d)\033[0m\t Directory where all plots will be saved" << std::endl;
80     std::cout << "\033[1;34m public \033[0m\t Switch to be activated when using the algorithm in public (no branding etc.)" << std::endl;
81     std::cout << std::endl;
82     std::cout << std::endl;
83     std::cout << "\033[1;34m met\033[0m \t\t Compute obs/pred for met cut vs jzb cut (in data, lm4 and lm8)" << std::endl;
84 buchmann 1.5 std::cout << "\033[1;34m metvsjzb\033[0m \t\t Produce MET:JZB plots" << std::endl;
85 buchmann 1.1 std::cout << std::endl;
86     std::cout << std::endl;
87     std::cout << "\033[1;34m paper\033[0m \t\t Switch paper mode on (no \" Preliminary \" on plots)" << std::endl;
88     exit(-1);
89     }
90    
91     int main (int argc, char ** argv)
92     {
93     int do_all = false;/// DONE
94     int do_peak_finding = false; /// DONE
95     int do_kinematic_variables = false; ///DONE
96     int do_kinematic_PF_variables = false; ///DONE
97     int do_region_comparison = false; /// Comparison between signal and control regions
98     int do_lepton_comparison = false; ///DONE
99     int do_jzb_plots = false; /// DONE
100     int do_pred = false; /// DONE
101     bool overlay_signal = false; /// Overlay LM4 signal to predictions
102     int do_ratio = false; /// DONE ------------------------------------------- still need to adapt the legend!
103     int do_signal_bg_comparison_plot = false; /// DONE
104     int do_ttbar_comparison = false; /// DONE
105     int do_jzb_efficiency_curve = false; /// DONE
106     int do_zjets_comparison = false; /// DONE
107 buchmann 1.7 int do_diboson_plots = false;
108 buchmann 1.1 // int calculate_pred_and_observed = false; /// DONE -- now rerouted to the new way of computing results
109     // int calculate_yields = false; ///DONE /// superfluous (replaced by get_new_results)
110     int get_new_results = false; ///DONE
111     bool dopoisson = false;//should we calculate stat err with poisson? ///DONE
112     bool verbose = false;//prints out a lot more information ... ///DONE
113     //--------------------------------------------
114     // Systematics and limits
115     int do_compute_systematics=false; /// DONE (might want to add something related to the peak?)
116     bool requireZ=true; // should we require a Z for MC efficiency?
117     int do_compute_efficiency=false; /// DONE (might want to add something related to the peak?)
118     int do_prepare_limits_using_shapes=false; /// ALMOST DONE **************************************
119     int do_compute_upper_limits_from_counting_experiment=false; /// DONE
120     bool doobserved=false; // want to get the observed limit as well?
121     int doquick=1; // this will cause the number of predicted/observed events to hurry up (0 = do mc and all results, 1 = all results but no mc, 2 = don't save results in library and don't compute mc stuff)
122    
123     //--------------------------------------------
124     // More not-so-standard stuff
125     int do_model_scan=false; // this can take days - use the grid version!
126     int do_zjet_ttbar_shapes=false; /// DONE
127     int do_test=false;/// DONE (just any test you wish)
128     int do_pick_up_events=false; ///DONE
129    
130     //--------------------------------------------
131     // To be run manually !
132     int do_response_correction=false; ///DONE
133     //use this to find out the correction factor; originally this was done automatically but now you should do this separately and update Modules/Setup.C
134    
135     int do_sideband_assessment=false;
136 buchmann 1.2 int do_qcd=false;
137 buchmann 1.1
138     int do_save_template=false;
139     int do_mc_yields=false; // compute MC yields
140     int do_metjzb=false;
141    
142     int savepdf=true;
143     int saveC=true;
144     int saveRoot=true;
145     int savepng=true;
146     int saveeps=false;
147    
148 buchmann 1.3 int dooffpeak=true;
149 buchmann 1.1 int doonpeak=false;
150    
151     int do_JES=false;
152 buchmann 1.2 int do_ptsanity=false;
153 buchmann 1.3 int do_mlls=false;
154 buchmann 1.5 int do_met_vs_jzb=false;
155 buchmann 1.1
156     std::string directory="";
157     int option_iterator;
158     int option_counter=0;
159     bool moreoptions=true;
160    
161     string jzbcuts_string="";
162    
163     while(moreoptions) {
164     static struct option long_options[] =
165     {
166     /* These options set a flag. */
167     {"all", no_argument, &do_all, 1},
168     {"peak", no_argument, &do_peak_finding, 1},
169     {"kin", no_argument, &do_kinematic_variables, 1},
170     {"pfkin", no_argument, &do_kinematic_PF_variables, 1},
171     {"region", no_argument, &do_region_comparison, 1},
172     {"lepton", no_argument, &do_lepton_comparison, 1},
173     {"jzb", no_argument, &do_jzb_plots, 1},
174     {"pred", no_argument, &do_pred, 1},
175     {"ratio", no_argument, &do_ratio, 1},
176     {"signalbg", no_argument, &do_signal_bg_comparison_plot, 1},
177     {"ttbar", no_argument, &do_ttbar_comparison, 1},
178     {"zjets", no_argument, &do_zjets_comparison, 1},
179 buchmann 1.7 {"diboson", no_argument, &do_diboson_plots, 1},
180 buchmann 1.1 {"results", no_argument, &get_new_results, 1},
181     {"syst", no_argument, &do_compute_systematics, 1},
182     {"eff", no_argument, &do_compute_efficiency, 1},
183     {"shapes", no_argument, &do_prepare_limits_using_shapes, 1},
184     {"counting", no_argument, &do_compute_upper_limits_from_counting_experiment, 1},
185 buchmann 1.2 {"ptsanity", no_argument, &do_ptsanity, 1},
186 buchmann 1.1 {"response", no_argument, &do_response_correction, 1},
187     {"pickup", no_argument, &do_pick_up_events, 1},
188     {"yields", no_argument, &do_mc_yields, 1},
189     {"sideassess",no_argument, &do_sideband_assessment, 1},
190 buchmann 1.5 {"metvsjzb", no_argument, &do_met_vs_jzb, 1},
191 buchmann 1.2 {"qcd", no_argument, &do_qcd, 1},
192 buchmann 1.1 {"save", no_argument, &do_save_template,1},
193     {"png", no_argument, &savepng,1},
194     {"eps", no_argument, &saveeps,1},
195     {"pdf", no_argument, &savepdf,1},
196     {"root", no_argument, &saveRoot,1},
197     {"C", no_argument, &saveC,1},
198     {"offpeak", no_argument, &dooffpeak,1},
199     {"onpeak", no_argument, &doonpeak,1},
200     {"met", no_argument, &do_metjzb,1},
201     {"jes", no_argument, &do_JES,1},
202     {"effcurve", no_argument, &do_jzb_efficiency_curve,1},
203     {"public", no_argument, &PlottingSetup::publicmode,1},
204     {"paper", no_argument, &PlottingSetup::PaperMode,1},
205 buchmann 1.3 {"mlls", no_argument, &do_mlls,1},
206 buchmann 1.1 /* The following options store values.*/
207     {"jzbcuts", required_argument, 0, 'j'},
208     {"dir", required_argument, 0, 'd'},
209     {0, 0, 0, 0}
210     };
211     int option_index = 0;
212     option_iterator = getopt_long(argc, argv, "ad:j:",long_options, &option_index);
213     if(option_iterator == -1) moreoptions=false;
214     else {
215     option_counter++;
216     switch (option_iterator)
217     {
218     case 0:
219     if (long_options[option_index].flag != 0)
220     break;
221     printf ("option %s", long_options[option_index].name);
222     if (optarg)
223     printf (" with arg %s", optarg);
224     printf ("\n");
225     break;
226     case 'a':
227     do_all=true;
228     break;
229     case 'd':
230     directory=(std::string)optarg;
231     std::cout<<"Option directory was passed with argument " << optarg << std::endl;
232     break;
233     case 'j':
234     jzbcuts_string=(std::string)optarg;
235     std::cout<<"JZB cuts were manually defined:" << optarg << std::endl;
236     break;
237     case '?':
238     usage(option_iterator);
239     break;
240     default:
241     usage(option_iterator);
242     }
243     }
244     }
245    
246     if(directory!="") PlottingSetup::directoryname=directory;
247     if(dooffpeak) PlottingSetup::RestrictToMassPeak=false;
248     if(doonpeak) PlottingSetup::RestrictToMassPeak=true;
249     if(option_counter==0) usage();
250    
251     ///----------------------------------- BELOW THIS LINE: NO MORE OPTIONS BUT ACTUAL FUNCTION CALLS! ---------------------------------------------------------
252     gROOT->SetStyle("Plain");
253     bool do_fat_line=false; // if you want to have HistLineWidth=1 and FuncWidth=1 as it was before instead of 2
254     setTDRStyle(do_fat_line);
255     gStyle->SetTextFont(42);
256     bool showList=true;
257     set_directory(directoryname);//Indicate the directory name where you'd like to save the output files in Setup.C
258     set_treename("events");//you can set the treename here to be used; options are "events" (for reco) for "PFevents" (for particle flow)
259     // define_samples(showList,allsamples);
260 buchmann 1.2 define_samples(showList,allsamples,signalsamples,scansample,raresample,systsamples,qcdsamples);
261 buchmann 1.1 setlumi(luminosity);
262     setessentialcut(essential);//this sets the essential cut; this one is used in the draw command so it is AUTOMATICALLY applied everywhere. IMPORTANT: Do NOT store weights here!
263     stringstream resultsummary;
264    
265     write_analysis_type(PlottingSetup::RestrictToMassPeak);
266     do_png(savepng);
267     do_pdf(savepdf);
268     do_eps(saveeps);
269     do_C(saveC);
270     do_root(saveRoot);
271    
272    
273     global_ratio_binning.push_back(0);
274     global_ratio_binning.push_back(5);
275     global_ratio_binning.push_back(10);
276     global_ratio_binning.push_back(20);
277     global_ratio_binning.push_back(50);
278     global_ratio_binning.push_back(100);
279     global_ratio_binning.push_back(200);
280     global_ratio_binning.push_back(400);
281     //global_ratio_binning.push_back(500);
282    
283     //these are the JZB cuts defining our search regions
284     vector<float> jzb_cut; //starting where, please?
285     if(jzbcuts_string=="") {
286     jzb_cut.push_back(50);
287     // jzb_cut.push_back(75);
288     jzb_cut.push_back(100);
289     // jzb_cut.push_back(125);
290     jzb_cut.push_back(150);
291     // jzb_cut.push_back(175);
292     jzb_cut.push_back(200);
293     // jzb_cut.push_back(225);
294     jzb_cut.push_back(250);
295     // jzb_cut.push_back(275);
296     // jzb_cut.push_back(300);
297     } else {
298     manually_set_jzb_cuts(jzb_cut,jzbcuts_string);
299     if(jzb_cut.size()==0) {
300     write_error(__FUNCTION__,"There are no jzb cuts!");
301     return -1;
302     }
303     }
304    
305     todo();
306 buchmann 1.2
307 buchmann 1.1 //**** part 1 : peak finding
308     float MCPeak=0,MCPeakError=0,DataPeak=0,DataPeakError=0,MCSigma=10,DataSigma=10;
309     method=Kostasmethod;//Kostasmethod;//dogaus3sigma;// options: dogaus,doKM,dogaus2sigma,dogaus3sigma
310 buchmann 1.7 write_warning(__FUNCTION__,"NOT DOING ANY PEAK FINDING ATM");
311     // if(do_peak_finding||do_mlls||do_sideband_assessment||do_metjzb||do_zjet_ttbar_shapes||do_diboson_plots||do_region_comparison||do_jzb_plots||do_lepton_comparison||do_signal_bg_comparison_plot||do_pred||do_ratio||do_mc_yields||do_save_template||do_compute_upper_limits_from_counting_experiment||do_compute_systematics||do_model_scan||do_prepare_limits_using_shapes||do_all||get_new_results||do_ttbar_comparison||do_kinematic_variables||do_kinematic_PF_variables) find_peaks(MCPeak,MCPeakError, DataPeak, DataPeakError,MCSigma,DataSigma,resultsummary);
312 buchmann 1.1
313    
314     stringstream datajzb;
315     if(DataPeak>0) datajzb<<"("<<jzbvariabledata<<"-"<<TMath::Abs(DataPeak)<<")";
316     else datajzb<<"("<<jzbvariabledata<<"+"<<TMath::Abs(DataPeak)<<")";
317     stringstream mcjzb;
318     if(MCPeak>0) mcjzb<<"("<<jzbvariablemc<<"-"<<TMath::Abs(MCPeak)<<")";
319     else mcjzb<<"("<<jzbvariablemc<<"+"<<TMath::Abs(MCPeak)<<")";
320    
321     dout << "With peak correction, we get : " << endl;
322     dout << " Data : " << datajzb.str() << endl;
323     dout << " MC : " << mcjzb.str() << endl;
324    
325    
326    
327     //**** part 2 : kinematic plots
328     if(do_kinematic_variables||do_all) do_kinematic_plots(mcjzb.str(),datajzb.str());
329     if(do_kinematic_PF_variables) do_kinematic_PF_plots(mcjzb.str(),datajzb.str());
330    
331     //**** part 3: Leptonic comparison (ee vs mm, eemm vs emu)
332     if(do_lepton_comparison||do_all) lepton_comparison_plots();
333    
334    
335     //**** part 3b: comparison between control regions (SFZPJZBPOS,SFZPJZBNEG,...)
336     if (do_region_comparison||do_all) region_comparison_plots(mcjzb.str(),datajzb.str(),jzb_cut);
337    
338     //**** part 4: JZB plots (OSOF, OSSF)
339     if(do_jzb_plots||do_all) jzb_plots(mcjzb.str(),datajzb.str(),global_ratio_binning);
340    
341     //**** part 5 : Prediction plots
342     if(do_pred||do_all) do_prediction_plots(mcjzb.str(),datajzb.str(),DataSigma,MCSigma,overlay_signal);
343    
344     //**** part 6: Ratio plots
345     if(do_ratio||do_all) do_ratio_plots(mcjzb.str(),datajzb.str(),global_ratio_binning);
346    
347     //**** part 7: Some systematics plots
348     if(do_signal_bg_comparison_plot||do_all) signal_bg_comparison();
349     if(do_ttbar_comparison||do_all) ttbar_sidebands_comparison(mcjzb.str(),global_ratio_binning);
350     if(do_zjets_comparison||do_all) zjets_prediction_comparison();
351 buchmann 1.7
352     if(do_diboson_plots) diboson_plots(mcjzb.str(),datajzb.str(),global_ratio_binning);
353 buchmann 1.1
354     if(do_JES||do_all) make_JES_plot();
355    
356     if (do_jzb_efficiency_curve ) plot_jzb_sel_eff(mcjzb.str(),signalsamples,jzb_cut);
357    
358     //**** part 8: observed and predicted!
359     if(do_all||get_new_results) doquick=0;
360     if(do_save_template) doquick=2;
361     if(do_all||do_save_template||do_compute_upper_limits_from_counting_experiment||do_model_scan||get_new_results) get_result(mcjzb.str(),datajzb.str(),DataPeakError,MCPeakError,jzb_cut,verbose,dopoisson,doquick);
362    
363     vector<float>jzb_shape_limit_bins;
364     jzb_shape_limit_bins.push_back(50);jzb_shape_limit_bins.push_back(75);jzb_shape_limit_bins.push_back(100);
365     jzb_shape_limit_bins.push_back(150);jzb_shape_limit_bins.push_back(200);jzb_shape_limit_bins.push_back(500);
366     if(do_prepare_limits_using_shapes) prepare_limits(mcjzb.str(),datajzb.str(),DataPeakError,MCPeakError,jzb_shape_limit_bins);
367    
368     //------------------------ end of standard functions
369    
370     // if(calculate_yields||do_all) calculate_all_yields(mcjzb.str(),jzb_cut); // now outdated - get_results now replaces this.
371    
372    
373     vector<vector<float> > all_systematics;
374     vector<vector<float> > all_efficiency;
375    
376     if(do_compute_systematics||do_compute_upper_limits_from_counting_experiment||do_all) all_systematics=compute_systematics(mcjzb.str(),MCPeakError,alwaysflip,datajzb.str(),signalsamples,jzb_cut,requireZ);
377     // if(do_compute_efficiency) compute_efficiency(mcjzb.str(),allsamples, 50, -200, 300);
378     if(do_compute_efficiency) write_warning(__FUNCTION__,"efficiency computation deactivated");
379    
380     if(do_compute_upper_limits_from_counting_experiment||do_all) compute_upper_limits_from_counting_experiment(all_systematics,jzb_cut,mcjzb.str(),doobserved,alwaysflip);
381    
382     //------------------------ end of analysis parts - below: special applications
383    
384 buchmann 1.5 if(do_model_scan) scan_SUSY_parameter_space(mcjzb.str(),datajzb.str(),jzb_cut,requireZ,MCPeakError,DataPeakError);
385 buchmann 1.1
386     if(do_zjet_ttbar_shapes) draw_ttbar_and_zjets_shape(mcjzb.str(),datajzb.str());
387    
388    
389     //now do predicted and observed.
390     //to that end, we need to consider systematics!
391     // systematics come from:
392     // Poisson error on pred. contributions (easy)
393     // +20%/-40% from MC closure test
394     // from peak position --> whenever we want to investigate systematics, peak position must have been set!
395    
396     //jzb response correction
397     if(do_response_correction) {
398     find_correction_factors(jzbvariabledata,jzbvariablemc);
399     dout << "Please update Modules/Setup.C to reflect the following values (round them first ... )" <<endl;
400     dout << "Corrected JZB variable definition " << endl << " Data: " << jzbvariabledata << " and MC: " << jzbvariablemc << endl;
401     dout << endl;
402     dout << "If you're feeling lazy, copy & paste this : " << endl;
403     dout << " string jzbvariabledata=\""<<jzbvariabledata<<"\";"<<endl;
404     dout << " string jzbvariablemc=\"" <<jzbvariablemc<<"\";"<<endl;
405     }
406    
407     if(do_pick_up_events) {
408    
409     dout << "Observed: " << endl;
410     pick_up_events((const char*)(cutmass&&cutOSSF&&cutnJets&&basiccut&&"((jzb[1]+0.06*pt-2.84727)>100)"));
411     dout << "Predicted (JZB<-100) OSSF" << endl;
412     pick_up_events((const char*)(cutmass&&cutOSSF&&cutnJets&&basiccut&&"((jzb[1]+0.06*pt-2.84727)<-100)"));
413     dout << "Predicted (emu, JZB>100) OSOF" << endl;
414     pick_up_events((const char*)(cutmass&&cutOSOF&&cutnJets&&basiccut&&"((jzb[1]+0.06*pt-2.84727)>100)"));
415     dout << "Predicted (emu, JZB<-100) OSOF" << endl;
416     pick_up_events((const char*)(cutmass&&cutOSOF&&cutnJets&&basiccut&&"((jzb[1]+0.06*pt-2.84727)<-100)"));
417     dout << "Predicted (SB SF, JZB>100) OSSF" << endl;
418     pick_up_events((const char*)(sidebandcut&&cutOSSF&&cutnJets&&basiccut&&"((jzb[1]+0.06*pt-2.84727)>100)"));
419     dout << "Predicted (SB SF, JZB<-100) OSSF" << endl;
420     pick_up_events((const char*)(sidebandcut&&cutOSSF&&cutnJets&&basiccut&&"((jzb[1]+0.06*pt-2.84727)<-100)"));
421     dout << "Predicted (SB emu, JZB>100) OSOF" << endl;
422     pick_up_events((const char*)(sidebandcut&&cutOSOF&&cutnJets&&basiccut&&"((jzb[1]+0.06*pt-2.84727)>100)"));
423     dout << "Predicted (SB emu, JZB<-100) OSOF" << endl;
424     pick_up_events((const char*)(cutOSOF&&cutnJets&&basiccut&&sidebandcut&&"((jzb[1]+0.06*pt-2.84727)<-100)"));
425     }
426    
427 buchmann 1.6 if(do_save_template) {
428     save_template(mcjzb.str(),datajzb.str(),jzb_cut,MCPeakError,DataPeakError);
429     PrepareDataShapes(datajzb.str(), jzb_cut, DataPeakError);
430     }
431 buchmann 1.1
432     if(do_sideband_assessment) sideband_assessment(datajzb.str(),30.0,50.0);
433    
434     if(do_mc_yields) compute_MC_yields(mcjzb.str(),jzb_cut);
435    
436     if(do_metjzb) met_jzb_cut(datajzb.str(),mcjzb.str(),jzb_cut);
437    
438 buchmann 1.2 if(do_qcd||do_all) qcd_plots(datajzb.str(),mcjzb.str(),jzb_cut);
439    
440 buchmann 1.3 if(do_mlls) do_mlls_plot(mcjzb.str());
441    
442 buchmann 1.2 if(do_ptsanity) check_ptsanity();
443 buchmann 1.3
444 buchmann 1.5 if(do_met_vs_jzb) met_vs_jzb_plots();
445 buchmann 1.1 if(do_test) test();
446    
447     return 0;
448     }
449    
450