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Comparing UserCode/cbrown/AnalysisFramework/Plotting/Modules/LimitCalculation.C (file contents):
Revision 1.25 by buchmann, Mon Sep 26 15:48:20 2011 UTC vs.
Revision 1.29 by buchmann, Wed Nov 16 13:41:30 2011 UTC

# Line 1 | Line 1
1 + /****
2 +
3 + Off peak status (RestrictToMassPeak) :
4 +
5 + x  Necessary adaptations identified
6 + x  Started working on necessary adaptations
7 + x  Necessary adaptations implemented
8 + x  Necessary adaptations tested
9 +
10 + DONE!
11 +
12 +
13 + ****/
14   #include <iostream>
15   #include <vector>
16   #include <sys/stat.h>
# Line 170 | Line 183 | ratio_binning.push_back(80);
183    
184   }
185  
186 < vector<float> compute_one_upper_limit(float mceff,float mcefferr, int ibin, string mcjzb, string plotfilename, bool doexpected) {
186 > vector<float> compute_one_upper_limit(float mceff,float mcefferr, int ibin, string mcjzb, string plotfilename, bool doexpected, int flipped) {
187    float sigma95=-9.9,sigma95A=-9.9;
188   /*
189   USAGE OF ROOSTATS_CL95
# Line 213 | Line 226 | USAGE OF ROOSTATS_CL95
226           - JZB cut [9]
227           - plot name  [10]*/
228  
229 <  dout << "Calling limit capsule instead of calling : CL95(" << luminosity << "," <<  lumiuncert*luminosity << "," << mceff << "," << mcefferr << "," << Npred[ibin] << "," << Nprederr[ibin] << "," << Nobs[ibin] << "," << false << "," << nuisancemodel<< ") " << endl;
229 >  if(flipped==0) dout << "Calling limit capsule instead of calling : CL95(" << luminosity << "," <<  lumiuncert*luminosity << "," << mceff << "," << mcefferr << "," << Npred[ibin] << "," << Nprederr[ibin] << "," << Nobs[ibin] << "," << false << "," << nuisancemodel<< ") " << endl;
230 >  if(flipped>0) dout << "Calling limit capsule instead of calling : CL95(" << luminosity << "," <<  lumiuncert*luminosity << "," << mceff << "," << mcefferr << "," << flippedNpred[ibin] << "," << flippedNprederr[ibin] << "," << flippedNobs[ibin] << "," << false << "," << nuisancemodel<< ") " << endl;
231      
232      stringstream command;
233 <    command << PlottingSetup::cbafbasedir << "/DistributedModelCalculations/Limits/NewLimitCapsule.exec " << repname.str() << " " << luminosity << " " << luminosity*lumiuncert << " " << mceff << " " << mcefferr << " " << Npred[ibin] << " " << Nprederr[ibin] << " " << Nobs[ibin] << " " << -1 << " " << PlottingSetup::basedirectory << "/" << plotfilename << " " << doexpected;
233 >    if(flipped==0) command << PlottingSetup::cbafbasedir << "/DistributedModelCalculations/Limits/TimedLimitCapsule.exec " << repname.str() << " " << luminosity << " " << luminosity*lumiuncert << " " << mceff << " " << mcefferr << " " << Npred[ibin] << " " << Nprederr[ibin] << " " << Nobs[ibin] << " " << -1 << " " << PlottingSetup::basedirectory << "/" << plotfilename << " " << doexpected;
234 >    if(flipped>0) command << PlottingSetup::cbafbasedir << "/DistributedModelCalculations/Limits/TimedLimitCapsule.exec " << repname.str() << " " << luminosity << " " << luminosity*lumiuncert << " " << mceff << " " << mcefferr << " " << flippedNpred[ibin] << " " << flippedNprederr[ibin] << " " << flippedNobs[ibin] << " " << -1 << " " << PlottingSetup::basedirectory << "/" << plotfilename << " " << doexpected;
235      dout << command.str() << endl;
236      
237      int retval = 256;
238      int attempts=0;
239 <    while(!(retval==0||attempts>=5)) {//try up to 5 times
239 >    while(!(retval==0||attempts>=3)) {//try up to 3 times
240          attempts++;
241 <        dout << "Starting limit calculation (LimitCapsule) now : Attempt " << attempts << endl;
241 >        dout << "Starting limit calculation (TimedLimitCapsule) now : Attempt " << attempts << endl;
242          retval=gSystem->Exec(command.str().c_str());
243      }
244 <    
244 >  char hostname[1023];
245 >  string completehostname=GetCompleteHostname();
246 >  gethostname(hostname,1023);
247 >  if((!((Contains(hostname,"t3ui")||Contains(hostname,"t3wn"))))&&retval==256) {
248 >        //running via CRAB and encountered the same problem too often: place a problem file to mark this problem!
249 >        stringstream markproblem;
250 >        markproblem << "touch " << PlottingSetup::basedirectory << "/exchange/problemswhilesettinglimits.txt";
251 >        gSystem->Exec(markproblem.str().c_str());      
252 >    }
253      LimitDroplet limres;
254      limres.readDroplet(repname.str());
255      dout << limres << endl;
# Line 251 | Line 274 | USAGE OF ROOSTATS_CL95
274    }//end of mc efficiency is ok
275   }
276  
277 < void compute_upper_limits_from_counting_experiment(vector<vector<float> > uncertainties,vector<float> jzbcuts, string mcjzb, bool doexpected) {
277 > void compute_upper_limits_from_counting_experiment(vector<vector<float> > uncertainties,vector<float> jzbcuts, string mcjzb, bool doexpected, int flipped) {
278    dout << "Doing counting experiment ... " << endl;
279    vector<vector<string> > limits;
280    vector<vector<float> > vlimits;
# Line 276 | Line 299 | void compute_upper_limits_from_counting_
299   //      float expected=observed/luminosity;
300        string plotfilename=(string)(TString(signalsamples.collection[isample].samplename)+TString("___JZB_geq_")+TString(any2string(JZBcutat))+TString(".png"));
301        dout << "Sample: " << signalsamples.collection[isample].samplename << ", JZB>"<<JZBcutat<< " : " << mceff << " +/- " << staterr << " (stat) +/- " << systerr << " (syst) --> toterr = " << toterr << endl;
302 <      vector<float> sigmas = compute_one_upper_limit(mceff,toterr,ibin,mcjzb,plotfilename,doexpected);
302 >      vector<float> sigmas = compute_one_upper_limit(mceff,toterr,ibin,mcjzb,plotfilename,doexpected,flipped);
303        
304        if(doexpected) {
305   //      rows.push_back(any2string(sigmas[0])+";"+any2string(sigmas[1])+";"+"("+any2string(expected)+")");
# Line 403 | Line 426 | void limit_shapes_for_systematic_effect(
426    TH1F *ZOSSFN = allsamples.Draw("ZOSSFN","-"+datajzb,binning, "JZB4limits", "events",cutmass&&cutOSSF&&limitnJetcut&&basiccut,dataormc,luminosity);
427    TH1F *ZOSOFN = allsamples.Draw("ZOSOFN","-"+datajzb,binning, "JZB4limits", "events",cutmass&&cutOSOF&&limitnJetcut&&basiccut,dataormc,luminosity);
428    
429 <  TH1F *SBOSSFP = allsamples.Draw("SBOSSFP",datajzb,binning, "JZB4limits", "events",cutOSSF&&limitnJetcut&&basiccut&&sidebandcut,dataormc,luminosity);
430 <  TH1F *SBOSOFP = allsamples.Draw("SBOSOFP",datajzb,binning, "JZB4limits", "events",cutOSOF&&limitnJetcut&&basiccut&&sidebandcut,dataormc,luminosity);
431 <  TH1F *SBOSSFN = allsamples.Draw("SBOSSFN","-"+datajzb,binning, "JZB4limits", "events",cutOSSF&&limitnJetcut&&basiccut&&sidebandcut,dataormc,luminosity);
432 <  TH1F *SBOSOFN = allsamples.Draw("SBOSOFN","-"+datajzb,binning, "JZB4limits", "events",cutOSOF&&limitnJetcut&&basiccut&&sidebandcut,dataormc,luminosity);
429 >  TH1F *SBOSSFP;
430 >  TH1F *SBOSOFP;
431 >  TH1F *SBOSSFN;
432 >  TH1F *SBOSOFN;
433    
434    TH1F *LZOSSFP = allsamples.Draw("LZOSSFP",mcjzb,binning, "JZB4limits", "events",cutmass&&cutOSSF&&limitnJetcut&&basiccut,mc,luminosity,allsamples.FindSample("LM4"));
435    TH1F *LZOSOFP = allsamples.Draw("LZOSOFP",mcjzb,binning, "JZB4limits", "events",cutmass&&cutOSOF&&limitnJetcut&&basiccut,mc,luminosity,allsamples.FindSample("LM4"));
436    TH1F *LZOSSFN = allsamples.Draw("LZOSSFN","-"+mcjzb,binning, "JZB4limits", "events",cutmass&&cutOSSF&&limitnJetcut&&basiccut,mc,luminosity,allsamples.FindSample("LM4"));
437    TH1F *LZOSOFN = allsamples.Draw("LZOSOFN","-"+mcjzb,binning, "JZB4limits", "events",cutmass&&cutOSOF&&limitnJetcut&&basiccut,mc,luminosity,allsamples.FindSample("LM4"));
438    
439 <  TH1F *LSBOSSFP = allsamples.Draw("LSBOSSFP",mcjzb,binning, "JZB4limits", "events",cutOSSF&&limitnJetcut&&basiccut&&sidebandcut,mc,luminosity,allsamples.FindSample("LM4"));
440 <  TH1F *LSBOSOFP = allsamples.Draw("LSBOSOFP",mcjzb,binning, "JZB4limits", "events",cutOSOF&&limitnJetcut&&basiccut&&sidebandcut,mc,luminosity,allsamples.FindSample("LM4"));
441 <  TH1F *LSBOSSFN = allsamples.Draw("LSBOSSFN","-"+mcjzb,binning, "JZB4limits", "events",cutOSSF&&limitnJetcut&&basiccut&&sidebandcut,mc,luminosity,allsamples.FindSample("LM4"));
442 <  TH1F *LSBOSOFN = allsamples.Draw("LSBOSOFN","-"+mcjzb,binning, "JZB4limits", "events",cutOSOF&&limitnJetcut&&basiccut&&sidebandcut,mc,luminosity,allsamples.FindSample("LM4"));
439 >  TH1F *LSBOSSFP;
440 >  TH1F *LSBOSOFP;
441 >  TH1F *LSBOSSFN;
442 >  TH1F *LSBOSOFN;
443 >  
444 >  flag_this_change(__FUNCTION__,__LINE__,false);//PlottingSetup::RestrictToMassPeak
445 >  if(PlottingSetup::RestrictToMassPeak) {
446 >      SBOSSFP = allsamples.Draw("SBOSSFP",datajzb,binning, "JZB4limits", "events",cutOSSF&&limitnJetcut&&basiccut&&sidebandcut,dataormc,luminosity);
447 >      SBOSOFP = allsamples.Draw("SBOSOFP",datajzb,binning, "JZB4limits", "events",cutOSOF&&limitnJetcut&&basiccut&&sidebandcut,dataormc,luminosity);
448 >      SBOSSFN = allsamples.Draw("SBOSSFN","-"+datajzb,binning, "JZB4limits", "events",cutOSSF&&limitnJetcut&&basiccut&&sidebandcut,dataormc,luminosity);
449 >      SBOSOFN = allsamples.Draw("SBOSOFN","-"+datajzb,binning, "JZB4limits", "events",cutOSOF&&limitnJetcut&&basiccut&&sidebandcut,dataormc,luminosity);
450 >      
451 >      LSBOSSFP = allsamples.Draw("LSBOSSFP",mcjzb,binning, "JZB4limits", "events",cutOSSF&&limitnJetcut&&basiccut&&sidebandcut,mc,luminosity,allsamples.FindSample("LM4"));
452 >      LSBOSOFP = allsamples.Draw("LSBOSOFP",mcjzb,binning, "JZB4limits", "events",cutOSOF&&limitnJetcut&&basiccut&&sidebandcut,mc,luminosity,allsamples.FindSample("LM4"));
453 >      LSBOSSFN = allsamples.Draw("LSBOSSFN","-"+mcjzb,binning, "JZB4limits", "events",cutOSSF&&limitnJetcut&&basiccut&&sidebandcut,mc,luminosity,allsamples.FindSample("LM4"));
454 >      LSBOSOFN = allsamples.Draw("LSBOSOFN","-"+mcjzb,binning, "JZB4limits", "events",cutOSOF&&limitnJetcut&&basiccut&&sidebandcut,mc,luminosity,allsamples.FindSample("LM4"));
455 >  }
456    
457    string obsname="data_obs";
458    string predname="background";
# Line 427 | Line 463 | void limit_shapes_for_systematic_effect(
463      signalname="signal_"+identifier;
464    }
465    
466 <  TH1F *obs = (TH1F*)ZOSSFP->Clone();
466 >  TH1F *obs = (TH1F*)ZOSSFP->Clone("observation");
467    obs->SetName(obsname.c_str());
468    obs->Write();
469 <  TH1F *pred = (TH1F*)ZOSSFN->Clone();
470 <  pred->Add(ZOSOFP,1.0/3);
471 <  pred->Add(ZOSOFN,-1.0/3);
472 <  pred->Add(SBOSSFP,1.0/3);
473 <  pred->Add(SBOSSFN,-1.0/3);
474 <  pred->Add(SBOSOFP,1.0/3);
475 <  pred->Add(SBOSOFN,-1.0/3);
469 >  TH1F *pred = (TH1F*)ZOSSFN->Clone("prediction");
470 >    flag_this_change(__FUNCTION__,__LINE__,false);//PlottingSetup::RestrictToMassPeak
471 >  if(PlottingSetup::RestrictToMassPeak) {
472 >    pred->Add(ZOSOFP,1.0/3);
473 >    pred->Add(ZOSOFN,-1.0/3);
474 >    pred->Add(SBOSSFP,1.0/3);
475 >    pred->Add(SBOSSFN,-1.0/3);
476 >    pred->Add(SBOSOFP,1.0/3);
477 >    pred->Add(SBOSOFN,-1.0/3);
478 >  } else {
479 >    pred->Add(ZOSOFP,1.0);
480 >    pred->Add(ZOSOFN,-1.0);
481 >  }
482 >    
483    pred->SetName(predname.c_str());
484    pred->Write();
485    
# Line 447 | Line 490 | void limit_shapes_for_systematic_effect(
490    TH1F *Lpred = new TH1F("Lpred","Lpred",binning.size()-1,&binning[0]);
491    Lobs->Add(LZOSSFP);
492    Lpred->Add(LZOSSFN);
493 <  Lpred->Add(LZOSOFP,1.0/3);
494 <  Lpred->Add(LZOSOFN,-1.0/3);
495 <  Lpred->Add(LSBOSSFP,1.0/3);
496 <  Lpred->Add(LSBOSSFN,-1.0/3);
497 <  Lpred->Add(LSBOSOFP,1.0/3);
498 <  Lpred->Add(LSBOSOFN,-1.0/3);
493 >    flag_this_change(__FUNCTION__,__LINE__,false);//PlottingSetup::RestrictToMassPeak
494 >  if(PlottingSetup::RestrictToMassPeak) {
495 >    Lpred->Add(LZOSOFP,1.0/3);
496 >    Lpred->Add(LZOSOFN,-1.0/3);
497 >    Lpred->Add(LSBOSSFP,1.0/3);
498 >    Lpred->Add(LSBOSSFN,-1.0/3);
499 >    Lpred->Add(LSBOSOFP,1.0/3);
500 >    Lpred->Add(LSBOSOFN,-1.0/3);
501 >  } else {
502 >    Lpred->Add(LZOSOFP,1.0);
503 >    Lpred->Add(LZOSOFN,-1.0);
504 >  }
505 >
506    TH1F *signal = (TH1F*)Lobs->Clone();
507    signal->Add(Lpred,-1);
508    signal->SetName(signalname.c_str());
# Line 466 | Line 516 | void limit_shapes_for_systematic_effect(
516    delete ZOSSFN;
517    delete ZOSOFN;
518    
519 <  delete SBOSSFP;
520 <  delete SBOSOFP;
521 <  delete SBOSSFN;
522 <  delete SBOSOFN;
519 >  if(PlottingSetup::RestrictToMassPeak) {
520 >    delete SBOSSFP;
521 >    delete SBOSOFP;
522 >    delete SBOSSFN;
523 >    delete SBOSOFN;
524 >  }
525    
526    delete LZOSSFP;
527    delete LZOSOFP;
528    delete LZOSSFN;
529    delete LZOSOFN;
530    
531 <  delete LSBOSSFP;
532 <  delete LSBOSOFP;
533 <  delete LSBOSSFN;
534 <  delete LSBOSOFN;
531 >  if(PlottingSetup::RestrictToMassPeak) {
532 >    delete LSBOSSFP;
533 >    delete LSBOSOFP;
534 >    delete LSBOSSFN;
535 >    delete LSBOSOFN;
536 >  }
537  
538   }
539  

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