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root/cvsroot/UserCode/cbrown/AnalysisFramework/Plotting/Modules/SUSYScan.C
Revision: 1.36
Committed: Thu Sep 22 14:41:00 2011 UTC (13 years, 7 months ago) by buchmann
Content type: text/plain
Branch: MAIN
Changes since 1.35: +17 -4 lines
Log Message:
Added time map illustrating how long each point took for processing (to find ressource hogs)

File Contents

# Content
1 #include <iostream>
2 #include <vector>
3 #include <sys/stat.h>
4 #include <fstream>
5 #include <pthread.h>
6
7 #include <TCut.h>
8 #include <TROOT.h>
9 #include <TCanvas.h>
10 #include <TMath.h>
11 #include <TColor.h>
12 #include <TPaveText.h>
13 #include <TRandom.h>
14 #include <TH1.h>
15 #include <TH2.h>
16 #include <TF1.h>
17 #include <TSQLResult.h>
18 #include <TProfile.h>
19 #include <TKey.h>
20
21 //#include "TTbar_stuff.C"
22 using namespace std;
23
24 using namespace PlottingSetup;
25
26 void susy_scan_axis_labeling(TH2F *histo) {
27 histo->GetXaxis()->SetTitle("#Chi_{2}^{0}-LSP");
28 histo->GetXaxis()->CenterTitle();
29 histo->GetYaxis()->SetTitle("m_{#tilde{q}}");
30 histo->GetYaxis()->CenterTitle();
31 }
32
33 bool isThreadActive=false;
34
35 struct limit_args {
36 float mceff;
37 float toterr;
38 int ibin;
39 string mcjzb;
40 vector<float> sigmas;
41 string plotfilename;
42 };
43
44 void* compute_one_upper_limit_wrapper(void* data) {
45 isThreadActive=true;
46 limit_args* args = (limit_args*) data;
47 std::cout << "Thread to compute limits has been started" << std::endl;
48 args->sigmas=compute_one_upper_limit(args->mceff,args->toterr,args->ibin,args->mcjzb,args->plotfilename,true);
49 std::cout << "Thread to compute limits has finished" << std::endl;
50 isThreadActive=false;
51 return NULL; // oder in C++: return 0;// Damit kann man Werte zurückgeben
52 }
53
54 void do_limit_wrapper(float mceff,float toterr,int ibin,string mcjzb,vector<float> &sigmas,string plotfilename) {
55 pthread_t limitthread;
56 limit_args limargs={mceff,toterr,ibin,mcjzb,sigmas,plotfilename};
57 pthread_create( &limitthread, NULL, compute_one_upper_limit_wrapper, (void*) &limargs);
58 int counter=0;
59 int counterinterval=5;
60 sleep(1); //waiting a second for the process to become active
61 while(counter<limitpatience*60 && isThreadActive) {
62 std::cout << "Limits are being calculated; Checking round " << counter << " ( corresponds to " << seconds_to_time(counter) << " ) , patience will end in " << seconds_to_time(60*limitpatience-counter) << std::endl;
63 counter+=counterinterval;
64 sleep(counterinterval);
65 }
66
67 if(!isThreadActive) {
68 cout << "Thread finished sucessfully" << endl;
69 pthread_join( limitthread, NULL );
70 std::cout<< __FUNCTION__ << " : going to save sigmas " << std::endl;
71 sigmas=limargs.sigmas;
72 } else {
73 pthread_cancel(limitthread);
74 std::cout << "DID NOT TERMINATE IN TIME - ABORTED!" << std::endl;
75 sigmas.push_back(-1);sigmas.push_back(-1);sigmas.push_back(-1);
76 }
77 }
78
79 void prepare_scan_axis(TH2 *variablemap,bool ismSUGRA) {
80 variablemap->GetXaxis()->SetTitle("m_{glu}");
81 variablemap->GetYaxis()->SetTitle("m_{LSP}");
82
83 if(ismSUGRA) {
84 variablemap->GetXaxis()->SetTitle("m_{0}");
85 variablemap->GetYaxis()->SetTitle("m_{1/2}");
86 }
87
88 variablemap->GetXaxis()->CenterTitle();
89 variablemap->GetYaxis()->CenterTitle();
90 }
91
92 void set_SUSY_style() {
93 Int_t MyPalette[100];
94 Double_t r[] = {0., 0.0, 1.0, 1.0, 1.0};
95 Double_t g[] = {0., 0.0, 0.0, 1.0, 1.0};
96 Double_t b[] = {0., 1.0, 0.0, 0.0, 1.0};
97 Double_t stop[] = {0., .25, .50, .75, 1.0};
98 Int_t FI = TColor::CreateGradientColorTable(5, stop, r, g, b, 110);
99 for (int i=0;i<100;i++) MyPalette[i] = FI+i;
100
101 gStyle->SetPalette(100, MyPalette);
102
103 float rightmargin=gStyle->GetPadRightMargin();
104 gStyle->SetPadRightMargin(0.15);
105
106 }
107
108 float get_xs(float mglu, float mlsp, string massgluname, string massLSPname, map < pair<float, float>, map<string, float> > &xsec, string mcjzb, bool requireZ) {
109 float weightedpointxs=0;
110 stringstream addcut;
111 addcut << "(TMath::Abs("<<massgluname<<"-"<<mglu<<")<5)&&(TMath::Abs("<<massLSPname<<"-"<<mlsp<<")<5)";
112 cout << "About to calculate the process efficiencies " << endl;
113 for(int iproc=1;iproc<=10;iproc++) {
114 float process_xs = GetXSecForPointAndChannel(mglu,mlsp,xsec,iproc);
115 stringstream addcutplus;
116 addcutplus<<addcut.str()<<"&&(pfJetGoodNum=="<<iproc<<")";
117 write_warning(__FUNCTION__,"replaced process with pfJetGoodNum for testing purposes only!");
118 (scansample.collection)[0].events->Draw("eventNum",addcutplus.str().c_str(),"goff");
119 float nprocessevents = (scansample.collection)[0].events->GetSelectedRows();
120 float nselectedprocessevents,nselectedprocesseventserr;
121 cout << "nprocessevents = " << nprocessevents << endl;
122 MCefficiency((scansample.collection)[0].events,nselectedprocessevents,nselectedprocesseventserr,mcjzb,requireZ,1,addcutplus.str(),-1);//1 is the number to normalize to :-)
123 float weight=0;
124 if(nprocessevents>0) weight=(process_xs)/(nprocessevents);//*luminosity;
125 weightedpointxs+=weight*nselectedprocessevents;
126 // */
127 }
128 return weightedpointxs;
129 }
130
131 void establish_SUSY_limits(string mcjzb,string datajzb,vector<float> jzb_cut,bool requireZ, float peakerror, TFile *fsyst, int ibin,float njobs=-1, float jobnumber=-1) {
132 bool runninglocally=true;
133 if(njobs>-1&&jobnumber>-1) {
134 runninglocally=false;
135 dout << "Running on the GRID (this is job " << jobnumber << "/" << njobs << ") for a jzb cut at " << jzb_cut[ibin] << endl;
136 } else {
137 dout << "Running locally " << endl;
138 dout << "This will take a really, really long time - if you want to see the results THIS week try running the LimitWorkerScript on the grid (DistributedModelCalculation/Limits/)" << endl;
139 }
140
141 string massgluname="MassGlu";
142 string massLSPname="MassLSP";
143
144 string prefix="SMS_";
145 // up to here, everything is set up for SMS; now we need to switch stuff around if we're dealing with an mSUGRA scan!
146 bool ismSUGRA=false;
147 TIter nextkey(fsyst->GetListOfKeys());
148 TKey *key;
149 while ((key = (TKey*)nextkey()))
150 {
151 TObject *obj = key->ReadObj();
152 if(Contains((string)(obj->GetName()),"mSUGRA")) ismSUGRA=true;
153 }
154
155 map < pair<float, float>, map<string, float> > xsec;
156
157 if(ismSUGRA) {
158 massgluname="M0"; // this is the "x axis" in the limit plot (like the gluino in the SMS case)
159 massLSPname="M12"; // this is the "y axis" in the limit plot (like the LSP in the SMS case)
160 mglustart=m0start;
161 xsec=getXsec("/scratch/buchmann/C/scale_xsection_nlo1.0_m0_m12_10_0_1v1.txt");
162 write_warning(__FUNCTION__,"Don't have the correct XS file yet");
163 mgluend=m0end;
164 mglustep=m0step;
165 mLSPstart=m12start;
166 mLSPend=m12end;
167 mLSPstep=m12step;
168 prefix="mSUGRA_";
169 cout << "mSUGRA scan has been set up." << endl;
170 } else {
171 cout << "SMS scan has been set up." << endl;
172 write_warning(__FUNCTION__,"Don't have the correct XS file yet");
173 xsec=getXsec("/scratch/buchmann/C/scale_xsection_nlo1.0_m0_m12_10_0_1v1.txt");
174 }
175
176 set_SUSY_style();
177
178 TCanvas *limcanvas = new TCanvas("limcanvas","Limit canvas");
179
180 int Npoints=0;
181 for(int mglu=mglustart;mglu<=mgluend;mglu+=mglustep) {
182 for (int mlsp=mLSPstart;mlsp<=mLSPend&&mlsp<=mglu;mlsp+=mLSPstep) Npoints++;
183 }
184 // TH2F *mceff = (TH2F*)fsyst->Get((prefix+"efficiencymap"+any2string(jzb_cut[ibin])).c_str());
185 write_warning(__FUNCTION__,"Currently the efficiencymap name was switched to Pablo's convention. This NEEDS to be switched BACK!");TH2F *mceff = (TH2F*)fsyst->Get(("efficiency_jzbdiff"+any2string(jzb_cut[ibin])).c_str());
186 TH2F *fullerr = (TH2F*)fsyst->Get((prefix+"systotmap"+any2string(jzb_cut[ibin])).c_str());
187 TH2F *NEvents = (TH2F*)fsyst->Get((prefix+"Neventsmap"+any2string(jzb_cut[ibin])).c_str());
188
189 TH2F *limitmap = new TH2F((prefix+"limitmap"+any2string(jzb_cut[ibin])).c_str(), "",(mgluend-mglustart)/mglustep+1,mglustart-0.5*mglustep,mgluend+0.5*mglustep,(mLSPend-mLSPstart)/mLSPstep+1,mLSPstart-0.5*mLSPstep,mLSPend+0.5*mLSPstep);
190 TH2F *exclmap = new TH2F((prefix+"exclusionmap"+any2string(jzb_cut[ibin])).c_str(), "",(mgluend-mglustart)/mglustep+1,mglustart-0.5*mglustep,mgluend+0.5*mglustep,(mLSPend-mLSPstart)/mLSPstep+1,mLSPstart-0.5*mLSPstep,mLSPend+0.5*mLSPstep);
191 TH2F *xsmap = new TH2F((prefix+"crosssectionmap"+any2string(jzb_cut[ibin])).c_str(), "",(mgluend-mglustart)/mglustep+1,mglustart-0.5*mglustep,mgluend+0.5*mglustep,(mLSPend-mLSPstart)/mLSPstep+1,mLSPstart-0.5*mLSPstep,mLSPend+0.5*mLSPstep);
192
193 if(!fullerr || !mceff || !NEvents) {
194 write_error(__FUNCTION__,"The supplied systematics file did not contain the correct histograms - please check the file");
195 dout << "mc eff address: " << mceff << " , error address: " << fullerr << " , NEvents address: " << NEvents << endl;
196 delete limcanvas;
197 return;
198 }
199
200 int ipoint=-1;
201 for(int mglu=mglustart;mglu<=mgluend;mglu+=mglustep) {
202 for (int mlsp=mLSPstart;mlsp<=mLSPend&&mlsp<=mglu;mlsp+=mLSPstep)
203 {
204 ipoint++;
205 if(!runninglocally&&!do_this_point(ipoint,Npoints,jobnumber,njobs)) continue;
206 float currmceff=mceff->GetBinContent(mceff->FindBin(mglu,mlsp));
207 float currtoterr=(fullerr->GetBinContent(fullerr->FindBin(mglu,mlsp)))*currmceff;
208 float nevents=NEvents->GetBinContent(NEvents->FindBin(mglu,mlsp));
209 dout << "Looking at point " << ipoint << " / " << Npoints << " with masses " << massgluname << " = " << mglu << " and " << massLSPname << " = " << mlsp << endl;
210 dout << "Found : MCeff=" << currmceff << " and total error=" << currtoterr << " and Nevents=" << nevents << endl;
211 string plotfilename=(string)(TString(massgluname)+TString(any2string(mglu))+TString("__")+TString(massLSPname)+TString(any2string(mlsp))+TString(".png"));
212 if(currmceff<=0||currtoterr<=0||nevents==0) {
213 dout << " Nothing to work with, skipping this point." << endl;
214 continue;
215 }
216 vector<float> sigmas;
217 //do_limit_wrapper(currmceff,currtoterr,ibin,mcjzb,sigmas,plotfilename); // no threading right now.
218 sigmas=compute_one_upper_limit(currmceff,currtoterr,ibin,mcjzb,plotfilename,true);
219 if(sigmas[0]>0) limitmap->Fill(mglu,mlsp,sigmas[0]); //anything else is an error code
220 dout << "An upper limit has been added for this point ( " << massgluname << " = " << mglu << " and " << massLSPname << " = " << mlsp << " ) at " << sigmas[0] << endl;
221 if(1) {
222 dout << "Computing exclusion status" << endl;
223 float rel_limit=0;
224 float xs=get_xs(mglu,mlsp,massgluname,massLSPname,xsec,mcjzb,requireZ);
225 if(xs>0) rel_limit=sigmas[0]/xs;
226 // stringstream addcut;
227 // addcut << "(TMath::Abs("<<massgluname<<"-"<<mglu<<")<5)&&(TMath::Abs("<<massLSPname<<"-"<<mlsp<<")<5)";
228 // vector<float> xs_weights = processMCefficiency((scansample.collection)[0].events,mcjzb,requireZ,nevents, addcut.str());
229 exclmap->Fill(mglu,mlsp,rel_limit);
230 xsmap->Fill(mglu,mlsp,xs);
231 }
232 }
233 }
234
235 prepare_scan_axis(limitmap,ismSUGRA);
236 TFile *outputfile=new TFile(("output/DistributedLimitsFromSystematics_job"+string(any2string(jobnumber))+"_of_"+string(any2string(njobs))+".root").c_str(),"UPDATE");//needs to be "UPDATE" as we can get to this point for different JZB cuts and don't want to erase the previous data :-)
237 outputfile->cd();
238 limitmap->Write();
239 if(ismSUGRA) {
240 exclmap->Write();
241 xsmap->Write();
242 }
243 outputfile->Close();
244 delete limcanvas;
245 }
246
247 void establish_SUSY_limits(string mcjzb,string datajzb,vector<float> jzb_cut,bool requireZ, float peakerror, string fsystfilename, float njobs=-1, float jobnumber=-1) {
248 dout << "Starting the SUSY scan from systematics file now with all " << jzb_cut.size() << " bin(s)" << " and using " << fsystfilename << endl;
249 TFile *fsyst = new TFile(fsystfilename.c_str());
250 if(!fsyst) {
251 write_error(__FUNCTION__,"You provided an invalid systematics file. Please change it ... ");
252 return;
253 }
254 for(int ibin=0;ibin<jzb_cut.size();ibin++) {
255 establish_SUSY_limits(mcjzb,datajzb,jzb_cut,requireZ, peakerror, fsyst, ibin,njobs, jobnumber);
256 }
257 }
258
259
260
261
262 void scan_SUSY_parameter_space(string mcjzb,string datajzb,vector<float> jzb_cut,bool requireZ, float peakerror, int ibin,float njobs=-1, float jobnumber=-1, bool systematicsonly=false,bool efficiencyonly=false) {
263 bool runninglocally=true;
264 if(njobs>-1&&jobnumber>-1) {
265 runninglocally=false;
266 dout << "Running on the GRID (this is job " << jobnumber << "/" << njobs << ") for a jzb cut at " << jzb_cut[ibin] << endl;
267 } else {
268 dout << "Running locally " << endl;
269 dout << "This will take a really, really long time - if you want to see the results THIS week try running the LimitWorkerScript on the grid (DistributedModelCalculation/Limits/)" << endl;
270 }
271
272 cout << "FILE USED: " << (scansample.collection)[0].filename << endl;
273 cout << "FILE USED (name): " << (scansample.collection)[0].samplename << endl;
274 jzbSel=jzb_cut[ibin];
275 geqleq="geq";
276 automatized=true;
277 mcjzbexpression=mcjzb;
278
279 string massgluname="MassGlu";
280 string massLSPname="MassLSP";
281
282 string prefix="SMS_";
283 // up to here, everything is set up for SMS; now we need to switch stuff around if we're dealing with an mSUGRA scan!
284 bool ismSUGRA=false;
285 if(Contains((scansample.collection)[0].samplename,"mSUGRA")) ismSUGRA=true;
286 if(ismSUGRA) {
287 massgluname="M0"; // this is the "x axis" in the limit plot (like the gluino in the SMS case)
288 massLSPname="M12"; // this is the "y axis" in the limit plot (like the LSP in the SMS case)
289 mglustart=m0start;
290 mgluend=m0end;
291 mglustep=m0step;
292 mLSPstart=m12start;
293 mLSPend=m12end;
294 mLSPstep=m12step;
295 prefix="mSUGRA_";
296 cout << "mSUGRA scan has been set up." << endl;
297 } else {
298 cout << "SMS scan has been set up." << endl;
299 }
300
301 Int_t MyPalette[100];
302 Double_t r[] = {0., 0.0, 1.0, 1.0, 1.0};
303 Double_t g[] = {0., 0.0, 0.0, 1.0, 1.0};
304 Double_t b[] = {0., 1.0, 0.0, 0.0, 1.0};
305 Double_t stop[] = {0., .25, .50, .75, 1.0};
306 Int_t FI = TColor::CreateGradientColorTable(5, stop, r, g, b, 110);
307 for (int i=0;i<100;i++) MyPalette[i] = FI+i;
308
309 gStyle->SetPalette(100, MyPalette);
310
311 TH2F *limitmap = new TH2F((prefix+"limitmap"+any2string(jzbSel)).c_str(), "",(mgluend-mglustart)/mglustep+1,mglustart-0.5*mglustep,mgluend+0.5*mglustep,(mLSPend-mLSPstart)/mLSPstep+1,mLSPstart-0.5*mLSPstep,mLSPend+0.5*mLSPstep);
312 TH2F *exclmap = new TH2F((prefix+"exclusionmap"+any2string(jzbSel)).c_str(), "",(mgluend-mglustart)/mglustep+1,mglustart-0.5*mglustep,mgluend+0.5*mglustep,(mLSPend-mLSPstart)/mLSPstep+1,mLSPstart-0.5*mLSPstep,mLSPend+0.5*mLSPstep);
313 TH2F *sysjesmap = new TH2F((prefix+"sysjes"+any2string(jzbSel)).c_str(), "",(mgluend-mglustart)/mglustep+1,mglustart-0.5*mglustep,mgluend+0.5*mglustep,(mLSPend-mLSPstart)/mLSPstep+1,mLSPstart-0.5*mLSPstep,mLSPend+0.5*mLSPstep);
314 TH2F *sysjsumap = new TH2F((prefix+"sysjsu"+any2string(jzbSel)).c_str(), "",(mgluend-mglustart)/mglustep+1,mglustart-0.5*mglustep,mgluend+0.5*mglustep,(mLSPend-mLSPstart)/mLSPstep+1,mLSPstart-0.5*mLSPstep,mLSPend+0.5*mLSPstep);
315 TH2F *sysresmap = new TH2F((prefix+"sysresmap"+any2string(jzbSel)).c_str(),"",(mgluend-mglustart)/mglustep+1,mglustart-0.5*mglustep,mgluend+0.5*mglustep,(mLSPend-mLSPstart)/mLSPstep+1,mLSPstart-0.5*mLSPstep,mLSPend+0.5*mLSPstep);
316 TH2F *efficiencymap = new TH2F((prefix+"efficiencymap"+any2string(jzbSel)).c_str(),"",(mgluend-mglustart)/mglustep+1,mglustart-0.5*mglustep,mgluend+0.5*mglustep,(mLSPend-mLSPstart)/mLSPstep+1,mLSPstart-0.5*mLSPstep,mLSPend+0.5*mLSPstep);
317 TH2F *Neventsmap = new TH2F((prefix+"Neventsmap"+any2string(jzbSel)).c_str(),"", (mgluend-mglustart)/mglustep+1,mglustart-0.5*mglustep,mgluend+0.5*mglustep,(mLSPend-mLSPstart)/mLSPstep+1,mLSPstart-0.5*mLSPstep,mLSPend+0.5*mLSPstep);
318 TH2F *ipointmap = new TH2F((prefix+"Neventsmap"+any2string(jzbSel)).c_str(),"", (mgluend-mglustart)/mglustep+1,mglustart-0.5*mglustep,mgluend+0.5*mglustep,(mLSPend-mLSPstart)/mLSPstep+1,mLSPstart-0.5*mLSPstep,mLSPend+0.5*mLSPstep);
319 TH2F *syspdfmap = new TH2F((prefix+"syspdfmap"+any2string(jzbSel)).c_str(),"",(mgluend-mglustart)/mglustep+1,mglustart-0.5*mglustep,mgluend+0.5*mglustep,(mLSPend-mLSPstart)/mLSPstep+1,mLSPstart-0.5*mLSPstep,mLSPend+0.5*mLSPstep);
320 TH2F *systotmap = new TH2F((prefix+"systotmap"+any2string(jzbSel)).c_str(),"",(mgluend-mglustart)/mglustep+1,mglustart-0.5*mglustep,mgluend+0.5*mglustep,(mLSPend-mLSPstart)/mLSPstep+1,mLSPstart-0.5*mLSPstep,mLSPend+0.5*mLSPstep);
321 TH2F *sysstatmap = new TH2F((prefix+"sysstatmap"+any2string(jzbSel)).c_str(),"",(mgluend-mglustart)/mglustep+1,mglustart-0.5*mglustep,mgluend+0.5*mglustep,(mLSPend-mLSPstart)/mLSPstep+1,mLSPstart-0.5*mLSPstep,mLSPend+0.5*mLSPstep);
322
323 TH2F *timemap = new TH2F((prefix+"timemap"+any2string(jzbSel)).c_str(),"",(mgluend-mglustart)/mglustep+1,mglustart-0.5*mglustep,mgluend+0.5*mglustep,(mLSPend-mLSPstart)/mLSPstep+1,mLSPstart-0.5*mLSPstep,mLSPend+0.5*mLSPstep);
324
325 write_warning(__FUNCTION__,"CURRENTLY SWITCHING AUTOMATIZED MODE OFF!");automatized=false;
326
327 float rightmargin=gStyle->GetPadRightMargin();
328 gStyle->SetPadRightMargin(0.15);
329
330 TCanvas *limcanvas = new TCanvas("limcanvas","Limit canvas");
331
332 int Npoints=0;
333 for(int mglu=mglustart;mglu<=mgluend;mglu+=mglustep) {
334 for (int mlsp=mLSPstart;mlsp<=mLSPend&&mlsp<=mglu;mlsp+=mLSPstep) Npoints++;
335 }
336
337 int ipoint=-1;
338 for(int mglu=mglustart;mglu<=mgluend;mglu+=mglustep) {
339 for (int mlsp=mLSPstart;mlsp<=mLSPend&&mlsp<=mglu;mlsp+=mLSPstep)
340 {
341 ipoint++;
342 if(!runninglocally&&!do_this_point(ipoint,Npoints,jobnumber,njobs)) continue;
343 float result=-987,resulterr=-987;
344 clock_t start,finish;
345 start = clock(); // starting the clock to measure how long the computation takes!
346 stringstream addcut;
347 addcut << "(TMath::Abs("<<massgluname<<"-"<<mglu<<")<5)&&(TMath::Abs("<<massLSPname<<"-"<<mlsp<<")<5)";
348 (scansample.collection)[0].events->Draw("eventNum",addcut.str().c_str(),"goff");
349 float nevents = (scansample.collection)[0].events->GetSelectedRows();
350 vector<vector<float> > systematics;
351 if(nevents<10) {
352 dout << "This point ("<<ipoint<<") with configuration ("<<massgluname<<"="<<mglu<<" , "<<massLSPname<<"="<<mlsp << ") does not contain enough events and will be skipped."<< endl;
353 continue;
354 } else {
355 dout << "OK! This point ("<<ipoint<<") with configuration ("<<massgluname<<"="<<mglu<<" , "<<massLSPname<<"="<<mlsp << ") contains " << nevents << " and will therefore not be skipped."<< endl;
356 }
357 if(nevents!=0&&efficiencyonly) {
358 MCefficiency((scansample.collection)[0].events,result,resulterr,mcjzb,requireZ,nevents,addcut.str(),-1);
359 efficiencymap->Fill(mglu,mlsp,result);
360 finish = clock();
361 timemap->Fill(mglu,mlsp,((float(finish)-float(start))/CLOCKS_PER_SEC));
362 }
363 Neventsmap->Fill(mglu,mlsp,nevents);
364 ipointmap->Fill(mglu,mlsp,ipoint);
365 if(efficiencyonly) continue;
366
367 do_systematics_for_one_file((scansample.collection)[0].events,nevents,"SUSY SCAN", systematics,mcjzb,datajzb,peakerror,requireZ, addcut.str(),ismSUGRA);
368 float JZBcutat = systematics[0][0];
369 float mceff = systematics[0][1];
370 float mcefferr = systematics[0][2];//MC stat error
371 float toterr = systematics[0][4];
372 float sys_jes = systematics[0][5]; // Jet Energy Scale
373 float sys_jsu = systematics[0][6]; // JZB scale uncertainty
374 float sys_res = systematics[0][7]; // resolution
375 float sys_pdf = 0;
376 if(systematics[0].size()>9) sys_pdf = systematics[0][9]; // PDF
377 efficiencymap->Fill(mglu,mlsp,mceff);
378 efficiencymap->SetBinError(efficiencymap->FindBin(mglu,mlsp),mcefferr);//blublu
379
380 if(mceff!=mceff||toterr!=toterr||mceff<0) {
381 dout << "Limits can't be calculated for this configuration (mglu="<<mglu<<" , mlsp="<<mlsp << ") as either the efficiency or its error are not positive numbers! (mceff="<<mceff<<" and toterr="<<toterr<<")"<< endl;
382 continue;
383 } else {
384 if(!systematicsonly&&!efficiencyonly) {
385 dout << "Calculating limit now for "<<massgluname<<"="<<mglu<<" , "<<massLSPname<<"="<<mlsp <<endl;
386 vector<float> sigmas;
387 string plotfilename=(string)(TString((scansample.collection)[0].samplename)+TString(massgluname)+TString(any2string(mglu))+TString("__")+TString(massLSPname)+TString(any2string(mlsp))+TString(".png"));
388 do_limit_wrapper(mceff,toterr,ibin,mcjzb,sigmas,plotfilename);
389 cout << "back in " << __FUNCTION__ << endl;
390 if(sigmas[0]>-0.5) { // negative sigmas are the error signature of do_limit_wrapper, so we want to exclude them.
391 limitmap->Fill(mglu,mlsp,sigmas[0]);
392 sysjesmap->Fill(mglu,mlsp,sys_jes);
393 sysjsumap->Fill(mglu,mlsp,sys_jsu);
394 sysresmap->Fill(mglu,mlsp,sys_res);
395 syspdfmap->Fill(mglu,mlsp,sys_pdf);
396 systotmap->Fill(mglu,mlsp,toterr/mceff);//total relative (!) error
397 sysstatmap->Fill(mglu,mlsp,mcefferr);//total relative (!) error
398 dout << "A limit has been added at " << sigmas[0] << " for m_{glu}="<<mglu << " and m_{lsp}="<<mlsp<<endl;
399 } //end of if sigma is positive
400 finish = clock();
401 timemap->Fill(mglu,mlsp,((float(finish)-float(start))/CLOCKS_PER_SEC));
402
403 //end of not systematics only condition
404 }
405 if(systematicsonly) {
406 sysjesmap->Fill(mglu,mlsp,sys_jes);
407 sysjsumap->Fill(mglu,mlsp,sys_jsu);
408 sysresmap->Fill(mglu,mlsp,sys_res);
409 syspdfmap->Fill(mglu,mlsp,sys_pdf);
410 systotmap->Fill(mglu,mlsp,toterr/mceff);//total relative (!) error
411 sysstatmap->Fill(mglu,mlsp,mcefferr);//total relative (!) error
412 finish = clock();
413 timemap->Fill(mglu,mlsp,((float(finish)-float(start))/CLOCKS_PER_SEC));
414 }
415 }//efficiency is valid
416 }
417 }
418
419 prepare_scan_axis(limitmap,ismSUGRA);
420 prepare_scan_axis(sysjesmap,ismSUGRA);
421 prepare_scan_axis(sysjsumap,ismSUGRA);
422 prepare_scan_axis(sysresmap,ismSUGRA);
423 prepare_scan_axis(syspdfmap,ismSUGRA);
424 prepare_scan_axis(systotmap,ismSUGRA);
425 prepare_scan_axis(sysstatmap,ismSUGRA);
426 prepare_scan_axis(timemap,ismSUGRA);
427
428 if(!systematicsonly&&!efficiencyonly) {
429 limcanvas->cd();
430 limitmap->Draw("COLZ");
431 string titletobewritten="Limits in LSP-Glu plane";
432 if(ismSUGRA) titletobewritten="Limits in m_{1/2}-m_{0} plane";
433 TText *title = write_title(titletobewritten);
434 title->Draw();
435 if(runninglocally) {
436 CompleteSave(limcanvas,"SUSYScan/Limits_JZB_geq"+any2string(jzb_cut[ibin]));
437 } else {
438 TFile *outputfile;
439 if(systematicsonly) outputfile=new TFile(("output/DistributedSystematics_job"+string(any2string(jobnumber))+"_of_"+string(any2string(njobs))+".root").c_str(),"UPDATE");//needs to be "UPDATE" as we can get to this point for different JZB cuts and don't want to erase the previous data :-)
440 else outputfile=new TFile(("output/DistributedLimits_job"+string(any2string(jobnumber))+"_of_"+string(any2string(njobs))+".root").c_str(),"UPDATE");//needs to be "UPDATE" as we can get to this point for
441 limitmap->Write();
442 sysjesmap->Write();
443 sysjsumap->Write();
444 sysresmap->Write();
445 efficiencymap->Write();
446 syspdfmap->Write();
447 systotmap->Write();
448 sysstatmap->Write();
449 Neventsmap->Write();
450 ipointmap->Write();
451 timemap->Write();
452 outputfile->Close();
453 }
454 }
455 if(systematicsonly) { // systematics only :
456 limcanvas->cd();
457 sysjesmap->Draw("COLZ");
458 string titletobewritten="Jet Energy scale in LSP-Glu plane";
459 if(ismSUGRA) titletobewritten="Limits in m_{1/2}-m_{0} plane";
460 TText *title = write_title(titletobewritten);
461 title->Draw();
462 if(runninglocally) {
463 CompleteSave(limcanvas,"SUSYScan/JES_geq"+any2string(jzb_cut[ibin]));
464 }
465 sysjsumap->Draw("COLZ");
466 titletobewritten="JZB Scale Uncertainty in LSP-Glu plane";
467 if(ismSUGRA) titletobewritten="JZB Scale Uncertainty in m_{1/2}-m_{0} plane";
468 TText *title2 = write_title(titletobewritten);
469 title2->Draw();
470 if(runninglocally) {
471 CompleteSave(limcanvas,"SUSYScan/JSU_geq"+any2string(jzb_cut[ibin]));
472 }
473 sysresmap->Draw("COLZ");
474 titletobewritten="Resolution in LSP-Glu plane";
475 if(ismSUGRA) titletobewritten="Resolution in m_{1/2}-m_{0} plane";
476 TText *title3 = write_title(titletobewritten);
477 title3->Draw();
478 if(runninglocally) {
479 CompleteSave(limcanvas,"SUSYScan/Resolution_geq"+any2string(jzb_cut[ibin]));
480 }
481
482 if(!runninglocally) {
483 TFile *outputfile=new TFile(("output/DistributedSystematics_job"+string(any2string(jobnumber))+"_of_"+string(any2string(njobs))+".root").c_str(),"UPDATE");
484 sysjesmap->Write();
485 sysjsumap->Write();
486 sysresmap->Write();
487 efficiencymap->Write();
488 Neventsmap->Write();
489 ipointmap->Write();
490 syspdfmap->Write();
491 systotmap->Write();
492 sysstatmap->Write();
493 timemap->Write();
494 outputfile->Close();
495 }
496 }//end of systematics only
497 if(efficiencyonly) {
498 limcanvas->cd();
499 efficiencymap->Draw("COLZ");
500 string titletobewritten="Efficiencies in LSP-Glu plane";
501 if(ismSUGRA) titletobewritten="Efficiencies in m_{1/2}-m_{0} plane";
502 TText *title = write_title(titletobewritten);
503 title->Draw();
504 if(runninglocally) {
505 CompleteSave(limcanvas,"SUSYScan/Efficiency_geq"+any2string(jzb_cut[ibin]));
506 }
507 limcanvas->cd();
508 sysjesmap->Draw("COLZ");
509 titletobewritten="N(events) in LSP-Glu plane";
510 if(ismSUGRA) titletobewritten="N(events) in m_{1/2}-m_{0} plane";
511 TText *title2 = write_title(titletobewritten);
512 title2->Draw();
513 if(runninglocally) {
514 CompleteSave(limcanvas,"SUSYScan/Nevents_geq"+any2string(jzb_cut[ibin]));
515 }
516 if(!runninglocally) {
517 TFile *outputfile=new TFile(("output/DistributedSystematics_job"+string(any2string(jobnumber))+"_of_"+string(any2string(njobs))+".root").c_str(),"UPDATE");
518 ipointmap->Write();
519 Neventsmap->Write();
520 efficiencymap->Write();
521 timemap->Write();
522 outputfile->Close();
523 }
524 }//end of efficiencies only
525
526 delete limitmap;
527 delete exclmap;
528 delete sysjesmap;
529 delete sysjsumap;
530 delete sysresmap;
531 delete efficiencymap;
532 delete Neventsmap;
533 delete ipointmap;
534 delete syspdfmap;
535 delete systotmap;
536 delete sysstatmap;
537 delete limcanvas;
538 }
539
540 void scan_SUSY_parameter_space(string mcjzb,string datajzb,vector<float> jzb_cut,bool requireZ, float peakerror, float njobs=-1, float jobnumber=-1, bool systonly=false, bool effonly=false) {
541 dout << "Starting the SUSY scan now with all " << jzb_cut.size() << " bin(s)" << endl;
542 for(int ibin=0;ibin<jzb_cut.size();ibin++) {
543 scan_SUSY_parameter_space(mcjzb,datajzb,jzb_cut,requireZ, peakerror, ibin, njobs, jobnumber,systonly,effonly);
544 }
545 }
546