22 #include <Riostream.h>
35 #include "AliEMCALGeometry.h"
37 #include "AliAODEvent.h"
40 const Int_t RainbowColors[]= {kRed, kRed-4, kRed-7, kRed-9, kRed-10, kYellow, kYellow-4, kYellow-7, kYellow-9, kYellow-10, kGreen, kGreen-4 , kGreen-7, kGreen-9, kGreen-10, kCyan, kCyan-4, kCyan-7, kCyan-9, kCyan-10, kBlue, kBlue-4, kBlue-7, kBlue-9, kBlue-10, kMagenta, kMagenta-4, kMagenta-7, kMagenta-9, kMagenta-10};
54 void Plot2DCells(
TString Block,
Int_t runNo, std::vector<Int_t> cellVectorRbR, std::vector<Int_t> cellVectorMerge);
62 gROOT->ProcessLine(
"gErrorIgnoreLevel = kWarning;");
64 gStyle->SetOptTitle(0);
65 gStyle->SetOptStat(0);
67 gStyle->SetCanvasColor(10);
68 TGaxis::SetMaxDigits(4);
69 gStyle->SetPadTopMargin(0.07);
70 gStyle->SetPadBottomMargin(0.18);
71 gStyle->SetPadRightMargin(0.10);
72 gStyle->SetPadLeftMargin(0.15);
73 gStyle->SetFrameFillColor(10);
74 gStyle->SetLabelSize(0.05,
"X");
75 gStyle->SetLabelSize(0.05,
"Y");
76 gStyle->SetTitleSize(5.0,
"X");
77 gStyle->SetTitleSize(5.0,
"Y");
78 gEnv->SetValue(
"Canvas.ShowEventStatus",1);
82 std::vector<Int_t> badcellsBlock1;
83 std::vector<Int_t> badcellsBlock2;
84 std::vector<Int_t> badcellsBlock3;
85 std::vector<Int_t> badcellsBlock4;
97 TString analysisInput = Form(
"AnalysisInput/%s",period.Data());
98 TString analysisOutput = Form(
"AnalysisOutput/%s/%s",period.Data(),train.Data());
99 TString runList = Form(
"./%s/%s/%s.txt", analysisInput.Data(), train.Data(),listName.Data());
100 gSystem->mkdir(TString::Format(
"%s/RunByRunSummary%i/", analysisOutput.Data(),runsUsed));
104 cout<<
"o o o Open .txt file with run indices. Name = " << runList << endl;
105 FILE *pFile = fopen(runList.Data(),
"r");
108 cout<<
"couldn't open file "<<runList<<
"!"<<endl;
115 std::vector<Int_t> RunIdVec;
118 ncols = fscanf(pFile,
" %d ",&q);
121 RunIdVec.push_back(q);
126 std::sort (RunIdVec.begin(), RunIdVec.end());
129 cout<<
"o o o Found " << RunIdVec.size() <<
" files in list"<< endl;
132 intRun= RunIdVec.size();
133 if(runsUsed>0 && runsUsed<intRun)intRun = runsUsed;
134 const Int_t nRun = intRun;
135 Int_t nRunsUsed = nRun;
137 Int_t totalperCv = 16;
138 Int_t nPad = TMath::Sqrt(totalperCv);
139 Int_t nCv = nRun/totalperCv+1;
145 TCanvas **cBad =
new TCanvas*[nCv];
146 TCanvas **cGood =
new TCanvas*[nCv];
147 TCanvas **cDead =
new TCanvas*[nCv];
148 TCanvas **cAmp =
new TCanvas*[nCv];
150 for(
Int_t ic = 0; ic<nCv; ic++)
152 cBad [ic] =
new TCanvas(TString::Format(
"badcells%d", ic), TString::Format(
"I) badcells (%d/%d)", ic+1, nCv), 1000,750);
153 cGood[ic] =
new TCanvas(TString::Format(
"goodcells%d", ic),TString::Format(
"I) goodcells (%d/%d)", ic+1, nCv),1000,750);
154 cDead[ic] =
new TCanvas(TString::Format(
"deadcells%d", ic),TString::Format(
"I) deadcells (%d/%d)", ic+1, nCv),1000,750);
155 cAmp [ic] =
new TCanvas(TString::Format(
"Amplitide%d", ic),TString::Format(
"I) Amplitide (%d/%d)", ic+1, nCv),1000,750);
157 cBad [ic] ->Divide(nPad,nPad,0.001,0.001);
158 cGood[ic] ->Divide(nPad,nPad,0.001,0.001);
159 cDead[ic] ->Divide(nPad,nPad,0.001,0.001);
160 cAmp [ic] ->Divide(nPad,nPad,0.001,0.001);
165 TH2F** hFlagvsRun =
new TH2F*[nFlags];
166 TH2F* hFlagNew = 0x0;
167 TH2F* hFlagNewClean = 0x0;
170 TH2F** ampIDCl3Block =
new TH2F*[nRun];
171 TH2F** ampIDCl1Block =
new TH2F*[nRun];
172 TH2F** ampIDDelete =
new TH2F*[nRun];
173 TH1D** hCellGoodMean =
new TH1D*[nRun];
175 TH2F* hBadVsEvent =
new TH2F(
"hBadVsEvent",
"hBadVsEvent",100,100000,25000000,60,700,1800);
176 TH2F* hDeadBadVsEvent =
new TH2F(
"hDeadBadVsEvent",
"hDeadBadVsEvent",100,100000,25000000,60,700,1800);
177 TH1D* deadbadCellsVsRun;
178 TH1D* deadCellsVsRun;
180 TH1D* deadCellsVsRunC;
181 TH1D* badCellsVsRunC;
184 TH1D* projSumC3Blocks;
185 TH1D* projSumC3BlocksA;
186 TH1D* projSumC3BlocksB;
187 TH1D* projSumC3BlocksC;
188 TH1D* projSumC3BlocksD;
189 TH1D* projSumC1Block;
191 TH2F* Sum2DSingleMask;
192 TH2F* Sum2D3BlockMask;
193 TH2F* Sum2D3BlockMaskA;
194 TH2F* Sum2D3BlockMaskB;
195 TH2F* Sum2D3BlockMaskC;
196 TH2F* Sum2D3BlockMaskD;
201 for(
Int_t i = 0; i<nFlags; i++)
205 TCanvas *cFlagDeadBadI =
new TCanvas(
"cFlagDeadBadI",
"II) Flag dead or bad a", 1600, 1000);
206 TCanvas *cFlagDeadBadII =
new TCanvas(
"cFlagDeadBadII",
"II) Flag dead or bad b", 1600, 1000);
207 TCanvas *cFlagSumI =
new TCanvas(
"cFlagSumI",
"II) Flag dead&bad a", 1600, 1000);
208 TCanvas *cFlagSumII =
new TCanvas(
"cFlagSumII",
"II) Flag dead&bad b", 1600, 1000);
209 TCanvas *cFlagSumCleanedI =
new TCanvas(
"cFlagSumCleanI",
"III) cleanded Flag dead&bad a", 1600, 1000);
210 TCanvas *cFlagSumCleanedII =
new TCanvas(
"cFlagSumCleanII",
"III) cleanded Flag dead&bad b", 1600, 1000);
211 TCanvas *cFlagSumCompAllI =
new TCanvas(
"cFlagSumCompAllI",
"III) compressed Flag dead&bad a", 1600, 1000);
212 TCanvas *cFlagSumCompAllII =
new TCanvas(
"cFlagSumCompAllII",
"III) compressed Flag dead&bad b", 1600, 1000);
213 TCanvas *cFlagSumCompCleanI =
new TCanvas(
"cFlagSumCompI",
"III) compressed&cleaned Flag dead&bad a", 1600, 1000);
214 TCanvas *cFlagSumCompCleanII=
new TCanvas(
"cFlagSumCompII",
"III) compressed&cleaned Flag dead&bad b", 1600, 1000);
216 TCanvas *cFlagNew =
new TCanvas(
"cFlagNew",
"IV) Frac dead&bad 2D", 1600, 800);
217 TCanvas *cellSummaryCan =
new TCanvas(
"cellSummaryCan",
"I) run overview", 1600, 800);
218 TCanvas *cellSummaryCan2 =
new TCanvas(
"cellSummaryCan2",
"I) run overview II",1600,800);
219 TCanvas *cAmpSum =
new TCanvas(
"SumOfAmplitudes",
"I) Sum of Amplitides over runs",1500,750);
220 TCanvas *cAmpSum2D =
new TCanvas(
"SumOf2DAmplitudes",
"I) Sum of 2D Amplitides over runs",1500,750);
221 TCanvas *cAmpSum2D4Blocks =
new TCanvas(
"cAmpSum2D4Blocks",
"I) Sum of 2D Amplitides in 4 run blocks",1500,750);
222 TCanvas *cAmpSum2D4BlocksRatio =
new TCanvas(
"cAmpSum2D4BlocksRatio",
"I) Ratio of 2D Amplitides in 4 run blocks",1500,750);
245 hFlagvsRun[0] =
new TH2F(
"hFlag1vsRun",
"hFlag1vsRun (?); cell ID; Run number", noOfCells+10, 0, noOfCells+10, nRun, 0, nRun);
246 hFlagvsRun[1] =
new TH2F(
"hFlag2vsRun",
"hFlag2vsRun (?); cell ID; Run number", noOfCells+10, 0, noOfCells+10, nRun, 0, nRun);
247 hFlagvsRun[2] =
new TH2F(
"hFlag3vsRun",
"hFlag3vsRun (?); cell ID; Run number", noOfCells+10, 0, noOfCells+10, nRun, 0, nRun);
248 nEventsVsRuns =
new TH1D(
"nEventVsRun",
"number of events in run", nRun, 0, nRun);
250 for(
Int_t i=0;i<nRun;i++)
252 hFlagvsRun[0]->GetYaxis()->SetBinLabel(i+1,Form(
"%i",RunIdVec.at(i)));
253 hFlagvsRun[1]->GetYaxis()->SetBinLabel(i+1,Form(
"%i",RunIdVec.at(i)));
254 hFlagvsRun[2]->GetYaxis()->SetBinLabel(i+1,Form(
"%i",RunIdVec.at(i)));
259 for(
Int_t i = 0 ; i < nRun ; i++)
261 rootFileName = Form(
"%s_Histograms_V%i.root", trigger.Data(), RunIdVec.at(i));
262 badChannelOutput = Form(
"%s/Version%i/%s", analysisOutput.Data(), RunIdVec.at(i),rootFileName.Data());
265 cout<<
"Open root file No: "<<i+1<<
" - "<<badChannelOutput<<
" - "<<flush;
266 TFile *f = TFile::Open(badChannelOutput);
269 cout<<
"Couldn't open/find .root file: "<<badChannelOutput<<endl;
276 hNEvent[usedRuns] = (
TH1D*)f->Get(
"hNEvents");
277 cout<<hNEvent[usedRuns]->Integral()<<
" evt."<<endl;
280 TH2F *goodCells = (
TH2F*)f->Get(
"2DChannelMap_Flag0");
281 TH2F *deadCells = (
TH2F*)f->Get(
"2DChannelMap_Flag1");
282 TH2F *badCells = (
TH2F*)f->Get(
"2DChannelMap_Flag2");
283 TH1F *hCellFlag = (TH1F*)f->Get(
"fhCellFlag");
284 ampID[usedRuns] = (
TH2F*)f->Get(
"hCellAmplitude");
285 hCellGoodMean[usedRuns]= (
TH1D*)f->Get(
"hgoodMean");
287 if(!badCells || !goodCells || !deadCells || !ampID[usedRuns] || !hCellFlag)
289 if(!badCells) Printf(
"2DChannelMap_Flag2 not found");
290 if(!goodCells)Printf(
"2DChannelMap_Flag0 not found");
291 if(!deadCells)Printf(
"2DChannelMap_Flag1 not found");
292 if(!ampID[usedRuns]) Printf(
"hCellAmplitude not found");
293 if(!hCellFlag)Printf(
"fhCellFlag not found");
298 nEventsVsRuns->SetBinContent(usedRuns+1,hNEvent[usedRuns]->Integral());
299 ampID[usedRuns] ->SetName(Form(
"hCellAmplitudeRun%i",usedRuns));
300 ampIDCl[usedRuns] = (
TH2F*)ampID[usedRuns]->Clone(Form(
"hCellAmplitudeClRun%i",usedRuns));
301 ampIDCl3Block[usedRuns]= (
TH2F*)ampID[usedRuns]->Clone(Form(
"hCellAmplitudeCl3RunBlock%i",usedRuns));
302 ampIDCl1Block[usedRuns]= (
TH2F*)ampID[usedRuns]->Clone(Form(
"hCellAmplitudeCl1RunBlock%i",usedRuns));
303 ampIDDelete[usedRuns] = (
TH2F*)ampID[usedRuns]->Clone(Form(
"hCellAmplitudeTest%i",usedRuns));
305 hCellGoodMean[usedRuns]->SetLineColor(kGreen);
308 Sum2DOrig = (
TH2F*)ampID[usedRuns]->Clone(
"Sum2DOrig");
309 Sum2DSingleMask= (
TH2F*)ampID[usedRuns]->Clone(
"Sum2DSingleMask");
310 Sum2D3BlockMask= (
TH2F*)ampID[usedRuns]->Clone(
"Sum2D3BlockMask");
311 Sum2DIdeal = (
TH2F*)ampID[usedRuns]->Clone(
"Sum2DIdealDistr");
313 Sum2DSingleMask->Reset();
314 Sum2D3BlockMask->Reset();
315 Sum2DIdeal ->Reset();
316 hgoodMean = (
TH1D*)hCellGoodMean[usedRuns]->Clone(
"MeanSpectrumAllRuns");
318 Sum2D3BlockMaskA =(
TH2F*)Sum2D3BlockMask->Clone(
"Sum2D3BlockMaskA");
319 Sum2D3BlockMaskB =(
TH2F*)Sum2D3BlockMask->Clone(
"Sum2D3BlockMaskB");
320 Sum2D3BlockMaskC =(
TH2F*)Sum2D3BlockMask->Clone(
"Sum2D3BlockMaskC");
321 Sum2D3BlockMaskD =(
TH2F*)Sum2D3BlockMask->Clone(
"Sum2D3BlockMaskD");
324 hgoodMean->Add(hCellGoodMean[usedRuns]);
325 hCellGoodMean[usedRuns]->SetLineWidth(3);
329 for(
Int_t icell = 0; icell < noOfCells; icell++)
331 Int_t flag = hCellFlag->GetBinContent(icell+1);
333 if(flag == 1) hFlagvsRun[0]->Fill(icell, usedRuns, 1);
335 if(flag>1) hFlagvsRun[1]->Fill(icell, usedRuns, 1);
339 hFlagvsRun[2]->Fill(icell, usedRuns, 1);
343 if(1.0*percBad/noOfCells>0.3)cout<<
"Problem in this run detected. Large number of bad+dead cells (>30%) - please double check!"<<endl;
347 hFlagNew = (
TH2F*)goodCells->Clone(TString::Format(
"h2DChannelMapNew_FlagAll"));
349 hFlagNew->SetTitle(
"Selected flag greater than 0; cell column (#eta direction); cell raw (#phi direction)");
350 hFlagNewClean = (
TH2F*)goodCells->Clone(TString::Format(
"h2DChannelMapNew_FlagAllClean"));
351 hFlagNewClean->Reset();
352 hFlagNewClean->SetTitle(
"Selected flag greater than 0; cell column (#eta direction); cell raw (#phi direction)");
357 cBad[usedRuns/totalperCv]->cd(usedRuns%totalperCv+1);
359 badCells->Draw(
"colz");
360 TLatex* text =
new TLatex(0.2,0.85,Form(
"Bad Cells - Run %i",RunIdVec.at(i)));
361 text->SetTextSize(0.06);
363 text->SetTextColor(1);
366 cGood[usedRuns/totalperCv]->cd(usedRuns%totalperCv+1);
368 goodCells->Draw(
"colz");
369 TLatex* text1 =
new TLatex(0.2,0.85,Form(
"Good Cells - Run %i",RunIdVec.at(i)));
370 text1->SetTextSize(0.06);
372 text1->SetTextColor(1);
375 cDead[usedRuns/totalperCv]->cd(usedRuns%totalperCv+1);
377 deadCells->Draw(
"colz");
378 TLatex* text2 =
new TLatex(0.2,0.85,Form(
"Dead Cells - Run %i",RunIdVec.at(i)));
379 text2->SetTextSize(0.06);
381 text2->SetTextColor(1);
384 cAmp[usedRuns/totalperCv]->cd(usedRuns%totalperCv+1)->SetLogy();
385 TH1D* proj = ampID[usedRuns]->ProjectionX(TString::Format(
"hampIDProj_Run%d",RunIdVec.at(i)));
387 proj->SetLineColor(kCyan+2);
388 proj->GetYaxis()->SetRangeUser(0.0000001,100);
390 TLatex* text3 =
new TLatex(0.2,0.85,Form(
"Amplitudes - Run %i",RunIdVec.at(i)));
391 text3->SetTextSize(0.06);
393 text3->SetTextColor(1);
396 if(iFirstRun==0)projSum = ampID[usedRuns]->ProjectionX(
"hampIDProj_Sum");
397 if(iFirstRun>0) projSum->Add(proj);
398 Sum2DOrig->Add(ampID[usedRuns]);
408 for(
Int_t ic = 0; ic < noOfCells; ic++)
410 TH1D *htmpCell = hFlagvsRun[2]->ProjectionY(TString::Format(
"hIDProj_cell%d", ic), ic+1, ic+1);
412 for(
Int_t ir = 0; ir < nRunsUsed ; ir++)
414 sumRun += htmpCell->GetBinContent(ir+1);
415 if(htmpCell->GetBinContent(ir+1)==1)
419 for (
Int_t amp = 1; amp <= ampIDCl[ir]->GetNbinsX(); amp++)
421 ampIDCl[ir]->SetBinContent(amp,ic+1,0);
425 if(sumRun!=0)nBadCells++;
428 hgoodMean->Scale(1.0/nRunsUsed);
433 for(
Int_t eBin=0;eBin<Sum2DIdeal->GetNbinsX();eBin++)
435 Double_t binVal=hgoodMean->GetBinContent(eBin+1);
436 for(
Int_t icell=0;icell<Sum2DIdeal->GetNbinsY();icell++)
438 Sum2DIdeal->SetBinContent(eBin+1,icell+1,binVal);
444 for(
Int_t ir = 0; ir < nRunsUsed ; ir++)
446 cAmp[ir/totalperCv]->cd(ir%totalperCv+1)->SetLogy();
447 TH1D* proj = ampIDCl[ir]->ProjectionX(TString::Format(
"hampIDMaskedProj_Run%d",RunIdVec.at(ir)));
449 proj->SetLineColor(kSpring-2);
450 proj->Draw(
"hist same");
452 if(ir==0)projSumC = ampIDCl[ir]->ProjectionX(
"hampIDProj_SumMasked");
453 if(ir>0) projSumC->Add(proj);
454 Sum2DSingleMask->Add(ampIDCl[ir]);
459 deadCellsVsRun =hFlagvsRun[0]->ProjectionY(
"deadCellsVsRun");
460 badCellsVsRun =hFlagvsRun[1]->ProjectionY(
"badCellsVsRun");
461 deadbadCellsVsRun =hFlagvsRun[2]->ProjectionY(
"badDeadCellsVsRun");
462 cellSummaryCan->Divide(2);
463 cellSummaryCan->cd(1);
464 SetHisto(badCellsVsRun,
"Run",
"No. of cells",0);
465 badCellsVsRun->GetYaxis()->SetTitleOffset(1.7);
466 badCellsVsRun->GetYaxis()->SetRangeUser(0,1300);
467 badCellsVsRun->SetLineColor(kCyan+2);
468 badCellsVsRun->SetLineWidth(2);
469 badCellsVsRun->DrawCopy(
"hist");
470 deadCellsVsRun->SetLineColor(kMagenta-2);
471 deadCellsVsRun->SetLineWidth(2);
472 deadCellsVsRun->DrawCopy(
"same");
474 cellSummaryCan->cd(2);
475 SetHisto(nEventsVsRuns,
"Run",
"No. of Events",0);
476 nEventsVsRuns->DrawCopy(
"hist");
478 cellSummaryCan2->Divide(2);
479 for(
Int_t iRun=0;iRun<nRunsUsed;iRun++)
481 hBadVsEvent ->Fill(nEventsVsRuns->GetBinContent(iRun+1),badCellsVsRun->GetBinContent(iRun+1));
482 hDeadBadVsEvent->Fill(nEventsVsRuns->GetBinContent(iRun+1),deadbadCellsVsRun->GetBinContent(iRun+1),1);
484 cellSummaryCan2->cd(1);
485 SetHisto(hBadVsEvent,
"events in run",
"bad cells in run",0);
486 hBadVsEvent->DrawCopy(
"colz");
487 cellSummaryCan2->cd(2);
488 SetHisto(hDeadBadVsEvent,
"events in run",
"bad+dead cells in run",0);
489 hDeadBadVsEvent->DrawCopy(
"colz");
493 Color_t histCol=kCyan-8;
495 cFlagDeadBadI->cd()->SetLeftMargin(0.05);
496 cFlagDeadBadI->cd()->SetRightMargin(0.05);
497 cFlagDeadBadI->cd()->SetBottomMargin(0.06);
498 cFlagDeadBadI->cd()->SetTopMargin(0.02);
499 SetHisto(hFlagvsRun[0],
"dead cell ID",
"Run No.",1);
500 hFlagvsRun[0]->SetFillColor(histCol);
501 hFlagvsRun[0]->Draw(
"BOX");
502 cFlagDeadBadII->cd()->SetLeftMargin(0.05);
503 cFlagDeadBadII->cd()->SetRightMargin(0.05);
504 cFlagDeadBadII->cd()->SetBottomMargin(0.05);
505 cFlagDeadBadII->cd()->SetTopMargin(0.02);
506 SetHisto(hFlagvsRun[1],
"bad cell ID",
"Run No.",1);
507 hFlagvsRun[1]->SetFillColor(histCol);
508 hFlagvsRun[1]->Draw(
"BOX");
510 cFlagSumI->cd()->SetLeftMargin(0.05);
511 cFlagSumI->cd()->SetRightMargin(0.05);
512 cFlagSumI->cd()->SetBottomMargin(0.05);
513 cFlagSumI->cd()->SetTopMargin(0.02);
514 SetHisto(hFlagvsRun[2],
"dead+bad cell ID pt.1",
"Run No.",1);
515 hFlagvsRun[2]->SetFillColor(histCol);
516 hFlagvsRun[2]->GetXaxis()->SetRangeUser(0,8837);
517 hFlagvsRun[2]->DrawCopy(
"BOX");
518 cFlagSumII->cd()->SetLeftMargin(0.05);
519 cFlagSumII->cd()->SetRightMargin(0.05);
520 cFlagSumII->cd()->SetBottomMargin(0.05);
521 cFlagSumII->cd()->SetTopMargin(0.02);
522 SetHisto(hFlagvsRun[2],
"dead+bad cell ID pt.2",
"Run No.",1);
523 hFlagvsRun[2]->GetXaxis()->SetRangeUser(8838,17674-2);
524 hFlagvsRun[2]->DrawCopy(
"BOX");
531 cFlagSumCompAllI->cd()->SetLeftMargin(0.05);
532 cFlagSumCompAllI->cd()->SetRightMargin(0.05);
533 cFlagSumCompAllI->cd()->SetBottomMargin(0.05);
534 cFlagSumCompAllI->cd()->SetTopMargin(0.02);
535 SetHisto(CompressedAll,
"certain dead+bad cell pt.1",
"Run No.",1);
536 CompressedAll->GetXaxis()->SetRangeUser(0,nBadCells/2);
537 CompressedAll->SetFillColor(histCol);
538 CompressedAll->DrawCopy(
"BOX");
539 cFlagSumCompAllII->cd()->SetLeftMargin(0.05);
540 cFlagSumCompAllII->cd()->SetRightMargin(0.05);
541 cFlagSumCompAllII->cd()->SetBottomMargin(0.05);
542 cFlagSumCompAllII->cd()->SetTopMargin(0.02);
543 SetHisto(CompressedAll,
"certain dead+bad cell pt.2",
"Run No.",1);
544 CompressedAll->GetXaxis()->SetRangeUser(nBadCells/2,nBadCells+2);
545 CompressedAll->DrawCopy(
"BOX");
552 cout<<
" o Summary: "<<nBadCells<<
" bad cells of "<<noOfCells<<
" total cells and "<<nRunsUsed<<
" runs"<<endl;
553 cout<<
" o 1 bad run out of "<<nRunsUsed<<
" is "<<1.0/nRunsUsed<<endl;
556 cout<<
" o Cells with "<<percbad<<
"% of bad runs are double checked. These are "<<nRunsUsed*percbad<<
" runs"<<endl;
557 cout<<
" o Cell id with low fraction of bad runs:"<<endl;
559 std::vector<Int_t> cellVector;
561 for(
Int_t ic = 0; ic < noOfCells; ic++)
563 TH1D *htmpCell = hFlagvsRun[2]->ProjectionY(TString::Format(
"hIDProj_cell%d", ic), ic+1, ic+1);
564 fracRun = 0, sumRun = 0;
565 for(
Int_t ir = 0; ir < nRunsUsed ; ir++)
567 sumRun += htmpCell->GetBinContent(ir+1);
569 fracRun = sumRun/(
Double_t)(nRunsUsed);
574 Int_t cellColumn=0, cellRow=0;
575 Int_t cellColumnAbs=0, cellRowAbs=0;
578 hFlagNew->Fill(cellColumnAbs, cellRowAbs, fracRun*100);
580 if(fracRun>setBadCompletley)
582 for(
Int_t j = 0 ; j < nRunsUsed; j++)
584 hFlagvsRun[2]->SetBinContent(ic+1,j+1,1);
590 cout<<ic<<
", "<<flush;
591 cellVector.push_back(ic);
596 cout<<
" o In total "<<cellVector.size()<<
" cells fall under this category"<<endl;
601 TString pdfName = Form(
"%s/RunByRunSummary/%s_LowFractionCells",analysisOutput.Data(),listName.Data());
607 for(
Int_t ic = 0; ic < noOfCells; ic++)
609 TH1D *htmpCellAllRuns =hFlagvsRun[2]->ProjectionY(TString::Format(
"hIDProj_cell%d", ic), ic+1, ic+1);
610 Double_t integralBlock1 =htmpCellAllRuns->Integral(0,splitRuns1);
611 Double_t integralBlock2 =htmpCellAllRuns->Integral(splitRuns1+1,splitRuns2);
612 Double_t integralBlock3 =htmpCellAllRuns->Integral(splitRuns2+1,splitRuns3);
613 Double_t integralBlock4 =htmpCellAllRuns->Integral(splitRuns3+1,nRunsUsed);
616 if(badcellsBlock1.size()>0 && ic==badcellsBlock1.at(0))integralBlock1=1;
617 if(badcellsBlock2.size()>0 && ic==badcellsBlock2.at(0))integralBlock2=1;
618 if(badcellsBlock3.size()>0 && ic==badcellsBlock3.at(0))integralBlock3=1;
619 if(badcellsBlock4.size()>0 && ic==badcellsBlock4.at(0))integralBlock4=1;
621 Double_t integralBlock3Sum=integralBlock1+integralBlock2+integralBlock3;
624 if(integralBlock3Sum>0)
626 for(
Int_t ir = 0; ir < nRunsUsed ; ir++)
628 if((integralBlock1>0 && ir<=splitRuns1) ||
629 (integralBlock2>0 && ir>splitRuns1 && ir<=splitRuns2) ||
630 (integralBlock3>0 && ir>splitRuns2 && ir<=splitRuns3) ||
631 (integralBlock4>0 && ir>splitRuns3))
633 for (
Int_t amp = 1; amp <= ampIDCl3Block[ir]->GetNbinsX(); amp++)
636 ampIDCl3Block[ir]->SetBinContent(amp,ic+1,0);
640 for (
Int_t amp = 1; amp <= ampIDCl1Block[ir]->GetNbinsX(); amp++)
642 ampIDCl1Block[ir]->SetBinContent(amp,ic+1,0);
648 for(
Int_t ir = 0; ir < nRunsUsed ; ir++)
650 cAmp[ir/totalperCv]->cd(ir%totalperCv+1)->SetLogy();
651 TH1D* proj = ampIDCl3Block[ir]->ProjectionX(TString::Format(
"hampIDMaskedCleanedProj_Run%d",RunIdVec.at(ir)));
652 TH1D* projBlock = ampIDCl1Block[ir]->ProjectionX(TString::Format(
"hampIDMaskedCleaned1blockProj_Run%d",RunIdVec.at(ir)));
654 proj->SetLineColor(kBlue-1);
655 proj->Draw(
"hist same");
659 projSumC3Blocks = ampIDCl3Block[ir]->ProjectionX(
"hampIDProj_SumMaskedMultipleBlock");
660 projSumC3BlocksA= ampIDCl3Block[ir]->ProjectionX(
"hampIDProj_SumMaskedMultipleBlockA");
661 projSumC3BlocksB= ampIDCl3Block[ir]->ProjectionX(
"hampIDProj_SumMaskedMultipleBlockB");
662 projSumC3BlocksC= ampIDCl3Block[ir]->ProjectionX(
"hampIDProj_SumMaskedMultipleBlockC");
663 projSumC3BlocksD= ampIDCl3Block[ir]->ProjectionX(
"hampIDProj_SumMaskedMultipleBlockD");
664 projSumC3BlocksB->Reset();
665 projSumC3BlocksC->Reset();
666 projSumC3BlocksD->Reset();
667 projSumC1Block = ampIDCl1Block[ir]->ProjectionX(
"hampIDProj_SumMaskedOneBlock");
671 projSumC3Blocks->Add(proj);
672 if(ir<=splitRuns1) projSumC3BlocksA->Add(proj);
673 if(ir>splitRuns1 && ir<=splitRuns2) projSumC3BlocksB->Add(proj);
674 if(ir>splitRuns2 && ir<=splitRuns3) projSumC3BlocksC->Add(proj);
675 if(ir>splitRuns3) projSumC3BlocksD->Add(proj);
676 projSumC1Block ->Add(projBlock);
678 Sum2D3BlockMask->Add(ampIDCl3Block[ir]);
679 if(ir<=splitRuns1) Sum2D3BlockMaskA->Add(ampIDCl3Block[ir]);
680 if(ir>splitRuns1 && ir<=splitRuns2)Sum2D3BlockMaskB->Add(ampIDCl3Block[ir]);
681 if(ir>splitRuns2 && ir<=splitRuns3)Sum2D3BlockMaskC->Add(ampIDCl3Block[ir]);
682 if(ir>splitRuns3) Sum2D3BlockMaskD->Add(ampIDCl3Block[ir]);
688 cAmpSum->cd(1)->SetLogy();
689 SetHisto(projSum,
"",
"No. of hits/event",0);
690 projSum->GetYaxis()->SetRangeUser(0.0000001,1000);
691 projSum->SetLineColor(kCyan+3);
692 projSum->SetLineWidth(2);
693 projSum->Draw(
"hist");
695 projSumC->SetLineColor(kSpring-2);
696 projSumC->SetLineWidth(2);
697 projSumC->DrawCopy(
"hist same");
699 projSumC3Blocks->SetLineColor(kCyan-8);
700 projSumC3Blocks->SetLineWidth(2);
701 projSumC3Blocks->DrawCopy(
"hist same");
702 projSumC1Block->SetLineColor(2);
703 projSumC1Block->DrawCopy(
"hist same");
704 projSumC3BlocksA->SetLineColor(4);
705 projSumC3BlocksA->DrawCopy(
"hist same");
706 projSumC3BlocksB->SetLineColor(5);
707 projSumC3BlocksB->DrawCopy(
"hist same");
708 projSumC3BlocksC->SetLineColor(6);
709 projSumC3BlocksC->DrawCopy(
"hist same");
710 projSumC3BlocksD->SetLineColor(kRed-7);
711 projSumC3BlocksD->DrawCopy(
"hist same");
712 TLegend *legSum =
new TLegend(0.35,0.70,0.55,0.85);
713 legSum->AddEntry(projSum,
"Original engery distr.",
"l");
714 legSum->AddEntry(projSumC,
"Cells masked in each run",
"l");
715 legSum->AddEntry(projSumC3Blocks,
"Cells reincluded and masked in 3 blocks",
"l");
716 legSum->SetBorderSize(0);
717 legSum->SetTextSize(0.03);
718 legSum->Draw(
"same");
721 projSumC3Blocks->Divide(projSumC);
722 SetHisto(projSumC3Blocks,
"",
"block masked/single masked",0);
723 projSumC3Blocks->SetLineColor(30);
724 projSumC3Blocks->DrawCopy(
"hist");
725 projSumC1Block->SetLineColor(4);
726 projSumC1Block->Divide(projSumC);
727 projSumC1Block->DrawCopy(
"same");
729 projSumC1Block->SetLineStyle(3);
730 projSumC1Block->SetLineColor(6);
731 projSumC1Block->Divide(projSumC3Blocks);
732 projSumC1Block->DrawCopy(
"same");
734 TLegend *legRatio =
new TLegend(0.25,0.30,0.4,0.45);
735 legRatio->AddEntry(projSumC1Block,
"re-incl & masked as one big block",
"l");
736 legRatio->AddEntry(projSumC3Blocks,
"re-incl & masked in three blocks",
"l");
737 legRatio->AddEntry(projSumC1Block,
"ratio 1Block/3Blocks",
"l");
738 legRatio->SetBorderSize(0);
739 legRatio->SetTextSize(0.03);
740 legRatio->Draw(
"same");
745 cAmpSum2D->Divide(2);
746 cAmpSum2D->cd(1)->SetLogz();
748 Sum2D3BlockMask->GetZaxis()->SetRangeUser(10e-8,10);
749 Sum2D3BlockMask->DrawCopy(
"colz");
752 Sum2D3BlockMask->Divide(Sum2DIdeal);
754 Sum2D3BlockMask->SetTitle(
"Amplitude Vs. run / av. amp. vs. run");
756 Sum2D3BlockMask->DrawCopy(
"colz");
759 TLatex* textA =
new TLatex(0.5,0.8,Form(
"Block over run %i-%i",0,splitRuns1));
760 textA->SetTextSize(0.04);
761 textA->SetTextColor(1);
763 TLatex* textB =
new TLatex(0.5,0.8,Form(
"Block over run %i-%i",splitRuns1,splitRuns2));
764 textB->SetTextSize(0.04);
765 textB->SetTextColor(1);
767 TLatex* textC =
new TLatex(0.5,0.8,Form(
"Block over run %i-%i",splitRuns2,splitRuns3));
768 textC->SetTextSize(0.04);
769 textC->SetTextColor(1);
771 TLatex* textD =
new TLatex(0.5,0.8,Form(
"Block over run %i-%i",splitRuns3,nRunsUsed));
772 textD->SetTextSize(0.04);
773 textD->SetTextColor(1);
776 cAmpSum2D4Blocks->Divide(2,2);
777 cAmpSum2D4Blocks->cd(1)->SetLogz();
779 Sum2D3BlockMaskA->GetZaxis()->SetRangeUser(10e-8,10);
780 Sum2D3BlockMaskA->DrawCopy(
"colz");
782 cAmpSum2D4Blocks->cd(2)->SetLogz();
784 Sum2D3BlockMaskB->GetZaxis()->SetRangeUser(10e-8,10);
785 Sum2D3BlockMaskB->DrawCopy(
"colz");
787 cAmpSum2D4Blocks->cd(3)->SetLogz();
789 Sum2D3BlockMaskC->GetZaxis()->SetRangeUser(10e-8,10);
790 Sum2D3BlockMaskC->DrawCopy(
"colz");
792 cAmpSum2D4Blocks->cd(4)->SetLogz();
794 Sum2D3BlockMaskD->GetZaxis()->SetRangeUser(10e-8,10);
795 Sum2D3BlockMaskD->DrawCopy(
"colz");
798 cAmpSum2D4BlocksRatio->Divide(2,2);
799 cAmpSum2D4BlocksRatio->cd(1)->SetLogz();
800 Sum2D3BlockMaskA->Divide(Sum2DIdeal);
802 Sum2D3BlockMaskA->SetTitle(
"Amplitude Vs. run / av. amp. vs. run");
803 Sum2D3BlockMaskA->DrawCopy(
"colz");
805 cAmpSum2D4BlocksRatio->cd(2)->SetLogz();
806 Sum2D3BlockMaskB->Divide(Sum2DIdeal);
808 Sum2D3BlockMaskB->SetTitle(
"Amplitude Vs. run / av. amp. vs. run");
809 Sum2D3BlockMaskB->DrawCopy(
"colz");
811 cAmpSum2D4BlocksRatio->cd(3)->SetLogz();
812 Sum2D3BlockMaskC->Divide(Sum2DIdeal);
814 Sum2D3BlockMaskC->SetTitle(
"Amplitude Vs. run / av. amp. vs. run");
815 Sum2D3BlockMaskC->DrawCopy(
"colz");
817 cAmpSum2D4BlocksRatio->cd(4)->SetLogz();
818 Sum2D3BlockMaskD->Divide(Sum2DIdeal);
820 Sum2D3BlockMaskD->SetTitle(
"Amplitude Vs. run / av. amp. vs. run");
821 Sum2D3BlockMaskD->DrawCopy(
"colz");
827 cFlagSumCleanedI->cd()->SetLeftMargin(0.05);
828 cFlagSumCleanedI->cd()->SetRightMargin(0.05);
829 cFlagSumCleanedI->cd()->SetBottomMargin(0.05);
830 cFlagSumCleanedI->cd()->SetTopMargin(0.02);
831 SetHisto(hFlagvsRun[2],
"dead+bad cell ID (cleaned) pt.1",
"Run No.",1);
832 hFlagvsRun[2]->GetXaxis()->SetRangeUser(0,8837);
833 hFlagvsRun[2]->SetFillColor(histCol);
834 hFlagvsRun[2]->DrawCopy(
"BOX");
835 cFlagSumCleanedII->cd()->SetLeftMargin(0.05);
836 cFlagSumCleanedII->cd()->SetRightMargin(0.05);
837 cFlagSumCleanedII->cd()->SetBottomMargin(0.05);
838 cFlagSumCleanedII->cd()->SetTopMargin(0.02);
839 SetHisto(hFlagvsRun[2],
"dead+bad cell ID (cleaned) pt.2",
"Run No.",1);
840 hFlagvsRun[2]->GetXaxis()->SetRangeUser(8837,17674);
841 hFlagvsRun[2]->DrawCopy(
"BOX");
846 badCellsVsRunC =hFlagvsRun[1]->ProjectionY(
"badCellsVsRunC");
847 cellSummaryCan->cd(1);
848 badCellsVsRunC->SetLineColor(kGreen-9);
849 badCellsVsRunC->SetLineWidth(2);
850 badCellsVsRunC->SetFillColorAlpha(10,0);
851 badCellsVsRunC->DrawCopy(
"same");
860 cFlagSumCompCleanI->cd()->SetLeftMargin(0.05);
861 cFlagSumCompCleanI->cd()->SetRightMargin(0.05);
862 cFlagSumCompCleanI->cd()->SetBottomMargin(0.05);
863 cFlagSumCompCleanI->cd()->SetTopMargin(0.02);
864 SetHisto(CompressedClean,
"certain dead+bad cell (cleaned) pt.1",
"Run No.",1);
865 CompressedClean->GetXaxis()->SetRangeUser(0,nBadCells/2);
866 CompressedClean->SetFillColor(histCol);
867 CompressedClean->DrawCopy(
"BOX");
868 cFlagSumCompCleanII->cd()->SetLeftMargin(0.05);
869 cFlagSumCompCleanII->cd()->SetRightMargin(0.05);
870 cFlagSumCompCleanII->cd()->SetBottomMargin(0.05);
871 cFlagSumCompCleanII->cd()->SetTopMargin(0.02);
872 SetHisto(CompressedClean,
"certain dead+bad cell (cleaned) pt.2",
"Run No.",1);
873 CompressedClean->GetXaxis()->SetRangeUser(nBadCells/2,nBadCells+2);
874 CompressedClean->DrawCopy(
"BOX");
879 for(
Int_t ic = 0; ic < noOfCells; ic++)
881 TH1D *htmpCell = hFlagvsRun[2]->ProjectionY(TString::Format(
"hIDProj_cell%d", ic), ic+1, ic+1);
882 fracRun = 0, sumRun = 0;
883 for(
Int_t ir = 0; ir < nRunsUsed ; ir++)
885 sumRun += htmpCell->GetBinContent(ir+1);
887 fracRun = sumRun/(
Double_t)(nRunsUsed);
890 Int_t cellColumn=0, cellRow=0;
891 Int_t cellColumnAbs=0, cellRowAbs=0;
894 hFlagNewClean->Fill(cellColumnAbs, cellRowAbs, fracRun*100);
901 hFlagNew->Draw(
"colz");
904 hFlagNewClean->Draw(
"colz");
911 TH1D *htmpCellSum = hFlagvsRun[2]->ProjectionX(
"countSum");
912 for(
Int_t ic = 0; ic < noOfCells; ic++)
914 if(htmpCellSum->GetBinContent(ic+1)>0)bcBolckSum++;
917 cout<<
"...................................."<<endl;
918 cout<<
"Summary: "<<nBadCells<<
" bad cells of "<<noOfCells<<
" total cells and "<<nRunsUsed<<
" runs"<<endl;
919 cout<<
"o All bad cells: "<<nBadCells<<endl;
920 cout<<
"o low fraction bad cells: "<<cellVector.size()<<endl;
921 cout<<
"o bad cells after reinclusion: "<<bcBolckSum<<endl;
922 cout<<
"o rescued cells: "<<nBadCells-bcBolckSum<<endl;
923 if(cellVector.size()!=0)cout<<
"o These are: "<<100*(nBadCells-bcBolckSum)/cellVector.size()<<
"% of low frac cells"<<endl;
924 cout<<
"...................................."<<endl;
931 TString fileName = Form(
"%s/RunByRunSummary%i/%s_Results.root",analysisOutput.Data(),runsUsed,listName.Data());
932 TFile* rootFile =
new TFile(fileName,
"recreate");
934 for(
Int_t ic = 0; ic<nCv; ic++)
936 rootFile->WriteObject(cBad [ic],cBad [ic]->GetName());
937 rootFile->WriteObject(cGood[ic],cGood[ic]->GetName());
938 rootFile->WriteObject(cDead[ic],cDead[ic]->GetName());
939 rootFile->WriteObject(cAmp [ic],cAmp [ic]->GetName());
941 rootFile->WriteObject(cellSummaryCan,cellSummaryCan->GetName());
942 rootFile->WriteObject(cAmpSum,cAmpSum->GetName());
943 rootFile->WriteObject(cFlagDeadBadI,cFlagDeadBadI->GetName());
944 rootFile->WriteObject(cFlagDeadBadII,cFlagDeadBadII->GetName());
945 rootFile->WriteObject(cFlagSumI,cFlagSumII->GetName());
946 rootFile->WriteObject(cFlagSumII,cFlagSumII->GetName());
947 rootFile->WriteObject(cFlagSumCleanedI,cFlagSumCleanedI->GetName());
948 rootFile->WriteObject(cFlagSumCleanedII,cFlagSumCleanedII->GetName());
949 rootFile->WriteObject(cFlagSumCompAllI,cFlagSumCompAllI->GetName());
950 rootFile->WriteObject(cFlagSumCompAllII,cFlagSumCompAllII->GetName());
951 rootFile->WriteObject(cFlagSumCompCleanI,cFlagSumCompCleanI->GetName());
952 rootFile->WriteObject(cFlagSumCompCleanII,cFlagSumCompCleanII->GetName());
953 rootFile->WriteObject(cFlagNew,cFlagNew->GetName());
954 rootFile->WriteObject(cAmpSum2D,cAmpSum2D->GetName());
955 rootFile->WriteObject(cAmpSum2D4Blocks,cAmpSum2D4Blocks->GetName());
956 rootFile->WriteObject(cAmpSum2D4BlocksRatio,cAmpSum2D4BlocksRatio->GetName());
958 rootFile->WriteObject(hFlagNew,hFlagNew->GetName());
959 rootFile->WriteObject(CompressedAll,CompressedAll->GetName());
960 rootFile->WriteObject(hFlagvsRun[2],hFlagvsRun[2]->GetName());
961 rootFile->WriteObject(CompressedClean,CompressedClean->GetName());
962 rootFile->WriteObject(projSum,projSum->GetName());
963 rootFile->WriteObject(projSumC,projSumC->GetName());
964 rootFile->WriteObject(projSumC3Blocks,projSumC3Blocks->GetName());
965 rootFile->WriteObject(nEventsVsRuns,nEventsVsRuns->GetName());
966 for(
Int_t ir = 0; ir < nRunsUsed ; ir++)
968 rootFile->WriteObject(ampIDCl[ir],ampIDCl[ir]->GetName());
969 rootFile->WriteObject(ampID[ir],ampID[ir]->GetName());
970 rootFile->WriteObject(ampIDDelete[ir],ampIDDelete[ir]->GetName());
975 TString badCanvasName =Form(
"%s/RunByRunSummary%i/%s_BadCells.pdf", analysisOutput.Data(),nRunsUsed,listName.Data());
976 TString goodCanvasName=Form(
"%s/RunByRunSummary%i/%s_GoodCells.pdf", analysisOutput.Data(),nRunsUsed,listName.Data());
977 TString deadCanvasName=Form(
"%s/RunByRunSummary%i/%s_DeadCells.pdf", analysisOutput.Data(),nRunsUsed,listName.Data());
978 TString ampCanvasName =Form(
"%s/RunByRunSummary%i/%s_Amplitudes.pdf", analysisOutput.Data(),nRunsUsed,listName.Data());
979 TString summaryPDF =Form(
"%s/RunByRunSummary%i/%s_FigureCollection.pdf", analysisOutput.Data(),nRunsUsed,listName.Data());
981 for(
Int_t ic = 0; ic<nCv; ic++)
986 cBad [ic] ->Print(Form(
"%s(",badCanvasName.Data()));
987 cGood[ic] ->Print(Form(
"%s(",goodCanvasName.Data()));
988 cDead[ic] ->Print(Form(
"%s(",deadCanvasName.Data()));
989 cAmp [ic] ->Print(Form(
"%s(",ampCanvasName.Data()));
991 else if(ic==(nCv-1) && nCv>1)
994 cBad [ic] ->Print(Form(
"%s)",badCanvasName.Data()));
995 cGood[ic] ->Print(Form(
"%s)",goodCanvasName.Data()));
996 cDead[ic] ->Print(Form(
"%s)",deadCanvasName.Data()));
997 cAmp [ic] ->Print(Form(
"%s)",ampCanvasName.Data()));
1002 cBad [ic] ->Print(Form(
"%s",badCanvasName.Data()));
1003 cGood[ic] ->Print(Form(
"%s",goodCanvasName.Data()));
1004 cDead[ic] ->Print(Form(
"%s",deadCanvasName.Data()));
1005 cAmp [ic] ->Print(Form(
"%s",ampCanvasName.Data()));
1010 cellSummaryCan ->Print(Form(
"%s(",summaryPDF.Data()));
1011 cellSummaryCan2 ->Print(Form(
"%s",summaryPDF.Data()));
1012 cAmpSum ->Print(Form(
"%s",summaryPDF.Data()));
1013 cAmpSum2D ->Print(Form(
"%s",summaryPDF.Data()));
1014 cAmpSum2D4Blocks ->Print(Form(
"%s",summaryPDF.Data()));
1015 cFlagNew ->Print(Form(
"%s",summaryPDF.Data()));
1016 cFlagDeadBadI ->Print(Form(
"%s",summaryPDF.Data()));
1017 cFlagDeadBadII ->Print(Form(
"%s",summaryPDF.Data()));
1018 cFlagSumI ->Print(Form(
"%s",summaryPDF.Data()));
1019 cFlagSumII ->Print(Form(
"%s",summaryPDF.Data()));
1020 cFlagSumCleanedI ->Print(Form(
"%s",summaryPDF.Data()));
1021 cFlagSumCleanedII->Print(Form(
"%s",summaryPDF.Data()));
1022 cFlagSumCompAllI ->Print(Form(
"%s",summaryPDF.Data()));
1023 cFlagSumCompAllII->Print(Form(
"%s",summaryPDF.Data()));
1024 cFlagSumCompCleanI->Print(Form(
"%s",summaryPDF.Data()));
1025 cFlagSumCompCleanII->Print(Form(
"%s)",summaryPDF.Data()));
1034 if(noOfSplits>4)cout<<
"Error: so far only implemented for 1-4 splits"<<endl;
1036 gStyle->SetOptTitle(0);
1037 gStyle->SetOptStat(0);
1039 gStyle->SetCanvasColor(10);
1040 TGaxis::SetMaxDigits(4);
1041 gStyle->SetPadTopMargin(0.07);
1042 gStyle->SetPadBottomMargin(0.18);
1043 gStyle->SetPadRightMargin(0.04);
1044 gStyle->SetPadLeftMargin(0.06);
1045 gStyle->SetFrameFillColor(10);
1046 gStyle->SetLabelSize(0.05,
"X");
1047 gStyle->SetLabelSize(0.05,
"Y");
1048 gStyle->SetTitleSize(5.0,
"X");
1049 gStyle->SetTitleSize(5.0,
"Y");
1050 gEnv->SetValue(
"Canvas.ShowEventStatus",1);
1056 TString runList =
"GloballyGood10";
1057 Int_t runNumber=245145;
1074 TString fileName = Form(
"AnalysisOutput/%s/Train_%i/RunByRunSummary%i/%s_Results.root",period.Data(),train,Nruns,runList.Data());
1076 cout<<
"Open root file: "<<fileName<<endl;
1077 TFile *f = TFile::Open(fileName);
1080 cout<<
"Couldn't open/find .root file: "<<fileName<<endl;
1083 TH2F *hbadAndDeadvsRun = (
TH2F*)f->Get(
"hFlag3vsRun_Comp");
1084 TH2F *hbadAndDeadvsRunw = (
TH2F*)hbadAndDeadvsRun->Clone(
"hbadAndDeadvsRunWeight");
1085 if(!hbadAndDeadvsRun)cout<<
"couldn't find histogram - hFlag3vsRun_Comp"<<endl;
1086 hbadAndDeadvsRun->GetXaxis()->UnZoom();
1087 hbadAndDeadvsRunw->GetXaxis()->UnZoom();
1089 TH1D* hEventsPerRun = (
TH1D*)f->Get(
"nEventVsRun");
1090 if(!hEventsPerRun)cout<<
"couldn't find histogram - nEventVsRun"<<endl;
1102 for(
Int_t icell = 0; icell < noOfCells ; icell++)
1104 for(
Int_t iRun = 0; iRun < Nruns ; iRun++)
1106 if(hbadAndDeadvsRun->GetBinContent(icell+1,iRun+1)==1)
1108 hbadAndDeadvsRunw->SetBinContent(icell+1,iRun+1,hEventsPerRun->GetBinContent(iRun+1));
1114 TCanvas *canEvt=
new TCanvas(
"canEvt",
"canEvt", 500, 500);
1115 canEvt->cd()->SetLeftMargin(0.08);
1116 SetHisto(hEventsPerRun,
"Run",
"No of events",0);
1118 hEventsPerRun->DrawCopy(
"hist");
1120 TCanvas *can1=
new TCanvas(
"compressedIDs1",
"compressed cell ID's A)", 1600, 1000);
1121 can1->cd()->SetLeftMargin(0.05);
1122 can1->cd()->SetRightMargin(0.05);
1123 can1->cd()->SetBottomMargin(0.06);
1124 can1->cd()->SetTopMargin(0.02);
1125 SetHisto(hbadAndDeadvsRun,
"",
"Run in List",1);
1126 hbadAndDeadvsRun->GetYaxis()->SetTitleOffset(0.35);
1127 hbadAndDeadvsRun->GetXaxis()->SetRangeUser(0,2300);
1128 hbadAndDeadvsRun->DrawCopy(
"colz");
1129 TCanvas *can2=
new TCanvas(
"compressedIDs2",
"compressed cell ID's B)", 1600, 1000);
1130 can2->cd()->SetLeftMargin(0.05);
1131 can2->cd()->SetRightMargin(0.05);
1132 can2->cd()->SetBottomMargin(0.06);
1133 can2->cd()->SetTopMargin(0.02);
1134 SetHisto(hbadAndDeadvsRunw,
"",
"Run in List",1);
1135 hbadAndDeadvsRunw->GetYaxis()->SetTitleOffset(0.35);
1136 hbadAndDeadvsRunw->GetXaxis()->SetRangeUser(0,2300);
1137 hbadAndDeadvsRunw->DrawCopy(
"colz");
1163 Int_t sumRunBlockTotal=0;
1164 Int_t nBlockTotal=0;
1165 TH1D *hOneBigBlock = hbadAndDeadvsRunw->ProjectionX(TString::Format(
"%s_projSum",hbadAndDeadvsRunw->GetName()),0,Nruns);
1167 for(
Int_t iRun=1; iRun<=Nruns; iRun++)
1169 cout<<
"Round "<<iRun<<
" of "<<Nruns<<endl;
1179 for(
Int_t iRun2=endBlock2; iRun2<=Nruns; iRun2++)
1190 for(
Int_t iRun3=endBlock3; iRun3<=Nruns; iRun3++)
1192 hbadAndDeadvsRun ->GetXaxis()->UnZoom();
1193 hbadAndDeadvsRunw->GetXaxis()->UnZoom();
1199 if(noOfSplits<3)iRun2=Nruns;
1200 if(noOfSplits<4)iRun3=Nruns;
1204 htmpCell1 = hbadAndDeadvsRunw->ProjectionX(TString::Format(
"%s_proj1",hbadAndDeadvsRunw->GetName()),0,iRun);
1205 htmpCell2 = hbadAndDeadvsRunw->ProjectionX(TString::Format(
"%s_proj2",hbadAndDeadvsRunw->GetName()),iRun+1,iRun2);
1206 if(noOfSplits>2)htmpCell3 = hbadAndDeadvsRunw->ProjectionX(TString::Format(
"%s_proj3",hbadAndDeadvsRunw->GetName()),iRun2+1,iRun3);
1207 if(noOfSplits>3)htmpCell4 = hbadAndDeadvsRunw->ProjectionX(TString::Format(
"%s_proj4",hbadAndDeadvsRunw->GetName()),iRun3+1,Nruns);
1211 htmpCell1 = hbadAndDeadvsRun->ProjectionX(TString::Format(
"%s_proj1",hbadAndDeadvsRun->GetName()),0,iRun);
1212 htmpCell2 = hbadAndDeadvsRun->ProjectionX(TString::Format(
"%s_proj2",hbadAndDeadvsRun->GetName()),iRun+1,iRun2);
1213 if(noOfSplits>2)htmpCell3 = hbadAndDeadvsRun->ProjectionX(TString::Format(
"%s_proj3",hbadAndDeadvsRun->GetName()),iRun2+1,iRun3);
1214 if(noOfSplits>3)htmpCell4 = hbadAndDeadvsRun->ProjectionX(TString::Format(
"%s_proj4",hbadAndDeadvsRun->GetName()),iRun3+1,Nruns);
1217 Double_t nEvtBlock1 = hEventsPerRun->Integral(0,iRun);
1218 Double_t nEvtBlock2 = hEventsPerRun->Integral(iRun+1,iRun2);
1219 Double_t nEvtBlock3 = hEventsPerRun->Integral(iRun2+1,iRun3);
1220 Double_t nEvtBlock4 = hEventsPerRun->Integral(iRun3+1,Nruns);
1223 Int_t sumRunBlock1=0;
1224 Int_t sumRunBlock2=0;
1225 Int_t sumRunBlock3=0;
1226 Int_t sumRunBlock4=0;
1233 for(
Int_t icell = 0; icell < htmpCell1->GetNbinsX(); icell++)
1235 sumRunBlockTotal = hOneBigBlock->GetBinContent(icell+1);
1236 sumRunBlock1 = htmpCell1->GetBinContent(icell+1);
1237 sumRunBlock2 = htmpCell2->GetBinContent(icell+1);
1238 if(noOfSplits>2)sumRunBlock3 = htmpCell3->GetBinContent(icell+1);
1239 if(noOfSplits>3)sumRunBlock4 = htmpCell4->GetBinContent(icell+1);
1241 if(sumRunBlock1>0)nBlock1++;
1242 if(sumRunBlock2>0)nBlock2++;
1243 if(sumRunBlock3>0)nBlock3++;
1244 if(sumRunBlock4>0)nBlock4++;
1245 if(sumRunBlockTotal>0)nBlockTotal++;
1248 nCellRunsBlock1=nBlock1*iRun;
1249 nCellRunsBlock2=nBlock2*(iRun2-iRun+1);
1250 nCellRunsBlock3=nBlock3*(iRun3-iRun2+1);
1251 nCellRunsBlock4=nBlock4*(Nruns-iRun3+1);
1254 nCellEvtBlock1 =nBlock1*nEvtBlock1;
1255 nCellEvtBlock2 =nBlock2*nEvtBlock2;
1256 nCellEvtBlock3 =nBlock3*nEvtBlock3;
1257 nCellEvtBlock4 =nBlock4*nEvtBlock4;
1260 if(totalCellsBadRun==0 || (nCellRunsBlock1+nCellRunsBlock2+nCellRunsBlock3+nCellRunsBlock4)<totalCellsBadRun)
1262 totalCellsBadRun=nCellRunsBlock1+nCellRunsBlock2+nCellRunsBlock3+nCellRunsBlock4;
1268 if(totalCellsBadEvt==0 || (nCellEvtBlock1+nCellEvtBlock2+nCellEvtBlock3+nCellEvtBlock4)<totalCellsBadEvt)
1270 totalCellsBadEvt=nCellEvtBlock1+nCellEvtBlock2+nCellEvtBlock3+nCellEvtBlock4;
1278 hbadAndDeadvsRun->GetXaxis()->UnZoom();
1279 TH1D *htmpCell1p = hbadAndDeadvsRun->ProjectionX(TString::Format(
"%s_proj1",hbadAndDeadvsRun->GetName()),0,splitRun1);
1280 TH1D *htmpCell2p = hbadAndDeadvsRun->ProjectionX(TString::Format(
"%s_proj2",hbadAndDeadvsRun->GetName()),splitRun1+1,splitRun2);
1281 TH1D *htmpCell3p = hbadAndDeadvsRun->ProjectionX(TString::Format(
"%s_proj3",hbadAndDeadvsRun->GetName()),splitRun2+1,splitRun3);
1282 TH1D *htmpCell4p = hbadAndDeadvsRun->ProjectionX(TString::Format(
"%s_proj4",hbadAndDeadvsRun->GetName()),splitRun3+1,Nruns);
1284 TCanvas *canSplit=
new TCanvas(
"canSplit",
"Split compressed cell ID's", 1600, 500);
1285 canSplit->Divide(2,2);
1287 SetHisto(htmpCell1p,
"",
"nruns bad",1);
1288 htmpCell1p->GetYaxis()->SetTitleOffset(0.35);
1289 htmpCell1p->DrawCopy(
"hist");
1291 SetHisto(htmpCell2p,
"",
"nruns bad",1);
1292 htmpCell2p->GetYaxis()->SetTitleOffset(0.35);
1293 htmpCell2p->DrawCopy(
"hist");
1295 SetHisto(htmpCell3p,
"",
"nruns bad",1);
1296 htmpCell3p->GetYaxis()->SetTitleOffset(0.35);
1297 htmpCell3p->DrawCopy(
"hist");
1299 SetHisto(htmpCell4p,
"",
"nruns bad",1);
1300 htmpCell4p->GetYaxis()->SetTitleOffset(0.35);
1301 htmpCell4p->DrawCopy(
"hist");
1314 cout<<
"Best results are achieved by splitting into:"<<endl;
1315 cout<<
"- - - - - - - - GENERAL - - - - - - - - -"<<endl;
1316 cout<<
"Number of runs: "<<Nruns<<endl;
1317 cout<<
"Number events: "<<hEventsPerRun->Integral(0,Nruns)<<endl;
1318 cout<<
"Bad cells if masked as 1 block: "<<nBlockTotal<<endl;
1319 cout<<
"Bad cells * runs: "<<nBlockTotal*Nruns<<endl;
1320 cout<<
"Bad cells * evt: "<<nBlockTotal*hEventsPerRun->Integral(0,Nruns)<<endl;
1321 cout<<
"- - - - - - - - UNWEIGHTED Splitting - - - - - - - - -"<<endl;
1322 cout<<
"Run: 0-"<<splitRun1<<endl;
1323 cout<<
"Run: "<<splitRun1+1<<
"-"<<splitRun2<<endl;
1324 if(noOfSplits>2)cout<<
"Run: "<<splitRun2+1<<
"-"<<splitRun3<<endl;
1325 if(noOfSplits>3)cout<<
"Run: "<<splitRun3+1<<
"-"<<Nruns<<endl;
1326 cout<<
"Number of bad cells*runs ="<<totalCellsBadRun<<endl;
1327 cout<<
"- - - - - - - - WEIGHTED Splitting - - - - - - - - -"<<endl;
1328 cout<<
"Run: 0-"<<splitRun1w<<endl;
1329 cout<<
"Run: "<<splitRun1w+1<<
"-"<<splitRun2w<<endl;
1330 if(noOfSplits>2)cout<<
"Run: "<<splitRun2w+1<<
"-"<<splitRun3w<<endl;
1331 if(noOfSplits>3)cout<<
"Run: "<<splitRun3w+1<<
"-"<<Nruns<<endl;
1332 cout<<
"Number of bad cells*events ="<<totalCellsBadEvt<<endl;
1334 cout<<
" events block1 : "<<hEventsPerRun->Integral(0,splitRun1)<<endl;
1335 cout<<
" events block2 : "<<hEventsPerRun->Integral(splitRun1+1,splitRun2)<<endl;
1336 cout<<
" events block3 : "<<hEventsPerRun->Integral(splitRun2+1,splitRun3)<<endl;
1337 cout<<
" events block4 : "<<hEventsPerRun->Integral(splitRun3+1,Nruns)<<endl;
1350 gROOT->ProcessLine(
"gErrorIgnoreLevel = kWarning;");
1351 gStyle->SetOptStat(0);
1352 gStyle->SetPadLeftMargin(0.13);
1353 gStyle->SetPadRightMargin(0.1);
1354 gStyle->SetPadBottomMargin(0.13);
1355 gStyle->SetPadTopMargin(0.02);
1357 Int_t noOfCells=17674;
1358 const Int_t nRunsUsed=105;
1361 Int_t splitRuns1=34;
1362 Int_t splitRuns2=66;
1363 Int_t splitRuns3=74;
1364 Int_t nBadCellMerged[4]={noOfCells,noOfCells,noOfCells,noOfCells};
1365 Int_t nBadCellRbR[4] ={noOfCells,noOfCells,noOfCells,noOfCells};
1369 std::vector<Int_t> badcellsBlock1;
1370 std::vector<Int_t> badcellsBlock2;
1371 std::vector<Int_t> badcellsBlock3;
1372 std::vector<Int_t> badcellsBlock4;
1374 badcellsBlock1.insert(badcellsBlock1.end(),{14655,14622,14640,14728,14726});
1376 badcellsBlock2.insert(badcellsBlock2.end(),{6644,6655,10140,12036,12037,12038,12039,12040,12041,12926,13067,13066,13125});
1377 badcellsBlock2.insert(badcellsBlock2.end(),{13133,13483,13971,13978,14116,14118,14122,14411,14593,14599,14600,14606,14699});
1378 badcellsBlock2.insert(badcellsBlock2.end(),{14728,15158,15462,16309});
1380 badcellsBlock3.insert(badcellsBlock3.end(),{292,294,297,301,13483, 13975, 14116, 14320, 14326});
1382 badcellsBlock4.insert(badcellsBlock4.end(),{3472,3473,3474,3475,3476,3477,3478,3479,3480,3481,3482,3483,3484,3485,3486,3487});
1383 badcellsBlock4.insert(badcellsBlock4.end(),{3520,3521,3522,3523,3524,3525,3526,3527,3528,3529,3530,3531,3532,3533,3534,3535});
1384 badcellsBlock4.insert(badcellsBlock4.end(),{3665,3666,3667,3668,3669,3670,3671,3672,3673,3674,3675,3676,3677,3678,3679});
1385 badcellsBlock4.insert(badcellsBlock4.end(),{3712,3713,3714,3715,3716,3717,3718,3719,3720,3721,3722,3723,3724,3725,3726,3727});
1386 badcellsBlock4.insert(badcellsBlock4.end(),{8848,8849,8850,8851,8852,8853,8854,8855,8856,8857,8858,8859,8860,8861,8862,8863});
1387 badcellsBlock4.insert(badcellsBlock4.end(),{8896,8897,8898,8899,8900,8901,8902,8903,8904,8905,89106,8907,8908,8909,8910});
1388 badcellsBlock4.insert(badcellsBlock4.end(),{11906,11907,11908,11909,11910,11911,11912,11913,11914,11915,11916,11917,11918,11919});
1389 badcellsBlock4.insert(badcellsBlock4.end(),{12034,12035,12036,12037,12038,12039,12040,12041,12042,12043,12044,12045,13469,13483,16427,16430});
1391 std::vector<Int_t> vOnlyMaskedInMergedA;
1392 std::vector<Int_t> vOnlyMaskedInRunbRunA;
1393 std::vector<Int_t> vOnlyMaskedInMergedB;
1394 std::vector<Int_t> vOnlyMaskedInRunbRunB;
1395 std::vector<Int_t> vOnlyMaskedInMergedC;
1396 std::vector<Int_t> vOnlyMaskedInRunbRunC;
1397 std::vector<Int_t> vOnlyMaskedInMergedD;
1398 std::vector<Int_t> vOnlyMaskedInRunbRunD;
1400 cout<<
"run splitting: "<<endl;
1401 cout<<0<<
"-"<<splitRuns1<<
" -> "<<splitRuns1<<
" runs"<<endl;
1402 cout<<splitRuns1+1<<
"-"<<splitRuns2<<
" -> "<<splitRuns2-splitRuns1<<
" runs"<<endl;
1403 cout<<splitRuns2+1<<
"-"<<splitRuns3<<
" -> "<<splitRuns3-splitRuns2<<
" runs"<<endl;
1404 cout<<splitRuns3+1<<
"-"<<nRunsUsed <<
" -> "<<nRunsUsed-splitRuns3 <<
" runs"<<endl;
1409 cout<<
"**Open files with merged runlist analysis: "<<endl;
1410 TString pathA = Form(
"./AnalysisOutput/%s/Train_%i/Version%i",period.Data(),trainNo,version);
1411 TString rootFileNameA= Form(
"INT7_Histograms_V%i.root",version);
1412 TFile* outputRootA = TFile::Open(Form(
"%s/%s",pathA.Data(),rootFileNameA.Data()));
1413 if(!outputRootA)cout<<
"File "<<outputRootA->GetName()<<
" does not exist"<<endl;
1414 else cout<<
"file A: "<<outputRootA->GetName()<<endl;
1415 TString pathB = Form(
"./AnalysisOutput/%s/Train_%i/Version%i",period.Data(),trainNo,version+1);
1416 TString rootFileNameB= Form(
"INT7_Histograms_V%i.root",version+1);
1417 TFile* outputRootB = TFile::Open(Form(
"%s/%s",pathB.Data(),rootFileNameB.Data()));
1418 if(!outputRootB)cout<<
"File "<<outputRootB->GetName()<<
" does not exist"<<endl;
1419 else cout<<
"file B: "<<outputRootB->GetName()<<endl;
1420 TString pathC = Form(
"./AnalysisOutput/%s/Train_%i/Version%i",period.Data(),trainNo,version+2);
1421 TString rootFileNameC= Form(
"INT7_Histograms_V%i.root",version+2);
1422 TFile* outputRootC = TFile::Open(Form(
"%s/%s",pathC.Data(),rootFileNameC.Data()));
1423 if(!outputRootC)cout<<
"File "<<outputRootC->GetName()<<
" does not exist"<<endl;
1424 else cout<<
"file C: "<<outputRootC->GetName()<<endl;
1425 TString pathD = Form(
"./AnalysisOutput/%s/Train_%i/Version%i",period.Data(),trainNo,version+3);
1426 TString rootFileNameD= Form(
"INT7_Histograms_V%i.root",version+3);
1427 TFile* outputRootD = TFile::Open(Form(
"%s/%s",pathD.Data(),rootFileNameD.Data()));
1428 if(!outputRootD)cout<<
"File "<<outputRootD->GetName()<<
" does not exist"<<endl;
1429 else cout<<
"file D: "<<outputRootD->GetName()<<endl;
1432 TH2F* hCellAmplitudeA =(
TH2F*)outputRootA->Get(
"hCellAmplitude");
1433 TH1F* hnEventsA =(TH1F*)outputRootA->Get(
"hNEvents");
1434 hCellAmplitudeA->Scale(hnEventsA->GetBinContent(1));
1435 TH2F* hCellAmplitudeBlockMaskA=(
TH2F*)hCellAmplitudeA->Clone(
"hCellAmplitudeMask");
1436 TH1F* hCellFlagA =(TH1F*)outputRootA->Get(
"fhCellFlag");
1438 TH2F* hCellAmplitudeB =(
TH2F*)outputRootB->Get(
"hCellAmplitude");
1439 TH1F* hnEventsB =(TH1F*)outputRootB->Get(
"hNEvents");
1440 hCellAmplitudeB->Scale(hnEventsB->GetBinContent(1));
1441 TH2F* hCellAmplitudeBlockMaskB=(
TH2F*)hCellAmplitudeB->Clone(
"hCellAmplitudeMask");
1442 TH1F* hCellFlagB =(TH1F*)outputRootB->Get(
"fhCellFlag");
1444 TH2F* hCellAmplitudeC =(
TH2F*)outputRootC->Get(
"hCellAmplitude");
1445 TH1F* hnEventsC =(TH1F*)outputRootC->Get(
"hNEvents");
1446 hCellAmplitudeC->Scale(hnEventsC->GetBinContent(1));
1447 TH2F* hCellAmplitudeBlockMaskC=(
TH2F*)hCellAmplitudeC->Clone(
"hCellAmplitudeMask");
1448 TH1F* hCellFlagC =(TH1F*)outputRootC->Get(
"fhCellFlag");
1450 TH2F* hCellAmplitudeD =(
TH2F*)outputRootD->Get(
"hCellAmplitude");
1451 TH1F* hnEventsD =(TH1F*)outputRootD->Get(
"hNEvents");
1452 hCellAmplitudeD->Scale(hnEventsD->GetBinContent(1));
1453 TH2F* hCellAmplitudeBlockMaskD=(
TH2F*)hCellAmplitudeD->Clone(
"hCellAmplitudeMask");
1454 TH1F* hCellFlagD =(TH1F*)outputRootD->Get(
"fhCellFlag");
1459 cout<<
"**Open file with masking based on run-by-run info within a block: "<<endl;
1460 TString pathRbR = Form(
"./AnalysisOutput/%s/Train_%i/RunByRunSummary105",period.Data(),trainNo);
1461 TString rootFileNameRbR = Form(
"GloballyGood_Results.root");
1462 TFile* outputRootRbR = TFile::Open(Form(
"%s/%s",pathRbR .
Data(),rootFileNameRbR .
Data()));
1463 if(!outputRootRbR )cout<<
"File "<<outputRootRbR ->GetName()<<
" does not exist"<<endl;
1464 else cout<<
"file R-b-R: "<<outputRootRbR ->GetName()<<endl;
1466 TH2F* BadCellsVsRun =(
TH2F*)outputRootRbR ->Get(
"hFlag3vsRun");
1467 TH1F* hEvtVsRun =(TH1F*)outputRootRbR ->Get(
"nEventVsRun");
1468 TH2F* AmpVsID[nRunsUsed];
1469 for(
Int_t nRun=0;nRun<nRunsUsed;nRun++)
1471 AmpVsID[nRun] = (
TH2F*)outputRootRbR ->Get(Form(
"hCellAmplitudeRun%i",nRun));
1472 AmpVsID[nRun]->Scale(hEvtVsRun->GetBinContent(nRun+1));
1475 TH2F* AmpVsIDrBrBlockA = (
TH2F*)AmpVsID[0]->Clone(
"AmpVsIDrBrBlockA");
1476 TH2F* AmpVsIDrBrBlockB = (
TH2F*)AmpVsID[0]->Clone(
"AmpVsIDrBrBlockB");
1477 TH2F* AmpVsIDrBrBlockC = (
TH2F*)AmpVsID[0]->Clone(
"AmpVsIDrBrBlockC");
1478 TH2F* AmpVsIDrBrBlockD = (
TH2F*)AmpVsID[0]->Clone(
"AmpVsIDrBrBlockD");
1481 AmpVsIDrBrBlockA->Reset();
1482 AmpVsIDrBrBlockB->Reset();
1483 AmpVsIDrBrBlockC->Reset();
1484 AmpVsIDrBrBlockD->Reset();
1486 for(
Int_t nRun=0;nRun<nRunsUsed;nRun++)
1488 if(nRun<=splitRuns1) AmpVsIDrBrBlockA->Add(AmpVsID[nRun]);
1489 if(nRun>splitRuns1 && nRun<=splitRuns2)AmpVsIDrBrBlockB->Add(AmpVsID[nRun]);
1490 if(nRun>splitRuns2 && nRun<=splitRuns3)AmpVsIDrBrBlockC->Add(AmpVsID[nRun]);
1491 if(nRun>splitRuns3) AmpVsIDrBrBlockD->Add(AmpVsID[nRun]);
1501 AmpVsIDrBrBlockA->Reset();
1502 AmpVsIDrBrBlockA=(
TH2F*)hCellAmplitudeA->Clone(
"AmpVsIDrBrBlockA");
1503 AmpVsIDrBrBlockB->Reset();
1504 AmpVsIDrBrBlockB=(
TH2F*)hCellAmplitudeB->Clone(
"AmpVsIDrBrBlockB");
1505 AmpVsIDrBrBlockC->Reset();
1506 AmpVsIDrBrBlockC=(
TH2F*)hCellAmplitudeC->Clone(
"AmpVsIDrBrBlockC");
1507 AmpVsIDrBrBlockD->Reset();
1508 AmpVsIDrBrBlockD=(
TH2F*)hCellAmplitudeD->Clone(
"AmpVsIDrBrBlockD");
1519 for(
Int_t ic = 0; ic < noOfCells; ic++)
1534 for (
Int_t amp = 1; amp <= hCellAmplitudeBlockMaskA->GetNbinsX(); amp++)
1536 if(hCellFlagA->GetBinContent(ic+1)>0 || maskA==1)
1538 hCellAmplitudeBlockMaskA->SetBinContent(amp,ic+1,0);
1539 if(amp==1)nBadCellMerged[0]--;
1541 if(hCellFlagB->GetBinContent(ic+1)>0 || maskB==1)
1543 hCellAmplitudeBlockMaskB->SetBinContent(amp,ic+1,0);
1544 if(amp==1)nBadCellMerged[1]--;
1546 if(hCellFlagC->GetBinContent(ic+1)>0 || maskC==1)
1548 hCellAmplitudeBlockMaskC->SetBinContent(amp,ic+1,0);
1549 if(amp==1)nBadCellMerged[2]--;
1551 if(hCellFlagD->GetBinContent(ic+1)>0 || maskD==1)
1553 hCellAmplitudeBlockMaskD->SetBinContent(amp,ic+1,0);
1554 if(amp==1)nBadCellMerged[3]--;
1562 TH1D *htmpCellAllRuns =BadCellsVsRun->ProjectionY(TString::Format(
"hIDProj_cell%d", ic), ic+1, ic+1);
1563 Double_t integralBlock1 =htmpCellAllRuns->Integral(0,splitRuns1);
1564 Double_t integralBlock2 =htmpCellAllRuns->Integral(splitRuns1+1,splitRuns2);
1565 Double_t integralBlock3 =htmpCellAllRuns->Integral(splitRuns2+1,splitRuns3);
1566 Double_t integralBlock4 =htmpCellAllRuns->Integral(splitRuns3+1,nRunsUsed);
1574 for(
Int_t amp = 1; amp <= AmpVsIDrBrBlockA->GetNbinsX(); amp++)
1576 if(integralBlock1>0)
1578 AmpVsIDrBrBlockA->SetBinContent(amp,ic+1,0);
1579 if(amp==1)nBadCellRbR[0]--;
1581 if(integralBlock2>0)
1583 AmpVsIDrBrBlockB->SetBinContent(amp,ic+1,0);
1584 if(amp==1)nBadCellRbR[1]--;
1586 if(integralBlock3>0)
1588 AmpVsIDrBrBlockC->SetBinContent(amp,ic+1,0);
1589 if(amp==1)nBadCellRbR[2]--;
1591 if(integralBlock4>0)
1593 AmpVsIDrBrBlockD->SetBinContent(amp,ic+1,0);
1594 if(amp==1)nBadCellRbR[3]--;
1603 if(hCellFlagA->GetBinContent(ic+1)>0 && integralBlock1==0)vOnlyMaskedInMergedA.push_back(ic);
1604 if(hCellFlagA->GetBinContent(ic+1)==0 && integralBlock1>0) vOnlyMaskedInRunbRunA.push_back(ic);
1608 if(hCellFlagB->GetBinContent(ic+1)>0 && integralBlock2==0)vOnlyMaskedInMergedB.push_back(ic);
1609 if(hCellFlagB->GetBinContent(ic+1)==0 && integralBlock2>0) vOnlyMaskedInRunbRunB.push_back(ic);
1613 if(hCellFlagC->GetBinContent(ic+1)>0 && integralBlock3==0)vOnlyMaskedInMergedC.push_back(ic);
1614 if(hCellFlagC->GetBinContent(ic+1)==0 && integralBlock3>0) vOnlyMaskedInRunbRunC.push_back(ic);
1618 if(hCellFlagD->GetBinContent(ic+1)>0 && integralBlock4==0)vOnlyMaskedInMergedD.push_back(ic);
1619 if(hCellFlagD->GetBinContent(ic+1)==0 && integralBlock4>0) vOnlyMaskedInRunbRunD.push_back(ic);
1624 TH1* projMaskedCellsA = hCellAmplitudeBlockMaskA->ProjectionX(
"MaskedCellsMergedBlockA");
1625 TH1* projMaskedCellsB = hCellAmplitudeBlockMaskB->ProjectionX(
"MaskedCellsMergedBlockB");
1626 TH1* projMaskedCellsC = hCellAmplitudeBlockMaskC->ProjectionX(
"MaskedCellsMergedBlockC");
1627 TH1* projMaskedCellsD = hCellAmplitudeBlockMaskD->ProjectionX(
"MaskedCellsMergedBlockD");
1630 TH1* projMaskedCellsBlockA = AmpVsIDrBrBlockA->ProjectionX(
"MaskedCellsRbRBlockA");
1631 TH1* projMaskedCellsBlockB = AmpVsIDrBrBlockB->ProjectionX(
"MaskedCellsRbRBlockB");
1632 TH1* projMaskedCellsBlockC = AmpVsIDrBrBlockC->ProjectionX(
"MaskedCellsRbRBlockC");
1633 TH1* projMaskedCellsBlockD = AmpVsIDrBrBlockD->ProjectionX(
"MaskedCellsRbRBlockD");
1638 TCanvas* C1 =
new TCanvas(
"-1-",
"Bock A and B",900,900);
1640 C1->cd(1)->SetLogy();
1641 SetHisto(projMaskedCellsA,
"",
"hits/event",0);
1642 projMaskedCellsA->DrawCopy(
"hist");
1643 projMaskedCellsBlockA->SetLineColor(8);
1644 projMaskedCellsBlockA->DrawCopy(
"same hist");
1646 projMaskedCellsA->Divide(projMaskedCellsBlockA);
1647 SetHisto(projMaskedCellsA,
"",
"Merged block/Run-by-Run block",0);
1648 projMaskedCellsA->DrawCopy(
"hist");
1649 projMaskedCellsA->Multiply(projMaskedCellsBlockA);
1651 C1->cd(3)->SetLogy();
1652 SetHisto(projMaskedCellsB,
"",
"hits/event",0);
1653 projMaskedCellsB->DrawCopy(
"hist");
1654 projMaskedCellsBlockB->SetLineColor(8);
1655 projMaskedCellsBlockB->DrawCopy(
"same hist");
1657 projMaskedCellsB->Divide(projMaskedCellsBlockB);
1658 SetHisto(projMaskedCellsB,
"",
"Merged block/Run-by-Run block",0);
1659 projMaskedCellsB->DrawCopy(
"hist");
1660 projMaskedCellsB->Multiply(projMaskedCellsBlockB);
1662 TCanvas* C2 =
new TCanvas(
"-2-",
"Block C and D",900,900);
1664 C2->cd(1)->SetLogy();
1665 SetHisto(projMaskedCellsC,
"",
"hits/event",0);
1666 projMaskedCellsC->DrawCopy(
"hist");
1667 projMaskedCellsBlockC->SetLineColor(8);
1668 projMaskedCellsBlockC->DrawCopy(
"same hist");
1670 projMaskedCellsC->Divide(projMaskedCellsBlockC);
1671 SetHisto(projMaskedCellsC,
"",
"Merged block/Run-by-Run block",0);
1672 projMaskedCellsC->DrawCopy(
"hist");
1673 projMaskedCellsC->Multiply(projMaskedCellsBlockC);
1675 C2->cd(3)->SetLogy();
1676 SetHisto(projMaskedCellsD,
"",
"hits/event",0);
1677 projMaskedCellsD->DrawCopy(
"hist");
1678 projMaskedCellsBlockD->SetLineColor(8);
1679 projMaskedCellsBlockD->DrawCopy(
"same hist");
1681 projMaskedCellsD->Divide(projMaskedCellsBlockD);
1682 SetHisto(projMaskedCellsD,
"",
"Merged block/Run-by-Run block",0);
1683 projMaskedCellsD->DrawCopy(
"hist");
1684 projMaskedCellsD->Multiply(projMaskedCellsBlockD);
1686 TCanvas* C3 =
new TCanvas(
"-3-",
"Merge A, B, C, and D",900,900);
1688 C3->cd(1)->SetLogz();
1689 SetHisto(hCellAmplitudeBlockMaskA,
"",
"cell ID",0);
1690 hCellAmplitudeBlockMaskA->DrawCopy(
"colz");
1691 C3->cd(2)->SetLogz();
1692 SetHisto(hCellAmplitudeBlockMaskB,
"",
"cell ID",0);
1693 hCellAmplitudeBlockMaskB->DrawCopy(
"colz");
1694 C3->cd(3)->SetLogz();
1695 SetHisto(hCellAmplitudeBlockMaskC,
"",
"cell ID",0);
1696 hCellAmplitudeBlockMaskC->DrawCopy(
"colz");
1697 C3->cd(4)->SetLogz();
1698 SetHisto(hCellAmplitudeBlockMaskD,
"",
"cell ID",0);
1699 hCellAmplitudeBlockMaskD->DrawCopy(
"colz");
1701 TCanvas* C4 =
new TCanvas(
"-4-",
"Run-by-Run A, B, C, and D",900,900);
1703 C4->cd(1)->SetLogz();
1704 SetHisto(AmpVsIDrBrBlockA,
"",
"cell ID",0);
1705 AmpVsIDrBrBlockA->DrawCopy(
"colz");
1706 C4->cd(2)->SetLogz();
1707 SetHisto(AmpVsIDrBrBlockB,
"",
"cell ID",0);
1708 AmpVsIDrBrBlockB->DrawCopy(
"colz");
1709 C4->cd(3)->SetLogz();
1710 SetHisto(AmpVsIDrBrBlockC,
"",
"cell ID",0);
1711 AmpVsIDrBrBlockC->DrawCopy(
"colz");
1712 C4->cd(4)->SetLogz();
1713 SetHisto(AmpVsIDrBrBlockD,
"",
"cell ID",0);
1714 AmpVsIDrBrBlockD->DrawCopy(
"colz");
1719 projMaskedCellsA->Scale(1.0/nBadCellMerged[0]);
1720 projMaskedCellsB->Scale(1.0/nBadCellMerged[1]);
1721 projMaskedCellsC->Scale(1.0/nBadCellMerged[2]);
1722 projMaskedCellsD->Scale(1.0/nBadCellMerged[3]);
1723 projMaskedCellsBlockA->Scale(1.0/nBadCellRbR[0]);
1724 projMaskedCellsBlockB->Scale(1.0/nBadCellRbR[1]);
1725 projMaskedCellsBlockC->Scale(1.0/nBadCellRbR[2]);
1726 projMaskedCellsBlockD->Scale(1.0/nBadCellRbR[3]);
1728 cout<<0<<
"-"<<splitRuns1<<
" -> "<<splitRuns1<<
" runs"<<endl;
1729 cout<<splitRuns1+1<<
"-"<<splitRuns2<<
" -> "<<splitRuns2-splitRuns1<<
" runs"<<endl;
1730 cout<<splitRuns2+1<<
"-"<<splitRuns3<<
" -> "<<splitRuns3-splitRuns2<<
" runs"<<endl;
1731 cout<<splitRuns3+1<<
"-"<<nRunsUsed<<
" -> "<<nRunsUsed-splitRuns3<<
" runs"<<endl;
1733 cout<<
"o Run block A ("<<
"0-"<<splitRuns1<<
")"<<endl;
1734 cout<<
" Cells masked in Merged version and not in Run-b-run version ("<<vOnlyMaskedInMergedA.size()<<
"):"<<endl;
1735 for(
Int_t i=0; i<(
Int_t)vOnlyMaskedInMergedA.size();i++)
1737 cout<<vOnlyMaskedInMergedA.at(i)<<
","<<flush;
1740 CreateCellCompPDF(AmpVsIDrBrBlockA,vOnlyMaskedInMergedA,projMaskedCellsA,projMaskedCellsBlockA,
"./cOnlyMergedBlockA.pdf");
1741 cout<<
" Cells masked in Run-b-run version and not in Merged version ("<<vOnlyMaskedInRunbRunA.size()<<
"):"<<endl;
1742 for(
Int_t i=0; i<(
Int_t)vOnlyMaskedInRunbRunA.size();i++)
1744 cout<<vOnlyMaskedInRunbRunA.at(i)<<
","<<flush;
1747 CreateCellCompPDF(hCellAmplitudeBlockMaskA,vOnlyMaskedInRunbRunA,projMaskedCellsA,projMaskedCellsBlockA,
"./cOnlyRbRBlockA.pdf");
1749 cout<<
"o Run block B ("<<splitRuns1+1<<
"-"<<splitRuns2<<
")"<<endl;
1750 cout<<
" Cells masked in Merged version and not in Run-b-run version ("<<vOnlyMaskedInMergedB.size()<<
"):"<<endl;
1751 for(
Int_t i=0; i<(
Int_t)vOnlyMaskedInMergedB.size();i++)
1753 cout<<vOnlyMaskedInMergedB.at(i)<<
","<<flush;
1756 CreateCellCompPDF(AmpVsIDrBrBlockB,vOnlyMaskedInMergedB,projMaskedCellsB,projMaskedCellsBlockB,
"./cOnlyMergedBlockB.pdf");
1757 cout<<
" Cells masked in Run-b-run version and not in Merged version ("<<vOnlyMaskedInRunbRunB.size()<<
"):"<<endl;
1758 for(
Int_t i=0; i<(
Int_t)vOnlyMaskedInRunbRunB.size();i++)
1760 cout<<vOnlyMaskedInRunbRunB.at(i)<<
","<<flush;
1763 CreateCellCompPDF(hCellAmplitudeBlockMaskB,vOnlyMaskedInRunbRunB,projMaskedCellsB,projMaskedCellsBlockB,
"./cOnlyRbRBlockB.pdf");
1765 cout<<
"o Run block C ("<<splitRuns2+1<<
"-"<<splitRuns3<<
")"<<endl;
1766 cout<<
" Cells masked in Merged version and not in Run-b-run version ("<<vOnlyMaskedInMergedC.size()<<
"):"<<endl;
1767 for(
Int_t i=0; i<(
Int_t)vOnlyMaskedInMergedC.size();i++)
1769 cout<<vOnlyMaskedInMergedC.at(i)<<
","<<flush;
1772 CreateCellCompPDF(AmpVsIDrBrBlockC,vOnlyMaskedInMergedC,projMaskedCellsC,projMaskedCellsBlockC,
"./cOnlyMergedBlockC.pdf");
1773 cout<<
" Cells masked in Run-b-run version and not in Merged version ("<<vOnlyMaskedInRunbRunC.size()<<
"):"<<endl;
1774 for(
Int_t i=0; i<(
Int_t)vOnlyMaskedInRunbRunC.size();i++)
1776 cout<<vOnlyMaskedInRunbRunC.at(i)<<
","<<flush;
1779 CreateCellCompPDF(hCellAmplitudeBlockMaskC,vOnlyMaskedInRunbRunC,projMaskedCellsC,projMaskedCellsBlockC,
"./cOnlyRbRBlockC.pdf");
1781 cout<<
"o Run block D ("<<splitRuns3+1<<
"-"<<nRunsUsed<<
")"<<endl;
1782 cout<<
" Cells masked in Merged version and not in Run-b-run version ("<<vOnlyMaskedInMergedD.size()<<
"):"<<endl;
1783 for(
Int_t i=0; i<(
Int_t)vOnlyMaskedInMergedD.size();i++)
1785 cout<<vOnlyMaskedInMergedD.at(i)<<
","<<flush;
1788 CreateCellCompPDF(AmpVsIDrBrBlockD,vOnlyMaskedInMergedD,projMaskedCellsD,projMaskedCellsBlockD,
"./cOnlyMergedBlockD.pdf");
1789 cout<<
" Cells masked in Run-b-run version and not in Merged version ("<<vOnlyMaskedInRunbRunD.size()<<
"):"<<endl;
1790 for(
Int_t i=0; i<(
Int_t)vOnlyMaskedInRunbRunD.size();i++)
1792 cout<<vOnlyMaskedInRunbRunD.at(i)<<
","<<flush;
1795 CreateCellCompPDF(hCellAmplitudeBlockMaskD,vOnlyMaskedInRunbRunD,projMaskedCellsD,projMaskedCellsBlockD,
"./cOnlyRbRBlockD.pdf");
1801 Plot2DCells(
"A",244917,vOnlyMaskedInRunbRunA,vOnlyMaskedInMergedA);
1802 Plot2DCells(
"B",244917,vOnlyMaskedInRunbRunB,vOnlyMaskedInMergedB);
1803 Plot2DCells(
"C",244917,vOnlyMaskedInRunbRunC,vOnlyMaskedInMergedC);
1804 Plot2DCells(
"D",244917,vOnlyMaskedInRunbRunD,vOnlyMaskedInMergedD);
1806 vOnlyMaskedInRunbRunA.insert( vOnlyMaskedInRunbRunA.end(), vOnlyMaskedInRunbRunB.begin(), vOnlyMaskedInRunbRunB.end() );
1807 vOnlyMaskedInRunbRunA.insert( vOnlyMaskedInRunbRunA.end(), vOnlyMaskedInRunbRunC.begin(), vOnlyMaskedInRunbRunC.end() );
1808 vOnlyMaskedInRunbRunA.insert( vOnlyMaskedInRunbRunA.end(), vOnlyMaskedInRunbRunD.begin(), vOnlyMaskedInRunbRunD.end() );
1809 vOnlyMaskedInMergedA.insert( vOnlyMaskedInMergedA.end(), vOnlyMaskedInMergedB.begin(), vOnlyMaskedInMergedB.end() );
1810 vOnlyMaskedInMergedA.insert( vOnlyMaskedInMergedA.end(), vOnlyMaskedInMergedC.begin(), vOnlyMaskedInMergedC.end() );
1811 vOnlyMaskedInMergedA.insert( vOnlyMaskedInMergedA.end(), vOnlyMaskedInMergedD.begin(), vOnlyMaskedInMergedD.end() );
1812 Plot2DCells(
"sum",244917,vOnlyMaskedInRunbRunA,vOnlyMaskedInMergedA);
1831 Int_t fNMaxColsAbs = 2*48;
1834 TH2F *plot2D_RbR =
new TH2F(Form(
"Block%s_MaskedRbR",Block.Data()),Form(
"Block%s_MaskedRbR",Block.Data()),fNMaxColsAbs+1,-0.5,fNMaxColsAbs+0.5, fNMaxRowsAbs+1,-0.5,fNMaxRowsAbs+0.5);
1835 plot2D_RbR->GetXaxis()->SetTitle(
"cell column (#eta direction)");
1836 plot2D_RbR->GetYaxis()->SetTitle(
"cell row (#phi direction)");
1837 TH2F *plot2D_Merge =
new TH2F(Form(
"Block%s_MaskedMerge",Block.Data()),Form(
"Block%s_MaskedMerge",Block.Data()),fNMaxColsAbs+1,-0.5,fNMaxColsAbs+0.5, fNMaxRowsAbs+1,-0.5,fNMaxRowsAbs+0.5);
1838 plot2D_Merge->GetXaxis()->SetTitle(
"cell column (#eta direction)");
1839 plot2D_Merge->GetYaxis()->SetTitle(
"cell row (#phi direction)");
1841 Int_t cellColumn=0,cellRow=0;
1842 Int_t cellColumnAbs=0,cellRowAbs=0;
1845 for(
Int_t i = 0; i < (
Int_t)cellVectorRbR.size(); i++)
1847 Int_t cell=cellVectorRbR.at(i);
1853 if(cellColumnAbs> fNMaxColsAbs || cellRowAbs>fNMaxRowsAbs)
1855 cout<<
"Problem! wrong calculated number of max col and max rows"<<endl;
1856 cout<<
"current col: "<<cellColumnAbs<<
", max col"<<fNMaxColsAbs<<endl;
1857 cout<<
"current row: "<<cellRowAbs<<
", max row"<<fNMaxRowsAbs<<endl;
1859 plot2D_RbR->Fill(cellColumnAbs,cellRowAbs);
1861 for(
Int_t i = 0; i < (
Int_t)cellVectorMerge.size(); i++)
1863 Int_t cell=cellVectorMerge.at(i);
1869 if(cellColumnAbs> fNMaxColsAbs || cellRowAbs>fNMaxRowsAbs)
1871 cout<<
"Problem! wrong calculated number of max col and max rows"<<endl;
1872 cout<<
"current col: "<<cellColumnAbs<<
", max col"<<fNMaxColsAbs<<endl;
1873 cout<<
"current row: "<<cellRowAbs<<
", max row"<<fNMaxRowsAbs<<endl;
1875 plot2D_Merge->Fill(cellColumnAbs,cellRowAbs,1);
1878 TCanvas *c1 =
new TCanvas(Form(
"2DMapForBlock%s",Block.Data()),Form(
"2DMapForBlock%s",Block.Data()),900,500);
1879 c1->ToggleEventStatus();
1882 plot2D_RbR->Draw(
"colz");
1884 plot2D_Merge->Draw(
"colz");
1893 for(
Int_t bin=0;bin<50;bin++)
1895 ref = inHisto->GetBinContent(bin);
1896 max = maxHist->GetBinContent(bin);
1897 min = minHist->GetBinContent(bin);
1898 if((ref!=0 && ref<min) || min==0)minHist->SetBinContent(bin,ref);
1899 if(ref>max)maxHist->SetBinContent(bin,ref);
1918 Double_t mBlock1=0,mBlock2=0,mBlock3=0,mBlock4=0,mBlock5=0;
1919 Double_t zBlock1=0,zBlock2=0,zBlock3=0,zBlock4=0,zBlock5=0;
1921 Double_t minMean=0, maxMean=0, meanMean=0;
1922 Double_t zminMean=0, zmaxMean=0, zmeanMean=0;
1929 for(
Int_t bin=3;bin<53;bin++)
1933 minMean += minHistoRatio ->GetBinContent(bin);
1934 maxMean += maxHistoRatio ->GetBinContent(bin);
1935 meanMean += meanHistoRatio->GetBinContent(bin);
1936 if(minHistoRatio->GetBinContent(bin)==0)zminMean++;
1937 if(maxHistoRatio->GetBinContent(bin)==0)zmaxMean++;
1938 if(meanHistoRatio->GetBinContent(bin)==0)zmeanMean++;
1949 if(bin<13) mBlock1+=meanHistoRatio->GetBinContent(bin);
1950 else if(bin<23) mBlock2+=meanHistoRatio->GetBinContent(bin);
1951 else if(bin<33) mBlock3+=meanHistoRatio->GetBinContent(bin);
1952 else if(bin<43) mBlock4+=meanHistoRatio->GetBinContent(bin);
1953 else if(bin<53) mBlock5+=meanHistoRatio->GetBinContent(bin);
1955 if(meanHistoRatio->GetBinContent(bin)==0)
1957 if(bin<13) zBlock1++;
1958 else if(bin<23) zBlock2++;
1959 else if(bin<33) zBlock3++;
1960 else if(bin<43) zBlock4++;
1961 else if(bin<53) zBlock5++;
1982 if(zBlock1<10 && zBlock1!=0)mBlock1=mBlock1/(1.0-1.0*zBlock1/10);
1983 if(zBlock2<10 && zBlock2!=0)mBlock2=mBlock2/(1.0-1.0*zBlock2/10);
1984 if(zBlock3<10 && zBlock3!=0)mBlock3=mBlock3/(1.0-1.0*zBlock3/10);
1985 if(zBlock4<10 && zBlock4!=0)mBlock4=mBlock4/(1.0-1.0*zBlock4/10);
1986 if(zBlock5<10 && zBlock5!=0)mBlock5=mBlock5/(1.0-1.0*zBlock5/10);
1988 if(zminMean!=0)minMean =minMean/(1.0-1.0*zminMean/30);
1989 if(zmaxMean!=0)maxMean =maxMean/(1.0-1.0*zmaxMean/30);
1990 if(zmeanMean!=0)meanMean=meanMean/(1.0-1.0*zmeanMean/30);
1993 if(zBlock1>5)mBlock1=0;
1994 if(zBlock2>5)mBlock2=0;
1995 if(zBlock3>5)mBlock3=0;
1996 if(zBlock4>5)mBlock4=0;
1997 if(zBlock5>5)mBlock5=0;
2003 crit =
"spectr. too low";
2004 if(meanMean/30.0>5)
return 1;
2005 if(minMean/30.0 >5)
return 1;
2007 crit =
"spectr. too high";
2008 if(meanMean/30.0<0.2)
return 1;
2009 if(maxMean/30.0 <0.2)
return 1;
2012 crit =
"slope down";
2014 if(mBlock1!=0 && mBlock2!=0 && mBlock1>mBlock2 && mBlock1>1.4*mBlock2)down++;
2015 if(mBlock2!=0 && mBlock3!=0 && mBlock2>mBlock3 && mBlock2>1.4*mBlock3)down++;
2016 if(mBlock3!=0 && mBlock4!=0 && mBlock3>mBlock4 && mBlock3>1.4*mBlock4)down++;
2017 if(mBlock4!=0 && mBlock5!=0 && mBlock4>mBlock5 && mBlock4>1.4*mBlock5)down++;
2018 if(down>=2)
return 1;
2022 if(mBlock1!=0 && mBlock2 !=0 && mBlock1<mBlock2 && 1.4*mBlock1<mBlock2)up++;
2023 if(mBlock2!=0 && mBlock3 !=0 && mBlock2<mBlock3 && 1.4*mBlock2<mBlock3)up++;
2024 if(mBlock3!=0 && mBlock4 !=0 && mBlock3<mBlock4 && 1.4*mBlock3<mBlock4)up++;
2025 if(mBlock4!=0 && mBlock5 !=0 && mBlock4<mBlock5 && 1.4*mBlock4<mBlock5)up++;
2029 crit =
"step 2.1 GeV";
2030 if(mBlock4!=0 && mBlock5!=0 && mBlock4>mBlock5 && mBlock4>20*mBlock5)
return 1;
2043 gROOT->ProcessLine(
"gErrorIgnoreLevel = kWarning;");
2045 Int_t nRescuableChannels=cellVector.size();
2046 Int_t totalperCv = 16;
2047 Int_t nPad = TMath::Sqrt(totalperCv);
2048 Int_t nCv = nRescuableChannels/totalperCv+1;
2051 TLatex* text =
new TLatex(0.45,0.6,
"*Indeed bad*");
2052 text->SetTextSize(0.07);
2053 text->SetTextColor(kAzure-8);
2056 TH1D *maxHisto = ampID[0]->ProjectionX(
"hMaxCells", 1, 1);
2057 TH1D *minHisto = ampID[0]->ProjectionX(
"hMinCells", 1, 1);
2058 TH1D* hgoodMean = ampID[0]->ProjectionX(
"hMeanofRuns", 1, 1);
2061 cout<<
" o create: "<<nCv<<
" Canvases with "<<nPad*nPad<<
" pads"<<endl;
2063 TCanvas **cComp =
new TCanvas*[nCv];
2064 TCanvas **cCompDiv =
new TCanvas*[nCv];
2065 for(
Int_t i=0;i<nCv;i++)
2067 cComp[i] =
new TCanvas(TString::Format(
"CompareGood%d", i), TString::Format(
"V) Candidates (%d/%d)", i+1, nCv), 1000,750);
2068 cComp[i] ->Divide(nPad,nPad,0.001,0.001);
2069 cCompDiv[i] =
new TCanvas(TString::Format(
"CompareGood Ratio%d", i), TString::Format(
"V) Candidates Ratio (%d/%d)", i+1, nCv), 1000,750);
2070 cCompDiv[i] ->Divide(nPad,nPad,0.001,0.001);
2073 Int_t notBadCounter=0;
2075 for(
Int_t cell=0;cell< (
Int_t)cellVector.size();cell++)
2077 if(cell%400==0)cout<<
"cell No."<<cell<<endl;
2078 if(cell%20==0) cout<<
"."<<flush;
2083 std::vector<TH1D*> badHistVector;
2085 for(
Int_t i = 0 ; i < nRuns ; i++)
2087 TH1D *htmpCell = ampID[i]->ProjectionX(TString::Format(
"hIDProj_cell%dRun%i", cellVector.at(cell),i), cellVector.at(cell)+1, cellVector.at(cell)+1);
2088 htmpCell->SetLineColor(kGray+1);
2089 if(badVsCell[2]->GetBinContent(cellVector.at(cell)+1,i+1)==1)
2091 htmpCell->SetLineColor(2);
2092 htmpCell->SetFillColor(2);
2093 htmpCell->SetFillStyle(3002);
2094 declaredBad = (
TH1D*)htmpCell->Clone(
"saveForLater");
2095 badHistVector.push_back(htmpCell);
2097 if(htmpCell->Integral()==0)cout<<
"cell "<<cell<<
" is dead for run: "<<i<<endl;
2102 hgoodMean->Add(htmpCell);
2108 cComp[nCv-1] ->cd(nPad*nPad)->SetLogy();
2109 SetHisto(hCellGoodMean[i],
"",
"Number of Hits",0);
2110 hCellGoodMean[i]->GetXaxis()->SetRangeUser(0,3);
2111 hCellGoodMean[i]->Draw(
"hist");
2115 cComp[nCv-1] ->cd(nPad*nPad)->SetLogy();
2116 hCellGoodMean[i]->Draw(
"same hist");
2119 lastGood=(cell-notBadCounter)/totalperCv;
2122 cComp[(cell-notBadCounter)/totalperCv]->cd(((cell-notBadCounter)%totalperCv)+1)->SetLogy();
2123 SetHisto(htmpCell,Form(
"Energy of cell %i",cellVector.at(cell)),
"Number of Hits",0);
2124 htmpCell->GetXaxis()->SetRangeUser(0,3);
2125 htmpCell->Draw(
"hist");
2129 cComp[(cell-notBadCounter)/totalperCv]->cd(((cell-notBadCounter)%totalperCv)+1)->SetLogy();
2130 htmpCell->DrawCopy(
"same hist");
2133 hgoodMean->Scale(1.0/nRuns);
2135 hCellGoodMean[badRun]->DrawCopy(
"same hist");
2136 minHisto->SetLineColor(1);
2137 maxHisto->SetLineColor(1);
2138 minHisto->DrawCopy(
"same");
2139 maxHisto->DrawCopy(
"same");
2142 for(
Int_t j=0;j< (
Int_t)badHistVector.size();j++)
2144 badHistVector[j]->SetLineColor(2);
2145 badHistVector[j]->DrawCopy(
"same");
2148 TLegend *leg =
new TLegend(0.35,0.65,0.75,0.85);
2149 leg->AddEntry(hCellGoodMean[badRun],
"mean of good cells",
"l");
2150 leg->AddEntry(declaredBad,
"Cell in the ''bad'' run",
"l");
2151 leg->AddEntry(maxHisto,
"max and min values",
"l");
2152 leg->SetBorderSize(0);
2153 leg->SetTextSize(0.07);
2158 cCompDiv[(cell-notBadCounter)/totalperCv]->cd(((cell-notBadCounter)%totalperCv)+1);
2164 for(
Int_t j=0;j< (
Int_t)badHistVector.size();j++)
2166 TH1D* minHistoCopy =(
TH1D*)minHisto->Clone(
"minHistoCopy");
2167 TH1D* maxHistoCopy =(
TH1D*)maxHisto->Clone(
"maxHistoCopy");
2168 TH1D* meanHistoCopy=(
TH1D*)hgoodMean->Clone(
"meanHistoCopy");
2169 minHistoCopy ->Divide(badHistVector[j]);
2170 maxHistoCopy ->Divide(badHistVector[j]);
2171 meanHistoCopy->Divide(badHistVector[j]);
2173 SetHisto(maxHistoCopy,Form(
"Energy of cell %i",cellVector.at(cell)),
"max,min,mean / bad cell",0);
2174 maxHistoCopy->GetXaxis()->SetRangeUser(0,3);
2175 maxHistoCopy->DrawCopy(
"hist");
2176 minHistoCopy->DrawCopy(
"same hist");
2177 meanHistoCopy->SetLineColor(kBlue-8);
2178 meanHistoCopy->DrawCopy(
"same hist");
2182 if(badRatio==1)
break;
2186 gPad->SetFrameFillColor(kRed-10);
2187 text->DrawLatexNDC(0.45,0.8,Form(
"#splitline{(%i)Excluded: }{%s}",runTry,(
const char*)failCrit));;
2192 for(
Int_t j = 0 ; j < nRuns ; j++)
2194 badVsCell[0]->SetBinContent(cellVector.at(cell)+1,j+1,0);
2195 badVsCell[1]->SetBinContent(cellVector.at(cell)+1,j+1,0);
2196 badVsCell[2]->SetBinContent(cellVector.at(cell)+1,j+1,0);
2199 if(cell==(
Int_t)cellVector.size()-1)text->SetText(0.45,0.8,
"test");
2205 for(
Int_t can=0;can<nCv;can++)
2207 TString internal_pdfName1=pdfName+
"Low.pdf";
2208 TString internal_pdfName2=pdfName+
"High.pdf";
2209 TString internal_pdfName3=pdfName+
"Ratio.pdf";
2213 internal_pdfName1 +=
"(";
2214 internal_pdfName2 +=
"(";
2215 internal_pdfName3 +=
"(";
2216 cComp[can] ->Print(internal_pdfName1.Data());
2217 cCompDiv[can] ->Print(internal_pdfName3.Data());
2219 else if(can==(nCv-1))
2222 internal_pdfName1 +=
")";
2223 internal_pdfName2 +=
")";
2224 internal_pdfName3 +=
")";
2225 cComp[can] ->Print(internal_pdfName1.Data());
2226 cCompDiv[can] ->Print(internal_pdfName3.Data());
2231 cComp[can] ->Print(internal_pdfName1.Data());
2232 cCompDiv[can] ->Print(internal_pdfName3.Data());
2235 for(
Int_t i=lastGood+1;i<nCv-1;i++)
2237 cout<<
"last good "<<lastGood<<endl;
2238 cout<<
"nCv "<<nCv<<endl;
2239 cout<<
"round "<<i<<endl;
2251 TH2F* cpmpressed =
new TH2F(Form(
"%s_Comp",Histo->GetName()),Form(
"%s_Comp",Histo->GetName()),badCells+2, 0,badCells+2,runIdVec.size(),0,runIdVec.size());
2253 Histo->GetXaxis()->UnZoom();
2254 TH1D *htmpCell = Histo->ProjectionX(TString::Format(
"%s_proj",Histo->GetName()),0,runIdVec.size());
2255 Int_t sumRun=0,newHistoBin=0;
2256 for(
Int_t icell = 0; icell < totalCells ; icell++)
2258 sumRun = htmpCell->GetBinContent(icell+1);
2264 if(newHistoBin>badCells)cout<<
"PROBLEM"<<endl;
2265 for(
Int_t iRun = 0; iRun < (
Int_t)runIdVec.size() ; iRun++)
2267 cpmpressed->Fill(newHistoBin,iRun,Histo->GetBinContent(icell+1,iRun+1));
2274 cpmpressed->GetYaxis()->SetBinLabel(i+1,Form(
"%i",runIdVec.at(i)));
2284 TLine* Zero_line =
new TLine();
2285 Zero_line -> SetY1(y_val);
2286 Zero_line -> SetY2(y_val);
2287 Zero_line -> SetX1(xLow);
2288 Zero_line -> SetX2(xHigh);
2290 Zero_line -> SetLineWidth(2);
2291 Zero_line -> SetLineStyle(9);
2292 Zero_line -> SetLineColor(Line_Col);
2293 Zero_line ->
Draw();
2304 Histo->SetTitle(
"");
2307 Histo->GetYaxis()->SetTitleOffset(1.4);
2308 Histo->GetXaxis()->SetTitleOffset(1.4);
2309 Histo->GetXaxis()->SetLabelSize(0.05);
2310 Histo->GetYaxis()->SetLabelSize(0.05);
2311 Histo->GetXaxis()->SetTitleSize(0.045);
2312 Histo->GetYaxis()->SetTitleSize(0.045);
2317 Histo->GetYaxis()->SetTitleOffset(0.6);
2318 Histo->GetXaxis()->SetTitleOffset(0.8);
2319 Histo->GetYaxis()->SetLabelOffset(0.002);
2322 Histo->GetXaxis()->SetLabelSize(0.025);
2323 Histo->GetYaxis()->SetLabelSize(0.015);
2324 Histo->GetXaxis()->SetTitleSize(0.03);
2325 Histo->GetYaxis()->SetTitleSize(0.04);
2326 Histo->GetYaxis()->SetTickLength(0.02);
2333 Histo->GetXaxis()->SetNdivisions(520);
2338 Histo->GetXaxis()->SetNdivisions(505);
2339 Histo->GetYaxis()->SetNdivisions(505);
2343 Histo->GetXaxis()->SetLabelFont(42);
2344 Histo->GetYaxis()->SetLabelFont(42);
2345 Histo->GetXaxis()->SetTitleFont(42);
2346 Histo->GetYaxis()->SetTitleFont(42);
2347 if(Xtitel!=
"")Histo->GetXaxis()->SetTitle(Xtitel);
2348 if(Ytitel!=
"")Histo->GetYaxis()->SetTitle(Ytitel);
2349 Histo->SetLineColor(1);
2350 Histo->SetMarkerColor(1);
2351 Histo->SetMarkerStyle(20);
2352 Histo->SetMarkerSize(0.5);
2361 Histo->SetTitle(
"");
2364 Histo->GetYaxis()->SetTitleOffset(1.4);
2365 Histo->GetXaxis()->SetTitleOffset(1.4);
2366 Histo->GetXaxis()->SetLabelSize(0.05);
2367 Histo->GetYaxis()->SetLabelSize(0.05);
2368 Histo->GetXaxis()->SetTitleSize(0.045);
2369 Histo->GetYaxis()->SetTitleSize(0.045);
2370 Histo->GetXaxis()->SetNdivisions(505);
2371 Histo->GetYaxis()->SetNdivisions(505);
2376 Histo->GetYaxis()->SetTitleOffset(0.2);
2377 Histo->GetXaxis()->SetTitleOffset(1.0);
2380 Histo->GetXaxis()->SetLabelSize(0.07);
2381 Histo->GetYaxis()->SetLabelSize(0.07);
2382 Histo->GetXaxis()->SetTitleSize(0.08);
2383 Histo->GetYaxis()->SetTitleSize(0.08);
2386 Histo->GetXaxis()->SetNdivisions(520);
2387 Histo->GetYaxis()->SetNdivisions(10);
2390 Histo->GetXaxis()->SetLabelFont(42);
2391 Histo->GetYaxis()->SetLabelFont(42);
2392 Histo->GetXaxis()->SetTitleFont(42);
2393 Histo->GetYaxis()->SetTitleFont(42);
2394 if(Xtitel!=
"")Histo->GetXaxis()->SetTitle(Xtitel);
2395 if(Ytitel!=
"")Histo->GetYaxis()->SetTitle(Ytitel);
2397 Histo->SetLineColor(1);
2398 Histo->SetMarkerColor(1);
2399 Histo->SetMarkerStyle(20);
2400 Histo->SetMarkerSize(0.5);
2409 for(
Int_t i=0; i<(
Int_t)cellVector.size();i++)
2411 if(cell==cellVector.at(i))bad=1;
2418 Int_t NoOfCells=cellVector.size();
2426 for(
Int_t cell=0;cell<NoOfCells;cell++)
2432 c1 =
new TCanvas(Form(
"badcells%i",cell),
"badcells",1000,750);
2433 if(cellVector.size() > 6) c1->Divide(3,3);
2434 else if (cellVector.size() > 3) c1->Divide(3,2);
2435 else c1->Divide(3,1);
2437 TH1 *hCell = hAmpIDMasked->ProjectionX(Form(
"Cell %d",cellVector.at(cell)),cellVector.at(cell)+1,cellVector.at(cell)+1);
2438 TH1 *hCell2 = (
TH1*)hCell->Clone(
"hCell2");
2441 hCell->Divide(goodCellsRbR);
2442 hCell2->Divide(goodCellsMerged);
2444 hCell->SetLineColor(kBlue-8);
2445 hCell2->SetLineColor(kRed-9);
2446 hCell->GetXaxis()->SetTitle(
"E (GeV)");
2447 hCell->GetYaxis()->SetTitle(
"cell/mean of good");
2448 hCell->GetXaxis()->SetRangeUser(0.,10.);
2449 hCell->SetLineWidth(1) ;
2450 hCell->SetTitle(Form(
"Cell No. %d",cellVector.at(cell)));
2451 hCell->Draw(
"hist");
2452 hCell2->DrawCopy(
"same hist");
2458 if(cell%9==8 ||cell == NoOfCells-1)
2460 if(cell == NoOfCells-1)
2463 c1->Print(Form(
"%s)",pdfName.Data()));
2465 else if(firstCanvas==0)
2467 internal_pdfName +=
"(";
2468 c1->Print(internal_pdfName.Data());
2473 c1->Print(internal_pdfName.Data());
void PlotHorLineRange(Double_t y_val, Double_t xLow, Double_t xHigh, Int_t Line_Col)
void Draw(const char *filename, const char *title="", const char *others="ALL", const char *options="DEFAULT", const char *outFlg="ALL", UShort_t rebin=5, Float_t eff=0, const char *base="")
void SetRunNumber(Int_t run)
void PlotLowFractionCells(TString pdfName, std::vector< Int_t > cellVector, TH2F *badVsCell[], Int_t nRuns, TH2F *ampID[], TH1D *hCellGoodMean[])
Bool_t IsItReallyBadRatio(TH1D *minHistoRatio, TH1D *maxHistoRatio, TH1D *meanHistoRatior, TString &crit)
void Plot2DCells(TString Block, Int_t runNo, std::vector< Int_t > cellVectorRbR, std::vector< Int_t > cellVectorMerge)
AliEMCALGeometry * GetEMCALGeometry() const
Bool_t Data(TH1F *h, Double_t *rangefit, Bool_t writefit, Double_t &sgn, Double_t &errsgn, Double_t &bkg, Double_t &errbkg, Double_t &sgnf, Double_t &errsgnf, Double_t &sigmafit, Int_t &status)
Bool_t IsCellMaskedByHand(Int_t cell, std::vector< Int_t > cellVector)
TH2F * CompressHistogram(TH2 *Histo, Int_t totalCells, Int_t badCells, std::vector< Int_t > runIdVec)
void GetBestPeriodSplitting(TString period="LHC15o", Int_t train=771, Int_t Nruns=105, Int_t noOfSplits=4)
const Int_t RainbowColors[]
void SummarizeRunByRun(TString period="LHC15o", TString train="Train_641", TString trigger="AnyINTnoBC", TString listName="runList", Int_t runsUsed=-1)
void CompareTwoBCstrategies(TString period="LHC15n", Int_t trainNo=603, Int_t version=5)
void BuildMaxMinHisto(TH1D *inHisto, TH1D *minHist, TH1D *maxHist)
void SetHisto(TH2 *Histo, TString Xtitel, TString Ytitel, Bool_t longhisto)
Class with utils specific to calorimeter clusters/cells.
void AccessGeometry(AliVEvent *inputEvent)
void CreateCellCompPDF(TH2F *hAmpIDMasked, std::vector< Int_t > cellVector, TH1 *goodCellsMerged, TH1 *goodCellsRbR, TString pdfName)
Int_t GetModuleNumberCellIndexesAbsCaloMap(Int_t absId, Int_t calo, Int_t &icol, Int_t &irow, Int_t &iRCU, Int_t &icolAbs, Int_t &irowAbs) const