Monitor_raw.C/h can build event, but it is not perfered
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vendored
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@ -12,6 +12,7 @@ pxi-time-order
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evt2root
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evt2hist
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ev22txt
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EventBuilder
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*.so
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*.d
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163
Monitor_raw.C
163
Monitor_raw.C
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@ -1,31 +1,31 @@
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#define Monitor_raw_cxx
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#include "Monitor_raw.h"
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#include <TH2.h>
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#include <TH1.h>
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#include <TStyle.h>
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#include <TCanvas.h>
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#include <TMath.h>
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#include <vector>
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#include <TStopwatch.h>
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//############################################ User setting
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int rawEnergyRange[2] = {500, 6000}; // in ch, {min, max}
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int energyRange[3] = {2, 40, 2000}; // in keV, {resol, min, max}
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int energyRange[3] = {1, 40, 2000}; // in keV, {resol, min, max}
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TString e_corr = "correction_e.dat";
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Long64_t maxEvent = -1;
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bool isBuildEventRoot = true; // is true, no histogram
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//############################################ end of user setting
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ULong64_t NumEntries = 0;
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ULong64_t ProcessedEntries = 0;
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Float_t Frac = 0.1; ///Progress bar
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TStopwatch StpWatch;
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#include "Monitor_raw.h"
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vector<vector<double>> eCorr;
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//############################################ histogram declaration
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@ -38,38 +38,49 @@ TH2F * heCalvID;
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void Monitor_raw::Begin(TTree * tree){
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TString option = GetOption();
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NumEntries = tree->GetEntries();
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totnumEntry = tree->GetEntries();
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printf("======================== Creating histograms\n");
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printf( "=========================================================================== \n");
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printf( "========================== Monitor_raw.C/h ================================ \n");
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printf( "====== total Entry : %lld \n", totnumEntry);
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printf( "=========================================================================== \n");
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for( int i = 0 ; i < NCRYSTAL ; i++){
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he[i] = new TH1F (Form("he%02d", i), Form("e%02d", i), rawEnergyRange[1]-rawEnergyRange[0], rawEnergyRange[0], rawEnergyRange[1]);
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heCal[i] = new TH1F (Form("heCal%02d", i), Form("e%02d (Cali.)", i), (energyRange[2]-energyRange[1])/energyRange[0], energyRange[1], energyRange[2]);
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switch (i%4){
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case 0: he[i]->SetLineColor(2);break;
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case 1: he[i]->SetLineColor(kYellow+3);break;
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case 2: he[i]->SetLineColor(kGreen+2);break;
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case 3: he[i]->SetLineColor(4);break;
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}
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switch (i%4){
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case 0: heCal[i]->SetLineColor(2);break;
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case 1: heCal[i]->SetLineColor(kYellow+3);break;
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case 2: heCal[i]->SetLineColor(kGreen+2);break;
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case 3: heCal[i]->SetLineColor(4);break;
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if( isBuildEvent == false && isBuildEventRoot == false) {
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printf("======================== Creating histograms\n");
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for( int i = 0 ; i < NCRYSTAL ; i++){
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he[i] = new TH1F (Form("he%02d", i), Form("e%02d", i), rawEnergyRange[1]-rawEnergyRange[0], rawEnergyRange[0], rawEnergyRange[1]);
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heCal[i] = new TH1F (Form("heCal%02d", i), Form("e%02d (Cali.)", i), (energyRange[2]-energyRange[1])/energyRange[0], energyRange[1], energyRange[2]);
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switch (i%4){
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case 0: he[i]->SetLineColor(2);break;
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case 1: he[i]->SetLineColor(kYellow+3);break;
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case 2: he[i]->SetLineColor(kGreen+2);break;
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case 3: he[i]->SetLineColor(4);break;
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}
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switch (i%4){
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case 0: heCal[i]->SetLineColor(2);break;
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case 1: heCal[i]->SetLineColor(kYellow+3);break;
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case 2: heCal[i]->SetLineColor(kGreen+2);break;
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case 3: heCal[i]->SetLineColor(4);break;
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}
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}
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heCalvID = new TH2F("heCalvID", "ID vs Energy (Cali.); ID; Energy", NCRYSTAL, 0, NCRYSTAL, (energyRange[2]-energyRange[1])/energyRange[0], energyRange[1], energyRange[2]);
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printf("------------------------ end of histograms creation.\n");
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}
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heCalvID = new TH2F("heCalvID", "ID vs Energy (Cali.); ID; Energy", NCRYSTAL, 0, NCRYSTAL, (energyRange[2]-energyRange[1])/energyRange[0], energyRange[1], energyRange[2]);
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printf("======================== end of histograms creation.\n");
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printf("======================== Load parameters.\n");
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eCorr = LoadCorrectionParameters(e_corr);
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StpWatch.Start();
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printf("======================== Start processing....\n");
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time0 = 0;
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timeDiff = 0;
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ClearTreeData();
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}
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@ -79,11 +90,11 @@ Bool_t Monitor_raw::Process(Long64_t entry){
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ProcessedEntries++;
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/*********** Progress Bar ******************************************/
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if (ProcessedEntries>NumEntries*Frac-1) {
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TString msg; msg.Form("%llu", NumEntries/1000);
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if (ProcessedEntries>totnumEntry*Frac-1) {
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TString msg; msg.Form("%llu", totnumEntry/1000);
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int len = msg.Sizeof();
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printf(" %3.0f%% (%*llu/%llu k) processed in %6.1f sec | expect %6.1f sec\n",
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Frac*100, len, ProcessedEntries/1000,NumEntries/1000,StpWatch.RealTime(), StpWatch.RealTime()/Frac);
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Frac*100, len, ProcessedEntries/1000,totnumEntry/1000,StpWatch.RealTime(), StpWatch.RealTime()/Frac);
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StpWatch.Start(kFALSE);
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Frac+=0.1;
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}
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@ -93,61 +104,73 @@ Bool_t Monitor_raw::Process(Long64_t entry){
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Terminate();
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}
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if( isBuildEventRoot || isBuildEvent ) entry = index[entry];
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b_ID->GetEntry(entry);
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b_energy->GetEntry(entry);
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b_timestamp->GetEntry(entry);
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b_energy_timestamp->GetEntry(entry);
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int detID = mapping[ID];
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if ( isBuildEventRoot || isBuildEvent ) {
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BuildEvent();
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}else{
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if( detID < 100 ){
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he[detID]->Fill(energy);
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if( 0 <= detID && detID < 100 ){
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he[detID]->Fill(e);
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///double eCal = ApplyCorrection(eCorr, detID, e); //slow, why?
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double eCal = eCorr[detID][0] + eCorr[detID][1]*energy;
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heCal[detID]->Fill(eCal);
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//double eCal = ApplyCorrection(eCorr, detID, e);
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double eCal = eCorr[detID][0]+eCorr[detID][1]*e;
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heCal[detID]->Fill(eCal);
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heCalvID->Fill(detID, eCal);
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heCalvID->Fill(detID, eCal);
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}
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}
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return kTRUE;
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}
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//############################################ TERMINATE
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void Monitor_raw::Terminate(){
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printf("============================== finishing.\n");
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printf("============================== finished.\n");
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gROOT->cd();
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int nCrystalPerClover = 4;
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int nClover = NCRYSTAL / nCrystalPerClover;
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if ( isBuildEventRoot || isBuildEvent ) {
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saveFile->cd();
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newtree->Write();
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saveFile->Close();
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}else{
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TCanvas * cc = new TCanvas("cc", "cc", 2000, 2000);
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if( cc->GetShowEventStatus() == 0 ) cc->ToggleEventStatus();
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cc->Divide(1, 9, 0);
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int nCrystalPerClover = 4;
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int nClover = NCRYSTAL / nCrystalPerClover;
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for (Int_t i = 0; i < nClover; i++) {
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int canvasID = i + 1;
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cc->cd(canvasID);
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cc->cd(canvasID)->SetGrid();
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cc->cd(canvasID)->SetTickx(2);
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cc->cd(canvasID)->SetTicky(2);
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cc->cd(canvasID)->SetBottomMargin(0.06);
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cc->cd(canvasID)->SetLogy();
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TCanvas * cc = new TCanvas("cc", "cc", 2000, 2000);
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if( cc->GetShowEventStatus() == 0 ) cc->ToggleEventStatus();
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cc->Divide(1, 9, 0);
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for( Int_t j = 0; j < nCrystalPerClover; j++){
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int hID = nCrystalPerClover*i+ j ;
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heCal[hID]->Draw("same");
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//he[hID]->Draw("same");
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for (Int_t i = 0; i < nClover; i++) {
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int canvasID = i + 1;
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cc->cd(canvasID);
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cc->cd(canvasID)->SetGrid();
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cc->cd(canvasID)->SetTickx(2);
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cc->cd(canvasID)->SetTicky(2);
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cc->cd(canvasID)->SetBottomMargin(0.06);
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cc->cd(canvasID)->SetLogy();
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for( Int_t j = 0; j < nCrystalPerClover; j++){
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int hID = nCrystalPerClover*i+ j ;
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heCal[hID]->Draw("same");
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//he[hID]->Draw("same");
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}
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}
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}
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cc->SetCrosshair(1);
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cc->SetCrosshair(1);
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TCanvas * c1 = new TCanvas("c1", "c1", 1000, 1000);
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if( c1->GetShowEventStatus() == 0 ) c1->ToggleEventStatus();
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c1->SetLogz();
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c1->SetGridx();
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heCalvID->SetNdivisions(-409, "X");
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heCalvID->Draw("colz");
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TCanvas * c1 = new TCanvas("c1", "c1", 1000, 1000);
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if( c1->GetShowEventStatus() == 0 ) c1->ToggleEventStatus();
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c1->SetLogz();
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c1->SetGridx();
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heCalvID->SetNdivisions(-409, "X");
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heCalvID->Draw("colz");
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}
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}
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235
Monitor_raw.h
235
Monitor_raw.h
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@ -3,8 +3,12 @@
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#include <TROOT.h>
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#include <TChain.h>
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#include <TTree.h>
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#include <TFile.h>
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#include <TMacro.h>
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#include <TSelector.h>
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#include <TStopwatch.h>
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#include <TTreeIndex.h>
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#include "mapping.h"
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#include "armory/AnalysisLibrary.h"
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@ -19,17 +23,20 @@ public :
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// Declaration of leaf types
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Long64_t evID;
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UShort_t ID;
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UShort_t e;
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ULong64_t t;
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UShort_t detID;
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UShort_t energy;
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ULong64_t energy_t;
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// List of branches
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TBranch *b_data_ID; //!
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TBranch *b_ID; //!
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TBranch *b_energy; //!
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TBranch *b_timestamp; //!
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TBranch *b_energy_timestamp; //!
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Monitor_raw(TTree * /*tree*/ =0) : fChain(0) { }
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Monitor_raw(TTree * /*tree*/ =0) : fChain(0) { isBuildEvent = false;
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timeWindow = 100;
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saveFileName = "test.root";
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}
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virtual ~Monitor_raw() { }
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virtual Int_t Version() const { return 2; }
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virtual void Begin(TTree *tree);
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@ -45,7 +52,43 @@ public :
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virtual void SlaveTerminate();
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virtual void Terminate();
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void SetBuildEvent(bool buildOption = false){ isBuildEvent = buildOption;}
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ClassDef(Monitor_raw,0);
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//=================== progress
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ULong64_t ProcessedEntries = 0;
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Float_t Frac = 0.1; ///Progress bar
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TStopwatch StpWatch;
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//=================== correction parameters
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vector<vector<double>> eCorr;
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//=================== output tree;
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bool isBuildEvent;
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int timeWindow;
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ULong64_t time0; //time-0 for each event
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int timeDiff;
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Long64_t * index; //!
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TFile * saveFile; //!
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TTree * newtree; //!
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TString saveFileName;
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Long64_t totnumEntry; /// of original root
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//tree
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void ClearTreeData();
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void BuildEvent();
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Int_t eventID;
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double e[NCRYSTAL];
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ULong64_t e_t[NCRYSTAL];
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double bgo[NBGO];
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ULong64_t bgo_t[NBGO];
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Short_t other[NOTHER];
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Short_t multi;
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};
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#endif
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@ -55,15 +98,187 @@ void Monitor_raw::Init(TTree *tree)
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{
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// Set branch addresses and branch pointers
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if (!tree) return;
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fChain = tree;
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fChain = (TChain *) tree;
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fChain->SetMakeClass(1);
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fChain->SetBranchAddress("evID", &evID, &b_data_ID);
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fChain->SetBranchAddress("id", &ID, &b_ID);
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fChain->SetBranchAddress("e", &e, &b_energy);
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fChain->SetBranchAddress("t", &t, &b_timestamp);
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fChain->SetBranchAddress("evID", &evID, &b_data_ID);
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fChain->SetBranchAddress("id", &detID, &b_ID);
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fChain->SetBranchAddress("e", &energy, &b_energy);
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fChain->SetBranchAddress("e_t", &energy_t, &b_energy_timestamp);
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if( isBuildEventRoot || isBuildEvent){
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printf("======================== Buidling Index using the timestamp\n");
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tree->BuildIndex("e_t");
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TTreeIndex *in = (TTreeIndex*) tree->GetTreeIndex();
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index = in->GetIndex();
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//for(int i = 0; i < 100; i++){
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// printf(" %3d | %lld \n", i, index[i]);
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//}
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TString option = GetOption();
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//printf("======================== Formation of output file name\n");
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//int numFile = fChain->GetListOfFiles()->GetLast() + 1; //need input of TChain
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//
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//printf(".......... number of files : %d \n", numFile);
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//
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//if( numFile > 0 ) {
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// int oldRunNum = -100;
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// bool contFlag = false; // is runNumber continue;
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// for( int i = 0; i < numFile ; i++){
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// TString name = ((TChain *) fChain)->GetListOfFiles()->At(i)->GetTitle();
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// int found = name.Last('/');
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// name.Remove(0, found + 1 ); // this should give "XXX_run0XX.root"
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// TString prefix = name;
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// found = name.Last('.');
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// name.Remove(found); // this should give "XXX_run0XX"
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// found = name.Last('_');
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// int runNum = name.Remove(0, found+4).Atoi(); // this should give the 3 digit run number
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//
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// if( i == 0 ) {
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// found = prefix.First("_");
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// prefix.Remove(found);
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// saveFileName = prefix + "_run";
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// }
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//
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// if( runNum == oldRunNum + 1 ){
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// int kk = saveFileName.Sizeof();
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// if( contFlag == false ){
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// saveFileName.Remove(kk-2); //remove the "-"
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// saveFileName += "-";
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// }else{
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// saveFileName.Remove(kk-5); //remove the runNum and "-"
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// }
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// contFlag = true;
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// }
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// if( runNum > oldRunNum + 1) contFlag = false;
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//
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// saveFileName += Form("%03d_", runNum);
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// oldRunNum = runNum;
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// }
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// int kk = saveFileName.Sizeof();
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// saveFileName.Remove(kk-2); // remove the last "-"
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// saveFileName += ".root";
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//}else{
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// gROOT->ProcessLine(".q");
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//}
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if( option != "" ) saveFileName = option;
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printf("save file name : %s \n", saveFileName.Data());
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printf("---------------------------------------------\n");
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//TODO;
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saveFile = new TFile(saveFileName, "recreate");
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saveFile->cd();
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newtree = new TTree("tree", "tree");
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printf("======================== Create output tree\n");
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newtree->Branch("evID", &eventID, "event_ID/l");
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newtree->Branch("e", e, Form("e[%d]/D", NCRYSTAL));
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newtree->Branch("e_t", e_t, Form("e_timestamp[%d]/l", NCRYSTAL));
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//newtree->Branch("p", pileup, Form("pile_up_flag[%d]/s", NCRYSTAL));
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//newtree->Branch("hit", hit, Form("hit[%d]/s", NCRYSTAL));
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newtree->Branch("bgo", bgo, Form("BGO_e[%d]/D", NBGO));
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newtree->Branch("bgo_t", bgo_t, Form("BGO_timestamp[%d]/l", NBGO));
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newtree->Branch("other", other, Form("other_e[%d]/D", NOTHER));
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newtree->Branch("multi", &multi, "multiplicity_crystal/I");
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if( eCorr.size() > 0 ) {
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TMacro energyCorr(e_corr);
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energyCorr.Write("energyCorr");
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}
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}
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printf("======================== Start processing....\n");
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StpWatch.Start();
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eventID = 0;
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}
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void Monitor_raw::ClearTreeData(){
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for( int i = 0; i < NCRYSTAL; i++){
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e[i] = TMath::QuietNaN();
|
||||
e_t[i] = 0;
|
||||
//pileup[i] = 0;
|
||||
//hit[i] = 0;
|
||||
}
|
||||
for( int i = 0; i < NBGO; i++) {
|
||||
bgo[i] = TMath::QuietNaN();
|
||||
bgo_t[i] = 0 ;
|
||||
}
|
||||
for( int i = 0; i < NOTHER; i++) {
|
||||
other[i] = TMath::QuietNaN();
|
||||
}
|
||||
multi = 0;
|
||||
}
|
||||
|
||||
void Monitor_raw::BuildEvent(){
|
||||
|
||||
if( time0 == 0) time0 = energy_t;
|
||||
|
||||
timeDiff = (int) (energy_t - time0);
|
||||
|
||||
if( timeDiff < timeWindow ) {
|
||||
|
||||
if ( detID < NCRYSTAL ){
|
||||
e[detID] = energy;
|
||||
e_t[detID] = energy_t;
|
||||
multi++;
|
||||
}
|
||||
if ( 100 <= detID && detID < 100 + NBGO ){
|
||||
bgo[detID-100] = energy;
|
||||
bgo_t[detID-100] = energy_t;
|
||||
}
|
||||
if ( 200 <= detID && detID < 200 + NOTHER){
|
||||
other[detID-200] = energy;
|
||||
}
|
||||
|
||||
//printf("%d | %3d %6d %10llu, %3d\n", multi, detID, energy, energy_t, timeDiff);
|
||||
|
||||
}else{
|
||||
//---- end of event
|
||||
eventID ++;
|
||||
|
||||
saveFile->cd();
|
||||
newtree->Fill();
|
||||
|
||||
ClearTreeData();
|
||||
|
||||
/// fill 1st data of an event
|
||||
time0 = energy_t;
|
||||
timeDiff = 0;
|
||||
|
||||
if ( detID < NCRYSTAL ){
|
||||
e[detID] = energy;
|
||||
e_t[detID] = energy_t;
|
||||
multi = 1;
|
||||
}
|
||||
if ( 100 <= detID && detID < 100 + NBGO ){
|
||||
bgo[detID-100] = energy;
|
||||
bgo_t[detID-100] = energy_t;
|
||||
}
|
||||
if ( 200 <= detID && detID < 200 + NOTHER){
|
||||
other[detID-200] = energy;
|
||||
}
|
||||
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
Bool_t Monitor_raw::Notify()
|
||||
{
|
||||
return kTRUE;
|
||||
|
|
Loading…
Reference in New Issue
Block a user