]> git.uio.no Git - u/mrichter/AliRoot.git/blobdiff - ITS/AliITSQADataMakerRec.cxx
modifications to satisfy the coding conventions
[u/mrichter/AliRoot.git] / ITS / AliITSQADataMakerRec.cxx
index 13b271f9024cedd74efba0003f9377e2c98809be..3fc879547ef9a1161d455e7acfb63979fdec1602 100644 (file)
@@ -24,6 +24,7 @@
 //  INFN Torino
 
 // --- ROOT system ---
+#include <TH2.h>
 #include <TTree.h>
 // --- Standard library ---
 
 #include "AliQAChecker.h"
 #include "AliITSQAChecker.h"
 #include "AliRawReader.h"
+#include "AliESDEvent.h"
+#include "AliESDtrack.h"
+#include "AliESDVertex.h"
+#include "AliMultiplicity.h"
 
 ClassImp(AliITSQADataMakerRec)
 
@@ -44,6 +49,7 @@ ClassImp(AliITSQADataMakerRec)
 AliITSQADataMakerRec::AliITSQADataMakerRec(Bool_t kMode, Short_t subDet, Short_t ldc) :
 AliQADataMakerRec(AliQA::GetDetName(AliQA::kITS), "ITS Quality Assurance Data Maker"),
 fkOnline(kMode),
+fHLTMode(0),
 fSubDetector(subDet),
 fLDC(ldc),
 fSPDDataMaker(NULL),
@@ -63,6 +69,7 @@ fSSDDataMaker(NULL)
   if(fSubDetector == 0 || fSubDetector == 2) {
        AliDebug(1,"AliITSQADM::Create SDD DataMakerRec\n");
        fSDDDataMaker = new AliITSQASDDDataMakerRec(this,fkOnline);
+       if(fkOnline){SetHLTMode(fSDDDataMaker->GetHLTMode()); }
   }
   if(fSubDetector == 0 || fSubDetector == 3) {
        AliDebug(1,"AliITSQADM::Create SSD DataMakerRec\n");
@@ -82,6 +89,7 @@ AliITSQADataMakerRec::~AliITSQADataMakerRec(){
 AliITSQADataMakerRec::AliITSQADataMakerRec(const AliITSQADataMakerRec& qadm) :
 AliQADataMakerRec(),
 fkOnline(qadm.fkOnline),
+fHLTMode(qadm.fHLTMode),
 fSubDetector(qadm.fSubDetector),
 fLDC(qadm.fLDC),
 fSPDDataMaker(NULL),
@@ -124,7 +132,7 @@ void AliITSQADataMakerRec::EndOfDetectorCycle(AliQA::TASKINDEX_t task, TObjArray
   AliQAChecker *qac = AliQAChecker::Instance();
   AliITSQAChecker *qacb = (AliITSQAChecker *) qac->GetDetQAChecker(0);
   if(fSubDetector == 0 ){
-    qacb->SetTaskOffset(fSPDDataMaker->GetOffset(), fSDDDataMaker->GetOffset(), fSSDDataMaker->GetOffset()); //Setting the offset for the QAChecker list
+    qacb->SetTaskOffset(fSPDDataMaker->GetOffset(), fSDDDataMaker->GetOffset(task), fSSDDataMaker->GetOffset()); //Setting the offset for the QAChecker list
   }
   qac->Run( AliQA::kITS , task, list);  //temporary skipping the checking
 }
@@ -190,3 +198,248 @@ void AliITSQADataMakerRec::MakeRecPoints(TTree * clustersTree)
 }
 
 
+//____________________________________________________________________________ 
+void AliITSQADataMakerRec::InitESDs()
+{
+  // Create ESDs histograms in ESDs subdir
+
+  Bool_t expertHistogram = kTRUE;
+
+  TH1F *hESDClustersMI = 
+    new TH1F("hESDClustersMI", "N ITS clusters per track (MI); N clusters; Counts",
+            7, -0.5, 6.5);
+  hESDClustersMI->Sumw2();
+  hESDClustersMI->SetMinimum(0);
+  Add2ESDsList(hESDClustersMI, 0);
+
+  TH1F *hESDClusterMapMI =
+    new TH1F("hESDClusterMapMI", "N tracks with point Layer (MI); Layer; N tracks",
+            6, -0.5, 5.5);
+  hESDClusterMapMI->Sumw2();
+  hESDClusterMapMI->SetMinimum(0);
+  Add2ESDsList(hESDClusterMapMI, 1, expertHistogram);
+
+  TH1F *hESDClustersSA = 
+    new TH1F("hESDClustersSA", "N ITS clusters per track (SA); N clusters; Counts",
+            7, -0.5, 6.5);
+  hESDClustersSA->Sumw2();
+  hESDClustersSA->SetMinimum(0);
+  Add2ESDsList(hESDClustersSA, 2);
+
+  TH1F *hESDClusterMapSA =
+    new TH1F("hESDClusterMapSA", "N tracks with point Layer (SA); Layer; N tracks",
+            6, -0.5, 5.5);
+  hESDClusterMapSA->Sumw2();
+  hESDClusterMapSA->SetMinimum(0);
+  Add2ESDsList(hESDClusterMapSA, 3, expertHistogram);
+
+  TH1F *hSPDVertexX = 
+    new TH1F("hSPDVertexX","SPD Vertex x; x [cm]; N events",
+            10000,-2,2);
+  hSPDVertexX->Sumw2();
+  Add2ESDsList(hSPDVertexX, 4);
+
+  TH1F *hSPDVertexY = 
+    new TH1F("hSPDVertexY","SPD Vertex y; y [cm]; N events",
+            10000,-2,2);
+  hSPDVertexY->Sumw2();
+  Add2ESDsList(hSPDVertexY, 5);
+
+  TH1F *hSPDVertexZ = 
+    new TH1F("hSPDVertexZ","SPD Vertex Z; z [cm]; N events",
+            10000,-20,20);
+  hSPDVertexZ->Sumw2();
+  Add2ESDsList(hSPDVertexZ, 6);
+
+  TH1F *hSPDVertexContrOverMult =
+    new TH1F("hSPDVertexContrOverMult","SPD Vertex: contributors / multiplicity; N contributors / SPD multiplicity; N events",
+            100,-4,20);
+  hSPDVertexContrOverMult->Sumw2();
+  Add2ESDsList(hSPDVertexContrOverMult, 7, expertHistogram);
+
+  TH1F *hTrkVertexX = 
+    new TH1F("hTrkVertexX","ITS+TPC Trk Vertex x; x [cm]; N events",
+            10000,-2,2);
+  hTrkVertexX->Sumw2();
+  Add2ESDsList(hTrkVertexX, 8, expertHistogram);
+
+  TH1F *hTrkVertexY = 
+    new TH1F("hTrkVertexY","ITS+TPC Trk Vertex y; y [cm]; N events",
+            10000,-2,2);
+  hTrkVertexY->Sumw2();
+  Add2ESDsList(hTrkVertexY, 9, expertHistogram);
+
+  TH1F *hTrkVertexZ = 
+    new TH1F("hTrkVertexZ","ITS+TPC Trk Vertex Z; z [cm]; N events",
+            10000,-20,20);
+  hTrkVertexZ->Sumw2();
+  Add2ESDsList(hTrkVertexZ, 10, expertHistogram);
+
+  TH1F *hTrkVertexContrOverITSrefit5 =
+    new TH1F("hTrkVertexContrOverITSrefit5","ITS+TPC Trk Vertex: contributors / tracks; N contributors / N trks kITSrefit with 5 or 6 clusters; N events",
+            100,-4,2);
+  hTrkVertexContrOverITSrefit5->Sumw2();
+  Add2ESDsList(hTrkVertexContrOverITSrefit5, 11, expertHistogram);
+
+  TH1F *hSPDTrkVertexDeltaX =
+    new TH1F("hSPDTrkVertexDeltaX","Comparison of SPD and Trk vertices: x; xSPD-xTrk [cm]; N events",
+            1000,-1,1);
+  hSPDTrkVertexDeltaX->Sumw2();
+  Add2ESDsList(hSPDTrkVertexDeltaX, 12, expertHistogram);
+    
+  TH1F *hSPDTrkVertexDeltaY =
+    new TH1F("hSPDTrkVertexDeltaY","Comparison of SPD and Trk vertices: y; ySPD-yTrk [cm]; N events",
+            1000,-1,1);
+  hSPDTrkVertexDeltaY->Sumw2();
+  Add2ESDsList(hSPDTrkVertexDeltaY, 13, expertHistogram);
+    
+  TH1F *hSPDTrkVertexDeltaZ =
+    new TH1F("hSPDTrkVertexDeltaZ","Comparison of SPD and Trk vertices: z; zSPD-zTrk [cm]; N events",
+            1000,-1,1);
+  hSPDTrkVertexDeltaZ->Sumw2();
+  Add2ESDsList(hSPDTrkVertexDeltaZ, 14);
+    
+  // SPD Tracklets
+
+  TH1F* hSPDTracklets = 
+    new TH1F("hSPDTracklets","N SPD Tracklets; N tracklets; Counts",300,0.,300.);
+  hSPDTracklets->Sumw2();
+  Add2ESDsList(hSPDTracklets, 15); 
+
+  TH2F* hSPDTrackletsvsFiredChips0 = 
+    new TH2F("hSPDTrackletsvsFiredChips0","N SPD Tracklets vs N FiredChips Layer0",
+              300,0.,300.,300,0.,300.);
+  hSPDTrackletsvsFiredChips0->GetXaxis()->SetTitle("N SPD Tracklets"); 
+  hSPDTrackletsvsFiredChips0->GetYaxis()->SetTitle("N FiredChips Layer0"); 
+  hSPDTrackletsvsFiredChips0->Sumw2();
+  Add2ESDsList(hSPDTrackletsvsFiredChips0, 16, expertHistogram ); 
+
+  TH2F* hSPDTrackletsvsFiredChips1 = 
+    new TH2F("hSPDTrackletsvsFiredChips1","N SPD Tracklets vs N FiredChips Layer1",
+              300,0.,300.,300,0.,300.);
+  hSPDTrackletsvsFiredChips1->GetXaxis()->SetTitle("N SPD Tracklets"); 
+  hSPDTrackletsvsFiredChips1->GetYaxis()->SetTitle("N FiredChips Layer1"); 
+  hSPDTrackletsvsFiredChips1->Sumw2();
+  Add2ESDsList(hSPDTrackletsvsFiredChips1, 17, expertHistogram); 
+    
+  TH1F* hSPDTrackletsDePhi = 
+    new TH1F("hSPDTrackletsDePhi","DeltaPhi SPD Tracklets; DeltaPhi [rad]; N events",200,-0.2,0.2);
+  hSPDTrackletsDePhi->Sumw2();
+  Add2ESDsList(hSPDTrackletsDePhi, 18); 
+    
+  TH1F* hSPDTrackletsPhi = 
+    new TH1F("hSPDTrackletsPhi","Phi SPD Tracklets; Phi [rad]; N events",1000,0.,2*TMath::Pi());
+  hSPDTrackletsPhi->Sumw2();
+  Add2ESDsList(hSPDTrackletsPhi, 19); 
+    
+  TH1F* hSPDTrackletsTheta = 
+    new TH1F("hSPDTrackletsTheta","Theta SPD Tracklets; Theta [rad]; N events",500,0.,TMath::Pi());
+  hSPDTrackletsTheta->Sumw2();
+  Add2ESDsList(hSPDTrackletsTheta, 20); 
+
+  // map of layers skipped by tracking (set in AliITSRecoParam)
+  TH1F *hESDSkippedLayers = 
+    new TH1F("hESDSkippedLayers", "Map of layers skipped by tracking; Layer; Skipped",
+            6, -0.5, 5.5);
+  hESDSkippedLayers->Sumw2();
+  hESDSkippedLayers->SetMinimum(0);
+  Add2ESDsList(hESDSkippedLayers, 21, expertHistogram);
+
+
+  return;
+}
+
+//____________________________________________________________________________
+void AliITSQADataMakerRec::MakeESDs(AliESDEvent *esd)
+{
+  // Make QA data from ESDs
+  
+  const Int_t nESDTracks = esd->GetNumberOfTracks();
+  Int_t nITSrefit5 = 0; 
+
+  Int_t idet,status;
+  Float_t xloc,zloc;
+
+  // loop on tracks
+  for(Int_t i = 0; i < nESDTracks; i++) {
+    
+    AliESDtrack *track = esd->GetTrack(i);
+    
+    Int_t nclsITS = track->GetNcls(0);
+
+    Bool_t itsrefit=kFALSE,tpcin=kFALSE;
+    if ((track->GetStatus() & AliESDtrack::kITSrefit)) itsrefit=kTRUE;
+    if ((track->GetStatus() & AliESDtrack::kTPCin)) tpcin=kTRUE;     
+    if(nclsITS>=5 && itsrefit) nITSrefit5++;
+
+    if(tpcin) {
+      GetESDsData(0)->Fill(nclsITS);
+    } else {
+      GetESDsData(2)->Fill(nclsITS);
+    }
+
+    for(Int_t layer=0; layer<6; layer++) {
+
+      if(TESTBIT(track->GetITSClusterMap(),layer)) {
+       if(tpcin) {
+         GetESDsData(1)->Fill(layer);
+       } else {
+         GetESDsData(3)->Fill(layer);
+       }
+      }
+      track->GetITSModuleIndexInfo(layer,idet,status,xloc,zloc);
+      if(status==3) GetESDsData(21)->SetBinContent(layer,1);
+    }     
+
+  } // end loop on tracks
+
+  // vertices
+  const AliESDVertex *vtxSPD = esd->GetPrimaryVertexSPD();
+  const AliESDVertex *vtxTrk = esd->GetPrimaryVertex();
+
+  Int_t mult = ((AliMultiplicity*)(esd->GetMultiplicity()))->GetNumberOfTracklets();
+  if(mult>0)
+    GetESDsData(7)->Fill((Float_t)(vtxSPD->GetNContributors())/(Float_t)mult);
+
+  if(nITSrefit5>0)
+    GetESDsData(11)->Fill((Float_t)(vtxTrk->GetNIndices())/(Float_t)nITSrefit5);
+
+  if(vtxSPD->GetNContributors()>0) {
+    GetESDsData(4)->Fill(vtxSPD->GetXv());
+    GetESDsData(5)->Fill(vtxSPD->GetYv());
+    GetESDsData(6)->Fill(vtxSPD->GetZv());
+  }
+
+  if(vtxTrk->GetNContributors()>0) {
+    GetESDsData(8)->Fill(vtxTrk->GetXv());
+    GetESDsData(9)->Fill(vtxTrk->GetYv());
+    GetESDsData(10)->Fill(vtxTrk->GetZv());
+  }
+
+  if(vtxSPD->GetNContributors()>0 && 
+     vtxTrk->GetNContributors()>0) {
+    GetESDsData(12)->Fill(vtxSPD->GetXv()-vtxTrk->GetXv());
+    GetESDsData(13)->Fill(vtxSPD->GetYv()-vtxTrk->GetYv());
+    GetESDsData(14)->Fill(vtxSPD->GetZv()-vtxTrk->GetZv());
+  }
+
+  // SPD Tracklets
+  GetESDsData(15)->Fill(mult);
+
+  Short_t nFiredChips0 = ((AliMultiplicity*)(esd->GetMultiplicity()))->GetNumberOfFiredChips(0);
+  Short_t nFiredChips1 = ((AliMultiplicity*)(esd->GetMultiplicity()))->GetNumberOfFiredChips(1);
+  GetESDsData(16)->Fill(nFiredChips0,mult);
+  GetESDsData(17)->Fill(nFiredChips1,mult);
+
+  // Loop over tracklets
+  for (Int_t itr=0; itr<mult; ++itr) {
+    Float_t dePhiTr = ((AliMultiplicity*)(esd->GetMultiplicity()))->GetDeltaPhi(itr);
+    Float_t phiTr   = ((AliMultiplicity*)(esd->GetMultiplicity()))->GetPhi(itr);
+    Float_t thetaTr = ((AliMultiplicity*)(esd->GetMultiplicity()))->GetTheta(itr);
+    GetESDsData(18)->Fill(dePhiTr);
+    GetESDsData(19)->Fill(phiTr);
+    GetESDsData(20)->Fill(thetaTr);
+  } // end loop on tracklets
+
+  return;
+}