#include <Riostream.h>
#include <TSpectrum.h>
#include <TProfile.h>
-
+#include <TF1.h>
ClassImp(AliT0CalibWalk)
{
//
}
-//________________________________________________________________
-void AliT0CalibWalk::SetWalk(Int_t ipmt)
-{
- //read QTC walk graph from external file
-
- Int_t mv, ps;
- Int_t x[70000], y[70000], index[70000];
- Float_t time[10000],amplitude[10000];
- string buffer;
- Bool_t down=false;
-
- const char * filename = gSystem->ExpandPathName("$ALICE_ROOT/T0/data/CFD-Amp.txt");
- ifstream inFile(filename);
- if(!inFile) AliError(Form("Cannot open file %s !",filename));
-
- Int_t i=0;
- while(getline(inFile,buffer)){
- inFile >> ps >> mv;
-
- x[i]=ps; y[i]=mv;
- i++;
- }
- inFile.close();
- cout<<" number of data "<<i<<endl;
-
- TMath::Sort(i, y, index,down);
- Int_t amp=0, iin=0, isum=0, sum=0;
- Int_t ind=0;
- for (Int_t ii=0; ii<i; ii++)
- {
- ind=index[ii];
- if(y[ind] == amp)
- {
- sum +=x[ind];
- iin++;
- }
- else
- {
- if(iin>0)
- time[isum] = Float_t (sum/(iin));
- else
- time[isum] =Float_t (x[ind]);
- amplitude[isum] = Float_t (amp);
- amp=y[ind];
- iin=0;
- isum++;
- sum=0;
- }
- }
-
- inFile.close();
-
- TGraph* gr = new TGraph(isum, amplitude, time);
- fWalk.AddAtAndExpand(gr,ipmt);
-
- //should be change to real
- Double_t xq[10] = { 1220, 1370, 1542, 1697, 1860, 2023,2171,2331,2495,2684};
- Double_t yq[10] = {1,2,3,4,5,6,7,8,9,10};
- TGraph* gr1 = new TGraph(10, xq, yq);
- fQTC.AddAtAndExpand(gr1,ipmt);
-}
+//________________________________________________________________
-//________________________________________________________________
-
-void AliT0CalibWalk::SetAmpLEDRec(Int_t ipmt)
-{
- // read LED walk from external file
- Float_t mv, ps;
- Float_t x[100], y[100];
- string buffer;
-
- const char * filename = gSystem->ExpandPathName("$ALICE_ROOT/T0/data/CFD-LED.txt");
- ifstream inFile(filename);
- if(!inFile) {AliError(Form("Cannot open file %s !",filename));}
-
- inFile >> mv>>ps;
- Int_t i=0;
-
- while(getline(inFile,buffer)){
- x[i]=mv; y[i]=ps;
- inFile >> mv >> ps;
- i++;
- }
- inFile.close();
- Float_t y1[100], x1[100];
- for (Int_t ir=0; ir<i; ir++){
- y1[ir]=y[i-ir]; x1[ir]=x[i-ir];}
- TGraph* gr = new TGraph(i,y1,x1);
- fAmpLEDRec.AddAtAndExpand(gr,ipmt);
- //should be change to real
- Double_t xq[10] = { 411, 412,413,415,417,419,422,428,437,452};
- Double_t yq[10] = {1,2,3,4,5,6,7,8,9,10};
- TGraph* gr1 = new TGraph(10, xq, yq);
- fAmpLED.AddAtAndExpand(gr1,ipmt);
-
-}
-
-//________________________________________________________________
-
-void AliT0CalibWalk::MakeWalkCorrGraph(const char *laserFile)
+Bool_t AliT0CalibWalk::MakeWalkCorrGraph(const char *laserFile)
{
//make walk corerction for preprocessor
+ Int_t npeaks = 20;
+ Int_t sigma=3.;
+ Bool_t down=false;
+ Int_t index[20];
+ Bool_t ok=true;
+ Float_t mips[20];
+ Int_t nfound=0;
gFile = TFile::Open(laserFile);
if(!gFile) {
}
else
{
- gFile->ls();
- Float_t x1[10], y1[10];
- Float_t x2[10], y2[10];
+ // gFile->ls();
+ TH1F* hAmp = (TH1F*) gFile->Get("hAmpLaser");
+ Int_t nmips=0;
+ for (Int_t ibin=0; ibin<1000; ibin++) {
+ Float_t bincont = hAmp->GetBinContent(ibin);
+ if(bincont>0){
+ mips[nmips] = hAmp->GetXaxis()->GetBinCenter(ibin);
+ cout<<ibin<<" bincont "<<bincont<<" amp "<< mips[nmips]<<endl;
+ nmips++;
+ }
+ }
- Float_t xx1[10],yy1[10], xx[10];
- for (Int_t ii=0; ii<10; ii++)
- { x1[ii]=0; y1[ii]=0; x2[ii]=0; y2[ii]=0; }
+ if (nmips<15) ok=false;
+
+ Float_t x1[50], y1[50];
+ Float_t x2[50], xx2[50],y2[50];
+ Float_t xx1[50],yy1[50], xx[50];
+ Float_t cfd0[24];
+ Int_t startim = 0;
- TH2F* hCFDvsQTC[24][10]; TH2F* hCFDvsLED[24][10];
+ for (Int_t ii=0; ii<nmips; ii++)
+ x1[ii] = y1[ii] = x2[ii] = y2[ii] = 0;
for (Int_t i=0; i<24; i++)
{
- for (Int_t im=0; im<10; im++)
- {
+ for (Int_t im=startim; im<nmips; im++)
+ {
+ TString cfd = Form("hCFD%i_%i",i+1,im+1);
+ TString qtc = Form("hQTC%i_%i",i+1,im+1);
+ TString led = Form("hLED%i_%i",i+1,im+1);
- TString qtc = Form("CFDvsQTC%i_%i",i+1,im+1);
- TString led = Form("CFDvsLED%i_%i",i+1,im+1);
- cout<<qtc<<" "<<led<<endl;
- hCFDvsQTC[i][im] = (TH2F*) gFile->Get(qtc.Data()) ;
- hCFDvsLED[i][im] = (TH2F*) gFile->Get(led.Data());
-
- // if(!hCFDvsQTC[i][im] || !hCFDvsLED[i][im])
- // AliWarning(Form(" no walk correction data in LASER DA for channel %i for amplitude %i MIPs",i,im));
+ TH1F *hCFD = (TH1F*) gFile->Get(cfd.Data()) ;
+ TH1F *hLED = (TH1F*) gFile->Get(led.Data());
+ TH1F *hQTC = (TH1F*) gFile->Get(qtc.Data()) ;
+ hCFD->SetDirectory(0);
+ hQTC->SetDirectory(0);
+ hLED->SetDirectory(0);
+ if(!hCFD )
+ AliWarning(Form(" no CFD data in LASER DA for channel %i for amplitude %f MIPs",i,mips[im]));
+ if(!hQTC )
+ AliWarning(Form(" no QTC correction data in LASER DA for channel %i for amplitude %f MIPs",i,mips[im]));
+ if(!hLED)
+ AliWarning(Form(" no LED correction data in LASER DA for channel %i for amplitude %f MIPs",i,mips[im]));
+
+ if(hCFD ) {
+ hCFD->GetXaxis()->SetRangeUser(32200,32450);
+ TSpectrum *s = new TSpectrum(2*npeaks,1);
+ nfound = s->Search(hCFD,sigma," ",0.1);
+ if(nfound!=0){
+ Float_t *xpeak = s->GetPositionX();
+ TMath::Sort(nfound, xpeak, index,down);
+ Float_t xp = xpeak[index[0]];
+ Double_t hmax = xp+3*sigma;
+ Double_t hmin = xp-3*sigma;
+ hCFD->GetXaxis()->SetRangeUser(hmin-10,hmax+10);
+ }
+ else
+ {
+ hCFD->Rebin(2);
+ TSpectrum *s1 = new TSpectrum(2*npeaks,1);
+ nfound = s1->Search(hCFD,sigma," ",0.1);
+ if(nfound!=0){
+ Float_t *xpeak = s1->GetPositionX();
+ TMath::Sort(nfound, xpeak, index,down);
+ Float_t xp = xpeak[index[0]];
+ Double_t hmax = xp+3*sigma;
+ Double_t hmin = xp-3*sigma;
+ hCFD->GetXaxis()->SetRangeUser(hmin-10,hmax+10);
+ }
+ else
+ ok=false;
+ }
+
+ if (im == 0) cfd0[i] = hCFD->GetMean();
+ y1[im] = hCFD->GetMean() - cfd0[i];
+ }
+ if( hQTC) x1[im] = hQTC->GetMean();
- if(hCFDvsQTC[i][im] && hCFDvsLED[i][im])
- {
- x1[im] = hCFDvsQTC[i][im]->GetMean(1);
- y1[im] = hCFDvsQTC[i][im]->GetMean(2);
- x2[im] = hCFDvsLED[i][im]->GetMean(1);
- y2[im] = hCFDvsLED[i][im]->GetMean(2);
+ if( hLED){
+ TSpectrum *s = new TSpectrum(2*npeaks,1);
+ nfound = s->Search(hLED,sigma," ",0.1);
+ if(nfound!=0){
+ Float_t *xpeak = s->GetPositionX();
+ TMath::Sort(nfound, xpeak, index,down);
+ Float_t xp = xpeak[index[0]];
+ Double_t hmax = xp+10*sigma;
+ Double_t hmin = xp-10*sigma;
+ hLED->GetXaxis()->SetRangeUser(hmin-10,hmax+10);
}
- xx[im]=im+1;
+ else
+ ok=false;
+ x2[im] = hLED->GetMean();
+ xx2[im] = x2[nmips-im-1];
+ }
+ xx[im]=mips[im];
+
+ if (hQTC) delete hQTC;
+ if (hCFD) delete hCFD;
+ if (hLED) delete hLED;
}
- for (Int_t imi=0; imi<10; imi++)
+
+ for (Int_t imi=0; imi<nmips; imi++)
{
- yy1[imi] = Float_t (10-imi);
- xx1[imi]=x2[10-imi-1];
+ yy1[imi] = Float_t (mips[nmips-imi-1]);
+ xx1[imi] = x2[nmips-imi-1];
+ // cout<<" LED rev "<<i<<" "<<imi<<" "<<xx1[imi]<<" "<< yy1[imi]<<"nmips-imi-1 = "<< nmips-imi-1<<endl;
}
- if(i==0){
- cout<<"Making graphs..."<<endl;
- }
- TGraph *gr1 = new TGraph (10,x1,y1);
- TGraph *gr2 = new TGraph (10,x2,y2);
- fWalk.AddAtAndExpand(gr1,i);
- fAmpLEDRec.AddAtAndExpand(gr2,i);
-
-
- TGraph *gr4 = new TGraph (10,xx1,yy1);
- TGraph *gr3 = new TGraph (10,x1,xx);
- fQTC.AddAtAndExpand(gr3,i);
- fAmpLED.AddAtAndExpand(gr4,i);
- // for (Int_t im=0; im<10; im++) { x2[im]=0; y2[im]=0; xx1[im]=0; xx[im]=0;}
- if(i==23){
+ if(i==0) cout<<"Making graphs..."<<endl;
+
+ TGraph *grwalkqtc = new TGraph (nmips,x1,y1);
+ grwalkqtc->SetTitle(Form("PMT%i",i));
+ TGraph *grwalkled = new TGraph (nmips,x2,y1);
+ grwalkled->SetTitle(Form("PMT%i",i));
+ fWalk.AddAtAndExpand(grwalkqtc,i);
+ fAmpLEDRec.AddAtAndExpand(grwalkled,i);
+ // cout<<" add walk "<<i<<endl;
+
+ //fit amplitude graphs to make comparison wth new one
+ TGraph *grampled = new TGraph (nmips,xx1,yy1);
+ TGraph *grqtc = new TGraph (nmips,x1,xx);
+ fQTC.AddAtAndExpand(grqtc,i);
+ fAmpLED.AddAtAndExpand(grampled,i);
+ // cout<<" add amp "<<i<<endl;
+
+ if(i==23)
cout<<"Graphs created..."<<endl;
- }
}
} //if gFile exits
+ return ok;
}