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https://github.com/slsdetectorgroup/slsDetectorPackage.git
synced 2025-04-23 23:10:02 +02:00
Generalized moenchReadData to generate tree and cluster histos file
git-svn-id: file:///afs/psi.ch/project/sls_det_software/svn/slsDetectorCalibration@7 113b152e-814d-439b-b186-022a431db7b5
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@ -8,6 +8,7 @@
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#include <iostream>
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#include <fstream>
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#include <TTree.h>
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using namespace std;
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@ -110,7 +111,7 @@ class moench02ModuleData : public slsDetectorData {
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char *readNextFrame(ifstream &filebin) {
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if (oldbuff)
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if (oldbuff)
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delete [] oldbuff;
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oldbuff=buff;
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@ -159,7 +160,7 @@ class moench02ModuleData : public slsDetectorData {
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if (np>0)
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cout << "Too few packets for this frame! "<< fnum << " " << pnum << endl;
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delete [] data;
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buff=NULL;
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data=NULL;
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}
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buff=data;
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return data;
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@ -183,7 +184,7 @@ class moench02ModuleData : public slsDetectorData {
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if (ix>0 && hc!=0)
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val-=hc*slsDetectorData::getChannelShort(buff,ix-1,iy);
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if (oldbuff && tc!=0)
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if (oldbuff && tc!=0)
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val+=tc*slsDetectorData::getChannelShort(oldbuff,ix,iy);
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@ -248,7 +249,19 @@ class moench02ModuleData : public slsDetectorData {
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double *getCluster(){return &cluster[0][0];};
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TTree *initMoenchTree(char *tname, Int_t *iframe, Int_t * x, Int_t* y, Double_t data[3][3], Double_t *ped, Double_t *sigma) {
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TTree* tall=new TTree(tname,tname);
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tall->Branch("iFrame",iframe,"iframe/I");
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tall->Branch("x",x,"x/I");
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tall->Branch("y",y,"y/I");
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tall->Branch("data",data,"data[3][3]/D");
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tall->Branch("pedestal",ped,"pedestal/D");
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tall->Branch("rms",sigma,"rms/D");
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return tall;
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};
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private:
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@ -23,7 +23,8 @@ using namespace std;
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TH2F *moenchReadData(char *fformat, int runmin, int runmax, int nbins=1500, int hmin=-500, int hmax=1000, int sign=1, int nsigma=5, double hc=0, double tc=0, int xmin=0, int xmax=NC, int ymin=0, int ymax=NR) {
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THStack *moenchReadData(char *fformat, char *tit, int runmin, int runmax, int nbins=1500, int hmin=-500, int hmax=1000, int sign=1, double hc=0, double tc=0, int xmin=0, int xmax=NC, int ymin=0, int ymax=NR, int pedsub=1) {
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moench02ModuleData *decoder=new moench02ModuleData();
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char *buff;
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@ -35,21 +36,52 @@ TH2F *moenchReadData(char *fformat, int runmin, int runmax, int nbins=1500, int
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moench02ModuleData::eventType thisEvent=moench02ModuleData::PEDESTAL;
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// int iframe;
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// double *data, ped, sigma;
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TH2F *h2=NULL;
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h2=new TH2F("h2",fformat,nbins,hmin-0.5,hmax-0.5,NC*NR,-0.5,NC*NR-0.5);
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// data=decoder->getCluster();
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int val, dum;
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double me=0, sig, tot, vv;
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TH2F *h2;
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TH2F *h3;
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TH2F *hetaX;
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TH2F *hetaY;
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MovingStat stat[160][160];
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THStack *hs=new THStack("hs",fformat);
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TH2F *h1=new TH2F("h1",tit,nbins,hmin-0.5,hmax-0.5,NC*NR,-0.5,NC*NR-0.5);
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hs->Add(h1);
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if (pedsub) {
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h2=new TH2F("h2",tit,nbins,hmin-0.5,hmax-0.5,NC*NR,-0.5,NC*NR-0.5);
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h3=new TH2F("h3",tit,nbins,hmin-0.5,hmax-0.5,NC*NR,-0.5,NC*NR-0.5);
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hetaX=new TH2F("hetaX",tit,nbins,-1,2,NC*NR,-0.5,NC*NR-0.5);
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hetaY=new TH2F("hetaY",tit,nbins,-1,2,NC*NR,-0.5,NC*NR-0.5);
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hs->Add(h2);
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hs->Add(h3);
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hs->Add(hetaX);
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hs->Add(hetaY);
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}
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ifstream filebin;
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int nbg=1000;
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int ix=20, iy=20, ir, ic;
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Int_t iFrame, x, y;
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Double_t data[3][3],ped,sigma;
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TTree *tall;
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if (pedsub) {
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cout << "Subtracting pedestal!!!! " << endl;
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tall=decoder->initMoenchTree(tit, &iFrame, &x, &y, data, &ped, &sigma);
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}
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double tot, tl, tr, bl, br, v;
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// 6% x-talk from previous pixel
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// 12% x-talk from previous frame
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@ -63,14 +95,16 @@ TH2F *moenchReadData(char *fformat, int runmin, int runmax, int nbins=1500, int
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for (ix=xmin-1; ix<xmax+1; ix++)
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for (iy=ymin-1; iy<ymax+1; iy++) {
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////////////////////////////////////////////////////////
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if (pedsub) {
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if (nf>100) {
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thisEvent= decoder->getEventType(ix, iy, hc, tc, 1);
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}
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if (thisEvent==moench02ModuleData::PEDESTAL) {
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decoder->addToPedestal(decoder->getClusterElement(0,0), ix, iy);
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decoder->addToPedestal( decoder->getChannelShort(ix, iy, hc, tc), ix, iy);
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}
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@ -78,6 +112,101 @@ TH2F *moenchReadData(char *fformat, int runmin, int runmax, int nbins=1500, int
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Add here the function that you want to call: fill histos, make trees etc.
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************************************************************/
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// getClusterElement to access quickly the photon and the neighbours
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if (nf>1000) {
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tot=0;
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tl=0;
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tr=0;
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bl=0;
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br=0;
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h1->Fill(decoder->getClusterElement(0,0), iy+NR*ix);
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if (thisEvent==moench02ModuleData::PHOTON_MAX ) {
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for (ir=-1; ir<2; ir++) {
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for (ic=-1; ic<2; ic++) {
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v=decoder->getClusterElement(ic,ir);
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data[ic+1][ir+1]=v;
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tot+=v;
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if (ir<1) {
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if (ic<1) {
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bl+=v;
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}
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if (ic>-1) {
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br+=v;
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}
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}
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if (ir>-1) {
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if (ic<1) {
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tl+=v;
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}
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if (ic>-1) {
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tr+=v;
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}
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}
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}
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}
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if (bl>br && bl>tl && bl>tr) {
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h2->Fill(bl, iy+NR*ix);
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if (bl>0) {
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hetaX->Fill((decoder->getClusterElement(0,0)+decoder->getClusterElement(0,-1))/bl,iy+NR*ix);
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hetaY->Fill((decoder->getClusterElement(0,0)+decoder->getClusterElement(-1,0))/bl,iy+NR*ix);
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hetaX->Fill(1.-(decoder->getClusterElement(0,0)+decoder->getClusterElement(0,-1))/bl,iy+NR*(ix-1));
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hetaY->Fill(1.-(decoder->getClusterElement(0,0)+decoder->getClusterElement(-1,0))/bl,(iy-1)+NR*ix);
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}
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} else if (br>bl && br>tl && br>tr) {
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h2->Fill(br, iy+NR*ix);
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if (br>0) {
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hetaX->Fill((decoder->getClusterElement(0,0)+decoder->getClusterElement(0,-1))/br,iy+NR*ix);
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hetaY->Fill((decoder->getClusterElement(0,0)+decoder->getClusterElement(1,0))/br,iy+NR*ix);
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hetaX->Fill(1.-(decoder->getClusterElement(0,0)+decoder->getClusterElement(0,-1))/br,iy+NR*(ix+1));
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hetaY->Fill(1.-(decoder->getClusterElement(0,0)+decoder->getClusterElement(1,0))/br,iy-1+NR*ix);
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}
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} else if (tl>br && tl>bl && tl>tr) {
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h2->Fill(tl, iy+NR*ix);
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if (tl>0) {
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hetaX->Fill((decoder->getClusterElement(0,0)+decoder->getClusterElement(0,1))/tl,iy+NR*ix);
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hetaY->Fill((decoder->getClusterElement(0,0)+decoder->getClusterElement(-1,0))/tl,iy+NR*ix);
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hetaX->Fill(1.-(decoder->getClusterElement(0,0)+decoder->getClusterElement(0,1))/tl,iy+NR*(ix-1));
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hetaY->Fill(1.-(decoder->getClusterElement(0,0)+decoder->getClusterElement(-1,0))/tl,iy+1+NR*ix);
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}
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} else if (tr>bl && tr>tl && tr>br) {
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h2->Fill(tr, iy+NR*ix);
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if (tr>0) {
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hetaX->Fill((decoder->getClusterElement(0,0)+decoder->getClusterElement(0,1))/tr,iy+NR*ix);
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hetaY->Fill((decoder->getClusterElement(0,0)+decoder->getClusterElement(1,0))/tr,iy+NR*ix);
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hetaX->Fill(1.-(decoder->getClusterElement(0,0)+decoder->getClusterElement(0,1))/tr,iy+NR*(ix+1));
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hetaY->Fill(1.-(decoder->getClusterElement(0,0)+decoder->getClusterElement(1,0))/tr,iy+1+NR*ix);
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}
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}
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h3->Fill(tot, iy+NR*ix);
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iFrame=decoder->getFrameNumber(buff);
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ped=decoder->getPedestal(ix,iy);
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sigma=decoder->getPedestalRMS(ix,iy);
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x=ix;
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y=iy;
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tall->Fill();
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}
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}
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} else {
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//cout << ix << " " << iy << endl;
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h1->Fill(decoder->getChannelShort(ix, iy), iy+NR*ix);
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}
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//////////////////////////////////////////////////////////
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}
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cout << "=" ;
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@ -89,13 +218,13 @@ Add here the function that you want to call: fill histos, make trees etc.
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else
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cout << "could not open file " << fname << endl;
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}
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if (pedsub)
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tall->Write();
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delete decoder;
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cout << "Read " << nf << " frames" << endl;
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return h2;
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return hs;
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}
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