AEvent.cpp 3.26 KB
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/*
 * AEvent.cpp
 *
 *  Created on: Dec 28, 2016
 *      Author: daria
 */

#include "AEvent.h"

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AEvent::AEvent() : fNPoints(1024) {	//fNPoints is number of points in one event, 1024 or 1000
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	Init();
	Reset();

}

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AEvent::AEvent(const Int_t npoints) : fNPoints(npoints) {

	Init();
	Reset();
}

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AEvent::~AEvent() {
	// TODO Auto-generated destructor stub
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	delete fGraphSignal;
	delete fGraphCFD;
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	delete fInputEvent;
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}

void AEvent::SetRawDataFile(const char* inprawfile, const char* treename) {

	TString iFileName = inprawfile;
	TFile *fraw = new TFile(iFileName.Data());
	if ( !fraw->IsOpen() ) {
		Error("SetRawDataFile", "File %s was not opened and won't be processed", iFileName.Data());
	}
	TTree *traw = (TTree*)fraw->Get(treename);
	if (!traw) {
		Error("SetRawDataFile", "Tree %s was not found in file %s", treename, iFileName.Data());
	}
}

void AEvent::ProcessEvent() {

	if (fInputEvent == NULL) {
		Warning("AEvent::ProcessEvent", "Input event wasn't set. Function won't be processed.");
		return;
	}

	const Double_t *amp = fInputEvent->GetAmp();
	const Double_t *time = fInputEvent->GetTime();

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	for(Int_t j = 0; j < fNPoints; j++) {
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		fAmpPos[j] = amp[j]*(-1.);
		fTime[j] = time[j];
	}

	Double_t maxAmp = 0.;
	Double_t maxAmpT = 0.;

	maxAmp = fAmpPos[0];
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	for(Int_t j=0; j < fNPoints; j++) {
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		if(fAmpPos[j] > maxAmp) {
			maxAmp = fAmpPos[j];
			maxAmpT = fTime[j];
		}
	}
	fAmpMax = maxAmp;
	fTimeAmpMax = maxAmpT;

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	SetGraphs();

	SetCFD();

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	return;

}

void AEvent::Reset() {

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	for (Int_t i = 0; i < fNPoints; i++) {
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		fAmpPos[i] = 0;
		fTime[i] = 0;
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		fAmpCFD[i] = 0;
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	}

	fAmpMax = 0.;
	fTimeAmpMax = 0.;
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	fCFD = 0.;
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}

void AEvent::SetInputEvent(RawEvent** event) {

	if (event == 0) {
		Warning("AEvent::SetInputEvent", "Input event was set as 0.");
	}
	fInputEvent = *event;

}

void AEvent::Init() {

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	fAmpPos.Set(fNPoints);
	fTime.Set(fNPoints);
	fAmpCFD.Set(fNPoints);

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	fGraphSignal = new TGraph();
	fGraphCFD = new TGraph();
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	fInputEvent = 0;

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	fCFratio = 0.;
	fCFtimeDelay = 0.;

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}

void AEvent::SetGraphs() {

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	fGraphSignal->Set(fNPoints);
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	for (Int_t i=0; i<fNPoints; i++) {
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		fGraphSignal->SetPoint(i, fTime[i], fAmpPos[i]);
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	}

	return;
}
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void AEvent::SetCFD() {
//	Double_t c = 0.5; 		//attenuation coefficient
//	Int_t td = 5;			//time of delay in points
	Double_t level = 100.;	//todo what is it?

	fGraphCFD->Set(fNPoints);

	//working variables
	Double_t maxCFD = 0., minCFD = 0.;
	Int_t imax = 0, imin = 0;
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	for (Int_t i=0; i<fNPoints; i++) {

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		//CFD method
		if(i>fCFtimeDelay) {
//			fAmpCFD[i] = fAmpPos[i]*cfRatio*(-1);
			fAmpCFD[i] = fAmpPos[i]*fCFratio*(-1);
//			fAmpCFD[i] = fAmpCFD[i] + fAmpPos[i - timeDelay];
			fAmpCFD[i] = fAmpCFD[i] + fAmpPos[i - fCFtimeDelay];
			fGraphCFD->SetPoint(i, fTime[i], fAmpCFD[i]);
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		}

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		//point for max CFD amplitude
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		if(fAmpCFD[i] > maxCFD) {
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			maxCFD = fAmpCFD[i];
			imax = i;
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		}

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		//point for min CFD amplitude
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		if(fAmpCFD[i] < minCFD) {
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			minCFD = fAmpCFD[i];
			imin = i;
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		}

	}

	//finding "zero" of CFD amplitude
	for(Int_t j = imin; j < imax; j++) {   
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		if(abs(fAmpCFD[j]) < level) {
			level = abs(fAmpCFD[j]);
			fCFD = fTime[j];
		}
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	}

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}
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Double_t AEvent::GetfCFD() {
		return fCFD;
}

Double_t AEvent::GetOnefTime(Int_t i) {
		return fTime[i];
}
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Double_t AEvent::GetOnefAmpPos(Int_t i) {
		return fAmpPos[i];
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}