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CalibCalorimetry
EcalLaserAnalyzer
src
TPNFit.cc
Go to the documentation of this file.
1
/*
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* \class TPNFit
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*
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* \author: Patrice Verrecchia - CEA/Saclay
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*/
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#include <
CalibCalorimetry/EcalLaserAnalyzer/interface/TPNFit.h
>
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#include <iostream>
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#include "TVectorD.h"
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//ClassImp(TPNFit)
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// Constructor...
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TPNFit::TPNFit
()
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{
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fNsamples
= 0;
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fNum_samp_bef_max
= 0;
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fNum_samp_after_max
= 0;
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}
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// Destructor
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TPNFit::~TPNFit
()
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{
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}
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void
TPNFit::init
(
int
nsamples,
int
firstsample,
int
lastsample)
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{
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fNsamples
= nsamples ;
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fNum_samp_bef_max
=
firstsample
;
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fNum_samp_after_max
=
lastsample
;
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//printf("nsamples=%d firstsample=%d lastsample=%d\n",nsamples,firstsample,lastsample);
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if
(
fNsamples
>
NMAXSAMP2
)
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printf(
"number of PN samples exceed maximum\n"
);
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for
(
int
k
=0;
k
<
NMAXSAMP2
;
k
++)
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t
[
k
]= (
double
)
k
;
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return
;
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}
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double
TPNFit::doFit
(
int
maxsample,
double
*
adc
)
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{
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double
chi2=0.;
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ampl
=0.;
timeatmax
=0.;
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//printf("maxsample=%d\n",maxsample);
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firstsample
= maxsample -
fNum_samp_bef_max
;
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lastsample
= maxsample +
fNum_samp_after_max
;
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if
(
firstsample
<= 0)
return
101;
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if
(
lastsample
>=
fNsamples
)
lastsample
=
fNsamples
-1;
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if
(
lastsample
-
firstsample
< 1)
return
102;
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int
nval=
lastsample
-
firstsample
+1;
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//printf("firstsample=%d lastsample=%d nval=%d\n",
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// firstsample,lastsample,nval);
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int
testneg=0;
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for
(
int
kn=firstsample;kn<=
lastsample
;kn++) {
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//printf("adc[%d]=%f\n",kn,adc[kn]);
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if
(adc[kn] < 0.) testneg=1;
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}
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if
(testneg == 1)
return
103;
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for
(
int
i
=firstsample;
i
<=
lastsample
;
i
++) {
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val
[
i
-
firstsample
]= adc[
i
];
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fv1
[
i
-
firstsample
]= 1.;
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fv2
[
i
-
firstsample
]= (double) (
i
);
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fv3
[
i
-
firstsample
]= ((double)(
i
))*((
double
)(
i
));
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}
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TVectorD
y
(nval,
val
);
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//y.Print();
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TVectorD
f1
(nval,
fv1
);
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//f1.Print();
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TVectorD
f2
(nval,
fv2
);
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//f2.Print();
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TVectorD
f3
(nval,
fv3
);
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//f3.Print();
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double
bj[3];
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bj[0]= f1*
y
; bj[1]=f2*
y
; bj[2]= f3*
y
;
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TVectorD
b
(3,bj);
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//b.Print();
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double
aij[9];
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aij[0]= f1*
f1
; aij[1]=f1*
f2
; aij[2]=f1*
f3
;
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aij[3]= f2*
f1
; aij[4]=f2*
f2
; aij[5]=f2*
f3
;
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aij[6]= f3*
f1
; aij[7]=f3*
f2
; aij[8]=f3*
f3
;
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TMatrixD
a
(3,3,aij);
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//a.Print();
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double
det1;
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a.InvertFast(&det1);
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//a.Print();
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TVectorD
c
= a*
b
;
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//c.Print();
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double
*par= c.GetMatrixArray();
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//printf("par0=%f par1=%f par2=%f\n",par[0],par[1],par[2]);
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if
(par[2] != 0.) {
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timeatmax
= -par[1]/(2.*par[2]);
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ampl
= par[0]-par[2]*(
timeatmax
*
timeatmax
);
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}
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//printf("amp=%f time=%f\n",amp_max,timeatmax);
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if
(
ampl
<= 0.) {
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ampl
=adc[maxsample];
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return
1.;
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}
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if
((
int
)
timeatmax
>
lastsample
)
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return
103;
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if
((
int
)
timeatmax
<
firstsample
)
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return
103;
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return
chi2;
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}
ecalMGPA::adc
int adc(sample_type sample)
get the ADC sample (12 bits)
Definition:
EcalMGPASample.h:11
TPNFit::fNum_samp_bef_max
int fNum_samp_bef_max
Definition:
TPNFit.h:14
i
int i
Definition:
DBlmapReader.cc:9
TPNFit::~TPNFit
virtual ~TPNFit()
Definition:
TPNFit.cc:25
TPNFit::fv3
double fv3[50]
Definition:
TPNFit.h:19
TPNFit::init
void init(int, int, int)
Definition:
TPNFit.cc:29
TPNFit::fNum_samp_after_max
int fNum_samp_after_max
Definition:
TPNFit.h:15
TPNFit::timeatmax
double timeatmax
Definition:
TPNFit.h:21
TPNFit::fNsamples
int fNsamples
Definition:
TPNFit.h:13
TPNFit.h
mathSSE::return
return((rh^lh)&mask)
python.connectstrParser.f2
string f2
Definition:
connectstrParser.py:80
TPNFit::t
double t[50]
Definition:
TPNFit.h:18
NMAXSAMP2
#define NMAXSAMP2
Definition:
TPNFit.h:6
TPNFit::TPNFit
TPNFit()
Definition:
TPNFit.cc:16
TPNFit::fv2
double fv2[50]
Definition:
TPNFit.h:19
gen::k
int k[5][pyjets_maxn]
Definition:
Cascade2Hadronizer.cc:79
TPNFit::val
double val[50]
Definition:
TPNFit.h:18
detailsBasic3DVector::y
float float y
Definition:
extBasic3DVector.h:15
TPNFit::fv1
double fv1[50]
Definition:
TPNFit.h:19
b
double b
Definition:
hdecay.h:120
trackerHits.c
tuple c
Definition:
trackerHits.py:26
TPNFit::lastsample
int lastsample
Definition:
TPNFit.h:17
python.connectstrParser.f3
string f3
Definition:
connectstrParser.py:85
a
double a
Definition:
hdecay.h:121
TPNFit::firstsample
int firstsample
Definition:
TPNFit.h:17
TPNFit::doFit
double doFit(int, double *)
Definition:
TPNFit.cc:45
TPNFit::ampl
double ampl
Definition:
TPNFit.h:20
python.connectstrParser.f1
string f1
Definition:
connectstrParser.py:75
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