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fix some coding violations.
[u/mrichter/AliRoot.git] / ITS / AliV0vertex.cxx
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7f6ddf58 1/**************************************************************************
2 * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
3 * *
4 * Author: The ALICE Off-line Project. *
5 * Contributors are mentioned in the code where appropriate. *
6 * *
7 * Permission to use, copy, modify and distribute this software and its *
8 * documentation strictly for non-commercial purposes is hereby granted *
9 * without fee, provided that the above copyright notice appears in all *
10 * copies and that both the copyright notice and this permission notice *
11 * appear in the supporting documentation. The authors make no claims *
12 * about the suitability of this software for any purpose. It is *
13 * provided "as is" without express or implied warranty. *
14 **************************************************************************/
15
16//-------------------------------------------------------------------------
17// Implementation of the V0 vertex class
18//
19// Origin: Iouri Belikov, IReS, Strasbourg, Jouri.Belikov@cern.ch
20//-------------------------------------------------------------------------
7f6ddf58 21#include <TMath.h>
22
23#include "AliV0vertex.h"
24#include "AliITStrackV2.h"
25
26ClassImp(AliV0vertex)
27
7f6ddf58 28AliV0vertex::AliV0vertex(const AliITStrackV2 &n, const AliITStrackV2 &p) {
29 //--------------------------------------------------------------------
30 // Main constructor
31 //--------------------------------------------------------------------
32 fPdgCode=kK0Short;
e23730c7 33 fNidx=n.GetLabel(); fPidx=p.GetLabel(); //indices in the array of ESD tracks
7f6ddf58 34
35 //Trivial estimation of the vertex parameters
36 Double_t pt, phi, x, par[5];
37 Double_t alpha, cs, sn;
38
39 n.GetExternalParameters(x,par); alpha=n.GetAlpha();
40 pt=1./TMath::Abs(par[4]);
41 phi=TMath::ASin(par[2]) + alpha;
42 Double_t px1=pt*TMath::Cos(phi), py1=pt*TMath::Sin(phi), pz1=pt*par[3];
43 cs=TMath::Cos(alpha); sn=TMath::Sin(alpha);
44 Double_t x1=x*cs - par[0]*sn;
45 Double_t y1=x*sn + par[0]*cs;
46 Double_t z1=par[1];
47 Double_t sx1=sn*sn*n.GetSigmaY2(), sy1=cs*cs*n.GetSigmaY2();
48
49 p.GetExternalParameters(x,par); alpha=p.GetAlpha();
50 pt=1./TMath::Abs(par[4]);
51 phi=TMath::ASin(par[2]) + alpha;
52 Double_t px2=pt*TMath::Cos(phi), py2=pt*TMath::Sin(phi), pz2=pt*par[3];
53 cs=TMath::Cos(alpha); sn=TMath::Sin(alpha);
54 Double_t x2=x*cs - par[0]*sn;
55 Double_t y2=x*sn + par[0]*cs;
56 Double_t z2=par[1];
57 Double_t sx2=sn*sn*p.GetSigmaY2(), sy2=cs*cs*p.GetSigmaY2();
58
59 Double_t sz1=n.GetSigmaZ2(), sz2=p.GetSigmaZ2();
60 Double_t wx1=sx2/(sx1+sx2), wx2=1.- wx1;
61 Double_t wy1=sy2/(sy1+sy2), wy2=1.- wy1;
62 Double_t wz1=sz2/(sz1+sz2), wz2=1.- wz1;
63 fPos[0]=wx1*x1 + wx2*x2; fPos[1]=wy1*y1 + wy2*y2; fPos[2]=wz1*z1 + wz2*z2;
64
65 //fPos[0]=0.5*(x1+x2); fPos[1]=0.5*(y1+y2); fPos[2]=0.5*(z1+z2);
66 fNmom[0]=px1; fNmom[1]=py1; fNmom[2]=pz1;
67 fPmom[0]=px2; fPmom[1]=py2; fPmom[2]=pz2;
68
69 Double_t e1=TMath::Sqrt(0.13957*0.13957 + px1*px1 + py1*py1 + pz1*pz1);
70 Double_t e2=TMath::Sqrt(0.13957*0.13957 + px2*px2 + py2*py2 + pz2*pz2);
71 fEffMass=TMath::Sqrt((e1+e2)*(e1+e2)-
72 (px1+px2)*(px1+px2)-(py1+py2)*(py1+py2)-(pz1+pz2)*(pz1+pz2));
73
74 fChi2=7.;
75}
7f6ddf58 76