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MuonHitsChamberResidual.cc
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1 
7 
10  DetId chamberId,
11  const AlignableDetOrUnitPtr& chamberAlignable)
12  : MuonChamberResidual(globalGeometry, navigator, chamberId, chamberAlignable),
13  m_chamber_width(0.),
14  m_chamber_length(0.),
15  m_residual_1(0.),
16  m_residual_x(0.),
17  m_residual_y(0.),
18  m_residual_xx(0.),
19  m_residual_xy(0.),
20  m_trackx_1(0.),
21  m_trackx_x(0.),
22  m_trackx_y(0.),
23  m_trackx_xx(0.),
24  m_trackx_xy(0.),
25  m_tracky_1(0.),
26  m_tracky_x(0.),
27  m_tracky_y(0.),
28  m_tracky_xx(0.),
29  m_tracky_xy(0.),
30  m_hitx_1(0.),
31  m_hitx_x(0.),
32  m_hitx_y(0.),
33  m_hitx_xx(0.),
34  m_hitx_xy(0.),
35  m_hity_1(0.),
36  m_hity_x(0.),
37  m_hity_y(0.),
38  m_hity_xx(0.),
39  m_hity_xy(0.) {}
40 
42  assert(m_numHits > 1);
43 
45  m_residual = (m_residual_xx * m_residual_y - m_residual_x * m_residual_xy) / delta;
46 
47  delta = m_residual_1 * m_residual_xx - m_residual_x * m_residual_x;
49 
50  delta = m_residual_1 * m_residual_xx - m_residual_x * m_residual_x;
51  m_resslope = (m_residual_1 * m_residual_xy - m_residual_x * m_residual_y) / delta;
52 
53  delta = m_residual_1 * m_residual_xx - m_residual_x * m_residual_x;
55 
56  m_ndof = m_individual_x.size() - 2;
57 
58  m_chi2 = 0.;
59  double a = m_residual;
60  double b = m_resslope;
61  std::vector<double>::const_iterator x = m_individual_x.begin();
62  std::vector<double>::const_iterator y = m_individual_y.begin();
63  std::vector<double>::const_iterator w = m_individual_weight.begin();
64  for (; x != m_individual_x.end(); ++x, ++y, ++w)
65  m_chi2 += pow((*y) - a - b * (*x), 2) * (*w);
66 
68  m_trackdxdz = (m_trackx_1 * m_trackx_xy - m_trackx_x * m_trackx_y) / delta;
69 
71  m_trackdydz = (m_tracky_1 * m_tracky_xy - m_tracky_x * m_tracky_y) / delta;
72 
73  delta = m_trackx_1 * m_trackx_xx - m_trackx_x * m_trackx_x;
74  m_trackx = (m_trackx_xx * m_trackx_y - m_trackx_x * m_trackx_xy) / delta;
75 
76  delta = m_tracky_1 * m_tracky_xx - m_tracky_x * m_tracky_x;
77  m_tracky = (m_tracky_xx * m_tracky_y - m_tracky_x * m_tracky_xy) / delta;
78 
79  delta = m_hitx_1 * m_hitx_xx - m_hitx_x * m_hitx_x;
80  m_segdxdz = (m_hitx_1 * m_hitx_xy - m_hitx_x * m_hitx_y) / delta;
81 
82  delta = m_hity_1 * m_hity_xx - m_hity_x * m_hity_x;
83  m_segdydz = (m_hity_1 * m_hity_xy - m_hity_x * m_hity_y) / delta;
84 
85  delta = m_hitx_1 * m_hitx_xx - m_hitx_x * m_hitx_x;
86  m_segx = (m_hitx_xx * m_hitx_y - m_hitx_x * m_hitx_xy) / delta;
87 
88  delta = m_hity_1 * m_hity_xx - m_hity_x * m_hity_x;
89  m_segy = (m_hity_xx * m_hity_y - m_hity_x * m_hity_xy) / delta;
90 
93 }
std::vector< double > m_individual_y
assert(be >=bs)
std::vector< double > m_individual_x
T sqrt(T t)
Definition: SSEVec.h:19
Definition: DetId.h:17
double b
Definition: hdecay.h:118
double a
Definition: hdecay.h:119
MuonHitsChamberResidual(edm::ESHandle< GlobalTrackingGeometry > globalGeometry, AlignableNavigator *navigator, DetId chamberId, const AlignableDetOrUnitPtr &chamberAlignable)
T w() const
std::vector< double > m_individual_weight
Power< A, B >::type pow(const A &a, const B &b)
Definition: Power.h:29