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FlatTrd Class Reference

A base class to handle the particular shape of HGCal volumes. More...

#include <FlatTrd.h>

Inheritance diagram for FlatTrd:
CaloCellGeometry

Public Types

typedef CaloCellGeometry::CCGFloat CCGFloat
 
typedef CaloCellGeometry::Pt3D Pt3D
 
typedef CaloCellGeometry::Pt3DVec Pt3DVec
 
typedef CaloCellGeometry::Tr3D Tr3D
 
- Public Types inherited from CaloCellGeometry
typedef float CCGFloat
 
typedef EZMgrFL< GlobalPointCornersMgr
 
typedef EZArrayFL< GlobalPointCornersVec
 
typedef EZMgrFL< CCGFloatParMgr
 
typedef EZArrayFL< CCGFloatParVec
 
typedef std::vector< ParVecParVecVec
 
typedef HepGeom::Point3D< CCGFloatPt3D
 
typedef std::vector< Pt3DPt3DVec
 
using RepCorners = std::array< RhoEtaPhi, k_cornerSize >
 
typedef HepGeom::Transform3D Tr3D
 

Public Member Functions

const GlobalVectoraxis () const
 
virtual float etaPos () const
 
 FlatTrd (void)
 
 FlatTrd (const FlatTrd &tr)
 
 FlatTrd (CornersMgr *cMgr, const GlobalPoint &fCtr, const GlobalPoint &bCtr, const GlobalPoint &cor1, const CCGFloat *parV)
 
 FlatTrd (const CornersVec &corn, const CCGFloat *par)
 
 FlatTrd (const FlatTrd &tr, const Pt3D &local)
 
Pt3D getLocal (const GlobalPoint &global) const
 
CCGFloat getPhiAxis () const
 
GlobalPoint const & getPosition () const override
 Returns the position of reference for this cell. More...
 
GlobalPoint getPosition (const Pt3D &local) const override
 
CCGFloat getThetaAxis () const
 
void getTransform (Tr3D &tr, Pt3DVec *lptr) const override
 --------— only needed by specific utility; overloaded when needed -— More...
 
FlatTrdoperator= (const FlatTrd &tr)
 
virtual float phiPos () const
 
void setPosition (const GlobalPoint &p)
 
void vocalCorners (Pt3DVec &vec, const CCGFloat *pv, Pt3D &ref) const override
 
 ~FlatTrd () override
 
- Public Member Functions inherited from CaloCellGeometry
bool emptyCorners () const
 
float etaPos () const
 
float etaSpan () const
 
GlobalPoint const & getBackPoint () const
 
CornersVec const & getCorners () const
 Returns the corner points of this cell's volume. More...
 
RepCorners const & getCornersREP () const
 
virtual GlobalPoint getPosition (CCGFloat) const
 
bool inside (const GlobalPoint &point) const
 Returns true if the specified point is inside this cell. More...
 
const CCGFloatparam () const
 
float phiPos () const
 
float phiSpan () const
 
RhoEtaPhi const & repPos () const
 
float rhoPos () const
 
void setBackPoint (const GlobalPoint &pos)
 
virtual ~CaloCellGeometry ()
 

Static Public Member Functions

static void createCorners (const std::vector< CCGFloat > &pv, const Tr3D &tr, std::vector< GlobalPoint > &co)
 
static void localCorners (Pt3DVec &vec, const CCGFloat *pv, Pt3D &ref)
 
- Static Public Member Functions inherited from CaloCellGeometry
static const CCGFloatcheckParmPtr (const std::vector< CCGFloat > &vd, ParVecVec &pvv)
 
static const CCGFloatgetParmPtr (const std::vector< CCGFloat > &vd, ParMgr *mgr, ParVecVec &pvv)
 

Static Public Attributes

static constexpr uint32_t k_Alp1 = 6
 
static constexpr uint32_t k_Alp2 = 10
 
static constexpr uint32_t k_Cell = 11
 
static constexpr uint32_t k_dX1 = 4
 
static constexpr uint32_t k_dX2 = 5
 
static constexpr uint32_t k_dX3 = 8
 
static constexpr uint32_t k_dX4 = 9
 
static constexpr uint32_t k_dY1 = 3
 
static constexpr uint32_t k_dY2 = 7
 
static constexpr uint32_t k_dZ = 0
 
static constexpr uint32_t k_Phi = 2
 
static constexpr uint32_t k_Theta = 1
 
static constexpr unsigned int ncorner_ = 8
 
static constexpr unsigned int ncornerBy2_ = 4
 
- Static Public Attributes inherited from CaloCellGeometry
static constexpr unsigned int k_cornerSize = 8
 
static const CCGFloat k_ScaleFromDDDtoGeant
 

Private Member Functions

GlobalPoint backCtr (void) const
 
void initCorners (CornersVec &) override
 
GlobalVector makeAxis (void)
 

Private Attributes

GlobalVector m_axis
 
Pt3D m_corOne
 
GlobalPoint m_global
 
Pt3D m_local
 
Tr3D m_tr
 

Additional Inherited Members

- Protected Member Functions inherited from CaloCellGeometry
 CaloCellGeometry (CornersVec::const_reference gp, CornersMgr *mgr, const CCGFloat *par)
 
 CaloCellGeometry (const CornersVec &cv, const CCGFloat *par)
 
 CaloCellGeometry (void)
 
void initSpan ()
 
void setCornerVec (const std::vector< GlobalPoint > &cor)
 
void setRefPoint (const GlobalPoint &pos)
 

Detailed Description

A base class to handle the particular shape of HGCal volumes.

Definition at line 19 of file FlatTrd.h.

Member Typedef Documentation

Definition at line 21 of file FlatTrd.h.

Definition at line 22 of file FlatTrd.h.

Definition at line 23 of file FlatTrd.h.

Definition at line 24 of file FlatTrd.h.

Constructor & Destructor Documentation

FlatTrd::FlatTrd ( void  )

Definition at line 23 of file FlatTrd.cc.

24  : CaloCellGeometry(), m_axis(0., 0., 0.), m_corOne(0., 0., 0.), m_local(0., 0., 0.), m_global(0., 0., 0.) {}
Pt3D m_local
Definition: FlatTrd.h:103
Pt3D m_corOne
Definition: FlatTrd.h:103
GlobalPoint m_global
Definition: FlatTrd.h:104
GlobalVector m_axis
Definition: FlatTrd.h:102
FlatTrd::FlatTrd ( const FlatTrd tr)

Definition at line 26 of file FlatTrd.cc.

26 : CaloCellGeometry(tr) { *this = tr; }
FlatTrd::FlatTrd ( CornersMgr cMgr,
const GlobalPoint fCtr,
const GlobalPoint bCtr,
const GlobalPoint cor1,
const CCGFloat parV 
)

Definition at line 45 of file FlatTrd.cc.

References etaPos(), getTransform(), glb, m_global, m_local, m_tr, and phiPos().

47  : CaloCellGeometry(fCtr, cMgr, parV),
48  m_axis((bCtr - fCtr).unit()),
49  m_corOne(cor1.x(), cor1.y(), cor1.z()),
50  m_local(0., 0., 0.) {
51  getTransform(m_tr, nullptr);
52  Pt3D glb = m_tr * m_local;
53  m_global = GlobalPoint(glb.x(), glb.y(), glb.z());
54 #ifdef EDM_ML_DEBUG
55  edm::LogVerbatim("CaloGeometry") << "FlatTrd: Local " << m_local << " Global " << glb << " eta " << etaPos()
56  << " phi " << phiPos() << " Translation " << m_tr.getTranslation()
57  << " and rotation " << m_tr.getRotation();
58 #endif
59 }
double glb
Definition: hdecay.h:103
Global3DPoint GlobalPoint
Definition: GlobalPoint.h:10
T y() const
Definition: PV3DBase.h:60
Tr3D m_tr
Definition: FlatTrd.h:105
Pt3D m_local
Definition: FlatTrd.h:103
T z() const
Definition: PV3DBase.h:61
Pt3D m_corOne
Definition: FlatTrd.h:103
void getTransform(Tr3D &tr, Pt3DVec *lptr) const override
--------— only needed by specific utility; overloaded when needed -—
Definition: FlatTrd.cc:164
CaloCellGeometry::Pt3D Pt3D
GlobalPoint m_global
Definition: FlatTrd.h:104
virtual float phiPos() const
Definition: FlatTrd.h:69
virtual float etaPos() const
Definition: FlatTrd.h:68
T x() const
Definition: PV3DBase.h:59
Basic3DVector unit() const
GlobalVector m_axis
Definition: FlatTrd.h:102
FlatTrd::FlatTrd ( const CornersVec corn,
const CCGFloat par 
)

Definition at line 61 of file FlatTrd.cc.

References etaPos(), getTransform(), glb, m_axis, m_global, m_local, m_tr, makeAxis(), and phiPos().

62  : CaloCellGeometry(corn, par), m_corOne(corn[0].x(), corn[0].y(), corn[0].z()), m_local(0., 0., 0.) {
63  getTransform(m_tr, nullptr);
64  m_axis = makeAxis();
65  Pt3D glb = m_tr * m_local;
66  m_global = GlobalPoint(glb.x(), glb.y(), glb.z());
67 #ifdef EDM_ML_DEBUG
68  edm::LogVerbatim("CaloGeometry") << "FlatTrd: Local " << m_local << " Global " << glb << " eta " << etaPos()
69  << " phi " << phiPos() << " Translation " << m_tr.getTranslation()
70  << " and rotation " << m_tr.getRotation();
71 #endif
72 }
double glb
Definition: hdecay.h:103
Global3DPoint GlobalPoint
Definition: GlobalPoint.h:10
Tr3D m_tr
Definition: FlatTrd.h:105
Pt3D m_local
Definition: FlatTrd.h:103
Pt3D m_corOne
Definition: FlatTrd.h:103
void getTransform(Tr3D &tr, Pt3DVec *lptr) const override
--------— only needed by specific utility; overloaded when needed -—
Definition: FlatTrd.cc:164
CaloCellGeometry::Pt3D Pt3D
GlobalVector makeAxis(void)
Definition: FlatTrd.cc:222
GlobalPoint m_global
Definition: FlatTrd.h:104
virtual float phiPos() const
Definition: FlatTrd.h:69
virtual float etaPos() const
Definition: FlatTrd.h:68
GlobalVector m_axis
Definition: FlatTrd.h:102
FlatTrd::FlatTrd ( const FlatTrd tr,
const Pt3D local 
)

Definition at line 74 of file FlatTrd.cc.

References etaPos(), glb, m_global, m_local, m_tr, and phiPos().

75  *this = tr;
76  Pt3D glb = m_tr * m_local;
77  m_global = GlobalPoint(glb.x(), glb.y(), glb.z());
78 #ifdef EDM_ML_DEBUG
79  edm::LogVerbatim("CaloGeometry") << "FlatTrd: Local " << m_local << " Global " << glb << " eta " << etaPos()
80  << " phi " << phiPos() << " Translation " << m_tr.getTranslation()
81  << " and rotation " << m_tr.getRotation();
82 #endif
83 }
double glb
Definition: hdecay.h:103
Global3DPoint GlobalPoint
Definition: GlobalPoint.h:10
Tr3D m_tr
Definition: FlatTrd.h:105
Pt3D m_local
Definition: FlatTrd.h:103
CaloCellGeometry::Pt3D Pt3D
GlobalPoint m_global
Definition: FlatTrd.h:104
virtual float phiPos() const
Definition: FlatTrd.h:69
virtual float etaPos() const
Definition: FlatTrd.h:68
FlatTrd::~FlatTrd ( )
override

Definition at line 85 of file FlatTrd.cc.

85 {}

Member Function Documentation

const GlobalVector & FlatTrd::axis ( ) const

Definition at line 112 of file FlatTrd.cc.

References m_axis.

Referenced by getTransform(), and phiPos().

112 { return m_axis; }
GlobalVector m_axis
Definition: FlatTrd.h:102
GlobalPoint FlatTrd::backCtr ( void  ) const
private

Definition at line 224 of file FlatTrd.cc.

References PVValHelper::dz, CaloCellGeometry::getCorners(), k_dZ, m_local, m_tr, ncornerBy2_, and CaloCellGeometry::param().

Referenced by makeAxis().

224  {
225  float dz = (getCorners()[ncornerBy2_].z() > getCorners()[0].z()) ? param()[FlatTrd::k_dZ] : -param()[FlatTrd::k_dZ];
226  Pt3D local_b(m_local.x(), m_local.y(), m_local.z() + dz);
227  Pt3D global_b = m_tr * local_b;
228  GlobalPoint global(global_b.x(), global_b.y(), global_b.z());
229  return global;
230 }
static constexpr unsigned int ncornerBy2_
Definition: FlatTrd.h:94
Tr3D m_tr
Definition: FlatTrd.h:105
const CCGFloat * param() const
Pt3D m_local
Definition: FlatTrd.h:103
CaloCellGeometry::Pt3D Pt3D
CornersVec const & getCorners() const
Returns the corner points of this cell&#39;s volume.
static constexpr uint32_t k_dZ
Definition: FlatTrd.h:26
void FlatTrd::createCorners ( const std::vector< CCGFloat > &  pv,
const Tr3D tr,
std::vector< GlobalPoint > &  co 
)
static

Definition at line 116 of file FlatTrd.cc.

References mps_fire::i, localCorners(), ncorner_, AlCaHLTBitMon_ParallelJobs::p, and createJobs::tmp.

Referenced by FastTimeGeometryLoader::buildGeom(), HGCalGeometryLoader::buildGeom(), and phiPos().

116  {
117  assert(11 <= pv.size());
118  assert(ncorner_ == co.size());
119 
120  Pt3DVec ko(ncorner_, Pt3D(0, 0, 0));
121 
122  Pt3D tmp;
123  Pt3DVec to(ncorner_, Pt3D(0, 0, 0));
124  localCorners(to, &pv.front(), tmp);
125 
126  for (unsigned int i(0); i != ncorner_; ++i) {
127  ko[i] = tr * to[i]; // apply transformation
128  const Pt3D& p(ko[i]);
129  co[i] = GlobalPoint(p.x(), p.y(), p.z());
130 #ifdef EDM_ML_DEBUG
131  edm::LogVerbatim("CaloGeometry") << "Corner[" << i << "] = " << co[i];
132 #endif
133  }
134 }
CaloCellGeometry::Pt3D Pt3D
Definition: FlatTrd.h:22
Global3DPoint GlobalPoint
Definition: GlobalPoint.h:10
static constexpr unsigned int ncorner_
Definition: FlatTrd.h:93
def pv(vc)
Definition: MetAnalyzer.py:7
static void localCorners(Pt3DVec &vec, const CCGFloat *pv, Pt3D &ref)
Definition: FlatTrd.cc:136
CaloCellGeometry::Pt3D Pt3D
CaloCellGeometry::Pt3DVec Pt3DVec
tmp
align.sh
Definition: createJobs.py:716
virtual float FlatTrd::etaPos ( ) const
inlinevirtual

Definition at line 68 of file FlatTrd.h.

References PV3DBase< T, PVType, FrameType >::eta(), and m_global.

Referenced by FlatTrd(), operator<<(), and operator=().

68 { return m_global.eta(); }
T eta() const
Definition: PV3DBase.h:73
GlobalPoint m_global
Definition: FlatTrd.h:104
Pt3D FlatTrd::getLocal ( const GlobalPoint global) const

Definition at line 99 of file FlatTrd.cc.

References DTRecHitClients_cfi::local, m_tr, PV3DBase< T, PVType, FrameType >::x(), PV3DBase< T, PVType, FrameType >::y(), and PV3DBase< T, PVType, FrameType >::z().

Referenced by phiPos().

99  {
100  Pt3D local = m_tr.inverse() * Pt3D(global.x(), global.y(), global.z());
101 #ifdef EDM_ML_DEBUG
102  edm::LogVerbatim("CaloGeometry") << "FlatTrd::Global " << global.x() << ":" << global.y() << ":" << global.z()
103  << " Local " << local.x() << ":" << local.y() << ":" << local.z();
104 #endif
105  return local;
106 }
CaloCellGeometry::Pt3D Pt3D
Definition: FlatTrd.h:22
T y() const
Definition: PV3DBase.h:60
Tr3D m_tr
Definition: FlatTrd.h:105
T z() const
Definition: PV3DBase.h:61
CaloCellGeometry::Pt3D Pt3D
T x() const
Definition: PV3DBase.h:59
CCGFloat FlatTrd::getPhiAxis ( ) const

Definition at line 110 of file FlatTrd.cc.

References m_axis, and PV3DBase< T, PVType, FrameType >::phi().

Referenced by operator<<(), and phiPos().

110 { return m_axis.phi(); }
Geom::Phi< T > phi() const
Definition: PV3DBase.h:66
GlobalVector m_axis
Definition: FlatTrd.h:102
GlobalPoint const& FlatTrd::getPosition ( ) const
inlineoverridevirtual

Returns the position of reference for this cell.

Reimplemented from CaloCellGeometry.

Definition at line 66 of file FlatTrd.h.

References DTRecHitClients_cfi::local, and m_global.

Referenced by makeAxis(), and operator<<().

66 { return m_global; }
GlobalPoint m_global
Definition: FlatTrd.h:104
GlobalPoint FlatTrd::getPosition ( const Pt3D local) const
overridevirtual

Reimplemented from CaloCellGeometry.

Definition at line 87 of file FlatTrd.cc.

References glb, DTRecHitClients_cfi::local, and m_tr.

87  {
88  Pt3D glb = m_tr * local;
89 #ifdef EDM_ML_DEBUG
90  edm::LogVerbatim("CaloGeometry") << "FlatTrd::Local " << local.x() << ":" << local.y() << ":" << local.z()
91  << " Global " << glb.x() << ":" << glb.y() << ":" << glb.z() << " TR " << m_tr.xx()
92  << ":" << m_tr.xy() << ":" << m_tr.xz() << ":" << m_tr.yx() << ":" << m_tr.yy()
93  << ":" << m_tr.yz() << ":" << m_tr.zx() << ":" << m_tr.zy() << ":" << m_tr.zz()
94  << ":" << m_tr.dx() << ":" << m_tr.dy() << ":" << m_tr.dz();
95 #endif
96  return GlobalPoint(glb.x(), glb.y(), glb.z());
97 }
double glb
Definition: hdecay.h:103
Global3DPoint GlobalPoint
Definition: GlobalPoint.h:10
Tr3D m_tr
Definition: FlatTrd.h:105
CaloCellGeometry::Pt3D Pt3D
CCGFloat FlatTrd::getThetaAxis ( ) const

Definition at line 108 of file FlatTrd.cc.

References m_axis, and PV3DBase< T, PVType, FrameType >::theta().

Referenced by operator<<(), and phiPos().

108 { return m_axis.theta(); }
Geom::Theta< T > theta() const
Definition: PV3DBase.h:72
GlobalVector m_axis
Definition: FlatTrd.h:102
void FlatTrd::getTransform ( Tr3D tr,
Pt3DVec lptr 
) const
overridevirtual

--------— only needed by specific utility; overloaded when needed -—

Reimplemented from CaloCellGeometry.

Definition at line 164 of file FlatTrd.cc.

References angle(), axis(), MillePedeFileConverter_cfg::e, CaloCellGeometry::getPosition(), localCorners(), m_corOne, mag(), ncorner_, AlCaHLTBitMon_ParallelJobs::p, CaloCellGeometry::param(), unit(), x, PV3DBase< T, PVType, FrameType >::x(), y, PV3DBase< T, PVType, FrameType >::y(), z, and PV3DBase< T, PVType, FrameType >::z().

Referenced by FlatTrd(), initCorners(), and phiPos().

164  {
166  const Pt3D gFront(p.x(), p.y(), p.z());
167  const DPt3D dgFront(p.x(), p.y(), p.z());
168 
169  Pt3D lFront;
170  assert(nullptr != param());
171  std::vector<Pt3D> lc(ncorner_, Pt3D(0, 0, 0));
172  localCorners(lc, param(), lFront);
173 
174  // figure out if reflction volume or not
175 
176  Pt3D lBack(0.25 * (lc[4] + lc[5] + lc[6] + lc[7]));
177 
178  const DPt3D dlFront(lFront.x(), lFront.y(), lFront.z());
179  const DPt3D dlBack(lBack.x(), lBack.y(), lBack.z());
180  const DPt3D dlOne(lc[0].x(), lc[0].y(), lc[0].z());
181 
182  const FVec3D dgAxis(axis().x(), axis().y(), axis().z());
183 
184  const DPt3D dmOne(m_corOne.x(), m_corOne.y(), m_corOne.z());
185 
186  const DPt3D dgBack(dgFront + (dlBack - dlFront).mag() * dgAxis);
187  DPt3D dgOne(dgFront + (dlOne - dlFront).mag() * (dmOne - dgFront).unit());
188 
189  const double dlangle((dlBack - dlFront).angle(dlOne - dlFront));
190  const double dgangle((dgBack - dgFront).angle(dgOne - dgFront));
191  const double dangle(dlangle - dgangle);
192 
193  if (1.e-6 < fabs(dangle)) { //guard against precision problems
194  const DPlane3D dgPl(dgFront, dgOne, dgBack);
195  const DPt3D dp2(dgFront + dgPl.normal().unit());
196 
197  DPt3D dgOld(dgOne);
198 
199  dgOne = (dgFront + HepGeom::Rotate3D(-dangle, dgFront, dp2) * DVec3D(dgOld - dgFront));
200  }
201 
202  tr = Tr3D(dlFront, dlBack, dlOne, dgFront, dgBack, dgOne);
203 
204  if (nullptr != lptr)
205  (*lptr) = lc;
206 }
const GlobalVector & axis() const
Definition: FlatTrd.cc:112
CaloCellGeometry::Pt3D Pt3D
Definition: FlatTrd.h:22
HepGeom::Point3D< double > DPt3D
T mag() const
The vector magnitude. Equivalent to sqrt(vec.mag2())
virtual const GlobalPoint & getPosition() const
Returns the position of reference for this cell.
static constexpr unsigned int ncorner_
Definition: FlatTrd.h:93
const CCGFloat * param() const
HepGeom::Vector3D< double > DVec3D
Definition: FlatTrd.cc:17
Pt3D m_corOne
Definition: FlatTrd.h:103
static void localCorners(Pt3DVec &vec, const CCGFloat *pv, Pt3D &ref)
Definition: FlatTrd.cc:136
CaloCellGeometry::Pt3D Pt3D
HepGeom::Plane3D< double > DPlane3D
CaloCellGeometry::Tr3D Tr3D
Definition: FlatTrd.h:24
HepGeom::Vector3D< CCGFloat > FVec3D
Basic3DVector unit() const
T angle(T x1, T y1, T z1, T x2, T y2, T z2)
Definition: angle.h:11
void FlatTrd::initCorners ( CaloCellGeometry::CornersVec co)
overrideprivatevirtual

Implements CaloCellGeometry.

Definition at line 208 of file FlatTrd.cc.

References getTransform(), mps_fire::i, ncorner_, and EZArrayFL< T >::uninitialized().

208  {
209  if (co.uninitialized()) {
210  CornersVec& corners(co);
211  Pt3DVec lc;
212  Tr3D tr;
213  getTransform(tr, &lc);
214 
215  for (unsigned int i(0); i != ncorner_; ++i) {
216  const Pt3D corn(tr * lc[i]);
217  corners[i] = GlobalPoint(corn.x(), corn.y(), corn.z());
218  }
219  }
220 }
EZArrayFL< GlobalPoint > CornersVec
Global3DPoint GlobalPoint
Definition: GlobalPoint.h:10
static constexpr unsigned int ncorner_
Definition: FlatTrd.h:93
void getTransform(Tr3D &tr, Pt3DVec *lptr) const override
--------— only needed by specific utility; overloaded when needed -—
Definition: FlatTrd.cc:164
CaloCellGeometry::Pt3D Pt3D
CaloCellGeometry::Pt3DVec Pt3DVec
CaloCellGeometry::Tr3D Tr3D
bool uninitialized() const
Definition: EZArrayFL.h:63
void FlatTrd::localCorners ( Pt3DVec vec,
const CCGFloat pv,
Pt3D ref 
)
static

Definition at line 136 of file FlatTrd.cc.

References PVValHelper::dz, h, k_Alp1, k_dX1, k_dX2, k_dY1, k_dZ, ncorner_, and funct::tan().

Referenced by createCorners(), getTransform(), FastTimeGeometry::localCorners(), HGCalGeometry::localCorners(), phiPos(), and vocalCorners().

136  {
137  assert(nullptr != pv);
138  assert(ncorner_ == lc.size());
139 
140  const CCGFloat dz(pv[FlatTrd::k_dZ]);
141  const CCGFloat h(pv[FlatTrd::k_dY1]);
142  const CCGFloat bl(pv[FlatTrd::k_dX1]);
143  const CCGFloat tl(pv[FlatTrd::k_dX2]);
144  const CCGFloat a1(pv[FlatTrd::k_Alp1]);
145 
146  const CCGFloat ta1(tan(a1));
147 
148  lc[0] = Pt3D(-h * ta1 - bl, -h, -dz); // (-,-,-)
149  lc[1] = Pt3D(+h * ta1 - tl, +h, -dz); // (-,+,-)
150  lc[2] = Pt3D(+h * ta1 + tl, +h, -dz); // (+,+,-)
151  lc[3] = Pt3D(-h * ta1 + bl, -h, -dz); // (+,-,-)
152  lc[4] = Pt3D(-h * ta1 - bl, -h, dz); // (-,-,+)
153  lc[5] = Pt3D(+h * ta1 - tl, +h, dz); // (-,+,+)
154  lc[6] = Pt3D(+h * ta1 + tl, +h, dz); // (+,+,+)
155  lc[7] = Pt3D(-h * ta1 + bl, -h, dz); // (+,-,+)
156 
157  ref = 0.25 * (lc[0] + lc[1] + lc[2] + lc[3]);
158 #ifdef EDM_ML_DEBUG
159  edm::LogVerbatim("CaloGeometry") << "Ref " << ref << " Local Corners " << lc[0] << "|" << lc[1] << "|" << lc[2] << "|"
160  << lc[3] << "|" << lc[4] << "|" << lc[5] << "|" << lc[6] << "|" << lc[7];
161 #endif
162 }
FWCore Framework interface EventSetupRecordImplementation h
Helper function to determine trigger accepts.
CaloCellGeometry::Pt3D Pt3D
Definition: FlatTrd.h:22
static constexpr uint32_t k_dY1
Definition: FlatTrd.h:31
static constexpr unsigned int ncorner_
Definition: FlatTrd.h:93
static constexpr uint32_t k_dX1
Definition: FlatTrd.h:32
Tan< T >::type tan(const T &t)
Definition: Tan.h:22
def pv(vc)
Definition: MetAnalyzer.py:7
CaloCellGeometry::CCGFloat CCGFloat
static constexpr uint32_t k_dZ
Definition: FlatTrd.h:26
static constexpr uint32_t k_Alp1
Definition: FlatTrd.h:36
static constexpr uint32_t k_dX2
Definition: FlatTrd.h:34
GlobalVector FlatTrd::makeAxis ( void  )
private

Definition at line 222 of file FlatTrd.cc.

References backCtr(), getPosition(), and Vector3DBase< T, FrameTag >::unit().

Referenced by FlatTrd().

222 { return GlobalVector(backCtr() - getPosition()).unit(); }
GlobalPoint const & getPosition() const override
Returns the position of reference for this cell.
Definition: FlatTrd.h:66
GlobalPoint backCtr(void) const
Definition: FlatTrd.cc:224
Vector3DBase unit() const
Definition: Vector3DBase.h:54
Global3DVector GlobalVector
Definition: GlobalVector.h:10
FlatTrd & FlatTrd::operator= ( const FlatTrd tr)

Definition at line 28 of file FlatTrd.cc.

References etaPos(), m_axis, m_corOne, m_global, m_local, m_tr, and phiPos().

28  {
29  CaloCellGeometry::operator=(tr);
30  if (this != &tr) {
31  m_axis = tr.m_axis;
32  m_corOne = tr.m_corOne;
33  m_local = tr.m_local;
34  m_global = tr.m_global;
35  m_tr = tr.m_tr;
36  }
37 #ifdef EDM_ML_DEBUG
38  edm::LogVerbatim("CaloGeometry") << "FlatTrd(Copy): Local " << m_local << " Global " << m_global << " eta "
39  << etaPos() << " phi " << phiPos() << " Translation " << m_tr.getTranslation()
40  << " and rotation " << m_tr.getRotation();
41 #endif
42  return *this;
43 }
Tr3D m_tr
Definition: FlatTrd.h:105
Pt3D m_local
Definition: FlatTrd.h:103
Pt3D m_corOne
Definition: FlatTrd.h:103
GlobalPoint m_global
Definition: FlatTrd.h:104
virtual float phiPos() const
Definition: FlatTrd.h:69
virtual float etaPos() const
Definition: FlatTrd.h:68
GlobalVector m_axis
Definition: FlatTrd.h:102
virtual float FlatTrd::phiPos ( ) const
inlinevirtual

Definition at line 69 of file FlatTrd.h.

References axis(), createCorners(), getLocal(), getPhiAxis(), getThetaAxis(), getTransform(), localCorners(), m_global, PV3DBase< T, PVType, FrameType >::phi(), MetAnalyzer::pv(), and vocalCorners().

Referenced by FlatTrd(), operator<<(), and operator=().

69 { return m_global.phi(); }
Geom::Phi< T > phi() const
Definition: PV3DBase.h:66
GlobalPoint m_global
Definition: FlatTrd.h:104
void FlatTrd::setPosition ( const GlobalPoint p)
inline

Definition at line 88 of file FlatTrd.h.

References m_global, AlCaHLTBitMon_ParallelJobs::p, and CaloCellGeometry::setRefPoint().

88  {
89  m_global = p;
90  setRefPoint(p);
91  }
void setRefPoint(const GlobalPoint &pos)
GlobalPoint m_global
Definition: FlatTrd.h:104
void FlatTrd::vocalCorners ( Pt3DVec vec,
const CCGFloat pv,
Pt3D ref 
) const
overridevirtual

Implements CaloCellGeometry.

Definition at line 114 of file FlatTrd.cc.

References localCorners().

Referenced by phiPos().

114 { localCorners(vec, pv, ref); }
def pv(vc)
Definition: MetAnalyzer.py:7
static void localCorners(Pt3DVec &vec, const CCGFloat *pv, Pt3D &ref)
Definition: FlatTrd.cc:136

Member Data Documentation

constexpr uint32_t FlatTrd::k_Alp1 = 6
static

Definition at line 36 of file FlatTrd.h.

Referenced by HGCalGeometryLoader::build(), HGCalGeometry::getSummary(), and localCorners().

constexpr uint32_t FlatTrd::k_Alp2 = 10
static

Definition at line 43 of file FlatTrd.h.

Referenced by HGCalGeometryLoader::build(), and HGCalGeometry::getSummary().

constexpr uint32_t FlatTrd::k_Cell = 11
static
constexpr uint32_t FlatTrd::k_dX1 = 4
static

Definition at line 32 of file FlatTrd.h.

Referenced by HGCalGeometryLoader::build(), HGCalGeometry::getSummary(), and localCorners().

constexpr uint32_t FlatTrd::k_dX2 = 5
static

Definition at line 34 of file FlatTrd.h.

Referenced by HGCalGeometryLoader::build(), HGCalGeometry::getSummary(), and localCorners().

constexpr uint32_t FlatTrd::k_dX3 = 8
static

Definition at line 39 of file FlatTrd.h.

Referenced by HGCalGeometryLoader::build(), and HGCalGeometry::getSummary().

constexpr uint32_t FlatTrd::k_dX4 = 9
static

Definition at line 41 of file FlatTrd.h.

Referenced by HGCalGeometryLoader::build(), and HGCalGeometry::getSummary().

constexpr uint32_t FlatTrd::k_dY1 = 3
static

Definition at line 31 of file FlatTrd.h.

Referenced by HGCalGeometryLoader::build(), HGCalGeometry::getSummary(), and localCorners().

constexpr uint32_t FlatTrd::k_dY2 = 7
static

Definition at line 38 of file FlatTrd.h.

Referenced by HGCalGeometryLoader::build(), and HGCalGeometry::getSummary().

constexpr uint32_t FlatTrd::k_dZ = 0
static
constexpr uint32_t FlatTrd::k_Phi = 2
static

Definition at line 29 of file FlatTrd.h.

Referenced by HGCalGeometryLoader::build(), and HGCalGeometry::getSummary().

constexpr uint32_t FlatTrd::k_Theta = 1
static

Definition at line 27 of file FlatTrd.h.

Referenced by HGCalGeometryLoader::build(), and HGCalGeometry::getSummary().

GlobalVector FlatTrd::m_axis
private

Definition at line 102 of file FlatTrd.h.

Referenced by axis(), FlatTrd(), getPhiAxis(), getThetaAxis(), and operator=().

Pt3D FlatTrd::m_corOne
private

Definition at line 103 of file FlatTrd.h.

Referenced by getTransform(), and operator=().

GlobalPoint FlatTrd::m_global
private

Definition at line 104 of file FlatTrd.h.

Referenced by etaPos(), FlatTrd(), getPosition(), operator=(), phiPos(), and setPosition().

Pt3D FlatTrd::m_local
private

Definition at line 103 of file FlatTrd.h.

Referenced by backCtr(), FlatTrd(), and operator=().

Tr3D FlatTrd::m_tr
private

Definition at line 105 of file FlatTrd.h.

Referenced by backCtr(), FlatTrd(), getLocal(), getPosition(), and operator=().

constexpr unsigned int FlatTrd::ncorner_ = 8
static
constexpr unsigned int FlatTrd::ncornerBy2_ = 4
static

Definition at line 94 of file FlatTrd.h.

Referenced by backCtr(), and HGCalGeometryLoader::buildGeom().