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DTGeometryBuilderFromCondDB Class Reference

#include <DTGeometryBuilderFromCondDB.h>

Public Member Functions

void build (boost::shared_ptr< DTGeometry > theGeometry, const RecoIdealGeometry &rig)
 
 DTGeometryBuilderFromCondDB ()
 
virtual ~DTGeometryBuilderFromCondDB ()
 

Private Types

typedef
ReferenceCountingPointer
< Plane
RCPPlane
 

Private Member Functions

DTChamberbuildChamber (const DetId &id, const RecoIdealGeometry &rig, size_t idt) const
 
DTLayerbuildLayer (DTSuperLayer *sl, const DetId &id, const RecoIdealGeometry &rig, size_t idt) const
 
DTSuperLayerbuildSuperLayer (DTChamber *chamber, const DetId &id, const RecoIdealGeometry &rig, size_t idt) const
 
RCPPlane plane (const std::vector< double >::const_iterator tranStart, const std::vector< double >::const_iterator rotStart, Bounds *bounds) const
 

Detailed Description

Description:

detailed description

Author
: Stefano Lacaprara - INFN LNL stefa.nosp@m.no.l.nosp@m.acapr.nosp@m.ara@.nosp@m.pd.in.nosp@m.fn.i.nosp@m.t $date : 19/11/2008 19:14:24 CET $

Modification:

Definition at line 36 of file DTGeometryBuilderFromCondDB.h.

Member Typedef Documentation

Definition at line 66 of file DTGeometryBuilderFromCondDB.h.

Constructor & Destructor Documentation

DTGeometryBuilderFromCondDB::DTGeometryBuilderFromCondDB ( )

Definition at line 33 of file DTGeometryBuilderFromCondDB.cc.

33  {
34 }
DTGeometryBuilderFromCondDB::~DTGeometryBuilderFromCondDB ( )
virtual

Definition at line 37 of file DTGeometryBuilderFromCondDB.cc.

37  {
38 }

Member Function Documentation

void DTGeometryBuilderFromCondDB::build ( boost::shared_ptr< DTGeometry theGeometry,
const RecoIdealGeometry rig 
)

Definition at line 42 of file DTGeometryBuilderFromCondDB.cc.

References gather_cfg::cout, RecoIdealGeometry::detIds(), and RecoIdealGeometry::shapeStart().

Referenced by DTGeometryESModule::dbGeometryCallback_().

43  {
44  // cout << "DTGeometryBuilderFromCondDB " << endl;
45  const std::vector<DetId>& detids(rig.detIds());
46  // cout << "size " << detids.size() << endl;
47 
48  size_t idt = 0;
49  DTChamber* chamber(0);
50  DTSuperLayer* sl(0);
51  while(idt < detids.size()) {
52  //copy(par.begin(), par.end(), ostream_iterator<double>(std::cout," "));
53  if (int(*(rig.shapeStart(idt)))==0){ // a Chamber
54  // add the provious chamber which by now has been updated with SL and
55  // layers
56  if (chamber) theGeometry->add(chamber);
57  // go for the actual one
58  DTChamberId chid(detids[idt]);
59  //cout << "CH: " << chid << endl;
60  chamber = buildChamber(chid, rig, idt);
61  }
62  else if (int(*(rig.shapeStart(idt)))==1){ // a SL
63  DTSuperLayerId slid(detids[idt]);
64  //cout << " SL: " << slid << endl;
65  sl = buildSuperLayer(chamber, slid, rig, idt);
66  theGeometry->add(sl);
67  }
68  else if (int(*(rig.shapeStart(idt)))==2){ // a Layer
69  DTLayerId lid(detids[idt]);
70  //cout << " LAY: " << lid << endl;
71  DTLayer* lay = buildLayer(sl, lid, rig, idt);
72  theGeometry->add(lay);
73  } else {
74  cout << "What is this?" << endl;
75  }
76  ++idt;
77  }
78  if (chamber) theGeometry->add(chamber); // add the last chamber
79 }
DTChamber * buildChamber(const DetId &id, const RecoIdealGeometry &rig, size_t idt) const
const std::vector< DetId > & detIds() const
DTLayer * buildLayer(DTSuperLayer *sl, const DetId &id, const RecoIdealGeometry &rig, size_t idt) const
std::vector< double >::const_iterator shapeStart(size_t ind) const
tuple cout
Definition: gather_cfg.py:121
DTSuperLayer * buildSuperLayer(DTChamber *chamber, const DetId &id, const RecoIdealGeometry &rig, size_t idt) const
DTChamber * DTGeometryBuilderFromCondDB::buildChamber ( const DetId id,
const RecoIdealGeometry rig,
size_t  idt 
) const
private

SL the definition of length, width, thickness depends on the local reference frame of the Det

Definition at line 81 of file DTGeometryBuilderFromCondDB.cc.

References RecoIdealGeometry::rotStart(), RecoIdealGeometry::shapeStart(), RecoIdealGeometry::tranStart(), and create_public_lumi_plots::width.

83  {
84  DTChamberId detId(id);
85 
86 
87  float width = (*(rig.shapeStart(idt) + 1))/cm; // r-phi dimension - different in different chambers
88  float length = (*(rig.shapeStart(idt) + 2))/cm; // z dimension - constant 125.55 cm
89  float thickness = (*(rig.shapeStart(idt) + 3))/cm; // radial thickness - almost constant about 18 cm
90 
92  // width is along local X
93  // length is along local Y
94  // thickness is long local Z
95  RCPPlane surf(plane(rig.tranStart(idt), rig.rotStart(idt), new RectangularPlaneBounds(width, length, thickness) ));
96 
97  DTChamber* chamber = new DTChamber(detId, surf);
98 
99  return chamber;
100 }
std::vector< double >::const_iterator rotStart(size_t ind) const
ReferenceCountingPointer< Plane > RCPPlane
std::vector< double >::const_iterator tranStart(size_t ind) const
std::vector< double >::const_iterator shapeStart(size_t ind) const
RCPPlane plane(const std::vector< double >::const_iterator tranStart, const std::vector< double >::const_iterator rotStart, Bounds *bounds) const
DTLayer * DTGeometryBuilderFromCondDB::buildLayer ( DTSuperLayer sl,
const DetId id,
const RecoIdealGeometry rig,
size_t  idt 
) const
private

Definition at line 125 of file DTGeometryBuilderFromCondDB.cc.

References DTSuperLayer::add(), RecoIdealGeometry::rotStart(), RecoIdealGeometry::shapeStart(), RecoIdealGeometry::tranStart(), and create_public_lumi_plots::width.

128  {
129 
130  DTLayerId layId(id);
131 
132  // Layer specific parameter (size)
133  float width = (*(rig.shapeStart(idt) + 1))/cm; // r-phi dimension - changes in different chambers
134  float length = (*(rig.shapeStart(idt) + 2))/cm; // z dimension - constant 126.8 cm
135  float thickness = (*(rig.shapeStart(idt) + 3))/cm; // radial thickness - almost constant about 20 cm
136 
137 
138  RCPPlane surf(plane(rig.tranStart(idt), rig.rotStart(idt), new RectangularPlaneBounds(width, length, thickness) ));
139 
140  // Loop on wires
141  int firstWire=int(*(rig.shapeStart(idt) + 4 ));//par[4]);
142  int WCounter=int(*(rig.shapeStart(idt) + 5 ));//par[5]);
143  double sensibleLenght=(*(rig.shapeStart(idt) + 6 ))/cm;//par[6]/cm;
144  DTTopology topology(firstWire, WCounter, sensibleLenght);
145 
146  DTLayerType layerType;
147 
148  DTLayer* layer = new DTLayer(layId, surf, topology, layerType, sl);
149  // cout << "adding layer " << layer->id() << " to sl "<< sl->id() << endl;
150 
151  sl->add(layer);
152  return layer;
153 }
std::vector< double >::const_iterator rotStart(size_t ind) const
void add(DTLayer *l)
Add layer to the SL which owns it.
Definition: DTSuperLayer.cc:61
ReferenceCountingPointer< Plane > RCPPlane
std::vector< double >::const_iterator tranStart(size_t ind) const
std::vector< double >::const_iterator shapeStart(size_t ind) const
RCPPlane plane(const std::vector< double >::const_iterator tranStart, const std::vector< double >::const_iterator rotStart, Bounds *bounds) const
DTSuperLayer * DTGeometryBuilderFromCondDB::buildSuperLayer ( DTChamber chamber,
const DetId id,
const RecoIdealGeometry rig,
size_t  idt 
) const
private

Definition at line 103 of file DTGeometryBuilderFromCondDB.cc.

References DTChamber::add(), RecoIdealGeometry::rotStart(), RecoIdealGeometry::shapeStart(), RecoIdealGeometry::tranStart(), and create_public_lumi_plots::width.

106  {
107 
108  DTSuperLayerId slId(id);
109 
110  float width = (*(rig.shapeStart(idt) + 1))/cm; // r-phi dimension - different in different chambers
111  float length = (*(rig.shapeStart(idt) + 2))/cm; // z dimension - constant 126.8 cm
112  float thickness = (*(rig.shapeStart(idt) + 3))/cm; // radial thickness - almost constant about 5 cm
113 
114  // Ok this is the slayer position...
115  RCPPlane surf(plane(rig.tranStart(idt), rig.rotStart(idt), new RectangularPlaneBounds(width, length, thickness) ));
116 
117  DTSuperLayer* slayer = new DTSuperLayer(slId, surf, chamber);
118 
119  // cout << "adding slayer " << slayer->id() << " to chamber "<< chamber->id() << endl;
120  chamber->add(slayer);
121  return slayer;
122 }
std::vector< double >::const_iterator rotStart(size_t ind) const
ReferenceCountingPointer< Plane > RCPPlane
std::vector< double >::const_iterator tranStart(size_t ind) const
std::vector< double >::const_iterator shapeStart(size_t ind) const
void add(DTSuperLayer *sl)
Add SL to the chamber which takes ownership.
Definition: DTChamber.cc:43
RCPPlane plane(const std::vector< double >::const_iterator tranStart, const std::vector< double >::const_iterator rotStart, Bounds *bounds) const
DTGeometryBuilderFromCondDB::RCPPlane DTGeometryBuilderFromCondDB::plane ( const std::vector< double >::const_iterator  tranStart,
const std::vector< double >::const_iterator  rotStart,
Bounds bounds 
) const
private

Definition at line 156 of file DTGeometryBuilderFromCondDB.cc.

158  {
159  // extract the position
160  const Surface::PositionType posResult(*(tranStart), *(tranStart+1), *(tranStart+2));
161  // now the rotation
162  Surface::RotationType rotResult( *(rotStart+0), *(rotStart+1), *(rotStart+2),
163  *(rotStart+3), *(rotStart+4), *(rotStart+5),
164  *(rotStart+6), *(rotStart+7), *(rotStart+8) );
165 
166  return RCPPlane( new Plane( posResult, rotResult, bounds));
167 }
Definition: Plane.h:17
ReferenceCountingPointer< Plane > RCPPlane