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HGCNumberingScheme.cc
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1 // File: HGCNumberingScheme.cc
3 // Description: Numbering scheme for High Granularity Calorimeter
10 
12 
13 #include "CLHEP/Units/GlobalSystemOfUnits.h"
14 #include <iostream>
15 
16 //#define EDM_ML_DEBUG
17 
19  std::string & name ) :
20  hgcons_(hgc) {
21  edm::LogInfo("HGCSim") << "Creating HGCNumberingScheme for " << name;
22 }
23 
25  edm::LogInfo("HGCSim") << "Deleting HGCNumberingScheme";
26 }
27 
28 //
30  int module, int cell, int iz,
31  const G4ThreeVector &pos) {
32  // module is the sector # for square cell
33  // the copy number of the wafer as placed in the layer
34  int phiSector(0), icell(0), celltyp(0), wafer(0);
35  uint32_t index(0);
37  std::pair<int,int> phicell = hgcons_.assignCell(pos.x(),pos.y(),layer,0,false);
38  phiSector = phicell.first;
39  icell = phicell.second;
40 
41  //build the index
42  index = HGCalTestNumbering::packSquareIndex(iz,layer,module,phiSector,icell);
43  //check if it fits
44  if (!hgcons_.isValid(layer,module,icell,false)) {
45  index = 0;
46  }
48  if (cell >= 0) {
49  wafer = hgcons_.waferFromCopy(module);
50  celltyp = cell/1000;
51  icell = cell%1000;
52  } else {
53  hgcons_.waferFromPosition(pos.x(),pos.y(),wafer,icell,celltyp);
54  }
55  if (celltyp != 1) celltyp = 0;
56  index = HGCalTestNumbering::packHexagonIndex((int)subdet,iz,layer,wafer,
57  celltyp,icell);
58  } else {
59  wafer = hgcons_.waferFromCopy(module);
60  celltyp = cell/1000;
61  icell = cell%1000;
62  if (celltyp != 1) celltyp = 0;
63 
64  index = HGCalTestNumbering::packHexagonIndex((int)subdet,iz,layer,wafer,
65  celltyp,icell);
66  //check if it fits
67  if (!hgcons_.isValid(layer,wafer,icell,false)) {
68  index = 0;
69  edm::LogError("HGCSim") << "[HGCNumberingScheme] ID out of bounds :"
70  << " Subdet= " << subdet << " Zside= " << iz
71  << " Layer= " << layer << " Wafer= " << wafer
72  << ":" << module << " CellType= " << celltyp
73  << " Cell= " << icell;
74  }
75  }
76 #ifdef EDM_ML_DEBUG
77  std::cout << "HGCNumberingScheme::i/p " << subdet << ":" << layer << ":"
78  << module << ":" << iz << ":";
80  std::cout << pos << " o/p " << phiSector << ":" << icell;
81  else
82  std::cout << wafer << ":" << celltyp << ":" << icell;
83  std::cout << ":" << std::hex << index << std::dec << std::endl;
84 #endif
85  return index;
86 }
87 
88 //
89 int HGCNumberingScheme::assignCell(float x, float y, int layer) {
90 
91  std::pair<int,int> phicell = hgcons_.assignCell(x,y,layer,0,false);
92  return phicell.second;
93 }
94 
95 //
96 std::pair<float,float> HGCNumberingScheme::getLocalCoords(int cell, int layer){
97 
98  return hgcons_.locateCell(cell,layer,0,false);
99 }
bool isValid(int lay, int mod, int cell, bool reco) const
int assignCell(float x, float y, int layer)
maps a hit position to a sequential cell in a trapezoid surface defined by h,b,t
std::pair< float, float > getLocalCoords(int cell, int layer)
inverts the cell number in a trapezoid surface to local coordinates
void waferFromPosition(const double x, const double y, int &wafer, int &icell, int &celltyp) const
static uint32_t packHexagonIndex(int subdet, int z, int lay, int wafer, int celltyp, int cell)
uint32_t getUnitID(ForwardSubdetector subdet, int layer, int module, int cell, int iz, const G4ThreeVector &pos)
assigns the det id to a hit
std::pair< float, float > locateCell(int cell, int lay, int type, bool reco) const
ForwardSubdetector
HGCalGeometryMode::GeometryMode geomMode() const
int waferFromCopy(int copy) const
std::pair< int, int > assignCell(float x, float y, int lay, int subSec, bool reco) const
static uint32_t packSquareIndex(int z, int lay, int sec, int subsec, int cell)
Definition: vlib.h:208
const HGCalDDDConstants & hgcons_