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HGCalDDDConstants.h
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1 #ifndef HGCalCommonData_HGCalDDDConstants_h
2 #define HGCalCommonData_HGCalDDDConstants_h
3 
27 #include <CLHEP/Geometry/Point3D.h>
28 
29 #include <array>
30 #include <memory>
31 #include <string>
32 #include <vector>
33 #include <unordered_map>
34 
36 public:
38  ~HGCalDDDConstants() = default;
39 
40  std::pair<int, int> assignCell(float x, float y, int lay, int subSec, bool reco) const;
41  std::array<int, 5> assignCellHex(float x, float y, int zside, int lay, bool reco, bool extend, bool debug) const;
42  std::array<int, 3> assignCellTrap(float x, float y, float z, int lay, bool reco) const;
43  bool cassetteShiftScintillator(int layer, int iphi) const;
44  bool cassetteShiftSilicon(int layer, int waferU, int waferV) const;
45  int cassetteTile(int iphi) const {
47  }
48  std::pair<double, double> cellEtaPhiTrap(int type, int irad) const;
49  bool cellInLayer(int waferU, int waferV, int cellU, int cellV, int lay, int zside, bool reco) const;
50  double cellSizeHex(int type) const;
51  inline std::pair<double, double> cellSizeTrap(int type, int irad) const {
52  return std::make_pair(hgpar_->radiusLayer_[type][irad - 1], hgpar_->radiusLayer_[type][irad]);
53  }
54  double cellThickness(int layer, int waferU, int waferV) const;
55  int32_t cellType(int type, int waferU, int waferV, int iz, int fwdBack, int orient) const;
56  double distFromEdgeHex(double x, double y, double z) const;
57  double distFromEdgeTrap(double x, double y, double z) const;
58  void etaPhiFromPosition(const double x,
59  const double y,
60  const double z,
61  const int layer,
62  int& ieta,
63  int& iphi,
64  int& type,
65  double& wt) const;
66  inline int firstLayer() const { return hgpar_->firstLayer_; }
67  inline HGCalGeometryMode::GeometryMode geomMode() const { return mode_; }
68  int getLayer(double z, bool reco) const;
69  int getLayerOffset() const { return hgpar_->layerOffset_; }
70  HGCalParameters::hgtrap getModule(unsigned int k, bool hexType, bool reco) const;
71  std::vector<HGCalParameters::hgtrap> getModules() const;
72  inline const HGCalParameters* getParameter() const { return hgpar_; }
73  int getPhiBins(int lay) const;
74  std::pair<double, double> getRangeR(int, bool reco) const;
75  std::pair<int, int> getREtaRange(int lay) const;
76  inline const std::vector<double>& getRadiusLayer(int layer) const {
78  }
79  inline HGCalParameters::hgtrform getTrForm(unsigned int k) const { return hgpar_->getTrForm(k); }
80  inline unsigned int getTrFormN() const { return hgpar_->trformIndex_.size(); }
81  std::vector<HGCalParameters::hgtrform> getTrForms() const;
82  int getTypeTrap(int layer) const;
83  int getTypeHex(int layer, int waferU, int waferV) const;
84  std::pair<double, double> getXY(int layer, double x, double y, bool forwd) const;
85  inline int getUVMax(int type) const { return ((type == 0) ? hgpar_->nCellsFine_ : hgpar_->nCellsCoarse_); }
86  bool isHalfCell(int waferType, int cell) const;
87  bool isValidHex(int lay, int mod, int cell, bool reco) const;
88  bool isValidHex8(int lay, int waferU, int waferV, bool fullAndPart) const;
89  bool isValidHex8(int lay, int modU, int modV, int cellU, int cellV, bool fullAndPart) const;
90  bool isValidTrap(int zside, int lay, int ieta, int iphi) const;
91  int lastLayer(bool reco) const;
92  int layerIndex(int lay, bool reco) const;
93  unsigned int layers(bool reco) const;
94  unsigned int layersInit(bool reco) const;
95  inline int layerType(int lay) const {
97  }
98  std::pair<float, float> localToGlobal8(
99  int zside, int lay, int waferU, int waferV, double localX, double localY, bool reco, bool debug) const;
100  std::pair<float, float> locateCell(int cell, int lay, int type, bool reco) const;
101  std::pair<float, float> locateCell(
102  int zside, int lay, int waferU, int waferV, int cellU, int cellV, bool reco, bool all, bool norot, bool debug)
103  const;
104  std::pair<float, float> locateCell(const HGCSiliconDetId&, bool debug) const;
105  std::pair<float, float> locateCell(const HGCScintillatorDetId&, bool debug) const;
106  std::pair<float, float> locateCellHex(int cell, int wafer, bool reco) const;
107  std::pair<float, float> locateCellTrap(int zside, int lay, int ieta, int iphi, bool reco, bool debug) const;
108  inline int levelTop(int ind = 0) const { return hgpar_->levelT_[ind]; }
109  bool maskCell(const DetId& id, int corners) const;
110  inline int maxCellUV() const { return (tileTrapezoid() ? hgpar_->nCellsFine_ : 2 * hgpar_->nCellsFine_); }
111  int maxCells(bool reco) const;
112  int maxCells(int lay, bool reco) const;
113  inline int maxModules() const { return modHalf_; }
114  inline int maxModulesPerLayer() const { return maxWafersPerLayer_; }
115  int maxRows(int lay, bool reco) const;
116  inline double minSlope() const { return hgpar_->slopeMin_[0]; }
117  int modifyUV(int uv, int type1, int type2) const;
118  int modules(int lay, bool reco) const;
119  int modulesInit(int lay, bool reco) const;
120  double mouseBite(bool reco) const;
121  int numberCells(bool reco) const;
122  std::vector<int> numberCells(int lay, bool reco) const;
123  int numberCellsHexagon(int wafer) const;
124  int numberCellsHexagon(int lay, int waferU, int waferV, bool flag) const;
125  std::pair<double, double> rangeR(double z, bool reco) const;
126  std::pair<double, double> rangeRLayer(int lay, bool reco) const;
127  std::pair<double, double> rangeZ(bool reco) const;
128  std::pair<int, int> rowColumnWafer(const int wafer) const;
129  inline int sectors() const { return hgpar_->nSectors_; }
130  std::pair<int, int> simToReco(int cell, int layer, int mod, bool half) const;
131  int tileCount(int layer, int ring) const;
132  bool tileExist(int zside, int layer, int ring, int phi) const;
133  HGCalParameters::tileInfo tileInfo(int zside, int layer, int ring) const;
134  bool tilePhiEdge(double phi, int layer, int iphi) const;
135  bool tileRingEdge(double rho, int layer, int ring) const;
136  std::pair<int, int> tileRings(int layer) const;
137  inline int tileSiPM(int sipm) const { return ((sipm > 0) ? HGCalTypes::SiPMSmall : HGCalTypes::SiPMLarge); }
138  bool tileTrapezoid() const {
141  }
142  std::pair<int, int> tileType(int layer, int ring, int phi) const;
143  inline bool trapezoidFile() const {
146  }
147  inline unsigned int volumes() const { return hgpar_->moduleLayR_.size(); }
148  int waferFromCopy(int copy) const;
149  void waferFromPosition(const double x, const double y, int& wafer, int& icell, int& celltyp) const;
150  void waferFromPosition(const double x,
151  const double y,
152  const int zside,
153  const int layer,
154  int& waferU,
155  int& waferV,
156  int& cellU,
157  int& cellV,
158  int& celltype,
159  double& wt,
160  bool extend,
161  bool debug) const;
162  inline bool waferHexagon6() const {
164  }
165  inline bool waferHexagon8() const {
169  }
170  inline bool waferHexagon8File() const {
173  }
174  bool waferInLayer(int wafer, int lay, bool reco) const;
175  bool waferFullInLayer(int wafer, int lay, bool reco) const;
176  inline int waferCount(const int type) const { return ((type == 0) ? waferMax_[2] : waferMax_[3]); }
177  HGCalParameters::waferInfo waferInfo(int lay, int waferU, int waferV) const;
178  inline int waferMax() const { return waferMax_[1]; }
179  inline int waferMin() const { return waferMax_[0]; }
180  std::pair<double, double> waferParameters(bool reco) const;
181  std::pair<double, double> waferPosition(int wafer, bool reco) const;
182  std::pair<double, double> waferPosition(int lay, int waferU, int waferV, bool reco, bool debug) const;
183  inline unsigned int waferFileSize() const { return hgpar_->waferInfoMap_.size(); }
184  int waferFileIndex(unsigned int kk) const;
185  std::tuple<int, int, int> waferFileInfo(unsigned int kk) const;
186  std::tuple<int, int, int> waferFileInfoFromIndex(int kk) const;
187  inline bool waferFileInfoExist(int kk) const {
188  return (hgpar_->waferInfoMap_.find(kk) != hgpar_->waferInfoMap_.end());
189  }
191  HepGeom::Point3D<float>& loc, const DetId& id, bool useWafer, bool reco, bool debug) const;
192  inline double waferSepar(bool reco) const {
194  }
195  inline double waferSize(bool reco) const {
197  }
198  int wafers() const;
199  int wafers(int layer, int type) const;
200  inline int waferToCopy(int wafer) const {
201  return ((wafer >= 0) && (wafer < static_cast<int>(hgpar_->waferCopy_.size())))
202  ? hgpar_->waferCopy_[wafer]
203  : static_cast<int>(hgpar_->waferCopy_.size());
204  }
205  // wafer transverse thickness classification (2 = coarse, 1 = fine)
206  inline int waferTypeT(int wafer) const {
207  return ((wafer >= 0) && (wafer < static_cast<int>(hgpar_->waferTypeT_.size()))) ? hgpar_->waferTypeT_[wafer] : 0;
208  }
209  // wafer longitudinal thickness classification (1 = 100um, 2 = 200um, 3=300um)
210  inline int waferTypeL(int wafer) const {
211  return ((wafer >= 0) && (wafer < static_cast<int>(hgpar_->waferTypeL_.size()))) ? hgpar_->waferTypeL_[wafer] : 0;
212  }
213  int waferType(DetId const& id, bool fromFile) const;
214  int waferType(int layer, int waferU, int waferV, bool fromFile) const;
215  std::tuple<int, int, int> waferType(HGCSiliconDetId const& id, bool fromFile) const;
216  std::pair<int, int> waferTypeRotation(int layer, int waferU, int waferV, bool fromFile, bool debug) const;
217  inline int waferUVMax() const { return hgpar_->waferUVMax_; }
218  bool waferVirtual(int layer, int waferU, int waferV) const;
219  double waferZ(int layer, bool reco) const;
220 
221 private:
222  int cellHex(double xx,
223  double yy,
224  const double& cellR,
225  const std::vector<double>& posX,
226  const std::vector<double>& posY) const;
227  void cellHex(
228  double xloc, double yloc, int cellType, int place, int part, int& cellU, int& cellV, bool extend, bool debug)
229  const;
230  std::pair<int, float> getIndex(int lay, bool reco) const;
231  int layerFromIndex(int index, bool reco) const;
232  bool isValidCell(int layindex, int wafer, int cell) const;
233  bool isValidCell8(int lay, int waferU, int waferV, int cellU, int cellV, int type) const;
234  int32_t waferIndex(int wafer, int index) const;
235  bool waferInLayerTest(int wafer, int lay, bool full) const;
236  std::pair<double, double> waferPositionNoRot(int lay, int waferU, int waferV, bool reco, bool debug) const;
237  std::pair<double, double> waferPosition(int waferU, int waferV, bool reco) const;
238 
240  std::unique_ptr<HGCalCell> hgcell_;
241  std::unique_ptr<HGCalCellUV> hgcellUV_;
243  constexpr static double k_horizontalShift = 1.0;
244  constexpr static float dPhiMin = 0.02;
245  typedef std::array<std::vector<int32_t>, 2> Simrecovecs;
246  typedef std::array<int, 3> HGCWaferParam;
248  constexpr static double tan30deg_ = 0.5773502693;
249  constexpr static double tol_ = 0.001;
250  const double sqrt3_;
252  const bool fullAndPart_;
253  double rmax_, hexside_;
254  double rmaxT_, hexsideT_;
256  std::array<uint32_t, 2> tot_layers_;
259  std::map<int, HGCWaferParam> waferLayer_;
260  std::array<int, 4> waferMax_;
261  std::unordered_map<int32_t, bool> waferIn_;
262 };
263 
264 #endif
bool maskCell(const DetId &id, int corners) const
std::pair< double, double > rangeRLayer(int lay, bool reco) const
double waferZ(int layer, bool reco) const
bool cassetteShiftScintillator(int layer, int iphi) const
static constexpr double tol_
void waferFromPosition(const double x, const double y, int &wafer, int &icell, int &celltyp) const
std::pair< double, double > rangeZ(bool reco) const
std::pair< int, int > tileRings(int layer) const
unsigned int layersInit(bool reco) const
static constexpr int32_t WaferCenter
Definition: HGCalTypes.h:21
int waferToCopy(int wafer) const
bool isValidCell(int layindex, int wafer, int cell) const
std::pair< double, double > cellSizeTrap(int type, int irad) const
std::tuple< int, int, int > waferFileInfoFromIndex(int kk) const
int getPhiBins(int lay) const
HGCalCassette hgcassette_
std::pair< double, double > cellEtaPhiTrap(int type, int irad) const
unsigned int volumes() const
int scintType(const int layer) const
const HGCalParameters * getParameter() const
def all(container)
workaround iterator generators for ROOT classes
Definition: cmstools.py:25
bool waferInLayerTest(int wafer, int lay, bool full) const
std::pair< double, double > waferParameters(bool reco) const
std::vector< int > moduleLayR_
bool waferFullInLayer(int wafer, int lay, bool reco) const
double distFromEdgeTrap(double x, double y, double z) const
std::unique_ptr< HGCalCellUV > hgcellUV_
Simrecovecs max_modules_layer_
HGCalParameters::hgtrap getModule(unsigned int k, bool hexType, bool reco) const
std::array< std::vector< int32_t >, 2 > Simrecovecs
int32_t waferU(const int32_t index)
HGCalParameters::waferInfo waferInfo(int lay, int waferU, int waferV) const
bool trapezoidFile() const
bool isValidHex(int lay, int mod, int cell, bool reco) const
bool tileRingEdge(double rho, int layer, int ring) const
int getLayerOffset() const
std::pair< int, int > getREtaRange(int lay) const
int lastLayer(bool reco) const
int waferTypeT(int wafer) const
std::pair< double, double > getXY(int layer, double x, double y, bool forwd) const
bool waferHexagon8() const
std::pair< int, int > waferTypeRotation(int layer, int waferU, int waferV, bool fromFile, bool debug) const
int modulesInit(int lay, bool reco) const
std::unordered_map< int32_t, bool > waferIn_
int zside(DetId const &)
int layerFromIndex(int index, bool reco) const
int firstLayer() const
std::vector< uint32_t > trformIndex_
HGCalGeometryMode::GeometryMode geomMode() const
int32_t cellType(int type, int waferU, int waferV, int iz, int fwdBack, int orient) const
bool waferHexagon6() const
bool isValidHex8(int lay, int waferU, int waferV, bool fullAndPart) const
const std::vector< double > & getRadiusLayer(int layer) const
~HGCalDDDConstants()=default
hgtrform getTrForm(unsigned int k) const
std::pair< double, double > getRangeR(int, bool reco) const
HGCalGeomTools geomTools_
bool waferInLayer(int wafer, int lay, bool reco) const
constexpr std::array< uint8_t, layerIndexSize< TrackerTraits > > layer
HGCalParameters::tileInfo tileInfo(int zside, int layer, int ring) const
std::map< int, HGCWaferParam > waferLayer_
unsigned int waferFileSize() const
std::unique_ptr< HGCalCell > hgcell_
int getTypeHex(int layer, int waferU, int waferV) const
bool isHalfCell(int waferType, int cell) const
int maxCells(bool reco) const
bool waferFileInfoExist(int kk) const
std::array< int, 5 > assignCellHex(float x, float y, int zside, int lay, bool reco, bool extend, bool debug) const
int waferFileIndex(unsigned int kk) const
int maxModulesPerLayer() const
HGCalDDDConstants(const HGCalParameters *hp, const std::string &name)
int layerIndex(int lay, bool reco) const
bool cassetteShiftSilicon(int layer, int waferU, int waferV) const
Definition: GenABIO.cc:168
bool cellInLayer(int waferU, int waferV, int cellU, int cellV, int lay, int zside, bool reco) const
int getUVMax(int type) const
bool isValidCell8(int lay, int waferU, int waferV, int cellU, int cellV, int type) const
std::pair< int, int > simToReco(int cell, int layer, int mod, bool half) const
std::pair< int, float > getIndex(int lay, bool reco) const
int tileSiPM(int sipm) const
bool isValidTrap(int zside, int lay, int ieta, int iphi) const
bool waferVirtual(int layer, int waferU, int waferV) const
int tileCount(int layer, int ring) const
std::pair< int, int > assignCell(float x, float y, int lay, int subSec, bool reco) const
std::vector< HGCalParameters::hgtrap > getModules() const
double mouseBite(bool reco) const
unsigned int layers(bool reco) const
bool tileTrapezoid() const
std::pair< int, int > tileType(int layer, int ring, int phi) const
bool tilePhiEdge(double phi, int layer, int iphi) const
std::pair< float, float > locateCellTrap(int zside, int lay, int ieta, int iphi, bool reco, bool debug) const
int getTypeTrap(int layer) const
int32_t tileCassette(int32_t, int32_t, int32_t, int32_t)
double cellSizeHex(int type) const
std::vector< int > layerType_
std::pair< double, double > rangeR(double z, bool reco) const
std::pair< double, double > waferPosition(int wafer, bool reco) const
void etaPhiFromPosition(const double x, const double y, const double z, const int layer, int &ieta, int &iphi, int &type, double &wt) const
std::vector< double > slopeMin_
Definition: DetId.h:17
std::array< int, 4 > waferMax_
static constexpr double k_ScaleToDDD
int numberCellsHexagon(int wafer) const
std::array< int, 3 > assignCellTrap(float x, float y, float z, int lay, bool reco) const
#define debug
Definition: HDRShower.cc:19
std::tuple< int, int, int > waferFileInfo(unsigned int kk) const
bool tileExist(int zside, int layer, int ring, int phi) const
double minSlope() const
GlobalPoint waferLocal2Global(HepGeom::Point3D< float > &loc, const DetId &id, bool useWafer, bool reco, bool debug) const
int numberCells(bool reco) const
part
Definition: HCALResponse.h:20
std::pair< float, float > locateCellHex(int cell, int wafer, bool reco) const
double cellThickness(int layer, int waferU, int waferV) const
int waferType(DetId const &id, bool fromFile) const
std::pair< int, int > rowColumnWafer(const int wafer) const
unsigned int getTrFormN() const
HGCalParameters::hgtrform getTrForm(unsigned int k) const
std::pair< float, float > locateCell(int cell, int lay, int type, bool reco) const
bool waferHexagon8File() const
int maxRows(int lay, bool reco) const
const HGCalGeometryMode::GeometryMode mode_
int32_t waferIndex(int wafer, int index) const
std::vector< HGCalParameters::hgtrform > getTrForms() const
double waferSepar(bool reco) const
fixed size matrix
int getLayer(double z, bool reco) const
static constexpr float dPhiMin
std::array< int, 3 > HGCWaferParam
int32_t waferV(const int32_t index)
int waferTypeL(int wafer) const
std::vector< int > waferCopy_
static constexpr double tan30deg_
int cassetteTile(int iphi) const
std::vector< double > radiusLayer_[2]
std::array< uint32_t, 2 > tot_layers_
std::vector< int > waferTypeT_
int modules(int lay, bool reco) const
std::vector< int > levelT_
int modifyUV(int uv, int type1, int type2) const
waferInfo_map waferInfoMap_
std::pair< float, float > localToGlobal8(int zside, int lay, int waferU, int waferV, double localX, double localY, bool reco, bool debug) const
const HGCalParameters * hgpar_
int levelTop(int ind=0) const
T mod(const T &a, const T &b)
Definition: ecalDccMap.h:4
int cellHex(double xx, double yy, const double &cellR, const std::vector< double > &posX, const std::vector< double > &posY) const
std::vector< int > waferTypeL_
std::pair< double, double > waferPositionNoRot(int lay, int waferU, int waferV, bool reco, bool debug) const
static constexpr double k_horizontalShift
double waferSize(bool reco) const
double distFromEdgeHex(double x, double y, double z) const
int layerType(int lay) const
int waferFromCopy(int copy) const
int waferCount(const int type) const