48 std::vector<std::string>
tag_;
64 edm::LogVerbatim(
"HGCalGeom") <<
"DDHGCalWaferFullRotated: Creating an instance";
76 thick_ = nArgs[
"ModuleThickness"];
88 tag_ = vsArgs[
"WaferPlacementIndex"];
102 std::ostringstream st1;
103 for (
unsigned int i = 0;
i <
layers_.size(); ++
i)
107 nCells_ = (int)(nArgs[
"NCells"]);
115 std::ostringstream st2;
127 edm::LogVerbatim(
"HGCalGeom") <<
"==>> Executing DDHGCalWaferFullRotated...";
130 static constexpr
double tol = 0.00001;
131 static const double sqrt3 =
std::sqrt(3.0);
133 double RM2 = rM / sqrt3;
135 double R2 = r2 / sqrt3;
138 for (
unsigned int k = 0;
k <
tag_.size(); ++
k) {
140 std::vector<double> xM = {rM, 0, -rM, -rM, 0, rM};
141 std::vector<double> yM = {RM2, 2 * RM2, RM2, -RM2, -2 * RM2, -RM2};
143 std::vector<double> zx(2, 0), zy(2, 0),
scale(2, 1.0);
151 edm::LogVerbatim(
"HGCalGeom") <<
"DDHGCalWaferFullRotated: " << solid.
name() <<
" extruded polygon made of "
152 << matName <<
" z|x|y|s (0) " << zw[0] <<
":" << zx[0] <<
":" << zy[0] <<
":"
153 << scale[0] <<
" z|x|y|s (1) " << zw[1] <<
":" << zx[1] <<
":" << zy[1] <<
":"
154 << scale[1] <<
" and " << xM.size() <<
" edges";
155 for (
unsigned int kk = 0;
kk < xM.size(); ++
kk)
160 std::vector<double> xL = {
r2, 0, -
r2, -
r2, 0, r2};
161 std::vector<double> yL = {R2, 2 * R2, R2, -R2, -2 * R2, -R2};
162 std::vector<DDLogicalPart> glogs(
materials_.size());
166 double zi(-0.5 *
thick_), thickTot(0.0);
167 for (
unsigned int l = 0;
l <
layers_.size();
l++) {
184 edm::LogVerbatim(
"HGCalGeom") <<
"DDHGCalWaferFullRotated: " << solid.
name() <<
" extruded polygon made of "
185 << matN <<
" z|x|y|s (0) " << zw[0] <<
":" << zx[0] <<
":" << zy[0] <<
":"
186 << scale[0] <<
" z|x|y|s (1) " << zw[1] <<
":" << zx[1] <<
":" << zy[1] <<
":"
187 << scale[1] <<
" and " << xL.size() <<
" edges";
188 for (
unsigned int kk = 0;
kk < xL.size(); ++
kk)
197 <<
" positioned in " << glogM.
name() <<
" at " << tran0 <<
" with no rotation";
204 for (
int u = 0; u < 2 *
nCells_; ++u) {
206 if (((
v - u) < nCells_) && ((u -
v) <= nCells_)) {
209 double yp = xy1.second;
210 double xp = xy1.first;
219 <<
"DDHGCalWaferFullRotated: " <<
cellNames_[cell] <<
" number " << copy <<
" positioned in "
220 << glogs[
i].name() <<
" at " << tran <<
" with no rotation";
229 edm::LogError(
"HGCalGeom") <<
"Thickness of the partition " <<
thick_ <<
" is smaller than " << thickTot
230 <<
": thickness of all its components **** ERROR ****";
232 edm::LogWarning(
"HGCalGeom") <<
"Thickness of the partition " <<
thick_ <<
" does not match with " << thickTot
233 <<
" of the components";
Log< level::Info, true > LogVerbatim
void execute(DDCompactView &cpv) override
static int32_t packCellTypeUV(int type, int u, int v)
constexpr char const * layerName[numberOfLayers]
std::pair< int32_t, int32_t > HGCalCellUV2Cell(int32_t u, int32_t v, int32_t placementIndex, int32_t type)
void position(const DDLogicalPart &self, const DDLogicalPart &parent, const std::string ©no, const DDTranslation &trans, const DDRotation &rot, const DDDivision *div=nullptr)
DDMaterial is used to define and access material information.
std::vector< int > cellOffset_
std::vector< int > copyNumber_
DDName is used to identify DDD entities uniquely.
static std::string & ns()
void initialize(const DDNumericArguments &nArgs, const DDVectorArguments &vArgs, const DDMapArguments &mArgs, const DDStringArguments &sArgs, const DDStringVectorArguments &vsArgs) override
Log< level::Error, false > LogError
Compact representation of the geometrical detector hierarchy.
~DDHGCalWaferFullRotated() override
A DDSolid represents the shape of a part.
std::vector< int > layers_
Represents a uniquely identifyable rotation matrix.
U second(std::pair< T, U > const &p)
std::vector< int > layerType_
std::vector< int > orient_
Abs< T >::type abs(const T &t)
std::vector< double > layerThick_
A DDLogicalPart aggregates information concerning material, solid and sensitveness ...
std::vector< std::string > cellNames_
static int32_t HGCalCellPlacementIndex(int32_t iz, int32_t fwdBack, int32_t orient)
std::vector< std::string > tag_
std::pair< double, double > HGCalCellUV2XY1(int32_t u, int32_t v, int32_t placementIndex, int32_t type)
std::vector< int > dbl_to_int(const std::vector< double > &vecdbl)
Converts a std::vector of doubles to a std::vector of int.
DDHGCalWaferFullRotated()
static DDSolid extrudedpolygon(const DDName &name, const std::vector< double > &x, const std::vector< double > &y, const std::vector< double > &z, const std::vector< double > &zx, const std::vector< double > &zy, const std::vector< double > &zscale)
std::vector< std::string > materials_
std::vector< std::string > layerNames_
auto zw(V v) -> Vec2< typename std::remove_reference< decltype(v[0])>::type >
#define DEFINE_EDM_PLUGIN(factory, type, name)
Log< level::Warning, false > LogWarning
std::pair< std::string, std::string > DDSplit(const std::string &n)
split into (name,namespace), separator = ':'
ROOT::Math::DisplacementVector3D< ROOT::Math::Cartesian3D< double > > DDTranslation