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Go to the documentation of this file. 1 #include "DD4hep/DetFactoryHelper.h"
12 int startcn =
args.find(
"StartCopyNo") ?
args.value<
int>(
"StartCopyNo") : 1;
13 int incrcn =
args.find(
"IncrCopyNo") ?
args.value<
int>(
"IncrCopyNo") : 1;
15 double theta =
args.value<
double>(
"Theta");
16 double phi =
args.value<
double>(
"Phi");
18 double delta =
args.value<
double>(
"Delta");
19 vector<double> centre =
args.value<vector<double> >(
"Center");
20 string rotMat =
args.value<
string>(
"Rotation");
24 LogDebug(
"TrackerGeom") <<
"DDTrackerLinear +++ Executing Algorithm. rParent:" << mother.name();
25 LogDebug(
"TrackerGeom") <<
"debug: Parent " << mother.name() <<
"\tChild " <<
child.name() <<
" NameSpace "
26 << ns.
name() <<
"\tNumber " <<
number <<
"\tAxis (theta/phi) " <<
theta / dd4hep::deg <<
", "
27 << phi / dd4hep::deg <<
"\t(Offset/Delta) " <<
offset <<
", " <<
delta <<
"\tCentre "
28 << centre[0] <<
", " << centre[1] <<
", " << centre[2] <<
"\tRotation " << rotMat;
35 for (
int i = 0, ci = startcn;
i <
number;
i++, ci += incrcn) {
37 mother.placeVolume(
child, ci, Transform3D(
rot, tran));
39 LogDebug(
"TrackerGeom") <<
child.name() <<
" number " << ci <<
" positioned in " << mother.name() <<
" at " << tran
#define DECLARE_DDCMS_DETELEMENT(name, func)
Sin< T >::type sin(const T &t)
Cos< T >::type cos(const T &t)
Geom::Theta< T > theta() const
const dd4hep::Rotation3D & rotation(const std::string &name) const
static constexpr long s_executed
static long algorithm(Detector &, cms::DDParsingContext &ctxt, xml_h e)
std::string_view name() const
dd4hep::Volume volume(const std::string &name, bool exc=true) const
Namespace of DDCMS conversion namespace.