1 #ifndef __JDETECTOR__JMODULE__
2 #define __JDETECTOR__JMODULE__
32 namespace JDETECTOR {}
33 namespace JPP {
using namespace JDETECTOR; }
148 const double precision = 1.0e-3)
150 if (first.size() == second.size()) {
152 for (
size_t i = 0;
i != first.size(); ++
i) {
198 if (index >= (
int) size()) {
202 (*this)[index] = pmt;
218 if (this->size() > 1
u) {
226 for (const_iterator pmt = this->begin(); pmt != this->end(); ++pmt) {
228 const double xx = 1.0 - pmt->getDX() * pmt->getDX();
229 const double yy = 1.0 - pmt->getDY() * pmt->getDY();
230 const double zz = 1.0 - pmt->getDZ() * pmt->getDZ();
232 const double xy = -pmt->getDX() * pmt->getDY();
233 const double xz = -pmt->getDX() * pmt->getDZ();
234 const double yz = -pmt->getDY() * pmt->getDZ();
245 x += xx * pmt->getX() + xy * pmt->getY() + xz * pmt->getZ();
246 y += xy * pmt->getX() + yy * pmt->getY() + yz * pmt->getZ();
247 z += xz * pmt->getX() + yz * pmt->getY() + zz * pmt->getZ();
256 return JVector3D(V.a00 * x + V.a01 * y + V.a02 * z,
257 V.a10 * x + V.a11 * y + V.a12 * z,
258 V.a20 * x + V.a21 * y + V.a22 * z);
286 if (!this->empty()) {
293 catch(
const exception&) {
297 for (
iterator i = this->begin();
i != this->end(); ++
i) {
298 pos.
add(
i->getPosition());
318 for (
iterator i = this->begin();
i != this->end(); ++
i) {
333 for (
iterator i = this->begin();
i != this->end(); ++
i) {
350 for (
iterator i = this->begin();
i != this->end(); ++
i) {
351 i->transform(R, pos);
365 for (
iterator i = this->begin();
i != this->end(); ++
i) {
380 for (
iterator i = this->begin();
i != this->end(); ++
i) {
395 for (
iterator i = this->begin();
i != this->end(); ++
i) {
505 return this->
add(pos);
517 return this->
sub(pos);
542 in >>
static_cast<JStatus&
> (module);
549 for (
JPMT pmt; n != 0 && in >> pmt; --
n) {
550 module.push_back(pmt);
573 out << static_cast<const JModuleIdentifier&>(module);
575 out << static_cast<const JLocation&> (module);
579 out << static_cast<const JPosition3D&> (module);
581 out << static_cast<const JQuaternion3D&>(module);
583 out << static_cast<const JCalibration&> (module);
588 out << static_cast<const JStatus&> (module);
591 out <<
' ' << module.size() << endl;
593 for (const_iterator
i = module.begin();
i != module.end(); ++
i) {
594 out <<
' ' << *
i << endl;;
622 in >>
static_cast<JStatus&
> (module);
631 for (JModule::iterator out = module.begin(); n != 0; --
n, ++out) {
652 out << static_cast<const JModuleIdentifier&>(module);
653 out << static_cast<const JLocation&> (module);
656 out << static_cast<const JPosition3D&> (module);
657 out << static_cast<const JQuaternion3D&>(module);
658 out << static_cast<const JCalibration&> (module);
662 out << static_cast<const JStatus&> (module);
665 int n = module.size();
669 for (const_iterator
i = module.begin();
i != module.end(); ++
i) {
friend JReader & operator>>(JReader &in, JModule &module)
Read module from input.
Interface for binary output.
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static void setVersion(const JVersion &version)
Set detector version.
Data structure for a composite optical module.
JPosition3D & rotate_back(const JRotation3D &R)
Rotate back.
JModule & operator-=(const JVector3D &pos)
Subtract position.
JModule & add(const double t0)
Add time offset.
std::iterator_traits< T >::value_type getAverage(T __begin, T __end)
Get average.
void reset(const int bit)
Reset PMT status.
Data structure for time calibration.
V(JDAQEvent-JTriggerReprocessor)*1.0/(JDAQEvent+1.0e-10)
double getDot(const JAngle3D &angle) const
Get dot product.
void transform(const JRotation3D &R, const JVector3D &pos)
Transform position.
friend JWriter & operator<<(JWriter &out, const JModule &module)
Write module to output.
void rotate(const JQuaternion3D &Q)
Rotate module.
JModule()
Default constructor.
then echo The file $DIR KM3NeT_00000001_00000000 root already please rename or remove it first
JModule & sub(const JVector3D &pos)
Subtract position.
JVector3D & sub(const JVector3D &vector)
Subtract vector.
void transform(const JTransformation3D &T)
Transformation of geometry.
JDirection3D getDirection(const Vec &dir)
Get direction.
Data structure for vector in three dimensions.
Version with quaternion and time offset per module.
JModule & sub(const double t0)
Subtract time offset.
Logical location of module.
bool has(const int bit) const
Test PMT status.
void set(const int bit)
Set PMT status.
const array_type< JValue_t > & make_array(const JValue_t(&array)[N])
Method to create array of values.
do set_variable OUTPUT_DIRECTORY $WORKDIR T
Auxiliary class for handling status.
Data structure for PMT geometry, calibration and status.
void compile()
Compile module data.
Data structure for detector version.
void rotate_back(const JQuaternion3D &Q)
Rotate back module.
JModule(const int id, const JLocation &location)
Constructor.
void setPMT(const int index, const JPMT &pmt)
Set PMT.
void rotate_back(const JRotation3D &R)
Rotate back module.
JVector3D getCenter() const
Get center of module based on crossing point of PMT axes.
Interface for binary input.
const JPosition3D & getPosition() const
Get position.
const JPMT & getPMT(const int index) const
Get PMT.
void rotate(const JRotation3D &R)
Rotate module.
JModule & operator+=(const JVector3D &pos)
Add position.
Logical location of module.
static const JGetDetectorVersion getDetectorVersion
Function object to map detector version to numerical value.
const JRotation3D & getRotation() const
Get rotation.
Data structure for unit quaternion in three dimensions.
then JCookie sh JDataQuality D $DETECTOR_ID R
static JDetectorVersion & getVersion()
Get detector version.
friend std::ostream & operator<<(std::ostream &out, const JModule &module)
Write module to output.
friend std::istream & operator>>(std::istream &in, JModule &module)
Read module from input.
Data structure for PMT geometry and calibration.
Auxiliary class for object identification.
JPosition3D()
Default constructor.
void setCalibration(const JCalibration &cal)
Set calibration.
void transform(const JRotation3D &R, const JVector3D &pos)
Transformation of geometry (see method JGEOMETRY3D::JPosition3D::transform(const JRotation3D&, const JVector3D&)).
JModule & set(const double t0)
Set time offset.
JPMT & getPMT(const int index)
Get PMT.
Base class for data structures with artithmetic capabilities.
Data structure for position in three dimensions.
Exception for accessing a value in a collection that is outside of its range.
JVector3D & div(const double factor)
Scale vector.
Data structure for normalised vector in three dimensions.
Version with module status field.
Auxiliary class for version identifier.
then fatal Wrong number of arguments fi set_variable DETECTOR $argv[1] set_variable INPUT_FILE $argv[2] eval JPrintDetector a $DETECTOR O IDENTIFIER eval JPrintDetector a $DETECTOR O SUMMARY JAcoustics sh $DETECTOR_ID source JAcousticsToolkit sh CHECK_EXIT_CODE typeset A EMITTERS get_tripods $WORKDIR tripod txt EMITTERS get_transmitters $WORKDIR transmitter txt EMITTERS for EMITTER in
JPosition3D & rotate(const JRotation3D &R)
Rotate.
JModule & set(const JVector3D &pos)
Set position.
static bool compare(const JModule &first, const JModule &second, const double precision=1.0e-3)
Compare modules.
JVector3D & add(const JVector3D &vector)
Add vector.
JModule & add(const JVector3D &pos)
Add position.
JVector3D()
Default constructor.
double getT0() const
Get time offset.