1 #ifndef __JDETECTOR__JDETECTORTOOLKIT__ 
    2 #define __JDETECTOR__JDETECTORTOOLKIT__ 
   41 namespace JDETECTOR {}
 
   42 namespace JPP { 
using namespace JDETECTOR; }
 
   63   static const char* 
const GDML_SCHEMA                 = getenv(
"GDML_SCHEMA_DIR");  
 
   80     for (JDetector::const_iterator i = detector.begin(); i != detector.end(); ++i) {
 
   81       for (JDetector::const_iterator 
j = detector.begin(); 
j != i; ++
j) {
 
   82         if (
getDistance(i->getPosition(), 
j->getPosition()) > dmax) {
 
  102     const double phi = atan2(dir.
getDY(), dir.
getDZ())*(180.0/
PI);
 
  123     return asin(-dir.
getDX())*(180.0/
PI);
 
  142     const double DEFAULT_CAN_MARGIN_M   = 350.0;  
 
  143     const double DEFAULT_WORLD_MARGIN_M =  50.0;  
 
  145     const JCylinder3D cylinder(detector.begin(), detector.end());
 
  152       cerr << 
"CAN_MARGIN_M not defined! Setting standard CAN_MARGIN_M " << DEFAULT_CAN_MARGIN_M << 
" m." << endl;
 
  153       can_margin = DEFAULT_CAN_MARGIN_M; 
 
  156     const double WorldCylinderHeight = 2*(cylinder.getZmax() - cylinder.getZmin() + can_margin + DEFAULT_WORLD_MARGIN_M);
 
  157     const double WorldRadius         = cylinder.getLength() + cylinder.getRadius() + can_margin + DEFAULT_WORLD_MARGIN_M;
 
  159     const double Crust_Z_size     =  WorldCylinderHeight/2;
 
  160     const double Crust_Z_position = -WorldCylinderHeight/4;                     
 
  162     out << 
"<?xml version=\"1.0\" encoding=\"UTF-8\" ?>\n<gdml xmlns:gdml=\"http://cern.ch/2001/Schemas/GDML\" xmlns:xsi=\"http://www.w3.org/2001/XMLSchema-instance\" xsi:noNamespaceSchemaLocation=\"";
 
  164       cerr << 
"GDML_SCHEMA_DIR NOT DEFINED! Setting default path." << endl;
 
  171     out << 
"<rotation name=\"identity\"/>\n<position name=\"zero\"/>\n";
 
  175     for (JDetector::const_iterator module = detector.begin(); module != detector.end(); ++module) {
 
  177       if (module->getFloor() != 0) {
 
  179         const JVector3D center = module->getCenter();
 
  181         out << 
"<position name=\"PosString" << module->getString() << 
"_Dom" << module->getID() << 
"\" unit=\"m\" x=\"" << module->
getX() << 
"\" y=\"" << module->getY() << 
"\" z=\"" << module->getZ() << 
"\"/>\n";
 
  183         for (JModule::const_iterator pmt = module->begin(); pmt != module->end(); ++pmt) {
 
  186           out << 
"<position name=\"CathodPosition" << pmt->getID() << 
"_" << module->getID() << 
"\" unit=\"m\" x=\"" << vec.
getX() << 
"\" y=\"" << vec.
getY() << 
"\" z=\"" << vec.
getZ() << 
"\"/>\n";
 
  187           out << 
"<rotation name=\"CathodRotation" << pmt->getID() << 
"_" << module->getID() << 
"\" unit=\"deg\" x=\"" << 
GetXrotationG4(*pmt) << 
"\" y=\"" << 
GetYrotationG4(*pmt) << 
"\" z=\"0.000000\"/>\n";
 
  188           out << 
"<constant name=\"CathodID_" << PMTs_NO << 
"\" value=\"" << pmt->getID() << 
"\"/>\n";
 
  194     out << 
"<position name=\"OMShift\" unit=\"m\" x=\"0\" y=\"0\" z=\"0.0392\"/>\n";
 
  196     out << 
"<!-- end of DU position definitions -->\n<position name=\"CrustPosition\"   unit=\"m\" x=\"0\" y=\"0\" z=\"" << Crust_Z_position << 
"\"/>\n";
 
  198     out << 
"</define>\n";
 
  199     out << 
"<materials>\n";
 
  200     out << 
"</materials>\n";
 
  202     out << 
"    <box name=\"CrustBox\" lunit=\"m\" x=\"2200\" y=\"2200\" z=\"" << Crust_Z_size << 
"\"/>\n";
 
  203     out << 
"    <box name=\"StoreyBox\" lunit=\"m\" x=\"0.6\" y=\"0.6\" z=\"0.6\"/>\n";
 
  204     out << 
"    <sphere name=\"OMSphere\" lunit=\"cm\" aunit=\"deg\" rmin=\"0.0\" rmax=\"21.6\" startphi=\"0.0\" deltaphi=\"360.0\" starttheta=\"0.0\" deltatheta=\"180.0\"/>\n";
 
  205     out << 
"    <tube name=\"CathodTube\" lunit=\"cm\" aunit=\"deg\" rmin=\"0.0\" rmax=\"4.7462\" z=\"0.5\" startphi=\"0.0\" deltaphi=\"360.0\"/>\n";
 
  206     out << 
"    <tube name=\"WorldTube\" lunit=\"m\" aunit=\"deg\" rmin=\"0.0\" rmax=\"" << WorldRadius << 
"\" z=\"" << WorldCylinderHeight << 
"\" startphi=\"0.0\" deltaphi=\"360.0\"/>\n";    
 
  207     out << 
"</solids>\n\n\n";
 
  209     out << 
"<structure>\n";
 
  210     out << 
"    <volume name=\"CathodVolume\">\n";
 
  211     out << 
"            <materialref ref=\"Cathod\"/>\n";
 
  212     out << 
"            <solidref ref=\"CathodTube\"/>\n";
 
  213     out << 
"    </volume>\n";
 
  215     out << 
"<!-- OMVolume(s) construction -->\n";
 
  217     for (JDetector::const_iterator module = detector.begin(); module != detector.end(); ++module) {
 
  219       out << 
"  <volume name=\"OMVolume" << module->getID() << 
"\">\n";
 
  220       out << 
"          <materialref ref=\"Water\"/>\n";
 
  221       out << 
"          <solidref ref=\"OMSphere\"/>\n";
 
  223       for (JModule::const_iterator pmt = module->begin(); pmt != module->end(); ++pmt) {
 
  224         out << 
"                <physvol>\n";
 
  225         out << 
"                        <volumeref ref=\"CathodVolume\"/>\n";
 
  226         out << 
"                        <positionref ref=\"CathodPosition" << pmt->getID() << 
"_" << module->getID() << 
"\"/>\n";
 
  227         out << 
"                        <rotationref ref=\"CathodRotation" << pmt->getID() << 
"_" << module->getID() << 
"\"/>\n";
 
  228         out << 
"                </physvol>\n";
 
  231       out << 
"  </volume>\n";
 
  234     out << 
"<!-- StoreyVolume(s) construction -->\n";
 
  236     for (JDetector::const_iterator module = detector.begin(); module != detector.end(); ++module) {
 
  237       out << 
"  <volume name=\"StoreyVolume" << module->getID() << 
"\">\n";
 
  238       out << 
"          <materialref ref=\"Water\"/>\n";
 
  239       out << 
"          <solidref ref=\"StoreyBox\"/>\n";
 
  240       out << 
"          <physvol>\n";
 
  241       out << 
"                  <volumeref ref=\"OMVolume" << module->getID() << 
"\"/>\n";
 
  242       out << 
"                  <positionref ref=\"OMShift\"/>\n";
 
  243       out << 
"                  <rotationref ref=\"identity\"/>\n";
 
  244       out << 
"          </physvol>\n";
 
  245       out << 
"  </volume>\n";
 
  248     out << 
"<!-- Crust Volume construction-->\n";
 
  249     out << 
"<volume name=\"CrustVolume\">\n";
 
  250     out << 
"    <materialref ref=\"Crust\"/>\n";
 
  251     out << 
"    <solidref ref=\"CrustBox\"/>\n";
 
  252     out << 
"</volume>\n";
 
  254     out << 
"<!-- World Volume construction-->\n";
 
  255     out << 
"<volume name=\"WorldVolume\">\n";
 
  256     out << 
"    <materialref ref=\"Water\"/>\n";
 
  257     out << 
"    <solidref ref=\"WorldTube\"/>\n";
 
  259     out << 
"    <physvol>\n";
 
  260     out << 
"            <volumeref ref=\"CrustVolume\"/>\n";
 
  261     out << 
"            <positionref ref=\"CrustPosition\"/>\n";
 
  262     out << 
"            <rotationref ref=\"identity\"/>\n";
 
  263     out << 
"    </physvol>\n";
 
  265     for (JDetector::const_iterator module = detector.begin(); module != detector.end(); ++module) {
 
  266       out << 
"  <physvol>\n";
 
  267       out << 
"          <volumeref ref=\"StoreyVolume" << module->getID() << 
"\"/>\n";
 
  268       out << 
"          <positionref ref=\"PosString" <<  module->getString()  << 
"_Dom" <<  module->getID()  << 
"\"/>\n";
 
  269       out << 
"                  <rotationref ref=\"identity\"/>\n";
 
  270       out << 
"  </physvol>\n";  
 
  273     out << 
"</volume>\n";
 
  275     out << 
"</structure>\n";
 
  276     out << 
"<setup name=\"Default\" version=\"1.0\">\n";
 
  277     out << 
"<world ref=\"WorldVolume\"/>\n";
 
  328     if (!module.empty()) {
 
  332       for (JModule::const_iterator pmt = module.begin(); pmt != module.end(); ++pmt) {
 
  336         time_range.include(
putTime(timeRange.getLowerLimit(), calibration));
 
  337         time_range.include(
putTime(timeRange.getUpperLimit(), calibration));
 
  357     return module.size();
 
  369     int number_of_pmts = 0;
 
  371     for (JDetector::const_iterator module = detector.begin(); module != detector.end(); ++module) {
 
  375     return number_of_pmts;
 
  389     for (JDetector::const_iterator module = detector.begin(); module != detector.end(); ++module) {
 
  390       buffer.insert(module->getString());
 
  407     for (JDetector::const_iterator module = detector.begin(); module != detector.end(); ++module) {
 
  408       buffer.insert(module->getFloor());
 
  411     return buffer.size();
 
  425     for (JDetector::const_iterator module = detector.begin(); module != detector.end(); ++module) {
 
  426       buffer.insert(module->getID());
 
  429     return buffer.size();
 
  454       ifstream 
in(file_name.c_str());
 
  464       detector.swap(buffer);
 
  480       ifstream 
in(file_name.c_str());
 
  536       std::ofstream out(file_name.c_str());
 
  552       std::ofstream out(file_name.c_str());
 
  584     module.resize(memo.size());
 
  645     if (module.empty()) {
 
  649       const double R  = 0.5;           
 
  651       const double st = sin(0.75*
PI);
 
  652       const double ct = cos(0.75*
PI);
 
  654       for (
int i = 0; i != 3; ++i) {
 
  656         const double phi = (2.0*
PI*i) / 3.0;
 
  657         const double cp  = cos(phi);
 
  658         const double sp  = sin(phi);
 
  675     static const size_t NUMBER_OF_DIMENSIONS = 3;    
 
  689       if (first.size() == second.size()) {
 
  691         const size_t N = first.size();
 
  693         if (N >= NUMBER_OF_DIMENSIONS) {
 
  698           for (
size_t i = 0; i != 
N; ++i) {
 
  703           for (
size_t i = 0; i != NUMBER_OF_DIMENSIONS; ++i) {
 
  704             if (!orthonormalise(i)) {
 
  709           this->a00 = out[0].getX() * 
in[0].getX()  +  out[1].getX() * 
in[1].getX()  +  out[2].getX() * 
in[2].getX();
 
  710           this->a01 = out[0].getX() * 
in[0].getY()  +  out[1].getX() * 
in[1].getY()  +  out[2].getX() * 
in[2].getY();
 
  711           this->a02 = out[0].getX() * 
in[0].getZ()  +  out[1].getX() * 
in[1].getZ()  +  out[2].getX() * 
in[2].getZ();
 
  713           this->a10 = out[0].getY() * 
in[0].getX()  +  out[1].getY() * 
in[1].getX()  +  out[2].getY() * 
in[2].getX();
 
  714           this->a11 = out[0].getY() * 
in[0].getY()  +  out[1].getY() * 
in[1].getY()  +  out[2].getY() * 
in[2].getY();
 
  715           this->a12 = out[0].getY() * 
in[0].getZ()  +  out[1].getY() * 
in[1].getZ()  +  out[2].getY() * 
in[2].getZ();
 
  717           this->a20 = out[0].getZ() * 
in[0].getX()  +  out[1].getZ() * 
in[1].getX()  +  out[2].getZ() * 
in[2].getX();
 
  718           this->a21 = out[0].getZ() * 
in[0].getY()  +  out[1].getZ() * 
in[1].getY()  +  out[2].getZ() * 
in[2].getY();
 
  719           this->a22 = out[0].getZ() * 
in[0].getZ()  +  out[1].getZ() * 
in[1].getZ()  +  out[2].getZ() * 
in[2].getZ();
 
  723           THROW(
JException, 
"Module " << first.
getID() << 
" size " << N << 
" < " << NUMBER_OF_DIMENSIONS);
 
  728         THROW(
JException, 
"Module " << first.
getID() << 
" size " << first.size() << 
" != " << second.size());
 
  743     bool orthonormalise(
const size_t index, 
const double precision = std::numeric_limits<double>::epsilon())
 
  749       for (
size_t i = index + 1; i != 
in.size(); ++i) {
 
  750         if (
in[i].getLengthSquared() > 
in[pos].getLengthSquared()) {
 
  755       const double u = 
in[pos].getLength();
 
  763           swap(
in [pos], 
in [index]);
 
  764           swap(out[pos], out[index]);
 
  767         for (
size_t i = index + 1; i != 
in.size(); ++i) {
 
  769           const double dot = 
in[index].getDot(
in[i]);
 
  771           in [i] -= dot * 
in [index];
 
  772           out[i] -= dot * out[index];
 
Exception for opening of file. 
 
double GetYrotationG4(const JVersor3D dir)
Get rotation over Y axis in Geant4 coordinate system. 
 
Data structure for a composite optical module. 
 
void setLocation(const JLocation &location)
Set location. 
 
const JCalibration & getCalibration() const 
Get calibration. 
 
double getIndexOfRefraction()
Get average index of refraction of water corresponding to group velocity. 
 
const JDirection3D & getDirection() const 
Get direction. 
 
JTOOLS::JRange< double > JTimeRange
Type definition for time range (unit [ns]). 
 
#define THROW(JException_t, A)
Marco for throwing exception with std::ostream compatible message. 
 
std::set< int > getStringIDs(const JDetector &detector)
Get list of strings IDs. 
 
int getNumberOfPMTs(const JModule &module)
Get number of PMTs. 
 
static JRotation getRotation
Function object to get rotation matrix to go from first to second module. 
 
JCalibration getCalibration(const JCalibration &first, const JCalibration &second)
Get calibration to go from first to second calibration. 
 
Jpp environment information. 
 
Data structure for time calibration. 
 
void read_gdml(std::istream &, JDetector &)
 
static const char *const GDML_SCHEMA
directory necessary for correct GDML header output 
 
static const JModuleCounter getNumberOfModules
Function object to count unique modules. 
 
static const char *const CAN_MARGIN_M
extension of the detector size to comply with the can definition 
 
Data structure for detector geometry and calibration. 
 
then echo The file $DIR KM3NeT_00000001_00000000 root already please rename or remove it first
 
double getDistance(const JFirst_t &first, const JSecond_t &second)
Get distance between objects. 
 
JTimeRange getTimeRange(const Evt &event)
Get time range (i.e. time between earliest and latest hit) of Monte Carlo event. 
 
Monte Carlo detector (i.e. so-called .det file). 
 
Lookup table for PMT addresses in optical module. 
 
double putTime(const T &t1, const JCalibration &cal)
Get de-calibrated time. 
 
JVector3D & sub(const JVector3D &vector)
Subtract vector. 
 
double getMaximalDistance(const JDetector &detector)
Get maximal distance between modules in detector. 
 
virtual JReader & read(JReader &in) override
Read from input. 
 
std::string getGITVersion(const std::string &tag)
Get GIT version for given GIT tag. 
 
Data structure for vector in three dimensions. 
 
virtual JWriter & write(JWriter &out) const override
Write to output. 
 
Logical location of module. 
 
double getDY() const 
Get y direction. 
 
Auxiliary class to get rotation matrix between two optical modules. 
 
double getDX() const 
Get x direction. 
 
int getID() const 
Get identifier. 
 
Data structure for PMT geometry and calibration. 
 
void compile()
Compile module data. 
 
void store(const std::string &file_name, const JDetector &detector)
Store detector to output file. 
 
JPosition3D getPosition(const Vec &pos)
Get position. 
 
int getNumberOfFloors(const JDetector &detector)
Get number of floors. 
 
static const double PI
Mathematical constants. 
 
double getY() const 
Get y position. 
 
const JPosition3D & getPosition() const 
Get position. 
 
double getMaximalTime(const double R_Hz)
Get maximal time for given rate. 
 
const JPMT & getPMT(const int index) const 
Get PMT. 
 
then usage $script[distance] fi case set_variable R
 
Logical location of module. 
 
const JRotation3D & operator()(const JModule &first, const JModule &second)
Get rotation matrix to go from first to second module. 
 
std::vector< JVector3D > in
 
static const char *const KM3NET_DETECTOR_FILE_FORMAT
KM3NeT standard ASCII format 
 
static const char *const ZIPPED_DETECTOR_FILE_FORMAT
zipped KM3NeT standard ASCII format 
 
static const char *const GENDET_DETECTOR_FILE_FORMAT
File name extensions. 
 
void load(const std::string &file_name, JDetector &detector)
Load detector from input file. 
 
static const char *const BINARY_DETECTOR_FILE_FORMAT
JIO binary file format. 
 
std::string getFilenameExtension(const std::string &file_name)
Get file name extension, i.e. part after last JEEP::FILENAME_SEPARATOR if any. 
 
const double getInverseSpeedOfLight()
Get inverse speed of light. 
 
void setID(const int id)
Set identifier. 
 
double getX() const 
Get x position. 
 
static const char *const G4GDML_DEFAULT_SCHEMALOCATION
 
double getTanThetaC()
Get average tangent of Cherenkov angle of water corresponding to group velocity. 
 
Data structure for position in three dimensions. 
 
do set_variable DETECTOR_TXT $WORKDIR detector
 
Data structure for normalised vector in three dimensions. 
 
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 source JAcoustics sh $DETECTOR_ID typeset A TRIPODS get_tripods $WORKDIR tripod txt TRIPODS for EMITTER in
 
Binary buffered file output. 
 
then usage $script[input file[working directory[option]]] nWhere option can be N
 
double GetXrotationG4(const JVersor3D dir)
Get rotation over X axis in Geant4 coordinate system. 
 
static const char *const GDML_DETECTOR_FILE_FORMAT
KM3Sim input format. 
 
double getZ() const 
Get z position. 
 
Binary buffered file input. 
 
bool has(const int index) const 
Test whether index is available. 
 
double getDZ() const 
Get z direction. 
 
std::vector< JVector3D > out
 
bool orthonormalise(const size_t index, const double precision=std::numeric_limits< double >::epsilon())
Put normalised primary direction at specified index and orthoganilise following. 
 
const JModule & getModule(const JDetector &detector, const JModuleLocation &location)
find module with a given string and floor number 
 
double getSinThetaC()
Get average sine of Cherenkov angle of water corresponding to group velocity. 
 
void write_gdml(std::ostream &out, const JDetector &detector)
Writes KM3Sim GDML input file from detector. 
 
double getT0() const 
Get time offset.