Jpp  master_rocky
the software that should make you happy
Classes | Typedefs | Functions | Variables
JDETECTOR Namespace Reference

file Auxiliary data structures and methods for detector calibration. More...

Classes

class  JAnchor
 Data structure for anchor position on sea bed. More...
 
class  JCalibration
 Data structure for time calibration. More...
 
struct  JCalibrator
 Auxiliary class to apply (de-)calibration to template hit. More...
 
struct  JCalibrator< T, true >
 Template specialisation of JCalibrator for primitive data types. More...
 
struct  JCalibrator< JHit_t, false >
 Template specialisation of JCalibrator for non-primitive data types. More...
 
class  JTransferFunction1D
 Auxiliary class for a non-linear transfer function of TDC inside FPGA. More...
 
class  JCLBDefaultSimulator
 Default CLB simulation. More...
 
class  JCLBDefaultSimulatorInterface
 Default CLB simulation. More...
 
struct  JCLBInput
 Wrapper for CLB input. More...
 
class  JCLBSimulator
 Interface for CLB simulation. More...
 
class  JCompass
 Data structure for compass in three dimensions. More...
 
class  JDAQHitRouter
 Simple wrapper around JModuleRouter class for direct addressing of PMT data in detector data structure for DAQ hits. More...
 
class  JDetector
 Detector data structure. More...
 
class  JDetectorAddressMap
 Lookup table for PMT addresses in detector. More...
 
struct  JModuleMap_t
 Auxiliary data structure for module address map. More...
 
struct  JPMTCalibration_t
 Auxiliary data structure for PMT time calibration. More...
 
struct  JPMTStatus_t
 Auxiliary data structure for PMT status. More...
 
struct  JHVCalibration_t
 Data structure for PMT high-voltage calibration. More...
 
struct  JPMTThresholdCalibration_t
 Data structure for PMT threshold calibration. More...
 
struct  JModulePosition_t
 Auxiliary data structure for module position. More...
 
struct  JModuleRotation_t
 Auxiliary data structure for module rotation. More...
 
struct  JModuleStatus_t
 Auxiliary data structure for module status. More...
 
struct  JModuleCalibration_t
 Auxiliary data structure for module time calibration. More...
 
struct  JCompassRotation_t
 Auxiliary data structure for compass rotation. More...
 
class  JDetectorHeader
 Data structure for detector header. More...
 
class  JDetectorParameters
 Data structure for parameters for detector geometry. More...
 
class  JDetectorParametersHelper
 Auxiliary class for I/O of JDetectorParameters data structure. More...
 
class  JDetectorSimulator
 Detector simulation. More...
 
class  JDetectorSubset_t
 Detector subset without binary search functionality. More...
 
class  JDetectorSubset
 Detector subset with binary search functionality. More...
 
struct  JPPM_DU_t
 Type definitions for different detectors.PPM_DU. More...
 
struct  JKM3NeT_t
 KM3NeT default detector More...
 
struct  JMonteCarlo_t
 Monte Carlo. More...
 
struct  JAntares_t
 Antares More...
 
struct  JObsolete_t
 obsolete detector More...
 
struct  JKM3NeTFit_t
 KM3NeT with cable swaps, etc. (see e.g. JPMTSwapDB.cc) More...
 
struct  JDetectorBuilder
 Auxiliary interface for building detector. More...
 
class  JDetectorBuilder_t
 Template lookup table for detector builder. More...
 
class  JDetectorBuilder_t< JObsolete_t >
 Template specialisation of JDetectorBuilder for obsolete detector. More...
 
class  JDetectorBuilder_t< JPPM_DU_t >
 Template specialisation of JDetectorBuilder for PPM_DU detector. More...
 
class  JDetectorBuilder_t< JKM3NeT_t >
 Template specialisation of JDetectorBuilder for KM3NeT detector. More...
 
class  JDetectorBuilder_t< JMonteCarlo_t >
 Template specialisation of JDetectorBuilder for Monte Carlo detector. More...
 
class  JDetectorBuilder_t< JKM3NeTFit_t >
 Template specialisation of JDetectorBuilder for KM3NeT detector with all known features. More...
 
struct  JDetectorHelper_t
 Auxiliary class to extract detector address map from detector identifier. More...
 
struct  JDetectorHelper_t< JTypeList< JHead_t, JTail_t > >
 
struct  JDetectorHelper_t< JTypeList< JHead_t, JNullType > >
 
struct  JRotation
 Auxiliary class to get rotation matrix between two optical modules. More...
 
struct  JDetectorVersion
 Detector version. More...
 
struct  JGetDetectorVersion
 Auxiliary class to map detector version to numerical value. More...
 
struct  JPutDetectorVersion
 Auxiliary class to map numerical value to detector version. More...
 
struct  JHydrophone
 Type definition of hydrophone. More...
 
class  JK40DefaultSimulator
 Default implementation of the simulation of K40 background. More...
 
class  JK40DefaultSimulatorInterface
 Default K40 simulator interface. More...
 
class  JK40Simulator
 Interface for simulation of K40 background. More...
 
class  JLocation
 Logical location of module. More...
 
class  JLocationRouter
 Router for direct addressing of location data in detector data structure. More...
 
class  JModule
 Data structure for a composite optical module. More...
 
class  JModuleAddress
 Address of module in detector data structure. More...
 
struct  JPMTAddressTranslator
 Data structure to translate PMT physical to readout address. More...
 
class  JModuleAddressMap
 Lookup table for PMT addresses in optical module. More...
 
struct  JModuleComparator3Z_t
 Module comparator according its z-position. More...
 
struct  JModuleComparator3D_t
 Module comparator according its distance to origin. More...
 
class  JModuleGeometry
 Module geometry. More...
 
struct  JUTCDistance
 Auxiliary class for distance beteen UTC times. More...
 
struct  JModuleAttributes
 Data structure for module address and module attributes. More...
 
struct  JMaximalDistance
 Auxiliary class to match modules according maximal distance. More...
 
class  JModuleMapper
 Mapper for directly addressing of associated modules in the detector data structure. More...
 
class  JModuleRouter
 Router for direct addressing of module data in detector data structure. More...
 
struct  JGetModuleStatusBit
 Auxiliary class to map key to module status bit. More...
 
class  JMonteCarloDetector
 Monte Carlo detector (i.e. ".det" file). More...
 
class  JPMT
 Data structure for PMT geometry, calibration and status. More...
 
class  JPMTAddress
 Address of PMT in detector data structure. More...
 
struct  JPMTAnalogueSignalProcessor
 PMT analogue signal processor. More...
 
class  JPMTChannel
 Auxiliary class to uniquely identify PMT readout channel. More...
 
struct  JModuleAnalogueSignalProcessor
 Auxiliary container for PMT analogue signal processors in same optical module. More...
 
class  JPMTDefaultSimulator
 Default PMT simulation. More...
 
class  JPMTDefaultSimulatorInterface
 Default PMT simulation interface. More...
 
class  JPMTIdentifier
 PMT identifier. More...
 
class  JPMTParameters
 Data structure for PMT parameters. More...
 
class  JPMTParametersMap
 Auxiliary class for map of PMT parameters. More...
 
class  JPMTPhysicalAddress
 Data structure for PMT physical address. More...
 
struct  JPMTRateRange
 Data structure for range of PMT rates. More...
 
class  JPMTReadoutAddress
 Data structure for PMT readout address. More...
 
class  JPMTRouter
 Router for direct addressing of PMT data in detector data structure. More...
 
class  JPMTSignalProcessorInterface
 PMT signal processor interface. More...
 
struct  JPhotoElectron
 Data structure for single photo-electron. More...
 
struct  JPMTSignal
 Data structure for PMT analogue signal. More...
 
struct  JPMTPulse
 Data structure for PMT digital pulse. More...
 
class  JPMTData
 Template data structure for PMT I/O. More...
 
class  JModuleData
 Data structure for PMT data corresponding to a detector module. More...
 
class  JPMTSimulator
 Interface for PMT simulation. More...
 
struct  JGetPMTStatusBit
 Auxiliary class to map key to PMT status bit. More...
 
struct  JTransitionTimeGenerator_t
 Auxiliary base class to generate PMT transition times based on measurements. More...
 
struct  JTransitionTimeGenerator
 Implementation to generate PMT transition times based on measurements by Oleg Kalekin et al. (see also examples/JDetector/JTTS.cc). More...
 
struct  JTransitionTimeGenerator38
 Implementation to generate PMT transition times based on measurements. More...
 
struct  JTransitionTimeGenerator41
 Implementation to generate PMT transition times based on measurements. More...
 
struct  JTransitionTimeGenerator67
 Implementation to generate PMT transition times based on measurements (see Calibration e-log entry 467). More...
 
struct  JTransitionTimeGeneratorXX
 Implementation to generate PMT transition times based on measurements. More...
 
struct  getTransitionTime
 
struct  JTransitionTimeProbability_t
 Auxiliary base class for probability distibution of the PMT transition times based on measurements. More...
 
struct  JTransitionTimeProbability
 Implementation of probability distibution of the PMT transition times based on measurements by Oleg Kalekin et al. More...
 
struct  JTransitionTimeProbability38
 Implementation of probability distibution of the PMT transition times based on measurements. More...
 
struct  JTransitionTimeProbability41
 Implementation of probability distibution of the PMT transition times based on measurements. More...
 
struct  JTransitionTimeProbability67
 Implementation of probability distibution of the PMT transition times based on measurements (see Calibration e-log entry 467). More...
 
struct  JTransitionTimeProbabilityXX
 Implementation of probability distibution of the PMT transition times based on measurements. More...
 
struct  getTransitionTimeProbability
 
class  JTransitionTimeProbability2D
 Auxiliary class to generate twofold PMT transition times. More...
 
struct  JStringCounter
 Auxiliary class for counting unique strings. More...
 
struct  JStringRouter
 Router for mapping of string identifier to index. More...
 
struct  JTransmitter
 Type definition of transmitter. More...
 
class  JTripod
 Data structure for tripod. More...
 
struct  JVersion
 Auxiliary class for version identifier. More...
 

Typedefs

typedef JPMTData< JPMTPulseJPMTOutput
 Type definition of PMT base output. More...
 
typedef std::vector< JHVCalibration_tJHVCalibration
 PMT high voltage calibration. More...
 
typedef std::vector< JPMTThresholdCalibration_tJPMTThresholdCalibration
 PMT threshold calibration. More...
 
typedef std::vector< JModuleMap_tJModuleMap
 module map More...
 
typedef std::vector< JPMTCalibration_tJPMTCalibration
 PMT time calibration. More...
 
typedef std::vector< JPMTStatus_tJPMTStatus
 PMT status. More...
 
typedef std::vector< JModulePosition_tJModulePosition
 Module position. More...
 
typedef std::vector< JModuleRotation_tJModuleRotation
 Module rotation. More...
 
typedef std::vector< JModuleStatus_tJModuleStatus
 Module status. More...
 
typedef std::vector< JModuleCalibration_tJModuleCalibration
 Module time calibration. More...
 
typedef std::vector< JCompassRotation_tJCompassRotation
 Compass rotation. More...
 
typedef JLANG::JObjectID JDetectorID
 Type definition of detector identifier. More...
 
typedef JTYPELIST< JPPM_DU_t, JKM3NeTFit_t, JKM3NeT_t, JMonteCarlo_t >::typelist JDetectorTypes_t
 Type list of KM3NeT detector types (specific detectors first). More...
 
typedef JTOOLS::JRange< int > floor_range
 Type definition for range of floors. More...
 
typedef JLANG::JComparator< double(JVector3D::*)() const > JModuleComparator
 Type definition of a module comparator using 3D position information. More...
 
typedef JLANG::JObjectID JModuleIdentifier
 
typedef JPutStatusBit JPutModuleStatusBit
 Type definition to map module status bit to key. More...
 
typedef std::map< JPMTIdentifier, JPMTParametersJPMTParametersMap_t
 Type definition of map PMT identifier to PMT parameters. More...
 
typedef JPutStatusBit JPutPMTStatusBit
 Type definition to map PMT status bit to key. More...
 
typedef JTOOLS::JRange< double > JTimeRange
 Type definition for time range (unit [ns]). More...
 

Functions

bool operator< (const JAnchor &first, const JAnchor &second)
 Sort anchors in ascending distance from (0,0). More...
 
template<class T >
double getTime (const T &t1, const JCalibration &cal)
 Get calibrated time. More...
 
template<class T >
double putTime (const T &t1, const JCalibration &cal)
 Get de-calibrated time. More...
 
template<class T >
double getToT (const T &tot, const JCalibration &cal)
 Get calibrated time-over-threshold of hit. More...
 
template<class T >
double putToT (const T &tot, const JCalibration &cal)
 Get de-calibrated time-over-threshold of hit. More...
 
template<class T >
std::vector< std::string > get_string_array (T value)
 Cast single value to array of strings, conform the DB-format. More...
 
double retrieve_value (std::vector< std::string > string_value_array)
 Retrieve value from json array of strings. More...
 
JUTMGrid getARCAUTMGrid ()
 Get UTM grid for ARCA. More...
 
JUTMGrid getORCAUTMGrid ()
 Get UTM grid for ORCA. More...
 
JDetectorHeader getARCADetectorHeader ()
 Get detector header for ARCA. More...
 
JDetectorHeader getORCADetectorHeader ()
 Get detector header for ORCA. More...
 
bool isARCADetector (const JDetectorHeader &header)
 Check if given detector header is compatible with tat of ARCA. More...
 
bool isORCADetector (const JDetectorHeader &header)
 Check if given detector header is compatible with that of ORCA. More...
 
bool hasDetector (JType< JPPM_DU_t > type, const int id)
 Check validity of detector identifier. More...
 
bool hasDetector (JType< JKM3NeTFit_t > type, const int id)
 
bool hasDetector (JType< JKM3NeT_t > type, const int id)
 
bool hasDetector (JType< JMonteCarlo_t > type, const int id)
 
template<class JDetector_t >
JDetectorBuildergetDetectorBuilder ()
 Get detector builder. More...
 
template<class JDetector_t >
JDetectorAddressMapgetDetectorAddressMap ()
 Get detector address map. More...
 
template<class JDetector_t >
JModuleAddressMapgetModuleAddressMap (int id)
 Get module address map. More...
 
template<class JDetector_t >
const JPMTAddressTranslatorgetPMTAddressTranslator (int id, int tdc)
 Get PMT address translator for given module identifier and TDC channel. More...
 
template<class JDetector_t >
int getPMTLogicalIndex (int id, int tdc)
 Get PMT logical index for given module identifier and TDC channel. More...
 
JDetectorBuildergetDetectorBuilder (const int id)
 Get detector builder. More...
 
JDetectorAddressMapgetDetectorAddressMap (const int id)
 Get detector address map. More...
 
bool hasDetectorBuilder (const int id)
 Check if detector builder is available. More...
 
bool hasDetectorAddressMap (const int id)
 Check if detector address map is available. More...
 
template<class JDetector_t >
const JModulegetModule (const JType< JDetector_t > type, const int id, const JLocation &location=JLocation())
 Get module according given detector type. More...
 
const JModulegetModule (const JType< JAntares_t > type, const int id, const JLocation &location=JLocation())
 Get module according Antares detector type. More...
 
template<class JDetector_t >
const JModulegetModule (const int id, const JLocation &location=JLocation())
 Get module according detector template. More...
 
double getMaximalDistance (const JDetector &detector, const bool option=false)
 Get maximal distance between modules in detector. More...
 
double getMaximalTime (const JDetector &detector)
 Get maximal time between optical modules in detector following causality. More...
 
double getMaximalTime (const JDetector &detector, const double roadWidth_m)
 Get maximal time between optical modules in detector following causality. More...
 
JTimeRange getTimeRange (const JTimeRange &timeRange, const JModule &module)
 Get de-calibrated time range. More...
 
int getNumberOfPMTs (const JModule &module)
 Get number of PMTs. More...
 
int getNumberOfPMTs (const JDetector &detector)
 Get number of PMTs. More...
 
std::set< int > getStringIDs (const JDetector &detector)
 Get list of strings identifiers. More...
 
std::set< int > getModuleIDs (const JDetector &detector, const bool option=false)
 Get list of modules identifiers. More...
 
int getNumberOfFloors (const JDetector &detector)
 Get number of floors. More...
 
floor_range getRangeOfFloors (const JDetector &detector)
 Get range of floors. More...
 
int getNumberOfModules (const JDetector &detector)
 Get number of modules. More...
 
double GetXrotationG4 (const JVersor3D &dir)
 Get rotation over X axis in Geant4 coordinate system. More...
 
double GetYrotationG4 (const JVersor3D &dir)
 Get rotation over Y axis in Geant4 coordinate system. More...
 
void read_gdml (std::istream &, JDetector &)
 
void write_gdml (std::ostream &out, const JDetector &detector)
 Writes KM3Sim GDML input file from detector. More...
 
void load (const std::string &file_name, JDetector &detector)
 Load detector from input file. More...
 
void store (const std::string &file_name, const JDetector &detector)
 Store detector to output file. More...
 
JPosition3D getPosition (const JModule &first, const JModule &second)
 Get position to go from first to second module. More...
 
JCalibration getCalibration (const JCalibration &first, const JCalibration &second)
 Get calibration to go from first to second calibration. More...
 
std::vector< std::string > getDetectorVersions (const JType< std::string > &type)
 Get detector versions. More...
 
std::vector< JDetectorVersion::JVersion_tgetDetectorVersions (const JType< JDetectorVersion::JVersion_t > &type)
 Get detector versions. More...
 
template<class T >
std::vector< T > getDetectorVersions ()
 Get detector versions. More...
 
std::string getLatestDetectorVersion (const JType< std::string > &type)
 Get latest detector version. More...
 
JVersion getLatestDetectorVersion (const JType< JVersion > &type)
 Get latest detector version. More...
 
JDetectorVersion::JVersion_t getLatestDetectorVersion (const JType< JDetectorVersion::JVersion_t > &type)
 Get latest detector version. More...
 
template<class T >
getLatestDetectorVersion ()
 Get latest detector version. More...
 
std::string getLabel (const JLocation &location)
 Get module label for monitoring and other applications. More...
 
template<class JAttributes_t >
void setAttributes (const JModule &first, const JModule &second, JAttributes_t &attributes)
 Template method to set module attributes. More...
 
template<>
void setAttributes< JNullType > (const JModule &first, const JModule &second, JNullType &attributes)
 Template specialisation to set no attributes for the default empty object. More...
 
std::vector< std::string > getModuleStatusBits (const JType< std::string > &type)
 Get module status bits. More...
 
std::vector< int > getModuleStatusBits (const JType< int > &type)
 Get module status bits. More...
 
template<class T >
std::vector< T > getModuleStatusBits ()
 Get module status bits. More...
 
JPosition3D getPiezoPosition ()
 Get relative position of piezo in optical module. More...
 
double getTimeOverThresholdProbability (const JPMTAnalogueSignalProcessor &pmt, const double tot_ns, const double NPE, const double precision=1.0e-4)
 Get time-over-threshold probability. More...
 
std::string getLabel (const JPMTIdentifier &id)
 Get PMT label for monitoring and other applications. More...
 
double getSurvivalProbability (const JPMTParameters &parameters)
 Get model dependent probability that a one photo-electron hit survives the simulation of the PMT assuming QE = 1. More...
 
double getHitProbability (const double QE, const double mu)
 Get ratio of hit probabilities for given QE and expectation value of the number of photo-electrons. More...
 
double getMaximalHitProbability (const double mu)
 Get maximal ratio of hit probabilities for given QE and expectation value of the number of photo-electrons. More...
 
double getQE (const double R, const double mu)
 Get QE for given ratio of hit probabilities and expectation value of the number of photo-electrons. More...
 
double getChargeProbability (const JPMTSignalProcessorInterface &pmt, const double npe, const double NPE, const double precision=1.0e-4)
 Get charge probability. More...
 
bool operator< (const JPhotoElectron &first, const JPhotoElectron &second)
 Less than operator for photo-elecrons. More...
 
bool operator< (const JPMTSignal &first, const JPMTSignal &second)
 Less than operator for PMT signals. More...
 
bool operator< (const JPMTPulse &first, const JPMTPulse &second)
 Less than operator for PMT pulses. More...
 
JTimeRange getTimeRange (const JPMTData< JPMTSignal > &input)
 Get time range (i.e. earlist and latest hit time) of PMT data. More...
 
JTimeRange getTimeRange (const JModuleData &input)
 Get time range (i.e. earlist and latest hit time) of module data. More...
 
std::vector< std::string > getPMTStatusBits (const JType< std::string > &type)
 Get PMT status bits. More...
 
std::vector< int > getPMTStatusBits (const JType< int > &type)
 Get PMT status bits. More...
 
template<class T >
std::vector< T > getPMTStatusBits ()
 Get PMT status bits. More...
 

Variables

const double TIME_OVER_THRESHOLD_NS = 25.08
 Specification for time-over-threshold corresponding to a one photo-electron pulse. More...
 
const double NOMINAL_GAIN = 1.0
 Specification for normalized gain corresponding to a one photo-electron pulse. More...
 
static const double ORCA_TBARZ_M = 0.91
 ORCA T-bar position relative to seabed [m]. More...
 
static const double ARCA_TBARZ_M = 0.95
 ORCA T-bar position relative to seabed [m]. More...
 
static const char *const GENDET_DETECTOR_FILE_FORMAT = "det"
 File name extensions. More...
 
static const char *const BINARY_DETECTOR_FILE_FORMAT [] = { "dat", "datx" }
 JIO binary file format. More...
 
static const char *const KM3NET_DETECTOR_FILE_FORMAT = "detx"
 KM3NeT standard ASCII format More...
 
static const char *const ZIPPED_DETECTOR_FILE_FORMAT = "gz"
 zipped KM3NeT standard ASCII format More...
 
static const char *const GDML_DETECTOR_FILE_FORMAT = "gdml"
 KM3Sim input format. More...
 
static const char *const GDML_SCHEMA = getenv("GDML_SCHEMA_DIR")
 directory necessary for correct GDML header output More...
 
static const char *const CAN_MARGIN_M = getenv("CAN_MARGIN_M")
 extension of the detector size to comply with the can definition More...
 
static const char *const G4GDML_DEFAULT_SCHEMALOCATION = "http://service-spi.web.cern.ch/service-spi/app/releases/GDML/schema/gdml.xsd"
 
static JRotation getRotation
 Function object to get rotation matrix to go from first to second module. More...
 
static const JGetDetectorVersion getDetectorVersion
 Function object to map detector version to numerical value. More...
 
static const JPutDetectorVersion putDetectorVersion (getDetectorVersion)
 Function object to map numerical value to detector version. More...
 
static const JGetModuleStatusBit getModuleStatusBit
 Function object to map key to module status bit. More...
 
static const JPutModuleStatusBit putModuleStatusBit (getModuleStatusBit)
 Function object to map module status bit to key. More...
 
static const double PIEZO_V1_DELAYTIME_US = 170.3
 Piezo delay time [us]. More...
 
static const double PIEZO_V2_DELAYTIME_US = 242.1
 Piezo delay time [us]. More...
 
static const double PIEZO_V3_DELAYTIME_US = 242.1
 Piezo delay time [us]. More...
 
static const double HYDROPHONE_DELAYTIME_US = 50.7
 Hydrophone delay time [us]. More...
 
static const int LED_BEACON_PMT_TYPE = 2
 PMT type of LED beacon. More...
 
static const JGetPMTStatusBit getPMTStatusBit
 Function object to map key to PMT status bit. More...
 
static const JPutPMTStatusBit putPMTStatusBit (getPMTStatusBit)
 Function object to map PMT status bit to key. More...
 
JDETECTOR::getTransitionTime getTransitionTime
 Function object to generate transition time. More...
 
JDETECTOR::getTransitionTimeProbability getTransitionTimeProbability
 Function object of transition time prabability. More...
 
static const JTransitionTimeProbability2D getTransitionTimeProbability2D
 Function object of twofold transition time prabability. More...
 
static const JStringCounter getNumberOfStrings
 Function object to count unique strings. More...
 

Detailed Description

file Auxiliary data structures and methods for detector calibration.

Auxiliary classes and methods for detector calibration and simulation.

Auxiliary classes and methods for detector calibration.

Author
mdejong
mdejong, bjung, acreusot

Typedef Documentation

◆ JPMTOutput

Type definition of PMT base output.

Definition at line 27 of file JCLBSimulator.hh.

◆ JHVCalibration

PMT high voltage calibration.

Definition at line 809 of file JDetectorCalibration.hh.

◆ JPMTThresholdCalibration

PMT threshold calibration.

Definition at line 810 of file JDetectorCalibration.hh.

◆ JModuleMap

module map

Definition at line 811 of file JDetectorCalibration.hh.

◆ JPMTCalibration

PMT time calibration.

Definition at line 812 of file JDetectorCalibration.hh.

◆ JPMTStatus

PMT status.

Definition at line 813 of file JDetectorCalibration.hh.

◆ JModulePosition

Module position.

Definition at line 814 of file JDetectorCalibration.hh.

◆ JModuleRotation

Module rotation.

Definition at line 815 of file JDetectorCalibration.hh.

◆ JModuleStatus

Module status.

Definition at line 816 of file JDetectorCalibration.hh.

◆ JModuleCalibration

Module time calibration.

Definition at line 817 of file JDetectorCalibration.hh.

◆ JCompassRotation

Compass rotation.

Definition at line 818 of file JDetectorCalibration.hh.

◆ JDetectorID

Type definition of detector identifier.

Definition at line 19 of file JDetectorID.hh.

◆ JDetectorTypes_t

Type list of KM3NeT detector types (specific detectors first).

Definition at line 54 of file JDetectorSupportkit.hh.

◆ floor_range

Type definition for range of floors.

Definition at line 258 of file JDetectorToolkit.hh.

◆ JModuleComparator

typedef JLANG::JComparator<double (JVector3D::*)() const> JDETECTOR::JModuleComparator

Type definition of a module comparator using 3D position information.

Definition at line 22 of file JModuleComparator.hh.

◆ JModuleIdentifier

Definition at line 16 of file JModuleIdentifier.hh.

◆ JPutModuleStatusBit

Type definition to map module status bit to key.

Definition at line 58 of file JModuleStatus.hh.

◆ JPMTParametersMap_t

Type definition of map PMT identifier to PMT parameters.

Definition at line 47 of file JPMTParametersMap.hh.

◆ JPutPMTStatusBit

Type definition to map PMT status bit to key.

Definition at line 59 of file JPMTStatus.hh.

◆ JTimeRange

Type definition for time range (unit [ns]).

Definition at line 19 of file JDetector/JTimeRange.hh.

Function Documentation

◆ operator<() [1/4]

bool JDETECTOR::operator< ( const JAnchor first,
const JAnchor second 
)
inline

Sort anchors in ascending distance from (0,0).

Parameters
firstfirst anchor
secondsecond anchor
Returns
true if first anchor closer to (0,0); else false

Definition at line 99 of file JAnchor.hh.

100  {
101  return first.getLengthSquared() < second.getLengthSquared();
102  }
double getLengthSquared() const
Get length squared.
Definition: JVector2D.hh:188

◆ getTime()

template<class T >
double JDETECTOR::getTime ( const T &  t1,
const JCalibration cal 
)
inline

Get calibrated time.

Parameters
t1time [ns]
calcalibration
Returns
time [ns]

Definition at line 222 of file JDetector/JCalibration.hh.

223  {
224  return JCalibrator<T>::getTime(t1, cal);
225  }
double getTime(const T &t1, const JCalibration &cal)
Get calibrated time.

◆ putTime()

template<class T >
double JDETECTOR::putTime ( const T &  t1,
const JCalibration cal 
)
inline

Get de-calibrated time.

Parameters
t1time [ns]
calcalibration
Returns
time [ns]

Definition at line 236 of file JDetector/JCalibration.hh.

237  {
238  return JCalibrator<T>::putTime(t1, cal);
239  }
double putTime(const T &t1, const JCalibration &cal)
Get de-calibrated time.

◆ getToT()

template<class T >
double JDETECTOR::getToT ( const T &  tot,
const JCalibration cal 
)
inline

Get calibrated time-over-threshold of hit.

Parameters
tottime-over-threshold [ns]
calcalibration
Returns
time-over-threshold [ns]

Definition at line 250 of file JDetector/JCalibration.hh.

251  {
252  return JCalibrator<T>::getToT(tot, cal);
253  }
double getToT(const T &tot, const JCalibration &cal)
Get calibrated time-over-threshold of hit.

◆ putToT()

template<class T >
double JDETECTOR::putToT ( const T &  tot,
const JCalibration cal 
)
inline

Get de-calibrated time-over-threshold of hit.

Parameters
tottime-over-threshold [ns]
calcalibration
Returns
time-over-threshold [ns]

Definition at line 264 of file JDetector/JCalibration.hh.

265  {
266  return JCalibrator<T>::putToT(tot, cal);
267  }
double putToT(const T &tot, const JCalibration &cal)
Get de-calibrated time-over-threshold of hit.

◆ get_string_array()

template<class T >
std::vector<std::string> JDETECTOR::get_string_array ( value)
inline

Cast single value to array of strings, conform the DB-format.

Parameters
valuevalue
Returns
std::vector containing value casted to string

Definition at line 62 of file JDetectorCalibration.hh.

63  {
64  using namespace std;
65 
66  return vector<string>{ to_string(value) };
67  }
std::string to_string(const T &value)
Convert value to string.
Definition: JSTDTypes.hh:14

◆ retrieve_value()

double JDETECTOR::retrieve_value ( std::vector< std::string >  string_value_array)
inline

Retrieve value from json array of strings.

Parameters
string_value_arrayarray of string-casted values
Returns
double-casted value

Definition at line 76 of file JDetectorCalibration.hh.

77  {
78  return std::stod(string_value_array[0]);
79  }

◆ getARCAUTMGrid()

JUTMGrid JDETECTOR::getARCAUTMGrid ( )
inline

Get UTM grid for ARCA.

Returns
UTM grid

Definition at line 252 of file JDetectorHeader.hh.

253  {
254  return JUTMGrid("UTM", "WGS84", "33N");
255  }

◆ getORCAUTMGrid()

JUTMGrid JDETECTOR::getORCAUTMGrid ( )
inline

Get UTM grid for ORCA.

Returns
UTM grid

Definition at line 263 of file JDetectorHeader.hh.

264  {
265  return JUTMGrid("UTM", "WGS84", "32N");
266  }

◆ getARCADetectorHeader()

JDetectorHeader JDETECTOR::getARCADetectorHeader ( )
inline

Get detector header for ARCA.

Returns
detector header

Definition at line 274 of file JDetectorHeader.hh.

275  {
276  return JDetectorHeader(JUTCTimeRange(0.0, 999999999999.9), getARCAUTMGrid(), JUTMPosition(587600, 4016800, -3450));
277  }
Data structure for detector header.
JUTMGrid getARCAUTMGrid()
Get UTM grid for ARCA.

◆ getORCADetectorHeader()

JDetectorHeader JDETECTOR::getORCADetectorHeader ( )
inline

Get detector header for ORCA.

Returns
detector header

Definition at line 285 of file JDetectorHeader.hh.

286  {
287  return JDetectorHeader(JUTCTimeRange(0.0, 999999999999.9), getORCAUTMGrid(), JUTMPosition(256500, 4743000, -2440));
288  }
JUTMGrid getORCAUTMGrid()
Get UTM grid for ORCA.

◆ isARCADetector()

bool JDETECTOR::isARCADetector ( const JDetectorHeader header)
inline

Check if given detector header is compatible with tat of ARCA.

Parameters
headerheader
Returns
true if ARCA; else false

Definition at line 297 of file JDetectorHeader.hh.

298  {
299  return header.getUTMGrid() == getARCADetectorHeader();
300  }
const JUTMGrid & getUTMGrid() const
Get UTM grid.
Definition: JUTMGrid.hh:73
JDetectorHeader getARCADetectorHeader()
Get detector header for ARCA.

◆ isORCADetector()

bool JDETECTOR::isORCADetector ( const JDetectorHeader header)
inline

Check if given detector header is compatible with that of ORCA.

Parameters
headerheader
Returns
true if ORCA; else false

Definition at line 309 of file JDetectorHeader.hh.

310  {
311  return header.getUTMGrid() == getORCADetectorHeader();
312  }
JDetectorHeader getORCADetectorHeader()
Get detector header for ORCA.

◆ hasDetector() [1/4]

bool JDETECTOR::hasDetector ( JType< JPPM_DU_t type,
const int  id 
)
inline

Check validity of detector identifier.

Parameters
typedetector type
iddetector identifier
Returns
true if valid match; else false

Definition at line 64 of file JDetectorSupportkit.hh.

64 { return id == 1; }

◆ hasDetector() [2/4]

bool JDETECTOR::hasDetector ( JType< JKM3NeTFit_t type,
const int  id 
)
inline

Definition at line 65 of file JDetectorSupportkit.hh.

65 { return id >= 2 && id <= 2000000000; }

◆ hasDetector() [3/4]

bool JDETECTOR::hasDetector ( JType< JKM3NeT_t type,
const int  id 
)
inline

Definition at line 66 of file JDetectorSupportkit.hh.

66 { return id >= 2 && id <= 2000000000; }

◆ hasDetector() [4/4]

bool JDETECTOR::hasDetector ( JType< JMonteCarlo_t type,
const int  id 
)
inline

Definition at line 67 of file JDetectorSupportkit.hh.

67 { return id >= -2000000000 && id <= -2; }

◆ getDetectorBuilder() [1/2]

template<class JDetector_t >
JDetectorBuilder& JDETECTOR::getDetectorBuilder ( )
inline

Get detector builder.

Returns
detector builder

Definition at line 528 of file JDetectorSupportkit.hh.

529  {
531 
532  return demo;
533  }
Template lookup table for detector builder.

◆ getDetectorAddressMap() [1/2]

template<class JDetector_t >
JDetectorAddressMap& JDETECTOR::getDetectorAddressMap ( )
inline

Get detector address map.

Returns
detector address map

Definition at line 542 of file JDetectorSupportkit.hh.

543  {
544  return getDetectorBuilder<JDetector_t>();
545  }

◆ getModuleAddressMap()

template<class JDetector_t >
JModuleAddressMap& JDETECTOR::getModuleAddressMap ( int  id)
inline

Get module address map.

Parameters
idmodule identifier
Returns
module address map

Definition at line 555 of file JDetectorSupportkit.hh.

556  {
557  return getDetectorAddressMap<JDetector_t>().get(id);
558  }

◆ getPMTAddressTranslator()

template<class JDetector_t >
const JPMTAddressTranslator& JDETECTOR::getPMTAddressTranslator ( int  id,
int  tdc 
)
inline

Get PMT address translator for given module identifier and TDC channel.

Parameters
idmodule identifier
tdcTDC
Returns
PMT address translator

Definition at line 569 of file JDetectorSupportkit.hh.

570  {
571  return getModuleAddressMap<JDetector_t>(id).getAddressTranslator(tdc);
572  }

◆ getPMTLogicalIndex()

template<class JDetector_t >
int JDETECTOR::getPMTLogicalIndex ( int  id,
int  tdc 
)
inline

Get PMT logical index for given module identifier and TDC channel.

Parameters
idmodule identifier
tdcTDC
Returns
PMT logical index

Definition at line 583 of file JDetectorSupportkit.hh.

584  {
585  return getModuleAddressMap<JDetector_t>(id).getIndex(tdc);
586  }

◆ getDetectorBuilder() [2/2]

JDetectorBuilder& JDETECTOR::getDetectorBuilder ( const int  id)
inline

Get detector builder.

Parameters
iddetector identifier
Returns
detector builder

Definition at line 664 of file JDetectorSupportkit.hh.

665  {
667  }
Auxiliary class to extract detector address map from detector identifier.

◆ getDetectorAddressMap() [2/2]

JDetectorAddressMap& JDETECTOR::getDetectorAddressMap ( const int  id)
inline

Get detector address map.

Parameters
iddetector identifier
Returns
detector address map

Definition at line 676 of file JDetectorSupportkit.hh.

677  {
679  }

◆ hasDetectorBuilder()

bool JDETECTOR::hasDetectorBuilder ( const int  id)
inline

Check if detector builder is available.

Parameters
iddetector identifier
Returns
true if detector builder available; else false

Definition at line 688 of file JDetectorSupportkit.hh.

689  {
691  }

◆ hasDetectorAddressMap()

bool JDETECTOR::hasDetectorAddressMap ( const int  id)
inline

Check if detector address map is available.

Parameters
iddetector identifier
Returns
true if detector address map available; else false

Definition at line 700 of file JDetectorSupportkit.hh.

701  {
703  }

◆ getModule() [1/3]

template<class JDetector_t >
const JModule& JDETECTOR::getModule ( const JType< JDetector_t >  type,
const int  id,
const JLocation location = JLocation() 
)
inline

Get module according given detector type.

Parameters
typedetector type
idmodule identifier
locationmodule location
Returns
module

Definition at line 715 of file JDetectorSupportkit.hh.

718  {
719  return getDetectorBuilder<JDetector_t>().getModule(id, location);
720  }

◆ getModule() [2/3]

const JModule& JDETECTOR::getModule ( const JType< JAntares_t type,
const int  id,
const JLocation location = JLocation() 
)
inline

Get module according Antares detector type.

Parameters
typeAntares detector type
idmodule identifier
locationmodule location
Returns
module

Definition at line 731 of file JDetectorSupportkit.hh.

734  {
735  using namespace JPP;
736 
737  static JModule module;
738 
739  module.setID(id);
740 
741  module.setLocation(location);
742 
743  if (module.empty()) {
744 
745  module.resize(3);
746 
747  const double R = 0.5; // [m]
748 
749  const double st = sin(0.75*PI);
750  const double ct = cos(0.75*PI);
751 
752  for (int i = 0; i != 3; ++i) {
753 
754  const double phi = (2.0*PI*i) / 3.0;
755  const double cp = cos(phi);
756  const double sp = sin(phi);
757 
758  module[i] = JPMT(i, JAxis3D(JVector3D(R*st*cp, R*st*sp, R*ct), JVersor3D(st*cp, st*sp, ct)));
759  }
760  }
761 
762  return module;
763  }
void setLocation(const JLocation &location)
Set location.
Definition: JLocation.hh:92
Data structure for a composite optical module.
Definition: JModule.hh:75
Data structure for PMT geometry, calibration and status.
Definition: JPMT.hh:49
Axis object.
Definition: JAxis3D.hh:41
Data structure for vector in three dimensions.
Definition: JVector3D.hh:36
Data structure for normalised vector in three dimensions.
Definition: JVersor3D.hh:28
void setID(const int id)
Set identifier.
Definition: JObjectID.hh:72
static const double PI
Mathematical constants.
This name space includes all other name spaces (except KM3NETDAQ, KM3NET and ANTARES).

◆ getModule() [3/3]

template<class JDetector_t >
const JModule& JDETECTOR::getModule ( const int  id,
const JLocation location = JLocation() 
)
inline

Get module according detector template.

Parameters
idmodule identifier
locationmodule location
Returns
module

Definition at line 774 of file JDetectorSupportkit.hh.

776  {
777  return getModule(JType<JDetector_t>(), id, location);
778  }
const JModule & getModule(const JDetector &detector, const JModuleLocation &location)
find module with a given string and floor number
Auxiliary class for a type holder.
Definition: JType.hh:19

◆ getMaximalDistance()

double JDETECTOR::getMaximalDistance ( const JDetector detector,
const bool  option = false 
)
inline

Get maximal distance between modules in detector.

The option can be used to include base modules, if any.

Parameters
detectordetector
optionoption
Returns
maximal distance [m]

Definition at line 78 of file JDetectorToolkit.hh.

79  {
80  using namespace JPP;
81 
82  double dmax = 0.0;
83 
84  for (JDetector::const_iterator i1 = detector.begin(); i1 != detector.end(); ++i1) {
85  for (JDetector::const_iterator i2 = detector.begin(); i2 != i1; ++i2) {
86 
87  if (option || (i1->getFloor() != 0 && i2->getFloor() != 0)) {
88 
89  const double ds = getDistance(i1->getPosition(), i2->getPosition());
90 
91  if (ds > dmax) {
92  dmax = ds;
93  }
94  }
95  }
96  }
97 
98  return dmax;
99  }
double getDistance(const JFirst_t &first, const JSecond_t &second)
Get distance between objects.
Detector file.
Definition: JHead.hh:227

◆ getMaximalTime() [1/2]

double JDETECTOR::getMaximalTime ( const JDetector detector)
inline

Get maximal time between optical modules in detector following causality.

Parameters
detectordetector
Returns
maximal time [ns]

Definition at line 108 of file JDetectorToolkit.hh.

109  {
110  using namespace JPP;
111 
113  }
double getMaximalDistance(const JDetector &detector, const bool option=false)
Get maximal distance between modules in detector.
double getIndexOfRefraction()
Get average index of refraction of water corresponding to group velocity.
const double getInverseSpeedOfLight()
Get inverse speed of light.

◆ getMaximalTime() [2/2]

double JDETECTOR::getMaximalTime ( const JDetector detector,
const double  roadWidth_m 
)
inline

Get maximal time between optical modules in detector following causality.

The road width corresponds to the maximal distance traveled by the light.

Parameters
detectordetector
roadWidth_mroad width [m]
Returns
maximal time [ns]

Definition at line 124 of file JDetectorToolkit.hh.

125  {
126  using namespace JPP;
127 
128  const double Dmax_m = getMaximalDistance(detector);
129 
130  return (sqrt((Dmax_m + roadWidth_m*getSinThetaC()) *
131  (Dmax_m - roadWidth_m*getSinThetaC())) +
132  roadWidth_m * getSinThetaC() * getTanThetaC()) * getInverseSpeedOfLight();
133  }
double getTanThetaC()
Get average tangent of Cherenkov angle of water corresponding to group velocity.
double getSinThetaC()
Get average sine of Cherenkov angle of water corresponding to group velocity.

◆ getTimeRange() [1/3]

JTimeRange JDETECTOR::getTimeRange ( const JTimeRange timeRange,
const JModule module 
)
inline

Get de-calibrated time range.

The de-calibrated time range is corrected for minimal and maximal time offset of PMTs in given module.

Parameters
timeRangetime range [ns]
modulemodule
Returns
time range [ns]

Definition at line 145 of file JDetectorToolkit.hh.

146  {
147  if (!module.empty()) {
148 
149  JTimeRange time_range(JTimeRange::DEFAULT_RANGE());
150 
151  for (JModule::const_iterator pmt = module.begin(); pmt != module.end(); ++pmt) {
152 
153  const JCalibration& calibration = pmt->getCalibration();
154 
155  time_range.include(putTime(timeRange.getLowerLimit(), calibration));
156  time_range.include(putTime(timeRange.getUpperLimit(), calibration));
157  }
158 
159  return time_range;
160 
161  } else {
162 
163  return timeRange;
164  }
165  }
Data structure for time calibration.
T getLowerLimit() const
Get lower limit.
Definition: JRange.hh:202
T getUpperLimit() const
Get upper limit.
Definition: JRange.hh:213
Calibration.
Definition: JHead.hh:330

◆ getNumberOfPMTs() [1/2]

int JDETECTOR::getNumberOfPMTs ( const JModule module)
inline

Get number of PMTs.

Parameters
modulemodule
Returns
number of PMTs

Definition at line 174 of file JDetectorToolkit.hh.

175  {
176  return module.size();
177  }

◆ getNumberOfPMTs() [2/2]

int JDETECTOR::getNumberOfPMTs ( const JDetector detector)
inline

Get number of PMTs.

Parameters
detectordetector
Returns
number of PMTs

Definition at line 186 of file JDetectorToolkit.hh.

187  {
188  int number_of_pmts = 0;
189 
190  for (JDetector::const_iterator module = detector.begin(); module != detector.end(); ++module) {
191  number_of_pmts += getNumberOfPMTs(*module);
192  }
193 
194  return number_of_pmts;
195  }
int getNumberOfPMTs(const JDetector &detector)
Get number of PMTs.

◆ getStringIDs()

std::set<int> JDETECTOR::getStringIDs ( const JDetector detector)
inline

Get list of strings identifiers.

Parameters
detectordetector
Returns
list of string identifiers

Definition at line 204 of file JDetectorToolkit.hh.

205  {
206  std::set<int> buffer;
207 
208  for (JDetector::const_iterator module = detector.begin(); module != detector.end(); ++module) {
209  buffer.insert(module->getString());
210  }
211 
212  return buffer;
213  }

◆ getModuleIDs()

std::set<int> JDETECTOR::getModuleIDs ( const JDetector detector,
const bool  option = false 
)
inline

Get list of modules identifiers.

Parameters
detectordetector
optionoption to include base modules
Returns
list of module identifiers

Definition at line 223 of file JDetectorToolkit.hh.

224  {
225  std::set<int> buffer;
226 
227  for (JDetector::const_iterator module = detector.begin(); module != detector.end(); ++module) {
228  if (option || !module->empty()) {
229  buffer.insert(module->getID());
230  }
231  }
232 
233  return buffer;
234  }

◆ getNumberOfFloors()

int JDETECTOR::getNumberOfFloors ( const JDetector detector)
inline

Get number of floors.

Parameters
detectordetector
Returns
number of floors

Definition at line 243 of file JDetectorToolkit.hh.

244  {
245  std::set<int> buffer;
246 
247  for (JDetector::const_iterator module = detector.begin(); module != detector.end(); ++module) {
248  buffer.insert(module->getFloor());
249  }
250 
251  return buffer.size();
252  }

◆ getRangeOfFloors()

floor_range JDETECTOR::getRangeOfFloors ( const JDetector detector)
inline

Get range of floors.

Parameters
detectordetector
Returns
range of floors

Definition at line 267 of file JDetectorToolkit.hh.

268  {
269  floor_range buffer = floor_range::DEFAULT_RANGE();
270 
271  for (JDetector::const_iterator module = detector.begin(); module != detector.end(); ++module) {
272  buffer.include(module->getFloor());
273  }
274 
275  return buffer;
276  }
range_type & include(argument_type x)
Include given value to range.
Definition: JRange.hh:397

◆ getNumberOfModules()

int JDETECTOR::getNumberOfModules ( const JDetector detector)
inline

Get number of modules.

Parameters
detectordetector
Returns
number of modules

Definition at line 285 of file JDetectorToolkit.hh.

286  {
287  std::set<int> buffer;
288 
289  for (JDetector::const_iterator module = detector.begin(); module != detector.end(); ++module) {
290  buffer.insert(module->getID());
291  }
292 
293  return buffer.size();
294  }

◆ GetXrotationG4()

double JDETECTOR::GetXrotationG4 ( const JVersor3D dir)
inline

Get rotation over X axis in Geant4 coordinate system.

Parameters
dirdirection
Returns
X-rotation [deg]

Definition at line 303 of file JDetectorToolkit.hh.

304  {
305  using namespace JPP;
306 
307  const double phi = atan2(dir.getDY(), dir.getDZ())*(180.0/PI);
308 
309  if (phi < 0.0){
310  return phi + 360.0;
311  }
312  else{
313  return phi;
314  }
315  }
double getDY() const
Get y direction.
Definition: JVersor3D.hh:106
double getDZ() const
Get z direction.
Definition: JVersor3D.hh:117

◆ GetYrotationG4()

double JDETECTOR::GetYrotationG4 ( const JVersor3D dir)
inline

Get rotation over Y axis in Geant4 coordinate system.

Parameters
dirdirection
Returns
Y-rotation [deg]

Definition at line 324 of file JDetectorToolkit.hh.

325  {
326  using namespace JPP;
327 
328  return asin(-dir.getDX())*(180.0/PI);
329  }
double getDX() const
Get x direction.
Definition: JVersor3D.hh:95

◆ read_gdml()

void JDETECTOR::read_gdml ( std::istream &  ,
JDetector  
)
inline

Definition at line 332 of file JDetectorToolkit.hh.

333  {
334  THROW(JException, "Operation not defined.");
335  }
#define THROW(JException_t, A)
Marco for throwing exception with std::ostream compatible message.
Definition: JException.hh:712
General exception.
Definition: JException.hh:24

◆ write_gdml()

void JDETECTOR::write_gdml ( std::ostream &  out,
const JDetector detector 
)
inline

Writes KM3Sim GDML input file from detector.

Parameters
outoutput stream
detectordetector

Definition at line 344 of file JDetectorToolkit.hh.

345  {
346  using namespace std;
347  using namespace JPP;
348 
349  const double DEFAULT_CAN_MARGIN_M = 350.0; // default can margin [m]
350  const double DEFAULT_WORLD_MARGIN_M = 50.0; // default world margin [m]
351 
352  const JCylinder3D cylinder(detector.begin(), detector.end());
353 
354  double can_margin;
355 
356  if (CAN_MARGIN_M) {
357  can_margin = atof(CAN_MARGIN_M);
358  } else {
359  cerr << "CAN_MARGIN_M not defined! Setting standard CAN_MARGIN_M " << DEFAULT_CAN_MARGIN_M << " m." << endl;
360  can_margin = DEFAULT_CAN_MARGIN_M; //this is given in meters like all the dimensions in the GDML file (look at the unit field of every position and solid definition)
361  }
362 
363  const double WorldCylinderHeight = 2*(cylinder.getZmax() - cylinder.getZmin() + can_margin + DEFAULT_WORLD_MARGIN_M);
364  const double WorldRadius = cylinder.getLength() + cylinder.getRadius() + can_margin + DEFAULT_WORLD_MARGIN_M;
365 
366  const double Crust_Z_size = WorldCylinderHeight/2;
367  const double Crust_Z_position = -WorldCylinderHeight/4;
368 
369  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=\"";
370  if (!GDML_SCHEMA) {
371  cerr << "GDML_SCHEMA_DIR NOT DEFINED! Setting default path." << endl;
372  out << G4GDML_DEFAULT_SCHEMALOCATION << "\">\n\n\n";
373  } else {
374  out << GDML_SCHEMA << "gdml.xsd\">\n\n\n";
375  }
376  out << "<!-- Jpp version: "<< getGITVersion() << " -->\n";
377  out << "<define>\n";
378  out << "<rotation name=\"identity\"/>\n<position name=\"zero\"/>\n";
379 
380  int PMTs_NO = 0;
381 
382  for (JDetector::const_iterator module = detector.begin(); module != detector.end(); ++module) {
383 
384  if(module->empty()) continue;
385 
386  const JVector3D center = module->getCenter();
387 
388  out << "<position name=\"PosString" << module->getString() << "_Dom" << module->getID() << "\" unit=\"m\" x=\"" << module->getX() << "\" y=\"" << module->getY() << "\" z=\"" << module->getZ() << "\"/>\n";
389 
390  for (JModule::const_iterator pmt = module->begin(); pmt != module->end(); ++pmt) {
391 
392  const JVector3D vec = static_cast<JVector3D>(*pmt).sub(center);
393  out << "<position name=\"CathodPosition" << pmt->getID() << "_" << module->getID() << "\" unit=\"m\" x=\"" << vec.getX() << "\" y=\"" << vec.getY() << "\" z=\"" << vec.getZ() << "\"/>\n";
394  out << "<rotation name=\"CathodRotation" << pmt->getID() << "_" << module->getID() << "\" unit=\"deg\" x=\"" << GetXrotationG4(*pmt) << "\" y=\"" << GetYrotationG4(*pmt) << "\" z=\"0.000000\"/>\n";
395  out << "<constant name=\"CathodID_" << PMTs_NO << "\" value=\"" << pmt->getID() << "\"/>\n";
396  PMTs_NO++;
397  }
398 
399  }
400 
401  out << "<position name=\"OMShift\" unit=\"m\" x=\"0\" y=\"0\" z=\"0.0392\"/>\n";
402  out << "\n\n\n";
403  out << "<!-- end of DU position definitions -->\n<position name=\"CrustPosition\" unit=\"m\" x=\"0\" y=\"0\" z=\"" << Crust_Z_position << "\"/>\n";
404 
405  out << "</define>\n";
406  out << "<materials>\n";
407  out << "</materials>\n";
408  out << "<solids>\n";
409  out << " <box name=\"CrustBox\" lunit=\"m\" x=\"2200\" y=\"2200\" z=\"" << Crust_Z_size << "\"/>\n";
410  out << " <box name=\"StoreyBox\" lunit=\"m\" x=\"0.6\" y=\"0.6\" z=\"0.6\"/>\n";
411  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";
412  out << " <tube name=\"CathodTube\" lunit=\"cm\" aunit=\"deg\" rmin=\"0.0\" rmax=\"4.7462\" z=\"0.5\" startphi=\"0.0\" deltaphi=\"360.0\"/>\n";
413  out << " <tube name=\"WorldTube\" lunit=\"m\" aunit=\"deg\" rmin=\"0.0\" rmax=\"" << WorldRadius << "\" z=\"" << WorldCylinderHeight << "\" startphi=\"0.0\" deltaphi=\"360.0\"/>\n";
414  out << "</solids>\n\n\n";
415 
416  out << "<structure>\n";
417  out << " <volume name=\"CathodVolume\">\n";
418  out << " <materialref ref=\"Cathod\"/>\n";
419  out << " <solidref ref=\"CathodTube\"/>\n";
420  out << " </volume>\n";
421 
422  out << "<!-- OMVolume(s) construction -->\n";
423 
424  for (JDetector::const_iterator module = detector.begin(); module != detector.end(); ++module) {
425 
426  if(module->empty()) continue;
427  out << " <volume name=\"OMVolume" << module->getID() << "\">\n";
428  out << " <materialref ref=\"Water\"/>\n";
429  out << " <solidref ref=\"OMSphere\"/>\n";
430 
431  for (JModule::const_iterator pmt = module->begin(); pmt != module->end(); ++pmt) {
432  out << " <physvol>\n";
433  out << " <volumeref ref=\"CathodVolume\"/>\n";
434  out << " <positionref ref=\"CathodPosition" << pmt->getID() << "_" << module->getID() << "\"/>\n";
435  out << " <rotationref ref=\"CathodRotation" << pmt->getID() << "_" << module->getID() << "\"/>\n";
436  out << " </physvol>\n";
437  }
438 
439  out << " </volume>\n";
440  }
441 
442  out << "<!-- StoreyVolume(s) construction -->\n";
443 
444  for (JDetector::const_iterator module = detector.begin(); module != detector.end(); ++module) {
445  if(module->empty()) continue;
446  out << " <volume name=\"StoreyVolume" << module->getID() << "\">\n";
447  out << " <materialref ref=\"Water\"/>\n";
448  out << " <solidref ref=\"StoreyBox\"/>\n";
449  out << " <physvol>\n";
450  out << " <volumeref ref=\"OMVolume" << module->getID() << "\"/>\n";
451  out << " <positionref ref=\"OMShift\"/>\n";
452  out << " <rotationref ref=\"identity\"/>\n";
453  out << " </physvol>\n";
454  out << " </volume>\n";
455  }
456 
457  out << "<!-- Crust Volume construction-->\n";
458  out << "<volume name=\"CrustVolume\">\n";
459  out << " <materialref ref=\"Crust\"/>\n";
460  out << " <solidref ref=\"CrustBox\"/>\n";
461  out << "</volume>\n";
462 
463  out << "<!-- World Volume construction-->\n";
464  out << "<volume name=\"WorldVolume\">\n";
465  out << " <materialref ref=\"Water\"/>\n";
466  out << " <solidref ref=\"WorldTube\"/>\n";
467 
468  out << " <physvol>\n";
469  out << " <volumeref ref=\"CrustVolume\"/>\n";
470  out << " <positionref ref=\"CrustPosition\"/>\n";
471  out << " <rotationref ref=\"identity\"/>\n";
472  out << " </physvol>\n";
473 
474  for (JDetector::const_iterator module = detector.begin(); module != detector.end(); ++module) {
475  if(module->empty()) continue;
476  out << " <physvol>\n";
477  out << " <volumeref ref=\"StoreyVolume" << module->getID() << "\"/>\n";
478  out << " <positionref ref=\"PosString" << module->getString() << "_Dom" << module->getID() << "\"/>\n";
479  out << " <rotationref ref=\"identity\"/>\n";
480  out << " </physvol>\n";
481  }
482 
483  out << "</volume>\n";
484 
485  out << "</structure>\n";
486  out << "<setup name=\"Default\" version=\"1.0\">\n";
487  out << "<world ref=\"WorldVolume\"/>\n";
488  out << "</setup>\n";
489  out << "</gdml>\n";
490  }
Cylinder object.
Definition: JCylinder3D.hh:41
double getY() const
Get y position.
Definition: JVector3D.hh:104
double getZ() const
Get z position.
Definition: JVector3D.hh:115
JVector3D & sub(const JVector3D &vector)
Subtract vector.
Definition: JVector3D.hh:158
double getX() const
Get x position.
Definition: JVector3D.hh:94
static const char *const G4GDML_DEFAULT_SCHEMALOCATION
static const char *const CAN_MARGIN_M
extension of the detector size to comply with the can definition
static const char *const GDML_SCHEMA
directory necessary for correct GDML header output
double GetYrotationG4(const JVersor3D &dir)
Get rotation over Y axis in Geant4 coordinate system.
double GetXrotationG4(const JVersor3D &dir)
Get rotation over X axis in Geant4 coordinate system.
std::string getGITVersion(const std::string &tag)
Get GIT version for given GIT tag.

◆ load()

void JDETECTOR::load ( const std::string &  file_name,
JDetector detector 
)
inline

Load detector from input file.

Supported file formats:

Parameters
file_namefile name
detectordetector

Definition at line 505 of file JDetectorToolkit.hh.

506  {
507  using namespace std;
508  using namespace JPP;
509 
511 
512  JMonteCarloDetector buffer(true);
513 
514  ifstream in(file_name.c_str());
515 
516  if (!in) {
517  THROW(JFileOpenException, "File not opened for reading: " << file_name);
518  }
519 
520  in >> buffer;
521 
522  in.close();
523 
524  detector.swap(buffer);
525 
526  } else if (getFilenameExtension(file_name) == BINARY_DETECTOR_FILE_FORMAT[0] ||
528 
529  JFileStreamReader in(file_name.c_str());
530 
531  if (!in) {
532  THROW(JFileOpenException, "File not opened for reading: " << file_name);
533  }
534 
535  try {
536 
537  detector.read(in);
538 
539  } catch(const exception& error) {
540 
541  // recovery procedure for old format of comments
542 
543  JDetector::setStartOfComment(JDetector::OLD_START_OF_COMMENT);
544 
545  in.clear();
546  in.rewind();
547 
548  detector.read(in);
549 
550  JDetector::setStartOfComment(JDetector::NEW_START_OF_COMMENT);
551  }
552 
553  in.close();
554 
555  } else if (getFilenameExtension(file_name) == KM3NET_DETECTOR_FILE_FORMAT) {
556 
557  ifstream in(file_name.c_str());
558 
559  if (!in) {
560  THROW(JFileOpenException, "File not opened for reading: " << file_name);
561  }
562 
563  in >> detector;
564 
565  in.close();
566 
567  } else if (getFilenameExtension(file_name) == ZIPPED_DETECTOR_FILE_FORMAT) {
568 
569  igzstream in(file_name.c_str());
570 
571  if (!in) {
572  THROW(JFileOpenException, "File not opened for reading: " << file_name);
573  }
574 
575  in >> detector;
576 
577  in.close();
578 
579  } else {
580 
581  THROW(JProtocolException, "Protocol not defined: " << file_name);
582  }
583 
584  if (!detector.hasVersion()) {
585  THROW(JValueOutOfRange, "Invalid version <" << detector.getVersion() << ">");
586  }
587  }
Monte Carlo detector (i.e. ".det" file).
Binary buffered file input.
Exception for opening of file.
Definition: JException.hh:360
Protocol exception.
Definition: JException.hh:666
Exception for accessing a value in a collection that is outside of its range.
Definition: JException.hh:180
static const char *const ZIPPED_DETECTOR_FILE_FORMAT
zipped KM3NeT standard ASCII format
static const char *const KM3NET_DETECTOR_FILE_FORMAT
KM3NeT standard ASCII format
static const char *const GENDET_DETECTOR_FILE_FORMAT
File name extensions.
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.
Definition: JeepToolkit.hh:109

◆ store()

void JDETECTOR::store ( const std::string &  file_name,
const JDetector detector 
)
inline

Store detector to output file.

Supported file formats:

Parameters
file_namefile name
detectordetector

Definition at line 602 of file JDetectorToolkit.hh.

603  {
604  using namespace std;
605  using namespace JPP;
606 
607  if (getFilenameExtension(file_name) == BINARY_DETECTOR_FILE_FORMAT[1]) {
608 
609  JFileStreamWriter out(file_name.c_str());
610 
611  if (!out) {
612  THROW(JFileOpenException, "File not opened for writing: " << file_name);
613  }
614 
615  detector.write(out);
616 
617  out.close();
618 
619  } else if (getFilenameExtension(file_name) == KM3NET_DETECTOR_FILE_FORMAT) {
620 
621  std::ofstream out(file_name.c_str());
622 
623  if (!out) {
624  THROW(JFileOpenException, "File not opened for writing: " << file_name);
625  }
626 
627  out << detector;
628 
629  out.close();
630 
631  } else if (getFilenameExtension(file_name) == ZIPPED_DETECTOR_FILE_FORMAT) {
632 
633  ogzstream out(file_name.c_str());
634 
635  if (!out) {
636  THROW(JFileOpenException, "File not opened for writing: " << file_name);
637  }
638 
639  out << detector;
640 
641  out.close();
642 
643  } else if (getFilenameExtension(file_name) == GDML_DETECTOR_FILE_FORMAT) {
644 
645  std::ofstream out(file_name.c_str());
646 
647  if (!out) {
648  THROW(JFileOpenException, "File not opened for writing: " << file_name);
649  }
650 
651  write_gdml(out, detector);
652 
653  out.close();
654 
655  } else {
656 
657  THROW(JProtocolException, "Protocol not defined: " << file_name);
658  }
659  }
Binary buffered file output.
static const char *const GDML_DETECTOR_FILE_FORMAT
KM3Sim input format.
void write_gdml(std::ostream &out, const JDetector &detector)
Writes KM3Sim GDML input file from detector.

◆ getPosition()

JPosition3D JDETECTOR::getPosition ( const JModule first,
const JModule second 
)
inline

Get position to go from first to second module.

Parameters
firstfirst module
secondsecond module
Returns
position

Definition at line 796 of file JDetectorToolkit.hh.

797  {
798  return second.getPosition() - first.getPosition();
799  }
const JPosition3D & getPosition() const
Get position.
Definition: JPosition3D.hh:130

◆ getCalibration()

JCalibration JDETECTOR::getCalibration ( const JCalibration first,
const JCalibration second 
)
inline

Get calibration to go from first to second calibration.

Parameters
firstfirst calibration
secondsecond calibration
Returns
calibration

Definition at line 809 of file JDetectorToolkit.hh.

810  {
811  return JCalibration(second.getT0() - first.getT0());
812  }
double getT0() const
Get time offset.

◆ getDetectorVersions() [1/3]

std::vector<std::string> JDETECTOR::getDetectorVersions ( const JType< std::string > &  type)
inline

Get detector versions.

Note that the order of the versions is descending.

Parameters
typetype
Returns
versions

Definition at line 328 of file JDetectorVersion.hh.

329  {
330  return JLANG::make_array(putDetectorVersion.rbegin(), putDetectorVersion.rend(), &JPutDetectorVersion::value_type::second);
331  }
static const JPutDetectorVersion putDetectorVersion(getDetectorVersion)
Function object to map numerical value to detector version.
const array_type< JValue_t > & make_array(const JValue_t(&array)[N])
Method to create array of values.
Definition: JVectorize.hh:54

◆ getDetectorVersions() [2/3]

std::vector<JDetectorVersion::JVersion_t> JDETECTOR::getDetectorVersions ( const JType< JDetectorVersion::JVersion_t > &  type)
inline

Get detector versions.

Note that the order of the versions is descending.

Parameters
typetype
Returns
numerical values

Definition at line 342 of file JDetectorVersion.hh.

343  {
344  return JLANG::make_array(putDetectorVersion.rbegin(), putDetectorVersion.rend(), &JPutDetectorVersion::value_type::first);
345  }

◆ getDetectorVersions() [3/3]

template<class T >
std::vector<T> JDETECTOR::getDetectorVersions ( )
inline

Get detector versions.

Returns
versions

Definition at line 354 of file JDetectorVersion.hh.

355  {
356  return getDetectorVersions(JType<T>());
357  }
std::vector< T > getDetectorVersions()
Get detector versions.

◆ getLatestDetectorVersion() [1/4]

std::string JDETECTOR::getLatestDetectorVersion ( const JType< std::string > &  type)
inline

Get latest detector version.

Parameters
typetype
Returns
version

Definition at line 366 of file JDetectorVersion.hh.

367  {
368  return putDetectorVersion.rbegin()->second;
369  }

◆ getLatestDetectorVersion() [2/4]

JVersion JDETECTOR::getLatestDetectorVersion ( const JType< JVersion > &  type)
inline

Get latest detector version.

Parameters
typetype
Returns
version

Definition at line 378 of file JDetectorVersion.hh.

379  {
380  return putDetectorVersion.rbegin()->second;
381  }

◆ getLatestDetectorVersion() [3/4]

JDetectorVersion::JVersion_t JDETECTOR::getLatestDetectorVersion ( const JType< JDetectorVersion::JVersion_t > &  type)
inline

Get latest detector version.

Parameters
typetype
Returns
version

Definition at line 390 of file JDetectorVersion.hh.

391  {
392  return putDetectorVersion.rbegin()->first;
393  }

◆ getLatestDetectorVersion() [4/4]

template<class T >
T JDETECTOR::getLatestDetectorVersion ( )
inline

Get latest detector version.

Returns
version

Definition at line 402 of file JDetectorVersion.hh.

403  {
405  }
T getLatestDetectorVersion()
Get latest detector version.

◆ getLabel() [1/2]

std::string JDETECTOR::getLabel ( const JLocation location)
inline

Get module label for monitoring and other applications.


The format is "(XXXX,YY)", where XXXX is the string number and YY the floor.

Parameters
locationmodule location
Returns
label

Definition at line 247 of file JLocation.hh.

248  {
249  using namespace std;
250  using namespace JPP;
251 
252  return MAKE_STRING("(" << FILL(4,'0') << location.getString() << "." << FILL(2,'0') << location.getFloor() << ")");
253  }
#define MAKE_STRING(A)
Make string.
Definition: JPrint.hh:63
int getFloor() const
Get floor number.
Definition: JLocation.hh:146
int getString() const
Get string number.
Definition: JLocation.hh:135
Auxiliary data structure for sequence of same character.
Definition: JManip.hh:330

◆ setAttributes()

template<class JAttributes_t >
void JDETECTOR::setAttributes ( const JModule first,
const JModule second,
JAttributes_t &  attributes 
)

Template method to set module attributes.

This method should be overloaded for each type of module attributes.

Parameters
firstfirst module
secondsecond module
attributesmodule attributes

◆ setAttributes< JNullType >()

template<>
void JDETECTOR::setAttributes< JNullType > ( const JModule first,
const JModule second,
JNullType attributes 
)

Template specialisation to set no attributes for the default empty object.

Parameters
firstfirst module
secondsecond module
attributesmodule attributes

Definition at line 49 of file JModuleMapper.hh.

52  {}

◆ getModuleStatusBits() [1/3]

std::vector<std::string> JDETECTOR::getModuleStatusBits ( const JType< std::string > &  type)
inline

Get module status bits.

Parameters
typetype
Returns
status bits

Definition at line 79 of file JModuleStatus.hh.

80  {
82  }
static const JGetModuleStatusBit getModuleStatusBit
Function object to map key to module status bit.
const array_type< JKey_t > & get_keys(const std::map< JKey_t, JValue_t, JComparator_t, JAllocator_t > &data)
Method to create array of keys of map.
Definition: JVectorize.hh:139

◆ getModuleStatusBits() [2/3]

std::vector<int> JDETECTOR::getModuleStatusBits ( const JType< int > &  type)
inline

Get module status bits.

Parameters
typetype
Returns
status bits

Definition at line 91 of file JModuleStatus.hh.

92  {
94  }
static const JPutModuleStatusBit putModuleStatusBit(getModuleStatusBit)
Function object to map module status bit to key.

◆ getModuleStatusBits() [3/3]

template<class T >
std::vector<T> JDETECTOR::getModuleStatusBits ( )
inline

Get module status bits.

Returns
status bits

Definition at line 103 of file JModuleStatus.hh.

104  {
105  return getModuleStatusBits(JType<T>());
106  }
std::vector< T > getModuleStatusBits()
Get module status bits.

◆ getPiezoPosition()

JPosition3D JDETECTOR::getPiezoPosition ( )
inline

Get relative position of piezo in optical module.

Returns
position [m]

Definition at line 30 of file JModuleSupportkit.hh.

31  {
32  return JPosition3D(0.0, 0.0, -0.20);
33  }

◆ getTimeOverThresholdProbability()

double JDETECTOR::getTimeOverThresholdProbability ( const JPMTAnalogueSignalProcessor pmt,
const double  tot_ns,
const double  NPE,
const double  precision = 1.0e-4 
)
inline

Get time-over-threshold probability.

Parameters
pmtPMT signal processor
tot_nstime-over-threshold [ns]
NPEexpected number of photo-electrons
precisionprecision
Returns
probability

Definition at line 880 of file JPMTAnalogueSignalProcessor.hh.

884  {
885  int i = (int) (NPE - 5.0 * sqrt(NPE) - 0.5);
886  int M = (int) (NPE + 5.0 * sqrt(NPE) + 0.5);
887 
888  if (i < 1) { i = 1; }
889  if (M < i) { M = i; }
890 
891  double p = NPE * exp(-NPE) / (double) 1;
892 
893  for (int __i = 1; __i != i; ++__i) {
894  p *= NPE / __i;
895  }
896 
897  double P = 0.0;
898 
899  for (double p0 = 0.0; (p >= p0 || p > precision) && i != M; ++i, p0 = p, p *= NPE / (double) i) {
900  P += pmt.getTimeOverThresholdProbability(tot_ns, i) * p;
901  }
902 
903  return P;
904  }

◆ getLabel() [2/2]

std::string JDETECTOR::getLabel ( const JPMTIdentifier id)
inline

Get PMT label for monitoring and other applications.


The format is "(XXXXXXXXXX,YY)", where XXXXXXXXXX is the module idetifier and YY the PMT readout channel.

Parameters
idPMT identifier
Returns
label

Definition at line 193 of file JPMTIdentifier.hh.

194  {
195  using namespace std;
196  using namespace JPP;
197 
198  return MAKE_STRING("(" << FILL(10,'0') << id.getID() << "," << FILL(2,'0') << id.getPMTAddress() << ")");
199  }

◆ getSurvivalProbability()

double JDETECTOR::getSurvivalProbability ( const JPMTParameters parameters)
inline

Get model dependent probability that a one photo-electron hit survives the simulation of the PMT assuming QE = 1.

Parameters
parametersPMT parameters
Returns
probability

Definition at line 32 of file JPMTParametersToolkit.hh.

33  {
34  JPMTParameters data = parameters;
35  const int NPE = 1;
36 
37  data.QE = 1.0;
38 
40  }
Data structure for PMT parameters.
virtual double getSurvivalProbability(const int NPE) const override
Probability that a hit survives the simulation of the PMT.

◆ getHitProbability()

double JDETECTOR::getHitProbability ( const double  QE,
const double  mu 
)
inline

Get ratio of hit probabilities for given QE and expectation value of the number of photo-electrons.


The ratio corresponds to the hit probability with given QE divided by that with QE = 1.
The expectation value is defined for a two-fold (or higher) coincidence.

Parameters
QEQE
muexpectation value
Returns
ratio

Definition at line 52 of file JPMTParametersToolkit.hh.

53  {
54  if (mu > 0.0)
55  return (1.0 - exp(-QE*mu)) / (1.0 - exp(-mu));
56  else
57  return QE;
58  }

◆ getMaximalHitProbability()

double JDETECTOR::getMaximalHitProbability ( const double  mu)
inline

Get maximal ratio of hit probabilities for given QE and expectation value of the number of photo-electrons.


The ratio corresponds to the hit probability with infinite QE divided by that with QE = 1.
The expectation value is defined for a two-fold (or higher) coincidence.

Parameters
muexpectation value
Returns
ratio

Definition at line 69 of file JPMTParametersToolkit.hh.

70  {
71  using namespace std;
72 
73  if (mu > 0.0)
74  return 1.0 / (1.0 - exp(-mu));
75  else
76  return numeric_limits<double>::max();
77  }

◆ getQE()

double JDETECTOR::getQE ( const double  R,
const double  mu 
)
inline

Get QE for given ratio of hit probabilities and expectation value of the number of photo-electrons.


The ratio corresponds to the hit probability with given QE divided by that with QE = 1.
The expectation value is defined for a two-fold (or higher) coincidence.

Parameters
Rratio
muexpectation value
Returns
QE

Definition at line 89 of file JPMTParametersToolkit.hh.

90  {
91  if (R < getMaximalHitProbability(mu)) {
92 
93  if (mu > 0.0)
94  return -log(1.0 - R*(1.0 - exp(-mu))) / mu;
95  else
96  return R;
97 
98  } else {
99 
100  THROW(JValueOutOfRange, "Inconsistent arguments at method getQE(" << R << "," << mu <<")");
101  }
102  }
double getMaximalHitProbability(const double mu)
Get maximal ratio of hit probabilities for given QE and expectation value of the number of photo-elec...

◆ getChargeProbability()

double JDETECTOR::getChargeProbability ( const JPMTSignalProcessorInterface pmt,
const double  npe,
const double  NPE,
const double  precision = 1.0e-4 
)
inline

Get charge probability.

Parameters
pmtPMT signal processor
npemeasured number of photo-electrons
NPEexpected number of photo-electrons
precisionprecision
Returns
probability

Definition at line 350 of file JPMTSignalProcessorInterface.hh.

354  {
355  int i = (int) (NPE - 5.0 * sqrt(NPE));
356 
357  if (i < 1) {
358  i = 1;
359  }
360 
361  double p = NPE * exp(-NPE) / (double) 1;
362 
363  for (int __i = 1; __i != i; ++__i) {
364  p *= NPE / __i;
365  }
366 
367  double P = 0.0;
368 
369  for (double p0 = 0.0; (p >= p0 || p > precision); ++i, p0 = p, p *= NPE / (double) i) {
370  P += pmt.getChargeProbability(npe, i) * p;
371  }
372 
373  return P;
374  }
virtual double getChargeProbability(const double npe, const int NPE) const
Get probability density for given charge.

◆ operator<() [2/4]

bool JDETECTOR::operator< ( const JPhotoElectron first,
const JPhotoElectron second 
)
inline

Less than operator for photo-elecrons.

Parameters
firstfirst photo-electron
secondsecond photo-electron
Returns
true if first photo-electron earlier than second; else false

Definition at line 70 of file JPMTSimulator.hh.

71  {
72  return first.t_ns < second.t_ns;
73  }

◆ operator<() [3/4]

bool JDETECTOR::operator< ( const JPMTSignal first,
const JPMTSignal second 
)
inline

Less than operator for PMT signals.

Parameters
firstfirst PMT signal
secondsecond PMT signal
Returns
true if first PMT signal earlier than second; else false

Definition at line 114 of file JPMTSimulator.hh.

115  {
116  return first.t_ns < second.t_ns;
117  }
double t_ns
time [ns]

◆ operator<() [4/4]

bool JDETECTOR::operator< ( const JPMTPulse first,
const JPMTPulse second 
)
inline

Less than operator for PMT pulses.

Parameters
firstfirst PMT pulse
secondsecond PMT pulse
Returns
true if first PMT pulse earlier than second; else false

Definition at line 158 of file JPMTSimulator.hh.

159  {
160  return first.t_ns < second.t_ns;
161  }
double t_ns
time [ns]

◆ getTimeRange() [2/3]

JTimeRange JDETECTOR::getTimeRange ( const JPMTData< JPMTSignal > &  input)
inline

Get time range (i.e. earlist and latest hit time) of PMT data.

Parameters
inputPMT data
Returns
time range

Definition at line 287 of file JPMTSimulator.hh.

288  {
289  JTimeRange range(JTimeRange::DEFAULT_RANGE());
290 
291  for (JPMTData<JPMTSignal>::const_iterator hit = input.begin(); hit != input.end(); ++hit) {
292  range.include(hit->t_ns);
293  }
294 
295  return range;
296  }
std::vector< JElement_t >::const_iterator const_iterator

◆ getTimeRange() [3/3]

JTimeRange JDETECTOR::getTimeRange ( const JModuleData input)
inline

Get time range (i.e. earlist and latest hit time) of module data.

Parameters
inputmodule data
Returns
time range

Definition at line 305 of file JPMTSimulator.hh.

306  {
307  JTimeRange range(JTimeRange::DEFAULT_RANGE());
308 
309  for (JModuleData::const_iterator frame = input.begin(); frame != input.end(); ++frame) {
310  for (JModuleData::value_type::const_iterator hit = frame->begin(); hit != frame->end(); ++hit) {
311  range.include(hit->t_ns);
312  }
313  }
314 
315  return range;
316  }

◆ getPMTStatusBits() [1/3]

std::vector<std::string> JDETECTOR::getPMTStatusBits ( const JType< std::string > &  type)
inline

Get PMT status bits.

Parameters
typetype
Returns
status bits

Definition at line 80 of file JPMTStatus.hh.

81  {
83  }
static const JGetPMTStatusBit getPMTStatusBit
Function object to map key to PMT status bit.
Definition: JPMTStatus.hh:65

◆ getPMTStatusBits() [2/3]

std::vector<int> JDETECTOR::getPMTStatusBits ( const JType< int > &  type)
inline

Get PMT status bits.

Parameters
typetype
Returns
status bits

Definition at line 92 of file JPMTStatus.hh.

93  {
95  }
static const JPutPMTStatusBit putPMTStatusBit(getPMTStatusBit)
Function object to map PMT status bit to key.

◆ getPMTStatusBits() [3/3]

template<class T >
std::vector<T> JDETECTOR::getPMTStatusBits ( )
inline

Get PMT status bits.

Returns
status bits

Definition at line 104 of file JPMTStatus.hh.

105  {
106  return getPMTStatusBits(JType<T>());
107  }
std::vector< T > getPMTStatusBits()
Get PMT status bits.
Definition: JPMTStatus.hh:104

Variable Documentation

◆ TIME_OVER_THRESHOLD_NS

const double JDETECTOR::TIME_OVER_THRESHOLD_NS = 25.08

Specification for time-over-threshold corresponding to a one photo-electron pulse.

Definition at line 30 of file JDetector/JCalibration.hh.

◆ NOMINAL_GAIN

const double JDETECTOR::NOMINAL_GAIN = 1.0

Specification for normalized gain corresponding to a one photo-electron pulse.

Definition at line 35 of file JDetector/JCalibration.hh.

◆ ORCA_TBARZ_M

const double JDETECTOR::ORCA_TBARZ_M = 0.91
static

ORCA T-bar position relative to seabed [m].

Definition at line 36 of file JDetectorSupportkit.hh.

◆ ARCA_TBARZ_M

const double JDETECTOR::ARCA_TBARZ_M = 0.95
static

ORCA T-bar position relative to seabed [m].

Definition at line 37 of file JDetectorSupportkit.hh.

◆ GENDET_DETECTOR_FILE_FORMAT

const char* const JDETECTOR::GENDET_DETECTOR_FILE_FORMAT = "det"
static

File name extensions.

file format used by gendet

Definition at line 59 of file JDetectorToolkit.hh.

◆ BINARY_DETECTOR_FILE_FORMAT

const char* const JDETECTOR::BINARY_DETECTOR_FILE_FORMAT[] = { "dat", "datx" }
static

JIO binary file format.

Definition at line 60 of file JDetectorToolkit.hh.

◆ KM3NET_DETECTOR_FILE_FORMAT

const char* const JDETECTOR::KM3NET_DETECTOR_FILE_FORMAT = "detx"
static

KM3NeT standard ASCII format

Definition at line 61 of file JDetectorToolkit.hh.

◆ ZIPPED_DETECTOR_FILE_FORMAT

const char* const JDETECTOR::ZIPPED_DETECTOR_FILE_FORMAT = "gz"
static

zipped KM3NeT standard ASCII format

Definition at line 62 of file JDetectorToolkit.hh.

◆ GDML_DETECTOR_FILE_FORMAT

const char* const JDETECTOR::GDML_DETECTOR_FILE_FORMAT = "gdml"
static

KM3Sim input format.

Definition at line 63 of file JDetectorToolkit.hh.

◆ GDML_SCHEMA

const char* const JDETECTOR::GDML_SCHEMA = getenv("GDML_SCHEMA_DIR")
static

directory necessary for correct GDML header output

Definition at line 65 of file JDetectorToolkit.hh.

◆ CAN_MARGIN_M

const char* const JDETECTOR::CAN_MARGIN_M = getenv("CAN_MARGIN_M")
static

extension of the detector size to comply with the can definition

Definition at line 66 of file JDetectorToolkit.hh.

◆ G4GDML_DEFAULT_SCHEMALOCATION

const char* const JDETECTOR::G4GDML_DEFAULT_SCHEMALOCATION = "http://service-spi.web.cern.ch/service-spi/app/releases/GDML/schema/gdml.xsd"
static

Definition at line 67 of file JDetectorToolkit.hh.

◆ getRotation

JRotation JDETECTOR::getRotation
static

Function object to get rotation matrix to go from first to second module.

Definition at line 786 of file JDetectorToolkit.hh.

◆ getDetectorVersion

const JGetDetectorVersion JDETECTOR::getDetectorVersion
static

Function object to map detector version to numerical value.

Definition at line 311 of file JDetectorVersion.hh.

◆ putDetectorVersion

const JPutDetectorVersion JDETECTOR::putDetectorVersion(getDetectorVersion) ( getDetectorVersion  )
static

Function object to map numerical value to detector version.

◆ getModuleStatusBit

const JGetModuleStatusBit JDETECTOR::getModuleStatusBit
static

Function object to map key to module status bit.

Definition at line 64 of file JModuleStatus.hh.

◆ putModuleStatusBit

const JPutModuleStatusBit JDETECTOR::putModuleStatusBit(getModuleStatusBit) ( getModuleStatusBit  )
static

Function object to map module status bit to key.

◆ PIEZO_V1_DELAYTIME_US

const double JDETECTOR::PIEZO_V1_DELAYTIME_US = 170.3
static

Piezo delay time [us].

Definition at line 19 of file JModuleSupportkit.hh.

◆ PIEZO_V2_DELAYTIME_US

const double JDETECTOR::PIEZO_V2_DELAYTIME_US = 242.1
static

Piezo delay time [us].

Definition at line 20 of file JModuleSupportkit.hh.

◆ PIEZO_V3_DELAYTIME_US

const double JDETECTOR::PIEZO_V3_DELAYTIME_US = 242.1
static

Piezo delay time [us].

Definition at line 21 of file JModuleSupportkit.hh.

◆ HYDROPHONE_DELAYTIME_US

const double JDETECTOR::HYDROPHONE_DELAYTIME_US = 50.7
static

Hydrophone delay time [us].

Definition at line 22 of file JModuleSupportkit.hh.

◆ LED_BEACON_PMT_TYPE

const int JDETECTOR::LED_BEACON_PMT_TYPE = 2
static

PMT type of LED beacon.

Definition at line 37 of file JMonteCarloDetector.hh.

◆ getPMTStatusBit

const JGetPMTStatusBit JDETECTOR::getPMTStatusBit
static

Function object to map key to PMT status bit.

Definition at line 65 of file JPMTStatus.hh.

◆ putPMTStatusBit

const JPutPMTStatusBit JDETECTOR::putPMTStatusBit(getPMTStatusBit) ( getPMTStatusBit  )
static

Function object to map PMT status bit to key.

◆ getTransitionTime

Function object to generate transition time.

◆ getTransitionTimeProbability

Function object of transition time prabability.

◆ getTransitionTimeProbability2D

const JTransitionTimeProbability2D JDETECTOR::getTransitionTimeProbability2D
static

Function object of twofold transition time prabability.

Definition at line 2660 of file JPMTTransitTimeProbability.hh.

◆ getNumberOfStrings

const JStringCounter JDETECTOR::getNumberOfStrings
static

Function object to count unique strings.

Definition at line 95 of file JStringCounter.hh.