1 #ifndef __JACOUSTICS__JGEOMETRY__ 
    2 #define __JACOUSTICS__JGEOMETRY__ 
   37 namespace JACOUSTICS {}
 
   38 namespace JPP { 
using namespace JACOUSTICS; }
 
   40 namespace JACOUSTICS {
 
  146         const double x  = 1.0 - mechanics.
a*height;
 
  148         return sqrt(1.0 + T2) * height  +  T2*mechanics.
b * 
log(x)  +  0.5*T2*mechanics.
a*mechanics.
b*mechanics.
b * (1.0/x - 1.0);
 
  166         const size_t MAXIMUM_NUMBER_OF_ITERATIONS = 10;
 
  172         for (
size_t i = 0; 
i != MAXIMUM_NUMBER_OF_ITERATIONS; ++
i) {
 
  174           const double ls = 
getLength(parameters, mechanics, z)  -  length;
 
  176           if (fabs(ls) <= precision) {
 
  180           const double vs = 1.0 - mechanics.
a*mechanics.
b / (1.0 - mechanics.
a*z);
 
  182           z -= ls / (1.0 + 0.5*T2 * vs*
vs);
 
  201         const double h1 = height * (1.0 + parameters.
vs);
 
  202         const double z1 = mechanics.
getHeight(h1);
 
  205                            parameters.
ty * z1  +  parameters.
ty2 * h1*h1,
 
  265         for (
T i = __begin; 
i != __end; ++
i) {
 
  290         if (floor >= this->size()) {
 
  291           this->resize(floor + 1);
 
  309           return (floor < this->size());
 
  328           return (*
this)[floor].getHeight();
 
  340                               const size_t           floor)
 const 
  382                          const size_t           floor)
 const 
  398                                   const size_t           floor)
 const 
  404         } 
else if (floor < this->size()) {
 
  407           const double      height = (*this)[floor].getHeight();
 
  408           const double      h1     = height * (1.0 + parameters.
vs);
 
  411           const double tx = parameters.
tx;
 
  412           const double ty = parameters.
ty;
 
  413           const double tz = sqrt(1.0 - tx*tx - ty*ty);
 
  415           const double dx = pos.
getX() - position.
getX();
 
  416           const double dy = pos.
getY() - position.
getY();
 
  417           const double dz = pos.
getZ() - position.
getZ();
 
  419           const double D  = sqrt(dx*dx + dy*dy + dz*dz);
 
  424                                  z1 * dy / D  -  height * (ty / tz) * dz / D,
 
  427                                  height * vw * (tx * dx  +  ty * dy) / D  +  h1 * (dz / vs) / D);
 
  447         for (
size_t i = 0; 
i != 
string.size(); ++
i) {
 
  449             out << setw(2)    << 
i              << 
' '  
  450                 << 
FIXED(7,3) << 
string[
i]      << 
" | " 
  451                 << 
string.getPosition(
i)        << 
' '  
  452                 << 
string.mechanics             << endl;
 
  512         for (JDETECTOR::JDetector::const_iterator module = detector.begin(); module != detector.end(); ++module) {
 
  513           buffer[module->getString()].push_back(
module_type(module->getLocation(), module->getPosition()));
 
  518           sort(
i->second.begin(), 
i->second.end(), 
make_comparator(&module_type::getFloor));
 
  520           if (
i->second[0].getFloor() == 0) {
 
  534               (*this)[
i->first].has_hydrophone = 
true;
 
  536             catch(
const exception&) {
 
  537               (*this)[
i->first].has_hydrophone = 
false;
 
  542             THROW(
JNoValue, 
"No floor 0 in string " << 
i->first << 
"; use e.g. JDetectorDB -W.");
 
  556         return this->has(
string);
 
  584           out << setw(4) << 
i->first << endl << 
i->second;
 
static double getHeight(const JMODEL::JString ¶meters, const JMechanics &mechanics, const double length, const double precision=PRECISION_M)
Get approximate height of string. 
 
Mechanical modelling of string. 
 
JPredicate< JResult_t T::*, JComparison::eq > make_predicate(JResult_t T::*member, const JResult_t value)
Helper method to create predicate for data member. 
 
const JMechanics & getMechanics() const 
Get mechanical model parameters. 
 
JComparator< JResult_t T::*, JComparison::lt > make_comparator(JResult_t T::*member)
Helper method to create comparator between values of data member. 
 
int getFloor() const 
Get floor number. 
 
static JPosition3D getPosition(const JMODEL::JString ¶meters, const JMechanics &mechanics, const double height)
Get position at given height according to given string model parameters and mechanics. 
 
friend std::ostream & operator<<(std::ostream &out, const JFloor &floor)
Write floor parameters to output stream. 
 
General purpose class for hash map of unique elements. 
 
#define THROW(JException_t, A)
Marco for throwing exception with std::ostream compatible message. 
 
double getHeight(const size_t floor) const 
Get height of receiver at given floor with respect to reference position. 
 
*fatal Wrong number of arguments esac JCookie sh typeset Z DETECTOR typeset Z SOURCE_RUN typeset Z TARGET_RUN set_variable PARAMETERS_FILE $WORKDIR parameters
 
JString()
Default constructor. 
 
Auxiliary data structure for floating point format specification. 
 
double getDistance(const JVector3D &pos) const 
Get distance to point. 
 
JFloor()
Default constructor. 
 
Data structure for detector geometry and calibration. 
 
JPosition3D getPosition(const size_t floor) const 
Get position of receiver at given floor. 
 
Auxiliary data structure for module location and position. 
 
Type definition of hydrophone. 
 
static constexpr double PRECISION_M
precision of height evaluation [m] 
 
then echo The file $DIR KM3NeT_00000001_00000000 root already please rename or remove it first
 
Data structure for hydrophone. 
 
JFloor(const double height)
Constructor. 
 
friend std::ostream & operator<<(std::ostream &out, const JString &string)
Write string parameters to output stream. 
 
bool hasString(int string) const 
Check if this detector has given string. 
 
JGEOMETRY::JDetector JGeometry
Type definition of detector geometry. 
 
Exception for missing value. 
 
module_type(const JLocation &location, const JPosition3D &position)
Constructor. 
 
JString(const JVector3D &position, const JMechanics &mechanics)
Constructor. 
 
Data structure for vector in three dimensions. 
 
Logical location of module. 
 
double getDistance(const JMODEL::JString ¶meters, const JVector3D &position, const size_t floor) const 
Get distance between given position and floor according to given string model parameters. 
 
JPosition3D getPosition(const JMODEL::JString ¶meters, const size_t floor) const 
Get position of receiver at given floor according to given string model parameters. 
 
JMODEL::JString getGradient(const JMODEL::JString ¶meters, const JVector3D &position, const size_t floor) const 
Get model gradient of distance between given position and floor according to given string model param...
 
do set_variable OUTPUT_DIRECTORY $WORKDIR T
 
static double getLength(const JMODEL::JString ¶meters, const JMechanics &mechanics, const double height)
Get approximate length of string. 
 
double a
0 <= a < (maximal height)⁻1; [m^-1] 
 
double getHeight(const double height) const 
Get effective height for given actual height. 
 
double getLengthSquared() const 
Get length squared. 
 
double getY() const 
Get y position. 
 
const JPosition3D & getPosition() const 
Get position. 
 
JDetector(const JDETECTOR::JDetector &detector, const std::vector< JHydrophone > &hydrophones=std::vector< JHydrophone >())
Constructor. 
 
double getLength() const 
Get length. 
 
Logical location of module. 
 
JString(const JVector3D &position, const JMechanics &mechanics, T __begin, T __end)
Constructor. 
 
JFloor & operator[](size_t floor)
Get floor data. 
 
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bool hasFloor(size_t floor) const 
Check if this string has receiver at given floor. 
 
int getString() const 
Get string number. 
 
friend std::ostream & operator<<(std::ostream &out, const JDetector &detector)
Write detector parameters to output stream. 
 
JPosition3D hydrophone
Hydrophone. 
 
JMechanics mechanics
Mechanical data. 
 
JPosition3D getPiezoPosition()
Get relative position of piezo in optical module. 
 
JPosition3D()
Default constructor. 
 
friend bool operator<(const module_type &first, const module_type &second)
Less-than operator. 
 
JDetector()
Default constructor. 
 
double getX() const 
Get x position. 
 
bool hasLocation(const JLocation &location) const 
Check if this detector has given location. 
 
Auxiliary data structure to list files in directory. 
 
Data structure for position in three dimensions. 
 
double getHeight() const 
Get height of this floor. 
 
Exception for accessing a value in a collection that is outside of its range. 
 
Model for fit to acoutsics data. 
 
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double getZ() const 
Get z position. 
 
Auxiliary data structure for parameters of mechanical model.