89  static const std::string 
fix_t         =  
"fix";                  
 
   92  static const std::string 
stage_t       =  
"stage";                
 
  136      bool hasString(
const int id)
 const 
 
  173        std::
set<int>(buffer.begin(), buffer.end())
 
 
  187        std::set_difference(A.begin(), A.end(), B.begin(), B.end(), std::inserter(*
this, this->begin()));
 
 
  203        std::set_difference(A.begin(), A.end(), B.begin(), B.end(), std::inserter(*
this, this->begin()));
 
 
  216        for (
int id; in >> id; ) {
 
 
  237        for (
const int id : 
object) {
 
 
 
  313      virtual void apply(
const double step)
 override 
  317        module.add(direction * step);
 
 
 
  346        for (
size_t i = 0; i != 
detector.size(); ++i) {
 
 
  359      virtual void apply(
const double step)
 override 
  361        for (
const auto i : 
index) {
 
 
 
  390        for (
size_t i = 0; i != 
detector.size(); ++i) {
 
 
  403      virtual void apply(
const double step)
 override 
  405        for (
const auto i : 
index) {
 
  410            module.set(JVector3D(module.getX(), module.getY(), z0 + (module.getZ() - z0) * (1.0 + step)));
 
  412            module.set(JVector3D(module.getX(), module.getY(), z0 + (module.getZ() - z0) / (1.0 - step)));
 
 
 
  452      virtual void apply(
const double step)
 override 
 
 
  493      virtual void apply(
const double step)
 override 
 
 
  520        Nmax   (
std::numeric_limits<size_t>::max()),
 
 
  546          for (
double value; in >> value; ) {
 
  547            object.steps.push_back(value);
 
 
  570        out << setw(2)         << 
object.option      << 
' ' 
  571            << setw(2)         << 
object.mestimator  << 
' ' 
  574            << setw(3)         << 
object.Nextra;
 
  576        for (
const double value : 
object.
steps) {
 
  577          out << 
' ' << 
FIXED(9,5) << value;
 
 
 
  616        receivers[i->getID()] = i->getLocation();
 
  638      ROOT::EnableThreadSafety();
 
 
  678        (*this)[module.
getString()].push_back(module);
 
 
 
  702          A.push_back(*module);
 
  704          B.push_back(*module);
 
  706          C.push_back(*module);
 
  711      for (
const auto& element : B) {
 
  731      const double chi2 = fit(*
this);
 
  733      for (
auto& element : B) {
 
  738        for (string_type::iterator module = element.second.begin(); module != element.second.end(); ++module) {
 
  752      STATUS(
"detector: " << 
FIXED(9,4) << chi2 << endl);
 
 
  794      const double chi2 = fit(*
this);
 
  796      STATUS(
"detector: " << 
FIXED(9,4) << chi2 << endl);
 
 
  818        buffer[module->getString()].push_back(*module);
 
  820        if (module->getZ() > z0) {
 
  829          tx.push_back(
router->getModule(i->getLocation()));
 
  831        catch(
const exception&) {}
 
  847        const double chi2 = fit(*
this);
 
  849        STATUS(
"string: " << setw(4) << i << 
' ' << 
FIXED(9,4) << chi2 << endl);
 
  858      for (
const auto& element : buffer) {
 
  859        copy(element.second.begin(), element.second.end(), back_inserter(
setup.
detector));
 
 
  881        if (
fits.
strings.count(module->getString()) != 0 && module->getFloor() != 0) {
 
  886      const double chi2 = fit(*
this);
 
  888      STATUS(
"detector: " << 
FIXED(9,4) << chi2 << endl);
 
 
  907        if (
fits.
strings.count(module->getString()) != 0 && module->getFloor() == 0) {
 
  912      const double chi2 = fit(*
this);
 
  914      STATUS(
"detector: " << 
FIXED(9,4) << chi2 << endl);
 
 
  935        if (
fits.
strings.count(module->getString()) != 0 && module->getFloor() != 0) {
 
  942      const double chi2 = fit(*
this);
 
  944      STATUS(
"detector: " << 
FIXED(9,4) << chi2 << endl);
 
 
  971          emitters[i->getID()]  = 
JEmitter(i->getID(), i->getPosition()    + 
router->getModule(i->getLocation()).getPosition());
 
  973        catch(
const exception&) {}                                        
 
  994            for (input_type::const_iterator evt = superevt.begin(); evt != superevt.end(); ++evt) {
 
  996              if (emitters.
has(evt->getID())) {
 
  998                const JEmitter& emitter = emitters [evt->getID()];
 
  999                const double    weight  = 
getWeight(evt->getID());
 
 1001                for (JEvent::const_iterator i = evt->begin(); i != evt->end(); ++i) {
 
 1005                    data.push_back(
JHit(emitter,
 
 1024      } 
else if (option == 2) {                                           
 
 1036        return numeric_limits<float>::max();
 
 
 1046    void run(
const std::string& script)
 
 1048      using namespace std;
 
 1049      using namespace JPP;
 
 1051      ifstream in(script.c_str());
 
 1059          if (buffer.empty() || buffer[0] == 
skip_t) {
 
 1063          istringstream is(buffer);
 
 1071          } 
else if (key == 
fix_t) {                   
 
 1076            if (is >> type >> 
id) {
 
 1093            if (is >> stage >> 
input) {
 
 1095              STATUS(
"stage " << setw(3) << stage << 
" {" << 
input << 
"}" << endl);
 
 1101              ofstream out(
MAKE_CSTRING(
"stage-" << stage << 
".log"));
 
 1106                switch (stage[stage.size() - 1]) {
 
 
 1168    void store(
const std::string& dir = 
".")
 
 1170      using namespace JPP;
 
 1172      if (
getFileStatus(dir.c_str()) || (mkdir(dir.c_str(), S_IRWXU | S_IRWXG) != -1)) {
 
 1176        for (JDetector::iterator module = 
detector.begin(); module != 
detector.end(); ++module) {
 
 1177          module->set(router->getModule(module->getLocation()).getPosition());
 
 
 1205          buffer.insert(i->getID());
 
 
 1220      using namespace std;
 
 1225        buffer.insert(i->getID());
 
 1232          const JModule& module = 
router->getModule(i->getLocation());
 
 1235            buffer.insert(i->getID());
 
 1238        catch(
const exception&) {}
 
 
 
 1275  using namespace std;
 
 1276  using namespace JPP;
 
 1281  JLimit_t&               numberOfEvents = inputFile.getLimit();
 
 1286  disable_container       disable;                              
 
 1292    JParser<> zap(
"Application to perform acoustic pre-calibration.");
 
 1294    zap[
'f'] = 
make_field(inputFile,              
"output of JAcousticEventBuilder[.sh]");
 
 1298    zap[
's'] = 
make_field(script,                 
"steering script");
 
 1305    zap[
'N'] = 
make_field(threads,                
"number of threads")              = 1;
 
 1310  catch(
const exception &error) {
 
 1311    FATAL(error.what() << endl);
 
 1315    FATAL(
"Invalid number of threads " << threads << endl);
 
 1331    if (emitters.count(evt->
getID())) {
 
 1332      zbuf.push_back(*evt);
 
 1336  sort(zbuf.begin(), zbuf.end());                  
 
 1338  for (buffer_type::iterator p = zbuf.begin(), q; p != zbuf.end(); p = q) {
 
 1340    for (q = p; ++q != zbuf.end() && q->begin()->getToE() <= p->rbegin()->getToE() + parameters.
Tmax_s; ) {}
 
 1342    JEvent::overlap(p, q, parameters.
deadTime_s);  
 
 1346    for (buffer_type::iterator evt = p; evt != q; ++evt) {
 
 1352      for (JEvent::iterator i = evt->begin(); i != __end; ) {
 
 1357          if (receivers.count(i->getID()) && i->getQ() >= parameters.
Qmin * (parameters.
Qmin <= 1.0 ? i->getW() : 1.0)) {
 
 1362        iter_swap(i, --__end);
 
 1365      buffer.push_back(
JEvent(evt->getDetectorID(), buffer.size(), evt->getID(), evt->begin(), __end));
 
 1369      sydney.
input.push_back(buffer);
 
 
ROOT TTree parameter settings.
 
Data structure for detector geometry and calibration.
 
#define THROW(JException_t, A)
Marco for throwing exception with std::ostream compatible message.
 
General purpose class for hash map of unique elements.
 
Data structure for hydrophone.
 
Fit functions of acoustic model.
 
Direct access to location in detector data structure.
 
General purpose messaging.
 
Data structure for optical module.
 
Scanning of objects from multiple files according a format that follows from the extension of each fi...
 
Utility class to parse command line options.
 
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
 
#define MAKE_CSTRING(A)
Make C-string.
 
#define MAKE_STRING(A)
Make string.
 
Auxiliary class to define a range between two values.
 
int main(int argc, char **argv)
 
Acoustic transmission identifier.
 
Data structure for transmitter.
 
Data structure for tripod.
 
std::vector< T >::difference_type distance(typename std::vector< T >::const_iterator first, typename PhysicsEvent::const_iterator< T > second)
Specialisation of STL distance.
 
Thread pool for global fits.
 
static output_type * output
optional output
 
void enqueue(input_type &data)
Queue data.
 
static JMATH::JQuantile_t Q
chi2/NDF
 
Thread pool for global fits using super events.
 
static JMATH::JQuantile_t Q
chi2/NDF
 
const JModule & getModule(const JModuleAddress &address) const
Get module parameters.
 
Router for direct addressing of location data in detector data structure.
 
Logical location of module.
 
int getFloor() const
Get floor number.
 
int getString() const
Get string number.
 
Data structure for a composite optical module.
 
bool has(const int bit) const
Test PMT status.
 
Auxiliary class for CPU timing and usage.
 
unsigned long long usec_wall
 
const JPosition3D & getPosition() const
Get position.
 
Data structure for vector in three dimensions.
 
This class can be used to temporarily redirect one output (input) stream to another output (input) st...
 
Implementation of object output from STD container.
 
Exception for accessing a value in a collection that is outside of its range.
 
Utility class to parse command line options.
 
General purpose class for object reading from a list of file names.
 
virtual bool hasNext() override
Check availability of next element.
 
virtual const pointer_type & next() override
Get next element.
 
double getUTMZ() const
Get UTM Z.
 
const JUTMPosition & getUTMPosition() const
Get UTM position.
 
static const int HYDROPHONE_DISABLE
Enable (disable) use of hydrophone if this status bit is 0 (1);.
 
static const int TRANSMITTER_DISABLE
Enable (disable) use of transmitter if this status bit is 0 (1);.
 
static const int PIEZO_DISABLE
Enable (disable) use of piezo if this status bit is 0 (1);.
 
void copy(const Head &from, JHead &to)
Copy header from from to to.
 
Auxiliary classes and methods for acoustic position calibration.
 
static const std::string string_t
string
 
size_t getMinimumNumberOfEmitters(T __begin, T __end)
Get minimum number of emitters for any string in data.
 
double getWeight(T __begin, T __end)
Get total weight of data points.
 
static const std::string tripod_t
tripod
 
JContainer< std::vector< JTripod > > tripods_container
 
JContainer< std::vector< JTransmitter > > transmitters_container
 
static const std::string initialise_t
initialise
 
JContainer< std::vector< JHydrophone > > hydrophones_container
 
static const char skip_t
Script commands.
 
static const std::string stage_t
fit stage
 
JMODEL::JString getString(const JFit &fit)
Get model parameters of string.
 
static const std::string fix_t
fix objects
 
size_t getNumberOfEmitters(T __begin, T __end)
Get number of emitters.
 
static const JSoundVelocity getSoundVelocity(1541.0, -17.0e-3, -2000.0)
Function object for velocity of sound.
 
static JDetectorMechanics getMechanics
Function object to get string mechanics.
 
file Auxiliary data structures and methods for detector calibration.
 
void load(const std::string &file_name, JDetector &detector)
Load detector from input file.
 
void store(const std::string &file_name, const JDetector &detector)
Store detector to output file.
 
std::string getFilename(const std::string &file_name)
Get file name part, i.e. part after last JEEP::PATHNAME_SEPARATOR if any.
 
std::string strip(const std::string &file_name)
Strip leading and trailing white spaces from file name.
 
Auxiliary classes and methods for 3D geometrical objects and operations.
 
static const JVector3D JVector3X_t(1, 0, 0)
unit x-vector
 
static const JVector3D JVector3Y_t(0, 1, 0)
unit y-vector
 
static const JVector3D JVector3Z_t(0, 0, 1)
unit z-vector
 
JComparator< JResult_t T::*, JComparison::lt > make_comparator(JResult_t T::*member)
Helper method to create comparator between values of data member.
 
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 array_type< JValue_t > & make_array(const JValue_t(&array)[N])
Method to create array of values.
 
std::istream & getline(std::istream &in, JString &object)
Read string from input stream until end of line.
 
static const double C
Physics constants.
 
This name space includes all other name spaces (except KM3NETDAQ, KM3NET and ANTARES).
 
std::vector< JHitW0 > buffer_type
hits
 
static JStat getFileStatus
Function object for file status.
 
Auxiliary data structure for floating point format specification.
 
int getID() const
Get emitter identifier.
 
Auxiliary data structure for handling of file names.
 
std::string transmitter
transmitter
 
JFilenames & strip()
Strip leading and trailing white spaces.
 
std::string detector
detector
 
std::string hydrophone
hydrophone
 
double Qmin
minimal quality transmission
 
double deadTime_s
dead time between events [s]
 
size_t Nmin
minimum number of emitters
 
double sigma_s
time-of-arrival resolution [s]
 
double Tmax_s
time window to combine events [s]
 
bool hasLocation(const JLocation &location) const
Check if this detector has given location.
 
Template definition of fit function of acoustic model.
 
Auxiliary data structure for setup of complete system.
 
tripods_container tripods
tripods
 
transmitters_container transmitters
transmitters
 
JDetector detector
detector
 
Implementation for depth dependend velocity of sound.
 
JSoundVelocity & set(const double z0)
Set depth.
 
Auxiliary class to edit orientation of anchor.
 
virtual void apply(const double step) override
Apply step.
 
JAnchorEditor(JSetup &setup, const int id)
Constructor.
 
std::vector< JTransmitter > & transmitters
 
std::vector< JHydrophone > & hydrophones
 
Auxiliary class to edit length of Dyneema ropes.
 
JDyneemaEditor(JSetup &setup, const int id, const double z0=0.0)
Constructor.
 
std::vector< size_t > index
 
virtual void apply(const double step) override
Apply step.
 
Auxiliary class to edit (z) position of module.
 
virtual void apply(const double step) override
Apply step.
 
JModuleEditor(JModule &module, const JVector3D &direction)
Constructor.
 
JModuleEditor(JModule &module)
Constructor.
 
Extended data structure for parameters of stage.
 
JParameters_t()
Default constuctor.
 
friend std::ostream & operator<<(std::ostream &out, const JParameters_t &object)
Write parameters to output stream.
 
std::vector< double > steps
 
friend std::istream & operator>>(std::istream &in, JParameters_t &object)
Read parameters from input stream.
 
Auxiliary class to edit (x,y,z) position of string.
 
std::vector< size_t > index
 
JStringEditor(JSetup &setup, const int id, const JVector3D &direction, const bool option)
Constructor.
 
virtual void apply(const double step) override
Apply step.
 
Auxiliary class to edit (x,y,z) position of tripod.
 
JTripodEditor(JSetup &setup, const int id, const JVector3D &direction)
Constructor.
 
virtual void apply(const double step) override
Apply step.
 
std::vector< JTripod > & tripods
 
Auxiliary data structure for detector with decomposed strings.
 
void push_back(const JModule &module)
Add module.
 
Auxiliary data structure for group of lists of identifiers of to-be-fitted objects.
 
ids_t transmitters
identifiers of strings with transmitter
 
ids_t tripods
identifiers of tripods
 
void initialise(const JSetup &setup)
Initialise.
 
ids_t hydrophones
identifiers of strings with hydrophone
 
fits_t()
Default constructor.
 
ids_t strings
identifiers of strings
 
List of object identifiers.
 
ids_t(const ids_t &A, const ids_t &B)
Difference constructor.
 
friend std::istream & operator>>(std::istream &in, ids_t &object)
Read identifiers from input stream.
 
friend std::ostream & operator<<(std::ostream &out, const ids_t &object)
Write identifiers to output stream.
 
void fix(const ids_t &B)
Fix.
 
ids_t()
Default constructor.
 
ids_t(const std::vector< int > &buffer)
Copy constructor.
 
Auxiliary data structure for decomposed string.
 
void push_back(const JModule &module)
Add module.
 
Main class for pre-calibration using acoustics data.
 
double operator()(const int option) const
Get chi2.
 
JSydney(const JFilenames &filenames, const JSoundVelocity &V, const size_t threads, const int debug)
Constructor.
 
void stage_x(const JParameters_t ¶meters)
Fit procedure to determine the (x,y,z) positions of the modules.
 
ids_t getReceivers() const
Get list of identifiers of receivers.
 
std::unique_ptr< JLocationRouter > router
 
JTOOLS::JHashMap< int, JLocation > receivers
 
void run(const std::string &script)
Run.
 
static constexpr double RADIUS_M
maximal horizontal distance between T-bar and emitter/hydrophone
 
void store(const std::string &dir=".")
Store data in given directory.
 
ids_t getEmitters() const
Get list of identifiers of emitters.
 
std::vector< input_type > input
 
void stage_c(const JParameters_t ¶meters)
Fit procedure to determine the z-positions of the modules.
 
std::vector< JSuperEvt > output
 
JFitParameters parameters
 
void stage_0(const JParameters_t ¶meters)
Fit procedure to determine the positions of tripods and transmitters using strings that are fixed.
 
std::vector< JEvent > input_type
 
void stage_d(const JParameters_t ¶meters)
Fit procedure to determine the z-positions of anchors.
 
void stage_b(const JParameters_t ¶meters)
Fit procedure to determine the stretching and z-positions of individual strings.
 
void stage_a(const JParameters_t ¶meters)
Fit procedure to determine the positions of the strings and tripods.
 
Acoustic transmission identifier.
 
int getID() const
Get identifier.
 
Auxiliary data structure to unify weights of acoustics data according to the number of pings per emit...
 
Auxiliary wrapper for I/O of container with optional comment (see JComment).
 
Auxiliary data structure for editable parameter.
 
Auxiliary data structure for fit parameter.
 
void store(const char *file_name) const
Store to output file.
 
void load(const char *file_name)
Load from input file.
 
Implementation of object iteration from STD container.
 
double getMean() const
Get mean value.
 
Empty structure for specification of parser element that is initialised (i.e. does not require input)...
 
Auxiliary class for defining the range of iterations of objects.
 
static counter_type max()
Get maximum counter value.
 
Auxiliary data structure for floating point format specification.