11 #include "TFitResult.h" 
   53 int main(
int argc, 
char **argv)
 
   72   disable_container       disable;                              
 
   75   int                     numberOfEntries = 21;
 
   80     JParser<> zap(
"Example program to plot acoustic fit results.");
 
   86     zap[
'f'] = 
make_field(inputFile,       
"input file (output of JKatoomba[.sh])");
 
   87     zap[
'n'] = 
make_field(numberOfEvents)   = JLimit::max();
 
   95     zap[
'E'] = 
make_field(
id,              
"emitter identifier (-1 = all)")  = -1;
 
   97     zap[
'r'] = 
make_field(revert,          
"revert disabling of transmissions");
 
   98     zap[
'O'] = 
make_field(option,          
"ROOT fit option, see TH1::Fit.") = 
"LS";
 
  104   catch(
const exception &error) {
 
  105     FATAL(error.what() << endl);
 
  124     receivers[
i->getID()] = 
i->getLocation();
 
  127   for (tripods_container::const_iterator 
i = 
tripods.begin(); 
i != 
tripods.end(); ++
i) {
 
  129                                      i->getUTMPosition() - 
detector.getUTMPosition());
 
  132   for (transmitters_container::const_iterator 
i = transmitters.begin(); 
i != transmitters.end(); ++
i) {
 
  136     catch(
const exception&) {}                       
 
  146   for (JDetector::const_iterator module = 
detector.begin(); module != 
detector.end(); ++module) {
 
  148       if (
id == 
i->first || 
id == -1) {
 
  158   JTreeScanner_t::iterator p = in.begin();
 
  160   while (inputFile.hasNext()) {
 
  162     STATUS(
"event: " << setw(10) << inputFile.getCounter() << 
'\r'); 
DEBUG(endl);
 
  164     const JEvt*  evt   = inputFile.next();
 
  167     DEBUG(
"model" << endl << model << endl);
 
  169     for ( ; p != in.end() && p-> begin()->getToA() <  evt->
UNIXTimeStart - 0.5; ++p) {}
 
  171     JTreeScanner_t::iterator q = p; 
 
  173     for ( ; q != in.end() && q->rbegin()->getToA() <= evt->
UNIXTimeStop  + 0.5; ++q) {}
 
  177     for (JTreeScanner_t::iterator 
i = p; 
i != q; ++
i) {
 
  179       if (
id == 
i->getID() || 
id == -1) {
 
  181         if (emitters.has(
i->getID())) {
 
  183           const JEmitter& emitter = emitters[
i->getID()];
 
  185           for (JEvent::const_iterator hit = 
i->begin(); hit != 
i->end(); ++hit) {
 
  187             if (receivers.has(hit->getID()) && geometry.
hasLocation(receivers[hit->getID()])) {
 
  192                 const JLocation& location = receivers[hit->getID()];
 
  194                 if (geometry    .has(location.
getString()) &&
 
  202                   const double Vi    = 
V.getInverseVelocity(D, emitter.
getZ(), position.
getZ());
 
  203                   const double toa   = hit->getToE()  +  D * Vi;
 
  223                                   range.getLength() + 1, 
range.getLowerLimit() - 0.5, 
range.getUpperLimit() + 0.5));
 
  227                                   range.getLength() + 1, 
range.getLowerLimit() - 0.5, 
range.getUpperLimit() + 0.5));
 
  229   for (Int_t 
i = 1; 
i <= HA->GetXaxis()->GetNbins(); ++
i) {
 
  230     HA->GetXaxis()->SetBinLabel(
i, 
MAKE_CSTRING(geometry.at(
i-1).first));
 
  231     HB->GetXaxis()->SetBinLabel(
i, 
MAKE_CSTRING(geometry.at(
i-1).first));
 
  236   TF1 
f1(
"f1", 
"[0]*exp(-0.5*(x-[1])*(x-[1])/([2]*[2]))");
 
  246     if (h1->GetEntries() >= numberOfEntries) {
 
  250       h1->GetQuantiles(
Q.size(), X.data(), 
Q.data());
 
  252       f1.SetParameter(0, h1->GetMaximum());
 
  253       f1.SetParameter(1, X[1]);
 
  254       f1.SetParameter(2, 0.5*(X[2] - X[0]));
 
  256       f1.SetParError(0, 0.1);
 
  257       f1.SetParError(1, 1.0e-6);
 
  258       f1.SetParError(2, 1.0e-6);
 
  260       TFitResultPtr 
result = h1->Fit(&f1, option.c_str(), 
"same", X[1] - 5.0 * (X[2] - X[0]), X[1] + 5.0 * (X[2] - X[0]));
 
  262       if (result.Get() == NULL) {
 
  264         ERROR(
"Invalid TFitResultPtr " << h1->GetName() << endl);
 
  281   out << H2 << HA << HB;
 
JModel getModel(const JEvt &evt)
Get model. 
 
Utility class to parse command line options. 
 
Q(UTCMax_s-UTCMin_s)-livetime_s
 
int main(int argc, char *argv[])
 
int getFloor() const 
Get floor number. 
 
const JModule & getModule(const JObjectID &id) const 
Get module parameters. 
 
JContainer< std::vector< JTransmitter > > transmitters_container
 
static JDetectorMechanics getMechanics
Function object to get string mechanics. 
 
std::vector< T >::difference_type distance(typename std::vector< T >::const_iterator first, typename PhysicsEvent::const_iterator< T > second)
Specialisation of STL distance. 
 
#define gmake_property(A)
macros to convert (template) parameter to JPropertiesElement object 
 
ROOT TTree parameter settings. 
 
Router for direct addressing of module data in detector data structure. 
 
Utility class to parse parameter values. 
 
*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
 
#define MAKE_CSTRING(A)
Make C-string. 
 
Empty structure for specification of parser element that is initialised (i.e. does not require input)...
 
Dynamic ROOT object management. 
 
V(JDAQEvent-JTriggerReprocessor)*1.0/(JDAQEvent+1.0e-10)
 
double getDistance(const JVector3D &pos) const 
Get distance to point. 
 
floor_range getRangeOfFloors(const JDetector &detector)
Get range of floors. 
 
Template definition for direct access of elements in ROOT TChain. 
 
Data structure for detector geometry and calibration. 
 
Utility class to parse parameter values. 
 
Data structure for hydrophone. 
 
const JPolynome f1(1.0, 2.0, 3.0)
Function. 
 
Model for fit to acoustics data. 
 
double UNIXTimeStop
stop time 
 
Auxiliary class for defining the range of iterations of objects. 
 
static const JSoundVelocity getSoundVelocity(1541.0,-17.0e-3,-2000.0)
Function object for velocity of sound. 
 
Auxiliary class to manage set of compatible ROOT objects (e.g. histograms) using unique keys...
 
I/O formatting auxiliaries. 
 
JContainer< std::vector< JHydrophone > > hydrophones_container
 
Data structure for transmitter. 
 
Logical location of module. 
 
const JLocation & getLocation() const 
Get location. 
 
Auxiliary wrapper for I/O of container with optional comment (see JComment). 
 
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object 
 
JPosition3D getPosition(const Vec &pos)
Get position. 
 
void Write(TDirectory &out, const bool wm=false)
Write objects to file. 
 
const JPosition3D & getPosition() const 
Get position. 
 
JContainer< std::vector< JTripod > > tripods_container
 
General purpose messaging. 
 
static const JStringCounter getNumberOfStrings
Function object to count unique strings. 
 
Implementation for depth dependend velocity of sound. 
 
Scanning of objects from multiple files according a format that follows from the extension of each fi...
 
Base class for JTreeScanner. 
 
Direct access to module in detector data structure. 
 
JACOUSTICS::JModel::string_type string
 
z range($ZMAX-$ZMIN)< $MINIMAL_DZ." fi fi typeset -Z 4 STRING typeset -Z 2 FLOOR JPlot1D -f $
 
int getString() const 
Get string number. 
 
void load(const std::string &file_name, JDetector &detector)
Load detector from input file. 
 
double UNIXTimeStart
start time 
 
General purpose class for object reading from a list of file names. 
 
then fatal The output file must have the wildcard in the e g root fi eval JPrintDetector a $DETECTOR O IDENTIFIER eval JPrintDetector a $DETECTOR O SUMMARY JAcoustics sh $DETECTOR_ID source JAcousticsToolkit sh CHECK_EXIT_CODE typeset A EMITTERS get_tripods $WORKDIR tripod txt EMITTERS get_transmitters $WORKDIR transmitter txt EMITTERS for EMITTER in
 
Utility class to parse command line options. 
 
Acoustic transmission identifier. 
 
bool hasLocation(const JLocation &location) const 
Check if this detector has given location. 
 
no fit printf nominal n $STRING awk v X
 
Data structure for position in three dimensions. 
 
const JLimit & getLimit() const 
Get limit. 
 
do set_variable DETECTOR_TXT $WORKDIR detector
 
Data structure for tripod. 
 
Acoustic transmission identifier. 
 
do echo Generating $dir eval D
 
double getZ() const 
Get z position. 
 
#define DEBUG(A)
Message macros. 
 
Data structure for optical module.