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JDetector.cc File Reference

Auxiliary program to generate detector files. More...

#include <stdlib.h>
#include <string>
#include <iostream>
#include <sstream>
#include <fstream>
#include <deque>
#include "JDetector/JDetector.hh"
#include "JDetector/JDetectorToolkit.hh"
#include "JDetector/JDetectorSupportkit.hh"
#include "JDetector/JDetectorParameters.hh"
#include "JDetector/JAnchor.hh"
#include "JSupport/JMeta.hh"
#include "Jeep/JeepToolkit.hh"
#include "Jeep/JParser.hh"
#include "Jeep/JMessage.hh"

Go to the source code of this file.

Functions

int main (int argc, char **argv)
 

Detailed Description

Auxiliary program to generate detector files.

The footprint of the detector can be provided through an input file (option -f).

When no input file for the footprint is specified, the footprint is according the so-called WPD reference detector which is subsequently scaled according the specified line distance (JDETECTOR::JDetectorParameters::lineDistance_m).
The specified number of lines (JDETECTOR::JDetectorParameters::numberOfLines) is then selected from this footprint according the specified detector type (JDETECTOR::JDetectorParameters::detectorType).
The list of options includes:

  1. remove outer positions (massive);
  2. remove inner positions (hollow);
    Author
    mdejong

Definition in file JDetector.cc.

Function Documentation

◆ main()

int main ( int  argc,
char **  argv 
)

Definition at line 45 of file JDetector.cc.

46 {
47  using namespace std;
48  using namespace JPP;
49 
50  string inputFile;
51  string outputFile;
52  int detectorID;
53  string variant;
54  JDetectorParameters parameters;
55  double Zmin_m;
56  string option;
57  int debug;
58 
59  // default values
60 
61  parameters.detectorType = 1; //
62  parameters.floorDistance_m = 0.0; // [m]
63  parameters.numberOfFloors = 18; //
64  parameters.lineDistance_m = 0.0; // [m]
65  parameters.numberOfLines = 0; //
66 
67  try {
68 
69  JParser<> zap("Auxiliary program to generate detector files.");
70 
71  JDetectorParametersHelper helper(parameters);
72 
73  zap['f'] = make_field(inputFile, "anchor positions") = "";
74  zap['o'] = make_field(outputFile, "detector file");
75  zap['D'] = make_field(detectorID, "detector identifier");
76  zap['V'] = make_field(variant, "detector version") = getDetectorVersions<string>();
77  zap['@'] = make_field(helper, "detector parameters") = JPARSER::initialised();
78  zap['z'] = make_field(Zmin_m, "distance from seabed [m]") = 100.;
79  zap['O'] = make_field(option, "detector type") = ARCA_t, ORCA_t, Antares_t;
80  zap['d'] = make_field(debug) = 0;
81 
82  zap(argc, argv);
83  }
84  catch(const exception &error) {
85  FATAL(error.what() << endl);
86  }
87 
88 
89  JDetectorHeader header;
90 
91  if (option == ARCA_t)
92  header = getARCADetectorHeader();
93  else if (option == ORCA_t)
94  header = getORCADetectorHeader();
95  else if (option == Antares_t)
96  ;
97  else
98  FATAL("Invalid option " << option << endl);
99 
100 
101  JDetector detector(detectorID, variant, header);
102 
103  if (!hasDetectorAddressMap(detector.getID())) {
104  FATAL("No detector address map for detector identifier " << detector.getID() << endl);
105  }
106 
107  detector.comment.add(JMeta(argc,argv));
108 
109  const JDetectorAddressMap& demo = getDetectorAddressMap(detector.getID());
110 
111 
112  deque<JAnchor> footprint;
113 
114  if (inputFile != "") {
115 
116  const string file_name = getFullFilename(LD_LIBRARY_PATH, inputFile);
117 
118  NOTICE("Reading file " << file_name << ".. " << flush);
119 
120  ifstream in(file_name.c_str());
121 
122  if (in) {
123 
124  for (JAnchor anchor; in >> anchor && footprint.size() < parameters.numberOfLines; ) {
125  footprint.push_back(anchor);
126  }
127 
128  in.close();
129 
130  NOTICE("OK" << endl);
131 
132  } else {
133 
134  FATAL("Error opening file " << inputFile);
135  }
136 
137  } else {
138 
139  // WPD footprint
140 
141  footprint.push_back(JAnchor( 1, 6, -7));
142  footprint.push_back(JAnchor( 2, 188, 9));
143  footprint.push_back(JAnchor( 3, 131, 153));
144  footprint.push_back(JAnchor( 4, -85, 120));
145  footprint.push_back(JAnchor( 5, -175, 39));
146  footprint.push_back(JAnchor( 6, -64, -181));
147  footprint.push_back(JAnchor( 7, 90, -178));
148  footprint.push_back(JAnchor( 8, 368, 20));
149  footprint.push_back(JAnchor( 9, 251, 159));
150  footprint.push_back(JAnchor( 10, 264, -146));
151  footprint.push_back(JAnchor( 11, 189, 293));
152  footprint.push_back(JAnchor( 12, 12, 309));
153  footprint.push_back(JAnchor( 13, -176, 338));
154  footprint.push_back(JAnchor( 14, -266, 149));
155  footprint.push_back(JAnchor( 15, -336, -1));
156  footprint.push_back(JAnchor( 16, -248, -174));
157  footprint.push_back(JAnchor( 17, -196, -348));
158  footprint.push_back(JAnchor( 18, -18, -350));
159  footprint.push_back(JAnchor( 19, 211, -339));
160  footprint.push_back(JAnchor( 20, 541, -12));
161  footprint.push_back(JAnchor( 21, 442, 183));
162  footprint.push_back(JAnchor( 22, 422, -125));
163  footprint.push_back(JAnchor( 23, 364, 287));
164  footprint.push_back(JAnchor( 24, 342, -323));
165  footprint.push_back(JAnchor( 25, 297, 499));
166  footprint.push_back(JAnchor( 26, 51, 452));
167  footprint.push_back(JAnchor( 27, -78, 488));
168  footprint.push_back(JAnchor( 28, -281, 508));
169  footprint.push_back(JAnchor( 29, -325, 304));
170  footprint.push_back(JAnchor( 30, -455, 128));
171  footprint.push_back(JAnchor( 31, -541, 15));
172  footprint.push_back(JAnchor( 32, -429, -142));
173  footprint.push_back(JAnchor( 33, -327, -316));
174  footprint.push_back(JAnchor( 34, -255, -488));
175  footprint.push_back(JAnchor( 35, -103, -508));
176  footprint.push_back(JAnchor( 36, 74, -469));
177  footprint.push_back(JAnchor( 37, 289, -452));
178  footprint.push_back(JAnchor( 38, 715, 0));
179  footprint.push_back(JAnchor( 39, 653, 154));
180  footprint.push_back(JAnchor( 40, 614, -141));
181  footprint.push_back(JAnchor( 41, 530, 269));
182  footprint.push_back(JAnchor( 42, 512, -323));
183  footprint.push_back(JAnchor( 43, 473, 472));
184  footprint.push_back(JAnchor( 44, 458, -473));
185  footprint.push_back(JAnchor( 45, 395, 632));
186  footprint.push_back(JAnchor( 46, 205, 630));
187  footprint.push_back(JAnchor( 47, 1, 667));
188  footprint.push_back(JAnchor( 48, -160, 644));
189  footprint.push_back(JAnchor( 49, -352, 639));
190  footprint.push_back(JAnchor( 50, -413, 460));
191  footprint.push_back(JAnchor( 51, -564, 286));
192  footprint.push_back(JAnchor( 52, -636, 125));
193  footprint.push_back(JAnchor( 53, -717, 23));
194  footprint.push_back(JAnchor( 54, -605, -139));
195  footprint.push_back(JAnchor( 55, -518, -279));
196  footprint.push_back(JAnchor( 56, -482, -448));
197  footprint.push_back(JAnchor( 57, -379, -595));
198  footprint.push_back(JAnchor( 58, -211, -619));
199  footprint.push_back(JAnchor( 59, 8, -652));
200  footprint.push_back(JAnchor( 60, 214, -619));
201  footprint.push_back(JAnchor( 61, 395, -617));
202  footprint.push_back(JAnchor( 62, 886, -12));
203  footprint.push_back(JAnchor( 63, 802, 155));
204  footprint.push_back(JAnchor( 64, 844, -128));
205  footprint.push_back(JAnchor( 65, 697, 285));
206  footprint.push_back(JAnchor( 66, 731, -275));
207  footprint.push_back(JAnchor( 67, 621, 450));
208  footprint.push_back(JAnchor( 68, 600, -497));
209  footprint.push_back(JAnchor( 69, 568, 593));
210  footprint.push_back(JAnchor( 70, 517, -586));
211  footprint.push_back(JAnchor( 71, 430, 776));
212  footprint.push_back(JAnchor( 72, 240, 758));
213  footprint.push_back(JAnchor( 73, 70, 783));
214  footprint.push_back(JAnchor( 74, -75, 803));
215  footprint.push_back(JAnchor( 75, -252, 809));
216  footprint.push_back(JAnchor( 76, -478, 771));
217  footprint.push_back(JAnchor( 77, -510, 590));
218  footprint.push_back(JAnchor( 78, -643, 468));
219  footprint.push_back(JAnchor( 79, -741, 284));
220  footprint.push_back(JAnchor( 80, -845, 175));
221  footprint.push_back(JAnchor( 81, -907, -6));
222  footprint.push_back(JAnchor( 82, -792, -142));
223  footprint.push_back(JAnchor( 83, -737, -340));
224  footprint.push_back(JAnchor( 84, -639, -492));
225  footprint.push_back(JAnchor( 85, -518, -596));
226  footprint.push_back(JAnchor( 86, -455, -751));
227  footprint.push_back(JAnchor( 87, -260, -814));
228  footprint.push_back(JAnchor( 88, -103, -819));
229  footprint.push_back(JAnchor( 89, 106, -764));
230  footprint.push_back(JAnchor( 90, 274, -754));
231  footprint.push_back(JAnchor( 91, 417, -762));
232  footprint.push_back(JAnchor( 92, 1094, -4));
233  footprint.push_back(JAnchor( 93, 1010, 120));
234  footprint.push_back(JAnchor( 94, 992, -171));
235  footprint.push_back(JAnchor( 95, 898, 324));
236  footprint.push_back(JAnchor( 96, 901, -298));
237  footprint.push_back(JAnchor( 97, 768, 471));
238  footprint.push_back(JAnchor( 98, 818, -477));
239  footprint.push_back(JAnchor( 99, 731, 632));
240  footprint.push_back(JAnchor(100, 713, -633));
241  footprint.push_back(JAnchor(101, 625, 772));
242  footprint.push_back(JAnchor(102, 661, -759));
243  footprint.push_back(JAnchor(103, 530, 949));
244  footprint.push_back(JAnchor(104, 345, 960));
245  footprint.push_back(JAnchor(105, 221, 931));
246  footprint.push_back(JAnchor(106, -29, 962));
247  footprint.push_back(JAnchor(107, -155, 967));
248  footprint.push_back(JAnchor(108, -382, 917));
249  footprint.push_back(JAnchor(109, -545, 965));
250  footprint.push_back(JAnchor(110, -634, 779));
251  footprint.push_back(JAnchor(111, -731, 600));
252  footprint.push_back(JAnchor(112, -852, 471));
253  footprint.push_back(JAnchor(113, -903, 322));
254  footprint.push_back(JAnchor(114, -976, 166));
255  footprint.push_back(JAnchor(115, -1100, 11));
256  footprint.push_back(JAnchor(116, -1006, -131));
257  footprint.push_back(JAnchor(117, -867, -332));
258  footprint.push_back(JAnchor(118, -800, -504));
259  footprint.push_back(JAnchor(119, -706, -593));
260  footprint.push_back(JAnchor(120, -604, -800));
261  footprint.push_back(JAnchor(121, -503, -933));
262  footprint.push_back(JAnchor(122, -318, -927));
263  footprint.push_back(JAnchor(123, -177, -926));
264  footprint.push_back(JAnchor(124, -10, -894));
265  footprint.push_back(JAnchor(125, 155, -919));
266  footprint.push_back(JAnchor(126, 381, -967));
267  footprint.push_back(JAnchor(127, 531, -900));
268  footprint.push_back(JAnchor(128, 1091, 311));
269  footprint.push_back(JAnchor(129, 1061, -285));
270  footprint.push_back(JAnchor(130, 966, 481));
271  footprint.push_back(JAnchor(131, 958, -457));
272  footprint.push_back(JAnchor(132, 905, 658));
273  footprint.push_back(JAnchor(133, 863, -630));
274  footprint.push_back(JAnchor(134, 788, 742));
275  footprint.push_back(JAnchor(135, 686, 911));
276  footprint.push_back(JAnchor(136, 277, 1113));
277  footprint.push_back(JAnchor(137, 92, 1094));
278  footprint.push_back(JAnchor(138, -84, 1127));
279  footprint.push_back(JAnchor(139, -302, 1062));
280  footprint.push_back(JAnchor(140, -732, 892));
281  footprint.push_back(JAnchor(141, -793, 761));
282  footprint.push_back(JAnchor(142, -901, 661));
283  footprint.push_back(JAnchor(143, -1012, 456));
284  footprint.push_back(JAnchor(144, -1101, 280));
285  footprint.push_back(JAnchor(145, -1077, -326));
286  footprint.push_back(JAnchor(146, -973, -457));
287  footprint.push_back(JAnchor(147, -883, -602));
288  footprint.push_back(JAnchor(148, -822, -771));
289  footprint.push_back(JAnchor(149, -689, -910));
290  footprint.push_back(JAnchor(150, -457, -1066));
291  footprint.push_back(JAnchor(151, -268, -1067));
292  footprint.push_back(JAnchor(152, -58, -1080));
293  footprint.push_back(JAnchor(153, 72, -1100));
294  footprint.push_back(JAnchor(154, 280, -1081));
295 
296  // scale positions to specified distance
297 
298  for (deque<JAnchor>::iterator i = footprint.begin(); i != footprint.end(); ++i) {
299  i->mul(parameters.lineDistance_m * 0.5 / 90.0);
300  }
301 
302  if (parameters.numberOfLines > footprint.size()) {
303  FATAL("Available footprint inconsistent with specified number of lines "
304  << parameters.numberOfLines << " > " << footprint.size() << endl);
305  }
306 
307  // select specified number of lines
308 
309  sort(footprint.begin(), footprint.end());
310 
311  if (parameters.detectorType == 2) { // hollow detector
312  while (parameters.numberOfLines < footprint.size()) {
313  footprint.pop_front();
314  }
315  } else { // massive detector
316  while (parameters.numberOfLines < footprint.size()) {
317  footprint.pop_back();
318  }
319  }
320 
321  // reset object identifiers
322 
323  for (deque<JAnchor>::iterator i = footprint.begin(); i != footprint.end(); ++i) {
324  static_cast<JObjectID&>(*i) = JObjectID(distance(footprint.begin(),i) + 1);
325  }
326  }
327 
328 
329  for (deque<JAnchor>::iterator i = footprint.begin(); i != footprint.end(); ++i) {
330  DEBUG(i->getID() << ' ' << i->getX() << ' ' << i->getY() << endl);
331  }
332 
333 
334  // build detector
335 
336  int PMT = 1;
337 
338  for (deque<JAnchor>::const_iterator anchor = footprint.begin(); anchor != footprint.end(); ++anchor) {
339 
340  {
341  const JVector3D position(anchor->getX(),
342  anchor->getY(),
343  option == ARCA_t ? ARCA_TBARZ_M :
344  option == ORCA_t ? ORCA_TBARZ_M :
345  0.0);
346 
347  const JLocation location(anchor->getID(), 0);
348 
349  const int id = demo.getModuleID(location);
350 
351  JModule module(id, location);
352 
353  module.set(position);
354 
355  module.compile();
356 
357  detector.push_back(module);
358  }
359 
360  for (unsigned int floor = 1; floor <= parameters.numberOfFloors; ++floor) {
361 
362  const JVector3D position(anchor->getX(),
363  anchor->getY(),
364  Zmin_m + (floor - 1) * parameters.floorDistance_m);
365 
366  const JLocation location(anchor->getID(), floor);
367 
368  const int id = demo.getModuleID(location);
369 
370  JModule module;
371 
372  if (option == ARCA_t || option == ORCA_t)
373  module = getModule<JKM3NeT_t> (id, location);
374  else if (option == Antares_t)
375  module = getModule<JAntares_t>(id, location);
376  else
377  FATAL("Invalid option " << option << endl);
378 
379  module.add(position);
380 
381  for (JModule::iterator pmt = module.begin(); pmt != module.end(); ++pmt, ++PMT) {
382  pmt->setID(PMT++);
383  //pmt->setCalibration(JCalibration((R + position.getZ())/C));
384  }
385 
386  detector.push_back(module);
387  }
388  }
389 
390  // Store detector.
391 
392  try {
394  }
395  catch(const JException& error) {
396  FATAL(error);
397  }
398 
399  return 0;
400 }
JDAQPMTIdentifier PMT
Command line options.
string outputFile
#define DEBUG(A)
Message macros.
Definition: JMessage.hh:62
#define NOTICE(A)
Definition: JMessage.hh:64
#define FATAL(A)
Definition: JMessage.hh:67
int debug
debug level
Definition: JSirene.cc:69
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
Definition: JParser.hh:2158
std::vector< T >::difference_type distance(typename std::vector< T >::const_iterator first, typename PhysicsEvent::const_iterator< T > second)
Specialisation of STL distance.
Data structure for anchor position on sea bed.
Definition: JAnchor.hh:27
Lookup table for PMT addresses in detector.
virtual int getModuleID(const JLocation &location) const
Get module identifier.
Data structure for detector header.
Auxiliary class for I/O of JDetectorParameters data structure.
Data structure for parameters for detector geometry.
JParameter< unsigned int > numberOfLines
JParameter< double > floorDistance_m
JParameter< unsigned int > numberOfFloors
Detector data structure.
Definition: JDetector.hh:96
Logical location of module.
Definition: JLocation.hh:39
Data structure for a composite optical module.
Definition: JModule.hh:75
JModule & add(const JVector3D &pos)
Add position.
Definition: JModule.hh:419
Data structure for vector in three dimensions.
Definition: JVector3D.hh:36
General exception.
Definition: JException.hh:24
Auxiliary class for object identification.
Definition: JObjectID.hh:25
void setID(const int id)
Set identifier.
Definition: JObjectID.hh:72
Utility class to parse command line options.
Definition: JParser.hh:1714
JDetectorHeader getARCADetectorHeader()
Get detector header for ARCA.
static const double ORCA_TBARZ_M
ORCA T-bar position relative to seabed [m].
void store(const std::string &file_name, const JDetector &detector)
Store detector to output file.
static const double ARCA_TBARZ_M
ORCA T-bar position relative to seabed [m].
JDetectorHeader getORCADetectorHeader()
Get detector header for ORCA.
bool hasDetectorAddressMap(const int id)
Check if detector address map is available.
JDetectorAddressMap & getDetectorAddressMap()
Get detector address map.
static const char *const LD_LIBRARY_PATH
Nick names of environment variables.
Definition: JeepToolkit.hh:34
std::string getFullFilename(const std::string &variable, const std::string &file_name)
Get full file name (see JEEP::getPath).
Definition: JeepToolkit.hh:258
This name space includes all other name spaces (except KM3NETDAQ, KM3NET and ANTARES).
Definition: JSTDTypes.hh:14
Detector file.
Definition: JHead.hh:227
Empty structure for specification of parser element that is initialised (i.e. does not require input)...
Definition: JParser.hh:84
Auxiliary class for ROOT I/O of application specific meta data.
Definition: JMeta.hh:72