70{
73
74 string detectorFile;
75 string option;
76 double precision;
78
79 try {
80
81 JParser<> zap(
"Auxiliary program to print detector file in human friendly format.");
82
85
86 default_t,
87
88 pmts_t,
89 modules_t,
90 geometry_t,
91
92 comment_t,
93 header_t,
94 version_t,
95 identifier_t,
96 can_t,
97 center_t,
98 summary_t,
99
100 HEADER_t,
101 VERSION_t,
102 IDENTIFIER_t,
103 CAN_t,
104 CENTER_t,
105 SUMMARY_t;
106
107 zap[
'p'] =
make_field(precision,
"precision for match with reference module") = 1.0e-5;
109
110 zap(argc, argv);
111 }
112 catch(const exception &error) {
113 FATAL(error.what() << endl);
114 }
115
116
118
119 try {
121 }
124 }
125
126 if (option == default_t) {
127
129
130 } else if (option == modules_t) {
131
133
134 for (JDetector::const_iterator module =
detector.begin(); module !=
detector.end(); ++module) {
135
136 cout << "Module";
137 cout << ' ' << noshowpos << setw(8) << right << module->getID();
138 cout << ' ' << noshowpos << setw(3) << right << module->getString();
139 cout << ' ' << noshowpos << setw(2) << right << module->getFloor();
140 cout <<
' ' <<
FIXED(7,2) << module->getX();
141 cout <<
' ' <<
FIXED(7,2) << module->getY();
142 cout <<
' ' <<
FIXED(7,2) << module->getZ();
143 cout <<
' ' <<
FIXED(8,2) << module->getT0();
144
145 if (module->getFloor() != 0) {
146 {
148
151
152 const double phi = (JVector3Z_t.getDot(q1.twist) >= 0.0 ? +1.0 : -1.0) * q1.twist.getAngle();
153
154 cout <<
' ' <<
FIXED(7,2) << phi;
155 }
156 {
159
160 const double phi = (JVector3Z_t.getDot(q1.twist) >= 0.0 ? +1.0 : -1.0) * q1.twist.getAngle();
161
162 cout <<
' ' <<
FIXED(7,2) << phi;
163 }
164 {
166
167 const JRotation3D R = getRotation(buffer, *module);
168
170
171 cout << ' ' << (JModule::compare(buffer, *module, precision) ? "==" : "!=")
173 }
174 }
175
176 cout << endl;
177 }
178
179 } else if (option == pmts_t) {
180
181 for (JDetector::const_iterator module =
detector.begin(); module !=
detector.end(); ++module) {
182 for (JModule::const_iterator pmt = module->begin(); pmt != module->end(); ++pmt) {
183 cout << "PMT";
184 cout << ' ' << noshowpos << setw(8) << right << pmt->getID();
185 cout <<
' ' <<
FIXED(7,2) << pmt->getX();
186 cout <<
' ' <<
FIXED(7,2) << pmt->getY();
187 cout <<
' ' <<
FIXED(7,2) << pmt->getZ();
188 cout <<
' ' <<
FIXED(6,3) << pmt->getDX();
189 cout <<
' ' <<
FIXED(6,3) << pmt->getDY();
190 cout <<
' ' <<
FIXED(6,3) << pmt->getDZ();
191 cout <<
' ' <<
FIXED(8,2) << pmt->getT0();
192 cout << ' ' << noshowpos << setw(8) << right << pmt->getStatus();
193 cout << endl;
194 }
195 }
196
197 } else if (option == geometry_t) {
198
201
202 } else if (option == comment_t) {
203
205
206 } else if (option == header_t ||
207 option == HEADER_t) {
208
209 if (option == header_t) {
210
211 cout <<
detector.getProperties() << endl;
214 "unknown") << endl;
215 cout << "validity = "
218
219 } else {
220
221 cout <<
"set_variable UTM_EAST " <<
FIXED(12,2) <<
detector.getUTMEast() <<
";" << endl;
222 cout <<
"set_variable UTM_NORTH " <<
FIXED(12,2) <<
detector.getUTMNorth() <<
";" << endl;
223 cout <<
"set_variable UTM_Z " <<
FIXED(12,2) <<
detector.getUTMZ() <<
";" << endl;
224 cout <<
"set_variable UTM_ZONE " <<
FIXED(12,2) <<
detector.getUTMZone() <<
";" << endl;
225 cout <<
"set_variable UTM_WGS " <<
FIXED(12,2) <<
detector.getWGS() <<
";" << endl;
226 }
227
228 } else if (option == version_t ||
229 option == VERSION_t) {
230
231 if (option == version_t) {
232
233 cout <<
detector.getVersion() << endl;
234
235 } else {
236
237 cout <<
"set_variable DETECTOR_VERSION " <<
detector.getVersion() <<
";" << endl;
238 }
239
240 } else if (option == identifier_t ||
241 option == IDENTIFIER_t) {
242
243 if (option == identifier_t) {
244
245 cout <<
"Detector " <<
detector.getID() << endl;
246
247 } else {
248
249 cout <<
"set_variable DETECTOR_ID " <<
detector.getID() <<
";" << endl;
250 }
251
252 } else if (option == can_t ||
253 option == CAN_t) {
254
256
257 const double V = (cylinder.getZmax() - cylinder.getZmin()) * PI * cylinder.getRadius() * cylinder.getRadius();
259
260 if (option == can_t) {
261
262 cout <<
"X = " <<
FIXED(7,1) << cylinder.getX() << endl;
263 cout <<
"Y = " <<
FIXED(7,1) << cylinder.getY() << endl;
264 cout <<
"Zmin = " <<
FIXED(7,1) << cylinder.getZmin() << endl;
265 cout <<
"Zmax = " <<
FIXED(7,1) << cylinder.getZmax() << endl;
266 cout <<
"Radius = " <<
FIXED(7,1) << cylinder.getRadius() << endl;
267 cout <<
"Depth = " <<
FIXED(7,1) <<
detector.getUTMZ() << endl;
268 cout <<
"Volume = " <<
SCIENTIFIC(12,3) << V << endl;
269 cout <<
"Distance = " <<
FIXED(9,3) << D << endl;
270
271 } else {
272
273 cout <<
"set_variable CAN_X_M " <<
FIXED(7,1) << cylinder.getX() <<
";" << endl;
274 cout <<
"set_variable CAN_Y_M " <<
FIXED(7,1) << cylinder.getY() <<
";" << endl;
275 cout <<
"set_variable CAN_ZMIN_M " <<
FIXED(7,1) << cylinder.getZmin() <<
";" << endl;
276 cout <<
"set_variable CAN_ZMAX_M " <<
FIXED(7,1) << cylinder.getZmax() <<
";" << endl;
277 cout <<
"set_variable CAN_RADIUS_M " <<
FIXED(7,1) << cylinder.getRadius() <<
";" << endl;
278 cout <<
"set_variable CAN_DEPTH_M " <<
FIXED(7,1) <<
detector.getUTMZ() <<
";" << endl;
279 cout <<
"set_variable CAN_VOLUME_M3 " <<
SCIENTIFIC(12,3) << V <<
";" << endl;
280 cout <<
"set_variable CAN_DISTANCE_M " <<
FIXED(9,3) << D <<
";" << endl;
281 }
282
283 } else if (option == center_t ||
284 option == CENTER_t) {
285
287
288 if (option == center_t) {
289
290 cout << "center = ";
291 cout << showpos <<
FIXED(8,3) << center.getX() <<
' ';
292 cout << showpos <<
FIXED(8,3) << center.getY() <<
' ';
293 cout << showpos <<
FIXED(8,3) << center.getZ() << endl;
294
295 } else {
296
297 cout <<
"set_variable CENTER_X_M " <<
FIXED(7,1) << center.getX() <<
";" << endl;
298 cout <<
"set_variable CENTER_Y_M " <<
FIXED(7,1) << center.getY() <<
";" << endl;
299 cout <<
"set_variable CENTER_Z_M " <<
FIXED(7,1) << center.getZ() <<
";" << endl;
300 }
301
302 } else if (option == summary_t ||
303 option == SUMMARY_t) {
304
305 const int numberOfStrings = getNumberOfStrings(
detector);
309
311
313 const JRange_t floor_t (make_array(
detector.begin(),
detector.end(), &JModule::getFloor));
314
317
318 for (JDetector::const_iterator module =
detector.begin(); module !=
detector.end(); ++module) {
319 strings.insert(module->getString());
320 modules.insert(module->getID());
321 }
322
323 if (option == summary_t) {
324
325 cout << "Number of strings = " << setw(4) << numberOfStrings << endl;
326 cout << "Number of floors = " << setw(4) << numberOfFloors << endl;
327 cout << "Number of modules = " << setw(4) << numberOfModules << endl;
328 cout << "Number of PMTs = " << setw(4) << numberOfPMTs << endl;
329 cout <<
"First string = " << setw(4) <<
string_t.first << endl;
330 cout <<
"Last string = " << setw(4) <<
string_t.second << endl;
331 cout << "First floor = " << setw(4) << floor_t .first << endl;
332 cout << "Last floor = " << setw(4) << floor_t .second << endl;
333
334 } else {
335
336 cout << "let \"NUMBER_OF_STRINGS = " << setw(5) << numberOfStrings << "\";" << endl;
337 cout << "let \"NUMBER_OF_FLOORS = " << setw(5) << numberOfFloors << "\";" << endl;
338 cout << "let \"NUMBER_OF_MODULES = " << setw(5) << numberOfModules << "\";" << endl;
339 cout << "let \"NUMBER_OF_PMTS = " << setw(5) << numberOfPMTs << "\";" << endl;
340 cout <<
"let \"FIRST_STRING = " << setw(5) <<
string_t.first <<
"\";" << endl;
341 cout <<
"let \"LAST_STRING = " << setw(5) <<
string_t.second <<
"\";" << endl;
342 cout << "let \"FIRST_FLOOR = " << setw(5) << floor_t .first << "\";" << endl;
343 cout << "let \"LAST_FLOOR = " << setw(5) << floor_t .second << "\";" << endl;
344 cout << "STRINGS=(";
345 copy(strings.begin(), strings.end(), ostream_iterator<int>(cout,
" "));
346 cout << ");" << endl;
347 cout << "MODULES=(";
348 copy(modules.begin(), modules.end(), ostream_iterator<int>(cout,
" "));
349 cout << ");" << endl;
350
351
352
353 for (const auto i : strings) {
354 cout <<
"typeset -A " <<
getString(i) <<
";" << endl;
355 }
357 cout <<
getString(i.getString()) <<
"[" << i.getFloor() <<
"]=" << i.getID() <<
";" << endl;
358 }
359 }
360 }
361}
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
const JModuleAddressMap & get(const int id) const
Get module address map.
virtual const JModuleAddressMap & getDefaultModuleAddressMap() const =0
Get default module address map.
Data structure for a composite optical module.
void rotate(const JRotation3D &R)
Rotate module.
Data structure for unit quaternion in three dimensions.
Utility class to parse command line options.
void copy(const Head &from, JHead &to)
Copy header from from to to.
JMODEL::JString getString(const JFit &fit)
Get model parameters of string.
const char *const string_t
routing by string
int getNumberOfPMTs(const JModule &module)
Get number of PMTs.
int getNumberOfFloors(const JDetector &detector)
Get number of floors.
JDetectorBuilder & getDetectorBuilder()
Get detector builder.
void load(const std::string &file_name, JDetector &detector)
Load detector from input file.
bool isORCADetector(const JDetectorHeader &header)
Check if given detector header is compatible with that of ORCA.
bool isARCADetector(const JDetectorHeader &header)
Check if given detector header is compatible with tat of ARCA.
int getNumberOfModules(const JDetector &detector, const bool option=false)
Get number of modules.
double getMaximalDistance(const JDetector &detector, const bool option=false)
Get maximal distance between modules in detector.
This name space includes all other name spaces (except KM3NETDAQ, KM3NET and ANTARES).
double getMaximalTime(const double R_Hz)
Get maximal time for given rate.
Auxiliary data structure for floating point format specification.
Auxiliary interface for building detector.
const JModule & getModule(const int id=-1, const JLocation &location=JLocation()) const
Get module.
Auxiliary data structure for decomposition of quaternion in twist and swing quaternions.
Auxiliary class for date and time.
std::string toString() const
Get ASCII formatted date and time.
Auxiliary data structure for floating point format specification.