source: trunk/Mars/mjobs/MJSimulation.cc@ 17853

Last change on this file since 17853 was 17853, checked in by tbretz, 10 years ago
Reverting to last revision.
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1/* ======================================================================== *\
2!
3! *
4! * This file is part of MARS, the MAGIC Analysis and Reconstruction
5! * Software. It is distributed to you in the hope that it can be a useful
6! * and timesaving tool in analysing Data of imaging Cerenkov telescopes.
7! * It is distributed WITHOUT ANY WARRANTY.
8! *
9! * Permission to use, copy, modify and distribute this software and its
10! * documentation for any purpose is hereby granted without fee,
11! * provided that the above copyright notice appear in all copies and
12! * that both that copyright notice and this permission notice appear
13! * in supporting documentation. It is provided "as is" without express
14! * or implied warranty.
15! *
16!
17!
18! Author(s): Thomas Bretz, 1/2009 <mailto:tbretz@astro.uni-wuerzburg.de>
19!
20! Copyright: MAGIC Software Development, 2000-2009
21!
22!
23\* ======================================================================== */
24
25/////////////////////////////////////////////////////////////////////////////
26//
27// MJSimulation
28//
29//
30// Force reading a corsika file even if the footer (RUNE-section) is missing
31// by setting fForceMode to kTRUE or from the resource file by
32//
33// ForceMode: Yes
34//
35//
36// To switch off the simulation of the camera electronics, use:
37//
38// Camera: Off
39//
40// Note, that the border of the camera and the propertied of the cones
41// are still simulated (simply because it is fast). Furthermore, this
42// switches off the trigger for the output, i.e. all data which deposits
43// at least one photon in at least one pixel is written to the output file.
44//
45//
46// In case of a pedestal or calibration run the artificial trigger can
47// be "switched off" and the cosmics trrigger "switched on" by setting
48// fForceTrigger to kTRUE or from the resource file by
49//
50// ForceTrigger: Yes
51//
52//
53/////////////////////////////////////////////////////////////////////////////
54#include "MJSimulation.h"
55
56#include <TEnv.h>
57#include <TCanvas.h>
58
59// Core
60#include "MLog.h"
61#include "MLogManip.h"
62
63#include "MArgs.h"
64#include "MDirIter.h"
65#include "MParList.h"
66#include "MTaskList.h"
67#include "MEvtLoop.h"
68
69#include "MStatusDisplay.h"
70
71// Tasks
72#include "MCorsikaRead.h"
73#include "MContinue.h"
74#include "MFillH.h"
75#include "MGeomApply.h"
76#include "MParameterCalc.h"
77#include "MHillasCalc.h"
78#include "MImgCleanStd.h"
79#include "MWriteRootFile.h"
80#include "MWriteFitsFile.h"
81
82#include "MSimMMCS.h"
83#include "MSimAbsorption.h"
84#include "MSimAtmosphere.h"
85#include "MSimReflector.h"
86#include "MSimPointingPos.h"
87#include "MSimPSF.h"
88#include "MSimGeomCam.h"
89#include "MSimSignalCam.h"
90#include "MSimAPD.h"
91#include "MSimExcessNoise.h"
92#include "MSimCamera.h"
93#include "MSimTrigger.h"
94#include "MSimReadout.h"
95#include "MSimRandomPhotons.h"
96#include "MSimBundlePhotons.h"
97#include "MSimCalibrationSignal.h"
98
99// Histograms
100#include "MBinning.h"
101
102#include "MHn.h"
103#include "MHCamera.h"
104#include "MHCamEvent.h"
105#include "MHPhotonEvent.h"
106
107// Container
108#include "MRawRunHeader.h"
109#include "MParameters.h"
110#include "MReflector.h"
111#include "MParEnv.h"
112#include "MSpline3.h"
113#include "MParSpline.h"
114#include "MGeomCam.h"
115
116#include "MPedestalCam.h"
117#include "MPedestalPix.h"
118
119ClassImp(MJSimulation);
120
121using namespace std;
122
123// --------------------------------------------------------------------------
124//
125// Default constructor.
126//
127// Sets fRuns to 0, fExtractor to NULL, fDataCheck to kFALSE
128//
129MJSimulation::MJSimulation(const char *name, const char *title)
130 : fForceMode(kFALSE), fCamera(kTRUE), fForceTrigger(kFALSE),
131 fWriteFitsFile(kFALSE), fOperationMode(kModeData), fRunNumber(-1)
132{
133 fName = name ? name : "MJSimulation";
134 fTitle = title ? title : "Standard analysis and reconstruction";
135}
136
137Bool_t MJSimulation::CheckEnvLocal()
138{
139 fForceMode = GetEnv("ForceMode", fForceMode);
140 fForceTrigger = GetEnv("ForceTrigger", fForceTrigger);
141 fCamera = GetEnv("Camera", fCamera);
142
143 return kTRUE;
144}
145/*
146TString MJSimulation::GetOutFile(const MSequence &seq) const
147{
148 return seq.IsValid() ? Form("ceres%08d.root", seq.GetSequence()) : "ceres.root";
149}
150*/
151
152Bool_t MJSimulation::WriteResult(const MParList &plist, const MSequence &seq, Int_t num)
153{
154 if (fPathOut.IsNull())
155 {
156 *fLog << inf << "No output path specified via SetPathOut - no output written." << endl;
157 return kTRUE;
158 }
159
160 TObjArray cont;
161 cont.Add(const_cast<TEnv*>(GetEnv()));
162 if (seq.IsValid())
163 cont.Add(const_cast<MSequence*>(&seq));
164
165 cont.Add(plist.FindObject("PulseShape"));
166 cont.Add(plist.FindObject("Reflector"));
167 cont.Add(plist.FindObject("MGeomCam"));
168 cont.Add(plist.FindObject("GeomCones"));
169
170 TNamed cmdline("CommandLine", fCommandLine.Data());
171 cont.Add(&cmdline);
172
173 if (fDisplay)
174 {
175 TString title = "-- Ceres";
176 if (seq.IsValid())
177 {
178 title += ": ";
179 title += seq.GetSequence();
180 }
181 title += " --";
182 fDisplay->SetTitle("Ceres", kFALSE);
183
184 cont.Add(fDisplay);
185 }
186
187 const TString name = Form("ceres%08d.root", num);
188 return WriteContainer(cont, name, "RECREATE");
189}
190
191void MJSimulation::SetupHist(MHn &hist) const
192{
193 hist.AddHist("MCorsikaEvtHeader.fTotalEnergy");
194 hist.InitName("Energy");
195 hist.InitTitle("Energy;E [GeV]");
196 hist.SetLog(kTRUE, kTRUE, kFALSE);
197
198 hist.AddHist("MPhotonEvent.GetNumExternal");
199 hist.InitName("Size");
200 hist.InitTitle("Size;S [#]");
201 hist.SetLog(kTRUE, kTRUE, kFALSE);
202
203 /*
204 hist.AddHist("-MCorsikaEvtHeader.fX/100","-MCorsikaEvtHeader.fY/100");
205 hist.SetDrawOption("colz");
206 hist.InitName("Impact;Impact;Impact");
207 hist.InitTitle("Impact;West <--> East [m];South <--> North [m]");
208 hist.SetAutoRange();
209 */
210
211 hist.AddHist("MCorsikaEvtHeader.GetImpact/100");
212 hist.InitName("Impact");
213 hist.InitTitle("Impact;Impact [m]");
214 hist.SetAutoRange();
215
216 hist.AddHist("MCorsikaEvtHeader.fFirstInteractionHeight/100000");
217 hist.InitName("Height");
218 hist.InitTitle("FirstInteractionHeight;h [km]");
219
220 hist.AddHist("(MCorsikaEvtHeader.fAz+MCorsikaRunHeader.fMagneticFieldAz)*TMath::RadToDeg()", "MCorsikaEvtHeader.fZd*TMath::RadToDeg()");
221 hist.InitName("SkyOrigin;Az;Zd");
222 hist.InitTitle("Sky Origin;Az [\\circ];Zd [\\circ]");
223 hist.SetDrawOption("colz");
224 hist.SetAutoRange();
225
226 hist.AddHist("IncidentAngle.fVal");
227 hist.InitName("ViewCone");
228 hist.InitTitle("Incident Angle;\\alpha [\\circ]");
229}
230
231void MJSimulation::SetupCommonFileStructure(MWriteRootFile &write) const
232{
233 // Common run headers
234 write.AddContainer("MMcCorsikaRunHeader", "RunHeaders", kFALSE);
235 write.AddContainer("MCorsikaRunHeader", "RunHeaders", kFALSE);
236 write.AddContainer("MRawRunHeader", "RunHeaders");
237 write.AddContainer("MGeomCam", "RunHeaders");
238 write.AddContainer("MMcRunHeader", "RunHeaders");
239
240 // Common events
241 write.AddContainer("MCorsikaEvtHeader", "Events", kFALSE);
242 write.AddContainer("MRawEvtHeader", "Events");
243 write.AddContainer("MMcEvt", "Events");
244 write.AddContainer("IncidentAngle", "Events", kFALSE);
245}
246//FIXME Etienne. I'm doing the same for fits and root. I probably should adapt somehow
247void MJSimulation::SetupCommonFileStructure(MWriteFitsFile& write) const
248{
249 // Common run headers
250 write.AddContainer("MMcCorsikaRunHeader", "RunHeaders", kFALSE);
251 write.AddContainer("MCorsikaRunHeader", "RunHeaders", kFALSE);
252 write.AddContainer("MRawRunHeader", "RunHeaders");
253 write.AddContainer("MGeomCam", "RunHeaders");
254 write.AddContainer("MMcRunHeader", "RunHeaders");
255
256 // Common events
257 write.AddContainer("MCorsikaEvtHeader", "Events", kFALSE);
258 write.AddContainer("MRawEvtHeader", "Events");
259 write.AddContainer("MMcEvt", "Events");
260 write.AddContainer("IncidentAngle", "Events", kFALSE);
261}
262
263void MJSimulation::SetupHeaderKeys(MWriteFitsFile &write,MRawRunHeader &header) const
264{
265 const MTime now(-1);
266 write.SetHeaderKey("ISMC",true,"Bool if File is Montecarlo File");
267 write.SetHeaderKey("TELESCOP", "FACT", "");
268 write.SetHeaderKey("PACKAGE", "MARS Cheobs", "");
269 write.SetHeaderKey("VERSION", "1.0", "");
270 write.SetHeaderKey("CREATOR", "Ceres", "");
271 write.SetHeaderKey("EXTREL", 1., "");
272 write.SetHeaderKey("COMPILED", __DATE__" " __TIME__, "");
273 write.SetHeaderKey("REVISION", "0", "");
274 write.SetHeaderKey("ORIGIN", "FACT", "");
275 write.SetHeaderKey("DATE", now.GetStringFmt("%Y-%m-%dT%H:%M:%S").Data(), "");
276 write.SetHeaderKey("NIGHT", now.GetNightAsInt(), "");
277 write.SetHeaderKey("TIMESYS", "UTC", "");
278 write.SetHeaderKey("TIMEUNIT", "d", "");
279 write.SetHeaderKey("MJDREF", 40587, "");
280 //write.SetHeaderKey("BLDVER", 1, "");
281 write.SetHeaderKey("RUNID", header.GetRunNumber(), "");
282 write.SetHeaderKey("NBOARD", 40, "");
283 write.SetHeaderKey("NPIX", header.GetNumPixel(), "");
284 write.SetHeaderKey("NROI", header.GetNumSamplesHiGain(), "");
285 write.SetHeaderKey("NROITM", 0, "");
286 write.SetHeaderKey("TMSHIFT", 0, "");
287 write.SetHeaderKey("CAMERA", "MGeomCamFACT", "");
288 write.SetHeaderKey("DAQ", "DRS4", "");
289
290 // FTemme: ADCRANGE and ADC have to be calculated, using the values for
291 // the fadctype.
292// write.SetHeaderKey("ADCRANGE", 2000, "Dynamic range in mV");
293// write.SetHeaderKey("ADC", 12, "Resolution in bits");
294
295 switch(header.GetRunType())
296 {
297 case MRawRunHeader::kRTData|MRawRunHeader::kRTMonteCarlo:
298 write.SetHeaderKey("RUNTYPE", "data", "");
299 break;
300 case MRawRunHeader::kRTPedestal|MRawRunHeader::kRTMonteCarlo:
301 write.SetHeaderKey("RUNTYPE", "pedestal", "");
302 break;
303 case MRawRunHeader::kRTCalibration|MRawRunHeader::kRTMonteCarlo:
304 write.SetHeaderKey("RUNTYPE", "calibration", "");
305 break;
306 }
307// write.SetHeaderKey("ID", 777, "Board 0: Board ID");
308// write.SetHeaderKey("FMVER", 532, "Board 0: Firmware Version");
309// write.SetHeaderKey("DNA", "0", "");
310// write.SetHeaderKey("BOARD", 0, "");
311// write.SetHeaderKey("PRESC", 40, "");
312// write.SetHeaderKey("PHASE", 0, "");
313// write.SetHeaderKey("DAC0", 26500, "");
314// write.SetHeaderKey("DAC1", 0, "");
315// write.SetHeaderKey("DAC2", 0, "");
316// write.SetHeaderKey("DAC3", 0, "");
317// write.SetHeaderKey("DAC4", 28800, "");
318// write.SetHeaderKey("DAC5", 28800, "");
319// write.SetHeaderKey("DAC6", 28800, "");
320// write.SetHeaderKey("DAC7", 28800, "");
321 write.SetHeaderKey("REFCLK", header.GetFreqSampling(), "");
322 write.SetHeaderKey("DRSCALIB", false, "");
323// write.SetHeaderKey("TSTARTI", 0, "");
324// write.SetHeaderKey("TSTARTF", 0., "");
325// write.SetHeaderKey("TSTOPI", 0, "");
326// write.SetHeaderKey("TSTOPF", 0., "");
327// write.SetHeaderKey("DATE-OBS", "1970-01-01T00:00:00", "");
328// write.SetHeaderKey("DATE-END", "1970-01-01T00:00:00", "");
329// write.SetHeaderKey("NTRG", 0, "");
330// write.SetHeaderKey("NTRGPED", 0, "");
331// write.SetHeaderKey("NTRGLPE", 0, "");
332// write.SetHeaderKey("NTRGTIM", 0, "");
333// write.SetHeaderKey("NTRGLPI", 0, "");
334// write.SetHeaderKey("NTRGEXT1", 0, "");
335// write.SetHeaderKey("NTRGEXT2", 0, "");
336// write.SetHeaderKey("NTRGMISC", 0, "");
337}
338
339void MJSimulation::SetupVetoColumns(MWriteFitsFile &write) const
340{
341 write.VetoColumn("MParameterD.fVal");
342 write.VetoColumn("MRawEvtData.fLoGainPixId");
343 write.VetoColumn("MRawEvtData.fLoGainFadcSamples");
344 write.VetoColumn("MRawEvtData.fABFlags");
345 write.VetoColumn("MRawEvtHeader.fNumTrigLvl2");
346 //write.VetoColumn("MRawEvtHeader.fTrigPattern");
347 write.VetoColumn("MRawEvtHeader.fNumLoGainOn");
348}
349
350Bool_t MJSimulation::Process(const MArgs &args, const MSequence &seq)
351{
352 *fLog << inf;
353 fLog->Separator(GetDescriptor());
354
355 if (!CheckEnv())
356 return kFALSE;
357
358 if (seq.IsValid())
359 *fLog << fSequence.GetFileName() << endl;
360 else
361 *fLog << "Input: " << args.GetNumArguments() << "-files" << endl;
362 *fLog << endl;
363
364 MDirIter iter;
365 if (seq.IsValid() && seq.GetRuns(iter, MSequence::kCorsika)<=0)
366 {
367 *fLog << err << "ERROR - Sequence valid but without files." << endl;
368 return kFALSE;
369 }
370
371 // --------------------------------------------------------------------------------
372 // Setup Parlist
373 MParList plist;
374 plist.AddToList(this); // take care of fDisplay!
375 // setup TaskList
376 MTaskList tasks;
377 plist.AddToList(&tasks);
378 // --------------------------------------------------------------------------------
379
380 // FIXME: Allow empty GeomCones!
381 MParEnv env0("Reflector");
382 MParEnv env1("GeomCones");
383 MParEnv env2("MGeomCam");
384 env0.SetClassName("MReflector");
385 env1.SetClassName("MGeomCam");
386 env2.SetClassName("MGeomCam");
387 plist.AddToList(&env0);
388 plist.AddToList(&env1);
389 plist.AddToList(&env2);
390
391 plist.FindCreateObj("MPedPhotCam", "MPedPhotFromExtractorRndm");
392
393 MParSpline shape("PulseShape");
394 plist.AddToList(&shape);
395
396 // *** FIXME *** FIXME *** FIXME ***
397 plist.FindCreateObj("MMcRunHeader");
398
399 MRawRunHeader header;
400 header.SetValidMagicNumber();
401 //header.InitFadcType(3);
402
403 switch (fOperationMode)
404 {
405 case kModeData:
406 header.SetRunType(MRawRunHeader::kRTMonteCarlo|MRawRunHeader::kRTData);
407 header.SetRunInfo(0, fRunNumber<0 ? 3 : fRunNumber);
408 break;
409
410 case kModePed:
411 header.SetRunType(MRawRunHeader::kRTMonteCarlo|MRawRunHeader::kRTPedestal);
412 header.SetSourceInfo("Pedestal");
413 header.SetRunInfo(0, fRunNumber<0 ? 1 : fRunNumber);
414 break;
415
416 case kModeCal:
417 header.SetRunType(MRawRunHeader::kRTMonteCarlo|MRawRunHeader::kRTCalibration);
418 header.SetSourceInfo("Calibration");
419 header.SetRunInfo(0, fRunNumber<0 ? 2 : fRunNumber);
420 break;
421
422 case kModePointRun:
423 header.SetRunType(MRawRunHeader::kRTMonteCarlo|MRawRunHeader::kRTPointRun);
424 header.SetRunInfo(0, fRunNumber<0 ? 0 : fRunNumber);
425 break;
426 }
427
428 // FIXME: Move to MSimPointingPos, MSimCalibrationSignal
429 // Can we use this as input for MSimPointingPos?
430 header.SetObservation("On", "MonteCarlo");
431 plist.AddToList(&header);
432
433 MCorsikaRead read;
434 read.SetForceMode(fForceMode);
435
436 if (!seq.IsValid())
437 {
438 for (int i=0; i<args.GetNumArguments(); i++)
439 read.AddFile(args.GetArgumentStr(i));
440 }
441 else
442 read.AddFiles(iter);
443
444 MContinue precut("", "PreCut");
445 precut.IsInverted();
446 precut.SetAllowEmpty();
447
448 MSimMMCS simmmcs;
449
450 MParSpline splinepde("PhotonDetectionEfficiency");
451 MParSpline splinemirror("MirrorReflectivity");
452 MParSpline splinecones("ConesAngularAcceptance");
453 MParSpline splinecones2("ConesTransmission");
454 plist.AddToList(&splinepde);
455 plist.AddToList(&splinemirror);
456 plist.AddToList(&splinecones);
457 plist.AddToList(&splinecones2);
458
459 const TString sin2 = "sin(MCorsikaEvtHeader.fZd)*sin(MCorsikaRunHeader.fZdMin*TMath::DegToRad())";
460 const TString cos2 = "cos(MCorsikaEvtHeader.fZd)*cos(MCorsikaRunHeader.fZdMin*TMath::DegToRad())";
461 const TString cos = "cos(MCorsikaEvtHeader.fAz-MCorsikaRunHeader.fAzMin*TMath::DegToRad())";
462
463 const TString form = "acos("+sin2+"*"+cos+"+"+cos2+")*TMath::RadToDeg()";
464
465 MParameterCalc calcangle(form, "CalcIncidentAngle");
466 calcangle.SetNameParameter("IncidentAngle");
467
468 MSimAtmosphere simatm;
469 MSimAbsorption absapd("SimPhotonDetectionEfficiency");
470 MSimAbsorption absmir("SimMirrorReflectivity");
471 MSimAbsorption cones("SimConesAngularAcceptance");
472 MSimAbsorption cones2("SimConesTransmission");
473 absapd.SetParName("PhotonDetectionEfficiency");
474 absmir.SetParName("MirrorReflectivity");
475 cones.SetParName("ConesAngularAcceptance");
476 cones.SetUseTheta();
477 cones2.SetParName("ConesTransmission");
478
479 MSimPointingPos pointing;
480
481 MSimReflector reflect;
482 reflect.SetNameGeomCam("GeomCones");
483 reflect.SetNameReflector("Reflector");
484// MSimStarField stars;
485
486 MContinue cont1("MPhotonEvent.GetNumPhotons<1", "ContEmpty1");
487 MContinue cont2("MPhotonEvent.GetNumPhotons<1", "ContEmpty2");
488 MContinue cont3("MPhotonEvent.GetNumPhotons<2", "ContEmpty3");
489 cont1.SetAllowEmpty();
490 cont2.SetAllowEmpty();
491 cont3.SetAllowEmpty();
492
493 // -------------------------------------------------------------------
494
495 MBinning binse( 120, 1, 1000000, "BinningEnergy", "log");
496 MBinning binsth( 60, 0.9, 900000, "BinningThreshold", "log");
497 MBinning binsee( 36, 0.9, 900000, "BinningEnergyEst", "log");
498 MBinning binss( 100, 1, 10000000, "BinningSize", "log");
499// MBinning binsi( 100, -500, 500, "BinningImpact");
500 MBinning binsi( 32, 0, 800, "BinningImpact");
501 MBinning binsh( 150, 0, 50, "BinningHeight");
502 MBinning binsaz(720, -360, 360, "BinningAz");
503 MBinning binszd( 70, 0, 70, "BinningZd");
504 MBinning binsvc( 35, 0, 7, "BinningViewCone");
505 MBinning binsel(150, 0, 50, "BinningTotLength");
506 MBinning binsew(150, 0, 15, "BinningMedLength");
507 MBinning binsd("BinningDistC");
508 MBinning binsd0("BinningDist");
509 MBinning binstr("BinningTrigPos");
510
511 plist.AddToList(&binsee);
512 plist.AddToList(&binse);
513 plist.AddToList(&binsth);
514 plist.AddToList(&binss);
515 plist.AddToList(&binsi);
516 plist.AddToList(&binsh);
517 plist.AddToList(&binszd);
518 plist.AddToList(&binsaz);
519 plist.AddToList(&binsvc);
520 plist.AddToList(&binsel);
521 plist.AddToList(&binsew);
522 plist.AddToList(&binstr);
523 plist.AddToList(&binsd);
524 plist.AddToList(&binsd0);
525
526 MHn mhn1, mhn2, mhn3, mhn4;
527 SetupHist(mhn1);
528 SetupHist(mhn2);
529 SetupHist(mhn3);
530 SetupHist(mhn4);
531
532 MH3 mhtp("TriggerPos.fVal-IntendedPulsePos.fVal-PulseShape.GetWidth");
533 mhtp.SetName("TrigPos");
534 mhtp.SetTitle("Trigger position w.r.t. the first photon hitting a detector");
535
536 MH3 mhew("MPhotonStatistics.fLength");
537 mhew.SetName("TotLength");
538 mhew.SetTitle("Time between first and last photon hitting a detector;L [ns]");
539
540 MH3 mhed("MPhotonStatistics.fTimeMedDev");
541 mhed.SetName("MedLength");
542 mhed.SetTitle("Median deviation (1\\sigma);L [ns]");
543
544 MFillH fillh1(&mhn1, "", "FillCorsika");
545 MFillH fillh2(&mhn2, "", "FillH2");
546 MFillH fillh3(&mhn3, "", "FillH3");
547 MFillH fillh4(&mhn4, "", "FillH4");
548 MFillH filltp(&mhtp, "", "FillTriggerPos");
549 MFillH fillew(&mhew, "", "FillEvtWidth");
550 MFillH filled(&mhed, "", "FillMedDev");
551 fillh1.SetNameTab("Corsika", "Distribution as simulated by Corsika");
552 fillh2.SetNameTab("Detectable", "Distribution of events hit the detector");
553 fillh3.SetNameTab("Triggered", "Distribution of triggered events");
554 fillh4.SetNameTab("Cleaned", "Distribution after cleaning and cuts");
555 filltp.SetNameTab("TrigPos", "TriggerPosition w.r.t the first photon");
556 fillew.SetNameTab("EvtWidth", "Time between first and last photon hitting a detector");
557 filled.SetNameTab("MedDev", "Median deviation of arrival time of photons hitting a detector");
558
559 MHPhotonEvent planeG(1, "HPhotonEventGround"); // Get from MaxImpact
560 MHPhotonEvent plane0(2, "HMirrorPlane0"); // Get from MReflector
561 //MHPhotonEvent plane1(2, "HMirrorPlane1");
562 MHPhotonEvent plane2(2, "HMirrorPlane2");
563 MHPhotonEvent plane3(2, "HMirrorPlane3");
564 MHPhotonEvent plane4(2, "HMirrorPlane4");
565 MHPhotonEvent planeF1(6, "HPhotonEventCamera"); // Get from MGeomCam
566 MHPhotonEvent planeF2(header.IsPointRun()?4:6, "HPhotonEventCones"); // Get from MGeomCam
567
568 plist.AddToList(&planeG);
569 plist.AddToList(&plane0);
570 plist.AddToList(&plane2);
571 plist.AddToList(&plane3);
572 plist.AddToList(&plane4);
573 plist.AddToList(&planeF1);
574 plist.AddToList(&planeF2);;
575
576 //MHPSF psf;
577
578 MFillH fillG(&planeG, "MPhotonEvent", "FillGround");
579 MFillH fill0(&plane0, "MirrorPlane0", "FillReflector");
580 //MFillH fill1(&plane1, "MirrorPlane1", "FillCamShadow");
581 MFillH fill2(&plane2, "MirrorPlane2", "FillCandidates");
582 MFillH fill3(&plane3, "MirrorPlane3", "FillReflected");
583 MFillH fill4(&plane4, "MirrorPlane4", "FillFocal");
584 MFillH fillF1(&planeF1, "MPhotonEvent", "FillCamera");
585 MFillH fillF2(&planeF2, "MPhotonEvent", "FillCones");
586 //MFillH fillP(&psf, "MPhotonEvent", "FillPSF");
587
588 fillG.SetNameTab("Ground", "Photon distribution at ground");
589 fill0.SetNameTab("Reflector", "Photon distribution at reflector plane w/o camera shadow");
590 //fill1.SetNameTab("CamShadow", "Photon distribution at reflector plane w/ camera shadow");
591 fill2.SetNameTab("Candidates", "*Can hit* photon distribution at reflector plane w/ camera shadow");
592 fill3.SetNameTab("Reflected", "Photon distribution after reflector projected to reflector plane");
593 fill4.SetNameTab("Focal", "Photon distribution at focal plane");
594 fillF1.SetNameTab("Camera", "Photon distribution which hit the detector");
595 fillF2.SetNameTab("Cones", "Photon distribution after cones");
596 //fillP.SetNameTab("PSF", "Photon distribution after cones for all mirrors");
597
598 // -------------------------------------------------------------------
599
600 const char *fmt = Form("s/cer([0-9]+)([0-9][0-9][0-9])/%s\\/%08d.$2_%%c_MonteCarlo$1.root/", Esc(fPathOut).Data(), header.GetRunNumber());
601
602 const TString rule1(Form(fmt, 'R'));
603 const TString rule2(Form(fmt, 'Y'));
604 const TString rule4(Form(fmt, 'I'));
605 TString rule3(Form(fmt, header.GetRunTypeChar()));
606
607 MWriteRootFile write4a( 2, rule4, fOverwrite?"RECREATE":"NEW", "Star file");
608 MWriteRootFile write4b( 2, rule4, fOverwrite?"RECREATE":"NEW", "Star file");
609 MWriteRootFile write3b( 2, rule3, fOverwrite?"RECREATE":"NEW", "Camera file");
610 MWriteRootFile write2a( 2, rule2, fOverwrite?"RECREATE":"NEW", "Signal file");
611 MWriteRootFile write2b( 2, rule2, fOverwrite?"RECREATE":"NEW", "Signal file");
612 MWriteRootFile write1a( 2, rule1, fOverwrite?"RECREATE":"NEW", "Reflector file");
613 MWriteRootFile write1b( 2, rule1, fOverwrite?"RECREATE":"NEW", "Reflector file");
614
615 if (fWriteFitsFile)
616 rule3.ReplaceAll("$1.root/", "$1.fits/");
617
618 MWriteFitsFile write3af( 2, rule3, fOverwrite?"RECREATE":"NEW", "Camera file");
619 MWriteRootFile write3ar( 2, rule3, fOverwrite?"RECREATE":"NEW", "Camera file");
620
621 MTask &write3a = fWriteFitsFile ? static_cast<MTask&>(write3af) : static_cast<MTask&>(write3ar);
622
623 //SetupHeaderKeys(write3af,header);
624 SetupVetoColumns(write3af);
625
626 write3af.SetBytesPerSample("Data", 2);
627
628 write1a.SetName("WriteRefData");
629 write1b.SetName("WriteRefMC");
630 write2a.SetName("WriteSigData");
631 write2b.SetName("WriteSigMC");
632 write3a.SetName("WriteCamData");
633 write3b.SetName("WriteCamMC");
634 write4a.SetName("WriteImgData");
635 write4b.SetName("WriteImgMC");
636
637 SetupCommonFileStructure(write1a);
638 SetupCommonFileStructure(write2a);
639 SetupCommonFileStructure(write3ar);
640 SetupCommonFileStructure(write3af);
641 SetupCommonFileStructure(write4a);
642
643 // R: Dedicated file structure
644 write1a.AddContainer("MPhotonEvent", "Events");
645
646 // Y: Dedicated file structure
647 write2a.AddContainer("MPedPhotFromExtractorRndm", "RunHeaders"); // FIXME: Needed for the signal files to be display in MARS
648 write2a.AddContainer("MSignalCam", "Events");
649
650 // D: Dedicated file structure
651 write3af.AddContainer("ElectronicNoise", "RunHeaders");
652 write3af.AddContainer("IntendedPulsePos", "RunHeaders");
653 write3af.AddContainer("MRawEvtData", "Events");
654 write3af.AddContainer("MTruePhotonsPerPixelCont", "Events");
655
656 if (fOperationMode == kModeData){
657 write3af.AddContainer("MMcEvtBasic", "Events");
658 }
659
660 write3af.AddContainer("MPhotonEvent","Events");
661
662 write3ar.AddContainer("ElectronicNoise", "RunHeaders");
663 write3ar.AddContainer("IntendedPulsePos", "RunHeaders");
664 write3ar.AddContainer("MRawEvtData", "Events");
665 // It doesn't make much sene to write this information
666 // to the file because the units are internal units not
667 // related to the output samples
668 // if (header.IsDataRun() || fForceTrigger)
669 // write3a.AddContainer("TriggerPos", "Events");
670
671 // I: Dedicated file structure
672 write4a.AddContainer("MHillas", "Events");
673 write4a.AddContainer("MHillasSrc", "Events");
674 write4a.AddContainer("MImagePar", "Events");
675 write4a.AddContainer("MNewImagePar", "Events");
676
677 // Basic MC data
678 write1b.AddContainer("MMcEvtBasic", "OriginalMC");
679 write2b.AddContainer("MMcEvtBasic", "OriginalMC");
680 write3b.AddContainer("MMcEvtBasic", "OriginalMC");
681 write4b.AddContainer("MMcEvtBasic", "OriginalMC");
682
683 // -------------------------------------------------------------------
684
685 MGeomApply apply;
686
687 MSimPSF simpsf;
688
689 MSimGeomCam simgeom;
690 simgeom.SetNameGeomCam("GeomCones");
691
692 MSimCalibrationSignal simcal;
693 simcal.SetNameGeomCam("GeomCones");
694
695 // Sky Quality Meter: 21.82M = 2.02e-4cd/m^2
696 // 1cd = 12.566 lm / 4pi sr
697
698 // FIXME: Simulate photons before cones and QE!
699
700 MSimRandomPhotons simnsb;
701 simnsb.SetFreq(5.8, 0.004); // ph/m^2/nm/sr/ns NSB, 4MHz dark count rate
702 simnsb.SetNameGeomCam("GeomCones");
703
704 // FIXME: How do we handle star-light? We need the rate but we also
705 // need to process it through the mirror!
706
707 MSimAPD simapd;
708 simapd.SetNameGeomCam("GeomCones");
709
710 MSimExcessNoise simexcnoise;
711 MSimBundlePhotons simsum;
712 MSimSignalCam simsignal;
713 MSimCamera simcam;
714 MSimTrigger simtrig;
715 MSimReadout simdaq;
716
717 MContinue conttrig("TriggerPos.fVal<0", "ContTrigger");
718
719 MParameterD pulpos("IntendedPulsePos");
720 // FIXME: Set a default which could be 1/3 of the digitization window
721 // pulpos.SetVal(40); // [ns]
722 plist.AddToList(&pulpos);
723
724 MParameterD trigger("TriggerPos");
725 trigger.SetVal(0);
726 plist.AddToList(&trigger);
727
728 // -------------------------------------------------------------------
729
730 // Remove isolated pixels
731 MImgCleanStd clean(0, 0);
732 //clean.SetCleanLvl0(0); // The level above which isolated pixels are kept
733 clean.SetCleanRings(0);
734 clean.SetMethod(MImgCleanStd::kAbsolute);
735
736 //clean.SetNamePedPhotCam("MPedPhotFromExtractorRndm");
737
738 MHillasCalc hcalc;
739 hcalc.Disable(MHillasCalc::kCalcConc);
740
741 MHCamEvent evt0a(/*10*/3, "Signal", "Average signal (absolute);;S [ph]");
742 MHCamEvent evt0c(/*10*/3, "MaxSignal", "Maximum signal (absolute);;S [ph]");
743 MHCamEvent evt0d(/*11*/8, "ArrTm", "Time after first photon;;T [ns]");
744 evt0a.SetErrorSpread(kFALSE);
745 evt0c.SetCollectMax();
746
747 MContinue cut("", "Cut");
748
749 MFillH fillx0a(&evt0a, "MSignalCam", "FillAvgSignal");
750 MFillH fillx0c(&evt0c, "MSignalCam", "FillMaxSignal");
751 MFillH fillx0d(&evt0d, "MSignalCam", "FillArrTm");
752 MFillH fillx1("MHHillas", "MHillas", "FillHillas");
753 MFillH fillx3("MHHillasSrc", "MHillasSrc", "FillHillasSrc");
754 MFillH fillx4("MHNewImagePar", "MNewImagePar", "FillNewImagePar");
755 MFillH fillth("MHThreshold", "", "FillThreshold");
756 MFillH fillca("MHCollectionArea", "", "FillTrigArea");
757
758 fillth.SetNameTab("Threshold");
759 fillca.SetNameTab("TrigArea");
760
761 // -------------------------------------------------------------------
762
763 if (header.IsDataRun())
764 {
765 tasks.AddToList(&read);
766 tasks.AddToList(&precut);
767 tasks.AddToList(&pointing);
768 tasks.AddToList(&simmmcs);
769 if (!fPathOut.IsNull() && !HasNullOut())
770 {
771 //tasks.AddToList(&write1b);
772 tasks.AddToList(&write2b);
773 if (fCamera)
774 tasks.AddToList(&write3b);
775 if (header.IsDataRun())
776 tasks.AddToList(&write4b);
777 }
778 // if (header.IsPointRun())
779 // tasks.AddToList(&stars);
780 if (1)
781 tasks.AddToList(&simatm); // Here because before fillh1
782 tasks.AddToList(&calcangle);
783 tasks.AddToList(&fillh1);
784 tasks.AddToList(&fillG);
785 if (!header.IsPointRun())
786 {
787 tasks.AddToList(&absapd);
788 tasks.AddToList(&absmir);
789 if (0)
790 tasks.AddToList(&simatm); // FASTER?
791 }
792 tasks.AddToList(&reflect);
793 if (!header.IsPointRun())
794 {
795 tasks.AddToList(&fill0);
796 //tasks.AddToList(&fill1);
797 tasks.AddToList(&fill2);
798 tasks.AddToList(&fill3);
799 tasks.AddToList(&fill4);
800 tasks.AddToList(&fillF1);
801 }
802 tasks.AddToList(&cones);
803 tasks.AddToList(&cones2);
804 //if (header.IsPointRun())
805 // tasks.AddToList(&fillP);
806 tasks.AddToList(&cont1);
807 }
808 // -------------------------------
809 tasks.AddToList(&apply);
810 if (header.IsDataRun())
811 {
812 tasks.AddToList(&simpsf);
813 tasks.AddToList(&simgeom);
814 tasks.AddToList(&cont2);
815 if (!header.IsPointRun())
816 {
817 tasks.AddToList(&fillF2);
818 tasks.AddToList(&fillh2);
819 }
820 tasks.AddToList(&cont3);
821 }
822 if (fCamera)
823 {
824 if (header.IsPedestalRun() || header.IsCalibrationRun())
825 tasks.AddToList(&simcal);
826 tasks.AddToList(&simnsb);
827 tasks.AddToList(&simapd);
828 tasks.AddToList(&simexcnoise);
829 }
830 tasks.AddToList(&simsum);
831 if (fCamera)
832 {
833 tasks.AddToList(&simcam);
834 if (header.IsDataRun() || fForceTrigger)
835 tasks.AddToList(&simtrig);
836 tasks.AddToList(&conttrig);
837 tasks.AddToList(&simdaq);
838 }
839 tasks.AddToList(&simsignal); // What do we do if signal<0?
840 if (!fPathOut.IsNull() && !HasNullOut())
841 {
842 //tasks.AddToList(&write1a);
843 if (!header.IsPedestalRun())
844 tasks.AddToList(&write2a);
845 if (fCamera)
846 tasks.AddToList(&write3a);
847 }
848 // -------------------------------
849 if (fCamera)
850 {
851 // FIXME: MHCollectionArea Trigger Area!
852 if (header.IsDataRun())
853 tasks.AddToList(&fillh3);
854 tasks.AddToList(&filltp);
855 }
856 if (header.IsDataRun())
857 {
858 tasks.AddToList(&fillew);
859 tasks.AddToList(&filled);
860 }
861 if (!header.IsPedestalRun())
862 {
863 tasks.AddToList(&fillx0a);
864 tasks.AddToList(&fillx0c);
865 }
866 if (header.IsDataRun())
867 {
868 tasks.AddToList(&clean);
869 tasks.AddToList(&hcalc);
870 tasks.AddToList(&cut);
871 tasks.AddToList(&fillx0d);
872 tasks.AddToList(&fillx1);
873 //tasks.AddToList(&fillx2);
874 tasks.AddToList(&fillx3);
875 tasks.AddToList(&fillx4);
876 if (!HasNullOut())
877 tasks.AddToList(&write4a);
878 //tasks.AddToList(&fillx5);
879
880 tasks.AddToList(&fillh4);
881 tasks.AddToList(&fillth);
882 tasks.AddToList(&fillca);
883 }
884 //-------------------------------------------
885
886 tasks.SetAccelerator(MTask::kAccDontReset|MTask::kAccDontTime);
887
888 // Create and setup the eventloop
889 MEvtLoop evtloop(fName);
890 evtloop.SetParList(&plist);
891 evtloop.SetDisplay(fDisplay);
892 evtloop.SetLogStream(&gLog);
893 if (!SetupEnv(evtloop))
894 return kFALSE;
895
896 // FIXME: If pedestal file given use the values from this file
897 //-------------------------------------------
898
899 MGeomCam *cam = static_cast<MGeomCam*>(env2.GetCont());
900
901 if (binstr.IsDefault())
902 binstr.SetEdgesLin(150, -shape.GetWidth(),
903 header.GetFreqSampling()/1000.*header.GetNumSamples()+shape.GetWidth());
904
905 if (binsd.IsDefault() && cam)
906 binsd.SetEdgesLin(100, 0, cam->GetMaxRadius()*cam->GetConvMm2Deg());
907
908 if (binsd0.IsDefault() && cam)
909 binsd0.SetEdgesLin(100, 0, cam->GetMaxRadius()*cam->GetConvMm2Deg());
910
911
912 header.Print();
913
914 // FIXME: Display acceptance curves!
915
916 if (fDisplay)
917 {
918 TCanvas &c = fDisplay->AddTab("Info");
919 c.Divide(2,2);
920
921 c.cd(1);
922 gPad->SetBorderMode(0);
923 gPad->SetFrameBorderMode(0);
924 gPad->SetGridx();
925 gPad->SetGridy();
926 gROOT->SetSelectedPad(0);
927 shape.DrawClone()->SetBit(kCanDelete);
928
929 if (env0.GetCont() && (header.IsDataRun() || header.IsPointRun()))
930 {
931 c.cd(3);
932 gPad->SetBorderMode(0);
933 gPad->SetFrameBorderMode(0);
934 gPad->SetGridx();
935 gPad->SetGridy();
936 gROOT->SetSelectedPad(0);
937 static_cast<MReflector*>(env0.GetCont())->DrawClone("line")->SetBit(kCanDelete);
938 }
939
940 if (fCamera)
941 {
942 if (env1.GetCont())
943 {
944 c.cd(2);
945 gPad->SetBorderMode(0);
946 gPad->SetFrameBorderMode(0);
947 gPad->SetGridx();
948 gPad->SetGridy();
949 gROOT->SetSelectedPad(0);
950 MHCamera *c = new MHCamera(static_cast<MGeomCam&>(*env1.GetCont()));
951 c->SetStats(kFALSE);
952 c->SetBit(MHCamera::kNoLegend);
953 c->SetBit(kCanDelete);
954 c->Draw();
955 }
956
957 if (cam)
958 {
959 c.cd(4);
960 gPad->SetBorderMode(0);
961 gPad->SetFrameBorderMode(0);
962 gPad->SetGridx();
963 gPad->SetGridy();
964 gROOT->SetSelectedPad(0);
965 MHCamera *c = new MHCamera(*cam);
966 c->SetStats(kFALSE);
967 c->SetBit(MHCamera::kNoLegend);
968 c->SetBit(kCanDelete);
969 c->Draw();
970 }
971 }
972
973 TCanvas &d = fDisplay->AddTab("Info2");
974 d.Divide(2,3);
975
976 d.cd(1);
977 gPad->SetBorderMode(0);
978 gPad->SetFrameBorderMode(0);
979 gPad->SetGridx();
980 gPad->SetGridy();
981 gROOT->SetSelectedPad(0);
982 splinepde.DrawClone()->SetBit(kCanDelete);
983
984 d.cd(3);
985 gPad->SetBorderMode(0);
986 gPad->SetFrameBorderMode(0);
987 gPad->SetGridx();
988 gPad->SetGridy();
989 gROOT->SetSelectedPad(0);
990 splinecones2.DrawClone()->SetBit(kCanDelete);
991
992 d.cd(5);
993 gPad->SetBorderMode(0);
994 gPad->SetFrameBorderMode(0);
995 gPad->SetGridx();
996 gPad->SetGridy();
997 gROOT->SetSelectedPad(0);
998 splinemirror.DrawClone()->SetBit(kCanDelete);
999
1000 d.cd(2);
1001 gPad->SetBorderMode(0);
1002 gPad->SetFrameBorderMode(0);
1003 gPad->SetGridx();
1004 gPad->SetGridy();
1005 gROOT->SetSelectedPad(0);
1006 splinecones.DrawClone()->SetBit(kCanDelete);
1007 //splinecones2.DrawClone("same")->SetBit(kCanDelete);
1008
1009 d.cd(6);
1010 gPad->SetBorderMode(0);
1011 gPad->SetFrameBorderMode(0);
1012 gPad->SetGridx();
1013 gPad->SetGridy();
1014 gROOT->SetSelectedPad(0);
1015 MParSpline *all = (MParSpline*)splinepde.DrawClone();
1016 //all->SetTitle("Combined acceptance");
1017 all->SetBit(kCanDelete);
1018 if (splinemirror.GetSpline())
1019 all->Multiply(*splinemirror.GetSpline());
1020 if (splinecones2.GetSpline())
1021 all->Multiply(*splinecones2.GetSpline());
1022 }
1023
1024 //-------------------------------------------
1025
1026 // Execute first analysis
1027 if (!evtloop.Eventloop(fMaxEvents))
1028 {
1029 gLog << err << GetDescriptor() << ": Failed." << endl;
1030 return kFALSE;
1031 }
1032
1033 //-------------------------------------------
1034 // FIXME: Display Spline in tab
1035 // FIXME: Display Reflector in tab
1036 // FIXME: Display Routing(?) in tab
1037 // FIXME: Display Camera(s) in tab
1038 //-------------------------------------------
1039
1040 if (!WriteResult(plist, seq, header.GetRunNumber()))
1041 return kFALSE;
1042
1043 *fLog << all << GetDescriptor() << ": Done." << endl << endl << endl;;
1044
1045 return kTRUE;
1046}
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