source: trunk/MagicSoft/Mars/mhcalib/MHCalibrationRelTimeCam.cc@ 5685

Last change on this file since 5685 was 5685, checked in by gaug, 20 years ago
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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): Markus Gaug 02/2004 <mailto:markus@ifae.es>
19!
20! Copyright: MAGIC Software Development, 2000-2004
21!
22!
23\* ======================================================================== */
24/////////////////////////////////////////////////////////////////////////////
25//
26// MHCalibrationRelTimeCam
27//
28// Fills the extracted relative arrival times of MArrivalTimeCam into
29// the MHCalibrationPix-classes MHCalibrationPix for every:
30//
31// - Pixel, stored in the TObjArray's MHCalibrationCam::fHiGainArray
32// or MHCalibrationCam::fHiGainArray, respectively, depending if
33// MArrivalTimePix::IsLoGainUsed() is set.
34//
35// - Average pixel per AREA index (e.g. inner and outer for the MAGIC camera),
36// stored in the TObjArray's MHCalibrationCam::fAverageHiGainAreas and
37// MHCalibrationCam::fAverageHiGainAreas
38//
39// - Average pixel per camera SECTOR (e.g. sectors 1-6 for the MAGIC camera),
40// stored in the TObjArray's MHCalibrationCam::fAverageHiGainSectors
41// and MHCalibrationCam::fAverageHiGainSectors
42//
43// Every relative time is calculated as the difference between the individual
44// pixel arrival time and the one of pixel 1 (hardware number: 2).
45// The relative times are filled into a histogram and an array, in order to perform
46// a Fourier analysis (see MHGausEvents). The signals are moreover averaged on an
47// event-by-event basis and written into the corresponding average pixels.
48//
49// The histograms are fitted to a Gaussian, mean and sigma with its errors
50// and the fit probability are extracted. If none of these values are NaN's and
51// if the probability is bigger than MHGausEvents::fProbLimit (default: 0.5%),
52// the fit is declared valid.
53// Otherwise, the fit is repeated within ranges of the previous mean
54// +- MHCalibrationPix::fPickupLimit (default: 5) sigma (see MHCalibrationPix::RepeatFit())
55// In case this does not make the fit valid, the histogram means and RMS's are
56// taken directly (see MHCalibrationPix::BypassFit()) and the following flags are set:
57// - MBadPixelsPix::SetUncalibrated( MBadPixelsPix::kRelTimeNotFitted ) and
58// - MBadPixelsPix::SetUnsuitable( MBadPixelsPix::kUnreliableRun )
59//
60// Outliers of more than MHCalibrationPix::fPickupLimit (default: 5) sigmas
61// from the mean are counted as Pickup events (stored in MHCalibrationPix::fPickup)
62//
63// The class also fills arrays with the signal vs. event number, creates a fourier
64// spectrum (see MHGausEvents::CreateFourierSpectrum()) and investigates if the
65// projected fourier components follow an exponential distribution.
66// In case that the probability of the exponential fit is less than
67// MHGausEvents::fProbLimit (default: 0.5%), the following flags are set:
68// - MBadPixelsPix::SetUncalibrated( MBadPixelsPix::kRelTimeOscillating ) and
69// - MBadPixelsPix::SetUnsuitable( MBadPixelsPix::kUnreliableRun )
70//
71// This same procedure is performed for the average pixels.
72//
73// The following results are written into MCalibrationRelTimeCam:
74//
75// - MCalibrationPix::SetMean()
76// - MCalibrationPix::SetMeanErr()
77// - MCalibrationPix::SetSigma()
78// - MCalibrationPix::SetSigmaErr()
79// - MCalibrationPix::SetProb()
80// - MCalibrationPix::SetNumPickup()
81//
82// For all averaged areas, the fitted sigma is multiplied with the square root of
83// the number involved pixels in order to be able to compare it to the average of
84// sigmas in the camera.
85//
86/////////////////////////////////////////////////////////////////////////////
87#include "MHCalibrationRelTimeCam.h"
88#include "MHCalibrationPix.h"
89
90#include "MLog.h"
91#include "MLogManip.h"
92
93#include "MParList.h"
94
95#include "MCalibrationIntensityRelTimeCam.h"
96
97#include "MCalibrationRelTimeCam.h"
98#include "MCalibrationRelTimePix.h"
99#include "MCalibrationPix.h"
100
101#include "MArrivalTimeCam.h"
102#include "MArrivalTimePix.h"
103
104#include "MGeomCam.h"
105#include "MGeomPix.h"
106
107#include "MBadPixelsIntensityCam.h"
108#include "MBadPixelsCam.h"
109#include "MBadPixelsPix.h"
110
111#include <TOrdCollection.h>
112#include <TPad.h>
113#include <TVirtualPad.h>
114#include <TCanvas.h>
115#include <TStyle.h>
116#include <TF1.h>
117#include <TLine.h>
118#include <TLatex.h>
119#include <TLegend.h>
120#include <TGraph.h>
121
122ClassImp(MHCalibrationRelTimeCam);
123
124using namespace std;
125
126const Float_t MHCalibrationRelTimeCam::fgNumHiGainSaturationLimit = 0.25;
127const UInt_t MHCalibrationRelTimeCam::fgReferencePixel = 1;
128const Int_t MHCalibrationRelTimeCam::fgNbins = 200;
129const Axis_t MHCalibrationRelTimeCam::fgFirst = -5.;
130const Axis_t MHCalibrationRelTimeCam::fgLast = 5.;
131const Float_t MHCalibrationRelTimeCam::fgProbLimit = 0.;
132const TString MHCalibrationRelTimeCam::gsHistName = "RelTime";
133const TString MHCalibrationRelTimeCam::gsHistTitle = "Rel. Arr. Times";
134const TString MHCalibrationRelTimeCam::gsHistXTitle = "Rel. Arr. Time [FADC slices]";
135const TString MHCalibrationRelTimeCam::gsHistYTitle = "Nr. events";
136// --------------------------------------------------------------------------
137//
138// Default Constructor.
139//
140// Sets:
141// - fReferencePixel to fgReferencePixel
142// - fNbins to fgNbins
143// - fFirst to fgFirst
144// - fLast to fgLast
145//
146// - fHistName to gsHistName
147// - fHistTitle to gsHistTitle
148// - fHistXTitle to gsHistXTitle
149// - fHistYTitle to gsHistYTitle
150//
151MHCalibrationRelTimeCam::MHCalibrationRelTimeCam(const char *name, const char *title)
152{
153
154 fName = name ? name : "MHCalibrationRelTimeCam";
155 fTitle = title ? title : "Histogram class for the relative time calibration of the camera";
156
157 SetNumHiGainSaturationLimit(fgNumHiGainSaturationLimit);
158
159 SetReferencePixel();
160
161 SetNbins(fgNbins);
162 SetFirst(fgFirst);
163 SetLast (fgLast );
164
165 SetProbLimit(fgProbLimit);
166
167 SetHistName (gsHistName .Data());
168 SetHistTitle (gsHistTitle .Data());
169 SetHistXTitle(gsHistXTitle.Data());
170 SetHistYTitle(gsHistYTitle.Data());
171
172}
173
174// --------------------------------------------------------------------------
175//
176// Creates new MHCalibrationRelTimeCam only with the averaged areas:
177// the rest has to be retrieved directly, e.g. via:
178// MHCalibrationRelTimeCam *cam = MParList::FindObject("MHCalibrationRelTimeCam");
179// - cam->GetAverageSector(5).DrawClone();
180// - (*cam)[100].DrawClone()
181//
182TObject *MHCalibrationRelTimeCam::Clone(const char *) const
183{
184
185 MHCalibrationRelTimeCam *cam = new MHCalibrationRelTimeCam();
186
187 //
188 // Copy the data members
189 //
190 cam->fColor = fColor;
191 cam->fRunNumbers = fRunNumbers;
192 cam->fPulserFrequency = fPulserFrequency;
193 cam->fFlags = fFlags;
194 cam->fNbins = fNbins;
195 cam->fFirst = fFirst;
196 cam->fLast = fLast;
197
198 //
199 // Copy the MArrays
200 //
201 cam->fAverageAreaRelSigma = fAverageAreaRelSigma;
202 cam->fAverageAreaRelSigmaVar = fAverageAreaRelSigmaVar;
203 cam->fAverageAreaSat = fAverageAreaSat;
204 cam->fAverageAreaSigma = fAverageAreaSigma;
205 cam->fAverageAreaSigmaVar = fAverageAreaSigmaVar;
206 cam->fAverageAreaNum = fAverageAreaNum;
207 cam->fAverageSectorNum = fAverageSectorNum;
208
209 if (!IsAverageing())
210 return cam;
211
212 const Int_t navhi = fAverageHiGainAreas->GetSize();
213
214 for (int i=0; i<navhi; i++)
215 cam->fAverageHiGainAreas->AddAt(GetAverageHiGainArea(i).Clone(),i);
216
217 if (IsLoGain())
218 {
219
220 const Int_t navlo = fAverageLoGainAreas->GetSize();
221 for (int i=0; i<navlo; i++)
222 cam->fAverageLoGainAreas->AddAt(GetAverageLoGainArea(i).Clone(),i);
223
224 }
225
226 return cam;
227}
228
229// --------------------------------------------------------------------------
230//
231// Gets or creates the pointers to:
232// - MCalibrationRelTimeCam
233//
234// Searches pointer to:
235// - MArrivalTimeCam
236//
237// Calls:
238// - MHCalibrationCam::InitHiGainArrays()
239// - MHCalibrationCam::InitLoGainArrays()
240//
241// Sets:
242// - fSumareahi to nareas
243// - fSumarealo to nareas
244// - fSumsectorhi to nareas
245// - fSumsectorlo to nareas
246// - fNumareahi to nareas
247// - fNumarealo to nareas
248// - fNumsectorhi to nareas
249// - fNumsectorlo to nareas
250//
251Bool_t MHCalibrationRelTimeCam::ReInitHists(MParList *pList)
252{
253
254 fIntensCam = (MCalibrationIntensityCam*)pList->FindObject(AddSerialNumber("MCalibrationIntensityRelTimeCam"));
255 if (fIntensCam)
256 *fLog << inf << "Found MCalibrationIntensityRelTimeCam ... " << endl;
257 else
258 {
259 fCam = (MCalibrationCam*)pList->FindObject(AddSerialNumber("MCalibrationRelTimeCam"));
260 if (!fCam)
261 {
262 fCam = (MCalibrationCam*)pList->FindCreateObj(AddSerialNumber("MCalibrationRelTimeCam"));
263 if (!fCam)
264 {
265 *fLog << err << "Cannot find nor create MCalibrationRelTimeCam ... abort." << endl;
266 return kFALSE;
267 }
268 fCam->Init(*fGeom);
269 }
270 }
271
272 MArrivalTimeCam *signal = (MArrivalTimeCam*)pList->FindObject("MArrivalTimeCam");
273 if (!signal)
274 {
275 *fLog << err << "MArrivalTimeCam not found... abort." << endl;
276 return kFALSE;
277 }
278
279 const Int_t npixels = fGeom->GetNumPixels();
280 const Int_t nsectors = fGeom->GetNumSectors();
281 const Int_t nareas = fGeom->GetNumAreas();
282
283 InitHiGainArrays(npixels,nareas,nsectors);
284 InitLoGainArrays(npixels,nareas,nsectors);
285
286 fSumareahi .Set(nareas);
287 fSumarealo .Set(nareas);
288 fSumsectorhi.Set(nsectors);
289 fSumsectorlo.Set(nsectors);
290 fNumareahi .Set(nareas);
291 fNumarealo .Set(nareas);
292 fNumsectorhi.Set(nsectors);
293 fNumsectorlo.Set(nsectors);
294
295 return kTRUE;
296}
297
298
299// -------------------------------------------------------------------------------
300//
301// Retrieves pointer to MArrivalTimeCam:
302//
303// Retrieves from MGeomCam:
304// - number of pixels
305// - number of pixel areas
306// - number of sectors
307//
308// Fills HiGain or LoGain histograms (MHGausEvents::FillHistAndArray()), respectively
309// depending on MArrivalTimePix::IsLoGainUsed(), with:
310// - MArrivalTimePix::GetArrivalTime(pixid) - MArrivalTimePix::GetArrivalTime(1);
311// (i.e. the time difference between pixel i and pixel 1 (hardware number: 2) )
312//
313Bool_t MHCalibrationRelTimeCam::FillHists(const MParContainer *par, const Stat_t w)
314{
315
316 MArrivalTimeCam *arrtime = (MArrivalTimeCam*)par;
317 if (!arrtime)
318 {
319 gLog << err << "No argument in MArrivalTime::Fill... abort." << endl;
320 return kFALSE;
321 }
322
323 const Int_t npixels = fGeom->GetNumPixels();
324 const Int_t nareas = fGeom->GetNumAreas();
325 const Int_t nsectors = fGeom->GetNumSectors();
326
327 fSumareahi .Reset();
328 fSumarealo .Reset();
329 fSumsectorhi.Reset();
330 fSumsectorlo.Reset();
331 fNumareahi .Reset();
332 fNumarealo .Reset();
333 fNumsectorhi.Reset();
334 fNumsectorlo.Reset();
335
336 const MArrivalTimePix &refpix = (*arrtime)[fReferencePixel];
337 const Float_t reftime = refpix.IsLoGainUsed()
338 ? refpix.GetArrivalTimeLoGain() : refpix.GetArrivalTimeHiGain();
339
340 for (Int_t i=0; i<npixels; i++)
341 {
342
343 MHCalibrationPix &histhi = (*this)[i];
344 MHCalibrationPix &histlo = (*this)(i);
345
346 if (histhi.IsExcluded())
347 continue;
348
349 const MArrivalTimePix &pix = (*arrtime)[i];
350 const Int_t aidx = (*fGeom)[i].GetAidx();
351 const Int_t sector = (*fGeom)[i].GetSector();
352
353 if (pix.IsLoGainUsed() && IsLoGain())
354 {
355 const Float_t reltime = pix.GetArrivalTimeLoGain() - reftime;
356 histhi.AddSaturated(1);
357 histlo.FillHistAndArray(reltime);
358 fSumarealo [aidx] += reltime;
359 fNumarealo [aidx] ++;
360 fSumsectorlo[sector] += reltime;
361 fNumsectorlo[sector] ++;
362 }
363 else
364 {
365 const Float_t reltime = pix.GetArrivalTimeHiGain() - reftime;
366
367 histhi.FillHistAndArray(reltime) ;
368 fSumareahi [aidx] += reltime;
369 fNumareahi [aidx] ++;
370 fSumsectorhi[sector] += reltime;
371 fNumsectorhi[sector] ++;
372 }
373 }
374
375 for (Int_t j=0; j<nareas; j++)
376 {
377 MHCalibrationPix &histhi = GetAverageHiGainArea(j);
378 histhi.FillHistAndArray(fNumareahi[j] == 0 ? 0. : fSumareahi[j]/fNumareahi[j]);
379
380 if (IsLoGain())
381 {
382 MHCalibrationPix &histlo = GetAverageLoGainArea(j);
383 histlo.FillHistAndArray(fNumarealo[j] == 0 ? 0. : fSumarealo[j]/fNumarealo[j]);
384 }
385 }
386
387 for (Int_t j=0; j<nsectors; j++)
388 {
389 MHCalibrationPix &histhi = GetAverageHiGainSector(j);
390 histhi.FillHistAndArray(fNumsectorhi[j] == 0 ? 0. : fSumsectorhi[j]/fNumsectorhi[j]);
391
392 if (IsLoGain())
393 {
394 MHCalibrationPix &histlo = GetAverageLoGainSector(j);
395 histlo.FillHistAndArray(fNumsectorlo[j] == 0 ? 0. : fSumsectorlo[j]/fNumsectorlo[j]);
396 }
397 }
398
399 return kTRUE;
400}
401
402// --------------------------------------------------------------------------
403//
404// Calls:
405// - MHCalibrationCam::FitHiGainArrays() with flags:
406// MBadPixelsPix::kRelTimeNotFitted and MBadPixelsPix::kRelTimeOscillating
407// - MHCalibrationCam::FitLoGainArrays() with flags:
408// MBadPixelsPix::kRelTimeNotFitted and MBadPixelsPix::kRelTimeOscillating
409//
410Bool_t MHCalibrationRelTimeCam::FinalizeHists()
411{
412
413 *fLog << endl;
414
415 MCalibrationCam *relcam = fIntensCam ? fIntensCam->GetCam() : fCam;
416 MBadPixelsCam *badcam = fIntensBad ? fIntensBad->GetCam() : fBadPixels;
417
418 const Int_t nareas = fAverageHiGainAreas->GetSize();
419 const Int_t nsectors = fAverageHiGainSectors->GetSize();
420
421 TArrayI satarea(nareas);
422 TArrayI satsect(nsectors);
423 fNumareahi .Reset();
424 fNumsectorhi.Reset();
425
426 for (Int_t i=0; i<fHiGainArray->GetSize(); i++)
427 {
428
429 MHCalibrationPix &histhi = (*this)[i];
430
431 if (histhi.IsExcluded())
432 continue;
433
434 const Int_t aidx = (*fGeom)[i].GetAidx();
435 const Int_t sector = (*fGeom)[i].GetSector();
436
437 MCalibrationRelTimePix &pix = (MCalibrationRelTimePix&)(*relcam)[i] ;
438
439 fNumareahi[aidx]++;
440 fNumsectorhi[sector]++;
441 //
442 // Check saturation
443 //
444 if (histhi.GetSaturated() > fNumHiGainSaturationLimit*histhi.GetHGausHist()->GetEntries())
445 {
446 pix.SetHiGainSaturation();
447 histhi.SetExcluded();
448 satarea[aidx]++;
449 satsect[sector]++;
450 }
451 else
452 if (IsLoGain())
453 (*this)(i).SetExcluded();
454
455 //
456 // Check histogram overflow
457 //
458 CheckOverflow(histhi);
459 if (IsLoGain())
460 CheckOverflow((*this)(i));
461
462 }
463
464 for (Int_t j=0; j<nareas; j++)
465 {
466
467 MHCalibrationPix &histhi = GetAverageHiGainArea(j);
468 MCalibrationRelTimePix &pix = (MCalibrationRelTimePix&)relcam->GetAverageArea(j);
469
470 if (satarea[j] > 0.5*fNumareahi[j])
471 {
472 pix.SetHiGainSaturation();
473 histhi.SetExcluded();
474 }
475 else
476 if (IsLoGain())
477 GetAverageLoGainArea(j).SetExcluded();
478
479 //
480 // Check histogram overflow
481 //
482 CheckOverflow(histhi);
483 if (IsLoGain())
484 CheckOverflow(GetAverageLoGainArea(j));
485 }
486
487 for (Int_t j=0; j<fAverageHiGainSectors->GetSize(); j++)
488 {
489
490 MHCalibrationPix &histhi = GetAverageHiGainSector(j);
491 MCalibrationRelTimePix &pix = (MCalibrationRelTimePix&)relcam->GetAverageSector(j) ;
492
493 if (satsect[j] > 0.5*fNumsectorhi[j])
494 {
495 pix.SetHiGainSaturation();
496 histhi.SetExcluded();
497 }
498 else
499 if (IsLoGain())
500 GetAverageLoGainSector(j).SetExcluded();
501
502 //
503 // Check histogram overflow
504 //
505 CheckOverflow(histhi);
506 if (IsLoGain())
507 CheckOverflow(GetAverageLoGainSector(j));
508 }
509
510 FitHiGainArrays(*relcam,*badcam,
511 MBadPixelsPix::kRelTimeNotFitted,
512 MBadPixelsPix::kRelTimeOscillating);
513
514 if (IsLoGain())
515 FitLoGainArrays(*relcam,*badcam,
516 MBadPixelsPix::kRelTimeNotFitted,
517 MBadPixelsPix::kRelTimeOscillating);
518
519 return kTRUE;
520}
521
522// --------------------------------------------------------------------------
523//
524// Sets all pixels to MBadPixelsPix::kUnreliableRun, if following flags are set:
525// - MBadPixelsPix::kRelTimeNotFitted
526// - MBadPixelsPix::kRelTimeOscillating
527//
528void MHCalibrationRelTimeCam::FinalizeBadPixels()
529{
530
531 MBadPixelsCam *badcam = fIntensBad ? fIntensBad->GetCam() : fBadPixels;
532
533 for (Int_t i=0; i<badcam->GetSize(); i++)
534 {
535 MBadPixelsPix &bad = (*badcam)[i];
536
537 if (bad.IsUncalibrated( MBadPixelsPix::kRelTimeNotFitted ))
538 bad.SetUnsuitable( MBadPixelsPix::kUnreliableRun );
539
540 if (bad.IsUncalibrated( MBadPixelsPix::kRelTimeOscillating))
541 bad.SetUnsuitable( MBadPixelsPix::kUnreliableRun );
542
543 }
544}
545
546// --------------------------------------------------------------------------
547//
548// The types are as follows:
549//
550// Fitted values:
551// ==============
552//
553// 0: Fitted Mean Relative Arrival Time in FADC slices (MHGausEvents::GetMean()
554// 1: Error Mean Relative Arrival Time in FADC slices (MHGausEvents::GetMeanErr()
555// 2: Sigma fitted Relative Arrival Time in FADC slices (MHGausEvents::GetSigma()
556// 3: Error Sigma Relative Arrival Time in FADC slices (MHGausEvents::GetSigmaErr()
557//
558// Useful variables derived from the fit results:
559// =============================================
560//
561// 4: Returned probability of Gauss fit (calls: MHGausEvents::GetProb())
562//
563// Localized defects:
564// ==================
565//
566// 5: Gaus fit not OK (calls: MHGausEvents::IsGausFitOK())
567// 6: Fourier spectrum not OK (calls: MHGausEvents::IsFourierSpectrumOK())
568//
569Bool_t MHCalibrationRelTimeCam::GetPixelContent(Double_t &val, Int_t idx, const MGeomCam &cam, Int_t type) const
570{
571
572 if (fHiGainArray->GetSize() <= idx)
573 return kFALSE;
574
575 const MHCalibrationPix &pix = (*this)[idx];
576
577 switch (type)
578 {
579 case 0:
580 val = pix.GetMean();
581 break;
582 case 1:
583 val = pix.GetMeanErr();
584 break;
585 case 2:
586 val = pix.GetSigma();
587 break;
588 case 3:
589 val = pix.GetSigmaErr();
590 break;
591 case 4:
592 val = pix.GetProb();
593 break;
594 case 5:
595 if (!pix.IsGausFitOK())
596 val = 1.;
597 break;
598 case 6:
599 if (!pix.IsFourierSpectrumOK())
600 val = 1.;
601 break;
602 default:
603 return kFALSE;
604 }
605 return kTRUE;
606}
607
608// --------------------------------------------------------------------------
609//
610// Calls MHCalibrationPix::DrawClone() for pixel idx
611//
612void MHCalibrationRelTimeCam::DrawPixelContent(Int_t idx) const
613{
614 (*this)[idx].DrawClone();
615}
616
617// -----------------------------------------------------------------------------
618//
619// Default draw:
620//
621// Displays the averaged areas, both High Gain and Low Gain
622//
623// Calls the Draw of the fAverageHiGainAreas and fAverageLoGainAreas objects with options
624//
625void MHCalibrationRelTimeCam::Draw(const Option_t *opt)
626{
627
628 const Int_t nareas = fAverageHiGainAreas->GetSize();
629 if (nareas == 0)
630 return;
631
632 TString option(opt);
633 option.ToLower();
634
635 if (!option.Contains("datacheck"))
636 {
637 MHCalibrationCam::Draw(opt);
638 return;
639 }
640
641 //
642 // From here on , the datacheck - Draw
643 //
644 TVirtualPad *pad = gPad ? gPad : MH::MakeDefCanvas(this);
645 pad->SetBorderMode(0);
646 pad->Divide(1,nareas);
647
648 //
649 // Loop over inner and outer pixels
650 //
651 for (Int_t i=0; i<nareas;i++)
652 {
653
654 pad->cd(i+1);
655
656 MHCalibrationPix &hipix = GetAverageHiGainArea(i);
657 //
658 // Ask for Hi-Gain saturation
659 //
660 if (hipix.IsExcluded() && IsLoGain())
661 {
662 MHCalibrationPix &lopix = GetAverageLoGainArea(i);
663 DrawDataCheckPixel(lopix,0.);
664 }
665 else
666 DrawDataCheckPixel(hipix,0.);
667 }
668}
669
670void MHCalibrationRelTimeCam::CheckOverflow( MHCalibrationPix &pix )
671{
672
673 if (pix.IsExcluded())
674 return;
675
676 TH1F *hist = pix.GetHGausHist();
677
678 Stat_t overflow = hist->GetBinContent(hist->GetNbinsX()+1);
679 if (overflow > 0.0005*hist->GetEntries())
680 {
681 *fLog << warn << "HiGain Hist-overflow occurred " << overflow
682 << " times in " << pix.GetName() << " (w/o saturation!) " << endl;
683 }
684
685 overflow = hist->GetBinContent(0);
686 if (overflow > 0.0005*hist->GetEntries())
687 {
688 *fLog << warn << "HiGain Hist-underflow occurred " << overflow
689 << " times in " << pix.GetName() << " (w/o saturation!) " << endl;
690 }
691}
692
693
694// -----------------------------------------------------------------------------
695//
696// Draw the average pixel for the datacheck:
697//
698// Displays the averaged areas, both High Gain and Low Gain
699//
700// Calls the Draw of the fAverageHiGainAreas and fAverageLoGainAreas objects with options
701//
702void MHCalibrationRelTimeCam::DrawDataCheckPixel(MHCalibrationPix &pix, const Float_t refline)
703{
704
705 TVirtualPad *newpad = gPad;
706 newpad->Divide(1,2);
707 newpad->cd(1);
708
709 gPad->SetTicks();
710 if (!pix.IsEmpty() && !pix.IsOnlyOverflow() && !pix.IsOnlyUnderflow())
711 gPad->SetLogy();
712
713 TH1F *hist = pix.GetHGausHist();
714
715 TH1F *null = new TH1F("Null",hist->GetTitle(),100,pix.GetFirst() < -3.0 ? -3.0 : pix.GetFirst(),
716 pix.GetLast() > 3.0 ? 3.0 : pix.GetLast());
717
718 null->SetMaximum(1.1*hist->GetMaximum());
719 null->SetDirectory(NULL);
720 null->SetBit(kCanDelete);
721 null->SetStats(kFALSE);
722 //
723 // set the labels bigger
724 //
725 TAxis *xaxe = null->GetXaxis();
726 TAxis *yaxe = null->GetYaxis();
727 xaxe->CenterTitle();
728 yaxe->CenterTitle();
729 xaxe->SetTitleSize(0.07);
730 yaxe->SetTitleSize(0.07);
731 xaxe->SetTitleOffset(0.7);
732 yaxe->SetTitleOffset(0.55);
733 xaxe->SetLabelSize(0.06);
734 yaxe->SetLabelSize(0.06);
735
736 xaxe->SetTitle(hist->GetXaxis()->GetTitle());
737 yaxe->SetTitle(hist->GetYaxis()->GetTitle());
738
739 null->Draw();
740 hist->Draw("same");
741
742 gStyle->SetOptFit();
743
744 TF1 *fit = pix.GetFGausFit();
745
746 if (fit)
747 {
748 switch ( fColor )
749 {
750 case MCalibrationCam::kGREEN:
751 fit->SetLineColor(kGreen);
752 break;
753 case MCalibrationCam::kBLUE:
754 fit->SetLineColor(kBlue);
755 break;
756 case MCalibrationCam::kUV:
757 fit->SetLineColor(106);
758 break;
759 case MCalibrationCam::kCT1:
760 fit->SetLineColor(006);
761 break;
762 default:
763 fit->SetLineColor(kRed);
764 }
765 fit->Draw("same");
766 }
767
768 // DisplayRefLines(null,refline);
769
770 gPad->Modified();
771 gPad->Update();
772
773 newpad->cd(2);
774 gPad->SetTicks();
775
776 TH1F *null2 = new TH1F("Null2",hist->GetTitle(),100,0.,pix.GetEvents()->GetSize()/pix.GetEventFrequency());
777
778 null2->SetMinimum(pix.GetMean()-10.*pix.GetSigma());
779 null2->SetMaximum(pix.GetMean()+10.*pix.GetSigma());
780 null2->SetDirectory(NULL);
781 null2->SetBit(kCanDelete);
782 null2->SetStats(kFALSE);
783 //
784 // set the labels bigger
785 //
786 TAxis *xaxe2 = null2->GetXaxis();
787 TAxis *yaxe2 = null2->GetYaxis();
788 xaxe2->CenterTitle();
789 yaxe2->CenterTitle();
790 xaxe2->SetTitleSize(0.07);
791 yaxe2->SetTitleSize(0.07);
792 xaxe2->SetTitleOffset(0.7);
793 yaxe2->SetTitleOffset(0.55);
794 xaxe2->SetLabelSize(0.06);
795 yaxe2->SetLabelSize(0.06);
796
797 pix.CreateGraphEvents();
798 TGraph *gr = pix.GetGraphEvents();
799
800 xaxe2->SetTitle(gr->GetXaxis()->GetTitle());
801 yaxe2->SetTitle(gr->GetYaxis()->GetTitle());
802
803 null2->Draw();
804
805 pix.DrawEvents("same");
806
807 return;
808}
809
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