source: trunk/MagicSoft/Mars/macros/calibration.C@ 3918

Last change on this file since 3918 was 3913, checked in by gaug, 21 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, 11/2003 <mailto:markus@ifae.es>
19!
20! Copyright: MAGIC Software Development, 2000-2004
21!
22!
23\* ======================================================================== */
24/////////////////////////////////////////////////////////////////////////////
25//
26// calibration.C
27//
28// Needs as arguments the run number of a calibration file ("*_C_*.root") and
29// the run number of the corresponding pedestal file ("*_P_*.root").
30//
31// The TString inpath has to be set correctly.
32//
33// The macro searches for the pulser colour which corresponds to the calibration
34// run number. If the run number is smaller than 20000, pulser colour "CT1"
35// is assumed, otherwise, it searches for the strings "green", "blue", "uv" or
36// "ct1" in the filenames. If no colour or multiple colours are found, the
37// execution is aborted.
38//
39// The container MBadPixelsCam is created and followed during the execution of the
40// rest of the macro.
41//
42// A first loop over the pedestal file is performed using the class MJPedestal
43//
44// The container MCalibrationQECam is created and followed during the execution of the
45// rest of the macro.
46//
47// A loop over the calibration files is performed using the class MJCalibration.
48// The results are displayed using the MJCalibration::SetNormalDisplay() facility,
49// but other displays can easily be uncommented.
50// The call to MJCalibration skips the relative time calibration, which can be
51// uncommented as well.
52//
53// Last, a third loop is performed over the calibration file again in order to
54// "calibrate" it and test the resulting outcome.
55//
56/////////////////////////////////////////////////////////////////////////////
57static const TString inpath = "/mnt/Data/rootdata/Miscellaneous/2004_03_03/";
58static const Int_t pedrun = 20123;
59static const Int_t calrun1 = 20126;
60static const Int_t calrun2 = 0;
61
62void calibration(const Int_t prun=pedrun, const Int_t crun1=calrun1, const Int_t crun2=calrun2)
63{
64
65 MExtractFixedWindowPeakSearch extractor;
66 // extractor.SetRange(0,14,0,14);
67
68 // MExtractSlidingWindow extractor;
69 // MExtractFixedWindow extractor;
70
71 MExtractTimeHighestIntegral timeext;
72
73 // MExtractTimeSpline timeext;
74 // timeext.SetRange(0,14,6,14);
75
76 MRunIter pruns;
77 MRunIter cruns;
78
79 pruns.AddRun(prun,inpath);
80
81 if (crun2==0)
82 cruns.AddRun(crun1,inpath);
83 else
84 cruns.AddRuns(crun1,crun2,inpath);
85
86 gStyle->SetOptStat(1);
87 gStyle->SetOptFit();
88
89 MStatusDisplay *display = new MStatusDisplay;
90 display->SetUpdateTime(3000);
91 display->Resize(850,700);
92
93 /************************************/
94 /* FIRST LOOP: PEDESTAL COMPUTATION */
95 /************************************/
96
97 MCalibrationQECam qecam;
98 MBadPixelsCam badcam;
99 MGeomCamMagic geomcam;
100 MGeomApply geomapl;
101 //
102 // If you want to exclude pixels from the beginning, read
103 // an ascii-file with the corr. pixel numbers (see MBadPixelsCam)
104 //
105 // badcam.AsciiRead("badpixels.dat");
106
107 MJPedestal pedloop;
108 pedloop.SetExtractor(&extractor);
109 pedloop.SetInput(&pruns);
110 pedloop.SetDisplay(display);
111 pedloop.SetBadPixels(badcam);
112
113 if (!pedloop.Process())
114 return;
115
116 /****************************************/
117 /* SECOND LOOP: CALIBRATION COMPUTATION */
118 /****************************************/
119
120 MJCalibration calloop;
121
122 //
123 // If you want to run the data-check on RAW DATA!!!, choose:
124 // calloop.SetDataCheck();
125 //
126 // If you want to see the data-check plots only, choose:
127 // calloop.SetDataCheckDisplay();
128 //
129 // For everything, you have ever dreamed of, choose:
130 // calloop.SetFullDisplay();
131
132 //
133 // If you want to calibrate the times as well, choose:
134 //
135 calloop.SetRelTimeCalibration();
136 calloop.SetExtractor(&extractor);
137 calloop.SetTimeExtractor(&timeext);
138 calloop.SetInput(&cruns);
139 calloop.SetDisplay(display);
140 calloop.SetQECam(qecam);
141 calloop.SetBadPixels(pedloop.GetBadPixels());
142 if (!calloop.Process(pedloop.GetPedestalCam()))
143 return;
144
145 /*
146 MCalibrationChargeCam &chargecam = calloop.GetCalibrationCam();
147 MLog juanlog;
148 juanlog.SetOutputFile("test.txt",1);
149 chargecam.SetLogStream(&juanlog);
150 chargecam.Print();
151 chargecam.SetLogStream(&gLog);
152 */
153
154 /********************************************************************/
155 /* THIRD LOOP: APPLY CALIBRATION TO THE CALIBRATION FILES FOR TESTS */
156 /********************************************************************/
157
158 MJExtractCalibTest testloop;
159
160 testloop.SetExtractor(&extractor);
161 testloop.SetInput(&cruns);
162 testloop.SetDisplay(display);
163 testloop.SetBadPixels(calloop.GetBadPixels());
164 if (!testloop.ProcessD(pedloop.GetPedestalCam(),calloop.GetCalibrationCam(),calloop.GetQECam()))
165 return;
166
167}
168
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