source: trunk/MagicSoft/Mars/mimage/MHillas.cc@ 6858

Last change on this file since 6858 was 6855, checked in by tbretz, 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): Thomas Bretz 12/2000 <mailto:tbretz@uni-sw.gwdg.de>
19! Author(s): Harald Kornmayer 1/2001
20! Author(s): Rudolf Bock 10/2001 <mailto:Rudolf.Bock@cern.ch>
21! Author(s): Wolfgang Wittek 6/2002 <mailto:wittek@mppmu.mpg.de>
22!
23! Copyright: MAGIC Software Development, 2000-2003
24!
25!
26\* ======================================================================== */
27
28/////////////////////////////////////////////////////////////////////////////
29//
30// MHillas
31//
32// Storage Container for image parameters
33//
34// basic image parameters
35//
36// Version 1:
37// ----------
38// fLength [mm] major axis of ellipse
39// fWidth [mm] minor axis
40// fDelta [rad] angle of major axis with x-axis
41// by definition the major axis is pointing into
42// the hemisphere x>0, thus -pi/2 < delta < pi/2
43// fSize [#CerPhot] total sum of pixels
44// fMeanX [mm] x of center of ellipse
45// fMeanY [mm] y of center of ellipse
46//
47// Version 2:
48// ----------
49// fNumCorePixels number of pixels called core
50// fNumUsedPixels number of pixels which survived the cleaning
51//
52// Version 3:
53// ----------
54// fNumCorePixels moved to MNewImagePar
55// fNumUsedPixels moved to MNewImagePar
56// fCosDelta added
57// fSinDelte added
58//
59/////////////////////////////////////////////////////////////////////////////
60#include "MHillas.h"
61
62#include <TArrayF.h>
63
64#include <TLine.h>
65#include <TEllipse.h>
66#include <TVector2.h>
67
68#include "MGeomPix.h"
69#include "MGeomCam.h"
70
71#include "MSignalPix.h"
72#include "MSignalCam.h"
73
74#include "MLog.h"
75#include "MLogManip.h"
76
77ClassImp(MHillas);
78
79using namespace std;
80
81// --------------------------------------------------------------------------
82//
83// Default constructor.
84//
85MHillas::MHillas(const char *name, const char *title)
86{
87 fName = name ? name : "MHillas";
88 fTitle = title ? title : "Storage container for image parameters of one event";
89
90 Reset();
91}
92
93// --------------------------------------------------------------------------
94//
95// Initializes the values with defaults. For the default values see the
96// source code.
97//
98void MHillas::Reset()
99{
100 fLength = -1;
101 fWidth = -1;
102 fDelta = 0;
103
104 fSize = -1;
105 fMeanX = 0;
106 fMeanY = 0;
107}
108
109// --------------------------------------------------------------------------
110//
111// return the mean position as TVector2(meanx, meany)
112//
113TVector2 MHillas::GetMean() const
114{
115 return TVector2(fMeanX, fMeanY);
116}
117
118// --------------------------------------------------------------------------
119//
120// Print the hillas Parameters to *fLog
121//
122void MHillas::Print(Option_t *) const
123{
124 Double_t atg = atan2(fMeanY, fMeanX)*kRad2Deg;
125
126 if (atg<0)
127 atg += 180;
128
129 *fLog << all;
130 *fLog << "Basic Image Parameters (" << GetName() << ")" << endl;
131 *fLog << " - Length [mm] = " << fLength << endl;
132 *fLog << " - Width [mm] = " << fWidth << endl;
133 *fLog << " - Delta [deg] = " << fDelta*kRad2Deg << endl;
134 *fLog << " - Size [1] = " << fSize << " #CherPhot" << endl;
135 *fLog << " - Meanx [mm] = " << fMeanX << endl;
136 *fLog << " - Meany [mm] = " << fMeanY << endl;
137 *fLog << " - atg(y/x) [deg] = " << atg << endl;
138}
139
140// --------------------------------------------------------------------------
141//
142// Print the hillas Parameters to *fLog, depending on the geometry in
143// units of deg
144//
145void MHillas::Print(const MGeomCam &geom) const
146{
147 Double_t atg = atan2(fMeanY, fMeanX)*kRad2Deg;
148
149 if (atg<0)
150 atg += 180;
151
152 *fLog << all;
153 *fLog << "Basic Image Parameters (" << GetName() << ")" << endl;
154 *fLog << " - Length [deg] = " << fLength*geom.GetConvMm2Deg() << endl;
155 *fLog << " - Width [deg] = " << fWidth *geom.GetConvMm2Deg() << endl;
156 *fLog << " - Delta [deg] = " << fDelta*kRad2Deg << endl;
157 *fLog << " - Size [1] = " << fSize << " #CherPhot" << endl;
158 *fLog << " - Meanx [deg] = " << fMeanX *geom.GetConvMm2Deg() << endl;
159 *fLog << " - Meany [deg] = " << fMeanY *geom.GetConvMm2Deg() << endl;
160 *fLog << " - atg(y/x) [deg] = " << atg << endl;
161}
162
163// --------------------------------------------------------------------------
164//
165// Paint the ellipse corresponding to the parameters
166//
167void MHillas::Paint(Option_t *opt)
168{
169 static const Float_t sOffsetW=40.0;
170 static const Float_t sOffsetL=266.0;
171
172 if (fLength<0 || fWidth<0)
173 return;
174
175 const Float_t l = fLength+sOffsetL;
176 const Float_t w = fWidth +sOffsetW;
177
178 TLine line;
179 line.SetLineWidth(1);
180 line.SetLineColor(kRed);
181
182 // Length line
183 line.PaintLine(-l*fCosDelta+fMeanX, -l*fSinDelta+fMeanY,
184 +l*fCosDelta+fMeanX, +l*fSinDelta+fMeanY);
185
186
187 // Width line
188 line.PaintLine(+w*fSinDelta+fMeanX, -w*fCosDelta+fMeanY,
189 -w*fSinDelta+fMeanX, +w*fCosDelta+fMeanY);
190
191 TEllipse e(fMeanX, fMeanY, fLength, fWidth, 0, 360, fDelta*kRad2Deg+180);
192 e.SetLineWidth(2);
193 e.SetLineColor(kGreen);
194 e.Paint();
195}
196
197// --------------------------------------------------------------------------
198//
199// Calculate the image parameters from a Cherenkov photon event
200// assuming Cher.photons/pixel and pixel coordinates are given
201// In case you don't call Calc from within an eventloop make sure, that
202// you call the Reset member function before.
203// Returns:
204// 0 no error
205// 1 number of pixels in event == 0 (special MC events)
206// 2 size==0
207// 3 number of used pixel < 3
208// 4 CorrXY == 0
209//
210Int_t MHillas::Calc(const MGeomCam &geom, const MSignalCam &evt, Int_t island)
211{
212 const UInt_t numpix = evt.GetNumPixels();
213
214 //
215 // sanity check 1 (special MC events)
216 //
217 if (numpix==0)
218 return 1;
219
220 //
221 // calculate mean value of pixel coordinates and fSize
222 // -----------------------------------------------------
223 //
224 // Because this are only simple sums of roughly 600 values
225 // with an accuracy less than three digits there should not
226 // be any need to use double precision (Double_t) for the
227 // calculation of fMeanX, fMeanY and fSize.
228 //
229 fMeanX = 0;
230 fMeanY = 0;
231 fSize = 0;
232
233 UInt_t numused = 0;
234/*
235 MSignalPix *pix = 0;
236
237 TIter Next(evt);
238 while ((pix=(MSignalPix*)Next()))*/
239 for (UInt_t i=0; i<numpix; i++)
240 {
241 MSignalPix &pix = evt[i];
242 if (!pix.IsPixelUsed())
243 continue;
244
245 if (island>=0 && pix.GetIdxIsland()!=island)
246 continue;
247
248 const MGeomPix &gpix = geom[i/*pix->GetPixId()*/];
249
250 const Float_t nphot = pix.GetNumPhotons();
251
252 fSize += nphot; // [counter]
253 fMeanX += nphot * gpix.GetX(); // [mm]
254 fMeanY += nphot * gpix.GetY(); // [mm]
255
256 numused++;
257 }
258
259 //
260 // sanity check 2
261 //
262 if (fSize==0)
263 return 2;
264
265 fMeanX /= fSize; // [mm]
266 fMeanY /= fSize; // [mm]
267
268 //
269 // sanity check 3
270 //
271 if (numused<3)
272 return 3;
273
274 //
275 // calculate 2nd moments
276 // ---------------------
277 //
278 // To make sure that the more complicated sum is evaluated as
279 // accurate as possible (because it is needed for more
280 // complicated calculations (see below) we calculate it using
281 // double prcision.
282 //
283 Double_t corrxx=0; // [m^2]
284 Double_t corrxy=0; // [m^2]
285 Double_t corryy=0; // [m^2]
286
287 //Next.Reset();
288 //while ((pix=(MSignalPix*)Next()))
289 //{
290 for (UInt_t i=0; i<numpix; i++)
291 {
292 MSignalPix &pix = evt[i];
293 if (!pix.IsPixelUsed())
294 continue;
295
296 if (island>=0 && pix.GetIdxIsland()!=island)
297 continue;
298
299 const MGeomPix &gpix = geom[i/*pix->GetPixId()*/];
300
301 const Float_t dx = gpix.GetX() - fMeanX; // [mm]
302 const Float_t dy = gpix.GetY() - fMeanY; // [mm]
303
304 const Float_t nphot = pix.GetNumPhotons(); // [#phot]
305
306 corrxx += nphot * dx*dx; // [mm^2]
307 corrxy += nphot * dx*dy; // [mm^2]
308 corryy += nphot * dy*dy; // [mm^2]
309 }
310
311 //
312 // If corrxy=0 (which should happen not very often, because fSize>0)
313 // we cannot calculate Length and Width.
314 // In reallity it is almost impossible to have a distribution of
315 // cerenkov photons in the used pixels which is exactly symmetric
316 // along one of the axis.
317 // It seems to be less than 0.1% of all events.
318 //
319 if (corrxy==0)
320 return 4;
321
322 //
323 // calculate the basic Hillas parameters: orientation and size of axes
324 // -------------------------------------------------------------------
325 //
326 // fDelta is the angle between the major axis of the ellipse and
327 // the x axis. It is independent of the position of the ellipse
328 // in the camera it has values between -pi/2 and pi/2 degrees
329 //
330 // Rem: I tested replacing sqrt() by hypot() but they exactly
331 // consume the same amount of time
332 //
333 const Double_t d0 = corryy - corrxx;
334 const Double_t d1 = corrxy*2;
335 const Double_t d2 = d0 + TMath::Sqrt(d0*d0 + d1*d1);
336 const Double_t tand = d2 / d1;
337 const Double_t tand2 = tand*tand;
338
339 fDelta = TMath::ATan(tand);
340
341 const Double_t s2 = tand2+1;
342 const Double_t s = TMath::Sqrt(s2);
343
344 fCosDelta = 1.0/s; // need these in derived classes
345 fSinDelta = tand/s; // like MHillasExt
346
347 const Double_t axis1 = (tand2*corryy + d2 + corrxx)/s2/fSize;
348 const Double_t axis2 = (tand2*corrxx - d2 + corryy)/s2/fSize;
349
350 //
351 // fLength^2 is the second moment along the major axis of the ellipse
352 // fWidth^2 is the second moment along the minor axis of the ellipse
353 //
354 // From the algorithm we get: fWidth <= fLength is always true
355 //
356 // very small numbers can get negative by rounding
357 //
358 fLength = axis1<0 ? 0 : TMath::Sqrt(axis1); // [mm]
359 fWidth = axis2<0 ? 0 : TMath::Sqrt(axis2); // [mm]
360
361 SetReadyToSave();
362
363 return 0;
364}
365
366// --------------------------------------------------------------------------
367//
368// This function is ment for special usage, please never try to set
369// values via this function
370//
371void MHillas::Set(const TArrayF &arr)
372{
373 if (arr.GetSize() != 6)
374 return;
375
376 fLength = arr.At(0); // [mm] major axis of ellipse
377 fWidth = arr.At(1); // [mm] minor axis of ellipse
378 fDelta = arr.At(2); // [rad] angle of major axis with x-axis
379 fSize = arr.At(3); // [#CerPhot] sum of content of all pixels (number of Cherenkov photons)
380 fMeanX = arr.At(4); // [mm] x-coordinate of center of ellipse
381 fMeanY = arr.At(5); // [mm] y-coordinate of center of ellipse
382}
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