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, 5/2006 <mailto:tbretz@astro.uni-wuerzburg.de>
|
---|
19 | !
|
---|
20 | ! Copyright: MAGIC Software Development, 2000-2006
|
---|
21 | !
|
---|
22 | !
|
---|
23 | \* ======================================================================== */
|
---|
24 |
|
---|
25 | //////////////////////////////////////////////////////////////////////////////
|
---|
26 | //
|
---|
27 | // MHThetaSqN
|
---|
28 | //
|
---|
29 | // For more detailes see MHAlpha.
|
---|
30 | //
|
---|
31 | // How to use this class:
|
---|
32 | // - in your ganymed.rc add:
|
---|
33 | // MJCut.NameHist: MHThetaSqN
|
---|
34 | // - setup the number of off-source regions in your ganymed.rc by:
|
---|
35 | // MHThetaSqN.NumOffSourcePos: 2
|
---|
36 | // - switch on/off whether an off-theta cut should be done:
|
---|
37 | // MHThetaSqN.DoOffCut: Yes,No
|
---|
38 | // - and if necessary switch off the Theta cut in your Magic cuts:
|
---|
39 | // Cut1.ThetaCut: None
|
---|
40 | //
|
---|
41 | //////////////////////////////////////////////////////////////////////////////
|
---|
42 | #include "MHThetaSqN.h"
|
---|
43 |
|
---|
44 | #include <TVector2.h>
|
---|
45 |
|
---|
46 | #include "MParameters.h"
|
---|
47 | #include "MSrcPosCam.h"
|
---|
48 | #include "MGeomCam.h"
|
---|
49 | #include "MHMatrix.h"
|
---|
50 | #include "MHillas.h"
|
---|
51 |
|
---|
52 | #include "MBinning.h"
|
---|
53 | #include "MParList.h"
|
---|
54 | #include "MTaskList.h"
|
---|
55 | #include "MParameters.h"
|
---|
56 |
|
---|
57 | #include "MLog.h"
|
---|
58 | #include "MLogManip.h"
|
---|
59 |
|
---|
60 | ClassImp(MHThetaSqN);
|
---|
61 |
|
---|
62 | using namespace std;
|
---|
63 |
|
---|
64 | // --------------------------------------------------------------------------
|
---|
65 | //
|
---|
66 | // Default Constructor
|
---|
67 | //
|
---|
68 | MHThetaSqN::MHThetaSqN(const char *name, const char *title)
|
---|
69 | : MHAlpha(name, title), fDisp(0), fSrcPosCam(0), fSignificanceCutLevel(1.7),
|
---|
70 | fNumBinsSignal(3), fNumBinsTotal(75), fNumOffSourcePos(3), fDoOffCut(kTRUE),
|
---|
71 | fCounter(4)
|
---|
72 | {
|
---|
73 | //
|
---|
74 | // set the name and title of this object
|
---|
75 | //
|
---|
76 | fName = name ? name : "MHThetaSqN";
|
---|
77 | fTitle = title ? title : "Theta Squared plot";
|
---|
78 |
|
---|
79 | fNameParameter = "ThetaSquared";
|
---|
80 |
|
---|
81 | fHist.SetName("Theta");
|
---|
82 | fHist.SetTitle("Theta");
|
---|
83 | fHist.SetZTitle("\\vartheta^{2} [deg^{2}]");
|
---|
84 | fHist.SetDirectory(NULL);
|
---|
85 |
|
---|
86 | // Main histogram
|
---|
87 | fHistTime.SetName("Theta");
|
---|
88 | fHistTime.SetXTitle("\\vartheta^{2} [deg^{2}]");
|
---|
89 | fHistTime.SetDirectory(NULL);
|
---|
90 |
|
---|
91 | MBinning binsa, binse, binst;
|
---|
92 | binsa.SetEdges(75, 0, 1.5);
|
---|
93 | //binsa.SetEdges(arr);
|
---|
94 | binse.SetEdgesLog(15, 10, 100000);
|
---|
95 | binst.SetEdgesASin(67, -0.005, 0.665);
|
---|
96 | binsa.Apply(fHistTime);
|
---|
97 |
|
---|
98 | MH::SetBinning(fHist, binst, binse, binsa);
|
---|
99 |
|
---|
100 | fParameter = new MParameterD;
|
---|
101 | }
|
---|
102 |
|
---|
103 | MHThetaSqN::~MHThetaSqN()
|
---|
104 | {
|
---|
105 | delete fParameter;
|
---|
106 | }
|
---|
107 |
|
---|
108 | // --------------------------------------------------------------------------
|
---|
109 | //
|
---|
110 | // Overwrites the binning in Alpha (ThetaSq) with a binning for which
|
---|
111 | // the upper edge of the 5th bin (bin=5) fit the signal integration window.
|
---|
112 | // In total 75 bins are setup.
|
---|
113 | //
|
---|
114 | // In case of fOffData!=NULL the binnings are taken later from fOffData anyhow.
|
---|
115 | //
|
---|
116 | Bool_t MHThetaSqN::SetupFill(const MParList *pl)
|
---|
117 | {
|
---|
118 | // Default is from default fitter
|
---|
119 | // if a user defined fitter is in the parlist: use this range
|
---|
120 | MAlphaFitter *fit = (MAlphaFitter*)pl->FindObject("MAlphaFitter");
|
---|
121 | if (!fit)
|
---|
122 | fit = &fFit;
|
---|
123 |
|
---|
124 | MParameterD *cut = (MParameterD*)pl->FindObject("ThetaSquaredCut", "MParameterD");
|
---|
125 | if (cut)
|
---|
126 | fit->SetSignalIntegralMax(cut->GetVal());
|
---|
127 |
|
---|
128 | // Get Histogram binnings
|
---|
129 | MBinning binst, binse;
|
---|
130 | binst.SetEdges(fHist, 'x');
|
---|
131 | binse.SetEdges(fHist, 'y');
|
---|
132 |
|
---|
133 | // Calculate bining which fits alpha-cut
|
---|
134 | const Double_t intmax = fit->GetSignalIntegralMax();
|
---|
135 | const UInt_t nbins = fNumBinsTotal;
|
---|
136 | const UInt_t nsig = fNumBinsSignal;
|
---|
137 |
|
---|
138 | MBinning binsa(nbins, 0, nbins*intmax/nsig);
|
---|
139 |
|
---|
140 | // Apply binning
|
---|
141 | binsa.Apply(fHistTime);
|
---|
142 | MH::SetBinning(fHist, binst, binse, binsa);
|
---|
143 |
|
---|
144 | // Remark: Binnings might be overwritten in MHAlpha::SetupFill
|
---|
145 | if (!MHAlpha::SetupFill(pl))
|
---|
146 | return kFALSE;
|
---|
147 |
|
---|
148 | fDisp = (MParameterD*)pl->FindObject("Disp", "MParameterD");
|
---|
149 | if (!fDisp)
|
---|
150 | {
|
---|
151 | *fLog << err << "Disp [MParameterD] not found... abort." << endl;
|
---|
152 | return kFALSE;
|
---|
153 | }
|
---|
154 | fHillas = (MHillas*)pl->FindObject("MHillas");
|
---|
155 | if (!fHillas)
|
---|
156 | {
|
---|
157 | *fLog << err << "MHillas not found... abort." << endl;
|
---|
158 | return kFALSE;
|
---|
159 | }
|
---|
160 | fSrcPosCam = (MSrcPosCam*)pl->FindObject("MSrcPosCam");
|
---|
161 | if (!fSrcPosCam)
|
---|
162 | {
|
---|
163 | *fLog << err << "MSrcPosCam not found... abort." << endl;
|
---|
164 | return kFALSE;
|
---|
165 | }
|
---|
166 |
|
---|
167 | fGeom = (MGeomCam*)pl->FindObject("MGeomCam");
|
---|
168 | if (!fGeom)
|
---|
169 | {
|
---|
170 | *fLog << err << "MGeomCam not found... abort." << endl;
|
---|
171 | return kFALSE;
|
---|
172 | }
|
---|
173 |
|
---|
174 | if (fFit.GetScaleMode()==MAlphaFitter::kNone)
|
---|
175 | fFit.SetScaleUser(1./fNumOffSourcePos);
|
---|
176 |
|
---|
177 | fThetaSqCut = fSignificanceCutLevel*fFit.GetSignalIntegralMax()/1.7;
|
---|
178 |
|
---|
179 | fCounter.Reset();
|
---|
180 |
|
---|
181 | return kTRUE;
|
---|
182 | }
|
---|
183 |
|
---|
184 | // --------------------------------------------------------------------------
|
---|
185 | //
|
---|
186 | // Return the value from fParemeter which should be filled into the plots
|
---|
187 | //
|
---|
188 | Double_t MHThetaSqN::GetVal() const
|
---|
189 | {
|
---|
190 | return static_cast<const MParameterD*>(fParameter)->GetVal();
|
---|
191 | }
|
---|
192 |
|
---|
193 | // --------------------------------------------------------------------------
|
---|
194 | //
|
---|
195 | // Abbreviation to set the value used by MHAlpha to fill the histogram
|
---|
196 | //
|
---|
197 | void MHThetaSqN::SetVal(Double_t val)
|
---|
198 | {
|
---|
199 | static_cast<MParameterD*>(fParameter)->SetVal(val);
|
---|
200 | }
|
---|
201 |
|
---|
202 | // --------------------------------------------------------------------------
|
---|
203 | //
|
---|
204 | // Abbreviation to set the value used by MHAlpha to fill the histogram
|
---|
205 | //
|
---|
206 | TVector2 MHThetaSqN::GetVec(const TVector2 &v, Int_t n1) const
|
---|
207 | {
|
---|
208 | if (!fMatrix)
|
---|
209 | return v;
|
---|
210 |
|
---|
211 | return TVector2( (*fMatrix)[fMap[n1]], (*fMatrix)[fMap[n1+1]] );
|
---|
212 | }
|
---|
213 |
|
---|
214 | Int_t MHThetaSqN::Fill(const MParContainer *par, const Stat_t weight)
|
---|
215 | {
|
---|
216 | const Double_t fMm2Deg = fGeom->GetConvMm2Deg();
|
---|
217 |
|
---|
218 | const TVector2 norm(GetVec(fHillas->GetNormAxis(), 6));
|
---|
219 | const TVector2 mean(GetVec(fHillas->GetMean(), 8));
|
---|
220 |
|
---|
221 | const TVector2 org = mean*fMm2Deg + norm*fDisp->GetVal();
|
---|
222 |
|
---|
223 | // In the case we are filling off-data src0 contains the anti-source position
|
---|
224 | TVector2 src0(GetVec(fSrcPosCam->GetXY(), 10)*fMm2Deg);
|
---|
225 | if (!fOffData)
|
---|
226 | src0 *= -1;
|
---|
227 |
|
---|
228 | const UInt_t n = fNumOffSourcePos+1;
|
---|
229 | const Float_t rad = TMath::TwoPi()/n;
|
---|
230 |
|
---|
231 | // Calculate distance (theta-sq) to all (off-)source regions
|
---|
232 | TArrayD dist(n);
|
---|
233 | for (UInt_t i=0; i<n; i++)
|
---|
234 | {
|
---|
235 | const TVector2 src = const_cast<TVector2&>(src0).Rotate(i*rad);
|
---|
236 | dist[i] = (src-org).Mod2();
|
---|
237 | }
|
---|
238 |
|
---|
239 | // Processing off-data
|
---|
240 | // Check if event's origin is in the on-regions
|
---|
241 | if (!fOffData && fDoOffCut && dist[0]<fThetaSqCut)
|
---|
242 | return kTRUE;
|
---|
243 |
|
---|
244 | for (UInt_t i=0; i<n; i++)
|
---|
245 | {
|
---|
246 | // off: is in src region on: is in off regions
|
---|
247 | /// if (!fOffData && i==0) || (fOffData && i!=0)
|
---|
248 | if ((bool)fOffData ^ (i==0) )
|
---|
249 | continue;
|
---|
250 |
|
---|
251 | Stat_t w = weight;
|
---|
252 |
|
---|
253 | // Processing on-data
|
---|
254 | if (fOffData && fDoOffCut)
|
---|
255 | {
|
---|
256 | /*
|
---|
257 | static int cnt=0;
|
---|
258 | if (dist[1+(cnt++%fNumOffSourcePos)]<fFit.GetSignalIntegralMax())
|
---|
259 | continue;
|
---|
260 | */
|
---|
261 |
|
---|
262 | // Check if event's origin is in one of the off-regions
|
---|
263 | for (UInt_t j=1; j<n; j++)
|
---|
264 | if (dist[j]<fThetaSqCut)
|
---|
265 | {
|
---|
266 | w *= (float)(fNumOffSourcePos-1)/fNumOffSourcePos;
|
---|
267 | break;
|
---|
268 | }
|
---|
269 | }
|
---|
270 |
|
---|
271 | SetVal(dist[i]);
|
---|
272 |
|
---|
273 | const Int_t rc = MHAlpha::Fill(NULL, w);
|
---|
274 | if (rc!=kTRUE)
|
---|
275 | return rc;
|
---|
276 | }
|
---|
277 |
|
---|
278 | if (!fOffData)
|
---|
279 | {
|
---|
280 | // off 0.4deg 0.3deg
|
---|
281 | // 5: 0.200 ~86% 0.150
|
---|
282 | // 4: 0.235 ~92% 0.176
|
---|
283 | // 3: 0.283 ~96% 0.212
|
---|
284 | // 2: 0.346 ~98% 0.260
|
---|
285 |
|
---|
286 | const Double_t dis = src0.Mod()*TMath::Sin(rad/2);
|
---|
287 | const Double_t cut = TMath::Sqrt(fFit.GetSignalIntegralMax());
|
---|
288 | if (dis<cut)
|
---|
289 | {
|
---|
290 | *fLog << warn << "WARNING - Source regions overlap: distance ";
|
---|
291 | *fLog << dis << " less than theta-sq cut " << cut << "!" << endl;
|
---|
292 | if (dis*1.7<cut*1.0)
|
---|
293 | fCounter[3]++;
|
---|
294 | else
|
---|
295 | if (dis*1.7<cut*1.5)
|
---|
296 | fCounter[2]++;
|
---|
297 | else
|
---|
298 | fCounter[1]++;
|
---|
299 |
|
---|
300 | }
|
---|
301 | else
|
---|
302 | fCounter[0]++;
|
---|
303 | }
|
---|
304 |
|
---|
305 | return kTRUE;
|
---|
306 | }
|
---|
307 |
|
---|
308 | // --------------------------------------------------------------------------
|
---|
309 | //
|
---|
310 | // Print execution statistics
|
---|
311 | //
|
---|
312 | Bool_t MHThetaSqN::Finalize()
|
---|
313 | {
|
---|
314 | if (GetNumExecutions()>0)
|
---|
315 | {
|
---|
316 | *fLog << inf << endl;
|
---|
317 | *fLog << GetDescriptor() << " execution statistics:" << endl;
|
---|
318 | PrintSkipped(fCounter[3], "Region distance below 1.0sigma (68.3%)");
|
---|
319 | PrintSkipped(fCounter[2], "Region distance below 1.5sigma (86.6%)");
|
---|
320 | PrintSkipped(fCounter[1], "Region distance below 1.7sigma (91.1%)");
|
---|
321 | *fLog << " " << (int)fCounter[0] << " (" << Form("%5.1f", 100.*fCounter[0]/GetNumExecutions()) << "%) Evts ok!" << endl;
|
---|
322 | //*fLog << " " << (int)fCounter[0] << " (" << Form("%5.1f", 100.*fCounter[0]/GetNumExecutions()) << "%) Evts survived calculation!" << endl;
|
---|
323 | *fLog << endl;
|
---|
324 | }
|
---|
325 |
|
---|
326 | return MHAlpha::Finalize();
|
---|
327 | }
|
---|
328 |
|
---|
329 | // --------------------------------------------------------------------------
|
---|
330 | //
|
---|
331 | // You can use this function if you want to use a MHMatrix instead of
|
---|
332 | // MMcEvt. This function adds all necessary columns to the
|
---|
333 | // given matrix. Afterward you should fill the matrix with the corresponding
|
---|
334 | // data (eg from a file by using MHMatrix::Fill). If you now loop
|
---|
335 | // through the matrix (eg using MMatrixLoop) MHHadronness::Fill
|
---|
336 | // will take the values from the matrix instead of the containers.
|
---|
337 | //
|
---|
338 | // It takes fSkipHist* into account!
|
---|
339 | //
|
---|
340 | void MHThetaSqN::InitMapping(MHMatrix *mat, Int_t type)
|
---|
341 | {
|
---|
342 | if (fMatrix)
|
---|
343 | return;
|
---|
344 |
|
---|
345 | fMatrix = mat;
|
---|
346 |
|
---|
347 | fMap[0] = -1;
|
---|
348 | fMap[1] = -1;
|
---|
349 | fMap[2] = -1;
|
---|
350 | fMap[3] = -1;
|
---|
351 | fMap[4] = -1;
|
---|
352 |
|
---|
353 | if (!fSkipHistEnergy)
|
---|
354 | {
|
---|
355 | fMap[1] = type==0 ? fMatrix->AddColumn("MEnergyEst.fVal") : -1;
|
---|
356 | fMap[2] = type==0 ? -1 : fMatrix->AddColumn("MHillas.fSize");
|
---|
357 | }
|
---|
358 |
|
---|
359 | if (!fSkipHistTheta)
|
---|
360 | fMap[3] = fMatrix->AddColumn("MPointingPos.fZd");
|
---|
361 |
|
---|
362 | fMap[5] = -1;
|
---|
363 | fMap[6] = fMatrix->AddColumn("MHillas.fCosDelta");
|
---|
364 | fMap[7] = fMatrix->AddColumn("MHillas.fSinDelta");
|
---|
365 | fMap[8] = fMatrix->AddColumn("MHillas.fMeanX");
|
---|
366 | fMap[9] = fMatrix->AddColumn("MHillas.fMeanY");
|
---|
367 | fMap[10] = fMatrix->AddColumn("MSrcPosCam.fX");
|
---|
368 | fMap[11] = fMatrix->AddColumn("MSrcPosCam.fY");
|
---|
369 | }
|
---|
370 |
|
---|
371 | Int_t MHThetaSqN::ReadEnv(const TEnv &env, TString prefix, Bool_t print)
|
---|
372 | {
|
---|
373 | Int_t rc = MHAlpha::ReadEnv(env, prefix, print);
|
---|
374 | if (rc==kERROR)
|
---|
375 | return kERROR;
|
---|
376 |
|
---|
377 | if (IsEnvDefined(env, prefix, "NumBinsSignal", print))
|
---|
378 | {
|
---|
379 | SetNumBinsSignal(GetEnvValue(env, prefix, "NumBinsSignal", (Int_t)fNumBinsSignal));
|
---|
380 | rc = kTRUE;
|
---|
381 | }
|
---|
382 | if (IsEnvDefined(env, prefix, "NumBinsTotal", print))
|
---|
383 | {
|
---|
384 | SetNumBinsTotal(GetEnvValue(env, prefix, "NumBinsTotal", (Int_t)fNumBinsTotal));
|
---|
385 | rc = kTRUE;
|
---|
386 | }
|
---|
387 | if (IsEnvDefined(env, prefix, "NumOffSourcePos", print))
|
---|
388 | {
|
---|
389 | SetNumOffSourcePos(GetEnvValue(env, prefix, "NumOffSourcePos", (Int_t)fNumOffSourcePos));
|
---|
390 | rc = kTRUE;
|
---|
391 | }
|
---|
392 | if (IsEnvDefined(env, prefix, "DoOffCut", print))
|
---|
393 | {
|
---|
394 | SetDoOffCut(GetEnvValue(env, prefix, "DoOffCut", fDoOffCut));
|
---|
395 | rc = kTRUE;
|
---|
396 | }
|
---|
397 | if (IsEnvDefined(env, prefix, "SignificanceCutLevel", print))
|
---|
398 | {
|
---|
399 | SetSignificanceCutLevel(GetEnvValue(env, prefix, "SignificanceCutLevel", fSignificanceCutLevel));
|
---|
400 | rc = kTRUE;
|
---|
401 | }
|
---|
402 | return rc;
|
---|
403 | }
|
---|