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Revision: 1.39
Committed: Fri Jun 18 06:10:04 2010 UTC (14 years, 10 months ago) by ceballos
Content type: text/plain
Branch: MAIN
CVS Tags: Mit_015b, Mit_015a, Mit_015, Mit_014e, Mit_014d, Mit_014c, Mit_014b
Changes since 1.38: +4 -4 lines
Log Message:
change in best track

File Contents

# Content
1 //--------------------------------------------------------------------------------------------------
2 // $Id: Muon.h,v 1.38 2010/05/29 18:08:05 bendavid Exp $
3 //
4 // Muon
5 //
6 // Classified into 3 Types
7 // Standalone : Muon fit from hits in the muon chambers
8 // Tracker : Tracker matched track to muon chambers with segments
9 // Global : Combined track and muon chambers fit
10 //
11 // In the muon class all three muon classes exist and can be determined by checking
12 // whether a fit track exists for such a Muon (eg HasTrackerTrk() == kTRUE). When
13 // BestTrk function is called the global fit is returned, if that does not
14 // exist the tracker fit is returned upon that failure the standalone muon
15 // is subsequently returned. To consult more see:
16 // http://cmsdoc.cern.ch/cms/Physics/muon/MPOG/Notes/MuonReco.pdf
17 //
18 // Quality Varaibles for Selection
19 // Isolation : decomposed to IsoRNNXXXXX
20 // NN = 03,05 to denote R =0.3,0.5 in Isolation Cone
21 // XXXXX = SumPt - Sum of Pt of Tracks in Cone (using all Pt Tracks)
22 // XXXXX = EmEt - Sum of Et of Em component of Calo Towers (Veto=0.08)
23 // XXXXX = HadEt - Sum of Et of Had component of Calo Towers (Veto=0.1)
24 // XXXXX = HoEt - Sum of Pt of Ho component of Calo Towers (Veto=0.1)
25 // XXXXX = NTrk - Number of Tracks within Cone (using all Pt Tracks)
26 // XXXXX = NJet - Sum of Jets inside Cone
27 //
28 // Muon Quality Variables
29 // Extracted from the Muon Tracking Associator
30 // For more se https://twiki.cern.ch/twiki/bin/view/CMS/TrackAssociator
31 // Energy Variables : Energy within (5x5 Ecal Crystal/Hcal/Ho) along Track
32 // using calo towers
33 // S9 Energy Variables : Energy using reconstructed hits calo towers default
34 // Segment Variables :
35 // Segment variables are stored in array of 8:
36 // 0-3: Correspond to segments in 4 DT chambers in->outward(3 has no Y res)
37 // 4-7: Correspond to segments in 4 CSC chambers in->out
38 // If value undetermined 999999 is returned.
39 // Variables:
40 // DX,DY,PullX,PullY: Uncertainties/Pulls of propagated track
41 // with respect to local muon segment
42 // TrackDist,TrackDistErr: Summed Dist/Err (in X,Y) of segment with respect
43 // to propagated track
44 // NSegments : Number of segments in muon using Segment+Track Arbitration
45 // NChambers : Number of muon chambers traversed in propagated track
46 // LastHit : Returns farest (from center) station with a recorded segment
47 // LastStation : Returns farest station using Segment+Track Arbitration
48 //
49 // Muon Id Methods: Please see Muon Id Note(as of now unpublished):
50 // https://www.cmsaf.mit.edu/twiki/pub/CmsHep/HepWAnalysis/MuonID-ingo.pdf
51 // TMOneStation : Returns bool whether muon passes "Tracker Muon One StationId"
52 // -Matching criteria for one of all segments matched to muon
53 // TMLastStation : Returns bool whether muon passes "LastStation Id" criteria
54 // -Matching criteria for last most segment
55 //
56 // Authors: J.Bendavid, C.Loizides, C.Paus, P.Harris
57 //--------------------------------------------------------------------------------------------------
58
59 #ifndef MITANA_DATATREE_MUON_H
60 #define MITANA_DATATREE_MUON_H
61
62 #include "MitAna/DataTree/interface/Track.h"
63 #include "MitAna/DataTree/interface/ChargedParticle.h"
64 #include "MitAna/DataTree/interface/MuonQuality.h"
65
66 namespace mithep {
67 class Muon : public ChargedParticle {
68 public:
69 Muon();
70
71 enum EClassType {
72 kNone, //no track assigned
73 kGlobal, //"Global"
74 kTracker, //"Tracker"
75 kSta, //"Standalone"
76 kAny //any "best" of the above
77 };
78
79 const Track *BestTrk() const;
80 const Track *GlobalTrk() const { return fGlobalTrkRef.Obj(); }
81 const Track *StandaloneTrk() const { return fStaTrkRef.Obj(); }
82 const Track *TrackerTrk() const { return fTrkTrkRef.Obj(); }
83 const Track *Trk() const { return BestTrk(); }
84 Double_t D0PV() const { return fD0PV; }
85 Double_t D0PVErr() const { return fD0PVErr; }
86 Double_t D0PVSignificance() const { return fD0PV/fD0PVErr; }
87 Double_t Ip3dPV() const { return fIp3dPV; }
88 Double_t Ip3dPVErr() const { return fIp3dPVErr; }
89 Double_t Ip3dPVSignificance() const { return fIp3dPV/fIp3dPVErr; }
90 Double_t D0PVBS() const { return fD0PVBS; }
91 Double_t D0PVBSErr() const { return fD0PVBSErr; }
92 Double_t D0PVBSSignificance() const { return fD0PVBS/fD0PVBSErr; }
93 Double_t Ip3dPVBS() const { return fIp3dPVBS; }
94 Double_t Ip3dPVBSErr() const { return fIp3dPVBSErr; }
95 Double_t Ip3dPVBSSignificance() const { return fIp3dPVBS/fIp3dPVBSErr; }
96 Double_t PVCompatibility() const { return fPVCompatibility; }
97 Double_t PVBSCompatibility() const { return fPVBSCompatibility; }
98 Double_t EmEnergy() const { return fEmEnergy; }
99 Double_t EmS9Energy() const { return fEmS9Energy; }
100 Double_t GetDX(Int_t iStation) const;
101 Double_t GetDY(Int_t iStation) const;
102 Double_t GetPullX(Int_t iStation) const;
103 Double_t GetPullY(Int_t iStation) const;
104 Double_t GetTrackDist(Int_t iStation) const;
105 Double_t GetTrackDistErr(Int_t iStation) const;
106 Int_t GetNSegments(Int_t iStation) const;
107 Bool_t Has(EClassType type) const;
108 Bool_t HasTrk() const;
109 Bool_t HasGlobalTrk() const { return fGlobalTrkRef.IsValid(); }
110 Bool_t HasStandaloneTrk() const { return fStaTrkRef.IsValid(); }
111 Bool_t HasTrackerTrk() const { return fTrkTrkRef.IsValid(); }
112 Double_t HadEnergy() const { return fHadEnergy; }
113 Double_t HadS9Energy() const { return fHadS9Energy; }
114 Double_t HoEnergy() const { return fHoEnergy; }
115 Double_t HoS9Energy() const { return fHoS9Energy; }
116 EClassType Is() const;
117 Bool_t IsGlobalMuon() const { return fIsGlobalMuon; }
118 Bool_t IsTrackerMuon() const { return fIsTrackerMuon; }
119 Bool_t IsStandaloneMuon() const { return fIsStandaloneMuon; }
120 Bool_t IsCaloMuon() const { return fIsCaloMuon; }
121 Double_t IsoR03SumPt() const { return fIsoR03SumPt; }
122 Double_t IsoR03EmEt() const { return fIsoR03EmEt; }
123 Double_t IsoR03HadEt() const { return fIsoR03HadEt; }
124 Double_t IsoR03HoEt() const { return fIsoR03HoEt; }
125 UShort_t IsoR03NTracks() const { return fIsoR03NTracks; }
126 UShort_t IsoR03NJets() const { return fIsoR03NJets; }
127 Double_t IsoR05SumPt() const { return fIsoR05SumPt; }
128 Double_t IsoR05EmEt() const { return fIsoR05EmEt; }
129 Double_t IsoR05HadEt() const { return fIsoR05HadEt; }
130 Double_t IsoR05HoEt() const { return fIsoR05HoEt; }
131 UShort_t IsoR05NTracks() const { return fIsoR05NTracks; }
132 UShort_t IsoR05NJets() const { return fIsoR05NJets; }
133 UInt_t NValidHits() const { return fNValidHits; }
134 UInt_t NChambers() const { return fNTraversedChambers; }
135 UInt_t NSegments() const { return fStationMask.NBitsSet(); }
136 Int_t LastHit() const;
137 Int_t LastStation(Double_t iMaxD, Double_t iMaxP) const;
138 Int_t LastStation(Int_t iMax=8) const;
139 Int_t ObjId() const { return ObjType()*1000+Is(); }
140 EObjType ObjType() const { return kMuon; }
141 void Print(Option_t *opt="") const;
142 Bool_t PromptTight(EClassType type) const;
143 const MuonQuality &Quality() const { return fQuality; }
144 MuonQuality &Quality() { return fQuality; }
145 Bool_t StationBit(Int_t bit) const { return fStationMask.TestBit(bit); }
146 Bool_t TMLastStation(Double_t iDYMin = 3, Double_t iPYMin = 3,
147 Double_t iDXMin = 3, Double_t iPXMin = 3,UInt_t iN = 2) const;
148 Bool_t TMOneStation(Double_t iDYMin = 3, Double_t iPYMin = 3,
149 Double_t iDXMin = 3, Double_t iPXMin = 3,UInt_t iN = 1) const;
150 void SetCharge(Char_t x) { fCharge = x; ClearCharge(); }
151 void SetGlobalTrk(const Track *t)
152 { fGlobalTrkRef = t; ClearMom(); ClearCharge(); }
153 void SetStandaloneTrk(const Track *t)
154 { fStaTrkRef = t; ClearMom(); ClearCharge(); }
155 void SetTrackerTrk(const Track *t)
156 { fTrkTrkRef = t; ClearMom(); ClearCharge(); }
157 void SetDX(Int_t iStation, Double_t iDX);
158 void SetDY(Int_t iStation, Double_t iDY);
159 void SetD0PV(Double_t x) { fD0PV = x; }
160 void SetD0PVErr(Double_t x) { fD0PVErr = x; }
161 void SetIp3dPV(Double_t x) { fIp3dPV = x; }
162 void SetIp3dPVErr(Double_t x) { fIp3dPVErr = x; }
163 void SetD0PVBS(Double_t x) { fD0PVBS = x; }
164 void SetD0PVBSErr(Double_t x) { fD0PVBSErr = x; }
165 void SetIp3dPVBS(Double_t x) { fIp3dPVBS = x; }
166 void SetIp3dPVBSErr(Double_t x) { fIp3dPVBSErr = x; }
167 void SetPVCompatibility(Double_t x) { fPVCompatibility = x; }
168 void SetPVBSCompatibility(Double_t x) { fPVBSCompatibility = x; }
169 void SetEmEnergy(Double_t EmEnergy) { fEmEnergy = EmEnergy; }
170 void SetEmS9Energy(Double_t EmS9Energy) { fEmS9Energy = EmS9Energy; }
171 void SetHadEnergy(Double_t HadEnergy) { fHadEnergy = HadEnergy; }
172 void SetHadS9Energy(Double_t HadS9Energy) { fHadS9Energy = HadS9Energy; }
173 void SetHoEnergy(Double_t HoEnergy) { fHoEnergy = HoEnergy; }
174 void SetHoS9Energy(Double_t HoS9Energy) { fHoS9Energy = HoS9Energy; }
175 void SetIsGlobalMuon(Bool_t b) { fIsGlobalMuon = b; }
176 void SetIsTrackerMuon(Bool_t b) { fIsTrackerMuon = b; }
177 void SetIsStandaloneMuon(Bool_t b) { fIsStandaloneMuon = b; }
178 void SetIsCaloMuon(Bool_t b) { fIsCaloMuon = b; }
179 void SetIsoR03SumPt(Double_t isoR03SumPt) { fIsoR03SumPt = isoR03SumPt; }
180 void SetIsoR03EmEt(Double_t isoR03EmEt) { fIsoR03EmEt = isoR03EmEt; }
181 void SetIsoR03HadEt(Double_t isoR03HadEt) { fIsoR03HadEt = isoR03HadEt; }
182 void SetIsoR03HoEt(Double_t isoR03HoEt) { fIsoR03HoEt = isoR03HoEt; }
183 void SetIsoR03NTracks(UShort_t isoR03NTrk) { fIsoR03NTracks = isoR03NTrk; }
184 void SetIsoR03NJets(UShort_t isoR03NJets) { fIsoR03NJets = isoR03NJets; }
185 void SetIsoR05SumPt(Double_t isoR05SumPt) { fIsoR05SumPt = isoR05SumPt; }
186 void SetIsoR05EmEt(Double_t isoR05EmEt) { fIsoR05EmEt = isoR05EmEt; }
187 void SetIsoR05HadEt(Double_t isoR05HadEt) { fIsoR05HadEt = isoR05HadEt; }
188 void SetIsoR05HoEt(Double_t isoR05HoEt) { fIsoR05HoEt = isoR05HoEt; }
189 void SetIsoR05NTracks(UShort_t isoR05NTrk) { fIsoR05NTracks = isoR05NTrk; }
190 void SetIsoR05NJets(UShort_t isoR05NJets) { fIsoR05NJets = isoR05NJets; }
191 void SetNValidHits(UShort_t iNValidHits) { fNValidHits = iNValidHits; }
192 void SetNChambers(UShort_t iNTraCh) { fNTraversedChambers = iNTraCh; }
193 void SetNSegments(Int_t iStation, Int_t NSegments);
194 void SetPtEtaPhi(Double_t pt, Double_t eta, Double_t phi);
195 void SetPullX(Int_t iStation, Double_t iPullX);
196 void SetPullY(Int_t iStation, Double_t iPullY);
197 void SetStationMask(UInt_t iStMask) { fStationMask.SetBits(iStMask); }
198 void SetTrackDist(Int_t iStation, Double_t iDist);
199 void SetTrackDistErr(Int_t iStation, Double_t iDistErr);
200
201 protected:
202 Double_t GetCharge() const;
203 Double_t GetMass() const { return 105.658369e-3; }
204 void GetMom() const;
205
206 Vect3C fMom; //stored three-momentum
207 Char_t fCharge; //stored charge - filled with -99 when reading old files
208 Ref<Track> fGlobalTrkRef; //global combined track reference
209 Ref<Track> fStaTrkRef; //standalone muon track reference
210 Ref<Track> fTrkTrkRef; //tracker track reference
211 Double32_t fIsoR03SumPt; //[0,0,14]isolation size R=0.3 sum pt
212 Double32_t fIsoR03EmEt; //[0,0,14]isolation size R=0.3 em trans energy
213 Double32_t fIsoR03HadEt; //[0,0,14]isolation size R=0.3 had trans energy
214 Double32_t fIsoR03HoEt; //[0,0,14]isolation size R=0.3 ho trans energy
215 UShort_t fIsoR03NTracks; //isolation size R=0.3 number of tracks
216 UShort_t fIsoR03NJets; //isolation size R=0.3 number of jets
217 Double32_t fIsoR05SumPt; //[0,0,14]isolation size R=0.5 sum pt
218 Double32_t fIsoR05EmEt; //[0,0,14]isolation size R=0.5 em trans energy
219 Double32_t fIsoR05HadEt; //[0,0,14]isolation size R=0.5 had trans energy
220 Double32_t fIsoR05HoEt; //[0,0,14]isolation size R=0.5 ho trans energy
221 UShort_t fIsoR05NTracks; //isolation size R=0.5 number of tracks
222 UShort_t fIsoR05NJets; //isolation size R=0.5 number of jets
223 Double32_t fEmEnergy; //[0,0,14]energy deposit in ecal
224 Double32_t fHadEnergy; //[0,0,14]energy deposit in hcal
225 Double32_t fHoEnergy; //[0,0,14]energy deposit in outer hcal
226 Double32_t fEmS9Energy; //[0,0,14]energy deposit in 3x3 ecal
227 Double32_t fHadS9Energy; //[0,0,14]energy deposit in 3x3 hcal
228 Double32_t fHoS9Energy; //[0,0,14]energy deposit in 3x3 outer hcal
229 Double32_t fD0PV; //[0,0,14]transverse impact parameter to signal PV
230 Double32_t fD0PVErr; //[0,0,14]transverse impact parameter uncertainty to signal PV
231 Double32_t fIp3dPV; //[0,0,14]3d impact parameter to signal PV
232 Double32_t fIp3dPVErr; //[0,0,14]3d impact parameter uncertainty to signal PV
233 Double32_t fD0PVBS; //[0,0,14]transverse impact parameter to signal PV w/ bs constraint
234 Double32_t fD0PVBSErr; //[0,0,14]transverse impact parameter uncertainty to signal PV w/ bs constraint
235 Double32_t fIp3dPVBS; //[0,0,14]3d impact parameter to signal PV w/ bs constraint
236 Double32_t fIp3dPVBSErr; //[0,0,14]3d impact parameter uncertainty to signal PV w/ bs constraint
237 Double32_t fPVCompatibility; //[0,0,14]chi^2 compatibility with signal PV (ndof=2)
238 Double32_t fPVBSCompatibility; //[0,0,14]chi^2 compatibility with signal PV w/ bs constraint (ndof=2)
239 UShort_t fNValidHits; //number of Valid hits in global fit
240 UShort_t fNTraversedChambers; //number of traversed chambers
241 MuonQuality fQuality; //muon quality
242 BitMask8 fStationMask; //bitmap of station with tracks, 0-3 DT, 4-7 CSCs
243 Double32_t fDX[8]; //[0,0,14]uncertainty in x in given muon chamber
244 Double32_t fDY[8]; //[0,0,14]uncertainty in y in given muon chamber
245 Double32_t fPullX[8]; //[0,0,14]pull in x in given muon chamber
246 Double32_t fPullY[8]; //[0,0,14]pull in y in given muon chamber
247 Double32_t fTrackDist[8]; //[0,0,14]dist. to track in trans. plane in muon chamber
248 Double32_t fTrackDistErr[8]; //[0,0,14]error of dist. to track in trans. plane
249 Int_t fNSegments[8]; //number of segments in given muon chamber
250 Bool_t fIsGlobalMuon; //GlobalMuon algo flag
251 Bool_t fIsTrackerMuon; //TrackerMuon algo flag
252 Bool_t fIsStandaloneMuon; //StandaloneMuon algo flag
253 Bool_t fIsCaloMuon; //CaloMuon algo flag
254
255 ClassDef(Muon, 6) // Muon class
256 };
257 }
258
259 //--------------------------------------------------------------------------------------------------
260 inline const mithep::Track *mithep::Muon::BestTrk() const
261 {
262 // Return "best" track.
263
264 if (HasTrackerTrk())
265 return TrackerTrk();
266 else if (HasGlobalTrk())
267 return GlobalTrk();
268 else if (HasStandaloneTrk())
269 return StandaloneTrk();
270
271 Error("BestTrk", "No track reference found, returning NULL pointer.");
272 return 0;
273 }
274
275 //--------------------------------------------------------------------------------------------------
276 inline Double_t mithep::Muon::GetCharge() const
277 {
278 // Return stored charge, unless it is set to invalid (-99),
279 // in that case get charge from track as before
280
281 if (fCharge==-99)
282 return mithep::ChargedParticle::GetCharge();
283 else
284 return fCharge;
285
286 }
287
288 //--------------------------------------------------------------------------------------------------
289 inline void mithep::Muon::GetMom() const
290 {
291 // Get momentum of the muon. We use an explicitly stored three vector, with the pdg mass,
292 // since the momentum vector may be computed non-trivially in cmssw (since the tracker
293 // information has better resolution apparently in some cases than the global fit.)
294 // If momentum is unfilled, fall back to old method of getting momentum from best track
295 // (for backwards compatibility.)
296
297 if (fMom.Rho()>0.0) {
298 fCachedMom.SetCoordinates(fMom.Rho(),fMom.Eta(),fMom.Phi(),GetMass());
299 }
300 else {
301 mithep::ChargedParticle::GetMom();
302 }
303
304 }
305
306 //--------------------------------------------------------------------------------------------------
307 inline Double_t mithep::Muon::GetDX(Int_t iStation) const
308 {
309 // Return uncertainty in x in given chamber.
310
311 assert(iStation >= 0 && iStation < 8);
312 return fDX[iStation];
313 }
314
315 //--------------------------------------------------------------------------------------------------
316 inline Double_t mithep::Muon::GetDY(Int_t iStation) const
317 {
318 // Return uncertainty in y in given chamber.
319
320 assert(iStation >= 0 && iStation < 8);
321 return fDY[iStation];
322 }
323
324 //--------------------------------------------------------------------------------------------------
325 inline Double_t mithep::Muon::GetPullX(Int_t iStation) const
326 {
327 // Return pull in x in given chamber.
328
329 assert(iStation >= 0 && iStation < 8);
330 return fPullX[iStation];
331 }
332
333 //--------------------------------------------------------------------------------------------------
334 inline Double_t mithep::Muon::GetPullY(Int_t iStation) const
335 {
336 // Return pull in y in given chamber.
337
338 assert(iStation >= 0 && iStation < 8);
339 return fPullY[iStation];
340 }
341
342 //--------------------------------------------------------------------------------------------------
343 inline Double_t mithep::Muon::GetTrackDist(Int_t iStation) const
344 {
345 // Return track distance in given chamber.
346
347 assert(iStation >= 0 && iStation < 8);
348 return fTrackDist[iStation];
349 }
350
351 //--------------------------------------------------------------------------------------------------
352 inline Double_t mithep::Muon::GetTrackDistErr(Int_t iStation) const
353 {
354 // Return error of track distance in given chamber.
355
356 assert(iStation >= 0 && iStation < 8);
357 return fTrackDistErr[iStation];
358 }
359
360 //--------------------------------------------------------------------------------------------------
361 inline Int_t mithep::Muon::GetNSegments(Int_t iStation) const
362 {
363 // Return number of segments in chamber.
364
365 assert(iStation >= 0 && iStation < 8);
366 return fNSegments[iStation];
367 }
368
369 //--------------------------------------------------------------------------------------------------
370 inline Bool_t mithep::Muon::Has(EClassType type) const
371 {
372 // Return true if the muon has a track of given class.
373
374 switch (type) {
375 case kAny:
376 if (HasTrk())
377 return kTRUE;
378 break;
379 case kGlobal:
380 if (HasGlobalTrk())
381 return kTRUE;
382 break;
383 case kTracker:
384 if (HasTrackerTrk())
385 return kTRUE;
386 break;
387 case kSta:
388 if (HasStandaloneTrk())
389 return kTRUE;
390 break;
391 case kNone:
392 if (!HasTrk())
393 return kTRUE;
394 break;
395 default:
396 break;
397 }
398
399 return kFALSE;
400 }
401
402 //--------------------------------------------------------------------------------------------------
403 inline Bool_t mithep::Muon::HasTrk() const
404 {
405 // Return true if the muon has assigned any kind of track.
406
407 return (HasGlobalTrk() || HasTrackerTrk() || HasStandaloneTrk());
408 }
409
410 //--------------------------------------------------------------------------------------------------
411 inline mithep::Muon::EClassType mithep::Muon::Is() const
412 {
413 // Return the "best" classification of the muon according to the assigned tracks.
414
415 if (HasGlobalTrk())
416 return kGlobal;
417 else if (HasTrackerTrk())
418 return kTracker;
419 else if (HasStandaloneTrk())
420 return kSta;
421
422 return kNone;
423 }
424
425 //--------------------------------------------------------------------------------------------------
426 inline Int_t mithep::Muon::LastHit() const
427 {
428 // Return the last hit, or -1 if no one found.
429
430 Int_t lId = -1;
431 for (Int_t i0 = 0; i0 < 8; ++i0) {
432 if (GetDX(i0) < 99999 || GetDY(i0) < 99999)
433 lId = i0;
434 }
435 return lId;
436 }
437
438 //--------------------------------------------------------------------------------------------------
439 inline Int_t mithep::Muon::LastStation(Int_t iMax) const
440 {
441 // Return the last station, or -1 of no one found.
442
443 Int_t lId = -1;
444 if(TMath::Abs(iMax) > 8)
445 iMax = 8;
446 for (Int_t i0 = 0; i0 < iMax; ++i0) {
447 if (StationBit(i0) && ((lId % 4) < (i0 % 4)))
448 lId = i0;
449 }
450 return lId;
451 }
452
453 //--------------------------------------------------------------------------------------------------
454 inline Int_t mithep::Muon::LastStation(Double_t iMaxD, Double_t iMaxP) const
455 {
456 // Return the last station for given deviation and relative error, or -1 if no one found.
457
458 Int_t lId = -1;
459 for (Int_t i0 = 0; i0 < 8; ++i0) {
460 if ((lId % 4) > (i0 % 4))
461 continue;
462 if (GetTrackDist(i0) < iMaxD &&
463 GetTrackDist(i0)/GetTrackDistErr(i0) < iMaxP)
464 lId = i0;
465 }
466 return lId;
467 }
468
469 //--------------------------------------------------------------------------------------------------
470 inline Bool_t mithep::Muon::PromptTight(EClassType type) const
471 {
472 // Return whether track for given class matches tight quality criteria.
473
474 const mithep::Track *lTrack = 0;
475 switch (type) {
476 case kAny:
477 lTrack = BestTrk();
478 break;
479 case kGlobal:
480 lTrack = GlobalTrk();
481 break;
482 case kTracker:
483 lTrack = TrackerTrk();
484 break;
485 case kSta:
486 lTrack = StandaloneTrk();
487 break;
488 default:
489 break;
490 }
491
492 if (lTrack == 0)
493 return kFALSE;
494 if (lTrack->NHits() < 11)
495 return kFALSE;
496 if (lTrack->Chi2()/lTrack->Ndof() > 10.)
497 return kFALSE;
498 if (lTrack->D0() > 0.2)
499 return kFALSE;
500 if ((LastHit() % 4) == 0)
501 return kFALSE;
502 return kTRUE;
503 }
504
505 //--------------------------------------------------------------------------------------------------
506 inline Bool_t mithep::Muon::TMOneStation(Double_t iDYMin, Double_t iPYMin,
507 Double_t iDXMin, Double_t iPXMin, UInt_t iN) const
508 {
509 // Check if the muon is matched to at least one station (chamber).
510
511 if (NSegments() < iN)
512 return kFALSE; //second last one
513
514 Bool_t pGoodX = kFALSE;
515 Bool_t pBadY = kFALSE;
516 for (Int_t i0 = 0; i0 < 8; ++i0) {
517 if ((TMath::Abs(GetDX(i0)) < iDXMin ||
518 TMath::Abs(GetPullX(i0)) < iPXMin))
519 pGoodX = kTRUE;
520 if (pGoodX &&
521 (TMath::Abs(GetDY(i0)) < iDYMin ||
522 TMath::Abs(GetPullY(i0)) < iPYMin))
523 return kTRUE;
524 if (TMath::Abs(GetDY(i0)) < 999999)
525 pBadY = kTRUE;
526 if (i0 == 3 && pGoodX && !pBadY)
527 return kTRUE;
528 }
529 return kFALSE;
530 }
531
532 //--------------------------------------------------------------------------------------------------
533 inline Bool_t mithep::Muon::TMLastStation(Double_t iDYMin, Double_t iPYMin,
534 Double_t iDXMin, Double_t iPXMin, UInt_t iN) const
535 {
536 // Check if the muon is matched to its last station (chamber).
537
538 if (NSegments() < iN)
539 return kFALSE; //second last one
540
541 Int_t lLast = LastStation(-3.,-3.); // last required station
542 if (lLast < 0)
543 return kFALSE;
544 if (GetDX(lLast) > 9999.)
545 return kFALSE;
546 lLast = LastStation(); //no requirements
547 if (lLast < 0)
548 return kFALSE;
549 if (!(TMath::Abs(GetDX(lLast)) < iDXMin ||
550 TMath::Abs(GetPullX(lLast)) < iPXMin))
551 return kFALSE;
552 if (lLast == 3)
553 lLast = LastStation(3);
554 if (lLast < 0)
555 return kFALSE;
556 if (!(TMath::Abs(GetDY(lLast)) < iDYMin ||
557 TMath::Abs(GetPullY(lLast)) < iPYMin))
558 return kFALSE;
559 return kTRUE;
560 }
561
562 //--------------------------------------------------------------------------------------------------
563 inline void mithep::Muon::SetDX(Int_t iStation, Double_t iDX)
564 {
565 // Return uncertainty in x in given chamber.
566
567 assert(iStation >= 0 && iStation < 8);
568 fDX[iStation] = iDX;
569 }
570
571 //--------------------------------------------------------------------------------------------------
572 inline void mithep::Muon::SetDY(Int_t iStation, Double_t iDY)
573 {
574 // Return uncertainty in y in given chamber.
575
576 assert(iStation >= 0 && iStation < 8);
577 fDY[iStation] = iDY;
578 }
579
580 //--------------------------------------------------------------------------------------------------
581 inline void mithep::Muon::SetPullX(Int_t iStation, Double_t iPullX)
582 {
583 // Set pull in x in given chamber.
584
585 assert(iStation >= 0 && iStation < 8);
586 fPullX[iStation] = iPullX;
587 }
588
589 //--------------------------------------------------------------------------------------------------
590 inline void mithep::Muon::SetPullY(Int_t iStation, Double_t iPullY)
591 {
592 // Set pull in y in given chamber.
593
594 assert(iStation >= 0 && iStation < 8);
595 fPullY[iStation] = iPullY;
596 }
597
598 //--------------------------------------------------------------------------------------------------
599 inline void mithep::Muon::SetTrackDist(Int_t iStation, Double_t iDist)
600
601 {
602 // Set track distance in given chamber.
603
604 assert(iStation >= 0 && iStation < 8);
605 fTrackDist[iStation] = iDist;
606 }
607
608 //--------------------------------------------------------------------------------------------------
609 inline void mithep::Muon::SetTrackDistErr(Int_t iStation, Double_t iDistErr)
610 {
611 // Set error of track distance in given chamber.
612
613 assert(iStation >= 0 && iStation < 8);
614 fTrackDistErr[iStation] = iDistErr;
615 }
616
617 //--------------------------------------------------------------------------------------------------
618 inline void mithep::Muon::SetNSegments(Int_t iStation, Int_t NSegments)
619 {
620 // Set number of segments in chamber.
621
622 assert(iStation >= 0 && iStation < 8);
623 fNSegments[iStation] = NSegments;
624 }
625
626 //-------------------------------------------------------------------------------------------------
627 inline void mithep::Muon::SetPtEtaPhi(Double_t pt, Double_t eta, Double_t phi)
628 {
629 // Set three-vector
630
631 fMom.Set(pt,eta,phi);
632 ClearMom();
633 }
634 #endif
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