CMS 3D CMS Logo

 All Classes Namespaces Files Functions Variables Typedefs Enumerations Enumerator Properties Friends Macros Pages
PostLS1_ConversionStep_cff.py
Go to the documentation of this file.
1 ### who is using this python file ?
2 ### I found it obsolete, at least in terms of the TrackClusterRemover setting
3 ### now, it is ok, but ....
4 import FWCore.ParameterSet.Config as cms
5 
8 
10 convClusters = trackClusterRemover.clone(
11  maxChi2 = cms.double(30.0),
12  trajectories = cms.InputTag("tobTecStepTracks"),
13  pixelClusters = cms.InputTag("siPixelClusters"),
14  stripClusters = cms.InputTag("siStripClusters"),
15  oldClusterRemovalInfo = cms.InputTag("tobTecStepClusters"),
16  overrideTrkQuals = cms.InputTag('tobTecStepSelector','tobTecStep'),
17  TrackQuality = cms.string('highPurity'),
18 )
19 
20 convLayerPairs = cms.EDProducer("SeedingLayersEDProducer",
21  layerList = cms.vstring('BPix1+BPix2',
22 
23  'BPix2+BPix3',
24  'BPix2+FPix1_pos',
25  'BPix2+FPix1_neg',
26  'BPix2+FPix2_pos',
27  'BPix2+FPix2_neg',
28 
29  'FPix1_pos+FPix2_pos',
30  'FPix1_neg+FPix2_neg',
31 
32  'BPix3+TIB1',
33  'BPix3+TIB2',
34 
35  'TIB1+TID1_pos',
36  'TIB1+TID1_neg',
37  'TIB1+TID2_pos',
38  'TIB1+TID2_neg',
39  'TIB1+TIB2',
40  'TIB1+TIB3',
41 
42  'TIB2+TID1_pos',
43  'TIB2+TID1_neg',
44  'TIB2+TID2_pos',
45  'TIB2+TID2_neg',
46  'TIB2+TIB3',
47  'TIB2+TIB4',
48 
49  'TIB3+TIB4',
50  'TIB3+TOB1',
51  'TIB3+TID1_pos',
52  'TIB3+TID1_neg',
53 
54  'TIB4+TOB1',
55  'TIB4+TOB2',
56 
57  'TOB1+TOB2',
58  'TOB1+TOB3',
59  'TOB1+TEC1_pos',
60  'TOB1+TEC1_neg',
61 
62  'TOB2+TOB3',
63  'TOB2+TOB4',
64  'TOB2+TEC1_pos',
65  'TOB2+TEC1_neg',
66 
67  #NB: re-introduce these combinations when large displaced
68  # tracks, reconstructed only in TOB will be available
69  # For instance think at the OutIn Ecal Seeded tracks
70  #'TOB3+TOB4',
71  #'TOB3+TOB5',
72  #'TOB3+TEC1_pos',
73  #'TOB3+TEC1_neg',
74  #
75  #'TOB4+TOB5',
76  #'TOB4+TOB6',
77  #
78  #'TOB5+TOB6',
79 
80  'TID1_pos+TID2_pos',
81  'TID2_pos+TID3_pos',
82  'TID3_pos+TEC1_pos',
83 
84  'TID1_neg+TID2_neg',
85  'TID2_neg+TID3_neg',
86  'TID3_neg+TEC1_neg',
87 
88  'TEC1_pos+TEC2_pos',
89  'TEC2_pos+TEC3_pos',
90  'TEC3_pos+TEC4_pos',
91  'TEC4_pos+TEC5_pos',
92  'TEC5_pos+TEC6_pos',
93  'TEC6_pos+TEC7_pos',
94  'TEC7_pos+TEC8_pos',
95 
96  'TEC1_neg+TEC2_neg',
97  'TEC2_neg+TEC3_neg',
98  'TEC3_neg+TEC4_neg',
99  'TEC4_neg+TEC5_neg',
100  'TEC5_neg+TEC6_neg',
101  'TEC6_neg+TEC7_neg',
102  'TEC7_neg+TEC8_neg'
103  #other combinations could be added
104  ),
105 
106  BPix = cms.PSet(
107  TTRHBuilder = cms.string('TTRHBuilderWithoutAngle4PixelPairs'),
108  HitProducer = cms.string('siPixelRecHits'),
109  skipClusters = cms.InputTag('convClusters'),
110  ),
111  FPix = cms.PSet(
112  TTRHBuilder = cms.string('TTRHBuilderWithoutAngle4PixelPairs'),
113  HitProducer = cms.string('siPixelRecHits'),
114  skipClusters = cms.InputTag('convClusters'),
115  ),
116  TIB1 = cms.PSet(
117  TTRHBuilder = cms.string('WithTrackAngle'),
118  matchedRecHits = cms.InputTag("siStripMatchedRecHits","matchedRecHit"),
119  skipClusters = cms.InputTag('convClusters'),
120  ),
121  TIB2 = cms.PSet(
122  TTRHBuilder = cms.string('WithTrackAngle'),
123  matchedRecHits = cms.InputTag("siStripMatchedRecHits","matchedRecHit"),
124  skipClusters = cms.InputTag('convClusters'),
125  ),
126  TIB3 = cms.PSet(
127  TTRHBuilder = cms.string('WithTrackAngle'),
128  rphiRecHits = cms.InputTag("siStripMatchedRecHits","rphiRecHit"),
129  skipClusters = cms.InputTag('convClusters'),
130  ),
131  TIB4 = cms.PSet(
132  TTRHBuilder = cms.string('WithTrackAngle'),
133  rphiRecHits = cms.InputTag("siStripMatchedRecHits","rphiRecHit"),
134  skipClusters = cms.InputTag('convClusters'),
135  ),
136  TID1 = cms.PSet(
137  useSimpleRphiHitsCleaner = cms.bool(False),
138  matchedRecHits = cms.InputTag("siStripMatchedRecHits","matchedRecHit"),
139  useRingSlector = cms.bool(True),
140  TTRHBuilder = cms.string('WithTrackAngle'),
141  maxRing = cms.int32(2),
142  minRing = cms.int32(1),
143  skipClusters = cms.InputTag('convClusters'),
144  ),
145  TID2 = cms.PSet(
146  useSimpleRphiHitsCleaner = cms.bool(False),
147  matchedRecHits = cms.InputTag("siStripMatchedRecHits","matchedRecHit"),
148  useRingSlector = cms.bool(True),
149  TTRHBuilder = cms.string('WithTrackAngle'),
150  maxRing = cms.int32(2),
151  minRing = cms.int32(1),
152  skipClusters = cms.InputTag('convClusters'),
153  ),
154  TID3 = cms.PSet(
155  useSimpleRphiHitsCleaner = cms.bool(False),
156  matchedRecHits = cms.InputTag("siStripMatchedRecHits","matchedRecHit"),
157  useRingSlector = cms.bool(True),
158  TTRHBuilder = cms.string('WithTrackAngle'),
159  maxRing = cms.int32(2),
160  minRing = cms.int32(1),
161  skipClusters = cms.InputTag('convClusters'),
162  ),
163  TEC = cms.PSet(
164  useSimpleRphiHitsCleaner = cms.bool(False),
165  minRing = cms.int32(1),
166  matchedRecHits = cms.InputTag("siStripMatchedRecHits","matchedRecHit"),
167  useRingSlector = cms.bool(True),
168  TTRHBuilder = cms.string('WithTrackAngle'),
169  rphiRecHits = cms.InputTag("siStripMatchedRecHits","rphiRecHitUnmatched"),
170  maxRing = cms.int32(7),
171  stereoRecHits = cms.InputTag("siStripMatchedRecHits","stereoRecHitUnmatched"),
172  skipClusters = cms.InputTag('convClusters'),
173  ),
174  TOB1 = cms.PSet(
175  matchedRecHits = cms.InputTag("siStripMatchedRecHits","matchedRecHit"),
176  TTRHBuilder = cms.string('WithTrackAngle'),
177  skipClusters = cms.InputTag('convClusters'),
178  ),
179  TOB2 = cms.PSet(
180  matchedRecHits = cms.InputTag("siStripMatchedRecHits","matchedRecHit"),
181  TTRHBuilder = cms.string('WithTrackAngle'),
182  skipClusters = cms.InputTag('convClusters'),
183  ),
184  TOB3 = cms.PSet(
185  TTRHBuilder = cms.string('WithTrackAngle'),
186  rphiRecHits = cms.InputTag("siStripMatchedRecHits","rphiRecHit"),
187  skipClusters = cms.InputTag('convClusters'),
188  ),
189  TOB4 = cms.PSet(
190  TTRHBuilder = cms.string('WithTrackAngle'),
191  rphiRecHits = cms.InputTag("siStripMatchedRecHits","rphiRecHit"),
192  skipClusters = cms.InputTag('convClusters'),
193  ),
194  TOB5 = cms.PSet(
195  TTRHBuilder = cms.string('WithTrackAngle'),
196  rphiRecHits = cms.InputTag("siStripMatchedRecHits","rphiRecHit"),
197  skipClusters = cms.InputTag('convClusters'),
198  ),
199  TOB6 = cms.PSet(
200  TTRHBuilder = cms.string('WithTrackAngle'),
201  rphiRecHits = cms.InputTag("siStripMatchedRecHits","rphiRecHit"),
202  skipClusters = cms.InputTag('convClusters'),
203  )
204  )
205 
206 
207 photonConvTrajSeedFromSingleLeg.TrackRefitter = cms.InputTag('generalTracks')
208 photonConvTrajSeedFromSingleLeg.primaryVerticesTag = cms.InputTag('pixelVertices')
209 #photonConvTrajSeedFromQuadruplets.TrackRefitter = cms.InputTag('generalTracks')
210 #photonConvTrajSeedFromQuadruplets.primaryVerticesTag = cms.InputTag('pixelVertices')
211 
212 
213 # TRACKER DATA CONTROL
214 
215 # QUALITY CUTS DURING TRACK BUILDING
217 convCkfTrajectoryFilter = TrackingTools.TrajectoryFiltering.TrajectoryFilter_cff.CkfBaseTrajectoryFilter_block.clone(
218  maxLostHits = 1,
219  minimumNumberOfHits = 3,
220  minPt = 0.1
221  )
222 
223 # TRACK BUILDING
225 convCkfTrajectoryBuilder = RecoTracker.CkfPattern.GroupedCkfTrajectoryBuilder_cfi.GroupedCkfTrajectoryBuilder.clone(
226  trajectoryFilter = cms.PSet(refToPSet_ = cms.string('convCkfTrajectoryFilter')),
227  minNrOfHitsForRebuild = 3,
228  clustersToSkip = cms.InputTag('convClusters'),
229  maxCand = 2
230  )
231 
232 # MAKING OF TRACK CANDIDATES
234 convTrackCandidates = RecoTracker.CkfPattern.CkfTrackCandidates_cfi.ckfTrackCandidates.clone(
235  src = cms.InputTag('photonConvTrajSeedFromSingleLeg:convSeedCandidates'),
236  TrajectoryBuilderPSet = cms.PSet(refToPSet_ = cms.string('convCkfTrajectoryBuilder'))
237 )
238 
240 convStepFitterSmoother = TrackingTools.TrackFitters.RungeKuttaFitters_cff.KFFittingSmootherWithOutliersRejectionAndRK.clone(
241  ComponentName = 'convStepFitterSmoother',
242  EstimateCut = 30,
243  Smoother = cms.string('convStepRKSmoother')
244  )
245 
246 convStepRKTrajectorySmoother = TrackingTools.TrackFitters.RungeKuttaFitters_cff.RKTrajectorySmoother.clone(
247  ComponentName = cms.string('convStepRKSmoother'),
248  errorRescaling = 10.0
249  )
250 
251 
252 # TRACK FITTING
254 convStepTracks = RecoTracker.TrackProducer.TrackProducer_cfi.TrackProducer.clone(
255  src = 'convTrackCandidates',
256  AlgorithmName = cms.string('conversionStep'),
257  Fitter = 'convStepFitterSmoother',
258  )
259 
260 
261 import RecoTracker.FinalTrackSelectors.multiTrackSelector_cfi
262 convStepSelector = RecoTracker.FinalTrackSelectors.multiTrackSelector_cfi.multiTrackSelector.clone(
263  src='convStepTracks',
264  trackSelectors= cms.VPSet(
265  RecoTracker.FinalTrackSelectors.multiTrackSelector_cfi.looseMTS.clone(
266  name = 'convStepLoose',
267  applyAdaptedPVCuts = False,
268  chi2n_par = 3.0,
269  res_par = ( 0.003, 0.001 ),
270  minNumberLayers = 3,
271  maxNumberLostLayers = 1,
272  minNumber3DLayers = 1,
273  d0_par1 = ( 5., 8.0 ),
274  dz_par1 = ( 5., 8.0 ),
275  d0_par2 = ( 5., 8.0 ),
276  dz_par2 = ( 5., 8.0 )
277  ),
278  RecoTracker.FinalTrackSelectors.multiTrackSelector_cfi.tightMTS.clone(
279  name = 'convStepTight',
280  preFilterName = 'convStepLoose',
281  chi2n_par = 2.5,
282  res_par = ( 0.003, 0.001 ),
283  minNumberLayers = 3,
284  maxNumberLostLayers = 1,
285  minNumber3DLayers = 1,
286  d0_par1 = ( 5., 8.0 ),
287  dz_par1 = ( 5., 8.0 ),
288  d0_par2 = ( 5., 8.0 ),
289  dz_par2 = ( 5., 8.0 )
290  ),
291  RecoTracker.FinalTrackSelectors.multiTrackSelector_cfi.highpurityMTS.clone(
292  name = 'convStep',
293  preFilterName = 'convStepTight',
294  chi2n_par = 2.0,
295  res_par = ( 0.003, 0.001 ),
296  minNumberLayers = 3,
297  maxNumberLostLayers = 1,
298  minNumber3DLayers = 1,
299  d0_par1 = ( 5., 8.0 ),
300  dz_par1 = ( 5., 8.0 ),
301  d0_par2 = ( 5., 8.0 ),
302  dz_par2 = ( 5., 8.0 )
303  ),
304  ) #end of vpset
305  ) #end of clone
306 
307 ConvStep = cms.Sequence( convClusters
308  + convLayerPairs
309  + photonConvTrajSeedFromSingleLeg
310  + convTrackCandidates
311  + convStepTracks
312  + convStepSelector
313  #+ Conv2Step #full quad-seeding sequence
314  )
315 
316 
317 ### Quad-seeding sequence disabled (#+ Conv2Step)
318 # if enabled, the quad-seeded tracks have to be merged with the single-leg seeded tracks
319 # in RecoTracker.FinalTrackSelectors.MergeTrackCollections_cff change:
320 ###
321 #conversionStepTracks = RecoTracker.FinalTrackSelectors.trackListMerger_cfi.trackListMerger.clone(
322 # TrackProducers = cms.VInputTag(cms.InputTag('convStepTracks')),
323 # hasSelector=cms.vint32(1),
324 # selectedTrackQuals = cms.VInputTag(cms.InputTag("convStepSelector","convStep")
325 # ),
326 # setsToMerge = cms.VPSet( cms.PSet( tLists=cms.vint32(1), pQual=cms.bool(True) )
327 # ),
328 # copyExtras = True,
329 # makeReKeyedSeeds = cms.untracked.bool(False)
330 # )
331 ###
332 # TO this:
333 ###
334 #conversionStepTracks = RecoTracker.FinalTrackSelectors.trackListMerger_cfi.trackListMerger.clone(
335 # TrackProducers = cms.VInputTag(
336 # cms.InputTag('convStepTracks'),
337 # cms.InputTag('conv2StepTracks')
338 # ),
339 # hasSelector=cms.vint32(1,1),
340 # selectedTrackQuals = cms.VInputTag(
341 # cms.InputTag("convStepSelector","convStep"),
342 # cms.InputTag("conv2StepSelector","conv2Step")
343 # ),
344 # setsToMerge = cms.VPSet( cms.PSet( tLists=cms.vint32(0,1), pQual=cms.bool(True) )
345 # ),
346 # copyExtras = True,
347 # makeReKeyedSeeds = cms.untracked.bool(False)
348 # )
349 ###