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CTPPSGeometryESModule.cc
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1 /****************************************************************************
2 *
3 * Authors:
4 * Jan Kaspar (jan.kaspar@gmail.com)
5 * Dominik Mierzejewski <dmierzej@cern.ch>
6 *
7 ****************************************************************************/
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48 {
49  public:
51  ~CTPPSGeometryESModule() override {}
52 
53  std::unique_ptr<DetGeomDesc> produceIdealGD( const IdealGeometryRecord& );
54 
55  std::unique_ptr<DetGeomDesc> produceRealGD( const VeryForwardRealGeometryRecord& );
56  std::unique_ptr<CTPPSGeometry> produceRealTG( const VeryForwardRealGeometryRecord& );
57 
58  std::unique_ptr<DetGeomDesc> produceMisalignedGD( const VeryForwardMisalignedGeometryRecord& );
59  std::unique_ptr<CTPPSGeometry> produceMisalignedTG( const VeryForwardMisalignedGeometryRecord& );
60 
61  protected:
63  static void buildDetGeomDesc( DDFilteredView* fv, DetGeomDesc* gd );
64 
65  unsigned int verbosity_;
67 };
68 
69 
70 //----------------------------------------------------------------------------------------------------
71 //----------------------------------------------------------------------------------------------------
72 
74  verbosity_( iConfig.getUntrackedParameter<unsigned int>( "verbosity", 1 ) ),
75  compactViewTag_( iConfig.getParameter<std::string>( "compactViewTag" ) )
76 {
78 
81 
84 }
85 
86 //----------------------------------------------------------------------------------------------------
87 
88 void
91  DetGeomDesc*& newGD )
92 {
93  newGD = new DetGeomDesc( *(idealGD.product()) );
94  std::deque<const DetGeomDesc*> buffer;
95  std::deque<DetGeomDesc*> bufferNew;
96  buffer.emplace_back( idealGD.product() );
97  bufferNew.emplace_back( newGD );
98 
99  while ( !buffer.empty() ) {
100  const DetGeomDesc* sD = buffer.front();
101  DetGeomDesc* pD = bufferNew.front();
102  buffer.pop_front();
103  bufferNew.pop_front();
104 
105  const std::string name = pD->name().name();
106 
107  // Is it sensor? If yes, apply full sensor alignments
108  if ( name == DDD_TOTEM_RP_SENSOR_NAME
110  || name == DDD_CTPPS_PIXELS_SENSOR_NAME ) {
111  unsigned int plId = pD->geographicalID();
112 
113  if ( alignments.isValid() ) {
114  const RPAlignmentCorrectionData& ac = alignments->getFullSensorCorrection( plId );
115  pD->ApplyAlignment( ac );
116  }
117  }
118 
119  // Is it RP box? If yes, apply RP alignments
120  if ( name == DDD_TOTEM_RP_RP_NAME
121  || name == DDD_CTPPS_PIXELS_RP_NAME
122  || name == DDD_CTPPS_DIAMONDS_RP_NAME ) {
123  unsigned int rpId = pD->geographicalID();
124 
125  if ( alignments.isValid() ) {
126  const RPAlignmentCorrectionData& ac = alignments->getRPCorrection( rpId );
127  pD->ApplyAlignment( ac );
128  }
129  }
130 
131  // create and add children
132  for ( unsigned int i = 0; i < sD->components().size(); i++ ) {
133  const DetGeomDesc* sDC = sD->components()[i];
134  buffer.emplace_back( sDC );
135 
136  // create new node with the same information as in sDC and add it as a child of pD
137  DetGeomDesc* cD = new DetGeomDesc( *sDC );
138  pD->addComponent( cD );
139 
140  bufferNew.emplace_back( cD );
141  }
142  }
143 }
144 
145 //----------------------------------------------------------------------------------------------------
146 
147 void
149 {
150  // try to dive into next level
151  if ( !fv->firstChild() ) return;
152 
153  // loop over siblings in the level
154  do {
155  // create new DetGeomDesc node and add it to the parent's (gd) list
156  DetGeomDesc* newGD = new DetGeomDesc( fv );
157 
158  const std::string name = fv->logicalPart().name().name();
159 
160  // strip sensors
161  if ( name == DDD_TOTEM_RP_SENSOR_NAME ) {
162  const std::vector<int>& copy_num = fv->copyNumbers();
163  // check size of copy numubers array
164  if ( copy_num.size() < 3 )
165  throw cms::Exception("DDDTotemRPContruction") << "size of copyNumbers for strip sensor is "
166  << copy_num.size() << ". It must be >= 3.";
167 
168  // extract information
169  const unsigned int decRPId = copy_num[copy_num.size() - 3];
170  const unsigned int arm = decRPId / 100;
171  const unsigned int station = ( decRPId % 100 ) / 10;
172  const unsigned int rp = decRPId % 10;
173  const unsigned int detector = copy_num[copy_num.size() - 1];
174  newGD->setGeographicalID( TotemRPDetId( arm, station, rp, detector ) );
175  }
176 
177  // strip RPs
178  else if ( name == DDD_TOTEM_RP_RP_NAME ) {
179  const unsigned int decRPId = fv->copyno();
180 
181  // check it is a strip RP
182  if ( decRPId < 10000 ) {
183  const unsigned int armIdx = ( decRPId / 100 ) % 10;
184  const unsigned int stIdx = ( decRPId / 10 ) % 10;
185  const unsigned int rpIdx = decRPId % 10;
186  newGD->setGeographicalID( TotemRPDetId( armIdx, stIdx, rpIdx ) );
187  }
188  }
189 
190  // pixel sensors
191  else if ( name == DDD_CTPPS_PIXELS_SENSOR_NAME ) {
192  const std::vector<int>& copy_num = fv->copyNumbers();
193  // check size of copy numubers array
194  if ( copy_num.size() < 4 )
195  throw cms::Exception("DDDTotemRPContruction") << "size of copyNumbers for pixel sensor is "
196  << copy_num.size() << ". It must be >= 4.";
197 
198  // extract information
199  const unsigned int decRPId = copy_num[copy_num.size() - 4] % 10000;
200  const unsigned int arm = decRPId / 100;
201  const unsigned int station = ( decRPId % 100 ) / 10;
202  const unsigned int rp = decRPId % 10;
203  const unsigned int detector = copy_num[copy_num.size() - 2] - 1;
204  newGD->setGeographicalID( CTPPSPixelDetId( arm, station, rp, detector ) );
205  }
206 
207  // pixel RPs
208  else if ( name == DDD_CTPPS_PIXELS_RP_NAME ) {
209  uint32_t decRPId = fv->copyno();
210 
211  // check it is a pixel RP
212  if ( decRPId >= 10000 ) {
213  decRPId = decRPId % 10000;
214  const uint32_t armIdx = ( decRPId / 100 ) % 10;
215  const uint32_t stIdx = ( decRPId / 10 ) % 10;
216  const uint32_t rpIdx = decRPId % 10;
217  newGD->setGeographicalID( CTPPSPixelDetId( armIdx, stIdx, rpIdx ) );
218  }
219  }
220 
221  // diamond sensors
222  else if ( name == DDD_CTPPS_DIAMONDS_SEGMENT_NAME ) {
223  const std::vector<int>& copy_num = fv->copyNumbers();
224 
225  const unsigned int id = copy_num[copy_num.size()-1];
226  const unsigned int arm = copy_num[1]-1;
227  const unsigned int station = 1;
228  const unsigned int rp = 6;
229  const unsigned int plane = ( id / 100 );
230  const unsigned int channel = id % 100;
231  newGD->setGeographicalID( CTPPSDiamondDetId( arm, station, rp, plane, channel ) );
232  }
233 
234  // diamond RPs
235  else if ( name == DDD_CTPPS_DIAMONDS_RP_NAME ) {
236  const std::vector<int>& copy_num = fv->copyNumbers();
237 
238  // check size of copy numubers array
239  if ( copy_num.size() < 2 )
240  throw cms::Exception("DDDTotemRPContruction") << "size of copyNumbers for diamond RP is "
241  << copy_num.size() << ". It must be >= 2.";
242 
243  const unsigned int arm = copy_num[1] - 1;
244  const unsigned int station = 1;
245  const unsigned int rp = 6;
246 
247  newGD->setGeographicalID( CTPPSDiamondDetId( arm, station, rp ) );
248  }
249 
250  // add component
251  gd->addComponent( newGD );
252 
253  // recursion
254  buildDetGeomDesc( fv, newGD );
255  } while ( fv->nextSibling() );
256 
257  // go a level up
258  fv->parent();
259 }
260 
261 //----------------------------------------------------------------------------------------------------
262 
263 std::unique_ptr<DetGeomDesc>
265 {
266  // get the DDCompactView from EventSetup
268  iRecord.get( compactViewTag_, cpv );
269 
270  // create DDFilteredView and apply the filter
272  DDFilteredView fv( *( cpv.product() ), filter );
273 
274  // conversion to DetGeomDesc structure
275  DetGeomDesc* root = new DetGeomDesc( &fv );
276  buildDetGeomDesc( &fv, root );
277 
278  // construct the tree of DetGeomDesc
279  return std::unique_ptr<DetGeomDesc>( const_cast<DetGeomDesc*>( root ) );
280 }
281 
282 //----------------------------------------------------------------------------------------------------
283 
284 std::unique_ptr<DetGeomDesc>
286 {
287  // get the input GeometricalDet
289  iRecord.getRecord<IdealGeometryRecord>().get( idealGD );
290 
291  // load alignments
293  try { iRecord.getRecord<RPRealAlignmentRecord>().get( alignments ); }
294  catch ( cms::Exception& ) {}
295 
296  if ( alignments.isValid() ) {
297  if ( verbosity_ )
298  edm::LogVerbatim("CTPPSGeometryESModule::produceRealGD")
299  << ">> CTPPSGeometryESModule::produceRealGD > Real geometry: "
300  << alignments->getRPMap().size() << " RP and "
301  << alignments->getSensorMap().size() << " sensor alignments applied.";
302  }
303  else {
304  if ( verbosity_ )
305  edm::LogVerbatim("CTPPSGeometryESModule::produceRealGD")
306  << ">> CTPPSGeometryESModule::produceRealGD > Real geometry: No alignments applied.";
307  }
308 
309  DetGeomDesc* newGD = nullptr;
310  applyAlignments( idealGD, alignments, newGD );
311  return std::unique_ptr<DetGeomDesc>( newGD );
312 }
313 
314 //----------------------------------------------------------------------------------------------------
315 
316 std::unique_ptr<DetGeomDesc>
318 {
319  // get the input GeometricalDet
321  iRecord.getRecord<IdealGeometryRecord>().get( idealGD );
322 
323  // load alignments
325  try { iRecord.getRecord<RPMisalignedAlignmentRecord>().get( alignments ); }
326  catch ( cms::Exception& ) {}
327 
328  if ( alignments.isValid() ) {
329  if ( verbosity_ )
330  edm::LogVerbatim("CTPPSGeometryESModule::produceMisalignedGD")
331  << ">> CTPPSGeometryESModule::produceMisalignedGD > Misaligned geometry: "
332  << alignments->getRPMap().size() << " RP and "
333  << alignments->getSensorMap().size() << " sensor alignments applied.";
334  } else {
335  if ( verbosity_ )
336  edm::LogVerbatim("CTPPSGeometryESModule::produceMisalignedGD")
337  << ">> CTPPSGeometryESModule::produceMisalignedGD > Misaligned geometry: No alignments applied.";
338  }
339 
340  DetGeomDesc* newGD = nullptr;
341  applyAlignments( idealGD, alignments, newGD );
342  return std::unique_ptr<DetGeomDesc>( newGD );
343 }
344 
345 //----------------------------------------------------------------------------------------------------
346 
347 std::unique_ptr<CTPPSGeometry>
349 {
351  iRecord.get( gD );
352 
353  return std::make_unique<CTPPSGeometry>( gD.product() );
354 }
355 
356 //----------------------------------------------------------------------------------------------------
357 
358 std::unique_ptr<CTPPSGeometry>
360 {
362  iRecord.get( gD );
363 
364  return std::make_unique<CTPPSGeometry>( gD.product() );
365 }
366 
Detector ID class for TOTEM Si strip detectors.
Definition: TotemRPDetId.h:30
bool parent()
set the current node to the parent node ...
const DDLogicalPart & logicalPart() const
The logical-part of the current node in the filtered-view.
const std::string DDD_CTPPS_PIXELS_RP_NAME
Definition: CTPPSDDDNames.h:22
const N & name() const
Definition: DDBase.h:78
nav_type copyNumbers() const
return the stack of copy numbers
bool nextSibling()
set the current node to the next sibling ...
static void applyAlignments(const edm::ESHandle< DetGeomDesc > &, const edm::ESHandle< RPAlignmentCorrectionsData > &, DetGeomDesc *&)
std::unique_ptr< CTPPSGeometry > produceRealTG(const VeryForwardRealGeometryRecord &)
Builds ideal, real and misaligned geometries.
const mapType & getRPMap() const
returns the map of RP alignment corrections
Event setup record containing the real (actual) geometry information.
void setWhatProduced(T *iThis, const es::Label &iLabel=es::Label())
Definition: ESProducer.h:115
const std::string DDD_CTPPS_DIAMONDS_SEGMENT_NAME
Definition: CTPPSDDDNames.h:17
int copyno() const
Copy number associated with the current node.
RPAlignmentCorrectionData & getRPCorrection(unsigned int id)
returns the correction value from the RP map
void ApplyAlignment(const RPAlignmentCorrectionData &)
alignment
Definition: DetGeomDesc.cc:185
std::unique_ptr< CTPPSGeometry > produceMisalignedTG(const VeryForwardMisalignedGeometryRecord &)
void setGeographicalID(DetId id)
ID stuff.
Definition: DetGeomDesc.h:60
virtual ConstContainer components() const
access to the tree structure
Definition: DetGeomDesc.cc:123
RPAlignmentCorrectionData getFullSensorCorrection(unsigned int id, bool useRPErrors=false) const
void get(HolderT &iHolder) const
Geometrical description of a sensor.
Definition: DetGeomDesc.h:37
Alignment correction or result of alignment procedure for a single RP sensor. Within the geometry des...
DDName name() const
Definition: DetGeomDesc.h:87
std::unique_ptr< DetGeomDesc > produceRealGD(const VeryForwardRealGeometryRecord &)
A DDFilter that always returns true.
Definition: DDFilter.h:27
const std::string DDD_TOTEM_RP_RP_NAME
DDD names of RP volumes.
Definition: CTPPSDDDNames.h:21
virtual DetId geographicalID() const
Definition: DetGeomDesc.h:61
const mapType & getSensorMap() const
returns the map of sensor alignment corrections
const std::string DDD_CTPPS_DIAMONDS_RP_NAME
Definition: CTPPSDDDNames.h:23
#define DEFINE_FWK_EVENTSETUP_MODULE(type)
Definition: ModuleFactory.h:60
std::unique_ptr< DetGeomDesc > produceMisalignedGD(const VeryForwardMisalignedGeometryRecord &)
CTPPSGeometryESModule(const edm::ParameterSet &)
Event setup record containing the misaligned geometry information. It is used for alignment studies o...
static void buildDetGeomDesc(DDFilteredView *fv, DetGeomDesc *gd)
bool firstChild()
set the current node to the first child ...
Detector ID class for CTPPS Timing Diamond detectors. Bits [19:31] : Assigend in CTPPSDetId Calss Bit...
std::unique_ptr< DetGeomDesc > produceIdealGD(const IdealGeometryRecord &)
const std::string DDD_TOTEM_RP_SENSOR_NAME
DDD names of sensors.
Definition: CTPPSDDDNames.h:14
bool isValid() const
Definition: ESHandle.h:47
const std::string DDD_CTPPS_PIXELS_SENSOR_NAME
Definition: CTPPSDDDNames.h:15
T const * product() const
Definition: ESHandle.h:86
void addComponent(DetGeomDesc *)
Definition: DetGeomDesc.cc:160
const std::string & name() const
Returns the name.
Definition: DDName.cc:90