Belle II Software  release-08-02-06
SVDDQMHitTimeModule Class Reference

This module to design collect the svd hit time for different detectors trigger timing and physics processes. More...

#include <SVDDQMHitTimeModule.h>

Inheritance diagram for SVDDQMHitTimeModule:
Collaboration diagram for SVDDQMHitTimeModule:

Public Types

enum  EModulePropFlags {
  c_Input = 1 ,
  c_Output = 2 ,
  c_ParallelProcessingCertified = 4 ,
  c_HistogramManager = 8 ,
  c_InternalSerializer = 16 ,
  c_TerminateInAllProcesses = 32 ,
  c_DontCollectStatistics = 64
}
 Each module can be tagged with property flags, which indicate certain features of the module. More...
 
typedef ModuleCondition::EAfterConditionPath EAfterConditionPath
 Forward the EAfterConditionPath definition from the ModuleCondition.
 

Public Member Functions

 SVDDQMHitTimeModule ()
 Default constructor.
 
virtual ~SVDDQMHitTimeModule ()
 Destructor.
 
virtual void defineHisto () override
 Definition of histograms.
 
virtual void initialize () override
 Initialize the module.
 
virtual void beginRun () override
 This method is called for each run.
 
virtual void event () override
 This method is called for each event. More...
 
virtual void endRun () override
 Function to process end_run record.
 
virtual void terminate () override
 Function to terminate module.
 
virtual std::vector< std::string > getFileNames (bool outputFiles)
 Return a list of output filenames for this modules. More...
 
const std::string & getName () const
 Returns the name of the module. More...
 
const std::string & getType () const
 Returns the type of the module (i.e. More...
 
const std::string & getPackage () const
 Returns the package this module is in.
 
const std::string & getDescription () const
 Returns the description of the module.
 
void setName (const std::string &name)
 Set the name of the module. More...
 
void setPropertyFlags (unsigned int propertyFlags)
 Sets the flags for the module properties. More...
 
LogConfiggetLogConfig ()
 Returns the log system configuration.
 
void setLogConfig (const LogConfig &logConfig)
 Set the log system configuration.
 
void setLogLevel (int logLevel)
 Configure the log level.
 
void setDebugLevel (int debugLevel)
 Configure the debug messaging level.
 
void setAbortLevel (int abortLevel)
 Configure the abort log level.
 
void setLogInfo (int logLevel, unsigned int logInfo)
 Configure the printed log information for the given level. More...
 
void if_value (const std::string &expression, const std::shared_ptr< Path > &path, EAfterConditionPath afterConditionPath=EAfterConditionPath::c_End)
 Add a condition to the module. More...
 
void if_false (const std::shared_ptr< Path > &path, EAfterConditionPath afterConditionPath=EAfterConditionPath::c_End)
 A simplified version to add a condition to the module. More...
 
void if_true (const std::shared_ptr< Path > &path, EAfterConditionPath afterConditionPath=EAfterConditionPath::c_End)
 A simplified version to set the condition of the module. More...
 
bool hasCondition () const
 Returns true if at least one condition was set for the module.
 
const ModuleConditiongetCondition () const
 Return a pointer to the first condition (or nullptr, if none was set)
 
const std::vector< ModuleCondition > & getAllConditions () const
 Return all set conditions for this module.
 
bool evalCondition () const
 If at least one condition was set, it is evaluated and true returned if at least one condition returns true. More...
 
std::shared_ptr< PathgetConditionPath () const
 Returns the path of the last true condition (if there is at least one, else reaturn a null pointer). More...
 
Module::EAfterConditionPath getAfterConditionPath () const
 What to do after the conditional path is finished. More...
 
std::vector< std::shared_ptr< Path > > getAllConditionPaths () const
 Return all condition paths currently set (no matter if the condition is true or not).
 
bool hasProperties (unsigned int propertyFlags) const
 Returns true if all specified property flags are available in this module. More...
 
bool hasUnsetForcedParams () const
 Returns true and prints error message if the module has unset parameters which the user has to set in the steering file.
 
const ModuleParamListgetParamList () const
 Return module param list.
 
template<typename T >
ModuleParam< T > & getParam (const std::string &name) const
 Returns a reference to a parameter. More...
 
bool hasReturnValue () const
 Return true if this module has a valid return value set.
 
int getReturnValue () const
 Return the return value set by this module. More...
 
std::shared_ptr< PathElementclone () const override
 Create an independent copy of this module. More...
 
std::shared_ptr< boost::python::list > getParamInfoListPython () const
 Returns a python list of all parameters. More...
 

Static Public Member Functions

static void exposePythonAPI ()
 Exposes methods of the Module class to Python.
 

Protected Member Functions

virtual void def_initialize ()
 Wrappers to make the methods without "def_" prefix callable from Python. More...
 
virtual void def_beginRun ()
 Wrapper method for the virtual function beginRun() that has the implementation to be used in a call from Python.
 
virtual void def_event ()
 Wrapper method for the virtual function event() that has the implementation to be used in a call from Python.
 
virtual void def_endRun ()
 This method can receive that the current run ends as a call from the Python side. More...
 
virtual void def_terminate ()
 Wrapper method for the virtual function terminate() that has the implementation to be used in a call from Python.
 
void setDescription (const std::string &description)
 Sets the description of the module. More...
 
void setType (const std::string &type)
 Set the module type. More...
 
template<typename T >
void addParam (const std::string &name, T &paramVariable, const std::string &description, const T &defaultValue)
 Adds a new parameter to the module. More...
 
template<typename T >
void addParam (const std::string &name, T &paramVariable, const std::string &description)
 Adds a new enforced parameter to the module. More...
 
void setReturnValue (int value)
 Sets the return value for this module as integer. More...
 
void setReturnValue (bool value)
 Sets the return value for this module as bool. More...
 
void setParamList (const ModuleParamList &params)
 Replace existing parameter list.
 

Private Member Functions

std::list< ModulePtrgetModules () const override
 no submodules, return empty list
 
std::string getPathString () const override
 return the module name.
 
void setParamPython (const std::string &name, const boost::python::object &pyObj)
 Implements a method for setting boost::python objects. More...
 
void setParamPythonDict (const boost::python::dict &dictionary)
 Implements a method for reading the parameter values from a boost::python dictionary. More...
 

Private Attributes

std::string m_histogramDirectoryName
 Name of the histogram directory in ROOT file.
 
std::string m_storeSVDClustersName
 SVDClusters StoreArray name.
 
std::string m_storeSVDEventInfoName
 SVDEventInfo StoreObjPtry name.
 
bool m_desynchSVDTime = false
 if TRUE: svdTime back in SVD time reference
 
bool m_3Samples = false
 if true enable 3 samples histograms analysis
 
StoreObjPtr< TRGSummarym_objTrgSummary
 Trigger Summary data object.
 
int m_L1TimingSrc = -1
 L1 timing source from getTimeType() in TRGSummary See ETimingTYpe in mdst/dataobjects/include/TRGSummary.h (but information is obsolete...) (2019/11/11) release-04-00-02, return values from getTimType() are 0=ecltrg, 3=cdctrg, 5=delayed Bhabha, 7=random trigger from gdl, (toptrg is undefined yet)
 
StoreObjPtr< SoftwareTriggerResultm_TrgResult
 Trigger selection data object.
 
StoreObjPtr< EventT0m_eventT0
 EventT0 data object.
 
StoreObjPtr< SVDEventInfom_svdEventInfo
 SVDEventInfo data object.
 
StoreArray< SVDClusterm_clusters
 Store array for clusters.
 
TH1F * m_l3v_bhabha_L1_ECLTRG {nullptr}
 svd time histogram for bhabha events wrt the ECL trigger time
 
TH1F * m_l3vEvtT0_bhabha_L1_ECLTRG {nullptr}
 svd time histogram for bhabha events wrt the ECL trigger time
 
TH1F * m_l3v_hadron_L1_ECLTRG {nullptr}
 svd time histogram for hadronic events wrt the ECL trigger time
 
TH1F * m_l3vEvtT0_hadron_L1_ECLTRG {nullptr}
 svd time histogram for hadronic events wrt the ECL trigger time
 
TH1F * m_l3v_mumu_L1_ECLTRG {nullptr}
 svd time histogram for mu mu events wrt the ECL trigger time
 
TH1F * m_l3vEvtT0_mumu_L1_ECLTRG {nullptr}
 svd time histogram for mu mu events wrt the ECL trigger time
 
TH1F * m_l3v_bhabha_L1_CDCTRG {nullptr}
 svd time histogram for bhabha events wrt the CDC trigger time
 
TH1F * m_l3vEvtT0_bhabha_L1_CDCTRG {nullptr}
 svd time histogram for bhabha events wrt the CDC trigger time
 
TH1F * m_l3v_hadron_L1_CDCTRG {nullptr}
 svd time histogram for hadronic events wrt the CDC trigger time
 
TH1F * m_l3vEvtT0_hadron_L1_CDCTRG {nullptr}
 svd time histogram for hadronic events wrt the CDC trigger time
 
TH1F * m_l3v_mumu_L1_CDCTRG {nullptr}
 svd time histogram for mu mu events wrt the CDC trigger time
 
TH1F * m_l3vEvtT0_mumu_L1_CDCTRG {nullptr}
 svd time histogram for mu mu events wrt the CDC trigger time
 
TH1F * m_SVDEventT03Sample {nullptr}
 SVD event T0 for 3 sampels.
 
TH1F * m_SVDEventT06Sample {nullptr}
 SVD event T0 for 6 sampels.
 
TH1F * m_SVDEventT03Sample_bhabha_L1_ECLTRG {nullptr}
 svd eventT0 histogram for bhabha events wrt the ECL trigger time for 3 samples
 
TH1F * m_SVDEventT03Sample_hadron_L1_ECLTRG {nullptr}
 svd eventT0 histogram for hadronic events wrt the ECL trigger time for 3 samples
 
TH1F * m_SVDEventT03Sample_mumu_L1_ECLTRG {nullptr}
 svd eventT0 histogram for mu mu events wrt the ECL trigger time for 3 samples
 
TH1F * m_SVDEventT03Sample_bhabha_L1_CDCTRG {nullptr}
 svd eventT0 histogram for bhabha events wrt the CDC trigger time for 3 samples
 
TH1F * m_SVDEventT03Sample_hadron_L1_CDCTRG {nullptr}
 svd eventT0 histogram for hadronic events wrt the CDC trigger time for 3 samples
 
TH1F * m_SVDEventT03Sample_mumu_L1_CDCTRG {nullptr}
 svd eventT0 histogram for mu mu events wrt the CDC trigger time for 3 samples
 
TH1F * m_SVDEventT06Sample_bhabha_L1_ECLTRG {nullptr}
 svd eventT0 histogram for bhabha events wrt the ECL trigger time for 6 samples
 
TH1F * m_SVDEventT06Sample_hadron_L1_ECLTRG {nullptr}
 svd eventT0 histogram for hadronic events wrt the ECL trigger time for 6 samples
 
TH1F * m_SVDEventT06Sample_mumu_L1_ECLTRG {nullptr}
 svd eventT0 histogram for mu mu events wrt the ECL trigger time for 6 samples
 
TH1F * m_SVDEventT06Sample_bhabha_L1_CDCTRG {nullptr}
 svd eventT0 histogram for bhabha events wrt the CDC trigger time for 6 samples
 
TH1F * m_SVDEventT06Sample_hadron_L1_CDCTRG {nullptr}
 svd EventT0 histogram for hadronic events wrt the CDC trigger time for 6 samples
 
TH1F * m_SVDEventT06Sample_mumu_L1_CDCTRG {nullptr}
 svd eventT0 histogram for mu mu events wrt the CDC trigger time for 6 samples
 
std::string m_name
 The name of the module, saved as a string (user-modifiable)
 
std::string m_type
 The type of the module, saved as a string.
 
std::string m_package
 Package this module is found in (may be empty).
 
std::string m_description
 The description of the module.
 
unsigned int m_propertyFlags
 The properties of the module as bitwise or (with |) of EModulePropFlags.
 
LogConfig m_logConfig
 The log system configuration of the module.
 
ModuleParamList m_moduleParamList
 List storing and managing all parameter of the module.
 
bool m_hasReturnValue
 True, if the return value is set.
 
int m_returnValue
 The return value.
 
std::vector< ModuleConditionm_conditions
 Module condition, only non-null if set.
 

Detailed Description

This module to design collect the svd hit time for different detectors trigger timing and physics processes.

Definition at line 37 of file SVDDQMHitTimeModule.h.

Member Enumeration Documentation

◆ EModulePropFlags

enum EModulePropFlags
inherited

Each module can be tagged with property flags, which indicate certain features of the module.

Enumerator
c_Input 

This module is an input module (reads data).

c_Output 

This module is an output module (writes data).

c_ParallelProcessingCertified 

This module can be run in parallel processing mode safely (All I/O must be done through the data store, in particular, the module must not write any files.)

c_HistogramManager 

This module is used to manage histograms accumulated by other modules.

c_InternalSerializer 

This module is an internal serializer/deserializer for parallel processing.

c_TerminateInAllProcesses 

When using parallel processing, call this module's terminate() function in all processes().

This will also ensure that there is exactly one process (single-core if no parallel modules found) or at least one input, one main and one output process.

c_DontCollectStatistics 

No statistics is collected for this module.

Definition at line 77 of file Module.h.

Member Function Documentation

◆ clone()

std::shared_ptr< PathElement > clone ( ) const
overridevirtualinherited

Create an independent copy of this module.

Note that parameters are shared, so changing them on a cloned module will also affect the original module.

Implements PathElement.

Definition at line 179 of file Module.cc.

◆ def_endRun()

virtual void def_endRun ( )
inlineprotectedvirtualinherited

This method can receive that the current run ends as a call from the Python side.

For regular C++-Modules that forwards the call to the regular endRun() method.

Reimplemented in PyModule.

Definition at line 439 of file Module.h.

◆ def_initialize()

virtual void def_initialize ( )
inlineprotectedvirtualinherited

Wrappers to make the methods without "def_" prefix callable from Python.

Overridden in PyModule. Wrapper method for the virtual function initialize() that has the implementation to be used in a call from Python.

Reimplemented in PyModule.

Definition at line 420 of file Module.h.

◆ evalCondition()

bool evalCondition ( ) const
inherited

If at least one condition was set, it is evaluated and true returned if at least one condition returns true.

If no condition or result value was defined, the method returns false. Otherwise, the condition is evaluated and true returned, if at least one condition returns true. To speed up the evaluation, the condition strings were already parsed in the method if_value().

Returns
True if at least one condition and return value exists and at least one condition expression was evaluated to true.

Definition at line 96 of file Module.cc.

◆ event()

void event ( void  )
overridevirtual

This method is called for each event.

All processing of the event takes place in this method.

Reimplemented from HistoModule.

Definition at line 238 of file SVDDQMHitTimeModule.cc.

239 {
240 
241  if (!m_TrgResult.isValid()) {
242  B2WARNING("Missing TRGSummary, SVDDQMHitTime is skipped.");
243  return;
244  }
245  if (!m_svdEventInfo.isValid()) {
246  B2WARNING("Missing SVDEventInfo, SVDDQMHitTime is skipped.");
247  return;
248  }
249 
250 
251 
252  if (!m_clusters.isValid()) {
253  B2WARNING("Missing SVDClusters, SVDDQMHitTime is skipped.");
254  return;
255  }
256 
257 
258  if (!m_objTrgSummary.isValid()) {
259  B2WARNING("TRGSummary object not available but required to indicate which detector provided the L1 trigger time");
260  return;
261  } else {
262  m_L1TimingSrc = m_objTrgSummary->getTimType();
263  }
264 
265  bool Is_ECL_L1TriggerSource = false ;
266  bool Is_CDC_L1TriggerSource = false ;
267  if (m_L1TimingSrc == TRGSummary::ETimingType::TTYP_ECL) { // for L1 timing source is "ecl trigger"
268  Is_ECL_L1TriggerSource = true ;
269  } else if (m_L1TimingSrc == TRGSummary::ETimingType::TTYP_CDC) { // for L1 timing source is "cdc trigger"
270  Is_CDC_L1TriggerSource = true ;
271  }
272  // else if(m_L1TimingSrc==ETimingType::TTYP_DPHY){ // for L1 timing source is "delayed Bhabha" }
273  B2DEBUG(20, "Is_ECL_L1TriggerSource = " << Is_ECL_L1TriggerSource) ;
274  B2DEBUG(20, "Is_CDC_L1TriggerSource= " << Is_CDC_L1TriggerSource) ;
275 
276 
277  if (!m_TrgResult.isValid()) {
278  B2WARNING("SoftwareTriggerResult object not available but require to select bhabha/mumu/hadron events for this module");
279  return;
280  }
281 
282  const std::map<std::string, int>& fresults = m_TrgResult->getResults();
283  if ((fresults.find("software_trigger_cut&skim&accept_bhabha") == fresults.end()) ||
284  (fresults.find("software_trigger_cut&skim&accept_mumu_2trk") == fresults.end()) ||
285  (fresults.find("software_trigger_cut&skim&accept_hadron") == fresults.end())) {
286  B2WARNING("SVDDQMHitTimeModule: Can't find required bhabha or mumu or hadron trigger identifier");
287  return;
288  }
289 
290 
291 
292  // determine if the event was part of the hadron skim or bhabha skim or mumu skim
293  const bool IsEvtAcceptedBhabha = (m_TrgResult->getResult("software_trigger_cut&skim&accept_bhabha") ==
295  const bool IsEvtAcceptedHadron = (m_TrgResult->getResult("software_trigger_cut&skim&accept_hadron") ==
297  const bool IsEvtAcceptedMumu = (m_TrgResult->getResult("software_trigger_cut&skim&accept_mumu_2trk") ==
299 
300 
301  B2DEBUG(20, "bhabha trigger result = " << static_cast<std::underlying_type<SoftwareTriggerCutResult>::type>
302  (m_TrgResult->getResult("software_trigger_cut&skim&accept_bhabha"))) ;
303  B2DEBUG(20, "hadron trigger result = " << static_cast<std::underlying_type<SoftwareTriggerCutResult>::type>
304  (m_TrgResult->getResult("software_trigger_cut&skim&accept_hadron"))) ;
305  B2DEBUG(20, "mu mu trigger result = " << static_cast<std::underlying_type<SoftwareTriggerCutResult>::type>
306  (m_TrgResult->getResult("software_trigger_cut&skim&accept_mumu_2trk"))) ;
307  B2DEBUG(20, "bhabha trigger comparison bool = " << IsEvtAcceptedBhabha) ;
308  B2DEBUG(20, "hadron trigger comparison bool = " << IsEvtAcceptedHadron) ;
309  B2DEBUG(20, "mumu trigger comparison bool = " << IsEvtAcceptedMumu) ;
310 
311 
312  // get EventT0 if present and valid
313  double eventT0 = -1000;
314  if (m_eventT0.isValid())
315  if (m_eventT0->hasEventT0())
316  eventT0 = m_eventT0->getEventT0();
317 
318  // if svd time in SVD time reference is shown, eventT0 is also synchronized with SVD reference frame, firstFrame = 0
319  if (m_desynchSVDTime && m_svdEventInfo.isValid())
320  eventT0 = eventT0 - m_svdEventInfo->getSVD2FTSWTimeShift(0);
321 
322  int nSamples = m_svdEventInfo->getNSamples();
323 
324  if (m_eventT0->hasTemporaryEventT0(Const::EDetector::SVD)) {
325  const auto bestSVDEvtT0 = m_eventT0->getBestSVDTemporaryEventT0() ;
326  // There is only one estimate of SVD EVentT0 for the moment
327  float svdEventT0 = bestSVDEvtT0->eventT0 ;
328 
329  if (m_3Samples) {
330  if (nSamples == 3) {
331  m_SVDEventT03Sample->Fill(svdEventT0);
332  } else {
333  m_SVDEventT06Sample->Fill(svdEventT0);
334  }
335 
336  if (Is_ECL_L1TriggerSource) {
337  if (IsEvtAcceptedBhabha) {
338  if (nSamples == 3) {
339  m_SVDEventT03Sample_bhabha_L1_ECLTRG->Fill(svdEventT0);
340  } else {
341  m_SVDEventT06Sample_bhabha_L1_ECLTRG->Fill(svdEventT0);
342  }
343  }
344  if (IsEvtAcceptedHadron) {
345  if (nSamples == 3) {
346  m_SVDEventT03Sample_hadron_L1_ECLTRG->Fill(svdEventT0);
347  } else {
348  m_SVDEventT06Sample_hadron_L1_ECLTRG->Fill(svdEventT0);
349  }
350  }
351  if (IsEvtAcceptedMumu) {
352  if (nSamples == 3) {
353  m_SVDEventT03Sample_mumu_L1_ECLTRG->Fill(svdEventT0);
354  } else {
355  m_SVDEventT06Sample_mumu_L1_ECLTRG->Fill(svdEventT0);
356  }
357  }
358  }
359 
360  // Fill the plots that used the CDC trigger as the L1 timing source
361  else if (Is_CDC_L1TriggerSource) {
362  if (IsEvtAcceptedBhabha) {
363  if (nSamples == 3) {
364  m_SVDEventT03Sample_bhabha_L1_CDCTRG->Fill(svdEventT0);
365  } else {
366  m_SVDEventT06Sample_bhabha_L1_CDCTRG->Fill(svdEventT0);
367  }
368  }
369  if (IsEvtAcceptedHadron) {
370  if (nSamples == 3) {
371  m_SVDEventT03Sample_hadron_L1_CDCTRG->Fill(svdEventT0);
372  } else {
373  m_SVDEventT06Sample_hadron_L1_CDCTRG->Fill(svdEventT0);
374  }
375  }
376  if (IsEvtAcceptedMumu) {
377  if (nSamples == 3) {
378  m_SVDEventT03Sample_mumu_L1_CDCTRG->Fill(svdEventT0);
379  } else {
380  m_SVDEventT06Sample_mumu_L1_CDCTRG->Fill(svdEventT0);
381  }
382  }
383  }
384  }
385  }
386 
387  //loop on clusters
388  for (const SVDCluster& cluster : m_clusters) {
389 
390  //skip all non-L3 clusters
391  if (cluster.getSensorID().getLayerNumber() != 3) continue;
392  //skip all U-side clusters
393  if (cluster.isUCluster()) continue;
394 
395  double time = cluster.getClsTime();
396 
397  //if svd time is shown in SVD time reference we need to desynchronize (eventT0 is, instead, synchronized, see a few lines above
398  if (m_desynchSVDTime && m_svdEventInfo.isValid())
399  time = time - m_svdEventInfo->getSVD2FTSWTimeShift(cluster.getFirstFrame());
400 
401  // Fill the plots that used the ECL trigger as the L1 timing source
402  if (Is_ECL_L1TriggerSource) {
403  if (IsEvtAcceptedBhabha) {
404  m_l3v_bhabha_L1_ECLTRG->Fill(time);
405  m_l3vEvtT0_bhabha_L1_ECLTRG->Fill(time - eventT0);
406  }
407  if (IsEvtAcceptedHadron) {
408  m_l3v_hadron_L1_ECLTRG->Fill(time);
409  m_l3vEvtT0_hadron_L1_ECLTRG->Fill(time - eventT0);
410  }
411  if (IsEvtAcceptedMumu) {
412  m_l3v_mumu_L1_ECLTRG->Fill(time);
413  m_l3vEvtT0_mumu_L1_ECLTRG->Fill(time - eventT0);
414  }
415  }
416 
417  // Fill the plots that used the CDC trigger as the L1 timing source
418  else if (Is_CDC_L1TriggerSource) {
419  if (IsEvtAcceptedBhabha) {
420  m_l3v_bhabha_L1_CDCTRG->Fill(time);
421  m_l3vEvtT0_bhabha_L1_CDCTRG->Fill(time - eventT0);
422  }
423  if (IsEvtAcceptedHadron) {
424  m_l3v_hadron_L1_CDCTRG->Fill(time);
425  m_l3vEvtT0_hadron_L1_CDCTRG->Fill(time - eventT0);
426  }
427  if (IsEvtAcceptedMumu) {
428  m_l3v_mumu_L1_CDCTRG->Fill(time);
429  m_l3vEvtT0_mumu_L1_CDCTRG->Fill(time - eventT0);
430  }
431  }
432 
433  B2DEBUG(20, "eventT0 = " << eventT0 << " ns" << ", SVD HitTime = " << time << " ns") ;
434 
435  } //close loop on clusters
436 }
The SVD Cluster class This class stores all information about reconstructed SVD clusters.
Definition: SVDCluster.h:29
TH1F * m_SVDEventT03Sample_mumu_L1_CDCTRG
svd eventT0 histogram for mu mu events wrt the CDC trigger time for 3 samples
StoreObjPtr< EventT0 > m_eventT0
EventT0 data object.
TH1F * m_l3v_mumu_L1_ECLTRG
svd time histogram for mu mu events wrt the ECL trigger time
StoreObjPtr< SVDEventInfo > m_svdEventInfo
SVDEventInfo data object.
TH1F * m_SVDEventT03Sample_hadron_L1_CDCTRG
svd eventT0 histogram for hadronic events wrt the CDC trigger time for 3 samples
TH1F * m_SVDEventT03Sample_mumu_L1_ECLTRG
svd eventT0 histogram for mu mu events wrt the ECL trigger time for 3 samples
TH1F * m_SVDEventT06Sample_hadron_L1_CDCTRG
svd EventT0 histogram for hadronic events wrt the CDC trigger time for 6 samples
TH1F * m_l3vEvtT0_mumu_L1_ECLTRG
svd time histogram for mu mu events wrt the ECL trigger time
TH1F * m_SVDEventT06Sample
SVD event T0 for 6 sampels.
TH1F * m_SVDEventT06Sample_bhabha_L1_CDCTRG
svd eventT0 histogram for bhabha events wrt the CDC trigger time for 6 samples
TH1F * m_SVDEventT06Sample_bhabha_L1_ECLTRG
svd eventT0 histogram for bhabha events wrt the ECL trigger time for 6 samples
StoreArray< SVDCluster > m_clusters
Store array for clusters.
TH1F * m_l3v_hadron_L1_CDCTRG
svd time histogram for hadronic events wrt the CDC trigger time
TH1F * m_l3vEvtT0_mumu_L1_CDCTRG
svd time histogram for mu mu events wrt the CDC trigger time
TH1F * m_l3vEvtT0_hadron_L1_CDCTRG
svd time histogram for hadronic events wrt the CDC trigger time
TH1F * m_l3v_hadron_L1_ECLTRG
svd time histogram for hadronic events wrt the ECL trigger time
TH1F * m_l3vEvtT0_hadron_L1_ECLTRG
svd time histogram for hadronic events wrt the ECL trigger time
StoreObjPtr< TRGSummary > m_objTrgSummary
Trigger Summary data object.
TH1F * m_l3v_bhabha_L1_ECLTRG
svd time histogram for bhabha events wrt the ECL trigger time
bool m_3Samples
if true enable 3 samples histograms analysis
TH1F * m_l3vEvtT0_bhabha_L1_CDCTRG
svd time histogram for bhabha events wrt the CDC trigger time
TH1F * m_SVDEventT06Sample_mumu_L1_CDCTRG
svd eventT0 histogram for mu mu events wrt the CDC trigger time for 6 samples
TH1F * m_SVDEventT03Sample_bhabha_L1_ECLTRG
svd eventT0 histogram for bhabha events wrt the ECL trigger time for 3 samples
TH1F * m_l3v_mumu_L1_CDCTRG
svd time histogram for mu mu events wrt the CDC trigger time
bool m_desynchSVDTime
if TRUE: svdTime back in SVD time reference
TH1F * m_l3v_bhabha_L1_CDCTRG
svd time histogram for bhabha events wrt the CDC trigger time
TH1F * m_SVDEventT06Sample_hadron_L1_ECLTRG
svd eventT0 histogram for hadronic events wrt the ECL trigger time for 6 samples
TH1F * m_SVDEventT03Sample_hadron_L1_ECLTRG
svd eventT0 histogram for hadronic events wrt the ECL trigger time for 3 samples
TH1F * m_SVDEventT06Sample_mumu_L1_ECLTRG
svd eventT0 histogram for mu mu events wrt the ECL trigger time for 6 samples
int m_L1TimingSrc
L1 timing source from getTimeType() in TRGSummary See ETimingTYpe in mdst/dataobjects/include/TRGSumm...
TH1F * m_SVDEventT03Sample
SVD event T0 for 3 sampels.
StoreObjPtr< SoftwareTriggerResult > m_TrgResult
Trigger selection data object.
TH1F * m_l3vEvtT0_bhabha_L1_ECLTRG
svd time histogram for bhabha events wrt the ECL trigger time
TH1F * m_SVDEventT03Sample_bhabha_L1_CDCTRG
svd eventT0 histogram for bhabha events wrt the CDC trigger time for 3 samples
bool isValid() const
Check wether the array was registered.
Definition: StoreArray.h:288
@ c_accept
Accept this event.

◆ getAfterConditionPath()

Module::EAfterConditionPath getAfterConditionPath ( ) const
inherited

What to do after the conditional path is finished.

(defaults to c_End if no condition is set)

Definition at line 133 of file Module.cc.

◆ getConditionPath()

std::shared_ptr< Path > getConditionPath ( ) const
inherited

Returns the path of the last true condition (if there is at least one, else reaturn a null pointer).


Definition at line 113 of file Module.cc.

◆ getFileNames()

virtual std::vector<std::string> getFileNames ( bool  outputFiles)
inlinevirtualinherited

Return a list of output filenames for this modules.

This will be called when basf2 is run with "--dry-run" if the module has set either the c_Input or c_Output properties.

If the parameter outputFiles is false (for modules with c_Input) the list of input filenames should be returned (if any). If outputFiles is true (for modules with c_Output) the list of output files should be returned (if any).

If a module has sat both properties this member is called twice, once for each property.

The module should return the actual list of requested input or produced output filenames (including handling of input/output overrides) so that the grid system can handle input/output files correctly.

This function should return the same value when called multiple times. This is especially important when taking the input/output overrides from Environment as they get consumed when obtained so the finalized list of output files should be stored for subsequent calls.

Reimplemented in RootOutputModule, StorageRootOutputModule, and RootInputModule.

Definition at line 134 of file Module.h.

◆ getName()

const std::string& getName ( ) const
inlineinherited

Returns the name of the module.

This can be changed via e.g. set_name() in the steering file to give more useful names if there is more than one module of the same type.

For identifying the type of a module, using getType() (or type() in Python) is recommended.

Definition at line 187 of file Module.h.

◆ getParamInfoListPython()

std::shared_ptr< boost::python::list > getParamInfoListPython ( ) const
inherited

Returns a python list of all parameters.

Each item in the list consists of the name of the parameter, a string describing its type, a python list of all default values and the description of the parameter.

Returns
A python list containing the parameters of this parameter list.

Definition at line 279 of file Module.cc.

◆ getReturnValue()

int getReturnValue ( ) const
inlineinherited

Return the return value set by this module.

This value is only meaningful if hasReturnValue() is true

Definition at line 381 of file Module.h.

◆ getType()

const std::string & getType ( ) const
inherited

Returns the type of the module (i.e.

class name minus 'Module')

Definition at line 41 of file Module.cc.

◆ hasProperties()

bool hasProperties ( unsigned int  propertyFlags) const
inherited

Returns true if all specified property flags are available in this module.

Parameters
propertyFlagsOred EModulePropFlags which should be compared with the module flags.

Definition at line 160 of file Module.cc.

◆ if_false()

void if_false ( const std::shared_ptr< Path > &  path,
EAfterConditionPath  afterConditionPath = EAfterConditionPath::c_End 
)
inherited

A simplified version to add a condition to the module.

Please note that successive calls of this function will add more than one condition to the module. If more than one condition results in true, only the last of them will be used.

Please be careful: Avoid creating cyclic paths, e.g. by linking a condition to a path which is processed before the path where this module is located in.

It is equivalent to the if_value() method, using the expression "<1". This method is meant to be used together with the setReturnValue(bool value) method.

Parameters
pathShared pointer to the Path which will be executed if the return value is false.
afterConditionPathWhat to do after executing 'path'.

Definition at line 85 of file Module.cc.

◆ if_true()

void if_true ( const std::shared_ptr< Path > &  path,
EAfterConditionPath  afterConditionPath = EAfterConditionPath::c_End 
)
inherited

A simplified version to set the condition of the module.

Please note that successive calls of this function will add more than one condition to the module. If more than one condition results in true, only the last of them will be used.

Please be careful: Avoid creating cyclic paths, e.g. by linking a condition to a path which is processed before the path where this module is located in.

It is equivalent to the if_value() method, using the expression ">=1". This method is meant to be used together with the setReturnValue(bool value) method.

Parameters
pathShared pointer to the Path which will be executed if the return value is true.
afterConditionPathWhat to do after executing 'path'.

Definition at line 90 of file Module.cc.

◆ if_value()

void if_value ( const std::string &  expression,
const std::shared_ptr< Path > &  path,
EAfterConditionPath  afterConditionPath = EAfterConditionPath::c_End 
)
inherited

Add a condition to the module.

Please note that successive calls of this function will add more than one condition to the module. If more than one condition results in true, only the last of them will be used.

See https://confluence.desy.de/display/BI/Software+ModCondTut or ModuleCondition for a description of the syntax.

Please be careful: Avoid creating cyclic paths, e.g. by linking a condition to a path which is processed before the path where this module is located in.

Parameters
expressionThe expression of the condition.
pathShared pointer to the Path which will be executed if the condition is evaluated to true.
afterConditionPathWhat to do after executing 'path'.

Definition at line 79 of file Module.cc.

◆ setDescription()

void setDescription ( const std::string &  description)
protectedinherited

Sets the description of the module.

Parameters
descriptionA description of the module.

Definition at line 214 of file Module.cc.

◆ setLogInfo()

void setLogInfo ( int  logLevel,
unsigned int  logInfo 
)
inherited

Configure the printed log information for the given level.

Parameters
logLevelThe log level (one of LogConfig::ELogLevel)
logInfoWhat kind of info should be printed? ORed combination of LogConfig::ELogInfo flags.

Definition at line 73 of file Module.cc.

◆ setName()

void setName ( const std::string &  name)
inlineinherited

Set the name of the module.

Note
The module name is set when using the REG_MODULE macro, but the module can be renamed before calling process() using the set_name() function in your steering file.
Parameters
nameThe name of the module

Definition at line 214 of file Module.h.

◆ setParamPython()

void setParamPython ( const std::string &  name,
const boost::python::object &  pyObj 
)
privateinherited

Implements a method for setting boost::python objects.

The method supports the following types: list, dict, int, double, string, bool The conversion of the python object to the C++ type and the final storage of the parameter value is done in the ModuleParam class.

Parameters
nameThe unique name of the parameter.
pyObjThe object which should be converted and stored as the parameter value.

Definition at line 234 of file Module.cc.

◆ setParamPythonDict()

void setParamPythonDict ( const boost::python::dict &  dictionary)
privateinherited

Implements a method for reading the parameter values from a boost::python dictionary.

The key of the dictionary has to be the name of the parameter and the value has to be of one of the supported parameter types.

Parameters
dictionaryThe python dictionary from which the parameter values are read.

Definition at line 249 of file Module.cc.

◆ setPropertyFlags()

void setPropertyFlags ( unsigned int  propertyFlags)
inherited

Sets the flags for the module properties.

Parameters
propertyFlagsbitwise OR of EModulePropFlags

Definition at line 208 of file Module.cc.

◆ setReturnValue() [1/2]

void setReturnValue ( bool  value)
protectedinherited

Sets the return value for this module as bool.

The bool value is saved as an integer with the convention 1 meaning true and 0 meaning false. The value can be used in the steering file to divide the analysis chain into several paths.

Parameters
valueThe value of the return value.

Definition at line 227 of file Module.cc.

◆ setReturnValue() [2/2]

void setReturnValue ( int  value)
protectedinherited

Sets the return value for this module as integer.

The value can be used in the steering file to divide the analysis chain into several paths.

Parameters
valueThe value of the return value.

Definition at line 220 of file Module.cc.

◆ setType()

void setType ( const std::string &  type)
protectedinherited

Set the module type.

Only for use by internal modules (which don't use the normal REG_MODULE mechanism).

Definition at line 48 of file Module.cc.


The documentation for this class was generated from the following files: