CFTimeMBAmpAPGenerator Class Reference

#include <CFTimeMBAmpAPGenerator.h>

Inheritance diagram for CFTimeMBAmpAPGenerator:
TVAnalysedPulseGenerator

List of all members.

Public Member Functions

 CFTimeMBAmpAPGenerator (TAPGeneratorOptions *opts)
virtual ~CFTimeMBAmpAPGenerator ()
virtual int ProcessPulses (const PulseIslandList &, AnalysedPulseList &)
 This method is called on each vector of pulses from a MIDAS event.
virtual bool MayDivideTPIs ()
void SetPulseList (PulseIslandList *list)
template<typename TypeOfTAP >
TypeOfTAP * MakeNewTAP (int parent_index) const
 The suggested method for constructing a new TAP.
TAnalysedPulseMakeNewTAP (int parent_index) const
bool Debug () const
IDs::channel GetChannel () const
std::string GetBank () const
const IDs::sourceGetSource () const
 Get the source id for this generator being used on the current channel.
virtual void CalibratePulses (AnalysedPulseList &theAnalysedPulses) const

Static Public Member Functions

static const char * TapType ()

Protected Member Functions

virtual void SetChannel (const std::string &det)
 Set the channel for this generator. Should NOT be called by user code.

Private Attributes



Algorithm::ConstantFractionTime fConstantFractionTime
 The algorithms that will be used by this generator.
Algorithm::MaxBinAmplitude fMaxBinAmplitude

Friends

class MakeAnalysedPulses

Detailed Description

Definition at line 10 of file CFTimeMBAmpAPGenerator.h.


Constructor & Destructor Documentation

CFTimeMBAmpAPGenerator::CFTimeMBAmpAPGenerator ( TAPGeneratorOptions opts  ) 

Definition at line 19 of file CFTimeMBAmpAPGenerator.cpp.

00019                                                                         :
00020   TVAnalysedPulseGenerator("CFTimeMBAmpAPGenerator",opts),
00021   fConstantFractionTime(SetupNavigator::Instance()->GetPedestal(GetChannel()), 
00022                         TSetupData::Instance()->GetTriggerPolarity(TSetupData::Instance()->GetBankName(GetChannel().str())),
00023                         TSetupData::Instance()->GetClockTick(TSetupData::Instance()->GetBankName(GetChannel().str())),
00024                         opts->GetBool("no_time_shift") ? 0. : SetupNavigator::Instance()->GetCoarseTimeOffset(GetSource()),
00025                         opts->GetDouble("constant_fraction", -0.10)), 
00026   fMaxBinAmplitude(SetupNavigator::Instance()->GetPedestal(GetChannel()), 
00027                    TSetupData::Instance()->GetTriggerPolarity(TSetupData::Instance()->GetBankName(GetChannel().str()))) {
00028 }

virtual CFTimeMBAmpAPGenerator::~CFTimeMBAmpAPGenerator (  )  [inline, virtual]

Definition at line 14 of file CFTimeMBAmpAPGenerator.h.

00014 {};


Member Function Documentation

void TVAnalysedPulseGenerator::CalibratePulses ( AnalysedPulseList theAnalysedPulses  )  const [virtual, inherited]

Definition at line 23 of file TVAnalysedPulseGenerator.cpp.

References TVAnalysedPulseGenerator::fAdcToEnergyGain, TVAnalysedPulseGenerator::fAdcToEnergyOffset, and TVAnalysedPulseGenerator::fCanCalibrate.

00023                                                                                        {
00024    if(fCanCalibrate){
00025       for(AnalysedPulseList::iterator i_tap=theAnalysedPulses.begin(); i_tap != theAnalysedPulses.end(); ++i_tap){
00026          const double amplitude=(*i_tap)->GetAmplitude();
00027          (*i_tap)->SetEnergy(fAdcToEnergyGain * amplitude + fAdcToEnergyOffset);
00028       }
00029    }
00030 }

bool TVAnalysedPulseGenerator::Debug (  )  const [inline, inherited]
std::string TVAnalysedPulseGenerator::GetBank (  )  const [inline, inherited]

A convenience method for analysis to get the channel ID of the channel being analysed

Definition at line 85 of file TVAnalysedPulseGenerator.h.

References TVAnalysedPulseGenerator::fBankName.

00085 {return fBankName;};

IDs::channel TVAnalysedPulseGenerator::GetChannel (  )  const [inline, inherited]
const IDs::source& TVAnalysedPulseGenerator::GetSource (  )  const [inline, inherited]

Get the source id for this generator being used on the current channel.

Useful for a generator to know the full source much like in the above GetChannel method, but this could also be useful for checking that this generator is the one that made a given TAP in later analysis by comparing this value to that stored in the TAP itself.

Definition at line 94 of file TVAnalysedPulseGenerator.h.

References TVAnalysedPulseGenerator::fSource.

Referenced by TVAnalysedPulseGenerator::MakeNewTAP(), and IntegralRatioAPGenerator::ProcessPulses().

00094 {return fSource;};

TAnalysedPulse* TVAnalysedPulseGenerator::MakeNewTAP ( int  parent_index  )  const [inline, inherited]

Definition at line 73 of file TVAnalysedPulseGenerator.h.

00073                                                          {
00074             return MakeNewTAP<TAnalysedPulse>(parent_index);
00075         }

template<typename TypeOfTAP >
TypeOfTAP * TVAnalysedPulseGenerator::MakeNewTAP ( int  parent_index  )  const [inline, inherited]

The suggested method for constructing a new TAP.

In the process of constructing TAP, information that isn't immediately obvious how to get needs to be passed to TAP. This method returns a pointer to a TAP construced for you, and all you need to pass it is the TPulseIslandID.

In the case where a generator wants to add extra information to the standard TAP information, we expect people to derive from TAnalysedPulse. If your generator is one of these, then use the template argument to produce the type of TAP you desire. Note that this forces the constructor of the specialised TAP to be the same as for TAnalysedPulse itself.

For example, for to make a specialied analysed pulse called TSpecialAnalysedPulse (original, huh?) you would do:

 TSpecialAnalysedPulse* tsap=MakeNewTAP<TSpecialAnalysedPulse>(parent_index);
Parameters:
[in] parent_index The TPulseIslandID of the TPI being used to make the new TAP.
Template Parameters:
in] TypeOfTAP The type of specialisation of TAnalysedPulse that you want to create.

Definition at line 137 of file TVAnalysedPulseGenerator.h.

References TVAnalysedPulseGenerator::fPulseList, and TVAnalysedPulseGenerator::GetSource().

Referenced by FirstCompleteAPGenerator::AnalyseOneTpi(), SimpIntAPGenerator::ProcessPulses(), MaxBinAPGenerator::ProcessPulses(), ProcessPulses(), and CFTimeAPGenerator::ProcessPulses().

00137                                                                            {
00138     TypeOfTAP* pulse=NULL;
00139     TPulseIsland* parent = fPulseList->at(parent_index);
00140     pulse=new TypeOfTAP(GetSource(),parent_index,parent);
00141     return pulse;
00142 }

virtual bool CFTimeMBAmpAPGenerator::MayDivideTPIs (  )  [inline, virtual]
Todo:
Document this

Implements TVAnalysedPulseGenerator.

Definition at line 21 of file CFTimeMBAmpAPGenerator.h.

00021 {return true;};

int CFTimeMBAmpAPGenerator::ProcessPulses ( const PulseIslandList pil,
AnalysedPulseList apl 
) [virtual]

This method is called on each vector of pulses from a MIDAS event.

Parameters:
[in] pil The vector of TPIs to produce TAPs from.
[out] apl The vector of TAPs to append the new TAPs to.

Implements TVAnalysedPulseGenerator.

Definition at line 30 of file CFTimeMBAmpAPGenerator.cpp.

References fConstantFractionTime, fMaxBinAmplitude, TVAnalysedPulseGenerator::MakeNewTAP(), TAnalysedPulse::SetAmplitude(), and TAnalysedPulse::SetTime().

00031                                                                       {
00032 
00033   for (unsigned int iTPI = 0; iTPI < pulseList.size(); ++iTPI) {
00034     TPulseIsland* tpi = pulseList.at(iTPI);
00035 
00036     double time = fConstantFractionTime(tpi);
00037     double amplitude  = fMaxBinAmplitude(tpi);
00038 
00039     TAnalysedPulse* tap = MakeNewTAP(iTPI);
00040     tap->SetTime(time);
00041     tap->SetAmplitude(amplitude);
00042     analysedList.push_back(tap);
00043   }
00044 
00045   return 0;
00046 }

virtual void TVAnalysedPulseGenerator::SetChannel ( const std::string &  det  )  [inline, protected, virtual, inherited]

Set the channel for this generator. Should NOT be called by user code.

Called by MakeAnalysedPulses to tell this generator what channel it is looking at.

Definition at line 108 of file TVAnalysedPulseGenerator.h.

References IDs::source::Channel(), TVAnalysedPulseGenerator::fBankName, TVAnalysedPulseGenerator::fSource, SetupNavigator::GetBank(), and SetupNavigator::Instance().

Referenced by TVAnalysedPulseGenerator::TVAnalysedPulseGenerator().

00108                                                      {
00109            fSource.Channel()=det;
00110            fBankName= SetupNavigator::Instance()->GetBank(det);
00111          };

void TVAnalysedPulseGenerator::SetPulseList ( PulseIslandList list  )  [inline, inherited]

Definition at line 44 of file TVAnalysedPulseGenerator.h.

References TVAnalysedPulseGenerator::fPulseList.

00044 {fPulseList=list;};

static const char* TVAnalysedPulseGenerator::TapType (  )  [inline, static, inherited]

Reimplemented in GaussFitAPGenerator, IntegralRatioAPGenerator, TemplateConvolveAPGenerator, and TemplateFitAPGenerator.

Definition at line 96 of file TVAnalysedPulseGenerator.h.

00096 {return TAnalysedPulse::Class()->GetName();}


Friends And Related Function Documentation

friend class MakeAnalysedPulses [friend, inherited]

Definition at line 101 of file TVAnalysedPulseGenerator.h.


Member Data Documentation

The algorithms that will be used by this generator.

Definition at line 21 of file CFTimeMBAmpAPGenerator.h.

Referenced by ProcessPulses().

Definition at line 28 of file CFTimeMBAmpAPGenerator.h.

Referenced by ProcessPulses().


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

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