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NumSelectConstantC::NumSelectConstantC(const IntSArray1dC &)
NumSelectC::Copy(void) const
NumSelectC::Body(void)
NumSelectC::Body(void) const
NumSelectC::Design(const NumVLDataSetC &,NumClassifySupervisedC &,const NumErrorC &,const NumPerformanceC &)
NumFuncC::IsA(const DPEntityC &)
NumFuncC::Copy(void) const
NumFuncC::operator=(const NumFuncC &)
NumFuncC::Evaluate(const VectorC &) const
NumFuncC::Evaluate(const DListC &) const
NumFuncC::operator()(const VectorC &) const
NumFuncC::Jacobian(const VectorC &) const
NumFuncC::GetInfo(void) const
NumFuncC::GetName(void) const
NumFuncC::SizeX(void) const
NumFuncC::SizeY(void) const
NumFuncC::Save(ostream &) const
NumFuncC::Body(void)
NumFuncC::Body(void) const
DPProcessC::Body(void)
DPProcessC::Body(void) const
DPProcessC::Apply(const InT &)
DPProcessC::ApplyArray(const SArray1dC &,SArray1dC &)
DPProcessC::operator=(const DPProcessC &)
DPProcessC::Copy(void) const
DPProcessBaseC::Body(void)
DPProcessBaseC::Body(void) const
DPProcessBaseC::InputType(void) const
DPProcessBaseC::OutputType(void) const
DPProcessBaseC::IsStateless(void) const
DPProcessBaseC::OpType(void) const
DPProcessBaseC::operator=(const DPProcessBaseC &)
DPEntityC::operator=(const DPEntityC &)
DPEntityC::Body(void)
DPEntityC::Body(void) const
DPEntityC::Save(ostream &) const
RCHandleAC::Abstract(void)
RCHandleAC::IsHandleType(const DT &) const
RCHandleAC::CheckHandleType(const DT &) const
RCHandleAC::Save(ostream &) const
RCHandleAC::Copy(void) const
RCHandleC::IsValid(void) const
RCHandleC::IsValidObject(void) const
RCHandleC::operator=(const RCHandleC &)
RCHandleC::operator==(const RCHandleC &) const
RCHandleC::operator!=(const RCHandleC &) const
RCHandleC::Hash(void) const
RCHandleC::IsConst(void) const
RCHandleC::IsNotConst(void) const
RCHandleC::SetConst(void) const
RCHandleC::Invalidate(void)
RCHandleC::Body(void)
RCHandleC::Body(void) const
NumSelectConstantC
 
Constant feature subset selection.
 
include "amma/Num/NumSelectConstant.hh"
User Level:Default
Library:NumSelect
Example:testNumSelect.cc
Section:Pattern Recognition.Feature Selection.Implementation
In Scope:std

Comments:
Feature selection class which returns a predefined subset of the input feature vectors. The selection is determined by a list of indexes which are provided during the constructor.

Parent Classes: Methods:
NumSelectConstantC(const IntSArray1dC & list)
Constructor
listlist of features to keep
The values in the array are used to index the input feature vectors when creating the feature subset.

#include "amma/Num/NumSelect.hh"
NumSelectC Copy() const
Makes a deep copy

NumSelectBC & Body()
Access body.

const NumSelectBC & Body() const
Access body.

void Design(const NumVLDataSetC & data,NumClassifySupervisedC & classifier,const NumErrorC & error,const NumPerformanceC & performance)
Used to determine which is best feature subset
data data set with feature vectors and correct labels
classifier classifier to use for testing performance
performancemethod for estimating PMC
A derived class must provide a method for choosing a subset of features which minimises the PMC for the given combination of classifier, error counting method and algorithm for performance evaluation.

#include "amma/Num/NumFunc.hh"
BooleanT IsA(const DPEntityC & pb)
Check if an object is a NumFuncC.

NumFuncC Copy() const
Makes a deep copy

NumFuncC & operator=(const NumFuncC & oth)
Assignment operator

VectorC Evaluate(const VectorC & X) const
Evaluates function Y=f(X)

DListC<VectorC> Evaluate(const DListC<VectorC> & listX) const
Evaluates function Y=f(X) for a list of X

VectorC operator()(const VectorC & X) const
Evaluates function Y=f(X)

MatrixC Jacobian(const VectorC & X) const
Evaluates Jacobian df(X)/dX
Note that this is not const=0 since the base class will calculate a numerical estimate of the Jacobian using differences if the member function is not overloaded in derived classes to provide an analytical solution.

const StringC GetInfo() const
Gets string describing object

const StringC GetName() const
Gets type name of the object

UIntT SizeX() const
Input vector dimension

UIntT SizeY() const
Output vector dimension

BooleanT Save(ostream & out) const
Writes object to stream, cna be loaded using constructor

NumFuncBC & Body()
Access body.

const NumFuncBC & Body() const
Access body.

#include "amma/DP/Process.hh"
DPProcessBodyC<VectorC,VectorC> & Body()
Access body.

const DPProcessBodyC<VectorC,VectorC> & Body() const
Access body.

VectorC Apply(const VectorC & dat)
Apply operation.
NB. This may become constant in the future, but the situation isn't clear at the moment.

IntT ApplyArray(const SArray1dC<VectorC> & in,SArray1dC<VectorC> & out)
Streaming version.

const DPProcessC<VectorC,VectorC> operator=(const DPProcessC<VectorC,VectorC> & in)
Assignment operator

const DPProcessC<VectorC,VectorC> Copy() const
Make a copy of this process. Some type defs.

DPProcessBaseBodyC & Body()
Access body.

const DPProcessBaseBodyC & Body() const
Access body.

const type_info & InputType() const
Get input type.

const type_info & OutputType() const
Get input type.

BooleanT IsStateless() const
Is operation stateless ?

DPProcessBaseBodyC::ProcTypeT OpType() const
Operation type lossy/lossless.

const DPProcessBaseC & operator=(const DPProcessBaseC & oth)
Assignment operator.

#include "amma/DP/Entity.hh"
const DPEntityC & operator=(const DPEntityC & dat)
Assignment.

DPEntityBodyC & Body()
Access body.

const DPEntityBodyC & Body() const
Access body.

BooleanT Save(ostream & out) const

#include "amma/RCHandleA.hh"
RCAbstractC Abstract()
Create an abstract handle to this object.

BooleanT IsHandleType(const DT &) const
Is handle of given type ?

void CheckHandleType(const DT & dummy) const
Check handle type. Throw an expception if not.

BooleanT Save(ostream & out) const
Save to ostream.

RCHandleAC<DPEntityBodyC> Copy() const
Creat a deep copy of this object.
protected:

#include "amma/RCHandle.hh"
BooleanT IsValid() const
Check its a valid handle.

BooleanT IsValidObject() const
Check its a valid handle, and that the object is pointed to is also valid.

RCHandleC<DPEntityBodyC> & operator=(const RCHandleC<DPEntityBodyC> & oth)
Assignment.

BooleanT operator==(const RCHandleC<DPEntityBodyC> & oth) const
Comparison operator.

BooleanT operator!=(const RCHandleC<DPEntityBodyC> & oth) const
Comparison operator.

UIntT Hash() const
Hash function.x

BooleanT IsConst() const
Is object constant ?

BooleanT IsNotConst() const
Is object not constant ?

void SetConst(void) const
Lock the object.
This is const as a convience though it actual modified the object, often object you wish to ensure are constant already have const set. protected:

void Invalidate()
Turn this into an invalid handle.

DPEntityBodyC & Body()
Direct access to body.

const DPEntityBodyC & Body() const
Constant access to body.


Programmer:Robert Crida, Documentation by CxxDoc: Tue Mar 20 10:49:27 2001