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NumCostMotEstBaseC::NumCostMotEstBaseC(void)
NumCostMotEstBaseC::NumCostMotEstBaseC(const NumCostC &)
NumCostMotEstBaseC::NumCostMotEstBaseC(const NumCostMotEstBaseC &)
NumCostMotEstBaseC::NumCostMotEstBaseC(NumCostMotEstBaseBC &)
NumCostMotEstBaseC::Body(void)
NumCostMotEstBaseC::Body(void) const
NumCostMotEstBaseC::Hessian(void) const
NumCostMotEstBaseC::GradientVector(const VectorC &) const
NumCostMotEstBaseC::ComposeVectors(const VectorC &,const VectorC &) const
NumCostC::Body(void)
NumCostC::Body(void) const
NumCostC::Copy(void) const
NumCostC::Cost(const VectorC &) const
NumCostC::SetMask(const IntSArray1dC &)
NumCostC::SetConstP(const VectorC &)
NumCostC::MinX(void) const
NumCostC::MaxX(void) const
NumCostC::StartX(void) const
NumCostC::ConvertX2P(const VectorC &) const
NumCostC::Steps(void) const
NumCostC::GetParameters(void) const
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
NumCostMotEstBaseC
 
Optimisation cost function for image patch comparison.
 
include "amma/Motion/NumCostMotEstBase.hh"
User Level:Default
Library:GDMotion
Example:exMatchEst.cc
Section:Image.Motion.Estimation.Model-based
In Scope:std

Comments:

Parent Classes: Derived Classes: Methods:
NumCostMotEstBaseC()
Default constructor

NumCostMotEstBaseC(const NumCostC & obj)
Base constructor
If 'obj' is of type 'NumCostMotEstBaseC' will create a handle to it. Otherwise it will be invalid.

NumCostMotEstBaseC(const NumCostMotEstBaseC & oth)
Copy constructor

NumCostMotEstBaseC(NumCostMotEstBaseBC & oth)
Body Constructor

NumCostMotEstBaseBC & Body()
Access Body

const NumCostMotEstBaseBC & Body() const
Access Body

MatrixC Hessian() const
Evaluates the Hessian according to equation 3.25 (Diehl).

VectorC GradientVector(const VectorC & X) const
Evaluates the gradient vector according to equation 3.17 & 3.26 (Diehl).

VectorC ComposeVectors(const VectorC & A,const VectorC & B) const
A * B = Out;

#include "amma/Num/NumCost.hh"
NumCostBC & Body()
Access body.

const NumCostBC & Body() const
Access body.

NumCostC Copy() const
Makes a deep copy

RealT Cost(const VectorC & X) const
Calculates the cost of the current vector X

void SetMask(const IntSArray1dC & mask)
Sets the mask of enables parameters

void SetConstP(const VectorC & constP)
Sets the values for constant parameters.
The value of non-constant parameters will be used as a starting point

const VectorC MinX() const
Lower bound on optimisation vector X

const VectorC MaxX() const
Upper bound on optimisation vector X

const VectorC StartX() const
Initial X value obtained from SetConstP

VectorC ConvertX2P(const VectorC & X) const
Converts an X vector to a full P vector

const IntSArray1dC Steps() const
Gets number of steps to use for each dimension

const NumParametersC & GetParameters() const
Access to the parameter storage class

#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:Ratna Rambaruth, Documentation by CxxDoc: Tue Mar 20 10:49:27 2001