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KrylovNewton Class Reference

#include <KrylovNewton.h>

Inheritance diagram for KrylovNewton::

EquiSolnAlgo SolutionAlgorithm MovableObject List of all members.

Public Methods

 KrylovNewton (int tangent=CURRENT_TANGENT)
 KrylovNewton (ConvergenceTest &theTest, int tangent=CURRENT_TANGENT)
 ~KrylovNewton ()
int solveCurrentStep (void)
 virtual functions. More...

void setTest (ConvergenceTest &theNewTest)
ConvergenceTestgetTest (void)
virtual int sendSelf (int commitTag, Channel &theChannel)
virtual int recvSelf (int commitTag, Channel &theChannel, FEM_ObjectBroker &theBroker)
void Print (ostream &s, int flag=0)

Constructor & Destructor Documentation

KrylovNewton::KrylovNewton ( int tangent = CURRENT_TANGENT )
 

Definition at line 51 of file KrylovNewton.cpp.

KrylovNewton::KrylovNewton ( ConvergenceTest & theTest,
int tangent = CURRENT_TANGENT )
 

Definition at line 60 of file KrylovNewton.cpp.

KrylovNewton::~KrylovNewton ( )
 

Definition at line 70 of file KrylovNewton.cpp.


Member Function Documentation

void KrylovNewton::Print ( ostream & s,
int flag = 0 ) [virtual]
 

Reimplemented from EquiSolnAlgo.

Definition at line 248 of file KrylovNewton.cpp.

ConvergenceTest * KrylovNewton::getTest ( void ) [virtual]
 

Reimplemented from EquiSolnAlgo.

Definition at line 228 of file KrylovNewton.cpp.

int KrylovNewton::recvSelf ( int commitTag,
Channel & theChannel,
FEM_ObjectBroker & theBroker ) [virtual]
 

This is a pure virtual method, one must be written for each instantiable subclass of MovableObject. Each object has to receive the data needed to be able to recreate itself in the new process after it has been sent through {theChannel}. If the object is an aggregation containing other objects, new objects of the correct type can be constructed using {theBroker}. To return if successful or a if not.

Reimplemented from MovableObject.

Definition at line 240 of file KrylovNewton.cpp.

int KrylovNewton::sendSelf ( int commitTag,
Channel & theChannel ) [virtual]
 

This is a pure virtual method, one must be written for each instantiable subclass of MovableObject. Each object has to send the data needed to be able to reproduce that object in a remote process. The object uses the methods provided by {theChannel} object to send the data to another channel at the remote actor, the address of the channel is set before this method is called. An object of similar type at the remote actor is invoked with a {receiveSelf()} to receive the data. Returns if successful (successful in that the data got to the channel), or a if no data was sent.

Reimplemented from MovableObject.

Definition at line 234 of file KrylovNewton.cpp.

void KrylovNewton::setTest ( ConvergenceTest & theNewTest ) [virtual]
 

Reimplemented from EquiSolnAlgo.

Definition at line 92 of file KrylovNewton.cpp.

int KrylovNewton::solveCurrentStep ( void ) [virtual]
 

virtual functions.

Reimplemented from EquiSolnAlgo.

Definition at line 98 of file KrylovNewton.cpp.


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