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Parallel Colt is a multithreaded version of Colt - a library for high performance scientific computing in Java. It contains efficient algorithms for data analysis, linear algebra, multi-dimensional arrays, Fourier transforms, statistics and histogramming.
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/*
* Copyright (C) 2003-2006 Bjørn-Ove Heimsund
*
* This file is part of MTJ.
*
* This library is free software; you can redistribute it and/or modify it
* under the terms of the GNU Lesser General Public License as published by the
* Free Software Foundation; either version 2.1 of the License, or (at your
* option) any later version.
*
* This library is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License
* for more details.
*
* You should have received a copy of the GNU Lesser General Public License
* along with this library; if not, write to the Free Software Foundation,
* Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
*/
package cern.colt.matrix.tfloat.algo.solver;
import cern.colt.matrix.Norm;
import cern.colt.matrix.tfloat.FloatMatrix1D;
import cern.colt.matrix.tfloat.algo.DenseFloatAlgebra;
/**
* Partial implementation of an iteration reporter
*/
public abstract class AbstractFloatIterationMonitor implements FloatIterationMonitor {
/**
* Iteration number
*/
protected int iter;
/**
* Vector-norm
*/
protected Norm normType;
/**
* Iteration reporter
*/
protected FloatIterationReporter reporter;
/**
* Current residual
*/
protected float residual;
/**
* Constructor for AbstractIterationMonitor. Default norm is the 2-norm with
* no iteration reporting.
*/
public AbstractFloatIterationMonitor() {
normType = Norm.Two;
reporter = new NoFloatIterationReporter();
}
public void setFirst() {
iter = 0;
}
public boolean isFirst() {
return iter == 0;
}
public void next() {
iter++;
}
public int iterations() {
return iter;
}
public boolean converged(FloatMatrix1D r, FloatMatrix1D x) throws IterativeSolverFloatNotConvergedException {
return converged(DenseFloatAlgebra.DEFAULT.norm(r, normType), x);
}
public boolean converged(float r, FloatMatrix1D x) throws IterativeSolverFloatNotConvergedException {
reporter.monitor(r, x, iter);
this.residual = r;
return convergedI(r, x);
}
public boolean converged(float r) throws IterativeSolverFloatNotConvergedException {
reporter.monitor(r, iter);
this.residual = r;
return convergedI(r);
}
protected abstract boolean convergedI(float r, FloatMatrix1D x) throws IterativeSolverFloatNotConvergedException;
protected abstract boolean convergedI(float r) throws IterativeSolverFloatNotConvergedException;
public boolean converged(FloatMatrix1D r) throws IterativeSolverFloatNotConvergedException {
return converged(DenseFloatAlgebra.DEFAULT.norm(r, normType));
}
public Norm getNormType() {
return normType;
}
public void setNormType(Norm normType) {
this.normType = normType;
}
public FloatIterationReporter getIterationReporter() {
return reporter;
}
public void setIterationReporter(FloatIterationReporter monitor) {
this.reporter = monitor;
}
public float residual() {
return residual;
}
}
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