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/*
* #%L
* Image processing operations for SciJava Ops.
* %%
* Copyright (C) 2014 - 2024 SciJava developers.
* %%
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions are met:
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package org.scijava.ops.image.geom.geom2d;
import java.util.List;
import java.util.function.Function;
import org.scijava.ops.image.geom.GeomUtils;
import net.imglib2.RealLocalizable;
import net.imglib2.roi.geom.real.Polygon2D;
import net.imglib2.util.Pair;
import net.imglib2.util.ValuePair;
import org.scijava.ops.spi.OpDependency;
/**
* Maximum Feret of a polygon.
*
* @author Tim-Oliver Buchholz, University of Konstanz
* @implNote op names='geom.maximumFeret'
*/
public class DefaultMaximumFeret implements
Function>
{
@OpDependency(name = "geom.convexHull")
private Function function;
/**
* TODO
*
* @param input
* @return the maximum feret of the input polygon, stored as a {@link Pair}
*/
@Override
public Pair apply(Polygon2D input) {
final List extends RealLocalizable> points = GeomUtils.vertices(function
.apply(input));
double distance = Double.NEGATIVE_INFINITY;
RealLocalizable p0 = points.get(0);
RealLocalizable p1 = points.get(0);
for (int i = 0; i < points.size(); i++) {
for (int j = i + 2; j < points.size(); j++) {
final RealLocalizable tmpP0 = points.get(i);
final RealLocalizable tmpP1 = points.get(j);
final double tmp = Math.sqrt(Math.pow(tmpP0.getDoublePosition(0) - tmpP1
.getDoublePosition(0), 2) + Math.pow(tmpP0.getDoublePosition(1) -
tmpP1.getDoublePosition(1), 2));
if (tmp > distance) {
distance = tmp;
p0 = tmpP0;
p1 = tmpP1;
}
}
}
return new ValuePair<>(p0, p1);
}
}
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