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Add midpoint circle algorithm (#5868)
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src/main/java/com/thealgorithms/geometry/MidpointCircle.java
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src/main/java/com/thealgorithms/geometry/MidpointCircle.java
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package com.thealgorithms.geometry;
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import java.util.ArrayList;
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import java.util.Collection;
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import java.util.List;
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/**
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* Class to represent the Midpoint Circle Algorithm.
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* This algorithm calculates points on the circumference of a circle
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* using integer arithmetic for efficient computation.
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*/
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public final class MidpointCircle {
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private MidpointCircle() {
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// Private Constructor to prevent instantiation.
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}
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/**
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* Generates points on the circumference of a circle using the midpoint circle algorithm.
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*
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* @param centerX The x-coordinate of the circle's center.
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* @param centerY The y-coordinate of the circle's center.
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* @param radius The radius of the circle.
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* @return A list of points on the circle, each represented as an int[] with 2 elements [x, y].
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*/
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public static List<int[]> generateCirclePoints(int centerX, int centerY, int radius) {
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List<int[]> points = new ArrayList<>();
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// Special case for radius 0, only the center point should be added.
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if (radius == 0) {
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points.add(new int[] {centerX, centerY});
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return points;
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}
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// Start at (radius, 0)
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int x = radius;
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int y = 0;
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// Decision parameter
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int p = 1 - radius;
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// Add the initial points in all octants
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addSymmetricPoints(points, centerX, centerY, x, y);
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// Iterate while x > y
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while (x > y) {
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y++;
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if (p <= 0) {
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// Midpoint is inside or on the circle
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p = p + 2 * y + 1;
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} else {
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// Midpoint is outside the circle
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x--;
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p = p + 2 * y - 2 * x + 1;
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}
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// Add points for this (x, y)
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addSymmetricPoints(points, centerX, centerY, x, y);
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}
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return points;
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}
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/**
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* Adds the symmetric points in all octants of the circle based on the current x and y values.
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*
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* @param points The list to which symmetric points will be added.
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* @param centerX The x-coordinate of the circle's center.
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* @param centerY The y-coordinate of the circle's center.
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* @param x The current x-coordinate on the circumference.
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* @param y The current y-coordinate on the circumference.
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*/
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private static void addSymmetricPoints(Collection<int[]> points, int centerX, int centerY, int x, int y) {
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// Octant symmetry points
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points.add(new int[] {centerX + x, centerY + y});
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points.add(new int[] {centerX - x, centerY + y});
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points.add(new int[] {centerX + x, centerY - y});
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points.add(new int[] {centerX - x, centerY - y});
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points.add(new int[] {centerX + y, centerY + x});
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points.add(new int[] {centerX - y, centerY + x});
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points.add(new int[] {centerX + y, centerY - x});
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points.add(new int[] {centerX - y, centerY - x});
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}
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}
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package com.thealgorithms.geometry;
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import static org.junit.jupiter.api.Assertions.assertTrue;
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import java.util.List;
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import org.junit.jupiter.api.Test;
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import org.junit.jupiter.params.ParameterizedTest;
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import org.junit.jupiter.params.provider.CsvSource;
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/**
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* Test class for the {@code MidpointCircle} class
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*/
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class MidpointCircleTest {
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/**
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* Parameterized test to check the generated points for different circles.
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* The points are checked based on the expected center and radius.
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*
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* @param centerX The x-coordinate of the circle's center.
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* @param centerY The y-coordinate of the circle's center.
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* @param radius The radius of the circle.
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*/
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@ParameterizedTest
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@CsvSource({
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"0, 0, 3", // Circle centered at (0, 0) with radius 3
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"10, 10, 2" // Circle centered at (10, 10) with radius 2
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})
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void
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testGenerateCirclePoints(int centerX, int centerY, int radius) {
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List<int[]> points = MidpointCircle.generateCirclePoints(centerX, centerY, radius);
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// Ensure that all points satisfy the circle equation (x - centerX)^2 + (y - centerY)^2 = radius^2
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for (int[] point : points) {
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int x = point[0];
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int y = point[1];
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int dx = x - centerX;
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int dy = y - centerY;
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int distanceSquared = dx * dx + dy * dy;
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assertTrue(Math.abs(distanceSquared - radius * radius) <= 1, "Point (" + x + ", " + y + ") does not satisfy the circle equation.");
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}
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}
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/**
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* Test to ensure the algorithm generates points for a zero-radius circle.
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*/
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@Test
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void testZeroRadiusCircle() {
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List<int[]> points = MidpointCircle.generateCirclePoints(0, 0, 0);
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// A zero-radius circle should only have one point: (0, 0)
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assertTrue(points.size() == 1 && points.get(0)[0] == 0 && points.get(0)[1] == 0, "Zero-radius circle did not generate the correct point.");
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}
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}
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