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3 Commits
fix/issue-
...
b87deecf40
| Author | SHA1 | Date | |
|---|---|---|---|
| b87deecf40 | |||
| 5415c10c26 | |||
| 873f5d2711 |
@@ -77,14 +77,6 @@ public abstract class AbstractShape implements Shape {
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return new Rectangle(this.bounds);
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}
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public void setBounds(Rectangle newBounds) {
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this.bounds.setBounds(newBounds);
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onBoundsChanged();
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}
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protected void onBoundsChanged() {
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}
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@Override
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public String toString() {
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return String.format("x=%d, y=%d, width=%d, height=%d", bounds.x, bounds.y, bounds.width, bounds.height);
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@@ -53,14 +53,6 @@ public class SCircle extends AbstractShape {
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return radius;
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}
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@Override
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protected void onBoundsChanged() {
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int diameter = Math.max(bounds.width, bounds.height);
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bounds.width = diameter;
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bounds.height = diameter;
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this.radius = diameter / 2;
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}
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public static SCircle create(int x, int y, int radius) {
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return create(x, y, radius, Color.BLACK);
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}
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@@ -9,6 +9,7 @@ import ovh.gasser.newshapes.attributes.ColorAttributes;
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import ovh.gasser.newshapes.attributes.SelectionAttributes;
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import ovh.gasser.newshapes.util.Streamable;
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import javax.swing.text.html.Option;
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import java.awt.*;
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import java.util.*;
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import java.util.List;
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@@ -18,7 +19,6 @@ public class SCollection extends AbstractShape implements Streamable<Shape> {
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private final List<Shape> children;
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private SCollection(Shape... shapes) {
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super(new Rectangle());
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this.children = new ArrayList<>(List.of(shapes));
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}
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@@ -57,29 +57,6 @@ public class SCollection extends AbstractShape implements Streamable<Shape> {
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children.forEach(s -> s.translate(dx, dy));
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}
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@Override
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public void resize(ResizeHandle handle, int dx, int dy) {
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if (children.isEmpty()) {
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return;
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}
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Rectangle currentBounds = getBounds();
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Rectangle resizedBounds = resizeBounds(currentBounds, handle, dx, dy);
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double scaleX = resizedBounds.width / (double) currentBounds.width;
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double scaleY = resizedBounds.height / (double) currentBounds.height;
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for (Shape child : children) {
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Rectangle childBounds = child.getBounds();
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Rectangle targetChildBounds = new Rectangle(
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resizedBounds.x + (int) Math.round((childBounds.x - currentBounds.x) * scaleX),
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resizedBounds.y + (int) Math.round((childBounds.y - currentBounds.y) * scaleY),
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Math.max(1, (int) Math.round(childBounds.width * scaleX)),
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Math.max(1, (int) Math.round(childBounds.height * scaleY))
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);
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resizeChild(child, targetChildBounds);
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}
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}
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@Override
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public Iterator<Shape> iterator() {
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return children.iterator();
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@@ -94,45 +71,12 @@ public class SCollection extends AbstractShape implements Streamable<Shape> {
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children.add(s);
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}
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public void clear() {
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children.clear();
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}
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public void replaceWith(SCollection other) {
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if (other == this) {
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return;
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}
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clear();
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other.stream().forEach(children::add);
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}
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public void add(int index, Shape s) {
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children.add(index, s);
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}
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public void insert(int index, Shape s) {
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children.add(Math.max(0, Math.min(index, children.size())), s);
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}
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public void remove(Shape s) {
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if (!children.remove(s)) {
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logger.error("Unable to delete shape: {}", s);
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}
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}
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public int indexOf(Shape s) {
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return children.indexOf(s);
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}
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public int size() {
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return children.size();
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}
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public boolean contains(Shape s) {
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return children.contains(s);
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}
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@Override
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public Attributes getAttributes(String key) {
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if (key.equals(ColorAttributes.ID)) {
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@@ -166,69 +110,4 @@ public class SCollection extends AbstractShape implements Streamable<Shape> {
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collection.addAttributes(new SelectionAttributes());
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return collection;
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}
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private static Rectangle resizeBounds(Rectangle bounds, ResizeHandle handle, int dx, int dy) {
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Rectangle resizedBounds = new Rectangle(bounds);
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switch (handle) {
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case E -> resizedBounds.width += dx;
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case W -> {
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resizedBounds.x += dx;
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resizedBounds.width -= dx;
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}
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case S -> resizedBounds.height += dy;
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case N -> {
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resizedBounds.y += dy;
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resizedBounds.height -= dy;
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}
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case SE -> {
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resizedBounds.width += dx;
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resizedBounds.height += dy;
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}
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case SW -> {
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resizedBounds.x += dx;
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resizedBounds.width -= dx;
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resizedBounds.height += dy;
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}
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case NE -> {
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resizedBounds.width += dx;
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resizedBounds.y += dy;
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resizedBounds.height -= dy;
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}
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case NW -> {
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resizedBounds.x += dx;
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resizedBounds.width -= dx;
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resizedBounds.y += dy;
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resizedBounds.height -= dy;
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}
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}
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if (resizedBounds.width < 1) {
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resizedBounds.width = 1;
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}
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if (resizedBounds.height < 1) {
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resizedBounds.height = 1;
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}
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return resizedBounds;
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}
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private static void resizeChild(Shape child, Rectangle targetChildBounds) {
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if (child instanceof SCollection collection) {
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Rectangle currentBounds = collection.getBounds();
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collection.translate(targetChildBounds.x - currentBounds.x, targetChildBounds.y - currentBounds.y);
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Rectangle translatedBounds = collection.getBounds();
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collection.resize(
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ResizeHandle.SE,
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targetChildBounds.width - translatedBounds.width,
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targetChildBounds.height - translatedBounds.height
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);
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return;
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}
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if (child instanceof AbstractShape abstractShape) {
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abstractShape.setBounds(targetChildBounds);
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}
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}
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}
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@@ -57,7 +57,7 @@ public class SText extends AbstractShape {
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}
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public void updateMeasuredBounds(int width, int height) {
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getBounds().setSize(Math.max(width, 0), Math.max(height, 0));
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bounds.setSize(Math.max(width, 0), Math.max(height, 0));
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}
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@Override
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387
src/test/java/ovh/gasser/newshapes/shapes/ContainsPointTest.java
Normal file
387
src/test/java/ovh/gasser/newshapes/shapes/ContainsPointTest.java
Normal file
@@ -0,0 +1,387 @@
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package ovh.gasser.newshapes.shapes;
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import org.junit.jupiter.api.Nested;
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import org.junit.jupiter.api.Test;
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import java.awt.Color;
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import java.awt.Point;
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import static org.junit.jupiter.api.Assertions.*;
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/**
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* Tests bounds-based hit-testing for all shape types.
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* Hit-testing is performed via {@code shape.getBounds().contains(Point)},
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* delegating to {@link java.awt.Rectangle#contains(Point)}.
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*
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* <p>Note on {@link java.awt.Rectangle#contains} boundary semantics:
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* A rectangle {@code (x, y, w, h)} contains a point {@code (px, py)} when:
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* {@code x <= px < x+w} and {@code y <= py < y+h}.
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* The top-left corner is <em>inclusive</em>; the bottom-right corner is <em>exclusive</em>.
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*/
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class ContainsPointTest {
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// -----------------------------------------------------------------------
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// SRectangle — bounds = (x, y, width, height)
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// -----------------------------------------------------------------------
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@Nested
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class SRectangleContainsPoint {
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// Shape: origin (10, 20), size 80×60 → right-exclusive: x=90, y=80
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private final SRectangle rect = SRectangle.create(10, 20, 80, 60);
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@Test
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void pointInsideShouldBeContained() {
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Point inside = new Point(50, 50);
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assertTrue(rect.getBounds().contains(inside),
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"A point clearly inside the rectangle should be contained");
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}
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@Test
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void pointOutsideShouldNotBeContained() {
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Point outside = new Point(5, 5);
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assertFalse(rect.getBounds().contains(outside),
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"A point outside the rectangle should not be contained");
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}
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@Test
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void pointFarOutsideShouldNotBeContained() {
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Point farOutside = new Point(200, 300);
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assertFalse(rect.getBounds().contains(farOutside),
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"A point far outside the rectangle should not be contained");
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}
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@Test
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void topLeftCornerShouldBeContained() {
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// Rectangle.contains is inclusive of the top-left corner
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Point topLeft = new Point(10, 20);
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assertTrue(rect.getBounds().contains(topLeft),
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"The top-left corner (inclusive boundary) should be contained");
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}
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@Test
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void bottomRightCornerShouldNotBeContained() {
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// Rectangle.contains is exclusive of the bottom-right corner
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Point bottomRight = new Point(90, 80); // x + width, y + height
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assertFalse(rect.getBounds().contains(bottomRight),
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"The bottom-right corner (exclusive boundary) should not be contained");
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}
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@Test
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void pointJustInsideBottomRightShouldBeContained() {
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Point justInside = new Point(89, 79); // one pixel before exclusive boundary
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assertTrue(rect.getBounds().contains(justInside),
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"A point one pixel before the bottom-right boundary should be contained");
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}
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@Test
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void pointAfterTranslateShouldBeAtNewPosition() {
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SRectangle moved = SRectangle.create(10, 20, 80, 60);
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moved.translate(30, 40); // new bounds: (40, 60, 80, 60)
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Point oldCenter = new Point(50, 50);
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assertFalse(moved.getBounds().contains(oldCenter),
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"After translate, old center should no longer be contained");
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Point newCenter = new Point(80, 90);
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assertTrue(moved.getBounds().contains(newCenter),
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"After translate, a point at the new center should be contained");
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}
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@Test
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void pointOnTopEdgeShouldBeContained() {
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Point topEdge = new Point(50, 20); // y == rect.y, inside x range
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assertTrue(rect.getBounds().contains(topEdge),
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"A point on the top edge should be contained");
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}
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@Test
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void pointOnLeftEdgeShouldBeContained() {
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Point leftEdge = new Point(10, 50); // x == rect.x, inside y range
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assertTrue(rect.getBounds().contains(leftEdge),
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"A point on the left edge should be contained");
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}
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@Test
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void pointOnRightEdgeShouldNotBeContained() {
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Point rightEdge = new Point(90, 50); // x == rect.x + rect.width (exclusive)
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assertFalse(rect.getBounds().contains(rightEdge),
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"A point exactly on the right edge (exclusive) should not be contained");
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}
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@Test
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void pointOnBottomEdgeShouldNotBeContained() {
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Point bottomEdge = new Point(50, 80); // y == rect.y + rect.height (exclusive)
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assertFalse(rect.getBounds().contains(bottomEdge),
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"A point exactly on the bottom edge (exclusive) should not be contained");
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}
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}
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// -----------------------------------------------------------------------
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// SCircle — bounds = (x, y, radius*2, radius*2)
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// -----------------------------------------------------------------------
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@Nested
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class SCircleContainsPoint {
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// Shape: origin (20, 30), radius=40 → bounds (20, 30, 80, 80)
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// right-exclusive corner: (100, 110)
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private final SCircle circle = SCircle.create(20, 30, 40);
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@Test
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void pointInsideBoundsShouldBeContained() {
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Point inside = new Point(60, 70);
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assertTrue(circle.getBounds().contains(inside),
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"A point inside the bounding box should be contained");
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}
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@Test
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void pointOutsideBoundsShouldNotBeContained() {
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Point outside = new Point(10, 10);
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assertFalse(circle.getBounds().contains(outside),
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"A point outside the bounding box should not be contained");
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}
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@Test
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void topLeftCornerShouldBeContained() {
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Point topLeft = new Point(20, 30);
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assertTrue(circle.getBounds().contains(topLeft),
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"The top-left corner of the bounding box (inclusive) should be contained");
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}
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@Test
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void bottomRightCornerShouldNotBeContained() {
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Point bottomRight = new Point(100, 110); // x + 2r, y + 2r
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assertFalse(circle.getBounds().contains(bottomRight),
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"The bottom-right corner of the bounding box (exclusive) should not be contained");
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}
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@Test
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void pointAfterTranslateShouldBeAtNewPosition() {
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SCircle moved = SCircle.create(20, 30, 40);
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moved.translate(50, 50); // new bounds: (70, 80, 80, 80)
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Point oldCenter = new Point(60, 70);
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assertFalse(moved.getBounds().contains(oldCenter),
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"After translate, old center should no longer be contained");
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Point newCenter = new Point(110, 120);
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assertTrue(moved.getBounds().contains(newCenter),
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"After translate, a point at the new center should be contained");
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}
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}
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// -----------------------------------------------------------------------
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// STriangle — bounds = (x, y, size, size)
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// -----------------------------------------------------------------------
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@Nested
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class STriangleContainsPoint {
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// Shape: origin (5, 15), size=60 → bounds (5, 15, 60, 60)
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// right-exclusive corner: (65, 75)
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private final STriangle triangle = STriangle.create(5, 15, 60, Color.RED, Color.BLACK);
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@Test
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void pointInsideBoundsShouldBeContained() {
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Point inside = new Point(35, 45);
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assertTrue(triangle.getBounds().contains(inside),
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"A point inside the bounding box should be contained");
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}
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@Test
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void pointOutsideBoundsShouldNotBeContained() {
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Point outside = new Point(0, 0);
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assertFalse(triangle.getBounds().contains(outside),
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"A point outside the bounding box should not be contained");
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}
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@Test
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void topLeftCornerShouldBeContained() {
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Point topLeft = new Point(5, 15);
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assertTrue(triangle.getBounds().contains(topLeft),
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"The top-left corner of the bounding box (inclusive) should be contained");
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}
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@Test
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void bottomRightCornerShouldNotBeContained() {
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Point bottomRight = new Point(65, 75); // x + size, y + size
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assertFalse(triangle.getBounds().contains(bottomRight),
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"The bottom-right corner of the bounding box (exclusive) should not be contained");
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}
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@Test
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void pointAfterTranslateShouldBeAtNewPosition() {
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STriangle moved = STriangle.create(5, 15, 60, Color.RED, Color.BLACK);
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moved.translate(100, 100); // new bounds: (105, 115, 60, 60)
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Point oldCenter = new Point(35, 45);
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assertFalse(moved.getBounds().contains(oldCenter),
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"After translate, old center should no longer be contained");
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Point newCenter = new Point(135, 145);
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assertTrue(moved.getBounds().contains(newCenter),
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"After translate, a point at the new center should be contained");
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}
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}
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// -----------------------------------------------------------------------
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// SText — bounds = (x, y, 100, 20)
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// -----------------------------------------------------------------------
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||||
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@Nested
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class STextContainsPoint {
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// Shape: origin (50, 100) → bounds (50, 100, 100, 20)
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// right-exclusive corner: (150, 120)
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private final SText text = SText.create(50, 100, "Hello");
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@Test
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void pointInsideBoundsShouldBeContained() {
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Point inside = new Point(100, 110);
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assertTrue(text.getBounds().contains(inside),
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"A point inside the default text bounding box should be contained");
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}
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@Test
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||||
void pointOutsideBoundsShouldNotBeContained() {
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Point outside = new Point(10, 10);
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assertFalse(text.getBounds().contains(outside),
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||||
"A point outside the text bounding box should not be contained");
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}
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||||
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||||
@Test
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||||
void topLeftCornerShouldBeContained() {
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Point topLeft = new Point(50, 100);
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assertTrue(text.getBounds().contains(topLeft),
|
||||
"The top-left corner of the text bounding box (inclusive) should be contained");
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||||
}
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||||
|
||||
@Test
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void bottomRightCornerShouldNotBeContained() {
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// Default bounds width=100, height=20 → exclusive corner at (150, 120)
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Point bottomRight = new Point(150, 120);
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assertFalse(text.getBounds().contains(bottomRight),
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"The bottom-right corner of the text bounding box (exclusive) should not be contained");
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}
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||||
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||||
@Test
|
||||
void pointJustBeforeBottomRightShouldBeContained() {
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Point justInside = new Point(149, 119);
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assertTrue(text.getBounds().contains(justInside),
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||||
"A point one pixel before the exclusive bottom-right boundary should be contained");
|
||||
}
|
||||
|
||||
@Test
|
||||
void pointAfterTranslateShouldBeAtNewPosition() {
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// Original bounds: (50, 100, 100, 20) — covers x∈[50,150), y∈[100,120)
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||||
SText moved = SText.create(50, 100, "Hello");
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moved.translate(-40, 10); // new bounds: (10, 110, 100, 20) — covers x∈[10,110), y∈[110,130)
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||||
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||||
// (130, 105) was inside original bounds but is now outside (x=130 >= 110, y=105 < 110)
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||||
Point oldPosition = new Point(130, 105);
|
||||
assertFalse(moved.getBounds().contains(oldPosition),
|
||||
"After translate, a point that was in the old bounds should no longer be contained");
|
||||
|
||||
// (50, 115) is inside new bounds: x∈[10,110), y∈[110,130) ✓
|
||||
Point newPosition = new Point(50, 115);
|
||||
assertTrue(moved.getBounds().contains(newPosition),
|
||||
"After translate, a point in the new bounds should be contained");
|
||||
}
|
||||
|
||||
@Test
|
||||
void blankTextUsesDefaultPlaceholderAndSameBounds() {
|
||||
// Even blank/null text falls back to the placeholder — bounds remain (x, y, 100, 20)
|
||||
SText blankText = SText.create(0, 0, "");
|
||||
Point inside = new Point(50, 10);
|
||||
assertTrue(blankText.getBounds().contains(inside),
|
||||
"Blank text still uses default bounds; interior point should be contained");
|
||||
}
|
||||
}
|
||||
|
||||
// -----------------------------------------------------------------------
|
||||
// SCollection — bounds = union of children bounds
|
||||
// -----------------------------------------------------------------------
|
||||
|
||||
@Nested
|
||||
class SCollectionContainsPoint {
|
||||
|
||||
// Two non-overlapping children:
|
||||
// rect1: (10, 10, 50, 50) → covers x∈[10,60), y∈[10,60)
|
||||
// rect2: (100, 100, 40, 40) → covers x∈[100,140), y∈[100,140)
|
||||
// Union bounds: (10, 10, 130, 130) → exclusive corner: (140, 140)
|
||||
private final SRectangle child1 = SRectangle.create(10, 10, 50, 50);
|
||||
private final SRectangle child2 = SRectangle.create(100, 100, 40, 40);
|
||||
private final SCollection collection = SCollection.of(child1, child2);
|
||||
|
||||
@Test
|
||||
void pointInsideFirstChildBoundsShouldBeContained() {
|
||||
Point insideChild1 = new Point(30, 30);
|
||||
assertTrue(collection.getBounds().contains(insideChild1),
|
||||
"A point inside the first child's bounds is within the union and should be contained");
|
||||
}
|
||||
|
||||
@Test
|
||||
void pointInsideSecondChildBoundsShouldBeContained() {
|
||||
Point insideChild2 = new Point(120, 120);
|
||||
assertTrue(collection.getBounds().contains(insideChild2),
|
||||
"A point inside the second child's bounds is within the union and should be contained");
|
||||
}
|
||||
|
||||
@Test
|
||||
void pointInGapBetweenChildrenShouldBeContained() {
|
||||
// The union rectangle spans the gap between the two children
|
||||
Point inGap = new Point(70, 70);
|
||||
assertTrue(collection.getBounds().contains(inGap),
|
||||
"A point in the gap between children is still inside the union bounds and should be contained");
|
||||
}
|
||||
|
||||
@Test
|
||||
void pointOutsideUnionShouldNotBeContained() {
|
||||
Point outside = new Point(0, 0);
|
||||
assertFalse(collection.getBounds().contains(outside),
|
||||
"A point outside the union bounds should not be contained");
|
||||
}
|
||||
|
||||
@Test
|
||||
void topLeftCornerOfUnionShouldBeContained() {
|
||||
// Union top-left = (10, 10) — inclusive
|
||||
Point topLeft = new Point(10, 10);
|
||||
assertTrue(collection.getBounds().contains(topLeft),
|
||||
"The top-left corner of the union bounds (inclusive) should be contained");
|
||||
}
|
||||
|
||||
@Test
|
||||
void bottomRightCornerOfUnionShouldNotBeContained() {
|
||||
// Union: x=10, y=10, w=130, h=130 → exclusive corner (140, 140)
|
||||
Point bottomRight = new Point(140, 140);
|
||||
assertFalse(collection.getBounds().contains(bottomRight),
|
||||
"The bottom-right corner of the union bounds (exclusive) should not be contained");
|
||||
}
|
||||
|
||||
@Test
|
||||
void pointAfterTranslatingChildrenShouldBeAtNewPosition() {
|
||||
SRectangle movableChild = SRectangle.create(0, 0, 30, 30);
|
||||
SCollection movable = SCollection.of(movableChild);
|
||||
|
||||
movable.translate(50, 50); // child now at (50, 50, 30, 30)
|
||||
|
||||
Point oldPoint = new Point(15, 15);
|
||||
assertFalse(movable.getBounds().contains(oldPoint),
|
||||
"After translate, a point at the old location should not be contained");
|
||||
|
||||
Point newPoint = new Point(65, 65);
|
||||
assertTrue(movable.getBounds().contains(newPoint),
|
||||
"After translate, a point at the new location should be contained");
|
||||
}
|
||||
|
||||
@Test
|
||||
void singleChildCollectionBoundsMatchChildBounds() {
|
||||
SRectangle only = SRectangle.create(5, 5, 20, 20);
|
||||
SCollection single = SCollection.of(only);
|
||||
|
||||
assertEquals(only.getBounds(), single.getBounds(),
|
||||
"A single-child collection's bounds should equal the child's own bounds");
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -114,51 +114,6 @@ class SCollectionTest {
|
||||
assertEquals(30, bounds.y);
|
||||
}
|
||||
|
||||
@Test
|
||||
void testResizeEmptyCollectionIsNoOp() {
|
||||
SCollection collection = SCollection.of();
|
||||
|
||||
assertDoesNotThrow(() -> collection.resize(ResizeHandle.SE, 25, 25));
|
||||
assertEquals(new Rectangle(App.WIN_SIZE), collection.getBounds());
|
||||
}
|
||||
|
||||
@Test
|
||||
void testResizeSingleChildResizesChildAndCollection() {
|
||||
SRectangle rect = SRectangle.create(10, 20, 100, 50);
|
||||
SCollection collection = SCollection.of(rect);
|
||||
|
||||
collection.resize(ResizeHandle.E, 20, 0);
|
||||
|
||||
assertEquals(new Rectangle(10, 20, 120, 50), rect.getBounds());
|
||||
assertEquals(new Rectangle(10, 20, 120, 50), collection.getBounds());
|
||||
}
|
||||
|
||||
@Test
|
||||
void testResizeMultipleChildrenScalesChildrenProportionally() {
|
||||
SRectangle rect1 = SRectangle.create(0, 0, 10, 10);
|
||||
SRectangle rect2 = SRectangle.create(20, 10, 20, 10);
|
||||
SCollection collection = SCollection.of(rect1, rect2);
|
||||
|
||||
collection.resize(ResizeHandle.SE, 20, 10);
|
||||
|
||||
assertEquals(new Rectangle(0, 0, 15, 15), rect1.getBounds());
|
||||
assertEquals(new Rectangle(30, 15, 30, 15), rect2.getBounds());
|
||||
assertEquals(new Rectangle(0, 0, 60, 30), collection.getBounds());
|
||||
}
|
||||
|
||||
@Test
|
||||
void testResizeFromNorthWestRepositionsAndScalesChildren() {
|
||||
SRectangle rect1 = SRectangle.create(0, 0, 10, 10);
|
||||
SRectangle rect2 = SRectangle.create(10, 10, 10, 10);
|
||||
SCollection collection = SCollection.of(rect1, rect2);
|
||||
|
||||
collection.resize(ResizeHandle.NW, 10, 10);
|
||||
|
||||
assertEquals(new Rectangle(10, 10, 5, 5), rect1.getBounds());
|
||||
assertEquals(new Rectangle(15, 15, 5, 5), rect2.getBounds());
|
||||
assertEquals(new Rectangle(10, 10, 10, 10), collection.getBounds());
|
||||
}
|
||||
|
||||
@Test
|
||||
void testClone() {
|
||||
SRectangle rect = SRectangle.create(10, 20, 100, 50);
|
||||
|
||||
@@ -44,4 +44,40 @@ class STextTest {
|
||||
SText text = SText.create(0, 0, null);
|
||||
assertEquals(SText.PLACEHOLDER_TEXT, text.getText());
|
||||
}
|
||||
|
||||
@Test
|
||||
void testUpdateMeasuredBoundsActuallyUpdatesBounds() {
|
||||
SText text = SText.create(10, 20, "Hello");
|
||||
text.updateMeasuredBounds(200, 30);
|
||||
Rectangle bounds = text.getBounds();
|
||||
assertEquals(200, bounds.width, "updateMeasuredBounds must update width");
|
||||
assertEquals(30, bounds.height, "updateMeasuredBounds must update height");
|
||||
}
|
||||
|
||||
@Test
|
||||
void testUpdateMeasuredBoundsDoesNotChangePosition() {
|
||||
SText text = SText.create(10, 20, "Hello");
|
||||
text.updateMeasuredBounds(200, 30);
|
||||
Rectangle bounds = text.getBounds();
|
||||
assertEquals(10, bounds.x, "updateMeasuredBounds must not change x");
|
||||
assertEquals(20, bounds.y, "updateMeasuredBounds must not change y");
|
||||
}
|
||||
|
||||
@Test
|
||||
void testUpdateMeasuredBoundsNegativeClampedToZero() {
|
||||
SText text = SText.create(0, 0, "Hello");
|
||||
text.updateMeasuredBounds(-5, -10);
|
||||
Rectangle bounds = text.getBounds();
|
||||
assertEquals(0, bounds.width, "negative width must be clamped to 0");
|
||||
assertEquals(0, bounds.height, "negative height must be clamped to 0");
|
||||
}
|
||||
|
||||
@Test
|
||||
void testUpdateMeasuredBoundsZeroIsAllowed() {
|
||||
SText text = SText.create(0, 0, "Hello");
|
||||
text.updateMeasuredBounds(0, 0);
|
||||
Rectangle bounds = text.getBounds();
|
||||
assertEquals(0, bounds.width);
|
||||
assertEquals(0, bounds.height);
|
||||
}
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user