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This moves the CameraComponent and the new event system out of experimental since this now is the recommended way of handling things.
293 lines
7.7 KiB
Dart
293 lines
7.7 KiB
Dart
import 'dart:math';
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import 'package:flame/collisions.dart';
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import 'package:flame/components.dart';
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import 'package:flame/events.dart';
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import 'package:flame/extensions.dart';
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import 'package:flame/game.dart';
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import 'package:flame/palette.dart';
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import 'package:flutter/material.dart' hide Image, Draggable;
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enum Shapes { circle, rectangle, polygon }
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class MultipleShapesExample extends FlameGame with HasCollisionDetection {
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static const description = '''
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An example with many hitboxes that move around on the screen and during
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collisions they change color depending on what it is that they have collided
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with.
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The snowman, the component built with three circles on top of each other,
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works a little bit differently than the other components to show that you
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can have multiple hitboxes within one component.
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On this example, you can "throw" the components by dragging them quickly in
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any direction.
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''';
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@override
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Future<void> onLoad() async {
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add(FpsTextComponent(position: Vector2(0, size.y - 24)));
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final screenHitbox = ScreenHitbox();
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final snowman = CollidableSnowman(
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Vector2.all(150),
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Vector2(120, 250),
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Vector2(-100, 100),
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screenHitbox,
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);
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MyCollidable lastToAdd = snowman;
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add(screenHitbox);
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add(snowman);
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var totalAdded = 1;
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while (totalAdded < 1000) {
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lastToAdd = nextRandomCollidable(lastToAdd, screenHitbox);
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final lastBottomRight = lastToAdd.toAbsoluteRect().bottomRight;
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if (lastBottomRight.dx < size.x && lastBottomRight.dy < size.y) {
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add(lastToAdd);
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totalAdded++;
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} else {
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break;
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}
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}
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}
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final _rng = Random();
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final _distance = Vector2(100, 0);
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MyCollidable nextRandomCollidable(
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MyCollidable lastCollidable,
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ScreenHitbox screenHitbox,
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) {
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final collidableSize = Vector2.all(50) + Vector2.random(_rng) * 100;
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final isXOverflow = lastCollidable.position.x +
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lastCollidable.size.x / 2 +
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_distance.x +
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collidableSize.x >
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size.x;
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var position = _distance + Vector2(0, lastCollidable.position.y + 200);
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if (!isXOverflow) {
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position = (lastCollidable.position + _distance)
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..x += collidableSize.x / 2;
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}
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final velocity = (Vector2.random(_rng) - Vector2.random(_rng)) * 400;
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return randomCollidable(
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position,
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collidableSize,
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velocity,
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screenHitbox,
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random: _rng,
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);
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}
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}
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abstract class MyCollidable extends PositionComponent
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with DragCallbacks, CollisionCallbacks, GestureHitboxes {
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double rotationSpeed = 0.0;
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final Vector2 velocity;
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final delta = Vector2.zero();
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double angleDelta = 0;
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final Color _defaultColor = Colors.blue.withOpacity(0.8);
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final Color _collisionColor = Colors.green.withOpacity(0.8);
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late final Paint _dragIndicatorPaint;
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final ScreenHitbox screenHitbox;
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ShapeHitbox? hitbox;
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MyCollidable(
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Vector2 position,
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Vector2 size,
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this.velocity,
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this.screenHitbox,
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) : super(position: position, size: size, anchor: Anchor.center) {
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_dragIndicatorPaint = BasicPalette.white.paint();
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}
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@override
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void onMount() {
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hitbox?.paint.color = _defaultColor;
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super.onMount();
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}
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@override
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void update(double dt) {
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super.update(dt);
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if (isDragged) {
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return;
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}
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delta.setFrom(velocity * dt);
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position.add(delta);
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angleDelta = dt * rotationSpeed;
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angle = (angle + angleDelta) % (2 * pi);
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// Takes rotation into consideration (which topLeftPosition doesn't)
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final topLeft = absoluteCenter - (scaledSize / 2);
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if (topLeft.x + scaledSize.x < 0 ||
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topLeft.y + scaledSize.y < 0 ||
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topLeft.x > screenHitbox.scaledSize.x ||
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topLeft.y > screenHitbox.scaledSize.y) {
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final moduloSize = screenHitbox.scaledSize + scaledSize;
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topLeftPosition = topLeftPosition % moduloSize;
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}
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}
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@override
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void render(Canvas canvas) {
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if (isDragged) {
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final localCenter = scaledSize.toOffset() / 2;
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canvas.drawCircle(localCenter, 5, _dragIndicatorPaint);
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}
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}
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@override
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void onCollisionStart(
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Set<Vector2> intersectionPoints,
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PositionComponent other,
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) {
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super.onCollisionStart(intersectionPoints, other);
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hitbox?.paint.color = _collisionColor;
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}
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@override
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void onCollisionEnd(PositionComponent other) {
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super.onCollisionEnd(other);
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if (!isColliding) {
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hitbox?.paint.color = _defaultColor;
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}
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}
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@override
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void onDragEnd(DragEndEvent event) {
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super.onDragEnd(event);
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velocity.setFrom(event.velocity / 10);
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}
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}
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class CollidablePolygon extends MyCollidable {
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CollidablePolygon(
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Vector2 position,
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Vector2 size,
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Vector2 velocity,
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ScreenHitbox screenHitbox,
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) : super(position, size, velocity, screenHitbox) {
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hitbox = PolygonHitbox.relative(
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[
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Vector2(-1.0, 0.0),
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Vector2(-0.8, 0.6),
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Vector2(0.0, 1.0),
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Vector2(0.6, 0.9),
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Vector2(1.0, 0.0),
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Vector2(0.6, -0.8),
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Vector2(0, -1.0),
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Vector2(-0.8, -0.8),
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],
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parentSize: size,
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)..renderShape = true;
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add(hitbox!);
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}
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}
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class CollidableRectangle extends MyCollidable {
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CollidableRectangle(
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super.position,
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super.size,
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super.velocity,
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super.screenHitbox,
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) {
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hitbox = RectangleHitbox()..renderShape = true;
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add(hitbox!);
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}
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}
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class CollidableCircle extends MyCollidable {
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CollidableCircle(
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super.position,
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super.size,
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super.velocity,
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super.screenHitbox,
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) {
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hitbox = CircleHitbox()..renderShape = true;
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add(hitbox!);
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}
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}
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class SnowmanPart extends CircleHitbox {
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@override
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final renderShape = true;
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final startColor = Colors.white.withOpacity(0.8);
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final Color hitColor;
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SnowmanPart(double radius, Vector2 position, this.hitColor)
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: super(radius: radius, position: position, anchor: Anchor.center) {
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paint.color = startColor;
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}
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@override
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void onCollisionStart(Set<Vector2> intersectionPoints, ShapeHitbox other) {
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super.onCollisionStart(intersectionPoints, other);
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if (other.hitboxParent is ScreenHitbox) {
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paint.color = startColor;
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} else {
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paint.color = hitColor.withOpacity(0.8);
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}
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}
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@override
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void onCollisionEnd(ShapeHitbox other) {
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super.onCollisionEnd(other);
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if (!isColliding) {
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paint.color = startColor;
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}
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}
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}
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class CollidableSnowman extends MyCollidable {
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CollidableSnowman(
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Vector2 position,
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Vector2 size,
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Vector2 velocity,
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ScreenHitbox screenHitbox,
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) : super(position, size, velocity, screenHitbox) {
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rotationSpeed = 0.3;
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anchor = Anchor.topLeft;
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final top = SnowmanPart(
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size.x * 0.3,
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Vector2(size.x / 2, size.y * 0.15),
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Colors.red,
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);
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final middle = SnowmanPart(
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size.x * 0.4,
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Vector2(size.x / 2, size.y * 0.40),
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Colors.yellow,
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);
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final bottom = SnowmanPart(
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size.x / 2,
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Vector2(size.x / 2, size.y - size.y / 4),
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Colors.green,
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);
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add(bottom);
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add(middle);
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add(top);
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}
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}
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MyCollidable randomCollidable(
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Vector2 position,
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Vector2 size,
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Vector2 velocity,
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ScreenHitbox screenHitbox, {
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Random? random,
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}) {
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final rng = random ?? Random();
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final rotationSpeed = 0.5 - rng.nextDouble();
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final shapeType = Shapes.values[rng.nextInt(Shapes.values.length)];
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switch (shapeType) {
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case Shapes.circle:
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return CollidableCircle(position, size, velocity, screenHitbox)
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..rotationSpeed = rotationSpeed;
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case Shapes.rectangle:
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return CollidableRectangle(position, size, velocity, screenHitbox)
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..rotationSpeed = rotationSpeed;
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case Shapes.polygon:
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return CollidablePolygon(position, size, velocity, screenHitbox)
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..rotationSpeed = rotationSpeed;
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}
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}
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