mirror of
https://github.com/photonstorm/phaser
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810 lines
No EOL
27 KiB
TypeScript
810 lines
No EOL
27 KiB
TypeScript
/// <reference path="../Game.ts" />
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/// <reference path="MicroPoint.ts" />
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/**
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* Phaser - Rectangle
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*
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* A Rectangle object is an area defined by its position, as indicated by its top-left corner (x,y) and width and height.
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*/
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module Phaser {
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export class Rectangle {
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/**
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* Creates a new Rectangle object with the top-left corner specified by the x and y parameters and with the specified width and height parameters.
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* If you call this function without parameters, a rectangle with x, y, width, and height properties set to 0 is created.
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* @class Rectangle
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* @constructor
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* @param {Number} x The x coordinate of the top-left corner of the rectangle.
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* @param {Number} y The y coordinate of the top-left corner of the rectangle.
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* @param {Number} width The width of the rectangle.
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* @param {Number} height The height of the rectangle.
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* @return {Rectangle} This rectangle object
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**/
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constructor(x: number = 0, y: number = 0, width: number = 0, height: number = 0) {
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this._width = width;
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if (width > 0)
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{
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this._halfWidth = Math.round(width / 2);
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}
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this._height = height;
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if (height > 0)
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{
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this._halfHeight = Math.round(height / 2);
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}
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this.length = Math.max(this._width, this._height);
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this.topLeft = new MicroPoint(x, y, this);
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this.topCenter = new MicroPoint(x + this._halfWidth, y, this);
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this.topRight = new MicroPoint(x + this._width - 1, y, this);
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this.leftCenter = new MicroPoint(x, y + this._halfHeight, this);
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this.center = new MicroPoint(x + this._halfWidth, y + this._halfHeight, this);
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this.rightCenter = new MicroPoint(x + this._width - 1, y + this._halfHeight, this);
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this.bottomLeft = new MicroPoint(x, y + this._height - 1, this);
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this.bottomCenter = new MicroPoint(x + this._halfWidth, y + this._height - 1, this);
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this.bottomRight = new MicroPoint(x + this._width - 1, y + this._height - 1, this);
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}
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private _tempX: number = null;
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private _tempY: number = null;
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private _tempWidth: number = null;
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private _tempHeight: number = null;
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/**
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* The x coordinate of the top-left corner of the rectangle
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* @property x
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* @type {Number}
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**/
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public get x(): number {
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return this.topLeft.x;
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}
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/**
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* The y coordinate of the top-left corner of the rectangle
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* @property y
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* @type {Number}
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**/
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public get y(): number {
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return this.topLeft.y;
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}
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/**
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* The x coordinate of the top-left corner of the rectangle
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* @property x
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* @type {Number}
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**/
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public set x(value: number) {
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this.topLeft.x = value;
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}
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/**
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* The y coordinate of the top-left corner of the rectangle
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* @property y
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* @type {Number}
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**/
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public set y(value:number) {
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this.topLeft.y = value;
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}
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/**
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* The x and y coordinate of the top-left corner of the rectangle (same as x/y)
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* @property topLeft
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* @type {MicroPoint}
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**/
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public topLeft: MicroPoint;
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/**
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* The x and y coordinate of the top-center of the rectangle
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* @property topCenter
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* @type {MicroPoint}
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**/
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public topCenter: MicroPoint;
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/**
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* The x and y coordinate of the top-right corner of the rectangle
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* @property topRight
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* @type {MicroPoint}
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**/
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public topRight: MicroPoint;
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/**
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* The x and y coordinate of the left-center of the rectangle
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* @property leftCenter
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* @type {MicroPoint}
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**/
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public leftCenter: MicroPoint;
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/**
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* The x and y coordinate of the center of the rectangle
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* @property center
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* @type {MicroPoint}
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**/
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public center: MicroPoint;
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/**
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* The x and y coordinate of the right-center of the rectangle
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* @property rightCenter
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* @type {MicroPoint}
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**/
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public rightCenter: MicroPoint;
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/**
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* The x and y coordinate of the bottom-left corner of the rectangle
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* @property bottomLeft
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* @type {MicroPoint}
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**/
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public bottomLeft: MicroPoint;
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/**
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* The x and y coordinate of the bottom-center of the rectangle
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* @property bottomCenter
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* @type {MicroPoint}
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**/
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public bottomCenter: MicroPoint;
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/**
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* The x and y coordinate of the bottom-right corner of the rectangle
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* @property bottomRight
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* @type {MicroPoint}
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**/
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public bottomRight: MicroPoint;
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/**
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* The width of the rectangle
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* @property width
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* @type {Number}
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**/
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private _width: number = 0;
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/**
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* The height of the rectangle
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* @property height
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* @type {Number}
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**/
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private _height: number = 0;
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/**
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* Half of the width of the rectangle
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* @property halfWidth
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* @type {Number}
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**/
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private _halfWidth: number = 0;
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/**
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* Half of the height of the rectangle
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* @property halfHeight
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* @type {Number}
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**/
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private _halfHeight: number = 0;
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/**
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* The size of the longest side (width or height)
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* @property length
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* @type {Number}
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**/
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public length: number = 0;
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/**
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* Updates all of the MicroPoints based on the values of width and height.
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* You should not normally call this directly.
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**/
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public updateBounds() {
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if (this._tempWidth !== null)
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{
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this._width = this._tempWidth;
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this._halfWidth = 0;
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if (this._width > 0)
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{
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this._halfWidth = Math.round(this._width / 2);
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}
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}
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if (this._tempHeight !== null)
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{
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this._height = this._tempHeight;
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this._halfHeight = 0;
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if (this._height > 0)
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{
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this._halfHeight = Math.round(this._height / 2);
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}
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}
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this.length = Math.max(this._width, this._height);
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if (this._tempX !== null && this._tempY !== null)
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{
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this.topLeft.setTo(this._tempX, this._tempY, false);
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}
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else if (this._tempX !== null && this._tempY == null)
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{
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this.topLeft.setTo(this._tempX, this.topLeft.y, false);
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}
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else if (this._tempX == null && this._tempY !== null)
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{
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this.topLeft.setTo(this.topLeft.x, this._tempY, false);
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}
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else
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{
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this.topLeft.setTo(this.x, this.y, false);
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}
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this.topCenter.setTo(this.x + this._halfWidth, this.y, false);
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this.topRight.setTo(this.x + this._width - 1, this.y, false);
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this.leftCenter.setTo(this.x, this.y + this._halfHeight, false);
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this.center.setTo(this.x + this._halfWidth, this.y + this._halfHeight, false);
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this.rightCenter.setTo(this.x + this._width - 1, this.y + this._halfHeight, false);
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this.bottomLeft.setTo(this.x, this.y + this._height - 1, false);
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this.bottomCenter.setTo(this.x + this._halfWidth, this.y + this._height - 1, false);
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this.bottomRight.setTo(this.x + this._width - 1, this.y + this._height - 1, false);
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this._tempX = null;
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this._tempY = null;
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this._tempWidth = null;
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this._tempHeight = null;
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}
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/**
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* The width of the rectangle
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* @property width
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* @type {Number}
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**/
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public set width(value: number) {
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this._width = value;
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this._halfWidth = Math.round(value / 2);
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this.updateBounds();
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}
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/**
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* The height of the rectangle
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* @property height
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* @type {Number}
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**/
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public set height(value: number) {
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this._height = value;
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this._halfHeight = Math.round(value / 2);
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this.updateBounds();
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}
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/**
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* The width of the rectangle
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* @property width
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* @type {Number}
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**/
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public get width(): number {
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return this._width;
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}
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/**
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* The height of the rectangle
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* @property height
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* @type {Number}
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**/
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public get height(): number {
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return this._height;
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}
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/**
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* Half of the width of the rectangle
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* @property halfWidth
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* @type {Number}
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**/
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public get halfWidth(): number {
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return this._halfWidth;
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}
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/**
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* Half of the height of the rectangle
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* @property halfHeight
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* @type {Number}
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**/
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public get halfHeight(): number {
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return this._halfHeight;
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}
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/**
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* The sum of the y and height properties.
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* Changing the bottom property of a Rectangle object has no effect on the x, y and width properties, but does change the height property.
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* @method bottom
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* @return {Number}
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**/
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public get bottom(): number {
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return this.bottomCenter.y;
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}
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/**
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* The sum of the y and height properties.
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* Changing the bottom property of a Rectangle object has no effect on the x, y and width properties, but does change the height property.
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* @method bottom
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* @param {Number} value
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**/
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public set bottom(value: number) {
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if (value < this.y)
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{
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this._tempHeight = 0;
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}
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else
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{
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this._tempHeight = this.y + value;
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}
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this.updateBounds();
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}
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/**
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* The x coordinate of the top-left corner of the rectangle.
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* Changing the left property of a Rectangle object has no effect on the y and height properties.
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* However it does affect the width property, whereas changing the x value does not affect the width property.
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* @method left
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* @ return {Number}
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**/
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public get left(): number {
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return this.x;
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}
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/**
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* The x coordinate of the top-left corner of the rectangle.
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* Changing the left property of a Rectangle object has no effect on the y and height properties.
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* However it does affect the width property, whereas changing the x value does not affect the width property.
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* @method left
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* @param {Number} value
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**/
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public set left(value: number) {
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var diff = this.x - value;
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if (this._width + diff < 0)
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{
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this._tempWidth = 0;
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this._tempX = value;
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}
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else
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{
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this._tempWidth = this._width + diff;
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this._tempX = value;
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}
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this.updateBounds();
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}
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/**
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* The sum of the x and width properties.
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* Changing the right property of a Rectangle object has no effect on the x, y and height properties.
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* However it does affect the width property.
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* @method right
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* @return {Number}
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**/
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public get right(): number {
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return this.rightCenter.x;
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}
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/**
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* The sum of the x and width properties.
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* Changing the right property of a Rectangle object has no effect on the x, y and height properties.
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* However it does affect the width property.
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* @method right
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* @param {Number} value
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**/
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public set right(value: number) {
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if (value < this.topLeft.x)
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{
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this._tempWidth = 0;
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}
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else
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{
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this._tempWidth = (value - this.topLeft.x);
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}
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this.updateBounds();
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}
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/**
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* The size of the Rectangle object, expressed as a Point object with the values of the width and height properties.
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* @method size
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* @param {Point} output Optional Point object. If given the values will be set into the object, otherwise a brand new Point object will be created and returned.
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* @return {Point} The size of the Rectangle object
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**/
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public size(output?: Point = new Point): Point {
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return output.setTo(this._width, this._height);
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}
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/**
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* The volume of the Rectangle object in pixels, derived from width * height
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* @method volume
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* @return {Number}
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**/
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public get volume(): number {
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return this._width * this._height;
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}
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/**
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* The perimeter size of the Rectangle object in pixels. This is the sum of all 4 sides.
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* @method perimeter
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* @return {Number}
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**/
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public get perimeter(): number {
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return (this._width * 2) + (this._height * 2);
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}
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/**
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* The y coordinate of the top-left corner of the rectangle.
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* Changing the top property of a Rectangle object has no effect on the x and width properties.
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* However it does affect the height property, whereas changing the y value does not affect the height property.
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* @method top
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* @return {Number}
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**/
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public get top(): number {
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return this.topCenter.y;
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}
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/**
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* The y coordinate of the top-left corner of the rectangle.
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* Changing the top property of a Rectangle object has no effect on the x and width properties.
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* However it does affect the height property, whereas changing the y value does not affect the height property.
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* @method top
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* @param {Number} value
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**/
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public set top(value: number) {
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var diff = this.topCenter.y - value;
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if (this._height + diff < 0)
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{
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this._tempHeight = 0;
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this._tempY = value;
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}
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else
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{
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this._tempHeight = this._height + diff;
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this._tempY = value;
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}
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this.updateBounds();
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}
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/**
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* Returns a new Rectangle object with the same values for the x, y, width, and height properties as the original Rectangle object.
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* @method clone
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* @param {Rectangle} output Optional Rectangle object. If given the values will be set into the object, otherwise a brand new Rectangle object will be created and returned.
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* @return {Rectangle}
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**/
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public clone(output?: Rectangle = new Rectangle): Rectangle {
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return output.setTo(this.x, this.y, this.width, this.height);
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}
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/**
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* Determines whether the specified coordinates are contained within the region defined by this Rectangle object.
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* @method contains
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* @param {Number} x The x coordinate of the point to test.
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* @param {Number} y The y coordinate of the point to test.
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* @return {Boolean} A value of true if the Rectangle object contains the specified point; otherwise false.
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**/
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public contains(x: number, y: number): bool {
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if (x >= this.topLeft.x && x <= this.topRight.x && y >= this.topLeft.y && y <= this.bottomRight.y)
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{
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return true;
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}
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return false;
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}
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/**
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* Determines whether the specified point is contained within the rectangular region defined by this Rectangle object.
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* This method is similar to the Rectangle.contains() method, except that it takes a Point object as a parameter.
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* @method containsPoint
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* @param {Point} point The point object being checked. Can be Point or any object with .x and .y values.
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* @return {Boolean} A value of true if the Rectangle object contains the specified point; otherwise false.
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**/
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public containsPoint(point: any): bool {
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return this.contains(point.x, point.y);
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}
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/**
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* Determines whether the Rectangle object specified by the rect parameter is contained within this Rectangle object.
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* A Rectangle object is said to contain another if the second Rectangle object falls entirely within the boundaries of the first.
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* @method containsRect
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* @param {Rectangle} rect The rectangle object being checked.
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* @return {Boolean} A value of true if the Rectangle object contains the specified point; otherwise false.
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**/
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public containsRect(rect: Rectangle): bool {
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// If the given rect has a larger volume than this one then it can never contain it
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if (rect.volume > this.volume)
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{
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return false;
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}
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if (rect.x >= this.topLeft.x && rect.y >= this.topLeft.y && rect.rightCenter.x <= this.rightCenter.x && rect.bottomCenter.y <= this.bottomCenter.y)
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{
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return true;
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}
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return false;
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}
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/**
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* Copies all of rectangle data from the source Rectangle object into the calling Rectangle object.
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* @method copyFrom
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* @param {Rectangle} rect The source rectangle object to copy from
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* @return {Rectangle} This rectangle object
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**/
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public copyFrom(source: Rectangle): Rectangle {
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return this.setTo(source.x, source.y, source.width, source.height);
|
|
|
|
}
|
|
|
|
|
|
/**
|
|
* Copies all the rectangle data from this Rectangle object into the destination Rectangle object.
|
|
* @method copyTo
|
|
* @param {Rectangle} rect The destination rectangle object to copy in to
|
|
* @return {Rectangle} The destination rectangle object
|
|
**/
|
|
public copyTo(target: Rectangle): Rectangle {
|
|
|
|
return target.copyFrom(this);
|
|
|
|
}
|
|
|
|
/**
|
|
* Determines whether the object specified in the toCompare parameter is equal to this Rectangle object.
|
|
* This method compares the x, y, width, and height properties of an object against the same properties of this Rectangle object.
|
|
* @method equals
|
|
* @param {Rectangle} toCompare The rectangle to compare to this Rectangle object.
|
|
* @return {Boolean} A value of true if the object has exactly the same values for the x, y, width, and height properties as this Rectangle object; otherwise false.
|
|
**/
|
|
public equals(toCompare: Rectangle): bool {
|
|
|
|
if (this.topLeft.equals(toCompare.topLeft) && this.bottomRight.equals(toCompare.bottomRight))
|
|
{
|
|
return true;
|
|
}
|
|
|
|
return false;
|
|
|
|
}
|
|
|
|
/**
|
|
* Increases the size of the Rectangle object by the specified amounts.
|
|
* The center point of the Rectangle object stays the same, and its size increases to the left and right by the dx value,
|
|
* and to the top and the bottom by the dy value.
|
|
* @method inflate
|
|
* @param {Number} dx The amount to be added to the left side of this Rectangle.
|
|
* @param {Number} dy The amount to be added to the bottom side of this Rectangle.
|
|
* @return {Rectangle} This Rectangle object.
|
|
**/
|
|
public inflate(dx: number, dy: number): Rectangle {
|
|
|
|
this._tempX = this.topLeft.x - dx;
|
|
this._tempWidth = this._width + (2 * dx);
|
|
this._tempY = this.topLeft.y - dy;
|
|
this._tempHeight = this._height + (2 * dy);
|
|
|
|
this.updateBounds();
|
|
|
|
return this;
|
|
|
|
}
|
|
|
|
/**
|
|
* Increases the size of the Rectangle object.
|
|
* This method is similar to the Rectangle.inflate() method except it takes a Point object as a parameter.
|
|
* @method inflatePoint
|
|
* @param {Point} point The x property of this Point object is used to increase the horizontal dimension of the Rectangle object. The y property is used to increase the vertical dimension of the Rectangle object.
|
|
* @return {Rectangle} This Rectangle object.
|
|
**/
|
|
public inflatePoint(point: Point): Rectangle {
|
|
|
|
return this.inflate(point.x, point.y);
|
|
|
|
}
|
|
|
|
/**
|
|
* If the Rectangle object specified in the toIntersect parameter intersects with this Rectangle object,
|
|
* returns the area of intersection as a Rectangle object. If the rectangles do not intersect, this method
|
|
* returns an empty Rectangle object with its properties set to 0.
|
|
* @method intersection
|
|
* @param {Rectangle} toIntersect The Rectangle object to compare against to see if it intersects with this Rectangle object.
|
|
* @param {Rectangle} output Optional Rectangle object. If given the intersection values will be set into this object, otherwise a brand new Rectangle object will be created and returned.
|
|
* @return {Rectangle} A Rectangle object that equals the area of intersection. If the rectangles do not intersect, this method returns an empty Rectangle object; that is, a rectangle with its x, y, width, and height properties set to 0.
|
|
**/
|
|
public intersection(toIntersect: Rectangle, output?: Rectangle = new Rectangle): Rectangle {
|
|
|
|
if (this.intersects(toIntersect) === true)
|
|
{
|
|
output.x = Math.max(toIntersect.topLeft.x, this.topLeft.x);
|
|
output.y = Math.max(toIntersect.topLeft.y, this.topLeft.y);
|
|
output.width = Math.min(toIntersect.rightCenter.x, this.rightCenter.x) - output.x;
|
|
output.height = Math.min(toIntersect.bottomCenter.y, this.bottomCenter.y) - output.y;
|
|
}
|
|
|
|
return output;
|
|
|
|
}
|
|
|
|
/**
|
|
* Determines whether the object specified intersects (overlaps) with this Rectangle object.
|
|
* This method checks the x, y, width, and height properties of the specified Rectangle object to see if it intersects with this Rectangle object.
|
|
* @method intersects
|
|
* @param {Rectangle} r2 The Rectangle object to compare against to see if it intersects with this Rectangle object.
|
|
* @param {Number} t A tolerance value to allow for an intersection test with padding, default to 0
|
|
* @return {Boolean} A value of true if the specified object intersects with this Rectangle object; otherwise false.
|
|
**/
|
|
public intersects(r2: Rectangle, t?: number = 0): bool {
|
|
|
|
return !(r2.left > this.right + t || r2.right < this.left - t || r2.top > this.bottom + t || r2.bottom < this.top - t);
|
|
|
|
}
|
|
|
|
/**
|
|
* Determines whether or not this Rectangle object is empty.
|
|
* @method isEmpty
|
|
* @return {Boolean} A value of true if the Rectangle object's width or height is less than or equal to 0; otherwise false.
|
|
**/
|
|
public get isEmpty(): bool {
|
|
|
|
if (this.width < 1 || this.height < 1)
|
|
{
|
|
return true;
|
|
}
|
|
|
|
return false;
|
|
|
|
}
|
|
|
|
/**
|
|
* Adjusts the location of the Rectangle object, as determined by its top-left corner, by the specified amounts.
|
|
* @method offset
|
|
* @param {Number} dx Moves the x value of the Rectangle object by this amount.
|
|
* @param {Number} dy Moves the y value of the Rectangle object by this amount.
|
|
* @return {Rectangle} This Rectangle object.
|
|
**/
|
|
public offset(dx: number, dy: number): Rectangle {
|
|
|
|
if (!isNaN(dx) && !isNaN(dy))
|
|
{
|
|
this.x += dx;
|
|
this.y += dy;
|
|
}
|
|
|
|
return this;
|
|
|
|
}
|
|
|
|
/**
|
|
* Adjusts the location of the Rectangle object using a Point object as a parameter. This method is similar to the Rectangle.offset() method, except that it takes a Point object as a parameter.
|
|
* @method offsetPoint
|
|
* @param {Point} point A Point object to use to offset this Rectangle object.
|
|
* @return {Rectangle} This Rectangle object.
|
|
**/
|
|
public offsetPoint(point: Point): Rectangle {
|
|
|
|
return this.offset(point.x, point.y);
|
|
|
|
}
|
|
|
|
/**
|
|
* Sets all of the Rectangle object's properties to 0. A Rectangle object is empty if its width or height is less than or equal to 0.
|
|
* @method setEmpty
|
|
* @return {Rectangle} This rectangle object
|
|
**/
|
|
public setEmpty() {
|
|
|
|
return this.setTo(0, 0, 0, 0);
|
|
|
|
}
|
|
|
|
/**
|
|
* Sets the members of Rectangle to the specified values.
|
|
* @method setTo
|
|
* @param {Number} x The x coordinate of the top-left corner of the rectangle.
|
|
* @param {Number} y The y coordinate of the top-left corner of the rectangle.
|
|
* @param {Number} width The width of the rectangle in pixels.
|
|
* @param {Number} height The height of the rectangle in pixels.
|
|
* @return {Rectangle} This rectangle object
|
|
**/
|
|
public setTo(x: number, y: number, width: number, height: number): Rectangle {
|
|
|
|
this._tempX = x;
|
|
this._tempY = y;
|
|
this._tempWidth = width;
|
|
this._tempHeight = height;
|
|
|
|
this.updateBounds();
|
|
|
|
return this;
|
|
|
|
}
|
|
|
|
/**
|
|
* Adds two rectangles together to create a new Rectangle object, by filling in the horizontal and vertical space between the two rectangles.
|
|
* @method union
|
|
* @param {Rectangle} toUnion A Rectangle object to add to this Rectangle object.
|
|
* @param {Rectangle} output Optional Rectangle object. If given the new values will be set into this object, otherwise a brand new Rectangle object will be created and returned.
|
|
* @return {Rectangle} A Rectangle object that is the union of the two rectangles.
|
|
**/
|
|
public union(toUnion: Rectangle, output?: Rectangle = new Rectangle): Rectangle {
|
|
|
|
return output.setTo(
|
|
Math.min(toUnion.x, this.x),
|
|
Math.min(toUnion.y, this.y),
|
|
Math.max(toUnion.right, this.right),
|
|
Math.max(toUnion.bottom, this.bottom)
|
|
);
|
|
|
|
}
|
|
|
|
/**
|
|
* Returns a string representation of this object.
|
|
* @method toString
|
|
* @return {String} a string representation of the instance.
|
|
**/
|
|
public toString(): string {
|
|
|
|
return "[{Rectangle (x=" + this.x + " y=" + this.y + " width=" + this.width + " height=" + this.height + " empty=" + this.isEmpty + ")}]";
|
|
|
|
}
|
|
|
|
}
|
|
|
|
} |