mirror of
https://github.com/photonstorm/phaser
synced 2024-12-02 17:41:06 +00:00
298 lines
No EOL
7.1 KiB
TypeScript
298 lines
No EOL
7.1 KiB
TypeScript
/// <reference path="../_definitions.ts" />
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/**
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* Phaser - Vec2
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*
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* A Vector 2
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*/
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module Phaser {
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export class Vec2 {
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/**
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* Creates a new Vec2 object.
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* @class Vec2
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* @constructor
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* @param {Number} x The x position of the vector
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* @param {Number} y The y position of the vector
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* @return {Vec2} This object
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**/
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constructor(x: number = 0, y: number = 0) {
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this.x = x;
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this.y = y;
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return this;
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}
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/**
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* The x coordinate of the vector
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* @property x
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* @type Number
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**/
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public x: number;
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/**
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* The y coordinate of the vector
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* @property y
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* @type Number
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**/
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public y: number;
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/**
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* Copies the x and y properties from any given object to this Vec2.
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* @method copyFrom
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* @param {any} source - The object to copy from.
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* @return {Vec2} This Vec2 object.
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**/
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public copyFrom(source: any): Phaser.Vec2 {
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return this.setTo(source.x, source.y);
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}
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/**
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* Sets the x and y properties of the Vector.
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* @param {Number} x The x position of the vector
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* @param {Number} y The y position of the vector
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* @return {Vec2} This object
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**/
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public setTo(x: number, y: number): Phaser.Vec2 {
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this.x = x;
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this.y = y;
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return this;
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}
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/**
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* Add another vector to this one.
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*
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* @param {Vec2} other The other Vector.
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* @return {Vec2} This for chaining.
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*/
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public add(a: Phaser.Vec2): Phaser.Vec2 {
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this.x += a.x;
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this.y += a.y;
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return this;
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}
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/**
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* Subtract another vector from this one.
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*
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* @param {Vec2} other The other Vector.
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* @return {Vec2} This for chaining.
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*/
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public subtract(v: Phaser.Vec2): Phaser.Vec2 {
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this.x -= v.x;
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this.y -= v.y;
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return this;
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}
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/**
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* Multiply another vector with this one.
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*
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* @param {Vec2} other The other Vector.
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* @return {Vec2} This for chaining.
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*/
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public multiply(v: Phaser.Vec2): Phaser.Vec2 {
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this.x *= v.x;
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this.y *= v.y;
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return this;
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}
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/**
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* Divide this vector by another one.
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*
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* @param {Vec2} other The other Vector.
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* @return {Vec2} This for chaining.
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*/
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public divide(v: Phaser.Vec2): Phaser.Vec2 {
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this.x /= v.x;
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this.y /= v.y;
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return this;
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}
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/**
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* Get the length of this vector.
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*
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* @return {number} The length of this vector.
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*/
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public length(): number {
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return Math.sqrt((this.x * this.x) + (this.y * this.y));
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}
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/**
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* Get the length squared of this vector.
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*
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* @return {number} The length^2 of this vector.
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*/
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public lengthSq(): number {
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return (this.x * this.x) + (this.y * this.y);
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}
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/**
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* Normalize this vector.
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*
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* @return {Vec2} This for chaining.
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*/
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public normalize(): Phaser.Vec2 {
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var inv = (this.x != 0 || this.y != 0) ? 1 / Math.sqrt(this.x * this.x + this.y * this.y) : 0;
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this.x *= inv;
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this.y *= inv;
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return this;
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}
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/**
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* The dot product of two 2D vectors.
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*
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* @param {Vec2} a Reference to a source Vec2 object.
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* @return {Number}
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*/
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public dot(a: Phaser.Vec2): number {
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return ((this.x * a.x) + (this.y * a.y));
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}
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/**
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* The cross product of two 2D vectors.
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*
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* @param {Vec2} a Reference to a source Vec2 object.
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* @return {Number}
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*/
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public cross(a: Phaser.Vec2): number {
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return ((this.x * a.y) - (this.y * a.x));
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}
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/**
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* The projection magnitude of two 2D vectors.
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*
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* @param {Vec2} a Reference to a source Vec2 object.
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* @return {Number}
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*/
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public projectionLength(a: Phaser.Vec2): number {
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var den: number = a.dot(a);
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if (den == 0)
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{
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return 0;
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}
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else
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{
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return Math.abs(this.dot(a) / den);
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}
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}
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/**
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* The angle between two 2D vectors.
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*
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* @param {Vec2} a Reference to a source Vec2 object.
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* @return {Number}
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*/
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public angle(a: Phaser.Vec2): number {
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return Math.atan2(a.x * this.y - a.y * this.x, a.x * this.x + a.y * this.y);
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}
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/**
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* Scale this vector.
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*
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* @param {number} x The scaling factor in the x direction.
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* @param {?number=} y The scaling factor in the y direction. If this is not specified, the x scaling factor will be used.
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* @return {Vec2} This for chaining.
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*/
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public scale(x: number, y: number): Phaser.Vec2 {
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this.x *= x;
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this.y *= y || x;
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return this;
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}
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/**
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* Multiply this vector by the given scalar.
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*
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* @param {number} scalar
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* @return {Vec2} This for chaining.
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*/
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public multiplyByScalar(scalar: number): Phaser.Vec2 {
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this.x *= scalar;
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this.y *= scalar;
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return this;
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}
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/**
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* Adds the given vector to this vector then multiplies by the given scalar.
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*
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* @param {Vec2} a Reference to a source Vec2 object.
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* @param {number} scalar
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* @return {Vec2} This for chaining.
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*/
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public multiplyAddByScalar(a: Phaser.Vec2, scalar: number): Phaser.Vec2 {
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this.x += a.x * scalar;
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this.y += a.y * scalar;
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return this;
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}
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/**
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* Divide this vector by the given scalar.
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*
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* @param {number} scalar
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* @return {Vec2} This for chaining.
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*/
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public divideByScalar(scalar: number): Phaser.Vec2 {
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this.x /= scalar;
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this.y /= scalar;
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return this;
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}
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/**
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* Reverse this vector.
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*
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* @return {Vec2} This for chaining.
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*/
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public reverse(): Phaser.Vec2 {
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this.x = -this.x;
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this.y = -this.y;
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return this;
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}
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/**
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* Check if both the x and y of this vector equal the given value.
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*
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* @return {bool}
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*/
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public equals(value): bool {
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return (this.x == value && this.y == value);
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}
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/**
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* Returns a string representation of this object.
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* @method toString
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* @return {string} a string representation of the object.
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**/
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public toString(): string {
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return "[{Vec2 (x=" + this.x + " y=" + this.y + ")}]";
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}
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}
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} |