mirror of
https://github.com/photonstorm/phaser
synced 2024-11-22 04:33:31 +00:00
Removed MeshCamera, updated Mesh to focus on ortho projections
This commit is contained in:
parent
9e07e5a27b
commit
324fa6a3b2
3 changed files with 137 additions and 357 deletions
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@ -7,6 +7,7 @@
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var AnimationState = require('../../animations/AnimationState');
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var Class = require('../../utils/Class');
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var Components = require('../components');
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var DegToRad = require('../../math/DegToRad');
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var Face = require('../../geom/mesh/Face');
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var GameObject = require('../GameObject');
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var GameObjectEvents = require('../events');
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@ -15,7 +16,6 @@ var GetColor = require('../../display/color/GetColor');
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var GetFastValue = require('../../utils/object/GetFastValue');
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var Matrix4 = require('../../math/Matrix4');
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var Vector3 = require('../../math/Vector3');
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var MeshCamera = require('./MeshCamera');
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var MeshRender = require('./MeshRender');
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var StableSort = require('../../utils/array/StableSort');
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var Vertex = require('../../geom/mesh/Vertex');
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@ -103,21 +103,6 @@ var Mesh = new Class({
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GameObject.call(this, scene, 'Mesh');
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/**
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* A Camera which can be used to control the view of all faces within this Mesh.
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*
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* It will default to have an fov of 45 and be positioned at 0, 0, 0,
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* with a near of 0.001 and far of 1000.
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*
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* You can change all of these by using the methods and properties available
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* in the `MeshCamera` class, of which this is an instance.
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*
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* @name Phaser.GameObjects.Mesh#camera
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* @type {Phaser.GameObjects.MeshCamera}
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* @since 3.50.0
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*/
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this.camera = new MeshCamera(45, 0, 0, 0, 0.001, 1000);
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/**
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* The Animation State of this Mesh.
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*
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@ -213,11 +198,15 @@ var Mesh = new Class({
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this.hideCCW = true;
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/**
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* A Vector3 containing the 3D position of the model data in this Mesh.
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* A Vector3 containing the 3D position of the vertices in this Mesh.
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*
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* Changing the values of this property will move all vertices that have been
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* added to this Mesh. Rather than change the model position, you can also
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* change the Camera position, depending on the effect you require.
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* Modifying the components of this property will allow you to reposition where
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* the vertices are rendered within the Mesh. This happens in the `preUpdate` phase,
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* where each vertex is transformed using the view and projection matrices.
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*
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* Changing this property will impact all vertices being rendered by this Mesh.
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*
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* You can also adjust the 'view' by using the `pan` methods.
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*
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* @name Phaser.Geom.Mesh.Model#modelPosition
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* @type {Phaser.Math.Vector3}
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@ -226,11 +215,13 @@ var Mesh = new Class({
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this.modelPosition = new Vector3();
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/**
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* A Vector3 containing the 3D scale of the model data in this Mesh.
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* A Vector3 containing the 3D scale of the vertices in this Mesh.
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*
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* Changing the values of this property will scale all vertices that have been
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* added to this Mesh. Rather than change the model scale, you can also
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* change the Camera zoom, depending on the effect you require.
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* Modifying the components of this property will allow you to scale
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* the vertices within the Mesh. This happens in the `preUpdate` phase,
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* where each vertex is transformed using the view and projection matrices.
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*
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* Changing this property will impact all vertices being rendered by this Mesh.
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*
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* @name Phaser.Geom.Mesh.Model#modelScale
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* @type {Phaser.Math.Vector3}
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@ -239,11 +230,13 @@ var Mesh = new Class({
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this.modelScale = new Vector3(1, 1, 1);
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/**
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* A Vector3 containing the 3D rotation of the model data in this Mesh.
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* A Vector3 containing the 3D rotation of the vertices in this Mesh.
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*
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* Changing the values of this property will rotate all vertices that have been
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* added to this Mesh. Rather than change the model rotation, you can also
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* change the Camera rotation, depending on the effect you require.
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* Modifying the components of this property will allow you to rotate
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* the vertices within the Mesh. This happens in the `preUpdate` phase,
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* where each vertex is transformed using the view and projection matrices.
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*
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* Changing this property will impact all vertices being rendered by this Mesh.
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*
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* @name Phaser.Geom.Mesh.Model#modelRotation
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* @type {Phaser.Math.Vector3}
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@ -255,14 +248,14 @@ var Mesh = new Class({
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* An internal cache, used to compare position, rotation, scale and face data
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* each frame, to avoid math calculations in `preUpdate`.
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*
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* cache structure = position xyz | rotation xyz | scale xyz | face count
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* Cache structure = position xyz | rotation xyz | scale xyz | face count | view
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*
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* @name Phaser.Geom.Mesh.Model#dirtyCache
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* @type {number[]}
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* @private
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* @since 3.50.0
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*/
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this.dirtyCache = [ 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 ];
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this.dirtyCache = [ 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 ];
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/**
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* The transformation matrix for this Mesh.
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@ -274,33 +267,45 @@ var Mesh = new Class({
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this.transformMatrix = new Matrix4();
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/**
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* Internal cached value.
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* The view position for this Mesh.
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*
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* @name Phaser.GameObjects.Mesh#_prevWidth
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* @type {number}
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* @private
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* Use the methods`panX`, `panY` and `panZ` to adjust the view.
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*
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* @name Phaser.Geom.Mesh.Model#viewPosition
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* @type {Phaser.Math.Vector3}
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* @since 3.50.0
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*/
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this._prevWidth = 0;
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this.viewPosition = new Vector3();
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/**
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* Internal cached value.
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* The view matrix for this Mesh.
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*
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* @name Phaser.GameObjects.Mesh#_prevHeight
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* @type {number}
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* @private
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* @name Phaser.Geom.Mesh.Model#viewMatrix
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* @type {Phaser.Math.Matrix4}
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* @since 3.50.0
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*/
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this._prevHeight = 0;
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this.viewMatrix = new Matrix4();
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/**
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* The projection matrix for this Mesh.
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*
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* Update it with the `updateProjectionMatix` method.
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*
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* @name Phaser.Geom.Mesh.Model#projectionMatrix
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* @type {Phaser.Math.Matrix4}
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* @since 3.50.0
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*/
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this.projectionMatrix = new Matrix4();
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var renderer = scene.sys.renderer;
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this.setPosition(x, y);
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this.setTexture(texture, frame);
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this.setSize(renderer.width, renderer.height);
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this.initPipeline();
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this.updateProjectionMatrix(renderer.width, renderer.height, 45, 0.01, 1000);
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if (vertices)
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{
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this.addVertices(vertices, uvs, indicies, colors, alphas);
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@ -322,6 +327,82 @@ var Mesh = new Class({
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this.scene.sys.updateList.remove(this);
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},
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/**
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* Translates the view position of this Mesh on the x axis by the given amount.
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*
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* @method Phaser.GameObjects.Mesh#panX
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* @since 3.50.0
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*
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* @param {number} v - The amount to pan by.
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*/
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panX: function (v)
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{
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this.viewPosition.addScale(Vector3.LEFT, v);
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this.dirtyCache[10] = 1;
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return this;
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},
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/**
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* Translates the view position of this Mesh on the y axis by the given amount.
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*
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* @method Phaser.GameObjects.Mesh#panY
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* @since 3.50.0
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*
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* @param {number} v - The amount to pan by.
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*/
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panY: function (v)
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{
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this.viewPosition.y += Vector3.DOWN.y * v;
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this.dirtyCache[10] = 1;
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return this;
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},
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/**
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* Translates the view position of this Mesh on the z axis by the given amount.
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*
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* @method Phaser.GameObjects.Mesh#panZ
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* @since 3.50.0
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*
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* @param {number} v - The amount to pan by.
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*/
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panZ: function (amount)
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{
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this.viewPosition.z += amount;
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this.dirtyCache[10] = 1;
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return this;
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},
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/**
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* Builds a new projection matrix from the given values.
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*
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* @method Phaser.GameObjects.Mesh#updateProjectionMatrix
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* @since 3.50.0
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*
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* @param {number} width - The width of the renderer.
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* @param {number} height - The height of the renderer.
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* @param {number} [fov=45] - The field of view, in degrees.
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* @param {number} [near=0.01] - The near value of the view.
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* @param {number} [fofarv=1000] - The far value of the view.
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*/
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updateProjectionMatrix: function (width, height, fov, near, far)
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{
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if (fov === undefined) { fov = 45; }
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if (near === undefined) { near = 0.01; }
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if (far === undefined) { far = 1000; }
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this.projectionMatrix.perspective(DegToRad(fov), width / height, near, far);
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this.dirtyCache[10] = 1;
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return this;
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},
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/**
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* Iterates and destroys all current Faces in this Mesh, then resets the
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* `faces` and `vertices` arrays.
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@ -1105,26 +1186,27 @@ var Mesh = new Class({
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{
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this.anims.update(time, delta);
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var camera = this.camera;
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var dirty = this.dirtyCache;
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if (!camera.dirty && !this.isDirty())
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if (!dirty[10] && !this.isDirty())
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{
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// If neither the camera or the mesh is dirty we can bail out and save lots of math
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// If neither the view or the mesh is dirty we can bail out and save lots of math
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return;
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}
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var width = this.width;
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var height = this.height;
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if (camera.dirty || width !== this._prevWidth || height !== this._prevHeight)
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var viewMatrix = this.viewMatrix;
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var viewPosition = this.viewPosition;
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if (dirty[10])
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{
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// Mesh has resized, flow that down to the Camera
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camera.update(width, height);
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viewMatrix.identity();
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viewMatrix.translate(viewPosition);
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viewMatrix.invert();
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this._prevWidth = width;
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this._prevHeight = height;
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camera.dirty = false;
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dirty[10] = 0;
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}
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var transformMatrix = this.transformMatrix;
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@ -1133,11 +1215,11 @@ var Mesh = new Class({
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this.modelRotation,
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this.modelPosition,
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this.modelScale,
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camera.viewMatrix,
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camera.projectionMatrix
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this.viewMatrix,
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this.projectionMatrix
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);
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var z = camera.position.z;
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var z = viewPosition.z;
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var vertices = this.vertices;
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@ -1,302 +0,0 @@
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/**
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* @author Richard Davey <rich@photonstorm.com>
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* @copyright 2020 Photon Storm Ltd.
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* @license {@link https://opensource.org/licenses/MIT|MIT License}
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*/
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var Class = require('../../utils/Class');
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var DegToRad = require('../../math/DegToRad');
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var Matrix4 = require('../../math/Matrix4');
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var Vector3 = require('../../math/Vector3');
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var Vector4 = require('../../math/Vector4');
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/**
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* @classdesc
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* The Mesh Camera.
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*
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* @class MeshCamera
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* @memberof Phaser.GameObjects
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* @constructor
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* @since 3.50.0
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*/
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var MeshCamera = new Class({
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initialize:
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function MeshCamera (fov, x, y, z, near, far)
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{
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this.dirty = true;
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this.aspectRatio = 1;
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this._fov = fov;
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this._near = near;
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this._far = far;
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this.position = new Vector3(x, y, z);
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this.rotation = new Vector3();
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this.forward = new Vector4();
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this.up = new Vector4(); // What the up direction is, invert to get bottom
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this.right = new Vector4(); // What the right direction is, invert to get left
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this.matView = new Matrix4();
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this.viewMatrix = new Matrix4();
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this.projectionMatrix = new Matrix4();
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this.mode = MeshCamera.MODE_ORBIT;
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},
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panX: function (v)
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{
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this.position.addScale(this.right, v);
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this.updateViewMatrix();
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},
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panY: function (v)
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{
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this.position.y += this.up.y * v;
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if (this.mode !== MeshCamera.MODE_ORBIT)
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{
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// Can only move up and down the y axix in orbit mode
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this.position.x += this.up.x * v;
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this.position.z += this.up.z * v;
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}
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this.updateViewMatrix();
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},
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panZ: function (v)
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{
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// this.updateViewMatrix();
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if (this.mode === MeshCamera.MODE_ORBIT)
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{
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// orbit mode does translate after rotate, so only need to set Z, the rotate will handle the rest.
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this.position.z += v;
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}
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else
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{
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// In freemode to move forward, we need to move based on our forward which is relative to our current rotation
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this.position.addScale(this.forward, v);
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}
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this.updateViewMatrix();
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},
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// To have different modes of movements, this function handles the view matrix update for the transform object.
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updateViewMatrix: function ()
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{
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var d = Math.PI / 180;
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var matView = this.matView;
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var rotation = this.rotation;
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matView.identity();
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// Optimize camera transform update, no need for scale nor rotateZ
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if (this.mode === MeshCamera.MODE_FREE)
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{
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matView.translate(this.position);
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matView.rotateX(rotation.x * d);
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matView.rotateY(rotation.y * d);
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}
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else
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{
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matView.rotateX(rotation.x * d);
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matView.rotateY(rotation.y * d);
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matView.translate(this.position);
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}
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this.updateDirection();
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this.viewMatrix.copy(matView);
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this.viewMatrix.invert();
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this.dirty = true;
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},
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update: function (width, height)
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{
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this.aspectRatio = width / height;
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this.updateViewMatrix();
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this.projectionMatrix.perspective(DegToRad(this._fov), this.aspectRatio, this._near, this._far);
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},
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updateDirection: function ()
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{
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var matView = this.matView;
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this.forward.set(0, 0, 1, 0).transformMat4(matView);
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this.up.set(0, 1, 0, 0).transformMat4(matView);
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this.right.set(1, 0, 0, 0).transformMat4(matView);
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},
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reset: function ()
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{
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this.position.set();
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this.rotation.set();
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this.updateViewMatrix();
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},
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fov: {
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get: function ()
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{
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return this._fov;
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},
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set: function (value)
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{
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if (value > 0 && value < 180)
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{
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this._fov = value;
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this.dirty = true;
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}
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}
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},
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near: {
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get: function ()
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{
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return this._near;
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},
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set: function (value)
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{
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if (value > 0)
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{
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this._near = value;
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this.dirty = true;
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}
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}
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},
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far: {
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get: function ()
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{
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return this._far;
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},
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set: function (value)
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{
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if (value > 0)
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{
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this._far = value;
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this.dirty = true;
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}
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}
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},
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x: {
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get: function ()
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{
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return this.position.x;
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},
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set: function (value)
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{
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this.position.x = value;
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this.updateViewMatrix();
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}
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},
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||||
|
||||
y: {
|
||||
|
||||
get: function ()
|
||||
{
|
||||
return this.position.y;
|
||||
},
|
||||
|
||||
set: function (value)
|
||||
{
|
||||
this.position.y = value;
|
||||
this.updateViewMatrix();
|
||||
}
|
||||
|
||||
},
|
||||
|
||||
z: {
|
||||
|
||||
get: function ()
|
||||
{
|
||||
return this.position.z;
|
||||
},
|
||||
|
||||
set: function (value)
|
||||
{
|
||||
this.position.z = value;
|
||||
this.updateViewMatrix();
|
||||
}
|
||||
|
||||
},
|
||||
|
||||
rotationX: {
|
||||
|
||||
get: function ()
|
||||
{
|
||||
return this.rotation.x;
|
||||
},
|
||||
|
||||
set: function (value)
|
||||
{
|
||||
this.rotation.x = value;
|
||||
this.updateViewMatrix();
|
||||
}
|
||||
|
||||
},
|
||||
|
||||
rotationY: {
|
||||
|
||||
get: function ()
|
||||
{
|
||||
return this.rotation.y;
|
||||
},
|
||||
|
||||
set: function (value)
|
||||
{
|
||||
this.rotation.y = value;
|
||||
this.updateViewMatrix();
|
||||
}
|
||||
|
||||
},
|
||||
|
||||
rotationZ: {
|
||||
|
||||
get: function ()
|
||||
{
|
||||
return this.rotation.z;
|
||||
},
|
||||
|
||||
set: function (value)
|
||||
{
|
||||
this.rotation.z = value;
|
||||
this.updateViewMatrix();
|
||||
}
|
||||
|
||||
},
|
||||
|
||||
destroy: function ()
|
||||
{
|
||||
// TODO - Needed?
|
||||
}
|
||||
|
||||
});
|
||||
|
||||
// Allows free movement of position and rotation
|
||||
MeshCamera.MODE_FREE = 0;
|
||||
|
||||
// Movement is locked to rotate around the origin
|
||||
MeshCamera.MODE_ORBIT = 1;
|
||||
|
||||
module.exports = MeshCamera;
|
|
@ -53,7 +53,7 @@ var MeshWebGLRenderer = function (renderer, src, camera, parentMatrix)
|
|||
var e = calcMatrix.e;
|
||||
var f = calcMatrix.f;
|
||||
|
||||
var z = src.camera.position.z;
|
||||
var z = src.viewPosition.z;
|
||||
|
||||
var roundPixels = camera.roundPixels;
|
||||
var alpha = camera.alpha * src.alpha;
|
||||
|
|
Loading…
Reference in a new issue