phaser/src/pixi/display/DisplayObject.js

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/**
* @author Mat Groves http://matgroves.com/ @Doormat23
*/
/**
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* The base class for all objects that are rendered on the screen.
* This is an abstract class and should not be used on its own rather it should be extended.
*
* @class DisplayObject
* @constructor
*/
PIXI.DisplayObject = function()
{
/**
* The coordinate of the object relative to the local coordinates of the parent.
*
* @property position
* @type Point
*/
this.position = new PIXI.Point();
/**
* The scale factor of the object.
*
* @property scale
* @type Point
*/
this.scale = new PIXI.Point(1,1);//{x:1, y:1};
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/**
* The transform callback is an optional callback that if set will be called at the end of the updateTransform method and sent two parameters:
* This Display Objects worldTransform matrix and its parents transform matrix. Both are PIXI.Matrix object types.
* The matrix are passed by reference and can be modified directly without needing to return them.
* This ability allows you to check any of the matrix values and perform actions such as clamping scale or limiting rotation, regardless of the parent transforms.
*
* @property transformCallback
* @type Function
*/
this.transformCallback = null;
/**
* The context under which the transformCallback is invoked.
*
* @property transformCallbackContext
* @type Object
*/
this.transformCallbackContext = null;
/**
* The pivot point of the displayObject that it rotates around
*
* @property pivot
* @type Point
*/
this.pivot = new PIXI.Point(0,0);
/**
* The rotation of the object in radians.
*
* @property rotation
* @type Number
*/
this.rotation = 0;
/**
* The opacity of the object.
*
* @property alpha
* @type Number
*/
this.alpha = 1;
/**
* The visibility of the object.
*
* @property visible
* @type Boolean
*/
this.visible = true;
/**
* This is the defined area that will pick up mouse / touch events. It is null by default.
* Setting it is a neat way of optimising the hitTest function that the interactionManager will use (as it will not need to hit test all the children)
*
* @property hitArea
* @type Rectangle|Circle|Ellipse|Polygon
*/
this.hitArea = null;
/**
* This is used to indicate if the displayObject should display a mouse hand cursor on rollover
*
* @property buttonMode
* @type Boolean
*/
this.buttonMode = false;
/**
* Can this object be rendered
*
* @property renderable
* @type Boolean
*/
this.renderable = false;
/**
* [read-only] The display object container that contains this display object.
*
* @property parent
* @type DisplayObjectContainer
* @readOnly
*/
this.parent = null;
/**
* [read-only] The stage the display object is connected to, or undefined if it is not connected to the stage.
*
* @property stage
* @type Stage
* @readOnly
*/
this.stage = null;
/**
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* [read-only] The multiplied alpha of the displayObject
*
* @property worldAlpha
* @type Number
* @readOnly
*/
this.worldAlpha = 1;
/**
* [read-only] Whether or not the object is interactive, do not toggle directly! use the `interactive` property
*
* @property _interactive
* @type Boolean
* @readOnly
* @private
*/
this._interactive = false;
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/**
* This is the cursor that will be used when the mouse is over this object. To enable this the element must have interaction = true and buttonMode = true
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*
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* @property defaultCursor
* @type String
*
*/
this.defaultCursor = 'pointer';
/**
* [read-only] Current transform of the object based on world (parent) factors
*
* @property worldTransform
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* @type Matrix
* @readOnly
* @private
*/
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this.worldTransform = new PIXI.Matrix();
/**
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* cached sin rotation and cos rotation
*
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* @property _sr
* @type Number
* @private
*/
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this._sr = 0;
/**
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* cached sin rotation and cos rotation
*
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* @property _cr
* @type Number
* @private
*/
this._cr = 1;
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/**
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* The area the filter is applied to like the hitArea this is used as more of an optimisation
* rather than figuring out the dimensions of the displayObject each frame you can set this rectangle
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*
* @property filterArea
* @type Rectangle
*/
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this.filterArea = null;//new PIXI.Rectangle(0,0,1,1);
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/**
* The original, cached bounds of the object
*
* @property _bounds
* @type Rectangle
* @private
*/
this._bounds = new PIXI.Rectangle(0, 0, 1, 1);
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/**
* The most up-to-date bounds of the object
*
* @property _currentBounds
* @type Rectangle
* @private
*/
this._currentBounds = null;
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/**
* The original, cached mask of the object
*
* @property _currentBounds
* @type Rectangle
* @private
*/
this._mask = null;
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/**
* Cached internal flag.
*
* @property _cacheAsBitmap
* @type Boolean
* @private
*/
this._cacheAsBitmap = false;
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/**
* Cached internal flag.
*
* @property _cacheIsDirty
* @type Boolean
* @private
*/
this._cacheIsDirty = false;
/*
* MOUSE Callbacks
*/
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/**
* A callback that is used when the users mouse rolls over the displayObject
* @method mouseover
* @param interactionData {InteractionData}
*/
/**
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* A callback that is used when the users mouse leaves the displayObject
* @method mouseout
* @param interactionData {InteractionData}
*/
//Left button
/**
* A callback that is used when the users clicks on the displayObject with their mouse's left button
* @method click
* @param interactionData {InteractionData}
*/
/**
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* A callback that is used when the user clicks the mouse's left button down over the sprite
* @method mousedown
* @param interactionData {InteractionData}
*/
/**
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* A callback that is used when the user releases the mouse's left button that was over the displayObject
* for this callback to be fired, the mouse's left button must have been pressed down over the displayObject
* @method mouseup
* @param interactionData {InteractionData}
*/
/**
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* A callback that is used when the user releases the mouse's left button that was over the displayObject but is no longer over the displayObject
* for this callback to be fired, the mouse's left button must have been pressed down over the displayObject
* @method mouseupoutside
* @param interactionData {InteractionData}
*/
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//Right button
/**
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* A callback that is used when the users clicks on the displayObject with their mouse's right button
* @method rightclick
* @param interactionData {InteractionData}
*/
/**
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* A callback that is used when the user clicks the mouse's right button down over the sprite
* @method rightdown
* @param interactionData {InteractionData}
*/
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/**
* A callback that is used when the user releases the mouse's right button that was over the displayObject
* for this callback to be fired the mouse's right button must have been pressed down over the displayObject
* @method rightup
* @param interactionData {InteractionData}
*/
/**
* A callback that is used when the user releases the mouse's right button that was over the displayObject but is no longer over the displayObject
* for this callback to be fired, the mouse's right button must have been pressed down over the displayObject
* @method rightupoutside
* @param interactionData {InteractionData}
*/
/*
* TOUCH Callbacks
*/
/**
* A callback that is used when the users taps on the sprite with their finger
* basically a touch version of click
* @method tap
* @param interactionData {InteractionData}
*/
/**
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* A callback that is used when the user touches over the displayObject
* @method touchstart
* @param interactionData {InteractionData}
*/
/**
* A callback that is used when the user releases a touch over the displayObject
* @method touchend
* @param interactionData {InteractionData}
*/
/**
* A callback that is used when the user releases the touch that was over the displayObject
* for this callback to be fired, The touch must have started over the sprite
* @method touchendoutside
* @param interactionData {InteractionData}
*/
};
// constructor
PIXI.DisplayObject.prototype.constructor = PIXI.DisplayObject;
/**
* Indicates if the sprite will have touch and mouse interactivity. It is false by default
*
* @property interactive
* @type Boolean
* @default false
*/
Object.defineProperty(PIXI.DisplayObject.prototype, 'interactive', {
get: function() {
return this._interactive;
},
set: function(value) {
this._interactive = value;
// TODO more to be done here..
// need to sort out a re-crawl!
if(this.stage)this.stage.dirty = true;
}
});
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/**
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* [read-only] Indicates if the sprite is globally visible.
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*
* @property worldVisible
* @type Boolean
*/
Object.defineProperty(PIXI.DisplayObject.prototype, 'worldVisible', {
get: function() {
var item = this;
do
{
if(!item.visible)return false;
item = item.parent;
}
while(item);
return true;
}
});
/**
* Sets a mask for the displayObject. A mask is an object that limits the visibility of an object to the shape of the mask applied to it.
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* In PIXI a regular mask must be a PIXI.Graphics object. This allows for much faster masking in canvas as it utilises shape clipping.
* To remove a mask, set this property to null.
*
* @property mask
* @type Graphics
*/
Object.defineProperty(PIXI.DisplayObject.prototype, 'mask', {
get: function() {
return this._mask;
},
set: function(value) {
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if(this._mask)this._mask.isMask = false;
this._mask = value;
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if(this._mask)this._mask.isMask = true;
}
});
/**
* Sets the filters for the displayObject.
* * IMPORTANT: This is a webGL only feature and will be ignored by the canvas renderer.
* To remove filters simply set this property to 'null'
* @property filters
* @type Array An array of filters
*/
Object.defineProperty(PIXI.DisplayObject.prototype, 'filters', {
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get: function() {
return this._filters;
},
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set: function(value) {
if(value)
{
// now put all the passes in one place..
var passes = [];
for (var i = 0; i < value.length; i++)
{
var filterPasses = value[i].passes;
for (var j = 0; j < filterPasses.length; j++)
{
passes.push(filterPasses[j]);
}
}
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// TODO change this as it is legacy
this._filterBlock = {target:this, filterPasses:passes};
}
this._filters = value;
}
});
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/**
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* Set if this display object is cached as a bitmap.
* This basically takes a snap shot of the display object as it is at that moment. It can provide a performance benefit for complex static displayObjects.
* To remove simply set this property to 'null'
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* @property cacheAsBitmap
* @type Boolean
*/
Object.defineProperty(PIXI.DisplayObject.prototype, 'cacheAsBitmap', {
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get: function() {
return this._cacheAsBitmap;
},
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set: function(value) {
if(this._cacheAsBitmap === value)return;
if(value)
{
this._generateCachedSprite();
}
else
{
this._destroyCachedSprite();
}
this._cacheAsBitmap = value;
}
});
/*
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* Updates the object transform for rendering
*
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* @method updateTransform
* @private
*/
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PIXI.DisplayObject.prototype.updateTransform = function()
{
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// create some matrix refs for easy access
var pt = this.parent.worldTransform;
var wt = this.worldTransform;
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// temporary matrix variables
var a, b, c, d, tx, ty;
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// TODO create a const for 2_PI
// so if rotation is between 0 then we can simplify the multiplication process..
if(this.rotation % PIXI.PI_2)
{
// check to see if the rotation is the same as the previous render. This means we only need to use sin and cos when rotation actually changes
if(this.rotation !== this.rotationCache)
{
this.rotationCache = this.rotation;
this._sr = Math.sin(this.rotation);
this._cr = Math.cos(this.rotation);
}
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// get the matrix values of the displayobject based on its transform properties..
a = this._cr * this.scale.x;
b = this._sr * this.scale.x;
c = -this._sr * this.scale.y;
d = this._cr * this.scale.y;
tx = this.position.x;
ty = this.position.y;
// check for pivot.. not often used so geared towards that fact!
if(this.pivot.x || this.pivot.y)
{
tx -= this.pivot.x * a + this.pivot.y * c;
ty -= this.pivot.x * b + this.pivot.y * d;
}
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// concat the parent matrix with the objects transform.
wt.a = a * pt.a + b * pt.c;
wt.b = a * pt.b + b * pt.d;
wt.c = c * pt.a + d * pt.c;
wt.d = c * pt.b + d * pt.d;
wt.tx = tx * pt.a + ty * pt.c + pt.tx;
wt.ty = tx * pt.b + ty * pt.d + pt.ty;
}
else
{
// lets do the fast version as we know there is no rotation..
a = this.scale.x;
d = this.scale.y;
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tx = this.position.x;
ty = this.position.y;
wt.a = a * pt.a;
wt.b = a * pt.b;
wt.c = d * pt.c;
wt.d = d * pt.d;
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wt.tx = tx * pt.a + ty * pt.c + pt.tx;
wt.ty = tx * pt.b + ty * pt.d + pt.ty;
}
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// multiply the alphas..
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this.worldAlpha = this.alpha * this.parent.worldAlpha;
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// Custom callback?
if (this.transformCallback)
{
this.transformCallback.call(this.transformCallbackContext, wt, pt);
}
};
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// performance increase to avoid using call.. (10x faster)
PIXI.DisplayObject.prototype.displayObjectUpdateTransform = PIXI.DisplayObject.prototype.updateTransform;
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/**
* Retrieves the bounds of the displayObject as a rectangle object
*
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* @method getBounds
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* @param matrix {Matrix}
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* @return {Rectangle} the rectangular bounding area
*/
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PIXI.DisplayObject.prototype.getBounds = function(matrix)
{
matrix = matrix;//just to get passed js hinting (and preserve inheritance)
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return PIXI.EmptyRectangle;
};
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/**
* Retrieves the local bounds of the displayObject as a rectangle object
*
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* @method getLocalBounds
* @return {Rectangle} the rectangular bounding area
*/
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PIXI.DisplayObject.prototype.getLocalBounds = function()
{
return this.getBounds(PIXI.identityMatrix);///PIXI.EmptyRectangle();
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};
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/**
* Sets the object's stage reference, the stage this object is connected to
*
* @method setStageReference
* @param stage {Stage} the stage that the object will have as its current stage reference
*/
PIXI.DisplayObject.prototype.setStageReference = function(stage)
{
this.stage = stage;
if(this._interactive)this.stage.dirty = true;
};
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/**
* Useful function that returns a texture of the displayObject object that can then be used to create sprites
* This can be quite useful if your displayObject is static / complicated and needs to be reused multiple times.
*
* @method generateTexture
* @param resolution {Number} The resolution of the texture being generated
* @param scaleMode {Number} Should be one of the PIXI.scaleMode consts
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* @param renderer {CanvasRenderer|WebGLRenderer} The renderer used to generate the texture.
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* @return {Texture} a texture of the graphics object
*/
PIXI.DisplayObject.prototype.generateTexture = function(resolution, scaleMode, renderer)
{
var bounds = this.getLocalBounds();
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var renderTexture = new PIXI.RenderTexture(bounds.width | 0, bounds.height | 0, renderer, scaleMode, resolution);
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PIXI.DisplayObject._tempMatrix.tx = -bounds.x;
PIXI.DisplayObject._tempMatrix.ty = -bounds.y;
renderTexture.render(this, PIXI.DisplayObject._tempMatrix);
return renderTexture;
};
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/**
* Generates and updates the cached sprite for this object.
*
* @method updateCache
*/
PIXI.DisplayObject.prototype.updateCache = function()
{
this._generateCachedSprite();
};
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/**
* Calculates the global position of the display object
*
* @method toGlobal
* @param position {Point} The world origin to calculate from
* @return {Point} A point object representing the position of this object
*/
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PIXI.DisplayObject.prototype.toGlobal = function(position)
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{
this.updateTransform();
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return this.worldTransform.apply(position);
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};
/**
* Calculates the local position of the display object relative to another point
*
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* @method toLocal
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* @param position {Point} The world origin to calculate from
* @param [from] {DisplayObject} The DisplayObject to calculate the global position from
* @return {Point} A point object representing the position of this object
*/
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PIXI.DisplayObject.prototype.toLocal = function(position, from)
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{
if (from)
{
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position = from.toGlobal(position);
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}
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this.updateTransform();
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return this.worldTransform.applyInverse(position);
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};
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/**
* Internal method.
*
* @method _renderCachedSprite
* @param renderSession {Object} The render session
* @private
*/
PIXI.DisplayObject.prototype._renderCachedSprite = function(renderSession)
{
this._cachedSprite.worldAlpha = this.worldAlpha;
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if(renderSession.gl)
{
PIXI.Sprite.prototype._renderWebGL.call(this._cachedSprite, renderSession);
}
else
{
PIXI.Sprite.prototype._renderCanvas.call(this._cachedSprite, renderSession);
}
};
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/**
* Internal method.
*
* @method _generateCachedSprite
* @private
*/
PIXI.DisplayObject.prototype._generateCachedSprite = function()
{
this._cacheAsBitmap = false;
var bounds = this.getLocalBounds();
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if(!this._cachedSprite)
{
var renderTexture = new PIXI.RenderTexture(bounds.width | 0, bounds.height | 0);//, renderSession.renderer);
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this._cachedSprite = new PIXI.Sprite(renderTexture);
this._cachedSprite.worldTransform = this.worldTransform;
}
else
{
this._cachedSprite.texture.resize(bounds.width | 0, bounds.height | 0);
}
//REMOVE filter!
var tempFilters = this._filters;
this._filters = null;
this._cachedSprite.filters = tempFilters;
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PIXI.DisplayObject._tempMatrix.tx = -bounds.x;
PIXI.DisplayObject._tempMatrix.ty = -bounds.y;
this._cachedSprite.texture.render(this, PIXI.DisplayObject._tempMatrix );
this._cachedSprite.anchor.x = -( bounds.x / bounds.width );
this._cachedSprite.anchor.y = -( bounds.y / bounds.height );
this._filters = tempFilters;
this._cacheAsBitmap = true;
};
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/**
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* Destroys the cached sprite.
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*
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* @method _destroyCachedSprite
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* @private
*/
PIXI.DisplayObject.prototype._destroyCachedSprite = function()
{
if(!this._cachedSprite)return;
this._cachedSprite.texture.destroy(true);
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// TODO could be object pooled!
this._cachedSprite = null;
};
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/**
* Renders the object using the WebGL renderer
*
* @method _renderWebGL
* @param renderSession {RenderSession}
* @private
*/
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PIXI.DisplayObject.prototype._renderWebGL = function(renderSession)
{
// OVERWRITE;
// this line is just here to pass jshinting :)
renderSession = renderSession;
};
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/**
* Renders the object using the Canvas renderer
*
* @method _renderCanvas
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* @param renderSession {RenderSession}
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* @private
*/
PIXI.DisplayObject.prototype._renderCanvas = function(renderSession)
{
// OVERWRITE;
// this line is just here to pass jshinting :)
renderSession = renderSession;
};
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PIXI.DisplayObject._tempMatrix = new PIXI.Matrix();
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/**
* The position of the displayObject on the x axis relative to the local coordinates of the parent.
*
* @property x
* @type Number
*/
Object.defineProperty(PIXI.DisplayObject.prototype, 'x', {
get: function() {
return this.position.x;
},
set: function(value) {
this.position.x = value;
}
});
/**
* The position of the displayObject on the y axis relative to the local coordinates of the parent.
*
* @property y
* @type Number
*/
Object.defineProperty(PIXI.DisplayObject.prototype, 'y', {
get: function() {
return this.position.y;
},
set: function(value) {
this.position.y = value;
}
});