mirror of
https://github.com/scratchfoundation/paper.js.git
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295 lines
7.7 KiB
JavaScript
295 lines
7.7 KiB
JavaScript
/*
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* Paper.js - The Swiss Army Knife of Vector Graphics Scripting.
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* http://paperjs.org/
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*
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* Copyright (c) 2011 - 2013, Juerg Lehni & Jonathan Puckey
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* http://lehni.org/ & http://jonathanpuckey.com/
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*
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* Distributed under the MIT license. See LICENSE file for details.
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*
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* All rights reserved.
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*/
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/**
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* @name CompoundPath
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*
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* @class A compound path contains two or more paths, holes are drawn
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* where the paths overlap. All the paths in a compound path take on the
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* style of the backmost path and can be accessed through its
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* {@link Item#children} list.
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*
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* @extends PathItem
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*/
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var CompoundPath = this.CompoundPath = PathItem.extend(/** @lends CompoundPath# */{
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_class: 'CompoundPath',
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_serializeFields: {
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pathData: ''
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},
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/**
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* Creates a new compound path item and places it in the active layer.
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*
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* @param {Path[]} [paths] the paths to place within the compound path.
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*
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* @example {@paperscript}
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* // Create a circle shaped path with a hole in it:
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* var circle = new Path.Circle({
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* center: new Point(50, 50),
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* radius: 30
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* });
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*
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* var innerCircle = new Path.Circle({
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* center: new Point(50, 50),
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* radius: 10
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* });
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*
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* var compoundPath = new CompoundPath([circle, innerCircle]);
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* compoundPath.fillColor = 'red';
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*
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* // Move the inner circle 5pt to the right:
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* compoundPath.children[1].position.x += 5;
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*/
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initialize: function(arg) {
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this.base();
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// CompoundPath has children and supports named children.
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this._children = [];
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this._namedChildren = {};
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if (arg && !this._set(arg))
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this.addChildren(Array.isArray(arg) ? arg : arguments);
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},
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insertChild: function(index, item, _preserve) {
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// Only allow the insertion of paths
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if (item._type !== 'path')
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return null;
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item = this.base(index, item);
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// All children except for the bottom one (first one in list) are set
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// to anti-clockwise orientation, so that they appear as holes, but
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// only if their orientation was not already specified before
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// (= _clockwise is defined).
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if (!_preserve && item && item._clockwise === undefined)
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item.setClockwise(item._index == 0);
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return item;
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},
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/**
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* If this is a compound path with only one path inside,
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* the path is moved outside and the compound path is erased.
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* Otherwise, the compound path is returned unmodified.
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*
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* @return {CompoundPath|Path} the flattened compound path
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*/
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reduce: function() {
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if (this._children.length == 1) {
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var child = this._children[0];
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child.insertAbove(this);
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this.remove();
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return child;
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}
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return this;
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},
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/**
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* Reverses the orientation of all nested paths.
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*/
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reverse: function() {
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var children = this._children;
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for (var i = 0, l = children.length; i < l; i++)
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children[i].reverse();
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},
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smooth: function() {
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for (var i = 0, l = this._children.length; i < l; i++)
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this._children[i].smooth();
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},
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/**
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* Specifies whether the compound path is oriented clock-wise.
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*
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* @type Boolean
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* @bean
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*/
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isClockwise: function() {
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var child = this.getFirstChild();
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return child && child.isClockwise();
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},
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setClockwise: function(clockwise) {
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if (this.isClockwise() != !!clockwise)
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this.reverse();
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},
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/**
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* The first Segment contained within the path.
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*
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* @type Segment
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* @bean
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*/
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getFirstSegment: function() {
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var first = this.getFirstChild();
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return first && first.getFirstSegment();
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},
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/**
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* The last Segment contained within the path.
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*
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* @type Segment
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* @bean
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*/
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getLastSegment: function() {
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var last = this.getLastChild();
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return last && last.getLastSegment();
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},
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/**
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* All the curves contained within the compound-path, from all its child
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* {@link Path} items.
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*
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* @type Curve[]
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* @bean
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*/
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getCurves: function() {
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var children = this._children,
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curves = [];
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for (var i = 0, l = children.length; i < l; i++)
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curves = curves.concat(children[i].getCurves());
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return curves;
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},
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/**
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* The first Curve contained within the path.
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*
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* @type Curve
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* @bean
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*/
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getFirstCurve: function() {
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var first = this.getFirstChild();
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return first && first.getFirstCurve();
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},
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/**
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* The last Curve contained within the path.
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*
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* @type Curve
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* @bean
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*/
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getLastCurve: function() {
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var last = this.getLastChild();
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return last && last.getFirstCurve();
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},
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/**
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* The area of the path in square points. Self-intersecting paths can
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* contain sub-areas that cancel each other out.
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*
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* @type Number
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* @bean
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*/
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getArea: function() {
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var children = this._children,
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area = 0;
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for (var i = 0, l = children.length; i < l; i++)
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area += children[i].getArea();
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return area;
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},
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getPathData: function(/* precision */) {
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var children = this._children,
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paths = [];
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for (var i = 0, l = children.length; i < l; i++)
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paths.push(children[i].getPathData(arguments[0]));
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return paths.join(' ');
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},
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/**
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* A private method to help with both #contains() and #_hitTest().
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* Instead of simply returning a boolean, it returns a children of all the
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* children that contain the point. This is required by _hitTest(), and
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* Item#contains() is prepared for such a result.
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*/
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_contains: function(point) {
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// Compound paths are a little complex: In order to determine wether a
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// point is inside a path or not due to the even-odd rule, we need to
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// check all the children and count how many intersect. If it's an odd
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// number, the point is inside the path. Once we know it's inside the
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// path, _hitTest also needs access to the first intersecting element,
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// for the HitResult, so we collect and return a list here.
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var children = [];
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for (var i = 0, l = this._children.length; i < l; i++) {
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var child = this._children[i];
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if (child.contains(point))
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children.push(child);
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}
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return (children.length & 1) == 1 && children;
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},
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_hitTest: function(point, options) {
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var res = this.base(point, Base.merge(options, { fill: false }));
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if (!res && options.fill && this._style.getFillColor()) {
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res = this._contains(point);
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res = res ? new HitResult('fill', res[0]) : null;
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}
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return res;
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},
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_draw: function(ctx, param) {
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var children = this._children,
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style = this._style;
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// Return early if the compound path doesn't have any children:
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if (children.length === 0)
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return;
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ctx.beginPath();
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param.compound = true;
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for (var i = 0, l = children.length; i < l; i++)
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children[i].draw(ctx, param);
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param.compound = false;
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if (!param.clip) {
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this._setStyles(ctx);
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if (style.getFillColor())
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ctx.fill();
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if (style.getStrokeColor())
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ctx.stroke();
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}
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}
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}, new function() { // Injection scope for PostScript-like drawing functions
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/**
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* Helper method that returns the current path and checks if a moveTo()
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* command is required first.
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*/
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function getCurrentPath(that) {
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if (!that._children.length)
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throw new Error('Use a moveTo() command first');
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return that._children[that._children.length - 1];
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}
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var fields = {
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// Note: Documentation for these methods is found in PathItem, as they
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// are considered abstract methods of PathItem and need to be defined in
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// all implementing classes.
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moveTo: function(point) {
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var path = new Path();
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this.addChild(path);
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path.moveTo.apply(path, arguments);
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},
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moveBy: function(point) {
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this.moveTo(getCurrentPath(this).getLastSegment()._point.add(
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Point.read(arguments)));
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},
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closePath: function() {
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getCurrentPath(this).closePath();
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}
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};
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// Redirect all other drawing commands to the current path
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Base.each(['lineTo', 'cubicCurveTo', 'quadraticCurveTo', 'curveTo',
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'arcTo', 'lineBy', 'curveBy', 'arcBy'], function(key) {
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fields[key] = function() {
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var path = getCurrentPath(this);
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path[key].apply(path, arguments);
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};
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});
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return fields;
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});
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