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387 lines
9.4 KiB
387 lines
9.4 KiB
/**
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* Class to generate polyline
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*
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* @author Dmitry Farafonov
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*/
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var ANCHOR_TYPE= {
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main: "main",
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middle: "middle",
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first: "first",
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last: "last"
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};
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function Anchor(uuid, type, x, y) {
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this.uuid = uuid;
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this.x = x
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this.y = y
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this.type = (type == ANCHOR_TYPE.middle) ? ANCHOR_TYPE.middle : ANCHOR_TYPE.main;
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};
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Anchor.prototype = {
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uuid: null,
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x: 0,
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y: 0,
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type: ANCHOR_TYPE.main,
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isFirst: false,
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isLast: false,
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ndex: 0,
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typeIndex: 0
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};
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function Polyline(uuid, points, strokeWidth) {
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/* Array on coordinates:
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* points: [{x: 410, y: 110}, 1
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* {x: 570, y: 110}, 1 2
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* {x: 620, y: 240}, 2 3
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* {x: 750, y: 270}, 3 4
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* {x: 650, y: 370}]; 4
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*/
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this.points = points;
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/*
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* path for graph
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* [["M", x1, y1], ["L", x2, y2], ["C", ax, ay, bx, by, x3, y3], ["L", x3, y3]]
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*/
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this.path = [];
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this.anchors = [];
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if (strokeWidth) this.strokeWidth = strokeWidth;
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this.closePath = false;
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this.init();
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};
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Polyline.prototype = {
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id: null,
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points: [],
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path: [],
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anchors: [],
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strokeWidth: 1,
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radius: 15,
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showDetails: false,
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element: null,
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isDefaultConditionAvailable: false,
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closePath: false,
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init: function(points){
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var linesCount = this.getLinesCount();
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if (linesCount < 1)
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return;
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this.normalizeCoordinates();
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// create anchors
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this.pushAnchor(ANCHOR_TYPE.first, this.getLine(0).x1, this.getLine(0).y1);
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for(var i = 1; i < linesCount; i++){
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var line1 = this.getLine(i-1),
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line2 = this.getLine(i);
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//this.pushAnchor(ANCHOR_TYPE.middle, line1.x1 + line1.x2-line1.x1, line1.y1 + line1.y2-line1.y1);
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this.pushAnchor(ANCHOR_TYPE.main, line1.x2, line1.y2);
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//this.pushAnchor(ANCHOR_TYPE.middle, line2.x1 + line2.x2-line2.x1, line2.y1 + line2.y2-line2.y1);
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}
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this.pushAnchor(ANCHOR_TYPE.last, this.getLine(linesCount-1).x2, this.getLine(linesCount-1).y2);
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this.rebuildPath();
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},
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normalizeCoordinates: function(){
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for(var i=0; i < this.points.length; i++){
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this.points[i].x = parseFloat(this.points[i].x);
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this.points[i].y = parseFloat(this.points[i].y);
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}
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},
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getLinesCount: function(){
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return this.points.length-1;
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},
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_getLine: function(i){
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return {x1: this.points[i].x, y1: this.points[i].y, x2: this.points[i+1].x, y2: this.points[i+1].y};
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},
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getLine: function(i){
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var line = this._getLine(i);
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line.angle = this.getLineAngle(i) ;
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return line;
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},
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getLineAngle: function(i){
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var line = this._getLine(i);
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return Math.atan2(line.y2 - line.y1, line.x2 - line.x1);
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},
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getLineLengthX: function(i){
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var line = this.getLine(i);
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return (line.x2 - line.x1);
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},
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getLineLengthY: function(i){
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var line = this.getLine(i);
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return (line.y2 - line.y1);
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},
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getLineLength: function(i){
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var line = this.getLine(i);
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return Math.sqrt(Math.pow(this.getLineLengthX(i), 2) + Math.pow(this.getLineLengthY(i), 2));
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},
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getAnchors: function(){
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// ������� ��������������� ������
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// ????
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return this.anchors;
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},
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getAnchorsCount: function(type){
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if (!type)
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return this.anchors.length;
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else {
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var count = 0;
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for(var i=0; i < this.getAnchorsCount(); i++){
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var anchor = this.anchors[i];
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if (anchor.getType() == type) {
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count++;
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}
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}
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return count;
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}
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},
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pushAnchor: function(type, x, y, index){
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if (type == ANCHOR_TYPE.first) {
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index = 0;
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typeIndex = 0;
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} else if (type == ANCHOR_TYPE.last) {
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index = this.getAnchorsCount();
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typeIndex = 0;
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} else if (!index) {
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index = this.anchors.length;
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} else {
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// ��������� anchors, �������� ������� ��� �������, ������� � index
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//var anchor = this.getAnchor()
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for(var i=0; i < this.getAnchorsCount(); i++){
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var anchor = this.anchors[i];
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if (anchor.index > index) {
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anchor.index++;
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anchor.typeIndex++;
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}
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}
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}
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var anchor = new Anchor(this.id, ANCHOR_TYPE.main, x, y, index, typeIndex);
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this.anchors.push(anchor);
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},
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getAnchor: function(position){
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return this.anchors[position];
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},
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getAnchorByType: function(type, position){
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if (type == ANCHOR_TYPE.first)
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return this.anchors[0];
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if (type == ANCHOR_TYPE.last)
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return this.anchors[this.getAnchorsCount()-1];
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for(var i=0; i < this.getAnchorsCount(); i++){
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var anchor = this.anchors[i];
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if (anchor.type == type) {
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if( position == anchor.position)
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return anchor;
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}
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}
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return null;
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},
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addNewPoint: function(position, x, y){
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//
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for(var i = 0; i < this.getLinesCount(); i++){
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var line = this.getLine(i);
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if (x > line.x1 && x < line.x2 && y > line.y1 && y < line.y2) {
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this.points.splice(i+1,0,{x: x, y: y});
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break;
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}
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}
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this.rebuildPath();
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},
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rebuildPath: function(){
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var path = [];
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for(var i = 0; i < this.getAnchorsCount(); i++){
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var anchor = this.getAnchor(i);
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var pathType = ""
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if (i==0)
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pathType = "M";
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else
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pathType = "L";
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// TODO: save previous points and calculate new path just if points are updated, and then save currents values as previous
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var targetX = anchor.x, targetY = anchor.y;
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if (i>0 && i < this.getAnchorsCount()-1) {
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// get new x,y
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var cx = anchor.x, cy = anchor.y;
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// pivot point of prev line
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var AO = this.getLineLength(i-1);
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if (AO < this.radius) {
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AO = this.radius;
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}
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this.isDefaultConditionAvailable = (this.isDefaultConditionAvailable || (i == 1 && AO > 10));
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//console.log("isDefaultConditionAvailable", this.isDefaultConditionAvailable);
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var ED = this.getLineLengthY(i-1) * this.radius / AO;
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var OD = this.getLineLengthX(i-1) * this.radius / AO;
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targetX = anchor.x - OD;
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targetY = anchor.y - ED;
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if (AO < 2*this.radius && i>1) {
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targetX = anchor.x - this.getLineLengthX(i-1)/2;
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targetY = anchor.y - this.getLineLengthY(i-1)/2;;
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}
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// pivot point of next line
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var AO = this.getLineLength(i);
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if (AO < this.radius) {
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AO = this.radius;
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}
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var ED = this.getLineLengthY(i) * this.radius / AO;
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var OD = this.getLineLengthX(i) * this.radius / AO;
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var nextSrcX = anchor.x + OD;
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var nextSrcY = anchor.y + ED;
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if (AO < 2*this.radius && i<this.getAnchorsCount()-2) {
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nextSrcX = anchor.x + this.getLineLengthX(i)/2;
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nextSrcY = anchor.y + this.getLineLengthY(i)/2;;
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}
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var dx0 = (cx - targetX) / 3,
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dy0 = (cy - targetY) / 3,
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ax = cx - dx0,
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ay = cy - dy0,
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dx1 = (cx - nextSrcX) / 3,
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dy1 = (cy - nextSrcY) / 3,
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bx = cx - dx1,
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by = cy - dy1,
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zx=nextSrcX, zy=nextSrcY;
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if (this.showDetails) {
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var c = ProcessDiagramCanvas.g.path("M"+targetX+","+targetY+"L"+ax+","+ay).attr({stroke: Color.get(255, 153, 51), "stroke-dasharray": "- "});
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var c = ProcessDiagramCanvas.g.path("M"+nextSrcX+","+nextSrcY+"L"+bx+","+by).attr({stroke: Color.get(255, 153, 51), "stroke-dasharray": "- "});
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var c = ProcessDiagramCanvas.g.ellipse(ax, ay, 2, 2).attr({stroke: Color.SlateGrey});
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var c = ProcessDiagramCanvas.g.ellipse(bx, by, 2, 2).attr({stroke: Color.SlateGrey});
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var c = ProcessDiagramCanvas.g.ellipse(cx, cy, this.radius, this.radius).attr({stroke: Color.Gainsboro});
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var c = ProcessDiagramCanvas.g.ellipse(targetX, targetY, 2, 2).attr({fill: Color.red});
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var c = ProcessDiagramCanvas.g.ellipse(nextSrcX, nextSrcY, 2, 2).attr({fill: Color.red});
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}
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} else if (i==1 && this.getAnchorsCount() == 2){
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var AO = this.getLineLength(i-1);
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if (AO < this.radius) {
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AO = this.radius;
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}
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this.isDefaultConditionAvailable = (this.isDefaultConditionAvailable || (i == 1 && AO > 10));
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//console.log("-- isDefaultConditionAvailable", this.isDefaultConditionAvailable);
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}
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// anti smoothing
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if (this.strokeWidth%2 == 1) {
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targetX += 0.5;
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targetY += 0.5;
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}
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path.push([pathType, targetX, targetY]);
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if (i>0 && i < this.getAnchorsCount()-1) {
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path.push(["C", ax, ay, bx, by, zx, zy]);
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}
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}
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if (this.closePath) {
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console.log("closePath:", this.closePath);
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path.push(["Z"]);
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}
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this.path = path;
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},
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transform: function(transformation){
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this.element.transform(transformation);
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},
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attr: function(attrs){
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//console.log("attrs: " +attrs, "", this.element);
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// TODO: foreach and set each
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this.element.attr(attrs);
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}
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};
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function Polygone(points, strokeWidth) {
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/* Array on coordinates:
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* points: [{x: 410, y: 110}, 1
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* {x: 570, y: 110}, 1 2
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* {x: 620, y: 240}, 2 3
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* {x: 750, y: 270}, 3 4
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* {x: 650, y: 370}]; 4
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*/
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this.points = points;
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/*
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* path for graph
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* [["M", x1, y1], ["L", x2, y2], ["C", ax, ay, bx, by, x3, y3], ["L", x3, y3]]
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*/
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this.path = [];
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this.anchors = [];
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if (strokeWidth) this.strokeWidth = strokeWidth;
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this.closePath = true;
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this.init();
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};
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/*
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* Poligone is inherited from Poliline: draws closedPath of polyline
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*/
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var Foo = function () { };
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Foo.prototype = Polyline.prototype;
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Polygone.prototype = new Foo();
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Polygone.prototype.rebuildPath = function(){
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var path = [];
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//console.log("Polygone rebuildPath");
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for(var i = 0; i < this.getAnchorsCount(); i++){
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var anchor = this.getAnchor(i);
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var pathType = ""
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if (i==0)
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pathType = "M";
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else
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pathType = "L";
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var targetX = anchor.x, targetY = anchor.y;
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// anti smoothing
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if (this.strokeWidth%2 == 1) {
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targetX += 0.5;
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targetY += 0.5;
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}
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path.push([pathType, targetX, targetY]);
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}
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if (this.closePath)
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path.push(["Z"]);
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this.path = path;
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};
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/*
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Polygone.prototype.transform = function(transformation){
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this.element.transform(transformation);
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};
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*/
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