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211 lines
7.9 KiB
JavaScript
Executable File
211 lines
7.9 KiB
JavaScript
Executable File
"use strict";
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/*
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* Copyright (C) 1998-2020 by Northwoods Software Corporation. All Rights Reserved.
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*/
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// A custom LinkReshapingTool that snaps dragged reshaping handles to grid points.
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/*
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* This is an extension and not part of the main GoJS library.
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* Note that the API for this class may change with any version, even point releases.
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* If you intend to use an extension in production, you should copy the code to your own source directory.
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* Extensions can be found in the GoJS kit under the extensions or extensionsTS folders.
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* See the Extensions intro page (https://gojs.net/latest/intro/extensions.html) for more information.
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*/
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/**
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* @constructor
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* @extends LinkReshapingTool
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* @class
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* This SnapLinkReshapingTool class supports snapping reshaping handles to go to the nearest grid point.
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* If {@link #avoidsNodes} is true and the link is orthogonal,
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* it also avoids reshaping the link so that any adjacent segments cross over any avoidable nodes.
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*/
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function SnapLinkReshapingTool() {
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go.LinkReshapingTool.call(this);
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/** @type {Size} */
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this._gridCellSize = new go.Size(NaN, NaN);
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/** @type {Point} */
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this._gridOrigin = new go.Point(NaN, NaN);
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/** @type {boolean} */
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this._isGridSnapEnabled = true;
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/** @type {boolean} */
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this._avoidsNodes = true;
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// internal state
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this._safePoint = new go.Point(NaN, NaN);
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this._prevSegHoriz = false;
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this._nextSegHoriz = false;
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}
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go.Diagram.inherit(SnapLinkReshapingTool, go.LinkReshapingTool);
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/**
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* Gets or sets the {@link Size} of each grid cell to which link points will be snapped.
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* The default value is NaNxNaN, which means use the {@link Diagram#grid}'s {@link Panel#gridCellSize}.
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* @name SnapLinkReshapingTool#gridCellSize
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* @return {Size}
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*/
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Object.defineProperty(SnapLinkReshapingTool.prototype, "gridCellSize", {
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get: function() { return this._gridCellSize; },
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set: function(val) {
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if (!(val instanceof go.Size)) throw new Error("new value for SnapLinkReshapingTool.gridCellSize must be a Size, not: " + val);
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this._gridCellSize = val.copy();
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}
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});
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/**
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* Gets or sets the {@link Point} origin for the grid to which link points will be snapped.
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* The default value is NaN,NaN, which means use the {@link Diagram#grid}'s {@link Panel#gridOrigin}.
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* @name SnapLinkReshapingTool#gridOrigin
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* @return {Point}
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*/
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Object.defineProperty(SnapLinkReshapingTool.prototype, "gridOrigin", {
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get: function() { return this._gridOrigin; },
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set: function(val) {
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if (!(val instanceof go.Point)) throw new Error("new value for SnapLinkReshapingTool.gridOrigin must be a Point, not: " + val);
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this._gridOrigin = val.copy();
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}
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});
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/**
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* Gets or sets whether a reshape handle's position should be snapped to a grid point.
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* The default value is true.
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* This affects the behavior of {@link #computeReshape}.
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*/
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Object.defineProperty(SnapLinkReshapingTool.prototype, "isGridSnapEnabled", {
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get: function() { return this._isGridSnapEnabled; },
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set: function(val) {
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if (typeof val !== "boolean") throw new Error("new value for SnapLinkReshapingTool.isGridSnapEnabled must be a boolean, not: " + val);
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this._isGridSnapEnabled = val;
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}
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});
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/**
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* Gets or sets whether a reshape handle's position should only be dragged where the
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* adjacent segments do not cross over any nodes.
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* The default value is true.
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* This affects the behavior of {@link #computeReshape}.
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*/
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Object.defineProperty(SnapLinkReshapingTool.prototype, "avoidsNodes", {
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get: function() { return this._avoidsNodes; },
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set: function(val) {
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if (typeof val !== "boolean") throw new Error("new value for SnapLinkReshapingTool.avoidsNodes must be a boolean, not: " + val);
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this._avoidsNodes = val;
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}
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});
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/**
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* This override records information about the original point of the handle being dragged,
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* if the {@link #adornedLink} is Orthogonal and if {@link #avoidsNodes} is true.
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*/
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SnapLinkReshapingTool.prototype.doActivate = function() {
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go.LinkReshapingTool.prototype.doActivate.call(this);
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if (this.isActive && this.avoidsNodes && this.adornedLink.isOrthogonal) {
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// assume the Link's route starts off correctly avoiding all nodes
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this._safePoint = this.diagram.lastInput.documentPoint.copy();
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var link = this.adornedLink;
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var idx = this.handle.segmentIndex;
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this._prevSegHoriz = Math.abs(link.getPoint(idx-1).y - link.getPoint(idx).y) < 0.5;
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this._nextSegHoriz = Math.abs(link.getPoint(idx+1).y - link.getPoint(idx).y) < 0.5;
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}
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};
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/**
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* Pretend while dragging a reshape handle the mouse point is at the nearest grid point,
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* if {@link #isGridSnapEnabled} is true.
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* This uses {@link #gridCellSize} and {@link #gridOrigin}, unless those are not real values,
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* in which case this uses the {@link Diagram#grid}'s {@link Panel#gridCellSize} and {@link Panel#gridOrigin}.
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*
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* If {@link #avoidsNodes} is true and the adorned Link is {@link Link#isOrthogonal},
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* this method also avoids returning a Point that causes the adjacent segments, both before and after
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* the current handle's index, to cross over any Nodes that are {@link Node#avoidable}.
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* @this {SnapLinkReshapingTool}
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* @param {Point} p
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* @return {Point}
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*/
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SnapLinkReshapingTool.prototype.computeReshape = function(p) {
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var pt = p;
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if (this.isGridSnapEnabled) {
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// first, find the grid to which we should snap
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var cell = this.gridCellSize;
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var orig = this.gridOrigin;
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if (!cell.isReal() || cell.width === 0 || cell.height === 0) cell = this.diagram.grid.gridCellSize;
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if (!orig.isReal()) orig = this.diagram.grid.gridOrigin;
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// second, compute the closest grid point
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pt = p.copy().snapToGrid(orig.x, orig.y, cell.width, cell.height);
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}
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if (this.avoidsNodes && this.adornedLink.isOrthogonal) {
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if (this._checkSegmentsOverlap(pt)) {
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this._safePoint = pt.copy();
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} else {
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pt = this._safePoint.copy();
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}
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}
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// then do whatever LinkReshapingTool would normally do as if the mouse were at that point
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return go.LinkReshapingTool.prototype.computeReshape.call(this, pt);
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};
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/**
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* @hidden @internal
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* Internal method for seeing whether a moved handle will cause any
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* adjacent orthogonal segments to cross over any avoidable nodes.
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* Returns true if everything would be OK.
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*/
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SnapLinkReshapingTool.prototype._checkSegmentsOverlap = function(pt) {
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var index = this.handle.segmentIndex;
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if (index >= 1) {
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var p1 = this.adornedLink.getPoint(index-1);
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var r = new go.Rect(pt.x, pt.y, 0, 0);
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var q1 = p1.copy();
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if (this._prevSegHoriz) {
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q1.y = pt.y;
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} else {
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q1.x = pt.x;
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}
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r.unionPoint(q1);
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var overlaps = this.diagram.findPartsIn(r, true, false);
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if (overlaps.any(function(p) { return p instanceof go.Node && p.avoidable; })) return false;
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if (index >= 2) {
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var p0 = this.adornedLink.getPoint(index-2);
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var r = new go.Rect(q1.x, q1.y, 0, 0);
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if (this._prevSegHoriz) {
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r.unionPoint(new go.Point(q1.x, p0.y));
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} else {
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r.unionPoint(new go.Point(p0.x, q1.y));
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}
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var overlaps = this.diagram.findPartsIn(r, true, false);
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if (overlaps.any(function(p) { return p instanceof go.Node && p.avoidable; })) return false;
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}
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}
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if (index < this.adornedLink.pointsCount-1) {
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var p2 = this.adornedLink.getPoint(index+1);
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var r = new go.Rect(pt.x, pt.y, 0, 0);
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var q2 = p2.copy();
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if (this._nextSegHoriz) {
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q2.y = pt.y;
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} else {
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q2.x = pt.x;
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}
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r.unionPoint(q2);
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var overlaps = this.diagram.findPartsIn(r, true, false);
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if (overlaps.any(function(p) { return p instanceof go.Node && p.avoidable; })) return false;
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if (index < this.adornedLink.pointsCount-2) {
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var p3 = this.adornedLink.getPoint(index+2);
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var r = new go.Rect(q2.x, q2.y, 0, 0);
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if (this._nextSegHoriz) {
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r.unionPoint(new go.Point(q2.x, p3.y));
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} else {
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r.unionPoint(new go.Point(p3.x, q2.y));
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}
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var overlaps = this.diagram.findPartsIn(r, true, false);
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if (overlaps.any(function(p) { return p instanceof go.Node && p.avoidable; })) return false;
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}
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}
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return true;
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}; |