使用d3在两个节点之间绘制多个边
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我一直在关注来自this example的Mike Bostock的代码,以学习如何在d3中绘制有向图,并且想知道如何构造代码以便我可以在图中的两个节点之间添加多个边。例如,如果上例中的数据集定义为
var links = [{source: "Microsoft", target: "Amazon", type: "licensing"},
{source: "Microsoft", target: "Amazon", type: "suit"},
{source: "Samsung", target: "Apple", type: "suit"},
{source: "Microsoft", target: "Amazon", type: "resolved"}];
然后运行代码,我看到的只有一行。所有路径都在html代码中正确绘制,但它们都具有相同的坐标和方向,使视觉看起来像1行。在这个例子中需要进行什么样的代码重组才能让3个边缘不能相互叠加?
答案
实际上,原始可视化是显示节点之间多个链接的一种方法的主要示例,即使用弧而不是直接路径,因此您可以看到传入和传出链接。
通过改变表示链接的后续svg path(arc)元素的半径值,可以扩展该概念以显示这些类型的链接中的每一个的多个。一个基本的例子是
dr = 75/d.linknum;
其中d.linknum
代表连续链接的数量。 dr
后来被用作绘制弧线的rx和ry量。
在这里全面实施:http://jsfiddle.net/7HZcR/3/
另一答案
如果有人需要,以上是上述答案的来源:
var links = [{source: "Microsoft", target: "Amazon", type: "licensing"},
{source: "Microsoft", target: "Amazon", type: "suit"},
{source: "Samsung", target: "Apple", type: "suit"},
{source: "Microsoft", target: "Amazon", type: "resolved"}];
//sort links by source, then target
links.sort(function(a,b) {
if (a.source > b.source) {return 1;}
else if (a.source < b.source) {return -1;}
else {
if (a.target > b.target) {return 1;}
if (a.target < b.target) {return -1;}
else {return 0;}
}
});
//any links with duplicate source and target get an incremented 'linknum'
for (var i=0; i<links.length; i++) {
if (i != 0 &&
links[i].source == links[i-1].source &&
links[i].target == links[i-1].target) {
links[i].linknum = links[i-1].linknum + 1;
}
else {links[i].linknum = 1;};
};
var nodes = {};
// Compute the distinct nodes from the links.
links.forEach(function(link) {
link.source = nodes[link.source] || (nodes[link.source] = {name: link.source});
link.target = nodes[link.target] || (nodes[link.target] = {name: link.target});
});
var w = 600,
h = 600;
var force = d3.layout.force()
.nodes(d3.values(nodes))
.links(links)
.size([w, h])
.linkDistance(60)
.charge(-300)
.on("tick", tick)
.start();
var svg = d3.select("body").append("svg:svg")
.attr("width", w)
.attr("height", h);
// Per-type markers, as they don't inherit styles.
svg.append("svg:defs").selectAll("marker")
.data(["suit", "licensing", "resolved"])
.enter().append("svg:marker")
.attr("id", String)
.attr("viewBox", "0 -5 10 10")
.attr("refX", 15)
.attr("refY", -1.5)
.attr("markerWidth", 6)
.attr("markerHeight", 6)
.attr("orient", "auto")
.append("svg:path")
.attr("d", "M0,-5L10,0L0,5");
var path = svg.append("svg:g").selectAll("path")
.data(force.links())
.enter().append("svg:path")
.attr("class", function(d) { return "link " + d.type; })
.attr("marker-end", function(d) { return "url(#" + d.type + ")"; });
var circle = svg.append("svg:g").selectAll("circle")
.data(force.nodes())
.enter().append("svg:circle")
.attr("r", 6)
.call(force.drag);
var text = svg.append("svg:g").selectAll("g")
.data(force.nodes())
.enter().append("svg:g");
// A copy of the text with a thick white stroke for legibility.
text.append("svg:text")
.attr("x", 8)
.attr("y", ".31em")
.attr("class", "shadow")
.text(function(d) { return d.name; });
text.append("svg:text")
.attr("x", 8)
.attr("y", ".31em")
.text(function(d) { return d.name; });
// Use elliptical arc path segments to doubly-encode directionality.
function tick() {
path.attr("d", function(d) {
var dx = d.target.x - d.source.x,
dy = d.target.y - d.source.y,
dr = 75/d.linknum; //linknum is defined above
return "M" + d.source.x + "," + d.source.y + "A" + dr + "," + dr + " 0 0,1 " + d.target.x + "," + d.target.y;
});
circle.attr("transform", function(d) {
return "translate(" + d.x + "," + d.y + ")";
});
text.attr("transform", function(d) {
return "translate(" + d.x + "," + d.y + ")";
});
}
path.link {
fill: none;
stroke: #666;
stroke-width: 1.5px;
}
marker#licensing {
fill: green;
}
path.link.licensing {
stroke: green;
}
path.link.resolved {
stroke-dasharray: 0,2 1;
}
circle {
fill: #ccc;
stroke: #333;
stroke-width: 1.5px;
}
text {
font: 10px sans-serif;
pointer-events: none;
}
text.shadow {
stroke: #fff;
stroke-width: 3px;
stroke-opacity: .8;
}
<script src="https://cdnjs.cloudflare.com/ajax/libs/d3/3.4.11/d3.min.js"></script>
<div id="chart"></div>
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