Raphael based pie chart

Simple demo taken directly from raphaeljs.com

HTML

<script src="http://github.com/DmitryBaranovskiy/raphael/raw/master/raphael-min.js"></script>
<html lang="en">
    <head>
        <meta charset="utf-8">
        <title>Raphaël · Pie Chart</title>
        <style media="screen">
            #holder {
                margin: -350px 0 0 -350px;
                width: 700px;
                height: 700px;
            }
        </style>
    </head>
    <body>
        <table>
            <tbody>
                <tr>
                    <th scope="row">Ruby</th>
                    <td>100%</td>
                </tr>
            </tbody>
        </table>
        <div id="holder"></div>
        <p id="copy">Demo of <a href="http://raphaeljs.com/">Raphaël</a>—JavaScript Vector Library</p>
    </body>
</html>

CSS

body {
    background: #333;
    color: #fff;
    font: 300 100.1% "Helvetica Neue", Helvetica, "Arial Unicode MS", Arial, sans-serif;
}
#holder {
    height: 480px;
    left: 50%;
    margin: -240px 0 0 -320px;
    position: absolute;
    top: 50%;
    width: 640px;
}
#copy {
    bottom: 0;
    font: 300 .7em "Helvetica Neue", Helvetica, "Arial Unicode MS", Arial, sans-serif;
    position: absolute;
    right: 1em;
    text-align: right;
}
#copy a {
    color: #fff;
}

JavaScript

Raphael.fn.pieChart = function (cx, cy, r, values, labels, stroke) {
    var paper = this,
        rad = Math.PI / 180,
        chart = this.set();
    function sector(cx, cy, r, startAngle, endAngle, params) {
        var x1 = cx + r * Math.cos(-startAngle * rad),
            x2 = cx + r * Math.cos(-endAngle * rad),
            y1 = cy + r * Math.sin(-startAngle * rad),
            y2 = cy + r * Math.sin(-endAngle * rad);
        return paper.path(["M", cx, cy, "L", x1, y1, "A", r, r, 0, +(endAngle - startAngle > 180), 0, x2, y2, "z"]).attr(params);
    }
    var angle = 0,
        total = 0,
        start = 0,
        process = function (j) {
            var value = values[j],
                angleplus = 360; // * value / total,
                popangle = angle + (angleplus / 2),
                color = Raphael.hsb(start, .75, 1),
                ms = 500,
                delta = 30,
                bcolor = Raphael.hsb(start, 1, 1),
                p = sector(cx, cy, r, angle, angle + angleplus, {fill: "90-" + bcolor + "-" + color, stroke: stroke, "stroke-width": 3}),
                txt = paper.text(cx + (r + delta + 55) * Math.cos(-popangle * rad), cy + (r + delta + 25) * Math.sin(-popangle * rad), labels[j]).attr({fill: bcolor, stroke: "none", opacity: 0, "font-size": 20});
            p.mouseover(function () {
                p.stop().animate({transform: "s1.1 1.1 " + cx + " " + cy}, ms, "elastic");
                txt.stop().animate({opacity: 1}, ms, "elastic");
            }).mouseout(function () {
                p.stop().animate({transform: ""}, ms, "elastic");
                txt.stop().animate({opacity: 0}, ms);
            });
            angle += angleplus;
            chart.push(p);
            chart.push(txt);
            start += .1;
        };
    for (var i = 0, ii = values.length; i < ii; i++) {
        total += values[i];
    }
    for (i = 0; i < ii; i++) {
        process(i);
    }
    return chart;
};

$(function () {
    var values =...