mirror of
https://port.numenaute.org/aleajactaest/khanat-opennel-code.git
synced 2024-11-10 09:19:01 +00:00
260 lines
No EOL
6.8 KiB
JavaScript
Executable file
260 lines
No EOL
6.8 KiB
JavaScript
Executable file
//chart with points
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if ($("#sincos").length) {
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var sin = [], cos = [];
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for (var i = 0; i < 14; i += 0.5) {
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sin.push([i, Math.sin(i) / i]);
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cos.push([i, Math.cos(i)]);
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}
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var plot = $.plot($("#sincos"),
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[
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{ data: sin, label: "sin(x)/x"},
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{ data: cos, label: "cos(x)" }
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], {
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series: {
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lines: { show: true },
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points: { show: true }
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},
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grid: { hoverable: true, clickable: true, backgroundColor: { colors: ["#fff", "#eee"] } },
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yaxis: { min: -1.2, max: 1.2 },
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colors: ["#539F2E", "#3C67A5"]
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});
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function showTooltip(x, y, contents) {
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$('<div id="tooltip">' + contents + '</div>').css({
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position: 'absolute',
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display: 'none',
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top: y + 5,
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left: x + 5,
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border: '1px solid #fdd',
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padding: '2px',
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'background-color': '#dfeffc',
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opacity: 0.80
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}).appendTo("body").fadeIn(200);
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}
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var previousPoint = null;
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$("#sincos").bind("plothover", function (event, pos, item) {
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$("#x").text(pos.x.toFixed(2));
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$("#y").text(pos.y.toFixed(2));
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if (item) {
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if (previousPoint != item.dataIndex) {
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previousPoint = item.dataIndex;
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$("#tooltip").remove();
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var x = item.datapoint[0].toFixed(2),
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y = item.datapoint[1].toFixed(2);
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showTooltip(item.pageX, item.pageY,
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item.series.label + " of " + x + " = " + y);
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}
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}
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else {
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$("#tooltip").remove();
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previousPoint = null;
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}
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});
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$("#sincos").bind("plotclick", function (event, pos, item) {
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if (item) {
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$("#clickdata").text("You clicked point " + item.dataIndex + " in " + item.series.label + ".");
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plot.highlight(item.series, item.datapoint);
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}
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});
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}
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//flot chart
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if ($("#flotchart").length) {
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var d1 = [];
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for (var i = 0; i < Math.PI * 2; i += 0.25)
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d1.push([i, Math.sin(i)]);
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var d2 = [];
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for (var i = 0; i < Math.PI * 2; i += 0.25)
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d2.push([i, Math.cos(i)]);
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var d3 = [];
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for (var i = 0; i < Math.PI * 2; i += 0.1)
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d3.push([i, Math.tan(i)]);
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$.plot($("#flotchart"), [
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{ label: "sin(x)", data: d1},
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{ label: "cos(x)", data: d2},
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{ label: "tan(x)", data: d3}
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], {
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series: {
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lines: { show: true },
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points: { show: true }
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},
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xaxis: {
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ticks: [0, [Math.PI / 2, "\u03c0/2"], [Math.PI, "\u03c0"], [Math.PI * 3 / 2, "3\u03c0/2"], [Math.PI * 2, "2\u03c0"]]
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},
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yaxis: {
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ticks: 10,
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min: -2,
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max: 2
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},
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grid: {
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backgroundColor: { colors: ["#fff", "#eee"] }
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}
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});
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}
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//stack chart
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if ($("#stackchart").length) {
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var d1 = [];
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for (var i = 0; i <= 10; i += 1)
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d1.push([i, parseInt(Math.random() * 30)]);
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var d2 = [];
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for (var i = 0; i <= 10; i += 1)
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d2.push([i, parseInt(Math.random() * 30)]);
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var d3 = [];
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for (var i = 0; i <= 10; i += 1)
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d3.push([i, parseInt(Math.random() * 30)]);
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var stack = 0, bars = true, lines = false, steps = false;
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function plotWithOptions() {
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$.plot($("#stackchart"), [ d1, d2, d3 ], {
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series: {
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stack: stack,
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lines: { show: lines, fill: true, steps: steps },
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bars: { show: bars, barWidth: 0.6 }
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}
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});
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}
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plotWithOptions();
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$(".stackControls input").click(function (e) {
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e.preventDefault();
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stack = $(this).val() == "With stacking" ? true : null;
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plotWithOptions();
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});
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$(".graphControls input").click(function (e) {
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e.preventDefault();
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bars = $(this).val().indexOf("Bars") != -1;
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lines = $(this).val().indexOf("Lines") != -1;
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steps = $(this).val().indexOf("steps") != -1;
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plotWithOptions();
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});
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}
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//pie chart
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var data = [
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{ label: "Internet Explorer", data: 12},
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{ label: "Mobile", data: 27},
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{ label: "Safari", data: 85},
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{ label: "Opera", data: 64},
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{ label: "Firefox", data: 90},
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{ label: "Chrome", data: 112}
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];
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if ($("#piechart").length) {
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$.plot($("#piechart"), data,
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{
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series: {
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pie: {
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show: true
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}
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},
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grid: {
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hoverable: true,
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clickable: true
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},
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legend: {
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show: false
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}
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});
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function pieHover(event, pos, obj) {
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if (!obj)
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return;
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percent = parseFloat(obj.series.percent).toFixed(2);
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$("#hover").html('<span style="font-weight: bold; color: ' + obj.series.color + '">' + obj.series.label + ' (' + percent + '%)</span>');
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}
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$("#piechart").bind("plothover", pieHover);
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}
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//donut chart
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if ($("#donutchart").length) {
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$.plot($("#donutchart"), data,
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{
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series: {
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pie: {
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innerRadius: 0.5,
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show: true
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}
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},
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legend: {
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show: false
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}
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});
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}
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// we use an inline data source in the example, usually data would
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// be fetched from a server
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var data = [], totalPoints = 300;
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function getRandomData() {
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if (data.length > 0)
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data = data.slice(1);
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// do a random walk
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while (data.length < totalPoints) {
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var prev = data.length > 0 ? data[data.length - 1] : 50;
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var y = prev + Math.random() * 10 - 5;
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if (y < 0)
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y = 0;
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if (y > 100)
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y = 100;
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data.push(y);
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}
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// zip the generated y values with the x values
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var res = [];
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for (var i = 0; i < data.length; ++i)
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res.push([i, data[i]])
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return res;
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}
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// setup control widget
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var updateInterval = 30;
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$("#updateInterval").val(updateInterval).change(function () {
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var v = $(this).val();
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if (v && !isNaN(+v)) {
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updateInterval = +v;
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if (updateInterval < 1)
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updateInterval = 1;
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if (updateInterval > 2000)
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updateInterval = 2000;
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$(this).val("" + updateInterval);
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}
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});
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//realtime chart
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if ($("#realtimechart").length) {
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var options = {
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series: { shadowSize: 1 }, // drawing is faster without shadows
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yaxis: { min: 0, max: 100 },
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xaxis: { show: false }
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};
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var plot = $.plot($("#realtimechart"), [ getRandomData() ], options);
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function update() {
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plot.setData([ getRandomData() ]);
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// since the axes don't change, we don't need to call plot.setupGrid()
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plot.draw();
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setTimeout(update, updateInterval);
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}
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update();
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} |