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227 lines
5.1 KiB
JavaScript
227 lines
5.1 KiB
JavaScript
/* Flot plugin for computing bottoms for filled line and bar charts.
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Copyright (c) 2007-2013 IOLA and Ole Laursen.
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Licensed under the MIT license.
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The case: you've got two series that you want to fill the area between. In Flot
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terms, you need to use one as the fill bottom of the other. You can specify the
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bottom of each data point as the third coordinate manually, or you can use this
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plugin to compute it for you.
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In order to name the other series, you need to give it an id, like this:
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var dataset = [
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{ data: [ ... ], id: "foo" } , // use default bottom
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{ data: [ ... ], fillBetween: "foo" }, // use first dataset as bottom
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];
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$.plot($("#placeholder"), dataset, { lines: { show: true, fill: true }});
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As a convenience, if the id given is a number that doesn't appear as an id in
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the series, it is interpreted as the index in the array instead (so fillBetween:
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0 can also mean the first series).
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Internally, the plugin modifies the datapoints in each series. For line series,
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extra data points might be inserted through interpolation. Note that at points
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where the bottom line is not defined (due to a null point or start/end of line),
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the current line will show a gap too. The algorithm comes from the
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jquery.flot.stack.js plugin, possibly some code could be shared.
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*/
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(function ( $ ) {
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var options = {
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series: {
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fillBetween: null // or number
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}
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};
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function init( plot ) {
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function findBottomSeries( s, allseries ) {
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var i;
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for ( i = 0; i < allseries.length; ++i ) {
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if ( allseries[ i ].id === s.fillBetween ) {
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return allseries[ i ];
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}
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}
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if ( typeof s.fillBetween === "number" ) {
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if ( s.fillBetween < 0 || s.fillBetween >= allseries.length ) {
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return null;
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}
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return allseries[ s.fillBetween ];
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}
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return null;
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}
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function computeFillBottoms( plot, s, datapoints ) {
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if ( s.fillBetween == null ) {
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return;
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}
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var other = findBottomSeries( s, plot.getData() );
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if ( !other ) {
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return;
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}
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var ps = datapoints.pointsize,
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points = datapoints.points,
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otherps = other.datapoints.pointsize,
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otherpoints = other.datapoints.points,
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newpoints = [],
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px, py, intery, qx, qy, bottom,
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withlines = s.lines.show,
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withbottom = ps > 2 && datapoints.format[2].y,
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withsteps = withlines && s.lines.steps,
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fromgap = true,
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i = 0,
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j = 0,
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l, m;
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while ( true ) {
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if ( i >= points.length ) {
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break;
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}
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l = newpoints.length;
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if ( points[ i ] == null ) {
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// copy gaps
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for ( m = 0; m < ps; ++m ) {
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newpoints.push( points[ i + m ] );
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}
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i += ps;
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} else if ( j >= otherpoints.length ) {
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// for lines, we can't use the rest of the points
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if ( !withlines ) {
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for ( m = 0; m < ps; ++m ) {
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newpoints.push( points[ i + m ] );
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}
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}
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i += ps;
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} else if ( otherpoints[ j ] == null ) {
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// oops, got a gap
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for ( m = 0; m < ps; ++m ) {
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newpoints.push( null );
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}
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fromgap = true;
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j += otherps;
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} else {
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// cases where we actually got two points
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px = points[ i ];
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py = points[ i + 1 ];
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qx = otherpoints[ j ];
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qy = otherpoints[ j + 1 ];
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bottom = 0;
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if ( px === qx ) {
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for ( m = 0; m < ps; ++m ) {
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newpoints.push( points[ i + m ] );
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}
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//newpoints[ l + 1 ] += qy;
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bottom = qy;
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i += ps;
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j += otherps;
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} else if ( px > qx ) {
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// we got past point below, might need to
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// insert interpolated extra point
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if ( withlines && i > 0 && points[ i - ps ] != null ) {
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intery = py + ( points[ i - ps + 1 ] - py ) * ( qx - px ) / ( points[ i - ps ] - px );
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newpoints.push( qx );
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newpoints.push( intery );
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for ( m = 2; m < ps; ++m ) {
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newpoints.push( points[ i + m ] );
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}
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bottom = qy;
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}
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j += otherps;
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} else { // px < qx
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// if we come from a gap, we just skip this point
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if ( fromgap && withlines ) {
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i += ps;
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continue;
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}
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for ( m = 0; m < ps; ++m ) {
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newpoints.push( points[ i + m ] );
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}
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// we might be able to interpolate a point below,
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// this can give us a better y
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if ( withlines && j > 0 && otherpoints[ j - otherps ] != null ) {
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bottom = qy + ( otherpoints[ j - otherps + 1 ] - qy ) * ( px - qx ) / ( otherpoints[ j - otherps ] - qx );
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}
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//newpoints[l + 1] += bottom;
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i += ps;
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}
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fromgap = false;
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if ( l !== newpoints.length && withbottom ) {
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newpoints[ l + 2 ] = bottom;
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}
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}
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// maintain the line steps invariant
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if ( withsteps && l !== newpoints.length && l > 0 &&
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newpoints[ l ] !== null &&
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newpoints[ l ] !== newpoints[ l - ps ] &&
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newpoints[ l + 1 ] !== newpoints[ l - ps + 1 ] ) {
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for (m = 0; m < ps; ++m) {
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newpoints[ l + ps + m ] = newpoints[ l + m ];
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}
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newpoints[ l + 1 ] = newpoints[ l - ps + 1 ];
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}
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}
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datapoints.points = newpoints;
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}
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plot.hooks.processDatapoints.push( computeFillBottoms );
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}
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$.plot.plugins.push({
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init: init,
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options: options,
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name: "fillbetween",
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version: "1.0"
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});
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})(jQuery);
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