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https://github.com/pierre42100/ComunicWeb
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354 lines
12 KiB
JavaScript
354 lines
12 KiB
JavaScript
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/* Flot plugin for plotting error bars.
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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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Error bars are used to show standard deviation and other statistical
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properties in a plot.
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* Created by Rui Pereira - rui (dot) pereira (at) gmail (dot) com
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This plugin allows you to plot error-bars over points. Set "errorbars" inside
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the points series to the axis name over which there will be error values in
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your data array (*even* if you do not intend to plot them later, by setting
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"show: null" on xerr/yerr).
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The plugin supports these options:
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series: {
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points: {
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errorbars: "x" or "y" or "xy",
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xerr: {
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show: null/false or true,
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asymmetric: null/false or true,
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upperCap: null or "-" or function,
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lowerCap: null or "-" or function,
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color: null or color,
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radius: null or number
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},
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yerr: { same options as xerr }
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}
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}
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Each data point array is expected to be of the type:
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"x" [ x, y, xerr ]
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"y" [ x, y, yerr ]
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"xy" [ x, y, xerr, yerr ]
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Where xerr becomes xerr_lower,xerr_upper for the asymmetric error case, and
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equivalently for yerr. Eg., a datapoint for the "xy" case with symmetric
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error-bars on X and asymmetric on Y would be:
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[ x, y, xerr, yerr_lower, yerr_upper ]
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By default no end caps are drawn. Setting upperCap and/or lowerCap to "-" will
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draw a small cap perpendicular to the error bar. They can also be set to a
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user-defined drawing function, with (ctx, x, y, radius) as parameters, as eg.
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function drawSemiCircle( ctx, x, y, radius ) {
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ctx.beginPath();
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ctx.arc( x, y, radius, 0, Math.PI, false );
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ctx.moveTo( x - radius, y );
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ctx.lineTo( x + radius, y );
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ctx.stroke();
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}
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Color and radius both default to the same ones of the points series if not
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set. The independent radius parameter on xerr/yerr is useful for the case when
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we may want to add error-bars to a line, without showing the interconnecting
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points (with radius: 0), and still showing end caps on the error-bars.
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shadowSize and lineWidth are derived as well from the points series.
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*/
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(function ($) {
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var options = {
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series: {
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points: {
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errorbars: null, //should be 'x', 'y' or 'xy'
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xerr: { err: 'x', show: null, asymmetric: null, upperCap: null, lowerCap: null, color: null, radius: null},
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yerr: { err: 'y', show: null, asymmetric: null, upperCap: null, lowerCap: null, color: null, radius: null}
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}
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}
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};
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function processRawData(plot, series, data, datapoints){
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if (!series.points.errorbars)
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return;
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// x,y values
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var format = [
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{ x: true, number: true, required: true },
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{ y: true, number: true, required: true }
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];
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var errors = series.points.errorbars;
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// error bars - first X then Y
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if (errors == 'x' || errors == 'xy') {
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// lower / upper error
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if (series.points.xerr.asymmetric) {
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format.push({ x: true, number: true, required: true });
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format.push({ x: true, number: true, required: true });
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} else
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format.push({ x: true, number: true, required: true });
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}
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if (errors == 'y' || errors == 'xy') {
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// lower / upper error
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if (series.points.yerr.asymmetric) {
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format.push({ y: true, number: true, required: true });
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format.push({ y: true, number: true, required: true });
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} else
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format.push({ y: true, number: true, required: true });
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}
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datapoints.format = format;
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}
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function parseErrors(series, i){
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var points = series.datapoints.points;
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// read errors from points array
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var exl = null,
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exu = null,
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eyl = null,
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eyu = null;
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var xerr = series.points.xerr,
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yerr = series.points.yerr;
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var eb = series.points.errorbars;
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// error bars - first X
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if (eb == 'x' || eb == 'xy') {
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if (xerr.asymmetric) {
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exl = points[i + 2];
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exu = points[i + 3];
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if (eb == 'xy')
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if (yerr.asymmetric){
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eyl = points[i + 4];
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eyu = points[i + 5];
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} else eyl = points[i + 4];
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} else {
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exl = points[i + 2];
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if (eb == 'xy')
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if (yerr.asymmetric) {
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eyl = points[i + 3];
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eyu = points[i + 4];
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} else eyl = points[i + 3];
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}
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// only Y
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} else if (eb == 'y')
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if (yerr.asymmetric) {
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eyl = points[i + 2];
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eyu = points[i + 3];
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} else eyl = points[i + 2];
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// symmetric errors?
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if (exu == null) exu = exl;
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if (eyu == null) eyu = eyl;
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var errRanges = [exl, exu, eyl, eyu];
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// nullify if not showing
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if (!xerr.show){
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errRanges[0] = null;
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errRanges[1] = null;
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}
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if (!yerr.show){
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errRanges[2] = null;
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errRanges[3] = null;
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}
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return errRanges;
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}
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function drawSeriesErrors(plot, ctx, s){
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var points = s.datapoints.points,
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ps = s.datapoints.pointsize,
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ax = [s.xaxis, s.yaxis],
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radius = s.points.radius,
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err = [s.points.xerr, s.points.yerr];
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//sanity check, in case some inverted axis hack is applied to flot
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var invertX = false;
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if (ax[0].p2c(ax[0].max) < ax[0].p2c(ax[0].min)) {
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invertX = true;
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var tmp = err[0].lowerCap;
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err[0].lowerCap = err[0].upperCap;
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err[0].upperCap = tmp;
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}
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var invertY = false;
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if (ax[1].p2c(ax[1].min) < ax[1].p2c(ax[1].max)) {
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invertY = true;
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var tmp = err[1].lowerCap;
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err[1].lowerCap = err[1].upperCap;
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err[1].upperCap = tmp;
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}
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for (var i = 0; i < s.datapoints.points.length; i += ps) {
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//parse
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var errRanges = parseErrors(s, i);
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//cycle xerr & yerr
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for (var e = 0; e < err.length; e++){
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var minmax = [ax[e].min, ax[e].max];
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//draw this error?
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if (errRanges[e * err.length]){
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//data coordinates
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var x = points[i],
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y = points[i + 1];
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//errorbar ranges
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var upper = [x, y][e] + errRanges[e * err.length + 1],
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lower = [x, y][e] - errRanges[e * err.length];
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//points outside of the canvas
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if (err[e].err == 'x')
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if (y > ax[1].max || y < ax[1].min || upper < ax[0].min || lower > ax[0].max)
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continue;
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if (err[e].err == 'y')
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if (x > ax[0].max || x < ax[0].min || upper < ax[1].min || lower > ax[1].max)
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continue;
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// prevent errorbars getting out of the canvas
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var drawUpper = true,
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drawLower = true;
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if (upper > minmax[1]) {
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drawUpper = false;
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upper = minmax[1];
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}
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if (lower < minmax[0]) {
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drawLower = false;
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lower = minmax[0];
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}
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//sanity check, in case some inverted axis hack is applied to flot
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if ((err[e].err == 'x' && invertX) || (err[e].err == 'y' && invertY)) {
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//swap coordinates
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var tmp = lower;
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lower = upper;
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upper = tmp;
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tmp = drawLower;
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drawLower = drawUpper;
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drawUpper = tmp;
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tmp = minmax[0];
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minmax[0] = minmax[1];
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minmax[1] = tmp;
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}
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// convert to pixels
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x = ax[0].p2c(x),
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y = ax[1].p2c(y),
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upper = ax[e].p2c(upper);
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lower = ax[e].p2c(lower);
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minmax[0] = ax[e].p2c(minmax[0]);
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minmax[1] = ax[e].p2c(minmax[1]);
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//same style as points by default
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var lw = err[e].lineWidth ? err[e].lineWidth : s.points.lineWidth,
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sw = s.points.shadowSize != null ? s.points.shadowSize : s.shadowSize;
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//shadow as for points
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if (lw > 0 && sw > 0) {
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var w = sw / 2;
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ctx.lineWidth = w;
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ctx.strokeStyle = "rgba(0,0,0,0.1)";
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drawError(ctx, err[e], x, y, upper, lower, drawUpper, drawLower, radius, w + w/2, minmax);
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ctx.strokeStyle = "rgba(0,0,0,0.2)";
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drawError(ctx, err[e], x, y, upper, lower, drawUpper, drawLower, radius, w/2, minmax);
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}
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ctx.strokeStyle = err[e].color? err[e].color: s.color;
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ctx.lineWidth = lw;
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//draw it
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drawError(ctx, err[e], x, y, upper, lower, drawUpper, drawLower, radius, 0, minmax);
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}
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}
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}
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}
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function drawError(ctx,err,x,y,upper,lower,drawUpper,drawLower,radius,offset,minmax){
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//shadow offset
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y += offset;
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upper += offset;
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lower += offset;
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// error bar - avoid plotting over circles
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if (err.err == 'x'){
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if (upper > x + radius) drawPath(ctx, [[upper,y],[Math.max(x + radius,minmax[0]),y]]);
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else drawUpper = false;
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if (lower < x - radius) drawPath(ctx, [[Math.min(x - radius,minmax[1]),y],[lower,y]] );
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else drawLower = false;
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}
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else {
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if (upper < y - radius) drawPath(ctx, [[x,upper],[x,Math.min(y - radius,minmax[0])]] );
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else drawUpper = false;
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if (lower > y + radius) drawPath(ctx, [[x,Math.max(y + radius,minmax[1])],[x,lower]] );
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else drawLower = false;
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}
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//internal radius value in errorbar, allows to plot radius 0 points and still keep proper sized caps
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//this is a way to get errorbars on lines without visible connecting dots
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radius = err.radius != null? err.radius: radius;
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// upper cap
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if (drawUpper) {
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if (err.upperCap == '-'){
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if (err.err=='x') drawPath(ctx, [[upper,y - radius],[upper,y + radius]] );
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else drawPath(ctx, [[x - radius,upper],[x + radius,upper]] );
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} else if ($.isFunction(err.upperCap)){
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if (err.err=='x') err.upperCap(ctx, upper, y, radius);
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else err.upperCap(ctx, x, upper, radius);
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}
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}
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// lower cap
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if (drawLower) {
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if (err.lowerCap == '-'){
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if (err.err=='x') drawPath(ctx, [[lower,y - radius],[lower,y + radius]] );
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else drawPath(ctx, [[x - radius,lower],[x + radius,lower]] );
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} else if ($.isFunction(err.lowerCap)){
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if (err.err=='x') err.lowerCap(ctx, lower, y, radius);
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else err.lowerCap(ctx, x, lower, radius);
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}
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}
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}
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function drawPath(ctx, pts){
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ctx.beginPath();
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ctx.moveTo(pts[0][0], pts[0][1]);
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for (var p=1; p < pts.length; p++)
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ctx.lineTo(pts[p][0], pts[p][1]);
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ctx.stroke();
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}
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function draw(plot, ctx){
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var plotOffset = plot.getPlotOffset();
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ctx.save();
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ctx.translate(plotOffset.left, plotOffset.top);
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$.each(plot.getData(), function (i, s) {
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if (s.points.errorbars && (s.points.xerr.show || s.points.yerr.show))
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drawSeriesErrors(plot, ctx, s);
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});
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ctx.restore();
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}
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function init(plot) {
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plot.hooks.processRawData.push(processRawData);
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plot.hooks.draw.push(draw);
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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: 'errorbars',
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version: '1.0'
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});
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})(jQuery);
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