648 lines
17 KiB
JavaScript
648 lines
17 KiB
JavaScript
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/**
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* Theme: Ninja Admin Template
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* Author: NinjaTeam
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* Module/App: Chartist-Chart
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*/
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(function($) {
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"use strict";
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var ChartistChart = {};
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$(document).ready(function(){
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if ($("#area-chartist-chart").length) ChartistChart.area();
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if ($("#bar-chartist-chart").length) ChartistChart.bar();
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if ($("#bi-polar-area-chartist-chart").length) ChartistChart.biPolarArea();
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if ($("#bi-polar-bar-chartist-chart").length) ChartistChart.biPolarBar();
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if ($("#donut-bar-chartist-chart").length) ChartistChart.donut();
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if ($("#donut-animation-bar-chartist-chart").length) ChartistChart.donutAnimation();
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if ($("#gauge-bar-chartist-chart").length) ChartistChart.gauge();
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if ($("#horizontal-bar-chartist-chart").length) ChartistChart.horizontalBar();
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if ($("#line-chartist-chart").length) ChartistChart.line();
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if ($("#pie-bar-chartist-chart").length) ChartistChart.pie();
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if ($("#scatter-chartist-chart").length) ChartistChart.scatter();
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if ($("#smil-animation-chartist-chart").length) ChartistChart.smilAnimation();
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if ($("#smil-animation-index-chartist-chart").length) ChartistChart.smilAnimationIndex();
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if ($("#stacked-bar-chartist-chart").length) ChartistChart.stackedBar()
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if ($("#svg-animation-chartist-chart").length) ChartistChart.svgAnimation();
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return false;
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});
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ChartistChart = {
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area: function(){
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new Chartist.Line('#area-chartist-chart', {
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labels: [1, 2, 3, 4, 5, 6, 7, 8],
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series: [
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[5, 9, 7, 8, 5, 3, 5, 4]
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]
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}, {
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low: 0,
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showArea: true,
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fullWidth: true,
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axisY: {
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offset: 10
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}
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});
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return false;
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},
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bar: function(){
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new Chartist.Bar('#bar-chartist-chart', {
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labels: ['Quarter 1', 'Quarter 2', 'Quarter 3', 'Quarter 4'],
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series: [
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[5, 4, 3, 7],
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[3, 2, 9, 5],
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[1, 5, 8, 4],
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[2, 3, 4, 6],
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[4, 1, 2, 1]
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]
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}, {
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// Default mobile configuration
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stackBars: true,
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axisX: {
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labelInterpolationFnc: function(value) {
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return value.split(/\s+/).map(function(word) {
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return word[0];
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}).join('');
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}
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},
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axisY: {
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offset: 10
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}
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}, [
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// Options override for media > 400px
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['screen and (min-width: 400px)', {
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reverseData: true,
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horizontalBars: true,
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axisX: {
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labelInterpolationFnc: Chartist.noop
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},
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axisY: {
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offset: 20
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}
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}],
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// Options override for media > 800px
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['screen and (min-width: 800px)', {
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stackBars: false,
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seriesBarDistance: 10
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}],
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// Options override for media > 1000px
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['screen and (min-width: 1000px)', {
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reverseData: false,
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horizontalBars: false,
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seriesBarDistance: 15
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}]
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]);
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return false;
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},
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biPolarArea : function(){
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new Chartist.Line('#bi-polar-area-chartist-chart', {
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labels: [1, 2, 3, 4, 5, 6, 7, 8],
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series: [
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[1, 2, 3, 1, -2, 0, 1, 0],
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[-2, -1, -2, -1, -2.5, -1, -2, -1],
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[0, 0, 0, 1, 2, 2.5, 2, 1],
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[2.5, 2, 1, 0.5, 1, 0.5, -1, -2.5]
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]
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}, {
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high: 3,
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low: -3,
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showArea: true,
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showLine: false,
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showPoint: false,
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fullWidth: true,
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axisY: {
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offset: 20
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},
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axisX: {
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showLabel: false,
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showGrid: false
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}
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});
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return false;
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},
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biPolarBar : function(){
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var data = {
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labels: ['W1', 'W2', 'W3', 'W4', 'W5', 'W6', 'W7', 'W8', 'W9', 'W10'],
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series: [
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[1, 2, 4, 8, 6, -2, -1, -4, -6, -2]
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]
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};
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var options = {
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high: 10,
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low: -10,
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axisX: {
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labelInterpolationFnc: function(value, index) {
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return index % 2 === 0 ? value : null;
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}
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},
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fullWidth: true,
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axisY: {
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offset: 10
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},
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};
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new Chartist.Bar('#bi-polar-bar-chartist-chart', data, options);
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return false;
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},
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donut: function(){
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var data = {
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series: [20, 10, 30, 40]
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};
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var sum = function(a, b) { return a + b };
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new Chartist.Pie('#donut-bar-chartist-chart', data, {
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labelInterpolationFnc: function(value) {
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return Math.round(value / data.series.reduce(sum) * 100) + '%';
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},
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donut: true,
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donutWidth: 80,
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startAngle: 270,
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});
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return false;
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},
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donutAnimation: function(){
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var chart = new Chartist.Pie('#donut-animation-bar-chartist-chart', {
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series: [10, 20, 50, 20, 5, 50, 15],
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labels: [1, 2, 3, 4, 5, 6, 7]
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}, {
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donut: true,
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showLabel: false
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});
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chart.on('draw', function(data) {
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if(data.type === 'slice') {
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// Get the total path length in order to use for dash array animation
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var pathLength = data.element._node.getTotalLength();
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// Set a dasharray that matches the path length as prerequisite to animate dashoffset
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data.element.attr({
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'stroke-dasharray': pathLength + 'px ' + pathLength + 'px'
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});
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// Create animation definition while also assigning an ID to the animation for later sync usage
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var animationDefinition = {
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'stroke-dashoffset': {
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id: 'anim' + data.index,
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dur: 1000,
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from: -pathLength + 'px',
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to: '0px',
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easing: Chartist.Svg.Easing.easeOutQuint,
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// We need to use `fill: 'freeze'` otherwise our animation will fall back to initial (not visible)
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fill: 'freeze'
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}
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};
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// If this was not the first slice, we need to time the animation so that it uses the end sync event of the previous animation
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if(data.index !== 0) {
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animationDefinition['stroke-dashoffset'].begin = 'anim' + (data.index - 1) + '.end';
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}
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// We need to set an initial value before the animation starts as we are not in guided mode which would do that for us
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data.element.attr({
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'stroke-dashoffset': -pathLength + 'px'
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});
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// We can't use guided mode as the animations need to rely on setting begin manually
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// See http://gionkunz.github.io/chartist-js/api-documentation.html#chartistsvg-function-animate
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data.element.animate(animationDefinition, false);
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}
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});
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// For the sake of the example we update the chart every time it's created with a delay of 8 seconds
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chart.on('created', function() {
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if(window.__anim21278907124) {
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clearTimeout(window.__anim21278907124);
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window.__anim21278907124 = null;
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}
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window.__anim21278907124 = setTimeout(chart.update.bind(chart), 10000);
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});
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return false;
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},
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gauge: function(){
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new Chartist.Pie('#gauge-bar-chartist-chart', {
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series: [20, 10, 30, 40]
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}, {
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donut: true,
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donutWidth: 60,
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startAngle: 270,
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total: 200,
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showLabel: false
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});
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return false;
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},
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horizontalBar: function(){
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new Chartist.Bar('#horizontal-bar-chartist-chart', {
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labels: ['Monday', 'Tuesday', 'Wednesday', 'Thursday', 'Friday', 'Saturday', 'Sunday'],
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series: [
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[5, 4, 3, 7, 5, 10, 3],
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[3, 2, 9, 5, 4, 6, 4]
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]
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}, {
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seriesBarDistance: 10,
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reverseData: true,
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horizontalBars: true,
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axisY: {
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offset: 70
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},
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});
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return false;
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},
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line: function(){
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new Chartist.Line('#line-chartist-chart', {
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labels: ['1', '2', '3', '4', '5'],
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series: [
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[12, 9, 7, 8, 5],
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[2, 1, 3.5, 7, 3],
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[1, 3, 4, 5, 6]
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]
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}, {
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fullWidth: true,
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axisY: {
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offset: 10
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},
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chartPadding: {
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right: 30
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}
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}
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);
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return false;
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},
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pie: function(){
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var data = {
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series: [5, 3, 4]
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};
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var sum = function(a, b) { return a + b };
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new Chartist.Pie('#pie-bar-chartist-chart', data, {
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labelInterpolationFnc: function(value) {
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return Math.round(value / data.series.reduce(sum) * 100) + '%';
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}
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});
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return false;
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},
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scatter: function(){
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var times = function(n) {
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return Array.apply(null, new Array(n));
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};
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var data = times(52).map(Math.random).reduce(function(data, rnd, index) {
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data.labels.push(index + 1);
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data.series.forEach(function(series) {
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series.push(Math.random() * 100)
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});
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return data;
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}, {
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labels: [],
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series: times(4).map(function() { return new Array() })
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});
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var options = {
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showLine: false,
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axisX: {
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labelInterpolationFnc: function(value, index) {
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return index % 13 === 0 ? 'W' + value : null;
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}
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},
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fullWidth: true,
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axisY: {
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offset: 20
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}
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};
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var responsiveOptions = [
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['screen and (min-width: 640px)', {
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axisX: {
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labelInterpolationFnc: function(value, index) {
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return index % 4 === 0 ? 'W' + value : null;
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}
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}
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}]
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];
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new Chartist.Line('#scatter-chartist-chart', data, options, responsiveOptions);
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return false;
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},
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smilAnimation: function(){
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var chart = new Chartist.Line('#smil-animation-chartist-chart', {
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labels: ['1', '2', '3', '4', '5', '6', '7', '8', '9', '10', '11', '12'],
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series: [
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[12, 9, 7, 8, 5, 4, 6, 2, 3, 3, 4, 6],
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[4, 5, 3, 7, 3, 5, 5, 3, 4, 4, 5, 5],
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[5, 3, 4, 5, 6, 3, 3, 4, 5, 6, 3, 4],
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[3, 4, 5, 6, 7, 6, 4, 5, 6, 7, 6, 3]
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]
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}, {
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low: 0
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});
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// Let's put a sequence number aside so we can use it in the event callbacks
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var seq = 0,
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delays = 80,
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durations = 500;
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// Once the chart is fully created we reset the sequence
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chart.on('created', function() {
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seq = 0;
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});
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// On each drawn element by Chartist we use the Chartist.Svg API to trigger SMIL animations
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chart.on('draw', function(data) {
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seq++;
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if(data.type === 'line') {
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// If the drawn element is a line we do a simple opacity fade in. This could also be achieved using CSS3 animations.
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data.element.animate({
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opacity: {
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// The delay when we like to start the animation
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begin: seq * delays + 1000,
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// Duration of the animation
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dur: durations,
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// The value where the animation should start
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from: 0,
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// The value where it should end
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to: 1
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}
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});
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} else if(data.type === 'label' && data.axis === 'x') {
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data.element.animate({
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y: {
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begin: seq * delays,
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dur: durations,
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from: data.y + 100,
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to: data.y,
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// We can specify an easing function from Chartist.Svg.Easing
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easing: 'easeOutQuart'
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}
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});
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} else if(data.type === 'label' && data.axis === 'y') {
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data.element.animate({
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x: {
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begin: seq * delays,
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dur: durations,
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from: data.x - 100,
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to: data.x,
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easing: 'easeOutQuart'
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}
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});
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} else if(data.type === 'point') {
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data.element.animate({
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x1: {
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begin: seq * delays,
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dur: durations,
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from: data.x - 10,
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to: data.x,
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easing: 'easeOutQuart'
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},
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x2: {
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begin: seq * delays,
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dur: durations,
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from: data.x - 10,
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to: data.x,
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easing: 'easeOutQuart'
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},
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opacity: {
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begin: seq * delays,
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dur: durations,
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from: 0,
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to: 1,
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easing: 'easeOutQuart'
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}
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});
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} else if(data.type === 'grid') {
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// Using data.axis we get x or y which we can use to construct our animation definition objects
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var pos1Animation = {
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begin: seq * delays,
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dur: durations,
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from: data[data.axis.units.pos + '1'] - 30,
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to: data[data.axis.units.pos + '1'],
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easing: 'easeOutQuart'
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};
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var pos2Animation = {
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begin: seq * delays,
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dur: durations,
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from: data[data.axis.units.pos + '2'] - 100,
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to: data[data.axis.units.pos + '2'],
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easing: 'easeOutQuart'
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};
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var animations = {};
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animations[data.axis.units.pos + '1'] = pos1Animation;
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animations[data.axis.units.pos + '2'] = pos2Animation;
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animations['opacity'] = {
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begin: seq * delays,
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dur: durations,
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from: 0,
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to: 1,
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easing: 'easeOutQuart'
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};
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data.element.animate(animations);
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}
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});
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// For the sake of the example we update the chart every time it's created with a delay of 10 seconds
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||
|
chart.on('created', function() {
|
||
|
if(window.__exampleAnimateTimeout) {
|
||
|
clearTimeout(window.__exampleAnimateTimeout);
|
||
|
window.__exampleAnimateTimeout = null;
|
||
|
}
|
||
|
window.__exampleAnimateTimeout = setTimeout(chart.update.bind(chart), 12000);
|
||
|
});
|
||
|
return false;
|
||
|
},
|
||
|
smilAnimationIndex: function(){
|
||
|
var chart = new Chartist.Line('#smil-animation-index-chartist-chart', {
|
||
|
labels: ['2008', '2009', '2010', '2011', '2012', '2013', '2014', '2015', '2016'],
|
||
|
series: [
|
||
|
[8, 5, 4, 6, 2, 3, 3, 4, 6],
|
||
|
[7, 3, 5, 5, 3, 4, 4, 5, 5],
|
||
|
]
|
||
|
}, {
|
||
|
low: 0,
|
||
|
fullWidth: true,
|
||
|
chartPadding: {
|
||
|
right: 30
|
||
|
}
|
||
|
});
|
||
|
|
||
|
// Let's put a sequence number aside so we can use it in the event callbacks
|
||
|
var seq = 0,
|
||
|
delays = 80,
|
||
|
durations = 500;
|
||
|
|
||
|
// Once the chart is fully created we reset the sequence
|
||
|
chart.on('created', function() {
|
||
|
seq = 0;
|
||
|
});
|
||
|
|
||
|
// On each drawn element by Chartist we use the Chartist.Svg API to trigger SMIL animations
|
||
|
chart.on('draw', function(data) {
|
||
|
seq++;
|
||
|
|
||
|
if(data.type === 'line') {
|
||
|
// If the drawn element is a line we do a simple opacity fade in. This could also be achieved using CSS3 animations.
|
||
|
data.element.animate({
|
||
|
opacity: {
|
||
|
// The delay when we like to start the animation
|
||
|
begin: seq * delays + 1000,
|
||
|
// Duration of the animation
|
||
|
dur: durations,
|
||
|
// The value where the animation should start
|
||
|
from: 0,
|
||
|
// The value where it should end
|
||
|
to: 1
|
||
|
}
|
||
|
});
|
||
|
} else if(data.type === 'label' && data.axis === 'x') {
|
||
|
data.element.animate({
|
||
|
y: {
|
||
|
begin: seq * delays,
|
||
|
dur: durations,
|
||
|
from: data.y + 100,
|
||
|
to: data.y,
|
||
|
// We can specify an easing function from Chartist.Svg.Easing
|
||
|
easing: 'easeOutQuart'
|
||
|
}
|
||
|
});
|
||
|
} else if(data.type === 'label' && data.axis === 'y') {
|
||
|
data.element.animate({
|
||
|
x: {
|
||
|
begin: seq * delays,
|
||
|
dur: durations,
|
||
|
from: data.x - 100,
|
||
|
to: data.x,
|
||
|
easing: 'easeOutQuart'
|
||
|
}
|
||
|
});
|
||
|
} else if(data.type === 'point') {
|
||
|
data.element.animate({
|
||
|
x1: {
|
||
|
begin: seq * delays,
|
||
|
dur: durations,
|
||
|
from: data.x - 10,
|
||
|
to: data.x,
|
||
|
easing: 'easeOutQuart'
|
||
|
},
|
||
|
x2: {
|
||
|
begin: seq * delays,
|
||
|
dur: durations,
|
||
|
from: data.x - 10,
|
||
|
to: data.x,
|
||
|
easing: 'easeOutQuart'
|
||
|
},
|
||
|
opacity: {
|
||
|
begin: seq * delays,
|
||
|
dur: durations,
|
||
|
from: 0,
|
||
|
to: 1,
|
||
|
easing: 'easeOutQuart'
|
||
|
}
|
||
|
});
|
||
|
} else if(data.type === 'grid') {
|
||
|
// Using data.axis we get x or y which we can use to construct our animation definition objects
|
||
|
var pos1Animation = {
|
||
|
begin: seq * delays,
|
||
|
dur: durations,
|
||
|
from: data[data.axis.units.pos + '1'] - 30,
|
||
|
to: data[data.axis.units.pos + '1'],
|
||
|
easing: 'easeOutQuart'
|
||
|
};
|
||
|
|
||
|
var pos2Animation = {
|
||
|
begin: seq * delays,
|
||
|
dur: durations,
|
||
|
from: data[data.axis.units.pos + '2'] - 100,
|
||
|
to: data[data.axis.units.pos + '2'],
|
||
|
easing: 'easeOutQuart'
|
||
|
};
|
||
|
|
||
|
var animations = {};
|
||
|
animations[data.axis.units.pos + '1'] = pos1Animation;
|
||
|
animations[data.axis.units.pos + '2'] = pos2Animation;
|
||
|
animations['opacity'] = {
|
||
|
begin: seq * delays,
|
||
|
dur: durations,
|
||
|
from: 0,
|
||
|
to: 1,
|
||
|
easing: 'easeOutQuart'
|
||
|
};
|
||
|
|
||
|
data.element.animate(animations);
|
||
|
}
|
||
|
});
|
||
|
|
||
|
// For the sake of the example we update the chart every time it's created with a delay of 10 seconds
|
||
|
chart.on('created', function() {
|
||
|
if(window.__exampleAnimateTimeout) {
|
||
|
clearTimeout(window.__exampleAnimateTimeout);
|
||
|
window.__exampleAnimateTimeout = null;
|
||
|
}
|
||
|
window.__exampleAnimateTimeout = setTimeout(chart.update.bind(chart), 12000);
|
||
|
});
|
||
|
return false;
|
||
|
},
|
||
|
stackedBar: function(){
|
||
|
new Chartist.Bar('#stacked-bar-chartist-chart', {
|
||
|
labels: ['Q1', 'Q2', 'Q3', 'Q4'],
|
||
|
series: [
|
||
|
[800000, 1200000, 1400000, 1300000],
|
||
|
[200000, 400000, 500000, 300000],
|
||
|
[100000, 200000, 400000, 600000]
|
||
|
]
|
||
|
}, {
|
||
|
stackBars: true,
|
||
|
axisY: {
|
||
|
labelInterpolationFnc: function(value) {
|
||
|
return (value / 1000) + 'k';
|
||
|
}
|
||
|
}
|
||
|
}).on('draw', function(data) {
|
||
|
if(data.type === 'bar') {
|
||
|
data.element.attr({
|
||
|
style: 'stroke-width: 30px'
|
||
|
});
|
||
|
}
|
||
|
});
|
||
|
return false;
|
||
|
},
|
||
|
svgAnimation: function(){
|
||
|
var chart = new Chartist.Line('#svg-animation-chartist-chart', {
|
||
|
labels: ['Mon', 'Tue', 'Wed', 'Thu', 'Fri', 'Sat'],
|
||
|
series: [
|
||
|
[1, 5, 2, 5, 4, 3],
|
||
|
[2, 3, 4, 8, 1, 2],
|
||
|
[5, 4, 3, 2, 1, 0.5]
|
||
|
]
|
||
|
}, {
|
||
|
low: 0,
|
||
|
showArea: true,
|
||
|
showPoint: false,
|
||
|
fullWidth: true,
|
||
|
axisY: {
|
||
|
offset: 10
|
||
|
}
|
||
|
});
|
||
|
|
||
|
chart.on('draw', function(data) {
|
||
|
if(data.type === 'line' || data.type === 'area') {
|
||
|
data.element.animate({
|
||
|
d: {
|
||
|
begin: 2000 * data.index,
|
||
|
dur: 2000,
|
||
|
from: data.path.clone().scale(1, 0).translate(0, data.chartRect.height()).stringify(),
|
||
|
to: data.path.clone().stringify(),
|
||
|
easing: Chartist.Svg.Easing.easeOutQuint
|
||
|
}
|
||
|
});
|
||
|
}
|
||
|
});
|
||
|
return false;
|
||
|
}
|
||
|
}
|
||
|
})(jQuery);
|