'use strict'; module.exports = function(Chart) { var helpers = Chart.helpers; var defaultConfig = { position: 'left', ticks: { callback: function(tickValue, index, ticks) { // If we have lots of ticks, don't use the ones var delta = ticks.length > 3 ? ticks[2] - ticks[1] : ticks[1] - ticks[0]; // If we have a number like 2.5 as the delta, figure out how many decimal places we need if (Math.abs(delta) > 1) { if (tickValue !== Math.floor(tickValue)) { // not an integer delta = tickValue - Math.floor(tickValue); } } var logDelta = helpers.log10(Math.abs(delta)); var tickString = ''; if (tickValue !== 0) { var numDecimal = -1 * Math.floor(logDelta); numDecimal = Math.max(Math.min(numDecimal, 20), 0); // toFixed has a max of 20 decimal places tickString = tickValue.toFixed(numDecimal); } else { tickString = '0'; // never show decimal places for 0 } return tickString; } } }; var LinearScale = Chart.LinearScaleBase.extend({ determineDataLimits: function() { var me = this; var opts = me.options; var chart = me.chart; var data = chart.data; var datasets = data.datasets; var isHorizontal = me.isHorizontal(); function IDMatches(meta) { return isHorizontal ? meta.xAxisID === me.id : meta.yAxisID === me.id; } // First Calculate the range me.min = null; me.max = null; if (opts.stacked) { var valuesPerType = {}; var hasPositiveValues = false; var hasNegativeValues = false; helpers.each(datasets, function(dataset, datasetIndex) { var meta = chart.getDatasetMeta(datasetIndex); if (valuesPerType[meta.type] === undefined) { valuesPerType[meta.type] = { positiveValues: [], negativeValues: [] }; } // Store these per type var positiveValues = valuesPerType[meta.type].positiveValues; var negativeValues = valuesPerType[meta.type].negativeValues; if (chart.isDatasetVisible(datasetIndex) && IDMatches(meta)) { helpers.each(dataset.data, function(rawValue, index) { var value = +me.getRightValue(rawValue); if (isNaN(value) || meta.data[index].hidden) { return; } positiveValues[index] = positiveValues[index] || 0; negativeValues[index] = negativeValues[index] || 0; if (opts.relativePoints) { positiveValues[index] = 100; } else { if (value < 0) { hasNegativeValues = true; negativeValues[index] += value; } else { hasPositiveValues = true; positiveValues[index] += value; } } }); } }); helpers.each(valuesPerType, function(valuesForType) { var values = valuesForType.positiveValues.concat(valuesForType.negativeValues); var minVal = helpers.min(values); var maxVal = helpers.max(values); me.min = me.min === null ? minVal : Math.min(me.min, minVal); me.max = me.max === null ? maxVal : Math.max(me.max, maxVal); }); } else { helpers.each(datasets, function(dataset, datasetIndex) { var meta = chart.getDatasetMeta(datasetIndex); if (chart.isDatasetVisible(datasetIndex) && IDMatches(meta)) { helpers.each(dataset.data, function(rawValue, index) { var value = +me.getRightValue(rawValue); if (isNaN(value) || meta.data[index].hidden) { return; } if (me.min === null) { me.min = value; } else if (value < me.min) { me.min = value; } if (me.max === null) { me.max = value; } else if (value > me.max) { me.max = value; } }); } }); } // Common base implementation to handle ticks.min, ticks.max, ticks.beginAtZero this.handleTickRangeOptions(); }, getTickLimit: function() { var maxTicks; var me = this; var tickOpts = me.options.ticks; if (me.isHorizontal()) { maxTicks = Math.min(tickOpts.maxTicksLimit ? tickOpts.maxTicksLimit : 11, Math.ceil(me.width / 50)); } else { // The factor of 2 used to scale the font size has been experimentally determined. var tickFontSize = helpers.getValueOrDefault(tickOpts.fontSize, Chart.defaults.global.defaultFontSize); maxTicks = Math.min(tickOpts.maxTicksLimit ? tickOpts.maxTicksLimit : 11, Math.ceil(me.height / (2 * tickFontSize))); } return maxTicks; }, // Called after the ticks are built. We need handleDirectionalChanges: function() { if (!this.isHorizontal()) { // We are in a vertical orientation. The top value is the highest. So reverse the array this.ticks.reverse(); } }, getLabelForIndex: function(index, datasetIndex) { return +this.getRightValue(this.chart.data.datasets[datasetIndex].data[index]); }, // Utils getPixelForValue: function(value) { // This must be called after fit has been run so that // this.left, this.top, this.right, and this.bottom have been defined var me = this; var paddingLeft = me.paddingLeft; var paddingBottom = me.paddingBottom; var start = me.start; var rightValue = +me.getRightValue(value); var pixel; var innerDimension; var range = me.end - start; if (me.isHorizontal()) { innerDimension = me.width - (paddingLeft + me.paddingRight); pixel = me.left + (innerDimension / range * (rightValue - start)); return Math.round(pixel + paddingLeft); } else { innerDimension = me.height - (me.paddingTop + paddingBottom); pixel = (me.bottom - paddingBottom) - (innerDimension / range * (rightValue - start)); return Math.round(pixel); } }, getValueForPixel: function(pixel) { var me = this; var isHorizontal = me.isHorizontal(); var paddingLeft = me.paddingLeft; var paddingBottom = me.paddingBottom; var innerDimension = isHorizontal ? me.width - (paddingLeft + me.paddingRight) : me.height - (me.paddingTop + paddingBottom); var offset = (isHorizontal ? pixel - me.left - paddingLeft : me.bottom - paddingBottom - pixel) / innerDimension; return me.start + ((me.end - me.start) * offset); }, getPixelForTick: function(index) { return this.getPixelForValue(this.ticksAsNumbers[index]); } }); Chart.scaleService.registerScaleType('linear', LinearScale, defaultConfig); };