RGraph.drawing.yaxis.js
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// version: 2014-08-16
/**
* o--------------------------------------------------------------------------------o
* | This file is part of the RGraph package - you can learn more at: |
* | |
* | http://www.rgraph.net |
* | |
* | This package is licensed under the Creative Commons BY-NC license. That means |
* | that for non-commercial purposes it's free to use and for business use there's |
* | a 99 GBP per-company fee to pay. You can read the full license here: |
* | |
* | http://www.rgraph.net/license |
* o--------------------------------------------------------------------------------o
*/
/**
* Having this here means that the RGraph libraries can be included in any order, instead of you having
* to include the common core library first.
*/
// Define the RGraph global variable
RGraph = window.RGraph || {isRGraph: true};
RGraph.Drawing = RGraph.Drawing || {};
/**
* The constructor. This function sets up the object. It takes the ID (the HTML attribute) of the canvas as the
* first argument and the X coordinate of the axis as the second
*
* @param string id The canvas tag ID
* @param number x The X coordinate of the Y axis
*/
RGraph.Drawing.YAxis = function (conf)
{
/**
* Allow for object config style
*/
if ( typeof conf === 'object'
&& typeof conf.x === 'number'
&& typeof conf.id === 'string') {
var id = conf.id
var x = conf.x;
var parseConfObjectForOptions = true; // Set this so the config is parsed (at the end of the constructor)
} else {
var id = conf;
var x = arguments[1];
}
this.id = id;
this.canvas = document.getElementById(this.id);
this.context = this.canvas.getContext("2d");
this.canvas.__object__ = this;
this.x = x;
this.coords = [];
this.coordsText = [];
this.original_colors = [];
this.maxLabelLength = 0;
this.firstDraw = true; // After the first draw this will be false
/**
* This defines the type of this shape
*/
this.type = 'drawing.yaxis';
/**
* This facilitates easy object identification, and should always be true
*/
this.isRGraph = true;
/**
* This adds a uid to the object that you can use for identification purposes
*/
this.uid = RGraph.CreateUID();
/**
* This adds a UID to the canvas for identification purposes
*/
this.canvas.uid = this.canvas.uid ? this.canvas.uid : RGraph.CreateUID();
/**
* Some example background properties
*/
this.properties =
{
'chart.gutter.top': 25,
'chart.gutter.bottom': 25,
'chart.min': 0,
'chart.max': null,
'chart.colors': ['black'],
'chart.title': '',
'chart.title.color': null,
'chart.text.color': null,
'chart.numticks': 5,
'chart.numlabels': 5,
'chart.labels.specific': null,
'chart.text.font': 'Arial',
'chart.text.size': 10,
'chart.align': 'left',
'hart.scale.formatter': null,
'chart.scale.point': '.',
'chart.scale.decimals': 0,
'chart.scale.invert': false,
'chart.scale.zerostart': true,
'chart.scale.visible': true,
'chart.units.pre': '',
'chart.units.post': '',
'chart.linewidth': 1,
'chart.noendtick.top': false,
'chart.noendtick.bottom': false,
'chart.noyaxis': false,
'chart.tooltips': null,
'chart.tooltips.effect': 'fade',
'chart.tooltips.css.class':'RGraph_tooltip',
'chart.tooltips.event': 'onclick',
'chart.xaxispos': 'bottom',
'chart.events.click': null,
'chart.events.mousemove': null
}
/**
* A simple check that the browser has canvas support
*/
if (!this.canvas) {
alert('[DRAWING.YAXIS] No canvas support');
return;
}
/**
* Create the dollar object so that functions can be added to them
*/
this.$0 = {};
/**
* Translate half a pixel for antialiasing purposes - but only if it hasn't beeen
* done already
*
* ** Could use setTransform() here instead ?
*/
if (!this.canvas.__rgraph_aa_translated__) {
this.context.translate(0.5,0.5);
this.canvas.__rgraph_aa_translated__ = true;
}
// Short variable names
var RG = RGraph;
var ca = this.canvas;
var co = this.context;
var prop = this.properties;
var jq = jQuery;
var pa = RG.Path;
var win = window;
var doc = document;
var ma = Math;
/**
* "Decorate" the object with the generic effects if the effects library has been included
*/
if (RG.Effects && typeof RG.Effects.decorate === 'function') {
RG.Effects.decorate(this);
}
/**
* A setter method for setting graph properties. It can be used like this: obj.Set('chart.strokestyle', '#666');
*
* @param name string The name of the property to set
* @param value mixed The value of the property
*/
this.set =
this.Set = function (name)
{
var value = typeof arguments[1] === 'undefined' ? null : arguments[1];
/**
* the number of arguments is only one and it's an
* object - parse it for configuration data and return.
*/
if (arguments.length === 1 && typeof name === 'object') {
RG.parseObjectStyleConfig(this, name);
return this;
}
name = name.toLowerCase();
/**
* This should be done first - prepend the property name with "chart." if necessary
*/
if (name.substr(0,6) != 'chart.') {
name = 'chart.' + name;
}
prop[name] = value;
return this;
};
/**
* A getter method for retrieving graph properties. It can be used like this: obj.Get('chart.strokestyle');
*
* @param name string The name of the property to get
*/
this.get =
this.Get = function (name)
{
/**
* This should be done first - prepend the property name with "chart." if necessary
*/
if (name.substr(0,6) != 'chart.') {
name = 'chart.' + name;
}
return prop[name.toLowerCase()];
};
/**
* Draws the axes
*/
this.draw =
this.Draw = function ()
{
/**
* Fire the onbeforedraw event
*/
RG.FireCustomEvent(this, 'onbeforedraw');
/**
* Some defaults
*/
this.gutterTop = prop['chart.gutter.top'];
this.gutterBottom = prop['chart.gutter.bottom'];
/**
* Stop this growing uncntrollably
*/
this.coordsText = [];
if (!prop['chart.text.color']) prop['chart.text.color'] = prop['chart.colors'][0];
if (!prop['chart.title.color']) prop['chart.title.color'] = prop['chart.colors'][0];
/**
* Parse the colors. This allows for simple gradient syntax
*/
if (!this.colorsParsed) {
this.parseColors();
// Don't want to do this again
this.colorsParsed = true;
}
// DRAW Y AXIS HERE
this.DrawYAxis();
/**
* This installs the event listeners
*/
RG.InstallEventListeners(this);
/**
* Fire the onfirstdraw event
*/
if (this.firstDraw) {
RG.fireCustomEvent(this, 'onfirstdraw');
this.firstDraw = false;
this.firstDrawFunc();
}
/**
* Fire the ondraw event
*/
RG.FireCustomEvent(this, 'ondraw');
return this;
};
/**
* The getObjectByXY() worker method
*/
this.getObjectByXY = function (e)
{
if (this.getShape(e)) {
return this;
}
};
/**
* Not used by the class during creating the axis, but is used by event handlers
* to get the coordinates (if any) of the selected shape
*
* @param object e The event object
*/
this.getShape = function (e)
{
var mouseXY = RG.getMouseXY(e);
var mouseX = mouseXY[0];
var mouseY = mouseXY[1];
if ( mouseX >= this.x - (prop['chart.align'] == 'right' ? 0 : this.getWidth())
&& mouseX <= this.x + (prop['chart.align'] == 'right' ? this.getWidth() : 0)
&& mouseY >= this.gutterTop
&& mouseY <= (ca.height - this.gutterBottom)
) {
var x = this.x;
var y = this.gutterTop;
var w = 15;;
var h = ca.height - this.gutterTop - this.gutterBottom;
return {
0: this, 1: x, 2: y, 3: w, 4: h, 5: 0,
'object': this, 'x': x, 'y': y, 'width': w, 'height': h, 'index': 0, 'tooltip': prop['chart.tooltips'] ? prop['chart.tooltips'][0] : null
};
}
return null;
};
/**
* This function positions a tooltip when it is displayed
*
* @param obj object The chart object
* @param int x The X coordinate specified for the tooltip
* @param int y The Y coordinate specified for the tooltip
* @param objec tooltip The tooltips DIV element
*/
this.positionTooltip = function (obj, x, y, tooltip, idx)
{
// If there's multiple charts on the canvas they leave unknown font settings
co.font = prop['chart.text.size'] + ' ' + prop['chart.text.font'];
var coordW = co.measureText(prop['chart.max'].toFixed(prop['chart.scale.decimals'])).width;
var coordX = obj.x - coordW;
var coordY = obj.gutterTop;
var coordH = ca.height - obj.gutterTop - obj.gutterBottom;
var canvasXY = RG.getCanvasXY(ca);
var width = tooltip.offsetWidth;
var height = tooltip.offsetHeight;
// Set the top position
tooltip.style.left = 0;
tooltip.style.top = canvasXY[1] + ((ca.height - this.gutterTop - this.gutterBottom) / 2) + 'px';
// By default any overflow is hidden
tooltip.style.overflow = '';
// The arrow
var img = new Image();
img.src = 'data:image/png;base64,iVBORw0KGgoAAAANSUhEUgAAABEAAAAFCAYAAACjKgd3AAAARUlEQVQYV2NkQAN79+797+RkhC4M5+/bd47B2dmZEVkBCgcmgcsgbAaA9GA1BCSBbhAuA/AagmwQPgMIGgIzCD0M0AMMAEFVIAa6UQgcAAAAAElFTkSuQmCC';
img.style.position = 'absolute';
img.id = '__rgraph_tooltip_pointer__';
img.style.top = (tooltip.offsetHeight - 2) + 'px';
tooltip.appendChild(img);
// Reposition the tooltip if at the edges:
// LEFT edge
if ((canvasXY[0] + coordX + (coordW / 2) - (width / 2)) < 10) {
tooltip.style.left = prop['chart.align'] == 'right' ? canvasXY[0] + obj.x - (width * 0.1) + (coordW / 2) + 'px'
: (canvasXY[0] + coordX - (width * 0.1)) + (coordW / 2) + 'px';
img.style.left = (width * 0.1) - 8.5 + 'px';
// RIGHT edge
} else if ((canvasXY[0] + coordX + (width / 2)) > document.body.offsetWidth) {
tooltip.style.left = prop['chart.align'] == 'right' ? canvasXY[0] + obj.x - (width * 0.9) + (coordW / 2) + 'px'
: canvasXY[0] + coordX - (width * 0.9) + (coordW / 2) + 'px';
img.style.left = ((width * 0.9) - 8.5) + 'px';
// Default positioning - CENTERED
} else {
tooltip.style.left = prop['chart.align'] == 'right' ? canvasXY[0] + obj.x - (width / 2) + (coordW / 2) + 'px'
: canvasXY[0] + obj.x - (width / 2) - (coordW / 2) + 'px';
img.style.left = ((width * 0.5) - 8.5) + 'px';
}
};
/**
* Each object type has its own Highlight() function which highlights the appropriate shape
*
* @param object shape The shape to highlight
*/
this.highlight =
this.Highlight = function (shape)
{
// When showing tooltips, this method can be used to highlight the X axis
};
/**
* This allows for easy specification of gradients
*/
this.parseColors = function ()
{
// Save the original colors so that they can be restored when the canvas is reset
if (this.original_colors.length === 0) {
this.original_colors['chart.colors'] = RG.array_clone(prop['chart.colors']);
}
/**
* Parse various properties for colors
*/
//prop['chart.title.color'] = this.parseSingleColorForGradient(prop['chart.title.color']);
//prop['chart.text.color'] = this.parseSingleColorForGradient(prop['chart.text.color']);
prop['chart.colors'][0] = this.parseSingleColorForGradient(prop['chart.colors'][0]);
};
/**
* Use this function to reset the object to the post-constructor state. Eg reset colors if
* need be etc
*/
this.reset = function ()
{
};
/**
* This parses a single color value
*/
this.parseSingleColorForGradient = function (color)
{
if (!color) {
return color;
}
if (typeof color === 'string' && color.match(/^gradient\((.*)\)$/i)) {
var parts = RegExp.$1.split(':');
// Create the gradient
var grad = co.createLinearGradient(0,prop['chart.gutter.top'],0,ca.height - this.gutterBottom);
var diff = 1 / (parts.length - 1);
grad.addColorStop(0, RG.trim(parts[0]));
for (var j=1; j<parts.length; ++j) {
grad.addColorStop(j * diff, RG.trim(parts[j]));
}
}
return grad ? grad : color;
};
/**
* The function that draws the Y axis
*/
this.drawYAxis =
this.DrawYAxis = function ()
{
/**
* Allow both axis.xxx and chart.xxx to prevent any confusion that may arise
*/
for (i in prop) {
if (typeof(i) == 'string') {
var key = i.replace(/^chart\./, 'axis.');
prop[key] = prop[i];
}
}
var x = this.x;
var y = this.gutterTop;
var height = ca.height - this.gutterBottom - this.gutterTop;
var min = prop['chart.min'] ? prop['chart.min'] : 0;
var max = prop['chart.max'];
var title = prop['chart.title'] ? prop['chart.title'] : '';
var color = prop['chart.colors'] ? prop['chart.colors'][0] : 'black';
var title_color = prop['chart.title.color'] ? prop['chart.title.color'] : color;
var label_color = prop['chart.text.color'] ? prop['chart.text.color'] : color;
var numticks = typeof(prop['chart.numticks']) == 'number' ? prop['chart.numticks'] : 10;
var labels_specific = prop['chart.labels.specific'];
var numlabels = prop['chart.numlabels'] ? prop['chart.numlabels'] : 5;
var font = prop['chart.text.font'] ? prop['chart.text.font'] : 'Arial';
var size = prop['chart.text.size'] ? prop['chart.text.size'] : 10;
var align = typeof(prop['chart.align']) == 'string'? prop['chart.align'] : 'left';
var formatter = prop['chart.scale.formatter'];
var decimals = prop['chart.scale.decimals'];
var invert = prop['chart.scale.invert'];
var scale_visible = prop['chart.scale.visible'];
var units_pre = prop['chart.units.pre'];
var units_post = prop['chart.units.post'];
var linewidth = prop['chart.linewidth'] ? prop['chart.linewidth'] : 1;
var notopendtick = prop['chart.noendtick.top'];
var nobottomendtick = prop['chart.noendtick.bottom'];
var noyaxis = prop['chart.noyaxis'];
var xaxispos = prop['chart.xaxispos'];
// This fixes missing corner pixels in Chrome
co.lineWidth = linewidth + 0.001;
/**
* Set the color
*/
co.strokeStyle = color;
if (!noyaxis) {
/**
* Draw the main vertical line
*/
pa(co,['b','m',Math.round(x), y,'l',Math.round(x), y + height,'s',color]);
/**
* Draw the axes tickmarks
*/
if (numticks) {
var gap = (xaxispos == 'center' ? height / 2 : height) / numticks;
var halfheight = height / 2;
co.beginPath();
for (var i=(notopendtick ? 1 : 0); i<=(numticks - (nobottomendtick || xaxispos == 'center'? 1 : 0)); ++i) {
pa(co, ['m',align == 'right' ? x + 3 : x - 3, Math.round(y + (gap *i)),'l',x, Math.round(y + (gap *i))]);
}
// Draw the bottom halves ticks if the X axis is in the center
if (xaxispos == 'center') {
for (var i=1; i<=numticks; ++i) {
pa(co, ['m',align == 'right' ? x + 3 : x - 3, Math.round(y + halfheight + (gap *i)),'l',x, Math.round(y + halfheight + (gap *i))]);
}
}
co.stroke();
}
}
/**
* Draw the scale for the axes
*/
co.fillStyle = label_color;
//co.beginPath();
var text_len = 0;
if (scale_visible) {
if (labels_specific && labels_specific.length) {
var text_len = 0;
// First - gp through the labels to find the longest
for (var i=0,len=labels_specific.length; i<len; i+=1) {
text_len = Math.max(text_len, co.measureText(labels_specific[i]).width);
}
for (var i=0,len=labels_specific.length; i<len; ++i) {
var gap = (len-1) > 0 ? (height / (len-1)) : 0;
if (xaxispos == 'center') {
gap /= 2;
}
RG.Text2(this, {'font':font,
'size':size,
'x':x - (align == 'right' ? -5 : 5),
'y':(i * gap) + this.gutterTop,
'text':labels_specific[i],
'valign':'center',
'halign':align == 'right' ? 'left' : 'right',
'tag': 'scale'
});
/**
* Store the max length so that it can be used if necessary to determine
* whether the mouse is over the axis.
*/
this.maxLabelLength = ma.max(this.maxLabelLength, co.measureText(labels_specific[i]).width);
}
if (xaxispos == 'center') {
// It's "-2" so that the center label isn't added twice
for (var i=(labels_specific.length-2); i>=0; --i) {
RG.Text2(this, {'font':font,
'size':size,
'x':x - (align == 'right' ? -5 : 5),
'y':ca.height - this.gutterBottom - (i * gap),
'text':labels_specific[i],
'valign':'center',
'halign':align == 'right' ? 'left' : 'right',
'tag': 'scale'
});
}
}
} else {
for (var i=0; i<=numlabels; ++i) {
var original = ((max - min) * ((numlabels-i) / numlabels)) + min;
if (original == 0 && prop['chart.scale.zerostart'] == false) {
continue;
}
var text = RG.number_format(this, original.toFixed(decimals), units_pre, units_post);
var text = String(typeof(formatter) == 'function' ? formatter(this, original) : text);
// text_len is used below for positioning the title
var text_len = Math.max(text_len, co.measureText(text).width);
this.maxLabelLength = text_len;
if (invert) {
var y = height - ((height / numlabels)*i);
} else {
var y = (height / numlabels)*i;
}
if (prop['chart.xaxispos'] == 'center') {
y = y / 2;
}
// This fixes a bug, Replace this: -,400 with this: -400
text = text.replace(/^-,([0-9])/, '-$1');
/**
* Now - draw the labels
*/
RG.Text2(this, {'font':font,
'size':size,
'x':x - (align == 'right' ? -5 : 5),
'y':y + this.gutterTop,
'text':text,
'valign':'center',
'halign':align == 'right' ? 'left' : 'right',
'tag': 'scale'
});
/**
* Draw the bottom half of the labels if the X axis is in the center
*/
if (prop['chart.xaxispos'] == 'center' && i < numlabels) {
RG.Text2(this, {'font':font,
'size':size,
'x':x - (align == 'right' ? -5 : 5),
'y':ca.height - this.gutterBottom - y,
'text':'-' + text,
'valign':'center',
'halign':align == 'right' ? 'left' : 'right',
'tag': 'scale'
});
}
}
}
}
//co.stroke();
/**
* Draw the title for the axes
*/
if (title) {
co.beginPath();
co.fillStyle = title_color;
if (labels_specific) {
var width = 0;
for (var i=0,len=labels_specific.length; i<len; i+=1) {
width = Math.max(width, co.measureText(labels_specific[i]).width);
}
} else {
var width = co.measureText(prop['chart.units.pre'] + prop['chart.max'].toFixed(prop['chart.scale.decimals']) + prop['chart.units.post']).width;
}
RG.Text2(this, {'font':font,
'size':size + 2,
'x':align == 'right' ? x + width + 8 : x - width - 8,
'y':height / 2 + this.gutterTop,
'text':title,
'valign':'bottom',
'halign':'center',
'angle':align == 'right' ? 90 : -90});
co.stroke();
}
};
/**
* This detemines the maximum text width of either the scale or text
* labels - whichever is given
*
* @return number The maximum text width
*/
this.getWidth = function ()
{
var width = this.maxLabelLength;
// Add the title width if it's specified
if (prop['chart.title'] && prop['chart.title'].length) {
width += (prop['chart.text.size'] * 1.5);
}
this.width = width;
return width;
};
/**
* Using a function to add events makes it easier to facilitate method chaining
*
* @param string type The type of even to add
* @param function func
*/
this.on = function (type, func)
{
if (type.substr(0,2) !== 'on') {
type = 'on' + type;
}
this[type] = func;
return this;
};
/**
* This function runs once only
* (put at the end of the file (before any effects))
*/
this.firstDrawFunc = function ()
{
};
/**
* Objects are now always registered so that the chart is redrawn if need be.
*/
RG.Register(this);
/**
* This is the 'end' of the constructor so if the first argument
* contains configuration data - handle that.
*/
if (parseConfObjectForOptions) {
RG.parseObjectStyleConfig(this, conf.options);
}
};