RGraph = window.RGraph || {isRGraph:
true
};
RGraph.Drawing = RGraph.Drawing || {};
RGraph.Drawing.Image =
function
(conf)
{
if
(
typeof
conf === 'object
'
&& typeof conf.x === '
number
'
&& typeof conf.y === '
number
'
&& typeof conf.src === '
string
'
&& typeof conf.id === '
string
') {
var id = conf.id,
canvas = document.getElementById(id),
x = conf.x,
y = conf.y,
src = conf.src,
parseConfObjectForOptions = true; // Set this so the config is parsed (at the end of the constructor)
} else {
var id = conf,
canvas = document.getElementById(id),
x = arguments[1],
y = arguments[2],
src = arguments[3];
}
// id, x, y
this.id = id;
this.canvas = document.getElementById(this.id);
this.context = this.canvas.getContext('
2d
');
this.colorsParsed = false;
this.canvas.__object__ = this;
this.alignmentProcessed = false;
this.original_colors = [];
this.firstDraw = true; // After the first draw this will be false
/**
* Store the properties
*/
this.x = x;
this.y = y;
this.src = src;
this.img = new Image();
this.img.src = this.src;
/**
* This defines the type of this shape
*/
this.type = '
drawing.image
';
/**
* 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.src
': null,
'
chart.width
': null,
'
chart.height
': null,
'
chart.halign
': '
left
',
'
chart.valign
': '
top
',
'
chart.events.mousemove
': null,
'
chart.events.click
': null,
'
chart.shadow
': false,
'
chart.shadow.color
': '
gray
',
'
chart.shadow.offsetx
': 3,
'
chart.shadow.offsety
': 3,
'
chart.shadow.blur
': 5,
'
chart.tooltips
': null,
'
chart.tooltips.highlight
': true,
'
chart.tooltips.css.
class
': '
RGraph_tooltip
',
'
chart.tooltips.event
': '
onclick
',
'
chart.highlight.stroke
': '
rgba(0,0,0,0)
',
'
chart.highlight.fill
': '
rgba(255,255,255,0.7)
',
'
chart.alpha
': 1,
'
chart.border
': false,
'
chart.border.color
': '
black
',
'
chart.border.linewidth
': 1,
'
chart.border.radius
': 0,
'
chart.background.color
': '
rgba(0,0,0,0)
',
'
chart.clearto
': '
rgba(0,0,0,0)
'
}
/**
* A simple check that the browser has canvas support
*/
if (!this.canvas) {
alert('
[DRAWING.IMAGE] No canvas support
');
return;
}
/**
* This can be used to store the coordinates of shapes on the graph
*/
this.coords = [];
/**
* 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
*/
if
(!
this
.canvas.__rgraph_aa_translated__) {
this
.context.translate(0.5,0.5);
this
.canvas.__rgraph_aa_translated__ =
true
;
}
var
RG = RGraph,
ca =
this
.canvas,
co = ca.getContext(
'2d'
),
prop =
this
.properties,
pa2 = RG.path2,
win = window,
doc = document,
ma = Math
if
(RG.Effects &&
typeof
RG.Effects.decorate ===
'function'
) {
RG.Effects.decorate(
this
);
}
this
.set =
this
.Set =
function
(name)
{
var
value =
typeof
arguments[1] ===
'undefined'
?
null
: arguments[1];
if
(arguments.length === 1 &&
typeof
name === 'object
') {
RG.parseObjectStyleConfig(this, name);
return this;
}
/**
* This should be done first - prepend the propertyy name with "chart." if necessary
*/
if (name.substr(0,6) != '
chart.
') {
name = '
chart.
' + name;
}
// Convert uppercase letters to dot+lower case letter
while(name.match(/([A-Z])/)) {
name = name.replace(/([A-Z])/, '
.
' + RegExp.$1.toLowerCase());
}
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;
}
// Convert uppercase letters to dot+lower case letter
while(name.match(/([A-Z])/)) {
name = name.replace(/([A-Z])/, '
.
' + RegExp.$1.toLowerCase());
}
return prop[name.toLowerCase()];
};
/**
* Draws the circle
*/
this.draw =
this.Draw = function ()
{
/**
* Fire the onbeforedraw event
*/
RG.fireCustomEvent(this, '
onbeforedraw
');
/**
* Parse the colors. This allows for simple gradient syntax
*/
var obj = this;
this.img.onload = function ()
{
if (!obj.colorsParsed) {
obj.parseColors();
// Don'
t want to
do
this
again
obj.colorsParsed =
true
;
}
obj.width =
this
.width;
obj.height =
this
.height;
if
(!
this
.alignmentProcessed) {
var
customWidthHeight = (
typeof
obj.properties[
'chart.width'
] ==
'number'
&&
typeof
obj.properties[
'chart.width'
] ==
'number'
);
if
(obj.properties[
'chart.halign'
] ===
'center'
) {
obj.x -= customWidthHeight ? (obj.properties[
'chart.width'
] / 2) : (
this
.width / 2);
}
else
if
(obj.properties[
'chart.halign'
] ==
'right'
) {
obj.x -= customWidthHeight ? obj.properties[
'chart.width'
] :
this
.width;
}
if
(obj.properties[
'chart.valign'
] ===
'center'
) {
obj.y -= customWidthHeight ? (obj.properties[
'chart.height'
] / 2) : (
this
.height / 2);
}
else
if
(obj.properties[
'chart.valign'
] ==
'bottom'
) {
obj.y -= customWidthHeight ? obj.properties[
'chart.height'
] :
this
.height;
}
this
.alignmentProcessed =
true
;
}
}
if
(
this
.img.complete ||
this
.img.readyState === 4) {
this
.img.onload();
}
if
(prop[
'chart.shadow'
]) {
RG.setShadow(
this
, prop[
'chart.shadow.color'
], prop[
'chart.shadow.offsetx'
], prop[
'chart.shadow.offsety'
], prop[
'chart.shadow.blur'
]);
}
var
oldAlpha = co.globalAlpha;
co.globalAlpha = prop[
'chart.alpha'
];
if
(prop[
'chart.border'
]) {
co.strokeStyle = prop[
'chart.border.color'
];
co.lineWidth = prop[
'chart.border.linewidth'
];
var
borderRadius = 0;
if
(
this
.width ||
this
.height) {
borderRadius = ma.min(
this
.width / 2,
this
.height / 2)
}
if
((prop[
'chart.width'
] / 2) > borderRadius && (prop[
'chart.height'
] / 2) > borderRadius) {
borderRadius = ma.min((prop[
'chart.width'
] / 2), (prop[
'chart.height'
] / 2))
}
if
(prop[
'chart.border.radius'
] < borderRadius) {
borderRadius = prop[
'chart.border.radius'
];
}
co.beginPath();
this
.roundedRect(
ma.round(
this
.x) - ma.round(co.lineWidth / 2),
ma.round(
this
.y) - ma.round(co.lineWidth / 2),
(prop[
'chart.width'
] ||
this
.img.width) + co.lineWidth,
(prop[
'chart.height'
] ||
this
.img.height) + co.lineWidth,
borderRadius
);
}
if
(borderRadius) {
co.save();
this
.drawBackgroundColor(borderRadius);
co.beginPath();
this
.roundedRect(
ma.round(
this
.x) - ma.round(co.lineWidth / 2),
ma.round(
this
.y) - ma.round(co.lineWidth / 2),
(prop[
'chart.width'
] ||
this
.img.width) + co.lineWidth,
(prop[
'chart.height'
] ||
this
.img.height) + co.lineWidth,
borderRadius
);
co.clip();
}
else
{
this
.drawBackgroundColor(0);
}
RG.noShadow(
this
);
if
(
typeof
prop[
'chart.height'
] ===
'number'
||
typeof
prop[
'chart.width'
] ===
'number'
) {
co.drawImage(
this
.img,
ma.round(
this
.x),
ma.round(
this
.y),
prop[
'chart.width'
] ||
this
.width,
prop[
'chart.height'
] ||
this
.height
);
}
else
{
co.drawImage(
this
.img,
ma.round(
this
.x),
ma.round(
this
.y)
);
}
if
(borderRadius) {
co.restore();
}
if
(prop['chart.border
']) {
RG.noShadow(this);
co.stroke();
}
co.globalAlpha = oldAlpha;
//var obj = this;
this.img.onload = function ()
{
RG.redrawCanvas(ca);
obj.coords[0] = [
ma.round(obj.x),
ma.round(obj.y),
typeof prop['
chart.width
'] === '
number
' ? prop['
chart.width
'] : this.width, typeof prop['
chart.height
'] == '
number
' ? prop['
chart.height
'] : this.height
];
}
RG.noShadow(this);
/**
* This installs the event listeners
*/
RG.installEventListeners(this);
/**
* Fire the onfirstdraw event
*/
if (this.firstDraw) {
this.firstDraw = false;
RG.fireCustomEvent(this, '
onfirstdraw
');
this.firstDrawFunc();
}
/**
* Fire the ondraw event
*/
RG.fireCustomEvent(this, '
ondraw
');
return this;
};
/**
* Used in chaining. Runs a function there and then - not waiting for
* the events to fire (eg the onbeforedraw event)
*
* @param function func The function to execute
*/
this.exec = function (func)
{
func(this);
return this;
};
/**
* The getObjectByXY() worker method
*/
this.getObjectByXY = function (e)
{
var mouseXY = RG.getMouseXY(e);
if (this.getShape(e)) {
return this;
}
};
/**
* Not used by the class during creating the shape, but is used by event handlers
* to get the coordinates (if any) of the selected bar
*
* @param object e The event object
* @param object OPTIONAL You can pass in the bar object instead of the
* function using "this"
*/
this.getShape = function (e)
{
var mouseXY = RG.getMouseXY(e),
mouseX = mouseXY[0],
mouseY = mouseXY[1];
if ( this.coords
&& this.coords[0]
&& mouseXY[0] >= this.coords[0][0]
&& mouseXY[0] <= (this.coords[0][0] + this.coords[0][2])
&& mouseXY[1] >= this.coords[0][1]
&& mouseXY[1] <= (this.coords[0][1] + this.coords[0][3])) {
return {
0: this, 1: this.coords[0][0], 2: this.coords[0][1], 3: this.coords[0][2], 4: this.coords[0][3], 5: 0,
'
object
': this, '
x
': this.coords[0][0], '
y
': this.coords[0][1], '
width
': this.coords[0][2], '
height
': this.coords[0][3], '
index
': 0, '
tooltip
': prop['
chart.tooltips
'] ? prop['
chart.tooltips
'][0] : null
};
}
return null;
};
/**
* 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)
{
if (prop['
chart.tooltips.highlight
']) {
if (typeof prop['
chart.highlight.style
'] === '
function
') {
(prop['
chart.highlight.style
'])(shape);
} else {
pa2(co, ['
b
','
r
',this.coords[0][0],this.coords[0][1],this.coords[0][2],this.coords[0][3], '
f
',prop['
chart.highlight.fill
'], '
s
', prop['
chart.highlight.stroke
']]);
}
}
};
/**
* 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.highlight.stroke
'] = RG.array_clone(prop['
chart.highlight.stroke
']);
this.original_colors['
chart.highlight.fill
'] = RG.array_clone(prop['
chart.highlight.fill
']);
}
/**
* Parse various properties for colors
*/
prop['
chart.highlight.stroke
'] = this.parseSingleColorForGradient(prop['
chart.highlight.stroke
']);
prop['
chart.highlight.fill
'] = this.parseSingleColorForGradient(prop['
chart.highlight.fill
']);
};
/**
* 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('
:
'),
grad = co.createLinearGradient(this.x, this.y, this.x + this.img.width, this.y),
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;
};
/**
* 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;
}
if (typeof this[type] !== '
function
') {
this[type] = func;
} else {
RG.addCustomEventListener(this, type, func);
}
return this;
};
/**
* This function runs once only
* (put at the end of the file (before any effects))
*/
this.firstDrawFunc = function ()
{
};
/**
* This draws a rectangle for the border of the image with optional rounded corners
*/
this.roundedRect = function (x, y, width, height, radius)
{
// Save the existing state of the canvas so that it can be restored later
co.save();
// Translate to the given X/Y coordinates
co.translate(x, y);
// Move to the center of the top horizontal line
co.moveTo(width / 2,0);
// Draw the rounded corners. The connecting lines in between them are drawn automatically
co.arcTo(width,0,width,height, ma.min(height / 2, radius));
co.arcTo(width, height, 0, height, ma.min(width / 2, radius));
co.arcTo(0, height, 0, 0, ma.min(height / 2, radius));
co.arcTo(0, 0, radius, 0, ma.min(width / 2, radius));
// Draw a line back to the start coordinates
co.lineTo(width / 2,0);
// Restore the state of the canvas to as it was before the save()
co.restore();
};
/**
*
*/
this.drawBackgroundColor = function (borderRadius)
{
co.beginPath();
co.fillStyle = prop['
chart.background.color
'];
this.roundedRect(
ma.round(this.x) - ma.round(co.lineWidth / 2),
ma.round(this.y) - ma.round(co.lineWidth / 2),
(prop['
chart.width
'] || this.img.width) + co.lineWidth,
(prop['
chart.height
'] || this.img.height) + co.lineWidth,
borderRadius
);
co.fill();
};
/**
* 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);
}
};