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|
/* Copyright (c) 2010 Richard Wall <richard (at) the-moon.net>
* See LICENSE for details.
*
* Wrappers and convenience fuctions for working with the javascriptRRD, jQuery,
* and flot charting packages.
*
* Designed to work well with the RRD files generated by Collectd:
* - http://collectd.org/
*
* Requirements:
* - JavascriptRRD: http://javascriptrrd.sourceforge.net/
* - jQuery: http://jquery.com/
* - Flot: http://code.google.com/p/flot/
* - MochiKit.Async: http://www.mochikit.com/
*/
if(typeof jarmon == 'undefined') {
var jarmon = {};
}
/**
* Download a binary file asynchronously using the jQuery.ajax function
*
* @param url: The url of the object to be downloaded
* @return: A I{MochiKit.Async.Deferred} which will callback with an instance of
* I{javascriptrrd.BinaryFile}
**/
jarmon.downloadBinary = function(url) {
var d = new MochiKit.Async.Deferred();
$.ajax({
url: url,
dataType: 'text',
cache: false,
beforeSend: function(request) {
try {
request.overrideMimeType('text/plain; charset=x-user-defined');
} catch(e) {
// IE doesn't support overrideMimeType
}
},
success: function(data) {
try {
d.callback(new BinaryFile(data));
} catch(e) {
d.errback(e);
}
},
error: function(xhr, textStatus, errorThrown) {
// Special case for IE which handles binary data slightly
// differently.
if(textStatus == 'parsererror') {
if (typeof xhr.responseBody != 'undefined') {
return this.success(xhr.responseBody);
}
}
d.errback(new Error(xhr.status));
}
});
return d;
};
jarmon.localTimeFormatter = function (v, axis) {
/**
* Copied from jquery.flot.js and modified to allow timezone
* adjustment.
**/
// map of app. size of time units in milliseconds
var timeUnitSize = {
"second": 1000,
"minute": 60 * 1000,
"hour": 60 * 60 * 1000,
"day": 24 * 60 * 60 * 1000,
"month": 30 * 24 * 60 * 60 * 1000,
"year": 365.2425 * 24 * 60 * 60 * 1000
};
// Offset the input timestamp by the user defined amount
var d = new Date(v + axis.options.tzoffset);
// first check global format
if (axis.options.timeformat != null)
return $.plot.formatDate(d, axis.options.timeformat, axis.options.monthNames);
var t = axis.tickSize[0] * timeUnitSize[axis.tickSize[1]];
var span = axis.max - axis.min;
var suffix = (axis.options.twelveHourClock) ? " %p" : "";
if (t < timeUnitSize.minute)
fmt = "%h:%M:%S" + suffix;
else if (t < timeUnitSize.day) {
if (span < 2 * timeUnitSize.day)
fmt = "%h:%M" + suffix;
else
fmt = "%b %d %h:%M" + suffix;
}
else if (t < timeUnitSize.month)
fmt = "%b %d";
else if (t < timeUnitSize.year) {
if (span < timeUnitSize.year)
fmt = "%b";
else
fmt = "%b %y";
}
else
fmt = "%y";
return $.plot.formatDate(d, fmt, axis.options.monthNames);
};
/**
* A wrapper around an instance of javascriptrrd.RRDFile which provides a
* convenient way to query the RRDFile based on time range, RRD data source (DS)
* and RRD consolidation function (CF).
*
* @param startTime: A javascript {Date} instance representing the start of query
* time range, or {null} to return earliest available data.
* @param endTime: A javascript {Date} instance representing the end of query
* time range, or {null} to return latest available data.
* @param dsId: A {String} name of an RRD DS or an {Int} DS index number or
* {null} to return the first available DS.
* @param cfName: A {String} name of an RRD consolidation function
* @return: A flot compatible data series object
**/
jarmon.RrdQuery = function(rrd, unit) {
this.rrd = rrd;
this.unit = unit;
};
jarmon.RrdQuery.prototype.getData = function(startTime, endTime, dsId, cfName) {
/**
* Generate a Flot compatible data object containing rows between start and
* end time. The rows are taken from the first RRA whose data spans the
* requested time range.
*
* @param startTime: The I{Date} start time
* @param endTime: The I{Date} end time
* @param dsId: An index I{Number} or key I{String} identifying the RRD
* datasource (DS).
* @param cfName: The name I{String} of an RRD consolidation function (CF)
* eg AVERAGE, MIN, MAX
* @return: A Flot compatible data series I{Object}
* eg {label:'', data:[], unit: ''}
**/
var startTimestamp = startTime/1000;
var lastUpdated = this.rrd.getLastUpdate();
var endTimestamp = lastUpdated;
if(endTime) {
endTimestamp = endTime/1000;
// If end time stamp is beyond the range of this rrd then reset it
if(lastUpdated < endTimestamp) {
endTimestamp = lastUpdated;
}
}
if(dsId == null) {
dsId = 0;
}
var ds = this.rrd.getDS(dsId);
if(cfName == null) {
cfName = 'AVERAGE';
}
var rra, step, rraRowCount, firstUpdated;
for(var i=0; i<this.rrd.getNrRRAs(); i++) {
// Look through all RRAs looking for the most suitable
// data resolution.
rra = this.rrd.getRRA(i);
// If this rra doesn't use the requested CF then move on to the next.
if(rra.getCFName() != cfName) {
continue;
}
step = rra.getStep();
rraRowCount = rra.getNrRows();
firstUpdated = lastUpdated - (rraRowCount - 1) * step;
// We assume that the RRAs are listed in ascending order of time range,
// therefore the first RRA which contains the range minimum should give
// the highest resolution data for this range.
if(firstUpdated <= startTimestamp) {
break;
}
}
// If we got to the end of the loop without ever defining step, it means
// that the CF check never succeded.
if(!step) {
throw new Error('Unrecognised consolidation function: ' + cfName);
}
var startRow = rraRowCount - parseInt((lastUpdated - Math.max(startTimestamp, firstUpdated))/step) - 1;
var endRow = rraRowCount - parseInt((lastUpdated - endTimestamp)/step) - 1;
var flotData = [];
var timestamp = firstUpdated + (startRow - 1) * step;
var dsIndex = ds.getIdx();
for (var i=startRow; i<=endRow; i++) {
flotData.push([timestamp*1000.0, rra.getEl(i, dsIndex)]);
timestamp += step;
}
// Now get the date of the earliest record in entire rrd file, ie that of
// the last (longest range) rra.
rra = this.rrd.getRRA(this.rrd.getNrRRAs()-1);
firstUpdated = lastUpdated - (rra.getNrRows() -1) * rra.getStep();
return {'label': ds.getName(), 'data': flotData, 'unit': this.unit,
'firstUpdated': firstUpdated*1000.0,
'lastUpdated': lastUpdated*1000.0};
};
/**
* A wrapper around RrdQuery which provides asynchronous access to the data in a
* remote RRD file.
*
* @param url: The url I{String} of a remote RRD file
* @param unit: The unit suffix I{String} of this data eg 'bit/sec'
**/
jarmon.RrdQueryRemote = function(url, unit) {
this.url = url;
this.unit = unit;
this.lastUpdate = 0;
this._download = null;
};
jarmon.RrdQueryRemote.prototype.getData = function(startTime, endTime, dsId) {
/**
* Return a Flot compatible data series asynchronously.
*
* @param startTime: The start time I{Date}
* @param endTime: The end time I{Date}
* @returns: A I{MochiKit.Async.Deferred} which calls back with a flot data
* series object I{Object}
**/
var endTimestamp = endTime/1000;
// Download the rrd if there has never been a download or if the last
// completed download had a lastUpdated timestamp less than the requested
// end time.
// Don't start another download if one is already in progress.
if(!this._download || (this._download.fired > -1 && this.lastUpdate < endTimestamp )) {
this._download = jarmon.downloadBinary(this.url)
.addCallback(
function(self, binary) {
// Upon successful download convert the resulting binary
// into an RRD file and pass it on to the next callback
// in the chain.
var rrd = new RRDFile(binary);
self.lastUpdate = rrd.getLastUpdate();
return rrd;
}, this);
}
// Set up a deferred which will call getData on the local RrdQuery object
// returning a flot compatible data object to the caller.
var ret = new MochiKit.Async.Deferred().addCallback(
function(self, startTime, endTime, dsId, rrd) {
return new jarmon.RrdQuery(rrd, self.unit).getData(startTime, endTime, dsId);
}, this, startTime, endTime, dsId);
// Add a pair of callbacks to the current download which will callback the
// result which we setup above.
this._download.addBoth(
function(ret, res) {
if(res instanceof Error) {
ret.errback(res);
} else {
ret.callback(res);
}
return res;
}, ret);
return ret;
};
/**
* Wraps a I{RrdQueryRemote} to provide access to a different RRD DSs within a
* single RrdDataSource.
*
* @param rrdQuery: An I{RrdQueryRemote}
* @param dsId: An index or keyname of an RRD DS
**/
jarmon.RrdQueryDsProxy = function(rrdQuery, dsId) {
this.rrdQuery = rrdQuery;
this.dsId = dsId;
this.unit = rrdQuery.unit;
};
jarmon.RrdQueryDsProxy.prototype.getData = function(startTime, endTime) {
/**
* Call I{RrdQueryRemote.getData} with a particular dsId
**/
return this.rrdQuery.getData(startTime, endTime, this.dsId);
};
/**
* A class for creating a Flot chart from a series of RRD Queries
*
* @param template: A I{jQuery} containing a single element into which the chart
* will be drawn
* @param options: An I{Object} containing Flot options which describe how the
* chart should be drawn.
**/
jarmon.Chart = function(template, options) {
this.template = template;
this.options = jQuery.extend(true, {yaxis: {}}, options);
this.data = [];
var self = this;
// Listen for clicks on the legend items - onclick enable / disable the
// corresponding data source.
$('.legend .legendLabel', this.template[0]).live('click', function(e) {
self.switchDataEnabled($(this).text());
self.draw();
});
this.options['yaxis']['ticks'] = function(axis) {
/**
* Choose a suitable SI multiplier based on the min and max values from
* the axis and then generate appropriate yaxis tick labels.
*
* @param axis: An I{Object} with min and max properties
* @return: An array of ~5 tick labels
**/
var siPrefixes = {
0: '',
1: 'K',
2: 'M',
3: 'G',
4: 'T'
}
var si = 0;
while(true) {
if( Math.pow(1000, si+1)*0.9 > axis.max ) {
break;
}
si++;
}
var minVal = axis.min/Math.pow(1000, si);
var maxVal = axis.max/Math.pow(1000, si);
var stepSizes = [0.01, 0.05, 0.1, 0.25, 0.5, 1, 5, 10, 25, 50, 100, 250];
var realStep = (maxVal - minVal)/5.0;
var stepSize, decimalPlaces = 0;
for(var i=0; i<stepSizes.length; i++) {
stepSize = stepSizes[i]
if( realStep < stepSize ) {
if(stepSize < 10) {
decimalPlaces = 2;
}
break;
}
}
var tickMin = minVal - minVal % stepSize;
var tickMax = maxVal - maxVal % stepSize + stepSize
var ticks = [];
for(var j=tickMin; j<=tickMax; j+=stepSize) {
ticks.push([j*Math.pow(1000, si), j.toFixed(decimalPlaces)]);
}
self.siPrefix = siPrefixes[si];
return ticks;
};
};
jarmon.Chart.prototype.addData = function(label, db, enabled) {
/**
* Add details of a remote RRD data source whose data will be added to this
* chart.
*
* @param label: A I{String} label for this data which will be shown in the
* chart legend
* @param db: The url of the remote RRD database
* @param enabled: true if you want this data plotted on the chart, false
* if not.
**/
if(typeof enabled == 'undefined') {
enabled = true;
}
this.data.push([label, db, enabled]);
};
jarmon.Chart.prototype.switchDataEnabled = function(label) {
/**
* Enable / Disable a single data source
*
* @param label: The label I{String} of the data source to be enabled /
* disabled
**/
for(var i=0; i<this.data.length; i++) {
if(this.data[i][0] == label) {
this.data[i][2] = !this.data[i][2];
}
}
};
jarmon.Chart.prototype.setTimeRange = function(startTime, endTime) {
/**
* Alter the time range of this chart and redraw
*
* @param startTime: The start time I{Date}
* @param endTime: The end time I{Date}
**/
this.startTime = startTime;
this.endTime = endTime;
return this.draw();
}
jarmon.Chart.prototype.draw = function() {
/**
* Draw the chart
* A 'chart_loading' event is triggered before the data is requested
* A 'chart_loaded' event is triggered when the chart has been drawn
*
* @return: A I{MochiKit.Async.Deferred} which calls back with the chart
* data when the chart has been rendered.
**/
this.template.trigger('chart_loading');
var result;
var results = [];
for(var i=0; i<this.data.length; i++) {
if(this.data[i][2]) {
result = this.data[i][1].getData(this.startTime, this.endTime);
} else {
// If the data source has been marked as disabled return a fake
// empty dataset
// 0 values so that it can contribute to a stacked chart.
// 0 linewidth so that it doesn't cause a line in stacked chart
result = new MochiKit.Async.Deferred();
result.callback({
data: [
[this.startTime, 0],
[this.endTime, 0]
],
lines: {
lineWidth: 0
}
});
}
results.push(result);
}
return MochiKit.Async.gatherResults(results)
.addCallback(
function(self, data) {
var i, label, disabled = [];
unit = '';
for(i=0; i<data.length; i++) {
label = self.data[i][0];
if(label) {
data[i].label = label;
}
if(typeof data[i].unit != 'undefined') {
// Just use the last unit for now
unit = data[i].unit;
}
if(!self.data[i][2]) {
disabled.push(label);
}
}
$.plot(self.template, data, self.options);
// Highlight any disabled data sources in the legend
self.template.find('.legendLabel').each(
function(i, el) {
var labelCell = $(el);
if( $.inArray(labelCell.text(), disabled) > -1 ) {
labelCell.addClass('disabled');
}
}
);
var yaxisUnitLabel = $('<div>').text(self.siPrefix + unit)
.css({width: '100px',
position: 'absolute',
top: '80px',
left: '-90px',
'text-align': 'right'});
self.template.append(yaxisUnitLabel);
yaxisUnitLabel.position(self.template.position());
return data;
}, this)
.addErrback(
function(self, failure) {
self.template.text('error: ' + failure.message);
}, this)
.addBoth(
function(self, res) {
self.template.trigger('chart_loaded');
return res;
}, this);
};
jarmon.Chart.fromRecipe = function(rrdUrlList, recipes, templateFactory) {
/**
* A factory function to generate a list of I{Chart} from a list of recipes
* and a list of available rrd files in collectd path format.
*
* @param rrdUrlList: A list of rrd download paths
* @param recipes: A list of recipe objects
* @param templateFactory: A callable which generates an html template for a
* chart.
**/
var rrdUrlBlob = rrdUrlList.join('\n')
var charts = [];
var dataDict = {};
var recipe, chartData, template, c, i, j, x, ds, label, rrd, unit, re, match;
for(i=0; i<recipes.length; i++) {
recipe = recipes[i];
chartData = [];
for(j=0; j<recipe['data'].length; j++) {
rrd = recipe['data'][j][0];
ds = recipe['data'][j][1];
label = recipe['data'][j][2];
unit = recipe['data'][j][3];
re = new RegExp('.*/' + rrd, 'gm');
match = rrdUrlBlob.match(re);
if(!match) {
continue;
}
for(x=0; x<match.length; x++) {
if(typeof dataDict[match[x]] == 'undefined') {
dataDict[match[x]] = new jarmon.RrdQueryRemote(match[x], unit);
}
chartData.push([label, new jarmon.RrdQueryDsProxy(dataDict[match[x]], ds)]);
}
}
if(chartData.length > 0) {
template = templateFactory();
template.find('.title').text(recipe['title']);
c = new jarmon.Chart(template.find('.chart'), recipe['options']);
for(j=0; j<chartData.length; j++) {
c.addData.apply(c, chartData[j]);
}
charts.push(c);
}
}
return charts;
};
// Options common to all the chart on this page
jarmon.Chart.BASE_OPTIONS = {
grid: {
clickable: false,
borderWidth: 1,
borderColor: "#000",
color: "#000",
backgroundColor: "#fff",
tickColor: "#eee"
},
legend: {
position: 'nw',
noColumns: 2
},
selection: {
mode: 'x'
},
series: {
points: { show: false },
lines: {
show: true,
steps: false,
shadowSize: 0,
lineWidth: 1
},
shadowSize: 0
},
xaxis: {
mode: "time",
tickFormatter: jarmon.localTimeFormatter
}
};
// Extra options to generate a stacked chart
jarmon.Chart.STACKED_OPTIONS = {
series: {
stack: true,
lines: {
fill: 0.5
}
}
};
// A selection of useful time ranges
jarmon.timeRangeShortcuts = [
['last hour', function(now) { return [now-60*60*1000*1, now]; }],
['last six hours', function(now) { return [now-60*60*1000*6, now]; }],
['last day', function(now) { return [now-60*60*1000*24, now]; }],
['last week', function(now) { return [now-60*60*1000*24*7, now]; }],
['last month', function(now) { return [now-60*60*1000*24*31, now]; }],
['last year', function(now) { return [now-60*60*1000*24*365, now]; }]
];
/**
* Presents the user with a form and a timeline with which they can choose a
* time range and co-ordinates the refreshing of a series of charts.
*
* @param ui: A one element I{jQuery} containing an input form and placeholders
* for the timeline and for the series of charts.
**/
jarmon.ChartCoordinator = function(ui) {
var self = this;
this.ui = ui;
var options = this.ui.find('select[name="from_standard"]');
for(var i=0; i<jarmon.timeRangeShortcuts.length; i++) {
options.append($('<option />').text(jarmon.timeRangeShortcuts[i][0]));
}
options.bind('change', function(e) {
// No point in updating if the user chose custom.
if($(this).val() != 'custom') {
self.update();
}
});
// Populate a list of tzoffset options
var label;
options = this.ui.find('select[name="tzoffset"]');
for(var i=-12; i<=12; i++) {
label = 'UTC';
if(i >= 0) {
label += ' + ';
} else {
label += ' - ';
}
label += Math.abs(i) + 'h';
options.append($('<option />').attr('value', i*60*60*1000).text(label));
}
this.charts = [];
// Update the time ranges and redraw charts when the form is submitted
this.ui.find('[name="action"]').bind('click', function(e) {
self.update();
return false;
});
// Style and configuration of the range timeline
this.rangePreviewOptions = {
grid: {
borderWidth: 1
},
selection: {
mode: 'x'
},
xaxis: {
mode: 'time',
tickFormatter: jarmon.localTimeFormatter
},
yaxis: {
ticks: []
}
};
// When a selection is made on the range timeline, redraw all the charts.
this.ui.bind("plotselected", function(event, ranges) {
self.setTimeRange(new Date(ranges.xaxis.from),
new Date(ranges.xaxis.to));
});
};
jarmon.ChartCoordinator.prototype.update = function() {
/**
* Grab the start and end time from the ui form, highlight the range on the
* range timeline and set the time range of all the charts and redraw.
**/
var selection = this.ui.find('[name="from_standard"]').val();
var now = new Date().getTime();
for(var i=0; i<jarmon.timeRangeShortcuts.length; i++) {
if(jarmon.timeRangeShortcuts[i][0] == selection) {
range = jarmon.timeRangeShortcuts[i][1](now);
this.setTimeRange(range[0], range[1]);
break;
}
}
var startTime = parseInt(this.ui.find('[name="from"]').val());
var endTime = parseInt(this.ui.find('[name="to"]').val());
var tzoffset = parseInt(this.ui.find('[name="tzoffset"]').val());
this.ui.find('[name="from_custom"]').val(
new Date(startTime + tzoffset).toUTCString().split(' ').slice(1,5).join(' '));
this.ui.find('[name="to_custom"]').val(
new Date(endTime + tzoffset).toUTCString().split(' ').slice(1,5).join(' '));
this.rangePreviewOptions.xaxis.tzoffset = tzoffset;
var chartsLoading = [];
for(var i=0; i<this.charts.length; i++){
this.charts[i].options.xaxis.tzoffset = tzoffset;
// Don't render charts which are not currently visible
if(this.charts[i].template.is(':visible')) {
chartsLoading.push(
this.charts[i].setTimeRange(startTime, endTime));
}
}
return MochiKit.Async.gatherResults(chartsLoading).addCallback(
function(self, startTime, endTime, chartData) {
var firstUpdate = new Date().getTime();
var lastUpdate = 0;
for(var i=0; i<chartData.length; i++) {
for(var j=0; j<chartData[i].length; j++) {
if(chartData[i][j].firstUpdated < firstUpdate) {
firstUpdate = chartData[i][j].firstUpdated;
}
if(chartData[i][j].lastUpdated > lastUpdate) {
lastUpdate = chartData[i][j].lastUpdated;
}
}
}
var ranges = {
xaxis: {
from: Math.max(startTime, firstUpdate),
to: Math.min(endTime, lastUpdate)
}
};
// Add a suitable extended head and tail to preview graph time axis
var HOUR = 1000 * 60 * 60;
var DAY = HOUR * 24;
var WEEK = DAY * 7;
var MONTH = DAY * 31;
var YEAR = DAY * 365;
var periods = [HOUR, HOUR*6, HOUR*12,
DAY, DAY*3,
WEEK, WEEK*2,
MONTH, MONTH*3, MONTH*6, YEAR];
var range = ranges.xaxis.to - ranges.xaxis.from;
for(var i=0; i<periods.length; i++) {
if(range <= periods[i]) {
i++;
break;
}
}
// Dummy data for the range timeline
var data = [
[Math.max(ranges.xaxis.from - periods[i-1], firstUpdate), 1],
[Math.min(ranges.xaxis.to + periods[i-1], lastUpdate), 1]];
self.rangePreview = $.plot(self.ui.find('.range-preview'), [data],
self.rangePreviewOptions);
self.rangePreview.setSelection(ranges, true);
}, this, startTime, endTime);
};
jarmon.ChartCoordinator.prototype.setTimeRange = function(from, to) {
/**
* Set the start and end time fields in the form and trigger an update
*
* @param startTime: The start time I{Date}
* @param endTime: The end time I{Date}
**/
this.ui.find('[name="from"]').val(from);
this.ui.find('[name="to"]').val(to);
};
jarmon.ChartCoordinator.prototype.init = function() {
/**
* Reset all charts and the input form to the default time range - last hour
**/
// Default timezone offset based on localtime
var tzoffset = -1 * new Date().getTimezoneOffset() * 60 * 1000;
this.ui.find('[name="tzoffset"]').val(tzoffset);
// Default to 1 hour
this.ui.find('[name="from_standard"]').val('last hour');
};
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