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499 lines
14 KiB
499 lines
14 KiB
class Morris.Grid extends Morris.EventEmitter
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# A generic pair of axes for line/area/bar charts.
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#
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# Draws grid lines and axis labels.
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#
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constructor: (options) ->
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# find the container to draw the graph in
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if typeof options.element is 'string'
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@el = $ document.getElementById(options.element)
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else
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@el = $ options.element
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if not @el? or @el.length == 0
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throw new Error("Graph container element not found")
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if @el.css('position') == 'static'
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@el.css('position', 'relative')
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@options = $.extend {}, @gridDefaults, (@defaults || {}), options
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# backwards compatibility for units -> postUnits
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if typeof @options.units is 'string'
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@options.postUnits = options.units
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# the raphael drawing instance
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@raphael = new Raphael(@el[0])
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# some redraw stuff
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@elementWidth = null
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@elementHeight = null
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@dirty = false
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# range selection
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@selectFrom = null
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# more stuff
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@init() if @init
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# load data
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@setData @options.data
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# hover
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@el.bind 'mousemove', (evt) =>
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offset = @el.offset()
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x = evt.pageX - offset.left
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if @selectFrom
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left = @data[@hitTest(Math.min(x, @selectFrom))]._x
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right = @data[@hitTest(Math.max(x, @selectFrom))]._x
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width = right - left
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@selectionRect.attr({ x: left, width: width })
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else
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@fire 'hovermove', x, evt.pageY - offset.top
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@el.bind 'mouseleave', (evt) =>
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if @selectFrom
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@selectionRect.hide()
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@selectFrom = null
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@fire 'hoverout'
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@el.bind 'touchstart touchmove touchend', (evt) =>
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touch = evt.originalEvent.touches[0] or evt.originalEvent.changedTouches[0]
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offset = @el.offset()
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@fire 'hovermove', touch.pageX - offset.left, touch.pageY - offset.top
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@el.bind 'click', (evt) =>
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offset = @el.offset()
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@fire 'gridclick', evt.pageX - offset.left, evt.pageY - offset.top
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if @options.rangeSelect
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@selectionRect = @raphael.rect(0, 0, 0, @el.innerHeight())
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.attr({ fill: @options.rangeSelectColor, stroke: false })
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.toBack()
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.hide()
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@el.bind 'mousedown', (evt) =>
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offset = @el.offset()
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@startRange evt.pageX - offset.left
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@el.bind 'mouseup', (evt) =>
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offset = @el.offset()
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@endRange evt.pageX - offset.left
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@fire 'hovermove', evt.pageX - offset.left, evt.pageY - offset.top
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if @options.resize
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$(window).bind 'resize', (evt) =>
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if @timeoutId?
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window.clearTimeout @timeoutId
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@timeoutId = window.setTimeout @resizeHandler, 100
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# Disable tap highlight on iOS.
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@el.css('-webkit-tap-highlight-color', 'rgba(0,0,0,0)')
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@postInit() if @postInit
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# Default options
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#
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gridDefaults:
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dateFormat: null
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axes: true
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grid: true
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gridLineColor: '#aaa'
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gridStrokeWidth: 0.5
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gridTextColor: '#888'
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gridTextSize: 12
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gridTextFamily: 'sans-serif'
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gridTextWeight: 'normal'
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hideHover: false
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yLabelFormat: null
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xLabelAngle: 0
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numLines: 5
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padding: 25
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parseTime: true
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postUnits: ''
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preUnits: ''
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ymax: 'auto'
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ymin: 'auto 0'
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goals: []
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goalStrokeWidth: 1.0
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goalLineColors: [
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'#666633'
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'#999966'
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'#cc6666'
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'#663333'
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]
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events: []
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eventStrokeWidth: 1.0
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eventLineColors: [
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'#005a04'
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'#ccffbb'
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'#3a5f0b'
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'#005502'
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]
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rangeSelect: null
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rangeSelectColor: '#eef'
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resize: false
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# Update the data series and redraw the chart.
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#
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setData: (data, redraw = true) ->
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@options.data = data
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if !data? or data.length == 0
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@data = []
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@raphael.clear()
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@hover.hide() if @hover?
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return
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ymax = if @cumulative then 0 else null
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ymin = if @cumulative then 0 else null
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if @options.goals.length > 0
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minGoal = Math.min @options.goals...
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maxGoal = Math.max @options.goals...
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ymin = if ymin? then Math.min(ymin, minGoal) else minGoal
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ymax = if ymax? then Math.max(ymax, maxGoal) else maxGoal
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@data = for row, index in data
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ret = {src: row}
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ret.label = row[@options.xkey]
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if @options.parseTime
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ret.x = Morris.parseDate(ret.label)
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if @options.dateFormat
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ret.label = @options.dateFormat ret.x
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else if typeof ret.label is 'number'
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ret.label = new Date(ret.label).toString()
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else
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ret.x = index
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if @options.xLabelFormat
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ret.label = @options.xLabelFormat ret
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total = 0
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ret.y = for ykey, idx in @options.ykeys
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yval = row[ykey]
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yval = parseFloat(yval) if typeof yval is 'string'
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yval = null if yval? and typeof yval isnt 'number'
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if yval?
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if @cumulative
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total += yval
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else
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if ymax?
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ymax = Math.max(yval, ymax)
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ymin = Math.min(yval, ymin)
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else
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ymax = ymin = yval
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if @cumulative and total?
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ymax = Math.max(total, ymax)
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ymin = Math.min(total, ymin)
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yval
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ret
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if @options.parseTime
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@data = @data.sort (a, b) -> (a.x > b.x) - (b.x > a.x)
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# calculate horizontal range of the graph
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@xmin = @data[0].x
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@xmax = @data[@data.length - 1].x
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@events = []
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if @options.events.length > 0
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if @options.parseTime
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@events = (Morris.parseDate(e) for e in @options.events)
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else
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@events = @options.events
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@xmax = Math.max(@xmax, Math.max(@events...))
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@xmin = Math.min(@xmin, Math.min(@events...))
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if @xmin is @xmax
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@xmin -= 1
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@xmax += 1
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@ymin = @yboundary('min', ymin)
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@ymax = @yboundary('max', ymax)
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if @ymin is @ymax
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@ymin -= 1 if ymin
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@ymax += 1
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if @options.axes in [true, 'both', 'y'] or @options.grid is true
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if (@options.ymax == @gridDefaults.ymax and
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@options.ymin == @gridDefaults.ymin)
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# calculate 'magic' grid placement
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@grid = @autoGridLines(@ymin, @ymax, @options.numLines)
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@ymin = Math.min(@ymin, @grid[0])
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@ymax = Math.max(@ymax, @grid[@grid.length - 1])
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else
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step = (@ymax - @ymin) / (@options.numLines - 1)
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@grid = (y for y in [@ymin..@ymax] by step)
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@dirty = true
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@redraw() if redraw
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yboundary: (boundaryType, currentValue) ->
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boundaryOption = @options["y#{boundaryType}"]
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if typeof boundaryOption is 'string'
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if boundaryOption[0..3] is 'auto'
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if boundaryOption.length > 5
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suggestedValue = parseInt(boundaryOption[5..], 10)
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return suggestedValue unless currentValue?
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Math[boundaryType](currentValue, suggestedValue)
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else
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if currentValue? then currentValue else 0
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else
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parseInt(boundaryOption, 10)
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else
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boundaryOption
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autoGridLines: (ymin, ymax, nlines) ->
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span = ymax - ymin
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ymag = Math.floor(Math.log(span) / Math.log(10))
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unit = Math.pow(10, ymag)
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# calculate initial grid min and max values
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gmin = Math.floor(ymin / unit) * unit
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gmax = Math.ceil(ymax / unit) * unit
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step = (gmax - gmin) / (nlines - 1)
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if unit == 1 and step > 1 and Math.ceil(step) != step
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step = Math.ceil(step)
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gmax = gmin + step * (nlines - 1)
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# ensure zero is plotted where the range includes zero
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if gmin < 0 and gmax > 0
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gmin = Math.floor(ymin / step) * step
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gmax = Math.ceil(ymax / step) * step
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# special case for decimal numbers
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if step < 1
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smag = Math.floor(Math.log(step) / Math.log(10))
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grid = for y in [gmin..gmax] by step
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parseFloat(y.toFixed(1 - smag))
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else
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grid = (y for y in [gmin..gmax] by step)
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grid
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_calc: ->
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w = @el.width()
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h = @el.height()
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if @elementWidth != w or @elementHeight != h or @dirty
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@elementWidth = w
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@elementHeight = h
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@dirty = false
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# recalculate grid dimensions
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@left = @options.padding
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@right = @elementWidth - @options.padding
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@top = @options.padding
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@bottom = @elementHeight - @options.padding
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if @options.axes in [true, 'both', 'y']
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yLabelWidths = for gridLine in @grid
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@measureText(@yAxisFormat(gridLine)).width
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@left += Math.max(yLabelWidths...)
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if @options.axes in [true, 'both', 'x']
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bottomOffsets = for i in [0...@data.length]
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@measureText(@data[i].text, -@options.xLabelAngle).height
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@bottom -= Math.max(bottomOffsets...)
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@width = Math.max(1, @right - @left)
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@height = Math.max(1, @bottom - @top)
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@dx = @width / (@xmax - @xmin)
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@dy = @height / (@ymax - @ymin)
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@calc() if @calc
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# Quick translation helpers
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#
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transY: (y) -> @bottom - (y - @ymin) * @dy
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transX: (x) ->
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if @data.length == 1
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(@left + @right) / 2
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else
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@left + (x - @xmin) * @dx
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# Draw it!
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#
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# If you need to re-size your charts, call this method after changing the
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# size of the container element.
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redraw: ->
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@raphael.clear()
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@_calc()
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@drawGrid()
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@drawGoals()
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@drawEvents()
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@draw() if @draw
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# @private
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#
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measureText: (text, angle = 0) ->
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tt = @raphael.text(100, 100, text)
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.attr('font-size', @options.gridTextSize)
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.attr('font-family', @options.gridTextFamily)
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.attr('font-weight', @options.gridTextWeight)
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.rotate(angle)
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ret = tt.getBBox()
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tt.remove()
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ret
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# @private
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#
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yAxisFormat: (label) -> @yLabelFormat(label)
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# @private
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#
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yLabelFormat: (label) ->
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if typeof @options.yLabelFormat is 'function'
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@options.yLabelFormat(label)
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else
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"#{@options.preUnits}#{Morris.commas(label)}#{@options.postUnits}"
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# draw y axis labels, horizontal lines
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#
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drawGrid: ->
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return if @options.grid is false and @options.axes not in [true, 'both', 'y']
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for lineY in @grid
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y = @transY(lineY)
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if @options.axes in [true, 'both', 'y']
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@drawYAxisLabel(@left - @options.padding / 2, y, @yAxisFormat(lineY))
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if @options.grid
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@drawGridLine("M#{@left},#{y}H#{@left + @width}")
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# draw goals horizontal lines
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#
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drawGoals: ->
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for goal, i in @options.goals
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color = @options.goalLineColors[i % @options.goalLineColors.length]
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@drawGoal(goal, color)
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# draw events vertical lines
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drawEvents: ->
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for event, i in @events
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color = @options.eventLineColors[i % @options.eventLineColors.length]
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@drawEvent(event, color)
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drawGoal: (goal, color) ->
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@raphael.path("M#{@left},#{@transY(goal)}H#{@right}")
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.attr('stroke', color)
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.attr('stroke-width', @options.goalStrokeWidth)
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drawEvent: (event, color) ->
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@raphael.path("M#{@transX(event)},#{@bottom}V#{@top}")
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.attr('stroke', color)
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.attr('stroke-width', @options.eventStrokeWidth)
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drawYAxisLabel: (xPos, yPos, text) ->
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@raphael.text(xPos, yPos, text)
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.attr('font-size', @options.gridTextSize)
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.attr('font-family', @options.gridTextFamily)
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.attr('font-weight', @options.gridTextWeight)
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.attr('fill', @options.gridTextColor)
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.attr('text-anchor', 'end')
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drawGridLine: (path) ->
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@raphael.path(path)
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.attr('stroke', @options.gridLineColor)
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.attr('stroke-width', @options.gridStrokeWidth)
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# Range selection
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#
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startRange: (x) ->
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@hover.hide()
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@selectFrom = x
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@selectionRect.attr({ x: x, width: 0 }).show()
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endRange: (x) ->
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if @selectFrom
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start = Math.min(@selectFrom, x)
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end = Math.max(@selectFrom, x)
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@options.rangeSelect.call @el,
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start: @data[@hitTest(start)].x
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end: @data[@hitTest(end)].x
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@selectFrom = null
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resizeHandler: =>
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@timeoutId = null
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@raphael.setSize @el.width(), @el.height()
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@redraw()
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# Parse a date into a javascript timestamp
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#
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#
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Morris.parseDate = (date) ->
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if typeof date is 'number'
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return date
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m = date.match /^(\d+) Q(\d)$/
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n = date.match /^(\d+)-(\d+)$/
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o = date.match /^(\d+)-(\d+)-(\d+)$/
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p = date.match /^(\d+) W(\d+)$/
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q = date.match /^(\d+)-(\d+)-(\d+)[ T](\d+):(\d+)(Z|([+-])(\d\d):?(\d\d))?$/
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r = date.match /^(\d+)-(\d+)-(\d+)[ T](\d+):(\d+):(\d+(\.\d+)?)(Z|([+-])(\d\d):?(\d\d))?$/
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if m
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new Date(
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parseInt(m[1], 10),
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parseInt(m[2], 10) * 3 - 1,
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1).getTime()
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else if n
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new Date(
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parseInt(n[1], 10),
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parseInt(n[2], 10) - 1,
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1).getTime()
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else if o
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new Date(
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parseInt(o[1], 10),
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parseInt(o[2], 10) - 1,
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parseInt(o[3], 10)).getTime()
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else if p
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# calculate number of weeks in year given
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ret = new Date(parseInt(p[1], 10), 0, 1);
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# first thursday in year (ISO 8601 standard)
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if ret.getDay() isnt 4
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ret.setMonth(0, 1 + ((4 - ret.getDay()) + 7) % 7);
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# add weeks
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ret.getTime() + parseInt(p[2], 10) * 604800000
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else if q
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if not q[6]
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# no timezone info, use local
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new Date(
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parseInt(q[1], 10),
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parseInt(q[2], 10) - 1,
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parseInt(q[3], 10),
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parseInt(q[4], 10),
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parseInt(q[5], 10)).getTime()
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else
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# timezone info supplied, use UTC
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offsetmins = 0
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if q[6] != 'Z'
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offsetmins = parseInt(q[8], 10) * 60 + parseInt(q[9], 10)
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offsetmins = 0 - offsetmins if q[7] == '+'
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Date.UTC(
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parseInt(q[1], 10),
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parseInt(q[2], 10) - 1,
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parseInt(q[3], 10),
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parseInt(q[4], 10),
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parseInt(q[5], 10) + offsetmins)
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else if r
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secs = parseFloat(r[6])
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isecs = Math.floor(secs)
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msecs = Math.round((secs - isecs) * 1000)
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if not r[8]
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# no timezone info, use local
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new Date(
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parseInt(r[1], 10),
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parseInt(r[2], 10) - 1,
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parseInt(r[3], 10),
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parseInt(r[4], 10),
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parseInt(r[5], 10),
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isecs,
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msecs).getTime()
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else
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# timezone info supplied, use UTC
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offsetmins = 0
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if r[8] != 'Z'
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offsetmins = parseInt(r[10], 10) * 60 + parseInt(r[11], 10)
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offsetmins = 0 - offsetmins if r[9] == '+'
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Date.UTC(
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parseInt(r[1], 10),
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parseInt(r[2], 10) - 1,
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parseInt(r[3], 10),
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parseInt(r[4], 10),
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parseInt(r[5], 10) + offsetmins,
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isecs,
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msecs)
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else
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new Date(parseInt(date, 10), 0, 1).getTime()
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