//>>built define("dojox/charting/action2d/MoveSlice", ["dojo/_base/connect", "dojo/_base/declare", "./PlotAction", "dojo/fx/easing", "dojox/gfx/matrix", "dojox/gfx/fx", "dojox/lang/functional", "dojox/lang/functional/scan", "dojox/lang/functional/fold"], function(hub, declare, PlotAction, dfe, m, gf, df, dfs, dff){ /*===== dojo.declare("dojox.charting.action2d.__MoveSliceCtorArgs", dojox.charting.action2d.__PlotActionCtorArgs, { // summary: // Additional arguments for highlighting actions. // scale: Number? // The amount to scale the pie slice. Default is 1.05. scale: 1.05, // shift: Number? // The amount in pixels to shift the pie slice. Default is 7. shift: 7 }); var PlotAction = dojox.charting.action2d.PlotAction; =====*/ var DEFAULT_SCALE = 1.05, DEFAULT_SHIFT = 7; // px return declare("dojox.charting.action2d.MoveSlice", PlotAction, { // summary: // Create an action for a pie chart that moves and scales a pie slice. // the data description block for the widget parser defaultParams: { duration: 400, // duration of the action in ms easing: dfe.backOut, // easing for the action scale: DEFAULT_SCALE, // scale of magnification shift: DEFAULT_SHIFT // shift of the slice }, optionalParams: {}, // no optional parameters constructor: function(chart, plot, kwArgs){ // summary: // Create the slice moving action and connect it to the plot. // chart: dojox.charting.Chart // The chart this action belongs to. // plot: String? // The plot this action is attached to. If not passed, "default" is assumed. // kwArgs: dojox.charting.action2d.__MoveSliceCtorArgs? // Optional keyword arguments object for setting parameters. if(!kwArgs){ kwArgs = {}; } this.scale = typeof kwArgs.scale == "number" ? kwArgs.scale : DEFAULT_SCALE; this.shift = typeof kwArgs.shift == "number" ? kwArgs.shift : DEFAULT_SHIFT; this.connect(); }, process: function(o){ // summary: // Process the action on the given object. // o: dojox.gfx.Shape // The object on which to process the slice moving action. if(!o.shape || o.element != "slice" || !(o.type in this.overOutEvents)){ return; } if(!this.angles){ // calculate the running total of slice angles var startAngle = m._degToRad(o.plot.opt.startAngle); if(typeof o.run.data[0] == "number"){ this.angles = df.map(df.scanl(o.run.data, "+", startAngle), "* 2 * Math.PI / this", df.foldl(o.run.data, "+", 0)); }else{ this.angles = df.map(df.scanl(o.run.data, "a + b.y", startAngle), "* 2 * Math.PI / this", df.foldl(o.run.data, "a + b.y", 0)); } } var index = o.index, anim, startScale, endScale, startOffset, endOffset, angle = (this.angles[index] + this.angles[index + 1]) / 2, rotateTo0 = m.rotateAt(-angle, o.cx, o.cy), rotateBack = m.rotateAt( angle, o.cx, o.cy); anim = this.anim[index]; if(anim){ anim.action.stop(true); }else{ this.anim[index] = anim = {}; } if(o.type == "onmouseover"){ startOffset = 0; endOffset = this.shift; startScale = 1; endScale = this.scale; }else{ startOffset = this.shift; endOffset = 0; startScale = this.scale; endScale = 1; } anim.action = gf.animateTransform({ shape: o.shape, duration: this.duration, easing: this.easing, transform: [ rotateBack, {name: "translate", start: [startOffset, 0], end: [endOffset, 0]}, {name: "scaleAt", start: [startScale, o.cx, o.cy], end: [endScale, o.cx, o.cy]}, rotateTo0 ] }); if(o.type == "onmouseout"){ hub.connect(anim.action, "onEnd", this, function(){ delete this.anim[index]; }); } anim.action.play(); }, reset: function(){ delete this.angles; } }); });