8398c9048d
code was modified slightly, so the code differs from the original downloadable 1.9.5 version
176 lines
5.7 KiB
JavaScript
176 lines
5.7 KiB
JavaScript
dojo.provide("dojox.charting.plot2d.Stacked");
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dojo.require("dojox.charting.plot2d.common");
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dojo.require("dojox.charting.plot2d.Default");
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dojo.require("dojox.lang.functional");
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dojo.require("dojox.lang.functional.sequence");
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dojo.require("dojox.lang.functional.reversed");
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(function(){
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var df = dojox.lang.functional, dc = dojox.charting.plot2d.common,
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purgeGroup = df.lambda("item.purgeGroup()");
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dojo.declare("dojox.charting.plot2d.Stacked", dojox.charting.plot2d.Default, {
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calculateAxes: function(dim){
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var stats = dc.collectStackedStats(this.series);
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this._maxRunLength = stats.hmax;
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this._calc(dim, stats);
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return this;
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},
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render: function(dim, offsets){
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if(this._maxRunLength <= 0){
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return this;
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}
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// stack all values
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var acc = df.repeat(this._maxRunLength, "-> 0", 0);
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for(var i = 0; i < this.series.length; ++i){
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var run = this.series[i];
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for(var j = 0; j < run.data.length; ++j){
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var v = run.data[j];
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if(isNaN(v)){ v = 0; }
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acc[j] += v;
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}
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}
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// draw runs in backwards
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this.dirty = this.isDirty();
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if(this.dirty){
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dojo.forEach(this.series, purgeGroup);
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this.cleanGroup();
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var s = this.group;
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df.forEachRev(this.series, function(item){ item.cleanGroup(s); });
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}
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var t = this.chart.theme, stroke, outline, color, marker, events = this.events(),
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ht = this._hScaler.scaler.getTransformerFromModel(this._hScaler),
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vt = this._vScaler.scaler.getTransformerFromModel(this._vScaler);
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this.resetEvents();
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for(var i = this.series.length - 1; i >= 0; --i){
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var run = this.series[i];
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if(!this.dirty && !run.dirty){ continue; }
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run.cleanGroup();
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var s = run.group,
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lpoly = dojo.map(acc, function(v, i){
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return {
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x: ht(i + 1) + offsets.l,
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y: dim.height - offsets.b - vt(v)
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};
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}, this);
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if(!run.fill || !run.stroke){
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// need autogenerated color
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color = new dojo.Color(t.next("color"));
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}
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var lpath = this.opt.tension ? dc.curve(lpoly, this.opt.tension) : "";
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if(this.opt.areas){
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var apoly = dojo.clone(lpoly);
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var fill = run.fill ? run.fill : dc.augmentFill(t.series.fill, color);
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if(this.opt.tension){
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var p=dc.curve(apoly, this.opt.tension);
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p += " L" + lpoly[lpoly.length - 1].x + "," + (dim.height - offsets.b) +
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" L" + lpoly[0].x + "," + (dim.height - offsets.b) +
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" L" + lpoly[0].x + "," + lpoly[0].y;
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run.dyn.fill = s.createPath(p).setFill(fill).getFill();
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} else {
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apoly.push({x: lpoly[lpoly.length - 1].x, y: dim.height - offsets.b});
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apoly.push({x: lpoly[0].x, y: dim.height - offsets.b});
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apoly.push(lpoly[0]);
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run.dyn.fill = s.createPolyline(apoly).setFill(fill).getFill();
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}
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}
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if(this.opt.lines || this.opt.markers){
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// need a stroke
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stroke = run.stroke ? dc.makeStroke(run.stroke) : dc.augmentStroke(t.series.stroke, color);
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if(run.outline || t.series.outline){
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outline = dc.makeStroke(run.outline ? run.outline : t.series.outline);
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outline.width = 2 * outline.width + stroke.width;
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}
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}
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if(this.opt.markers){
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// need a marker
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marker = run.dyn.marker = run.marker ? run.marker : t.next("marker");
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}
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var frontMarkers, outlineMarkers, shadowMarkers;
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if(this.opt.shadows && stroke){
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var sh = this.opt.shadows, shadowColor = new dojo.Color([0, 0, 0, 0.3]),
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spoly = dojo.map(lpoly, function(c){
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return {x: c.x + sh.dx, y: c.y + sh.dy};
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}),
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shadowStroke = dojo.clone(outline ? outline : stroke);
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shadowStroke.color = shadowColor;
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shadowStroke.width += sh.dw ? sh.dw : 0;
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if(this.opt.lines){
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if(this.opt.tension){
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run.dyn.shadow = s.createPath(dc.curve(spoly, this.opt.tension)).setStroke(shadowStroke).getStroke();
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} else {
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run.dyn.shadow = s.createPolyline(spoly).setStroke(shadowStroke).getStroke();
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}
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}
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if(this.opt.markers){
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shadowMarkers = dojo.map(spoly, function(c){
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return s.createPath("M" + c.x + " " + c.y + " " + marker).
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setStroke(shadowStroke).setFill(shadowColor);
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}, this);
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}
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}
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if(this.opt.lines){
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if(outline){
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if(this.opt.tension){
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run.dyn.outline = s.createPath(lpath).setStroke(outline).getStroke();
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} else {
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run.dyn.outline = s.createPolyline(lpoly).setStroke(outline).getStroke();
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}
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}
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if(this.opt.tension){
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run.dyn.stroke = s.createPath(lpath).setStroke(stroke).getStroke();
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} else {
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run.dyn.stroke = s.createPolyline(lpoly).setStroke(stroke).getStroke();
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}
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}
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if(this.opt.markers){
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frontMarkers = new Array(lpoly.length);
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outlineMarkers = new Array(lpoly.length);
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dojo.forEach(lpoly, function(c, i){
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var path = "M" + c.x + " " + c.y + " " + marker;
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if(outline){
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outlineMarkers[i] = s.createPath(path).setStroke(outline);
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}
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frontMarkers[i] = s.createPath(path).setStroke(stroke).setFill(stroke.color);
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}, this);
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if(events){
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dojo.forEach(frontMarkers, function(s, i){
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var o = {
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element: "marker",
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index: i,
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run: run,
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plot: this,
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hAxis: this.hAxis || null,
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vAxis: this.vAxis || null,
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shape: s,
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outline: outlineMarkers[i] || null,
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shadow: shadowMarkers && shadowMarkers[i] || null,
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cx: lpoly[i].x,
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cy: lpoly[i].y,
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x: i + 1,
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y: run.data[i]
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};
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this._connectEvents(s, o);
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}, this);
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}
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}
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run.dirty = false;
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// update the accumulator
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for(var j = 0; j < run.data.length; ++j){
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var v = run.data[j];
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if(isNaN(v)){ v = 0; }
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acc[j] -= v;
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}
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}
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this.dirty = false;
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return this;
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}
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});
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})();
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