only 4 tests failing
[dygraphs.git] / dygraph-canvas.js
1 /**
2 * @license
3 * Copyright 2006 Dan Vanderkam (danvdk@gmail.com)
4 * MIT-licensed (http://opensource.org/licenses/MIT)
5 */
6
7 /**
8 * @fileoverview Based on PlotKit.CanvasRenderer, but modified to meet the
9 * needs of dygraphs.
10 *
11 * In particular, support for:
12 * - grid overlays
13 * - error bars
14 * - dygraphs attribute system
15 */
16
17 /**
18 * The DygraphCanvasRenderer class does the actual rendering of the chart onto
19 * a canvas. It's based on PlotKit.CanvasRenderer.
20 * @param {Object} element The canvas to attach to
21 * @param {Object} elementContext The 2d context of the canvas (injected so it
22 * can be mocked for testing.)
23 * @param {Layout} layout The DygraphLayout object for this graph.
24 * @constructor
25 */
26
27 /*jshint globalstrict: true */
28 /*global Dygraph:false,RGBColor:false */
29 "use strict";
30
31
32 /**
33 * @constructor
34 *
35 * This gets called when there are "new points" to chart. This is generally the
36 * case when the underlying data being charted has changed. It is _not_ called
37 * in the common case that the user has zoomed or is panning the view.
38 *
39 * The chart canvas has already been created by the Dygraph object. The
40 * renderer simply gets a drawing context.
41 *
42 * @param {Dyraph} dygraph The chart to which this renderer belongs.
43 * @param {Canvas} element The <canvas> DOM element on which to draw.
44 * @param {CanvasRenderingContext2D} elementContext The drawing context.
45 * @param {DygraphLayout} layout The chart's DygraphLayout object.
46 *
47 * TODO(danvk): remove the elementContext property.
48 */
49 var DygraphCanvasRenderer = function(dygraph, element, elementContext, layout) {
50 this.dygraph_ = dygraph;
51
52 this.layout = layout;
53 this.element = element;
54 this.elementContext = elementContext;
55 this.container = this.element.parentNode;
56
57 this.height = this.element.height;
58 this.width = this.element.width;
59
60 // --- check whether everything is ok before we return
61 if (!this.isIE && !(DygraphCanvasRenderer.isSupported(this.element)))
62 throw "Canvas is not supported.";
63
64 // internal state
65 this.area = layout.getPlotArea();
66 this.container.style.position = "relative";
67 this.container.style.width = this.width + "px";
68
69 // Set up a clipping area for the canvas (and the interaction canvas).
70 // This ensures that we don't overdraw.
71 if (this.dygraph_.isUsingExcanvas_) {
72 this._createIEClipArea();
73 } else {
74 // on Android 3 and 4, setting a clipping area on a canvas prevents it from
75 // displaying anything.
76 if (!Dygraph.isAndroid()) {
77 var ctx = this.dygraph_.canvas_ctx_;
78 ctx.beginPath();
79 ctx.rect(this.area.x, this.area.y, this.area.w, this.area.h);
80 ctx.clip();
81
82 ctx = this.dygraph_.hidden_ctx_;
83 ctx.beginPath();
84 ctx.rect(this.area.x, this.area.y, this.area.w, this.area.h);
85 ctx.clip();
86 }
87 }
88 };
89
90 DygraphCanvasRenderer.prototype.attr_ = function(x) {
91 return this.dygraph_.attr_(x);
92 };
93
94 /**
95 * Clears out all chart content and DOM elements.
96 * This is called immediately before render() on every frame, including
97 * during zooms and pans.
98 * @private
99 */
100 DygraphCanvasRenderer.prototype.clear = function() {
101 var context;
102 if (this.isIE) {
103 // VML takes a while to start up, so we just poll every this.IEDelay
104 try {
105 if (this.clearDelay) {
106 this.clearDelay.cancel();
107 this.clearDelay = null;
108 }
109 context = this.elementContext;
110 }
111 catch (e) {
112 // TODO(danvk): this is broken, since MochiKit.Async is gone.
113 // this.clearDelay = MochiKit.Async.wait(this.IEDelay);
114 // this.clearDelay.addCallback(bind(this.clear, this));
115 return;
116 }
117 }
118
119 context = this.elementContext;
120 context.clearRect(0, 0, this.width, this.height);
121 };
122
123 /**
124 * Checks whether the browser supports the <canvas> tag.
125 * @private
126 */
127 DygraphCanvasRenderer.isSupported = function(canvasName) {
128 var canvas = null;
129 try {
130 if (typeof(canvasName) == 'undefined' || canvasName === null) {
131 canvas = document.createElement("canvas");
132 } else {
133 canvas = canvasName;
134 }
135 canvas.getContext("2d");
136 }
137 catch (e) {
138 var ie = navigator.appVersion.match(/MSIE (\d\.\d)/);
139 var opera = (navigator.userAgent.toLowerCase().indexOf("opera") != -1);
140 if ((!ie) || (ie[1] < 6) || (opera))
141 return false;
142 return true;
143 }
144 return true;
145 };
146
147 /**
148 * This method is responsible for drawing everything on the chart, including
149 * lines, error bars, fills and axes.
150 * It is called immediately after clear() on every frame, including during pans
151 * and zooms.
152 * @private
153 */
154 DygraphCanvasRenderer.prototype.render = function() {
155 this._renderLineChart();
156 };
157
158 DygraphCanvasRenderer.prototype._createIEClipArea = function() {
159 var className = 'dygraph-clip-div';
160 var graphDiv = this.dygraph_.graphDiv;
161
162 // Remove old clip divs.
163 for (var i = graphDiv.childNodes.length-1; i >= 0; i--) {
164 if (graphDiv.childNodes[i].className == className) {
165 graphDiv.removeChild(graphDiv.childNodes[i]);
166 }
167 }
168
169 // Determine background color to give clip divs.
170 var backgroundColor = document.bgColor;
171 var element = this.dygraph_.graphDiv;
172 while (element != document) {
173 var bgcolor = element.currentStyle.backgroundColor;
174 if (bgcolor && bgcolor != 'transparent') {
175 backgroundColor = bgcolor;
176 break;
177 }
178 element = element.parentNode;
179 }
180
181 function createClipDiv(area) {
182 if (area.w === 0 || area.h === 0) {
183 return;
184 }
185 var elem = document.createElement('div');
186 elem.className = className;
187 elem.style.backgroundColor = backgroundColor;
188 elem.style.position = 'absolute';
189 elem.style.left = area.x + 'px';
190 elem.style.top = area.y + 'px';
191 elem.style.width = area.w + 'px';
192 elem.style.height = area.h + 'px';
193 graphDiv.appendChild(elem);
194 }
195
196 var plotArea = this.area;
197 // Left side
198 createClipDiv({
199 x:0, y:0,
200 w:plotArea.x,
201 h:this.height
202 });
203
204 // Top
205 createClipDiv({
206 x: plotArea.x, y: 0,
207 w: this.width - plotArea.x,
208 h: plotArea.y
209 });
210
211 // Right side
212 createClipDiv({
213 x: plotArea.x + plotArea.w, y: 0,
214 w: this.width-plotArea.x - plotArea.w,
215 h: this.height
216 });
217
218 // Bottom
219 createClipDiv({
220 x: plotArea.x,
221 y: plotArea.y + plotArea.h,
222 w: this.width - plotArea.x,
223 h: this.height - plotArea.h - plotArea.y
224 });
225 };
226
227
228 /**
229 * Returns a predicate to be used with an iterator, which will
230 * iterate over points appropriately, depending on whether
231 * connectSeparatedPoints is true. When it's false, the predicate will
232 * skip over points with missing yVals.
233 */
234 DygraphCanvasRenderer._getIteratorPredicate = function(connectSeparatedPoints) {
235 return connectSeparatedPoints
236 ? DygraphCanvasRenderer._predicateThatSkipsEmptyPoints
237 : null;
238 };
239
240 DygraphCanvasRenderer._predicateThatSkipsEmptyPoints =
241 function(array, idx) {
242 return array[idx].yval !== null;
243 };
244
245 /**
246 *
247 * @private
248 */
249 DygraphCanvasRenderer.prototype._drawStyledLine = function(
250 ctx, i, setName, color, strokeWidth, strokePattern, drawPoints,
251 drawPointCallback, pointSize) {
252 // TODO(konigsberg): Compute attributes outside this method call.
253 var stepPlot = this.attr_("stepPlot");
254 var firstIndexInSet = this.layout.setPointsOffsets[i];
255 var setLength = this.layout.setPointsLengths[i];
256 var points = this.layout.points;
257 if (!Dygraph.isArrayLike(strokePattern)) {
258 strokePattern = null;
259 }
260 var drawGapPoints = this.dygraph_.attr_('drawGapEdgePoints', setName);
261
262 var iter = Dygraph.createIterator(points, firstIndexInSet, setLength,
263 DygraphCanvasRenderer._getIteratorPredicate(
264 this.attr_("connectSeparatedPoints")));
265
266 var stroking = strokePattern && (strokePattern.length >= 2);
267
268 ctx.save();
269 if (stroking) {
270 ctx.installPattern(strokePattern);
271 }
272
273 var pointsOnLine = this._drawSeries(ctx, iter, strokeWidth, pointSize, drawPoints, drawGapPoints, stepPlot, color);
274 this._drawPointsOnLine(ctx, pointsOnLine, drawPointCallback, setName, color, pointSize);
275
276 if (stroking) {
277 ctx.uninstallPattern();
278 }
279
280 ctx.restore();
281 };
282
283 DygraphCanvasRenderer.prototype._drawPointsOnLine = function(ctx, pointsOnLine, drawPointCallback, setName, color, pointSize) {
284 for (var idx = 0; idx < pointsOnLine.length; idx++) {
285 var cb = pointsOnLine[idx];
286 ctx.save();
287 drawPointCallback(
288 this.dygraph_, setName, ctx, cb[0], cb[1], color, pointSize);
289 ctx.restore();
290 }
291 }
292
293 DygraphCanvasRenderer.prototype._drawSeries = function(
294 ctx, iter, strokeWidth, pointSize, drawPoints, drawGapPoints,
295 stepPlot, color) {
296
297 var prevCanvasX = null;
298 var prevCanvasY = null;
299 var nextCanvasY = null;
300 var isIsolated; // true if this point is isolated (no line segments)
301 var point; // the point being processed in the while loop
302 var pointsOnLine = []; // Array of [canvasx, canvasy] pairs.
303 var first = true; // the first cycle through the while loop
304
305 ctx.beginPath();
306 ctx.strokeStyle = color;
307 ctx.lineWidth = strokeWidth;
308
309 for (var i = iter.start_; i < iter.end_; i++) {
310 // while (iter.hasNext) {
311 point = iter.array_[i];
312 if (iter.predicate_) {
313 while (i < iter.end_ && !iter.predicate_(iter.array_, i)) {
314 i++;
315 }
316 if (i == iter.end_) break;
317 }
318
319 if (point.canvasy === null || point.canvasy != point.canvasy) {
320 if (stepPlot && prevCanvasX !== null) {
321 // Draw a horizontal line to the start of the missing data
322 ctx.moveTo(prevX, prevY);
323 ctx.lineTo(point.canvasx, prevY);
324 }
325 prevCanvasX = prevCanvasY = null;
326 } else {
327 isIsolated = false;
328 if (drawGapPoints || !prevCanvasX) {
329 // nextCanvasY = iter.hasNext ? iter.peek.canvasy : null;
330 // var next_i = i + 1;
331 // while (next_i < iter.end_ && (!iter.predicate_ || !iter.predicate_(iter.array_, next_i))) {
332 // next_i++;
333 // }
334 iter.nextIdx_ = i;
335 var peek = iter.next();
336 nextCanvasY = iter.hasNext ? iter.peek.canvasy : null;
337 // nextCanvasY = next_i < iter.end_ ? iter.array_[next_i].canvasy : null;
338
339 // TODO: we calculate isNullOrNaN for this point, and the next, and then,
340 // when we iterate, test for isNullOrNaN again. Why bother?
341 var isNextCanvasYNullOrNaN = nextCanvasY === null ||
342 nextCanvasY != nextCanvasY;
343 isIsolated = (!prevCanvasX && isNextCanvasYNullOrNaN);
344 if (drawGapPoints) {
345 // Also consider a point to be "isolated" if it's adjacent to a
346 // null point, excluding the graph edges.
347 if ((!first && !prevCanvasX) ||
348 (iter.hasNext && isNextCanvasYNullOrNaN)) {
349 isIsolated = true;
350 }
351 }
352 }
353
354 if (prevCanvasX !== null) {
355 if (strokeWidth) {
356 if (stepPlot) {
357 ctx.moveTo(prevCanvasX, prevCanvasY);
358 ctx.lineTo(point.canvasx, prevCanvasY);
359 prevCanvasX = point.canvasx;
360 }
361 ctx.moveTo(prevCanvasX, prevCanvasY);
362 ctx.lineTo(point.canvasx, point.canvasy);
363 }
364 }
365 if (drawPoints || isIsolated) {
366 pointsOnLine.push([point.canvasx, point.canvasy]);
367 }
368 prevCanvasX = point.canvasx;
369 prevCanvasY = point.canvasy;
370 }
371 first = false;
372 }
373 ctx.stroke();
374 return pointsOnLine;
375 };
376
377 DygraphCanvasRenderer.prototype._drawLine = function(ctx, i) {
378 var setNames = this.layout.setNames;
379 var setName = setNames[i];
380
381 var strokeWidth = this.dygraph_.attr_("strokeWidth", setName);
382 var borderWidth = this.dygraph_.attr_("strokeBorderWidth", setName);
383 var drawPointCallback = this.dygraph_.attr_("drawPointCallback", setName) ||
384 Dygraph.Circles.DEFAULT;
385
386 if (borderWidth && strokeWidth) {
387 this._drawStyledLine(ctx, i, setName,
388 this.dygraph_.attr_("strokeBorderColor", setName),
389 strokeWidth + 2 * borderWidth,
390 this.dygraph_.attr_("strokePattern", setName),
391 this.dygraph_.attr_("drawPoints", setName),
392 drawPointCallback,
393 this.dygraph_.attr_("pointSize", setName));
394 }
395
396 this._drawStyledLine(ctx, i, setName,
397 this.colors[setName],
398 strokeWidth,
399 this.dygraph_.attr_("strokePattern", setName),
400 this.dygraph_.attr_("drawPoints", setName),
401 drawPointCallback,
402 this.dygraph_.attr_("pointSize", setName));
403 };
404
405 /**
406 * Actually draw the lines chart, including error bars.
407 * @private
408 */
409 DygraphCanvasRenderer.prototype._renderLineChart = function() {
410 var ctx = this.elementContext;
411 var errorBars = this.attr_("errorBars") || this.attr_("customBars");
412 var fillGraph = this.attr_("fillGraph");
413 var i;
414
415 var setNames = this.layout.setNames;
416 var setCount = setNames.length;
417
418 this.colors = this.dygraph_.colorsMap_;
419
420 // Update Points
421 // TODO(danvk): here
422 //
423 // TODO(bhs): this loop is a hot-spot for high-point-count charts. These
424 // transformations can be pushed into the canvas via linear transformation
425 // matrices.
426 var points = this.layout.points;
427 for (i = points.length; i--;) {
428 var point = points[i];
429 point.canvasx = this.area.w * point.x + this.area.x;
430 point.canvasy = this.area.h * point.y + this.area.y;
431 }
432
433 // Draw any "fills", i.e. error bars or the filled area under a series.
434 // These must all be drawn before any lines, so that the main lines of a
435 // series are drawn on top.
436 if (errorBars) {
437 if (fillGraph) {
438 this.dygraph_.warn("Can't use fillGraph option with error bars");
439 }
440
441 ctx.save();
442 this.drawErrorBars_(points);
443 ctx.restore();
444 } else if (fillGraph) {
445 ctx.save();
446 this.drawFillBars_(points);
447 ctx.restore();
448 }
449
450 // Drawing the lines.
451 for (i = 0; i < setCount; i += 1) {
452 this._drawLine(ctx, i);
453 }
454 };
455
456 /**
457 * Draws the shaded error bars/confidence intervals for each series.
458 * This happens before the center lines are drawn, since the center lines
459 * need to be drawn on top of the error bars for all series.
460 *
461 * @private
462 */
463 DygraphCanvasRenderer.prototype.drawErrorBars_ = function(points) {
464 var ctx = this.elementContext;
465 var setNames = this.layout.setNames;
466 var setCount = setNames.length;
467 var fillAlpha = this.attr_('fillAlpha');
468 var stepPlot = this.attr_('stepPlot');
469
470 var newYs;
471
472 for (var i = 0; i < setCount; i++) {
473 var setName = setNames[i];
474 var axis = this.dygraph_.axisPropertiesForSeries(setName);
475 var color = this.colors[setName];
476
477 var firstIndexInSet = this.layout.setPointsOffsets[i];
478 var setLength = this.layout.setPointsLengths[i];
479
480 var iter = Dygraph.createIterator(points, firstIndexInSet, setLength,
481 DygraphCanvasRenderer._getIteratorPredicate(
482 this.attr_("connectSeparatedPoints")));
483
484 // setup graphics context
485 var prevX = NaN;
486 var prevY = NaN;
487 var prevYs = [-1, -1];
488 var yscale = axis.yscale;
489 // should be same color as the lines but only 15% opaque.
490 var rgb = new RGBColor(color);
491 var err_color =
492 'rgba(' + rgb.r + ',' + rgb.g + ',' + rgb.b + ',' + fillAlpha + ')';
493 ctx.fillStyle = err_color;
494 ctx.beginPath();
495 while (iter.hasNext) {
496 var point = iter.next();
497 if (!Dygraph.isOK(point.y)) {
498 prevX = NaN;
499 continue;
500 }
501
502 // TODO(danvk): here
503 if (stepPlot) {
504 newYs = [ point.y_bottom, point.y_top ];
505 prevY = point.y;
506 } else {
507 newYs = [ point.y_bottom, point.y_top ];
508 }
509 newYs[0] = this.area.h * newYs[0] + this.area.y;
510 newYs[1] = this.area.h * newYs[1] + this.area.y;
511 if (!isNaN(prevX)) {
512 if (stepPlot) {
513 ctx.moveTo(prevX, newYs[0]);
514 } else {
515 ctx.moveTo(prevX, prevYs[0]);
516 }
517 ctx.lineTo(point.canvasx, newYs[0]);
518 ctx.lineTo(point.canvasx, newYs[1]);
519 if (stepPlot) {
520 ctx.lineTo(prevX, newYs[1]);
521 } else {
522 ctx.lineTo(prevX, prevYs[1]);
523 }
524 ctx.closePath();
525 }
526 prevYs = newYs;
527 prevX = point.canvasx;
528 }
529 ctx.fill();
530 }
531 };
532
533 /**
534 * Draws the shaded regions when "fillGraph" is set. Not to be confused with
535 * error bars.
536 *
537 * @private
538 */
539 DygraphCanvasRenderer.prototype.drawFillBars_ = function(points) {
540 var ctx = this.elementContext;
541 var setNames = this.layout.setNames;
542 var setCount = setNames.length;
543 var fillAlpha = this.attr_('fillAlpha');
544 var stepPlot = this.attr_('stepPlot');
545 var stackedGraph = this.attr_("stackedGraph");
546
547 var baseline = {}; // for stacked graphs: baseline for filling
548 var currBaseline;
549
550 // process sets in reverse order (needed for stacked graphs)
551 for (var i = setCount - 1; i >= 0; i--) {
552 var setName = setNames[i];
553 var color = this.colors[setName];
554 var axis = this.dygraph_.axisPropertiesForSeries(setName);
555 var axisY = 1.0 + axis.minyval * axis.yscale;
556 if (axisY < 0.0) axisY = 0.0;
557 else if (axisY > 1.0) axisY = 1.0;
558 axisY = this.area.h * axisY + this.area.y;
559 var firstIndexInSet = this.layout.setPointsOffsets[i];
560 var setLength = this.layout.setPointsLengths[i];
561
562 var iter = Dygraph.createIterator(points, firstIndexInSet, setLength,
563 DygraphCanvasRenderer._getIteratorPredicate(
564 this.attr_("connectSeparatedPoints")));
565
566 // setup graphics context
567 var prevX = NaN;
568 var prevYs = [-1, -1];
569 var newYs;
570 var yscale = axis.yscale;
571 // should be same color as the lines but only 15% opaque.
572 var rgb = new RGBColor(color);
573 var err_color =
574 'rgba(' + rgb.r + ',' + rgb.g + ',' + rgb.b + ',' + fillAlpha + ')';
575 ctx.fillStyle = err_color;
576 ctx.beginPath();
577 while(iter.hasNext) {
578 var point = iter.next();
579 if (!Dygraph.isOK(point.y)) {
580 prevX = NaN;
581 continue;
582 }
583 if (stackedGraph) {
584 currBaseline = baseline[point.canvasx];
585 var lastY;
586 if (currBaseline === undefined) {
587 lastY = axisY;
588 } else {
589 if(stepPlot) {
590 lastY = currBaseline[0];
591 } else {
592 lastY = currBaseline;
593 }
594 }
595 newYs = [ point.canvasy, lastY ];
596
597 if(stepPlot) {
598 // Step plots must keep track of the top and bottom of
599 // the baseline at each point.
600 if(prevYs[0] === -1) {
601 baseline[point.canvasx] = [ point.canvasy, axisY ];
602 } else {
603 baseline[point.canvasx] = [ point.canvasy, prevYs[0] ];
604 }
605 } else {
606 baseline[point.canvasx] = point.canvasy;
607 }
608
609 } else {
610 newYs = [ point.canvasy, axisY ];
611 }
612 if (!isNaN(prevX)) {
613 ctx.moveTo(prevX, prevYs[0]);
614
615 if (stepPlot) {
616 ctx.lineTo(point.canvasx, prevYs[0]);
617 if(currBaseline) {
618 // Draw to the bottom of the baseline
619 ctx.lineTo(point.canvasx, currBaseline[1]);
620 } else {
621 ctx.lineTo(point.canvasx, newYs[1]);
622 }
623 } else {
624 ctx.lineTo(point.canvasx, newYs[0]);
625 ctx.lineTo(point.canvasx, newYs[1]);
626 }
627
628 ctx.lineTo(prevX, prevYs[1]);
629 ctx.closePath();
630 }
631 prevYs = newYs;
632 prevX = point.canvasx;
633 }
634 ctx.fill();
635 }
636 };