skia2/experimental/SkV8Example/gears.js
commit-bot@chromium.org cb336874e4 Start prototyping what DisplayList support will look like.
None of the new codepaths get executed yet since DisplayList doesn't exist, but that will happening in the new few CLs.

BUG=skia:
R=robertphillips@google.com

Author: jcgregorio@google.com

Review URL: https://codereview.chromium.org/183883017

git-svn-id: http://skia.googlecode.com/svn/trunk@13657 2bbb7eff-a529-9590-31e7-b0007b416f81
2014-03-04 19:05:50 +00:00

184 lines
3.8 KiB
JavaScript

var IS_SKV8 = typeof document == "undefined";
var HAS_PATH = typeof Path2D != "undefined";
var HAS_DISPLAY_LIST = typeof DisplayList != "undefined";
var NumTeeth = 24;
var NumGears = 60;
var DeltaTheta = Math.PI/90;
var FaceColors = ["#000099", "#006600", "#990000", "#EEEE00"];
var SideColors = ["#0000FF", "#009900", "#FF0000", "#CCCC00"];
function makeGear(pathLike, r) {
var dT = Math.PI*2/NumTeeth;
var dTq = dT/4;
var outer = r;
var inner = 0.7 * r;
pathLike.moveTo(Math.sin(-2*dTq)*outer, Math.cos(-2*dTq)*outer);
for (var i=0; i<NumTeeth; i+=2) {
pathLike.lineTo(Math.sin(dT*i-dTq)*outer, Math.cos(dT*i-dTq)*outer);
pathLike.lineTo(Math.sin(dT*i+dTq)*inner, Math.cos(dT*i+dTq)*inner);
pathLike.lineTo(Math.sin(dT*(i+1)-dTq)*inner, Math.cos(dT*(i+1)-dTq)*inner);
pathLike.lineTo(Math.sin(dT*(i+1)+dTq)*outer, Math.cos(dT*(i+1)+dTq)*outer);
}
}
function gearPath(r) {
if (HAS_PATH) {
p = new Path2D();
makeGear(p, r)
p.closePath();
return p;
} else {
return null;
}
}
function gearDisplayListStroke(r, color) {
if (HAS_DISPLAY_LIST) {
p = new Path2D();
makeGear(p, r)
p.closePath();
var dl = new DisplayList();
dl.strokeStyle = color;
dl.stroke(p);
dl.finalize()
return dl;
} else {
return null;
}
}
function gearDisplayListFill(r, color) {
if (HAS_DISPLAY_LIST) {
p = new Path2D();
makeGear(p, r)
p.closePath();
var dl = new DisplayList();
dl.fillStyle = color;
dl.fill(p);
dl.finalize()
return dl;
} else {
return null;
}
}
function strokeGear(ctx, gear) {
if (HAS_PATH) {
ctx.stroke(gear.path);
} else {
ctx.beginPath();
makeGear(ctx, gear.r);
ctx.closePath();
ctx.stroke();
}
}
function fillGear(ctx) {
if (HAS_PATH) {
ctx.fill(gear.path);
} else {
ctx.beginPath();
makeGear(ctx, gear.r);
ctx.closePath();
ctx.fill();
}
}
function draw3DGear(ctx, angle, gear) {
ctx.strokeStyle = gear.sideColor;
ctx.fillStyle = gear.faceColor;
ctx.rotate(angle);
strokeGear(ctx, gear);
for (var i=0; i < 20; i++) {
ctx.rotate(-angle);
ctx.translate(0.707, 0.707);
ctx.rotate(angle);
if (HAS_DISPLAY_LIST) {
ctx.draw(gear.gearStroke);
} else {
strokeGear(ctx, gear);
}
}
if (HAS_DISPLAY_LIST) {
ctx.draw(gear.gearFill);
} else {
fillGear(ctx, gear);
}
ctx.rotate(-angle);
}
function draw3DGearAt(ctx, angle, gear) {
ctx.save();
ctx.translate(gear.x, gear.y);
draw3DGear(ctx, angle, gear);
ctx.restore();
}
var onDraw = function() {
var ticks=0;
var rotation = 0;
var gears = [];
for (var i=0; i<NumGears; i++) {
color = Math.floor(Math.random()*FaceColors.length);
r = Math.random()*100+5;
gears.push({
x: Math.random()*500,
y: Math.random()*500,
path: gearPath(r),
gearFill: gearDisplayListFill(r, FaceColors[color]),
gearStroke: gearDisplayListStroke(r, SideColors[color]),
r: r,
faceColor: FaceColors[color],
sideColor: SideColors[color]
});
}
function draw(ctx) {
ctx.resetTransform();
ctx.fillStyle = "#FFFFFF";
ctx.fillRect(0, 0, 499, 499);
rotation += DeltaTheta;
if (rotation >= Math.PI*2) {
rotation = 0;
}
for (var i=0; i < gears.length; i++) {
gear = gears[i];
draw3DGearAt(ctx, rotation, gear);
}
ticks++;
if (IS_SKV8) {
inval();
}
};
function fps() {
console.log(ticks);
ticks = 0;
setTimeout(fps, 1000);
};
setTimeout(fps, 1000);
return draw;
}();
if (!IS_SKV8) {
window.onload = function(){
var canvas = document.getElementById("gears");
var ctx = canvas.getContext("2d");
function drawCallback() {
onDraw(ctx);
setTimeout(drawCallback, 1);
}
setTimeout(drawCallback, 1);
}
}
console.log("HAS_PATH: " + HAS_PATH);