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liabru-matter-js/examples/gyro.js

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var Example = Example || {};
Example.gyro = function() {
var Engine = Matter.Engine,
Render = Matter.Render,
Runner = Matter.Runner,
Composites = Matter.Composites,
Common = Matter.Common,
MouseConstraint = Matter.MouseConstraint,
Mouse = Matter.Mouse,
Composite = Matter.Composite,
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Bodies = Matter.Bodies;
// create engine
var engine = Engine.create(),
world = engine.world;
// create renderer
var render = Render.create({
element: document.body,
engine: engine,
options: {
width: 800,
height: 600,
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showAngleIndicator: true
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}
});
Render.run(render);
// create runner
var runner = Runner.create();
Runner.run(runner, engine);
// add bodies
var stack = Composites.stack(20, 20, 10, 5, 0, 0, function(x, y) {
var sides = Math.round(Common.random(1, 8));
// round the edges of some bodies
var chamfer = null;
if (sides > 2 && Common.random() > 0.7) {
chamfer = {
radius: 10
};
}
switch (Math.round(Common.random(0, 1))) {
case 0:
if (Common.random() < 0.8) {
return Bodies.rectangle(x, y, Common.random(25, 50), Common.random(25, 50), { chamfer: chamfer });
} else {
return Bodies.rectangle(x, y, Common.random(80, 120), Common.random(25, 30), { chamfer: chamfer });
}
case 1:
return Bodies.polygon(x, y, sides, Common.random(25, 50), { chamfer: chamfer });
}
});
Composite.add(world, [
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stack,
Bodies.rectangle(400, 0, 800, 50, { isStatic: true }),
Bodies.rectangle(400, 600, 800, 50, { isStatic: true }),
Bodies.rectangle(800, 300, 50, 600, { isStatic: true }),
Bodies.rectangle(0, 300, 50, 600, { isStatic: true })
]);
// add gyro control
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if (typeof window !== 'undefined') {
var updateGravity = function(event) {
var orientation = typeof window.orientation !== 'undefined' ? window.orientation : 0,
gravity = engine.gravity;
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if (orientation === 0) {
gravity.x = Common.clamp(event.gamma, -90, 90) / 90;
gravity.y = Common.clamp(event.beta, -90, 90) / 90;
} else if (orientation === 180) {
gravity.x = Common.clamp(event.gamma, -90, 90) / 90;
gravity.y = Common.clamp(-event.beta, -90, 90) / 90;
} else if (orientation === 90) {
gravity.x = Common.clamp(event.beta, -90, 90) / 90;
gravity.y = Common.clamp(-event.gamma, -90, 90) / 90;
} else if (orientation === -90) {
gravity.x = Common.clamp(-event.beta, -90, 90) / 90;
gravity.y = Common.clamp(event.gamma, -90, 90) / 90;
}
};
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window.addEventListener('deviceorientation', updateGravity);
}
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// add mouse control
var mouse = Mouse.create(render.canvas),
mouseConstraint = MouseConstraint.create(engine, {
mouse: mouse,
constraint: {
stiffness: 0.2,
render: {
visible: false
}
}
});
Composite.add(world, mouseConstraint);
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// keep the mouse in sync with rendering
render.mouse = mouse;
// fit the render viewport to the scene
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Render.lookAt(render, {
min: { x: 0, y: 0 },
max: { x: 800, y: 600 }
});
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// context for MatterTools.Demo
return {
engine: engine,
runner: runner,
render: render,
canvas: render.canvas,
stop: function() {
Matter.Render.stop(render);
Matter.Runner.stop(runner);
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if (typeof window !== 'undefined') {
window.removeEventListener('deviceorientation', updateGravity);
}
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}
};
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};
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Example.gyro.title = 'Gyroscope';
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Example.gyro.for = '>=0.14.2';
if (typeof module !== 'undefined') {
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module.exports = Example.gyro;
}