202 lines
6.0 KiB
JavaScript
202 lines
6.0 KiB
JavaScript
// class camera extends THREE.PerspectiveCamera
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var ReplayCamera = function() {
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THREE.PerspectiveCamera.apply(this, arguments);
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this.started = false;
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this.counter = 0;
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this.position = new THREE.Vector3();
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this.target = new THREE.Vector3();
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this.new_position = new THREE.Vector3();
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this.new_target = new THREE.Vector3();
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var id = params.get.id;
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var xhr = new XMLHttpRequest();
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xhr.open("GET", "/prototype/replay_info/" + id, true);
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(function(self) {
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xhr.onreadystatechange = function() {
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if (xhr.readyState == 4 && xhr.status == 200) {
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self.path = JSON.parse(xhr.responseText);
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self.reset();
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self.started = true;
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self.nextEvent();
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}
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}
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})(this);
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xhr.send();
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// Set Position
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this.theta = Math.PI;
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this.phi = Math.PI;
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}
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ReplayCamera.prototype = Object.create(THREE.PerspectiveCamera.prototype);
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ReplayCamera.prototype.constructor = ReplayCamera;
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ReplayCamera.prototype.look = function() {
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this.lookAt(this.target);
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}
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// Update function
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ReplayCamera.prototype.update = function(time) {
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if (this.started) {
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if (this.event.type == 'camera') {
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this.cameraMotion(time);
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} else if (this.event.type == 'previousnext') {
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this.linearMotion(time / 5);
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} else if (this.event.type == 'arrow') {
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this.hermiteMotion(time);
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} else if (this.event.type == 'coin') {
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// Nothing to do
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} else if (this.event.type == 'reset') {
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// Nothing to do
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}
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}
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}
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ReplayCamera.prototype.linearMotion = function(time) {
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var tmp = Tools.sum(Tools.mul(this.old_position, 1-this.t), Tools.mul(this.new_position, this.t));
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this.position.x = tmp.x;
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this.position.y = tmp.y;
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this.position.z = tmp.z;
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this.t += 0.1 * time / 20;
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if (this.t > 1) {
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this.nextEvent();
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}
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}
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ReplayCamera.prototype.cameraMotion = function(time) {
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var tmp = Tools.sum(Tools.mul(this.old_position, 1-this.t), Tools.mul(this.new_position, this.t));
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this.position.x = tmp.x;
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this.position.y = tmp.y;
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this.position.z = tmp.z;
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this.target = Tools.sum(Tools.mul(this.old_target, 1-this.t), Tools.mul(this.new_target, this.t));
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this.t += 1 / (((new Date(this.path[this.counter].time)).getTime() - (new Date(this.path[this.counter-1].time)).getTime()) / 20);
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if (this.t > 1) {
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this.nextEvent();
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}
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}
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ReplayCamera.prototype.hermiteMotion = function(time) {
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var eval = this.hermitePosition.eval(this.t);
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this.position.x = eval.x;
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this.position.y = eval.y;
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this.position.z = eval.z;
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this.target = Tools.sum(this.position, this.hermiteAngles.eval(this.t));
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this.t += 0.01 * time / 20;
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if (this.t > 1) {
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this.nextEvent();
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}
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}
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ReplayCamera.prototype.nextEvent = function() {
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this.counter++;
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// Finished
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if (this.counter >= this.path.length) {
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this.started = false;
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return;
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}
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this.event = this.path[this.counter];
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if (this.event.type == 'camera') {
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this.move(this.event);
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} else if (this.event.type == 'coin') {
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coins[this.event.id].get();
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// Wait a little before launching nextEvent
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(function(self) {
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setTimeout(function() {
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self.nextEvent();
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},500);
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})(this);
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} else if (this.event.type == 'arrow') {
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this.moveHermite(cameras.cameras[this.event.id]);
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} else if (this.event.type == 'reset') {
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this.reset();
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(function (self) {
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setTimeout(function() {
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self.nextEvent();
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},500);
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})(this);
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} else if (this.event.type == 'previousnext') {
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this.move(this.event);
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} else if (this.event.type == 'hovered') {
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this.nextEvent();
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}
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}
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ReplayCamera.prototype.reset = function() {
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this.resetBobomb();
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this.moving = false;
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this.movingHermite = false;
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// this.position.copy(new THREE.Vector3(-8.849933489419644, 9.050627639459208, 0.6192960680432451));
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// this.target.copy(new THREE.Vector3(17.945323228767702, -15.156828589982375, -16.585740412769756));
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// this.anglesFromVectors();
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}
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ReplayCamera.prototype.resetBobomb = function() {
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this.position.copy(new THREE.Vector3(34.51854618261728,10.038879540840306,-21.772598201888613));
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this.target.copy(new THREE.Vector3(-2.593404107644737,8.039712770013185,-6.983870133675925));
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this.anglesFromVectors();
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}
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ReplayCamera.prototype.vectorsFromAngles = function() {
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// Update direction
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this.forward.y = Math.sin(this.phi);
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var cos = Math.cos(this.phi);
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this.forward.z = cos * Math.cos(this.theta);
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this.forward.x = cos * Math.sin(this.theta);
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this.forward.normalize();
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}
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ReplayCamera.prototype.anglesFromVectors = function() {
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// Update phi and theta so that return to reality does not hurt
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var forward = Tools.diff(this.target, this.position);
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forward.normalize();
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this.phi = Math.asin(forward.y);
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// Don't know why this line works... But thanks Thierry-san and
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// Bastien because it seems to work...
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this.theta = Math.atan2(forward.x, forward.z);
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}
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ReplayCamera.prototype.move = function(otherCamera) {
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this.moving = true;
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this.old_target = this.target.clone();
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this.old_position = this.position.clone();
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this.new_target = new THREE.Vector3(otherCamera.target.x, otherCamera.target.y, otherCamera.target.z);
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this.new_position = new THREE.Vector3(otherCamera.position.x, otherCamera.position.y, otherCamera.position.z);
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this.t = 0;
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}
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ReplayCamera.prototype.moveHermite = function(otherCamera) {
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this.movingHermite = true;
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this.t = 0;
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this.hermitePosition = new Hermite.special.Polynom(
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this.position.clone(),
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otherCamera.position.clone(),
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Tools.mul(Tools.diff(otherCamera.target, otherCamera.position).normalize(),4)
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);
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this.hermiteAngles = new Hermite.special.Polynom(
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Tools.diff(this.target, this.position),
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Tools.diff(otherCamera.target, otherCamera.position),
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new THREE.Vector3()
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);
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}
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