\n');
}
//-->
// JavaScript Document
var NS4 = (document.layers) ? 1 : 0;
var IE4 = (document.all) ? 1 : 0;
function animation(id) {
this.element = (NS4) ? document[id] : document.all[id].style;
this.active = 0;
this.timer = null;
this.path = null;
this.num = null;
this.name = id + "Var";
eval(this.name + " = this");
this.animate = animate;
this.step = step;
this.show = show;
this.hide = hide;
this.left = left;
this.top = top;
this.moveTo = moveTo;
this.slideBy = slideBy;
this.slideTo = slideTo;
this.circle = circle;
}
function pos(x, y) {
this.x = Math.round(x);
this.y = Math.round(y);
}
function show() {
this.element.visibility = (NS4) ? "show" : "visible";
}
function hide() {
this.element.visibility = (NS4) ? "hide" : "hidden";
}
function left() {
return parseInt(this.element.left);
}
function top() {
return parseInt(this.element.top);
}
function moveTo(x, y) {
//alert('moveTo');
this.element.left = x;
this.element.top = y;
}
function step() {
this.moveTo(this.path[this.num].x, this.path[this.num].y);
if (this.num >= this.path.length - 1) {
clearInterval(this.timer);
this.active = 0;
if (this.statement)
eval(this.statement);
} else {
this.num++;
}
}
function animate(interval) {
if (this.active) return;
this.num = 0;
this.active = 1;
this.timer = setInterval(this.name + ".step()", interval);
}
function slideBy(dx, dy, steps, interval, statement) {
var fx = this.left();
var fy = this.top();
var tx = fx + dx;
var ty = fy + dy;
this.slideTo(tx, ty, steps, interval, statement);
}
function slideTo(tx, ty, steps, interval, statement) {
var fx = this.left();
var fy = this.top();
var dx = tx - fx;
var dy = ty - fy;
var sx = dx / steps;
var sy = dy / steps;
var ar = new Array();
for (var i = 0; i < steps; i++) {
fx += sx;
fy += sy;
ar[i] = new pos(fx, fy);
}
this.path = ar;
this.statement = (statement) ? statement : null;
this.animate(interval);
}
function circle(radius, angle0, angle1, steps, interval, statement) {
var dangle = angle1 - angle0;
var sangle = dangle / steps;
var x = this.left();
var y = this.top();
var cx = x - radius * Math.cos(angle0 * Math.PI / 180);
var cy = y + radius * Math.sin(angle0 * Math.PI / 180);
var ar = new Array();
for (var i = 0; i < steps; i++) {
angle0 += sangle;
x = cx + radius * Math.cos(angle0 * Math.PI / 180);
y = cy - radius * Math.sin(angle0 * Math.PI / 180);
ar[i] = new pos(x, y);
}
this.path = ar;
this.statement = (statement) ? statement : null;
this.animate(interval);
}
function resetAll() {
//alert('fffo');
anim1 = new animation("pusher");
if (!anim1.element) return;
// if (!anim2.element) return;
//alert(anim1);
anim1.moveTo(0, 10);
//anim2.slideBy(-20, 0, 10, 10, null);
}
function start() {
anim1 = new animation("pusher");
//anim2 = new animation("thing");
//alert(anim1.element)
if (!anim1.element) return;
// if (!anim2.element) return;
//alert(anim1);
anim1.slideBy(-20, 0, 10, 10, null);
//anim2.slideBy(-20, 0, 10, 10, null);
}
20th Century Fox - Home Alone Fun Pack
Home Alone Fun Pack
A limited edition box set featuring 'Home Alone' in which young Kevin McCallister has been mistakenly left at home in Chicago when his family rush off to spend Christmas in Paris. Initially he is delighted that he can eat and watch what he likes and go off to his bed any time he chooses. His newfound freedom is shortlived however, when his home becomes the target of two bungling burglars. Young Kevin must protect the house any way he can... 'Home Alone 2 - Lost In New York' in which once again Kevin McCallister is left to fend for himself when his folks accidentally leave him behind in New York. When the two burglars Harry and Marv show up Kevin spends the rest of the Christmas vacation making their lives hell... 'Home Alone 3' in which Alex has chicken pox and is home alone when an international team of criminals invade the area looking for a computer chip. The chip has accidentally found it's way into Alex's bedroom... and 'Home Alone 4' in which Kevin McAllister finds himself 'home alone' in the computer controlled house of his dad's new girlfriend, Natalie.
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