rhino1.7.7.testsrc.tests.ecma.Expressions.11.4.8.js Maven / Gradle / Ivy
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Rhino is an open-source implementation of JavaScript written entirely in Java. It is typically
embedded into Java applications to provide scripting to end users.
/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
/* This Source Code Form is subject to the terms of the Mozilla Public
* License, v. 2.0. If a copy of the MPL was not distributed with this
* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
gTestfile = '11.4.8.js';
/**
File Name: 11.4.8.js
ECMA Section: 11.4.8 Bitwise NOT Operator
Description: flip bits up to 32 bits
no special cases
Author: [email protected]
Date: 7 july 1997
Data File Fields:
VALUE value passed as an argument to the ~ operator
E_RESULT expected return value of ~ VALUE;
Static variables:
none
*/
var SECTION = "11.4.8";
var VERSION = "ECMA_1";
startTest();
writeHeaderToLog( SECTION + " Bitwise Not operator");
for ( var i = 0; i < 35; i++ ) {
var p = Math.pow(2,i);
new TestCase( SECTION, "~"+p, Not(p), ~p );
}
for ( i = 0; i < 35; i++ ) {
var p = -Math.pow(2,i);
new TestCase( SECTION, "~"+p, Not(p), ~p );
}
test();
function ToInteger( n ) {
n = Number( n );
var sign = ( n < 0 ) ? -1 : 1;
if ( n != n ) {
return 0;
}
if ( Math.abs( n ) == 0 || Math.abs( n ) == Number.POSITIVE_INFINITY ) {
return n;
}
return ( sign * Math.floor(Math.abs(n)) );
}
function ToInt32( n ) {
n = Number( n );
var sign = ( n < 0 ) ? -1 : 1;
if ( Math.abs( n ) == 0 || Math.abs( n ) == Number.POSITIVE_INFINITY) {
return 0;
}
n = (sign * Math.floor( Math.abs(n) )) % Math.pow(2,32);
n = ( n >= Math.pow(2,31) ) ? n - Math.pow(2,32) : n;
return ( n );
}
function ToUint32( n ) {
n = Number( n );
var sign = ( n < 0 ) ? -1 : 1;
if ( Math.abs( n ) == 0 || Math.abs( n ) == Number.POSITIVE_INFINITY) {
return 0;
}
n = sign * Math.floor( Math.abs(n) )
n = n % Math.pow(2,32);
if ( n < 0 ){
n += Math.pow(2,32);
}
return ( n );
}
function ToUint16( n ) {
var sign = ( n < 0 ) ? -1 : 1;
if ( Math.abs( n ) == 0 || Math.abs( n ) == Number.POSITIVE_INFINITY) {
return 0;
}
n = ( sign * Math.floor( Math.abs(n) ) ) % Math.pow(2,16);
if (n <0) {
n += Math.pow(2,16);
}
return ( n );
}
function Mask( b, n ) {
b = ToUint32BitString( b );
b = b.substring( b.length - n );
b = ToUint32Decimal( b );
return ( b );
}
function ToUint32BitString( n ) {
var b = "";
for ( var p = 31; p >=0; p-- ) {
if ( n >= Math.pow(2,p) ) {
b += "1";
n -= Math.pow(2,p);
} else {
b += "0";
}
}
return b;
}
function ToInt32BitString( n ) {
var b = "";
var sign = ( n < 0 ) ? -1 : 1;
b += ( sign == 1 ) ? "0" : "1";
for ( var p = 30; p >=0; p-- ) {
if ( (sign == 1 ) ? sign * n >= Math.pow(2,p) : sign * n > Math.pow(2,p) ) {
b += ( sign == 1 ) ? "1" : "0";
n -= sign * Math.pow( 2, p );
} else {
b += ( sign == 1 ) ? "0" : "1";
}
}
return b;
}
function ToInt32Decimal( bin ) {
var r = 0;
var sign;
if ( Number(bin.charAt(0)) == 0 ) {
sign = 1;
r = 0;
} else {
sign = -1;
r = -(Math.pow(2,31));
}
for ( var j = 0; j < 31; j++ ) {
r += Math.pow( 2, j ) * Number(bin.charAt(31-j));
}
return r;
}
function ToUint32Decimal( bin ) {
var r = 0;
for ( var l = bin.length; l < 32; l++ ) {
bin = "0" + bin;
}
for ( var j = 0; j < 31; j++ ) {
r += Math.pow( 2, j ) * Number(bin.charAt(31-j));
}
return r;
}
function Not( n ) {
n = ToInt32(n);
n = ToInt32BitString(n);
var r = "";
for( var l = 0; l < n.length; l++ ) {
r += ( n.charAt(l) == "0" ) ? "1" : "0";
}
n = ToInt32Decimal(r);
return n;
}
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