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MikeMcl_decimal.js/test/modules/immutability.js
2016-02-04 23:52:10 +00:00

562 lines
8.0 KiB
JavaScript

// Tests immutability of operand[s] for all applicable methods.
// Also tests each Decimal.prototype method against its equivalent Decimal method where applicable.
if (typeof T === 'undefined') require('../setup');
(function () {
T('immutability');
Decimal.config({
precision: 20,
rounding: 4,
toExpNeg: -7,
toExpPos: 21,
minE: -9e15,
maxE: 9e15
});
// Integer [0, 9e15), with each possible number of digits, [1, 16], equally likely.
function randInt() {
return Math.floor(Math.random() * 9e15 / Math.pow(10, Math.random() * 16 | 0));
}
var a, aa, b, bb, i, k, n, t, v, x, y, z;
t = T.assertEqualDecimal;
v = [
0,
NaN,
Infinity,
-Infinity,
0.5,
-0.5,
1,
-1,
(x = Decimal.random()),
x.neg(),
(x = randInt()),
-x,
(x = Decimal.random().plus(randInt())),
x.neg()
];
for (i = 0; i < v.length; i++) {
a = new Decimal(v[i]);
aa = new Decimal(v[i]);
k = (Math.random() * 10 | 0) / 10;
b = k == 0.5 ? new Decimal(a) : a[k < 0.5 ? 'plus' : 'minus'](Decimal.random().plus(randInt()));
bb = new Decimal(b);
n = Math.random() * 20 + 1 | 0;
x = a.absoluteValue();
t(a, aa);
y = a.abs();
t(a, aa);
z = Decimal.abs(a);
t(a, aa);
t(x, y);
t(y, z);
x = a.ceil();
t(a, aa);
y = Decimal.ceil(a);
t(a, aa);
t(x, y);
x = a.comparedTo(b);
t(a, aa);
t(b, bb);
y = a.cmp(b);
t(a, aa);
t(b, bb);
T.assertEqual(x, y);
x = a.cosine();
t(a, aa);
y = a.cos();
t(a, aa);
z = Decimal.cos(a);
t(a, aa);
t(x, y);
t(y, z);
x = a.cubeRoot();
t(a, aa);
y = a.cbrt();
t(a, aa);
z = Decimal.cbrt(a);
t(a, aa);
t(x, y);
t(y, z);
x = a.decimalPlaces();
t(a, aa);
y = a.dp();
t(a, aa);
T.assertEqual(x, y);
x = a.dividedBy(b);
t(a, aa);
t(b, bb);
y = a.div(b);
t(a, aa);
t(b, bb);
z = Decimal.div(a, b);
t(a, aa);
t(b, bb);
t(x, y);
t(y, z);
x = a.dividedToIntegerBy(b);
t(a, aa);
t(b, bb);
y = a.divToInt(b);
t(a, aa);
t(b, bb);
t(x, y);
x = a.equals(b);
t(a, aa);
t(b, bb);
y = a.eq(b);
t(a, aa);
t(b, bb);
T.assertEqual(x, y);
x = a.floor();
t(a, aa);
y = Decimal.floor(a);
t(a, aa);
t(x, y);
x = a.greaterThan(b);
t(a, aa);
t(b, bb);
y = a.gt(b);
t(a, aa);
t(b, bb);
T.assertEqual(x, y);
x = a.greaterThanOrEqualTo(b);
t(a, aa);
t(b, bb);
y = a.gte(b);
t(a, aa);
t(b, bb);
T.assertEqual(x, y);
// Omit these hyperbolic methods if a is large, as they are too time-consuming.
if (a.abs().lt(1000)) {
x = a.hyperbolicCosine();
t(a, aa);
y = a.cosh();
t(a, aa);
z = Decimal.cosh(a);
t(a, aa);
t(x, y);
t(y, z);
x = a.hyperbolicSine();
t(a, aa);
y = a.sinh();
t(a, aa);
z = Decimal.sinh(a);
t(a, aa);
t(x, y);
t(y, z);
x = a.hyperbolicTangent();
t(a, aa);
y = a.tanh();
t(a, aa);
z = Decimal.tanh(a);
t(a, aa);
t(x, y);
t(y, z);
}
// a [-1, 1]
x = a.inverseCosine();
t(a, aa);
y = a.acos();
t(a, aa);
z = Decimal.acos(a);
t(a, aa);
t(x, y);
t(y, z);
// a [1, Infinity]
x = a.inverseHyperbolicCosine();
t(a, aa);
y = a.acosh();
t(a, aa);
z = Decimal.acosh(a);
t(a, aa);
t(x, y);
t(y, z);
x = a.inverseHyperbolicSine();
t(a, aa);
y = a.asinh();
t(a, aa);
z = Decimal.asinh(a);
t(a, aa);
t(x, y);
t(y, z);
// a [-1, 1]
x = a.inverseHyperbolicTangent();
t(a, aa);
y = a.atanh();
t(a, aa);
z = Decimal.atanh(a);
t(a, aa);
t(x, y);
t(y, z);
// a [-1, 1]
x = a.inverseSine();
t(a, aa);
y = a.asin();
t(a, aa);
z = Decimal.asin(a);
t(a, aa);
t(x, y);
t(y, z);
x = a.inverseTangent();
t(a, aa);
y = a.atan();
t(a, aa);
z = Decimal.atan(a);
t(a, aa);
t(x, y);
t(y, z);
a.isFinite();
t(a, aa);
x = a.isInteger();
t(a, aa);
y = a.isInt();
t(a, aa);
T.assertEqual(x, y);
a.isNaN();
t(a, aa);
x = a.isNegative();
t(a, aa);
y = a.isNeg();
t(a, aa);
T.assertEqual(x, y);
x = a.isPositive();
t(a, aa);
y = a.isPos();
t(a, aa);
T.assertEqual(x, y);
a.isZero();
t(a, aa);
x = a.lessThan(b);
t(a, aa);
t(b, bb);
y = a.lt(b);
t(a, aa);
t(b, bb);
T.assertEqual(x, y);
x = a.lessThanOrEqualTo(b);
t(a, aa);
t(b, bb);
y = a.lte(b);
t(a, aa);
t(b, bb);
T.assertEqual(x, y);
x = a.logarithm();
t(a, aa);
y = a.log();
t(a, aa);
z = Decimal.log(a);
t(a, aa);
t(x, y);
t(y, z);
x = a.minus(b);
t(a, aa);
t(b, bb);
y = a.sub(b);
t(a, aa);
t(b, bb);
z = Decimal.sub(a, b);
t(a, aa);
t(b, bb);
t(x, y);
t(y, z);
x = a.modulo(b);
t(a, aa);
t(b, bb);
y = a.mod(b);
t(a, aa);
t(b, bb);
z = Decimal.mod(a, b);
t(a, aa);
t(b, bb);
t(x, y);
t(y, z);
x = a.naturalExponential();
t(a, aa);
y = a.exp();
t(a, aa);
z = Decimal.exp(a);
t(a, aa);
t(x, y);
t(y, z);
x = a.naturalLogarithm();
t(a, aa);
y = a.ln();
t(a, aa);
z = Decimal.ln(a);
t(a, aa);
t(x, y);
t(y, z);
x = a.negated();
t(a, aa);
y = a.neg();
t(a, aa);
t(x, y);
x = a.plus(b);
t(a, aa);
t(b, bb);
y = a.add(b);
t(a, aa);
t(b, bb);
z = Decimal.add(a, b);
t(a, aa);
t(b, bb);
t(x, y);
t(y, z);
x = a.precision();
t(a, aa);
y = a.sd();
t(a, aa);
T.assertEqual(x, y);
x = a.round();
t(a, aa);
y = Decimal.round(a);
t(a, aa);
t(x, y);
x = a.sine();
t(a, aa);
y = a.sin();
t(a, aa);
z = Decimal.sin(a);
t(a, aa);
t(x, y);
t(y, z);
x = a.squareRoot();
t(a, aa);
y = a.sqrt();
t(a, aa);
z = Decimal.sqrt(a);
t(a, aa);
t(x, y);
t(y, z);
x = a.tangent();
t(a, aa);
y = a.tan();
t(a, aa);
z = Decimal.tan(a);
t(a, aa);
t(x, y);
t(y, z);
x = a.times(b);
t(a, aa);
t(b, bb);
y = a.mul(b);
t(a, aa);
t(b, bb);
z = Decimal.mul(a, b);
t(a, aa);
t(b, bb);
t(x, y);
t(y, z);
a.toBinary();
t(a, aa);
x = a.toDecimalPlaces(n);
t(a, aa);
y = a.toDP(n);
t(a, aa);
t(x, y);
a.toExponential(n);
t(a, aa);
a.toFixed(n);
t(a, aa);
a.toFraction();
t(a, aa);
x = a.toHexadecimal();
t(a, aa);
y = a.toHex();
t(a, aa);
T.assertEqual(x, y);
a.toJSON();
t(a, aa);
a.toNearest(b);
t(a, aa);
t(b, bb);
a.toNumber();
t(a, aa);
a.toOctal();
t(a, aa);
x = a.toPower(b);
t(a, aa);
t(b, bb);
y = a.pow(b);
t(a, aa);
t(b, bb);
z = Decimal.pow(a, b);
t(a, aa);
t(b, bb);
t(x, y);
t(y, z);
a.toPrecision(n);
t(a, aa);
x = a.toSignificantDigits(n);
t(a, aa);
y = a.toSD(n);
t(a, aa);
t(x, y);
a.toString();
t(a, aa);
x = a.truncated();
t(a, aa);
y = a.trunc();
t(a, aa);
z = Decimal.trunc(a);
t(a, aa);
t(x, y);
t(y, z);
a.valueOf();
t(a, aa);
Decimal.atan2(a, b);
t(a, aa);
t(b, bb);
Decimal.hypot(a, b);
t(a, aa);
t(b, bb);
x = Decimal.log(a, 10);
t(a, aa);
y = Decimal.log10(a);
t(a, aa);
t(x, y);
x = Decimal.log(a, 2);
t(a, aa);
y = Decimal.log2(a);
t(a, aa);
t(x, y);
Decimal.max(a, b);
t(a, aa);
t(b, bb);
Decimal.min(a, b);
t(a, aa);
t(b, bb);
Decimal.sign(a);
t(a, aa);
}
T.stop();
})();
/*
// All methods tested above except:
Decimal.clone();
Decimal.config();
Decimal.fromJSON();
Decimal.noConflict();
Decimal.random();
*/