// test larger var assert = require('assert'), math = require('../../../index'), bignumber = math.bignumber, complex = math.complex, matrix = math.matrix, sparse = math.sparse, unit = math.unit, larger = math.larger; describe('larger', function() { it('should compare two numbers correctly', function() { assert.equal(larger(2, 3), false); assert.equal(larger(2, 2), false); assert.equal(larger(2, 1), true); assert.equal(larger(0, 0), false); assert.equal(larger(-2, 2), false); assert.equal(larger(-2, -3), true); assert.equal(larger(-3, -2), false); }); it('should compare two floating point numbers correctly', function() { // Infinity assert.equal(larger(Number.POSITIVE_INFINITY, Number.POSITIVE_INFINITY), false); assert.equal(larger(Number.NEGATIVE_INFINITY, Number.NEGATIVE_INFINITY), false); assert.equal(larger(Number.POSITIVE_INFINITY, Number.NEGATIVE_INFINITY), true); assert.equal(larger(Number.NEGATIVE_INFINITY, Number.POSITIVE_INFINITY), false); assert.equal(larger(Number.POSITIVE_INFINITY, 2.0), true); assert.equal(larger(2.0, Number.POSITIVE_INFINITY), false); assert.equal(larger(Number.NEGATIVE_INFINITY, 2.0), false); assert.equal(larger(2.0, Number.NEGATIVE_INFINITY), true); // floating point numbers assert.equal(larger(0.3 - 0.2, 0.1), false); }); it('should compare two booleans', function() { assert.equal(larger(true, true), false); assert.equal(larger(true, false), true); assert.equal(larger(false, true), false); assert.equal(larger(false, false), false); }); it('should compare mixed numbers and booleans', function() { assert.equal(larger(2, true), true); assert.equal(larger(0, true), false); assert.equal(larger(true, 2), false); assert.equal(larger(false, 2), false); }); it('should compare mixed numbers and null', function() { assert.equal(larger(1, null), true); assert.equal(larger(0, null), false); assert.equal(larger(null, 1), false); assert.equal(larger(null, 0), false); }); it('should compare bignumbers', function() { assert.equal(larger(bignumber(2), bignumber(3)), false); assert.equal(larger(bignumber(2), bignumber(2)), false); assert.equal(larger(bignumber(3), bignumber(2)), true); assert.equal(larger(bignumber(0), bignumber(0)), false); assert.equal(larger(bignumber(-2), bignumber(2)), false); }); it('should compare mixed numbers and bignumbers', function() { assert.equal(larger(bignumber(2), 3), false); assert.equal(larger(2, bignumber(2)), false); assert.throws(function () {larger(1/3, bignumber(1).div(3));}, /Cannot implicitly convert a number with >15 significant digits to BigNumber/); assert.throws(function () {larger(bignumber(1).div(3), 1/3);}, /Cannot implicitly convert a number with >15 significant digits to BigNumber/); }); it('should compare mixed booleans and bignumbers', function() { assert.equal(larger(bignumber(0.1), true), false); assert.equal(larger(bignumber(1), true), false); assert.equal(larger(bignumber(1), false), true); assert.equal(larger(false, bignumber(0)), false); assert.equal(larger(true, bignumber(0)), true); }); it('should compare two fractions', function() { assert.strictEqual(larger(math.fraction(3), math.fraction(2)).valueOf(), true); assert.strictEqual(larger(math.fraction(2), math.fraction(3)).valueOf(), false); assert.strictEqual(larger(math.fraction(3), math.fraction(3)).valueOf(), false); }); it('should compare mixed fractions and numbers', function() { assert.strictEqual(larger(1, math.fraction(1,3)), true); assert.strictEqual(larger(math.fraction(2), 2), false); }); it('should add two measures of the same unit', function() { assert.equal(larger(unit('100cm'), unit('10inch')), true); assert.equal(larger(unit('99cm'), unit('1m')), false); //assert.equal(larger(unit('100cm'), unit('1m')), false); // dangerous, round-off errors assert.equal(larger(unit('101cm'), unit('1m')), true); }); it('should apply configuration option epsilon', function() { var mymath = math.create(); assert.equal(mymath.larger(1, 0.991), true); assert.equal(mymath.larger(math.bignumber(1), math.bignumber(0.991)), true); mymath.config({epsilon: 1e-2}); assert.equal(mymath.larger(1, 0.991), false); assert.equal(mymath.larger(math.bignumber(1), math.bignumber(0.991)), false); }); it('should throw an error if comparing a unit with a number', function() { assert.throws(function () {larger(unit('100cm'), 22);}); }); it('should throw an error for two measures of different units', function() { assert.throws(function () {larger(math.unit(5, 'km'), math.unit(100, 'gram'));}); }); it('should throw an error if comparing a unit with a bignumber', function() { assert.throws(function () {larger(unit('100cm'), bignumber(22));}); }); it('should perform lexical comparison for two strings', function() { assert.equal(larger('0', 0), false); assert.equal(larger('abd', 'abc'), true); assert.equal(larger('abc', 'abc'), false); assert.equal(larger('abc', 'abd'), false); }); describe('Array', function () { it('should compare array - scalar', function () { assert.deepEqual(larger('B', ['A', 'B', 'C']), [true, false, false]); assert.deepEqual(larger(['A', 'B', 'C'], 'B'), [false, false, true]); }); it('should compare array - array', function () { assert.deepEqual(larger([[1, 2, 0], [-1, 0, 2]], [[1, -1, 0], [-1, 1, 0]]), [[false, true, false], [false, false, true]]); }); it('should compare array - dense matrix', function () { assert.deepEqual(larger([[1, 2, 0], [-1, 0, 2]], matrix([[1, -1, 0], [-1, 1, 0]])), matrix([[false, true, false], [false, false, true]])); }); it('should compare array - sparse matrix', function () { assert.deepEqual(larger([[1, 2, 0], [-1, 0, 2]], sparse([[1, -1, 0], [-1, 1, 0]])), matrix([[false, true, false], [false, false, true]])); }); it('should throw an error if arrays have different sizes', function() { assert.throws(function () {larger([1,4,5], [3,4]);}); }); }); describe('DenseMatrix', function () { it('should compare dense matrix - scalar', function () { assert.deepEqual(larger('B', matrix(['A', 'B', 'C'])), matrix([true, false, false])); assert.deepEqual(larger(matrix(['A', 'B', 'C']), 'B'), matrix([false, false, true])); }); it('should compare dense matrix - array', function () { assert.deepEqual(larger(matrix([[1, 2, 0], [-1, 0, 2]]), [[1, -1, 0], [-1, 1, 0]]), matrix([[false, true, false], [false, false, true]])); }); it('should compare dense matrix - dense matrix', function () { assert.deepEqual(larger(matrix([[1, 2, 0], [-1, 0, 2]]), matrix([[1, -1, 0], [-1, 1, 0]])), matrix([[false, true, false], [false, false, true]])); }); it('should compare dense matrix - sparse matrix', function () { assert.deepEqual(larger(matrix([[1, 2, 0], [-1, 0, 2]]), sparse([[1, -1, 0], [-1, 1, 0]])), matrix([[false, true, false], [false, false, true]])); }); }); describe('SparseMatrix', function () { it('should compare sparse matrix - scalar', function () { assert.deepEqual(larger('B', sparse([['A', 'B'], ['C', 'D']])), matrix([[true, false], [false, false]])); assert.deepEqual(larger(sparse([['A', 'B'], ['C', 'D']]), 'B'), matrix([[false, false], [true, true]])); }); it('should compare sparse matrix - array', function () { assert.deepEqual(larger(sparse([[1, 2, 0], [-1, 0, 2]]), [[1, -1, 0], [-1, 1, 0]]), matrix([[false, true, false], [false, false, true]])); }); it('should compare sparse matrix - dense matrix', function () { assert.deepEqual(larger(sparse([[1, 2, 0], [-1, 0, 2]]), matrix([[1, -1, 0], [-1, 1, 0]])), matrix([[false, true, false], [false, false, true]])); }); it('should compare sparse matrix - sparse matrix', function () { assert.deepEqual(larger(sparse([[1, 2, 0], [-1, 0, 2]]), sparse([[1, -1, 0], [-1, 1, 0]])), matrix([[false, true, false], [false, false, true]])); }); }); it('should throw an error when comparing complex numbers', function() { assert.throws(function () {larger(complex(1,1), complex(1,2));}, TypeError); assert.throws(function () {larger(complex(2,1), 3);}, TypeError); assert.throws(function () {larger(3, complex(2,4));}, TypeError); assert.throws(function () {larger(math.bignumber(3), complex(2,4));}, TypeError); assert.throws(function () {larger(complex(2,4), math.bignumber(3));}, TypeError); }); it('should throw an error if matrices are different sizes', function() { assert.throws(function () {larger([1,4,6], [3,4]);}); }); it('should throw an error in case of invalid number of arguments', function() { assert.throws(function () {larger(1);}, /Too few arguments/); assert.throws(function () {larger(1, 2, 3);}, /Too many arguments/); }); it('should LaTeX larger', function () { var expression = math.parse('larger(1,2)'); assert.equal(expression.toTex(), '\\left(1>2\\right)'); }); });