import assert from 'assert' import math from '../../../../src/bundleAny' import _ from 'underscore' const math2 = math.create({ randomSeed: 'test' }) const randomInt = math2.randomInt describe('randomInt', function () { it('should have a function randomInt', function () { assert.strictEqual(typeof math.randomInt, 'function') }) it('should pick uniformly distributed integers in [min, max)', function () { const picked = [] _.times(10000, function () { picked.push(randomInt(-15, -5)) }) assertUniformDistributionInt(picked, -15, -5) }) it('should pick uniformly distributed random array, with elements in [min, max)', function () { const picked = [] const matrices = [] const size = [2, 3, 4] _.times(1000, function () { matrices.push(randomInt(size, -14.9, -2)) }) // Collect all values in one array matrices.forEach(function (matrix) { assert.deepStrictEqual(math.size(matrix), size) math.forEach(matrix, function (val) { picked.push(val) }) }) assert.strictEqual(picked.length, 2 * 3 * 4 * 1000) assertUniformDistributionInt(picked, -14.9, -2) }) it('should throw an error if called with invalid arguments', function () { assert.throws(function () { randomInt(1, 2, [4, 8]) }) assert.throws(function () { randomInt(1, 2, 3, 6) }) }) it('should throw an error in case of wrong number of arguments', function () { assert.throws(function () { randomInt([2, 3], 10, 100, 12) }, / Too many arguments/) }) it('should LaTeX randomInt', function () { const expression = math.parse('randomInt(0,100)') assert.strictEqual(expression.toTex(), '\\mathrm{randomInt}\\left(0,100\\right)') }) }) const assertUniformDistributionInt = function (values, min, max) { const range = _.range(Math.floor(min), Math.floor(max)) let count values.forEach(function (val) { assert.ok(_.contains(range, val)) }) range.forEach(function (val) { count = _.filter(values, function (testVal) { return testVal === val }).length assertApproxEqual(count / values.length, 1 / range.length, 0.03) }) } const assertApproxEqual = function (testVal, val, tolerance) { const diff = Math.abs(val - testVal) if (diff > tolerance) assert.strictEqual(testVal, val) else assert.ok(diff <= tolerance) }