var assert = require('assert'), error = require('../../../lib/error/index'), math = require('../../../index'), approx = require('../../../tools/approx'), pi = math.pi, asec = math.asec, sec = math.sec, complex = math.complex, matrix = math.matrix, unit = math.unit, bigmath = math.create({number: 'bignumber', precision: 20}), biggermath = math.create({precision: 21}), asecBig = bigmath.asec, Big = bigmath.bignumber; describe('asec', function() { it('should return the arcsec of a boolean', function () { assert.equal(asec(true), 0); assert.deepEqual(asec(false), complex(0, Infinity)); //assert.ok(isNaN(asec(false))); }); it('should return the arcsec of null', function () { assert.deepEqual(asec(null), complex(0, Infinity)); //assert.ok(isNaN(asec(null))); }); it('should return the arcsec of a number', function() { approx.equal(asec(-2) / pi, 2 / 3); approx.equal(asec(-1) / pi, 1); approx.equal(asec(1) / pi, 0); approx.equal(asec(2) / pi, 1 / 3); approx.deepEqual(asec(-0.5), complex(pi, -1.3169578969248)); approx.deepEqual(asec(0.5), complex(0, 1.3169578969248)); }); it('should return the arcsec of a bignumber', function() { var arg1 = Big(-2); var arg2 = Big(-1); assert.deepEqual(asecBig(arg1).toString(), bigmath.tau.div(3).toString()); assert.deepEqual(asecBig(arg2).toString(), bigmath.pi.toString()); assert.deepEqual(asecBig(Big(1)), Big(0)); assert.deepEqual(asecBig(Big(2)).toString(), bigmath.pi.div(3).toString()); //Make sure arg was not changed assert.deepEqual(arg1, Big(-2)); assert.deepEqual(arg2, Big(-1)); // Hit Newton's method case bigmath.config({precision: 61}); var arg = Big(3.00000001); assert.deepEqual(asecBig(arg), Big('1.230959418519285979938614206185297709155969929825366328254265')); assert.deepEqual(arg, Big(3.00000001)); }); it('should be the inverse function of sec', function() { approx.equal(asec(sec(-1)), 1); approx.equal(asec(sec(0)), 0); approx.equal(asec(sec(0.1)), 0.1); approx.equal(asec(sec(0.5)), 0.5); approx.equal(asec(sec(2)), 2); }); it('should be the inverse function of bignumber sec', function() { bigmath.config({precision: 20}); assert.deepEqual(asecBig(bigmath.sec(Big(-1))), Big(1)); assert.deepEqual(asecBig(bigmath.sec(Big(0))), Big(0)); assert.deepEqual(asecBig(bigmath.sec(Big(0.5))), Big(0.5)); assert.deepEqual(asecBig(bigmath.sec(Big(2))), Big(2)); // Pass in extra digit assert.deepEqual(asecBig(biggermath.sec(Big(0.1))), Big(0.1)); }); it('should throw an error if the bignumber result is complex', function() { assert.throws(function () { asec(Big(0.5)); }, /asec() only has non-complex values for |x| >= 1./); assert.throws(function () { asec(Big(0)); }, /asec() only has non-complex values for |x| >= 1./); assert.throws(function () { asec(Big(-0.5)); }, /asec() only has non-complex values for |x| >= 1./); }); it('should return the arcsec of a complex number', function() { approx.deepEqual(asec(complex('2+3i')), complex(1.42041072246703, 0.23133469857397)); approx.deepEqual(asec(complex('2-3i')), complex(1.42041072246703, -0.23133469857397)); approx.deepEqual(asec(complex('-2+3i')), complex(1.7211819311228, 0.2313346985739733)); approx.deepEqual(asec(complex('-2-3i')), complex(1.7211819311228, -0.2313346985739733)); approx.deepEqual(asec(complex('i')), complex(1.570796326794897, 0.881373587019543)); approx.deepEqual(asec(complex('1+i')), complex(1.1185178796437059, 0.530637530952517826)); approx.deepEqual(asec(complex('1')), complex(0, 0)); approx.deepEqual(asec(complex('0.5')), complex(0, 1.3169578969248)); approx.deepEqual(asec(complex('0')), complex(0, Infinity)); approx.deepEqual(asec(complex('-0.5')), complex(pi, -1.3169578969248)); }); it('should throw an error if called with a unit', function() { assert.throws(function () {asec(unit('45deg'))}); assert.throws(function () {asec(unit('5 celsius'))}); }); it('should throw an error if called with a string', function() { assert.throws(function () {asec('string')}); }); it('should calculate the arcsec element-wise for arrays and matrices', function() { var asec123 = [0, pi / 3, 1.23095941734077468]; approx.deepEqual(asec([1,2,3]), asec123); approx.deepEqual(asec(matrix([1,2,3])), matrix(asec123)); }); it('should throw an error in case of invalid number of arguments', function() { assert.throws(function () {asec()}, /TypeError: Too few arguments/); assert.throws(function () {asec(1, 2)}, /TypeError: Too many arguments/); }); });