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95 changes: 95 additions & 0 deletions Ciphers/AffineCipher.js
Original file line number Diff line number Diff line change
@@ -0,0 +1,95 @@
/**
* @description - The affine cipher is a type of monoalphabetic substitution cipher, where each letter in an alphabet is mapped to its numeric equivalent, encrypted using a simple mathematical function, and converted back to a letter
* @see - [wiki](https://en.wikipedia.org/wiki/Affine_cipher)
*/

// Default key for Affine Cipher
const key = 'ABCDEFGHIJKLMNOPQRSTUVWXYZ'

/**
* Fix result for negative value in modulas equation
* @param {Number} n - Constant number
* @param {Number} m - Modulos value
* @return {Number} Return n mod m
*/
function mod (n, m) {
return ((n % m) + m) % m
}

/**
* Modular multiplicative inverse
* @param {Number} a - A coefficient
* @param {Number} m - Modulos value
* @return {Number} Return modular multiplicative inverse of coefficient a and modulos m
*/
function inverseMod (a, m) {
for (let x = 1; x < m; x++) {
if (mod(a * x, m) === 1) return x
}
}

/**
* Argument validation
* @param {String} str - String to be checked
* @param {Number} a - A coefficient to be checked
* @param {Number} b - B coefficient to be checked
* @return {Boolean} Result of the checking
*/
function isCorrectFormat (str, a, b) {
if (typeof a !== 'number' || typeof b !== 'number') {
throw new TypeError('Coefficient a, b should be number')
}

if (typeof str !== 'string') {
throw new TypeError('Argument str should be String')
}

return true
}
/**
* Find character index based on ASCII order
* @param {String} char - Character index to be found
* @return {Boolean} Character index
*/
function findCharIndex (char) {
return char.toUpperCase().charCodeAt(0) - ('A').charCodeAt(0)
}

/**
* Encrypt a Affine Cipher
* @param {String} str - String to be encrypted
* @param {Number} a - A coefficient
* @param {Number} b - B coefficient
* @return {String} result - Encrypted string
*/
function encrypt (str, a, b) {
let result = ''
if (isCorrectFormat(str, a, b)) {
for (let x = 0; x < str.length; x++) {
const charIndex = findCharIndex(str[x])
if (charIndex < 0) result += '-1' + ' '
else result += mod(a * charIndex + b, 26) + ' '
}
}
return result.trim()
}
/**
* Decrypt a Affine Cipher
* @param {String} str - String to be decrypted
* @param {Number} a - A coefficient
* @param {Number} b - B coefficient
* @return {String} result - Decrypted string
*/
function decrypt (str, a, b) {
let result = ''
if (isCorrectFormat(str, a, b)) {
str = str.split(' ')
for (let x = 0; x < str.length; x++) {
if (str[x] === '-1') result += ' '
else result += key[mod(inverseMod(a, 26) * (parseInt(str[x]) - b), 26)]
}
}
return result
}

export { encrypt, decrypt }
27 changes: 27 additions & 0 deletions Ciphers/test/AffineCipher.test.js
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import { encrypt, decrypt } from '../AffineCipher'

describe('Test Affine Cipher', () => {
it('Test - 1, Pass invalid input to encrypt function', () => {
expect(() => encrypt(null, null, null)).toThrow()
expect(() => encrypt('null', null, null)).toThrow()
expect(() => encrypt('null', 1, null)).toThrow()
expect(() => encrypt('null', null, 1)).toThrow()
})

it('Test - 2, Pass invalid input to decrypt function', () => {
expect(() => decrypt(null, null, null)).toThrow()
expect(() => decrypt('null', null, null)).toThrow()
expect(() => decrypt('null', 1, null)).toThrow()
expect(() => decrypt('null', null, 1)).toThrow()
})

it('Test - 3 Pass string value to encrypt and ecrypt function', () => {
const a = 5
const b = 8
expect(decrypt(encrypt('HELLO WORLD', a, b), a, b)).toBe('HELLO WORLD')
expect(decrypt(encrypt('ABC DEF', a, b), a, b)).toBe('ABC DEF')
expect(decrypt(encrypt('Brown fox jump over the fence', a, b), a, b)).toBe(
'BROWN FOX JUMP OVER THE FENCE'
)
})
})
1 change: 1 addition & 0 deletions DIRECTORY.md
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Expand Up @@ -18,6 +18,7 @@
* **Cellular-Automata**
* [ConwaysGameOfLife](Cellular-Automata/ConwaysGameOfLife.js)
* **Ciphers**
* [AffineCipher](Ciphers/AffineCipher.js)
* [Atbash](Ciphers/Atbash.js)
* [CaesarsCipher](Ciphers/CaesarsCipher.js)
* [KeyFinder](Ciphers/KeyFinder.js)
Expand Down
42 changes: 15 additions & 27 deletions Maths/GetEuclidGCD.js
Original file line number Diff line number Diff line change
@@ -1,32 +1,20 @@
/*
Problem statement and Explanation : https://en.wikipedia.org/wiki/Euclidean_algorithm

In this method, we have followed the iterative approach to first
find a minimum of both numbers and go to the next step.
*/

/**
* GetEuclidGCD return the gcd of two numbers using Euclidean algorithm.
* @param {Number} arg1 first argument for gcd
* @param {Number} arg2 second argument for gcd
* @returns return a `gcd` value of both number.
* GetEuclidGCD Euclidean algorithm to determine the GCD of two numbers
* @param {Number} a integer (may be negative)
* @param {Number} b integer (may be negative)
* @returns {Number} Greatest Common Divisor gcd(a, b)
*/
const GetEuclidGCD = (arg1, arg2) => {
// firstly, check that input is a number or not.
if (typeof arg1 !== 'number' || typeof arg2 !== 'number') {
return new TypeError('Argument is not a number.')
export function GetEuclidGCD (a, b) {
if (typeof a !== 'number' || typeof b !== 'number') {
throw new TypeError('Arguments must be numbers')
}
// check that the input number is not a negative value.
if (arg1 < 1 || arg2 < 1) {
return new TypeError('Argument is a negative number.')
if (a === 0 && b === 0) return undefined // infinitely many numbers divide 0
a = Math.abs(a)
b = Math.abs(b)
while (b !== 0) {
const rem = a % b
a = b
b = rem
}
// Find a minimum of both numbers.
let less = arg1 > arg2 ? arg2 : arg1
// Iterate the number and find the gcd of the number using the above explanation.
for (less; less >= 2; less--) {
if ((arg1 % less === 0) && (arg2 % less === 0)) return (less)
}
return (less)
return a
}

export { GetEuclidGCD }