Add ExtendedGCD operation

This commit is contained in:
Philip Le Riche 2026-02-25 20:18:15 +00:00
parent d51019a01c
commit e1c35c36fc
2 changed files with 101 additions and 2 deletions

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@ -228,8 +228,6 @@
"Subtract", "Subtract",
"Multiply", "Multiply",
"Divide", "Divide",
"Modular Exponentiation",
"Modular Inverse",
"Extended GCD", "Extended GCD",
"Mean", "Mean",
"Median", "Median",

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@ -0,0 +1,101 @@
/**
* @author p-leriche [philip.leriche@cantab.net]
* @copyright Crown Copyright 2025
* @license Apache-2.0
*/
import Operation from "../Operation.mjs";
import OperationError from "../errors/OperationError.mjs";
import { parseBigInt, egcd } from "../lib/BigIntUtils.mjs";
/* ---------- operation class ---------- */
/**
* Extended GCD operation
*/
class ExtendedGCD extends Operation {
/**
* ExtendedGCD constructor
*/
constructor() {
super();
this.name = "Extended GCD";
this.module = "Crypto";
this.description =
"Computes the Extended Euclidean Algorithm for integers <i>a</i> and <i>b</i>.<br><br>" +
"Finds integers <i>x</i> and <i>y</i> (Bezout coefficients) such that:<br>" +
"a*x + b*y = gcd(a, b)<br><br>" +
"This is fundamental to many number theory algorithms including modular inverse, " +
"solving linear Diophantine equations, and cryptographic operations.<br><br>" +
"<b>Input handling:</b> If either <i>a</i> or <i>b</i> is left blank, " +
"its value is taken from the Input field.";
this.infoURL = "https://wikipedia.org/wiki/Extended_Euclidean_algorithm";
this.inputType = "string";
this.outputType = "string";
this.args = [
{
name: "Value a",
type: "string",
value: ""
},
{
name: "Value b",
type: "string",
value: ""
}
];
}
/**
* @param {string} input
* @param {Object[]} args
* @returns {string}
*/
run(input, args) {
const [aStr, bStr] = args;
// Trim everything so "" and " " count as empty
const aParam = aStr?.trim();
const bParam = bStr?.trim();
const inputVal = input?.trim();
let a, b;
if (aParam && bParam) {
// Case 1: both values given as parameters
a = aParam;
b = bParam;
} else if (!aParam && bParam) {
// Case 2: a missing - take from input
a = inputVal;
b = bParam;
if (!a) throw new OperationError("Value a must be defined");
} else if (aParam && !bParam) {
// Case 3: b missing - take from input
a = aParam;
b = inputVal;
if (!b) throw new OperationError("Value b must be defined");
} else if (!aParam && !bParam) {
// Case 4: both values missing
throw new OperationError("Values a and b must be defined");
}
const aBI = parseBigInt(a, "Value a");
const bBI = parseBigInt(b, "Value b");
const [g, x, y] = egcd(aBI, bBI);
const gcd = g < 0n ? -g : g;
// Format output string bearing in mind that crypto-grade numbers
// may greatly exceed the line length.
let output = "gcd: " + gcd.toString() + "\n\n";
output += "Bezout coefficients:\n";
output += "x = " + x.toString() + "\n";
output += "y = " + y.toString() + "\n\n";
return output;
}
}
export default ExtendedGCD;