| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102 | import assert from "assert"import fs from "fs";import { join, resolve } from "path";import * as aes from "./index.js";interface TestCase {  modeOfOperation: string;  iv: Array<number>;  key: Array<number>;  plaintext: Array<Array<number>>;  encrypted: Array<Array<number>>;  segmentSize: number;}const root = (function() {  let root = process.cwd();  while (true) {    if (fs.existsSync(join(root, "package.json"))) { return root; }    const parent = join(root, "..");    if (parent === root) { break; }    root = parent;  }  throw new Error("could not find root");})();describe("Tests Encrypting and Decrypting", function() {  const json = fs.readFileSync(resolve(root, "./test/test-vectors.json")).toString()  const tests: Array<TestCase> = JSON.parse(json);  function getCrypter(key: Uint8Array, test: TestCase): null | aes.ModeOfOperation {    switch (test.modeOfOperation) {      case "ctr":        return new aes.CTR(key, 0);      case "cbc":        return new aes.CBC(key, Buffer.from(test.iv));      case "cfb":        return new aes.CFB(key, Buffer.from(test.iv), test.segmentSize * 8);      case "ecb":        return new aes.ECB(key);      case "ofb":        return new aes.OFB(key, Buffer.from(test.iv));    }    return null;  }  tests.forEach((test, index) => {    it(`tests encrypting: ${ test. modeOfOperation}.${ index }`, function() {      const encrypter = getCrypter(Buffer.from(test.key), test);      if (!encrypter) { this.skip(); }      for (let i = 0; i < test.plaintext.length; i++) {        const plaintext = Buffer.from(test.plaintext[i]);        const ciphertext = Buffer.from(test.encrypted[i]);        const result = Buffer.from(encrypter.encrypt(plaintext));        assert.ok(ciphertext.equals(result), "encrypting failed");      }    });    it(`tests decrypting: ${ test. modeOfOperation}.${ index }`, function() {      const decrypter = getCrypter(Buffer.from(test.key), test);      if (!decrypter) { this.skip(); }      for (let i = 0; i < test.plaintext.length; i++) {        const plaintext = Buffer.from(test.plaintext[i]);        const ciphertext = Buffer.from(test.encrypted[i]);        const result = Buffer.from(decrypter.decrypt(ciphertext));        assert.ok(plaintext.equals(result), "decrypting failed");      }    });  });});describe("Tests Padding", function() {  for (let size = 0; size < 100; size++) {    it(`tests padding: length=${ size }`, function() {      // Create a random piece of data      const data = new Uint8Array(size);      data.fill(42);      // Pad it      const padded = aes.pkcs7Pad(data);      assert.ok((padded.length % 16) === 0, "Failed to pad to block size");      assert.ok(data.length <= padded.length && padded.length <= data.length + 16, "Padding went awry");      assert.ok(padded[padded.length - 1] >= 1 && padded[padded.length - 1] <= 16, "Failed to pad to block size");      // Trim it      const trimmed = aes.pkcs7Strip(padded);      assert.ok(Buffer.from(data).equals(trimmed), "Failed to trim to original data");    });  }});
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