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f5e46c9bf2
This looks like a massive PR, but it's only a move from cli/tests -> tests, and updates of relative paths for files. This is the first step towards aggregate all of the integration test files under tests/, which will lead to a set of integration tests that can run without the CLI binary being built. While we could leave these tests under `cli`, it would require us to keep a more complex directory structure for the various test runners. In addition, we have a lot of complexity to ignore various test files in the `cli` project itself (cargo publish exclusion rules, autotests = false, etc). And finally, the `tests/` folder will eventually house the `test_ffi`, `test_napi` and other testing code, reducing the size of the root repo directory. For easier review, the extremely large and noisy "move" is in the first commit (with no changes -- just a move), while the remainder of the changes to actual files is in the second commit.
103 lines
2.9 KiB
TypeScript
103 lines
2.9 KiB
TypeScript
// Copyright 2018-2024 the Deno authors. All rights reserved. MIT license.
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import crypto from "node:crypto";
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import { Buffer } from "node:buffer";
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import testVectors128 from "./gcmEncryptExtIV128.json" assert { type: "json" };
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import testVectors256 from "./gcmEncryptExtIV256.json" assert { type: "json" };
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import { assertEquals } from "@test_util/std/assert/mod.ts";
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const aesGcm = (bits: string, key: Uint8Array) => {
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const ALGO = bits == "128" ? `aes-128-gcm` : `aes-256-gcm`;
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// encrypt returns base64-encoded ciphertext
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const encrypt = (
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iv: Uint8Array,
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str: string,
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aad: Uint8Array,
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): [string, Buffer] => {
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const cipher = crypto.createCipheriv(ALGO, key, iv);
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cipher.setAAD(aad);
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let enc = cipher.update(str, "base64", "base64");
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enc += cipher.final("base64");
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return [enc, cipher.getAuthTag()];
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};
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const decrypt = (
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enc: string,
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iv: Uint8Array,
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aad: Uint8Array,
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authTag: Uint8Array,
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) => {
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const decipher = crypto.createDecipheriv(ALGO, key, iv);
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decipher.setAuthTag(authTag);
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decipher.setAAD(aad);
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let str = decipher.update(enc, "base64", "base64");
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str += decipher.final("base64");
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return str;
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};
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return {
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encrypt,
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decrypt,
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};
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};
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type TestVector = {
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key: Uint8Array;
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nonce: Uint8Array;
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aad: Uint8Array;
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plaintext: string;
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ciphertext: string;
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tag: Uint8Array;
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};
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for (
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// NIST CAVS vectors
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const [bits, vectors] of Object.entries({
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// <https://csrc.nist.gov/Projects/cryptographic-algorithm-validation-program/CAVP-TESTING-BLOCK-CIPHER-MODES>
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//
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// From: `gcmEncryptExtIV128.rsp`
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128: testVectors128,
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// <https://csrc.nist.gov/Projects/cryptographic-algorithm-validation-program/CAVP-TESTING-BLOCK-CIPHER-MODES>
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//
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// From: `gcmEncryptExtIV256.rsp`
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256: testVectors256,
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})
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) {
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for (let i = 0; i < vectors.length; i++) {
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const rawTest = vectors[i];
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const test: TestVector = {
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key: new Uint8Array(rawTest.key),
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nonce: new Uint8Array(rawTest.nonce),
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aad: new Uint8Array(rawTest.aad),
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plaintext: Buffer.from(rawTest.plaintext).toString("base64"),
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ciphertext: Buffer.from(rawTest.ciphertext).toString("base64"),
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tag: new Uint8Array(rawTest.tag),
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};
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Deno.test({
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name: `aes-${bits}-gcm encrypt ${i + 1}/${vectors.length}`,
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fn() {
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const cipher = aesGcm(bits, test.key);
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const [enc, tag] = cipher.encrypt(test.nonce, test.plaintext, test.aad);
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assertEquals(enc, test.ciphertext);
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assertEquals(new Uint8Array(tag), test.tag);
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},
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});
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Deno.test({
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name: `aes-${bits}-gcm decrypt ${i + 1}/${vectors.length}`,
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fn() {
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const cipher = aesGcm(bits, test.key);
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const plaintext = cipher.decrypt(
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test.ciphertext,
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test.nonce,
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test.aad,
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test.tag,
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);
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assertEquals(plaintext, test.plaintext);
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},
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});
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}
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}
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