120 lines
4.5 KiB
TypeScript
120 lines
4.5 KiB
TypeScript
import assert from "assert";
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import { WebcryptoTest } from "@peculiar/webcrypto-test";
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import * as core from "webcrypto-core";
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import { Crypto } from "../src";
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const crypto = new Crypto();
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WebcryptoTest.check(crypto as any, {});
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context("Crypto", () => {
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context("getRandomValues", () => {
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it("Uint8Array", () => {
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const array = new Uint8Array(5);
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const array2 = crypto.getRandomValues(array);
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assert.notStrictEqual(Buffer.from(array).toString("hex"), "0000000000");
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assert.strictEqual(Buffer.from(array2).equals(array), true);
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});
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it("Uint16Array", () => {
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const array = new Uint16Array(5);
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const array2 = crypto.getRandomValues(array);
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assert.notStrictEqual(Buffer.from(array).toString("hex"), "00000000000000000000");
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assert.strictEqual(Buffer.from(array2).equals(Buffer.from(array)), true);
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});
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});
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it("Import wrong named curve", async () => {
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const spki = Buffer.from("MFkwEwYHKoZIzj0CAQYIKoZIzj0DAQcDQgAETzlbSDQWz+1nwEHsrT516OAEX5YWzwVYj39BH+Rv5yoP9yLgM5wIXgOls5DoLDJVQ+45XDrD/xjSCcul5NACZw==", "base64");
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await assert.rejects(crypto.subtle.importKey(
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"spki",
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spki,
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{ name: "ECDSA", namedCurve: "K-256" } as Algorithm,
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false,
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["verify"]), core.CryptoError);
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});
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it("HKDF derive HMAC key", async () => {
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const hkdf = await crypto.subtle.importKey("raw", new Uint8Array([1, 2, 3, 4, 5]), { name: "HKDF" }, false, ["deriveKey"]);
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const hmac = await crypto.subtle.deriveKey({
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name: "HKDF",
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hash: "SHA-256",
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info: new Uint8Array([1, 2, 3, 4, 5]),
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salt: new Uint8Array([1, 2, 3, 4, 5]),
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} as globalThis.HkdfParams,
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hkdf,
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{
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name: "HMAC",
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hash: "SHA-1",
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} as globalThis.HmacImportParams,
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false,
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["sign"]);
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assert.strictEqual((hmac.algorithm as globalThis.HmacKeyAlgorithm).length, 512);
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});
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context("EdDSA", () => {
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context("generateKey", () => {
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it("Ed25519", async () => {
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const keys = await crypto.subtle.generateKey({ name: "eddsa", namedCurve: "ed25519" } as globalThis.EcKeyGenParams, false, ["sign", "verify"]) as CryptoKeyPair;
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assert.strictEqual(keys.privateKey.algorithm.name, "EdDSA");
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assert.strictEqual((keys.privateKey.algorithm as EcKeyAlgorithm).namedCurve, "Ed25519");
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});
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it("Ed448", async () => {
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const keys = await crypto.subtle.generateKey({ name: "eddsa", namedCurve: "ed448" } as globalThis.EcKeyGenParams, true, ["sign", "verify"]) as CryptoKeyPair;
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assert.strictEqual(keys.privateKey.algorithm.name, "EdDSA");
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assert.strictEqual((keys.privateKey.algorithm as EcKeyAlgorithm).namedCurve, "Ed448");
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const data = await crypto.subtle.exportKey("jwk", keys.privateKey);
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assert.strictEqual(data.kty, "OKP");
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assert.strictEqual(data.crv, "Ed448");
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assert.strictEqual(!!data.d, true);
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const privateKey = await crypto.subtle.importKey("jwk", data, { name: "eddsa", namedCurve: "ed448" } as EcKeyImportParams, false, ["sign"]);
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const message = Buffer.from("message");
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const signature = await crypto.subtle.sign({ name: "EdDSA" }, privateKey, message);
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const ok = await crypto.subtle.verify({ name: "EdDSA" }, keys.publicKey, signature, message);
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assert.strictEqual(ok, true);
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});
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});
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});
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context("ECDH-ES", () => {
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context("generateKey", () => {
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it("X25519", async () => {
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const keys = await crypto.subtle.generateKey({ name: "ecdh-es", namedCurve: "x25519" } as globalThis.EcKeyGenParams, false, ["deriveBits", "deriveKey"]) as CryptoKeyPair;
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assert.strictEqual(keys.privateKey.algorithm.name, "ECDH-ES");
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assert.strictEqual((keys.privateKey.algorithm as EcKeyAlgorithm).namedCurve, "X25519");
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});
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it("X448", async () => {
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const keys = await crypto.subtle.generateKey({ name: "ecdh-es", namedCurve: "x448" } as globalThis.EcKeyGenParams, true, ["deriveBits", "deriveKey"]) as CryptoKeyPair;
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assert.strictEqual(keys.privateKey.algorithm.name, "ECDH-ES");
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assert.strictEqual((keys.privateKey.algorithm as EcKeyAlgorithm).namedCurve, "X448");
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const bits = await crypto.subtle.deriveBits({ name: "ECDH-ES", public: keys.publicKey } as globalThis.EcdhKeyDeriveParams, keys.privateKey, 256);
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assert.strictEqual(bits.byteLength, 32);
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const data = await crypto.subtle.exportKey("jwk", keys.publicKey);
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assert.strictEqual(data.kty, "OKP");
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assert.strictEqual(data.crv, "X448");
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assert.strictEqual(!!data.x, true);
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});
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});
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});
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});
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