mirror of
https://github.com/denoland/deno.git
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168 lines
4.3 KiB
JavaScript
168 lines
4.3 KiB
JavaScript
// Copyright 2018-2021 the Deno authors. All rights reserved. MIT license.
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"use strict";
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((window) => {
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const core = window.Deno.core;
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const webidl = window.__bootstrap.webidl;
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const supportedAlgorithms = {
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"digest": {
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"SHA-1": {},
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"SHA-256": {},
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"SHA-384": {},
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"SHA-512": {},
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},
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};
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function normalizeAlgorithm(algorithm, op) {
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if (typeof algorithm == "string") {
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return normalizeAlgorithm({ name: algorithm }, op);
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}
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const initialAlgorithm = webidl.converters["Algorithm"](algorithm, {
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context: "Argument 1",
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});
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const registeredAlgorithms = supportedAlgorithms[op];
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const algorithmName = Object.keys(registeredAlgorithms)
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.find((key) => key.toLowerCase() == initialAlgorithm.name.toLowerCase());
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if (algorithmName === undefined) {
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throw new DOMException(
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"Unrecognized algorithm name",
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"NotSupportedError",
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);
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}
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// TODO(caspervonb) Step 6 (create from webidl definition), when the need arises.
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// See https://www.w3.org/TR/WebCryptoAPI/#dfn-normalize-an-algorithm
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const normalizedAlgorithm = {};
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normalizedAlgorithm.name = algorithmName;
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// TODO(caspervonb) Step 9 and 10, when the need arises.
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// See https://www.w3.org/TR/WebCryptoAPI/#dfn-normalize-an-algorithm
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return normalizedAlgorithm;
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}
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// Should match op_crypto_subtle_digest() in extensions/crypto/lib.rs
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function digestToId(name) {
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switch (name) {
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case "SHA-1":
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return 0;
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case "SHA-256":
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return 1;
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case "SHA-384":
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return 2;
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case "SHA-512":
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return 3;
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}
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}
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class SubtleCrypto {
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constructor() {
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webidl.illegalConstructor();
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}
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async digest(algorithm, data) {
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const prefix = "Failed to execute 'digest' on 'SubtleCrypto'";
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webidl.assertBranded(this, SubtleCrypto);
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webidl.requiredArguments(arguments.length, 2);
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algorithm = webidl.converters.AlgorithmIdentifier(algorithm, {
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prefix,
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context: "Argument 1",
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});
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data = webidl.converters.BufferSource(data, {
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prefix,
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context: "Argument 2",
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});
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if (ArrayBuffer.isView(data)) {
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data = new Uint8Array(data.buffer, data.byteOffset, data.byteLength);
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} else {
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data = new Uint8Array(data);
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}
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data = data.slice();
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algorithm = normalizeAlgorithm(algorithm, "digest");
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const result = await core.opAsync(
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"op_crypto_subtle_digest",
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digestToId(algorithm.name),
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data,
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);
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return result.buffer;
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}
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}
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const subtle = webidl.createBranded(SubtleCrypto);
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class Crypto {
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constructor() {
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webidl.illegalConstructor();
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}
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getRandomValues(arrayBufferView) {
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webidl.assertBranded(this, Crypto);
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const prefix = "Failed to execute 'getRandomValues' on 'Crypto'";
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webidl.requiredArguments(arguments.length, 1, { prefix });
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arrayBufferView = webidl.converters.ArrayBufferView(arrayBufferView, {
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prefix,
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context: "Argument 1",
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});
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if (
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!(
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arrayBufferView instanceof Int8Array ||
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arrayBufferView instanceof Uint8Array ||
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arrayBufferView instanceof Int16Array ||
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arrayBufferView instanceof Uint16Array ||
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arrayBufferView instanceof Int32Array ||
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arrayBufferView instanceof Uint32Array ||
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arrayBufferView instanceof Uint8ClampedArray
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)
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) {
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throw new DOMException(
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"The provided ArrayBufferView is not an integer array type",
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"TypeMismatchError",
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);
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}
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const ui8 = new Uint8Array(
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arrayBufferView.buffer,
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arrayBufferView.byteOffset,
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arrayBufferView.byteLength,
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);
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core.opSync("op_crypto_get_random_values", ui8);
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return arrayBufferView;
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}
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randomUUID() {
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webidl.assertBranded(this, Crypto);
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return core.opSync("op_crypto_random_uuid");
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}
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get subtle() {
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webidl.assertBranded(this, Crypto);
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return subtle;
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}
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get [Symbol.toStringTag]() {
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return "Crypto";
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}
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[Symbol.for("Deno.customInspect")](inspect) {
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return `${this.constructor.name} ${inspect({})}`;
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}
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}
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webidl.configurePrototype(Crypto);
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window.__bootstrap.crypto = {
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SubtleCrypto,
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crypto: webidl.createBranded(Crypto),
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Crypto,
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};
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})(this);
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