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cee5be4539
Support AES-CTR, AES-CBC, AES-GCM, and AES-KW in SubtleCrypto#generateKey.
353 lines
8.4 KiB
JavaScript
353 lines
8.4 KiB
JavaScript
// Copyright 2018-2021 the Deno authors. All rights reserved. MIT license.
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// @ts-check
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/// <reference path="../../core/lib.deno_core.d.ts" />
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/// <reference path="../webidl/internal.d.ts" />
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"use strict";
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((window) => {
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const webidl = window.__bootstrap.webidl;
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const { CryptoKey } = window.__bootstrap.crypto;
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const { ArrayBufferIsView, ArrayBuffer } = window.__bootstrap.primordials;
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webidl.converters.AlgorithmIdentifier = (V, opts) => {
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// Union for (object or DOMString)
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if (webidl.type(V) == "Object") {
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return webidl.converters.object(V, opts);
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}
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return webidl.converters.DOMString(V, opts);
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};
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webidl.converters["BufferSource or JsonWebKey"] = (V, opts) => {
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// Union for (BufferSource or JsonWebKey)
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if (ArrayBufferIsView(V) || V instanceof ArrayBuffer) {
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return webidl.converters.BufferSource(V, opts);
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}
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return webidl.converters.JsonWebKey(V, opts);
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};
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webidl.converters.KeyType = webidl.createEnumConverter("KeyType", [
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"public",
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"private",
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"secret",
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]);
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webidl.converters.KeyFormat = webidl.createEnumConverter("KeyFormat", [
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"raw",
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"pkcs8",
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"spki",
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"jwk",
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]);
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webidl.converters.KeyUsage = webidl.createEnumConverter("KeyUsage", [
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"encrypt",
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"decrypt",
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"sign",
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"verify",
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"deriveKey",
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"deriveBits",
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"wrapKey",
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"unwrapKey",
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]);
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webidl.converters["sequence<KeyUsage>"] = webidl.createSequenceConverter(
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webidl.converters.KeyUsage,
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);
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webidl.converters.HashAlgorithmIdentifier =
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webidl.converters.AlgorithmIdentifier;
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/** @type {__bootstrap.webidl.Dictionary} */
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const dictAlgorithm = [{
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key: "name",
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converter: webidl.converters.DOMString,
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required: true,
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}];
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webidl.converters.Algorithm = webidl
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.createDictionaryConverter("Algorithm", dictAlgorithm);
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webidl.converters.BigInteger = webidl.converters.Uint8Array;
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/** @type {__bootstrap.webidl.Dictionary} */
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const dictRsaKeyGenParams = [
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...dictAlgorithm,
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{
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key: "modulusLength",
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converter: (V, opts) =>
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webidl.converters["unsigned long"](V, { ...opts, enforceRange: true }),
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required: true,
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},
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{
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key: "publicExponent",
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converter: webidl.converters.BigInteger,
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required: true,
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},
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];
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webidl.converters.RsaKeyGenParams = webidl
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.createDictionaryConverter("RsaKeyGenParams", dictRsaKeyGenParams);
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const dictRsaHashedKeyGenParams = [
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...dictRsaKeyGenParams,
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{
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key: "hash",
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converter: webidl.converters.HashAlgorithmIdentifier,
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required: true,
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},
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];
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webidl.converters.RsaHashedKeyGenParams = webidl.createDictionaryConverter(
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"RsaHashedKeyGenParams",
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dictRsaHashedKeyGenParams,
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);
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webidl.converters.NamedCurve = webidl.converters.DOMString;
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const dictEcKeyGenParams = [
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...dictAlgorithm,
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{
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key: "namedCurve",
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converter: webidl.converters.NamedCurve,
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required: true,
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},
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];
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webidl.converters.EcKeyGenParams = webidl
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.createDictionaryConverter("EcKeyGenParams", dictEcKeyGenParams);
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const dictAesKeyGenParams = [
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...dictAlgorithm,
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{
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key: "length",
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converter: (V, opts) =>
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webidl.converters["unsigned short"](V, { ...opts, enforceRange: true }),
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required: true,
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},
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];
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webidl.converters.AesKeyGenParams = webidl
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.createDictionaryConverter("AesKeyGenParams", dictAesKeyGenParams);
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const dictHmacKeyGenParams = [
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...dictAlgorithm,
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{
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key: "hash",
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converter: webidl.converters.HashAlgorithmIdentifier,
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required: true,
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},
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{
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key: "length",
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converter: (V, opts) =>
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webidl.converters["unsigned long"](V, { ...opts, enforceRange: true }),
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},
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];
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webidl.converters.HmacKeyGenParams = webidl
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.createDictionaryConverter("HmacKeyGenParams", dictHmacKeyGenParams);
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const dictRsaPssParams = [
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...dictAlgorithm,
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{
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key: "saltLength",
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converter: (V, opts) =>
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webidl.converters["unsigned long"](V, { ...opts, enforceRange: true }),
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required: true,
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},
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];
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webidl.converters.RsaPssParams = webidl
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.createDictionaryConverter("RsaPssParams", dictRsaPssParams);
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const dictRsaOaepParams = [
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...dictAlgorithm,
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{
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key: "label",
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converter: webidl.converters["BufferSource"],
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},
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];
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webidl.converters.RsaOaepParams = webidl
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.createDictionaryConverter("RsaOaepParams", dictRsaOaepParams);
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const dictEcdsaParams = [
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...dictAlgorithm,
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{
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key: "hash",
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converter: webidl.converters.HashAlgorithmIdentifier,
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required: true,
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},
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];
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webidl.converters["EcdsaParams"] = webidl
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.createDictionaryConverter("EcdsaParams", dictEcdsaParams);
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const dictHmacImportParams = [
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...dictAlgorithm,
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{
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key: "hash",
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converter: webidl.converters.HashAlgorithmIdentifier,
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required: true,
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},
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{
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key: "length",
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converter: (V, opts) =>
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webidl.converters["unsigned long"](V, { ...opts, enforceRange: true }),
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},
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];
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webidl.converters.HmacImportParams = webidl
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.createDictionaryConverter("HmacImportParams", dictHmacImportParams);
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const dictRsaOtherPrimesInfo = [
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{
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key: "r",
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converter: webidl.converters["DOMString"],
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},
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{
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key: "d",
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converter: webidl.converters["DOMString"],
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},
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{
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key: "t",
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converter: webidl.converters["DOMString"],
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},
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];
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webidl.converters.RsaOtherPrimesInfo = webidl.createDictionaryConverter(
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"RsaOtherPrimesInfo",
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dictRsaOtherPrimesInfo,
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);
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webidl.converters["sequence<RsaOtherPrimesInfo>"] = webidl
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.createSequenceConverter(
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webidl.converters.RsaOtherPrimesInfo,
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);
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const dictJsonWebKey = [
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// Sections 4.2 and 4.3 of RFC7517.
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// https://datatracker.ietf.org/doc/html/rfc7517#section-4
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{
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key: "kty",
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converter: webidl.converters["DOMString"],
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},
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{
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key: "use",
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converter: webidl.converters["DOMString"],
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},
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{
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key: "key_ops",
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converter: webidl.converters["sequence<DOMString>"],
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},
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{
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key: "alg",
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converter: webidl.converters["DOMString"],
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},
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// JSON Web Key Parameters Registration
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{
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key: "ext",
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converter: webidl.converters["boolean"],
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},
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// Section 6 of RFC7518 JSON Web Algorithms
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// https://datatracker.ietf.org/doc/html/rfc7518#section-6
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{
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key: "crv",
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converter: webidl.converters["DOMString"],
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},
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{
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key: "x",
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converter: webidl.converters["DOMString"],
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},
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{
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key: "y",
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converter: webidl.converters["DOMString"],
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},
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{
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key: "d",
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converter: webidl.converters["DOMString"],
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},
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{
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key: "n",
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converter: webidl.converters["DOMString"],
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},
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{
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key: "e",
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converter: webidl.converters["DOMString"],
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},
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{
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key: "p",
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converter: webidl.converters["DOMString"],
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},
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{
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key: "q",
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converter: webidl.converters["DOMString"],
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},
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{
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key: "dp",
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converter: webidl.converters["DOMString"],
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},
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{
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key: "dq",
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converter: webidl.converters["DOMString"],
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},
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{
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key: "qi",
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converter: webidl.converters["DOMString"],
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},
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{
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key: "oth",
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converter: webidl.converters["sequence<RsaOtherPrimesInfo>"],
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},
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{
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key: "k",
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converter: webidl.converters["DOMString"],
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},
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];
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webidl.converters.JsonWebKey = webidl.createDictionaryConverter(
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"JsonWebKey",
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dictJsonWebKey,
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);
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const dictPbkdf2Params = [
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...dictAlgorithm,
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{
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key: "hash",
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converter: webidl.converters.HashAlgorithmIdentifier,
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required: true,
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},
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{
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key: "iterations",
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converter: (V, opts) =>
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webidl.converters["unsigned long"](V, { ...opts, enforceRange: true }),
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required: true,
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},
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{
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key: "salt",
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converter: webidl.converters["BufferSource"],
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required: true,
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},
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];
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webidl.converters.Pbkdf2Params = webidl
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.createDictionaryConverter("Pbkdf2Params", dictPbkdf2Params);
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webidl.converters.CryptoKey = webidl.createInterfaceConverter(
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"CryptoKey",
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CryptoKey,
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);
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const dictCryptoKeyPair = [
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{
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key: "publicKey",
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converter: webidl.converters.CryptoKey,
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},
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{
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key: "privateKey",
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converter: webidl.converters.CryptoKey,
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},
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];
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webidl.converters.CryptoKeyPair = webidl
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.createDictionaryConverter("CryptoKeyPair", dictCryptoKeyPair);
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})(this);
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