mirror of
https://github.com/denoland/deno.git
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341 lines
8.1 KiB
TypeScript
341 lines
8.1 KiB
TypeScript
// Copyright 2018-2024 the Deno authors. All rights reserved. MIT license.
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// Copyright Joyent, Inc. and Node.js contributors. All rights reserved. MIT license.
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// TODO(petamoriken): enable prefer-primordials for node polyfills
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// deno-lint-ignore-file prefer-primordials
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import {
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op_node_create_private_key,
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op_node_create_public_key,
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op_node_get_asymmetric_key_type,
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op_node_sign,
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op_node_sign_ed25519,
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op_node_verify,
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op_node_verify_ed25519,
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} from "ext:core/ops";
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import {
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validateFunction,
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validateString,
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} from "ext:deno_node/internal/validators.mjs";
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import { Buffer } from "node:buffer";
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import type { WritableOptions } from "ext:deno_node/_stream.d.ts";
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import Writable from "ext:deno_node/internal/streams/writable.mjs";
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import type {
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BinaryLike,
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BinaryToTextEncoding,
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Encoding,
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PrivateKeyInput,
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PublicKeyInput,
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} from "ext:deno_node/internal/crypto/types.ts";
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import {
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kConsumePrivate,
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kConsumePublic,
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KeyObject,
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prepareAsymmetricKey,
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PrivateKeyObject,
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PublicKeyObject,
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} from "ext:deno_node/internal/crypto/keys.ts";
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import { createHash } from "ext:deno_node/internal/crypto/hash.ts";
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import { ERR_CRYPTO_SIGN_KEY_REQUIRED } from "ext:deno_node/internal/errors.ts";
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export type DSAEncoding = "der" | "ieee-p1363";
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export interface SigningOptions {
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padding?: number | undefined;
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saltLength?: number | undefined;
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dsaEncoding?: DSAEncoding | undefined;
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}
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export interface SignPrivateKeyInput extends PrivateKeyInput, SigningOptions {}
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export interface SignKeyObjectInput extends SigningOptions {
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key: KeyObject;
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}
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export interface VerifyPublicKeyInput extends PublicKeyInput, SigningOptions {}
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export interface VerifyKeyObjectInput extends SigningOptions {
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key: KeyObject;
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}
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function getSaltLength(options) {
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return getIntOption("saltLength", options);
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}
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function getDSASignatureEncoding(options) {
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if (typeof options === "object") {
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const { dsaEncoding = "der" } = options;
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if (dsaEncoding === "der") {
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return 0;
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} else if (dsaEncoding === "ieee-p1363") {
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return 1;
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}
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throw new ERR_INVALID_ARG_VALUE("options.dsaEncoding", dsaEncoding);
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}
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return 0;
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}
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function getIntOption(name, options) {
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const value = options[name];
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if (value !== undefined) {
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if (value === value >> 0) {
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return value;
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}
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throw new ERR_INVALID_ARG_VALUE(`options.${name}`, value);
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}
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return undefined;
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}
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export type KeyLike = string | Buffer | KeyObject;
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export class SignImpl extends Writable {
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hash: Hash;
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#digestType: string;
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constructor(algorithm: string, _options?: WritableOptions) {
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validateString(algorithm, "algorithm");
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super({
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write(chunk, enc, callback) {
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this.update(chunk, enc);
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callback();
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},
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});
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algorithm = algorithm.toLowerCase();
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this.#digestType = algorithm;
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this.hash = createHash(this.#digestType);
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}
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sign(
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// deno-lint-ignore no-explicit-any
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privateKey: any,
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encoding?: BinaryToTextEncoding,
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): Buffer | string {
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const res = prepareAsymmetricKey(privateKey, kConsumePrivate);
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// Options specific to RSA-PSS
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const pssSaltLength = getSaltLength(privateKey);
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// Options specific to (EC)DSA
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const dsaSigEnc = getDSASignatureEncoding(privateKey);
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let handle;
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if ("handle" in res) {
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handle = res.handle;
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} else {
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handle = op_node_create_private_key(
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res.data,
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res.format,
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res.type ?? "",
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res.passphrase,
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);
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}
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const ret = Buffer.from(op_node_sign(
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handle,
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this.hash.digest(),
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this.#digestType,
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pssSaltLength,
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dsaSigEnc,
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));
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return encoding ? ret.toString(encoding) : ret;
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}
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update(
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data: BinaryLike | string,
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encoding?: Encoding,
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): this {
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this.hash.update(data, encoding);
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return this;
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}
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}
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export function Sign(algorithm: string, options?: WritableOptions) {
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return new SignImpl(algorithm, options);
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}
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Sign.prototype = SignImpl.prototype;
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export class VerifyImpl extends Writable {
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hash: Hash;
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#digestType: string;
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constructor(algorithm: string, _options?: WritableOptions) {
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validateString(algorithm, "algorithm");
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super({
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write(chunk, enc, callback) {
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this.update(chunk, enc);
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callback();
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},
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});
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algorithm = algorithm.toLowerCase();
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this.#digestType = algorithm;
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this.hash = createHash(this.#digestType);
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}
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update(data: BinaryLike, encoding?: string): this {
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this.hash.update(data, encoding);
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return this;
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}
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verify(
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// deno-lint-ignore no-explicit-any
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publicKey: any,
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signature: BinaryLike,
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encoding?: BinaryToTextEncoding,
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): boolean {
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const res = prepareAsymmetricKey(publicKey, kConsumePublic);
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// Options specific to RSA-PSS
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const pssSaltLength = getSaltLength(publicKey);
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// Options specific to (EC)DSA
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const dsaSigEnc = getDSASignatureEncoding(publicKey);
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let handle;
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if ("handle" in res) {
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handle = res.handle;
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} else {
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handle = op_node_create_public_key(
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res.data,
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res.format,
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res.type ?? "",
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res.passphrase,
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);
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}
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return op_node_verify(
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handle,
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this.hash.digest(),
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this.#digestType,
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Buffer.from(signature, encoding),
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pssSaltLength,
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dsaSigEnc,
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);
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}
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}
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export function Verify(algorithm: string, options?: WritableOptions) {
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return new VerifyImpl(algorithm, options);
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}
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Verify.prototype = VerifyImpl.prototype;
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export function signOneShot(
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algorithm: string | null | undefined,
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data: ArrayBufferView,
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key: KeyLike | SignKeyObjectInput | SignPrivateKeyInput,
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callback?: (error: Error | null, data: Buffer) => void,
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): Buffer | void {
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if (algorithm != null) {
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validateString(algorithm, "algorithm");
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}
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if (callback !== undefined) {
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validateFunction(callback, "callback");
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}
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if (!key) {
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throw new ERR_CRYPTO_SIGN_KEY_REQUIRED();
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}
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const res = prepareAsymmetricKey(key, kConsumePrivate);
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let handle;
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if ("handle" in res) {
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handle = res.handle;
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} else {
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handle = op_node_create_private_key(
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res.data,
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res.format,
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res.type ?? "",
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res.passphrase,
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);
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}
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let result: Buffer;
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if (op_node_get_asymmetric_key_type(handle) === "ed25519") {
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if (algorithm != null && algorithm !== "sha512") {
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throw new TypeError("Only 'sha512' is supported for Ed25519 keys");
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}
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result = new Buffer(64);
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op_node_sign_ed25519(handle, data, result);
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} else if (algorithm == null) {
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throw new TypeError(
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"Algorithm must be specified when using non-Ed25519 keys",
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);
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} else {
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result = Sign(algorithm!).update(data)
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.sign(new PrivateKeyObject(handle));
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}
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if (callback) {
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setTimeout(() => callback(null, result));
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} else {
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return result;
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}
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}
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export function verifyOneShot(
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algorithm: string | null | undefined,
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data: BinaryLike,
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key: KeyLike | VerifyKeyObjectInput | VerifyPublicKeyInput,
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signature: BinaryLike,
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callback?: (error: Error | null, result: boolean) => void,
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): boolean | void {
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if (algorithm != null) {
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validateString(algorithm, "algorithm");
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}
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if (callback !== undefined) {
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validateFunction(callback, "callback");
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}
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if (!key) {
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throw new ERR_CRYPTO_SIGN_KEY_REQUIRED();
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}
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const res = prepareAsymmetricKey(key, kConsumePublic);
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let handle;
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if ("handle" in res) {
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handle = res.handle;
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} else {
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handle = op_node_create_public_key(
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res.data,
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res.format,
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res.type ?? "",
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res.passphrase,
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);
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}
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let result: boolean;
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if (op_node_get_asymmetric_key_type(handle) === "ed25519") {
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if (algorithm != null && algorithm !== "sha512") {
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throw new TypeError("Only 'sha512' is supported for Ed25519 keys");
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}
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result = op_node_verify_ed25519(handle, data, signature);
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} else if (algorithm == null) {
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throw new TypeError(
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"Algorithm must be specified when using non-Ed25519 keys",
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);
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} else {
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result = Verify(algorithm!).update(data)
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.verify(new PublicKeyObject(handle), signature);
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}
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if (callback) {
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setTimeout(() => callback(null, result));
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} else {
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return result;
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}
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}
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export default {
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signOneShot,
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verifyOneShot,
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Sign,
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Verify,
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};
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