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https://github.com/denoland/deno.git
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3f15e30062
This change fixes Decipheriv behavior when autoPadding disabled and enabled. By this change, the example given in https://github.com/denoland/deno/issues/20924#issuecomment-2345931295 works in the same way as Node. closes #20924
494 lines
12 KiB
TypeScript
494 lines
12 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 { core } from "ext:core/mod.js";
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const {
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encode,
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} = core;
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import {
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op_node_cipheriv_encrypt,
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op_node_cipheriv_final,
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op_node_cipheriv_set_aad,
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op_node_cipheriv_take,
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op_node_create_cipheriv,
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op_node_create_decipheriv,
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op_node_decipheriv_decrypt,
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op_node_decipheriv_final,
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op_node_decipheriv_set_aad,
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op_node_decipheriv_take,
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op_node_private_decrypt,
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op_node_private_encrypt,
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op_node_public_encrypt,
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} from "ext:core/ops";
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import { Buffer } from "node:buffer";
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import { notImplemented } from "ext:deno_node/_utils.ts";
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import type { TransformOptions } from "ext:deno_node/_stream.d.ts";
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import { Transform } from "ext:deno_node/_stream.mjs";
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import {
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getArrayBufferOrView,
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KeyObject,
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} from "ext:deno_node/internal/crypto/keys.ts";
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import type { BufferEncoding } from "ext:deno_node/_global.d.ts";
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import type {
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BinaryLike,
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Encoding,
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} from "ext:deno_node/internal/crypto/types.ts";
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import { getDefaultEncoding } from "ext:deno_node/internal/crypto/util.ts";
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import {
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isAnyArrayBuffer,
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isArrayBufferView,
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} from "ext:deno_node/internal/util/types.ts";
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export function isStringOrBuffer(
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val: unknown,
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): val is string | Buffer | ArrayBuffer | ArrayBufferView {
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return typeof val === "string" ||
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isArrayBufferView(val) ||
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isAnyArrayBuffer(val) ||
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Buffer.isBuffer(val);
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}
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const NO_TAG = new Uint8Array();
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export type CipherCCMTypes =
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| "aes-128-ccm"
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| "aes-192-ccm"
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| "aes-256-ccm"
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| "chacha20-poly1305";
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export type CipherGCMTypes = "aes-128-gcm" | "aes-192-gcm" | "aes-256-gcm";
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export type CipherOCBTypes = "aes-128-ocb" | "aes-192-ocb" | "aes-256-ocb";
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export type CipherKey = BinaryLike | KeyObject;
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export interface CipherCCMOptions extends TransformOptions {
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authTagLength: number;
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}
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export interface CipherGCMOptions extends TransformOptions {
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authTagLength?: number | undefined;
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}
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export interface CipherOCBOptions extends TransformOptions {
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authTagLength: number;
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}
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export interface Cipher extends ReturnType<typeof Transform> {
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update(
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data: string,
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inputEncoding?: Encoding,
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outputEncoding?: Encoding,
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): string;
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final(outputEncoding?: BufferEncoding): string;
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setAutoPadding(autoPadding?: boolean): this;
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}
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export type Decipher = Cipher;
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export interface CipherCCM extends Cipher {
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setAAD(
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buffer: ArrayBufferView,
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options: {
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plaintextLength: number;
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},
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): this;
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getAuthTag(): Buffer;
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}
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export interface CipherGCM extends Cipher {
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setAAD(
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buffer: ArrayBufferView,
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options?: {
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plaintextLength: number;
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},
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): this;
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getAuthTag(): Buffer;
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}
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export interface CipherOCB extends Cipher {
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setAAD(
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buffer: ArrayBufferView,
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options?: {
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plaintextLength: number;
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},
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): this;
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getAuthTag(): Buffer;
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}
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export interface DecipherCCM extends Decipher {
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setAuthTag(buffer: ArrayBufferView): this;
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setAAD(
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buffer: ArrayBufferView,
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options: {
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plaintextLength: number;
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},
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): this;
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}
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export interface DecipherGCM extends Decipher {
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setAuthTag(buffer: ArrayBufferView): this;
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setAAD(
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buffer: ArrayBufferView,
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options?: {
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plaintextLength: number;
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},
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): this;
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}
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export interface DecipherOCB extends Decipher {
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setAuthTag(buffer: ArrayBufferView): this;
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setAAD(
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buffer: ArrayBufferView,
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options?: {
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plaintextLength: number;
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},
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): this;
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}
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function toU8(input: string | Uint8Array): Uint8Array {
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return typeof input === "string" ? encode(input) : input;
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}
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export class Cipheriv extends Transform implements Cipher {
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/** CipherContext resource id */
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#context: number;
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/** plaintext data cache */
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#cache: BlockModeCache;
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#needsBlockCache: boolean;
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#authTag?: Buffer;
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#autoPadding = true;
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constructor(
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cipher: string,
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key: CipherKey,
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iv: BinaryLike | null,
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options?: TransformOptions,
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) {
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super({
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transform(chunk, encoding, cb) {
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this.push(this.update(chunk, encoding));
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cb();
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},
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final(cb) {
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this.push(this.final());
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cb();
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},
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...options,
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});
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this.#cache = new BlockModeCache(false);
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this.#context = op_node_create_cipheriv(cipher, toU8(key), toU8(iv));
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this.#needsBlockCache =
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!(cipher == "aes-128-gcm" || cipher == "aes-256-gcm");
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if (this.#context == 0) {
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throw new TypeError("Unknown cipher");
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}
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}
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final(encoding: string = getDefaultEncoding()): Buffer | string {
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const buf = new Buffer(16);
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if (this.#cache.cache.byteLength == 0) {
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const maybeTag = op_node_cipheriv_take(this.#context);
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if (maybeTag) this.#authTag = Buffer.from(maybeTag);
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return encoding === "buffer" ? Buffer.from([]) : "";
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}
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if (!this.#autoPadding && this.#cache.cache.byteLength != 16) {
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throw new Error("Invalid final block size");
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}
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const maybeTag = op_node_cipheriv_final(
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this.#context,
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this.#autoPadding,
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this.#cache.cache,
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buf,
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);
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if (maybeTag) {
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this.#authTag = Buffer.from(maybeTag);
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return encoding === "buffer" ? Buffer.from([]) : "";
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}
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return encoding === "buffer" ? buf : buf.toString(encoding);
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}
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getAuthTag(): Buffer {
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return this.#authTag!;
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}
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setAAD(
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buffer: ArrayBufferView,
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_options?: {
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plaintextLength: number;
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},
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): this {
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op_node_cipheriv_set_aad(this.#context, buffer);
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return this;
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}
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setAutoPadding(autoPadding?: boolean): this {
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this.#autoPadding = !!autoPadding;
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return this;
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}
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update(
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data: string | Buffer | ArrayBufferView,
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inputEncoding?: Encoding,
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outputEncoding: Encoding = getDefaultEncoding(),
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): Buffer | string {
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// TODO(kt3k): throw ERR_INVALID_ARG_TYPE if data is not string, Buffer, or ArrayBufferView
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let buf = data;
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if (typeof data === "string") {
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buf = Buffer.from(data, inputEncoding);
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}
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let output;
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if (!this.#needsBlockCache) {
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output = Buffer.allocUnsafe(buf.length);
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op_node_cipheriv_encrypt(this.#context, buf, output);
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return outputEncoding === "buffer"
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? output
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: output.toString(outputEncoding);
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}
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this.#cache.add(buf);
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const input = this.#cache.get();
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if (input === null) {
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output = Buffer.alloc(0);
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} else {
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output = Buffer.allocUnsafe(input.length);
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op_node_cipheriv_encrypt(this.#context, input, output);
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}
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return outputEncoding === "buffer"
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? output
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: output.toString(outputEncoding);
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}
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}
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/** Caches data and output the chunk of multiple of 16.
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* Used by CBC, ECB modes of block ciphers */
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class BlockModeCache {
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cache: Uint8Array;
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// The last chunk can be padded when decrypting.
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#lastChunkIsNonZero: boolean;
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constructor(lastChunkIsNotZero = false) {
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this.cache = new Uint8Array(0);
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this.#lastChunkIsNonZero = lastChunkIsNotZero;
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}
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add(data: Uint8Array) {
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const cache = this.cache;
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this.cache = new Uint8Array(cache.length + data.length);
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this.cache.set(cache);
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this.cache.set(data, cache.length);
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}
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/** Gets the chunk of the length of largest multiple of 16.
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* Used for preparing data for encryption/decryption */
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get(): Uint8Array | null {
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let len = this.cache.length;
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if (this.#lastChunkIsNonZero) {
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// Reduces the available chunk length by 1 to keep the last chunk
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len -= 1;
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}
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if (len < 16) {
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return null;
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}
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len = Math.floor(len / 16) * 16;
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const out = this.cache.subarray(0, len);
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this.cache = this.cache.subarray(len);
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return out;
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}
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set lastChunkIsNonZero(value: boolean) {
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this.#lastChunkIsNonZero = value;
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}
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}
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export class Decipheriv extends Transform implements Cipher {
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/** DecipherContext resource id */
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#context: number;
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#autoPadding = true;
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/** ciphertext data cache */
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#cache: BlockModeCache;
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#needsBlockCache: boolean;
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#authTag?: BinaryLike;
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constructor(
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cipher: string,
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key: CipherKey,
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iv: BinaryLike | null,
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options?: TransformOptions,
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) {
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super({
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transform(chunk, encoding, cb) {
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this.push(this.update(chunk, encoding));
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cb();
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},
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final(cb) {
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this.push(this.final());
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cb();
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},
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...options,
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});
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this.#cache = new BlockModeCache(this.#autoPadding);
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this.#context = op_node_create_decipheriv(cipher, toU8(key), toU8(iv));
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this.#needsBlockCache =
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!(cipher == "aes-128-gcm" || cipher == "aes-256-gcm");
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if (this.#context == 0) {
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throw new TypeError("Unknown cipher");
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}
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}
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final(encoding: string = getDefaultEncoding()): Buffer | string {
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if (!this.#needsBlockCache || this.#cache.cache.byteLength === 0) {
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op_node_decipheriv_take(this.#context);
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return encoding === "buffer" ? Buffer.from([]) : "";
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}
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if (this.#cache.cache.byteLength != 16) {
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throw new Error("Invalid final block size");
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}
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let buf = new Buffer(16);
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op_node_decipheriv_final(
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this.#context,
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this.#autoPadding,
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this.#cache.cache,
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buf,
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this.#authTag || NO_TAG,
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);
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buf = buf.subarray(0, 16 - buf.at(-1)); // Padded in Pkcs7 mode
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return encoding === "buffer" ? buf : buf.toString(encoding);
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}
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setAAD(
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buffer: ArrayBufferView,
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_options?: {
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plaintextLength: number;
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},
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): this {
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op_node_decipheriv_set_aad(this.#context, buffer);
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return this;
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}
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setAuthTag(buffer: BinaryLike, _encoding?: string): this {
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this.#authTag = buffer;
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return this;
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}
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setAutoPadding(autoPadding?: boolean): this {
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this.#autoPadding = Boolean(autoPadding);
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this.#cache.lastChunkIsNonZero = this.#autoPadding;
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return this;
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}
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update(
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data: string | Buffer | ArrayBufferView,
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inputEncoding?: Encoding,
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outputEncoding: Encoding = getDefaultEncoding(),
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): Buffer | string {
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// TODO(kt3k): throw ERR_INVALID_ARG_TYPE if data is not string, Buffer, or ArrayBufferView
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let buf = data;
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if (typeof data === "string") {
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buf = Buffer.from(data, inputEncoding);
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}
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let output;
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if (!this.#needsBlockCache) {
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output = Buffer.allocUnsafe(buf.length);
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op_node_decipheriv_decrypt(this.#context, buf, output);
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return outputEncoding === "buffer"
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? output
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: output.toString(outputEncoding);
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}
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this.#cache.add(buf);
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const input = this.#cache.get();
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if (input === null) {
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output = Buffer.alloc(0);
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} else {
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output = new Buffer(input.length);
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op_node_decipheriv_decrypt(this.#context, input, output);
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}
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return outputEncoding === "buffer"
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? output
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: output.toString(outputEncoding);
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}
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}
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export function privateEncrypt(
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privateKey: ArrayBufferView | string | KeyObject,
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buffer: ArrayBufferView | string | KeyObject,
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): Buffer {
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const { data } = prepareKey(privateKey);
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const padding = privateKey.padding || 1;
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buffer = getArrayBufferOrView(buffer, "buffer");
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return op_node_private_encrypt(data, buffer, padding);
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}
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export function privateDecrypt(
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privateKey: ArrayBufferView | string | KeyObject,
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buffer: ArrayBufferView | string | KeyObject,
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): Buffer {
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const { data } = prepareKey(privateKey);
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const padding = privateKey.padding || 1;
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buffer = getArrayBufferOrView(buffer, "buffer");
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return op_node_private_decrypt(data, buffer, padding);
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}
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export function publicEncrypt(
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publicKey: ArrayBufferView | string | KeyObject,
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buffer: ArrayBufferView | string | KeyObject,
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): Buffer {
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const { data } = prepareKey(publicKey);
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const padding = publicKey.padding || 1;
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buffer = getArrayBufferOrView(buffer, "buffer");
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return op_node_public_encrypt(data, buffer, padding);
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}
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export function prepareKey(key) {
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// TODO(@littledivy): handle these cases
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// - node KeyObject
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// - web CryptoKey
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if (isStringOrBuffer(key)) {
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return { data: getArrayBufferOrView(key, "key") };
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} else if (typeof key == "object") {
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const { key: data, encoding } = key;
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if (!isStringOrBuffer(data)) {
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throw new TypeError("Invalid key type");
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}
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return { data: getArrayBufferOrView(data, "key", encoding) };
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}
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throw new TypeError("Invalid key type");
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}
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export function publicDecrypt() {
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notImplemented("crypto.publicDecrypt");
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}
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export default {
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privateDecrypt,
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privateEncrypt,
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publicDecrypt,
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publicEncrypt,
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Cipheriv,
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Decipheriv,
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prepareKey,
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};
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