mirror of
https://github.com/denoland/deno.git
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d47147fb6a
This commit moves "deno_std/node" in "ext/node" crate. The code is transpiled and snapshotted during the build process. During the first pass a minimal amount of work was done to create the snapshot, a lot of code in "ext/node" depends on presence of "Deno" global. This code will be gradually fixed in the follow up PRs to migrate it to import relevant APIs from "internal:" modules. Currently the code from snapshot is not used in any way, and all Node/npm compatibility still uses code from "https://deno.land/std/node" (or from the location specified by "DENO_NODE_COMPAT_URL"). This will also be handled in a follow up PRs. --------- Co-authored-by: crowlkats <crowlkats@toaxl.com> Co-authored-by: Divy Srivastava <dj.srivastava23@gmail.com> Co-authored-by: Yoshiya Hinosawa <stibium121@gmail.com>
397 lines
11 KiB
TypeScript
397 lines
11 KiB
TypeScript
// Copyright 2018-2023 the Deno authors. All rights reserved. MIT license.
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// Copyright Joyent, Inc. and other Node contributors.
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//
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// Permission is hereby granted, free of charge, to any person obtaining a
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// copy of this software and associated documentation files (the
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// "Software"), to deal in the Software without restriction, including
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// without limitation the rights to use, copy, modify, merge, publish,
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// distribute, sublicense, and/or sell copies of the Software, and to permit
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// persons to whom the Software is furnished to do so, subject to the
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// following conditions:
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//
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// The above copyright notice and this permission notice shall be included
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// in all copies or substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
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// OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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// MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN
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// NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM,
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// DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
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// OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
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// USE OR OTHER DEALINGS IN THE SOFTWARE.
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// This module ports:
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// - https://github.com/nodejs/node/blob/master/src/pipe_wrap.cc
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// - https://github.com/nodejs/node/blob/master/src/pipe_wrap.h
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import { notImplemented } from "internal:deno_node/polyfills/_utils.ts";
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import { unreachable } from "internal:deno_node/polyfills/_util/asserts.ts";
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import { ConnectionWrap } from "internal:deno_node/polyfills/internal_binding/connection_wrap.ts";
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import {
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AsyncWrap,
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providerType,
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} from "internal:deno_node/polyfills/internal_binding/async_wrap.ts";
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import { LibuvStreamWrap } from "internal:deno_node/polyfills/internal_binding/stream_wrap.ts";
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import { codeMap } from "internal:deno_node/polyfills/internal_binding/uv.ts";
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import { delay } from "internal:deno_node/polyfills/_util/async.ts";
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import { kStreamBaseField } from "internal:deno_node/polyfills/internal_binding/stream_wrap.ts";
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import {
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ceilPowOf2,
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INITIAL_ACCEPT_BACKOFF_DELAY,
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MAX_ACCEPT_BACKOFF_DELAY,
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} from "internal:deno_node/polyfills/internal_binding/_listen.ts";
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import { isWindows } from "internal:deno_node/polyfills/_util/os.ts";
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import { fs } from "internal:deno_node/polyfills/internal_binding/constants.ts";
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export enum socketType {
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SOCKET,
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SERVER,
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IPC,
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}
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export class Pipe extends ConnectionWrap {
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override reading = false;
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ipc: boolean;
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// REF: https://github.com/nodejs/node/blob/master/deps/uv/src/win/pipe.c#L48
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#pendingInstances = 4;
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#address?: string;
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#backlog?: number;
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#listener!: Deno.Listener;
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#connections = 0;
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#closed = false;
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#acceptBackoffDelay?: number;
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constructor(type: number, conn?: Deno.UnixConn) {
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let provider: providerType;
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let ipc: boolean;
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switch (type) {
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case socketType.SOCKET: {
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provider = providerType.PIPEWRAP;
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ipc = false;
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break;
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}
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case socketType.SERVER: {
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provider = providerType.PIPESERVERWRAP;
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ipc = false;
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break;
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}
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case socketType.IPC: {
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provider = providerType.PIPEWRAP;
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ipc = true;
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break;
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}
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default: {
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unreachable();
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}
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}
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super(provider, conn);
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this.ipc = ipc;
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if (conn && provider === providerType.PIPEWRAP) {
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const localAddr = conn.localAddr as Deno.UnixAddr;
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this.#address = localAddr.path;
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}
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}
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open(_fd: number): number {
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// REF: https://github.com/denoland/deno/issues/6529
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notImplemented("Pipe.prototype.open");
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}
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/**
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* Bind to a Unix domain or Windows named pipe.
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* @param name Unix domain or Windows named pipe the server should listen to.
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* @return An error status code.
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*/
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bind(name: string) {
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// Deno doesn't currently separate bind from connect. For now we noop under
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// the assumption we will connect shortly.
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// REF: https://doc.deno.land/deno/unstable/~/Deno.connect
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this.#address = name;
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return 0;
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}
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/**
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* Connect to a Unix domain or Windows named pipe.
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* @param req A PipeConnectWrap instance.
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* @param address Unix domain or Windows named pipe the server should connect to.
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* @return An error status code.
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*/
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connect(req: PipeConnectWrap, address: string) {
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if (isWindows) {
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// REF: https://github.com/denoland/deno/issues/10244
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notImplemented("Pipe.prototype.connect - Windows");
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}
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const connectOptions: Deno.UnixConnectOptions = {
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path: address,
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transport: "unix",
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};
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Deno.connect(connectOptions).then(
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(conn: Deno.UnixConn) => {
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const localAddr = conn.localAddr as Deno.UnixAddr;
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this.#address = req.address = localAddr.path;
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this[kStreamBaseField] = conn;
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try {
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this.afterConnect(req, 0);
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} catch {
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// swallow callback errors.
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}
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},
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(e) => {
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// TODO(cmorten): correct mapping of connection error to status code.
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let code: number;
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if (e instanceof Deno.errors.NotFound) {
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code = codeMap.get("ENOENT")!;
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} else if (e instanceof Deno.errors.PermissionDenied) {
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code = codeMap.get("EACCES")!;
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} else {
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code = codeMap.get("ECONNREFUSED")!;
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}
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try {
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this.afterConnect(req, code);
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} catch {
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// swallow callback errors.
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}
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},
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);
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return 0;
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}
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/**
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* Listen for new connections.
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* @param backlog The maximum length of the queue of pending connections.
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* @return An error status code.
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*/
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listen(backlog: number): number {
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if (isWindows) {
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// REF: https://github.com/denoland/deno/issues/10244
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notImplemented("Pipe.prototype.listen - Windows");
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}
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this.#backlog = isWindows
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? this.#pendingInstances
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: ceilPowOf2(backlog + 1);
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const listenOptions = {
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path: this.#address!,
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transport: "unix" as const,
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};
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let listener;
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try {
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listener = Deno.listen(listenOptions);
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} catch (e) {
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if (e instanceof Deno.errors.AddrInUse) {
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return codeMap.get("EADDRINUSE")!;
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} else if (e instanceof Deno.errors.AddrNotAvailable) {
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return codeMap.get("EADDRNOTAVAIL")!;
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} else if (e instanceof Deno.errors.PermissionDenied) {
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throw e;
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}
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// TODO(cmorten): map errors to appropriate error codes.
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return codeMap.get("UNKNOWN")!;
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}
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const address = listener.addr as Deno.UnixAddr;
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this.#address = address.path;
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this.#listener = listener;
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this.#accept();
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return 0;
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}
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override ref() {
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if (this.#listener) {
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this.#listener.ref();
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}
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}
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override unref() {
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if (this.#listener) {
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this.#listener.unref();
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}
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}
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/**
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* Set the number of pending pipe instance handles when the pipe server is
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* waiting for connections. This setting applies to Windows only.
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* @param instances Number of pending pipe instances.
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*/
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setPendingInstances(instances: number) {
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this.#pendingInstances = instances;
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}
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/**
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* Alters pipe permissions, allowing it to be accessed from processes run by
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* different users. Makes the pipe writable or readable by all users. Mode
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* can be `UV_WRITABLE`, `UV_READABLE` or `UV_WRITABLE | UV_READABLE`. This
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* function is blocking.
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* @param mode Pipe permissions mode.
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* @return An error status code.
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*/
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fchmod(mode: number) {
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if (
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mode != constants.UV_READABLE &&
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mode != constants.UV_WRITABLE &&
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mode != (constants.UV_WRITABLE | constants.UV_READABLE)
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) {
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return codeMap.get("EINVAL");
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}
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let desiredMode = 0;
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if (mode & constants.UV_READABLE) {
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desiredMode |= fs.S_IRUSR | fs.S_IRGRP | fs.S_IROTH;
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}
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if (mode & constants.UV_WRITABLE) {
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desiredMode |= fs.S_IWUSR | fs.S_IWGRP | fs.S_IWOTH;
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}
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// TODO(cmorten): this will incorrectly throw on Windows
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// REF: https://github.com/denoland/deno/issues/4357
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try {
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Deno.chmodSync(this.#address!, desiredMode);
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} catch {
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// TODO(cmorten): map errors to appropriate error codes.
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return codeMap.get("UNKNOWN")!;
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}
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return 0;
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}
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/** Handle backoff delays following an unsuccessful accept. */
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async #acceptBackoff() {
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// Backoff after transient errors to allow time for the system to
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// recover, and avoid blocking up the event loop with a continuously
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// running loop.
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if (!this.#acceptBackoffDelay) {
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this.#acceptBackoffDelay = INITIAL_ACCEPT_BACKOFF_DELAY;
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} else {
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this.#acceptBackoffDelay *= 2;
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}
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if (this.#acceptBackoffDelay >= MAX_ACCEPT_BACKOFF_DELAY) {
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this.#acceptBackoffDelay = MAX_ACCEPT_BACKOFF_DELAY;
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}
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await delay(this.#acceptBackoffDelay);
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this.#accept();
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}
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/** Accept new connections. */
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async #accept(): Promise<void> {
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if (this.#closed) {
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return;
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}
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if (this.#connections > this.#backlog!) {
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this.#acceptBackoff();
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return;
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}
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let connection: Deno.Conn;
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try {
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connection = await this.#listener.accept();
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} catch (e) {
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if (e instanceof Deno.errors.BadResource && this.#closed) {
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// Listener and server has closed.
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return;
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}
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try {
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// TODO(cmorten): map errors to appropriate error codes.
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this.onconnection!(codeMap.get("UNKNOWN")!, undefined);
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} catch {
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// swallow callback errors.
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}
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this.#acceptBackoff();
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return;
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}
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// Reset the backoff delay upon successful accept.
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this.#acceptBackoffDelay = undefined;
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const connectionHandle = new Pipe(socketType.SOCKET, connection);
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this.#connections++;
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try {
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this.onconnection!(0, connectionHandle);
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} catch {
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// swallow callback errors.
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}
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return this.#accept();
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}
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/** Handle server closure. */
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override _onClose(): number {
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this.#closed = true;
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this.reading = false;
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this.#address = undefined;
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this.#backlog = undefined;
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this.#connections = 0;
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this.#acceptBackoffDelay = undefined;
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if (this.provider === providerType.PIPESERVERWRAP) {
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try {
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this.#listener.close();
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} catch {
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// listener already closed
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}
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}
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return LibuvStreamWrap.prototype._onClose.call(this);
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}
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}
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export class PipeConnectWrap extends AsyncWrap {
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oncomplete!: (
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status: number,
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handle: ConnectionWrap,
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req: PipeConnectWrap,
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readable: boolean,
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writeable: boolean,
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) => void;
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address!: string;
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constructor() {
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super(providerType.PIPECONNECTWRAP);
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}
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}
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export enum constants {
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SOCKET = socketType.SOCKET,
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SERVER = socketType.SERVER,
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IPC = socketType.IPC,
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UV_READABLE = 1,
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UV_WRITABLE = 2,
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}
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