mirror of
https://github.com/denoland/deno.git
synced 2024-11-24 15:19:26 -05:00
47061a4539
Changes: - Implements a TCP socket listener that will allow for round-robin load-balancing in-process. - Cleans up the raw networking code to make it easier to work with.
375 lines
12 KiB
Rust
375 lines
12 KiB
Rust
// Copyright 2018-2024 the Deno authors. All rights reserved. MIT license.
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use crate::io::TcpStreamResource;
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use crate::ops_tls::TlsStreamResource;
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use deno_core::error::bad_resource;
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use deno_core::error::bad_resource_id;
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use deno_core::error::AnyError;
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use deno_core::AsyncRefCell;
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use deno_core::CancelHandle;
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use deno_core::Resource;
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use deno_core::ResourceId;
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use deno_core::ResourceTable;
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use std::borrow::Cow;
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use std::rc::Rc;
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pub trait NetworkStreamTrait: Into<NetworkStream> {
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type Resource;
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const RESOURCE_NAME: &'static str;
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fn local_address(&self) -> Result<NetworkStreamAddress, std::io::Error>;
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fn peer_address(&self) -> Result<NetworkStreamAddress, std::io::Error>;
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}
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#[allow(async_fn_in_trait)]
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pub trait NetworkStreamListenerTrait:
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Into<NetworkStreamListener> + Send + Sync
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{
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type Stream: NetworkStreamTrait + 'static;
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type Addr: Into<NetworkStreamAddress> + 'static;
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/// Additional data, if needed
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type ResourceData: Default;
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const RESOURCE_NAME: &'static str;
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async fn accept(&self) -> std::io::Result<(Self::Stream, Self::Addr)>;
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fn listen_address(&self) -> Result<Self::Addr, std::io::Error>;
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}
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/// A strongly-typed network listener resource for something that
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/// implements `NetworkListenerTrait`.
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pub struct NetworkListenerResource<T: NetworkStreamListenerTrait> {
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pub listener: AsyncRefCell<T>,
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/// Associated data for this resource. Not required.
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#[allow(unused)]
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pub data: T::ResourceData,
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pub cancel: CancelHandle,
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}
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impl<T: NetworkStreamListenerTrait + 'static> Resource
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for NetworkListenerResource<T>
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{
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fn name(&self) -> Cow<str> {
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T::RESOURCE_NAME.into()
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}
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fn close(self: Rc<Self>) {
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self.cancel.cancel();
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}
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}
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impl<T: NetworkStreamListenerTrait + 'static> NetworkListenerResource<T> {
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pub fn new(t: T) -> Self {
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Self {
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listener: AsyncRefCell::new(t),
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data: Default::default(),
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cancel: Default::default(),
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}
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}
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/// Returns a [`NetworkStreamListener`] from this resource if it is not in use elsewhere.
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fn take(
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resource_table: &mut ResourceTable,
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listener_rid: ResourceId,
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) -> Result<Option<NetworkStreamListener>, AnyError> {
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if let Ok(resource_rc) = resource_table.take::<Self>(listener_rid) {
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let resource = Rc::try_unwrap(resource_rc)
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.map_err(|_| bad_resource("Listener is currently in use"))?;
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return Ok(Some(resource.listener.into_inner().into()));
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}
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Ok(None)
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}
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}
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/// Each of the network streams has the exact same pattern for listening, accepting, etc, so
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/// we just codegen them all via macro to avoid repeating each one of these N times.
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macro_rules! network_stream {
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( $([$i:ident, $il:ident, $stream:path, $listener:path, $addr:path, $stream_resource:ty]),* ) => {
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/// A raw stream of one of the types handled by this extension.
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#[pin_project::pin_project(project = NetworkStreamProject)]
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pub enum NetworkStream {
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$( $i (#[pin] $stream), )*
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}
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/// A raw stream of one of the types handled by this extension.
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#[derive(Copy, Clone, PartialEq, Eq)]
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pub enum NetworkStreamType {
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$( $i, )*
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}
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/// A raw stream listener of one of the types handled by this extension.
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pub enum NetworkStreamListener {
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$( $i( $listener ), )*
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}
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$(
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impl NetworkStreamListenerTrait for $listener {
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type Stream = $stream;
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type Addr = $addr;
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type ResourceData = ();
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const RESOURCE_NAME: &'static str = concat!(stringify!($il), "Listener");
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async fn accept(&self) -> std::io::Result<(Self::Stream, Self::Addr)> {
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<$listener> :: accept(self).await
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}
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fn listen_address(&self) -> std::io::Result<Self::Addr> {
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self.local_addr()
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}
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}
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impl From<$listener> for NetworkStreamListener {
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fn from(value: $listener) -> Self {
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Self::$i(value)
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}
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}
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impl NetworkStreamTrait for $stream {
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type Resource = $stream_resource;
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const RESOURCE_NAME: &'static str = concat!(stringify!($il), "Stream");
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fn local_address(&self) -> Result<NetworkStreamAddress, std::io::Error> {
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Ok(NetworkStreamAddress::from(self.local_addr()?))
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}
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fn peer_address(&self) -> Result<NetworkStreamAddress, std::io::Error> {
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Ok(NetworkStreamAddress::from(self.peer_addr()?))
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}
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}
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impl From<$stream> for NetworkStream {
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fn from(value: $stream) -> Self {
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Self::$i(value)
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}
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}
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)*
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impl NetworkStream {
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pub fn local_address(&self) -> Result<NetworkStreamAddress, std::io::Error> {
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match self {
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$( Self::$i(stm) => Ok(NetworkStreamAddress::from(stm.local_addr()?)), )*
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}
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}
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pub fn peer_address(&self) -> Result<NetworkStreamAddress, std::io::Error> {
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match self {
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$( Self::$i(stm) => Ok(NetworkStreamAddress::from(stm.peer_addr()?)), )*
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}
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}
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pub fn stream(&self) -> NetworkStreamType {
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match self {
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$( Self::$i(_) => NetworkStreamType::$i, )*
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}
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}
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}
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impl tokio::io::AsyncRead for NetworkStream {
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fn poll_read(
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self: std::pin::Pin<&mut Self>,
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cx: &mut std::task::Context<'_>,
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buf: &mut tokio::io::ReadBuf<'_>,
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) -> std::task::Poll<std::io::Result<()>> {
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match self.project() {
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$( NetworkStreamProject::$i(s) => s.poll_read(cx, buf), )*
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}
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}
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}
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impl tokio::io::AsyncWrite for NetworkStream {
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fn poll_write(
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self: std::pin::Pin<&mut Self>,
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cx: &mut std::task::Context<'_>,
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buf: &[u8],
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) -> std::task::Poll<Result<usize, std::io::Error>> {
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match self.project() {
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$( NetworkStreamProject::$i(s) => s.poll_write(cx, buf), )*
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}
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}
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fn poll_flush(
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self: std::pin::Pin<&mut Self>,
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cx: &mut std::task::Context<'_>,
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) -> std::task::Poll<Result<(), std::io::Error>> {
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match self.project() {
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$( NetworkStreamProject::$i(s) => s.poll_flush(cx), )*
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}
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}
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fn poll_shutdown(
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self: std::pin::Pin<&mut Self>,
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cx: &mut std::task::Context<'_>,
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) -> std::task::Poll<Result<(), std::io::Error>> {
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match self.project() {
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$( NetworkStreamProject::$i(s) => s.poll_shutdown(cx), )*
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}
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}
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fn is_write_vectored(&self) -> bool {
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match self {
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$( NetworkStream::$i(s) => s.is_write_vectored(), )*
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}
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}
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fn poll_write_vectored(
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self: std::pin::Pin<&mut Self>,
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cx: &mut std::task::Context<'_>,
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bufs: &[std::io::IoSlice<'_>],
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) -> std::task::Poll<Result<usize, std::io::Error>> {
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match self.project() {
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$( NetworkStreamProject::$i(s) => s.poll_write_vectored(cx, bufs), )*
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}
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}
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}
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impl NetworkStreamListener {
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/// Accepts a connection on this listener.
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pub async fn accept(&self) -> Result<(NetworkStream, NetworkStreamAddress), std::io::Error> {
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Ok(match self {
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$(
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Self::$i(s) => {
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let (stm, addr) = s.accept().await?;
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(NetworkStream::$i(stm), addr.into())
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}
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)*
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})
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}
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pub fn listen_address(&self) -> Result<NetworkStreamAddress, std::io::Error> {
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match self {
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$( Self::$i(s) => { Ok(NetworkStreamAddress::from(s.listen_address()?)) } )*
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}
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}
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pub fn stream(&self) -> NetworkStreamType {
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match self {
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$( Self::$i(_) => { NetworkStreamType::$i } )*
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}
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}
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/// Return a `NetworkStreamListener` if a resource exists for this `ResourceId` and it is currently
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/// not locked.
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pub fn take_resource(resource_table: &mut ResourceTable, listener_rid: ResourceId) -> Result<NetworkStreamListener, AnyError> {
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$(
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if let Some(resource) = NetworkListenerResource::<$listener>::take(resource_table, listener_rid)? {
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return Ok(resource)
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}
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)*
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Err(bad_resource_id())
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}
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}
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};
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}
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#[cfg(unix)]
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network_stream!(
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[
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Tcp,
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tcp,
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tokio::net::TcpStream,
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crate::tcp::TcpListener,
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std::net::SocketAddr,
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TcpStreamResource
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],
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[
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Tls,
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tls,
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crate::ops_tls::TlsStream,
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crate::ops_tls::TlsListener,
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std::net::SocketAddr,
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TlsStreamResource
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],
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[
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Unix,
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unix,
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tokio::net::UnixStream,
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tokio::net::UnixListener,
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tokio::net::unix::SocketAddr,
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crate::io::UnixStreamResource
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]
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);
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#[cfg(not(unix))]
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network_stream!(
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[
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Tcp,
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tcp,
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tokio::net::TcpStream,
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crate::tcp::TcpListener,
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std::net::SocketAddr,
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TcpStreamResource
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],
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[
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Tls,
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tls,
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crate::ops_tls::TlsStream,
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crate::ops_tls::TlsListener,
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std::net::SocketAddr,
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TlsStreamResource
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]
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);
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pub enum NetworkStreamAddress {
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Ip(std::net::SocketAddr),
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#[cfg(unix)]
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Unix(tokio::net::unix::SocketAddr),
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}
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impl From<std::net::SocketAddr> for NetworkStreamAddress {
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fn from(value: std::net::SocketAddr) -> Self {
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NetworkStreamAddress::Ip(value)
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}
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}
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#[cfg(unix)]
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impl From<tokio::net::unix::SocketAddr> for NetworkStreamAddress {
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fn from(value: tokio::net::unix::SocketAddr) -> Self {
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NetworkStreamAddress::Unix(value)
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}
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}
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/// In some cases it may be more efficient to extract the resource from the resource table and use it directly (for example, an HTTP server).
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/// This method will extract a stream from the resource table and return it, unwrapped.
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pub fn take_network_stream_resource(
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resource_table: &mut ResourceTable,
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stream_rid: ResourceId,
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) -> Result<NetworkStream, AnyError> {
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// The stream we're attempting to unwrap may be in use somewhere else. If that's the case, we cannot proceed
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// with the process of unwrapping this connection, so we just return a bad resource error.
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// See also: https://github.com/denoland/deno/pull/16242
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if let Ok(resource_rc) = resource_table.take::<TcpStreamResource>(stream_rid)
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{
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// This TCP connection might be used somewhere else.
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let resource = Rc::try_unwrap(resource_rc)
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.map_err(|_| bad_resource("TCP stream is currently in use"))?;
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let (read_half, write_half) = resource.into_inner();
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let tcp_stream = read_half.reunite(write_half)?;
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return Ok(NetworkStream::Tcp(tcp_stream));
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}
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if let Ok(resource_rc) = resource_table.take::<TlsStreamResource>(stream_rid)
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{
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// This TLS connection might be used somewhere else.
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let resource = Rc::try_unwrap(resource_rc)
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.map_err(|_| bad_resource("TLS stream is currently in use"))?;
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let (read_half, write_half) = resource.into_inner();
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let tls_stream = read_half.unsplit(write_half);
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return Ok(NetworkStream::Tls(tls_stream));
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}
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#[cfg(unix)]
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if let Ok(resource_rc) =
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resource_table.take::<crate::io::UnixStreamResource>(stream_rid)
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{
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// This UNIX socket might be used somewhere else.
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let resource = Rc::try_unwrap(resource_rc)
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.map_err(|_| bad_resource("UNIX stream is currently in use"))?;
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let (read_half, write_half) = resource.into_inner();
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let unix_stream = read_half.reunite(write_half)?;
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return Ok(NetworkStream::Unix(unix_stream));
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}
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Err(bad_resource_id())
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}
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/// In some cases it may be more efficient to extract the resource from the resource table and use it directly (for example, an HTTP server).
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/// This method will extract a stream from the resource table and return it, unwrapped.
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pub fn take_network_stream_listener_resource(
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resource_table: &mut ResourceTable,
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listener_rid: ResourceId,
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) -> Result<NetworkStreamListener, AnyError> {
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NetworkStreamListener::take_resource(resource_table, listener_rid)
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}
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