mirror of
https://github.com/denoland/deno.git
synced 2024-11-25 15:29:32 -05:00
562 lines
15 KiB
Rust
562 lines
15 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::IpAddr;
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use crate::ops::NetError;
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use crate::ops::TlsHandshakeInfo;
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use crate::raw::NetworkListenerResource;
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use crate::resolve_addr::resolve_addr;
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use crate::resolve_addr::resolve_addr_sync;
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use crate::tcp::TcpListener;
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use crate::DefaultTlsOptions;
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use crate::NetPermissions;
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use crate::UnsafelyIgnoreCertificateErrors;
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use deno_core::futures::TryFutureExt;
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use deno_core::op2;
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use deno_core::v8;
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use deno_core::AsyncRefCell;
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use deno_core::AsyncResult;
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use deno_core::CancelHandle;
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use deno_core::CancelTryFuture;
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use deno_core::OpState;
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use deno_core::RcRef;
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use deno_core::Resource;
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use deno_core::ResourceId;
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use deno_tls::create_client_config;
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use deno_tls::load_certs;
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use deno_tls::load_private_keys;
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use deno_tls::new_resolver;
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use deno_tls::rustls::pki_types::ServerName;
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use deno_tls::rustls::ClientConnection;
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use deno_tls::rustls::ServerConfig;
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use deno_tls::ServerConfigProvider;
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use deno_tls::SocketUse;
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use deno_tls::TlsKey;
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use deno_tls::TlsKeyLookup;
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use deno_tls::TlsKeys;
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use deno_tls::TlsKeysHolder;
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use rustls_tokio_stream::TlsStreamRead;
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use rustls_tokio_stream::TlsStreamWrite;
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use serde::Deserialize;
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use std::borrow::Cow;
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use std::cell::RefCell;
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use std::convert::From;
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use std::fs::File;
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use std::io::BufReader;
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use std::io::ErrorKind;
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use std::io::Read;
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use std::net::SocketAddr;
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use std::num::NonZeroUsize;
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use std::rc::Rc;
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use std::sync::Arc;
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use tokio::io::AsyncReadExt;
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use tokio::io::AsyncWriteExt;
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use tokio::net::TcpStream;
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pub use rustls_tokio_stream::TlsStream;
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pub(crate) const TLS_BUFFER_SIZE: Option<NonZeroUsize> =
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NonZeroUsize::new(65536);
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pub struct TlsListener {
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pub(crate) tcp_listener: TcpListener,
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pub(crate) tls_config: Option<Arc<ServerConfig>>,
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pub(crate) server_config_provider: Option<ServerConfigProvider>,
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}
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impl TlsListener {
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pub async fn accept(&self) -> std::io::Result<(TlsStream, SocketAddr)> {
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let (tcp, addr) = self.tcp_listener.accept().await?;
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let tls = if let Some(provider) = &self.server_config_provider {
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TlsStream::new_server_side_acceptor(
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tcp,
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provider.clone(),
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TLS_BUFFER_SIZE,
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)
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} else {
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TlsStream::new_server_side(
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tcp,
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self.tls_config.clone().unwrap(),
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TLS_BUFFER_SIZE,
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)
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};
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Ok((tls, addr))
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}
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pub fn local_addr(&self) -> std::io::Result<SocketAddr> {
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self.tcp_listener.local_addr()
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}
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}
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#[derive(Debug)]
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pub struct TlsStreamResource {
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rd: AsyncRefCell<TlsStreamRead>,
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wr: AsyncRefCell<TlsStreamWrite>,
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// `None` when a TLS handshake hasn't been done.
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handshake_info: RefCell<Option<TlsHandshakeInfo>>,
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cancel_handle: CancelHandle, // Only read and handshake ops get canceled.
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}
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impl TlsStreamResource {
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pub fn new((rd, wr): (TlsStreamRead, TlsStreamWrite)) -> Self {
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Self {
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rd: rd.into(),
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wr: wr.into(),
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handshake_info: RefCell::new(None),
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cancel_handle: Default::default(),
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}
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}
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pub fn into_inner(self) -> (TlsStreamRead, TlsStreamWrite) {
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(self.rd.into_inner(), self.wr.into_inner())
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}
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pub async fn read(
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self: Rc<Self>,
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data: &mut [u8],
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) -> Result<usize, std::io::Error> {
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let mut rd = RcRef::map(&self, |r| &r.rd).borrow_mut().await;
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let cancel_handle = RcRef::map(&self, |r| &r.cancel_handle);
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rd.read(data).try_or_cancel(cancel_handle).await
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}
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pub async fn write(
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self: Rc<Self>,
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data: &[u8],
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) -> Result<usize, std::io::Error> {
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let mut wr = RcRef::map(self, |r| &r.wr).borrow_mut().await;
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let nwritten = wr.write(data).await?;
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wr.flush().await?;
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Ok(nwritten)
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}
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pub async fn shutdown(self: Rc<Self>) -> Result<(), std::io::Error> {
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let mut wr = RcRef::map(self, |r| &r.wr).borrow_mut().await;
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wr.shutdown().await?;
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Ok(())
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}
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pub async fn handshake(
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self: &Rc<Self>,
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) -> Result<TlsHandshakeInfo, std::io::Error> {
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if let Some(tls_info) = &*self.handshake_info.borrow() {
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return Ok(tls_info.clone());
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}
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let mut wr = RcRef::map(self, |r| &r.wr).borrow_mut().await;
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let cancel_handle = RcRef::map(self, |r| &r.cancel_handle);
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let handshake = wr.handshake().try_or_cancel(cancel_handle).await?;
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let alpn_protocol = handshake.alpn.map(|alpn| alpn.into());
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let tls_info = TlsHandshakeInfo { alpn_protocol };
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self.handshake_info.replace(Some(tls_info.clone()));
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Ok(tls_info)
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}
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}
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impl Resource for TlsStreamResource {
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deno_core::impl_readable_byob!();
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deno_core::impl_writable!();
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fn name(&self) -> Cow<str> {
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"tlsStream".into()
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}
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fn shutdown(self: Rc<Self>) -> AsyncResult<()> {
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Box::pin(self.shutdown().map_err(Into::into))
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}
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fn close(self: Rc<Self>) {
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self.cancel_handle.cancel();
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}
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}
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#[derive(Deserialize)]
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#[serde(rename_all = "camelCase")]
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pub struct ConnectTlsArgs {
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cert_file: Option<String>,
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ca_certs: Vec<String>,
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alpn_protocols: Option<Vec<String>>,
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server_name: Option<String>,
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}
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#[derive(Deserialize)]
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#[serde(rename_all = "camelCase")]
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pub struct StartTlsArgs {
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rid: ResourceId,
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ca_certs: Vec<String>,
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hostname: String,
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alpn_protocols: Option<Vec<String>>,
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}
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#[op2]
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#[cppgc]
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pub fn op_tls_key_null() -> TlsKeysHolder {
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TlsKeysHolder::from(TlsKeys::Null)
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}
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#[op2]
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#[cppgc]
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pub fn op_tls_key_static(
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#[string] cert: &str,
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#[string] key: &str,
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) -> Result<TlsKeysHolder, deno_tls::TlsError> {
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let cert = load_certs(&mut BufReader::new(cert.as_bytes()))?;
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let key = load_private_keys(key.as_bytes())?
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.into_iter()
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.next()
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.unwrap();
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Ok(TlsKeysHolder::from(TlsKeys::Static(TlsKey(cert, key))))
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}
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#[op2]
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pub fn op_tls_cert_resolver_create<'s>(
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scope: &mut v8::HandleScope<'s>,
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) -> v8::Local<'s, v8::Array> {
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let (resolver, lookup) = new_resolver();
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let resolver = deno_core::cppgc::make_cppgc_object(
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scope,
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TlsKeysHolder::from(TlsKeys::Resolver(resolver)),
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);
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let lookup = deno_core::cppgc::make_cppgc_object(scope, lookup);
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v8::Array::new_with_elements(scope, &[resolver.into(), lookup.into()])
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}
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#[op2(async)]
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#[string]
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pub async fn op_tls_cert_resolver_poll(
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#[cppgc] lookup: &TlsKeyLookup,
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) -> Option<String> {
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lookup.poll().await
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}
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#[op2(fast)]
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pub fn op_tls_cert_resolver_resolve(
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#[cppgc] lookup: &TlsKeyLookup,
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#[string] sni: String,
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#[cppgc] key: &TlsKeysHolder,
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) -> Result<(), NetError> {
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let TlsKeys::Static(key) = key.take() else {
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return Err(NetError::UnexpectedKeyType);
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};
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lookup.resolve(sni, Ok(key));
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Ok(())
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}
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#[op2(fast)]
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pub fn op_tls_cert_resolver_resolve_error(
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#[cppgc] lookup: &TlsKeyLookup,
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#[string] sni: String,
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#[string] error: String,
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) {
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lookup.resolve(sni, Err(error))
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}
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#[op2]
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#[serde]
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pub fn op_tls_start<NP>(
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state: Rc<RefCell<OpState>>,
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#[serde] args: StartTlsArgs,
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) -> Result<(ResourceId, IpAddr, IpAddr), NetError>
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where
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NP: NetPermissions + 'static,
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{
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let rid = args.rid;
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let hostname = match &*args.hostname {
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"" => "localhost".to_string(),
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n => n.to_string(),
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};
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{
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let mut s = state.borrow_mut();
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let permissions = s.borrow_mut::<NP>();
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permissions
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.check_net(&(&hostname, Some(0)), "Deno.startTls()")
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.map_err(NetError::Permission)?;
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}
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let ca_certs = args
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.ca_certs
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.into_iter()
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.map(|s| s.into_bytes())
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.collect::<Vec<_>>();
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let hostname_dns = ServerName::try_from(hostname.to_string())
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.map_err(|_| NetError::InvalidHostname(hostname))?;
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let unsafely_ignore_certificate_errors = state
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.borrow()
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.try_borrow::<UnsafelyIgnoreCertificateErrors>()
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.and_then(|it| it.0.clone());
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let root_cert_store = state
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.borrow()
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.borrow::<DefaultTlsOptions>()
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.root_cert_store()
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.map_err(NetError::RootCertStore)?;
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let resource_rc = state
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.borrow_mut()
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.resource_table
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.take::<TcpStreamResource>(rid)
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.map_err(NetError::Resource)?;
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// This TCP connection might be used somewhere else. If it's the case, we cannot proceed with the
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// process of starting a TLS connection on top of this TCP connection, so we just return a Busy error.
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// See also: https://github.com/denoland/deno/pull/16242
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let resource =
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Rc::try_unwrap(resource_rc).map_err(|_| NetError::TcpStreamBusy)?;
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let (read_half, write_half) = resource.into_inner();
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let tcp_stream = read_half.reunite(write_half).map_err(NetError::Reunite)?;
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let local_addr = tcp_stream.local_addr()?;
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let remote_addr = tcp_stream.peer_addr()?;
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let mut tls_config = create_client_config(
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root_cert_store,
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ca_certs,
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unsafely_ignore_certificate_errors,
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TlsKeys::Null,
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SocketUse::GeneralSsl,
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)?;
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if let Some(alpn_protocols) = args.alpn_protocols {
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tls_config.alpn_protocols =
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alpn_protocols.into_iter().map(|s| s.into_bytes()).collect();
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}
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let tls_config = Arc::new(tls_config);
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let tls_stream = TlsStream::new_client_side(
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tcp_stream,
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ClientConnection::new(tls_config, hostname_dns)?,
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TLS_BUFFER_SIZE,
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);
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let rid = {
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let mut state_ = state.borrow_mut();
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state_
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.resource_table
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.add(TlsStreamResource::new(tls_stream.into_split()))
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};
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Ok((rid, IpAddr::from(local_addr), IpAddr::from(remote_addr)))
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}
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#[op2(async)]
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#[serde]
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pub async fn op_net_connect_tls<NP>(
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state: Rc<RefCell<OpState>>,
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#[serde] addr: IpAddr,
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#[serde] args: ConnectTlsArgs,
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#[cppgc] key_pair: &TlsKeysHolder,
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) -> Result<(ResourceId, IpAddr, IpAddr), NetError>
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where
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NP: NetPermissions + 'static,
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{
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let cert_file = args.cert_file.as_deref();
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let unsafely_ignore_certificate_errors = state
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.borrow()
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.try_borrow::<UnsafelyIgnoreCertificateErrors>()
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.and_then(|it| it.0.clone());
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let cert_file = {
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let mut s = state.borrow_mut();
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let permissions = s.borrow_mut::<NP>();
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permissions
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.check_net(&(&addr.hostname, Some(addr.port)), "Deno.connectTls()")
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.map_err(NetError::Permission)?;
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if let Some(path) = cert_file {
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Some(
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permissions
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.check_read(path, "Deno.connectTls()")
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.map_err(NetError::Permission)?,
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)
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} else {
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None
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}
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};
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let mut ca_certs = args
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.ca_certs
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.into_iter()
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.map(|s| s.into_bytes())
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.collect::<Vec<_>>();
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if let Some(path) = cert_file {
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let mut buf = Vec::new();
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File::open(path)?.read_to_end(&mut buf)?;
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ca_certs.push(buf);
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};
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let root_cert_store = state
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.borrow()
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.borrow::<DefaultTlsOptions>()
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.root_cert_store()
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.map_err(NetError::RootCertStore)?;
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let hostname_dns = if let Some(server_name) = args.server_name {
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ServerName::try_from(server_name)
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} else {
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ServerName::try_from(addr.hostname.clone())
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}
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.map_err(|_| NetError::InvalidHostname(addr.hostname.clone()))?;
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let connect_addr = resolve_addr(&addr.hostname, addr.port)
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.await?
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.next()
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.ok_or_else(|| NetError::NoResolvedAddress)?;
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let tcp_stream = TcpStream::connect(connect_addr).await?;
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let local_addr = tcp_stream.local_addr()?;
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let remote_addr = tcp_stream.peer_addr()?;
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let mut tls_config = create_client_config(
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root_cert_store,
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ca_certs,
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unsafely_ignore_certificate_errors,
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key_pair.take(),
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SocketUse::GeneralSsl,
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)?;
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if let Some(alpn_protocols) = args.alpn_protocols {
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tls_config.alpn_protocols =
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alpn_protocols.into_iter().map(|s| s.into_bytes()).collect();
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}
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let tls_config = Arc::new(tls_config);
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let tls_stream = TlsStream::new_client_side(
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tcp_stream,
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ClientConnection::new(tls_config, hostname_dns)?,
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TLS_BUFFER_SIZE,
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);
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let rid = {
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let mut state_ = state.borrow_mut();
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state_
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.resource_table
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.add(TlsStreamResource::new(tls_stream.into_split()))
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};
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Ok((rid, IpAddr::from(local_addr), IpAddr::from(remote_addr)))
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}
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|
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#[derive(Deserialize)]
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#[serde(rename_all = "camelCase")]
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pub struct ListenTlsArgs {
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alpn_protocols: Option<Vec<String>>,
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reuse_port: bool,
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#[serde(default)]
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load_balanced: bool,
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}
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#[op2]
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#[serde]
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pub fn op_net_listen_tls<NP>(
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state: &mut OpState,
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#[serde] addr: IpAddr,
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#[serde] args: ListenTlsArgs,
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#[cppgc] keys: &TlsKeysHolder,
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) -> Result<(ResourceId, IpAddr), NetError>
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where
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NP: NetPermissions + 'static,
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{
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if args.reuse_port {
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super::check_unstable(state, "Deno.listenTls({ reusePort: true })");
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}
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{
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let permissions = state.borrow_mut::<NP>();
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permissions
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.check_net(&(&addr.hostname, Some(addr.port)), "Deno.listenTls()")
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.map_err(NetError::Permission)?;
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}
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let bind_addr = resolve_addr_sync(&addr.hostname, addr.port)?
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.next()
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.ok_or(NetError::NoResolvedAddress)?;
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let tcp_listener = if args.load_balanced {
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TcpListener::bind_load_balanced(bind_addr)
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} else {
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TcpListener::bind_direct(bind_addr, args.reuse_port)
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}?;
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let local_addr = tcp_listener.local_addr()?;
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let alpn = args
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.alpn_protocols
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.unwrap_or_default()
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.into_iter()
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.map(|s| s.into_bytes())
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.collect();
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let listener = match keys.take() {
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TlsKeys::Null => return Err(NetError::ListenTlsRequiresKey),
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TlsKeys::Static(TlsKey(cert, key)) => {
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let mut tls_config = ServerConfig::builder()
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.with_no_client_auth()
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.with_single_cert(cert, key)?;
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tls_config.alpn_protocols = alpn;
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TlsListener {
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tcp_listener,
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|
tls_config: Some(tls_config.into()),
|
|
server_config_provider: None,
|
|
}
|
|
}
|
|
TlsKeys::Resolver(resolver) => TlsListener {
|
|
tcp_listener,
|
|
tls_config: None,
|
|
server_config_provider: Some(resolver.into_server_config_provider(alpn)),
|
|
},
|
|
};
|
|
|
|
let tls_listener_resource = NetworkListenerResource::new(listener);
|
|
|
|
let rid = state.resource_table.add(tls_listener_resource);
|
|
|
|
Ok((rid, IpAddr::from(local_addr)))
|
|
}
|
|
|
|
#[op2(async)]
|
|
#[serde]
|
|
pub async fn op_net_accept_tls(
|
|
state: Rc<RefCell<OpState>>,
|
|
#[smi] rid: ResourceId,
|
|
) -> Result<(ResourceId, IpAddr, IpAddr), NetError> {
|
|
let resource = state
|
|
.borrow()
|
|
.resource_table
|
|
.get::<NetworkListenerResource<TlsListener>>(rid)
|
|
.map_err(|_| NetError::ListenerClosed)?;
|
|
|
|
let cancel_handle = RcRef::map(&resource, |r| &r.cancel);
|
|
let listener = RcRef::map(&resource, |r| &r.listener)
|
|
.try_borrow_mut()
|
|
.ok_or_else(|| NetError::AcceptTaskOngoing)?;
|
|
|
|
let (tls_stream, remote_addr) =
|
|
match listener.accept().try_or_cancel(&cancel_handle).await {
|
|
Ok(tuple) => tuple,
|
|
Err(err) if err.kind() == ErrorKind::Interrupted => {
|
|
return Err(NetError::ListenerClosed);
|
|
}
|
|
Err(err) => return Err(err.into()),
|
|
};
|
|
|
|
let local_addr = tls_stream.local_addr()?;
|
|
let rid = {
|
|
let mut state_ = state.borrow_mut();
|
|
state_
|
|
.resource_table
|
|
.add(TlsStreamResource::new(tls_stream.into_split()))
|
|
};
|
|
|
|
Ok((rid, IpAddr::from(local_addr), IpAddr::from(remote_addr)))
|
|
}
|
|
|
|
#[op2(async)]
|
|
#[serde]
|
|
pub async fn op_tls_handshake(
|
|
state: Rc<RefCell<OpState>>,
|
|
#[smi] rid: ResourceId,
|
|
) -> Result<TlsHandshakeInfo, NetError> {
|
|
let resource = state
|
|
.borrow()
|
|
.resource_table
|
|
.get::<TlsStreamResource>(rid)
|
|
.map_err(|_| NetError::ListenerClosed)?;
|
|
resource.handshake().await.map_err(Into::into)
|
|
}
|