mirror of
https://github.com/denoland/deno.git
synced 2024-11-04 08:54:20 -05:00
ef0bbbbeaf
Fixes #8875
421 lines
12 KiB
Rust
421 lines
12 KiB
Rust
// Copyright 2018-2021 the Deno authors. All rights reserved. MIT license.
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use super::io::StreamResource;
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use super::io::TcpStreamResource;
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use crate::permissions::Permissions;
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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 deno_core::error::bad_resource;
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use deno_core::error::bad_resource_id;
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use deno_core::error::custom_error;
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use deno_core::error::generic_error;
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use deno_core::error::AnyError;
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use deno_core::serde_json;
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use deno_core::serde_json::json;
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use deno_core::serde_json::Value;
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use deno_core::AsyncRefCell;
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use deno_core::BufVec;
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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::ZeroCopyBuf;
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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::collections::HashMap;
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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::path::Path;
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use std::rc::Rc;
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use std::sync::Arc;
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use std::sync::Mutex;
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use tokio::net::TcpListener;
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use tokio::net::TcpStream;
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use tokio_rustls::{rustls::ClientConfig, TlsConnector};
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use tokio_rustls::{
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rustls::{
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internal::pemfile::{certs, pkcs8_private_keys, rsa_private_keys},
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Certificate, NoClientAuth, PrivateKey, ServerConfig, StoresClientSessions,
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},
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TlsAcceptor,
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};
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use webpki::DNSNameRef;
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lazy_static::lazy_static! {
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static ref CLIENT_SESSION_MEMORY_CACHE: Arc<ClientSessionMemoryCache> =
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Arc::new(ClientSessionMemoryCache::default());
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}
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#[derive(Default)]
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struct ClientSessionMemoryCache(Mutex<HashMap<Vec<u8>, Vec<u8>>>);
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impl StoresClientSessions for ClientSessionMemoryCache {
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fn get(&self, key: &[u8]) -> Option<Vec<u8>> {
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self.0.lock().unwrap().get(key).cloned()
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}
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fn put(&self, key: Vec<u8>, value: Vec<u8>) -> bool {
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let mut sessions = self.0.lock().unwrap();
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// TODO(bnoordhuis) Evict sessions LRU-style instead of arbitrarily.
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while sessions.len() >= 1024 {
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let key = sessions.keys().next().unwrap().clone();
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sessions.remove(&key);
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}
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sessions.insert(key, value);
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true
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}
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}
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pub fn init(rt: &mut deno_core::JsRuntime) {
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super::reg_json_async(rt, "op_start_tls", op_start_tls);
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super::reg_json_async(rt, "op_connect_tls", op_connect_tls);
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super::reg_json_sync(rt, "op_listen_tls", op_listen_tls);
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super::reg_json_async(rt, "op_accept_tls", op_accept_tls);
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}
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#[derive(Deserialize)]
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#[serde(rename_all = "camelCase")]
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struct ConnectTLSArgs {
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transport: String,
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hostname: String,
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port: u16,
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cert_file: Option<String>,
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}
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#[derive(Deserialize)]
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#[serde(rename_all = "camelCase")]
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struct StartTLSArgs {
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rid: u32,
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cert_file: Option<String>,
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hostname: String,
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}
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async fn op_start_tls(
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state: Rc<RefCell<OpState>>,
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args: Value,
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_zero_copy: BufVec,
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) -> Result<Value, AnyError> {
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let args: StartTLSArgs = serde_json::from_value(args)?;
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let rid = args.rid as u32;
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let cert_file = args.cert_file.clone();
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let mut domain = args.hostname;
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if domain.is_empty() {
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domain.push_str("localhost");
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}
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{
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super::check_unstable2(&state, "Deno.startTls");
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let s = state.borrow();
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let permissions = s.borrow::<Permissions>();
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permissions.check_net(&(&domain, Some(0)))?;
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if let Some(path) = cert_file.clone() {
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permissions.check_read(Path::new(&path))?;
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}
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}
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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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.ok_or_else(bad_resource_id)?;
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let resource = Rc::try_unwrap(resource_rc)
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.expect("Only a single use of this resource should happen");
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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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let local_addr = tcp_stream.local_addr()?;
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let remote_addr = tcp_stream.peer_addr()?;
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let mut config = ClientConfig::new();
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config.set_persistence(CLIENT_SESSION_MEMORY_CACHE.clone());
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config
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.root_store
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.add_server_trust_anchors(&webpki_roots::TLS_SERVER_ROOTS);
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if let Some(path) = cert_file {
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let key_file = File::open(path)?;
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let reader = &mut BufReader::new(key_file);
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config.root_store.add_pem_file(reader).unwrap();
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}
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let tls_connector = TlsConnector::from(Arc::new(config));
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let dnsname =
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DNSNameRef::try_from_ascii_str(&domain).expect("Invalid DNS lookup");
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let tls_stream = tls_connector.connect(dnsname, tcp_stream).await?;
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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(StreamResource::client_tls_stream(tls_stream))
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};
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Ok(json!({
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"rid": rid,
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"localAddr": {
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"hostname": local_addr.ip().to_string(),
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"port": local_addr.port(),
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"transport": "tcp",
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},
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"remoteAddr": {
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"hostname": remote_addr.ip().to_string(),
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"port": remote_addr.port(),
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"transport": "tcp",
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}
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}))
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}
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async fn op_connect_tls(
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state: Rc<RefCell<OpState>>,
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args: Value,
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_zero_copy: BufVec,
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) -> Result<Value, AnyError> {
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let args: ConnectTLSArgs = serde_json::from_value(args)?;
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let cert_file = args.cert_file.clone();
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{
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let s = state.borrow();
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let permissions = s.borrow::<Permissions>();
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permissions.check_net(&(&args.hostname, Some(args.port)))?;
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if let Some(path) = cert_file.clone() {
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permissions.check_read(Path::new(&path))?;
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}
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}
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let mut domain = args.hostname.clone();
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if domain.is_empty() {
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domain.push_str("localhost");
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}
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let addr = resolve_addr(&args.hostname, args.port)
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.await?
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.next()
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.ok_or_else(|| generic_error("No resolved address found"))?;
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let tcp_stream = TcpStream::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 config = ClientConfig::new();
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config.set_persistence(CLIENT_SESSION_MEMORY_CACHE.clone());
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config
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.root_store
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.add_server_trust_anchors(&webpki_roots::TLS_SERVER_ROOTS);
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if let Some(path) = cert_file {
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let key_file = File::open(path)?;
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let reader = &mut BufReader::new(key_file);
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config.root_store.add_pem_file(reader).unwrap();
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}
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let tls_connector = TlsConnector::from(Arc::new(config));
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let dnsname =
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DNSNameRef::try_from_ascii_str(&domain).expect("Invalid DNS lookup");
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let tls_stream = tls_connector.connect(dnsname, tcp_stream).await?;
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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(StreamResource::client_tls_stream(tls_stream))
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};
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Ok(json!({
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"rid": rid,
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"localAddr": {
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"hostname": local_addr.ip().to_string(),
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"port": local_addr.port(),
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"transport": args.transport,
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},
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"remoteAddr": {
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"hostname": remote_addr.ip().to_string(),
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"port": remote_addr.port(),
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"transport": args.transport,
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}
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}))
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}
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fn load_certs(path: &str) -> Result<Vec<Certificate>, AnyError> {
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let cert_file = File::open(path)?;
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let reader = &mut BufReader::new(cert_file);
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let certs = certs(reader)
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.map_err(|_| custom_error("InvalidData", "Unable to decode certificate"))?;
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if certs.is_empty() {
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let e = custom_error("InvalidData", "No certificates found in cert file");
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return Err(e);
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}
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Ok(certs)
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}
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fn key_decode_err() -> AnyError {
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custom_error("InvalidData", "Unable to decode key")
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}
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fn key_not_found_err() -> AnyError {
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custom_error("InvalidData", "No keys found in key file")
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}
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/// Starts with -----BEGIN RSA PRIVATE KEY-----
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fn load_rsa_keys(path: &str) -> Result<Vec<PrivateKey>, AnyError> {
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let key_file = File::open(path)?;
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let reader = &mut BufReader::new(key_file);
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let keys = rsa_private_keys(reader).map_err(|_| key_decode_err())?;
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Ok(keys)
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}
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/// Starts with -----BEGIN PRIVATE KEY-----
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fn load_pkcs8_keys(path: &str) -> Result<Vec<PrivateKey>, AnyError> {
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let key_file = File::open(path)?;
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let reader = &mut BufReader::new(key_file);
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let keys = pkcs8_private_keys(reader).map_err(|_| key_decode_err())?;
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Ok(keys)
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}
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fn load_keys(path: &str) -> Result<Vec<PrivateKey>, AnyError> {
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let path = path.to_string();
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let mut keys = load_rsa_keys(&path)?;
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if keys.is_empty() {
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keys = load_pkcs8_keys(&path)?;
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}
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if keys.is_empty() {
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return Err(key_not_found_err());
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}
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Ok(keys)
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}
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pub struct TlsListenerResource {
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listener: AsyncRefCell<TcpListener>,
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tls_acceptor: TlsAcceptor,
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cancel: CancelHandle,
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}
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impl Resource for TlsListenerResource {
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fn name(&self) -> Cow<str> {
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"tlsListener".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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#[derive(Deserialize)]
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#[serde(rename_all = "camelCase")]
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struct ListenTlsArgs {
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transport: String,
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hostname: String,
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port: u16,
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cert_file: String,
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key_file: String,
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}
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fn op_listen_tls(
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state: &mut OpState,
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args: Value,
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_zero_copy: &mut [ZeroCopyBuf],
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) -> Result<Value, AnyError> {
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let args: ListenTlsArgs = serde_json::from_value(args)?;
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assert_eq!(args.transport, "tcp");
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let cert_file = args.cert_file;
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let key_file = args.key_file;
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{
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let permissions = state.borrow::<Permissions>();
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permissions.check_net(&(&args.hostname, Some(args.port)))?;
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permissions.check_read(Path::new(&cert_file))?;
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permissions.check_read(Path::new(&key_file))?;
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}
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let mut config = ServerConfig::new(NoClientAuth::new());
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config
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.set_single_cert(load_certs(&cert_file)?, load_keys(&key_file)?.remove(0))
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.expect("invalid key or certificate");
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let tls_acceptor = TlsAcceptor::from(Arc::new(config));
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let addr = resolve_addr_sync(&args.hostname, args.port)?
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.next()
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.ok_or_else(|| generic_error("No resolved address found"))?;
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let std_listener = std::net::TcpListener::bind(&addr)?;
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std_listener.set_nonblocking(true)?;
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let listener = TcpListener::from_std(std_listener)?;
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let local_addr = listener.local_addr()?;
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let tls_listener_resource = TlsListenerResource {
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listener: AsyncRefCell::new(listener),
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tls_acceptor,
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cancel: Default::default(),
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};
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let rid = state.resource_table.add(tls_listener_resource);
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Ok(json!({
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"rid": rid,
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"localAddr": {
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"hostname": local_addr.ip().to_string(),
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"port": local_addr.port(),
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"transport": args.transport,
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},
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}))
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}
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#[derive(Deserialize)]
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struct AcceptTlsArgs {
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rid: i32,
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}
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async fn op_accept_tls(
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state: Rc<RefCell<OpState>>,
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args: Value,
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_zero_copy: BufVec,
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) -> Result<Value, AnyError> {
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let args: AcceptTlsArgs = serde_json::from_value(args)?;
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let rid = args.rid as u32;
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let resource = state
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.borrow()
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.resource_table
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.get::<TlsListenerResource>(rid)
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.ok_or_else(|| bad_resource("Listener has been closed"))?;
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let listener = RcRef::map(&resource, |r| &r.listener)
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.try_borrow_mut()
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.ok_or_else(|| custom_error("Busy", "Another accept task is ongoing"))?;
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let cancel = RcRef::map(resource, |r| &r.cancel);
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let (tcp_stream, _socket_addr) =
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listener.accept().try_or_cancel(cancel).await.map_err(|e| {
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// FIXME(bartlomieju): compatibility with current JS implementation
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if let std::io::ErrorKind::Interrupted = e.kind() {
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bad_resource("Listener has been closed")
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} else {
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e.into()
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}
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})?;
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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 resource = state
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.borrow()
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.resource_table
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.get::<TlsListenerResource>(rid)
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.ok_or_else(|| bad_resource("Listener has been closed"))?;
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let cancel = RcRef::map(&resource, |r| &r.cancel);
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let tls_acceptor = resource.tls_acceptor.clone();
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let tls_stream = tls_acceptor
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.accept(tcp_stream)
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.try_or_cancel(cancel)
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.await?;
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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(StreamResource::server_tls_stream(tls_stream))
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};
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Ok(json!({
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"rid": rid,
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"localAddr": {
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"transport": "tcp",
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"hostname": local_addr.ip().to_string(),
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"port": local_addr.port()
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},
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"remoteAddr": {
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"transport": "tcp",
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"hostname": remote_addr.ip().to_string(),
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"port": remote_addr.port()
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}
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}))
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}
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