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1 Commits
webrtc-sec
...
login-grac
| Author | SHA1 | Date | |
|---|---|---|---|
|
|
7fa5c8de18 |
@@ -118,6 +118,15 @@ pub struct Server {
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pub type ServerPtr = Arc<RwLock<Server>>;
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pub type ServerPtrWeak = Weak<RwLock<Server>>;
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#[cfg(test)]
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pub fn new_for_test() -> ServerPtr {
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Arc::new(RwLock::new(Server {
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connections: HashMap::new(),
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services: HashMap::new(),
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id_count: 1000,
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}))
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}
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pub fn new() -> ServerPtr {
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let mut server = Server {
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connections: HashMap::new(),
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@@ -204,7 +213,40 @@ pub async fn create_tcp_connection(
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meta: ConnectionMeta,
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) -> ResultType<()> {
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let mut stream = stream;
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// The address the connection layer keys on, whitelist and admission alike.
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let addr = hbb_common::try_into_v4(addr);
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let id = server.write().unwrap().get_new_id();
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// Admitted before the identity handshake, so a peer that stalls in it, or after it without
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// logging in, holds its place the whole time; an address over its share is turned away.
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let Some(unauthorized) = admit_unauthorized(id, addr.ip()) else {
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bail!("too many unauthenticated connections from {}", addr.ip());
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};
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tokio::select! {
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handshake = identity_handshake(&mut stream, secure) => handshake?,
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_ = unauthorized.evicted() => {
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bail!("evicted to make room for a newer unauthenticated connection");
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}
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}
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#[cfg(target_os = "macos")]
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{
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use std::process::Command;
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if let Ok(task) = Command::new("/usr/bin/caffeinate")
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.arg("-u")
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.arg("-t 5")
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.spawn()
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{
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super::CHILD_PROCESS.lock().unwrap().push(task);
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}
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log::info!("wake up macos");
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}
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Connection::start(addr, stream, id, Arc::downgrade(&server), meta, unauthorized).await;
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Ok(())
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}
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/// Our signed identity goes out and, when `secure`, the controller's reply keys `stream`.
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/// Separate so it can be raced against the connection's eviction.
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async fn identity_handshake(stream: &mut Stream, secure: bool) -> ResultType<()> {
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let (sk, pk) = Config::get_key_pair();
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if secure && pk.len() == sign::PUBLICKEYBYTES && sk.len() == sign::SECRETKEYBYTES {
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let mut sk_ = [0u8; sign::SECRETKEYBYTES];
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@@ -267,19 +309,6 @@ pub async fn create_tcp_connection(
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}
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}
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#[cfg(target_os = "macos")]
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{
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use std::process::Command;
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if let Ok(task) = Command::new("/usr/bin/caffeinate")
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.arg("-u")
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.arg("-t 5")
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.spawn()
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{
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super::CHILD_PROCESS.lock().unwrap().push(task);
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}
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log::info!("wake up macos");
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}
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Connection::start(addr, stream, id, Arc::downgrade(&server), meta).await;
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Ok(())
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}
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@@ -55,15 +55,16 @@ use scrap::android::{call_main_service_key_event, call_main_service_pointer_inpu
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use scrap::camera;
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use serde_derive::Serialize;
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use serde_json::{json, value::Value};
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#[cfg(not(any(target_os = "android", target_os = "ios")))]
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use std::sync::atomic::Ordering;
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use std::{
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collections::HashSet,
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net::Ipv6Addr,
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net::{IpAddr, Ipv6Addr},
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num::NonZeroI64,
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path::PathBuf,
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str::FromStr,
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sync::{atomic::AtomicI64, mpsc as std_mpsc},
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sync::{
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atomic::{AtomicBool, AtomicI64, Ordering},
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mpsc as std_mpsc,
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},
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};
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#[cfg(not(any(target_os = "android", target_os = "ios")))]
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use system_shutdown;
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@@ -79,7 +80,111 @@ const FAILURE_IDX_ID_WHITELIST: usize = 2;
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// throttles enumeration harder; shorter limits collateral on whitelisted neighbours.
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const ID_WHITELIST_FAILURE_DECAY_MINUTES: i32 = 10;
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/// A connection that has not sent its login request within this long is closed. A controller
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/// sends one as soon as the handshake is done, so nothing legitimate waits; a peer that holds
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/// the connection open and says nothing is not a controller.
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const LOGIN_REQUEST_GRACE: Duration = Duration::from_secs(20);
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/// A connection that has sent a login request but not authorized within this long is closed,
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/// however alive it keeps itself: a wrong password, a pending 2FA or an accept prompt still
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/// unanswered. The controller reconnects on its own and the prompt comes back.
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const LOGIN_GRACE: Duration = Duration::from_secs(180);
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/// Connections between accept and authorization, across every transport. Beyond this many the
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/// oldest is closed to make room, so a flood of them holds a legitimate controller off only
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/// while newer ones keep arriving faster than a password is typed.
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const MAX_UNAUTHORIZED_CONNS: usize = 64;
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/// Of those, how many one address may hold at once; a further connection from that address is
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/// refused. Filling the global limit takes this many times more addresses.
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const MAX_UNAUTHORIZED_CONNS_PER_ADDR: usize = 4;
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/// A place among the unauthorized connections, taken before the identity handshake and given
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/// back on drop: at authorization, or when the connection ends first. The count of live
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/// guards is the bound; an evicted one is told to go and keeps its place until it has.
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pub struct UnauthorizedID {
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id: i32,
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shared: Arc<UnauthorizedShared>,
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}
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struct UnauthorizedShared {
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evicted: AtomicBool,
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notify: hbb_common::tokio::sync::Notify,
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}
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/// Admit a connection from `ip` among the unauthorized ones. `None` when that address already
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/// holds its share, or when the global limit is reached: then the oldest connection is told to
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/// go, unless one is on its way out already, and this one is refused rather than let in on a
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/// place that is still occupied. At most one connection is ever on its way out, so a burst of
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/// refused arrivals clears no more room than a single one. The controller retries on its own.
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pub fn admit_unauthorized(id: i32, ip: IpAddr) -> Option<UnauthorizedID> {
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let mut conns = UNAUTHORIZED_CONNS.lock().unwrap();
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if conns.iter().filter(|(_, held, _)| *held == ip).count() >= MAX_UNAUTHORIZED_CONNS_PER_ADDR {
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return None;
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}
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if conns.len() >= MAX_UNAUTHORIZED_CONNS {
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if let Some((_, _, oldest)) = conns.first() {
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if !oldest.evicted.swap(true, Ordering::AcqRel) {
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oldest.notify.notify_one();
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}
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}
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return None;
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}
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let shared = Arc::new(UnauthorizedShared {
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evicted: AtomicBool::new(false),
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notify: hbb_common::tokio::sync::Notify::new(),
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});
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conns.push((id, ip, shared.clone()));
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Some(UnauthorizedID { id, shared })
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}
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impl UnauthorizedID {
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/// Whether this connection was told to go to make room for a newer one.
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pub fn is_evicted(&self) -> bool {
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self.shared.evicted.load(Ordering::Acquire)
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}
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/// Resolves once this connection is told to go; at once if it already was.
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pub async fn evicted(&self) {
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if self.is_evicted() {
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return;
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}
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self.shared.notify.notified().await;
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}
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}
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impl Drop for UnauthorizedID {
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fn drop(&mut self) {
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UNAUTHORIZED_CONNS
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.lock()
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.unwrap()
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.retain(|(id, _, _)| *id != self.id);
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}
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}
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/// Resolves when the connection holding `unauthorized` is evicted; never once it has
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/// authorized and given its place back.
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async fn unauthorized_evicted(unauthorized: &Option<UnauthorizedID>) {
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match unauthorized {
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Some(u) => u.evicted().await,
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None => std::future::pending().await,
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}
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}
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/// Resolves at the login deadline of a connection started at `started`; never once it has
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/// authorized. Until the login request arrives the shorter grace applies.
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async fn login_deadline(authorized: bool, login_request_seen: bool, started: Instant) {
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if authorized {
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return std::future::pending().await;
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}
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let grace = if login_request_seen {
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LOGIN_GRACE
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} else {
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LOGIN_REQUEST_GRACE
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};
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time::sleep_until(started + grace).await
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}
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lazy_static::lazy_static! {
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// Connections between accept and authorization, oldest first; see admit_unauthorized.
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static ref UNAUTHORIZED_CONNS: Mutex<Vec<(i32, IpAddr, Arc<UnauthorizedShared>)>> = Default::default();
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// [0] password, [1] 2FA, [2] ID whitelist.
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// Bucket 2 is separate so its rejections do not touch the password / 2FA budgets. It is
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// decayed in `check_id_whitelist` and cleared on auth, never on a bare id match.
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@@ -264,6 +369,9 @@ pub struct Connection {
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port_forward_address: String,
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tx_to_cm: mpsc::UnboundedSender<ipc::Data>,
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authorized: bool,
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// The place among the unauthorized connections; given back at authorization.
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unauthorized_id: Option<UnauthorizedID>,
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login_request_seen: bool,
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require_2fa: Option<totp_rs::TOTP>,
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awaiting_2fa: bool,
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keyboard: bool,
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@@ -425,6 +533,7 @@ impl Connection {
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id: i32,
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server: super::ServerPtrWeak,
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meta: super::ConnectionMeta,
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unauthorized: UnauthorizedID,
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) {
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let super::ConnectionMeta {
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control_permissions,
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@@ -483,6 +592,8 @@ impl Connection {
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port_forward_address: "".to_owned(),
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tx_to_cm,
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authorized: false,
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unauthorized_id: Some(unauthorized),
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login_request_seen: false,
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keyboard: Self::permission(keys::OPTION_ENABLE_KEYBOARD, &control_permissions),
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clipboard: Self::permission(keys::OPTION_ENABLE_CLIPBOARD, &control_permissions),
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audio: Self::permission(keys::OPTION_ENABLE_AUDIO, &control_permissions),
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@@ -598,6 +709,7 @@ impl Connection {
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let mut test_delay_timer =
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crate::rustdesk_interval(time::interval_at(Instant::now(), TEST_DELAY_TIMEOUT));
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let mut last_recv_time = Instant::now();
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let started = Instant::now();
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// The connection type is not known until the login request arrives;
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// `on_message` picks the type-specific timeout then.
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@@ -633,6 +745,17 @@ impl Connection {
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tokio::select! {
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// biased; // video has higher priority // causing test_delay_timer failed while transferring big file
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// Both end an unauthorized connection at once, not on the next timer tick:
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// told to go to make room, or past the grace for its login request or its
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// authorization. Neither fires once the connection has authorized.
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_ = unauthorized_evicted(&conn.unauthorized_id) => {
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conn.on_close("Timeout", true).await;
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break;
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}
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_ = login_deadline(conn.authorized, conn.login_request_seen, started) => {
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conn.on_close("Timeout", true).await;
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break;
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}
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Some(data) = rx_from_cm.recv() => {
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match data {
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ipc::Data::Authorize => {
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@@ -1792,6 +1915,7 @@ impl Connection {
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return false;
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}
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self.authorized = true;
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self.unauthorized_id = None;
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// Releases the budget `check_id_whitelist` charges against this address: only a peer
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// that got this far proved more than a self-reported id.
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self.clear_id_whitelist_failures();
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@@ -2758,6 +2882,7 @@ impl Connection {
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}
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// After handling CloseReason messages, proceed to process other message types
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if let Some(message::Union::LoginRequest(lr)) = msg.union {
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self.login_request_seen = true;
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if !self.check_login_scope(&lr).await {
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return false;
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}
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@@ -6994,6 +7119,167 @@ mod test {
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#[allow(unused)]
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use super::*;
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// The registry is process-global and the harness runs tests in parallel threads, so every
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// test that admits connections holds this first; a poisoned lock is still a lock.
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static UNAUTHORIZED_TESTS: std::sync::Mutex<()> = std::sync::Mutex::new(());
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fn unauthorized_count() -> usize {
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UNAUTHORIZED_CONNS.lock().unwrap().len()
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}
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#[test]
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fn test_unauthorized_admission_is_per_address() {
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let _serial = UNAUTHORIZED_TESTS.lock().unwrap_or_else(|e| e.into_inner());
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let a: IpAddr = "203.0.113.1".parse().unwrap();
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let b: IpAddr = "203.0.113.2".parse().unwrap();
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let held: Vec<_> = (0..MAX_UNAUTHORIZED_CONNS_PER_ADDR as i32)
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.map(|i| admit_unauthorized(1_000_000 + i, a).unwrap())
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.collect();
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assert!(admit_unauthorized(1_000_100, a).is_none());
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assert!(
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held.iter().all(|u| !u.is_evicted()),
|
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"a refusal evicts nobody"
|
||||
);
|
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let other = admit_unauthorized(1_000_101, b).unwrap();
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assert!(!other.is_evicted());
|
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drop(held);
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assert!(admit_unauthorized(1_000_102, a).is_some());
|
||||
}
|
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|
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#[tokio::test]
|
||||
async fn test_unauthorized_full_tells_the_oldest_to_go_and_frees_its_place_only_when_it_has() {
|
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let _serial = UNAUTHORIZED_TESTS.lock().unwrap_or_else(|e| e.into_inner());
|
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let mut held: Vec<_> = (0..MAX_UNAUTHORIZED_CONNS as i32)
|
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.map(|i| {
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let ip: IpAddr = format!("198.51.100.{}", i + 1).parse().unwrap();
|
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admit_unauthorized(2_000_000 + i, ip).unwrap()
|
||||
})
|
||||
.collect();
|
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// At the limit the newcomer is refused, the oldest is told to go, and the count does
|
||||
// not move: the place is still occupied.
|
||||
assert!(admit_unauthorized(2_000_999, "198.51.100.250".parse().unwrap()).is_none());
|
||||
assert!(held[0].is_evicted());
|
||||
assert!(held[1..].iter().all(|u| !u.is_evicted()));
|
||||
assert_eq!(unauthorized_count(), MAX_UNAUTHORIZED_CONNS);
|
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hbb_common::timeout(1000, held[0].evicted()).await.unwrap();
|
||||
// A further arrival while that one is still on its way out tells nobody else to go: a
|
||||
// burst of refused arrivals clears no more room than a single one.
|
||||
assert!(admit_unauthorized(2_001_000, "198.51.100.251".parse().unwrap()).is_none());
|
||||
assert!(held[1..].iter().all(|u| !u.is_evicted()));
|
||||
// Only once an evicted connection has gone is there a place for a newcomer.
|
||||
drop(held.remove(0));
|
||||
assert_eq!(unauthorized_count(), MAX_UNAUTHORIZED_CONNS - 1);
|
||||
let newcomer = admit_unauthorized(2_001_001, "198.51.100.252".parse().unwrap()).unwrap();
|
||||
assert!(!newcomer.is_evicted());
|
||||
assert_eq!(unauthorized_count(), MAX_UNAUTHORIZED_CONNS);
|
||||
// Full again, the next arrival tells the connection now oldest to go.
|
||||
assert!(admit_unauthorized(2_001_002, "198.51.100.253".parse().unwrap()).is_none());
|
||||
assert!(held[0].is_evicted());
|
||||
assert!(held[1..].iter().all(|u| !u.is_evicted()));
|
||||
assert!(!newcomer.is_evicted());
|
||||
}
|
||||
|
||||
// The per-address share holds at the limit too: an address can turn out at most that many
|
||||
// connections, one per place it then takes, and is refused before any eviction from then on.
|
||||
#[test]
|
||||
fn test_unauthorized_full_one_address_turns_out_at_most_its_share() {
|
||||
let _serial = UNAUTHORIZED_TESTS.lock().unwrap_or_else(|e| e.into_inner());
|
||||
let mut held: Vec<_> = (0..MAX_UNAUTHORIZED_CONNS as i32)
|
||||
.map(|i| {
|
||||
let ip: IpAddr = format!("198.51.100.{}", i + 1).parse().unwrap();
|
||||
admit_unauthorized(3_000_000 + i, ip).unwrap()
|
||||
})
|
||||
.collect();
|
||||
let flooder: IpAddr = "203.0.113.9".parse().unwrap();
|
||||
let mut taken = Vec::new();
|
||||
for i in 0..MAX_UNAUTHORIZED_CONNS_PER_ADDR as i32 {
|
||||
assert!(admit_unauthorized(3_001_000 + i, flooder).is_none());
|
||||
assert!(held[0].is_evicted());
|
||||
drop(held.remove(0));
|
||||
taken.push(admit_unauthorized(3_002_000 + i, flooder).unwrap());
|
||||
}
|
||||
assert_eq!(unauthorized_count(), MAX_UNAUTHORIZED_CONNS);
|
||||
assert!(admit_unauthorized(3_003_000, flooder).is_none());
|
||||
assert!(held.iter().all(|u| !u.is_evicted()));
|
||||
assert!(taken.iter().all(|u| !u.is_evicted()));
|
||||
}
|
||||
|
||||
/// A loopback TCP connection as create_tcp_connection sees it, and the controller's end,
|
||||
/// which never speaks: the connection stalls in the identity handshake.
|
||||
async fn stalled_incoming() -> (Stream, Stream, SocketAddr) {
|
||||
let listener = hbb_common::tcp::new_listener("127.0.0.1:0", false)
|
||||
.await
|
||||
.unwrap();
|
||||
let host = listener.local_addr().unwrap().to_string();
|
||||
let controller = hbb_common::socket_client::connect_tcp(host, 3000)
|
||||
.await
|
||||
.unwrap();
|
||||
let (accepted, addr) = listener.accept().await.unwrap();
|
||||
let served = Stream::Tcp(hbb_common::tcp::FramedStream::from(accepted, addr));
|
||||
(served, controller, addr)
|
||||
}
|
||||
|
||||
// Live connections, not bookkeeping: with the limit reached by connections stalled in the
|
||||
// handshake, one more arrival is refused and the oldest handshake is ended at once, not on
|
||||
// a timer tick, so the live count never exceeds the limit and a place opens only then.
|
||||
#[tokio::test]
|
||||
async fn test_unauthorized_limit_bounds_live_handshakes() {
|
||||
let _serial = UNAUTHORIZED_TESTS.lock().unwrap_or_else(|e| e.into_inner());
|
||||
let server = crate::server::new_for_test();
|
||||
let mut controllers = Vec::new();
|
||||
let mut handshakes = Vec::new();
|
||||
for i in 0..MAX_UNAUTHORIZED_CONNS {
|
||||
let (served, controller, _) = stalled_incoming().await;
|
||||
controllers.push(controller);
|
||||
// Each from an address of its own, so only the global limit is in play.
|
||||
let addr: SocketAddr = format!("192.0.2.{}:1", i + 1).parse().unwrap();
|
||||
let server = server.clone();
|
||||
handshakes.push(tokio::spawn(async move {
|
||||
crate::server::create_tcp_connection(server, served, addr, true, Default::default())
|
||||
.await
|
||||
}));
|
||||
}
|
||||
for _ in 0..200 {
|
||||
if unauthorized_count() == MAX_UNAUTHORIZED_CONNS {
|
||||
break;
|
||||
}
|
||||
hbb_common::sleep(0.02).await;
|
||||
}
|
||||
assert_eq!(unauthorized_count(), MAX_UNAUTHORIZED_CONNS);
|
||||
assert!(handshakes.iter().all(|h| !h.is_finished()));
|
||||
|
||||
let (served, _controller, _) = stalled_incoming().await;
|
||||
let addr: SocketAddr = "192.0.2.200:1".parse().unwrap();
|
||||
let refused = crate::server::create_tcp_connection(
|
||||
server.clone(),
|
||||
served,
|
||||
addr,
|
||||
true,
|
||||
Default::default(),
|
||||
)
|
||||
.await;
|
||||
assert!(refused.is_err());
|
||||
let ended = hbb_common::timeout(2000, handshakes.remove(0)).await;
|
||||
assert!(
|
||||
matches!(ended, Ok(Ok(Err(_)))),
|
||||
"the oldest handshake ends on eviction"
|
||||
);
|
||||
assert_eq!(unauthorized_count(), MAX_UNAUTHORIZED_CONNS - 1);
|
||||
assert!(
|
||||
handshakes.iter().all(|h| !h.is_finished()),
|
||||
"only the oldest was ended"
|
||||
);
|
||||
|
||||
drop(controllers);
|
||||
for h in handshakes {
|
||||
assert!(
|
||||
matches!(hbb_common::timeout(3000, h).await, Ok(Ok(Err(_)))),
|
||||
"a stalled handshake ends when its controller goes"
|
||||
);
|
||||
}
|
||||
assert_eq!(unauthorized_count(), 0, "no handshake outlives the test");
|
||||
}
|
||||
|
||||
#[cfg(feature = "flutter")]
|
||||
#[cfg(not(any(target_os = "android", target_os = "ios")))]
|
||||
#[test]
|
||||
|
||||
Reference in New Issue
Block a user