850 lines
31 KiB
Rust
850 lines
31 KiB
Rust
// Licensed under the Apache License, Version 2.0 <LICENSE-APACHE or
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// http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
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// <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your
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// option. This file may not be copied, modified, or distributed
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// except according to those terms.
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mod common;
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use std::{cell::RefCell, mem, net::SocketAddr, rc::Rc, time::Duration};
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use common::{connect, connected_server, default_server, find_ticket, generate_ticket, new_server};
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use neqo_common::{qtrace, Datagram, Decoder, Encoder, Role};
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use neqo_crypto::{
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generate_ech_keys, AllowZeroRtt, AuthenticationStatus, ZeroRttCheckResult, ZeroRttChecker,
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};
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use neqo_transport::{
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server::{ActiveConnectionRef, Server, ValidateAddress},
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CloseReason, Connection, ConnectionParameters, Error, Output, State, StreamType, Version,
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MIN_INITIAL_PACKET_SIZE,
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};
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use test_fixture::{
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assertions, datagram, default_client,
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header_protection::{
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apply_header_protection, decode_initial_header, initial_aead_and_hp,
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remove_header_protection,
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},
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new_client, now, split_datagram, CountingConnectionIdGenerator,
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};
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/// Take a pair of connections in any state and complete the handshake.
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/// The `datagram` argument is a packet that was received from the server.
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/// See `connect` for what this returns.
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///
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/// # Panics
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///
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/// Only when the connection fails.
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pub fn complete_connection(
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client: &mut Connection,
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server: &mut Server,
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mut datagram: Option<Datagram>,
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) -> ActiveConnectionRef {
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let is_done = |c: &Connection| {
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matches!(
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c.state(),
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State::Confirmed | State::Closing { .. } | State::Closed(..)
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)
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};
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while !is_done(client) {
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_ = test_fixture::maybe_authenticate(client);
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let out = client.process(datagram.as_ref(), now());
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let out = server.process(out.as_dgram_ref(), now());
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datagram = out.dgram();
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}
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assert_eq!(*client.state(), State::Confirmed);
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connected_server(server)
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}
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#[test]
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fn single_client() {
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let mut server = default_server();
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let mut client = default_client();
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connect(&mut client, &mut server);
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}
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#[test]
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fn connect_single_version_both() {
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fn connect_one_version(version: Version) {
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let params = ConnectionParameters::default().versions(version, vec![version]);
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let mut server = new_server(params.clone());
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let mut client = new_client(params);
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let server_conn = connect(&mut client, &mut server);
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assert_eq!(client.version(), version);
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assert_eq!(server_conn.borrow().version(), version);
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}
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for v in Version::all() {
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println!("Connecting with {v:?}");
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connect_one_version(v);
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}
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}
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#[test]
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fn connect_single_version_client() {
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fn connect_one_version(version: Version) {
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let mut server = default_server();
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let mut client =
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new_client(ConnectionParameters::default().versions(version, vec![version]));
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let server_conn = connect(&mut client, &mut server);
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assert_eq!(client.version(), version);
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assert_eq!(server_conn.borrow().version(), version);
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}
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for v in Version::all() {
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println!("Connecting with {v:?}");
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connect_one_version(v);
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}
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}
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#[test]
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fn connect_single_version_server() {
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fn connect_one_version(version: Version) {
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let mut server =
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new_server(ConnectionParameters::default().versions(version, vec![version]));
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let mut client = default_client();
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if client.version() != version {
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// Run the version negotiation exchange if necessary.
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let out = client.process_output(now());
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assert!(out.as_dgram_ref().is_some());
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let dgram = server.process(out.as_dgram_ref(), now()).dgram();
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assertions::assert_vn(dgram.as_ref().unwrap());
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client.process_input(&dgram.unwrap(), now());
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}
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let server_conn = connect(&mut client, &mut server);
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assert_eq!(client.version(), version);
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assert_eq!(server_conn.borrow().version(), version);
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}
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for v in Version::all() {
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println!("Connecting with {v:?}");
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connect_one_version(v);
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}
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}
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#[test]
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fn duplicate_initial() {
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let mut server = default_server();
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let mut client = default_client();
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assert_eq!(*client.state(), State::Init);
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let initial = client.process(None, now());
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assert!(initial.as_dgram_ref().is_some());
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// The server should ignore a packets with the same remote address and
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// destination connection ID as an existing connection attempt.
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let server_initial = server.process(initial.as_dgram_ref(), now()).dgram();
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assert!(server_initial.is_some());
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let dgram = server.process(initial.as_dgram_ref(), now()).dgram();
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assert!(dgram.is_none());
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assert_eq!(server.active_connections().len(), 1);
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complete_connection(&mut client, &mut server, server_initial);
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}
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#[test]
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fn duplicate_initial_new_path() {
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let mut server = default_server();
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let mut client = default_client();
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assert_eq!(*client.state(), State::Init);
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let initial = client.process(None, now()).dgram().unwrap();
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let other = Datagram::new(
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SocketAddr::new(initial.source().ip(), initial.source().port() ^ 23),
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initial.destination(),
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initial.tos(),
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initial.ttl(),
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&initial[..],
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);
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// The server should respond to both as these came from different addresses.
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let dgram = server.process(Some(&other), now()).dgram();
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assert!(dgram.is_some());
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let server_initial = server.process(Some(&initial), now()).dgram();
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assert!(server_initial.is_some());
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assert_eq!(server.active_connections().len(), 2);
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complete_connection(&mut client, &mut server, server_initial);
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}
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#[test]
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fn different_initials_same_path() {
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let mut server = default_server();
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let mut client1 = default_client();
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let mut client2 = default_client();
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let client_initial1 = client1.process(None, now());
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assert!(client_initial1.as_dgram_ref().is_some());
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let client_initial2 = client2.process(None, now());
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assert!(client_initial2.as_dgram_ref().is_some());
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// The server should respond to both as these came from different addresses.
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let server_initial1 = server
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.process(client_initial1.as_dgram_ref(), now())
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.dgram();
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assert!(server_initial1.is_some());
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let server_initial2 = server
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.process(client_initial2.as_dgram_ref(), now())
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.dgram();
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assert!(server_initial2.is_some());
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assert_eq!(server.active_connections().len(), 2);
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complete_connection(&mut client1, &mut server, server_initial1);
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complete_connection(&mut client2, &mut server, server_initial2);
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}
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#[test]
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fn same_initial_after_connected() {
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let mut server = default_server();
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let mut client = default_client();
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let client_initial = client.process(None, now());
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assert!(client_initial.as_dgram_ref().is_some());
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let server_initial = server.process(client_initial.as_dgram_ref(), now()).dgram();
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assert!(server_initial.is_some());
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complete_connection(&mut client, &mut server, server_initial);
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// This removes the connection from the active set until something happens to it.
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assert_eq!(server.active_connections().len(), 0);
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// Now make a new connection using the exact same initial as before.
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// The server should respond to an attempt to connect with the same Initial.
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let dgram = server.process(client_initial.as_dgram_ref(), now()).dgram();
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assert!(dgram.is_some());
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// The server should make a new connection object.
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assert_eq!(server.active_connections().len(), 1);
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}
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#[test]
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fn drop_non_initial() {
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const CID: &[u8] = &[55; 8]; // not a real connection ID
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let mut server = default_server();
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// This is big enough to look like an Initial, but it uses the Retry type.
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let mut header = neqo_common::Encoder::with_capacity(MIN_INITIAL_PACKET_SIZE);
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header
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.encode_byte(0xfa)
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.encode_uint(4, Version::default().wire_version())
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.encode_vec(1, CID)
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.encode_vec(1, CID);
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let mut bogus_data: Vec<u8> = header.into();
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bogus_data.resize(MIN_INITIAL_PACKET_SIZE, 66);
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let bogus = datagram(bogus_data);
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assert!(server.process(Some(&bogus), now()).dgram().is_none());
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}
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#[test]
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fn drop_short_initial() {
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const CID: &[u8] = &[55; 8]; // not a real connection ID
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let mut server = default_server();
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// This too small to be an Initial, but it is otherwise plausible.
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let mut header = neqo_common::Encoder::with_capacity(1199);
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header
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.encode_byte(0xca)
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.encode_uint(4, Version::default().wire_version())
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.encode_vec(1, CID)
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.encode_vec(1, CID);
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let mut bogus_data: Vec<u8> = header.into();
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bogus_data.resize(1199, 66);
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let bogus = datagram(bogus_data);
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assert!(server.process(Some(&bogus), now()).dgram().is_none());
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}
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/// Verify that the server can read 0-RTT properly. A more robust server would buffer
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/// 0-RTT before the handshake begins and let 0-RTT arrive for a short periiod after
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/// the handshake completes, but ours is for testing so it only allows 0-RTT while
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/// the handshake is running.
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#[test]
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fn zero_rtt() {
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let mut server = default_server();
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let token = generate_ticket(&mut server);
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// Discharge the old connection so that we don't have to worry about it.
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let mut now = now();
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let t = server.process(None, now).callback();
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now += t;
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assert_eq!(server.process(None, now), Output::None);
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assert_eq!(server.active_connections().len(), 1);
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let start_time = now;
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let mut client = default_client();
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client.enable_resumption(now, &token).unwrap();
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let mut client_send = || {
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let client_stream = client.stream_create(StreamType::UniDi).unwrap();
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client.stream_send(client_stream, &[1, 2, 3]).unwrap();
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match client.process(None, now) {
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Output::Datagram(d) => d,
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Output::Callback(t) => {
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// Pacing...
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now += t;
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client.process(None, now).dgram().unwrap()
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}
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Output::None => panic!(),
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}
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};
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// Now generate a bunch of 0-RTT packets...
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let c1 = client_send();
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assertions::assert_coalesced_0rtt(&c1);
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let c2 = client_send();
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let c3 = client_send();
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let c4 = client_send();
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// 0-RTT packets that arrive before the handshake get dropped.
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mem::drop(server.process(Some(&c2), now));
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assert!(server.active_connections().is_empty());
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// Now handshake and let another 0-RTT packet in.
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let shs = server.process(Some(&c1), now);
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mem::drop(server.process(Some(&c3), now));
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// The server will have received two STREAM frames now if it processed both packets.
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let active = server.active_connections();
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assert_eq!(active.len(), 1);
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assert_eq!(active[0].borrow().stats().frame_rx.stream, 2);
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// Complete the handshake. As the client was pacing 0-RTT packets, extend the time
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// a little so that the pacer doesn't prevent the Finished from being sent.
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now += now - start_time;
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let cfin = client.process(shs.as_dgram_ref(), now);
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mem::drop(server.process(cfin.as_dgram_ref(), now));
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// The server will drop this last 0-RTT packet.
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mem::drop(server.process(Some(&c4), now));
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let active = server.active_connections();
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assert_eq!(active.len(), 1);
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assert_eq!(active[0].borrow().stats().frame_rx.stream, 2);
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}
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#[test]
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fn new_token_0rtt() {
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let mut server = default_server();
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let token = generate_ticket(&mut server);
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server.set_validation(ValidateAddress::NoToken);
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let mut client = default_client();
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client.enable_resumption(now(), &token).unwrap();
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let client_stream = client.stream_create(StreamType::UniDi).unwrap();
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client.stream_send(client_stream, &[1, 2, 3]).unwrap();
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let out = client.process(None, now()); // Initial w/0-RTT
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assert!(out.as_dgram_ref().is_some());
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assertions::assert_initial(out.as_dgram_ref().unwrap(), true);
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assertions::assert_coalesced_0rtt(out.as_dgram_ref().unwrap());
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let out = server.process(out.as_dgram_ref(), now()); // Initial
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assert!(out.as_dgram_ref().is_some());
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assertions::assert_initial(out.as_dgram_ref().unwrap(), false);
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let dgram = client.process(out.as_dgram_ref(), now());
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// Note: the client doesn't need to authenticate the server here
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// as there is no certificate; authentication is based on the ticket.
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assert!(out.as_dgram_ref().is_some());
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assert_eq!(*client.state(), State::Connected);
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let dgram = server.process(dgram.as_dgram_ref(), now()); // (done)
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assert!(dgram.as_dgram_ref().is_some());
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connected_server(&mut server);
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assert!(client.tls_info().unwrap().resumed());
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}
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#[test]
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fn new_token_different_port() {
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let mut server = default_server();
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let token = generate_ticket(&mut server);
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server.set_validation(ValidateAddress::NoToken);
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let mut client = default_client();
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client.enable_resumption(now(), &token).unwrap();
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let dgram = client.process(None, now()).dgram(); // Initial
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assert!(dgram.is_some());
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assertions::assert_initial(dgram.as_ref().unwrap(), true);
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// Now rewrite the source port, which should not change that the token is OK.
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let d = dgram.unwrap();
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let src = SocketAddr::new(d.source().ip(), d.source().port() + 1);
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let dgram = Some(Datagram::new(
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src,
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d.destination(),
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d.tos(),
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d.ttl(),
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&d[..],
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));
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let dgram = server.process(dgram.as_ref(), now()).dgram(); // Retry
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assert!(dgram.is_some());
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assertions::assert_initial(dgram.as_ref().unwrap(), false);
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}
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#[test]
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fn bad_client_initial() {
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let mut client = default_client();
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let mut server = default_server();
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let dgram = client.process(None, now()).dgram().expect("a datagram");
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let (header, d_cid, s_cid, payload) = decode_initial_header(&dgram, Role::Client).unwrap();
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let (aead, hp) = initial_aead_and_hp(d_cid, Role::Client);
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let (fixed_header, pn) = remove_header_protection(&hp, header, payload);
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let payload = &payload[(fixed_header.len() - header.len())..];
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let mut plaintext_buf = vec![0; dgram.len()];
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let plaintext = aead
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.decrypt(pn, &fixed_header, payload, &mut plaintext_buf)
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.unwrap();
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let mut payload_enc = Encoder::from(plaintext);
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payload_enc.encode(&[0x08, 0x02, 0x00, 0x00]); // Add a stream frame.
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// Make a new header with a 1 byte packet number length.
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let mut header_enc = Encoder::new();
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header_enc
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.encode_byte(0xc0) // Initial with 1 byte packet number.
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.encode_uint(4, Version::default().wire_version())
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.encode_vec(1, d_cid)
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.encode_vec(1, s_cid)
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.encode_vvec(&[])
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.encode_varint(u64::try_from(payload_enc.len() + aead.expansion() + 1).unwrap())
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.encode_byte(u8::try_from(pn).unwrap());
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let mut ciphertext = header_enc.as_ref().to_vec();
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ciphertext.resize(header_enc.len() + payload_enc.len() + aead.expansion(), 0);
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let v = aead
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.encrypt(
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pn,
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header_enc.as_ref(),
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payload_enc.as_ref(),
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&mut ciphertext[header_enc.len()..],
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)
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.unwrap();
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assert_eq!(header_enc.len() + v.len(), ciphertext.len());
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// Pad with zero to get up to MIN_INITIAL_PACKET_SIZE.
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ciphertext.resize(MIN_INITIAL_PACKET_SIZE, 0);
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apply_header_protection(
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&hp,
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&mut ciphertext,
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(header_enc.len() - 1)..header_enc.len(),
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);
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let bad_dgram = Datagram::new(
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dgram.source(),
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dgram.destination(),
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dgram.tos(),
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dgram.ttl(),
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ciphertext,
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);
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// The server should reject this.
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let response = server.process(Some(&bad_dgram), now());
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let close_dgram = response.dgram().unwrap();
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// The resulting datagram might contain multiple packets, but each is small.
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let (initial_close, rest) = split_datagram(&close_dgram);
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// Allow for large connection IDs and a 32 byte CONNECTION_CLOSE.
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assert!(initial_close.len() <= 100);
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let (handshake_close, short_close) = split_datagram(&rest.unwrap());
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// The Handshake packet containing the close is the same size as the Initial,
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// plus 1 byte for the Token field in the Initial.
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assert_eq!(initial_close.len(), handshake_close.len() + 1);
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assert!(short_close.unwrap().len() <= 73);
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// The client should accept this new and stop trying to connect.
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// It will generate a CONNECTION_CLOSE first though.
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let response = client.process(Some(&close_dgram), now()).dgram();
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assert!(response.is_some());
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// The client will now wait out its closing period.
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let delay = client.process(None, now()).callback();
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assert_ne!(delay, Duration::from_secs(0));
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assert!(matches!(
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*client.state(),
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State::Draining { error: CloseReason::Transport(Error::PeerError(code)), .. } if code == Error::ProtocolViolation.code()
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));
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for server in server.active_connections() {
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assert_eq!(
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*server.borrow().state(),
|
|
State::Closed(CloseReason::Transport(Error::ProtocolViolation))
|
|
);
|
|
}
|
|
|
|
// After sending the CONNECTION_CLOSE, the server goes idle.
|
|
let res = server.process(None, now());
|
|
assert_eq!(res, Output::None);
|
|
}
|
|
|
|
#[test]
|
|
fn bad_client_initial_connection_close() {
|
|
let mut client = default_client();
|
|
let mut server = default_server();
|
|
|
|
let dgram = client.process(None, now()).dgram().expect("a datagram");
|
|
let (header, d_cid, s_cid, payload) = decode_initial_header(&dgram, Role::Client).unwrap();
|
|
let (aead, hp) = initial_aead_and_hp(d_cid, Role::Client);
|
|
let (_, pn) = remove_header_protection(&hp, header, payload);
|
|
|
|
let mut payload_enc = Encoder::with_capacity(MIN_INITIAL_PACKET_SIZE);
|
|
payload_enc.encode(&[0x1c, 0x01, 0x00, 0x00]); // Add a CONNECTION_CLOSE frame.
|
|
|
|
// Make a new header with a 1 byte packet number length.
|
|
let mut header_enc = Encoder::new();
|
|
header_enc
|
|
.encode_byte(0xc0) // Initial with 1 byte packet number.
|
|
.encode_uint(4, Version::default().wire_version())
|
|
.encode_vec(1, d_cid)
|
|
.encode_vec(1, s_cid)
|
|
.encode_vvec(&[])
|
|
.encode_varint(u64::try_from(payload_enc.len() + aead.expansion() + 1).unwrap())
|
|
.encode_byte(u8::try_from(pn).unwrap());
|
|
|
|
let mut ciphertext = header_enc.as_ref().to_vec();
|
|
ciphertext.resize(header_enc.len() + payload_enc.len() + aead.expansion(), 0);
|
|
let v = aead
|
|
.encrypt(
|
|
pn,
|
|
header_enc.as_ref(),
|
|
payload_enc.as_ref(),
|
|
&mut ciphertext[header_enc.len()..],
|
|
)
|
|
.unwrap();
|
|
assert_eq!(header_enc.len() + v.len(), ciphertext.len());
|
|
// Pad with zero to get up to MIN_INITIAL_PACKET_SIZE.
|
|
ciphertext.resize(MIN_INITIAL_PACKET_SIZE, 0);
|
|
|
|
apply_header_protection(
|
|
&hp,
|
|
&mut ciphertext,
|
|
(header_enc.len() - 1)..header_enc.len(),
|
|
);
|
|
let bad_dgram = Datagram::new(
|
|
dgram.source(),
|
|
dgram.destination(),
|
|
dgram.tos(),
|
|
dgram.ttl(),
|
|
ciphertext,
|
|
);
|
|
|
|
// The server should ignore this and go to Draining.
|
|
let mut now = now();
|
|
let response = server.process(Some(&bad_dgram), now);
|
|
now += response.callback();
|
|
let response = server.process(None, now);
|
|
assert_eq!(response, Output::None);
|
|
}
|
|
|
|
#[test]
|
|
fn version_negotiation_ignored() {
|
|
let mut server = default_server();
|
|
let mut client = default_client();
|
|
|
|
// Any packet will do, but let's make something that looks real.
|
|
let dgram = client.process(None, now()).dgram().expect("a datagram");
|
|
let mut input = dgram.to_vec();
|
|
input[1] ^= 0x12;
|
|
let damaged = Datagram::new(
|
|
dgram.source(),
|
|
dgram.destination(),
|
|
dgram.tos(),
|
|
dgram.ttl(),
|
|
input.clone(),
|
|
);
|
|
let vn = server.process(Some(&damaged), now()).dgram();
|
|
|
|
let mut dec = Decoder::from(&input[5..]); // Skip past version.
|
|
let d_cid = dec.decode_vec(1).expect("client DCID").to_vec();
|
|
let s_cid = dec.decode_vec(1).expect("client SCID").to_vec();
|
|
|
|
// We should have received a VN packet.
|
|
let vn = vn.expect("a vn packet");
|
|
let mut dec = Decoder::from(&vn[1..]); // Skip first byte.
|
|
|
|
assert_eq!(dec.decode_uint(4).expect("VN"), 0);
|
|
assert_eq!(dec.decode_vec(1).expect("VN DCID"), &s_cid[..]);
|
|
assert_eq!(dec.decode_vec(1).expect("VN SCID"), &d_cid[..]);
|
|
let mut found = false;
|
|
while dec.remaining() > 0 {
|
|
let v = dec.decode_uint(4).expect("supported version");
|
|
found |= v == u64::from(Version::default().wire_version());
|
|
}
|
|
assert!(found, "valid version not found");
|
|
|
|
// Client ignores VN packet that contain negotiated version.
|
|
let res = client.process(Some(&vn), now());
|
|
assert!(res.callback() > Duration::new(0, 120));
|
|
assert_eq!(client.state(), &State::WaitInitial);
|
|
}
|
|
|
|
/// Test that if the server doesn't support a version it will signal with a
|
|
/// Version Negotiation packet and the client will use that version.
|
|
#[test]
|
|
fn version_negotiation() {
|
|
const VN_VERSION: Version = Version::Draft29;
|
|
assert_ne!(VN_VERSION, Version::default());
|
|
assert!(!Version::default().is_compatible(VN_VERSION));
|
|
|
|
let mut server =
|
|
new_server(ConnectionParameters::default().versions(VN_VERSION, vec![VN_VERSION]));
|
|
let mut client = default_client();
|
|
|
|
// `connect()` runs a fixed exchange, so manually run the Version Negotiation.
|
|
let dgram = client.process_output(now()).dgram();
|
|
assert!(dgram.is_some());
|
|
let dgram = server.process(dgram.as_ref(), now()).dgram();
|
|
assertions::assert_vn(dgram.as_ref().unwrap());
|
|
client.process_input(&dgram.unwrap(), now());
|
|
|
|
let sconn = connect(&mut client, &mut server);
|
|
assert_eq!(client.version(), VN_VERSION);
|
|
assert_eq!(sconn.borrow().version(), VN_VERSION);
|
|
}
|
|
|
|
/// Test that the client can pick a version from a Version Negotiation packet,
|
|
/// which is then subsequently upgraded to a compatible version by the server.
|
|
#[test]
|
|
fn version_negotiation_and_compatible() {
|
|
const ORIG_VERSION: Version = Version::Draft29;
|
|
const VN_VERSION: Version = Version::Version1;
|
|
const COMPAT_VERSION: Version = Version::Version2;
|
|
assert!(!ORIG_VERSION.is_compatible(VN_VERSION));
|
|
assert!(!ORIG_VERSION.is_compatible(COMPAT_VERSION));
|
|
assert!(VN_VERSION.is_compatible(COMPAT_VERSION));
|
|
|
|
let mut server = new_server(
|
|
ConnectionParameters::default().versions(VN_VERSION, vec![COMPAT_VERSION, VN_VERSION]),
|
|
);
|
|
// Note that the order of versions at the client only determines what it tries first.
|
|
// The server will pick between VN_VERSION and COMPAT_VERSION.
|
|
let mut client = new_client(
|
|
ConnectionParameters::default()
|
|
.versions(ORIG_VERSION, vec![ORIG_VERSION, VN_VERSION, COMPAT_VERSION]),
|
|
);
|
|
|
|
// Run the full exchange so that we can observe the versions in use.
|
|
|
|
// Version Negotiation
|
|
let dgram = client.process_output(now()).dgram();
|
|
assert!(dgram.is_some());
|
|
assertions::assert_version(dgram.as_ref().unwrap(), ORIG_VERSION.wire_version());
|
|
let dgram = server.process(dgram.as_ref(), now()).dgram();
|
|
assertions::assert_vn(dgram.as_ref().unwrap());
|
|
client.process_input(&dgram.unwrap(), now());
|
|
|
|
let dgram = client.process(None, now()).dgram(); // ClientHello
|
|
assertions::assert_version(dgram.as_ref().unwrap(), VN_VERSION.wire_version());
|
|
let dgram = server.process(dgram.as_ref(), now()).dgram(); // ServerHello...
|
|
assertions::assert_version(dgram.as_ref().unwrap(), COMPAT_VERSION.wire_version());
|
|
client.process_input(&dgram.unwrap(), now());
|
|
|
|
client.authenticated(AuthenticationStatus::Ok, now());
|
|
let dgram = client.process_output(now()).dgram();
|
|
assertions::assert_version(dgram.as_ref().unwrap(), COMPAT_VERSION.wire_version());
|
|
assert_eq!(*client.state(), State::Connected);
|
|
let dgram = server.process(dgram.as_ref(), now()).dgram(); // ACK + HANDSHAKE_DONE + NST
|
|
client.process_input(&dgram.unwrap(), now());
|
|
assert_eq!(*client.state(), State::Confirmed);
|
|
|
|
let sconn = connected_server(&mut server);
|
|
assert_eq!(client.version(), COMPAT_VERSION);
|
|
assert_eq!(sconn.borrow().version(), COMPAT_VERSION);
|
|
}
|
|
|
|
/// When a client resumes it remembers the version that the connection last used.
|
|
/// A subsequent connection will use that version, but if it then receives
|
|
/// a version negotiation packet, it should validate based on what it attempted
|
|
/// not what it was originally configured for.
|
|
#[test]
|
|
fn compatible_upgrade_resumption_and_vn() {
|
|
// Start at v1, compatible upgrade to v2.
|
|
const ORIG_VERSION: Version = Version::Version1;
|
|
const COMPAT_VERSION: Version = Version::Version2;
|
|
const RESUMPTION_VERSION: Version = Version::Draft29;
|
|
|
|
let client_params = ConnectionParameters::default().versions(
|
|
ORIG_VERSION,
|
|
vec![COMPAT_VERSION, ORIG_VERSION, RESUMPTION_VERSION],
|
|
);
|
|
let mut client = new_client(client_params.clone());
|
|
assert_eq!(client.version(), ORIG_VERSION);
|
|
|
|
let mut server = default_server();
|
|
let mut server_conn = connect(&mut client, &mut server);
|
|
assert_eq!(client.version(), COMPAT_VERSION);
|
|
assert_eq!(server_conn.borrow().version(), COMPAT_VERSION);
|
|
|
|
server_conn.borrow_mut().send_ticket(now(), &[]).unwrap();
|
|
let dgram = server.process(None, now()).dgram();
|
|
client.process_input(&dgram.unwrap(), now()); // Consume ticket, ignore output.
|
|
let ticket = find_ticket(&mut client);
|
|
|
|
// This new server will reject the ticket, but it will also generate a VN packet.
|
|
let mut client = new_client(client_params);
|
|
let mut server = new_server(
|
|
ConnectionParameters::default().versions(RESUMPTION_VERSION, vec![RESUMPTION_VERSION]),
|
|
);
|
|
client.enable_resumption(now(), ticket).unwrap();
|
|
|
|
// The version negotiation exchange.
|
|
let dgram = client.process_output(now()).dgram();
|
|
assert!(dgram.is_some());
|
|
assertions::assert_version(dgram.as_ref().unwrap(), COMPAT_VERSION.wire_version());
|
|
let dgram = server.process(dgram.as_ref(), now()).dgram();
|
|
assertions::assert_vn(dgram.as_ref().unwrap());
|
|
client.process_input(&dgram.unwrap(), now());
|
|
|
|
let server_conn = connect(&mut client, &mut server);
|
|
assert_eq!(client.version(), RESUMPTION_VERSION);
|
|
assert_eq!(server_conn.borrow().version(), RESUMPTION_VERSION);
|
|
}
|
|
|
|
#[test]
|
|
fn closed() {
|
|
// Let a server connection idle and it should be removed.
|
|
let mut server = default_server();
|
|
let mut client = default_client();
|
|
connect(&mut client, &mut server);
|
|
|
|
// The server will have sent a few things, so it will be on PTO.
|
|
let res = server.process(None, now());
|
|
assert!(res.callback() > Duration::new(0, 0));
|
|
// The client will be on the delayed ACK timer.
|
|
let res = client.process(None, now());
|
|
assert!(res.callback() > Duration::new(0, 0));
|
|
|
|
qtrace!("60s later");
|
|
let res = server.process(None, now() + Duration::from_secs(60));
|
|
assert_eq!(res, Output::None);
|
|
}
|
|
|
|
fn can_create_streams(c: &mut Connection, t: StreamType, n: u64) {
|
|
for _ in 0..n {
|
|
c.stream_create(t).unwrap();
|
|
}
|
|
assert_eq!(c.stream_create(t), Err(Error::StreamLimitError));
|
|
}
|
|
|
|
#[test]
|
|
fn max_streams() {
|
|
const MAX_STREAMS: u64 = 40;
|
|
let mut server = Server::new(
|
|
now(),
|
|
test_fixture::DEFAULT_KEYS,
|
|
test_fixture::DEFAULT_ALPN,
|
|
test_fixture::anti_replay(),
|
|
Box::new(AllowZeroRtt {}),
|
|
Rc::new(RefCell::new(CountingConnectionIdGenerator::default())),
|
|
ConnectionParameters::default()
|
|
.max_streams(StreamType::BiDi, MAX_STREAMS)
|
|
.max_streams(StreamType::UniDi, MAX_STREAMS),
|
|
)
|
|
.expect("should create a server");
|
|
|
|
let mut client = default_client();
|
|
connect(&mut client, &mut server);
|
|
|
|
// Make sure that we can create MAX_STREAMS uni- and bidirectional streams.
|
|
can_create_streams(&mut client, StreamType::UniDi, MAX_STREAMS);
|
|
can_create_streams(&mut client, StreamType::BiDi, MAX_STREAMS);
|
|
}
|
|
|
|
#[test]
|
|
fn max_streams_default() {
|
|
let mut server = Server::new(
|
|
now(),
|
|
test_fixture::DEFAULT_KEYS,
|
|
test_fixture::DEFAULT_ALPN,
|
|
test_fixture::anti_replay(),
|
|
Box::new(AllowZeroRtt {}),
|
|
Rc::new(RefCell::new(CountingConnectionIdGenerator::default())),
|
|
ConnectionParameters::default(),
|
|
)
|
|
.expect("should create a server");
|
|
|
|
let mut client = default_client();
|
|
connect(&mut client, &mut server);
|
|
|
|
// Make sure that we can create streams up to the local limit.
|
|
let local_limit_unidi = ConnectionParameters::default().get_max_streams(StreamType::UniDi);
|
|
can_create_streams(&mut client, StreamType::UniDi, local_limit_unidi);
|
|
let local_limit_bidi = ConnectionParameters::default().get_max_streams(StreamType::BiDi);
|
|
can_create_streams(&mut client, StreamType::BiDi, local_limit_bidi);
|
|
}
|
|
|
|
#[derive(Debug)]
|
|
struct RejectZeroRtt {}
|
|
impl ZeroRttChecker for RejectZeroRtt {
|
|
fn check(&self, _token: &[u8]) -> ZeroRttCheckResult {
|
|
ZeroRttCheckResult::Reject
|
|
}
|
|
}
|
|
|
|
#[test]
|
|
fn max_streams_after_0rtt_rejection() {
|
|
const MAX_STREAMS_BIDI: u64 = 40;
|
|
const MAX_STREAMS_UNIDI: u64 = 30;
|
|
let mut server = Server::new(
|
|
now(),
|
|
test_fixture::DEFAULT_KEYS,
|
|
test_fixture::DEFAULT_ALPN,
|
|
test_fixture::anti_replay(),
|
|
Box::new(RejectZeroRtt {}),
|
|
Rc::new(RefCell::new(CountingConnectionIdGenerator::default())),
|
|
ConnectionParameters::default()
|
|
.max_streams(StreamType::BiDi, MAX_STREAMS_BIDI)
|
|
.max_streams(StreamType::UniDi, MAX_STREAMS_UNIDI),
|
|
)
|
|
.expect("should create a server");
|
|
let token = generate_ticket(&mut server);
|
|
|
|
let mut client = default_client();
|
|
client.enable_resumption(now(), &token).unwrap();
|
|
_ = client.stream_create(StreamType::BiDi).unwrap();
|
|
let dgram = client.process_output(now()).dgram();
|
|
let dgram = server.process(dgram.as_ref(), now()).dgram();
|
|
let dgram = client.process(dgram.as_ref(), now()).dgram();
|
|
assert!(dgram.is_some()); // We're far enough along to complete the test now.
|
|
|
|
// Make sure that we can create MAX_STREAMS uni- and bidirectional streams.
|
|
can_create_streams(&mut client, StreamType::UniDi, MAX_STREAMS_UNIDI);
|
|
can_create_streams(&mut client, StreamType::BiDi, MAX_STREAMS_BIDI);
|
|
}
|
|
|
|
#[test]
|
|
fn ech() {
|
|
// Check that ECH can be used.
|
|
let mut server = default_server();
|
|
let (sk, pk) = generate_ech_keys().unwrap();
|
|
server.enable_ech(0x4a, "public.example", &sk, &pk).unwrap();
|
|
|
|
let mut client = default_client();
|
|
client.client_enable_ech(server.ech_config()).unwrap();
|
|
let server_instance = connect(&mut client, &mut server);
|
|
|
|
assert!(client.tls_info().unwrap().ech_accepted());
|
|
assert!(server_instance.borrow().tls_info().unwrap().ech_accepted());
|
|
assert!(client.tls_preinfo().unwrap().ech_accepted().unwrap());
|
|
assert!(server_instance
|
|
.borrow()
|
|
.tls_preinfo()
|
|
.unwrap()
|
|
.ech_accepted()
|
|
.unwrap());
|
|
}
|
|
|
|
#[test]
|
|
fn has_active_connections() {
|
|
let mut server = default_server();
|
|
let mut client = default_client();
|
|
|
|
assert!(!server.has_active_connections());
|
|
|
|
let initial = client.process(None, now());
|
|
let _ = server.process(initial.as_dgram_ref(), now()).dgram();
|
|
|
|
assert!(server.has_active_connections());
|
|
}
|