Files
OpenFUT/openfut-roster-host/tests/oracle_parity.rs
T
funman300 c9ae914910 roster-host: transport host for the FUT roster update, lifecycle-matched
Second consumer of openfut-tls, and the reason it was extracted first.
This host contains no roster content and no cipher choice: the adapter
owns the 67 bytes and the observed TLS profile, openfut-tls owns the
acceptor, and this crate owns accept/read/drain/write/close.

Lifecycle was MEASURED, not inherited. The obvious mistake here would
have been copying the redirector's 300ms dwell because the other host has
one. A probe against the oracle says otherwise:

    dwell after responding   0 ms      (redirector: 300 ms)
    request body             drained   POST answered only once it arrives
    close                    clean FIN, never RST
    keep-alive               none      one request per connection

The probe ran against a REPLICA of roster_server.py loaded from its own
source, not against :8081 -- http.server.HTTPServer is single-threaded
and FIFA was mid-session, so holding a connection open to measure the
close would have stalled the game's poll and could have surfaced as the
squad-update error. The replica was then confirmed byte-identical to the
live oracle under masking, the 1-byte delta being the container's Python
version in the Server header.

Differential against the live oracle, every field identical, with the
Server header compared UNMASKED:

    GET  230B   HEAD 163B   POST 163B
    drained=True  reset=False  answered_before_body=False
    keepalive: second request accepted by the socket, never answered

Testing follows the redirector's hard-won rule: where a property is
visible both to the client and inside the host, it is asserted inside the
host via ConnOutcome. A client-side check cannot tell "drained" from "not
drained" -- it reads the buffered response either way -- and that exact
mistake let a mutation survive once already.

9 parity tests, 6 unit tests, 5/5 mutations killed, including "answer
before draining", "hold the connection open like the redirector" and
"inherit the redirector's 300ms default".

drain_body is duplicated from the redirector deliberately. Unifying it
means editing the redirector, and the roster A/B must change exactly one
thing. Extraction is scheduled for after the roster gate closes.

Not deployed and not switched: Python still serves :8081.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-08-11 17:41:11 +00:00

296 lines
9.9 KiB
Rust

//! The roster host held against the Python oracle's measured behaviour.
//!
//! Response bytes are only half of it. The redirector cost two live gate
//! attempts to a divergence no response comparison could see — a request body
//! left unread, which turns the close into an RST — so the oracle's lifecycle
//! was measured with a probe and every property is asserted here:
//!
//! ```text
//! dwell after responding 0 ms
//! request body drained before the response is written
//! close immediately after, cleanly
//! keep-alive none: one request per connection
//! ```
//!
//! Where a property is observable both from the client and from inside the
//! host, it is asserted **inside the host** via `ConnOutcome`. That distinction
//! is not pedantry: the first attempt to test body-draining asserted that the
//! client still received its response, and that test passed against a host that
//! did not drain at all — the client reads the buffered response and sees
//! `close_notify` before any reset.
use std::io::{Read, Write};
use std::net::TcpStream;
use std::time::{Duration, Instant};
use openfut_adapter_fifa17::roster;
use openfut_roster_host::{bind, BodyRead, RosterConfig};
const PATH: &str = "/fifa17/fut/rosterupdate.xml";
const BODY: &[u8] = b"probe=1&pad=aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa";
fn cert_pair() -> (String, String) {
let base = concat!(env!("CARGO_MANIFEST_DIR"), "/../fifa17-recon/tools");
(
format!("{base}/redir_cert.pem"),
format!("{base}/redir_key.pem"),
)
}
struct Harness {
addr: std::net::SocketAddr,
outcomes: openfut_roster_host::Outcomes,
}
fn start() -> Harness {
start_with(|_| {})
}
fn start_with(tweak: impl FnOnce(&mut RosterConfig)) -> Harness {
let (c, k) = cert_pair();
let mut cfg = RosterConfig::for_test(&c, &k);
tweak(&mut cfg);
let server = bind(cfg).expect("bind");
let addr = server.local_addr;
let outcomes = server.outcomes();
std::thread::spawn(move || {
let _ = server.run();
});
Harness { addr, outcomes }
}
/// A client that behaves like FIFA: legacy suites, no certificate checking.
fn connect(addr: std::net::SocketAddr) -> openfut_tls::SslStream<TcpStream> {
use openfut_tls::{SslConnector, SslMethod, SslVerifyMode};
let mut b = SslConnector::builder(SslMethod::tls()).expect("connector");
b.set_cipher_list(openfut_adapter_fifa17::tls::OBSERVED_CLIENT_SUITES)
.expect("ciphers");
b.set_verify(SslVerifyMode::NONE);
let sock = TcpStream::connect(addr).expect("connect");
sock.set_read_timeout(Some(Duration::from_secs(5))).unwrap();
let ssl = b
.build()
.configure()
.and_then(|c| c.verify_hostname(false).into_ssl("roster-test"))
.expect("ssl");
let mut s = openfut_tls::SslStream::new(ssl, sock).expect("stream");
s.connect().expect("handshake");
s
}
fn request(method: &str, body: Option<&[u8]>) -> Vec<u8> {
let mut r = format!("{method} {PATH} HTTP/1.1\r\nHost: roster-test\r\nAccept: */*\r\n");
if let Some(b) = body {
r.push_str(&format!("Content-Length: {}\r\n", b.len()));
}
r.push_str("\r\n");
let mut out = r.into_bytes();
if let Some(b) = body {
out.extend_from_slice(b);
}
out
}
fn read_to_eof(s: &mut openfut_tls::SslStream<TcpStream>) -> Vec<u8> {
let mut out = Vec::new();
let mut chunk = [0u8; 4096];
loop {
match s.read(&mut chunk) {
Ok(0) | Err(_) => break,
Ok(n) => out.extend_from_slice(&chunk[..n]),
}
}
out
}
fn exchange(addr: std::net::SocketAddr, method: &str, body: Option<&[u8]>) -> Vec<u8> {
let mut s = connect(addr);
s.write_all(&request(method, body)).expect("write");
s.flush().ok();
read_to_eof(&mut s)
}
fn mask(raw: &[u8]) -> String {
String::from_utf8_lossy(raw)
.split("\r\n")
.map(|l| {
if l.starts_with("Date: ") {
"Date: <MASKED>".to_string()
} else if l.starts_with("Server: ") {
"Server: <MASKED>".to_string()
} else {
l.to_string()
}
})
.collect::<Vec<_>>()
.join("\r\n")
}
/// The bytes the adapter says the oracle sends, masked the same way.
fn expected(method: roster::Method) -> String {
mask(&roster::roster_response(
method,
roster::ORACLE_SERVER,
"IRRELEVANT",
))
}
#[test]
fn get_returns_the_oracles_bytes() {
let h = start();
let got = exchange(h.addr, "GET", None);
assert_eq!(mask(&got), expected(roster::Method::Get));
assert!(String::from_utf8_lossy(&got).starts_with("HTTP/1.0 200 OK\r\n"));
}
#[test]
fn head_and_post_are_headers_only_but_still_advertise_the_body() {
let h = start();
for (m, adapter_m) in [
("HEAD", roster::Method::Head),
("POST", roster::Method::Post),
] {
let body = if m == "POST" { Some(BODY) } else { None };
let got = exchange(h.addr, m, body);
assert_eq!(mask(&got), expected(adapter_m), "{m} differs");
let text = String::from_utf8_lossy(&got);
assert!(text.contains("Content-Length: 67"), "{m}: {text}");
assert!(text.ends_with("\r\n\r\n"), "{m} must send no body");
}
}
/// Asserted on the HOST's record, not on what the client received.
///
/// A client-side assertion cannot distinguish "drained" from "not drained":
/// it reads the buffered response either way. This is the exact mistake that
/// let a mutation survive on the redirector.
#[test]
fn the_request_body_is_drained_before_the_response_is_written() {
let h = start();
let _ = exchange(h.addr, "POST", Some(BODY));
let rec = h.outcomes.lock().unwrap();
let last = rec.last().expect("a connection was recorded");
assert_eq!(
last.body,
BodyRead::Complete(BODY.len()),
"the whole body must be read before answering, or the close becomes an RST"
);
assert!(last.response_bytes > 0);
}
/// The oracle answers a POST only after the body arrives. Sending the head,
/// pausing, then sending the body proves the host waits rather than replying
/// early and leaving the socket dirty.
#[test]
fn a_late_body_is_waited_for_rather_than_answered_early() {
let h = start();
let mut s = connect(h.addr);
let head = format!(
"POST {PATH} HTTP/1.1\r\nHost: roster-test\r\nContent-Length: {}\r\n\r\n",
BODY.len()
);
s.write_all(head.as_bytes()).unwrap();
s.flush().ok();
s.get_ref()
.set_read_timeout(Some(Duration::from_millis(600)))
.unwrap();
let mut early = [0u8; 64];
let early_n = s.read(&mut early).unwrap_or(0);
assert_eq!(
early_n,
0,
"answered before the body arrived: {:?}",
String::from_utf8_lossy(&early[..early_n])
);
s.get_ref()
.set_read_timeout(Some(Duration::from_secs(5)))
.unwrap();
s.write_all(BODY).unwrap();
s.flush().ok();
let late = read_to_eof(&mut s);
assert!(!late.is_empty(), "no response after the body arrived");
assert_eq!(mask(&late), expected(roster::Method::Post));
}
/// One request per connection: the response says `Connection: close` and the
/// oracle closes. Measured, not assumed — a keep-alive loop would be a
/// behaviour change invisible in any single response.
#[test]
fn the_connection_closes_after_one_request() {
let h = start();
let mut s = connect(h.addr);
s.write_all(&request("GET", None)).unwrap();
s.flush().ok();
let first = read_to_eof(&mut s);
assert!(!first.is_empty());
// read_to_eof already ran to EOF; a second request must not be answered.
let _ = s.write_all(&request("GET", None));
let mut buf = [0u8; 32];
let n = s.read(&mut buf).unwrap_or(0);
assert_eq!(n, 0, "a second request was answered on the same connection");
}
/// The oracle has no post-response sleep — unlike the redirector's 300ms.
/// Inheriting the wrong dwell would add delay to a poll that runs every few
/// seconds.
#[test]
fn the_connection_is_not_held_open_after_responding() {
let h = start();
let mut s = connect(h.addr);
s.write_all(&request("GET", None)).unwrap();
s.flush().ok();
let start = Instant::now();
let got = read_to_eof(&mut s);
let elapsed = start.elapsed();
assert!(!got.is_empty());
assert!(
elapsed < Duration::from_millis(150),
"closed after {elapsed:?}; the roster oracle closes immediately"
);
}
/// The dwell stays configurable so the causal experiment — set it and confirm
/// the delay appears — can run without a rebuild. Guards against the knob
/// being quietly ignored.
#[test]
fn the_dwell_is_overridable() {
let h = start_with(|c| c.close_dwell = Duration::from_millis(400));
let mut s = connect(h.addr);
s.write_all(&request("GET", None)).unwrap();
s.flush().ok();
let start = Instant::now();
let _ = read_to_eof(&mut s);
assert!(
start.elapsed() >= Duration::from_millis(350),
"dwell override had no effect"
);
}
/// The oracle never routes on the path — it logs it and answers the same way.
/// A host that started 404ing unknown paths would be a behaviour change.
#[test]
fn any_path_gets_the_same_answer() {
let h = start();
let mut s = connect(h.addr);
s.write_all(b"GET /something/else HTTP/1.1\r\nHost: x\r\n\r\n")
.unwrap();
s.flush().ok();
let got = read_to_eof(&mut s);
assert_eq!(mask(&got), expected(roster::Method::Get));
}
/// Masking must not be able to hide a real difference.
#[test]
fn masking_does_not_hide_a_missing_header() {
let good = roster::roster_response(roster::Method::Get, roster::ORACLE_SERVER, "X");
let without: Vec<u8> = String::from_utf8_lossy(&good)
.split("\r\n")
.filter(|l| !l.starts_with("Date: "))
.collect::<Vec<_>>()
.join("\r\n")
.into_bytes();
assert_ne!(mask(&good), mask(&without));
}