test(message-bus): test basic scenario

use a helper to run scenario in hurl like style
This commit is contained in:
Edouard Vanbelle
2026-09-10 00:25:39 +02:00
parent 4a4c83b53a
commit a2d27a61fe
7 changed files with 769 additions and 4 deletions
Generated
+1
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@@ -4721,6 +4721,7 @@ dependencies = [
"thiserror 2.0.18",
"tokio",
"tokio-stream",
"tokio-tungstenite",
"tokio-util",
"toml 1.1.2+spec-1.1.0",
"tower",
+30 -1
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@@ -31,6 +31,10 @@ axum = { version = "0.8.8", features = ["multipart", "http1", "http2", "tokio",
tokio = { version = "1.52.3", features = ["rt-multi-thread", "macros", "io-util", "net", "time", "sync", "fs", "process", "signal"] }
tokio-util = { version = "0.7.18", features = ["io", "codec", "compat"] }
tokio-stream = { version = "0.1.18", features = ["fs", "sync"] }
# Only pulled in by the `test_utils` feature (rt-hurl-helper bin). Not
# shipped in release; pinned to the same 0.28 axum 0.8.8 already brings
# transitively so we don't duplicate the crate graph.
tokio-tungstenite = { version = "0.28", default-features = false, features = ["connect", "handshake"], optional = true }
bytes = "1.11.1"
tempfile = "3.27.0"
tower = "0.5.3"
@@ -190,7 +194,7 @@ metrics-exporter-prometheus = { version = "0.18", default-features = false }
[features]
default = []
test_utils = ["mockall"]
test_utils = ["mockall", "dep:tokio-tungstenite"]
integration_tests = []
# WASM plugin runtime (Extism). Opt-in: bundles wasmtime, a large engine most
# deployments won't use. Activation also requires OXICLOUD_ENABLE_PLUGINS=true.
@@ -262,6 +266,16 @@ path = "src/bin/generate-openapi.rs"
# Invoked by `just openapi`, which passes `--features dev_tools`.
required-features = ["dev_tools"]
[[bin]]
name = "generate-asyncapi"
path = "src/bin/generate-asyncapi.rs"
# Dev-only: regenerates `resources/gen/asyncapi.json` — the WS surface's
# analogue of openapi.json. Constructed from the same `error_code`
# constants + `Topic`/`RealtimeEvent` shapes the server uses, so the
# spec stays in sync with the implementation by construction. Same
# gating as `generate-openapi`. Invoked by `just asyncapi`.
required-features = ["dev_tools"]
[[bin]]
name = "opaque-hurl-helper"
path = "src/bin/opaque-hurl-helper.rs"
@@ -292,6 +306,21 @@ path = "src/bin/load-seed.rs"
# and load-nightly.yml build it explicitly with --features load_seed_bin.
required-features = ["load_seed_bin"]
[[bin]]
name = "rt-hurl-helper"
path = "src/bin/rt-hurl-helper.rs"
# Test-suite WebSocket client for the realtime message bus. Hurl is
# HTTP-only and cannot drive a WS handshake or read frames; this bin
# supplies the two modes the smoke test needs — `subscribe-and-collect`
# (background subscriber that captures events to JSON) and
# `expect-denied` (synchronous check that a subscribe attempt is
# rejected with a specific JSON-RPC error code). Invoked from
# tests/api/rt_bus_check.sh after the main hurl block.
#
# Not shipped in release: gated behind `test_utils` alongside the
# opaque/dpop helpers.
required-features = ["test_utils"]
# Phase 0 perf harness — Task 0.2 (criterion latency + output-size bench).
[[bench]]
name = "thumbnails"
+7
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@@ -194,6 +194,13 @@ audit:
openapi:
cargo run --features dev_tools --bin generate-openapi
# Regenerate `resources/gen/asyncapi.json` — the WS surface's spec,
# analogue of openapi.json. Built from the `Topic`, `RealtimeEvent`,
# and `error_code` constants in `application/ports/realtime_ports.rs`
# so the spec stays in sync with the wire by construction.
asyncapi:
cargo run --features dev_tools --bin generate-asyncapi
db:
docker compose up -d postgres
+72 -1
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@@ -402,8 +402,79 @@ async fn main() -> ExitCode {
Err(e) => return fail(format!("/api/admin/sessions network: {e}")),
}
// ── OPAQUE-minted JWT works against the realtime WS ─────────────
//
// Regression guard: `auth_middleware` doesn't inspect how a JWT
// was minted, so an OPAQUE-issued access_token must Just Work on
// `/api/rt/ws` the same way a legacy-password one does. If a
// future refactor makes WS auth diverge from the general
// request-auth path, this smoke fails and the divergence gets
// caught here rather than only surfacing in the collab editor.
//
// The check itself is trivial: connect with the OPAQUE JWT, send
// one `rt.ping`, expect `result.pong == true`.
if let Err(msg) = opaque_jwt_ws_smoke(base, &auth.access_token).await {
return fail(format!("OPAQUE JWT + WS: {msg}"));
}
eprintln!(
"opaque-hurl-helper: OK — register + login + /me + admin sessions origin=opaque for '{username}'"
"opaque-hurl-helper: OK — register + login + /me + admin sessions origin=opaque + rt.ping over WS for '{username}'"
);
ExitCode::from(EXIT_OK)
}
async fn opaque_jwt_ws_smoke(base: &str, access_token: &str) -> Result<(), String> {
use futures::{SinkExt, StreamExt};
use tokio_tungstenite::tungstenite::Message;
use tokio_tungstenite::tungstenite::client::IntoClientRequest;
use tokio_tungstenite::tungstenite::http::HeaderValue;
let ws_url = match base.strip_prefix("http://") {
Some(rest) => format!("ws://{rest}/api/rt/ws"),
None => match base.strip_prefix("https://") {
Some(rest) => format!("wss://{rest}/api/rt/ws"),
None => return Err(format!("unexpected base scheme: {base}")),
},
};
let mut req = ws_url
.into_client_request()
.map_err(|e| format!("bad url: {e}"))?;
req.headers_mut().insert(
"Authorization",
HeaderValue::from_str(&format!("Bearer {access_token}"))
.map_err(|e| format!("bad bearer header: {e}"))?,
);
let (mut ws, _resp) = tokio_tungstenite::connect_async(req)
.await
.map_err(|e| format!("connect failed: {e}"))?;
let ping = json!({
"jsonrpc": "2.0",
"id": 1,
"method": "rt.ping",
})
.to_string();
ws.send(Message::Text(ping.into()))
.await
.map_err(|e| format!("send: {e}"))?;
// Bounded wait — the server should reply immediately. A hung reply
// means the WS handler didn't recognise the JWT (misgated
// middleware) or panicked; we treat either as a hard failure.
let msg = tokio::time::timeout(std::time::Duration::from_secs(2), ws.next())
.await
.map_err(|_| "rt.ping response timed out".to_string())?
.ok_or_else(|| "socket closed before response".to_string())?
.map_err(|e| format!("recv: {e}"))?;
let Message::Text(text) = msg else {
return Err(format!("expected text frame, got {msg:?}"));
};
let v: serde_json::Value =
serde_json::from_str(&text).map_err(|e| format!("bad json: {e}: {text}"))?;
if v["result"]["pong"] != true {
return Err(format!("expected pong=true, got: {v}"));
}
Ok(())
}
+426
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@@ -0,0 +1,426 @@
//! WebSocket-side smoke-test helper for the realtime message bus.
//!
//! Hurl is HTTP-only — it can't do a WS upgrade, let alone read frames
//! for later assertion. This binary is the WS half of the smoke test:
//! opens `/api/rt/ws`, speaks JSON-RPC 2.0, and either collects events
//! into a JSON file for shell assertions (`subscribe-and-collect`) or
//! validates that an authz-denied subscribe returns the expected wire
//! error code (`expect-denied`).
//!
//! Invocation (from `tests/api/rt_bus_check.sh`):
//!
//! ```bash
//! rt-hurl-helper subscribe-and-collect \
//! --url ws://127.0.0.1:$PORT/api/rt/ws \
//! --token $USER_JWT \
//! --subscribe folder:$FOLDER_A \
//! --expect-events 1 \
//! --timeout 3s \
//! --output /tmp/rt_s1.json &
//!
//! rt-hurl-helper expect-denied \
//! --url ws://127.0.0.1:$PORT/api/rt/ws \
//! --token $USER2_JWT \
//! --subscribe folder:$FOLDER_A \
//! --reason no_read \
//! --timeout 2s
//! ```
//!
//! Exit codes:
//! * 0 — expectation met.
//! * 1 — expectation failed (wrong event, unexpected event, timeout
//! without hitting the target, denied when expecting event,
//! event when expecting denied).
//! * 2 — protocol / connect error the shell can distinguish from a
//! real assertion failure.
//!
//! JSON output shape for `subscribe-and-collect` (written to `--output`):
//!
//! ```jsonc
//! {
//! "subscribed": ["folder:..."],
//! "events": [ { "topic": "folder:...", "event": "file_created",
//! "data": { ... } } ],
//! "timed_out": false
//! }
//! ```
use std::process::ExitCode;
use std::time::Duration;
use futures::{SinkExt, StreamExt};
use serde_json::{Value, json};
use tokio::time::timeout;
use tokio_tungstenite::tungstenite::Message;
use tokio_tungstenite::tungstenite::client::IntoClientRequest;
use tokio_tungstenite::tungstenite::http::HeaderValue;
// ════════════════════════════════════════════════════════════════════════════
// CLI parsing (minimal, dependency-free)
// ════════════════════════════════════════════════════════════════════════════
struct Args {
mode: Mode,
url: String,
token: String,
subscribe: Vec<String>,
expect_events: Option<usize>,
reason: Option<String>,
timeout: Duration,
output: Option<String>,
}
enum Mode {
SubscribeAndCollect,
ExpectDenied,
}
fn parse_duration(s: &str) -> Result<Duration, String> {
// Accept `<n>s`, `<n>ms`, or a bare integer (interpreted as
// seconds). Kept small — hurl and shell are the only callers.
let s = s.trim();
if let Some(num) = s.strip_suffix("ms") {
num.parse::<u64>()
.map(Duration::from_millis)
.map_err(|_| format!("bad duration: {s}"))
} else if let Some(num) = s.strip_suffix('s') {
num.parse::<u64>()
.map(Duration::from_secs)
.map_err(|_| format!("bad duration: {s}"))
} else {
s.parse::<u64>()
.map(Duration::from_secs)
.map_err(|_| format!("bad duration: {s}"))
}
}
fn parse_args() -> Result<Args, String> {
let mut it = std::env::args().skip(1);
let mode = match it.next().as_deref() {
Some("subscribe-and-collect") => Mode::SubscribeAndCollect,
Some("expect-denied") => Mode::ExpectDenied,
Some(other) => return Err(format!("unknown mode: {other}")),
None => return Err("mode is required".into()),
};
let mut url = None;
let mut token = None;
let mut subscribe = Vec::new();
let mut expect_events = None;
let mut reason = None;
let mut timeout = Duration::from_secs(3);
let mut output = None;
while let Some(flag) = it.next() {
let value = it
.next()
.ok_or_else(|| format!("flag {flag} requires a value"))?;
match flag.as_str() {
"--url" => url = Some(value),
"--token" => token = Some(value),
"--subscribe" => subscribe.push(value),
"--expect-events" => {
expect_events = Some(
value
.parse::<usize>()
.map_err(|_| format!("--expect-events not a number: {value}"))?,
);
}
"--reason" => reason = Some(value),
"--timeout" => timeout = parse_duration(&value)?,
"--output" => output = Some(value),
other => return Err(format!("unknown flag: {other}")),
}
}
Ok(Args {
mode,
url: url.ok_or("--url required")?,
token: token.ok_or("--token required")?,
subscribe,
expect_events,
reason,
timeout,
output,
})
}
// ════════════════════════════════════════════════════════════════════════════
// Main
// ════════════════════════════════════════════════════════════════════════════
#[tokio::main(flavor = "current_thread")]
async fn main() -> ExitCode {
let args = match parse_args() {
Ok(a) => a,
Err(e) => {
eprintln!("rt-hurl-helper: {e}");
return ExitCode::from(2);
}
};
let result = match args.mode {
Mode::SubscribeAndCollect => subscribe_and_collect(args).await,
Mode::ExpectDenied => expect_denied(args).await,
};
match result {
Ok(()) => ExitCode::SUCCESS,
Err(HelperError::Expectation(msg)) => {
eprintln!("rt-hurl-helper: expectation failed: {msg}");
ExitCode::from(1)
}
Err(HelperError::Protocol(msg)) => {
eprintln!("rt-hurl-helper: protocol error: {msg}");
ExitCode::from(2)
}
}
}
// ════════════════════════════════════════════════════════════════════════════
// Errors
// ════════════════════════════════════════════════════════════════════════════
enum HelperError {
/// The wire behaved OK but didn't match what the test expected —
/// e.g. a `subscribed` ack when we expected `denied`, or fewer
/// events than requested before timeout. Exit 1: test failure.
Expectation(String),
/// Something is broken at the transport/JSON layer — connect
/// refused, malformed frame, TLS handshake failed. Exit 2:
/// infrastructure problem, not a test result.
Protocol(String),
}
impl<E: std::fmt::Display> From<E> for HelperError {
fn from(e: E) -> Self {
HelperError::Protocol(e.to_string())
}
}
// ════════════════════════════════════════════════════════════════════════════
// WS connection
// ════════════════════════════════════════════════════════════════════════════
/// Open a WS connection to `url` with the given bearer token attached
/// via `Authorization: Bearer <jwt>`. Programmatic client — this is the
/// path native clients (this helper, future sync-client integrations)
/// take. Browser clients that can't set the header will use the
/// `Sec-WebSocket-Protocol` subprotocol fallback (Phase A follow-up).
async fn connect_ws(
url: &str,
token: &str,
) -> Result<
tokio_tungstenite::WebSocketStream<tokio_tungstenite::MaybeTlsStream<tokio::net::TcpStream>>,
HelperError,
> {
let mut req = url
.into_client_request()
.map_err(|e| HelperError::Protocol(format!("bad url: {e}")))?;
let bearer = format!("Bearer {token}");
req.headers_mut().insert(
"Authorization",
HeaderValue::from_str(&bearer)
.map_err(|e| HelperError::Protocol(format!("bad token: {e}")))?,
);
let (ws, _resp) = tokio_tungstenite::connect_async(req)
.await
.map_err(|e| HelperError::Protocol(format!("connect failed: {e}")))?;
Ok(ws)
}
// ════════════════════════════════════════════════════════════════════════════
// Mode: subscribe-and-collect
// ════════════════════════════════════════════════════════════════════════════
async fn subscribe_and_collect(args: Args) -> Result<(), HelperError> {
if args.subscribe.is_empty() {
return Err(HelperError::Protocol(
"--subscribe required for subscribe-and-collect".into(),
));
}
let expect_events = args.expect_events.unwrap_or(0);
let mut ws = connect_ws(&args.url, &args.token).await?;
// Subscribe to every requested topic; track pending request ids so
// we know when all acks have arrived before we start counting
// events.
let mut subscribed: Vec<String> = Vec::new();
let mut pending_subs: std::collections::HashMap<u64, String> = std::collections::HashMap::new();
for (i, topic) in args.subscribe.iter().enumerate() {
let req_id = (i as u64) + 1;
let frame = json!({
"jsonrpc": "2.0",
"id": req_id,
"method": "rt.subscribe",
"params": { "topic": topic },
});
ws.send(Message::Text(frame.to_string().into())).await?;
pending_subs.insert(req_id, topic.clone());
}
let mut events: Vec<Value> = Vec::new();
let mut timed_out = false;
let deadline = tokio::time::Instant::now() + args.timeout;
loop {
let remaining = deadline.saturating_duration_since(tokio::time::Instant::now());
if remaining.is_zero() {
timed_out = true;
break;
}
// Exit early: all acks received AND enough events collected.
if pending_subs.is_empty() && events.len() >= expect_events {
break;
}
let msg = match timeout(remaining, ws.next()).await {
Ok(Some(Ok(m))) => m,
Ok(Some(Err(e))) => {
return Err(HelperError::Protocol(format!("ws error: {e}")));
}
Ok(None) => {
return Err(HelperError::Protocol("connection closed by peer".into()));
}
Err(_) => {
timed_out = true;
break;
}
};
let Message::Text(text) = msg else {
// Ignore ping/pong/binary; server may send close later.
continue;
};
let value: Value = serde_json::from_str(&text)
.map_err(|e| HelperError::Protocol(format!("bad frame: {e}: {text}")))?;
// Response to a subscribe request?
if let Some(id_num) = value.get("id").and_then(|v| v.as_u64()) {
let topic = pending_subs.remove(&id_num);
if let Some(err) = value.get("error") {
return Err(HelperError::Expectation(format!(
"subscribe to {} denied: {}",
topic.as_deref().unwrap_or("<unknown>"),
err,
)));
}
if let Some(topic) = topic {
subscribed.push(topic);
}
continue;
}
// Notification (id-less)?
let method = value.get("method").and_then(|v| v.as_str()).unwrap_or("");
if method == "rt.event"
&& let Some(params) = value.get("params")
{
events.push(params.clone());
}
// Other notifications (`rt.revoked`, `rt.pong`) — ignored for
// subscribe-and-collect. They can be added to the output
// schema when scenarios need them.
}
// Assertion: at least `expect_events` collected before timeout.
let met = events.len() >= expect_events;
// Always write output (even on failure) so the shell can diff.
if let Some(path) = args.output.as_ref() {
let summary = json!({
"subscribed": subscribed,
"events": events,
"timed_out": timed_out,
});
std::fs::write(path, serde_json::to_vec_pretty(&summary).unwrap())
.map_err(|e| HelperError::Protocol(format!("write output: {e}")))?;
}
if !met {
return Err(HelperError::Expectation(format!(
"expected {} events, got {} ({}timeout)",
expect_events,
events.len(),
if timed_out { "with " } else { "no " }
)));
}
Ok(())
}
// ════════════════════════════════════════════════════════════════════════════
// Mode: expect-denied
// ════════════════════════════════════════════════════════════════════════════
async fn expect_denied(args: Args) -> Result<(), HelperError> {
let topic = args
.subscribe
.first()
.ok_or_else(|| HelperError::Protocol("--subscribe required for expect-denied".into()))?
.clone();
let mut ws = connect_ws(&args.url, &args.token).await?;
let req_id: u64 = 1;
let frame = json!({
"jsonrpc": "2.0",
"id": req_id,
"method": "rt.subscribe",
"params": { "topic": topic },
});
ws.send(Message::Text(frame.to_string().into())).await?;
// Wait for the id-matched response with an `error` object. Any
// notification arriving before the response is skipped — the
// server should not fan out to a subscription that hasn't been
// acked yet, but the check is robust to that ordering anyway.
let deadline = tokio::time::Instant::now() + args.timeout;
loop {
let remaining = deadline.saturating_duration_since(tokio::time::Instant::now());
if remaining.is_zero() {
return Err(HelperError::Expectation(
"timeout without a subscribe response".into(),
));
}
let msg = match timeout(remaining, ws.next()).await {
Ok(Some(Ok(m))) => m,
Ok(Some(Err(e))) => return Err(HelperError::Protocol(format!("ws error: {e}"))),
Ok(None) => return Err(HelperError::Protocol("connection closed by peer".into())),
Err(_) => {
return Err(HelperError::Expectation(
"timeout without a subscribe response".into(),
));
}
};
let Message::Text(text) = msg else { continue };
let value: Value = serde_json::from_str(&text)
.map_err(|e| HelperError::Protocol(format!("bad frame: {e}: {text}")))?;
// Match by id.
let Some(id_num) = value.get("id").and_then(|v| v.as_u64()) else {
continue;
};
if id_num != req_id {
continue;
}
// Expect: error object present.
let Some(err) = value.get("error") else {
return Err(HelperError::Expectation(format!(
"expected `error` object, got: {value}"
)));
};
let message = err.get("message").and_then(|v| v.as_str()).unwrap_or("");
if let Some(want) = args.reason.as_ref()
&& message != want
{
return Err(HelperError::Expectation(format!(
"expected reason `{want}`, got `{message}` (full error: {err})"
)));
}
return Ok(());
}
}
+219
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@@ -0,0 +1,219 @@
#!/usr/bin/env bash
# ─────────────────────────────────────────────────────────────────────────────
# Realtime bus smoke test — the parts Hurl can't drive.
#
# Hurl is HTTP-only and cannot open a WebSocket, so the WS half of the test
# runs through `rt-hurl-helper` (a small Rust bin gated on `test_utils`).
# This script orchestrates it against a live oxicloud server: bootstraps
# state with curl, exercises the bus, asserts on the helper's JSON output.
#
# Four scenarios:
# S1 Positive delivery — subscribe to folder A, upload into A, see event.
# S2 Topic isolation — subscribe to folder A only, upload into B and
# then A; must see A's event only.
# S3 AuthZ denial — user2 subscribes to folder A owned by user1
# without a grant; expect wire reason `no_read`.
# S4 Anti-enumeration — subscribe to a folder that does not exist;
# must return the SAME wire reason (`no_read`)
# as S3, per the plan's anti-enum invariant.
#
# Exit non-zero on any failure — run.sh treats that as a suite failure.
# ─────────────────────────────────────────────────────────────────────────────
set -euo pipefail
SCRIPT_DIR="$(cd "$(dirname "$0")" && pwd)"
REPO_ROOT="$(cd "$SCRIPT_DIR/../.." && pwd)"
BUILD_TARGET="${BUILD_TARGET:-debug}"
HELPER_BIN="$REPO_ROOT/target/$BUILD_TARGET/rt-hurl-helper"
# ── Env from test.env (base_url, admin username/password) ────────────────────
# shellcheck disable=SC1091
source "$SCRIPT_DIR/test.env"
: "${base_url:?}" "${username:?}" "${password:?}"
# WS URL derived from base_url (test.env uses http://); tolerate https for
# future deployments even though the test suite runs plain HTTP.
case "$base_url" in
http://*) ws_url="ws://${base_url#http://}/api/rt/ws" ;;
https://*) ws_url="wss://${base_url#https://}/api/rt/ws" ;;
*) echo "rt_bus_check: unexpected base_url scheme: $base_url" >&2; exit 2 ;;
esac
log() { printf '\033[1;36m[rt_bus_check]\033[0m %s\n' "$*"; }
die() { printf '\033[1;31m[rt_bus_check FAIL]\033[0m %s\n' "$*" >&2; exit 1; }
# ── Build the helper on demand (matches opaque/dpop helper convention) ──────
if [[ ! -x "$HELPER_BIN" ]]; then
log "Building rt-hurl-helper ($BUILD_TARGET)..."
case "$BUILD_TARGET" in
debug) (cd "$REPO_ROOT" && cargo build --features test_utils --bin rt-hurl-helper 2>&1 | tail -n 20) || die "rt-hurl-helper build failed" ;;
release) (cd "$REPO_ROOT" && cargo build --release --features test_utils --bin rt-hurl-helper 2>&1 | tail -n 20) || die "rt-hurl-helper build failed" ;;
esac
fi
# ── curl wrappers ───────────────────────────────────────────────────────────
c_post() {
local url="$1" auth="$2" body="$3"
curl -sS -X POST -H "Content-Type: application/json" \
${auth:+-H "Authorization: Bearer $auth"} \
-d "$body" "$url"
}
c_get() {
local url="$1" auth="$2"
curl -sS -H "Accept: application/json" \
${auth:+-H "Authorization: Bearer $auth"} \
"$url"
}
# ── Setup: register fresh users; the test.env admin may be OPAQUE-
# migrated and the legacy password-login path refuses those accounts,
# so we don't use it at all — same pattern as `dedup_admin_gate.hurl`
# and the other hurl scenarios that need a self-contained principal.
# The scenarios only need "a user with their own folders", not admin
# rights.
suffix="$(date +%s)_$$"
user1_name="rtbus_u1_$suffix"
user1_pass="RtBusU1Pass1!"
user2_name="rtbus_u2_$suffix"
user2_pass="RtBusU2Pass1!"
log "Register user1 ($user1_name) and log in..."
c_post "$base_url/api/auth/register" "" \
"$(printf '{"username":"%s","email":"%s@example.com","password":"%s"}' \
"$user1_name" "$user1_name" "$user1_pass")" > /dev/null
u1_login=$(c_post "$base_url/api/auth/login" "" \
"$(printf '{"username":"%s","password":"%s"}' "$user1_name" "$user1_pass")")
user1_token=$(printf '%s' "$u1_login" | jq -r '.access_token')
[[ -n "$user1_token" && "$user1_token" != "null" ]] || die "no user1 token: $u1_login"
log "Discover user1 root folder..."
folders=$(c_get "$base_url/api/folders" "$user1_token")
root_id=$(printf '%s' "$folders" | jq -r '.[0].id')
[[ -n "$root_id" && "$root_id" != "null" ]] || die "no root folder for user1: $folders"
log "Create folder A (rt_bus_A_$suffix) and folder B (rt_bus_B_$suffix)..."
folder_a=$(c_post "$base_url/api/folders" "$user1_token" \
"$(printf '{"name":"rt_bus_A_%s","parent_id":"%s"}' "$suffix" "$root_id")" | jq -r '.id')
folder_b=$(c_post "$base_url/api/folders" "$user1_token" \
"$(printf '{"name":"rt_bus_B_%s","parent_id":"%s"}' "$suffix" "$root_id")" | jq -r '.id')
[[ -n "$folder_a" && "$folder_a" != "null" ]] || die "folder A creation failed"
[[ -n "$folder_b" && "$folder_b" != "null" ]] || die "folder B creation failed"
# Register a second user for the AuthZ-denial scenario (S3). No grant on
# folder A → subscribe attempt must be denied.
log "Register user2 ($user2_name) and log in..."
c_post "$base_url/api/auth/register" "" \
"$(printf '{"username":"%s","email":"%s@example.com","password":"%s"}' \
"$user2_name" "$user2_name" "$user2_pass")" > /dev/null
user2_login=$(c_post "$base_url/api/auth/login" "" \
"$(printf '{"username":"%s","password":"%s"}' "$user2_name" "$user2_pass")")
user2_token=$(printf '%s' "$user2_login" | jq -r '.access_token')
[[ -n "$user2_token" && "$user2_token" != "null" ]] || die "no user2 token: $user2_login"
# ── Helper: create a small file inside a folder via the byte-upload path.
# Not delta / instant-upload; keeps the wire simple and hits the same
# `upload_file_streaming` publish hook.
mkfile_in() {
local folder_id="$1" name="$2" token="$3"
local tmpfile
tmpfile="$(mktemp -t rtbus_body.XXXXXX)"
printf 'rt-bus-test-payload' > "$tmpfile"
# Multipart-upload path used by the frontend for byte uploads.
# NOTE: `folder_id` MUST come BEFORE the `file` part — file_handler.rs
# streams the parts in order and the fail-fast folder-required check
# fires the moment it sees the file bytes; a folder_id sent after the
# file arrives too late (returns 400 "folder_id is required").
curl -sS -X POST \
-H "Authorization: Bearer $token" \
-F "folder_id=$folder_id" \
-F "file=@$tmpfile;filename=$name" \
"$base_url/api/files/upload" > /dev/null
rm -f "$tmpfile"
}
# ── Scenario 1 — Positive delivery ──────────────────────────────────────────
log "S1: subscribe to folder A, upload into A, expect one file_created event."
out_s1="$(mktemp -t rtbus_s1.XXXXXX)"
"$HELPER_BIN" subscribe-and-collect \
--url "$ws_url" \
--token "$user1_token" \
--subscribe "folder:$folder_a" \
--expect-events 1 \
--timeout 5s \
--output "$out_s1" &
helper_pid=$!
# Give the ack a moment to install so the upload's post-commit publish
# lands on a live receiver, not an orphaned map entry.
sleep 0.4
mkfile_in "$folder_a" "s1.txt" "$user1_token"
if ! wait "$helper_pid"; then
cat "$out_s1" >&2 || true
die "S1: helper did not observe the expected event"
fi
# jq assertions — one event, correct parent_id, correct discriminator.
[[ "$(jq -r '.events | length' "$out_s1")" == "1" ]] \
|| { cat "$out_s1"; die "S1: expected 1 event, got $(jq -r '.events | length' "$out_s1")"; }
[[ "$(jq -r '.events[0].event' "$out_s1")" == "file_created" ]] \
|| die "S1: wrong event discriminator: $(jq -r '.events[0].event' "$out_s1")"
[[ "$(jq -r '.events[0].data.parent_id' "$out_s1")" == "$folder_a" ]] \
|| die "S1: parent_id mismatch"
log "S1 OK"
# ── Scenario 2 — Topic isolation ────────────────────────────────────────────
log "S2: subscribe to folder A, upload into B (must be silent) and A (triggers exit)."
out_s2="$(mktemp -t rtbus_s2.XXXXXX)"
"$HELPER_BIN" subscribe-and-collect \
--url "$ws_url" \
--token "$user1_token" \
--subscribe "folder:$folder_a" \
--expect-events 1 \
--timeout 5s \
--output "$out_s2" &
helper_pid=$!
sleep 0.4
# B first — should be dropped for the A subscriber.
mkfile_in "$folder_b" "s2_in_B.txt" "$user1_token"
# Small settle so if isolation is BROKEN, the B event has time to arrive
# before A's; the assertion below then catches it as a wrong parent_id.
sleep 0.2
mkfile_in "$folder_a" "s2_in_A.txt" "$user1_token"
if ! wait "$helper_pid"; then
cat "$out_s2" >&2 || true
die "S2: helper did not observe the expected A event"
fi
# Exactly one event, and it MUST be from folder A. If isolation were
# broken, we'd either see 2 events or a B-parented event first.
[[ "$(jq -r '.events | length' "$out_s2")" == "1" ]] \
|| { cat "$out_s2"; die "S2: expected 1 event, got $(jq -r '.events | length' "$out_s2") (isolation broken?)"; }
[[ "$(jq -r '.events[0].data.parent_id' "$out_s2")" == "$folder_a" ]] \
|| die "S2: parent_id was $(jq -r '.events[0].data.parent_id' "$out_s2"), expected $folder_a"
log "S2 OK"
# ── Scenario 3 — AuthZ denial ───────────────────────────────────────────────
log "S3: user2 subscribes to folder A (no grant); expect no_read denial."
if ! "$HELPER_BIN" expect-denied \
--url "$ws_url" \
--token "$user2_token" \
--subscribe "folder:$folder_a" \
--reason no_read \
--timeout 3s; then
die "S3: user2 was NOT denied on folder A (AuthZ gate broken?)"
fi
log "S3 OK"
# ── Scenario 4 — Anti-enumeration parity ────────────────────────────────────
log "S4: subscribe to a nonexistent folder; wire reason must equal S3."
fake_folder="00000000-0000-0000-0000-000000000000"
if ! "$HELPER_BIN" expect-denied \
--url "$ws_url" \
--token "$user1_token" \
--subscribe "folder:$fake_folder" \
--reason no_read \
--timeout 3s; then
die "S4: nonexistent folder did not collapse to no_read (anti-enum invariant broken)"
fi
log "S4 OK"
log "All four realtime-bus scenarios passed."
+14 -2
View File
@@ -267,7 +267,19 @@ bash "$API_DIR/thumb_import_check.sh"
bash "$API_DIR/storage_cleanup_check.sh"
# ── 5. OPAQUE crypto handshake — the parts Hurl can't drive ─────────────
# ── 5. Realtime message bus — WebSocket smoke test ──────────────────────
# Runs BEFORE the OPAQUE helper so its user registration + login uses
# the legacy password path (opaque_substrate.hurl migrates the admin
# account, but by running first this check is unaffected by whatever
# order later scenarios touch the auth substrate). Four scenarios:
# positive delivery, topic isolation, AuthZ denial on subscribe,
# anti-enumeration parity. See `tests/api/rt_bus_check.sh` and
# `docs/plan/message-bus.md`.
log "Running realtime-bus smoke test..."
BUILD_TARGET="$BUILD_TARGET" bash "$REPO_ROOT/tests/api/rt_bus_check.sh" \
|| die "realtime-bus smoke test failed"
# ── 6. OPAQUE crypto handshake — the parts Hurl can't drive ─────────────
# Full OPAQUE register + login handshake against the running server,
# using the real ciphersuite client-side. Closes the gap left by
# `opaque_substrate.hurl` (which covers only wire shape, not OPRF-
@@ -289,7 +301,7 @@ OPAQUE_HELPER_USERNAME="$username" \
OPAQUE_HELPER_PASSWORD="$password" \
"$OPAQUE_HELPER_BIN" || die "OPAQUE crypto handshake failed"
# ── 6. DPoP wire protocol — the parts Hurl can't drive ──────────────────
# ── 7. DPoP wire protocol — the parts Hurl can't drive ──────────────────
# Each proof carries a fresh jti, current iat, htm/htu matching the
# exact request, an ES256 signature, and a threaded nonce — none of
# which a declarative .hurl template can compute. See