Files
alkhttp/tests/ws_upgrade_session.rs
T
glm-5.3-flash 24c2e9a224 feat(websocket): WS-29/30/32 — op/register ACL surface, SessionSlots, builder-path gate
Review 007 Unit 2 (the two "implement" decisions taken during
remediation, plus the coverage gap):

- WS-29: the `op/register` override surface review-006 UP-02 and
  ADR-048 recorded as landed is now implemented. The hook threads an
  `op_register_acl` `AccessControl` into `op_register_spec` (the
  permissive `AccessControl::default()` remains the default
  everywhere); the built-in surface sets it via
  `HttpAdapter::with_ws_op_register_acl`, bare-registry/custom routes
  via the `OpRegisterAcl` request extension (mirroring
  `ChannelsPolicy`/`WsTimeouts`/`OpenableAlpns`). A peer whose
  identity does not satisfy the ACL gets `FORBIDDEN` on the announce.
  Gates: builder path (`FORBIDDEN` scope-less / announce-ok scoped)
  + extension path.

- WS-30: the bare-registry `SessionState` is built by `FromRef` per
  request, so its default-cap semaphore bounds nothing across
  requests (corrects review-002 WS-17's "bounded at 64 sessions"
  claim). New `SessionSlots` request extension carries the shared
  semaphore for routes that need an effective cap; the upgrade
  handler prefers it over the state value. Doc comments corrected
  (`SessionState`, `WsTimeouts`, `ws_upgrade_handler`). Gate:
  cap-1 route → 503 over cap → slot freed on session end.

- WS-32: the built-in openables threading
  (`with_ws_openable_alpns` → `RouterState` → `SessionState` → hook)
  gets its first gate — every Unit-3 gate rode the `OpenableAlpns`
  extension fallback. `builder_path_openables_serve_the_data_channel_
  surface` discovers the openable via `services/list`, opens the
  channel, and round-trips bytes through the builder-built router.

Verification: cargo test 454 passed / 0 failed; cargo test
--all-features 587 passed / 0 failed (+5 gates); clippy (both
configs) clean; fmt clean.

Review: docs/reviews/007-ws-data-channel-surface-review.md
2026-09-05 05:44:28 +00:00

1865 lines
66 KiB
Rust

//! WS upgrade + channels session integration tests (the ws-upgrade-session
//! acceptance gates): tokio-tungstenite client ↔ axum WS server
//! (upgrade → byte-adapter → ChannelsAdapter + channel-0 Dispatcher).
//! Grows from the ws-byte-adapter POC's validated suite.
use alkcall::core::auth::{Identity, IdentityProvider};
use alkcall::protocol::wire::{EventEnvelope, ResponseEnvelope, EVENT_ERROR, EVENT_RESPONDED};
use alkcall::registry::discovery::{services_list_handler, services_list_spec};
use alkcall::registry::registration::{
make_handler, Handler, HandlerKind, HandlerRegistration, OperationProvenance, OperationRegistry,
};
use alkcall::registry::spec::{AccessControl, OperationSpec, OperationType, Visibility};
use alkhttp::websocket::{
frame_channel0_chunk, ChunkAssembler, FrameAssembler, WsClient, INBOUND_WS_MESSAGE_CAP,
WS_MESSAGE_CAP,
};
use std::collections::HashMap;
use std::sync::Arc;
fn identity(id: &str, scopes: &[&str]) -> Identity {
Identity {
id: id.to_string(),
scopes: scopes.iter().map(|s| s.to_string()).collect(),
resources: HashMap::new(),
}
}
fn echo_handler() -> Handler {
make_handler(|input, ctx| async move { ResponseEnvelope::ok(ctx.request_id, input) })
}
fn echo_registry() -> Arc<OperationRegistry> {
let registry = OperationRegistry::new();
registry
.register(HandlerRegistration::new(
OperationSpec::new(
"echo/run",
OperationType::Query,
Visibility::External,
serde_json::json!({}),
serde_json::json!({}),
vec![],
AccessControl::default(),
None,
),
HandlerKind::Once(echo_handler()),
OperationProvenance::Local,
None,
None,
alkcall::core::types::Capabilities::new(),
))
.unwrap();
Arc::new(registry)
}
fn slow_and_echo_registry() -> Arc<OperationRegistry> {
let registry = OperationRegistry::new();
registry
.register(HandlerRegistration::new(
OperationSpec::new(
"slow/op",
OperationType::Query,
Visibility::External,
serde_json::json!({}),
serde_json::json!({}),
vec![],
AccessControl::default(),
None,
),
HandlerKind::Once(make_handler(|_input, _ctx| async move {
tokio::time::sleep(std::time::Duration::from_secs(30)).await;
ResponseEnvelope::ok("never", serde_json::json!({}))
})),
OperationProvenance::Local,
None,
None,
alkcall::core::types::Capabilities::new(),
))
.unwrap();
registry
.register(HandlerRegistration::new(
OperationSpec::new(
"echo/run",
OperationType::Query,
Visibility::External,
serde_json::json!({}),
serde_json::json!({}),
vec![],
AccessControl::default(),
None,
),
HandlerKind::Once(echo_handler()),
OperationProvenance::Local,
None,
None,
alkcall::core::types::Capabilities::new(),
))
.unwrap();
Arc::new(registry)
}
fn internal_registry() -> Arc<OperationRegistry> {
let registry = OperationRegistry::new();
registry
.register(HandlerRegistration::new(
OperationSpec::new(
"secret/op",
OperationType::Query,
Visibility::Internal,
serde_json::json!({}),
serde_json::json!({}),
vec![],
AccessControl::default(),
None,
),
HandlerKind::Once(echo_handler()),
OperationProvenance::Local,
None,
None,
alkcall::core::types::Capabilities::new(),
))
.unwrap();
Arc::new(registry)
}
fn restricted_registry() -> Arc<OperationRegistry> {
let registry = OperationRegistry::new();
registry
.register(HandlerRegistration::new(
OperationSpec::new(
"admin/run",
OperationType::Query,
Visibility::External,
serde_json::json!({}),
serde_json::json!({}),
vec![],
AccessControl {
required_scopes: vec!["admin".to_string()],
..Default::default()
},
None,
),
HandlerKind::Once(echo_handler()),
OperationProvenance::Local,
None,
None,
alkcall::core::types::Capabilities::new(),
))
.unwrap();
Arc::new(registry)
}
fn registry_with_services_list(inner_ops: Vec<HandlerRegistration>) -> Arc<OperationRegistry> {
let inner = OperationRegistry::new();
for op in inner_ops {
inner.register(op).unwrap();
}
let inner = Arc::new(inner);
let registry = OperationRegistry::new();
registry
.register(HandlerRegistration::new(
services_list_spec(),
HandlerKind::Once(services_list_handler(Arc::clone(&inner))),
OperationProvenance::Local,
None,
None,
alkcall::core::types::Capabilities::new(),
))
.unwrap();
for spec in inner.list_operations() {
let name = spec.name.clone();
let reg = inner.registration(&name).unwrap();
registry
.register(HandlerRegistration::new(
reg.spec.clone(),
reg.handler.clone(),
reg.provenance,
reg.composition_authority.clone(),
reg.scoped_env.clone(),
reg.capabilities.clone(),
))
.unwrap();
}
Arc::new(registry)
}
struct StaticTokens {
tokens: std::sync::Mutex<HashMap<String, Identity>>,
}
impl IdentityProvider for StaticTokens {
fn resolve_from_fingerprint(&self, _: &str) -> Option<Identity> {
None
}
fn resolve_from_token(&self, token: &alkcall::core::auth::AuthToken) -> Option<Identity> {
let s = String::from_utf8_lossy(&token.raw).to_string();
self.tokens.lock().unwrap().get(&s).cloned()
}
}
fn provider_with(tokens: Vec<(&str, Identity)>) -> Arc<dyn IdentityProvider> {
let map: HashMap<String, Identity> = tokens
.into_iter()
.map(|(t, i)| (t.to_string(), i))
.collect();
Arc::new(StaticTokens {
tokens: std::sync::Mutex::new(map),
})
}
async fn spawn_ws_server(
registry: Arc<OperationRegistry>,
provider: Arc<dyn IdentityProvider>,
) -> String {
let app = axum::Router::new()
.route(
"/alk/channels",
axum::routing::get(alkhttp::websocket::ws_upgrade_handler),
)
.layer(axum::middleware::from_fn_with_state(
provider,
alkhttp::websocket::ws_bearer_auth,
))
.with_state(registry);
let listener = tokio::net::TcpListener::bind("127.0.0.1:0").await.unwrap();
let addr = format!("ws://{}", listener.local_addr().unwrap());
tokio::spawn(async move {
axum::serve(listener, app).await.unwrap();
});
addr
}
async fn call_and_await(
ws: &mut WsClient,
request_id: &str,
operation: &str,
input: serde_json::Value,
) -> EventEnvelope {
let frame = EventEnvelope::requested(
request_id,
serde_json::json!({ "operationId": operation, "input": input }),
);
ws.send_binary(frame_channel0_chunk(&frame)).await;
let mut chunks = ChunkAssembler::new();
let mut frames = FrameAssembler::new();
let deadline = tokio::time::Instant::now() + std::time::Duration::from_secs(5);
loop {
assert!(
tokio::time::Instant::now() < deadline,
"timed out waiting for response to {request_id}"
);
// A prior request's trailing `call.completed` (a Sub pump's
// natural end) may still be in flight — skip frames for other
// request ids. Data-channel chunks (id != 0) are skipped too:
// this helper asserts only channel-0 responses.
if let Some(env) = frames.next_frame() {
if env.id == request_id {
return env;
}
}
let bin = ws.next_binary(std::time::Duration::from_millis(500)).await;
match bin {
Some(bytes) => {
chunks.push(&bytes);
while let Some((channel_id, payload)) = chunks.next_chunk() {
if channel_id == 0 {
frames.push(&payload);
}
}
}
None => panic!("ws closed unexpectedly while awaiting {request_id}"),
}
}
}
#[tokio::test]
async fn end_to_end_call_round_trip_over_ws() {
let addr = spawn_ws_server(
echo_registry(),
provider_with(vec![("tok-1", identity("alice", &[]))]),
)
.await;
let mut ws = WsClient::connect_authorized(&format!("{addr}/alk/channels"), "tok-1")
.await
.unwrap();
let env = call_and_await(
&mut ws,
"req-1",
"echo/run",
serde_json::json!({ "hello": "world" }),
)
.await;
assert_eq!(env.r#type, EVENT_RESPONDED, "got {}", env.r#type);
assert_eq!(env.id, "req-1");
assert_eq!(env.payload["output"]["hello"], "world");
ws.close().await;
}
#[tokio::test]
async fn upgrade_without_token_rejected_401() {
let addr = spawn_ws_server(
echo_registry(),
provider_with(vec![("tok-1", identity("alice", &[]))]),
)
.await;
let status = WsClient::connect_status(&format!("{addr}/alk/channels"), None).await;
assert_eq!(status, Some(401));
}
#[tokio::test]
async fn upgrade_with_unresolvable_token_rejected_401() {
let addr = spawn_ws_server(
echo_registry(),
provider_with(vec![("tok-1", identity("alice", &[]))]),
)
.await;
let status =
WsClient::connect_status(&format!("{addr}/alk/channels"), Some("wrong-token")).await;
assert_eq!(status, Some(401));
}
#[tokio::test]
async fn oversized_payload_splits_across_ws_messages_and_round_trips() {
let addr = spawn_ws_server(
echo_registry(),
provider_with(vec![("tok-1", identity("alice", &[]))]),
)
.await;
let mut ws = WsClient::connect_authorized(&format!("{addr}/alk/channels"), "tok-1")
.await
.unwrap();
let payload_len = 3 * 1024 * 1024;
let blob = "x".repeat(payload_len);
let frame = EventEnvelope::requested(
"req-big",
serde_json::json!({ "operationId": "echo/run", "input": { "blob": blob } }),
);
let chunk = frame_channel0_chunk(&frame);
assert!(
chunk.len() > WS_MESSAGE_CAP,
"test precondition: request exceeds message cap"
);
for piece in chunk.chunks(WS_MESSAGE_CAP) {
ws.send_binary_piece(piece).await;
}
let mut chunks = ChunkAssembler::new();
let mut frames = FrameAssembler::new();
let deadline = tokio::time::Instant::now() + std::time::Duration::from_secs(30);
loop {
assert!(
tokio::time::Instant::now() < deadline,
"timed out on big payload"
);
if let Some(env) = frames.next_frame() {
assert_eq!(env.r#type, EVENT_RESPONDED, "got {}", env.r#type);
assert_eq!(env.id, "req-big");
let out = env.payload["output"]["blob"].as_str().unwrap();
assert_eq!(out.len(), payload_len, "blob round-tripped intact");
assert!(out.bytes().all(|b| b == b'x'), "byte integrity");
ws.close().await;
return;
}
let bytes = ws
.next_binary(std::time::Duration::from_secs(2))
.await
.expect("ws closed unexpectedly on big payload");
chunks.push(&bytes);
while let Some((channel_id, payload)) = chunks.next_chunk() {
assert_eq!(channel_id, 0);
frames.push(&payload);
}
}
}
#[tokio::test]
async fn interleaved_calls_reassemble_without_corruption() {
let addr = spawn_ws_server(
echo_registry(),
provider_with(vec![("tok-1", identity("alice", &[]))]),
)
.await;
let mut ws = WsClient::connect_authorized(&format!("{addr}/alk/channels"), "tok-1")
.await
.unwrap();
const N: usize = 20;
for i in 0..N {
let frame = EventEnvelope::requested(
format!("req-{i}"),
serde_json::json!({ "operationId": "echo/run", "input": { "i": i } }),
);
ws.send_binary(frame_channel0_chunk(&frame)).await;
}
let mut chunks = ChunkAssembler::new();
let mut frames = FrameAssembler::new();
let mut seen: Vec<String> = Vec::new();
let deadline = tokio::time::Instant::now() + std::time::Duration::from_secs(10);
while seen.len() < N {
assert!(
tokio::time::Instant::now() < deadline,
"only got {} of {}",
seen.len(),
N
);
let bytes = ws
.next_binary(std::time::Duration::from_millis(500))
.await
.expect("ws closed unexpectedly");
chunks.push(&bytes);
while let Some((channel_id, payload)) = chunks.next_chunk() {
assert_eq!(channel_id, 0);
frames.push(&payload);
while let Some(env) = frames.next_frame() {
assert_eq!(env.r#type, EVENT_RESPONDED, "got {}", env.r#type);
let i: usize = env.payload["output"]["i"].as_u64().unwrap() as usize;
assert_eq!(env.id, format!("req-{i}"), "correlation intact");
seen.push(env.id);
}
}
}
seen.sort();
let mut expected: Vec<String> = (0..N).map(|i| format!("req-{i}")).collect();
expected.sort();
assert_eq!(seen, expected);
ws.close().await;
}
#[tokio::test]
async fn disconnect_mid_call_does_not_hang_the_server() {
let addr = spawn_ws_server(
slow_and_echo_registry(),
provider_with(vec![("tok-1", identity("alice", &[]))]),
)
.await;
let mut ws = WsClient::connect_authorized(&format!("{addr}/alk/channels"), "tok-1")
.await
.unwrap();
let frame = EventEnvelope::requested(
"req-abandon",
serde_json::json!({ "operationId": "slow/op", "input": {} }),
);
ws.send_binary(frame_channel0_chunk(&frame)).await;
// Abrupt client disconnect (drop, no close handshake) while the
// slow handler is still running.
drop(ws);
// The server must not hang: a fresh session completes an echo call
// promptly — the abandoned session's teardown (pending failure,
// overlay drop) did not wedge the runtime or the listener.
let mut ws2 = WsClient::connect_authorized(&format!("{addr}/alk/channels"), "tok-1")
.await
.unwrap();
let env = call_and_await(
&mut ws2,
"req-after",
"echo/run",
serde_json::json!({"ok": true}),
)
.await;
assert_eq!(env.r#type, EVENT_RESPONDED);
assert_eq!(env.payload["output"]["ok"], true);
ws2.close().await;
}
#[tokio::test]
async fn acl_filtered_call_forbidden_over_ws() {
let addr = spawn_ws_server(
restricted_registry(),
provider_with(vec![("tok-1", identity("alice", &["user"]))]),
)
.await;
let mut ws = WsClient::connect_authorized(&format!("{addr}/alk/channels"), "tok-1")
.await
.unwrap();
let env = call_and_await(&mut ws, "req-403", "admin/run", serde_json::json!({})).await;
assert_eq!(env.r#type, "call.error", "got {}", env.r#type);
assert_eq!(env.id, "req-403");
assert_eq!(env.payload["code"], "FORBIDDEN");
ws.close().await;
}
#[tokio::test]
async fn text_message_rejected_with_protocol_close() {
let addr = spawn_ws_server(
echo_registry(),
provider_with(vec![("tok-1", identity("alice", &[]))]),
)
.await;
let mut ws = WsClient::connect_authorized(&format!("{addr}/alk/channels"), "tok-1")
.await
.unwrap();
ws.send_text("hello as text").await;
let close = ws
.next_close(std::time::Duration::from_secs(5))
.await
.expect("expected a close frame");
assert_eq!(close, Some(1002));
}
#[tokio::test]
async fn internal_op_not_callable_from_wire() {
let addr = spawn_ws_server(
internal_registry(),
provider_with(vec![("tok-1", identity("alice", &[]))]),
)
.await;
let mut ws = WsClient::connect_authorized(&format!("{addr}/alk/channels"), "tok-1")
.await
.unwrap();
let env = call_and_await(&mut ws, "req-secret", "secret/op", serde_json::json!({})).await;
assert_eq!(env.r#type, "call.error", "got {}", env.r#type);
assert_eq!(env.id, "req-secret");
assert_eq!(env.payload["code"], "NOT_FOUND");
ws.close().await;
}
#[tokio::test]
async fn services_list_over_channel0_is_access_control_filtered() {
let registry = registry_with_services_list(vec![
HandlerRegistration::new(
OperationSpec::new(
"public/echo",
OperationType::Query,
Visibility::External,
serde_json::json!({}),
serde_json::json!({}),
vec![],
AccessControl::default(),
None,
),
HandlerKind::Once(echo_handler()),
OperationProvenance::Local,
None,
None,
alkcall::core::types::Capabilities::new(),
),
HandlerRegistration::new(
OperationSpec::new(
"admin/secret",
OperationType::Query,
Visibility::External,
serde_json::json!({}),
serde_json::json!({}),
vec![],
AccessControl {
required_scopes: vec!["admin".to_string()],
..Default::default()
},
None,
),
HandlerKind::Once(echo_handler()),
OperationProvenance::Local,
None,
None,
alkcall::core::types::Capabilities::new(),
),
]);
let addr = spawn_ws_server(
registry,
provider_with(vec![("tok-1", identity("regular", &["user"]))]),
)
.await;
let mut ws = WsClient::connect_authorized(&format!("{addr}/alk/channels"), "tok-1")
.await
.unwrap();
let env = call_and_await(&mut ws, "req-list", "services/list", serde_json::json!({})).await;
assert_eq!(env.r#type, EVENT_RESPONDED, "got {}", env.r#type);
assert_eq!(env.id, "req-list");
let ops = env.payload["output"]["operations"]
.as_array()
.expect("operations array");
let names: Vec<&str> = ops.iter().filter_map(|o| o["name"].as_str()).collect();
assert!(names.contains(&"public/echo"), "got: {names:?}");
assert!(!names.contains(&"admin/secret"), "got: {names:?}");
ws.close().await;
}
#[tokio::test]
async fn inbound_message_over_cap_fails_the_connection() {
let addr = spawn_ws_server(
echo_registry(),
provider_with(vec![("tok-1", identity("alice", &[]))]),
)
.await;
let mut ws = WsClient::connect_authorized(&format!("{addr}/alk/channels"), "tok-1")
.await
.unwrap();
// One WS binary message larger than INBOUND_WS_MESSAGE_CAP: the
// server's explicit max_message_size (WS-06) must fail the
// connection instead of accepting it (the byte-adapter boundary is
// the chunk header, so the adapter never dissects messages; the WS
// library cap is the enforcement point).
let oversized = vec![b'x'; INBOUND_WS_MESSAGE_CAP + 1];
ws.send_binary_piece(&oversized).await;
let close = ws
.next_close(std::time::Duration::from_secs(5))
.await
.expect("server must fail the oversized-inbound connection (WS-06)");
assert!(
close.is_some(),
"expected a close or stream end, got {close:?}"
);
}
/// WS-08 acceptance: the upgrade retains each session's pump handle in
/// the shared `WsSessions` registry; `abort()` evicts a stuck session
/// (the peer's socket closes) and the entry is removed when the
/// session task ends, so the registry only tracks live sessions.
#[tokio::test]
async fn ws_sessions_registry_tracks_and_aborts_live_sessions() {
use alkhttp::websocket::WsSessions;
let sessions = WsSessions::new();
let registry = echo_registry();
let provider = provider_with(vec![("tok-1", identity("alice", &[]))]);
let app = axum::Router::new()
.route(
"/alk/channels",
axum::routing::get(alkhttp::websocket::ws_upgrade_handler),
)
.layer(axum::middleware::from_fn_with_state(
Arc::clone(&provider),
alkhttp::websocket::ws_bearer_auth,
))
.with_state(registry)
.layer(axum::Extension(sessions.clone()));
let listener = tokio::net::TcpListener::bind("127.0.0.1:0").await.unwrap();
let addr = format!("ws://{}", listener.local_addr().unwrap());
tokio::spawn(async move {
axum::serve(listener, app).await.unwrap();
});
let mut ws = WsClient::connect_authorized(&format!("{addr}/alk/channels"), "tok-1")
.await
.unwrap();
let env = call_and_await(&mut ws, "req-1", "echo/run", serde_json::json!({})).await;
assert_eq!(env.r#type, EVENT_RESPONDED, "session established");
// The upgrade registered the session.
let saw_session = tokio::time::timeout(std::time::Duration::from_secs(5), async {
loop {
if !sessions.is_empty() {
return true;
}
tokio::time::sleep(std::time::Duration::from_millis(20)).await;
}
})
.await
.expect("session registered in the shared registry");
assert!(saw_session);
assert_eq!(sessions.len(), 1);
// Forced teardown: abort() closes the peer's socket.
sessions.abort();
let deadline = tokio::time::Instant::now() + std::time::Duration::from_secs(10);
let close = loop {
assert!(
tokio::time::Instant::now() < deadline,
"abort never reached the peer"
);
match ws.next_close(std::time::Duration::from_millis(250)).await {
Some(x) => break Some(x),
None => continue,
}
};
assert!(close.is_some(), "peer observes the teardown: {close:?}");
// The self-removing guard drops the entry once the session task ends.
let drained = tokio::time::timeout(std::time::Duration::from_secs(5), async {
loop {
if sessions.is_empty() {
return true;
}
tokio::time::sleep(std::time::Duration::from_millis(20)).await;
}
})
.await
.expect("session entry removed after the session task ends");
assert!(drained);
ws.close().await;
}
/// WS-26/WS-28 acceptance: the channel-0 `CallConnection` handle is
/// visible in the shared `WsSessions` registry while the session is
/// live (`live_connections()` non-empty mid-session, after a completed
/// call proves the dispatcher task is up) and drains when the session
/// ends — the guard lives for the channel-0 task, not the `if let`
/// block that inserts it. This is the only gate exercising the WS-26
/// surface; its absence is why `030c5ef` landed green (review 007
/// WS-28, reproduced empirically).
#[tokio::test]
async fn live_connections_visible_mid_session_and_drain_after_teardown() {
use alkhttp::websocket::WsSessions;
let sessions = WsSessions::new();
let registry = echo_registry();
let app = axum::Router::new()
.route(
"/alk/channels",
axum::routing::get(alkhttp::websocket::ws_upgrade_handler),
)
.layer(axum::middleware::from_fn_with_state(
provider_with(vec![("tok-1", identity("alice", &[]))]),
alkhttp::websocket::ws_bearer_auth,
))
.with_state(registry)
.layer(axum::Extension(sessions.clone()));
let listener = tokio::net::TcpListener::bind("127.0.0.1:0").await.unwrap();
let addr = format!("ws://{}", listener.local_addr().unwrap());
tokio::spawn(async move {
axum::serve(listener, app).await.unwrap();
});
let mut ws = WsClient::connect_authorized(&format!("{addr}/alk/channels"), "tok-1")
.await
.unwrap();
let env = call_and_await(&mut ws, "req-1", "echo/run", serde_json::json!({})).await;
assert_eq!(env.r#type, EVENT_RESPONDED, "session established");
// The handle is retained for the channel-0 task's lifetime: visible
// mid-session (the dispatcher loop is fully up — the call returned).
let saw_handle = tokio::time::timeout(std::time::Duration::from_secs(5), async {
loop {
if sessions.live_connection_count() == 1 {
return true;
}
tokio::time::sleep(std::time::Duration::from_millis(20)).await;
}
})
.await
.expect("channel-0 connection handle visible mid-session (WS-28)");
assert!(saw_handle);
assert_eq!(sessions.live_connection_count(), 1);
let handles = sessions.live_connections();
assert_eq!(handles.len(), 1, "one handle for the one session");
// Teardown: the guard's drop removes the handle on any end path.
ws.close().await;
let drained = tokio::time::timeout(std::time::Duration::from_secs(5), async {
loop {
if sessions.live_connection_count() == 0 {
return true;
}
tokio::time::sleep(std::time::Duration::from_millis(20)).await;
}
})
.await
.expect("channel-0 connection handle removed after the session ends");
assert!(drained);
}
/// WS-09 acceptance: the session cap is enforced on the upgrade — a
/// caller over the configured cap is rejected with 503, and an ended
/// session frees its slot for the next caller.
#[tokio::test]
async fn session_cap_rejects_over_limit_with_503_and_frees_slots_on_end() {
use alkhttp::server::HttpAdapter;
let registry_val = OperationRegistry::new();
registry_val
.register(HandlerRegistration::new(
OperationSpec::new(
"echo/run",
OperationType::Query,
Visibility::External,
serde_json::json!({}),
serde_json::json!({}),
vec![],
AccessControl::default(),
None,
),
HandlerKind::Once(echo_handler()),
OperationProvenance::Local,
None,
None,
alkcall::core::types::Capabilities::new(),
))
.unwrap();
let registry = Arc::new(registry_val);
struct StaticTok;
impl IdentityProvider for StaticTok {
fn resolve_from_fingerprint(&self, _: &str) -> Option<Identity> {
None
}
fn resolve_from_token(&self, token: &alkcall::core::auth::AuthToken) -> Option<Identity> {
let s = String::from_utf8_lossy(&token.raw).to_string();
(s == "tok-1").then(|| identity("alice", &[]))
}
}
// The adapter's built-in surface: WS route + bearer middleware, the
// whole deployment shape the cap knob configures.
let adapter =
HttpAdapter::new(Arc::new(StaticTok), Arc::clone(&registry)).with_ws_max_sessions(1);
let listener = tokio::net::TcpListener::bind("127.0.0.1:0").await.unwrap();
let addr = format!("ws://{}", listener.local_addr().unwrap());
let app: axum::Router = adapter.router().clone();
tokio::spawn(async move {
axum::serve(listener, app).await.unwrap();
});
let url = format!("{addr}/alk/channels");
// First session: admitted.
let mut first = WsClient::connect_authorized(&url, "tok-1").await.unwrap();
let env = call_and_await(&mut first, "req-1", "echo/run", serde_json::json!({})).await;
assert_eq!(env.r#type, EVENT_RESPONDED, "first session admitted");
// Second session over the cap: rejected with 503 at the upgrade.
let status = WsClient::connect_status(&url, Some("tok-1")).await;
assert_eq!(status, Some(503), "second session rejected over the cap");
// Ending the first session frees the slot: the next caller is admitted.
first.close().await;
tokio::time::sleep(std::time::Duration::from_millis(200)).await;
let mut third = WsClient::connect_authorized(&url, "tok-1").await.unwrap();
let env = call_and_await(&mut third, "req-2", "echo/run", serde_json::json!({})).await;
assert_eq!(env.r#type, EVENT_RESPONDED, "slot freed after session end");
third.close().await;
}
/// WS-13 acceptance on the axum path (the integration mirror; also the
/// COV-11b dark-knob gate for `with_ws_idle_timeout`): a client
/// dribbling a declared chunk's payload one byte per message, each gap
/// inside the idle window, is evicted with 1001 — message arrival does
/// not reset the deadline, only a completed chunk would.
#[tokio::test]
async fn idle_progress_knob_evicts_forever_dribble_over_axum_upgrade() {
use alkhttp::server::HttpAdapter;
let registry_val = OperationRegistry::new();
let registry = Arc::new(registry_val);
struct StaticTok;
impl IdentityProvider for StaticTok {
fn resolve_from_fingerprint(&self, _: &str) -> Option<Identity> {
None
}
fn resolve_from_token(&self, token: &alkcall::core::auth::AuthToken) -> Option<Identity> {
let s = String::from_utf8_lossy(&token.raw).to_string();
(s == "tok-1").then(|| identity("alice", &[]))
}
}
let adapter = HttpAdapter::new(Arc::new(StaticTok), Arc::clone(&registry))
.with_ws_idle_timeout(Some(std::time::Duration::from_millis(150)));
let listener = tokio::net::TcpListener::bind("127.0.0.1:0").await.unwrap();
let addr = format!("ws://{}", listener.local_addr().unwrap());
let app: axum::Router = adapter.router().clone();
tokio::spawn(async move {
axum::serve(listener, app).await.unwrap();
});
let mut ws = WsClient::connect_authorized(&format!("{addr}/alk/channels"), "tok-1")
.await
.unwrap();
let dribbler = WsClient::connect_authorized(&format!("{addr}/alk/channels"), "tok-1")
.await
.unwrap();
let dribble = tokio::spawn(async move {
let mut dribbler = dribbler;
let mut header = vec![0u8; 8];
header[4..8].copy_from_slice(&64u32.to_be_bytes());
dribbler.send_binary(header).await;
loop {
tokio::time::sleep(std::time::Duration::from_millis(40)).await;
dribbler.send_binary(vec![0u8]).await;
}
});
let close = tokio::time::timeout(std::time::Duration::from_secs(10), async {
loop {
match ws.next_close(std::time::Duration::from_millis(250)).await {
Some(Some(code)) => break code,
Some(None) => break 1006,
None => continue,
}
}
})
.await
.expect("dribbling client must be evicted within 10 s");
dribble.abort();
assert_eq!(
close,
alkhttp::websocket::WS_GOING_AWAY,
"the forever-dribble hits the progress deadline despite arriving messages"
);
}
/// WS-13 survivor side on the axum path: a session whose traffic keeps
/// completing chunks (each chunk inside the window — the scaled-down
/// "messages flowing that make progress" shape) is NOT evicted, and
/// calls keep round-tripping across many windows.
#[tokio::test]
async fn idle_progress_knob_survives_productive_sessions_over_axum_upgrade() {
use alkhttp::server::HttpAdapter;
let registry = echo_registry();
struct StaticTok;
impl IdentityProvider for StaticTok {
fn resolve_from_fingerprint(&self, _: &str) -> Option<Identity> {
None
}
fn resolve_from_token(&self, token: &alkcall::core::auth::AuthToken) -> Option<Identity> {
let s = String::from_utf8_lossy(&token.raw).to_string();
(s == "tok-1").then(|| identity("alice", &[]))
}
}
let adapter = HttpAdapter::new(Arc::new(StaticTok), Arc::clone(&registry))
.with_ws_idle_timeout(Some(std::time::Duration::from_millis(150)));
let listener = tokio::net::TcpListener::bind("127.0.0.1:0").await.unwrap();
let addr = format!("ws://{}", listener.local_addr().unwrap());
let app: axum::Router = adapter.router().clone();
tokio::spawn(async move {
axum::serve(listener, app).await.unwrap();
});
let mut ws = WsClient::connect_authorized(&format!("{addr}/alk/channels"), "tok-1")
.await
.unwrap();
for i in 0..6 {
tokio::time::sleep(std::time::Duration::from_millis(75)).await;
let n = i * 7 + 1;
let env = call_and_await(
&mut ws,
&format!("req-{n}"),
"echo/run",
serde_json::json!({ "n": n }),
)
.await;
assert_eq!(env.r#type, EVENT_RESPONDED);
assert_eq!(env.payload["output"]["n"], n);
}
ws.close().await;
}
/// WS-13 `None` arm on the axum path: with the knob disabled a
/// dribbling client that completes no chunk is never evicted.
#[tokio::test]
async fn idle_progress_knob_none_disables_eviction_over_axum_upgrade() {
use alkhttp::server::HttpAdapter;
let registry = echo_registry();
struct StaticTok;
impl IdentityProvider for StaticTok {
fn resolve_from_fingerprint(&self, _: &str) -> Option<Identity> {
None
}
fn resolve_from_token(&self, token: &alkcall::core::auth::AuthToken) -> Option<Identity> {
let s = String::from_utf8_lossy(&token.raw).to_string();
(s == "tok-1").then(|| identity("alice", &[]))
}
}
let adapter =
HttpAdapter::new(Arc::new(StaticTok), Arc::clone(&registry)).with_ws_idle_timeout(None);
let listener = tokio::net::TcpListener::bind("127.0.0.1:0").await.unwrap();
let addr = format!("ws://{}", listener.local_addr().unwrap());
let app: axum::Router = adapter.router().clone();
tokio::spawn(async move {
axum::serve(listener, app).await.unwrap();
});
let mut ws = WsClient::connect_authorized(&format!("{addr}/alk/channels"), "tok-1")
.await
.unwrap();
let mut header = vec![0u8; 8];
header[4..8].copy_from_slice(&8u32.to_be_bytes());
ws.send_binary(header).await;
for _ in 0..4 {
tokio::time::sleep(std::time::Duration::from_millis(150)).await;
ws.send_binary_piece(&[0u8]).await;
}
let no_close = ws.next_close(std::time::Duration::from_millis(400)).await;
assert!(
!matches!(no_close, Some(Some(_))),
"knob disabled: no eviction arrives, got {no_close:?}"
);
ws.close().await;
}
/// WS-17 acceptance: a bare-registry upgrade route takes the pump
/// knobs per request via the `WsTimeouts` extension (mirroring
/// `ChannelsPolicy`) — a client that completes no chunk is evicted
/// with 1001 inside the extension's short idle window, not the 60 s
/// default.
#[tokio::test]
async fn ws_timeouts_extension_sets_the_idle_window_on_a_bare_registry_route() {
let registry = std::sync::Arc::new(OperationRegistry::new());
struct StaticTok;
impl IdentityProvider for StaticTok {
fn resolve_from_fingerprint(&self, _: &str) -> Option<Identity> {
None
}
fn resolve_from_token(&self, token: &alkcall::core::auth::AuthToken) -> Option<Identity> {
let s = String::from_utf8_lossy(&token.raw).to_string();
(s == "tok-1").then(|| identity("alice", &[]))
}
}
let app = axum::Router::new()
.route(
"/alk/channels",
axum::routing::get(alkhttp::websocket::ws_upgrade_handler),
)
.layer(axum::middleware::from_fn_with_state(
std::sync::Arc::new(StaticTok) as std::sync::Arc<dyn IdentityProvider>,
alkhttp::websocket::ws_bearer_auth,
))
.layer(axum::Extension(alkhttp::websocket::WsTimeouts {
idle: Some(std::time::Duration::from_millis(150)),
write: None,
}))
.with_state(registry);
let listener = tokio::net::TcpListener::bind("127.0.0.1:0").await.unwrap();
let addr = format!("ws://{}", listener.local_addr().unwrap());
tokio::spawn(async move {
axum::serve(listener, app).await.unwrap();
});
let mut ws = WsClient::connect_authorized(&format!("{addr}/alk/channels"), "tok-1")
.await
.unwrap();
let close = ws.next_close(std::time::Duration::from_secs(5)).await;
assert_eq!(
close,
Some(Some(alkhttp::websocket::WS_GOING_AWAY)),
"evicted with 1001 inside the extension's idle window"
);
ws.close().await;
}
// --- Unit 2/3 gates (review 006): the data-channel + op/register wiring ---
use alkcall::channels::operations::OpenHandler;
/// The data-plane echo the `OpenHandler` runs on the allocated
/// channel's `Connection`: echo every inbound byte block back, then
/// drain until EOF. The WS-test client writes raw (channel_id,
/// payload) chunks; the handler reads the channel's BiStream and
/// writes the echo — the exact data-plane shape ADR-067 promises.
fn echo_open_handler() -> OpenHandler {
Arc::new(move |_input, channel_conn, _auth| {
tokio::spawn(async move {
let mut stream = match channel_conn.accept_bi().await {
Ok(s) => s,
Err(_) => return,
};
use tokio::io::{AsyncReadExt, AsyncWriteExt};
let mut buf = [0u8; 4096];
loop {
match stream.read(&mut buf).await {
Ok(0) | Err(_) => break,
Ok(n) => {
if stream.write_all(&buf[..n]).await.is_err() {
break;
}
}
}
}
let _ = stream.shutdown().await;
})
})
}
/// The open-op spec for the test's openable ALPN (`channels/echo/sub`,
/// opening the `alk/echo` data plane).
fn echo_open_spec() -> OperationSpec {
OperationSpec::new(
"channels/echo/sub",
OperationType::Sub,
Visibility::External,
serde_json::json!({
"type": "object",
"properties": {},
"additionalProperties": false
}),
serde_json::json!({
"type": "object",
"properties": { "channel_id": { "type": "integer" } }
}),
vec![],
AccessControl::default(),
None,
)
.with_channel_open(alkcall::registry::spec::ChannelOpenSpec::new("alk/echo"))
}
/// Spawn a WS server whose adapter declares the echo openable ALPN and
/// a small per-identity channel cap; returns the WS URL and the shared
/// policy (for the ledger assertions).
async fn spawn_openable_ws_server(
registry: Arc<OperationRegistry>,
cap: usize,
) -> (
String,
Arc<alkcall::channels::policy::PerIdentityChannelPolicy>,
) {
use alkhttp::websocket::OpenableAlpns;
let policy = Arc::new(alkcall::channels::policy::PerIdentityChannelPolicy::new(
cap,
));
let policy_dyn: Arc<dyn alkcall::channels::policy::ChannelLifecyclePolicy> =
Arc::clone(&policy) as Arc<dyn alkcall::channels::policy::ChannelLifecyclePolicy>;
let openables = OpenableAlpns(Arc::from([alkhttp::websocket::OpenableAlpn::new(
echo_open_spec(),
echo_open_handler(),
)]));
let app = axum::Router::new()
.route(
"/alk/channels",
axum::routing::get(alkhttp::websocket::ws_upgrade_handler),
)
.layer(axum::middleware::from_fn_with_state(
provider_with(vec![("tok-1", identity("alice", &[]))]),
alkhttp::websocket::ws_bearer_auth,
))
.layer(axum::Extension(openables))
.layer(axum::Extension(alkhttp::websocket::ChannelsPolicy(
policy_dyn,
)))
.with_state(registry);
let listener = tokio::net::TcpListener::bind("127.0.0.1:0").await.unwrap();
let addr = format!("ws://{}", listener.local_addr().unwrap());
tokio::spawn(async move {
axum::serve(listener, app).await.unwrap();
});
(format!("{addr}/alk/channels"), policy)
}
/// Drain channel-0 chunks until a complete envelope shows up (shared
/// with `call_and_await`'s loop but tolerant of interleaved
/// non-zero-channel chunks).
async fn await_envelope(ws: &mut WsClient, request_id: &str) -> EventEnvelope {
let mut chunks = ChunkAssembler::new();
let mut frames = FrameAssembler::new();
let deadline = tokio::time::Instant::now() + std::time::Duration::from_secs(5);
loop {
assert!(
tokio::time::Instant::now() < deadline,
"timed out waiting for {request_id}"
);
if let Some(env) = frames.next_frame() {
if env.id == request_id {
return env;
}
}
let bin = ws.next_binary(std::time::Duration::from_millis(500)).await;
match bin {
Some(bytes) => {
chunks.push(&bytes);
while let Some((channel_id, payload)) = chunks.next_chunk() {
assert_eq!(channel_id, 0, "response must ride channel 0");
frames.push(&payload);
}
}
None => panic!("ws closed unexpectedly while awaiting {request_id}"),
}
}
}
/// Unit 3 scenario 1+2 (review 006): the open op resolves with a
/// `channel_id`, the per-session openable is discoverable through
/// `services/list`, and data chunks flow both directions on the
/// channel — the `OpenHandler`'s `Connection` sees the bytes.
#[tokio::test]
async fn data_channel_open_discoverable_and_bytes_round_trip() {
let (url, _policy) = spawn_openable_ws_server(
echo_registry(),
alkcall::channels::policy::DEFAULT_CHANNEL_CAP,
)
.await;
let mut ws = WsClient::connect_authorized(&url, "tok-1").await.unwrap();
// Discovery first: the fork's bootstrap discovery lists the
// session's own openable (the F-06 shape).
let env = call_and_await(&mut ws, "req-list", "services/list", serde_json::json!({})).await;
assert_eq!(env.r#type, EVENT_RESPONDED, "got {}", env.r#type);
let names: Vec<String> = env.payload["output"]["operations"]
.as_array()
.expect("operations array")
.iter()
.filter_map(|o| o["name"].as_str().map(String::from))
.collect();
assert!(
names.contains(&"channels/echo/sub".to_string()),
"per-session openable discoverable: {names:?}"
);
assert!(
names.contains(&"channel/close".to_string()) && names.contains(&"op/register".to_string()),
"generic channel ops + op/register served: {names:?}"
);
// The open op resolves with a channel_id.
let env = call_and_await(
&mut ws,
"req-open",
"channels/echo/sub",
serde_json::json!({}),
)
.await;
assert_eq!(env.r#type, EVENT_RESPONDED, "got {}", env.r#type);
let channel_id = env.payload["output"]["channel_id"]
.as_u64()
.expect("channel_id in open response");
assert!(channel_id > 0, "even id from the accept side: {channel_id}");
// Data-plane echo: send one chunk on the data channel and read the
// handler's echo back. Data-channel payloads are opaque (ADR-035:
// the handler owns its framing) — the echo handler echoes
// byte-for-byte per read.
let payload = b"hello-data-plane";
let framed = frame_data_channel(channel_id as u32, payload);
ws.send_binary(framed).await;
let echoed = read_data_channel_block(&mut ws, channel_id as u32).await;
assert_eq!(echoed, payload, "handler echoed the bytes");
ws.close().await;
}
/// Frame a raw data-channel chunk as a WS binary message: the 8-byte
/// chunk header (channel_id BE + length BE) + payload — the same wire
/// format channel 0 uses, the opaque data-plane unit (ADR-035).
fn frame_data_channel(channel_id: u32, block: &[u8]) -> Vec<u8> {
let mut out = Vec::with_capacity(8 + block.len());
out.extend_from_slice(&channel_id.to_be_bytes());
out.extend_from_slice(&(block.len() as u32).to_be_bytes());
out.extend_from_slice(block);
out
}
/// Read one echoed chunk's payload off a data channel, skipping
/// channel-0 traffic.
async fn read_data_channel_block(ws: &mut WsClient, channel_id: u32) -> Vec<u8> {
let mut chunks = ChunkAssembler::new();
let deadline = tokio::time::Instant::now() + std::time::Duration::from_secs(5);
loop {
assert!(
tokio::time::Instant::now() < deadline,
"timed out waiting for data-channel {channel_id}"
);
let bin = ws.next_binary(std::time::Duration::from_millis(500)).await;
match bin {
Some(bytes) => {
chunks.push(&bytes);
while let Some((cid, payload)) = chunks.next_chunk() {
if cid == channel_id {
return payload;
}
}
}
None => panic!("ws closed unexpectedly while awaiting data channel {channel_id}"),
}
}
}
/// Unit 3 scenario 2 (review 006): `channel/close` tears the handler
/// stream down and the opener ledger decrements (the policy count
/// drops) — plus the close op itself resolves `{"closed": true}`.
#[tokio::test]
async fn channel_close_resolves_and_decrements_the_opener_ledger() {
let (url, policy) = spawn_openable_ws_server(
echo_registry(),
alkcall::channels::policy::DEFAULT_CHANNEL_CAP,
)
.await;
let alice = identity("alice", &[]);
let mut ws = WsClient::connect_authorized(&url, "tok-1").await.unwrap();
let env = call_and_await(
&mut ws,
"req-open",
"channels/echo/sub",
serde_json::json!({}),
)
.await;
let channel_id = env.payload["output"]["channel_id"].as_u64().unwrap() as u32;
assert_eq!(policy.count_for(&alice), 1, "open incremented the ledger");
let env = call_and_await(
&mut ws,
"req-close",
"channel/close",
serde_json::json!({ "channel_id": channel_id }),
)
.await;
assert_eq!(env.r#type, EVENT_RESPONDED, "got {}", env.r#type);
assert_eq!(
env.payload["output"]["closed"], true,
"close op resolves: {}",
env.payload["output"]
);
let deadline = tokio::time::Instant::now() + std::time::Duration::from_secs(5);
loop {
assert!(
tokio::time::Instant::now() < deadline,
"ledger decrement never landed"
);
if policy.count_for(&alice) == 0 {
break;
}
tokio::time::sleep(std::time::Duration::from_millis(20)).await;
}
ws.close().await;
}
/// Unit 3 scenario 3: the per-identity cap denies the open over the
/// limit with the `channel:` error prefix (the policy is the
/// `ChannelsPolicy` extension; the open wrapper consults it before
/// allocation).
#[tokio::test]
async fn channel_cap_denies_open_over_the_limit() {
let (url, policy) = spawn_openable_ws_server(echo_registry(), 1).await;
let mut ws = WsClient::connect_authorized(&url, "tok-1").await.unwrap();
let env = call_and_await(
&mut ws,
"req-open-1",
"channels/echo/sub",
serde_json::json!({}),
)
.await;
assert!(
env.payload["output"]["channel_id"].is_u64(),
"first open admitted"
);
let env = call_and_await(
&mut ws,
"req-open-2",
"channels/echo/sub",
serde_json::json!({}),
)
.await;
assert_eq!(
env.r#type, EVENT_ERROR,
"cap denial: got {} payload {}",
env.r#type, env.payload
);
let error = &env.payload;
assert!(
error["code"]
.as_str()
.is_some_and(|c| c.starts_with("channel:")),
"channel-prefixed denial code: {error}"
);
assert_eq!(policy.count_for(&identity("alice", &[])), 1);
ws.close().await;
}
/// Unit 3 gate (the WS-24/WS-25 shape): `op/register` is served per
/// session and its collision policy binds the session fork. Announce
/// lands in the connection overlay (re-announce without `replace`
/// rejects with the overlay gate's `ALREADY_EXISTS`); announcing a name
/// the serving side itself registers is rejected with
/// `ALREADY_EXISTS` regardless of `replace` (review 005 G-03's gate,
/// through the WS path).
#[tokio::test]
async fn op_register_served_per_session_and_collision_is_already_exists() {
use alkcall::registry::op_register::OpRegisterRequest;
let addr = spawn_ws_server(
echo_registry(),
provider_with(vec![("tok-1", identity("alice", &[]))]),
)
.await;
let mut ws = WsClient::connect_authorized(&format!("{addr}/alk/channels"), "tok-1")
.await
.unwrap();
// A distinct name announces cleanly into the connection overlay.
let spec = OperationSpec::new(
"consumer/exec",
OperationType::Query,
Visibility::External,
serde_json::json!({}),
serde_json::json!({}),
vec![],
AccessControl::default(),
None,
);
let request = OpRegisterRequest {
spec,
replace: false,
};
let frame = EventEnvelope::requested(
"req-announce",
serde_json::json!({
"operationId": "op/register",
"input": request.to_json(),
}),
);
ws.send_binary(frame_channel0_chunk(&frame)).await;
let env = await_envelope(&mut ws, &frame.id).await;
assert_eq!(env.r#type, EVENT_RESPONDED, "got {}", env.r#type);
assert_eq!(env.payload["output"]["registered"], true);
// The announced op is discoverable via services/list-peers: the
// peer entry keyed by the connection identity (alice) lists it
// (UP-03, fixed in alkcall 0.3.1).
let peers = call_and_await(
&mut ws,
"req-list-peers",
"services/list-peers",
serde_json::json!({}),
)
.await;
assert_eq!(peers.r#type, EVENT_RESPONDED, "got {}", peers.r#type);
let peer_entry = peers.payload["output"]["peers"]
.as_array()
.expect("peers array")
.iter()
.find(|p| p["peer_id"] == "alice")
.expect("alice peer entry present");
let peer_op_names: Vec<&str> = peer_entry["operations"]
.as_array()
.expect("peer operations array")
.iter()
.filter_map(|o| o["name"].as_str())
.collect();
assert!(
peer_op_names.contains(&"consumer/exec"),
"announced op discoverable via services/list-peers: {peer_entry}"
);
// The announced op landed in the overlay: a second announce of the
// same name without `replace` hits the overlay collision gate.
let spec = OperationSpec::new(
"consumer/exec",
OperationType::Query,
Visibility::External,
serde_json::json!({}),
serde_json::json!({}),
vec![],
AccessControl::default(),
None,
);
let request = OpRegisterRequest {
spec,
replace: false,
};
let frame = EventEnvelope::requested(
"req-reannounce",
serde_json::json!({
"operationId": "op/register",
"input": request.to_json(),
}),
);
ws.send_binary(frame_channel0_chunk(&frame)).await;
let env = await_envelope(&mut ws, &frame.id).await;
assert_eq!(env.r#type, EVENT_ERROR, "got {}", env.r#type);
assert_eq!(
env.payload["code"], "ALREADY_EXISTS",
"overlay collision gate: {}",
env.payload
);
// Collision: announcing the serving side's own op name rejects with
// ALREADY_EXISTS regardless of replace (review 005 G-03's gate,
// through the WS path).
let spec = OperationSpec::new(
"echo/run",
OperationType::Query,
Visibility::External,
serde_json::json!({}),
serde_json::json!({}),
vec![],
AccessControl::default(),
None,
);
let request = OpRegisterRequest {
spec,
replace: true,
};
let frame = EventEnvelope::requested(
"req-collide",
serde_json::json!({
"operationId": "op/register",
"input": request.to_json(),
}),
);
ws.send_binary(frame_channel0_chunk(&frame)).await;
let env = await_envelope(&mut ws, &frame.id).await;
assert_eq!(env.r#type, EVENT_ERROR, "got {}", env.r#type);
assert_eq!(
env.payload["code"], "ALREADY_EXISTS",
"serving-registry collision rejected: {}",
env.payload
);
ws.close().await;
}
/// Unit 3 scenario 4: a mid-open disconnect tears the session down
/// without leaking — the ledger count for the opener drops to zero
/// (the channels adapter's teardown decrements), the WS close is
/// observed, and no further open succeeds (the socket is gone).
#[tokio::test]
async fn disconnect_mid_open_tears_down_and_decrements() {
let (url, policy) = spawn_openable_ws_server(
echo_registry(),
alkcall::channels::policy::DEFAULT_CHANNEL_CAP,
)
.await;
let alice = identity("alice", &[]);
let mut ws = WsClient::connect_authorized(&url, "tok-1").await.unwrap();
let env = call_and_await(
&mut ws,
"req-open",
"channels/echo/sub",
serde_json::json!({}),
)
.await;
assert!(env.payload["output"]["channel_id"].is_u64());
assert_eq!(policy.count_for(&alice), 1);
// Hard disconnect (drop without close frame — the pump sees EOF).
drop(ws);
let deadline = tokio::time::Instant::now() + std::time::Duration::from_secs(5);
loop {
assert!(
tokio::time::Instant::now() < deadline,
"teardown never decremented the ledger"
);
if policy.count_for(&alice) == 0 {
break;
}
tokio::time::sleep(std::time::Duration::from_millis(20)).await;
}
}
/// Unit 3 scenario 5: a `TooLarge` chunk on a data channel survives —
/// the demux skips it and resyncs (alkcall's hardening, asserted
/// through the WS path). The oversized chunk is skipped by the demux
/// (TooLarge), the following chunks on other channels still route.
#[tokio::test]
async fn too_large_data_channel_chunk_survives_demux_resync() {
use alkhttp::websocket::MAX_CHUNK_LEN;
let (url, _policy) = spawn_openable_ws_server(
echo_registry(),
alkcall::channels::policy::DEFAULT_CHANNEL_CAP,
)
.await;
let mut ws = WsClient::connect_authorized(&url, "tok-1").await.unwrap();
let env = call_and_await(
&mut ws,
"req-open",
"channels/echo/sub",
serde_json::json!({}),
)
.await;
let channel_id = env.payload["output"]["channel_id"].as_u64().unwrap() as u32;
// An oversized declared chunk on the data channel: the demux skips
// it (bounded by its 256 MiB budget) and stays in sync. The skip
// consumes exactly the declared payload length off the transport,
// so we must actually send that many filler bytes (16 MiB + 1 is
// over MAX_CHUNK_LEN but under the WS message caps, sent as
// separate WS messages).
let oversized_len = MAX_CHUNK_LEN + 1;
let mut header = Vec::with_capacity(8);
header.extend_from_slice(&channel_id.to_be_bytes());
header.extend_from_slice(&oversized_len.to_be_bytes());
ws.send_binary(header).await;
let filler_len = oversized_len as usize;
let filler = vec![0u8; filler_len];
let mut sent = 0usize;
while sent < filler_len {
let take = (filler_len - sent).min(256 * 1024);
ws.send_binary(filler[sent..sent + take].to_vec()).await;
sent += take;
}
// The next small chunk on the data channel still routes and the
// handler echoes it — resync proven.
let payload = b"after-skip";
ws.send_binary(frame_data_channel(channel_id, payload))
.await;
let echoed = read_data_channel_block(&mut ws, channel_id).await;
assert_eq!(echoed, payload, "demux resynced after the TooLarge skip");
ws.close().await;
}
// --- Review 007 remediation gates (WS-29/30/32) ---
/// The announce frame the `op/register` gates send: one
/// `OpRegisterRequest` wrapped as a channel-0 chunk.
async fn announce_op(ws: &mut WsClient, request_id: &str, name: &str) -> EventEnvelope {
use alkcall::registry::op_register::OpRegisterRequest;
let spec = OperationSpec::new(
name,
OperationType::Query,
Visibility::External,
serde_json::json!({}),
serde_json::json!({}),
vec![],
AccessControl::default(),
None,
);
let request = OpRegisterRequest {
spec,
replace: false,
};
let frame = EventEnvelope::requested(
request_id,
serde_json::json!({
"operationId": "op/register",
"input": request.to_json(),
}),
);
ws.send_binary(frame_channel0_chunk(&frame)).await;
await_envelope(ws, &frame.id).await
}
/// Review 007 WS-29 acceptance (the builder path): a deployment's
/// `with_ws_op_register_acl` value is the `op/register` surface's ACL —
/// a peer whose identity lacks the required scope gets `FORBIDDEN` on
/// the announce, a peer with it announces cleanly. The permissive
/// default (any authenticated peer may announce) is pinned by the
/// Unit-3 gate above, whose registry route carries no override.
#[tokio::test]
async fn op_register_acl_builder_gates_the_announce_surface() {
use alkhttp::server::HttpAdapter;
let registry = echo_registry();
struct StaticTok;
impl IdentityProvider for StaticTok {
fn resolve_from_fingerprint(&self, _: &str) -> Option<Identity> {
None
}
fn resolve_from_token(&self, token: &alkcall::core::auth::AuthToken) -> Option<Identity> {
let s = String::from_utf8_lossy(&token.raw).to_string();
match s.as_str() {
"tok-1" => Some(identity("alice", &[])),
"tok-2" => Some(identity("bobb", &["announcer"])),
_ => None,
}
}
}
let adapter = HttpAdapter::new(
Arc::new(StaticTok) as Arc<dyn IdentityProvider>,
Arc::clone(&registry),
)
.with_ws_op_register_acl(AccessControl {
required_scopes: vec!["announcer".to_string()],
..Default::default()
});
let listener = tokio::net::TcpListener::bind("127.0.0.1:0").await.unwrap();
let addr = format!("ws://{}", listener.local_addr().unwrap());
let app: axum::Router = adapter.router().clone();
tokio::spawn(async move {
axum::serve(listener, app).await.unwrap();
});
let url = format!("{addr}/alk/channels");
// Scope-less peer: the announce is denied before the handler runs.
let mut ws = WsClient::connect_authorized(&url, "tok-1").await.unwrap();
let env = call_and_await(&mut ws, "req-deny", "echo/run", serde_json::json!({})).await;
assert_eq!(env.r#type, EVENT_RESPONDED, "session established");
let env = announce_op(&mut ws, "req-announce-deny", "consumer/denied").await;
assert_eq!(env.r#type, EVENT_ERROR, "got {}", env.r#type);
assert_eq!(
env.payload["code"], "FORBIDDEN",
"ACL without the scope is denied: {}",
env.payload
);
// A peer with the scope announces cleanly.
let mut ws2 = WsClient::connect_authorized(&url, "tok-2").await.unwrap();
let env = announce_op(&mut ws2, "req-announce-ok", "consumer/allowed").await;
assert_eq!(env.r#type, EVENT_RESPONDED, "got {}", env.r#type);
assert_eq!(env.payload["output"]["registered"], true);
ws.close().await;
ws2.close().await;
}
/// Review 007 WS-29 acceptance (the extension path): the
/// `OpRegisterAcl` request extension on a bare-registry route carries
/// the same gate — `FORBIDDEN` without the scope, announce-ok with it.
#[tokio::test]
async fn op_register_acl_extension_gates_the_announce_surface() {
let app = axum::Router::new()
.route(
"/alk/channels",
axum::routing::get(alkhttp::websocket::ws_upgrade_handler),
)
.layer(axum::middleware::from_fn_with_state(
provider_with(vec![
("tok-1", identity("alice", &[])),
("tok-2", identity("bobb", &["announcer"])),
]),
alkhttp::websocket::ws_bearer_auth,
))
.layer(axum::Extension(alkhttp::websocket::OpRegisterAcl(
AccessControl {
required_scopes: vec!["announcer".to_string()],
..Default::default()
},
)))
.with_state(echo_registry());
let listener = tokio::net::TcpListener::bind("127.0.0.1:0").await.unwrap();
let addr = format!("ws://{}", listener.local_addr().unwrap());
tokio::spawn(async move {
axum::serve(listener, app).await.unwrap();
});
let url = format!("{addr}/alk/channels");
let mut ws = WsClient::connect_authorized(&url, "tok-1").await.unwrap();
let env = announce_op(&mut ws, "req-announce-deny", "consumer/denied").await;
assert_eq!(env.r#type, EVENT_ERROR, "got {}", env.r#type);
assert_eq!(
env.payload["code"], "FORBIDDEN",
"extension ACL without the scope is denied: {}",
env.payload
);
let mut ws2 = WsClient::connect_authorized(&url, "tok-2").await.unwrap();
let env = announce_op(&mut ws2, "req-announce-ok", "consumer/allowed").await;
assert_eq!(env.r#type, EVENT_RESPONDED, "got {}", env.r#type);
assert_eq!(env.payload["output"]["registered"], true);
ws.close().await;
ws2.close().await;
}
/// Review 007 WS-30 acceptance: a bare-registry route's
/// `SessionState` semaphore is built per request (`FromRef`) and
/// bounds nothing; the `SessionSlots` extension carries the shared
/// semaphore — two sessions over a cap of 1 reject with 503, and a
/// slot frees on session end (the WS-09 shape on the extension path).
#[tokio::test]
async fn session_slots_extension_bounds_a_bare_registry_route() {
let slots = Arc::new(tokio::sync::Semaphore::new(1));
let app = axum::Router::new()
.route(
"/alk/channels",
axum::routing::get(alkhttp::websocket::ws_upgrade_handler),
)
.layer(axum::middleware::from_fn_with_state(
provider_with(vec![("tok-1", identity("alice", &[]))]),
alkhttp::websocket::ws_bearer_auth,
))
.layer(axum::Extension(alkhttp::websocket::SessionSlots(
Arc::clone(&slots),
)))
.with_state(echo_registry());
let listener = tokio::net::TcpListener::bind("127.0.0.1:0").await.unwrap();
let addr = format!("ws://{}", listener.local_addr().unwrap());
tokio::spawn(async move {
axum::serve(listener, app).await.unwrap();
});
let url = format!("{addr}/alk/channels");
let mut first = WsClient::connect_authorized(&url, "tok-1").await.unwrap();
let env = call_and_await(&mut first, "req-1", "echo/run", serde_json::json!({})).await;
assert_eq!(env.r#type, EVENT_RESPONDED, "first session admitted");
let status = WsClient::connect_status(&url, Some("tok-1")).await;
assert_eq!(status, Some(503), "second session rejected over the cap");
first.close().await;
tokio::time::sleep(std::time::Duration::from_millis(200)).await;
let mut third = WsClient::connect_authorized(&url, "tok-1").await.unwrap();
let env = call_and_await(&mut third, "req-2", "echo/run", serde_json::json!({})).await;
assert_eq!(env.r#type, EVENT_RESPONDED, "slot freed after session end");
third.close().await;
}
/// Review 007 WS-32 acceptance: the built-in openables threading
/// (`HttpAdapter::with_ws_openable_alpns` → `RouterState` →
/// `SessionState` → hook) serves the data-channel surface — a session
/// on the built-in router discovers the openable via `services/list`,
/// opens the channel, and round-trips bytes on it. Every Unit-3 gate
/// rides the `OpenableAlpns` request-extension fallback; this is the
/// only gate through the builder path a real `HttpAdapter` deployment
/// uses.
#[tokio::test]
async fn builder_path_openables_serve_the_data_channel_surface() {
use alkhttp::server::HttpAdapter;
struct StaticTok;
impl IdentityProvider for StaticTok {
fn resolve_from_fingerprint(&self, _: &str) -> Option<Identity> {
None
}
fn resolve_from_token(&self, token: &alkcall::core::auth::AuthToken) -> Option<Identity> {
let s = String::from_utf8_lossy(&token.raw).to_string();
(s == "tok-1").then(|| identity("alice", &[]))
}
}
let adapter =
HttpAdapter::new(Arc::new(StaticTok), echo_registry()).with_ws_openable_alpns(vec![
alkhttp::websocket::OpenableAlpn::new(echo_open_spec(), echo_open_handler()),
]);
let listener = tokio::net::TcpListener::bind("127.0.0.1:0").await.unwrap();
let addr = format!("ws://{}", listener.local_addr().unwrap());
let app: axum::Router = adapter.router().clone();
tokio::spawn(async move {
axum::serve(listener, app).await.unwrap();
});
let mut ws = WsClient::connect_authorized(&format!("{addr}/alk/channels"), "tok-1")
.await
.unwrap();
let env = call_and_await(&mut ws, "req-list", "services/list", serde_json::json!({})).await;
assert_eq!(env.r#type, EVENT_RESPONDED, "got {}", env.r#type);
let names: Vec<String> = env.payload["output"]["operations"]
.as_array()
.expect("operations array")
.iter()
.filter_map(|o| o["name"].as_str().map(String::from))
.collect();
assert!(
names.contains(&"channels/echo/sub".to_string()),
"builder-path openable discoverable: {names:?}"
);
let env = call_and_await(
&mut ws,
"req-open",
"channels/echo/sub",
serde_json::json!({}),
)
.await;
assert_eq!(env.r#type, EVENT_RESPONDED, "got {}", env.r#type);
let channel_id = env.payload["output"]["channel_id"]
.as_u64()
.expect("channel_id");
let payload = b"builder-path-bytes";
ws.send_binary(frame_data_channel(channel_id as u32, payload))
.await;
let echoed = read_data_channel_block(&mut ws, channel_id as u32).await;
assert_eq!(
echoed, payload,
"data channel round trip on the built-in surface"
);
ws.close().await;
}