Resolves the 142 findings from tidal/docs/reviews/CODE_REVIEW_m0-m10.md across the engine, server, net, and CLI surfaces: - WAL/session-journal durability, checkpoint format, and crash-recovery hardening - Replication shipper/receiver, tenant isolation, and migration paths - Cluster scatter-gather, router, standalone server + health/offload endpoints - tidalctl refactored into command modules with JSON output and WAL-state tooling - Cohort, governance, signal-ledger, and vector-registry correctness fixes - Expanded UAT/integration/durability test coverage across all milestones
292 lines
11 KiB
Rust
292 lines
11 KiB
Rust
// Integration-test exemption (same posture as the other tidal-server tests):
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// unwrap on known-good fixtures + rank index casts are idiomatic here.
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#![allow(clippy::unwrap_used, clippy::cast_possible_truncation)]
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//! End-to-end integration coverage for the STANDALONE data surface.
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//!
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//! `middleware.rs` covers auth / body-limit / request-ID and
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//! `standalone_offload.rs` covers the `/feed` offload round trip, but neither
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//! drives the full data path through the HTTP surface nor pins the
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//! engine-result → DTO mapping. This test:
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//!
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//! 1. Drives the real handlers in-process via `tower::ServiceExt::oneshot`
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//! (no TCP bind): POST /items → POST /embeddings → POST /signals → GET /feed
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//! → GET /search.
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//! 2. Asserts the [`crate::dto`] shape: `signals` is OMITTED when empty and
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//! PRESENT when a profile populates the snapshot; search items carry
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//! `bm25_score`.
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//! 3. Asserts the standalone region-rejection path: any `?region=` param is a
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//! 400 in both `/feed` and `/search` (region routing is a cluster concept).
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use std::sync::Arc;
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use axum::{
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body::Body,
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http::{Method, Request, StatusCode},
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};
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use tidal_server::{router::build_router, state::ServerState};
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use tidaldb::TidalDb;
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use tower::ServiceExt;
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fn make_app() -> axum::Router {
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// Default schema + built-in profiles (incl. `for_you`/`trending`), same
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// setup as `run_standalone` in main.rs. No API key so requests need no auth.
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let (schema, profiles) = tidal_server::config::load_schema(None).unwrap();
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let db = TidalDb::builder()
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.ephemeral()
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.with_schema(schema)
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.with_profiles(profiles)
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.open()
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.unwrap();
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let state = Arc::new(ServerState::new(db));
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build_router(state, None)
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}
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async fn post_json(app: &axum::Router, uri: &str, body: serde_json::Value) -> StatusCode {
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app.clone()
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.oneshot(
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Request::builder()
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.method(Method::POST)
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.uri(uri)
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.header("Content-Type", "application/json")
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.body(Body::from(serde_json::to_vec(&body).unwrap()))
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.unwrap(),
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)
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.await
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.unwrap()
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.status()
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}
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async fn get_json(app: &axum::Router, uri: &str) -> (StatusCode, serde_json::Value) {
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let response = app
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.clone()
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.oneshot(
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Request::builder()
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.method(Method::GET)
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.uri(uri)
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.body(Body::empty())
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.unwrap(),
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)
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.await
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.unwrap();
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let status = response.status();
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let bytes = axum::body::to_bytes(response.into_body(), usize::MAX)
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.await
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.unwrap();
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let json: serde_json::Value = serde_json::from_slice(&bytes).unwrap_or(serde_json::Value::Null);
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(status, json)
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}
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/// Full standalone round trip: items + embeddings + signals, then a ranked
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/// /feed and a /search over the indexed titles. Pins the DTO shape in both
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/// directions.
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#[tokio::test]
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async fn items_signals_feed_search_round_trip() {
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let app = make_app();
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// Two items with searchable titles + a created_at for the Hot sort age.
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for (id, title) in [(1u64, "jazz piano nocturne"), (2u64, "ambient jazz drift")] {
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let status = post_json(
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&app,
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"/items",
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serde_json::json!({
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"entity_id": id,
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"metadata": { "created_at": "1700000000", "title": title, "category": "music" }
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}),
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)
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.await;
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assert_eq!(status, StatusCode::CREATED, "item {id} create");
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let status = post_json(
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&app,
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"/embeddings",
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serde_json::json!({ "entity_id": id, "values": vec![0.1f32; 128] }),
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)
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.await;
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assert_eq!(status, StatusCode::NO_CONTENT, "item {id} embedding");
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}
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// Drive view signals so the ranking profile has a signal snapshot to expose.
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// Item 2 gets more weight so it should out-rank item 1.
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for (id, weight) in [(1u64, 1.0), (2u64, 5.0)] {
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let status = post_json(
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&app,
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"/signals",
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serde_json::json!({ "entity_id": id, "signal": "view", "weight": weight }),
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)
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.await;
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assert_eq!(status, StatusCode::NO_CONTENT, "signal for item {id}");
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}
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// ── GET /feed ────────────────────────────────────────────────────────────
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// `for_you` boosts the `view` signal, so the feed items must carry a
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// populated `signals` array (the DTO present-when-populated branch).
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let (status, body) = get_json(&app, "/feed?profile=for_you&limit=10").await;
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assert_eq!(status, StatusCode::OK, "feed body: {body}");
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let items = body
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.get("items")
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.and_then(serde_json::Value::as_array)
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.expect("feed has items array");
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assert!(
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!items.is_empty(),
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"feed should rank the written items: {body}"
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);
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// Ranks contiguous from 1; the heavier-weighted item 2 ranks first.
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for (idx, item) in items.iter().enumerate() {
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let rank = item
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.get("rank")
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.and_then(serde_json::Value::as_u64)
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.unwrap();
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assert_eq!(rank as usize, idx + 1, "ranks contiguous from 1");
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assert!(
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item.get("score")
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.and_then(serde_json::Value::as_f64)
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.is_some(),
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"each item carries a score"
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);
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}
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assert_eq!(
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items[0]
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.get("entity_id")
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.and_then(serde_json::Value::as_u64),
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Some(2),
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"heavier-weighted item ranks first: {body}"
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);
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// DTO: at least one ranked item must expose a populated `signals` array
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// (the `for_you` view boost), proving the present-when-populated branch.
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let any_with_signals = items.iter().any(|item| {
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item.get("signals")
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.and_then(serde_json::Value::as_array)
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.is_some_and(|s| !s.is_empty())
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});
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assert!(
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any_with_signals,
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"a boosted profile must populate the signals snapshot: {body}"
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);
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// ── GET /search ──────────────────────────────────────────────────────────
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// The background text syncer commits on a ~2s cadence (ephemeral index,
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// manual reload), and the `/search` handler reloads the reader on every
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// call. Poll the real endpoint until the committed docs are visible — a
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// deterministic end-to-end wait on the real syncer, not a fixed sleep.
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let body = poll_search_until_nonempty(&app, "/search?query=jazz&limit=10").await;
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let results = body
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.get("items")
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.and_then(serde_json::Value::as_array)
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.expect("search has items array");
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assert!(
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!results.is_empty(),
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"search should match the jazz titles within the syncer window: {body}"
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);
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for (idx, item) in results.iter().enumerate() {
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let rank = item
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.get("rank")
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.and_then(serde_json::Value::as_u64)
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.unwrap();
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assert_eq!(rank as usize, idx + 1, "search ranks contiguous from 1");
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}
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// A pure-text query must surface a BM25 component in the DTO for the
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// matched items (the `skip_serializing_if = Option::is_none` field is
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// present when scored).
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let any_bm25 = results.iter().any(|item| {
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item.get("bm25_score")
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.and_then(serde_json::Value::as_f64)
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.is_some()
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});
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assert!(any_bm25, "text search must expose bm25_score: {body}");
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}
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/// Re-issue a `/search` against the real handler until it returns a non-empty
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/// `items` array or a bounded deadline elapses. Each call asserts 200 and
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/// reloads the text reader (the handler does), so this waits on the real
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/// background syncer commit (≈2s cadence) without a blind fixed sleep.
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async fn poll_search_until_nonempty(app: &axum::Router, uri: &str) -> serde_json::Value {
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let deadline = std::time::Instant::now() + std::time::Duration::from_secs(8);
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loop {
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let (status, body) = get_json(app, uri).await;
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assert_eq!(status, StatusCode::OK, "search body: {body}");
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let nonempty = body
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.get("items")
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.and_then(serde_json::Value::as_array)
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.is_some_and(|a| !a.is_empty());
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if nonempty || std::time::Instant::now() >= deadline {
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return body;
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}
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// The text syncer runs on its own OS thread, so a brief blocking sleep
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// here (between awaits, not during one) does not stall the commit — it
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// just paces the retry. `tokio::time` is not enabled for this crate, so
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// a std sleep is the right tool.
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std::thread::sleep(std::time::Duration::from_millis(100));
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}
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}
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/// DTO: an item with NO signals must serialize with `signals` ABSENT (the
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/// skip-when-empty branch). Uses the `new` profile (sort-by-recency, no boosts),
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/// so no signal snapshot is attached even though the item exists.
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#[tokio::test]
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async fn feed_omits_signals_when_empty() {
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let app = make_app();
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let status = post_json(
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&app,
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"/items",
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serde_json::json!({
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"entity_id": 42,
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"metadata": { "created_at": "1700000000", "title": "no signals here" }
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}),
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)
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.await;
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assert_eq!(status, StatusCode::CREATED);
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// `new` is a built-in sort-by-recency profile with no signal boosts, so the
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// ranked item carries an empty snapshot → `signals` omitted from the JSON.
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let (status, body) = get_json(&app, "/feed?profile=new&limit=10").await;
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assert_eq!(status, StatusCode::OK, "feed body: {body}");
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let items = body
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.get("items")
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.and_then(serde_json::Value::as_array)
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.expect("feed has items array");
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assert!(!items.is_empty(), "the item should still rank: {body}");
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for item in items {
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assert!(
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item.get("signals").is_none(),
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"empty signal snapshot must be OMITTED, not [] : {item}"
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);
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}
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}
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/// Standalone region rejection: any `?region=` param is a 400 on `/feed`.
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/// Region routing is a cluster-only concept; a standalone server must reject it
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/// loudly rather than silently ignore it.
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#[tokio::test]
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async fn feed_rejects_region_param() {
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let app = make_app();
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let (status, body) = get_json(&app, "/feed?profile=for_you®ion=us-east").await;
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assert_eq!(status, StatusCode::BAD_REQUEST, "body: {body}");
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let err = body
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.get("error")
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.and_then(serde_json::Value::as_str)
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.unwrap_or("");
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assert!(
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err.contains("region routing requires cluster mode"),
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"error must explain region routing is cluster-only: {body}"
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);
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}
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/// Standalone region rejection also applies to `/search`.
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#[tokio::test]
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async fn search_rejects_region_param() {
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let app = make_app();
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let (status, body) = get_json(&app, "/search?query=jazz®ion=us-east").await;
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assert_eq!(status, StatusCode::BAD_REQUEST, "body: {body}");
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let err = body
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.get("error")
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.and_then(serde_json::Value::as_str)
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.unwrap_or("");
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assert!(
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err.contains("region routing requires cluster mode"),
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"error must explain region routing is cluster-only: {body}"
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);
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}
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