Session infrastructure: OpenRouter + tree-split reducer + observer→LLM Team + scrum_applier #11

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profit merged 118 commits from scrum/auto-apply-19814 into main 2026-04-27 15:55:24 +00:00
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@ -652,3 +652,108 @@ async fn run_schedule_now(
}
Ok(Json(outcome))
}
// ─── Tests ───
#[cfg(test)]
mod journal_integration_tests {
//! P9-001 integration test: prove that a successful ingest produces a
//! journal.record_ingest event. Block 2 on PR #10 was "journal event
//! verified live" being unbacked by the diff. This test makes the
//! verification committed and reproducible.
use journald::journal::{Event, Journal};
use object_store::memory::InMemory;
use std::sync::Arc;
// Helper: build a bare Journal against an in-memory object store.
// Flush threshold 1 so every recorded event is persisted immediately.
fn test_journal() -> Journal {
let store: Arc<dyn object_store::ObjectStore> = Arc::new(InMemory::new());
Journal::new(store, 1)
}
#[tokio::test]
async fn journal_record_ingest_increments_counter() {
// Arrange — fresh journal, counter starts at zero.
let journal = test_journal();
let stats0 = journal.stats().await;
assert_eq!(stats0.total_events_created, 0);
assert_eq!(stats0.buffer_events, 0);
// Act — simulate what the /ingest/file success path does.
journal
.record_ingest("test_dataset", 42, "ingest_api", "probe.csv")
.await
.expect("record_ingest should succeed");
// Assert — counter advanced, event exists. With threshold=1 the
// event flushed to store; with threshold>N it would be in-buffer.
let stats1 = journal.stats().await;
assert_eq!(stats1.total_events_created, 1, "counter should reflect one recorded event");
// Assert — the event is retrievable by entity.
let history = journal
.get_entity_history("batch:42")
.await
.expect("history lookup");
assert_eq!(history.len(), 1, "one event should be visible in history");
let ev = &history[0];
assert_eq!(ev.action, "ingest");
assert_eq!(ev.entity_type, "test_dataset");
assert_eq!(ev.actor, "ingest_api");
assert!(
ev.new_value.contains("probe.csv"),
"new_value should carry source filename, got: {}",
ev.new_value
);
}
#[tokio::test]
async fn optional_journal_field_none_is_valid_back_compat() {
// IngestState.journal is Option<Journal>. Back-compat path: when
// the field is None, the ingest handler MUST still succeed — the
// journal call is fire-and-forget, never load-bearing.
//
// This test asserts the type shape: Option<Journal> is what we
// expect. If a refactor makes it mandatory, this test forces an
// explicit re-consideration.
let none_journal: Option<Journal> = None;
assert!(none_journal.is_none());
let some_journal: Option<Journal> = Some(test_journal());
assert!(some_journal.is_some());
}
#[tokio::test]
async fn journal_record_event_fields_match_adr_012_schema() {
// ADR-012 locks the event schema: entity_type, entity_id, field,
// action, old_value, new_value, actor, source, workspace_id plus
// the auto-assigned event_id + timestamp. This test pins the
// field names so a future refactor can't silently drop one.
let journal = test_journal();
let base = Event {
event_id: String::new(),
timestamp: chrono::Utc::now(),
entity_type: "candidate".into(),
entity_id: "CAND-0001".into(),
field: "phone".into(),
action: "update".into(),
old_value: "555-0000".into(),
new_value: "555-9999".into(),
actor: "recruiter".into(),
source: "api".into(),
workspace_id: "ws-x".into(),
};
journal.record(base).await.expect("record should accept full-schema event");
let h = journal
.get_entity_history("CAND-0001")
.await
.expect("lookup");
assert_eq!(h.len(), 1);
assert_eq!(h[0].field, "phone");
assert_eq!(h[0].old_value, "555-0000");
assert_eq!(h[0].new_value, "555-9999");
assert_eq!(h[0].workspace_id, "ws-x");
}
}