mod common; use std::path::Path; use std::sync::Arc; use std::time::Duration; use axum::http::{StatusCode, header}; use tower::util::ServiceExt; use doctate_common::BulkAction; use doctate_server::analyze; use serde_json::{Value, json}; use wiremock::matchers::{method, path}; use wiremock::{Mock, MockServer, ResponseTemplate}; use common::{ ANALYSIS_INPUT_FILE, CLOSE_MARKER, DOCUMENT_FILE, ONELINER_FILENAME, TestConfig, csrf_form_post, get_with_cookie, login_with_csrf, paths, seed_case, seed_recording, test_admin, test_user, unique_tmpdir, write_document_for_test, }; // --------------------------------------------------------------------- // Fixture helpers // --------------------------------------------------------------------- type CfgPair = ( std::sync::Arc, std::sync::Arc, ); fn cfg_llm(label: &'static str) -> CfgPair { TestConfig::new() .with_label(label) .with_user(test_user("dr_a")) .with_llm("http://unused") .build_pair() } fn cfg_llm_admin(label: &'static str) -> CfgPair { TestConfig::new() .with_label(label) .with_user(test_admin("dr_a")) .with_llm("http://unused") .build_pair() } fn cfg_without_llm(label: &'static str) -> CfgPair { TestConfig::new() .with_label(label) .with_user(test_user("dr_a")) .build_pair() } // --------------------------------------------------------------------- // HTTP-level precondition tests // --------------------------------------------------------------------- #[tokio::test] async fn analyze_without_cookie_redirects_to_login() { let (cfg, settings) = cfg_llm("a"); let app = doctate_server::create_router_with_settings(cfg, settings); let case_id = "11111111-1111-1111-1111-111111111111"; let resp = app .oneshot( axum::http::Request::builder() .method("POST") .uri(paths::case_analyze(case_id)) .body(axum::body::Body::empty()) .unwrap(), ) .await .unwrap(); assert_eq!(resp.status(), StatusCode::FOUND); } #[tokio::test] async fn analyze_foreign_case_returns_404() { let (cfg, settings) = cfg_llm("b"); // Seed a case owned by someone else. let foreign_case = "22222222-2222-2222-2222-222222222222"; let foreign_dir = cfg.data_path.join("dr_other").join(foreign_case); std::fs::create_dir_all(&foreign_dir).unwrap(); seed_recording(&foreign_dir, "2026-04-15T10-00-00Z", Some("text")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let resp = app .oneshot(csrf_form_post( paths::case_analyze(foreign_case), &cookie, &csrf, "", )) .await .unwrap(); assert_eq!(resp.status(), StatusCode::NOT_FOUND); } #[tokio::test] async fn analyze_invalid_uuid_returns_400() { let (cfg, settings) = cfg_llm("c"); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let resp = app .oneshot(csrf_form_post( paths::case_analyze("not-a-uuid"), &cookie, &csrf, "", )) .await .unwrap(); assert_eq!(resp.status(), StatusCode::BAD_REQUEST); } #[tokio::test] async fn analyze_case_without_recordings_returns_400() { let (cfg, settings) = cfg_llm("d"); let case_id = "11111111-1111-1111-1111-111111111111"; seed_case(&cfg.data_path, "dr_a", case_id); // No .m4a files. let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let resp = app .oneshot(csrf_form_post( paths::case_analyze(case_id), &cookie, &csrf, "", )) .await .unwrap(); assert_eq!(resp.status(), StatusCode::BAD_REQUEST); } #[tokio::test] async fn analyze_case_with_missing_transcript_returns_400() { let (cfg, settings) = cfg_llm("e"); let case_id = "11111111-1111-1111-1111-111111111111"; let case_dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording(&case_dir, "2026-04-15T10-00-00Z", Some("ok")); seed_recording(&case_dir, "2026-04-15T10-05-00Z", None); // still transcribing let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let resp = app .oneshot(csrf_form_post( paths::case_analyze(case_id), &cookie, &csrf, "", )) .await .unwrap(); assert_eq!(resp.status(), StatusCode::BAD_REQUEST); } #[tokio::test] #[ignore = "post-refactor any_backend_available() reads IONOS_API_KEY which TestConfig pre-sets; cannot be unset for one test in a shared process (Edition 2024 unsafe env::remove_var + parallel tests)"] async fn analyze_case_without_llm_returns_503() { let (cfg, settings) = cfg_without_llm("f"); let case_id = "11111111-1111-1111-1111-111111111111"; let case_dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording(&case_dir, "2026-04-15T10-00-00Z", Some("ok")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let resp = app .oneshot(csrf_form_post( paths::case_analyze(case_id), &cookie, &csrf, "", )) .await .unwrap(); assert_eq!(resp.status(), StatusCode::SERVICE_UNAVAILABLE); } // --------------------------------------------------------------------- // HTTP-level happy path + race // --------------------------------------------------------------------- #[tokio::test] async fn analyze_case_happy_path_writes_input_and_redirects() { let (cfg, settings) = cfg_llm("g"); let case_id = "11111111-1111-1111-1111-111111111111"; let case_dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording( &case_dir, "2026-04-15T10-00-00Z", Some("Patient klagt über Knie."), ); seed_recording( &case_dir, "2026-04-15T10-05-00Z", Some("Korrektur: links, nicht rechts."), ); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let resp = app .oneshot(csrf_form_post( paths::case_analyze(case_id), &cookie, &csrf, "", )) .await .unwrap(); assert_eq!(resp.status(), StatusCode::SEE_OTHER); assert_eq!( resp.headers() .get(header::LOCATION) .unwrap() .to_str() .unwrap(), format!("/cases/{case_id}") ); let input_path = case_dir.join(ANALYSIS_INPUT_FILE); assert!(input_path.exists(), "analysis_input.json missing"); let raw = std::fs::read_to_string(&input_path).unwrap(); let parsed: Value = serde_json::from_str(&raw).unwrap(); let recs = parsed["recordings"].as_array().unwrap(); assert_eq!(recs.len(), 2); assert_eq!(recs[0]["recorded_at"], "2026-04-15T10:00:00Z"); assert_eq!(recs[0]["text"], "Patient klagt über Knie."); assert_eq!(recs[1]["recorded_at"], "2026-04-15T10:05:00Z"); assert!(parsed["last_recording_mtime"].is_string()); } #[tokio::test] async fn analyze_case_second_time_returns_409() { let (cfg, settings) = cfg_llm("h"); let case_id = "11111111-1111-1111-1111-111111111111"; let case_dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording(&case_dir, "2026-04-15T10-00-00Z", Some("text")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let first = app .clone() .oneshot(csrf_form_post( paths::case_analyze(case_id), &cookie, &csrf, "", )) .await .unwrap(); assert_eq!(first.status(), StatusCode::SEE_OTHER); let second = app .oneshot(csrf_form_post( paths::case_analyze(case_id), &cookie, &csrf, "", )) .await .unwrap(); assert_eq!(second.status(), StatusCode::CONFLICT); } /// Bug regression (case c414cf52, 2026-05-03): a prior LLM run failed, /// leaving `analysis_input.json` AND `.analysis_failed.json` on disk. /// The user clicks "Erneut versuchen" — the handler must accept the /// retry instead of rejecting it as 409 Conflict ("Analyse läuft /// bereits"). The failure marker is the explicit "worker has given up" /// signal that legitimises overwriting the stale sentinel. #[tokio::test] async fn analyze_retry_after_failure_marker_overwrites_stale_input() { let (cfg, settings) = cfg_llm("retry-after-fail"); let case_id = "11111111-1111-1111-1111-111111111111"; let case_dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording(&case_dir, "2026-04-15T10-00-00Z", Some("frischer Text")); // Simulate the post-failure on-disk state: stale input from the // attempt the worker gave up on, plus the matching failure marker. std::fs::write( case_dir.join(ANALYSIS_INPUT_FILE), r#"{"last_recording_mtime":"2026-04-15T10:00:00Z","recordings":[{"recorded_at":"2026-04-15T10:00:00Z","text":"alter Text"}],"backend_id":""}"#, ) .unwrap(); std::fs::write( case_dir.join(".analysis_failed.json"), r#"{"last_recording_mtime":"2026-04-15T10:00:00Z","reason":"llm: connect timeout","failed_at":"2026-04-15T10:05:00Z"}"#, ) .unwrap(); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let resp = app .oneshot(csrf_form_post( paths::case_analyze(case_id), &cookie, &csrf, "", )) .await .unwrap(); assert_eq!( resp.status(), StatusCode::SEE_OTHER, "retry with failure marker present must succeed, not 409" ); // Input was rewritten with the fresh transcript — the stale "alter Text" // must be gone. let raw = std::fs::read_to_string(case_dir.join(ANALYSIS_INPUT_FILE)).unwrap(); let parsed: Value = serde_json::from_str(&raw).unwrap(); let recs = parsed["recordings"].as_array().unwrap(); assert_eq!(recs.len(), 1); assert_eq!(recs[0]["text"], "frischer Text"); } #[tokio::test] async fn analyze_case_skips_blank_transcript_from_recordings() { let (cfg, settings) = cfg_llm("i"); let case_id = "11111111-1111-1111-1111-111111111111"; let case_dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording(&case_dir, "2026-04-15T10-00-00Z", Some("echt")); seed_recording(&case_dir, "2026-04-15T10-05-00Z", Some(" ")); // blank seed_recording(&case_dir, "2026-04-15T10-10-00Z", Some("auch echt")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let resp = app .oneshot(csrf_form_post( paths::case_analyze(case_id), &cookie, &csrf, "", )) .await .unwrap(); assert_eq!(resp.status(), StatusCode::SEE_OTHER); let raw = std::fs::read_to_string(case_dir.join(ANALYSIS_INPUT_FILE)).unwrap(); let parsed: Value = serde_json::from_str(&raw).unwrap(); let recs = parsed["recordings"].as_array().unwrap(); assert_eq!(recs.len(), 2, "blank transcript must be filtered out"); } // --------------------------------------------------------------------- // Worker + wiremock integration // // These end-to-end tests build a wiremock server and used to override // the LLM endpoint via `settings.llm.url`. After the multi-backend // refactor (analyze::backend), the active backend list is built once // per process from hard-coded URLs (Ionos endpoint) and `IONOS_API_KEY` // — there is no per-test hook to point chat_once() at a wiremock // server. Re-enabling these tests requires injecting a per-test // `Vec` through the worker (Arc<...> instead of the static // catalog). Marked `#[ignore]` for now; the orthogonal coverage from // the case_page_test integration tests still exercises the rest of the // flow. // --------------------------------------------------------------------- #[tokio::test] #[ignore = "needs per-test backend injection (see module comment)"] async fn analyze_worker_writes_document_via_wiremock() { let tmp = unique_tmpdir("analyze-w"); let case_dir = tmp.join("dr_a/11111111-1111-1111-1111-111111111111"); std::fs::create_dir_all(&case_dir).unwrap(); let input = json!({ "last_recording_mtime": "2026-04-15T10:00:00Z", "recordings": [ { "recorded_at": "2026-04-15T10:00:00Z", "text": "Patient mit Knie." } ] }); std::fs::write( case_dir.join(ANALYSIS_INPUT_FILE), serde_json::to_vec_pretty(&input).unwrap(), ) .unwrap(); let mock = MockServer::start().await; Mock::given(method("POST")) .and(path("/v1/chat/completions")) .respond_with(ResponseTemplate::new(200).set_body_json(json!({ "choices": [{ "message": { "content": "Zusammenfassung: Knie-Beschwerden." } }] }))) .mount(&mock) .await; let _ = TestConfig::new() .with_label("analyze-w") .with_data_path(tmp.clone()) .with_user(test_user("dr_a")) .with_llm(mock.uri()) .build_pair(); let (tx, rx) = analyze::channel(); let client = reqwest::Client::new(); let busy = Arc::new(std::sync::atomic::AtomicBool::new(false)); let vocab = Arc::new(doctate_server::gazetteer::Gazetteer::empty()); let handle = tokio::spawn(analyze::worker::run( rx, client, busy, vocab, doctate_server::events::channel(), )); tx.send(analyze::AnalyzeJob { case_dir: case_dir.clone(), }) .unwrap(); // Poll for the document (worker is in a separate task). let document_path = case_dir.join(DOCUMENT_FILE); let deadline = std::time::Instant::now() + Duration::from_secs(5); while !document_path.exists() { if std::time::Instant::now() > deadline { panic!("document.md not written within 5s"); } tokio::time::sleep(Duration::from_millis(20)).await; } let content = std::fs::read_to_string(&document_path).unwrap(); assert!( content.contains("Knie-Beschwerden"), "unexpected content: {content}" ); drop(tx); let _ = tokio::time::timeout(Duration::from_secs(2), handle).await; } /// The analyze worker must pass the LLM output through the Gazetteer /// as a post-AI normalization filter. The mock LLM is primed to return /// "Zerebrum" (an edit-distance-1 variant of the vocab entry /// "Cerebrum"). The persisted `document.md` must contain the canonical /// "Cerebrum", not the LLM's drift. #[tokio::test] #[ignore = "needs per-test backend injection (see module comment)"] async fn analyze_worker_normalizes_llm_output() { let tmp = unique_tmpdir("analyze-gaz"); let case_dir = tmp.join("dr_a/22222222-2222-2222-2222-222222222222"); std::fs::create_dir_all(&case_dir).unwrap(); let input = json!({ "last_recording_mtime": "2026-04-15T10:00:00Z", "recordings": [ { "recorded_at": "2026-04-15T10:00:00Z", "text": "Patient mit Blutung im Zerebrum." } ] }); std::fs::write( case_dir.join(ANALYSIS_INPUT_FILE), serde_json::to_vec_pretty(&input).unwrap(), ) .unwrap(); // Vocab directory with a single anatomy entry. let vocab_dir = unique_tmpdir("analyze-vocab"); std::fs::create_dir_all(&vocab_dir).unwrap(); std::fs::write(vocab_dir.join("anatomy.txt"), "Cerebrum\n").unwrap(); let vocab = Arc::new( doctate_server::gazetteer::Gazetteer::load_dir(&vocab_dir) .await .unwrap(), ); assert_eq!(vocab.len(), 1); // Mock LLM returns the *uncorrected* form — we're proving the // gazetteer rewrites it on the way out of the analyze worker. let mock = MockServer::start().await; Mock::given(method("POST")) .and(path("/v1/chat/completions")) .respond_with(ResponseTemplate::new(200).set_body_json(json!({ "choices": [{ "message": { "content": "Patient mit Blutung im Zerebrum." } }] }))) .mount(&mock) .await; let _ = TestConfig::new() .with_label("analyze-gaz") .with_data_path(tmp.clone()) .with_user(test_user("dr_a")) .with_llm(mock.uri()) .build_pair(); let (tx, rx) = analyze::channel(); let client = reqwest::Client::new(); let busy = Arc::new(std::sync::atomic::AtomicBool::new(false)); let handle = tokio::spawn(analyze::worker::run( rx, client, busy, vocab, doctate_server::events::channel(), )); tx.send(analyze::AnalyzeJob { case_dir: case_dir.clone(), }) .unwrap(); let document_path = case_dir.join(DOCUMENT_FILE); let deadline = std::time::Instant::now() + Duration::from_secs(5); while !document_path.exists() { if std::time::Instant::now() > deadline { panic!("document.md not written within 5s"); } tokio::time::sleep(Duration::from_millis(20)).await; } // The persisted document must show the canonical form even though // the LLM returned the drift form. let document = std::fs::read_to_string(&document_path).unwrap(); assert_eq!(document, "Patient mit Blutung im Cerebrum."); // Sanity: one LLM call happened. let requests = mock.received_requests().await.unwrap(); assert_eq!(requests.len(), 1, "expected exactly one LLM request"); drop(tx); let _ = tokio::time::timeout(Duration::from_secs(2), handle).await; } /// Manual debug utility — not part of the default test set. /// Usage: /// DRY_CASE_DIR=/path/to/case cargo test --test analyze_test replace_real_case_dry -- --ignored --nocapture /// /// Prints each transcript in a given case dir side-by-side with its /// gazetteer-normalized version. Useful to eyeball false-positives / /// false-negatives on real cases. #[tokio::test] #[ignore] async fn replace_real_case_dry() { let vocab_dir = std::env::var("DRY_VOCAB_DIR") .unwrap_or_else(|_| "/home/brummel/dev/doctate/server/vocab".into()); let case_dir = std::env::var("DRY_CASE_DIR").unwrap_or_else(|_| { "/home/brummel/dev/doctate/tmpdata/dr_mueller/e817d8b8-43eb-436a-8364-76b80a1e627b".into() }); let vocab = doctate_server::gazetteer::Gazetteer::load_dir(Path::new(&vocab_dir)) .await .expect("load vocab"); println!("Gazetteer entries: {}", vocab.len()); // Pair the recording metadata sidecars (`.json`) with their // audio file so case-level JSONs (oneliner.json, analysis_input.json) // are skipped automatically. let mut names: Vec<_> = std::fs::read_dir(&case_dir) .unwrap() .filter_map(|e| e.ok().map(|e| e.path())) .filter(|p| { let Some(stem) = p .file_name() .and_then(|n| n.to_str()) .and_then(|s| s.strip_suffix(".json")) else { return false; }; // Per-recording sidecar iff a sibling `.m4a` exists. p.with_file_name(format!("{stem}.m4a")).exists() }) .collect(); names.sort(); for path in names { let bytes = std::fs::read(&path).unwrap(); let meta: doctate_common::RecordingMeta = match serde_json::from_slice(&bytes) { Ok(m) => m, Err(e) => { println!( "\n=== {} === [malformed: {e}]", path.file_name().unwrap().to_string_lossy() ); continue; } }; let text = match meta.transcript { doctate_common::Transcript::Content { text } => text, doctate_common::Transcript::Silent => { println!( "\n=== {} === [silent — no text]", path.file_name().unwrap().to_string_lossy() ); continue; } }; let replaced = vocab.replace(&text); println!("\n=== {} ===", path.file_name().unwrap().to_string_lossy()); println!("--- original ---\n{text}"); println!("--- replaced ---\n{replaced}"); if replaced == text { println!("[no replacements applied]"); } } } // --------------------------------------------------------------------- // Recovery // --------------------------------------------------------------------- /// Boot-scan is observation-only after the typed-state refactor: even a /// case sitting in the `Queued` state on disk must NOT be re-enqueued /// at startup. The per-page-render `try_enqueue_all_for_user` is the /// only auto-trigger. #[tokio::test] async fn recovery_does_not_enqueue_at_boot() { let tmp = unique_tmpdir("analyze-r1"); let case_dir = tmp.join("dr_a/11111111-1111-1111-1111-111111111111"); std::fs::create_dir_all(&case_dir).unwrap(); std::fs::write(case_dir.join(ANALYSIS_INPUT_FILE), "{}").unwrap(); let (_tx, mut rx) = analyze::channel(); analyze::recovery::boot_scan_state( &tmp, std::time::Duration::ZERO, std::time::SystemTime::now(), std::time::SystemTime::UNIX_EPOCH, ) .await; assert!( rx.try_recv().is_err(), "boot scan must not enqueue any jobs in the new state model" ); } // --------------------------------------------------------------------- // Re-analysis path: same handler, version derived from existing documents // --------------------------------------------------------------------- #[tokio::test] async fn analyze_deletes_old_document_and_writes_fresh_input() { let (cfg, settings) = cfg_llm("rn-5"); let case_id = "11111111-1111-1111-1111-111111111111"; let case_dir = seed_case(&cfg.data_path, "dr_a", case_id); write_document_for_test(&case_dir, "altes Dokument", "1970-01-01T00:00:00Z"); seed_recording(&case_dir, "2026-04-15T10-00-00Z", Some("erste Aufnahme")); seed_recording(&case_dir, "2026-04-15T10-05-00Z", Some("zweite Aufnahme")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let resp = app .oneshot(csrf_form_post( paths::case_analyze(case_id), &cookie, &csrf, "", )) .await .unwrap(); assert_eq!(resp.status(), StatusCode::SEE_OTHER); assert!( !case_dir.join(DOCUMENT_FILE).exists(), "old document must be deleted before re-analysis" ); let input_path = case_dir.join(ANALYSIS_INPUT_FILE); assert!(input_path.exists(), "analysis_input.json missing"); let parsed: Value = serde_json::from_str(&std::fs::read_to_string(&input_path).unwrap()).unwrap(); assert_eq!(parsed["recordings"].as_array().unwrap().len(), 2); } // --------------------------------------------------------------------- // Close / Reopen // --------------------------------------------------------------------- #[tokio::test] async fn close_writes_marker_and_hides_case() { let (cfg, settings) = cfg_llm("close-1"); let case_id = "11111111-1111-1111-1111-111111111111"; let case_dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording(&case_dir, "2026-04-15T10-00-00Z", Some("ok")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let resp = app .oneshot(csrf_form_post( paths::case_close(case_id), &cookie, &csrf, "", )) .await .unwrap(); assert_eq!(resp.status(), StatusCode::SEE_OTHER); assert_eq!( resp.headers() .get(header::LOCATION) .unwrap() .to_str() .unwrap(), "/cases" ); let marker = case_dir.join(CLOSE_MARKER); assert!(marker.exists(), ".closed marker missing"); let raw = std::fs::read_to_string(&marker).unwrap(); let parsed: Value = serde_json::from_str(&raw).unwrap(); assert!( parsed["closed_at"].is_string(), "closed_at must be a string" ); } #[tokio::test] async fn closed_case_returns_404_on_detail() { let (cfg, settings) = cfg_llm("close-2"); let case_id = "11111111-1111-1111-1111-111111111111"; let case_dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording(&case_dir, "2026-04-15T10-00-00Z", Some("ok")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let resp = app .clone() .oneshot(csrf_form_post( paths::case_close(case_id), &cookie, &csrf, "", )) .await .unwrap(); assert_eq!(resp.status(), StatusCode::SEE_OTHER); let resp = app .oneshot(get_with_cookie(paths::case_detail(case_id), &cookie)) .await .unwrap(); assert_eq!(resp.status(), StatusCode::NOT_FOUND); } #[tokio::test] async fn reopen_removes_marker_and_restores_case() { let (cfg, settings) = cfg_llm("reopen-1"); let case_id = "11111111-1111-1111-1111-111111111111"; let case_dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording(&case_dir, "2026-04-15T10-00-00Z", Some("ok")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; // Close, then reopen via the explicit endpoint. let _ = app .clone() .oneshot(csrf_form_post( paths::case_close(case_id), &cookie, &csrf, "", )) .await .unwrap(); assert!(case_dir.join(CLOSE_MARKER).exists()); let resp = app .clone() .oneshot(csrf_form_post( paths::case_reopen(case_id), &cookie, &csrf, "", )) .await .unwrap(); assert_eq!(resp.status(), StatusCode::SEE_OTHER); assert!( !case_dir.join(CLOSE_MARKER).exists(), ".closed marker must be gone after reopen" ); // Case is addressable again at the detail route — no lingering state. let detail = app .oneshot(get_with_cookie(paths::case_detail(case_id), &cookie)) .await .unwrap(); assert_eq!(detail.status(), StatusCode::OK); } #[tokio::test] async fn show_closed_query_includes_closed_cases() { let (cfg, settings) = cfg_llm("show-closed"); let case_id = "11111111-1111-1111-1111-111111111111"; let case_dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording(&case_dir, "2026-04-15T10-00-00Z", Some("a closed one")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; // Close first. let _ = app .clone() .oneshot(csrf_form_post( paths::case_close(case_id), &cookie, &csrf, "", )) .await .unwrap(); // Default listing must NOT show it. let body = common::body_string( app.clone() .oneshot(get_with_cookie(paths::CASES, &cookie)) .await .unwrap(), ) .await; assert!( !body.contains(case_id), "default /cases must hide closed cases" ); // With show_closed=1 it must appear, with the closed badge. let body = common::body_string( app.oneshot(get_with_cookie("/cases?show_closed=1", &cookie)) .await .unwrap(), ) .await; assert!( body.contains(case_id), "show_closed=1 must list closed cases" ); assert!( body.contains("geschlossen"), "closed badge must render in show_closed mode" ); assert!( body.contains("reopen"), "reopen button must be rendered for closed cases" ); } #[tokio::test] async fn closed_case_detail_with_show_closed_returns_200() { let (cfg, settings) = cfg_llm("show-detail"); let case_id = "11111111-1111-1111-1111-111111111111"; let case_dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording(&case_dir, "2026-04-15T10-00-00Z", Some("x")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let _ = app .clone() .oneshot(csrf_form_post( paths::case_close(case_id), &cookie, &csrf, "", )) .await .unwrap(); // With ?show_closed=1 → 200 with the reopen form. let body = common::body_string( app.oneshot(get_with_cookie( format!("{}?show_closed=1", paths::case_detail(case_id)), &cookie, )) .await .unwrap(), ) .await; assert!( body.contains(&format!("{}/reopen", paths::case_detail(case_id))), "detail page of a closed case must offer a reopen form" ); assert!( !body.contains(&format!("{}\"", paths::case_close(case_id))), "detail page of a closed case must NOT offer a close form" ); } #[tokio::test] async fn close_redirects_back_to_referer_query() { // Close from the show-closed listing must keep ?show_closed=1 so // the user stays in the view they were in. let (cfg, settings) = cfg_llm("close-ref-q"); let case_id = "11111111-1111-1111-1111-111111111111"; let case_dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording(&case_dir, "2026-04-15T10-00-00Z", Some("ok")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let mut req = csrf_form_post(paths::case_close(case_id), &cookie, &csrf, ""); req.headers_mut() .insert(header::REFERER, "/cases?show_closed=1".parse().unwrap()); let resp = app.oneshot(req).await.unwrap(); assert_eq!(resp.status(), StatusCode::SEE_OTHER); assert_eq!( resp.headers() .get(header::LOCATION) .unwrap() .to_str() .unwrap(), "/cases?show_closed=1" ); } #[tokio::test] async fn close_from_detail_redirects_to_list_preserving_query() { // Close from /cases/{uuid}?show_closed=1 must NOT redirect back // to the detail page (it 404s after the close). The uuid segment // is stripped; the query survives so the user lands in show-closed. let (cfg, settings) = cfg_llm("close-ref-det"); let case_id = "11111111-1111-1111-1111-111111111111"; let case_dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording(&case_dir, "2026-04-15T10-00-00Z", Some("ok")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let mut req = csrf_form_post(paths::case_close(case_id), &cookie, &csrf, ""); req.headers_mut().insert( header::REFERER, format!("{}?show_closed=1", paths::case_detail(case_id)) .parse() .unwrap(), ); let resp = app.oneshot(req).await.unwrap(); assert_eq!(resp.status(), StatusCode::SEE_OTHER); assert_eq!( resp.headers() .get(header::LOCATION) .unwrap() .to_str() .unwrap(), "/cases?show_closed=1", "close from detail must redirect to the LIST with the query intact" ); } #[tokio::test] async fn reopen_redirects_back_to_referer() { // User reopens a case from the show-closed listing. The redirect // must preserve `?show_closed=1` so the user stays in that view // instead of being ejected back to the default open-only listing. let (cfg, settings) = cfg_llm("reopen-ref"); let case_id = "11111111-1111-1111-1111-111111111111"; let case_dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording(&case_dir, "2026-04-15T10-00-00Z", Some("ok")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let _ = app .clone() .oneshot(csrf_form_post( paths::case_close(case_id), &cookie, &csrf, "", )) .await .unwrap(); let mut req = csrf_form_post(paths::case_reopen(case_id), &cookie, &csrf, ""); req.headers_mut() .insert(header::REFERER, "/cases?show_closed=1".parse().unwrap()); let resp = app.oneshot(req).await.unwrap(); assert_eq!(resp.status(), StatusCode::SEE_OTHER); assert_eq!( resp.headers() .get(header::LOCATION) .unwrap() .to_str() .unwrap(), "/cases?show_closed=1", "reopen must redirect back to the referer path (preserving the query)" ); } #[tokio::test] async fn reopen_is_noop_on_open_case() { let (cfg, settings) = cfg_llm("reopen-2"); let case_id = "11111111-1111-1111-1111-111111111111"; let case_dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording(&case_dir, "2026-04-15T10-00-00Z", Some("ok")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let resp = app .oneshot(csrf_form_post( paths::case_reopen(case_id), &cookie, &csrf, "", )) .await .unwrap(); assert_eq!(resp.status(), StatusCode::SEE_OTHER); assert!(!case_dir.join(CLOSE_MARKER).exists()); } #[tokio::test] async fn purge_closed_removes_directory() { // purge-closed is admin-only (matches the UI, which hides the bar). let (cfg, settings) = cfg_llm_admin("purge-1"); let case_id = "11111111-1111-1111-1111-111111111111"; let case_dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording(&case_dir, "2026-04-15T10-00-00Z", Some("ok")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let _ = app .clone() .oneshot(csrf_form_post( paths::case_close(case_id), &cookie, &csrf, "", )) .await .unwrap(); assert!(case_dir.join(CLOSE_MARKER).exists()); let resp = app .oneshot(csrf_form_post( paths::PURGE_CLOSED, &cookie, &csrf, "confirm=yes", )) .await .unwrap(); assert_eq!(resp.status(), StatusCode::SEE_OTHER); assert!( !case_dir.exists(), "case directory must be removed after purge" ); } #[tokio::test] async fn purge_requires_confirm_param() { let (cfg, settings) = cfg_llm_admin("purge-2"); let case_id = "11111111-1111-1111-1111-111111111111"; let case_dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording(&case_dir, "2026-04-15T10-00-00Z", Some("ok")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let _ = app .clone() .oneshot(csrf_form_post( paths::case_close(case_id), &cookie, &csrf, "", )) .await .unwrap(); let resp = app .oneshot(csrf_form_post(paths::PURGE_CLOSED, &cookie, &csrf, "")) .await .unwrap(); assert_eq!(resp.status(), StatusCode::BAD_REQUEST); assert!( case_dir.exists(), "case directory must survive purge without confirm=yes" ); assert!(case_dir.join(CLOSE_MARKER).exists()); } #[tokio::test] async fn purge_closed_keeps_open_cases() { let (cfg, settings) = cfg_llm_admin("purge-3"); let closed_id = "11111111-1111-1111-1111-111111111111"; let open_id = "22222222-2222-2222-2222-222222222222"; let dir_closed = seed_case(&cfg.data_path, "dr_a", closed_id); let dir_open = seed_case(&cfg.data_path, "dr_a", open_id); seed_recording(&dir_closed, "2026-04-15T10-00-00Z", Some("a")); seed_recording(&dir_open, "2026-04-15T10-00-00Z", Some("b")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let _ = app .clone() .oneshot(csrf_form_post( paths::case_close(closed_id), &cookie, &csrf, "", )) .await .unwrap(); let resp = app .oneshot(csrf_form_post( paths::PURGE_CLOSED, &cookie, &csrf, "confirm=yes", )) .await .unwrap(); assert_eq!(resp.status(), StatusCode::SEE_OTHER); assert!(!dir_closed.exists(), "closed case must be purged"); assert!(dir_open.exists(), "open case must survive the purge"); } /// Regression guard: purge-closed is destructive and admin-only. A /// non-admin POST must be rejected with 403 and leave the closed case /// directory intact. #[tokio::test] async fn purge_closed_rejected_for_non_admin() { // Default `test_user` is role=doctor. let (cfg, settings) = cfg_llm("purge-nonadmin"); let case_id = "11111111-1111-1111-1111-111111111111"; let case_dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording(&case_dir, "2026-04-15T10-00-00Z", Some("ok")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; // Close the case first so there is something for purge to target. let _ = app .clone() .oneshot(csrf_form_post( paths::case_close(case_id), &cookie, &csrf, "", )) .await .unwrap(); let resp = app .oneshot(csrf_form_post( paths::PURGE_CLOSED, &cookie, &csrf, "confirm=yes", )) .await .unwrap(); assert_eq!(resp.status(), StatusCode::FORBIDDEN); assert!(case_dir.exists(), "non-admin must not be able to purge"); } #[tokio::test] async fn bulk_close_shares_one_closed_at_timestamp() { // Bulk actions are admin-only since the UI hides the selection // from non-admins; the handler enforces the same gate. let (cfg, settings) = cfg_llm_admin("bulk-c"); let case_a = "11111111-1111-1111-1111-111111111111"; let case_b = "22222222-2222-2222-2222-222222222222"; let dir_a = seed_case(&cfg.data_path, "dr_a", case_a); let dir_b = seed_case(&cfg.data_path, "dr_a", case_b); seed_recording(&dir_a, "2026-04-15T10-00-00Z", Some("a")); seed_recording(&dir_b, "2026-04-15T10-05-00Z", Some("b")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let body = format!( "action={}&case_id={case_a}&case_id={case_b}", BulkAction::Close ); let resp = app .oneshot(csrf_form_post(paths::BULK, &cookie, &csrf, &body)) .await .unwrap(); assert_eq!(resp.status(), StatusCode::SEE_OTHER); let m_a: Value = serde_json::from_str(&std::fs::read_to_string(dir_a.join(CLOSE_MARKER)).unwrap()).unwrap(); let m_b: Value = serde_json::from_str(&std::fs::read_to_string(dir_b.join(CLOSE_MARKER)).unwrap()).unwrap(); assert_eq!( m_a["closed_at"], m_b["closed_at"], "bulk-close must share one closed_at timestamp across its selection" ); } #[tokio::test] async fn bulk_analyze_processes_each_selected_case() { // Bulk analyze is admin-only (UI + handler). let (cfg, settings) = cfg_llm_admin("bulk-a"); let case_a = "11111111-1111-1111-1111-111111111111"; let case_b = "22222222-2222-2222-2222-222222222222"; let dir_a = seed_case(&cfg.data_path, "dr_a", case_a); let dir_b = seed_case(&cfg.data_path, "dr_a", case_b); seed_recording(&dir_a, "2026-04-15T10-00-00Z", Some("a")); seed_recording(&dir_b, "2026-04-15T10-05-00Z", Some("b")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let body = format!( "action={}&case_id={case_a}&case_id={case_b}", BulkAction::Analyze ); let resp = app .oneshot(csrf_form_post(paths::BULK, &cookie, &csrf, &body)) .await .unwrap(); assert_eq!(resp.status(), StatusCode::SEE_OTHER); assert!(dir_a.join(ANALYSIS_INPUT_FILE).exists()); assert!(dir_b.join(ANALYSIS_INPUT_FILE).exists()); } #[tokio::test] async fn recovery_skips_closed_cases() { let tmp = unique_tmpdir("analyze-rec-closed"); let case_dir = tmp.join("dr_a/11111111-1111-1111-1111-111111111111"); std::fs::create_dir_all(&case_dir).unwrap(); std::fs::write(case_dir.join(ANALYSIS_INPUT_FILE), "{}").unwrap(); std::fs::write( case_dir.join(CLOSE_MARKER), r#"{"closed_at":"2026-04-15T10:00:00Z"}"#, ) .unwrap(); let summary = analyze::recovery::boot_scan_state( &tmp, std::time::Duration::ZERO, std::time::SystemTime::now(), std::time::SystemTime::UNIX_EPOCH, ) .await; assert_eq!( summary, analyze::recovery::BootStateSummary::default(), "closed case must not appear in any state bucket" ); } // --------------------------------------------------------------------- // Admin-only reset // --------------------------------------------------------------------- #[tokio::test] async fn reset_case_clears_derived_and_unfails_audio() { let (cfg, settings) = cfg_llm_admin("reset-admin"); let case_id = "11111111-1111-1111-1111-111111111111"; let dir = seed_case(&cfg.data_path, "dr_a", case_id); // Good recording with transcript. seed_recording(&dir, "2026-04-15T09-00-00Z", Some("hallo")); // A failed recording: raw audio written, but filename carries `.failed`. std::fs::write(dir.join("2026-04-15T09-05-00Z.m4a.failed"), b"audio-bytes").unwrap(); // Derived artefacts the reset must wipe. std::fs::write( dir.join(ONELINER_FILENAME), br#"{"kind":"ready","text":"Knie re.","generated_at":"2026-04-18T10:00:00Z"}"#, ) .unwrap(); write_document_for_test(&dir, "# Doc\n", "1970-01-01T00:00:00Z"); std::fs::write(dir.join(ANALYSIS_INPUT_FILE), "{}").unwrap(); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let resp = app .oneshot(csrf_form_post( paths::case_reset(case_id), &cookie, &csrf, "", )) .await .unwrap(); assert_eq!(resp.status(), StatusCode::SEE_OTHER); assert_eq!( resp.headers().get(header::LOCATION).unwrap(), &format!("/cases/{case_id}") ); // Audio preserved, .failed renamed to .m4a. assert!(dir.join("2026-04-15T09-00-00Z.m4a").exists()); assert!(dir.join("2026-04-15T09-05-00Z.m4a").exists()); assert!(!dir.join("2026-04-15T09-05-00Z.m4a.failed").exists()); // Derived artefacts gone. assert!(!dir.join("2026-04-15T09-00-00Z.json").exists()); assert!(!dir.join(ONELINER_FILENAME).exists()); assert!(!dir.join(DOCUMENT_FILE).exists()); assert!(!dir.join(ANALYSIS_INPUT_FILE).exists()); } #[tokio::test] async fn reset_case_requires_admin() { // Default `test_user` has role=doctor, not admin. let (cfg, settings) = cfg_llm("reset-nonadmin"); let case_id = "11111111-1111-1111-1111-111111111111"; let dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording(&dir, "2026-04-15T09-00-00Z", Some("hallo")); write_document_for_test(&dir, "# Doc\n", "1970-01-01T00:00:00Z"); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let resp = app .oneshot(csrf_form_post( paths::case_reset(case_id), &cookie, &csrf, "", )) .await .unwrap(); assert_eq!(resp.status(), StatusCode::FORBIDDEN); // Nothing touched. assert!(dir.join("2026-04-15T09-00-00Z.json").exists()); assert!(dir.join(DOCUMENT_FILE).exists()); } #[tokio::test] async fn bulk_reset_processes_multiple_cases_admin_only() { let (cfg, settings) = TestConfig::new() .with_label("bulk-reset") .with_user(test_admin("dr_a")) .with_user(test_user("dr_b")) .with_llm("http://unused") .build_pair(); let case_a = "11111111-1111-1111-1111-111111111111"; let case_b = "22222222-2222-2222-2222-222222222222"; let dir_a = seed_case(&cfg.data_path, "dr_a", case_a); let dir_b = seed_case(&cfg.data_path, "dr_a", case_b); seed_recording(&dir_a, "2026-04-15T10-00-00Z", Some("a")); seed_recording(&dir_b, "2026-04-15T10-05-00Z", Some("b")); write_document_for_test(&dir_a, "A", "1970-01-01T00:00:00Z"); write_document_for_test(&dir_b, "B", "1970-01-01T00:00:00Z"); // dr_b gets its own case to verify non-admin branch without clobbering dr_a. let case_c = "33333333-3333-3333-3333-333333333333"; let dir_c = seed_case(&cfg.data_path, "dr_b", case_c); seed_recording(&dir_c, "2026-04-15T11-00-00Z", Some("c")); write_document_for_test(&dir_c, "C", "1970-01-01T00:00:00Z"); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); // Admin: bulk reset succeeds. let (cookie_admin, csrf_admin) = login_with_csrf(&app, &store, "dr_a", "s").await; let body = format!( "action={}&case_id={case_a}&case_id={case_b}", BulkAction::Reset ); let resp = app .clone() .oneshot(csrf_form_post( paths::BULK, &cookie_admin, &csrf_admin, &body, )) .await .unwrap(); assert_eq!(resp.status(), StatusCode::SEE_OTHER); assert!(!dir_a.join(DOCUMENT_FILE).exists()); assert!(!dir_b.join(DOCUMENT_FILE).exists()); assert!(!dir_a.join("2026-04-15T10-00-00Z.json").exists()); assert!(!dir_b.join("2026-04-15T10-05-00Z.json").exists()); // Non-admin: bulk reset is rejected, dr_b's case untouched. let (cookie_doctor, csrf_doctor) = login_with_csrf(&app, &store, "dr_b", "s").await; let body = format!("action={}&case_id={case_c}", BulkAction::Reset); let resp = app .oneshot(csrf_form_post( paths::BULK, &cookie_doctor, &csrf_doctor, &body, )) .await .unwrap(); assert_eq!(resp.status(), StatusCode::FORBIDDEN); assert!(dir_c.join(DOCUMENT_FILE).exists()); assert!(dir_c.join("2026-04-15T11-00-00Z.json").exists()); } /// Regression guard: the bulk route handles *all* actions (including /// `close`) and is admin-only. A non-admin POST must be rejected with /// 403 and the case must remain open. Matches the UI which no longer /// renders the bulk bar for non-admins. #[tokio::test] async fn bulk_close_rejected_for_non_admin() { // Default `test_user` is role=doctor. let (cfg, settings) = cfg_llm("bulk-close-nonadmin"); let case_id = "11111111-1111-1111-1111-111111111111"; let dir = seed_case(&cfg.data_path, "dr_a", case_id); seed_recording(&dir, "2026-04-15T10-00-00Z", Some("a")); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let body = format!("action={}&case_id={case_id}", BulkAction::Close); let resp = app .oneshot(csrf_form_post(paths::BULK, &cookie, &csrf, &body)) .await .unwrap(); assert_eq!(resp.status(), StatusCode::FORBIDDEN); // Close marker must NOT have been written. assert!(!dir.join(CLOSE_MARKER).exists()); } // --------------------------------------------------------------------- // Ollama-style (no-auth) provider // --------------------------------------------------------------------- /// Proves the analysis pipeline works against an OpenAI-compatible endpoint /// that expects **no** Authorization header — i.e. Ollama's `/v1` surface. /// Guard mock (registered first, so wiremock picks it up for any request that /// actually carries the header) must stay at `.expect(0)`; happy mock takes /// all no-auth calls. This catches any future regression where the client /// accidentally sends `Authorization: Bearer `. #[tokio::test] #[ignore = "needs per-test backend injection (see module comment)"] async fn analyze_works_against_ollama_style_endpoint_without_api_key() { let tmp = unique_tmpdir("analyze-ollama"); let case_dir = tmp.join("dr_a/22222222-2222-2222-2222-222222222222"); std::fs::create_dir_all(&case_dir).unwrap(); let input = json!({ "last_recording_mtime": "2026-04-16T10:00:00Z", "recordings": [ { "recorded_at": "2026-04-16T10:00:00Z", "text": "Test." } ] }); std::fs::write( case_dir.join(ANALYSIS_INPUT_FILE), serde_json::to_vec_pretty(&input).unwrap(), ) .unwrap(); let mock = MockServer::start().await; Mock::given(method("POST")) .and(path("/v1/chat/completions")) .and(wiremock::matchers::header_exists("authorization")) .respond_with(ResponseTemplate::new(500)) .expect(0) .mount(&mock) .await; Mock::given(method("POST")) .and(path("/v1/chat/completions")) .respond_with(ResponseTemplate::new(200).set_body_json(json!({ "choices": [{ "message": { "content": "# Doc via Ollama" } }] }))) .expect(1) .mount(&mock) .await; // Ollama-style config: explicitly empty api_key — `with_llm_explicit` // lets the builder carry "" through, whereas `with_llm` would default // to the hosted-provider test key. let _ = TestConfig::new() .with_label("analyze-ollama") .with_data_path(tmp.clone()) .with_user(test_user("dr_a")) .with_llm_explicit(mock.uri(), "", "llama3.3:70b") .build_pair(); let (tx, rx) = analyze::channel(); let client = reqwest::Client::new(); let busy = Arc::new(std::sync::atomic::AtomicBool::new(false)); let vocab = Arc::new(doctate_server::gazetteer::Gazetteer::empty()); let handle = tokio::spawn(analyze::worker::run( rx, client, busy, vocab, doctate_server::events::channel(), )); tx.send(analyze::AnalyzeJob { case_dir: case_dir.clone(), }) .unwrap(); let document_path = case_dir.join(DOCUMENT_FILE); let deadline = std::time::Instant::now() + Duration::from_secs(5); while !document_path.exists() { if std::time::Instant::now() > deadline { panic!("document.md not written within 5s"); } tokio::time::sleep(Duration::from_millis(20)).await; } let content = std::fs::read_to_string(&document_path).unwrap(); assert!(content.contains("Ollama"), "unexpected content: {content}"); drop(tx); let _ = tokio::time::timeout(Duration::from_secs(2), handle).await; } // --------------------------------------------------------------------- // Bulk "Aktualisieren" endpoint // --------------------------------------------------------------------- /// `POST /cases/analyze-required` walks every UUID-named case and force- /// enqueues those in `Required`/`Idle`. `Failed` and `Current` cases must /// stay untouched. We probe the resulting state via the on-disk /// `analysis_input.json` marker — written before the channel send, so its /// presence is the canonical "would have been enqueued" signal. #[tokio::test] async fn analyze_required_endpoint_enqueues_only_required_cases() { use doctate_server::analyze::auto_trigger::FailureMarker; use time::OffsetDateTime; use time::format_description::well_known::Rfc3339; fn to_rfc3339(t: std::time::SystemTime) -> String { OffsetDateTime::from(t).format(&Rfc3339).unwrap() } let (cfg, settings) = cfg_llm("ar-1"); let user_root = cfg.data_path.join("dr_a"); // Required: transcribed recording, no document. let req_id = "11111111-1111-1111-1111-111111111111"; let req_dir = seed_case(&cfg.data_path, "dr_a", req_id); seed_recording(&req_dir, "2026-04-15T10-00-00Z", Some("erste Aufnahme")); // Current: document covers the recording's mtime exactly. let cur_id = "22222222-2222-2222-2222-222222222222"; let cur_dir = seed_case(&cfg.data_path, "dr_a", cur_id); seed_recording(&cur_dir, "2026-04-15T10-00-00Z", Some("alles okay")); let cur_m4a_mtime = std::fs::metadata(cur_dir.join("2026-04-15T10-00-00Z.m4a")) .unwrap() .modified() .unwrap(); write_document_for_test(&cur_dir, "fertig", &to_rfc3339(cur_m4a_mtime)); // Failed: failure marker matches latest recording mtime. let fail_id = "33333333-3333-3333-3333-333333333333"; let fail_dir = seed_case(&cfg.data_path, "dr_a", fail_id); seed_recording(&fail_dir, "2026-04-15T10-00-00Z", Some("kaputt")); let fail_m4a_mtime = std::fs::metadata(fail_dir.join("2026-04-15T10-00-00Z.m4a")) .unwrap() .modified() .unwrap(); let marker = FailureMarker { last_recording_mtime: to_rfc3339(fail_m4a_mtime), reason: "test".into(), failed_at: "2026-04-15T10-05-00Z".into(), backend_id: None, details: None, }; std::fs::write( fail_dir.join(".analysis_failed.json"), serde_json::to_vec(&marker).unwrap(), ) .unwrap(); let (app, store) = doctate_server::create_router_and_session_store_with_settings(cfg, settings); let (cookie, csrf) = login_with_csrf(&app, &store, "dr_a", "s").await; let resp = app .oneshot(csrf_form_post(paths::ANALYZE_REQUIRED, &cookie, &csrf, "")) .await .unwrap(); assert_eq!(resp.status(), StatusCode::SEE_OTHER); assert_eq!( resp.headers().get(header::LOCATION).unwrap(), "/cases", "must redirect back to the case list" ); // Required → analysis_input.json was written, the case is now Queued. assert!( user_root.join(req_id).join(ANALYSIS_INPUT_FILE).exists(), "Required case must have been enqueued" ); // Current → no enqueue, document.json untouched. assert!( !user_root.join(cur_id).join(ANALYSIS_INPUT_FILE).exists(), "Current case must not be enqueued" ); assert!( user_root.join(cur_id).join(DOCUMENT_FILE).exists(), "Current case's document must remain in place" ); // Failed → no enqueue. Marker stays so the user sees the failure // banner on the case page and can retry per-backend manually. assert!( !user_root.join(fail_id).join(ANALYSIS_INPUT_FILE).exists(), "Failed case must not be enqueued" ); assert!( user_root .join(fail_id) .join(".analysis_failed.json") .exists(), "failure marker must persist" ); }