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* test: fit the relock no-op tests inside the worker timeout Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01VwxTTC4GsAANBjEZki2cft * test: share one wait budget in the relock no-op tests Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01VwxTTC4GsAANBjEZki2cft * test: bound a whole relock wait on one deadline and idle the drain Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01VwxTTC4GsAANBjEZki2cft * test: drop the redundant drain sleep in the relock no-op tests Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01VwxTTC4GsAANBjEZki2cft --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
440 lines
17 KiB
Rust
440 lines
17 KiB
Rust
// These pin language-independent behaviour, and Python is the cheapest runtime that still
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// generates a real lock out of relative imports, so the whole file needs that feature.
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#![cfg(feature = "python")]
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use sqlx::{Pool, Postgres};
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use tokio_stream::StreamExt;
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use windmill_api_client::types::NewScript;
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use windmill_common::scripts::{deploy_relocked_version, fetch_script_for_update};
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use windmill_test_utils::*;
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const W: &str = "test-workspace";
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/// Budget for one wait below, counted completions and drain together. Even against a cold cache
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/// these settle in a few seconds, so it only bounds a step that is stuck, and it stays under the
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/// 60s cap `in_test_worker` puts on the whole body so the panic names what was being waited on
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/// rather than surfacing as a worker timeout.
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const WAIT_BUDGET: std::time::Duration = std::time::Duration::from_secs(30);
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/// How often the waits below re-check. The drain reads the queue once per completion it waits
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/// this long for, so it doubles as the floor on one turn of that loop.
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const POLL: std::time::Duration = std::time::Duration::from_millis(20);
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const A: &str = "def main():\n return 'a'\n";
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const A_COMMENTED: &str = "# same dependencies, different content\ndef main():\n return 'a'\n";
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const A_WITH_TINY: &str = "import tiny\n\ndef main():\n return 'a'\n";
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const B: &str = "from f.rel.a import main as a\n\ndef main():\n return 'b' + a()\n";
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const C: &str = "from f.rel.b import main as b\n\ndef main():\n return 'c' + b()\n";
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fn py_script(path: &str, content: &str, parent_hash: Option<String>) -> NewScript {
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NewScript {
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draft_only: None,
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content: content.into(),
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language: windmill_api_client::types::ScriptLang::Python3,
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lock: None,
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parent_hash,
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path: path.into(),
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concurrent_limit: None,
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concurrency_time_window_s: None,
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cache_ttl: None,
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dedicated_worker: None,
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description: "".to_string(),
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envs: vec![],
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is_template: None,
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kind: None,
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summary: "".to_string(),
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tag: None,
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schema: std::collections::HashMap::new(),
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ws_error_handler_muted: Some(false),
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priority: None,
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delete_after_secs: None,
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timeout: None,
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restart_unless_cancelled: None,
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deployment_message: None,
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concurrency_key: None,
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visible_to_runner_only: None,
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auto_kind: None,
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codebase: None,
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has_preprocessor: None,
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on_behalf_of_email: None,
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assets: vec![],
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modules: None,
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}
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}
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#[derive(sqlx::FromRow, Debug)]
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struct Version {
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hash: i64,
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archived: bool,
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lock: Option<String>,
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created_at: chrono::DateTime<chrono::Utc>,
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}
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/// Every version of `path`, oldest first.
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async fn versions(db: &Pool<Postgres>, path: &str) -> Vec<Version> {
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sqlx::query_as(
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"SELECT hash, archived, lock, created_at FROM script
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WHERE workspace_id = $1 AND path = $2 ORDER BY created_at",
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)
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.bind(W)
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.bind(path)
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.fetch_all(db)
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.await
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.unwrap()
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}
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fn live(versions: &[Version]) -> &Version {
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versions.iter().rev().find(|v| !v.archived).unwrap()
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}
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/// `(path, status, logs)` of every dependency job created after `since`, in completion order.
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async fn dependency_jobs_since(
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db: &Pool<Postgres>,
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since: chrono::DateTime<chrono::Utc>,
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) -> Vec<(String, String, String)> {
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sqlx::query_as(
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"SELECT j.runnable_path, c.status::text, COALESCE(l.logs, '') FROM v2_job_completed c
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JOIN v2_job j ON j.id = c.id
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LEFT JOIN job_logs l ON l.job_id = c.id
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WHERE j.kind = 'dependencies' AND j.created_at > $1
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ORDER BY c.started_at",
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)
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.bind(since)
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.fetch_all(db)
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.await
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.unwrap()
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}
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async fn wait_for_jobs(
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db: &Pool<Postgres>,
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completed: &mut (impl futures::Stream<Item = uuid::Uuid> + Unpin),
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count: usize,
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) {
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let deadline = tokio::time::Instant::now() + WAIT_BUDGET;
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for i in 0..count {
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tokio::time::timeout_at(deadline, completed.next())
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.await
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.unwrap_or_else(|_| panic!("only {i} of {count} jobs completed"));
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}
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// Then let anything else that was queued run out, so a job the assertions say must not
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// exist would have shown up here. A dependency job queues its fan-out before it completes,
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// so an empty queue is a fixpoint rather than a lull.
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loop {
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while let Ok(Some(_)) = tokio::time::timeout(POLL, completed.next()).await {}
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let queued: i64 = sqlx::query_scalar("SELECT count(*) FROM v2_job_queue")
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.fetch_one(db)
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.await
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.unwrap();
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if queued == 0 {
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return;
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}
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assert!(
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tokio::time::Instant::now() < deadline,
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"the queue never emptied"
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);
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}
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}
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/// A redeploy of an imported script whose dependencies did not move relocks its importer,
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/// and that relock must deploy nothing: no new version, and no dependency job for the
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/// importer's own importers. A redeploy that does change the dependencies still walks the
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/// whole chain with a new version at each step.
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#[sqlx::test(fixtures("base"))]
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async fn relative_import_relock_deploys_only_when_the_lock_changed(
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db: Pool<Postgres>,
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) -> anyhow::Result<()> {
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std::env::set_var("DEPENDENCY_JOB_DEBOUNCE_DELAY", "0");
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let (client, port, _s) = init_client(db.clone()).await;
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let mut completed = listen_for_completed_jobs(&db).await;
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in_test_worker(
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&db,
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async {
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// One at a time: each deploy's dependency job records the importer's edges, and an
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// importer whose edges are recorded is what a later relock of it can skip on.
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for (path, content) in [("f/rel/a", A), ("f/rel/b", B), ("f/rel/c", C)] {
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client
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.create_script(W, &py_script(path, content, None))
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.await
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.unwrap();
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wait_for_jobs(&db, &mut completed, 1).await;
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}
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let b_before = versions(&db, "f/rel/b").await;
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let c_before = versions(&db, "f/rel/c").await;
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assert_eq!(b_before.len(), 1);
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assert_eq!(c_before.len(), 1);
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// Content-only change on the leaf.
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let since = chrono::Utc::now();
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let a_hash = live(&versions(&db, "f/rel/a").await).hash;
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client
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.create_script(
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W,
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&py_script("f/rel/a", A_COMMENTED, Some(format!("{a_hash:016x}"))),
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)
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.await
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.unwrap();
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wait_for_jobs(&db, &mut completed, 2).await;
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let jobs = dependency_jobs_since(&db, since).await;
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let paths: Vec<&str> = jobs.iter().map(|(p, _, _)| p.as_str()).collect();
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assert_eq!(
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paths,
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["f/rel/a", "f/rel/b"],
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"the leaf's own job and one no-op relock of its importer, and nothing for c"
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);
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assert!(
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jobs[1]
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.2
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.contains("Lock unchanged: no new version deployed"),
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"b's relock should have found its lock unchanged: {}",
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jobs[1].2
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);
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let b_after = versions(&db, "f/rel/b").await;
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let c_after = versions(&db, "f/rel/c").await;
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assert_eq!(
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b_after.len(),
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1,
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"an unchanged relock must not mint a version"
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);
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assert_eq!(live(&b_after).hash, live(&b_before).hash);
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assert_eq!(c_after.len(), 1);
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assert_eq!(live(&c_after).hash, live(&c_before).hash);
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// A dependency change on the leaf.
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let since = chrono::Utc::now();
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let a_hash = live(&versions(&db, "f/rel/a").await).hash;
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client
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.create_script(
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W,
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&py_script("f/rel/a", A_WITH_TINY, Some(format!("{a_hash:016x}"))),
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)
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.await
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.unwrap();
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wait_for_jobs(&db, &mut completed, 3).await;
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let jobs = dependency_jobs_since(&db, since).await;
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let paths: Vec<&str> = jobs.iter().map(|(p, _, _)| p.as_str()).collect();
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assert_eq!(paths, ["f/rel/a", "f/rel/b", "f/rel/c"]);
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for path in ["f/rel/b", "f/rel/c"] {
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let vs = versions(&db, path).await;
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assert_eq!(
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vs.len(),
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2,
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"{path}: a changed relock deploys a new version"
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);
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assert!(
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vs[0].archived && !vs[1].archived,
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"{path}: parent archived, child live"
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);
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assert!(vs[0].created_at < vs[1].created_at, "{path}: lineage order");
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assert!(
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vs[1].lock.as_deref().unwrap_or("").contains("tiny"),
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"{path}: the new version carries the new lock: {:?}",
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vs[1].lock
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);
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}
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},
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port,
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)
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.await;
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Ok(())
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}
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/// A relock that has to wait on its head's row lock, because a deploy of the same path holds
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/// it, must find the version that deploy left and requeue itself for it rather than fail. The
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/// blocked statement re-checks only the row it selected, which the deploy archived, and comes
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/// back empty; the successor is only visible to a fresh read.
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#[sqlx::test(fixtures("base"))]
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async fn relock_waiting_on_a_deploy_requeues_for_its_successor(
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db: Pool<Postgres>,
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) -> anyhow::Result<()> {
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std::env::set_var("DEPENDENCY_JOB_DEBOUNCE_DELAY", "0");
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let (client, port, _s) = init_client(db.clone()).await;
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let mut completed = listen_for_completed_jobs(&db).await;
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in_test_worker(
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&db,
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async {
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for (path, content) in [("f/rel/a", A), ("f/rel/b", B)] {
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client
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.create_script(W, &py_script(path, content, None))
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.await
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.unwrap();
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wait_for_jobs(&db, &mut completed, 1).await;
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}
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// A deploy of b that holds its head's row lock for as long as this transaction lives.
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let mut deploy = db.begin().await.unwrap();
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let head = fetch_script_for_update("f/rel/b", W, &mut *deploy)
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.await
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.unwrap()
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.unwrap();
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let since = chrono::Utc::now();
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let a_hash = live(&versions(&db, "f/rel/a").await).hash;
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client
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.create_script(
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W,
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&py_script("f/rel/a", A_COMMENTED, Some(format!("{a_hash:016x}"))),
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)
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.await
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.unwrap();
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// b's relock skips generation and reaches its commit, where it waits on the lock.
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let deadline = std::time::Instant::now() + WAIT_BUDGET;
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let mut waiting = false;
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while !waiting && std::time::Instant::now() < deadline {
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waiting = sqlx::query_scalar(
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"SELECT EXISTS (SELECT 1 FROM pg_stat_activity
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WHERE datname = current_database() AND wait_event_type = 'Lock'
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AND query LIKE '%FROM script WHERE path = $1%FOR UPDATE%')",
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)
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.fetch_one(&db)
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.await
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.unwrap();
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if !waiting {
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tokio::time::sleep(POLL).await;
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}
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}
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assert!(waiting, "b's relock never reached the row lock");
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// The deploy lands: the head is archived and a successor with its own lock takes
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// its place, while the relock is still waiting.
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let lock = head.lock.clone().unwrap();
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let successor =
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deploy_relocked_version(&mut deploy, head, None, Some(&lock), None, None)
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.await
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.unwrap();
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deploy.commit().await.unwrap();
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// a's own job, the relock that waited, and the relock it queued for the successor.
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wait_for_jobs(&db, &mut completed, 3).await;
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let jobs = dependency_jobs_since(&db, since).await;
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let paths: Vec<&str> = jobs.iter().map(|(p, _, _)| p.as_str()).collect();
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assert_eq!(paths, ["f/rel/a", "f/rel/b", "f/rel/b"], "{jobs:?}");
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assert!(
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jobs.iter().all(|(_, status, _)| status == "success"),
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"no relock may fail on the wait: {jobs:?}"
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);
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assert!(
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jobs[1]
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.2
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.contains("was deployed while this lock was generated"),
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"the waiting relock should have seen the successor: {}",
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jobs[1].2
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);
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assert!(
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jobs[2]
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.2
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.contains("Lock unchanged: no new version deployed"),
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"the requeued relock should find the successor's lock current: {}",
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jobs[2].2
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);
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let vs = versions(&db, "f/rel/b").await;
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assert_eq!(
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vs.len(),
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2,
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"the deploy's successor and nothing else: {vs:?}"
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);
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assert_eq!(live(&vs).hash, successor);
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},
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port,
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)
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.await;
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Ok(())
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}
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/// A multi-file importer: on a skipped relock each module gets its own last lock back, not the
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/// parent script's, so an import's content-only redeploy leaves the importer alone as well.
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#[sqlx::test(fixtures("base"))]
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async fn multi_file_importer_relock_is_a_no_op_too(db: Pool<Postgres>) -> anyhow::Result<()> {
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std::env::set_var("DEPENDENCY_JOB_DEBOUNCE_DELAY", "0");
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let (client, port, _s) = init_client(db.clone()).await;
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let mut completed = listen_for_completed_jobs(&db).await;
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let py = |path: &str, content: &str, parent_hash: Option<String>, with_module: bool| {
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let mut ns = py_script(path, content, parent_hash);
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if with_module {
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ns.modules = Some(std::collections::HashMap::from([(
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"helper.py".to_string(),
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serde_json::json!({
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"content": "def greet(x):\n return 'hi ' + x\n",
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"language": "python3"
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}),
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)]));
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}
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ns
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};
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async fn module_lock(db: &Pool<Postgres>) -> Option<String> {
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sqlx::query_scalar(
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"SELECT modules->'helper.py'->>'lock' FROM script
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WHERE workspace_id = $1 AND path = 'f/rel/pb' AND archived = false",
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)
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.bind(W)
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.fetch_one(db)
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.await
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.unwrap()
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}
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in_test_worker(
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&db,
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async {
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client
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.create_script(W, &py("f/rel/pa", "def main():\n return 'a'\n", None, false))
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.await
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.unwrap();
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wait_for_jobs(&db, &mut completed, 1).await;
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client
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.create_script(
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W,
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&py(
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"f/rel/pb",
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"from f.rel.pa import main as a\nfrom .helper import greet\n\ndef main():\n return greet(a())\n",
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None,
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true,
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),
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)
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.await
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.unwrap();
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wait_for_jobs(&db, &mut completed, 1).await;
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let lock_before = module_lock(&db).await;
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assert!(lock_before.is_some(), "the module got a lock of its own on deploy");
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let since = chrono::Utc::now();
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let pa_hash = live(&versions(&db, "f/rel/pa").await).hash;
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client
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.create_script(
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W,
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&py(
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"f/rel/pa",
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"# same dependencies\ndef main():\n return 'a'\n",
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Some(format!("{pa_hash:016x}")),
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false,
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),
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)
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.await
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.unwrap();
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wait_for_jobs(&db, &mut completed, 2).await;
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|
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let jobs = dependency_jobs_since(&db, since).await;
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let paths: Vec<&str> = jobs.iter().map(|(p, _, _)| p.as_str()).collect();
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assert_eq!(paths, ["f/rel/pa", "f/rel/pb"], "{jobs:?}");
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assert!(
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jobs[1].2.contains("Lock unchanged: no new version deployed"),
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"the multi-file importer's relock should be a no-op: {}",
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jobs[1].2
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);
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assert_eq!(versions(&db, "f/rel/pb").await.len(), 1);
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assert_eq!(module_lock(&db).await, lock_before, "the module keeps its own lock");
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},
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port,
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)
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.await;
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Ok(())
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}
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