shared/invoke.rs introduces the InvokeService trait + InvokeTarget enum: - InvokeTarget::Path(String) — resolves via the route trie - InvokeTarget::Name(String) — (cx.app_id, name) -> script_id via get_by_name - InvokeTarget::Id(ScriptId) — direct lookup InvokeService::resolve enforces same-app at the service layer (InvokeError::CrossApp). InvokeService::enqueue_async writes a v1.1.9 OutboxSourceKind::Invoke row for fire-and-forget composition. Errors: NotFound, CrossApp, DepthExceeded(u32), Forbidden, Rejected, Unavailable. NoopInvokeService surfaces all calls as Unavailable for harnesses that don't wire the service. ScriptRepository gains get_by_name(app_id, name) backed by the existing (app_id, name) uniqueness constraint. Postgres impl + in-memory mock + the picloud crate's PostgresScriptRepoHandle delegate added. Services::new gains invoke: Arc<dyn InvokeService> positionally after queue. with_noop_services wires NoopInvokeService. 12 test sites threaded through. picloud/lib.rs binds NoopInvokeService at this commit boundary — the real InvokeResolver lands in commit 8. Deviation from plan (flagged for HANDBACK §7): the plan called for moving ExecutorClient + ScriptIdentity from orchestrator-core to shared so the invoke bridge could call a re-entrant variant. Re-evaluated: the bridge lives in executor-core which can hold Arc<Engine> directly, making the trait move unnecessary. Engine::execute is sync, returns ExecResponse, and shares the engine instance + per-call SdkCallCx exactly as required. AST cache reuse across invokes is a v1.2 optimization (invokes recompile each call — ms-scale cost, acceptable). Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
163 lines
5.4 KiB
Rust
163 lines
5.4 KiB
Rust
//! `pubsub::` SDK bridge integration tests — runs a real Rhai engine
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//! against an in-memory `PubsubService` that records the published
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//! `(topic, message)`. Verifies the message JSON encoding the wire
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//! contract requires: Maps, Arrays, strings, numbers, bool, null, and
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//! **Blob → base64**, including nesting.
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use std::collections::BTreeMap;
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use std::sync::{Arc, Mutex};
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use async_trait::async_trait;
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use picloud_executor_core::{Engine, ExecRequest, InvocationType, Limits};
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use picloud_shared::{
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AppId, ExecutionId, NoopDeadLetterService, NoopDocsService, NoopEventEmitter, NoopFilesService,
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NoopHttpService, NoopKvService, NoopModuleSource, PubsubError, PubsubService, RequestId,
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ScriptId, ScriptSandbox, SdkCallCx, Services,
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};
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use serde_json::{json, Value};
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#[derive(Default)]
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struct RecordingPubsub {
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last: Mutex<Option<(String, Value)>>,
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}
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#[async_trait]
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impl PubsubService for RecordingPubsub {
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async fn publish_durable(
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&self,
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_cx: &SdkCallCx,
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topic: &str,
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message: Value,
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) -> Result<(), PubsubError> {
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if topic.trim().is_empty() {
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return Err(PubsubError::EmptyTopic);
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}
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*self.last.lock().unwrap() = Some((topic.to_string(), message));
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Ok(())
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}
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}
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fn make_engine(svc: Arc<RecordingPubsub>) -> Arc<Engine> {
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let services = Services::new(
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Arc::new(NoopKvService),
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Arc::new(NoopDocsService),
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Arc::new(NoopDeadLetterService),
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Arc::new(NoopEventEmitter),
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Arc::new(NoopModuleSource),
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Arc::new(NoopHttpService),
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Arc::new(NoopFilesService),
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svc,
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Arc::new(picloud_shared::NoopSecretsService),
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Arc::new(picloud_shared::NoopEmailService),
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Arc::new(picloud_shared::NoopUsersService),
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Arc::new(picloud_shared::NoopQueueService),
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Arc::new(picloud_shared::NoopInvokeService),
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);
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Arc::new(Engine::new(Limits::default(), services))
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}
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fn baseline_request(app_id: AppId) -> ExecRequest {
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let execution_id = ExecutionId::new();
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ExecRequest {
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execution_id,
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request_id: RequestId::new(),
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script_id: ScriptId::new(),
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script_name: "pubsub-test".into(),
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invocation_type: InvocationType::Http,
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path: "/pubsub-test".into(),
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headers: BTreeMap::new(),
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body: Value::Null,
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params: BTreeMap::new(),
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query: BTreeMap::new(),
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rest: String::new(),
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sandbox_overrides: ScriptSandbox::default(),
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app_id,
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principal: None,
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trigger_depth: 0,
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root_execution_id: execution_id,
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is_dead_letter_handler: false,
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event: None,
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}
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}
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async fn run(engine: Arc<Engine>, src: &str, req: ExecRequest) {
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let src = src.to_string();
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tokio::task::spawn_blocking(move || engine.execute(&src, req))
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.await
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.expect("spawn_blocking should not panic")
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.expect("script execution should succeed");
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}
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#[tokio::test(flavor = "multi_thread", worker_threads = 2)]
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async fn publish_map_message() {
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let svc = Arc::new(RecordingPubsub::default());
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let engine = make_engine(svc.clone());
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run(
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engine,
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r#"pubsub::publish_durable("user.created", #{ user_id: "abc", n: 7, ok: true });"#,
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baseline_request(AppId::new()),
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)
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.await;
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let (topic, msg) = svc.last.lock().unwrap().clone().unwrap();
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assert_eq!(topic, "user.created");
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assert_eq!(msg, json!({ "user_id": "abc", "n": 7, "ok": true }));
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}
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#[tokio::test(flavor = "multi_thread", worker_threads = 2)]
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async fn publish_scalar_and_array_and_null() {
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let svc = Arc::new(RecordingPubsub::default());
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let engine = make_engine(svc.clone());
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run(
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engine,
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r#"pubsub::publish_durable("a", [1, "two", false, ()]);"#,
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baseline_request(AppId::new()),
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)
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.await;
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let (_t, msg) = svc.last.lock().unwrap().clone().unwrap();
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assert_eq!(msg, json!([1, "two", false, null]));
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}
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#[tokio::test(flavor = "multi_thread", worker_threads = 2)]
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async fn publish_number_scalar() {
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let svc = Arc::new(RecordingPubsub::default());
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let engine = make_engine(svc.clone());
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run(
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engine,
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r#"pubsub::publish_durable("metric", 42);"#,
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baseline_request(AppId::new()),
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)
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.await;
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let (_t, msg) = svc.last.lock().unwrap().clone().unwrap();
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assert_eq!(msg, json!(42));
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}
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#[tokio::test(flavor = "multi_thread", worker_threads = 2)]
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async fn publish_blob_encodes_base64_including_nested() {
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let svc = Arc::new(RecordingPubsub::default());
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let engine = make_engine(svc.clone());
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// base64("hello") = "aGVsbG8=" (STANDARD, padded).
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run(
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engine,
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r#"
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let data = base64::decode("aGVsbG8=");
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pubsub::publish_durable("blobs", #{ raw: data, list: [data] });
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"#,
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baseline_request(AppId::new()),
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)
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.await;
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let (_t, msg) = svc.last.lock().unwrap().clone().unwrap();
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assert_eq!(msg, json!({ "raw": "aGVsbG8=", "list": ["aGVsbG8="] }));
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}
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#[tokio::test(flavor = "multi_thread", worker_threads = 2)]
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async fn publish_empty_topic_throws() {
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let svc = Arc::new(RecordingPubsub::default());
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let engine = make_engine(svc.clone());
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let src = r#"pubsub::publish_durable("", 1);"#.to_string();
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let req = baseline_request(AppId::new());
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let res = tokio::task::spawn_blocking(move || engine.execute(&src, req))
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.await
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.expect("spawn_blocking should not panic");
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assert!(res.is_err(), "empty topic should throw");
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}
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