Files
PiCloud/crates/executor-core/tests/sdk_retry.rs
MechaCat02 a7fb7ea23c test(sdk): give the isolation and retry-negative tests teeth
Three tests that would pass against a broken implementation:

- `kv`/`docs` cross-app isolation asserted only that app B sees nothing — an
  execution_id-keyed (or script_id-keyed) bridge would pass that AND every
  single-execution round-trip, with app-scoped persistence entirely gone. Added
  the positive control: app A re-reads its own value in a LATER execution (a fresh
  execution_id/script_id via `baseline_request`), which only holds if storage is
  keyed by app_id.

- `retry_policy_rejects_bogus_backoff` asserted a bare `is_err()`, which passes if
  `retry::policy` is unregistered (ErrorFunctionNotFound), on a script typo, or if
  every policy is rejected. Now it pins the message (`backoff`) and adds a
  valid-backoff control that must succeed.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-15 19:38:31 +02:00

203 lines
7.0 KiB
Rust

//! `retry::*` SDK bridge integration tests — runs real Rhai scripts
//! that build a Policy, wrap a closure, and verify the retry / on_codes
//! behavior end-to-end. Sleep delays are kept to 1ms so the suite runs
//! fast.
use std::collections::BTreeMap;
use std::sync::{Arc, Mutex};
use picloud_executor_core::{Engine, ExecRequest, InvocationType, Limits};
use picloud_shared::{
AppId, ExecutionId, NoopDeadLetterService, NoopDocsService, NoopEmailService, NoopEventEmitter,
NoopFilesService, NoopHttpService, NoopInvokeService, NoopKvService, NoopModuleSource,
NoopPubsubService, NoopQueueService, NoopSecretsService, NoopUsersService, RequestId, ScriptId,
ScriptSandbox, Services,
};
use serde_json::Value;
fn build_engine() -> Arc<Engine> {
let services = Services::new(
Arc::new(NoopKvService),
Arc::new(NoopDocsService),
Arc::new(NoopDeadLetterService),
Arc::new(NoopEventEmitter),
Arc::new(NoopModuleSource),
Arc::new(NoopHttpService),
Arc::new(NoopFilesService),
Arc::new(NoopPubsubService),
Arc::new(NoopSecretsService),
Arc::new(NoopEmailService),
Arc::new(NoopUsersService),
Arc::new(NoopQueueService),
Arc::new(NoopInvokeService),
Arc::new(picloud_shared::NoopVarsService),
);
Arc::new(Engine::new(Limits::default(), services))
}
fn baseline_request(app_id: AppId) -> ExecRequest {
let execution_id = ExecutionId::new();
ExecRequest {
execution_id,
request_id: RequestId::new(),
script_id: ScriptId::new(),
script_name: "retry-test".into(),
invocation_type: InvocationType::Http,
path: "/retry-test".into(),
method: String::new(),
headers: BTreeMap::new(),
body: Value::Null,
params: BTreeMap::new(),
query: BTreeMap::new(),
rest: String::new(),
sandbox_overrides: ScriptSandbox::default(),
app_id,
script_owner: None,
principal: None,
trigger_depth: 0,
root_execution_id: execution_id,
is_dead_letter_handler: false,
event: None,
}
}
#[tokio::test(flavor = "multi_thread", worker_threads = 2)]
async fn retry_run_succeeds_first_try() {
let engine = build_engine();
let src = r"
let p = retry::policy(#{ max_attempts: 3, base_ms: 1 });
let v = retry::run(p, || 42);
#{ statusCode: 200, body: v }
"
.to_string();
let req = baseline_request(AppId::new());
let resp = tokio::task::spawn_blocking(move || engine.execute(&src, req))
.await
.unwrap()
.unwrap();
assert_eq!(resp.body, serde_json::json!(42));
}
#[tokio::test(flavor = "multi_thread", worker_threads = 2)]
async fn retry_run_surfaces_after_max_attempts() {
let engine = build_engine();
let src = r#"
let p = retry::policy(#{ max_attempts: 3, base_ms: 1, jitter_pct: 0 });
retry::run(p, || { throw "boom" });
"#
.to_string();
let req = baseline_request(AppId::new());
let res = tokio::task::spawn_blocking(move || engine.execute(&src, req))
.await
.unwrap();
let err = res.unwrap_err().to_string();
assert!(err.contains("boom"), "expected 'boom' in error, got: {err}");
}
#[tokio::test(flavor = "multi_thread", worker_threads = 2)]
async fn retry_on_codes_filters_unmatched_errors() {
let engine = build_engine();
// Throw a message NOT in the filter; retry::run must surface
// immediately (no retries).
let src = r#"
let p = retry::policy(#{ max_attempts: 5, base_ms: 1, jitter_pct: 0 });
let p2 = retry::on_codes(p, ["http: 503"]);
retry::run(p2, || { throw "other failure" });
"#
.to_string();
let req = baseline_request(AppId::new());
let res = tokio::task::spawn_blocking(move || engine.execute(&src, req))
.await
.unwrap();
let err = res.unwrap_err().to_string();
assert!(
err.contains("other failure"),
"expected immediate surface, got: {err}"
);
}
#[tokio::test(flavor = "multi_thread", worker_threads = 2)]
async fn retry_policy_clamps_visible_at_script_layer() {
// jitter_pct = 999 should clamp to 100 silently; the policy is then
// usable.
let engine = build_engine();
let src = r#"
let p = retry::policy(#{
max_attempts: 30, base_ms: 100, jitter_pct: 999, backoff: "constant"
});
let v = retry::run(p, || 1);
#{ statusCode: 200, body: v }
"#
.to_string();
let req = baseline_request(AppId::new());
let resp = tokio::task::spawn_blocking(move || engine.execute(&src, req))
.await
.unwrap()
.unwrap();
assert_eq!(resp.body, serde_json::json!(1));
}
#[tokio::test(flavor = "multi_thread", worker_threads = 2)]
async fn retry_policy_rejects_bogus_backoff() {
let engine = build_engine();
// Pin the REASON. A bare `is_err()` would pass if `retry::policy` were not
// registered at all (ErrorFunctionNotFound), or on a typo in the script
// source, or if EVERY policy were rejected — none of which is "an invalid
// backoff is rejected". The message must name `backoff`.
let src = r#"retry::policy(#{ backoff: "bogus" });"#.to_string();
let req = baseline_request(AppId::new());
let err = tokio::task::spawn_blocking({
let engine = engine.clone();
move || engine.execute(&src, req)
})
.await
.unwrap()
.unwrap_err()
.to_string();
assert!(
err.to_lowercase().contains("backoff"),
"the rejection must be about the backoff value specifically, got: {err}"
);
// Control: the SAME call with a VALID backoff succeeds — proving `retry::policy`
// is registered and does not reject everything, so the failure above is
// specific to the bad value.
let ok_src = r#"
let p = retry::policy(#{ backoff: "constant", max_attempts: 2, base_ms: 1 });
retry::run(p, || 7)
"#
.to_string();
let req = baseline_request(AppId::new());
let resp = tokio::task::spawn_blocking(move || engine.execute(&ok_src, req))
.await
.unwrap()
.expect("a valid backoff must be accepted");
assert_eq!(resp.body, serde_json::json!(7));
}
#[tokio::test(flavor = "multi_thread", worker_threads = 2)]
async fn retry_run_eventually_succeeds() {
// Use an in-engine counter to simulate "fails 2 times then succeeds".
let engine = build_engine();
let counter = Arc::new(Mutex::new(0_i64));
let _ = counter; // counter via Rhai-side `let` instead
let src = r#"
let attempts = 0;
let p = retry::policy(#{ max_attempts: 5, base_ms: 1, jitter_pct: 0 });
let v = retry::run(p, || {
attempts += 1;
if attempts < 3 { throw "transient" } else { attempts }
});
#{ statusCode: 200, body: v }
"#
.to_string();
let req = baseline_request(AppId::new());
let resp = tokio::task::spawn_blocking(move || engine.execute(&src, req))
.await
.unwrap()
.unwrap();
assert_eq!(resp.body, serde_json::json!(3));
}