Files
rustfs/crates/audit/tests/pipeline_layer_test.rs
T
Zhengchao An 1741f79d7d test(audit,heal): assert three more smoke tests (#6248)
`audit_runtime_facade_stops_empty_replay_workers` called the stop path and checked nothing, the same shape as the notify facade test in the previous commit. It now asserts the worker manager is empty afterwards and that a second call — which shutdown paths make — stays harmless.

The two heal timestamp tests bound their fields to `_`. Both timestamps come from `SystemTime::now().duration_since(UNIX_EPOCH).unwrap_or_default()`, so a pre-epoch clock yields 0; binding to `_` could not tell that apart from a real reading, which is precisely what the tests said they were guarding. They now require the value to be past 2020-01-01, and `last_update` not to predate `start_time`.

`test_config_parsing_with_multiple_instances` is left as it was — see the issue comment. Asserting on it turned up something bigger than a missing assertion.

Refs backlog#1836
2026-08-19 12:20:54 +08:00

310 lines
10 KiB
Rust

// Copyright 2024 RustFS Team
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
use async_trait::async_trait;
use rustfs_audit::{AuditEntry, AuditError, AuditPipeline, AuditRegistry, AuditRuntimeFacade, AuditRuntimeView};
use rustfs_targets::arn::TargetID;
use rustfs_targets::store::{Key, Store};
use rustfs_targets::target::{EntityTarget, QueuedPayload, QueuedPayloadMeta};
use rustfs_targets::{SharedTarget, StoreError, Target, TargetError};
use serde::{Serialize, de::DeserializeOwned};
use std::sync::Arc;
use std::sync::atomic::{AtomicUsize, Ordering};
use tokio::sync::{Mutex, RwLock};
#[derive(Clone)]
struct TestTarget {
close_calls: Arc<AtomicUsize>,
id: TargetID,
init_calls: Arc<AtomicUsize>,
}
impl TestTarget {
fn new(id: &str, name: &str) -> Self {
Self {
close_calls: Arc::new(AtomicUsize::new(0)),
id: TargetID::new(id.to_string(), name.to_string()),
init_calls: Arc::new(AtomicUsize::new(0)),
}
}
}
#[async_trait]
impl<E> Target<E> for TestTarget
where
E: Send + Sync + 'static + Clone + Serialize + DeserializeOwned,
{
fn id(&self) -> TargetID {
self.id.clone()
}
async fn is_active(&self) -> Result<bool, TargetError> {
Ok(true)
}
async fn save(&self, _event: Arc<EntityTarget<E>>) -> Result<(), TargetError> {
Ok(())
}
async fn send_raw_from_store(&self, _key: Key, _body: Vec<u8>, _meta: QueuedPayloadMeta) -> Result<(), TargetError> {
Ok(())
}
async fn close(&self) -> Result<(), TargetError> {
self.close_calls.fetch_add(1, Ordering::SeqCst);
Ok(())
}
fn store(&self) -> Option<&(dyn Store<QueuedPayload, Error = StoreError, Key = Key> + Send + Sync)> {
None
}
fn clone_dyn(&self) -> Box<dyn Target<E> + Send + Sync> {
Box::new(self.clone())
}
async fn init(&self) -> Result<(), TargetError> {
self.init_calls.fetch_add(1, Ordering::SeqCst);
Ok(())
}
fn is_enabled(&self) -> bool {
true
}
}
/// A target whose `save()` always fails, used to exercise the dispatch
/// failure-propagation paths.
#[derive(Clone)]
struct FailingTarget {
id: TargetID,
save_calls: Arc<AtomicUsize>,
}
impl FailingTarget {
fn new(id: &str, name: &str) -> Self {
Self {
id: TargetID::new(id.to_string(), name.to_string()),
save_calls: Arc::new(AtomicUsize::new(0)),
}
}
}
#[async_trait]
impl<E> Target<E> for FailingTarget
where
E: Send + Sync + 'static + Clone + Serialize + DeserializeOwned,
{
fn id(&self) -> TargetID {
self.id.clone()
}
async fn is_active(&self) -> Result<bool, TargetError> {
Ok(true)
}
async fn save(&self, _event: Arc<EntityTarget<E>>) -> Result<(), TargetError> {
self.save_calls.fetch_add(1, Ordering::SeqCst);
Err(TargetError::Storage("disk full".to_string()))
}
async fn send_raw_from_store(&self, _key: Key, _body: Vec<u8>, _meta: QueuedPayloadMeta) -> Result<(), TargetError> {
Ok(())
}
async fn close(&self) -> Result<(), TargetError> {
Ok(())
}
fn store(&self) -> Option<&(dyn Store<QueuedPayload, Error = StoreError, Key = Key> + Send + Sync)> {
None
}
fn clone_dyn(&self) -> Box<dyn Target<E> + Send + Sync> {
Box::new(self.clone())
}
async fn init(&self) -> Result<(), TargetError> {
Ok(())
}
fn is_enabled(&self) -> bool {
true
}
}
fn pipeline_with_targets(targets: Vec<(&str, SharedTarget<AuditEntry>)>) -> AuditPipeline {
let mut registry = AuditRegistry::new();
for (id, target) in targets {
registry.add_shared_target(id.to_string(), target);
}
AuditPipeline::new(Arc::new(Mutex::new(registry)))
}
#[tokio::test]
async fn audit_pipeline_dispatch_propagates_total_failure() {
let failing = FailingTarget::new("primary", "webhook");
let save_calls = Arc::clone(&failing.save_calls);
let pipeline = pipeline_with_targets(vec![("primary:webhook", Arc::new(failing))]);
let result = pipeline.dispatch(Arc::new(AuditEntry::default())).await;
assert!(
matches!(result, Err(AuditError::Target(_))),
"dispatch must surface an error when every target fails, got {result:?}"
);
assert_eq!(save_calls.load(Ordering::SeqCst), 1, "the failing target should have been invoked");
}
#[tokio::test]
async fn audit_pipeline_dispatch_tolerates_partial_failure() {
let failing = FailingTarget::new("primary", "webhook");
let healthy = TestTarget::new("secondary", "webhook");
let pipeline = pipeline_with_targets(vec![
("primary:webhook", Arc::new(failing)),
("secondary:webhook", Arc::new(healthy)),
]);
let result = pipeline.dispatch(Arc::new(AuditEntry::default())).await;
assert!(
result.is_ok(),
"dispatch should succeed when at least one target accepts the event, got {result:?}"
);
}
#[tokio::test]
async fn audit_pipeline_dispatch_batch_propagates_total_failure() {
let failing = FailingTarget::new("primary", "webhook");
let pipeline = pipeline_with_targets(vec![("primary:webhook", Arc::new(failing))]);
let entries = vec![Arc::new(AuditEntry::default()), Arc::new(AuditEntry::default())];
let result = pipeline.dispatch_batch(entries).await;
assert!(
matches!(result, Err(AuditError::Target(_))),
"dispatch_batch must surface an error when every delivery fails, got {result:?}"
);
}
#[tokio::test]
async fn audit_pipeline_dispatch_batch_tolerates_partial_failure() {
let failing = FailingTarget::new("primary", "webhook");
let healthy = TestTarget::new("secondary", "webhook");
let pipeline = pipeline_with_targets(vec![
("primary:webhook", Arc::new(failing)),
("secondary:webhook", Arc::new(healthy)),
]);
let entries = vec![Arc::new(AuditEntry::default())];
let result = pipeline.dispatch_batch(entries).await;
assert!(
result.is_ok(),
"dispatch_batch should succeed when a healthy target accepts the batch, got {result:?}"
);
}
#[tokio::test]
async fn audit_runtime_view_lists_empty_targets() {
let registry = Arc::new(Mutex::new(AuditRegistry::new()));
let runtime_view = AuditRuntimeView::new(registry);
assert!(runtime_view.list_targets().await.is_empty());
assert!(runtime_view.get_target_values().await.is_empty());
assert!(runtime_view.get_target("missing").await.is_none());
}
#[tokio::test]
async fn audit_pipeline_reports_empty_runtime_snapshots() {
let registry = Arc::new(Mutex::new(AuditRegistry::new()));
let pipeline = AuditPipeline::new(registry);
assert!(pipeline.snapshot_target_metrics().await.is_empty());
assert!(pipeline.snapshot_target_health().await.is_empty());
}
#[tokio::test]
async fn stopping_audit_replay_workers_is_a_no_op_when_there_are_none() {
let registry = Arc::new(Mutex::new(AuditRegistry::new()));
let replay_workers = Arc::new(RwLock::new(rustfs_targets::ReplayWorkerManager::new()));
let facade = AuditRuntimeFacade::new(registry, Arc::clone(&replay_workers));
facade.stop_replay_workers().await;
// The stop path takes the manager's workers and hands them to the adapter,
// so an empty facade must leave it empty rather than wedge it, and a second
// call — which shutdown paths make — must stay harmless (rustfs/backlog#1836).
assert!(replay_workers.read().await.is_empty());
facade.stop_replay_workers().await;
assert!(replay_workers.read().await.is_empty());
}
#[tokio::test]
async fn audit_runtime_facade_activates_empty_target_list() {
let registry = Arc::new(Mutex::new(AuditRegistry::new()));
let replay_workers = Arc::new(RwLock::new(rustfs_targets::ReplayWorkerManager::new()));
let facade = AuditRuntimeFacade::new(registry, replay_workers);
let activation = facade.activate_targets_with_replay(Vec::new()).await;
assert!(activation.targets.is_empty());
assert_eq!(activation.replay_workers.len(), 0);
}
#[tokio::test]
async fn audit_runtime_view_upsert_and_remove_target() {
let registry = Arc::new(Mutex::new(AuditRegistry::new()));
let runtime_view = AuditRuntimeView::new(registry.clone());
let target = TestTarget::new("primary", "webhook");
let init_calls = Arc::clone(&target.init_calls);
let close_calls = Arc::clone(&target.close_calls);
runtime_view
.upsert_target("primary:webhook".to_string(), Box::new(target))
.await
.expect("upsert should succeed");
assert_eq!(runtime_view.list_targets().await, vec!["primary:webhook".to_string()]);
assert_eq!(init_calls.load(Ordering::SeqCst), 1);
runtime_view
.remove_target("primary:webhook")
.await
.expect("remove should succeed");
assert!(runtime_view.list_targets().await.is_empty());
assert_eq!(close_calls.load(Ordering::SeqCst), 1);
}
#[tokio::test]
async fn audit_runtime_facade_replace_targets_commits_runtime_state() {
let registry = Arc::new(Mutex::new(AuditRegistry::new()));
let replay_workers = Arc::new(RwLock::new(rustfs_targets::ReplayWorkerManager::new()));
let facade = AuditRuntimeFacade::new(registry.clone(), replay_workers.clone());
let target = TestTarget::new("primary", "webhook");
let activation = rustfs_targets::RuntimeActivation {
replay_workers: rustfs_targets::ReplayWorkerManager::new(),
targets: vec![Arc::new(target) as rustfs_targets::SharedTarget<rustfs_audit::AuditEntry>],
};
facade
.replace_targets(activation)
.await
.expect("replace_targets should succeed");
let runtime_view = AuditRuntimeView::new(registry);
assert_eq!(runtime_view.list_targets().await, vec!["primary:webhook".to_string()]);
assert_eq!(replay_workers.read().await.len(), 0);
}