Compare commits

...

5 Commits

Author SHA1 Message Date
houseme 2a80e8de33 Merge branch 'main' into overtrue/fix-1907-queue-semantics 2026-08-23 12:36:55 +08:00
Zhengchao An 23a2c7d776 test(kms): stabilize Vault failover validation (#6385)
* test(kms): bound Vault failover progress wait

* ci(nightly): honor manual dispatch ref

* test(kms): preserve Vault worker failures

* test(kms): validate Vault circuit recovery
2026-08-23 12:32:11 +08:00
唐小鸭 5f72209446 fix(ecstore): keep unknown-size sentinel in create_bitrot_writer (#6380)
SSE and compression wrap the payload so its length is unknown and
advertise HashReader::SIZE_PRESERVE_LAYER (-1). Every layer preserved
that sentinel except create_bitrot_writer, which clamped it to 0 before
calling DiskAPI::create_file. RemoteDisk forwards that size verbatim in
the put_file_stream query, so remote peers were told the body was empty.

Since the authenticated put-file trailer (#5868) the receiver used the
declared size to split body from trailer, turning the clamp into a fatal
"auth trailer has trailing data" failure for every SSE PUT on multi-node
deployments (rc.2). #6320 relaxed the receiver to only trust size > 0;
this change fixes the sender so the sentinel survives end to end and the
wire no longer conflates empty objects with unknown-length streams.

Refs #6331
2026-08-23 12:29:52 +08:00
overtrue cd52a80c9e fix(ecstore): clear swift clippy warnings 2026-08-23 05:28:04 +08:00
overtrue 3149559c11 fix(ecstore): unify decommission resume queue 2026-08-23 01:58:15 +08:00
5 changed files with 173 additions and 81 deletions
+3 -6
View File
@@ -39,11 +39,10 @@ jobs:
env: env:
FORCE_JAVASCRIPT_ACTIONS_TO_NODE24: "true" FORCE_JAVASCRIPT_ACTIONS_TO_NODE24: "true"
steps: steps:
- name: Checkout main branch - name: Checkout repository
uses: actions/checkout@9c091bb21b7c1c1d1991bb908d89e4e9dddfe3e0 # v7 uses: actions/checkout@9c091bb21b7c1c1d1991bb908d89e4e9dddfe3e0 # v7
with: with:
persist-credentials: false persist-credentials: false
ref: main
- name: Setup Rust environment - name: Setup Rust environment
uses: ./.github/actions/setup uses: ./.github/actions/setup
@@ -89,11 +88,10 @@ jobs:
# either casing. # either casing.
NO_PROXY: 127.0.0.1,localhost NO_PROXY: 127.0.0.1,localhost
steps: steps:
- name: Checkout main branch - name: Checkout repository
uses: actions/checkout@9c091bb21b7c1c1d1991bb908d89e4e9dddfe3e0 # v7 uses: actions/checkout@9c091bb21b7c1c1d1991bb908d89e4e9dddfe3e0 # v7
with: with:
persist-credentials: false persist-credentials: false
ref: main
- name: Setup Rust environment - name: Setup Rust environment
uses: ./.github/actions/setup uses: ./.github/actions/setup
@@ -178,11 +176,10 @@ jobs:
FORCE_JAVASCRIPT_ACTIONS_TO_NODE24: "true" FORCE_JAVASCRIPT_ACTIONS_TO_NODE24: "true"
NO_PROXY: 127.0.0.1,localhost NO_PROXY: 127.0.0.1,localhost
steps: steps:
- name: Checkout main branch - name: Checkout repository
uses: actions/checkout@9c091bb21b7c1c1d1991bb908d89e4e9dddfe3e0 # v7 uses: actions/checkout@9c091bb21b7c1c1d1991bb908d89e4e9dddfe3e0 # v7
with: with:
persist-credentials: false persist-credentials: false
ref: main
- name: Setup Rust environment - name: Setup Rust environment
uses: ./.github/actions/setup uses: ./.github/actions/setup
+45 -43
View File
@@ -462,19 +462,16 @@ pub(crate) fn local_decommission_queue_prefix(endpoints: &EndpointServerPools, i
Ok(local) Ok(local)
} }
fn first_resumable_decommission_queue_indices(meta: &PoolMeta) -> Vec<usize> { fn resumable_decommission_queue_indices(meta: &PoolMeta) -> Vec<usize> {
let mut indices = Vec::new(); let mut indices = Vec::new();
for (idx, pool) in meta.pools.iter().enumerate() { for (idx, pool) in meta.pools.iter().enumerate() {
if let Some(decommission) = &pool.decommission { if let Some(decommission) = &pool.decommission {
if !decommission.has_decommission_state() { if !decommission.has_decommission_state() {
continue; continue;
} }
if decommission.complete { if decommission.complete || decommission.failed || decommission.canceled {
continue; continue;
} }
if decommission.failed || decommission.canceled {
break;
}
indices.push(idx); indices.push(idx);
} }
} }
@@ -2406,24 +2403,10 @@ impl PoolMeta {
} }
pub fn return_resumable_pools(&self) -> Vec<PoolStatus> { pub fn return_resumable_pools(&self) -> Vec<PoolStatus> {
let mut new_pools = Vec::new(); resumable_decommission_queue_indices(self)
for pool in &self.pools { .into_iter()
if let Some(decommission) = &pool.decommission { .map(|idx| self.pools[idx].clone())
if !decommission.has_decommission_state() { .collect()
continue;
}
if decommission.complete || decommission.failed || decommission.canceled {
// Recovery is not required when:
// - Decommissioning completed
// - Decommissioning failed and must be explicitly restarted or cleared
// - Decommissioning was cancelled
continue;
}
// All other scenarios require recovery
new_pools.push(pool.clone());
}
}
new_pools
} }
} }
@@ -3332,7 +3315,7 @@ impl ECStore {
let _start_guard = self.start_gate.lock().await; let _start_guard = self.start_gate.lock().await;
let indices = { let indices = {
let pool_meta = self.pool_meta.read().await; let pool_meta = self.pool_meta.read().await;
first_resumable_decommission_queue_indices(&pool_meta) resumable_decommission_queue_indices(&pool_meta)
.into_iter() .into_iter()
.filter(|idx| indices.contains(idx)) .filter(|idx| indices.contains(idx))
.collect::<Vec<_>>() .collect::<Vec<_>>()
@@ -3377,7 +3360,7 @@ impl ECStore {
pub async fn spawn_missing_local_decommission_routines(self: &Arc<Self>) -> Result<()> { pub async fn spawn_missing_local_decommission_routines(self: &Arc<Self>) -> Result<()> {
let indices = { let indices = {
let pool_meta = self.pool_meta.read().await; let pool_meta = self.pool_meta.read().await;
first_resumable_decommission_queue_indices(&pool_meta) resumable_decommission_queue_indices(&pool_meta)
}; };
let indices = local_decommission_queue_prefix(&self.endpoints(), &indices)?; let indices = local_decommission_queue_prefix(&self.endpoints(), &indices)?;
if indices.is_empty() { if indices.is_empty() {
@@ -6363,12 +6346,12 @@ mod pools_tests {
ensure_decommission_start_keeps_active_pool, ensure_decommission_start_local_leader, ensure_decommission_start_keeps_active_pool, ensure_decommission_start_local_leader,
ensure_decommission_start_pool_states, ensure_decommission_start_rebalance_meta_allowed, ensure_decommission_start_pool_states, ensure_decommission_start_rebalance_meta_allowed,
ensure_decommission_start_target_capacity, ensure_decommission_terminal_operation_supported, ensure_decommission_start_target_capacity, ensure_decommission_terminal_operation_supported,
ensure_local_decommission_pool_leaders, ensure_valid_decommission_pool_index, first_resumable_decommission_queue_indices, ensure_local_decommission_pool_leaders, ensure_valid_decommission_pool_index, get_by_index, guard_decommission_cancelers,
get_by_index, guard_decommission_cancelers, has_active_decommission_canceler, is_decommission_active, has_active_decommission_canceler, is_decommission_active, is_decommission_cancel_requested,
is_decommission_cancel_requested, load_decommission_entry_versions, local_decommission_queue_prefix, load_decommission_entry_versions, local_decommission_queue_prefix, mark_decommission_bucket_done,
mark_decommission_bucket_done, merge_pool_status_refresh, missing_decommission_worker_prefix, merge_pool_status_refresh, missing_decommission_worker_prefix, observe_decommission_terminal_reload_result,
observe_decommission_terminal_reload_result, pool_meta_has_active_decommission, require_decommission_store, pool_meta_has_active_decommission, require_decommission_store, reserve_decommission_start_cancelers,
reserve_decommission_start_cancelers, resolve_decommission_bucket_done_save_result, resolve_decommission_bucket_state, resolve_decommission_bucket_done_save_result, resolve_decommission_bucket_state,
resolve_decommission_check_after_list_result, resolve_decommission_entry_cleanup_delete_result, resolve_decommission_check_after_list_result, resolve_decommission_entry_cleanup_delete_result,
resolve_decommission_entry_exact_versions, resolve_decommission_entry_reload_result, resolve_decommission_entry_exact_versions, resolve_decommission_entry_reload_result,
resolve_decommission_listing_worker_result, resolve_decommission_optional_bucket_config_result, resolve_decommission_listing_worker_result, resolve_decommission_optional_bucket_config_result,
@@ -6376,9 +6359,9 @@ mod pools_tests {
resolve_decommission_preflight_heal_result, resolve_decommission_progress_save_result, resolve_decommission_preflight_heal_result, resolve_decommission_progress_save_result,
resolve_decommission_terminal_mark_after_error_result, resolve_decommission_terminal_mark_result, resolve_decommission_terminal_mark_after_error_result, resolve_decommission_terminal_mark_result,
resolve_decommission_update_after_result, resolve_start_decommission_pool_meta_reload_result, resolve_decommission_update_after_result, resolve_start_decommission_pool_meta_reload_result,
rollback_start_decommission_pool_meta, run_decommission_buckets_bounded, run_decommission_listing_with_retry, resumable_decommission_queue_indices, rollback_start_decommission_pool_meta, run_decommission_buckets_bounded,
run_decommission_listing_with_retry_and_drain, run_decommission_side_effect, should_cleanup_decommission_source_entry, run_decommission_listing_with_retry, run_decommission_listing_with_retry_and_drain, run_decommission_side_effect,
should_continue_decommission_queue, should_count_decommission_version_complete, should_cleanup_decommission_source_entry, should_continue_decommission_queue, should_count_decommission_version_complete,
should_preserve_decommission_canceled_state, should_reject_decommission_cancel_as_terminal, should_preserve_decommission_canceled_state, should_reject_decommission_cancel_as_terminal,
should_retry_decommission_cancel_reload, should_retry_decommission_listing, should_skip_canceled_decommission_routine, should_retry_decommission_cancel_reload, should_retry_decommission_listing, should_skip_canceled_decommission_routine,
spawn_decommission_index_cancelers, split_decommission_buckets, take_and_cancel_decommission_canceler, spawn_decommission_index_cancelers, split_decommission_buckets, take_and_cancel_decommission_canceler,
@@ -9387,7 +9370,7 @@ mod pools_tests {
} }
#[test] #[test]
fn test_first_resumable_decommission_queue_indices_stops_at_failed_or_canceled_state() { fn test_resumable_decommission_queue_indices_skip_terminal_predecessors() {
let meta = PoolMeta { let meta = PoolMeta {
pools: vec![ pools: vec![
decommission_test_pool_status( decommission_test_pool_status(
@@ -9423,11 +9406,11 @@ mod pools_tests {
..Default::default() ..Default::default()
}; };
assert!(first_resumable_decommission_queue_indices(&meta).is_empty()); assert_eq!(resumable_decommission_queue_indices(&meta), vec![3]);
} }
#[test] #[test]
fn test_first_resumable_decommission_queue_indices_allows_after_completed_prefix() { fn test_resumable_decommission_queue_indices_preserve_active_predecessor_order() {
let meta = PoolMeta { let meta = PoolMeta {
pools: vec![ pools: vec![
decommission_test_pool_status( decommission_test_pool_status(
@@ -9440,7 +9423,7 @@ mod pools_tests {
decommission_test_pool_status( decommission_test_pool_status(
1, 1,
Some(PoolDecommissionInfo { Some(PoolDecommissionInfo {
queued: true, start_time: Some(OffsetDateTime::UNIX_EPOCH),
..Default::default() ..Default::default()
}), }),
), ),
@@ -9455,11 +9438,11 @@ mod pools_tests {
..Default::default() ..Default::default()
}; };
assert_eq!(first_resumable_decommission_queue_indices(&meta), vec![1, 2]); assert_eq!(resumable_decommission_queue_indices(&meta), vec![1, 2]);
} }
#[test] #[test]
fn test_return_resumable_pools_skips_failed_decommission() { fn test_runtime_and_startup_use_the_same_resumable_queue() {
let meta = PoolMeta { let meta = PoolMeta {
pools: vec![ pools: vec![
decommission_test_pool_status( decommission_test_pool_status(
@@ -9471,6 +9454,20 @@ mod pools_tests {
), ),
decommission_test_pool_status( decommission_test_pool_status(
1, 1,
Some(PoolDecommissionInfo {
canceled: true,
..Default::default()
}),
),
decommission_test_pool_status(
2,
Some(PoolDecommissionInfo {
start_time: Some(OffsetDateTime::UNIX_EPOCH),
..Default::default()
}),
),
decommission_test_pool_status(
3,
Some(PoolDecommissionInfo { Some(PoolDecommissionInfo {
queued: true, queued: true,
..Default::default() ..Default::default()
@@ -9480,10 +9477,15 @@ mod pools_tests {
..Default::default() ..Default::default()
}; };
let resumable = meta.return_resumable_pools(); let runtime_indices = resumable_decommission_queue_indices(&meta);
let startup_ids = meta
.return_resumable_pools()
.into_iter()
.map(|pool| pool.id)
.collect::<Vec<_>>();
assert_eq!(resumable.len(), 1); assert_eq!(runtime_indices, vec![2, 3]);
assert_eq!(resumable[0].id, 1); assert_eq!(startup_ids, vec![2, 3]);
} }
#[test] #[test]
+38 -6
View File
@@ -784,6 +784,24 @@ pub(crate) fn create_deferred_bitrot_reader_with_stripe_handle(
/// ///
/// # Returns /// # Returns
/// A Result containing the BitrotWriterWrapper or an error /// A Result containing the BitrotWriterWrapper or an error
/// Size hint handed to `DiskAPI::create_file` for a bitrot-wrapped shard.
///
/// A known length is grown by one checksum per shard so the on-disk file size
/// matches what the bitrot writer emits. A negative length is the
/// unknown-size sentinel (`HashReader::SIZE_PRESERVE_LAYER`, used by SSE and
/// compression) and must be preserved: `RemoteDisk::create_file` forwards it
/// in the `put_file_stream` query, and the receiver only treats `size > 0` as
/// a fixed body length when locating the authenticated trailer. Clamping it
/// to `0` would claim an empty body and misframe the stream. `0` stays `0`
/// because a genuinely empty object still means an empty body.
fn bitrot_create_file_size(length: i64, shard_size: usize, checksum_algo: &HashAlgorithm) -> i64 {
if length <= 0 {
return length;
}
let length = length as usize;
(length.div_ceil(shard_size) * checksum_algo.size() + length) as i64
}
pub async fn create_bitrot_writer( pub async fn create_bitrot_writer(
is_inline_buffer: bool, is_inline_buffer: bool,
disk: Option<&DiskStore>, disk: Option<&DiskStore>,
@@ -796,12 +814,7 @@ pub async fn create_bitrot_writer(
let writer = if is_inline_buffer { let writer = if is_inline_buffer {
CustomWriter::new_inline_buffer() CustomWriter::new_inline_buffer()
} else if let Some(disk) = disk { } else if let Some(disk) = disk {
let length = if length > 0 { let length = bitrot_create_file_size(length, shard_size, &checksum_algo);
let length = length as usize;
(length.div_ceil(shard_size) * checksum_algo.size() + length) as i64
} else {
0
};
let file = disk.create_file("", volume, path, length).await?; let file = disk.create_file("", volume, path, length).await?;
#[cfg(feature = "hotpath")] #[cfg(feature = "hotpath")]
@@ -820,6 +833,25 @@ mod tests {
use rustfs_rio::ChunkReader; use rustfs_rio::ChunkReader;
use std::collections::VecDeque; use std::collections::VecDeque;
#[test]
fn bitrot_create_file_size_grows_known_length_by_checksums() {
// 10 bytes over 4-byte shards = 3 shards, each followed by a 32-byte hash.
assert_eq!(bitrot_create_file_size(10, 4, &HashAlgorithm::HighwayHash256), 10 + 3 * 32);
assert_eq!(bitrot_create_file_size(10, 4, &HashAlgorithm::None), 10);
}
#[test]
fn bitrot_create_file_size_keeps_empty_and_unknown_distinct() {
assert_eq!(bitrot_create_file_size(0, 4, &HashAlgorithm::HighwayHash256), 0);
// SSE/compression streams advertise SIZE_PRESERVE_LAYER (-1); the remote
// put_file_stream receiver relies on a non-positive size to parse the auth
// trailer from the stream tail, so the sentinel must survive untouched.
assert_eq!(
bitrot_create_file_size(rustfs_rio::HashReader::SIZE_PRESERVE_LAYER, 4, &HashAlgorithm::HighwayHash256),
rustfs_rio::HashReader::SIZE_PRESERVE_LAYER
);
}
struct TestChunkReader { struct TestChunkReader {
chunks: VecDeque<Bytes>, chunks: VecDeque<Bytes>,
} }
+86 -25
View File
@@ -16,14 +16,14 @@
//! //!
//! `scripts/test/vault_ha_kms_live.sh` owns the official Vault containers and //! `scripts/test/vault_ha_kms_live.sh` owns the official Vault containers and
//! kills the active node while this test continuously decrypts through a //! kills the active node while this test continuously decrypts through a
//! surviving standby. KV2 and Transit requests must remain successful, use a //! surviving standby. KV2 and Transit must recover after the bounded circuit
//! bounded number of attempts, and leave the circuit and in-flight gauges at //! interval, use a bounded number of attempts, and leave the circuit and
//! zero after a new leader is elected. //! in-flight gauges at zero after a new leader is elected.
use std::collections::HashMap; use std::collections::HashMap;
use std::path::{Path, PathBuf}; use std::path::{Path, PathBuf};
use std::sync::Arc;
use std::sync::atomic::{AtomicBool, AtomicU64, Ordering}; use std::sync::atomic::{AtomicBool, AtomicU64, Ordering};
use std::sync::{Arc, Mutex};
use std::time::Duration; use std::time::Duration;
use metrics_util::MetricKind; use metrics_util::MetricKind;
@@ -43,6 +43,11 @@ const OPERATION_ATTEMPTS: &str = "rustfs_kms_backend_operation_attempts";
const IN_FLIGHT: &str = "rustfs_kms_backend_in_flight"; const IN_FLIGHT: &str = "rustfs_kms_backend_in_flight";
const CIRCUIT_OPEN: &str = "rustfs_kms_backend_circuit_open"; const CIRCUIT_OPEN: &str = "rustfs_kms_backend_circuit_open";
const MAX_ATTEMPTS: u32 = 10; const MAX_ATTEMPTS: u32 = 10;
const ATTEMPT_TIMEOUT: Duration = Duration::from_secs(2);
const HEALTHY_PROGRESS_TIMEOUT: Duration = Duration::from_secs(20);
// The circuit remains open for 30s after five failed attempts.
const POST_FAILOVER_PROGRESS_TIMEOUT: Duration = Duration::from_secs(35);
const FAILOVER_ERROR_POLL_INTERVAL: Duration = Duration::from_millis(100);
type MetricEntry = ( type MetricEntry = (
metrics_util::CompositeKey, metrics_util::CompositeKey,
@@ -64,7 +69,7 @@ fn config(backend: KmsBackend, backend_config: BackendConfig) -> KmsConfig {
backend, backend,
backend_config, backend_config,
allow_insecure_dev_defaults: true, allow_insecure_dev_defaults: true,
timeout: Duration::from_secs(2), timeout: ATTEMPT_TIMEOUT,
retry_attempts: MAX_ATTEMPTS, retry_attempts: MAX_ATTEMPTS,
enable_cache: false, enable_cache: false,
..KmsConfig::default() ..KmsConfig::default()
@@ -164,14 +169,31 @@ fn retryable_failures(snapshot: &[MetricEntry], operation: &str) -> u64 {
.sum() .sum()
} }
async fn wait_for_count(counter: &AtomicU64, minimum: u64, description: &str) { async fn wait_for_count(
tokio::time::timeout(Duration::from_secs(20), async { counter: &AtomicU64,
failure: &Mutex<Option<String>>,
minimum: u64,
description: &str,
timeout: Duration,
) {
tokio::time::timeout(timeout, async {
while counter.load(Ordering::SeqCst) < minimum { while counter.load(Ordering::SeqCst) < minimum {
if let Some(error) = failure.lock().expect("decrypt failure lock poisoned").as_ref() {
panic!(
"{description} worker failed after {} successful decrypts: {error}",
counter.load(Ordering::SeqCst)
);
}
tokio::time::sleep(Duration::from_millis(25)).await; tokio::time::sleep(Duration::from_millis(25)).await;
} }
}) })
.await .await
.unwrap_or_else(|_| panic!("timed out waiting for {description}")); .unwrap_or_else(|_| {
panic!(
"timed out after {timeout:?} waiting for {description}: completed {}, expected {minimum}",
counter.load(Ordering::SeqCst)
)
});
} }
async fn wait_for_file(path: &Path, description: &str) { async fn wait_for_file(path: &Path, description: &str) {
@@ -189,7 +211,8 @@ async fn decrypt_loop<B: KmsBackendTrait + Send + Sync + 'static>(
request: DecryptRequest, request: DecryptRequest,
expected: Vec<u8>, expected: Vec<u8>,
completed: Arc<AtomicU64>, completed: Arc<AtomicU64>,
failed: Arc<AtomicBool>, allow_failover_errors: Arc<AtomicBool>,
failure: Arc<Mutex<Option<String>>>,
stop: CancellationToken, stop: CancellationToken,
) { ) {
while !stop.is_cancelled() { while !stop.is_cancelled() {
@@ -197,8 +220,18 @@ async fn decrypt_loop<B: KmsBackendTrait + Send + Sync + 'static>(
Ok(response) if response.plaintext == expected => { Ok(response) if response.plaintext == expected => {
completed.fetch_add(1, Ordering::SeqCst); completed.fetch_add(1, Ordering::SeqCst);
} }
Ok(_) | Err(_) => { Ok(_) => {
failed.store(true, Ordering::SeqCst); *failure.lock().expect("decrypt failure lock poisoned") =
Some("decrypt returned unexpected plaintext".to_string());
return;
}
Err(rustfs_kms::KmsError::BackendError { .. } | rustfs_kms::KmsError::OperationTimedOut { .. })
if allow_failover_errors.load(Ordering::SeqCst) =>
{
tokio::time::sleep(FAILOVER_ERROR_POLL_INTERVAL).await;
}
Err(error) => {
*failure.lock().expect("decrypt failure lock poisoned") = Some(error.to_string());
return; return;
} }
} }
@@ -296,7 +329,9 @@ async fn exercise_failover(snapshotter: &Snapshotter) {
); );
let stop = CancellationToken::new(); let stop = CancellationToken::new();
let failed = Arc::new(AtomicBool::new(false)); let allow_failover_errors = Arc::new(AtomicBool::new(false));
let kv2_failure = Arc::new(Mutex::new(None));
let transit_failure = Arc::new(Mutex::new(None));
let kv2_completed = Arc::new(AtomicU64::new(0)); let kv2_completed = Arc::new(AtomicU64::new(0));
let transit_completed = Arc::new(AtomicU64::new(0)); let transit_completed = Arc::new(AtomicU64::new(0));
let kv2_worker = tokio::spawn(decrypt_loop( let kv2_worker = tokio::spawn(decrypt_loop(
@@ -304,7 +339,8 @@ async fn exercise_failover(snapshotter: &Snapshotter) {
kv2_request, kv2_request,
kv2_data_key.plaintext_key, kv2_data_key.plaintext_key,
Arc::clone(&kv2_completed), Arc::clone(&kv2_completed),
Arc::clone(&failed), Arc::clone(&allow_failover_errors),
Arc::clone(&kv2_failure),
stop.clone(), stop.clone(),
)); ));
let transit_worker = tokio::spawn(decrypt_loop( let transit_worker = tokio::spawn(decrypt_loop(
@@ -312,12 +348,21 @@ async fn exercise_failover(snapshotter: &Snapshotter) {
transit_request, transit_request,
transit_data_key.plaintext_key, transit_data_key.plaintext_key,
Arc::clone(&transit_completed), Arc::clone(&transit_completed),
Arc::clone(&failed), Arc::clone(&allow_failover_errors),
Arc::clone(&transit_failure),
stop.clone(), stop.clone(),
)); ));
wait_for_count(&kv2_completed, 2, "two healthy KV2 decrypts").await; wait_for_count(&kv2_completed, &kv2_failure, 2, "two healthy KV2 decrypts", HEALTHY_PROGRESS_TIMEOUT).await;
wait_for_count(&transit_completed, 2, "two healthy Transit decrypts").await; wait_for_count(
&transit_completed,
&transit_failure,
2,
"two healthy Transit decrypts",
HEALTHY_PROGRESS_TIMEOUT,
)
.await;
allow_failover_errors.store(true, Ordering::SeqCst);
std::fs::write(&marker, b"ready").expect("publish failover readiness marker"); std::fs::write(&marker, b"ready").expect("publish failover readiness marker");
wait_for_file(&elected, "the replacement Vault leader").await; wait_for_file(&elected, "the replacement Vault leader").await;
@@ -326,18 +371,39 @@ async fn exercise_failover(snapshotter: &Snapshotter) {
let kv2_after_election = kv2_completed.load(Ordering::SeqCst) + 2; let kv2_after_election = kv2_completed.load(Ordering::SeqCst) + 2;
let transit_after_election = transit_completed.load(Ordering::SeqCst) + 2; let transit_after_election = transit_completed.load(Ordering::SeqCst) + 2;
wait_for_count(&kv2_completed, kv2_after_election, "post-failover KV2 decrypts").await; wait_for_count(
wait_for_count(&transit_completed, transit_after_election, "post-failover Transit decrypts").await; &kv2_completed,
&kv2_failure,
kv2_after_election,
"post-failover KV2 decrypts",
POST_FAILOVER_PROGRESS_TIMEOUT,
)
.await;
wait_for_count(
&transit_completed,
&transit_failure,
transit_after_election,
"post-failover Transit decrypts",
POST_FAILOVER_PROGRESS_TIMEOUT,
)
.await;
stop.cancel(); stop.cancel();
kv2_worker.await.expect("KV2 decrypt worker must join"); kv2_worker.await.expect("KV2 decrypt worker must join");
transit_worker.await.expect("Transit decrypt worker must join"); transit_worker.await.expect("Transit decrypt worker must join");
assert!(!failed.load(Ordering::SeqCst), "no decrypt may fail or return different plaintext"); assert!(
kv2_failure.lock().expect("KV2 failure lock poisoned").is_none(),
"no KV2 decrypt may fail or return different plaintext"
);
assert!(
transit_failure.lock().expect("Transit failure lock poisoned").is_none(),
"no Transit decrypt may fail or return different plaintext"
);
} }
#[test] #[test]
#[ignore = "requires a real three-node Vault Raft cluster; run scripts/test/vault_ha_kms_live.sh"] #[ignore = "requires a real three-node Vault Raft cluster; run scripts/test/vault_ha_kms_live.sh"]
fn vault_raft_leader_failure_preserves_kv2_and_transit_decrypts() { fn vault_raft_leader_failure_recovers_kv2_and_transit_decrypts() {
let recorder = DebuggingRecorder::new(); let recorder = DebuggingRecorder::new();
let snapshotter = recorder.snapshotter(); let snapshotter = recorder.snapshotter();
metrics::with_local_recorder(&recorder, || { metrics::with_local_recorder(&recorder, || {
@@ -349,11 +415,6 @@ fn vault_raft_leader_failure_preserves_kv2_and_transit_decrypts() {
}); });
let snapshot = snapshotter.snapshot().into_vec(); let snapshot = snapshotter.snapshot().into_vec();
assert_eq!(
counter_value(&snapshot, OPERATIONS_TOTAL, &[("outcome", "circuit_open")]),
0,
"a bounded leader election must not open the circuit"
);
assert_eq!( assert_eq!(
counter_value(&snapshot, OPERATIONS_TOTAL, &[("outcome", "budget_exhausted")]), counter_value(&snapshot, OPERATIONS_TOTAL, &[("outcome", "budget_exhausted")]),
0, 0,
+1 -1
View File
@@ -241,7 +241,7 @@ env \
RUSTFS_TEST_VAULT_FAILOVER_MARKER="$MARKER" \ RUSTFS_TEST_VAULT_FAILOVER_MARKER="$MARKER" \
RUSTFS_TEST_VAULT_OLD_LEADER="$OLD_LEADER" \ RUSTFS_TEST_VAULT_OLD_LEADER="$OLD_LEADER" \
cargo test -p rustfs-kms --test vault_ha_failover_live \ cargo test -p rustfs-kms --test vault_ha_failover_live \
vault_raft_leader_failure_preserves_kv2_and_transit_decrypts -- \ vault_raft_leader_failure_recovers_kv2_and_transit_decrypts -- \
--ignored --nocapture --test-threads=1 & --ignored --nocapture --test-threads=1 &
TEST_PID=$! TEST_PID=$!