Files
easyai-ai-gateway/apps/api/internal/store/admission_lock.go
T
wangbo 3d9ae74b87 fix(admission): 避免高并发准入锁占满连接池
将同进程相同准入键的请求先在内存中串行化,跨节点使用 pg_try_advisory_xact_lock 非阻塞竞争并在事务外退避,避免等待 advisory lock 时长期占用 PostgreSQL 连接。\n\n新增 64 路竞争回归测试,验证被占用锁下连接池峰值仅保留持锁者和单个尝试者;256 路 Gemini Base64 端到端压力通过,advisory wait 峰值为 0。
2026-07-31 06:31:24 +08:00

171 lines
4.0 KiB
Go

package store
import (
"context"
"errors"
"sort"
"sync"
"time"
"github.com/jackc/pgx/v5"
)
const (
admissionLockRetryMin = 10 * time.Millisecond
admissionLockRetryMax = 250 * time.Millisecond
)
var (
errAdmissionLockBusy = errors.New("task admission lock is busy")
processAdmissionLocks = newAdmissionLocalLockSet()
)
type admissionLocalLock struct {
token chan struct{}
refs int
}
type admissionLocalLockSet struct {
mu sync.Mutex
locks map[string]*admissionLocalLock
}
func newAdmissionLocalLockSet() *admissionLocalLockSet {
return &admissionLocalLockSet{locks: make(map[string]*admissionLocalLock)}
}
// acquire serializes contenders inside one API or Worker process before they
// consume a PostgreSQL connection. Sorted acquisition keeps operations that
// span task, platform-model, and user-group keys deadlock-free.
func (s *admissionLocalLockSet) acquire(ctx context.Context, keys []string) (func(), error) {
keys = normalizedAdmissionLockKeys(keys)
acquired := make([]struct {
key string
lock *admissionLocalLock
}, 0, len(keys))
for _, key := range keys {
lock := s.reference(key)
select {
case lock.token <- struct{}{}:
acquired = append(acquired, struct {
key string
lock *admissionLocalLock
}{key: key, lock: lock})
case <-ctx.Done():
s.unreference(key, lock)
for index := len(acquired) - 1; index >= 0; index-- {
<-acquired[index].lock.token
s.unreference(acquired[index].key, acquired[index].lock)
}
return nil, ctx.Err()
}
}
return func() {
for index := len(acquired) - 1; index >= 0; index-- {
<-acquired[index].lock.token
s.unreference(acquired[index].key, acquired[index].lock)
}
}, nil
}
func (s *admissionLocalLockSet) reference(key string) *admissionLocalLock {
s.mu.Lock()
defer s.mu.Unlock()
lock := s.locks[key]
if lock == nil {
lock = &admissionLocalLock{token: make(chan struct{}, 1)}
s.locks[key] = lock
}
lock.refs++
return lock
}
func (s *admissionLocalLockSet) unreference(key string, lock *admissionLocalLock) {
s.mu.Lock()
defer s.mu.Unlock()
lock.refs--
if lock.refs == 0 && s.locks[key] == lock {
delete(s.locks, key)
}
}
func normalizedAdmissionLockKeys(keys []string) []string {
seen := make(map[string]struct{}, len(keys))
normalized := make([]string, 0, len(keys))
for _, key := range keys {
if key == "" {
continue
}
if _, exists := seen[key]; exists {
continue
}
seen[key] = struct{}{}
normalized = append(normalized, key)
}
sort.Strings(normalized)
return normalized
}
func admissionOperationLockKeys(input TaskAdmissionInput) []string {
keys := []string{"task-admission:" + input.TaskID}
for _, scope := range normalizedAdmissionScopes(input.Scopes) {
keys = append(keys, admissionLockKey(scope))
}
return normalizedAdmissionLockKeys(keys)
}
func tryAdmissionTransactionLock(ctx context.Context, tx pgx.Tx, key string) error {
var locked bool
if err := tx.QueryRow(
ctx,
`SELECT pg_try_advisory_xact_lock(hashtextextended($1, 0))`,
key,
).Scan(&locked); err != nil {
return err
}
if !locked {
return errAdmissionLockBusy
}
return nil
}
func retryAdmissionOperation[T any](
ctx context.Context,
keys []string,
operation func() (T, error),
) (T, error) {
var zero T
for attempt := 0; ; attempt++ {
release, err := processAdmissionLocks.acquire(ctx, keys)
if err != nil {
return zero, err
}
result, operationErr := operation()
release()
if !errors.Is(operationErr, errAdmissionLockBusy) {
return result, operationErr
}
if err := waitAdmissionLockRetry(ctx, attempt); err != nil {
return zero, err
}
}
}
func waitAdmissionLockRetry(ctx context.Context, attempt int) error {
delay := admissionLockRetryMin
for index := 0; index < attempt && delay < admissionLockRetryMax; index++ {
delay *= 2
}
if delay > admissionLockRetryMax {
delay = admissionLockRetryMax
}
timer := time.NewTimer(delay)
defer timer.Stop()
select {
case <-timer.C:
return nil
case <-ctx.Done():
return ctx.Err()
}
}