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sub2api/backend/internal/service/payment_order_expiry_service.go
T

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package service
import (
"context"
"database/sql"
"log/slog"
"sync"
"time"
"github.com/google/uuid"
)
const expiryCheckTimeout = 30 * time.Second
const (
// paymentOrderExpiryLeaderLockKey gates the periodic reconcile + expiry sweep so
// that only one instance issues the upstream payment-provider calls per cycle.
paymentOrderExpiryLeaderLockKey = "payment:order:expiry:leader"
// paymentOrderExpiryLeaderLockTTL must exceed the combined reconcile + expiry
// timeouts (2 * expiryCheckTimeout) so the lock never expires mid-run.
paymentOrderExpiryLeaderLockTTL = 3 * time.Minute
)
// PaymentOrderExpiryService periodically expires timed-out payment orders.
type PaymentOrderExpiryService struct {
paymentSvc *PaymentService
interval time.Duration
stopCh chan struct{}
stopOnce sync.Once
wg sync.WaitGroup
lockCache LeaderLockCache
db *sql.DB
instanceID string
}
func NewPaymentOrderExpiryService(paymentSvc *PaymentService, interval time.Duration) *PaymentOrderExpiryService {
return &PaymentOrderExpiryService{
paymentSvc: paymentSvc,
interval: interval,
stopCh: make(chan struct{}),
instanceID: uuid.NewString(),
}
}
// SetLeaderLock injects the leader-lock cache and DB used to elect a single
// instance for the periodic reconcile/expiry sweep. When both are nil the job
// runs ungated (single-instance / test behavior).
func (s *PaymentOrderExpiryService) SetLeaderLock(lockCache LeaderLockCache, db *sql.DB) {
if s == nil {
return
}
s.lockCache = lockCache
s.db = db
}
func (s *PaymentOrderExpiryService) Start() {
if s == nil || s.paymentSvc == nil || s.interval <= 0 {
return
}
s.wg.Add(1)
go func() {
defer s.wg.Done()
ticker := time.NewTicker(s.interval)
defer ticker.Stop()
s.runOnce()
for {
select {
case <-ticker.C:
s.runOnce()
case <-s.stopCh:
return
}
}
}()
}
func (s *PaymentOrderExpiryService) Stop() {
if s == nil {
return
}
s.stopOnce.Do(func() {
close(s.stopCh)
})
s.wg.Wait()
}
func (s *PaymentOrderExpiryService) runOnce() {
// Multi-instance guard: only the leader reconciles/expires orders per cycle,
// avoiding N× upstream payment-provider API calls and update races.
lockCtx, lockCancel := context.WithTimeout(context.Background(), 2*time.Second)
release, ok := tryAcquireSingletonLeaderLock(lockCtx, s.lockCache, s.db, paymentOrderExpiryLeaderLockKey, s.instanceID, paymentOrderExpiryLeaderLockTTL)
lockCancel()
if !ok {
return
}
defer release()
reconcileCtx, cancel := context.WithTimeout(context.Background(), expiryCheckTimeout)
recovered, err := s.paymentSvc.ReconcilePendingWxpayOrders(reconcileCtx)
cancel()
if err != nil {
slog.Warn("[PaymentOrderExpiry] failed to reconcile pending wxpay orders", "error", err)
} else if recovered > 0 {
slog.Info("[PaymentOrderExpiry] reconciled paid wxpay orders", "count", recovered)
}
expireCtx, cancel := context.WithTimeout(context.Background(), expiryCheckTimeout)
defer cancel()
expired, err := s.paymentSvc.ExpireTimedOutOrders(expireCtx)
if err != nil {
slog.Error("[PaymentOrderExpiry] failed to expire orders", "error", err)
return
}
if expired > 0 {
slog.Info("[PaymentOrderExpiry] expired timed-out orders", "count", expired)
}
}