Files
cgrates/services/datadb.go
ionutboangiu 712aeb0d4a Revise StateDeps implementation
Now tracks states by passing around an empty struct as a signal to
states defined on the service, as opposed to signal state changes by
closing the channel. This makes sure services can only be in one
state at once and allows for multiple state changes which were not
possible before.
2025-02-07 13:23:59 +01:00

187 lines
6.3 KiB
Go

/*
Real-time Online/Offline Charging System (OCS) for Telecom & ISP environments
Copyright (C) ITsysCOM GmbH
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>
*/
package services
import (
"fmt"
"sync"
"github.com/cgrates/cgrates/config"
"github.com/cgrates/cgrates/engine"
"github.com/cgrates/cgrates/servmanager"
"github.com/cgrates/cgrates/utils"
)
// NewDataDBService returns the DataDB Service
func NewDataDBService(cfg *config.CGRConfig, setVersions bool) *DataDBService {
return &DataDBService{
cfg: cfg,
setVersions: setVersions,
stateDeps: NewStateDependencies([]string{utils.StateServiceUP, utils.StateServiceDOWN}),
}
}
// DataDBService implements Service interface
type DataDBService struct {
mu sync.RWMutex
cfg *config.CGRConfig
oldDBCfg *config.DataDbCfg
dm *engine.DataManager
setVersions bool
stateDeps *StateDependencies // channel subscriptions for state changes
}
// Start handles the service start.
func (db *DataDBService) Start(_ *utils.SyncedChan, registry *servmanager.ServiceRegistry) (err error) {
cms, err := WaitForServiceState(utils.StateServiceUP, utils.ConnManager, registry, db.cfg.GeneralCfg().ConnectTimeout)
if err != nil {
return
}
db.mu.Lock()
defer db.mu.Unlock()
db.oldDBCfg = db.cfg.DataDbCfg().Clone()
dbConn, err := engine.NewDataDBConn(db.cfg.DataDbCfg().Type,
db.cfg.DataDbCfg().Host, db.cfg.DataDbCfg().Port,
db.cfg.DataDbCfg().Name, db.cfg.DataDbCfg().User,
db.cfg.DataDbCfg().Password, db.cfg.GeneralCfg().DBDataEncoding,
db.cfg.DataDbCfg().Opts, db.cfg.DataDbCfg().Items)
if err != nil { // Cannot configure getter database, show stopper
utils.Logger.Crit(fmt.Sprintf("Could not configure dataDb: %s exiting!", err))
return
}
db.dm = engine.NewDataManager(dbConn, db.cfg.CacheCfg(), cms.(*ConnManagerService).ConnManager())
if db.setVersions {
err = engine.OverwriteDBVersions(dbConn)
} else {
err = engine.CheckVersions(db.dm.DataDB())
}
if err != nil {
return err
}
return
}
// Reload handles the change of config
func (db *DataDBService) Reload(_ *utils.SyncedChan, _ *servmanager.ServiceRegistry) (err error) {
db.mu.Lock()
defer db.mu.Unlock()
if db.needsConnectionReload() {
var d engine.DataDBDriver
d, err = engine.NewDataDBConn(db.cfg.DataDbCfg().Type,
db.cfg.DataDbCfg().Host, db.cfg.DataDbCfg().Port,
db.cfg.DataDbCfg().Name, db.cfg.DataDbCfg().User,
db.cfg.DataDbCfg().Password, db.cfg.GeneralCfg().DBDataEncoding,
db.cfg.DataDbCfg().Opts, db.cfg.DataDbCfg().Items)
if err != nil {
return
}
db.dm.Reconnect(d)
db.oldDBCfg = db.cfg.DataDbCfg().Clone()
return
}
if db.cfg.DataDbCfg().Type == utils.MetaMongo {
mgo, canCast := db.dm.DataDB().(*engine.MongoStorage)
if !canCast {
return fmt.Errorf("can't conver DataDB of type %s to MongoStorage",
db.cfg.DataDbCfg().Type)
}
mgo.SetTTL(db.cfg.DataDbCfg().Opts.MongoQueryTimeout)
}
return
}
// Shutdown stops the service
func (db *DataDBService) Shutdown(registry *servmanager.ServiceRegistry) error {
deps := []string{
utils.ResourceS,
utils.TrendS,
utils.RankingS,
utils.StatS,
utils.ThresholdS,
}
for _, svcID := range deps {
if servmanager.State(registry.Lookup(svcID)) != utils.StateServiceUP {
continue
}
_, err := WaitForServiceState(utils.StateServiceDOWN, svcID, registry, db.cfg.GeneralCfg().ConnectTimeout)
if err != nil {
return err
}
}
db.mu.Lock()
defer db.mu.Unlock()
db.dm.DataDB().Close()
return nil
}
// ServiceName returns the service name
func (db *DataDBService) ServiceName() string {
return utils.DataDB
}
// ShouldRun returns if the service should be running
func (db *DataDBService) ShouldRun() bool { // db should allways run
return true // ||db.mandatoryDB() || db.cfg.SessionSCfg().Enabled
}
// needsConnectionReload returns if the DB connection needs to reloaded
func (db *DataDBService) needsConnectionReload() bool {
if db.oldDBCfg.Type != db.cfg.DataDbCfg().Type ||
db.oldDBCfg.Host != db.cfg.DataDbCfg().Host ||
db.oldDBCfg.Name != db.cfg.DataDbCfg().Name ||
db.oldDBCfg.Port != db.cfg.DataDbCfg().Port ||
db.oldDBCfg.User != db.cfg.DataDbCfg().User ||
db.oldDBCfg.Password != db.cfg.DataDbCfg().Password {
return true
}
if db.cfg.DataDbCfg().Type == utils.MetaInternal { // in case of internal recreate the db using the new config
for key, itm := range db.oldDBCfg.Items {
if db.cfg.DataDbCfg().Items[key].Limit != itm.Limit &&
db.cfg.DataDbCfg().Items[key].StaticTTL != itm.StaticTTL &&
db.cfg.DataDbCfg().Items[key].TTL != itm.TTL {
return true
}
}
}
return db.oldDBCfg.Type == utils.MetaRedis &&
(db.oldDBCfg.Opts.RedisMaxConns != db.cfg.DataDbCfg().Opts.RedisMaxConns ||
db.oldDBCfg.Opts.RedisConnectAttempts != db.cfg.DataDbCfg().Opts.RedisConnectAttempts ||
db.oldDBCfg.Opts.RedisSentinel != db.cfg.DataDbCfg().Opts.RedisSentinel ||
db.oldDBCfg.Opts.RedisCluster != db.cfg.DataDbCfg().Opts.RedisCluster ||
db.oldDBCfg.Opts.RedisClusterSync != db.cfg.DataDbCfg().Opts.RedisClusterSync ||
db.oldDBCfg.Opts.RedisClusterOndownDelay != db.cfg.DataDbCfg().Opts.RedisClusterOndownDelay ||
db.oldDBCfg.Opts.RedisConnectTimeout != db.cfg.DataDbCfg().Opts.RedisConnectTimeout ||
db.oldDBCfg.Opts.RedisReadTimeout != db.cfg.DataDbCfg().Opts.RedisReadTimeout ||
db.oldDBCfg.Opts.RedisWriteTimeout != db.cfg.DataDbCfg().Opts.RedisWriteTimeout ||
db.oldDBCfg.Opts.RedisPoolPipelineWindow != db.cfg.DataDbCfg().Opts.RedisPoolPipelineWindow ||
db.oldDBCfg.Opts.RedisPoolPipelineLimit != db.cfg.DataDbCfg().Opts.RedisPoolPipelineLimit)
}
// DataManager returns the DataManager object.
func (db *DataDBService) DataManager() *engine.DataManager {
return db.dm
}
// StateChan returns signaling channel of specific state
func (db *DataDBService) StateChan(stateID string) chan struct{} {
return db.stateDeps.StateChan(stateID)
}