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215 lines
4.8 KiB
215 lines
4.8 KiB
package service
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import (
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"fmt"
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"time"
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msg_pb "github.com/harmony-one/harmony/api/proto/message"
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"github.com/harmony-one/harmony/internal/utils"
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)
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// ActionType is the input for Service Manager to operate.
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type ActionType byte
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// Constants for Action Type.
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const (
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Start ActionType = iota
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Stop
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Notify
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)
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// Type is service type.
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type Type byte
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// Constants for Type.
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const (
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SupportSyncing Type = iota
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ClientSupport
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SupportExplorer
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Consensus
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Randomness
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BlockProposal
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NetworkInfo
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PeerDiscovery
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Resharding
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Staking
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Test
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Done
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)
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func (t Type) String() string {
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switch t {
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case ClientSupport:
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return "ClientSupport"
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case SupportSyncing:
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return "SyncingSupport"
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case SupportExplorer:
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return "SupportExplorer"
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case Consensus:
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return "Consensus"
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case Randomness:
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return "Randomness"
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case BlockProposal:
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return "BlockProposal"
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case NetworkInfo:
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return "NetworkInfo"
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case Staking:
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return "Staking"
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case PeerDiscovery:
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return "PeerDiscovery"
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case Resharding:
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return "Resharding"
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case Test:
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return "Test"
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case Done:
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return "Done"
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default:
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return "Unknown"
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}
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}
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// Constants for timing.
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const (
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// WaitForStatusUpdate is the delay time to update new status. Currently set 1 second for development. Should be 30 minutes for production.
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WaitForStatusUpdate = time.Minute * 1
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)
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// Action is type of service action.
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type Action struct {
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Action ActionType
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ServiceType Type
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Params map[string]interface{}
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}
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// Interface is the collection of functions any service needs to implement.
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type Interface interface {
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StartService()
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SetMessageChan(msgChan chan *msg_pb.Message)
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StopService()
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NotifyService(map[string]interface{})
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}
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// Manager stores all services for service manager.
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type Manager struct {
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services map[Type]Interface
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actionChannel chan *Action
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}
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// GetServices returns all registered services.
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func (m *Manager) GetServices() map[Type]Interface {
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return m.services
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}
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// Register registers new service to service store.
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func (m *Manager) Register(t Type, service Interface) {
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if m.services == nil {
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m.services = make(map[Type]Interface)
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}
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if _, ok := m.services[t]; ok {
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utils.GetLogInstance().Error("This service is already included: ", "servie", t)
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return
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}
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m.services[t] = service
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}
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// SetupServiceManager inits service map and start service manager.
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func (m *Manager) SetupServiceManager() {
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m.InitServiceMap()
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m.actionChannel = m.StartServiceManager()
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}
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// RegisterService is used for testing.
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func (m *Manager) RegisterService(t Type, service Interface) {
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m.Register(t, service)
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}
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// InitServiceMap initializes service map.
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func (m *Manager) InitServiceMap() {
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m.services = make(map[Type]Interface)
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}
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// SendAction sends action to action channel which is observed by service manager.
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func (m *Manager) SendAction(action *Action) {
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m.actionChannel <- action
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}
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// TakeAction is how service manager handles the action.
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func (m *Manager) TakeAction(action *Action) {
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if m.services == nil {
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utils.GetLogInstance().Error("Service store is not initialized.")
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return
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}
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if service, ok := m.services[action.ServiceType]; ok {
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switch action.Action {
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case Start:
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fmt.Printf("Start %s\n", action.ServiceType)
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service.StartService()
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case Stop:
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fmt.Printf("Stop %s\n", action.ServiceType)
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service.StopService()
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case Notify:
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fmt.Printf("Notify %s\n", action.ServiceType)
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service.NotifyService(action.Params)
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}
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}
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}
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// StartServiceManager starts service manager.
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func (m *Manager) StartServiceManager() chan *Action {
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ch := make(chan *Action)
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go func() {
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for {
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select {
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case action := <-ch:
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m.TakeAction(action)
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if action.ServiceType == Done {
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return
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}
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case <-time.After(WaitForStatusUpdate):
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utils.GetLogInstance().Info("Waiting for new action.")
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}
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}
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}()
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return ch
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}
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// RunServices run registered services.
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func (m *Manager) RunServices() {
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for serviceType := range m.services {
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action := &Action{
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Action: Start,
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ServiceType: serviceType,
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}
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m.TakeAction(action)
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}
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}
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// SetupServiceMessageChan sets up message channel to services.
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func (m *Manager) SetupServiceMessageChan(mapServiceTypeChan map[Type]chan *msg_pb.Message) {
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for serviceType, service := range m.services {
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// TODO(minhdoan): for performance, consider buffered channel.
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mapServiceTypeChan[serviceType] = make(chan *msg_pb.Message)
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service.SetMessageChan(mapServiceTypeChan[serviceType])
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}
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}
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// StopService stops service with type t.
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func (m *Manager) StopService(t Type) {
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if service, ok := m.services[t]; ok {
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service.StopService()
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}
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}
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// StopServicesByRole stops all service of the given role.
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func (m *Manager) StopServicesByRole(liveServices []Type) {
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marked := make(map[Type]bool)
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for _, s := range liveServices {
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marked[s] = true
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}
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for t := range m.GetServices() {
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if _, ok := marked[t]; !ok {
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m.StopService(t)
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}
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}
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}
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