forked from TrueCloudLab/frostfs-node
357 lines
9.6 KiB
Go
357 lines
9.6 KiB
Go
package innerring
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import (
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"crypto/ecdsa"
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"crypto/elliptic"
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"errors"
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"fmt"
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"github.com/nspcc-dev/neo-go/pkg/core/mempoolevent"
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"github.com/nspcc-dev/neo-go/pkg/crypto/keys"
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neogoutil "github.com/nspcc-dev/neo-go/pkg/util"
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irsubnet "github.com/nspcc-dev/neofs-node/pkg/innerring/processors/subnet"
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netmapclient "github.com/nspcc-dev/neofs-node/pkg/morph/client/netmap"
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morphsubnet "github.com/nspcc-dev/neofs-node/pkg/morph/client/subnet"
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"github.com/nspcc-dev/neofs-node/pkg/morph/event"
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subnetevents "github.com/nspcc-dev/neofs-node/pkg/morph/event/subnet"
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"github.com/nspcc-dev/neofs-node/pkg/util"
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"github.com/nspcc-dev/neofs-sdk-go/netmap"
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"github.com/nspcc-dev/neofs-sdk-go/subnet"
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subnetid "github.com/nspcc-dev/neofs-sdk-go/subnet/id"
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"github.com/nspcc-dev/neofs-sdk-go/user"
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"github.com/panjf2000/ants/v2"
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"go.uber.org/zap"
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)
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// IR server's component to handle Subnet contract notifications.
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type subnetHandler struct {
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workerPool util.WorkerPool
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morphClient morphsubnet.Client
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putValidator irsubnet.PutValidator
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}
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// configuration of subnet component.
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type subnetConfig struct {
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queueSize uint32
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}
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// makes IR server to catch Subnet notifications from the sidechain listener,
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// and to release the corresponding processing queue on stop.
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func (s *Server) initSubnet(cfg subnetConfig) {
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s.registerStarter(func() error {
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var err error
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// initialize queue for processing of the events from Subnet contract
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s.subnetHandler.workerPool, err = ants.NewPool(int(cfg.queueSize), ants.WithNonblocking(true))
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if err != nil {
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return fmt.Errorf("subnet queue initialization: %w", err)
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}
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// initialize morph client of Subnet contract
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clientMode := morphsubnet.NotaryAlphabet
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if s.sideNotaryConfig.disabled {
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clientMode = morphsubnet.NonNotary
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}
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var initPrm morphsubnet.InitPrm
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initPrm.SetBaseClient(s.morphClient)
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initPrm.SetContractAddress(s.contracts.subnet)
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initPrm.SetMode(clientMode)
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err = s.subnetHandler.morphClient.Init(initPrm)
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if err != nil {
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return fmt.Errorf("init morph subnet client: %w", err)
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}
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s.listenSubnet()
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return nil
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})
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s.registerCloser(func() error {
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s.stopSubnet()
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return nil
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})
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}
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// releases the Subnet contract notification processing queue.
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func (s *Server) stopSubnet() {
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s.workerPool.Release()
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}
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// names of listened notification events from Subnet contract.
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const (
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// subnet creation
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subnetCreateEvName = "Put"
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// subnet removal
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subnetRemoveEvName = "Delete"
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// subnet creation (notary)
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notarySubnetCreateEvName = "put"
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)
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// makes the IR server to listen to notifications of Subnet contract.
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// All required resources must be initialized before (initSubnet).
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// It works in one of two modes (configured): notary and non-notary.
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//
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// All handlers are executed only if the local node is an alphabet one.
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//
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// Events (notary):
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// - put (parser: subnetevents.ParseNotaryPut, handler: catchSubnetCreation);
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// - Delete (parser: subnetevents.ParseDelete, handler: catchSubnetCreation).
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//
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// Events (non-notary):
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// - Put (parser: subnetevents.ParsePut, handler: catchSubnetCreation);
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// - Delete (parser: subnetevents.ParseDelete, handler: catchSubnetCreation).
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func (s *Server) listenSubnet() {
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if s.sideNotaryConfig.disabled {
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s.listenSubnetWithoutNotary()
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return
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}
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var (
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parserInfo event.NotaryParserInfo
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handlerInfo event.NotaryHandlerInfo
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)
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parserInfo.SetScriptHash(s.contracts.subnet)
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handlerInfo.SetScriptHash(s.contracts.subnet)
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listenNotaryEvent := func(notifyName string, parser event.NotaryParser, handler event.Handler) {
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notifyTyp := event.NotaryTypeFromString(notifyName)
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parserInfo.SetMempoolType(mempoolevent.TransactionAdded)
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handlerInfo.SetMempoolType(mempoolevent.TransactionAdded)
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parserInfo.SetParser(parser)
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handlerInfo.SetHandler(handler)
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parserInfo.SetRequestType(notifyTyp)
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handlerInfo.SetRequestType(notifyTyp)
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s.morphListener.SetNotaryParser(parserInfo)
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s.morphListener.RegisterNotaryHandler(handlerInfo)
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}
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// subnet creation
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listenNotaryEvent(notarySubnetCreateEvName, subnetevents.ParseNotaryPut, s.onlyAlphabetEventHandler(s.catchSubnetCreation))
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// subnet removal
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listenNotifySubnetEvent(s, subnetRemoveEvName, subnetevents.ParseDelete, s.onlyAlphabetEventHandler(s.catchSubnetRemoval))
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}
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func (s *Server) listenSubnetWithoutNotary() {
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// subnet creation
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listenNotifySubnetEvent(s, subnetCreateEvName, subnetevents.ParsePut, s.onlyAlphabetEventHandler(s.catchSubnetCreation))
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// subnet removal
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listenNotifySubnetEvent(s, subnetRemoveEvName, subnetevents.ParseDelete, s.onlyAlphabetEventHandler(s.catchSubnetRemoval))
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}
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func listenNotifySubnetEvent(s *Server, notifyName string, parser event.NotificationParser, handler event.Handler) {
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var (
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parserInfo event.NotificationParserInfo
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handlerInfo event.NotificationHandlerInfo
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)
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parserInfo.SetScriptHash(s.contracts.subnet)
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handlerInfo.SetScriptHash(s.contracts.subnet)
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notifyTyp := event.TypeFromString(notifyName)
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parserInfo.SetType(notifyTyp)
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handlerInfo.SetType(notifyTyp)
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parserInfo.SetParser(parser)
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handlerInfo.SetHandler(handler)
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s.morphListener.SetNotificationParser(parserInfo)
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s.morphListener.RegisterNotificationHandler(handlerInfo)
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}
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// catchSubnetCreation catches event of subnet creation from listener and queues the processing.
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func (s *Server) catchSubnetCreation(e event.Event) {
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err := s.subnetHandler.workerPool.Submit(func() {
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s.handleSubnetCreation(e)
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})
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if err != nil {
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s.log.Error("subnet creation queue failure",
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zap.String("error", err.Error()),
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)
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}
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}
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// implements irsubnet.Put event interface required by irsubnet.PutValidator.
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type putSubnetEvent struct {
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ev subnetevents.Put
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}
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// ReadID unmarshals the subnet ID from a binary NeoFS API protocol's format.
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func (x putSubnetEvent) ReadID(id *subnetid.ID) error {
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return id.Unmarshal(x.ev.ID())
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}
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var errMissingSubnetOwner = errors.New("missing subnet owner")
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// ReadCreator unmarshals the subnet creator from a binary NeoFS API protocol's format.
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// Returns an error if the byte array is empty.
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func (x putSubnetEvent) ReadCreator(id *user.ID) error {
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data := x.ev.Owner()
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if len(data) == 0 {
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return errMissingSubnetOwner
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}
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key, err := keys.NewPublicKeyFromBytes(data, elliptic.P256())
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if err != nil {
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return err
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}
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user.IDFromKey(id, (ecdsa.PublicKey)(*key))
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return nil
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}
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// ReadInfo unmarshal the subnet info from a binary NeoFS API protocol's format.
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func (x putSubnetEvent) ReadInfo(info *subnet.Info) error {
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return info.Unmarshal(x.ev.Info())
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}
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// handleSubnetCreation handles an event of subnet creation parsed via subnetevents.ParsePut.
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//
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// Validates the event using irsubnet.PutValidator. Logs message about (dis)agreement.
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func (s *Server) handleSubnetCreation(e event.Event) {
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putEv := e.(subnetevents.Put) // panic occurs only if we registered handler incorrectly
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err := s.subnetHandler.putValidator.Assert(putSubnetEvent{
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ev: putEv,
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})
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if err != nil {
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s.log.Info("discard subnet creation",
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zap.String("reason", err.Error()),
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)
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return
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}
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notaryMainTx := putEv.NotaryMainTx()
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isNotary := notaryMainTx != nil
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if isNotary {
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// re-sign notary request
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err = s.morphClient.NotarySignAndInvokeTX(notaryMainTx)
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} else {
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// send new transaction
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var prm morphsubnet.PutPrm
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prm.SetID(putEv.ID())
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prm.SetOwner(putEv.Owner())
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prm.SetInfo(putEv.Info())
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prm.SetTxHash(putEv.TxHash())
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_, err = s.subnetHandler.morphClient.Put(prm)
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}
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if err != nil {
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s.log.Error("approve subnet creation",
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zap.Bool("notary", isNotary),
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zap.String("error", err.Error()),
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)
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return
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}
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}
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// catchSubnetRemoval catches an event of subnet removal from listener and queues the processing.
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func (s *Server) catchSubnetRemoval(e event.Event) {
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err := s.subnetHandler.workerPool.Submit(func() {
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s.handleSubnetRemoval(e)
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})
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if err != nil {
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s.log.Error("subnet removal handling failure",
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zap.String("error", err.Error()),
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)
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}
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}
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// handleSubnetRemoval handles event of subnet removal parsed via subnetevents.ParseDelete.
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func (s *Server) handleSubnetRemoval(e event.Event) {
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delEv := e.(subnetevents.Delete) // panic occurs only if we registered handler incorrectly
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// handle subnet changes in netmap
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candidates, err := s.netmapClient.GetCandidates()
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if err != nil {
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s.log.Error("getting netmap candidates",
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zap.Error(err),
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)
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return
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}
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var removedID subnetid.ID
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err = removedID.Unmarshal(delEv.ID())
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if err != nil {
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s.log.Error("unmarshalling removed subnet ID",
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zap.String("error", err.Error()),
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)
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return
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}
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for i := range candidates {
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s.processCandidate(delEv.TxHash(), removedID, candidates[i])
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}
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}
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func (s *Server) processCandidate(txHash neogoutil.Uint256, removedID subnetid.ID, c netmap.NodeInfo) {
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removeSubnet := false
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log := s.log.With(
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zap.String("public_key", netmap.StringifyPublicKey(c)),
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zap.String("removed_subnet", removedID.String()),
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)
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err := c.IterateSubnets(func(id subnetid.ID) error {
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if removedID.Equals(id) {
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removeSubnet = true
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return netmap.ErrRemoveSubnet
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}
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return nil
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})
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if err != nil {
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log.Error("iterating node's subnets", zap.Error(err))
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log.Debug("removing node from netmap candidates")
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var updateStatePrm netmapclient.UpdatePeerPrm
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updateStatePrm.SetKey(c.PublicKey())
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updateStatePrm.SetHash(txHash)
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err = s.netmapClient.UpdatePeerState(updateStatePrm)
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if err != nil {
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log.Error("removing node from candidates",
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zap.Error(err),
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)
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}
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return
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}
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// remove subnet from node's information
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// if it contains removed subnet
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if removeSubnet {
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log.Debug("removing subnet from the node")
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var addPeerPrm netmapclient.AddPeerPrm
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addPeerPrm.SetNodeInfo(c)
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addPeerPrm.SetHash(txHash)
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err = s.netmapClient.AddPeer(addPeerPrm)
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if err != nil {
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log.Error("updating subnet info",
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zap.Error(err),
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)
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}
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}
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}
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