forked from TrueCloudLab/frostfs-node
Dmitrii Stepanov
a7c79c773a
Resolve containedctx linter for cfg Signed-off-by: Dmitrii Stepanov <d.stepanov@yadro.com>
310 lines
8.5 KiB
Go
310 lines
8.5 KiB
Go
package main
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import (
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"context"
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"errors"
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"fmt"
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"time"
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morphconfig "git.frostfs.info/TrueCloudLab/frostfs-node/cmd/frostfs-node/config/morph"
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"git.frostfs.info/TrueCloudLab/frostfs-node/pkg/core/netmap"
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"git.frostfs.info/TrueCloudLab/frostfs-node/pkg/morph/client"
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nmClient "git.frostfs.info/TrueCloudLab/frostfs-node/pkg/morph/client/netmap"
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"git.frostfs.info/TrueCloudLab/frostfs-node/pkg/morph/event"
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netmapEvent "git.frostfs.info/TrueCloudLab/frostfs-node/pkg/morph/event/netmap"
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"git.frostfs.info/TrueCloudLab/frostfs-node/pkg/morph/subscriber"
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"git.frostfs.info/TrueCloudLab/frostfs-node/pkg/util/rand"
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"github.com/nspcc-dev/neo-go/pkg/core/block"
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"github.com/nspcc-dev/neo-go/pkg/core/state"
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"github.com/nspcc-dev/neo-go/pkg/util"
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"go.uber.org/zap"
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)
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const (
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newEpochNotification = "NewEpoch"
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// amount of tries(blocks) before notary deposit timeout.
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notaryDepositRetriesAmount = 300
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)
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func initMorphComponents(c *cfg) {
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var err error
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addresses := morphconfig.RPCEndpoint(c.appCfg)
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// Morph client stable-sorts endpoints by priority. Shuffle here to randomize
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// order of endpoints with the same priority.
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rand.Shuffle(len(addresses), func(i, j int) {
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addresses[i], addresses[j] = addresses[j], addresses[i]
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})
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cli, err := client.New(c.key,
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client.WithDialTimeout(morphconfig.DialTimeout(c.appCfg)),
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client.WithLogger(c.log),
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client.WithEndpoints(addresses...),
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client.WithConnLostCallback(func() {
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c.internalErr <- errors.New("morph connection has been lost")
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}),
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client.WithSwitchInterval(morphconfig.SwitchInterval(c.appCfg)),
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)
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if err != nil {
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c.log.Info("failed to create neo RPC client",
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zap.Any("endpoints", addresses),
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zap.String("error", err.Error()),
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)
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fatalOnErr(err)
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}
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c.onShutdown(func() {
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c.log.Info("closing morph components...")
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cli.Close()
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})
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if err := cli.SetGroupSignerScope(); err != nil {
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c.log.Info("failed to set group signer scope, continue with Global", zap.Error(err))
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}
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c.cfgMorph.client = cli
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c.cfgMorph.notaryEnabled = cli.ProbeNotary()
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lookupScriptHashesInNNS(c) // smart contract auto negotiation
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if c.cfgMorph.notaryEnabled {
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err = c.cfgMorph.client.EnableNotarySupport(
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client.WithProxyContract(
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c.cfgMorph.proxyScriptHash,
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),
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)
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fatalOnErr(err)
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}
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c.log.Info("notary support",
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zap.Bool("sidechain_enabled", c.cfgMorph.notaryEnabled),
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)
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wrap, err := nmClient.NewFromMorph(c.cfgMorph.client, c.cfgNetmap.scriptHash, 0, nmClient.TryNotary())
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fatalOnErr(err)
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var netmapSource netmap.Source
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c.cfgMorph.cacheTTL = morphconfig.CacheTTL(c.appCfg)
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if c.cfgMorph.cacheTTL == 0 {
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msPerBlock, err := c.cfgMorph.client.MsPerBlock()
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fatalOnErr(err)
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c.cfgMorph.cacheTTL = time.Duration(msPerBlock) * time.Millisecond
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c.log.Debug("morph.cache_ttl fetched from network", zap.Duration("value", c.cfgMorph.cacheTTL))
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}
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if c.cfgMorph.cacheTTL < 0 {
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netmapSource = wrap
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} else {
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// use RPC node as source of netmap (with caching)
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netmapSource = newCachedNetmapStorage(c.cfgNetmap.state, wrap)
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}
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c.netMapSource = netmapSource
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c.cfgNetmap.wrapper = wrap
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}
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func makeAndWaitNotaryDeposit(ctx context.Context, c *cfg) {
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// skip notary deposit in non-notary environments
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if !c.cfgMorph.notaryEnabled {
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return
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}
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tx, err := makeNotaryDeposit(c)
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fatalOnErr(err)
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if tx.Equals(util.Uint256{}) {
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// non-error deposit with an empty TX hash means
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// that the deposit has already been made; no
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// need to wait it.
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c.log.Info("notary deposit has already been made")
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return
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}
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err = waitNotaryDeposit(ctx, c, tx)
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fatalOnErr(err)
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}
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func makeNotaryDeposit(c *cfg) (util.Uint256, error) {
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const (
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// gasMultiplier defines how many times more the notary
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// balance must be compared to the GAS balance of the node:
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// notaryBalance = GASBalance * gasMultiplier
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gasMultiplier = 3
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// gasDivisor defines what part of GAS balance (1/gasDivisor)
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// should be transferred to the notary service
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gasDivisor = 2
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)
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depositAmount, err := client.CalculateNotaryDepositAmount(c.cfgMorph.client, gasMultiplier, gasDivisor)
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if err != nil {
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return util.Uint256{}, fmt.Errorf("could not calculate notary deposit: %w", err)
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}
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return c.cfgMorph.client.DepositEndlessNotary(depositAmount)
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}
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var (
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errNotaryDepositFail = errors.New("notary deposit tx has faulted")
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errNotaryDepositTimeout = errors.New("notary deposit tx has not appeared in the network")
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)
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func waitNotaryDeposit(ctx context.Context, c *cfg, tx util.Uint256) error {
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for i := 0; i < notaryDepositRetriesAmount; i++ {
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select {
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case <-ctx.Done():
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return ctx.Err()
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default:
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}
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ok, err := c.cfgMorph.client.TxHalt(tx)
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if err == nil {
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if ok {
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return nil
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}
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return errNotaryDepositFail
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}
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err = c.cfgMorph.client.Wait(ctx, 1)
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if err != nil {
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return fmt.Errorf("could not wait for one block in chain: %w", err)
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}
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}
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return errNotaryDepositTimeout
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}
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func listenMorphNotifications(ctx context.Context, c *cfg) {
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// listenerPoolCap is a capacity of a
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// worker pool inside the listener. It
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// is used to prevent blocking in neo-go:
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// the client cannot make RPC requests if
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// the notification channel is not being
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// read by another goroutine.
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const listenerPoolCap = 10
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var (
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err error
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subs subscriber.Subscriber
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)
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fromSideChainBlock, err := c.persistate.UInt32(persistateSideChainLastBlockKey)
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if err != nil {
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fromSideChainBlock = 0
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c.log.Warn("can't get last processed side chain block number", zap.String("error", err.Error()))
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}
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subs, err = subscriber.New(ctx, &subscriber.Params{
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Log: c.log,
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StartFromBlock: fromSideChainBlock,
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Client: c.cfgMorph.client,
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})
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fatalOnErr(err)
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lis, err := event.NewListener(event.ListenerParams{
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Logger: c.log,
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Subscriber: subs,
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WorkerPoolCapacity: listenerPoolCap,
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})
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fatalOnErr(err)
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c.workers = append(c.workers, newWorkerFromFunc(func(wCtx context.Context) {
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runAndLog(wCtx, c, "morph notification", false, func(lCtx context.Context, c *cfg) {
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lis.ListenWithError(lCtx, c.internalErr)
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})
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}))
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setNetmapNotificationParser(c, newEpochNotification, func(src *state.ContainedNotificationEvent) (event.Event, error) {
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res, err := netmapEvent.ParseNewEpoch(src)
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if err == nil {
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c.log.Info("new epoch event from sidechain",
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zap.Uint64("number", res.(netmapEvent.NewEpoch).EpochNumber()),
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)
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}
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return res, err
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})
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registerNotificationHandlers(c.cfgNetmap.scriptHash, lis, c.cfgNetmap.parsers, c.cfgNetmap.subscribers)
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registerNotificationHandlers(c.cfgContainer.scriptHash, lis, c.cfgContainer.parsers, c.cfgContainer.subscribers)
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registerBlockHandler(lis, func(block *block.Block) {
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c.log.Debug("new block", zap.Uint32("index", block.Index))
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err = c.persistate.SetUInt32(persistateSideChainLastBlockKey, block.Index)
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if err != nil {
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c.log.Warn("can't update persistent state",
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zap.String("chain", "side"),
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zap.Uint32("block_index", block.Index))
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}
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tickBlockTimers(c)
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})
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}
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func registerNotificationHandlers(scHash util.Uint160, lis event.Listener, parsers map[event.Type]event.NotificationParser,
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subs map[event.Type][]event.Handler) {
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for typ, handlers := range subs {
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pi := event.NotificationParserInfo{}
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pi.SetType(typ)
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pi.SetScriptHash(scHash)
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p, ok := parsers[typ]
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if !ok {
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panic(fmt.Sprintf("missing parser for event %s", typ))
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}
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pi.SetParser(p)
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lis.SetNotificationParser(pi)
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for _, h := range handlers {
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hi := event.NotificationHandlerInfo{}
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hi.SetType(typ)
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hi.SetScriptHash(scHash)
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hi.SetHandler(h)
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lis.RegisterNotificationHandler(hi)
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}
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}
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}
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func registerBlockHandler(lis event.Listener, handler event.BlockHandler) {
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lis.RegisterBlockHandler(handler)
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}
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// lookupScriptHashesInNNS looks up for contract script hashes in NNS contract of side
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// chain if they were not specified in config file.
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func lookupScriptHashesInNNS(c *cfg) {
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var (
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err error
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emptyHash = util.Uint160{}
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targets = [...]struct {
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h *util.Uint160
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nnsName string
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}{
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{&c.cfgNetmap.scriptHash, client.NNSNetmapContractName},
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{&c.cfgAccounting.scriptHash, client.NNSBalanceContractName},
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{&c.cfgContainer.scriptHash, client.NNSContainerContractName},
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{&c.cfgReputation.scriptHash, client.NNSReputationContractName},
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{&c.cfgMorph.proxyScriptHash, client.NNSProxyContractName},
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}
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)
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for _, t := range targets {
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if t.nnsName == client.NNSProxyContractName && !c.cfgMorph.notaryEnabled {
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continue // ignore proxy contract if notary disabled
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}
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if emptyHash.Equals(*t.h) {
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*t.h, err = c.cfgMorph.client.NNSContractAddress(t.nnsName)
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fatalOnErrDetails(fmt.Sprintf("can't resolve %s in NNS", t.nnsName), err)
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}
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}
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}
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