lotus/node/builder.go

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package node
import (
"context"
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"errors"
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"reflect"
"time"
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"github.com/ipfs/go-datastore"
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blockstore "github.com/ipfs/go-ipfs-blockstore"
exchange "github.com/ipfs/go-ipfs-exchange-interface"
ci "github.com/libp2p/go-libp2p-core/crypto"
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"github.com/libp2p/go-libp2p-core/host"
"github.com/libp2p/go-libp2p-core/peer"
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"github.com/libp2p/go-libp2p-core/peerstore"
"github.com/libp2p/go-libp2p-core/routing"
"github.com/libp2p/go-libp2p-peerstore/pstoremem"
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pubsub "github.com/libp2p/go-libp2p-pubsub"
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record "github.com/libp2p/go-libp2p-record"
"go.uber.org/fx"
"github.com/filecoin-project/go-lotus/api"
"github.com/filecoin-project/go-lotus/build"
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"github.com/filecoin-project/go-lotus/chain"
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"github.com/filecoin-project/go-lotus/node/config"
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"github.com/filecoin-project/go-lotus/node/hello"
"github.com/filecoin-project/go-lotus/node/modules"
"github.com/filecoin-project/go-lotus/node/modules/helpers"
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"github.com/filecoin-project/go-lotus/node/modules/lp2p"
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"github.com/filecoin-project/go-lotus/node/modules/testing"
)
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// special is a type used to give keys to modules which
// can't really be identified by the returned type
type special struct{ id int }
//nolint:golint
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var (
DefaultTransportsKey = special{0} // Libp2p option
PNetKey = special{1} // Option + multiret
DiscoveryHandlerKey = special{2} // Private type
AddrsFactoryKey = special{3} // Libp2p option
SmuxTransportKey = special{4} // Libp2p option
RelayKey = special{5} // Libp2p option
SecurityKey = special{6} // Libp2p option
BaseRoutingKey = special{7} // fx groups + multiret
NatPortMapKey = special{8} // Libp2p option
ConnectionManagerKey = special{9} // Libp2p option
)
type invoke int
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//nolint:golint
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const (
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// libp2p
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PstoreAddSelfKeysKey = invoke(iota)
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StartListeningKey
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// filecoin
SetGenisisKey
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RunHelloKey
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RunBlockSyncKey
HandleIncomingBlocksKey
HandleIncomingMessagesKey
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_nInvokes // keep this last
)
type settings struct {
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// modules is a map of constructors for DI
//
// In most cases the index will be a reflect. Type of element returned by
// the constructor, but for some 'constructors' it's hard to specify what's
// the return type should be (or the constructor returns fx group)
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modules map[interface{}]fx.Option
// invokes are separate from modules as they can't be referenced by return
// type, and must be applied in correct order
invokes []fx.Option
online bool // Online option applied
config bool // Config option applied
}
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// Override option changes constructor for a given type
func Override(typ, constructor interface{}) Option {
return func(s *settings) error {
if i, ok := typ.(invoke); ok {
s.invokes[i] = fx.Invoke(constructor)
return nil
}
if c, ok := typ.(special); ok {
s.modules[c] = fx.Provide(constructor)
return nil
}
ctor := as(constructor, typ)
rt := reflect.TypeOf(typ).Elem()
s.modules[rt] = fx.Provide(ctor)
return nil
}
}
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var defConf = config.Default()
var defaults = []Option{
Override(new(helpers.MetricsCtx), context.Background),
randomIdentity(),
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Override(new(datastore.Batching), testing.MapDatastore),
Override(new(blockstore.Blockstore), testing.MapBlockstore), // NOT on top of ds above
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Override(new(record.Validator), modules.RecordValidator),
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// Filecoin modules
Override(new(*chain.ChainStore), chain.NewChainStore),
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}
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// Online sets up basic libp2p node
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func Online() Option {
return Options(
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// make sure that online is applied before Config.
// This is important because Config overrides some of Online units
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func(s *settings) error { s.online = true; return nil },
applyIf(func(s *settings) bool { return s.config },
Error(errors.New("the Online option must be set before Config option")),
),
Override(new(peerstore.Peerstore), pstoremem.NewPeerstore),
Override(DefaultTransportsKey, lp2p.DefaultTransports),
Override(PNetKey, lp2p.PNet),
Override(new(lp2p.RawHost), lp2p.Host),
Override(new(host.Host), lp2p.RoutedHost),
Override(new(lp2p.BaseIpfsRouting), lp2p.DHTRouting(false)),
Override(DiscoveryHandlerKey, lp2p.DiscoveryHandler),
Override(AddrsFactoryKey, lp2p.AddrsFactory(nil, nil)),
Override(SmuxTransportKey, lp2p.SmuxTransport(true)),
Override(RelayKey, lp2p.Relay(true, false)),
Override(SecurityKey, lp2p.Security(true, false)),
Override(BaseRoutingKey, lp2p.BaseRouting),
Override(new(routing.Routing), lp2p.Routing),
Override(NatPortMapKey, lp2p.NatPortMap),
Override(ConnectionManagerKey, lp2p.ConnectionManager(50, 200, 20*time.Second)),
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Override(new(*pubsub.PubSub), lp2p.GossipSub()),
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Override(PstoreAddSelfKeysKey, lp2p.PstoreAddSelfKeys),
Override(StartListeningKey, lp2p.StartListening(defConf.Libp2p.ListenAddresses)),
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//
Override(new(blockstore.GCLocker), blockstore.NewGCLocker),
Override(new(blockstore.GCBlockstore), blockstore.NewGCBlockstore),
Override(new(exchange.Interface), modules.Bitswap),
// Filecoin services
Override(new(*chain.Syncer), chain.NewSyncer),
Override(new(*chain.BlockSync), chain.NewBlockSyncClient),
Override(new(*chain.Wallet), chain.NewWallet),
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Override(new(*chain.MessagePool), chain.NewMessagePool),
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Override(new(modules.Genesis), testing.MakeGenesis),
Override(SetGenisisKey, modules.SetGenesis),
Override(new(*hello.Service), hello.NewHelloService),
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Override(new(*chain.BlockSyncService), chain.NewBlockSyncService),
Override(RunHelloKey, modules.RunHello),
Override(RunBlockSyncKey, modules.RunBlockSync),
Override(HandleIncomingBlocksKey, modules.HandleIncomingBlocks),
Override(HandleIncomingMessagesKey, modules.HandleIncomingMessages),
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)
}
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// Config sets up constructors based on the provided config
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func Config(cfg *config.Root) Option {
return Options(
func(s *settings) error { s.config = true; return nil },
applyIf(func(s *settings) bool { return s.online },
Override(StartListeningKey, lp2p.StartListening(cfg.Libp2p.ListenAddresses)),
),
)
}
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// New builds and starts new Filecoin node
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func New(ctx context.Context, opts ...Option) (api.API, error) {
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var resAPI api.Struct
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settings := settings{
modules: map[interface{}]fx.Option{},
invokes: make([]fx.Option, _nInvokes),
}
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// apply module options in the right order
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if err := Options(Options(defaults...), Options(opts...))(&settings); err != nil {
return nil, err
}
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// gather constructors for fx.Options
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ctors := make([]fx.Option, 0, len(settings.modules))
for _, opt := range settings.modules {
ctors = append(ctors, opt)
}
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// fill holes in invokes for use in fx.Options
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for i, opt := range settings.invokes {
if opt == nil {
settings.invokes[i] = fx.Options()
}
}
app := fx.New(
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fx.Options(ctors...),
fx.Options(settings.invokes...),
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fx.Invoke(versionAPI(&resAPI.Internal.Version)),
fx.Invoke(idAPI(&resAPI.Internal.ID)),
)
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// TODO: we probably should have a 'firewall' for Closing signal
// on this context, and implement closing logic through lifecycles
// correctly
if err := app.Start(ctx); err != nil {
return nil, err
}
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return &resAPI, nil
}
// In-memory / testing
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func randomIdentity() Option {
sk, pk, err := ci.GenerateKeyPair(ci.RSA, 512)
if err != nil {
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return Error(err)
}
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return Options(
Override(new(ci.PrivKey), sk),
Override(new(ci.PubKey), pk),
Override(new(peer.ID), peer.IDFromPublicKey),
)
}
// API IMPL
// TODO: figure out a better way, this isn't usable in long term
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func idAPI(set *func(ctx context.Context) (peer.ID, error)) func(id peer.ID) {
return func(id peer.ID) {
*set = func(ctx context.Context) (peer.ID, error) {
return id, nil
}
}
}
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func versionAPI(set *func(context.Context) (api.Version, error)) func() {
return func() {
*set = func(context.Context) (api.Version, error) {
return api.Version{
Version: build.Version,
}, nil
}
}
}