220 lines
5.8 KiB
Go
220 lines
5.8 KiB
Go
// +build autopilotrpc
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package autopilotrpc
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import (
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"context"
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"encoding/hex"
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"os"
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"sync/atomic"
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"github.com/btcsuite/btcd/btcec"
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"github.com/lightningnetwork/lnd/autopilot"
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"github.com/lightningnetwork/lnd/lnrpc"
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"google.golang.org/grpc"
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"gopkg.in/macaroon-bakery.v2/bakery"
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)
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const (
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// subServerName is the name of the sub rpc server. We'll use this name
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// to register ourselves, and we also require that the main
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// SubServerConfigDispatcher instance recognize tt as the name of our
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// RPC service.
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subServerName = "AutopilotRPC"
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)
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var (
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// macPermissions maps RPC calls to the permissions they require.
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macPermissions = map[string][]bakery.Op{
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"/autopilotrpc.Autopilot/Status": {{
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Entity: "info",
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Action: "read",
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}},
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"/autopilotrpc.Autopilot/ModifyStatus": {{
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Entity: "onchain",
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Action: "write",
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}, {
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Entity: "offchain",
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Action: "write",
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}},
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"/autopilotrpc.Autopilot/QueryScores": {{
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Entity: "info",
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Action: "read",
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}},
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}
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)
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// Server is a sub-server of the main RPC server: the autopilot RPC. This sub
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// RPC server allows external callers to access the status of the autopilot
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// currently active within lnd, as well as configuring it at runtime.
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type Server struct {
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started int32 // To be used atomically.
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shutdown int32 // To be used atomically.
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cfg *Config
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manager *autopilot.Manager
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}
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// A compile time check to ensure that Server fully implements the
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// AutopilotServer gRPC service.
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var _ AutopilotServer = (*Server)(nil)
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// fileExists reports whether the named file or directory exists.
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func fileExists(name string) bool {
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if _, err := os.Stat(name); err != nil {
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if os.IsNotExist(err) {
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return false
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}
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}
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return true
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}
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// New returns a new instance of the autopilotrpc Autopilot sub-server. We also
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// return the set of permissions for the macaroons that we may create within
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// this method. If the macaroons we need aren't found in the filepath, then
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// we'll create them on start up. If we're unable to locate, or create the
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// macaroons we need, then we'll return with an error.
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func New(cfg *Config) (*Server, lnrpc.MacaroonPerms, error) {
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// We don't create any new macaroons for this subserver, instead reuse
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// existing onchain/offchain permissions.
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server := &Server{
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cfg: cfg,
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manager: cfg.Manager,
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}
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return server, macPermissions, nil
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}
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// Start launches any helper goroutines required for the Server to function.
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//
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// NOTE: This is part of the lnrpc.SubServer interface.
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func (s *Server) Start() error {
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if atomic.AddInt32(&s.started, 1) != 1 {
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return nil
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}
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return s.manager.Start()
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}
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// Stop signals any active goroutines for a graceful closure.
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//
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// NOTE: This is part of the lnrpc.SubServer interface.
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func (s *Server) Stop() error {
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if atomic.AddInt32(&s.shutdown, 1) != 1 {
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return nil
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}
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return s.manager.Stop()
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}
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// Name returns a unique string representation of the sub-server. This can be
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// used to identify the sub-server and also de-duplicate them.
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//
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// NOTE: This is part of the lnrpc.SubServer interface.
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func (s *Server) Name() string {
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return subServerName
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}
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// RegisterWithRootServer will be called by the root gRPC server to direct a
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// sub RPC server to register itself with the main gRPC root server. Until this
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// is called, each sub-server won't be able to have
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// requests routed towards it.
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//
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// NOTE: This is part of the lnrpc.SubServer interface.
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func (s *Server) RegisterWithRootServer(grpcServer *grpc.Server) error {
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// We make sure that we register it with the main gRPC server to ensure
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// all our methods are routed properly.
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RegisterAutopilotServer(grpcServer, s)
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log.Debugf("Autopilot RPC server successfully register with root " +
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"gRPC server")
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return nil
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}
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// Status returns the current status of the autopilot agent.
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//
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// NOTE: Part of the AutopilotServer interface.
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func (s *Server) Status(ctx context.Context,
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in *StatusRequest) (*StatusResponse, error) {
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return &StatusResponse{
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Active: s.manager.IsActive(),
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}, nil
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}
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// ModifyStatus activates the current autopilot agent, if active.
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//
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// NOTE: Part of the AutopilotServer interface.
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func (s *Server) ModifyStatus(ctx context.Context,
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in *ModifyStatusRequest) (*ModifyStatusResponse, error) {
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log.Debugf("Setting agent enabled=%v", in.Enable)
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var err error
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if in.Enable {
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err = s.manager.StartAgent()
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} else {
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err = s.manager.StopAgent()
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}
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return &ModifyStatusResponse{}, err
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}
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// QueryScores queries all available autopilot heuristics, in addition to any
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// active combination of these heruristics, for the scores they would give to
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// the given nodes.
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//
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// NOTE: Part of the AutopilotServer interface.
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func (s *Server) QueryScores(ctx context.Context, in *QueryScoresRequest) (
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*QueryScoresResponse, error) {
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var nodes []autopilot.NodeID
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for _, pubStr := range in.Pubkeys {
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pubHex, err := hex.DecodeString(pubStr)
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if err != nil {
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return nil, err
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}
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pubKey, err := btcec.ParsePubKey(pubHex, btcec.S256())
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if err != nil {
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return nil, err
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}
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nID := autopilot.NewNodeID(pubKey)
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nodes = append(nodes, nID)
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}
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// Query the heuristics.
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heuristicScores, err := s.manager.QueryHeuristics(nodes)
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if err != nil {
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return nil, err
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}
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resp := &QueryScoresResponse{}
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for heuristic, scores := range heuristicScores {
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result := &QueryScoresResponse_HeuristicResult{
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Heuristic: heuristic,
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Scores: make(map[string]float64),
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}
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for pub, score := range scores {
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pubkeyHex := hex.EncodeToString(pub[:])
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result.Scores[pubkeyHex] = score
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}
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// Since a node not being part of the internally returned
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// scores imply a zero score, we add these before we return the
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// RPC results.
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for _, node := range nodes {
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if _, ok := scores[node]; ok {
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continue
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}
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pubkeyHex := hex.EncodeToString(node[:])
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result.Scores[pubkeyHex] = 0.0
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}
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resp.Results = append(resp.Results, result)
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}
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return resp, nil
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}
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