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lightningnetwork / lnd / 14358372723

09 Apr 2025 01:26PM UTC coverage: 56.696% (-12.3%) from 69.037%
14358372723

Pull #9696

github

web-flow
Merge e2837e400 into 867d27d68
Pull Request #9696: Add `development_guidelines.md` for both human and machine

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11.35
/lnrpc/routerrpc/router_server.go
1
package routerrpc
2

3
import (
4
        "bytes"
5
        "context"
6
        crand "crypto/rand"
7
        "errors"
8
        "fmt"
9
        "os"
10
        "path/filepath"
11
        "sync/atomic"
12
        "time"
13

14
        "github.com/btcsuite/btcd/btcutil"
15
        "github.com/btcsuite/btcd/wire"
16
        "github.com/grpc-ecosystem/grpc-gateway/v2/runtime"
17
        "github.com/lightningnetwork/lnd/aliasmgr"
18
        "github.com/lightningnetwork/lnd/channeldb"
19
        "github.com/lightningnetwork/lnd/fn/v2"
20
        "github.com/lightningnetwork/lnd/lnrpc"
21
        "github.com/lightningnetwork/lnd/lnrpc/invoicesrpc"
22
        "github.com/lightningnetwork/lnd/lntypes"
23
        "github.com/lightningnetwork/lnd/lnwire"
24
        "github.com/lightningnetwork/lnd/macaroons"
25
        "github.com/lightningnetwork/lnd/routing"
26
        "github.com/lightningnetwork/lnd/routing/route"
27
        "github.com/lightningnetwork/lnd/zpay32"
28
        "google.golang.org/grpc"
29
        "google.golang.org/grpc/codes"
30
        "google.golang.org/grpc/status"
31
        "gopkg.in/macaroon-bakery.v2/bakery"
32
)
33

34
const (
35
        // subServerName is the name of the sub rpc server. We'll use this name
36
        // to register ourselves, and we also require that the main
37
        // SubServerConfigDispatcher instance recognize as the name of our
38
        subServerName = "RouterRPC"
39

40
        // routeFeeLimitSat is the maximum routing fee that we allow to occur
41
        // when estimating a routing fee.
42
        routeFeeLimitSat = 100_000_000
43

44
        // DefaultPaymentTimeout is the default value of time we should spend
45
        // when attempting to fulfill the payment.
46
        DefaultPaymentTimeout int32 = 60
47
)
48

49
var (
50
        errServerShuttingDown = errors.New("routerrpc server shutting down")
51

52
        // ErrInterceptorAlreadyExists is an error returned when a new stream is
53
        // opened and there is already one active interceptor. The user must
54
        // disconnect prior to open another stream.
55
        ErrInterceptorAlreadyExists = errors.New("interceptor already exists")
56

57
        errMissingPaymentAttempt = errors.New("missing payment attempt")
58

59
        errMissingRoute = errors.New("missing route")
60

61
        errUnexpectedFailureSource = errors.New("unexpected failure source")
62

63
        // ErrAliasAlreadyExists is returned if a new SCID alias is attempted
64
        // to be added that already exists.
65
        ErrAliasAlreadyExists = errors.New("alias already exists")
66

67
        // ErrNoValidAlias is returned if an alias is not in the valid range for
68
        // allowed SCID aliases.
69
        ErrNoValidAlias = errors.New("not a valid alias")
70

71
        // macaroonOps are the set of capabilities that our minted macaroon (if
72
        // it doesn't already exist) will have.
73
        macaroonOps = []bakery.Op{
74
                {
75
                        Entity: "offchain",
76
                        Action: "read",
77
                },
78
                {
79
                        Entity: "offchain",
80
                        Action: "write",
81
                },
82
        }
83

84
        // macPermissions maps RPC calls to the permissions they require.
85
        macPermissions = map[string][]bakery.Op{
86
                "/routerrpc.Router/SendPaymentV2": {{
87
                        Entity: "offchain",
88
                        Action: "write",
89
                }},
90
                "/routerrpc.Router/SendToRouteV2": {{
91
                        Entity: "offchain",
92
                        Action: "write",
93
                }},
94
                "/routerrpc.Router/SendToRoute": {{
95
                        Entity: "offchain",
96
                        Action: "write",
97
                }},
98
                "/routerrpc.Router/TrackPaymentV2": {{
99
                        Entity: "offchain",
100
                        Action: "read",
101
                }},
102
                "/routerrpc.Router/TrackPayments": {{
103
                        Entity: "offchain",
104
                        Action: "read",
105
                }},
106
                "/routerrpc.Router/EstimateRouteFee": {{
107
                        Entity: "offchain",
108
                        Action: "read",
109
                }},
110
                "/routerrpc.Router/QueryMissionControl": {{
111
                        Entity: "offchain",
112
                        Action: "read",
113
                }},
114
                "/routerrpc.Router/XImportMissionControl": {{
115
                        Entity: "offchain",
116
                        Action: "write",
117
                }},
118
                "/routerrpc.Router/GetMissionControlConfig": {{
119
                        Entity: "offchain",
120
                        Action: "read",
121
                }},
122
                "/routerrpc.Router/SetMissionControlConfig": {{
123
                        Entity: "offchain",
124
                        Action: "write",
125
                }},
126
                "/routerrpc.Router/QueryProbability": {{
127
                        Entity: "offchain",
128
                        Action: "read",
129
                }},
130
                "/routerrpc.Router/ResetMissionControl": {{
131
                        Entity: "offchain",
132
                        Action: "write",
133
                }},
134
                "/routerrpc.Router/BuildRoute": {{
135
                        Entity: "offchain",
136
                        Action: "read",
137
                }},
138
                "/routerrpc.Router/SubscribeHtlcEvents": {{
139
                        Entity: "offchain",
140
                        Action: "read",
141
                }},
142
                "/routerrpc.Router/SendPayment": {{
143
                        Entity: "offchain",
144
                        Action: "write",
145
                }},
146
                "/routerrpc.Router/TrackPayment": {{
147
                        Entity: "offchain",
148
                        Action: "read",
149
                }},
150
                "/routerrpc.Router/HtlcInterceptor": {{
151
                        Entity: "offchain",
152
                        Action: "write",
153
                }},
154
                "/routerrpc.Router/UpdateChanStatus": {{
155
                        Entity: "offchain",
156
                        Action: "write",
157
                }},
158
                "/routerrpc.Router/XAddLocalChanAliases": {{
159
                        Entity: "offchain",
160
                        Action: "write",
161
                }},
162
                "/routerrpc.Router/XDeleteLocalChanAliases": {{
163
                        Entity: "offchain",
164
                        Action: "write",
165
                }},
166
        }
167

168
        // DefaultRouterMacFilename is the default name of the router macaroon
169
        // that we expect to find via a file handle within the main
170
        // configuration file in this package.
171
        DefaultRouterMacFilename = "router.macaroon"
172
)
173

174
// FetchChannelEndpoints returns the pubkeys of both endpoints of the
175
// given channel id if it exists in the graph.
176
type FetchChannelEndpoints func(chanID uint64) (route.Vertex, route.Vertex,
177
        error)
178

179
// ServerShell is a shell struct holding a reference to the actual sub-server.
180
// It is used to register the gRPC sub-server with the root server before we
181
// have the necessary dependencies to populate the actual sub-server.
182
type ServerShell struct {
183
        RouterServer
184
}
185

186
// Server is a stand-alone sub RPC server which exposes functionality that
187
// allows clients to route arbitrary payment through the Lightning Network.
188
type Server struct {
189
        started                  int32 // To be used atomically.
190
        shutdown                 int32 // To be used atomically.
191
        forwardInterceptorActive int32 // To be used atomically.
192

193
        // Required by the grpc-gateway/v2 library for forward compatibility.
194
        // Must be after the atomically used variables to not break struct
195
        // alignment.
196
        UnimplementedRouterServer
197

198
        cfg *Config
199

200
        quit chan struct{}
201
}
202

203
// A compile time check to ensure that Server fully implements the RouterServer
204
// gRPC service.
205
var _ RouterServer = (*Server)(nil)
206

207
// New creates a new instance of the RouterServer given a configuration struct
208
// that contains all external dependencies. If the target macaroon exists, and
209
// we're unable to create it, then an error will be returned. We also return
210
// the set of permissions that we require as a server. At the time of writing
211
// of this documentation, this is the same macaroon as the admin macaroon.
212
func New(cfg *Config) (*Server, lnrpc.MacaroonPerms, error) {
×
213
        // If the path of the router macaroon wasn't generated, then we'll
×
214
        // assume that it's found at the default network directory.
×
215
        if cfg.RouterMacPath == "" {
×
216
                cfg.RouterMacPath = filepath.Join(
×
217
                        cfg.NetworkDir, DefaultRouterMacFilename,
×
218
                )
×
219
        }
×
220

221
        // Now that we know the full path of the router macaroon, we can check
222
        // to see if we need to create it or not. If stateless_init is set
223
        // then we don't write the macaroons.
224
        macFilePath := cfg.RouterMacPath
×
225
        if cfg.MacService != nil && !cfg.MacService.StatelessInit &&
×
226
                !lnrpc.FileExists(macFilePath) {
×
227

×
228
                log.Infof("Making macaroons for Router RPC Server at: %v",
×
229
                        macFilePath)
×
230

×
231
                // At this point, we know that the router macaroon doesn't yet,
×
232
                // exist, so we need to create it with the help of the main
×
233
                // macaroon service.
×
234
                routerMac, err := cfg.MacService.NewMacaroon(
×
235
                        context.Background(), macaroons.DefaultRootKeyID,
×
236
                        macaroonOps...,
×
237
                )
×
238
                if err != nil {
×
239
                        return nil, nil, err
×
240
                }
×
241
                routerMacBytes, err := routerMac.M().MarshalBinary()
×
242
                if err != nil {
×
243
                        return nil, nil, err
×
244
                }
×
245
                err = os.WriteFile(macFilePath, routerMacBytes, 0644)
×
246
                if err != nil {
×
247
                        _ = os.Remove(macFilePath)
×
248
                        return nil, nil, err
×
249
                }
×
250
        }
251

252
        routerServer := &Server{
×
253
                cfg:  cfg,
×
254
                quit: make(chan struct{}),
×
255
        }
×
256

×
257
        return routerServer, macPermissions, nil
×
258
}
259

260
// Start launches any helper goroutines required for the rpcServer to function.
261
//
262
// NOTE: This is part of the lnrpc.SubServer interface.
263
func (s *Server) Start() error {
×
264
        if atomic.AddInt32(&s.started, 1) != 1 {
×
265
                return nil
×
266
        }
×
267

268
        return nil
×
269
}
270

271
// Stop signals any active goroutines for a graceful closure.
272
//
273
// NOTE: This is part of the lnrpc.SubServer interface.
274
func (s *Server) Stop() error {
×
275
        if atomic.AddInt32(&s.shutdown, 1) != 1 {
×
276
                return nil
×
277
        }
×
278

279
        close(s.quit)
×
280
        return nil
×
281
}
282

283
// Name returns a unique string representation of the sub-server. This can be
284
// used to identify the sub-server and also de-duplicate them.
285
//
286
// NOTE: This is part of the lnrpc.SubServer interface.
287
func (s *Server) Name() string {
×
288
        return subServerName
×
289
}
×
290

291
// RegisterWithRootServer will be called by the root gRPC server to direct a
292
// sub RPC server to register itself with the main gRPC root server. Until this
293
// is called, each sub-server won't be able to have requests routed towards it.
294
//
295
// NOTE: This is part of the lnrpc.GrpcHandler interface.
296
func (r *ServerShell) RegisterWithRootServer(grpcServer *grpc.Server) error {
×
297
        // We make sure that we register it with the main gRPC server to ensure
×
298
        // all our methods are routed properly.
×
299
        RegisterRouterServer(grpcServer, r)
×
300

×
301
        log.Debugf("Router RPC server successfully registered with root gRPC " +
×
302
                "server")
×
303

×
304
        return nil
×
305
}
×
306

307
// RegisterWithRestServer will be called by the root REST mux to direct a sub
308
// RPC server to register itself with the main REST mux server. Until this is
309
// called, each sub-server won't be able to have requests routed towards it.
310
//
311
// NOTE: This is part of the lnrpc.GrpcHandler interface.
312
func (r *ServerShell) RegisterWithRestServer(ctx context.Context,
313
        mux *runtime.ServeMux, dest string, opts []grpc.DialOption) error {
×
314

×
315
        // We make sure that we register it with the main REST server to ensure
×
316
        // all our methods are routed properly.
×
317
        err := RegisterRouterHandlerFromEndpoint(ctx, mux, dest, opts)
×
318
        if err != nil {
×
319
                log.Errorf("Could not register Router REST server "+
×
320
                        "with root REST server: %v", err)
×
321
                return err
×
322
        }
×
323

324
        log.Debugf("Router REST server successfully registered with " +
×
325
                "root REST server")
×
326
        return nil
×
327
}
328

329
// CreateSubServer populates the subserver's dependencies using the passed
330
// SubServerConfigDispatcher. This method should fully initialize the
331
// sub-server instance, making it ready for action. It returns the macaroon
332
// permissions that the sub-server wishes to pass on to the root server for all
333
// methods routed towards it.
334
//
335
// NOTE: This is part of the lnrpc.GrpcHandler interface.
336
func (r *ServerShell) CreateSubServer(configRegistry lnrpc.SubServerConfigDispatcher) (
337
        lnrpc.SubServer, lnrpc.MacaroonPerms, error) {
×
338

×
339
        subServer, macPermissions, err := createNewSubServer(configRegistry)
×
340
        if err != nil {
×
341
                return nil, nil, err
×
342
        }
×
343

344
        r.RouterServer = subServer
×
345
        return subServer, macPermissions, nil
×
346
}
347

348
// SendPaymentV2 attempts to route a payment described by the passed
349
// PaymentRequest to the final destination. If we are unable to route the
350
// payment, or cannot find a route that satisfies the constraints in the
351
// PaymentRequest, then an error will be returned. Otherwise, the payment
352
// pre-image, along with the final route will be returned.
353
func (s *Server) SendPaymentV2(req *SendPaymentRequest,
354
        stream Router_SendPaymentV2Server) error {
×
355

×
356
        // Set payment request attempt timeout.
×
357
        if req.TimeoutSeconds == 0 {
×
358
                req.TimeoutSeconds = DefaultPaymentTimeout
×
359
        }
×
360

361
        payment, err := s.cfg.RouterBackend.extractIntentFromSendRequest(req)
×
362
        if err != nil {
×
363
                return err
×
364
        }
×
365

366
        // Get the payment hash.
367
        payHash := payment.Identifier()
×
368

×
369
        // Init the payment in db.
×
370
        paySession, shardTracker, err := s.cfg.Router.PreparePayment(payment)
×
371
        if err != nil {
×
372
                log.Errorf("SendPayment async error for payment %x: %v",
×
373
                        payment.Identifier(), err)
×
374

×
375
                // Transform user errors to grpc code.
×
376
                if errors.Is(err, channeldb.ErrPaymentExists) ||
×
377
                        errors.Is(err, channeldb.ErrPaymentInFlight) ||
×
378
                        errors.Is(err, channeldb.ErrAlreadyPaid) {
×
379

×
380
                        return status.Error(
×
381
                                codes.AlreadyExists, err.Error(),
×
382
                        )
×
383
                }
×
384

385
                return err
×
386
        }
387

388
        // Subscribe to the payment before sending it to make sure we won't
389
        // miss events.
390
        sub, err := s.subscribePayment(payHash)
×
391
        if err != nil {
×
392
                return err
×
393
        }
×
394

395
        // The payment context is influenced by two user-provided parameters,
396
        // the cancelable flag and the payment attempt timeout.
397
        // If the payment is cancelable, we will use the stream context as the
398
        // payment context. That way, if the user ends the stream, the payment
399
        // loop will be canceled.
400
        // The second context parameter is the timeout. If the user provides a
401
        // timeout, we will additionally wrap the context in a deadline. If the
402
        // user provided 'cancelable' and ends the stream before the timeout is
403
        // reached the payment will be canceled.
404
        ctx := context.Background()
×
405
        if req.Cancelable {
×
406
                ctx = stream.Context()
×
407
        }
×
408

409
        // Send the payment asynchronously.
410
        s.cfg.Router.SendPaymentAsync(ctx, payment, paySession, shardTracker)
×
411

×
412
        // Track the payment and return.
×
413
        return s.trackPayment(sub, payHash, stream, req.NoInflightUpdates)
×
414
}
415

416
// EstimateRouteFee allows callers to obtain an expected value w.r.t how much it
417
// may cost to send an HTLC to the target end destination. This method sends
418
// probe payments to the target node, based on target invoice parameters and a
419
// random payment hash that makes it impossible for the target to settle the
420
// htlc. The probing stops if a user-provided timeout is reached. If provided
421
// with a destination key and amount, this method will perform a local graph
422
// based fee estimation.
423
func (s *Server) EstimateRouteFee(ctx context.Context,
424
        req *RouteFeeRequest) (*RouteFeeResponse, error) {
×
425

×
426
        isProbeDestination := len(req.Dest) > 0
×
427
        isProbeInvoice := len(req.PaymentRequest) > 0
×
428

×
429
        switch {
×
430
        case isProbeDestination == isProbeInvoice:
×
431
                return nil, errors.New("specify either a destination or an " +
×
432
                        "invoice")
×
433

434
        case isProbeDestination:
×
435
                switch {
×
436
                case len(req.Dest) != 33:
×
437
                        return nil, errors.New("invalid length destination key")
×
438

439
                case req.AmtSat <= 0:
×
440
                        return nil, errors.New("amount must be greater than 0")
×
441

442
                default:
×
443
                        return s.probeDestination(req.Dest, req.AmtSat)
×
444
                }
445

446
        case isProbeInvoice:
×
447
                return s.probePaymentRequest(
×
448
                        ctx, req.PaymentRequest, req.Timeout,
×
449
                )
×
450
        }
451

452
        return &RouteFeeResponse{}, nil
×
453
}
454

455
// probeDestination estimates fees along a route to a destination based on the
456
// contents of the local graph.
457
func (s *Server) probeDestination(dest []byte, amtSat int64) (*RouteFeeResponse,
458
        error) {
×
459

×
460
        destNode, err := route.NewVertexFromBytes(dest)
×
461
        if err != nil {
×
462
                return nil, err
×
463
        }
×
464

465
        // Next, we'll convert the amount in satoshis to mSAT, which are the
466
        // native unit of LN.
467
        amtMsat := lnwire.NewMSatFromSatoshis(btcutil.Amount(amtSat))
×
468

×
469
        // Finally, we'll query for a route to the destination that can carry
×
470
        // that target amount, we'll only request a single route. Set a
×
471
        // restriction for the default CLTV limit, otherwise we can find a route
×
472
        // that exceeds it and is useless to us.
×
473
        mc := s.cfg.RouterBackend.MissionControl
×
474
        routeReq, err := routing.NewRouteRequest(
×
475
                s.cfg.RouterBackend.SelfNode, &destNode, amtMsat, 0,
×
476
                &routing.RestrictParams{
×
477
                        FeeLimit:          routeFeeLimitSat,
×
478
                        CltvLimit:         s.cfg.RouterBackend.MaxTotalTimelock,
×
479
                        ProbabilitySource: mc.GetProbability,
×
480
                }, nil, nil, nil, s.cfg.RouterBackend.DefaultFinalCltvDelta,
×
481
        )
×
482
        if err != nil {
×
483
                return nil, err
×
484
        }
×
485

486
        route, _, err := s.cfg.Router.FindRoute(routeReq)
×
487
        if err != nil {
×
488
                return nil, err
×
489
        }
×
490

491
        // We are adding a block padding to the total time lock to account for
492
        // the safety buffer that the payment session will add to the last hop's
493
        // cltv delta. This is to prevent the htlc from failing if blocks are
494
        // mined while it is in flight.
495
        timeLockDelay := route.TotalTimeLock + uint32(routing.BlockPadding)
×
496

×
497
        return &RouteFeeResponse{
×
498
                RoutingFeeMsat: int64(route.TotalFees()),
×
499
                TimeLockDelay:  int64(timeLockDelay),
×
500
                FailureReason:  lnrpc.PaymentFailureReason_FAILURE_REASON_NONE,
×
501
        }, nil
×
502
}
503

504
// probePaymentRequest estimates fees along a route to a destination that is
505
// specified in an invoice. The estimation duration is limited by a timeout. In
506
// case that route hints are provided, this method applies a heuristic to
507
// identify LSPs which might block probe payments. In that case, fees are
508
// manually calculated and added to the probed fee estimation up until the LSP
509
// node. If the route hints don't indicate an LSP, they are passed as arguments
510
// to the SendPayment_V2 method, which enable it to send probe payments to the
511
// payment request destination.
512
func (s *Server) probePaymentRequest(ctx context.Context, paymentRequest string,
513
        timeout uint32) (*RouteFeeResponse, error) {
×
514

×
515
        payReq, err := zpay32.Decode(
×
516
                paymentRequest, s.cfg.RouterBackend.ActiveNetParams,
×
517
        )
×
518
        if err != nil {
×
519
                return nil, err
×
520
        }
×
521

522
        if payReq.MilliSat == nil || *payReq.MilliSat <= 0 {
×
523
                return nil, errors.New("payment request amount must be " +
×
524
                        "greater than 0")
×
525
        }
×
526

527
        // Generate random payment hash, so we can be sure that the target of
528
        // the probe payment doesn't have the preimage to settle the htlc.
529
        var paymentHash lntypes.Hash
×
530
        _, err = crand.Read(paymentHash[:])
×
531
        if err != nil {
×
532
                return nil, fmt.Errorf("cannot generate random probe "+
×
533
                        "preimage: %w", err)
×
534
        }
×
535

536
        amtMsat := int64(*payReq.MilliSat)
×
537
        probeRequest := &SendPaymentRequest{
×
538
                TimeoutSeconds:   int32(timeout),
×
539
                Dest:             payReq.Destination.SerializeCompressed(),
×
540
                MaxParts:         1,
×
541
                AllowSelfPayment: false,
×
542
                AmtMsat:          amtMsat,
×
543
                PaymentHash:      paymentHash[:],
×
544
                FeeLimitSat:      routeFeeLimitSat,
×
545
                FinalCltvDelta:   int32(payReq.MinFinalCLTVExpiry()),
×
546
                DestFeatures:     MarshalFeatures(payReq.Features),
×
547
        }
×
548

×
549
        // If the payment addresses is specified, then we'll also populate that
×
550
        // now as well.
×
551
        payReq.PaymentAddr.WhenSome(func(addr [32]byte) {
×
552
                copy(probeRequest.PaymentAddr, addr[:])
×
553
        })
×
554

555
        hints := payReq.RouteHints
×
556

×
557
        // If the hints don't indicate an LSP then chances are that our probe
×
558
        // payment won't be blocked along the route to the destination. We send
×
559
        // a probe payment with unmodified route hints.
×
560
        if !isLSP(hints, s.cfg.RouterBackend.FetchChannelEndpoints) {
×
561
                probeRequest.RouteHints = invoicesrpc.CreateRPCRouteHints(hints)
×
562
                return s.sendProbePayment(ctx, probeRequest)
×
563
        }
×
564

565
        // If the heuristic indicates an LSP we modify the route hints to allow
566
        // probing the LSP.
567
        lspAdjustedRouteHints, lspHint, err := prepareLspRouteHints(
×
568
                hints, *payReq.MilliSat,
×
569
        )
×
570
        if err != nil {
×
571
                return nil, err
×
572
        }
×
573

574
        // The adjusted route hints serve the payment probe to find the last
575
        // public hop to the LSP on the route.
576
        probeRequest.Dest = lspHint.NodeID.SerializeCompressed()
×
577
        if len(lspAdjustedRouteHints) > 0 {
×
578
                probeRequest.RouteHints = invoicesrpc.CreateRPCRouteHints(
×
579
                        lspAdjustedRouteHints,
×
580
                )
×
581
        }
×
582

583
        // The payment probe will be able to calculate the fee up until the LSP
584
        // node. The fee of the last hop has to be calculated manually. Since
585
        // the last hop's fee amount has to be sent across the payment path we
586
        // have to add it to the original payment amount. Only then will the
587
        // payment probe be able to determine the correct fee to the last hop
588
        // prior to the private destination. For example, if the user wants to
589
        // send 1000 sats to a private destination and the last hop's fee is 10
590
        // sats, then 1010 sats will have to arrive at the last hop. This means
591
        // that the probe has to be dispatched with 1010 sats to correctly
592
        // calculate the routing fee.
593
        //
594
        // Calculate the hop fee for the last hop manually.
595
        hopFee := lspHint.HopFee(*payReq.MilliSat)
×
596
        if err != nil {
×
597
                return nil, err
×
598
        }
×
599

600
        // Add the last hop's fee to the requested payment amount that we want
601
        // to get an estimate for.
602
        probeRequest.AmtMsat += int64(hopFee)
×
603

×
604
        // Use the hop hint's cltv delta as the payment request's final cltv
×
605
        // delta. The actual final cltv delta of the invoice will be added to
×
606
        // the payment probe's cltv delta.
×
607
        probeRequest.FinalCltvDelta = int32(lspHint.CLTVExpiryDelta)
×
608

×
609
        // Dispatch the payment probe with adjusted fee amount.
×
610
        resp, err := s.sendProbePayment(ctx, probeRequest)
×
611
        if err != nil {
×
612
                return nil, err
×
613
        }
×
614

615
        // If the payment probe failed we only return the failure reason and
616
        // leave the probe result params unaltered.
617
        if resp.FailureReason != lnrpc.PaymentFailureReason_FAILURE_REASON_NONE { //nolint:ll
×
618
                return resp, nil
×
619
        }
×
620

621
        // The probe succeeded, so we can add the last hop's fee to fee the
622
        // payment probe returned.
623
        resp.RoutingFeeMsat += int64(hopFee)
×
624

×
625
        // Add the final cltv delta of the invoice to the payment probe's total
×
626
        // cltv delta. This is the cltv delta for the hop behind the LSP.
×
627
        resp.TimeLockDelay += int64(payReq.MinFinalCLTVExpiry())
×
628

×
629
        return resp, nil
×
630
}
631

632
// isLSP checks if the route hints indicate an LSP. An LSP is indicated with
633
// true if the destination hop hint in each route hint has the same node id,
634
// false otherwise. If the destination hop hint of any route hint contains a
635
// public channel, the function returns false because we can directly send a
636
// probe to the final destination.
637
func isLSP(routeHints [][]zpay32.HopHint,
638
        fetchChannelEndpoints FetchChannelEndpoints) bool {
9✔
639

9✔
640
        if len(routeHints) == 0 || len(routeHints[0]) == 0 {
10✔
641
                return false
1✔
642
        }
1✔
643

644
        destHopHint := routeHints[0][len(routeHints[0])-1]
8✔
645

8✔
646
        // If the destination hop hint of the first route hint contains a public
8✔
647
        // channel we can send a probe to it directly, hence we don't signal an
8✔
648
        // LSP.
8✔
649
        _, _, err := fetchChannelEndpoints(destHopHint.ChannelID)
8✔
650
        if err == nil {
9✔
651
                return false
1✔
652
        }
1✔
653

654
        for i := 1; i < len(routeHints); i++ {
12✔
655
                // Skip empty route hints.
5✔
656
                if len(routeHints[i]) == 0 {
5✔
657
                        continue
×
658
                }
659

660
                lastHop := routeHints[i][len(routeHints[i])-1]
5✔
661

5✔
662
                // If the last hop hint of any route hint contains a public
5✔
663
                // channel we can send a probe to it directly, hence we don't
5✔
664
                // signal an LSP.
5✔
665
                _, _, err = fetchChannelEndpoints(lastHop.ChannelID)
5✔
666
                if err == nil {
6✔
667
                        return false
1✔
668
                }
1✔
669

670
                idMatchesRefNode := bytes.Equal(
4✔
671
                        lastHop.NodeID.SerializeCompressed(),
4✔
672
                        destHopHint.NodeID.SerializeCompressed(),
4✔
673
                )
4✔
674
                if !idMatchesRefNode {
5✔
675
                        return false
1✔
676
                }
1✔
677
        }
678

679
        // We ensured that the destination hop hint doesn't contain a public
680
        // channel, and that all destination hop hints of all route hints match,
681
        // so we signal an LSP.
682
        return true
5✔
683
}
684

685
// prepareLspRouteHints assumes that the isLsp heuristic returned true for the
686
// route hints passed in here. It constructs a modified list of route hints that
687
// allows the caller to probe the LSP, which itself is returned as a separate
688
// hop hint.
689
func prepareLspRouteHints(routeHints [][]zpay32.HopHint,
690
        amt lnwire.MilliSatoshi) ([][]zpay32.HopHint, *zpay32.HopHint, error) {
5✔
691

5✔
692
        if len(routeHints) == 0 {
5✔
693
                return nil, nil, fmt.Errorf("no route hints provided")
×
694
        }
×
695

696
        // Create the LSP hop hint. We are probing for the worst case fee and
697
        // cltv delta. So we look for the max values amongst all LSP hop hints.
698
        refHint := routeHints[0][len(routeHints[0])-1]
5✔
699
        refHint.CLTVExpiryDelta = maxLspCltvDelta(routeHints)
5✔
700
        refHint.FeeBaseMSat, refHint.FeeProportionalMillionths = maxLspFee(
5✔
701
                routeHints, amt,
5✔
702
        )
5✔
703

5✔
704
        // We construct a modified list of route hints that allows the caller to
5✔
705
        // probe the LSP.
5✔
706
        adjustedHints := make([][]zpay32.HopHint, 0, len(routeHints))
5✔
707

5✔
708
        // Strip off the LSP hop hint from all route hints.
5✔
709
        for i := 0; i < len(routeHints); i++ {
13✔
710
                hint := routeHints[i]
8✔
711
                if len(hint) > 1 {
13✔
712
                        adjustedHints = append(
5✔
713
                                adjustedHints, hint[:len(hint)-1],
5✔
714
                        )
5✔
715
                }
5✔
716
        }
717

718
        return adjustedHints, &refHint, nil
5✔
719
}
720

721
// maxLspFee returns base fee and fee rate amongst all LSP route hints that
722
// results in the overall highest fee for the given amount.
723
func maxLspFee(routeHints [][]zpay32.HopHint, amt lnwire.MilliSatoshi) (uint32,
724
        uint32) {
5✔
725

5✔
726
        var maxFeePpm uint32
5✔
727
        var maxBaseFee uint32
5✔
728
        var maxTotalFee lnwire.MilliSatoshi
5✔
729
        for _, rh := range routeHints {
13✔
730
                lastHop := rh[len(rh)-1]
8✔
731
                lastHopFee := lastHop.HopFee(amt)
8✔
732
                if lastHopFee > maxTotalFee {
14✔
733
                        maxTotalFee = lastHopFee
6✔
734
                        maxBaseFee = lastHop.FeeBaseMSat
6✔
735
                        maxFeePpm = lastHop.FeeProportionalMillionths
6✔
736
                }
6✔
737
        }
738

739
        return maxBaseFee, maxFeePpm
5✔
740
}
741

742
// maxLspCltvDelta returns the maximum cltv delta amongst all LSP route hints.
743
func maxLspCltvDelta(routeHints [][]zpay32.HopHint) uint16 {
5✔
744
        var maxCltvDelta uint16
5✔
745
        for _, rh := range routeHints {
13✔
746
                rhLastHop := rh[len(rh)-1]
8✔
747
                if rhLastHop.CLTVExpiryDelta > maxCltvDelta {
12✔
748
                        maxCltvDelta = rhLastHop.CLTVExpiryDelta
4✔
749
                }
4✔
750
        }
751

752
        return maxCltvDelta
5✔
753
}
754

755
// probePaymentStream is a custom implementation of the grpc.ServerStream
756
// interface. It is used to send payment status updates to the caller on the
757
// stream channel.
758
type probePaymentStream struct {
759
        Router_SendPaymentV2Server
760

761
        stream chan *lnrpc.Payment
762
        ctx    context.Context //nolint:containedctx
763
}
764

765
// Send sends a payment status update to a payment stream that the caller can
766
// evaluate.
767
func (p *probePaymentStream) Send(response *lnrpc.Payment) error {
×
768
        select {
×
769
        case p.stream <- response:
×
770

771
        case <-p.ctx.Done():
×
772
                return p.ctx.Err()
×
773
        }
774

775
        return nil
×
776
}
777

778
// Context returns the context of the stream.
779
func (p *probePaymentStream) Context() context.Context {
×
780
        return p.ctx
×
781
}
×
782

783
// sendProbePayment sends a payment to a target node in order to obtain
784
// potential routing fees for it. The payment request has to contain a payment
785
// hash that is guaranteed to be unknown to the target node, so it cannot settle
786
// the payment. This method invokes a payment request loop in a goroutine and
787
// awaits payment status updates.
788
func (s *Server) sendProbePayment(ctx context.Context,
789
        req *SendPaymentRequest) (*RouteFeeResponse, error) {
×
790

×
791
        // We'll launch a goroutine to send the payment probes.
×
792
        errChan := make(chan error, 1)
×
793
        defer close(errChan)
×
794

×
795
        paymentStream := &probePaymentStream{
×
796
                stream: make(chan *lnrpc.Payment),
×
797
                ctx:    ctx,
×
798
        }
×
799
        go func() {
×
800
                err := s.SendPaymentV2(req, paymentStream)
×
801
                if err != nil {
×
802
                        select {
×
803
                        case errChan <- err:
×
804

805
                        case <-paymentStream.ctx.Done():
×
806
                                return
×
807
                        }
808
                }
809
        }()
810

811
        for {
×
812
                select {
×
813
                case payment := <-paymentStream.stream:
×
814
                        switch payment.Status {
×
815
                        case lnrpc.Payment_INITIATED:
×
816
                        case lnrpc.Payment_IN_FLIGHT:
×
817
                        case lnrpc.Payment_SUCCEEDED:
×
818
                                return nil, errors.New("warning, the fee " +
×
819
                                        "estimation payment probe " +
×
820
                                        "unexpectedly succeeded. Please reach" +
×
821
                                        "out to the probe destination to " +
×
822
                                        "negotiate a refund. Otherwise the " +
×
823
                                        "payment probe amount is lost forever")
×
824

825
                        case lnrpc.Payment_FAILED:
×
826
                                // Incorrect payment details point to a
×
827
                                // successful probe.
×
828
                                //nolint:ll
×
829
                                if payment.FailureReason == lnrpc.PaymentFailureReason_FAILURE_REASON_INCORRECT_PAYMENT_DETAILS {
×
830
                                        return paymentDetails(payment)
×
831
                                }
×
832

833
                                return &RouteFeeResponse{
×
834
                                        RoutingFeeMsat: 0,
×
835
                                        TimeLockDelay:  0,
×
836
                                        FailureReason:  payment.FailureReason,
×
837
                                }, nil
×
838

839
                        default:
×
840
                                return nil, errors.New("unexpected payment " +
×
841
                                        "status")
×
842
                        }
843

844
                case err := <-errChan:
×
845
                        return nil, err
×
846

847
                case <-s.quit:
×
848
                        return nil, errServerShuttingDown
×
849
                }
850
        }
851
}
852

853
func paymentDetails(payment *lnrpc.Payment) (*RouteFeeResponse, error) {
×
854
        fee, timeLock, err := timelockAndFee(payment)
×
855
        if errors.Is(err, errUnexpectedFailureSource) {
×
856
                return nil, err
×
857
        }
×
858

859
        return &RouteFeeResponse{
×
860
                RoutingFeeMsat: fee,
×
861
                TimeLockDelay:  timeLock,
×
862
                FailureReason:  lnrpc.PaymentFailureReason_FAILURE_REASON_NONE,
×
863
        }, nil
×
864
}
865

866
// timelockAndFee returns the fee and total time lock of the last payment
867
// attempt.
868
func timelockAndFee(p *lnrpc.Payment) (int64, int64, error) {
×
869
        if len(p.Htlcs) == 0 {
×
870
                return 0, 0, nil
×
871
        }
×
872

873
        lastAttempt := p.Htlcs[len(p.Htlcs)-1]
×
874
        if lastAttempt == nil {
×
875
                return 0, 0, errMissingPaymentAttempt
×
876
        }
×
877

878
        lastRoute := lastAttempt.Route
×
879
        if lastRoute == nil {
×
880
                return 0, 0, errMissingRoute
×
881
        }
×
882

883
        hopFailureIndex := lastAttempt.Failure.FailureSourceIndex
×
884
        finalHopIndex := uint32(len(lastRoute.Hops))
×
885
        if hopFailureIndex != finalHopIndex {
×
886
                return 0, 0, errUnexpectedFailureSource
×
887
        }
×
888

889
        return lastRoute.TotalFeesMsat, int64(lastRoute.TotalTimeLock), nil
×
890
}
891

892
// SendToRouteV2 sends a payment through a predefined route. The response of
893
// this call contains structured error information.
894
func (s *Server) SendToRouteV2(ctx context.Context,
895
        req *SendToRouteRequest) (*lnrpc.HTLCAttempt, error) {
×
896

×
897
        if req.Route == nil {
×
898
                return nil, fmt.Errorf("unable to send, no routes provided")
×
899
        }
×
900

901
        route, err := s.cfg.RouterBackend.UnmarshallRoute(req.Route)
×
902
        if err != nil {
×
903
                return nil, err
×
904
        }
×
905

906
        hash, err := lntypes.MakeHash(req.PaymentHash)
×
907
        if err != nil {
×
908
                return nil, err
×
909
        }
×
910

911
        firstHopRecords := lnwire.CustomRecords(req.FirstHopCustomRecords)
×
912
        if err := firstHopRecords.Validate(); err != nil {
×
913
                return nil, err
×
914
        }
×
915

916
        var attempt *channeldb.HTLCAttempt
×
917

×
918
        // Pass route to the router. This call returns the full htlc attempt
×
919
        // information as it is stored in the database. It is possible that both
×
920
        // the attempt return value and err are non-nil. This can happen when
×
921
        // the attempt was already initiated before the error happened. In that
×
922
        // case, we give precedence to the attempt information as stored in the
×
923
        // db.
×
924
        if req.SkipTempErr {
×
925
                attempt, err = s.cfg.Router.SendToRouteSkipTempErr(
×
926
                        hash, route, firstHopRecords,
×
927
                )
×
928
        } else {
×
929
                attempt, err = s.cfg.Router.SendToRoute(
×
930
                        hash, route, firstHopRecords,
×
931
                )
×
932
        }
×
933
        if attempt != nil {
×
934
                rpcAttempt, err := s.cfg.RouterBackend.MarshalHTLCAttempt(
×
935
                        *attempt,
×
936
                )
×
937
                if err != nil {
×
938
                        return nil, err
×
939
                }
×
940
                return rpcAttempt, nil
×
941
        }
942

943
        // Transform user errors to grpc code.
944
        switch {
×
945
        case errors.Is(err, channeldb.ErrPaymentExists):
×
946
                fallthrough
×
947

948
        case errors.Is(err, channeldb.ErrPaymentInFlight):
×
949
                fallthrough
×
950

951
        case errors.Is(err, channeldb.ErrAlreadyPaid):
×
952
                return nil, status.Error(
×
953
                        codes.AlreadyExists, err.Error(),
×
954
                )
×
955
        }
956

957
        return nil, err
×
958
}
959

960
// ResetMissionControl clears all mission control state and starts with a clean
961
// slate.
962
func (s *Server) ResetMissionControl(ctx context.Context,
963
        req *ResetMissionControlRequest) (*ResetMissionControlResponse, error) {
×
964

×
965
        err := s.cfg.RouterBackend.MissionControl.ResetHistory()
×
966
        if err != nil {
×
967
                return nil, err
×
968
        }
×
969

970
        return &ResetMissionControlResponse{}, nil
×
971
}
972

973
// GetMissionControlConfig returns our current mission control config.
974
func (s *Server) GetMissionControlConfig(ctx context.Context,
975
        req *GetMissionControlConfigRequest) (*GetMissionControlConfigResponse,
976
        error) {
×
977

×
978
        // Query the current mission control config.
×
979
        cfg := s.cfg.RouterBackend.MissionControl.GetConfig()
×
980
        resp := &GetMissionControlConfigResponse{
×
981
                Config: &MissionControlConfig{
×
982
                        MaximumPaymentResults: uint32(cfg.MaxMcHistory),
×
983
                        MinimumFailureRelaxInterval: uint64(
×
984
                                cfg.MinFailureRelaxInterval.Seconds(),
×
985
                        ),
×
986
                },
×
987
        }
×
988

×
989
        // We only populate fields based on the current estimator.
×
990
        switch v := cfg.Estimator.Config().(type) {
×
991
        case routing.AprioriConfig:
×
992
                resp.Config.Model = MissionControlConfig_APRIORI
×
993
                aCfg := AprioriParameters{
×
994
                        HalfLifeSeconds:  uint64(v.PenaltyHalfLife.Seconds()),
×
995
                        HopProbability:   v.AprioriHopProbability,
×
996
                        Weight:           v.AprioriWeight,
×
997
                        CapacityFraction: v.CapacityFraction,
×
998
                }
×
999

×
1000
                // Populate deprecated fields.
×
1001
                resp.Config.HalfLifeSeconds = uint64(
×
1002
                        v.PenaltyHalfLife.Seconds(),
×
1003
                )
×
1004
                resp.Config.HopProbability = float32(v.AprioriHopProbability)
×
1005
                resp.Config.Weight = float32(v.AprioriWeight)
×
1006

×
1007
                resp.Config.EstimatorConfig = &MissionControlConfig_Apriori{
×
1008
                        Apriori: &aCfg,
×
1009
                }
×
1010

1011
        case routing.BimodalConfig:
×
1012
                resp.Config.Model = MissionControlConfig_BIMODAL
×
1013
                bCfg := BimodalParameters{
×
1014
                        NodeWeight: v.BimodalNodeWeight,
×
1015
                        ScaleMsat:  uint64(v.BimodalScaleMsat),
×
1016
                        DecayTime:  uint64(v.BimodalDecayTime.Seconds()),
×
1017
                }
×
1018

×
1019
                resp.Config.EstimatorConfig = &MissionControlConfig_Bimodal{
×
1020
                        Bimodal: &bCfg,
×
1021
                }
×
1022

1023
        default:
×
1024
                return nil, fmt.Errorf("unknown estimator config type %T", v)
×
1025
        }
1026

1027
        return resp, nil
×
1028
}
1029

1030
// SetMissionControlConfig sets parameters in the mission control config.
1031
func (s *Server) SetMissionControlConfig(ctx context.Context,
1032
        req *SetMissionControlConfigRequest) (*SetMissionControlConfigResponse,
1033
        error) {
×
1034

×
1035
        mcCfg := &routing.MissionControlConfig{
×
1036
                MaxMcHistory: int(req.Config.MaximumPaymentResults),
×
1037
                MinFailureRelaxInterval: time.Duration(
×
1038
                        req.Config.MinimumFailureRelaxInterval,
×
1039
                ) * time.Second,
×
1040
        }
×
1041

×
1042
        switch req.Config.Model {
×
1043
        case MissionControlConfig_APRIORI:
×
1044
                var aprioriConfig routing.AprioriConfig
×
1045

×
1046
                // Determine the apriori config with backward compatibility
×
1047
                // should the api use deprecated fields.
×
1048
                switch v := req.Config.EstimatorConfig.(type) {
×
1049
                case *MissionControlConfig_Bimodal:
×
1050
                        return nil, fmt.Errorf("bimodal config " +
×
1051
                                "provided, but apriori model requested")
×
1052

1053
                case *MissionControlConfig_Apriori:
×
1054
                        aprioriConfig = routing.AprioriConfig{
×
1055
                                PenaltyHalfLife: time.Duration(
×
1056
                                        v.Apriori.HalfLifeSeconds,
×
1057
                                ) * time.Second,
×
1058
                                AprioriHopProbability: v.Apriori.HopProbability,
×
1059
                                AprioriWeight:         v.Apriori.Weight,
×
1060
                                CapacityFraction: v.Apriori.
×
1061
                                        CapacityFraction,
×
1062
                        }
×
1063

1064
                default:
×
1065
                        aprioriConfig = routing.AprioriConfig{
×
1066
                                PenaltyHalfLife: time.Duration(
×
1067
                                        int64(req.Config.HalfLifeSeconds),
×
1068
                                ) * time.Second,
×
1069
                                AprioriHopProbability: float64(
×
1070
                                        req.Config.HopProbability,
×
1071
                                ),
×
1072
                                AprioriWeight:    float64(req.Config.Weight),
×
1073
                                CapacityFraction: routing.DefaultCapacityFraction, //nolint:ll
×
1074
                        }
×
1075
                }
1076

1077
                estimator, err := routing.NewAprioriEstimator(aprioriConfig)
×
1078
                if err != nil {
×
1079
                        return nil, err
×
1080
                }
×
1081
                mcCfg.Estimator = estimator
×
1082

1083
        case MissionControlConfig_BIMODAL:
×
1084
                cfg, ok := req.Config.
×
1085
                        EstimatorConfig.(*MissionControlConfig_Bimodal)
×
1086
                if !ok {
×
1087
                        return nil, fmt.Errorf("bimodal estimator requested " +
×
1088
                                "but corresponding config not set")
×
1089
                }
×
1090
                bCfg := cfg.Bimodal
×
1091

×
1092
                bimodalConfig := routing.BimodalConfig{
×
1093
                        BimodalDecayTime: time.Duration(
×
1094
                                bCfg.DecayTime,
×
1095
                        ) * time.Second,
×
1096
                        BimodalScaleMsat:  lnwire.MilliSatoshi(bCfg.ScaleMsat),
×
1097
                        BimodalNodeWeight: bCfg.NodeWeight,
×
1098
                }
×
1099

×
1100
                estimator, err := routing.NewBimodalEstimator(bimodalConfig)
×
1101
                if err != nil {
×
1102
                        return nil, err
×
1103
                }
×
1104
                mcCfg.Estimator = estimator
×
1105

1106
        default:
×
1107
                return nil, fmt.Errorf("unknown estimator type %v",
×
1108
                        req.Config.Model)
×
1109
        }
1110

1111
        return &SetMissionControlConfigResponse{},
×
1112
                s.cfg.RouterBackend.MissionControl.SetConfig(mcCfg)
×
1113
}
1114

1115
// QueryMissionControl exposes the internal mission control state to callers. It
1116
// is a development feature.
1117
func (s *Server) QueryMissionControl(_ context.Context,
1118
        _ *QueryMissionControlRequest) (*QueryMissionControlResponse, error) {
×
1119

×
1120
        snapshot := s.cfg.RouterBackend.MissionControl.GetHistorySnapshot()
×
1121

×
1122
        rpcPairs := make([]*PairHistory, 0, len(snapshot.Pairs))
×
1123
        for _, p := range snapshot.Pairs {
×
1124
                // Prevent binding to loop variable.
×
1125
                pair := p
×
1126

×
1127
                rpcPair := PairHistory{
×
1128
                        NodeFrom: pair.Pair.From[:],
×
1129
                        NodeTo:   pair.Pair.To[:],
×
1130
                        History:  toRPCPairData(&pair.TimedPairResult),
×
1131
                }
×
1132

×
1133
                rpcPairs = append(rpcPairs, &rpcPair)
×
1134
        }
×
1135

1136
        response := QueryMissionControlResponse{
×
1137
                Pairs: rpcPairs,
×
1138
        }
×
1139

×
1140
        return &response, nil
×
1141
}
1142

1143
// toRPCPairData marshalls mission control pair data to the rpc struct.
1144
func toRPCPairData(data *routing.TimedPairResult) *PairData {
×
1145
        rpcData := PairData{
×
1146
                FailAmtSat:     int64(data.FailAmt.ToSatoshis()),
×
1147
                FailAmtMsat:    int64(data.FailAmt),
×
1148
                SuccessAmtSat:  int64(data.SuccessAmt.ToSatoshis()),
×
1149
                SuccessAmtMsat: int64(data.SuccessAmt),
×
1150
        }
×
1151

×
1152
        if !data.FailTime.IsZero() {
×
1153
                rpcData.FailTime = data.FailTime.Unix()
×
1154
        }
×
1155

1156
        if !data.SuccessTime.IsZero() {
×
1157
                rpcData.SuccessTime = data.SuccessTime.Unix()
×
1158
        }
×
1159

1160
        return &rpcData
×
1161
}
1162

1163
// XImportMissionControl imports the state provided to our internal mission
1164
// control. Only entries that are fresher than our existing state will be used.
1165
func (s *Server) XImportMissionControl(_ context.Context,
1166
        req *XImportMissionControlRequest) (*XImportMissionControlResponse,
1167
        error) {
×
1168

×
1169
        if len(req.Pairs) == 0 {
×
1170
                return nil, errors.New("at least one pair required for import")
×
1171
        }
×
1172

1173
        snapshot := &routing.MissionControlSnapshot{
×
1174
                Pairs: make(
×
1175
                        []routing.MissionControlPairSnapshot, len(req.Pairs),
×
1176
                ),
×
1177
        }
×
1178

×
1179
        for i, pairResult := range req.Pairs {
×
1180
                pairSnapshot, err := toPairSnapshot(pairResult)
×
1181
                if err != nil {
×
1182
                        return nil, err
×
1183
                }
×
1184

1185
                snapshot.Pairs[i] = *pairSnapshot
×
1186
        }
1187

1188
        err := s.cfg.RouterBackend.MissionControl.ImportHistory(
×
1189
                snapshot, req.Force,
×
1190
        )
×
1191
        if err != nil {
×
1192
                return nil, err
×
1193
        }
×
1194

1195
        return &XImportMissionControlResponse{}, nil
×
1196
}
1197

1198
func toPairSnapshot(pairResult *PairHistory) (*routing.MissionControlPairSnapshot,
1199
        error) {
×
1200

×
1201
        from, err := route.NewVertexFromBytes(pairResult.NodeFrom)
×
1202
        if err != nil {
×
1203
                return nil, err
×
1204
        }
×
1205

1206
        to, err := route.NewVertexFromBytes(pairResult.NodeTo)
×
1207
        if err != nil {
×
1208
                return nil, err
×
1209
        }
×
1210

1211
        pairPrefix := fmt.Sprintf("pair: %v -> %v:", from, to)
×
1212

×
1213
        if from == to {
×
1214
                return nil, fmt.Errorf("%v source and destination node must "+
×
1215
                        "differ", pairPrefix)
×
1216
        }
×
1217

1218
        failAmt, failTime, err := getPair(
×
1219
                lnwire.MilliSatoshi(pairResult.History.FailAmtMsat),
×
1220
                btcutil.Amount(pairResult.History.FailAmtSat),
×
1221
                pairResult.History.FailTime,
×
1222
                true,
×
1223
        )
×
1224
        if err != nil {
×
1225
                return nil, fmt.Errorf("%v invalid failure: %w", pairPrefix,
×
1226
                        err)
×
1227
        }
×
1228

1229
        successAmt, successTime, err := getPair(
×
1230
                lnwire.MilliSatoshi(pairResult.History.SuccessAmtMsat),
×
1231
                btcutil.Amount(pairResult.History.SuccessAmtSat),
×
1232
                pairResult.History.SuccessTime,
×
1233
                false,
×
1234
        )
×
1235
        if err != nil {
×
1236
                return nil, fmt.Errorf("%v invalid success: %w", pairPrefix,
×
1237
                        err)
×
1238
        }
×
1239

1240
        if successAmt == 0 && failAmt == 0 {
×
1241
                return nil, fmt.Errorf("%v: either success or failure result "+
×
1242
                        "required", pairPrefix)
×
1243
        }
×
1244

1245
        pair := routing.NewDirectedNodePair(from, to)
×
1246

×
1247
        result := &routing.TimedPairResult{
×
1248
                FailAmt:     failAmt,
×
1249
                FailTime:    failTime,
×
1250
                SuccessAmt:  successAmt,
×
1251
                SuccessTime: successTime,
×
1252
        }
×
1253

×
1254
        return &routing.MissionControlPairSnapshot{
×
1255
                Pair:            pair,
×
1256
                TimedPairResult: *result,
×
1257
        }, nil
×
1258
}
1259

1260
// getPair validates the values provided for a mission control result and
1261
// returns the msat amount and timestamp for it. `isFailure` can be used to
1262
// default values to 0 instead of returning an error.
1263
func getPair(amtMsat lnwire.MilliSatoshi, amtSat btcutil.Amount,
1264
        timestamp int64, isFailure bool) (lnwire.MilliSatoshi, time.Time,
1265
        error) {
×
1266

×
1267
        amt, err := getMsatPairValue(amtMsat, amtSat)
×
1268
        if err != nil {
×
1269
                return 0, time.Time{}, err
×
1270
        }
×
1271

1272
        var (
×
1273
                timeSet   = timestamp != 0
×
1274
                amountSet = amt != 0
×
1275
        )
×
1276

×
1277
        switch {
×
1278
        // If a timestamp and amount if provided, return those values.
1279
        case timeSet && amountSet:
×
1280
                return amt, time.Unix(timestamp, 0), nil
×
1281

1282
        // Return an error if it does have a timestamp without an amount, and
1283
        // it's not expected to be a failure.
1284
        case !isFailure && timeSet && !amountSet:
×
1285
                return 0, time.Time{}, errors.New("non-zero timestamp " +
×
1286
                        "requires non-zero amount for success pairs")
×
1287

1288
        // Return an error if it does have an amount without a timestamp, and
1289
        // it's not expected to be a failure.
1290
        case !isFailure && !timeSet && amountSet:
×
1291
                return 0, time.Time{}, errors.New("non-zero amount for " +
×
1292
                        "success pairs requires non-zero timestamp")
×
1293

1294
        default:
×
1295
                return 0, time.Time{}, nil
×
1296
        }
1297
}
1298

1299
// getMsatPairValue checks the msat and sat values set for a pair and ensures
1300
// that the values provided are either the same, or only a single value is set.
1301
func getMsatPairValue(msatValue lnwire.MilliSatoshi,
1302
        satValue btcutil.Amount) (lnwire.MilliSatoshi, error) {
×
1303

×
1304
        // If our msat value converted to sats equals our sat value, we just
×
1305
        // return the msat value, since the values are the same.
×
1306
        if msatValue.ToSatoshis() == satValue {
×
1307
                return msatValue, nil
×
1308
        }
×
1309

1310
        // If we have no msatValue, we can just return our state value even if
1311
        // it is zero, because it's impossible that we have mismatched values.
1312
        if msatValue == 0 {
×
1313
                return lnwire.MilliSatoshi(satValue * 1000), nil
×
1314
        }
×
1315

1316
        // Likewise, we can just use msat value if we have no sat value set.
1317
        if satValue == 0 {
×
1318
                return msatValue, nil
×
1319
        }
×
1320

1321
        // If our values are non-zero but not equal, we have invalid amounts
1322
        // set, so we fail.
1323
        return 0, fmt.Errorf("msat: %v and sat: %v values not equal", msatValue,
×
1324
                satValue)
×
1325
}
1326

1327
// TrackPaymentV2 returns a stream of payment state updates. The stream is
1328
// closed when the payment completes.
1329
func (s *Server) TrackPaymentV2(request *TrackPaymentRequest,
1330
        stream Router_TrackPaymentV2Server) error {
×
1331

×
1332
        payHash, err := lntypes.MakeHash(request.PaymentHash)
×
1333
        if err != nil {
×
1334
                return err
×
1335
        }
×
1336

1337
        log.Debugf("TrackPayment called for payment %v", payHash)
×
1338

×
1339
        // Make the subscription.
×
1340
        sub, err := s.subscribePayment(payHash)
×
1341
        if err != nil {
×
1342
                return err
×
1343
        }
×
1344

1345
        return s.trackPayment(sub, payHash, stream, request.NoInflightUpdates)
×
1346
}
1347

1348
// subscribePayment subscribes to the payment updates for the given payment
1349
// hash.
1350
func (s *Server) subscribePayment(identifier lntypes.Hash) (
1351
        routing.ControlTowerSubscriber, error) {
×
1352

×
1353
        // Make the subscription.
×
1354
        router := s.cfg.RouterBackend
×
1355
        sub, err := router.Tower.SubscribePayment(identifier)
×
1356

×
1357
        switch {
×
1358
        case errors.Is(err, channeldb.ErrPaymentNotInitiated):
×
1359
                return nil, status.Error(codes.NotFound, err.Error())
×
1360

1361
        case err != nil:
×
1362
                return nil, err
×
1363
        }
1364

1365
        return sub, nil
×
1366
}
1367

1368
// trackPayment writes payment status updates to the provided stream.
1369
func (s *Server) trackPayment(subscription routing.ControlTowerSubscriber,
1370
        identifier lntypes.Hash, stream Router_TrackPaymentV2Server,
1371
        noInflightUpdates bool) error {
×
1372

×
1373
        err := s.trackPaymentStream(
×
1374
                stream.Context(), subscription, noInflightUpdates, stream.Send,
×
1375
        )
×
1376
        switch {
×
1377
        case err == nil:
×
1378
                return nil
×
1379

1380
        // If the context is canceled, we don't return an error.
1381
        case errors.Is(err, context.Canceled):
×
1382
                log.Infof("Payment stream %v canceled", identifier)
×
1383

×
1384
                return nil
×
1385

1386
        default:
×
1387
        }
1388

1389
        // Otherwise, we will log and return the error as the stream has
1390
        // received an error from the payment lifecycle.
1391
        log.Errorf("TrackPayment got error for payment %v: %v", identifier, err)
×
1392

×
1393
        return err
×
1394
}
1395

1396
// TrackPayments returns a stream of payment state updates.
1397
func (s *Server) TrackPayments(request *TrackPaymentsRequest,
1398
        stream Router_TrackPaymentsServer) error {
3✔
1399

3✔
1400
        log.Debug("TrackPayments called")
3✔
1401

3✔
1402
        router := s.cfg.RouterBackend
3✔
1403

3✔
1404
        // Subscribe to payments.
3✔
1405
        subscription, err := router.Tower.SubscribeAllPayments()
3✔
1406
        if err != nil {
3✔
1407
                return err
×
1408
        }
×
1409

1410
        // Stream updates to the client.
1411
        err = s.trackPaymentStream(
3✔
1412
                stream.Context(), subscription, request.NoInflightUpdates,
3✔
1413
                stream.Send,
3✔
1414
        )
3✔
1415

3✔
1416
        if errors.Is(err, context.Canceled) {
6✔
1417
                log.Debugf("TrackPayments payment stream canceled.")
3✔
1418
        }
3✔
1419

1420
        return err
3✔
1421
}
1422

1423
// trackPaymentStream streams payment updates to the client.
1424
func (s *Server) trackPaymentStream(context context.Context,
1425
        subscription routing.ControlTowerSubscriber, noInflightUpdates bool,
1426
        send func(*lnrpc.Payment) error) error {
3✔
1427

3✔
1428
        defer subscription.Close()
3✔
1429

3✔
1430
        // Stream updates back to the client.
3✔
1431
        for {
10✔
1432
                select {
7✔
1433
                case item, ok := <-subscription.Updates():
4✔
1434
                        if !ok {
4✔
1435
                                // No more payment updates.
×
1436
                                return nil
×
1437
                        }
×
1438
                        result := item.(*channeldb.MPPayment)
4✔
1439

4✔
1440
                        log.Tracef("Payment %v updated to state %v",
4✔
1441
                                result.Info.PaymentIdentifier, result.Status)
4✔
1442

4✔
1443
                        // Skip in-flight updates unless requested.
4✔
1444
                        if noInflightUpdates {
6✔
1445
                                if result.Status == channeldb.StatusInitiated {
2✔
1446
                                        continue
×
1447
                                }
1448
                                if result.Status == channeldb.StatusInFlight {
3✔
1449
                                        continue
1✔
1450
                                }
1451
                        }
1452

1453
                        rpcPayment, err := s.cfg.RouterBackend.MarshallPayment(
3✔
1454
                                result,
3✔
1455
                        )
3✔
1456
                        if err != nil {
3✔
1457
                                return err
×
1458
                        }
×
1459

1460
                        // Send event to the client.
1461
                        err = send(rpcPayment)
3✔
1462
                        if err != nil {
3✔
1463
                                return err
×
1464
                        }
×
1465

1466
                case <-s.quit:
×
1467
                        return errServerShuttingDown
×
1468

1469
                case <-context.Done():
3✔
1470
                        return context.Err()
3✔
1471
                }
1472
        }
1473
}
1474

1475
// BuildRoute builds a route from a list of hop addresses.
1476
func (s *Server) BuildRoute(_ context.Context,
1477
        req *BuildRouteRequest) (*BuildRouteResponse, error) {
×
1478

×
1479
        if len(req.HopPubkeys) == 0 {
×
1480
                return nil, errors.New("no hops specified")
×
1481
        }
×
1482

1483
        // Unmarshall hop list.
1484
        hops := make([]route.Vertex, len(req.HopPubkeys))
×
1485
        for i, pubkeyBytes := range req.HopPubkeys {
×
1486
                pubkey, err := route.NewVertexFromBytes(pubkeyBytes)
×
1487
                if err != nil {
×
1488
                        return nil, err
×
1489
                }
×
1490
                hops[i] = pubkey
×
1491
        }
1492

1493
        // Prepare BuildRoute call parameters from rpc request.
1494
        var amt fn.Option[lnwire.MilliSatoshi]
×
1495
        if req.AmtMsat != 0 {
×
1496
                rpcAmt := lnwire.MilliSatoshi(req.AmtMsat)
×
1497
                amt = fn.Some(rpcAmt)
×
1498
        }
×
1499

1500
        var outgoingChan *uint64
×
1501
        if req.OutgoingChanId != 0 {
×
1502
                outgoingChan = &req.OutgoingChanId
×
1503
        }
×
1504

1505
        var payAddr fn.Option[[32]byte]
×
1506
        if len(req.PaymentAddr) != 0 {
×
1507
                var backingPayAddr [32]byte
×
1508
                copy(backingPayAddr[:], req.PaymentAddr)
×
1509

×
1510
                payAddr = fn.Some(backingPayAddr)
×
1511
        }
×
1512

1513
        if req.FinalCltvDelta == 0 {
×
1514
                req.FinalCltvDelta = int32(
×
1515
                        s.cfg.RouterBackend.DefaultFinalCltvDelta,
×
1516
                )
×
1517
        }
×
1518

1519
        var firstHopBlob fn.Option[[]byte]
×
1520
        if len(req.FirstHopCustomRecords) > 0 {
×
1521
                firstHopRecords := lnwire.CustomRecords(
×
1522
                        req.FirstHopCustomRecords,
×
1523
                )
×
1524
                if err := firstHopRecords.Validate(); err != nil {
×
1525
                        return nil, err
×
1526
                }
×
1527

1528
                firstHopData, err := firstHopRecords.Serialize()
×
1529
                if err != nil {
×
1530
                        return nil, err
×
1531
                }
×
1532
                firstHopBlob = fn.Some(firstHopData)
×
1533
        }
1534

1535
        // Build the route and return it to the caller.
1536
        route, err := s.cfg.Router.BuildRoute(
×
1537
                amt, hops, outgoingChan, req.FinalCltvDelta, payAddr,
×
1538
                firstHopBlob,
×
1539
        )
×
1540
        if err != nil {
×
1541
                return nil, err
×
1542
        }
×
1543

1544
        rpcRoute, err := s.cfg.RouterBackend.MarshallRoute(route)
×
1545
        if err != nil {
×
1546
                return nil, err
×
1547
        }
×
1548

1549
        routeResp := &BuildRouteResponse{
×
1550
                Route: rpcRoute,
×
1551
        }
×
1552

×
1553
        return routeResp, nil
×
1554
}
1555

1556
// SubscribeHtlcEvents creates a uni-directional stream from the server to
1557
// the client which delivers a stream of htlc events.
1558
func (s *Server) SubscribeHtlcEvents(_ *SubscribeHtlcEventsRequest,
1559
        stream Router_SubscribeHtlcEventsServer) error {
×
1560

×
1561
        htlcClient, err := s.cfg.RouterBackend.SubscribeHtlcEvents()
×
1562
        if err != nil {
×
1563
                return err
×
1564
        }
×
1565
        defer htlcClient.Cancel()
×
1566

×
1567
        // Send out an initial subscribed event so that the caller knows the
×
1568
        // point from which new events will be transmitted.
×
1569
        if err := stream.Send(&HtlcEvent{
×
1570
                Event: &HtlcEvent_SubscribedEvent{
×
1571
                        SubscribedEvent: &SubscribedEvent{},
×
1572
                },
×
1573
        }); err != nil {
×
1574
                return err
×
1575
        }
×
1576

1577
        for {
×
1578
                select {
×
1579
                case event := <-htlcClient.Updates():
×
1580
                        rpcEvent, err := rpcHtlcEvent(event)
×
1581
                        if err != nil {
×
1582
                                return err
×
1583
                        }
×
1584

1585
                        if err := stream.Send(rpcEvent); err != nil {
×
1586
                                return err
×
1587
                        }
×
1588

1589
                // If the stream's context is cancelled, return an error.
1590
                case <-stream.Context().Done():
×
1591
                        log.Debugf("htlc event stream cancelled")
×
1592
                        return stream.Context().Err()
×
1593

1594
                // If the subscribe client terminates, exit with an error.
1595
                case <-htlcClient.Quit():
×
1596
                        return errors.New("htlc event subscription terminated")
×
1597

1598
                // If the server has been signalled to shut down, exit.
1599
                case <-s.quit:
×
1600
                        return errServerShuttingDown
×
1601
                }
1602
        }
1603
}
1604

1605
// HtlcInterceptor is a bidirectional stream for streaming interception
1606
// requests to the caller.
1607
// Upon connection, it does the following:
1608
// 1. Check if there is already a live stream, if yes it rejects the request.
1609
// 2. Registered a ForwardInterceptor
1610
// 3. Delivers to the caller every √√ and detect his answer.
1611
// It uses a local implementation of holdForwardsStore to keep all the hold
1612
// forwards and find them when manual resolution is later needed.
1613
func (s *Server) HtlcInterceptor(stream Router_HtlcInterceptorServer) error {
×
1614
        // We ensure there is only one interceptor at a time.
×
1615
        if !atomic.CompareAndSwapInt32(&s.forwardInterceptorActive, 0, 1) {
×
1616
                return ErrInterceptorAlreadyExists
×
1617
        }
×
1618
        defer atomic.CompareAndSwapInt32(&s.forwardInterceptorActive, 1, 0)
×
1619

×
1620
        // Run the forward interceptor.
×
1621
        return newForwardInterceptor(
×
1622
                s.cfg.RouterBackend.InterceptableForwarder, stream,
×
1623
        ).run()
×
1624
}
1625

1626
// XAddLocalChanAliases is an experimental API that creates a set of new
1627
// channel SCID alias mappings. The final total set of aliases in the manager
1628
// after the add operation is returned. This is only a locally stored alias, and
1629
// will not be communicated to the channel peer via any message. Therefore,
1630
// routing over such an alias will only work if the peer also calls this same
1631
// RPC on their end. If an alias already exists, an error is returned.
1632
func (s *Server) XAddLocalChanAliases(_ context.Context,
1633
        in *AddAliasesRequest) (*AddAliasesResponse, error) {
×
1634

×
1635
        existingAliases := s.cfg.AliasMgr.ListAliases()
×
1636

×
1637
        // aliasExists checks if the new alias already exists in the alias map.
×
1638
        aliasExists := func(newAlias uint64,
×
1639
                baseScid lnwire.ShortChannelID) (bool, error) {
×
1640

×
1641
                // First check that we actually have a channel for the given
×
1642
                // base scid. This should succeed for any channel where the
×
1643
                // option-scid-alias feature bit was negotiated.
×
1644
                if _, ok := existingAliases[baseScid]; !ok {
×
1645
                        return false, fmt.Errorf("base scid %v not found",
×
1646
                                baseScid)
×
1647
                }
×
1648

1649
                for base, aliases := range existingAliases {
×
1650
                        for _, alias := range aliases {
×
1651
                                exists := alias.ToUint64() == newAlias
×
1652

×
1653
                                // Trying to add an alias that we already have
×
1654
                                // for another channel is wrong.
×
1655
                                if exists && base != baseScid {
×
1656
                                        return true, fmt.Errorf("%w: alias %v "+
×
1657
                                                "already exists for base scid "+
×
1658
                                                "%v", ErrAliasAlreadyExists,
×
1659
                                                alias, base)
×
1660
                                }
×
1661

1662
                                if exists {
×
1663
                                        return true, nil
×
1664
                                }
×
1665
                        }
1666
                }
1667

1668
                return false, nil
×
1669
        }
1670

1671
        for _, v := range in.AliasMaps {
×
1672
                baseScid := lnwire.NewShortChanIDFromInt(v.BaseScid)
×
1673

×
1674
                for _, rpcAlias := range v.Aliases {
×
1675
                        // If not, let's add it to the alias manager now.
×
1676
                        aliasScid := lnwire.NewShortChanIDFromInt(rpcAlias)
×
1677

×
1678
                        // But we only add it, if it's a valid alias, as defined
×
1679
                        // by the BOLT spec.
×
1680
                        if !aliasmgr.IsAlias(aliasScid) {
×
1681
                                return nil, fmt.Errorf("%w: SCID alias %v is "+
×
1682
                                        "not a valid alias", ErrNoValidAlias,
×
1683
                                        aliasScid)
×
1684
                        }
×
1685

1686
                        exists, err := aliasExists(rpcAlias, baseScid)
×
1687
                        if err != nil {
×
1688
                                return nil, err
×
1689
                        }
×
1690

1691
                        // If the alias already exists, we see that as an error.
1692
                        // This is to avoid "silent" collisions.
1693
                        if exists {
×
1694
                                return nil, fmt.Errorf("%w: SCID alias %v "+
×
1695
                                        "already exists", ErrAliasAlreadyExists,
×
1696
                                        rpcAlias)
×
1697
                        }
×
1698

1699
                        err = s.cfg.AliasMgr.AddLocalAlias(
×
1700
                                aliasScid, baseScid, false, true,
×
1701
                        )
×
1702
                        if err != nil {
×
1703
                                return nil, fmt.Errorf("error adding scid "+
×
1704
                                        "alias, base_scid=%v, alias_scid=%v: "+
×
1705
                                        "%w", baseScid, aliasScid, err)
×
1706
                        }
×
1707
                }
1708
        }
1709

1710
        return &AddAliasesResponse{
×
1711
                AliasMaps: lnrpc.MarshalAliasMap(s.cfg.AliasMgr.ListAliases()),
×
1712
        }, nil
×
1713
}
1714

1715
// XDeleteLocalChanAliases is an experimental API that deletes a set of alias
1716
// mappings. The final total set of aliases in the manager after the delete
1717
// operation is returned. The deletion will not be communicated to the channel
1718
// peer via any message.
1719
func (s *Server) XDeleteLocalChanAliases(_ context.Context,
1720
        in *DeleteAliasesRequest) (*DeleteAliasesResponse,
1721
        error) {
×
1722

×
1723
        for _, v := range in.AliasMaps {
×
1724
                baseScid := lnwire.NewShortChanIDFromInt(v.BaseScid)
×
1725

×
1726
                for _, alias := range v.Aliases {
×
1727
                        aliasScid := lnwire.NewShortChanIDFromInt(alias)
×
1728

×
1729
                        err := s.cfg.AliasMgr.DeleteLocalAlias(
×
1730
                                aliasScid, baseScid,
×
1731
                        )
×
1732
                        if err != nil {
×
1733
                                return nil, fmt.Errorf("error deleting scid "+
×
1734
                                        "alias, base_scid=%v, alias_scid=%v: "+
×
1735
                                        "%w", baseScid, aliasScid, err)
×
1736
                        }
×
1737
                }
1738
        }
1739

1740
        return &DeleteAliasesResponse{
×
1741
                AliasMaps: lnrpc.MarshalAliasMap(s.cfg.AliasMgr.ListAliases()),
×
1742
        }, nil
×
1743
}
1744

1745
func extractOutPoint(req *UpdateChanStatusRequest) (*wire.OutPoint, error) {
×
1746
        chanPoint := req.GetChanPoint()
×
1747
        txid, err := lnrpc.GetChanPointFundingTxid(chanPoint)
×
1748
        if err != nil {
×
1749
                return nil, err
×
1750
        }
×
1751
        index := chanPoint.OutputIndex
×
1752
        return wire.NewOutPoint(txid, index), nil
×
1753
}
1754

1755
// UpdateChanStatus allows channel state to be set manually.
1756
func (s *Server) UpdateChanStatus(_ context.Context,
1757
        req *UpdateChanStatusRequest) (*UpdateChanStatusResponse, error) {
×
1758

×
1759
        outPoint, err := extractOutPoint(req)
×
1760
        if err != nil {
×
1761
                return nil, err
×
1762
        }
×
1763

1764
        action := req.GetAction()
×
1765

×
1766
        log.Debugf("UpdateChanStatus called for channel(%v) with "+
×
1767
                "action %v", outPoint, action)
×
1768

×
1769
        switch action {
×
1770
        case ChanStatusAction_ENABLE:
×
1771
                err = s.cfg.RouterBackend.SetChannelEnabled(*outPoint)
×
1772
        case ChanStatusAction_DISABLE:
×
1773
                err = s.cfg.RouterBackend.SetChannelDisabled(*outPoint)
×
1774
        case ChanStatusAction_AUTO:
×
1775
                err = s.cfg.RouterBackend.SetChannelAuto(*outPoint)
×
1776
        default:
×
1777
                err = fmt.Errorf("unrecognized ChannelStatusAction %v", action)
×
1778
        }
1779

1780
        if err != nil {
×
1781
                return nil, err
×
1782
        }
×
1783
        return &UpdateChanStatusResponse{}, nil
×
1784
}
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