watchtower: build channel to sessionIDs index

In this commit, a migration is added that adds an index from channel to
sessionIDs (using the DB-assigned session IDs). This will make it easier
in future to know which sessions have updates for which channels.
This commit is contained in:
Elle Mouton
2023-03-09 10:30:12 +02:00
parent b16df45076
commit ee0353dd24
7 changed files with 485 additions and 1 deletions

View File

@@ -23,8 +23,13 @@ var (
// cChanDetailsBkt is a top-level bucket storing:
// channel-id => cChannelSummary -> encoded ClientChanSummary.
// => cChanDBID -> db-assigned-id
// => cChanSessions => db-session-id -> 1
cChanDetailsBkt = []byte("client-channel-detail-bucket")
// cChanSessions is a sub-bucket of cChanDetailsBkt which stores:
// db-session-id -> 1
cChanSessions = []byte("client-channel-sessions")
// cChanDBID is a key used in the cChanDetailsBkt to store the
// db-assigned-id of a channel.
cChanDBID = []byte("client-channel-db-id")
@@ -1454,7 +1459,7 @@ func (c *ClientDB) AckUpdate(id *SessionID, seqNum uint16,
return ErrUninitializedDB
}
chanDetailsBkt := tx.ReadBucket(cChanDetailsBkt)
chanDetailsBkt := tx.ReadWriteBucket(cChanDetailsBkt)
if chanDetailsBkt == nil {
return ErrUninitializedDB
}
@@ -1538,6 +1543,23 @@ func (c *ClientDB) AckUpdate(id *SessionID, seqNum uint16,
return err
}
dbSessionID, _, err := getDBSessionID(sessions, *id)
if err != nil {
return err
}
chanDetails := chanDetailsBkt.NestedReadWriteBucket(
committedUpdate.BackupID.ChanID[:],
)
if chanDetails == nil {
return ErrChannelNotRegistered
}
err = putChannelToSessionMapping(chanDetails, dbSessionID)
if err != nil {
return err
}
// Get the range index for the given session-channel pair.
index, err := c.getRangeIndex(tx, *id, chanID)
if err != nil {
@@ -1548,6 +1570,26 @@ func (c *ClientDB) AckUpdate(id *SessionID, seqNum uint16,
}, func() {})
}
// putChannelToSessionMapping adds the given session ID to a channel's
// cChanSessions bucket.
func putChannelToSessionMapping(chanDetails kvdb.RwBucket,
dbSessID uint64) error {
chanSessIDsBkt, err := chanDetails.CreateBucketIfNotExists(
cChanSessions,
)
if err != nil {
return err
}
b, err := writeBigSize(dbSessID)
if err != nil {
return err
}
return chanSessIDsBkt.Put(b, []byte{1})
}
// getClientSessionBody loads the body of a ClientSession from the sessions
// bucket corresponding to the serialized session id. This does not deserialize
// the CommittedUpdates, AckUpdates or the Tower associated with the session.

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@@ -9,6 +9,7 @@ import (
"github.com/lightningnetwork/lnd/watchtower/wtdb/migration4"
"github.com/lightningnetwork/lnd/watchtower/wtdb/migration5"
"github.com/lightningnetwork/lnd/watchtower/wtdb/migration6"
"github.com/lightningnetwork/lnd/watchtower/wtdb/migration7"
)
// log is a logger that is initialized with no output filters. This
@@ -38,6 +39,7 @@ func UseLogger(logger btclog.Logger) {
migration4.UseLogger(logger)
migration5.UseLogger(logger)
migration6.UseLogger(logger)
migration7.UseLogger(logger)
}
// logClosure is used to provide a closure over expensive logging operations so

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@@ -0,0 +1,202 @@
package migration7
import (
"bytes"
"encoding/binary"
"errors"
"fmt"
"github.com/lightningnetwork/lnd/kvdb"
"github.com/lightningnetwork/lnd/tlv"
)
var (
// cSessionBkt is a top-level bucket storing:
// session-id => cSessionBody -> encoded ClientSessionBody
// => cSessionDBID -> db-assigned-id
// => cSessionCommits => seqnum -> encoded CommittedUpdate
// => cSessionAckRangeIndex => chan-id => acked-index-range
cSessionBkt = []byte("client-session-bucket")
// cChanDetailsBkt is a top-level bucket storing:
// channel-id => cChannelSummary -> encoded ClientChanSummary.
// => cChanDBID -> db-assigned-id
// => cChanSessions => db-session-id -> 1
cChanDetailsBkt = []byte("client-channel-detail-bucket")
// cChannelSummary is a sub-bucket of cChanDetailsBkt which stores the
// encoded body of ClientChanSummary.
cChannelSummary = []byte("client-channel-summary")
// cChanSessions is a sub-bucket of cChanDetailsBkt which stores:
// session-id -> 1
cChanSessions = []byte("client-channel-sessions")
// cSessionAckRangeIndex is a sub-bucket of cSessionBkt storing:
// chan-id => start -> end
cSessionAckRangeIndex = []byte("client-session-ack-range-index")
// cSessionDBID is a key used in the cSessionBkt to store the
// db-assigned-d of a session.
cSessionDBID = []byte("client-session-db-id")
// cChanIDIndexBkt is a top-level bucket storing:
// db-assigned-id -> channel-ID
cChanIDIndexBkt = []byte("client-channel-id-index")
// ErrUninitializedDB signals that top-level buckets for the database
// have not been initialized.
ErrUninitializedDB = errors.New("db not initialized")
// ErrCorruptClientSession signals that the client session's on-disk
// structure deviates from what is expected.
ErrCorruptClientSession = errors.New("client session corrupted")
// byteOrder is the default endianness used when serializing integers.
byteOrder = binary.BigEndian
)
// MigrateChannelToSessionIndex migrates the tower client DB to add an index
// from channel-to-session. This will make it easier in future to check which
// sessions have updates for which channels.
func MigrateChannelToSessionIndex(tx kvdb.RwTx) error {
log.Infof("Migrating the tower client DB to build a new " +
"channel-to-session index")
sessionsBkt := tx.ReadBucket(cSessionBkt)
if sessionsBkt == nil {
return ErrUninitializedDB
}
chanDetailsBkt := tx.ReadWriteBucket(cChanDetailsBkt)
if chanDetailsBkt == nil {
return ErrUninitializedDB
}
chanIDsBkt := tx.ReadBucket(cChanIDIndexBkt)
if chanIDsBkt == nil {
return ErrUninitializedDB
}
// First gather all the new channel-to-session pairs that we want to
// add.
index, err := collectIndex(sessionsBkt)
if err != nil {
return err
}
// Then persist those pairs to the db.
return persistIndex(chanDetailsBkt, chanIDsBkt, index)
}
// collectIndex iterates through all the sessions and uses the keys in the
// cSessionAckRangeIndex bucket to collect all the channels that the session
// has updates for. The function returns a map from channel ID to session ID
// (using the db-assigned IDs for both).
func collectIndex(sessionsBkt kvdb.RBucket) (map[uint64]map[uint64]bool,
error) {
index := make(map[uint64]map[uint64]bool)
err := sessionsBkt.ForEach(func(sessID, _ []byte) error {
sessionBkt := sessionsBkt.NestedReadBucket(sessID)
if sessionBkt == nil {
return ErrCorruptClientSession
}
ackedRanges := sessionBkt.NestedReadBucket(
cSessionAckRangeIndex,
)
if ackedRanges == nil {
return nil
}
sessDBIDBytes := sessionBkt.Get(cSessionDBID)
if sessDBIDBytes == nil {
return ErrCorruptClientSession
}
sessDBID, err := readUint64(sessDBIDBytes)
if err != nil {
return err
}
return ackedRanges.ForEach(func(dbChanIDBytes, _ []byte) error {
dbChanID, err := readUint64(dbChanIDBytes)
if err != nil {
return err
}
if _, ok := index[dbChanID]; !ok {
index[dbChanID] = make(map[uint64]bool)
}
index[dbChanID][sessDBID] = true
return nil
})
})
if err != nil {
return nil, err
}
return index, nil
}
// persistIndex adds the channel-to-session mapping in each channel's details
// bucket.
func persistIndex(chanDetailsBkt kvdb.RwBucket, chanIDsBkt kvdb.RBucket,
index map[uint64]map[uint64]bool) error {
for dbChanID, sessIDs := range index {
dbChanIDBytes, err := writeUint64(dbChanID)
if err != nil {
return err
}
realChanID := chanIDsBkt.Get(dbChanIDBytes)
chanBkt := chanDetailsBkt.NestedReadWriteBucket(realChanID)
if chanBkt == nil {
return fmt.Errorf("channel not found")
}
sessIDsBkt, err := chanBkt.CreateBucket(cChanSessions)
if err != nil {
return err
}
for id := range sessIDs {
sessID, err := writeUint64(id)
if err != nil {
return err
}
err = sessIDsBkt.Put(sessID, []byte{1})
if err != nil {
return err
}
}
}
return nil
}
func writeUint64(i uint64) ([]byte, error) {
var b bytes.Buffer
err := tlv.WriteVarInt(&b, i, &[8]byte{})
if err != nil {
return nil, err
}
return b.Bytes(), nil
}
func readUint64(b []byte) (uint64, error) {
r := bytes.NewReader(b)
i, err := tlv.ReadVarInt(r, &[8]byte{})
if err != nil {
return 0, err
}
return i, nil
}

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@@ -0,0 +1,191 @@
package migration7
import (
"testing"
"github.com/lightningnetwork/lnd/channeldb/migtest"
"github.com/lightningnetwork/lnd/kvdb"
)
var (
// preDetails is the expected data of the channel details bucket before
// the migration.
preDetails = map[string]interface{}{
channelIDString(100): map[string]interface{}{
string(cChannelSummary): string([]byte{1, 2, 3}),
},
channelIDString(222): map[string]interface{}{
string(cChannelSummary): string([]byte{4, 5, 6}),
},
}
// preFailCorruptDB should fail the migration due to no channel summary
// being found for a given channel ID.
preFailCorruptDB = map[string]interface{}{
channelIDString(30): map[string]interface{}{},
}
// channelIDIndex is the data in the channelID index that is used to
// find the mapping between the db-assigned channel ID and the real
// channel ID.
channelIDIndex = map[string]interface{}{
uint64ToStr(10): channelIDString(100),
uint64ToStr(20): channelIDString(222),
}
// sessions is the expected data in the sessions bucket before and
// after the migration.
sessions = map[string]interface{}{
sessionIDString("1"): map[string]interface{}{
string(cSessionAckRangeIndex): map[string]interface{}{
uint64ToStr(10): map[string]interface{}{
uint64ToStr(30): uint64ToStr(32),
uint64ToStr(34): uint64ToStr(34),
},
uint64ToStr(20): map[string]interface{}{
uint64ToStr(30): uint64ToStr(30),
},
},
string(cSessionDBID): uint64ToStr(66),
},
sessionIDString("2"): map[string]interface{}{
string(cSessionAckRangeIndex): map[string]interface{}{
uint64ToStr(10): map[string]interface{}{
uint64ToStr(33): uint64ToStr(33),
},
},
string(cSessionDBID): uint64ToStr(77),
},
}
// postDetails is the expected data in the channel details bucket after
// the migration.
postDetails = map[string]interface{}{
channelIDString(100): map[string]interface{}{
string(cChannelSummary): string([]byte{1, 2, 3}),
string(cChanSessions): map[string]interface{}{
uint64ToStr(66): string([]byte{1}),
uint64ToStr(77): string([]byte{1}),
},
},
channelIDString(222): map[string]interface{}{
string(cChannelSummary): string([]byte{4, 5, 6}),
string(cChanSessions): map[string]interface{}{
uint64ToStr(66): string([]byte{1}),
},
},
}
)
// TestMigrateChannelToSessionIndex tests that the MigrateChannelToSessionIndex
// function correctly builds the new channel-to-sessionID index to the tower
// client DB.
func TestMigrateChannelToSessionIndex(t *testing.T) {
t.Parallel()
tests := []struct {
name string
shouldFail bool
preDetails map[string]interface{}
preSessions map[string]interface{}
preChanIndex map[string]interface{}
postDetails map[string]interface{}
}{
{
name: "migration ok",
shouldFail: false,
preDetails: preDetails,
preSessions: sessions,
preChanIndex: channelIDIndex,
postDetails: postDetails,
},
{
name: "fail due to corrupt db",
shouldFail: true,
preDetails: preFailCorruptDB,
preSessions: sessions,
},
{
name: "no sessions",
shouldFail: false,
},
}
for _, test := range tests {
test := test
t.Run(test.name, func(t *testing.T) {
t.Parallel()
// Before the migration we have a channel details
// bucket, a sessions bucket, a session ID index bucket
// and a channel ID index bucket.
before := func(tx kvdb.RwTx) error {
err := migtest.RestoreDB(
tx, cChanDetailsBkt, test.preDetails,
)
if err != nil {
return err
}
err = migtest.RestoreDB(
tx, cSessionBkt, test.preSessions,
)
if err != nil {
return err
}
return migtest.RestoreDB(
tx, cChanIDIndexBkt, test.preChanIndex,
)
}
after := func(tx kvdb.RwTx) error {
// If the migration fails, the details bucket
// should be untouched.
if test.shouldFail {
if err := migtest.VerifyDB(
tx, cChanDetailsBkt,
test.preDetails,
); err != nil {
return err
}
return nil
}
// Else, we expect an updated details bucket
// and a new index bucket.
return migtest.VerifyDB(
tx, cChanDetailsBkt, test.postDetails,
)
}
migtest.ApplyMigration(
t, before, after, MigrateChannelToSessionIndex,
test.shouldFail,
)
})
}
}
func sessionIDString(id string) string {
var sessID SessionID
copy(sessID[:], id)
return sessID.String()
}
func channelIDString(id uint64) string {
var chanID ChannelID
byteOrder.PutUint64(chanID[:], id)
return string(chanID[:])
}
func uint64ToStr(id uint64) string {
b, err := writeUint64(id)
if err != nil {
panic(err)
}
return string(b)
}

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@@ -0,0 +1,29 @@
package migration7
import "encoding/hex"
// SessionIDSize is 33-bytes; it is a serialized, compressed public key.
const SessionIDSize = 33
// SessionID is created from the remote public key of a client, and serves as a
// unique identifier and authentication for sending state updates.
type SessionID [SessionIDSize]byte
// String returns a hex encoding of the session id.
func (s SessionID) String() string {
return hex.EncodeToString(s[:])
}
// ChannelID is a series of 32-bytes that uniquely identifies all channels
// within the network. The ChannelID is computed using the outpoint of the
// funding transaction (the txid, and output index). Given a funding output the
// ChannelID can be calculated by XOR'ing the big-endian serialization of the
// txid and the big-endian serialization of the output index, truncated to
// 2 bytes.
type ChannelID [32]byte
// String returns the string representation of the ChannelID. This is just the
// hex string encoding of the ChannelID itself.
func (c ChannelID) String() string {
return hex.EncodeToString(c[:])
}

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@@ -0,0 +1,14 @@
package migration7
import (
"github.com/btcsuite/btclog"
)
// log is a logger that is initialized as disabled. This means the package will
// not perform any logging by default until a logger is set.
var log = btclog.Disabled
// UseLogger uses a specified Logger to output package logging info.
func UseLogger(logger btclog.Logger) {
log = logger
}

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@@ -11,6 +11,7 @@ import (
"github.com/lightningnetwork/lnd/watchtower/wtdb/migration4"
"github.com/lightningnetwork/lnd/watchtower/wtdb/migration5"
"github.com/lightningnetwork/lnd/watchtower/wtdb/migration6"
"github.com/lightningnetwork/lnd/watchtower/wtdb/migration7"
)
// txMigration is a function which takes a prior outdated version of the
@@ -63,6 +64,9 @@ var clientDBVersions = []version{
{
txMigration: migration6.MigrateSessionIDIndex,
},
{
txMigration: migration7.MigrateChannelToSessionIndex,
},
}
// getLatestDBVersion returns the last known database version.