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Now that we know that the InboundFee on the ChannelEdgePolicy is always set appropriately, we can update the GraphCache UpdatePolicy method to take the InboundFee directly from the ChannelEdgePolicy object.
140 lines
3.8 KiB
Go
140 lines
3.8 KiB
Go
package graphdb
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import (
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"encoding/hex"
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"testing"
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"github.com/lightningnetwork/lnd/fn/v2"
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"github.com/lightningnetwork/lnd/graph/db/models"
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"github.com/lightningnetwork/lnd/lnwire"
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"github.com/lightningnetwork/lnd/routing/route"
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"github.com/stretchr/testify/require"
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)
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var (
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pubKey1Bytes, _ = hex.DecodeString(
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"0248f5cba4c6da2e4c9e01e81d1404dfac0cbaf3ee934a4fc117d2ea9a64" +
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"22c91d",
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)
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pubKey2Bytes, _ = hex.DecodeString(
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"038155ba86a8d3b23c806c855097ca5c9fa0f87621f1e7a7d2835ad057f6" +
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"f4484f",
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)
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pubKey1, _ = route.NewVertexFromBytes(pubKey1Bytes)
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pubKey2, _ = route.NewVertexFromBytes(pubKey2Bytes)
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)
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// TestGraphCacheAddNode tests that a channel going from node A to node B can be
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// cached correctly, independent of the direction we add the channel as.
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func TestGraphCacheAddNode(t *testing.T) {
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t.Parallel()
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runTest := func(nodeA, nodeB route.Vertex) {
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t.Helper()
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channelFlagA, channelFlagB := 0, 1
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if nodeA == pubKey2 {
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channelFlagA, channelFlagB = 1, 0
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}
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inboundFee := lnwire.Fee{
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BaseFee: 10,
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FeeRate: 20,
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}
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outPolicy1 := &models.ChannelEdgePolicy{
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ChannelID: 1000,
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ChannelFlags: lnwire.ChanUpdateChanFlags(channelFlagA),
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ToNode: nodeB,
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// Define an inbound fee.
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InboundFee: fn.Some(inboundFee),
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ExtraOpaqueData: []byte{
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253, 217, 3, 8, 0, 0, 0, 10, 0, 0, 0, 20,
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},
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}
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inPolicy1 := &models.ChannelEdgePolicy{
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ChannelID: 1000,
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ChannelFlags: lnwire.ChanUpdateChanFlags(channelFlagB),
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ToNode: nodeA,
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}
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cache := NewGraphCache(10)
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cache.AddNodeFeatures(nodeA, lnwire.EmptyFeatureVector())
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cache.AddChannel(&models.ChannelEdgeInfo{
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ChannelID: 1000,
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// Those are direction independent!
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NodeKey1Bytes: pubKey1,
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NodeKey2Bytes: pubKey2,
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Capacity: 500,
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}, outPolicy1, inPolicy1)
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var fromChannels, toChannels []*DirectedChannel
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_ = cache.ForEachChannel(nodeA, func(c *DirectedChannel) error {
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fromChannels = append(fromChannels, c)
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return nil
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})
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_ = cache.ForEachChannel(nodeB, func(c *DirectedChannel) error {
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toChannels = append(toChannels, c)
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return nil
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})
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require.Len(t, fromChannels, 1)
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require.Len(t, toChannels, 1)
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require.Equal(t, outPolicy1 != nil, fromChannels[0].OutPolicySet)
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assertCachedPolicyEqual(t, inPolicy1, fromChannels[0].InPolicy)
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require.Equal(t, inPolicy1 != nil, toChannels[0].OutPolicySet)
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assertCachedPolicyEqual(t, outPolicy1, toChannels[0].InPolicy)
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// Now that we've inserted two nodes into the graph, check that
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// we'll recover the same set of channels during forEachNode.
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nodes := make(map[route.Vertex]struct{})
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chans := make(map[uint64]struct{})
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_ = cache.ForEachNode(func(node route.Vertex,
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edges map[uint64]*DirectedChannel) error {
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nodes[node] = struct{}{}
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for chanID, directedChannel := range edges {
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chans[chanID] = struct{}{}
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if node == nodeA {
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require.NotZero(
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t, directedChannel.InboundFee,
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)
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} else {
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require.Zero(
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t, directedChannel.InboundFee,
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)
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}
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}
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return nil
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})
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require.Len(t, nodes, 2)
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require.Len(t, chans, 1)
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}
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runTest(pubKey1, pubKey2)
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runTest(pubKey2, pubKey1)
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}
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func assertCachedPolicyEqual(t *testing.T, original *models.ChannelEdgePolicy,
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cached *models.CachedEdgePolicy) {
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require.Equal(t, original.ChannelID, cached.ChannelID)
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require.Equal(t, original.MessageFlags, cached.MessageFlags)
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require.Equal(t, original.ChannelFlags, cached.ChannelFlags)
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require.Equal(t, original.TimeLockDelta, cached.TimeLockDelta)
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require.Equal(t, original.MinHTLC, cached.MinHTLC)
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require.Equal(t, original.MaxHTLC, cached.MaxHTLC)
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require.Equal(t, original.FeeBaseMSat, cached.FeeBaseMSat)
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require.Equal(
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t, original.FeeProportionalMillionths,
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cached.FeeProportionalMillionths,
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)
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require.Equal(
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t, route.Vertex(original.ToNode), cached.ToNodePubKey(),
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)
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}
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