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The `netann` package is a more appropriate place for this code to live. Also, once the funding transaction code is moved out of the `graph.Builder`, then no `lnwire` validation will occur in the `graph` package.
119 lines
3.7 KiB
Go
119 lines
3.7 KiB
Go
package netann
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import (
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"bytes"
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"image/color"
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"net"
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"time"
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"github.com/btcsuite/btcd/btcec/v2"
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"github.com/btcsuite/btcd/chaincfg/chainhash"
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"github.com/go-errors/errors"
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"github.com/lightningnetwork/lnd/keychain"
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"github.com/lightningnetwork/lnd/lnwallet"
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"github.com/lightningnetwork/lnd/lnwire"
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)
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// NodeAnnModifier is a closure that makes in-place modifications to an
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// lnwire.NodeAnnouncement.
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type NodeAnnModifier func(*lnwire.NodeAnnouncement)
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// NodeAnnSetAlias is a functional option that sets the alias of the
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// given node announcement.
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func NodeAnnSetAlias(alias lnwire.NodeAlias) func(*lnwire.NodeAnnouncement) {
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return func(nodeAnn *lnwire.NodeAnnouncement) {
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nodeAnn.Alias = alias
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}
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}
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// NodeAnnSetAddrs is a functional option that allows updating the addresses of
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// the given node announcement.
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func NodeAnnSetAddrs(addrs []net.Addr) func(*lnwire.NodeAnnouncement) {
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return func(nodeAnn *lnwire.NodeAnnouncement) {
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nodeAnn.Addresses = addrs
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}
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}
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// NodeAnnSetColor is a functional option that sets the color of the
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// given node announcement.
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func NodeAnnSetColor(newColor color.RGBA) func(*lnwire.NodeAnnouncement) {
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return func(nodeAnn *lnwire.NodeAnnouncement) {
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nodeAnn.RGBColor = newColor
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}
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}
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// NodeAnnSetFeatures is a functional option that allows updating the features of
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// the given node announcement.
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func NodeAnnSetFeatures(features *lnwire.RawFeatureVector) func(*lnwire.NodeAnnouncement) {
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return func(nodeAnn *lnwire.NodeAnnouncement) {
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nodeAnn.Features = features
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}
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}
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// NodeAnnSetTimestamp is a functional option that sets the timestamp of the
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// announcement to the current time, or increments it if the timestamp is
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// already in the future.
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func NodeAnnSetTimestamp(nodeAnn *lnwire.NodeAnnouncement) {
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newTimestamp := uint32(time.Now().Unix())
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if newTimestamp <= nodeAnn.Timestamp {
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// Increment the prior value to ensure the timestamp
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// monotonically increases, otherwise the announcement won't
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// propagate.
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newTimestamp = nodeAnn.Timestamp + 1
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}
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nodeAnn.Timestamp = newTimestamp
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}
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// SignNodeAnnouncement signs the lnwire.NodeAnnouncement provided, which
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// should be the most recent, valid update, otherwise the timestamp may not
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// monotonically increase from the prior.
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func SignNodeAnnouncement(signer lnwallet.MessageSigner,
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keyLoc keychain.KeyLocator, nodeAnn *lnwire.NodeAnnouncement) error {
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// Create the DER-encoded ECDSA signature over the message digest.
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sig, err := SignAnnouncement(signer, keyLoc, nodeAnn)
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if err != nil {
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return err
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}
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// Parse the DER-encoded signature into a fixed-size 64-byte array.
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nodeAnn.Signature, err = lnwire.NewSigFromSignature(sig)
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return err
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}
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// ValidateNodeAnn validates the node announcement by ensuring that the
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// attached signature is needed a signature of the node announcement under the
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// specified node public key.
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func ValidateNodeAnn(a *lnwire.NodeAnnouncement) error {
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// Reconstruct the data of announcement which should be covered by the
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// signature so we can verify the signature shortly below
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data, err := a.DataToSign()
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if err != nil {
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return err
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}
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nodeSig, err := a.Signature.ToSignature()
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if err != nil {
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return err
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}
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nodeKey, err := btcec.ParsePubKey(a.NodeID[:])
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if err != nil {
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return err
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}
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// Finally ensure that the passed signature is valid, if not we'll
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// return an error so this node announcement can be rejected.
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dataHash := chainhash.DoubleHashB(data)
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if !nodeSig.Verify(dataHash, nodeKey) {
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var msgBuf bytes.Buffer
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if _, err := lnwire.WriteMessage(&msgBuf, a, 0); err != nil {
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return err
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}
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return errors.Errorf("signature on NodeAnnouncement(%x) is "+
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"invalid: %x", nodeKey.SerializeCompressed(),
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msgBuf.Bytes())
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}
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return nil
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}
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