169 lines
4.2 KiB
Go
169 lines
4.2 KiB
Go
package lnwire
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import (
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"bytes"
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"io"
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"github.com/roasbeef/btcd/btcec"
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"github.com/roasbeef/btcd/chaincfg/chainhash"
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)
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// ChannelAnnouncement message is used to announce the existence of a channel
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// between two peers in the overlay, which is propagated by the discovery
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// service over broadcast handler.
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type ChannelAnnouncement struct {
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// This signatures are used by nodes in order to create cross
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// references between node's channel and node. Requiring both nodes
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// to sign indicates they are both willing to route other payments via
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// this node.
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NodeSig1 *btcec.Signature
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NodeSig2 *btcec.Signature
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// This signatures are used by nodes in order to create cross
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// references between node's channel and node. Requiring the bitcoin
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// signatures proves they control the channel.
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BitcoinSig1 *btcec.Signature
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BitcoinSig2 *btcec.Signature
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// Features is the feature vector that encodes the features supported
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// by the target node. This field can be used to signal the type of the
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// channel, or modifications to the fields that would normally follow
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// this vector.
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Features *FeatureVector
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// ChainHash denotes the target chain that this channel was opened
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// within. This value should be the genesis hash of the target chain.
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ChainHash chainhash.Hash
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// ShortChannelID is the unique description of the funding transaction,
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// or where exactly it's located within the target blockchain.
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ShortChannelID ShortChannelID
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// The public keys of the two nodes who are operating the channel, such
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// that is NodeID1 the numerically-lesser than NodeID2 (ascending
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// numerical order).
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NodeID1 *btcec.PublicKey
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NodeID2 *btcec.PublicKey
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// Public keys which corresponds to the keys which was declared in
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// multisig funding transaction output.
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BitcoinKey1 *btcec.PublicKey
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BitcoinKey2 *btcec.PublicKey
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}
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// A compile time check to ensure ChannelAnnouncement implements the
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// lnwire.Message interface.
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var _ Message = (*ChannelAnnouncement)(nil)
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// Decode deserializes a serialized ChannelAnnouncement stored in the passed
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// io.Reader observing the specified protocol version.
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//
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// This is part of the lnwire.Message interface.
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func (a *ChannelAnnouncement) Decode(r io.Reader, pver uint32) error {
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return readElements(r,
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&a.NodeSig1,
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&a.NodeSig2,
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&a.BitcoinSig1,
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&a.BitcoinSig2,
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&a.Features,
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a.ChainHash[:],
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&a.ShortChannelID,
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&a.NodeID1,
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&a.NodeID2,
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&a.BitcoinKey1,
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&a.BitcoinKey2,
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)
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}
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// Encode serializes the target ChannelAnnouncement into the passed io.Writer
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// observing the protocol version specified.
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//
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// This is part of the lnwire.Message interface.
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func (a *ChannelAnnouncement) Encode(w io.Writer, pver uint32) error {
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return writeElements(w,
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a.NodeSig1,
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a.NodeSig2,
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a.BitcoinSig1,
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a.BitcoinSig2,
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a.Features,
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a.ChainHash[:],
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a.ShortChannelID,
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a.NodeID1,
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a.NodeID2,
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a.BitcoinKey1,
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a.BitcoinKey2,
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)
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}
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// MsgType returns the integer uniquely identifying this message type on the
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// wire.
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//
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// This is part of the lnwire.Message interface.
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func (a *ChannelAnnouncement) MsgType() MessageType {
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return MsgChannelAnnouncement
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}
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// MaxPayloadLength returns the maximum allowed payload size for this message
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// observing the specified protocol version.
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//
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// This is part of the lnwire.Message interface.
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func (a *ChannelAnnouncement) MaxPayloadLength(pver uint32) uint32 {
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var length uint32
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// NodeSig1 - 64 bytes
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length += 64
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// NodeSig2 - 64 bytes
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length += 64
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// BitcoinSig1 - 64 bytes
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length += 64
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// BitcoinSig2 - 64 bytes
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length += 64
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// Features (max possible features)
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length += 65096
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// ChainHash - 32 bytes
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length += 32
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// ShortChannelID - 8 bytes
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length += 8
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// NodeID1 - 33 bytes
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length += 33
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// NodeID2 - 33 bytes
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length += 33
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// BitcoinKey1 - 33 bytes
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length += 33
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// BitcoinKey2 - 33 bytes
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length += 33
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return length
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}
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// DataToSign is used to retrieve part of the announcement message which should
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// be signed.
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func (a *ChannelAnnouncement) DataToSign() ([]byte, error) {
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// We should not include the signatures itself.
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var w bytes.Buffer
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err := writeElements(&w,
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a.Features,
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a.ChainHash[:],
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a.ShortChannelID,
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a.NodeID1,
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a.NodeID2,
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a.BitcoinKey1,
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a.BitcoinKey2,
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)
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if err != nil {
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return nil, err
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}
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return w.Bytes(), nil
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}
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