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Implement channelmonitor (de)serialization (fixes #45)
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2 changed files with 405 additions and 0 deletions
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@ -1,6 +1,7 @@
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use bitcoin::blockdata::block::BlockHeader;
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use bitcoin::blockdata::transaction::{TxIn,TxOut,SigHashType,Transaction};
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use bitcoin::blockdata::script::Script;
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use bitcoin::network::serialize;
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use bitcoin::util::hash::Sha256dHash;
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use bitcoin::util::bip143;
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@ -15,6 +16,7 @@ use ln::chan_utils::HTLCOutputInCommitment;
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use chain::chaininterface::{ChainListener, ChainWatchInterface, BroadcasterInterface};
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use chain::transaction::OutPoint;
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use util::sha2::Sha256;
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use util::byte_utils;
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use std::collections::HashMap;
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use std::sync::{Arc,Mutex};
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@ -141,6 +143,9 @@ struct LocalSignedTx {
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htlc_outputs: Vec<(HTLCOutputInCommitment, Signature, Signature)>,
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}
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const SERIALIZATION_VERSION: u8 = 1;
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const MIN_SERIALIZATION_VERSION: u8 = 1;
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pub struct ChannelMonitor {
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funding_txo: Option<OutPoint>,
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commitment_transaction_number_obscure_factor: u64,
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@ -439,6 +444,385 @@ impl ChannelMonitor {
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self.funding_txo
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}
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/// Serializes into a vec, with various modes for the exposed pub fns
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fn serialize(&self, for_local_storage: bool) -> Vec<u8> {
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let mut res = Vec::new();
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res.push(SERIALIZATION_VERSION);
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res.push(MIN_SERIALIZATION_VERSION);
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match self.funding_txo {
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Some(outpoint) => {
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res.extend_from_slice(&outpoint.txid[..]);
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res.extend_from_slice(&byte_utils::be16_to_array(outpoint.index));
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},
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None => {
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// We haven't even been initialized...not sure why anyone is serializing us, but
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// not much to give them.
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return res;
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},
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}
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// Set in initial Channel-object creation, so should always be set by now:
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res.extend_from_slice(&byte_utils::be48_to_array(self.commitment_transaction_number_obscure_factor));
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match self.key_storage {
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KeyStorage::PrivMode { ref revocation_base_key, ref htlc_base_key } => {
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res.push(0);
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res.extend_from_slice(&revocation_base_key[..]);
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res.extend_from_slice(&htlc_base_key[..]);
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},
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KeyStorage::SigsMode { .. } => unimplemented!(),
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}
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res.extend_from_slice(&self.delayed_payment_base_key.serialize());
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res.extend_from_slice(&self.their_htlc_base_key.as_ref().unwrap().serialize());
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match self.their_cur_revocation_points {
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Some((idx, pubkey, second_option)) => {
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res.extend_from_slice(&byte_utils::be48_to_array(idx));
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res.extend_from_slice(&pubkey.serialize());
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match second_option {
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Some(second_pubkey) => {
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res.extend_from_slice(&second_pubkey.serialize());
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},
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None => {
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res.extend_from_slice(&[0; 33]);
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},
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}
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},
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None => {
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res.extend_from_slice(&byte_utils::be48_to_array(0));
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},
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}
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res.extend_from_slice(&byte_utils::be16_to_array(self.our_to_self_delay));
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res.extend_from_slice(&byte_utils::be16_to_array(self.their_to_self_delay.unwrap()));
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for &(ref secret, ref idx) in self.old_secrets.iter() {
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res.extend_from_slice(secret);
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res.extend_from_slice(&byte_utils::be64_to_array(*idx));
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}
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macro_rules! serialize_htlc_in_commitment {
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($htlc_output: expr) => {
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res.push($htlc_output.offered as u8);
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res.extend_from_slice(&byte_utils::be64_to_array($htlc_output.amount_msat));
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res.extend_from_slice(&byte_utils::be32_to_array($htlc_output.cltv_expiry));
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res.extend_from_slice(&$htlc_output.payment_hash);
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res.extend_from_slice(&byte_utils::be32_to_array($htlc_output.transaction_output_index));
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}
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}
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res.extend_from_slice(&byte_utils::be64_to_array(self.remote_claimable_outpoints.len() as u64));
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for (txid, htlc_outputs) in self.remote_claimable_outpoints.iter() {
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res.extend_from_slice(&txid[..]);
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res.extend_from_slice(&byte_utils::be64_to_array(htlc_outputs.len() as u64));
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for htlc_output in htlc_outputs.iter() {
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serialize_htlc_in_commitment!(htlc_output);
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}
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}
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{
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let remote_commitment_txn_on_chain = self.remote_commitment_txn_on_chain.lock().unwrap();
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res.extend_from_slice(&byte_utils::be64_to_array(remote_commitment_txn_on_chain.len() as u64));
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for (txid, commitment_number) in remote_commitment_txn_on_chain.iter() {
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res.extend_from_slice(&txid[..]);
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res.extend_from_slice(&byte_utils::be48_to_array(*commitment_number));
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}
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}
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if for_local_storage {
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res.extend_from_slice(&byte_utils::be64_to_array(self.remote_hash_commitment_number.len() as u64));
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for (payment_hash, commitment_number) in self.remote_hash_commitment_number.iter() {
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res.extend_from_slice(payment_hash);
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res.extend_from_slice(&byte_utils::be48_to_array(*commitment_number));
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}
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} else {
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res.extend_from_slice(&byte_utils::be64_to_array(0));
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}
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macro_rules! serialize_local_tx {
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($local_tx: expr) => {
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let tx_ser = serialize::serialize(&$local_tx.tx).unwrap();
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res.extend_from_slice(&byte_utils::be64_to_array(tx_ser.len() as u64));
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res.extend_from_slice(&tx_ser);
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res.extend_from_slice(&$local_tx.revocation_key.serialize());
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res.extend_from_slice(&$local_tx.a_htlc_key.serialize());
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res.extend_from_slice(&$local_tx.b_htlc_key.serialize());
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res.extend_from_slice(&$local_tx.delayed_payment_key.serialize());
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res.extend_from_slice(&byte_utils::be64_to_array($local_tx.feerate_per_kw));
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res.extend_from_slice(&byte_utils::be64_to_array($local_tx.htlc_outputs.len() as u64));
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for &(ref htlc_output, ref their_sig, ref our_sig) in $local_tx.htlc_outputs.iter() {
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serialize_htlc_in_commitment!(htlc_output);
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res.extend_from_slice(&their_sig.serialize_compact(&self.secp_ctx));
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res.extend_from_slice(&our_sig.serialize_compact(&self.secp_ctx));
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}
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}
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}
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if let Some(ref prev_local_tx) = self.prev_local_signed_commitment_tx {
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res.push(1);
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serialize_local_tx!(prev_local_tx);
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} else {
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res.push(0);
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}
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if let Some(ref cur_local_tx) = self.current_local_signed_commitment_tx {
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res.push(1);
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serialize_local_tx!(cur_local_tx);
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} else {
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res.push(0);
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}
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res.extend_from_slice(&byte_utils::be64_to_array(self.payment_preimages.len() as u64));
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for payment_preimage in self.payment_preimages.values() {
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res.extend_from_slice(payment_preimage);
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}
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res.extend_from_slice(&byte_utils::be64_to_array(self.destination_script.len() as u64));
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res.extend_from_slice(&self.destination_script[..]);
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res
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}
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/// Encodes this monitor into a byte array, suitable for writing to disk.
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pub fn serialize_for_disk(&self) -> Vec<u8> {
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self.serialize(true)
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}
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/// Encodes this monitor into a byte array, suitable for sending to a remote watchtower
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pub fn serialize_for_watchtower(&self) -> Vec<u8> {
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self.serialize(false)
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}
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/// Attempts to decode a serialized monitor
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pub fn deserialize(data: &[u8]) -> Option<Self> {
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let mut read_pos = 0;
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macro_rules! read_bytes {
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($byte_count: expr) => {
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{
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if ($byte_count as usize) + read_pos > data.len() {
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return None;
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}
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read_pos += $byte_count as usize;
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&data[read_pos - $byte_count as usize..read_pos]
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}
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}
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}
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let secp_ctx = Secp256k1::new();
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macro_rules! unwrap_obj {
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($key: expr) => {
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match $key {
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Ok(res) => res,
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Err(_) => return None,
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}
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}
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}
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let _ver = read_bytes!(1)[0];
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let min_ver = read_bytes!(1)[0];
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if min_ver > SERIALIZATION_VERSION {
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return None;
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}
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// Technically this can fail and serialize fail a round-trip, but only for serialization of
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// barely-init'd ChannelMonitors that we can't do anything with.
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let funding_txo = Some(OutPoint {
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txid: Sha256dHash::from(read_bytes!(32)),
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index: byte_utils::slice_to_be16(read_bytes!(2)),
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});
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let commitment_transaction_number_obscure_factor = byte_utils::slice_to_be48(read_bytes!(6));
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let key_storage = match read_bytes!(1)[0] {
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0 => {
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KeyStorage::PrivMode {
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revocation_base_key: unwrap_obj!(SecretKey::from_slice(&secp_ctx, read_bytes!(32))),
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htlc_base_key: unwrap_obj!(SecretKey::from_slice(&secp_ctx, read_bytes!(32))),
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}
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},
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_ => return None,
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};
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let delayed_payment_base_key = unwrap_obj!(PublicKey::from_slice(&secp_ctx, read_bytes!(33)));
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let their_htlc_base_key = Some(unwrap_obj!(PublicKey::from_slice(&secp_ctx, read_bytes!(33))));
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let their_cur_revocation_points = {
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let first_idx = byte_utils::slice_to_be48(read_bytes!(6));
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if first_idx == 0 {
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None
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} else {
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let first_point = unwrap_obj!(PublicKey::from_slice(&secp_ctx, read_bytes!(33)));
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let second_point_slice = read_bytes!(33);
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if second_point_slice[0..32] == [0; 32] && second_point_slice[32] == 0 {
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Some((first_idx, first_point, None))
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} else {
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Some((first_idx, first_point, Some(unwrap_obj!(PublicKey::from_slice(&secp_ctx, second_point_slice)))))
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}
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}
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};
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let our_to_self_delay = byte_utils::slice_to_be16(read_bytes!(2));
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let their_to_self_delay = Some(byte_utils::slice_to_be16(read_bytes!(2)));
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let mut old_secrets = [([0; 32], 1 << 48); 49];
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for &mut (ref mut secret, ref mut idx) in old_secrets.iter_mut() {
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secret.copy_from_slice(read_bytes!(32));
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*idx = byte_utils::slice_to_be64(read_bytes!(8));
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}
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macro_rules! read_htlc_in_commitment {
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() => {
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{
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let offered = match read_bytes!(1)[0] {
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0 => false, 1 => true,
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_ => return None,
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};
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let amount_msat = byte_utils::slice_to_be64(read_bytes!(8));
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let cltv_expiry = byte_utils::slice_to_be32(read_bytes!(4));
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let mut payment_hash = [0; 32];
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payment_hash[..].copy_from_slice(read_bytes!(32));
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let transaction_output_index = byte_utils::slice_to_be32(read_bytes!(4));
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HTLCOutputInCommitment {
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offered, amount_msat, cltv_expiry, payment_hash, transaction_output_index
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}
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}
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}
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}
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let remote_claimable_outpoints_len = byte_utils::slice_to_be64(read_bytes!(8));
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if remote_claimable_outpoints_len > data.len() as u64 / 64 { return None; }
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let mut remote_claimable_outpoints = HashMap::with_capacity(remote_claimable_outpoints_len as usize);
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for _ in 0..remote_claimable_outpoints_len {
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let txid = Sha256dHash::from(read_bytes!(32));
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let outputs_count = byte_utils::slice_to_be64(read_bytes!(8));
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if outputs_count > data.len() as u64 * 32 { return None; }
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let mut outputs = Vec::with_capacity(outputs_count as usize);
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for _ in 0..outputs_count {
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outputs.push(read_htlc_in_commitment!());
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}
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if let Some(_) = remote_claimable_outpoints.insert(txid, outputs) {
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return None;
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}
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}
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let remote_commitment_txn_on_chain_len = byte_utils::slice_to_be64(read_bytes!(8));
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if remote_commitment_txn_on_chain_len > data.len() as u64 / 32 { return None; }
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let mut remote_commitment_txn_on_chain = HashMap::with_capacity(remote_commitment_txn_on_chain_len as usize);
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for _ in 0..remote_commitment_txn_on_chain_len {
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let txid = Sha256dHash::from(read_bytes!(32));
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let commitment_number = byte_utils::slice_to_be48(read_bytes!(6));
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if let Some(_) = remote_commitment_txn_on_chain.insert(txid, commitment_number) {
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return None;
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}
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}
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let remote_hash_commitment_number_len = byte_utils::slice_to_be64(read_bytes!(8));
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if remote_hash_commitment_number_len > data.len() as u64 / 32 { return None; }
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let mut remote_hash_commitment_number = HashMap::with_capacity(remote_hash_commitment_number_len as usize);
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for _ in 0..remote_hash_commitment_number_len {
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let mut txid = [0; 32];
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txid[..].copy_from_slice(read_bytes!(32));
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let commitment_number = byte_utils::slice_to_be48(read_bytes!(6));
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if let Some(_) = remote_hash_commitment_number.insert(txid, commitment_number) {
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return None;
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}
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}
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macro_rules! read_local_tx {
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() => {
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{
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let tx_len = byte_utils::slice_to_be64(read_bytes!(8));
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let tx: Transaction = unwrap_obj!(serialize::deserialize(read_bytes!(tx_len)));
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let revocation_key = unwrap_obj!(PublicKey::from_slice(&secp_ctx, read_bytes!(33)));
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let a_htlc_key = unwrap_obj!(PublicKey::from_slice(&secp_ctx, read_bytes!(33)));
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let b_htlc_key = unwrap_obj!(PublicKey::from_slice(&secp_ctx, read_bytes!(33)));
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let delayed_payment_key = unwrap_obj!(PublicKey::from_slice(&secp_ctx, read_bytes!(33)));
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let feerate_per_kw = byte_utils::slice_to_be64(read_bytes!(8));
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let htlc_outputs_len = byte_utils::slice_to_be64(read_bytes!(8));
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if htlc_outputs_len > data.len() as u64 / 128 { return None; }
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let mut htlc_outputs = Vec::with_capacity(htlc_outputs_len as usize);
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for _ in 0..htlc_outputs_len {
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htlc_outputs.push((read_htlc_in_commitment!(),
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unwrap_obj!(Signature::from_compact(&secp_ctx, read_bytes!(64))),
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unwrap_obj!(Signature::from_compact(&secp_ctx, read_bytes!(64)))));
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}
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LocalSignedTx {
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txid: tx.txid(),
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tx, revocation_key, a_htlc_key, b_htlc_key, delayed_payment_key, feerate_per_kw, htlc_outputs
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}
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}
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}
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}
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let prev_local_signed_commitment_tx = match read_bytes!(1)[0] {
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0 => None,
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1 => {
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Some(read_local_tx!())
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},
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_ => return None,
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};
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let current_local_signed_commitment_tx = match read_bytes!(1)[0] {
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0 => None,
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1 => {
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Some(read_local_tx!())
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},
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_ => return None,
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};
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let payment_preimages_len = byte_utils::slice_to_be64(read_bytes!(8));
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if payment_preimages_len > data.len() as u64 / 32 { return None; }
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let mut payment_preimages = HashMap::with_capacity(payment_preimages_len as usize);
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let mut sha = Sha256::new();
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for _ in 0..payment_preimages_len {
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let mut preimage = [0; 32];
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preimage[..].copy_from_slice(read_bytes!(32));
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sha.reset();
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sha.input(&preimage);
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let mut hash = [0; 32];
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sha.result(&mut hash);
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if let Some(_) = payment_preimages.insert(hash, preimage) {
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return None;
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}
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}
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let destination_script_len = byte_utils::slice_to_be64(read_bytes!(8));
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let destination_script = Script::from(read_bytes!(destination_script_len).to_vec());
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Some(ChannelMonitor {
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funding_txo,
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commitment_transaction_number_obscure_factor,
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key_storage,
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delayed_payment_base_key,
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their_htlc_base_key,
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their_cur_revocation_points,
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our_to_self_delay,
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their_to_self_delay,
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old_secrets,
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remote_claimable_outpoints,
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remote_commitment_txn_on_chain: Mutex::new(remote_commitment_txn_on_chain),
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remote_hash_commitment_number,
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prev_local_signed_commitment_tx,
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current_local_signed_commitment_tx,
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payment_preimages,
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destination_script,
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secp_ctx,
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})
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}
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//TODO: Functions to serialize/deserialize (with different forms depending on which information
|
||||
//we want to leave out (eg funding_txo, etc).
|
||||
|
||||
|
|
|
@ -11,6 +11,15 @@ pub fn slice_to_be32(v: &[u8]) -> u32 {
|
|||
((v[3] as u32) << 8*0)
|
||||
}
|
||||
#[inline]
|
||||
pub fn slice_to_be48(v: &[u8]) -> u64 {
|
||||
((v[0] as u64) << 8*5) |
|
||||
((v[1] as u64) << 8*4) |
|
||||
((v[2] as u64) << 8*3) |
|
||||
((v[3] as u64) << 8*2) |
|
||||
((v[4] as u64) << 8*1) |
|
||||
((v[5] as u64) << 8*0)
|
||||
}
|
||||
#[inline]
|
||||
pub fn slice_to_be64(v: &[u8]) -> u64 {
|
||||
((v[0] as u64) << 8*7) |
|
||||
((v[1] as u64) << 8*6) |
|
||||
|
@ -39,6 +48,18 @@ pub fn be32_to_array(u: u32) -> [u8; 4] {
|
|||
v
|
||||
}
|
||||
#[inline]
|
||||
pub fn be48_to_array(u: u64) -> [u8; 6] {
|
||||
assert!(u & 0xffff_0000_0000_0000 == 0);
|
||||
let mut v = [0; 6];
|
||||
v[0] = ((u >> 8*5) & 0xff) as u8;
|
||||
v[1] = ((u >> 8*4) & 0xff) as u8;
|
||||
v[2] = ((u >> 8*3) & 0xff) as u8;
|
||||
v[3] = ((u >> 8*2) & 0xff) as u8;
|
||||
v[4] = ((u >> 8*1) & 0xff) as u8;
|
||||
v[5] = ((u >> 8*0) & 0xff) as u8;
|
||||
v
|
||||
}
|
||||
#[inline]
|
||||
pub fn be64_to_array(u: u64) -> [u8; 8] {
|
||||
let mut v = [0; 8];
|
||||
v[0] = ((u >> 8*7) & 0xff) as u8;
|
||||
|
|
Loading…
Add table
Reference in a new issue