self.fail_htlc_backwards_internal(self.channel_state.lock().unwrap(), htlc_source.0, &htlc_source.1, HTLCFailReason::Reason { failure_code: 0x4000 | 8, data: Vec::new() });
}
for tx in local_txn {
+ log_trace!(self, "Broadcast onchain {}", log_tx!(tx));
self.tx_broadcaster.broadcast_transaction(&tx);
}
}
}
};
if let Some(broadcast_tx) = tx {
+ log_trace!(self, "Broadcast onchain {}", log_tx!(broadcast_tx));
self.tx_broadcaster.broadcast_transaction(&broadcast_tx);
}
if let Some(chan) = chan_option {
}
}
for tx in txn.iter() {
+ log_trace!(self, "Broadcast onchain {}", log_tx!(tx));
broadcaster.broadcast_transaction(tx);
}
}
let mut pending_claims = Vec::new();
if let Some(ref cur_local_tx) = self.current_local_signed_commitment_tx {
if self.would_broadcast_at_height(height) {
+ log_trace!(self, "Broadcast onchain {}", log_tx!(cur_local_tx.tx));
broadcaster.broadcast_transaction(&cur_local_tx.tx);
match self.key_storage {
Storage::Local { ref delayed_payment_base_key, ref latest_per_commitment_point, .. } => {
watch_outputs.push((cur_local_tx.txid.clone(), new_outputs));
}
for tx in txs {
+ log_trace!(self, "Broadcast onchain {}", log_tx!(tx));
broadcaster.broadcast_transaction(&tx);
}
},
watch_outputs.push((cur_local_tx.txid.clone(), new_outputs));
}
for tx in txs {
+ log_trace!(self, "Broadcast onchain {}", log_tx!(tx));
broadcaster.broadcast_transaction(&tx);
}
}
use chain::transaction::OutPoint;
use bitcoin_hashes::sha256d::Hash as Sha256dHash;
+use bitcoin::blockdata::transaction::Transaction;
use secp256k1::key::PublicKey;
use ln::router::Route;
}
}
+pub(crate) struct DebugTx<'a>(pub &'a Transaction);
+impl<'a> std::fmt::Display for DebugTx<'a> {
+ fn fmt(&self, f: &mut std::fmt::Formatter) -> Result<(), std::fmt::Error> {
+ if self.0.input.len() == 1 && self.0.input[0].witness.last().unwrap().len() == 71 && (self.0.input[0].sequence >> 8*3) as u8 == 0x80 { write!(f, "commitment tx")?; }
+ else if self.0.input.len() == 1 && self.0.input[0].witness.last().unwrap().len() == 71 { write!(f, "closing tx")?; }
+ else if self.0.input.len() == 1 && self.0.input[0].witness.last().unwrap().len() == 133 && self.0.input[0].witness.len() == 5 { write!(f, "HTLC-timeout tx")?; }
+ else if self.0.input.len() == 1 && (self.0.input[0].witness.last().unwrap().len() == 138 || self.0.input[0].witness.last().unwrap().len() == 139) && self.0.input[0].witness.len() == 5 { write!(f, "HTLC-success tx")?; }
+ else {
+ for inp in &self.0.input {
+ if inp.witness.last().unwrap().len() == 133 { write!(f, "preimage tx")?; break }
+ else if inp.witness.last().unwrap().len() == 138 { write!(f, "timeout tx")?; break }
+ }
+ }
+ Ok(())
+ }
+}
+
+macro_rules! log_tx {
+ ($obj: expr) => {
+ ::util::macro_logger::DebugTx(&$obj)
+ }
+}
+
macro_rules! log_internal {
($self: ident, $lvl:expr, $($arg:tt)+) => (
&$self.logger.log(&::util::logger::Record::new($lvl, format_args!($($arg)+), module_path!(), file!(), line!()));