feat(esplora): include previous TxOut
s for fee calculation
The previous `TxOut` for transactions received from an external wallet are added as floating `TxOut`s to `TxGraph` to allow for fee calculation.
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parent
f099b42005
commit
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@ -1,7 +1,7 @@
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use async_trait::async_trait;
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use bdk_chain::collections::btree_map;
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use bdk_chain::{
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bitcoin::{BlockHash, OutPoint, ScriptBuf, Txid},
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bitcoin::{BlockHash, OutPoint, ScriptBuf, TxOut, Txid},
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collections::BTreeMap,
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local_chain::{self, CheckPoint},
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BlockId, ConfirmationTimeHeightAnchor, TxGraph,
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@ -204,6 +204,24 @@ impl EsploraAsyncExt for esplora_client::AsyncClient {
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if let Some(anchor) = anchor_from_status(&tx.status) {
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let _ = graph.insert_anchor(tx.txid, anchor);
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}
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let previous_outputs = tx.vin.iter().filter_map(|vin| {
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let prevout = vin.prevout.as_ref()?;
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Some((
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OutPoint {
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txid: vin.txid,
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vout: vin.vout,
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},
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TxOut {
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script_pubkey: prevout.scriptpubkey.clone(),
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value: prevout.value,
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},
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))
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});
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for (outpoint, txout) in previous_outputs {
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let _ = graph.insert_txout(outpoint, txout);
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}
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}
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}
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@ -3,7 +3,7 @@ use std::thread::JoinHandle;
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use bdk_chain::collections::btree_map;
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use bdk_chain::collections::BTreeMap;
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use bdk_chain::{
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bitcoin::{BlockHash, OutPoint, ScriptBuf, Txid},
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bitcoin::{BlockHash, OutPoint, ScriptBuf, TxOut, Txid},
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local_chain::{self, CheckPoint},
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BlockId, ConfirmationTimeHeightAnchor, TxGraph,
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};
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@ -194,6 +194,24 @@ impl EsploraExt for esplora_client::BlockingClient {
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if let Some(anchor) = anchor_from_status(&tx.status) {
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let _ = graph.insert_anchor(tx.txid, anchor);
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}
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let previous_outputs = tx.vin.iter().filter_map(|vin| {
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let prevout = vin.prevout.as_ref()?;
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Some((
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OutPoint {
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txid: vin.txid,
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vout: vin.vout,
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},
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TxOut {
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script_pubkey: prevout.scriptpubkey.clone(),
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value: prevout.value,
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},
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))
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});
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for (outpoint, txout) in previous_outputs {
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let _ = graph.insert_txout(outpoint, txout);
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}
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}
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}
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@ -109,6 +109,28 @@ pub async fn test_update_tx_graph_without_keychain() -> anyhow::Result<()> {
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)
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.await?;
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// Check to see if we have the floating txouts available from our two created transactions'
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// previous outputs in order to calculate transaction fees.
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for tx in graph_update.full_txs() {
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// Retrieve the calculated fee from `TxGraph`, which will panic if we do not have the
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// floating txouts available from the transactions' previous outputs.
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let fee = graph_update.calculate_fee(tx.tx).expect("Fee must exist");
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// Retrieve the fee in the transaction data from `bitcoind`.
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let tx_fee = env
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.bitcoind
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.client
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.get_transaction(&tx.txid, None)
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.expect("Tx must exist")
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.fee
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.expect("Fee must exist")
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.abs()
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.to_sat() as u64;
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// Check that the calculated fee matches the fee from the transaction data.
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assert_eq!(fee, tx_fee);
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}
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let mut graph_update_txids: Vec<Txid> = graph_update.full_txs().map(|tx| tx.txid).collect();
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graph_update_txids.sort();
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let mut expected_txids = vec![txid1, txid2];
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@ -136,6 +136,28 @@ pub fn test_update_tx_graph_without_keychain() -> anyhow::Result<()> {
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1,
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)?;
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// Check to see if we have the floating txouts available from our two created transactions'
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// previous outputs in order to calculate transaction fees.
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for tx in graph_update.full_txs() {
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// Retrieve the calculated fee from `TxGraph`, which will panic if we do not have the
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// floating txouts available from the transactions' previous outputs.
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let fee = graph_update.calculate_fee(tx.tx).expect("Fee must exist");
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// Retrieve the fee in the transaction data from `bitcoind`.
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let tx_fee = env
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.bitcoind
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.client
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.get_transaction(&tx.txid, None)
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.expect("Tx must exist")
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.fee
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.expect("Fee must exist")
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.abs()
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.to_sat() as u64;
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// Check that the calculated fee matches the fee from the transaction data.
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assert_eq!(fee, tx_fee);
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}
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let mut graph_update_txids: Vec<Txid> = graph_update.full_txs().map(|tx| tx.txid).collect();
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graph_update_txids.sort();
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let mut expected_txids = vec![txid1, txid2];
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